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[deliverable/binutils-gdb.git] / bfd / elf-eh-frame.c
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65765700 1/* .eh_frame section optimization.
b90efa5b 2 Copyright (C) 2001-2015 Free Software Foundation, Inc.
65765700
JJ
3 Written by Jakub Jelinek <jakub@redhat.com>.
4
5ed6aba4 5 This file is part of BFD, the Binary File Descriptor library.
65765700 6
5ed6aba4
NC
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
cd123cb7 9 the Free Software Foundation; either version 3 of the License, or
5ed6aba4 10 (at your option) any later version.
65765700 11
5ed6aba4
NC
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
65765700 16
5ed6aba4
NC
17 You should have received a copy of the GNU General Public License
18 along with this program; if not, write to the Free Software
cd123cb7
NC
19 Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
20 MA 02110-1301, USA. */
65765700 21
65765700 22#include "sysdep.h"
3db64b00 23#include "bfd.h"
65765700
JJ
24#include "libbfd.h"
25#include "elf-bfd.h"
fa8f86ff 26#include "dwarf2.h"
65765700
JJ
27
28#define EH_FRAME_HDR_SIZE 8
29
bce613b9
JJ
30struct cie
31{
32 unsigned int length;
33 unsigned int hash;
34 unsigned char version;
f137a54e 35 unsigned char local_personality;
bce613b9
JJ
36 char augmentation[20];
37 bfd_vma code_align;
38 bfd_signed_vma data_align;
39 bfd_vma ra_column;
40 bfd_vma augmentation_size;
f137a54e
AM
41 union {
42 struct elf_link_hash_entry *h;
5087d529
AM
43 struct {
44 unsigned int bfd_id;
45 unsigned int index;
46 } sym;
184d07da 47 unsigned int reloc_index;
f137a54e 48 } personality;
bce613b9
JJ
49 struct eh_cie_fde *cie_inf;
50 unsigned char per_encoding;
51 unsigned char lsda_encoding;
52 unsigned char fde_encoding;
53 unsigned char initial_insn_length;
9f4b847e 54 unsigned char can_make_lsda_relative;
bce613b9
JJ
55 unsigned char initial_instructions[50];
56};
57
58
59
2c42be65
RS
60/* If *ITER hasn't reached END yet, read the next byte into *RESULT and
61 move onto the next byte. Return true on success. */
62
63static inline bfd_boolean
64read_byte (bfd_byte **iter, bfd_byte *end, unsigned char *result)
65{
66 if (*iter >= end)
67 return FALSE;
68 *result = *((*iter)++);
69 return TRUE;
70}
71
72/* Move *ITER over LENGTH bytes, or up to END, whichever is closer.
73 Return true it was possible to move LENGTH bytes. */
74
75static inline bfd_boolean
76skip_bytes (bfd_byte **iter, bfd_byte *end, bfd_size_type length)
77{
78 if ((bfd_size_type) (end - *iter) < length)
79 {
80 *iter = end;
81 return FALSE;
82 }
83 *iter += length;
84 return TRUE;
85}
86
87/* Move *ITER over an leb128, stopping at END. Return true if the end
88 of the leb128 was found. */
89
90static bfd_boolean
91skip_leb128 (bfd_byte **iter, bfd_byte *end)
92{
93 unsigned char byte;
94 do
95 if (!read_byte (iter, end, &byte))
96 return FALSE;
97 while (byte & 0x80);
98 return TRUE;
99}
100
101/* Like skip_leb128, but treat the leb128 as an unsigned value and
102 store it in *VALUE. */
103
104static bfd_boolean
105read_uleb128 (bfd_byte **iter, bfd_byte *end, bfd_vma *value)
106{
107 bfd_byte *start, *p;
108
109 start = *iter;
110 if (!skip_leb128 (iter, end))
111 return FALSE;
112
113 p = *iter;
114 *value = *--p;
115 while (p > start)
116 *value = (*value << 7) | (*--p & 0x7f);
117
118 return TRUE;
119}
120
121/* Like read_uleb128, but for signed values. */
122
123static bfd_boolean
124read_sleb128 (bfd_byte **iter, bfd_byte *end, bfd_signed_vma *value)
125{
126 bfd_byte *start, *p;
127
128 start = *iter;
129 if (!skip_leb128 (iter, end))
130 return FALSE;
131
132 p = *iter;
133 *value = ((*--p & 0x7f) ^ 0x40) - 0x40;
134 while (p > start)
135 *value = (*value << 7) | (*--p & 0x7f);
136
137 return TRUE;
138}
65765700
JJ
139
140/* Return 0 if either encoding is variable width, or not yet known to bfd. */
141
142static
c39a58e6 143int get_DW_EH_PE_width (int encoding, int ptr_size)
65765700
JJ
144{
145 /* DW_EH_PE_ values of 0x60 and 0x70 weren't defined at the time .eh_frame
146 was added to bfd. */
147 if ((encoding & 0x60) == 0x60)
148 return 0;
149
150 switch (encoding & 7)
151 {
152 case DW_EH_PE_udata2: return 2;
153 case DW_EH_PE_udata4: return 4;
154 case DW_EH_PE_udata8: return 8;
155 case DW_EH_PE_absptr: return ptr_size;
156 default:
157 break;
158 }
159
160 return 0;
161}
162
84f97cb6
AS
163#define get_DW_EH_PE_signed(encoding) (((encoding) & DW_EH_PE_signed) != 0)
164
9e2a4898
JJ
165/* Read a width sized value from memory. */
166
167static bfd_vma
c39a58e6 168read_value (bfd *abfd, bfd_byte *buf, int width, int is_signed)
9e2a4898
JJ
169{
170 bfd_vma value;
171
172 switch (width)
173 {
84f97cb6
AS
174 case 2:
175 if (is_signed)
176 value = bfd_get_signed_16 (abfd, buf);
177 else
178 value = bfd_get_16 (abfd, buf);
179 break;
180 case 4:
181 if (is_signed)
182 value = bfd_get_signed_32 (abfd, buf);
183 else
184 value = bfd_get_32 (abfd, buf);
185 break;
186 case 8:
187 if (is_signed)
188 value = bfd_get_signed_64 (abfd, buf);
189 else
190 value = bfd_get_64 (abfd, buf);
191 break;
192 default:
193 BFD_FAIL ();
194 return 0;
9e2a4898
JJ
195 }
196
197 return value;
198}
b34976b6 199
9e2a4898
JJ
200/* Store a width sized value to memory. */
201
202static void
c39a58e6 203write_value (bfd *abfd, bfd_byte *buf, bfd_vma value, int width)
9e2a4898
JJ
204{
205 switch (width)
206 {
207 case 2: bfd_put_16 (abfd, value, buf); break;
208 case 4: bfd_put_32 (abfd, value, buf); break;
209 case 8: bfd_put_64 (abfd, value, buf); break;
210 default: BFD_FAIL ();
211 }
212}
213
bce613b9 214/* Return one if C1 and C2 CIEs can be merged. */
65765700 215
bce613b9
JJ
216static int
217cie_eq (const void *e1, const void *e2)
65765700 218{
a50b1753
NC
219 const struct cie *c1 = (const struct cie *) e1;
220 const struct cie *c2 = (const struct cie *) e2;
bce613b9
JJ
221
222 if (c1->hash == c2->hash
223 && c1->length == c2->length
65765700 224 && c1->version == c2->version
f137a54e 225 && c1->local_personality == c2->local_personality
65765700
JJ
226 && strcmp (c1->augmentation, c2->augmentation) == 0
227 && strcmp (c1->augmentation, "eh") != 0
228 && c1->code_align == c2->code_align
229 && c1->data_align == c2->data_align
230 && c1->ra_column == c2->ra_column
231 && c1->augmentation_size == c2->augmentation_size
f137a54e
AM
232 && memcmp (&c1->personality, &c2->personality,
233 sizeof (c1->personality)) == 0
4564fb94
AM
234 && (c1->cie_inf->u.cie.u.sec->output_section
235 == c2->cie_inf->u.cie.u.sec->output_section)
65765700
JJ
236 && c1->per_encoding == c2->per_encoding
237 && c1->lsda_encoding == c2->lsda_encoding
238 && c1->fde_encoding == c2->fde_encoding
c39a58e6 239 && c1->initial_insn_length == c2->initial_insn_length
99d190fa 240 && c1->initial_insn_length <= sizeof (c1->initial_instructions)
65765700
JJ
241 && memcmp (c1->initial_instructions,
242 c2->initial_instructions,
243 c1->initial_insn_length) == 0)
bce613b9 244 return 1;
65765700 245
bce613b9
JJ
246 return 0;
247}
248
249static hashval_t
250cie_hash (const void *e)
251{
a50b1753 252 const struct cie *c = (const struct cie *) e;
bce613b9
JJ
253 return c->hash;
254}
255
256static hashval_t
257cie_compute_hash (struct cie *c)
258{
259 hashval_t h = 0;
99d190fa 260 size_t len;
bce613b9
JJ
261 h = iterative_hash_object (c->length, h);
262 h = iterative_hash_object (c->version, h);
263 h = iterative_hash (c->augmentation, strlen (c->augmentation) + 1, h);
264 h = iterative_hash_object (c->code_align, h);
265 h = iterative_hash_object (c->data_align, h);
266 h = iterative_hash_object (c->ra_column, h);
267 h = iterative_hash_object (c->augmentation_size, h);
268 h = iterative_hash_object (c->personality, h);
4564fb94 269 h = iterative_hash_object (c->cie_inf->u.cie.u.sec->output_section, h);
bce613b9
JJ
270 h = iterative_hash_object (c->per_encoding, h);
271 h = iterative_hash_object (c->lsda_encoding, h);
272 h = iterative_hash_object (c->fde_encoding, h);
273 h = iterative_hash_object (c->initial_insn_length, h);
99d190fa
AM
274 len = c->initial_insn_length;
275 if (len > sizeof (c->initial_instructions))
276 len = sizeof (c->initial_instructions);
277 h = iterative_hash (c->initial_instructions, len, h);
bce613b9
JJ
278 c->hash = h;
279 return h;
65765700
JJ
280}
281
353057a5
RS
282/* Return the number of extra bytes that we'll be inserting into
283 ENTRY's augmentation string. */
284
285static INLINE unsigned int
286extra_augmentation_string_bytes (struct eh_cie_fde *entry)
287{
288 unsigned int size = 0;
289 if (entry->cie)
290 {
291 if (entry->add_augmentation_size)
292 size++;
6b2cc140 293 if (entry->u.cie.add_fde_encoding)
353057a5
RS
294 size++;
295 }
296 return size;
297}
298
299/* Likewise ENTRY's augmentation data. */
300
301static INLINE unsigned int
302extra_augmentation_data_bytes (struct eh_cie_fde *entry)
303{
304 unsigned int size = 0;
6b2cc140
RS
305 if (entry->add_augmentation_size)
306 size++;
307 if (entry->cie && entry->u.cie.add_fde_encoding)
308 size++;
353057a5
RS
309 return size;
310}
311
312/* Return the size that ENTRY will have in the output. ALIGNMENT is the
313 required alignment of ENTRY in bytes. */
314
315static unsigned int
316size_of_output_cie_fde (struct eh_cie_fde *entry, unsigned int alignment)
317{
318 if (entry->removed)
319 return 0;
320 if (entry->size == 4)
321 return 4;
322 return (entry->size
323 + extra_augmentation_string_bytes (entry)
324 + extra_augmentation_data_bytes (entry)
325 + alignment - 1) & -alignment;
326}
327
dcf507a6
RS
328/* Assume that the bytes between *ITER and END are CFA instructions.
