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Commit | Line | Data |
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252b5132 | 1 | /* ELF executable support for BFD. |
340b6d91 AC |
2 | |
3 | Copyright 1993, 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001, | |
72a80a16 AM |
4 | 2002, 2003, 2004, 2005, 2006, 2007, 2008, 2009 |
5 | Free Software Foundation, Inc. | |
252b5132 | 6 | |
5e8d7549 | 7 | This file is part of BFD, the Binary File Descriptor library. |
252b5132 | 8 | |
5e8d7549 NC |
9 | This program is free software; you can redistribute it and/or modify |
10 | it under the terms of the GNU General Public License as published by | |
cd123cb7 | 11 | the Free Software Foundation; either version 3 of the License, or |
5e8d7549 | 12 | (at your option) any later version. |
252b5132 | 13 | |
5e8d7549 NC |
14 | This program is distributed in the hope that it will be useful, |
15 | but WITHOUT ANY WARRANTY; without even the implied warranty of | |
16 | MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the | |
17 | GNU General Public License for more details. | |
252b5132 | 18 | |
5e8d7549 | 19 | You should have received a copy of the GNU General Public License |
b34976b6 | 20 | along with this program; if not, write to the Free Software |
cd123cb7 NC |
21 | Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston, |
22 | MA 02110-1301, USA. */ | |
23 | ||
252b5132 | 24 | |
1b74d094 BW |
25 | /* |
26 | SECTION | |
252b5132 RH |
27 | ELF backends |
28 | ||
29 | BFD support for ELF formats is being worked on. | |
30 | Currently, the best supported back ends are for sparc and i386 | |
31 | (running svr4 or Solaris 2). | |
32 | ||
33 | Documentation of the internals of the support code still needs | |
34 | to be written. The code is changing quickly enough that we | |
661a3fd4 | 35 | haven't bothered yet. */ |
252b5132 | 36 | |
7ee38065 MS |
37 | /* For sparc64-cross-sparc32. */ |
38 | #define _SYSCALL32 | |
252b5132 | 39 | #include "sysdep.h" |
3db64b00 | 40 | #include "bfd.h" |
252b5132 RH |
41 | #include "bfdlink.h" |
42 | #include "libbfd.h" | |
43 | #define ARCH_SIZE 0 | |
44 | #include "elf-bfd.h" | |
e0e8c97f | 45 | #include "libiberty.h" |
ff59fc36 | 46 | #include "safe-ctype.h" |
252b5132 | 47 | |
217aa764 | 48 | static int elf_sort_sections (const void *, const void *); |
c84fca4d | 49 | static bfd_boolean assign_file_positions_except_relocs (bfd *, struct bfd_link_info *); |
217aa764 AM |
50 | static bfd_boolean prep_headers (bfd *); |
51 | static bfd_boolean swap_out_syms (bfd *, struct bfd_strtab_hash **, int) ; | |
718175fa JK |
52 | static bfd_boolean elf_read_notes (bfd *, file_ptr, bfd_size_type) ; |
53 | static bfd_boolean elf_parse_notes (bfd *abfd, char *buf, size_t size, | |
54 | file_ptr offset); | |
50b2bdb7 | 55 | |
252b5132 RH |
56 | /* Swap version information in and out. The version information is |
57 | currently size independent. If that ever changes, this code will | |
58 | need to move into elfcode.h. */ | |
59 | ||
60 | /* Swap in a Verdef structure. */ | |
61 | ||
62 | void | |
217aa764 AM |
63 | _bfd_elf_swap_verdef_in (bfd *abfd, |
64 | const Elf_External_Verdef *src, | |
65 | Elf_Internal_Verdef *dst) | |
252b5132 | 66 | { |
dc810e39 AM |
67 | dst->vd_version = H_GET_16 (abfd, src->vd_version); |
68 | dst->vd_flags = H_GET_16 (abfd, src->vd_flags); | |
69 | dst->vd_ndx = H_GET_16 (abfd, src->vd_ndx); | |
70 | dst->vd_cnt = H_GET_16 (abfd, src->vd_cnt); | |
71 | dst->vd_hash = H_GET_32 (abfd, src->vd_hash); | |
72 | dst->vd_aux = H_GET_32 (abfd, src->vd_aux); | |
73 | dst->vd_next = H_GET_32 (abfd, src->vd_next); | |
252b5132 RH |
74 | } |
75 | ||
76 | /* Swap out a Verdef structure. */ | |
77 | ||
78 | void | |
217aa764 AM |
79 | _bfd_elf_swap_verdef_out (bfd *abfd, |
80 | const Elf_Internal_Verdef *src, | |
81 | Elf_External_Verdef *dst) | |
252b5132 | 82 | { |
dc810e39 AM |
83 | H_PUT_16 (abfd, src->vd_version, dst->vd_version); |
84 | H_PUT_16 (abfd, src->vd_flags, dst->vd_flags); | |
85 | H_PUT_16 (abfd, src->vd_ndx, dst->vd_ndx); | |
86 | H_PUT_16 (abfd, src->vd_cnt, dst->vd_cnt); | |
87 | H_PUT_32 (abfd, src->vd_hash, dst->vd_hash); | |
88 | H_PUT_32 (abfd, src->vd_aux, dst->vd_aux); | |
89 | H_PUT_32 (abfd, src->vd_next, dst->vd_next); | |
252b5132 RH |
90 | } |
91 | ||
92 | /* Swap in a Verdaux structure. */ | |
93 | ||
94 | void | |
217aa764 AM |
95 | _bfd_elf_swap_verdaux_in (bfd *abfd, |
96 | const Elf_External_Verdaux *src, | |
97 | Elf_Internal_Verdaux *dst) | |
252b5132 | 98 | { |
dc810e39 AM |
99 | dst->vda_name = H_GET_32 (abfd, src->vda_name); |
100 | dst->vda_next = H_GET_32 (abfd, src->vda_next); | |
252b5132 RH |
101 | } |
102 | ||
103 | /* Swap out a Verdaux structure. */ | |
104 | ||
105 | void | |
217aa764 AM |
106 | _bfd_elf_swap_verdaux_out (bfd *abfd, |
107 | const Elf_Internal_Verdaux *src, | |
108 | Elf_External_Verdaux *dst) | |
252b5132 | 109 | { |
dc810e39 AM |
110 | H_PUT_32 (abfd, src->vda_name, dst->vda_name); |
111 | H_PUT_32 (abfd, src->vda_next, dst->vda_next); | |
252b5132 RH |
112 | } |
113 | ||
114 | /* Swap in a Verneed structure. */ | |
115 | ||
116 | void | |
217aa764 AM |
117 | _bfd_elf_swap_verneed_in (bfd *abfd, |
118 | const Elf_External_Verneed *src, | |
119 | Elf_Internal_Verneed *dst) | |
252b5132 | 120 | { |
dc810e39 AM |
121 | dst->vn_version = H_GET_16 (abfd, src->vn_version); |
122 | dst->vn_cnt = H_GET_16 (abfd, src->vn_cnt); | |
123 | dst->vn_file = H_GET_32 (abfd, src->vn_file); | |
124 | dst->vn_aux = H_GET_32 (abfd, src->vn_aux); | |
125 | dst->vn_next = H_GET_32 (abfd, src->vn_next); | |
252b5132 RH |
126 | } |
127 | ||
128 | /* Swap out a Verneed structure. */ | |
129 | ||
130 | void | |
217aa764 AM |
131 | _bfd_elf_swap_verneed_out (bfd *abfd, |
132 | const Elf_Internal_Verneed *src, | |
133 | Elf_External_Verneed *dst) | |
252b5132 | 134 | { |
dc810e39 AM |
135 | H_PUT_16 (abfd, src->vn_version, dst->vn_version); |
136 | H_PUT_16 (abfd, src->vn_cnt, dst->vn_cnt); | |
137 | H_PUT_32 (abfd, src->vn_file, dst->vn_file); | |
138 | H_PUT_32 (abfd, src->vn_aux, dst->vn_aux); | |
139 | H_PUT_32 (abfd, src->vn_next, dst->vn_next); | |
252b5132 RH |
140 | } |
141 | ||
142 | /* Swap in a Vernaux structure. */ | |
143 | ||
144 | void | |
217aa764 AM |
145 | _bfd_elf_swap_vernaux_in (bfd *abfd, |
146 | const Elf_External_Vernaux *src, | |
147 | Elf_Internal_Vernaux *dst) | |
252b5132 | 148 | { |
dc810e39 AM |
149 | dst->vna_hash = H_GET_32 (abfd, src->vna_hash); |
150 | dst->vna_flags = H_GET_16 (abfd, src->vna_flags); | |
151 | dst->vna_other = H_GET_16 (abfd, src->vna_other); | |
152 | dst->vna_name = H_GET_32 (abfd, src->vna_name); | |
153 | dst->vna_next = H_GET_32 (abfd, src->vna_next); | |
252b5132 RH |
154 | } |
155 | ||
156 | /* Swap out a Vernaux structure. */ | |
157 | ||
158 | void | |
217aa764 AM |
159 | _bfd_elf_swap_vernaux_out (bfd *abfd, |
160 | const Elf_Internal_Vernaux *src, | |
161 | Elf_External_Vernaux *dst) | |
252b5132 | 162 | { |
dc810e39 AM |
163 | H_PUT_32 (abfd, src->vna_hash, dst->vna_hash); |
164 | H_PUT_16 (abfd, src->vna_flags, dst->vna_flags); | |
165 | H_PUT_16 (abfd, src->vna_other, dst->vna_other); | |
166 | H_PUT_32 (abfd, src->vna_name, dst->vna_name); | |
167 | H_PUT_32 (abfd, src->vna_next, dst->vna_next); | |
252b5132 RH |
168 | } |
169 | ||
170 | /* Swap in a Versym structure. */ | |
171 | ||
172 | void | |
217aa764 AM |
173 | _bfd_elf_swap_versym_in (bfd *abfd, |
174 | const Elf_External_Versym *src, | |
175 | Elf_Internal_Versym *dst) | |
252b5132 | 176 | { |
dc810e39 | 177 | dst->vs_vers = H_GET_16 (abfd, src->vs_vers); |
252b5132 RH |
178 | } |
179 | ||
180 | /* Swap out a Versym structure. */ | |
181 | ||
182 | void | |
217aa764 AM |
183 | _bfd_elf_swap_versym_out (bfd *abfd, |
184 | const Elf_Internal_Versym *src, | |
185 | Elf_External_Versym *dst) | |
252b5132 | 186 | { |
dc810e39 | 187 | H_PUT_16 (abfd, src->vs_vers, dst->vs_vers); |
252b5132 RH |
188 | } |
189 | ||
190 | /* Standard ELF hash function. Do not change this function; you will | |
191 | cause invalid hash tables to be generated. */ | |
3a99b017 | 192 | |
252b5132 | 193 | unsigned long |
217aa764 | 194 | bfd_elf_hash (const char *namearg) |
252b5132 | 195 | { |
3a99b017 | 196 | const unsigned char *name = (const unsigned char *) namearg; |
252b5132 RH |
197 | unsigned long h = 0; |
198 | unsigned long g; | |
199 | int ch; | |
200 | ||
201 | while ((ch = *name++) != '\0') | |
202 | { | |
203 | h = (h << 4) + ch; | |
204 | if ((g = (h & 0xf0000000)) != 0) | |
205 | { | |
206 | h ^= g >> 24; | |
207 | /* The ELF ABI says `h &= ~g', but this is equivalent in | |
208 | this case and on some machines one insn instead of two. */ | |
209 | h ^= g; | |
210 | } | |
211 | } | |
32dfa85d | 212 | return h & 0xffffffff; |
252b5132 RH |
213 | } |
214 | ||
fdc90cb4 JJ |
215 | /* DT_GNU_HASH hash function. Do not change this function; you will |
216 | cause invalid hash tables to be generated. */ | |
217 | ||
218 | unsigned long | |
219 | bfd_elf_gnu_hash (const char *namearg) | |
220 | { | |
221 | const unsigned char *name = (const unsigned char *) namearg; | |
222 | unsigned long h = 5381; | |
223 | unsigned char ch; | |
224 | ||
225 | while ((ch = *name++) != '\0') | |
226 | h = (h << 5) + h + ch; | |
227 | return h & 0xffffffff; | |
228 | } | |
229 | ||
0c8d6e5c AM |
230 | /* Create a tdata field OBJECT_SIZE bytes in length, zeroed out and with |
231 | the object_id field of an elf_obj_tdata field set to OBJECT_ID. */ | |
b34976b6 | 232 | bfd_boolean |
0c8d6e5c | 233 | bfd_elf_allocate_object (bfd *abfd, |
0ffa91dd NC |
234 | size_t object_size, |
235 | enum elf_object_id object_id) | |
252b5132 | 236 | { |
0ffa91dd NC |
237 | BFD_ASSERT (object_size >= sizeof (struct elf_obj_tdata)); |
238 | abfd->tdata.any = bfd_zalloc (abfd, object_size); | |
239 | if (abfd->tdata.any == NULL) | |
240 | return FALSE; | |
252b5132 | 241 | |
0ffa91dd NC |
242 | elf_object_id (abfd) = object_id; |
243 | elf_program_header_size (abfd) = (bfd_size_type) -1; | |
b34976b6 | 244 | return TRUE; |
252b5132 RH |
245 | } |
246 | ||
0ffa91dd NC |
247 | |
248 | bfd_boolean | |
249 | bfd_elf_make_generic_object (bfd *abfd) | |
250 | { | |
251 | return bfd_elf_allocate_object (abfd, sizeof (struct elf_obj_tdata), | |
252 | GENERIC_ELF_TDATA); | |
253 | } | |
254 | ||
b34976b6 | 255 | bfd_boolean |
217aa764 | 256 | bfd_elf_mkcorefile (bfd *abfd) |
252b5132 | 257 | { |
c044fabd | 258 | /* I think this can be done just like an object file. */ |
0ffa91dd | 259 | return bfd_elf_make_generic_object (abfd); |
252b5132 RH |
260 | } |
261 | ||
72a80a16 | 262 | static char * |
217aa764 | 263 | bfd_elf_get_str_section (bfd *abfd, unsigned int shindex) |
252b5132 RH |
264 | { |
265 | Elf_Internal_Shdr **i_shdrp; | |
f075ee0c | 266 | bfd_byte *shstrtab = NULL; |
dc810e39 AM |
267 | file_ptr offset; |
268 | bfd_size_type shstrtabsize; | |
252b5132 RH |
269 | |
270 | i_shdrp = elf_elfsections (abfd); | |
74f2e02b AM |
271 | if (i_shdrp == 0 |
272 | || shindex >= elf_numsections (abfd) | |
273 | || i_shdrp[shindex] == 0) | |
f075ee0c | 274 | return NULL; |
252b5132 | 275 | |
f075ee0c | 276 | shstrtab = i_shdrp[shindex]->contents; |
252b5132 RH |
277 | if (shstrtab == NULL) |
278 | { | |
c044fabd | 279 | /* No cached one, attempt to read, and cache what we read. */ |
252b5132 RH |
280 | offset = i_shdrp[shindex]->sh_offset; |
281 | shstrtabsize = i_shdrp[shindex]->sh_size; | |
c6c60d09 JJ |
282 | |
283 | /* Allocate and clear an extra byte at the end, to prevent crashes | |
284 | in case the string table is not terminated. */ | |
3471d59d | 285 | if (shstrtabsize + 1 <= 1 |
c6c60d09 JJ |
286 | || (shstrtab = bfd_alloc (abfd, shstrtabsize + 1)) == NULL |
287 | || bfd_seek (abfd, offset, SEEK_SET) != 0) | |
288 | shstrtab = NULL; | |
289 | else if (bfd_bread (shstrtab, shstrtabsize, abfd) != shstrtabsize) | |
290 | { | |
291 | if (bfd_get_error () != bfd_error_system_call) | |
292 | bfd_set_error (bfd_error_file_truncated); | |
293 | shstrtab = NULL; | |
3471d59d CC |
294 | /* Once we've failed to read it, make sure we don't keep |
295 | trying. Otherwise, we'll keep allocating space for | |
296 | the string table over and over. */ | |
297 | i_shdrp[shindex]->sh_size = 0; | |
c6c60d09 JJ |
298 | } |
299 | else | |
300 | shstrtab[shstrtabsize] = '\0'; | |
217aa764 | 301 | i_shdrp[shindex]->contents = shstrtab; |
252b5132 | 302 | } |
f075ee0c | 303 | return (char *) shstrtab; |
252b5132 RH |
304 | } |
305 | ||
306 | char * | |
217aa764 AM |
307 | bfd_elf_string_from_elf_section (bfd *abfd, |
308 | unsigned int shindex, | |
309 | unsigned int strindex) | |
252b5132 RH |
310 | { |
311 | Elf_Internal_Shdr *hdr; | |
312 | ||
313 | if (strindex == 0) | |
314 | return ""; | |
315 | ||
74f2e02b AM |
316 | if (elf_elfsections (abfd) == NULL || shindex >= elf_numsections (abfd)) |
317 | return NULL; | |
318 | ||
252b5132 RH |
319 | hdr = elf_elfsections (abfd)[shindex]; |
320 | ||
321 | if (hdr->contents == NULL | |
322 | && bfd_elf_get_str_section (abfd, shindex) == NULL) | |
323 | return NULL; | |
324 | ||
325 | if (strindex >= hdr->sh_size) | |
326 | { | |
1b3a8575 | 327 | unsigned int shstrndx = elf_elfheader(abfd)->e_shstrndx; |
252b5132 | 328 | (*_bfd_error_handler) |
d003868e AM |
329 | (_("%B: invalid string offset %u >= %lu for section `%s'"), |
330 | abfd, strindex, (unsigned long) hdr->sh_size, | |
1b3a8575 | 331 | (shindex == shstrndx && strindex == hdr->sh_name |
252b5132 | 332 | ? ".shstrtab" |
1b3a8575 | 333 | : bfd_elf_string_from_elf_section (abfd, shstrndx, hdr->sh_name))); |
252b5132 RH |
334 | return ""; |
335 | } | |
336 | ||
337 | return ((char *) hdr->contents) + strindex; | |
338 | } | |
339 | ||
6cdc0ccc AM |
340 | /* Read and convert symbols to internal format. |
341 | SYMCOUNT specifies the number of symbols to read, starting from | |
342 | symbol SYMOFFSET. If any of INTSYM_BUF, EXTSYM_BUF or EXTSHNDX_BUF | |
343 | are non-NULL, they are used to store the internal symbols, external | |
b7c368d0 NC |
344 | symbols, and symbol section index extensions, respectively. |
345 | Returns a pointer to the internal symbol buffer (malloced if necessary) | |
346 | or NULL if there were no symbols or some kind of problem. */ | |
6cdc0ccc AM |
347 | |
348 | Elf_Internal_Sym * | |
217aa764 AM |
349 | bfd_elf_get_elf_syms (bfd *ibfd, |
350 | Elf_Internal_Shdr *symtab_hdr, | |
351 | size_t symcount, | |
352 | size_t symoffset, | |
353 | Elf_Internal_Sym *intsym_buf, | |
354 | void *extsym_buf, | |
355 | Elf_External_Sym_Shndx *extshndx_buf) | |
6cdc0ccc AM |
356 | { |
357 | Elf_Internal_Shdr *shndx_hdr; | |
217aa764 | 358 | void *alloc_ext; |
df622259 | 359 | const bfd_byte *esym; |
6cdc0ccc AM |
360 | Elf_External_Sym_Shndx *alloc_extshndx; |
361 | Elf_External_Sym_Shndx *shndx; | |
4dd07732 | 362 | Elf_Internal_Sym *alloc_intsym; |
6cdc0ccc AM |
363 | Elf_Internal_Sym *isym; |
364 | Elf_Internal_Sym *isymend; | |
9c5bfbb7 | 365 | const struct elf_backend_data *bed; |
6cdc0ccc AM |
366 | size_t extsym_size; |
367 | bfd_size_type amt; | |
368 | file_ptr pos; | |
369 | ||
e44a2c9c AM |
370 | if (bfd_get_flavour (ibfd) != bfd_target_elf_flavour) |
371 | abort (); | |
372 | ||
6cdc0ccc AM |
373 | if (symcount == 0) |
374 | return intsym_buf; | |
375 | ||
376 | /* Normal syms might have section extension entries. */ | |
377 | shndx_hdr = NULL; | |
378 | if (symtab_hdr == &elf_tdata (ibfd)->symtab_hdr) | |
379 | shndx_hdr = &elf_tdata (ibfd)->symtab_shndx_hdr; | |
380 | ||
381 | /* Read the symbols. */ | |
382 | alloc_ext = NULL; | |
383 | alloc_extshndx = NULL; | |
4dd07732 | 384 | alloc_intsym = NULL; |
6cdc0ccc AM |
385 | bed = get_elf_backend_data (ibfd); |
386 | extsym_size = bed->s->sizeof_sym; | |
387 | amt = symcount * extsym_size; | |
388 | pos = symtab_hdr->sh_offset + symoffset * extsym_size; | |
389 | if (extsym_buf == NULL) | |
390 | { | |
d0fb9a8d | 391 | alloc_ext = bfd_malloc2 (symcount, extsym_size); |
6cdc0ccc AM |
392 | extsym_buf = alloc_ext; |
393 | } | |
394 | if (extsym_buf == NULL | |
395 | || bfd_seek (ibfd, pos, SEEK_SET) != 0 | |
396 | || bfd_bread (extsym_buf, amt, ibfd) != amt) | |
397 | { | |
398 | intsym_buf = NULL; | |
399 | goto out; | |
400 | } | |
401 | ||
402 | if (shndx_hdr == NULL || shndx_hdr->sh_size == 0) | |
403 | extshndx_buf = NULL; | |
404 | else | |
405 | { | |
406 | amt = symcount * sizeof (Elf_External_Sym_Shndx); | |
407 | pos = shndx_hdr->sh_offset + symoffset * sizeof (Elf_External_Sym_Shndx); | |
408 | if (extshndx_buf == NULL) | |
409 | { | |
d0fb9a8d JJ |
410 | alloc_extshndx = bfd_malloc2 (symcount, |
411 | sizeof (Elf_External_Sym_Shndx)); | |
6cdc0ccc AM |
412 | extshndx_buf = alloc_extshndx; |
413 | } | |
414 | if (extshndx_buf == NULL | |
415 | || bfd_seek (ibfd, pos, SEEK_SET) != 0 | |
416 | || bfd_bread (extshndx_buf, amt, ibfd) != amt) | |
417 | { | |
418 | intsym_buf = NULL; | |
419 | goto out; | |
420 | } | |
421 | } | |
422 | ||
423 | if (intsym_buf == NULL) | |
424 | { | |
4dd07732 AM |
425 | alloc_intsym = bfd_malloc2 (symcount, sizeof (Elf_Internal_Sym)); |
426 | intsym_buf = alloc_intsym; | |
6cdc0ccc AM |
427 | if (intsym_buf == NULL) |
428 | goto out; | |
429 | } | |
430 | ||
431 | /* Convert the symbols to internal form. */ | |
432 | isymend = intsym_buf + symcount; | |
433 | for (esym = extsym_buf, isym = intsym_buf, shndx = extshndx_buf; | |
434 | isym < isymend; | |
435 | esym += extsym_size, isym++, shndx = shndx != NULL ? shndx + 1 : NULL) | |
8384fb8f AM |
436 | if (!(*bed->s->swap_symbol_in) (ibfd, esym, shndx, isym)) |
437 | { | |
438 | symoffset += (esym - (bfd_byte *) extsym_buf) / extsym_size; | |
439 | (*_bfd_error_handler) (_("%B symbol number %lu references " | |
440 | "nonexistent SHT_SYMTAB_SHNDX section"), | |
441 | ibfd, (unsigned long) symoffset); | |
4dd07732 AM |
442 | if (alloc_intsym != NULL) |
443 | free (alloc_intsym); | |
8384fb8f AM |
444 | intsym_buf = NULL; |
445 | goto out; | |
446 | } | |
6cdc0ccc AM |
447 | |
448 | out: | |
449 | if (alloc_ext != NULL) | |
450 | free (alloc_ext); | |
451 | if (alloc_extshndx != NULL) | |
452 | free (alloc_extshndx); | |
453 | ||
454 | return intsym_buf; | |
455 | } | |
456 | ||
5cab59f6 AM |
457 | /* Look up a symbol name. */ |
458 | const char * | |
be8dd2ca AM |
459 | bfd_elf_sym_name (bfd *abfd, |
460 | Elf_Internal_Shdr *symtab_hdr, | |
26c61ae5 L |
461 | Elf_Internal_Sym *isym, |
462 | asection *sym_sec) | |
5cab59f6 | 463 | { |
26c61ae5 | 464 | const char *name; |
5cab59f6 | 465 | unsigned int iname = isym->st_name; |
be8dd2ca | 466 | unsigned int shindex = symtab_hdr->sh_link; |
26c61ae5 | 467 | |
138f35cc JJ |
468 | if (iname == 0 && ELF_ST_TYPE (isym->st_info) == STT_SECTION |
469 | /* Check for a bogus st_shndx to avoid crashing. */ | |
4fbb74a6 | 470 | && isym->st_shndx < elf_numsections (abfd)) |
5cab59f6 AM |
471 | { |
472 | iname = elf_elfsections (abfd)[isym->st_shndx]->sh_name; | |
473 | shindex = elf_elfheader (abfd)->e_shstrndx; | |
474 | } | |
475 | ||
26c61ae5 L |
476 | name = bfd_elf_string_from_elf_section (abfd, shindex, iname); |
477 | if (name == NULL) | |
478 | name = "(null)"; | |
479 | else if (sym_sec && *name == '\0') | |
480 | name = bfd_section_name (abfd, sym_sec); | |
481 | ||
482 | return name; | |
5cab59f6 AM |
483 | } |
484 | ||
dbb410c3 AM |
485 | /* Elf_Internal_Shdr->contents is an array of these for SHT_GROUP |
486 | sections. The first element is the flags, the rest are section | |
487 | pointers. */ | |
488 | ||
489 | typedef union elf_internal_group { | |
490 | Elf_Internal_Shdr *shdr; | |
491 | unsigned int flags; | |
492 | } Elf_Internal_Group; | |
493 | ||
b885599b AM |
494 | /* Return the name of the group signature symbol. Why isn't the |
495 | signature just a string? */ | |
496 | ||
497 | static const char * | |
217aa764 | 498 | group_signature (bfd *abfd, Elf_Internal_Shdr *ghdr) |
b885599b | 499 | { |
9dce4196 | 500 | Elf_Internal_Shdr *hdr; |
9dce4196 AM |
501 | unsigned char esym[sizeof (Elf64_External_Sym)]; |
502 | Elf_External_Sym_Shndx eshndx; | |
503 | Elf_Internal_Sym isym; | |
b885599b | 504 | |
13792e9d L |
505 | /* First we need to ensure the symbol table is available. Make sure |
506 | that it is a symbol table section. */ | |
4fbb74a6 AM |
507 | if (ghdr->sh_link >= elf_numsections (abfd)) |
508 | return NULL; | |
13792e9d L |
509 | hdr = elf_elfsections (abfd) [ghdr->sh_link]; |
510 | if (hdr->sh_type != SHT_SYMTAB | |
511 | || ! bfd_section_from_shdr (abfd, ghdr->sh_link)) | |
b885599b AM |
512 | return NULL; |
513 | ||
9dce4196 AM |
514 | /* Go read the symbol. */ |
515 | hdr = &elf_tdata (abfd)->symtab_hdr; | |
6cdc0ccc AM |
516 | if (bfd_elf_get_elf_syms (abfd, hdr, 1, ghdr->sh_info, |
517 | &isym, esym, &eshndx) == NULL) | |
b885599b | 518 | return NULL; |
9dce4196 | 519 | |
26c61ae5 | 520 | return bfd_elf_sym_name (abfd, hdr, &isym, NULL); |
b885599b AM |
521 | } |
522 | ||
dbb410c3 AM |
523 | /* Set next_in_group list pointer, and group name for NEWSECT. */ |
524 | ||
b34976b6 | 525 | static bfd_boolean |
217aa764 | 526 | setup_group (bfd *abfd, Elf_Internal_Shdr *hdr, asection *newsect) |
dbb410c3 AM |
527 | { |
528 | unsigned int num_group = elf_tdata (abfd)->num_group; | |
529 | ||
530 | /* If num_group is zero, read in all SHT_GROUP sections. The count | |
531 | is set to -1 if there are no SHT_GROUP sections. */ | |
532 | if (num_group == 0) | |
533 | { | |
534 | unsigned int i, shnum; | |
535 | ||
536 | /* First count the number of groups. If we have a SHT_GROUP | |
537 | section with just a flag word (ie. sh_size is 4), ignore it. */ | |
9ad5cbcf | 538 | shnum = elf_numsections (abfd); |
dbb410c3 | 539 | num_group = 0; |
08a40648 | 540 | |
1783205a NC |
541 | #define IS_VALID_GROUP_SECTION_HEADER(shdr) \ |
542 | ( (shdr)->sh_type == SHT_GROUP \ | |
543 | && (shdr)->sh_size >= (2 * GRP_ENTRY_SIZE) \ | |
544 | && (shdr)->sh_entsize == GRP_ENTRY_SIZE \ | |
545 | && ((shdr)->sh_size % GRP_ENTRY_SIZE) == 0) | |
08a40648 | 546 | |
dbb410c3 AM |
547 | for (i = 0; i < shnum; i++) |
548 | { | |
549 | Elf_Internal_Shdr *shdr = elf_elfsections (abfd)[i]; | |
1783205a NC |
550 | |
551 | if (IS_VALID_GROUP_SECTION_HEADER (shdr)) | |
dbb410c3 AM |
552 | num_group += 1; |
553 | } | |
554 | ||
555 | if (num_group == 0) | |
20dbb49d L |
556 | { |
557 | num_group = (unsigned) -1; | |
558 | elf_tdata (abfd)->num_group = num_group; | |
559 | } | |
560 | else | |
dbb410c3 AM |
561 | { |
562 | /* We keep a list of elf section headers for group sections, | |
563 | so we can find them quickly. */ | |
20dbb49d | 564 | bfd_size_type amt; |
d0fb9a8d | 565 | |
20dbb49d | 566 | elf_tdata (abfd)->num_group = num_group; |
d0fb9a8d JJ |
567 | elf_tdata (abfd)->group_sect_ptr |
568 | = bfd_alloc2 (abfd, num_group, sizeof (Elf_Internal_Shdr *)); | |
dbb410c3 | 569 | if (elf_tdata (abfd)->group_sect_ptr == NULL) |
b34976b6 | 570 | return FALSE; |
dbb410c3 AM |
571 | |
572 | num_group = 0; | |
573 | for (i = 0; i < shnum; i++) | |
574 | { | |
575 | Elf_Internal_Shdr *shdr = elf_elfsections (abfd)[i]; | |
1783205a NC |
576 | |
577 | if (IS_VALID_GROUP_SECTION_HEADER (shdr)) | |
dbb410c3 | 578 | { |
973ffd63 | 579 | unsigned char *src; |
dbb410c3 AM |
580 | Elf_Internal_Group *dest; |
581 | ||
582 | /* Add to list of sections. */ | |
583 | elf_tdata (abfd)->group_sect_ptr[num_group] = shdr; | |
584 | num_group += 1; | |
585 | ||
586 | /* Read the raw contents. */ | |
587 | BFD_ASSERT (sizeof (*dest) >= 4); | |
588 | amt = shdr->sh_size * sizeof (*dest) / 4; | |
d0fb9a8d JJ |
589 | shdr->contents = bfd_alloc2 (abfd, shdr->sh_size, |
590 | sizeof (*dest) / 4); | |
1783205a NC |
591 | /* PR binutils/4110: Handle corrupt group headers. */ |
592 | if (shdr->contents == NULL) | |
593 | { | |
594 | _bfd_error_handler | |
595 | (_("%B: Corrupt size field in group section header: 0x%lx"), abfd, shdr->sh_size); | |
596 | bfd_set_error (bfd_error_bad_value); | |
597 | return FALSE; | |
598 | } | |
599 | ||
600 | memset (shdr->contents, 0, amt); | |
601 | ||
602 | if (bfd_seek (abfd, shdr->sh_offset, SEEK_SET) != 0 | |
dbb410c3 AM |
603 | || (bfd_bread (shdr->contents, shdr->sh_size, abfd) |
604 | != shdr->sh_size)) | |
b34976b6 | 605 | return FALSE; |
dbb410c3 AM |
606 | |
607 | /* Translate raw contents, a flag word followed by an | |
608 | array of elf section indices all in target byte order, | |
609 | to the flag word followed by an array of elf section | |
610 | pointers. */ | |
611 | src = shdr->contents + shdr->sh_size; | |
612 | dest = (Elf_Internal_Group *) (shdr->contents + amt); | |
613 | while (1) | |
614 | { | |
615 | unsigned int idx; | |
616 | ||
617 | src -= 4; | |
618 | --dest; | |
619 | idx = H_GET_32 (abfd, src); | |
620 | if (src == shdr->contents) | |
621 | { | |
622 | dest->flags = idx; | |
b885599b AM |
623 | if (shdr->bfd_section != NULL && (idx & GRP_COMDAT)) |
624 | shdr->bfd_section->flags | |
625 | |= SEC_LINK_ONCE | SEC_LINK_DUPLICATES_DISCARD; | |
dbb410c3 AM |
626 | break; |
627 | } | |
628 | if (idx >= shnum) | |
629 | { | |
630 | ((*_bfd_error_handler) | |
d003868e | 631 | (_("%B: invalid SHT_GROUP entry"), abfd)); |
dbb410c3 AM |
632 | idx = 0; |
633 | } | |
634 | dest->shdr = elf_elfsections (abfd)[idx]; | |
635 | } | |
636 | } | |
637 | } | |
638 | } | |
639 | } | |
640 | ||
641 | if (num_group != (unsigned) -1) | |
642 | { | |
643 | unsigned int i; | |
644 | ||
645 | for (i = 0; i < num_group; i++) | |
646 | { | |
647 | Elf_Internal_Shdr *shdr = elf_tdata (abfd)->group_sect_ptr[i]; | |
648 | Elf_Internal_Group *idx = (Elf_Internal_Group *) shdr->contents; | |
649 | unsigned int n_elt = shdr->sh_size / 4; | |
650 | ||
651 | /* Look through this group's sections to see if current | |
652 | section is a member. */ | |
653 | while (--n_elt != 0) | |
654 | if ((++idx)->shdr == hdr) | |
655 | { | |
e0e8c97f | 656 | asection *s = NULL; |
dbb410c3 AM |
657 | |
658 | /* We are a member of this group. Go looking through | |
659 | other members to see if any others are linked via | |
660 | next_in_group. */ | |
661 | idx = (Elf_Internal_Group *) shdr->contents; | |
662 | n_elt = shdr->sh_size / 4; | |
663 | while (--n_elt != 0) | |
664 | if ((s = (++idx)->shdr->bfd_section) != NULL | |
945906ff | 665 | && elf_next_in_group (s) != NULL) |
dbb410c3 AM |
666 | break; |
667 | if (n_elt != 0) | |
668 | { | |
dbb410c3 AM |
669 | /* Snarf the group name from other member, and |
670 | insert current section in circular list. */ | |
945906ff AM |
671 | elf_group_name (newsect) = elf_group_name (s); |
672 | elf_next_in_group (newsect) = elf_next_in_group (s); | |
673 | elf_next_in_group (s) = newsect; | |
dbb410c3 AM |
674 | } |
675 | else | |
676 | { | |
dbb410c3 AM |
677 | const char *gname; |
678 | ||
b885599b AM |
679 | gname = group_signature (abfd, shdr); |
680 | if (gname == NULL) | |
b34976b6 | 681 | return FALSE; |
945906ff | 682 | elf_group_name (newsect) = gname; |
dbb410c3 AM |
683 | |
684 | /* Start a circular list with one element. */ | |
945906ff | 685 | elf_next_in_group (newsect) = newsect; |
dbb410c3 | 686 | } |
b885599b | 687 | |
9dce4196 AM |
688 | /* If the group section has been created, point to the |
689 | new member. */ | |
dbb410c3 | 690 | if (shdr->bfd_section != NULL) |
945906ff | 691 | elf_next_in_group (shdr->bfd_section) = newsect; |
b885599b | 692 | |
dbb410c3 AM |
693 | i = num_group - 1; |
694 | break; | |
695 | } | |
696 | } | |
697 | } | |
698 | ||
945906ff | 699 | if (elf_group_name (newsect) == NULL) |
dbb410c3 | 700 | { |
d003868e AM |
701 | (*_bfd_error_handler) (_("%B: no group info for section %A"), |
702 | abfd, newsect); | |
dbb410c3 | 703 | } |
b34976b6 | 704 | return TRUE; |
dbb410c3 AM |
705 | } |
706 | ||
3d7f7666 | 707 | bfd_boolean |
dd863624 | 708 | _bfd_elf_setup_sections (bfd *abfd) |
3d7f7666 L |
709 | { |
710 | unsigned int i; | |
711 | unsigned int num_group = elf_tdata (abfd)->num_group; | |
712 | bfd_boolean result = TRUE; | |
dd863624 L |
713 | asection *s; |
714 | ||
715 | /* Process SHF_LINK_ORDER. */ | |
716 | for (s = abfd->sections; s != NULL; s = s->next) | |
717 | { | |
718 | Elf_Internal_Shdr *this_hdr = &elf_section_data (s)->this_hdr; | |
719 | if ((this_hdr->sh_flags & SHF_LINK_ORDER) != 0) | |
720 | { | |
721 | unsigned int elfsec = this_hdr->sh_link; | |
722 | /* FIXME: The old Intel compiler and old strip/objcopy may | |
723 | not set the sh_link or sh_info fields. Hence we could | |
724 | get the situation where elfsec is 0. */ | |
725 | if (elfsec == 0) | |
726 | { | |
4fbb74a6 | 727 | const struct elf_backend_data *bed = get_elf_backend_data (abfd); |
dd863624 L |
728 | if (bed->link_order_error_handler) |
729 | bed->link_order_error_handler | |
730 | (_("%B: warning: sh_link not set for section `%A'"), | |
731 | abfd, s); | |
732 | } | |
733 | else | |
