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[deliverable/binutils-gdb.git] / bfd / elflink.c
CommitLineData
252b5132 1/* ELF linking support for BFD.
219d1afa 2 Copyright (C) 1995-2018 Free Software Foundation, Inc.
252b5132 3
8fdd7217 4 This file is part of BFD, the Binary File Descriptor library.
252b5132 5
8fdd7217
NC
6 This program is free software; you can redistribute it and/or modify
7 it under the terms of the GNU General Public License as published by
cd123cb7 8 the Free Software Foundation; either version 3 of the License, or
8fdd7217 9 (at your option) any later version.
252b5132 10
8fdd7217
NC
11 This program is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 GNU General Public License for more details.
252b5132 15
8fdd7217
NC
16 You should have received a copy of the GNU General Public License
17 along with this program; if not, write to the Free Software
cd123cb7
NC
18 Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
19 MA 02110-1301, USA. */
252b5132 20
252b5132 21#include "sysdep.h"
3db64b00 22#include "bfd.h"
53df40a4 23#include "bfd_stdint.h"
252b5132
RH
24#include "bfdlink.h"
25#include "libbfd.h"
26#define ARCH_SIZE 0
27#include "elf-bfd.h"
4ad4eba5 28#include "safe-ctype.h"
ccf2f652 29#include "libiberty.h"
66eb6687 30#include "objalloc.h"
08ce1d72 31#if BFD_SUPPORTS_PLUGINS
7d0b9ebc 32#include "plugin-api.h"
7dc3990e
L
33#include "plugin.h"
34#endif
252b5132 35
28caa186
AM
36/* This struct is used to pass information to routines called via
37 elf_link_hash_traverse which must return failure. */
38
39struct elf_info_failed
40{
41 struct bfd_link_info *info;
28caa186
AM
42 bfd_boolean failed;
43};
44
45/* This structure is used to pass information to
46 _bfd_elf_link_find_version_dependencies. */
47
48struct elf_find_verdep_info
49{
50 /* General link information. */
51 struct bfd_link_info *info;
52 /* The number of dependencies. */
53 unsigned int vers;
54 /* Whether we had a failure. */
55 bfd_boolean failed;
56};
57
58static bfd_boolean _bfd_elf_fix_symbol_flags
59 (struct elf_link_hash_entry *, struct elf_info_failed *);
60
2f0c68f2
CM
61asection *
62_bfd_elf_section_for_symbol (struct elf_reloc_cookie *cookie,
63 unsigned long r_symndx,
64 bfd_boolean discard)
65{
66 if (r_symndx >= cookie->locsymcount
67 || ELF_ST_BIND (cookie->locsyms[r_symndx].st_info) != STB_LOCAL)
68 {
69 struct elf_link_hash_entry *h;
70
71 h = cookie->sym_hashes[r_symndx - cookie->extsymoff];
72
73 while (h->root.type == bfd_link_hash_indirect
74 || h->root.type == bfd_link_hash_warning)
75 h = (struct elf_link_hash_entry *) h->root.u.i.link;
76
77 if ((h->root.type == bfd_link_hash_defined
78 || h->root.type == bfd_link_hash_defweak)
79 && discarded_section (h->root.u.def.section))
07d6d2b8 80 return h->root.u.def.section;
2f0c68f2
CM
81 else
82 return NULL;
83 }
84 else
85 {
86 /* It's not a relocation against a global symbol,
87 but it could be a relocation against a local
88 symbol for a discarded section. */
89 asection *isec;
90 Elf_Internal_Sym *isym;
91
92 /* Need to: get the symbol; get the section. */
93 isym = &cookie->locsyms[r_symndx];
94 isec = bfd_section_from_elf_index (cookie->abfd, isym->st_shndx);
95 if (isec != NULL
96 && discard ? discarded_section (isec) : 1)
97 return isec;
98 }
99 return NULL;
100}
101
d98685ac
AM
102/* Define a symbol in a dynamic linkage section. */
103
104struct elf_link_hash_entry *
105_bfd_elf_define_linkage_sym (bfd *abfd,
106 struct bfd_link_info *info,
107 asection *sec,
108 const char *name)
109{
110 struct elf_link_hash_entry *h;
111 struct bfd_link_hash_entry *bh;
ccabcbe5 112 const struct elf_backend_data *bed;
d98685ac
AM
113
114 h = elf_link_hash_lookup (elf_hash_table (info), name, FALSE, FALSE, FALSE);
115 if (h != NULL)
116 {
117 /* Zap symbol defined in an as-needed lib that wasn't linked.
118 This is a symptom of a larger problem: Absolute symbols
119 defined in shared libraries can't be overridden, because we
120 lose the link to the bfd which is via the symbol section. */
121 h->root.type = bfd_link_hash_new;
ad32986f 122 bh = &h->root;
d98685ac 123 }
ad32986f
NC
124 else
125 bh = NULL;
d98685ac 126
cf18fda4 127 bed = get_elf_backend_data (abfd);
d98685ac 128 if (!_bfd_generic_link_add_one_symbol (info, abfd, name, BSF_GLOBAL,
cf18fda4 129 sec, 0, NULL, FALSE, bed->collect,
d98685ac
AM
130 &bh))
131 return NULL;
132 h = (struct elf_link_hash_entry *) bh;
ad32986f 133 BFD_ASSERT (h != NULL);
d98685ac 134 h->def_regular = 1;
e28df02b 135 h->non_elf = 0;
12b2843a 136 h->root.linker_def = 1;
d98685ac 137 h->type = STT_OBJECT;
00b7642b
AM
138 if (ELF_ST_VISIBILITY (h->other) != STV_INTERNAL)
139 h->other = (h->other & ~ELF_ST_VISIBILITY (-1)) | STV_HIDDEN;
d98685ac 140
ccabcbe5 141 (*bed->elf_backend_hide_symbol) (info, h, TRUE);
d98685ac
AM
142 return h;
143}
144
b34976b6 145bfd_boolean
268b6b39 146_bfd_elf_create_got_section (bfd *abfd, struct bfd_link_info *info)
252b5132
RH
147{
148 flagword flags;
aad5d350 149 asection *s;
252b5132 150 struct elf_link_hash_entry *h;
9c5bfbb7 151 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
6de2ae4a 152 struct elf_link_hash_table *htab = elf_hash_table (info);
252b5132
RH
153
154 /* This function may be called more than once. */
ce558b89 155 if (htab->sgot != NULL)
b34976b6 156 return TRUE;
252b5132 157
e5a52504 158 flags = bed->dynamic_sec_flags;
252b5132 159
14b2f831
AM
160 s = bfd_make_section_anyway_with_flags (abfd,
161 (bed->rela_plts_and_copies_p
162 ? ".rela.got" : ".rel.got"),
163 (bed->dynamic_sec_flags
164 | SEC_READONLY));
6de2ae4a
L
165 if (s == NULL
166 || ! bfd_set_section_alignment (abfd, s, bed->s->log_file_align))
167 return FALSE;
168 htab->srelgot = s;
252b5132 169
14b2f831 170 s = bfd_make_section_anyway_with_flags (abfd, ".got", flags);
64e77c6d
L
171 if (s == NULL
172 || !bfd_set_section_alignment (abfd, s, bed->s->log_file_align))
173 return FALSE;
174 htab->sgot = s;
175
252b5132
RH
176 if (bed->want_got_plt)
177 {
14b2f831 178 s = bfd_make_section_anyway_with_flags (abfd, ".got.plt", flags);
252b5132 179 if (s == NULL
6de2ae4a
L
180 || !bfd_set_section_alignment (abfd, s,
181 bed->s->log_file_align))
b34976b6 182 return FALSE;
6de2ae4a 183 htab->sgotplt = s;
252b5132
RH
184 }
185
64e77c6d
L
186 /* The first bit of the global offset table is the header. */
187 s->size += bed->got_header_size;
188
2517a57f
AM
189 if (bed->want_got_sym)
190 {
191 /* Define the symbol _GLOBAL_OFFSET_TABLE_ at the start of the .got
192 (or .got.plt) section. We don't do this in the linker script
193 because we don't want to define the symbol if we are not creating
194 a global offset table. */
6de2ae4a
L
195 h = _bfd_elf_define_linkage_sym (abfd, info, s,
196 "_GLOBAL_OFFSET_TABLE_");
2517a57f 197 elf_hash_table (info)->hgot = h;
d98685ac
AM
198 if (h == NULL)
199 return FALSE;
2517a57f 200 }
252b5132 201
b34976b6 202 return TRUE;
252b5132
RH
203}
204\f
7e9f0867
AM
205/* Create a strtab to hold the dynamic symbol names. */
206static bfd_boolean
207_bfd_elf_link_create_dynstrtab (bfd *abfd, struct bfd_link_info *info)
208{
209 struct elf_link_hash_table *hash_table;
210
211 hash_table = elf_hash_table (info);
212 if (hash_table->dynobj == NULL)
6cd255ca
L
213 {
214 /* We may not set dynobj, an input file holding linker created
215 dynamic sections to abfd, which may be a dynamic object with
216 its own dynamic sections. We need to find a normal input file
217 to hold linker created sections if possible. */
218 if ((abfd->flags & (DYNAMIC | BFD_PLUGIN)) != 0)
219 {
220 bfd *ibfd;
57963c05 221 asection *s;
6cd255ca 222 for (ibfd = info->input_bfds; ibfd; ibfd = ibfd->link.next)
6645479e 223 if ((ibfd->flags
57963c05
AM
224 & (DYNAMIC | BFD_LINKER_CREATED | BFD_PLUGIN)) == 0
225 && bfd_get_flavour (ibfd) == bfd_target_elf_flavour
4de5434b 226 && elf_object_id (ibfd) == elf_hash_table_id (hash_table)
57963c05
AM
227 && !((s = ibfd->sections) != NULL
228 && s->sec_info_type == SEC_INFO_TYPE_JUST_SYMS))
6cd255ca
L
229 {
230 abfd = ibfd;
231 break;
232 }
233 }
234 hash_table->dynobj = abfd;
235 }
7e9f0867
AM
236
237 if (hash_table->dynstr == NULL)
238 {
239 hash_table->dynstr = _bfd_elf_strtab_init ();
240 if (hash_table->dynstr == NULL)
241 return FALSE;
242 }
243 return TRUE;
244}
245
45d6a902
AM
246/* Create some sections which will be filled in with dynamic linking
247 information. ABFD is an input file which requires dynamic sections
248 to be created. The dynamic sections take up virtual memory space
249 when the final executable is run, so we need to create them before
250 addresses are assigned to the output sections. We work out the
251 actual contents and size of these sections later. */
252b5132 252
b34976b6 253bfd_boolean
268b6b39 254_bfd_elf_link_create_dynamic_sections (bfd *abfd, struct bfd_link_info *info)
252b5132 255{
45d6a902 256 flagword flags;
91d6fa6a 257 asection *s;
9c5bfbb7 258 const struct elf_backend_data *bed;
9637f6ef 259 struct elf_link_hash_entry *h;
252b5132 260
0eddce27 261 if (! is_elf_hash_table (info->hash))
45d6a902
AM
262 return FALSE;
263
264 if (elf_hash_table (info)->dynamic_sections_created)
265 return TRUE;
266
7e9f0867
AM
267 if (!_bfd_elf_link_create_dynstrtab (abfd, info))
268 return FALSE;
45d6a902 269
7e9f0867 270 abfd = elf_hash_table (info)->dynobj;
e5a52504
MM
271 bed = get_elf_backend_data (abfd);
272
273 flags = bed->dynamic_sec_flags;
45d6a902
AM
274
275 /* A dynamically linked executable has a .interp section, but a
276 shared library does not. */
9b8b325a 277 if (bfd_link_executable (info) && !info->nointerp)
252b5132 278 {
14b2f831
AM
279 s = bfd_make_section_anyway_with_flags (abfd, ".interp",
280 flags | SEC_READONLY);
3496cb2a 281 if (s == NULL)
45d6a902
AM
282 return FALSE;
283 }
bb0deeff 284
45d6a902
AM
285 /* Create sections to hold version informations. These are removed
286 if they are not needed. */
14b2f831
AM
287 s = bfd_make_section_anyway_with_flags (abfd, ".gnu.version_d",
288 flags | SEC_READONLY);
45d6a902 289 if (s == NULL
45d6a902
AM
290 || ! bfd_set_section_alignment (abfd, s, bed->s->log_file_align))
291 return FALSE;
292
14b2f831
AM
293 s = bfd_make_section_anyway_with_flags (abfd, ".gnu.version",
294 flags | SEC_READONLY);
45d6a902 295 if (s == NULL
45d6a902
AM
296 || ! bfd_set_section_alignment (abfd, s, 1))
297 return FALSE;
298
14b2f831
AM
299 s = bfd_make_section_anyway_with_flags (abfd, ".gnu.version_r",
300 flags | SEC_READONLY);
45d6a902 301 if (s == NULL
45d6a902
AM
302 || ! bfd_set_section_alignment (abfd, s, bed->s->log_file_align))
303 return FALSE;
304
14b2f831
AM
305 s = bfd_make_section_anyway_with_flags (abfd, ".dynsym",
306 flags | SEC_READONLY);
45d6a902 307 if (s == NULL
45d6a902
AM
308 || ! bfd_set_section_alignment (abfd, s, bed->s->log_file_align))
309 return FALSE;
cae1fbbb 310 elf_hash_table (info)->dynsym = s;
45d6a902 311
14b2f831
AM
312 s = bfd_make_section_anyway_with_flags (abfd, ".dynstr",
313 flags | SEC_READONLY);
3496cb2a 314 if (s == NULL)
45d6a902
AM
315 return FALSE;
316
14b2f831 317 s = bfd_make_section_anyway_with_flags (abfd, ".dynamic", flags);
45d6a902 318 if (s == NULL
45d6a902
AM
319 || ! bfd_set_section_alignment (abfd, s, bed->s->log_file_align))
320 return FALSE;
321
322 /* The special symbol _DYNAMIC is always set to the start of the
77cfaee6
AM
323 .dynamic section. We could set _DYNAMIC in a linker script, but we
324 only want to define it if we are, in fact, creating a .dynamic
325 section. We don't want to define it if there is no .dynamic
326 section, since on some ELF platforms the start up code examines it
327 to decide how to initialize the process. */
9637f6ef
L
328 h = _bfd_elf_define_linkage_sym (abfd, info, s, "_DYNAMIC");
329 elf_hash_table (info)->hdynamic = h;
330 if (h == NULL)
45d6a902
AM
331 return FALSE;
332
fdc90cb4
JJ
333 if (info->emit_hash)
334 {
14b2f831
AM
335 s = bfd_make_section_anyway_with_flags (abfd, ".hash",
336 flags | SEC_READONLY);
fdc90cb4
JJ
337 if (s == NULL
338 || ! bfd_set_section_alignment (abfd, s, bed->s->log_file_align))
339 return FALSE;
340 elf_section_data (s)->this_hdr.sh_entsize = bed->s->sizeof_hash_entry;
341 }
342
343 if (info->emit_gnu_hash)
344 {
14b2f831
AM
345 s = bfd_make_section_anyway_with_flags (abfd, ".gnu.hash",
346 flags | SEC_READONLY);
fdc90cb4
JJ
347 if (s == NULL
348 || ! bfd_set_section_alignment (abfd, s, bed->s->log_file_align))
349 return FALSE;
350 /* For 64-bit ELF, .gnu.hash is a non-uniform entity size section:
351 4 32-bit words followed by variable count of 64-bit words, then
352 variable count of 32-bit words. */
353 if (bed->s->arch_size == 64)
354 elf_section_data (s)->this_hdr.sh_entsize = 0;
355 else
356 elf_section_data (s)->this_hdr.sh_entsize = 4;
357 }
45d6a902
AM
358
359 /* Let the backend create the rest of the sections. This lets the
360 backend set the right flags. The backend will normally create
361 the .got and .plt sections. */
894891db
NC
362 if (bed->elf_backend_create_dynamic_sections == NULL
363 || ! (*bed->elf_backend_create_dynamic_sections) (abfd, info))
45d6a902
AM
364 return FALSE;
365
366 elf_hash_table (info)->dynamic_sections_created = TRUE;
367
368 return TRUE;
369}
370
371/* Create dynamic sections when linking against a dynamic object. */
372
373bfd_boolean
268b6b39 374_bfd_elf_create_dynamic_sections (bfd *abfd, struct bfd_link_info *info)
45d6a902
AM
375{
376 flagword flags, pltflags;
7325306f 377 struct elf_link_hash_entry *h;
45d6a902 378 asection *s;
9c5bfbb7 379 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
6de2ae4a 380 struct elf_link_hash_table *htab = elf_hash_table (info);
45d6a902 381
252b5132
RH
382 /* We need to create .plt, .rel[a].plt, .got, .got.plt, .dynbss, and
383 .rel[a].bss sections. */
e5a52504 384 flags = bed->dynamic_sec_flags;
252b5132
RH
385
386 pltflags = flags;
252b5132 387 if (bed->plt_not_loaded)
6df4d94c
MM
388 /* We do not clear SEC_ALLOC here because we still want the OS to
389 allocate space for the section; it's just that there's nothing
390 to read in from the object file. */
5d1634d7 391 pltflags &= ~ (SEC_CODE | SEC_LOAD | SEC_HAS_CONTENTS);
6df4d94c
MM
392 else
393 pltflags |= SEC_ALLOC | SEC_CODE | SEC_LOAD;
252b5132
RH
394 if (bed->plt_readonly)
395 pltflags |= SEC_READONLY;
396
14b2f831 397 s = bfd_make_section_anyway_with_flags (abfd, ".plt", pltflags);
252b5132 398 if (s == NULL
252b5132 399 || ! bfd_set_section_alignment (abfd, s, bed->plt_alignment))
b34976b6 400 return FALSE;
6de2ae4a 401 htab->splt = s;
252b5132 402
d98685ac
AM
403 /* Define the symbol _PROCEDURE_LINKAGE_TABLE_ at the start of the
404 .plt section. */
7325306f
RS
405 if (bed->want_plt_sym)
406 {
407 h = _bfd_elf_define_linkage_sym (abfd, info, s,
408 "_PROCEDURE_LINKAGE_TABLE_");
409 elf_hash_table (info)->hplt = h;
410 if (h == NULL)
411 return FALSE;
412 }
252b5132 413
14b2f831
AM
414 s = bfd_make_section_anyway_with_flags (abfd,
415 (bed->rela_plts_and_copies_p
416 ? ".rela.plt" : ".rel.plt"),
417 flags | SEC_READONLY);
252b5132 418 if (s == NULL
45d6a902 419 || ! bfd_set_section_alignment (abfd, s, bed->s->log_file_align))
b34976b6 420 return FALSE;
6de2ae4a 421 htab->srelplt = s;
252b5132
RH
422
423 if (! _bfd_elf_create_got_section (abfd, info))
b34976b6 424 return FALSE;
252b5132 425
3018b441
RH
426 if (bed->want_dynbss)
427 {
428 /* The .dynbss section is a place to put symbols which are defined
429 by dynamic objects, are referenced by regular objects, and are
430 not functions. We must allocate space for them in the process
431 image and use a R_*_COPY reloc to tell the dynamic linker to
432 initialize them at run time. The linker script puts the .dynbss
433 section into the .bss section of the final image. */
14b2f831 434 s = bfd_make_section_anyway_with_flags (abfd, ".dynbss",
afbf7e8e 435 SEC_ALLOC | SEC_LINKER_CREATED);
3496cb2a 436 if (s == NULL)
b34976b6 437 return FALSE;
9d19e4fd 438 htab->sdynbss = s;
252b5132 439
5474d94f
AM
440 if (bed->want_dynrelro)
441 {
442 /* Similarly, but for symbols that were originally in read-only
afbf7e8e
AM
443 sections. This section doesn't really need to have contents,
444 but make it like other .data.rel.ro sections. */
5474d94f 445 s = bfd_make_section_anyway_with_flags (abfd, ".data.rel.ro",
afbf7e8e 446 flags);
5474d94f
AM
447 if (s == NULL)
448 return FALSE;
449 htab->sdynrelro = s;
450 }
451
3018b441 452 /* The .rel[a].bss section holds copy relocs. This section is not
77cfaee6
AM
453 normally needed. We need to create it here, though, so that the
454 linker will map it to an output section. We can't just create it
455 only if we need it, because we will not know whether we need it
456 until we have seen all the input files, and the first time the
457 main linker code calls BFD after examining all the input files
458 (size_dynamic_sections) the input sections have already been
459 mapped to the output sections. If the section turns out not to
460 be needed, we can discard it later. We will never need this
461 section when generating a shared object, since they do not use
462 copy relocs. */
9d19e4fd 463 if (bfd_link_executable (info))
3018b441 464 {
14b2f831
AM
465 s = bfd_make_section_anyway_with_flags (abfd,
466 (bed->rela_plts_and_copies_p
467 ? ".rela.bss" : ".rel.bss"),
468 flags | SEC_READONLY);
3018b441 469 if (s == NULL
45d6a902 470 || ! bfd_set_section_alignment (abfd, s, bed->s->log_file_align))
b34976b6 471 return FALSE;
9d19e4fd 472 htab->srelbss = s;
5474d94f
AM
473
474 if (bed->want_dynrelro)
475 {
476 s = (bfd_make_section_anyway_with_flags
477 (abfd, (bed->rela_plts_and_copies_p
478 ? ".rela.data.rel.ro" : ".rel.data.rel.ro"),
479 flags | SEC_READONLY));
480 if (s == NULL
481 || ! bfd_set_section_alignment (abfd, s,
482 bed->s->log_file_align))
483 return FALSE;
484 htab->sreldynrelro = s;
485 }
3018b441 486 }
252b5132
RH
487 }
488
b34976b6 489 return TRUE;
252b5132
RH
490}
491\f
252b5132
RH
492/* Record a new dynamic symbol. We record the dynamic symbols as we
493 read the input files, since we need to have a list of all of them
494 before we can determine the final sizes of the output sections.
495 Note that we may actually call this function even though we are not
496 going to output any dynamic symbols; in some cases we know that a
497 symbol should be in the dynamic symbol table, but only if there is
498 one. */
499
b34976b6 500bfd_boolean
c152c796
AM
501bfd_elf_link_record_dynamic_symbol (struct bfd_link_info *info,
502 struct elf_link_hash_entry *h)
252b5132
RH
503{
504 if (h->dynindx == -1)
505 {
2b0f7ef9 506 struct elf_strtab_hash *dynstr;
68b6ddd0 507 char *p;
252b5132 508 const char *name;
ef53be89 509 size_t indx;
252b5132 510
7a13edea
NC
511 /* XXX: The ABI draft says the linker must turn hidden and
512 internal symbols into STB_LOCAL symbols when producing the
513 DSO. However, if ld.so honors st_other in the dynamic table,
514 this would not be necessary. */
515 switch (ELF_ST_VISIBILITY (h->other))
516 {
517 case STV_INTERNAL:
518 case STV_HIDDEN:
9d6eee78
L
519 if (h->root.type != bfd_link_hash_undefined
520 && h->root.type != bfd_link_hash_undefweak)
38048eb9 521 {
f5385ebf 522 h->forced_local = 1;
67687978
PB
523 if (!elf_hash_table (info)->is_relocatable_executable)
524 return TRUE;
7a13edea 525 }
0444bdd4 526
7a13edea
NC
527 default:
528 break;
529 }
530
252b5132
RH
531 h->dynindx = elf_hash_table (info)->dynsymcount;
532 ++elf_hash_table (info)->dynsymcount;
533
534 dynstr = elf_hash_table (info)->dynstr;
535 if (dynstr == NULL)
536 {
537 /* Create a strtab to hold the dynamic symbol names. */
2b0f7ef9 538 elf_hash_table (info)->dynstr = dynstr = _bfd_elf_strtab_init ();
252b5132 539 if (dynstr == NULL)
b34976b6 540 return FALSE;
252b5132
RH
541 }
542
543 /* We don't put any version information in the dynamic string
aad5d350 544 table. */
252b5132
RH
545 name = h->root.root.string;
546 p = strchr (name, ELF_VER_CHR);
68b6ddd0
AM
547 if (p != NULL)
548 /* We know that the p points into writable memory. In fact,
549 there are only a few symbols that have read-only names, being
550 those like _GLOBAL_OFFSET_TABLE_ that are created specially
551 by the backends. Most symbols will have names pointing into
552 an ELF string table read from a file, or to objalloc memory. */
553 *p = 0;
554
555 indx = _bfd_elf_strtab_add (dynstr, name, p != NULL);
556
557 if (p != NULL)
558 *p = ELF_VER_CHR;
252b5132 559
ef53be89 560 if (indx == (size_t) -1)
b34976b6 561 return FALSE;
252b5132
RH
562 h->dynstr_index = indx;
563 }
564
b34976b6 565 return TRUE;
252b5132 566}
45d6a902 567\f
55255dae
L
568/* Mark a symbol dynamic. */
569
28caa186 570static void
55255dae 571bfd_elf_link_mark_dynamic_symbol (struct bfd_link_info *info,
40b36307
L
572 struct elf_link_hash_entry *h,
573 Elf_Internal_Sym *sym)
55255dae 574{
40b36307 575 struct bfd_elf_dynamic_list *d = info->dynamic_list;
55255dae 576
40b36307 577 /* It may be called more than once on the same H. */
0e1862bb 578 if(h->dynamic || bfd_link_relocatable (info))
55255dae
L
579 return;
580
40b36307
L
581 if ((info->dynamic_data
582 && (h->type == STT_OBJECT
b8871f35 583 || h->type == STT_COMMON
40b36307 584 || (sym != NULL
b8871f35
L
585 && (ELF_ST_TYPE (sym->st_info) == STT_OBJECT
586 || ELF_ST_TYPE (sym->st_info) == STT_COMMON))))
a0c8462f 587 || (d != NULL
73ec947d 588 && h->non_elf
40b36307 589 && (*d->match) (&d->head, NULL, h->root.root.string)))
416c34d6
L
590 {
591 h->dynamic = 1;
592 /* NB: If a symbol is made dynamic by --dynamic-list, it has
593 non-IR reference. */
594 h->root.non_ir_ref_dynamic = 1;
595 }
55255dae
L
596}
597
45d6a902
AM
598/* Record an assignment to a symbol made by a linker script. We need
599 this in case some dynamic object refers to this symbol. */
600
601bfd_boolean
fe21a8fc
L
602bfd_elf_record_link_assignment (bfd *output_bfd,
603 struct bfd_link_info *info,
268b6b39 604 const char *name,
fe21a8fc
L
605 bfd_boolean provide,
606 bfd_boolean hidden)
45d6a902 607{
00cbee0a 608 struct elf_link_hash_entry *h, *hv;
4ea42fb7 609 struct elf_link_hash_table *htab;
00cbee0a 610 const struct elf_backend_data *bed;
45d6a902 611
0eddce27 612 if (!is_elf_hash_table (info->hash))
45d6a902
AM
613 return TRUE;
614
4ea42fb7
AM
615 htab = elf_hash_table (info);
616 h = elf_link_hash_lookup (htab, name, !provide, TRUE, FALSE);
45d6a902 617 if (h == NULL)
4ea42fb7 618 return provide;
45d6a902 619
8e2a4f11
AM
620 if (h->root.type == bfd_link_hash_warning)
621 h = (struct elf_link_hash_entry *) h->root.u.i.link;
622
0f550b3d
L
623 if (h->versioned == unknown)
624 {
625 /* Set versioned if symbol version is unknown. */
626 char *version = strrchr (name, ELF_VER_CHR);
627 if (version)
628 {
629 if (version > name && version[-1] != ELF_VER_CHR)
630 h->versioned = versioned_hidden;
631 else
632 h->versioned = versioned;
633 }
634 }
635
73ec947d
AM
636 /* Symbols defined in a linker script but not referenced anywhere
637 else will have non_elf set. */
638 if (h->non_elf)
639 {
640 bfd_elf_link_mark_dynamic_symbol (info, h, NULL);
641 h->non_elf = 0;
642 }
643
00cbee0a 644 switch (h->root.type)
77cfaee6 645 {
00cbee0a
L
646 case bfd_link_hash_defined:
647 case bfd_link_hash_defweak:
648 case bfd_link_hash_common:
649 break;
650 case bfd_link_hash_undefweak:
651 case bfd_link_hash_undefined:
652 /* Since we're defining the symbol, don't let it seem to have not
653 been defined. record_dynamic_symbol and size_dynamic_sections
654 may depend on this. */
4ea42fb7 655 h->root.type = bfd_link_hash_new;
77cfaee6
AM
656 if (h->root.u.undef.next != NULL || htab->root.undefs_tail == &h->root)
657 bfd_link_repair_undef_list (&htab->root);
00cbee0a
L
658 break;
659 case bfd_link_hash_new:
00cbee0a
L
660 break;
661 case bfd_link_hash_indirect:
662 /* We had a versioned symbol in a dynamic library. We make the
a0c8462f 663 the versioned symbol point to this one. */
00cbee0a
L
664 bed = get_elf_backend_data (output_bfd);
665 hv = h;
666 while (hv->root.type == bfd_link_hash_indirect
667 || hv->root.type == bfd_link_hash_warning)
668 hv = (struct elf_link_hash_entry *) hv->root.u.i.link;
669 /* We don't need to update h->root.u since linker will set them
670 later. */
671 h->root.type = bfd_link_hash_undefined;
672 hv->root.type = bfd_link_hash_indirect;
673 hv->root.u.i.link = (struct bfd_link_hash_entry *) h;
674 (*bed->elf_backend_copy_indirect_symbol) (info, h, hv);
675 break;
8e2a4f11
AM
676 default:
677 BFD_FAIL ();
c2596ca5 678 return FALSE;
55255dae 679 }
45d6a902
AM
680
681 /* If this symbol is being provided by the linker script, and it is
682 currently defined by a dynamic object, but not by a regular
683 object, then mark it as undefined so that the generic linker will
684 force the correct value. */
685 if (provide
f5385ebf
AM
686 && h->def_dynamic
687 && !h->def_regular)
45d6a902
AM
688 h->root.type = bfd_link_hash_undefined;
689
48e30f52
L
690 /* If this symbol is currently defined by a dynamic object, but not
691 by a regular object, then clear out any version information because
692 the symbol will not be associated with the dynamic object any
693 more. */
694 if (h->def_dynamic && !h->def_regular)
b531344c
MR
695 h->verinfo.verdef = NULL;
696
697 /* Make sure this symbol is not garbage collected. */
698 h->mark = 1;
45d6a902 699
f5385ebf 700 h->def_regular = 1;
45d6a902 701
eb8476a6 702 if (hidden)
fe21a8fc 703 {
91d6fa6a 704 bed = get_elf_backend_data (output_bfd);
b8297068
AM
705 if (ELF_ST_VISIBILITY (h->other) != STV_INTERNAL)
706 h->other = (h->other & ~ELF_ST_VISIBILITY (-1)) | STV_HIDDEN;
fe21a8fc
L
707 (*bed->elf_backend_hide_symbol) (info, h, TRUE);
708 }
709
6fa3860b
PB
710 /* STV_HIDDEN and STV_INTERNAL symbols must be STB_LOCAL in shared objects
711 and executables. */
0e1862bb 712 if (!bfd_link_relocatable (info)
6fa3860b
PB
713 && h->dynindx != -1
714 && (ELF_ST_VISIBILITY (h->other) == STV_HIDDEN
715 || ELF_ST_VISIBILITY (h->other) == STV_INTERNAL))
716 h->forced_local = 1;
717
f5385ebf
AM
718 if ((h->def_dynamic
719 || h->ref_dynamic
6b3b0ab8
L
720 || bfd_link_dll (info)
721 || elf_hash_table (info)->is_relocatable_executable)
34a87bb0 722 && !h->forced_local
45d6a902
AM
723 && h->dynindx == -1)
724 {
c152c796 725 if (! bfd_elf_link_record_dynamic_symbol (info, h))
45d6a902
AM
726 return FALSE;
727
728 /* If this is a weak defined symbol, and we know a corresponding
729 real symbol from the same dynamic object, make sure the real
730 symbol is also made into a dynamic symbol. */
60d67dc8 731 if (h->is_weakalias)
45d6a902 732 {
60d67dc8
AM
733 struct elf_link_hash_entry *def = weakdef (h);
734
735 if (def->dynindx == -1
736 && !bfd_elf_link_record_dynamic_symbol (info, def))
45d6a902
AM
737 return FALSE;
738 }
739 }
740
741 return TRUE;
742}
42751cf3 743
8c58d23b
AM
744/* Record a new local dynamic symbol. Returns 0 on failure, 1 on
745 success, and 2 on a failure caused by attempting to record a symbol
746 in a discarded section, eg. a discarded link-once section symbol. */
747
748int
c152c796
AM
749bfd_elf_link_record_local_dynamic_symbol (struct bfd_link_info *info,
750 bfd *input_bfd,
751 long input_indx)
8c58d23b
AM
752{
753 bfd_size_type amt;
754 struct elf_link_local_dynamic_entry *entry;
755 struct elf_link_hash_table *eht;
756 struct elf_strtab_hash *dynstr;
ef53be89 757 size_t dynstr_index;
8c58d23b
AM
758 char *name;
759 Elf_External_Sym_Shndx eshndx;
760 char esym[sizeof (Elf64_External_Sym)];
761
0eddce27 762 if (! is_elf_hash_table (info->hash))
8c58d23b
AM
763 return 0;
764
765 /* See if the entry exists already. */
766 for (entry = elf_hash_table (info)->dynlocal; entry ; entry = entry->next)
767 if (entry->input_bfd == input_bfd && entry->input_indx == input_indx)
768 return 1;
769
770 amt = sizeof (*entry);
a50b1753 771 entry = (struct elf_link_local_dynamic_entry *) bfd_alloc (input_bfd, amt);
8c58d23b
AM
772 if (entry == NULL)
773 return 0;
774
775 /* Go find the symbol, so that we can find it's name. */
776 if (!bfd_elf_get_elf_syms (input_bfd, &elf_tdata (input_bfd)->symtab_hdr,
268b6b39 777 1, input_indx, &entry->isym, esym, &eshndx))
8c58d23b
AM
778 {
779 bfd_release (input_bfd, entry);
780 return 0;
781 }
782
783 if (entry->isym.st_shndx != SHN_UNDEF
4fbb74a6 784 && entry->isym.st_shndx < SHN_LORESERVE)
8c58d23b
AM
785 {
786 asection *s;
787
788 s = bfd_section_from_elf_index (input_bfd, entry->isym.st_shndx);
789 if (s == NULL || bfd_is_abs_section (s->output_section))
790 {
791 /* We can still bfd_release here as nothing has done another
792 bfd_alloc. We can't do this later in this function. */
793 bfd_release (input_bfd, entry);
794 return 2;
795 }
796 }
797
798 name = (bfd_elf_string_from_elf_section
799 (input_bfd, elf_tdata (input_bfd)->symtab_hdr.sh_link,
800 entry->isym.st_name));
801
802 dynstr = elf_hash_table (info)->dynstr;
803 if (dynstr == NULL)
804 {
805 /* Create a strtab to hold the dynamic symbol names. */
806 elf_hash_table (info)->dynstr = dynstr = _bfd_elf_strtab_init ();
807 if (dynstr == NULL)
808 return 0;
809 }
810
b34976b6 811 dynstr_index = _bfd_elf_strtab_add (dynstr, name, FALSE);
ef53be89 812 if (dynstr_index == (size_t) -1)
8c58d23b
AM
813 return 0;
814 entry->isym.st_name = dynstr_index;
815
816 eht = elf_hash_table (info);
817
818 entry->next = eht->dynlocal;
819 eht->dynlocal = entry;
820 entry->input_bfd = input_bfd;
821 entry->input_indx = input_indx;
822 eht->dynsymcount++;
823
824 /* Whatever binding the symbol had before, it's now local. */
825 entry->isym.st_info
826 = ELF_ST_INFO (STB_LOCAL, ELF_ST_TYPE (entry->isym.st_info));
827
828 /* The dynindx will be set at the end of size_dynamic_sections. */
829
830 return 1;
831}
832
30b30c21 833/* Return the dynindex of a local dynamic symbol. */
42751cf3 834
30b30c21 835long
268b6b39
AM
836_bfd_elf_link_lookup_local_dynindx (struct bfd_link_info *info,
837 bfd *input_bfd,
838 long input_indx)
30b30c21
RH
839{
840 struct elf_link_local_dynamic_entry *e;
841
842 for (e = elf_hash_table (info)->dynlocal; e ; e = e->next)
843 if (e->input_bfd == input_bfd && e->input_indx == input_indx)
844 return e->dynindx;
845 return -1;
846}
847
848/* This function is used to renumber the dynamic symbols, if some of
849 them are removed because they are marked as local. This is called
850 via elf_link_hash_traverse. */
851
b34976b6 852static bfd_boolean
268b6b39
AM
853elf_link_renumber_hash_table_dynsyms (struct elf_link_hash_entry *h,
854 void *data)
42751cf3 855{
a50b1753 856 size_t *count = (size_t *) data;
30b30c21 857
6fa3860b
PB
858 if (h->forced_local)
859 return TRUE;
860
861 if (h->dynindx != -1)
862 h->dynindx = ++(*count);
863
864 return TRUE;
865}
866
867
868/* Like elf_link_renumber_hash_table_dynsyms, but just number symbols with
869 STB_LOCAL binding. */
870
871static bfd_boolean
872elf_link_renumber_local_hash_table_dynsyms (struct elf_link_hash_entry *h,
873 void *data)
874{
a50b1753 875 size_t *count = (size_t *) data;
6fa3860b 876
6fa3860b
PB
877 if (!h->forced_local)
878 return TRUE;
879
42751cf3 880 if (h->dynindx != -1)
30b30c21
RH
881 h->dynindx = ++(*count);
882
b34976b6 883 return TRUE;
42751cf3 884}
30b30c21 885
aee6f5b4
AO
886/* Return true if the dynamic symbol for a given section should be
887 omitted when creating a shared library. */
888bfd_boolean
d00dd7dc
AM
889_bfd_elf_omit_section_dynsym_default (bfd *output_bfd ATTRIBUTE_UNUSED,
890 struct bfd_link_info *info,
891 asection *p)
aee6f5b4 892{
74541ad4 893 struct elf_link_hash_table *htab;
ca55926c 894 asection *ip;
74541ad4 895
aee6f5b4
AO
896 switch (elf_section_data (p)->this_hdr.sh_type)
897 {
898 case SHT_PROGBITS:
899 case SHT_NOBITS:
900 /* If sh_type is yet undecided, assume it could be
901 SHT_PROGBITS/SHT_NOBITS. */
902 case SHT_NULL:
74541ad4
AM
903 htab = elf_hash_table (info);
904 if (p == htab->tls_sec)
905 return FALSE;
906
907 if (htab->text_index_section != NULL)
908 return p != htab->text_index_section && p != htab->data_index_section;
909
ca55926c 910 return (htab->dynobj != NULL
3d4d4302 911 && (ip = bfd_get_linker_section (htab->dynobj, p->name)) != NULL
ca55926c 912 && ip->output_section == p);
aee6f5b4
AO
913
914 /* There shouldn't be section relative relocations
915 against any other section. */
916 default:
917 return TRUE;
918 }
919}
920
d00dd7dc
AM
921bfd_boolean
922_bfd_elf_omit_section_dynsym_all
923 (bfd *output_bfd ATTRIBUTE_UNUSED,
924 struct bfd_link_info *info ATTRIBUTE_UNUSED,
925 asection *p ATTRIBUTE_UNUSED)
926{
927 return TRUE;
928}
929
062e2358 930/* Assign dynsym indices. In a shared library we generate a section
6fa3860b
PB
931 symbol for each output section, which come first. Next come symbols
932 which have been forced to local binding. Then all of the back-end
933 allocated local dynamic syms, followed by the rest of the global
63f452a8
AM
934 symbols. If SECTION_SYM_COUNT is NULL, section dynindx is not set.
935 (This prevents the early call before elf_backend_init_index_section
936 and strip_excluded_output_sections setting dynindx for sections
937 that are stripped.) */
30b30c21 938
554220db
AM
939static unsigned long
940_bfd_elf_link_renumber_dynsyms (bfd *output_bfd,
941 struct bfd_link_info *info,
942 unsigned long *section_sym_count)
30b30c21
RH
943{
944 unsigned long dynsymcount = 0;
63f452a8 945 bfd_boolean do_sec = section_sym_count != NULL;
30b30c21 946
0e1862bb
L
947 if (bfd_link_pic (info)
948 || elf_hash_table (info)->is_relocatable_executable)
30b30c21 949 {
aee6f5b4 950 const struct elf_backend_data *bed = get_elf_backend_data (output_bfd);
30b30c21
RH
951 asection *p;
952 for (p = output_bfd->sections; p ; p = p->next)
8c37241b 953 if ((p->flags & SEC_EXCLUDE) == 0
aee6f5b4 954 && (p->flags & SEC_ALLOC) != 0
7f923b7f 955 && elf_hash_table (info)->dynamic_relocs
aee6f5b4 956 && !(*bed->elf_backend_omit_section_dynsym) (output_bfd, info, p))
63f452a8
AM
957 {
958 ++dynsymcount;
959 if (do_sec)
960 elf_section_data (p)->dynindx = dynsymcount;
961 }
962 else if (do_sec)
74541ad4 963 elf_section_data (p)->dynindx = 0;
30b30c21 964 }
63f452a8
AM
965 if (do_sec)
966 *section_sym_count = dynsymcount;
30b30c21 967
6fa3860b
PB
968 elf_link_hash_traverse (elf_hash_table (info),
969 elf_link_renumber_local_hash_table_dynsyms,
970 &dynsymcount);
971
30b30c21
RH
972 if (elf_hash_table (info)->dynlocal)
973 {
974 struct elf_link_local_dynamic_entry *p;
975 for (p = elf_hash_table (info)->dynlocal; p ; p = p->next)
976 p->dynindx = ++dynsymcount;
977 }
90ac2420 978 elf_hash_table (info)->local_dynsymcount = dynsymcount;
30b30c21
RH
979
980 elf_link_hash_traverse (elf_hash_table (info),
981 elf_link_renumber_hash_table_dynsyms,
982 &dynsymcount);
983
d5486c43
L
984 /* There is an unused NULL entry at the head of the table which we
985 must account for in our count even if the table is empty since it
986 is intended for the mandatory DT_SYMTAB tag (.dynsym section) in
987 .dynamic section. */
988 dynsymcount++;
30b30c21 989
ccabcbe5
AM
990 elf_hash_table (info)->dynsymcount = dynsymcount;
991 return dynsymcount;
30b30c21 992}
252b5132 993
54ac0771
L
994/* Merge st_other field. */
995
996static void
997elf_merge_st_other (bfd *abfd, struct elf_link_hash_entry *h,
b8417128 998 const Elf_Internal_Sym *isym, asection *sec,
cd3416da 999 bfd_boolean definition, bfd_boolean dynamic)
54ac0771
L
1000{
1001 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
1002
1003 /* If st_other has a processor-specific meaning, specific
cd3416da 1004 code might be needed here. */
54ac0771
L
1005 if (bed->elf_backend_merge_symbol_attribute)
1006 (*bed->elf_backend_merge_symbol_attribute) (h, isym, definition,
1007 dynamic);
1008
cd3416da 1009 if (!dynamic)
54ac0771 1010 {
cd3416da
AM
1011 unsigned symvis = ELF_ST_VISIBILITY (isym->st_other);
1012 unsigned hvis = ELF_ST_VISIBILITY (h->other);
54ac0771 1013
cd3416da
AM
1014 /* Keep the most constraining visibility. Leave the remainder
1015 of the st_other field to elf_backend_merge_symbol_attribute. */
1016 if (symvis - 1 < hvis - 1)
1017 h->other = symvis | (h->other & ~ELF_ST_VISIBILITY (-1));
54ac0771 1018 }
b8417128
AM
1019 else if (definition
1020 && ELF_ST_VISIBILITY (isym->st_other) != STV_DEFAULT
1021 && (sec->flags & SEC_READONLY) == 0)
6cabe1ea 1022 h->protected_def = 1;
54ac0771
L
1023}
1024
4f3fedcf
AM
1025/* This function is called when we want to merge a new symbol with an
1026 existing symbol. It handles the various cases which arise when we
1027 find a definition in a dynamic object, or when there is already a
1028 definition in a dynamic object. The new symbol is described by
1029 NAME, SYM, PSEC, and PVALUE. We set SYM_HASH to the hash table
1030 entry. We set POLDBFD to the old symbol's BFD. We set POLD_WEAK
1031 if the old symbol was weak. We set POLD_ALIGNMENT to the alignment
1032 of an old common symbol. We set OVERRIDE if the old symbol is
1033 overriding a new definition. We set TYPE_CHANGE_OK if it is OK for
1034 the type to change. We set SIZE_CHANGE_OK if it is OK for the size
1035 to change. By OK to change, we mean that we shouldn't warn if the
1036 type or size does change. */
45d6a902 1037
8a56bd02 1038static bfd_boolean
268b6b39
AM
1039_bfd_elf_merge_symbol (bfd *abfd,
1040 struct bfd_link_info *info,
1041 const char *name,
1042 Elf_Internal_Sym *sym,
1043 asection **psec,
1044 bfd_vma *pvalue,
4f3fedcf
AM
1045 struct elf_link_hash_entry **sym_hash,
1046 bfd **poldbfd,
37a9e49a 1047 bfd_boolean *pold_weak,
af44c138 1048 unsigned int *pold_alignment,
268b6b39
AM
1049 bfd_boolean *skip,
1050 bfd_boolean *override,
1051 bfd_boolean *type_change_ok,
6e33951e
L
1052 bfd_boolean *size_change_ok,
1053 bfd_boolean *matched)
252b5132 1054{
7479dfd4 1055 asection *sec, *oldsec;
45d6a902 1056 struct elf_link_hash_entry *h;
90c984fc 1057 struct elf_link_hash_entry *hi;
45d6a902
AM
1058 struct elf_link_hash_entry *flip;
1059 int bind;
1060 bfd *oldbfd;
1061 bfd_boolean newdyn, olddyn, olddef, newdef, newdyncommon, olddyncommon;
0a36a439 1062 bfd_boolean newweak, oldweak, newfunc, oldfunc;
a4d8e49b 1063 const struct elf_backend_data *bed;
6e33951e 1064 char *new_version;
93f4de39 1065 bfd_boolean default_sym = *matched;
45d6a902
AM
1066
1067 *skip = FALSE;
1068 *override = FALSE;
1069
1070 sec = *psec;
1071 bind = ELF_ST_BIND (sym->st_info);
1072
1073 if (! bfd_is_und_section (sec))
1074 h = elf_link_hash_lookup (elf_hash_table (info), name, TRUE, FALSE, FALSE);
1075 else
1076 h = ((struct elf_link_hash_entry *)
1077 bfd_wrapped_link_hash_lookup (abfd, info, name, TRUE, FALSE, FALSE));
1078 if (h == NULL)
1079 return FALSE;
1080 *sym_hash = h;
252b5132 1081
88ba32a0
L
1082 bed = get_elf_backend_data (abfd);
1083
6e33951e 1084 /* NEW_VERSION is the symbol version of the new symbol. */
422f1182 1085 if (h->versioned != unversioned)
6e33951e 1086 {
422f1182
L
1087 /* Symbol version is unknown or versioned. */
1088 new_version = strrchr (name, ELF_VER_CHR);
1089 if (new_version)
1090 {
1091 if (h->versioned == unknown)
1092 {
1093 if (new_version > name && new_version[-1] != ELF_VER_CHR)
1094 h->versioned = versioned_hidden;
1095 else
1096 h->versioned = versioned;
1097 }
1098 new_version += 1;
1099 if (new_version[0] == '\0')
1100 new_version = NULL;
1101 }
1102 else
1103 h->versioned = unversioned;
6e33951e 1104 }
422f1182
L
1105 else
1106 new_version = NULL;
6e33951e 1107
90c984fc
L
1108 /* For merging, we only care about real symbols. But we need to make
1109 sure that indirect symbol dynamic flags are updated. */
1110 hi = h;
45d6a902
AM
1111 while (h->root.type == bfd_link_hash_indirect
1112 || h->root.type == bfd_link_hash_warning)
1113 h = (struct elf_link_hash_entry *) h->root.u.i.link;
1114
6e33951e
L
1115 if (!*matched)
1116 {
1117 if (hi == h || h->root.type == bfd_link_hash_new)
1118 *matched = TRUE;
1119 else
1120 {
ae7683d2 1121 /* OLD_HIDDEN is true if the existing symbol is only visible
6e33951e 1122 to the symbol with the same symbol version. NEW_HIDDEN is
ae7683d2 1123 true if the new symbol is only visible to the symbol with
6e33951e 1124 the same symbol version. */
422f1182
L
1125 bfd_boolean old_hidden = h->versioned == versioned_hidden;
1126 bfd_boolean new_hidden = hi->versioned == versioned_hidden;
6e33951e
L
1127 if (!old_hidden && !new_hidden)
1128 /* The new symbol matches the existing symbol if both
1129 aren't hidden. */
1130 *matched = TRUE;
1131 else
1132 {
1133 /* OLD_VERSION is the symbol version of the existing
1134 symbol. */
422f1182
L
1135 char *old_version;
1136
1137 if (h->versioned >= versioned)
1138 old_version = strrchr (h->root.root.string,
1139 ELF_VER_CHR) + 1;
1140 else
1141 old_version = NULL;
6e33951e
L
1142
1143 /* The new symbol matches the existing symbol if they
1144 have the same symbol version. */
1145 *matched = (old_version == new_version
1146 || (old_version != NULL
1147 && new_version != NULL
1148 && strcmp (old_version, new_version) == 0));
1149 }
1150 }
1151 }
1152
934bce08
AM
1153 /* OLDBFD and OLDSEC are a BFD and an ASECTION associated with the
1154 existing symbol. */
1155
1156 oldbfd = NULL;
1157 oldsec = NULL;
1158 switch (h->root.type)
1159 {
1160 default:
1161 break;
1162
1163 case bfd_link_hash_undefined:
1164 case bfd_link_hash_undefweak:
1165 oldbfd = h->root.u.undef.abfd;
1166 break;
1167
1168 case bfd_link_hash_defined:
1169 case bfd_link_hash_defweak:
1170 oldbfd = h->root.u.def.section->owner;
1171 oldsec = h->root.u.def.section;
1172 break;
1173
1174 case bfd_link_hash_common:
1175 oldbfd = h->root.u.c.p->section->owner;
1176 oldsec = h->root.u.c.p->section;
1177 if (pold_alignment)
1178 *pold_alignment = h->root.u.c.p->alignment_power;
1179 break;
1180 }
1181 if (poldbfd && *poldbfd == NULL)
1182 *poldbfd = oldbfd;
1183
1184 /* Differentiate strong and weak symbols. */
1185 newweak = bind == STB_WEAK;
1186 oldweak = (h->root.type == bfd_link_hash_defweak
1187 || h->root.type == bfd_link_hash_undefweak);
1188 if (pold_weak)
1189 *pold_weak = oldweak;
1190
40b36307 1191 /* We have to check it for every instance since the first few may be
ee659f1f 1192 references and not all compilers emit symbol type for undefined
40b36307
L
1193 symbols. */
1194 bfd_elf_link_mark_dynamic_symbol (info, h, sym);
1195
ee659f1f
AM
1196 /* NEWDYN and OLDDYN indicate whether the new or old symbol,
1197 respectively, is from a dynamic object. */
1198
1199 newdyn = (abfd->flags & DYNAMIC) != 0;
1200
1201 /* ref_dynamic_nonweak and dynamic_def flags track actual undefined
1202 syms and defined syms in dynamic libraries respectively.
1203 ref_dynamic on the other hand can be set for a symbol defined in
1204 a dynamic library, and def_dynamic may not be set; When the
1205 definition in a dynamic lib is overridden by a definition in the
1206 executable use of the symbol in the dynamic lib becomes a
1207 reference to the executable symbol. */
1208 if (newdyn)
1209 {
1210 if (bfd_is_und_section (sec))
1211 {
1212 if (bind != STB_WEAK)
1213 {
1214 h->ref_dynamic_nonweak = 1;
1215 hi->ref_dynamic_nonweak = 1;
1216 }
1217 }
1218 else
1219 {
6e33951e
L
1220 /* Update the existing symbol only if they match. */
1221 if (*matched)
1222 h->dynamic_def = 1;
ee659f1f
AM
1223 hi->dynamic_def = 1;
1224 }
1225 }
1226
45d6a902
AM
1227 /* If we just created the symbol, mark it as being an ELF symbol.
1228 Other than that, there is nothing to do--there is no merge issue
1229 with a newly defined symbol--so we just return. */
1230
1231 if (h->root.type == bfd_link_hash_new)
252b5132 1232 {
f5385ebf 1233 h->non_elf = 0;
45d6a902
AM
1234 return TRUE;
1235 }
252b5132 1236
45d6a902
AM
1237 /* In cases involving weak versioned symbols, we may wind up trying
1238 to merge a symbol with itself. Catch that here, to avoid the
1239 confusion that results if we try to override a symbol with
1240 itself. The additional tests catch cases like
1241 _GLOBAL_OFFSET_TABLE_, which are regular symbols defined in a
1242 dynamic object, which we do want to handle here. */
1243 if (abfd == oldbfd
895fa45f 1244 && (newweak || oldweak)
45d6a902 1245 && ((abfd->flags & DYNAMIC) == 0
f5385ebf 1246 || !h->def_regular))
45d6a902
AM
1247 return TRUE;
1248
707bba77 1249 olddyn = FALSE;
45d6a902
AM
1250 if (oldbfd != NULL)
1251 olddyn = (oldbfd->flags & DYNAMIC) != 0;
707bba77 1252 else if (oldsec != NULL)
45d6a902 1253 {
707bba77 1254 /* This handles the special SHN_MIPS_{TEXT,DATA} section
45d6a902 1255 indices used by MIPS ELF. */
707bba77 1256 olddyn = (oldsec->symbol->flags & BSF_DYNAMIC) != 0;
45d6a902 1257 }
252b5132 1258
1a3b5c34
AM
1259 /* Handle a case where plugin_notice won't be called and thus won't
1260 set the non_ir_ref flags on the first pass over symbols. */
1261 if (oldbfd != NULL
1262 && (oldbfd->flags & BFD_PLUGIN) != (abfd->flags & BFD_PLUGIN)
1263 && newdyn != olddyn)
1264 {
1265 h->root.non_ir_ref_dynamic = TRUE;
1266 hi->root.non_ir_ref_dynamic = TRUE;
1267 }
1268
45d6a902
AM
1269 /* NEWDEF and OLDDEF indicate whether the new or old symbol,
1270 respectively, appear to be a definition rather than reference. */
1271
707bba77 1272 newdef = !bfd_is_und_section (sec) && !bfd_is_com_section (sec);
45d6a902 1273
707bba77
AM
1274 olddef = (h->root.type != bfd_link_hash_undefined
1275 && h->root.type != bfd_link_hash_undefweak
202ac193 1276 && h->root.type != bfd_link_hash_common);
45d6a902 1277
0a36a439
L
1278 /* NEWFUNC and OLDFUNC indicate whether the new or old symbol,
1279 respectively, appear to be a function. */
1280
1281 newfunc = (ELF_ST_TYPE (sym->st_info) != STT_NOTYPE
1282 && bed->is_function_type (ELF_ST_TYPE (sym->st_info)));
1283
1284 oldfunc = (h->type != STT_NOTYPE
1285 && bed->is_function_type (h->type));
1286
c5d37467 1287 if (!(newfunc && oldfunc)
5b677558
AM
1288 && ELF_ST_TYPE (sym->st_info) != h->type
1289 && ELF_ST_TYPE (sym->st_info) != STT_NOTYPE
1290 && h->type != STT_NOTYPE
c5d37467
AM
1291 && (newdef || bfd_is_com_section (sec))
1292 && (olddef || h->root.type == bfd_link_hash_common))
580a2b6e 1293 {
c5d37467
AM
1294 /* If creating a default indirect symbol ("foo" or "foo@") from
1295 a dynamic versioned definition ("foo@@") skip doing so if
1296 there is an existing regular definition with a different
1297 type. We don't want, for example, a "time" variable in the
1298 executable overriding a "time" function in a shared library. */
1299 if (newdyn
1300 && !olddyn)
1301 {
1302 *skip = TRUE;
1303 return TRUE;
1304 }
1305
1306 /* When adding a symbol from a regular object file after we have
1307 created indirect symbols, undo the indirection and any
1308 dynamic state. */
1309 if (hi != h
1310 && !newdyn
1311 && olddyn)
1312 {
1313 h = hi;
1314 (*bed->elf_backend_hide_symbol) (info, h, TRUE);
1315 h->forced_local = 0;
1316 h->ref_dynamic = 0;
1317 h->def_dynamic = 0;
1318 h->dynamic_def = 0;
1319 if (h->root.u.undef.next || info->hash->undefs_tail == &h->root)
1320 {
1321 h->root.type = bfd_link_hash_undefined;
1322 h->root.u.undef.abfd = abfd;
1323 }
1324 else
1325 {
1326 h->root.type = bfd_link_hash_new;
1327 h->root.u.undef.abfd = NULL;
1328 }
1329 return TRUE;
1330 }
580a2b6e
L
1331 }
1332
4c34aff8
AM
1333 /* Check TLS symbols. We don't check undefined symbols introduced
1334 by "ld -u" which have no type (and oldbfd NULL), and we don't
1335 check symbols from plugins because they also have no type. */
1336 if (oldbfd != NULL
1337 && (oldbfd->flags & BFD_PLUGIN) == 0
1338 && (abfd->flags & BFD_PLUGIN) == 0
1339 && ELF_ST_TYPE (sym->st_info) != h->type
1340 && (ELF_ST_TYPE (sym->st_info) == STT_TLS || h->type == STT_TLS))
7479dfd4
L
1341 {
1342 bfd *ntbfd, *tbfd;
1343 bfd_boolean ntdef, tdef;
1344 asection *ntsec, *tsec;
1345
1346 if (h->type == STT_TLS)
1347 {
3b36f7e6 1348 ntbfd = abfd;
7479dfd4
L
1349 ntsec = sec;
1350 ntdef = newdef;
1351 tbfd = oldbfd;
1352 tsec = oldsec;
1353 tdef = olddef;
1354 }
1355 else
1356 {
1357 ntbfd = oldbfd;
1358 ntsec = oldsec;
1359 ntdef = olddef;
1360 tbfd = abfd;
1361 tsec = sec;
1362 tdef = newdef;
1363 }
1364
1365 if (tdef && ntdef)
4eca0228 1366 _bfd_error_handler
695344c0 1367 /* xgettext:c-format */
871b3ab2
AM
1368 (_("%s: TLS definition in %pB section %pA "
1369 "mismatches non-TLS definition in %pB section %pA"),
c08bb8dd 1370 h->root.root.string, tbfd, tsec, ntbfd, ntsec);
7479dfd4 1371 else if (!tdef && !ntdef)
4eca0228 1372 _bfd_error_handler
695344c0 1373 /* xgettext:c-format */
871b3ab2
AM
1374 (_("%s: TLS reference in %pB "
1375 "mismatches non-TLS reference in %pB"),
c08bb8dd 1376 h->root.root.string, tbfd, ntbfd);
7479dfd4 1377 else if (tdef)
4eca0228 1378 _bfd_error_handler
695344c0 1379 /* xgettext:c-format */
871b3ab2
AM
1380 (_("%s: TLS definition in %pB section %pA "
1381 "mismatches non-TLS reference in %pB"),
c08bb8dd 1382 h->root.root.string, tbfd, tsec, ntbfd);
7479dfd4 1383 else
4eca0228 1384 _bfd_error_handler
695344c0 1385 /* xgettext:c-format */
871b3ab2
AM
1386 (_("%s: TLS reference in %pB "
1387 "mismatches non-TLS definition in %pB section %pA"),
c08bb8dd 1388 h->root.root.string, tbfd, ntbfd, ntsec);
7479dfd4
L
1389
1390 bfd_set_error (bfd_error_bad_value);
1391 return FALSE;
1392 }
1393
45d6a902
AM
1394 /* If the old symbol has non-default visibility, we ignore the new
1395 definition from a dynamic object. */
1396 if (newdyn
9c7a29a3 1397 && ELF_ST_VISIBILITY (h->other) != STV_DEFAULT
45d6a902
AM
1398 && !bfd_is_und_section (sec))
1399 {
1400 *skip = TRUE;
1401 /* Make sure this symbol is dynamic. */
f5385ebf 1402 h->ref_dynamic = 1;
90c984fc 1403 hi->ref_dynamic = 1;
45d6a902
AM
1404 /* A protected symbol has external availability. Make sure it is
1405 recorded as dynamic.
1406
1407 FIXME: Should we check type and size for protected symbol? */
1408 if (ELF_ST_VISIBILITY (h->other) == STV_PROTECTED)
c152c796 1409 return bfd_elf_link_record_dynamic_symbol (info, h);
45d6a902
AM
1410 else
1411 return TRUE;
1412 }
1413 else if (!newdyn
9c7a29a3 1414 && ELF_ST_VISIBILITY (sym->st_other) != STV_DEFAULT
f5385ebf 1415 && h->def_dynamic)
45d6a902
AM
1416 {
1417 /* If the new symbol with non-default visibility comes from a
1418 relocatable file and the old definition comes from a dynamic
1419 object, we remove the old definition. */
6c9b78e6 1420 if (hi->root.type == bfd_link_hash_indirect)
d2dee3b2
L
1421 {
1422 /* Handle the case where the old dynamic definition is
1423 default versioned. We need to copy the symbol info from
1424 the symbol with default version to the normal one if it
1425 was referenced before. */
1426 if (h->ref_regular)
1427 {
6c9b78e6 1428 hi->root.type = h->root.type;
d2dee3b2 1429 h->root.type = bfd_link_hash_indirect;
6c9b78e6 1430 (*bed->elf_backend_copy_indirect_symbol) (info, hi, h);
aed81c4e 1431
6c9b78e6 1432 h->root.u.i.link = (struct bfd_link_hash_entry *) hi;
aed81c4e 1433 if (ELF_ST_VISIBILITY (sym->st_other) != STV_PROTECTED)
d2dee3b2 1434 {
aed81c4e
MR
1435 /* If the new symbol is hidden or internal, completely undo
1436 any dynamic link state. */
1437 (*bed->elf_backend_hide_symbol) (info, h, TRUE);
1438 h->forced_local = 0;
1439 h->ref_dynamic = 0;
d2dee3b2
L
1440 }
1441 else
aed81c4e
MR
1442 h->ref_dynamic = 1;
1443
1444 h->def_dynamic = 0;
aed81c4e
MR
1445 /* FIXME: Should we check type and size for protected symbol? */
1446 h->size = 0;
1447 h->type = 0;
1448
6c9b78e6 1449 h = hi;
d2dee3b2
L
1450 }
1451 else
6c9b78e6 1452 h = hi;
d2dee3b2 1453 }
1de1a317 1454
f5eda473
AM
1455 /* If the old symbol was undefined before, then it will still be
1456 on the undefs list. If the new symbol is undefined or
1457 common, we can't make it bfd_link_hash_new here, because new
1458 undefined or common symbols will be added to the undefs list
1459 by _bfd_generic_link_add_one_symbol. Symbols may not be
1460 added twice to the undefs list. Also, if the new symbol is
1461 undefweak then we don't want to lose the strong undef. */
1462 if (h->root.u.undef.next || info->hash->undefs_tail == &h->root)
1de1a317 1463 {
1de1a317 1464 h->root.type = bfd_link_hash_undefined;
1de1a317
L
1465 h->root.u.undef.abfd = abfd;
1466 }
1467 else
1468 {
1469 h->root.type = bfd_link_hash_new;
1470 h->root.u.undef.abfd = NULL;
1471 }
1472
f5eda473 1473 if (ELF_ST_VISIBILITY (sym->st_other) != STV_PROTECTED)
252b5132 1474 {
f5eda473
AM
1475 /* If the new symbol is hidden or internal, completely undo
1476 any dynamic link state. */
1477 (*bed->elf_backend_hide_symbol) (info, h, TRUE);
1478 h->forced_local = 0;
1479 h->ref_dynamic = 0;
45d6a902 1480 }
f5eda473
AM
1481 else
1482 h->ref_dynamic = 1;
1483 h->def_dynamic = 0;
45d6a902
AM
1484 /* FIXME: Should we check type and size for protected symbol? */
1485 h->size = 0;
1486 h->type = 0;
1487 return TRUE;
1488 }
14a793b2 1489
15b43f48
AM
1490 /* If a new weak symbol definition comes from a regular file and the
1491 old symbol comes from a dynamic library, we treat the new one as
1492 strong. Similarly, an old weak symbol definition from a regular
1493 file is treated as strong when the new symbol comes from a dynamic
1494 library. Further, an old weak symbol from a dynamic library is
1495 treated as strong if the new symbol is from a dynamic library.
1496 This reflects the way glibc's ld.so works.
1497
165f707a
AM
1498 Also allow a weak symbol to override a linker script symbol
1499 defined by an early pass over the script. This is done so the
1500 linker knows the symbol is defined in an object file, for the
1501 DEFINED script function.
1502
15b43f48
AM
1503 Do this before setting *type_change_ok or *size_change_ok so that
1504 we warn properly when dynamic library symbols are overridden. */
1505
165f707a 1506 if (newdef && !newdyn && (olddyn || h->root.ldscript_def))
0f8a2703 1507 newweak = FALSE;
15b43f48 1508 if (olddef && newdyn)
0f8a2703
AM
1509 oldweak = FALSE;
1510
d334575b 1511 /* Allow changes between different types of function symbol. */
0a36a439 1512 if (newfunc && oldfunc)
fcb93ecf
PB
1513 *type_change_ok = TRUE;
1514
79349b09
AM
1515 /* It's OK to change the type if either the existing symbol or the
1516 new symbol is weak. A type change is also OK if the old symbol
1517 is undefined and the new symbol is defined. */
252b5132 1518
79349b09
AM
1519 if (oldweak
1520 || newweak
1521 || (newdef
1522 && h->root.type == bfd_link_hash_undefined))
1523 *type_change_ok = TRUE;
1524
1525 /* It's OK to change the size if either the existing symbol or the
1526 new symbol is weak, or if the old symbol is undefined. */
1527
1528 if (*type_change_ok
1529 || h->root.type == bfd_link_hash_undefined)
1530 *size_change_ok = TRUE;
45d6a902 1531
45d6a902
AM
1532 /* NEWDYNCOMMON and OLDDYNCOMMON indicate whether the new or old
1533 symbol, respectively, appears to be a common symbol in a dynamic
1534 object. If a symbol appears in an uninitialized section, and is
1535 not weak, and is not a function, then it may be a common symbol
1536 which was resolved when the dynamic object was created. We want
1537 to treat such symbols specially, because they raise special
1538 considerations when setting the symbol size: if the symbol
1539 appears as a common symbol in a regular object, and the size in
1540 the regular object is larger, we must make sure that we use the
1541 larger size. This problematic case can always be avoided in C,
1542 but it must be handled correctly when using Fortran shared
1543 libraries.
1544
1545 Note that if NEWDYNCOMMON is set, NEWDEF will be set, and
1546 likewise for OLDDYNCOMMON and OLDDEF.
1547
1548 Note that this test is just a heuristic, and that it is quite
1549 possible to have an uninitialized symbol in a shared object which
1550 is really a definition, rather than a common symbol. This could
1551 lead to some minor confusion when the symbol really is a common
1552 symbol in some regular object. However, I think it will be
1553 harmless. */
1554
1555 if (newdyn
1556 && newdef
79349b09 1557 && !newweak
45d6a902
AM
1558 && (sec->flags & SEC_ALLOC) != 0
1559 && (sec->flags & SEC_LOAD) == 0
1560 && sym->st_size > 0
0a36a439 1561 && !newfunc)
45d6a902
AM
1562 newdyncommon = TRUE;
1563 else
1564 newdyncommon = FALSE;
1565
1566 if (olddyn
1567 && olddef
1568 && h->root.type == bfd_link_hash_defined
f5385ebf 1569 && h->def_dynamic
45d6a902
AM
1570 && (h->root.u.def.section->flags & SEC_ALLOC) != 0
1571 && (h->root.u.def.section->flags & SEC_LOAD) == 0
1572 && h->size > 0
0a36a439 1573 && !oldfunc)
45d6a902
AM
1574 olddyncommon = TRUE;
1575 else
1576 olddyncommon = FALSE;
1577
a4d8e49b
L
1578 /* We now know everything about the old and new symbols. We ask the
1579 backend to check if we can merge them. */
5d13b3b3
AM
1580 if (bed->merge_symbol != NULL)
1581 {
1582 if (!bed->merge_symbol (h, sym, psec, newdef, olddef, oldbfd, oldsec))
1583 return FALSE;
1584 sec = *psec;
1585 }
a4d8e49b 1586
a83ef4d1
L
1587 /* There are multiple definitions of a normal symbol. Skip the
1588 default symbol as well as definition from an IR object. */
93f4de39 1589 if (olddef && !olddyn && !oldweak && newdef && !newdyn && !newweak
a83ef4d1
L
1590 && !default_sym && h->def_regular
1591 && !(oldbfd != NULL
1592 && (oldbfd->flags & BFD_PLUGIN) != 0
1593 && (abfd->flags & BFD_PLUGIN) == 0))
93f4de39
RL
1594 {
1595 /* Handle a multiple definition. */
1596 (*info->callbacks->multiple_definition) (info, &h->root,
1597 abfd, sec, *pvalue);
1598 *skip = TRUE;
1599 return TRUE;
1600 }
1601
45d6a902
AM
1602 /* If both the old and the new symbols look like common symbols in a
1603 dynamic object, set the size of the symbol to the larger of the
1604 two. */
1605
1606 if (olddyncommon
1607 && newdyncommon
1608 && sym->st_size != h->size)
1609 {
1610 /* Since we think we have two common symbols, issue a multiple
1611 common warning if desired. Note that we only warn if the
1612 size is different. If the size is the same, we simply let
1613 the old symbol override the new one as normally happens with
1614 symbols defined in dynamic objects. */
1615
1a72702b
AM
1616 (*info->callbacks->multiple_common) (info, &h->root, abfd,
1617 bfd_link_hash_common, sym->st_size);
45d6a902
AM
1618 if (sym->st_size > h->size)
1619 h->size = sym->st_size;
252b5132 1620
45d6a902 1621 *size_change_ok = TRUE;
252b5132
RH
1622 }
1623
45d6a902
AM
1624 /* If we are looking at a dynamic object, and we have found a
1625 definition, we need to see if the symbol was already defined by
1626 some other object. If so, we want to use the existing
1627 definition, and we do not want to report a multiple symbol
1628 definition error; we do this by clobbering *PSEC to be
1629 bfd_und_section_ptr.
1630
1631 We treat a common symbol as a definition if the symbol in the
1632 shared library is a function, since common symbols always
1633 represent variables; this can cause confusion in principle, but
1634 any such confusion would seem to indicate an erroneous program or
1635 shared library. We also permit a common symbol in a regular
8170f769 1636 object to override a weak symbol in a shared object. */
45d6a902
AM
1637
1638 if (newdyn
1639 && newdef
77cfaee6 1640 && (olddef
45d6a902 1641 || (h->root.type == bfd_link_hash_common
8170f769 1642 && (newweak || newfunc))))
45d6a902
AM
1643 {
1644 *override = TRUE;
1645 newdef = FALSE;
1646 newdyncommon = FALSE;
252b5132 1647
45d6a902
AM
1648 *psec = sec = bfd_und_section_ptr;
1649 *size_change_ok = TRUE;
252b5132 1650
45d6a902
AM
1651 /* If we get here when the old symbol is a common symbol, then
1652 we are explicitly letting it override a weak symbol or
1653 function in a dynamic object, and we don't want to warn about
1654 a type change. If the old symbol is a defined symbol, a type
1655 change warning may still be appropriate. */
252b5132 1656
45d6a902
AM
1657 if (h->root.type == bfd_link_hash_common)
1658 *type_change_ok = TRUE;
1659 }
1660
1661 /* Handle the special case of an old common symbol merging with a
1662 new symbol which looks like a common symbol in a shared object.
1663 We change *PSEC and *PVALUE to make the new symbol look like a
91134c82
L
1664 common symbol, and let _bfd_generic_link_add_one_symbol do the
1665 right thing. */
45d6a902
AM
1666
1667 if (newdyncommon
1668 && h->root.type == bfd_link_hash_common)
1669 {
1670 *override = TRUE;
1671 newdef = FALSE;
1672 newdyncommon = FALSE;
1673 *pvalue = sym->st_size;
a4d8e49b 1674 *psec = sec = bed->common_section (oldsec);
45d6a902
AM
1675 *size_change_ok = TRUE;
1676 }
1677
c5e2cead 1678 /* Skip weak definitions of symbols that are already defined. */
f41d945b 1679 if (newdef && olddef && newweak)
54ac0771 1680 {
35ed3f94 1681 /* Don't skip new non-IR weak syms. */
3a5dbfb2
AM
1682 if (!(oldbfd != NULL
1683 && (oldbfd->flags & BFD_PLUGIN) != 0
35ed3f94 1684 && (abfd->flags & BFD_PLUGIN) == 0))
57fa7b8c
AM
1685 {
1686 newdef = FALSE;
1687 *skip = TRUE;
1688 }
54ac0771
L
1689
1690 /* Merge st_other. If the symbol already has a dynamic index,
1691 but visibility says it should not be visible, turn it into a
1692 local symbol. */
b8417128 1693 elf_merge_st_other (abfd, h, sym, sec, newdef, newdyn);
54ac0771
L
1694 if (h->dynindx != -1)
1695 switch (ELF_ST_VISIBILITY (h->other))
1696 {
1697 case STV_INTERNAL:
1698 case STV_HIDDEN:
1699 (*bed->elf_backend_hide_symbol) (info, h, TRUE);
1700 break;
1701 }
1702 }
c5e2cead 1703
45d6a902
AM
1704 /* If the old symbol is from a dynamic object, and the new symbol is
1705 a definition which is not from a dynamic object, then the new
1706 symbol overrides the old symbol. Symbols from regular files
1707 always take precedence over symbols from dynamic objects, even if
1708 they are defined after the dynamic object in the link.
