Fix build when size_t is not available in bfd-in2.h
[deliverable/binutils-gdb.git] / bfd / elf-bfd.h
CommitLineData
252b5132 1/* BFD back-end data structures for ELF files.
b90efa5b 2 Copyright (C) 1992-2015 Free Software Foundation, Inc.
252b5132
RH
3 Written by Cygnus Support.
4
5e8d7549 5 This file is part of BFD, the Binary File Descriptor library.
252b5132 6
5e8d7549
NC
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
cd123cb7 9 the Free Software Foundation; either version 3 of the License, or
5e8d7549 10 (at your option) any later version.
252b5132 11
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NC
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
252b5132 16
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NC
17 You should have received a copy of the GNU General Public License
18 along with this program; if not, write to the Free Software
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19 Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
20 MA 02110-1301, USA. */
252b5132
RH
21
22#ifndef _LIBELF_H_
23#define _LIBELF_H_ 1
24
25#include "elf/common.h"
252b5132 26#include "elf/external.h"
4fbb74a6 27#include "elf/internal.h"
252b5132
RH
28#include "bfdlink.h"
29
55172d69
PA
30#ifdef __cplusplus
31extern "C" {
32#endif
33
d9bc7a44 34/* The number of entries in a section is its size divided by the size
51b64d56 35 of a single entry. This is normally only applicable to reloc and
ce98a316
NC
36 symbol table sections.
37 PR 9934: It is possible to have relocations that do not refer to
38 symbols, thus it is also possible to have a relocation section in
39 an object file, but no symbol table. */
40#define NUM_SHDR_ENTRIES(shdr) ((shdr)->sh_entsize > 0 ? (shdr)->sh_size / (shdr)->sh_entsize : 0)
d9bc7a44 41
252b5132
RH
42/* If size isn't specified as 64 or 32, NAME macro should fail. */
43#ifndef NAME
c39a58e6
AM
44#if ARCH_SIZE == 64
45#define NAME(x, y) x ## 64 ## _ ## y
252b5132 46#endif
c39a58e6
AM
47#if ARCH_SIZE == 32
48#define NAME(x, y) x ## 32 ## _ ## y
252b5132
RH
49#endif
50#endif
51
52#ifndef NAME
c39a58e6 53#define NAME(x, y) x ## NOSIZE ## _ ## y
252b5132
RH
54#endif
55
56#define ElfNAME(X) NAME(Elf,X)
57#define elfNAME(X) NAME(elf,X)
58
59/* Information held for an ELF symbol. The first field is the
60 corresponding asymbol. Every symbol is an ELF file is actually a
61 pointer to this structure, although it is often handled as a
62 pointer to an asymbol. */
63
64typedef struct
65{
66 /* The BFD symbol. */
67 asymbol symbol;
68 /* ELF symbol information. */
69 Elf_Internal_Sym internal_elf_sym;
70 /* Backend specific information. */
71 union
72 {
73 unsigned int hppa_arg_reloc;
c39a58e6
AM
74 void *mips_extr;
75 void *any;
252b5132
RH
76 }
77 tc_data;
78
79 /* Version information. This is from an Elf_Internal_Versym
80 structure in a SHT_GNU_versym section. It is zero if there is no
81 version information. */
82 unsigned short version;
83
84} elf_symbol_type;
85\f
2b0f7ef9 86struct elf_strtab_hash;
5cab59f6
AM
87struct got_entry;
88struct plt_entry;
2b0f7ef9 89
a50b1753
NC
90union gotplt_union
91 {
92 bfd_signed_vma refcount;
93 bfd_vma offset;
94 struct got_entry *glist;
95 struct plt_entry *plist;
96 };
97
98struct elf_link_virtual_table_entry
99 {
100 /* Virtual table entry use information. This array is nominally of size
101 size/sizeof(target_void_pointer), though we have to be able to assume
102 and track a size while the symbol is still undefined. It is indexed
103 via offset/sizeof(target_void_pointer). */
104 size_t size;
105 bfd_boolean *used;
106
107 /* Virtual table derivation info. */
108 struct elf_link_hash_entry *parent;
109 };
110
252b5132
RH
111/* ELF linker hash table entries. */
112
113struct elf_link_hash_entry
114{
115 struct bfd_link_hash_entry root;
116
117 /* Symbol index in output file. This is initialized to -1. It is
118 set to -2 if the symbol is used by a reloc. */
119 long indx;
120
252b5132
RH
121 /* Symbol index as a dynamic symbol. Initialized to -1, and remains
122 -1 if this is not a dynamic symbol. */
30b30c21
RH
123 /* ??? Note that this is consistently used as a synonym for tests
124 against whether we can perform various simplifying transformations
125 to the code. (E.g. changing a pc-relative jump to a PLT entry
126 into a pc-relative jump to the target function.) That test, which
127 is often relatively complex, and someplaces wrong or incomplete,
128 should really be replaced by a predicate in elflink.c.
129
130 End result: this field -1 does not indicate that the symbol is
131 not in the dynamic symbol table, but rather that the symbol is
132 not visible outside this DSO. */
252b5132
RH
133 long dynindx;
134
a90b9fca
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135 /* If this symbol requires an entry in the global offset table, the
136 processor specific backend uses this field to track usage and
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137 final offset. Two schemes are supported: The first assumes that
138 a symbol may only have one GOT entry, and uses REFCOUNT until
139 size_dynamic_sections, at which point the contents of the .got is
140 fixed. Afterward, if OFFSET is -1, then the symbol does not
141 require a global offset table entry. The second scheme allows
142 multiple GOT entries per symbol, managed via a linked list
143 pointed to by GLIST. */
a50b1753 144 union gotplt_union got;
a90b9fca
AM
145
146 /* Same, but tracks a procedure linkage table entry. */
5cab59f6 147 union gotplt_union plt;
a90b9fca
AM
148
149 /* Symbol size. */
150 bfd_size_type size;
151
252b5132 152 /* Symbol type (STT_NOTYPE, STT_OBJECT, etc.). */
f5385ebf 153 unsigned int type : 8;
252b5132 154
9b234ee9 155 /* Symbol st_other value, symbol visibility. */
f5385ebf 156 unsigned int other : 8;
252b5132 157
35fc36a8
RS
158 /* The symbol's st_target_internal value (see Elf_Internal_Sym). */
159 unsigned int target_internal : 8;
160
7ae26bc1
AM
161 /* Symbol is referenced by a non-shared object (other than the object
162 in which it is defined). */
f5385ebf 163 unsigned int ref_regular : 1;
252b5132 164 /* Symbol is defined by a non-shared object. */
f5385ebf 165 unsigned int def_regular : 1;
252b5132 166 /* Symbol is referenced by a shared object. */
f5385ebf 167 unsigned int ref_dynamic : 1;
252b5132 168 /* Symbol is defined by a shared object. */
f5385ebf 169 unsigned int def_dynamic : 1;
7ae26bc1
AM
170 /* Symbol has a non-weak reference from a non-shared object (other than
171 the object in which it is defined). */
f5385ebf 172 unsigned int ref_regular_nonweak : 1;
252b5132 173 /* Dynamic symbol has been adjustd. */
f5385ebf 174 unsigned int dynamic_adjusted : 1;
252b5132 175 /* Symbol needs a copy reloc. */
f5385ebf 176 unsigned int needs_copy : 1;
252b5132 177 /* Symbol needs a procedure linkage table entry. */
f5385ebf 178 unsigned int needs_plt : 1;
252b5132 179 /* Symbol appears in a non-ELF input file. */
f5385ebf 180 unsigned int non_elf : 1;
252b5132 181 /* Symbol should be marked as hidden in the version information. */
f5385ebf 182 unsigned int hidden : 1;
252b5132 183 /* Symbol was forced to local scope due to a version script file. */
f5385ebf 184 unsigned int forced_local : 1;
55255dae
L
185 /* Symbol was forced to be dynamic due to a version script file. */
186 unsigned int dynamic : 1;
252b5132 187 /* Symbol was marked during garbage collection. */
f5385ebf 188 unsigned int mark : 1;
7843f00e
ILT
189 /* Symbol is referenced by a non-GOT/non-PLT relocation. This is
190 not currently set by all the backends. */
f5385ebf 191 unsigned int non_got_ref : 1;
f6e332e6
AM
192 /* Symbol has a definition in a shared object.
193 FIXME: There is no real need for this field if def_dynamic is never
194 cleared and all places that test def_dynamic also test def_regular. */
f5385ebf 195 unsigned int dynamic_def : 1;
ee659f1f
AM
196 /* Symbol has a non-weak reference from a shared object. */
197 unsigned int ref_dynamic_nonweak : 1;
c6585bbb
JJ
198 /* Symbol is referenced with a relocation where C/C++ pointer equality
199 matters. */
f5385ebf 200 unsigned int pointer_equality_needed : 1;
3e7a7d11
NC
201 /* Symbol is a unique global symbol. */
202 unsigned int unique_global : 1;
b8417128
AM
203 /* Symbol is defined by a shared library with non-default visibility
204 in a read/write section. */
6cabe1ea 205 unsigned int protected_def : 1;
f6e332e6
AM
206
207 /* String table index in .dynstr if this is a dynamic symbol. */
208 unsigned long dynstr_index;
209
210 union
211 {
212 /* If this is a weak defined symbol from a dynamic object, this
213 field points to a defined symbol with the same value, if there is
214 one. Otherwise it is NULL. */
215 struct elf_link_hash_entry *weakdef;
216
217 /* Hash value of the name computed using the ELF hash function.
218 Used part way through size_dynamic_sections, after we've finished
219 with weakdefs. */
220 unsigned long elf_hash_value;
221 } u;
222
223 /* Version information. */
224 union
225 {
226 /* This field is used for a symbol which is not defined in a
227 regular object. It points to the version information read in
228 from the dynamic object. */
229 Elf_Internal_Verdef *verdef;
230 /* This field is used for a symbol which is defined in a regular
231 object. It is set up in size_dynamic_sections. It points to
232 the version information we should write out for this symbol. */
233 struct bfd_elf_version_tree *vertree;
234 } verinfo;
235
a50b1753 236 struct elf_link_virtual_table_entry *vtable;
252b5132
RH
237};
238
586119b3 239/* Will references to this symbol always reference the symbol
2676a7d9 240 in this object? */
986a241f 241#define SYMBOL_REFERENCES_LOCAL(INFO, H) \
f6c52c13 242 _bfd_elf_symbol_refs_local_p (H, INFO, 0)
586119b3
AM
243
244/* Will _calls_ to this symbol always call the version in this object? */
986a241f 245#define SYMBOL_CALLS_LOCAL(INFO, H) \
f6c52c13 246 _bfd_elf_symbol_refs_local_p (H, INFO, 1)
586119b3 247
7e2294f9 248/* Common symbols that are turned into definitions don't have the
c4621b33
AM
249 DEF_REGULAR flag set, so they might appear to be undefined.
250 Symbols defined in linker scripts also don't have DEF_REGULAR set. */
7e2294f9 251#define ELF_COMMON_DEF_P(H) \
f5385ebf
AM
252 (!(H)->def_regular \
253 && !(H)->def_dynamic \
7e2294f9
AO
254 && (H)->root.type == bfd_link_hash_defined)
255
30b30c21
RH
256/* Records local symbols to be emitted in the dynamic symbol table. */
257
258struct elf_link_local_dynamic_entry
259{
260 struct elf_link_local_dynamic_entry *next;
261
262 /* The input bfd this symbol came from. */
263 bfd *input_bfd;
264
265 /* The index of the local symbol being copied. */
266 long input_indx;
267
268 /* The index in the outgoing dynamic symbol table. */
269 long dynindx;
3e932841 270
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271 /* A copy of the input symbol. */
272 Elf_Internal_Sym isym;
273};
274
f5d44ba0
AM
275struct elf_link_loaded_list
276{
277 struct elf_link_loaded_list *next;
278 bfd *abfd;
279};
280
126495ed 281/* Structures used by the eh_frame optimization code. */
126495ed
AM
282struct eh_cie_fde
283{
155eaaa0
RS
284 union {
285 struct {
ca92cecb
RS
286 /* If REMOVED == 1, this is the CIE that the FDE originally used.
287 The CIE belongs to the same .eh_frame input section as the FDE.
288
289 If REMOVED == 0, this is the CIE that we have chosen to use for
290 the output FDE. The CIE's REMOVED field is also 0, but the CIE
c2aaac08
AM
291 might belong to a different .eh_frame input section from the FDE.
292
293 May be NULL to signify that the FDE should be discarded. */
155eaaa0 294 struct eh_cie_fde *cie_inf;
9d0a14d3 295 struct eh_cie_fde *next_for_section;
155eaaa0 296 } fde;
ca92cecb 297 struct {
184d07da 298 /* CIEs have three states:
fc802241 299
184d07da
RS
300 - REMOVED && !MERGED: Slated for removal because we haven't yet
301 proven that an FDE needs it. FULL_CIE, if nonnull, points to
302 more detailed information about the CIE.
fc802241 303
184d07da
RS
304 - REMOVED && MERGED: We have merged this CIE with MERGED_WITH,
305 which may not belong to the same input section.
306
307 - !REMOVED: We have decided to keep this CIE. SEC is the
308 .eh_frame input section that contains the CIE. */
fc802241 309 union {
184d07da
RS
310 struct cie *full_cie;
311 struct eh_cie_fde *merged_with;
fc802241
RS
312 asection *sec;
313 } u;
9d0a14d3 314
18e04883
RS
315 /* The offset of the personality data from the start of the CIE,
316 or 0 if the CIE doesn't have any. */
317 unsigned int personality_offset : 8;
318
9d0a14d3
RS
319 /* True if we have marked relocations associated with this CIE. */
320 unsigned int gc_mark : 1;
9f4b847e
RS
321
322 /* True if we have decided to turn an absolute LSDA encoding into
184d07da 323 a PC-relative one. */
9f4b847e 324 unsigned int make_lsda_relative : 1;
6b2cc140 325
18e04883
RS
326 /* True if we have decided to turn an absolute personality
327 encoding into a PC-relative one. */
328 unsigned int make_per_encoding_relative : 1;
329
330 /* True if the CIE contains personality data and if that
331 data uses a PC-relative encoding. Always true when
332 make_per_encoding_relative is. */
6b2cc140
RS
333 unsigned int per_encoding_relative : 1;
334
335 /* True if we need to add an 'R' (FDE encoding) entry to the
336 CIE's augmentation data. */
337 unsigned int add_fde_encoding : 1;
184d07da
RS
338
339 /* True if we have merged this CIE with another. */
340 unsigned int merged : 1;
18e04883
RS
341
342 /* Unused bits. */
343 unsigned int pad1 : 18;
ca92cecb 344 } cie;
155eaaa0
RS
345 } u;
346 unsigned int reloc_index;
126495ed 347 unsigned int size;
fda3ecf2 348 unsigned int offset;
126495ed 349 unsigned int new_offset;
155eaaa0
RS
350 unsigned int fde_encoding : 8;
351 unsigned int lsda_encoding : 8;
352 unsigned int lsda_offset : 8;
6b2cc140
RS
353
354 /* True if this entry represents a CIE, false if it represents an FDE. */
822392ce 355 unsigned int cie : 1;
6b2cc140
RS
356
357 /* True if this entry is currently marked for removal. */
822392ce 358 unsigned int removed : 1;
6b2cc140
RS
359
360 /* True if we need to add a 'z' (augmentation size) entry to the CIE's
361 augmentation data, and an associated byte to each of the CIE's FDEs. */
353057a5 362 unsigned int add_augmentation_size : 1;
6b2cc140
RS
363
364 /* True if we have decided to convert absolute FDE relocations into
365 relative ones. This applies to the first relocation in the FDE,
366 which is against the code that the FDE describes. */
822392ce 367 unsigned int make_relative : 1;
6b2cc140
RS
368
369 /* Unused bits. */
370 unsigned int pad1 : 4;
371
ac685e6a 372 unsigned int *set_loc;
126495ed
AM
373};
374
375struct eh_frame_sec_info
376{
377 unsigned int count;
184d07da 378 struct cie *cies;
126495ed
AM
379 struct eh_cie_fde entry[1];
380};
381
382struct eh_frame_array_ent
383{
384 bfd_vma initial_loc;
ae6c7e33 385 bfd_size_type range;
126495ed
AM
386 bfd_vma fde;
387};
388
bce613b9
JJ
389struct htab;
390
2f0c68f2
CM
391#define DWARF2_EH_HDR 1
392#define COMPACT_EH_HDR 2
393
394/* Endian-neutral code indicating that a function cannot be unwound. */
395#define COMPACT_EH_CANT_UNWIND_OPCODE 0x015d5d01
396
397struct dwarf_eh_frame_hdr_info
126495ed 398{
bce613b9 399 struct htab *cies;
2f0c68f2 400 unsigned int fde_count;
126495ed
AM
401 /* TRUE if .eh_frame_hdr should contain the sorted search table.