329 Try to move *ITER past the first instruction and return true on
330 success. ENCODED_PTR_WIDTH gives the width of pointer entries. */
331
332static bfd_boolean
333skip_cfa_op (bfd_byte **iter, bfd_byte *end, unsigned int encoded_ptr_width)
334{
335 bfd_byte op;
336 bfd_vma length;
337
338 if (!read_byte (iter, end, &op))
339 return FALSE;
340
ac685e6a 341 switch (op & 0xc0 ? op & 0xc0 : op)
dcf507a6
RS
342 {
343 case DW_CFA_nop:
344 case DW_CFA_advance_loc:
345 case DW_CFA_restore:
ac685e6a
JJ
346 case DW_CFA_remember_state:
347 case DW_CFA_restore_state:
348 case DW_CFA_GNU_window_save:
dcf507a6
RS
349 /* No arguments. */
350 return TRUE;
351
352 case DW_CFA_offset:
353 case DW_CFA_restore_extended:
354 case DW_CFA_undefined:
355 case DW_CFA_same_value:
356 case DW_CFA_def_cfa_register:
357 case DW_CFA_def_cfa_offset:
358 case DW_CFA_def_cfa_offset_sf:
359 case DW_CFA_GNU_args_size:
360 /* One leb128 argument. */
361 return skip_leb128 (iter, end);
362
ac685e6a
JJ
363 case DW_CFA_val_offset:
364 case DW_CFA_val_offset_sf:
dcf507a6
RS
365 case DW_CFA_offset_extended:
366 case DW_CFA_register:
367 case DW_CFA_def_cfa:
368 case DW_CFA_offset_extended_sf:
369 case DW_CFA_GNU_negative_offset_extended:
370 case DW_CFA_def_cfa_sf:
371 /* Two leb128 arguments. */
372 return (skip_leb128 (iter, end)
373 && skip_leb128 (iter, end));
374
375 case DW_CFA_def_cfa_expression:
376 /* A variable-length argument. */
377 return (read_uleb128 (iter, end, &length)
378 && skip_bytes (iter, end, length));
379
380 case DW_CFA_expression:
ac685e6a 381 case DW_CFA_val_expression:
dcf507a6
RS
382 /* A leb128 followed by a variable-length argument. */
383 return (skip_leb128 (iter, end)
384 && read_uleb128 (iter, end, &length)
385 && skip_bytes (iter, end, length));
386
387 case DW_CFA_set_loc:
388 return skip_bytes (iter, end, encoded_ptr_width);
389
390 case DW_CFA_advance_loc1:
391 return skip_bytes (iter, end, 1);
392
393 case DW_CFA_advance_loc2:
394 return skip_bytes (iter, end, 2);
395
396 case DW_CFA_advance_loc4:
397 return skip_bytes (iter, end, 4);
398
399 case DW_CFA_MIPS_advance_loc8:
400 return skip_bytes (iter, end, 8);
401
402 default:
403 return FALSE;
404 }
405}
406
407/* Try to interpret the bytes between BUF and END as CFA instructions.
408 If every byte makes sense, return a pointer to the first DW_CFA_nop
409 padding byte, or END if there is no padding. Return null otherwise.
410 ENCODED_PTR_WIDTH is as for skip_cfa_op. */
411
412static bfd_byte *
ac685e6a
JJ
413skip_non_nops (bfd_byte *buf, bfd_byte *end, unsigned int encoded_ptr_width,
414 unsigned int *set_loc_count)
dcf507a6
RS
415{
416 bfd_byte *last;
417
418 last = buf;
419 while (buf < end)
420 if (*buf == DW_CFA_nop)
421 buf++;
422 else
423 {
ac685e6a
JJ
424 if (*buf == DW_CFA_set_loc)
425 ++*set_loc_count;
dcf507a6
RS
426 if (!skip_cfa_op (&buf, end, encoded_ptr_width))
427 return 0;
428 last = buf;
429 }
430 return last;
431}
432
30af5962
RS
433/* Convert absolute encoding ENCODING into PC-relative form.
434 SIZE is the size of a pointer. */
435
436static unsigned char
437make_pc_relative (unsigned char encoding, unsigned int ptr_size)
438{
439 if ((encoding & 0x7f) == DW_EH_PE_absptr)
440 switch (ptr_size)
441 {
442 case 2:
443 encoding |= DW_EH_PE_sdata2;
444 break;
445 case 4:
446 encoding |= DW_EH_PE_sdata4;
447 break;
448 case 8:
449 encoding |= DW_EH_PE_sdata8;
450 break;
451 }
452 return encoding | DW_EH_PE_pcrel;
453}
454
ca92cecb
RS
455/* Try to parse .eh_frame section SEC, which belongs to ABFD. Store the
456 information in the section's sec_info field on success. COOKIE
457 describes the relocations in SEC. */
458
459void
460_bfd_elf_parse_eh_frame (bfd *abfd, struct bfd_link_info *info,
461 asection *sec, struct elf_reloc_cookie *cookie)
65765700 462{
acfe5567
RS
463#define REQUIRE(COND) \
464 do \
465 if (!(COND)) \
466 goto free_no_table; \
467 while (0)
468
ca92cecb 469 bfd_byte *ehbuf = NULL, *buf, *end;
bce613b9 470 bfd_byte *last_fde;
ca92cecb 471 struct eh_cie_fde *this_inf;
bce613b9 472 unsigned int hdr_length, hdr_id;
184d07da
RS
473 unsigned int cie_count;
474 struct cie *cie, *local_cies = NULL;
126495ed 475 struct elf_link_hash_table *htab;
65765700 476 struct eh_frame_hdr_info *hdr_info;
68f69152 477 struct eh_frame_sec_info *sec_info = NULL;
65765700 478 unsigned int ptr_size;
ca92cecb
RS
479 unsigned int num_cies;
480 unsigned int num_entries;
9d0a14d3 481 elf_gc_mark_hook_fn gc_mark_hook;
ca92cecb
RS
482
483 htab = elf_hash_table (info);
484 hdr_info = &htab->eh_info;
65765700 485
4d16d575 486 if (sec->size == 0
dbaa2011 487 || sec->sec_info_type != SEC_INFO_TYPE_NONE)
65765700
JJ
488 {
489 /* This file does not contain .eh_frame information. */
ca92cecb 490 return;
65765700
JJ
491 }
492
e460dd0d 493 if (bfd_is_abs_section (sec->output_section))
65765700
JJ
494 {
495 /* At least one of the sections is being discarded from the
3472e2e9 496 link, so we should just ignore them. */
ca92cecb 497 return;
65765700
JJ
498 }
499
500 /* Read the frame unwind information from abfd. */
501
acfe5567 502 REQUIRE (bfd_malloc_and_get_section (abfd, sec, &ehbuf));
68f69152 503
eea6121a 504 if (sec->size >= 4
65765700
JJ
505 && bfd_get_32 (abfd, ehbuf) == 0
506 && cookie->rel == cookie->relend)
507 {
508 /* Empty .eh_frame section. */
509 free (ehbuf);
ca92cecb 510 return;
65765700
JJ
511 }
512
65765700
JJ
513 /* If .eh_frame section size doesn't fit into int, we cannot handle
514 it (it would need to use 64-bit .eh_frame format anyway). */
acfe5567 515 REQUIRE (sec->size == (unsigned int) sec->size);
65765700 516
8c946ed5
RS
517 ptr_size = (get_elf_backend_data (abfd)
518 ->elf_backend_eh_frame_address_size (abfd, sec));
519 REQUIRE (ptr_size != 0);
520
ca92cecb
RS
521 /* Go through the section contents and work out how many FDEs and
522 CIEs there are. */
65765700 523 buf = ehbuf;
ca92cecb
RS
524 end = ehbuf + sec->size;
525 num_cies = 0;
526 num_entries = 0;
527 while (buf != end)
528 {
529 num_entries++;
530
531 /* Read the length of the entry. */
532 REQUIRE (skip_bytes (&buf, end, 4));
533 hdr_length = bfd_get_32 (abfd, buf - 4);
534
535 /* 64-bit .eh_frame is not supported. */
536 REQUIRE (hdr_length != 0xffffffff);
537 if (hdr_length == 0)
538 break;
539
540 REQUIRE (skip_bytes (&buf, end, 4));
541 hdr_id = bfd_get_32 (abfd, buf - 4);
542 if (hdr_id == 0)
543 num_cies++;
544
545 REQUIRE (skip_bytes (&buf, end, hdr_length - 4));
546 }
547
a50b1753
NC
548 sec_info = (struct eh_frame_sec_info *)
549 bfd_zmalloc (sizeof (struct eh_frame_sec_info)
550 + (num_entries - 1) * sizeof (struct eh_cie_fde));
acfe5567 551 REQUIRE (sec_info);
eea6121a 552
184d07da 553 /* We need to have a "struct cie" for each CIE in this section. */
a50b1753 554 local_cies = (struct cie *) bfd_zmalloc (num_cies * sizeof (*local_cies));
184d07da 555 REQUIRE (local_cies);
65765700 556
5dabe785 557 /* FIXME: octets_per_byte. */
65765700 558#define ENSURE_NO_RELOCS(buf) \
5b69e357
AM
559 while (cookie->rel < cookie->relend \
560 && (cookie->rel->r_offset \
561 < (bfd_size_type) ((buf) - ehbuf))) \
562 { \
563 REQUIRE (cookie->rel->r_info == 0); \
564 cookie->rel++; \
565 }
65765700 566
5dabe785 567 /* FIXME: octets_per_byte. */
65765700
JJ
568#define SKIP_RELOCS(buf) \
569 while (cookie->rel < cookie->relend \
3472e2e9 570 && (cookie->rel->r_offset \
65765700
JJ
571 < (bfd_size_type) ((buf) - ehbuf))) \
