* Makefile.tpl (top level bootstrap support): Remove now-unneeded
[deliverable/binutils-gdb.git] / bfd / elf32-arm.h
CommitLineData
252b5132 1/* 32-bit ELF support for ARM
d1f161ea
NC
2 Copyright 1998, 1999, 2000, 2001, 2002, 2003, 2004
3 Free Software Foundation, Inc.
252b5132
RH
4
5 This file is part of BFD, the Binary File Descriptor library.
6
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2 of the License, or
10 (at your option) any later version.
11
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with this program; if not, write to the Free Software
19 Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. */
20
acf8aed4
AM
21#ifndef USE_REL
22#define USE_REL 0
23#endif
24
252b5132
RH
25typedef unsigned long int insn32;
26typedef unsigned short int insn16;
27
b34976b6 28static bfd_boolean elf32_arm_set_private_flags
252b5132 29 PARAMS ((bfd *, flagword));
b34976b6 30static bfd_boolean elf32_arm_copy_private_bfd_data
252b5132 31 PARAMS ((bfd *, bfd *));
b34976b6 32static bfd_boolean elf32_arm_merge_private_bfd_data
252b5132 33 PARAMS ((bfd *, bfd *));
b34976b6 34static bfd_boolean elf32_arm_print_private_bfd_data
252b5132 35 PARAMS ((bfd *, PTR));
f21f3fe0 36static int elf32_arm_get_symbol_type
252b5132
RH
37 PARAMS (( Elf_Internal_Sym *, int));
38static struct bfd_link_hash_table *elf32_arm_link_hash_table_create
39 PARAMS ((bfd *));
40static bfd_reloc_status_type elf32_arm_final_link_relocate
780a67af
NC
41 PARAMS ((reloc_howto_type *, bfd *, bfd *, asection *, bfd_byte *,
42 Elf_Internal_Rela *, bfd_vma, struct bfd_link_info *, asection *,
dc810e39 43 const char *, int, struct elf_link_hash_entry *));
252b5132
RH
44static insn32 insert_thumb_branch
45 PARAMS ((insn32, int));
46static struct elf_link_hash_entry *find_thumb_glue
917583ad 47 PARAMS ((struct bfd_link_info *, const char *, bfd *));
252b5132 48static struct elf_link_hash_entry *find_arm_glue
917583ad 49 PARAMS ((struct bfd_link_info *, const char *, bfd *));
ba96a88f
NC
50static void elf32_arm_post_process_headers
51 PARAMS ((bfd *, struct bfd_link_info *));
bcbdc74c
NC
52static int elf32_arm_to_thumb_stub
53 PARAMS ((struct bfd_link_info *, const char *, bfd *, bfd *, asection *,
54 bfd_byte *, asection *, bfd_vma, bfd_signed_vma, bfd_vma));
55static int elf32_thumb_to_arm_stub
56 PARAMS ((struct bfd_link_info *, const char *, bfd *, bfd *, asection *,
57 bfd_byte *, asection *, bfd_vma, bfd_signed_vma, bfd_vma));
b34976b6 58static bfd_boolean elf32_arm_relocate_section
917583ad
NC
59 PARAMS ((bfd *, struct bfd_link_info *, bfd *, asection *, bfd_byte *,
60 Elf_Internal_Rela *, Elf_Internal_Sym *, asection **));
61static asection * elf32_arm_gc_mark_hook
1e2f5b6e 62 PARAMS ((asection *, struct bfd_link_info *, Elf_Internal_Rela *,
917583ad 63 struct elf_link_hash_entry *, Elf_Internal_Sym *));
b34976b6 64static bfd_boolean elf32_arm_gc_sweep_hook
917583ad
NC
65 PARAMS ((bfd *, struct bfd_link_info *, asection *,
66 const Elf_Internal_Rela *));
b34976b6 67static bfd_boolean elf32_arm_check_relocs
917583ad
NC
68 PARAMS ((bfd *, struct bfd_link_info *, asection *,
69 const Elf_Internal_Rela *));
b34976b6 70static bfd_boolean elf32_arm_find_nearest_line
917583ad
NC
71 PARAMS ((bfd *, asection *, asymbol **, bfd_vma, const char **,
72 const char **, unsigned int *));
b34976b6 73static bfd_boolean elf32_arm_adjust_dynamic_symbol
917583ad 74 PARAMS ((struct bfd_link_info *, struct elf_link_hash_entry *));
b34976b6 75static bfd_boolean elf32_arm_size_dynamic_sections
917583ad 76 PARAMS ((bfd *, struct bfd_link_info *));
b34976b6 77static bfd_boolean elf32_arm_finish_dynamic_symbol
917583ad
NC
78 PARAMS ((bfd *, struct bfd_link_info *, struct elf_link_hash_entry *,
79 Elf_Internal_Sym *));
b34976b6 80static bfd_boolean elf32_arm_finish_dynamic_sections
917583ad
NC
81 PARAMS ((bfd *, struct bfd_link_info *));
82static struct bfd_hash_entry * elf32_arm_link_hash_newfunc
83 PARAMS ((struct bfd_hash_entry *, struct bfd_hash_table *, const char *));
acf8aed4 84#if USE_REL
917583ad
NC
85static void arm_add_to_rel
86 PARAMS ((bfd *, bfd_byte *, reloc_howto_type *, bfd_signed_vma));
87#endif
5e681ec4
PB
88static bfd_boolean allocate_dynrelocs
89 PARAMS ((struct elf_link_hash_entry *h, PTR inf));
90static bfd_boolean create_got_section
91 PARAMS ((bfd * dynobj, struct bfd_link_info * info));
92static bfd_boolean elf32_arm_create_dynamic_sections
93 PARAMS ((bfd * dynobj, struct bfd_link_info * info));
7e392df6
NC
94static enum elf_reloc_type_class elf32_arm_reloc_type_class
95 PARAMS ((const Elf_Internal_Rela *));
c178919b
NC
96static bfd_boolean elf32_arm_object_p
97 PARAMS ((bfd *));
252b5132 98
7e392df6
NC
99#ifndef ELFARM_NABI_C_INCLUDED
100static void record_arm_to_thumb_glue
101 PARAMS ((struct bfd_link_info *, struct elf_link_hash_entry *));
102static void record_thumb_to_arm_glue
103 PARAMS ((struct bfd_link_info *, struct elf_link_hash_entry *));
b34976b6 104bfd_boolean bfd_elf32_arm_allocate_interworking_sections
917583ad 105 PARAMS ((struct bfd_link_info *));
b34976b6 106bfd_boolean bfd_elf32_arm_get_bfd_for_interworking
917583ad 107 PARAMS ((bfd *, struct bfd_link_info *));
b34976b6 108bfd_boolean bfd_elf32_arm_process_before_allocation
917583ad 109 PARAMS ((bfd *, struct bfd_link_info *, int));
7e392df6
NC
110#endif
111
99e4ae17 112
fd2ec330 113#define INTERWORK_FLAG(abfd) (elf_elfheader (abfd)->e_flags & EF_ARM_INTERWORK)
9b485d32 114
252b5132
RH
115/* The linker script knows the section names for placement.
116 The entry_names are used to do simple name mangling on the stubs.
117 Given a function name, and its type, the stub can be found. The
9b485d32 118 name can be changed. The only requirement is the %s be present. */
252b5132
RH
119#define THUMB2ARM_GLUE_SECTION_NAME ".glue_7t"
120#define THUMB2ARM_GLUE_ENTRY_NAME "__%s_from_thumb"
121
122#define ARM2THUMB_GLUE_SECTION_NAME ".glue_7"
123#define ARM2THUMB_GLUE_ENTRY_NAME "__%s_from_arm"
124
125/* The name of the dynamic interpreter. This is put in the .interp
126 section. */
127#define ELF_DYNAMIC_INTERPRETER "/usr/lib/ld.so.1"
128
5e681ec4
PB
129#ifdef FOUR_WORD_PLT
130
131/* The size in bytes of the special first entry in the procedure
132 linkage table. */
133#define PLT_HEADER_SIZE 16
134
252b5132 135/* The size in bytes of an entry in the procedure linkage table. */
24a1ba0f 136#define PLT_ENTRY_SIZE 16
252b5132
RH
137
138/* The first entry in a procedure linkage table looks like
139 this. It is set up so that any shared library function that is
59f2c4e7 140 called before the relocation has been set up calls the dynamic
9b485d32 141 linker first. */
5e681ec4
PB
142static const bfd_vma elf32_arm_plt0_entry [PLT_HEADER_SIZE / 4] =
143 {
144 0xe52de004, /* str lr, [sp, #-4]! */
145 0xe59fe010, /* ldr lr, [pc, #16] */
146 0xe08fe00e, /* add lr, pc, lr */
147 0xe5bef008, /* ldr pc, [lr, #8]! */
148 };
149
150/* Subsequent entries in a procedure linkage table look like
151 this. */
152static const bfd_vma elf32_arm_plt_entry [PLT_ENTRY_SIZE / 4] =
153 {
154 0xe28fc600, /* add ip, pc, #NN */
155 0xe28cca00, /* add ip, ip, #NN */
156 0xe5bcf000, /* ldr pc, [ip, #NN]! */
157 0x00000000, /* unused */
158 };
159
160#else
161
162/* The size in bytes of the special first entry in the procedure
163 linkage table. */
164#define PLT_HEADER_SIZE 20
165
166/* The size in bytes of an entry in the procedure linkage table. */
167#define PLT_ENTRY_SIZE 12
168
169/* The first entry in a procedure linkage table looks like
170 this. It is set up so that any shared library function that is
171 called before the relocation has been set up calls the dynamic
172 linker first. */
173static const bfd_vma elf32_arm_plt0_entry [PLT_HEADER_SIZE / 4] =
917583ad 174 {
5e681ec4
PB
175 0xe52de004, /* str lr, [sp, #-4]! */
176 0xe59fe004, /* ldr lr, [pc, #4] */
177 0xe08fe00e, /* add lr, pc, lr */
178 0xe5bef008, /* ldr pc, [lr, #8]! */
179 0x00000000, /* &GOT[0] - . */
917583ad 180 };
252b5132
RH
181
182/* Subsequent entries in a procedure linkage table look like
183 this. */
24a1ba0f 184static const bfd_vma elf32_arm_plt_entry [PLT_ENTRY_SIZE / 4] =
5e681ec4
PB
185 {
186 0xe28fc600, /* add ip, pc, #0xNN00000 */
187 0xe28cca00, /* add ip, ip, #0xNN000 */
188 0xe5bcf000, /* ldr pc, [ip, #0xNNN]! */
189 };
190
191#endif
252b5132 192
252b5132
RH
193/* The ARM linker needs to keep track of the number of relocs that it
194 decides to copy in check_relocs for each symbol. This is so that
195 it can discard PC relative relocs if it doesn't need them when
196 linking with -Bsymbolic. We store the information in a field
197 extending the regular ELF linker hash table. */
198
199/* This structure keeps track of the number of PC relative relocs we
200 have copied for a given symbol. */
5e681ec4 201struct elf32_arm_relocs_copied
917583ad
NC
202 {
203 /* Next section. */
5e681ec4 204 struct elf32_arm_relocs_copied * next;
917583ad
NC
205 /* A section in dynobj. */
206 asection * section;
207 /* Number of relocs copied in this section. */
208 bfd_size_type count;
209 };
252b5132 210
ba96a88f 211/* Arm ELF linker hash entry. */
252b5132 212struct elf32_arm_link_hash_entry
917583ad
NC
213 {
214 struct elf_link_hash_entry root;
252b5132 215
917583ad 216 /* Number of PC relative relocs copied for this symbol. */
5e681ec4 217 struct elf32_arm_relocs_copied * relocs_copied;
917583ad 218 };
252b5132 219
252b5132 220/* Traverse an arm ELF linker hash table. */
252b5132
RH
221#define elf32_arm_link_hash_traverse(table, func, info) \
222 (elf_link_hash_traverse \
223 (&(table)->root, \
b34976b6 224 (bfd_boolean (*) PARAMS ((struct elf_link_hash_entry *, PTR))) (func), \
252b5132
RH
225 (info)))
226
227/* Get the ARM elf linker hash table from a link_info structure. */
228#define elf32_arm_hash_table(info) \
229 ((struct elf32_arm_link_hash_table *) ((info)->hash))
230
9b485d32 231/* ARM ELF linker hash table. */
252b5132 232struct elf32_arm_link_hash_table
917583ad
NC
233 {
234 /* The main hash table. */
235 struct elf_link_hash_table root;
252b5132 236
4cc11e76 237 /* The size in bytes of the section containing the Thumb-to-ARM glue. */
dc810e39 238 bfd_size_type thumb_glue_size;
252b5132 239
4cc11e76 240 /* The size in bytes of the section containing the ARM-to-Thumb glue. */
dc810e39 241 bfd_size_type arm_glue_size;
252b5132 242
4cc11e76 243 /* An arbitrary input BFD chosen to hold the glue sections. */
917583ad 244 bfd * bfd_of_glue_owner;
ba96a88f 245
917583ad
NC
246 /* A boolean indicating whether knowledge of the ARM's pipeline
247 length should be applied by the linker. */
248 int no_pipeline_knowledge;
5e681ec4
PB
249
250 /* Short-cuts to get to dynamic linker sections. */
251 asection *sgot;
252 asection *sgotplt;
253 asection *srelgot;
254 asection *splt;
255 asection *srelplt;
256 asection *sdynbss;
257 asection *srelbss;
258
259 /* Small local sym to section mapping cache. */
260 struct sym_sec_cache sym_sec;
917583ad 261 };
252b5132 262
780a67af
NC
263/* Create an entry in an ARM ELF linker hash table. */
264
265static struct bfd_hash_entry *
266elf32_arm_link_hash_newfunc (entry, table, string)
267 struct bfd_hash_entry * entry;
268 struct bfd_hash_table * table;
269 const char * string;
270{
271 struct elf32_arm_link_hash_entry * ret =
272 (struct elf32_arm_link_hash_entry *) entry;
273
274 /* Allocate the structure if it has not already been allocated by a
275 subclass. */
276 if (ret == (struct elf32_arm_link_hash_entry *) NULL)
277 ret = ((struct elf32_arm_link_hash_entry *)
278 bfd_hash_allocate (table,
279 sizeof (struct elf32_arm_link_hash_entry)));
280 if (ret == (struct elf32_arm_link_hash_entry *) NULL)
281 return (struct bfd_hash_entry *) ret;
282
283 /* Call the allocation method of the superclass. */
284 ret = ((struct elf32_arm_link_hash_entry *)
285 _bfd_elf_link_hash_newfunc ((struct bfd_hash_entry *) ret,
286 table, string));
287 if (ret != (struct elf32_arm_link_hash_entry *) NULL)
5e681ec4 288 ret->relocs_copied = NULL;
780a67af
NC
289
290 return (struct bfd_hash_entry *) ret;
291}
292
5e681ec4
PB
293/* Create .got, .gotplt, and .rel.got sections in DYNOBJ, and set up
294 shortcuts to them in our hash table. */
295
296static bfd_boolean
297create_got_section (dynobj, info)
298 bfd *dynobj;
299 struct bfd_link_info *info;
300{
301 struct elf32_arm_link_hash_table *htab;
302
303 if (! _bfd_elf_create_got_section (dynobj, info))
304 return FALSE;
305
306 htab = elf32_arm_hash_table (info);
307 htab->sgot = bfd_get_section_by_name (dynobj, ".got");
308 htab->sgotplt = bfd_get_section_by_name (dynobj, ".got.plt");
309 if (!htab->sgot || !htab->sgotplt)
310 abort ();
311
312 htab->srelgot = bfd_make_section (dynobj, ".rel.got");
313 if (htab->srelgot == NULL
314 || ! bfd_set_section_flags (dynobj, htab->srelgot,
315 (SEC_ALLOC | SEC_LOAD | SEC_HAS_CONTENTS
316 | SEC_IN_MEMORY | SEC_LINKER_CREATED
317 | SEC_READONLY))
318 || ! bfd_set_section_alignment (dynobj, htab->srelgot, 2))
319 return FALSE;
320 return TRUE;
321}
322
323/* Create .plt, .rel.plt, .got, .got.plt, .rel.got, .dynbss, and
324 .rel.bss sections in DYNOBJ, and set up shortcuts to them in our
325 hash table. */
326
327static bfd_boolean
328elf32_arm_create_dynamic_sections (dynobj, info)
329 bfd *dynobj;
330 struct bfd_link_info *info;
331{
332 struct elf32_arm_link_hash_table *htab;
333
334 htab = elf32_arm_hash_table (info);
335 if (!htab->sgot && !create_got_section (dynobj, info))
336 return FALSE;
337
338 if (!_bfd_elf_create_dynamic_sections (dynobj, info))
339 return FALSE;
340
341 htab->splt = bfd_get_section_by_name (dynobj, ".plt");
342 htab->srelplt = bfd_get_section_by_name (dynobj, ".rel.plt");
343 htab->sdynbss = bfd_get_section_by_name (dynobj, ".dynbss");
344 if (!info->shared)
345 htab->srelbss = bfd_get_section_by_name (dynobj, ".rel.bss");
346
347 if (!htab->splt || !htab->srelplt || !htab->sdynbss
348 || (!info->shared && !htab->srelbss))
349 abort ();
350
351 return TRUE;
352}
353
354/* Copy the extra info we tack onto an elf_link_hash_entry. */
355
356static void
357elf32_arm_copy_indirect_symbol (const struct elf_backend_data *bed,
358 struct elf_link_hash_entry *dir,
359 struct elf_link_hash_entry *ind)
360{
361 struct elf32_arm_link_hash_entry *edir, *eind;
362
363 edir = (struct elf32_arm_link_hash_entry *) dir;
364 eind = (struct elf32_arm_link_hash_entry *) ind;
365
366 if (eind->relocs_copied != NULL)
367 {
368 if (edir->relocs_copied != NULL)
369 {
370 struct elf32_arm_relocs_copied **pp;
371 struct elf32_arm_relocs_copied *p;
372
373 if (ind->root.type == bfd_link_hash_indirect)
374 abort ();
375
376 /* Add reloc counts against the weak sym to the strong sym
377 list. Merge any entries against the same section. */
378 for (pp = &eind->relocs_copied; (p = *pp) != NULL; )
379 {
380 struct elf32_arm_relocs_copied *q;
381
382 for (q = edir->relocs_copied; q != NULL; q = q->next)
383 if (q->section == p->section)
384 {
5e681ec4
PB
385 q->count += p->count;
386 *pp = p->next;
387 break;
388 }
389 if (q == NULL)
390 pp = &p->next;
391 }
392 *pp = edir->relocs_copied;
393 }
394
395 edir->relocs_copied = eind->relocs_copied;
396 eind->relocs_copied = NULL;
397 }
398
399 _bfd_elf_link_hash_copy_indirect (bed, dir, ind);
400}
401
9b485d32 402/* Create an ARM elf linker hash table. */
252b5132
RH
403
404static struct bfd_link_hash_table *
405elf32_arm_link_hash_table_create (abfd)
406 bfd *abfd;
407{
408 struct elf32_arm_link_hash_table *ret;
dc810e39 409 bfd_size_type amt = sizeof (struct elf32_arm_link_hash_table);
252b5132 410
e2d34d7d 411 ret = (struct elf32_arm_link_hash_table *) bfd_malloc (amt);
252b5132
RH
412 if (ret == (struct elf32_arm_link_hash_table *) NULL)
413 return NULL;
414
415 if (!_bfd_elf_link_hash_table_init (&ret->root, abfd,
780a67af 416 elf32_arm_link_hash_newfunc))
252b5132 417 {
e2d34d7d 418 free (ret);
252b5132
RH
419 return NULL;
420 }
421
5e681ec4
PB
422 ret->sgot = NULL;
423 ret->sgotplt = NULL;
424 ret->srelgot = NULL;
425 ret->splt = NULL;
426 ret->srelplt = NULL;
427 ret->sdynbss = NULL;
428 ret->srelbss = NULL;
252b5132
RH
429 ret->thumb_glue_size = 0;
430 ret->arm_glue_size = 0;
431 ret->bfd_of_glue_owner = NULL;
ba96a88f 432 ret->no_pipeline_knowledge = 0;
5e681ec4 433 ret->sym_sec.abfd = NULL;
252b5132
RH
434
435 return &ret->root.root;
436}
437
9b485d32
NC
438/* Locate the Thumb encoded calling stub for NAME. */
439
252b5132
RH
440static struct elf_link_hash_entry *
441find_thumb_glue (link_info, name, input_bfd)
442 struct bfd_link_info *link_info;
917583ad 443 const char *name;
252b5132
RH
444 bfd *input_bfd;
445{
446 char *tmp_name;
447 struct elf_link_hash_entry *hash;