402 We build it if we successfully read all .eh_frame input sections
403 and recognize them. */
b34976b6 404 bfd_boolean table;
2f0c68f2
CM
405 struct eh_frame_array_ent *array;
406};
407
408struct compact_eh_frame_hdr_info
409{
410 unsigned int allocated_entries;
411 /* eh_frame_entry fragments. */
412 asection **entries;
413};
414
415struct eh_frame_hdr_info
416{
417 asection *hdr_sec;
418 unsigned int array_count;
419 bfd_boolean frame_hdr_is_compact;
420 union
421 {
422 struct dwarf_eh_frame_hdr_info dwarf;
423 struct compact_eh_frame_hdr_info compact;
424 }
425 u;
126495ed
AM
426};
427
4dfe6ac6
NC
428/* Enum used to identify target specific extensions to the elf_obj_tdata
429 and elf_link_hash_table structures. Note the enums deliberately start
430 from 1 so that we can detect an uninitialized field. The generic value
431 is last so that additions to this enum do not need to modify more than
432 one line. */
433enum elf_target_id
434{
a06ea964
NC
435 AARCH64_ELF_DATA = 1,
436 ALPHA_ELF_DATA,
4dfe6ac6
NC
437 ARM_ELF_DATA,
438 AVR_ELF_DATA,
439 BFIN_ELF_DATA,
440 CRIS_ELF_DATA,
441 FRV_ELF_DATA,
442 HPPA32_ELF_DATA,
443 HPPA64_ELF_DATA,
444 I386_ELF_DATA,
445 IA64_ELF_DATA,
446 LM32_ELF_DATA,
447 M32R_ELF_DATA,
448 M68HC11_ELF_DATA,
449 M68K_ELF_DATA,
a3c62988 450 METAG_ELF_DATA,
4dfe6ac6
NC
451 MICROBLAZE_ELF_DATA,
452 MIPS_ELF_DATA,
453 MN10300_ELF_DATA,
35c08157 454 NDS32_ELF_DATA,
36591ba1 455 NIOS2_ELF_DATA,
73589c9d 456 OR1K_ELF_DATA,
4dfe6ac6
NC
457 PPC32_ELF_DATA,
458 PPC64_ELF_DATA,
459 S390_ELF_DATA,
460 SH_ELF_DATA,
461 SPARC_ELF_DATA,
462 SPU_ELF_DATA,
41820509 463 TIC6X_ELF_DATA,
4dfe6ac6
NC
464 X86_64_ELF_DATA,
465 XTENSA_ELF_DATA,
f6c1a2d5 466 XGATE_ELF_DATA,
aa137e4d
NC
467 TILEGX_ELF_DATA,
468 TILEPRO_ELF_DATA,
4dfe6ac6
NC
469 GENERIC_ELF_DATA
470};
471
252b5132
RH
472/* ELF linker hash table. */
473
474struct elf_link_hash_table
475{
476 struct bfd_link_hash_table root;
51b64d56 477
4dfe6ac6
NC
478 /* An identifier used to distinguish different target
479 specific extensions to this structure. */
480 enum elf_target_id hash_table_id;
481
252b5132
RH
482 /* Whether we have created the special dynamic sections required
483 when linking against or generating a shared object. */
b34976b6 484 bfd_boolean dynamic_sections_created;
51b64d56 485
74541ad4
AM
486 /* True if this target has relocatable executables, so needs dynamic
487 section symbols. */
488 bfd_boolean is_relocatable_executable;
489
252b5132
RH
490 /* The BFD used to hold special sections created by the linker.
491 This will be the first BFD found which requires these sections to
492 be created. */
493 bfd *dynobj;
51b64d56
AM
494
495 /* The value to use when initialising got.refcount/offset and
496 plt.refcount/offset in an elf_link_hash_entry. Set to zero when
a6aa5195
AM
497 the values are refcounts. Set to init_got_offset/init_plt_offset
498 in size_dynamic_sections when the values may be offsets. */
499 union gotplt_union init_got_refcount;
500 union gotplt_union init_plt_refcount;
5cab59f6
AM
501
502 /* The value to use for got.refcount/offset and plt.refcount/offset
503 when the values may be offsets. Normally (bfd_vma) -1. */
a6aa5195
AM
504 union gotplt_union init_got_offset;
505 union gotplt_union init_plt_offset;
51b64d56 506
252b5132
RH
507 /* The number of symbols found in the link which must be put into
508 the .dynsym section. */
509 bfd_size_type dynsymcount;
51b64d56 510
252b5132
RH
511 /* The string table of dynamic symbols, which becomes the .dynstr
512 section. */
2b0f7ef9 513 struct elf_strtab_hash *dynstr;
51b64d56 514
252b5132
RH
515 /* The number of buckets in the hash table in the .hash section.
516 This is based on the number of dynamic symbols. */
517 bfd_size_type bucketcount;
51b64d56 518
252b5132
RH
519 /* A linked list of DT_NEEDED names found in dynamic objects
520 included in the link. */
521 struct bfd_link_needed_list *needed;
51b64d56 522
74541ad4
AM
523 /* Sections in the output bfd that provides a section symbol
524 to be used by relocations emitted against local symbols.
525 Most targets will not use data_index_section. */
526 asection *text_index_section;
527 asection *data_index_section;
528
252b5132
RH
529 /* The _GLOBAL_OFFSET_TABLE_ symbol. */
530 struct elf_link_hash_entry *hgot;
51b64d56 531
7325306f
RS
532 /* The _PROCEDURE_LINKAGE_TABLE_ symbol. */
533 struct elf_link_hash_entry *hplt;
534
9637f6ef
L
535 /* The _DYNAMIC symbol. */
536 struct elf_link_hash_entry *hdynamic;
537
f5fa8ca2 538 /* A pointer to information used to merge SEC_MERGE sections. */
c39a58e6 539 void *merge_info;
51b64d56 540
3722b82f
AM
541 /* Used to link stabs in sections. */
542 struct stab_info stab_info;
543
126495ed
AM
544 /* Used by eh_frame code when editing .eh_frame. */
545 struct eh_frame_hdr_info eh_info;
546
30b30c21
RH
547 /* A linked list of local symbols to be added to .dynsym. */
548 struct elf_link_local_dynamic_entry *dynlocal;
51b64d56 549
a963dc6a
L
550 /* A linked list of DT_RPATH/DT_RUNPATH names found in dynamic
551 objects included in the link. */
552 struct bfd_link_needed_list *runpath;
13ae64f3 553
e1918d23
AM
554 /* Cached first output tls section and size of PT_TLS segment. */
555 asection *tls_sec;
556 bfd_size_type tls_size;
f5d44ba0
AM
557
558 /* A linked list of BFD's loaded in the link. */
559 struct elf_link_loaded_list *loaded;
6de2ae4a
L
560
561 /* Short-cuts to get to dynamic linker sections. */
562 asection *sgot;
563 asection *sgotplt;
564 asection *srelgot;
565 asection *splt;
566 asection *srelplt;
567 asection *igotplt;
568 asection *iplt;
569 asection *irelplt;
570 asection *irelifunc;
252b5132
RH
571};
572
573/* Look up an entry in an ELF linker hash table. */
574
575#define elf_link_hash_lookup(table, string, create, copy, follow) \
576 ((struct elf_link_hash_entry *) \
577 bfd_link_hash_lookup (&(table)->root, (string), (create), \
578 (copy), (follow)))
579
580/* Traverse an ELF linker hash table. */
581
582#define elf_link_hash_traverse(table, func, info) \
583 (bfd_link_hash_traverse \
584 (&(table)->root, \
c39a58e6 585 (bfd_boolean (*) (struct bfd_link_hash_entry *, void *)) (func), \
252b5132
RH
586 (info)))
587
588/* Get the ELF linker hash table from a link_info structure. */
589
590#define elf_hash_table(p) ((struct elf_link_hash_table *) ((p)->hash))
8ea2e4bd 591
4dfe6ac6
NC
592#define elf_hash_table_id(table) ((table) -> hash_table_id)
593
b34976b6 594/* Returns TRUE if the hash table is a struct elf_link_hash_table. */
0eddce27
AM
595#define is_elf_hash_table(htab) \
596 (((struct bfd_link_hash_table *) (htab))->type == bfd_link_elf_hash_table)
ec338859 597
87d72d41
AM
598/* Used by bfd_sym_from_r_symndx to cache a small number of local
599 symbols. */
ec338859 600#define LOCAL_SYM_CACHE_SIZE 32
87d72d41 601struct sym_cache
ec338859
AM
602{
603 bfd *abfd;
604 unsigned long indx[LOCAL_SYM_CACHE_SIZE];
87d72d41 605 Elf_Internal_Sym sym[LOCAL_SYM_CACHE_SIZE];
ec338859 606};
252b5132
RH
607\f
608/* Constant information held for an ELF backend. */
609
610struct elf_size_info {
611 unsigned char sizeof_ehdr, sizeof_phdr, sizeof_shdr;
612 unsigned char sizeof_rel, sizeof_rela, sizeof_sym, sizeof_dyn, sizeof_note;
613
c7ac6ff8
MM
614 /* The size of entries in the .hash section. */
615 unsigned char sizeof_hash_entry;
616
617 /* The number of internal relocations to allocate per external
618 relocation entry. */
619 unsigned char int_rels_per_ext_rel;
947216bf
AM
620 /* We use some fixed size arrays. This should be large enough to
621 handle all back-ends. */
622#define MAX_INT_RELS_PER_EXT_REL 3
c7ac6ff8 623
45d6a902 624 unsigned char arch_size, log_file_align;
252b5132 625 unsigned char elfclass, ev_current;
dc810e39 626 int (*write_out_phdrs)
c39a58e6
AM
627 (bfd *, const Elf_Internal_Phdr *, unsigned int);
628 bfd_boolean
629 (*write_shdrs_and_ehdr) (bfd *);
20a761b5
RM
630 bfd_boolean (*checksum_contents)
631 (bfd * , void (*) (const void *, size_t, void *), void *);
dc810e39 632 void (*write_relocs)
c39a58e6 633 (bfd *, asection *, void *);
8384fb8f 634 bfd_boolean (*swap_symbol_in)
c39a58e6 635 (bfd *, const void *, const void *, Elf_Internal_Sym *);
dc810e39 636 void (*swap_symbol_out)
c39a58e6 637 (bfd *, const Elf_Internal_Sym *, void *, void *);
b34976b6 638 bfd_boolean (*slurp_reloc_table)
c39a58e6 639 (bfd *, asection *, asymbol **, bfd_boolean);
dc810e39 640 long (*slurp_symbol_table)
c39a58e6 641 (bfd *, asymbol **, bfd_boolean);
dc810e39 642 void (*swap_dyn_in)
c39a58e6 643 (bfd *, const void *, Elf_Internal_Dyn *);
dc810e39 644 void (*swap_dyn_out)
c39a58e6 645 (bfd *, const Elf_Internal_Dyn *, void *);
c7ac6ff8 646
947216bf
AM
647 /* This function is called to swap in a REL relocation. If an
648 external relocation corresponds to more than one internal
649 relocation, then all relocations are swapped in at once. */
c7ac6ff8 650 void (*swap_reloc_in)
c39a58e6 651 (bfd *, const bfd_byte *, Elf_Internal_Rela *);
c7ac6ff8 652
947216bf 653 /* This function is called to swap out a REL relocation. */
c7ac6ff8 654 void (*swap_reloc_out)
c39a58e6 655 (bfd *, const Elf_Internal_Rela *, bfd_byte *);
c7ac6ff8 656
947216bf
AM
657 /* This function is called to swap in a RELA relocation. If an
658 external relocation corresponds to more than one internal
659 relocation, then all relocations are swapped in at once. */
c7ac6ff8 660 void (*swap_reloca_in)
c39a58e6 661 (bfd *, const bfd_byte *, Elf_Internal_Rela *);
c7ac6ff8 662
947216bf 663 /* This function is called to swap out a RELA relocation. */
c7ac6ff8 664 void (*swap_reloca_out)
c39a58e6 665 (bfd *, const Elf_Internal_Rela *, bfd_byte *);
252b5132
RH
666};
667
668#define elf_symbol_from(ABFD,S) \
669 (((S)->the_bfd->xvec->flavour == bfd_target_elf_flavour \
670 && (S)->the_bfd->tdata.elf_obj_data != 0) \
671 ? (elf_symbol_type *) (S) \
672 : 0)
673
db6751f2
JJ
674enum elf_reloc_type_class {
675 reloc_class_normal,
676 reloc_class_relative,
677 reloc_class_plt,
7e612e98
AM
678 reloc_class_copy,
679 reloc_class_ifunc
db6751f2
JJ
680};
681
73d074b4
DJ
682struct elf_reloc_cookie
683{
684 Elf_Internal_Rela *rels, *rel, *relend;
6cdc0ccc 685 Elf_Internal_Sym *locsyms;
73d074b4
DJ
686 bfd *abfd;
687 size_t locsymcount;
688 size_t extsymoff;
689 struct elf_link_hash_entry **sym_hashes;
140f6c8e 690 int r_sym_shift;
b34976b6 691 bfd_boolean bad_symtab;
73d074b4
DJ
692};
693
c6e90b02
TS
694/* The level of IRIX compatibility we're striving for. */
695
696typedef enum {
697 ict_none,
698 ict_irix5,
699 ict_irix6
700} irix_compat_t;
701
2f89ff8d
L
702/* Mapping of ELF section names and types. */
703struct bfd_elf_special_section
704{
705 const char *prefix;
7dcb9820
AM
706 int prefix_length;
707 /* 0 means name must match PREFIX exactly.
708 -1 means name must start with PREFIX followed by an arbitrary string.
709 -2 means name must match PREFIX exactly or consist of PREFIX followed
710 by a dot then anything.
711 > 0 means name must start with the first PREFIX_LENGTH chars of
712 PREFIX and finish with the last SUFFIX_LENGTH chars of PREFIX. */
713 int suffix_length;
2f89ff8d 714 int type;
01e1a5bc 715 bfd_vma attr;
2f89ff8d
L
716};
717
8a696751
AM
718enum action_discarded
719 {
720 COMPLAIN = 1,
721 PRETEND = 2
722 };
723
6a5bb875
PB
724typedef asection * (*elf_gc_mark_hook_fn)
725 (asection *, struct bfd_link_info *, Elf_Internal_Rela *,
726 struct elf_link_hash_entry *, Elf_Internal_Sym *);
727
252b5132
RH
728struct elf_backend_data
729{
252b5132
RH
730 /* The architecture for this backend. */
731 enum bfd_architecture arch;
732
ae95ffa6
L
733 /* An identifier used to distinguish different target specific
734 extensions to elf_obj_tdata and elf_link_hash_table structures. */
735 enum elf_target_id target_id;
736
252b5132
RH
737 /* The ELF machine code (EM_xxxx) for this backend. */
738 int elf_machine_code;
739
d1036acb
L
740 /* EI_OSABI. */
741 int elf_osabi;
742
252b5132
RH
743 /* The maximum page size for this backend. */
744 bfd_vma maxpagesize;
745
b1342370
DJ
746 /* The minimum page size for this backend. An input object will not be
747 considered page aligned unless its sections are correctly aligned for
748 pages at least this large. May be smaller than maxpagesize. */
749 bfd_vma minpagesize;
750
24718e3b
L
751 /* The common page size for this backend. */
752 bfd_vma commonpagesize;
753
e5a52504
MM
754 /* The BFD flags applied to sections created for dynamic linking. */
755 flagword dynamic_sec_flags;
756
23209a78
RM
757 /* Architecture-specific data for this backend.
758 This is actually a pointer to some type like struct elf_ARCH_data. */
759 const void *arch_data;
760
252b5132
RH
761 /* A function to translate an ELF RELA relocation to a BFD arelent
762 structure. */
dc810e39 763 void (*elf_info_to_howto)
c39a58e6 764 (bfd *, arelent *, Elf_Internal_Rela *);
252b5132
RH
765
766 /* A function to translate an ELF REL relocation to a BFD arelent
767 structure. */
dc810e39 768 void (*elf_info_to_howto_rel)
c39a58e6 769 (bfd *, arelent *, Elf_Internal_Rela *);
252b5132
RH
770
771 /* A function to determine whether a symbol is global when
772 partitioning the symbol table into local and global symbols.
773 This should be NULL for most targets, in which case the correct
774 thing will be done. MIPS ELF, at least on the Irix 5, has
775 special requirements. */
b34976b6 776 bfd_boolean (*elf_backend_sym_is_global)
c39a58e6 777 (bfd *, asymbol *);
252b5132
RH
778
779 /* The remaining functions are hooks which are called only if they
780 are not NULL. */
781
782 /* A function to permit a backend specific check on whether a
783 particular BFD format is relevant for an object file, and to
784 permit the backend to set any global information it wishes. When
785 this is called elf_elfheader is set, but anything else should be
b34976b6 786 used with caution. If this returns FALSE, the check_format
252b5132 787 routine will return a bfd_error_wrong_format error. */
b34976b6 788 bfd_boolean (*elf_backend_object_p)
c39a58e6 789 (bfd *);
252b5132
RH
790
791 /* A function to do additional symbol processing when reading the
792 ELF symbol table. This is where any processor-specific special
793 section indices are handled. */
dc810e39 794 void (*elf_backend_symbol_processing)
c39a58e6 795 (bfd *, asymbol *);
252b5132
RH
796
797 /* A function to do additional symbol processing after reading the
798 entire ELF symbol table. */
b34976b6 799 bfd_boolean (*elf_backend_symbol_table_processing)
c39a58e6 800 (bfd *, elf_symbol_type *, unsigned int);
252b5132 801
8387904d 802 /* A function to set the type of the info field. Processor-specific
3e932841 803 types should be handled here. */
dc810e39 804 int (*elf_backend_get_symbol_type)
c39a58e6 805 (Elf_Internal_Sym *, int);
60bcf0fa 806
8387904d
AM
807 /* A function to return the linker hash table entry of a symbol that
808 might be satisfied by an archive symbol. */
809 struct elf_link_hash_entry * (*elf_backend_archive_symbol_lookup)
810 (bfd *, struct bfd_link_info *, const char *);
811
174fd7f9
RS
812 /* Return true if local section symbols should have a non-null st_name.