572 cookie->rel++
573
5dabe785 574 /* FIXME: octets_per_byte. */
65765700
JJ
575#define GET_RELOC(buf) \
576 ((cookie->rel < cookie->relend \
577 && (cookie->rel->r_offset \
3472e2e9 578 == (bfd_size_type) ((buf) - ehbuf))) \
65765700
JJ
579 ? cookie->rel : NULL)
580
ca92cecb 581 buf = ehbuf;
184d07da 582 cie_count = 0;
9d0a14d3 583 gc_mark_hook = get_elf_backend_data (abfd)->gc_mark_hook;
ca92cecb 584 while ((bfd_size_type) (buf - ehbuf) != sec->size)
65765700 585 {
f075ee0c 586 char *aug;
ca92cecb 587 bfd_byte *start, *insns, *insns_end;
2c42be65 588 bfd_size_type length;
ac685e6a 589 unsigned int set_loc_count;
65765700 590
fda3ecf2 591 this_inf = sec_info->entry + sec_info->count;
65765700 592 last_fde = buf;
bce613b9 593
bce613b9
JJ
594 /* Read the length of the entry. */
595 REQUIRE (skip_bytes (&buf, ehbuf + sec->size, 4));
596 hdr_length = bfd_get_32 (abfd, buf - 4);
acfe5567 597
bce613b9
JJ
598 /* The CIE/FDE must be fully contained in this input section. */
599 REQUIRE ((bfd_size_type) (buf - ehbuf) + hdr_length <= sec->size);
600 end = buf + hdr_length;
65765700 601
bce613b9
JJ
602 this_inf->offset = last_fde - ehbuf;
603 this_inf->size = 4 + hdr_length;
155eaaa0 604 this_inf->reloc_index = cookie->rel - cookie->rels;
bce613b9
JJ
605
606 if (hdr_length == 0)
607 {
608 /* A zero-length CIE should only be found at the end of
609 the section. */
610 REQUIRE ((bfd_size_type) (buf - ehbuf) == sec->size);
611 ENSURE_NO_RELOCS (buf);
612 sec_info->count++;
613 break;
65765700
JJ
614 }
615
bce613b9
JJ
616 REQUIRE (skip_bytes (&buf, end, 4));
617 hdr_id = bfd_get_32 (abfd, buf - 4);
618
619 if (hdr_id == 0)
65765700
JJ
620 {
621 unsigned int initial_insn_length;
622
623 /* CIE */
bce613b9
JJ
624 this_inf->cie = 1;
625
184d07da
RS
626 /* Point CIE to one of the section-local cie structures. */
627 cie = local_cies + cie_count++;
628
ca92cecb 629 cie->cie_inf = this_inf;
bce613b9 630 cie->length = hdr_length;
ac685e6a 631 start = buf;
bce613b9 632 REQUIRE (read_byte (&buf, end, &cie->version));
65765700
JJ
633
634 /* Cannot handle unknown versions. */
604282a7
JJ
635 REQUIRE (cie->version == 1
636 || cie->version == 3
637 || cie->version == 4);
bce613b9 638 REQUIRE (strlen ((char *) buf) < sizeof (cie->augmentation));
65765700 639
bce613b9 640 strcpy (cie->augmentation, (char *) buf);
f075ee0c 641 buf = (bfd_byte *) strchr ((char *) buf, '\0') + 1;
65765700
JJ
642 ENSURE_NO_RELOCS (buf);
643 if (buf[0] == 'e' && buf[1] == 'h')
644 {
645 /* GCC < 3.0 .eh_frame CIE */
646 /* We cannot merge "eh" CIEs because __EXCEPTION_TABLE__
647 is private to each CIE, so we don't need it for anything.
648 Just skip it. */
2c42be65 649 REQUIRE (skip_bytes (&buf, end, ptr_size));
65765700
JJ
650 SKIP_RELOCS (buf);
651 }
604282a7
JJ
652 if (cie->version >= 4)
653 {
654 REQUIRE (buf + 1 < end);
655 REQUIRE (buf[0] == ptr_size);
656 REQUIRE (buf[1] == 0);
657 buf += 2;
658 }
bce613b9
JJ
659 REQUIRE (read_uleb128 (&buf, end, &cie->code_align));
660 REQUIRE (read_sleb128 (&buf, end, &cie->data_align));
661 if (cie->version == 1)
2c42be65
RS
662 {
663 REQUIRE (buf < end);
bce613b9 664 cie->ra_column = *buf++;
2c42be65 665 }
0da76f83 666 else
bce613b9 667 REQUIRE (read_uleb128 (&buf, end, &cie->ra_column));
65765700 668 ENSURE_NO_RELOCS (buf);
bce613b9
JJ
669 cie->lsda_encoding = DW_EH_PE_omit;
670 cie->fde_encoding = DW_EH_PE_omit;
671 cie->per_encoding = DW_EH_PE_omit;
672 aug = cie->augmentation;
65765700
JJ
673 if (aug[0] != 'e' || aug[1] != 'h')
674 {
675 if (*aug == 'z')
676 {
677 aug++;
bce613b9 678 REQUIRE (read_uleb128 (&buf, end, &cie->augmentation_size));
65765700
JJ
679 ENSURE_NO_RELOCS (buf);
680 }
681
682 while (*aug != '\0')
683 switch (*aug++)
684 {
685 case 'L':
bce613b9 686 REQUIRE (read_byte (&buf, end, &cie->lsda_encoding));
65765700 687 ENSURE_NO_RELOCS (buf);
bce613b9 688 REQUIRE (get_DW_EH_PE_width (cie->lsda_encoding, ptr_size));
65765700
JJ
689 break;
690 case 'R':
bce613b9 691 REQUIRE (read_byte (&buf, end, &cie->fde_encoding));
65765700 692 ENSURE_NO_RELOCS (buf);
bce613b9 693 REQUIRE (get_DW_EH_PE_width (cie->fde_encoding, ptr_size));
65765700 694 break;
63752a75
JJ
695 case 'S':
696 break;
65765700
JJ
697 case 'P':
698 {
699 int per_width;
700
bce613b9
JJ
701 REQUIRE (read_byte (&buf, end, &cie->per_encoding));
702 per_width = get_DW_EH_PE_width (cie->per_encoding,
65765700 703 ptr_size);
acfe5567 704 REQUIRE (per_width);
18e04883 705 if ((cie->per_encoding & 0x70) == DW_EH_PE_aligned)
2c42be65
RS
706 {
707 length = -(buf - ehbuf) & (per_width - 1);
708 REQUIRE (skip_bytes (&buf, end, length));
709 }
18e04883 710 this_inf->u.cie.personality_offset = buf - start;
65765700 711 ENSURE_NO_RELOCS (buf);
f137a54e 712 /* Ensure we have a reloc here. */
184d07da
RS
713 REQUIRE (GET_RELOC (buf));
714 cie->personality.reloc_index
715 = cookie->rel - cookie->rels;
716 /* Cope with MIPS-style composite relocations. */
717 do
718 cookie->rel++;
719 while (GET_RELOC (buf) != NULL);
2c42be65 720 REQUIRE (skip_bytes (&buf, end, per_width));
65765700
JJ
721 }
722 break;
723 default:
724 /* Unrecognized augmentation. Better bail out. */
725 goto free_no_table;
726 }
727 }
728
729 /* For shared libraries, try to get rid of as many RELATIVE relocs
0bb2d96a 730 as possible. */
3472e2e9 731 if (info->shared
5b69e357 732 && !info->relocatable
ec3391e7
AO
733 && (get_elf_backend_data (abfd)
734 ->elf_backend_can_make_relative_eh_frame
353057a5
RS
735 (abfd, info, sec)))
736 {
18e04883 737 if ((cie->fde_encoding & 0x70) == DW_EH_PE_absptr)
6b2cc140 738 this_inf->make_relative = 1;
353057a5
RS
739 /* If the CIE doesn't already have an 'R' entry, it's fairly
740 easy to add one, provided that there's no aligned data
741 after the augmentation string. */
bce613b9 742 else if (cie->fde_encoding == DW_EH_PE_omit
18e04883 743 && (cie->per_encoding & 0x70) != DW_EH_PE_aligned)
353057a5 744 {
bce613b9 745 if (*cie->augmentation == 0)
353057a5 746 this_inf->add_augmentation_size = 1;
6b2cc140
RS
747 this_inf->u.cie.add_fde_encoding = 1;
748 this_inf->make_relative = 1;
353057a5 749 }
65765700 750
18e04883
RS
751 if ((cie->lsda_encoding & 0x70) == DW_EH_PE_absptr)
752 cie->can_make_lsda_relative = 1;
753 }
9e2a4898 754
65765700
JJ
755 /* If FDE encoding was not specified, it defaults to
756 DW_EH_absptr. */
bce613b9
JJ
757 if (cie->fde_encoding == DW_EH_PE_omit)
758 cie->fde_encoding = DW_EH_PE_absptr;
65765700 759
dcf507a6 760 initial_insn_length = end - buf;
99d190fa
AM
761 cie->initial_insn_length = initial_insn_length;
762 memcpy (cie->initial_instructions, buf,
763 initial_insn_length <= sizeof (cie->initial_instructions)
764 ? initial_insn_length : sizeof (cie->initial_instructions));
dcf507a6 765 insns = buf;
65765700
JJ
766 buf += initial_insn_length;
767 ENSURE_NO_RELOCS (buf);
ca92cecb 768
da44f4e5 769 if (!info->relocatable)
5b69e357
AM
770 {
771 /* Keep info for merging cies. */
772 this_inf->u.cie.u.full_cie = cie;
773 this_inf->u.cie.per_encoding_relative
774 = (cie->per_encoding & 0x70) == DW_EH_PE_pcrel;
775 }
65765700
JJ
776 }
777 else
778 {
bce613b9
JJ
779 /* Find the corresponding CIE. */
780 unsigned int cie_offset = this_inf->offset + 4 - hdr_id;
184d07da
RS
781 for (cie = local_cies; cie < local_cies + cie_count; cie++)
782 if (cie_offset == cie->cie_inf->offset)
bce613b9
JJ
783 break;
784
785 /* Ensure this FDE references one of the CIEs in this input