734 | { | |
4fbb74a6 | 735 | asection *link = NULL; |
25bbc984 | 736 | |
4fbb74a6 AM |
737 | if (elfsec < elf_numsections (abfd)) |
738 | { | |
739 | this_hdr = elf_elfsections (abfd)[elfsec]; | |
740 | link = this_hdr->bfd_section; | |
741 | } | |
25bbc984 L |
742 | |
743 | /* PR 1991, 2008: | |
744 | Some strip/objcopy may leave an incorrect value in | |
745 | sh_link. We don't want to proceed. */ | |
25bbc984 L |
746 | if (link == NULL) |
747 | { | |
748 | (*_bfd_error_handler) | |
749 | (_("%B: sh_link [%d] in section `%A' is incorrect"), | |
750 | s->owner, s, elfsec); | |
751 | result = FALSE; | |
752 | } | |
753 | ||
754 | elf_linked_to_section (s) = link; | |
dd863624 L |
755 | } |
756 | } | |
757 | } | |
3d7f7666 | 758 | |
dd863624 | 759 | /* Process section groups. */ |
3d7f7666 L |
760 | if (num_group == (unsigned) -1) |
761 | return result; | |
762 | ||
763 | for (i = 0; i < num_group; i++) | |
764 | { | |
765 | Elf_Internal_Shdr *shdr = elf_tdata (abfd)->group_sect_ptr[i]; | |
766 | Elf_Internal_Group *idx = (Elf_Internal_Group *) shdr->contents; | |
767 | unsigned int n_elt = shdr->sh_size / 4; | |
768 | ||
769 | while (--n_elt != 0) | |
770 | if ((++idx)->shdr->bfd_section) | |
771 | elf_sec_group (idx->shdr->bfd_section) = shdr->bfd_section; | |
772 | else if (idx->shdr->sh_type == SHT_RELA | |
773 | || idx->shdr->sh_type == SHT_REL) | |
774 | /* We won't include relocation sections in section groups in | |
775 | output object files. We adjust the group section size here | |
776 | so that relocatable link will work correctly when | |
777 | relocation sections are in section group in input object | |
778 | files. */ | |
779 | shdr->bfd_section->size -= 4; | |
780 | else | |
781 | { | |
782 | /* There are some unknown sections in the group. */ | |
783 | (*_bfd_error_handler) | |
d003868e AM |
784 | (_("%B: unknown [%d] section `%s' in group [%s]"), |
785 | abfd, | |
3d7f7666 | 786 | (unsigned int) idx->shdr->sh_type, |
1b3a8575 AM |
787 | bfd_elf_string_from_elf_section (abfd, |
788 | (elf_elfheader (abfd) | |
789 | ->e_shstrndx), | |
790 | idx->shdr->sh_name), | |
3d7f7666 L |
791 | shdr->bfd_section->name); |
792 | result = FALSE; | |
793 | } | |
794 | } | |
795 | return result; | |
796 | } | |
797 | ||
72adc230 AM |
798 | bfd_boolean |
799 | bfd_elf_is_group_section (bfd *abfd ATTRIBUTE_UNUSED, const asection *sec) | |
800 | { | |
801 | return elf_next_in_group (sec) != NULL; | |
802 | } | |
803 | ||
252b5132 RH |
804 | /* Make a BFD section from an ELF section. We store a pointer to the |
805 | BFD section in the bfd_section field of the header. */ | |
806 | ||
b34976b6 | 807 | bfd_boolean |
217aa764 AM |
808 | _bfd_elf_make_section_from_shdr (bfd *abfd, |
809 | Elf_Internal_Shdr *hdr, | |
6dc132d9 L |
810 | const char *name, |
811 | int shindex) | |
252b5132 RH |
812 | { |
813 | asection *newsect; | |
814 | flagword flags; | |
9c5bfbb7 | 815 | const struct elf_backend_data *bed; |
252b5132 RH |
816 | |
817 | if (hdr->bfd_section != NULL) | |
818 | { | |
819 | BFD_ASSERT (strcmp (name, | |
820 | bfd_get_section_name (abfd, hdr->bfd_section)) == 0); | |
b34976b6 | 821 | return TRUE; |
252b5132 RH |
822 | } |
823 | ||
824 | newsect = bfd_make_section_anyway (abfd, name); | |
825 | if (newsect == NULL) | |
b34976b6 | 826 | return FALSE; |
252b5132 | 827 | |
1829f4b2 AM |
828 | hdr->bfd_section = newsect; |
829 | elf_section_data (newsect)->this_hdr = *hdr; | |
6dc132d9 | 830 | elf_section_data (newsect)->this_idx = shindex; |
1829f4b2 | 831 | |
2f89ff8d L |
832 | /* Always use the real type/flags. */ |
833 | elf_section_type (newsect) = hdr->sh_type; | |
834 | elf_section_flags (newsect) = hdr->sh_flags; | |
835 | ||
252b5132 RH |
836 | newsect->filepos = hdr->sh_offset; |
837 | ||
838 | if (! bfd_set_section_vma (abfd, newsect, hdr->sh_addr) | |
839 | || ! bfd_set_section_size (abfd, newsect, hdr->sh_size) | |
840 | || ! bfd_set_section_alignment (abfd, newsect, | |
72de5009 | 841 | bfd_log2 (hdr->sh_addralign))) |
b34976b6 | 842 | return FALSE; |
252b5132 RH |
843 | |
844 | flags = SEC_NO_FLAGS; | |
845 | if (hdr->sh_type != SHT_NOBITS) | |
846 | flags |= SEC_HAS_CONTENTS; | |
dbb410c3 | 847 | if (hdr->sh_type == SHT_GROUP) |
b3096250 | 848 | flags |= SEC_GROUP | SEC_EXCLUDE; |
252b5132 RH |
849 | if ((hdr->sh_flags & SHF_ALLOC) != 0) |
850 | { | |
851 | flags |= SEC_ALLOC; | |
852 | if (hdr->sh_type != SHT_NOBITS) | |
853 | flags |= SEC_LOAD; | |
854 | } | |
855 | if ((hdr->sh_flags & SHF_WRITE) == 0) | |
856 | flags |= SEC_READONLY; | |
857 | if ((hdr->sh_flags & SHF_EXECINSTR) != 0) | |
858 | flags |= SEC_CODE; | |
859 | else if ((flags & SEC_LOAD) != 0) | |
860 | flags |= SEC_DATA; | |
f5fa8ca2 JJ |
861 | if ((hdr->sh_flags & SHF_MERGE) != 0) |
862 | { | |
863 | flags |= SEC_MERGE; | |
864 | newsect->entsize = hdr->sh_entsize; | |
865 | if ((hdr->sh_flags & SHF_STRINGS) != 0) | |
866 | flags |= SEC_STRINGS; | |
867 | } | |
dbb410c3 AM |
868 | if (hdr->sh_flags & SHF_GROUP) |
869 | if (!setup_group (abfd, hdr, newsect)) | |
b34976b6 | 870 | return FALSE; |
13ae64f3 JJ |
871 | if ((hdr->sh_flags & SHF_TLS) != 0) |
872 | flags |= SEC_THREAD_LOCAL; | |
252b5132 | 873 | |
3d2b39cf | 874 | if ((flags & SEC_ALLOC) == 0) |
7a6cc5fb | 875 | { |
3d2b39cf L |
876 | /* The debugging sections appear to be recognized only by name, |
877 | not any sort of flag. Their SEC_ALLOC bits are cleared. */ | |
878 | static const struct | |
879 | { | |
880 | const char *name; | |
881 | int len; | |
882 | } debug_sections [] = | |
883 | { | |
0112cd26 | 884 | { STRING_COMMA_LEN ("debug") }, /* 'd' */ |
3d2b39cf L |
885 | { NULL, 0 }, /* 'e' */ |
886 | { NULL, 0 }, /* 'f' */ | |
0112cd26 | 887 | { STRING_COMMA_LEN ("gnu.linkonce.wi.") }, /* 'g' */ |
3d2b39cf L |
888 | { NULL, 0 }, /* 'h' */ |
889 | { NULL, 0 }, /* 'i' */ | |
890 | { NULL, 0 }, /* 'j' */ | |
891 | { NULL, 0 }, /* 'k' */ | |
0112cd26 | 892 | { STRING_COMMA_LEN ("line") }, /* 'l' */ |
3d2b39cf L |
893 | { NULL, 0 }, /* 'm' */ |
894 | { NULL, 0 }, /* 'n' */ | |
895 | { NULL, 0 }, /* 'o' */ | |
896 | { NULL, 0 }, /* 'p' */ | |
897 | { NULL, 0 }, /* 'q' */ | |
898 | { NULL, 0 }, /* 'r' */ | |
1b315056 CS |
899 | { STRING_COMMA_LEN ("stab") }, /* 's' */ |
900 | { NULL, 0 }, /* 't' */ | |
901 | { NULL, 0 }, /* 'u' */ | |
902 | { NULL, 0 }, /* 'v' */ | |
903 | { NULL, 0 }, /* 'w' */ | |
904 | { NULL, 0 }, /* 'x' */ | |
905 | { NULL, 0 }, /* 'y' */ | |
906 | { STRING_COMMA_LEN ("zdebug") } /* 'z' */ | |
3d2b39cf | 907 | }; |
08a40648 | 908 | |
3d2b39cf L |
909 | if (name [0] == '.') |
910 | { | |
911 | int i = name [1] - 'd'; | |
912 | if (i >= 0 | |
913 | && i < (int) ARRAY_SIZE (debug_sections) | |
914 | && debug_sections [i].name != NULL | |
915 | && strncmp (&name [1], debug_sections [i].name, | |
916 | debug_sections [i].len) == 0) | |
917 | flags |= SEC_DEBUGGING; | |
918 | } | |
919 | } | |
252b5132 RH |
920 | |
921 | /* As a GNU extension, if the name begins with .gnu.linkonce, we | |
922 | only link a single copy of the section. This is used to support | |
923 | g++. g++ will emit each template expansion in its own section. | |
924 | The symbols will be defined as weak, so that multiple definitions | |
925 | are permitted. The GNU linker extension is to actually discard | |
926 | all but one of the sections. */ | |
0112cd26 | 927 | if (CONST_STRNEQ (name, ".gnu.linkonce") |
b885599b | 928 | && elf_next_in_group (newsect) == NULL) |
252b5132 RH |
929 | flags |= SEC_LINK_ONCE | SEC_LINK_DUPLICATES_DISCARD; |
930 | ||
fa152c49 JW |
931 | bed = get_elf_backend_data (abfd); |
932 | if (bed->elf_backend_section_flags) | |
933 | if (! bed->elf_backend_section_flags (&flags, hdr)) | |
b34976b6 | 934 | return FALSE; |
fa152c49 | 935 | |
252b5132 | 936 | if (! bfd_set_section_flags (abfd, newsect, flags)) |
b34976b6 | 937 | return FALSE; |
252b5132 | 938 | |
718175fa JK |
939 | /* We do not parse the PT_NOTE segments as we are interested even in the |
940 | separate debug info files which may have the segments offsets corrupted. | |
941 | PT_NOTEs from the core files are currently not parsed using BFD. */ | |
942 | if (hdr->sh_type == SHT_NOTE) | |
943 | { | |
baea7ef1 | 944 | bfd_byte *contents; |
718175fa | 945 | |
baea7ef1 | 946 | if (!bfd_malloc_and_get_section (abfd, newsect, &contents)) |
718175fa JK |
947 | return FALSE; |
948 | ||
baea7ef1 | 949 | elf_parse_notes (abfd, (char *) contents, hdr->sh_size, -1); |
718175fa JK |
950 | free (contents); |
951 | } | |
952 | ||
252b5132 RH |
953 | if ((flags & SEC_ALLOC) != 0) |
954 | { | |
955 | Elf_Internal_Phdr *phdr; | |
6ffd7900 AM |
956 | unsigned int i, nload; |
957 | ||
958 | /* Some ELF linkers produce binaries with all the program header | |
959 | p_paddr fields zero. If we have such a binary with more than | |
960 | one PT_LOAD header, then leave the section lma equal to vma | |
961 | so that we don't create sections with overlapping lma. */ | |
962 | phdr = elf_tdata (abfd)->phdr; | |
963 | for (nload = 0, i = 0; i < elf_elfheader (abfd)->e_phnum; i++, phdr++) | |
964 | if (phdr->p_paddr != 0) | |
965 | break; | |
966 | else if (phdr->p_type == PT_LOAD && phdr->p_memsz != 0) | |
967 | ++nload; | |
968 | if (i >= elf_elfheader (abfd)->e_phnum && nload > 1) | |
969 | return TRUE; | |
252b5132 | 970 | |
252b5132 RH |
971 | phdr = elf_tdata (abfd)->phdr; |
972 | for (i = 0; i < elf_elfheader (abfd)->e_phnum; i++, phdr++) | |
973 | { | |
88967714 AM |
974 | /* This section is part of this segment if its file |
975 | offset plus size lies within the segment's memory | |
976 | span and, if the section is loaded, the extent of the | |
977 | loaded data lies within the extent of the segment. | |
978 | ||
979 | Note - we used to check the p_paddr field as well, and | |
980 | refuse to set the LMA if it was 0. This is wrong | |
981 | though, as a perfectly valid initialised segment can | |
982 | have a p_paddr of zero. Some architectures, eg ARM, | |
983 | place special significance on the address 0 and | |
984 | executables need to be able to have a segment which | |
985 | covers this address. */ | |
986 | if (phdr->p_type == PT_LOAD | |
987 | && (bfd_vma) hdr->sh_offset >= phdr->p_offset | |
988 | && (hdr->sh_offset + hdr->sh_size | |
989 | <= phdr->p_offset + phdr->p_memsz) | |
990 | && ((flags & SEC_LOAD) == 0 | |
991 | || (hdr->sh_offset + hdr->sh_size | |
992 | <= phdr->p_offset + phdr->p_filesz))) | |
252b5132 | 993 | { |
88967714 AM |
994 | if ((flags & SEC_LOAD) == 0) |
995 | newsect->lma = (phdr->p_paddr | |
996 | + hdr->sh_addr - phdr->p_vaddr); | |
997 | else | |
998 | /* We used to use the same adjustment for SEC_LOAD | |
999 | sections, but that doesn't work if the segment | |
1000 | is packed with code from multiple VMAs. | |
1001 | Instead we calculate the section LMA based on | |
1002 | the segment LMA. It is assumed that the | |
1003 | segment will contain sections with contiguous | |
1004 | LMAs, even if the VMAs are not. */ | |
1005 | newsect->lma = (phdr->p_paddr | |
1006 | + hdr->sh_offset - phdr->p_offset); | |
1007 | ||
1008 | /* With contiguous segments, we can't tell from file | |
1009 | offsets whether a section with zero size should | |
1010 | be placed at the end of one segment or the | |
1011 | beginning of the next. Decide based on vaddr. */ | |
1012 | if (hdr->sh_addr >= phdr->p_vaddr | |
1013 | && (hdr->sh_addr + hdr->sh_size | |
1014 | <= phdr->p_vaddr + phdr->p_memsz)) | |
1015 | break; | |
252b5132 RH |
1016 | } |
1017 | } | |
1018 | } | |
1019 | ||
b34976b6 | 1020 | return TRUE; |
252b5132 RH |
1021 | } |
1022 | ||
252b5132 RH |
1023 | const char *const bfd_elf_section_type_names[] = { |
1024 | "SHT_NULL", "SHT_PROGBITS", "SHT_SYMTAB", "SHT_STRTAB", | |
1025 | "SHT_RELA", "SHT_HASH", "SHT_DYNAMIC", "SHT_NOTE", | |
1026 | "SHT_NOBITS", "SHT_REL", "SHT_SHLIB", "SHT_DYNSYM", | |
1027 | }; | |
1028 | ||
1049f94e | 1029 | /* ELF relocs are against symbols. If we are producing relocatable |
252b5132 RH |
1030 | output, and the reloc is against an external symbol, and nothing |
1031 | has given us any additional addend, the resulting reloc will also | |
1032 | be against the same symbol. In such a case, we don't want to | |
1033 | change anything about the way the reloc is handled, since it will | |
1034 | all be done at final link time. Rather than put special case code | |
1035 | into bfd_perform_relocation, all the reloc types use this howto | |
1036 | function. It just short circuits the reloc if producing | |
1049f94e | 1037 | relocatable output against an external symbol. */ |
252b5132 | 1038 | |
252b5132 | 1039 | bfd_reloc_status_type |
217aa764 AM |
1040 | bfd_elf_generic_reloc (bfd *abfd ATTRIBUTE_UNUSED, |
1041 | arelent *reloc_entry, | |
1042 | asymbol *symbol, | |
1043 | void *data ATTRIBUTE_UNUSED, | |
1044 | asection *input_section, | |
1045 | bfd *output_bfd, | |
1046 | char **error_message ATTRIBUTE_UNUSED) | |
1047 | { | |
1048 | if (output_bfd != NULL | |
252b5132 RH |
1049 | && (symbol->flags & BSF_SECTION_SYM) == 0 |
1050 | && (! reloc_entry->howto->partial_inplace | |
1051 | || reloc_entry->addend == 0)) | |
1052 | { | |
1053 | reloc_entry->address += input_section->output_offset; | |
1054 | return bfd_reloc_ok; | |
1055 | } | |
1056 | ||
1057 | return bfd_reloc_continue; | |
1058 | } | |
1059 | \f | |
0ac4564e L |
1060 | /* Copy the program header and other data from one object module to |
1061 | another. */ | |
252b5132 | 1062 | |
b34976b6 | 1063 | bfd_boolean |
217aa764 | 1064 | _bfd_elf_copy_private_bfd_data (bfd *ibfd, bfd *obfd) |
2d502050 L |
1065 | { |
1066 | if (bfd_get_flavour (ibfd) != bfd_target_elf_flavour | |
1067 | || bfd_get_flavour (obfd) != bfd_target_elf_flavour) | |
b34976b6 | 1068 | return TRUE; |
2d502050 L |
1069 | |
1070 | BFD_ASSERT (!elf_flags_init (obfd) | |
1071 | || (elf_elfheader (obfd)->e_flags | |
1072 | == elf_elfheader (ibfd)->e_flags)); | |
1073 | ||
0ac4564e | 1074 | elf_gp (obfd) = elf_gp (ibfd); |
2d502050 | 1075 | elf_elfheader (obfd)->e_flags = elf_elfheader (ibfd)->e_flags; |
b34976b6 | 1076 | elf_flags_init (obfd) = TRUE; |
104d59d1 JM |
1077 | |
1078 | /* Copy object attributes. */ | |
1079 | _bfd_elf_copy_obj_attributes (ibfd, obfd); | |
1080 | ||
b34976b6 | 1081 | return TRUE; |
2d502050 L |
1082 | } |
1083 | ||
cedc298e L |
1084 | static const char * |
1085 | get_segment_type (unsigned int p_type) | |
1086 | { | |
1087 | const char *pt; | |
1088 | switch (p_type) | |
1089 | { | |
1090 | case PT_NULL: pt = "NULL"; break; | |
1091 | case PT_LOAD: pt = "LOAD"; break; | |
1092 | case PT_DYNAMIC: pt = "DYNAMIC"; break; | |
1093 | case PT_INTERP: pt = "INTERP"; break; | |
1094 | case PT_NOTE: pt = "NOTE"; break; | |
1095 | case PT_SHLIB: pt = "SHLIB"; break; | |
1096 | case PT_PHDR: pt = "PHDR"; break; | |
1097 | case PT_TLS: pt = "TLS"; break; | |
1098 | case PT_GNU_EH_FRAME: pt = "EH_FRAME"; break; | |
2b05f1b7 | 1099 | case PT_GNU_STACK: pt = "STACK"; break; |
cedc298e L |
1100 | case PT_GNU_RELRO: pt = "RELRO"; break; |
1101 | default: pt = NULL; break; | |
1102 | } | |
1103 | return pt; | |
1104 | } | |
1105 | ||
f0b79d91 L |
1106 | /* Print out the program headers. */ |
1107 | ||
b34976b6 | 1108 | bfd_boolean |
217aa764 | 1109 | _bfd_elf_print_private_bfd_data (bfd *abfd, void *farg) |
252b5132 | 1110 | { |
217aa764 | 1111 | FILE *f = farg; |
252b5132 RH |
1112 | Elf_Internal_Phdr *p; |
1113 | asection *s; | |
1114 | bfd_byte *dynbuf = NULL; | |
1115 | ||
1116 | p = elf_tdata (abfd)->phdr; | |
1117 | if (p != NULL) | |
1118 | { | |
1119 | unsigned int i, c; | |
1120 | ||
1121 | fprintf (f, _("\nProgram Header:\n")); | |
1122 | c = elf_elfheader (abfd)->e_phnum; | |
1123 | for (i = 0; i < c; i++, p++) | |
1124 | { | |
cedc298e | 1125 | const char *pt = get_segment_type (p->p_type); |
252b5132 RH |
1126 | char buf[20]; |
1127 | ||
cedc298e | 1128 | if (pt == NULL) |
252b5132 | 1129 | { |
cedc298e L |
1130 | sprintf (buf, "0x%lx", p->p_type); |
1131 | pt = buf; | |
252b5132 | 1132 | } |
dc810e39 | 1133 | fprintf (f, "%8s off 0x", pt); |
60b89a18 | 1134 | bfd_fprintf_vma (abfd, f, p->p_offset); |
252b5132 | 1135 | fprintf (f, " vaddr 0x"); |
60b89a18 | 1136 | bfd_fprintf_vma (abfd, f, p->p_vaddr); |
252b5132 | 1137 | fprintf (f, " paddr 0x"); |
60b89a18 | 1138 | bfd_fprintf_vma (abfd, f, p->p_paddr); |
252b5132 RH |
1139 | fprintf (f, " align 2**%u\n", bfd_log2 (p->p_align)); |
1140 | fprintf (f, " filesz 0x"); | |
60b89a18 | 1141 | bfd_fprintf_vma (abfd, f, p->p_filesz); |
252b5132 | 1142 | fprintf (f, " memsz 0x"); |
60b89a18 | 1143 | bfd_fprintf_vma (abfd, f, p->p_memsz); |
252b5132 RH |
1144 | fprintf (f, " flags %c%c%c", |
1145 | (p->p_flags & PF_R) != 0 ? 'r' : '-', | |
1146 | (p->p_flags & PF_W) != 0 ? 'w' : '-', | |
1147 | (p->p_flags & PF_X) != 0 ? 'x' : '-'); | |
dc810e39 AM |
1148 | if ((p->p_flags &~ (unsigned) (PF_R | PF_W | PF_X)) != 0) |
1149 | fprintf (f, " %lx", p->p_flags &~ (unsigned) (PF_R | PF_W | PF_X)); | |
252b5132 RH |
1150 | fprintf (f, "\n"); |
1151 | } | |
1152 | } | |
1153 | ||
1154 | s = bfd_get_section_by_name (abfd, ".dynamic"); | |
1155 | if (s != NULL) | |
1156 | { | |
cb33740c | 1157 | unsigned int elfsec; |
dc810e39 | 1158 | unsigned long shlink; |
252b5132 RH |
1159 | bfd_byte *extdyn, *extdynend; |
1160 | size_t extdynsize; | |
217aa764 | 1161 | void (*swap_dyn_in) (bfd *, const void *, Elf_Internal_Dyn *); |
252b5132 RH |
1162 | |
1163 | fprintf (f, _("\nDynamic Section:\n")); | |
1164 | ||
eea6121a | 1165 | if (!bfd_malloc_and_get_section (abfd, s, &dynbuf)) |
252b5132 RH |
1166 | goto error_return; |
1167 | ||
1168 | elfsec = _bfd_elf_section_from_bfd_section (abfd, s); | |
cb33740c | 1169 | if (elfsec == SHN_BAD) |
252b5132 | 1170 | goto error_return; |
dc810e39 | 1171 | shlink = elf_elfsections (abfd)[elfsec]->sh_link; |
252b5132 RH |
1172 | |
1173 | extdynsize = get_elf_backend_data (abfd)->s->sizeof_dyn; | |
1174 | swap_dyn_in = get_elf_backend_data (abfd)->s->swap_dyn_in; | |
1175 | ||
1176 | extdyn = dynbuf; | |
eea6121a | 1177 | extdynend = extdyn + s->size; |
252b5132 RH |
1178 | for (; extdyn < extdynend; extdyn += extdynsize) |
1179 | { | |
1180 | Elf_Internal_Dyn dyn; | |
ad9563d6 | 1181 | const char *name = ""; |
252b5132 | 1182 | char ab[20]; |
b34976b6 | 1183 | bfd_boolean stringp; |
ad9563d6 | 1184 | const struct elf_backend_data *bed = get_elf_backend_data (abfd); |
252b5132 | 1185 | |
217aa764 | 1186 | (*swap_dyn_in) (abfd, extdyn, &dyn); |
252b5132 RH |
1187 | |
1188 | if (dyn.d_tag == DT_NULL) | |
1189 | break; | |
1190 | ||
b34976b6 | 1191 | stringp = FALSE; |
252b5132 RH |
1192 | switch (dyn.d_tag) |
1193 | { | |
1194 | default: | |
ad9563d6 CM |
1195 | if (bed->elf_backend_get_target_dtag) |
1196 | name = (*bed->elf_backend_get_target_dtag) (dyn.d_tag); | |
1197 | ||
1198 | if (!strcmp (name, "")) | |
1199 | { | |
1200 | sprintf (ab, "0x%lx", (unsigned long) dyn.d_tag); | |
1201 | name = ab; | |
1202 | } | |
252b5132 RH |
1203 | break; |
1204 | ||
b34976b6 | 1205 | case DT_NEEDED: name = "NEEDED"; stringp = TRUE; break; |
252b5132 RH |
1206 | case DT_PLTRELSZ: name = "PLTRELSZ"; break; |
1207 | case DT_PLTGOT: name = "PLTGOT"; break; | |
1208 | case DT_HASH: name = "HASH"; break; | |
1209 | case DT_STRTAB: name = "STRTAB"; break; | |
1210 | case DT_SYMTAB: name = "SYMTAB"; break; | |
1211 | case DT_RELA: name = "RELA"; break; | |
1212 | case DT_RELASZ: name = "RELASZ"; break; | |
1213 | case DT_RELAENT: name = "RELAENT"; break; | |
1214 | case DT_STRSZ: name = "STRSZ"; break; | |
1215 | case DT_SYMENT: name = "SYMENT"; break; | |
1216 | case DT_INIT: name = "INIT"; break; | |
1217 | case DT_FINI: name = "FINI"; break; | |
b34976b6 AM |
1218 | case DT_SONAME: name = "SONAME"; stringp = TRUE; break; |
1219 | case DT_RPATH: name = "RPATH"; stringp = TRUE; break; | |
252b5132 RH |
1220 | case DT_SYMBOLIC: name = "SYMBOLIC"; break; |
1221 | case DT_REL: name = "REL"; break; | |
1222 | case DT_RELSZ: name = "RELSZ"; break; | |
1223 | case DT_RELENT: name = "RELENT"; break; | |
1224 | case DT_PLTREL: name = "PLTREL"; break; | |
1225 | case DT_DEBUG: name = "DEBUG"; break; | |
1226 | case DT_TEXTREL: name = "TEXTREL"; break; | |
1227 | case DT_JMPREL: name = "JMPREL"; break; | |
94558834 L |
1228 | case DT_BIND_NOW: name = "BIND_NOW"; break; |
1229 | case DT_INIT_ARRAY: name = "INIT_ARRAY"; break; | |
1230 | case DT_FINI_ARRAY: name = "FINI_ARRAY"; break; | |
1231 | case DT_INIT_ARRAYSZ: name = "INIT_ARRAYSZ"; break; | |
1232 | case DT_FINI_ARRAYSZ: name = "FINI_ARRAYSZ"; break; | |
b34976b6 | 1233 | case DT_RUNPATH: name = "RUNPATH"; stringp = TRUE; break; |
94558834 L |
1234 | case DT_FLAGS: name = "FLAGS"; break; |
1235 | case DT_PREINIT_ARRAY: name = "PREINIT_ARRAY"; break; | |
1236 | case DT_PREINIT_ARRAYSZ: name = "PREINIT_ARRAYSZ"; break; | |
d48188b9 | 1237 | case DT_CHECKSUM: name = "CHECKSUM"; break; |
94558834 L |
1238 | case DT_PLTPADSZ: name = "PLTPADSZ"; break; |
1239 | case DT_MOVEENT: name = "MOVEENT"; break; | |
1240 | case DT_MOVESZ: name = "MOVESZ"; break; | |
1241 | case DT_FEATURE: name = "FEATURE"; break; | |
1242 | case DT_POSFLAG_1: name = "POSFLAG_1"; break; | |
1243 | case DT_SYMINSZ: name = "SYMINSZ"; break; | |
1244 | case DT_SYMINENT: name = "SYMINENT"; break; | |
b34976b6 AM |
1245 | case DT_CONFIG: name = "CONFIG"; stringp = TRUE; break; |
1246 | case DT_DEPAUDIT: name = "DEPAUDIT"; stringp = TRUE; break; | |
1247 | case DT_AUDIT: name = "AUDIT"; stringp = TRUE; break; | |
94558834 L |
1248 | case DT_PLTPAD: name = "PLTPAD"; break; |
1249 | case DT_MOVETAB: name = "MOVETAB"; break; | |
1250 | case DT_SYMINFO: name = "SYMINFO"; break; | |
1251 | case DT_RELACOUNT: name = "RELACOUNT"; break; | |
1252 | case DT_RELCOUNT: name = "RELCOUNT"; break; | |
1253 | case DT_FLAGS_1: name = "FLAGS_1"; break; | |
252b5132 RH |
1254 | case DT_VERSYM: name = "VERSYM"; break; |
1255 | case DT_VERDEF: name = "VERDEF"; break; | |
1256 | case DT_VERDEFNUM: name = "VERDEFNUM"; break; | |
1257 | case DT_VERNEED: name = "VERNEED"; break; | |
1258 | case DT_VERNEEDNUM: name = "VERNEEDNUM"; break; | |
b34976b6 | 1259 | case DT_AUXILIARY: name = "AUXILIARY"; stringp = TRUE; break; |
94558834 | 1260 | case DT_USED: name = "USED"; break; |
b34976b6 | 1261 | case DT_FILTER: name = "FILTER"; stringp = TRUE; break; |
fdc90cb4 | 1262 | case DT_GNU_HASH: name = "GNU_HASH"; break; |
252b5132 RH |
1263 | } |
1264 | ||
ad9563d6 | 1265 | fprintf (f, " %-20s ", name); |
252b5132 | 1266 | if (! stringp) |
a1f3c56e AN |
1267 | { |
1268 | fprintf (f, "0x"); | |
1269 | bfd_fprintf_vma (abfd, f, dyn.d_un.d_val); | |
1270 | } | |
252b5132 RH |
1271 | else |
1272 | { | |
1273 | const char *string; | |
dc810e39 | 1274 | unsigned int tagv = dyn.d_un.d_val; |
252b5132 | 1275 | |
dc810e39 | 1276 | string = bfd_elf_string_from_elf_section (abfd, shlink, tagv); |
252b5132 RH |
1277 | if (string == NULL) |
1278 | goto error_return; | |
1279 | fprintf (f, "%s", string); | |
1280 | } | |
1281 | fprintf (f, "\n"); | |
1282 | } | |
1283 | ||
1284 | free (dynbuf); | |
1285 | dynbuf = NULL; | |
1286 | } | |
1287 | ||
1288 | if ((elf_dynverdef (abfd) != 0 && elf_tdata (abfd)->verdef == NULL) | |
1289 | || (elf_dynverref (abfd) != 0 && elf_tdata (abfd)->verref == NULL)) | |
1290 | { | |
fc0e6df6 | 1291 | if (! _bfd_elf_slurp_version_tables (abfd, FALSE)) |
b34976b6 | 1292 | return FALSE; |
252b5132 RH |
1293 | } |
1294 | ||
1295 | if (elf_dynverdef (abfd) != 0) | |
1296 | { | |
1297 | Elf_Internal_Verdef *t; | |
1298 | ||
1299 | fprintf (f, _("\nVersion definitions:\n")); | |
1300 | for (t = elf_tdata (abfd)->verdef; t != NULL; t = t->vd_nextdef) | |
1301 | { | |
1302 | fprintf (f, "%d 0x%2.2x 0x%8.8lx %s\n", t->vd_ndx, | |
d0fb9a8d JJ |
1303 | t->vd_flags, t->vd_hash, |
1304 | t->vd_nodename ? t->vd_nodename : "<corrupt>"); | |
1305 | if (t->vd_auxptr != NULL && t->vd_auxptr->vda_nextptr != NULL) | |
252b5132 RH |
1306 | { |
1307 | Elf_Internal_Verdaux *a; | |
1308 | ||
1309 | fprintf (f, "\t"); | |
1310 | for (a = t->vd_auxptr->vda_nextptr; | |
1311 | a != NULL; | |
1312 | a = a->vda_nextptr) | |
d0fb9a8d JJ |
1313 | fprintf (f, "%s ", |
1314 | a->vda_nodename ? a->vda_nodename : "<corrupt>"); | |
252b5132 RH |
1315 | fprintf (f, "\n"); |
1316 | } | |
1317 | } | |
1318 | } | |
1319 | ||
1320 | if (elf_dynverref (abfd) != 0) | |
1321 | { | |
1322 | Elf_Internal_Verneed *t; | |
1323 | ||
1324 | fprintf (f, _("\nVersion References:\n")); | |
1325 | for (t = elf_tdata (abfd)->verref; t != NULL; t = t->vn_nextref) | |
1326 | { | |
1327 | Elf_Internal_Vernaux *a; | |
1328 | ||
d0fb9a8d JJ |
1329 | fprintf (f, _(" required from %s:\n"), |
1330 | t->vn_filename ? t->vn_filename : "<corrupt>"); | |
252b5132 RH |
1331 | for (a = t->vn_auxptr; a != NULL; a = a->vna_nextptr) |
1332 | fprintf (f, " 0x%8.8lx 0x%2.2x %2.2d %s\n", a->vna_hash, | |
d0fb9a8d JJ |
1333 | a->vna_flags, a->vna_other, |
1334 | a->vna_nodename ? a->vna_nodename : "<corrupt>"); | |
252b5132 RH |
1335 | } |
1336 | } | |
1337 | ||
b34976b6 | 1338 | return TRUE; |
252b5132 RH |
1339 | |
1340 | error_return: | |
1341 | if (dynbuf != NULL) | |
1342 | free (dynbuf); | |
b34976b6 | 1343 | return FALSE; |
252b5132 RH |
1344 | } |
1345 | ||
1346 | /* Display ELF-specific fields of a symbol. */ | |
1347 | ||
1348 | void | |
217aa764 AM |
1349 | bfd_elf_print_symbol (bfd *abfd, |
1350 | void *filep, | |
1351 | asymbol *symbol, | |
1352 | bfd_print_symbol_type how) | |
252b5132 | 1353 | { |
217aa764 | 1354 | FILE *file = filep; |
252b5132 RH |
1355 | switch (how) |
1356 | { | |
1357 | case bfd_print_symbol_name: | |
1358 | fprintf (file, "%s", symbol->name); | |
1359 | break; | |
1360 | case bfd_print_symbol_more: | |
1361 | fprintf (file, "elf "); | |
60b89a18 | 1362 | bfd_fprintf_vma (abfd, file, symbol->value); |
0af1713e | 1363 | fprintf (file, " %lx", (unsigned long) symbol->flags); |
252b5132 RH |
1364 | break; |
1365 | case bfd_print_symbol_all: | |
1366 | { | |
4e8a9624 AM |
1367 | const char *section_name; |
1368 | const char *name = NULL; | |
9c5bfbb7 | 1369 | const struct elf_backend_data *bed; |
7a13edea | 1370 | unsigned char st_other; |
dbb410c3 | 1371 | bfd_vma val; |
c044fabd | 1372 | |
252b5132 | 1373 | section_name = symbol->section ? symbol->section->name : "(*none*)"; |
587ff49e RH |
1374 | |
1375 | bed = get_elf_backend_data (abfd); | |
1376 | if (bed->elf_backend_print_symbol_all) | |
c044fabd | 1377 | name = (*bed->elf_backend_print_symbol_all) (abfd, filep, symbol); |
587ff49e RH |
1378 | |
1379 | if (name == NULL) | |
1380 | { | |
7ee38065 | 1381 | name = symbol->name; |
217aa764 | 1382 | bfd_print_symbol_vandf (abfd, file, symbol); |
587ff49e RH |
1383 | } |
1384 | ||
252b5132 RH |
1385 | fprintf (file, " %s\t", section_name); |
1386 | /* Print the "other" value for a symbol. For common symbols, | |
1387 | we've already printed the size; now print the alignment. | |
1388 | For other symbols, we have no specified alignment, and | |
1389 | we've printed the address; now print the size. */ | |
dcf6c779 | 1390 | if (symbol->section && bfd_is_com_section (symbol->section)) |
dbb410c3 AM |
1391 | val = ((elf_symbol_type *) symbol)->internal_elf_sym.st_value; |
1392 | else | |
1393 | val = ((elf_symbol_type *) symbol)->internal_elf_sym.st_size; | |
1394 | bfd_fprintf_vma (abfd, file, val); | |
252b5132 RH |
1395 | |
1396 | /* If we have version information, print it. */ | |
1397 | if (elf_tdata (abfd)->dynversym_section != 0 | |
1398 | && (elf_tdata (abfd)->dynverdef_section != 0 | |
1399 | || elf_tdata (abfd)->dynverref_section != 0)) | |
1400 | { | |
1401 | unsigned int vernum; | |
1402 | const char *version_string; | |
1403 | ||
1404 | vernum = ((elf_symbol_type *) symbol)->version & VERSYM_VERSION; | |
1405 | ||
1406 | if (vernum == 0) | |
1407 | version_string = ""; | |
1408 | else if (vernum == 1) | |
1409 | version_string = "Base"; | |
1410 | else if (vernum <= elf_tdata (abfd)->cverdefs) | |
1411 | version_string = | |
1412 | elf_tdata (abfd)->verdef[vernum - 1].vd_nodename; | |
1413 | else | |
1414 | { | |
1415 | Elf_Internal_Verneed *t; | |
1416 | ||
1417 | version_string = ""; | |
1418 | for (t = elf_tdata (abfd)->verref; | |
1419 | t != NULL; | |
1420 | t = t->vn_nextref) | |
1421 | { | |
1422 | Elf_Internal_Vernaux *a; | |
1423 | ||
1424 | for (a = t->vn_auxptr; a != NULL; a = a->vna_nextptr) | |
1425 | { | |
1426 | if (a->vna_other == vernum) | |
1427 | { | |
1428 | version_string = a->vna_nodename; | |
1429 | break; | |
1430 | } | |
1431 | } | |
1432 | } | |
1433 | } | |
1434 | ||
1435 | if ((((elf_symbol_type *) symbol)->version & VERSYM_HIDDEN) == 0) | |
1436 | fprintf (file, " %-11s", version_string); | |
1437 | else | |
1438 | { | |
1439 | int i; | |
1440 | ||
1441 | fprintf (file, " (%s)", version_string); | |
1442 | for (i = 10 - strlen (version_string); i > 0; --i) | |