1709
1710 As above, we again permit a common symbol in a regular object to
1711 override a definition in a shared object if the shared object
0f8a2703 1712 symbol is a function or is weak. */
45d6a902
AM
1713
1714 flip = NULL;
77cfaee6 1715 if (!newdyn
45d6a902
AM
1716 && (newdef
1717 || (bfd_is_com_section (sec)
0a36a439 1718 && (oldweak || oldfunc)))
45d6a902
AM
1719 && olddyn
1720 && olddef
f5385ebf 1721 && h->def_dynamic)
45d6a902
AM
1722 {
1723 /* Change the hash table entry to undefined, and let
1724 _bfd_generic_link_add_one_symbol do the right thing with the
1725 new definition. */
1726
1727 h->root.type = bfd_link_hash_undefined;
1728 h->root.u.undef.abfd = h->root.u.def.section->owner;
1729 *size_change_ok = TRUE;
1730
1731 olddef = FALSE;
1732 olddyncommon = FALSE;
1733
1734 /* We again permit a type change when a common symbol may be
1735 overriding a function. */
1736
1737 if (bfd_is_com_section (sec))
0a36a439
L
1738 {
1739 if (oldfunc)
1740 {
1741 /* If a common symbol overrides a function, make sure
1742 that it isn't defined dynamically nor has type
1743 function. */
1744 h->def_dynamic = 0;
1745 h->type = STT_NOTYPE;
1746 }
1747 *type_change_ok = TRUE;
1748 }
45d6a902 1749
6c9b78e6
AM
1750 if (hi->root.type == bfd_link_hash_indirect)
1751 flip = hi;
45d6a902
AM
1752 else
1753 /* This union may have been set to be non-NULL when this symbol
1754 was seen in a dynamic object. We must force the union to be
1755 NULL, so that it is correct for a regular symbol. */
1756 h->verinfo.vertree = NULL;
1757 }
1758
1759 /* Handle the special case of a new common symbol merging with an
1760 old symbol that looks like it might be a common symbol defined in
1761 a shared object. Note that we have already handled the case in
1762 which a new common symbol should simply override the definition
1763 in the shared library. */
1764
1765 if (! newdyn
1766 && bfd_is_com_section (sec)
1767 && olddyncommon)
1768 {
1769 /* It would be best if we could set the hash table entry to a
1770 common symbol, but we don't know what to use for the section
1771 or the alignment. */
1a72702b
AM
1772 (*info->callbacks->multiple_common) (info, &h->root, abfd,
1773 bfd_link_hash_common, sym->st_size);
45d6a902 1774
4cc11e76 1775 /* If the presumed common symbol in the dynamic object is
45d6a902
AM
1776 larger, pretend that the new symbol has its size. */
1777
1778 if (h->size > *pvalue)
1779 *pvalue = h->size;
1780
af44c138
L
1781 /* We need to remember the alignment required by the symbol
1782 in the dynamic object. */
1783 BFD_ASSERT (pold_alignment);
1784 *pold_alignment = h->root.u.def.section->alignment_power;
45d6a902
AM
1785
1786 olddef = FALSE;
1787 olddyncommon = FALSE;
1788
1789 h->root.type = bfd_link_hash_undefined;
1790 h->root.u.undef.abfd = h->root.u.def.section->owner;
1791
1792 *size_change_ok = TRUE;
1793 *type_change_ok = TRUE;
1794
6c9b78e6
AM
1795 if (hi->root.type == bfd_link_hash_indirect)
1796 flip = hi;
45d6a902
AM
1797 else
1798 h->verinfo.vertree = NULL;
1799 }
1800
1801 if (flip != NULL)
1802 {
1803 /* Handle the case where we had a versioned symbol in a dynamic
1804 library and now find a definition in a normal object. In this
1805 case, we make the versioned symbol point to the normal one. */
45d6a902 1806 flip->root.type = h->root.type;
00cbee0a 1807 flip->root.u.undef.abfd = h->root.u.undef.abfd;
45d6a902
AM
1808 h->root.type = bfd_link_hash_indirect;
1809 h->root.u.i.link = (struct bfd_link_hash_entry *) flip;
fcfa13d2 1810 (*bed->elf_backend_copy_indirect_symbol) (info, flip, h);
f5385ebf 1811 if (h->def_dynamic)
45d6a902 1812 {
f5385ebf
AM
1813 h->def_dynamic = 0;
1814 flip->ref_dynamic = 1;
45d6a902
AM
1815 }
1816 }
1817
45d6a902
AM
1818 return TRUE;
1819}
1820
1821/* This function is called to create an indirect symbol from the
1822 default for the symbol with the default version if needed. The
4f3fedcf 1823 symbol is described by H, NAME, SYM, SEC, and VALUE. We
0f8a2703 1824 set DYNSYM if the new indirect symbol is dynamic. */
45d6a902 1825
28caa186 1826static bfd_boolean
268b6b39
AM
1827_bfd_elf_add_default_symbol (bfd *abfd,
1828 struct bfd_link_info *info,
1829 struct elf_link_hash_entry *h,
1830 const char *name,
1831 Elf_Internal_Sym *sym,
4f3fedcf
AM
1832 asection *sec,
1833 bfd_vma value,
1834 bfd **poldbfd,
e3c9d234 1835 bfd_boolean *dynsym)
45d6a902
AM
1836{
1837 bfd_boolean type_change_ok;
1838 bfd_boolean size_change_ok;
1839 bfd_boolean skip;
1840 char *shortname;
1841 struct elf_link_hash_entry *hi;
1842 struct bfd_link_hash_entry *bh;
9c5bfbb7 1843 const struct elf_backend_data *bed;
45d6a902
AM
1844 bfd_boolean collect;
1845 bfd_boolean dynamic;
e3c9d234 1846 bfd_boolean override;
45d6a902
AM
1847 char *p;
1848 size_t len, shortlen;
ffd65175 1849 asection *tmp_sec;
6e33951e 1850 bfd_boolean matched;
45d6a902 1851
422f1182
L
1852 if (h->versioned == unversioned || h->versioned == versioned_hidden)
1853 return TRUE;
1854
45d6a902
AM
1855 /* If this symbol has a version, and it is the default version, we
1856 create an indirect symbol from the default name to the fully
1857 decorated name. This will cause external references which do not
1858 specify a version to be bound to this version of the symbol. */
1859 p = strchr (name, ELF_VER_CHR);
422f1182
L
1860 if (h->versioned == unknown)
1861 {
1862 if (p == NULL)
1863 {
1864 h->versioned = unversioned;
1865 return TRUE;
1866 }
1867 else
1868 {
1869 if (p[1] != ELF_VER_CHR)
1870 {
1871 h->versioned = versioned_hidden;
1872 return TRUE;
1873 }
1874 else
1875 h->versioned = versioned;
1876 }
1877 }
4373f8af
L
1878 else
1879 {
1880 /* PR ld/19073: We may see an unversioned definition after the
1881 default version. */
1882 if (p == NULL)
1883 return TRUE;
1884 }
45d6a902 1885
45d6a902
AM
1886 bed = get_elf_backend_data (abfd);
1887 collect = bed->collect;
1888 dynamic = (abfd->flags & DYNAMIC) != 0;
1889
1890 shortlen = p - name;
a50b1753 1891 shortname = (char *) bfd_hash_allocate (&info->hash->table, shortlen + 1);
45d6a902
AM
1892 if (shortname == NULL)
1893 return FALSE;
1894 memcpy (shortname, name, shortlen);
1895 shortname[shortlen] = '\0';
1896
1897 /* We are going to create a new symbol. Merge it with any existing
1898 symbol with this name. For the purposes of the merge, act as
1899 though we were defining the symbol we just defined, although we
1900 actually going to define an indirect symbol. */
1901 type_change_ok = FALSE;
1902 size_change_ok = FALSE;
6e33951e 1903 matched = TRUE;
ffd65175
AM
1904 tmp_sec = sec;
1905 if (!_bfd_elf_merge_symbol (abfd, info, shortname, sym, &tmp_sec, &value,
4f3fedcf 1906 &hi, poldbfd, NULL, NULL, &skip, &override,
6e33951e 1907 &type_change_ok, &size_change_ok, &matched))
45d6a902
AM
1908 return FALSE;
1909
1910 if (skip)
1911 goto nondefault;
1912
5b677558
AM
1913 if (hi->def_regular)
1914 {
1915 /* If the undecorated symbol will have a version added by a
1916 script different to H, then don't indirect to/from the
1917 undecorated symbol. This isn't ideal because we may not yet
1918 have seen symbol versions, if given by a script on the
1919 command line rather than via --version-script. */
1920 if (hi->verinfo.vertree == NULL && info->version_info != NULL)
1921 {
1922 bfd_boolean hide;
1923
1924 hi->verinfo.vertree
1925 = bfd_find_version_for_sym (info->version_info,
1926 hi->root.root.string, &hide);
1927 if (hi->verinfo.vertree != NULL && hide)
1928 {
1929 (*bed->elf_backend_hide_symbol) (info, hi, TRUE);
1930 goto nondefault;
1931 }
1932 }
1933 if (hi->verinfo.vertree != NULL
1934 && strcmp (p + 1 + (p[1] == '@'), hi->verinfo.vertree->name) != 0)
1935 goto nondefault;
1936 }
1937
45d6a902
AM
1938 if (! override)
1939 {
c6e8a9a8 1940 /* Add the default symbol if not performing a relocatable link. */
0e1862bb 1941 if (! bfd_link_relocatable (info))
c6e8a9a8
L
1942 {
1943 bh = &hi->root;
1944 if (! (_bfd_generic_link_add_one_symbol
1945 (info, abfd, shortname, BSF_INDIRECT,
1946 bfd_ind_section_ptr,
1947 0, name, FALSE, collect, &bh)))
1948 return FALSE;
1949 hi = (struct elf_link_hash_entry *) bh;
1950 }
45d6a902
AM
1951 }
1952 else
1953 {
1954 /* In this case the symbol named SHORTNAME is overriding the
1955 indirect symbol we want to add. We were planning on making
1956 SHORTNAME an indirect symbol referring to NAME. SHORTNAME
1957 is the name without a version. NAME is the fully versioned
1958 name, and it is the default version.
1959
1960 Overriding means that we already saw a definition for the
1961 symbol SHORTNAME in a regular object, and it is overriding
1962 the symbol defined in the dynamic object.
1963
1964 When this happens, we actually want to change NAME, the
1965 symbol we just added, to refer to SHORTNAME. This will cause
1966 references to NAME in the shared object to become references
1967 to SHORTNAME in the regular object. This is what we expect
1968 when we override a function in a shared object: that the
1969 references in the shared object will be mapped to the
1970 definition in the regular object. */
1971
1972 while (hi->root.type == bfd_link_hash_indirect
1973 || hi->root.type == bfd_link_hash_warning)
1974 hi = (struct elf_link_hash_entry *) hi->root.u.i.link;
1975
1976 h->root.type = bfd_link_hash_indirect;
1977 h->root.u.i.link = (struct bfd_link_hash_entry *) hi;
f5385ebf 1978 if (h->def_dynamic)
45d6a902 1979 {
f5385ebf
AM
1980 h->def_dynamic = 0;
1981 hi->ref_dynamic = 1;
1982 if (hi->ref_regular
1983 || hi->def_regular)
45d6a902 1984 {
c152c796 1985 if (! bfd_elf_link_record_dynamic_symbol (info, hi))
45d6a902
AM
1986 return FALSE;
1987 }
1988 }
1989
1990 /* Now set HI to H, so that the following code will set the
1991 other fields correctly. */
1992 hi = h;
1993 }
1994
fab4a87f
L
1995 /* Check if HI is a warning symbol. */
1996 if (hi->root.type == bfd_link_hash_warning)
1997 hi = (struct elf_link_hash_entry *) hi->root.u.i.link;
1998
45d6a902
AM
1999 /* If there is a duplicate definition somewhere, then HI may not
2000 point to an indirect symbol. We will have reported an error to
2001 the user in that case. */
2002
2003 if (hi->root.type == bfd_link_hash_indirect)
2004 {
2005 struct elf_link_hash_entry *ht;
2006
45d6a902 2007 ht = (struct elf_link_hash_entry *) hi->root.u.i.link;
fcfa13d2 2008 (*bed->elf_backend_copy_indirect_symbol) (info, ht, hi);
45d6a902 2009
68c88cd4
AM
2010 /* A reference to the SHORTNAME symbol from a dynamic library
2011 will be satisfied by the versioned symbol at runtime. In
2012 effect, we have a reference to the versioned symbol. */
2013 ht->ref_dynamic_nonweak |= hi->ref_dynamic_nonweak;
2014 hi->dynamic_def |= ht->dynamic_def;
2015
45d6a902
AM
2016 /* See if the new flags lead us to realize that the symbol must
2017 be dynamic. */
2018 if (! *dynsym)
2019 {
2020 if (! dynamic)
2021 {
0e1862bb 2022 if (! bfd_link_executable (info)
90c984fc 2023 || hi->def_dynamic
f5385ebf 2024 || hi->ref_dynamic)
45d6a902
AM
2025 *dynsym = TRUE;
2026 }
2027 else
2028 {
f5385ebf 2029 if (hi->ref_regular)
45d6a902
AM
2030 *dynsym = TRUE;
2031 }
2032 }
2033 }
2034
2035 /* We also need to define an indirection from the nondefault version
2036 of the symbol. */
2037
2038nondefault:
2039 len = strlen (name);
a50b1753 2040 shortname = (char *) bfd_hash_allocate (&info->hash->table, len);
45d6a902
AM
2041 if (shortname == NULL)
2042 return FALSE;
2043 memcpy (shortname, name, shortlen);
2044 memcpy (shortname + shortlen, p + 1, len - shortlen);
2045
2046 /* Once again, merge with any existing symbol. */
2047 type_change_ok = FALSE;
2048 size_change_ok = FALSE;
ffd65175
AM
2049 tmp_sec = sec;
2050 if (!_bfd_elf_merge_symbol (abfd, info, shortname, sym, &tmp_sec, &value,
115c6d5c 2051 &hi, poldbfd, NULL, NULL, &skip, &override,
6e33951e 2052 &type_change_ok, &size_change_ok, &matched))
45d6a902
AM
2053 return FALSE;
2054
2055 if (skip)
2056 return TRUE;
2057
2058 if (override)
2059 {
2060 /* Here SHORTNAME is a versioned name, so we don't expect to see
2061 the type of override we do in the case above unless it is
4cc11e76 2062 overridden by a versioned definition. */
45d6a902
AM
2063 if (hi->root.type != bfd_link_hash_defined
2064 && hi->root.type != bfd_link_hash_defweak)
4eca0228 2065 _bfd_error_handler
695344c0 2066 /* xgettext:c-format */
871b3ab2 2067 (_("%pB: unexpected redefinition of indirect versioned symbol `%s'"),
d003868e 2068 abfd, shortname);
45d6a902
AM
2069 }
2070 else
2071 {
2072 bh = &hi->root;
2073 if (! (_bfd_generic_link_add_one_symbol
2074 (info, abfd, shortname, BSF_INDIRECT,
268b6b39 2075 bfd_ind_section_ptr, 0, name, FALSE, collect, &bh)))
45d6a902
AM
2076 return FALSE;
2077 hi = (struct elf_link_hash_entry *) bh;
2078
2079 /* If there is a duplicate definition somewhere, then HI may not
2080 point to an indirect symbol. We will have reported an error
2081 to the user in that case. */
2082
2083 if (hi->root.type == bfd_link_hash_indirect)
2084 {
fcfa13d2 2085 (*bed->elf_backend_copy_indirect_symbol) (info, h, hi);
68c88cd4
AM
2086 h->ref_dynamic_nonweak |= hi->ref_dynamic_nonweak;
2087 hi->dynamic_def |= h->dynamic_def;
45d6a902
AM
2088
2089 /* See if the new flags lead us to realize that the symbol
2090 must be dynamic. */
2091 if (! *dynsym)
2092 {
2093 if (! dynamic)
2094 {
0e1862bb 2095 if (! bfd_link_executable (info)
f5385ebf 2096 || hi->ref_dynamic)
45d6a902
AM
2097 *dynsym = TRUE;
2098 }
2099 else
2100 {
f5385ebf 2101 if (hi->ref_regular)
45d6a902
AM
2102 *dynsym = TRUE;
2103 }
2104 }
2105 }
2106 }
2107
2108 return TRUE;
2109}
2110\f
2111/* This routine is used to export all defined symbols into the dynamic
2112 symbol table. It is called via elf_link_hash_traverse. */
2113
28caa186 2114static bfd_boolean
268b6b39 2115_bfd_elf_export_symbol (struct elf_link_hash_entry *h, void *data)
45d6a902 2116{
a50b1753 2117 struct elf_info_failed *eif = (struct elf_info_failed *) data;
45d6a902
AM
2118
2119 /* Ignore indirect symbols. These are added by the versioning code. */
2120 if (h->root.type == bfd_link_hash_indirect)
2121 return TRUE;
2122
7686d77d
AM
2123 /* Ignore this if we won't export it. */
2124 if (!eif->info->export_dynamic && !h->dynamic)
2125 return TRUE;
45d6a902
AM
2126
2127 if (h->dynindx == -1
fd91d419
L
2128 && (h->def_regular || h->ref_regular)
2129 && ! bfd_hide_sym_by_version (eif->info->version_info,
2130 h->root.root.string))
45d6a902 2131 {
fd91d419 2132 if (! bfd_elf_link_record_dynamic_symbol (eif->info, h))
45d6a902 2133 {
fd91d419
L
2134 eif->failed = TRUE;
2135 return FALSE;
45d6a902
AM
2136 }
2137 }
2138
2139 return TRUE;
2140}
2141\f
2142/* Look through the symbols which are defined in other shared
2143 libraries and referenced here. Update the list of version
2144 dependencies. This will be put into the .gnu.version_r section.
2145 This function is called via elf_link_hash_traverse. */
2146
28caa186 2147static bfd_boolean
268b6b39
AM
2148_bfd_elf_link_find_version_dependencies (struct elf_link_hash_entry *h,
2149 void *data)
45d6a902 2150{
a50b1753 2151 struct elf_find_verdep_info *rinfo = (struct elf_find_verdep_info *) data;
45d6a902
AM
2152 Elf_Internal_Verneed *t;
2153 Elf_Internal_Vernaux *a;
2154 bfd_size_type amt;
2155
45d6a902
AM
2156 /* We only care about symbols defined in shared objects with version
2157 information. */
f5385ebf
AM
2158 if (!h->def_dynamic
2159 || h->def_regular
45d6a902 2160 || h->dynindx == -1
7b20f099
AM
2161 || h->verinfo.verdef == NULL
2162 || (elf_dyn_lib_class (h->verinfo.verdef->vd_bfd)
2163 & (DYN_AS_NEEDED | DYN_DT_NEEDED | DYN_NO_NEEDED)))
45d6a902
AM
2164 return TRUE;
2165
2166 /* See if we already know about this version. */
28caa186
AM
2167 for (t = elf_tdata (rinfo->info->output_bfd)->verref;
2168 t != NULL;
2169 t = t->vn_nextref)
45d6a902
AM
2170 {
2171 if (t->vn_bfd != h->verinfo.verdef->vd_bfd)
2172 continue;
2173
2174 for (a = t->vn_auxptr; a != NULL; a = a->vna_nextptr)
2175 if (a->vna_nodename == h->verinfo.verdef->vd_nodename)
2176 return TRUE;
2177
2178 break;
2179 }
2180
2181 /* This is a new version. Add it to tree we are building. */
2182
2183 if (t == NULL)
2184 {
2185 amt = sizeof *t;
a50b1753 2186 t = (Elf_Internal_Verneed *) bfd_zalloc (rinfo->info->output_bfd, amt);
45d6a902
AM
2187 if (t == NULL)
2188 {
2189 rinfo->failed = TRUE;
2190 return FALSE;
2191 }
2192
2193 t->vn_bfd = h->verinfo.verdef->vd_bfd;
28caa186
AM
2194 t->vn_nextref = elf_tdata (rinfo->info->output_bfd)->verref;
2195 elf_tdata (rinfo->info->output_bfd)->verref = t;
45d6a902
AM
2196 }
2197
2198 amt = sizeof *a;
a50b1753 2199 a = (Elf_Internal_Vernaux *) bfd_zalloc (rinfo->info->output_bfd, amt);
14b1c01e
AM
2200 if (a == NULL)
2201 {
2202 rinfo->failed = TRUE;
2203 return FALSE;
2204 }
45d6a902
AM
2205
2206 /* Note that we are copying a string pointer here, and testing it
2207 above. If bfd_elf_string_from_elf_section is ever changed to
2208 discard the string data when low in memory, this will have to be
2209 fixed. */
2210 a->vna_nodename = h->verinfo.verdef->vd_nodename;
2211
2212 a->vna_flags = h->verinfo.verdef->vd_flags;
2213 a->vna_nextptr = t->vn_auxptr;
2214
2215 h->verinfo.verdef->vd_exp_refno = rinfo->vers;
2216 ++rinfo->vers;
2217
2218 a->vna_other = h->verinfo.verdef->vd_exp_refno + 1;
2219
2220 t->vn_auxptr = a;
2221
2222 return TRUE;
2223}
2224
099bb8fb
L
2225/* Return TRUE and set *HIDE to TRUE if the versioned symbol is
2226 hidden. Set *T_P to NULL if there is no match. */
2227
2228static bfd_boolean
2229_bfd_elf_link_hide_versioned_symbol (struct bfd_link_info *info,
2230 struct elf_link_hash_entry *h,
2231 const char *version_p,
2232 struct bfd_elf_version_tree **t_p,
2233 bfd_boolean *hide)
2234{
2235 struct bfd_elf_version_tree *t;
2236
2237 /* Look for the version. If we find it, it is no longer weak. */
2238 for (t = info->version_info; t != NULL; t = t->next)
2239 {
2240 if (strcmp (t->name, version_p) == 0)
2241 {
2242 size_t len;
2243 char *alc;
2244 struct bfd_elf_version_expr *d;
2245
2246 len = version_p - h->root.root.string;
2247 alc = (char *) bfd_malloc (len);
2248 if (alc == NULL)
2249 return FALSE;
2250 memcpy (alc, h->root.root.string, len - 1);
2251 alc[len - 1] = '\0';
2252 if (alc[len - 2] == ELF_VER_CHR)
2253 alc[len - 2] = '\0';
2254
2255 h->verinfo.vertree = t;
2256 t->used = TRUE;
2257 d = NULL;
2258
2259 if (t->globals.list != NULL)
2260 d = (*t->match) (&t->globals, NULL, alc);
2261
2262 /* See if there is anything to force this symbol to
2263 local scope. */
2264 if (d == NULL && t->locals.list != NULL)
2265 {
2266 d = (*t->match) (&t->locals, NULL, alc);
2267 if (d != NULL
2268 && h->dynindx != -1
2269 && ! info->export_dynamic)
2270 *hide = TRUE;
2271 }
2272
2273 free (alc);
2274 break;
2275 }
2276 }
2277
2278 *t_p = t;
2279
2280 return TRUE;
2281}
2282
2283/* Return TRUE if the symbol H is hidden by version script. */
2284
2285bfd_boolean
2286_bfd_elf_link_hide_sym_by_version (struct bfd_link_info *info,
2287 struct elf_link_hash_entry *h)
2288{
2289 const char *p;
2290 bfd_boolean hide = FALSE;
2291 const struct elf_backend_data *bed
2292 = get_elf_backend_data (info->output_bfd);
2293
2294 /* Version script only hides symbols defined in regular objects. */
2295 if (!h->def_regular && !ELF_COMMON_DEF_P (h))
2296 return TRUE;
2297
2298 p = strchr (h->root.root.string, ELF_VER_CHR);
2299 if (p != NULL && h->verinfo.vertree == NULL)
2300 {
2301 struct bfd_elf_version_tree *t;
2302
2303 ++p;
2304 if (*p == ELF_VER_CHR)
2305 ++p;
2306
2307 if (*p != '\0'
2308 && _bfd_elf_link_hide_versioned_symbol (info, h, p, &t, &hide)
2309 && hide)
2310 {
2311 if (hide)
2312 (*bed->elf_backend_hide_symbol) (info, h, TRUE);
2313 return TRUE;
2314 }
2315 }
2316
2317 /* If we don't have a version for this symbol, see if we can find
2318 something. */
2319 if (h->verinfo.vertree == NULL && info->version_info != NULL)
2320 {
2321 h->verinfo.vertree
2322 = bfd_find_version_for_sym (info->version_info,
2323 h->root.root.string, &hide);
2324 if (h->verinfo.vertree != NULL && hide)
2325 {
2326 (*bed->elf_backend_hide_symbol) (info, h, TRUE);
2327 return TRUE;
2328 }
2329 }
2330
2331 return FALSE;
2332}
2333
45d6a902
AM
2334/* Figure out appropriate versions for all the symbols. We may not
2335 have the version number script until we have read all of the input
2336 files, so until that point we don't know which symbols should be
2337 local. This function is called via elf_link_hash_traverse. */
2338
28caa186 2339static bfd_boolean
268b6b39 2340_bfd_elf_link_assign_sym_version (struct elf_link_hash_entry *h, void *data)
45d6a902 2341{
28caa186 2342 struct elf_info_failed *sinfo;
45d6a902 2343 struct bfd_link_info *info;
9c5bfbb7 2344 const struct elf_backend_data *bed;
45d6a902
AM
2345 struct elf_info_failed eif;
2346 char *p;
099bb8fb 2347 bfd_boolean hide;
45d6a902 2348
a50b1753 2349 sinfo = (struct elf_info_failed *) data;
45d6a902
AM
2350 info = sinfo->info;
2351
45d6a902
AM
2352 /* Fix the symbol flags. */
2353 eif.failed = FALSE;
2354 eif.info = info;
2355 if (! _bfd_elf_fix_symbol_flags (h, &eif))
2356 {
2357 if (eif.failed)
2358 sinfo->failed = TRUE;
2359 return FALSE;
2360 }
2361
2362 /* We only need version numbers for symbols defined in regular
2363 objects. */
f5385ebf 2364 if (!h->def_regular)
45d6a902
AM
2365 return TRUE;
2366
099bb8fb 2367 hide = FALSE;
28caa186 2368 bed = get_elf_backend_data (info->output_bfd);
45d6a902
AM
2369 p = strchr (h->root.root.string, ELF_VER_CHR);
2370 if (p != NULL && h->verinfo.vertree == NULL)
2371 {
2372 struct bfd_elf_version_tree *t;
45d6a902 2373
45d6a902
AM
2374 ++p;
2375 if (*p == ELF_VER_CHR)
6e33951e 2376 ++p;
45d6a902
AM
2377
2378 /* If there is no version string, we can just return out. */
2379 if (*p == '\0')
6e33951e 2380 return TRUE;
45d6a902 2381
099bb8fb 2382 if (!_bfd_elf_link_hide_versioned_symbol (info, h, p, &t, &hide))
45d6a902 2383 {
099bb8fb
L
2384 sinfo->failed = TRUE;
2385 return FALSE;
45d6a902
AM
2386 }
2387
099bb8fb
L
2388 if (hide)
2389 (*bed->elf_backend_hide_symbol) (info, h, TRUE);
2390
45d6a902
AM
2391 /* If we are building an application, we need to create a
2392 version node for this version. */
0e1862bb 2393 if (t == NULL && bfd_link_executable (info))
45d6a902
AM
2394 {
2395 struct bfd_elf_version_tree **pp;
2396 int version_index;
2397
2398 /* If we aren't going to export this symbol, we don't need
2399 to worry about it. */
2400 if (h->dynindx == -1)
2401 return TRUE;
2402
ef53be89
AM
2403 t = (struct bfd_elf_version_tree *) bfd_zalloc (info->output_bfd,
2404 sizeof *t);
45d6a902
AM
2405 if (t == NULL)
2406 {
2407 sinfo->failed = TRUE;
2408 return FALSE;
2409 }
2410
45d6a902 2411 t->name = p;
45d6a902
AM
2412 t->name_indx = (unsigned int) -1;
2413 t->used = TRUE;
2414
2415 version_index = 1;
2416 /* Don't count anonymous version tag. */
fd91d419
L
2417 if (sinfo->info->version_info != NULL
2418 && sinfo->info->version_info->vernum == 0)
45d6a902 2419 version_index = 0;
fd91d419
L
2420 for (pp = &sinfo->info->version_info;
2421 *pp != NULL;
2422 pp = &(*pp)->next)
45d6a902
AM
2423 ++version_index;
2424 t->vernum = version_index;
2425
2426 *pp = t;
2427
2428 h->verinfo.vertree = t;
2429 }
2430 else if (t == NULL)
2431 {
2432 /* We could not find the version for a symbol when
2433 generating a shared archive. Return an error. */
4eca0228 2434 _bfd_error_handler
695344c0 2435 /* xgettext:c-format */
871b3ab2 2436 (_("%pB: version node not found for symbol %s"),
28caa186 2437 info->output_bfd, h->root.root.string);
45d6a902
AM
2438 bfd_set_error (bfd_error_bad_value);
2439 sinfo->failed = TRUE;
2440 return FALSE;
2441 }
45d6a902
AM
2442 }
2443
2444 /* If we don't have a version for this symbol, see if we can find
2445 something. */
099bb8fb
L
2446 if (!hide
2447 && h->verinfo.vertree == NULL
2448 && sinfo->info->version_info != NULL)
45d6a902 2449 {
fd91d419
L
2450 h->verinfo.vertree
2451 = bfd_find_version_for_sym (sinfo->info->version_info,
2452 h->root.root.string, &hide);
1e8fa21e
AM
2453 if (h->verinfo.vertree != NULL && hide)
2454 (*bed->elf_backend_hide_symbol) (info, h, TRUE);
45d6a902
AM
2455 }
2456
2457 return TRUE;
2458}
2459\f
45d6a902
AM
2460/* Read and swap the relocs from the section indicated by SHDR. This
2461 may be either a REL or a RELA section. The relocations are
2462 translated into RELA relocations and stored in INTERNAL_RELOCS,
2463 which should have already been allocated to contain enough space.
2464 The EXTERNAL_RELOCS are a buffer where the external form of the
2465 relocations should be stored.
2466
2467 Returns FALSE if something goes wrong. */
2468
2469static bfd_boolean
268b6b39 2470elf_link_read_relocs_from_section (bfd *abfd,
243ef1e0 2471 asection *sec,
268b6b39
AM
2472 Elf_Internal_Shdr *shdr,
2473 void *external_relocs,
2474 Elf_Internal_Rela *internal_relocs)
45d6a902 2475{
9c5bfbb7 2476 const struct elf_backend_data *bed;
268b6b39 2477 void (*swap_in) (bfd *, const bfd_byte *, Elf_Internal_Rela *);
45d6a902
AM
2478 const bfd_byte *erela;
2479 const bfd_byte *erelaend;
2480 Elf_Internal_Rela *irela;
243ef1e0
L
2481 Elf_Internal_Shdr *symtab_hdr;
2482 size_t nsyms;
45d6a902 2483
45d6a902
AM
2484 /* Position ourselves at the start of the section. */
2485 if (bfd_seek (abfd, shdr->sh_offset, SEEK_SET) != 0)
2486 return FALSE;
2487
2488 /* Read the relocations. */
2489 if (bfd_bread (external_relocs, shdr->sh_size, abfd) != shdr->sh_size)
2490 return FALSE;
2491
243ef1e0 2492 symtab_hdr = &elf_tdata (abfd)->symtab_hdr;
ce98a316 2493 nsyms = NUM_SHDR_ENTRIES (symtab_hdr);
243ef1e0 2494
45d6a902
AM
2495 bed = get_elf_backend_data (abfd);
2496
2497 /* Convert the external relocations to the internal format. */
2498 if (shdr->sh_entsize == bed->s->sizeof_rel)
2499 swap_in = bed->s->swap_reloc_in;
2500 else if (shdr->sh_entsize == bed->s->sizeof_rela)
2501 swap_in = bed->s->swap_reloca_in;
2502 else
2503 {
2504 bfd_set_error (bfd_error_wrong_format);
2505 return FALSE;
2506 }
2507
a50b1753 2508 erela = (const bfd_byte *) external_relocs;
51992aec 2509 erelaend = erela + shdr->sh_size;
45d6a902
AM
2510 irela = internal_relocs;
2511 while (erela < erelaend)
2512 {
243ef1e0
L
2513 bfd_vma r_symndx;
2514
45d6a902 2515 (*swap_in) (abfd, erela, irela);
243ef1e0
L
2516 r_symndx = ELF32_R_SYM (irela->r_info);
2517 if (bed->s->arch_size == 64)
2518 r_symndx >>= 24;
ce98a316
NC
2519 if (nsyms > 0)
2520 {
2521 if ((size_t) r_symndx >= nsyms)
2522 {
4eca0228 2523 _bfd_error_handler
695344c0 2524 /* xgettext:c-format */
2dcf00ce
AM
2525 (_("%pB: bad reloc symbol index (%#" PRIx64 " >= %#lx)"
2526 " for offset %#" PRIx64 " in section `%pA'"),
2527 abfd, (uint64_t) r_symndx, (unsigned long) nsyms,
2528 (uint64_t) irela->r_offset, sec);
ce98a316
NC
2529 bfd_set_error (bfd_error_bad_value);
2530 return FALSE;
2531 }
2532 }
cf35638d 2533 else if (r_symndx != STN_UNDEF)
243ef1e0 2534 {
4eca0228 2535 _bfd_error_handler
695344c0 2536 /* xgettext:c-format */
2dcf00ce
AM
2537 (_("%pB: non-zero symbol index (%#" PRIx64 ")"
2538 " for offset %#" PRIx64 " in section `%pA'"
ce98a316 2539 " when the object file has no symbol table"),
2dcf00ce
AM
2540 abfd, (uint64_t) r_symndx,
2541 (uint64_t) irela->r_offset, sec);
243ef1e0
L
2542 bfd_set_error (bfd_error_bad_value);
2543 return FALSE;
2544 }
45d6a902
AM
2545 irela += bed->s->int_rels_per_ext_rel;
2546 erela += shdr->sh_entsize;
2547 }
2548
2549 return TRUE;
2550}
2551
2552/* Read and swap the relocs for a section O. They may have been
2553 cached. If the EXTERNAL_RELOCS and INTERNAL_RELOCS arguments are
2554 not NULL, they are used as buffers to read into. They are known to
2555 be large enough. If the INTERNAL_RELOCS relocs argument is NULL,
2556 the return value is allocated using either malloc or bfd_alloc,
2557 according to the KEEP_MEMORY argument. If O has two relocation
2558 sections (both REL and RELA relocations), then the REL_HDR
2559 relocations will appear first in INTERNAL_RELOCS, followed by the
d4730f92 2560 RELA_HDR relocations. */
45d6a902
AM
2561
2562Elf_Internal_Rela *
268b6b39
AM
2563_bfd_elf_link_read_relocs (bfd *abfd,
2564 asection *o,
2565 void *external_relocs,
2566 Elf_Internal_Rela *internal_relocs,
2567 bfd_boolean keep_memory)
45d6a902 2568{
268b6b39 2569 void *alloc1 = NULL;
45d6a902 2570 Elf_Internal_Rela *alloc2 = NULL;
9c5bfbb7 2571 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
d4730f92
BS
2572 struct bfd_elf_section_data *esdo = elf_section_data (o);
2573 Elf_Internal_Rela *internal_rela_relocs;
45d6a902 2574
d4730f92
BS
2575 if (esdo->relocs != NULL)
2576 return esdo->relocs;
45d6a902
AM
2577
2578 if (o->reloc_count == 0)
2579 return NULL;
2580
45d6a902
AM
2581 if (internal_relocs == NULL)
2582 {
2583 bfd_size_type size;
2584
056bafd4 2585 size = (bfd_size_type) o->reloc_count * sizeof (Elf_Internal_Rela);
45d6a902 2586 if (keep_memory)
a50b1753 2587 internal_relocs = alloc2 = (Elf_Internal_Rela *) bfd_alloc (abfd, size);
45d6a902 2588 else
a50b1753 2589 internal_relocs = alloc2 = (Elf_Internal_Rela *) bfd_malloc (size);
45d6a902
AM
2590 if (internal_relocs == NULL)
2591 goto error_return;
2592 }
2593
2594 if (external_relocs == NULL)
2595 {
d4730f92
BS
2596 bfd_size_type size = 0;
2597
2598 if (esdo->rel.hdr)
2599 size += esdo->rel.hdr->sh_size;
2600 if (esdo->rela.hdr)
2601 size += esdo->rela.hdr->sh_size;
45d6a902 2602
268b6b39 2603 alloc1 = bfd_malloc (size);
45d6a902
AM
2604 if (alloc1 == NULL)
2605 goto error_return;
2606 external_relocs = alloc1;
2607 }
2608
d4730f92
BS
2609 internal_rela_relocs = internal_relocs;
2610 if (esdo->rel.hdr)
2611 {
2612 if (!elf_link_read_relocs_from_section (abfd, o, esdo->rel.hdr,
2613 external_relocs,
2614 internal_relocs))
2615 goto error_return;
2616 external_relocs = (((bfd_byte *) external_relocs)
2617 + esdo->rel.hdr->sh_size);
2618 internal_rela_relocs += (NUM_SHDR_ENTRIES (esdo->rel.hdr)
2619 * bed->s->int_rels_per_ext_rel);
2620 }
2621
2622 if (esdo->rela.hdr
2623 && (!elf_link_read_relocs_from_section (abfd, o, esdo->rela.hdr,
2624 external_relocs,
2625 internal_rela_relocs)))
45d6a902
AM
2626 goto error_return;
2627
2628 /* Cache the results for next time, if we can. */
2629 if (keep_memory)
d4730f92 2630 esdo->relocs = internal_relocs;
45d6a902
AM
2631
2632 if (alloc1 != NULL)
2633 free (alloc1);
2634
2635 /* Don't free alloc2, since if it was allocated we are passing it
2636 back (under the name of internal_relocs). */
2637
2638 return internal_relocs;
2639
2640 error_return:
2641 if (alloc1 != NULL)
2642 free (alloc1);
2643 if (alloc2 != NULL)
4dd07732
AM
2644 {
2645 if (keep_memory)
2646 bfd_release (abfd, alloc2);
2647 else
2648 free (alloc2);
2649 }
45d6a902
AM
2650 return NULL;
2651}
2652
2653/* Compute the size of, and allocate space for, REL_HDR which is the
2654 section header for a section containing relocations for O. */
2655
28caa186 2656static bfd_boolean
9eaff861
AO
2657_bfd_elf_link_size_reloc_section (bfd *abfd,
2658 struct bfd_elf_section_reloc_data *reldata)
45d6a902 2659{
9eaff861 2660 Elf_Internal_Shdr *rel_hdr = reldata->hdr;
45d6a902
AM
2661
2662 /* That allows us to calculate the size of the section. */
9eaff861 2663 rel_hdr->sh_size = rel_hdr->sh_entsize * reldata->count;
45d6a902
AM
2664
2665 /* The contents field must last into write_object_contents, so we
2666 allocate it with bfd_alloc rather than malloc. Also since we
2667 cannot be sure that the contents will actually be filled in,
2668 we zero the allocated space. */
a50b1753 2669 rel_hdr->contents = (unsigned char *) bfd_zalloc (abfd, rel_hdr->sh_size);
45d6a902
AM
2670 if (rel_hdr->contents == NULL && rel_hdr->sh_size != 0)
2671 return FALSE;
2672
d4730f92 2673 if (reldata->hashes == NULL && reldata->count)
45d6a902
AM
2674 {
2675 struct elf_link_hash_entry **p;
2676
ca4be51c
AM
2677 p = ((struct elf_link_hash_entry **)
2678 bfd_zmalloc (reldata->count * sizeof (*p)));
45d6a902
AM
2679 if (p == NULL)
2680 return FALSE;
2681
d4730f92 2682 reldata->hashes = p;
45d6a902
AM
2683 }
2684
2685 return TRUE;
2686}
2687
2688/* Copy the relocations indicated by the INTERNAL_RELOCS (which
2689 originated from the section given by INPUT_REL_HDR) to the
2690 OUTPUT_BFD. */
2691
2692bfd_boolean
268b6b39
AM
2693_bfd_elf_link_output_relocs (bfd *output_bfd,
2694 asection *input_section,
2695 Elf_Internal_Shdr *input_rel_hdr,
eac338cf
PB
2696 Elf_Internal_Rela *internal_relocs,
2697 struct elf_link_hash_entry **rel_hash
2698 ATTRIBUTE_UNUSED)
45d6a902
AM
2699{
2700 Elf_Internal_Rela *irela;
2701 Elf_Internal_Rela *irelaend;
2702 bfd_byte *erel;
d4730f92 2703 struct bfd_elf_section_reloc_data *output_reldata;
45d6a902 2704 asection *output_section;
9c5bfbb7 2705 const struct elf_backend_data *bed;
268b6b39 2706 void (*swap_out) (bfd *, const Elf_Internal_Rela *, bfd_byte *);
d4730f92 2707 struct bfd_elf_section_data *esdo;
45d6a902
AM
2708
2709 output_section = input_section->output_section;
45d6a902 2710
d4730f92
BS
2711 bed = get_elf_backend_data (output_bfd);
2712 esdo = elf_section_data (output_section);
2713 if (esdo->rel.hdr && esdo->rel.hdr->sh_entsize == input_rel_hdr->sh_entsize)
45d6a902 2714 {
d4730f92
BS
2715 output_reldata = &esdo->rel;
2716 swap_out = bed->s->swap_reloc_out;
45d6a902 2717 }
d4730f92
BS
2718 else if (esdo->rela.hdr
2719 && esdo->rela.hdr->sh_entsize == input_rel_hdr->sh_entsize)
45d6a902 2720 {
d4730f92
BS
2721 output_reldata = &esdo->rela;
2722 swap_out = bed->s->swap_reloca_out;
45d6a902
AM
2723 }
2724 else
2725 {
4eca0228 2726 _bfd_error_handler
695344c0 2727 /* xgettext:c-format */
871b3ab2 2728 (_("%pB: relocation size mismatch in %pB section %pA"),
d003868e 2729 output_bfd, input_section->owner, input_section);
297d8443 2730 bfd_set_error (bfd_error_wrong_format);
45d6a902
AM
2731 return FALSE;
2732 }
2733
d4730f92
BS
2734 erel = output_reldata->hdr->contents;
2735 erel += output_reldata->count * input_rel_hdr->sh_entsize;
45d6a902
AM
2736 irela = internal_relocs;
2737 irelaend = irela + (NUM_SHDR_ENTRIES (input_rel_hdr)
2738 * bed->s->int_rels_per_ext_rel);
2739 while (irela < irelaend)
2740 {
2741 (*swap_out) (output_bfd, irela, erel);
2742 irela += bed->s->int_rels_per_ext_rel;
2743 erel += input_rel_hdr->sh_entsize;
2744 }
2745
2746 /* Bump the counter, so that we know where to add the next set of
2747 relocations. */
d4730f92 2748 output_reldata->count += NUM_SHDR_ENTRIES (input_rel_hdr);
45d6a902
AM
2749
2750 return TRUE;
2751}
2752\f
508c3946
L
2753/* Make weak undefined symbols in PIE dynamic. */
2754
2755bfd_boolean
2756_bfd_elf_link_hash_fixup_symbol (struct bfd_link_info *info,
2757 struct elf_link_hash_entry *h)
2758{
0e1862bb 2759 if (bfd_link_pie (info)
508c3946
L
2760 && h->dynindx == -1
2761 && h->root.type == bfd_link_hash_undefweak)
2762 return bfd_elf_link_record_dynamic_symbol (info, h);
2763
2764 return TRUE;
2765}
2766
45d6a902
AM
2767/* Fix up the flags for a symbol. This handles various cases which
2768 can only be fixed after all the input files are seen. This is
2769 currently called by both adjust_dynamic_symbol and
2770 assign_sym_version, which is unnecessary but perhaps more robust in
2771 the face of future changes. */
2772
28caa186 2773static bfd_boolean
268b6b39
AM
2774_bfd_elf_fix_symbol_flags (struct elf_link_hash_entry *h,
2775 struct elf_info_failed *eif)
45d6a902 2776{
33774f08 2777 const struct elf_backend_data *bed;
508c3946 2778
45d6a902
AM
2779 /* If this symbol was mentioned in a non-ELF file, try to set
2780 DEF_REGULAR and REF_REGULAR correctly. This is the only way to
2781 permit a non-ELF file to correctly refer to a symbol defined in
2782 an ELF dynamic object. */
f5385ebf 2783 if (h->non_elf)
45d6a902
AM
2784 {
2785 while (h->root.type == bfd_link_hash_indirect)
2786 h = (struct elf_link_hash_entry *) h->root.u.i.link;
2787
2788 if (h->root.type != bfd_link_hash_defined
2789 && h->root.type != bfd_link_hash_defweak)
f5385ebf
AM
2790 {
2791 h->ref_regular = 1;
2792 h->ref_regular_nonweak = 1;
2793 }
45d6a902
AM
2794 else
2795 {
2796 if (h->root.u.def.section->owner != NULL
2797 && (bfd_get_flavour (h->root.u.def.section->owner)
2798 == bfd_target_elf_flavour))
f5385ebf
AM
2799 {
2800 h->ref_regular = 1;
2801 h->ref_regular_nonweak = 1;
2802 }
45d6a902 2803 else
f5385ebf 2804 h->def_regular = 1;
45d6a902
AM
2805 }
2806
2807 if (h->dynindx == -1
f5385ebf
AM
2808 && (h->def_dynamic
2809 || h->ref_dynamic))
45d6a902 2810 {
c152c796 2811 if (! bfd_elf_link_record_dynamic_symbol (eif->info, h))
45d6a902
AM
2812 {
2813 eif->failed = TRUE;
2814 return FALSE;
2815 }
2816 }
2817 }
2818 else
2819 {
f5385ebf 2820 /* Unfortunately, NON_ELF is only correct if the symbol
45d6a902
AM
2821 was first seen in a non-ELF file. Fortunately, if the symbol
2822 was first seen in an ELF file, we're probably OK unless the
2823 symbol was defined in a non-ELF file. Catch that case here.
2824 FIXME: We're still in trouble if the symbol was first seen in
2825 a dynamic object, and then later in a non-ELF regular object. */
2826 if ((h->root.type == bfd_link_hash_defined
2827 || h->root.type == bfd_link_hash_defweak)
f5385ebf 2828 && !h->def_regular
45d6a902
AM
2829 && (h->root.u.def.section->owner != NULL
2830 ? (bfd_get_flavour (h->root.u.def.section->owner)
2831 != bfd_target_elf_flavour)
2832 : (bfd_is_abs_section (h->root.u.def.section)
f5385ebf
AM
2833 && !h->def_dynamic)))
2834 h->def_regular = 1;
45d6a902
AM
2835 }
2836
508c3946 2837 /* Backend specific symbol fixup. */
33774f08
AM
2838 bed = get_elf_backend_data (elf_hash_table (eif->info)->dynobj);
2839 if (bed->elf_backend_fixup_symbol
2840 && !(*bed->elf_backend_fixup_symbol) (eif->info, h))
2841 return FALSE;
508c3946 2842
45d6a902
AM
2843 /* If this is a final link, and the symbol was defined as a common
2844 symbol in a regular object file, and there was no definition in
2845 any dynamic object, then the linker will have allocated space for
f5385ebf 2846 the symbol in a common section but the DEF_REGULAR
45d6a902
AM
2847 flag will not have been set. */
2848 if (h->root.type == bfd_link_hash_defined
f5385ebf
AM
2849 && !h->def_regular
2850 && h->ref_regular
2851 && !h->def_dynamic
96f29d96 2852 && (h->root.u.def.section->owner->flags & (DYNAMIC | BFD_PLUGIN)) == 0)
f5385ebf 2853 h->def_regular = 1;
45d6a902 2854
af0bfb9c
AM
2855 /* Symbols defined in discarded sections shouldn't be dynamic. */
2856 if (h->root.type == bfd_link_hash_undefined && h->indx == -3)
2857 (*bed->elf_backend_hide_symbol) (eif->info, h, TRUE);
2858
4deb8f71
L
2859 /* If a weak undefined symbol has non-default visibility, we also
2860 hide it from the dynamic linker. */
af0bfb9c
AM
2861 else if (ELF_ST_VISIBILITY (h->other) != STV_DEFAULT
2862 && h->root.type == bfd_link_hash_undefweak)
4deb8f71
L
2863 (*bed->elf_backend_hide_symbol) (eif->info, h, TRUE);
2864
2865 /* A hidden versioned symbol in executable should be forced local if
2866 it is is locally defined, not referenced by shared library and not
2867 exported. */
2868 else if (bfd_link_executable (eif->info)
2869 && h->versioned == versioned_hidden
2870 && !eif->info->export_dynamic
2871 && !h->dynamic
2872 && !h->ref_dynamic
2873 && h->def_regular)
2874 (*bed->elf_backend_hide_symbol) (eif->info, h, TRUE);
2875
45d6a902
AM
2876 /* If -Bsymbolic was used (which means to bind references to global
2877 symbols to the definition within the shared object), and this
2878 symbol was defined in a regular object, then it actually doesn't
9c7a29a3
AM
2879 need a PLT entry. Likewise, if the symbol has non-default
2880 visibility. If the symbol has hidden or internal visibility, we
c1be741f 2881 will force it local. */
4deb8f71
L
2882 else if (h->needs_plt
2883 && bfd_link_pic (eif->info)
2884 && is_elf_hash_table (eif->info->hash)
2885 && (SYMBOLIC_BIND (eif->info, h)
2886 || ELF_ST_VISIBILITY (h->other) != STV_DEFAULT)
2887 && h->def_regular)
45d6a902 2888 {
45d6a902
AM
2889 bfd_boolean force_local;
2890
45d6a902
AM
2891 force_local = (ELF_ST_VISIBILITY (h->other) == STV_INTERNAL
2892 || ELF_ST_VISIBILITY (h->other) == STV_HIDDEN);
2893 (*bed->elf_backend_hide_symbol) (eif->info, h, force_local);
2894 }
2895
45d6a902
AM
2896 /* If this is a weak defined symbol in a dynamic object, and we know
2897 the real definition in the dynamic object, copy interesting flags
2898 over to the real definition. */
60d67dc8 2899 if (h->is_weakalias)
45d6a902 2900 {
60d67dc8
AM
2901 struct elf_link_hash_entry *def = weakdef (h);
2902
45d6a902
AM
2903 /* If the real definition is defined by a regular object file,
2904 don't do anything special. See the longer description in
2905 _bfd_elf_adjust_dynamic_symbol, below. */
60d67dc8
AM
2906 if (def->def_regular)
2907 {
2908 h = def;
2909 while ((h = h->u.alias) != def)
2910 h->is_weakalias = 0;
2911 }
45d6a902 2912 else
a26587ba 2913 {
4e6b54a6
AM
2914 while (h->root.type == bfd_link_hash_indirect)
2915 h = (struct elf_link_hash_entry *) h->root.u.i.link;
4e6b54a6
AM
2916 BFD_ASSERT (h->root.type == bfd_link_hash_defined
2917 || h->root.type == bfd_link_hash_defweak);
60d67dc8
AM
2918 BFD_ASSERT (def->def_dynamic);
2919 BFD_ASSERT (def->root.type == bfd_link_hash_defined);
2920 (*bed->elf_backend_copy_indirect_symbol) (eif->info, def, h);
a26587ba 2921 }
45d6a902
AM
2922 }
2923
2924 return TRUE;
2925}
2926
2927/* Make the backend pick a good value for a dynamic symbol. This is
2928 called via elf_link_hash_traverse, and also calls itself
2929 recursively. */
2930
28caa186 2931static bfd_boolean
268b6b39 2932_bfd_elf_adjust_dynamic_symbol (struct elf_link_hash_entry *h, void *data)
45d6a902 2933{
a50b1753 2934 struct elf_info_failed *eif = (struct elf_info_failed *) data;
559192d8 2935 struct elf_link_hash_table *htab;
9c5bfbb7 2936 const struct elf_backend_data *bed;
45d6a902 2937
0eddce27 2938 if (! is_elf_hash_table (eif->info->hash))
45d6a902
AM
2939 return FALSE;
2940
45d6a902
AM
2941 /* Ignore indirect symbols. These are added by the versioning code. */
2942 if (h->root.type == bfd_link_hash_indirect)
2943 return TRUE;
2944
2945 /* Fix the symbol flags. */
2946 if (! _bfd_elf_fix_symbol_flags (h, eif))
2947 return FALSE;
2948
559192d8
AM
2949 htab = elf_hash_table (eif->info);
2950 bed = get_elf_backend_data (htab->dynobj);
2951
954b63d4
AM
2952 if (h->root.type == bfd_link_hash_undefweak)
2953 {
2954 if (eif->info->dynamic_undefined_weak == 0)
559192d8 2955 (*bed->elf_backend_hide_symbol) (eif->info, h, TRUE);
954b63d4
AM
2956 else if (eif->info->dynamic_undefined_weak > 0
2957 && h->ref_regular
2958 && ELF_ST_VISIBILITY (h->other) == STV_DEFAULT
2959 && !bfd_hide_sym_by_version (eif->info->version_info,
2960 h->root.root.string))
2961 {
2962 if (!bfd_elf_link_record_dynamic_symbol (eif->info, h))
2963 {
2964 eif->failed = TRUE;
2965 return FALSE;
2966 }
2967 }
2968 }
2969
45d6a902
AM
2970 /* If this symbol does not require a PLT entry, and it is not
2971 defined by a dynamic object, or is not referenced by a regular
2972 object, ignore it. We do have to handle a weak defined symbol,
2973 even if no regular object refers to it, if we decided to add it
2974 to the dynamic symbol table. FIXME: Do we normally need to worry
2975 about symbols which are defined by one dynamic object and
2976 referenced by another one? */
f5385ebf 2977 if (!h->needs_plt
91e21fb7 2978 && h->type != STT_GNU_IFUNC
f5385ebf
AM
2979 && (h->def_regular
2980 || !h->def_dynamic
2981 || (!h->ref_regular
60d67dc8 2982 && (!h->is_weakalias || weakdef (h)->dynindx == -1))))
45d6a902 2983 {
a6aa5195 2984 h->plt = elf_hash_table (eif->info)->init_plt_offset;
45d6a902
AM
2985 return TRUE;
2986 }
2987
2988 /* If we've already adjusted this symbol, don't do it again. This
2989 can happen via a recursive call. */
f5385ebf 2990 if (h->dynamic_adjusted)
45d6a902
AM
2991 return TRUE;
2992
2993 /* Don't look at this symbol again. Note that we must set this
2994 after checking the above conditions, because we may look at a
2995 symbol once, decide not to do anything, and then get called
2996 recursively later after REF_REGULAR is set below. */
f5385ebf 2997 h->dynamic_adjusted = 1;
45d6a902
AM
2998
2999 /* If this is a weak definition, and we know a real definition, and
3000 the real symbol is not itself defined by a regular object file,
3001 then get a good value for the real definition. We handle the
3002 real symbol first, for the convenience of the backend routine.
3003
3004 Note that there is a confusing case here. If the real definition
3005 is defined by a regular object file, we don't get the real symbol
3006 from the dynamic object, but we do get the weak symbol. If the
3007 processor backend uses a COPY reloc, then if some routine in the
3008 dynamic object changes the real symbol, we will not see that
3009 change in the corresponding weak symbol. This is the way other
3010 ELF linkers work as well, and seems to be a result of the shared
3011 library model.
3012
3013 I will clarify this issue. Most SVR4 shared libraries define the
3014 variable _timezone and define timezone as a weak synonym. The
3015 tzset call changes _timezone. If you write
3016 extern int timezone;
3017 int _timezone = 5;
3018 int main () { tzset (); printf ("%d %d\n", timezone, _timezone); }
3019 you might expect that, since timezone is a synonym for _timezone,
3020 the same number will print both times. However, if the processor
3021 backend uses a COPY reloc, then actually timezone will be copied
3022 into your process image, and, since you define _timezone
3023 yourself, _timezone will not. Thus timezone and _timezone will
3024 wind up at different memory locations. The tzset call will set
3025 _timezone, leaving timezone unchanged. */
3026
60d67dc8 3027 if (h->is_weakalias)
45d6a902 3028 {
60d67dc8
AM
3029 struct elf_link_hash_entry *def = weakdef (h);
3030
ec24dc88 3031 /* If we get to this point, there is an implicit reference to
60d67dc8
AM
3032 the alias by a regular object file via the weak symbol H. */
3033 def->ref_regular = 1;
45d6a902 3034
ec24dc88 3035 /* Ensure that the backend adjust_dynamic_symbol function sees
60d67dc8
AM
3036 the strong alias before H by recursively calling ourselves. */
3037 if (!_bfd_elf_adjust_dynamic_symbol (def, eif))
45d6a902
AM
3038 return FALSE;
3039 }
3040
3041 /* If a symbol has no type and no size and does not require a PLT
3042 entry, then we are probably about to do the wrong thing here: we
3043 are probably going to create a COPY reloc for an empty object.
3044 This case can arise when a shared object is built with assembly
3045 code, and the assembly code fails to set the symbol type. */
3046 if (h->size == 0
3047 && h->type == STT_NOTYPE
f5385ebf 3048 && !h->needs_plt)
4eca0228 3049 _bfd_error_handler
45d6a902
AM
3050 (_("warning: type and size of dynamic symbol `%s' are not defined"),
3051 h->root.root.string);
3052
45d6a902
AM
3053 if (! (*bed->elf_backend_adjust_dynamic_symbol) (eif->info, h))
3054 {
3055 eif->failed = TRUE;
3056 return FALSE;
3057 }
3058
3059 return TRUE;
3060}
3061
027297b7
L
3062/* Adjust the dynamic symbol, H, for copy in the dynamic bss section,
3063 DYNBSS. */
3064
3065bfd_boolean
6cabe1ea
AM
3066_bfd_elf_adjust_dynamic_copy (struct bfd_link_info *info,
3067 struct elf_link_hash_entry *h,
027297b7
L
3068 asection *dynbss)
3069{
91ac5911 3070 unsigned int power_of_two;
027297b7
L
3071 bfd_vma mask;
3072 asection *sec = h->root.u.def.section;
3073
de194d85 3074 /* The section alignment of the definition is the maximum alignment
91ac5911
L
3075 requirement of symbols defined in the section. Since we don't
3076 know the symbol alignment requirement, we start with the
3077 maximum alignment and check low bits of the symbol address
3078 for the minimum alignment. */
3079 power_of_two = bfd_get_section_alignment (sec->owner, sec);
3080 mask = ((bfd_vma) 1 << power_of_two) - 1;
3081 while ((h->root.u.def.value & mask) != 0)
3082 {
3083 mask >>= 1;
3084 --power_of_two;
3085 }
027297b7 3086
91ac5911
L
3087 if (power_of_two > bfd_get_section_alignment (dynbss->owner,
3088 dynbss))
027297b7
L
3089 {
3090 /* Adjust the section alignment if needed. */
3091 if (! bfd_set_section_alignment (dynbss->owner, dynbss,
91ac5911 3092 power_of_two))
027297b7
L
3093 return FALSE;
3094 }
3095
91ac5911 3096 /* We make sure that the symbol will be aligned properly. */
027297b7
L
3097 dynbss->size = BFD_ALIGN (dynbss->size, mask + 1);
3098
3099 /* Define the symbol as being at this point in DYNBSS. */
3100 h->root.u.def.section = dynbss;
3101 h->root.u.def.value = dynbss->size;
3102
3103 /* Increment the size of DYNBSS to make room for the symbol. */
3104 dynbss->size += h->size;
3105
f7483970
L
3106 /* No error if extern_protected_data is true. */
3107 if (h->protected_def
889c2a67
L
3108 && (!info->extern_protected_data
3109 || (info->extern_protected_data < 0
3110 && !get_elf_backend_data (dynbss->owner)->extern_protected_data)))
d07a1b05 3111 info->callbacks->einfo
c1c8c1ef 3112 (_("%P: copy reloc against protected `%pT' is dangerous\n"),
d07a1b05 3113 h->root.root.string);
6cabe1ea 3114
027297b7
L
3115 return TRUE;
3116}
3117
45d6a902
AM
3118/* Adjust all external symbols pointing into SEC_MERGE sections
3119 to reflect the object merging within the sections. */
3120
28caa186 3121static bfd_boolean
268b6b39 3122_bfd_elf_link_sec_merge_syms (struct elf_link_hash_entry *h, void *data)
45d6a902
AM
3123{
3124 asection *sec;
3125
45d6a902
AM
3126 if ((h->root.type == bfd_link_hash_defined
3127 || h->root.type == bfd_link_hash_defweak)
3128 && ((sec = h->root.u.def.section)->flags & SEC_MERGE)
dbaa2011 3129 && sec->sec_info_type == SEC_INFO_TYPE_MERGE)
45d6a902 3130 {
a50b1753 3131 bfd *output_bfd = (bfd *) data;
45d6a902
AM
3132
3133 h->root.u.def.value =
3134 _bfd_merged_section_offset (output_bfd,
3135 &h->root.u.def.section,
3136 elf_section_data (sec)->sec_info,
753731ee 3137 h->root.u.def.value);
45d6a902
AM
3138 }
3139
3140 return TRUE;
3141}
986a241f
RH
3142
3143/* Returns false if the symbol referred to by H should be considered
3144 to resolve local to the current module, and true if it should be
3145 considered to bind dynamically. */
3146
3147bfd_boolean
268b6b39
AM
3148_bfd_elf_dynamic_symbol_p (struct elf_link_hash_entry *h,
3149 struct bfd_link_info *info,
89a2ee5a 3150 bfd_boolean not_local_protected)
986a241f
RH
3151{
3152 bfd_boolean binding_stays_local_p;
fcb93ecf
PB
3153 const struct elf_backend_data *bed;
3154 struct elf_link_hash_table *hash_table;
986a241f
RH
3155
3156 if (h == NULL)
3157 return FALSE;
3158
3159 while (h->root.type == bfd_link_hash_indirect
3160 || h->root.type == bfd_link_hash_warning)
3161 h = (struct elf_link_hash_entry *) h->root.u.i.link;
3162
3163 /* If it was forced local, then clearly it's not dynamic. */
3164 if (h->dynindx == -1)
3165 return FALSE;
f5385ebf 3166 if (h->forced_local)
986a241f
RH
3167 return FALSE;
3168
3169 /* Identify the cases where name binding rules say that a
3170 visible symbol resolves locally. */
0e1862bb
L
3171 binding_stays_local_p = (bfd_link_executable (info)
3172 || SYMBOLIC_BIND (info, h));
986a241f
RH
3173
3174 switch (ELF_ST_VISIBILITY (h->other))
3175 {
3176 case STV_INTERNAL:
3177 case STV_HIDDEN:
3178 return FALSE;
3179
3180 case STV_PROTECTED:
fcb93ecf
PB
3181 hash_table = elf_hash_table (info);
3182 if (!is_elf_hash_table (hash_table))
3183 return FALSE;
3184
3185 bed = get_elf_backend_data (hash_table->dynobj);
3186
986a241f
RH
3187 /* Proper resolution for function pointer equality may require
3188 that these symbols perhaps be resolved dynamically, even though
3189 we should be resolving them to the current module. */
89a2ee5a 3190 if (!not_local_protected || !bed->is_function_type (h->type))
986a241f
RH
3191 binding_stays_local_p = TRUE;
3192 break;
3193
3194 default:
986a241f
RH
3195 break;
3196 }
3197
aa37626c 3198 /* If it isn't defined locally, then clearly it's dynamic. */
89a2ee5a 3199 if (!h->def_regular && !ELF_COMMON_DEF_P (h))
aa37626c
L
3200 return TRUE;
3201
986a241f
RH
3202 /* Otherwise, the symbol is dynamic if binding rules don't tell
3203 us that it remains local. */
3204 return !binding_stays_local_p;
3205}
f6c52c13
AM
3206
3207/* Return true if the symbol referred to by H should be considered
3208 to resolve local to the current module, and false otherwise. Differs
3209 from (the inverse of) _bfd_elf_dynamic_symbol_p in the treatment of
2e76e85a 3210 undefined symbols. The two functions are virtually identical except
0fad2956
MR
3211 for the place where dynindx == -1 is tested. If that test is true,
3212 _bfd_elf_dynamic_symbol_p will say the symbol is local, while
3213 _bfd_elf_symbol_refs_local_p will say the symbol is local only for
3214 defined symbols.
89a2ee5a
AM
3215 It might seem that _bfd_elf_dynamic_symbol_p could be rewritten as
3216 !_bfd_elf_symbol_refs_local_p, except that targets differ in their
3217 treatment of undefined weak symbols. For those that do not make
3218 undefined weak symbols dynamic, both functions may return false. */
f6c52c13
AM
3219
3220bfd_boolean
268b6b39
AM
3221_bfd_elf_symbol_refs_local_p (struct elf_link_hash_entry *h,
3222 struct bfd_link_info *info,
3223 bfd_boolean local_protected)
f6c52c13 3224{
fcb93ecf
PB
3225 const struct elf_backend_data *bed;
3226 struct elf_link_hash_table *hash_table;
3227
f6c52c13
AM
3228 /* If it's a local sym, of course we resolve locally. */
3229 if (h == NULL)
3230 return TRUE;
3231
d95edcac
L
3232 /* STV_HIDDEN or STV_INTERNAL ones must be local. */
3233 if (ELF_ST_VISIBILITY (h->other) == STV_HIDDEN
3234 || ELF_ST_VISIBILITY (h->other) == STV_INTERNAL)
3235 return TRUE;
3236
0fad2956
MR
3237 /* Forced local symbols resolve locally. */
3238 if (h->forced_local)
3239 return TRUE;
3240
7e2294f9
AO
3241 /* Common symbols that become definitions don't get the DEF_REGULAR
3242 flag set, so test it first, and don't bail out. */
3243 if (ELF_COMMON_DEF_P (h))
3244 /* Do nothing. */;
f6c52c13 3245 /* If we don't have a definition in a regular file, then we can't
49ff44d6
L
3246 resolve locally. The sym is either undefined or dynamic. */
3247 else if (!h->def_regular)
f6c52c13
AM
3248 return FALSE;
3249
0fad2956 3250 /* Non-dynamic symbols resolve locally. */
f6c52c13
AM
3251 if (h->dynindx == -1)
3252 return TRUE;
3253
3254 /* At this point, we know the symbol is defined and dynamic. In an
3255 executable it must resolve locally, likewise when building symbolic
3256 shared libraries. */
0e1862bb 3257 if (bfd_link_executable (info) || SYMBOLIC_BIND (info, h))
f6c52c13
AM
3258 return TRUE;
3259
3260 /* Now deal with defined dynamic symbols in shared libraries. Ones
3261 with default visibility might not resolve locally. */
3262 if (ELF_ST_VISIBILITY (h->other) == STV_DEFAULT)
3263 return FALSE;
3264
fcb93ecf
PB
3265 hash_table = elf_hash_table (info);
3266 if (!is_elf_hash_table (hash_table))
3267 return TRUE;
3268
3269 bed = get_elf_backend_data (hash_table->dynobj);
3270
f7483970
L
3271 /* If extern_protected_data is false, STV_PROTECTED non-function
3272 symbols are local. */
889c2a67
L
3273 if ((!info->extern_protected_data
3274 || (info->extern_protected_data < 0
3275 && !bed->extern_protected_data))
3276 && !bed->is_function_type (h->type))
1c16dfa5
L
3277 return TRUE;
3278
f6c52c13 3279 /* Function pointer equality tests may require that STV_PROTECTED
2676a7d9
AM
3280 symbols be treated as dynamic symbols. If the address of a
3281 function not defined in an executable is set to that function's
3282 plt entry in the executable, then the address of the function in
3283 a shared library must also be the plt entry in the executable. */
f6c52c13
AM
3284 return local_protected;
3285}
e1918d23
AM
3286
3287/* Caches some TLS segment info, and ensures that the TLS segment vma is
3288 aligned. Returns the first TLS output section. */
3289
3290struct bfd_section *
3291_bfd_elf_tls_setup (bfd *obfd, struct bfd_link_info *info)
3292{
3293 struct bfd_section *sec, *tls;
3294 unsigned int align = 0;
3295
3296 for (sec = obfd->sections; sec != NULL; sec = sec->next)
3297 if ((sec->flags & SEC_THREAD_LOCAL) != 0)
3298 break;
3299 tls = sec;
3300
3301 for (; sec != NULL && (sec->flags & SEC_THREAD_LOCAL) != 0; sec = sec->next)
3302 if (sec->alignment_power > align)
3303 align = sec->alignment_power;
3304
3305 elf_hash_table (info)->tls_sec = tls;
3306
3307 /* Ensure the alignment of the first section is the largest alignment,
3308 so that the tls segment starts aligned. */
3309 if (tls != NULL)
3310 tls->alignment_power = align;
3311
3312 return tls;
3313}
0ad989f9
L
3314
3315/* Return TRUE iff this is a non-common, definition of a non-function symbol. */
3316static bfd_boolean
3317is_global_data_symbol_definition (bfd *abfd ATTRIBUTE_UNUSED,
3318 Elf_Internal_Sym *sym)
3319{
a4d8e49b
L
3320 const struct elf_backend_data *bed;
3321
0ad989f9
L
3322 /* Local symbols do not count, but target specific ones might. */
3323 if (ELF_ST_BIND (sym->st_info) != STB_GLOBAL
3324 && ELF_ST_BIND (sym->st_info) < STB_LOOS)
3325 return FALSE;
3326
fcb93ecf 3327 bed = get_elf_backend_data (abfd);
0ad989f9 3328 /* Function symbols do not count. */
fcb93ecf 3329 if (bed->is_function_type (ELF_ST_TYPE (sym->st_info)))
0ad989f9
L
3330 return FALSE;
3331
3332 /* If the section is undefined, then so is the symbol. */
3333 if (sym->st_shndx == SHN_UNDEF)
3334 return FALSE;
3335
3336 /* If the symbol is defined in the common section, then
3337 it is a common definition and so does not count. */
a4d8e49b 3338 if (bed->common_definition (sym))
0ad989f9
L
3339 return FALSE;
3340
3341 /* If the symbol is in a target specific section then we
3342 must rely upon the backend to tell us what it is. */
3343 if (sym->st_shndx >= SHN_LORESERVE && sym->st_shndx < SHN_ABS)
3344 /* FIXME - this function is not coded yet:
3345
3346 return _bfd_is_global_symbol_definition (abfd, sym);
3347
3348 Instead for now assume that the definition is not global,
3349 Even if this is wrong, at least the linker will behave
3350 in the same way that it used to do. */
3351 return FALSE;
3352
3353 return TRUE;
3354}
3355
3356/* Search the symbol table of the archive element of the archive ABFD
3357 whose archive map contains a mention of SYMDEF, and determine if
3358 the symbol is defined in this element. */
3359static bfd_boolean
3360elf_link_is_defined_archive_symbol (bfd * abfd, carsym * symdef)
3361{
3362 Elf_Internal_Shdr * hdr;
ef53be89
AM
3363 size_t symcount;
3364 size_t extsymcount;
3365 size_t extsymoff;
0ad989f9
L
3366 Elf_Internal_Sym *isymbuf;
3367 Elf_Internal_Sym *isym;
3368 Elf_Internal_Sym *isymend;
3369 bfd_boolean result;
3370
3371 abfd = _bfd_get_elt_at_filepos (abfd, symdef->file_offset);
3372 if (abfd == NULL)
3373 return FALSE;
3374
3375 if (! bfd_check_format (abfd, bfd_object))
3376 return FALSE;
3377
7dc3990e
L
3378 /* Select the appropriate symbol table. If we don't know if the
3379 object file is an IR object, give linker LTO plugin a chance to
3380 get the correct symbol table. */
3381 if (abfd->plugin_format == bfd_plugin_yes
08ce1d72 3382#if BFD_SUPPORTS_PLUGINS
7dc3990e
L
3383 || (abfd->plugin_format == bfd_plugin_unknown
3384 && bfd_link_plugin_object_p (abfd))
3385#endif
3386 )
3387 {
3388 /* Use the IR symbol table if the object has been claimed by
3389 plugin. */
3390 abfd = abfd->plugin_dummy_bfd;
3391 hdr = &elf_tdata (abfd)->symtab_hdr;
3392 }
3393 else if ((abfd->flags & DYNAMIC) == 0 || elf_dynsymtab (abfd) == 0)
0ad989f9
L
3394 hdr = &elf_tdata (abfd)->symtab_hdr;
3395 else
3396 hdr = &elf_tdata (abfd)->dynsymtab_hdr;
3397
3398 symcount = hdr->sh_size / get_elf_backend_data (abfd)->s->sizeof_sym;
3399
3400 /* The sh_info field of the symtab header tells us where the
3401 external symbols start. We don't care about the local symbols. */
3402 if (elf_bad_symtab (abfd))
3403 {
3404 extsymcount = symcount;
3405 extsymoff = 0;
3406 }
3407 else
3408 {
3409 extsymcount = symcount - hdr->sh_info;
3410 extsymoff = hdr->sh_info;
3411 }
3412
3413 if (extsymcount == 0)
3414 return FALSE;
3415
3416 /* Read in the symbol table. */
3417 isymbuf = bfd_elf_get_elf_syms (abfd, hdr, extsymcount, extsymoff,
3418 NULL, NULL, NULL);
3419 if (isymbuf == NULL)
3420 return FALSE;
3421
3422 /* Scan the symbol table looking for SYMDEF. */
3423 result = FALSE;
3424 for (isym = isymbuf, isymend = isymbuf + extsymcount; isym < isymend; isym++)
3425 {
3426 const char *name;
3427
3428 name = bfd_elf_string_from_elf_section (abfd, hdr->sh_link,
3429 isym->st_name);
3430 if (name == NULL)
3431 break;
3432
3433 if (strcmp (name, symdef->name) == 0)
3434 {
3435 result = is_global_data_symbol_definition (abfd, isym);
3436 break;
3437 }
3438 }
3439
3440 free (isymbuf);
3441
3442 return result;
3443}
3444\f
5a580b3a
AM
3445/* Add an entry to the .dynamic table. */
3446
3447bfd_boolean
3448_bfd_elf_add_dynamic_entry (struct bfd_link_info *info,
3449 bfd_vma tag,
3450 bfd_vma val)
3451{
3452 struct elf_link_hash_table *hash_table;
3453 const struct elf_backend_data *bed;
3454 asection *s;
3455 bfd_size_type newsize;
3456 bfd_byte *newcontents;
3457 Elf_Internal_Dyn dyn;
3458
3459 hash_table = elf_hash_table (info);
3460 if (! is_elf_hash_table (hash_table))
3461 return FALSE;
3462
7f923b7f
AM
3463 if (tag == DT_RELA || tag == DT_REL)
3464 hash_table->dynamic_relocs = TRUE;
3465
5a580b3a 3466 bed = get_elf_backend_data (hash_table->dynobj);
3d4d4302 3467 s = bfd_get_linker_section (hash_table->dynobj, ".dynamic");
5a580b3a
AM
3468 BFD_ASSERT (s != NULL);
3469
eea6121a 3470 newsize = s->size + bed->s->sizeof_dyn;
a50b1753 3471 newcontents = (bfd_byte *) bfd_realloc (s->contents, newsize);
5a580b3a
AM
3472 if (newcontents == NULL)
3473 return FALSE;
3474
3475 dyn.d_tag = tag;
3476 dyn.d_un.d_val = val;
eea6121a 3477 bed->s->swap_dyn_out (hash_table->dynobj, &dyn, newcontents + s->size);
5a580b3a 3478
eea6121a 3479 s->size = newsize;
5a580b3a
AM
3480 s->contents = newcontents;
3481
3482 return TRUE;
3483}
3484
3485/* Add a DT_NEEDED entry for this dynamic object if DO_IT is true,
3486 otherwise just check whether one already exists. Returns -1 on error,
3487 1 if a DT_NEEDED tag already exists, and 0 on success. */
3488
4ad4eba5 3489static int
7e9f0867
AM
3490elf_add_dt_needed_tag (bfd *abfd,
3491 struct bfd_link_info *info,
4ad4eba5
AM
3492 const char *soname,
3493 bfd_boolean do_it)
5a580b3a
AM
3494{
3495 struct elf_link_hash_table *hash_table;
ef53be89 3496 size_t strindex;
5a580b3a 3497
7e9f0867
AM
3498 if (!_bfd_elf_link_create_dynstrtab (abfd, info))
3499 return -1;
3500
5a580b3a 3501 hash_table = elf_hash_table (info);
5a580b3a 3502 strindex = _bfd_elf_strtab_add (hash_table->dynstr, soname, FALSE);
ef53be89 3503 if (strindex == (size_t) -1)
5a580b3a
AM
3504 return -1;
3505
02be4619 3506 if (_bfd_elf_strtab_refcount (hash_table->dynstr, strindex) != 1)
5a580b3a
AM
3507 {
3508 asection *sdyn;
3509 const struct elf_backend_data *bed;
3510 bfd_byte *extdyn;
3511
3512 bed = get_elf_backend_data (hash_table->dynobj);
3d4d4302 3513 sdyn = bfd_get_linker_section (hash_table->dynobj, ".dynamic");
7e9f0867
AM
3514 if (sdyn != NULL)
3515 for (extdyn = sdyn->contents;
3516 extdyn < sdyn->contents + sdyn->size;
3517 extdyn += bed->s->sizeof_dyn)
3518 {
3519 Elf_Internal_Dyn dyn;
5a580b3a 3520
7e9f0867
AM
3521 bed->s->swap_dyn_in (hash_table->dynobj, extdyn, &dyn);
3522 if (dyn.d_tag == DT_NEEDED
3523 && dyn.d_un.d_val == strindex)
3524 {
3525 _bfd_elf_strtab_delref (hash_table->dynstr, strindex);
3526 return 1;
3527 }
3528 }
5a580b3a
AM
3529 }
3530
3531 if (do_it)
3532 {
7e9f0867
AM
3533 if (!_bfd_elf_link_create_dynamic_sections (hash_table->dynobj, info))
3534 return -1;
3535
5a580b3a
AM
3536 if (!_bfd_elf_add_dynamic_entry (info, DT_NEEDED, strindex))
3537 return -1;
3538 }
3539 else
3540 /* We were just checking for existence of the tag. */
3541 _bfd_elf_strtab_delref (hash_table->dynstr, strindex);
3542
3543 return 0;
3544}
3545
7b15fa7a
AM
3546/* Return true if SONAME is on the needed list between NEEDED and STOP
3547 (or the end of list if STOP is NULL), and needed by a library that
3548 will be loaded. */
3549
010e5ae2 3550static bfd_boolean
7b15fa7a
AM
3551on_needed_list (const char *soname,
3552 struct bfd_link_needed_list *needed,
3553 struct bfd_link_needed_list *stop)
010e5ae2 3554{
7b15fa7a
AM
3555 struct bfd_link_needed_list *look;
3556 for (look = needed; look != stop; look = look->next)
3557 if (strcmp (soname, look->name) == 0
3558 && ((elf_dyn_lib_class (look->by) & DYN_AS_NEEDED) == 0
3559 /* If needed by a library that itself is not directly
3560 needed, recursively check whether that library is
3561 indirectly needed. Since we add DT_NEEDED entries to
3562 the end of the list, library dependencies appear after
3563 the library. Therefore search prior to the current
3564 LOOK, preventing possible infinite recursion. */
3565 || on_needed_list (elf_dt_name (look->by), needed, look)))
010e5ae2
AM
3566 return TRUE;
3567
3568 return FALSE;
3569}
3570
14160578 3571/* Sort symbol by value, section, and size. */
4ad4eba5
AM
3572static int
3573elf_sort_symbol (const void *arg1, const void *arg2)
5a580b3a
AM
3574{
3575 const struct elf_link_hash_entry *h1;
3576 const struct elf_link_hash_entry *h2;
10b7e05b 3577 bfd_signed_vma vdiff;
5a580b3a
AM
3578
3579 h1 = *(const struct elf_link_hash_entry **) arg1;
3580 h2 = *(const struct elf_link_hash_entry **) arg2;
10b7e05b
NC
3581 vdiff = h1->root.u.def.value - h2->root.u.def.value;
3582 if (vdiff != 0)
3583 return vdiff > 0 ? 1 : -1;
3584 else
3585 {
d3435ae8 3586 int sdiff = h1->root.u.def.section->id - h2->root.u.def.section->id;
10b7e05b
NC
3587 if (sdiff != 0)
3588 return sdiff > 0 ? 1 : -1;
3589 }
14160578
AM
3590 vdiff = h1->size - h2->size;
3591 return vdiff == 0 ? 0 : vdiff > 0 ? 1 : -1;
5a580b3a 3592}
4ad4eba5 3593
5a580b3a
AM
3594/* This function is used to adjust offsets into .dynstr for
3595 dynamic symbols. This is called via elf_link_hash_traverse. */
3596
3597static bfd_boolean
3598elf_adjust_dynstr_offsets (struct elf_link_hash_entry *h, void *data)
3599{
a50b1753 3600 struct elf_strtab_hash *dynstr = (struct elf_strtab_hash *) data;
5a580b3a 3601
5a580b3a
AM
3602 if (h->dynindx != -1)
3603 h->dynstr_index = _bfd_elf_strtab_offset (dynstr, h->dynstr_index);
3604 return TRUE;
3605}
3606
3607/* Assign string offsets in .dynstr, update all structures referencing
3608 them. */
3609
4ad4eba5
AM
3610static bfd_boolean
3611elf_finalize_dynstr (bfd *output_bfd, struct bfd_link_info *info)
5a580b3a
AM
3612{
3613 struct elf_link_hash_table *hash_table = elf_hash_table (info);
3614 struct elf_link_local_dynamic_entry *entry;
3615 struct elf_strtab_hash *dynstr = hash_table->dynstr;
3616 bfd *dynobj = hash_table->dynobj;
3617 asection *sdyn;
3618 bfd_size_type size;
3619 const struct elf_backend_data *bed;
3620 bfd_byte *extdyn;
3621
3622 _bfd_elf_strtab_finalize (dynstr);
3623 size = _bfd_elf_strtab_size (dynstr);
3624
3625 bed = get_elf_backend_data (dynobj);
3d4d4302 3626 sdyn = bfd_get_linker_section (dynobj, ".dynamic");
5a580b3a
AM
3627 BFD_ASSERT (sdyn != NULL);
3628
3629 /* Update all .dynamic entries referencing .dynstr strings. */
3630 for (extdyn = sdyn->contents;
eea6121a 3631 extdyn < sdyn->contents + sdyn->size;
5a580b3a
AM
3632 extdyn += bed->s->sizeof_dyn)
3633 {
3634 Elf_Internal_Dyn dyn;
3635
3636 bed->s->swap_dyn_in (dynobj, extdyn, &dyn);
3637 switch (dyn.d_tag)
3638 {
3639 case DT_STRSZ:
3640 dyn.d_un.d_val = size;
3641 break;
3642 case DT_NEEDED:
3643 case DT_SONAME:
3644 case DT_RPATH:
3645 case DT_RUNPATH:
3646 case DT_FILTER:
3647 case DT_AUXILIARY:
7ee314fa
AM
3648 case DT_AUDIT:
3649 case DT_DEPAUDIT:
5a580b3a
AM
3650 dyn.d_un.d_val = _bfd_elf_strtab_offset (dynstr, dyn.d_un.d_val);
3651 break;
3652 default:
3653 continue;
3654 }
3655 bed->s->swap_dyn_out (dynobj, &dyn, extdyn);
3656 }
3657
3658 /* Now update local dynamic symbols. */
3659 for (entry = hash_table->dynlocal; entry ; entry = entry->next)
3660 entry->isym.st_name = _bfd_elf_strtab_offset (dynstr,
3661 entry->isym.st_name);
3662
3663 /* And the rest of dynamic symbols. */
3664 elf_link_hash_traverse (hash_table, elf_adjust_dynstr_offsets, dynstr);
3665
3666 /* Adjust version definitions. */
3667 if (elf_tdata (output_bfd)->cverdefs)
3668 {
3669 asection *s;
3670 bfd_byte *p;
ef53be89 3671 size_t i;
5a580b3a
AM
3672 Elf_Internal_Verdef def;
3673 Elf_Internal_Verdaux defaux;
3674
3d4d4302 3675 s = bfd_get_linker_section (dynobj, ".gnu.version_d");
5a580b3a
AM
3676 p = s->contents;
3677 do
3678 {
3679 _bfd_elf_swap_verdef_in (output_bfd, (Elf_External_Verdef *) p,
3680 &def);
3681 p += sizeof (Elf_External_Verdef);
3e3b46e5
PB
3682 if (def.vd_aux != sizeof (Elf_External_Verdef))
3683 continue;
5a580b3a
AM
3684 for (i = 0; i < def.vd_cnt; ++i)
3685 {
3686 _bfd_elf_swap_verdaux_in (output_bfd,
3687 (Elf_External_Verdaux *) p, &defaux);
3688 defaux.vda_name = _bfd_elf_strtab_offset (dynstr,
3689 defaux.vda_name);
3690 _bfd_elf_swap_verdaux_out (output_bfd,
3691 &defaux, (Elf_External_Verdaux *) p);
3692 p += sizeof (Elf_External_Verdaux);
3693 }
3694 }
3695 while (def.vd_next);
3696 }
3697
3698 /* Adjust version references. */
3699 if (elf_tdata (output_bfd)->verref)
3700 {
3701 asection *s;
3702 bfd_byte *p;
ef53be89 3703 size_t i;
5a580b3a
AM
3704 Elf_Internal_Verneed need;
3705 Elf_Internal_Vernaux needaux;
3706
3d4d4302 3707 s = bfd_get_linker_section (dynobj, ".gnu.version_r");
5a580b3a
AM
3708 p = s->contents;
3709 do
3710 {
3711 _bfd_elf_swap_verneed_in (output_bfd, (Elf_External_Verneed *) p,
3712 &need);
3713 need.vn_file = _bfd_elf_strtab_offset (dynstr, need.vn_file);
3714 _bfd_elf_swap_verneed_out (output_bfd, &need,
3715 (Elf_External_Verneed *) p);
3716 p += sizeof (Elf_External_Verneed);
3717 for (i = 0; i < need.vn_cnt; ++i)
3718 {
3719 _bfd_elf_swap_vernaux_in (output_bfd,
3720 (Elf_External_Vernaux *) p, &needaux);
3721 needaux.vna_name = _bfd_elf_strtab_offset (dynstr,
3722 needaux.vna_name);
3723 _bfd_elf_swap_vernaux_out (output_bfd,
3724 &needaux,
3725 (Elf_External_Vernaux *) p);
3726 p += sizeof (Elf_External_Vernaux);
3727 }
3728 }
3729 while (need.vn_next);
3730 }
3731
3732 return TRUE;
3733}
3734\f
13285a1b
AM
3735/* Return TRUE iff relocations for INPUT are compatible with OUTPUT.