448 struct elf32_arm_link_hash_table *hash_table;
449
450 /* We need a pointer to the armelf specific hash table. */
451 hash_table = elf32_arm_hash_table (link_info);
452
dc810e39
AM
453 tmp_name = (char *) bfd_malloc ((bfd_size_type) strlen (name)
454 + strlen (THUMB2ARM_GLUE_ENTRY_NAME) + 1);
252b5132
RH
455
456 BFD_ASSERT (tmp_name);
457
458 sprintf (tmp_name, THUMB2ARM_GLUE_ENTRY_NAME, name);
459
460 hash = elf_link_hash_lookup
b34976b6 461 (&(hash_table)->root, tmp_name, FALSE, FALSE, TRUE);
252b5132
RH
462
463 if (hash == NULL)
464 /* xgettext:c-format */
8f615d07
AM
465 (*_bfd_error_handler) (_("%s: unable to find THUMB glue '%s' for `%s'"),
466 bfd_archive_filename (input_bfd), tmp_name, name);
252b5132
RH
467
468 free (tmp_name);
469
470 return hash;
471}
472
9b485d32
NC
473/* Locate the ARM encoded calling stub for NAME. */
474
252b5132
RH
475static struct elf_link_hash_entry *
476find_arm_glue (link_info, name, input_bfd)
477 struct bfd_link_info *link_info;
917583ad 478 const char *name;
252b5132
RH
479 bfd *input_bfd;
480{
481 char *tmp_name;
482 struct elf_link_hash_entry *myh;
483 struct elf32_arm_link_hash_table *hash_table;
484
485 /* We need a pointer to the elfarm specific hash table. */
486 hash_table = elf32_arm_hash_table (link_info);
487
dc810e39
AM
488 tmp_name = (char *) bfd_malloc ((bfd_size_type) strlen (name)
489 + strlen (ARM2THUMB_GLUE_ENTRY_NAME) + 1);
252b5132
RH
490
491 BFD_ASSERT (tmp_name);
492
493 sprintf (tmp_name, ARM2THUMB_GLUE_ENTRY_NAME, name);
494
495 myh = elf_link_hash_lookup
b34976b6 496 (&(hash_table)->root, tmp_name, FALSE, FALSE, TRUE);
252b5132
RH
497
498 if (myh == NULL)
499 /* xgettext:c-format */
8f615d07
AM
500 (*_bfd_error_handler) (_("%s: unable to find ARM glue '%s' for `%s'"),
501 bfd_archive_filename (input_bfd), tmp_name, name);
252b5132
RH
502
503 free (tmp_name);
504
505 return myh;
506}
507
9b485d32 508/* ARM->Thumb glue:
252b5132
RH
509
510 .arm
511 __func_from_arm:
512 ldr r12, __func_addr
513 bx r12
514 __func_addr:
9b485d32 515 .word func @ behave as if you saw a ARM_32 reloc. */
252b5132
RH
516
517#define ARM2THUMB_GLUE_SIZE 12
518static const insn32 a2t1_ldr_insn = 0xe59fc000;
519static const insn32 a2t2_bx_r12_insn = 0xe12fff1c;
520static const insn32 a2t3_func_addr_insn = 0x00000001;
521
9b485d32 522/* Thumb->ARM: Thumb->(non-interworking aware) ARM
252b5132
RH
523
524 .thumb .thumb
525 .align 2 .align 2
526 __func_from_thumb: __func_from_thumb:
527 bx pc push {r6, lr}
528 nop ldr r6, __func_addr
529 .arm mov lr, pc
530 __func_change_to_arm: bx r6
531 b func .arm
532 __func_back_to_thumb:
533 ldmia r13! {r6, lr}
534 bx lr
535 __func_addr:
9b485d32 536 .word func */
252b5132
RH
537
538#define THUMB2ARM_GLUE_SIZE 8
539static const insn16 t2a1_bx_pc_insn = 0x4778;
540static const insn16 t2a2_noop_insn = 0x46c0;
541static const insn32 t2a3_b_insn = 0xea000000;
542
7e392df6 543#ifndef ELFARM_NABI_C_INCLUDED
b34976b6 544bfd_boolean
252b5132
RH
545bfd_elf32_arm_allocate_interworking_sections (info)
546 struct bfd_link_info * info;
547{
548 asection * s;
549 bfd_byte * foo;
550 struct elf32_arm_link_hash_table * globals;
551
552 globals = elf32_arm_hash_table (info);
553
554 BFD_ASSERT (globals != NULL);
555
556 if (globals->arm_glue_size != 0)
557 {
558 BFD_ASSERT (globals->bfd_of_glue_owner != NULL);
559
dc810e39
AM
560 s = bfd_get_section_by_name (globals->bfd_of_glue_owner,
561 ARM2THUMB_GLUE_SECTION_NAME);
252b5132
RH
562
563 BFD_ASSERT (s != NULL);
564
dc810e39
AM
565 foo = (bfd_byte *) bfd_alloc (globals->bfd_of_glue_owner,
566 globals->arm_glue_size);
252b5132
RH
567
568 s->_raw_size = s->_cooked_size = globals->arm_glue_size;
569 s->contents = foo;
570 }
571
572 if (globals->thumb_glue_size != 0)
573 {
574 BFD_ASSERT (globals->bfd_of_glue_owner != NULL);
575
576 s = bfd_get_section_by_name
577 (globals->bfd_of_glue_owner, THUMB2ARM_GLUE_SECTION_NAME);
578
579 BFD_ASSERT (s != NULL);
580
dc810e39
AM
581 foo = (bfd_byte *) bfd_alloc (globals->bfd_of_glue_owner,
582 globals->thumb_glue_size);
252b5132
RH
583
584 s->_raw_size = s->_cooked_size = globals->thumb_glue_size;
585 s->contents = foo;
586 }
587
b34976b6 588 return TRUE;
252b5132
RH
589}
590
591static void
592record_arm_to_thumb_glue (link_info, h)
593 struct bfd_link_info * link_info;
594 struct elf_link_hash_entry * h;
595{
596 const char * name = h->root.root.string;
63b0f745 597 asection * s;
252b5132
RH
598 char * tmp_name;
599 struct elf_link_hash_entry * myh;
14a793b2 600 struct bfd_link_hash_entry * bh;
252b5132 601 struct elf32_arm_link_hash_table * globals;
dc810e39 602 bfd_vma val;
252b5132
RH
603
604 globals = elf32_arm_hash_table (link_info);
605
606 BFD_ASSERT (globals != NULL);
607 BFD_ASSERT (globals->bfd_of_glue_owner != NULL);
608
609 s = bfd_get_section_by_name
610 (globals->bfd_of_glue_owner, ARM2THUMB_GLUE_SECTION_NAME);
611
252b5132
RH
612 BFD_ASSERT (s != NULL);
613
dc810e39
AM
614 tmp_name = (char *) bfd_malloc ((bfd_size_type) strlen (name)
615 + strlen (ARM2THUMB_GLUE_ENTRY_NAME) + 1);
252b5132
RH
616
617 BFD_ASSERT (tmp_name);
618
619 sprintf (tmp_name, ARM2THUMB_GLUE_ENTRY_NAME, name);
620
621 myh = elf_link_hash_lookup
b34976b6 622 (&(globals)->root, tmp_name, FALSE, FALSE, TRUE);
252b5132
RH
623
624 if (myh != NULL)
625 {
9b485d32 626 /* We've already seen this guy. */
252b5132 627 free (tmp_name);
9b485d32 628 return;
252b5132
RH
629 }
630
631 /* The only trick here is using hash_table->arm_glue_size as the value. Even
632 though the section isn't allocated yet, this is where we will be putting
633 it. */
14a793b2 634 bh = NULL;
dc810e39
AM
635 val = globals->arm_glue_size + 1;
636 _bfd_generic_link_add_one_symbol (link_info, globals->bfd_of_glue_owner,
637 tmp_name, BSF_GLOBAL, s, val,
b34976b6 638 NULL, TRUE, FALSE, &bh);
252b5132
RH
639
640 free (tmp_name);
641
642 globals->arm_glue_size += ARM2THUMB_GLUE_SIZE;
643
644 return;
645}
646
647static void
648record_thumb_to_arm_glue (link_info, h)
649 struct bfd_link_info *link_info;
650 struct elf_link_hash_entry *h;
651{
652 const char *name = h->root.root.string;
63b0f745 653 asection *s;
252b5132
RH
654 char *tmp_name;
655 struct elf_link_hash_entry *myh;
14a793b2 656 struct bfd_link_hash_entry *bh;
252b5132
RH
657 struct elf32_arm_link_hash_table *hash_table;
658 char bind;
dc810e39 659 bfd_vma val;
252b5132
RH
660
661 hash_table = elf32_arm_hash_table (link_info);
662
663 BFD_ASSERT (hash_table != NULL);
664 BFD_ASSERT (hash_table->bfd_of_glue_owner != NULL);
665
666 s = bfd_get_section_by_name
667 (hash_table->bfd_of_glue_owner, THUMB2ARM_GLUE_SECTION_NAME);
668
669 BFD_ASSERT (s != NULL);
670
dc810e39
AM
671 tmp_name = (char *) bfd_malloc ((bfd_size_type) strlen (name)
672 + strlen (THUMB2ARM_GLUE_ENTRY_NAME) + 1);
252b5132
RH
673
674 BFD_ASSERT (tmp_name);
675
676 sprintf (tmp_name, THUMB2ARM_GLUE_ENTRY_NAME, name);
677
678 myh = elf_link_hash_lookup
b34976b6 679 (&(hash_table)->root, tmp_name, FALSE, FALSE, TRUE);
252b5132
RH
680
681 if (myh != NULL)
682 {
9b485d32 683 /* We've already seen this guy. */
252b5132 684 free (tmp_name);
9b485d32 685 return;
252b5132
RH
686 }
687
14a793b2 688 bh = NULL;
dc810e39
AM
689 val = hash_table->thumb_glue_size + 1;
690 _bfd_generic_link_add_one_symbol (link_info, hash_table->bfd_of_glue_owner,
691 tmp_name, BSF_GLOBAL, s, val,
b34976b6 692 NULL, TRUE, FALSE, &bh);
252b5132 693
9b485d32 694 /* If we mark it 'Thumb', the disassembler will do a better job. */
14a793b2 695 myh = (struct elf_link_hash_entry *) bh;
252b5132
RH
696 bind = ELF_ST_BIND (myh->type);
697 myh->type = ELF_ST_INFO (bind, STT_ARM_TFUNC);
698
699 free (tmp_name);
700
252b5132
RH
701#define CHANGE_TO_ARM "__%s_change_to_arm"
702#define BACK_FROM_ARM "__%s_back_from_arm"
703
9b485d32 704 /* Allocate another symbol to mark where we switch to Arm mode. */
dc810e39
AM
705 tmp_name = (char *) bfd_malloc ((bfd_size_type) strlen (name)
706 + strlen (CHANGE_TO_ARM) + 1);
252b5132
RH
707
708 BFD_ASSERT (tmp_name);
709
710 sprintf (tmp_name, CHANGE_TO_ARM, name);
711
14a793b2 712 bh = NULL;
dc810e39
AM
713 val = hash_table->thumb_glue_size + 4,
714 _bfd_generic_link_add_one_symbol (link_info, hash_table->bfd_of_glue_owner,
715 tmp_name, BSF_LOCAL, s, val,
b34976b6 716 NULL, TRUE, FALSE, &bh);
252b5132
RH
717
718 free (tmp_name);
719
720 hash_table->thumb_glue_size += THUMB2ARM_GLUE_SIZE;
721
722 return;
723}
724
8afb0e02
NC
725/* Add the glue sections to ABFD. This function is called from the
726 linker scripts in ld/emultempl/{armelf}.em. */
9b485d32 727
b34976b6 728bfd_boolean
8afb0e02 729bfd_elf32_arm_add_glue_sections_to_bfd (abfd, info)
252b5132
RH
730 bfd *abfd;
731 struct bfd_link_info *info;
732{
252b5132
RH
733 flagword flags;
734 asection *sec;
735
8afb0e02
NC
736 /* If we are only performing a partial
737 link do not bother adding the glue. */
1049f94e 738 if (info->relocatable)
b34976b6 739 return TRUE;
252b5132 740
252b5132
RH
741 sec = bfd_get_section_by_name (abfd, ARM2THUMB_GLUE_SECTION_NAME);
742
743 if (sec == NULL)
744 {
57db232e
NC
745 /* Note: we do not include the flag SEC_LINKER_CREATED, as this
746 will prevent elf_link_input_bfd() from processing the contents
747 of this section. */
811b4bf6 748 flags = SEC_ALLOC | SEC_LOAD | SEC_HAS_CONTENTS | SEC_IN_MEMORY | SEC_CODE | SEC_READONLY;
252b5132
RH
749
750 sec = bfd_make_section (abfd, ARM2THUMB_GLUE_SECTION_NAME);
751
752 if (sec == NULL
753 || !bfd_set_section_flags (abfd, sec, flags)
754 || !bfd_set_section_alignment (abfd, sec, 2))
b34976b6 755 return FALSE;
9a5aca8c 756
57db232e
NC
757 /* Set the gc mark to prevent the section from being removed by garbage
758 collection, despite the fact that no relocs refer to this section. */
759 sec->gc_mark = 1;
252b5132
RH
760 }
761
762 sec = bfd_get_section_by_name (abfd, THUMB2ARM_GLUE_SECTION_NAME);
763
764 if (sec == NULL)
765 {
811b4bf6 766 flags = SEC_ALLOC | SEC_LOAD | SEC_HAS_CONTENTS | SEC_IN_MEMORY | SEC_CODE | SEC_READONLY;
252b5132
RH
767
768 sec = bfd_make_section (abfd, THUMB2ARM_GLUE_SECTION_NAME);
769
770 if (sec == NULL
771 || !bfd_set_section_flags (abfd, sec, flags)
772 || !bfd_set_section_alignment (abfd, sec, 2))
b34976b6 773 return FALSE;
9a5aca8c 774
57db232e 775 sec->gc_mark = 1;
252b5132
RH
776 }
777
b34976b6 778 return TRUE;
8afb0e02
NC
779}
780
781/* Select a BFD to be used to hold the sections used by the glue code.
782 This function is called from the linker scripts in ld/emultempl/
783 {armelf/pe}.em */
784
b34976b6 785bfd_boolean
8afb0e02
NC
786bfd_elf32_arm_get_bfd_for_interworking (abfd, info)
787 bfd *abfd;
788 struct bfd_link_info *info;
789{
790 struct elf32_arm_link_hash_table *globals;
791
792 /* If we are only performing a partial link
793 do not bother getting a bfd to hold the glue. */
1049f94e 794 if (info->relocatable)
b34976b6 795 return TRUE;
8afb0e02
NC
796
797 globals = elf32_arm_hash_table (info);
798
799 BFD_ASSERT (globals != NULL);
800
801 if (globals->bfd_of_glue_owner != NULL)
b34976b6 802 return TRUE;
8afb0e02 803
252b5132
RH
804 /* Save the bfd for later use. */
805 globals->bfd_of_glue_owner = abfd;
cedb70c5 806
b34976b6 807 return TRUE;
252b5132
RH
808}
809
b34976b6 810bfd_boolean
ba96a88f 811bfd_elf32_arm_process_before_allocation (abfd, link_info, no_pipeline_knowledge)
252b5132
RH
812 bfd *abfd;
813 struct bfd_link_info *link_info;
ba96a88f 814 int no_pipeline_knowledge;
252b5132
RH
815{
816 Elf_Internal_Shdr *symtab_hdr;
6cdc0ccc 817 Elf_Internal_Rela *internal_relocs = NULL;
252b5132
RH
818 Elf_Internal_Rela *irel, *irelend;
819 bfd_byte *contents = NULL;
252b5132
RH
820
821 asection *sec;
822 struct elf32_arm_link_hash_table *globals;
823
824 /* If we are only performing a partial link do not bother
825 to construct any glue. */
1049f94e 826 if (link_info->relocatable)
b34976b6 827 return TRUE;
252b5132
RH
828
829 /* Here we have a bfd that is to be included on the link. We have a hook
830 to do reloc rummaging, before section sizes are nailed down. */
252b5132
RH
831 globals = elf32_arm_hash_table (link_info);
832
833 BFD_ASSERT (globals != NULL);
834 BFD_ASSERT (globals->bfd_of_glue_owner != NULL);
835
ba96a88f 836 globals->no_pipeline_knowledge = no_pipeline_knowledge;
f21f3fe0 837
252b5132
RH
838 /* Rummage around all the relocs and map the glue vectors. */
839 sec = abfd->sections;
840
841 if (sec == NULL)
b34976b6 842 return TRUE;
252b5132
RH
843
844 for (; sec != NULL; sec = sec->next)
845 {
846 if (sec->reloc_count == 0)
847 continue;
848
849 symtab_hdr = &elf_tdata (abfd)->symtab_hdr;
252b5132 850
9b485d32 851 /* Load the relocs. */
6cdc0ccc 852 internal_relocs
45d6a902
AM
853 = _bfd_elf_link_read_relocs (abfd, sec, (PTR) NULL,
854 (Elf_Internal_Rela *) NULL, FALSE);
252b5132 855
6cdc0ccc
AM
856 if (internal_relocs == NULL)
857 goto error_return;
252b5132 858
6cdc0ccc
AM
859 irelend = internal_relocs + sec->reloc_count;
860 for (irel = internal_relocs; irel < irelend; irel++)
252b5132
RH
861 {
862 long r_type;
863 unsigned long r_index;
252b5132
RH
864
865 struct elf_link_hash_entry *h;
866
867 r_type = ELF32_R_TYPE (irel->r_info);
868 r_index = ELF32_R_SYM (irel->r_info);
869
9b485d32 870 /* These are the only relocation types we care about. */
ba96a88f 871 if ( r_type != R_ARM_PC24
252b5132
RH
872 && r_type != R_ARM_THM_PC22)
873 continue;
874
875 /* Get the section contents if we haven't done so already. */
876 if (contents == NULL)
877 {
878 /* Get cached copy if it exists. */
879 if (elf_section_data (sec)->this_hdr.contents != NULL)
880 contents = elf_section_data (sec)->this_hdr.contents;
881 else
882 {
883 /* Go get them off disk. */
884 contents = (bfd_byte *) bfd_malloc (sec->_raw_size);
885 if (contents == NULL)
886 goto error_return;
9b485d32 887
252b5132 888 if (!bfd_get_section_contents (abfd, sec, contents,
dc810e39 889 (file_ptr) 0, sec->_raw_size))
252b5132
RH
890 goto error_return;
891 }
892 }
893
a7c10850 894 /* If the relocation is not against a symbol it cannot concern us. */
252b5132
RH
895 h = NULL;
896
9b485d32 897 /* We don't care about local symbols. */
252b5132
RH
898 if (r_index < symtab_hdr->sh_info)
899 continue;
900
9b485d32 901 /* This is an external symbol. */
252b5132
RH
902 r_index -= symtab_hdr->sh_info;
903 h = (struct elf_link_hash_entry *)
904 elf_sym_hashes (abfd)[r_index];
905
906 /* If the relocation is against a static symbol it must be within
907 the current section and so cannot be a cross ARM/Thumb relocation. */
908 if (h == NULL)
909 continue;
910
911 switch (r_type)
912 {
913 case R_ARM_PC24:
914 /* This one is a call from arm code. We need to look up
2f0ca46a 915 the target of the call. If it is a thumb target, we
252b5132 916 insert glue. */
252b5132
RH
917 if (ELF_ST_TYPE(h->type) == STT_ARM_TFUNC)
918 record_arm_to_thumb_glue (link_info, h);
919 break;
920
921 case R_ARM_THM_PC22:
f21f3fe0 922 /* This one is a call from thumb code. We look
2f0ca46a 923 up the target of the call. If it is not a thumb
bcbdc74c 924 target, we insert glue. */
252b5132
RH
925 if (ELF_ST_TYPE (h->type) != STT_ARM_TFUNC)
926 record_thumb_to_arm_glue (link_info, h);
927 break;
928
929 default:
930 break;
931 }
932 }
6cdc0ccc
AM
933
934 if (contents != NULL
935 && elf_section_data (sec)->this_hdr.contents != contents)
936 free (contents);
937 contents = NULL;
938
939 if (internal_relocs != NULL
940 && elf_section_data (sec)->relocs != internal_relocs)
941 free (internal_relocs);
942 internal_relocs = NULL;
252b5132
RH
943 }
944
b34976b6 945 return TRUE;
9a5aca8c 946
252b5132 947error_return:
6cdc0ccc
AM
948 if (contents != NULL
949 && elf_section_data (sec)->this_hdr.contents != contents)
950 free (contents);
951 if (internal_relocs != NULL
952 && elf_section_data (sec)->relocs != internal_relocs)
953 free (internal_relocs);
9a5aca8c 954
b34976b6 955 return FALSE;
252b5132 956}
7e392df6 957#endif
252b5132
RH
958
959/* The thumb form of a long branch is a bit finicky, because the offset
960 encoding is split over two fields, each in it's own instruction. They
f21f3fe0 961 can occur in any order. So given a thumb form of long branch, and an
252b5132 962 offset, insert the offset into the thumb branch and return finished
f21f3fe0 963 instruction.
252b5132 964
f21f3fe0 965 It takes two thumb instructions to encode the target address. Each has
4cc11e76 966 11 bits to invest. The upper 11 bits are stored in one (identified by
f21f3fe0
UD
967 H-0.. see below), the lower 11 bits are stored in the other (identified
968 by H-1).
252b5132 969
f21f3fe0 970 Combine together and shifted left by 1 (it's a half word address) and
252b5132
RH
971 there you have it.