1443 | putc (' ', file); | |
1444 | } | |
1445 | } | |
1446 | ||
1447 | /* If the st_other field is not zero, print it. */ | |
7a13edea | 1448 | st_other = ((elf_symbol_type *) symbol)->internal_elf_sym.st_other; |
c044fabd | 1449 | |
7a13edea NC |
1450 | switch (st_other) |
1451 | { | |
1452 | case 0: break; | |
1453 | case STV_INTERNAL: fprintf (file, " .internal"); break; | |
1454 | case STV_HIDDEN: fprintf (file, " .hidden"); break; | |
1455 | case STV_PROTECTED: fprintf (file, " .protected"); break; | |
1456 | default: | |
1457 | /* Some other non-defined flags are also present, so print | |
1458 | everything hex. */ | |
1459 | fprintf (file, " 0x%02x", (unsigned int) st_other); | |
1460 | } | |
252b5132 | 1461 | |
587ff49e | 1462 | fprintf (file, " %s", name); |
252b5132 RH |
1463 | } |
1464 | break; | |
1465 | } | |
1466 | } | |
252b5132 | 1467 | |
252b5132 RH |
1468 | /* Allocate an ELF string table--force the first byte to be zero. */ |
1469 | ||
1470 | struct bfd_strtab_hash * | |
217aa764 | 1471 | _bfd_elf_stringtab_init (void) |
252b5132 RH |
1472 | { |
1473 | struct bfd_strtab_hash *ret; | |
1474 | ||
1475 | ret = _bfd_stringtab_init (); | |
1476 | if (ret != NULL) | |
1477 | { | |
1478 | bfd_size_type loc; | |
1479 | ||
b34976b6 | 1480 | loc = _bfd_stringtab_add (ret, "", TRUE, FALSE); |
252b5132 RH |
1481 | BFD_ASSERT (loc == 0 || loc == (bfd_size_type) -1); |
1482 | if (loc == (bfd_size_type) -1) | |
1483 | { | |
1484 | _bfd_stringtab_free (ret); | |
1485 | ret = NULL; | |
1486 | } | |
1487 | } | |
1488 | return ret; | |
1489 | } | |
1490 | \f | |
1491 | /* ELF .o/exec file reading */ | |
1492 | ||
c044fabd | 1493 | /* Create a new bfd section from an ELF section header. */ |
252b5132 | 1494 | |
b34976b6 | 1495 | bfd_boolean |
217aa764 | 1496 | bfd_section_from_shdr (bfd *abfd, unsigned int shindex) |
252b5132 | 1497 | { |
4fbb74a6 AM |
1498 | Elf_Internal_Shdr *hdr; |
1499 | Elf_Internal_Ehdr *ehdr; | |
1500 | const struct elf_backend_data *bed; | |
90937f86 | 1501 | const char *name; |
252b5132 | 1502 | |
4fbb74a6 AM |
1503 | if (shindex >= elf_numsections (abfd)) |
1504 | return FALSE; | |
1505 | ||
1506 | hdr = elf_elfsections (abfd)[shindex]; | |
1507 | ehdr = elf_elfheader (abfd); | |
1508 | name = bfd_elf_string_from_elf_section (abfd, ehdr->e_shstrndx, | |
1b3a8575 | 1509 | hdr->sh_name); |
933d961a JJ |
1510 | if (name == NULL) |
1511 | return FALSE; | |
252b5132 | 1512 | |
4fbb74a6 | 1513 | bed = get_elf_backend_data (abfd); |
252b5132 RH |
1514 | switch (hdr->sh_type) |
1515 | { | |
1516 | case SHT_NULL: | |
1517 | /* Inactive section. Throw it away. */ | |
b34976b6 | 1518 | return TRUE; |
252b5132 RH |
1519 | |
1520 | case SHT_PROGBITS: /* Normal section with contents. */ | |
252b5132 RH |
1521 | case SHT_NOBITS: /* .bss section. */ |
1522 | case SHT_HASH: /* .hash section. */ | |
1523 | case SHT_NOTE: /* .note section. */ | |
25e27870 L |
1524 | case SHT_INIT_ARRAY: /* .init_array section. */ |
1525 | case SHT_FINI_ARRAY: /* .fini_array section. */ | |
1526 | case SHT_PREINIT_ARRAY: /* .preinit_array section. */ | |
7f1204bb | 1527 | case SHT_GNU_LIBLIST: /* .gnu.liblist section. */ |
fdc90cb4 | 1528 | case SHT_GNU_HASH: /* .gnu.hash section. */ |
6dc132d9 | 1529 | return _bfd_elf_make_section_from_shdr (abfd, hdr, name, shindex); |
252b5132 | 1530 | |
797fc050 | 1531 | case SHT_DYNAMIC: /* Dynamic linking information. */ |
6dc132d9 | 1532 | if (! _bfd_elf_make_section_from_shdr (abfd, hdr, name, shindex)) |
b34976b6 | 1533 | return FALSE; |
8e0ed13f NC |
1534 | if (hdr->sh_link > elf_numsections (abfd) |
1535 | || elf_elfsections (abfd)[hdr->sh_link] == NULL) | |
1536 | return FALSE; | |
797fc050 AM |
1537 | if (elf_elfsections (abfd)[hdr->sh_link]->sh_type != SHT_STRTAB) |
1538 | { | |
1539 | Elf_Internal_Shdr *dynsymhdr; | |
1540 | ||
1541 | /* The shared libraries distributed with hpux11 have a bogus | |
1542 | sh_link field for the ".dynamic" section. Find the | |
1543 | string table for the ".dynsym" section instead. */ | |
1544 | if (elf_dynsymtab (abfd) != 0) | |
1545 | { | |
1546 | dynsymhdr = elf_elfsections (abfd)[elf_dynsymtab (abfd)]; | |
1547 | hdr->sh_link = dynsymhdr->sh_link; | |
1548 | } | |
1549 | else | |
1550 | { | |
1551 | unsigned int i, num_sec; | |
1552 | ||
1553 | num_sec = elf_numsections (abfd); | |
1554 | for (i = 1; i < num_sec; i++) | |
1555 | { | |
1556 | dynsymhdr = elf_elfsections (abfd)[i]; | |
1557 | if (dynsymhdr->sh_type == SHT_DYNSYM) | |
1558 | { | |
1559 | hdr->sh_link = dynsymhdr->sh_link; | |
1560 | break; | |
1561 | } | |
1562 | } | |
1563 | } | |
1564 | } | |
1565 | break; | |
1566 | ||
252b5132 RH |
1567 | case SHT_SYMTAB: /* A symbol table */ |
1568 | if (elf_onesymtab (abfd) == shindex) | |
b34976b6 | 1569 | return TRUE; |
252b5132 | 1570 | |
a50b2160 JJ |
1571 | if (hdr->sh_entsize != bed->s->sizeof_sym) |
1572 | return FALSE; | |
3337c1e5 AM |
1573 | if (hdr->sh_info * hdr->sh_entsize > hdr->sh_size) |
1574 | return FALSE; | |
252b5132 RH |
1575 | BFD_ASSERT (elf_onesymtab (abfd) == 0); |
1576 | elf_onesymtab (abfd) = shindex; | |
1577 | elf_tdata (abfd)->symtab_hdr = *hdr; | |
1578 | elf_elfsections (abfd)[shindex] = hdr = &elf_tdata (abfd)->symtab_hdr; | |
1579 | abfd->flags |= HAS_SYMS; | |
1580 | ||
1581 | /* Sometimes a shared object will map in the symbol table. If | |
08a40648 AM |
1582 | SHF_ALLOC is set, and this is a shared object, then we also |
1583 | treat this section as a BFD section. We can not base the | |
1584 | decision purely on SHF_ALLOC, because that flag is sometimes | |
1585 | set in a relocatable object file, which would confuse the | |
1586 | linker. */ | |
252b5132 RH |
1587 | if ((hdr->sh_flags & SHF_ALLOC) != 0 |
1588 | && (abfd->flags & DYNAMIC) != 0 | |
6dc132d9 L |
1589 | && ! _bfd_elf_make_section_from_shdr (abfd, hdr, name, |
1590 | shindex)) | |
b34976b6 | 1591 | return FALSE; |
252b5132 | 1592 | |
1b3a8575 AM |
1593 | /* Go looking for SHT_SYMTAB_SHNDX too, since if there is one we |
1594 | can't read symbols without that section loaded as well. It | |
1595 | is most likely specified by the next section header. */ | |
1596 | if (elf_elfsections (abfd)[elf_symtab_shndx (abfd)]->sh_link != shindex) | |
1597 | { | |
1598 | unsigned int i, num_sec; | |
1599 | ||
1600 | num_sec = elf_numsections (abfd); | |
1601 | for (i = shindex + 1; i < num_sec; i++) | |
1602 | { | |
1603 | Elf_Internal_Shdr *hdr2 = elf_elfsections (abfd)[i]; | |
1604 | if (hdr2->sh_type == SHT_SYMTAB_SHNDX | |
1605 | && hdr2->sh_link == shindex) | |
1606 | break; | |
1607 | } | |
1608 | if (i == num_sec) | |
1609 | for (i = 1; i < shindex; i++) | |
1610 | { | |
1611 | Elf_Internal_Shdr *hdr2 = elf_elfsections (abfd)[i]; | |
1612 | if (hdr2->sh_type == SHT_SYMTAB_SHNDX | |
1613 | && hdr2->sh_link == shindex) | |
1614 | break; | |
1615 | } | |
1616 | if (i != shindex) | |
1617 | return bfd_section_from_shdr (abfd, i); | |
1618 | } | |
b34976b6 | 1619 | return TRUE; |
252b5132 RH |
1620 | |
1621 | case SHT_DYNSYM: /* A dynamic symbol table */ | |
1622 | if (elf_dynsymtab (abfd) == shindex) | |
b34976b6 | 1623 | return TRUE; |
252b5132 | 1624 | |
a50b2160 JJ |
1625 | if (hdr->sh_entsize != bed->s->sizeof_sym) |
1626 | return FALSE; | |
252b5132 RH |
1627 | BFD_ASSERT (elf_dynsymtab (abfd) == 0); |
1628 | elf_dynsymtab (abfd) = shindex; | |
1629 | elf_tdata (abfd)->dynsymtab_hdr = *hdr; | |
1630 | elf_elfsections (abfd)[shindex] = hdr = &elf_tdata (abfd)->dynsymtab_hdr; | |
1631 | abfd->flags |= HAS_SYMS; | |
1632 | ||
1633 | /* Besides being a symbol table, we also treat this as a regular | |
1634 | section, so that objcopy can handle it. */ | |
6dc132d9 | 1635 | return _bfd_elf_make_section_from_shdr (abfd, hdr, name, shindex); |
252b5132 | 1636 | |
9ad5cbcf AM |
1637 | case SHT_SYMTAB_SHNDX: /* Symbol section indices when >64k sections */ |
1638 | if (elf_symtab_shndx (abfd) == shindex) | |
b34976b6 | 1639 | return TRUE; |
9ad5cbcf | 1640 | |
1b3a8575 | 1641 | BFD_ASSERT (elf_symtab_shndx (abfd) == 0); |
9ad5cbcf AM |
1642 | elf_symtab_shndx (abfd) = shindex; |
1643 | elf_tdata (abfd)->symtab_shndx_hdr = *hdr; | |
1644 | elf_elfsections (abfd)[shindex] = &elf_tdata (abfd)->symtab_shndx_hdr; | |
b34976b6 | 1645 | return TRUE; |
9ad5cbcf | 1646 | |
252b5132 RH |
1647 | case SHT_STRTAB: /* A string table */ |
1648 | if (hdr->bfd_section != NULL) | |
b34976b6 | 1649 | return TRUE; |
252b5132 RH |
1650 | if (ehdr->e_shstrndx == shindex) |
1651 | { | |
1652 | elf_tdata (abfd)->shstrtab_hdr = *hdr; | |
1653 | elf_elfsections (abfd)[shindex] = &elf_tdata (abfd)->shstrtab_hdr; | |
b34976b6 | 1654 | return TRUE; |
252b5132 | 1655 | } |
1b3a8575 AM |
1656 | if (elf_elfsections (abfd)[elf_onesymtab (abfd)]->sh_link == shindex) |
1657 | { | |
1658 | symtab_strtab: | |
1659 | elf_tdata (abfd)->strtab_hdr = *hdr; | |
1660 | elf_elfsections (abfd)[shindex] = &elf_tdata (abfd)->strtab_hdr; | |
1661 | return TRUE; | |
1662 | } | |
1663 | if (elf_elfsections (abfd)[elf_dynsymtab (abfd)]->sh_link == shindex) | |
1664 | { | |
1665 | dynsymtab_strtab: | |
1666 | elf_tdata (abfd)->dynstrtab_hdr = *hdr; | |
1667 | hdr = &elf_tdata (abfd)->dynstrtab_hdr; | |
1668 | elf_elfsections (abfd)[shindex] = hdr; | |
1669 | /* We also treat this as a regular section, so that objcopy | |
1670 | can handle it. */ | |
6dc132d9 L |
1671 | return _bfd_elf_make_section_from_shdr (abfd, hdr, name, |
1672 | shindex); | |
1b3a8575 | 1673 | } |
252b5132 | 1674 | |
1b3a8575 AM |
1675 | /* If the string table isn't one of the above, then treat it as a |
1676 | regular section. We need to scan all the headers to be sure, | |
1677 | just in case this strtab section appeared before the above. */ | |
1678 | if (elf_onesymtab (abfd) == 0 || elf_dynsymtab (abfd) == 0) | |
1679 | { | |
1680 | unsigned int i, num_sec; | |
252b5132 | 1681 | |
1b3a8575 AM |
1682 | num_sec = elf_numsections (abfd); |
1683 | for (i = 1; i < num_sec; i++) | |
1684 | { | |
1685 | Elf_Internal_Shdr *hdr2 = elf_elfsections (abfd)[i]; | |
1686 | if (hdr2->sh_link == shindex) | |
1687 | { | |
933d961a JJ |
1688 | /* Prevent endless recursion on broken objects. */ |
1689 | if (i == shindex) | |
1690 | return FALSE; | |
1b3a8575 AM |
1691 | if (! bfd_section_from_shdr (abfd, i)) |
1692 | return FALSE; | |
1693 | if (elf_onesymtab (abfd) == i) | |
1694 | goto symtab_strtab; | |
1695 | if (elf_dynsymtab (abfd) == i) | |
1696 | goto dynsymtab_strtab; | |
1697 | } | |
1698 | } | |
1699 | } | |
6dc132d9 | 1700 | return _bfd_elf_make_section_from_shdr (abfd, hdr, name, shindex); |
252b5132 RH |
1701 | |
1702 | case SHT_REL: | |
1703 | case SHT_RELA: | |
1704 | /* *These* do a lot of work -- but build no sections! */ | |
1705 | { | |
1706 | asection *target_sect; | |
1707 | Elf_Internal_Shdr *hdr2; | |
9ad5cbcf | 1708 | unsigned int num_sec = elf_numsections (abfd); |
252b5132 | 1709 | |
aa2ca951 JJ |
1710 | if (hdr->sh_entsize |
1711 | != (bfd_size_type) (hdr->sh_type == SHT_REL | |
a50b2160 JJ |
1712 | ? bed->s->sizeof_rel : bed->s->sizeof_rela)) |
1713 | return FALSE; | |
1714 | ||
03ae5f59 | 1715 | /* Check for a bogus link to avoid crashing. */ |
4fbb74a6 | 1716 | if (hdr->sh_link >= num_sec) |
03ae5f59 ILT |
1717 | { |
1718 | ((*_bfd_error_handler) | |
d003868e AM |
1719 | (_("%B: invalid link %lu for reloc section %s (index %u)"), |
1720 | abfd, hdr->sh_link, name, shindex)); | |
6dc132d9 L |
1721 | return _bfd_elf_make_section_from_shdr (abfd, hdr, name, |
1722 | shindex); | |
03ae5f59 ILT |
1723 | } |
1724 | ||
252b5132 RH |
1725 | /* For some incomprehensible reason Oracle distributes |
1726 | libraries for Solaris in which some of the objects have | |
1727 | bogus sh_link fields. It would be nice if we could just | |
1728 | reject them, but, unfortunately, some people need to use | |
1729 | them. We scan through the section headers; if we find only | |
1730 | one suitable symbol table, we clobber the sh_link to point | |
1731 | to it. I hope this doesn't break anything. */ | |
1732 | if (elf_elfsections (abfd)[hdr->sh_link]->sh_type != SHT_SYMTAB | |
1733 | && elf_elfsections (abfd)[hdr->sh_link]->sh_type != SHT_DYNSYM) | |
1734 | { | |
9ad5cbcf | 1735 | unsigned int scan; |
252b5132 RH |
1736 | int found; |
1737 | ||
1738 | found = 0; | |
9ad5cbcf | 1739 | for (scan = 1; scan < num_sec; scan++) |
252b5132 RH |
1740 | { |
1741 | if (elf_elfsections (abfd)[scan]->sh_type == SHT_SYMTAB | |
1742 | || elf_elfsections (abfd)[scan]->sh_type == SHT_DYNSYM) | |
1743 | { | |
1744 | if (found != 0) | |
1745 | { | |
1746 | found = 0; | |
1747 | break; | |
1748 | } | |
1749 | found = scan; | |
1750 | } | |
1751 | } | |
1752 | if (found != 0) | |
1753 | hdr->sh_link = found; | |
1754 | } | |
1755 | ||
1756 | /* Get the symbol table. */ | |
1b3a8575 AM |
1757 | if ((elf_elfsections (abfd)[hdr->sh_link]->sh_type == SHT_SYMTAB |
1758 | || elf_elfsections (abfd)[hdr->sh_link]->sh_type == SHT_DYNSYM) | |
252b5132 | 1759 | && ! bfd_section_from_shdr (abfd, hdr->sh_link)) |
b34976b6 | 1760 | return FALSE; |
252b5132 RH |
1761 | |
1762 | /* If this reloc section does not use the main symbol table we | |
1763 | don't treat it as a reloc section. BFD can't adequately | |
1764 | represent such a section, so at least for now, we don't | |
c044fabd | 1765 | try. We just present it as a normal section. We also |
60bcf0fa | 1766 | can't use it as a reloc section if it points to the null |
185ef66d AM |
1767 | section, an invalid section, or another reloc section. */ |
1768 | if (hdr->sh_link != elf_onesymtab (abfd) | |
1769 | || hdr->sh_info == SHN_UNDEF | |
185ef66d AM |
1770 | || hdr->sh_info >= num_sec |
1771 | || elf_elfsections (abfd)[hdr->sh_info]->sh_type == SHT_REL | |
1772 | || elf_elfsections (abfd)[hdr->sh_info]->sh_type == SHT_RELA) | |
6dc132d9 L |
1773 | return _bfd_elf_make_section_from_shdr (abfd, hdr, name, |
1774 | shindex); | |
252b5132 RH |
1775 | |
1776 | if (! bfd_section_from_shdr (abfd, hdr->sh_info)) | |
b34976b6 | 1777 | return FALSE; |
252b5132 RH |
1778 | target_sect = bfd_section_from_elf_index (abfd, hdr->sh_info); |
1779 | if (target_sect == NULL) | |
b34976b6 | 1780 | return FALSE; |
252b5132 RH |
1781 | |
1782 | if ((target_sect->flags & SEC_RELOC) == 0 | |
1783 | || target_sect->reloc_count == 0) | |
1784 | hdr2 = &elf_section_data (target_sect)->rel_hdr; | |
1785 | else | |
1786 | { | |
dc810e39 | 1787 | bfd_size_type amt; |
252b5132 | 1788 | BFD_ASSERT (elf_section_data (target_sect)->rel_hdr2 == NULL); |
dc810e39 | 1789 | amt = sizeof (*hdr2); |
217aa764 | 1790 | hdr2 = bfd_alloc (abfd, amt); |
14b1c01e AM |
1791 | if (hdr2 == NULL) |
1792 | return FALSE; | |
252b5132 RH |
1793 | elf_section_data (target_sect)->rel_hdr2 = hdr2; |
1794 | } | |
1795 | *hdr2 = *hdr; | |
1796 | elf_elfsections (abfd)[shindex] = hdr2; | |
d9bc7a44 | 1797 | target_sect->reloc_count += NUM_SHDR_ENTRIES (hdr); |
252b5132 RH |
1798 | target_sect->flags |= SEC_RELOC; |
1799 | target_sect->relocation = NULL; | |
1800 | target_sect->rel_filepos = hdr->sh_offset; | |
bf572ba0 MM |
1801 | /* In the section to which the relocations apply, mark whether |
1802 | its relocations are of the REL or RELA variety. */ | |
72730e0c | 1803 | if (hdr->sh_size != 0) |
68bfbfcc | 1804 | target_sect->use_rela_p = hdr->sh_type == SHT_RELA; |
252b5132 | 1805 | abfd->flags |= HAS_RELOC; |
b34976b6 | 1806 | return TRUE; |
252b5132 | 1807 | } |
252b5132 RH |
1808 | |
1809 | case SHT_GNU_verdef: | |
1810 | elf_dynverdef (abfd) = shindex; | |
1811 | elf_tdata (abfd)->dynverdef_hdr = *hdr; | |
6dc132d9 | 1812 | return _bfd_elf_make_section_from_shdr (abfd, hdr, name, shindex); |
252b5132 RH |
1813 | |
1814 | case SHT_GNU_versym: | |
a50b2160 JJ |
1815 | if (hdr->sh_entsize != sizeof (Elf_External_Versym)) |
1816 | return FALSE; | |
252b5132 RH |
1817 | elf_dynversym (abfd) = shindex; |
1818 | elf_tdata (abfd)->dynversym_hdr = *hdr; | |
6dc132d9 | 1819 | return _bfd_elf_make_section_from_shdr (abfd, hdr, name, shindex); |
252b5132 RH |
1820 | |
1821 | case SHT_GNU_verneed: | |
1822 | elf_dynverref (abfd) = shindex; | |
1823 | elf_tdata (abfd)->dynverref_hdr = *hdr; | |
6dc132d9 | 1824 | return _bfd_elf_make_section_from_shdr (abfd, hdr, name, shindex); |
252b5132 RH |
1825 | |
1826 | case SHT_SHLIB: | |
b34976b6 | 1827 | return TRUE; |
252b5132 | 1828 | |
dbb410c3 | 1829 | case SHT_GROUP: |
1783205a | 1830 | if (! IS_VALID_GROUP_SECTION_HEADER (hdr)) |
a50b2160 | 1831 | return FALSE; |
6dc132d9 | 1832 | if (!_bfd_elf_make_section_from_shdr (abfd, hdr, name, shindex)) |
b34976b6 | 1833 | return FALSE; |
dbb410c3 AM |
1834 | if (hdr->contents != NULL) |
1835 | { | |
1836 | Elf_Internal_Group *idx = (Elf_Internal_Group *) hdr->contents; | |
1783205a | 1837 | unsigned int n_elt = hdr->sh_size / GRP_ENTRY_SIZE; |
dbb410c3 AM |
1838 | asection *s; |
1839 | ||
b885599b AM |
1840 | if (idx->flags & GRP_COMDAT) |
1841 | hdr->bfd_section->flags | |
1842 | |= SEC_LINK_ONCE | SEC_LINK_DUPLICATES_DISCARD; | |
1843 | ||
45c5e9ed L |
1844 | /* We try to keep the same section order as it comes in. */ |
1845 | idx += n_elt; | |
dbb410c3 | 1846 | while (--n_elt != 0) |
1783205a NC |
1847 | { |
1848 | --idx; | |
1849 | ||
1850 | if (idx->shdr != NULL | |
1851 | && (s = idx->shdr->bfd_section) != NULL | |
1852 | && elf_next_in_group (s) != NULL) | |
1853 | { | |
1854 | elf_next_in_group (hdr->bfd_section) = s; | |
1855 | break; | |
1856 | } | |
1857 | } | |
dbb410c3 AM |
1858 | } |
1859 | break; | |
1860 | ||
252b5132 | 1861 | default: |
104d59d1 JM |
1862 | /* Possibly an attributes section. */ |
1863 | if (hdr->sh_type == SHT_GNU_ATTRIBUTES | |
1864 | || hdr->sh_type == bed->obj_attrs_section_type) | |
1865 | { | |
1866 | if (! _bfd_elf_make_section_from_shdr (abfd, hdr, name, shindex)) | |
1867 | return FALSE; | |
1868 | _bfd_elf_parse_attributes (abfd, hdr); | |
1869 | return TRUE; | |
1870 | } | |
1871 | ||
252b5132 | 1872 | /* Check for any processor-specific section types. */ |
3eb70a79 L |
1873 | if (bed->elf_backend_section_from_shdr (abfd, hdr, name, shindex)) |
1874 | return TRUE; | |
1875 | ||
1876 | if (hdr->sh_type >= SHT_LOUSER && hdr->sh_type <= SHT_HIUSER) | |
1877 | { | |
1878 | if ((hdr->sh_flags & SHF_ALLOC) != 0) | |
1879 | /* FIXME: How to properly handle allocated section reserved | |
1880 | for applications? */ | |
1881 | (*_bfd_error_handler) | |
1882 | (_("%B: don't know how to handle allocated, application " | |
1883 | "specific section `%s' [0x%8x]"), | |
1884 | abfd, name, hdr->sh_type); | |
1885 | else | |
1886 | /* Allow sections reserved for applications. */ | |
1887 | return _bfd_elf_make_section_from_shdr (abfd, hdr, name, | |
1888 | shindex); | |
1889 | } | |
1890 | else if (hdr->sh_type >= SHT_LOPROC | |
1891 | && hdr->sh_type <= SHT_HIPROC) | |
1892 | /* FIXME: We should handle this section. */ | |
1893 | (*_bfd_error_handler) | |
1894 | (_("%B: don't know how to handle processor specific section " | |
1895 | "`%s' [0x%8x]"), | |
1896 | abfd, name, hdr->sh_type); | |
1897 | else if (hdr->sh_type >= SHT_LOOS && hdr->sh_type <= SHT_HIOS) | |
ff15b240 NC |
1898 | { |
1899 | /* Unrecognised OS-specific sections. */ | |
1900 | if ((hdr->sh_flags & SHF_OS_NONCONFORMING) != 0) | |
1901 | /* SHF_OS_NONCONFORMING indicates that special knowledge is | |
08a40648 | 1902 | required to correctly process the section and the file should |
ff15b240 NC |
1903 | be rejected with an error message. */ |
1904 | (*_bfd_error_handler) | |
1905 | (_("%B: don't know how to handle OS specific section " | |
1906 | "`%s' [0x%8x]"), | |
1907 | abfd, name, hdr->sh_type); | |
1908 | else | |
1909 | /* Otherwise it should be processed. */ | |
1910 | return _bfd_elf_make_section_from_shdr (abfd, hdr, name, shindex); | |
1911 | } | |
3eb70a79 L |
1912 | else |
1913 | /* FIXME: We should handle this section. */ | |
1914 | (*_bfd_error_handler) | |
1915 | (_("%B: don't know how to handle section `%s' [0x%8x]"), | |
1916 | abfd, name, hdr->sh_type); | |
1917 | ||
1918 | return FALSE; | |
252b5132 RH |
1919 | } |
1920 | ||
b34976b6 | 1921 | return TRUE; |
252b5132 RH |
1922 | } |
1923 | ||
87d72d41 | 1924 | /* Return the local symbol specified by ABFD, R_SYMNDX. */ |
ec338859 | 1925 | |
87d72d41 AM |
1926 | Elf_Internal_Sym * |
1927 | bfd_sym_from_r_symndx (struct sym_cache *cache, | |
1928 | bfd *abfd, | |
1929 | unsigned long r_symndx) | |
ec338859 | 1930 | { |
ec338859 AM |
1931 | unsigned int ent = r_symndx % LOCAL_SYM_CACHE_SIZE; |
1932 | ||
a5d1b3b5 AM |
1933 | if (cache->abfd != abfd || cache->indx[ent] != r_symndx) |
1934 | { | |
1935 | Elf_Internal_Shdr *symtab_hdr; | |
1936 | unsigned char esym[sizeof (Elf64_External_Sym)]; | |
1937 | Elf_External_Sym_Shndx eshndx; | |
ec338859 | 1938 | |
a5d1b3b5 AM |
1939 | symtab_hdr = &elf_tdata (abfd)->symtab_hdr; |
1940 | if (bfd_elf_get_elf_syms (abfd, symtab_hdr, 1, r_symndx, | |
87d72d41 | 1941 | &cache->sym[ent], esym, &eshndx) == NULL) |
a5d1b3b5 | 1942 | return NULL; |
9ad5cbcf | 1943 | |
a5d1b3b5 AM |
1944 | if (cache->abfd != abfd) |
1945 | { | |
1946 | memset (cache->indx, -1, sizeof (cache->indx)); | |
1947 | cache->abfd = abfd; | |
1948 | } | |
1949 | cache->indx[ent] = r_symndx; | |
ec338859 | 1950 | } |
a5d1b3b5 | 1951 | |
87d72d41 | 1952 | return &cache->sym[ent]; |
ec338859 AM |
1953 | } |
1954 | ||
252b5132 RH |
1955 | /* Given an ELF section number, retrieve the corresponding BFD |
1956 | section. */ | |
1957 | ||
1958 | asection * | |
217aa764 | 1959 | bfd_section_from_elf_index (bfd *abfd, unsigned int index) |
252b5132 | 1960 | { |
9ad5cbcf | 1961 | if (index >= elf_numsections (abfd)) |
252b5132 RH |
1962 | return NULL; |
1963 | return elf_elfsections (abfd)[index]->bfd_section; | |
1964 | } | |
1965 | ||
b35d266b | 1966 | static const struct bfd_elf_special_section special_sections_b[] = |
2f89ff8d | 1967 | { |
0112cd26 NC |
1968 | { STRING_COMMA_LEN (".bss"), -2, SHT_NOBITS, SHF_ALLOC + SHF_WRITE }, |
1969 | { NULL, 0, 0, 0, 0 } | |
7f4d3958 L |
1970 | }; |
1971 | ||
b35d266b | 1972 | static const struct bfd_elf_special_section special_sections_c[] = |
7f4d3958 | 1973 | { |
0112cd26 NC |
1974 | { STRING_COMMA_LEN (".comment"), 0, SHT_PROGBITS, 0 }, |
1975 | { NULL, 0, 0, 0, 0 } | |
7f4d3958 L |
1976 | }; |
1977 | ||
b35d266b | 1978 | static const struct bfd_elf_special_section special_sections_d[] = |
7f4d3958 | 1979 | { |
0112cd26 NC |
1980 | { STRING_COMMA_LEN (".data"), -2, SHT_PROGBITS, SHF_ALLOC + SHF_WRITE }, |
1981 | { STRING_COMMA_LEN (".data1"), 0, SHT_PROGBITS, SHF_ALLOC + SHF_WRITE }, | |
1982 | { STRING_COMMA_LEN (".debug"), 0, SHT_PROGBITS, 0 }, | |
1983 | { STRING_COMMA_LEN (".debug_line"), 0, SHT_PROGBITS, 0 }, | |
1984 | { STRING_COMMA_LEN (".debug_info"), 0, SHT_PROGBITS, 0 }, | |
1985 | { STRING_COMMA_LEN (".debug_abbrev"), 0, SHT_PROGBITS, 0 }, | |
1986 | { STRING_COMMA_LEN (".debug_aranges"), 0, SHT_PROGBITS, 0 }, | |
1987 | { STRING_COMMA_LEN (".dynamic"), 0, SHT_DYNAMIC, SHF_ALLOC }, | |
1988 | { STRING_COMMA_LEN (".dynstr"), 0, SHT_STRTAB, SHF_ALLOC }, | |
1989 | { STRING_COMMA_LEN (".dynsym"), 0, SHT_DYNSYM, SHF_ALLOC }, | |
1990 | { NULL, 0, 0, 0, 0 } | |
7f4d3958 L |
1991 | }; |
1992 | ||
b35d266b | 1993 | static const struct bfd_elf_special_section special_sections_f[] = |
7f4d3958 | 1994 | { |
0112cd26 NC |
1995 | { STRING_COMMA_LEN (".fini"), 0, SHT_PROGBITS, SHF_ALLOC + SHF_EXECINSTR }, |
1996 | { STRING_COMMA_LEN (".fini_array"), 0, SHT_FINI_ARRAY, SHF_ALLOC + SHF_WRITE }, | |
1997 | { NULL, 0, 0, 0, 0 } | |
7f4d3958 L |
1998 | }; |
1999 | ||
b35d266b | 2000 | static const struct bfd_elf_special_section special_sections_g[] = |
7f4d3958 | 2001 | { |
0112cd26 NC |
2002 | { STRING_COMMA_LEN (".gnu.linkonce.b"), -2, SHT_NOBITS, SHF_ALLOC + SHF_WRITE }, |
2003 | { STRING_COMMA_LEN (".got"), 0, SHT_PROGBITS, SHF_ALLOC + SHF_WRITE }, | |
2004 | { STRING_COMMA_LEN (".gnu.version"), 0, SHT_GNU_versym, 0 }, | |
2005 | { STRING_COMMA_LEN (".gnu.version_d"), 0, SHT_GNU_verdef, 0 }, | |
2006 | { STRING_COMMA_LEN (".gnu.version_r"), 0, SHT_GNU_verneed, 0 }, | |
2007 | { STRING_COMMA_LEN (".gnu.liblist"), 0, SHT_GNU_LIBLIST, SHF_ALLOC }, | |
2008 | { STRING_COMMA_LEN (".gnu.conflict"), 0, SHT_RELA, SHF_ALLOC }, | |
2009 | { STRING_COMMA_LEN (".gnu.hash"), 0, SHT_GNU_HASH, SHF_ALLOC }, | |
2010 | { NULL, 0, 0, 0, 0 } | |
7f4d3958 L |
2011 | }; |
2012 | ||
b35d266b | 2013 | static const struct bfd_elf_special_section special_sections_h[] = |
7f4d3958 | 2014 | { |
0112cd26 NC |
2015 | { STRING_COMMA_LEN (".hash"), 0, SHT_HASH, SHF_ALLOC }, |
2016 | { NULL, 0, 0, 0, 0 } | |
7f4d3958 L |
2017 | }; |
2018 | ||
b35d266b | 2019 | static const struct bfd_elf_special_section special_sections_i[] = |
7f4d3958 | 2020 | { |
0112cd26 NC |
2021 | { STRING_COMMA_LEN (".init"), 0, SHT_PROGBITS, SHF_ALLOC + SHF_EXECINSTR }, |
2022 | { STRING_COMMA_LEN (".init_array"), 0, SHT_INIT_ARRAY, SHF_ALLOC + SHF_WRITE }, | |
2023 | { STRING_COMMA_LEN (".interp"), 0, SHT_PROGBITS, 0 }, | |
2024 | { NULL, 0, 0, 0, 0 } | |
7f4d3958 L |
2025 | }; |
2026 | ||
b35d266b | 2027 | static const struct bfd_elf_special_section special_sections_l[] = |
7f4d3958 | 2028 | { |
0112cd26 NC |
2029 | { STRING_COMMA_LEN (".line"), 0, SHT_PROGBITS, 0 }, |
2030 | { NULL, 0, 0, 0, 0 } | |
7f4d3958 L |
2031 | }; |
2032 | ||
b35d266b | 2033 | static const struct bfd_elf_special_section special_sections_n[] = |
7f4d3958 | 2034 | { |
0112cd26 NC |
2035 | { STRING_COMMA_LEN (".note.GNU-stack"), 0, SHT_PROGBITS, 0 }, |
2036 | { STRING_COMMA_LEN (".note"), -1, SHT_NOTE, 0 }, | |
2037 | { NULL, 0, 0, 0, 0 } | |
7f4d3958 L |
2038 | }; |
2039 | ||
b35d266b | 2040 | static const struct bfd_elf_special_section special_sections_p[] = |
7f4d3958 | 2041 | { |
0112cd26 NC |
2042 | { STRING_COMMA_LEN (".preinit_array"), 0, SHT_PREINIT_ARRAY, SHF_ALLOC + SHF_WRITE }, |
2043 | { STRING_COMMA_LEN (".plt"), 0, SHT_PROGBITS, SHF_ALLOC + SHF_EXECINSTR }, | |
2044 | { NULL, 0, 0, 0, 0 } | |
7f4d3958 L |
2045 | }; |
2046 | ||
b35d266b | 2047 | static const struct bfd_elf_special_section special_sections_r[] = |
7f4d3958 | 2048 | { |
0112cd26 NC |
2049 | { STRING_COMMA_LEN (".rodata"), -2, SHT_PROGBITS, SHF_ALLOC }, |
2050 | { STRING_COMMA_LEN (".rodata1"), 0, SHT_PROGBITS, SHF_ALLOC }, | |
2051 | { STRING_COMMA_LEN (".rela"), -1, SHT_RELA, 0 }, | |
2052 | { STRING_COMMA_LEN (".rel"), -1, SHT_REL, 0 }, | |
2053 | { NULL, 0, 0, 0, 0 } | |
7f4d3958 L |
2054 | }; |
2055 | ||
b35d266b | 2056 | static const struct bfd_elf_special_section special_sections_s[] = |
7f4d3958 | 2057 | { |
0112cd26 NC |
2058 | { STRING_COMMA_LEN (".shstrtab"), 0, SHT_STRTAB, 0 }, |
2059 | { STRING_COMMA_LEN (".strtab"), 0, SHT_STRTAB, 0 }, | |
2060 | { STRING_COMMA_LEN (".symtab"), 0, SHT_SYMTAB, 0 }, | |
60ff4dc4 HPN |
2061 | /* See struct bfd_elf_special_section declaration for the semantics of |
2062 | this special case where .prefix_length != strlen (.prefix). */ | |
2063 | { ".stabstr", 5, 3, SHT_STRTAB, 0 }, | |
0112cd26 | 2064 | { NULL, 0, 0, 0, 0 } |
2f89ff8d L |
2065 | }; |
2066 | ||
b35d266b | 2067 | static const struct bfd_elf_special_section special_sections_t[] = |
7f4d3958 | 2068 | { |
0112cd26 NC |
2069 | { STRING_COMMA_LEN (".text"), -2, SHT_PROGBITS, SHF_ALLOC + SHF_EXECINSTR }, |
2070 | { STRING_COMMA_LEN (".tbss"), -2, SHT_NOBITS, SHF_ALLOC + SHF_WRITE + SHF_TLS }, | |
2071 | { STRING_COMMA_LEN (".tdata"), -2, SHT_PROGBITS, SHF_ALLOC + SHF_WRITE + SHF_TLS }, | |
2072 | { NULL, 0, 0, 0, 0 } | |
7f4d3958 L |
2073 | }; |
2074 | ||
1b315056 CS |
2075 | static const struct bfd_elf_special_section special_sections_z[] = |
2076 | { | |
2077 | { STRING_COMMA_LEN (".zdebug_line"), 0, SHT_PROGBITS, 0 }, | |
2078 | { STRING_COMMA_LEN (".zdebug_info"), 0, SHT_PROGBITS, 0 }, | |
2079 | { STRING_COMMA_LEN (".zdebug_abbrev"), 0, SHT_PROGBITS, 0 }, | |
2080 | { STRING_COMMA_LEN (".zdebug_aranges"), 0, SHT_PROGBITS, 0 }, | |
2081 | { NULL, 0, 0, 0, 0 } | |
2082 | }; | |
2083 | ||
b35d266b | 2084 | static const struct bfd_elf_special_section *special_sections[] = |
7f4d3958 | 2085 | { |
7f4d3958 | 2086 | special_sections_b, /* 'b' */ |
98ece1b3 | 2087 | special_sections_c, /* 'c' */ |
7f4d3958 L |
2088 | special_sections_d, /* 'd' */ |
2089 | NULL, /* 'e' */ | |
2090 | special_sections_f, /* 'f' */ | |
2091 | special_sections_g, /* 'g' */ | |
2092 | special_sections_h, /* 'h' */ | |
2093 | special_sections_i, /* 'i' */ | |
2094 | NULL, /* 'j' */ | |
2095 | NULL, /* 'k' */ | |
2096 | special_sections_l, /* 'l' */ | |
2097 | NULL, /* 'm' */ | |
2098 | special_sections_n, /* 'n' */ | |
2099 | NULL, /* 'o' */ | |
2100 | special_sections_p, /* 'p' */ | |
2101 | NULL, /* 'q' */ | |
2102 | special_sections_r, /* 'r' */ | |
2103 | special_sections_s, /* 's' */ | |
2104 | special_sections_t, /* 't' */ | |
1b315056 CS |