813 NULL implies false. */
814 bfd_boolean (*elf_backend_name_local_section_symbols)
815 (bfd *);
816
252b5132
RH
817 /* A function to do additional processing on the ELF section header
818 just before writing it out. This is used to set the flags and
819 type fields for some sections, or to actually write out data for
820 unusual sections. */
b34976b6 821 bfd_boolean (*elf_backend_section_processing)
c39a58e6 822 (bfd *, Elf_Internal_Shdr *);
252b5132
RH
823
824 /* A function to handle unusual section types when creating BFD
825 sections from ELF sections. */
b34976b6 826 bfd_boolean (*elf_backend_section_from_shdr)
6dc132d9 827 (bfd *, Elf_Internal_Shdr *, const char *, int);
252b5132 828
551b43fd 829 /* A function to convert machine dependent ELF section header flags to
fa152c49 830 BFD internal section header flags. */
b34976b6 831 bfd_boolean (*elf_backend_section_flags)
1829f4b2 832 (flagword *, const Elf_Internal_Shdr *);
fa152c49 833
551b43fd
AM
834 /* A function that returns a struct containing ELF section flags and
835 type for the given BFD section. */
836 const struct bfd_elf_special_section * (*get_sec_type_attr)
837 (bfd *, asection *);
838
20cfcaae 839 /* A function to handle unusual program segment types when creating BFD
3e932841 840 sections from ELF program segments. */
b34976b6 841 bfd_boolean (*elf_backend_section_from_phdr)
d27f5fa1 842 (bfd *, Elf_Internal_Phdr *, int, const char *);
20cfcaae 843
252b5132
RH
844 /* A function to set up the ELF section header for a BFD section in
845 preparation for writing it out. This is where the flags and type
846 fields are set for unusual sections. */
b34976b6 847 bfd_boolean (*elf_backend_fake_sections)
c39a58e6 848 (bfd *, Elf_Internal_Shdr *, asection *);
252b5132
RH
849
850 /* A function to get the ELF section index for a BFD section. If
b34976b6 851 this returns TRUE, the section was found. If it is a normal ELF
252b5132
RH
852 section, *RETVAL should be left unchanged. If it is not a normal
853 ELF section *RETVAL should be set to the SHN_xxxx index. */
b34976b6 854 bfd_boolean (*elf_backend_section_from_bfd_section)
c39a58e6 855 (bfd *, asection *, int *retval);
252b5132
RH
856
857 /* If this field is not NULL, it is called by the add_symbols phase
858 of a link just before adding a symbol to the global linker hash
859 table. It may modify any of the fields as it wishes. If *NAME
860 is set to NULL, the symbol will be skipped rather than being
861 added to the hash table. This function is responsible for
862 handling all processor dependent symbol bindings and section
863 indices, and must set at least *FLAGS and *SEC for each processor
864 dependent case; failure to do so will cause a link error. */
b34976b6 865 bfd_boolean (*elf_add_symbol_hook)
555cd476 866 (bfd *abfd, struct bfd_link_info *info, Elf_Internal_Sym *,
c39a58e6 867 const char **name, flagword *flags, asection **sec, bfd_vma *value);
252b5132
RH
868
869 /* If this field is not NULL, it is called by the elf_link_output_sym
6e0b88f1
AM
870 phase of a link for each symbol which will appear in the object file.
871 On error, this function returns 0. 1 is returned when the symbol
872 should be output, 2 is returned when the symbol should be discarded. */
873 int (*elf_backend_link_output_symbol_hook)
754021d0
AM
874 (struct bfd_link_info *info, const char *, Elf_Internal_Sym *,
875 asection *, struct elf_link_hash_entry *);
252b5132
RH
876
877 /* The CREATE_DYNAMIC_SECTIONS function is called by the ELF backend
878 linker the first time it encounters a dynamic object in the link.
879 This function must create any sections required for dynamic
880 linking. The ABFD argument is a dynamic object. The .interp,
881 .dynamic, .dynsym, .dynstr, and .hash functions have already been
882 created, and this function may modify the section flags if
883 desired. This function will normally create the .got and .plt
884 sections, but different backends have different requirements. */
b34976b6 885 bfd_boolean (*elf_backend_create_dynamic_sections)
c39a58e6 886 (bfd *abfd, struct bfd_link_info *info);
252b5132 887
aee6f5b4
AO
888 /* When creating a shared library, determine whether to omit the
889 dynamic symbol for the section. */
890 bfd_boolean (*elf_backend_omit_section_dynsym)
891 (bfd *output_bfd, struct bfd_link_info *info, asection *osec);
892
13285a1b
AM
893 /* Return TRUE if relocations of targets are compatible to the extent
894 that CHECK_RELOCS will properly process them. PR 4424. */
895 bfd_boolean (*relocs_compatible) (const bfd_target *, const bfd_target *);
896
252b5132
RH
897 /* The CHECK_RELOCS function is called by the add_symbols phase of
898 the ELF backend linker. It is called once for each section with
899 relocs of an object file, just after the symbols for the object
900 file have been added to the global linker hash table. The
901 function must look through the relocs and do any special handling
902 required. This generally means allocating space in the global
903 offset table, and perhaps allocating space for a reloc. The
904 relocs are always passed as Rela structures; if the section
905 actually uses Rel structures, the r_addend field will always be
906 zero. */
b34976b6 907 bfd_boolean (*check_relocs)
c39a58e6
AM
908 (bfd *abfd, struct bfd_link_info *info, asection *o,
909 const Elf_Internal_Rela *relocs);
252b5132 910
85fbca6a
NC
911 /* The CHECK_DIRECTIVES function is called once per input file by
912 the add_symbols phase of the ELF backend linker. The function
913 must inspect the bfd and create any additional symbols according
914 to any custom directives in the bfd. */
915 bfd_boolean (*check_directives)
916 (bfd *abfd, struct bfd_link_info *info);
917
e5034e59
AM
918 /* The NOTICE_AS_NEEDED function is called as the linker is about to
919 handle an as-needed lib (ACT = notice_as_needed), and after the
920 linker has decided to keep the lib (ACT = notice_needed) or when
921 the lib is not needed (ACT = notice_not_needed). */
922 bfd_boolean (*notice_as_needed)
923 (bfd *abfd, struct bfd_link_info *info, enum notice_asneeded_action act);
97fed1c9 924
252b5132
RH
925 /* The ADJUST_DYNAMIC_SYMBOL function is called by the ELF backend
926 linker for every symbol which is defined by a dynamic object and
927 referenced by a regular object. This is called after all the
928 input files have been seen, but before the SIZE_DYNAMIC_SECTIONS
929 function has been called. The hash table entry should be
930 bfd_link_hash_defined ore bfd_link_hash_defweak, and it should be
931 defined in a section from a dynamic object. Dynamic object
932 sections are not included in the final link, and this function is
933 responsible for changing the value to something which the rest of
934 the link can deal with. This will normally involve adding an
935 entry to the .plt or .got or some such section, and setting the
936 symbol to point to that. */
b34976b6 937 bfd_boolean (*elf_backend_adjust_dynamic_symbol)
c39a58e6 938 (struct bfd_link_info *info, struct elf_link_hash_entry *h);
252b5132
RH
939
940 /* The ALWAYS_SIZE_SECTIONS function is called by the backend linker
941 after all the linker input files have been seen but before the
942 section sizes have been set. This is called after
943 ADJUST_DYNAMIC_SYMBOL, but before SIZE_DYNAMIC_SECTIONS. */
b34976b6 944 bfd_boolean (*elf_backend_always_size_sections)
c39a58e6 945 (bfd *output_bfd, struct bfd_link_info *info);
252b5132
RH
946
947 /* The SIZE_DYNAMIC_SECTIONS function is called by the ELF backend
948 linker after all the linker input files have been seen but before
949 the sections sizes have been set. This is called after
950 ADJUST_DYNAMIC_SYMBOL has been called on all appropriate symbols.
951 It is only called when linking against a dynamic object. It must
952 set the sizes of the dynamic sections, and may fill in their
953 contents as well. The generic ELF linker can handle the .dynsym,
954 .dynstr and .hash sections. This function must handle the
955 .interp section and any sections created by the
956 CREATE_DYNAMIC_SECTIONS entry point. */
b34976b6 957 bfd_boolean (*elf_backend_size_dynamic_sections)
c39a58e6 958 (bfd *output_bfd, struct bfd_link_info *info);
252b5132 959
74541ad4
AM
960 /* Set TEXT_INDEX_SECTION and DATA_INDEX_SECTION, the output sections
961 we keep to use as a base for relocs and symbols. */
962 void (*elf_backend_init_index_section)
963 (bfd *output_bfd, struct bfd_link_info *info);
964
252b5132
RH
965 /* The RELOCATE_SECTION function is called by the ELF backend linker
966 to handle the relocations for a section.
967
968 The relocs are always passed as Rela structures; if the section
969 actually uses Rel structures, the r_addend field will always be
970 zero.
971
972 This function is responsible for adjust the section contents as
973 necessary, and (if using Rela relocs and generating a
1049f94e 974 relocatable output file) adjusting the reloc addend as
252b5132
RH
975 necessary.
976
977 This function does not have to worry about setting the reloc
978 address or the reloc symbol index.
979
980 LOCAL_SYMS is a pointer to the swapped in local symbols.
981
982 LOCAL_SECTIONS is an array giving the section in the input file
983 corresponding to the st_shndx field of each local symbol.
984
985 The global hash table entry for the global symbols can be found
986 via elf_sym_hashes (input_bfd).
987
1049f94e 988 When generating relocatable output, this function must handle
252b5132
RH
989 STB_LOCAL/STT_SECTION symbols specially. The output symbol is
990 going to be the section symbol corresponding to the output
991 section, which means that the addend must be adjusted
ece5ef60
AM
992 accordingly.
993
994 Returns FALSE on error, TRUE on success, 2 if successful and
995 relocations should be written for this section. */
996 int (*elf_backend_relocate_section)
c39a58e6
AM
997 (bfd *output_bfd, struct bfd_link_info *info, bfd *input_bfd,
998 asection *input_section, bfd_byte *contents, Elf_Internal_Rela *relocs,
999 Elf_Internal_Sym *local_syms, asection **local_sections);
252b5132
RH
1000
1001 /* The FINISH_DYNAMIC_SYMBOL function is called by the ELF backend
1002 linker just before it writes a symbol out to the .dynsym section.
1003 The processor backend may make any required adjustment to the
1004 symbol. It may also take the opportunity to set contents of the
1005 dynamic sections. Note that FINISH_DYNAMIC_SYMBOL is called on
1006 all .dynsym symbols, while ADJUST_DYNAMIC_SYMBOL is only called
1007 on those symbols which are defined by a dynamic object. */
b34976b6 1008 bfd_boolean (*elf_backend_finish_dynamic_symbol)
c39a58e6
AM
1009 (bfd *output_bfd, struct bfd_link_info *info,
1010 struct elf_link_hash_entry *h, Elf_Internal_Sym *sym);
252b5132
RH
1011
1012 /* The FINISH_DYNAMIC_SECTIONS function is called by the ELF backend
1013 linker just before it writes all the dynamic sections out to the
1014 output file. The FINISH_DYNAMIC_SYMBOL will have been called on
1015 all dynamic symbols. */
b34976b6 1016 bfd_boolean (*elf_backend_finish_dynamic_sections)
c39a58e6 1017 (bfd *output_bfd, struct bfd_link_info *info);
252b5132
RH
1018
1019 /* A function to do any beginning processing needed for the ELF file
1020 before building the ELF headers and computing file positions. */
1021 void (*elf_backend_begin_write_processing)
c39a58e6 1022 (bfd *, struct bfd_link_info *);
252b5132
RH
1023
1024 /* A function to do any final processing needed for the ELF file
b34976b6 1025 before writing it out. The LINKER argument is TRUE if this BFD
252b5132
RH
1026 was created by the ELF backend linker. */
1027 void (*elf_backend_final_write_processing)
c39a58e6 1028 (bfd *, bfd_boolean linker);
252b5132
RH
1029
1030 /* This function is called by get_program_header_size. It should
1031 return the number of additional program segments which this BFD
1032 will need. It should return -1 on error. */
dc810e39 1033 int (*elf_backend_additional_program_headers)
a6b96beb 1034 (bfd *, struct bfd_link_info *);
252b5132
RH
1035
1036 /* This function is called to modify an existing segment map in a
1037 backend specific fashion. */
b34976b6 1038 bfd_boolean (*elf_backend_modify_segment_map)
c84fca4d 1039 (bfd *, struct bfd_link_info *);
252b5132 1040
e36284ab
AM
1041 /* This function is called to modify program headers just before
1042 they are written. */
1043 bfd_boolean (*elf_backend_modify_program_headers)
1044 (bfd *, struct bfd_link_info *);
1045
74f0fb50
AM
1046 /* This function is called before section garbage collection to
1047 mark entry symbol sections. */
1048 void (*gc_keep)
1049 (struct bfd_link_info *);
1050
64d03ab5
AM
1051 /* This function is called during section garbage collection to
1052 mark sections that define global symbols. */
1053 bfd_boolean (*gc_mark_dynamic_ref)
74f0fb50 1054 (struct elf_link_hash_entry *, void *);
64d03ab5 1055
252b5132 1056 /* This function is called during section gc to discover the section a
1e2f5b6e 1057 particular relocation refers to. */
6a5bb875
PB
1058 elf_gc_mark_hook_fn gc_mark_hook;
1059
1060 /* This function, if defined, is called after the first gc marking pass
1061 to allow the backend to mark additional sections. */
1062 bfd_boolean (*gc_mark_extra_sections)
74f0fb50 1063 (struct bfd_link_info *, elf_gc_mark_hook_fn);
252b5132
RH
1064
1065 /* This function, if defined, is called during the sweep phase of gc
1066 in order that a backend might update any data structures it might
1067 be maintaining. */
b34976b6 1068 bfd_boolean (*gc_sweep_hook)
74f0fb50 1069 (bfd *, struct bfd_link_info *, asection *, const Elf_Internal_Rela *);
252b5132 1070
e6c51ed4
NC
1071 /* This function, if defined, is called after the ELF headers have
1072 been created. This allows for things like the OS and ABI versions
1073 to be changed. */
1074 void (*elf_backend_post_process_headers)
c39a58e6 1075 (bfd *, struct bfd_link_info *);
e6c51ed4 1076
587ff49e
RH
1077 /* This function, if defined, prints a symbol to file and returns the
1078 name of the symbol to be printed. It should return NULL to fall
1079 back to default symbol printing. */
1080 const char *(*elf_backend_print_symbol_all)
c39a58e6 1081 (bfd *, void *, asymbol *);
587ff49e
RH
1082
1083 /* This function, if defined, is called after all local symbols and
4cc11e76 1084 global symbols converted to locals are emitted into the symtab
4e617b1e 1085 section. It allows the backend to emit special local symbols
587ff49e 1086 not handled in the hash table. */
4e617b1e
PB
1087 bfd_boolean (*elf_backend_output_arch_local_syms)
1088 (bfd *, struct bfd_link_info *, void *,
1089 bfd_boolean (*) (void *, const char *, Elf_Internal_Sym *, asection *,
1090 struct elf_link_hash_entry *));
1091
1092 /* This function, if defined, is called after all symbols are emitted
1093 into the symtab section. It allows the backend to emit special
1094 global symbols not handled in the hash table. */
b34976b6 1095 bfd_boolean (*elf_backend_output_arch_syms)
c39a58e6 1096 (bfd *, struct bfd_link_info *, void *,
754021d0
AM
1097 bfd_boolean (*) (void *, const char *, Elf_Internal_Sym *, asection *,
1098 struct elf_link_hash_entry *));
587ff49e 1099
d4c88bbb 1100 /* Copy any information related to dynamic linking from a pre-existing
0a991dfe
AM
1101 symbol to a newly created symbol. Also called to copy flags and
1102 other back-end info to a weakdef, in which case the symbol is not
1103 newly created and plt/got refcounts and dynamic indices should not
1104 be copied. */
c61b8717 1105 void (*elf_backend_copy_indirect_symbol)
fcfa13d2 1106 (struct bfd_link_info *, struct elf_link_hash_entry *,
c39a58e6 1107 struct elf_link_hash_entry *);
c61b8717
RH
1108
1109 /* Modify any information related to dynamic linking such that the
1110 symbol is not exported. */
1111 void (*elf_backend_hide_symbol)
c39a58e6 1112 (struct bfd_link_info *, struct elf_link_hash_entry *, bfd_boolean);
c61b8717 1113
508c3946
L
1114 /* A function to do additional symbol fixup, called by
1115 _bfd_elf_fix_symbol_flags. */
1116 bfd_boolean (*elf_backend_fixup_symbol)
1117 (struct bfd_link_info *, struct elf_link_hash_entry *);
1118
9bf7216d
KK
1119 /* Merge the backend specific symbol attribute. */
1120 void (*elf_backend_merge_symbol_attribute)
1121 (struct elf_link_hash_entry *, const Elf_Internal_Sym *, bfd_boolean,
1122 bfd_boolean);
1123
ad9563d6
CM
1124 /* This function, if defined, will return a string containing the
1125 name of a target-specific dynamic tag. */
1126 char *(*elf_backend_get_target_dtag)
1127 (bfd_vma);
1128
12ac1cf5
NC
1129 /* Decide whether an undefined symbol is special and can be ignored.