972
973 Op: 1111 = F,
974 H-0, upper address-0 = 000
975 Op: 1111 = F,
976 H-1, lower address-0 = 800
977
f21f3fe0 978 They can be ordered either way, but the arm tools I've seen always put
252b5132
RH
979 the lower one first. It probably doesn't matter. krk@cygnus.com
980
981 XXX: Actually the order does matter. The second instruction (H-1)
982 moves the computed address into the PC, so it must be the second one
983 in the sequence. The problem, however is that whilst little endian code
984 stores the instructions in HI then LOW order, big endian code does the
dfc5f959 985 reverse. nickc@cygnus.com. */
252b5132 986
dfc5f959
NC
987#define LOW_HI_ORDER 0xF800F000
988#define HI_LOW_ORDER 0xF000F800
252b5132
RH
989
990static insn32
991insert_thumb_branch (br_insn, rel_off)
992 insn32 br_insn;
993 int rel_off;
994{
995 unsigned int low_bits;
996 unsigned int high_bits;
997
252b5132
RH
998 BFD_ASSERT ((rel_off & 1) != 1);
999
dfc5f959
NC
1000 rel_off >>= 1; /* Half word aligned address. */
1001 low_bits = rel_off & 0x000007FF; /* The bottom 11 bits. */
1002 high_bits = (rel_off >> 11) & 0x000007FF; /* The top 11 bits. */
252b5132
RH
1003
1004 if ((br_insn & LOW_HI_ORDER) == LOW_HI_ORDER)
1005 br_insn = LOW_HI_ORDER | (low_bits << 16) | high_bits;
1006 else if ((br_insn & HI_LOW_ORDER) == HI_LOW_ORDER)
1007 br_insn = HI_LOW_ORDER | (high_bits << 16) | low_bits;
1008 else
9b485d32
NC
1009 /* FIXME: abort is probably not the right call. krk@cygnus.com */
1010 abort (); /* error - not a valid branch instruction form. */
252b5132 1011
252b5132
RH
1012 return br_insn;
1013}
1014
9b485d32
NC
1015/* Thumb code calling an ARM function. */
1016
252b5132
RH
1017static int
1018elf32_thumb_to_arm_stub (info, name, input_bfd, output_bfd, input_section,
1019 hit_data, sym_sec, offset, addend, val)
bcbdc74c
NC
1020 struct bfd_link_info * info;
1021 const char * name;
1022 bfd * input_bfd;
1023 bfd * output_bfd;
1024 asection * input_section;
1025 bfd_byte * hit_data;
1026 asection * sym_sec;
1027 bfd_vma offset;
1028 bfd_signed_vma addend;
1029 bfd_vma val;
252b5132 1030{
bcbdc74c 1031 asection * s = 0;
dc810e39 1032 bfd_vma my_offset;
252b5132
RH
1033 unsigned long int tmp;
1034 long int ret_offset;
bcbdc74c
NC
1035 struct elf_link_hash_entry * myh;
1036 struct elf32_arm_link_hash_table * globals;
252b5132
RH
1037
1038 myh = find_thumb_glue (info, name, input_bfd);
1039 if (myh == NULL)
b34976b6 1040 return FALSE;
252b5132
RH
1041
1042 globals = elf32_arm_hash_table (info);
1043
1044 BFD_ASSERT (globals != NULL);
1045 BFD_ASSERT (globals->bfd_of_glue_owner != NULL);
1046
1047 my_offset = myh->root.u.def.value;
1048
1049 s = bfd_get_section_by_name (globals->bfd_of_glue_owner,
1050 THUMB2ARM_GLUE_SECTION_NAME);
1051
1052 BFD_ASSERT (s != NULL);
1053 BFD_ASSERT (s->contents != NULL);
1054 BFD_ASSERT (s->output_section != NULL);
1055
1056 if ((my_offset & 0x01) == 0x01)
1057 {
1058 if (sym_sec != NULL
1059 && sym_sec->owner != NULL
1060 && !INTERWORK_FLAG (sym_sec->owner))
1061 {
8f615d07 1062 (*_bfd_error_handler)
9b485d32 1063 (_("%s(%s): warning: interworking not enabled."),
8f615d07
AM
1064 bfd_archive_filename (sym_sec->owner), name);
1065 (*_bfd_error_handler)
9b485d32 1066 (_(" first occurrence: %s: thumb call to arm"),
8f615d07 1067 bfd_archive_filename (input_bfd));
252b5132 1068
b34976b6 1069 return FALSE;
252b5132
RH
1070 }
1071
1072 --my_offset;
1073 myh->root.u.def.value = my_offset;
1074
dc810e39 1075 bfd_put_16 (output_bfd, (bfd_vma) t2a1_bx_pc_insn,
252b5132
RH
1076 s->contents + my_offset);
1077
dc810e39 1078 bfd_put_16 (output_bfd, (bfd_vma) t2a2_noop_insn,
252b5132
RH
1079 s->contents + my_offset + 2);
1080
1081 ret_offset =
9b485d32
NC
1082 /* Address of destination of the stub. */
1083 ((bfd_signed_vma) val)
252b5132 1084 - ((bfd_signed_vma)
9b485d32
NC
1085 /* Offset from the start of the current section to the start of the stubs. */
1086 (s->output_offset
1087 /* Offset of the start of this stub from the start of the stubs. */
1088 + my_offset
1089 /* Address of the start of the current section. */
1090 + s->output_section->vma)
1091 /* The branch instruction is 4 bytes into the stub. */
1092 + 4
1093 /* ARM branches work from the pc of the instruction + 8. */
1094 + 8);
252b5132
RH
1095
1096 bfd_put_32 (output_bfd,
dc810e39 1097 (bfd_vma) t2a3_b_insn | ((ret_offset >> 2) & 0x00FFFFFF),
252b5132
RH
1098 s->contents + my_offset + 4);
1099 }
1100
1101 BFD_ASSERT (my_offset <= globals->thumb_glue_size);
1102
427bfd90
NC
1103 /* Now go back and fix up the original BL insn to point to here. */
1104 ret_offset =
1105 /* Address of where the stub is located. */
1106 (s->output_section->vma + s->output_offset + my_offset)
1107 /* Address of where the BL is located. */
1108 - (input_section->output_section->vma + input_section->output_offset + offset)
1109 /* Addend in the relocation. */
1110 - addend
1111 /* Biassing for PC-relative addressing. */
1112 - 8;
252b5132
RH
1113
1114 tmp = bfd_get_32 (input_bfd, hit_data
1115 - input_section->vma);
1116
1117 bfd_put_32 (output_bfd,
dc810e39 1118 (bfd_vma) insert_thumb_branch (tmp, ret_offset),
252b5132
RH
1119 hit_data - input_section->vma);
1120
b34976b6 1121 return TRUE;
252b5132
RH
1122}
1123
9b485d32
NC
1124/* Arm code calling a Thumb function. */
1125
252b5132
RH
1126static int
1127elf32_arm_to_thumb_stub (info, name, input_bfd, output_bfd, input_section,
1128 hit_data, sym_sec, offset, addend, val)
bcbdc74c
NC
1129 struct bfd_link_info * info;
1130 const char * name;
1131 bfd * input_bfd;
1132 bfd * output_bfd;
1133 asection * input_section;
1134 bfd_byte * hit_data;
1135 asection * sym_sec;
1136 bfd_vma offset;
1137 bfd_signed_vma addend;
1138 bfd_vma val;
252b5132
RH
1139{
1140 unsigned long int tmp;
dc810e39 1141 bfd_vma my_offset;
bcbdc74c 1142 asection * s;
252b5132 1143 long int ret_offset;
bcbdc74c
NC
1144 struct elf_link_hash_entry * myh;
1145 struct elf32_arm_link_hash_table * globals;
252b5132
RH
1146
1147 myh = find_arm_glue (info, name, input_bfd);
1148 if (myh == NULL)
b34976b6 1149 return FALSE;
252b5132
RH
1150
1151 globals = elf32_arm_hash_table (info);
1152
1153 BFD_ASSERT (globals != NULL);
1154 BFD_ASSERT (globals->bfd_of_glue_owner != NULL);
1155
1156 my_offset = myh->root.u.def.value;
1157 s = bfd_get_section_by_name (globals->bfd_of_glue_owner,
1158 ARM2THUMB_GLUE_SECTION_NAME);
1159 BFD_ASSERT (s != NULL);
1160 BFD_ASSERT (s->contents != NULL);
1161 BFD_ASSERT (s->output_section != NULL);
1162
1163 if ((my_offset & 0x01) == 0x01)
1164 {
1165 if (sym_sec != NULL
1166 && sym_sec->owner != NULL
1167 && !INTERWORK_FLAG (sym_sec->owner))
1168 {
8f615d07 1169 (*_bfd_error_handler)
9b485d32 1170 (_("%s(%s): warning: interworking not enabled."),
8f615d07
AM
1171 bfd_archive_filename (sym_sec->owner), name);
1172 (*_bfd_error_handler)
9b485d32 1173 (_(" first occurrence: %s: arm call to thumb"),
8f615d07 1174 bfd_archive_filename (input_bfd));
252b5132 1175 }
9b485d32 1176
252b5132
RH
1177 --my_offset;
1178 myh->root.u.def.value = my_offset;
1179
dc810e39 1180 bfd_put_32 (output_bfd, (bfd_vma) a2t1_ldr_insn,
252b5132
RH
1181 s->contents + my_offset);
1182
dc810e39 1183 bfd_put_32 (output_bfd, (bfd_vma) a2t2_bx_r12_insn,
252b5132
RH
1184 s->contents + my_offset + 4);
1185
1186 /* It's a thumb address. Add the low order bit. */
1187 bfd_put_32 (output_bfd, val | a2t3_func_addr_insn,
1188 s->contents + my_offset + 8);
1189 }
1190
1191 BFD_ASSERT (my_offset <= globals->arm_glue_size);
1192
1193 tmp = bfd_get_32 (input_bfd, hit_data);
1194 tmp = tmp & 0xFF000000;
1195
9b485d32 1196 /* Somehow these are both 4 too far, so subtract 8. */
dc810e39
AM
1197 ret_offset = (s->output_offset
1198 + my_offset
1199 + s->output_section->vma
1200 - (input_section->output_offset
1201 + input_section->output_section->vma
1202 + offset + addend)
1203 - 8);
9a5aca8c 1204
252b5132
RH
1205 tmp = tmp | ((ret_offset >> 2) & 0x00FFFFFF);
1206
dc810e39 1207 bfd_put_32 (output_bfd, (bfd_vma) tmp, hit_data - input_section->vma);
252b5132 1208
b34976b6 1209 return TRUE;
252b5132
RH
1210}
1211
50d6c878
DJ
1212/* This is the condition under which elf32_arm_finish_dynamic_symbol
1213 will be called from elflink.h. If elflink.h doesn't call our
1214 finish_dynamic_symbol routine, we'll need to do something about
1215 initializing any .plt and .got entries in elf32_arm_relocate_section
1216 and elf32_arm_final_link_relocate. */
1217#define WILL_CALL_FINISH_DYNAMIC_SYMBOL(DYN, SHARED, H) \
1218 ((DYN) \
1219 && ((SHARED) \
1220 || ((H)->elf_link_hash_flags & ELF_LINK_FORCED_LOCAL) == 0) \
1221 && ((H)->dynindx != -1 \
1222 || ((H)->elf_link_hash_flags & ELF_LINK_FORCED_LOCAL) != 0))
1223
252b5132 1224/* Perform a relocation as part of a final link. */
9b485d32 1225
252b5132
RH
1226static bfd_reloc_status_type
1227elf32_arm_final_link_relocate (howto, input_bfd, output_bfd,
1228 input_section, contents, rel, value,
780a67af 1229 info, sym_sec, sym_name, sym_flags, h)
252b5132
RH
1230 reloc_howto_type * howto;
1231 bfd * input_bfd;
1232 bfd * output_bfd;
1233 asection * input_section;
1234 bfd_byte * contents;
1235 Elf_Internal_Rela * rel;
1236 bfd_vma value;
1237 struct bfd_link_info * info;
1238 asection * sym_sec;
1239 const char * sym_name;
dc810e39 1240 int sym_flags;
780a67af 1241 struct elf_link_hash_entry * h;
252b5132
RH
1242{
1243 unsigned long r_type = howto->type;
1244 unsigned long r_symndx;
1245 bfd_byte * hit_data = contents + rel->r_offset;
1246 bfd * dynobj = NULL;
1247 Elf_Internal_Shdr * symtab_hdr;
1248 struct elf_link_hash_entry ** sym_hashes;
1249 bfd_vma * local_got_offsets;
1250 asection * sgot = NULL;
1251 asection * splt = NULL;
1252 asection * sreloc = NULL;
252b5132 1253 bfd_vma addend;
ba96a88f
NC
1254 bfd_signed_vma signed_addend;
1255 struct elf32_arm_link_hash_table * globals;
f21f3fe0 1256
cac15327
NC
1257 /* If the start address has been set, then set the EF_ARM_HASENTRY
1258 flag. Setting this more than once is redundant, but the cost is
1259 not too high, and it keeps the code simple.
99e4ae17 1260
cac15327
NC
1261 The test is done here, rather than somewhere else, because the
1262 start address is only set just before the final link commences.
1263
1264 Note - if the user deliberately sets a start address of 0, the
1265 flag will not be set. */
1266 if (bfd_get_start_address (output_bfd) != 0)
1267 elf_elfheader (output_bfd)->e_flags |= EF_ARM_HASENTRY;
99e4ae17 1268
ba96a88f 1269 globals = elf32_arm_hash_table (info);
f21f3fe0 1270
252b5132
RH
1271 dynobj = elf_hash_table (info)->dynobj;
1272 if (dynobj)
1273 {
1274 sgot = bfd_get_section_by_name (dynobj, ".got");
1275 splt = bfd_get_section_by_name (dynobj, ".plt");
1276 }
1277 symtab_hdr = & elf_tdata (input_bfd)->symtab_hdr;
1278 sym_hashes = elf_sym_hashes (input_bfd);
1279 local_got_offsets = elf_local_got_offsets (input_bfd);
1280 r_symndx = ELF32_R_SYM (rel->r_info);
1281
acf8aed4 1282#if USE_REL
ba96a88f
NC
1283 addend = bfd_get_32 (input_bfd, hit_data) & howto->src_mask;
1284
1285 if (addend & ((howto->src_mask + 1) >> 1))
1286 {
1287 signed_addend = -1;
1288 signed_addend &= ~ howto->src_mask;
1289 signed_addend |= addend;
1290 }
1291 else
1292 signed_addend = addend;
252b5132 1293#else
ba96a88f 1294 addend = signed_addend = rel->r_addend;
252b5132 1295#endif
f21f3fe0 1296
252b5132
RH
1297 switch (r_type)
1298 {
1299 case R_ARM_NONE:
1300 return bfd_reloc_ok;
1301
1302 case R_ARM_PC24:
1303 case R_ARM_ABS32:
1304 case R_ARM_REL32:
dfc5f959
NC
1305#ifndef OLD_ARM_ABI
1306 case R_ARM_XPC25:
1307#endif
7359ea65 1308 case R_ARM_PLT32:
5e681ec4
PB
1309 /* r_symndx will be zero only for relocs against symbols
1310 from removed linkonce sections, or sections discarded by
1311 a linker script. */
1312 if (r_symndx == 0)
1313 return bfd_reloc_ok;
1314
7359ea65
DJ
1315 /* Handle relocations which should use the PLT entry. ABS32/REL32
1316 will use the symbol's value, which may point to a PLT entry, but we
1317 don't need to handle that here. If we created a PLT entry, all
1318 branches in this object should go to it. */
1319 if ((r_type != R_ARM_ABS32 && r_type != R_ARM_REL32)
1320 && h != NULL
c84cd8ee 1321 && splt != NULL
7359ea65
DJ
1322 && h->plt.offset != (bfd_vma) -1)
1323 {
c84cd8ee
DJ
1324 /* If we've created a .plt section, and assigned a PLT entry to
1325 this function, it should not be known to bind locally. If
1326 it were, we would have cleared the PLT entry. */
7359ea65
DJ
1327 BFD_ASSERT (!SYMBOL_CALLS_LOCAL (info, h));
1328
1329 value = (splt->output_section->vma
1330 + splt->output_offset
1331 + h->plt.offset);
1332 return _bfd_final_link_relocate (howto, input_bfd, input_section,
1333 contents, rel->r_offset, value,
1334 (bfd_vma) 0);
1335 }
1336
252b5132 1337 /* When generating a shared object, these relocations are copied
9b485d32 1338 into the output file to be resolved at run time. */
7359ea65
DJ
1339 if (info->shared
1340 && (input_section->flags & SEC_ALLOC)
1341 && (h == NULL
1342 || ELF_ST_VISIBILITY (h->other) == STV_DEFAULT
1343 || h->root.type != bfd_link_hash_undefweak)
1344 && r_type != R_ARM_PC24
1345 && r_type != R_ARM_PLT32)
252b5132 1346 {
947216bf
AM
1347 Elf_Internal_Rela outrel;
1348 bfd_byte *loc;
b34976b6 1349 bfd_boolean skip, relocate;
f21f3fe0 1350
252b5132
RH
1351 if (sreloc == NULL)
1352 {
1353 const char * name;
f21f3fe0 1354
252b5132
RH
1355 name = (bfd_elf_string_from_elf_section
1356 (input_bfd,
1357 elf_elfheader (input_bfd)->e_shstrndx,
1358 elf_section_data (input_section)->rel_hdr.sh_name));
1359 if (name == NULL)
1360 return bfd_reloc_notsupported;
f21f3fe0 1361
252b5132
RH
1362 BFD_ASSERT (strncmp (name, ".rel", 4) == 0
1363 && strcmp (bfd_get_section_name (input_bfd,
1364 input_section),
1365 name + 4) == 0);
f21f3fe0 1366
252b5132
RH
1367 sreloc = bfd_get_section_by_name (dynobj, name);
1368 BFD_ASSERT (sreloc != NULL);
1369 }
f21f3fe0 1370
b34976b6
AM
1371 skip = FALSE;
1372 relocate = FALSE;
f21f3fe0 1373
c629eae0
JJ
1374 outrel.r_offset =
1375 _bfd_elf_section_offset (output_bfd, info, input_section,
1376 rel->r_offset);
1377 if (outrel.r_offset == (bfd_vma) -1)
b34976b6 1378 skip = TRUE;
0bb2d96a 1379 else if (outrel.r_offset == (bfd_vma) -2)
b34976b6 1380 skip = TRUE, relocate = TRUE;
252b5132
RH
1381 outrel.r_offset += (input_section->output_section->vma
1382 + input_section->output_offset);
f21f3fe0 1383
252b5132 1384 if (skip)
0bb2d96a 1385 memset (&outrel, 0, sizeof outrel);
5e681ec4
PB
1386 else if (h != NULL
1387 && h->dynindx != -1
7359ea65 1388 && (!info->shared
5e681ec4
PB
1389 || !info->symbolic
1390 || (h->elf_link_hash_flags
1391 & ELF_LINK_HASH_DEF_REGULAR) == 0))
1392 outrel.r_info = ELF32_R_INFO (h->dynindx, r_type);
252b5132
RH
1393 else
1394 {
5e681ec4
PB
1395 /* This symbol is local, or marked to become local. */
1396 relocate = TRUE;
1397 outrel.r_info = ELF32_R_INFO (0, R_ARM_RELATIVE);
252b5132 1398 }
f21f3fe0 1399
947216bf
AM
1400 loc = sreloc->contents;
1401 loc += sreloc->reloc_count++ * sizeof (Elf32_External_Rel);
1402 bfd_elf32_swap_reloc_out (output_bfd, &outrel, loc);
9a5aca8c 1403
f21f3fe0 1404 /* If this reloc is against an external symbol, we do not want to
252b5132 1405 fiddle with the addend. Otherwise, we need to include the symbol
9b485d32 1406 value so that it becomes an addend for the dynamic reloc. */
252b5132
RH
1407 if (! relocate)
1408 return bfd_reloc_ok;
9a5aca8c 1409
f21f3fe0 1410 return _bfd_final_link_relocate (howto, input_bfd, input_section,
252b5132
RH
1411 contents, rel->r_offset, value,
1412 (bfd_vma) 0);
1413 }
1414 else switch (r_type)
1415 {
dfc5f959
NC
1416#ifndef OLD_ARM_ABI
1417 case R_ARM_XPC25: /* Arm BLX instruction. */
1418#endif
1419 case R_ARM_PC24: /* Arm B/BL instruction */
7359ea65 1420 case R_ARM_PLT32:
dfc5f959
NC
1421#ifndef OLD_ARM_ABI
1422 if (r_type == R_ARM_XPC25)
252b5132 1423 {
dfc5f959
NC
1424 /* Check for Arm calling Arm function. */
1425 /* FIXME: Should we translate the instruction into a BL
1426 instruction instead ? */
1427 if (sym_flags != STT_ARM_TFUNC)
8f615d07 1428 (*_bfd_error_handler) (_("\
dfc5f959 1429%s: Warning: Arm BLX instruction targets Arm function '%s'."),
8f615d07
AM
1430 bfd_archive_filename (input_bfd),
1431 h ? h->root.root.string : "(local)");
dfc5f959
NC
1432 }
1433 else
1434#endif
1435 {
1436 /* Check for Arm calling Thumb function. */
1437 if (sym_flags == STT_ARM_TFUNC)
1438 {
1439 elf32_arm_to_thumb_stub (info, sym_name, input_bfd, output_bfd,
1440 input_section, hit_data, sym_sec, rel->r_offset,
1441 signed_addend, value);
1442 return bfd_reloc_ok;
1443 }
252b5132 1444 }
ba96a88f
NC
1445
1446 if ( strcmp (bfd_get_target (input_bfd), "elf32-littlearm-oabi") == 0
1447 || strcmp (bfd_get_target (input_bfd), "elf32-bigarm-oabi") == 0)
1448 {
1449 /* The old way of doing things. Trearing the addend as a
1450 byte sized field and adding in the pipeline offset. */
ba96a88f
NC
1451 value -= (input_section->output_section->vma
1452 + input_section->output_offset);
1453 value -= rel->r_offset;
1454 value += addend;
f21f3fe0 1455
ba96a88f
NC
1456 if (! globals->no_pipeline_knowledge)
1457 value -= 8;
1458 }
1459 else
1460 {
1461 /* The ARM ELF ABI says that this reloc is computed as: S - P + A
1462 where:
1463 S is the address of the symbol in the relocation.
1464 P is address of the instruction being relocated.
1465 A is the addend (extracted from the instruction) in bytes.
f21f3fe0 1466
ba96a88f
NC
1467 S is held in 'value'.
1468 P is the base address of the section containing the instruction
1469 plus the offset of the reloc into that section, ie:
1470 (input_section->output_section->vma +
1471 input_section->output_offset +
1472 rel->r_offset).
1473 A is the addend, converted into bytes, ie:
1474 (signed_addend * 4)
1475
1476 Note: None of these operations have knowledge of the pipeline
1477 size of the processor, thus it is up to the assembler to encode
1478 this information into the addend. */
ba96a88f
NC
1479 value -= (input_section->output_section->vma
1480 + input_section->output_offset);
1481 value -= rel->r_offset;
1482 value += (signed_addend << howto->size);
f21f3fe0 1483
ba96a88f
NC
1484 /* Previous versions of this code also used to add in the pipeline
1485 offset here. This is wrong because the linker is not supposed
1486 to know about such things, and one day it might change. In order
1487 to support old binaries that need the old behaviour however, so
1488 we attempt to detect which ABI was used to create the reloc. */
1489 if (! globals->no_pipeline_knowledge)
f21f3fe0 1490 {
ba96a88f 1491 Elf_Internal_Ehdr * i_ehdrp; /* Elf file header, internal form */
f21f3fe0 1492
ba96a88f 1493 i_ehdrp = elf_elfheader (input_bfd);
f21f3fe0 1494
ba96a88f
NC
1495 if (i_ehdrp->e_ident[EI_OSABI] == 0)
1496 value -= 8;
1497 }
1498 }
23080146 1499
dcb5e6e6
NC
1500 signed_addend = value;
1501 signed_addend >>= howto->rightshift;
9a5aca8c 1502
59f2c4e7
NC
1503 /* It is not an error for an undefined weak reference to be
1504 out of range. Any program that branches to such a symbol
9a5aca8c
AM
1505 is going to crash anyway, so there is no point worrying
1506 about getting the destination exactly right. */
59f2c4e7
NC
1507 if (! h || h->root.type != bfd_link_hash_undefweak)
1508 {
9b485d32 1509 /* Perform a signed range check. */
dcb5e6e6 1510 if ( signed_addend > ((bfd_signed_vma) (howto->dst_mask >> 1))
59f2c4e7
NC
1511 || signed_addend < - ((bfd_signed_vma) ((howto->dst_mask + 1) >> 1)))
1512 return bfd_reloc_overflow;
1513 }
9a5aca8c 1514
dcb5e6e6
NC
1515#ifndef OLD_ARM_ABI
1516 /* If necessary set the H bit in the BLX instruction. */
1517 if (r_type == R_ARM_XPC25 && ((value & 2) == 2))
1518 value = (signed_addend & howto->dst_mask)
1519 | (bfd_get_32 (input_bfd, hit_data) & (~ howto->dst_mask))
1520 | (1 << 24);
1521 else
1522#endif
1523 value = (signed_addend & howto->dst_mask)
1524 | (bfd_get_32 (input_bfd, hit_data) & (~ howto->dst_mask));
252b5132 1525 break;
f21f3fe0 1526
252b5132
RH
1527 case R_ARM_ABS32:
1528 value += addend;
1529 if (sym_flags == STT_ARM_TFUNC)
1530 value |= 1;
1531 break;
f21f3fe0 1532
252b5132
RH
1533 case R_ARM_REL32:
1534 value -= (input_section->output_section->vma
62efb346 1535 + input_section->output_offset + rel->r_offset);
252b5132
RH
1536 value += addend;
1537 break;
1538 }
f21f3fe0 1539
252b5132
RH
1540 bfd_put_32 (input_bfd, value, hit_data);
1541 return bfd_reloc_ok;
1542
1543 case R_ARM_ABS8:
1544 value += addend;
1545 if ((long) value > 0x7f || (long) value < -0x80)
1546 return bfd_reloc_overflow;
1547
1548 bfd_put_8 (input_bfd, value, hit_data);
1549 return bfd_reloc_ok;
1550
1551 case R_ARM_ABS16:
1552 value += addend;
1553
1554 if ((long) value > 0x7fff || (long) value < -0x8000)
1555 return bfd_reloc_overflow;
1556
1557 bfd_put_16 (input_bfd, value, hit_data);
1558 return bfd_reloc_ok;
1559
1560 case R_ARM_ABS12:
1561 /* Support ldr and str instruction for the arm */
1562 /* Also thumb b (unconditional branch). ??? Really? */
1563 value += addend;
1564
1565 if ((long) value > 0x7ff || (long) value < -0x800)
1566 return bfd_reloc_overflow;
1567
1568 value |= (bfd_get_32 (input_bfd, hit_data) & 0xfffff000);
1569 bfd_put_32 (input_bfd, value, hit_data);
1570 return bfd_reloc_ok;
1571
1572 case R_ARM_THM_ABS5:
9b485d32 1573 /* Support ldr and str instructions for the thumb. */
acf8aed4 1574#if USE_REL
252b5132
RH
1575 /* Need to refetch addend. */
1576 addend = bfd_get_16 (input_bfd, hit_data) & howto->src_mask;
1577 /* ??? Need to determine shift amount from operand size. */
1578 addend >>= howto->rightshift;
1579#endif
1580 value += addend;
1581
1582 /* ??? Isn't value unsigned? */
1583 if ((long) value > 0x1f || (long) value < -0x10)
1584 return bfd_reloc_overflow;
1585
1586 /* ??? Value needs to be properly shifted into place first. */
1587 value |= bfd_get_16 (input_bfd, hit_data) & 0xf83f;
1588 bfd_put_16 (input_bfd, value, hit_data);
1589 return bfd_reloc_ok;
1590
dfc5f959
NC
1591#ifndef OLD_ARM_ABI
1592 case R_ARM_THM_XPC22:
1593#endif
252b5132 1594 case R_ARM_THM_PC22:
dfc5f959 1595 /* Thumb BL (branch long instruction). */
252b5132 1596 {
b34976b6
AM
1597 bfd_vma relocation;
1598 bfd_boolean overflow = FALSE;
1599 bfd_vma upper_insn = bfd_get_16 (input_bfd, hit_data);
1600 bfd_vma lower_insn = bfd_get_16 (input_bfd, hit_data + 2);
df212a7e 1601 bfd_signed_vma reloc_signed_max = ((1 << (howto->bitsize - 1)) - 1) >> howto->rightshift;
ba96a88f 1602 bfd_signed_vma reloc_signed_min = ~ reloc_signed_max;
b34976b6 1603 bfd_vma check;
252b5132 1604 bfd_signed_vma signed_check;
252b5132 1605
acf8aed4 1606#if USE_REL
252b5132
RH
1607 /* Need to refetch the addend and squish the two 11 bit pieces
1608 together. */
1609 {
ba96a88f
NC
1610 bfd_vma upper = upper_insn & 0x7ff;
1611 bfd_vma lower = lower_insn & 0x7ff;
9b485d32 1612 upper = (upper ^ 0x400) - 0x400; /* Sign extend. */
252b5132 1613 addend = (upper << 12) | (lower << 1);
ba96a88f 1614 signed_addend = addend;
252b5132
RH
1615 }
1616#endif
dfc5f959
NC
1617#ifndef OLD_ARM_ABI
1618 if (r_type == R_ARM_THM_XPC22)
1619 {
1620 /* Check for Thumb to Thumb call. */
1621 /* FIXME: Should we translate the instruction into a BL
1622 instruction instead ? */
1623 if (sym_flags == STT_ARM_TFUNC)
8f615d07 1624 (*_bfd_error_handler) (_("\
dfc5f959 1625%s: Warning: Thumb BLX instruction targets thumb function '%s'."),
8f615d07
AM
1626 bfd_archive_filename (input_bfd),
1627 h ? h->root.root.string : "(local)");
dfc5f959
NC
1628 }
1629 else
1630#endif
252b5132 1631 {
dfc5f959
NC
1632 /* If it is not a call to Thumb, assume call to Arm.