3736 The default is to only match when the INPUT and OUTPUT are exactly
3737 the same target. */
3738
3739bfd_boolean
3740_bfd_elf_default_relocs_compatible (const bfd_target *input,
3741 const bfd_target *output)
3742{
3743 return input == output;
3744}
3745
3746/* Return TRUE iff relocations for INPUT are compatible with OUTPUT.
3747 This version is used when different targets for the same architecture
3748 are virtually identical. */
3749
3750bfd_boolean
3751_bfd_elf_relocs_compatible (const bfd_target *input,
3752 const bfd_target *output)
3753{
3754 const struct elf_backend_data *obed, *ibed;
3755
3756 if (input == output)
3757 return TRUE;
3758
3759 ibed = xvec_get_elf_backend_data (input);
3760 obed = xvec_get_elf_backend_data (output);
3761
3762 if (ibed->arch != obed->arch)
3763 return FALSE;
3764
3765 /* If both backends are using this function, deem them compatible. */
3766 return ibed->relocs_compatible == obed->relocs_compatible;
3767}
3768
e5034e59
AM
3769/* Make a special call to the linker "notice" function to tell it that
3770 we are about to handle an as-needed lib, or have finished
1b786873 3771 processing the lib. */
e5034e59
AM
3772
3773bfd_boolean
3774_bfd_elf_notice_as_needed (bfd *ibfd,
3775 struct bfd_link_info *info,
3776 enum notice_asneeded_action act)
3777{
46135103 3778 return (*info->callbacks->notice) (info, NULL, NULL, ibfd, NULL, act, 0);
e5034e59
AM
3779}
3780
d9689752
L
3781/* Check relocations an ELF object file. */
3782
3783bfd_boolean
3784_bfd_elf_link_check_relocs (bfd *abfd, struct bfd_link_info *info)
3785{
3786 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
3787 struct elf_link_hash_table *htab = elf_hash_table (info);
3788
3789 /* If this object is the same format as the output object, and it is
3790 not a shared library, then let the backend look through the
3791 relocs.
3792
3793 This is required to build global offset table entries and to
3794 arrange for dynamic relocs. It is not required for the
3795 particular common case of linking non PIC code, even when linking
3796 against shared libraries, but unfortunately there is no way of
3797 knowing whether an object file has been compiled PIC or not.
3798 Looking through the relocs is not particularly time consuming.
3799 The problem is that we must either (1) keep the relocs in memory,
3800 which causes the linker to require additional runtime memory or
3801 (2) read the relocs twice from the input file, which wastes time.
3802 This would be a good case for using mmap.
3803
3804 I have no idea how to handle linking PIC code into a file of a
3805 different format. It probably can't be done. */
3806 if ((abfd->flags & DYNAMIC) == 0
3807 && is_elf_hash_table (htab)
3808 && bed->check_relocs != NULL
3809 && elf_object_id (abfd) == elf_hash_table_id (htab)
3810 && (*bed->relocs_compatible) (abfd->xvec, info->output_bfd->xvec))
3811 {
3812 asection *o;
3813
3814 for (o = abfd->sections; o != NULL; o = o->next)
3815 {
3816 Elf_Internal_Rela *internal_relocs;
3817 bfd_boolean ok;
3818
5ce03cea 3819 /* Don't check relocations in excluded sections. */
d9689752 3820 if ((o->flags & SEC_RELOC) == 0
5ce03cea 3821 || (o->flags & SEC_EXCLUDE) != 0
d9689752
L
3822 || o->reloc_count == 0
3823 || ((info->strip == strip_all || info->strip == strip_debugger)
3824 && (o->flags & SEC_DEBUGGING) != 0)
3825 || bfd_is_abs_section (o->output_section))
3826 continue;
3827
3828 internal_relocs = _bfd_elf_link_read_relocs (abfd, o, NULL, NULL,
3829 info->keep_memory);
3830 if (internal_relocs == NULL)
3831 return FALSE;
3832
3833 ok = (*bed->check_relocs) (abfd, info, o, internal_relocs);
3834
3835 if (elf_section_data (o)->relocs != internal_relocs)
3836 free (internal_relocs);
3837
3838 if (! ok)
3839 return FALSE;
3840 }
3841 }
3842
3843 return TRUE;
3844}
3845
4ad4eba5
AM
3846/* Add symbols from an ELF object file to the linker hash table. */
3847
3848static bfd_boolean
3849elf_link_add_object_symbols (bfd *abfd, struct bfd_link_info *info)
3850{
a0c402a5 3851 Elf_Internal_Ehdr *ehdr;
4ad4eba5 3852 Elf_Internal_Shdr *hdr;
ef53be89
AM
3853 size_t symcount;
3854 size_t extsymcount;
3855 size_t extsymoff;
4ad4eba5
AM
3856 struct elf_link_hash_entry **sym_hash;
3857 bfd_boolean dynamic;
3858 Elf_External_Versym *extversym = NULL;
3859 Elf_External_Versym *ever;
3860 struct elf_link_hash_entry *weaks;
3861 struct elf_link_hash_entry **nondeflt_vers = NULL;
ef53be89 3862 size_t nondeflt_vers_cnt = 0;
4ad4eba5
AM
3863 Elf_Internal_Sym *isymbuf = NULL;
3864 Elf_Internal_Sym *isym;
3865 Elf_Internal_Sym *isymend;
3866 const struct elf_backend_data *bed;
3867 bfd_boolean add_needed;
66eb6687 3868 struct elf_link_hash_table *htab;
4ad4eba5 3869 bfd_size_type amt;
66eb6687 3870 void *alloc_mark = NULL;
4f87808c
AM
3871 struct bfd_hash_entry **old_table = NULL;
3872 unsigned int old_size = 0;
3873 unsigned int old_count = 0;
66eb6687 3874 void *old_tab = NULL;
66eb6687
AM
3875 void *old_ent;
3876 struct bfd_link_hash_entry *old_undefs = NULL;
3877 struct bfd_link_hash_entry *old_undefs_tail = NULL;
5b677558 3878 void *old_strtab = NULL;
66eb6687 3879 size_t tabsize = 0;
db6a5d5f 3880 asection *s;
29a9f53e 3881 bfd_boolean just_syms;
4ad4eba5 3882
66eb6687 3883 htab = elf_hash_table (info);
4ad4eba5 3884 bed = get_elf_backend_data (abfd);
4ad4eba5
AM
3885
3886 if ((abfd->flags & DYNAMIC) == 0)
3887 dynamic = FALSE;
3888 else
3889 {
3890 dynamic = TRUE;
3891
3892 /* You can't use -r against a dynamic object. Also, there's no
3893 hope of using a dynamic object which does not exactly match
3894 the format of the output file. */
0e1862bb 3895 if (bfd_link_relocatable (info)
66eb6687 3896 || !is_elf_hash_table (htab)
f13a99db 3897 || info->output_bfd->xvec != abfd->xvec)
4ad4eba5 3898 {
0e1862bb 3899 if (bfd_link_relocatable (info))
9a0789ec
NC
3900 bfd_set_error (bfd_error_invalid_operation);
3901 else
3902 bfd_set_error (bfd_error_wrong_format);
4ad4eba5
AM
3903 goto error_return;
3904 }
3905 }
3906
a0c402a5
L
3907 ehdr = elf_elfheader (abfd);
3908 if (info->warn_alternate_em
3909 && bed->elf_machine_code != ehdr->e_machine
3910 && ((bed->elf_machine_alt1 != 0
3911 && ehdr->e_machine == bed->elf_machine_alt1)
3912 || (bed->elf_machine_alt2 != 0
3913 && ehdr->e_machine == bed->elf_machine_alt2)))
9793eb77 3914 _bfd_error_handler
695344c0 3915 /* xgettext:c-format */
9793eb77 3916 (_("alternate ELF machine code found (%d) in %pB, expecting %d"),
a0c402a5
L
3917 ehdr->e_machine, abfd, bed->elf_machine_code);
3918
4ad4eba5
AM
3919 /* As a GNU extension, any input sections which are named
3920 .gnu.warning.SYMBOL are treated as warning symbols for the given
3921 symbol. This differs from .gnu.warning sections, which generate
3922 warnings when they are included in an output file. */
dd98f8d2 3923 /* PR 12761: Also generate this warning when building shared libraries. */
db6a5d5f 3924 for (s = abfd->sections; s != NULL; s = s->next)
4ad4eba5 3925 {
db6a5d5f 3926 const char *name;
4ad4eba5 3927
db6a5d5f
AM
3928 name = bfd_get_section_name (abfd, s);
3929 if (CONST_STRNEQ (name, ".gnu.warning."))
4ad4eba5 3930 {
db6a5d5f
AM
3931 char *msg;
3932 bfd_size_type sz;
3933
3934 name += sizeof ".gnu.warning." - 1;
3935
3936 /* If this is a shared object, then look up the symbol
3937 in the hash table. If it is there, and it is already
3938 been defined, then we will not be using the entry
3939 from this shared object, so we don't need to warn.
3940 FIXME: If we see the definition in a regular object
3941 later on, we will warn, but we shouldn't. The only
3942 fix is to keep track of what warnings we are supposed
3943 to emit, and then handle them all at the end of the
3944 link. */
3945 if (dynamic)
4ad4eba5 3946 {
db6a5d5f
AM
3947 struct elf_link_hash_entry *h;
3948
3949 h = elf_link_hash_lookup (htab, name, FALSE, FALSE, TRUE);
3950
3951 /* FIXME: What about bfd_link_hash_common? */
3952 if (h != NULL
3953 && (h->root.type == bfd_link_hash_defined
3954 || h->root.type == bfd_link_hash_defweak))
3955 continue;
3956 }
4ad4eba5 3957
db6a5d5f
AM
3958 sz = s->size;
3959 msg = (char *) bfd_alloc (abfd, sz + 1);
3960 if (msg == NULL)
3961 goto error_return;
4ad4eba5 3962
db6a5d5f
AM
3963 if (! bfd_get_section_contents (abfd, s, msg, 0, sz))
3964 goto error_return;
4ad4eba5 3965
db6a5d5f 3966 msg[sz] = '\0';
4ad4eba5 3967
db6a5d5f
AM
3968 if (! (_bfd_generic_link_add_one_symbol
3969 (info, abfd, name, BSF_WARNING, s, 0, msg,
3970 FALSE, bed->collect, NULL)))
3971 goto error_return;
4ad4eba5 3972
0e1862bb 3973 if (bfd_link_executable (info))
db6a5d5f
AM
3974 {
3975 /* Clobber the section size so that the warning does
3976 not get copied into the output file. */
3977 s->size = 0;
11d2f718 3978
db6a5d5f
AM
3979 /* Also set SEC_EXCLUDE, so that symbols defined in
3980 the warning section don't get copied to the output. */
3981 s->flags |= SEC_EXCLUDE;
4ad4eba5
AM
3982 }
3983 }
3984 }
3985
29a9f53e
L
3986 just_syms = ((s = abfd->sections) != NULL
3987 && s->sec_info_type == SEC_INFO_TYPE_JUST_SYMS);
3988
4ad4eba5
AM
3989 add_needed = TRUE;
3990 if (! dynamic)
3991 {
3992 /* If we are creating a shared library, create all the dynamic
3993 sections immediately. We need to attach them to something,
3994 so we attach them to this BFD, provided it is the right
bf89386a
L
3995 format and is not from ld --just-symbols. Always create the
3996 dynamic sections for -E/--dynamic-list. FIXME: If there
29a9f53e
L
3997 are no input BFD's of the same format as the output, we can't
3998 make a shared library. */
3999 if (!just_syms
bf89386a 4000 && (bfd_link_pic (info)
9c1d7a08 4001 || (!bfd_link_relocatable (info)
3c5fce9b 4002 && info->nointerp
9c1d7a08 4003 && (info->export_dynamic || info->dynamic)))
66eb6687 4004 && is_elf_hash_table (htab)
f13a99db 4005 && info->output_bfd->xvec == abfd->xvec
66eb6687 4006 && !htab->dynamic_sections_created)
4ad4eba5
AM
4007 {
4008 if (! _bfd_elf_link_create_dynamic_sections (abfd, info))
4009 goto error_return;
4010 }
4011 }
66eb6687 4012 else if (!is_elf_hash_table (htab))
4ad4eba5
AM
4013 goto error_return;
4014 else
4015 {
4ad4eba5 4016 const char *soname = NULL;
7ee314fa 4017 char *audit = NULL;
4ad4eba5 4018 struct bfd_link_needed_list *rpath = NULL, *runpath = NULL;
9acc85a6 4019 const Elf_Internal_Phdr *phdr;
4ad4eba5
AM
4020 int ret;
4021
4022 /* ld --just-symbols and dynamic objects don't mix very well.
92fd189d 4023 ld shouldn't allow it. */
29a9f53e 4024 if (just_syms)
92fd189d 4025 abort ();
4ad4eba5
AM
4026
4027 /* If this dynamic lib was specified on the command line with
4028 --as-needed in effect, then we don't want to add a DT_NEEDED
4029 tag unless the lib is actually used. Similary for libs brought
e56f61be
L
4030 in by another lib's DT_NEEDED. When --no-add-needed is used
4031 on a dynamic lib, we don't want to add a DT_NEEDED entry for
4032 any dynamic library in DT_NEEDED tags in the dynamic lib at
4033 all. */
4034 add_needed = (elf_dyn_lib_class (abfd)
4035 & (DYN_AS_NEEDED | DYN_DT_NEEDED
4036 | DYN_NO_NEEDED)) == 0;
4ad4eba5
AM
4037
4038 s = bfd_get_section_by_name (abfd, ".dynamic");
4039 if (s != NULL)
4040 {
4041 bfd_byte *dynbuf;
4042 bfd_byte *extdyn;
cb33740c 4043 unsigned int elfsec;
4ad4eba5
AM
4044 unsigned long shlink;
4045
eea6121a 4046 if (!bfd_malloc_and_get_section (abfd, s, &dynbuf))
f8703194
L
4047 {
4048error_free_dyn:
4049 free (dynbuf);
4050 goto error_return;
4051 }
4ad4eba5
AM
4052
4053 elfsec = _bfd_elf_section_from_bfd_section (abfd, s);
cb33740c 4054 if (elfsec == SHN_BAD)
4ad4eba5
AM
4055 goto error_free_dyn;
4056 shlink = elf_elfsections (abfd)[elfsec]->sh_link;
4057
4058 for (extdyn = dynbuf;
eea6121a 4059 extdyn < dynbuf + s->size;
4ad4eba5
AM
4060 extdyn += bed->s->sizeof_dyn)
4061 {
4062 Elf_Internal_Dyn dyn;
4063
4064 bed->s->swap_dyn_in (abfd, extdyn, &dyn);
4065 if (dyn.d_tag == DT_SONAME)
4066 {
4067 unsigned int tagv = dyn.d_un.d_val;
4068 soname = bfd_elf_string_from_elf_section (abfd, shlink, tagv);
4069 if (soname == NULL)
4070 goto error_free_dyn;
4071 }
4072 if (dyn.d_tag == DT_NEEDED)
4073 {
4074 struct bfd_link_needed_list *n, **pn;
4075 char *fnm, *anm;
4076 unsigned int tagv = dyn.d_un.d_val;
4077
4078 amt = sizeof (struct bfd_link_needed_list);
a50b1753 4079 n = (struct bfd_link_needed_list *) bfd_alloc (abfd, amt);
4ad4eba5
AM
4080 fnm = bfd_elf_string_from_elf_section (abfd, shlink, tagv);
4081 if (n == NULL || fnm == NULL)
4082 goto error_free_dyn;
4083 amt = strlen (fnm) + 1;
a50b1753 4084 anm = (char *) bfd_alloc (abfd, amt);
4ad4eba5
AM
4085 if (anm == NULL)
4086 goto error_free_dyn;
4087 memcpy (anm, fnm, amt);
4088 n->name = anm;
4089 n->by = abfd;
4090 n->next = NULL;
66eb6687 4091 for (pn = &htab->needed; *pn != NULL; pn = &(*pn)->next)
4ad4eba5
AM
4092 ;
4093 *pn = n;
4094 }
4095 if (dyn.d_tag == DT_RUNPATH)
4096 {
4097 struct bfd_link_needed_list *n, **pn;
4098 char *fnm, *anm;
4099 unsigned int tagv = dyn.d_un.d_val;
4100
4101 amt = sizeof (struct bfd_link_needed_list);
a50b1753 4102 n = (struct bfd_link_needed_list *) bfd_alloc (abfd, amt);
4ad4eba5
AM
4103 fnm = bfd_elf_string_from_elf_section (abfd, shlink, tagv);
4104 if (n == NULL || fnm == NULL)
4105 goto error_free_dyn;
4106 amt = strlen (fnm) + 1;
a50b1753 4107 anm = (char *) bfd_alloc (abfd, amt);
4ad4eba5
AM
4108 if (anm == NULL)
4109 goto error_free_dyn;
4110 memcpy (anm, fnm, amt);
4111 n->name = anm;
4112 n->by = abfd;
4113 n->next = NULL;
4114 for (pn = & runpath;
4115 *pn != NULL;
4116 pn = &(*pn)->next)
4117 ;
4118 *pn = n;
4119 }
4120 /* Ignore DT_RPATH if we have seen DT_RUNPATH. */
4121 if (!runpath && dyn.d_tag == DT_RPATH)
4122 {
4123 struct bfd_link_needed_list *n, **pn;
4124 char *fnm, *anm;
4125 unsigned int tagv = dyn.d_un.d_val;
4126
4127 amt = sizeof (struct bfd_link_needed_list);
a50b1753 4128 n = (struct bfd_link_needed_list *) bfd_alloc (abfd, amt);
4ad4eba5
AM
4129 fnm = bfd_elf_string_from_elf_section (abfd, shlink, tagv);
4130 if (n == NULL || fnm == NULL)
4131 goto error_free_dyn;
4132 amt = strlen (fnm) + 1;
a50b1753 4133 anm = (char *) bfd_alloc (abfd, amt);
4ad4eba5 4134 if (anm == NULL)
f8703194 4135 goto error_free_dyn;
4ad4eba5
AM
4136 memcpy (anm, fnm, amt);
4137 n->name = anm;
4138 n->by = abfd;
4139 n->next = NULL;
4140 for (pn = & rpath;
4141 *pn != NULL;
4142 pn = &(*pn)->next)
4143 ;
4144 *pn = n;
4145 }
7ee314fa
AM
4146 if (dyn.d_tag == DT_AUDIT)
4147 {
4148 unsigned int tagv = dyn.d_un.d_val;
4149 audit = bfd_elf_string_from_elf_section (abfd, shlink, tagv);
4150 }
4ad4eba5
AM
4151 }
4152
4153 free (dynbuf);
4154 }
4155
4156 /* DT_RUNPATH overrides DT_RPATH. Do _NOT_ bfd_release, as that
4157 frees all more recently bfd_alloc'd blocks as well. */
4158 if (runpath)
4159 rpath = runpath;
4160
4161 if (rpath)
4162 {
4163 struct bfd_link_needed_list **pn;
66eb6687 4164 for (pn = &htab->runpath; *pn != NULL; pn = &(*pn)->next)
4ad4eba5
AM
4165 ;
4166 *pn = rpath;
4167 }
4168
9acc85a6
AM
4169 /* If we have a PT_GNU_RELRO program header, mark as read-only
4170 all sections contained fully therein. This makes relro
4171 shared library sections appear as they will at run-time. */
4172 phdr = elf_tdata (abfd)->phdr + elf_elfheader (abfd)->e_phnum;
4173 while (--phdr >= elf_tdata (abfd)->phdr)
4174 if (phdr->p_type == PT_GNU_RELRO)
4175 {
4176 for (s = abfd->sections; s != NULL; s = s->next)
4177 if ((s->flags & SEC_ALLOC) != 0
4178 && s->vma >= phdr->p_vaddr
4179 && s->vma + s->size <= phdr->p_vaddr + phdr->p_memsz)
4180 s->flags |= SEC_READONLY;
4181 break;
4182 }
4183
4ad4eba5
AM
4184 /* We do not want to include any of the sections in a dynamic
4185 object in the output file. We hack by simply clobbering the
4186 list of sections in the BFD. This could be handled more
4187 cleanly by, say, a new section flag; the existing
4188 SEC_NEVER_LOAD flag is not the one we want, because that one
4189 still implies that the section takes up space in the output
4190 file. */
4191 bfd_section_list_clear (abfd);
4192
4ad4eba5
AM
4193 /* Find the name to use in a DT_NEEDED entry that refers to this
4194 object. If the object has a DT_SONAME entry, we use it.
4195 Otherwise, if the generic linker stuck something in
4196 elf_dt_name, we use that. Otherwise, we just use the file
4197 name. */
4198 if (soname == NULL || *soname == '\0')
4199 {
4200 soname = elf_dt_name (abfd);
4201 if (soname == NULL || *soname == '\0')
4202 soname = bfd_get_filename (abfd);
4203 }
4204
4205 /* Save the SONAME because sometimes the linker emulation code
4206 will need to know it. */
4207 elf_dt_name (abfd) = soname;
4208
7e9f0867 4209 ret = elf_add_dt_needed_tag (abfd, info, soname, add_needed);
4ad4eba5
AM
4210 if (ret < 0)
4211 goto error_return;
4212
4213 /* If we have already included this dynamic object in the
4214 link, just ignore it. There is no reason to include a
4215 particular dynamic object more than once. */
4216 if (ret > 0)
4217 return TRUE;
7ee314fa
AM
4218
4219 /* Save the DT_AUDIT entry for the linker emulation code. */
68ffbac6 4220 elf_dt_audit (abfd) = audit;
4ad4eba5
AM
4221 }
4222
4223 /* If this is a dynamic object, we always link against the .dynsym
4224 symbol table, not the .symtab symbol table. The dynamic linker
4225 will only see the .dynsym symbol table, so there is no reason to
4226 look at .symtab for a dynamic object. */
4227
4228 if (! dynamic || elf_dynsymtab (abfd) == 0)
4229 hdr = &elf_tdata (abfd)->symtab_hdr;
4230 else
4231 hdr = &elf_tdata (abfd)->dynsymtab_hdr;
4232
4233 symcount = hdr->sh_size / bed->s->sizeof_sym;
4234
4235 /* The sh_info field of the symtab header tells us where the
4236 external symbols start. We don't care about the local symbols at
4237 this point. */
4238 if (elf_bad_symtab (abfd))
4239 {
4240 extsymcount = symcount;
4241 extsymoff = 0;
4242 }
4243 else
4244 {
4245 extsymcount = symcount - hdr->sh_info;
4246 extsymoff = hdr->sh_info;
4247 }
4248
f45794cb 4249 sym_hash = elf_sym_hashes (abfd);
012b2306 4250 if (extsymcount != 0)
4ad4eba5
AM
4251 {
4252 isymbuf = bfd_elf_get_elf_syms (abfd, hdr, extsymcount, extsymoff,
4253 NULL, NULL, NULL);
4254 if (isymbuf == NULL)
4255 goto error_return;
4256
4ad4eba5 4257 if (sym_hash == NULL)
012b2306
AM
4258 {
4259 /* We store a pointer to the hash table entry for each
4260 external symbol. */
ef53be89
AM
4261 amt = extsymcount;
4262 amt *= sizeof (struct elf_link_hash_entry *);
012b2306
AM
4263 sym_hash = (struct elf_link_hash_entry **) bfd_zalloc (abfd, amt);
4264 if (sym_hash == NULL)
4265 goto error_free_sym;
4266 elf_sym_hashes (abfd) = sym_hash;
4267 }
4ad4eba5
AM
4268 }
4269
4270 if (dynamic)
4271 {
4272 /* Read in any version definitions. */
fc0e6df6
PB
4273 if (!_bfd_elf_slurp_version_tables (abfd,
4274 info->default_imported_symver))
4ad4eba5
AM
4275 goto error_free_sym;
4276
4277 /* Read in the symbol versions, but don't bother to convert them
4278 to internal format. */
4279 if (elf_dynversym (abfd) != 0)
4280 {
4281 Elf_Internal_Shdr *versymhdr;
4282
4283 versymhdr = &elf_tdata (abfd)->dynversym_hdr;
a50b1753 4284 extversym = (Elf_External_Versym *) bfd_malloc (versymhdr->sh_size);
4ad4eba5
AM
4285 if (extversym == NULL)
4286 goto error_free_sym;
4287 amt = versymhdr->sh_size;
4288 if (bfd_seek (abfd, versymhdr->sh_offset, SEEK_SET) != 0
4289 || bfd_bread (extversym, amt, abfd) != amt)
4290 goto error_free_vers;
4291 }
4292 }
4293
66eb6687
AM
4294 /* If we are loading an as-needed shared lib, save the symbol table
4295 state before we start adding symbols. If the lib turns out
4296 to be unneeded, restore the state. */
4297 if ((elf_dyn_lib_class (abfd) & DYN_AS_NEEDED) != 0)
4298 {
4299 unsigned int i;
4300 size_t entsize;
4301
4302 for (entsize = 0, i = 0; i < htab->root.table.size; i++)
4303 {
4304 struct bfd_hash_entry *p;
2de92251 4305 struct elf_link_hash_entry *h;
66eb6687
AM
4306
4307 for (p = htab->root.table.table[i]; p != NULL; p = p->next)
2de92251
AM
4308 {
4309 h = (struct elf_link_hash_entry *) p;
4310 entsize += htab->root.table.entsize;
4311 if (h->root.type == bfd_link_hash_warning)
4312 entsize += htab->root.table.entsize;
4313 }
66eb6687
AM
4314 }
4315
4316 tabsize = htab->root.table.size * sizeof (struct bfd_hash_entry *);
f45794cb 4317 old_tab = bfd_malloc (tabsize + entsize);
66eb6687
AM
4318 if (old_tab == NULL)
4319 goto error_free_vers;
4320
4321 /* Remember the current objalloc pointer, so that all mem for
4322 symbols added can later be reclaimed. */
4323 alloc_mark = bfd_hash_allocate (&htab->root.table, 1);
4324 if (alloc_mark == NULL)
4325 goto error_free_vers;
4326
5061a885
AM
4327 /* Make a special call to the linker "notice" function to
4328 tell it that we are about to handle an as-needed lib. */
e5034e59 4329 if (!(*bed->notice_as_needed) (abfd, info, notice_as_needed))
9af2a943 4330 goto error_free_vers;
5061a885 4331
f45794cb
AM
4332 /* Clone the symbol table. Remember some pointers into the
4333 symbol table, and dynamic symbol count. */
4334 old_ent = (char *) old_tab + tabsize;
66eb6687 4335 memcpy (old_tab, htab->root.table.table, tabsize);
66eb6687
AM
4336 old_undefs = htab->root.undefs;
4337 old_undefs_tail = htab->root.undefs_tail;
4f87808c
AM
4338 old_table = htab->root.table.table;
4339 old_size = htab->root.table.size;
4340 old_count = htab->root.table.count;
5b677558
AM
4341 old_strtab = _bfd_elf_strtab_save (htab->dynstr);
4342 if (old_strtab == NULL)
4343 goto error_free_vers;
66eb6687
AM
4344
4345 for (i = 0; i < htab->root.table.size; i++)
4346 {
4347 struct bfd_hash_entry *p;
2de92251 4348 struct elf_link_hash_entry *h;
66eb6687
AM
4349
4350 for (p = htab->root.table.table[i]; p != NULL; p = p->next)
4351 {
4352 memcpy (old_ent, p, htab->root.table.entsize);
4353 old_ent = (char *) old_ent + htab->root.table.entsize;
2de92251
AM
4354 h = (struct elf_link_hash_entry *) p;
4355 if (h->root.type == bfd_link_hash_warning)
4356 {
4357 memcpy (old_ent, h->root.u.i.link, htab->root.table.entsize);
4358 old_ent = (char *) old_ent + htab->root.table.entsize;
4359 }
66eb6687
AM
4360 }
4361 }
4362 }
4ad4eba5 4363
66eb6687 4364 weaks = NULL;
4ad4eba5
AM
4365 ever = extversym != NULL ? extversym + extsymoff : NULL;
4366 for (isym = isymbuf, isymend = isymbuf + extsymcount;
4367 isym < isymend;
4368 isym++, sym_hash++, ever = (ever != NULL ? ever + 1 : NULL))
4369 {
4370 int bind;
4371 bfd_vma value;
af44c138 4372 asection *sec, *new_sec;
4ad4eba5
AM
4373 flagword flags;
4374 const char *name;
4375 struct elf_link_hash_entry *h;
90c984fc 4376 struct elf_link_hash_entry *hi;
4ad4eba5
AM
4377 bfd_boolean definition;
4378 bfd_boolean size_change_ok;
4379 bfd_boolean type_change_ok;
37a9e49a
L
4380 bfd_boolean new_weak;
4381 bfd_boolean old_weak;
4ad4eba5 4382 bfd_boolean override;
a4d8e49b 4383 bfd_boolean common;
97196564 4384 bfd_boolean discarded;
4ad4eba5
AM
4385 unsigned int old_alignment;
4386 bfd *old_bfd;
6e33951e 4387 bfd_boolean matched;
4ad4eba5
AM
4388
4389 override = FALSE;
4390
4391 flags = BSF_NO_FLAGS;
4392 sec = NULL;
4393 value = isym->st_value;
a4d8e49b 4394 common = bed->common_definition (isym);
2980ccad
L
4395 if (common && info->inhibit_common_definition)
4396 {
4397 /* Treat common symbol as undefined for --no-define-common. */
4398 isym->st_shndx = SHN_UNDEF;
4399 common = FALSE;
4400 }
97196564 4401 discarded = FALSE;
4ad4eba5
AM
4402
4403 bind = ELF_ST_BIND (isym->st_info);
3e7a7d11 4404 switch (bind)
4ad4eba5 4405 {
3e7a7d11 4406 case STB_LOCAL:
4ad4eba5
AM
4407 /* This should be impossible, since ELF requires that all
4408 global symbols follow all local symbols, and that sh_info
4409 point to the first global symbol. Unfortunately, Irix 5
4410 screws this up. */
4411 continue;
3e7a7d11
NC
4412
4413 case STB_GLOBAL:
a4d8e49b 4414 if (isym->st_shndx != SHN_UNDEF && !common)
4ad4eba5 4415 flags = BSF_GLOBAL;
3e7a7d11
NC
4416 break;
4417
4418 case STB_WEAK:
4419 flags = BSF_WEAK;
4420 break;
4421
4422 case STB_GNU_UNIQUE:
4423 flags = BSF_GNU_UNIQUE;
4424 break;
4425
4426 default:
4ad4eba5 4427 /* Leave it up to the processor backend. */
3e7a7d11 4428 break;
4ad4eba5
AM
4429 }
4430
4431 if (isym->st_shndx == SHN_UNDEF)
4432 sec = bfd_und_section_ptr;
cb33740c
AM
4433 else if (isym->st_shndx == SHN_ABS)
4434 sec = bfd_abs_section_ptr;
4435 else if (isym->st_shndx == SHN_COMMON)
4436 {
4437 sec = bfd_com_section_ptr;
4438 /* What ELF calls the size we call the value. What ELF
4439 calls the value we call the alignment. */
4440 value = isym->st_size;
4441 }
4442 else
4ad4eba5
AM
4443 {
4444 sec = bfd_section_from_elf_index (abfd, isym->st_shndx);
4445 if (sec == NULL)
4446 sec = bfd_abs_section_ptr;
dbaa2011 4447 else if (discarded_section (sec))
529fcb95 4448 {
e5d08002
L
4449 /* Symbols from discarded section are undefined. We keep
4450 its visibility. */
529fcb95 4451 sec = bfd_und_section_ptr;
97196564 4452 discarded = TRUE;
529fcb95
PB
4453 isym->st_shndx = SHN_UNDEF;
4454 }
4ad4eba5
AM
4455 else if ((abfd->flags & (EXEC_P | DYNAMIC)) != 0)
4456 value -= sec->vma;
4457 }
4ad4eba5
AM
4458
4459 name = bfd_elf_string_from_elf_section (abfd, hdr->sh_link,
4460 isym->st_name);
4461 if (name == NULL)
4462 goto error_free_vers;
4463
4464 if (isym->st_shndx == SHN_COMMON
02d00247
AM
4465 && (abfd->flags & BFD_PLUGIN) != 0)
4466 {
4467 asection *xc = bfd_get_section_by_name (abfd, "COMMON");
4468
4469 if (xc == NULL)
4470 {
4471 flagword sflags = (SEC_ALLOC | SEC_IS_COMMON | SEC_KEEP
4472 | SEC_EXCLUDE);
4473 xc = bfd_make_section_with_flags (abfd, "COMMON", sflags);
4474 if (xc == NULL)
4475 goto error_free_vers;
4476 }
4477 sec = xc;
4478 }
4479 else if (isym->st_shndx == SHN_COMMON
4480 && ELF_ST_TYPE (isym->st_info) == STT_TLS
0e1862bb 4481 && !bfd_link_relocatable (info))
4ad4eba5
AM
4482 {
4483 asection *tcomm = bfd_get_section_by_name (abfd, ".tcommon");
4484
4485 if (tcomm == NULL)
4486 {
02d00247
AM
4487 flagword sflags = (SEC_ALLOC | SEC_THREAD_LOCAL | SEC_IS_COMMON
4488 | SEC_LINKER_CREATED);
4489 tcomm = bfd_make_section_with_flags (abfd, ".tcommon", sflags);
3496cb2a 4490 if (tcomm == NULL)
4ad4eba5
AM
4491 goto error_free_vers;
4492 }
4493 sec = tcomm;
4494 }
66eb6687 4495 else if (bed->elf_add_symbol_hook)
4ad4eba5 4496 {
66eb6687
AM
4497 if (! (*bed->elf_add_symbol_hook) (abfd, info, isym, &name, &flags,
4498 &sec, &value))
4ad4eba5
AM
4499 goto error_free_vers;
4500
4501 /* The hook function sets the name to NULL if this symbol
4502 should be skipped for some reason. */
4503 if (name == NULL)
4504 continue;
4505 }
4506
4507 /* Sanity check that all possibilities were handled. */
4508 if (sec == NULL)
4509 {
4510 bfd_set_error (bfd_error_bad_value);
4511 goto error_free_vers;
4512 }
4513
191c0c42
AM
4514 /* Silently discard TLS symbols from --just-syms. There's
4515 no way to combine a static TLS block with a new TLS block
4516 for this executable. */
4517 if (ELF_ST_TYPE (isym->st_info) == STT_TLS
4518 && sec->sec_info_type == SEC_INFO_TYPE_JUST_SYMS)
4519 continue;
4520
4ad4eba5
AM
4521 if (bfd_is_und_section (sec)
4522 || bfd_is_com_section (sec))
4523 definition = FALSE;
4524 else
4525 definition = TRUE;
4526
4527 size_change_ok = FALSE;
66eb6687 4528 type_change_ok = bed->type_change_ok;
37a9e49a 4529 old_weak = FALSE;
6e33951e 4530 matched = FALSE;
4ad4eba5
AM
4531 old_alignment = 0;
4532 old_bfd = NULL;
af44c138 4533 new_sec = sec;
4ad4eba5 4534
66eb6687 4535 if (is_elf_hash_table (htab))
4ad4eba5
AM
4536 {
4537 Elf_Internal_Versym iver;
4538 unsigned int vernum = 0;
4539 bfd_boolean skip;
4540
fc0e6df6 4541 if (ever == NULL)
4ad4eba5 4542 {
fc0e6df6
PB
4543 if (info->default_imported_symver)
4544 /* Use the default symbol version created earlier. */
4545 iver.vs_vers = elf_tdata (abfd)->cverdefs;
4546 else
4547 iver.vs_vers = 0;
4548 }
4549 else
4550 _bfd_elf_swap_versym_in (abfd, ever, &iver);
4551
4552 vernum = iver.vs_vers & VERSYM_VERSION;
4553
4554 /* If this is a hidden symbol, or if it is not version
4555 1, we append the version name to the symbol name.
cc86ff91
EB
4556 However, we do not modify a non-hidden absolute symbol
4557 if it is not a function, because it might be the version
4558 symbol itself. FIXME: What if it isn't? */
fc0e6df6 4559 if ((iver.vs_vers & VERSYM_HIDDEN) != 0
fcb93ecf
PB
4560 || (vernum > 1
4561 && (!bfd_is_abs_section (sec)
4562 || bed->is_function_type (ELF_ST_TYPE (isym->st_info)))))
fc0e6df6
PB
4563 {
4564 const char *verstr;
4565 size_t namelen, verlen, newlen;
4566 char *newname, *p;
4567
4568 if (isym->st_shndx != SHN_UNDEF)
4ad4eba5 4569 {
fc0e6df6
PB
4570 if (vernum > elf_tdata (abfd)->cverdefs)
4571 verstr = NULL;
4572 else if (vernum > 1)
4573 verstr =
4574 elf_tdata (abfd)->verdef[vernum - 1].vd_nodename;
4575 else
4576 verstr = "";
4ad4eba5 4577
fc0e6df6 4578 if (verstr == NULL)
4ad4eba5 4579 {
4eca0228 4580 _bfd_error_handler
695344c0 4581 /* xgettext:c-format */
871b3ab2 4582 (_("%pB: %s: invalid version %u (max %d)"),
fc0e6df6
PB
4583 abfd, name, vernum,
4584 elf_tdata (abfd)->cverdefs);
4585 bfd_set_error (bfd_error_bad_value);
4586 goto error_free_vers;
4ad4eba5 4587 }
fc0e6df6
PB
4588 }
4589 else
4590 {
4591 /* We cannot simply test for the number of
4592 entries in the VERNEED section since the
4593 numbers for the needed versions do not start
4594 at 0. */
4595 Elf_Internal_Verneed *t;
4596
4597 verstr = NULL;
4598 for (t = elf_tdata (abfd)->verref;
4599 t != NULL;
4600 t = t->vn_nextref)
4ad4eba5 4601 {
fc0e6df6 4602 Elf_Internal_Vernaux *a;
4ad4eba5 4603
fc0e6df6
PB
4604 for (a = t->vn_auxptr; a != NULL; a = a->vna_nextptr)
4605 {
4606 if (a->vna_other == vernum)
4ad4eba5 4607 {
fc0e6df6
PB
4608 verstr = a->vna_nodename;
4609 break;
4ad4eba5 4610 }
4ad4eba5 4611 }
fc0e6df6
PB
4612 if (a != NULL)
4613 break;
4614 }
4615 if (verstr == NULL)
4616 {
4eca0228 4617 _bfd_error_handler
695344c0 4618 /* xgettext:c-format */
871b3ab2 4619 (_("%pB: %s: invalid needed version %d"),
fc0e6df6
PB
4620 abfd, name, vernum);
4621 bfd_set_error (bfd_error_bad_value);
4622 goto error_free_vers;
4ad4eba5 4623 }
4ad4eba5 4624 }
fc0e6df6
PB
4625
4626 namelen = strlen (name);
4627 verlen = strlen (verstr);
4628 newlen = namelen + verlen + 2;
4629 if ((iver.vs_vers & VERSYM_HIDDEN) == 0
4630 && isym->st_shndx != SHN_UNDEF)
4631 ++newlen;
4632
a50b1753 4633 newname = (char *) bfd_hash_allocate (&htab->root.table, newlen);
fc0e6df6
PB
4634 if (newname == NULL)
4635 goto error_free_vers;
4636 memcpy (newname, name, namelen);
4637 p = newname + namelen;
4638 *p++ = ELF_VER_CHR;
4639 /* If this is a defined non-hidden version symbol,
4640 we add another @ to the name. This indicates the
4641 default version of the symbol. */
4642 if ((iver.vs_vers & VERSYM_HIDDEN) == 0
4643 && isym->st_shndx != SHN_UNDEF)
4644 *p++ = ELF_VER_CHR;
4645 memcpy (p, verstr, verlen + 1);
4646
4647 name = newname;
4ad4eba5
AM
4648 }
4649
cd3416da
AM
4650 /* If this symbol has default visibility and the user has
4651 requested we not re-export it, then mark it as hidden. */
a0d49154 4652 if (!bfd_is_und_section (sec)
cd3416da 4653 && !dynamic
ce875075 4654 && abfd->no_export
cd3416da
AM
4655 && ELF_ST_VISIBILITY (isym->st_other) != STV_INTERNAL)
4656 isym->st_other = (STV_HIDDEN
4657 | (isym->st_other & ~ELF_ST_VISIBILITY (-1)));
4658
4f3fedcf
AM
4659 if (!_bfd_elf_merge_symbol (abfd, info, name, isym, &sec, &value,
4660 sym_hash, &old_bfd, &old_weak,
4661 &old_alignment, &skip, &override,
6e33951e
L
4662 &type_change_ok, &size_change_ok,
4663 &matched))
4ad4eba5
AM
4664 goto error_free_vers;
4665
4666 if (skip)
4667 continue;
4668
6e33951e
L
4669 /* Override a definition only if the new symbol matches the
4670 existing one. */
4671 if (override && matched)
4ad4eba5
AM
4672 definition = FALSE;
4673
4674 h = *sym_hash;
4675 while (h->root.type == bfd_link_hash_indirect
4676 || h->root.type == bfd_link_hash_warning)
4677 h = (struct elf_link_hash_entry *) h->root.u.i.link;
4678
4ad4eba5 4679 if (elf_tdata (abfd)->verdef != NULL
4ad4eba5
AM
4680 && vernum > 1
4681 && definition)
4682 h->verinfo.verdef = &elf_tdata (abfd)->verdef[vernum - 1];
4683 }
4684
4685 if (! (_bfd_generic_link_add_one_symbol
66eb6687 4686 (info, abfd, name, flags, sec, value, NULL, FALSE, bed->collect,
4ad4eba5
AM
4687 (struct bfd_link_hash_entry **) sym_hash)))
4688 goto error_free_vers;
4689
ac98f9e2
L
4690 if ((abfd->flags & DYNAMIC) == 0
4691 && (bfd_get_flavour (info->output_bfd)
4692 == bfd_target_elf_flavour))
4693 {
4694 if (ELF_ST_TYPE (isym->st_info) == STT_GNU_IFUNC)
4695 elf_tdata (info->output_bfd)->has_gnu_symbols
4696 |= elf_gnu_symbol_ifunc;
4697 if ((flags & BSF_GNU_UNIQUE))
4698 elf_tdata (info->output_bfd)->has_gnu_symbols
4699 |= elf_gnu_symbol_unique;
4700 }
a43942db 4701
4ad4eba5 4702 h = *sym_hash;
90c984fc
L
4703 /* We need to make sure that indirect symbol dynamic flags are
4704 updated. */
4705 hi = h;
4ad4eba5
AM
4706 while (h->root.type == bfd_link_hash_indirect
4707 || h->root.type == bfd_link_hash_warning)
4708 h = (struct elf_link_hash_entry *) h->root.u.i.link;
3e7a7d11 4709
97196564
L
4710 /* Setting the index to -3 tells elf_link_output_extsym that
4711 this symbol is defined in a discarded section. */
4712 if (discarded)
4713 h->indx = -3;
4714
4ad4eba5
AM
4715 *sym_hash = h;
4716
37a9e49a 4717 new_weak = (flags & BSF_WEAK) != 0;
4ad4eba5
AM
4718 if (dynamic
4719 && definition
37a9e49a 4720 && new_weak
fcb93ecf 4721 && !bed->is_function_type (ELF_ST_TYPE (isym->st_info))
66eb6687 4722 && is_elf_hash_table (htab)
60d67dc8 4723 && h->u.alias == NULL)
4ad4eba5
AM
4724 {
4725 /* Keep a list of all weak defined non function symbols from
60d67dc8
AM
4726 a dynamic object, using the alias field. Later in this
4727 function we will set the alias field to the correct
4ad4eba5
AM
4728 value. We only put non-function symbols from dynamic
4729 objects on this list, because that happens to be the only
4730 time we need to know the normal symbol corresponding to a
4731 weak symbol, and the information is time consuming to
60d67dc8 4732 figure out. If the alias field is not already NULL,
4ad4eba5
AM
4733 then this symbol was already defined by some previous
4734 dynamic object, and we will be using that previous
4735 definition anyhow. */
4736
60d67dc8 4737 h->u.alias = weaks;
4ad4eba5 4738 weaks = h;
4ad4eba5
AM
4739 }
4740
4741 /* Set the alignment of a common symbol. */
a4d8e49b 4742 if ((common || bfd_is_com_section (sec))
4ad4eba5
AM
4743 && h->root.type == bfd_link_hash_common)
4744 {
4745 unsigned int align;
4746
a4d8e49b 4747 if (common)
af44c138
L
4748 align = bfd_log2 (isym->st_value);
4749 else
4750 {
4751 /* The new symbol is a common symbol in a shared object.
4752 We need to get the alignment from the section. */
4753 align = new_sec->alignment_power;
4754 }
595213d4 4755 if (align > old_alignment)
4ad4eba5
AM
4756 h->root.u.c.p->alignment_power = align;
4757 else
4758 h->root.u.c.p->alignment_power = old_alignment;
4759 }
4760
66eb6687 4761 if (is_elf_hash_table (htab))
4ad4eba5 4762 {
4f3fedcf
AM
4763 /* Set a flag in the hash table entry indicating the type of
4764 reference or definition we just found. A dynamic symbol
4765 is one which is referenced or defined by both a regular
4766 object and a shared object. */
4767 bfd_boolean dynsym = FALSE;
4768
4769 /* Plugin symbols aren't normal. Don't set def_regular or
4770 ref_regular for them, or make them dynamic. */
4771 if ((abfd->flags & BFD_PLUGIN) != 0)
4772 ;
4773 else if (! dynamic)
4774 {
4775 if (! definition)
4776 {
4777 h->ref_regular = 1;
4778 if (bind != STB_WEAK)
4779 h->ref_regular_nonweak = 1;
4780 }
4781 else
4782 {
4783 h->def_regular = 1;
4784 if (h->def_dynamic)
4785 {
4786 h->def_dynamic = 0;
4787 h->ref_dynamic = 1;
4788 }
4789 }
4790
4791 /* If the indirect symbol has been forced local, don't
4792 make the real symbol dynamic. */
4793 if ((h == hi || !hi->forced_local)
0e1862bb 4794 && (bfd_link_dll (info)
4f3fedcf
AM
4795 || h->def_dynamic
4796 || h->ref_dynamic))
4797 dynsym = TRUE;
4798 }
4799 else
4800 {
4801 if (! definition)
4802 {
4803 h->ref_dynamic = 1;
4804 hi->ref_dynamic = 1;
4805 }
4806 else
4807 {
4808 h->def_dynamic = 1;
4809 hi->def_dynamic = 1;
4810 }
4811
4812 /* If the indirect symbol has been forced local, don't
4813 make the real symbol dynamic. */
4814 if ((h == hi || !hi->forced_local)
4815 && (h->def_regular
4816 || h->ref_regular
60d67dc8
AM
4817 || (h->is_weakalias
4818 && weakdef (h)->dynindx != -1)))
4f3fedcf
AM
4819 dynsym = TRUE;
4820 }
4821
4822 /* Check to see if we need to add an indirect symbol for
4823 the default name. */
4824 if (definition
4825 || (!override && h->root.type == bfd_link_hash_common))
4826 if (!_bfd_elf_add_default_symbol (abfd, info, h, name, isym,
4827 sec, value, &old_bfd, &dynsym))
4828 goto error_free_vers;
4ad4eba5
AM
4829
4830 /* Check the alignment when a common symbol is involved. This
4831 can change when a common symbol is overridden by a normal
4832 definition or a common symbol is ignored due to the old
4833 normal definition. We need to make sure the maximum
4834 alignment is maintained. */
a4d8e49b 4835 if ((old_alignment || common)
4ad4eba5
AM
4836 && h->root.type != bfd_link_hash_common)
4837 {
4838 unsigned int common_align;
4839 unsigned int normal_align;
4840 unsigned int symbol_align;
4841 bfd *normal_bfd;
4842 bfd *common_bfd;
4843
3a81e825
AM
4844 BFD_ASSERT (h->root.type == bfd_link_hash_defined
4845 || h->root.type == bfd_link_hash_defweak);
4846
4ad4eba5
AM
4847 symbol_align = ffs (h->root.u.def.value) - 1;
4848 if (h->root.u.def.section->owner != NULL
0616a280
AM
4849 && (h->root.u.def.section->owner->flags
4850 & (DYNAMIC | BFD_PLUGIN)) == 0)
4ad4eba5
AM
4851 {
4852 normal_align = h->root.u.def.section->alignment_power;
4853 if (normal_align > symbol_align)
4854 normal_align = symbol_align;
4855 }
4856 else
4857 normal_align = symbol_align;
4858
4859 if (old_alignment)
4860 {
4861 common_align = old_alignment;
4862 common_bfd = old_bfd;
4863 normal_bfd = abfd;
4864 }
4865 else
4866 {
4867 common_align = bfd_log2 (isym->st_value);
4868 common_bfd = abfd;
4869 normal_bfd = old_bfd;
4870 }
4871
4872 if (normal_align < common_align)
d07676f8
NC
4873 {
4874 /* PR binutils/2735 */
4875 if (normal_bfd == NULL)
4eca0228 4876 _bfd_error_handler
695344c0 4877 /* xgettext:c-format */
9793eb77 4878 (_("warning: alignment %u of common symbol `%s' in %pB is"
871b3ab2 4879 " greater than the alignment (%u) of its section %pA"),
c08bb8dd
AM
4880 1 << common_align, name, common_bfd,
4881 1 << normal_align, h->root.u.def.section);
d07676f8 4882 else
4eca0228 4883 _bfd_error_handler
695344c0 4884 /* xgettext:c-format */
9793eb77 4885 (_("warning: alignment %u of symbol `%s' in %pB"
871b3ab2 4886 " is smaller than %u in %pB"),
c08bb8dd
AM
4887 1 << normal_align, name, normal_bfd,
4888 1 << common_align, common_bfd);
d07676f8 4889 }
4ad4eba5
AM
4890 }
4891
83ad0046 4892 /* Remember the symbol size if it isn't undefined. */
3a81e825
AM
4893 if (isym->st_size != 0
4894 && isym->st_shndx != SHN_UNDEF
4ad4eba5
AM
4895 && (definition || h->size == 0))
4896 {
83ad0046
L
4897 if (h->size != 0
4898 && h->size != isym->st_size
4899 && ! size_change_ok)
4eca0228 4900 _bfd_error_handler
695344c0 4901 /* xgettext:c-format */
9793eb77 4902 (_("warning: size of symbol `%s' changed"
2dcf00ce
AM
4903 " from %" PRIu64 " in %pB to %" PRIu64 " in %pB"),
4904 name, (uint64_t) h->size, old_bfd,
4905 (uint64_t) isym->st_size, abfd);
4ad4eba5
AM
4906
4907 h->size = isym->st_size;
4908 }
4909
4910 /* If this is a common symbol, then we always want H->SIZE
4911 to be the size of the common symbol. The code just above
4912 won't fix the size if a common symbol becomes larger. We
4913 don't warn about a size change here, because that is
4f3fedcf 4914 covered by --warn-common. Allow changes between different
fcb93ecf 4915 function types. */
4ad4eba5
AM
4916 if (h->root.type == bfd_link_hash_common)
4917 h->size = h->root.u.c.size;
4918
4919 if (ELF_ST_TYPE (isym->st_info) != STT_NOTYPE
37a9e49a
L
4920 && ((definition && !new_weak)
4921 || (old_weak && h->root.type == bfd_link_hash_common)
4922 || h->type == STT_NOTYPE))
4ad4eba5 4923 {
2955ec4c
L
4924 unsigned int type = ELF_ST_TYPE (isym->st_info);
4925
4926 /* Turn an IFUNC symbol from a DSO into a normal FUNC
4927 symbol. */
4928 if (type == STT_GNU_IFUNC
4929 && (abfd->flags & DYNAMIC) != 0)
4930 type = STT_FUNC;
4ad4eba5 4931
2955ec4c
L
4932 if (h->type != type)
4933 {
4934 if (h->type != STT_NOTYPE && ! type_change_ok)
695344c0 4935 /* xgettext:c-format */
4eca0228 4936 _bfd_error_handler
9793eb77 4937 (_("warning: type of symbol `%s' changed"
871b3ab2 4938 " from %d to %d in %pB"),
c08bb8dd 4939 name, h->type, type, abfd);
2955ec4c
L
4940
4941 h->type = type;
4942 }
4ad4eba5
AM
4943 }
4944
54ac0771 4945 /* Merge st_other field. */
b8417128 4946 elf_merge_st_other (abfd, h, isym, sec, definition, dynamic);
4ad4eba5 4947
c3df8c14 4948 /* We don't want to make debug symbol dynamic. */
0e1862bb
L
4949 if (definition
4950 && (sec->flags & SEC_DEBUGGING)
4951 && !bfd_link_relocatable (info))
c3df8c14
AM
4952 dynsym = FALSE;
4953
4f3fedcf
AM
4954 /* Nor should we make plugin symbols dynamic. */
4955 if ((abfd->flags & BFD_PLUGIN) != 0)
4956 dynsym = FALSE;
4957
35fc36a8 4958 if (definition)
35399224
L
4959 {
4960 h->target_internal = isym->st_target_internal;
4961 h->unique_global = (flags & BSF_GNU_UNIQUE) != 0;
4962 }
35fc36a8 4963
4ad4eba5
AM
4964 if (definition && !dynamic)
4965 {
4966 char *p = strchr (name, ELF_VER_CHR);
4967 if (p != NULL && p[1] != ELF_VER_CHR)
4968 {
4969 /* Queue non-default versions so that .symver x, x@FOO
4970 aliases can be checked. */
66eb6687 4971 if (!nondeflt_vers)
4ad4eba5 4972 {
66eb6687
AM
4973 amt = ((isymend - isym + 1)
4974 * sizeof (struct elf_link_hash_entry *));
ca4be51c
AM
4975 nondeflt_vers
4976 = (struct elf_link_hash_entry **) bfd_malloc (amt);
14b1c01e
AM
4977 if (!nondeflt_vers)
4978 goto error_free_vers;
4ad4eba5 4979 }
66eb6687 4980 nondeflt_vers[nondeflt_vers_cnt++] = h;
4ad4eba5
AM
4981 }
4982 }
4983
4984 if (dynsym && h->dynindx == -1)
4985 {
c152c796 4986 if (! bfd_elf_link_record_dynamic_symbol (info, h))
4ad4eba5 4987 goto error_free_vers;
60d67dc8
AM
4988 if (h->is_weakalias
4989 && weakdef (h)->dynindx == -1)
4ad4eba5 4990 {
60d67dc8 4991 if (!bfd_elf_link_record_dynamic_symbol (info, weakdef (h)))
4ad4eba5
AM
4992 goto error_free_vers;
4993 }
4994 }
1f599d0e 4995 else if (h->dynindx != -1)
4ad4eba5
AM
4996 /* If the symbol already has a dynamic index, but
4997 visibility says it should not be visible, turn it into
4998 a local symbol. */
4999 switch (ELF_ST_VISIBILITY (h->other))
5000 {
5001 case STV_INTERNAL:
5002 case STV_HIDDEN:
5003 (*bed->elf_backend_hide_symbol) (info, h, TRUE);
5004 dynsym = FALSE;
5005 break;
5006 }
5007
aef28989
L
5008 /* Don't add DT_NEEDED for references from the dummy bfd nor
5009 for unmatched symbol. */
4ad4eba5 5010 if (!add_needed
aef28989 5011 && matched
4ad4eba5 5012 && definition
010e5ae2 5013 && ((dynsym
ffa9430d 5014 && h->ref_regular_nonweak
4f3fedcf
AM
5015 && (old_bfd == NULL
5016 || (old_bfd->flags & BFD_PLUGIN) == 0))
ffa9430d 5017 || (h->ref_dynamic_nonweak
010e5ae2 5018 && (elf_dyn_lib_class (abfd) & DYN_AS_NEEDED) != 0
7b15fa7a
AM
5019 && !on_needed_list (elf_dt_name (abfd),
5020 htab->needed, NULL))))
4ad4eba5
AM
5021 {
5022 int ret;
5023 const char *soname = elf_dt_name (abfd);
5024
16e4ecc0
AM
5025 info->callbacks->minfo ("%!", soname, old_bfd,
5026 h->root.root.string);
5027
4ad4eba5
AM
5028 /* A symbol from a library loaded via DT_NEEDED of some
5029 other library is referenced by a regular object.
e56f61be 5030 Add a DT_NEEDED entry for it. Issue an error if
b918acf9
NC
5031 --no-add-needed is used and the reference was not
5032 a weak one. */
4f3fedcf 5033 if (old_bfd != NULL
b918acf9 5034 && (elf_dyn_lib_class (abfd) & DYN_NO_NEEDED) != 0)
e56f61be 5035 {
4eca0228 5036 _bfd_error_handler
695344c0 5037 /* xgettext:c-format */
871b3ab2 5038 (_("%pB: undefined reference to symbol '%s'"),
4f3fedcf 5039 old_bfd, name);
ff5ac77b 5040 bfd_set_error (bfd_error_missing_dso);
e56f61be
L
5041 goto error_free_vers;
5042 }
5043
a50b1753 5044 elf_dyn_lib_class (abfd) = (enum dynamic_lib_link_class)
ca4be51c 5045 (elf_dyn_lib_class (abfd) & ~DYN_AS_NEEDED);
a5db907e 5046
4ad4eba5 5047 add_needed = TRUE;
7e9f0867 5048 ret = elf_add_dt_needed_tag (abfd, info, soname, add_needed);
4ad4eba5
AM
5049 if (ret < 0)
5050 goto error_free_vers;
5051
5052 BFD_ASSERT (ret == 0);
5053 }
5054 }
5055 }
5056
a83ef4d1
L
5057 if (info->lto_plugin_active
5058 && !bfd_link_relocatable (info)
5059 && (abfd->flags & BFD_PLUGIN) == 0
5060 && !just_syms
5061 && extsymcount)
5062 {
5063 int r_sym_shift;
5064
5065 if (bed->s->arch_size == 32)
5066 r_sym_shift = 8;
5067 else
5068 r_sym_shift = 32;
5069
5070 /* If linker plugin is enabled, set non_ir_ref_regular on symbols
5071 referenced in regular objects so that linker plugin will get
5072 the correct symbol resolution. */
5073
5074 sym_hash = elf_sym_hashes (abfd);
5075 for (s = abfd->sections; s != NULL; s = s->next)
5076 {
5077 Elf_Internal_Rela *internal_relocs;
5078 Elf_Internal_Rela *rel, *relend;
5079
5080 /* Don't check relocations in excluded sections. */
5081 if ((s->flags & SEC_RELOC) == 0
5082 || s->reloc_count == 0
5083 || (s->flags & SEC_EXCLUDE) != 0
5084 || ((info->strip == strip_all
5085 || info->strip == strip_debugger)
5086 && (s->flags & SEC_DEBUGGING) != 0))
5087 continue;
5088
5089 internal_relocs = _bfd_elf_link_read_relocs (abfd, s, NULL,
5090 NULL,
5091 info->keep_memory);
5092 if (internal_relocs == NULL)
5093 goto error_free_vers;
5094
5095 rel = internal_relocs;
5096 relend = rel + s->reloc_count;
5097 for ( ; rel < relend; rel++)
5098 {
5099 unsigned long r_symndx = rel->r_info >> r_sym_shift;
5100 struct elf_link_hash_entry *h;
5101
5102 /* Skip local symbols. */
5103 if (r_symndx < extsymoff)
5104 continue;
5105
5106 h = sym_hash[r_symndx - extsymoff];
5107 if (h != NULL)
5108 h->root.non_ir_ref_regular = 1;
5109 }
5110
5111 if (elf_section_data (s)->relocs != internal_relocs)
5112 free (internal_relocs);
5113 }
5114 }
5115
66eb6687
AM
5116 if (extversym != NULL)
5117 {
5118 free (extversym);
5119 extversym = NULL;
5120 }
5121
5122 if (isymbuf != NULL)
5123 {
5124 free (isymbuf);
5125 isymbuf = NULL;
5126 }
5127
5128 if ((elf_dyn_lib_class (abfd) & DYN_AS_NEEDED) != 0)
5129 {
5130 unsigned int i;
5131
5132 /* Restore the symbol table. */
f45794cb
AM
5133 old_ent = (char *) old_tab + tabsize;
5134 memset (elf_sym_hashes (abfd), 0,
5135 extsymcount * sizeof (struct elf_link_hash_entry *));
4f87808c
AM
5136 htab->root.table.table = old_table;
5137 htab->root.table.size = old_size;
5138 htab->root.table.count = old_count;
66eb6687 5139 memcpy (htab->root.table.table, old_tab, tabsize);
66eb6687
AM
5140 htab->root.undefs = old_undefs;
5141 htab->root.undefs_tail = old_undefs_tail;
5b677558
AM
5142 _bfd_elf_strtab_restore (htab->dynstr, old_strtab);
5143 free (old_strtab);
5144 old_strtab = NULL;
66eb6687
AM
5145 for (i = 0; i < htab->root.table.size; i++)
5146 {
5147 struct bfd_hash_entry *p;
5148 struct elf_link_hash_entry *h;
3e0882af
L
5149 bfd_size_type size;
5150 unsigned int alignment_power;
4070765b 5151 unsigned int non_ir_ref_dynamic;
66eb6687
AM
5152
5153 for (p = htab->root.table.table[i]; p != NULL; p = p->next)
5154 {
5155 h = (struct elf_link_hash_entry *) p;
2de92251
AM
5156 if (h->root.type == bfd_link_hash_warning)
5157 h = (struct elf_link_hash_entry *) h->root.u.i.link;
2de92251 5158
3e0882af
L
5159 /* Preserve the maximum alignment and size for common
5160 symbols even if this dynamic lib isn't on DT_NEEDED
a4542f1b 5161 since it can still be loaded at run time by another
3e0882af
L
5162 dynamic lib. */
5163 if (h->root.type == bfd_link_hash_common)
5164 {
5165 size = h->root.u.c.size;
5166 alignment_power = h->root.u.c.p->alignment_power;
5167 }
5168 else
5169 {
5170 size = 0;
5171 alignment_power = 0;
5172 }
4070765b 5173 /* Preserve non_ir_ref_dynamic so that this symbol
59fa66c5
L
5174 will be exported when the dynamic lib becomes needed
5175 in the second pass. */
4070765b 5176 non_ir_ref_dynamic = h->root.non_ir_ref_dynamic;
66eb6687
AM
5177 memcpy (p, old_ent, htab->root.table.entsize);
5178 old_ent = (char *) old_ent + htab->root.table.entsize;
2de92251
AM
5179 h = (struct elf_link_hash_entry *) p;
5180 if (h->root.type == bfd_link_hash_warning)
5181 {
5182 memcpy (h->root.u.i.link, old_ent, htab->root.table.entsize);
5183 old_ent = (char *) old_ent + htab->root.table.entsize;
a4542f1b 5184 h = (struct elf_link_hash_entry *) h->root.u.i.link;
2de92251 5185 }
a4542f1b 5186 if (h->root.type == bfd_link_hash_common)
3e0882af
L
5187 {
5188 if (size > h->root.u.c.size)
5189 h->root.u.c.size = size;
5190 if (alignment_power > h->root.u.c.p->alignment_power)
5191 h->root.u.c.p->alignment_power = alignment_power;
5192 }
4070765b 5193 h->root.non_ir_ref_dynamic = non_ir_ref_dynamic;
66eb6687
AM
5194 }
5195 }
5196
5061a885
AM
5197 /* Make a special call to the linker "notice" function to
5198 tell it that symbols added for crefs may need to be removed. */
e5034e59 5199 if (!(*bed->notice_as_needed) (abfd, info, notice_not_needed))
9af2a943 5200 goto error_free_vers;
5061a885 5201
66eb6687
AM
5202 free (old_tab);
5203 objalloc_free_block ((struct objalloc *) htab->root.table.memory,
5204 alloc_mark);
5205 if (nondeflt_vers != NULL)
5206 free (nondeflt_vers);
5207 return TRUE;
5208 }
2de92251 5209
66eb6687
AM
5210 if (old_tab != NULL)
5211 {
e5034e59 5212 if (!(*bed->notice_as_needed) (abfd, info, notice_needed))
9af2a943 5213 goto error_free_vers;
66eb6687
AM
5214 free (old_tab);
5215 old_tab = NULL;
5216 }
5217
c6e8a9a8
L
5218 /* Now that all the symbols from this input file are created, if
5219 not performing a relocatable link, handle .symver foo, foo@BAR
5220 such that any relocs against foo become foo@BAR. */
0e1862bb 5221 if (!bfd_link_relocatable (info) && nondeflt_vers != NULL)
4ad4eba5 5222 {
ef53be89 5223 size_t cnt, symidx;
4ad4eba5
AM
5224
5225 for (cnt = 0; cnt < nondeflt_vers_cnt; ++cnt)
5226 {
5227 struct elf_link_hash_entry *h = nondeflt_vers[cnt], *hi;
5228 char *shortname, *p;
5229
5230 p = strchr (h->root.root.string, ELF_VER_CHR);
5231 if (p == NULL
5232 || (h->root.type != bfd_link_hash_defined
5233 && h->root.type != bfd_link_hash_defweak))
5234 continue;
5235
5236 amt = p - h->root.root.string;
a50b1753 5237 shortname = (char *) bfd_malloc (amt + 1);
14b1c01e
AM
5238 if (!shortname)
5239 goto error_free_vers;
4ad4eba5
AM
5240 memcpy (shortname, h->root.root.string, amt);
5241 shortname[amt] = '\0';
5242
5243 hi = (struct elf_link_hash_entry *)
66eb6687 5244 bfd_link_hash_lookup (&htab->root, shortname,
4ad4eba5
AM
5245 FALSE, FALSE, FALSE);
5246 if (hi != NULL
5247 && hi->root.type == h->root.type
5248 && hi->root.u.def.value == h->root.u.def.value
5249 && hi->root.u.def.section == h->root.u.def.section)
5250 {
5251 (*bed->elf_backend_hide_symbol) (info, hi, TRUE);
5252 hi->root.type = bfd_link_hash_indirect;
5253 hi->root.u.i.link = (struct bfd_link_hash_entry *) h;
fcfa13d2 5254 (*bed->elf_backend_copy_indirect_symbol) (info, h, hi);
4ad4eba5
AM
5255 sym_hash = elf_sym_hashes (abfd);
5256 if (sym_hash)
5257 for (symidx = 0; symidx < extsymcount; ++symidx)
5258 if (sym_hash[symidx] == hi)
5259 {
5260 sym_hash[symidx] = h;
5261 break;
5262 }
5263 }
5264 free (shortname);
5265 }
5266 free (nondeflt_vers);
5267 nondeflt_vers = NULL;
5268 }
5269
60d67dc8 5270 /* Now set the alias field correctly for all the weak defined
4ad4eba5
AM
5271 symbols we found. The only way to do this is to search all the
5272 symbols. Since we only need the information for non functions in
5273 dynamic objects, that's the only time we actually put anything on
5274 the list WEAKS. We need this information so that if a regular
5275 object refers to a symbol defined weakly in a dynamic object, the
5276 real symbol in the dynamic object is also put in the dynamic
5277 symbols; we also must arrange for both symbols to point to the
5278 same memory location. We could handle the general case of symbol
5279 aliasing, but a general symbol alias can only be generated in
5280 assembler code, handling it correctly would be very time
5281 consuming, and other ELF linkers don't handle general aliasing
5282 either. */
5283 if (weaks != NULL)
5284 {
5285 struct elf_link_hash_entry **hpp;
5286 struct elf_link_hash_entry **hppend;
5287 struct elf_link_hash_entry **sorted_sym_hash;
5288 struct elf_link_hash_entry *h;
5289 size_t sym_count;
5290
5291 /* Since we have to search the whole symbol list for each weak
5292 defined symbol, search time for N weak defined symbols will be
5293 O(N^2). Binary search will cut it down to O(NlogN). */
ef53be89
AM
5294 amt = extsymcount;
5295 amt *= sizeof (struct elf_link_hash_entry *);
a50b1753 5296 sorted_sym_hash = (struct elf_link_hash_entry **) bfd_malloc (amt);
4ad4eba5
AM
5297 if (sorted_sym_hash == NULL)
5298 goto error_return;
5299 sym_hash = sorted_sym_hash;
5300 hpp = elf_sym_hashes (abfd);
5301 hppend = hpp + extsymcount;
5302 sym_count = 0;
5303 for (; hpp < hppend; hpp++)
5304 {
5305 h = *hpp;
5306 if (h != NULL
5307 && h->root.type == bfd_link_hash_defined
fcb93ecf 5308 && !bed->is_function_type (h->type))
4ad4eba5
AM
5309 {
5310 *sym_hash = h;
5311 sym_hash++;
5312 sym_count++;
5313 }
5314 }
5315
5316 qsort (sorted_sym_hash, sym_count,
5317 sizeof (struct elf_link_hash_entry *),
5318 elf_sort_symbol);
5319
5320 while (weaks != NULL)
5321 {
5322 struct elf_link_hash_entry *hlook;
5323 asection *slook;
5324 bfd_vma vlook;
ed54588d 5325 size_t i, j, idx = 0;
4ad4eba5
AM
5326
5327 hlook = weaks;
60d67dc8
AM
5328 weaks = hlook->u.alias;
5329 hlook->u.alias = NULL;
4ad4eba5 5330
e3e53eed
AM
5331 if (hlook->root.type != bfd_link_hash_defined
5332 && hlook->root.type != bfd_link_hash_defweak)
5333 continue;
5334
4ad4eba5
AM
5335 slook = hlook->root.u.def.section;
5336 vlook = hlook->root.u.def.value;
5337
4ad4eba5
AM
5338 i = 0;
5339 j = sym_count;
14160578 5340 while (i != j)
4ad4eba5
AM
5341 {
5342 bfd_signed_vma vdiff;
5343 idx = (i + j) / 2;
14160578 5344 h = sorted_sym_hash[idx];
4ad4eba5
AM
5345 vdiff = vlook - h->root.u.def.value;
5346 if (vdiff < 0)
5347 j = idx;
5348 else if (vdiff > 0)
5349 i = idx + 1;
5350 else
5351 {
d3435ae8 5352 int sdiff = slook->id - h->root.u.def.section->id;
4ad4eba5
AM
5353 if (sdiff < 0)
5354 j = idx;
5355 else if (sdiff > 0)
5356 i = idx + 1;
5357 else
14160578 5358 break;
4ad4eba5
AM
5359 }
5360 }
5361
5362 /* We didn't find a value/section match. */
14160578 5363 if (i == j)
4ad4eba5
AM
5364 continue;
5365
14160578
AM
5366 /* With multiple aliases, or when the weak symbol is already
5367 strongly defined, we have multiple matching symbols and
5368 the binary search above may land on any of them. Step
5369 one past the matching symbol(s). */
5370 while (++idx != j)
5371 {
5372 h = sorted_sym_hash[idx];
5373 if (h->root.u.def.section != slook
5374 || h->root.u.def.value != vlook)
5375 break;
5376 }
5377
5378 /* Now look back over the aliases. Since we sorted by size
5379 as well as value and section, we'll choose the one with
5380 the largest size. */
5381 while (idx-- != i)
4ad4eba5 5382 {
14160578 5383 h = sorted_sym_hash[idx];
4ad4eba5
AM
5384
5385 /* Stop if value or section doesn't match. */
14160578
AM
5386 if (h->root.u.def.section != slook
5387 || h->root.u.def.value != vlook)
4ad4eba5
AM
5388 break;
5389 else if (h != hlook)
5390 {
60d67dc8
AM
5391 struct elf_link_hash_entry *t;
5392
5393 hlook->u.alias = h;
5394 hlook->is_weakalias = 1;
5395 t = h;
5396 if (t->u.alias != NULL)
5397 while (t->u.alias != h)
5398 t = t->u.alias;
5399 t->u.alias = hlook;
4ad4eba5
AM
5400
5401 /* If the weak definition is in the list of dynamic
5402 symbols, make sure the real definition is put
5403 there as well. */
5404 if (hlook->dynindx != -1 && h->dynindx == -1)
5405 {
c152c796 5406 if (! bfd_elf_link_record_dynamic_symbol (info, h))
4dd07732
AM
5407 {
5408 err_free_sym_hash:
5409 free (sorted_sym_hash);
5410 goto error_return;
5411 }
4ad4eba5
AM
5412 }
5413
5414 /* If the real definition is in the list of dynamic
5415 symbols, make sure the weak definition is put
5416 there as well. If we don't do this, then the
5417 dynamic loader might not merge the entries for the
5418 real definition and the weak definition. */
5419 if (h->dynindx != -1 && hlook->dynindx == -1)
5420 {
c152c796 5421 if (! bfd_elf_link_record_dynamic_symbol (info, hlook))
4dd07732 5422 goto err_free_sym_hash;
4ad4eba5
AM
5423 }
5424 break;
5425 }
5426 }
5427 }
5428
5429 free (sorted_sym_hash);
5430 }
5431
33177bb1
AM
5432 if (bed->check_directives
5433 && !(*bed->check_directives) (abfd, info))
5434 return FALSE;
85fbca6a 5435
4ad4eba5
AM
5436 /* If this is a non-traditional link, try to optimize the handling
5437 of the .stab/.stabstr sections. */
5438 if (! dynamic
5439 && ! info->traditional_format
66eb6687 5440 && is_elf_hash_table (htab)
4ad4eba5
AM
5441 && (info->strip != strip_all && info->strip != strip_debugger))
5442 {
5443 asection *stabstr;
5444
5445 stabstr = bfd_get_section_by_name (abfd, ".stabstr");
5446 if (stabstr != NULL)
5447 {
5448 bfd_size_type string_offset = 0;
5449 asection *stab;
5450
5451 for (stab = abfd->sections; stab; stab = stab->next)
0112cd26 5452 if (CONST_STRNEQ (stab->name, ".stab")
4ad4eba5
AM
5453 && (!stab->name[5] ||
5454 (stab->name[5] == '.' && ISDIGIT (stab->name[6])))
5455 && (stab->flags & SEC_MERGE) == 0
5456 && !bfd_is_abs_section (stab->output_section))
5457 {
5458 struct bfd_elf_section_data *secdata;
5459
5460 secdata = elf_section_data (stab);
66eb6687
AM
5461 if (! _bfd_link_section_stabs (abfd, &htab->stab_info, stab,
5462 stabstr, &secdata->sec_info,
4ad4eba5
AM
5463 &string_offset))
5464 goto error_return;
5465 if (secdata->sec_info)
dbaa2011 5466 stab->sec_info_type = SEC_INFO_TYPE_STABS;
4ad4eba5
AM
5467 }
5468 }
5469 }
5470
66eb6687 5471 if (is_elf_hash_table (htab) && add_needed)
4ad4eba5
AM
5472 {
5473 /* Add this bfd to the loaded list. */
5474 struct elf_link_loaded_list *n;
5475
ca4be51c 5476 n = (struct elf_link_loaded_list *) bfd_alloc (abfd, sizeof (*n));
4ad4eba5
AM
5477 if (n == NULL)
5478 goto error_return;
5479 n->abfd = abfd;
66eb6687
AM
5480 n->next = htab->loaded;
5481 htab->loaded = n;
4ad4eba5
AM
5482 }
5483
5484 return TRUE;
5485
5486 error_free_vers:
66eb6687
AM
5487 if (old_tab != NULL)
5488 free (old_tab);
5b677558
AM
5489 if (old_strtab != NULL)
5490 free (old_strtab);
4ad4eba5
AM
5491 if (nondeflt_vers != NULL)
5492 free (nondeflt_vers);
5493 if (extversym != NULL)
5494 free (extversym);
5495 error_free_sym:
5496 if (isymbuf != NULL)
5497 free (isymbuf);
5498 error_return:
5499 return FALSE;
5500}
5501
8387904d
AM
5502/* Return the linker hash table entry of a symbol that might be
5503 satisfied by an archive symbol. Return -1 on error. */
5504
5505struct elf_link_hash_entry *
5506_bfd_elf_archive_symbol_lookup (bfd *abfd,
5507 struct bfd_link_info *info,
5508 const char *name)
5509{
5510 struct elf_link_hash_entry *h;
5511 char *p, *copy;
5512 size_t len, first;
5513
2a41f396 5514 h = elf_link_hash_lookup (elf_hash_table (info), name, FALSE, FALSE, TRUE);
8387904d
AM
5515 if (h != NULL)
5516 return h;
5517
5518 /* If this is a default version (the name contains @@), look up the
5519 symbol again with only one `@' as well as without the version.
