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Commit | Line | Data |
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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 <[email protected]>. |
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 |
30 | struct 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 | ||
63 | static inline bfd_boolean | |
64 | read_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 | ||
75 | static inline bfd_boolean | |
76 | skip_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 | ||
90 | static bfd_boolean | |
91 | skip_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 | ||
104 | static bfd_boolean | |
105 | read_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 | ||
123 | static bfd_boolean | |
124 | read_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 | ||
142 | static | |
c39a58e6 | 143 | int 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 | ||
167 | static bfd_vma | |
c39a58e6 | 168 | read_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 | ||
202 | static void | |
c39a58e6 | 203 | write_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 |
216 | static int |
217 | cie_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 | ||
249 | static hashval_t | |
250 | cie_hash (const void *e) | |
251 | { | |
a50b1753 | 252 | const struct cie *c = (const struct cie *) e; |
bce613b9 JJ |
253 | return c->hash; |
254 | } | |
255 | ||
256 | static hashval_t | |
257 | cie_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 | ||
285 | static INLINE unsigned int | |
286 | extra_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 | ||
301 | static INLINE unsigned int | |
302 | extra_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 | ||
315 | static unsigned int | |
316 | size_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 | ||
332 | static bfd_boolean | |
333 | skip_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 | ||
412 | static bfd_byte * | |
ac685e6a JJ |
413 | skip_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 | ||
436 | static unsigned char | |
437 | make_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 | ||
459 | void | |
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 | ||
943 | static bfd_boolean | |
944 | mark_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 | ||
963 | bfd_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 | ||
995 | static struct eh_cie_fde * | |
18e04883 | 996 | find_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 | ||
1130 | bfd_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 | 1223 | bfd_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. */ | |
1254 | bfd_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 | 1276 | bfd_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 | ||
1305 | bfd_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 | 1390 | bfd_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 | ||
1743 | static int | |
c39a58e6 | 1744 | vma_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 | 1781 | bfd_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 | ||
1890 | unsigned 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 | ||
1899 | bfd_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 | ||
1910 | bfd_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 | } |