1130 This is the case for OPTIONAL symbols on IRIX. */
1131 bfd_boolean (*elf_backend_ignore_undef_symbol)
1132 (struct elf_link_hash_entry *);
1133
9317eacc
CM
1134 /* Emit relocations. Overrides default routine for emitting relocs,
1135 except during a relocatable link, or if all relocs are being emitted. */
b34976b6 1136 bfd_boolean (*elf_backend_emit_relocs)
eac338cf
PB
1137 (bfd *, asection *, Elf_Internal_Shdr *, Elf_Internal_Rela *,
1138 struct elf_link_hash_entry **);
9317eacc
CM
1139
1140 /* Count relocations. Not called for relocatable links
1141 or if all relocs are being preserved in the output. */
1142 unsigned int (*elf_backend_count_relocs)
58217f29 1143 (struct bfd_link_info *, asection *);
9317eacc 1144
28dbcedc
AM
1145 /* Say whether to sort relocs output by ld -r and ld --emit-relocs,
1146 by r_offset. If NULL, default to true. */
1147 bfd_boolean (*sort_relocs_p)
1148 (asection *);
1149
bb0082d6 1150 /* This function, if defined, is called when an NT_PRSTATUS note is found
183e98be 1151 in a core file. */
b34976b6 1152 bfd_boolean (*elf_backend_grok_prstatus)
c39a58e6 1153 (bfd *, Elf_Internal_Note *);
bb0082d6
AM
1154
1155 /* This function, if defined, is called when an NT_PSINFO or NT_PRPSINFO
183e98be 1156 note is found in a core file. */
b34976b6 1157 bfd_boolean (*elf_backend_grok_psinfo)
c39a58e6 1158 (bfd *, Elf_Internal_Note *);
bb0082d6 1159
183e98be
AM
1160 /* This function, if defined, is called to write a note to a corefile. */
1161 char *(*elf_backend_write_core_note)
1162 (bfd *abfd, char *buf, int *bufsiz, int note_type, ...);
1163
ae17ab41
CM
1164 /* This function, if defined, is called to convert target-specific
1165 section flag names into hex values. */
1166 flagword (*elf_backend_lookup_section_flags_hook)
1167 (char *);
1168
db6751f2 1169 /* This function returns class of a reloc type. */
f51e552e 1170 enum elf_reloc_type_class (*elf_backend_reloc_type_class)
7e612e98 1171 (const struct bfd_link_info *, const asection *, const Elf_Internal_Rela *);
db6751f2 1172
73d074b4
DJ
1173 /* This function, if defined, removes information about discarded functions
1174 from other sections which mention them. */
b34976b6 1175 bfd_boolean (*elf_backend_discard_info)
c39a58e6 1176 (bfd *, struct elf_reloc_cookie *, struct bfd_link_info *);
73d074b4
DJ
1177
1178 /* This function, if defined, signals that the function above has removed
1179 the discarded relocations for this section. */
b34976b6 1180 bfd_boolean (*elf_backend_ignore_discarded_relocs)
c39a58e6 1181 (asection *);
73d074b4 1182
8a696751
AM
1183 /* What to do when ld finds relocations against symbols defined in
1184 discarded sections. */
1185 unsigned int (*action_discarded)
1186 (asection *);
1187
8c946ed5
RS
1188 /* This function returns the width of FDE pointers in bytes, or 0 if
1189 that can't be determined for some reason. The default definition
1190 goes by the bfd's EI_CLASS. */
1191 unsigned int (*elf_backend_eh_frame_address_size)
1192 (bfd *, asection *);
1193
ec3391e7
AO
1194 /* These functions tell elf-eh-frame whether to attempt to turn
1195 absolute or lsda encodings into pc-relative ones. The default
1196 definition enables these transformations. */
1197 bfd_boolean (*elf_backend_can_make_relative_eh_frame)
1198 (bfd *, struct bfd_link_info *, asection *);
1199 bfd_boolean (*elf_backend_can_make_lsda_relative_eh_frame)
1200 (bfd *, struct bfd_link_info *, asection *);
1201
1202 /* This function returns an encoding after computing the encoded
1203 value (and storing it in ENCODED) for the given OFFSET into OSEC,
1204 to be stored in at LOC_OFFSET into the LOC_SEC input section.
1205 The default definition chooses a 32-bit PC-relative encoding. */
1206 bfd_byte (*elf_backend_encode_eh_address)
1207 (bfd *abfd, struct bfd_link_info *info,
1208 asection *osec, bfd_vma offset,
1209 asection *loc_sec, bfd_vma loc_offset,
1210 bfd_vma *encoded);
1211
73d074b4 1212 /* This function, if defined, may write out the given section.
b34976b6
AM
1213 Returns TRUE if it did so and FALSE if the caller should. */
1214 bfd_boolean (*elf_backend_write_section)
c7b8f16e 1215 (bfd *, struct bfd_link_info *, asection *, bfd_byte *);
73d074b4 1216
c6e90b02
TS
1217 /* The level of IRIX compatibility we're striving for.
1218 MIPS ELF specific function. */
1219 irix_compat_t (*elf_backend_mips_irix_compat)
c39a58e6 1220 (bfd *);
c6e90b02
TS
1221
1222 reloc_howto_type *(*elf_backend_mips_rtype_to_howto)
c39a58e6 1223 (unsigned int, bfd_boolean);
c6e90b02 1224
252b5132
RH
1225 /* The swapping table to use when dealing with ECOFF information.
1226 Used for the MIPS ELF .mdebug section. */
1227 const struct ecoff_debug_swap *elf_backend_ecoff_debug_swap;
1228
8d6337fe
RM
1229 /* This function implements `bfd_elf_bfd_from_remote_memory';
1230 see elf.c, elfcode.h. */
1231 bfd *(*elf_backend_bfd_from_remote_memory)
f0a5d95a 1232 (bfd *templ, bfd_vma ehdr_vma, bfd_size_type size, bfd_vma *loadbasep,
5979d6b6
AM
1233 int (*target_read_memory) (bfd_vma vma, bfd_byte *myaddr,
1234 bfd_size_type len));
8d6337fe 1235
4c45e5c9
JJ
1236 /* This function is used by `_bfd_elf_get_synthetic_symtab';
1237 see elf.c. */
1238 bfd_vma (*plt_sym_val) (bfd_vma, const asection *, const arelent *);
1239
a4d8e49b
L
1240 /* Is symbol defined in common section? */
1241 bfd_boolean (*common_definition) (Elf_Internal_Sym *);
1242
1243 /* Return a common section index for section. */
1244 unsigned int (*common_section_index) (asection *);
1245
1246 /* Return a common section for section. */
1247 asection *(*common_section) (asection *);
1248
1249 /* Return TRUE if we can merge 2 definitions. */
5d13b3b3
AM
1250 bfd_boolean (*merge_symbol) (struct elf_link_hash_entry *,
1251 const Elf_Internal_Sym *, asection **,
1252 bfd_boolean, bfd_boolean,
1253 bfd *, const asection *);
a4d8e49b 1254
fdc90cb4
JJ
1255 /* Return TRUE if symbol should be hashed in the `.gnu.hash' section. */
1256 bfd_boolean (*elf_hash_symbol) (struct elf_link_hash_entry *);
1257
fcb93ecf
PB
1258 /* Return TRUE if type is a function symbol type. */
1259 bfd_boolean (*is_function_type) (unsigned int type);
1260
aef36ac1
AM
1261 /* If the ELF symbol SYM might be a function in SEC, return the
1262 function size and set *CODE_OFF to the function's entry point,
1263 otherwise return zero. */
1264 bfd_size_type (*maybe_function_sym) (const asymbol *sym, asection *sec,
1265 bfd_vma *code_off);
9f296da3 1266
bd53a53a
L
1267 /* Return the section which RELOC_SEC applies to. */
1268 asection *(*get_reloc_section) (asection *reloc_sec);
1269
185d09ad
L
1270 /* Used to handle bad SHF_LINK_ORDER input. */
1271 bfd_error_handler_type link_order_error_handler;
1272
4c45e5c9
JJ
1273 /* Name of the PLT relocation section. */
1274 const char *relplt_name;
1275
252b5132
RH
1276 /* Alternate EM_xxxx machine codes for this backend. */
1277 int elf_machine_alt1;
1278 int elf_machine_alt2;
1279
1280 const struct elf_size_info *s;
1281
29ef7005
L
1282 /* An array of target specific special sections. */
1283 const struct bfd_elf_special_section *special_sections;
1284
6f2f2c9d
DJ
1285 /* The size in bytes of the header for the GOT. This includes the
1286 so-called reserved entries on some systems. */
252b5132 1287 bfd_vma got_header_size;
252b5132 1288
10455f89
HPN
1289 /* The size of the GOT entry for the symbol pointed to by H if non-NULL,
1290 otherwise by the local symbol with index SYMNDX in IBFD. */
1291 bfd_vma (*got_elt_size) (bfd *, struct bfd_link_info *,
1292 struct elf_link_hash_entry *h,
1293 bfd *ibfd, unsigned long symndx);
1294
104d59d1
JM
1295 /* The vendor name to use for a processor-standard attributes section. */
1296 const char *obj_attrs_vendor;
1297
1298 /* The section name to use for a processor-standard attributes section. */
1299 const char *obj_attrs_section;
1300
1301 /* Return 1, 2 or 3 to indicate what type of arguments a
1302 processor-specific tag takes. */
1303 int (*obj_attrs_arg_type) (int);
1304
1305 /* The section type to use for an attributes section. */
1306 unsigned int obj_attrs_section_type;
1307
3de4a297
JM
1308 /* This function determines the order in which any attributes are
1309 written. It must be defined for input in the range
1310 LEAST_KNOWN_OBJ_ATTRIBUTE..NUM_KNOWN_OBJ_ATTRIBUTES-1 (this range
1311 is used in order to make unity easy). The returned value is the
1312 actual tag number to place in the input position. */
5aa6ff7c
AS
1313 int (*obj_attrs_order) (int);
1314
e8b36cd1
JM
1315 /* Handle merging unknown attributes; either warn and return TRUE,
1316 or give an error and return FALSE. */
1317 bfd_boolean (*obj_attrs_handle_unknown) (bfd *, int);
1318
2f0c68f2
CM
1319 /* Encoding used for compact EH tables. */
1320 int (*compact_eh_encoding) (struct bfd_link_info *);
1321
1322 /* Opcode representing no unwind. */
1323 int (*cant_unwind_opcode) (struct bfd_link_info *);
1324
7dc98aea
RO
1325 /* This is non-zero if static TLS segments require a special alignment. */
1326 unsigned static_tls_alignment;
1327
04c3a755
NS
1328 /* Alignment for the PT_GNU_STACK segment. */
1329 unsigned stack_align;
1330
b34976b6
AM
1331 /* This is TRUE if the linker should act like collect and gather
1332 global constructors and destructors by name. This is TRUE for
86dc0f79
RH
1333 MIPS ELF because the Irix 5 tools can not handle the .init
1334 section. */
1335 unsigned collect : 1;
1336
b34976b6
AM
1337 /* This is TRUE if the linker should ignore changes to the type of a
1338 symbol. This is TRUE for MIPS ELF because some Irix 5 objects
86dc0f79
RH
1339 record undefined functions as STT_OBJECT although the definitions
1340 are STT_FUNC. */
1341 unsigned type_change_ok : 1;
1342
bf572ba0
MM
1343 /* Whether the backend may use REL relocations. (Some backends use
1344 both REL and RELA relocations, and this flag is set for those
1345 backends.) */
1346 unsigned may_use_rel_p : 1;
60bcf0fa 1347
bf572ba0
MM
1348 /* Whether the backend may use RELA relocations. (Some backends use
1349 both REL and RELA relocations, and this flag is set for those
1350 backends.) */
1351 unsigned may_use_rela_p : 1;
1352
1353 /* Whether the default relocation type is RELA. If a backend with
1354 this flag set wants REL relocations for a particular section,
1355 it must note that explicitly. Similarly, if this flag is clear,
60bcf0fa
NC
1356 and the backend wants RELA relocations for a particular
1357 section. */
bf572ba0
MM
1358 unsigned default_use_rela_p : 1;
1359
d35fd659
RS
1360 /* True if PLT and copy relocations should be RELA by default. */
1361 unsigned rela_plts_and_copies_p : 1;
1362
b491616a
AM
1363 /* Set if RELA relocations for a relocatable link can be handled by
1364 generic code. Backends that set this flag need do nothing in the
1365 backend relocate_section routine for relocatable linking. */
1366 unsigned rela_normal : 1;
1367
b34976b6 1368 /* TRUE if addresses "naturally" sign extend. This is used when
86dc0f79
RH
1369 swapping in from Elf32 when BFD64. */
1370 unsigned sign_extend_vma : 1;
1371
252b5132
RH
1372 unsigned want_got_plt : 1;
1373 unsigned plt_readonly : 1;
1374 unsigned want_plt_sym : 1;
1375 unsigned plt_not_loaded : 1;
1376 unsigned plt_alignment : 4;
1377 unsigned can_gc_sections : 1;
51b64d56 1378 unsigned can_refcount : 1;
2517a57f 1379 unsigned want_got_sym : 1;
3018b441 1380 unsigned want_dynbss : 1;
6bfdb61b
AM
1381
1382 /* Targets which do not support physical addressing often require
1383 that the p_paddr field in the section header to be set to zero.
1384 This field indicates whether this behavior is required. */
5e8d7549 1385 unsigned want_p_paddr_set_to_zero : 1;
6bfdb61b
AM
1386
1387 /* True if an object file lacking a .note.GNU-stack section
1388 should be assumed to be requesting exec stack. At least one
1389 other file in the link needs to have a .note.GNU-stack section
1390 for a PT_GNU_STACK segment to be created. */
1391 unsigned default_execstack : 1;
53291d1f
AM
1392
1393 /* True if elf_section_data(sec)->this_hdr.contents is sec->rawsize
1394 in length rather than sec->size in length, if sec->rawsize is
1395 non-zero and smaller than sec->size. */
1396 unsigned caches_rawsize : 1;
f7483970
L
1397
1398 /* Address of protected data defined in the shared library may be
1399 external, i.e., due to copy relocation. */
1400 unsigned extern_protected_data : 1;
252b5132
RH
1401};
1402
d4730f92
BS
1403/* Information about reloc sections associated with a bfd_elf_section_data
1404 structure. */
1405struct bfd_elf_section_reloc_data
1406{
1407 /* The ELF header for the reloc section associated with this
1408 section, if any. */
1409 Elf_Internal_Shdr *hdr;
1410 /* The number of relocations currently assigned to HDR. */
1411 unsigned int count;
1412 /* The ELF section number of the reloc section. Only used for an
1413 output file. */
1414 int idx;
1415 /* Used by the backend linker to store the symbol hash table entries
1416 associated with relocs against global symbols. */
1417 struct elf_link_hash_entry **hashes;
1418};
1419
252b5132
RH
1420/* Information stored for each BFD section in an ELF file. This
1421 structure is allocated by elf_new_section_hook. */
1422
1423struct bfd_elf_section_data
1424{
1425 /* The ELF header for this section. */
1426 Elf_Internal_Shdr this_hdr;
0c715baa 1427
b9c361e0
JL
1428 /* INPUT_SECTION_FLAGS if specified in the linker script. */
1429 struct flag_info *section_flag_info;
1430
d4730f92
BS
1431 /* Information about the REL and RELA reloc sections associated
1432 with this section, if any. */
1433 struct bfd_elf_section_reloc_data rel, rela;
0c715baa 1434
6dc132d9 1435 /* The ELF section number of this section. */
252b5132 1436 int this_idx;
0c715baa 1437
f0abc2a1
AM
1438 /* Used by the backend linker when generating a shared library to
1439 record the dynamic symbol index for a section symbol
1440 corresponding to this section. A value of 0 means that there is
1441 no dynamic symbol for this section. */
1442 int dynindx;
1443
38ce5b11
L
1444 /* A pointer to the linked-to section for SHF_LINK_ORDER. */
1445 asection *linked_to;
1446
252b5132
RH
1447 /* A pointer to the swapped relocs. If the section uses REL relocs,
1448 rather than RELA, all the r_addend fields will be zero. This
1449 pointer may be NULL. It is used by the backend linker. */
1450 Elf_Internal_Rela *relocs;
0c715baa 1451
f0abc2a1
AM
1452 /* A pointer to a linked list tracking dynamic relocs copied for
1453 local symbols. */
c39a58e6 1454 void *local_dynrel;
0c715baa 1455
f0abc2a1
AM
1456 /* A pointer to the bfd section used for dynamic relocs. */
1457 asection *sreloc;
0c715baa 1458
1126897b
AM
1459 union {
1460 /* Group name, if this section is a member of a group. */
1461 const char *name;
1462
1463 /* Group signature sym, if this is the SHT_GROUP section. */
fc0a2244 1464 struct bfd_symbol *id;
1126897b 1465 } group;
dbb410c3 1466
b0956e01
AM
1467 /* For a member of a group, points to the SHT_GROUP section.