2105 | NULL, /* 'u' */ |
2106 | NULL, /* 'v' */ | |
2107 | NULL, /* 'w' */ | |
2108 | NULL, /* 'x' */ | |
2109 | NULL, /* 'y' */ | |
2110 | special_sections_z /* 'z' */ | |
7f4d3958 L |
2111 | }; |
2112 | ||
551b43fd AM |
2113 | const struct bfd_elf_special_section * |
2114 | _bfd_elf_get_special_section (const char *name, | |
2115 | const struct bfd_elf_special_section *spec, | |
2116 | unsigned int rela) | |
2f89ff8d L |
2117 | { |
2118 | int i; | |
7f4d3958 | 2119 | int len; |
7f4d3958 | 2120 | |
551b43fd | 2121 | len = strlen (name); |
7f4d3958 | 2122 | |
551b43fd | 2123 | for (i = 0; spec[i].prefix != NULL; i++) |
7dcb9820 AM |
2124 | { |
2125 | int suffix_len; | |
551b43fd | 2126 | int prefix_len = spec[i].prefix_length; |
7dcb9820 AM |
2127 | |
2128 | if (len < prefix_len) | |
2129 | continue; | |
551b43fd | 2130 | if (memcmp (name, spec[i].prefix, prefix_len) != 0) |
7dcb9820 AM |
2131 | continue; |
2132 | ||
551b43fd | 2133 | suffix_len = spec[i].suffix_length; |
7dcb9820 AM |
2134 | if (suffix_len <= 0) |
2135 | { | |
2136 | if (name[prefix_len] != 0) | |
2137 | { | |
2138 | if (suffix_len == 0) | |
2139 | continue; | |
2140 | if (name[prefix_len] != '.' | |
2141 | && (suffix_len == -2 | |
551b43fd | 2142 | || (rela && spec[i].type == SHT_REL))) |
7dcb9820 AM |
2143 | continue; |
2144 | } | |
2145 | } | |
2146 | else | |
2147 | { | |
2148 | if (len < prefix_len + suffix_len) | |
2149 | continue; | |
2150 | if (memcmp (name + len - suffix_len, | |
551b43fd | 2151 | spec[i].prefix + prefix_len, |
7dcb9820 AM |
2152 | suffix_len) != 0) |
2153 | continue; | |
2154 | } | |
551b43fd | 2155 | return &spec[i]; |
7dcb9820 | 2156 | } |
2f89ff8d L |
2157 | |
2158 | return NULL; | |
2159 | } | |
2160 | ||
7dcb9820 | 2161 | const struct bfd_elf_special_section * |
29ef7005 | 2162 | _bfd_elf_get_sec_type_attr (bfd *abfd, asection *sec) |
2f89ff8d | 2163 | { |
551b43fd AM |
2164 | int i; |
2165 | const struct bfd_elf_special_section *spec; | |
29ef7005 | 2166 | const struct elf_backend_data *bed; |
2f89ff8d L |
2167 | |
2168 | /* See if this is one of the special sections. */ | |
551b43fd AM |
2169 | if (sec->name == NULL) |
2170 | return NULL; | |
2f89ff8d | 2171 | |
29ef7005 L |
2172 | bed = get_elf_backend_data (abfd); |
2173 | spec = bed->special_sections; | |
2174 | if (spec) | |
2175 | { | |
2176 | spec = _bfd_elf_get_special_section (sec->name, | |
2177 | bed->special_sections, | |
2178 | sec->use_rela_p); | |
2179 | if (spec != NULL) | |
2180 | return spec; | |
2181 | } | |
2182 | ||
551b43fd AM |
2183 | if (sec->name[0] != '.') |
2184 | return NULL; | |
2f89ff8d | 2185 | |
551b43fd | 2186 | i = sec->name[1] - 'b'; |
1b315056 | 2187 | if (i < 0 || i > 'z' - 'b') |
551b43fd AM |
2188 | return NULL; |
2189 | ||
2190 | spec = special_sections[i]; | |
2f89ff8d | 2191 | |
551b43fd AM |
2192 | if (spec == NULL) |
2193 | return NULL; | |
2194 | ||
2195 | return _bfd_elf_get_special_section (sec->name, spec, sec->use_rela_p); | |
2f89ff8d L |
2196 | } |
2197 | ||
b34976b6 | 2198 | bfd_boolean |
217aa764 | 2199 | _bfd_elf_new_section_hook (bfd *abfd, asection *sec) |
252b5132 RH |
2200 | { |
2201 | struct bfd_elf_section_data *sdata; | |
551b43fd | 2202 | const struct elf_backend_data *bed; |
7dcb9820 | 2203 | const struct bfd_elf_special_section *ssect; |
252b5132 | 2204 | |
f0abc2a1 AM |
2205 | sdata = (struct bfd_elf_section_data *) sec->used_by_bfd; |
2206 | if (sdata == NULL) | |
2207 | { | |
217aa764 | 2208 | sdata = bfd_zalloc (abfd, sizeof (*sdata)); |
f0abc2a1 AM |
2209 | if (sdata == NULL) |
2210 | return FALSE; | |
217aa764 | 2211 | sec->used_by_bfd = sdata; |
f0abc2a1 | 2212 | } |
bf572ba0 | 2213 | |
551b43fd AM |
2214 | /* Indicate whether or not this section should use RELA relocations. */ |
2215 | bed = get_elf_backend_data (abfd); | |
2216 | sec->use_rela_p = bed->default_use_rela_p; | |
2217 | ||
e843e0f8 L |
2218 | /* When we read a file, we don't need to set ELF section type and |
2219 | flags. They will be overridden in _bfd_elf_make_section_from_shdr | |
2220 | anyway. We will set ELF section type and flags for all linker | |
2221 | created sections. If user specifies BFD section flags, we will | |
2222 | set ELF section type and flags based on BFD section flags in | |
2223 | elf_fake_sections. */ | |
2224 | if ((!sec->flags && abfd->direction != read_direction) | |
3496cb2a | 2225 | || (sec->flags & SEC_LINKER_CREATED) != 0) |
2f89ff8d | 2226 | { |
551b43fd | 2227 | ssect = (*bed->get_sec_type_attr) (abfd, sec); |
a31501e9 L |
2228 | if (ssect != NULL) |
2229 | { | |
2230 | elf_section_type (sec) = ssect->type; | |
2231 | elf_section_flags (sec) = ssect->attr; | |
2232 | } | |
2f89ff8d L |
2233 | } |
2234 | ||
f592407e | 2235 | return _bfd_generic_new_section_hook (abfd, sec); |
252b5132 RH |
2236 | } |
2237 | ||
2238 | /* Create a new bfd section from an ELF program header. | |
2239 | ||
2240 | Since program segments have no names, we generate a synthetic name | |
2241 | of the form segment<NUM>, where NUM is generally the index in the | |
2242 | program header table. For segments that are split (see below) we | |
2243 | generate the names segment<NUM>a and segment<NUM>b. | |
2244 | ||
2245 | Note that some program segments may have a file size that is different than | |
2246 | (less than) the memory size. All this means is that at execution the | |
2247 | system must allocate the amount of memory specified by the memory size, | |
2248 | but only initialize it with the first "file size" bytes read from the | |
2249 | file. This would occur for example, with program segments consisting | |
2250 | of combined data+bss. | |
2251 | ||
2252 | To handle the above situation, this routine generates TWO bfd sections | |
2253 | for the single program segment. The first has the length specified by | |
2254 | the file size of the segment, and the second has the length specified | |
2255 | by the difference between the two sizes. In effect, the segment is split | |
d5191d0c | 2256 | into its initialized and uninitialized parts. |
252b5132 RH |
2257 | |
2258 | */ | |
2259 | ||
b34976b6 | 2260 | bfd_boolean |
217aa764 AM |
2261 | _bfd_elf_make_section_from_phdr (bfd *abfd, |
2262 | Elf_Internal_Phdr *hdr, | |
2263 | int index, | |
2264 | const char *typename) | |
252b5132 RH |
2265 | { |
2266 | asection *newsect; | |
2267 | char *name; | |
2268 | char namebuf[64]; | |
d4c88bbb | 2269 | size_t len; |
252b5132 RH |
2270 | int split; |
2271 | ||
2272 | split = ((hdr->p_memsz > 0) | |
2273 | && (hdr->p_filesz > 0) | |
2274 | && (hdr->p_memsz > hdr->p_filesz)); | |
d5191d0c AM |
2275 | |
2276 | if (hdr->p_filesz > 0) | |
252b5132 | 2277 | { |
d5191d0c AM |
2278 | sprintf (namebuf, "%s%d%s", typename, index, split ? "a" : ""); |
2279 | len = strlen (namebuf) + 1; | |
2280 | name = bfd_alloc (abfd, len); | |
2281 | if (!name) | |
2282 | return FALSE; | |
2283 | memcpy (name, namebuf, len); | |
2284 | newsect = bfd_make_section (abfd, name); | |
2285 | if (newsect == NULL) | |
2286 | return FALSE; | |
2287 | newsect->vma = hdr->p_vaddr; | |
2288 | newsect->lma = hdr->p_paddr; | |
2289 | newsect->size = hdr->p_filesz; | |
2290 | newsect->filepos = hdr->p_offset; | |
2291 | newsect->flags |= SEC_HAS_CONTENTS; | |
2292 | newsect->alignment_power = bfd_log2 (hdr->p_align); | |
2293 | if (hdr->p_type == PT_LOAD) | |
252b5132 | 2294 | { |
d5191d0c AM |
2295 | newsect->flags |= SEC_ALLOC; |
2296 | newsect->flags |= SEC_LOAD; | |
2297 | if (hdr->p_flags & PF_X) | |
2298 | { | |
2299 | /* FIXME: all we known is that it has execute PERMISSION, | |
2300 | may be data. */ | |
2301 | newsect->flags |= SEC_CODE; | |
2302 | } | |
2303 | } | |
2304 | if (!(hdr->p_flags & PF_W)) | |
2305 | { | |
2306 | newsect->flags |= SEC_READONLY; | |
252b5132 | 2307 | } |
252b5132 RH |
2308 | } |
2309 | ||
d5191d0c | 2310 | if (hdr->p_memsz > hdr->p_filesz) |
252b5132 | 2311 | { |
d5191d0c AM |
2312 | bfd_vma align; |
2313 | ||
2314 | sprintf (namebuf, "%s%d%s", typename, index, split ? "b" : ""); | |
d4c88bbb | 2315 | len = strlen (namebuf) + 1; |
217aa764 | 2316 | name = bfd_alloc (abfd, len); |
252b5132 | 2317 | if (!name) |
b34976b6 | 2318 | return FALSE; |
d4c88bbb | 2319 | memcpy (name, namebuf, len); |
252b5132 RH |
2320 | newsect = bfd_make_section (abfd, name); |
2321 | if (newsect == NULL) | |
b34976b6 | 2322 | return FALSE; |
252b5132 RH |
2323 | newsect->vma = hdr->p_vaddr + hdr->p_filesz; |
2324 | newsect->lma = hdr->p_paddr + hdr->p_filesz; | |
eea6121a | 2325 | newsect->size = hdr->p_memsz - hdr->p_filesz; |
d5191d0c AM |
2326 | newsect->filepos = hdr->p_offset + hdr->p_filesz; |
2327 | align = newsect->vma & -newsect->vma; | |
2328 | if (align == 0 || align > hdr->p_align) | |
2329 | align = hdr->p_align; | |
2330 | newsect->alignment_power = bfd_log2 (align); | |
252b5132 RH |
2331 | if (hdr->p_type == PT_LOAD) |
2332 | { | |
d5191d0c AM |
2333 | /* Hack for gdb. Segments that have not been modified do |
2334 | not have their contents written to a core file, on the | |
2335 | assumption that a debugger can find the contents in the | |
2336 | executable. We flag this case by setting the fake | |
2337 | section size to zero. Note that "real" bss sections will | |
2338 | always have their contents dumped to the core file. */ | |
2339 | if (bfd_get_format (abfd) == bfd_core) | |
2340 | newsect->size = 0; | |
252b5132 RH |
2341 | newsect->flags |= SEC_ALLOC; |
2342 | if (hdr->p_flags & PF_X) | |
2343 | newsect->flags |= SEC_CODE; | |
2344 | } | |
2345 | if (!(hdr->p_flags & PF_W)) | |
2346 | newsect->flags |= SEC_READONLY; | |
2347 | } | |
2348 | ||
b34976b6 | 2349 | return TRUE; |
252b5132 RH |
2350 | } |
2351 | ||
b34976b6 | 2352 | bfd_boolean |
217aa764 | 2353 | bfd_section_from_phdr (bfd *abfd, Elf_Internal_Phdr *hdr, int index) |
20cfcaae | 2354 | { |
9c5bfbb7 | 2355 | const struct elf_backend_data *bed; |
20cfcaae NC |
2356 | |
2357 | switch (hdr->p_type) | |
2358 | { | |
2359 | case PT_NULL: | |
2360 | return _bfd_elf_make_section_from_phdr (abfd, hdr, index, "null"); | |
2361 | ||
2362 | case PT_LOAD: | |
2363 | return _bfd_elf_make_section_from_phdr (abfd, hdr, index, "load"); | |
2364 | ||
2365 | case PT_DYNAMIC: | |
2366 | return _bfd_elf_make_section_from_phdr (abfd, hdr, index, "dynamic"); | |
2367 | ||
2368 | case PT_INTERP: | |
2369 | return _bfd_elf_make_section_from_phdr (abfd, hdr, index, "interp"); | |
2370 | ||
2371 | case PT_NOTE: | |
2372 | if (! _bfd_elf_make_section_from_phdr (abfd, hdr, index, "note")) | |
b34976b6 | 2373 | return FALSE; |
718175fa | 2374 | if (! elf_read_notes (abfd, hdr->p_offset, hdr->p_filesz)) |
b34976b6 AM |
2375 | return FALSE; |
2376 | return TRUE; | |
20cfcaae NC |
2377 | |
2378 | case PT_SHLIB: | |
2379 | return _bfd_elf_make_section_from_phdr (abfd, hdr, index, "shlib"); | |
2380 | ||
2381 | case PT_PHDR: | |
2382 | return _bfd_elf_make_section_from_phdr (abfd, hdr, index, "phdr"); | |
2383 | ||
811072d8 RM |
2384 | case PT_GNU_EH_FRAME: |
2385 | return _bfd_elf_make_section_from_phdr (abfd, hdr, index, | |
2386 | "eh_frame_hdr"); | |
2387 | ||
2b05f1b7 L |
2388 | case PT_GNU_STACK: |
2389 | return _bfd_elf_make_section_from_phdr (abfd, hdr, index, "stack"); | |
9ee5e499 | 2390 | |
8c37241b JJ |
2391 | case PT_GNU_RELRO: |
2392 | return _bfd_elf_make_section_from_phdr (abfd, hdr, index, "relro"); | |
2393 | ||
20cfcaae | 2394 | default: |
8c1acd09 | 2395 | /* Check for any processor-specific program segment types. */ |
20cfcaae | 2396 | bed = get_elf_backend_data (abfd); |
d27f5fa1 | 2397 | return bed->elf_backend_section_from_phdr (abfd, hdr, index, "proc"); |
20cfcaae NC |
2398 | } |
2399 | } | |
2400 | ||
23bc299b | 2401 | /* Initialize REL_HDR, the section-header for new section, containing |
b34976b6 | 2402 | relocations against ASECT. If USE_RELA_P is TRUE, we use RELA |
23bc299b MM |
2403 | relocations; otherwise, we use REL relocations. */ |
2404 | ||
b34976b6 | 2405 | bfd_boolean |
217aa764 AM |
2406 | _bfd_elf_init_reloc_shdr (bfd *abfd, |
2407 | Elf_Internal_Shdr *rel_hdr, | |
2408 | asection *asect, | |
2409 | bfd_boolean use_rela_p) | |
23bc299b MM |
2410 | { |
2411 | char *name; | |
9c5bfbb7 | 2412 | const struct elf_backend_data *bed = get_elf_backend_data (abfd); |
dc810e39 | 2413 | bfd_size_type amt = sizeof ".rela" + strlen (asect->name); |
23bc299b | 2414 | |
dc810e39 | 2415 | name = bfd_alloc (abfd, amt); |
23bc299b | 2416 | if (name == NULL) |
b34976b6 | 2417 | return FALSE; |
23bc299b MM |
2418 | sprintf (name, "%s%s", use_rela_p ? ".rela" : ".rel", asect->name); |
2419 | rel_hdr->sh_name = | |
2b0f7ef9 | 2420 | (unsigned int) _bfd_elf_strtab_add (elf_shstrtab (abfd), name, |
b34976b6 | 2421 | FALSE); |
23bc299b | 2422 | if (rel_hdr->sh_name == (unsigned int) -1) |
b34976b6 | 2423 | return FALSE; |
23bc299b MM |
2424 | rel_hdr->sh_type = use_rela_p ? SHT_RELA : SHT_REL; |
2425 | rel_hdr->sh_entsize = (use_rela_p | |
2426 | ? bed->s->sizeof_rela | |
2427 | : bed->s->sizeof_rel); | |
72de5009 | 2428 | rel_hdr->sh_addralign = (bfd_vma) 1 << bed->s->log_file_align; |
23bc299b MM |
2429 | rel_hdr->sh_flags = 0; |
2430 | rel_hdr->sh_addr = 0; | |
2431 | rel_hdr->sh_size = 0; | |
2432 | rel_hdr->sh_offset = 0; | |
2433 | ||
b34976b6 | 2434 | return TRUE; |
23bc299b MM |
2435 | } |
2436 | ||
252b5132 RH |
2437 | /* Set up an ELF internal section header for a section. */ |
2438 | ||
252b5132 | 2439 | static void |
217aa764 | 2440 | elf_fake_sections (bfd *abfd, asection *asect, void *failedptrarg) |
252b5132 | 2441 | { |
9c5bfbb7 | 2442 | const struct elf_backend_data *bed = get_elf_backend_data (abfd); |
217aa764 | 2443 | bfd_boolean *failedptr = failedptrarg; |
252b5132 | 2444 | Elf_Internal_Shdr *this_hdr; |
0414f35b | 2445 | unsigned int sh_type; |
252b5132 RH |
2446 | |
2447 | if (*failedptr) | |
2448 | { | |
2449 | /* We already failed; just get out of the bfd_map_over_sections | |
08a40648 | 2450 | loop. */ |
252b5132 RH |
2451 | return; |
2452 | } | |
2453 | ||
2454 | this_hdr = &elf_section_data (asect)->this_hdr; | |
2455 | ||
e57b5356 AM |
2456 | this_hdr->sh_name = (unsigned int) _bfd_elf_strtab_add (elf_shstrtab (abfd), |
2457 | asect->name, FALSE); | |
2458 | if (this_hdr->sh_name == (unsigned int) -1) | |
252b5132 | 2459 | { |
b34976b6 | 2460 | *failedptr = TRUE; |
252b5132 RH |
2461 | return; |
2462 | } | |
2463 | ||
a4d8e49b | 2464 | /* Don't clear sh_flags. Assembler may set additional bits. */ |
252b5132 RH |
2465 | |
2466 | if ((asect->flags & SEC_ALLOC) != 0 | |
2467 | || asect->user_set_vma) | |
2468 | this_hdr->sh_addr = asect->vma; | |
2469 | else | |
2470 | this_hdr->sh_addr = 0; | |
2471 | ||
2472 | this_hdr->sh_offset = 0; | |
eea6121a | 2473 | this_hdr->sh_size = asect->size; |
252b5132 | 2474 | this_hdr->sh_link = 0; |
72de5009 | 2475 | this_hdr->sh_addralign = (bfd_vma) 1 << asect->alignment_power; |
252b5132 RH |
2476 | /* The sh_entsize and sh_info fields may have been set already by |
2477 | copy_private_section_data. */ | |
2478 | ||
2479 | this_hdr->bfd_section = asect; | |
2480 | this_hdr->contents = NULL; | |
2481 | ||
3cddba1e L |
2482 | /* If the section type is unspecified, we set it based on |
2483 | asect->flags. */ | |
98ece1b3 AM |
2484 | if ((asect->flags & SEC_GROUP) != 0) |
2485 | sh_type = SHT_GROUP; | |
2486 | else if ((asect->flags & SEC_ALLOC) != 0 | |
2487 | && (((asect->flags & (SEC_LOAD | SEC_HAS_CONTENTS)) == 0) | |
2488 | || (asect->flags & SEC_NEVER_LOAD) != 0)) | |
2489 | sh_type = SHT_NOBITS; | |
2490 | else | |
2491 | sh_type = SHT_PROGBITS; | |
2492 | ||
3cddba1e | 2493 | if (this_hdr->sh_type == SHT_NULL) |
98ece1b3 AM |
2494 | this_hdr->sh_type = sh_type; |
2495 | else if (this_hdr->sh_type == SHT_NOBITS | |
2496 | && sh_type == SHT_PROGBITS | |
2497 | && (asect->flags & SEC_ALLOC) != 0) | |
3cddba1e | 2498 | { |
98ece1b3 AM |
2499 | /* Warn if we are changing a NOBITS section to PROGBITS, but |
2500 | allow the link to proceed. This can happen when users link | |
2501 | non-bss input sections to bss output sections, or emit data | |
2502 | to a bss output section via a linker script. */ | |
2503 | (*_bfd_error_handler) | |
58f0869b | 2504 | (_("warning: section `%A' type changed to PROGBITS"), asect); |
98ece1b3 | 2505 | this_hdr->sh_type = sh_type; |
3cddba1e L |
2506 | } |
2507 | ||
2f89ff8d | 2508 | switch (this_hdr->sh_type) |
252b5132 | 2509 | { |
2f89ff8d | 2510 | default: |
2f89ff8d L |
2511 | break; |
2512 | ||
2513 | case SHT_STRTAB: | |
2514 | case SHT_INIT_ARRAY: | |
2515 | case SHT_FINI_ARRAY: | |
2516 | case SHT_PREINIT_ARRAY: | |
2517 | case SHT_NOTE: | |
2518 | case SHT_NOBITS: | |
2519 | case SHT_PROGBITS: | |
2520 | break; | |
2521 | ||
2522 | case SHT_HASH: | |
c7ac6ff8 | 2523 | this_hdr->sh_entsize = bed->s->sizeof_hash_entry; |
2f89ff8d | 2524 | break; |
5de3bf90 | 2525 | |
2f89ff8d | 2526 | case SHT_DYNSYM: |
252b5132 | 2527 | this_hdr->sh_entsize = bed->s->sizeof_sym; |
2f89ff8d L |
2528 | break; |
2529 | ||
2530 | case SHT_DYNAMIC: | |
252b5132 | 2531 | this_hdr->sh_entsize = bed->s->sizeof_dyn; |
2f89ff8d L |
2532 | break; |
2533 | ||
2534 | case SHT_RELA: | |
2535 | if (get_elf_backend_data (abfd)->may_use_rela_p) | |
2536 | this_hdr->sh_entsize = bed->s->sizeof_rela; | |
2537 | break; | |
2538 | ||
2539 | case SHT_REL: | |
2540 | if (get_elf_backend_data (abfd)->may_use_rel_p) | |
2541 | this_hdr->sh_entsize = bed->s->sizeof_rel; | |
2542 | break; | |
2543 | ||
2544 | case SHT_GNU_versym: | |
252b5132 | 2545 | this_hdr->sh_entsize = sizeof (Elf_External_Versym); |
2f89ff8d L |
2546 | break; |
2547 | ||
2548 | case SHT_GNU_verdef: | |
252b5132 RH |
2549 | this_hdr->sh_entsize = 0; |
2550 | /* objcopy or strip will copy over sh_info, but may not set | |
08a40648 AM |
2551 | cverdefs. The linker will set cverdefs, but sh_info will be |
2552 | zero. */ | |
252b5132 RH |
2553 | if (this_hdr->sh_info == 0) |
2554 | this_hdr->sh_info = elf_tdata (abfd)->cverdefs; | |
2555 | else | |
2556 | BFD_ASSERT (elf_tdata (abfd)->cverdefs == 0 | |
2557 | || this_hdr->sh_info == elf_tdata (abfd)->cverdefs); | |
2f89ff8d L |
2558 | break; |
2559 | ||
2560 | case SHT_GNU_verneed: | |
252b5132 RH |
2561 | this_hdr->sh_entsize = 0; |
2562 | /* objcopy or strip will copy over sh_info, but may not set | |
08a40648 AM |
2563 | cverrefs. The linker will set cverrefs, but sh_info will be |
2564 | zero. */ | |
252b5132 RH |
2565 | if (this_hdr->sh_info == 0) |
2566 | this_hdr->sh_info = elf_tdata (abfd)->cverrefs; | |
2567 | else | |
2568 | BFD_ASSERT (elf_tdata (abfd)->cverrefs == 0 | |
2569 | || this_hdr->sh_info == elf_tdata (abfd)->cverrefs); | |
2f89ff8d L |
2570 | break; |
2571 | ||
2572 | case SHT_GROUP: | |
1783205a | 2573 | this_hdr->sh_entsize = GRP_ENTRY_SIZE; |
2f89ff8d | 2574 | break; |
fdc90cb4 JJ |
2575 | |
2576 | case SHT_GNU_HASH: | |
2577 | this_hdr->sh_entsize = bed->s->arch_size == 64 ? 0 : 4; | |
2578 | break; | |
dbb410c3 | 2579 | } |
252b5132 RH |
2580 | |
2581 | if ((asect->flags & SEC_ALLOC) != 0) | |
2582 | this_hdr->sh_flags |= SHF_ALLOC; | |
2583 | if ((asect->flags & SEC_READONLY) == 0) | |
2584 | this_hdr->sh_flags |= SHF_WRITE; | |
2585 | if ((asect->flags & SEC_CODE) != 0) | |
2586 | this_hdr->sh_flags |= SHF_EXECINSTR; | |
f5fa8ca2 JJ |
2587 | if ((asect->flags & SEC_MERGE) != 0) |
2588 | { | |
2589 | this_hdr->sh_flags |= SHF_MERGE; | |
2590 | this_hdr->sh_entsize = asect->entsize; | |
2591 | if ((asect->flags & SEC_STRINGS) != 0) | |
2592 | this_hdr->sh_flags |= SHF_STRINGS; | |
2593 | } | |
1126897b | 2594 | if ((asect->flags & SEC_GROUP) == 0 && elf_group_name (asect) != NULL) |
dbb410c3 | 2595 | this_hdr->sh_flags |= SHF_GROUP; |
13ae64f3 | 2596 | if ((asect->flags & SEC_THREAD_LOCAL) != 0) |
704afa60 JJ |
2597 | { |
2598 | this_hdr->sh_flags |= SHF_TLS; | |
3a800eb9 AM |
2599 | if (asect->size == 0 |
2600 | && (asect->flags & SEC_HAS_CONTENTS) == 0) | |
704afa60 | 2601 | { |
3a800eb9 | 2602 | struct bfd_link_order *o = asect->map_tail.link_order; |
b34976b6 | 2603 | |
704afa60 | 2604 | this_hdr->sh_size = 0; |
3a800eb9 AM |
2605 | if (o != NULL) |
2606 | { | |
704afa60 | 2607 | this_hdr->sh_size = o->offset + o->size; |
3a800eb9 AM |
2608 | if (this_hdr->sh_size != 0) |
2609 | this_hdr->sh_type = SHT_NOBITS; | |
2610 | } | |
704afa60 JJ |
2611 | } |
2612 | } | |
252b5132 RH |
2613 | |
2614 | /* Check for processor-specific section types. */ | |
0414f35b | 2615 | sh_type = this_hdr->sh_type; |
e1fddb6b AO |
2616 | if (bed->elf_backend_fake_sections |
2617 | && !(*bed->elf_backend_fake_sections) (abfd, this_hdr, asect)) | |
b34976b6 | 2618 | *failedptr = TRUE; |
252b5132 | 2619 | |
42bb2e33 | 2620 | if (sh_type == SHT_NOBITS && asect->size != 0) |
0414f35b AM |
2621 | { |
2622 | /* Don't change the header type from NOBITS if we are being | |
42bb2e33 | 2623 | called for objcopy --only-keep-debug. */ |
0414f35b AM |
2624 | this_hdr->sh_type = sh_type; |
2625 | } | |
2626 | ||
252b5132 | 2627 | /* If the section has relocs, set up a section header for the |
23bc299b MM |
2628 | SHT_REL[A] section. If two relocation sections are required for |
2629 | this section, it is up to the processor-specific back-end to | |
c044fabd | 2630 | create the other. */ |
23bc299b | 2631 | if ((asect->flags & SEC_RELOC) != 0 |
c044fabd | 2632 | && !_bfd_elf_init_reloc_shdr (abfd, |
23bc299b | 2633 | &elf_section_data (asect)->rel_hdr, |
c044fabd | 2634 | asect, |
68bfbfcc | 2635 | asect->use_rela_p)) |
b34976b6 | 2636 | *failedptr = TRUE; |
252b5132 RH |
2637 | } |
2638 | ||
bcacc0f5 AM |
2639 | /* Fill in the contents of a SHT_GROUP section. Called from |
2640 | _bfd_elf_compute_section_file_positions for gas, objcopy, and | |
2641 | when ELF targets use the generic linker, ld. Called for ld -r | |
2642 | from bfd_elf_final_link. */ | |
dbb410c3 | 2643 | |
1126897b | 2644 | void |
217aa764 | 2645 | bfd_elf_set_group_contents (bfd *abfd, asection *sec, void *failedptrarg) |
dbb410c3 | 2646 | { |
217aa764 | 2647 | bfd_boolean *failedptr = failedptrarg; |
9dce4196 | 2648 | asection *elt, *first; |
dbb410c3 | 2649 | unsigned char *loc; |
b34976b6 | 2650 | bfd_boolean gas; |
dbb410c3 | 2651 | |
7e4111ad L |
2652 | /* Ignore linker created group section. See elfNN_ia64_object_p in |
2653 | elfxx-ia64.c. */ | |
2654 | if (((sec->flags & (SEC_GROUP | SEC_LINKER_CREATED)) != SEC_GROUP) | |
dbb410c3 AM |
2655 | || *failedptr) |
2656 | return; | |
2657 | ||
bcacc0f5 AM |
2658 | if (elf_section_data (sec)->this_hdr.sh_info == 0) |
2659 | { | |
2660 | unsigned long symindx = 0; | |
2661 | ||
2662 | /* elf_group_id will have been set up by objcopy and the | |
2663 | generic linker. */ | |
2664 | if (elf_group_id (sec) != NULL) | |
2665 | symindx = elf_group_id (sec)->udata.i; | |
1126897b | 2666 | |
bcacc0f5 AM |
2667 | if (symindx == 0) |
2668 | { | |
2669 | /* If called from the assembler, swap_out_syms will have set up | |
2670 | elf_section_syms. */ | |
2671 | BFD_ASSERT (elf_section_syms (abfd) != NULL); | |
2672 | symindx = elf_section_syms (abfd)[sec->index]->udata.i; | |
2673 | } | |
2674 | elf_section_data (sec)->this_hdr.sh_info = symindx; | |
2675 | } | |
2676 | else if (elf_section_data (sec)->this_hdr.sh_info == (unsigned int) -2) | |
1126897b | 2677 | { |
bcacc0f5 AM |
2678 | /* The ELF backend linker sets sh_info to -2 when the group |
2679 | signature symbol is global, and thus the index can't be | |
2680 | set until all local symbols are output. */ | |
2681 | asection *igroup = elf_sec_group (elf_next_in_group (sec)); | |
2682 | struct bfd_elf_section_data *sec_data = elf_section_data (igroup); | |
2683 | unsigned long symndx = sec_data->this_hdr.sh_info; | |
2684 | unsigned long extsymoff = 0; | |
2685 | struct elf_link_hash_entry *h; | |
2686 | ||
2687 | if (!elf_bad_symtab (igroup->owner)) | |
2688 | { | |
2689 | Elf_Internal_Shdr *symtab_hdr; | |
2690 | ||
2691 | symtab_hdr = &elf_tdata (igroup->owner)->symtab_hdr; | |
2692 | extsymoff = symtab_hdr->sh_info; | |
2693 | } | |
2694 | h = elf_sym_hashes (igroup->owner)[symndx - extsymoff]; | |
2695 | while (h->root.type == bfd_link_hash_indirect | |
2696 | || h->root.type == bfd_link_hash_warning) | |
2697 | h = (struct elf_link_hash_entry *) h->root.u.i.link; | |
2698 | ||
2699 | elf_section_data (sec)->this_hdr.sh_info = h->indx; | |
1126897b | 2700 | } |
dbb410c3 | 2701 | |
1126897b | 2702 | /* The contents won't be allocated for "ld -r" or objcopy. */ |
b34976b6 | 2703 | gas = TRUE; |
dbb410c3 AM |
2704 | if (sec->contents == NULL) |
2705 | { | |
b34976b6 | 2706 | gas = FALSE; |
eea6121a | 2707 | sec->contents = bfd_alloc (abfd, sec->size); |
9dce4196 AM |
2708 | |
2709 | /* Arrange for the section to be written out. */ | |
2710 | elf_section_data (sec)->this_hdr.contents = sec->contents; | |
dbb410c3 AM |
2711 | if (sec->contents == NULL) |
2712 | { | |
b34976b6 | 2713 | *failedptr = TRUE; |
dbb410c3 AM |
2714 | return; |
2715 | } | |
2716 | } | |
2717 | ||
eea6121a | 2718 | loc = sec->contents + sec->size; |
dbb410c3 | 2719 | |
9dce4196 AM |
2720 | /* Get the pointer to the first section in the group that gas |
2721 | squirreled away here. objcopy arranges for this to be set to the | |
2722 | start of the input section group. */ | |
2723 | first = elt = elf_next_in_group (sec); | |
dbb410c3 AM |
2724 | |
2725 | /* First element is a flag word. Rest of section is elf section | |
2726 | indices for all the sections of the group. Write them backwards | |
2727 | just to keep the group in the same order as given in .section | |
2728 | directives, not that it matters. */ | |
2729 | while (elt != NULL) | |
2730 | { | |
9dce4196 AM |
2731 | asection *s; |
2732 | unsigned int idx; | |
2733 | ||
9dce4196 | 2734 | s = elt; |
01e1a5bc NC |
2735 | if (! elf_discarded_section (s)) |
2736 | { | |
2737 | loc -= 4; | |
2738 | if (!gas) | |
2739 | s = s->output_section; | |
2740 | idx = 0; | |
2741 | if (s != NULL) | |
2742 | idx = elf_section_data (s)->this_idx; | |
2743 | H_PUT_32 (abfd, idx, loc); | |
2744 | } | |
945906ff | 2745 | elt = elf_next_in_group (elt); |
9dce4196 AM |
2746 | if (elt == first) |
2747 | break; | |
dbb410c3 AM |
2748 | } |
2749 | ||
3d7f7666 | 2750 | if ((loc -= 4) != sec->contents) |
9dce4196 | 2751 | abort (); |
dbb410c3 | 2752 | |
9dce4196 | 2753 | H_PUT_32 (abfd, sec->flags & SEC_LINK_ONCE ? GRP_COMDAT : 0, loc); |
dbb410c3 AM |
2754 | } |
2755 | ||
252b5132 RH |
2756 | /* Assign all ELF section numbers. The dummy first section is handled here |
2757 | too. The link/info pointers for the standard section types are filled | |
2758 | in here too, while we're at it. */ | |
2759 | ||
b34976b6 | 2760 | static bfd_boolean |
da9f89d4 | 2761 | assign_section_numbers (bfd *abfd, struct bfd_link_info *link_info) |
252b5132 RH |
2762 | { |
2763 | struct elf_obj_tdata *t = elf_tdata (abfd); | |
2764 | asection *sec; | |
2b0f7ef9 | 2765 | unsigned int section_number, secn; |
252b5132 | 2766 | Elf_Internal_Shdr **i_shdrp; |
47cc2cf5 | 2767 | struct bfd_elf_section_data *d; |
3516e984 | 2768 | bfd_boolean need_symtab; |
252b5132 RH |
2769 | |
2770 | section_number = 1; | |
2771 | ||
2b0f7ef9 JJ |
2772 | _bfd_elf_strtab_clear_all_refs (elf_shstrtab (abfd)); |
2773 | ||
da9f89d4 L |
2774 | /* SHT_GROUP sections are in relocatable files only. */ |
2775 | if (link_info == NULL || link_info->relocatable) | |
252b5132 | 2776 | { |
da9f89d4 | 2777 | /* Put SHT_GROUP sections first. */ |
04dd1667 | 2778 | for (sec = abfd->sections; sec != NULL; sec = sec->next) |
47cc2cf5 | 2779 | { |
5daa8fe7 | 2780 | d = elf_section_data (sec); |
da9f89d4 L |
2781 | |
2782 | if (d->this_hdr.sh_type == SHT_GROUP) | |
08a40648 | 2783 | { |
5daa8fe7 | 2784 | if (sec->flags & SEC_LINKER_CREATED) |
da9f89d4 L |
2785 | { |
2786 | /* Remove the linker created SHT_GROUP sections. */ | |
5daa8fe7 | 2787 | bfd_section_list_remove (abfd, sec); |
da9f89d4 | 2788 | abfd->section_count--; |
da9f89d4 | 2789 | } |
08a40648 | 2790 | else |
4fbb74a6 | 2791 | d->this_idx = section_number++; |
da9f89d4 | 2792 | } |
47cc2cf5 PB |
2793 | } |
2794 | } | |
2795 | ||
2796 | for (sec = abfd->sections; sec; sec = sec->next) | |
2797 | { | |
2798 | d = elf_section_data (sec); | |
2799 | ||
2800 | if (d->this_hdr.sh_type != SHT_GROUP) | |
4fbb74a6 | 2801 | d->this_idx = section_number++; |
2b0f7ef9 | 2802 | _bfd_elf_strtab_addref (elf_shstrtab (abfd), d->this_hdr.sh_name); |
252b5132 RH |
2803 | if ((sec->flags & SEC_RELOC) == 0) |
2804 | d->rel_idx = 0; | |
2805 | else | |
2b0f7ef9 JJ |
2806 | { |
2807 | d->rel_idx = section_number++; | |
2808 | _bfd_elf_strtab_addref (elf_shstrtab (abfd), d->rel_hdr.sh_name); | |
2809 | } | |
23bc299b MM |
2810 | |
2811 | if (d->rel_hdr2) | |
2b0f7ef9 JJ |
2812 | { |
2813 | d->rel_idx2 = section_number++; | |
2814 | _bfd_elf_strtab_addref (elf_shstrtab (abfd), d->rel_hdr2->sh_name); | |
2815 | } | |