1633 If it is a call relative to a section name, then it is not a
1634 function call at all, but rather a long jump. */
1635 if (sym_flags != STT_ARM_TFUNC && sym_flags != STT_SECTION)
1636 {
1637 if (elf32_thumb_to_arm_stub
1638 (info, sym_name, input_bfd, output_bfd, input_section,
1639 hit_data, sym_sec, rel->r_offset, signed_addend, value))
1640 return bfd_reloc_ok;
1641 else
1642 return bfd_reloc_dangerous;
1643 }
252b5132 1644 }
f21f3fe0 1645
ba96a88f 1646 relocation = value + signed_addend;
f21f3fe0 1647
252b5132 1648 relocation -= (input_section->output_section->vma
ba96a88f
NC
1649 + input_section->output_offset
1650 + rel->r_offset);
9a5aca8c 1651
ba96a88f
NC
1652 if (! globals->no_pipeline_knowledge)
1653 {
9b485d32 1654 Elf_Internal_Ehdr * i_ehdrp; /* Elf file header, internal form. */
9a5aca8c 1655
ba96a88f 1656 i_ehdrp = elf_elfheader (input_bfd);
f21f3fe0 1657
ba96a88f
NC
1658 /* Previous versions of this code also used to add in the pipline
1659 offset here. This is wrong because the linker is not supposed
1660 to know about such things, and one day it might change. In order
1661 to support old binaries that need the old behaviour however, so
1662 we attempt to detect which ABI was used to create the reloc. */
1663 if ( strcmp (bfd_get_target (input_bfd), "elf32-littlearm-oabi") == 0
1664 || strcmp (bfd_get_target (input_bfd), "elf32-bigarm-oabi") == 0
1665 || i_ehdrp->e_ident[EI_OSABI] == 0)
1666 relocation += 4;
1667 }
f21f3fe0 1668
252b5132
RH
1669 check = relocation >> howto->rightshift;
1670
1671 /* If this is a signed value, the rightshift just dropped
1672 leading 1 bits (assuming twos complement). */
1673 if ((bfd_signed_vma) relocation >= 0)
1674 signed_check = check;
1675 else
1676 signed_check = check | ~((bfd_vma) -1 >> howto->rightshift);
1677
252b5132 1678 /* Assumes two's complement. */
ba96a88f 1679 if (signed_check > reloc_signed_max || signed_check < reloc_signed_min)
b34976b6 1680 overflow = TRUE;
252b5132 1681
df425bc0 1682#ifndef OLD_ARM_ABI
4f3c3dbb
NC
1683 if (r_type == R_ARM_THM_XPC22
1684 && ((lower_insn & 0x1800) == 0x0800))
c62e1cc3
NC
1685 /* For a BLX instruction, make sure that the relocation is rounded up
1686 to a word boundary. This follows the semantics of the instruction
1687 which specifies that bit 1 of the target address will come from bit
1688 1 of the base address. */
1689 relocation = (relocation + 2) & ~ 3;
99e4ae17 1690#endif
c62e1cc3
NC
1691 /* Put RELOCATION back into the insn. */
1692 upper_insn = (upper_insn & ~(bfd_vma) 0x7ff) | ((relocation >> 12) & 0x7ff);
1693 lower_insn = (lower_insn & ~(bfd_vma) 0x7ff) | ((relocation >> 1) & 0x7ff);
1694
252b5132
RH
1695 /* Put the relocated value back in the object file: */
1696 bfd_put_16 (input_bfd, upper_insn, hit_data);
1697 bfd_put_16 (input_bfd, lower_insn, hit_data + 2);
1698
1699 return (overflow ? bfd_reloc_overflow : bfd_reloc_ok);
1700 }
1701 break;
1702
51c5503b
NC
1703 case R_ARM_THM_PC11:
1704 /* Thumb B (branch) instruction). */
1705 {
6cf9e9fe 1706 bfd_signed_vma relocation;
51c5503b
NC
1707 bfd_signed_vma reloc_signed_max = (1 << (howto->bitsize - 1)) - 1;
1708 bfd_signed_vma reloc_signed_min = ~ reloc_signed_max;
51c5503b
NC
1709 bfd_signed_vma signed_check;
1710
acf8aed4 1711#if USE_REL
51c5503b
NC
1712 /* Need to refetch addend. */
1713 addend = bfd_get_16 (input_bfd, hit_data) & howto->src_mask;
6cf9e9fe
NC
1714 if (addend & ((howto->src_mask + 1) >> 1))
1715 {
1716 signed_addend = -1;
1717 signed_addend &= ~ howto->src_mask;
1718 signed_addend |= addend;
1719 }
1720 else
1721 signed_addend = addend;
1722 /* The value in the insn has been right shifted. We need to
1723 undo this, so that we can perform the address calculation
1724 in terms of bytes. */
1725 signed_addend <<= howto->rightshift;
51c5503b 1726#endif
6cf9e9fe 1727 relocation = value + signed_addend;
51c5503b
NC
1728
1729 relocation -= (input_section->output_section->vma
1730 + input_section->output_offset
1731 + rel->r_offset);
1732
6cf9e9fe
NC
1733 relocation >>= howto->rightshift;
1734 signed_check = relocation;
1735 relocation &= howto->dst_mask;
51c5503b 1736 relocation |= (bfd_get_16 (input_bfd, hit_data) & (~ howto->dst_mask));
cedb70c5 1737
51c5503b
NC
1738 bfd_put_16 (input_bfd, relocation, hit_data);
1739
1740 /* Assumes two's complement. */
1741 if (signed_check > reloc_signed_max || signed_check < reloc_signed_min)
1742 return bfd_reloc_overflow;
1743
1744 return bfd_reloc_ok;
1745 }
cedb70c5 1746
252b5132
RH
1747 case R_ARM_GNU_VTINHERIT:
1748 case R_ARM_GNU_VTENTRY:
1749 return bfd_reloc_ok;
1750
1751 case R_ARM_COPY:
1752 return bfd_reloc_notsupported;
1753
1754 case R_ARM_GLOB_DAT:
1755 return bfd_reloc_notsupported;
1756
1757 case R_ARM_JUMP_SLOT:
1758 return bfd_reloc_notsupported;
1759
1760 case R_ARM_RELATIVE:
1761 return bfd_reloc_notsupported;
1762
1763 case R_ARM_GOTOFF:
1764 /* Relocation is relative to the start of the
1765 global offset table. */
1766
1767 BFD_ASSERT (sgot != NULL);
1768 if (sgot == NULL)
1769 return bfd_reloc_notsupported;
9a5aca8c 1770
cedb70c5 1771 /* If we are addressing a Thumb function, we need to adjust the
ee29b9fb
RE
1772 address by one, so that attempts to call the function pointer will
1773 correctly interpret it as Thumb code. */
1774 if (sym_flags == STT_ARM_TFUNC)
1775 value += 1;
1776
252b5132
RH
1777 /* Note that sgot->output_offset is not involved in this
1778 calculation. We always want the start of .got. If we
1779 define _GLOBAL_OFFSET_TABLE in a different way, as is
1780 permitted by the ABI, we might have to change this
9b485d32 1781 calculation. */
252b5132 1782 value -= sgot->output_section->vma;
f21f3fe0 1783 return _bfd_final_link_relocate (howto, input_bfd, input_section,
99e4ae17
AJ
1784 contents, rel->r_offset, value,
1785 (bfd_vma) 0);
252b5132
RH
1786
1787 case R_ARM_GOTPC:
a7c10850 1788 /* Use global offset table as symbol value. */
252b5132 1789 BFD_ASSERT (sgot != NULL);
f21f3fe0 1790
252b5132
RH
1791 if (sgot == NULL)
1792 return bfd_reloc_notsupported;
1793
1794 value = sgot->output_section->vma;
f21f3fe0 1795 return _bfd_final_link_relocate (howto, input_bfd, input_section,
99e4ae17
AJ
1796 contents, rel->r_offset, value,
1797 (bfd_vma) 0);
f21f3fe0 1798
252b5132
RH
1799 case R_ARM_GOT32:
1800 /* Relocation is to the entry for this symbol in the
9b485d32 1801 global offset table. */
252b5132
RH
1802 if (sgot == NULL)
1803 return bfd_reloc_notsupported;
f21f3fe0 1804
252b5132
RH
1805 if (h != NULL)
1806 {
1807 bfd_vma off;
5e681ec4 1808 bfd_boolean dyn;
f21f3fe0 1809
252b5132
RH
1810 off = h->got.offset;
1811 BFD_ASSERT (off != (bfd_vma) -1);
5e681ec4 1812 dyn = globals->root.dynamic_sections_created;
f21f3fe0 1813
5e681ec4 1814 if (! WILL_CALL_FINISH_DYNAMIC_SYMBOL (dyn, info->shared, h)
50d6c878 1815 || (info->shared
5e681ec4
PB
1816 && SYMBOL_REFERENCES_LOCAL (info, h))
1817 || (ELF_ST_VISIBILITY (h->other)
1818 && h->root.type == bfd_link_hash_undefweak))
252b5132
RH
1819 {
1820 /* This is actually a static link, or it is a -Bsymbolic link
1821 and the symbol is defined locally. We must initialize this
1822 entry in the global offset table. Since the offset must
1823 always be a multiple of 4, we use the least significant bit
1824 to record whether we have initialized it already.
f21f3fe0 1825
252b5132 1826 When doing a dynamic link, we create a .rel.got relocation
f21f3fe0 1827 entry to initialize the value. This is done in the
9b485d32 1828 finish_dynamic_symbol routine. */
252b5132
RH
1829 if ((off & 1) != 0)
1830 off &= ~1;
1831 else
1832 {
ee29b9fb
RE
1833 /* If we are addressing a Thumb function, we need to
1834 adjust the address by one, so that attempts to
1835 call the function pointer will correctly
1836 interpret it as Thumb code. */
1837 if (sym_flags == STT_ARM_TFUNC)
1838 value |= 1;
1839
252b5132
RH
1840 bfd_put_32 (output_bfd, value, sgot->contents + off);
1841 h->got.offset |= 1;
1842 }
1843 }
f21f3fe0 1844
252b5132
RH
1845 value = sgot->output_offset + off;
1846 }
1847 else
1848 {
1849 bfd_vma off;
f21f3fe0 1850
252b5132
RH
1851 BFD_ASSERT (local_got_offsets != NULL &&
1852 local_got_offsets[r_symndx] != (bfd_vma) -1);
f21f3fe0 1853
252b5132 1854 off = local_got_offsets[r_symndx];
f21f3fe0 1855
252b5132
RH
1856 /* The offset must always be a multiple of 4. We use the
1857 least significant bit to record whether we have already
9b485d32 1858 generated the necessary reloc. */
252b5132
RH
1859 if ((off & 1) != 0)
1860 off &= ~1;
1861 else
1862 {
1863 bfd_put_32 (output_bfd, value, sgot->contents + off);
f21f3fe0 1864
252b5132
RH
1865 if (info->shared)
1866 {
1867 asection * srelgot;
947216bf
AM
1868 Elf_Internal_Rela outrel;
1869 bfd_byte *loc;
f21f3fe0 1870
252b5132
RH
1871 srelgot = bfd_get_section_by_name (dynobj, ".rel.got");
1872 BFD_ASSERT (srelgot != NULL);
f21f3fe0 1873
252b5132 1874 outrel.r_offset = (sgot->output_section->vma
f21f3fe0 1875 + sgot->output_offset
252b5132
RH
1876 + off);
1877 outrel.r_info = ELF32_R_INFO (0, R_ARM_RELATIVE);
947216bf
AM
1878 loc = srelgot->contents;
1879 loc += srelgot->reloc_count++ * sizeof (Elf32_External_Rel);
1880 bfd_elf32_swap_reloc_out (output_bfd, &outrel, loc);
252b5132 1881 }
f21f3fe0 1882
252b5132
RH
1883 local_got_offsets[r_symndx] |= 1;
1884 }
f21f3fe0 1885
252b5132
RH
1886 value = sgot->output_offset + off;
1887 }
9a5aca8c 1888
f21f3fe0 1889 return _bfd_final_link_relocate (howto, input_bfd, input_section,
99e4ae17
AJ
1890 contents, rel->r_offset, value,
1891 (bfd_vma) 0);
f21f3fe0 1892
252b5132
RH
1893 case R_ARM_SBREL32:
1894 return bfd_reloc_notsupported;
1895
1896 case R_ARM_AMP_VCALL9:
1897 return bfd_reloc_notsupported;
1898
1899 case R_ARM_RSBREL32:
1900 return bfd_reloc_notsupported;
1901
1902 case R_ARM_THM_RPC22:
1903 return bfd_reloc_notsupported;
1904
1905 case R_ARM_RREL32:
1906 return bfd_reloc_notsupported;
1907
1908 case R_ARM_RABS32:
1909 return bfd_reloc_notsupported;
1910
1911 case R_ARM_RPC24:
1912 return bfd_reloc_notsupported;
1913
1914 case R_ARM_RBASE:
1915 return bfd_reloc_notsupported;
1916
1917 default:
1918 return bfd_reloc_notsupported;
1919 }
1920}
1921
acf8aed4 1922#if USE_REL
98c1d4aa
NC
1923/* Add INCREMENT to the reloc (of type HOWTO) at ADDRESS. */
1924static void
1925arm_add_to_rel (abfd, address, howto, increment)
1926 bfd * abfd;
59f2c4e7 1927 bfd_byte * address;
98c1d4aa
NC
1928 reloc_howto_type * howto;
1929 bfd_signed_vma increment;
1930{
98c1d4aa
NC
1931 bfd_signed_vma addend;
1932
9a5aca8c 1933 if (howto->type == R_ARM_THM_PC22)
98c1d4aa 1934 {
9a5aca8c
AM
1935 int upper_insn, lower_insn;
1936 int upper, lower;
98c1d4aa 1937
9a5aca8c
AM
1938 upper_insn = bfd_get_16 (abfd, address);
1939 lower_insn = bfd_get_16 (abfd, address + 2);
1940 upper = upper_insn & 0x7ff;
1941 lower = lower_insn & 0x7ff;
1942
1943 addend = (upper << 12) | (lower << 1);
ddda4409 1944 addend += increment;
9a5aca8c 1945 addend >>= 1;
98c1d4aa 1946
9a5aca8c
AM
1947 upper_insn = (upper_insn & 0xf800) | ((addend >> 11) & 0x7ff);
1948 lower_insn = (lower_insn & 0xf800) | (addend & 0x7ff);
1949
dc810e39
AM
1950 bfd_put_16 (abfd, (bfd_vma) upper_insn, address);
1951 bfd_put_16 (abfd, (bfd_vma) lower_insn, address + 2);
9a5aca8c
AM
1952 }
1953 else
1954 {
1955 bfd_vma contents;
1956
1957 contents = bfd_get_32 (abfd, address);
1958
1959 /* Get the (signed) value from the instruction. */
1960 addend = contents & howto->src_mask;
1961 if (addend & ((howto->src_mask + 1) >> 1))
1962 {
1963 bfd_signed_vma mask;
1964
1965 mask = -1;
1966 mask &= ~ howto->src_mask;
1967 addend |= mask;
1968 }
1969
1970 /* Add in the increment, (which is a byte value). */
1971 switch (howto->type)
1972 {
1973 default:
1974 addend += increment;
1975 break;
1976
1977 case R_ARM_PC24:
1978 addend <<= howto->size;
dc810e39 1979 addend += increment;
9a5aca8c
AM
1980
1981 /* Should we check for overflow here ? */
1982
1983 /* Drop any undesired bits. */
1984 addend >>= howto->rightshift;
1985 break;
1986 }
1987
1988 contents = (contents & ~ howto->dst_mask) | (addend & howto->dst_mask);
1989
1990 bfd_put_32 (abfd, contents, address);
ddda4409 1991 }
98c1d4aa
NC
1992}
1993#endif /* USE_REL */
252b5132
RH
1994
1995/* Relocate an ARM ELF section. */
b34976b6 1996static bfd_boolean
252b5132
RH
1997elf32_arm_relocate_section (output_bfd, info, input_bfd, input_section,
1998 contents, relocs, local_syms, local_sections)
b34976b6
AM
1999 bfd *output_bfd;
2000 struct bfd_link_info *info;
2001 bfd *input_bfd;
2002 asection *input_section;
2003 bfd_byte *contents;
2004 Elf_Internal_Rela *relocs;
2005 Elf_Internal_Sym *local_syms;
2006 asection **local_sections;
252b5132 2007{
b34976b6
AM
2008 Elf_Internal_Shdr *symtab_hdr;
2009 struct elf_link_hash_entry **sym_hashes;
2010 Elf_Internal_Rela *rel;
2011 Elf_Internal_Rela *relend;
2012 const char *name;
252b5132 2013
acf8aed4 2014#if !USE_REL
1049f94e 2015 if (info->relocatable)
b34976b6 2016 return TRUE;
b491616a
AM
2017#endif
2018
252b5132
RH
2019 symtab_hdr = & elf_tdata (input_bfd)->symtab_hdr;
2020 sym_hashes = elf_sym_hashes (input_bfd);
2021
2022 rel = relocs;
2023 relend = relocs + input_section->reloc_count;
2024 for (; rel < relend; rel++)
2025 {
ba96a88f
NC
2026 int r_type;
2027 reloc_howto_type * howto;
2028 unsigned long r_symndx;
2029 Elf_Internal_Sym * sym;
2030 asection * sec;
252b5132 2031 struct elf_link_hash_entry * h;
ba96a88f
NC
2032 bfd_vma relocation;
2033 bfd_reloc_status_type r;
2034 arelent bfd_reloc;
f21f3fe0 2035
252b5132 2036 r_symndx = ELF32_R_SYM (rel->r_info);
ba96a88f 2037 r_type = ELF32_R_TYPE (rel->r_info);
252b5132 2038
ba96a88f
NC
2039 if ( r_type == R_ARM_GNU_VTENTRY
2040 || r_type == R_ARM_GNU_VTINHERIT)
252b5132
RH
2041 continue;
2042
dc810e39 2043 elf32_arm_info_to_howto (input_bfd, & bfd_reloc, rel);
ba96a88f 2044 howto = bfd_reloc.howto;
252b5132 2045
acf8aed4 2046#if USE_REL
1049f94e 2047 if (info->relocatable)
252b5132 2048 {
1049f94e 2049 /* This is a relocatable link. We don't have to change
252b5132
RH
2050 anything, unless the reloc is against a section symbol,
2051 in which case we have to adjust according to where the
2052 section symbol winds up in the output section. */
2053 if (r_symndx < symtab_hdr->sh_info)
2054 {
2055 sym = local_syms + r_symndx;
2056 if (ELF_ST_TYPE (sym->st_info) == STT_SECTION)
2057 {
2058 sec = local_sections[r_symndx];
98c1d4aa 2059 arm_add_to_rel (input_bfd, contents + rel->r_offset,
dc810e39
AM
2060 howto,
2061 (bfd_signed_vma) (sec->output_offset
2062 + sym->st_value));
252b5132
RH
2063 }
2064 }
2065
2066 continue;
2067 }
b491616a 2068#endif
252b5132
RH
2069
2070 /* This is a final link. */
2071 h = NULL;
2072 sym = NULL;
2073 sec = NULL;
9b485d32 2074
252b5132
RH
2075 if (r_symndx < symtab_hdr->sh_info)
2076 {
2077 sym = local_syms + r_symndx;
2078 sec = local_sections[r_symndx];
acf8aed4 2079#if USE_REL
252b5132
RH
2080 relocation = (sec->output_section->vma
2081 + sec->output_offset
2082 + sym->st_value);
f8df10f4
JJ
2083 if ((sec->flags & SEC_MERGE)
2084 && ELF_ST_TYPE (sym->st_info) == STT_SECTION)
2085 {
2086 asection *msec;
2087 bfd_vma addend, value;
2088
2089 if (howto->rightshift)
2090 {
2091 (*_bfd_error_handler)
2092 (_("%s(%s+0x%lx): %s relocation against SEC_MERGE section"),
2093 bfd_archive_filename (input_bfd),
2094 bfd_get_section_name (input_bfd, input_section),
2095 (long) rel->r_offset, howto->name);
b34976b6 2096 return FALSE;
f8df10f4
JJ
2097 }
2098
2099 value = bfd_get_32 (input_bfd, contents + rel->r_offset);
2100
2101 /* Get the (signed) value from the instruction. */
2102 addend = value & howto->src_mask;
2103 if (addend & ((howto->src_mask + 1) >> 1))
2104 {
2105 bfd_signed_vma mask;
2106
2107 mask = -1;
2108 mask &= ~ howto->src_mask;
2109 addend |= mask;
2110 }
2111 msec = sec;
2112 addend =
c629eae0 2113 _bfd_elf_rel_local_sym (output_bfd, sym, &msec, addend)
f8df10f4
JJ
2114 - relocation;
2115 addend += msec->output_section->vma + msec->output_offset;
2116 value = (value & ~ howto->dst_mask) | (addend & howto->dst_mask);
2117 bfd_put_32 (input_bfd, value, contents + rel->r_offset);
2118 }
2119#else
8517fae7 2120 relocation = _bfd_elf_rela_local_sym (output_bfd, sym, &sec, rel);
f8df10f4 2121#endif
252b5132
RH
2122 }
2123 else
2124 {
560e09e9
NC
2125 bfd_boolean warned;
2126 bfd_boolean unresolved_reloc;
2127
b2a8e766
AM
2128 RELOC_FOR_GLOBAL_SYMBOL (info, input_bfd, input_section, rel,
2129 r_symndx, symtab_hdr, sym_hashes,
2130 h, sec, relocation,
2131 unresolved_reloc, warned);
560e09e9
NC
2132
2133 if (unresolved_reloc || relocation != 0)
252b5132 2134 {
252b5132 2135 /* In these cases, we don't need the relocation value.