1468 NULL for the SHT_GROUP section itself and non-group sections. */
3d7f7666
L
1469 asection *sec_group;
1470
b0956e01
AM
1471 /* A linked list of member sections in the group. Circular when used by
1472 the linker. For the SHT_GROUP section, points at first member. */
dbb410c3
AM
1473 asection *next_in_group;
1474
9d0a14d3
RS
1475 /* The FDEs associated with this section. The u.fde.next_in_section
1476 field acts as a chain pointer. */
1477 struct eh_cie_fde *fde_list;
1478
2f0c68f2
CM
1479 /* Link from a text section to its .eh_frame_entry section. */
1480 asection *eh_frame_entry;
1481
f0abc2a1 1482 /* A pointer used for various section optimizations. */
c39a58e6 1483 void *sec_info;
252b5132
RH
1484};
1485
9f296da3 1486#define elf_section_data(sec) ((struct bfd_elf_section_data*)(sec)->used_by_bfd)
38ce5b11 1487#define elf_linked_to_section(sec) (elf_section_data(sec)->linked_to)
9f296da3
AM
1488#define elf_section_type(sec) (elf_section_data(sec)->this_hdr.sh_type)
1489#define elf_section_flags(sec) (elf_section_data(sec)->this_hdr.sh_flags)
1490#define elf_group_name(sec) (elf_section_data(sec)->group.name)
1491#define elf_group_id(sec) (elf_section_data(sec)->group.id)
1492#define elf_next_in_group(sec) (elf_section_data(sec)->next_in_group)
1493#define elf_fde_list(sec) (elf_section_data(sec)->fde_list)
3d7f7666 1494#define elf_sec_group(sec) (elf_section_data(sec)->sec_group)
2f0c68f2 1495#define elf_section_eh_frame_entry(sec) (elf_section_data(sec)->eh_frame_entry)
252b5132 1496
24718e3b 1497#define xvec_get_elf_backend_data(xvec) \
f7231afc 1498 ((const struct elf_backend_data *) (xvec)->backend_data)
24718e3b 1499
252b5132 1500#define get_elf_backend_data(abfd) \
24718e3b 1501 xvec_get_elf_backend_data ((abfd)->xvec)
252b5132 1502
3de4a297
JM
1503/* The least object attributes (within an attributes subsection) known
1504 for any target. Some code assumes that the value 0 is not used and
1505 the field for that attribute can instead be used as a marker to
1506 indicate that attributes have been initialized. */
59e6276b 1507#define LEAST_KNOWN_OBJ_ATTRIBUTE 2
3de4a297 1508
104d59d1 1509/* The maximum number of known object attributes for any target. */
91e22acd 1510#define NUM_KNOWN_OBJ_ATTRIBUTES 71
104d59d1 1511
3483fe2e
AS
1512/* The value of an object attribute. The type indicates whether the attribute
1513 holds and integer, a string, or both. It can also indicate that there can
1514 be no default (i.e. all values must be written to file, even zero). */
104d59d1
JM
1515
1516typedef struct obj_attribute
1517{
3483fe2e
AS
1518#define ATTR_TYPE_FLAG_INT_VAL (1 << 0)
1519#define ATTR_TYPE_FLAG_STR_VAL (1 << 1)
1520#define ATTR_TYPE_FLAG_NO_DEFAULT (1 << 2)
1521
1522#define ATTR_TYPE_HAS_INT_VAL(TYPE) ((TYPE) & ATTR_TYPE_FLAG_INT_VAL)
1523#define ATTR_TYPE_HAS_STR_VAL(TYPE) ((TYPE) & ATTR_TYPE_FLAG_STR_VAL)
1524#define ATTR_TYPE_HAS_NO_DEFAULT(TYPE) ((TYPE) & ATTR_TYPE_FLAG_NO_DEFAULT)
1525
104d59d1
JM
1526 int type;
1527 unsigned int i;
1528 char *s;
1529} obj_attribute;
1530
1531typedef struct obj_attribute_list
1532{
1533 struct obj_attribute_list *next;
1534 int tag;
1535 obj_attribute attr;
1536} obj_attribute_list;
1537
1538/* Object attributes may either be defined by the processor ABI, index
1539 OBJ_ATTR_PROC in the *_obj_attributes arrays, or be GNU-specific
1540 (and possibly also processor-specific), index OBJ_ATTR_GNU. */
1541#define OBJ_ATTR_PROC 0
1542#define OBJ_ATTR_GNU 1
1543#define OBJ_ATTR_FIRST OBJ_ATTR_PROC
1544#define OBJ_ATTR_LAST OBJ_ATTR_GNU
1545
1546/* The following object attribute tags are taken as generic, for all
1547 targets and for "gnu" where there is no target standard. */
1548enum
1549{
1550 Tag_NULL = 0,
1551 Tag_File = 1,
1552 Tag_Section = 2,
1553 Tag_Symbol = 3,
1554 Tag_compatibility = 32
1555};
1556
e21e5835
NC
1557/* The following struct stores information about every SystemTap section
1558 found in the object file. */
1559struct sdt_note
1560{
1561 struct sdt_note *next;
1562 bfd_size_type size;
1563 bfd_byte data[1];
1564};
1565
228e534f
AM
1566/* tdata information grabbed from an elf core file. */
1567struct core_elf_obj_tdata
1568{
1569 int signal;
1570 int pid;
1571 int lwpid;
1572 char* program;
1573 char* command;
1574};
1575
c0355132
AM
1576/* Extra tdata information held for output ELF BFDs. */
1577struct output_elf_obj_tdata
1578{
1579 struct elf_segment_map *seg_map;
1580 struct elf_strtab_hash *strtab_ptr;
1581
1582 /* STT_SECTION symbols for each section */
1583 asymbol **section_syms;
1584
1585 /* Used to determine if PT_GNU_EH_FRAME segment header should be
1586 created. */
1587 asection *eh_frame_hdr;
1588
1589 /* NT_GNU_BUILD_ID note type info. */
1590 struct
1591 {
1592 bfd_boolean (*after_write_object_contents) (bfd *);
1593 const char *style;
1594 asection *sec;
1595 } build_id;
1596
1597 /* Records the result of `get_program_header_size'. */
1598 bfd_size_type program_header_size;
1599
1600 /* Used when laying out sections. */
1601 file_ptr next_file_pos;
1602
1603 int num_section_syms;
1604 unsigned int shstrtab_section, strtab_section;
1605
1606 /* Segment flags for the PT_GNU_STACK segment. */
1607 unsigned int stack_flags;
1608
1609 /* This is set to TRUE if the object was created by the backend
1610 linker. */
1611 bfd_boolean linker;
1612
1613 /* Used to determine if the e_flags field has been initialized */
1614 bfd_boolean flags_init;
1615};
1616
252b5132
RH
1617/* Some private data is stashed away for future use using the tdata pointer
1618 in the bfd structure. */
1619
1620struct elf_obj_tdata
1621{
1622 Elf_Internal_Ehdr elf_header[1]; /* Actual data, but ref like ptr */
1623 Elf_Internal_Shdr **elf_sect_ptr;
1624 Elf_Internal_Phdr *phdr;
252b5132
RH
1625 Elf_Internal_Shdr symtab_hdr;
1626 Elf_Internal_Shdr shstrtab_hdr;
1627 Elf_Internal_Shdr strtab_hdr;
1628 Elf_Internal_Shdr dynsymtab_hdr;
1629 Elf_Internal_Shdr dynstrtab_hdr;
1630 Elf_Internal_Shdr dynversym_hdr;
1631 Elf_Internal_Shdr dynverref_hdr;
1632 Elf_Internal_Shdr dynverdef_hdr;
9ad5cbcf 1633 Elf_Internal_Shdr symtab_shndx_hdr;
dbb410c3
AM
1634 bfd_vma gp; /* The gp value */
1635 unsigned int gp_size; /* The gp size */
c0355132 1636 unsigned int num_elf_sections; /* elf_sect_ptr size */
dbb410c3 1637
252b5132
RH
1638 /* A mapping from external symbols to entries in the linker hash
1639 table, used when linking. This is indexed by the symbol index
1640 minus the sh_info field of the symbol table header. */
1641 struct elf_link_hash_entry **sym_hashes;
1642
5cab59f6
AM
1643 /* Track usage and final offsets of GOT entries for local symbols.
1644 This array is indexed by symbol index. Elements are used
1645 identically to "got" in struct elf_link_hash_entry. */
252b5132
RH
1646 union
1647 {
1648 bfd_signed_vma *refcounts;
1649 bfd_vma *offsets;
5cab59f6 1650 struct got_entry **ents;
252b5132
RH
1651 } local_got;
1652
252b5132
RH
1653 /* The linker ELF emulation code needs to let the backend ELF linker
1654 know what filename should be used for a dynamic object if the
1655 dynamic object is found using a search. The emulation code then
1656 sometimes needs to know what name was actually used. Until the
1657 file has been added to the linker symbol table, this field holds
1658 the name the linker wants. After it has been added, it holds the
1659 name actually used, which will be the DT_SONAME entry if there is
1660 one. */
1661 const char *dt_name;
1662
7ee314fa 1663 /* The linker emulation needs to know what audit libs
23209a78 1664 are used by a dynamic object. */
7ee314fa
AM
1665 const char *dt_audit;
1666
252b5132 1667 /* Used by find_nearest_line entry point. */
c39a58e6 1668 void *line_info;
252b5132 1669
3e932841 1670 /* A place to stash dwarf1 info for this bfd. */
252b5132
RH
1671 struct dwarf1_debug *dwarf1_find_line_info;
1672
3e932841 1673 /* A place to stash dwarf2 info for this bfd. */
c39a58e6 1674 void *dwarf2_find_line_info;
252b5132 1675
619a703e
AM
1676 /* Stash away info for yet another find line/function variant. */
1677 void *elf_find_function_cache;
1678
252b5132
RH
1679 /* Number of symbol version definitions we are about to emit. */
1680 unsigned int cverdefs;
1681
1682 /* Number of symbol version references we are about to emit. */
1683 unsigned int cverrefs;
1684
1685 /* Symbol version definitions in external objects. */
1686 Elf_Internal_Verdef *verdef;
1687
1688 /* Symbol version references to external objects. */
1689 Elf_Internal_Verneed *verref;
1690
9d0a14d3
RS
1691 /* A pointer to the .eh_frame section. */
1692 asection *eh_frame_section;
1693
c0f00686 1694 /* Symbol buffer. */
c15f73f9 1695 void *symbuf;
104d59d1
JM
1696
1697 obj_attribute known_obj_attributes[2][NUM_KNOWN_OBJ_ATTRIBUTES];
1698 obj_attribute_list *other_obj_attributes[2];
20a761b5 1699
e21e5835
NC
1700 /* Linked-list containing information about every Systemtap section
1701 found in the object file. Each section corresponds to one entry
1702 in the list. */
1703 struct sdt_note *sdt_note_head;
1704
c0355132
AM
1705 Elf_Internal_Shdr **group_sect_ptr;
1706 int num_group;
1707
1708 unsigned int symtab_section, symtab_shndx_section, dynsymtab_section;
1709 unsigned int dynversym_section, dynverdef_section, dynverref_section;
d8045f23 1710
0ffa91dd
NC
1711 /* An identifier used to distinguish different target
1712 specific extensions to this structure. */
4dfe6ac6 1713 enum elf_target_id object_id;
228e534f 1714
c0355132
AM
1715 /* Whether a dyanmic object was specified normally on the linker
1716 command line, or was specified when --as-needed was in effect,
1717 or was found via a DT_NEEDED entry. */
1718 enum dynamic_lib_link_class dyn_lib_class;
1719
1720 /* Irix 5 often screws up the symbol table, sorting local symbols
1721 after global symbols. This flag is set if the symbol table in
1722 this BFD appears to be screwed up. If it is, we ignore the
1723 sh_info field in the symbol table header, and always read all the
1724 symbols. */
1725 bfd_boolean bad_symtab;
1726
1727 /* True if the bfd contains symbols that have the STT_GNU_IFUNC
1728 symbol type or STB_GNU_UNIQUE binding. Used to set the osabi
1729 field in the ELF header structure. */
1730 bfd_boolean has_gnu_symbols;
1731
228e534f
AM
1732 /* Information grabbed from an elf core file. */
1733 struct core_elf_obj_tdata *core;
c0355132
AM
1734
1735 /* More information held for output ELF BFDs. */
1736 struct output_elf_obj_tdata *o;
252b5132
RH
1737};
1738
1739#define elf_tdata(bfd) ((bfd) -> tdata.elf_obj_data)
0ffa91dd
NC
1740
1741#define elf_object_id(bfd) (elf_tdata(bfd) -> object_id)
c0355132 1742#define elf_program_header_size(bfd) (elf_tdata(bfd) -> o->program_header_size)
252b5132
RH
1743#define elf_elfheader(bfd) (elf_tdata(bfd) -> elf_header)
1744#define elf_elfsections(bfd) (elf_tdata(bfd) -> elf_sect_ptr)
9ad5cbcf 1745#define elf_numsections(bfd) (elf_tdata(bfd) -> num_elf_sections)
c0355132
AM
1746#define elf_seg_map(bfd) (elf_tdata(bfd) -> o->seg_map)
1747#define elf_next_file_pos(bfd) (elf_tdata(bfd) -> o->next_file_pos)
1748#define elf_eh_frame_hdr(bfd) (elf_tdata(bfd) -> o->eh_frame_hdr)
1749#define elf_linker(bfd) (elf_tdata(bfd) -> o->linker)
1750#define elf_stack_flags(bfd) (elf_tdata(bfd) -> o->stack_flags)
1751#define elf_shstrtab(bfd) (elf_tdata(bfd) -> o->strtab_ptr)
252b5132 1752#define elf_onesymtab(bfd) (elf_tdata(bfd) -> symtab_section)
9ad5cbcf 1753#define elf_symtab_shndx(bfd) (elf_tdata(bfd) -> symtab_shndx_section)
c0355132
AM
1754#define elf_strtab_sec(bfd) (elf_tdata(bfd) -> o->strtab_section)
1755#define elf_shstrtab_sec(bfd) (elf_tdata(bfd) -> o->shstrtab_section)
0ffa91dd 1756#define elf_symtab_hdr(bfd) (elf_tdata(bfd) -> symtab_hdr)
252b5132
RH
1757#define elf_dynsymtab(bfd) (elf_tdata(bfd) -> dynsymtab_section)
1758#define elf_dynversym(bfd) (elf_tdata(bfd) -> dynversym_section)
1759#define elf_dynverdef(bfd) (elf_tdata(bfd) -> dynverdef_section)
1760#define elf_dynverref(bfd) (elf_tdata(bfd) -> dynverref_section)
9d0a14d3
RS
1761#define elf_eh_frame_section(bfd) \
1762 (elf_tdata(bfd) -> eh_frame_section)
c0355132
AM
1763#define elf_section_syms(bfd) (elf_tdata(bfd) -> o->section_syms)
1764#define elf_num_section_syms(bfd) (elf_tdata(bfd) -> o->num_section_syms)
252b5132
RH
1765#define core_prpsinfo(bfd) (elf_tdata(bfd) -> prpsinfo)
1766#define core_prstatus(bfd) (elf_tdata(bfd) -> prstatus)
1767#define elf_gp(bfd) (elf_tdata(bfd) -> gp)
1768#define elf_gp_size(bfd) (elf_tdata(bfd) -> gp_size)
1769#define elf_sym_hashes(bfd) (elf_tdata(bfd) -> sym_hashes)
1770#define elf_local_got_refcounts(bfd) (elf_tdata(bfd) -> local_got.refcounts)
1771#define elf_local_got_offsets(bfd) (elf_tdata(bfd) -> local_got.offsets)
5cab59f6 1772#define elf_local_got_ents(bfd) (elf_tdata(bfd) -> local_got.ents)
252b5132 1773#define elf_dt_name(bfd) (elf_tdata(bfd) -> dt_name)
7ee314fa 1774#define elf_dt_audit(bfd) (elf_tdata(bfd) -> dt_audit)
4a43e768 1775#define elf_dyn_lib_class(bfd) (elf_tdata(bfd) -> dyn_lib_class)
252b5132 1776#define elf_bad_symtab(bfd) (elf_tdata(bfd) -> bad_symtab)
c0355132 1777#define elf_flags_init(bfd) (elf_tdata(bfd) -> o->flags_init)
104d59d1
JM
1778#define elf_known_obj_attributes(bfd) (elf_tdata (bfd) -> known_obj_attributes)
1779#define elf_other_obj_attributes(bfd) (elf_tdata (bfd) -> other_obj_attributes)
1780#define elf_known_obj_attributes_proc(bfd) \
1781 (elf_known_obj_attributes (bfd) [OBJ_ATTR_PROC])
1782#define elf_other_obj_attributes_proc(bfd) \
1783 (elf_other_obj_attributes (bfd) [OBJ_ATTR_PROC])
252b5132
RH
1784\f
1785extern void _bfd_elf_swap_verdef_in
c39a58e6 1786 (bfd *, const Elf_External_Verdef *, Elf_Internal_Verdef *);
252b5132 1787extern void _bfd_elf_swap_verdef_out
c39a58e6 1788 (bfd *, const Elf_Internal_Verdef *, Elf_External_Verdef *);
252b5132 1789extern void _bfd_elf_swap_verdaux_in
c39a58e6 1790 (bfd *, const Elf_External_Verdaux *, Elf_Internal_Verdaux *);