23bc299b MM |
2816 | else |
2817 | d->rel_idx2 = 0; | |
252b5132 RH |
2818 | } |
2819 | ||
2820 | t->shstrtab_section = section_number++; | |
2b0f7ef9 | 2821 | _bfd_elf_strtab_addref (elf_shstrtab (abfd), t->shstrtab_hdr.sh_name); |
252b5132 | 2822 | elf_elfheader (abfd)->e_shstrndx = t->shstrtab_section; |
252b5132 | 2823 | |
3516e984 L |
2824 | need_symtab = (bfd_get_symcount (abfd) > 0 |
2825 | || (link_info == NULL | |
2826 | && ((abfd->flags & (EXEC_P | DYNAMIC | HAS_RELOC)) | |
2827 | == HAS_RELOC))); | |
2828 | if (need_symtab) | |
252b5132 RH |
2829 | { |
2830 | t->symtab_section = section_number++; | |
2b0f7ef9 | 2831 | _bfd_elf_strtab_addref (elf_shstrtab (abfd), t->symtab_hdr.sh_name); |
4fbb74a6 | 2832 | if (section_number > ((SHN_LORESERVE - 2) & 0xFFFF)) |
9ad5cbcf | 2833 | { |
9ad5cbcf AM |
2834 | t->symtab_shndx_section = section_number++; |
2835 | t->symtab_shndx_hdr.sh_name | |
2836 | = (unsigned int) _bfd_elf_strtab_add (elf_shstrtab (abfd), | |
b34976b6 | 2837 | ".symtab_shndx", FALSE); |
9ad5cbcf | 2838 | if (t->symtab_shndx_hdr.sh_name == (unsigned int) -1) |
b34976b6 | 2839 | return FALSE; |
9ad5cbcf | 2840 | } |
252b5132 | 2841 | t->strtab_section = section_number++; |
2b0f7ef9 | 2842 | _bfd_elf_strtab_addref (elf_shstrtab (abfd), t->strtab_hdr.sh_name); |
252b5132 RH |
2843 | } |
2844 | ||
2b0f7ef9 JJ |
2845 | _bfd_elf_strtab_finalize (elf_shstrtab (abfd)); |
2846 | t->shstrtab_hdr.sh_size = _bfd_elf_strtab_size (elf_shstrtab (abfd)); | |
9ad5cbcf AM |
2847 | |
2848 | elf_numsections (abfd) = section_number; | |
252b5132 RH |
2849 | elf_elfheader (abfd)->e_shnum = section_number; |
2850 | ||
2851 | /* Set up the list of section header pointers, in agreement with the | |
2852 | indices. */ | |
d0fb9a8d | 2853 | i_shdrp = bfd_zalloc2 (abfd, section_number, sizeof (Elf_Internal_Shdr *)); |
252b5132 | 2854 | if (i_shdrp == NULL) |
b34976b6 | 2855 | return FALSE; |
252b5132 | 2856 | |
d0fb9a8d | 2857 | i_shdrp[0] = bfd_zalloc (abfd, sizeof (Elf_Internal_Shdr)); |
252b5132 RH |
2858 | if (i_shdrp[0] == NULL) |
2859 | { | |
2860 | bfd_release (abfd, i_shdrp); | |
b34976b6 | 2861 | return FALSE; |
252b5132 | 2862 | } |
252b5132 RH |
2863 | |
2864 | elf_elfsections (abfd) = i_shdrp; | |
2865 | ||
2866 | i_shdrp[t->shstrtab_section] = &t->shstrtab_hdr; | |
3516e984 | 2867 | if (need_symtab) |
252b5132 RH |
2868 | { |
2869 | i_shdrp[t->symtab_section] = &t->symtab_hdr; | |
4fbb74a6 | 2870 | if (elf_numsections (abfd) > (SHN_LORESERVE & 0xFFFF)) |
9ad5cbcf AM |
2871 | { |
2872 | i_shdrp[t->symtab_shndx_section] = &t->symtab_shndx_hdr; | |
2873 | t->symtab_shndx_hdr.sh_link = t->symtab_section; | |
2874 | } | |
252b5132 RH |
2875 | i_shdrp[t->strtab_section] = &t->strtab_hdr; |
2876 | t->symtab_hdr.sh_link = t->strtab_section; | |
2877 | } | |
38ce5b11 | 2878 | |
252b5132 RH |
2879 | for (sec = abfd->sections; sec; sec = sec->next) |
2880 | { | |
2881 | struct bfd_elf_section_data *d = elf_section_data (sec); | |
2882 | asection *s; | |
2883 | const char *name; | |
2884 | ||
2885 | i_shdrp[d->this_idx] = &d->this_hdr; | |
2886 | if (d->rel_idx != 0) | |
2887 | i_shdrp[d->rel_idx] = &d->rel_hdr; | |
23bc299b MM |
2888 | if (d->rel_idx2 != 0) |
2889 | i_shdrp[d->rel_idx2] = d->rel_hdr2; | |
252b5132 RH |
2890 | |
2891 | /* Fill in the sh_link and sh_info fields while we're at it. */ | |
2892 | ||
2893 | /* sh_link of a reloc section is the section index of the symbol | |
2894 | table. sh_info is the section index of the section to which | |
2895 | the relocation entries apply. */ | |
2896 | if (d->rel_idx != 0) | |
2897 | { | |
2898 | d->rel_hdr.sh_link = t->symtab_section; | |
2899 | d->rel_hdr.sh_info = d->this_idx; | |
2900 | } | |
23bc299b MM |
2901 | if (d->rel_idx2 != 0) |
2902 | { | |
2903 | d->rel_hdr2->sh_link = t->symtab_section; | |
2904 | d->rel_hdr2->sh_info = d->this_idx; | |
2905 | } | |
252b5132 | 2906 | |
38ce5b11 L |
2907 | /* We need to set up sh_link for SHF_LINK_ORDER. */ |
2908 | if ((d->this_hdr.sh_flags & SHF_LINK_ORDER) != 0) | |
2909 | { | |
2910 | s = elf_linked_to_section (sec); | |
2911 | if (s) | |
38ce5b11 | 2912 | { |
f2876037 | 2913 | /* elf_linked_to_section points to the input section. */ |
ccd2ec6a | 2914 | if (link_info != NULL) |
38ce5b11 | 2915 | { |
f2876037 | 2916 | /* Check discarded linkonce section. */ |
ccd2ec6a | 2917 | if (elf_discarded_section (s)) |
38ce5b11 | 2918 | { |
ccd2ec6a L |
2919 | asection *kept; |
2920 | (*_bfd_error_handler) | |
2921 | (_("%B: sh_link of section `%A' points to discarded section `%A' of `%B'"), | |
2922 | abfd, d->this_hdr.bfd_section, | |
2923 | s, s->owner); | |
2924 | /* Point to the kept section if it has the same | |
2925 | size as the discarded one. */ | |
c0f00686 | 2926 | kept = _bfd_elf_check_kept_section (s, link_info); |
ccd2ec6a | 2927 | if (kept == NULL) |
185d09ad | 2928 | { |
ccd2ec6a L |
2929 | bfd_set_error (bfd_error_bad_value); |
2930 | return FALSE; | |
185d09ad | 2931 | } |
ccd2ec6a | 2932 | s = kept; |
38ce5b11 | 2933 | } |
e424ecc8 | 2934 | |
ccd2ec6a L |
2935 | s = s->output_section; |
2936 | BFD_ASSERT (s != NULL); | |
38ce5b11 | 2937 | } |
f2876037 L |
2938 | else |
2939 | { | |
2940 | /* Handle objcopy. */ | |
2941 | if (s->output_section == NULL) | |
2942 | { | |
2943 | (*_bfd_error_handler) | |
2944 | (_("%B: sh_link of section `%A' points to removed section `%A' of `%B'"), | |
2945 | abfd, d->this_hdr.bfd_section, s, s->owner); | |
2946 | bfd_set_error (bfd_error_bad_value); | |
2947 | return FALSE; | |
2948 | } | |
2949 | s = s->output_section; | |
2950 | } | |
ccd2ec6a L |
2951 | d->this_hdr.sh_link = elf_section_data (s)->this_idx; |
2952 | } | |
2953 | else | |
2954 | { | |
2955 | /* PR 290: | |
2956 | The Intel C compiler generates SHT_IA_64_UNWIND with | |
2957 | SHF_LINK_ORDER. But it doesn't set the sh_link or | |
2958 | sh_info fields. Hence we could get the situation | |
08a40648 | 2959 | where s is NULL. */ |
ccd2ec6a L |
2960 | const struct elf_backend_data *bed |
2961 | = get_elf_backend_data (abfd); | |
2962 | if (bed->link_order_error_handler) | |
2963 | bed->link_order_error_handler | |
2964 | (_("%B: warning: sh_link not set for section `%A'"), | |
2965 | abfd, sec); | |
38ce5b11 L |
2966 | } |
2967 | } | |
2968 | ||
252b5132 RH |
2969 | switch (d->this_hdr.sh_type) |
2970 | { | |
2971 | case SHT_REL: | |
2972 | case SHT_RELA: | |
2973 | /* A reloc section which we are treating as a normal BFD | |
2974 | section. sh_link is the section index of the symbol | |
2975 | table. sh_info is the section index of the section to | |
2976 | which the relocation entries apply. We assume that an | |
2977 | allocated reloc section uses the dynamic symbol table. | |
2978 | FIXME: How can we be sure? */ | |
2979 | s = bfd_get_section_by_name (abfd, ".dynsym"); | |
2980 | if (s != NULL) | |
2981 | d->this_hdr.sh_link = elf_section_data (s)->this_idx; | |
2982 | ||
2983 | /* We look up the section the relocs apply to by name. */ | |
2984 | name = sec->name; | |
2985 | if (d->this_hdr.sh_type == SHT_REL) | |
2986 | name += 4; | |
2987 | else | |
2988 | name += 5; | |
2989 | s = bfd_get_section_by_name (abfd, name); | |
2990 | if (s != NULL) | |
2991 | d->this_hdr.sh_info = elf_section_data (s)->this_idx; | |
2992 | break; | |
2993 | ||
2994 | case SHT_STRTAB: | |
2995 | /* We assume that a section named .stab*str is a stabs | |
2996 | string section. We look for a section with the same name | |
2997 | but without the trailing ``str'', and set its sh_link | |
2998 | field to point to this section. */ | |
0112cd26 | 2999 | if (CONST_STRNEQ (sec->name, ".stab") |
252b5132 RH |
3000 | && strcmp (sec->name + strlen (sec->name) - 3, "str") == 0) |
3001 | { | |
3002 | size_t len; | |
3003 | char *alc; | |
3004 | ||
3005 | len = strlen (sec->name); | |
217aa764 | 3006 | alc = bfd_malloc (len - 2); |
252b5132 | 3007 | if (alc == NULL) |
b34976b6 | 3008 | return FALSE; |
d4c88bbb | 3009 | memcpy (alc, sec->name, len - 3); |
252b5132 RH |
3010 | alc[len - 3] = '\0'; |
3011 | s = bfd_get_section_by_name (abfd, alc); | |
3012 | free (alc); | |
3013 | if (s != NULL) | |
3014 | { | |
3015 | elf_section_data (s)->this_hdr.sh_link = d->this_idx; | |
3016 | ||
3017 | /* This is a .stab section. */ | |
0594c12d AM |
3018 | if (elf_section_data (s)->this_hdr.sh_entsize == 0) |
3019 | elf_section_data (s)->this_hdr.sh_entsize | |
3020 | = 4 + 2 * bfd_get_arch_size (abfd) / 8; | |
252b5132 RH |
3021 | } |
3022 | } | |
3023 | break; | |
3024 | ||
3025 | case SHT_DYNAMIC: | |
3026 | case SHT_DYNSYM: | |
3027 | case SHT_GNU_verneed: | |
3028 | case SHT_GNU_verdef: | |
3029 | /* sh_link is the section header index of the string table | |
3030 | used for the dynamic entries, or the symbol table, or the | |
3031 | version strings. */ | |
3032 | s = bfd_get_section_by_name (abfd, ".dynstr"); | |
3033 | if (s != NULL) | |
3034 | d->this_hdr.sh_link = elf_section_data (s)->this_idx; | |
3035 | break; | |
3036 | ||
7f1204bb JJ |
3037 | case SHT_GNU_LIBLIST: |
3038 | /* sh_link is the section header index of the prelink library | |
08a40648 AM |
3039 | list used for the dynamic entries, or the symbol table, or |
3040 | the version strings. */ | |
7f1204bb JJ |
3041 | s = bfd_get_section_by_name (abfd, (sec->flags & SEC_ALLOC) |
3042 | ? ".dynstr" : ".gnu.libstr"); | |
3043 | if (s != NULL) | |
3044 | d->this_hdr.sh_link = elf_section_data (s)->this_idx; | |
3045 | break; | |
3046 | ||
252b5132 | 3047 | case SHT_HASH: |
fdc90cb4 | 3048 | case SHT_GNU_HASH: |
252b5132 RH |
3049 | case SHT_GNU_versym: |
3050 | /* sh_link is the section header index of the symbol table | |
3051 | this hash table or version table is for. */ | |
3052 | s = bfd_get_section_by_name (abfd, ".dynsym"); | |
3053 | if (s != NULL) | |
3054 | d->this_hdr.sh_link = elf_section_data (s)->this_idx; | |
3055 | break; | |
dbb410c3 AM |
3056 | |
3057 | case SHT_GROUP: | |
3058 | d->this_hdr.sh_link = t->symtab_section; | |
252b5132 RH |
3059 | } |
3060 | } | |
3061 | ||
2b0f7ef9 | 3062 | for (secn = 1; secn < section_number; ++secn) |
9ad5cbcf AM |
3063 | if (i_shdrp[secn] == NULL) |
3064 | i_shdrp[secn] = i_shdrp[0]; | |
3065 | else | |
3066 | i_shdrp[secn]->sh_name = _bfd_elf_strtab_offset (elf_shstrtab (abfd), | |
3067 | i_shdrp[secn]->sh_name); | |
b34976b6 | 3068 | return TRUE; |
252b5132 RH |
3069 | } |
3070 | ||
3071 | /* Map symbol from it's internal number to the external number, moving | |
3072 | all local symbols to be at the head of the list. */ | |
3073 | ||
5372391b | 3074 | static bfd_boolean |
217aa764 | 3075 | sym_is_global (bfd *abfd, asymbol *sym) |
252b5132 RH |
3076 | { |
3077 | /* If the backend has a special mapping, use it. */ | |
9c5bfbb7 | 3078 | const struct elf_backend_data *bed = get_elf_backend_data (abfd); |
217aa764 AM |
3079 | if (bed->elf_backend_sym_is_global) |
3080 | return (*bed->elf_backend_sym_is_global) (abfd, sym); | |
252b5132 RH |
3081 | |
3082 | return ((sym->flags & (BSF_GLOBAL | BSF_WEAK)) != 0 | |
3083 | || bfd_is_und_section (bfd_get_section (sym)) | |
3084 | || bfd_is_com_section (bfd_get_section (sym))); | |
3085 | } | |
3086 | ||
5372391b | 3087 | /* Don't output section symbols for sections that are not going to be |
0f0a5e58 | 3088 | output. */ |
5372391b AM |
3089 | |
3090 | static bfd_boolean | |
3091 | ignore_section_sym (bfd *abfd, asymbol *sym) | |
3092 | { | |
3093 | return ((sym->flags & BSF_SECTION_SYM) != 0 | |
0f0a5e58 AM |
3094 | && !(sym->section->owner == abfd |
3095 | || (sym->section->output_section->owner == abfd | |
3096 | && sym->section->output_offset == 0))); | |
5372391b AM |
3097 | } |
3098 | ||
b34976b6 | 3099 | static bfd_boolean |
217aa764 | 3100 | elf_map_symbols (bfd *abfd) |
252b5132 | 3101 | { |
dc810e39 | 3102 | unsigned int symcount = bfd_get_symcount (abfd); |
252b5132 RH |
3103 | asymbol **syms = bfd_get_outsymbols (abfd); |
3104 | asymbol **sect_syms; | |
dc810e39 AM |
3105 | unsigned int num_locals = 0; |
3106 | unsigned int num_globals = 0; | |
3107 | unsigned int num_locals2 = 0; | |
3108 | unsigned int num_globals2 = 0; | |
252b5132 | 3109 | int max_index = 0; |
dc810e39 | 3110 | unsigned int idx; |
252b5132 RH |
3111 | asection *asect; |
3112 | asymbol **new_syms; | |
252b5132 RH |
3113 | |
3114 | #ifdef DEBUG | |
3115 | fprintf (stderr, "elf_map_symbols\n"); | |
3116 | fflush (stderr); | |
3117 | #endif | |
3118 | ||
252b5132 RH |
3119 | for (asect = abfd->sections; asect; asect = asect->next) |
3120 | { | |
3121 | if (max_index < asect->index) | |
3122 | max_index = asect->index; | |
3123 | } | |
3124 | ||
3125 | max_index++; | |
d0fb9a8d | 3126 | sect_syms = bfd_zalloc2 (abfd, max_index, sizeof (asymbol *)); |
252b5132 | 3127 | if (sect_syms == NULL) |
b34976b6 | 3128 | return FALSE; |
252b5132 | 3129 | elf_section_syms (abfd) = sect_syms; |
4e89ac30 | 3130 | elf_num_section_syms (abfd) = max_index; |
252b5132 | 3131 | |
079e9a2f AM |
3132 | /* Init sect_syms entries for any section symbols we have already |
3133 | decided to output. */ | |
252b5132 RH |
3134 | for (idx = 0; idx < symcount; idx++) |
3135 | { | |
dc810e39 | 3136 | asymbol *sym = syms[idx]; |
c044fabd | 3137 | |
252b5132 | 3138 | if ((sym->flags & BSF_SECTION_SYM) != 0 |
0f0a5e58 | 3139 | && sym->value == 0 |
5372391b | 3140 | && !ignore_section_sym (abfd, sym)) |
252b5132 | 3141 | { |
5372391b | 3142 | asection *sec = sym->section; |
252b5132 | 3143 | |
5372391b AM |
3144 | if (sec->owner != abfd) |
3145 | sec = sec->output_section; | |
252b5132 | 3146 | |
5372391b | 3147 | sect_syms[sec->index] = syms[idx]; |
252b5132 RH |
3148 | } |
3149 | } | |
3150 | ||
252b5132 RH |
3151 | /* Classify all of the symbols. */ |
3152 | for (idx = 0; idx < symcount; idx++) | |
3153 | { | |
5372391b AM |
3154 | if (ignore_section_sym (abfd, syms[idx])) |
3155 | continue; | |
252b5132 RH |
3156 | if (!sym_is_global (abfd, syms[idx])) |
3157 | num_locals++; | |
3158 | else | |
3159 | num_globals++; | |
3160 | } | |
079e9a2f | 3161 | |
5372391b | 3162 | /* We will be adding a section symbol for each normal BFD section. Most |
079e9a2f AM |
3163 | sections will already have a section symbol in outsymbols, but |
3164 | eg. SHT_GROUP sections will not, and we need the section symbol mapped | |
3165 | at least in that case. */ | |
252b5132 RH |
3166 | for (asect = abfd->sections; asect; asect = asect->next) |
3167 | { | |
079e9a2f | 3168 | if (sect_syms[asect->index] == NULL) |
252b5132 | 3169 | { |
079e9a2f | 3170 | if (!sym_is_global (abfd, asect->symbol)) |
252b5132 RH |
3171 | num_locals++; |
3172 | else | |
3173 | num_globals++; | |
252b5132 RH |
3174 | } |
3175 | } | |
3176 | ||
3177 | /* Now sort the symbols so the local symbols are first. */ | |
d0fb9a8d | 3178 | new_syms = bfd_alloc2 (abfd, num_locals + num_globals, sizeof (asymbol *)); |
dc810e39 | 3179 | |
252b5132 | 3180 | if (new_syms == NULL) |
b34976b6 | 3181 | return FALSE; |
252b5132 RH |
3182 | |
3183 | for (idx = 0; idx < symcount; idx++) | |
3184 | { | |
3185 | asymbol *sym = syms[idx]; | |
dc810e39 | 3186 | unsigned int i; |
252b5132 | 3187 | |
5372391b AM |
3188 | if (ignore_section_sym (abfd, sym)) |
3189 | continue; | |
252b5132 RH |
3190 | if (!sym_is_global (abfd, sym)) |
3191 | i = num_locals2++; | |
3192 | else | |
3193 | i = num_locals + num_globals2++; | |
3194 | new_syms[i] = sym; | |
3195 | sym->udata.i = i + 1; | |
3196 | } | |
3197 | for (asect = abfd->sections; asect; asect = asect->next) | |
3198 | { | |
079e9a2f | 3199 | if (sect_syms[asect->index] == NULL) |
252b5132 | 3200 | { |
079e9a2f | 3201 | asymbol *sym = asect->symbol; |
dc810e39 | 3202 | unsigned int i; |
252b5132 | 3203 | |
079e9a2f | 3204 | sect_syms[asect->index] = sym; |
252b5132 RH |
3205 | if (!sym_is_global (abfd, sym)) |
3206 | i = num_locals2++; | |
3207 | else | |
3208 | i = num_locals + num_globals2++; | |
3209 | new_syms[i] = sym; | |
3210 | sym->udata.i = i + 1; | |
3211 | } | |
3212 | } | |
3213 | ||
3214 | bfd_set_symtab (abfd, new_syms, num_locals + num_globals); | |
3215 | ||
3216 | elf_num_locals (abfd) = num_locals; | |
3217 | elf_num_globals (abfd) = num_globals; | |
b34976b6 | 3218 | return TRUE; |
252b5132 RH |
3219 | } |
3220 | ||
3221 | /* Align to the maximum file alignment that could be required for any | |
3222 | ELF data structure. */ | |
3223 | ||
268b6b39 | 3224 | static inline file_ptr |
217aa764 | 3225 | align_file_position (file_ptr off, int align) |
252b5132 RH |
3226 | { |
3227 | return (off + align - 1) & ~(align - 1); | |
3228 | } | |
3229 | ||
3230 | /* Assign a file position to a section, optionally aligning to the | |
3231 | required section alignment. */ | |
3232 | ||
217aa764 AM |
3233 | file_ptr |
3234 | _bfd_elf_assign_file_position_for_section (Elf_Internal_Shdr *i_shdrp, | |
3235 | file_ptr offset, | |
3236 | bfd_boolean align) | |
252b5132 | 3237 | { |
72de5009 AM |
3238 | if (align && i_shdrp->sh_addralign > 1) |
3239 | offset = BFD_ALIGN (offset, i_shdrp->sh_addralign); | |
252b5132 RH |
3240 | i_shdrp->sh_offset = offset; |
3241 | if (i_shdrp->bfd_section != NULL) | |
3242 | i_shdrp->bfd_section->filepos = offset; | |
3243 | if (i_shdrp->sh_type != SHT_NOBITS) | |
3244 | offset += i_shdrp->sh_size; | |
3245 | return offset; | |
3246 | } | |
3247 | ||
3248 | /* Compute the file positions we are going to put the sections at, and | |
3249 | otherwise prepare to begin writing out the ELF file. If LINK_INFO | |
3250 | is not NULL, this is being called by the ELF backend linker. */ | |
3251 | ||
b34976b6 | 3252 | bfd_boolean |
217aa764 AM |
3253 | _bfd_elf_compute_section_file_positions (bfd *abfd, |
3254 | struct bfd_link_info *link_info) | |
252b5132 | 3255 | { |
9c5bfbb7 | 3256 | const struct elf_backend_data *bed = get_elf_backend_data (abfd); |
b34976b6 | 3257 | bfd_boolean failed; |
4b6c0f2f | 3258 | struct bfd_strtab_hash *strtab = NULL; |
252b5132 | 3259 | Elf_Internal_Shdr *shstrtab_hdr; |
3516e984 | 3260 | bfd_boolean need_symtab; |
252b5132 RH |
3261 | |
3262 | if (abfd->output_has_begun) | |
b34976b6 | 3263 | return TRUE; |
252b5132 RH |
3264 | |
3265 | /* Do any elf backend specific processing first. */ | |
3266 | if (bed->elf_backend_begin_write_processing) | |
3267 | (*bed->elf_backend_begin_write_processing) (abfd, link_info); | |
3268 | ||
3269 | if (! prep_headers (abfd)) | |
b34976b6 | 3270 | return FALSE; |
252b5132 | 3271 | |
e6c51ed4 NC |
3272 | /* Post process the headers if necessary. */ |
3273 | if (bed->elf_backend_post_process_headers) | |
3274 | (*bed->elf_backend_post_process_headers) (abfd, link_info); | |
3275 | ||
b34976b6 | 3276 | failed = FALSE; |
252b5132 RH |
3277 | bfd_map_over_sections (abfd, elf_fake_sections, &failed); |
3278 | if (failed) | |
b34976b6 | 3279 | return FALSE; |
252b5132 | 3280 | |
da9f89d4 | 3281 | if (!assign_section_numbers (abfd, link_info)) |
b34976b6 | 3282 | return FALSE; |
252b5132 RH |
3283 | |
3284 | /* The backend linker builds symbol table information itself. */ | |
3516e984 L |
3285 | need_symtab = (link_info == NULL |
3286 | && (bfd_get_symcount (abfd) > 0 | |
3287 | || ((abfd->flags & (EXEC_P | DYNAMIC | HAS_RELOC)) | |
3288 | == HAS_RELOC))); | |
3289 | if (need_symtab) | |
252b5132 RH |
3290 | { |
3291 | /* Non-zero if doing a relocatable link. */ | |
3292 | int relocatable_p = ! (abfd->flags & (EXEC_P | DYNAMIC)); | |
3293 | ||
3294 | if (! swap_out_syms (abfd, &strtab, relocatable_p)) | |
b34976b6 | 3295 | return FALSE; |
252b5132 RH |
3296 | } |
3297 | ||
1126897b | 3298 | if (link_info == NULL) |
dbb410c3 | 3299 | { |
1126897b | 3300 | bfd_map_over_sections (abfd, bfd_elf_set_group_contents, &failed); |
dbb410c3 | 3301 | if (failed) |
b34976b6 | 3302 | return FALSE; |
dbb410c3 AM |
3303 | } |
3304 | ||
252b5132 RH |
3305 | shstrtab_hdr = &elf_tdata (abfd)->shstrtab_hdr; |
3306 | /* sh_name was set in prep_headers. */ | |
3307 | shstrtab_hdr->sh_type = SHT_STRTAB; | |
3308 | shstrtab_hdr->sh_flags = 0; | |
3309 | shstrtab_hdr->sh_addr = 0; | |
2b0f7ef9 | 3310 | shstrtab_hdr->sh_size = _bfd_elf_strtab_size (elf_shstrtab (abfd)); |
252b5132 RH |
3311 | shstrtab_hdr->sh_entsize = 0; |
3312 | shstrtab_hdr->sh_link = 0; | |
3313 | shstrtab_hdr->sh_info = 0; | |
3314 | /* sh_offset is set in assign_file_positions_except_relocs. */ | |
3315 | shstrtab_hdr->sh_addralign = 1; | |
3316 | ||
c84fca4d | 3317 | if (!assign_file_positions_except_relocs (abfd, link_info)) |
b34976b6 | 3318 | return FALSE; |
252b5132 | 3319 | |
3516e984 | 3320 | if (need_symtab) |
252b5132 RH |
3321 | { |
3322 | file_ptr off; | |
3323 | Elf_Internal_Shdr *hdr; | |
3324 | ||
3325 | off = elf_tdata (abfd)->next_file_pos; | |
3326 | ||
3327 | hdr = &elf_tdata (abfd)->symtab_hdr; | |
b34976b6 | 3328 | off = _bfd_elf_assign_file_position_for_section (hdr, off, TRUE); |
252b5132 | 3329 | |
9ad5cbcf AM |
3330 | hdr = &elf_tdata (abfd)->symtab_shndx_hdr; |
3331 | if (hdr->sh_size != 0) | |
b34976b6 | 3332 | off = _bfd_elf_assign_file_position_for_section (hdr, off, TRUE); |
9ad5cbcf | 3333 | |
252b5132 | 3334 | hdr = &elf_tdata (abfd)->strtab_hdr; |
b34976b6 | 3335 | off = _bfd_elf_assign_file_position_for_section (hdr, off, TRUE); |
252b5132 RH |
3336 | |
3337 | elf_tdata (abfd)->next_file_pos = off; | |
3338 | ||
3339 | /* Now that we know where the .strtab section goes, write it | |
08a40648 | 3340 | out. */ |
252b5132 RH |
3341 | if (bfd_seek (abfd, hdr->sh_offset, SEEK_SET) != 0 |
3342 | || ! _bfd_stringtab_emit (abfd, strtab)) | |
b34976b6 | 3343 | return FALSE; |
252b5132 RH |
3344 | _bfd_stringtab_free (strtab); |
3345 | } | |
3346 | ||
b34976b6 | 3347 | abfd->output_has_begun = TRUE; |
252b5132 | 3348 | |
b34976b6 | 3349 | return TRUE; |
252b5132 RH |
3350 | } |
3351 | ||
8ded5a0f AM |
3352 | /* Make an initial estimate of the size of the program header. If we |
3353 | get the number wrong here, we'll redo section placement. */ | |
3354 | ||
3355 | static bfd_size_type | |
3356 | get_program_header_size (bfd *abfd, struct bfd_link_info *info) | |
3357 | { | |
3358 | size_t segs; | |
3359 | asection *s; | |
2b05f1b7 | 3360 | const struct elf_backend_data *bed; |
8ded5a0f AM |
3361 | |
3362 | /* Assume we will need exactly two PT_LOAD segments: one for text | |
3363 | and one for data. */ | |
3364 | segs = 2; | |
3365 | ||
3366 | s = bfd_get_section_by_name (abfd, ".interp"); | |
3367 | if (s != NULL && (s->flags & SEC_LOAD) != 0) | |
3368 | { | |
3369 | /* If we have a loadable interpreter section, we need a | |
3370 | PT_INTERP segment. In this case, assume we also need a | |
3371 | PT_PHDR segment, although that may not be true for all | |
3372 | targets. */ | |
3373 | segs += 2; | |
3374 | } | |
3375 | ||
3376 | if (bfd_get_section_by_name (abfd, ".dynamic") != NULL) | |
3377 | { | |
3378 | /* We need a PT_DYNAMIC segment. */ | |
3379 | ++segs; | |
f210dcff | 3380 | } |
08a40648 | 3381 | |
ceae84aa | 3382 | if (info != NULL && info->relro) |
f210dcff L |
3383 | { |
3384 | /* We need a PT_GNU_RELRO segment. */ | |
3385 | ++segs; | |
8ded5a0f AM |
3386 | } |
3387 | ||
3388 | if (elf_tdata (abfd)->eh_frame_hdr) | |
3389 | { | |
3390 | /* We need a PT_GNU_EH_FRAME segment. */ | |
3391 | ++segs; | |
3392 | } | |
3393 | ||
2b05f1b7 | 3394 | if (elf_tdata (abfd)->stack_flags) |
8ded5a0f | 3395 | { |
2b05f1b7 L |
3396 | /* We need a PT_GNU_STACK segment. */ |
3397 | ++segs; | |
3398 | } | |
94b11780 | 3399 | |
2b05f1b7 L |
3400 | for (s = abfd->sections; s != NULL; s = s->next) |
3401 | { | |
8ded5a0f | 3402 | if ((s->flags & SEC_LOAD) != 0 |
0112cd26 | 3403 | && CONST_STRNEQ (s->name, ".note")) |
8ded5a0f AM |
3404 | { |
3405 | /* We need a PT_NOTE segment. */ | |
3406 | ++segs; | |
1c5265b5 JJ |
3407 | /* Try to create just one PT_NOTE segment |
3408 | for all adjacent loadable .note* sections. | |
3409 | gABI requires that within a PT_NOTE segment | |
3410 | (and also inside of each SHT_NOTE section) | |
3411 | each note is padded to a multiple of 4 size, | |
3412 | so we check whether the sections are correctly | |
3413 | aligned. */ | |
3414 | if (s->alignment_power == 2) | |
3415 | while (s->next != NULL | |
3416 | && s->next->alignment_power == 2 | |
3417 | && (s->next->flags & SEC_LOAD) != 0 | |
3418 | && CONST_STRNEQ (s->next->name, ".note")) | |
3419 | s = s->next; | |
8ded5a0f AM |
3420 | } |
3421 | } | |
3422 | ||
3423 | for (s = abfd->sections; s != NULL; s = s->next) | |
3424 | { | |
3425 | if (s->flags & SEC_THREAD_LOCAL) | |
3426 | { | |
3427 | /* We need a PT_TLS segment. */ | |
3428 | ++segs; | |
3429 | break; | |
3430 | } | |
3431 | } | |
3432 | ||
3433 | /* Let the backend count up any program headers it might need. */ | |
2b05f1b7 | 3434 | bed = get_elf_backend_data (abfd); |
8ded5a0f AM |
3435 | if (bed->elf_backend_additional_program_headers) |
3436 | { | |
3437 | int a; | |
3438 | ||
3439 | a = (*bed->elf_backend_additional_program_headers) (abfd, info); | |
3440 | if (a == -1) | |
3441 | abort (); | |
3442 | segs += a; | |
3443 | } | |
3444 | ||
3445 | return segs * bed->s->sizeof_phdr; | |
3446 | } | |
3447 | ||
2ea37f1c NC |
3448 | /* Find the segment that contains the output_section of section. */ |
3449 | ||
3450 | Elf_Internal_Phdr * | |
3451 | _bfd_elf_find_segment_containing_section (bfd * abfd, asection * section) | |
3452 | { | |
3453 | struct elf_segment_map *m; | |
3454 | Elf_Internal_Phdr *p; | |
3455 | ||
3456 | for (m = elf_tdata (abfd)->segment_map, | |
3457 | p = elf_tdata (abfd)->phdr; | |
3458 | m != NULL; | |
3459 | m = m->next, p++) | |
3460 | { | |
3461 | int i; | |
3462 | ||
3463 | for (i = m->count - 1; i >= 0; i--) | |
3464 | if (m->sections[i] == section) | |
3465 | return p; | |
3466 | } | |
3467 | ||
3468 | return NULL; | |
3469 | } | |
3470 | ||
252b5132 RH |
3471 | /* Create a mapping from a set of sections to a program segment. */ |
3472 | ||
217aa764 AM |
3473 | static struct elf_segment_map * |
3474 | make_mapping (bfd *abfd, | |
3475 | asection **sections, | |
3476 | unsigned int from, | |
3477 | unsigned int to, | |
3478 | bfd_boolean phdr) | |
252b5132 RH |
3479 | { |
3480 | struct elf_segment_map *m; | |
3481 | unsigned int i; | |
3482 | asection **hdrpp; | |
dc810e39 | 3483 | bfd_size_type amt; |
252b5132 | 3484 | |
dc810e39 AM |
3485 | amt = sizeof (struct elf_segment_map); |
3486 | amt += (to - from - 1) * sizeof (asection *); | |
217aa764 | 3487 | m = bfd_zalloc (abfd, amt); |
252b5132 RH |
3488 | if (m == NULL) |
3489 | return NULL; | |
3490 | m->next = NULL; | |
3491 | m->p_type = PT_LOAD; | |
3492 | for (i = from, hdrpp = sections + from; i < to; i++, hdrpp++) | |
3493 | m->sections[i - from] = *hdrpp; | |
3494 | m->count = to - from; | |
3495 | ||
3496 | if (from == 0 && phdr) | |
3497 | { | |
3498 | /* Include the headers in the first PT_LOAD segment. */ | |
3499 | m->includes_filehdr = 1; | |
3500 | m->includes_phdrs = 1; | |
3501 | } | |
3502 | ||
3503 | return m; | |
3504 | } | |
3505 | ||
229fcec5 MM |
3506 | /* Create the PT_DYNAMIC segment, which includes DYNSEC. Returns NULL |
3507 | on failure. */ | |
3508 | ||
3509 | struct elf_segment_map * | |
3510 | _bfd_elf_make_dynamic_segment (bfd *abfd, asection *dynsec) | |
3511 | { | |
3512 | struct elf_segment_map *m; | |
3513 | ||
3514 | m = bfd_zalloc (abfd, sizeof (struct elf_segment_map)); | |
3515 | if (m == NULL) | |
3516 | return NULL; | |
3517 | m->next = NULL; | |
3518 | m->p_type = PT_DYNAMIC; | |
3519 | m->count = 1; | |
3520 | m->sections[0] = dynsec; | |
08a40648 | 3521 | |
229fcec5 MM |
3522 | return m; |
3523 | } | |
3524 | ||
8ded5a0f | 3525 | /* Possibly add or remove segments from the segment map. */ |
252b5132 | 3526 | |
b34976b6 | 3527 | static bfd_boolean |
3dea8fca AM |
3528 | elf_modify_segment_map (bfd *abfd, |
3529 | struct bfd_link_info *info, | |
3530 | bfd_boolean remove_empty_load) | |
252b5132 | 3531 | { |
252e386e | 3532 | struct elf_segment_map **m; |
8ded5a0f | 3533 | const struct elf_backend_data *bed; |
252b5132 | 3534 | |
8ded5a0f AM |
3535 | /* The placement algorithm assumes that non allocated sections are |
3536 | not in PT_LOAD segments. We ensure this here by removing such | |
3537 | sections from the segment map. We also remove excluded | |
252e386e AM |
3538 | sections. Finally, any PT_LOAD segment without sections is |
3539 | removed. */ | |
3540 | m = &elf_tdata (abfd)->segment_map; | |
3541 | while (*m) | |
8ded5a0f AM |
3542 | { |
3543 | unsigned int i, new_count; | |
252b5132 | 3544 | |
252e386e | 3545 | for (new_count = 0, i = 0; i < (*m)->count; i++) |
8ded5a0f | 3546 | { |
252e386e AM |
3547 | if (((*m)->sections[i]->flags & SEC_EXCLUDE) == 0 |
3548 | && (((*m)->sections[i]->flags & SEC_ALLOC) != 0 | |
3549 | || (*m)->p_type != PT_LOAD)) | |
8ded5a0f | 3550 | { |
252e386e AM |
3551 | (*m)->sections[new_count] = (*m)->sections[i]; |
3552 | new_count++; | |
8ded5a0f AM |
3553 | } |