786 section. */
184d07da
RS
787 REQUIRE (cie != local_cies + cie_count);
788 this_inf->u.fde.cie_inf = cie->cie_inf;
789 this_inf->make_relative = cie->cie_inf->make_relative;
6b2cc140 790 this_inf->add_augmentation_size
184d07da 791 = cie->cie_inf->add_augmentation_size;
65765700
JJ
792
793 ENSURE_NO_RELOCS (buf);
e41b3a13 794 if ((sec->flags & SEC_LINKER_CREATED) == 0 || cookie->rels != NULL)
2a7b2e88 795 {
e41b3a13
JJ
796 asection *rsec;
797
798 REQUIRE (GET_RELOC (buf));
799
800 /* Chain together the FDEs for each section. */
801 rsec = _bfd_elf_gc_mark_rsec (info, sec, gc_mark_hook, cookie);
802 /* RSEC will be NULL if FDE was cleared out as it was belonging to
803 a discarded SHT_GROUP. */
804 if (rsec)
805 {
806 REQUIRE (rsec->owner == abfd);
807 this_inf->u.fde.next_for_section = elf_fde_list (rsec);
808 elf_fde_list (rsec) = this_inf;
809 }
2a7b2e88 810 }
9d0a14d3 811
2c42be65
RS
812 /* Skip the initial location and address range. */
813 start = buf;
bce613b9 814 length = get_DW_EH_PE_width (cie->fde_encoding, ptr_size);
2c42be65
RS
815 REQUIRE (skip_bytes (&buf, end, 2 * length));
816
c2aaac08
AM
817 SKIP_RELOCS (buf - length);
818 if (!GET_RELOC (buf - length)
819 && read_value (abfd, buf - length, length, FALSE) == 0)
820 {
821 (*info->callbacks->minfo)
822 (_("discarding zero address range FDE in %B(%A).\n"),
823 abfd, sec);
824 this_inf->u.fde.cie_inf = NULL;
825 }
826
2c42be65 827 /* Skip the augmentation size, if present. */
bce613b9 828 if (cie->augmentation[0] == 'z')
dcf507a6
RS
829 REQUIRE (read_uleb128 (&buf, end, &length));
830 else
831 length = 0;
2c42be65
RS
832
833 /* Of the supported augmentation characters above, only 'L'
834 adds augmentation data to the FDE. This code would need to
835 be adjusted if any future augmentations do the same thing. */
bce613b9 836 if (cie->lsda_encoding != DW_EH_PE_omit)
dcf507a6 837 {
9f4b847e
RS
838 SKIP_RELOCS (buf);
839 if (cie->can_make_lsda_relative && GET_RELOC (buf))
840 cie->cie_inf->u.cie.make_lsda_relative = 1;
dcf507a6
RS
841 this_inf->lsda_offset = buf - start;
842 /* If there's no 'z' augmentation, we don't know where the
843 CFA insns begin. Assume no padding. */
bce613b9 844 if (cie->augmentation[0] != 'z')
dcf507a6
RS
845 length = end - buf;
846 }
847
848 /* Skip over the augmentation data. */
849 REQUIRE (skip_bytes (&buf, end, length));
850 insns = buf;
9e2a4898 851
bce613b9 852 buf = last_fde + 4 + hdr_length;
2a7b2e88 853
273f4430
JK
854 /* For NULL RSEC (cleared FDE belonging to a discarded section)
855 the relocations are commonly cleared. We do not sanity check if
856 all these relocations are cleared as (1) relocations to
857 .gcc_except_table will remain uncleared (they will get dropped
858 with the drop of this unused FDE) and (2) BFD already safely drops
859 relocations of any type to .eh_frame by
860 elf_section_ignore_discarded_relocs.
861 TODO: The .gcc_except_table entries should be also filtered as
862 .eh_frame entries; or GCC could rather use COMDAT for them. */
863 SKIP_RELOCS (buf);
65765700
JJ
864 }
865
dcf507a6
RS
866 /* Try to interpret the CFA instructions and find the first
867 padding nop. Shrink this_inf's size so that it doesn't
ac685e6a 868 include the padding. */
bce613b9 869 length = get_DW_EH_PE_width (cie->fde_encoding, ptr_size);
ac685e6a
JJ
870 set_loc_count = 0;
871 insns_end = skip_non_nops (insns, end, length, &set_loc_count);
872 /* If we don't understand the CFA instructions, we can't know
873 what needs to be adjusted there. */
874 if (insns_end == NULL
875 /* For the time being we don't support DW_CFA_set_loc in
876 CIE instructions. */
877 || (set_loc_count && this_inf->cie))
878 goto free_no_table;
879 this_inf->size -= end - insns_end;
bce613b9
JJ
880 if (insns_end != end && this_inf->cie)
881 {
882 cie->initial_insn_length -= end - insns_end;
883 cie->length -= end - insns_end;
884 }
ac685e6a 885 if (set_loc_count
18e04883 886 && ((cie->fde_encoding & 0x70) == DW_EH_PE_pcrel
6b2cc140 887 || this_inf->make_relative))
ac685e6a
JJ
888 {
889 unsigned int cnt;
890 bfd_byte *p;
891
a50b1753
NC
892 this_inf->set_loc = (unsigned int *)
893 bfd_malloc ((set_loc_count + 1) * sizeof (unsigned int));
ac685e6a
JJ
894 REQUIRE (this_inf->set_loc);
895 this_inf->set_loc[0] = set_loc_count;
896 p = insns;
897 cnt = 0;
898 while (p < end)
899 {
900 if (*p == DW_CFA_set_loc)
901 this_inf->set_loc[++cnt] = p + 1 - start;
902 REQUIRE (skip_cfa_op (&p, end, length));
903 }
904 }
dcf507a6 905
ca92cecb 906 this_inf->removed = 1;
bce613b9
JJ
907 this_inf->fde_encoding = cie->fde_encoding;
908 this_inf->lsda_encoding = cie->lsda_encoding;
65765700
JJ
909 sec_info->count++;
910 }
ca92cecb 911 BFD_ASSERT (sec_info->count == num_entries);
184d07da 912 BFD_ASSERT (cie_count == num_cies);
65765700
JJ
913
914 elf_section_data (sec)->sec_info = sec_info;
dbaa2011 915 sec->sec_info_type = SEC_INFO_TYPE_EH_FRAME;
da44f4e5 916 if (!info->relocatable)
184d07da 917 {
da44f4e5 918 /* Keep info for merging cies. */
184d07da
RS
919 sec_info->cies = local_cies;
920 local_cies = NULL;
921 }
ca92cecb 922 goto success;
65765700 923
ca92cecb
RS
924 free_no_table:
925 (*info->callbacks->einfo)
926 (_("%P: error in %B(%A); no .eh_frame_hdr table will be created.\n"),
927 abfd, sec);
928 hdr_info->table = FALSE;
929 if (sec_info)
930 free (sec_info);
931 success:
932 if (ehbuf)
933 free (ehbuf);
ca92cecb
RS
934 if (local_cies)
935 free (local_cies);
936#undef REQUIRE
937}
bce613b9 938
9d0a14d3
RS
939/* Mark all relocations against CIE or FDE ENT, which occurs in
940 .eh_frame section SEC. COOKIE describes the relocations in SEC;
941 its "rel" field can be changed freely. */
942
943static bfd_boolean
944mark_entry (struct bfd_link_info *info, asection *sec,
945 struct eh_cie_fde *ent, elf_gc_mark_hook_fn gc_mark_hook,
946 struct elf_reloc_cookie *cookie)
947{
5dabe785 948 /* FIXME: octets_per_byte. */
9d0a14d3
RS
949 for (cookie->rel = cookie->rels + ent->reloc_index;
950 cookie->rel < cookie->relend
951 && cookie->rel->r_offset < ent->offset + ent->size;
952 cookie->rel++)
953 if (!_bfd_elf_gc_mark_reloc (info, sec, gc_mark_hook, cookie))
954 return FALSE;
955
956 return TRUE;
957}
958
959/* Mark all the relocations against FDEs that relate to code in input
960 section SEC. The FDEs belong to .eh_frame section EH_FRAME, whose
961 relocations are described by COOKIE. */
962
963bfd_boolean
964_bfd_elf_gc_mark_fdes (struct bfd_link_info *info, asection *sec,
965 asection *eh_frame, elf_gc_mark_hook_fn gc_mark_hook,
966 struct elf_reloc_cookie *cookie)
967{
184d07da 968 struct eh_cie_fde *fde, *cie;
9d0a14d3
RS
969
970 for (fde = elf_fde_list (sec); fde; fde = fde->u.fde.next_for_section)
971 {
972 if (!mark_entry (info, eh_frame, fde, gc_mark_hook, cookie))
973 return FALSE;
974
975 /* At this stage, all cie_inf fields point to local CIEs, so we
976 can use the same cookie to refer to them. */
977 cie = fde->u.fde.cie_inf;
c2aaac08 978 if (cie != NULL && !cie->u.cie.gc_mark)
9d0a14d3 979 {
184d07da 980 cie->u.cie.gc_mark = 1;
9d0a14d3
RS
981 if (!mark_entry (info, eh_frame, cie, gc_mark_hook, cookie))
982 return FALSE;
983 }
984 }
985 return TRUE;
986}
987
184d07da
RS
988/* Input section SEC of ABFD is an .eh_frame section that contains the
989 CIE described by CIE_INF. Return a version of CIE_INF that is going
990 to be kept in the output, adding CIE_INF to the output if necessary.