f21f3fe0 2136 We check specially because in some obscure cases
9b485d32 2137 sec->output_section will be NULL. */
252b5132
RH
2138 switch (r_type)
2139 {
2140 case R_ARM_PC24:
2141 case R_ARM_ABS32:
6a360bf4 2142 case R_ARM_THM_PC22:
252b5132
RH
2143 if (info->shared
2144 && (
5e681ec4 2145 (!info->symbolic && h->dynindx != -1)
97eaf9de 2146 || (h->elf_link_hash_flags & ELF_LINK_HASH_DEF_REGULAR) == 0
252b5132 2147 )
5e681ec4 2148 && ELF_ST_VISIBILITY (h->other) == STV_DEFAULT
05924f36
PB
2149 && ((input_section->flags & SEC_ALLOC) != 0
2150 /* DWARF will emit R_ARM_ABS32 relocations in its
2151 sections against symbols defined externally
2152 in shared libraries. We can't do anything
2153 with them here. */
2154 || ((input_section->flags & SEC_DEBUGGING) != 0
2155 && (h->elf_link_hash_flags
2156 & ELF_LINK_HASH_DEF_DYNAMIC) != 0))
252b5132 2157 )
560e09e9 2158 relocation = 0;
252b5132 2159 break;
f21f3fe0 2160
252b5132 2161 case R_ARM_GOTPC:
560e09e9 2162 relocation = 0;
252b5132 2163 break;
f21f3fe0 2164
252b5132 2165 case R_ARM_GOT32:
50d6c878 2166 if ((WILL_CALL_FINISH_DYNAMIC_SYMBOL
560e09e9 2167 (elf_hash_table (info)->dynamic_sections_created,
50d6c878
DJ
2168 info->shared, h))
2169 && (!info->shared
252b5132 2170 || (!info->symbolic && h->dynindx != -1)
50d6c878
DJ
2171 || (h->elf_link_hash_flags
2172 & ELF_LINK_HASH_DEF_REGULAR) == 0))
560e09e9 2173 relocation = 0;
252b5132 2174 break;
f21f3fe0 2175
252b5132
RH
2176 case R_ARM_PLT32:
2177 if (h->plt.offset != (bfd_vma)-1)
560e09e9 2178 relocation = 0;
252b5132 2179 break;
f21f3fe0 2180
252b5132 2181 default:
560e09e9
NC
2182 if (unresolved_reloc)
2183 _bfd_error_handler
2184 (_("%s: warning: unresolvable relocation %d against symbol `%s' from %s section"),
2185 bfd_archive_filename (input_bfd),
2186 r_type,
2187 h->root.root.string,
2188 bfd_get_section_name (input_bfd, input_section));
2189 break;
252b5132 2190 }
252b5132
RH
2191 }
2192 }
2193
2194 if (h != NULL)
2195 name = h->root.root.string;
2196 else
2197 {
2198 name = (bfd_elf_string_from_elf_section
2199 (input_bfd, symtab_hdr->sh_link, sym->st_name));
2200 if (name == NULL || *name == '\0')
2201 name = bfd_section_name (input_bfd, sec);
2202 }
f21f3fe0 2203
252b5132
RH
2204 r = elf32_arm_final_link_relocate (howto, input_bfd, output_bfd,
2205 input_section, contents, rel,
2206 relocation, info, sec, name,
2207 (h ? ELF_ST_TYPE (h->type) :
780a67af 2208 ELF_ST_TYPE (sym->st_info)), h);
252b5132
RH
2209
2210 if (r != bfd_reloc_ok)
2211 {
2212 const char * msg = (const char *) 0;
2213
2214 switch (r)
2215 {
2216 case bfd_reloc_overflow:
cf919dfd
PB
2217 /* If the overflowing reloc was to an undefined symbol,
2218 we have already printed one error message and there
2219 is no point complaining again. */
2220 if ((! h ||
2221 h->root.type != bfd_link_hash_undefined)
2222 && (!((*info->callbacks->reloc_overflow)
2223 (info, name, howto->name, (bfd_vma) 0,
2224 input_bfd, input_section, rel->r_offset))))
b34976b6 2225 return FALSE;
252b5132
RH
2226 break;
2227
2228 case bfd_reloc_undefined:
2229 if (!((*info->callbacks->undefined_symbol)
2230 (info, name, input_bfd, input_section,
b34976b6
AM
2231 rel->r_offset, TRUE)))
2232 return FALSE;
252b5132
RH
2233 break;
2234
2235 case bfd_reloc_outofrange:
9b485d32 2236 msg = _("internal error: out of range error");
252b5132
RH
2237 goto common_error;
2238
2239 case bfd_reloc_notsupported:
9b485d32 2240 msg = _("internal error: unsupported relocation error");
252b5132
RH
2241 goto common_error;
2242
2243 case bfd_reloc_dangerous:
9b485d32 2244 msg = _("internal error: dangerous error");
252b5132
RH
2245 goto common_error;
2246
2247 default:
9b485d32 2248 msg = _("internal error: unknown error");
252b5132
RH
2249 /* fall through */
2250
2251 common_error:
2252 if (!((*info->callbacks->warning)
2253 (info, msg, name, input_bfd, input_section,
2254 rel->r_offset)))
b34976b6 2255 return FALSE;
252b5132
RH
2256 break;
2257 }
2258 }
2259 }
2260
b34976b6 2261 return TRUE;
252b5132
RH
2262}
2263
c178919b
NC
2264/* Set the right machine number. */
2265
2266static bfd_boolean
2267elf32_arm_object_p (abfd)
2268 bfd *abfd;
2269{
5a6c6817
NC
2270 unsigned int mach;
2271
2272 mach = bfd_arm_get_mach_from_notes (abfd, ARM_NOTE_SECTION);
c178919b 2273
5a6c6817
NC
2274 if (mach != bfd_mach_arm_unknown)
2275 bfd_default_set_arch_mach (abfd, bfd_arch_arm, mach);
2276
2277 else if (elf_elfheader (abfd)->e_flags & EF_ARM_MAVERICK_FLOAT)
2278 bfd_default_set_arch_mach (abfd, bfd_arch_arm, bfd_mach_arm_ep9312);
e16bb312 2279
e16bb312 2280 else
5a6c6817 2281 bfd_default_set_arch_mach (abfd, bfd_arch_arm, mach);
c178919b
NC
2282
2283 return TRUE;
2284}
2285
fc830a83 2286/* Function to keep ARM specific flags in the ELF header. */
b34976b6 2287static bfd_boolean
252b5132
RH
2288elf32_arm_set_private_flags (abfd, flags)
2289 bfd *abfd;
2290 flagword flags;
2291{
2292 if (elf_flags_init (abfd)
2293 && elf_elfheader (abfd)->e_flags != flags)
2294 {
fc830a83
NC
2295 if (EF_ARM_EABI_VERSION (flags) == EF_ARM_EABI_UNKNOWN)
2296 {
fd2ec330 2297 if (flags & EF_ARM_INTERWORK)
8f615d07 2298 (*_bfd_error_handler) (_("\
ae1a89b7 2299Warning: Not setting interworking flag of %s since it has already been specified as non-interworking"),
8f615d07 2300 bfd_archive_filename (abfd));
fc830a83 2301 else
63b0f745 2302 _bfd_error_handler (_("\
ae1a89b7 2303Warning: Clearing the interworking flag of %s due to outside request"),
63b0f745 2304 bfd_archive_filename (abfd));
fc830a83 2305 }
252b5132
RH
2306 }
2307 else
2308 {
2309 elf_elfheader (abfd)->e_flags = flags;
b34976b6 2310 elf_flags_init (abfd) = TRUE;
252b5132
RH
2311 }
2312
b34976b6 2313 return TRUE;
252b5132
RH
2314}
2315
fc830a83 2316/* Copy backend specific data from one object module to another. */
9b485d32 2317
b34976b6 2318static bfd_boolean
252b5132
RH
2319elf32_arm_copy_private_bfd_data (ibfd, obfd)
2320 bfd *ibfd;
2321 bfd *obfd;
2322{
2323 flagword in_flags;
2324 flagword out_flags;
2325
fc830a83 2326 if ( bfd_get_flavour (ibfd) != bfd_target_elf_flavour
252b5132 2327 || bfd_get_flavour (obfd) != bfd_target_elf_flavour)
b34976b6 2328 return TRUE;
252b5132 2329
fc830a83 2330 in_flags = elf_elfheader (ibfd)->e_flags;
252b5132
RH
2331 out_flags = elf_elfheader (obfd)->e_flags;
2332
fc830a83
NC
2333 if (elf_flags_init (obfd)
2334 && EF_ARM_EABI_VERSION (out_flags) == EF_ARM_EABI_UNKNOWN
2335 && in_flags != out_flags)
252b5132 2336 {
252b5132 2337 /* Cannot mix APCS26 and APCS32 code. */
fd2ec330 2338 if ((in_flags & EF_ARM_APCS_26) != (out_flags & EF_ARM_APCS_26))
b34976b6 2339 return FALSE;
252b5132
RH
2340
2341 /* Cannot mix float APCS and non-float APCS code. */
fd2ec330 2342 if ((in_flags & EF_ARM_APCS_FLOAT) != (out_flags & EF_ARM_APCS_FLOAT))
b34976b6 2343 return FALSE;
252b5132
RH
2344
2345 /* If the src and dest have different interworking flags
2346 then turn off the interworking bit. */
fd2ec330 2347 if ((in_flags & EF_ARM_INTERWORK) != (out_flags & EF_ARM_INTERWORK))
252b5132 2348 {
fd2ec330 2349 if (out_flags & EF_ARM_INTERWORK)
63b0f745 2350 _bfd_error_handler (_("\
ae1a89b7 2351Warning: Clearing the interworking flag of %s because non-interworking code in %s has been linked with it"),
06317a27 2352 bfd_get_filename (obfd),
63b0f745 2353 bfd_archive_filename (ibfd));
252b5132 2354
fd2ec330 2355 in_flags &= ~EF_ARM_INTERWORK;
252b5132 2356 }
1006ba19
PB
2357
2358 /* Likewise for PIC, though don't warn for this case. */
fd2ec330
PB
2359 if ((in_flags & EF_ARM_PIC) != (out_flags & EF_ARM_PIC))
2360 in_flags &= ~EF_ARM_PIC;
252b5132
RH
2361 }
2362
2363 elf_elfheader (obfd)->e_flags = in_flags;
b34976b6 2364 elf_flags_init (obfd) = TRUE;
252b5132 2365
b34976b6 2366 return TRUE;
252b5132
RH
2367}
2368
2369/* Merge backend specific data from an object file to the output
2370 object file when linking. */
9b485d32 2371
b34976b6 2372static bfd_boolean
252b5132 2373elf32_arm_merge_private_bfd_data (ibfd, obfd)
fc830a83
NC
2374 bfd * ibfd;
2375 bfd * obfd;
252b5132
RH
2376{
2377 flagword out_flags;
2378 flagword in_flags;
b34976b6 2379 bfd_boolean flags_compatible = TRUE;
cf919dfd 2380 asection *sec;
252b5132 2381
9b485d32 2382 /* Check if we have the same endianess. */
82e51918 2383 if (! _bfd_generic_verify_endian_match (ibfd, obfd))
b34976b6 2384 return FALSE;
1fe494a5 2385
252b5132
RH
2386 if ( bfd_get_flavour (ibfd) != bfd_target_elf_flavour
2387 || bfd_get_flavour (obfd) != bfd_target_elf_flavour)
b34976b6 2388 return TRUE;
252b5132 2389
252b5132
RH
2390 /* The input BFD must have had its flags initialised. */
2391 /* The following seems bogus to me -- The flags are initialized in
2392 the assembler but I don't think an elf_flags_init field is
9b485d32 2393 written into the object. */
252b5132
RH
2394 /* BFD_ASSERT (elf_flags_init (ibfd)); */
2395
2396 in_flags = elf_elfheader (ibfd)->e_flags;
2397 out_flags = elf_elfheader (obfd)->e_flags;
2398
2399 if (!elf_flags_init (obfd))
2400 {
fe077fa6
NC
2401 /* If the input is the default architecture and had the default
2402 flags then do not bother setting the flags for the output
2403 architecture, instead allow future merges to do this. If no
2404 future merges ever set these flags then they will retain their
2405 uninitialised values, which surprise surprise, correspond
252b5132 2406 to the default values. */
fe077fa6
NC
2407 if (bfd_get_arch_info (ibfd)->the_default
2408 && elf_elfheader (ibfd)->e_flags == 0)
b34976b6 2409 return TRUE;
252b5132 2410
b34976b6 2411 elf_flags_init (obfd) = TRUE;
252b5132
RH
2412 elf_elfheader (obfd)->e_flags = in_flags;
2413
2414 if (bfd_get_arch (obfd) == bfd_get_arch (ibfd)
2415 && bfd_get_arch_info (obfd)->the_default)
2416 return bfd_set_arch_mach (obfd, bfd_get_arch (ibfd), bfd_get_mach (ibfd));
2417
b34976b6 2418 return TRUE;
252b5132
RH
2419 }
2420
5a6c6817
NC
2421 /* Determine what should happen if the input ARM architecture
2422 does not match the output ARM architecture. */
2423 if (! bfd_arm_merge_machines (ibfd, obfd))
2424 return FALSE;
e16bb312 2425
1006ba19 2426 /* Identical flags must be compatible. */
252b5132 2427 if (in_flags == out_flags)
b34976b6 2428 return TRUE;
252b5132 2429
35a0f415
DJ
2430 /* Check to see if the input BFD actually contains any sections. If
2431 not, its flags may not have been initialised either, but it
2432 cannot actually cause any incompatibility. Do not short-circuit
2433 dynamic objects; their section list may be emptied by
d1f161ea 2434 elf_link_add_object_symbols.
35a0f415 2435
d1f161ea
NC
2436 Also check to see if there are no code sections in the input.
2437 In this case there is no need to check for code specific flags.
2438 XXX - do we need to worry about floating-point format compatability
2439 in data sections ? */
35a0f415 2440 if (!(ibfd->flags & DYNAMIC))
cf919dfd 2441 {
35a0f415 2442 bfd_boolean null_input_bfd = TRUE;
d1f161ea 2443 bfd_boolean only_data_sections = TRUE;
35a0f415
DJ
2444
2445 for (sec = ibfd->sections; sec != NULL; sec = sec->next)
cf919dfd 2446 {
35a0f415
DJ
2447 /* Ignore synthetic glue sections. */
2448 if (strcmp (sec->name, ".glue_7")
2449 && strcmp (sec->name, ".glue_7t"))
2450 {
d1f161ea
NC
2451 if ((bfd_get_section_flags (ibfd, sec)
2452 & (SEC_LOAD | SEC_CODE | SEC_HAS_CONTENTS))
2453 == (SEC_LOAD | SEC_CODE | SEC_HAS_CONTENTS))
2454 only_data_sections = FALSE;
2455
35a0f415
DJ
2456 null_input_bfd = FALSE;
2457 break;
2458 }
cf919dfd 2459 }
d1f161ea
NC
2460
2461 if (null_input_bfd || only_data_sections)
35a0f415 2462 return TRUE;
cf919dfd 2463 }
cf919dfd 2464
252b5132 2465 /* Complain about various flag mismatches. */
fc830a83
NC
2466 if (EF_ARM_EABI_VERSION (in_flags) != EF_ARM_EABI_VERSION (out_flags))
2467 {
63b0f745 2468 _bfd_error_handler (_("\
6c571f00 2469ERROR: %s is compiled for EABI version %d, whereas %s is compiled for version %d"),
63b0f745
NC
2470 bfd_archive_filename (ibfd),
2471 (in_flags & EF_ARM_EABIMASK) >> 24,
06317a27 2472 bfd_get_filename (obfd),
63b0f745 2473 (out_flags & EF_ARM_EABIMASK) >> 24);
b34976b6 2474 return FALSE;
fc830a83 2475 }
252b5132 2476
1006ba19
PB
2477 /* Not sure what needs to be checked for EABI versions >= 1. */
2478 if (EF_ARM_EABI_VERSION (in_flags) == EF_ARM_EABI_UNKNOWN)
2479 {
fd2ec330 2480 if ((in_flags & EF_ARM_APCS_26) != (out_flags & EF_ARM_APCS_26))
1006ba19 2481 {
63b0f745 2482 _bfd_error_handler (_("\
6c571f00 2483ERROR: %s is compiled for APCS-%d, whereas target %s uses APCS-%d"),
63b0f745
NC
2484 bfd_archive_filename (ibfd),
2485 in_flags & EF_ARM_APCS_26 ? 26 : 32,
06317a27 2486 bfd_get_filename (obfd),
63b0f745 2487 out_flags & EF_ARM_APCS_26 ? 26 : 32);
b34976b6 2488 flags_compatible = FALSE;
1006ba19 2489 }
252b5132 2490
fd2ec330 2491 if ((in_flags & EF_ARM_APCS_FLOAT) != (out_flags & EF_ARM_APCS_FLOAT))
1006ba19 2492 {
5eefb65f
NC
2493 if (in_flags & EF_ARM_APCS_FLOAT)
2494 _bfd_error_handler (_("\
6c571f00 2495ERROR: %s passes floats in float registers, whereas %s passes them in integer registers"),
5eefb65f
NC
2496 bfd_archive_filename (ibfd),
2497 bfd_get_filename (obfd));
2498 else
2499 _bfd_error_handler (_("\
6c571f00 2500ERROR: %s passes floats in integer registers, whereas %s passes them in float registers"),
5eefb65f
NC
2501 bfd_archive_filename (ibfd),
2502 bfd_get_filename (obfd));
63b0f745 2503
b34976b6 2504 flags_compatible = FALSE;
1006ba19 2505 }
252b5132 2506
96a846ea 2507 if ((in_flags & EF_ARM_VFP_FLOAT) != (out_flags & EF_ARM_VFP_FLOAT))
1006ba19 2508 {
96a846ea
RE
2509 if (in_flags & EF_ARM_VFP_FLOAT)
2510 _bfd_error_handler (_("\
fde78edd 2511ERROR: %s uses VFP instructions, whereas %s does not"),
5eefb65f
NC
2512 bfd_archive_filename (ibfd),
2513 bfd_get_filename (obfd));
2514 else
96a846ea 2515 _bfd_error_handler (_("\
fde78edd
NC
2516ERROR: %s uses FPA instructions, whereas %s does not"),
2517 bfd_archive_filename (ibfd),
2518 bfd_get_filename (obfd));
2519
2520 flags_compatible = FALSE;
2521 }
2522
2523 if ((in_flags & EF_ARM_MAVERICK_FLOAT) != (out_flags & EF_ARM_MAVERICK_FLOAT))
2524 {
2525 if (in_flags & EF_ARM_MAVERICK_FLOAT)
2526 _bfd_error_handler (_("\
2527ERROR: %s uses Maverick instructions, whereas %s does not"),
2528 bfd_archive_filename (ibfd),
2529 bfd_get_filename (obfd));
2530 else
2531 _bfd_error_handler (_("\
5a21e886 2532ERROR: %s does not use Maverick instructions, whereas %s does"),
5eefb65f
NC
2533 bfd_archive_filename (ibfd),
2534 bfd_get_filename (obfd));
63b0f745 2535
b34976b6 2536 flags_compatible = FALSE;
1006ba19 2537 }
96a846ea
RE
2538
2539#ifdef EF_ARM_SOFT_FLOAT
2540 if ((in_flags & EF_ARM_SOFT_FLOAT) != (out_flags & EF_ARM_SOFT_FLOAT))
2541 {
2542 /* We can allow interworking between code that is VFP format
2543 layout, and uses either soft float or integer regs for
2544 passing floating point arguments and results. We already
2545 know that the APCS_FLOAT flags match; similarly for VFP
2546 flags. */
2547 if ((in_flags & EF_ARM_APCS_FLOAT) != 0
2548 || (in_flags & EF_ARM_VFP_FLOAT) == 0)
2549 {
2550 if (in_flags & EF_ARM_SOFT_FLOAT)
517662d4 2551 _bfd_error_handler (_("\
6c571f00 2552ERROR: %s uses software FP, whereas %s uses hardware FP"),
96a846ea
RE
2553 bfd_archive_filename (ibfd),
2554 bfd_get_filename (obfd));
2555 else
517662d4 2556 _bfd_error_handler (_("\
6c571f00 2557ERROR: %s uses hardware FP, whereas %s uses software FP"),
96a846ea
RE
2558 bfd_archive_filename (ibfd),
2559 bfd_get_filename (obfd));
2560
b34976b6 2561 flags_compatible = FALSE;
96a846ea
RE
2562 }
2563 }
ee43f35e 2564#endif
252b5132 2565
1006ba19 2566 /* Interworking mismatch is only a warning. */
fd2ec330 2567 if ((in_flags & EF_ARM_INTERWORK) != (out_flags & EF_ARM_INTERWORK))
8f615d07 2568 {
e3c8793a
NC
2569 if (in_flags & EF_ARM_INTERWORK)
2570 {
2571 _bfd_error_handler (_("\
2572Warning: %s supports interworking, whereas %s does not"),
2573 bfd_archive_filename (ibfd),
cedb70c5 2574 bfd_get_filename (obfd));
e3c8793a
NC
2575 }
2576 else
2577 {
2578 _bfd_error_handler (_("\
2579Warning: %s does not support interworking, whereas %s does"),
2580 bfd_archive_filename (ibfd),