5520 The effect is that references to the symbol with and without the
5521 version will be matched by the default symbol in the archive. */
5522
5523 p = strchr (name, ELF_VER_CHR);
5524 if (p == NULL || p[1] != ELF_VER_CHR)
5525 return h;
5526
5527 /* First check with only one `@'. */
5528 len = strlen (name);
a50b1753 5529 copy = (char *) bfd_alloc (abfd, len);
8387904d 5530 if (copy == NULL)
e99955cd 5531 return (struct elf_link_hash_entry *) -1;
8387904d
AM
5532
5533 first = p - name + 1;
5534 memcpy (copy, name, first);
5535 memcpy (copy + first, name + first + 1, len - first);
5536
2a41f396 5537 h = elf_link_hash_lookup (elf_hash_table (info), copy, FALSE, FALSE, TRUE);
8387904d
AM
5538 if (h == NULL)
5539 {
5540 /* We also need to check references to the symbol without the
5541 version. */
5542 copy[first - 1] = '\0';
5543 h = elf_link_hash_lookup (elf_hash_table (info), copy,
2a41f396 5544 FALSE, FALSE, TRUE);
8387904d
AM
5545 }
5546
5547 bfd_release (abfd, copy);
5548 return h;
5549}
5550
0ad989f9 5551/* Add symbols from an ELF archive file to the linker hash table. We
13e570f8
AM
5552 don't use _bfd_generic_link_add_archive_symbols because we need to
5553 handle versioned symbols.
0ad989f9
L
5554
5555 Fortunately, ELF archive handling is simpler than that done by
5556 _bfd_generic_link_add_archive_symbols, which has to allow for a.out
5557 oddities. In ELF, if we find a symbol in the archive map, and the
5558 symbol is currently undefined, we know that we must pull in that
5559 object file.
5560
5561 Unfortunately, we do have to make multiple passes over the symbol
5562 table until nothing further is resolved. */
5563
4ad4eba5
AM
5564static bfd_boolean
5565elf_link_add_archive_symbols (bfd *abfd, struct bfd_link_info *info)
0ad989f9
L
5566{
5567 symindex c;
13e570f8 5568 unsigned char *included = NULL;
0ad989f9
L
5569 carsym *symdefs;
5570 bfd_boolean loop;
5571 bfd_size_type amt;
8387904d
AM
5572 const struct elf_backend_data *bed;
5573 struct elf_link_hash_entry * (*archive_symbol_lookup)
5574 (bfd *, struct bfd_link_info *, const char *);
0ad989f9
L
5575
5576 if (! bfd_has_map (abfd))
5577 {
5578 /* An empty archive is a special case. */
5579 if (bfd_openr_next_archived_file (abfd, NULL) == NULL)
5580 return TRUE;
5581 bfd_set_error (bfd_error_no_armap);
5582 return FALSE;
5583 }
5584
5585 /* Keep track of all symbols we know to be already defined, and all
5586 files we know to be already included. This is to speed up the
5587 second and subsequent passes. */
5588 c = bfd_ardata (abfd)->symdef_count;
5589 if (c == 0)
5590 return TRUE;
5591 amt = c;
13e570f8
AM
5592 amt *= sizeof (*included);
5593 included = (unsigned char *) bfd_zmalloc (amt);
5594 if (included == NULL)
5595 return FALSE;
0ad989f9
L
5596
5597 symdefs = bfd_ardata (abfd)->symdefs;
8387904d
AM
5598 bed = get_elf_backend_data (abfd);
5599 archive_symbol_lookup = bed->elf_backend_archive_symbol_lookup;
0ad989f9
L
5600
5601 do
5602 {
5603 file_ptr last;
5604 symindex i;
5605 carsym *symdef;
5606 carsym *symdefend;
5607
5608 loop = FALSE;
5609 last = -1;
5610
5611 symdef = symdefs;
5612 symdefend = symdef + c;
5613 for (i = 0; symdef < symdefend; symdef++, i++)
5614 {
5615 struct elf_link_hash_entry *h;
5616 bfd *element;
5617 struct bfd_link_hash_entry *undefs_tail;
5618 symindex mark;
5619
13e570f8 5620 if (included[i])
0ad989f9
L
5621 continue;
5622 if (symdef->file_offset == last)
5623 {
5624 included[i] = TRUE;
5625 continue;
5626 }
5627
8387904d 5628 h = archive_symbol_lookup (abfd, info, symdef->name);
e99955cd 5629 if (h == (struct elf_link_hash_entry *) -1)
8387904d 5630 goto error_return;
0ad989f9
L
5631
5632 if (h == NULL)
5633 continue;
5634
5635 if (h->root.type == bfd_link_hash_common)
5636 {
5637 /* We currently have a common symbol. The archive map contains
5638 a reference to this symbol, so we may want to include it. We
5639 only want to include it however, if this archive element
5640 contains a definition of the symbol, not just another common
5641 declaration of it.
5642
5643 Unfortunately some archivers (including GNU ar) will put
5644 declarations of common symbols into their archive maps, as
5645 well as real definitions, so we cannot just go by the archive
5646 map alone. Instead we must read in the element's symbol
5647 table and check that to see what kind of symbol definition
5648 this is. */
5649 if (! elf_link_is_defined_archive_symbol (abfd, symdef))
5650 continue;
5651 }
5652 else if (h->root.type != bfd_link_hash_undefined)
5653 {
5654 if (h->root.type != bfd_link_hash_undefweak)
13e570f8
AM
5655 /* Symbol must be defined. Don't check it again. */
5656 included[i] = TRUE;
0ad989f9
L
5657 continue;
5658 }
5659
5660 /* We need to include this archive member. */
5661 element = _bfd_get_elt_at_filepos (abfd, symdef->file_offset);
5662 if (element == NULL)
5663 goto error_return;
5664
5665 if (! bfd_check_format (element, bfd_object))
5666 goto error_return;
5667
0ad989f9
L
5668 undefs_tail = info->hash->undefs_tail;
5669
0e144ba7
AM
5670 if (!(*info->callbacks
5671 ->add_archive_element) (info, element, symdef->name, &element))
b95a0a31 5672 continue;
0e144ba7 5673 if (!bfd_link_add_symbols (element, info))
0ad989f9
L
5674 goto error_return;
5675
5676 /* If there are any new undefined symbols, we need to make
5677 another pass through the archive in order to see whether
5678 they can be defined. FIXME: This isn't perfect, because
5679 common symbols wind up on undefs_tail and because an
5680 undefined symbol which is defined later on in this pass
5681 does not require another pass. This isn't a bug, but it
5682 does make the code less efficient than it could be. */
5683 if (undefs_tail != info->hash->undefs_tail)
5684 loop = TRUE;
5685
5686 /* Look backward to mark all symbols from this object file
5687 which we have already seen in this pass. */
5688 mark = i;
5689 do
5690 {
5691 included[mark] = TRUE;
5692 if (mark == 0)
5693 break;
5694 --mark;
5695 }
5696 while (symdefs[mark].file_offset == symdef->file_offset);
5697
5698 /* We mark subsequent symbols from this object file as we go
5699 on through the loop. */
5700 last = symdef->file_offset;
5701 }
5702 }
5703 while (loop);
5704
0ad989f9
L
5705 free (included);
5706
5707 return TRUE;
5708
5709 error_return:
0ad989f9
L
5710 if (included != NULL)
5711 free (included);
5712 return FALSE;
5713}
4ad4eba5
AM
5714
5715/* Given an ELF BFD, add symbols to the global hash table as
5716 appropriate. */
5717
5718bfd_boolean
5719bfd_elf_link_add_symbols (bfd *abfd, struct bfd_link_info *info)
5720{
5721 switch (bfd_get_format (abfd))
5722 {
5723 case bfd_object:
5724 return elf_link_add_object_symbols (abfd, info);
5725 case bfd_archive:
5726 return elf_link_add_archive_symbols (abfd, info);
5727 default:
5728 bfd_set_error (bfd_error_wrong_format);
5729 return FALSE;
5730 }
5731}
5a580b3a 5732\f
14b1c01e
AM
5733struct hash_codes_info
5734{
5735 unsigned long *hashcodes;
5736 bfd_boolean error;
5737};
a0c8462f 5738
5a580b3a
AM
5739/* This function will be called though elf_link_hash_traverse to store
5740 all hash value of the exported symbols in an array. */
5741
5742static bfd_boolean
5743elf_collect_hash_codes (struct elf_link_hash_entry *h, void *data)
5744{
a50b1753 5745 struct hash_codes_info *inf = (struct hash_codes_info *) data;
5a580b3a 5746 const char *name;
5a580b3a
AM
5747 unsigned long ha;
5748 char *alc = NULL;
5749
5a580b3a
AM
5750 /* Ignore indirect symbols. These are added by the versioning code. */
5751 if (h->dynindx == -1)
5752 return TRUE;
5753
5754 name = h->root.root.string;
422f1182 5755 if (h->versioned >= versioned)
5a580b3a 5756 {
422f1182
L
5757 char *p = strchr (name, ELF_VER_CHR);
5758 if (p != NULL)
14b1c01e 5759 {
422f1182
L
5760 alc = (char *) bfd_malloc (p - name + 1);
5761 if (alc == NULL)
5762 {
5763 inf->error = TRUE;
5764 return FALSE;
5765 }
5766 memcpy (alc, name, p - name);
5767 alc[p - name] = '\0';
5768 name = alc;
14b1c01e 5769 }
5a580b3a
AM
5770 }
5771
5772 /* Compute the hash value. */
5773 ha = bfd_elf_hash (name);
5774
5775 /* Store the found hash value in the array given as the argument. */
14b1c01e 5776 *(inf->hashcodes)++ = ha;
5a580b3a
AM
5777
5778 /* And store it in the struct so that we can put it in the hash table
5779 later. */
f6e332e6 5780 h->u.elf_hash_value = ha;
5a580b3a
AM
5781
5782 if (alc != NULL)
5783 free (alc);
5784
5785 return TRUE;
5786}
5787
fdc90cb4
JJ
5788struct collect_gnu_hash_codes
5789{
5790 bfd *output_bfd;
5791 const struct elf_backend_data *bed;
5792 unsigned long int nsyms;
5793 unsigned long int maskbits;
5794 unsigned long int *hashcodes;
5795 unsigned long int *hashval;
5796 unsigned long int *indx;
5797 unsigned long int *counts;
5798 bfd_vma *bitmask;
5799 bfd_byte *contents;
5800 long int min_dynindx;
5801 unsigned long int bucketcount;
5802 unsigned long int symindx;
5803 long int local_indx;
5804 long int shift1, shift2;
5805 unsigned long int mask;
14b1c01e 5806 bfd_boolean error;
fdc90cb4
JJ
5807};
5808
5809/* This function will be called though elf_link_hash_traverse to store
5810 all hash value of the exported symbols in an array. */
5811
5812static bfd_boolean
5813elf_collect_gnu_hash_codes (struct elf_link_hash_entry *h, void *data)
5814{
a50b1753 5815 struct collect_gnu_hash_codes *s = (struct collect_gnu_hash_codes *) data;
fdc90cb4 5816 const char *name;
fdc90cb4
JJ
5817 unsigned long ha;
5818 char *alc = NULL;
5819
fdc90cb4
JJ
5820 /* Ignore indirect symbols. These are added by the versioning code. */
5821 if (h->dynindx == -1)
5822 return TRUE;
5823
5824 /* Ignore also local symbols and undefined symbols. */
5825 if (! (*s->bed->elf_hash_symbol) (h))
5826 return TRUE;
5827
5828 name = h->root.root.string;
422f1182 5829 if (h->versioned >= versioned)
fdc90cb4 5830 {
422f1182
L
5831 char *p = strchr (name, ELF_VER_CHR);
5832 if (p != NULL)
14b1c01e 5833 {
422f1182
L
5834 alc = (char *) bfd_malloc (p - name + 1);
5835 if (alc == NULL)
5836 {
5837 s->error = TRUE;
5838 return FALSE;
5839 }
5840 memcpy (alc, name, p - name);
5841 alc[p - name] = '\0';
5842 name = alc;
14b1c01e 5843 }
fdc90cb4
JJ
5844 }
5845
5846 /* Compute the hash value. */
5847 ha = bfd_elf_gnu_hash (name);
5848
5849 /* Store the found hash value in the array for compute_bucket_count,
5850 and also for .dynsym reordering purposes. */
5851 s->hashcodes[s->nsyms] = ha;
5852 s->hashval[h->dynindx] = ha;
5853 ++s->nsyms;
5854 if (s->min_dynindx < 0 || s->min_dynindx > h->dynindx)
5855 s->min_dynindx = h->dynindx;
5856
5857 if (alc != NULL)
5858 free (alc);
5859
5860 return TRUE;
5861}
5862
5863/* This function will be called though elf_link_hash_traverse to do
5864 final dynaminc symbol renumbering. */
5865
5866static bfd_boolean
5867elf_renumber_gnu_hash_syms (struct elf_link_hash_entry *h, void *data)
5868{
a50b1753 5869 struct collect_gnu_hash_codes *s = (struct collect_gnu_hash_codes *) data;
fdc90cb4
JJ
5870 unsigned long int bucket;
5871 unsigned long int val;
5872
fdc90cb4
JJ
5873 /* Ignore indirect symbols. */
5874 if (h->dynindx == -1)
5875 return TRUE;
5876
5877 /* Ignore also local symbols and undefined symbols. */
5878 if (! (*s->bed->elf_hash_symbol) (h))
5879 {
5880 if (h->dynindx >= s->min_dynindx)
5881 h->dynindx = s->local_indx++;
5882 return TRUE;
5883 }
5884
5885 bucket = s->hashval[h->dynindx] % s->bucketcount;
5886 val = (s->hashval[h->dynindx] >> s->shift1)
5887 & ((s->maskbits >> s->shift1) - 1);
5888 s->bitmask[val] |= ((bfd_vma) 1) << (s->hashval[h->dynindx] & s->mask);
5889 s->bitmask[val]
5890 |= ((bfd_vma) 1) << ((s->hashval[h->dynindx] >> s->shift2) & s->mask);
5891 val = s->hashval[h->dynindx] & ~(unsigned long int) 1;
5892 if (s->counts[bucket] == 1)
5893 /* Last element terminates the chain. */
5894 val |= 1;
5895 bfd_put_32 (s->output_bfd, val,
5896 s->contents + (s->indx[bucket] - s->symindx) * 4);
5897 --s->counts[bucket];
5898 h->dynindx = s->indx[bucket]++;
5899 return TRUE;
5900}
5901
5902/* Return TRUE if symbol should be hashed in the `.gnu.hash' section. */
5903
5904bfd_boolean
5905_bfd_elf_hash_symbol (struct elf_link_hash_entry *h)
5906{
5907 return !(h->forced_local
5908 || h->root.type == bfd_link_hash_undefined
5909 || h->root.type == bfd_link_hash_undefweak
5910 || ((h->root.type == bfd_link_hash_defined
5911 || h->root.type == bfd_link_hash_defweak)
5912 && h->root.u.def.section->output_section == NULL));
5913}
5914
5a580b3a
AM
5915/* Array used to determine the number of hash table buckets to use
5916 based on the number of symbols there are. If there are fewer than
5917 3 symbols we use 1 bucket, fewer than 17 symbols we use 3 buckets,
5918 fewer than 37 we use 17 buckets, and so forth. We never use more
5919 than 32771 buckets. */
5920
5921static const size_t elf_buckets[] =
5922{
5923 1, 3, 17, 37, 67, 97, 131, 197, 263, 521, 1031, 2053, 4099, 8209,
5924 16411, 32771, 0
5925};
5926
5927/* Compute bucket count for hashing table. We do not use a static set
5928 of possible tables sizes anymore. Instead we determine for all
5929 possible reasonable sizes of the table the outcome (i.e., the
5930 number of collisions etc) and choose the best solution. The
5931 weighting functions are not too simple to allow the table to grow
5932 without bounds. Instead one of the weighting factors is the size.
5933 Therefore the result is always a good payoff between few collisions
5934 (= short chain lengths) and table size. */
5935static size_t
b20dd2ce 5936compute_bucket_count (struct bfd_link_info *info ATTRIBUTE_UNUSED,
d40f3da9
AM
5937 unsigned long int *hashcodes ATTRIBUTE_UNUSED,
5938 unsigned long int nsyms,
5939 int gnu_hash)
5a580b3a 5940{
5a580b3a 5941 size_t best_size = 0;
5a580b3a 5942 unsigned long int i;
5a580b3a 5943
5a580b3a
AM
5944 /* We have a problem here. The following code to optimize the table
5945 size requires an integer type with more the 32 bits. If
5946 BFD_HOST_U_64_BIT is set we know about such a type. */
5947#ifdef BFD_HOST_U_64_BIT
5948 if (info->optimize)
5949 {
5a580b3a
AM
5950 size_t minsize;
5951 size_t maxsize;
5952 BFD_HOST_U_64_BIT best_chlen = ~((BFD_HOST_U_64_BIT) 0);
5a580b3a 5953 bfd *dynobj = elf_hash_table (info)->dynobj;
d40f3da9 5954 size_t dynsymcount = elf_hash_table (info)->dynsymcount;
5a580b3a 5955 const struct elf_backend_data *bed = get_elf_backend_data (dynobj);
fdc90cb4 5956 unsigned long int *counts;
d40f3da9 5957 bfd_size_type amt;
0883b6e0 5958 unsigned int no_improvement_count = 0;
5a580b3a
AM
5959
5960 /* Possible optimization parameters: if we have NSYMS symbols we say
5961 that the hashing table must at least have NSYMS/4 and at most
5962 2*NSYMS buckets. */
5963 minsize = nsyms / 4;
5964 if (minsize == 0)
5965 minsize = 1;
5966 best_size = maxsize = nsyms * 2;
fdc90cb4
JJ
5967 if (gnu_hash)
5968 {
5969 if (minsize < 2)
5970 minsize = 2;
5971 if ((best_size & 31) == 0)
5972 ++best_size;
5973 }
5a580b3a
AM
5974
5975 /* Create array where we count the collisions in. We must use bfd_malloc
5976 since the size could be large. */
5977 amt = maxsize;
5978 amt *= sizeof (unsigned long int);
a50b1753 5979 counts = (unsigned long int *) bfd_malloc (amt);
5a580b3a 5980 if (counts == NULL)
fdc90cb4 5981 return 0;
5a580b3a
AM
5982
5983 /* Compute the "optimal" size for the hash table. The criteria is a
5984 minimal chain length. The minor criteria is (of course) the size
5985 of the table. */
5986 for (i = minsize; i < maxsize; ++i)
5987 {
5988 /* Walk through the array of hashcodes and count the collisions. */
5989 BFD_HOST_U_64_BIT max;
5990 unsigned long int j;
5991 unsigned long int fact;
5992
fdc90cb4
JJ
5993 if (gnu_hash && (i & 31) == 0)
5994 continue;
5995
5a580b3a
AM
5996 memset (counts, '\0', i * sizeof (unsigned long int));
5997
5998 /* Determine how often each hash bucket is used. */
5999 for (j = 0; j < nsyms; ++j)
6000 ++counts[hashcodes[j] % i];
6001
6002 /* For the weight function we need some information about the
6003 pagesize on the target. This is information need not be 100%
6004 accurate. Since this information is not available (so far) we
6005 define it here to a reasonable default value. If it is crucial
6006 to have a better value some day simply define this value. */
6007# ifndef BFD_TARGET_PAGESIZE
6008# define BFD_TARGET_PAGESIZE (4096)
6009# endif
6010
fdc90cb4
JJ
6011 /* We in any case need 2 + DYNSYMCOUNT entries for the size values
6012 and the chains. */
6013 max = (2 + dynsymcount) * bed->s->sizeof_hash_entry;
5a580b3a
AM
6014
6015# if 1
6016 /* Variant 1: optimize for short chains. We add the squares
6017 of all the chain lengths (which favors many small chain
6018 over a few long chains). */
6019 for (j = 0; j < i; ++j)
6020 max += counts[j] * counts[j];
6021
6022 /* This adds penalties for the overall size of the table. */
fdc90cb4 6023 fact = i / (BFD_TARGET_PAGESIZE / bed->s->sizeof_hash_entry) + 1;
5a580b3a
AM
6024 max *= fact * fact;
6025# else
6026 /* Variant 2: Optimize a lot more for small table. Here we
6027 also add squares of the size but we also add penalties for
6028 empty slots (the +1 term). */
6029 for (j = 0; j < i; ++j)
6030 max += (1 + counts[j]) * (1 + counts[j]);
6031
6032 /* The overall size of the table is considered, but not as
6033 strong as in variant 1, where it is squared. */
fdc90cb4 6034 fact = i / (BFD_TARGET_PAGESIZE / bed->s->sizeof_hash_entry) + 1;
5a580b3a
AM
6035 max *= fact;
6036# endif
6037
6038 /* Compare with current best results. */
6039 if (max < best_chlen)
6040 {
6041 best_chlen = max;
6042 best_size = i;
ca4be51c 6043 no_improvement_count = 0;
5a580b3a 6044 }
0883b6e0
NC
6045 /* PR 11843: Avoid futile long searches for the best bucket size
6046 when there are a large number of symbols. */
6047 else if (++no_improvement_count == 100)
6048 break;
5a580b3a
AM
6049 }
6050
6051 free (counts);
6052 }
6053 else
6054#endif /* defined (BFD_HOST_U_64_BIT) */
6055 {
6056 /* This is the fallback solution if no 64bit type is available or if we
6057 are not supposed to spend much time on optimizations. We select the
6058 bucket count using a fixed set of numbers. */
6059 for (i = 0; elf_buckets[i] != 0; i++)
6060 {
6061 best_size = elf_buckets[i];
fdc90cb4 6062 if (nsyms < elf_buckets[i + 1])
5a580b3a
AM
6063 break;
6064 }
fdc90cb4
JJ
6065 if (gnu_hash && best_size < 2)
6066 best_size = 2;
5a580b3a
AM
6067 }
6068
5a580b3a
AM
6069 return best_size;
6070}
6071
d0bf826b
AM
6072/* Size any SHT_GROUP section for ld -r. */
6073
6074bfd_boolean
6075_bfd_elf_size_group_sections (struct bfd_link_info *info)
6076{
6077 bfd *ibfd;
57963c05 6078 asection *s;
d0bf826b 6079
c72f2fb2 6080 for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link.next)
d0bf826b 6081 if (bfd_get_flavour (ibfd) == bfd_target_elf_flavour
57963c05
AM
6082 && (s = ibfd->sections) != NULL
6083 && s->sec_info_type != SEC_INFO_TYPE_JUST_SYMS
d0bf826b
AM
6084 && !_bfd_elf_fixup_group_sections (ibfd, bfd_abs_section_ptr))
6085 return FALSE;
6086 return TRUE;
6087}
6088
04c3a755
NS
6089/* Set a default stack segment size. The value in INFO wins. If it
6090 is unset, LEGACY_SYMBOL's value is used, and if that symbol is
6091 undefined it is initialized. */
6092
6093bfd_boolean
6094bfd_elf_stack_segment_size (bfd *output_bfd,
6095 struct bfd_link_info *info,
6096 const char *legacy_symbol,
6097 bfd_vma default_size)
6098{
6099 struct elf_link_hash_entry *h = NULL;
6100
6101 /* Look for legacy symbol. */
6102 if (legacy_symbol)
6103 h = elf_link_hash_lookup (elf_hash_table (info), legacy_symbol,
6104 FALSE, FALSE, FALSE);
6105 if (h && (h->root.type == bfd_link_hash_defined
6106 || h->root.type == bfd_link_hash_defweak)
6107 && h->def_regular
6108 && (h->type == STT_NOTYPE || h->type == STT_OBJECT))
6109 {
6110 /* The symbol has no type if specified on the command line. */
6111 h->type = STT_OBJECT;
6112 if (info->stacksize)
695344c0 6113 /* xgettext:c-format */
871b3ab2 6114 _bfd_error_handler (_("%pB: stack size specified and %s set"),
4eca0228 6115 output_bfd, legacy_symbol);
04c3a755 6116 else if (h->root.u.def.section != bfd_abs_section_ptr)
695344c0 6117 /* xgettext:c-format */
871b3ab2 6118 _bfd_error_handler (_("%pB: %s not absolute"),
4eca0228 6119 output_bfd, legacy_symbol);
04c3a755
NS
6120 else
6121 info->stacksize = h->root.u.def.value;
6122 }
6123
6124 if (!info->stacksize)
6125 /* If the user didn't set a size, or explicitly inhibit the
6126 size, set it now. */
6127 info->stacksize = default_size;
6128
6129 /* Provide the legacy symbol, if it is referenced. */
6130 if (h && (h->root.type == bfd_link_hash_undefined
6131 || h->root.type == bfd_link_hash_undefweak))
6132 {
6133 struct bfd_link_hash_entry *bh = NULL;
6134
6135 if (!(_bfd_generic_link_add_one_symbol
6136 (info, output_bfd, legacy_symbol,
6137 BSF_GLOBAL, bfd_abs_section_ptr,
6138 info->stacksize >= 0 ? info->stacksize : 0,
6139 NULL, FALSE, get_elf_backend_data (output_bfd)->collect, &bh)))
6140 return FALSE;
6141
6142 h = (struct elf_link_hash_entry *) bh;
6143 h->def_regular = 1;
6144 h->type = STT_OBJECT;
6145 }
6146
6147 return TRUE;
6148}
6149
b531344c
MR
6150/* Sweep symbols in swept sections. Called via elf_link_hash_traverse. */
6151
6152struct elf_gc_sweep_symbol_info
6153{
6154 struct bfd_link_info *info;
6155 void (*hide_symbol) (struct bfd_link_info *, struct elf_link_hash_entry *,
6156 bfd_boolean);
6157};
6158
6159static bfd_boolean
6160elf_gc_sweep_symbol (struct elf_link_hash_entry *h, void *data)
6161{
6162 if (!h->mark
6163 && (((h->root.type == bfd_link_hash_defined
6164 || h->root.type == bfd_link_hash_defweak)
6165 && !((h->def_regular || ELF_COMMON_DEF_P (h))
6166 && h->root.u.def.section->gc_mark))
6167 || h->root.type == bfd_link_hash_undefined
6168 || h->root.type == bfd_link_hash_undefweak))
6169 {
6170 struct elf_gc_sweep_symbol_info *inf;
6171
6172 inf = (struct elf_gc_sweep_symbol_info *) data;
6173 (*inf->hide_symbol) (inf->info, h, TRUE);
6174 h->def_regular = 0;
6175 h->ref_regular = 0;
6176 h->ref_regular_nonweak = 0;
6177 }
6178
6179 return TRUE;
6180}
6181
5a580b3a
AM
6182/* Set up the sizes and contents of the ELF dynamic sections. This is
6183 called by the ELF linker emulation before_allocation routine. We
6184 must set the sizes of the sections before the linker sets the
6185 addresses of the various sections. */
6186
6187bfd_boolean
6188bfd_elf_size_dynamic_sections (bfd *output_bfd,
6189 const char *soname,
6190 const char *rpath,
6191 const char *filter_shlib,
7ee314fa
AM
6192 const char *audit,
6193 const char *depaudit,
5a580b3a
AM
6194 const char * const *auxiliary_filters,
6195 struct bfd_link_info *info,
fd91d419 6196 asection **sinterpptr)
5a580b3a 6197{
5a580b3a
AM
6198 bfd *dynobj;
6199 const struct elf_backend_data *bed;
5a580b3a
AM
6200
6201 *sinterpptr = NULL;
6202
5a580b3a
AM
6203 if (!is_elf_hash_table (info->hash))
6204 return TRUE;
6205
5a580b3a
AM
6206 dynobj = elf_hash_table (info)->dynobj;
6207
9a2a56cc 6208 if (dynobj != NULL && elf_hash_table (info)->dynamic_sections_created)
5a580b3a 6209 {
902e9fc7
MR
6210 struct bfd_elf_version_tree *verdefs;
6211 struct elf_info_failed asvinfo;
5a580b3a
AM
6212 struct bfd_elf_version_tree *t;
6213 struct bfd_elf_version_expr *d;
902e9fc7 6214 asection *s;
e6699019 6215 size_t soname_indx;
7ee314fa 6216
5a580b3a
AM
6217 /* If we are supposed to export all symbols into the dynamic symbol
6218 table (this is not the normal case), then do so. */
55255dae 6219 if (info->export_dynamic
0e1862bb 6220 || (bfd_link_executable (info) && info->dynamic))
5a580b3a 6221 {
3d13f3e9
AM
6222 struct elf_info_failed eif;
6223
6224 eif.info = info;
6225 eif.failed = FALSE;
5a580b3a
AM
6226 elf_link_hash_traverse (elf_hash_table (info),
6227 _bfd_elf_export_symbol,
6228 &eif);
6229 if (eif.failed)
6230 return FALSE;
6231 }
6232
e6699019
L
6233 if (soname != NULL)
6234 {
6235 soname_indx = _bfd_elf_strtab_add (elf_hash_table (info)->dynstr,
6236 soname, TRUE);
6237 if (soname_indx == (size_t) -1
6238 || !_bfd_elf_add_dynamic_entry (info, DT_SONAME, soname_indx))
6239 return FALSE;
6240 }
6241 else
6242 soname_indx = (size_t) -1;
6243
5a580b3a 6244 /* Make all global versions with definition. */
fd91d419 6245 for (t = info->version_info; t != NULL; t = t->next)
5a580b3a 6246 for (d = t->globals.list; d != NULL; d = d->next)
ae5a3597 6247 if (!d->symver && d->literal)
5a580b3a
AM
6248 {
6249 const char *verstr, *name;
6250 size_t namelen, verlen, newlen;
93252b1c 6251 char *newname, *p, leading_char;
5a580b3a
AM
6252 struct elf_link_hash_entry *newh;
6253
93252b1c 6254 leading_char = bfd_get_symbol_leading_char (output_bfd);
ae5a3597 6255 name = d->pattern;
93252b1c 6256 namelen = strlen (name) + (leading_char != '\0');
5a580b3a
AM
6257 verstr = t->name;
6258 verlen = strlen (verstr);
6259 newlen = namelen + verlen + 3;
6260
a50b1753 6261 newname = (char *) bfd_malloc (newlen);
5a580b3a
AM
6262 if (newname == NULL)
6263 return FALSE;
93252b1c
MF
6264 newname[0] = leading_char;
6265 memcpy (newname + (leading_char != '\0'), name, namelen);
5a580b3a
AM
6266
6267 /* Check the hidden versioned definition. */
6268 p = newname + namelen;
6269 *p++ = ELF_VER_CHR;
6270 memcpy (p, verstr, verlen + 1);
6271 newh = elf_link_hash_lookup (elf_hash_table (info),
6272 newname, FALSE, FALSE,
6273 FALSE);
6274 if (newh == NULL
6275 || (newh->root.type != bfd_link_hash_defined
6276 && newh->root.type != bfd_link_hash_defweak))
6277 {
6278 /* Check the default versioned definition. */
6279 *p++ = ELF_VER_CHR;
6280 memcpy (p, verstr, verlen + 1);
6281 newh = elf_link_hash_lookup (elf_hash_table (info),
6282 newname, FALSE, FALSE,
6283 FALSE);
6284 }
6285 free (newname);
6286
6287 /* Mark this version if there is a definition and it is
6288 not defined in a shared object. */
6289 if (newh != NULL
f5385ebf 6290 && !newh->def_dynamic
5a580b3a
AM
6291 && (newh->root.type == bfd_link_hash_defined
6292 || newh->root.type == bfd_link_hash_defweak))
6293 d->symver = 1;
6294 }
6295
6296 /* Attach all the symbols to their version information. */
5a580b3a 6297 asvinfo.info = info;
5a580b3a
AM
6298 asvinfo.failed = FALSE;
6299
6300 elf_link_hash_traverse (elf_hash_table (info),
6301 _bfd_elf_link_assign_sym_version,
6302 &asvinfo);
6303 if (asvinfo.failed)
6304 return FALSE;
6305
6306 if (!info->allow_undefined_version)
6307 {
6308 /* Check if all global versions have a definition. */
3d13f3e9 6309 bfd_boolean all_defined = TRUE;
fd91d419 6310 for (t = info->version_info; t != NULL; t = t->next)
5a580b3a 6311 for (d = t->globals.list; d != NULL; d = d->next)
ae5a3597 6312 if (d->literal && !d->symver && !d->script)
5a580b3a 6313 {
4eca0228 6314 _bfd_error_handler
5a580b3a
AM
6315 (_("%s: undefined version: %s"),
6316 d->pattern, t->name);
6317 all_defined = FALSE;
6318 }
6319
6320 if (!all_defined)
6321 {
6322 bfd_set_error (bfd_error_bad_value);
6323 return FALSE;
6324 }
6325 }
6326
902e9fc7
MR
6327 /* Set up the version definition section. */
6328 s = bfd_get_linker_section (dynobj, ".gnu.version_d");
6329 BFD_ASSERT (s != NULL);
5a580b3a 6330
902e9fc7
MR
6331 /* We may have created additional version definitions if we are
6332 just linking a regular application. */
6333 verdefs = info->version_info;
5a580b3a 6334
902e9fc7
MR
6335 /* Skip anonymous version tag. */
6336 if (verdefs != NULL && verdefs->vernum == 0)
6337 verdefs = verdefs->next;
5a580b3a 6338
902e9fc7
MR
6339 if (verdefs == NULL && !info->create_default_symver)
6340 s->flags |= SEC_EXCLUDE;
6341 else
5a580b3a 6342 {
902e9fc7
MR
6343 unsigned int cdefs;
6344 bfd_size_type size;
6345 bfd_byte *p;
6346 Elf_Internal_Verdef def;
6347 Elf_Internal_Verdaux defaux;
6348 struct bfd_link_hash_entry *bh;
6349 struct elf_link_hash_entry *h;
6350 const char *name;
5a580b3a 6351
902e9fc7
MR
6352 cdefs = 0;
6353 size = 0;
5a580b3a 6354
902e9fc7
MR
6355 /* Make space for the base version. */
6356 size += sizeof (Elf_External_Verdef);
6357 size += sizeof (Elf_External_Verdaux);
6358 ++cdefs;
6359
6360 /* Make space for the default version. */
6361 if (info->create_default_symver)
6362 {
6363 size += sizeof (Elf_External_Verdef);
6364 ++cdefs;
3e3b46e5
PB
6365 }
6366
5a580b3a
AM
6367 for (t = verdefs; t != NULL; t = t->next)
6368 {
6369 struct bfd_elf_version_deps *n;
6370
a6cc6b3b
RO
6371 /* Don't emit base version twice. */
6372 if (t->vernum == 0)
6373 continue;
6374
5a580b3a
AM
6375 size += sizeof (Elf_External_Verdef);
6376 size += sizeof (Elf_External_Verdaux);
6377 ++cdefs;
6378
6379 for (n = t->deps; n != NULL; n = n->next)
6380 size += sizeof (Elf_External_Verdaux);
6381 }
6382
eea6121a 6383 s->size = size;
a50b1753 6384 s->contents = (unsigned char *) bfd_alloc (output_bfd, s->size);
eea6121a 6385 if (s->contents == NULL && s->size != 0)
5a580b3a
AM
6386 return FALSE;
6387
6388 /* Fill in the version definition section. */
6389
6390 p = s->contents;
6391
6392 def.vd_version = VER_DEF_CURRENT;
6393 def.vd_flags = VER_FLG_BASE;
6394 def.vd_ndx = 1;
6395 def.vd_cnt = 1;
3e3b46e5
PB
6396 if (info->create_default_symver)
6397 {
6398 def.vd_aux = 2 * sizeof (Elf_External_Verdef);
6399 def.vd_next = sizeof (Elf_External_Verdef);
6400 }
6401 else
6402 {
6403 def.vd_aux = sizeof (Elf_External_Verdef);
6404 def.vd_next = (sizeof (Elf_External_Verdef)
6405 + sizeof (Elf_External_Verdaux));
6406 }
5a580b3a 6407
ef53be89 6408 if (soname_indx != (size_t) -1)
5a580b3a
AM
6409 {
6410 _bfd_elf_strtab_addref (elf_hash_table (info)->dynstr,
6411 soname_indx);
6412 def.vd_hash = bfd_elf_hash (soname);
6413 defaux.vda_name = soname_indx;
3e3b46e5 6414 name = soname;
5a580b3a
AM
6415 }
6416 else
6417 {
ef53be89 6418 size_t indx;
5a580b3a 6419
06084812 6420 name = lbasename (output_bfd->filename);
5a580b3a
AM
6421 def.vd_hash = bfd_elf_hash (name);
6422 indx = _bfd_elf_strtab_add (elf_hash_table (info)->dynstr,
6423 name, FALSE);
ef53be89 6424 if (indx == (size_t) -1)
5a580b3a
AM
6425 return FALSE;
6426 defaux.vda_name = indx;
6427 }
6428 defaux.vda_next = 0;
6429
6430 _bfd_elf_swap_verdef_out (output_bfd, &def,
6431 (Elf_External_Verdef *) p);
6432 p += sizeof (Elf_External_Verdef);
3e3b46e5
PB
6433 if (info->create_default_symver)
6434 {
6435 /* Add a symbol representing this version. */
6436 bh = NULL;
6437 if (! (_bfd_generic_link_add_one_symbol
6438 (info, dynobj, name, BSF_GLOBAL, bfd_abs_section_ptr,
6439 0, NULL, FALSE,
6440 get_elf_backend_data (dynobj)->collect, &bh)))
6441 return FALSE;
6442 h = (struct elf_link_hash_entry *) bh;
6443 h->non_elf = 0;
6444 h->def_regular = 1;
6445 h->type = STT_OBJECT;
6446 h->verinfo.vertree = NULL;
6447
6448 if (! bfd_elf_link_record_dynamic_symbol (info, h))
6449 return FALSE;
6450
6451 /* Create a duplicate of the base version with the same
6452 aux block, but different flags. */
6453 def.vd_flags = 0;
6454 def.vd_ndx = 2;
6455 def.vd_aux = sizeof (Elf_External_Verdef);
6456 if (verdefs)
6457 def.vd_next = (sizeof (Elf_External_Verdef)
6458 + sizeof (Elf_External_Verdaux));
6459 else
6460 def.vd_next = 0;
6461 _bfd_elf_swap_verdef_out (output_bfd, &def,
6462 (Elf_External_Verdef *) p);
6463 p += sizeof (Elf_External_Verdef);
6464 }
5a580b3a
AM
6465 _bfd_elf_swap_verdaux_out (output_bfd, &defaux,
6466 (Elf_External_Verdaux *) p);
6467 p += sizeof (Elf_External_Verdaux);
6468
6469 for (t = verdefs; t != NULL; t = t->next)
6470 {
6471 unsigned int cdeps;
6472 struct bfd_elf_version_deps *n;
5a580b3a 6473
a6cc6b3b
RO
6474 /* Don't emit the base version twice. */
6475 if (t->vernum == 0)
6476 continue;
6477
5a580b3a
AM
6478 cdeps = 0;
6479 for (n = t->deps; n != NULL; n = n->next)
6480 ++cdeps;
6481
6482 /* Add a symbol representing this version. */
6483 bh = NULL;
6484 if (! (_bfd_generic_link_add_one_symbol
6485 (info, dynobj, t->name, BSF_GLOBAL, bfd_abs_section_ptr,
6486 0, NULL, FALSE,
6487 get_elf_backend_data (dynobj)->collect, &bh)))
6488 return FALSE;
6489 h = (struct elf_link_hash_entry *) bh;
f5385ebf
AM
6490 h->non_elf = 0;
6491 h->def_regular = 1;
5a580b3a
AM
6492 h->type = STT_OBJECT;
6493 h->verinfo.vertree = t;
6494
c152c796 6495 if (! bfd_elf_link_record_dynamic_symbol (info, h))
5a580b3a
AM
6496 return FALSE;
6497
6498 def.vd_version = VER_DEF_CURRENT;
6499 def.vd_flags = 0;
6500 if (t->globals.list == NULL
6501 && t->locals.list == NULL
6502 && ! t->used)
6503 def.vd_flags |= VER_FLG_WEAK;
3e3b46e5 6504 def.vd_ndx = t->vernum + (info->create_default_symver ? 2 : 1);
5a580b3a
AM
6505 def.vd_cnt = cdeps + 1;
6506 def.vd_hash = bfd_elf_hash (t->name);
6507 def.vd_aux = sizeof (Elf_External_Verdef);
6508 def.vd_next = 0;
a6cc6b3b
RO
6509
6510 /* If a basever node is next, it *must* be the last node in
6511 the chain, otherwise Verdef construction breaks. */
6512 if (t->next != NULL && t->next->vernum == 0)
6513 BFD_ASSERT (t->next->next == NULL);
6514
6515 if (t->next != NULL && t->next->vernum != 0)
5a580b3a
AM
6516 def.vd_next = (sizeof (Elf_External_Verdef)
6517 + (cdeps + 1) * sizeof (Elf_External_Verdaux));
6518
6519 _bfd_elf_swap_verdef_out (output_bfd, &def,
6520 (Elf_External_Verdef *) p);
6521 p += sizeof (Elf_External_Verdef);
6522
6523 defaux.vda_name = h->dynstr_index;
6524 _bfd_elf_strtab_addref (elf_hash_table (info)->dynstr,
6525 h->dynstr_index);
6526 defaux.vda_next = 0;
6527 if (t->deps != NULL)
6528 defaux.vda_next = sizeof (Elf_External_Verdaux);
6529 t->name_indx = defaux.vda_name;
6530
6531 _bfd_elf_swap_verdaux_out (output_bfd, &defaux,
6532 (Elf_External_Verdaux *) p);
6533 p += sizeof (Elf_External_Verdaux);
6534
6535 for (n = t->deps; n != NULL; n = n->next)
6536 {
6537 if (n->version_needed == NULL)
6538 {
6539 /* This can happen if there was an error in the
6540 version script. */
6541 defaux.vda_name = 0;
6542 }
6543 else
6544 {
6545 defaux.vda_name = n->version_needed->name_indx;
6546 _bfd_elf_strtab_addref (elf_hash_table (info)->dynstr,
6547 defaux.vda_name);
6548 }
6549 if (n->next == NULL)
6550 defaux.vda_next = 0;
6551 else
6552 defaux.vda_next = sizeof (Elf_External_Verdaux);
6553
6554 _bfd_elf_swap_verdaux_out (output_bfd, &defaux,
6555 (Elf_External_Verdaux *) p);
6556 p += sizeof (Elf_External_Verdaux);
6557 }
6558 }
6559
5a580b3a
AM
6560 elf_tdata (output_bfd)->cverdefs = cdefs;
6561 }
902e9fc7
MR
6562 }
6563
6564 bed = get_elf_backend_data (output_bfd);
6565
6566 if (info->gc_sections && bed->can_gc_sections)
6567 {
6568 struct elf_gc_sweep_symbol_info sweep_info;
902e9fc7
MR
6569
6570 /* Remove the symbols that were in the swept sections from the
3d13f3e9 6571 dynamic symbol table. */
902e9fc7
MR
6572 sweep_info.info = info;
6573 sweep_info.hide_symbol = bed->elf_backend_hide_symbol;
6574 elf_link_hash_traverse (elf_hash_table (info), elf_gc_sweep_symbol,
6575 &sweep_info);
3d13f3e9
AM
6576 }
6577
6578 if (dynobj != NULL && elf_hash_table (info)->dynamic_sections_created)
6579 {
6580 asection *s;
6581 struct elf_find_verdep_info sinfo;
6582
6583 /* Work out the size of the version reference section. */
6584
6585 s = bfd_get_linker_section (dynobj, ".gnu.version_r");
6586 BFD_ASSERT (s != NULL);
902e9fc7 6587
3d13f3e9
AM
6588 sinfo.info = info;
6589 sinfo.vers = elf_tdata (output_bfd)->cverdefs;
6590 if (sinfo.vers == 0)
6591 sinfo.vers = 1;
6592 sinfo.failed = FALSE;
6593
6594 elf_link_hash_traverse (elf_hash_table (info),
6595 _bfd_elf_link_find_version_dependencies,
6596 &sinfo);
6597 if (sinfo.failed)
6598 return FALSE;
6599
6600 if (elf_tdata (output_bfd)->verref == NULL)
6601 s->flags |= SEC_EXCLUDE;
6602 else
6603 {
6604 Elf_Internal_Verneed *vn;
6605 unsigned int size;
6606 unsigned int crefs;
6607 bfd_byte *p;
6608
6609 /* Build the version dependency section. */
6610 size = 0;
6611 crefs = 0;
6612 for (vn = elf_tdata (output_bfd)->verref;
6613 vn != NULL;
6614 vn = vn->vn_nextref)
6615 {
6616 Elf_Internal_Vernaux *a;
6617
6618 size += sizeof (Elf_External_Verneed);
6619 ++crefs;
6620 for (a = vn->vn_auxptr; a != NULL; a = a->vna_nextptr)
6621 size += sizeof (Elf_External_Vernaux);
6622 }
6623
6624 s->size = size;
6625 s->contents = (unsigned char *) bfd_alloc (output_bfd, s->size);
6626 if (s->contents == NULL)
6627 return FALSE;
6628
6629 p = s->contents;
6630 for (vn = elf_tdata (output_bfd)->verref;
6631 vn != NULL;
6632 vn = vn->vn_nextref)
6633 {
6634 unsigned int caux;
6635 Elf_Internal_Vernaux *a;
6636 size_t indx;
6637
6638 caux = 0;
6639 for (a = vn->vn_auxptr; a != NULL; a = a->vna_nextptr)
6640 ++caux;
6641
6642 vn->vn_version = VER_NEED_CURRENT;
6643 vn->vn_cnt = caux;
6644 indx = _bfd_elf_strtab_add (elf_hash_table (info)->dynstr,
6645 elf_dt_name (vn->vn_bfd) != NULL
6646 ? elf_dt_name (vn->vn_bfd)
6647 : lbasename (vn->vn_bfd->filename),
6648 FALSE);
6649 if (indx == (size_t) -1)
6650 return FALSE;
6651 vn->vn_file = indx;
6652 vn->vn_aux = sizeof (Elf_External_Verneed);
6653 if (vn->vn_nextref == NULL)
6654 vn->vn_next = 0;
6655 else
6656 vn->vn_next = (sizeof (Elf_External_Verneed)
6657 + caux * sizeof (Elf_External_Vernaux));
6658
6659 _bfd_elf_swap_verneed_out (output_bfd, vn,
6660 (Elf_External_Verneed *) p);
6661 p += sizeof (Elf_External_Verneed);
6662
6663 for (a = vn->vn_auxptr; a != NULL; a = a->vna_nextptr)
6664 {
6665 a->vna_hash = bfd_elf_hash (a->vna_nodename);
6666 indx = _bfd_elf_strtab_add (elf_hash_table (info)->dynstr,
6667 a->vna_nodename, FALSE);
6668 if (indx == (size_t) -1)
6669 return FALSE;
6670 a->vna_name = indx;
6671 if (a->vna_nextptr == NULL)
6672 a->vna_next = 0;
6673 else
6674 a->vna_next = sizeof (Elf_External_Vernaux);
6675
6676 _bfd_elf_swap_vernaux_out (output_bfd, a,
6677 (Elf_External_Vernaux *) p);
6678 p += sizeof (Elf_External_Vernaux);
6679 }
6680 }
6681
6682 elf_tdata (output_bfd)->cverrefs = crefs;
6683 }
902e9fc7
MR
6684 }
6685
6686 /* Any syms created from now on start with -1 in
6687 got.refcount/offset and plt.refcount/offset. */
6688 elf_hash_table (info)->init_got_refcount
6689 = elf_hash_table (info)->init_got_offset;
6690 elf_hash_table (info)->init_plt_refcount
6691 = elf_hash_table (info)->init_plt_offset;
6692
6693 if (bfd_link_relocatable (info)
6694 && !_bfd_elf_size_group_sections (info))
6695 return FALSE;
6696
6697 /* The backend may have to create some sections regardless of whether
6698 we're dynamic or not. */
6699 if (bed->elf_backend_always_size_sections
6700 && ! (*bed->elf_backend_always_size_sections) (output_bfd, info))
6701 return FALSE;
6702
6703 /* Determine any GNU_STACK segment requirements, after the backend
6704 has had a chance to set a default segment size. */
6705 if (info->execstack)
6706 elf_stack_flags (output_bfd) = PF_R | PF_W | PF_X;
6707 else if (info->noexecstack)
6708 elf_stack_flags (output_bfd) = PF_R | PF_W;
6709 else
6710 {
6711 bfd *inputobj;
6712 asection *notesec = NULL;
6713 int exec = 0;
6714
6715 for (inputobj = info->input_bfds;
6716 inputobj;
6717 inputobj = inputobj->link.next)
6718 {
6719 asection *s;
6720
6721 if (inputobj->flags
6722 & (DYNAMIC | EXEC_P | BFD_PLUGIN | BFD_LINKER_CREATED))
6723 continue;
57963c05
AM
6724 s = inputobj->sections;
6725 if (s == NULL || s->sec_info_type == SEC_INFO_TYPE_JUST_SYMS)
6726 continue;
6727
902e9fc7
MR
6728 s = bfd_get_section_by_name (inputobj, ".note.GNU-stack");
6729 if (s)
6730 {
6731 if (s->flags & SEC_CODE)
6732 exec = PF_X;
6733 notesec = s;
6734 }
6735 else if (bed->default_execstack)
6736 exec = PF_X;
6737 }
6738 if (notesec || info->stacksize > 0)
6739 elf_stack_flags (output_bfd) = PF_R | PF_W | exec;
6740 if (notesec && exec && bfd_link_relocatable (info)
6741 && notesec->output_section != bfd_abs_section_ptr)
6742 notesec->output_section->flags |= SEC_CODE;
6743 }
6744
6745 if (dynobj != NULL && elf_hash_table (info)->dynamic_sections_created)
6746 {
6747 struct elf_info_failed eif;
6748 struct elf_link_hash_entry *h;
6749 asection *dynstr;
6750 asection *s;
6751
6752 *sinterpptr = bfd_get_linker_section (dynobj, ".interp");
6753 BFD_ASSERT (*sinterpptr != NULL || !bfd_link_executable (info) || info->nointerp);
6754
902e9fc7
MR
6755 if (info->symbolic)
6756 {
6757 if (!_bfd_elf_add_dynamic_entry (info, DT_SYMBOLIC, 0))
6758 return FALSE;
6759 info->flags |= DF_SYMBOLIC;
6760 }
6761
6762 if (rpath != NULL)
6763 {
6764 size_t indx;
6765 bfd_vma tag;
6766
6767 indx = _bfd_elf_strtab_add (elf_hash_table (info)->dynstr, rpath,
6768 TRUE);
6769 if (indx == (size_t) -1)
6770 return FALSE;
6771
6772 tag = info->new_dtags ? DT_RUNPATH : DT_RPATH;
6773 if (!_bfd_elf_add_dynamic_entry (info, tag, indx))
6774 return FALSE;
6775 }
6776
6777 if (filter_shlib != NULL)
6778 {
6779 size_t indx;
6780
6781 indx = _bfd_elf_strtab_add (elf_hash_table (info)->dynstr,
6782 filter_shlib, TRUE);
6783 if (indx == (size_t) -1
6784 || !_bfd_elf_add_dynamic_entry (info, DT_FILTER, indx))
6785 return FALSE;
6786 }
6787
6788 if (auxiliary_filters != NULL)
6789 {
6790 const char * const *p;
6791
6792 for (p = auxiliary_filters; *p != NULL; p++)
6793 {
6794 size_t indx;
6795
6796 indx = _bfd_elf_strtab_add (elf_hash_table (info)->dynstr,
6797 *p, TRUE);
6798 if (indx == (size_t) -1
6799 || !_bfd_elf_add_dynamic_entry (info, DT_AUXILIARY, indx))
6800 return FALSE;
6801 }
6802 }
6803
6804 if (audit != NULL)
6805 {
6806 size_t indx;
6807
6808 indx = _bfd_elf_strtab_add (elf_hash_table (info)->dynstr, audit,
6809 TRUE);
6810 if (indx == (size_t) -1
6811 || !_bfd_elf_add_dynamic_entry (info, DT_AUDIT, indx))
6812 return FALSE;
6813 }
6814
6815 if (depaudit != NULL)
6816 {
6817 size_t indx;
6818
6819 indx = _bfd_elf_strtab_add (elf_hash_table (info)->dynstr, depaudit,
6820 TRUE);
6821 if (indx == (size_t) -1
6822 || !_bfd_elf_add_dynamic_entry (info, DT_DEPAUDIT, indx))
6823 return FALSE;
6824 }
6825
6826 eif.info = info;
6827 eif.failed = FALSE;
6828
6829 /* Find all symbols which were defined in a dynamic object and make
6830 the backend pick a reasonable value for them. */
6831 elf_link_hash_traverse (elf_hash_table (info),
6832 _bfd_elf_adjust_dynamic_symbol,
6833 &eif);
6834 if (eif.failed)
6835 return FALSE;
6836
6837 /* Add some entries to the .dynamic section. We fill in some of the
6838 values later, in bfd_elf_final_link, but we must add the entries
6839 now so that we know the final size of the .dynamic section. */
6840
6841 /* If there are initialization and/or finalization functions to
6842 call then add the corresponding DT_INIT/DT_FINI entries. */
6843 h = (info->init_function
6844 ? elf_link_hash_lookup (elf_hash_table (info),
6845 info->init_function, FALSE,
6846 FALSE, FALSE)
6847 : NULL);
6848 if (h != NULL
6849 && (h->ref_regular
6850 || h->def_regular))
6851 {
6852 if (!_bfd_elf_add_dynamic_entry (info, DT_INIT, 0))
6853 return FALSE;
6854 }
6855 h = (info->fini_function
6856 ? elf_link_hash_lookup (elf_hash_table (info),
6857 info->fini_function, FALSE,
6858 FALSE, FALSE)
6859 : NULL);
6860 if (h != NULL
6861 && (h->ref_regular
6862 || h->def_regular))
6863 {
6864 if (!_bfd_elf_add_dynamic_entry (info, DT_FINI, 0))
6865 return FALSE;
6866 }
6867
6868 s = bfd_get_section_by_name (output_bfd, ".preinit_array");
6869 if (s != NULL && s->linker_has_input)
6870 {
6871 /* DT_PREINIT_ARRAY is not allowed in shared library. */
6872 if (! bfd_link_executable (info))
6873 {
6874 bfd *sub;
6875 asection *o;
6876
57963c05
AM
6877 for (sub = info->input_bfds; sub != NULL; sub = sub->link.next)
6878 if (bfd_get_flavour (sub) == bfd_target_elf_flavour
6879 && (o = sub->sections) != NULL
6880 && o->sec_info_type != SEC_INFO_TYPE_JUST_SYMS)
902e9fc7
MR
6881 for (o = sub->sections; o != NULL; o = o->next)
6882 if (elf_section_data (o)->this_hdr.sh_type
6883 == SHT_PREINIT_ARRAY)
6884 {
6885 _bfd_error_handler
871b3ab2 6886 (_("%pB: .preinit_array section is not allowed in DSO"),
902e9fc7
MR
6887 sub);
6888 break;
6889 }
6890
6891 bfd_set_error (bfd_error_nonrepresentable_section);
6892 return FALSE;
6893 }
6894
6895 if (!_bfd_elf_add_dynamic_entry (info, DT_PREINIT_ARRAY, 0)
6896 || !_bfd_elf_add_dynamic_entry (info, DT_PREINIT_ARRAYSZ, 0))
6897 return FALSE;
6898 }
6899 s = bfd_get_section_by_name (output_bfd, ".init_array");
6900 if (s != NULL && s->linker_has_input)
6901 {
6902 if (!_bfd_elf_add_dynamic_entry (info, DT_INIT_ARRAY, 0)
6903 || !_bfd_elf_add_dynamic_entry (info, DT_INIT_ARRAYSZ, 0))
6904 return FALSE;
6905 }
6906 s = bfd_get_section_by_name (output_bfd, ".fini_array");
6907 if (s != NULL && s->linker_has_input)
6908 {
6909 if (!_bfd_elf_add_dynamic_entry (info, DT_FINI_ARRAY, 0)
6910 || !_bfd_elf_add_dynamic_entry (info, DT_FINI_ARRAYSZ, 0))
6911 return FALSE;
6912 }
6913
6914 dynstr = bfd_get_linker_section (dynobj, ".dynstr");
6915 /* If .dynstr is excluded from the link, we don't want any of
6916 these tags. Strictly, we should be checking each section
6917 individually; This quick check covers for the case where
6918 someone does a /DISCARD/ : { *(*) }. */
6919 if (dynstr != NULL && dynstr->output_section != bfd_abs_section_ptr)
6920 {
6921 bfd_size_type strsize;
6922
6923 strsize = _bfd_elf_strtab_size (elf_hash_table (info)->dynstr);
6924 if ((info->emit_hash
6925 && !_bfd_elf_add_dynamic_entry (info, DT_HASH, 0))
6926 || (info->emit_gnu_hash
6927 && !_bfd_elf_add_dynamic_entry (info, DT_GNU_HASH, 0))
6928 || !_bfd_elf_add_dynamic_entry (info, DT_STRTAB, 0)
6929 || !_bfd_elf_add_dynamic_entry (info, DT_SYMTAB, 0)
6930 || !_bfd_elf_add_dynamic_entry (info, DT_STRSZ, strsize)
6931 || !_bfd_elf_add_dynamic_entry (info, DT_SYMENT,
6932 bed->s->sizeof_sym))
6933 return FALSE;
6934 }
6935 }
6936
6937 if (! _bfd_elf_maybe_strip_eh_frame_hdr (info))
6938 return FALSE;
6939
6940 /* The backend must work out the sizes of all the other dynamic
6941 sections. */
6942 if (dynobj != NULL
6943 && bed->elf_backend_size_dynamic_sections != NULL
6944 && ! (*bed->elf_backend_size_dynamic_sections) (output_bfd, info))
6945 return FALSE;
6946
6947 if (dynobj != NULL && elf_hash_table (info)->dynamic_sections_created)
6948 {
902e9fc7
MR
6949 if (elf_tdata (output_bfd)->cverdefs)
6950 {
6951 unsigned int crefs = elf_tdata (output_bfd)->cverdefs;
6952
6953 if (!_bfd_elf_add_dynamic_entry (info, DT_VERDEF, 0)
6954 || !_bfd_elf_add_dynamic_entry (info, DT_VERDEFNUM, crefs))
6955 return FALSE;
6956 }
6957
6958 if ((info->new_dtags && info->flags) || (info->flags & DF_STATIC_TLS))
6959 {
6960 if (!_bfd_elf_add_dynamic_entry (info, DT_FLAGS, info->flags))
6961 return FALSE;
6962 }
6963 else if (info->flags & DF_BIND_NOW)
6964 {
6965 if (!_bfd_elf_add_dynamic_entry (info, DT_BIND_NOW, 0))
6966 return FALSE;
6967 }
6968
6969 if (info->flags_1)
6970 {
6971 if (bfd_link_executable (info))
6972 info->flags_1 &= ~ (DF_1_INITFIRST
6973 | DF_1_NODELETE
6974 | DF_1_NOOPEN);
6975 if (!_bfd_elf_add_dynamic_entry (info, DT_FLAGS_1, info->flags_1))
6976 return FALSE;
6977 }
6978
6979 if (elf_tdata (output_bfd)->cverrefs)
6980 {
6981 unsigned int crefs = elf_tdata (output_bfd)->cverrefs;
6982
6983 if (!_bfd_elf_add_dynamic_entry (info, DT_VERNEED, 0)
6984 || !_bfd_elf_add_dynamic_entry (info, DT_VERNEEDNUM, crefs))
6985 return FALSE;
6986 }
5a580b3a 6987
8423293d
AM
6988 if ((elf_tdata (output_bfd)->cverrefs == 0
6989 && elf_tdata (output_bfd)->cverdefs == 0)
63f452a8 6990 || _bfd_elf_link_renumber_dynsyms (output_bfd, info, NULL) <= 1)
8423293d 6991 {
902e9fc7
MR
6992 asection *s;
6993
3d4d4302 6994 s = bfd_get_linker_section (dynobj, ".gnu.version");
8423293d
AM
6995 s->flags |= SEC_EXCLUDE;
6996 }
6997 }
6998 return TRUE;
6999}
7000
74541ad4
AM
7001/* Find the first non-excluded output section. We'll use its
7002 section symbol for some emitted relocs. */
7003void
7004_bfd_elf_init_1_index_section (bfd *output_bfd, struct bfd_link_info *info)
7005{
7006 asection *s;
7007
7008 for (s = output_bfd->sections; s != NULL; s = s->next)
7009 if ((s->flags & (SEC_EXCLUDE | SEC_ALLOC)) == SEC_ALLOC
d00dd7dc 7010 && !_bfd_elf_omit_section_dynsym_default (output_bfd, info, s))
74541ad4
AM
7011 {
7012 elf_hash_table (info)->text_index_section = s;
7013 break;
7014 }
7015}
7016
7017/* Find two non-excluded output sections, one for code, one for data.
7018 We'll use their section symbols for some emitted relocs. */
7019void
7020_bfd_elf_init_2_index_sections (bfd *output_bfd, struct bfd_link_info *info)
7021{
7022 asection *s;
7023
266b05cf 7024 /* Data first, since setting text_index_section changes
7f923b7f 7025 _bfd_elf_omit_section_dynsym_default. */
74541ad4 7026 for (s = output_bfd->sections; s != NULL; s = s->next)
266b05cf 7027 if (((s->flags & (SEC_EXCLUDE | SEC_ALLOC | SEC_READONLY)) == SEC_ALLOC)
d00dd7dc 7028 && !_bfd_elf_omit_section_dynsym_default (output_bfd, info, s))
74541ad4 7029 {
266b05cf 7030 elf_hash_table (info)->data_index_section = s;
74541ad4
AM
7031 break;
7032 }
7033
7034 for (s = output_bfd->sections; s != NULL; s = s->next)
266b05cf
DJ
7035 if (((s->flags & (SEC_EXCLUDE | SEC_ALLOC | SEC_READONLY))
7036 == (SEC_ALLOC | SEC_READONLY))
d00dd7dc 7037 && !_bfd_elf_omit_section_dynsym_default (output_bfd, info, s))
74541ad4 7038 {
266b05cf 7039 elf_hash_table (info)->text_index_section = s;
74541ad4
AM
7040 break;
7041 }
7042
7043 if (elf_hash_table (info)->text_index_section == NULL)
7044 elf_hash_table (info)->text_index_section
7045 = elf_hash_table (info)->data_index_section;
7046}
7047
8423293d
AM
7048bfd_boolean
7049bfd_elf_size_dynsym_hash_dynstr (bfd *output_bfd, struct bfd_link_info *info)
7050{
74541ad4 7051 const struct elf_backend_data *bed;
23ec1e32 7052 unsigned long section_sym_count;
96d01d93 7053 bfd_size_type dynsymcount = 0;
74541ad4 7054
8423293d
AM
7055 if (!is_elf_hash_table (info->hash))
7056 return TRUE;
7057
74541ad4
AM
7058 bed = get_elf_backend_data (output_bfd);
7059 (*bed->elf_backend_init_index_section) (output_bfd, info);
7060
23ec1e32
MR
7061 /* Assign dynsym indices. In a shared library we generate a section
7062 symbol for each output section, which come first. Next come all
7063 of the back-end allocated local dynamic syms, followed by the rest
7064 of the global symbols.
7065
7066 This is usually not needed for static binaries, however backends
7067 can request to always do it, e.g. the MIPS backend uses dynamic
7068 symbol counts to lay out GOT, which will be produced in the
7069 presence of GOT relocations even in static binaries (holding fixed
7070 data in that case, to satisfy those relocations). */
7071
7072 if (elf_hash_table (info)->dynamic_sections_created
7073 || bed->always_renumber_dynsyms)
7074 dynsymcount = _bfd_elf_link_renumber_dynsyms (output_bfd, info,
7075 &section_sym_count);
7076
8423293d
AM
7077 if (elf_hash_table (info)->dynamic_sections_created)
7078 {
7079 bfd *dynobj;
8423293d 7080 asection *s;
8423293d
AM
7081 unsigned int dtagcount;
7082
7083 dynobj = elf_hash_table (info)->dynobj;
7084
5a580b3a 7085 /* Work out the size of the symbol version section. */
3d4d4302 7086 s = bfd_get_linker_section (dynobj, ".gnu.version");
5a580b3a 7087 BFD_ASSERT (s != NULL);
d5486c43 7088 if ((s->flags & SEC_EXCLUDE) == 0)
5a580b3a 7089 {
eea6121a 7090 s->size = dynsymcount * sizeof (Elf_External_Versym);
a50b1753 7091 s->contents = (unsigned char *) bfd_zalloc (output_bfd, s->size);
5a580b3a
AM
7092 if (s->contents == NULL)
7093 return FALSE;
7094
7095 if (!_bfd_elf_add_dynamic_entry (info, DT_VERSYM, 0))
7096 return FALSE;
7097 }
7098
7099 /* Set the size of the .dynsym and .hash sections. We counted
7100 the number of dynamic symbols in elf_link_add_object_symbols.
7101 We will build the contents of .dynsym and .hash when we build
7102 the final symbol table, because until then we do not know the
7103 correct value to give the symbols. We built the .dynstr
7104 section as we went along in elf_link_add_object_symbols. */
cae1fbbb 7105 s = elf_hash_table (info)->dynsym;
5a580b3a 7106 BFD_ASSERT (s != NULL);
eea6121a 7107 s->size = dynsymcount * bed->s->sizeof_sym;
5a580b3a 7108
d5486c43
L
7109 s->contents = (unsigned char *) bfd_alloc (output_bfd, s->size);
7110 if (s->contents == NULL)
7111 return FALSE;
5a580b3a 7112
d5486c43
L
7113 /* The first entry in .dynsym is a dummy symbol. Clear all the
7114 section syms, in case we don't output them all. */
7115 ++section_sym_count;
7116 memset (s->contents, 0, section_sym_count * bed->s->sizeof_sym);
5a580b3a 7117
fdc90cb4
JJ
7118 elf_hash_table (info)->bucketcount = 0;
7119
5a580b3a
AM
7120 /* Compute the size of the hashing table. As a side effect this
7121 computes the hash values for all the names we export. */
fdc90cb4
JJ
7122 if (info->emit_hash)
7123 {
7124 unsigned long int *hashcodes;
14b1c01e 7125 struct hash_codes_info hashinf;
fdc90cb4
JJ
7126 bfd_size_type amt;
7127 unsigned long int nsyms;
7128 size_t bucketcount;
7129 size_t hash_entry_size;
7130
7131 /* Compute the hash values for all exported symbols. At the same
7132 time store the values in an array so that we could use them for
7133 optimizations. */
7134 amt = dynsymcount * sizeof (unsigned long int);
a50b1753 7135 hashcodes = (unsigned long int *) bfd_malloc (amt);
fdc90cb4
JJ
7136 if (hashcodes == NULL)
7137 return FALSE;
14b1c01e
AM
7138 hashinf.hashcodes = hashcodes;
7139 hashinf.error = FALSE;
5a580b3a 7140
fdc90cb4
JJ
7141 /* Put all hash values in HASHCODES. */
7142 elf_link_hash_traverse (elf_hash_table (info),
14b1c01e
AM
7143 elf_collect_hash_codes, &hashinf);
7144 if (hashinf.error)
4dd07732
AM
7145 {
7146 free (hashcodes);
7147 return FALSE;
7148 }
5a580b3a 7149
14b1c01e 7150 nsyms = hashinf.hashcodes - hashcodes;
fdc90cb4
JJ
7151 bucketcount
7152 = compute_bucket_count (info, hashcodes, nsyms, 0);
7153 free (hashcodes);
7154
4b48e2f6 7155 if (bucketcount == 0 && nsyms > 0)
fdc90cb4 7156 return FALSE;
5a580b3a 7157
fdc90cb4
JJ
7158 elf_hash_table (info)->bucketcount = bucketcount;
7159
3d4d4302 7160 s = bfd_get_linker_section (dynobj, ".hash");
fdc90cb4
JJ
7161 BFD_ASSERT (s != NULL);
7162 hash_entry_size = elf_section_data (s)->this_hdr.sh_entsize;
7163 s->size = ((2 + bucketcount + dynsymcount) * hash_entry_size);
a50b1753 7164 s->contents = (unsigned char *) bfd_zalloc (output_bfd, s->size);
fdc90cb4
JJ
7165 if (s->contents == NULL)
7166 return FALSE;
7167
7168 bfd_put (8 * hash_entry_size, output_bfd, bucketcount, s->contents);
7169 bfd_put (8 * hash_entry_size, output_bfd, dynsymcount,
7170 s->contents + hash_entry_size);
7171 }
7172
7173 if (info->emit_gnu_hash)
7174 {
7175 size_t i, cnt;
7176 unsigned char *contents;
7177 struct collect_gnu_hash_codes cinfo;
7178 bfd_size_type amt;
7179 size_t bucketcount;
7180
7181 memset (&cinfo, 0, sizeof (cinfo));
7182
7183 /* Compute the hash values for all exported symbols. At the same
7184 time store the values in an array so that we could use them for
7185 optimizations. */
7186 amt = dynsymcount * 2 * sizeof (unsigned long int);
a50b1753 7187 cinfo.hashcodes = (long unsigned int *) bfd_malloc (amt);
fdc90cb4
JJ
7188 if (cinfo.hashcodes == NULL)
7189 return FALSE;
7190
7191 cinfo.hashval = cinfo.hashcodes + dynsymcount;
7192 cinfo.min_dynindx = -1;
7193 cinfo.output_bfd = output_bfd;
7194 cinfo.bed = bed;
7195
7196 /* Put all hash values in HASHCODES. */
7197 elf_link_hash_traverse (elf_hash_table (info),
7198 elf_collect_gnu_hash_codes, &cinfo);
14b1c01e 7199 if (cinfo.error)
4dd07732
AM
7200 {
7201 free (cinfo.hashcodes);
7202 return FALSE;
7203 }
fdc90cb4
JJ
7204
7205 bucketcount
7206 = compute_bucket_count (info, cinfo.hashcodes, cinfo.nsyms, 1);
7207
7208 if (bucketcount == 0)
7209 {
7210 free (cinfo.hashcodes);
7211 return FALSE;
7212 }
7213
3d4d4302 7214 s = bfd_get_linker_section (dynobj, ".gnu.hash");
fdc90cb4
JJ
7215 BFD_ASSERT (s != NULL);
7216
7217 if (cinfo.nsyms == 0)
7218 {
7219 /* Empty .gnu.hash section is special. */
7220 BFD_ASSERT (cinfo.min_dynindx == -1);
7221 free (cinfo.hashcodes);
7222 s->size = 5 * 4 + bed->s->arch_size / 8;
a50b1753 7223 contents = (unsigned char *) bfd_zalloc (output_bfd, s->size);
fdc90cb4
JJ
7224 if (contents == NULL)
7225 return FALSE;
7226 s->contents = contents;
7227 /* 1 empty bucket. */
7228 bfd_put_32 (output_bfd, 1, contents);
7229 /* SYMIDX above the special symbol 0. */
7230 bfd_put_32 (output_bfd, 1, contents + 4);
7231 /* Just one word for bitmask. */
7232 bfd_put_32 (output_bfd, 1, contents + 8);
7233 /* Only hash fn bloom filter. */
7234 bfd_put_32 (output_bfd, 0, contents + 12);
7235 /* No hashes are valid - empty bitmask. */
7236 bfd_put (bed->s->arch_size, output_bfd, 0, contents + 16);
7237 /* No hashes in the only bucket. */
7238 bfd_put_32 (output_bfd, 0,
7239 contents + 16 + bed->s->arch_size / 8);
7240 }
7241 else
7242 {
9e6619e2 7243 unsigned long int maskwords, maskbitslog2, x;
0b33793d 7244 BFD_ASSERT (cinfo.min_dynindx != -1);
fdc90cb4 7245
9e6619e2
AM
7246 x = cinfo.nsyms;
7247 maskbitslog2 = 1;
7248 while ((x >>= 1) != 0)
7249 ++maskbitslog2;
fdc90cb4
JJ
7250 if (maskbitslog2 < 3)
7251 maskbitslog2 = 5;
7252 else if ((1 << (maskbitslog2 - 2)) & cinfo.nsyms)
7253 maskbitslog2 = maskbitslog2 + 3;
7254 else
7255 maskbitslog2 = maskbitslog2 + 2;
7256 if (bed->s->arch_size == 64)
7257 {
7258 if (maskbitslog2 == 5)
7259 maskbitslog2 = 6;
7260 cinfo.shift1 = 6;
7261 }
7262 else
7263 cinfo.shift1 = 5;
7264 cinfo.mask = (1 << cinfo.shift1) - 1;
2ccdbfcc 7265 cinfo.shift2 = maskbitslog2;
fdc90cb4
JJ
7266 cinfo.maskbits = 1 << maskbitslog2;
7267 maskwords = 1 << (maskbitslog2 - cinfo.shift1);
7268 amt = bucketcount * sizeof (unsigned long int) * 2;
7269 amt += maskwords * sizeof (bfd_vma);
a50b1753 7270 cinfo.bitmask = (bfd_vma *) bfd_malloc (amt);
fdc90cb4
JJ
7271 if (cinfo.bitmask == NULL)
7272 {
7273 free (cinfo.hashcodes);
7274 return FALSE;
7275 }
7276
a50b1753 7277 cinfo.counts = (long unsigned int *) (cinfo.bitmask + maskwords);
fdc90cb4
JJ
7278 cinfo.indx = cinfo.counts + bucketcount;
7279 cinfo.symindx = dynsymcount - cinfo.nsyms;
7280 memset (cinfo.bitmask, 0, maskwords * sizeof (bfd_vma));
7281
7282 /* Determine how often each hash bucket is used. */
7283 memset (cinfo.counts, 0, bucketcount * sizeof (cinfo.counts[0]));
7284 for (i = 0; i < cinfo.nsyms; ++i)
7285 ++cinfo.counts[cinfo.hashcodes[i] % bucketcount];
7286
7287 for (i = 0, cnt = cinfo.symindx; i < bucketcount; ++i)
7288 if (cinfo.counts[i] != 0)
7289 {
7290 cinfo.indx[i] = cnt;
7291 cnt += cinfo.counts[i];
7292 }
7293 BFD_ASSERT (cnt == dynsymcount);
7294 cinfo.bucketcount = bucketcount;
7295 cinfo.local_indx = cinfo.min_dynindx;
7296
7297 s->size = (4 + bucketcount + cinfo.nsyms) * 4;
7298 s->size += cinfo.maskbits / 8;
a50b1753 7299 contents = (unsigned char *) bfd_zalloc (output_bfd, s->size);
fdc90cb4
JJ
7300 if (contents == NULL)
7301 {
7302 free (cinfo.bitmask);
7303 free (cinfo.hashcodes);
7304 return FALSE;
7305 }
7306
7307 s->contents = contents;
7308 bfd_put_32 (output_bfd, bucketcount, contents);
7309 bfd_put_32 (output_bfd, cinfo.symindx, contents + 4);
7310 bfd_put_32 (output_bfd, maskwords, contents + 8);
7311 bfd_put_32 (output_bfd, cinfo.shift2, contents + 12);
7312 contents += 16 + cinfo.maskbits / 8;
7313
7314 for (i = 0; i < bucketcount; ++i)
7315 {
7316 if (cinfo.counts[i] == 0)
7317 bfd_put_32 (output_bfd, 0, contents);
7318 else
7319 bfd_put_32 (output_bfd, cinfo.indx[i], contents);
7320 contents += 4;
7321 }
7322
7323 cinfo.contents = contents;
7324
7325 /* Renumber dynamic symbols, populate .gnu.hash section. */
7326 elf_link_hash_traverse (elf_hash_table (info),
7327 elf_renumber_gnu_hash_syms, &cinfo);
7328
7329 contents = s->contents + 16;
7330 for (i = 0; i < maskwords; ++i)
7331 {
7332 bfd_put (bed->s->arch_size, output_bfd, cinfo.bitmask[i],
7333 contents);
7334 contents += bed->s->arch_size / 8;
7335 }
7336
7337 free (cinfo.bitmask);
7338 free (cinfo.hashcodes);
7339 }
7340 }
5a580b3a 7341
3d4d4302 7342 s = bfd_get_linker_section (dynobj, ".dynstr");
5a580b3a
AM
7343 BFD_ASSERT (s != NULL);
7344
4ad4eba5 7345 elf_finalize_dynstr (output_bfd, info);
5a580b3a 7346
eea6121a 7347 s->size = _bfd_elf_strtab_size (elf_hash_table (info)->dynstr);
5a580b3a
AM
7348
7349 for (dtagcount = 0; dtagcount <= info->spare_dynamic_tags; ++dtagcount)
7350 if (!_bfd_elf_add_dynamic_entry (info, DT_NULL, 0))
7351 return FALSE;
7352 }
7353
7354 return TRUE;
7355}
4d269e42 7356\f
4d269e42
AM
7357/* Make sure sec_info_type is cleared if sec_info is cleared too. */
7358
7359static void
7360merge_sections_remove_hook (bfd *abfd ATTRIBUTE_UNUSED,
7361 asection *sec)
7362{
dbaa2011
AM
7363 BFD_ASSERT (sec->sec_info_type == SEC_INFO_TYPE_MERGE);
7364 sec->sec_info_type = SEC_INFO_TYPE_NONE;
4d269e42
AM
7365}
7366
7367/* Finish SHF_MERGE section merging. */
7368
7369bfd_boolean
630993ec 7370_bfd_elf_merge_sections (bfd *obfd, struct bfd_link_info *info)
4d269e42
AM
7371{
7372 bfd *ibfd;
7373 asection *sec;
7374
7375 if (!is_elf_hash_table (info->hash))
7376 return FALSE;
7377
c72f2fb2 7378 for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link.next)
630993ec
AM
7379 if ((ibfd->flags & DYNAMIC) == 0
7380 && bfd_get_flavour (ibfd) == bfd_target_elf_flavour
017e6bce
AM
7381 && (elf_elfheader (ibfd)->e_ident[EI_CLASS]
7382 == get_elf_backend_data (obfd)->s->elfclass))
4d269e42
AM
7383 for (sec = ibfd->sections; sec != NULL; sec = sec->next)
7384 if ((sec->flags & SEC_MERGE) != 0
7385 && !bfd_is_abs_section (sec->output_section))
7386 {
7387 struct bfd_elf_section_data *secdata;
7388
7389 secdata = elf_section_data (sec);
630993ec 7390 if (! _bfd_add_merge_section (obfd,
4d269e42
AM
7391 &elf_hash_table (info)->merge_info,
7392 sec, &secdata->sec_info))
7393 return FALSE;
7394 else if (secdata->sec_info)
dbaa2011 7395 sec->sec_info_type = SEC_INFO_TYPE_MERGE;
4d269e42
AM
7396 }
7397
7398 if (elf_hash_table (info)->merge_info != NULL)
630993ec 7399 _bfd_merge_sections (obfd, info, elf_hash_table (info)->merge_info,
4d269e42
AM
7400 merge_sections_remove_hook);
7401 return TRUE;
7402}
7403
7404/* Create an entry in an ELF linker hash table. */
7405
7406struct bfd_hash_entry *
7407_bfd_elf_link_hash_newfunc (struct bfd_hash_entry *entry,
7408 struct bfd_hash_table *table,
7409 const char *string)
7410{
7411 /* Allocate the structure if it has not already been allocated by a
7412 subclass. */
7413 if (entry == NULL)
7414 {
a50b1753 7415 entry = (struct bfd_hash_entry *)
ca4be51c 7416 bfd_hash_allocate (table, sizeof (struct elf_link_hash_entry));
4d269e42
AM
7417 if (entry == NULL)
7418 return entry;
7419 }
7420
7421 /* Call the allocation method of the superclass. */
7422 entry = _bfd_link_hash_newfunc (entry, table, string);
7423 if (entry != NULL)
7424 {
7425 struct elf_link_hash_entry *ret = (struct elf_link_hash_entry *) entry;
7426 struct elf_link_hash_table *htab = (struct elf_link_hash_table *) table;
7427
7428 /* Set local fields. */
7429 ret->indx = -1;
7430 ret->dynindx = -1;
7431 ret->got = htab->init_got_refcount;
7432 ret->plt = htab->init_plt_refcount;
7433 memset (&ret->size, 0, (sizeof (struct elf_link_hash_entry)
7434 - offsetof (struct elf_link_hash_entry, size)));
7435 /* Assume that we have been called by a non-ELF symbol reader.