991
992 HDR_INFO is the .eh_frame_hdr information and COOKIE describes the
993 relocations in REL. */
994
995static struct eh_cie_fde *
18e04883 996find_merged_cie (bfd *abfd, struct bfd_link_info *info, asection *sec,
184d07da
RS
997 struct eh_frame_hdr_info *hdr_info,
998 struct elf_reloc_cookie *cookie,
999 struct eh_cie_fde *cie_inf)
1000{
1001 unsigned long r_symndx;
1002 struct cie *cie, *new_cie;
1003 Elf_Internal_Rela *rel;
1004 void **loc;
1005
1006 /* Use CIE_INF if we have already decided to keep it. */
1007 if (!cie_inf->removed)
1008 return cie_inf;
1009
1010 /* If we have merged CIE_INF with another CIE, use that CIE instead. */
1011 if (cie_inf->u.cie.merged)
1012 return cie_inf->u.cie.u.merged_with;
1013
1014 cie = cie_inf->u.cie.u.full_cie;
1015
1016 /* Assume we will need to keep CIE_INF. */
1017 cie_inf->removed = 0;
1018 cie_inf->u.cie.u.sec = sec;
1019
1020 /* If we are not merging CIEs, use CIE_INF. */
1021 if (cie == NULL)
1022 return cie_inf;
1023
1024 if (cie->per_encoding != DW_EH_PE_omit)
1025 {
18e04883
RS
1026 bfd_boolean per_binds_local;
1027
5087d529
AM
1028 /* Work out the address of personality routine, or at least
1029 enough info that we could calculate the address had we made a
1030 final section layout. The symbol on the reloc is enough,
1031 either the hash for a global, or (bfd id, index) pair for a
1032 local. The assumption here is that no one uses addends on
1033 the reloc. */
184d07da
RS
1034 rel = cookie->rels + cie->personality.reloc_index;
1035 memset (&cie->personality, 0, sizeof (cie->personality));
1036#ifdef BFD64
1037 if (elf_elfheader (abfd)->e_ident[EI_CLASS] == ELFCLASS64)
1038 r_symndx = ELF64_R_SYM (rel->r_info);
1039 else
1040#endif
1041 r_symndx = ELF32_R_SYM (rel->r_info);
1042 if (r_symndx >= cookie->locsymcount
1043 || ELF_ST_BIND (cookie->locsyms[r_symndx].st_info) != STB_LOCAL)
1044 {
1045 struct elf_link_hash_entry *h;
1046
1047 r_symndx -= cookie->extsymoff;
1048 h = cookie->sym_hashes[r_symndx];
1049
1050 while (h->root.type == bfd_link_hash_indirect
1051 || h->root.type == bfd_link_hash_warning)
1052 h = (struct elf_link_hash_entry *) h->root.u.i.link;
1053
1054 cie->personality.h = h;
18e04883 1055 per_binds_local = SYMBOL_REFERENCES_LOCAL (info, h);
184d07da
RS
1056 }
1057 else
1058 {
1059 Elf_Internal_Sym *sym;
1060 asection *sym_sec;
1061
1062 sym = &cookie->locsyms[r_symndx];
1063 sym_sec = bfd_section_from_elf_index (abfd, sym->st_shndx);
1064 if (sym_sec == NULL)
1065 return cie_inf;
1066
1067 if (sym_sec->kept_section != NULL)
1068 sym_sec = sym_sec->kept_section;
1069 if (sym_sec->output_section == NULL)
1070 return cie_inf;
1071
1072 cie->local_personality = 1;
5087d529
AM
1073 cie->personality.sym.bfd_id = abfd->id;
1074 cie->personality.sym.index = r_symndx;
18e04883
RS
1075 per_binds_local = TRUE;
1076 }
1077
1078 if (per_binds_local
1079 && info->shared
5b69e357 1080 && !info->relocatable
18e04883
RS
1081 && (cie->per_encoding & 0x70) == DW_EH_PE_absptr
1082 && (get_elf_backend_data (abfd)
1083 ->elf_backend_can_make_relative_eh_frame (abfd, info, sec)))
1084 {
1085 cie_inf->u.cie.make_per_encoding_relative = 1;
1086 cie_inf->u.cie.per_encoding_relative = 1;
184d07da
RS
1087 }
1088 }
1089
1090 /* See if we can merge this CIE with an earlier one. */
184d07da
RS
1091 cie_compute_hash (cie);
1092 if (hdr_info->cies == NULL)
1093 {
1094 hdr_info->cies = htab_try_create (1, cie_hash, cie_eq, free);
1095 if (hdr_info->cies == NULL)
1096 return cie_inf;
1097 }
1098 loc = htab_find_slot_with_hash (hdr_info->cies, cie, cie->hash, INSERT);
1099 if (loc == NULL)
1100 return cie_inf;
1101
1102 new_cie = (struct cie *) *loc;
1103 if (new_cie == NULL)
1104 {
1105 /* Keep CIE_INF and record it in the hash table. */
a50b1753 1106 new_cie = (struct cie *) malloc (sizeof (struct cie));
184d07da
RS
1107 if (new_cie == NULL)
1108 return cie_inf;
1109
1110 memcpy (new_cie, cie, sizeof (struct cie));
1111 *loc = new_cie;
1112 }
1113 else
1114 {
1115 /* Merge CIE_INF with NEW_CIE->CIE_INF. */
1116 cie_inf->removed = 1;
1117 cie_inf->u.cie.merged = 1;
1118 cie_inf->u.cie.u.merged_with = new_cie->cie_inf;
1119 if (cie_inf->u.cie.make_lsda_relative)
1120 new_cie->cie_inf->u.cie.make_lsda_relative = 1;
1121 }
1122 return new_cie->cie_inf;
1123}
1124
ca92cecb
RS
1125/* This function is called for each input file before the .eh_frame
1126 section is relocated. It discards duplicate CIEs and FDEs for discarded
1127 functions. The function returns TRUE iff any entries have been
1128 deleted. */
1129
1130bfd_boolean
1131_bfd_elf_discard_section_eh_frame
1132 (bfd *abfd, struct bfd_link_info *info, asection *sec,
1133 bfd_boolean (*reloc_symbol_deleted_p) (bfd_vma, void *),
1134 struct elf_reloc_cookie *cookie)
1135{
184d07da 1136 struct eh_cie_fde *ent;
ca92cecb
RS
1137 struct eh_frame_sec_info *sec_info;
1138 struct eh_frame_hdr_info *hdr_info;
1139 unsigned int ptr_size, offset;
1140
dbaa2011 1141 if (sec->sec_info_type != SEC_INFO_TYPE_EH_FRAME)
4d16d575
AM
1142 return FALSE;
1143
ca92cecb
RS
1144 sec_info = (struct eh_frame_sec_info *) elf_section_data (sec)->sec_info;
1145 if (sec_info == NULL)
1146 return FALSE;
1147
e41b3a13
JJ
1148 ptr_size = (get_elf_backend_data (sec->owner)
1149 ->elf_backend_eh_frame_address_size (sec->owner, sec));
1150
ca92cecb 1151 hdr_info = &elf_hash_table (info)->eh_info;
fda3ecf2 1152 for (ent = sec_info->entry; ent < sec_info->entry + sec_info->count; ++ent)
f60e73e9
AM
1153 if (ent->size == 4)
1154 /* There should only be one zero terminator, on the last input
1155 file supplying .eh_frame (crtend.o). Remove any others. */
1156 ent->removed = sec->map_head.s != NULL;
c2aaac08 1157 else if (!ent->cie && ent->u.fde.cie_inf != NULL)
fda3ecf2 1158 {
e41b3a13
JJ
1159 bfd_boolean keep;
1160 if ((sec->flags & SEC_LINKER_CREATED) != 0 && cookie->rels == NULL)
1161 {
1162 unsigned int width
1163 = get_DW_EH_PE_width (ent->fde_encoding, ptr_size);
1164 bfd_vma value
1165 = read_value (abfd, sec->contents + ent->offset + 8 + width,
1166 width, get_DW_EH_PE_signed (ent->fde_encoding));
1167 keep = value != 0;
1168 }
1169 else
1170 {
1171 cookie->rel = cookie->rels + ent->reloc_index;
1172 /* FIXME: octets_per_byte. */
1173 BFD_ASSERT (cookie->rel < cookie->relend
1174 && cookie->rel->r_offset == ent->offset + 8);
1175 keep = !(*reloc_symbol_deleted_p) (ent->offset + 8, cookie);
1176 }
1177 if (keep)
bce613b9 1178 {
ca92cecb 1179 if (info->shared
18e04883 1180 && (((ent->fde_encoding & 0x70) == DW_EH_PE_absptr
6b2cc140 1181 && ent->make_relative == 0)
18e04883 1182 || (ent->fde_encoding & 0x70) == DW_EH_PE_aligned))
ca92cecb
RS
1183 {
1184 /* If a shared library uses absolute pointers
1185 which we cannot turn into PC relative,
1186 don't create the binary search table,
1187 since it is affected by runtime relocations. */
1188 hdr_info->table = FALSE;
1189 (*info->callbacks->einfo)
c2aaac08 1190 (_("%P: FDE encoding in %B(%A) prevents .eh_frame_hdr"
ca92cecb
RS
1191 " table being created.\n"), abfd, sec);
1192 }
1193 ent->removed = 0;
1194 hdr_info->fde_count++;
18e04883
RS
1195 ent->u.fde.cie_inf = find_merged_cie (abfd, info, sec, hdr_info,
1196 cookie, ent->u.fde.cie_inf);
bce613b9 1197 }
ca92cecb
RS
1198 }
1199
184d07da
RS
1200 if (sec_info->cies)
1201 {
1202 free (sec_info->cies);
1203 sec_info->cies = NULL;
1204 }
1205
ca92cecb
RS
1206 offset = 0;
1207 for (ent = sec_info->entry; ent < sec_info->entry + sec_info->count; ++ent)
1208 if (!ent->removed)
1209 {
353057a5
RS
1210 ent->new_offset = offset;
1211 offset += size_of_output_cie_fde (ent, ptr_size);
fda3ecf2 1212 }
65765700 1213
eea6121a 1214 sec->rawsize = sec->size;
353057a5 1215 sec->size = offset;
353057a5 1216 return offset != sec->rawsize;
65765700
JJ
1217}
1218
1219/* This function is called for .eh_frame_hdr section after
1220 _bfd_elf_discard_section_eh_frame has been called on all .eh_frame
1221 input sections. It finalizes the size of .eh_frame_hdr section. */
1222
b34976b6 1223bfd_boolean
c39a58e6 1224_bfd_elf_discard_section_eh_frame_hdr (bfd *abfd, struct bfd_link_info *info)
65765700 1225{
126495ed 1226 struct elf_link_hash_table *htab;
65765700 1227 struct eh_frame_hdr_info *hdr_info;
126495ed 1228 asection *sec;
65765700 1229
126495ed
AM
1230 htab = elf_hash_table (info);
1231 hdr_info = &htab->eh_info;
bce613b9 1232
184d07da
RS
1233 if (hdr_info->cies != NULL)
1234 {
1235 htab_delete (hdr_info->cies);
1236 hdr_info->cies = NULL;
1237 }
1238
126495ed
AM
1239 sec = hdr_info->hdr_sec;
1240 if (sec == NULL)
b34976b6 1241 return FALSE;
126495ed 1242
eea6121a 1243 sec->size = EH_FRAME_HDR_SIZE;
65765700 1244 if (hdr_info->table)
eea6121a 1245 sec->size += 4 + hdr_info->fde_count * 8;
65765700 1246
12bd6957 1247 elf_eh_frame_hdr (abfd) = sec;
b34976b6 1248 return TRUE;
65765700
JJ
1249}
1250
9a2a56cc
AM
1251/* Return true if there is at least one non-empty .eh_frame section in
1252 input files. Can only be called after ld has mapped input to
1253 output sections, and before sections are stripped. */
1254bfd_boolean
1255_bfd_elf_eh_frame_present (struct bfd_link_info *info)
1256{
1257 asection *eh = bfd_get_section_by_name (info->output_bfd, ".eh_frame");
1258
1259 if (eh == NULL)
1260 return FALSE;
1261
1262 /* Count only sections which have at least a single CIE or FDE.