2581 bfd_get_filename (obfd));
2582 }
8f615d07 2583 }
252b5132 2584 }
63b0f745 2585
1006ba19 2586 return flags_compatible;
252b5132
RH
2587}
2588
9b485d32
NC
2589/* Display the flags field. */
2590
b34976b6 2591static bfd_boolean
252b5132
RH
2592elf32_arm_print_private_bfd_data (abfd, ptr)
2593 bfd *abfd;
2594 PTR ptr;
2595{
fc830a83
NC
2596 FILE * file = (FILE *) ptr;
2597 unsigned long flags;
252b5132
RH
2598
2599 BFD_ASSERT (abfd != NULL && ptr != NULL);
2600
2601 /* Print normal ELF private data. */
2602 _bfd_elf_print_private_bfd_data (abfd, ptr);
2603
fc830a83 2604 flags = elf_elfheader (abfd)->e_flags;
9b485d32
NC
2605 /* Ignore init flag - it may not be set, despite the flags field
2606 containing valid data. */
252b5132
RH
2607
2608 /* xgettext:c-format */
9b485d32 2609 fprintf (file, _("private flags = %lx:"), elf_elfheader (abfd)->e_flags);
252b5132 2610
fc830a83
NC
2611 switch (EF_ARM_EABI_VERSION (flags))
2612 {
2613 case EF_ARM_EABI_UNKNOWN:
4cc11e76 2614 /* The following flag bits are GNU extensions and not part of the
fc830a83
NC
2615 official ARM ELF extended ABI. Hence they are only decoded if
2616 the EABI version is not set. */
fd2ec330 2617 if (flags & EF_ARM_INTERWORK)
9b485d32 2618 fprintf (file, _(" [interworking enabled]"));
9a5aca8c 2619
fd2ec330 2620 if (flags & EF_ARM_APCS_26)
6c571f00 2621 fprintf (file, " [APCS-26]");
fc830a83 2622 else
6c571f00 2623 fprintf (file, " [APCS-32]");
9a5aca8c 2624
96a846ea
RE
2625 if (flags & EF_ARM_VFP_FLOAT)
2626 fprintf (file, _(" [VFP float format]"));
fde78edd
NC
2627 else if (flags & EF_ARM_MAVERICK_FLOAT)
2628 fprintf (file, _(" [Maverick float format]"));
96a846ea
RE
2629 else
2630 fprintf (file, _(" [FPA float format]"));
2631
fd2ec330 2632 if (flags & EF_ARM_APCS_FLOAT)
9b485d32 2633 fprintf (file, _(" [floats passed in float registers]"));
9a5aca8c 2634
fd2ec330 2635 if (flags & EF_ARM_PIC)
9b485d32 2636 fprintf (file, _(" [position independent]"));
fc830a83 2637
fd2ec330 2638 if (flags & EF_ARM_NEW_ABI)
9b485d32 2639 fprintf (file, _(" [new ABI]"));
9a5aca8c 2640
fd2ec330 2641 if (flags & EF_ARM_OLD_ABI)
9b485d32 2642 fprintf (file, _(" [old ABI]"));
9a5aca8c 2643
fd2ec330 2644 if (flags & EF_ARM_SOFT_FLOAT)
9b485d32 2645 fprintf (file, _(" [software FP]"));
9a5aca8c 2646
96a846ea
RE
2647 flags &= ~(EF_ARM_INTERWORK | EF_ARM_APCS_26 | EF_ARM_APCS_FLOAT
2648 | EF_ARM_PIC | EF_ARM_NEW_ABI | EF_ARM_OLD_ABI
fde78edd
NC
2649 | EF_ARM_SOFT_FLOAT | EF_ARM_VFP_FLOAT
2650 | EF_ARM_MAVERICK_FLOAT);
fc830a83 2651 break;
9a5aca8c 2652
fc830a83 2653 case EF_ARM_EABI_VER1:
9b485d32 2654 fprintf (file, _(" [Version1 EABI]"));
9a5aca8c 2655
fc830a83 2656 if (flags & EF_ARM_SYMSARESORTED)
9b485d32 2657 fprintf (file, _(" [sorted symbol table]"));
fc830a83 2658 else
9b485d32 2659 fprintf (file, _(" [unsorted symbol table]"));
9a5aca8c 2660
fc830a83
NC
2661 flags &= ~ EF_ARM_SYMSARESORTED;
2662 break;
9a5aca8c 2663
fd2ec330
PB
2664 case EF_ARM_EABI_VER2:
2665 fprintf (file, _(" [Version2 EABI]"));
2666
2667 if (flags & EF_ARM_SYMSARESORTED)
2668 fprintf (file, _(" [sorted symbol table]"));
2669 else
2670 fprintf (file, _(" [unsorted symbol table]"));
2671
2672 if (flags & EF_ARM_DYNSYMSUSESEGIDX)
2673 fprintf (file, _(" [dynamic symbols use segment index]"));
2674
2675 if (flags & EF_ARM_MAPSYMSFIRST)
2676 fprintf (file, _(" [mapping symbols precede others]"));
2677
99e4ae17 2678 flags &= ~(EF_ARM_SYMSARESORTED | EF_ARM_DYNSYMSUSESEGIDX
fd2ec330
PB
2679 | EF_ARM_MAPSYMSFIRST);
2680 break;
2681
d507cf36
PB
2682 case EF_ARM_EABI_VER3:
2683 fprintf (file, _(" [Version3 EABI]"));
2684
2685 if (flags & EF_ARM_BE8)
2686 fprintf (file, _(" [BE8]"));
2687
2688 if (flags & EF_ARM_LE8)
2689 fprintf (file, _(" [LE8]"));
2690
2691 flags &= ~(EF_ARM_LE8 | EF_ARM_BE8);
2692 break;
2693
fc830a83 2694 default:
9b485d32 2695 fprintf (file, _(" <EABI version unrecognised>"));
fc830a83
NC
2696 break;
2697 }
252b5132 2698
fc830a83 2699 flags &= ~ EF_ARM_EABIMASK;
252b5132 2700
fc830a83 2701 if (flags & EF_ARM_RELEXEC)
9b485d32 2702 fprintf (file, _(" [relocatable executable]"));
252b5132 2703
fc830a83 2704 if (flags & EF_ARM_HASENTRY)
9b485d32 2705 fprintf (file, _(" [has entry point]"));
252b5132 2706
fc830a83
NC
2707 flags &= ~ (EF_ARM_RELEXEC | EF_ARM_HASENTRY);
2708
2709 if (flags)
9b485d32 2710 fprintf (file, _("<Unrecognised flag bits set>"));
9a5aca8c 2711
252b5132
RH
2712 fputc ('\n', file);
2713
b34976b6 2714 return TRUE;
252b5132
RH
2715}
2716
2717static int
2718elf32_arm_get_symbol_type (elf_sym, type)
2719 Elf_Internal_Sym * elf_sym;
2720 int type;
2721{
2f0ca46a
NC
2722 switch (ELF_ST_TYPE (elf_sym->st_info))
2723 {
2724 case STT_ARM_TFUNC:
2725 return ELF_ST_TYPE (elf_sym->st_info);
ce855c42 2726
2f0ca46a
NC
2727 case STT_ARM_16BIT:
2728 /* If the symbol is not an object, return the STT_ARM_16BIT flag.
2729 This allows us to distinguish between data used by Thumb instructions
2730 and non-data (which is probably code) inside Thumb regions of an
2731 executable. */
2732 if (type != STT_OBJECT)
2733 return ELF_ST_TYPE (elf_sym->st_info);
2734 break;
9a5aca8c 2735
ce855c42
NC
2736 default:
2737 break;
2f0ca46a
NC
2738 }
2739
2740 return type;
252b5132 2741}
f21f3fe0 2742
252b5132 2743static asection *
1e2f5b6e
AM
2744elf32_arm_gc_mark_hook (sec, info, rel, h, sym)
2745 asection *sec;
5f771d47 2746 struct bfd_link_info *info ATTRIBUTE_UNUSED;
252b5132
RH
2747 Elf_Internal_Rela *rel;
2748 struct elf_link_hash_entry *h;
2749 Elf_Internal_Sym *sym;
2750{
2751 if (h != NULL)
2752 {
2753 switch (ELF32_R_TYPE (rel->r_info))
2754 {
2755 case R_ARM_GNU_VTINHERIT:
2756 case R_ARM_GNU_VTENTRY:
2757 break;
2758
2759 default:
2760 switch (h->root.type)
2761 {
2762 case bfd_link_hash_defined:
2763 case bfd_link_hash_defweak:
2764 return h->root.u.def.section;
2765
2766 case bfd_link_hash_common:
2767 return h->root.u.c.p->section;
e049a0de
ILT
2768
2769 default:
2770 break;
252b5132
RH
2771 }
2772 }
2773 }
2774 else
1e2f5b6e 2775 return bfd_section_from_elf_index (sec->owner, sym->st_shndx);
9ad5cbcf 2776
252b5132
RH
2777 return NULL;
2778}
2779
780a67af
NC
2780/* Update the got entry reference counts for the section being removed. */
2781
b34976b6 2782static bfd_boolean
252b5132 2783elf32_arm_gc_sweep_hook (abfd, info, sec, relocs)
5f771d47
ILT
2784 bfd *abfd ATTRIBUTE_UNUSED;
2785 struct bfd_link_info *info ATTRIBUTE_UNUSED;
2786 asection *sec ATTRIBUTE_UNUSED;
2787 const Elf_Internal_Rela *relocs ATTRIBUTE_UNUSED;
252b5132 2788{
5e681ec4
PB
2789 Elf_Internal_Shdr *symtab_hdr;
2790 struct elf_link_hash_entry **sym_hashes;
2791 bfd_signed_vma *local_got_refcounts;
2792 const Elf_Internal_Rela *rel, *relend;
2793 unsigned long r_symndx;
2794 struct elf_link_hash_entry *h;
2795
2796 elf_section_data (sec)->local_dynrel = NULL;
2797
2798 symtab_hdr = &elf_tdata (abfd)->symtab_hdr;
2799 sym_hashes = elf_sym_hashes (abfd);
2800 local_got_refcounts = elf_local_got_refcounts (abfd);
2801
2802 relend = relocs + sec->reloc_count;
2803 for (rel = relocs; rel < relend; rel++)
2804 switch (ELF32_R_TYPE (rel->r_info))
2805 {
2806 case R_ARM_GOT32:
2807 r_symndx = ELF32_R_SYM (rel->r_info);
2808 if (r_symndx >= symtab_hdr->sh_info)
2809 {
2810 h = sym_hashes[r_symndx - symtab_hdr->sh_info];
2811 if (h->got.refcount > 0)
2812 h->got.refcount -= 1;
2813 }
2814 else if (local_got_refcounts != NULL)
2815 {
2816 if (local_got_refcounts[r_symndx] > 0)
2817 local_got_refcounts[r_symndx] -= 1;
2818 }
2819 break;
2820
2821 case R_ARM_ABS32:
2822 case R_ARM_REL32:
2823 case R_ARM_PC24:
7359ea65 2824 case R_ARM_PLT32:
5e681ec4
PB
2825 r_symndx = ELF32_R_SYM (rel->r_info);
2826 if (r_symndx >= symtab_hdr->sh_info)
2827 {
2828 struct elf32_arm_link_hash_entry *eh;
2829 struct elf32_arm_relocs_copied **pp;
2830 struct elf32_arm_relocs_copied *p;
2831
2832 h = sym_hashes[r_symndx - symtab_hdr->sh_info];
2833
7359ea65 2834 if (h->plt.refcount > 0)
5e681ec4
PB
2835 h->plt.refcount -= 1;
2836
7359ea65
DJ
2837 if (ELF32_R_TYPE (rel->r_info) == R_ARM_ABS32
2838 || ELF32_R_TYPE (rel->r_info) == R_ARM_REL32)
2839 {
2840 eh = (struct elf32_arm_link_hash_entry *) h;
5e681ec4 2841
7359ea65
DJ
2842 for (pp = &eh->relocs_copied; (p = *pp) != NULL;
2843 pp = &p->next)
2844 if (p->section == sec)
2845 {
2846 p->count -= 1;
2847 if (p->count == 0)
2848 *pp = p->next;
2849 break;
2850 }
2851 }
5e681ec4
PB
2852 }
2853 break;
2854
2855 default:
2856 break;
2857 }
2858
b34976b6 2859 return TRUE;
252b5132
RH
2860}
2861
780a67af
NC
2862/* Look through the relocs for a section during the first phase. */
2863
b34976b6 2864static bfd_boolean
252b5132 2865elf32_arm_check_relocs (abfd, info, sec, relocs)
b34976b6
AM
2866 bfd *abfd;
2867 struct bfd_link_info *info;
2868 asection *sec;
2869 const Elf_Internal_Rela *relocs;
252b5132 2870{
b34976b6
AM
2871 Elf_Internal_Shdr *symtab_hdr;
2872 struct elf_link_hash_entry **sym_hashes;
2873 struct elf_link_hash_entry **sym_hashes_end;
2874 const Elf_Internal_Rela *rel;
2875 const Elf_Internal_Rela *rel_end;
2876 bfd *dynobj;
5e681ec4 2877 asection *sreloc;
b34976b6 2878 bfd_vma *local_got_offsets;
5e681ec4 2879 struct elf32_arm_link_hash_table *htab;
9a5aca8c 2880
1049f94e 2881 if (info->relocatable)
b34976b6 2882 return TRUE;
9a5aca8c 2883
5e681ec4
PB
2884 htab = elf32_arm_hash_table (info);
2885 sreloc = NULL;
9a5aca8c 2886
252b5132
RH
2887 dynobj = elf_hash_table (info)->dynobj;
2888 local_got_offsets = elf_local_got_offsets (abfd);
f21f3fe0 2889
252b5132
RH
2890 symtab_hdr = &elf_tdata (abfd)->symtab_hdr;
2891 sym_hashes = elf_sym_hashes (abfd);
9b485d32
NC
2892 sym_hashes_end = sym_hashes
2893 + symtab_hdr->sh_size / sizeof (Elf32_External_Sym);
2894
252b5132
RH
2895 if (!elf_bad_symtab (abfd))
2896 sym_hashes_end -= symtab_hdr->sh_info;
9b485d32 2897
252b5132
RH
2898 rel_end = relocs + sec->reloc_count;
2899 for (rel = relocs; rel < rel_end; rel++)
2900 {
2901 struct elf_link_hash_entry *h;
2902 unsigned long r_symndx;
9a5aca8c 2903
252b5132
RH
2904 r_symndx = ELF32_R_SYM (rel->r_info);
2905 if (r_symndx < symtab_hdr->sh_info)
2906 h = NULL;
2907 else
2908 h = sym_hashes[r_symndx - symtab_hdr->sh_info];
9a5aca8c 2909
252b5132
RH
2910 switch (ELF32_R_TYPE (rel->r_info))
2911 {
5e681ec4
PB
2912 case R_ARM_GOT32:
2913 /* This symbol requires a global offset table entry. */
252b5132
RH
2914 if (h != NULL)
2915 {
5e681ec4 2916 h->got.refcount++;
252b5132
RH
2917 }
2918 else
2919 {
5e681ec4
PB
2920 bfd_signed_vma *local_got_refcounts;
2921
2922 /* This is a global offset table entry for a local symbol. */
2923 local_got_refcounts = elf_local_got_refcounts (abfd);
2924 if (local_got_refcounts == NULL)
252b5132 2925 {
dc810e39 2926 bfd_size_type size;
252b5132 2927
dc810e39 2928 size = symtab_hdr->sh_info;
5e681ec4
PB
2929 size *= (sizeof (bfd_signed_vma) + sizeof(char));
2930 local_got_refcounts = ((bfd_signed_vma *)
2931 bfd_zalloc (abfd, size));
2932 if (local_got_refcounts == NULL)
b34976b6 2933 return FALSE;
5e681ec4 2934 elf_local_got_refcounts (abfd) = local_got_refcounts;
252b5132 2935 }
5e681ec4 2936 local_got_refcounts[r_symndx] += 1;
252b5132 2937 }
252b5132
RH
2938 break;
2939
5e681ec4
PB
2940 case R_ARM_GOTOFF:
2941 case R_ARM_GOTPC:
2942 if (htab->sgot == NULL)
2943 {
2944 if (htab->root.dynobj == NULL)
2945 htab->root.dynobj = abfd;
2946 if (!create_got_section (htab->root.dynobj, info))
2947 return FALSE;
2948 }
252b5132
RH
2949 break;
2950
2951 case R_ARM_ABS32:
2952 case R_ARM_REL32:
2953 case R_ARM_PC24:
7359ea65
DJ
2954 case R_ARM_PLT32:
2955 if (h != NULL)
5e681ec4
PB
2956 {
2957 /* If this reloc is in a read-only section, we might
2958 need a copy reloc. We can't check reliably at this
2959 stage whether the section is read-only, as input
2960 sections have not yet been mapped to output sections.
2961 Tentatively set the flag for now, and correct in
2962 adjust_dynamic_symbol. */
7359ea65
DJ
2963 if (!info->shared)
2964 h->elf_link_hash_flags |= ELF_LINK_NON_GOT_REF;
2965
5e681ec4 2966 /* We may need a .plt entry if the function this reloc
c84cd8ee
DJ
2967 refers to is in a different object. We can't tell for
2968 sure yet, because something later might force the
2969 symbol local. */
7359ea65
DJ
2970 if (ELF32_R_TYPE (rel->r_info) == R_ARM_PC24
2971 || ELF32_R_TYPE (rel->r_info) == R_ARM_PLT32)
4f199be3
DJ
2972 h->elf_link_hash_flags |= ELF_LINK_HASH_NEEDS_PLT;
2973
2974 /* If we create a PLT entry, this relocation will reference
2975 it, even if it's an ABS32 relocation. */
2976 h->plt.refcount += 1;
5e681ec4
PB
2977 }
2978
252b5132
RH
2979 /* If we are creating a shared library, and this is a reloc
2980 against a global symbol, or a non PC relative reloc
2981 against a local symbol, then we need to copy the reloc
2982 into the shared library. However, if we are linking with
2983 -Bsymbolic, we do not need to copy a reloc against a
2984 global symbol which is defined in an object we are
2985 including in the link (i.e., DEF_REGULAR is set). At
2986 this point we have not seen all the input files, so it is
2987 possible that DEF_REGULAR is not set now but will be set
2988 later (it is never cleared). We account for that
2989 possibility below by storing information in the
5e681ec4 2990 relocs_copied field of the hash table entry. */
252b5132 2991 if (info->shared
5e681ec4 2992 && (sec->flags & SEC_ALLOC) != 0
7359ea65
DJ
2993 && ((ELF32_R_TYPE (rel->r_info) != R_ARM_PC24
2994 && ELF32_R_TYPE (rel->r_info) != R_ARM_PLT32)
5e681ec4
PB
2995 || (h != NULL
2996 && (! info->symbolic
2997 || (h->elf_link_hash_flags
2998 & ELF_LINK_HASH_DEF_REGULAR) == 0))))
252b5132 2999 {
5e681ec4
PB
3000 struct elf32_arm_relocs_copied *p, **head;
3001
252b5132
RH
3002 /* When creating a shared object, we must copy these
3003 reloc types into the output file. We create a reloc
3004 section in dynobj and make room for this reloc. */
3005 if (sreloc == NULL)
3006 {
3007 const char * name;
3008
3009 name = (bfd_elf_string_from_elf_section
3010 (abfd,
3011 elf_elfheader (abfd)->e_shstrndx,
3012 elf_section_data (sec)->rel_hdr.sh_name));
3013 if (name == NULL)
b34976b6 3014 return FALSE;
252b5132
RH
3015
3016 BFD_ASSERT (strncmp (name, ".rel", 4) == 0
99e4ae17 3017 && strcmp (bfd_get_section_name (abfd, sec),
252b5132
RH
3018 name + 4) == 0);
3019
3020 sreloc = bfd_get_section_by_name (dynobj, name);
3021 if (sreloc == NULL)
3022 {
3023 flagword flags;
3024
3025 sreloc = bfd_make_section (dynobj, name);
3026 flags = (SEC_HAS_CONTENTS | SEC_READONLY
3027 | SEC_IN_MEMORY | SEC_LINKER_CREATED);
3028 if ((sec->flags & SEC_ALLOC) != 0)
3029 flags |= SEC_ALLOC | SEC_LOAD;
3030 if (sreloc == NULL
3031 || ! bfd_set_section_flags (dynobj, sreloc, flags)
3032 || ! bfd_set_section_alignment (dynobj, sreloc, 2))
b34976b6 3033 return FALSE;
252b5132 3034 }
5e681ec4
PB
3035
3036 elf_section_data (sec)->sreloc = sreloc;
252b5132
RH
3037 }
3038
5e681ec4
PB
3039 /* If this is a global symbol, we count the number of
3040 relocations we need for this symbol. */
3041 if (h != NULL)
252b5132 3042 {
5e681ec4
PB
3043 head = &((struct elf32_arm_link_hash_entry *) h)->relocs_copied;
3044 }
3045 else
3046 {
3047 /* Track dynamic relocs needed for local syms too.
3048 We really need local syms available to do this
3049 easily. Oh well. */
3050
3051 asection *s;
3052 s = bfd_section_from_r_symndx (abfd, &htab->sym_sec,
3053 sec, r_symndx);
3054 if (s == NULL)
3055 return FALSE;
3056
3057 head = ((struct elf32_arm_relocs_copied **)
3058 &elf_section_data (s)->local_dynrel);
3059 }
3060
3061 p = *head;
3062 if (p == NULL || p->section != sec)
3063 {
3064 bfd_size_type amt = sizeof *p;
3065 p = bfd_alloc (htab->root.dynobj, amt);
252b5132 3066 if (p == NULL)
5e681ec4
PB
3067 return FALSE;
3068 p->next = *head;
3069 *head = p;
3070 p->section = sec;
3071 p->count = 0;
252b5132 3072 }
5e681ec4 3073
7359ea65
DJ
3074 if (ELF32_R_TYPE (rel->r_info) == R_ARM_ABS32
3075 || ELF32_R_TYPE (rel->r_info) == R_ARM_REL32)
3076 p->count += 1;
252b5132
RH
3077 }
3078 break;
3079
3080 /* This relocation describes the C++ object vtable hierarchy.