7436 This flag is then reset by the code which reads an ELF input
7437 file. This ensures that a symbol created by a non-ELF symbol
7438 reader will have the flag set correctly. */
7439 ret->non_elf = 1;
7440 }
7441
7442 return entry;
7443}
7444
7445/* Copy data from an indirect symbol to its direct symbol, hiding the
7446 old indirect symbol. Also used for copying flags to a weakdef. */
7447
7448void
7449_bfd_elf_link_hash_copy_indirect (struct bfd_link_info *info,
7450 struct elf_link_hash_entry *dir,
7451 struct elf_link_hash_entry *ind)
7452{
7453 struct elf_link_hash_table *htab;
7454
7455 /* Copy down any references that we may have already seen to the
e81830c5 7456 symbol which just became indirect. */
4d269e42 7457
422f1182 7458 if (dir->versioned != versioned_hidden)
e81830c5
AM
7459 dir->ref_dynamic |= ind->ref_dynamic;
7460 dir->ref_regular |= ind->ref_regular;
7461 dir->ref_regular_nonweak |= ind->ref_regular_nonweak;
7462 dir->non_got_ref |= ind->non_got_ref;
7463 dir->needs_plt |= ind->needs_plt;
7464 dir->pointer_equality_needed |= ind->pointer_equality_needed;
4d269e42
AM
7465
7466 if (ind->root.type != bfd_link_hash_indirect)
7467 return;
7468
7469 /* Copy over the global and procedure linkage table refcount entries.
7470 These may have been already set up by a check_relocs routine. */
7471 htab = elf_hash_table (info);
7472 if (ind->got.refcount > htab->init_got_refcount.refcount)
7473 {
7474 if (dir->got.refcount < 0)
7475 dir->got.refcount = 0;
7476 dir->got.refcount += ind->got.refcount;
7477 ind->got.refcount = htab->init_got_refcount.refcount;
7478 }
7479
7480 if (ind->plt.refcount > htab->init_plt_refcount.refcount)
7481 {
7482 if (dir->plt.refcount < 0)
7483 dir->plt.refcount = 0;
7484 dir->plt.refcount += ind->plt.refcount;
7485 ind->plt.refcount = htab->init_plt_refcount.refcount;
7486 }
7487
7488 if (ind->dynindx != -1)
7489 {
7490 if (dir->dynindx != -1)
7491 _bfd_elf_strtab_delref (htab->dynstr, dir->dynstr_index);
7492 dir->dynindx = ind->dynindx;
7493 dir->dynstr_index = ind->dynstr_index;
7494 ind->dynindx = -1;
7495 ind->dynstr_index = 0;
7496 }
7497}
7498
7499void
7500_bfd_elf_link_hash_hide_symbol (struct bfd_link_info *info,
7501 struct elf_link_hash_entry *h,
7502 bfd_boolean force_local)
7503{
3aa14d16
L
7504 /* STT_GNU_IFUNC symbol must go through PLT. */
7505 if (h->type != STT_GNU_IFUNC)
7506 {
7507 h->plt = elf_hash_table (info)->init_plt_offset;
7508 h->needs_plt = 0;
7509 }
4d269e42
AM
7510 if (force_local)
7511 {
7512 h->forced_local = 1;
7513 if (h->dynindx != -1)
7514 {
4d269e42
AM
7515 _bfd_elf_strtab_delref (elf_hash_table (info)->dynstr,
7516 h->dynstr_index);
641338d8
AM
7517 h->dynindx = -1;
7518 h->dynstr_index = 0;
4d269e42
AM
7519 }
7520 }
7521}
7522
34a87bb0
L
7523/* Hide a symbol. */
7524
7525void
7526_bfd_elf_link_hide_symbol (bfd *output_bfd,
7527 struct bfd_link_info *info,
7528 struct bfd_link_hash_entry *h)
7529{
7530 if (is_elf_hash_table (info->hash))
7531 {
7532 const struct elf_backend_data *bed
7533 = get_elf_backend_data (output_bfd);
7534 struct elf_link_hash_entry *eh
7535 = (struct elf_link_hash_entry *) h;
7536 bed->elf_backend_hide_symbol (info, eh, TRUE);
7537 eh->def_dynamic = 0;
7538 eh->ref_dynamic = 0;
7539 eh->dynamic_def = 0;
7540 }
7541}
7542
7bf52ea2
AM
7543/* Initialize an ELF linker hash table. *TABLE has been zeroed by our
7544 caller. */
4d269e42
AM
7545
7546bfd_boolean
7547_bfd_elf_link_hash_table_init
7548 (struct elf_link_hash_table *table,
7549 bfd *abfd,
7550 struct bfd_hash_entry *(*newfunc) (struct bfd_hash_entry *,
7551 struct bfd_hash_table *,
7552 const char *),
4dfe6ac6
NC
7553 unsigned int entsize,
7554 enum elf_target_id target_id)
4d269e42
AM
7555{
7556 bfd_boolean ret;
7557 int can_refcount = get_elf_backend_data (abfd)->can_refcount;
7558
4d269e42
AM
7559 table->init_got_refcount.refcount = can_refcount - 1;
7560 table->init_plt_refcount.refcount = can_refcount - 1;
7561 table->init_got_offset.offset = -(bfd_vma) 1;
7562 table->init_plt_offset.offset = -(bfd_vma) 1;
7563 /* The first dynamic symbol is a dummy. */
7564 table->dynsymcount = 1;
7565
7566 ret = _bfd_link_hash_table_init (&table->root, abfd, newfunc, entsize);
4dfe6ac6 7567
4d269e42 7568 table->root.type = bfd_link_elf_hash_table;
4dfe6ac6 7569 table->hash_table_id = target_id;
4d269e42
AM
7570
7571 return ret;
7572}
7573
7574/* Create an ELF linker hash table. */
7575
7576struct bfd_link_hash_table *
7577_bfd_elf_link_hash_table_create (bfd *abfd)
7578{
7579 struct elf_link_hash_table *ret;
7580 bfd_size_type amt = sizeof (struct elf_link_hash_table);
7581
7bf52ea2 7582 ret = (struct elf_link_hash_table *) bfd_zmalloc (amt);
4d269e42
AM
7583 if (ret == NULL)
7584 return NULL;
7585
7586 if (! _bfd_elf_link_hash_table_init (ret, abfd, _bfd_elf_link_hash_newfunc,
4dfe6ac6
NC
7587 sizeof (struct elf_link_hash_entry),
7588 GENERIC_ELF_DATA))
4d269e42
AM
7589 {
7590 free (ret);
7591 return NULL;
7592 }
d495ab0d 7593 ret->root.hash_table_free = _bfd_elf_link_hash_table_free;
4d269e42
AM
7594
7595 return &ret->root;
7596}
7597
9f7c3e5e
AM
7598/* Destroy an ELF linker hash table. */
7599
7600void
d495ab0d 7601_bfd_elf_link_hash_table_free (bfd *obfd)
9f7c3e5e 7602{
d495ab0d
AM
7603 struct elf_link_hash_table *htab;
7604
7605 htab = (struct elf_link_hash_table *) obfd->link.hash;
9f7c3e5e
AM
7606 if (htab->dynstr != NULL)
7607 _bfd_elf_strtab_free (htab->dynstr);
7608 _bfd_merge_sections_free (htab->merge_info);
d495ab0d 7609 _bfd_generic_link_hash_table_free (obfd);
9f7c3e5e
AM
7610}
7611
4d269e42
AM
7612/* This is a hook for the ELF emulation code in the generic linker to
7613 tell the backend linker what file name to use for the DT_NEEDED
7614 entry for a dynamic object. */
7615
7616void
7617bfd_elf_set_dt_needed_name (bfd *abfd, const char *name)
7618{
7619 if (bfd_get_flavour (abfd) == bfd_target_elf_flavour
7620 && bfd_get_format (abfd) == bfd_object)
7621 elf_dt_name (abfd) = name;
7622}
7623
7624int
7625bfd_elf_get_dyn_lib_class (bfd *abfd)
7626{
7627 int lib_class;
7628 if (bfd_get_flavour (abfd) == bfd_target_elf_flavour
7629 && bfd_get_format (abfd) == bfd_object)
7630 lib_class = elf_dyn_lib_class (abfd);
7631 else
7632 lib_class = 0;
7633 return lib_class;
7634}
7635
7636void
7637bfd_elf_set_dyn_lib_class (bfd *abfd, enum dynamic_lib_link_class lib_class)
7638{
7639 if (bfd_get_flavour (abfd) == bfd_target_elf_flavour
7640 && bfd_get_format (abfd) == bfd_object)
7641 elf_dyn_lib_class (abfd) = lib_class;
7642}
7643
7644/* Get the list of DT_NEEDED entries for a link. This is a hook for
7645 the linker ELF emulation code. */
7646
7647struct bfd_link_needed_list *
7648bfd_elf_get_needed_list (bfd *abfd ATTRIBUTE_UNUSED,
7649 struct bfd_link_info *info)
7650{
7651 if (! is_elf_hash_table (info->hash))
7652 return NULL;
7653 return elf_hash_table (info)->needed;
7654}
7655
7656/* Get the list of DT_RPATH/DT_RUNPATH entries for a link. This is a
7657 hook for the linker ELF emulation code. */
7658
7659struct bfd_link_needed_list *
7660bfd_elf_get_runpath_list (bfd *abfd ATTRIBUTE_UNUSED,
7661 struct bfd_link_info *info)
7662{
7663 if (! is_elf_hash_table (info->hash))
7664 return NULL;
7665 return elf_hash_table (info)->runpath;
7666}
7667
7668/* Get the name actually used for a dynamic object for a link. This
7669 is the SONAME entry if there is one. Otherwise, it is the string
7670 passed to bfd_elf_set_dt_needed_name, or it is the filename. */
7671
7672const char *
7673bfd_elf_get_dt_soname (bfd *abfd)
7674{
7675 if (bfd_get_flavour (abfd) == bfd_target_elf_flavour
7676 && bfd_get_format (abfd) == bfd_object)
7677 return elf_dt_name (abfd);
7678 return NULL;
7679}
7680
7681/* Get the list of DT_NEEDED entries from a BFD. This is a hook for
7682 the ELF linker emulation code. */
7683
7684bfd_boolean
7685bfd_elf_get_bfd_needed_list (bfd *abfd,
7686 struct bfd_link_needed_list **pneeded)
7687{
7688 asection *s;
7689 bfd_byte *dynbuf = NULL;
cb33740c 7690 unsigned int elfsec;
4d269e42
AM
7691 unsigned long shlink;
7692 bfd_byte *extdyn, *extdynend;
7693 size_t extdynsize;
7694 void (*swap_dyn_in) (bfd *, const void *, Elf_Internal_Dyn *);
7695
7696 *pneeded = NULL;
7697
7698 if (bfd_get_flavour (abfd) != bfd_target_elf_flavour
7699 || bfd_get_format (abfd) != bfd_object)
7700 return TRUE;
7701
7702 s = bfd_get_section_by_name (abfd, ".dynamic");
7703 if (s == NULL || s->size == 0)
7704 return TRUE;
7705
7706 if (!bfd_malloc_and_get_section (abfd, s, &dynbuf))
7707 goto error_return;
7708
7709 elfsec = _bfd_elf_section_from_bfd_section (abfd, s);
cb33740c 7710 if (elfsec == SHN_BAD)
4d269e42
AM
7711 goto error_return;
7712
7713 shlink = elf_elfsections (abfd)[elfsec]->sh_link;
c152c796 7714
4d269e42
AM
7715 extdynsize = get_elf_backend_data (abfd)->s->sizeof_dyn;
7716 swap_dyn_in = get_elf_backend_data (abfd)->s->swap_dyn_in;
7717
7718 extdyn = dynbuf;
7719 extdynend = extdyn + s->size;
7720 for (; extdyn < extdynend; extdyn += extdynsize)
7721 {
7722 Elf_Internal_Dyn dyn;
7723
7724 (*swap_dyn_in) (abfd, extdyn, &dyn);
7725
7726 if (dyn.d_tag == DT_NULL)
7727 break;
7728
7729 if (dyn.d_tag == DT_NEEDED)
7730 {
7731 const char *string;
7732 struct bfd_link_needed_list *l;
7733 unsigned int tagv = dyn.d_un.d_val;
7734 bfd_size_type amt;
7735
7736 string = bfd_elf_string_from_elf_section (abfd, shlink, tagv);
7737 if (string == NULL)
7738 goto error_return;
7739
7740 amt = sizeof *l;
a50b1753 7741 l = (struct bfd_link_needed_list *) bfd_alloc (abfd, amt);
4d269e42
AM
7742 if (l == NULL)
7743 goto error_return;
7744
7745 l->by = abfd;
7746 l->name = string;
7747 l->next = *pneeded;
7748 *pneeded = l;
7749 }
7750 }
7751
7752 free (dynbuf);
7753
7754 return TRUE;
7755
7756 error_return:
7757 if (dynbuf != NULL)
7758 free (dynbuf);
7759 return FALSE;
7760}
7761
7762struct elf_symbuf_symbol
7763{
7764 unsigned long st_name; /* Symbol name, index in string tbl */
7765 unsigned char st_info; /* Type and binding attributes */
7766 unsigned char st_other; /* Visibilty, and target specific */
7767};
7768
7769struct elf_symbuf_head
7770{
7771 struct elf_symbuf_symbol *ssym;
ef53be89 7772 size_t count;
4d269e42
AM
7773 unsigned int st_shndx;
7774};
7775
7776struct elf_symbol
7777{
7778 union
7779 {
7780 Elf_Internal_Sym *isym;
7781 struct elf_symbuf_symbol *ssym;
7782 } u;
7783 const char *name;
7784};
7785
7786/* Sort references to symbols by ascending section number. */
7787
7788static int
7789elf_sort_elf_symbol (const void *arg1, const void *arg2)
7790{
7791 const Elf_Internal_Sym *s1 = *(const Elf_Internal_Sym **) arg1;
7792 const Elf_Internal_Sym *s2 = *(const Elf_Internal_Sym **) arg2;
7793
7794 return s1->st_shndx - s2->st_shndx;
7795}
7796
7797static int
7798elf_sym_name_compare (const void *arg1, const void *arg2)
7799{
7800 const struct elf_symbol *s1 = (const struct elf_symbol *) arg1;
7801 const struct elf_symbol *s2 = (const struct elf_symbol *) arg2;
7802 return strcmp (s1->name, s2->name);
7803}
7804
7805static struct elf_symbuf_head *
ef53be89 7806elf_create_symbuf (size_t symcount, Elf_Internal_Sym *isymbuf)
4d269e42 7807{
14b1c01e 7808 Elf_Internal_Sym **ind, **indbufend, **indbuf;
4d269e42
AM
7809 struct elf_symbuf_symbol *ssym;
7810 struct elf_symbuf_head *ssymbuf, *ssymhead;
ef53be89 7811 size_t i, shndx_count, total_size;
4d269e42 7812
a50b1753 7813 indbuf = (Elf_Internal_Sym **) bfd_malloc2 (symcount, sizeof (*indbuf));
4d269e42
AM
7814 if (indbuf == NULL)
7815 return NULL;
7816
7817 for (ind = indbuf, i = 0; i < symcount; i++)
7818 if (isymbuf[i].st_shndx != SHN_UNDEF)
7819 *ind++ = &isymbuf[i];
7820 indbufend = ind;
7821
7822 qsort (indbuf, indbufend - indbuf, sizeof (Elf_Internal_Sym *),
7823 elf_sort_elf_symbol);
7824
7825 shndx_count = 0;
7826 if (indbufend > indbuf)
7827 for (ind = indbuf, shndx_count++; ind < indbufend - 1; ind++)
7828 if (ind[0]->st_shndx != ind[1]->st_shndx)
7829 shndx_count++;
7830
3ae181ee
L
7831 total_size = ((shndx_count + 1) * sizeof (*ssymbuf)
7832 + (indbufend - indbuf) * sizeof (*ssym));
a50b1753 7833 ssymbuf = (struct elf_symbuf_head *) bfd_malloc (total_size);
4d269e42
AM
7834 if (ssymbuf == NULL)
7835 {
7836 free (indbuf);
7837 return NULL;
7838 }
7839
3ae181ee 7840 ssym = (struct elf_symbuf_symbol *) (ssymbuf + shndx_count + 1);
4d269e42
AM
7841 ssymbuf->ssym = NULL;
7842 ssymbuf->count = shndx_count;
7843 ssymbuf->st_shndx = 0;
7844 for (ssymhead = ssymbuf, ind = indbuf; ind < indbufend; ssym++, ind++)
7845 {
7846 if (ind == indbuf || ssymhead->st_shndx != (*ind)->st_shndx)
7847 {
7848 ssymhead++;
7849 ssymhead->ssym = ssym;
7850 ssymhead->count = 0;
7851 ssymhead->st_shndx = (*ind)->st_shndx;
7852 }
7853 ssym->st_name = (*ind)->st_name;
7854 ssym->st_info = (*ind)->st_info;
7855 ssym->st_other = (*ind)->st_other;
7856 ssymhead->count++;
7857 }
ef53be89 7858 BFD_ASSERT ((size_t) (ssymhead - ssymbuf) == shndx_count
3ae181ee
L
7859 && (((bfd_hostptr_t) ssym - (bfd_hostptr_t) ssymbuf)
7860 == total_size));
4d269e42
AM
7861
7862 free (indbuf);
7863 return ssymbuf;
7864}
7865
7866/* Check if 2 sections define the same set of local and global
7867 symbols. */
7868
8f317e31 7869static bfd_boolean
4d269e42
AM
7870bfd_elf_match_symbols_in_sections (asection *sec1, asection *sec2,
7871 struct bfd_link_info *info)
7872{
7873 bfd *bfd1, *bfd2;
7874 const struct elf_backend_data *bed1, *bed2;
7875 Elf_Internal_Shdr *hdr1, *hdr2;
ef53be89 7876 size_t symcount1, symcount2;
4d269e42
AM
7877 Elf_Internal_Sym *isymbuf1, *isymbuf2;
7878 struct elf_symbuf_head *ssymbuf1, *ssymbuf2;
7879 Elf_Internal_Sym *isym, *isymend;
7880 struct elf_symbol *symtable1 = NULL, *symtable2 = NULL;
ef53be89 7881 size_t count1, count2, i;
cb33740c 7882 unsigned int shndx1, shndx2;
4d269e42
AM
7883 bfd_boolean result;
7884
7885 bfd1 = sec1->owner;
7886 bfd2 = sec2->owner;
7887
4d269e42
AM
7888 /* Both sections have to be in ELF. */
7889 if (bfd_get_flavour (bfd1) != bfd_target_elf_flavour
7890 || bfd_get_flavour (bfd2) != bfd_target_elf_flavour)
7891 return FALSE;
7892
7893 if (elf_section_type (sec1) != elf_section_type (sec2))
7894 return FALSE;
7895
4d269e42
AM
7896 shndx1 = _bfd_elf_section_from_bfd_section (bfd1, sec1);
7897 shndx2 = _bfd_elf_section_from_bfd_section (bfd2, sec2);
cb33740c 7898 if (shndx1 == SHN_BAD || shndx2 == SHN_BAD)
4d269e42
AM
7899 return FALSE;
7900
7901 bed1 = get_elf_backend_data (bfd1);
7902 bed2 = get_elf_backend_data (bfd2);
7903 hdr1 = &elf_tdata (bfd1)->symtab_hdr;
7904 symcount1 = hdr1->sh_size / bed1->s->sizeof_sym;
7905 hdr2 = &elf_tdata (bfd2)->symtab_hdr;
7906 symcount2 = hdr2->sh_size / bed2->s->sizeof_sym;
7907
7908 if (symcount1 == 0 || symcount2 == 0)
7909 return FALSE;
7910
7911 result = FALSE;
7912 isymbuf1 = NULL;
7913 isymbuf2 = NULL;
a50b1753
NC
7914 ssymbuf1 = (struct elf_symbuf_head *) elf_tdata (bfd1)->symbuf;
7915 ssymbuf2 = (struct elf_symbuf_head *) elf_tdata (bfd2)->symbuf;
4d269e42
AM
7916
7917 if (ssymbuf1 == NULL)
7918 {
7919 isymbuf1 = bfd_elf_get_elf_syms (bfd1, hdr1, symcount1, 0,
7920 NULL, NULL, NULL);
7921 if (isymbuf1 == NULL)
7922 goto done;
7923
7924 if (!info->reduce_memory_overheads)
7925 elf_tdata (bfd1)->symbuf = ssymbuf1
7926 = elf_create_symbuf (symcount1, isymbuf1);
7927 }
7928
7929 if (ssymbuf1 == NULL || ssymbuf2 == NULL)
7930 {
7931 isymbuf2 = bfd_elf_get_elf_syms (bfd2, hdr2, symcount2, 0,
7932 NULL, NULL, NULL);
7933 if (isymbuf2 == NULL)
7934 goto done;
7935
7936 if (ssymbuf1 != NULL && !info->reduce_memory_overheads)
7937 elf_tdata (bfd2)->symbuf = ssymbuf2
7938 = elf_create_symbuf (symcount2, isymbuf2);
7939 }
7940
7941 if (ssymbuf1 != NULL && ssymbuf2 != NULL)
7942 {
7943 /* Optimized faster version. */
ef53be89 7944 size_t lo, hi, mid;
4d269e42
AM
7945 struct elf_symbol *symp;
7946 struct elf_symbuf_symbol *ssym, *ssymend;
7947
7948 lo = 0;
7949 hi = ssymbuf1->count;
7950 ssymbuf1++;
7951 count1 = 0;
7952 while (lo < hi)
7953 {
7954 mid = (lo + hi) / 2;
cb33740c 7955 if (shndx1 < ssymbuf1[mid].st_shndx)
4d269e42 7956 hi = mid;
cb33740c 7957 else if (shndx1 > ssymbuf1[mid].st_shndx)
4d269e42
AM
7958 lo = mid + 1;
7959 else
7960 {
7961 count1 = ssymbuf1[mid].count;
7962 ssymbuf1 += mid;
7963 break;
7964 }
7965 }
7966
7967 lo = 0;
7968 hi = ssymbuf2->count;
7969 ssymbuf2++;
7970 count2 = 0;
7971 while (lo < hi)
7972 {
7973 mid = (lo + hi) / 2;
cb33740c 7974 if (shndx2 < ssymbuf2[mid].st_shndx)
4d269e42 7975 hi = mid;
cb33740c 7976 else if (shndx2 > ssymbuf2[mid].st_shndx)
4d269e42
AM
7977 lo = mid + 1;
7978 else
7979 {
7980 count2 = ssymbuf2[mid].count;
7981 ssymbuf2 += mid;
7982 break;
7983 }
7984 }
7985
7986 if (count1 == 0 || count2 == 0 || count1 != count2)
7987 goto done;
7988
ca4be51c
AM
7989 symtable1
7990 = (struct elf_symbol *) bfd_malloc (count1 * sizeof (*symtable1));
7991 symtable2
7992 = (struct elf_symbol *) bfd_malloc (count2 * sizeof (*symtable2));
4d269e42
AM
7993 if (symtable1 == NULL || symtable2 == NULL)
7994 goto done;
7995
7996 symp = symtable1;
7997 for (ssym = ssymbuf1->ssym, ssymend = ssym + count1;
7998 ssym < ssymend; ssym++, symp++)
7999 {
8000 symp->u.ssym = ssym;
8001 symp->name = bfd_elf_string_from_elf_section (bfd1,
8002 hdr1->sh_link,
8003 ssym->st_name);
8004 }
8005
8006 symp = symtable2;
8007 for (ssym = ssymbuf2->ssym, ssymend = ssym + count2;
8008 ssym < ssymend; ssym++, symp++)
8009 {
8010 symp->u.ssym = ssym;
8011 symp->name = bfd_elf_string_from_elf_section (bfd2,
8012 hdr2->sh_link,
8013 ssym->st_name);
8014 }
8015
8016 /* Sort symbol by name. */
8017 qsort (symtable1, count1, sizeof (struct elf_symbol),
8018 elf_sym_name_compare);
8019 qsort (symtable2, count1, sizeof (struct elf_symbol),
8020 elf_sym_name_compare);
8021
8022 for (i = 0; i < count1; i++)
8023 /* Two symbols must have the same binding, type and name. */
8024 if (symtable1 [i].u.ssym->st_info != symtable2 [i].u.ssym->st_info
8025 || symtable1 [i].u.ssym->st_other != symtable2 [i].u.ssym->st_other
8026 || strcmp (symtable1 [i].name, symtable2 [i].name) != 0)
8027 goto done;
8028
8029 result = TRUE;
8030 goto done;
8031 }
8032
a50b1753
NC
8033 symtable1 = (struct elf_symbol *)
8034 bfd_malloc (symcount1 * sizeof (struct elf_symbol));
8035 symtable2 = (struct elf_symbol *)
8036 bfd_malloc (symcount2 * sizeof (struct elf_symbol));
4d269e42
AM
8037 if (symtable1 == NULL || symtable2 == NULL)
8038 goto done;
8039
8040 /* Count definitions in the section. */
8041 count1 = 0;
8042 for (isym = isymbuf1, isymend = isym + symcount1; isym < isymend; isym++)
cb33740c 8043 if (isym->st_shndx == shndx1)
4d269e42
AM
8044 symtable1[count1++].u.isym = isym;
8045
8046 count2 = 0;
8047 for (isym = isymbuf2, isymend = isym + symcount2; isym < isymend; isym++)
cb33740c 8048 if (isym->st_shndx == shndx2)
4d269e42
AM
8049 symtable2[count2++].u.isym = isym;
8050
8051 if (count1 == 0 || count2 == 0 || count1 != count2)
8052 goto done;
8053
8054 for (i = 0; i < count1; i++)
8055 symtable1[i].name
8056 = bfd_elf_string_from_elf_section (bfd1, hdr1->sh_link,
8057 symtable1[i].u.isym->st_name);
8058
8059 for (i = 0; i < count2; i++)
8060 symtable2[i].name
8061 = bfd_elf_string_from_elf_section (bfd2, hdr2->sh_link,
8062 symtable2[i].u.isym->st_name);
8063
8064 /* Sort symbol by name. */
8065 qsort (symtable1, count1, sizeof (struct elf_symbol),
8066 elf_sym_name_compare);
8067 qsort (symtable2, count1, sizeof (struct elf_symbol),
8068 elf_sym_name_compare);
8069
8070 for (i = 0; i < count1; i++)
8071 /* Two symbols must have the same binding, type and name. */
8072 if (symtable1 [i].u.isym->st_info != symtable2 [i].u.isym->st_info
8073 || symtable1 [i].u.isym->st_other != symtable2 [i].u.isym->st_other
8074 || strcmp (symtable1 [i].name, symtable2 [i].name) != 0)
8075 goto done;
8076
8077 result = TRUE;
8078
8079done:
8080 if (symtable1)
8081 free (symtable1);
8082 if (symtable2)
8083 free (symtable2);
8084 if (isymbuf1)
8085 free (isymbuf1);
8086 if (isymbuf2)
8087 free (isymbuf2);
8088
8089 return result;
8090}
8091
8092/* Return TRUE if 2 section types are compatible. */
8093
8094bfd_boolean
8095_bfd_elf_match_sections_by_type (bfd *abfd, const asection *asec,
8096 bfd *bbfd, const asection *bsec)
8097{
8098 if (asec == NULL
8099 || bsec == NULL
8100 || abfd->xvec->flavour != bfd_target_elf_flavour
8101 || bbfd->xvec->flavour != bfd_target_elf_flavour)
8102 return TRUE;
8103
8104 return elf_section_type (asec) == elf_section_type (bsec);
8105}
8106\f
c152c796
AM
8107/* Final phase of ELF linker. */
8108
8109/* A structure we use to avoid passing large numbers of arguments. */
8110
8111struct elf_final_link_info
8112{
8113 /* General link information. */
8114 struct bfd_link_info *info;
8115 /* Output BFD. */
8116 bfd *output_bfd;
8117 /* Symbol string table. */
ef10c3ac 8118 struct elf_strtab_hash *symstrtab;
c152c796
AM
8119 /* .hash section. */
8120 asection *hash_sec;
8121 /* symbol version section (.gnu.version). */
8122 asection *symver_sec;
8123 /* Buffer large enough to hold contents of any section. */
8124 bfd_byte *contents;
8125 /* Buffer large enough to hold external relocs of any section. */
8126 void *external_relocs;
8127 /* Buffer large enough to hold internal relocs of any section. */
8128 Elf_Internal_Rela *internal_relocs;
8129 /* Buffer large enough to hold external local symbols of any input
8130 BFD. */
8131 bfd_byte *external_syms;
8132 /* And a buffer for symbol section indices. */
8133 Elf_External_Sym_Shndx *locsym_shndx;
8134 /* Buffer large enough to hold internal local symbols of any input
8135 BFD. */
8136 Elf_Internal_Sym *internal_syms;
8137 /* Array large enough to hold a symbol index for each local symbol
8138 of any input BFD. */
8139 long *indices;
8140 /* Array large enough to hold a section pointer for each local
8141 symbol of any input BFD. */
8142 asection **sections;
ef10c3ac 8143 /* Buffer for SHT_SYMTAB_SHNDX section. */
c152c796 8144 Elf_External_Sym_Shndx *symshndxbuf;
ffbc01cc
AM
8145 /* Number of STT_FILE syms seen. */
8146 size_t filesym_count;
c152c796
AM
8147};
8148
8149/* This struct is used to pass information to elf_link_output_extsym. */
8150
8151struct elf_outext_info
8152{
8153 bfd_boolean failed;
8154 bfd_boolean localsyms;
34a79995 8155 bfd_boolean file_sym_done;
8b127cbc 8156 struct elf_final_link_info *flinfo;
c152c796
AM
8157};
8158
d9352518
DB
8159
8160/* Support for evaluating a complex relocation.
8161
8162 Complex relocations are generalized, self-describing relocations. The
8163 implementation of them consists of two parts: complex symbols, and the
a0c8462f 8164 relocations themselves.
d9352518
DB
8165
8166 The relocations are use a reserved elf-wide relocation type code (R_RELC
8167 external / BFD_RELOC_RELC internal) and an encoding of relocation field
8168 information (start bit, end bit, word width, etc) into the addend. This
8169 information is extracted from CGEN-generated operand tables within gas.
8170
8171 Complex symbols are mangled symbols (BSF_RELC external / STT_RELC
8172 internal) representing prefix-notation expressions, including but not
8173 limited to those sorts of expressions normally encoded as addends in the
8174 addend field. The symbol mangling format is:
8175
8176 <node> := <literal>
07d6d2b8
AM
8177 | <unary-operator> ':' <node>
8178 | <binary-operator> ':' <node> ':' <node>
d9352518
DB
8179 ;
8180
8181 <literal> := 's' <digits=N> ':' <N character symbol name>
07d6d2b8 8182 | 'S' <digits=N> ':' <N character section name>
d9352518
DB
8183 | '#' <hexdigits>
8184 ;
8185
8186 <binary-operator> := as in C
8187 <unary-operator> := as in C, plus "0-" for unambiguous negation. */
8188
8189static void
a0c8462f
AM
8190set_symbol_value (bfd *bfd_with_globals,
8191 Elf_Internal_Sym *isymbuf,
8192 size_t locsymcount,
8193 size_t symidx,
8194 bfd_vma val)
d9352518 8195{
8977835c
AM
8196 struct elf_link_hash_entry **sym_hashes;
8197 struct elf_link_hash_entry *h;
8198 size_t extsymoff = locsymcount;
d9352518 8199
8977835c 8200 if (symidx < locsymcount)
d9352518 8201 {
8977835c
AM
8202 Elf_Internal_Sym *sym;
8203
8204 sym = isymbuf + symidx;
8205 if (ELF_ST_BIND (sym->st_info) == STB_LOCAL)
8206 {
8207 /* It is a local symbol: move it to the
8208 "absolute" section and give it a value. */
8209 sym->st_shndx = SHN_ABS;
8210 sym->st_value = val;
8211 return;
8212 }
8213 BFD_ASSERT (elf_bad_symtab (bfd_with_globals));
8214 extsymoff = 0;
d9352518 8215 }
8977835c
AM
8216
8217 /* It is a global symbol: set its link type
8218 to "defined" and give it a value. */
8219
8220 sym_hashes = elf_sym_hashes (bfd_with_globals);
8221 h = sym_hashes [symidx - extsymoff];
8222 while (h->root.type == bfd_link_hash_indirect
8223 || h->root.type == bfd_link_hash_warning)
8224 h = (struct elf_link_hash_entry *) h->root.u.i.link;
8225 h->root.type = bfd_link_hash_defined;
8226 h->root.u.def.value = val;
8227 h->root.u.def.section = bfd_abs_section_ptr;
d9352518
DB
8228}
8229
a0c8462f
AM
8230static bfd_boolean
8231resolve_symbol (const char *name,
8232 bfd *input_bfd,
8b127cbc 8233 struct elf_final_link_info *flinfo,
a0c8462f
AM
8234 bfd_vma *result,
8235 Elf_Internal_Sym *isymbuf,
8236 size_t locsymcount)
d9352518 8237{
a0c8462f
AM
8238 Elf_Internal_Sym *sym;
8239 struct bfd_link_hash_entry *global_entry;
8240 const char *candidate = NULL;
8241 Elf_Internal_Shdr *symtab_hdr;
8242 size_t i;
8243
d9352518
DB
8244 symtab_hdr = & elf_tdata (input_bfd)->symtab_hdr;
8245
8246 for (i = 0; i < locsymcount; ++ i)
8247 {
8977835c 8248 sym = isymbuf + i;
d9352518
DB
8249
8250 if (ELF_ST_BIND (sym->st_info) != STB_LOCAL)
8251 continue;
8252
8253 candidate = bfd_elf_string_from_elf_section (input_bfd,
8254 symtab_hdr->sh_link,
8255 sym->st_name);
8256#ifdef DEBUG
0f02bbd9
AM
8257 printf ("Comparing string: '%s' vs. '%s' = 0x%lx\n",
8258 name, candidate, (unsigned long) sym->st_value);
d9352518
DB
8259#endif
8260 if (candidate && strcmp (candidate, name) == 0)
8261 {
8b127cbc 8262 asection *sec = flinfo->sections [i];
d9352518 8263
0f02bbd9
AM
8264 *result = _bfd_elf_rel_local_sym (input_bfd, sym, &sec, 0);
8265 *result += sec->output_offset + sec->output_section->vma;
d9352518 8266#ifdef DEBUG
0f02bbd9
AM
8267 printf ("Found symbol with value %8.8lx\n",
8268 (unsigned long) *result);
d9352518
DB
8269#endif
8270 return TRUE;
8271 }
8272 }
8273
8274 /* Hmm, haven't found it yet. perhaps it is a global. */
8b127cbc 8275 global_entry = bfd_link_hash_lookup (flinfo->info->hash, name,
a0c8462f 8276 FALSE, FALSE, TRUE);
d9352518
DB
8277 if (!global_entry)
8278 return FALSE;
a0c8462f 8279
d9352518
DB
8280 if (global_entry->type == bfd_link_hash_defined
8281 || global_entry->type == bfd_link_hash_defweak)
8282 {
a0c8462f
AM
8283 *result = (global_entry->u.def.value
8284 + global_entry->u.def.section->output_section->vma
8285 + global_entry->u.def.section->output_offset);
d9352518 8286#ifdef DEBUG
0f02bbd9
AM
8287 printf ("Found GLOBAL symbol '%s' with value %8.8lx\n",
8288 global_entry->root.string, (unsigned long) *result);
d9352518
DB
8289#endif
8290 return TRUE;
a0c8462f 8291 }
d9352518 8292
d9352518
DB
8293 return FALSE;
8294}
8295
37b01f6a
DG
8296/* Looks up NAME in SECTIONS. If found sets RESULT to NAME's address (in
8297 bytes) and returns TRUE, otherwise returns FALSE. Accepts pseudo-section
8298 names like "foo.end" which is the end address of section "foo". */
07d6d2b8 8299
d9352518 8300static bfd_boolean
a0c8462f
AM
8301resolve_section (const char *name,
8302 asection *sections,
37b01f6a
DG
8303 bfd_vma *result,
8304 bfd * abfd)
d9352518 8305{
a0c8462f
AM
8306 asection *curr;
8307 unsigned int len;
d9352518 8308
a0c8462f 8309 for (curr = sections; curr; curr = curr->next)
d9352518
DB
8310 if (strcmp (curr->name, name) == 0)
8311 {
8312 *result = curr->vma;
8313 return TRUE;
8314 }
8315
8316 /* Hmm. still haven't found it. try pseudo-section names. */
37b01f6a 8317 /* FIXME: This could be coded more efficiently... */
a0c8462f 8318 for (curr = sections; curr; curr = curr->next)
d9352518
DB
8319 {
8320 len = strlen (curr->name);
a0c8462f 8321 if (len > strlen (name))
d9352518
DB
8322 continue;
8323
8324 if (strncmp (curr->name, name, len) == 0)
8325 {
8326 if (strncmp (".end", name + len, 4) == 0)
8327 {
37b01f6a 8328 *result = curr->vma + curr->size / bfd_octets_per_byte (abfd);
d9352518
DB
8329 return TRUE;
8330 }
8331
8332 /* Insert more pseudo-section names here, if you like. */
8333 }
8334 }
a0c8462f 8335
d9352518
DB
8336 return FALSE;
8337}
8338
8339static void
a0c8462f 8340undefined_reference (const char *reftype, const char *name)
d9352518 8341{
695344c0 8342 /* xgettext:c-format */
a0c8462f
AM
8343 _bfd_error_handler (_("undefined %s reference in complex symbol: %s"),
8344 reftype, name);
d9352518
DB
8345}
8346
8347static bfd_boolean
a0c8462f
AM
8348eval_symbol (bfd_vma *result,
8349 const char **symp,
8350 bfd *input_bfd,
8b127cbc 8351 struct elf_final_link_info *flinfo,
a0c8462f
AM
8352 bfd_vma dot,
8353 Elf_Internal_Sym *isymbuf,
8354 size_t locsymcount,
8355 int signed_p)
d9352518 8356{
4b93929b
NC
8357 size_t len;
8358 size_t symlen;
a0c8462f
AM
8359 bfd_vma a;
8360 bfd_vma b;
4b93929b 8361 char symbuf[4096];
0f02bbd9 8362 const char *sym = *symp;
a0c8462f
AM
8363 const char *symend;
8364 bfd_boolean symbol_is_section = FALSE;
d9352518
DB
8365
8366 len = strlen (sym);
8367 symend = sym + len;
8368
4b93929b 8369 if (len < 1 || len > sizeof (symbuf))
d9352518
DB
8370 {
8371 bfd_set_error (bfd_error_invalid_operation);
8372 return FALSE;
8373 }
a0c8462f 8374
d9352518
DB
8375 switch (* sym)
8376 {
8377 case '.':
0f02bbd9
AM
8378 *result = dot;
8379 *symp = sym + 1;
d9352518
DB
8380 return TRUE;
8381
8382 case '#':
0f02bbd9
AM
8383 ++sym;
8384 *result = strtoul (sym, (char **) symp, 16);
d9352518
DB
8385 return TRUE;
8386
8387 case 'S':
8388 symbol_is_section = TRUE;
1a0670f3 8389 /* Fall through. */
a0c8462f 8390 case 's':
0f02bbd9
AM
8391 ++sym;
8392 symlen = strtol (sym, (char **) symp, 10);
8393 sym = *symp + 1; /* Skip the trailing ':'. */
d9352518 8394
4b93929b 8395 if (symend < sym || symlen + 1 > sizeof (symbuf))
d9352518
DB
8396 {
8397 bfd_set_error (bfd_error_invalid_operation);
8398 return FALSE;
8399 }
8400
8401 memcpy (symbuf, sym, symlen);
a0c8462f 8402 symbuf[symlen] = '\0';
0f02bbd9 8403 *symp = sym + symlen;
a0c8462f
AM
8404
8405 /* Is it always possible, with complex symbols, that gas "mis-guessed"
d9352518
DB
8406 the symbol as a section, or vice-versa. so we're pretty liberal in our
8407 interpretation here; section means "try section first", not "must be a
8408 section", and likewise with symbol. */
8409
a0c8462f 8410 if (symbol_is_section)
d9352518 8411 {
37b01f6a 8412 if (!resolve_section (symbuf, flinfo->output_bfd->sections, result, input_bfd)
8b127cbc 8413 && !resolve_symbol (symbuf, input_bfd, flinfo, result,
8977835c 8414 isymbuf, locsymcount))
d9352518
DB
8415 {
8416 undefined_reference ("section", symbuf);
8417 return FALSE;
8418 }
a0c8462f
AM
8419 }
8420 else
d9352518 8421 {
8b127cbc 8422 if (!resolve_symbol (symbuf, input_bfd, flinfo, result,
8977835c 8423 isymbuf, locsymcount)
8b127cbc 8424 && !resolve_section (symbuf, flinfo->output_bfd->sections,
37b01f6a 8425 result, input_bfd))
d9352518
DB
8426 {
8427 undefined_reference ("symbol", symbuf);
8428 return FALSE;
8429 }
8430 }
8431
8432 return TRUE;
a0c8462f 8433
d9352518
DB
8434 /* All that remains are operators. */
8435
8436#define UNARY_OP(op) \
8437 if (strncmp (sym, #op, strlen (#op)) == 0) \
8438 { \
8439 sym += strlen (#op); \
a0c8462f
AM
8440 if (*sym == ':') \
8441 ++sym; \
0f02bbd9 8442 *symp = sym; \
8b127cbc 8443 if (!eval_symbol (&a, symp, input_bfd, flinfo, dot, \
0f02bbd9 8444 isymbuf, locsymcount, signed_p)) \
a0c8462f
AM
8445 return FALSE; \
8446 if (signed_p) \
0f02bbd9 8447 *result = op ((bfd_signed_vma) a); \
a0c8462f
AM
8448 else \
8449 *result = op a; \
d9352518
DB
8450 return TRUE; \
8451 }
8452
8453#define BINARY_OP(op) \
8454 if (strncmp (sym, #op, strlen (#op)) == 0) \
8455 { \
8456 sym += strlen (#op); \
a0c8462f
AM
8457 if (*sym == ':') \
8458 ++sym; \
0f02bbd9 8459 *symp = sym; \
8b127cbc 8460 if (!eval_symbol (&a, symp, input_bfd, flinfo, dot, \
0f02bbd9 8461 isymbuf, locsymcount, signed_p)) \
a0c8462f 8462 return FALSE; \
0f02bbd9 8463 ++*symp; \
8b127cbc 8464 if (!eval_symbol (&b, symp, input_bfd, flinfo, dot, \
0f02bbd9 8465 isymbuf, locsymcount, signed_p)) \
a0c8462f
AM
8466 return FALSE; \
8467 if (signed_p) \
0f02bbd9 8468 *result = ((bfd_signed_vma) a) op ((bfd_signed_vma) b); \
a0c8462f
AM
8469 else \
8470 *result = a op b; \
d9352518
DB
8471 return TRUE; \
8472 }
8473
8474 default:
8475 UNARY_OP (0-);
8476 BINARY_OP (<<);
8477 BINARY_OP (>>);
8478 BINARY_OP (==);
8479 BINARY_OP (!=);
8480 BINARY_OP (<=);
8481 BINARY_OP (>=);
8482 BINARY_OP (&&);
8483 BINARY_OP (||);
8484 UNARY_OP (~);
8485 UNARY_OP (!);
8486 BINARY_OP (*);
8487 BINARY_OP (/);
8488 BINARY_OP (%);
8489 BINARY_OP (^);
8490 BINARY_OP (|);
8491 BINARY_OP (&);
8492 BINARY_OP (+);
8493 BINARY_OP (-);
8494 BINARY_OP (<);
8495 BINARY_OP (>);
8496#undef UNARY_OP
8497#undef BINARY_OP
8498 _bfd_error_handler (_("unknown operator '%c' in complex symbol"), * sym);
8499 bfd_set_error (bfd_error_invalid_operation);
8500 return FALSE;
8501 }
8502}
8503
d9352518 8504static void
a0c8462f
AM
8505put_value (bfd_vma size,
8506 unsigned long chunksz,
8507 bfd *input_bfd,
8508 bfd_vma x,
8509 bfd_byte *location)
d9352518
DB
8510{
8511 location += (size - chunksz);
8512
41cd1ad1 8513 for (; size; size -= chunksz, location -= chunksz)
d9352518
DB
8514 {
8515 switch (chunksz)
8516 {
d9352518
DB
8517 case 1:
8518 bfd_put_8 (input_bfd, x, location);
41cd1ad1 8519 x >>= 8;
d9352518
DB
8520 break;
8521 case 2:
8522 bfd_put_16 (input_bfd, x, location);
41cd1ad1 8523 x >>= 16;
d9352518
DB
8524 break;
8525 case 4:
8526 bfd_put_32 (input_bfd, x, location);
65164438
NC
8527 /* Computed this way because x >>= 32 is undefined if x is a 32-bit value. */
8528 x >>= 16;
8529 x >>= 16;
d9352518 8530 break;
d9352518 8531#ifdef BFD64
41cd1ad1 8532 case 8:
d9352518 8533 bfd_put_64 (input_bfd, x, location);
41cd1ad1
NC
8534 /* Computed this way because x >>= 64 is undefined if x is a 64-bit value. */
8535 x >>= 32;
8536 x >>= 32;
8537 break;
d9352518 8538#endif
41cd1ad1
NC
8539 default:
8540 abort ();
d9352518
DB
8541 break;
8542 }
8543 }
8544}
8545
a0c8462f
AM
8546static bfd_vma
8547get_value (bfd_vma size,
8548 unsigned long chunksz,
8549 bfd *input_bfd,
8550 bfd_byte *location)
d9352518 8551{
9b239e0e 8552 int shift;
d9352518
DB
8553 bfd_vma x = 0;
8554
9b239e0e
NC
8555 /* Sanity checks. */
8556 BFD_ASSERT (chunksz <= sizeof (x)
8557 && size >= chunksz
8558 && chunksz != 0
8559 && (size % chunksz) == 0
8560 && input_bfd != NULL
8561 && location != NULL);
8562
8563 if (chunksz == sizeof (x))
8564 {
8565 BFD_ASSERT (size == chunksz);
8566
8567 /* Make sure that we do not perform an undefined shift operation.
8568 We know that size == chunksz so there will only be one iteration
8569 of the loop below. */
8570 shift = 0;
8571 }
8572 else
8573 shift = 8 * chunksz;
8574
a0c8462f 8575 for (; size; size -= chunksz, location += chunksz)
d9352518
DB
8576 {
8577 switch (chunksz)
8578 {
d9352518 8579 case 1:
9b239e0e 8580 x = (x << shift) | bfd_get_8 (input_bfd, location);
d9352518
DB
8581 break;
8582 case 2:
9b239e0e 8583 x = (x << shift) | bfd_get_16 (input_bfd, location);
d9352518
DB
8584 break;
8585 case 4:
9b239e0e 8586 x = (x << shift) | bfd_get_32 (input_bfd, location);
d9352518 8587 break;
d9352518 8588#ifdef BFD64
9b239e0e
NC
8589 case 8:
8590 x = (x << shift) | bfd_get_64 (input_bfd, location);
d9352518 8591 break;
9b239e0e
NC
8592#endif
8593 default:
8594 abort ();
d9352518
DB
8595 }
8596 }
8597 return x;
8598}
8599
a0c8462f
AM
8600static void
8601decode_complex_addend (unsigned long *start, /* in bits */
8602 unsigned long *oplen, /* in bits */
8603 unsigned long *len, /* in bits */
8604 unsigned long *wordsz, /* in bytes */
8605 unsigned long *chunksz, /* in bytes */
8606 unsigned long *lsb0_p,
8607 unsigned long *signed_p,
8608 unsigned long *trunc_p,
8609 unsigned long encoded)
d9352518 8610{
07d6d2b8
AM
8611 * start = encoded & 0x3F;
8612 * len = (encoded >> 6) & 0x3F;
d9352518
DB
8613 * oplen = (encoded >> 12) & 0x3F;
8614 * wordsz = (encoded >> 18) & 0xF;
8615 * chunksz = (encoded >> 22) & 0xF;
8616 * lsb0_p = (encoded >> 27) & 1;
8617 * signed_p = (encoded >> 28) & 1;
8618 * trunc_p = (encoded >> 29) & 1;
8619}
8620
cdfeee4f 8621bfd_reloc_status_type
0f02bbd9 8622bfd_elf_perform_complex_relocation (bfd *input_bfd,
cdfeee4f 8623 asection *input_section ATTRIBUTE_UNUSED,
0f02bbd9
AM
8624 bfd_byte *contents,
8625 Elf_Internal_Rela *rel,
8626 bfd_vma relocation)
d9352518 8627{
0f02bbd9
AM
8628 bfd_vma shift, x, mask;
8629 unsigned long start, oplen, len, wordsz, chunksz, lsb0_p, signed_p, trunc_p;
cdfeee4f 8630 bfd_reloc_status_type r;
d9352518
DB
8631
8632 /* Perform this reloc, since it is complex.
8633 (this is not to say that it necessarily refers to a complex
8634 symbol; merely that it is a self-describing CGEN based reloc.
8635 i.e. the addend has the complete reloc information (bit start, end,
a0c8462f 8636 word size, etc) encoded within it.). */
d9352518 8637
a0c8462f
AM
8638 decode_complex_addend (&start, &oplen, &len, &wordsz,
8639 &chunksz, &lsb0_p, &signed_p,
8640 &trunc_p, rel->r_addend);
d9352518
DB
8641
8642 mask = (((1L << (len - 1)) - 1) << 1) | 1;
8643
8644 if (lsb0_p)
8645 shift = (start + 1) - len;
8646 else
8647 shift = (8 * wordsz) - (start + len);
8648
37b01f6a
DG
8649 x = get_value (wordsz, chunksz, input_bfd,
8650 contents + rel->r_offset * bfd_octets_per_byte (input_bfd));
d9352518
DB
8651
8652#ifdef DEBUG
8653 printf ("Doing complex reloc: "
8654 "lsb0? %ld, signed? %ld, trunc? %ld, wordsz %ld, "
8655 "chunksz %ld, start %ld, len %ld, oplen %ld\n"
8656 " dest: %8.8lx, mask: %8.8lx, reloc: %8.8lx\n",
8657 lsb0_p, signed_p, trunc_p, wordsz, chunksz, start, len,
9ccb8af9
AM
8658 oplen, (unsigned long) x, (unsigned long) mask,
8659 (unsigned long) relocation);
d9352518
DB
8660#endif
8661
cdfeee4f 8662 r = bfd_reloc_ok;
d9352518 8663 if (! trunc_p)
cdfeee4f
AM
8664 /* Now do an overflow check. */
8665 r = bfd_check_overflow ((signed_p
8666 ? complain_overflow_signed
8667 : complain_overflow_unsigned),
8668 len, 0, (8 * wordsz),
8669 relocation);
a0c8462f 8670
d9352518
DB
8671 /* Do the deed. */
8672 x = (x & ~(mask << shift)) | ((relocation & mask) << shift);
8673
8674#ifdef DEBUG
8675 printf (" relocation: %8.8lx\n"
8676 " shifted mask: %8.8lx\n"
8677 " shifted/masked reloc: %8.8lx\n"
8678 " result: %8.8lx\n",
9ccb8af9
AM
8679 (unsigned long) relocation, (unsigned long) (mask << shift),
8680 (unsigned long) ((relocation & mask) << shift), (unsigned long) x);
d9352518 8681#endif
37b01f6a
DG
8682 put_value (wordsz, chunksz, input_bfd, x,
8683 contents + rel->r_offset * bfd_octets_per_byte (input_bfd));
cdfeee4f 8684 return r;
d9352518
DB
8685}
8686
0e287786
AM
8687/* Functions to read r_offset from external (target order) reloc
8688 entry. Faster than bfd_getl32 et al, because we let the compiler
8689 know the value is aligned. */
53df40a4 8690
0e287786
AM
8691static bfd_vma
8692ext32l_r_offset (const void *p)
53df40a4
AM
8693{
8694 union aligned32
8695 {
8696 uint32_t v;
8697 unsigned char c[4];
8698 };
8699 const union aligned32 *a
0e287786 8700 = (const union aligned32 *) &((const Elf32_External_Rel *) p)->r_offset;
53df40a4
AM
8701
8702 uint32_t aval = ( (uint32_t) a->c[0]
8703 | (uint32_t) a->c[1] << 8
8704 | (uint32_t) a->c[2] << 16
8705 | (uint32_t) a->c[3] << 24);
0e287786 8706 return aval;
53df40a4
AM
8707}
8708
0e287786
AM
8709static bfd_vma
8710ext32b_r_offset (const void *p)
53df40a4
AM
8711{
8712 union aligned32
8713 {
8714 uint32_t v;
8715 unsigned char c[4];
8716 };
8717 const union aligned32 *a
0e287786 8718 = (const union aligned32 *) &((const Elf32_External_Rel *) p)->r_offset;
53df40a4
AM
8719
8720 uint32_t aval = ( (uint32_t) a->c[0] << 24
8721 | (uint32_t) a->c[1] << 16
8722 | (uint32_t) a->c[2] << 8
8723 | (uint32_t) a->c[3]);
0e287786 8724 return aval;
53df40a4
AM
8725}
8726
8727#ifdef BFD_HOST_64_BIT
0e287786
AM
8728static bfd_vma
8729ext64l_r_offset (const void *p)
53df40a4
AM
8730{
8731 union aligned64
8732 {
8733 uint64_t v;
8734 unsigned char c[8];
8735 };
8736 const union aligned64 *a
0e287786 8737 = (const union aligned64 *) &((const Elf64_External_Rel *) p)->r_offset;
53df40a4
AM
8738
8739 uint64_t aval = ( (uint64_t) a->c[0]
8740 | (uint64_t) a->c[1] << 8
8741 | (uint64_t) a->c[2] << 16
8742 | (uint64_t) a->c[3] << 24
8743 | (uint64_t) a->c[4] << 32
8744 | (uint64_t) a->c[5] << 40
8745 | (uint64_t) a->c[6] << 48
8746 | (uint64_t) a->c[7] << 56);
0e287786 8747 return aval;
53df40a4
AM
8748}
8749
0e287786
AM
8750static bfd_vma
8751ext64b_r_offset (const void *p)
53df40a4
AM
8752{
8753 union aligned64
8754 {
8755 uint64_t v;
8756 unsigned char c[8];
8757 };
8758 const union aligned64 *a
0e287786 8759 = (const union aligned64 *) &((const Elf64_External_Rel *) p)->r_offset;
53df40a4
AM
8760
8761 uint64_t aval = ( (uint64_t) a->c[0] << 56
8762 | (uint64_t) a->c[1] << 48
8763 | (uint64_t) a->c[2] << 40
8764 | (uint64_t) a->c[3] << 32
8765 | (uint64_t) a->c[4] << 24
8766 | (uint64_t) a->c[5] << 16
8767 | (uint64_t) a->c[6] << 8
8768 | (uint64_t) a->c[7]);
0e287786 8769 return aval;
53df40a4
AM
8770}
8771#endif
8772
c152c796
AM
8773/* When performing a relocatable link, the input relocations are
8774 preserved. But, if they reference global symbols, the indices
d4730f92
BS
8775 referenced must be updated. Update all the relocations found in
8776 RELDATA. */
c152c796 8777
bca6d0e3 8778static bfd_boolean
c152c796 8779elf_link_adjust_relocs (bfd *abfd,
9eaff861 8780 asection *sec,
28dbcedc 8781 struct bfd_elf_section_reloc_data *reldata,
10bbbc1d
NC
8782 bfd_boolean sort,
8783 struct bfd_link_info *info)
c152c796
AM
8784{
8785 unsigned int i;
8786 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
8787 bfd_byte *erela;
8788 void (*swap_in) (bfd *, const bfd_byte *, Elf_Internal_Rela *);
8789 void (*swap_out) (bfd *, const Elf_Internal_Rela *, bfd_byte *);
8790 bfd_vma r_type_mask;
8791 int r_sym_shift;
d4730f92
BS
8792 unsigned int count = reldata->count;
8793 struct elf_link_hash_entry **rel_hash = reldata->hashes;
c152c796 8794
d4730f92 8795 if (reldata->hdr->sh_entsize == bed->s->sizeof_rel)
c152c796
AM
8796 {
8797 swap_in = bed->s->swap_reloc_in;
8798 swap_out = bed->s->swap_reloc_out;
8799 }
d4730f92 8800 else if (reldata->hdr->sh_entsize == bed->s->sizeof_rela)
c152c796
AM
8801 {
8802 swap_in = bed->s->swap_reloca_in;
8803 swap_out = bed->s->swap_reloca_out;
8804 }
8805 else
8806 abort ();
8807
8808 if (bed->s->int_rels_per_ext_rel > MAX_INT_RELS_PER_EXT_REL)
8809 abort ();
8810
8811 if (bed->s->arch_size == 32)
8812 {
8813 r_type_mask = 0xff;
8814 r_sym_shift = 8;
8815 }
8816 else
8817 {
8818 r_type_mask = 0xffffffff;
8819 r_sym_shift = 32;
8820 }
8821
d4730f92
BS
8822 erela = reldata->hdr->contents;
8823 for (i = 0; i < count; i++, rel_hash++, erela += reldata->hdr->sh_entsize)
c152c796
AM
8824 {
8825 Elf_Internal_Rela irela[MAX_INT_RELS_PER_EXT_REL];
8826 unsigned int j;
8827
8828 if (*rel_hash == NULL)
8829 continue;
8830
10bbbc1d
NC
8831 if ((*rel_hash)->indx == -2
8832 && info->gc_sections
8833 && ! info->gc_keep_exported)
8834 {
8835 /* PR 21524: Let the user know if a symbol was removed by garbage collection. */
9793eb77 8836 _bfd_error_handler (_("%pB:%pA: error: relocation references symbol %s which was removed by garbage collection"),
10bbbc1d
NC
8837 abfd, sec,
8838 (*rel_hash)->root.root.string);
9793eb77 8839 _bfd_error_handler (_("%pB:%pA: error: try relinking with --gc-keep-exported enabled"),
d42c267e 8840 abfd, sec);
10bbbc1d
NC
8841 bfd_set_error (bfd_error_invalid_operation);
8842 return FALSE;
8843 }
c152c796
AM
8844 BFD_ASSERT ((*rel_hash)->indx >= 0);
8845
8846 (*swap_in) (abfd, erela, irela);
8847 for (j = 0; j < bed->s->int_rels_per_ext_rel; j++)
8848 irela[j].r_info = ((bfd_vma) (*rel_hash)->indx << r_sym_shift
8849 | (irela[j].r_info & r_type_mask));
8850 (*swap_out) (abfd, irela, erela);
8851 }
53df40a4 8852
9eaff861
AO
8853 if (bed->elf_backend_update_relocs)
8854 (*bed->elf_backend_update_relocs) (sec, reldata);
8855
0e287786 8856 if (sort && count != 0)
53df40a4 8857 {
0e287786
AM
8858 bfd_vma (*ext_r_off) (const void *);
8859 bfd_vma r_off;
8860 size_t elt_size;
8861 bfd_byte *base, *end, *p, *loc;
bca6d0e3 8862 bfd_byte *buf = NULL;
28dbcedc
AM
8863
8864 if (bed->s->arch_size == 32)
8865 {
8866 if (abfd->xvec->header_byteorder == BFD_ENDIAN_LITTLE)
0e287786 8867 ext_r_off = ext32l_r_offset;
28dbcedc 8868 else if (abfd->xvec->header_byteorder == BFD_ENDIAN_BIG)
0e287786 8869 ext_r_off = ext32b_r_offset;
28dbcedc
AM
8870 else
8871 abort ();
8872 }
53df40a4 8873 else
28dbcedc 8874 {
53df40a4 8875#ifdef BFD_HOST_64_BIT
28dbcedc 8876 if (abfd->xvec->header_byteorder == BFD_ENDIAN_LITTLE)
0e287786 8877 ext_r_off = ext64l_r_offset;
28dbcedc 8878 else if (abfd->xvec->header_byteorder == BFD_ENDIAN_BIG)
0e287786 8879 ext_r_off = ext64b_r_offset;
28dbcedc 8880 else
53df40a4 8881#endif
28dbcedc
AM
8882 abort ();
8883 }
0e287786 8884
bca6d0e3
AM
8885 /* Must use a stable sort here. A modified insertion sort,
8886 since the relocs are mostly sorted already. */
0e287786
AM
8887 elt_size = reldata->hdr->sh_entsize;
8888 base = reldata->hdr->contents;
8889 end = base + count * elt_size;
bca6d0e3 8890 if (elt_size > sizeof (Elf64_External_Rela))
0e287786
AM
8891 abort ();
8892
8893 /* Ensure the first element is lowest. This acts as a sentinel,
8894 speeding the main loop below. */
8895 r_off = (*ext_r_off) (base);
8896 for (p = loc = base; (p += elt_size) < end; )
8897 {
8898 bfd_vma r_off2 = (*ext_r_off) (p);
8899 if (r_off > r_off2)
8900 {
8901 r_off = r_off2;
8902 loc = p;
8903 }
8904 }
8905 if (loc != base)
8906 {
8907 /* Don't just swap *base and *loc as that changes the order
8908 of the original base[0] and base[1] if they happen to
8909 have the same r_offset. */
bca6d0e3
AM
8910 bfd_byte onebuf[sizeof (Elf64_External_Rela)];
8911 memcpy (onebuf, loc, elt_size);
0e287786 8912 memmove (base + elt_size, base, loc - base);
bca6d0e3 8913 memcpy (base, onebuf, elt_size);
0e287786
AM
8914 }
8915
b29b8669 8916 for (p = base + elt_size; (p += elt_size) < end; )
0e287786
AM
8917 {
8918 /* base to p is sorted, *p is next to insert. */
8919 r_off = (*ext_r_off) (p);
8920 /* Search the sorted region for location to insert. */
8921 loc = p - elt_size;
8922 while (r_off < (*ext_r_off) (loc))
8923 loc -= elt_size;
8924 loc += elt_size;
8925 if (loc != p)
8926 {
bca6d0e3
AM
8927 /* Chances are there is a run of relocs to insert here,
8928 from one of more input files. Files are not always
8929 linked in order due to the way elf_link_input_bfd is
8930 called. See pr17666. */
8931 size_t sortlen = p - loc;
8932 bfd_vma r_off2 = (*ext_r_off) (loc);
8933 size_t runlen = elt_size;
8934 size_t buf_size = 96 * 1024;
8935 while (p + runlen < end
8936 && (sortlen <= buf_size
8937 || runlen + elt_size <= buf_size)
8938 && r_off2 > (*ext_r_off) (p + runlen))
8939 runlen += elt_size;
8940 if (buf == NULL)
8941 {
8942 buf = bfd_malloc (buf_size);
8943 if (buf == NULL)
8944 return FALSE;
8945 }
8946 if (runlen < sortlen)
8947 {
8948 memcpy (buf, p, runlen);
8949 memmove (loc + runlen, loc, sortlen);
8950 memcpy (loc, buf, runlen);
8951 }
8952 else
8953 {
8954 memcpy (buf, loc, sortlen);
8955 memmove (loc, p, runlen);
8956 memcpy (loc + runlen, buf, sortlen);
8957 }
b29b8669 8958 p += runlen - elt_size;
0e287786
AM
8959 }
8960 }
8961 /* Hashes are no longer valid. */
28dbcedc
AM
8962 free (reldata->hashes);
8963 reldata->hashes = NULL;
bca6d0e3 8964 free (buf);
53df40a4 8965 }
bca6d0e3 8966 return TRUE;
c152c796
AM
8967}
8968
8969struct elf_link_sort_rela
8970{
8971 union {
8972 bfd_vma offset;
8973 bfd_vma sym_mask;
8974 } u;
8975 enum elf_reloc_type_class type;
8976 /* We use this as an array of size int_rels_per_ext_rel. */
8977 Elf_Internal_Rela rela[1];
8978};
8979
8980static int
8981elf_link_sort_cmp1 (const void *A, const void *B)
8982{
a50b1753
NC
8983 const struct elf_link_sort_rela *a = (const struct elf_link_sort_rela *) A;
8984 const struct elf_link_sort_rela *b = (const struct elf_link_sort_rela *) B;
c152c796
AM
8985 int relativea, relativeb;
8986
8987 relativea = a->type == reloc_class_relative;
8988 relativeb = b->type == reloc_class_relative;
8989
8990 if (relativea < relativeb)
8991 return 1;
8992 if (relativea > relativeb)
8993 return -1;
8994 if ((a->rela->r_info & a->u.sym_mask) < (b->rela->r_info & b->u.sym_mask))
8995 return -1;
8996 if ((a->rela->r_info & a->u.sym_mask) > (b->rela->r_info & b->u.sym_mask))
8997 return 1;
8998 if (a->rela->r_offset < b->rela->r_offset)
8999 return -1;
9000 if (a->rela->r_offset > b->rela->r_offset)
9001 return 1;
9002 return 0;
9003}
9004
9005static int
9006elf_link_sort_cmp2 (const void *A, const void *B)
9007{
a50b1753
NC
9008 const struct elf_link_sort_rela *a = (const struct elf_link_sort_rela *) A;
9009 const struct elf_link_sort_rela *b = (const struct elf_link_sort_rela *) B;
c152c796 9010
7e612e98 9011 if (a->type < b->type)
c152c796 9012 return -1;
7e612e98 9013 if (a->type > b->type)
c152c796 9014 return 1;
7e612e98 9015 if (a->u.offset < b->u.offset)
c152c796 9016 return -1;
7e612e98 9017 if (a->u.offset > b->u.offset)
c152c796
AM
9018 return 1;
9019 if (a->rela->r_offset < b->rela->r_offset)
9020 return -1;
9021 if (a->rela->r_offset > b->rela->r_offset)
9022 return 1;
9023 return 0;
9024}
9025
9026static size_t
9027elf_link_sort_relocs (bfd *abfd, struct bfd_link_info *info, asection **psec)
9028{
3410fea8 9029 asection *dynamic_relocs;
fc66a176
L
9030 asection *rela_dyn;
9031 asection *rel_dyn;
c152c796
AM
9032 bfd_size_type count, size;
9033 size_t i, ret, sort_elt, ext_size;
9034 bfd_byte *sort, *s_non_relative, *p;
9035 struct elf_link_sort_rela *sq;
9036 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
9037 int i2e = bed->s->int_rels_per_ext_rel;
c8e44c6d 9038 unsigned int opb = bfd_octets_per_byte (abfd);
c152c796
AM
9039 void (*swap_in) (bfd *, const bfd_byte *, Elf_Internal_Rela *);
9040 void (*swap_out) (bfd *, const Elf_Internal_Rela *, bfd_byte *);
9041 struct bfd_link_order *lo;
9042 bfd_vma r_sym_mask;
3410fea8 9043 bfd_boolean use_rela;
c152c796 9044
3410fea8
NC
9045 /* Find a dynamic reloc section. */
9046 rela_dyn = bfd_get_section_by_name (abfd, ".rela.dyn");
9047 rel_dyn = bfd_get_section_by_name (abfd, ".rel.dyn");
9048 if (rela_dyn != NULL && rela_dyn->size > 0
9049 && rel_dyn != NULL && rel_dyn->size > 0)
c152c796 9050 {
3410fea8
NC
9051 bfd_boolean use_rela_initialised = FALSE;
9052
9053 /* This is just here to stop gcc from complaining.
c8e44c6d 9054 Its initialization checking code is not perfect. */
3410fea8
NC
9055 use_rela = TRUE;
9056
9057 /* Both sections are present. Examine the sizes
9058 of the indirect sections to help us choose. */
9059 for (lo = rela_dyn->map_head.link_order; lo != NULL; lo = lo->next)
9060 if (lo->type == bfd_indirect_link_order)
9061 {
9062 asection *o = lo->u.indirect.section;
9063
9064 if ((o->size % bed->s->sizeof_rela) == 0)
9065 {
9066 if ((o->size % bed->s->sizeof_rel) == 0)
9067 /* Section size is divisible by both rel and rela sizes.
9068 It is of no help to us. */
9069 ;
9070 else
9071 {
9072 /* Section size is only divisible by rela. */
535b785f 9073 if (use_rela_initialised && !use_rela)
3410fea8 9074 {
9793eb77 9075 _bfd_error_handler (_("%pB: unable to sort relocs - "
c8e44c6d
AM
9076 "they are in more than one size"),
9077 abfd);
3410fea8
NC
9078 bfd_set_error (bfd_error_invalid_operation);
9079 return 0;
9080 }
9081 else
9082 {
9083 use_rela = TRUE;
9084 use_rela_initialised = TRUE;
9085 }
9086 }
9087 }
9088 else if ((o->size % bed->s->sizeof_rel) == 0)
9089 {
9090 /* Section size is only divisible by rel. */
535b785f 9091 if (use_rela_initialised && use_rela)
3410fea8 9092 {
9793eb77 9093 _bfd_error_handler (_("%pB: unable to sort relocs - "
c8e44c6d
AM
9094 "they are in more than one size"),
9095 abfd);
3410fea8
NC
9096 bfd_set_error (bfd_error_invalid_operation);
9097 return 0;
9098 }
9099 else
9100 {
9101 use_rela = FALSE;
9102 use_rela_initialised = TRUE;
9103 }
9104 }
9105 else
9106 {
c8e44c6d
AM
9107 /* The section size is not divisible by either -
9108 something is wrong. */
9793eb77 9109 _bfd_error_handler (_("%pB: unable to sort relocs - "
c8e44c6d 9110 "they are of an unknown size"), abfd);
3410fea8
NC
9111 bfd_set_error (bfd_error_invalid_operation);
9112 return 0;
9113 }
9114 }
9115
9116 for (lo = rel_dyn->map_head.link_order; lo != NULL; lo = lo->next)
9117 if (lo->type == bfd_indirect_link_order)
9118 {
9119 asection *o = lo->u.indirect.section;
9120
9121 if ((o->size % bed->s->sizeof_rela) == 0)
9122 {
9123 if ((o->size % bed->s->sizeof_rel) == 0)
9124 /* Section size is divisible by both rel and rela sizes.