252b5132 1791extern void _bfd_elf_swap_verdaux_out
c39a58e6 1792 (bfd *, const Elf_Internal_Verdaux *, Elf_External_Verdaux *);
252b5132 1793extern void _bfd_elf_swap_verneed_in
c39a58e6 1794 (bfd *, const Elf_External_Verneed *, Elf_Internal_Verneed *);
252b5132 1795extern void _bfd_elf_swap_verneed_out
c39a58e6 1796 (bfd *, const Elf_Internal_Verneed *, Elf_External_Verneed *);
252b5132 1797extern void _bfd_elf_swap_vernaux_in
c39a58e6 1798 (bfd *, const Elf_External_Vernaux *, Elf_Internal_Vernaux *);
252b5132 1799extern void _bfd_elf_swap_vernaux_out
c39a58e6 1800 (bfd *, const Elf_Internal_Vernaux *, Elf_External_Vernaux *);
252b5132 1801extern void _bfd_elf_swap_versym_in
c39a58e6 1802 (bfd *, const Elf_External_Versym *, Elf_Internal_Versym *);
252b5132 1803extern void _bfd_elf_swap_versym_out
c39a58e6 1804 (bfd *, const Elf_Internal_Versym *, Elf_External_Versym *);
252b5132 1805
cb33740c 1806extern unsigned int _bfd_elf_section_from_bfd_section
c39a58e6 1807 (bfd *, asection *);
252b5132 1808extern char *bfd_elf_string_from_elf_section
c39a58e6 1809 (bfd *, unsigned, unsigned);
6cdc0ccc 1810extern Elf_Internal_Sym *bfd_elf_get_elf_syms
c39a58e6
AM
1811 (bfd *, Elf_Internal_Shdr *, size_t, size_t, Elf_Internal_Sym *, void *,
1812 Elf_External_Sym_Shndx *);
0e2cfdce 1813extern const char *bfd_elf_sym_name
26c61ae5 1814 (bfd *, Elf_Internal_Shdr *, Elf_Internal_Sym *, asection *);
252b5132 1815
b34976b6 1816extern bfd_boolean _bfd_elf_copy_private_bfd_data
c39a58e6 1817 (bfd *, bfd *);
b34976b6 1818extern bfd_boolean _bfd_elf_print_private_bfd_data
c39a58e6 1819 (bfd *, void *);
60bb06bc 1820const char * _bfd_elf_get_symbol_version_string
bb4d2ac2 1821 (bfd *, asymbol *, bfd_boolean *);
dc810e39 1822extern void bfd_elf_print_symbol
c39a58e6 1823 (bfd *, void *, asymbol *, bfd_print_symbol_type);
dc810e39 1824
8c946ed5
RS
1825extern unsigned int _bfd_elf_eh_frame_address_size
1826 (bfd *, asection *);
ec3391e7
AO
1827extern bfd_byte _bfd_elf_encode_eh_address
1828 (bfd *abfd, struct bfd_link_info *info, asection *osec, bfd_vma offset,
1829 asection *loc_sec, bfd_vma loc_offset, bfd_vma *encoded);
1830extern bfd_boolean _bfd_elf_can_make_relative
1831 (bfd *input_bfd, struct bfd_link_info *info, asection *eh_frame_section);
1832
dc810e39 1833extern enum elf_reloc_type_class _bfd_elf_reloc_type_class
7e612e98
AM
1834 (const struct bfd_link_info *, const asection *,
1835 const Elf_Internal_Rela *);
f8df10f4 1836extern bfd_vma _bfd_elf_rela_local_sym
8517fae7 1837 (bfd *, Elf_Internal_Sym *, asection **, Elf_Internal_Rela *);
c629eae0 1838extern bfd_vma _bfd_elf_rel_local_sym
c39a58e6 1839 (bfd *, Elf_Internal_Sym *, asection **, bfd_vma);
c629eae0 1840extern bfd_vma _bfd_elf_section_offset
c39a58e6 1841 (bfd *, struct bfd_link_info *, asection *, bfd_vma);
db6751f2 1842
dc810e39 1843extern unsigned long bfd_elf_hash
c39a58e6 1844 (const char *);
fdc90cb4
JJ
1845extern unsigned long bfd_elf_gnu_hash
1846 (const char *);
252b5132 1847
dc810e39 1848extern bfd_reloc_status_type bfd_elf_generic_reloc
c39a58e6 1849 (bfd *, arelent *, asymbol *, void *, asection *, bfd *, char **);
0ffa91dd 1850extern bfd_boolean bfd_elf_allocate_object
4dfe6ac6 1851 (bfd *, size_t, enum elf_target_id);
ae95ffa6 1852extern bfd_boolean bfd_elf_make_object
c39a58e6 1853 (bfd *);
b34976b6 1854extern bfd_boolean bfd_elf_mkcorefile
c39a58e6 1855 (bfd *);
b34976b6 1856extern bfd_boolean _bfd_elf_make_section_from_shdr
6dc132d9 1857 (bfd *, Elf_Internal_Shdr *, const char *, int);
b34976b6 1858extern bfd_boolean _bfd_elf_make_section_from_phdr
c39a58e6 1859 (bfd *, Elf_Internal_Phdr *, int, const char *);
252b5132 1860extern struct bfd_hash_entry *_bfd_elf_link_hash_newfunc
c39a58e6 1861 (struct bfd_hash_entry *, struct bfd_hash_table *, const char *);
252b5132 1862extern struct bfd_link_hash_table *_bfd_elf_link_hash_table_create
c39a58e6 1863 (bfd *);
9f7c3e5e 1864extern void _bfd_elf_link_hash_table_free
d495ab0d 1865 (bfd *);
c61b8717 1866extern void _bfd_elf_link_hash_copy_indirect
fcfa13d2 1867 (struct bfd_link_info *, struct elf_link_hash_entry *,
c39a58e6 1868 struct elf_link_hash_entry *);
c61b8717 1869extern void _bfd_elf_link_hash_hide_symbol
c39a58e6 1870 (struct bfd_link_info *, struct elf_link_hash_entry *, bfd_boolean);
508c3946
L
1871extern bfd_boolean _bfd_elf_link_hash_fixup_symbol
1872 (struct bfd_link_info *, struct elf_link_hash_entry *);
b34976b6 1873extern bfd_boolean _bfd_elf_link_hash_table_init
c39a58e6
AM
1874 (struct elf_link_hash_table *, bfd *,
1875 struct bfd_hash_entry *(*)
66eb6687 1876 (struct bfd_hash_entry *, struct bfd_hash_table *, const char *),
4dfe6ac6 1877 unsigned int, enum elf_target_id);
b34976b6 1878extern bfd_boolean _bfd_elf_slurp_version_tables
fc0e6df6 1879 (bfd *, bfd_boolean);
b34976b6 1880extern bfd_boolean _bfd_elf_merge_sections
c39a58e6 1881 (bfd *, struct bfd_link_info *);
ecca9871
L
1882extern bfd_boolean _bfd_elf_match_sections_by_type
1883 (bfd *, const asection *, bfd *, const asection *);
72adc230
AM
1884extern bfd_boolean bfd_elf_is_group_section
1885 (bfd *, const struct bfd_section *);
43e1669b 1886extern bfd_boolean _bfd_elf_section_already_linked
c77ec726 1887 (bfd *, asection *, struct bfd_link_info *);
1126897b 1888extern void bfd_elf_set_group_contents
c39a58e6 1889 (bfd *, asection *, void *);
01b3c8ab 1890extern asection *_bfd_elf_check_kept_section
c0f00686 1891 (asection *, struct bfd_link_info *);
dbaa2011 1892#define _bfd_elf_link_just_syms _bfd_generic_link_just_syms
1338dd10
PB
1893extern void _bfd_elf_copy_link_hash_symbol_type
1894 (bfd *, struct bfd_link_hash_entry *, struct bfd_link_hash_entry *);
d0bf826b
AM
1895extern bfd_boolean _bfd_elf_size_group_sections
1896 (struct bfd_link_info *);
1897extern bfd_boolean _bfd_elf_fixup_group_sections
1898(bfd *, asection *);
80fccad2
BW
1899extern bfd_boolean _bfd_elf_copy_private_header_data
1900 (bfd *, bfd *);
b34976b6 1901extern bfd_boolean _bfd_elf_copy_private_symbol_data
c39a58e6 1902 (bfd *, asymbol *, bfd *, asymbol *);
ccd2ec6a
L
1903#define _bfd_generic_init_private_section_data \
1904 _bfd_elf_init_private_section_data
1905extern bfd_boolean _bfd_elf_init_private_section_data
1906 (bfd *, asection *, bfd *, asection *, struct bfd_link_info *);
b34976b6 1907extern bfd_boolean _bfd_elf_copy_private_section_data
c39a58e6 1908 (bfd *, asection *, bfd *, asection *);
b34976b6 1909extern bfd_boolean _bfd_elf_write_object_contents
c39a58e6 1910 (bfd *);
b34976b6 1911extern bfd_boolean _bfd_elf_write_corefile_contents
c39a58e6 1912 (bfd *);
b34976b6 1913extern bfd_boolean _bfd_elf_set_section_contents
0f867abe 1914 (bfd *, sec_ptr, const void *, file_ptr, bfd_size_type);
dc810e39 1915extern long _bfd_elf_get_symtab_upper_bound
c39a58e6 1916 (bfd *);
6cee3f79 1917extern long _bfd_elf_canonicalize_symtab
c39a58e6 1918 (bfd *, asymbol **);
dc810e39 1919extern long _bfd_elf_get_dynamic_symtab_upper_bound
c39a58e6 1920 (bfd *);
dc810e39 1921extern long _bfd_elf_canonicalize_dynamic_symtab
c39a58e6 1922 (bfd *, asymbol **);
4c45e5c9 1923extern long _bfd_elf_get_synthetic_symtab
c9727e01 1924 (bfd *, long, asymbol **, long, asymbol **, asymbol **);
dc810e39 1925extern long _bfd_elf_get_reloc_upper_bound
c39a58e6 1926 (bfd *, sec_ptr);
dc810e39 1927extern long _bfd_elf_canonicalize_reloc
c39a58e6 1928 (bfd *, sec_ptr, arelent **, asymbol **);
83bac4b0
NC
1929extern asection * _bfd_elf_get_dynamic_reloc_section
1930 (bfd *, asection *, bfd_boolean);
1931extern asection * _bfd_elf_make_dynamic_reloc_section
1932 (asection *, bfd *, unsigned int, bfd *, bfd_boolean);
dc810e39 1933extern long _bfd_elf_get_dynamic_reloc_upper_bound
c39a58e6 1934 (bfd *);
dc810e39 1935extern long _bfd_elf_canonicalize_dynamic_reloc
c39a58e6 1936 (bfd *, arelent **, asymbol **);
dc810e39 1937extern asymbol *_bfd_elf_make_empty_symbol
c39a58e6 1938 (bfd *);
dc810e39 1939extern void _bfd_elf_get_symbol_info
c39a58e6 1940 (bfd *, asymbol *, symbol_info *);
b34976b6 1941extern bfd_boolean _bfd_elf_is_local_label_name
c39a58e6 1942 (bfd *, const char *);
dc810e39 1943extern alent *_bfd_elf_get_lineno
c39a58e6 1944 (bfd *, asymbol *);
b34976b6 1945extern bfd_boolean _bfd_elf_set_arch_mach
c39a58e6 1946 (bfd *, enum bfd_architecture, unsigned long);
b34976b6 1947extern bfd_boolean _bfd_elf_find_nearest_line
fb167eb2
AM
1948 (bfd *, asymbol **, asection *, bfd_vma,
1949 const char **, const char **, unsigned int *, unsigned int *);
5420f73d
L
1950extern bfd_boolean _bfd_elf_find_line
1951 (bfd *, asymbol **, asymbol *, const char **, unsigned int *);
4ab527b0
FF
1952extern bfd_boolean _bfd_elf_find_inliner_info
1953 (bfd *, const char **, const char **, unsigned int *);
e00e8198
AM
1954extern bfd_boolean _bfd_elf_find_function
1955 (bfd *, asymbol **, asection *, bfd_vma, const char **, const char **);
252b5132
RH
1956#define _bfd_elf_read_minisymbols _bfd_generic_read_minisymbols
1957#define _bfd_elf_minisymbol_to_symbol _bfd_generic_minisymbol_to_symbol
dc810e39 1958extern int _bfd_elf_sizeof_headers
a6b96beb 1959 (bfd *, struct bfd_link_info *);
b34976b6 1960extern bfd_boolean _bfd_elf_new_section_hook
c39a58e6 1961 (bfd *, asection *);
551b43fd
AM
1962extern const struct bfd_elf_special_section *_bfd_elf_get_special_section
1963 (const char *, const struct bfd_elf_special_section *, unsigned int);
7dcb9820 1964extern const struct bfd_elf_special_section *_bfd_elf_get_sec_type_attr
551b43fd 1965 (bfd *, asection *);
252b5132
RH
1966
1967/* If the target doesn't have reloc handling written yet: */
dc810e39 1968extern void _bfd_elf_no_info_to_howto
c39a58e6 1969 (bfd *, arelent *, Elf_Internal_Rela *);
dc810e39 1970
b34976b6 1971extern bfd_boolean bfd_section_from_shdr
c39a58e6 1972 (bfd *, unsigned int shindex);
b34976b6 1973extern bfd_boolean bfd_section_from_phdr
c39a58e6 1974 (bfd *, Elf_Internal_Phdr *, int);
dc810e39
AM
1975
1976extern int _bfd_elf_symbol_from_bfd_symbol
c39a58e6 1977 (bfd *, asymbol **);
dc810e39 1978
23209a78 1979extern Elf_Internal_Sym *bfd_sym_from_r_symndx
87d72d41 1980 (struct sym_cache *, bfd *, unsigned long);
dc810e39 1981extern asection *bfd_section_from_elf_index
c39a58e6 1982 (bfd *, unsigned int);
dc810e39 1983extern struct bfd_strtab_hash *_bfd_elf_stringtab_init
c39a58e6 1984 (void);
2b0f7ef9
JJ
1985
1986extern struct elf_strtab_hash * _bfd_elf_strtab_init
c39a58e6 1987 (void);
2b0f7ef9 1988extern void _bfd_elf_strtab_free
c39a58e6 1989 (struct elf_strtab_hash *);
2b0f7ef9 1990extern bfd_size_type _bfd_elf_strtab_add
c39a58e6 1991 (struct elf_strtab_hash *, const char *, bfd_boolean);
2b0f7ef9 1992extern void _bfd_elf_strtab_addref
c39a58e6 1993 (struct elf_strtab_hash *, bfd_size_type);
2b0f7ef9 1994extern void _bfd_elf_strtab_delref
c39a58e6 1995 (struct elf_strtab_hash *, bfd_size_type);
02be4619
AM
1996extern unsigned int _bfd_elf_strtab_refcount
1997 (struct elf_strtab_hash *, bfd_size_type);
d45f8bda
AM
1998extern void _bfd_elf_strtab_clear_all_refs
1999 (struct elf_strtab_hash *tab);
2000extern void _bfd_elf_strtab_restore_size
a4542f1b 2001 (struct elf_strtab_hash *, bfd_size_type);
2b0f7ef9 2002extern bfd_size_type _bfd_elf_strtab_size
c39a58e6 2003 (struct elf_strtab_hash *);
2b0f7ef9 2004extern bfd_size_type _bfd_elf_strtab_offset
c39a58e6 2005 (struct elf_strtab_hash *, bfd_size_type);
b34976b6 2006extern bfd_boolean _bfd_elf_strtab_emit
c39a58e6 2007 (bfd *, struct elf_strtab_hash *);
2b0f7ef9 2008extern void _bfd_elf_strtab_finalize
c39a58e6 2009 (struct elf_strtab_hash *);
2b0f7ef9 2010
2f0c68f2
CM
2011extern bfd_boolean bfd_elf_parse_eh_frame_entries
2012 (bfd *, struct bfd_link_info *);
2013extern bfd_boolean _bfd_elf_parse_eh_frame_entry
2014 (struct bfd_link_info *, asection *, struct elf_reloc_cookie *);
ca92cecb
RS
2015extern void _bfd_elf_parse_eh_frame
2016 (bfd *, struct bfd_link_info *, asection *, struct elf_reloc_cookie *);
2f0c68f2
CM
2017extern bfd_boolean _bfd_elf_end_eh_frame_parsing
2018 (struct bfd_link_info *info);
2019
b34976b6 2020extern bfd_boolean _bfd_elf_discard_section_eh_frame
c39a58e6
AM
2021 (bfd *, struct bfd_link_info *, asection *,
2022 bfd_boolean (*) (bfd_vma, void *), struct elf_reloc_cookie *);
b34976b6 2023extern bfd_boolean _bfd_elf_discard_section_eh_frame_hdr
c39a58e6 2024 (bfd *, struct bfd_link_info *);
65765700 2025extern bfd_vma _bfd_elf_eh_frame_section_offset
92e4ec35 2026 (bfd *, struct bfd_link_info *, asection *, bfd_vma);
b34976b6 2027extern bfd_boolean _bfd_elf_write_section_eh_frame
c39a58e6 2028 (bfd *, struct bfd_link_info *, asection *, bfd_byte *);
2f0c68f2
CM
2029bfd_boolean _bfd_elf_write_section_eh_frame_entry
2030 (bfd *, struct bfd_link_info *, asection *, bfd_byte *);
2031extern bfd_boolean _bfd_elf_fixup_eh_frame_hdr (struct bfd_link_info *);
b34976b6 2032extern bfd_boolean _bfd_elf_write_section_eh_frame_hdr
c39a58e6 2033 (bfd *, struct bfd_link_info *);
9a2a56cc
AM
2034extern bfd_boolean _bfd_elf_eh_frame_present
2035 (struct bfd_link_info *);
2f0c68f2
CM
2036extern bfd_boolean _bfd_elf_eh_frame_entry_present
2037 (struct bfd_link_info *);
b34976b6 2038extern bfd_boolean _bfd_elf_maybe_strip_eh_frame_hdr
c39a58e6 2039 (struct bfd_link_info *);
65765700 2040
fdc90cb4
JJ
2041extern bfd_boolean _bfd_elf_hash_symbol (struct elf_link_hash_entry *);
2042
dc810e39 2043extern long _bfd_elf_link_lookup_local_dynindx
c39a58e6 2044 (struct bfd_link_info *, bfd *, long);
b34976b6 2045extern bfd_boolean _bfd_elf_compute_section_file_positions
c39a58e6 2046 (bfd *, struct bfd_link_info *);
dc810e39 2047extern file_ptr _bfd_elf_assign_file_position_for_section
c39a58e6 2048 (Elf_Internal_Shdr *, file_ptr, bfd_boolean);
dc810e39 2049
b34976b6 2050extern bfd_boolean _bfd_elf_validate_reloc
c39a58e6 2051 (bfd *, arelent *);
dc810e39 2052
45d6a902 2053extern bfd_boolean _bfd_elf_link_create_dynamic_sections
c39a58e6 2054 (bfd *, struct bfd_link_info *);
aee6f5b4
AO
2055extern bfd_boolean _bfd_elf_link_omit_section_dynsym