3081 Reconstruct it for later use during GC. */
3082 case R_ARM_GNU_VTINHERIT:
3083 if (!_bfd_elf32_gc_record_vtinherit (abfd, sec, h, rel->r_offset))
b34976b6 3084 return FALSE;
252b5132 3085 break;
9a5aca8c 3086
252b5132
RH
3087 /* This relocation describes which C++ vtable entries are actually
3088 used. Record for later use during GC. */
3089 case R_ARM_GNU_VTENTRY:
d512aa07 3090 if (!_bfd_elf32_gc_record_vtentry (abfd, sec, h, rel->r_offset))
b34976b6 3091 return FALSE;
252b5132
RH
3092 break;
3093 }
3094 }
f21f3fe0 3095
b34976b6 3096 return TRUE;
252b5132
RH
3097}
3098
252b5132
RH
3099/* Find the nearest line to a particular section and offset, for error
3100 reporting. This code is a duplicate of the code in elf.c, except
9b485d32 3101 that it also accepts STT_ARM_TFUNC as a symbol that names a function. */
252b5132 3102
b34976b6 3103static bfd_boolean
252b5132
RH
3104elf32_arm_find_nearest_line
3105 (abfd, section, symbols, offset, filename_ptr, functionname_ptr, line_ptr)
b34976b6
AM
3106 bfd *abfd;
3107 asection *section;
3108 asymbol **symbols;
3109 bfd_vma offset;
3110 const char **filename_ptr;
3111 const char **functionname_ptr;
3112 unsigned int *line_ptr;
252b5132 3113{
b34976b6
AM
3114 bfd_boolean found;
3115 const char *filename;
3116 asymbol *func;
3117 bfd_vma low_func;
3118 asymbol **p;
252b5132
RH
3119
3120 if (_bfd_dwarf2_find_nearest_line (abfd, section, symbols, offset,
f21f3fe0 3121 filename_ptr, functionname_ptr,
857ec808
NC
3122 line_ptr, 0,
3123 &elf_tdata (abfd)->dwarf2_find_line_info))
b34976b6 3124 return TRUE;
252b5132
RH
3125
3126 if (! _bfd_stab_section_find_nearest_line (abfd, symbols, section, offset,
3127 &found, filename_ptr,
3128 functionname_ptr, line_ptr,
3129 &elf_tdata (abfd)->line_info))
b34976b6 3130 return FALSE;
f21f3fe0 3131
252b5132 3132 if (found)
b34976b6 3133 return TRUE;
252b5132
RH
3134
3135 if (symbols == NULL)
b34976b6 3136 return FALSE;
252b5132
RH
3137
3138 filename = NULL;
3139 func = NULL;
3140 low_func = 0;
3141
3142 for (p = symbols; *p != NULL; p++)
3143 {
3144 elf_symbol_type *q;
3145
3146 q = (elf_symbol_type *) *p;
3147
3148 if (bfd_get_section (&q->symbol) != section)
3149 continue;
3150
3151 switch (ELF_ST_TYPE (q->internal_elf_sym.st_info))
3152 {
3153 default:
3154 break;
3155 case STT_FILE:
3156 filename = bfd_asymbol_name (&q->symbol);
3157 break;
3158 case STT_NOTYPE:
3159 case STT_FUNC:
3160 case STT_ARM_TFUNC:
3161 if (q->symbol.section == section
3162 && q->symbol.value >= low_func
3163 && q->symbol.value <= offset)
3164 {
3165 func = (asymbol *) q;
3166 low_func = q->symbol.value;
3167 }
3168 break;
3169 }
3170 }
3171
3172 if (func == NULL)
b34976b6 3173 return FALSE;
252b5132
RH
3174
3175 *filename_ptr = filename;
3176 *functionname_ptr = bfd_asymbol_name (func);
3177 *line_ptr = 0;
f21f3fe0 3178
b34976b6 3179 return TRUE;
252b5132
RH
3180}
3181
3182/* Adjust a symbol defined by a dynamic object and referenced by a
3183 regular object. The current definition is in some section of the
3184 dynamic object, but we're not including those sections. We have to
3185 change the definition to something the rest of the link can
3186 understand. */
3187
b34976b6 3188static bfd_boolean
252b5132
RH
3189elf32_arm_adjust_dynamic_symbol (info, h)
3190 struct bfd_link_info * info;
3191 struct elf_link_hash_entry * h;
3192{
3193 bfd * dynobj;
3194 asection * s;
3195 unsigned int power_of_two;
3196
3197 dynobj = elf_hash_table (info)->dynobj;
3198
3199 /* Make sure we know what is going on here. */
3200 BFD_ASSERT (dynobj != NULL
3201 && ((h->elf_link_hash_flags & ELF_LINK_HASH_NEEDS_PLT)
3202 || h->weakdef != NULL
3203 || ((h->elf_link_hash_flags
3204 & ELF_LINK_HASH_DEF_DYNAMIC) != 0
3205 && (h->elf_link_hash_flags
3206 & ELF_LINK_HASH_REF_REGULAR) != 0
3207 && (h->elf_link_hash_flags
3208 & ELF_LINK_HASH_DEF_REGULAR) == 0)));
3209
3210 /* If this is a function, put it in the procedure linkage table. We
3211 will fill in the contents of the procedure linkage table later,
3212 when we know the address of the .got section. */
24a1ba0f 3213 if (h->type == STT_FUNC
252b5132
RH
3214 || (h->elf_link_hash_flags & ELF_LINK_HASH_NEEDS_PLT) != 0)
3215 {
5e681ec4
PB
3216 if (h->plt.refcount <= 0
3217 || SYMBOL_CALLS_LOCAL (info, h)
3218 || (ELF_ST_VISIBILITY (h->other) != STV_DEFAULT
3219 && h->root.type == bfd_link_hash_undefweak))
252b5132
RH
3220 {
3221 /* This case can occur if we saw a PLT32 reloc in an input
5e681ec4
PB
3222 file, but the symbol was never referred to by a dynamic
3223 object, or if all references were garbage collected. In
3224 such a case, we don't actually need to build a procedure
3225 linkage table, and we can just do a PC24 reloc instead. */
3226 h->plt.offset = (bfd_vma) -1;
9d7404b7 3227 h->elf_link_hash_flags &= ~ELF_LINK_HASH_NEEDS_PLT;
252b5132
RH
3228 }
3229
b34976b6 3230 return TRUE;
252b5132 3231 }
5e681ec4
PB
3232 else
3233 /* It's possible that we incorrectly decided a .plt reloc was
3234 needed for an R_ARM_PC24 reloc to a non-function sym in
3235 check_relocs. We can't decide accurately between function and
3236 non-function syms in check-relocs; Objects loaded later in
3237 the link may change h->type. So fix it now. */
3238 h->plt.offset = (bfd_vma) -1;
252b5132
RH
3239
3240 /* If this is a weak symbol, and there is a real definition, the
3241 processor independent code will have arranged for us to see the
3242 real definition first, and we can just use the same value. */
3243 if (h->weakdef != NULL)
3244 {
3245 BFD_ASSERT (h->weakdef->root.type == bfd_link_hash_defined
3246 || h->weakdef->root.type == bfd_link_hash_defweak);
3247 h->root.u.def.section = h->weakdef->root.u.def.section;
3248 h->root.u.def.value = h->weakdef->root.u.def.value;
b34976b6 3249 return TRUE;
252b5132
RH
3250 }
3251
3252 /* This is a reference to a symbol defined by a dynamic object which
3253 is not a function. */
3254
3255 /* If we are creating a shared library, we must presume that the
3256 only references to the symbol are via the global offset table.
3257 For such cases we need not do anything here; the relocations will
3258 be handled correctly by relocate_section. */
3259 if (info->shared)
b34976b6 3260 return TRUE;
252b5132
RH
3261
3262 /* We must allocate the symbol in our .dynbss section, which will
3263 become part of the .bss section of the executable. There will be
3264 an entry for this symbol in the .dynsym section. The dynamic
3265 object will contain position independent code, so all references
3266 from the dynamic object to this symbol will go through the global
3267 offset table. The dynamic linker will use the .dynsym entry to
3268 determine the address it must put in the global offset table, so
3269 both the dynamic object and the regular object will refer to the
3270 same memory location for the variable. */
252b5132
RH
3271 s = bfd_get_section_by_name (dynobj, ".dynbss");
3272 BFD_ASSERT (s != NULL);
3273
3274 /* We must generate a R_ARM_COPY reloc to tell the dynamic linker to
3275 copy the initial value out of the dynamic object and into the
3276 runtime process image. We need to remember the offset into the
3277 .rel.bss section we are going to use. */
3278 if ((h->root.u.def.section->flags & SEC_ALLOC) != 0)
3279 {
3280 asection *srel;
3281
3282 srel = bfd_get_section_by_name (dynobj, ".rel.bss");
3283 BFD_ASSERT (srel != NULL);
3284 srel->_raw_size += sizeof (Elf32_External_Rel);
3285 h->elf_link_hash_flags |= ELF_LINK_HASH_NEEDS_COPY;
3286 }
3287
3288 /* We need to figure out the alignment required for this symbol. I
3289 have no idea how ELF linkers handle this. */
3290 power_of_two = bfd_log2 (h->size);
3291 if (power_of_two > 3)
3292 power_of_two = 3;
3293
3294 /* Apply the required alignment. */
3295 s->_raw_size = BFD_ALIGN (s->_raw_size,
3296 (bfd_size_type) (1 << power_of_two));
3297 if (power_of_two > bfd_get_section_alignment (dynobj, s))
3298 {
3299 if (! bfd_set_section_alignment (dynobj, s, power_of_two))
b34976b6 3300 return FALSE;
252b5132
RH
3301 }
3302
3303 /* Define the symbol as being at this point in the section. */
3304 h->root.u.def.section = s;
3305 h->root.u.def.value = s->_raw_size;
3306
3307 /* Increment the section size to make room for the symbol. */
3308 s->_raw_size += h->size;
3309
b34976b6 3310 return TRUE;
252b5132
RH
3311}
3312
5e681ec4
PB
3313/* Allocate space in .plt, .got and associated reloc sections for
3314 dynamic relocs. */
3315
3316static bfd_boolean
3317allocate_dynrelocs (h, inf)
3318 struct elf_link_hash_entry *h;
3319 PTR inf;
3320{
3321 struct bfd_link_info *info;
3322 struct elf32_arm_link_hash_table *htab;
3323 struct elf32_arm_link_hash_entry *eh;
3324 struct elf32_arm_relocs_copied *p;
3325
3326 if (h->root.type == bfd_link_hash_indirect)
3327 return TRUE;
3328
3329 if (h->root.type == bfd_link_hash_warning)
3330 /* When warning symbols are created, they **replace** the "real"
3331 entry in the hash table, thus we never get to see the real
3332 symbol in a hash traversal. So look at it now. */
3333 h = (struct elf_link_hash_entry *) h->root.u.i.link;
3334
3335 info = (struct bfd_link_info *) inf;
3336 htab = elf32_arm_hash_table (info);
3337
3338 if (htab->root.dynamic_sections_created
3339 && h->plt.refcount > 0)
3340 {
3341 /* Make sure this symbol is output as a dynamic symbol.
3342 Undefined weak syms won't yet be marked as dynamic. */
3343 if (h->dynindx == -1
3344 && (h->elf_link_hash_flags & ELF_LINK_FORCED_LOCAL) == 0)
3345 {
3346 if (! bfd_elf32_link_record_dynamic_symbol (info, h))
3347 return FALSE;
3348 }
3349
3350 if (info->shared
7359ea65 3351 || WILL_CALL_FINISH_DYNAMIC_SYMBOL (1, 0, h))
5e681ec4
PB
3352 {
3353 asection *s = htab->splt;
3354
3355 /* If this is the first .plt entry, make room for the special
3356 first entry. */
3357 if (s->_raw_size == 0)
3358 s->_raw_size += PLT_HEADER_SIZE;
3359
3360 h->plt.offset = s->_raw_size;
3361
3362 /* If this symbol is not defined in a regular file, and we are
3363 not generating a shared library, then set the symbol to this
3364 location in the .plt. This is required to make function
3365 pointers compare as equal between the normal executable and
3366 the shared library. */
3367 if (! info->shared
3368 && (h->elf_link_hash_flags & ELF_LINK_HASH_DEF_REGULAR) == 0)
3369 {
3370 h->root.u.def.section = s;
3371 h->root.u.def.value = h->plt.offset;
3372 }
3373
3374 /* Make room for this entry. */
3375 s->_raw_size += PLT_ENTRY_SIZE;
3376
3377 /* We also need to make an entry in the .got.plt section, which
3378 will be placed in the .got section by the linker script. */
3379 htab->sgotplt->_raw_size += 4;
3380
3381 /* We also need to make an entry in the .rel.plt section. */
3382 htab->srelplt->_raw_size += sizeof (Elf32_External_Rel);
3383 }
3384 else
3385 {
3386 h->plt.offset = (bfd_vma) -1;
3387 h->elf_link_hash_flags &= ~ELF_LINK_HASH_NEEDS_PLT;
3388 }
3389 }
3390 else
3391 {
3392 h->plt.offset = (bfd_vma) -1;
3393 h->elf_link_hash_flags &= ~ELF_LINK_HASH_NEEDS_PLT;
3394 }
3395
3396 if (h->got.refcount > 0)
3397 {
3398 asection *s;
3399 bfd_boolean dyn;
3400
3401 /* Make sure this symbol is output as a dynamic symbol.
3402 Undefined weak syms won't yet be marked as dynamic. */
3403 if (h->dynindx == -1
3404 && (h->elf_link_hash_flags & ELF_LINK_FORCED_LOCAL) == 0)
3405 {
3406 if (! bfd_elf32_link_record_dynamic_symbol (info, h))
3407 return FALSE;
3408 }
3409
3410 s = htab->sgot;
3411 h->got.offset = s->_raw_size;
3412 s->_raw_size += 4;
3413 dyn = htab->root.dynamic_sections_created;
3414 if ((ELF_ST_VISIBILITY (h->other) == STV_DEFAULT
3415 || h->root.type != bfd_link_hash_undefweak)
3416 && (info->shared
3417 || WILL_CALL_FINISH_DYNAMIC_SYMBOL (dyn, 0, h)))
3418 htab->srelgot->_raw_size += sizeof (Elf32_External_Rel);
3419 }
3420 else
3421 h->got.offset = (bfd_vma) -1;
3422
3423 eh = (struct elf32_arm_link_hash_entry *) h;
3424 if (eh->relocs_copied == NULL)
3425 return TRUE;
3426
3427 /* In the shared -Bsymbolic case, discard space allocated for
3428 dynamic pc-relative relocs against symbols which turn out to be
3429 defined in regular objects. For the normal shared case, discard
3430 space for pc-relative relocs that have become local due to symbol
3431 visibility changes. */
3432
3433 if (info->shared)
3434 {
7359ea65
DJ
3435 /* Discard relocs on undefined weak syms with non-default
3436 visibility. */
5e681ec4
PB
3437 if (ELF_ST_VISIBILITY (h->other) != STV_DEFAULT
3438 && h->root.type == bfd_link_hash_undefweak)
3439 eh->relocs_copied = NULL;
3440 }
3441 else
3442 {
3443 /* For the non-shared case, discard space for relocs against
3444 symbols which turn out to need copy relocs or are not
3445 dynamic. */
3446
3447 if ((h->elf_link_hash_flags & ELF_LINK_NON_GOT_REF) == 0
3448 && (((h->elf_link_hash_flags & ELF_LINK_HASH_DEF_DYNAMIC) != 0
3449 && (h->elf_link_hash_flags & ELF_LINK_HASH_DEF_REGULAR) == 0)
3450 || (htab->root.dynamic_sections_created
3451 && (h->root.type == bfd_link_hash_undefweak
3452 || h->root.type == bfd_link_hash_undefined))))
3453 {
3454 /* Make sure this symbol is output as a dynamic symbol.
3455 Undefined weak syms won't yet be marked as dynamic. */
3456 if (h->dynindx == -1
3457 && (h->elf_link_hash_flags & ELF_LINK_FORCED_LOCAL) == 0)
3458 {
3459 if (! bfd_elf32_link_record_dynamic_symbol (info, h))
3460 return FALSE;
3461 }
3462
3463 /* If that succeeded, we know we'll be keeping all the
3464 relocs. */
3465 if (h->dynindx != -1)
3466 goto keep;
3467 }
3468
3469 eh->relocs_copied = NULL;
3470
3471 keep: ;
3472 }
3473
3474 /* Finally, allocate space. */
3475 for (p = eh->relocs_copied; p != NULL; p = p->next)
3476 {
3477 asection *sreloc = elf_section_data (p->section)->sreloc;
3478 sreloc->_raw_size += p->count * sizeof (Elf32_External_Rel);
3479 }
3480
3481 return TRUE;
3482}
3483
252b5132
RH
3484/* Set the sizes of the dynamic sections. */
3485
b34976b6 3486static bfd_boolean
252b5132 3487elf32_arm_size_dynamic_sections (output_bfd, info)
99e4ae17 3488 bfd * output_bfd ATTRIBUTE_UNUSED;
252b5132
RH
3489 struct bfd_link_info * info;
3490{
3491 bfd * dynobj;
3492 asection * s;
b34976b6
AM
3493 bfd_boolean plt;
3494 bfd_boolean relocs;
5e681ec4
PB
3495 bfd *ibfd;
3496 struct elf32_arm_link_hash_table *htab;
252b5132 3497
5e681ec4 3498 htab = elf32_arm_hash_table (info);
252b5132
RH
3499 dynobj = elf_hash_table (info)->dynobj;
3500 BFD_ASSERT (dynobj != NULL);
3501
3502 if (elf_hash_table (info)->dynamic_sections_created)
3503 {
3504 /* Set the contents of the .interp section to the interpreter. */
893c4fe2 3505 if (info->executable)
252b5132
RH
3506 {
3507 s = bfd_get_section_by_name (dynobj, ".interp");
3508 BFD_ASSERT (s != NULL);
3509 s->_raw_size = sizeof ELF_DYNAMIC_INTERPRETER;
3510 s->contents = (unsigned char *) ELF_DYNAMIC_INTERPRETER;
3511 }
3512 }
5e681ec4
PB
3513
3514 /* Set up .got offsets for local syms, and space for local dynamic
3515 relocs. */
3516 for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link_next)
252b5132 3517 {
5e681ec4
PB
3518 bfd_signed_vma *local_got;
3519 bfd_signed_vma *end_local_got;
3520 char *local_tls_type;
3521 bfd_size_type locsymcount;
3522 Elf_Internal_Shdr *symtab_hdr;
3523 asection *srel;
3524
3525 if (bfd_get_flavour (ibfd) != bfd_target_elf_flavour)
3526 continue;
3527
3528 for (s = ibfd->sections; s != NULL; s = s->next)
3529 {
3530 struct elf32_arm_relocs_copied *p;
3531
3532 for (p = *((struct elf32_arm_relocs_copied **)
3533 &elf_section_data (s)->local_dynrel);
3534 p != NULL;
3535 p = p->next)
3536 {
3537 if (!bfd_is_abs_section (p->section)
3538 && bfd_is_abs_section (p->section->output_section))
3539 {
3540 /* Input section has been discarded, either because
3541 it is a copy of a linkonce section or due to
3542 linker script /DISCARD/, so we'll be discarding
3543 the relocs too. */
3544 }
3545 else if (p->count != 0)
3546 {
3547 srel = elf_section_data (p->section)->sreloc;
3548 srel->_raw_size += p->count * sizeof (Elf32_External_Rel);
3549 if ((p->section->output_section->flags & SEC_READONLY) != 0)
3550 info->flags |= DF_TEXTREL;
3551 }
3552 }
3553 }
3554
3555 local_got = elf_local_got_refcounts (ibfd);
3556 if (!local_got)
3557 continue;
3558
3559 symtab_hdr = &elf_tdata (ibfd)->symtab_hdr;
3560 locsymcount = symtab_hdr->sh_info;
3561 end_local_got = local_got + locsymcount;
3562 s = htab->sgot;
3563 srel = htab->srelgot;
3564 for (; local_got < end_local_got; ++local_got, ++local_tls_type)
3565 {
3566 if (*local_got > 0)
3567 {
3568 *local_got = s->_raw_size;
3569 s->_raw_size += 4;
3570 if (info->shared)
3571 srel->_raw_size += sizeof (Elf32_External_Rel);
3572 }
3573 else
3574 *local_got = (bfd_vma) -1;
3575 }
252b5132
RH
3576 }
3577
5e681ec4
PB
3578 /* Allocate global sym .plt and .got entries, and space for global
3579 sym dynamic relocs. */
3580 elf_link_hash_traverse (&htab->root, allocate_dynrelocs, (PTR) info);
252b5132
RH
3581
3582 /* The check_relocs and adjust_dynamic_symbol entry points have
3583 determined the sizes of the various dynamic sections. Allocate
3584 memory for them. */
b34976b6
AM
3585 plt = FALSE;
3586 relocs = FALSE;
252b5132
RH
3587 for (s = dynobj->sections; s != NULL; s = s->next)
3588 {
3589 const char * name;
b34976b6 3590 bfd_boolean strip;
252b5132
RH
3591
3592 if ((s->flags & SEC_LINKER_CREATED) == 0)
3593 continue;
3594
3595 /* It's OK to base decisions on the section name, because none
3596 of the dynobj section names depend upon the input files. */
3597 name = bfd_get_section_name (dynobj, s);
3598
b34976b6 3599 strip = FALSE;
252b5132 3600
24a1ba0f 3601 if (strcmp (name, ".plt") == 0)
252b5132
RH
3602 {
3603 if (s->_raw_size == 0)
3604 {
3605 /* Strip this section if we don't need it; see the
3606 comment below. */
b34976b6 3607 strip = TRUE;
252b5132
RH
3608 }
3609 else
3610 {
3611 /* Remember whether there is a PLT. */
b34976b6 3612 plt = TRUE;
252b5132
RH
3613 }
3614 }
3615 else if (strncmp (name, ".rel", 4) == 0)
3616 {
3617 if (s->_raw_size == 0)
3618 {
3619 /* If we don't need this section, strip it from the
3620 output file. This is mostly to handle .rel.bss and
3621 .rel.plt. We must create both sections in
3622 create_dynamic_sections, because they must be created
3623 before the linker maps input sections to output
3624 sections. The linker does that before
3625 adjust_dynamic_symbol is called, and it is that
3626 function which decides whether anything needs to go
3627 into these sections. */
b34976b6 3628 strip = TRUE;
252b5132
RH
3629 }
3630 else
3631 {
252b5132
RH
3632 /* Remember whether there are any reloc sections other
3633 than .rel.plt. */
3634 if (strcmp (name, ".rel.plt") != 0)
b34976b6 3635 relocs = TRUE;
252b5132
RH
3636
3637 /* We use the reloc_count field as a counter if we need
3638 to copy relocs into the output file. */
3639 s->reloc_count = 0;
3640 }
3641 }
3642 else if (strncmp (name, ".got", 4) != 0)
3643 {
3644 /* It's not one of our sections, so don't allocate space. */
3645 continue;
3646 }
3647
3648 if (strip)
3649 {
52585bb8 3650 _bfd_strip_section_from_output (info, s);
252b5132
RH
3651 continue;
3652 }
3653
3654 /* Allocate memory for the section contents. */
3655 s->contents = (bfd_byte *) bfd_zalloc (dynobj, s->_raw_size);
3656 if (s->contents == NULL && s->_raw_size != 0)
b34976b6 3657 return FALSE;
252b5132
RH
3658 }
3659
3660 if (elf_hash_table (info)->dynamic_sections_created)
3661 {
3662 /* Add some entries to the .dynamic section. We fill in the
3663 values later, in elf32_arm_finish_dynamic_sections, but we
3664 must add the entries now so that we get the correct size for
3665 the .dynamic section. The DT_DEBUG entry is filled in by the
3666 dynamic linker and used by the debugger. */
dc810e39
AM
3667#define add_dynamic_entry(TAG, VAL) \
3668 bfd_elf32_add_dynamic_entry (info, (bfd_vma) (TAG), (bfd_vma) (VAL))
3669
3670 if (!info->shared)
252b5132 3671 {
dc810e39 3672 if (!add_dynamic_entry (DT_DEBUG, 0))
b34976b6 3673 return FALSE;
252b5132
RH
3674 }
3675
3676 if (plt)
3677 {
dc810e39
AM
3678 if ( !add_dynamic_entry (DT_PLTGOT, 0)
3679 || !add_dynamic_entry (DT_PLTRELSZ, 0)
3680 || !add_dynamic_entry (DT_PLTREL, DT_REL)
3681 || !add_dynamic_entry (DT_JMPREL, 0))
b34976b6 3682 return FALSE;
252b5132
RH
3683 }
3684
3685 if (relocs)
3686 {
dc810e39
AM
3687 if ( !add_dynamic_entry (DT_REL, 0)
3688 || !add_dynamic_entry (DT_RELSZ, 0)
3689 || !add_dynamic_entry (DT_RELENT, sizeof (Elf32_External_Rel)))
b34976b6 3690 return FALSE;
252b5132
RH
3691 }
3692
99e4ae17 3693 if ((info->flags & DF_TEXTREL) != 0)
252b5132 3694 {
dc810e39 3695 if (!add_dynamic_entry (DT_TEXTREL, 0))
b34976b6 3696 return FALSE;
d6cf2879 3697 info->flags |= DF_TEXTREL;
252b5132
RH
3698 }
3699 }
dc810e39 3700#undef add_synamic_entry
252b5132 3701
b34976b6 3702 return TRUE;
252b5132
RH
3703}
3704
252b5132
RH
3705/* Finish up dynamic symbol handling. We set the contents of various
3706 dynamic sections here. */
3707
b34976b6 3708static bfd_boolean
252b5132
RH
3709elf32_arm_finish_dynamic_symbol (output_bfd, info, h, sym)
3710 bfd * output_bfd;
3711 struct bfd_link_info * info;
3712 struct elf_link_hash_entry * h;
3713 Elf_Internal_Sym * sym;
3714{
3715 bfd * dynobj;
3716
3717 dynobj = elf_hash_table (info)->dynobj;
3718
3719 if (h->plt.offset != (bfd_vma) -1)
3720 {
3721 asection * splt;
3722 asection * sgot;
3723 asection * srel;
24a1ba0f
NC
3724 bfd_vma plt_index;
3725 bfd_vma got_offset;
947216bf
AM
3726 Elf_Internal_Rela rel;
3727 bfd_byte *loc;
5e681ec4 3728 bfd_vma got_displacement;
252b5132
RH
3729
3730 /* This symbol has an entry in the procedure linkage table. Set
3731 it up. */
3732
3733 BFD_ASSERT (h->dynindx != -1);
3734
3735 splt = bfd_get_section_by_name (dynobj, ".plt");
3736 sgot = bfd_get_section_by_name (dynobj, ".got.plt");
3737 srel = bfd_get_section_by_name (dynobj, ".rel.plt");
24a1ba0f 3738 BFD_ASSERT (splt != NULL && sgot != NULL && srel != NULL);
252b5132 3739
24a1ba0f
NC
3740 /* Get the index in the procedure linkage table which
3741 corresponds to this symbol. This is the index of this symbol
3742 in all the symbols for which we are making plt entries. The
3743 first entry in the procedure linkage table is reserved. */
5e681ec4 3744 plt_index = (h->plt.offset - PLT_HEADER_SIZE) / PLT_ENTRY_SIZE;
252b5132 3745
24a1ba0f
NC
3746 /* Get the offset into the .got table of the entry that
3747 corresponds to this function. Each .got entry is 4 bytes.