9125 It is of no help to us. */
9126 ;
9127 else
9128 {
9129 /* Section size is only divisible by rela. */
535b785f 9130 if (use_rela_initialised && !use_rela)
3410fea8 9131 {
9793eb77 9132 _bfd_error_handler (_("%pB: unable to sort relocs - "
c8e44c6d
AM
9133 "they are in more than one size"),
9134 abfd);
3410fea8
NC
9135 bfd_set_error (bfd_error_invalid_operation);
9136 return 0;
9137 }
9138 else
9139 {
9140 use_rela = TRUE;
9141 use_rela_initialised = TRUE;
9142 }
9143 }
9144 }
9145 else if ((o->size % bed->s->sizeof_rel) == 0)
9146 {
9147 /* Section size is only divisible by rel. */
535b785f 9148 if (use_rela_initialised && use_rela)
3410fea8 9149 {
9793eb77 9150 _bfd_error_handler (_("%pB: unable to sort relocs - "
c8e44c6d
AM
9151 "they are in more than one size"),
9152 abfd);
3410fea8
NC
9153 bfd_set_error (bfd_error_invalid_operation);
9154 return 0;
9155 }
9156 else
9157 {
9158 use_rela = FALSE;
9159 use_rela_initialised = TRUE;
9160 }
9161 }
9162 else
9163 {
c8e44c6d
AM
9164 /* The section size is not divisible by either -
9165 something is wrong. */
9793eb77 9166 _bfd_error_handler (_("%pB: unable to sort relocs - "
c8e44c6d 9167 "they are of an unknown size"), abfd);
3410fea8
NC
9168 bfd_set_error (bfd_error_invalid_operation);
9169 return 0;
9170 }
9171 }
9172
9173 if (! use_rela_initialised)
9174 /* Make a guess. */
9175 use_rela = TRUE;
c152c796 9176 }
fc66a176
L
9177 else if (rela_dyn != NULL && rela_dyn->size > 0)
9178 use_rela = TRUE;
9179 else if (rel_dyn != NULL && rel_dyn->size > 0)
3410fea8 9180 use_rela = FALSE;
c152c796 9181 else
fc66a176 9182 return 0;
3410fea8
NC
9183
9184 if (use_rela)
c152c796 9185 {
3410fea8 9186 dynamic_relocs = rela_dyn;
c152c796
AM
9187 ext_size = bed->s->sizeof_rela;
9188 swap_in = bed->s->swap_reloca_in;
9189 swap_out = bed->s->swap_reloca_out;
9190 }
3410fea8
NC
9191 else
9192 {
9193 dynamic_relocs = rel_dyn;
9194 ext_size = bed->s->sizeof_rel;
9195 swap_in = bed->s->swap_reloc_in;
9196 swap_out = bed->s->swap_reloc_out;
9197 }
c152c796
AM
9198
9199 size = 0;
3410fea8 9200 for (lo = dynamic_relocs->map_head.link_order; lo != NULL; lo = lo->next)
c152c796 9201 if (lo->type == bfd_indirect_link_order)
3410fea8 9202 size += lo->u.indirect.section->size;
c152c796 9203
3410fea8 9204 if (size != dynamic_relocs->size)
c152c796
AM
9205 return 0;
9206
9207 sort_elt = (sizeof (struct elf_link_sort_rela)
9208 + (i2e - 1) * sizeof (Elf_Internal_Rela));
3410fea8
NC
9209
9210 count = dynamic_relocs->size / ext_size;
5e486aa1
NC
9211 if (count == 0)
9212 return 0;
a50b1753 9213 sort = (bfd_byte *) bfd_zmalloc (sort_elt * count);
3410fea8 9214
c152c796
AM
9215 if (sort == NULL)
9216 {
9217 (*info->callbacks->warning)
9793eb77 9218 (info, _("not enough memory to sort relocations"), 0, abfd, 0, 0);
c152c796
AM
9219 return 0;
9220 }
9221
9222 if (bed->s->arch_size == 32)
9223 r_sym_mask = ~(bfd_vma) 0xff;
9224 else
9225 r_sym_mask = ~(bfd_vma) 0xffffffff;
9226
3410fea8 9227 for (lo = dynamic_relocs->map_head.link_order; lo != NULL; lo = lo->next)
c152c796
AM
9228 if (lo->type == bfd_indirect_link_order)
9229 {
9230 bfd_byte *erel, *erelend;
9231 asection *o = lo->u.indirect.section;
9232
1da212d6
AM
9233 if (o->contents == NULL && o->size != 0)
9234 {
9235 /* This is a reloc section that is being handled as a normal
9236 section. See bfd_section_from_shdr. We can't combine
9237 relocs in this case. */
9238 free (sort);
9239 return 0;
9240 }
c152c796 9241 erel = o->contents;
eea6121a 9242 erelend = o->contents + o->size;
c8e44c6d 9243 p = sort + o->output_offset * opb / ext_size * sort_elt;
3410fea8 9244
c152c796
AM
9245 while (erel < erelend)
9246 {
9247 struct elf_link_sort_rela *s = (struct elf_link_sort_rela *) p;
3410fea8 9248
c152c796 9249 (*swap_in) (abfd, erel, s->rela);
7e612e98 9250 s->type = (*bed->elf_backend_reloc_type_class) (info, o, s->rela);
c152c796
AM
9251 s->u.sym_mask = r_sym_mask;
9252 p += sort_elt;
9253 erel += ext_size;
9254 }
9255 }
9256
9257 qsort (sort, count, sort_elt, elf_link_sort_cmp1);
9258
9259 for (i = 0, p = sort; i < count; i++, p += sort_elt)
9260 {
9261 struct elf_link_sort_rela *s = (struct elf_link_sort_rela *) p;
9262 if (s->type != reloc_class_relative)
9263 break;
9264 }
9265 ret = i;
9266 s_non_relative = p;
9267
9268 sq = (struct elf_link_sort_rela *) s_non_relative;
9269 for (; i < count; i++, p += sort_elt)
9270 {
9271 struct elf_link_sort_rela *sp = (struct elf_link_sort_rela *) p;
9272 if (((sp->rela->r_info ^ sq->rela->r_info) & r_sym_mask) != 0)
9273 sq = sp;
9274 sp->u.offset = sq->rela->r_offset;
9275 }
9276
9277 qsort (s_non_relative, count - ret, sort_elt, elf_link_sort_cmp2);
9278
c8e44c6d
AM
9279 struct elf_link_hash_table *htab = elf_hash_table (info);
9280 if (htab->srelplt && htab->srelplt->output_section == dynamic_relocs)
9281 {
9282 /* We have plt relocs in .rela.dyn. */
9283 sq = (struct elf_link_sort_rela *) sort;
9284 for (i = 0; i < count; i++)
9285 if (sq[count - i - 1].type != reloc_class_plt)
9286 break;
9287 if (i != 0 && htab->srelplt->size == i * ext_size)
9288 {
9289 struct bfd_link_order **plo;
9290 /* Put srelplt link_order last. This is so the output_offset
9291 set in the next loop is correct for DT_JMPREL. */
9292 for (plo = &dynamic_relocs->map_head.link_order; *plo != NULL; )
9293 if ((*plo)->type == bfd_indirect_link_order
9294 && (*plo)->u.indirect.section == htab->srelplt)
9295 {
9296 lo = *plo;
9297 *plo = lo->next;
9298 }
9299 else
9300 plo = &(*plo)->next;
9301 *plo = lo;
9302 lo->next = NULL;
9303 dynamic_relocs->map_tail.link_order = lo;
9304 }
9305 }
9306
9307 p = sort;
3410fea8 9308 for (lo = dynamic_relocs->map_head.link_order; lo != NULL; lo = lo->next)
c152c796
AM
9309 if (lo->type == bfd_indirect_link_order)
9310 {
9311 bfd_byte *erel, *erelend;
9312 asection *o = lo->u.indirect.section;
9313
9314 erel = o->contents;
eea6121a 9315 erelend = o->contents + o->size;
c8e44c6d 9316 o->output_offset = (p - sort) / sort_elt * ext_size / opb;
c152c796
AM
9317 while (erel < erelend)
9318 {
9319 struct elf_link_sort_rela *s = (struct elf_link_sort_rela *) p;
9320 (*swap_out) (abfd, s->rela, erel);
9321 p += sort_elt;
9322 erel += ext_size;
9323 }
9324 }
9325
9326 free (sort);
3410fea8 9327 *psec = dynamic_relocs;
c152c796
AM
9328 return ret;
9329}
9330
ef10c3ac 9331/* Add a symbol to the output symbol string table. */
c152c796 9332
6e0b88f1 9333static int
ef10c3ac
L
9334elf_link_output_symstrtab (struct elf_final_link_info *flinfo,
9335 const char *name,
9336 Elf_Internal_Sym *elfsym,
9337 asection *input_sec,
9338 struct elf_link_hash_entry *h)
c152c796 9339{
6e0b88f1 9340 int (*output_symbol_hook)
c152c796
AM
9341 (struct bfd_link_info *, const char *, Elf_Internal_Sym *, asection *,
9342 struct elf_link_hash_entry *);
ef10c3ac 9343 struct elf_link_hash_table *hash_table;
c152c796 9344 const struct elf_backend_data *bed;
ef10c3ac 9345 bfd_size_type strtabsize;
c152c796 9346
8539e4e8
AM
9347 BFD_ASSERT (elf_onesymtab (flinfo->output_bfd));
9348
8b127cbc 9349 bed = get_elf_backend_data (flinfo->output_bfd);
c152c796
AM
9350 output_symbol_hook = bed->elf_backend_link_output_symbol_hook;
9351 if (output_symbol_hook != NULL)
9352 {
8b127cbc 9353 int ret = (*output_symbol_hook) (flinfo->info, name, elfsym, input_sec, h);
6e0b88f1
AM
9354 if (ret != 1)
9355 return ret;
c152c796
AM
9356 }
9357
ef10c3ac
L
9358 if (name == NULL
9359 || *name == '\0'
9360 || (input_sec->flags & SEC_EXCLUDE))
9361 elfsym->st_name = (unsigned long) -1;
c152c796
AM
9362 else
9363 {
ef10c3ac
L
9364 /* Call _bfd_elf_strtab_offset after _bfd_elf_strtab_finalize
9365 to get the final offset for st_name. */
9366 elfsym->st_name
9367 = (unsigned long) _bfd_elf_strtab_add (flinfo->symstrtab,
9368 name, FALSE);
c152c796 9369 if (elfsym->st_name == (unsigned long) -1)
6e0b88f1 9370 return 0;
c152c796
AM
9371 }
9372
ef10c3ac
L
9373 hash_table = elf_hash_table (flinfo->info);
9374 strtabsize = hash_table->strtabsize;
9375 if (strtabsize <= hash_table->strtabcount)
c152c796 9376 {
ef10c3ac
L
9377 strtabsize += strtabsize;
9378 hash_table->strtabsize = strtabsize;
9379 strtabsize *= sizeof (*hash_table->strtab);
9380 hash_table->strtab
9381 = (struct elf_sym_strtab *) bfd_realloc (hash_table->strtab,
9382 strtabsize);
9383 if (hash_table->strtab == NULL)
6e0b88f1 9384 return 0;
c152c796 9385 }
ef10c3ac
L
9386 hash_table->strtab[hash_table->strtabcount].sym = *elfsym;
9387 hash_table->strtab[hash_table->strtabcount].dest_index
9388 = hash_table->strtabcount;
9389 hash_table->strtab[hash_table->strtabcount].destshndx_index
9390 = flinfo->symshndxbuf ? bfd_get_symcount (flinfo->output_bfd) : 0;
9391
9392 bfd_get_symcount (flinfo->output_bfd) += 1;
9393 hash_table->strtabcount += 1;
9394
9395 return 1;
9396}
9397
9398/* Swap symbols out to the symbol table and flush the output symbols to
9399 the file. */
9400
9401static bfd_boolean
9402elf_link_swap_symbols_out (struct elf_final_link_info *flinfo)
9403{
9404 struct elf_link_hash_table *hash_table = elf_hash_table (flinfo->info);
ef53be89
AM
9405 bfd_size_type amt;
9406 size_t i;
ef10c3ac
L
9407 const struct elf_backend_data *bed;
9408 bfd_byte *symbuf;
9409 Elf_Internal_Shdr *hdr;
9410 file_ptr pos;
9411 bfd_boolean ret;
9412
9413 if (!hash_table->strtabcount)
9414 return TRUE;
9415
9416 BFD_ASSERT (elf_onesymtab (flinfo->output_bfd));
9417
9418 bed = get_elf_backend_data (flinfo->output_bfd);
c152c796 9419
ef10c3ac
L
9420 amt = bed->s->sizeof_sym * hash_table->strtabcount;
9421 symbuf = (bfd_byte *) bfd_malloc (amt);
9422 if (symbuf == NULL)
9423 return FALSE;
1b786873 9424
ef10c3ac 9425 if (flinfo->symshndxbuf)
c152c796 9426 {
ef53be89
AM
9427 amt = sizeof (Elf_External_Sym_Shndx);
9428 amt *= bfd_get_symcount (flinfo->output_bfd);
ef10c3ac
L
9429 flinfo->symshndxbuf = (Elf_External_Sym_Shndx *) bfd_zmalloc (amt);
9430 if (flinfo->symshndxbuf == NULL)
c152c796 9431 {
ef10c3ac
L
9432 free (symbuf);
9433 return FALSE;
c152c796 9434 }
c152c796
AM
9435 }
9436
ef10c3ac
L
9437 for (i = 0; i < hash_table->strtabcount; i++)
9438 {
9439 struct elf_sym_strtab *elfsym = &hash_table->strtab[i];
9440 if (elfsym->sym.st_name == (unsigned long) -1)
9441 elfsym->sym.st_name = 0;
9442 else
9443 elfsym->sym.st_name
9444 = (unsigned long) _bfd_elf_strtab_offset (flinfo->symstrtab,
9445 elfsym->sym.st_name);
9446 bed->s->swap_symbol_out (flinfo->output_bfd, &elfsym->sym,
9447 ((bfd_byte *) symbuf
9448 + (elfsym->dest_index
9449 * bed->s->sizeof_sym)),
9450 (flinfo->symshndxbuf
9451 + elfsym->destshndx_index));
9452 }
9453
9454 hdr = &elf_tdata (flinfo->output_bfd)->symtab_hdr;
9455 pos = hdr->sh_offset + hdr->sh_size;
9456 amt = hash_table->strtabcount * bed->s->sizeof_sym;
9457 if (bfd_seek (flinfo->output_bfd, pos, SEEK_SET) == 0
9458 && bfd_bwrite (symbuf, amt, flinfo->output_bfd) == amt)
9459 {
9460 hdr->sh_size += amt;
9461 ret = TRUE;
9462 }
9463 else
9464 ret = FALSE;
c152c796 9465
ef10c3ac
L
9466 free (symbuf);
9467
9468 free (hash_table->strtab);
9469 hash_table->strtab = NULL;
9470
9471 return ret;
c152c796
AM
9472}
9473
c0d5a53d
L
9474/* Return TRUE if the dynamic symbol SYM in ABFD is supported. */
9475
9476static bfd_boolean
9477check_dynsym (bfd *abfd, Elf_Internal_Sym *sym)
9478{
4fbb74a6
AM
9479 if (sym->st_shndx >= (SHN_LORESERVE & 0xffff)
9480 && sym->st_shndx < SHN_LORESERVE)
c0d5a53d
L
9481 {
9482 /* The gABI doesn't support dynamic symbols in output sections
a0c8462f 9483 beyond 64k. */
4eca0228 9484 _bfd_error_handler
695344c0 9485 /* xgettext:c-format */
9793eb77 9486 (_("%pB: too many sections: %d (>= %d)"),
4fbb74a6 9487 abfd, bfd_count_sections (abfd), SHN_LORESERVE & 0xffff);
c0d5a53d
L
9488 bfd_set_error (bfd_error_nonrepresentable_section);
9489 return FALSE;
9490 }
9491 return TRUE;
9492}
9493
c152c796
AM
9494/* For DSOs loaded in via a DT_NEEDED entry, emulate ld.so in
9495 allowing an unsatisfied unversioned symbol in the DSO to match a
9496 versioned symbol that would normally require an explicit version.
9497 We also handle the case that a DSO references a hidden symbol
9498 which may be satisfied by a versioned symbol in another DSO. */
9499
9500static bfd_boolean
9501elf_link_check_versioned_symbol (struct bfd_link_info *info,
9502 const struct elf_backend_data *bed,
9503 struct elf_link_hash_entry *h)
9504{
9505 bfd *abfd;
9506 struct elf_link_loaded_list *loaded;
9507
9508 if (!is_elf_hash_table (info->hash))
9509 return FALSE;
9510
90c984fc
L
9511 /* Check indirect symbol. */
9512 while (h->root.type == bfd_link_hash_indirect)
9513 h = (struct elf_link_hash_entry *) h->root.u.i.link;
9514
c152c796
AM
9515 switch (h->root.type)
9516 {
9517 default:
9518 abfd = NULL;
9519 break;
9520
9521 case bfd_link_hash_undefined:
9522 case bfd_link_hash_undefweak:
9523 abfd = h->root.u.undef.abfd;
f4ab0e2d
L
9524 if (abfd == NULL
9525 || (abfd->flags & DYNAMIC) == 0
e56f61be 9526 || (elf_dyn_lib_class (abfd) & DYN_DT_NEEDED) == 0)
c152c796
AM
9527 return FALSE;
9528 break;
9529
9530 case bfd_link_hash_defined:
9531 case bfd_link_hash_defweak:
9532 abfd = h->root.u.def.section->owner;
9533 break;
9534
9535 case bfd_link_hash_common:
9536 abfd = h->root.u.c.p->section->owner;
9537 break;
9538 }
9539 BFD_ASSERT (abfd != NULL);
9540
9541 for (loaded = elf_hash_table (info)->loaded;
9542 loaded != NULL;
9543 loaded = loaded->next)
9544 {
9545 bfd *input;
9546 Elf_Internal_Shdr *hdr;
ef53be89
AM
9547 size_t symcount;
9548 size_t extsymcount;
9549 size_t extsymoff;
c152c796
AM
9550 Elf_Internal_Shdr *versymhdr;
9551 Elf_Internal_Sym *isym;
9552 Elf_Internal_Sym *isymend;
9553 Elf_Internal_Sym *isymbuf;
9554 Elf_External_Versym *ever;
9555 Elf_External_Versym *extversym;
9556
9557 input = loaded->abfd;
9558
9559 /* We check each DSO for a possible hidden versioned definition. */
9560 if (input == abfd
9561 || (input->flags & DYNAMIC) == 0
9562 || elf_dynversym (input) == 0)
9563 continue;
9564
9565 hdr = &elf_tdata (input)->dynsymtab_hdr;
9566
9567 symcount = hdr->sh_size / bed->s->sizeof_sym;
9568 if (elf_bad_symtab (input))
9569 {
9570 extsymcount = symcount;
9571 extsymoff = 0;
9572 }
9573 else
9574 {
9575 extsymcount = symcount - hdr->sh_info;
9576 extsymoff = hdr->sh_info;
9577 }
9578
9579 if (extsymcount == 0)
9580 continue;
9581
9582 isymbuf = bfd_elf_get_elf_syms (input, hdr, extsymcount, extsymoff,
9583 NULL, NULL, NULL);
9584 if (isymbuf == NULL)
9585 return FALSE;
9586
9587 /* Read in any version definitions. */
9588 versymhdr = &elf_tdata (input)->dynversym_hdr;
a50b1753 9589 extversym = (Elf_External_Versym *) bfd_malloc (versymhdr->sh_size);
c152c796
AM
9590 if (extversym == NULL)
9591 goto error_ret;
9592
9593 if (bfd_seek (input, versymhdr->sh_offset, SEEK_SET) != 0
9594 || (bfd_bread (extversym, versymhdr->sh_size, input)
9595 != versymhdr->sh_size))
9596 {
9597 free (extversym);
9598 error_ret:
9599 free (isymbuf);
9600 return FALSE;
9601 }
9602
9603 ever = extversym + extsymoff;
9604 isymend = isymbuf + extsymcount;
9605 for (isym = isymbuf; isym < isymend; isym++, ever++)
9606 {
9607 const char *name;
9608 Elf_Internal_Versym iver;
9609 unsigned short version_index;
9610
9611 if (ELF_ST_BIND (isym->st_info) == STB_LOCAL
9612 || isym->st_shndx == SHN_UNDEF)
9613 continue;
9614
9615 name = bfd_elf_string_from_elf_section (input,
9616 hdr->sh_link,
9617 isym->st_name);
9618 if (strcmp (name, h->root.root.string) != 0)
9619 continue;
9620
9621 _bfd_elf_swap_versym_in (input, ever, &iver);
9622
d023c380
L
9623 if ((iver.vs_vers & VERSYM_HIDDEN) == 0
9624 && !(h->def_regular
9625 && h->forced_local))
c152c796
AM
9626 {
9627 /* If we have a non-hidden versioned sym, then it should
d023c380
L
9628 have provided a definition for the undefined sym unless
9629 it is defined in a non-shared object and forced local.
9630 */
c152c796
AM
9631 abort ();
9632 }
9633
9634 version_index = iver.vs_vers & VERSYM_VERSION;
9635 if (version_index == 1 || version_index == 2)
9636 {
9637 /* This is the base or first version. We can use it. */
9638 free (extversym);
9639 free (isymbuf);
9640 return TRUE;
9641 }
9642 }
9643
9644 free (extversym);
9645 free (isymbuf);
9646 }
9647
9648 return FALSE;
9649}
9650
b8871f35
L
9651/* Convert ELF common symbol TYPE. */
9652
9653static int
9654elf_link_convert_common_type (struct bfd_link_info *info, int type)
9655{
9656 /* Commom symbol can only appear in relocatable link. */
9657 if (!bfd_link_relocatable (info))
9658 abort ();
9659 switch (info->elf_stt_common)
9660 {
9661 case unchanged:
9662 break;
9663 case elf_stt_common:
9664 type = STT_COMMON;
9665 break;
9666 case no_elf_stt_common:
9667 type = STT_OBJECT;
9668 break;
9669 }
9670 return type;
9671}
9672
c152c796
AM
9673/* Add an external symbol to the symbol table. This is called from
9674 the hash table traversal routine. When generating a shared object,
9675 we go through the symbol table twice. The first time we output
9676 anything that might have been forced to local scope in a version
9677 script. The second time we output the symbols that are still
9678 global symbols. */
9679
9680static bfd_boolean
7686d77d 9681elf_link_output_extsym (struct bfd_hash_entry *bh, void *data)
c152c796 9682{
7686d77d 9683 struct elf_link_hash_entry *h = (struct elf_link_hash_entry *) bh;
a50b1753 9684 struct elf_outext_info *eoinfo = (struct elf_outext_info *) data;
8b127cbc 9685 struct elf_final_link_info *flinfo = eoinfo->flinfo;
c152c796
AM
9686 bfd_boolean strip;
9687 Elf_Internal_Sym sym;
9688 asection *input_sec;
9689 const struct elf_backend_data *bed;
6e0b88f1
AM
9690 long indx;
9691 int ret;
b8871f35 9692 unsigned int type;
c152c796
AM
9693
9694 if (h->root.type == bfd_link_hash_warning)
9695 {
9696 h = (struct elf_link_hash_entry *) h->root.u.i.link;
9697 if (h->root.type == bfd_link_hash_new)
9698 return TRUE;
9699 }
9700
9701 /* Decide whether to output this symbol in this pass. */
9702 if (eoinfo->localsyms)
9703 {
4deb8f71 9704 if (!h->forced_local)
c152c796
AM
9705 return TRUE;
9706 }
9707 else
9708 {
4deb8f71 9709 if (h->forced_local)
c152c796
AM
9710 return TRUE;
9711 }
9712
8b127cbc 9713 bed = get_elf_backend_data (flinfo->output_bfd);
c152c796 9714
12ac1cf5 9715 if (h->root.type == bfd_link_hash_undefined)
c152c796 9716 {
12ac1cf5
NC
9717 /* If we have an undefined symbol reference here then it must have
9718 come from a shared library that is being linked in. (Undefined
98da7939
L
9719 references in regular files have already been handled unless
9720 they are in unreferenced sections which are removed by garbage
9721 collection). */
12ac1cf5
NC
9722 bfd_boolean ignore_undef = FALSE;
9723
9724 /* Some symbols may be special in that the fact that they're
9725 undefined can be safely ignored - let backend determine that. */
9726 if (bed->elf_backend_ignore_undef_symbol)
9727 ignore_undef = bed->elf_backend_ignore_undef_symbol (h);
9728
9729 /* If we are reporting errors for this situation then do so now. */
89a2ee5a 9730 if (!ignore_undef
12ac1cf5 9731 && h->ref_dynamic
8b127cbc
AM
9732 && (!h->ref_regular || flinfo->info->gc_sections)
9733 && !elf_link_check_versioned_symbol (flinfo->info, bed, h)
9734 && flinfo->info->unresolved_syms_in_shared_libs != RM_IGNORE)
1a72702b
AM
9735 (*flinfo->info->callbacks->undefined_symbol)
9736 (flinfo->info, h->root.root.string,
9737 h->ref_regular ? NULL : h->root.u.undef.abfd,
9738 NULL, 0,
9739 flinfo->info->unresolved_syms_in_shared_libs == RM_GENERATE_ERROR);
97196564
L
9740
9741 /* Strip a global symbol defined in a discarded section. */
9742 if (h->indx == -3)
9743 return TRUE;
c152c796
AM
9744 }
9745
9746 /* We should also warn if a forced local symbol is referenced from
9747 shared libraries. */
0e1862bb 9748 if (bfd_link_executable (flinfo->info)
f5385ebf
AM
9749 && h->forced_local
9750 && h->ref_dynamic
371a5866 9751 && h->def_regular
f5385ebf 9752 && !h->dynamic_def
ee659f1f 9753 && h->ref_dynamic_nonweak
8b127cbc 9754 && !elf_link_check_versioned_symbol (flinfo->info, bed, h))
c152c796 9755 {
17d078c5
AM
9756 bfd *def_bfd;
9757 const char *msg;
90c984fc
L
9758 struct elf_link_hash_entry *hi = h;
9759
9760 /* Check indirect symbol. */
9761 while (hi->root.type == bfd_link_hash_indirect)
9762 hi = (struct elf_link_hash_entry *) hi->root.u.i.link;
17d078c5
AM
9763
9764 if (ELF_ST_VISIBILITY (h->other) == STV_INTERNAL)
695344c0 9765 /* xgettext:c-format */
871b3ab2 9766 msg = _("%pB: internal symbol `%s' in %pB is referenced by DSO");
17d078c5 9767 else if (ELF_ST_VISIBILITY (h->other) == STV_HIDDEN)
695344c0 9768 /* xgettext:c-format */
871b3ab2 9769 msg = _("%pB: hidden symbol `%s' in %pB is referenced by DSO");
17d078c5 9770 else
695344c0 9771 /* xgettext:c-format */
871b3ab2 9772 msg = _("%pB: local symbol `%s' in %pB is referenced by DSO");
8b127cbc 9773 def_bfd = flinfo->output_bfd;
90c984fc
L
9774 if (hi->root.u.def.section != bfd_abs_section_ptr)
9775 def_bfd = hi->root.u.def.section->owner;
c08bb8dd
AM
9776 _bfd_error_handler (msg, flinfo->output_bfd,
9777 h->root.root.string, def_bfd);
17d078c5 9778 bfd_set_error (bfd_error_bad_value);
c152c796
AM
9779 eoinfo->failed = TRUE;
9780 return FALSE;
9781 }
9782
9783 /* We don't want to output symbols that have never been mentioned by
9784 a regular file, or that we have been told to strip. However, if
9785 h->indx is set to -2, the symbol is used by a reloc and we must
9786 output it. */
d983c8c5 9787 strip = FALSE;
c152c796 9788 if (h->indx == -2)
d983c8c5 9789 ;
f5385ebf 9790 else if ((h->def_dynamic
77cfaee6
AM
9791 || h->ref_dynamic
9792 || h->root.type == bfd_link_hash_new)
f5385ebf
AM
9793 && !h->def_regular
9794 && !h->ref_regular)
c152c796 9795 strip = TRUE;
8b127cbc 9796 else if (flinfo->info->strip == strip_all)
c152c796 9797 strip = TRUE;
8b127cbc
AM
9798 else if (flinfo->info->strip == strip_some
9799 && bfd_hash_lookup (flinfo->info->keep_hash,
c152c796
AM
9800 h->root.root.string, FALSE, FALSE) == NULL)
9801 strip = TRUE;
d56d55e7
AM
9802 else if ((h->root.type == bfd_link_hash_defined
9803 || h->root.type == bfd_link_hash_defweak)
8b127cbc 9804 && ((flinfo->info->strip_discarded
dbaa2011 9805 && discarded_section (h->root.u.def.section))
ca4be51c
AM
9806 || ((h->root.u.def.section->flags & SEC_LINKER_CREATED) == 0
9807 && h->root.u.def.section->owner != NULL
d56d55e7 9808 && (h->root.u.def.section->owner->flags & BFD_PLUGIN) != 0)))
c152c796 9809 strip = TRUE;
9e2278f5
AM
9810 else if ((h->root.type == bfd_link_hash_undefined
9811 || h->root.type == bfd_link_hash_undefweak)
9812 && h->root.u.undef.abfd != NULL
9813 && (h->root.u.undef.abfd->flags & BFD_PLUGIN) != 0)
9814 strip = TRUE;
c152c796 9815
b8871f35
L
9816 type = h->type;
9817
c152c796 9818 /* If we're stripping it, and it's not a dynamic symbol, there's
d983c8c5
AM
9819 nothing else to do. However, if it is a forced local symbol or
9820 an ifunc symbol we need to give the backend finish_dynamic_symbol
9821 function a chance to make it dynamic. */
c152c796
AM
9822 if (strip
9823 && h->dynindx == -1
b8871f35 9824 && type != STT_GNU_IFUNC
f5385ebf 9825 && !h->forced_local)
c152c796
AM
9826 return TRUE;
9827
9828 sym.st_value = 0;
9829 sym.st_size = h->size;
9830 sym.st_other = h->other;
c152c796
AM
9831 switch (h->root.type)
9832 {
9833 default:
9834 case bfd_link_hash_new:
9835 case bfd_link_hash_warning:
9836 abort ();
9837 return FALSE;
9838
9839 case bfd_link_hash_undefined:
9840 case bfd_link_hash_undefweak:
9841 input_sec = bfd_und_section_ptr;
9842 sym.st_shndx = SHN_UNDEF;
9843 break;
9844
9845 case bfd_link_hash_defined:
9846 case bfd_link_hash_defweak:
9847 {
9848 input_sec = h->root.u.def.section;
9849 if (input_sec->output_section != NULL)
9850 {
9851 sym.st_shndx =
8b127cbc 9852 _bfd_elf_section_from_bfd_section (flinfo->output_bfd,
c152c796
AM
9853 input_sec->output_section);
9854 if (sym.st_shndx == SHN_BAD)
9855 {
4eca0228 9856 _bfd_error_handler
695344c0 9857 /* xgettext:c-format */
871b3ab2 9858 (_("%pB: could not find output section %pA for input section %pA"),
8b127cbc 9859 flinfo->output_bfd, input_sec->output_section, input_sec);
17d078c5 9860 bfd_set_error (bfd_error_nonrepresentable_section);
c152c796
AM
9861 eoinfo->failed = TRUE;
9862 return FALSE;
9863 }
9864
9865 /* ELF symbols in relocatable files are section relative,
9866 but in nonrelocatable files they are virtual
9867 addresses. */
9868 sym.st_value = h->root.u.def.value + input_sec->output_offset;
0e1862bb 9869 if (!bfd_link_relocatable (flinfo->info))
c152c796
AM
9870 {
9871 sym.st_value += input_sec->output_section->vma;
9872 if (h->type == STT_TLS)
9873 {
8b127cbc 9874 asection *tls_sec = elf_hash_table (flinfo->info)->tls_sec;
430a16a5
NC
9875 if (tls_sec != NULL)
9876 sym.st_value -= tls_sec->vma;
c152c796
AM
9877 }
9878 }
9879 }
9880 else
9881 {
9882 BFD_ASSERT (input_sec->owner == NULL
9883 || (input_sec->owner->flags & DYNAMIC) != 0);
9884 sym.st_shndx = SHN_UNDEF;
9885 input_sec = bfd_und_section_ptr;
9886 }
9887 }
9888 break;
9889
9890 case bfd_link_hash_common:
9891 input_sec = h->root.u.c.p->section;
a4d8e49b 9892 sym.st_shndx = bed->common_section_index (input_sec);
c152c796
AM
9893 sym.st_value = 1 << h->root.u.c.p->alignment_power;
9894 break;
9895
9896 case bfd_link_hash_indirect:
9897 /* These symbols are created by symbol versioning. They point
9898 to the decorated version of the name. For example, if the
9899 symbol foo@@GNU_1.2 is the default, which should be used when
9900 foo is used with no version, then we add an indirect symbol
9901 foo which points to foo@@GNU_1.2. We ignore these symbols,
9902 since the indirected symbol is already in the hash table. */
9903 return TRUE;
9904 }
9905
b8871f35
L
9906 if (type == STT_COMMON || type == STT_OBJECT)
9907 switch (h->root.type)
9908 {
9909 case bfd_link_hash_common:
9910 type = elf_link_convert_common_type (flinfo->info, type);
9911 break;
9912 case bfd_link_hash_defined:
9913 case bfd_link_hash_defweak:
9914 if (bed->common_definition (&sym))
9915 type = elf_link_convert_common_type (flinfo->info, type);
9916 else
9917 type = STT_OBJECT;
9918 break;
9919 case bfd_link_hash_undefined:
9920 case bfd_link_hash_undefweak:
9921 break;
9922 default:
9923 abort ();
9924 }
9925
4deb8f71 9926 if (h->forced_local)
b8871f35
L
9927 {
9928 sym.st_info = ELF_ST_INFO (STB_LOCAL, type);
9929 /* Turn off visibility on local symbol. */
9930 sym.st_other &= ~ELF_ST_VISIBILITY (-1);
9931 }
9932 /* Set STB_GNU_UNIQUE only if symbol is defined in regular object. */
9933 else if (h->unique_global && h->def_regular)
9934 sym.st_info = ELF_ST_INFO (STB_GNU_UNIQUE, type);
9935 else if (h->root.type == bfd_link_hash_undefweak
9936 || h->root.type == bfd_link_hash_defweak)
9937 sym.st_info = ELF_ST_INFO (STB_WEAK, type);
9938 else
9939 sym.st_info = ELF_ST_INFO (STB_GLOBAL, type);
9940 sym.st_target_internal = h->target_internal;
9941
c152c796
AM
9942 /* Give the processor backend a chance to tweak the symbol value,
9943 and also to finish up anything that needs to be done for this
9944 symbol. FIXME: Not calling elf_backend_finish_dynamic_symbol for
3aa14d16 9945 forced local syms when non-shared is due to a historical quirk.
5f35ea9c 9946 STT_GNU_IFUNC symbol must go through PLT. */
3aa14d16 9947 if ((h->type == STT_GNU_IFUNC
5f35ea9c 9948 && h->def_regular
0e1862bb 9949 && !bfd_link_relocatable (flinfo->info))
3aa14d16
L
9950 || ((h->dynindx != -1
9951 || h->forced_local)
0e1862bb 9952 && ((bfd_link_pic (flinfo->info)
3aa14d16
L
9953 && (ELF_ST_VISIBILITY (h->other) == STV_DEFAULT
9954 || h->root.type != bfd_link_hash_undefweak))
9955 || !h->forced_local)
8b127cbc 9956 && elf_hash_table (flinfo->info)->dynamic_sections_created))
c152c796
AM
9957 {
9958 if (! ((*bed->elf_backend_finish_dynamic_symbol)
8b127cbc 9959 (flinfo->output_bfd, flinfo->info, h, &sym)))
c152c796
AM
9960 {
9961 eoinfo->failed = TRUE;
9962 return FALSE;
9963 }
9964 }
9965
9966 /* If we are marking the symbol as undefined, and there are no
9967 non-weak references to this symbol from a regular object, then
9968 mark the symbol as weak undefined; if there are non-weak
9969 references, mark the symbol as strong. We can't do this earlier,
9970 because it might not be marked as undefined until the
9971 finish_dynamic_symbol routine gets through with it. */
9972 if (sym.st_shndx == SHN_UNDEF
f5385ebf 9973 && h->ref_regular
c152c796
AM
9974 && (ELF_ST_BIND (sym.st_info) == STB_GLOBAL
9975 || ELF_ST_BIND (sym.st_info) == STB_WEAK))
9976 {
9977 int bindtype;
b8871f35 9978 type = ELF_ST_TYPE (sym.st_info);
2955ec4c
L
9979
9980 /* Turn an undefined IFUNC symbol into a normal FUNC symbol. */
9981 if (type == STT_GNU_IFUNC)
9982 type = STT_FUNC;
c152c796 9983
f5385ebf 9984 if (h->ref_regular_nonweak)
c152c796
AM
9985 bindtype = STB_GLOBAL;
9986 else
9987 bindtype = STB_WEAK;
2955ec4c 9988 sym.st_info = ELF_ST_INFO (bindtype, type);
c152c796
AM
9989 }
9990
bda987c2
CD
9991 /* If this is a symbol defined in a dynamic library, don't use the
9992 symbol size from the dynamic library. Relinking an executable
9993 against a new library may introduce gratuitous changes in the
9994 executable's symbols if we keep the size. */
9995 if (sym.st_shndx == SHN_UNDEF
9996 && !h->def_regular
9997 && h->def_dynamic)
9998 sym.st_size = 0;
9999
c152c796
AM
10000 /* If a non-weak symbol with non-default visibility is not defined
10001 locally, it is a fatal error. */
0e1862bb 10002 if (!bfd_link_relocatable (flinfo->info)
c152c796
AM
10003 && ELF_ST_VISIBILITY (sym.st_other) != STV_DEFAULT
10004 && ELF_ST_BIND (sym.st_info) != STB_WEAK
10005 && h->root.type == bfd_link_hash_undefined
f5385ebf 10006 && !h->def_regular)
c152c796 10007 {
17d078c5
AM
10008 const char *msg;
10009
10010 if (ELF_ST_VISIBILITY (sym.st_other) == STV_PROTECTED)
695344c0 10011 /* xgettext:c-format */
871b3ab2 10012 msg = _("%pB: protected symbol `%s' isn't defined");
17d078c5 10013 else if (ELF_ST_VISIBILITY (sym.st_other) == STV_INTERNAL)
695344c0 10014 /* xgettext:c-format */
871b3ab2 10015 msg = _("%pB: internal symbol `%s' isn't defined");
17d078c5 10016 else
695344c0 10017 /* xgettext:c-format */
871b3ab2 10018 msg = _("%pB: hidden symbol `%s' isn't defined");
4eca0228 10019 _bfd_error_handler (msg, flinfo->output_bfd, h->root.root.string);
17d078c5 10020 bfd_set_error (bfd_error_bad_value);
c152c796
AM
10021 eoinfo->failed = TRUE;
10022 return FALSE;
10023 }
10024
10025 /* If this symbol should be put in the .dynsym section, then put it
10026 there now. We already know the symbol index. We also fill in
10027 the entry in the .hash section. */
1c2649ed
EB
10028 if (h->dynindx != -1
10029 && elf_hash_table (flinfo->info)->dynamic_sections_created
10030 && elf_hash_table (flinfo->info)->dynsym != NULL
10031 && !discarded_section (elf_hash_table (flinfo->info)->dynsym))
c152c796 10032 {
c152c796
AM
10033 bfd_byte *esym;
10034
90c984fc
L
10035 /* Since there is no version information in the dynamic string,
10036 if there is no version info in symbol version section, we will
1659f720 10037 have a run-time problem if not linking executable, referenced
4deb8f71 10038 by shared library, or not bound locally. */
1659f720 10039 if (h->verinfo.verdef == NULL
0e1862bb 10040 && (!bfd_link_executable (flinfo->info)
1659f720
L
10041 || h->ref_dynamic
10042 || !h->def_regular))
90c984fc
L
10043 {
10044 char *p = strrchr (h->root.root.string, ELF_VER_CHR);
10045
10046 if (p && p [1] != '\0')
10047 {
4eca0228 10048 _bfd_error_handler
695344c0 10049 /* xgettext:c-format */
9793eb77 10050 (_("%pB: no symbol version section for versioned symbol `%s'"),
90c984fc
L
10051 flinfo->output_bfd, h->root.root.string);
10052 eoinfo->failed = TRUE;
10053 return FALSE;
10054 }
10055 }
10056
c152c796 10057 sym.st_name = h->dynstr_index;
cae1fbbb
L
10058 esym = (elf_hash_table (flinfo->info)->dynsym->contents
10059 + h->dynindx * bed->s->sizeof_sym);
8b127cbc 10060 if (!check_dynsym (flinfo->output_bfd, &sym))
c0d5a53d
L
10061 {
10062 eoinfo->failed = TRUE;
10063 return FALSE;
10064 }
8b127cbc 10065 bed->s->swap_symbol_out (flinfo->output_bfd, &sym, esym, 0);
c152c796 10066
8b127cbc 10067 if (flinfo->hash_sec != NULL)
fdc90cb4
JJ
10068 {
10069 size_t hash_entry_size;
10070 bfd_byte *bucketpos;
10071 bfd_vma chain;
41198d0c
L
10072 size_t bucketcount;
10073 size_t bucket;
10074
8b127cbc 10075 bucketcount = elf_hash_table (flinfo->info)->bucketcount;
41198d0c 10076 bucket = h->u.elf_hash_value % bucketcount;
fdc90cb4
JJ
10077
10078 hash_entry_size
8b127cbc
AM
10079 = elf_section_data (flinfo->hash_sec)->this_hdr.sh_entsize;
10080 bucketpos = ((bfd_byte *) flinfo->hash_sec->contents
fdc90cb4 10081 + (bucket + 2) * hash_entry_size);
8b127cbc
AM
10082 chain = bfd_get (8 * hash_entry_size, flinfo->output_bfd, bucketpos);
10083 bfd_put (8 * hash_entry_size, flinfo->output_bfd, h->dynindx,
10084 bucketpos);
10085 bfd_put (8 * hash_entry_size, flinfo->output_bfd, chain,
10086 ((bfd_byte *) flinfo->hash_sec->contents
fdc90cb4
JJ
10087 + (bucketcount + 2 + h->dynindx) * hash_entry_size));
10088 }
c152c796 10089
8b127cbc 10090 if (flinfo->symver_sec != NULL && flinfo->symver_sec->contents != NULL)
c152c796
AM
10091 {
10092 Elf_Internal_Versym iversym;
10093 Elf_External_Versym *eversym;
10094
f5385ebf 10095 if (!h->def_regular)
c152c796 10096 {
7b20f099
AM
10097 if (h->verinfo.verdef == NULL
10098 || (elf_dyn_lib_class (h->verinfo.verdef->vd_bfd)
10099 & (DYN_AS_NEEDED | DYN_DT_NEEDED | DYN_NO_NEEDED)))
c152c796
AM
10100 iversym.vs_vers = 0;
10101 else
10102 iversym.vs_vers = h->verinfo.verdef->vd_exp_refno + 1;
10103 }
10104 else
10105 {
10106 if (h->verinfo.vertree == NULL)
10107 iversym.vs_vers = 1;
10108 else
10109 iversym.vs_vers = h->verinfo.vertree->vernum + 1;
8b127cbc 10110 if (flinfo->info->create_default_symver)
3e3b46e5 10111 iversym.vs_vers++;
c152c796
AM
10112 }
10113
422f1182 10114 /* Turn on VERSYM_HIDDEN only if the hidden versioned symbol is
6e33951e 10115 defined locally. */
422f1182 10116 if (h->versioned == versioned_hidden && h->def_regular)
c152c796
AM
10117 iversym.vs_vers |= VERSYM_HIDDEN;
10118
8b127cbc 10119 eversym = (Elf_External_Versym *) flinfo->symver_sec->contents;
c152c796 10120 eversym += h->dynindx;
8b127cbc 10121 _bfd_elf_swap_versym_out (flinfo->output_bfd, &iversym, eversym);
c152c796
AM
10122 }
10123 }
10124
d983c8c5
AM
10125 /* If the symbol is undefined, and we didn't output it to .dynsym,
10126 strip it from .symtab too. Obviously we can't do this for
10127 relocatable output or when needed for --emit-relocs. */
10128 else if (input_sec == bfd_und_section_ptr
10129 && h->indx != -2
66cae560
NC
10130 /* PR 22319 Do not strip global undefined symbols marked as being needed. */
10131 && (h->mark != 1 || ELF_ST_BIND (sym.st_info) != STB_GLOBAL)
0e1862bb 10132 && !bfd_link_relocatable (flinfo->info))
d983c8c5 10133 return TRUE;
66cae560 10134
d983c8c5
AM
10135 /* Also strip others that we couldn't earlier due to dynamic symbol
10136 processing. */
10137 if (strip)
10138 return TRUE;
10139 if ((input_sec->flags & SEC_EXCLUDE) != 0)
c152c796
AM
10140 return TRUE;
10141
2ec55de3
AM
10142 /* Output a FILE symbol so that following locals are not associated
10143 with the wrong input file. We need one for forced local symbols
10144 if we've seen more than one FILE symbol or when we have exactly
10145 one FILE symbol but global symbols are present in a file other
10146 than the one with the FILE symbol. We also need one if linker
10147 defined symbols are present. In practice these conditions are
10148 always met, so just emit the FILE symbol unconditionally. */
10149 if (eoinfo->localsyms
10150 && !eoinfo->file_sym_done
10151 && eoinfo->flinfo->filesym_count != 0)
10152 {
10153 Elf_Internal_Sym fsym;
10154
10155 memset (&fsym, 0, sizeof (fsym));
10156 fsym.st_info = ELF_ST_INFO (STB_LOCAL, STT_FILE);
10157 fsym.st_shndx = SHN_ABS;
ef10c3ac
L
10158 if (!elf_link_output_symstrtab (eoinfo->flinfo, NULL, &fsym,
10159 bfd_und_section_ptr, NULL))
2ec55de3
AM
10160 return FALSE;
10161
10162 eoinfo->file_sym_done = TRUE;
10163 }
10164
8b127cbc 10165 indx = bfd_get_symcount (flinfo->output_bfd);
ef10c3ac
L
10166 ret = elf_link_output_symstrtab (flinfo, h->root.root.string, &sym,
10167 input_sec, h);
6e0b88f1 10168 if (ret == 0)
c152c796
AM
10169 {
10170 eoinfo->failed = TRUE;
10171 return FALSE;
10172 }
6e0b88f1
AM
10173 else if (ret == 1)
10174 h->indx = indx;
10175 else if (h->indx == -2)
10176 abort();
c152c796
AM
10177
10178 return TRUE;
10179}
10180
cdd3575c
AM
10181/* Return TRUE if special handling is done for relocs in SEC against
10182 symbols defined in discarded sections. */
10183
c152c796
AM
10184static bfd_boolean
10185elf_section_ignore_discarded_relocs (asection *sec)
10186{
10187 const struct elf_backend_data *bed;
10188
cdd3575c
AM
10189 switch (sec->sec_info_type)
10190 {
dbaa2011
AM
10191 case SEC_INFO_TYPE_STABS:
10192 case SEC_INFO_TYPE_EH_FRAME:
2f0c68f2 10193 case SEC_INFO_TYPE_EH_FRAME_ENTRY:
cdd3575c
AM
10194 return TRUE;
10195 default:
10196 break;
10197 }
c152c796
AM
10198
10199 bed = get_elf_backend_data (sec->owner);
10200 if (bed->elf_backend_ignore_discarded_relocs != NULL
10201 && (*bed->elf_backend_ignore_discarded_relocs) (sec))
10202 return TRUE;
10203
10204 return FALSE;
10205}
10206
9e66c942
AM
10207/* Return a mask saying how ld should treat relocations in SEC against
10208 symbols defined in discarded sections. If this function returns
10209 COMPLAIN set, ld will issue a warning message. If this function
10210 returns PRETEND set, and the discarded section was link-once and the
10211 same size as the kept link-once section, ld will pretend that the
10212 symbol was actually defined in the kept section. Otherwise ld will
10213 zero the reloc (at least that is the intent, but some cooperation by
10214 the target dependent code is needed, particularly for REL targets). */
10215
8a696751
AM
10216unsigned int
10217_bfd_elf_default_action_discarded (asection *sec)
cdd3575c 10218{
9e66c942 10219 if (sec->flags & SEC_DEBUGGING)
69d54b1b 10220 return PRETEND;
cdd3575c
AM
10221
10222 if (strcmp (".eh_frame", sec->name) == 0)
9e66c942 10223 return 0;
cdd3575c
AM
10224
10225 if (strcmp (".gcc_except_table", sec->name) == 0)
9e66c942 10226 return 0;
cdd3575c 10227
9e66c942 10228 return COMPLAIN | PRETEND;
cdd3575c
AM
10229}
10230
3d7f7666
L
10231/* Find a match between a section and a member of a section group. */
10232
10233static asection *
c0f00686
L
10234match_group_member (asection *sec, asection *group,
10235 struct bfd_link_info *info)
3d7f7666
L
10236{
10237 asection *first = elf_next_in_group (group);
10238 asection *s = first;
10239
10240 while (s != NULL)
10241 {
c0f00686 10242 if (bfd_elf_match_symbols_in_sections (s, sec, info))
3d7f7666
L
10243 return s;
10244
83180ade 10245 s = elf_next_in_group (s);
3d7f7666
L
10246 if (s == first)
10247 break;
10248 }
10249
10250 return NULL;
10251}
10252
01b3c8ab 10253/* Check if the kept section of a discarded section SEC can be used
c2370991
AM
10254 to replace it. Return the replacement if it is OK. Otherwise return
10255 NULL. */
01b3c8ab
L
10256
10257asection *
c0f00686 10258_bfd_elf_check_kept_section (asection *sec, struct bfd_link_info *info)
01b3c8ab
L
10259{
10260 asection *kept;
10261
10262 kept = sec->kept_section;
10263 if (kept != NULL)
10264 {
c2370991 10265 if ((kept->flags & SEC_GROUP) != 0)
c0f00686 10266 kept = match_group_member (sec, kept, info);
1dd2625f
BW
10267 if (kept != NULL
10268 && ((sec->rawsize != 0 ? sec->rawsize : sec->size)
10269 != (kept->rawsize != 0 ? kept->rawsize : kept->size)))
01b3c8ab 10270 kept = NULL;
c2370991 10271 sec->kept_section = kept;
01b3c8ab
L
10272 }
10273 return kept;
10274}
10275
c152c796
AM
10276/* Link an input file into the linker output file. This function
10277 handles all the sections and relocations of the input file at once.
10278 This is so that we only have to read the local symbols once, and
10279 don't have to keep them in memory. */
10280
10281static bfd_boolean
8b127cbc 10282elf_link_input_bfd (struct elf_final_link_info *flinfo, bfd *input_bfd)
c152c796 10283{
ece5ef60 10284 int (*relocate_section)
c152c796
AM
10285 (bfd *, struct bfd_link_info *, bfd *, asection *, bfd_byte *,
10286 Elf_Internal_Rela *, Elf_Internal_Sym *, asection **);
10287 bfd *output_bfd;
10288 Elf_Internal_Shdr *symtab_hdr;
10289 size_t locsymcount;
10290 size_t extsymoff;
10291 Elf_Internal_Sym *isymbuf;
10292 Elf_Internal_Sym *isym;
10293 Elf_Internal_Sym *isymend;
10294 long *pindex;
10295 asection **ppsection;
10296 asection *o;
10297 const struct elf_backend_data *bed;
c152c796 10298 struct elf_link_hash_entry **sym_hashes;
310fd250
L
10299 bfd_size_type address_size;
10300 bfd_vma r_type_mask;
10301 int r_sym_shift;
ffbc01cc 10302 bfd_boolean have_file_sym = FALSE;
c152c796 10303
8b127cbc 10304 output_bfd = flinfo->output_bfd;
c152c796
AM
10305 bed = get_elf_backend_data (output_bfd);
10306 relocate_section = bed->elf_backend_relocate_section;
10307
10308 /* If this is a dynamic object, we don't want to do anything here:
10309 we don't want the local symbols, and we don't want the section
10310 contents. */
10311 if ((input_bfd->flags & DYNAMIC) != 0)
10312 return TRUE;
10313
c152c796
AM
10314 symtab_hdr = &elf_tdata (input_bfd)->symtab_hdr;
10315 if (elf_bad_symtab (input_bfd))
10316 {
10317 locsymcount = symtab_hdr->sh_size / bed->s->sizeof_sym;
10318 extsymoff = 0;
10319 }
10320 else
10321 {
10322 locsymcount = symtab_hdr->sh_info;
10323 extsymoff = symtab_hdr->sh_info;
10324 }
10325
10326 /* Read the local symbols. */
10327 isymbuf = (Elf_Internal_Sym *) symtab_hdr->contents;
10328 if (isymbuf == NULL && locsymcount != 0)
10329 {
10330 isymbuf = bfd_elf_get_elf_syms (input_bfd, symtab_hdr, locsymcount, 0,
8b127cbc
AM
10331 flinfo->internal_syms,
10332 flinfo->external_syms,
10333 flinfo->locsym_shndx);
c152c796
AM
10334 if (isymbuf == NULL)
10335 return FALSE;
10336 }
10337
10338 /* Find local symbol sections and adjust values of symbols in
10339 SEC_MERGE sections. Write out those local symbols we know are
10340 going into the output file. */
10341 isymend = isymbuf + locsymcount;
8b127cbc 10342 for (isym = isymbuf, pindex = flinfo->indices, ppsection = flinfo->sections;
c152c796
AM
10343 isym < isymend;
10344 isym++, pindex++, ppsection++)
10345 {
10346 asection *isec;
10347 const char *name;
10348 Elf_Internal_Sym osym;
6e0b88f1
AM
10349 long indx;
10350 int ret;
c152c796
AM
10351
10352 *pindex = -1;
10353
10354 if (elf_bad_symtab (input_bfd))
10355 {
10356 if (ELF_ST_BIND (isym->st_info) != STB_LOCAL)
10357 {
10358 *ppsection = NULL;
10359 continue;
10360 }
10361 }
10362
10363 if (isym->st_shndx == SHN_UNDEF)
10364 isec = bfd_und_section_ptr;
c152c796
AM
10365 else if (isym->st_shndx == SHN_ABS)
10366 isec = bfd_abs_section_ptr;
10367 else if (isym->st_shndx == SHN_COMMON)
10368 isec = bfd_com_section_ptr;
10369 else
10370 {
cb33740c
AM
10371 isec = bfd_section_from_elf_index (input_bfd, isym->st_shndx);
10372 if (isec == NULL)
10373 {
10374 /* Don't attempt to output symbols with st_shnx in the
10375 reserved range other than SHN_ABS and SHN_COMMON. */
10376 *ppsection = NULL;
10377 continue;
10378 }
dbaa2011 10379 else if (isec->sec_info_type == SEC_INFO_TYPE_MERGE
cb33740c
AM
10380 && ELF_ST_TYPE (isym->st_info) != STT_SECTION)
10381 isym->st_value =
10382 _bfd_merged_section_offset (output_bfd, &isec,
10383 elf_section_data (isec)->sec_info,
10384 isym->st_value);
c152c796
AM
10385 }
10386
10387 *ppsection = isec;
10388
d983c8c5
AM
10389 /* Don't output the first, undefined, symbol. In fact, don't
10390 output any undefined local symbol. */
10391 if (isec == bfd_und_section_ptr)
c152c796
AM
10392 continue;
10393
10394 if (ELF_ST_TYPE (isym->st_info) == STT_SECTION)
10395 {
10396 /* We never output section symbols. Instead, we use the
10397 section symbol of the corresponding section in the output
10398 file. */
10399 continue;
10400 }
10401
10402 /* If we are stripping all symbols, we don't want to output this
10403 one. */
8b127cbc 10404 if (flinfo->info->strip == strip_all)
c152c796
AM
10405 continue;
10406
10407 /* If we are discarding all local symbols, we don't want to
10408 output this one. If we are generating a relocatable output
10409 file, then some of the local symbols may be required by
10410 relocs; we output them below as we discover that they are
10411 needed. */
8b127cbc 10412 if (flinfo->info->discard == discard_all)
c152c796
AM
10413 continue;
10414
10415 /* If this symbol is defined in a section which we are
f02571c5
AM
10416 discarding, we don't need to keep it. */
10417 if (isym->st_shndx != SHN_UNDEF
4fbb74a6
AM
10418 && isym->st_shndx < SHN_LORESERVE
10419 && bfd_section_removed_from_list (output_bfd,
10420 isec->output_section))
e75a280b
L
10421 continue;
10422
c152c796
AM
10423 /* Get the name of the symbol. */
10424 name = bfd_elf_string_from_elf_section (input_bfd, symtab_hdr->sh_link,
10425 isym->st_name);
10426 if (name == NULL)
10427 return FALSE;
10428
10429 /* See if we are discarding symbols with this name. */
8b127cbc
AM
10430 if ((flinfo->info->strip == strip_some
10431 && (bfd_hash_lookup (flinfo->info->keep_hash, name, FALSE, FALSE)
c152c796 10432 == NULL))
8b127cbc 10433 || (((flinfo->info->discard == discard_sec_merge
0e1862bb
L
10434 && (isec->flags & SEC_MERGE)
10435 && !bfd_link_relocatable (flinfo->info))
8b127cbc 10436 || flinfo->info->discard == discard_l)
c152c796
AM
10437 && bfd_is_local_label_name (input_bfd, name)))
10438 continue;
10439
ffbc01cc
AM
10440 if (ELF_ST_TYPE (isym->st_info) == STT_FILE)
10441 {
ce875075
AM
10442 if (input_bfd->lto_output)
10443 /* -flto puts a temp file name here. This means builds
10444 are not reproducible. Discard the symbol. */
10445 continue;
ffbc01cc
AM
10446 have_file_sym = TRUE;
10447 flinfo->filesym_count += 1;
10448 }
10449 if (!have_file_sym)
10450 {
10451 /* In the absence of debug info, bfd_find_nearest_line uses
10452 FILE symbols to determine the source file for local
10453 function symbols. Provide a FILE symbol here if input
10454 files lack such, so that their symbols won't be
10455 associated with a previous input file. It's not the
10456 source file, but the best we can do. */
10457 have_file_sym = TRUE;
10458 flinfo->filesym_count += 1;
10459 memset (&osym, 0, sizeof (osym));
10460 osym.st_info = ELF_ST_INFO (STB_LOCAL, STT_FILE);
10461 osym.st_shndx = SHN_ABS;
ef10c3ac
L
10462 if (!elf_link_output_symstrtab (flinfo,
10463 (input_bfd->lto_output ? NULL
10464 : input_bfd->filename),
10465 &osym, bfd_abs_section_ptr,
10466 NULL))
ffbc01cc
AM
10467 return FALSE;
10468 }
10469
c152c796
AM
10470 osym = *isym;
10471
10472 /* Adjust the section index for the output file. */
10473 osym.st_shndx = _bfd_elf_section_from_bfd_section (output_bfd,
10474 isec->output_section);
10475 if (osym.st_shndx == SHN_BAD)
10476 return FALSE;
10477
c152c796
AM
10478 /* ELF symbols in relocatable files are section relative, but
10479 in executable files they are virtual addresses. Note that
10480 this code assumes that all ELF sections have an associated
10481 BFD section with a reasonable value for output_offset; below
10482 we assume that they also have a reasonable value for
10483 output_section. Any special sections must be set up to meet
10484 these requirements. */
10485 osym.st_value += isec->output_offset;
0e1862bb 10486 if (!bfd_link_relocatable (flinfo->info))
c152c796
AM
10487 {
10488 osym.st_value += isec->output_section->vma;
10489 if (ELF_ST_TYPE (osym.st_info) == STT_TLS)
10490 {
10491 /* STT_TLS symbols are relative to PT_TLS segment base. */
102def4d
AM
10492 if (elf_hash_table (flinfo->info)->tls_sec != NULL)
10493 osym.st_value -= elf_hash_table (flinfo->info)->tls_sec->vma;
10494 else
10495 osym.st_info = ELF_ST_INFO (ELF_ST_BIND (osym.st_info),
10496 STT_NOTYPE);
c152c796
AM
10497 }
10498 }
10499
6e0b88f1 10500 indx = bfd_get_symcount (output_bfd);
ef10c3ac 10501 ret = elf_link_output_symstrtab (flinfo, name, &osym, isec, NULL);
6e0b88f1 10502 if (ret == 0)
c152c796 10503 return FALSE;
6e0b88f1
AM
10504 else if (ret == 1)
10505 *pindex = indx;
c152c796
AM
10506 }
10507
310fd250
L
10508 if (bed->s->arch_size == 32)
10509 {
10510 r_type_mask = 0xff;
10511 r_sym_shift = 8;
10512 address_size = 4;
10513 }
10514 else
10515 {
10516 r_type_mask = 0xffffffff;
10517 r_sym_shift = 32;
10518 address_size = 8;
10519 }
10520
c152c796
AM
10521 /* Relocate the contents of each section. */
10522 sym_hashes = elf_sym_hashes (input_bfd);
10523 for (o = input_bfd->sections; o != NULL; o = o->next)
10524 {
10525 bfd_byte *contents;
10526
10527 if (! o->linker_mark)
10528 {
10529 /* This section was omitted from the link. */
10530 continue;
10531 }
10532
7bdf4127 10533 if (!flinfo->info->resolve_section_groups
bcacc0f5
AM
10534 && (o->flags & (SEC_LINKER_CREATED | SEC_GROUP)) == SEC_GROUP)
10535 {
10536 /* Deal with the group signature symbol. */
10537 struct bfd_elf_section_data *sec_data = elf_section_data (o);
10538 unsigned long symndx = sec_data->this_hdr.sh_info;
10539 asection *osec = o->output_section;
10540
7bdf4127 10541 BFD_ASSERT (bfd_link_relocatable (flinfo->info));
bcacc0f5
AM
10542 if (symndx >= locsymcount
10543 || (elf_bad_symtab (input_bfd)
8b127cbc 10544 && flinfo->sections[symndx] == NULL))
bcacc0f5
AM
10545 {
10546 struct elf_link_hash_entry *h = sym_hashes[symndx - extsymoff];
10547 while (h->root.type == bfd_link_hash_indirect
10548 || h->root.type == bfd_link_hash_warning)
10549 h = (struct elf_link_hash_entry *) h->root.u.i.link;
10550 /* Arrange for symbol to be output. */
10551 h->indx = -2;
10552 elf_section_data (osec)->this_hdr.sh_info = -2;
10553 }
10554 else if (ELF_ST_TYPE (isymbuf[symndx].st_info) == STT_SECTION)
10555 {
10556 /* We'll use the output section target_index. */
8b127cbc 10557 asection *sec = flinfo->sections[symndx]->output_section;
bcacc0f5
AM
10558 elf_section_data (osec)->this_hdr.sh_info = sec->target_index;
10559 }
10560 else
10561 {
8b127cbc 10562 if (flinfo->indices[symndx] == -1)
bcacc0f5
AM
10563 {
10564 /* Otherwise output the local symbol now. */
10565 Elf_Internal_Sym sym = isymbuf[symndx];
8b127cbc 10566 asection *sec = flinfo->sections[symndx]->output_section;
bcacc0f5 10567 const char *name;
6e0b88f1
AM
10568 long indx;
10569 int ret;
bcacc0f5
AM
10570
10571 name = bfd_elf_string_from_elf_section (input_bfd,
10572 symtab_hdr->sh_link,
10573 sym.st_name);
10574 if (name == NULL)
10575 return FALSE;
10576
10577 sym.st_shndx = _bfd_elf_section_from_bfd_section (output_bfd,
10578 sec);
10579 if (sym.st_shndx == SHN_BAD)
10580 return FALSE;
10581
10582 sym.st_value += o->output_offset;
10583
6e0b88f1 10584 indx = bfd_get_symcount (output_bfd);
ef10c3ac
L
10585 ret = elf_link_output_symstrtab (flinfo, name, &sym, o,
10586 NULL);
6e0b88f1 10587 if (ret == 0)
bcacc0f5 10588 return FALSE;
6e0b88f1 10589 else if (ret == 1)
8b127cbc 10590 flinfo->indices[symndx] = indx;
6e0b88f1
AM
10591 else
10592 abort ();
bcacc0f5
AM
10593 }
10594 elf_section_data (osec)->this_hdr.sh_info
8b127cbc 10595 = flinfo->indices[symndx];
bcacc0f5
AM
10596 }
10597 }
10598
c152c796 10599 if ((o->flags & SEC_HAS_CONTENTS) == 0
eea6121a 10600 || (o->size == 0 && (o->flags & SEC_RELOC) == 0))
c152c796
AM
10601 continue;
10602
10603 if ((o->flags & SEC_LINKER_CREATED) != 0)
10604 {
10605 /* Section was created by _bfd_elf_link_create_dynamic_sections
10606 or somesuch. */
10607 continue;
10608 }
10609
10610 /* Get the contents of the section. They have been cached by a
10611 relaxation routine. Note that o is a section in an input
10612 file, so the contents field will not have been set by any of
10613 the routines which work on output files. */
10614 if (elf_section_data (o)->this_hdr.contents != NULL)
53291d1f
AM
10615 {
10616 contents = elf_section_data (o)->this_hdr.contents;
10617 if (bed->caches_rawsize
10618 && o->rawsize != 0
10619 && o->rawsize < o->size)
10620 {
10621 memcpy (flinfo->contents, contents, o->rawsize);
10622 contents = flinfo->contents;
10623 }
10624 }
c152c796
AM
10625 else
10626 {
8b127cbc 10627 contents = flinfo->contents;
4a114e3e 10628 if (! bfd_get_full_section_contents (input_bfd, o, &contents))
c152c796
AM
10629 return FALSE;
10630 }
10631
10632 if ((o->flags & SEC_RELOC) != 0)
10633 {
10634 Elf_Internal_Rela *internal_relocs;
0f02bbd9 10635 Elf_Internal_Rela *rel, *relend;
0f02bbd9 10636 int action_discarded;
ece5ef60 10637 int ret;
c152c796
AM
10638
10639 /* Get the swapped relocs. */
10640 internal_relocs
8b127cbc
AM
10641 = _bfd_elf_link_read_relocs (input_bfd, o, flinfo->external_relocs,
10642 flinfo->internal_relocs, FALSE);
c152c796
AM
10643 if (internal_relocs == NULL
10644 && o->reloc_count > 0)
10645 return FALSE;
10646
310fd250
L
10647 /* We need to reverse-copy input .ctors/.dtors sections if
10648 they are placed in .init_array/.finit_array for output. */
10649 if (o->size > address_size
10650 && ((strncmp (o->name, ".ctors", 6) == 0
10651 && strcmp (o->output_section->name,
10652 ".init_array") == 0)
10653 || (strncmp (o->name, ".dtors", 6) == 0
10654 && strcmp (o->output_section->name,
10655 ".fini_array") == 0))
10656 && (o->name[6] == 0 || o->name[6] == '.'))
c152c796 10657 {
056bafd4
MR
10658 if (o->size * bed->s->int_rels_per_ext_rel
10659 != o->reloc_count * address_size)
310fd250 10660 {
4eca0228 10661 _bfd_error_handler
695344c0 10662 /* xgettext:c-format */
871b3ab2 10663 (_("error: %pB: size of section %pA is not "
310fd250
L
10664 "multiple of address size"),
10665 input_bfd, o);
8c6716e5 10666 bfd_set_error (bfd_error_bad_value);
310fd250
L
10667 return FALSE;
10668 }
10669 o->flags |= SEC_ELF_REVERSE_COPY;
c152c796
AM
10670 }
10671
0f02bbd9 10672 action_discarded = -1;
c152c796 10673 if (!elf_section_ignore_discarded_relocs (o))
0f02bbd9
AM
10674 action_discarded = (*bed->action_discarded) (o);
10675
10676 /* Run through the relocs evaluating complex reloc symbols and
10677 looking for relocs against symbols from discarded sections
10678 or section symbols from removed link-once sections.
10679 Complain about relocs against discarded sections. Zero
10680 relocs against removed link-once sections. */
10681
10682 rel = internal_relocs;
056bafd4 10683 relend = rel + o->reloc_count;
0f02bbd9 10684 for ( ; rel < relend; rel++)
c152c796 10685 {
0f02bbd9
AM
10686 unsigned long r_symndx = rel->r_info >> r_sym_shift;
10687 unsigned int s_type;
10688 asection **ps, *sec;
10689 struct elf_link_hash_entry *h = NULL;
10690 const char *sym_name;
c152c796 10691
0f02bbd9
AM
10692 if (r_symndx == STN_UNDEF)
10693 continue;
c152c796 10694
0f02bbd9
AM
10695 if (r_symndx >= locsymcount
10696 || (elf_bad_symtab (input_bfd)
8b127cbc 10697 && flinfo->sections[r_symndx] == NULL))
0f02bbd9
AM
10698 {
10699 h = sym_hashes[r_symndx - extsymoff];
ee75fd95 10700
0f02bbd9
AM
10701 /* Badly formatted input files can contain relocs that
10702 reference non-existant symbols. Check here so that
10703 we do not seg fault. */
10704 if (h == NULL)
c152c796 10705 {
4eca0228 10706 _bfd_error_handler
695344c0 10707 /* xgettext:c-format */
2dcf00ce 10708 (_("error: %pB contains a reloc (%#" PRIx64 ") for section %pA "
0f02bbd9 10709 "that references a non-existent global symbol"),
2dcf00ce 10710 input_bfd, (uint64_t) rel->r_info, o);
0f02bbd9
AM
10711 bfd_set_error (bfd_error_bad_value);
10712 return FALSE;
10713 }
3b36f7e6 10714
0f02bbd9
AM
10715 while (h->root.type == bfd_link_hash_indirect
10716 || h->root.type == bfd_link_hash_warning)
10717 h = (struct elf_link_hash_entry *) h->root.u.i.link;
c152c796 10718
0f02bbd9 10719 s_type = h->type;
cdd3575c 10720
9e2dec47 10721 /* If a plugin symbol is referenced from a non-IR file,
ca4be51c
AM
10722 mark the symbol as undefined. Note that the
10723 linker may attach linker created dynamic sections
10724 to the plugin bfd. Symbols defined in linker
10725 created sections are not plugin symbols. */
bc4e12de 10726 if ((h->root.non_ir_ref_regular
4070765b 10727 || h->root.non_ir_ref_dynamic)
9e2dec47
L
10728 && (h->root.type == bfd_link_hash_defined
10729 || h->root.type == bfd_link_hash_defweak)
10730 && (h->root.u.def.section->flags
10731 & SEC_LINKER_CREATED) == 0
10732 && h->root.u.def.section->owner != NULL
10733 && (h->root.u.def.section->owner->flags
10734 & BFD_PLUGIN) != 0)
10735 {
10736 h->root.type = bfd_link_hash_undefined;
10737 h->root.u.undef.abfd = h->root.u.def.section->owner;
10738 }
10739
0f02bbd9
AM
10740 ps = NULL;
10741 if (h->root.type == bfd_link_hash_defined
10742 || h->root.type == bfd_link_hash_defweak)
10743 ps = &h->root.u.def.section;
10744
10745 sym_name = h->root.root.string;
10746 }
10747 else
10748 {
10749 Elf_Internal_Sym *sym = isymbuf + r_symndx;
10750
10751 s_type = ELF_ST_TYPE (sym->st_info);
8b127cbc 10752 ps = &flinfo->sections[r_symndx];
0f02bbd9
AM
10753 sym_name = bfd_elf_sym_name (input_bfd, symtab_hdr,
10754 sym, *ps);
10755 }
c152c796 10756
c301e700 10757 if ((s_type == STT_RELC || s_type == STT_SRELC)
0e1862bb 10758 && !bfd_link_relocatable (flinfo->info))
0f02bbd9
AM
10759 {
10760 bfd_vma val;
10761 bfd_vma dot = (rel->r_offset
10762 + o->output_offset + o->output_section->vma);
10763#ifdef DEBUG
10764 printf ("Encountered a complex symbol!");
10765 printf (" (input_bfd %s, section %s, reloc %ld\n",
9ccb8af9
AM
10766 input_bfd->filename, o->name,
10767 (long) (rel - internal_relocs));
0f02bbd9
AM
10768 printf (" symbol: idx %8.8lx, name %s\n",
10769 r_symndx, sym_name);
10770 printf (" reloc : info %8.8lx, addr %8.8lx\n",
10771 (unsigned long) rel->r_info,
10772 (unsigned long) rel->r_offset);
10773#endif
8b127cbc 10774 if (!eval_symbol (&val, &sym_name, input_bfd, flinfo, dot,
0f02bbd9
AM
10775 isymbuf, locsymcount, s_type == STT_SRELC))
10776 return FALSE;
10777
10778 /* Symbol evaluated OK. Update to absolute value. */
10779 set_symbol_value (input_bfd, isymbuf, locsymcount,
10780 r_symndx, val);
10781 continue;
10782 }
10783
10784 if (action_discarded != -1 && ps != NULL)
10785 {
cdd3575c
AM
10786 /* Complain if the definition comes from a
10787 discarded section. */
dbaa2011 10788 if ((sec = *ps) != NULL && discarded_section (sec))
cdd3575c 10789 {
cf35638d 10790 BFD_ASSERT (r_symndx != STN_UNDEF);
0f02bbd9 10791 if (action_discarded & COMPLAIN)
8b127cbc 10792 (*flinfo->info->callbacks->einfo)
695344c0 10793 /* xgettext:c-format */
871b3ab2
AM
10794 (_("%X`%s' referenced in section `%pA' of %pB: "
10795 "defined in discarded section `%pA' of %pB\n"),
e1fffbe6 10796 sym_name, o, input_bfd, sec, sec->owner);
cdd3575c 10797
87e5235d 10798 /* Try to do the best we can to support buggy old
e0ae6d6f 10799 versions of gcc. Pretend that the symbol is
87e5235d
AM
10800 really defined in the kept linkonce section.
10801 FIXME: This is quite broken. Modifying the
10802 symbol here means we will be changing all later
e0ae6d6f 10803 uses of the symbol, not just in this section. */
0f02bbd9 10804 if (action_discarded & PRETEND)
87e5235d 10805 {
01b3c8ab
L
10806 asection *kept;
10807
c0f00686 10808 kept = _bfd_elf_check_kept_section (sec,
8b127cbc 10809 flinfo->info);
01b3c8ab 10810 if (kept != NULL)
87e5235d
AM
10811 {
10812 *ps = kept;
10813 continue;
10814 }
10815 }
c152c796
AM
10816 }
10817 }
10818 }
10819
10820 /* Relocate the section by invoking a back end routine.
10821
10822 The back end routine is responsible for adjusting the
10823 section contents as necessary, and (if using Rela relocs
10824 and generating a relocatable output file) adjusting the
10825 reloc addend as necessary.
10826
10827 The back end routine does not have to worry about setting
10828 the reloc address or the reloc symbol index.
10829
10830 The back end routine is given a pointer to the swapped in
10831 internal symbols, and can access the hash table entries
10832 for the external symbols via elf_sym_hashes (input_bfd).
10833
10834 When generating relocatable output, the back end routine
10835 must handle STB_LOCAL/STT_SECTION symbols specially. The
10836 output symbol is going to be a section symbol
10837 corresponding to the output section, which will require
10838 the addend to be adjusted. */
10839
8b127cbc 10840 ret = (*relocate_section) (output_bfd, flinfo->info,
c152c796
AM
10841 input_bfd, o, contents,
10842 internal_relocs,
10843 isymbuf,
8b127cbc 10844 flinfo->sections);
ece5ef60 10845 if (!ret)
c152c796
AM
10846 return FALSE;
10847
ece5ef60 10848 if (ret == 2
0e1862bb 10849 || bfd_link_relocatable (flinfo->info)
8b127cbc 10850 || flinfo->info->emitrelocations)
c152c796
AM
10851 {
10852 Elf_Internal_Rela *irela;
d4730f92 10853 Elf_Internal_Rela *irelaend, *irelamid;
c152c796
AM
10854 bfd_vma last_offset;
10855 struct elf_link_hash_entry **rel_hash;
d4730f92
BS
10856 struct elf_link_hash_entry **rel_hash_list, **rela_hash_list;
10857 Elf_Internal_Shdr *input_rel_hdr, *input_rela_hdr;
c152c796 10858 unsigned int next_erel;
c152c796 10859 bfd_boolean rela_normal;
d4730f92 10860 struct bfd_elf_section_data *esdi, *esdo;
c152c796 10861
d4730f92
BS
10862 esdi = elf_section_data (o);
10863 esdo = elf_section_data (o->output_section);
10864 rela_normal = FALSE;
c152c796
AM
10865
10866 /* Adjust the reloc addresses and symbol indices. */
10867
10868 irela = internal_relocs;
056bafd4 10869 irelaend = irela + o->reloc_count;
d4730f92
BS
10870 rel_hash = esdo->rel.hashes + esdo->rel.count;
10871 /* We start processing the REL relocs, if any. When we reach
10872 IRELAMID in the loop, we switch to the RELA relocs. */
10873 irelamid = irela;
10874 if (esdi->rel.hdr != NULL)
10875 irelamid += (NUM_SHDR_ENTRIES (esdi->rel.hdr)
10876 * bed->s->int_rels_per_ext_rel);
eac338cf 10877 rel_hash_list = rel_hash;
d4730f92 10878 rela_hash_list = NULL;
c152c796 10879 last_offset = o->output_offset;
0e1862bb 10880 if (!bfd_link_relocatable (flinfo->info))
c152c796
AM
10881 last_offset += o->output_section->vma;
10882 for (next_erel = 0; irela < irelaend; irela++, next_erel++)
10883 {
10884 unsigned long r_symndx;
10885 asection *sec;
10886 Elf_Internal_Sym sym;
10887
10888 if (next_erel == bed->s->int_rels_per_ext_rel)
10889 {
10890 rel_hash++;
10891 next_erel = 0;
10892 }
10893
d4730f92
BS
10894 if (irela == irelamid)
10895 {
10896 rel_hash = esdo->rela.hashes + esdo->rela.count;
10897 rela_hash_list = rel_hash;
10898 rela_normal = bed->rela_normal;
10899 }
10900
c152c796 10901 irela->r_offset = _bfd_elf_section_offset (output_bfd,
8b127cbc 10902 flinfo->info, o,
c152c796
AM
10903 irela->r_offset);
10904 if (irela->r_offset >= (bfd_vma) -2)
10905 {
10906 /* This is a reloc for a deleted entry or somesuch.