1263 There cannot be any CIE or FDE <= 8 bytes. */
1264 for (eh = eh->map_head.s; eh != NULL; eh = eh->map_head.s)
1265 if (eh->size > 8)
1266 return TRUE;
1267
1268 return FALSE;
1269}
1270
68f69152
JJ
1271/* This function is called from size_dynamic_sections.
1272 It needs to decide whether .eh_frame_hdr should be output or not,
8423293d
AM
1273 because when the dynamic symbol table has been sized it is too late
1274 to strip sections. */
68f69152 1275
b34976b6 1276bfd_boolean
c39a58e6 1277_bfd_elf_maybe_strip_eh_frame_hdr (struct bfd_link_info *info)
68f69152 1278{
126495ed 1279 struct elf_link_hash_table *htab;
68f69152
JJ
1280 struct eh_frame_hdr_info *hdr_info;
1281
126495ed
AM
1282 htab = elf_hash_table (info);
1283 hdr_info = &htab->eh_info;
1284 if (hdr_info->hdr_sec == NULL)
b34976b6 1285 return TRUE;
68f69152 1286
9a2a56cc
AM
1287 if (bfd_is_abs_section (hdr_info->hdr_sec->output_section)
1288 || !info->eh_frame_hdr
1289 || !_bfd_elf_eh_frame_present (info))
68f69152 1290 {
8423293d 1291 hdr_info->hdr_sec->flags |= SEC_EXCLUDE;
126495ed 1292 hdr_info->hdr_sec = NULL;
b34976b6 1293 return TRUE;
68f69152 1294 }
126495ed 1295
b34976b6
AM
1296 hdr_info->table = TRUE;
1297 return TRUE;
68f69152
JJ
1298}
1299
65765700
JJ
1300/* Adjust an address in the .eh_frame section. Given OFFSET within
1301 SEC, this returns the new offset in the adjusted .eh_frame section,
1302 or -1 if the address refers to a CIE/FDE which has been removed
1303 or to offset with dynamic relocation which is no longer needed. */
1304
1305bfd_vma
c39a58e6 1306_bfd_elf_eh_frame_section_offset (bfd *output_bfd ATTRIBUTE_UNUSED,
3d540e93 1307 struct bfd_link_info *info ATTRIBUTE_UNUSED,
c39a58e6
AM
1308 asection *sec,
1309 bfd_vma offset)
65765700
JJ
1310{
1311 struct eh_frame_sec_info *sec_info;
1312 unsigned int lo, hi, mid;
1313
dbaa2011 1314 if (sec->sec_info_type != SEC_INFO_TYPE_EH_FRAME)
65765700 1315 return offset;
a50b1753 1316 sec_info = (struct eh_frame_sec_info *) elf_section_data (sec)->sec_info;
65765700 1317
eea6121a
AM
1318 if (offset >= sec->rawsize)
1319 return offset - sec->rawsize + sec->size;
65765700
JJ
1320
1321 lo = 0;
1322 hi = sec_info->count;
1323 mid = 0;
1324 while (lo < hi)
1325 {
1326 mid = (lo + hi) / 2;
1327 if (offset < sec_info->entry[mid].offset)
1328 hi = mid;
1329 else if (offset
1330 >= sec_info->entry[mid].offset + sec_info->entry[mid].size)
1331 lo = mid + 1;
1332 else
1333 break;
1334 }
1335
1336 BFD_ASSERT (lo < hi);
1337
1338 /* FDE or CIE was removed. */
1339 if (sec_info->entry[mid].removed)
1340 return (bfd_vma) -1;
1341
18e04883
RS
1342 /* If converting personality pointers to DW_EH_PE_pcrel, there will be
1343 no need for run-time relocation against the personality field. */
1344 if (sec_info->entry[mid].cie
1345 && sec_info->entry[mid].u.cie.make_per_encoding_relative
1346 && offset == (sec_info->entry[mid].offset + 8
1347 + sec_info->entry[mid].u.cie.personality_offset))
1348 return (bfd_vma) -2;
1349
65765700
JJ
1350 /* If converting to DW_EH_PE_pcrel, there will be no need for run-time
1351 relocation against FDE's initial_location field. */
fda3ecf2 1352 if (!sec_info->entry[mid].cie
6b2cc140 1353 && sec_info->entry[mid].make_relative
353057a5
RS
1354 && offset == sec_info->entry[mid].offset + 8)
1355 return (bfd_vma) -2;
65765700 1356
9e2a4898
JJ
1357 /* If converting LSDA pointers to DW_EH_PE_pcrel, there will be no need
1358 for run-time relocation against LSDA field. */
fda3ecf2 1359 if (!sec_info->entry[mid].cie
9f4b847e
RS
1360 && sec_info->entry[mid].u.fde.cie_inf->u.cie.make_lsda_relative
1361 && offset == (sec_info->entry[mid].offset + 8
1362 + sec_info->entry[mid].lsda_offset))
1363 return (bfd_vma) -2;
9e2a4898 1364
ac685e6a
JJ
1365 /* If converting to DW_EH_PE_pcrel, there will be no need for run-time
1366 relocation against DW_CFA_set_loc's arguments. */
1367 if (sec_info->entry[mid].set_loc
6b2cc140 1368 && sec_info->entry[mid].make_relative
ac685e6a
JJ
1369 && (offset >= sec_info->entry[mid].offset + 8
1370 + sec_info->entry[mid].set_loc[1]))
1371 {
1372 unsigned int cnt;
1373
1374 for (cnt = 1; cnt <= sec_info->entry[mid].set_loc[0]; cnt++)
1375 if (offset == sec_info->entry[mid].offset + 8
1376 + sec_info->entry[mid].set_loc[cnt])
1377 return (bfd_vma) -2;
1378 }
1379
353057a5 1380 /* Any new augmentation bytes go before the first relocation. */
c68836a9 1381 return (offset + sec_info->entry[mid].new_offset
353057a5
RS
1382 - sec_info->entry[mid].offset
1383 + extra_augmentation_string_bytes (sec_info->entry + mid)
1384 + extra_augmentation_data_bytes (sec_info->entry + mid));
65765700
JJ
1385}
1386
1387/* Write out .eh_frame section. This is called with the relocated
1388 contents. */
1389
b34976b6 1390bfd_boolean
c39a58e6
AM
1391_bfd_elf_write_section_eh_frame (bfd *abfd,
1392 struct bfd_link_info *info,
1393 asection *sec,
1394 bfd_byte *contents)
65765700
JJ
1395{
1396 struct eh_frame_sec_info *sec_info;
126495ed 1397 struct elf_link_hash_table *htab;
65765700 1398 struct eh_frame_hdr_info *hdr_info;
65765700 1399 unsigned int ptr_size;
fda3ecf2 1400 struct eh_cie_fde *ent;
4de1599b 1401 bfd_size_type sec_size;
65765700 1402
dbaa2011 1403 if (sec->sec_info_type != SEC_INFO_TYPE_EH_FRAME)
5dabe785 1404 /* FIXME: octets_per_byte. */
c39a58e6 1405 return bfd_set_section_contents (abfd, sec->output_section, contents,
eea6121a 1406 sec->output_offset, sec->size);
8c946ed5
RS
1407
1408 ptr_size = (get_elf_backend_data (abfd)
1409 ->elf_backend_eh_frame_address_size (abfd, sec));
1410 BFD_ASSERT (ptr_size != 0);
1411
a50b1753 1412 sec_info = (struct eh_frame_sec_info *) elf_section_data (sec)->sec_info;
126495ed
AM
1413 htab = elf_hash_table (info);
1414 hdr_info = &htab->eh_info;
3472e2e9 1415
126495ed 1416 if (hdr_info->table && hdr_info->array == NULL)
a50b1753
NC
1417 hdr_info->array = (struct eh_frame_array_ent *)
1418 bfd_malloc (hdr_info->fde_count * sizeof(*hdr_info->array));
126495ed
AM
1419 if (hdr_info->array == NULL)
1420 hdr_info = NULL;
65765700 1421
353057a5
RS
1422 /* The new offsets can be bigger or smaller than the original offsets.
1423 We therefore need to make two passes over the section: one backward
1424 pass to move entries up and one forward pass to move entries down.