2056 (bfd *, struct bfd_link_info *, asection *);
b34976b6 2057extern bfd_boolean _bfd_elf_create_dynamic_sections
c39a58e6 2058 (bfd *, struct bfd_link_info *);
b34976b6 2059extern bfd_boolean _bfd_elf_create_got_section
c39a58e6 2060 (bfd *, struct bfd_link_info *);
2f0c68f2
CM
2061extern asection *_bfd_elf_section_for_symbol
2062 (struct elf_reloc_cookie *, unsigned long, bfd_boolean);
d98685ac
AM
2063extern struct elf_link_hash_entry *_bfd_elf_define_linkage_sym
2064 (bfd *, struct bfd_link_info *, asection *, const char *);
74541ad4
AM
2065extern void _bfd_elf_init_1_index_section
2066 (bfd *, struct bfd_link_info *);
2067extern void _bfd_elf_init_2_index_sections
2068 (bfd *, struct bfd_link_info *);
dc810e39 2069
b34976b6 2070extern bfd_boolean _bfd_elfcore_make_pseudosection
c39a58e6 2071 (bfd *, char *, size_t, ufile_ptr);
dc810e39 2072extern char *_bfd_elfcore_strndup
c39a58e6 2073 (bfd *, char *, size_t);
dc810e39 2074
45d6a902 2075extern Elf_Internal_Rela *_bfd_elf_link_read_relocs
c39a58e6 2076 (bfd *, asection *, void *, Elf_Internal_Rela *, bfd_boolean);
45d6a902 2077
45d6a902 2078extern bfd_boolean _bfd_elf_link_output_relocs
eac338cf
PB
2079 (bfd *, asection *, Elf_Internal_Shdr *, Elf_Internal_Rela *,
2080 struct elf_link_hash_entry **);
45d6a902 2081
027297b7 2082extern bfd_boolean _bfd_elf_adjust_dynamic_copy
6cabe1ea 2083 (struct bfd_link_info *, struct elf_link_hash_entry *, asection *);
027297b7 2084
986a241f 2085extern bfd_boolean _bfd_elf_dynamic_symbol_p
c39a58e6 2086 (struct elf_link_hash_entry *, struct bfd_link_info *, bfd_boolean);
f6c52c13
AM
2087
2088extern bfd_boolean _bfd_elf_symbol_refs_local_p
c39a58e6 2089 (struct elf_link_hash_entry *, struct bfd_link_info *, bfd_boolean);
986a241f 2090
cdfeee4f 2091extern bfd_reloc_status_type bfd_elf_perform_complex_relocation
0f02bbd9 2092 (bfd *, asection *, bfd_byte *, Elf_Internal_Rela *, bfd_vma);
d9352518 2093
dd863624 2094extern bfd_boolean _bfd_elf_setup_sections
3d7f7666
L
2095 (bfd *);
2096
78245035 2097extern void _bfd_elf_post_process_headers (bfd * , struct bfd_link_info *);
d1036acb 2098
dc810e39 2099extern const bfd_target *bfd_elf32_object_p
c39a58e6 2100 (bfd *);
dc810e39 2101extern const bfd_target *bfd_elf32_core_file_p
c39a58e6 2102 (bfd *);
dc810e39 2103extern char *bfd_elf32_core_file_failing_command
c39a58e6 2104 (bfd *);
dc810e39 2105extern int bfd_elf32_core_file_failing_signal
c39a58e6 2106 (bfd *);
b34976b6 2107extern bfd_boolean bfd_elf32_core_file_matches_executable_p
c39a58e6 2108 (bfd *, bfd *);
261b8d08
PA
2109extern int bfd_elf32_core_file_pid
2110 (bfd *);
252b5132 2111
8384fb8f 2112extern bfd_boolean bfd_elf32_swap_symbol_in
c39a58e6 2113 (bfd *, const void *, const void *, Elf_Internal_Sym *);
252b5132 2114extern void bfd_elf32_swap_symbol_out
c39a58e6 2115 (bfd *, const Elf_Internal_Sym *, void *, void *);
252b5132 2116extern void bfd_elf32_swap_reloc_in
c39a58e6 2117 (bfd *, const bfd_byte *, Elf_Internal_Rela *);
252b5132 2118extern void bfd_elf32_swap_reloc_out
c39a58e6 2119 (bfd *, const Elf_Internal_Rela *, bfd_byte *);
252b5132 2120extern void bfd_elf32_swap_reloca_in
c39a58e6 2121 (bfd *, const bfd_byte *, Elf_Internal_Rela *);
252b5132 2122extern void bfd_elf32_swap_reloca_out
c39a58e6 2123 (bfd *, const Elf_Internal_Rela *, bfd_byte *);
252b5132 2124extern void bfd_elf32_swap_phdr_in
c39a58e6 2125 (bfd *, const Elf32_External_Phdr *, Elf_Internal_Phdr *);
252b5132 2126extern void bfd_elf32_swap_phdr_out
c39a58e6 2127 (bfd *, const Elf_Internal_Phdr *, Elf32_External_Phdr *);
252b5132 2128extern void bfd_elf32_swap_dyn_in
c39a58e6 2129 (bfd *, const void *, Elf_Internal_Dyn *);
252b5132 2130extern void bfd_elf32_swap_dyn_out
c39a58e6 2131 (bfd *, const Elf_Internal_Dyn *, void *);
252b5132 2132extern long bfd_elf32_slurp_symbol_table
c39a58e6 2133 (bfd *, asymbol **, bfd_boolean);
b34976b6 2134extern bfd_boolean bfd_elf32_write_shdrs_and_ehdr
c39a58e6 2135 (bfd *);
252b5132 2136extern int bfd_elf32_write_out_phdrs
c39a58e6 2137 (bfd *, const Elf_Internal_Phdr *, unsigned int);
20a761b5
RM
2138extern bfd_boolean bfd_elf32_checksum_contents
2139 (bfd * , void (*) (const void *, size_t, void *), void *);
b9f66672 2140extern void bfd_elf32_write_relocs
c39a58e6 2141 (bfd *, asection *, void *);
b34976b6 2142extern bfd_boolean bfd_elf32_slurp_reloc_table
c39a58e6 2143 (bfd *, asection *, asymbol **, bfd_boolean);
252b5132 2144
dc810e39 2145extern const bfd_target *bfd_elf64_object_p
c39a58e6 2146 (bfd *);
dc810e39 2147extern const bfd_target *bfd_elf64_core_file_p
c39a58e6 2148 (bfd *);
dc810e39 2149extern char *bfd_elf64_core_file_failing_command
c39a58e6 2150 (bfd *);
dc810e39 2151extern int bfd_elf64_core_file_failing_signal
c39a58e6 2152 (bfd *);
b34976b6 2153extern bfd_boolean bfd_elf64_core_file_matches_executable_p
c39a58e6 2154 (bfd *, bfd *);
261b8d08
PA
2155extern int bfd_elf64_core_file_pid
2156 (bfd *);
252b5132 2157
8384fb8f 2158extern bfd_boolean bfd_elf64_swap_symbol_in
c39a58e6 2159 (bfd *, const void *, const void *, Elf_Internal_Sym *);
252b5132 2160extern void bfd_elf64_swap_symbol_out
c39a58e6 2161 (bfd *, const Elf_Internal_Sym *, void *, void *);
252b5132 2162extern void bfd_elf64_swap_reloc_in
c39a58e6 2163 (bfd *, const bfd_byte *, Elf_Internal_Rela *);
252b5132 2164extern void bfd_elf64_swap_reloc_out
c39a58e6 2165 (bfd *, const Elf_Internal_Rela *, bfd_byte *);
252b5132 2166extern void bfd_elf64_swap_reloca_in
c39a58e6 2167 (bfd *, const bfd_byte *, Elf_Internal_Rela *);
252b5132 2168extern void bfd_elf64_swap_reloca_out
c39a58e6 2169 (bfd *, const Elf_Internal_Rela *, bfd_byte *);
252b5132 2170extern void bfd_elf64_swap_phdr_in
c39a58e6 2171 (bfd *, const Elf64_External_Phdr *, Elf_Internal_Phdr *);
252b5132 2172extern void bfd_elf64_swap_phdr_out
c39a58e6 2173 (bfd *, const Elf_Internal_Phdr *, Elf64_External_Phdr *);
252b5132 2174extern void bfd_elf64_swap_dyn_in
c39a58e6 2175 (bfd *, const void *, Elf_Internal_Dyn *);
252b5132 2176extern void bfd_elf64_swap_dyn_out
c39a58e6 2177 (bfd *, const Elf_Internal_Dyn *, void *);
252b5132 2178extern long bfd_elf64_slurp_symbol_table
c39a58e6 2179 (bfd *, asymbol **, bfd_boolean);
b34976b6 2180extern bfd_boolean bfd_elf64_write_shdrs_and_ehdr
c39a58e6 2181 (bfd *);
252b5132 2182extern int bfd_elf64_write_out_phdrs
c39a58e6 2183 (bfd *, const Elf_Internal_Phdr *, unsigned int);
20a761b5
RM
2184extern bfd_boolean bfd_elf64_checksum_contents
2185 (bfd * , void (*) (const void *, size_t, void *), void *);
b9f66672 2186extern void bfd_elf64_write_relocs
c39a58e6 2187 (bfd *, asection *, void *);
b34976b6 2188extern bfd_boolean bfd_elf64_slurp_reloc_table
c39a58e6 2189 (bfd *, asection *, asymbol **, bfd_boolean);
5a580b3a 2190
13285a1b
AM
2191extern bfd_boolean _bfd_elf_default_relocs_compatible
2192 (const bfd_target *, const bfd_target *);
2193
2194extern bfd_boolean _bfd_elf_relocs_compatible
2195 (const bfd_target *, const bfd_target *);
e5034e59
AM
2196extern bfd_boolean _bfd_elf_notice_as_needed
2197 (bfd *, struct bfd_link_info *, enum notice_asneeded_action);
13285a1b 2198
8387904d
AM
2199extern struct elf_link_hash_entry *_bfd_elf_archive_symbol_lookup
2200 (bfd *, struct bfd_link_info *, const char *);
4ad4eba5
AM
2201extern bfd_boolean bfd_elf_link_add_symbols
2202 (bfd *, struct bfd_link_info *);
5a580b3a 2203extern bfd_boolean _bfd_elf_add_dynamic_entry
c39a58e6 2204 (struct bfd_link_info *, bfd_vma, bfd_vma);
252b5132 2205
c152c796
AM
2206extern bfd_boolean bfd_elf_link_record_dynamic_symbol
2207 (struct bfd_link_info *, struct elf_link_hash_entry *);
30b30c21 2208
c152c796 2209extern int bfd_elf_link_record_local_dynamic_symbol
c39a58e6 2210 (struct bfd_link_info *, bfd *, long);
252b5132 2211
b34976b6 2212extern bfd_boolean _bfd_elf_close_and_cleanup
c39a58e6 2213 (bfd *);
35330cce 2214
a4d8e49b
L
2215extern bfd_boolean _bfd_elf_common_definition
2216 (Elf_Internal_Sym *);
2217
2218extern unsigned int _bfd_elf_common_section_index
2219 (asection *);
2220
2221extern asection *_bfd_elf_common_section
2222 (asection *);
2223
10455f89
HPN
2224extern bfd_vma _bfd_elf_default_got_elt_size
2225(bfd *, struct bfd_link_info *, struct elf_link_hash_entry *, bfd *,
2226 unsigned long);
2227
252b5132 2228extern bfd_reloc_status_type _bfd_elf_rel_vtable_reloc_fn
fc0a2244 2229 (bfd *, arelent *, struct bfd_symbol *, void *,
c39a58e6 2230 asection *, bfd *, char **);
252b5132 2231
c152c796 2232extern bfd_boolean bfd_elf_final_link
c39a58e6 2233 (bfd *, struct bfd_link_info *);
c152c796 2234
74f0fb50
AM
2235extern void _bfd_elf_gc_keep
2236 (struct bfd_link_info *info);
2237
64d03ab5
AM
2238extern bfd_boolean bfd_elf_gc_mark_dynamic_ref_symbol
2239 (struct elf_link_hash_entry *h, void *inf);
2240
c152c796 2241extern bfd_boolean bfd_elf_gc_sections
c39a58e6 2242 (bfd *, struct bfd_link_info *);
c152c796
AM
2243
2244extern bfd_boolean bfd_elf_gc_record_vtinherit
c39a58e6 2245 (bfd *, asection *, struct elf_link_hash_entry *, bfd_vma);
c152c796
AM
2246
2247extern bfd_boolean bfd_elf_gc_record_vtentry
c39a58e6 2248 (bfd *, asection *, struct elf_link_hash_entry *, bfd_vma);
252b5132 2249
07adf181
AM
2250extern asection *_bfd_elf_gc_mark_hook
2251 (asection *, struct bfd_link_info *, Elf_Internal_Rela *,
2252 struct elf_link_hash_entry *, Elf_Internal_Sym *);
2253
5241d853
RS
2254extern asection *_bfd_elf_gc_mark_rsec
2255 (struct bfd_link_info *, asection *, elf_gc_mark_hook_fn,
2256 struct elf_reloc_cookie *);
2257
2258extern bfd_boolean _bfd_elf_gc_mark_reloc
2259 (struct bfd_link_info *, asection *, elf_gc_mark_hook_fn,
9d0a14d3
RS
2260 struct elf_reloc_cookie *);
2261
2262extern bfd_boolean _bfd_elf_gc_mark_fdes
2263 (struct bfd_link_info *, asection *, asection *, elf_gc_mark_hook_fn,
2264 struct elf_reloc_cookie *);
5241d853 2265
ccfa59ea 2266extern bfd_boolean _bfd_elf_gc_mark
5241d853 2267 (struct bfd_link_info *, asection *, elf_gc_mark_hook_fn);
ccfa59ea 2268
7f6ab9f8
AM
2269extern bfd_boolean _bfd_elf_gc_mark_extra_sections
2270 (struct bfd_link_info *, elf_gc_mark_hook_fn);
2271
c152c796 2272extern bfd_boolean bfd_elf_gc_common_finalize_got_offsets
c39a58e6 2273 (bfd *, struct bfd_link_info *);
c152c796
AM
2274
2275extern bfd_boolean bfd_elf_gc_common_final_link
c39a58e6 2276 (bfd *, struct bfd_link_info *);
252b5132 2277
c152c796 2278extern bfd_boolean bfd_elf_reloc_symbol_deleted_p
c39a58e6 2279 (bfd_vma, void *);
73d074b4 2280
8ded5a0f 2281extern struct elf_segment_map * _bfd_elf_make_dynamic_segment
229fcec5
MM
2282 (bfd *, asection *);
2283
8ded5a0f
AM
2284extern bfd_boolean _bfd_elf_map_sections_to_segments
2285 (bfd *, struct bfd_link_info *);
2286
fcb93ecf
PB
2287extern bfd_boolean _bfd_elf_is_function_type (unsigned int);
2288
aef36ac1
AM
2289extern bfd_size_type _bfd_elf_maybe_function_sym (const asymbol *, asection *,
2290 bfd_vma *);
9f296da3 2291
bd53a53a
L
2292extern asection *_bfd_elf_get_reloc_section (asection *);
2293
94be91de
JB
2294extern int bfd_elf_get_default_section_type (flagword);
2295
b9c361e0
JL
2296extern bfd_boolean bfd_elf_lookup_section_flags
2297 (struct bfd_link_info *, struct flag_info *, asection *);
ae17ab41 2298
2ea37f1c
NC
2299extern Elf_Internal_Phdr * _bfd_elf_find_segment_containing_section
2300 (bfd * abfd, asection * section);
2301
7c76fa91 2302/* Exported interface for writing elf corefile notes. */
d4c88bbb 2303extern char *elfcore_write_note
c39a58e6 2304 (bfd *, char *, int *, const char *, int, const void *, int);
d4c88bbb 2305extern char *elfcore_write_prpsinfo
c39a58e6 2306 (bfd *, char *, int *, const char *, const char *);
d4c88bbb 2307extern char *elfcore_write_prstatus
c39a58e6 2308 (bfd *, char *, int *, long, int, const void *);
d4c88bbb 2309extern char * elfcore_write_pstatus
c39a58e6 2310 (bfd *, char *, int *, long, int, const void *);
d4c88bbb 2311extern char *elfcore_write_prfpreg
c39a58e6 2312 (bfd *, char *, int *, const void *, int);
d4c88bbb 2313extern char *elfcore_write_prxfpreg
c39a58e6 2314 (bfd *, char *, int *, const void *, int);
4339cae0
L
2315extern char *elfcore_write_xstatereg
2316 (bfd *, char *, int *, const void *, int);
97753bd5
AM
2317extern char *elfcore_write_ppc_vmx
2318 (bfd *, char *, int *, const void *, int);
89eeb0bc
LM
2319extern char *elfcore_write_ppc_vsx
2320 (bfd *, char *, int *, const void *, int);
d7eeb400
MS
2321extern char *elfcore_write_s390_timer
2322 (bfd *, char *, int *, const void *, int);
2323extern char *elfcore_write_s390_todcmp
2324 (bfd *, char *, int *, const void *, int);
2325extern char *elfcore_write_s390_todpreg
2326 (bfd *, char *, int *, const void *, int);
2327extern char *elfcore_write_s390_ctrs
2328 (bfd *, char *, int *, const void *, int);
2329extern char *elfcore_write_s390_prefix
2330 (bfd *, char *, int *, const void *, int);
355b81d9
UW
2331extern char *elfcore_write_s390_last_break
2332 (bfd *, char *, int *, const void *, int);
2333extern char *elfcore_write_s390_system_call
2334 (bfd *, char *, int *, const void *, int);
abb3f6cc
NC
2335extern char *elfcore_write_s390_tdb
2336 (bfd *, char *, int *, const void *, int);
4ef9f41a
AA
2337extern char *elfcore_write_s390_vxrs_low
2338 (bfd *, char *, int *, const void *, int);
2339extern char *elfcore_write_s390_vxrs_high
2340 (bfd *, char *, int *, const void *, int);
faa9a424
UW
2341extern char *elfcore_write_arm_vfp
2342 (bfd *, char *, int *, const void *, int);
652451f8
YZ
2343extern char *elfcore_write_aarch_tls
2344 (bfd *, char *, int *, const void *, int);
2345extern char *elfcore_write_aarch_hw_break
2346 (bfd *, char *, int *, const void *, int);
2347extern char *elfcore_write_aarch_hw_watch
2348 (bfd *, char *, int *, const void *, int);
d4c88bbb 2349extern char *elfcore_write_lwpstatus
c39a58e6 2350 (bfd *, char *, int *, long, int, const void *);
bb864ac1
CES
2351extern char *elfcore_write_register_note
2352 (bfd *, char *, int *, const char *, const void *, int);