10907 Turn it into an R_*_NONE reloc, at the same
10908 offset as the last reloc. elf_eh_frame.c and
e460dd0d 10909 bfd_elf_discard_info rely on reloc offsets
c152c796
AM
10910 being ordered. */
10911 irela->r_offset = last_offset;
10912 irela->r_info = 0;
10913 irela->r_addend = 0;
10914 continue;
10915 }
10916
10917 irela->r_offset += o->output_offset;
10918
10919 /* Relocs in an executable have to be virtual addresses. */
0e1862bb 10920 if (!bfd_link_relocatable (flinfo->info))
c152c796
AM
10921 irela->r_offset += o->output_section->vma;
10922
10923 last_offset = irela->r_offset;
10924
10925 r_symndx = irela->r_info >> r_sym_shift;
10926 if (r_symndx == STN_UNDEF)
10927 continue;
10928
10929 if (r_symndx >= locsymcount
10930 || (elf_bad_symtab (input_bfd)
8b127cbc 10931 && flinfo->sections[r_symndx] == NULL))
c152c796
AM
10932 {
10933 struct elf_link_hash_entry *rh;
10934 unsigned long indx;
10935
10936 /* This is a reloc against a global symbol. We
10937 have not yet output all the local symbols, so
10938 we do not know the symbol index of any global
10939 symbol. We set the rel_hash entry for this
10940 reloc to point to the global hash table entry
10941 for this symbol. The symbol index is then
ee75fd95 10942 set at the end of bfd_elf_final_link. */
c152c796
AM
10943 indx = r_symndx - extsymoff;
10944 rh = elf_sym_hashes (input_bfd)[indx];
10945 while (rh->root.type == bfd_link_hash_indirect
10946 || rh->root.type == bfd_link_hash_warning)
10947 rh = (struct elf_link_hash_entry *) rh->root.u.i.link;
10948
10949 /* Setting the index to -2 tells
10950 elf_link_output_extsym that this symbol is
10951 used by a reloc. */
10952 BFD_ASSERT (rh->indx < 0);
10953 rh->indx = -2;
c152c796
AM
10954 *rel_hash = rh;
10955
10956 continue;
10957 }
10958
10959 /* This is a reloc against a local symbol. */
10960
10961 *rel_hash = NULL;
10962 sym = isymbuf[r_symndx];
8b127cbc 10963 sec = flinfo->sections[r_symndx];
c152c796
AM
10964 if (ELF_ST_TYPE (sym.st_info) == STT_SECTION)
10965 {
10966 /* I suppose the backend ought to fill in the
10967 section of any STT_SECTION symbol against a
6a8d1586 10968 processor specific section. */
cf35638d 10969 r_symndx = STN_UNDEF;
6a8d1586
AM
10970 if (bfd_is_abs_section (sec))
10971 ;
c152c796
AM
10972 else if (sec == NULL || sec->owner == NULL)
10973 {
10974 bfd_set_error (bfd_error_bad_value);
10975 return FALSE;
10976 }
10977 else
10978 {
6a8d1586
AM
10979 asection *osec = sec->output_section;
10980
10981 /* If we have discarded a section, the output
10982 section will be the absolute section. In
ab96bf03
AM
10983 case of discarded SEC_MERGE sections, use
10984 the kept section. relocate_section should
10985 have already handled discarded linkonce
10986 sections. */
6a8d1586
AM
10987 if (bfd_is_abs_section (osec)
10988 && sec->kept_section != NULL
10989 && sec->kept_section->output_section != NULL)
10990 {
10991 osec = sec->kept_section->output_section;
10992 irela->r_addend -= osec->vma;
10993 }
10994
10995 if (!bfd_is_abs_section (osec))
10996 {
10997 r_symndx = osec->target_index;
cf35638d 10998 if (r_symndx == STN_UNDEF)
74541ad4 10999 {
051d833a
AM
11000 irela->r_addend += osec->vma;
11001 osec = _bfd_nearby_section (output_bfd, osec,
11002 osec->vma);
11003 irela->r_addend -= osec->vma;
11004 r_symndx = osec->target_index;
74541ad4 11005 }
6a8d1586 11006 }
c152c796
AM
11007 }
11008
11009 /* Adjust the addend according to where the
11010 section winds up in the output section. */
11011 if (rela_normal)
11012 irela->r_addend += sec->output_offset;
11013 }
11014 else
11015 {
8b127cbc 11016 if (flinfo->indices[r_symndx] == -1)
c152c796
AM
11017 {
11018 unsigned long shlink;
11019 const char *name;
11020 asection *osec;
6e0b88f1 11021 long indx;
c152c796 11022
8b127cbc 11023 if (flinfo->info->strip == strip_all)
c152c796
AM
11024 {
11025 /* You can't do ld -r -s. */
11026 bfd_set_error (bfd_error_invalid_operation);
11027 return FALSE;
11028 }
11029
11030 /* This symbol was skipped earlier, but
11031 since it is needed by a reloc, we
11032 must output it now. */
11033 shlink = symtab_hdr->sh_link;
11034 name = (bfd_elf_string_from_elf_section
11035 (input_bfd, shlink, sym.st_name));
11036 if (name == NULL)
11037 return FALSE;
11038
11039 osec = sec->output_section;
11040 sym.st_shndx =
11041 _bfd_elf_section_from_bfd_section (output_bfd,
11042 osec);
11043 if (sym.st_shndx == SHN_BAD)
11044 return FALSE;
11045
11046 sym.st_value += sec->output_offset;
0e1862bb 11047 if (!bfd_link_relocatable (flinfo->info))
c152c796
AM
11048 {
11049 sym.st_value += osec->vma;
11050 if (ELF_ST_TYPE (sym.st_info) == STT_TLS)
11051 {
102def4d
AM
11052 struct elf_link_hash_table *htab
11053 = elf_hash_table (flinfo->info);
11054
c152c796
AM
11055 /* STT_TLS symbols are relative to PT_TLS
11056 segment base. */
102def4d
AM
11057 if (htab->tls_sec != NULL)
11058 sym.st_value -= htab->tls_sec->vma;
11059 else
11060 sym.st_info
11061 = ELF_ST_INFO (ELF_ST_BIND (sym.st_info),
11062 STT_NOTYPE);
c152c796
AM
11063 }
11064 }
11065
6e0b88f1 11066 indx = bfd_get_symcount (output_bfd);
ef10c3ac
L
11067 ret = elf_link_output_symstrtab (flinfo, name,
11068 &sym, sec,
11069 NULL);
6e0b88f1 11070 if (ret == 0)
c152c796 11071 return FALSE;
6e0b88f1 11072 else if (ret == 1)
8b127cbc 11073 flinfo->indices[r_symndx] = indx;
6e0b88f1
AM
11074 else
11075 abort ();
c152c796
AM
11076 }
11077
8b127cbc 11078 r_symndx = flinfo->indices[r_symndx];
c152c796
AM
11079 }
11080
11081 irela->r_info = ((bfd_vma) r_symndx << r_sym_shift
11082 | (irela->r_info & r_type_mask));
11083 }
11084
11085 /* Swap out the relocs. */
d4730f92
BS
11086 input_rel_hdr = esdi->rel.hdr;
11087 if (input_rel_hdr && input_rel_hdr->sh_size != 0)
c152c796 11088 {
d4730f92
BS
11089 if (!bed->elf_backend_emit_relocs (output_bfd, o,
11090 input_rel_hdr,
11091 internal_relocs,
11092 rel_hash_list))
11093 return FALSE;
c152c796
AM
11094 internal_relocs += (NUM_SHDR_ENTRIES (input_rel_hdr)
11095 * bed->s->int_rels_per_ext_rel);
eac338cf 11096 rel_hash_list += NUM_SHDR_ENTRIES (input_rel_hdr);
d4730f92
BS
11097 }
11098
11099 input_rela_hdr = esdi->rela.hdr;
11100 if (input_rela_hdr && input_rela_hdr->sh_size != 0)
11101 {
eac338cf 11102 if (!bed->elf_backend_emit_relocs (output_bfd, o,
d4730f92 11103 input_rela_hdr,
eac338cf 11104 internal_relocs,
d4730f92 11105 rela_hash_list))
c152c796
AM
11106 return FALSE;
11107 }
11108 }
11109 }
11110
11111 /* Write out the modified section contents. */
11112 if (bed->elf_backend_write_section
8b127cbc 11113 && (*bed->elf_backend_write_section) (output_bfd, flinfo->info, o,
c7b8f16e 11114 contents))
c152c796
AM
11115 {
11116 /* Section written out. */
11117 }
11118 else switch (o->sec_info_type)
11119 {
dbaa2011 11120 case SEC_INFO_TYPE_STABS:
c152c796
AM
11121 if (! (_bfd_write_section_stabs
11122 (output_bfd,
8b127cbc 11123 &elf_hash_table (flinfo->info)->stab_info,
c152c796
AM
11124 o, &elf_section_data (o)->sec_info, contents)))
11125 return FALSE;
11126 break;
dbaa2011 11127 case SEC_INFO_TYPE_MERGE:
c152c796
AM
11128 if (! _bfd_write_merged_section (output_bfd, o,
11129 elf_section_data (o)->sec_info))
11130 return FALSE;
11131 break;
dbaa2011 11132 case SEC_INFO_TYPE_EH_FRAME:
c152c796 11133 {
8b127cbc 11134 if (! _bfd_elf_write_section_eh_frame (output_bfd, flinfo->info,
c152c796
AM
11135 o, contents))
11136 return FALSE;
11137 }
11138 break;
2f0c68f2
CM
11139 case SEC_INFO_TYPE_EH_FRAME_ENTRY:
11140 {
11141 if (! _bfd_elf_write_section_eh_frame_entry (output_bfd,
11142 flinfo->info,
11143 o, contents))
11144 return FALSE;
11145 }
11146 break;
c152c796
AM
11147 default:
11148 {
310fd250
L
11149 if (! (o->flags & SEC_EXCLUDE))
11150 {
11151 file_ptr offset = (file_ptr) o->output_offset;
11152 bfd_size_type todo = o->size;
37b01f6a
DG
11153
11154 offset *= bfd_octets_per_byte (output_bfd);
11155
310fd250
L
11156 if ((o->flags & SEC_ELF_REVERSE_COPY))
11157 {
11158 /* Reverse-copy input section to output. */
11159 do
11160 {
11161 todo -= address_size;
11162 if (! bfd_set_section_contents (output_bfd,
11163 o->output_section,
11164 contents + todo,
11165 offset,
11166 address_size))
11167 return FALSE;
11168 if (todo == 0)
11169 break;
11170 offset += address_size;
11171 }
11172 while (1);
11173 }
11174 else if (! bfd_set_section_contents (output_bfd,
11175 o->output_section,
11176 contents,
11177 offset, todo))
11178 return FALSE;
11179 }
c152c796
AM
11180 }
11181 break;
11182 }
11183 }
11184
11185 return TRUE;
11186}
11187
11188/* Generate a reloc when linking an ELF file. This is a reloc
3a800eb9 11189 requested by the linker, and does not come from any input file. This
c152c796
AM
11190 is used to build constructor and destructor tables when linking
11191 with -Ur. */
11192
11193static bfd_boolean
11194elf_reloc_link_order (bfd *output_bfd,
11195 struct bfd_link_info *info,
11196 asection *output_section,
11197 struct bfd_link_order *link_order)
11198{
11199 reloc_howto_type *howto;
11200 long indx;
11201 bfd_vma offset;
11202 bfd_vma addend;
d4730f92 11203 struct bfd_elf_section_reloc_data *reldata;
c152c796
AM
11204 struct elf_link_hash_entry **rel_hash_ptr;
11205 Elf_Internal_Shdr *rel_hdr;
11206 const struct elf_backend_data *bed = get_elf_backend_data (output_bfd);
11207 Elf_Internal_Rela irel[MAX_INT_RELS_PER_EXT_REL];
11208 bfd_byte *erel;
11209 unsigned int i;
d4730f92 11210 struct bfd_elf_section_data *esdo = elf_section_data (output_section);
c152c796
AM
11211
11212 howto = bfd_reloc_type_lookup (output_bfd, link_order->u.reloc.p->reloc);
11213 if (howto == NULL)
11214 {
11215 bfd_set_error (bfd_error_bad_value);
11216 return FALSE;
11217 }
11218
11219 addend = link_order->u.reloc.p->addend;
11220
d4730f92
BS
11221 if (esdo->rel.hdr)
11222 reldata = &esdo->rel;
11223 else if (esdo->rela.hdr)
11224 reldata = &esdo->rela;
11225 else
11226 {
11227 reldata = NULL;
11228 BFD_ASSERT (0);
11229 }
11230
c152c796 11231 /* Figure out the symbol index. */
d4730f92 11232 rel_hash_ptr = reldata->hashes + reldata->count;
c152c796
AM
11233 if (link_order->type == bfd_section_reloc_link_order)
11234 {
11235 indx = link_order->u.reloc.p->u.section->target_index;
11236 BFD_ASSERT (indx != 0);
11237 *rel_hash_ptr = NULL;
11238 }
11239 else
11240 {
11241 struct elf_link_hash_entry *h;
11242
11243 /* Treat a reloc against a defined symbol as though it were
11244 actually against the section. */
11245 h = ((struct elf_link_hash_entry *)
11246 bfd_wrapped_link_hash_lookup (output_bfd, info,
11247 link_order->u.reloc.p->u.name,
11248 FALSE, FALSE, TRUE));
11249 if (h != NULL
11250 && (h->root.type == bfd_link_hash_defined
11251 || h->root.type == bfd_link_hash_defweak))
11252 {
11253 asection *section;
11254
11255 section = h->root.u.def.section;
11256 indx = section->output_section->target_index;
11257 *rel_hash_ptr = NULL;
11258 /* It seems that we ought to add the symbol value to the
11259 addend here, but in practice it has already been added
11260 because it was passed to constructor_callback. */
11261 addend += section->output_section->vma + section->output_offset;
11262 }
11263 else if (h != NULL)
11264 {
11265 /* Setting the index to -2 tells elf_link_output_extsym that
11266 this symbol is used by a reloc. */
11267 h->indx = -2;
11268 *rel_hash_ptr = h;
11269 indx = 0;
11270 }
11271 else
11272 {
1a72702b
AM
11273 (*info->callbacks->unattached_reloc)
11274 (info, link_order->u.reloc.p->u.name, NULL, NULL, 0);
c152c796
AM
11275 indx = 0;
11276 }
11277 }
11278
11279 /* If this is an inplace reloc, we must write the addend into the
11280 object file. */
11281 if (howto->partial_inplace && addend != 0)
11282 {
11283 bfd_size_type size;
11284 bfd_reloc_status_type rstat;
11285 bfd_byte *buf;
11286 bfd_boolean ok;
11287 const char *sym_name;
11288
a50b1753
NC
11289 size = (bfd_size_type) bfd_get_reloc_size (howto);
11290 buf = (bfd_byte *) bfd_zmalloc (size);
6346d5ca 11291 if (buf == NULL && size != 0)
c152c796
AM
11292 return FALSE;
11293 rstat = _bfd_relocate_contents (howto, output_bfd, addend, buf);
11294 switch (rstat)
11295 {
11296 case bfd_reloc_ok:
11297 break;
11298
11299 default:
11300 case bfd_reloc_outofrange:
11301 abort ();
11302
11303 case bfd_reloc_overflow:
11304 if (link_order->type == bfd_section_reloc_link_order)
11305 sym_name = bfd_section_name (output_bfd,
11306 link_order->u.reloc.p->u.section);
11307 else
11308 sym_name = link_order->u.reloc.p->u.name;
1a72702b
AM
11309 (*info->callbacks->reloc_overflow) (info, NULL, sym_name,
11310 howto->name, addend, NULL, NULL,
11311 (bfd_vma) 0);
c152c796
AM
11312 break;
11313 }
37b01f6a 11314
c152c796 11315 ok = bfd_set_section_contents (output_bfd, output_section, buf,
37b01f6a
DG
11316 link_order->offset
11317 * bfd_octets_per_byte (output_bfd),
11318 size);
c152c796
AM
11319 free (buf);
11320 if (! ok)
11321 return FALSE;
11322 }
11323
11324 /* The address of a reloc is relative to the section in a
11325 relocatable file, and is a virtual address in an executable
11326 file. */
11327 offset = link_order->offset;
0e1862bb 11328 if (! bfd_link_relocatable (info))
c152c796
AM
11329 offset += output_section->vma;
11330
11331 for (i = 0; i < bed->s->int_rels_per_ext_rel; i++)
11332 {
11333 irel[i].r_offset = offset;
11334 irel[i].r_info = 0;
11335 irel[i].r_addend = 0;
11336 }
11337 if (bed->s->arch_size == 32)
11338 irel[0].r_info = ELF32_R_INFO (indx, howto->type);
11339 else
11340 irel[0].r_info = ELF64_R_INFO (indx, howto->type);
11341
d4730f92 11342 rel_hdr = reldata->hdr;
c152c796
AM
11343 erel = rel_hdr->contents;
11344 if (rel_hdr->sh_type == SHT_REL)
11345 {
d4730f92 11346 erel += reldata->count * bed->s->sizeof_rel;
c152c796
AM
11347 (*bed->s->swap_reloc_out) (output_bfd, irel, erel);
11348 }
11349 else
11350 {
11351 irel[0].r_addend = addend;
d4730f92 11352 erel += reldata->count * bed->s->sizeof_rela;
c152c796
AM
11353 (*bed->s->swap_reloca_out) (output_bfd, irel, erel);
11354 }
11355
d4730f92 11356 ++reldata->count;
c152c796
AM
11357
11358 return TRUE;
11359}
11360
0b52efa6
PB
11361
11362/* Get the output vma of the section pointed to by the sh_link field. */
11363
11364static bfd_vma
11365elf_get_linked_section_vma (struct bfd_link_order *p)
11366{
11367 Elf_Internal_Shdr **elf_shdrp;
11368 asection *s;
11369 int elfsec;
11370
11371 s = p->u.indirect.section;
11372 elf_shdrp = elf_elfsections (s->owner);
11373 elfsec = _bfd_elf_section_from_bfd_section (s->owner, s);
11374 elfsec = elf_shdrp[elfsec]->sh_link;
185d09ad
L
11375 /* PR 290:
11376 The Intel C compiler generates SHT_IA_64_UNWIND with
e04bcc6d 11377 SHF_LINK_ORDER. But it doesn't set the sh_link or
185d09ad
L
11378 sh_info fields. Hence we could get the situation
11379 where elfsec is 0. */
11380 if (elfsec == 0)
11381 {
11382 const struct elf_backend_data *bed
11383 = get_elf_backend_data (s->owner);
11384 if (bed->link_order_error_handler)
d003868e 11385 bed->link_order_error_handler
695344c0 11386 /* xgettext:c-format */
871b3ab2 11387 (_("%pB: warning: sh_link not set for section `%pA'"), s->owner, s);
185d09ad
L
11388 return 0;
11389 }
11390 else
11391 {
11392 s = elf_shdrp[elfsec]->bfd_section;
11393 return s->output_section->vma + s->output_offset;
11394 }
0b52efa6
PB
11395}
11396
11397
11398/* Compare two sections based on the locations of the sections they are
11399 linked to. Used by elf_fixup_link_order. */
11400
11401static int
11402compare_link_order (const void * a, const void * b)
11403{
11404 bfd_vma apos;
11405 bfd_vma bpos;
11406
11407 apos = elf_get_linked_section_vma (*(struct bfd_link_order **)a);
11408 bpos = elf_get_linked_section_vma (*(struct bfd_link_order **)b);
11409 if (apos < bpos)
11410 return -1;
11411 return apos > bpos;
11412}
11413
11414
11415/* Looks for sections with SHF_LINK_ORDER set. Rearranges them into the same
11416 order as their linked sections. Returns false if this could not be done
11417 because an output section includes both ordered and unordered
11418 sections. Ideally we'd do this in the linker proper. */
11419
11420static bfd_boolean
11421elf_fixup_link_order (bfd *abfd, asection *o)
11422{
11423 int seen_linkorder;
11424 int seen_other;
11425 int n;
11426 struct bfd_link_order *p;
11427 bfd *sub;
11428 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
b761a207 11429 unsigned elfsec;
0b52efa6 11430 struct bfd_link_order **sections;
d33cdfe3 11431 asection *s, *other_sec, *linkorder_sec;
0b52efa6 11432 bfd_vma offset;
3b36f7e6 11433
d33cdfe3
L
11434 other_sec = NULL;
11435 linkorder_sec = NULL;
0b52efa6
PB
11436 seen_other = 0;
11437 seen_linkorder = 0;
8423293d 11438 for (p = o->map_head.link_order; p != NULL; p = p->next)
0b52efa6 11439 {
d33cdfe3 11440 if (p->type == bfd_indirect_link_order)
0b52efa6
PB
11441 {
11442 s = p->u.indirect.section;
d33cdfe3
L
11443 sub = s->owner;
11444 if (bfd_get_flavour (sub) == bfd_target_elf_flavour
11445 && elf_elfheader (sub)->e_ident[EI_CLASS] == bed->s->elfclass
b761a207
BE
11446 && (elfsec = _bfd_elf_section_from_bfd_section (sub, s))
11447 && elfsec < elf_numsections (sub)
4fbb74a6
AM
11448 && elf_elfsections (sub)[elfsec]->sh_flags & SHF_LINK_ORDER
11449 && elf_elfsections (sub)[elfsec]->sh_link < elf_numsections (sub))
d33cdfe3
L
11450 {
11451 seen_linkorder++;
11452 linkorder_sec = s;
11453 }
0b52efa6 11454 else
d33cdfe3
L
11455 {
11456 seen_other++;
11457 other_sec = s;
11458 }
0b52efa6
PB
11459 }
11460 else
11461 seen_other++;
d33cdfe3
L
11462
11463 if (seen_other && seen_linkorder)
11464 {
11465 if (other_sec && linkorder_sec)
4eca0228 11466 _bfd_error_handler
695344c0 11467 /* xgettext:c-format */
871b3ab2
AM
11468 (_("%pA has both ordered [`%pA' in %pB] "
11469 "and unordered [`%pA' in %pB] sections"),
63a5468a
AM
11470 o, linkorder_sec, linkorder_sec->owner,
11471 other_sec, other_sec->owner);
d33cdfe3 11472 else
4eca0228 11473 _bfd_error_handler
871b3ab2 11474 (_("%pA has both ordered and unordered sections"), o);
d33cdfe3
L
11475 bfd_set_error (bfd_error_bad_value);
11476 return FALSE;
11477 }
0b52efa6
PB
11478 }
11479
11480 if (!seen_linkorder)
11481 return TRUE;
11482
0b52efa6 11483 sections = (struct bfd_link_order **)
14b1c01e
AM
11484 bfd_malloc (seen_linkorder * sizeof (struct bfd_link_order *));
11485 if (sections == NULL)
11486 return FALSE;
0b52efa6 11487 seen_linkorder = 0;
3b36f7e6 11488
8423293d 11489 for (p = o->map_head.link_order; p != NULL; p = p->next)
0b52efa6
PB
11490 {
11491 sections[seen_linkorder++] = p;
11492 }
11493 /* Sort the input sections in the order of their linked section. */
11494 qsort (sections, seen_linkorder, sizeof (struct bfd_link_order *),
11495 compare_link_order);
11496
11497 /* Change the offsets of the sections. */
11498 offset = 0;
11499 for (n = 0; n < seen_linkorder; n++)
11500 {
11501 s = sections[n]->u.indirect.section;
461686a3 11502 offset &= ~(bfd_vma) 0 << s->alignment_power;
37b01f6a 11503 s->output_offset = offset / bfd_octets_per_byte (abfd);
0b52efa6
PB
11504 sections[n]->offset = offset;
11505 offset += sections[n]->size;
11506 }
11507
4dd07732 11508 free (sections);
0b52efa6
PB
11509 return TRUE;
11510}
11511
76359541
TP
11512/* Generate an import library in INFO->implib_bfd from symbols in ABFD.
11513 Returns TRUE upon success, FALSE otherwise. */
11514
11515static bfd_boolean
11516elf_output_implib (bfd *abfd, struct bfd_link_info *info)
11517{
11518 bfd_boolean ret = FALSE;
11519 bfd *implib_bfd;
11520 const struct elf_backend_data *bed;
11521 flagword flags;
11522 enum bfd_architecture arch;
11523 unsigned int mach;
11524 asymbol **sympp = NULL;
11525 long symsize;
11526 long symcount;
11527 long src_count;
11528 elf_symbol_type *osymbuf;
11529
11530 implib_bfd = info->out_implib_bfd;
11531 bed = get_elf_backend_data (abfd);
11532
11533 if (!bfd_set_format (implib_bfd, bfd_object))
11534 return FALSE;
11535
046734ff 11536 /* Use flag from executable but make it a relocatable object. */
76359541
TP
11537 flags = bfd_get_file_flags (abfd);
11538 flags &= ~HAS_RELOC;
11539 if (!bfd_set_start_address (implib_bfd, 0)
046734ff 11540 || !bfd_set_file_flags (implib_bfd, flags & ~EXEC_P))
76359541
TP
11541 return FALSE;
11542
11543 /* Copy architecture of output file to import library file. */
11544 arch = bfd_get_arch (abfd);
11545 mach = bfd_get_mach (abfd);
11546 if (!bfd_set_arch_mach (implib_bfd, arch, mach)
11547 && (abfd->target_defaulted
11548 || bfd_get_arch (abfd) != bfd_get_arch (implib_bfd)))
11549 return FALSE;
11550
11551 /* Get symbol table size. */
11552 symsize = bfd_get_symtab_upper_bound (abfd);
11553 if (symsize < 0)
11554 return FALSE;
11555
11556 /* Read in the symbol table. */
11557 sympp = (asymbol **) xmalloc (symsize);
11558 symcount = bfd_canonicalize_symtab (abfd, sympp);
11559 if (symcount < 0)
11560 goto free_sym_buf;
11561
11562 /* Allow the BFD backend to copy any private header data it
11563 understands from the output BFD to the import library BFD. */
11564 if (! bfd_copy_private_header_data (abfd, implib_bfd))
11565 goto free_sym_buf;
11566
11567 /* Filter symbols to appear in the import library. */
11568 if (bed->elf_backend_filter_implib_symbols)
11569 symcount = bed->elf_backend_filter_implib_symbols (abfd, info, sympp,
11570 symcount);
11571 else
11572 symcount = _bfd_elf_filter_global_symbols (abfd, info, sympp, symcount);
11573 if (symcount == 0)
11574 {
5df1bc57 11575 bfd_set_error (bfd_error_no_symbols);
871b3ab2 11576 _bfd_error_handler (_("%pB: no symbol found for import library"),
4eca0228 11577 implib_bfd);
76359541
TP
11578 goto free_sym_buf;
11579 }
11580
11581
11582 /* Make symbols absolute. */
11583 osymbuf = (elf_symbol_type *) bfd_alloc2 (implib_bfd, symcount,
11584 sizeof (*osymbuf));
11585 for (src_count = 0; src_count < symcount; src_count++)
11586 {
11587 memcpy (&osymbuf[src_count], (elf_symbol_type *) sympp[src_count],
11588 sizeof (*osymbuf));
11589 osymbuf[src_count].symbol.section = bfd_abs_section_ptr;
11590 osymbuf[src_count].internal_elf_sym.st_shndx = SHN_ABS;
11591 osymbuf[src_count].symbol.value += sympp[src_count]->section->vma;
11592 osymbuf[src_count].internal_elf_sym.st_value =
11593 osymbuf[src_count].symbol.value;
11594 sympp[src_count] = &osymbuf[src_count].symbol;
11595 }
11596
11597 bfd_set_symtab (implib_bfd, sympp, symcount);
11598
11599 /* Allow the BFD backend to copy any private data it understands
11600 from the output BFD to the import library BFD. This is done last
11601 to permit the routine to look at the filtered symbol table. */
11602 if (! bfd_copy_private_bfd_data (abfd, implib_bfd))
11603 goto free_sym_buf;
11604
11605 if (!bfd_close (implib_bfd))
11606 goto free_sym_buf;
11607
11608 ret = TRUE;
11609
11610free_sym_buf:
11611 free (sympp);
11612 return ret;
11613}
11614
9f7c3e5e
AM
11615static void
11616elf_final_link_free (bfd *obfd, struct elf_final_link_info *flinfo)
11617{
11618 asection *o;
11619
11620 if (flinfo->symstrtab != NULL)
ef10c3ac 11621 _bfd_elf_strtab_free (flinfo->symstrtab);
9f7c3e5e
AM
11622 if (flinfo->contents != NULL)
11623 free (flinfo->contents);
11624 if (flinfo->external_relocs != NULL)
11625 free (flinfo->external_relocs);
11626 if (flinfo->internal_relocs != NULL)
11627 free (flinfo->internal_relocs);
11628 if (flinfo->external_syms != NULL)
11629 free (flinfo->external_syms);
11630 if (flinfo->locsym_shndx != NULL)
11631 free (flinfo->locsym_shndx);
11632 if (flinfo->internal_syms != NULL)
11633 free (flinfo->internal_syms);
11634 if (flinfo->indices != NULL)
11635 free (flinfo->indices);
11636 if (flinfo->sections != NULL)
11637 free (flinfo->sections);
9f7c3e5e
AM
11638 if (flinfo->symshndxbuf != NULL)
11639 free (flinfo->symshndxbuf);
11640 for (o = obfd->sections; o != NULL; o = o->next)
11641 {
11642 struct bfd_elf_section_data *esdo = elf_section_data (o);
11643 if ((o->flags & SEC_RELOC) != 0 && esdo->rel.hashes != NULL)
11644 free (esdo->rel.hashes);
11645 if ((o->flags & SEC_RELOC) != 0 && esdo->rela.hashes != NULL)
11646 free (esdo->rela.hashes);
11647 }
11648}
0b52efa6 11649
c152c796
AM
11650/* Do the final step of an ELF link. */
11651
11652bfd_boolean
11653bfd_elf_final_link (bfd *abfd, struct bfd_link_info *info)
11654{
11655 bfd_boolean dynamic;
11656 bfd_boolean emit_relocs;
11657 bfd *dynobj;
8b127cbc 11658 struct elf_final_link_info flinfo;
91d6fa6a
NC
11659 asection *o;
11660 struct bfd_link_order *p;
11661 bfd *sub;
c152c796
AM
11662 bfd_size_type max_contents_size;
11663 bfd_size_type max_external_reloc_size;
11664 bfd_size_type max_internal_reloc_count;
11665 bfd_size_type max_sym_count;
11666 bfd_size_type max_sym_shndx_count;
c152c796
AM
11667 Elf_Internal_Sym elfsym;
11668 unsigned int i;
11669 Elf_Internal_Shdr *symtab_hdr;
11670 Elf_Internal_Shdr *symtab_shndx_hdr;
c152c796
AM
11671 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
11672 struct elf_outext_info eoinfo;
11673 bfd_boolean merged;
11674 size_t relativecount = 0;
11675 asection *reldyn = 0;
11676 bfd_size_type amt;
104d59d1
JM
11677 asection *attr_section = NULL;
11678 bfd_vma attr_size = 0;
11679 const char *std_attrs_section;
64f52338 11680 struct elf_link_hash_table *htab = elf_hash_table (info);
c152c796 11681
64f52338 11682 if (!is_elf_hash_table (htab))
c152c796
AM
11683 return FALSE;
11684
0e1862bb 11685 if (bfd_link_pic (info))
c152c796
AM
11686 abfd->flags |= DYNAMIC;
11687
64f52338
AM
11688 dynamic = htab->dynamic_sections_created;
11689 dynobj = htab->dynobj;
c152c796 11690
0e1862bb 11691 emit_relocs = (bfd_link_relocatable (info)
a4676736 11692 || info->emitrelocations);
c152c796 11693
8b127cbc
AM
11694 flinfo.info = info;
11695 flinfo.output_bfd = abfd;
ef10c3ac 11696 flinfo.symstrtab = _bfd_elf_strtab_init ();
8b127cbc 11697 if (flinfo.symstrtab == NULL)
c152c796
AM
11698 return FALSE;
11699
11700 if (! dynamic)
11701 {
8b127cbc
AM
11702 flinfo.hash_sec = NULL;
11703 flinfo.symver_sec = NULL;
c152c796
AM
11704 }
11705 else
11706 {
3d4d4302 11707 flinfo.hash_sec = bfd_get_linker_section (dynobj, ".hash");
202e2356 11708 /* Note that dynsym_sec can be NULL (on VMS). */
3d4d4302 11709 flinfo.symver_sec = bfd_get_linker_section (dynobj, ".gnu.version");
c152c796
AM
11710 /* Note that it is OK if symver_sec is NULL. */
11711 }
11712
8b127cbc
AM
11713 flinfo.contents = NULL;
11714 flinfo.external_relocs = NULL;
11715 flinfo.internal_relocs = NULL;
11716 flinfo.external_syms = NULL;
11717 flinfo.locsym_shndx = NULL;
11718 flinfo.internal_syms = NULL;
11719 flinfo.indices = NULL;
11720 flinfo.sections = NULL;
8b127cbc 11721 flinfo.symshndxbuf = NULL;
ffbc01cc 11722 flinfo.filesym_count = 0;
c152c796 11723
104d59d1
JM
11724 /* The object attributes have been merged. Remove the input
11725 sections from the link, and set the contents of the output
11726 secton. */
11727 std_attrs_section = get_elf_backend_data (abfd)->obj_attrs_section;
11728 for (o = abfd->sections; o != NULL; o = o->next)
11729 {
5270eddc 11730 bfd_boolean remove_section = FALSE;
b8a6ced7 11731
104d59d1
JM
11732 if ((std_attrs_section && strcmp (o->name, std_attrs_section) == 0)
11733 || strcmp (o->name, ".gnu.attributes") == 0)
11734 {
11735 for (p = o->map_head.link_order; p != NULL; p = p->next)
11736 {
11737 asection *input_section;
11738
11739 if (p->type != bfd_indirect_link_order)
11740 continue;
11741 input_section = p->u.indirect.section;
11742 /* Hack: reset the SEC_HAS_CONTENTS flag so that
11743 elf_link_input_bfd ignores this section. */
11744 input_section->flags &= ~SEC_HAS_CONTENTS;
11745 }
a0c8462f 11746
104d59d1 11747 attr_size = bfd_elf_obj_attr_size (abfd);
b8a6ced7
AM
11748 bfd_set_section_size (abfd, o, attr_size);
11749 /* Skip this section later on. */
11750 o->map_head.link_order = NULL;
104d59d1 11751 if (attr_size)
b8a6ced7 11752 attr_section = o;
104d59d1 11753 else
5270eddc 11754 remove_section = TRUE;
104d59d1 11755 }
6e5e9d58
AM
11756 else if ((o->flags & SEC_GROUP) != 0 && o->size == 0)
11757 {
11758 /* Remove empty group section from linker output. */
5270eddc 11759 remove_section = TRUE;
b8a6ced7 11760 }
5270eddc 11761 if (remove_section)
b8a6ced7 11762 {
6e5e9d58
AM
11763 o->flags |= SEC_EXCLUDE;
11764 bfd_section_list_remove (abfd, o);
11765 abfd->section_count--;
11766 }
104d59d1
JM
11767 }
11768
c152c796
AM
11769 /* Count up the number of relocations we will output for each output
11770 section, so that we know the sizes of the reloc sections. We
11771 also figure out some maximum sizes. */
11772 max_contents_size = 0;
11773 max_external_reloc_size = 0;
11774 max_internal_reloc_count = 0;
11775 max_sym_count = 0;
11776 max_sym_shndx_count = 0;
11777 merged = FALSE;
11778 for (o = abfd->sections; o != NULL; o = o->next)
11779 {
11780 struct bfd_elf_section_data *esdo = elf_section_data (o);
11781 o->reloc_count = 0;
11782
8423293d 11783 for (p = o->map_head.link_order; p != NULL; p = p->next)
c152c796
AM
11784 {
11785 unsigned int reloc_count = 0;
9eaff861 11786 unsigned int additional_reloc_count = 0;
c152c796 11787 struct bfd_elf_section_data *esdi = NULL;
c152c796
AM
11788
11789 if (p->type == bfd_section_reloc_link_order
11790 || p->type == bfd_symbol_reloc_link_order)
11791 reloc_count = 1;
11792 else if (p->type == bfd_indirect_link_order)
11793 {
11794 asection *sec;
11795
11796 sec = p->u.indirect.section;
c152c796
AM
11797
11798 /* Mark all sections which are to be included in the
11799 link. This will normally be every section. We need
11800 to do this so that we can identify any sections which
11801 the linker has decided to not include. */
11802 sec->linker_mark = TRUE;
11803
11804 if (sec->flags & SEC_MERGE)
11805 merged = TRUE;
11806
eea6121a
AM
11807 if (sec->rawsize > max_contents_size)
11808 max_contents_size = sec->rawsize;
11809 if (sec->size > max_contents_size)
11810 max_contents_size = sec->size;
c152c796 11811
c152c796
AM
11812 if (bfd_get_flavour (sec->owner) == bfd_target_elf_flavour
11813 && (sec->owner->flags & DYNAMIC) == 0)
11814 {
11815 size_t sym_count;
11816
a961cdd5
AM
11817 /* We are interested in just local symbols, not all
11818 symbols. */
c152c796
AM
11819 if (elf_bad_symtab (sec->owner))
11820 sym_count = (elf_tdata (sec->owner)->symtab_hdr.sh_size
11821 / bed->s->sizeof_sym);
11822 else
11823 sym_count = elf_tdata (sec->owner)->symtab_hdr.sh_info;
11824
11825 if (sym_count > max_sym_count)
11826 max_sym_count = sym_count;
11827
11828 if (sym_count > max_sym_shndx_count
6a40cf0c 11829 && elf_symtab_shndx_list (sec->owner) != NULL)
c152c796
AM
11830 max_sym_shndx_count = sym_count;
11831
a961cdd5
AM
11832 if (esdo->this_hdr.sh_type == SHT_REL
11833 || esdo->this_hdr.sh_type == SHT_RELA)
11834 /* Some backends use reloc_count in relocation sections
11835 to count particular types of relocs. Of course,
11836 reloc sections themselves can't have relocations. */
11837 ;
11838 else if (emit_relocs)
11839 {
11840 reloc_count = sec->reloc_count;
11841 if (bed->elf_backend_count_additional_relocs)
11842 {
11843 int c;
11844 c = (*bed->elf_backend_count_additional_relocs) (sec);
11845 additional_reloc_count += c;
11846 }
11847 }
11848 else if (bed->elf_backend_count_relocs)
11849 reloc_count = (*bed->elf_backend_count_relocs) (info, sec);
11850
11851 esdi = elf_section_data (sec);
11852
c152c796
AM
11853 if ((sec->flags & SEC_RELOC) != 0)
11854 {
d4730f92 11855 size_t ext_size = 0;
c152c796 11856
d4730f92
BS
11857 if (esdi->rel.hdr != NULL)
11858 ext_size = esdi->rel.hdr->sh_size;
11859 if (esdi->rela.hdr != NULL)
11860 ext_size += esdi->rela.hdr->sh_size;
7326c758 11861
c152c796
AM
11862 if (ext_size > max_external_reloc_size)
11863 max_external_reloc_size = ext_size;
11864 if (sec->reloc_count > max_internal_reloc_count)
11865 max_internal_reloc_count = sec->reloc_count;
11866 }
11867 }
11868 }
11869
11870 if (reloc_count == 0)
11871 continue;
11872
9eaff861 11873 reloc_count += additional_reloc_count;
c152c796
AM
11874 o->reloc_count += reloc_count;
11875
0e1862bb 11876 if (p->type == bfd_indirect_link_order && emit_relocs)
c152c796 11877 {
d4730f92 11878 if (esdi->rel.hdr)
9eaff861 11879 {
491d01d3 11880 esdo->rel.count += NUM_SHDR_ENTRIES (esdi->rel.hdr);
9eaff861
AO
11881 esdo->rel.count += additional_reloc_count;
11882 }
d4730f92 11883 if (esdi->rela.hdr)
9eaff861 11884 {
491d01d3 11885 esdo->rela.count += NUM_SHDR_ENTRIES (esdi->rela.hdr);
9eaff861
AO
11886 esdo->rela.count += additional_reloc_count;
11887 }
d4730f92
BS
11888 }
11889 else
11890 {
11891 if (o->use_rela_p)
11892 esdo->rela.count += reloc_count;
2c2b4ed4 11893 else
d4730f92 11894 esdo->rel.count += reloc_count;
c152c796 11895 }
c152c796
AM
11896 }
11897
9eaff861 11898 if (o->reloc_count > 0)
c152c796
AM
11899 o->flags |= SEC_RELOC;
11900 else
11901 {
11902 /* Explicitly clear the SEC_RELOC flag. The linker tends to
11903 set it (this is probably a bug) and if it is set
11904 assign_section_numbers will create a reloc section. */
11905 o->flags &=~ SEC_RELOC;
11906 }
11907
11908 /* If the SEC_ALLOC flag is not set, force the section VMA to
11909 zero. This is done in elf_fake_sections as well, but forcing
11910 the VMA to 0 here will ensure that relocs against these
11911 sections are handled correctly. */
11912 if ((o->flags & SEC_ALLOC) == 0
11913 && ! o->user_set_vma)
11914 o->vma = 0;
11915 }
11916
0e1862bb 11917 if (! bfd_link_relocatable (info) && merged)
64f52338 11918 elf_link_hash_traverse (htab, _bfd_elf_link_sec_merge_syms, abfd);
c152c796
AM
11919
11920 /* Figure out the file positions for everything but the symbol table
11921 and the relocs. We set symcount to force assign_section_numbers
11922 to create a symbol table. */
8539e4e8 11923 bfd_get_symcount (abfd) = info->strip != strip_all || emit_relocs;
c152c796
AM
11924 BFD_ASSERT (! abfd->output_has_begun);
11925 if (! _bfd_elf_compute_section_file_positions (abfd, info))
11926 goto error_return;
11927
ee75fd95 11928 /* Set sizes, and assign file positions for reloc sections. */
c152c796
AM
11929 for (o = abfd->sections; o != NULL; o = o->next)
11930 {
d4730f92 11931 struct bfd_elf_section_data *esdo = elf_section_data (o);
c152c796
AM
11932 if ((o->flags & SEC_RELOC) != 0)
11933 {
d4730f92 11934 if (esdo->rel.hdr
9eaff861 11935 && !(_bfd_elf_link_size_reloc_section (abfd, &esdo->rel)))
c152c796
AM
11936 goto error_return;
11937
d4730f92 11938 if (esdo->rela.hdr
9eaff861 11939 && !(_bfd_elf_link_size_reloc_section (abfd, &esdo->rela)))
c152c796
AM
11940 goto error_return;
11941 }
11942
11943 /* Now, reset REL_COUNT and REL_COUNT2 so that we can use them
11944 to count upwards while actually outputting the relocations. */
d4730f92
BS
11945 esdo->rel.count = 0;
11946 esdo->rela.count = 0;
0ce398f1
L
11947
11948 if (esdo->this_hdr.sh_offset == (file_ptr) -1)
11949 {
11950 /* Cache the section contents so that they can be compressed
11951 later. Use bfd_malloc since it will be freed by
11952 bfd_compress_section_contents. */
11953 unsigned char *contents = esdo->this_hdr.contents;
11954 if ((o->flags & SEC_ELF_COMPRESS) == 0 || contents != NULL)
11955 abort ();
11956 contents
11957 = (unsigned char *) bfd_malloc (esdo->this_hdr.sh_size);
11958 if (contents == NULL)
11959 goto error_return;
11960 esdo->this_hdr.contents = contents;
11961 }
c152c796
AM
11962 }
11963
c152c796 11964 /* We have now assigned file positions for all the sections except
a485e98e
AM
11965 .symtab, .strtab, and non-loaded reloc sections. We start the
11966 .symtab section at the current file position, and write directly
11967 to it. We build the .strtab section in memory. */
c152c796
AM
11968 bfd_get_symcount (abfd) = 0;
11969 symtab_hdr = &elf_tdata (abfd)->symtab_hdr;
11970 /* sh_name is set in prep_headers. */
11971 symtab_hdr->sh_type = SHT_SYMTAB;
11972 /* sh_flags, sh_addr and sh_size all start off zero. */
11973 symtab_hdr->sh_entsize = bed->s->sizeof_sym;
11974 /* sh_link is set in assign_section_numbers. */
11975 /* sh_info is set below. */
11976 /* sh_offset is set just below. */
72de5009 11977 symtab_hdr->sh_addralign = (bfd_vma) 1 << bed->s->log_file_align;
c152c796 11978
ef10c3ac
L
11979 if (max_sym_count < 20)
11980 max_sym_count = 20;
64f52338 11981 htab->strtabsize = max_sym_count;
ef10c3ac 11982 amt = max_sym_count * sizeof (struct elf_sym_strtab);
64f52338
AM
11983 htab->strtab = (struct elf_sym_strtab *) bfd_malloc (amt);
11984 if (htab->strtab == NULL)
c152c796 11985 goto error_return;
ef10c3ac
L
11986 /* The real buffer will be allocated in elf_link_swap_symbols_out. */
11987 flinfo.symshndxbuf
11988 = (elf_numsections (abfd) > (SHN_LORESERVE & 0xFFFF)
11989 ? (Elf_External_Sym_Shndx *) -1 : NULL);
c152c796 11990
8539e4e8 11991 if (info->strip != strip_all || emit_relocs)
c152c796 11992 {
8539e4e8
AM
11993 file_ptr off = elf_next_file_pos (abfd);
11994
11995 _bfd_elf_assign_file_position_for_section (symtab_hdr, off, TRUE);
11996
11997 /* Note that at this point elf_next_file_pos (abfd) is
11998 incorrect. We do not yet know the size of the .symtab section.
11999 We correct next_file_pos below, after we do know the size. */
12000
12001 /* Start writing out the symbol table. The first symbol is always a
12002 dummy symbol. */
c152c796
AM
12003 elfsym.st_value = 0;
12004 elfsym.st_size = 0;
12005 elfsym.st_info = 0;
12006 elfsym.st_other = 0;
12007 elfsym.st_shndx = SHN_UNDEF;
35fc36a8 12008 elfsym.st_target_internal = 0;
ef10c3ac
L
12009 if (elf_link_output_symstrtab (&flinfo, NULL, &elfsym,
12010 bfd_und_section_ptr, NULL) != 1)
c152c796 12011 goto error_return;
c152c796 12012
8539e4e8
AM
12013 /* Output a symbol for each section. We output these even if we are
12014 discarding local symbols, since they are used for relocs. These
12015 symbols have no names. We store the index of each one in the
12016 index field of the section, so that we can find it again when
12017 outputting relocs. */
12018
c152c796
AM
12019 elfsym.st_size = 0;
12020 elfsym.st_info = ELF_ST_INFO (STB_LOCAL, STT_SECTION);
12021 elfsym.st_other = 0;
f0b5bb34 12022 elfsym.st_value = 0;
35fc36a8 12023 elfsym.st_target_internal = 0;
c152c796
AM
12024 for (i = 1; i < elf_numsections (abfd); i++)
12025 {
12026 o = bfd_section_from_elf_index (abfd, i);
12027 if (o != NULL)
f0b5bb34
AM
12028 {
12029 o->target_index = bfd_get_symcount (abfd);
12030 elfsym.st_shndx = i;
0e1862bb 12031 if (!bfd_link_relocatable (info))
f0b5bb34 12032 elfsym.st_value = o->vma;
ef10c3ac
L
12033 if (elf_link_output_symstrtab (&flinfo, NULL, &elfsym, o,
12034 NULL) != 1)
f0b5bb34
AM
12035 goto error_return;
12036 }
c152c796
AM
12037 }
12038 }
12039
12040 /* Allocate some memory to hold information read in from the input
12041 files. */
12042 if (max_contents_size != 0)
12043 {
8b127cbc
AM
12044 flinfo.contents = (bfd_byte *) bfd_malloc (max_contents_size);
12045 if (flinfo.contents == NULL)
c152c796
AM
12046 goto error_return;
12047 }
12048
12049 if (max_external_reloc_size != 0)
12050 {
8b127cbc
AM
12051 flinfo.external_relocs = bfd_malloc (max_external_reloc_size);
12052 if (flinfo.external_relocs == NULL)
c152c796
AM
12053 goto error_return;
12054 }
12055
12056 if (max_internal_reloc_count != 0)
12057 {
056bafd4 12058 amt = max_internal_reloc_count * sizeof (Elf_Internal_Rela);
8b127cbc
AM
12059 flinfo.internal_relocs = (Elf_Internal_Rela *) bfd_malloc (amt);
12060 if (flinfo.internal_relocs == NULL)
c152c796
AM
12061 goto error_return;
12062 }
12063
12064 if (max_sym_count != 0)
12065 {
12066 amt = max_sym_count * bed->s->sizeof_sym;
8b127cbc
AM
12067 flinfo.external_syms = (bfd_byte *) bfd_malloc (amt);
12068 if (flinfo.external_syms == NULL)
c152c796
AM
12069 goto error_return;
12070
12071 amt = max_sym_count * sizeof (Elf_Internal_Sym);
8b127cbc
AM
12072 flinfo.internal_syms = (Elf_Internal_Sym *) bfd_malloc (amt);
12073 if (flinfo.internal_syms == NULL)
c152c796
AM
12074 goto error_return;
12075
12076 amt = max_sym_count * sizeof (long);
8b127cbc
AM
12077 flinfo.indices = (long int *) bfd_malloc (amt);
12078 if (flinfo.indices == NULL)
c152c796
AM
12079 goto error_return;
12080
12081 amt = max_sym_count * sizeof (asection *);
8b127cbc
AM
12082 flinfo.sections = (asection **) bfd_malloc (amt);
12083 if (flinfo.sections == NULL)
c152c796
AM
12084 goto error_return;
12085 }
12086
12087 if (max_sym_shndx_count != 0)
12088 {
12089 amt = max_sym_shndx_count * sizeof (Elf_External_Sym_Shndx);
8b127cbc
AM
12090 flinfo.locsym_shndx = (Elf_External_Sym_Shndx *) bfd_malloc (amt);
12091 if (flinfo.locsym_shndx == NULL)
c152c796
AM
12092 goto error_return;
12093 }
12094
64f52338 12095 if (htab->tls_sec)
c152c796
AM
12096 {
12097 bfd_vma base, end = 0;
12098 asection *sec;
12099
64f52338 12100 for (sec = htab->tls_sec;
c152c796
AM
12101 sec && (sec->flags & SEC_THREAD_LOCAL);
12102 sec = sec->next)
12103 {
3a800eb9 12104 bfd_size_type size = sec->size;
c152c796 12105
3a800eb9
AM
12106 if (size == 0
12107 && (sec->flags & SEC_HAS_CONTENTS) == 0)
c152c796 12108 {
91d6fa6a
NC
12109 struct bfd_link_order *ord = sec->map_tail.link_order;
12110
12111 if (ord != NULL)
12112 size = ord->offset + ord->size;
c152c796
AM
12113 }
12114 end = sec->vma + size;
12115 }
64f52338 12116 base = htab->tls_sec->vma;
7dc98aea
RO
12117 /* Only align end of TLS section if static TLS doesn't have special
12118 alignment requirements. */
12119 if (bed->static_tls_alignment == 1)
64f52338
AM
12120 end = align_power (end, htab->tls_sec->alignment_power);
12121 htab->tls_size = end - base;
c152c796
AM
12122 }
12123
0b52efa6
PB
12124 /* Reorder SHF_LINK_ORDER sections. */
12125 for (o = abfd->sections; o != NULL; o = o->next)
12126 {
12127 if (!elf_fixup_link_order (abfd, o))
12128 return FALSE;
12129 }
12130
2f0c68f2
CM
12131 if (!_bfd_elf_fixup_eh_frame_hdr (info))
12132 return FALSE;
12133
c152c796
AM
12134 /* Since ELF permits relocations to be against local symbols, we
12135 must have the local symbols available when we do the relocations.
12136 Since we would rather only read the local symbols once, and we
12137 would rather not keep them in memory, we handle all the
12138 relocations for a single input file at the same time.
12139
12140 Unfortunately, there is no way to know the total number of local
12141 symbols until we have seen all of them, and the local symbol
12142 indices precede the global symbol indices. This means that when
12143 we are generating relocatable output, and we see a reloc against
12144 a global symbol, we can not know the symbol index until we have
12145 finished examining all the local symbols to see which ones we are
12146 going to output. To deal with this, we keep the relocations in
12147 memory, and don't output them until the end of the link. This is
12148 an unfortunate waste of memory, but I don't see a good way around
12149 it. Fortunately, it only happens when performing a relocatable
12150 link, which is not the common case. FIXME: If keep_memory is set
12151 we could write the relocs out and then read them again; I don't
12152 know how bad the memory loss will be. */
12153
c72f2fb2 12154 for (sub = info->input_bfds; sub != NULL; sub = sub->link.next)
c152c796
AM
12155 sub->output_has_begun = FALSE;
12156 for (o = abfd->sections; o != NULL; o = o->next)
12157 {
8423293d 12158 for (p = o->map_head.link_order; p != NULL; p = p->next)
c152c796
AM
12159 {
12160 if (p->type == bfd_indirect_link_order
12161 && (bfd_get_flavour ((sub = p->u.indirect.section->owner))
12162 == bfd_target_elf_flavour)
12163 && elf_elfheader (sub)->e_ident[EI_CLASS] == bed->s->elfclass)
12164 {
12165 if (! sub->output_has_begun)
12166 {
8b127cbc 12167 if (! elf_link_input_bfd (&flinfo, sub))
c152c796
AM
12168 goto error_return;
12169 sub->output_has_begun = TRUE;
12170 }
12171 }
12172 else if (p->type == bfd_section_reloc_link_order
12173 || p->type == bfd_symbol_reloc_link_order)
12174 {
12175 if (! elf_reloc_link_order (abfd, info, o, p))
12176 goto error_return;
12177 }
12178 else
12179 {
12180 if (! _bfd_default_link_order (abfd, info, o, p))
351f65ca
L
12181 {
12182 if (p->type == bfd_indirect_link_order
12183 && (bfd_get_flavour (sub)
12184 == bfd_target_elf_flavour)
12185 && (elf_elfheader (sub)->e_ident[EI_CLASS]
12186 != bed->s->elfclass))
12187 {
12188 const char *iclass, *oclass;
12189
aebf9be7 12190 switch (bed->s->elfclass)
351f65ca 12191 {
aebf9be7
NC
12192 case ELFCLASS64: oclass = "ELFCLASS64"; break;
12193 case ELFCLASS32: oclass = "ELFCLASS32"; break;
12194 case ELFCLASSNONE: oclass = "ELFCLASSNONE"; break;
12195 default: abort ();
351f65ca 12196 }
aebf9be7
NC
12197
12198 switch (elf_elfheader (sub)->e_ident[EI_CLASS])
351f65ca 12199 {
aebf9be7
NC
12200 case ELFCLASS64: iclass = "ELFCLASS64"; break;
12201 case ELFCLASS32: iclass = "ELFCLASS32"; break;
12202 case ELFCLASSNONE: iclass = "ELFCLASSNONE"; break;
12203 default: abort ();
351f65ca
L
12204 }
12205
12206 bfd_set_error (bfd_error_wrong_format);
4eca0228 12207 _bfd_error_handler
695344c0 12208 /* xgettext:c-format */
871b3ab2 12209 (_("%pB: file class %s incompatible with %s"),
351f65ca
L
12210 sub, iclass, oclass);
12211 }
12212
12213 goto error_return;
12214 }
c152c796
AM
12215 }
12216 }
12217 }
12218
c0f00686
L
12219 /* Free symbol buffer if needed. */
12220 if (!info->reduce_memory_overheads)
12221 {
c72f2fb2 12222 for (sub = info->input_bfds; sub != NULL; sub = sub->link.next)
3fcd97f1
JJ
12223 if (bfd_get_flavour (sub) == bfd_target_elf_flavour
12224 && elf_tdata (sub)->symbuf)
c0f00686
L
12225 {
12226 free (elf_tdata (sub)->symbuf);
12227 elf_tdata (sub)->symbuf = NULL;
12228 }
12229 }
12230
c152c796
AM
12231 /* Output any global symbols that got converted to local in a
12232 version script or due to symbol visibility. We do this in a
12233 separate step since ELF requires all local symbols to appear
12234 prior to any global symbols. FIXME: We should only do this if
12235 some global symbols were, in fact, converted to become local.
12236 FIXME: Will this work correctly with the Irix 5 linker? */
12237 eoinfo.failed = FALSE;
8b127cbc 12238 eoinfo.flinfo = &flinfo;
c152c796 12239 eoinfo.localsyms = TRUE;
34a79995 12240 eoinfo.file_sym_done = FALSE;
7686d77d 12241 bfd_hash_traverse (&info->hash->table, elf_link_output_extsym, &eoinfo);
c152c796
AM
12242 if (eoinfo.failed)
12243 return FALSE;
12244
4e617b1e
PB
12245 /* If backend needs to output some local symbols not present in the hash
12246 table, do it now. */
8539e4e8
AM
12247 if (bed->elf_backend_output_arch_local_syms
12248 && (info->strip != strip_all || emit_relocs))
4e617b1e 12249 {
6e0b88f1 12250 typedef int (*out_sym_func)
4e617b1e
PB
12251 (void *, const char *, Elf_Internal_Sym *, asection *,
12252 struct elf_link_hash_entry *);
12253
12254 if (! ((*bed->elf_backend_output_arch_local_syms)
ef10c3ac
L
12255 (abfd, info, &flinfo,
12256 (out_sym_func) elf_link_output_symstrtab)))
4e617b1e
PB
12257 return FALSE;
12258 }
12259
c152c796
AM
12260 /* That wrote out all the local symbols. Finish up the symbol table
12261 with the global symbols. Even if we want to strip everything we
12262 can, we still need to deal with those global symbols that got
12263 converted to local in a version script. */
12264
12265 /* The sh_info field records the index of the first non local symbol. */
12266 symtab_hdr->sh_info = bfd_get_symcount (abfd);
12267
12268 if (dynamic
64f52338
AM
12269 && htab->dynsym != NULL
12270 && htab->dynsym->output_section != bfd_abs_section_ptr)
c152c796
AM
12271 {
12272 Elf_Internal_Sym sym;
64f52338 12273 bfd_byte *dynsym = htab->dynsym->contents;
90ac2420 12274
64f52338
AM
12275 o = htab->dynsym->output_section;
12276 elf_section_data (o)->this_hdr.sh_info = htab->local_dynsymcount + 1;
c152c796
AM
12277
12278 /* Write out the section symbols for the output sections. */
0e1862bb 12279 if (bfd_link_pic (info)
64f52338 12280 || htab->is_relocatable_executable)
c152c796
AM
12281 {
12282 asection *s;
12283
12284 sym.st_size = 0;
12285 sym.st_name = 0;
12286 sym.st_info = ELF_ST_INFO (STB_LOCAL, STT_SECTION);
12287 sym.st_other = 0;
35fc36a8 12288 sym.st_target_internal = 0;
c152c796
AM
12289
12290 for (s = abfd->sections; s != NULL; s = s->next)
12291 {
12292 int indx;
12293 bfd_byte *dest;
12294 long dynindx;
12295
c152c796 12296 dynindx = elf_section_data (s)->dynindx;
8c37241b
JJ
12297 if (dynindx <= 0)
12298 continue;
12299 indx = elf_section_data (s)->this_idx;
c152c796
AM
12300 BFD_ASSERT (indx > 0);
12301 sym.st_shndx = indx;
c0d5a53d
L
12302 if (! check_dynsym (abfd, &sym))
12303 return FALSE;
c152c796
AM
12304 sym.st_value = s->vma;
12305 dest = dynsym + dynindx * bed->s->sizeof_sym;
12306 bed->s->swap_symbol_out (abfd, &sym, dest, 0);
12307 }
c152c796
AM
12308 }
12309
12310 /* Write out the local dynsyms. */
64f52338 12311 if (htab->dynlocal)
c152c796
AM
12312 {
12313 struct elf_link_local_dynamic_entry *e;
64f52338 12314 for (e = htab->dynlocal; e ; e = e->next)
c152c796
AM
12315 {
12316 asection *s;
12317 bfd_byte *dest;
12318
935bd1e0 12319 /* Copy the internal symbol and turn off visibility.
c152c796
AM
12320 Note that we saved a word of storage and overwrote
12321 the original st_name with the dynstr_index. */
12322 sym = e->isym;
935bd1e0 12323 sym.st_other &= ~ELF_ST_VISIBILITY (-1);
c152c796 12324
cb33740c
AM
12325 s = bfd_section_from_elf_index (e->input_bfd,
12326 e->isym.st_shndx);
12327 if (s != NULL)
c152c796 12328 {
c152c796
AM
12329 sym.st_shndx =
12330 elf_section_data (s->output_section)->this_idx;
c0d5a53d
L
12331 if (! check_dynsym (abfd, &sym))
12332 return FALSE;
c152c796
AM
12333 sym.st_value = (s->output_section->vma
12334 + s->output_offset
12335 + e->isym.st_value);
12336 }
12337
c152c796
AM
12338 dest = dynsym + e->dynindx * bed->s->sizeof_sym;
12339 bed->s->swap_symbol_out (abfd, &sym, dest, 0);
12340 }
12341 }
c152c796
AM
12342 }
12343
12344 /* We get the global symbols from the hash table. */
12345 eoinfo.failed = FALSE;
12346 eoinfo.localsyms = FALSE;
8b127cbc 12347 eoinfo.flinfo = &flinfo;
7686d77d 12348 bfd_hash_traverse (&info->hash->table, elf_link_output_extsym, &eoinfo);
c152c796
AM
12349 if (eoinfo.failed)
12350 return FALSE;
12351
12352 /* If backend needs to output some symbols not present in the hash
12353 table, do it now. */
8539e4e8
AM
12354 if (bed->elf_backend_output_arch_syms
12355 && (info->strip != strip_all || emit_relocs))
c152c796 12356 {
6e0b88f1 12357 typedef int (*out_sym_func)
c152c796
AM
12358 (void *, const char *, Elf_Internal_Sym *, asection *,
12359 struct elf_link_hash_entry *);
12360
12361 if (! ((*bed->elf_backend_output_arch_syms)
ef10c3ac
L
12362 (abfd, info, &flinfo,
12363 (out_sym_func) elf_link_output_symstrtab)))
c152c796
AM
12364 return FALSE;
12365 }
12366
ef10c3ac
L
12367 /* Finalize the .strtab section. */
12368 _bfd_elf_strtab_finalize (flinfo.symstrtab);
12369
12370 /* Swap out the .strtab section. */
12371 if (!elf_link_swap_symbols_out (&flinfo))
c152c796
AM
12372 return FALSE;
12373
12374 /* Now we know the size of the symtab section. */
c152c796
AM
12375 if (bfd_get_symcount (abfd) > 0)
12376 {
ee3b52e9
L
12377 /* Finish up and write out the symbol string table (.strtab)
12378 section. */
ad32986f 12379 Elf_Internal_Shdr *symstrtab_hdr = NULL;
8539e4e8
AM
12380 file_ptr off = symtab_hdr->sh_offset + symtab_hdr->sh_size;
12381
ad32986f 12382 if (elf_symtab_shndx_list (abfd))
8539e4e8 12383 {
ad32986f 12384 symtab_shndx_hdr = & elf_symtab_shndx_list (abfd)->hdr;
8539e4e8 12385
ad32986f
NC
12386 if (symtab_shndx_hdr != NULL && symtab_shndx_hdr->sh_name != 0)
12387 {
12388 symtab_shndx_hdr->sh_type = SHT_SYMTAB_SHNDX;
12389 symtab_shndx_hdr->sh_entsize = sizeof (Elf_External_Sym_Shndx);
12390 symtab_shndx_hdr->sh_addralign = sizeof (Elf_External_Sym_Shndx);
12391 amt = bfd_get_symcount (abfd) * sizeof (Elf_External_Sym_Shndx);
12392 symtab_shndx_hdr->sh_size = amt;
8539e4e8 12393
ad32986f
NC
12394 off = _bfd_elf_assign_file_position_for_section (symtab_shndx_hdr,
12395 off, TRUE);
12396
12397 if (bfd_seek (abfd, symtab_shndx_hdr->sh_offset, SEEK_SET) != 0
12398 || (bfd_bwrite (flinfo.symshndxbuf, amt, abfd) != amt))
12399 return FALSE;
12400 }
8539e4e8 12401 }
ee3b52e9
L
12402
12403 symstrtab_hdr = &elf_tdata (abfd)->strtab_hdr;
12404 /* sh_name was set in prep_headers. */
12405 symstrtab_hdr->sh_type = SHT_STRTAB;
84865015 12406 symstrtab_hdr->sh_flags = bed->elf_strtab_flags;
ee3b52e9 12407 symstrtab_hdr->sh_addr = 0;
ef10c3ac 12408 symstrtab_hdr->sh_size = _bfd_elf_strtab_size (flinfo.symstrtab);
ee3b52e9
L
12409 symstrtab_hdr->sh_entsize = 0;
12410 symstrtab_hdr->sh_link = 0;
12411 symstrtab_hdr->sh_info = 0;
12412 /* sh_offset is set just below. */
12413 symstrtab_hdr->sh_addralign = 1;
12414
12415 off = _bfd_elf_assign_file_position_for_section (symstrtab_hdr,
12416 off, TRUE);
12417 elf_next_file_pos (abfd) = off;
12418
c152c796 12419 if (bfd_seek (abfd, symstrtab_hdr->sh_offset, SEEK_SET) != 0
ef10c3ac 12420 || ! _bfd_elf_strtab_emit (abfd, flinfo.symstrtab))
c152c796
AM
12421 return FALSE;
12422 }
12423
76359541
TP
12424 if (info->out_implib_bfd && !elf_output_implib (abfd, info))
12425 {
871b3ab2 12426 _bfd_error_handler (_("%pB: failed to generate import library"),
4eca0228 12427 info->out_implib_bfd);
76359541
TP
12428 return FALSE;
12429 }
12430
c152c796
AM
12431 /* Adjust the relocs to have the correct symbol indices. */
12432 for (o = abfd->sections; o != NULL; o = o->next)
12433 {
d4730f92 12434 struct bfd_elf_section_data *esdo = elf_section_data (o);
28dbcedc 12435 bfd_boolean sort;
10bbbc1d 12436
c152c796
AM
12437 if ((o->flags & SEC_RELOC) == 0)
12438 continue;
12439
28dbcedc 12440 sort = bed->sort_relocs_p == NULL || (*bed->sort_relocs_p) (o);
bca6d0e3 12441 if (esdo->rel.hdr != NULL
10bbbc1d 12442 && !elf_link_adjust_relocs (abfd, o, &esdo->rel, sort, info))
bca6d0e3
AM
12443 return FALSE;
12444 if (esdo->rela.hdr != NULL
10bbbc1d 12445 && !elf_link_adjust_relocs (abfd, o, &esdo->rela, sort, info))
bca6d0e3 12446 return FALSE;
c152c796
AM
12447
12448 /* Set the reloc_count field to 0 to prevent write_relocs from
12449 trying to swap the relocs out itself. */
12450 o->reloc_count = 0;
12451 }
12452
12453 if (dynamic && info->combreloc && dynobj != NULL)
12454 relativecount = elf_link_sort_relocs (abfd, info, &reldyn);
12455
12456 /* If we are linking against a dynamic object, or generating a
12457 shared library, finish up the dynamic linking information. */
12458 if (dynamic)
12459 {
12460 bfd_byte *dyncon, *dynconend;
12461
12462 /* Fix up .dynamic entries. */
3d4d4302 12463 o = bfd_get_linker_section (dynobj, ".dynamic");
c152c796
AM
12464 BFD_ASSERT (o != NULL);
12465
12466 dyncon = o->contents;
eea6121a 12467 dynconend = o->contents + o->size;
c152c796
AM
12468 for (; dyncon < dynconend; dyncon += bed->s->sizeof_dyn)
12469 {
12470 Elf_Internal_Dyn dyn;
12471 const char *name;
12472 unsigned int type;
64487780
AM
12473 bfd_size_type sh_size;
12474 bfd_vma sh_addr;
c152c796
AM
12475
12476 bed->s->swap_dyn_in (dynobj, dyncon, &dyn);
12477
12478 switch (dyn.d_tag)
12479 {
12480 default:
12481 continue;
12482 case DT_NULL:
12483 if (relativecount > 0 && dyncon + bed->s->sizeof_dyn < dynconend)
12484 {
12485 switch (elf_section_data (reldyn)->this_hdr.sh_type)
12486 {
12487 case SHT_REL: dyn.d_tag = DT_RELCOUNT; break;
12488 case SHT_RELA: dyn.d_tag = DT_RELACOUNT; break;
12489 default: continue;
12490 }
12491 dyn.d_un.d_val = relativecount;
12492 relativecount = 0;
12493 break;
12494 }
12495 continue;
12496
12497 case DT_INIT:
12498 name = info->init_function;
12499 goto get_sym;
12500 case DT_FINI:
12501 name = info->fini_function;
12502 get_sym:
12503 {
12504 struct elf_link_hash_entry *h;
12505
64f52338 12506 h = elf_link_hash_lookup (htab, name, FALSE, FALSE, TRUE);
c152c796
AM
12507 if (h != NULL
12508 && (h->root.type == bfd_link_hash_defined
12509 || h->root.type == bfd_link_hash_defweak))
12510 {
bef26483 12511 dyn.d_un.d_ptr = h->root.u.def.value;
c152c796
AM
12512 o = h->root.u.def.section;
12513 if (o->output_section != NULL)
bef26483 12514 dyn.d_un.d_ptr += (o->output_section->vma
c152c796
AM
12515 + o->output_offset);
12516 else
12517 {
12518 /* The symbol is imported from another shared
12519 library and does not apply to this one. */
bef26483 12520 dyn.d_un.d_ptr = 0;
c152c796
AM
12521 }
12522 break;
12523 }
12524 }
12525 continue;
12526
12527 case DT_PREINIT_ARRAYSZ:
12528 name = ".preinit_array";
4ade44b7 12529 goto get_out_size;
c152c796
AM
12530 case DT_INIT_ARRAYSZ:
12531 name = ".init_array";
4ade44b7 12532 goto get_out_size;
c152c796
AM
12533 case DT_FINI_ARRAYSZ:
12534 name = ".fini_array";
4ade44b7 12535 get_out_size:
c152c796
AM
12536 o = bfd_get_section_by_name (abfd, name);
12537 if (o == NULL)
12538 {
4eca0228 12539 _bfd_error_handler
4ade44b7 12540 (_("could not find section %s"), name);
c152c796
AM
12541 goto error_return;
12542 }
eea6121a 12543 if (o->size == 0)
4eca0228 12544 _bfd_error_handler
c152c796 12545 (_("warning: %s section has zero size"), name);
eea6121a 12546 dyn.d_un.d_val = o->size;
c152c796
AM
12547 break;
12548
12549 case DT_PREINIT_ARRAY:
12550 name = ".preinit_array";
4ade44b7 12551 goto get_out_vma;
c152c796
AM
12552 case DT_INIT_ARRAY:
12553 name = ".init_array";
4ade44b7 12554 goto get_out_vma;
c152c796
AM
12555 case DT_FINI_ARRAY:
12556 name = ".fini_array";
4ade44b7
AM
12557 get_out_vma:
12558 o = bfd_get_section_by_name (abfd, name);
12559 goto do_vma;
c152c796
AM
12560
12561 case DT_HASH:
12562 name = ".hash";
12563 goto get_vma;
fdc90cb4
JJ
12564 case DT_GNU_HASH:
12565 name = ".gnu.hash";
12566 goto get_vma;
c152c796
AM
12567 case DT_STRTAB:
12568 name = ".dynstr";
12569 goto get_vma;
12570 case DT_SYMTAB:
12571 name = ".dynsym";
12572 goto get_vma;
12573 case DT_VERDEF:
12574 name = ".gnu.version_d";
12575 goto get_vma;
12576 case DT_VERNEED:
12577 name = ".gnu.version_r";
12578 goto get_vma;
12579 case DT_VERSYM:
12580 name = ".gnu.version";
12581 get_vma:
4ade44b7
AM
12582 o = bfd_get_linker_section (dynobj, name);
12583 do_vma:
b3293efa 12584 if (o == NULL || bfd_is_abs_section (o->output_section))
c152c796 12585 {
4eca0228 12586 _bfd_error_handler
4ade44b7 12587 (_("could not find section %s"), name);
c152c796
AM
12588 goto error_return;
12589 }
894891db
NC
12590 if (elf_section_data (o->output_section)->this_hdr.sh_type == SHT_NOTE)
12591 {
4eca0228 12592 _bfd_error_handler
894891db
NC
12593 (_("warning: section '%s' is being made into a note"), name);
12594 bfd_set_error (bfd_error_nonrepresentable_section);
12595 goto error_return;
12596 }
4ade44b7 12597 dyn.d_un.d_ptr = o->output_section->vma + o->output_offset;
c152c796
AM
12598 break;
12599
12600 case DT_REL:
12601 case DT_RELA:
12602 case DT_RELSZ:
12603 case DT_RELASZ:
12604 if (dyn.d_tag == DT_REL || dyn.d_tag == DT_RELSZ)
12605 type = SHT_REL;
12606 else
12607 type = SHT_RELA;
64487780
AM
12608 sh_size = 0;
12609 sh_addr = 0;
c152c796
AM
12610 for (i = 1; i < elf_numsections (abfd); i++)
12611 {
12612 Elf_Internal_Shdr *hdr;
12613
12614 hdr = elf_elfsections (abfd)[i];
12615 if (hdr->sh_type == type
12616 && (hdr->sh_flags & SHF_ALLOC) != 0)
12617 {
64487780
AM
12618 sh_size += hdr->sh_size;
12619 if (sh_addr == 0
12620 || sh_addr > hdr->sh_addr)
12621 sh_addr = hdr->sh_addr;
c152c796
AM
12622 }
12623 }
64487780 12624
64f52338
AM
12625 if (bed->dtrel_excludes_plt && htab->srelplt != NULL)
12626 {
12627 /* Don't count procedure linkage table relocs in the
12628 overall reloc count. */
64487780
AM
12629 sh_size -= htab->srelplt->size;
12630 if (sh_size == 0)
12631 /* If the size is zero, make the address zero too.