3748 The first three are reserved. */
3749 got_offset = (plt_index + 3) * 4;
252b5132 3750
5e681ec4
PB
3751 /* Calculate the displacement between the PLT slot and the
3752 entry in the GOT. */
3753 got_displacement = (sgot->output_section->vma
3754 + sgot->output_offset
3755 + got_offset
3756 - splt->output_section->vma
3757 - splt->output_offset
3758 - h->plt.offset
3759 - 8);
3760
3761 BFD_ASSERT ((got_displacement & 0xf0000000) == 0);
3762
252b5132 3763 /* Fill in the entry in the procedure linkage table. */
5e681ec4 3764 bfd_put_32 (output_bfd, elf32_arm_plt_entry[0] | ((got_displacement & 0x0ff00000) >> 20),
24a1ba0f 3765 splt->contents + h->plt.offset + 0);
5e681ec4 3766 bfd_put_32 (output_bfd, elf32_arm_plt_entry[1] | ((got_displacement & 0x000ff000) >> 12),
24a1ba0f 3767 splt->contents + h->plt.offset + 4);
5e681ec4 3768 bfd_put_32 (output_bfd, elf32_arm_plt_entry[2] | (got_displacement & 0x00000fff),
24a1ba0f 3769 splt->contents + h->plt.offset + 8);
5e681ec4
PB
3770#ifdef FOUR_WORD_PLT
3771 bfd_put_32 (output_bfd, elf32_arm_plt_entry[3],
3772 splt->contents + h->plt.offset + 12);
3773#endif
252b5132 3774
24a1ba0f
NC
3775 /* Fill in the entry in the global offset table. */
3776 bfd_put_32 (output_bfd,
3777 (splt->output_section->vma
3778 + splt->output_offset),
3779 sgot->contents + got_offset);
5e681ec4 3780
252b5132
RH
3781 /* Fill in the entry in the .rel.plt section. */
3782 rel.r_offset = (sgot->output_section->vma
3783 + sgot->output_offset
24a1ba0f 3784 + got_offset);
252b5132 3785 rel.r_info = ELF32_R_INFO (h->dynindx, R_ARM_JUMP_SLOT);
947216bf
AM
3786 loc = srel->contents + plt_index * sizeof (Elf32_External_Rel);
3787 bfd_elf32_swap_reloc_out (output_bfd, &rel, loc);
252b5132
RH
3788
3789 if ((h->elf_link_hash_flags & ELF_LINK_HASH_DEF_REGULAR) == 0)
3790 {
3791 /* Mark the symbol as undefined, rather than as defined in
3792 the .plt section. Leave the value alone. */
3793 sym->st_shndx = SHN_UNDEF;
d982ba73
PB
3794 /* If the symbol is weak, we do need to clear the value.
3795 Otherwise, the PLT entry would provide a definition for
3796 the symbol even if the symbol wasn't defined anywhere,
3797 and so the symbol would never be NULL. */
3798 if ((h->elf_link_hash_flags & ELF_LINK_HASH_REF_REGULAR_NONWEAK)
3799 == 0)
3800 sym->st_value = 0;
252b5132
RH
3801 }
3802 }
3803
3804 if (h->got.offset != (bfd_vma) -1)
3805 {
3806 asection * sgot;
3807 asection * srel;
947216bf
AM
3808 Elf_Internal_Rela rel;
3809 bfd_byte *loc;
252b5132
RH
3810
3811 /* This symbol has an entry in the global offset table. Set it
3812 up. */
252b5132
RH
3813 sgot = bfd_get_section_by_name (dynobj, ".got");
3814 srel = bfd_get_section_by_name (dynobj, ".rel.got");
3815 BFD_ASSERT (sgot != NULL && srel != NULL);
3816
3817 rel.r_offset = (sgot->output_section->vma
3818 + sgot->output_offset
dc810e39 3819 + (h->got.offset &~ (bfd_vma) 1));
252b5132 3820
5e681ec4
PB
3821 /* If this is a static link, or it is a -Bsymbolic link and the
3822 symbol is defined locally or was forced to be local because
3823 of a version file, we just want to emit a RELATIVE reloc.
3824 The entry in the global offset table will already have been
3825 initialized in the relocate_section function. */
252b5132 3826 if (info->shared
5e681ec4
PB
3827 && SYMBOL_REFERENCES_LOCAL (info, h))
3828 {
3829 BFD_ASSERT((h->got.offset & 1) != 0);
3830 rel.r_info = ELF32_R_INFO (0, R_ARM_RELATIVE);
3831 }
252b5132
RH
3832 else
3833 {
5e681ec4 3834 BFD_ASSERT((h->got.offset & 1) == 0);
252b5132
RH
3835 bfd_put_32 (output_bfd, (bfd_vma) 0, sgot->contents + h->got.offset);
3836 rel.r_info = ELF32_R_INFO (h->dynindx, R_ARM_GLOB_DAT);
3837 }
3838
947216bf
AM
3839 loc = srel->contents + srel->reloc_count++ * sizeof (Elf32_External_Rel);
3840 bfd_elf32_swap_reloc_out (output_bfd, &rel, loc);
252b5132
RH
3841 }
3842
3843 if ((h->elf_link_hash_flags & ELF_LINK_HASH_NEEDS_COPY) != 0)
3844 {
3845 asection * s;
947216bf
AM
3846 Elf_Internal_Rela rel;
3847 bfd_byte *loc;
252b5132
RH
3848
3849 /* This symbol needs a copy reloc. Set it up. */
252b5132
RH
3850 BFD_ASSERT (h->dynindx != -1
3851 && (h->root.type == bfd_link_hash_defined
3852 || h->root.type == bfd_link_hash_defweak));
3853
3854 s = bfd_get_section_by_name (h->root.u.def.section->owner,
3855 ".rel.bss");
3856 BFD_ASSERT (s != NULL);
3857
3858 rel.r_offset = (h->root.u.def.value
3859 + h->root.u.def.section->output_section->vma
3860 + h->root.u.def.section->output_offset);
3861 rel.r_info = ELF32_R_INFO (h->dynindx, R_ARM_COPY);
947216bf
AM
3862 loc = s->contents + s->reloc_count++ * sizeof (Elf32_External_Rel);
3863 bfd_elf32_swap_reloc_out (output_bfd, &rel, loc);
252b5132
RH
3864 }
3865
3866 /* Mark _DYNAMIC and _GLOBAL_OFFSET_TABLE_ as absolute. */
3867 if (strcmp (h->root.root.string, "_DYNAMIC") == 0
3868 || strcmp (h->root.root.string, "_GLOBAL_OFFSET_TABLE_") == 0)
3869 sym->st_shndx = SHN_ABS;
3870
b34976b6 3871 return TRUE;
252b5132
RH
3872}
3873
3874/* Finish up the dynamic sections. */
3875
b34976b6 3876static bfd_boolean
252b5132
RH
3877elf32_arm_finish_dynamic_sections (output_bfd, info)
3878 bfd * output_bfd;
3879 struct bfd_link_info * info;
3880{
3881 bfd * dynobj;
3882 asection * sgot;
3883 asection * sdyn;
3884
3885 dynobj = elf_hash_table (info)->dynobj;
3886
3887 sgot = bfd_get_section_by_name (dynobj, ".got.plt");
3888 BFD_ASSERT (sgot != NULL);
3889 sdyn = bfd_get_section_by_name (dynobj, ".dynamic");
3890
3891 if (elf_hash_table (info)->dynamic_sections_created)
3892 {
3893 asection *splt;
3894 Elf32_External_Dyn *dyncon, *dynconend;
3895
3896 splt = bfd_get_section_by_name (dynobj, ".plt");
24a1ba0f 3897 BFD_ASSERT (splt != NULL && sdyn != NULL);
252b5132
RH
3898
3899 dyncon = (Elf32_External_Dyn *) sdyn->contents;
3900 dynconend = (Elf32_External_Dyn *) (sdyn->contents + sdyn->_raw_size);
9b485d32 3901
252b5132
RH
3902 for (; dyncon < dynconend; dyncon++)
3903 {
3904 Elf_Internal_Dyn dyn;
3905 const char * name;
3906 asection * s;
3907
3908 bfd_elf32_swap_dyn_in (dynobj, dyncon, &dyn);
3909
3910 switch (dyn.d_tag)
3911 {
3912 default:
3913 break;
3914
3915 case DT_PLTGOT:
3916 name = ".got";
3917 goto get_vma;
3918 case DT_JMPREL:
3919 name = ".rel.plt";
3920 get_vma:
3921 s = bfd_get_section_by_name (output_bfd, name);
3922 BFD_ASSERT (s != NULL);
3923 dyn.d_un.d_ptr = s->vma;
3924 bfd_elf32_swap_dyn_out (output_bfd, &dyn, dyncon);
3925 break;
3926
3927 case DT_PLTRELSZ:
3928 s = bfd_get_section_by_name (output_bfd, ".rel.plt");
3929 BFD_ASSERT (s != NULL);
3930 if (s->_cooked_size != 0)
3931 dyn.d_un.d_val = s->_cooked_size;
3932 else
3933 dyn.d_un.d_val = s->_raw_size;
3934 bfd_elf32_swap_dyn_out (output_bfd, &dyn, dyncon);
3935 break;
3936
3937 case DT_RELSZ:
3938 /* My reading of the SVR4 ABI indicates that the
3939 procedure linkage table relocs (DT_JMPREL) should be
3940 included in the overall relocs (DT_REL). This is
3941 what Solaris does. However, UnixWare can not handle
3942 that case. Therefore, we override the DT_RELSZ entry
3943 here to make it not include the JMPREL relocs. Since
3944 the linker script arranges for .rel.plt to follow all
3945 other relocation sections, we don't have to worry
3946 about changing the DT_REL entry. */
3947 s = bfd_get_section_by_name (output_bfd, ".rel.plt");
3948 if (s != NULL)
3949 {
3950 if (s->_cooked_size != 0)
3951 dyn.d_un.d_val -= s->_cooked_size;
3952 else
3953 dyn.d_un.d_val -= s->_raw_size;
3954 }
3955 bfd_elf32_swap_dyn_out (output_bfd, &dyn, dyncon);
3956 break;
88f7bcd5
NC
3957
3958 /* Set the bottom bit of DT_INIT/FINI if the
3959 corresponding function is Thumb. */
3960 case DT_INIT:
3961 name = info->init_function;
3962 goto get_sym;
3963 case DT_FINI:
3964 name = info->fini_function;
3965 get_sym:
3966 /* If it wasn't set by elf_bfd_final_link
4cc11e76 3967 then there is nothing to adjust. */
88f7bcd5
NC
3968 if (dyn.d_un.d_val != 0)
3969 {
3970 struct elf_link_hash_entry * eh;
3971
3972 eh = elf_link_hash_lookup (elf_hash_table (info), name,
b34976b6 3973 FALSE, FALSE, TRUE);
88f7bcd5
NC
3974 if (eh != (struct elf_link_hash_entry *) NULL
3975 && ELF_ST_TYPE (eh->type) == STT_ARM_TFUNC)
3976 {
3977 dyn.d_un.d_val |= 1;
b34976b6 3978 bfd_elf32_swap_dyn_out (output_bfd, &dyn, dyncon);
88f7bcd5
NC
3979 }
3980 }
3981 break;
252b5132
RH
3982 }
3983 }
3984
24a1ba0f 3985 /* Fill in the first entry in the procedure linkage table. */
252b5132 3986 if (splt->_raw_size > 0)
f7a74f8c 3987 {
5e681ec4
PB
3988 bfd_vma got_displacement;
3989
3990 /* Calculate the displacement between the PLT slot and &GOT[0]. */
3991 got_displacement = (sgot->output_section->vma
3992 + sgot->output_offset
3993 - splt->output_section->vma
3994 - splt->output_offset
3995 - 16);
3996
f7a74f8c
NC
3997 bfd_put_32 (output_bfd, elf32_arm_plt0_entry[0], splt->contents + 0);
3998 bfd_put_32 (output_bfd, elf32_arm_plt0_entry[1], splt->contents + 4);
3999 bfd_put_32 (output_bfd, elf32_arm_plt0_entry[2], splt->contents + 8);
4000 bfd_put_32 (output_bfd, elf32_arm_plt0_entry[3], splt->contents + 12);
5e681ec4
PB
4001#ifdef FOUR_WORD_PLT
4002 /* The displacement value goes in the otherwise-unused last word of
4003 the second entry. */
4004 bfd_put_32 (output_bfd, got_displacement, splt->contents + 28);
4005#else
4006 bfd_put_32 (output_bfd, got_displacement, splt->contents + 16);
4007#endif
f7a74f8c 4008 }
252b5132
RH
4009
4010 /* UnixWare sets the entsize of .plt to 4, although that doesn't
4011 really seem like the right value. */
4012 elf_section_data (splt->output_section)->this_hdr.sh_entsize = 4;
4013 }
4014
4015 /* Fill in the first three entries in the global offset table. */
4016 if (sgot->_raw_size > 0)
4017 {
4018 if (sdyn == NULL)
4019 bfd_put_32 (output_bfd, (bfd_vma) 0, sgot->contents);
4020 else
4021 bfd_put_32 (output_bfd,
4022 sdyn->output_section->vma + sdyn->output_offset,
4023 sgot->contents);
4024 bfd_put_32 (output_bfd, (bfd_vma) 0, sgot->contents + 4);
4025 bfd_put_32 (output_bfd, (bfd_vma) 0, sgot->contents + 8);
4026 }
4027
4028 elf_section_data (sgot->output_section)->this_hdr.sh_entsize = 4;
4029
b34976b6 4030 return TRUE;
252b5132
RH
4031}
4032
ba96a88f
NC
4033static void
4034elf32_arm_post_process_headers (abfd, link_info)
4035 bfd * abfd;
5f771d47 4036 struct bfd_link_info * link_info ATTRIBUTE_UNUSED;
ba96a88f 4037{
9b485d32 4038 Elf_Internal_Ehdr * i_ehdrp; /* ELF file header, internal form. */
ba96a88f
NC
4039
4040 i_ehdrp = elf_elfheader (abfd);
4041
4042 i_ehdrp->e_ident[EI_OSABI] = ARM_ELF_OS_ABI_VERSION;
4043 i_ehdrp->e_ident[EI_ABIVERSION] = ARM_ELF_ABI_VERSION;
4044}
4045
99e4ae17 4046static enum elf_reloc_type_class
f51e552e
AM
4047elf32_arm_reloc_type_class (rela)
4048 const Elf_Internal_Rela *rela;
99e4ae17 4049{
f51e552e 4050 switch ((int) ELF32_R_TYPE (rela->r_info))
99e4ae17
AJ
4051 {
4052 case R_ARM_RELATIVE:
4053 return reloc_class_relative;
4054 case R_ARM_JUMP_SLOT:
4055 return reloc_class_plt;
4056 case R_ARM_COPY:
4057 return reloc_class_copy;
4058 default:
4059 return reloc_class_normal;
4060 }
4061}
4062
e16bb312
NC
4063static bfd_boolean elf32_arm_section_flags PARAMS ((flagword *, Elf_Internal_Shdr *));
4064static void elf32_arm_final_write_processing PARAMS ((bfd *, bfd_boolean));
4065
4066/* Set the right machine number for an Arm ELF file. */
4067
4068static bfd_boolean
4069elf32_arm_section_flags (flags, hdr)
4070 flagword *flags;
4071 Elf_Internal_Shdr *hdr;
4072{
4073 if (hdr->sh_type == SHT_NOTE)
4074 *flags |= SEC_LINK_ONCE | SEC_LINK_DUPLICATES_SAME_CONTENTS;
4075
4076 return TRUE;
4077}
4078
4079void
4080elf32_arm_final_write_processing (abfd, linker)
4081 bfd *abfd;
4082 bfd_boolean linker ATTRIBUTE_UNUSED;
4083{
5a6c6817 4084 bfd_arm_update_notes (abfd, ARM_NOTE_SECTION);
e16bb312
NC
4085}
4086
252b5132
RH
4087#define ELF_ARCH bfd_arch_arm
4088#define ELF_MACHINE_CODE EM_ARM
d0facd1b
NC
4089#ifdef __QNXTARGET__
4090#define ELF_MAXPAGESIZE 0x1000
4091#else
f21f3fe0 4092#define ELF_MAXPAGESIZE 0x8000
d0facd1b 4093#endif
252b5132 4094
99e4ae17
AJ
4095#define bfd_elf32_bfd_copy_private_bfd_data elf32_arm_copy_private_bfd_data
4096#define bfd_elf32_bfd_merge_private_bfd_data elf32_arm_merge_private_bfd_data
252b5132
RH
4097#define bfd_elf32_bfd_set_private_flags elf32_arm_set_private_flags
4098#define bfd_elf32_bfd_print_private_bfd_data elf32_arm_print_private_bfd_data
4099#define bfd_elf32_bfd_link_hash_table_create elf32_arm_link_hash_table_create
dc810e39 4100#define bfd_elf32_bfd_reloc_type_lookup elf32_arm_reloc_type_lookup
252b5132
RH
4101#define bfd_elf32_find_nearest_line elf32_arm_find_nearest_line
4102
4103#define elf_backend_get_symbol_type elf32_arm_get_symbol_type
4104#define elf_backend_gc_mark_hook elf32_arm_gc_mark_hook
4105#define elf_backend_gc_sweep_hook elf32_arm_gc_sweep_hook
4106#define elf_backend_check_relocs elf32_arm_check_relocs
dc810e39 4107#define elf_backend_relocate_section elf32_arm_relocate_section
252b5132 4108#define elf_backend_adjust_dynamic_symbol elf32_arm_adjust_dynamic_symbol
5e681ec4 4109#define elf_backend_create_dynamic_sections elf32_arm_create_dynamic_sections
252b5132
RH
4110#define elf_backend_finish_dynamic_symbol elf32_arm_finish_dynamic_symbol
4111#define elf_backend_finish_dynamic_sections elf32_arm_finish_dynamic_sections
4112#define elf_backend_size_dynamic_sections elf32_arm_size_dynamic_sections
ba96a88f 4113#define elf_backend_post_process_headers elf32_arm_post_process_headers
99e4ae17 4114#define elf_backend_reloc_type_class elf32_arm_reloc_type_class
c178919b 4115#define elf_backend_object_p elf32_arm_object_p
e16bb312
NC
4116#define elf_backend_section_flags elf32_arm_section_flags
4117#define elf_backend_final_write_processing elf32_arm_final_write_processing
5e681ec4 4118#define elf_backend_copy_indirect_symbol elf32_arm_copy_indirect_symbol
252b5132 4119
5e681ec4 4120#define elf_backend_can_refcount 1
252b5132
RH
4121#define elf_backend_can_gc_sections 1
4122#define elf_backend_plt_readonly 1
4123#define elf_backend_want_got_plt 1
4124#define elf_backend_want_plt_sym 0
acf8aed4 4125#if !USE_REL
b491616a
AM
4126#define elf_backend_rela_normal 1
4127#endif
252b5132 4128
04f7c78d 4129#define elf_backend_got_header_size 12
04f7c78d 4130
252b5132 4131#include "elf32-target.h"
7e392df6 4132
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