3554 | } | |
252e386e | 3555 | (*m)->count = new_count; |
252b5132 | 3556 | |
3dea8fca | 3557 | if (remove_empty_load && (*m)->p_type == PT_LOAD && (*m)->count == 0) |
252e386e AM |
3558 | *m = (*m)->next; |
3559 | else | |
3560 | m = &(*m)->next; | |
8ded5a0f | 3561 | } |
252b5132 | 3562 | |
8ded5a0f AM |
3563 | bed = get_elf_backend_data (abfd); |
3564 | if (bed->elf_backend_modify_segment_map != NULL) | |
252b5132 | 3565 | { |
252e386e | 3566 | if (!(*bed->elf_backend_modify_segment_map) (abfd, info)) |
8ded5a0f | 3567 | return FALSE; |
252b5132 | 3568 | } |
252b5132 | 3569 | |
8ded5a0f AM |
3570 | return TRUE; |
3571 | } | |
252b5132 | 3572 | |
8ded5a0f | 3573 | /* Set up a mapping from BFD sections to program segments. */ |
252b5132 | 3574 | |
8ded5a0f AM |
3575 | bfd_boolean |
3576 | _bfd_elf_map_sections_to_segments (bfd *abfd, struct bfd_link_info *info) | |
3577 | { | |
3578 | unsigned int count; | |
3579 | struct elf_segment_map *m; | |
3580 | asection **sections = NULL; | |
3581 | const struct elf_backend_data *bed = get_elf_backend_data (abfd); | |
3dea8fca | 3582 | bfd_boolean no_user_phdrs; |
252b5132 | 3583 | |
3dea8fca AM |
3584 | no_user_phdrs = elf_tdata (abfd)->segment_map == NULL; |
3585 | if (no_user_phdrs && bfd_count_sections (abfd) != 0) | |
252b5132 | 3586 | { |
8ded5a0f AM |
3587 | asection *s; |
3588 | unsigned int i; | |
3589 | struct elf_segment_map *mfirst; | |
3590 | struct elf_segment_map **pm; | |
3591 | asection *last_hdr; | |
3592 | bfd_vma last_size; | |
3593 | unsigned int phdr_index; | |
3594 | bfd_vma maxpagesize; | |
3595 | asection **hdrpp; | |
3596 | bfd_boolean phdr_in_segment = TRUE; | |
3597 | bfd_boolean writable; | |
3598 | int tls_count = 0; | |
3599 | asection *first_tls = NULL; | |
3600 | asection *dynsec, *eh_frame_hdr; | |
3601 | bfd_size_type amt; | |
252b5132 | 3602 | |
8ded5a0f | 3603 | /* Select the allocated sections, and sort them. */ |
252b5132 | 3604 | |
8ded5a0f AM |
3605 | sections = bfd_malloc2 (bfd_count_sections (abfd), sizeof (asection *)); |
3606 | if (sections == NULL) | |
252b5132 | 3607 | goto error_return; |
252b5132 | 3608 | |
8ded5a0f AM |
3609 | i = 0; |
3610 | for (s = abfd->sections; s != NULL; s = s->next) | |
3611 | { | |
3612 | if ((s->flags & SEC_ALLOC) != 0) | |
3613 | { | |
3614 | sections[i] = s; | |
3615 | ++i; | |
3616 | } | |
3617 | } | |
3618 | BFD_ASSERT (i <= bfd_count_sections (abfd)); | |
3619 | count = i; | |
252b5132 | 3620 | |
8ded5a0f | 3621 | qsort (sections, (size_t) count, sizeof (asection *), elf_sort_sections); |
252b5132 | 3622 | |
8ded5a0f | 3623 | /* Build the mapping. */ |
252b5132 | 3624 | |
8ded5a0f AM |
3625 | mfirst = NULL; |
3626 | pm = &mfirst; | |
252b5132 | 3627 | |
8ded5a0f AM |
3628 | /* If we have a .interp section, then create a PT_PHDR segment for |
3629 | the program headers and a PT_INTERP segment for the .interp | |
3630 | section. */ | |
3631 | s = bfd_get_section_by_name (abfd, ".interp"); | |
3632 | if (s != NULL && (s->flags & SEC_LOAD) != 0) | |
3633 | { | |
3634 | amt = sizeof (struct elf_segment_map); | |
3635 | m = bfd_zalloc (abfd, amt); | |
3636 | if (m == NULL) | |
3637 | goto error_return; | |
3638 | m->next = NULL; | |
3639 | m->p_type = PT_PHDR; | |
3640 | /* FIXME: UnixWare and Solaris set PF_X, Irix 5 does not. */ | |
3641 | m->p_flags = PF_R | PF_X; | |
3642 | m->p_flags_valid = 1; | |
3643 | m->includes_phdrs = 1; | |
252b5132 | 3644 | |
8ded5a0f AM |
3645 | *pm = m; |
3646 | pm = &m->next; | |
252b5132 | 3647 | |
8ded5a0f AM |
3648 | amt = sizeof (struct elf_segment_map); |
3649 | m = bfd_zalloc (abfd, amt); | |
3650 | if (m == NULL) | |
3651 | goto error_return; | |
3652 | m->next = NULL; | |
3653 | m->p_type = PT_INTERP; | |
3654 | m->count = 1; | |
3655 | m->sections[0] = s; | |
3656 | ||
3657 | *pm = m; | |
3658 | pm = &m->next; | |
252b5132 | 3659 | } |
8ded5a0f AM |
3660 | |
3661 | /* Look through the sections. We put sections in the same program | |
3662 | segment when the start of the second section can be placed within | |
3663 | a few bytes of the end of the first section. */ | |
3664 | last_hdr = NULL; | |
3665 | last_size = 0; | |
3666 | phdr_index = 0; | |
3667 | maxpagesize = bed->maxpagesize; | |
3668 | writable = FALSE; | |
3669 | dynsec = bfd_get_section_by_name (abfd, ".dynamic"); | |
3670 | if (dynsec != NULL | |
3671 | && (dynsec->flags & SEC_LOAD) == 0) | |
3672 | dynsec = NULL; | |
3673 | ||
3674 | /* Deal with -Ttext or something similar such that the first section | |
3675 | is not adjacent to the program headers. This is an | |
3676 | approximation, since at this point we don't know exactly how many | |
3677 | program headers we will need. */ | |
3678 | if (count > 0) | |
252b5132 | 3679 | { |
8ded5a0f AM |
3680 | bfd_size_type phdr_size = elf_tdata (abfd)->program_header_size; |
3681 | ||
62d7a5f6 | 3682 | if (phdr_size == (bfd_size_type) -1) |
8ded5a0f AM |
3683 | phdr_size = get_program_header_size (abfd, info); |
3684 | if ((abfd->flags & D_PAGED) == 0 | |
3685 | || sections[0]->lma < phdr_size | |
3686 | || sections[0]->lma % maxpagesize < phdr_size % maxpagesize) | |
3687 | phdr_in_segment = FALSE; | |
252b5132 RH |
3688 | } |
3689 | ||
8ded5a0f | 3690 | for (i = 0, hdrpp = sections; i < count; i++, hdrpp++) |
252b5132 | 3691 | { |
8ded5a0f AM |
3692 | asection *hdr; |
3693 | bfd_boolean new_segment; | |
3694 | ||
3695 | hdr = *hdrpp; | |
3696 | ||
3697 | /* See if this section and the last one will fit in the same | |
3698 | segment. */ | |
3699 | ||
3700 | if (last_hdr == NULL) | |
3701 | { | |
3702 | /* If we don't have a segment yet, then we don't need a new | |
3703 | one (we build the last one after this loop). */ | |
3704 | new_segment = FALSE; | |
3705 | } | |
3706 | else if (last_hdr->lma - last_hdr->vma != hdr->lma - hdr->vma) | |
3707 | { | |
3708 | /* If this section has a different relation between the | |
3709 | virtual address and the load address, then we need a new | |
3710 | segment. */ | |
3711 | new_segment = TRUE; | |
3712 | } | |
39948a60 NC |
3713 | /* In the next test we have to be careful when last_hdr->lma is close |
3714 | to the end of the address space. If the aligned address wraps | |
3715 | around to the start of the address space, then there are no more | |
3716 | pages left in memory and it is OK to assume that the current | |
3717 | section can be included in the current segment. */ | |
3718 | else if ((BFD_ALIGN (last_hdr->lma + last_size, maxpagesize) + maxpagesize | |
3719 | > last_hdr->lma) | |
3720 | && (BFD_ALIGN (last_hdr->lma + last_size, maxpagesize) + maxpagesize | |
4ff73856 | 3721 | <= hdr->lma)) |
8ded5a0f AM |
3722 | { |
3723 | /* If putting this section in this segment would force us to | |
3724 | skip a page in the segment, then we need a new segment. */ | |
3725 | new_segment = TRUE; | |
3726 | } | |
3727 | else if ((last_hdr->flags & (SEC_LOAD | SEC_THREAD_LOCAL)) == 0 | |
3728 | && (hdr->flags & (SEC_LOAD | SEC_THREAD_LOCAL)) != 0) | |
3729 | { | |
3730 | /* We don't want to put a loadable section after a | |
3731 | nonloadable section in the same segment. | |
3732 | Consider .tbss sections as loadable for this purpose. */ | |
3733 | new_segment = TRUE; | |
3734 | } | |
3735 | else if ((abfd->flags & D_PAGED) == 0) | |
3736 | { | |
3737 | /* If the file is not demand paged, which means that we | |
3738 | don't require the sections to be correctly aligned in the | |
3739 | file, then there is no other reason for a new segment. */ | |
3740 | new_segment = FALSE; | |
3741 | } | |
3742 | else if (! writable | |
3743 | && (hdr->flags & SEC_READONLY) == 0 | |
3744 | && (((last_hdr->lma + last_size - 1) | |
3745 | & ~(maxpagesize - 1)) | |
3746 | != (hdr->lma & ~(maxpagesize - 1)))) | |
3747 | { | |
3748 | /* We don't want to put a writable section in a read only | |
3749 | segment, unless they are on the same page in memory | |
3750 | anyhow. We already know that the last section does not | |
3751 | bring us past the current section on the page, so the | |
3752 | only case in which the new section is not on the same | |
3753 | page as the previous section is when the previous section | |
3754 | ends precisely on a page boundary. */ | |
3755 | new_segment = TRUE; | |
3756 | } | |
3757 | else | |
3758 | { | |
3759 | /* Otherwise, we can use the same segment. */ | |
3760 | new_segment = FALSE; | |
3761 | } | |
3762 | ||
2889e75b | 3763 | /* Allow interested parties a chance to override our decision. */ |
ceae84aa AM |
3764 | if (last_hdr != NULL |
3765 | && info != NULL | |
3766 | && info->callbacks->override_segment_assignment != NULL) | |
3767 | new_segment | |
3768 | = info->callbacks->override_segment_assignment (info, abfd, hdr, | |
3769 | last_hdr, | |
3770 | new_segment); | |
2889e75b | 3771 | |
8ded5a0f AM |
3772 | if (! new_segment) |
3773 | { | |
3774 | if ((hdr->flags & SEC_READONLY) == 0) | |
3775 | writable = TRUE; | |
3776 | last_hdr = hdr; | |
3777 | /* .tbss sections effectively have zero size. */ | |
3778 | if ((hdr->flags & (SEC_THREAD_LOCAL | SEC_LOAD)) | |
3779 | != SEC_THREAD_LOCAL) | |
3780 | last_size = hdr->size; | |
3781 | else | |
3782 | last_size = 0; | |
3783 | continue; | |
3784 | } | |
3785 | ||
3786 | /* We need a new program segment. We must create a new program | |
3787 | header holding all the sections from phdr_index until hdr. */ | |
3788 | ||
3789 | m = make_mapping (abfd, sections, phdr_index, i, phdr_in_segment); | |
3790 | if (m == NULL) | |
3791 | goto error_return; | |
3792 | ||
3793 | *pm = m; | |
3794 | pm = &m->next; | |
3795 | ||
252b5132 | 3796 | if ((hdr->flags & SEC_READONLY) == 0) |
b34976b6 | 3797 | writable = TRUE; |
8ded5a0f AM |
3798 | else |
3799 | writable = FALSE; | |
3800 | ||
baaff79e JJ |
3801 | last_hdr = hdr; |
3802 | /* .tbss sections effectively have zero size. */ | |
e5caec89 | 3803 | if ((hdr->flags & (SEC_THREAD_LOCAL | SEC_LOAD)) != SEC_THREAD_LOCAL) |
eea6121a | 3804 | last_size = hdr->size; |
baaff79e JJ |
3805 | else |
3806 | last_size = 0; | |
8ded5a0f AM |
3807 | phdr_index = i; |
3808 | phdr_in_segment = FALSE; | |
252b5132 RH |
3809 | } |
3810 | ||
8ded5a0f AM |
3811 | /* Create a final PT_LOAD program segment. */ |
3812 | if (last_hdr != NULL) | |
3813 | { | |
3814 | m = make_mapping (abfd, sections, phdr_index, i, phdr_in_segment); | |
3815 | if (m == NULL) | |
3816 | goto error_return; | |
252b5132 | 3817 | |
8ded5a0f AM |
3818 | *pm = m; |
3819 | pm = &m->next; | |
3820 | } | |
252b5132 | 3821 | |
8ded5a0f AM |
3822 | /* If there is a .dynamic section, throw in a PT_DYNAMIC segment. */ |
3823 | if (dynsec != NULL) | |
3824 | { | |
3825 | m = _bfd_elf_make_dynamic_segment (abfd, dynsec); | |
3826 | if (m == NULL) | |
3827 | goto error_return; | |
3828 | *pm = m; | |
3829 | pm = &m->next; | |
3830 | } | |
252b5132 | 3831 | |
1c5265b5 JJ |
3832 | /* For each batch of consecutive loadable .note sections, |
3833 | add a PT_NOTE segment. We don't use bfd_get_section_by_name, | |
3834 | because if we link together nonloadable .note sections and | |
3835 | loadable .note sections, we will generate two .note sections | |
3836 | in the output file. FIXME: Using names for section types is | |
3837 | bogus anyhow. */ | |
8ded5a0f AM |
3838 | for (s = abfd->sections; s != NULL; s = s->next) |
3839 | { | |
3840 | if ((s->flags & SEC_LOAD) != 0 | |
0112cd26 | 3841 | && CONST_STRNEQ (s->name, ".note")) |
8ded5a0f | 3842 | { |
1c5265b5 JJ |
3843 | asection *s2; |
3844 | unsigned count = 1; | |
8ded5a0f | 3845 | amt = sizeof (struct elf_segment_map); |
1c5265b5 JJ |
3846 | if (s->alignment_power == 2) |
3847 | for (s2 = s; s2->next != NULL; s2 = s2->next) | |
55b581a6 JJ |
3848 | { |
3849 | if (s2->next->alignment_power == 2 | |
3850 | && (s2->next->flags & SEC_LOAD) != 0 | |
3851 | && CONST_STRNEQ (s2->next->name, ".note") | |
3852 | && align_power (s2->vma + s2->size, 2) | |
3853 | == s2->next->vma) | |
3854 | count++; | |
3855 | else | |
3856 | break; | |
3857 | } | |
1c5265b5 | 3858 | amt += (count - 1) * sizeof (asection *); |
8ded5a0f AM |
3859 | m = bfd_zalloc (abfd, amt); |
3860 | if (m == NULL) | |
3861 | goto error_return; | |
3862 | m->next = NULL; | |
3863 | m->p_type = PT_NOTE; | |
1c5265b5 JJ |
3864 | m->count = count; |
3865 | while (count > 1) | |
3866 | { | |
3867 | m->sections[m->count - count--] = s; | |
3868 | BFD_ASSERT ((s->flags & SEC_THREAD_LOCAL) == 0); | |
3869 | s = s->next; | |
3870 | } | |
3871 | m->sections[m->count - 1] = s; | |
3872 | BFD_ASSERT ((s->flags & SEC_THREAD_LOCAL) == 0); | |
8ded5a0f AM |
3873 | *pm = m; |
3874 | pm = &m->next; | |
3875 | } | |
3876 | if (s->flags & SEC_THREAD_LOCAL) | |
3877 | { | |
3878 | if (! tls_count) | |
3879 | first_tls = s; | |
3880 | tls_count++; | |
3881 | } | |
3882 | } | |
252b5132 | 3883 | |
8ded5a0f AM |
3884 | /* If there are any SHF_TLS output sections, add PT_TLS segment. */ |
3885 | if (tls_count > 0) | |
3886 | { | |
3887 | int i; | |
252b5132 | 3888 | |
8ded5a0f AM |
3889 | amt = sizeof (struct elf_segment_map); |
3890 | amt += (tls_count - 1) * sizeof (asection *); | |
3891 | m = bfd_zalloc (abfd, amt); | |
3892 | if (m == NULL) | |
3893 | goto error_return; | |
3894 | m->next = NULL; | |
3895 | m->p_type = PT_TLS; | |
3896 | m->count = tls_count; | |
3897 | /* Mandated PF_R. */ | |
3898 | m->p_flags = PF_R; | |
3899 | m->p_flags_valid = 1; | |
3900 | for (i = 0; i < tls_count; ++i) | |
3901 | { | |
3902 | BFD_ASSERT (first_tls->flags & SEC_THREAD_LOCAL); | |
3903 | m->sections[i] = first_tls; | |
3904 | first_tls = first_tls->next; | |
3905 | } | |
252b5132 | 3906 | |
8ded5a0f AM |
3907 | *pm = m; |
3908 | pm = &m->next; | |
3909 | } | |
252b5132 | 3910 | |
8ded5a0f AM |
3911 | /* If there is a .eh_frame_hdr section, throw in a PT_GNU_EH_FRAME |
3912 | segment. */ | |
3913 | eh_frame_hdr = elf_tdata (abfd)->eh_frame_hdr; | |
3914 | if (eh_frame_hdr != NULL | |
3915 | && (eh_frame_hdr->output_section->flags & SEC_LOAD) != 0) | |
252b5132 | 3916 | { |
dc810e39 | 3917 | amt = sizeof (struct elf_segment_map); |
217aa764 | 3918 | m = bfd_zalloc (abfd, amt); |
252b5132 RH |
3919 | if (m == NULL) |
3920 | goto error_return; | |
3921 | m->next = NULL; | |
8ded5a0f | 3922 | m->p_type = PT_GNU_EH_FRAME; |
252b5132 | 3923 | m->count = 1; |
8ded5a0f | 3924 | m->sections[0] = eh_frame_hdr->output_section; |
252b5132 RH |
3925 | |
3926 | *pm = m; | |
3927 | pm = &m->next; | |
3928 | } | |
13ae64f3 | 3929 | |
8ded5a0f | 3930 | if (elf_tdata (abfd)->stack_flags) |
13ae64f3 | 3931 | { |
8ded5a0f AM |
3932 | amt = sizeof (struct elf_segment_map); |
3933 | m = bfd_zalloc (abfd, amt); | |
3934 | if (m == NULL) | |
3935 | goto error_return; | |
3936 | m->next = NULL; | |
2b05f1b7 | 3937 | m->p_type = PT_GNU_STACK; |
8ded5a0f AM |
3938 | m->p_flags = elf_tdata (abfd)->stack_flags; |
3939 | m->p_flags_valid = 1; | |
252b5132 | 3940 | |
8ded5a0f AM |
3941 | *pm = m; |
3942 | pm = &m->next; | |
3943 | } | |
65765700 | 3944 | |
ceae84aa | 3945 | if (info != NULL && info->relro) |
8ded5a0f | 3946 | { |
f210dcff L |
3947 | for (m = mfirst; m != NULL; m = m->next) |
3948 | { | |
3949 | if (m->p_type == PT_LOAD) | |
3950 | { | |
3951 | asection *last = m->sections[m->count - 1]; | |
3952 | bfd_vma vaddr = m->sections[0]->vma; | |
3953 | bfd_vma filesz = last->vma - vaddr + last->size; | |
65765700 | 3954 | |
f210dcff L |
3955 | if (vaddr < info->relro_end |
3956 | && vaddr >= info->relro_start | |
3957 | && (vaddr + filesz) >= info->relro_end) | |
3958 | break; | |
3959 | } | |
3960 | } | |
3961 | ||
3962 | /* Make a PT_GNU_RELRO segment only when it isn't empty. */ | |
3963 | if (m != NULL) | |
3964 | { | |
3965 | amt = sizeof (struct elf_segment_map); | |
3966 | m = bfd_zalloc (abfd, amt); | |
3967 | if (m == NULL) | |
3968 | goto error_return; | |
3969 | m->next = NULL; | |
3970 | m->p_type = PT_GNU_RELRO; | |
3971 | m->p_flags = PF_R; | |
3972 | m->p_flags_valid = 1; | |
3973 | ||
3974 | *pm = m; | |
3975 | pm = &m->next; | |
3976 | } | |
8ded5a0f | 3977 | } |
9ee5e499 | 3978 | |
8ded5a0f AM |
3979 | free (sections); |
3980 | elf_tdata (abfd)->segment_map = mfirst; | |
9ee5e499 JJ |
3981 | } |
3982 | ||
3dea8fca | 3983 | if (!elf_modify_segment_map (abfd, info, no_user_phdrs)) |
8ded5a0f | 3984 | return FALSE; |
8c37241b | 3985 | |
8ded5a0f AM |
3986 | for (count = 0, m = elf_tdata (abfd)->segment_map; m != NULL; m = m->next) |
3987 | ++count; | |
3988 | elf_tdata (abfd)->program_header_size = count * bed->s->sizeof_phdr; | |
252b5132 | 3989 | |
b34976b6 | 3990 | return TRUE; |
252b5132 RH |
3991 | |
3992 | error_return: | |
3993 | if (sections != NULL) | |
3994 | free (sections); | |
b34976b6 | 3995 | return FALSE; |
252b5132 RH |
3996 | } |
3997 | ||
3998 | /* Sort sections by address. */ | |
3999 | ||
4000 | static int | |
217aa764 | 4001 | elf_sort_sections (const void *arg1, const void *arg2) |
252b5132 RH |
4002 | { |
4003 | const asection *sec1 = *(const asection **) arg1; | |
4004 | const asection *sec2 = *(const asection **) arg2; | |
eecdbe52 | 4005 | bfd_size_type size1, size2; |
252b5132 RH |
4006 | |
4007 | /* Sort by LMA first, since this is the address used to | |
4008 | place the section into a segment. */ | |
4009 | if (sec1->lma < sec2->lma) | |
4010 | return -1; | |
4011 | else if (sec1->lma > sec2->lma) | |
4012 | return 1; | |
4013 | ||
4014 | /* Then sort by VMA. Normally the LMA and the VMA will be | |
4015 | the same, and this will do nothing. */ | |
4016 | if (sec1->vma < sec2->vma) | |
4017 | return -1; | |
4018 | else if (sec1->vma > sec2->vma) | |
4019 | return 1; | |
4020 | ||
4021 | /* Put !SEC_LOAD sections after SEC_LOAD ones. */ | |
4022 | ||
07c6e936 | 4023 | #define TOEND(x) (((x)->flags & (SEC_LOAD | SEC_THREAD_LOCAL)) == 0) |
252b5132 RH |
4024 | |
4025 | if (TOEND (sec1)) | |
4026 | { | |
4027 | if (TOEND (sec2)) | |
00a7cdc5 NC |
4028 | { |
4029 | /* If the indicies are the same, do not return 0 | |
4030 | here, but continue to try the next comparison. */ | |
4031 | if (sec1->target_index - sec2->target_index != 0) | |
4032 | return sec1->target_index - sec2->target_index; | |
4033 | } | |
252b5132 RH |
4034 | else |
4035 | return 1; | |
4036 | } | |
00a7cdc5 | 4037 | else if (TOEND (sec2)) |
252b5132 RH |
4038 | return -1; |
4039 | ||
4040 | #undef TOEND | |
4041 | ||
00a7cdc5 NC |
4042 | /* Sort by size, to put zero sized sections |
4043 | before others at the same address. */ | |
252b5132 | 4044 | |
eea6121a AM |
4045 | size1 = (sec1->flags & SEC_LOAD) ? sec1->size : 0; |
4046 | size2 = (sec2->flags & SEC_LOAD) ? sec2->size : 0; | |
eecdbe52 JJ |
4047 | |
4048 | if (size1 < size2) | |
252b5132 | 4049 | return -1; |
eecdbe52 | 4050 | if (size1 > size2) |
252b5132 RH |
4051 | return 1; |
4052 | ||
4053 | return sec1->target_index - sec2->target_index; | |
4054 | } | |
4055 | ||
340b6d91 AC |
4056 | /* Ian Lance Taylor writes: |
4057 | ||
4058 | We shouldn't be using % with a negative signed number. That's just | |
4059 | not good. We have to make sure either that the number is not | |
4060 | negative, or that the number has an unsigned type. When the types | |
4061 | are all the same size they wind up as unsigned. When file_ptr is a | |
4062 | larger signed type, the arithmetic winds up as signed long long, | |
4063 | which is wrong. | |
4064 | ||
4065 | What we're trying to say here is something like ``increase OFF by | |
4066 | the least amount that will cause it to be equal to the VMA modulo | |
4067 | the page size.'' */ | |
4068 | /* In other words, something like: | |
4069 | ||
4070 | vma_offset = m->sections[0]->vma % bed->maxpagesize; | |
4071 | off_offset = off % bed->maxpagesize; | |
4072 | if (vma_offset < off_offset) | |
4073 | adjustment = vma_offset + bed->maxpagesize - off_offset; | |
4074 | else | |
4075 | adjustment = vma_offset - off_offset; | |
08a40648 | 4076 | |
340b6d91 AC |
4077 | which can can be collapsed into the expression below. */ |
4078 | ||
4079 | static file_ptr | |
4080 | vma_page_aligned_bias (bfd_vma vma, ufile_ptr off, bfd_vma maxpagesize) | |
4081 | { | |
4082 | return ((vma - off) % maxpagesize); | |
4083 | } | |
4084 | ||
6d33f217 L |
4085 | static void |
4086 | print_segment_map (const struct elf_segment_map *m) | |
4087 | { | |
4088 | unsigned int j; | |
4089 | const char *pt = get_segment_type (m->p_type); | |
4090 | char buf[32]; | |
4091 | ||
4092 | if (pt == NULL) | |
4093 | { | |
4094 | if (m->p_type >= PT_LOPROC && m->p_type <= PT_HIPROC) | |
4095 | sprintf (buf, "LOPROC+%7.7x", | |
4096 | (unsigned int) (m->p_type - PT_LOPROC)); | |
4097 | else if (m->p_type >= PT_LOOS && m->p_type <= PT_HIOS) | |
4098 | sprintf (buf, "LOOS+%7.7x", | |
4099 | (unsigned int) (m->p_type - PT_LOOS)); | |
4100 | else | |
4101 | snprintf (buf, sizeof (buf), "%8.8x", | |
4102 | (unsigned int) m->p_type); | |
4103 | pt = buf; | |
4104 | } | |
4105 | fprintf (stderr, "%s:", pt); | |
4106 | for (j = 0; j < m->count; j++) | |
4107 | fprintf (stderr, " %s", m->sections [j]->name); | |
4108 | putc ('\n',stderr); | |
4109 | } | |
4110 | ||
252b5132 RH |
4111 | /* Assign file positions to the sections based on the mapping from |
4112 | sections to segments. This function also sets up some fields in | |
f3520d2f | 4113 | the file header. */ |
252b5132 | 4114 | |
b34976b6 | 4115 | static bfd_boolean |
f3520d2f AM |
4116 | assign_file_positions_for_load_sections (bfd *abfd, |
4117 | struct bfd_link_info *link_info) | |
252b5132 RH |
4118 | { |
4119 | const struct elf_backend_data *bed = get_elf_backend_data (abfd); | |
252b5132 | 4120 | struct elf_segment_map *m; |
252b5132 | 4121 | Elf_Internal_Phdr *phdrs; |
252b5132 | 4122 | Elf_Internal_Phdr *p; |
02bf8d82 | 4123 | file_ptr off; |
3f570048 | 4124 | bfd_size_type maxpagesize; |
f3520d2f | 4125 | unsigned int alloc; |
0920dee7 | 4126 | unsigned int i, j; |
2b0bc088 | 4127 | bfd_vma header_pad = 0; |
252b5132 | 4128 | |
e36284ab | 4129 | if (link_info == NULL |
ceae84aa | 4130 | && !_bfd_elf_map_sections_to_segments (abfd, link_info)) |
8ded5a0f | 4131 | return FALSE; |
252b5132 | 4132 | |
8ded5a0f | 4133 | alloc = 0; |
252b5132 | 4134 | for (m = elf_tdata (abfd)->segment_map; m != NULL; m = m->next) |
2b0bc088 NC |
4135 | { |
4136 | ++alloc; | |
4137 | if (m->header_size) | |
4138 | header_pad = m->header_size; | |
4139 | } | |
252b5132 RH |
4140 | |
4141 | elf_elfheader (abfd)->e_phoff = bed->s->sizeof_ehdr; | |
4142 | elf_elfheader (abfd)->e_phentsize = bed->s->sizeof_phdr; | |
8ded5a0f | 4143 | elf_elfheader (abfd)->e_phnum = alloc; |
252b5132 | 4144 | |
62d7a5f6 | 4145 | if (elf_tdata (abfd)->program_header_size == (bfd_size_type) -1) |
8ded5a0f AM |
4146 | elf_tdata (abfd)->program_header_size = alloc * bed->s->sizeof_phdr; |
4147 | else | |
4148 | BFD_ASSERT (elf_tdata (abfd)->program_header_size | |
59e0647f | 4149 | >= alloc * bed->s->sizeof_phdr); |
252b5132 RH |
4150 | |
4151 | if (alloc == 0) | |
f3520d2f | 4152 | { |
8ded5a0f AM |
4153 | elf_tdata (abfd)->next_file_pos = bed->s->sizeof_ehdr; |
4154 | return TRUE; | |
f3520d2f | 4155 | } |
252b5132 | 4156 | |
57268894 HPN |
4157 | /* We're writing the size in elf_tdata (abfd)->program_header_size, |
4158 | see assign_file_positions_except_relocs, so make sure we have | |
4159 | that amount allocated, with trailing space cleared. | |
4160 | The variable alloc contains the computed need, while elf_tdata | |
4161 | (abfd)->program_header_size contains the size used for the | |
4162 | layout. | |
4163 | See ld/emultempl/elf-generic.em:gld${EMULATION_NAME}_map_segments | |
4164 | where the layout is forced to according to a larger size in the | |
4165 | last iterations for the testcase ld-elf/header. */ | |
4166 | BFD_ASSERT (elf_tdata (abfd)->program_header_size % bed->s->sizeof_phdr | |
4167 | == 0); | |
4168 | phdrs = bfd_zalloc2 (abfd, | |
4169 | (elf_tdata (abfd)->program_header_size | |
4170 | / bed->s->sizeof_phdr), | |
4171 | sizeof (Elf_Internal_Phdr)); | |
f3520d2f | 4172 | elf_tdata (abfd)->phdr = phdrs; |
252b5132 | 4173 | if (phdrs == NULL) |
b34976b6 | 4174 | return FALSE; |
252b5132 | 4175 | |
3f570048 AM |
4176 | maxpagesize = 1; |
4177 | if ((abfd->flags & D_PAGED) != 0) | |
4178 | maxpagesize = bed->maxpagesize; | |
4179 | ||
252b5132 RH |
4180 | off = bed->s->sizeof_ehdr; |
4181 | off += alloc * bed->s->sizeof_phdr; | |
2b0bc088 NC |
4182 | if (header_pad < (bfd_vma) off) |
4183 | header_pad = 0; | |
4184 | else | |
4185 | header_pad -= off; | |
4186 | off += header_pad; | |
252b5132 | 4187 | |
0920dee7 | 4188 | for (m = elf_tdata (abfd)->segment_map, p = phdrs, j = 0; |
252b5132 | 4189 | m != NULL; |
0920dee7 | 4190 | m = m->next, p++, j++) |
252b5132 | 4191 | { |
252b5132 | 4192 | asection **secpp; |
bf988460 AM |
4193 | bfd_vma off_adjust; |
4194 | bfd_boolean no_contents; | |
252b5132 RH |
4195 | |
4196 | /* If elf_segment_map is not from map_sections_to_segments, the | |
08a40648 | 4197 | sections may not be correctly ordered. NOTE: sorting should |
52e9b619 MS |
4198 | not be done to the PT_NOTE section of a corefile, which may |
4199 | contain several pseudo-sections artificially created by bfd. | |
4200 | Sorting these pseudo-sections breaks things badly. */ | |
47d9a591 AM |
4201 | if (m->count > 1 |
4202 | && !(elf_elfheader (abfd)->e_type == ET_CORE | |
52e9b619 | 4203 | && m->p_type == PT_NOTE)) |
252b5132 RH |
4204 | qsort (m->sections, (size_t) m->count, sizeof (asection *), |
4205 | elf_sort_sections); | |
4206 | ||
b301b248 AM |
4207 | /* An ELF segment (described by Elf_Internal_Phdr) may contain a |
4208 | number of sections with contents contributing to both p_filesz | |
4209 | and p_memsz, followed by a number of sections with no contents | |
4210 | that just contribute to p_memsz. In this loop, OFF tracks next | |
02bf8d82 | 4211 | available file offset for PT_LOAD and PT_NOTE segments. */ |
252b5132 | 4212 | p->p_type = m->p_type; |
28a7f3e7 | 4213 | p->p_flags = m->p_flags; |
252b5132 | 4214 | |
3f570048 AM |
4215 | if (m->count == 0) |
4216 | p->p_vaddr = 0; | |
4217 | else | |
3271a814 | 4218 | p->p_vaddr = m->sections[0]->vma - m->p_vaddr_offset; |
3f570048 AM |
4219 | |
4220 | if (m->p_paddr_valid) | |
4221 | p->p_paddr = m->p_paddr; | |
4222 | else if (m->count == 0) | |
4223 | p->p_paddr = 0; | |
4224 | else | |
08a40648 | 4225 | p->p_paddr = m->sections[0]->lma - m->p_vaddr_offset; |
3f570048 AM |
4226 | |
4227 | if (p->p_type == PT_LOAD | |
4228 | && (abfd->flags & D_PAGED) != 0) | |
4229 | { | |
4230 | /* p_align in demand paged PT_LOAD segments effectively stores | |
4231 | the maximum page size. When copying an executable with | |
4232 | objcopy, we set m->p_align from the input file. Use this | |
4233 | value for maxpagesize rather than bed->maxpagesize, which | |
4234 | may be different. Note that we use maxpagesize for PT_TLS | |
4235 | segment alignment later in this function, so we are relying | |
4236 | on at least one PT_LOAD segment appearing before a PT_TLS | |
4237 | segment. */ | |
4238 | if (m->p_align_valid) | |
4239 | maxpagesize = m->p_align; | |
4240 | ||
4241 | p->p_align = maxpagesize; | |
4242 | } | |
3271a814 NS |
4243 | else if (m->p_align_valid) |
4244 | p->p_align = m->p_align; | |
e970b90a DJ |
4245 | else if (m->count == 0) |
4246 | p->p_align = 1 << bed->s->log_file_align; | |
3f570048 AM |
4247 | else |
4248 | p->p_align = 0; | |
4249 | ||
bf988460 AM |
4250 | no_contents = FALSE; |
4251 | off_adjust = 0; | |
252b5132 | 4252 | if (p->p_type == PT_LOAD |
b301b248 | 4253 | && m->count > 0) |
252b5132 | 4254 | { |
b301b248 | 4255 | bfd_size_type align; |
a49e53ed | 4256 | unsigned int align_power = 0; |
b301b248 | 4257 | |
3271a814 NS |
4258 | if (m->p_align_valid) |
4259 | align = p->p_align; | |
4260 | else | |
252b5132 | 4261 | { |
3271a814 NS |
4262 | for (i = 0, secpp = m->sections; i < m->count; i++, secpp++) |
4263 | { | |
4264 | unsigned int secalign; | |
08a40648 | 4265 | |
3271a814 NS |
4266 | secalign = bfd_get_section_alignment (abfd, *secpp); |
4267 | if (secalign > align_power) | |
4268 | align_power = secalign; | |
4269 | } | |
4270 | align = (bfd_size_type) 1 << align_power; | |
4271 | if (align < maxpagesize) | |
4272 | align = maxpagesize; | |
b301b248 | 4273 | } |
252b5132 | 4274 | |
02bf8d82 AM |
4275 | for (i = 0; i < m->count; i++) |
4276 | if ((m->sections[i]->flags & (SEC_LOAD | SEC_HAS_CONTENTS)) == 0) | |
4277 | /* If we aren't making room for this section, then | |
4278 | it must be SHT_NOBITS regardless of what we've | |
4279 | set via struct bfd_elf_special_section. */ | |
4280 | elf_section_type (m->sections[i]) = SHT_NOBITS; | |
4281 | ||
bf988460 | 4282 | /* Find out whether this segment contains any loadable |
aea274d3 AM |
4283 | sections. */ |
4284 | no_contents = TRUE; | |
4285 | for (i = 0; i < m->count; i++) | |
4286 | if (elf_section_type (m->sections[i]) != SHT_NOBITS) | |