12632 This is to avoid a glibc bug. If the backend
12633 emits DT_RELA/DT_RELASZ even when DT_RELASZ is
12634 zero, then we'll put DT_RELA at the end of
12635 DT_JMPREL. glibc will interpret the end of
12636 DT_RELA matching the end of DT_JMPREL as the
12637 case where DT_RELA includes DT_JMPREL, and for
12638 LD_BIND_NOW will decide that processing DT_RELA
12639 will process the PLT relocs too. Net result:
12640 No PLT relocs applied. */
12641 sh_addr = 0;
12642
64f52338
AM
12643 /* If .rela.plt is the first .rela section, exclude
12644 it from DT_RELA. */
64487780
AM
12645 else if (sh_addr == (htab->srelplt->output_section->vma
12646 + htab->srelplt->output_offset))
12647 sh_addr += htab->srelplt->size;
64f52338 12648 }
64487780
AM
12649
12650 if (dyn.d_tag == DT_RELSZ || dyn.d_tag == DT_RELASZ)
12651 dyn.d_un.d_val = sh_size;
12652 else
12653 dyn.d_un.d_ptr = sh_addr;
c152c796
AM
12654 break;
12655 }
12656 bed->s->swap_dyn_out (dynobj, &dyn, dyncon);
12657 }
12658 }
12659
12660 /* If we have created any dynamic sections, then output them. */
12661 if (dynobj != NULL)
12662 {
12663 if (! (*bed->elf_backend_finish_dynamic_sections) (abfd, info))
12664 goto error_return;
12665
943284cc 12666 /* Check for DT_TEXTREL (late, in case the backend removes it). */
0e1862bb 12667 if (((info->warn_shared_textrel && bfd_link_pic (info))
be7b303d 12668 || info->error_textrel)
3d4d4302 12669 && (o = bfd_get_linker_section (dynobj, ".dynamic")) != NULL)
943284cc
DJ
12670 {
12671 bfd_byte *dyncon, *dynconend;
12672
943284cc
DJ
12673 dyncon = o->contents;
12674 dynconend = o->contents + o->size;
12675 for (; dyncon < dynconend; dyncon += bed->s->sizeof_dyn)
12676 {
12677 Elf_Internal_Dyn dyn;
12678
12679 bed->s->swap_dyn_in (dynobj, dyncon, &dyn);
12680
12681 if (dyn.d_tag == DT_TEXTREL)
12682 {
c192a133
AM
12683 if (info->error_textrel)
12684 info->callbacks->einfo
9793eb77 12685 (_("%P%X: read-only segment has dynamic relocations\n"));
c192a133
AM
12686 else
12687 info->callbacks->einfo
9793eb77 12688 (_("%P: warning: creating a DT_TEXTREL in a shared object\n"));
943284cc
DJ
12689 break;
12690 }
12691 }
12692 }
12693
c152c796
AM
12694 for (o = dynobj->sections; o != NULL; o = o->next)
12695 {
12696 if ((o->flags & SEC_HAS_CONTENTS) == 0
eea6121a 12697 || o->size == 0
c152c796
AM
12698 || o->output_section == bfd_abs_section_ptr)
12699 continue;
12700 if ((o->flags & SEC_LINKER_CREATED) == 0)
12701 {
12702 /* At this point, we are only interested in sections
12703 created by _bfd_elf_link_create_dynamic_sections. */
12704 continue;
12705 }
64f52338 12706 if (htab->stab_info.stabstr == o)
3722b82f 12707 continue;
64f52338 12708 if (htab->eh_info.hdr_sec == o)
eea6121a 12709 continue;
3d4d4302 12710 if (strcmp (o->name, ".dynstr") != 0)
c152c796
AM
12711 {
12712 if (! bfd_set_section_contents (abfd, o->output_section,
12713 o->contents,
37b01f6a
DG
12714 (file_ptr) o->output_offset
12715 * bfd_octets_per_byte (abfd),
eea6121a 12716 o->size))
c152c796
AM
12717 goto error_return;
12718 }
12719 else
12720 {
12721 /* The contents of the .dynstr section are actually in a
12722 stringtab. */
8539e4e8
AM
12723 file_ptr off;
12724
c152c796
AM
12725 off = elf_section_data (o->output_section)->this_hdr.sh_offset;
12726 if (bfd_seek (abfd, off, SEEK_SET) != 0
64f52338 12727 || !_bfd_elf_strtab_emit (abfd, htab->dynstr))
c152c796
AM
12728 goto error_return;
12729 }
12730 }
12731 }
12732
7bdf4127 12733 if (!info->resolve_section_groups)
c152c796
AM
12734 {
12735 bfd_boolean failed = FALSE;
12736
7bdf4127 12737 BFD_ASSERT (bfd_link_relocatable (info));
c152c796
AM
12738 bfd_map_over_sections (abfd, bfd_elf_set_group_contents, &failed);
12739 if (failed)
12740 goto error_return;
12741 }
12742
12743 /* If we have optimized stabs strings, output them. */
64f52338 12744 if (htab->stab_info.stabstr != NULL)
c152c796 12745 {
64f52338 12746 if (!_bfd_write_stab_strings (abfd, &htab->stab_info))
c152c796
AM
12747 goto error_return;
12748 }
12749
9f7c3e5e
AM
12750 if (! _bfd_elf_write_section_eh_frame_hdr (abfd, info))
12751 goto error_return;
c152c796 12752
9f7c3e5e 12753 elf_final_link_free (abfd, &flinfo);
c152c796 12754
12bd6957 12755 elf_linker (abfd) = TRUE;
c152c796 12756
104d59d1
JM
12757 if (attr_section)
12758 {
a50b1753 12759 bfd_byte *contents = (bfd_byte *) bfd_malloc (attr_size);
104d59d1 12760 if (contents == NULL)
d0f16d5e 12761 return FALSE; /* Bail out and fail. */
104d59d1
JM
12762 bfd_elf_set_obj_attr_contents (abfd, contents, attr_size);
12763 bfd_set_section_contents (abfd, attr_section, contents, 0, attr_size);
12764 free (contents);
12765 }
12766
c152c796
AM
12767 return TRUE;
12768
12769 error_return:
9f7c3e5e 12770 elf_final_link_free (abfd, &flinfo);
c152c796
AM
12771 return FALSE;
12772}
12773\f
5241d853
RS
12774/* Initialize COOKIE for input bfd ABFD. */
12775
12776static bfd_boolean
12777init_reloc_cookie (struct elf_reloc_cookie *cookie,
12778 struct bfd_link_info *info, bfd *abfd)
12779{
12780 Elf_Internal_Shdr *symtab_hdr;
12781 const struct elf_backend_data *bed;
12782
12783 bed = get_elf_backend_data (abfd);
12784 symtab_hdr = &elf_tdata (abfd)->symtab_hdr;
12785
12786 cookie->abfd = abfd;
12787 cookie->sym_hashes = elf_sym_hashes (abfd);
12788 cookie->bad_symtab = elf_bad_symtab (abfd);
12789 if (cookie->bad_symtab)
12790 {
12791 cookie->locsymcount = symtab_hdr->sh_size / bed->s->sizeof_sym;
12792 cookie->extsymoff = 0;
12793 }
12794 else
12795 {
12796 cookie->locsymcount = symtab_hdr->sh_info;
12797 cookie->extsymoff = symtab_hdr->sh_info;
12798 }
12799
12800 if (bed->s->arch_size == 32)
12801 cookie->r_sym_shift = 8;
12802 else
12803 cookie->r_sym_shift = 32;
12804
12805 cookie->locsyms = (Elf_Internal_Sym *) symtab_hdr->contents;
12806 if (cookie->locsyms == NULL && cookie->locsymcount != 0)
12807 {
12808 cookie->locsyms = bfd_elf_get_elf_syms (abfd, symtab_hdr,
12809 cookie->locsymcount, 0,
12810 NULL, NULL, NULL);
12811 if (cookie->locsyms == NULL)
12812 {
12813 info->callbacks->einfo (_("%P%X: can not read symbols: %E\n"));
12814 return FALSE;
12815 }
12816 if (info->keep_memory)
12817 symtab_hdr->contents = (bfd_byte *) cookie->locsyms;
12818 }
12819 return TRUE;
12820}
12821
12822/* Free the memory allocated by init_reloc_cookie, if appropriate. */
12823
12824static void
12825fini_reloc_cookie (struct elf_reloc_cookie *cookie, bfd *abfd)
12826{
12827 Elf_Internal_Shdr *symtab_hdr;
12828
12829 symtab_hdr = &elf_tdata (abfd)->symtab_hdr;
12830 if (cookie->locsyms != NULL
12831 && symtab_hdr->contents != (unsigned char *) cookie->locsyms)
12832 free (cookie->locsyms);
12833}
12834
12835/* Initialize the relocation information in COOKIE for input section SEC
12836 of input bfd ABFD. */
12837
12838static bfd_boolean
12839init_reloc_cookie_rels (struct elf_reloc_cookie *cookie,
12840 struct bfd_link_info *info, bfd *abfd,
12841 asection *sec)
12842{
5241d853
RS
12843 if (sec->reloc_count == 0)
12844 {
12845 cookie->rels = NULL;
12846 cookie->relend = NULL;
12847 }
12848 else
12849 {
5241d853
RS
12850 cookie->rels = _bfd_elf_link_read_relocs (abfd, sec, NULL, NULL,
12851 info->keep_memory);
12852 if (cookie->rels == NULL)
12853 return FALSE;
12854 cookie->rel = cookie->rels;
056bafd4 12855 cookie->relend = cookie->rels + sec->reloc_count;
5241d853
RS
12856 }
12857 cookie->rel = cookie->rels;
12858 return TRUE;
12859}
12860
12861/* Free the memory allocated by init_reloc_cookie_rels,
12862 if appropriate. */
12863
12864static void
12865fini_reloc_cookie_rels (struct elf_reloc_cookie *cookie,
12866 asection *sec)
12867{
12868 if (cookie->rels && elf_section_data (sec)->relocs != cookie->rels)
12869 free (cookie->rels);
12870}
12871
12872/* Initialize the whole of COOKIE for input section SEC. */
12873
12874static bfd_boolean
12875init_reloc_cookie_for_section (struct elf_reloc_cookie *cookie,
12876 struct bfd_link_info *info,
12877 asection *sec)
12878{
12879 if (!init_reloc_cookie (cookie, info, sec->owner))
12880 goto error1;
12881 if (!init_reloc_cookie_rels (cookie, info, sec->owner, sec))
12882 goto error2;
12883 return TRUE;
12884
12885 error2:
12886 fini_reloc_cookie (cookie, sec->owner);
12887 error1:
12888 return FALSE;
12889}
12890
12891/* Free the memory allocated by init_reloc_cookie_for_section,
12892 if appropriate. */
12893
12894static void
12895fini_reloc_cookie_for_section (struct elf_reloc_cookie *cookie,
12896 asection *sec)
12897{
12898 fini_reloc_cookie_rels (cookie, sec);
12899 fini_reloc_cookie (cookie, sec->owner);
12900}
12901\f
c152c796
AM
12902/* Garbage collect unused sections. */
12903
07adf181
AM
12904/* Default gc_mark_hook. */
12905
12906asection *
12907_bfd_elf_gc_mark_hook (asection *sec,
12908 struct bfd_link_info *info ATTRIBUTE_UNUSED,
12909 Elf_Internal_Rela *rel ATTRIBUTE_UNUSED,
12910 struct elf_link_hash_entry *h,
12911 Elf_Internal_Sym *sym)
12912{
12913 if (h != NULL)
12914 {
12915 switch (h->root.type)
12916 {
12917 case bfd_link_hash_defined:
12918 case bfd_link_hash_defweak:
12919 return h->root.u.def.section;
12920
12921 case bfd_link_hash_common:
12922 return h->root.u.c.p->section;
12923
12924 default:
12925 break;
12926 }
12927 }
12928 else
12929 return bfd_section_from_elf_index (sec->owner, sym->st_shndx);
12930
12931 return NULL;
12932}
12933
9e223787 12934/* Return the debug definition section. */
b7c871ed
L
12935
12936static asection *
12937elf_gc_mark_debug_section (asection *sec ATTRIBUTE_UNUSED,
12938 struct bfd_link_info *info ATTRIBUTE_UNUSED,
12939 Elf_Internal_Rela *rel ATTRIBUTE_UNUSED,
12940 struct elf_link_hash_entry *h,
9e223787 12941 Elf_Internal_Sym *sym)
b7c871ed 12942{
9e223787
L
12943 if (h != NULL)
12944 {
12945 /* Return the global debug definition section. */
12946 if ((h->root.type == bfd_link_hash_defined
12947 || h->root.type == bfd_link_hash_defweak)
12948 && (h->root.u.def.section->flags & SEC_DEBUGGING) != 0)
12949 return h->root.u.def.section;
12950 }
12951 else
12952 {
12953 /* Return the local debug definition section. */
12954 asection *isec = bfd_section_from_elf_index (sec->owner,
12955 sym->st_shndx);
12956 if ((isec->flags & SEC_DEBUGGING) != 0)
12957 return isec;
12958 }
b7c871ed
L
12959
12960 return NULL;
12961}
12962
5241d853
RS
12963/* COOKIE->rel describes a relocation against section SEC, which is
12964 a section we've decided to keep. Return the section that contains
12965 the relocation symbol, or NULL if no section contains it. */
12966
12967asection *
12968_bfd_elf_gc_mark_rsec (struct bfd_link_info *info, asection *sec,
12969 elf_gc_mark_hook_fn gc_mark_hook,
1cce69b9
AM
12970 struct elf_reloc_cookie *cookie,
12971 bfd_boolean *start_stop)
5241d853
RS
12972{
12973 unsigned long r_symndx;
12974 struct elf_link_hash_entry *h;
12975
12976 r_symndx = cookie->rel->r_info >> cookie->r_sym_shift;
cf35638d 12977 if (r_symndx == STN_UNDEF)
5241d853
RS
12978 return NULL;
12979
12980 if (r_symndx >= cookie->locsymcount
12981 || ELF_ST_BIND (cookie->locsyms[r_symndx].st_info) != STB_LOCAL)
12982 {
12983 h = cookie->sym_hashes[r_symndx - cookie->extsymoff];
263ddf68
L
12984 if (h == NULL)
12985 {
871b3ab2 12986 info->callbacks->einfo (_("%F%P: corrupt input: %pB\n"),
263ddf68
L
12987 sec->owner);
12988 return NULL;
12989 }
5241d853
RS
12990 while (h->root.type == bfd_link_hash_indirect
12991 || h->root.type == bfd_link_hash_warning)
12992 h = (struct elf_link_hash_entry *) h->root.u.i.link;
1d5316ab 12993 h->mark = 1;
4e6b54a6
AM
12994 /* If this symbol is weak and there is a non-weak definition, we
12995 keep the non-weak definition because many backends put
12996 dynamic reloc info on the non-weak definition for code
12997 handling copy relocs. */
60d67dc8
AM
12998 if (h->is_weakalias)
12999 weakdef (h)->mark = 1;
1cce69b9 13000
a6a4679f 13001 if (start_stop != NULL)
1cce69b9 13002 {
7dba9362
AM
13003 /* To work around a glibc bug, mark XXX input sections
13004 when there is a reference to __start_XXX or __stop_XXX
13005 symbols. */
cbd0eecf 13006 if (h->start_stop)
1cce69b9 13007 {
cbd0eecf 13008 asection *s = h->u2.start_stop_section;
a6a4679f
AM
13009 *start_stop = !s->gc_mark;
13010 return s;
1cce69b9
AM
13011 }
13012 }
13013
5241d853
RS
13014 return (*gc_mark_hook) (sec, info, cookie->rel, h, NULL);
13015 }
13016
13017 return (*gc_mark_hook) (sec, info, cookie->rel, NULL,
13018 &cookie->locsyms[r_symndx]);
13019}
13020
13021/* COOKIE->rel describes a relocation against section SEC, which is
13022 a section we've decided to keep. Mark the section that contains
9d0a14d3 13023 the relocation symbol. */
5241d853
RS
13024
13025bfd_boolean
13026_bfd_elf_gc_mark_reloc (struct bfd_link_info *info,
13027 asection *sec,
13028 elf_gc_mark_hook_fn gc_mark_hook,
9d0a14d3 13029 struct elf_reloc_cookie *cookie)
5241d853
RS
13030{
13031 asection *rsec;
1cce69b9 13032 bfd_boolean start_stop = FALSE;
5241d853 13033
1cce69b9
AM
13034 rsec = _bfd_elf_gc_mark_rsec (info, sec, gc_mark_hook, cookie, &start_stop);
13035 while (rsec != NULL)
5241d853 13036 {
1cce69b9
AM
13037 if (!rsec->gc_mark)
13038 {
13039 if (bfd_get_flavour (rsec->owner) != bfd_target_elf_flavour
13040 || (rsec->owner->flags & DYNAMIC) != 0)
13041 rsec->gc_mark = 1;
13042 else if (!_bfd_elf_gc_mark (info, rsec, gc_mark_hook))
13043 return FALSE;
13044 }
13045 if (!start_stop)
13046 break;
199af150 13047 rsec = bfd_get_next_section_by_name (rsec->owner, rsec);
5241d853
RS
13048 }
13049 return TRUE;
13050}
13051
07adf181
AM
13052/* The mark phase of garbage collection. For a given section, mark
13053 it and any sections in this section's group, and all the sections
13054 which define symbols to which it refers. */
13055
ccfa59ea
AM
13056bfd_boolean
13057_bfd_elf_gc_mark (struct bfd_link_info *info,
13058 asection *sec,
6a5bb875 13059 elf_gc_mark_hook_fn gc_mark_hook)
c152c796
AM
13060{
13061 bfd_boolean ret;
9d0a14d3 13062 asection *group_sec, *eh_frame;
c152c796
AM
13063
13064 sec->gc_mark = 1;
13065
13066 /* Mark all the sections in the group. */
13067 group_sec = elf_section_data (sec)->next_in_group;
13068 if (group_sec && !group_sec->gc_mark)
ccfa59ea 13069 if (!_bfd_elf_gc_mark (info, group_sec, gc_mark_hook))
c152c796
AM
13070 return FALSE;
13071
13072 /* Look through the section relocs. */
13073 ret = TRUE;
9d0a14d3
RS
13074 eh_frame = elf_eh_frame_section (sec->owner);
13075 if ((sec->flags & SEC_RELOC) != 0
13076 && sec->reloc_count > 0
13077 && sec != eh_frame)
c152c796 13078 {
5241d853 13079 struct elf_reloc_cookie cookie;
c152c796 13080
5241d853
RS
13081 if (!init_reloc_cookie_for_section (&cookie, info, sec))
13082 ret = FALSE;
c152c796 13083 else
c152c796 13084 {
5241d853 13085 for (; cookie.rel < cookie.relend; cookie.rel++)
9d0a14d3 13086 if (!_bfd_elf_gc_mark_reloc (info, sec, gc_mark_hook, &cookie))
5241d853
RS
13087 {
13088 ret = FALSE;
13089 break;
13090 }
13091 fini_reloc_cookie_for_section (&cookie, sec);
c152c796
AM
13092 }
13093 }
9d0a14d3
RS
13094
13095 if (ret && eh_frame && elf_fde_list (sec))
13096 {
13097 struct elf_reloc_cookie cookie;
13098
13099 if (!init_reloc_cookie_for_section (&cookie, info, eh_frame))
13100 ret = FALSE;
13101 else
13102 {
13103 if (!_bfd_elf_gc_mark_fdes (info, sec, eh_frame,
13104 gc_mark_hook, &cookie))
13105 ret = FALSE;
13106 fini_reloc_cookie_for_section (&cookie, eh_frame);
13107 }
13108 }
13109
2f0c68f2
CM
13110 eh_frame = elf_section_eh_frame_entry (sec);
13111 if (ret && eh_frame && !eh_frame->gc_mark)
13112 if (!_bfd_elf_gc_mark (info, eh_frame, gc_mark_hook))
13113 ret = FALSE;
13114
c152c796
AM
13115 return ret;
13116}
13117
3c758495
TG
13118/* Scan and mark sections in a special or debug section group. */
13119
13120static void
13121_bfd_elf_gc_mark_debug_special_section_group (asection *grp)
13122{
13123 /* Point to first section of section group. */
13124 asection *ssec;
13125 /* Used to iterate the section group. */
13126 asection *msec;
13127
13128 bfd_boolean is_special_grp = TRUE;
13129 bfd_boolean is_debug_grp = TRUE;
13130
13131 /* First scan to see if group contains any section other than debug
13132 and special section. */
13133 ssec = msec = elf_next_in_group (grp);
13134 do
13135 {
13136 if ((msec->flags & SEC_DEBUGGING) == 0)
13137 is_debug_grp = FALSE;
13138
13139 if ((msec->flags & (SEC_ALLOC | SEC_LOAD | SEC_RELOC)) != 0)
13140 is_special_grp = FALSE;
13141
13142 msec = elf_next_in_group (msec);
13143 }
13144 while (msec != ssec);
13145
13146 /* If this is a pure debug section group or pure special section group,
13147 keep all sections in this group. */
13148 if (is_debug_grp || is_special_grp)
13149 {
13150 do
13151 {
13152 msec->gc_mark = 1;
13153 msec = elf_next_in_group (msec);
13154 }
13155 while (msec != ssec);
13156 }
13157}
13158
7f6ab9f8
AM
13159/* Keep debug and special sections. */
13160
13161bfd_boolean
13162_bfd_elf_gc_mark_extra_sections (struct bfd_link_info *info,
13163 elf_gc_mark_hook_fn mark_hook ATTRIBUTE_UNUSED)
13164{
13165 bfd *ibfd;
13166
c72f2fb2 13167 for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link.next)
7f6ab9f8
AM
13168 {
13169 asection *isec;
13170 bfd_boolean some_kept;
b40bf0a2 13171 bfd_boolean debug_frag_seen;
b7c871ed 13172 bfd_boolean has_kept_debug_info;
7f6ab9f8
AM
13173
13174 if (bfd_get_flavour (ibfd) != bfd_target_elf_flavour)
13175 continue;
57963c05
AM
13176 isec = ibfd->sections;
13177 if (isec == NULL || isec->sec_info_type == SEC_INFO_TYPE_JUST_SYMS)
13178 continue;
7f6ab9f8 13179
b40bf0a2
NC
13180 /* Ensure all linker created sections are kept,
13181 see if any other section is already marked,
13182 and note if we have any fragmented debug sections. */
b7c871ed 13183 debug_frag_seen = some_kept = has_kept_debug_info = FALSE;
7f6ab9f8
AM
13184 for (isec = ibfd->sections; isec != NULL; isec = isec->next)
13185 {
13186 if ((isec->flags & SEC_LINKER_CREATED) != 0)
13187 isec->gc_mark = 1;
eb026f09
AM
13188 else if (isec->gc_mark
13189 && (isec->flags & SEC_ALLOC) != 0
13190 && elf_section_type (isec) != SHT_NOTE)
7f6ab9f8 13191 some_kept = TRUE;
b40bf0a2 13192
535b785f 13193 if (!debug_frag_seen
b40bf0a2
NC
13194 && (isec->flags & SEC_DEBUGGING)
13195 && CONST_STRNEQ (isec->name, ".debug_line."))
13196 debug_frag_seen = TRUE;
7f6ab9f8
AM
13197 }
13198
eb026f09
AM
13199 /* If no non-note alloc section in this file will be kept, then
13200 we can toss out the debug and special sections. */
7f6ab9f8
AM
13201 if (!some_kept)
13202 continue;
13203
13204 /* Keep debug and special sections like .comment when they are
3c758495
TG
13205 not part of a group. Also keep section groups that contain
13206 just debug sections or special sections. */
7f6ab9f8 13207 for (isec = ibfd->sections; isec != NULL; isec = isec->next)
3c758495
TG
13208 {
13209 if ((isec->flags & SEC_GROUP) != 0)
13210 _bfd_elf_gc_mark_debug_special_section_group (isec);
13211 else if (((isec->flags & SEC_DEBUGGING) != 0
13212 || (isec->flags & (SEC_ALLOC | SEC_LOAD | SEC_RELOC)) == 0)
13213 && elf_next_in_group (isec) == NULL)
13214 isec->gc_mark = 1;
b7c871ed
L
13215 if (isec->gc_mark && (isec->flags & SEC_DEBUGGING) != 0)
13216 has_kept_debug_info = TRUE;
3c758495 13217 }
b40bf0a2 13218
b40bf0a2
NC
13219 /* Look for CODE sections which are going to be discarded,
13220 and find and discard any fragmented debug sections which
13221 are associated with that code section. */
b7c871ed
L
13222 if (debug_frag_seen)
13223 for (isec = ibfd->sections; isec != NULL; isec = isec->next)
13224 if ((isec->flags & SEC_CODE) != 0
13225 && isec->gc_mark == 0)
13226 {
13227 unsigned int ilen;
13228 asection *dsec;
b40bf0a2 13229
b7c871ed 13230 ilen = strlen (isec->name);
b40bf0a2 13231
b7c871ed 13232 /* Association is determined by the name of the debug
07d6d2b8 13233 section containing the name of the code section as
b7c871ed
L
13234 a suffix. For example .debug_line.text.foo is a
13235 debug section associated with .text.foo. */
13236 for (dsec = ibfd->sections; dsec != NULL; dsec = dsec->next)
13237 {
13238 unsigned int dlen;
b40bf0a2 13239
b7c871ed
L
13240 if (dsec->gc_mark == 0
13241 || (dsec->flags & SEC_DEBUGGING) == 0)
13242 continue;
b40bf0a2 13243
b7c871ed 13244 dlen = strlen (dsec->name);
b40bf0a2 13245
b7c871ed
L
13246 if (dlen > ilen
13247 && strncmp (dsec->name + (dlen - ilen),
13248 isec->name, ilen) == 0)
b40bf0a2 13249 dsec->gc_mark = 0;
b7c871ed 13250 }
b40bf0a2 13251 }
b7c871ed
L
13252
13253 /* Mark debug sections referenced by kept debug sections. */
13254 if (has_kept_debug_info)
13255 for (isec = ibfd->sections; isec != NULL; isec = isec->next)
13256 if (isec->gc_mark
13257 && (isec->flags & SEC_DEBUGGING) != 0)
13258 if (!_bfd_elf_gc_mark (info, isec,
13259 elf_gc_mark_debug_section))
13260 return FALSE;
7f6ab9f8
AM
13261 }
13262 return TRUE;
13263}
13264
c152c796 13265static bfd_boolean
ccabcbe5 13266elf_gc_sweep (bfd *abfd, struct bfd_link_info *info)
c152c796
AM
13267{
13268 bfd *sub;
ccabcbe5 13269 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
c152c796 13270
c72f2fb2 13271 for (sub = info->input_bfds; sub != NULL; sub = sub->link.next)
c152c796
AM
13272 {
13273 asection *o;
13274
b19a8f85 13275 if (bfd_get_flavour (sub) != bfd_target_elf_flavour
81742b83 13276 || elf_object_id (sub) != elf_hash_table_id (elf_hash_table (info))
b19a8f85 13277 || !(*bed->relocs_compatible) (sub->xvec, abfd->xvec))
c152c796 13278 continue;
57963c05
AM
13279 o = sub->sections;
13280 if (o == NULL || o->sec_info_type == SEC_INFO_TYPE_JUST_SYMS)
13281 continue;
c152c796
AM
13282
13283 for (o = sub->sections; o != NULL; o = o->next)
13284 {
a33dafc3
L
13285 /* When any section in a section group is kept, we keep all
13286 sections in the section group. If the first member of
13287 the section group is excluded, we will also exclude the
13288 group section. */
13289 if (o->flags & SEC_GROUP)
13290 {
13291 asection *first = elf_next_in_group (o);
13292 o->gc_mark = first->gc_mark;
13293 }
c152c796 13294
1e7eae0d 13295 if (o->gc_mark)
c152c796
AM
13296 continue;
13297
13298 /* Skip sweeping sections already excluded. */
13299 if (o->flags & SEC_EXCLUDE)
13300 continue;
13301
13302 /* Since this is early in the link process, it is simple
13303 to remove a section from the output. */
13304 o->flags |= SEC_EXCLUDE;
13305
c55fe096 13306 if (info->print_gc_sections && o->size != 0)
695344c0 13307 /* xgettext:c-format */
9793eb77 13308 _bfd_error_handler (_("removing unused section '%pA' in file '%pB'"),
c08bb8dd 13309 o, sub);
c152c796
AM
13310 }
13311 }
13312
c152c796
AM
13313 return TRUE;
13314}
13315
13316/* Propagate collected vtable information. This is called through
13317 elf_link_hash_traverse. */
13318
13319static bfd_boolean
13320elf_gc_propagate_vtable_entries_used (struct elf_link_hash_entry *h, void *okp)
13321{
c152c796 13322 /* Those that are not vtables. */
cbd0eecf
L
13323 if (h->start_stop
13324 || h->u2.vtable == NULL
13325 || h->u2.vtable->parent == NULL)
c152c796
AM
13326 return TRUE;
13327
13328 /* Those vtables that do not have parents, we cannot merge. */
cbd0eecf 13329 if (h->u2.vtable->parent == (struct elf_link_hash_entry *) -1)
c152c796
AM
13330 return TRUE;
13331
13332 /* If we've already been done, exit. */
cbd0eecf 13333 if (h->u2.vtable->used && h->u2.vtable->used[-1])
c152c796
AM
13334 return TRUE;
13335
13336 /* Make sure the parent's table is up to date. */
cbd0eecf 13337 elf_gc_propagate_vtable_entries_used (h->u2.vtable->parent, okp);
c152c796 13338
cbd0eecf 13339 if (h->u2.vtable->used == NULL)
c152c796
AM
13340 {
13341 /* None of this table's entries were referenced. Re-use the
13342 parent's table. */
cbd0eecf
L
13343 h->u2.vtable->used = h->u2.vtable->parent->u2.vtable->used;
13344 h->u2.vtable->size = h->u2.vtable->parent->u2.vtable->size;
c152c796
AM
13345 }
13346 else
13347 {
13348 size_t n;
13349 bfd_boolean *cu, *pu;
13350
13351 /* Or the parent's entries into ours. */
cbd0eecf 13352 cu = h->u2.vtable->used;
c152c796 13353 cu[-1] = TRUE;
cbd0eecf 13354 pu = h->u2.vtable->parent->u2.vtable->used;
c152c796
AM
13355 if (pu != NULL)
13356 {
13357 const struct elf_backend_data *bed;
13358 unsigned int log_file_align;
13359
13360 bed = get_elf_backend_data (h->root.u.def.section->owner);
13361 log_file_align = bed->s->log_file_align;
cbd0eecf 13362 n = h->u2.vtable->parent->u2.vtable->size >> log_file_align;
c152c796
AM
13363 while (n--)
13364 {
13365 if (*pu)
13366 *cu = TRUE;
13367 pu++;
13368 cu++;
13369 }
13370 }
13371 }
13372
13373 return TRUE;
13374}
13375
13376static bfd_boolean
13377elf_gc_smash_unused_vtentry_relocs (struct elf_link_hash_entry *h, void *okp)
13378{
13379 asection *sec;
13380 bfd_vma hstart, hend;
13381 Elf_Internal_Rela *relstart, *relend, *rel;
13382 const struct elf_backend_data *bed;
13383 unsigned int log_file_align;
13384
c152c796
AM
13385 /* Take care of both those symbols that do not describe vtables as
13386 well as those that are not loaded. */
cbd0eecf
L
13387 if (h->start_stop
13388 || h->u2.vtable == NULL
13389 || h->u2.vtable->parent == NULL)
c152c796
AM
13390 return TRUE;
13391
13392 BFD_ASSERT (h->root.type == bfd_link_hash_defined
13393 || h->root.type == bfd_link_hash_defweak);
13394
13395 sec = h->root.u.def.section;
13396 hstart = h->root.u.def.value;
13397 hend = hstart + h->size;
13398
13399 relstart = _bfd_elf_link_read_relocs (sec->owner, sec, NULL, NULL, TRUE);
13400 if (!relstart)
13401 return *(bfd_boolean *) okp = FALSE;
13402 bed = get_elf_backend_data (sec->owner);
13403 log_file_align = bed->s->log_file_align;
13404
056bafd4 13405 relend = relstart + sec->reloc_count;
c152c796
AM
13406
13407 for (rel = relstart; rel < relend; ++rel)
13408 if (rel->r_offset >= hstart && rel->r_offset < hend)
13409 {
13410 /* If the entry is in use, do nothing. */
cbd0eecf
L
13411 if (h->u2.vtable->used
13412 && (rel->r_offset - hstart) < h->u2.vtable->size)
c152c796
AM
13413 {
13414 bfd_vma entry = (rel->r_offset - hstart) >> log_file_align;
cbd0eecf 13415 if (h->u2.vtable->used[entry])
c152c796
AM
13416 continue;
13417 }
13418 /* Otherwise, kill it. */
13419 rel->r_offset = rel->r_info = rel->r_addend = 0;
13420 }
13421
13422 return TRUE;
13423}
13424
87538722
AM
13425/* Mark sections containing dynamically referenced symbols. When
13426 building shared libraries, we must assume that any visible symbol is
13427 referenced. */
715df9b8 13428
64d03ab5
AM
13429bfd_boolean
13430bfd_elf_gc_mark_dynamic_ref_symbol (struct elf_link_hash_entry *h, void *inf)
715df9b8 13431{
87538722 13432 struct bfd_link_info *info = (struct bfd_link_info *) inf;
d6f6f455 13433 struct bfd_elf_dynamic_list *d = info->dynamic_list;
87538722 13434
715df9b8
EB
13435 if ((h->root.type == bfd_link_hash_defined
13436 || h->root.type == bfd_link_hash_defweak)
d664fd41 13437 && ((h->ref_dynamic && !h->forced_local)
c4621b33 13438 || ((h->def_regular || ELF_COMMON_DEF_P (h))
87538722 13439 && ELF_ST_VISIBILITY (h->other) != STV_INTERNAL
fd91d419 13440 && ELF_ST_VISIBILITY (h->other) != STV_HIDDEN
0e1862bb 13441 && (!bfd_link_executable (info)
22185505 13442 || info->gc_keep_exported
b407645f
AM
13443 || info->export_dynamic
13444 || (h->dynamic
13445 && d != NULL
13446 && (*d->match) (&d->head, NULL, h->root.root.string)))
422f1182 13447 && (h->versioned >= versioned
54e8959c
L
13448 || !bfd_hide_sym_by_version (info->version_info,
13449 h->root.root.string)))))
715df9b8
EB
13450 h->root.u.def.section->flags |= SEC_KEEP;
13451
13452 return TRUE;
13453}
3b36f7e6 13454
74f0fb50
AM
13455/* Keep all sections containing symbols undefined on the command-line,
13456 and the section containing the entry symbol. */
13457
13458void
13459_bfd_elf_gc_keep (struct bfd_link_info *info)
13460{
13461 struct bfd_sym_chain *sym;
13462
13463 for (sym = info->gc_sym_list; sym != NULL; sym = sym->next)
13464 {
13465 struct elf_link_hash_entry *h;
13466
13467 h = elf_link_hash_lookup (elf_hash_table (info), sym->name,
13468 FALSE, FALSE, FALSE);
13469
13470 if (h != NULL
13471 && (h->root.type == bfd_link_hash_defined
13472 || h->root.type == bfd_link_hash_defweak)
f02cb058
AM
13473 && !bfd_is_abs_section (h->root.u.def.section)
13474 && !bfd_is_und_section (h->root.u.def.section))
74f0fb50
AM
13475 h->root.u.def.section->flags |= SEC_KEEP;
13476 }
13477}
13478
2f0c68f2
CM
13479bfd_boolean
13480bfd_elf_parse_eh_frame_entries (bfd *abfd ATTRIBUTE_UNUSED,
13481 struct bfd_link_info *info)
13482{
13483 bfd *ibfd = info->input_bfds;
13484
13485 for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link.next)
13486 {
13487 asection *sec;
13488 struct elf_reloc_cookie cookie;
13489
13490 if (bfd_get_flavour (ibfd) != bfd_target_elf_flavour)
13491 continue;
57963c05
AM
13492 sec = ibfd->sections;
13493 if (sec == NULL || sec->sec_info_type == SEC_INFO_TYPE_JUST_SYMS)
13494 continue;
2f0c68f2
CM
13495
13496 if (!init_reloc_cookie (&cookie, info, ibfd))
13497 return FALSE;
13498
13499 for (sec = ibfd->sections; sec; sec = sec->next)
13500 {
13501 if (CONST_STRNEQ (bfd_section_name (ibfd, sec), ".eh_frame_entry")
13502 && init_reloc_cookie_rels (&cookie, info, ibfd, sec))
13503 {
13504 _bfd_elf_parse_eh_frame_entry (info, sec, &cookie);
13505 fini_reloc_cookie_rels (&cookie, sec);
13506 }
13507 }
13508 }
13509 return TRUE;
13510}
13511
c152c796
AM
13512/* Do mark and sweep of unused sections. */
13513
13514bfd_boolean
13515bfd_elf_gc_sections (bfd *abfd, struct bfd_link_info *info)
13516{
13517 bfd_boolean ok = TRUE;
13518 bfd *sub;
6a5bb875 13519 elf_gc_mark_hook_fn gc_mark_hook;
64d03ab5 13520 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
da44f4e5 13521 struct elf_link_hash_table *htab;
c152c796 13522
64d03ab5 13523 if (!bed->can_gc_sections
715df9b8 13524 || !is_elf_hash_table (info->hash))
c152c796 13525 {
9793eb77 13526 _bfd_error_handler(_("warning: gc-sections option ignored"));
c152c796
AM
13527 return TRUE;
13528 }
13529
74f0fb50 13530 bed->gc_keep (info);
da44f4e5 13531 htab = elf_hash_table (info);
74f0fb50 13532
9d0a14d3
RS
13533 /* Try to parse each bfd's .eh_frame section. Point elf_eh_frame_section
13534 at the .eh_frame section if we can mark the FDEs individually. */
2f0c68f2
CM
13535 for (sub = info->input_bfds;
13536 info->eh_frame_hdr_type != COMPACT_EH_HDR && sub != NULL;
13537 sub = sub->link.next)
9d0a14d3
RS
13538 {
13539 asection *sec;
13540 struct elf_reloc_cookie cookie;
13541
57963c05
AM
13542 sec = sub->sections;
13543 if (sec == NULL || sec->sec_info_type == SEC_INFO_TYPE_JUST_SYMS)
13544 continue;
9d0a14d3 13545 sec = bfd_get_section_by_name (sub, ".eh_frame");
9a2a56cc 13546 while (sec && init_reloc_cookie_for_section (&cookie, info, sec))
9d0a14d3
RS
13547 {
13548 _bfd_elf_parse_eh_frame (sub, info, sec, &cookie);
9a2a56cc
AM
13549 if (elf_section_data (sec)->sec_info
13550 && (sec->flags & SEC_LINKER_CREATED) == 0)
9d0a14d3
RS
13551 elf_eh_frame_section (sub) = sec;
13552 fini_reloc_cookie_for_section (&cookie, sec);
199af150 13553 sec = bfd_get_next_section_by_name (NULL, sec);
9d0a14d3
RS
13554 }
13555 }
9d0a14d3 13556
c152c796 13557 /* Apply transitive closure to the vtable entry usage info. */
da44f4e5 13558 elf_link_hash_traverse (htab, elf_gc_propagate_vtable_entries_used, &ok);
c152c796
AM
13559 if (!ok)
13560 return FALSE;
13561
13562 /* Kill the vtable relocations that were not used. */
da44f4e5 13563 elf_link_hash_traverse (htab, elf_gc_smash_unused_vtentry_relocs, &ok);
c152c796
AM
13564 if (!ok)
13565 return FALSE;
13566
715df9b8 13567 /* Mark dynamically referenced symbols. */
22185505 13568 if (htab->dynamic_sections_created || info->gc_keep_exported)
da44f4e5 13569 elf_link_hash_traverse (htab, bed->gc_mark_dynamic_ref, info);
c152c796 13570
715df9b8 13571 /* Grovel through relocs to find out who stays ... */
64d03ab5 13572 gc_mark_hook = bed->gc_mark_hook;
c72f2fb2 13573 for (sub = info->input_bfds; sub != NULL; sub = sub->link.next)
c152c796
AM
13574 {
13575 asection *o;
13576
b19a8f85 13577 if (bfd_get_flavour (sub) != bfd_target_elf_flavour
81742b83 13578 || elf_object_id (sub) != elf_hash_table_id (htab)
b19a8f85 13579 || !(*bed->relocs_compatible) (sub->xvec, abfd->xvec))
c152c796
AM
13580 continue;
13581
57963c05
AM
13582 o = sub->sections;
13583 if (o == NULL || o->sec_info_type == SEC_INFO_TYPE_JUST_SYMS)
13584 continue;
13585
7f6ab9f8
AM
13586 /* Start at sections marked with SEC_KEEP (ref _bfd_elf_gc_keep).
13587 Also treat note sections as a root, if the section is not part
8b6f4cd3
L
13588 of a group. We must keep all PREINIT_ARRAY, INIT_ARRAY as
13589 well as FINI_ARRAY sections for ld -r. */
c152c796 13590 for (o = sub->sections; o != NULL; o = o->next)
7f6ab9f8
AM
13591 if (!o->gc_mark
13592 && (o->flags & SEC_EXCLUDE) == 0
24007750 13593 && ((o->flags & SEC_KEEP) != 0
8b6f4cd3
L
13594 || (bfd_link_relocatable (info)
13595 && ((elf_section_data (o)->this_hdr.sh_type
13596 == SHT_PREINIT_ARRAY)
13597 || (elf_section_data (o)->this_hdr.sh_type
13598 == SHT_INIT_ARRAY)
13599 || (elf_section_data (o)->this_hdr.sh_type
13600 == SHT_FINI_ARRAY)))
7f6ab9f8
AM
13601 || (elf_section_data (o)->this_hdr.sh_type == SHT_NOTE
13602 && elf_next_in_group (o) == NULL )))
13603 {
13604 if (!_bfd_elf_gc_mark (info, o, gc_mark_hook))
13605 return FALSE;
13606 }
c152c796
AM
13607 }
13608
6a5bb875 13609 /* Allow the backend to mark additional target specific sections. */
7f6ab9f8 13610 bed->gc_mark_extra_sections (info, gc_mark_hook);
6a5bb875 13611
c152c796 13612 /* ... and mark SEC_EXCLUDE for those that go. */
ccabcbe5 13613 return elf_gc_sweep (abfd, info);
c152c796
AM
13614}
13615\f
13616/* Called from check_relocs to record the existence of a VTINHERIT reloc. */
13617
13618bfd_boolean
13619bfd_elf_gc_record_vtinherit (bfd *abfd,
13620 asection *sec,
13621 struct elf_link_hash_entry *h,
13622 bfd_vma offset)
13623{
13624 struct elf_link_hash_entry **sym_hashes, **sym_hashes_end;
13625 struct elf_link_hash_entry **search, *child;
ef53be89 13626 size_t extsymcount;
c152c796
AM
13627 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
13628
13629 /* The sh_info field of the symtab header tells us where the
13630 external symbols start. We don't care about the local symbols at
13631 this point. */
13632 extsymcount = elf_tdata (abfd)->symtab_hdr.sh_size / bed->s->sizeof_sym;
13633 if (!elf_bad_symtab (abfd))
13634 extsymcount -= elf_tdata (abfd)->symtab_hdr.sh_info;
13635
13636 sym_hashes = elf_sym_hashes (abfd);
13637 sym_hashes_end = sym_hashes + extsymcount;
13638
13639 /* Hunt down the child symbol, which is in this section at the same
13640 offset as the relocation. */
13641 for (search = sym_hashes; search != sym_hashes_end; ++search)
13642 {
13643 if ((child = *search) != NULL
13644 && (child->root.type == bfd_link_hash_defined
13645 || child->root.type == bfd_link_hash_defweak)
13646 && child->root.u.def.section == sec
13647 && child->root.u.def.value == offset)
13648 goto win;
13649 }
13650
695344c0 13651 /* xgettext:c-format */
9793eb77 13652 _bfd_error_handler (_("%pB: %pA+%#" PRIx64 ": no symbol found for INHERIT"),
2dcf00ce 13653 abfd, sec, (uint64_t) offset);
c152c796
AM
13654 bfd_set_error (bfd_error_invalid_operation);
13655 return FALSE;
13656
13657 win:
cbd0eecf 13658 if (!child->u2.vtable)
f6e332e6 13659 {
cbd0eecf
L
13660 child->u2.vtable = ((struct elf_link_virtual_table_entry *)
13661 bfd_zalloc (abfd, sizeof (*child->u2.vtable)));
13662 if (!child->u2.vtable)
f6e332e6
AM
13663 return FALSE;
13664 }
c152c796
AM
13665 if (!h)
13666 {
13667 /* This *should* only be the absolute section. It could potentially
13668 be that someone has defined a non-global vtable though, which
13669 would be bad. It isn't worth paging in the local symbols to be
13670 sure though; that case should simply be handled by the assembler. */
13671
cbd0eecf 13672 child->u2.vtable->parent = (struct elf_link_hash_entry *) -1;
c152c796
AM
13673 }
13674 else
cbd0eecf 13675 child->u2.vtable->parent = h;
c152c796
AM
13676
13677 return TRUE;
13678}
13679
13680/* Called from check_relocs to record the existence of a VTENTRY reloc. */
13681
13682bfd_boolean
13683bfd_elf_gc_record_vtentry (bfd *abfd ATTRIBUTE_UNUSED,
13684 asection *sec ATTRIBUTE_UNUSED,
13685 struct elf_link_hash_entry *h,
13686 bfd_vma addend)
13687{
13688 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
13689 unsigned int log_file_align = bed->s->log_file_align;
13690
cbd0eecf 13691 if (!h->u2.vtable)
f6e332e6 13692 {
cbd0eecf
L
13693 h->u2.vtable = ((struct elf_link_virtual_table_entry *)
13694 bfd_zalloc (abfd, sizeof (*h->u2.vtable)));
13695 if (!h->u2.vtable)
f6e332e6
AM
13696 return FALSE;
13697 }
13698
cbd0eecf 13699 if (addend >= h->u2.vtable->size)
c152c796
AM
13700 {
13701 size_t size, bytes, file_align;
cbd0eecf 13702 bfd_boolean *ptr = h->u2.vtable->used;
c152c796
AM
13703
13704 /* While the symbol is undefined, we have to be prepared to handle
13705 a zero size. */
13706 file_align = 1 << log_file_align;
13707 if (h->root.type == bfd_link_hash_undefined)
13708 size = addend + file_align;
13709 else
13710 {
13711 size = h->size;
13712 if (addend >= size)
13713 {
13714 /* Oops! We've got a reference past the defined end of
13715 the table. This is probably a bug -- shall we warn? */
13716 size = addend + file_align;
13717 }
13718 }
13719 size = (size + file_align - 1) & -file_align;
13720
13721 /* Allocate one extra entry for use as a "done" flag for the
13722 consolidation pass. */
13723 bytes = ((size >> log_file_align) + 1) * sizeof (bfd_boolean);
13724
13725 if (ptr)
13726 {
a50b1753 13727 ptr = (bfd_boolean *) bfd_realloc (ptr - 1, bytes);
c152c796
AM
13728
13729 if (ptr != NULL)
13730 {
13731 size_t oldbytes;
13732
cbd0eecf 13733 oldbytes = (((h->u2.vtable->size >> log_file_align) + 1)
c152c796
AM
13734 * sizeof (bfd_boolean));
13735 memset (((char *) ptr) + oldbytes, 0, bytes - oldbytes);
13736 }
13737 }
13738 else
a50b1753 13739 ptr = (bfd_boolean *) bfd_zmalloc (bytes);
c152c796
AM
13740
13741 if (ptr == NULL)
13742 return FALSE;
13743
13744 /* And arrange for that done flag to be at index -1. */
cbd0eecf
L
13745 h->u2.vtable->used = ptr + 1;
13746 h->u2.vtable->size = size;
c152c796
AM
13747 }
13748
cbd0eecf 13749 h->u2.vtable->used[addend >> log_file_align] = TRUE;
c152c796
AM
13750
13751 return TRUE;
13752}
13753
ae17ab41
CM
13754/* Map an ELF section header flag to its corresponding string. */
13755typedef struct
13756{
13757 char *flag_name;
13758 flagword flag_value;
13759} elf_flags_to_name_table;
13760
13761static elf_flags_to_name_table elf_flags_to_names [] =
13762{
13763 { "SHF_WRITE", SHF_WRITE },
13764 { "SHF_ALLOC", SHF_ALLOC },
13765 { "SHF_EXECINSTR", SHF_EXECINSTR },
13766 { "SHF_MERGE", SHF_MERGE },
13767 { "SHF_STRINGS", SHF_STRINGS },
13768 { "SHF_INFO_LINK", SHF_INFO_LINK},
13769 { "SHF_LINK_ORDER", SHF_LINK_ORDER},
13770 { "SHF_OS_NONCONFORMING", SHF_OS_NONCONFORMING},
13771 { "SHF_GROUP", SHF_GROUP },
13772 { "SHF_TLS", SHF_TLS },
13773 { "SHF_MASKOS", SHF_MASKOS },
13774 { "SHF_EXCLUDE", SHF_EXCLUDE },
13775};
13776
b9c361e0
JL
13777/* Returns TRUE if the section is to be included, otherwise FALSE. */
13778bfd_boolean
ae17ab41 13779bfd_elf_lookup_section_flags (struct bfd_link_info *info,
8b127cbc 13780 struct flag_info *flaginfo,
b9c361e0 13781 asection *section)
ae17ab41 13782{
8b127cbc 13783 const bfd_vma sh_flags = elf_section_flags (section);
ae17ab41 13784
8b127cbc 13785 if (!flaginfo->flags_initialized)
ae17ab41 13786 {
8b127cbc
AM
13787 bfd *obfd = info->output_bfd;
13788 const struct elf_backend_data *bed = get_elf_backend_data (obfd);
13789 struct flag_info_list *tf = flaginfo->flag_list;
b9c361e0
JL
13790 int with_hex = 0;
13791 int without_hex = 0;
13792
8b127cbc 13793 for (tf = flaginfo->flag_list; tf != NULL; tf = tf->next)
ae17ab41 13794 {
b9c361e0 13795 unsigned i;
8b127cbc 13796 flagword (*lookup) (char *);
ae17ab41 13797
8b127cbc
AM
13798 lookup = bed->elf_backend_lookup_section_flags_hook;
13799 if (lookup != NULL)
ae17ab41 13800 {
8b127cbc 13801 flagword hexval = (*lookup) ((char *) tf->name);
b9c361e0
JL
13802
13803 if (hexval != 0)
13804 {
13805 if (tf->with == with_flags)
13806 with_hex |= hexval;
13807 else if (tf->with == without_flags)
13808 without_hex |= hexval;
13809 tf->valid = TRUE;
13810 continue;
13811 }
ae17ab41 13812 }
8b127cbc 13813 for (i = 0; i < ARRAY_SIZE (elf_flags_to_names); ++i)
ae17ab41 13814 {
8b127cbc 13815 if (strcmp (tf->name, elf_flags_to_names[i].flag_name) == 0)
b9c361e0
JL
13816 {
13817 if (tf->with == with_flags)
13818 with_hex |= elf_flags_to_names[i].flag_value;
13819 else if (tf->with == without_flags)
13820 without_hex |= elf_flags_to_names[i].flag_value;
13821 tf->valid = TRUE;
13822 break;
13823 }
13824 }
8b127cbc 13825 if (!tf->valid)
b9c361e0 13826 {
68ffbac6 13827 info->callbacks->einfo
9793eb77 13828 (_("unrecognized INPUT_SECTION_FLAG %s\n"), tf->name);
b9c361e0 13829 return FALSE;
ae17ab41
CM
13830 }
13831 }
8b127cbc
AM
13832 flaginfo->flags_initialized = TRUE;
13833 flaginfo->only_with_flags |= with_hex;
13834 flaginfo->not_with_flags |= without_hex;
ae17ab41 13835 }
ae17ab41 13836
8b127cbc 13837 if ((flaginfo->only_with_flags & sh_flags) != flaginfo->only_with_flags)
b9c361e0
JL
13838 return FALSE;
13839
8b127cbc 13840 if ((flaginfo->not_with_flags & sh_flags) != 0)
b9c361e0
JL
13841 return FALSE;
13842
13843 return TRUE;
ae17ab41
CM
13844}
13845
c152c796
AM
13846struct alloc_got_off_arg {
13847 bfd_vma gotoff;
10455f89 13848 struct bfd_link_info *info;
c152c796
AM
13849};
13850
13851/* We need a special top-level link routine to convert got reference counts
13852 to real got offsets. */
13853
13854static bfd_boolean
13855elf_gc_allocate_got_offsets (struct elf_link_hash_entry *h, void *arg)
13856{
a50b1753 13857 struct alloc_got_off_arg *gofarg = (struct alloc_got_off_arg *) arg;
10455f89
HPN
13858 bfd *obfd = gofarg->info->output_bfd;
13859 const struct elf_backend_data *bed = get_elf_backend_data (obfd);
c152c796 13860
c152c796
AM
13861 if (h->got.refcount > 0)
13862 {
13863 h->got.offset = gofarg->gotoff;
10455f89 13864 gofarg->gotoff += bed->got_elt_size (obfd, gofarg->info, h, NULL, 0);
c152c796
AM
13865 }
13866 else
13867 h->got.offset = (bfd_vma) -1;
13868
13869 return TRUE;
13870}
13871
13872/* And an accompanying bit to work out final got entry offsets once
13873 we're done. Should be called from final_link. */
13874
13875bfd_boolean
13876bfd_elf_gc_common_finalize_got_offsets (bfd *abfd,
13877 struct bfd_link_info *info)
13878{
13879 bfd *i;
13880 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
13881 bfd_vma gotoff;
c152c796
AM
13882 struct alloc_got_off_arg gofarg;
13883
10455f89
HPN
13884 BFD_ASSERT (abfd == info->output_bfd);
13885
c152c796
AM
13886 if (! is_elf_hash_table (info->hash))
13887 return FALSE;
13888
13889 /* The GOT offset is relative to the .got section, but the GOT header is
13890 put into the .got.plt section, if the backend uses it. */
13891 if (bed->want_got_plt)
13892 gotoff = 0;
13893 else
13894 gotoff = bed->got_header_size;
13895
13896 /* Do the local .got entries first. */
c72f2fb2 13897 for (i = info->input_bfds; i; i = i->link.next)
c152c796
AM
13898 {
13899 bfd_signed_vma *local_got;
ef53be89 13900 size_t j, locsymcount;
c152c796
AM
13901 Elf_Internal_Shdr *symtab_hdr;
13902
13903 if (bfd_get_flavour (i) != bfd_target_elf_flavour)
13904 continue;
13905
13906 local_got = elf_local_got_refcounts (i);
13907 if (!local_got)
13908 continue;
13909
13910 symtab_hdr = &elf_tdata (i)->symtab_hdr;
13911 if (elf_bad_symtab (i))
13912 locsymcount = symtab_hdr->sh_size / bed->s->sizeof_sym;
13913 else
13914 locsymcount = symtab_hdr->sh_info;
13915
13916 for (j = 0; j < locsymcount; ++j)
13917 {
13918 if (local_got[j] > 0)
13919 {
13920 local_got[j] = gotoff;
10455f89 13921 gotoff += bed->got_elt_size (abfd, info, NULL, i, j);
c152c796
AM
13922 }
13923 else
13924 local_got[j] = (bfd_vma) -1;
13925 }
13926 }
13927
13928 /* Then the global .got entries. .plt refcounts are handled by
13929 adjust_dynamic_symbol */
13930 gofarg.gotoff = gotoff;
10455f89 13931 gofarg.info = info;
c152c796
AM
13932 elf_link_hash_traverse (elf_hash_table (info),
13933 elf_gc_allocate_got_offsets,
13934 &gofarg);
13935 return TRUE;
13936}
13937
13938/* Many folk need no more in the way of final link than this, once
13939 got entry reference counting is enabled. */
13940
13941bfd_boolean
13942bfd_elf_gc_common_final_link (bfd *abfd, struct bfd_link_info *info)
13943{
13944 if (!bfd_elf_gc_common_finalize_got_offsets (abfd, info))
13945 return FALSE;
13946
13947 /* Invoke the regular ELF backend linker to do all the work. */
13948 return bfd_elf_final_link (abfd, info);
13949}
13950
13951bfd_boolean
13952bfd_elf_reloc_symbol_deleted_p (bfd_vma offset, void *cookie)
13953{
a50b1753 13954 struct elf_reloc_cookie *rcookie = (struct elf_reloc_cookie *) cookie;
c152c796
AM
13955
13956 if (rcookie->bad_symtab)
13957 rcookie->rel = rcookie->rels;
13958
13959 for (; rcookie->rel < rcookie->relend; rcookie->rel++)
13960 {
13961 unsigned long r_symndx;
13962
13963 if (! rcookie->bad_symtab)
13964 if (rcookie->rel->r_offset > offset)
13965 return FALSE;
13966 if (rcookie->rel->r_offset != offset)
13967 continue;
13968
13969 r_symndx = rcookie->rel->r_info >> rcookie->r_sym_shift;
2c2fa401 13970 if (r_symndx == STN_UNDEF)
c152c796
AM
13971 return TRUE;
13972
13973 if (r_symndx >= rcookie->locsymcount
13974 || ELF_ST_BIND (rcookie->locsyms[r_symndx].st_info) != STB_LOCAL)
13975 {
13976 struct elf_link_hash_entry *h;
13977
13978 h = rcookie->sym_hashes[r_symndx - rcookie->extsymoff];
13979
13980 while (h->root.type == bfd_link_hash_indirect
13981 || h->root.type == bfd_link_hash_warning)
13982 h = (struct elf_link_hash_entry *) h->root.u.i.link;
13983
13984 if ((h->root.type == bfd_link_hash_defined
13985 || h->root.type == bfd_link_hash_defweak)
5b69e357
AM
13986 && (h->root.u.def.section->owner != rcookie->abfd
13987 || h->root.u.def.section->kept_section != NULL
13988 || discarded_section (h->root.u.def.section)))
c152c796 13989 return TRUE;
c152c796
AM
13990 }
13991 else
13992 {
13993 /* It's not a relocation against a global symbol,
13994 but it could be a relocation against a local
13995 symbol for a discarded section. */
13996 asection *isec;
13997 Elf_Internal_Sym *isym;
13998
13999 /* Need to: get the symbol; get the section. */
14000 isym = &rcookie->locsyms[r_symndx];
cb33740c 14001 isec = bfd_section_from_elf_index (rcookie->abfd, isym->st_shndx);
5b69e357
AM
14002 if (isec != NULL
14003 && (isec->kept_section != NULL
14004 || discarded_section (isec)))
cb33740c 14005 return TRUE;
c152c796
AM
14006 }
14007 return FALSE;
14008 }
14009 return FALSE;
14010}
14011
14012/* Discard unneeded references to discarded sections.
75938853
AM
14013 Returns -1 on error, 1 if any section's size was changed, 0 if
14014 nothing changed. This function assumes that the relocations are in
14015 sorted order, which is true for all known assemblers. */
c152c796 14016
75938853 14017int
c152c796
AM
14018bfd_elf_discard_info (bfd *output_bfd, struct bfd_link_info *info)
14019{
14020 struct elf_reloc_cookie cookie;
18cd5bce 14021 asection *o;
c152c796 14022 bfd *abfd;
75938853 14023 int changed = 0;
c152c796
AM
14024
14025 if (info->traditional_format
14026 || !is_elf_hash_table (info->hash))
75938853 14027 return 0;
c152c796 14028
18cd5bce
AM
14029 o = bfd_get_section_by_name (output_bfd, ".stab");
14030 if (o != NULL)
c152c796 14031 {
18cd5bce 14032 asection *i;
c152c796 14033
18cd5bce 14034 for (i = o->map_head.s; i != NULL; i = i->map_head.s)
8da3dbc5 14035 {
18cd5bce
AM
14036 if (i->size == 0
14037 || i->reloc_count == 0
14038 || i->sec_info_type != SEC_INFO_TYPE_STABS)
14039 continue;
c152c796 14040
18cd5bce
AM
14041 abfd = i->owner;
14042 if (bfd_get_flavour (abfd) != bfd_target_elf_flavour)
14043 continue;
c152c796 14044
18cd5bce 14045 if (!init_reloc_cookie_for_section (&cookie, info, i))
75938853 14046 return -1;
c152c796 14047
18cd5bce
AM
14048 if (_bfd_discard_section_stabs (abfd, i,
14049 elf_section_data (i)->sec_info,
5241d853
RS
14050 bfd_elf_reloc_symbol_deleted_p,
14051 &cookie))
75938853 14052 changed = 1;
18cd5bce
AM
14053
14054 fini_reloc_cookie_for_section (&cookie, i);
c152c796 14055 }
18cd5bce
AM
14056 }
14057
2f0c68f2
CM
14058 o = NULL;
14059 if (info->eh_frame_hdr_type != COMPACT_EH_HDR)
14060 o = bfd_get_section_by_name (output_bfd, ".eh_frame");
18cd5bce
AM
14061 if (o != NULL)
14062 {
14063 asection *i;
d7153c4a 14064 int eh_changed = 0;
79a94a2a 14065 unsigned int eh_alignment;
c152c796 14066
18cd5bce 14067 for (i = o->map_head.s; i != NULL; i = i->map_head.s)
c152c796 14068 {
18cd5bce
AM
14069 if (i->size == 0)
14070 continue;
14071
14072 abfd = i->owner;
14073 if (bfd_get_flavour (abfd) != bfd_target_elf_flavour)
14074 continue;
14075
14076 if (!init_reloc_cookie_for_section (&cookie, info, i))
75938853 14077 return -1;
18cd5bce
AM
14078
14079 _bfd_elf_parse_eh_frame (abfd, info, i, &cookie);
14080 if (_bfd_elf_discard_section_eh_frame (abfd, info, i,
c152c796
AM
14081 bfd_elf_reloc_symbol_deleted_p,
14082 &cookie))
d7153c4a
AM
14083 {
14084 eh_changed = 1;
14085 if (i->size != i->rawsize)
14086 changed = 1;
14087 }
18cd5bce
AM
14088
14089 fini_reloc_cookie_for_section (&cookie, i);
c152c796 14090 }
9866ffe2 14091
79a94a2a 14092 eh_alignment = 1 << o->alignment_power;
9866ffe2
AM
14093 /* Skip over zero terminator, and prevent empty sections from
14094 adding alignment padding at the end. */
14095 for (i = o->map_tail.s; i != NULL; i = i->map_tail.s)
14096 if (i->size == 0)
14097 i->flags |= SEC_EXCLUDE;
14098 else if (i->size > 4)
14099 break;
14100 /* The last non-empty eh_frame section doesn't need padding. */
14101 if (i != NULL)
14102 i = i->map_tail.s;
14103 /* Any prior sections must pad the last FDE out to the output
14104 section alignment. Otherwise we might have zero padding
14105 between sections, which would be seen as a terminator. */
14106 for (; i != NULL; i = i->map_tail.s)
14107 if (i->size == 4)
14108 /* All but the last zero terminator should have been removed. */
14109 BFD_FAIL ();
14110 else
14111 {
14112 bfd_size_type size
14113 = (i->size + eh_alignment - 1) & -eh_alignment;
14114 if (i->size != size)
af471f82 14115 {
9866ffe2
AM
14116 i->size = size;
14117 changed = 1;
14118 eh_changed = 1;
af471f82 14119 }
9866ffe2 14120 }
d7153c4a
AM
14121 if (eh_changed)
14122 elf_link_hash_traverse (elf_hash_table (info),
14123 _bfd_elf_adjust_eh_frame_global_symbol, NULL);
18cd5bce 14124 }
c152c796 14125
18cd5bce
AM
14126 for (abfd = info->input_bfds; abfd != NULL; abfd = abfd->link.next)
14127 {
14128 const struct elf_backend_data *bed;
57963c05 14129 asection *s;
c152c796 14130
18cd5bce
AM
14131 if (bfd_get_flavour (abfd) != bfd_target_elf_flavour)
14132 continue;
57963c05
AM
14133 s = abfd->sections;
14134 if (s == NULL || s->sec_info_type == SEC_INFO_TYPE_JUST_SYMS)
14135 continue;
18cd5bce
AM
14136
14137 bed = get_elf_backend_data (abfd);
14138
14139 if (bed->elf_backend_discard_info != NULL)
14140 {
14141 if (!init_reloc_cookie (&cookie, info, abfd))
75938853 14142 return -1;
18cd5bce
AM
14143
14144 if ((*bed->elf_backend_discard_info) (abfd, &cookie, info))
75938853 14145 changed = 1;
18cd5bce
AM
14146
14147 fini_reloc_cookie (&cookie, abfd);
14148 }
c152c796
AM
14149 }
14150
2f0c68f2
CM
14151 if (info->eh_frame_hdr_type == COMPACT_EH_HDR)
14152 _bfd_elf_end_eh_frame_parsing (info);
14153
14154 if (info->eh_frame_hdr_type
0e1862bb 14155 && !bfd_link_relocatable (info)
c152c796 14156 && _bfd_elf_discard_section_eh_frame_hdr (output_bfd, info))
75938853 14157 changed = 1;
c152c796 14158
75938853 14159 return changed;
c152c796 14160}
082b7297 14161
43e1669b 14162bfd_boolean
0c511000 14163_bfd_elf_section_already_linked (bfd *abfd,
c77ec726 14164 asection *sec,
c0f00686 14165 struct bfd_link_info *info)
082b7297
L
14166{
14167 flagword flags;
c77ec726 14168 const char *name, *key;
082b7297
L
14169 struct bfd_section_already_linked *l;
14170 struct bfd_section_already_linked_hash_entry *already_linked_list;
0c511000 14171
c77ec726
AM
14172 if (sec->output_section == bfd_abs_section_ptr)
14173 return FALSE;
0c511000 14174
c77ec726 14175 flags = sec->flags;
0c511000 14176
c77ec726
AM
14177 /* Return if it isn't a linkonce section. A comdat group section
14178 also has SEC_LINK_ONCE set. */
14179 if ((flags & SEC_LINK_ONCE) == 0)
14180 return FALSE;
0c511000 14181
c77ec726
AM
14182 /* Don't put group member sections on our list of already linked
14183 sections. They are handled as a group via their group section. */
14184 if (elf_sec_group (sec) != NULL)
14185 return FALSE;
0c511000 14186
c77ec726
AM
14187 /* For a SHT_GROUP section, use the group signature as the key. */
14188 name = sec->name;
14189 if ((flags & SEC_GROUP) != 0
14190 && elf_next_in_group (sec) != NULL
14191 && elf_group_name (elf_next_in_group (sec)) != NULL)
14192 key = elf_group_name (elf_next_in_group (sec));
14193 else
14194 {
14195 /* Otherwise we should have a .gnu.linkonce.<type>.<key> section. */
0c511000 14196 if (CONST_STRNEQ (name, ".gnu.linkonce.")
c77ec726
AM
14197 && (key = strchr (name + sizeof (".gnu.linkonce.") - 1, '.')) != NULL)
14198 key++;
0c511000 14199 else
c77ec726
AM
14200 /* Must be a user linkonce section that doesn't follow gcc's
14201 naming convention. In this case we won't be matching
14202 single member groups. */
14203 key = name;
0c511000 14204 }
6d2cd210 14205
c77ec726 14206 already_linked_list = bfd_section_already_linked_table_lookup (key);
082b7297
L
14207
14208 for (l = already_linked_list->entry; l != NULL; l = l->next)
14209 {
c2370991 14210 /* We may have 2 different types of sections on the list: group
c77ec726
AM
14211 sections with a signature of <key> (<key> is some string),
14212 and linkonce sections named .gnu.linkonce.<type>.<key>.
14213 Match like sections. LTO plugin sections are an exception.
14214 They are always named .gnu.linkonce.t.<key> and match either
14215 type of section. */
14216 if (((flags & SEC_GROUP) == (l->sec->flags & SEC_GROUP)
14217 && ((flags & SEC_GROUP) != 0
14218 || strcmp (name, l->sec->name) == 0))
14219 || (l->sec->owner->flags & BFD_PLUGIN) != 0)
082b7297
L
14220 {
14221 /* The section has already been linked. See if we should
6d2cd210 14222 issue a warning. */
c77ec726
AM
14223 if (!_bfd_handle_already_linked (sec, l, info))
14224 return FALSE;
082b7297 14225
c77ec726 14226 if (flags & SEC_GROUP)
3d7f7666 14227 {
c77ec726
AM
14228 asection *first = elf_next_in_group (sec);
14229 asection *s = first;
3d7f7666 14230
c77ec726 14231 while (s != NULL)
3d7f7666 14232 {
c77ec726
AM
14233 s->output_section = bfd_abs_section_ptr;
14234 /* Record which group discards it. */
14235 s->kept_section = l->sec;
14236 s = elf_next_in_group (s);
14237 /* These lists are circular. */
14238 if (s == first)
14239 break;
3d7f7666
L
14240 }
14241 }
082b7297 14242
43e1669b 14243 return TRUE;
082b7297
L
14244 }
14245 }
14246
c77ec726
AM
14247 /* A single member comdat group section may be discarded by a
14248 linkonce section and vice versa. */
14249 if ((flags & SEC_GROUP) != 0)
3d7f7666 14250 {
c77ec726 14251 asection *first = elf_next_in_group (sec);
c2370991 14252
c77ec726
AM
14253 if (first != NULL && elf_next_in_group (first) == first)
14254 /* Check this single member group against linkonce sections. */
14255 for (l = already_linked_list->entry; l != NULL; l = l->next)
14256 if ((l->sec->flags & SEC_GROUP) == 0
14257 && bfd_elf_match_symbols_in_sections (l->sec, first, info))
14258 {
14259 first->output_section = bfd_abs_section_ptr;
14260 first->kept_section = l->sec;
14261 sec->output_section = bfd_abs_section_ptr;
14262 break;
14263 }
14264 }
14265 else
14266 /* Check this linkonce section against single member groups. */
14267 for (l = already_linked_list->entry; l != NULL; l = l->next)
14268 if (l->sec->flags & SEC_GROUP)
6d2cd210 14269 {
c77ec726 14270 asection *first = elf_next_in_group (l->sec);
6d2cd210 14271
c77ec726
AM
14272 if (first != NULL
14273 && elf_next_in_group (first) == first
14274 && bfd_elf_match_symbols_in_sections (first, sec, info))
14275 {
14276 sec->output_section = bfd_abs_section_ptr;
14277 sec->kept_section = first;
14278 break;
14279 }
6d2cd210 14280 }
0c511000 14281
c77ec726
AM
14282 /* Do not complain on unresolved relocations in `.gnu.linkonce.r.F'
14283 referencing its discarded `.gnu.linkonce.t.F' counterpart - g++-3.4
14284 specific as g++-4.x is using COMDAT groups (without the `.gnu.linkonce'
14285 prefix) instead. `.gnu.linkonce.r.*' were the `.rodata' part of its
14286 matching `.gnu.linkonce.t.*'. If `.gnu.linkonce.r.F' is not discarded
14287 but its `.gnu.linkonce.t.F' is discarded means we chose one-only
14288 `.gnu.linkonce.t.F' section from a different bfd not requiring any
14289 `.gnu.linkonce.r.F'. Thus `.gnu.linkonce.r.F' should be discarded.
14290 The reverse order cannot happen as there is never a bfd with only the
14291 `.gnu.linkonce.r.F' section. The order of sections in a bfd does not
14292 matter as here were are looking only for cross-bfd sections. */
14293
14294 if ((flags & SEC_GROUP) == 0 && CONST_STRNEQ (name, ".gnu.linkonce.r."))
14295 for (l = already_linked_list->entry; l != NULL; l = l->next)
14296 if ((l->sec->flags & SEC_GROUP) == 0
14297 && CONST_STRNEQ (l->sec->name, ".gnu.linkonce.t."))
14298 {
14299 if (abfd != l->sec->owner)
14300 sec->output_section = bfd_abs_section_ptr;
14301 break;
14302 }
80c29487 14303
082b7297 14304 /* This is the first section with this name. Record it. */
c77ec726 14305 if (!bfd_section_already_linked_table_insert (already_linked_list, sec))
bb6198d2 14306 info->callbacks->einfo (_("%F%P: already_linked_table: %E\n"));
c77ec726 14307 return sec->output_section == bfd_abs_section_ptr;
082b7297 14308}
81e1b023 14309
a4d8e49b
L
14310bfd_boolean
14311_bfd_elf_common_definition (Elf_Internal_Sym *sym)
14312{
14313 return sym->st_shndx == SHN_COMMON;
14314}
14315
14316unsigned int
14317_bfd_elf_common_section_index (asection *sec ATTRIBUTE_UNUSED)
14318{
14319 return SHN_COMMON;
14320}
14321
14322asection *
14323_bfd_elf_common_section (asection *sec ATTRIBUTE_UNUSED)
14324{
14325 return bfd_com_section_ptr;
14326}
10455f89
HPN
14327
14328bfd_vma
14329_bfd_elf_default_got_elt_size (bfd *abfd,
14330 struct bfd_link_info *info ATTRIBUTE_UNUSED,
14331 struct elf_link_hash_entry *h ATTRIBUTE_UNUSED,
14332 bfd *ibfd ATTRIBUTE_UNUSED,
14333 unsigned long symndx ATTRIBUTE_UNUSED)
14334{
14335 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
14336 return bed->s->arch_size / 8;
14337}
83bac4b0
NC
14338
14339/* Routines to support the creation of dynamic relocs. */
14340
83bac4b0
NC
14341/* Returns the name of the dynamic reloc section associated with SEC. */
14342
14343static const char *
14344get_dynamic_reloc_section_name (bfd * abfd,
14345 asection * sec,
14346 bfd_boolean is_rela)
14347{
ddcf1fcf
BS
14348 char *name;
14349 const char *old_name = bfd_get_section_name (NULL, sec);
14350 const char *prefix = is_rela ? ".rela" : ".rel";
83bac4b0 14351
ddcf1fcf 14352 if (old_name == NULL)
83bac4b0
NC
14353 return NULL;
14354
ddcf1fcf 14355 name = bfd_alloc (abfd, strlen (prefix) + strlen (old_name) + 1);
68ffbac6 14356 sprintf (name, "%s%s", prefix, old_name);
83bac4b0
NC
14357
14358 return name;
14359}
14360
14361/* Returns the dynamic reloc section associated with SEC.
14362 If necessary compute the name of the dynamic reloc section based
14363 on SEC's name (looked up in ABFD's string table) and the setting
14364 of IS_RELA. */
14365
14366asection *
14367_bfd_elf_get_dynamic_reloc_section (bfd * abfd,
14368 asection * sec,
14369 bfd_boolean is_rela)
14370{
14371 asection * reloc_sec = elf_section_data (sec)->sreloc;
14372
14373 if (reloc_sec == NULL)
14374 {
14375 const char * name = get_dynamic_reloc_section_name (abfd, sec, is_rela);
14376
14377 if (name != NULL)
14378 {
3d4d4302 14379 reloc_sec = bfd_get_linker_section (abfd, name);
83bac4b0
NC
14380
14381 if (reloc_sec != NULL)
14382 elf_section_data (sec)->sreloc = reloc_sec;
14383 }
14384 }
14385
14386 return reloc_sec;
14387}
14388
14389/* Returns the dynamic reloc section associated with SEC. If the
14390 section does not exist it is created and attached to the DYNOBJ
14391 bfd and stored in the SRELOC field of SEC's elf_section_data
14392 structure.
f8076f98 14393
83bac4b0
NC
14394 ALIGNMENT is the alignment for the newly created section and
14395 IS_RELA defines whether the name should be .rela.<SEC's name>
14396 or .rel.<SEC's name>. The section name is looked up in the
14397 string table associated with ABFD. */
14398
14399asection *
ca4be51c
AM
14400_bfd_elf_make_dynamic_reloc_section (asection *sec,
14401 bfd *dynobj,
14402 unsigned int alignment,
14403 bfd *abfd,
14404 bfd_boolean is_rela)
83bac4b0
NC
14405{
14406 asection * reloc_sec = elf_section_data (sec)->sreloc;
14407
14408 if (reloc_sec == NULL)
14409 {
14410 const char * name = get_dynamic_reloc_section_name (abfd, sec, is_rela);
14411
14412 if (name == NULL)
14413 return NULL;
14414
3d4d4302 14415 reloc_sec = bfd_get_linker_section (dynobj, name);
83bac4b0
NC
14416
14417 if (reloc_sec == NULL)
14418 {
3d4d4302
AM
14419 flagword flags = (SEC_HAS_CONTENTS | SEC_READONLY
14420 | SEC_IN_MEMORY | SEC_LINKER_CREATED);
83bac4b0
NC
14421 if ((sec->flags & SEC_ALLOC) != 0)
14422 flags |= SEC_ALLOC | SEC_LOAD;
14423
3d4d4302 14424 reloc_sec = bfd_make_section_anyway_with_flags (dynobj, name, flags);
83bac4b0
NC
14425 if (reloc_sec != NULL)
14426 {
8877b5e5
AM
14427 /* _bfd_elf_get_sec_type_attr chooses a section type by
14428 name. Override as it may be wrong, eg. for a user
14429 section named "auto" we'll get ".relauto" which is
14430 seen to be a .rela section. */
14431 elf_section_type (reloc_sec) = is_rela ? SHT_RELA : SHT_REL;
83bac4b0
NC
14432 if (! bfd_set_section_alignment (dynobj, reloc_sec, alignment))
14433 reloc_sec = NULL;
14434 }
14435 }
14436
14437 elf_section_data (sec)->sreloc = reloc_sec;
14438 }
14439
14440 return reloc_sec;
14441}
1338dd10 14442
bffebb6b
AM
14443/* Copy the ELF symbol type and other attributes for a linker script
14444 assignment from HSRC to HDEST. Generally this should be treated as
14445 if we found a strong non-dynamic definition for HDEST (except that
14446 ld ignores multiple definition errors). */
1338dd10 14447void
bffebb6b
AM
14448_bfd_elf_copy_link_hash_symbol_type (bfd *abfd,
14449 struct bfd_link_hash_entry *hdest,
14450 struct bfd_link_hash_entry *hsrc)
1338dd10 14451{
bffebb6b
AM
14452 struct elf_link_hash_entry *ehdest = (struct elf_link_hash_entry *) hdest;
14453 struct elf_link_hash_entry *ehsrc = (struct elf_link_hash_entry *) hsrc;
14454 Elf_Internal_Sym isym;
1338dd10
PB
14455
14456 ehdest->type = ehsrc->type;
35fc36a8 14457 ehdest->target_internal = ehsrc->target_internal;
bffebb6b
AM
14458
14459 isym.st_other = ehsrc->other;
b8417128 14460 elf_merge_st_other (abfd, ehdest, &isym, NULL, TRUE, FALSE);
1338dd10 14461}
351f65ca
L
14462
14463/* Append a RELA relocation REL to section S in BFD. */
14464
14465void
14466elf_append_rela (bfd *abfd, asection *s, Elf_Internal_Rela *rel)
14467{
14468 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
14469 bfd_byte *loc = s->contents + (s->reloc_count++ * bed->s->sizeof_rela);
14470 BFD_ASSERT (loc + bed->s->sizeof_rela <= s->contents + s->size);
14471 bed->s->swap_reloca_out (abfd, rel, loc);
14472}
14473
14474/* Append a REL relocation REL to section S in BFD. */
14475
14476void
14477elf_append_rel (bfd *abfd, asection *s, Elf_Internal_Rela *rel)
14478{
14479 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
14480 bfd_byte *loc = s->contents + (s->reloc_count++ * bed->s->sizeof_rel);
14481 BFD_ASSERT (loc + bed->s->sizeof_rel <= s->contents + s->size);
59d6ffb2 14482 bed->s->swap_reloc_out (abfd, rel, loc);
351f65ca 14483}
7dba9362
AM
14484
14485/* Define __start, __stop, .startof. or .sizeof. symbol. */
14486
14487struct bfd_link_hash_entry *
14488bfd_elf_define_start_stop (struct bfd_link_info *info,
14489 const char *symbol, asection *sec)
14490{
487b6440 14491 struct elf_link_hash_entry *h;
7dba9362 14492
487b6440
AM
14493 h = elf_link_hash_lookup (elf_hash_table (info), symbol,
14494 FALSE, FALSE, TRUE);
14495 if (h != NULL
14496 && (h->root.type == bfd_link_hash_undefined
14497 || h->root.type == bfd_link_hash_undefweak
bf3077a6 14498 || ((h->ref_regular || h->def_dynamic) && !h->def_regular)))
7dba9362 14499 {
bf3077a6 14500 bfd_boolean was_dynamic = h->ref_dynamic || h->def_dynamic;
487b6440
AM
14501 h->root.type = bfd_link_hash_defined;
14502 h->root.u.def.section = sec;
14503 h->root.u.def.value = 0;
14504 h->def_regular = 1;
14505 h->def_dynamic = 0;
14506 h->start_stop = 1;
14507 h->u2.start_stop_section = sec;
14508 if (symbol[0] == '.')
14509 {
14510 /* .startof. and .sizeof. symbols are local. */
559192d8
AM
14511 const struct elf_backend_data *bed;
14512 bed = get_elf_backend_data (info->output_bfd);
14513 (*bed->elf_backend_hide_symbol) (info, h, TRUE);
487b6440 14514 }
36b8fda5
AM
14515 else
14516 {
14517 if (ELF_ST_VISIBILITY (h->other) == STV_DEFAULT)
14518 h->other = (h->other & ~ELF_ST_VISIBILITY (-1)) | STV_PROTECTED;
bf3077a6 14519 if (was_dynamic)
36b8fda5
AM
14520 bfd_elf_link_record_dynamic_symbol (info, h);
14521 }
487b6440 14522 return &h->root;
7dba9362 14523 }
487b6440 14524 return NULL;
7dba9362 14525}
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