1425 The two passes won't interfere with each other because entries are
1426 not reordered */
1427 for (ent = sec_info->entry + sec_info->count; ent-- != sec_info->entry;)
1428 if (!ent->removed && ent->new_offset > ent->offset)
fc802241 1429 memmove (contents + ent->new_offset, contents + ent->offset, ent->size);
353057a5
RS
1430
1431 for (ent = sec_info->entry; ent < sec_info->entry + sec_info->count; ++ent)
1432 if (!ent->removed && ent->new_offset < ent->offset)
fc802241 1433 memmove (contents + ent->new_offset, contents + ent->offset, ent->size);
353057a5 1434
fda3ecf2 1435 for (ent = sec_info->entry; ent < sec_info->entry + sec_info->count; ++ent)
65765700 1436 {
353057a5
RS
1437 unsigned char *buf, *end;
1438 unsigned int new_size;
1439
fda3ecf2
AM
1440 if (ent->removed)
1441 continue;
1442
353057a5
RS
1443 if (ent->size == 4)
1444 {
1445 /* Any terminating FDE must be at the end of the section. */
1446 BFD_ASSERT (ent == sec_info->entry + sec_info->count - 1);
1447 continue;
1448 }
1449
fc802241 1450 buf = contents + ent->new_offset;
353057a5
RS
1451 end = buf + ent->size;
1452 new_size = size_of_output_cie_fde (ent, ptr_size);
1453
a34a056a
L
1454 /* Update the size. It may be shrinked. */
1455 bfd_put_32 (abfd, new_size - 4, buf);
1456
1457 /* Filling the extra bytes with DW_CFA_nops. */
353057a5 1458 if (new_size != ent->size)
a34a056a 1459 memset (end, 0, new_size - ent->size);
353057a5 1460
fda3ecf2 1461 if (ent->cie)
65765700
JJ
1462 {
1463 /* CIE */
353057a5 1464 if (ent->make_relative
9f4b847e 1465 || ent->u.cie.make_lsda_relative
6b2cc140 1466 || ent->u.cie.per_encoding_relative)
65765700 1467 {
f075ee0c 1468 char *aug;
353057a5 1469 unsigned int action, extra_string, extra_data;
2c42be65 1470 unsigned int per_width, per_encoding;
65765700 1471
9e2a4898 1472 /* Need to find 'R' or 'L' augmentation's argument and modify
65765700 1473 DW_EH_PE_* value. */
353057a5 1474 action = ((ent->make_relative ? 1 : 0)
9f4b847e 1475 | (ent->u.cie.make_lsda_relative ? 2 : 0)
6b2cc140 1476 | (ent->u.cie.per_encoding_relative ? 4 : 0));
353057a5
RS
1477 extra_string = extra_augmentation_string_bytes (ent);
1478 extra_data = extra_augmentation_data_bytes (ent);
1479
65765700
JJ
1480 /* Skip length, id and version. */
1481 buf += 9;
f075ee0c
AM
1482 aug = (char *) buf;
1483 buf += strlen (aug) + 1;
2c42be65
RS
1484 skip_leb128 (&buf, end);
1485 skip_leb128 (&buf, end);
1486 skip_leb128 (&buf, end);
65765700
JJ
1487 if (*aug == 'z')
1488 {
353057a5
RS
1489 /* The uleb128 will always be a single byte for the kind
1490 of augmentation strings that we're prepared to handle. */
1491 *buf++ += extra_data;
65765700
JJ
1492 aug++;
1493 }
1494
353057a5
RS
1495 /* Make room for the new augmentation string and data bytes. */
1496 memmove (buf + extra_string + extra_data, buf, end - buf);
f075ee0c 1497 memmove (aug + extra_string, aug, buf - (bfd_byte *) aug);
353057a5 1498 buf += extra_string;
2c42be65 1499 end += extra_string + extra_data;
353057a5
RS
1500
1501 if (ent->add_augmentation_size)
1502 {
1503 *aug++ = 'z';
1504 *buf++ = extra_data - 1;
1505 }
6b2cc140 1506 if (ent->u.cie.add_fde_encoding)
353057a5
RS
1507 {
1508 BFD_ASSERT (action & 1);
1509 *aug++ = 'R';
30af5962 1510 *buf++ = make_pc_relative (DW_EH_PE_absptr, ptr_size);
353057a5
RS
1511 action &= ~1;
1512 }
1513
9e2a4898 1514 while (action)
65765700
JJ
1515 switch (*aug++)
1516 {
1517 case 'L':
9e2a4898
JJ
1518 if (action & 2)
1519 {
fda3ecf2 1520 BFD_ASSERT (*buf == ent->lsda_encoding);
30af5962 1521 *buf = make_pc_relative (*buf, ptr_size);
9e2a4898
JJ
1522 action &= ~2;
1523 }
65765700
JJ
1524 buf++;
1525 break;
1526 case 'P':
18e04883 1527 if (ent->u.cie.make_per_encoding_relative)
a10917ef 1528 *buf = make_pc_relative (*buf, ptr_size);
65765700 1529 per_encoding = *buf++;
3472e2e9 1530 per_width = get_DW_EH_PE_width (per_encoding, ptr_size);
65765700 1531 BFD_ASSERT (per_width != 0);
09ae86c2 1532 BFD_ASSERT (((per_encoding & 0x70) == DW_EH_PE_pcrel)
6b2cc140 1533 == ent->u.cie.per_encoding_relative);
18e04883 1534 if ((per_encoding & 0x70) == DW_EH_PE_aligned)
65765700
JJ
1535 buf = (contents
1536 + ((buf - contents + per_width - 1)
1537 & ~((bfd_size_type) per_width - 1)));
09ae86c2
JJ
1538 if (action & 4)
1539 {
fda3ecf2
AM
1540 bfd_vma val;
1541
1542 val = read_value (abfd, buf, per_width,
1543 get_DW_EH_PE_signed (per_encoding));
18e04883
RS
1544 if (ent->u.cie.make_per_encoding_relative)
1545 val -= (sec->output_section->vma
1546 + sec->output_offset
1547 + (buf - contents));
1548 else
1549 {
1550 val += (bfd_vma) ent->offset - ent->new_offset;
1551 val -= extra_string + extra_data;
1552 }
fda3ecf2 1553 write_value (abfd, buf, val, per_width);
09ae86c2
JJ
1554 action &= ~4;
1555 }
65765700
JJ
1556 buf += per_width;
1557 break;
9e2a4898
JJ
1558 case 'R':
1559 if (action & 1)
1560 {
fda3ecf2 1561 BFD_ASSERT (*buf == ent->fde_encoding);
30af5962 1562 *buf = make_pc_relative (*buf, ptr_size);
9e2a4898
JJ
1563 action &= ~1;
1564 }
1565 buf++;
1566 break;
63752a75
JJ
1567 case 'S':
1568 break;
65765700
JJ
1569 default:
1570 BFD_FAIL ();
1571 }
65765700
JJ
1572 }
1573 }
353057a5 1574 else
65765700
JJ
1575 {
1576 /* FDE */
fda3ecf2 1577 bfd_vma value, address;
9e2a4898 1578 unsigned int width;
ac685e6a 1579 bfd_byte *start;
155eaaa0 1580 struct eh_cie_fde *cie;
65765700 1581
b34976b6 1582 /* Skip length. */
155eaaa0 1583 cie = ent->u.fde.cie_inf;
65765700 1584 buf += 4;
fc802241
RS
1585 value = ((ent->new_offset + sec->output_offset + 4)
1586 - (cie->new_offset + cie->u.cie.u.sec->output_offset));
fda3ecf2 1587 bfd_put_32 (abfd, value, buf);
5b69e357
AM
1588 if (info->relocatable)
1589 continue;
65765700 1590 buf += 4;
fda3ecf2
AM
1591 width = get_DW_EH_PE_width (ent->fde_encoding, ptr_size);
1592 value = read_value (abfd, buf, width,
1593 get_DW_EH_PE_signed (ent->fde_encoding));
1594 address = value;
9e2a4898 1595 if (value)
65765700 1596 {
18e04883 1597 switch (ent->fde_encoding & 0x70)
9e2a4898 1598 {
9e2a4898
JJ
1599 case DW_EH_PE_textrel:
1600 BFD_ASSERT (hdr_info == NULL);
1601 break;
1602 case DW_EH_PE_datarel:
1603 {
cd9e734e
AM
1604 switch (abfd->arch_info->arch)
1605 {
1606 case bfd_arch_ia64:
1607 BFD_ASSERT (elf_gp (abfd) != 0);
1608 address += elf_gp (abfd);
1609 break;
1610 default:
1611 (*info->callbacks->einfo)
1612 (_("%P: DW_EH_PE_datarel unspecified"
1613 " for this architecture.\n"));
1614 /* Fall thru */
1615 case bfd_arch_frv:
1616 case bfd_arch_i386:
1617 BFD_ASSERT (htab->hgot != NULL
1618 && ((htab->hgot->root.type
1619 == bfd_link_hash_defined)
1620 || (htab->hgot->root.type
1621 == bfd_link_hash_defweak)));
1622 address
1623 += (htab->hgot->root.u.def.value
1624 + htab->hgot->root.u.def.section->output_offset
1625 + (htab->hgot->root.u.def.section->output_section
1626 ->vma));
1627 break;
1628 }
9e2a4898
JJ
1629 }
1630 break;
1631 case DW_EH_PE_pcrel:
9c47c4c1 1632 value += (bfd_vma) ent->offset - ent->new_offset;
fc802241
RS
1633 address += (sec->output_section->vma
1634 + sec->output_offset
1635 + ent->offset + 8);
9e2a4898
JJ
1636 break;
1637 }
6b2cc140 1638 if (ent->make_relative)
fc802241
RS
1639 value -= (sec->output_section->vma
1640 + sec->output_offset
1641 + ent->new_offset + 8);
9e2a4898 1642 write_value (abfd, buf, value, width);
65765700
JJ
1643 }
1644
ac685e6a
JJ
1645 start = buf;
1646
65765700
JJ
1647 if (hdr_info)
1648 {
cd9e734e
AM
1649 /* The address calculation may overflow, giving us a
1650 value greater than 4G on a 32-bit target when
1651 dwarf_vma is 64-bit. */
1652 if (sizeof (address) > 4 && ptr_size == 4)
1653 address &= 0xffffffff;
65765700 1654 hdr_info->array[hdr_info->array_count].initial_loc = address;
ae6c7e33
AM
1655 hdr_info->array[hdr_info->array_count].range
1656 = read_value (abfd, buf + width, width, FALSE);
65765700 1657 hdr_info->array[hdr_info->array_count++].fde
fc802241
RS
1658 = (sec->output_section->vma
1659 + sec->output_offset
1660 + ent->new_offset);
65765700 1661 }
9e2a4898 1662
18e04883 1663 if ((ent->lsda_encoding & 0x70) == DW_EH_PE_pcrel
9f4b847e 1664 || cie->u.cie.make_lsda_relative)
9e2a4898 1665 {
fda3ecf2
AM
1666 buf += ent->lsda_offset;
1667 width = get_DW_EH_PE_width (ent->lsda_encoding, ptr_size);
84f97cb6 1668 value = read_value (abfd, buf, width,
fda3ecf2 1669 get_DW_EH_PE_signed (ent->lsda_encoding));
9e2a4898
JJ
1670 if (value)
1671 {
18e04883 1672 if ((ent->lsda_encoding & 0x70) == DW_EH_PE_pcrel)
9c47c4c1 1673 value += (bfd_vma) ent->offset - ent->new_offset;
9f4b847e 1674 else if (cie->u.cie.make_lsda_relative)
fc802241
RS
1675 value -= (sec->output_section->vma
1676 + sec->output_offset
1677 + ent->new_offset + 8 + ent->lsda_offset);
9e2a4898
JJ
1678 write_value (abfd, buf, value, width);
1679 }
1680 }
6b2cc140 1681 else if (ent->add_augmentation_size)
353057a5
RS
1682 {
1683 /* Skip the PC and length and insert a zero byte for the
1684 augmentation size. */
1685 buf += width * 2;
1686 memmove (buf + 1, buf, end - buf);
1687 *buf = 0;
1688 }
ac685e6a
JJ
1689
1690 if (ent->set_loc)
1691 {
1692 /* Adjust DW_CFA_set_loc. */
91d6fa6a 1693 unsigned int cnt;
ac685e6a
JJ
1694 bfd_vma new_offset;
1695
1696 width = get_DW_EH_PE_width (ent->fde_encoding, ptr_size);
1697 new_offset = ent->new_offset + 8
1698 + extra_augmentation_string_bytes (ent)
1699 + extra_augmentation_data_bytes (ent);
1700
1701 for (cnt = 1; cnt <= ent->set_loc[0]; cnt++)
1702 {
ac685e6a
JJ
1703 buf = start + ent->set_loc[cnt];
1704
1705 value = read_value (abfd, buf, width,
1706 get_DW_EH_PE_signed (ent->fde_encoding));
1707 if (!value)
1708 continue;
1709
18e04883 1710 if ((ent->fde_encoding & 0x70) == DW_EH_PE_pcrel)
9c47c4c1 1711 value += (bfd_vma) ent->offset + 8 - new_offset;
6b2cc140 1712 if (ent->make_relative)
fc802241
RS
1713 value -= (sec->output_section->vma
1714 + sec->output_offset
1715 + new_offset + ent->set_loc[cnt]);
ac685e6a
JJ
1716 write_value (abfd, buf, value, width);
1717 }
1718 }
65765700 1719 }
65765700
JJ
1720 }
1721
a34a056a
L
1722 /* We don't align the section to its section alignment since the
1723 runtime library only expects all CIE/FDE records aligned at
4e591bc1 1724 the pointer size. _bfd_elf_discard_section_eh_frame should
a34a056a
L
1725 have padded CIE/FDE records to multiple of pointer size with
1726 size_of_output_cie_fde. */
4de1599b
AM
1727 sec_size = sec->size;
1728 if (sec_info->count != 0
1729 && sec_info->entry[sec_info->count - 1].size == 4)
1730 sec_size -= 4;
1731 if ((sec_size % ptr_size) != 0)
a34a056a 1732 abort ();
a5eb27e6 1733
5dabe785 1734 /* FIXME: octets_per_byte. */
65765700 1735 return bfd_set_section_contents (abfd, sec->output_section,
3472e2e9
AM
1736 contents, (file_ptr) sec->output_offset,
1737 sec->size);
65765700
JJ
1738}
1739
1740/* Helper function used to sort .eh_frame_hdr search table by increasing
1741 VMA of FDE initial location. */
1742
1743static int
c39a58e6 1744vma_compare (const void *a, const void *b)
65765700 1745{
a50b1753
NC
1746 const struct eh_frame_array_ent *p = (const struct eh_frame_array_ent *) a;
1747 const struct eh_frame_array_ent *q = (const struct eh_frame_array_ent *) b;
65765700
JJ
1748 if (p->initial_loc > q->initial_loc)
1749 return 1;
1750 if (p->initial_loc < q->initial_loc)
1751 return -1;
c2aaac08
AM
1752 if (p->range > q->range)
1753 return 1;
1754 if (p->range < q->range)
1755 return -1;
65765700
JJ
1756 return 0;
1757}
1758
1759/* Write out .eh_frame_hdr section. This must be called after
1760 _bfd_elf_write_section_eh_frame has been called on all input
1761 .eh_frame sections.