4287 | { | |
4288 | no_contents = FALSE; | |
4289 | break; | |
4290 | } | |
bf988460 AM |
4291 | |
4292 | off_adjust = vma_page_aligned_bias (m->sections[0]->vma, off, align); | |
4293 | off += off_adjust; | |
4294 | if (no_contents) | |
4295 | { | |
4296 | /* We shouldn't need to align the segment on disk since | |
4297 | the segment doesn't need file space, but the gABI | |
4298 | arguably requires the alignment and glibc ld.so | |
4299 | checks it. So to comply with the alignment | |
4300 | requirement but not waste file space, we adjust | |
4301 | p_offset for just this segment. (OFF_ADJUST is | |
4302 | subtracted from OFF later.) This may put p_offset | |
4303 | past the end of file, but that shouldn't matter. */ | |
4304 | } | |
4305 | else | |
4306 | off_adjust = 0; | |
252b5132 | 4307 | } |
b1a6d0b1 NC |
4308 | /* Make sure the .dynamic section is the first section in the |
4309 | PT_DYNAMIC segment. */ | |
4310 | else if (p->p_type == PT_DYNAMIC | |
4311 | && m->count > 1 | |
4312 | && strcmp (m->sections[0]->name, ".dynamic") != 0) | |
4313 | { | |
4314 | _bfd_error_handler | |
b301b248 AM |
4315 | (_("%B: The first section in the PT_DYNAMIC segment is not the .dynamic section"), |
4316 | abfd); | |
b1a6d0b1 NC |
4317 | bfd_set_error (bfd_error_bad_value); |
4318 | return FALSE; | |
4319 | } | |
3f001e84 JK |
4320 | /* Set the note section type to SHT_NOTE. */ |
4321 | else if (p->p_type == PT_NOTE) | |
4322 | for (i = 0; i < m->count; i++) | |
4323 | elf_section_type (m->sections[i]) = SHT_NOTE; | |
252b5132 | 4324 | |
252b5132 RH |
4325 | p->p_offset = 0; |
4326 | p->p_filesz = 0; | |
4327 | p->p_memsz = 0; | |
4328 | ||
4329 | if (m->includes_filehdr) | |
4330 | { | |
bf988460 | 4331 | if (!m->p_flags_valid) |
252b5132 | 4332 | p->p_flags |= PF_R; |
252b5132 RH |
4333 | p->p_filesz = bed->s->sizeof_ehdr; |
4334 | p->p_memsz = bed->s->sizeof_ehdr; | |
4335 | if (m->count > 0) | |
4336 | { | |
4337 | BFD_ASSERT (p->p_type == PT_LOAD); | |
4338 | ||
4339 | if (p->p_vaddr < (bfd_vma) off) | |
4340 | { | |
caf47ea6 | 4341 | (*_bfd_error_handler) |
b301b248 AM |
4342 | (_("%B: Not enough room for program headers, try linking with -N"), |
4343 | abfd); | |
252b5132 | 4344 | bfd_set_error (bfd_error_bad_value); |
b34976b6 | 4345 | return FALSE; |
252b5132 RH |
4346 | } |
4347 | ||
4348 | p->p_vaddr -= off; | |
bf988460 | 4349 | if (!m->p_paddr_valid) |
252b5132 RH |
4350 | p->p_paddr -= off; |
4351 | } | |
252b5132 RH |
4352 | } |
4353 | ||
4354 | if (m->includes_phdrs) | |
4355 | { | |
bf988460 | 4356 | if (!m->p_flags_valid) |
252b5132 RH |
4357 | p->p_flags |= PF_R; |
4358 | ||
f3520d2f | 4359 | if (!m->includes_filehdr) |
252b5132 RH |
4360 | { |
4361 | p->p_offset = bed->s->sizeof_ehdr; | |
4362 | ||
4363 | if (m->count > 0) | |
4364 | { | |
4365 | BFD_ASSERT (p->p_type == PT_LOAD); | |
4366 | p->p_vaddr -= off - p->p_offset; | |
bf988460 | 4367 | if (!m->p_paddr_valid) |
252b5132 RH |
4368 | p->p_paddr -= off - p->p_offset; |
4369 | } | |
252b5132 RH |
4370 | } |
4371 | ||
4372 | p->p_filesz += alloc * bed->s->sizeof_phdr; | |
4373 | p->p_memsz += alloc * bed->s->sizeof_phdr; | |
2b0bc088 NC |
4374 | if (m->count) |
4375 | { | |
4376 | p->p_filesz += header_pad; | |
4377 | p->p_memsz += header_pad; | |
4378 | } | |
252b5132 RH |
4379 | } |
4380 | ||
4381 | if (p->p_type == PT_LOAD | |
4382 | || (p->p_type == PT_NOTE && bfd_get_format (abfd) == bfd_core)) | |
4383 | { | |
bf988460 | 4384 | if (!m->includes_filehdr && !m->includes_phdrs) |
02bf8d82 | 4385 | p->p_offset = off; |
252b5132 RH |
4386 | else |
4387 | { | |
4388 | file_ptr adjust; | |
4389 | ||
4390 | adjust = off - (p->p_offset + p->p_filesz); | |
bf988460 AM |
4391 | if (!no_contents) |
4392 | p->p_filesz += adjust; | |
252b5132 RH |
4393 | p->p_memsz += adjust; |
4394 | } | |
4395 | } | |
4396 | ||
1ea63fd2 AM |
4397 | /* Set up p_filesz, p_memsz, p_align and p_flags from the section |
4398 | maps. Set filepos for sections in PT_LOAD segments, and in | |
4399 | core files, for sections in PT_NOTE segments. | |
4400 | assign_file_positions_for_non_load_sections will set filepos | |
4401 | for other sections and update p_filesz for other segments. */ | |
252b5132 RH |
4402 | for (i = 0, secpp = m->sections; i < m->count; i++, secpp++) |
4403 | { | |
4404 | asection *sec; | |
252b5132 | 4405 | bfd_size_type align; |
627b32bc | 4406 | Elf_Internal_Shdr *this_hdr; |
252b5132 RH |
4407 | |
4408 | sec = *secpp; | |
02bf8d82 | 4409 | this_hdr = &elf_section_data (sec)->this_hdr; |
3f570048 | 4410 | align = (bfd_size_type) 1 << bfd_get_section_alignment (abfd, sec); |
252b5132 | 4411 | |
88967714 AM |
4412 | if ((p->p_type == PT_LOAD |
4413 | || p->p_type == PT_TLS) | |
4414 | && (this_hdr->sh_type != SHT_NOBITS | |
4415 | || ((this_hdr->sh_flags & SHF_ALLOC) != 0 | |
4416 | && ((this_hdr->sh_flags & SHF_TLS) == 0 | |
4417 | || p->p_type == PT_TLS)))) | |
252b5132 | 4418 | { |
11701589 | 4419 | bfd_signed_vma adjust = sec->vma - (p->p_vaddr + p->p_memsz); |
252b5132 | 4420 | |
88967714 | 4421 | if (adjust < 0) |
252b5132 | 4422 | { |
88967714 | 4423 | (*_bfd_error_handler) |
11701589 | 4424 | (_("%B: section %A vma 0x%lx overlaps previous sections"), |
37c43c55 | 4425 | abfd, sec, (unsigned long) sec->vma); |
88967714 AM |
4426 | adjust = 0; |
4427 | } | |
4428 | p->p_memsz += adjust; | |
0e922b77 | 4429 | |
88967714 AM |
4430 | if (this_hdr->sh_type != SHT_NOBITS) |
4431 | { | |
4432 | off += adjust; | |
4433 | p->p_filesz += adjust; | |
252b5132 | 4434 | } |
252b5132 RH |
4435 | } |
4436 | ||
4437 | if (p->p_type == PT_NOTE && bfd_get_format (abfd) == bfd_core) | |
4438 | { | |
b301b248 AM |
4439 | /* The section at i == 0 is the one that actually contains |
4440 | everything. */ | |
4a938328 MS |
4441 | if (i == 0) |
4442 | { | |
627b32bc | 4443 | this_hdr->sh_offset = sec->filepos = off; |
6a3cd2b4 AM |
4444 | off += this_hdr->sh_size; |
4445 | p->p_filesz = this_hdr->sh_size; | |
b301b248 AM |
4446 | p->p_memsz = 0; |
4447 | p->p_align = 1; | |
252b5132 | 4448 | } |
4a938328 | 4449 | else |
252b5132 | 4450 | { |
b301b248 | 4451 | /* The rest are fake sections that shouldn't be written. */ |
252b5132 | 4452 | sec->filepos = 0; |
eea6121a | 4453 | sec->size = 0; |
b301b248 AM |
4454 | sec->flags = 0; |
4455 | continue; | |
252b5132 | 4456 | } |
252b5132 RH |
4457 | } |
4458 | else | |
4459 | { | |
b301b248 AM |
4460 | if (p->p_type == PT_LOAD) |
4461 | { | |
02bf8d82 AM |
4462 | this_hdr->sh_offset = sec->filepos = off; |
4463 | if (this_hdr->sh_type != SHT_NOBITS) | |
6a3cd2b4 | 4464 | off += this_hdr->sh_size; |
b301b248 | 4465 | } |
252b5132 | 4466 | |
02bf8d82 | 4467 | if (this_hdr->sh_type != SHT_NOBITS) |
b301b248 | 4468 | { |
6a3cd2b4 | 4469 | p->p_filesz += this_hdr->sh_size; |
02bf8d82 AM |
4470 | /* A load section without SHF_ALLOC is something like |
4471 | a note section in a PT_NOTE segment. These take | |
4472 | file space but are not loaded into memory. */ | |
4473 | if ((this_hdr->sh_flags & SHF_ALLOC) != 0) | |
6a3cd2b4 | 4474 | p->p_memsz += this_hdr->sh_size; |
b301b248 | 4475 | } |
6a3cd2b4 | 4476 | else if ((this_hdr->sh_flags & SHF_ALLOC) != 0) |
13ae64f3 | 4477 | { |
6a3cd2b4 AM |
4478 | if (p->p_type == PT_TLS) |
4479 | p->p_memsz += this_hdr->sh_size; | |
4480 | ||
4481 | /* .tbss is special. It doesn't contribute to p_memsz of | |
4482 | normal segments. */ | |
4483 | else if ((this_hdr->sh_flags & SHF_TLS) == 0) | |
4484 | p->p_memsz += this_hdr->sh_size; | |
13ae64f3 JJ |
4485 | } |
4486 | ||
b10a8ae0 L |
4487 | if (align > p->p_align |
4488 | && !m->p_align_valid | |
4489 | && (p->p_type != PT_LOAD | |
4490 | || (abfd->flags & D_PAGED) == 0)) | |
252b5132 RH |
4491 | p->p_align = align; |
4492 | } | |
4493 | ||
bf988460 | 4494 | if (!m->p_flags_valid) |
252b5132 RH |
4495 | { |
4496 | p->p_flags |= PF_R; | |
02bf8d82 | 4497 | if ((this_hdr->sh_flags & SHF_EXECINSTR) != 0) |
252b5132 | 4498 | p->p_flags |= PF_X; |
02bf8d82 | 4499 | if ((this_hdr->sh_flags & SHF_WRITE) != 0) |
252b5132 RH |
4500 | p->p_flags |= PF_W; |
4501 | } | |
4502 | } | |
bf988460 | 4503 | off -= off_adjust; |
0920dee7 | 4504 | |
7c928300 AM |
4505 | /* Check that all sections are in a PT_LOAD segment. |
4506 | Don't check funky gdb generated core files. */ | |
4507 | if (p->p_type == PT_LOAD && bfd_get_format (abfd) != bfd_core) | |
0920dee7 L |
4508 | for (i = 0, secpp = m->sections; i < m->count; i++, secpp++) |
4509 | { | |
4510 | Elf_Internal_Shdr *this_hdr; | |
4511 | asection *sec; | |
4512 | ||
4513 | sec = *secpp; | |
4514 | this_hdr = &(elf_section_data(sec)->this_hdr); | |
4515 | if (this_hdr->sh_size != 0 | |
4516 | && !ELF_IS_SECTION_IN_SEGMENT_FILE (this_hdr, p)) | |
4517 | { | |
4518 | (*_bfd_error_handler) | |
4519 | (_("%B: section `%A' can't be allocated in segment %d"), | |
4520 | abfd, sec, j); | |
6d33f217 | 4521 | print_segment_map (m); |
0920dee7 L |
4522 | bfd_set_error (bfd_error_bad_value); |
4523 | return FALSE; | |
4524 | } | |
4525 | } | |
252b5132 RH |
4526 | } |
4527 | ||
f3520d2f AM |
4528 | elf_tdata (abfd)->next_file_pos = off; |
4529 | return TRUE; | |
4530 | } | |
4531 | ||
4532 | /* Assign file positions for the other sections. */ | |
4533 | ||
4534 | static bfd_boolean | |
4535 | assign_file_positions_for_non_load_sections (bfd *abfd, | |
4536 | struct bfd_link_info *link_info) | |
4537 | { | |
4538 | const struct elf_backend_data *bed = get_elf_backend_data (abfd); | |
4539 | Elf_Internal_Shdr **i_shdrpp; | |
4540 | Elf_Internal_Shdr **hdrpp; | |
4541 | Elf_Internal_Phdr *phdrs; | |
4542 | Elf_Internal_Phdr *p; | |
4543 | struct elf_segment_map *m; | |
4544 | bfd_vma filehdr_vaddr, filehdr_paddr; | |
4545 | bfd_vma phdrs_vaddr, phdrs_paddr; | |
4546 | file_ptr off; | |
4547 | unsigned int num_sec; | |
4548 | unsigned int i; | |
4549 | unsigned int count; | |
4550 | ||
5c182d5f AM |
4551 | i_shdrpp = elf_elfsections (abfd); |
4552 | num_sec = elf_numsections (abfd); | |
f3520d2f | 4553 | off = elf_tdata (abfd)->next_file_pos; |
5c182d5f AM |
4554 | for (i = 1, hdrpp = i_shdrpp + 1; i < num_sec; i++, hdrpp++) |
4555 | { | |
4556 | struct elf_obj_tdata *tdata = elf_tdata (abfd); | |
4557 | Elf_Internal_Shdr *hdr; | |
4558 | ||
4559 | hdr = *hdrpp; | |
4560 | if (hdr->bfd_section != NULL | |
252e386e AM |
4561 | && (hdr->bfd_section->filepos != 0 |
4562 | || (hdr->sh_type == SHT_NOBITS | |
4563 | && hdr->contents == NULL))) | |
627b32bc | 4564 | BFD_ASSERT (hdr->sh_offset == hdr->bfd_section->filepos); |
5c182d5f AM |
4565 | else if ((hdr->sh_flags & SHF_ALLOC) != 0) |
4566 | { | |
49c13adb L |
4567 | if (hdr->sh_size != 0) |
4568 | ((*_bfd_error_handler) | |
4569 | (_("%B: warning: allocated section `%s' not in segment"), | |
3ba71138 L |
4570 | abfd, |
4571 | (hdr->bfd_section == NULL | |
4572 | ? "*unknown*" | |
4573 | : hdr->bfd_section->name))); | |
4574 | /* We don't need to page align empty sections. */ | |
4575 | if ((abfd->flags & D_PAGED) != 0 && hdr->sh_size != 0) | |
5c182d5f AM |
4576 | off += vma_page_aligned_bias (hdr->sh_addr, off, |
4577 | bed->maxpagesize); | |
4578 | else | |
4579 | off += vma_page_aligned_bias (hdr->sh_addr, off, | |
4580 | hdr->sh_addralign); | |
4581 | off = _bfd_elf_assign_file_position_for_section (hdr, off, | |
4582 | FALSE); | |
4583 | } | |
4584 | else if (((hdr->sh_type == SHT_REL || hdr->sh_type == SHT_RELA) | |
4585 | && hdr->bfd_section == NULL) | |
4586 | || hdr == i_shdrpp[tdata->symtab_section] | |
4587 | || hdr == i_shdrpp[tdata->symtab_shndx_section] | |
4588 | || hdr == i_shdrpp[tdata->strtab_section]) | |
4589 | hdr->sh_offset = -1; | |
4590 | else | |
4591 | off = _bfd_elf_assign_file_position_for_section (hdr, off, TRUE); | |
5c182d5f AM |
4592 | } |
4593 | ||
252b5132 RH |
4594 | /* Now that we have set the section file positions, we can set up |
4595 | the file positions for the non PT_LOAD segments. */ | |
f3520d2f AM |
4596 | count = 0; |
4597 | filehdr_vaddr = 0; | |
4598 | filehdr_paddr = 0; | |
4599 | phdrs_vaddr = bed->maxpagesize + bed->s->sizeof_ehdr; | |
4600 | phdrs_paddr = 0; | |
4601 | phdrs = elf_tdata (abfd)->phdr; | |
4602 | for (m = elf_tdata (abfd)->segment_map, p = phdrs; | |
4603 | m != NULL; | |
4604 | m = m->next, p++) | |
4605 | { | |
4606 | ++count; | |
4607 | if (p->p_type != PT_LOAD) | |
4608 | continue; | |
4609 | ||
4610 | if (m->includes_filehdr) | |
4611 | { | |
4612 | filehdr_vaddr = p->p_vaddr; | |
4613 | filehdr_paddr = p->p_paddr; | |
4614 | } | |
4615 | if (m->includes_phdrs) | |
4616 | { | |
4617 | phdrs_vaddr = p->p_vaddr; | |
4618 | phdrs_paddr = p->p_paddr; | |
4619 | if (m->includes_filehdr) | |
4620 | { | |
4621 | phdrs_vaddr += bed->s->sizeof_ehdr; | |
4622 | phdrs_paddr += bed->s->sizeof_ehdr; | |
4623 | } | |
4624 | } | |
4625 | } | |
4626 | ||
252b5132 RH |
4627 | for (m = elf_tdata (abfd)->segment_map, p = phdrs; |
4628 | m != NULL; | |
4629 | m = m->next, p++) | |
4630 | { | |
129af99f | 4631 | if (p->p_type == PT_GNU_RELRO) |
252b5132 | 4632 | { |
b84a33b5 AM |
4633 | const Elf_Internal_Phdr *lp; |
4634 | ||
129af99f | 4635 | BFD_ASSERT (!m->includes_filehdr && !m->includes_phdrs); |
1ea63fd2 | 4636 | |
129af99f | 4637 | if (link_info != NULL) |
8c37241b | 4638 | { |
129af99f AS |
4639 | /* During linking the range of the RELRO segment is passed |
4640 | in link_info. */ | |
8c37241b JJ |
4641 | for (lp = phdrs; lp < phdrs + count; ++lp) |
4642 | { | |
4643 | if (lp->p_type == PT_LOAD | |
8c37241b | 4644 | && lp->p_vaddr >= link_info->relro_start |
b84a33b5 AM |
4645 | && lp->p_vaddr < link_info->relro_end |
4646 | && lp->p_vaddr + lp->p_filesz >= link_info->relro_end) | |
8c37241b JJ |
4647 | break; |
4648 | } | |
8c37241b | 4649 | } |
129af99f AS |
4650 | else |
4651 | { | |
4652 | /* Otherwise we are copying an executable or shared | |
b84a33b5 | 4653 | library, but we need to use the same linker logic. */ |
129af99f AS |
4654 | for (lp = phdrs; lp < phdrs + count; ++lp) |
4655 | { | |
4656 | if (lp->p_type == PT_LOAD | |
4657 | && lp->p_paddr == p->p_paddr) | |
4658 | break; | |
4659 | } | |
b84a33b5 AM |
4660 | } |
4661 | ||
4662 | if (lp < phdrs + count) | |
4663 | { | |
4664 | p->p_vaddr = lp->p_vaddr; | |
4665 | p->p_paddr = lp->p_paddr; | |
4666 | p->p_offset = lp->p_offset; | |
4667 | if (link_info != NULL) | |
4668 | p->p_filesz = link_info->relro_end - lp->p_vaddr; | |
4669 | else if (m->p_size_valid) | |
4670 | p->p_filesz = m->p_size; | |
129af99f AS |
4671 | else |
4672 | abort (); | |
b84a33b5 AM |
4673 | p->p_memsz = p->p_filesz; |
4674 | p->p_align = 1; | |
4675 | p->p_flags = (lp->p_flags & ~PF_W); | |
129af99f | 4676 | } |
9433b9b1 | 4677 | else |
b84a33b5 AM |
4678 | { |
4679 | memset (p, 0, sizeof *p); | |
4680 | p->p_type = PT_NULL; | |
4681 | } | |
129af99f AS |
4682 | } |
4683 | else if (m->count != 0) | |
4684 | { | |
4685 | if (p->p_type != PT_LOAD | |
4686 | && (p->p_type != PT_NOTE | |
4687 | || bfd_get_format (abfd) != bfd_core)) | |
4688 | { | |
4689 | Elf_Internal_Shdr *hdr; | |
4690 | asection *sect; | |
4691 | ||
4692 | BFD_ASSERT (!m->includes_filehdr && !m->includes_phdrs); | |
4693 | ||
4694 | sect = m->sections[m->count - 1]; | |
4695 | hdr = &elf_section_data (sect)->this_hdr; | |
4696 | p->p_filesz = sect->filepos - m->sections[0]->filepos; | |
4697 | if (hdr->sh_type != SHT_NOBITS) | |
4698 | p->p_filesz += hdr->sh_size; | |
4699 | p->p_offset = m->sections[0]->filepos; | |
4700 | } | |
4701 | } | |
4702 | else if (m->includes_filehdr) | |
4703 | { | |
4704 | p->p_vaddr = filehdr_vaddr; | |
4705 | if (! m->p_paddr_valid) | |
4706 | p->p_paddr = filehdr_paddr; | |
4707 | } | |
4708 | else if (m->includes_phdrs) | |
4709 | { | |
4710 | p->p_vaddr = phdrs_vaddr; | |
4711 | if (! m->p_paddr_valid) | |
4712 | p->p_paddr = phdrs_paddr; | |
252b5132 RH |
4713 | } |
4714 | } | |
4715 | ||
252b5132 RH |
4716 | elf_tdata (abfd)->next_file_pos = off; |
4717 | ||
b34976b6 | 4718 | return TRUE; |
252b5132 RH |
4719 | } |
4720 | ||
252b5132 RH |
4721 | /* Work out the file positions of all the sections. This is called by |
4722 | _bfd_elf_compute_section_file_positions. All the section sizes and | |
4723 | VMAs must be known before this is called. | |
4724 | ||
e0638f70 AM |
4725 | Reloc sections come in two flavours: Those processed specially as |
4726 | "side-channel" data attached to a section to which they apply, and | |
4727 | those that bfd doesn't process as relocations. The latter sort are | |
4728 | stored in a normal bfd section by bfd_section_from_shdr. We don't | |
4729 | consider the former sort here, unless they form part of the loadable | |
4730 | image. Reloc sections not assigned here will be handled later by | |
4731 | assign_file_positions_for_relocs. | |
252b5132 RH |
4732 | |
4733 | We also don't set the positions of the .symtab and .strtab here. */ | |
4734 | ||
b34976b6 | 4735 | static bfd_boolean |
c84fca4d AO |
4736 | assign_file_positions_except_relocs (bfd *abfd, |
4737 | struct bfd_link_info *link_info) | |
252b5132 | 4738 | { |
5c182d5f AM |
4739 | struct elf_obj_tdata *tdata = elf_tdata (abfd); |
4740 | Elf_Internal_Ehdr *i_ehdrp = elf_elfheader (abfd); | |
252b5132 | 4741 | file_ptr off; |
9c5bfbb7 | 4742 | const struct elf_backend_data *bed = get_elf_backend_data (abfd); |
252b5132 RH |
4743 | |
4744 | if ((abfd->flags & (EXEC_P | DYNAMIC)) == 0 | |
4745 | && bfd_get_format (abfd) != bfd_core) | |
4746 | { | |
5c182d5f AM |
4747 | Elf_Internal_Shdr ** const i_shdrpp = elf_elfsections (abfd); |
4748 | unsigned int num_sec = elf_numsections (abfd); | |
252b5132 RH |
4749 | Elf_Internal_Shdr **hdrpp; |
4750 | unsigned int i; | |
4751 | ||
4752 | /* Start after the ELF header. */ | |
4753 | off = i_ehdrp->e_ehsize; | |
4754 | ||
4755 | /* We are not creating an executable, which means that we are | |
4756 | not creating a program header, and that the actual order of | |
4757 | the sections in the file is unimportant. */ | |
9ad5cbcf | 4758 | for (i = 1, hdrpp = i_shdrpp + 1; i < num_sec; i++, hdrpp++) |
252b5132 RH |
4759 | { |
4760 | Elf_Internal_Shdr *hdr; | |
4761 | ||
4762 | hdr = *hdrpp; | |
e0638f70 AM |
4763 | if (((hdr->sh_type == SHT_REL || hdr->sh_type == SHT_RELA) |
4764 | && hdr->bfd_section == NULL) | |
9ad5cbcf AM |
4765 | || i == tdata->symtab_section |
4766 | || i == tdata->symtab_shndx_section | |
252b5132 RH |
4767 | || i == tdata->strtab_section) |
4768 | { | |
4769 | hdr->sh_offset = -1; | |
252b5132 | 4770 | } |
9ad5cbcf | 4771 | else |
b34976b6 | 4772 | off = _bfd_elf_assign_file_position_for_section (hdr, off, TRUE); |
252b5132 RH |
4773 | } |
4774 | } | |
4775 | else | |
4776 | { | |
f3520d2f AM |
4777 | unsigned int alloc; |
4778 | ||
252b5132 | 4779 | /* Assign file positions for the loaded sections based on the |
08a40648 | 4780 | assignment of sections to segments. */ |
f3520d2f AM |
4781 | if (!assign_file_positions_for_load_sections (abfd, link_info)) |
4782 | return FALSE; | |
4783 | ||
4784 | /* And for non-load sections. */ | |
4785 | if (!assign_file_positions_for_non_load_sections (abfd, link_info)) | |
4786 | return FALSE; | |
4787 | ||
e36284ab AM |
4788 | if (bed->elf_backend_modify_program_headers != NULL) |
4789 | { | |
4790 | if (!(*bed->elf_backend_modify_program_headers) (abfd, link_info)) | |
4791 | return FALSE; | |
4792 | } | |
4793 | ||
f3520d2f AM |
4794 | /* Write out the program headers. */ |
4795 | alloc = tdata->program_header_size / bed->s->sizeof_phdr; | |
4796 | if (bfd_seek (abfd, (bfd_signed_vma) bed->s->sizeof_ehdr, SEEK_SET) != 0 | |
4797 | || bed->s->write_out_phdrs (abfd, tdata->phdr, alloc) != 0) | |
b34976b6 | 4798 | return FALSE; |
252b5132 | 4799 | |
5c182d5f | 4800 | off = tdata->next_file_pos; |
252b5132 RH |
4801 | } |
4802 | ||
4803 | /* Place the section headers. */ | |
45d6a902 | 4804 | off = align_file_position (off, 1 << bed->s->log_file_align); |
252b5132 RH |
4805 | i_ehdrp->e_shoff = off; |
4806 | off += i_ehdrp->e_shnum * i_ehdrp->e_shentsize; | |
4807 | ||
5c182d5f | 4808 | tdata->next_file_pos = off; |
252b5132 | 4809 | |
b34976b6 | 4810 | return TRUE; |
252b5132 RH |
4811 | } |
4812 | ||
b34976b6 | 4813 | static bfd_boolean |
217aa764 | 4814 | prep_headers (bfd *abfd) |
252b5132 RH |
4815 | { |
4816 | Elf_Internal_Ehdr *i_ehdrp; /* Elf file header, internal form */ | |
4817 | Elf_Internal_Phdr *i_phdrp = 0; /* Program header table, internal form */ | |
2b0f7ef9 | 4818 | struct elf_strtab_hash *shstrtab; |
9c5bfbb7 | 4819 | const struct elf_backend_data *bed = get_elf_backend_data (abfd); |
252b5132 RH |
4820 | |
4821 | i_ehdrp = elf_elfheader (abfd); | |
252b5132 | 4822 | |
2b0f7ef9 | 4823 | shstrtab = _bfd_elf_strtab_init (); |
252b5132 | 4824 | if (shstrtab == NULL) |
b34976b6 | 4825 | return FALSE; |
252b5132 RH |
4826 | |
4827 | elf_shstrtab (abfd) = shstrtab; | |
4828 | ||
4829 | i_ehdrp->e_ident[EI_MAG0] = ELFMAG0; | |
4830 | i_ehdrp->e_ident[EI_MAG1] = ELFMAG1; | |
4831 | i_ehdrp->e_ident[EI_MAG2] = ELFMAG2; | |
4832 | i_ehdrp->e_ident[EI_MAG3] = ELFMAG3; | |
4833 | ||
4834 | i_ehdrp->e_ident[EI_CLASS] = bed->s->elfclass; | |
4835 | i_ehdrp->e_ident[EI_DATA] = | |
4836 | bfd_big_endian (abfd) ? ELFDATA2MSB : ELFDATA2LSB; | |
4837 | i_ehdrp->e_ident[EI_VERSION] = bed->s->ev_current; | |
4838 | ||
252b5132 RH |
4839 | if ((abfd->flags & DYNAMIC) != 0) |
4840 | i_ehdrp->e_type = ET_DYN; | |
4841 | else if ((abfd->flags & EXEC_P) != 0) | |
4842 | i_ehdrp->e_type = ET_EXEC; | |
4843 | else if (bfd_get_format (abfd) == bfd_core) | |
4844 | i_ehdrp->e_type = ET_CORE; | |
4845 | else | |
4846 | i_ehdrp->e_type = ET_REL; | |
4847 | ||
4848 | switch (bfd_get_arch (abfd)) | |
4849 | { | |
4850 | case bfd_arch_unknown: | |
4851 | i_ehdrp->e_machine = EM_NONE; | |
4852 | break; | |
aa4f99bb AO |
4853 | |
4854 | /* There used to be a long list of cases here, each one setting | |
4855 | e_machine to the same EM_* macro #defined as ELF_MACHINE_CODE | |
4856 | in the corresponding bfd definition. To avoid duplication, | |
4857 | the switch was removed. Machines that need special handling | |
4858 | can generally do it in elf_backend_final_write_processing(), | |
4859 | unless they need the information earlier than the final write. | |
4860 | Such need can generally be supplied by replacing the tests for | |
4861 | e_machine with the conditions used to determine it. */ | |
252b5132 | 4862 | default: |
9c5bfbb7 AM |
4863 | i_ehdrp->e_machine = bed->elf_machine_code; |
4864 | } | |
aa4f99bb | 4865 | |
252b5132 RH |
4866 | i_ehdrp->e_version = bed->s->ev_current; |
4867 | i_ehdrp->e_ehsize = bed->s->sizeof_ehdr; | |
4868 | ||
c044fabd | 4869 | /* No program header, for now. */ |
252b5132 RH |
4870 | i_ehdrp->e_phoff = 0; |
4871 | i_ehdrp->e_phentsize = 0; | |
4872 | i_ehdrp->e_phnum = 0; | |
4873 | ||
c044fabd | 4874 | /* Each bfd section is section header entry. */ |
252b5132 RH |
4875 | i_ehdrp->e_entry = bfd_get_start_address (abfd); |
4876 | i_ehdrp->e_shentsize = bed->s->sizeof_shdr; | |
4877 | ||
c044fabd | 4878 | /* If we're building an executable, we'll need a program header table. */ |
252b5132 | 4879 | if (abfd->flags & EXEC_P) |
0e71e495 BE |
4880 | /* It all happens later. */ |
4881 | ; | |
252b5132 RH |
4882 | else |
4883 | { | |
4884 | i_ehdrp->e_phentsize = 0; | |
4885 | i_phdrp = 0; | |
4886 | i_ehdrp->e_phoff = 0; | |
4887 | } | |
4888 | ||
4889 | elf_tdata (abfd)->symtab_hdr.sh_name = | |
b34976b6 | 4890 | (unsigned int) _bfd_elf_strtab_add (shstrtab, ".symtab", FALSE); |
252b5132 | 4891 | elf_tdata (abfd)->strtab_hdr.sh_name = |
b34976b6 | 4892 | (unsigned int) _bfd_elf_strtab_add (shstrtab, ".strtab", FALSE); |
252b5132 | 4893 | elf_tdata (abfd)->shstrtab_hdr.sh_name = |
b34976b6 | 4894 | (unsigned int) _bfd_elf_strtab_add (shstrtab, ".shstrtab", FALSE); |
252b5132 RH |
4895 | if (elf_tdata (abfd)->symtab_hdr.sh_name == (unsigned int) -1 |
4896 | || elf_tdata (abfd)->symtab_hdr.sh_name == (unsigned int) -1 | |
4897 | || elf_tdata (abfd)->shstrtab_hdr.sh_name == (unsigned int) -1) | |
b34976b6 | 4898 | return FALSE; |
252b5132 | 4899 | |
b34976b6 | 4900 | return TRUE; |
252b5132 RH |
4901 | } |
4902 | ||
4903 | /* Assign file positions for all the reloc sections which are not part | |
4904 | of the loadable file image. */ | |
4905 | ||
4906 | void | |
217aa764 | 4907 | _bfd_elf_assign_file_positions_for_relocs (bfd *abfd) |
252b5132 RH |
4908 | { |
4909 | file_ptr off; | |
9ad5cbcf | 4910 | unsigned int i, num_sec; |
252b5132 RH |
4911 | Elf_Internal_Shdr **shdrpp; |
4912 | ||
4913 | off = elf_tdata (abfd)->next_file_pos; | |
4914 | ||
9ad5cbcf AM |
4915 | num_sec = elf_numsections (abfd); |
4916 | for (i = 1, shdrpp = elf_elfsections (abfd) + 1; i < num_sec; i++, shdrpp++) | |
252b5132 RH |
4917 | { |
4918 | Elf_Internal_Shdr *shdrp; | |
4919 | ||
4920 | shdrp = *shdrpp; | |
4921 | if ((shdrp->sh_type == SHT_REL || shdrp->sh_type == SHT_RELA) | |
4922 | && shdrp->sh_offset == -1) | |
b34976b6 | 4923 | off = _bfd_elf_assign_file_position_for_section (shdrp, off, TRUE); |
252b5132 RH |
4924 | } |
4925 | ||
4926 | elf_tdata (abfd)->next_file_pos = off; | |
4927 | } | |
4928 | ||
b34976b6 | 4929 | bfd_boolean |
217aa764 | 4930 | _bfd_elf_write_object_contents (bfd *abfd) |
252b5132 | 4931 | { |
9c5bfbb7 | 4932 | const struct elf_backend_data *bed = get_elf_backend_data (abfd); |
252b5132 RH |
4933 | Elf_Internal_Ehdr *i_ehdrp; |
4934 | Elf_Internal_Shdr **i_shdrp; | |
b34976b6 | 4935 | bfd_boolean failed; |
9ad5cbcf | 4936 | unsigned int count, num_sec; |
252b5132 RH |
4937 | |
4938 | if (! abfd->output_has_begun | |
217aa764 | 4939 | && ! _bfd_elf_compute_section_file_positions (abfd, NULL)) |
b34976b6 | 4940 | return FALSE; |
252b5132 RH |
4941 | |
4942 | i_shdrp = elf_elfsections (abfd); | |
4943 | i_ehdrp = elf_elfheader (abfd); | |
4944 | ||
b34976b6 | 4945 | failed = FALSE; |
252b5132 RH |
4946 | bfd_map_over_sections (abfd, bed->s->write_relocs, &failed); |
4947 | if (failed) | |
b34976b6 | 4948 | return FALSE; |
252b5132 RH |
4949 | |
4950 | _bfd_elf_assign_file_positions_for_relocs (abfd); | |
4951 | ||
c044fabd | 4952 | /* After writing the headers, we need to write the sections too... */ |
9ad5cbcf AM |
4953 | num_sec = elf_numsections (abfd); |
4954 | for (count = 1; count < num_sec; count++) | |
252b5132 RH |
4955 | { |
4956 | if (bed->elf_backend_section_processing) | |
4957 | (*bed->elf_backend_section_processing) (abfd, i_shdrp[count]); | |
4958 | if (i_shdrp[count]->contents) | |
4959 | { | |
dc810e39 AM |
4960 | bfd_size_type amt = i_shdrp[count]->sh_size; |
4961 | ||
252b5132 | 4962 | if (bfd_seek (abfd, i_shdrp[count]->sh_offset, SEEK_SET) != 0 |
dc810e39 | 4963 | || bfd_bwrite (i_shdrp[count]->contents, amt, abfd) != amt) |
b34976b6 | 4964 | return FALSE; |
252b5132 RH |
4965 | } |
4966 | } | |
4967 | ||
4968 | /* Write out the section header names. */ | |
26ae6d5e DJ |
4969 | if (elf_shstrtab (abfd) != NULL |
4970 | && (bfd_seek (abfd, elf_tdata (abfd)->shstrtab_hdr.sh_offset, SEEK_SET) != 0 | |
08a40648 | 4971 | || !_bfd_elf_strtab_emit (abfd, elf_shstrtab (abfd)))) |
b34976b6 | 4972 | return FALSE; |
252b5132 RH |
4973 | |
4974 | if (bed->elf_backend_final_write_processing) | |
4975 | (*bed->elf_backend_final_write_processing) (abfd, | |
4976 | elf_tdata (abfd)->linker); | |
4977 | ||
ff59fc36 RM |
4978 | if (!bed->s->write_shdrs_and_ehdr (abfd)) |
4979 | return FALSE; | |
4980 | ||
4981 | /* This is last since write_shdrs_and_ehdr can touch i_shdrp[0]. */ | |
bfb53a4f RM |
4982 | if (elf_tdata (abfd)->after_write_object_contents) |
4983 | return (*elf_tdata (abfd)->after_write_object_contents) (abfd); | |
ff59fc36 RM |
4984 | |
4985 | return TRUE; | |
252b5132 RH |
4986 | } |
4987 | ||
b34976b6 | 4988 | bfd_boolean |
217aa764 | 4989 | _bfd_elf_write_corefile_contents (bfd *abfd) |
252b5132 | 4990 | { |
c044fabd | 4991 | /* Hopefully this can be done just like an object file. */ |
252b5132 RH |
4992 | return _bfd_elf_write_object_contents (abfd); |
4993 | } | |
c044fabd KH |
4994 | |
4995 | /* Given a section, search the header to find them. */ | |
4996 | ||
cb33740c | 4997 | unsigned int |
198beae2 | 4998 | _bfd_elf_section_from_bfd_section (bfd *abfd, struct bfd_section *asect) |
252b5132 | 4999 | { |
9c5bfbb7 | 5000 | const struct elf_backend_data *bed; |
cb33740c | 5001 | unsigned int index; |
252b5132 | 5002 | |
9ad5cbcf AM |
5003 | if (elf_section_data (asect) != NULL |
5004 | && elf_section_data (asect)->this_idx != 0) | |
5005 | return elf_section_data (asect)->this_idx; | |
5006 | ||
5007 | if (bfd_is_abs_section (asect)) | |
af746e92 AM |
5008 | index = SHN_ABS; |
5009 | else if (bfd_is_com_section (asect)) | |
5010 | index = SHN_COMMON; | |
5011 | else if (bfd_is_und_section (asect)) | |
5012 | index = SHN_UNDEF; | |
5013 | else | |
cb33740c | 5014 | index = SHN_BAD; |