7c76fa91 2353
70a38d42
SDJ
2354/* Internal structure which holds information to be included in the
2355 PRPSINFO section of Linux core files.
2356
2357 This is an "internal" structure in the sense that it should be used
2358 to pass information to BFD (via the `elfcore_write_linux_prpsinfo'
2359 function), so things like endianess shouldn't be an issue. This
2360 structure will eventually be converted in one of the
2361 `elf_external_linux_*' structures and written out to an output bfd
2362 by one of the functions declared below. */
2363
2364struct elf_internal_linux_prpsinfo
2365 {
2366 char pr_state; /* Numeric process state. */
2367 char pr_sname; /* Char for pr_state. */
2368 char pr_zomb; /* Zombie. */
2369 char pr_nice; /* Nice val. */
2370 unsigned long pr_flag; /* Flags. */
2371 unsigned int pr_uid;
2372 unsigned int pr_gid;
2373 int pr_pid, pr_ppid, pr_pgrp, pr_sid;
2374 char pr_fname[16 + 1]; /* Filename of executable. */
2375 char pr_psargs[80 + 1]; /* Initial part of arg list. */
2376 };
2377
2378/* Linux/most 32-bit archs. */
2379extern char *elfcore_write_linux_prpsinfo32
2380 (bfd *, char *, int *, const struct elf_internal_linux_prpsinfo *);
2381
2382/* Linux/most 64-bit archs. */
2383extern char *elfcore_write_linux_prpsinfo64
2384 (bfd *, char *, int *, const struct elf_internal_linux_prpsinfo *);
2385
2386/* Linux/PPC32 uses different layout compared to most archs. */
2387extern char *elfcore_write_ppc_linux_prpsinfo32
2388 (bfd *, char *, int *, const struct elf_internal_linux_prpsinfo *);
2389
8d6337fe 2390extern bfd *_bfd_elf32_bfd_from_remote_memory
f0a5d95a 2391 (bfd *templ, bfd_vma ehdr_vma, bfd_size_type size, bfd_vma *loadbasep,
fe78531d 2392 int (*target_read_memory) (bfd_vma, bfd_byte *, bfd_size_type));
8d6337fe 2393extern bfd *_bfd_elf64_bfd_from_remote_memory
f0a5d95a 2394 (bfd *templ, bfd_vma ehdr_vma, bfd_size_type size, bfd_vma *loadbasep,
fe78531d 2395 int (*target_read_memory) (bfd_vma, bfd_byte *, bfd_size_type));
8d6337fe 2396
104d59d1
JM
2397extern bfd_vma bfd_elf_obj_attr_size (bfd *);
2398extern void bfd_elf_set_obj_attr_contents (bfd *, bfd_byte *, bfd_vma);
2399extern int bfd_elf_get_obj_attr_int (bfd *, int, int);
2400extern void bfd_elf_add_obj_attr_int (bfd *, int, int, unsigned int);
2401#define bfd_elf_add_proc_attr_int(BFD, TAG, VALUE) \
2402 bfd_elf_add_obj_attr_int ((BFD), OBJ_ATTR_PROC, (TAG), (VALUE))
2403extern void bfd_elf_add_obj_attr_string (bfd *, int, int, const char *);
2404#define bfd_elf_add_proc_attr_string(BFD, TAG, VALUE) \
2405 bfd_elf_add_obj_attr_string ((BFD), OBJ_ATTR_PROC, (TAG), (VALUE))
7b86a9fa
AS
2406extern void bfd_elf_add_obj_attr_int_string (bfd *, int, int, unsigned int,
2407 const char *);
2408#define bfd_elf_add_proc_attr_int_string(BFD, TAG, INTVAL, STRVAL) \
2409 bfd_elf_add_obj_attr_int_string ((BFD), OBJ_ATTR_PROC, (TAG), \
2410 (INTVAL), (STRVAL))
104d59d1
JM
2411
2412extern char *_bfd_elf_attr_strdup (bfd *, const char *);
2413extern void _bfd_elf_copy_obj_attributes (bfd *, bfd *);
2414extern int _bfd_elf_obj_attrs_arg_type (bfd *, int, int);
2415extern void _bfd_elf_parse_attributes (bfd *, Elf_Internal_Shdr *);
2416extern bfd_boolean _bfd_elf_merge_object_attributes (bfd *, bfd *);
e8b36cd1
JM
2417extern bfd_boolean _bfd_elf_merge_unknown_attribute_low (bfd *, bfd *, int);
2418extern bfd_boolean _bfd_elf_merge_unknown_attribute_list (bfd *, bfd *);
d4730f92 2419extern Elf_Internal_Shdr *_bfd_elf_single_rel_hdr (asection *sec);
104d59d1 2420
6061a67d 2421/* The linker may need to keep track of the number of relocs that it
e03a8ed8
L
2422 decides to copy as dynamic relocs in check_relocs for each symbol.
2423 This is so that it can later discard them if they are found to be
2424 unnecessary. We can store the information in a field extending the
2425 regular ELF linker hash table. */
2426
2427struct elf_dyn_relocs
2428{
2429 struct elf_dyn_relocs *next;
2430
2431 /* The input section of the reloc. */
2432 asection *sec;
2433
2434 /* Total number of relocs copied for the input section. */
2435 bfd_size_type count;
2436
2437 /* Number of pc-relative relocs copied for the input section. */
2438 bfd_size_type pc_count;
2439};
2440
2a81c24a 2441extern bfd_boolean _bfd_elf_create_ifunc_sections
3aa14d16 2442 (bfd *, struct bfd_link_info *);
e03a8ed8
L
2443extern bfd_boolean _bfd_elf_allocate_ifunc_dyn_relocs
2444 (struct bfd_link_info *, struct elf_link_hash_entry *,
7b70956d 2445 struct elf_dyn_relocs **, unsigned int, unsigned int, unsigned int);
3972882e
L
2446extern long _bfd_elf_ifunc_get_synthetic_symtab
2447 (bfd *, long, asymbol **, long, asymbol **, asymbol **, asection *,
2448 bfd_vma *(*) (bfd *, asymbol **, asection *, asection *));
d8045f23 2449
351f65ca
L
2450extern void elf_append_rela (bfd *, asection *, Elf_Internal_Rela *);
2451extern void elf_append_rel (bfd *, asection *, Elf_Internal_Rela *);
2452
2453extern bfd_vma elf64_r_info (bfd_vma, bfd_vma);
2454extern bfd_vma elf64_r_sym (bfd_vma);
2455extern bfd_vma elf32_r_info (bfd_vma, bfd_vma);
2456extern bfd_vma elf32_r_sym (bfd_vma);
2457
3b22753a
L
2458/* Large common section. */
2459extern asection _bfd_elf_large_com_section;
2460
d2149d72
L
2461/* Hash for local symbol with the first section id, ID, in the input
2462 file and the local symbol index, SYM. */
2463#define ELF_LOCAL_SYMBOL_HASH(ID, SYM) \
2464 (((((ID) & 0xff) << 24) | (((ID) & 0xff00) << 8)) \
2465 ^ (SYM) ^ ((ID) >> 16))
2466
c152c796
AM
2467/* This is the condition under which finish_dynamic_symbol will be called.
2468 If our finish_dynamic_symbol isn't called, we'll need to do something
2469 about initializing any .plt and .got entries in relocate_section. */
2470#define WILL_CALL_FINISH_DYNAMIC_SYMBOL(DYN, SHARED, H) \
2471 ((DYN) \
f5385ebf
AM
2472 && ((SHARED) || !(H)->forced_local) \
2473 && ((H)->dynindx != -1 || (H)->forced_local))
c152c796 2474
560e09e9
NC
2475/* This macro is to avoid lots of duplicated code in the body
2476 of xxx_relocate_section() in the various elfxx-xxxx.c files. */
b2a8e766
AM
2477#define RELOC_FOR_GLOBAL_SYMBOL(info, input_bfd, input_section, rel, \
2478 r_symndx, symtab_hdr, sym_hashes, \
2479 h, sec, relocation, \
62d887d4 2480 unresolved_reloc, warned, ignored) \
b2a8e766
AM
2481 do \
2482 { \
2483 /* It seems this can happen with erroneous or unsupported \
2484 input (mixing a.out and elf in an archive, for example.) */ \
2485 if (sym_hashes == NULL) \
2486 return FALSE; \
2487 \
2488 h = sym_hashes[r_symndx - symtab_hdr->sh_info]; \
2489 \
8a5da09b
AM
2490 if (info->wrap_hash != NULL \
2491 && (input_section->flags & SEC_DEBUGGING) != 0) \
2492 h = ((struct elf_link_hash_entry *) \
2493 unwrap_hash_lookup (info, input_bfd, &h->root)); \
2494 \
b2a8e766
AM
2495 while (h->root.type == bfd_link_hash_indirect \
2496 || h->root.type == bfd_link_hash_warning) \
2497 h = (struct elf_link_hash_entry *) h->root.u.i.link; \
2498 \
2499 warned = FALSE; \
62d887d4 2500 ignored = FALSE; \
b2a8e766
AM
2501 unresolved_reloc = FALSE; \
2502 relocation = 0; \
2503 if (h->root.type == bfd_link_hash_defined \
2504 || h->root.type == bfd_link_hash_defweak) \
2505 { \
2506 sec = h->root.u.def.section; \
2507 if (sec == NULL \
2508 || sec->output_section == NULL) \
2509 /* Set a flag that will be cleared later if we find a \
2510 relocation value for this symbol. output_section \
2511 is typically NULL for symbols satisfied by a shared \
2512 library. */ \
2513 unresolved_reloc = TRUE; \
2514 else \
2515 relocation = (h->root.u.def.value \
2516 + sec->output_section->vma \
2517 + sec->output_offset); \
2518 } \
2519 else if (h->root.type == bfd_link_hash_undefweak) \
2520 ; \
2521 else if (info->unresolved_syms_in_objects == RM_IGNORE \
2522 && ELF_ST_VISIBILITY (h->other) == STV_DEFAULT) \
62d887d4 2523 ignored = TRUE; \
ab96bf03 2524 else if (!info->relocatable) \
b2a8e766 2525 { \
5a580b3a
AM
2526 bfd_boolean err; \
2527 err = (info->unresolved_syms_in_objects == RM_GENERATE_ERROR \
2528 || ELF_ST_VISIBILITY (h->other) != STV_DEFAULT); \
2529 if (!info->callbacks->undefined_symbol (info, \
2530 h->root.root.string, \
2531 input_bfd, \
2532 input_section, \
2533 rel->r_offset, err)) \
b2a8e766
AM
2534 return FALSE; \
2535 warned = TRUE; \
2536 } \
c7e2358a
AM
2537 (void) unresolved_reloc; \
2538 (void) warned; \
62d887d4 2539 (void) ignored; \
b2a8e766 2540 } \
560e09e9
NC
2541 while (0)
2542
0672748a
L
2543/* This macro is to avoid lots of duplicated code in the body of the
2544 loop over relocations in xxx_relocate_section() in the various
2545 elfxx-xxxx.c files.
23209a78 2546
0672748a
L
2547 Handle relocations against symbols from removed linkonce sections,
2548 or sections discarded by a linker script. When doing a relocatable
2549 link, we remove such relocations. Otherwise, we just want the
2550 section contents zeroed and avoid any special processing. */
2551#define RELOC_AGAINST_DISCARDED_SECTION(info, input_bfd, input_section, \
545fd46b
MR
2552 rel, count, relend, \
2553 howto, index, contents) \
0672748a 2554 { \
a134cc9b 2555 int i_; \
e4067dbb 2556 _bfd_clear_contents (howto, input_bfd, input_section, \
545fd46b 2557 contents + rel[index].r_offset); \
e4067dbb 2558 \
0672748a
L
2559 if (info->relocatable \
2560 && (input_section->flags & SEC_DEBUGGING)) \
2561 { \
2562 /* Only remove relocations in debug sections since other \
2563 sections may require relocations. */ \
2564 Elf_Internal_Shdr *rel_hdr; \
2565 \
d4730f92 2566 rel_hdr = _bfd_elf_single_rel_hdr (input_section->output_section); \
0672748a
L
2567 \
2568 /* Avoid empty output section. */ \
86f7d49b 2569 if (rel_hdr->sh_size > rel_hdr->sh_entsize) \
0672748a 2570 { \
86f7d49b 2571 rel_hdr->sh_size -= rel_hdr->sh_entsize; \
d4730f92 2572 rel_hdr = _bfd_elf_single_rel_hdr (input_section); \
86f7d49b 2573 rel_hdr->sh_size -= rel_hdr->sh_entsize; \
0672748a 2574 \
545fd46b
MR
2575 memmove (rel, rel + count, \
2576 (relend - rel - count) * sizeof (*rel)); \
0672748a 2577 \
86f7d49b 2578 input_section->reloc_count--; \
545fd46b 2579 relend -= count; \
0672748a
L
2580 rel--; \
2581 continue; \
2582 } \
2583 } \
2584 \
a134cc9b 2585 for (i_ = 0; i_ < count; i_++) \
545fd46b 2586 { \
a134cc9b
HPN
2587 rel[i_].r_info = 0; \
2588 rel[i_].r_addend = 0; \
545fd46b
MR
2589 } \
2590 rel += count - 1; \
0672748a
L
2591 continue; \
2592 }
2593
a8685210 2594/* Will a symbol be bound to the definition within the shared
6f8bcf84 2595 library, if any. A unique symbol can never be bound locally. */
55255dae 2596#define SYMBOLIC_BIND(INFO, H) \
6f8bcf84
L
2597 (!(H)->unique_global \
2598 && ((INFO)->symbolic || ((INFO)->dynamic && !(H)->dynamic)))
55255dae 2599
55172d69
PA
2600#ifdef __cplusplus
2601}
2602#endif
252b5132 2603#endif /* _LIBELF_H_ */
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