1762 .eh_frame_hdr format:
1763 ubyte version (currently 1)
1764 ubyte eh_frame_ptr_enc (DW_EH_PE_* encoding of pointer to start of
1765 .eh_frame section)
1766 ubyte fde_count_enc (DW_EH_PE_* encoding of total FDE count
1767 number (or DW_EH_PE_omit if there is no
1768 binary search table computed))
1769 ubyte table_enc (DW_EH_PE_* encoding of binary search table,
1770 or DW_EH_PE_omit if not present.
1771 DW_EH_PE_datarel is using address of
1772 .eh_frame_hdr section start as base)
1773 [encoded] eh_frame_ptr (pointer to start of .eh_frame section)
1774 optionally followed by:
1775 [encoded] fde_count (total number of FDEs in .eh_frame section)
1776 fde_count x [encoded] initial_loc, fde
1777 (array of encoded pairs containing
1778 FDE initial_location field and FDE address,
5ed6aba4 1779 sorted by increasing initial_loc). */
65765700 1780
b34976b6 1781bfd_boolean
c39a58e6 1782_bfd_elf_write_section_eh_frame_hdr (bfd *abfd, struct bfd_link_info *info)
65765700 1783{
126495ed 1784 struct elf_link_hash_table *htab;
65765700 1785 struct eh_frame_hdr_info *hdr_info;
126495ed 1786 asection *sec;
9f7c3e5e 1787 bfd_boolean retval = TRUE;
65765700 1788
126495ed
AM
1789 htab = elf_hash_table (info);
1790 hdr_info = &htab->eh_info;
1791 sec = hdr_info->hdr_sec;
65765700 1792
9f7c3e5e 1793 if (info->eh_frame_hdr && sec != NULL)
5ed6aba4 1794 {
9f7c3e5e
AM
1795 bfd_byte *contents;
1796 asection *eh_frame_sec;
1797 bfd_size_type size;
1798 bfd_vma encoded_eh_frame;
1799
1800 size = EH_FRAME_HDR_SIZE;
1801 if (hdr_info->array && hdr_info->array_count == hdr_info->fde_count)
1802 size += 4 + hdr_info->fde_count * 8;
1803 contents = (bfd_byte *) bfd_malloc (size);
1804 if (contents == NULL)
1805 return FALSE;
65765700 1806
9f7c3e5e
AM
1807 eh_frame_sec = bfd_get_section_by_name (abfd, ".eh_frame");
1808 if (eh_frame_sec == NULL)
1809 {
1810 free (contents);
1811 return FALSE;
1812 }
ec3391e7 1813
9f7c3e5e
AM
1814 memset (contents, 0, EH_FRAME_HDR_SIZE);
1815 /* Version. */
1816 contents[0] = 1;
1817 /* .eh_frame offset. */
1818 contents[1] = get_elf_backend_data (abfd)->elf_backend_encode_eh_address
1819 (abfd, info, eh_frame_sec, 0, sec, 4, &encoded_eh_frame);
ec3391e7 1820
9f7c3e5e
AM
1821 if (hdr_info->array && hdr_info->array_count == hdr_info->fde_count)
1822 {
1823 /* FDE count encoding. */
1824 contents[2] = DW_EH_PE_udata4;
1825 /* Search table encoding. */
1826 contents[3] = DW_EH_PE_datarel | DW_EH_PE_sdata4;
1827 }
1828 else
1829 {
1830 contents[2] = DW_EH_PE_omit;
1831 contents[3] = DW_EH_PE_omit;
1832 }
1833 bfd_put_32 (abfd, encoded_eh_frame, contents + 4);
65765700 1834
9f7c3e5e 1835 if (contents[2] != DW_EH_PE_omit)
65765700 1836 {
9f7c3e5e
AM
1837 unsigned int i;
1838
1839 bfd_put_32 (abfd, hdr_info->fde_count, contents + EH_FRAME_HDR_SIZE);
1840 qsort (hdr_info->array, hdr_info->fde_count,
1841 sizeof (*hdr_info->array), vma_compare);
1842 for (i = 0; i < hdr_info->fde_count; i++)
1843 {
ae6c7e33
AM
1844 bfd_vma val;
1845
1846 val = hdr_info->array[i].initial_loc - sec->output_section->vma;
1847 val = ((val & 0xffffffff) ^ 0x80000000) - 0x80000000;
1848 if (elf_elfheader (abfd)->e_ident[EI_CLASS] == ELFCLASS64
1849 && (hdr_info->array[i].initial_loc
1850 != sec->output_section->vma + val))
aa8f4d1e 1851 (*info->callbacks->einfo)
c2aaac08 1852 (_("%X%P: .eh_frame_hdr table[%u] PC overflow.\n"), i);
ae6c7e33 1853 bfd_put_32 (abfd, val, contents + EH_FRAME_HDR_SIZE + i * 8 + 4);
aa8f4d1e 1854
ae6c7e33
AM
1855 val = hdr_info->array[i].fde - sec->output_section->vma;
1856 val = ((val & 0xffffffff) ^ 0x80000000) - 0x80000000;
1857 if (elf_elfheader (abfd)->e_ident[EI_CLASS] == ELFCLASS64
1858 && (hdr_info->array[i].fde
1859 != sec->output_section->vma + val))
aa8f4d1e 1860 (*info->callbacks->einfo)
c2aaac08 1861 (_("%X%P: .eh_frame_hdr table[%u] FDE overflow.\n"), i);
ae6c7e33 1862 bfd_put_32 (abfd, val, contents + EH_FRAME_HDR_SIZE + i * 8 + 8);
aa8f4d1e 1863
ae6c7e33
AM
1864 if (i != 0
1865 && (hdr_info->array[i].initial_loc
1866 < (hdr_info->array[i - 1].initial_loc
1867 + hdr_info->array[i - 1].range)))
aa8f4d1e
AM
1868 (*info->callbacks->einfo)
1869 (_("%X%P: .eh_frame_hdr table[%u] FDE at %V overlaps "
1870 "table[%u] FDE at %V.\n"),
1871 i - 1, hdr_info->array[i - 1].fde,
1872 i, hdr_info->array[i].fde);
9f7c3e5e 1873 }
65765700 1874 }
65765700 1875
9f7c3e5e 1876 /* FIXME: octets_per_byte. */
ae6c7e33
AM
1877 if (!bfd_set_section_contents (abfd, sec->output_section, contents,
1878 (file_ptr) sec->output_offset,
1879 sec->size))
1880 retval = FALSE;
9f7c3e5e
AM
1881 free (contents);
1882 }
1883 if (hdr_info->array != NULL)
1884 free (hdr_info->array);
5ed6aba4 1885 return retval;
65765700 1886}
ec3391e7 1887
8c946ed5
RS
1888/* Return the width of FDE addresses. This is the default implementation. */
1889
1890unsigned int
1891_bfd_elf_eh_frame_address_size (bfd *abfd, asection *sec ATTRIBUTE_UNUSED)
1892{
1893 return elf_elfheader (abfd)->e_ident[EI_CLASS] == ELFCLASS64 ? 8 : 4;
1894}
1895
ec3391e7
AO
1896/* Decide whether we can use a PC-relative encoding within the given
1897 EH frame section. This is the default implementation. */
1898
1899bfd_boolean
1900_bfd_elf_can_make_relative (bfd *input_bfd ATTRIBUTE_UNUSED,
1901 struct bfd_link_info *info ATTRIBUTE_UNUSED,
1902 asection *eh_frame_section ATTRIBUTE_UNUSED)
1903{
1904 return TRUE;
1905}
1906
1907/* Select an encoding for the given address. Preference is given to
1908 PC-relative addressing modes. */
1909
1910bfd_byte
1911_bfd_elf_encode_eh_address (bfd *abfd ATTRIBUTE_UNUSED,
1912 struct bfd_link_info *info ATTRIBUTE_UNUSED,
1913 asection *osec, bfd_vma offset,
1914 asection *loc_sec, bfd_vma loc_offset,
1915 bfd_vma *encoded)
1916{
1917 *encoded = osec->vma + offset -
1918 (loc_sec->output_section->vma + loc_sec->output_offset + loc_offset);
1919 return DW_EH_PE_pcrel | DW_EH_PE_sdata4;
1920}
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