252b5132 | 5015 | |
af746e92 | 5016 | bed = get_elf_backend_data (abfd); |
252b5132 RH |
5017 | if (bed->elf_backend_section_from_bfd_section) |
5018 | { | |
af746e92 | 5019 | int retval = index; |
9ad5cbcf | 5020 | |
af746e92 AM |
5021 | if ((*bed->elf_backend_section_from_bfd_section) (abfd, asect, &retval)) |
5022 | return retval; | |
252b5132 RH |
5023 | } |
5024 | ||
cb33740c | 5025 | if (index == SHN_BAD) |
af746e92 | 5026 | bfd_set_error (bfd_error_nonrepresentable_section); |
252b5132 | 5027 | |
af746e92 | 5028 | return index; |
252b5132 RH |
5029 | } |
5030 | ||
5031 | /* Given a BFD symbol, return the index in the ELF symbol table, or -1 | |
5032 | on error. */ | |
5033 | ||
5034 | int | |
217aa764 | 5035 | _bfd_elf_symbol_from_bfd_symbol (bfd *abfd, asymbol **asym_ptr_ptr) |
252b5132 RH |
5036 | { |
5037 | asymbol *asym_ptr = *asym_ptr_ptr; | |
5038 | int idx; | |
5039 | flagword flags = asym_ptr->flags; | |
5040 | ||
5041 | /* When gas creates relocations against local labels, it creates its | |
5042 | own symbol for the section, but does put the symbol into the | |
5043 | symbol chain, so udata is 0. When the linker is generating | |
5044 | relocatable output, this section symbol may be for one of the | |
5045 | input sections rather than the output section. */ | |
5046 | if (asym_ptr->udata.i == 0 | |
5047 | && (flags & BSF_SECTION_SYM) | |
5048 | && asym_ptr->section) | |
5049 | { | |
5372391b | 5050 | asection *sec; |
252b5132 RH |
5051 | int indx; |
5052 | ||
5372391b AM |
5053 | sec = asym_ptr->section; |
5054 | if (sec->owner != abfd && sec->output_section != NULL) | |
5055 | sec = sec->output_section; | |
5056 | if (sec->owner == abfd | |
5057 | && (indx = sec->index) < elf_num_section_syms (abfd) | |
4e89ac30 | 5058 | && elf_section_syms (abfd)[indx] != NULL) |
252b5132 RH |
5059 | asym_ptr->udata.i = elf_section_syms (abfd)[indx]->udata.i; |
5060 | } | |
5061 | ||
5062 | idx = asym_ptr->udata.i; | |
5063 | ||
5064 | if (idx == 0) | |
5065 | { | |
5066 | /* This case can occur when using --strip-symbol on a symbol | |
08a40648 | 5067 | which is used in a relocation entry. */ |
252b5132 | 5068 | (*_bfd_error_handler) |
d003868e AM |
5069 | (_("%B: symbol `%s' required but not present"), |
5070 | abfd, bfd_asymbol_name (asym_ptr)); | |
252b5132 RH |
5071 | bfd_set_error (bfd_error_no_symbols); |
5072 | return -1; | |
5073 | } | |
5074 | ||
5075 | #if DEBUG & 4 | |
5076 | { | |
5077 | fprintf (stderr, | |
661a3fd4 | 5078 | "elf_symbol_from_bfd_symbol 0x%.8lx, name = %s, sym num = %d, flags = 0x%.8lx%s\n", |
252b5132 RH |
5079 | (long) asym_ptr, asym_ptr->name, idx, flags, |
5080 | elf_symbol_flags (flags)); | |
5081 | fflush (stderr); | |
5082 | } | |
5083 | #endif | |
5084 | ||
5085 | return idx; | |
5086 | } | |
5087 | ||
84d1d650 | 5088 | /* Rewrite program header information. */ |
252b5132 | 5089 | |
b34976b6 | 5090 | static bfd_boolean |
84d1d650 | 5091 | rewrite_elf_program_header (bfd *ibfd, bfd *obfd) |
252b5132 | 5092 | { |
b34976b6 AM |
5093 | Elf_Internal_Ehdr *iehdr; |
5094 | struct elf_segment_map *map; | |
5095 | struct elf_segment_map *map_first; | |
5096 | struct elf_segment_map **pointer_to_map; | |
5097 | Elf_Internal_Phdr *segment; | |
5098 | asection *section; | |
5099 | unsigned int i; | |
5100 | unsigned int num_segments; | |
5101 | bfd_boolean phdr_included = FALSE; | |
5c44b38e | 5102 | bfd_boolean p_paddr_valid; |
b34976b6 AM |
5103 | bfd_vma maxpagesize; |
5104 | struct elf_segment_map *phdr_adjust_seg = NULL; | |
5105 | unsigned int phdr_adjust_num = 0; | |
9c5bfbb7 | 5106 | const struct elf_backend_data *bed; |
bc67d8a6 | 5107 | |
caf47ea6 | 5108 | bed = get_elf_backend_data (ibfd); |
252b5132 RH |
5109 | iehdr = elf_elfheader (ibfd); |
5110 | ||
bc67d8a6 | 5111 | map_first = NULL; |
c044fabd | 5112 | pointer_to_map = &map_first; |
252b5132 RH |
5113 | |
5114 | num_segments = elf_elfheader (ibfd)->e_phnum; | |
bc67d8a6 NC |
5115 | maxpagesize = get_elf_backend_data (obfd)->maxpagesize; |
5116 | ||
5117 | /* Returns the end address of the segment + 1. */ | |
aecc8f8a AM |
5118 | #define SEGMENT_END(segment, start) \ |
5119 | (start + (segment->p_memsz > segment->p_filesz \ | |
5120 | ? segment->p_memsz : segment->p_filesz)) | |
bc67d8a6 | 5121 | |
eecdbe52 JJ |
5122 | #define SECTION_SIZE(section, segment) \ |
5123 | (((section->flags & (SEC_HAS_CONTENTS | SEC_THREAD_LOCAL)) \ | |
5124 | != SEC_THREAD_LOCAL || segment->p_type == PT_TLS) \ | |
eea6121a | 5125 | ? section->size : 0) |
eecdbe52 | 5126 | |
b34976b6 | 5127 | /* Returns TRUE if the given section is contained within |
bc67d8a6 | 5128 | the given segment. VMA addresses are compared. */ |
aecc8f8a AM |
5129 | #define IS_CONTAINED_BY_VMA(section, segment) \ |
5130 | (section->vma >= segment->p_vaddr \ | |
eecdbe52 | 5131 | && (section->vma + SECTION_SIZE (section, segment) \ |
aecc8f8a | 5132 | <= (SEGMENT_END (segment, segment->p_vaddr)))) |
c044fabd | 5133 | |
b34976b6 | 5134 | /* Returns TRUE if the given section is contained within |
bc67d8a6 | 5135 | the given segment. LMA addresses are compared. */ |
aecc8f8a AM |
5136 | #define IS_CONTAINED_BY_LMA(section, segment, base) \ |
5137 | (section->lma >= base \ | |
eecdbe52 | 5138 | && (section->lma + SECTION_SIZE (section, segment) \ |
aecc8f8a | 5139 | <= SEGMENT_END (segment, base))) |
252b5132 | 5140 | |
0efc80c8 L |
5141 | /* Handle PT_NOTE segment. */ |
5142 | #define IS_NOTE(p, s) \ | |
aecc8f8a | 5143 | (p->p_type == PT_NOTE \ |
0efc80c8 | 5144 | && elf_section_type (s) == SHT_NOTE \ |
aecc8f8a | 5145 | && (bfd_vma) s->filepos >= p->p_offset \ |
cb3ff1e5 | 5146 | && ((bfd_vma) s->filepos + s->size \ |
aecc8f8a | 5147 | <= p->p_offset + p->p_filesz)) |
252b5132 | 5148 | |
0efc80c8 L |
5149 | /* Special case: corefile "NOTE" section containing regs, prpsinfo |
5150 | etc. */ | |
5151 | #define IS_COREFILE_NOTE(p, s) \ | |
5152 | (IS_NOTE (p, s) \ | |
5153 | && bfd_get_format (ibfd) == bfd_core \ | |
5154 | && s->vma == 0 \ | |
5155 | && s->lma == 0) | |
5156 | ||
252b5132 RH |
5157 | /* The complicated case when p_vaddr is 0 is to handle the Solaris |
5158 | linker, which generates a PT_INTERP section with p_vaddr and | |
5159 | p_memsz set to 0. */ | |
aecc8f8a AM |
5160 | #define IS_SOLARIS_PT_INTERP(p, s) \ |
5161 | (p->p_vaddr == 0 \ | |
5162 | && p->p_paddr == 0 \ | |
5163 | && p->p_memsz == 0 \ | |
5164 | && p->p_filesz > 0 \ | |
5165 | && (s->flags & SEC_HAS_CONTENTS) != 0 \ | |
eea6121a | 5166 | && s->size > 0 \ |
aecc8f8a | 5167 | && (bfd_vma) s->filepos >= p->p_offset \ |
cb3ff1e5 | 5168 | && ((bfd_vma) s->filepos + s->size \ |
aecc8f8a | 5169 | <= p->p_offset + p->p_filesz)) |
5c440b1e | 5170 | |
bc67d8a6 NC |
5171 | /* Decide if the given section should be included in the given segment. |
5172 | A section will be included if: | |
f5ffc919 | 5173 | 1. It is within the address space of the segment -- we use the LMA |
08a40648 | 5174 | if that is set for the segment and the VMA otherwise, |
0efc80c8 L |
5175 | 2. It is an allocated section or a NOTE section in a PT_NOTE |
5176 | segment. | |
bc67d8a6 | 5177 | 3. There is an output section associated with it, |
eecdbe52 | 5178 | 4. The section has not already been allocated to a previous segment. |
2b05f1b7 | 5179 | 5. PT_GNU_STACK segments do not include any sections. |
03394ac9 | 5180 | 6. PT_TLS segment includes only SHF_TLS sections. |
6f79b219 JJ |
5181 | 7. SHF_TLS sections are only in PT_TLS or PT_LOAD segments. |
5182 | 8. PT_DYNAMIC should not contain empty sections at the beginning | |
08a40648 | 5183 | (with the possible exception of .dynamic). */ |
9f17e2a6 | 5184 | #define IS_SECTION_IN_INPUT_SEGMENT(section, segment, bed) \ |
2b05f1b7 L |
5185 | ((((segment->p_paddr \ |
5186 | ? IS_CONTAINED_BY_LMA (section, segment, segment->p_paddr) \ | |
5187 | : IS_CONTAINED_BY_VMA (section, segment)) \ | |
5188 | && (section->flags & SEC_ALLOC) != 0) \ | |
0efc80c8 | 5189 | || IS_NOTE (segment, section)) \ |
2b05f1b7 L |
5190 | && segment->p_type != PT_GNU_STACK \ |
5191 | && (segment->p_type != PT_TLS \ | |
5192 | || (section->flags & SEC_THREAD_LOCAL)) \ | |
5193 | && (segment->p_type == PT_LOAD \ | |
5194 | || segment->p_type == PT_TLS \ | |
5195 | || (section->flags & SEC_THREAD_LOCAL) == 0) \ | |
5196 | && (segment->p_type != PT_DYNAMIC \ | |
5197 | || SECTION_SIZE (section, segment) > 0 \ | |
5198 | || (segment->p_paddr \ | |
5199 | ? segment->p_paddr != section->lma \ | |
5200 | : segment->p_vaddr != section->vma) \ | |
5201 | || (strcmp (bfd_get_section_name (ibfd, section), ".dynamic") \ | |
5202 | == 0)) \ | |
0067a569 | 5203 | && !section->segment_mark) |
bc67d8a6 | 5204 | |
9f17e2a6 L |
5205 | /* If the output section of a section in the input segment is NULL, |
5206 | it is removed from the corresponding output segment. */ | |
5207 | #define INCLUDE_SECTION_IN_SEGMENT(section, segment, bed) \ | |
5208 | (IS_SECTION_IN_INPUT_SEGMENT (section, segment, bed) \ | |
5209 | && section->output_section != NULL) | |
5210 | ||
b34976b6 | 5211 | /* Returns TRUE iff seg1 starts after the end of seg2. */ |
b5f852ea NC |
5212 | #define SEGMENT_AFTER_SEGMENT(seg1, seg2, field) \ |
5213 | (seg1->field >= SEGMENT_END (seg2, seg2->field)) | |
5214 | ||
5215 | /* Returns TRUE iff seg1 and seg2 overlap. Segments overlap iff both | |
5216 | their VMA address ranges and their LMA address ranges overlap. | |
5217 | It is possible to have overlapping VMA ranges without overlapping LMA | |
5218 | ranges. RedBoot images for example can have both .data and .bss mapped | |
5219 | to the same VMA range, but with the .data section mapped to a different | |
5220 | LMA. */ | |
aecc8f8a | 5221 | #define SEGMENT_OVERLAPS(seg1, seg2) \ |
b5f852ea | 5222 | ( !(SEGMENT_AFTER_SEGMENT (seg1, seg2, p_vaddr) \ |
08a40648 | 5223 | || SEGMENT_AFTER_SEGMENT (seg2, seg1, p_vaddr)) \ |
b5f852ea | 5224 | && !(SEGMENT_AFTER_SEGMENT (seg1, seg2, p_paddr) \ |
08a40648 | 5225 | || SEGMENT_AFTER_SEGMENT (seg2, seg1, p_paddr))) |
bc67d8a6 NC |
5226 | |
5227 | /* Initialise the segment mark field. */ | |
5228 | for (section = ibfd->sections; section != NULL; section = section->next) | |
b34976b6 | 5229 | section->segment_mark = FALSE; |
bc67d8a6 | 5230 | |
5c44b38e AM |
5231 | /* The Solaris linker creates program headers in which all the |
5232 | p_paddr fields are zero. When we try to objcopy or strip such a | |
5233 | file, we get confused. Check for this case, and if we find it | |
5234 | don't set the p_paddr_valid fields. */ | |
5235 | p_paddr_valid = FALSE; | |
5236 | for (i = 0, segment = elf_tdata (ibfd)->phdr; | |
5237 | i < num_segments; | |
5238 | i++, segment++) | |
5239 | if (segment->p_paddr != 0) | |
5240 | { | |
5241 | p_paddr_valid = TRUE; | |
5242 | break; | |
5243 | } | |
5244 | ||
252b5132 | 5245 | /* Scan through the segments specified in the program header |
bc67d8a6 | 5246 | of the input BFD. For this first scan we look for overlaps |
9ad5cbcf | 5247 | in the loadable segments. These can be created by weird |
aecc8f8a | 5248 | parameters to objcopy. Also, fix some solaris weirdness. */ |
bc67d8a6 NC |
5249 | for (i = 0, segment = elf_tdata (ibfd)->phdr; |
5250 | i < num_segments; | |
c044fabd | 5251 | i++, segment++) |
252b5132 | 5252 | { |
252b5132 | 5253 | unsigned int j; |
c044fabd | 5254 | Elf_Internal_Phdr *segment2; |
252b5132 | 5255 | |
aecc8f8a AM |
5256 | if (segment->p_type == PT_INTERP) |
5257 | for (section = ibfd->sections; section; section = section->next) | |
5258 | if (IS_SOLARIS_PT_INTERP (segment, section)) | |
5259 | { | |
5260 | /* Mininal change so that the normal section to segment | |
4cc11e76 | 5261 | assignment code will work. */ |
aecc8f8a AM |
5262 | segment->p_vaddr = section->vma; |
5263 | break; | |
5264 | } | |
5265 | ||
bc67d8a6 | 5266 | if (segment->p_type != PT_LOAD) |
b10a8ae0 L |
5267 | { |
5268 | /* Remove PT_GNU_RELRO segment. */ | |
5269 | if (segment->p_type == PT_GNU_RELRO) | |
5270 | segment->p_type = PT_NULL; | |
5271 | continue; | |
5272 | } | |
c044fabd | 5273 | |
bc67d8a6 | 5274 | /* Determine if this segment overlaps any previous segments. */ |
0067a569 | 5275 | for (j = 0, segment2 = elf_tdata (ibfd)->phdr; j < i; j++, segment2++) |
bc67d8a6 NC |
5276 | { |
5277 | bfd_signed_vma extra_length; | |
c044fabd | 5278 | |
bc67d8a6 | 5279 | if (segment2->p_type != PT_LOAD |
0067a569 | 5280 | || !SEGMENT_OVERLAPS (segment, segment2)) |
bc67d8a6 | 5281 | continue; |
c044fabd | 5282 | |
bc67d8a6 NC |
5283 | /* Merge the two segments together. */ |
5284 | if (segment2->p_vaddr < segment->p_vaddr) | |
5285 | { | |
c044fabd | 5286 | /* Extend SEGMENT2 to include SEGMENT and then delete |
08a40648 | 5287 | SEGMENT. */ |
0067a569 AM |
5288 | extra_length = (SEGMENT_END (segment, segment->p_vaddr) |
5289 | - SEGMENT_END (segment2, segment2->p_vaddr)); | |
c044fabd | 5290 | |
bc67d8a6 NC |
5291 | if (extra_length > 0) |
5292 | { | |
0067a569 | 5293 | segment2->p_memsz += extra_length; |
bc67d8a6 NC |
5294 | segment2->p_filesz += extra_length; |
5295 | } | |
c044fabd | 5296 | |
bc67d8a6 | 5297 | segment->p_type = PT_NULL; |
c044fabd | 5298 | |
bc67d8a6 NC |
5299 | /* Since we have deleted P we must restart the outer loop. */ |
5300 | i = 0; | |
5301 | segment = elf_tdata (ibfd)->phdr; | |
5302 | break; | |
5303 | } | |
5304 | else | |
5305 | { | |
c044fabd | 5306 | /* Extend SEGMENT to include SEGMENT2 and then delete |
08a40648 | 5307 | SEGMENT2. */ |
0067a569 AM |
5308 | extra_length = (SEGMENT_END (segment2, segment2->p_vaddr) |
5309 | - SEGMENT_END (segment, segment->p_vaddr)); | |
c044fabd | 5310 | |
bc67d8a6 NC |
5311 | if (extra_length > 0) |
5312 | { | |
0067a569 | 5313 | segment->p_memsz += extra_length; |
bc67d8a6 NC |
5314 | segment->p_filesz += extra_length; |
5315 | } | |
c044fabd | 5316 | |
bc67d8a6 NC |
5317 | segment2->p_type = PT_NULL; |
5318 | } | |
5319 | } | |
5320 | } | |
c044fabd | 5321 | |
bc67d8a6 NC |
5322 | /* The second scan attempts to assign sections to segments. */ |
5323 | for (i = 0, segment = elf_tdata (ibfd)->phdr; | |
5324 | i < num_segments; | |
0067a569 | 5325 | i++, segment++) |
bc67d8a6 | 5326 | { |
0067a569 AM |
5327 | unsigned int section_count; |
5328 | asection **sections; | |
5329 | asection *output_section; | |
5330 | unsigned int isec; | |
5331 | bfd_vma matching_lma; | |
5332 | bfd_vma suggested_lma; | |
5333 | unsigned int j; | |
dc810e39 | 5334 | bfd_size_type amt; |
0067a569 AM |
5335 | asection *first_section; |
5336 | bfd_boolean first_matching_lma; | |
5337 | bfd_boolean first_suggested_lma; | |
bc67d8a6 NC |
5338 | |
5339 | if (segment->p_type == PT_NULL) | |
5340 | continue; | |
c044fabd | 5341 | |
9f17e2a6 | 5342 | first_section = NULL; |
bc67d8a6 | 5343 | /* Compute how many sections might be placed into this segment. */ |
b5f852ea NC |
5344 | for (section = ibfd->sections, section_count = 0; |
5345 | section != NULL; | |
5346 | section = section->next) | |
9f17e2a6 L |
5347 | { |
5348 | /* Find the first section in the input segment, which may be | |
5349 | removed from the corresponding output segment. */ | |
5350 | if (IS_SECTION_IN_INPUT_SEGMENT (section, segment, bed)) | |
5351 | { | |
5352 | if (first_section == NULL) | |
5353 | first_section = section; | |
5354 | if (section->output_section != NULL) | |
5355 | ++section_count; | |
5356 | } | |
5357 | } | |
811072d8 | 5358 | |
b5f852ea NC |
5359 | /* Allocate a segment map big enough to contain |
5360 | all of the sections we have selected. */ | |
dc810e39 AM |
5361 | amt = sizeof (struct elf_segment_map); |
5362 | amt += ((bfd_size_type) section_count - 1) * sizeof (asection *); | |
41f8ce69 | 5363 | map = bfd_zalloc (obfd, amt); |
bc67d8a6 | 5364 | if (map == NULL) |
b34976b6 | 5365 | return FALSE; |
252b5132 RH |
5366 | |
5367 | /* Initialise the fields of the segment map. Default to | |
5368 | using the physical address of the segment in the input BFD. */ | |
0067a569 AM |
5369 | map->next = NULL; |
5370 | map->p_type = segment->p_type; | |
5371 | map->p_flags = segment->p_flags; | |
bc67d8a6 | 5372 | map->p_flags_valid = 1; |
55d55ac7 | 5373 | |
9f17e2a6 L |
5374 | /* If the first section in the input segment is removed, there is |
5375 | no need to preserve segment physical address in the corresponding | |
5376 | output segment. */ | |
945c025a | 5377 | if (!first_section || first_section->output_section != NULL) |
9f17e2a6 L |
5378 | { |
5379 | map->p_paddr = segment->p_paddr; | |
5c44b38e | 5380 | map->p_paddr_valid = p_paddr_valid; |
9f17e2a6 | 5381 | } |
252b5132 RH |
5382 | |
5383 | /* Determine if this segment contains the ELF file header | |
5384 | and if it contains the program headers themselves. */ | |
bc67d8a6 NC |
5385 | map->includes_filehdr = (segment->p_offset == 0 |
5386 | && segment->p_filesz >= iehdr->e_ehsize); | |
bc67d8a6 | 5387 | map->includes_phdrs = 0; |
252b5132 | 5388 | |
0067a569 | 5389 | if (!phdr_included || segment->p_type != PT_LOAD) |
252b5132 | 5390 | { |
bc67d8a6 NC |
5391 | map->includes_phdrs = |
5392 | (segment->p_offset <= (bfd_vma) iehdr->e_phoff | |
5393 | && (segment->p_offset + segment->p_filesz | |
252b5132 RH |
5394 | >= ((bfd_vma) iehdr->e_phoff |
5395 | + iehdr->e_phnum * iehdr->e_phentsize))); | |
c044fabd | 5396 | |
bc67d8a6 | 5397 | if (segment->p_type == PT_LOAD && map->includes_phdrs) |
b34976b6 | 5398 | phdr_included = TRUE; |
252b5132 RH |
5399 | } |
5400 | ||
bc67d8a6 | 5401 | if (section_count == 0) |
252b5132 RH |
5402 | { |
5403 | /* Special segments, such as the PT_PHDR segment, may contain | |
5404 | no sections, but ordinary, loadable segments should contain | |
1ed89aa9 NC |
5405 | something. They are allowed by the ELF spec however, so only |
5406 | a warning is produced. */ | |
bc67d8a6 | 5407 | if (segment->p_type == PT_LOAD) |
0067a569 AM |
5408 | (*_bfd_error_handler) (_("%B: warning: Empty loadable segment" |
5409 | " detected, is this intentional ?\n"), | |
5410 | ibfd); | |
252b5132 | 5411 | |
bc67d8a6 | 5412 | map->count = 0; |
c044fabd KH |
5413 | *pointer_to_map = map; |
5414 | pointer_to_map = &map->next; | |
252b5132 RH |
5415 | |
5416 | continue; | |
5417 | } | |
5418 | ||
5419 | /* Now scan the sections in the input BFD again and attempt | |
5420 | to add their corresponding output sections to the segment map. | |
5421 | The problem here is how to handle an output section which has | |
5422 | been moved (ie had its LMA changed). There are four possibilities: | |
5423 | ||
5424 | 1. None of the sections have been moved. | |
5425 | In this case we can continue to use the segment LMA from the | |
5426 | input BFD. | |
5427 | ||
5428 | 2. All of the sections have been moved by the same amount. | |
5429 | In this case we can change the segment's LMA to match the LMA | |
5430 | of the first section. | |
5431 | ||
5432 | 3. Some of the sections have been moved, others have not. | |
5433 | In this case those sections which have not been moved can be | |
5434 | placed in the current segment which will have to have its size, | |
5435 | and possibly its LMA changed, and a new segment or segments will | |
5436 | have to be created to contain the other sections. | |
5437 | ||
b5f852ea | 5438 | 4. The sections have been moved, but not by the same amount. |
252b5132 RH |
5439 | In this case we can change the segment's LMA to match the LMA |
5440 | of the first section and we will have to create a new segment | |
5441 | or segments to contain the other sections. | |
5442 | ||
5443 | In order to save time, we allocate an array to hold the section | |
5444 | pointers that we are interested in. As these sections get assigned | |
5445 | to a segment, they are removed from this array. */ | |
5446 | ||
d0fb9a8d | 5447 | sections = bfd_malloc2 (section_count, sizeof (asection *)); |
252b5132 | 5448 | if (sections == NULL) |
b34976b6 | 5449 | return FALSE; |
252b5132 RH |
5450 | |
5451 | /* Step One: Scan for segment vs section LMA conflicts. | |
5452 | Also add the sections to the section array allocated above. | |
5453 | Also add the sections to the current segment. In the common | |
5454 | case, where the sections have not been moved, this means that | |
5455 | we have completely filled the segment, and there is nothing | |
5456 | more to do. */ | |
252b5132 | 5457 | isec = 0; |
72730e0c | 5458 | matching_lma = 0; |
252b5132 | 5459 | suggested_lma = 0; |
0067a569 AM |
5460 | first_matching_lma = TRUE; |
5461 | first_suggested_lma = TRUE; | |
252b5132 | 5462 | |
147d51c2 | 5463 | for (section = ibfd->sections; |
bc67d8a6 NC |
5464 | section != NULL; |
5465 | section = section->next) | |
147d51c2 L |
5466 | if (section == first_section) |
5467 | break; | |
5468 | ||
5469 | for (j = 0; section != NULL; section = section->next) | |
252b5132 | 5470 | { |
caf47ea6 | 5471 | if (INCLUDE_SECTION_IN_SEGMENT (section, segment, bed)) |
c0f7859b | 5472 | { |
bc67d8a6 NC |
5473 | output_section = section->output_section; |
5474 | ||
0067a569 | 5475 | sections[j++] = section; |
252b5132 RH |
5476 | |
5477 | /* The Solaris native linker always sets p_paddr to 0. | |
5478 | We try to catch that case here, and set it to the | |
5e8d7549 NC |
5479 | correct value. Note - some backends require that |
5480 | p_paddr be left as zero. */ | |
5c44b38e | 5481 | if (!p_paddr_valid |
4455705d | 5482 | && segment->p_vaddr != 0 |
0067a569 | 5483 | && !bed->want_p_paddr_set_to_zero |
252b5132 | 5484 | && isec == 0 |
bc67d8a6 | 5485 | && output_section->lma != 0 |
0067a569 AM |
5486 | && output_section->vma == (segment->p_vaddr |
5487 | + (map->includes_filehdr | |
5488 | ? iehdr->e_ehsize | |
5489 | : 0) | |
5490 | + (map->includes_phdrs | |
5491 | ? (iehdr->e_phnum | |
5492 | * iehdr->e_phentsize) | |
5493 | : 0))) | |
bc67d8a6 | 5494 | map->p_paddr = segment->p_vaddr; |
252b5132 RH |
5495 | |
5496 | /* Match up the physical address of the segment with the | |
5497 | LMA address of the output section. */ | |
bc67d8a6 | 5498 | if (IS_CONTAINED_BY_LMA (output_section, segment, map->p_paddr) |
5e8d7549 | 5499 | || IS_COREFILE_NOTE (segment, section) |
0067a569 AM |
5500 | || (bed->want_p_paddr_set_to_zero |
5501 | && IS_CONTAINED_BY_VMA (output_section, segment))) | |
252b5132 | 5502 | { |
0067a569 AM |
5503 | if (first_matching_lma || output_section->lma < matching_lma) |
5504 | { | |
5505 | matching_lma = output_section->lma; | |
5506 | first_matching_lma = FALSE; | |
5507 | } | |
252b5132 RH |
5508 | |
5509 | /* We assume that if the section fits within the segment | |
bc67d8a6 | 5510 | then it does not overlap any other section within that |
252b5132 | 5511 | segment. */ |
0067a569 AM |
5512 | map->sections[isec++] = output_section; |
5513 | } | |
5514 | else if (first_suggested_lma) | |
5515 | { | |
5516 | suggested_lma = output_section->lma; | |
5517 | first_suggested_lma = FALSE; | |
252b5132 | 5518 | } |
147d51c2 L |
5519 | |
5520 | if (j == section_count) | |
5521 | break; | |
252b5132 RH |
5522 | } |
5523 | } | |
5524 | ||
bc67d8a6 | 5525 | BFD_ASSERT (j == section_count); |
252b5132 RH |
5526 | |
5527 | /* Step Two: Adjust the physical address of the current segment, | |
5528 | if necessary. */ | |
bc67d8a6 | 5529 | if (isec == section_count) |
252b5132 RH |
5530 | { |
5531 | /* All of the sections fitted within the segment as currently | |
5532 | specified. This is the default case. Add the segment to | |
5533 | the list of built segments and carry on to process the next | |
5534 | program header in the input BFD. */ | |
bc67d8a6 | 5535 | map->count = section_count; |
c044fabd KH |
5536 | *pointer_to_map = map; |
5537 | pointer_to_map = &map->next; | |
08a40648 | 5538 | |
5c44b38e AM |
5539 | if (p_paddr_valid |
5540 | && !bed->want_p_paddr_set_to_zero | |
147d51c2 | 5541 | && matching_lma != map->p_paddr |
5c44b38e AM |
5542 | && !map->includes_filehdr |
5543 | && !map->includes_phdrs) | |
3271a814 NS |
5544 | /* There is some padding before the first section in the |
5545 | segment. So, we must account for that in the output | |
5546 | segment's vma. */ | |
5547 | map->p_vaddr_offset = matching_lma - map->p_paddr; | |
08a40648 | 5548 | |
252b5132 RH |
5549 | free (sections); |
5550 | continue; | |
5551 | } | |
252b5132 RH |
5552 | else |
5553 | { | |
0067a569 | 5554 | if (!first_matching_lma) |
72730e0c AM |
5555 | { |
5556 | /* At least one section fits inside the current segment. | |
5557 | Keep it, but modify its physical address to match the | |
5558 | LMA of the first section that fitted. */ | |
bc67d8a6 | 5559 | map->p_paddr = matching_lma; |
72730e0c AM |
5560 | } |
5561 | else | |
5562 | { | |
5563 | /* None of the sections fitted inside the current segment. | |
5564 | Change the current segment's physical address to match | |
5565 | the LMA of the first section. */ | |
bc67d8a6 | 5566 | map->p_paddr = suggested_lma; |
72730e0c AM |
5567 | } |
5568 | ||
bc67d8a6 NC |
5569 | /* Offset the segment physical address from the lma |
5570 | to allow for space taken up by elf headers. */ | |
5571 | if (map->includes_filehdr) | |
010c8431 AM |
5572 | { |
5573 | if (map->p_paddr >= iehdr->e_ehsize) | |
5574 | map->p_paddr -= iehdr->e_ehsize; | |
5575 | else | |
5576 | { | |
5577 | map->includes_filehdr = FALSE; | |
5578 | map->includes_phdrs = FALSE; | |
5579 | } | |
5580 | } | |
252b5132 | 5581 | |
bc67d8a6 NC |
5582 | if (map->includes_phdrs) |
5583 | { | |
010c8431 AM |
5584 | if (map->p_paddr >= iehdr->e_phnum * iehdr->e_phentsize) |
5585 | { | |
5586 | map->p_paddr -= iehdr->e_phnum * iehdr->e_phentsize; | |
5587 | ||
5588 | /* iehdr->e_phnum is just an estimate of the number | |
5589 | of program headers that we will need. Make a note | |
5590 | here of the number we used and the segment we chose | |
5591 | to hold these headers, so that we can adjust the | |
5592 | offset when we know the correct value. */ | |
5593 | phdr_adjust_num = iehdr->e_phnum; | |
5594 | phdr_adjust_seg = map; | |
5595 | } | |
5596 | else | |
5597 | map->includes_phdrs = FALSE; | |
bc67d8a6 | 5598 | } |
252b5132 RH |
5599 | } |
5600 | ||
5601 | /* Step Three: Loop over the sections again, this time assigning | |
caf47ea6 | 5602 | those that fit to the current segment and removing them from the |
252b5132 RH |
5603 | sections array; but making sure not to leave large gaps. Once all |
5604 | possible sections have been assigned to the current segment it is | |
5605 | added to the list of built segments and if sections still remain | |
5606 | to be assigned, a new segment is constructed before repeating | |
5607 | the loop. */ | |
5608 | isec = 0; | |
5609 | do | |
5610 | { | |
bc67d8a6 | 5611 | map->count = 0; |
252b5132 | 5612 | suggested_lma = 0; |
0067a569 | 5613 | first_suggested_lma = TRUE; |
252b5132 RH |
5614 | |
5615 | /* Fill the current segment with sections that fit. */ | |
bc67d8a6 | 5616 | for (j = 0; j < section_count; j++) |
252b5132 | 5617 | { |
bc67d8a6 | 5618 | section = sections[j]; |
252b5132 | 5619 | |
bc67d8a6 | 5620 | if (section == NULL) |
252b5132 RH |
5621 | continue; |
5622 | ||
bc67d8a6 | 5623 | output_section = section->output_section; |
252b5132 | 5624 | |
bc67d8a6 | 5625 | BFD_ASSERT (output_section != NULL); |
c044fabd | 5626 | |
bc67d8a6 NC |
5627 | if (IS_CONTAINED_BY_LMA (output_section, segment, map->p_paddr) |
5628 | || IS_COREFILE_NOTE (segment, section)) | |
252b5132 | 5629 | { |
bc67d8a6 | 5630 | if (map->count == 0) |
252b5132 RH |
5631 | { |
5632 | /* If the first section in a segment does not start at | |
bc67d8a6 NC |
5633 | the beginning of the segment, then something is |
5634 | wrong. */ | |
0067a569 AM |
5635 | if (output_section->lma |
5636 | != (map->p_paddr | |
5637 | + (map->includes_filehdr ? iehdr->e_ehsize : 0) | |
5638 | + (map->includes_phdrs | |
5639 | ? iehdr->e_phnum * iehdr->e_phentsize | |
5640 | : 0))) | |
252b5132 RH |
5641 | abort (); |
5642 | } | |
5643 | else | |
5644 | { | |
0067a569 | 5645 | asection *prev_sec; |
252b5132 | 5646 | |
bc67d8a6 | 5647 | prev_sec = map->sections[map->count - 1]; |
252b5132 RH |
5648 | |
5649 | /* If the gap between the end of the previous section | |
bc67d8a6 NC |
5650 | and the start of this section is more than |
5651 | maxpagesize then we need to start a new segment. */ | |
eea6121a | 5652 | if ((BFD_ALIGN (prev_sec->lma + prev_sec->size, |
079e9a2f | 5653 | maxpagesize) |
caf47ea6 | 5654 | < BFD_ALIGN (output_section->lma, maxpagesize)) |
0067a569 | 5655 | || (prev_sec->lma + prev_sec->size |
079e9a2f | 5656 | > output_section->lma)) |
252b5132 | 5657 | { |
0067a569 AM |
5658 | if (first_suggested_lma) |
5659 | { | |
5660 | suggested_lma = output_section->lma; | |
5661 | first_suggested_lma = FALSE; | |
5662 | } | |
252b5132 RH |
5663 | |
5664 | continue; | |
5665 | } | |
5666 | } | |
5667 | ||
bc67d8a6 | 5668 | map->sections[map->count++] = output_section; |
252b5132 RH |
5669 | ++isec; |
5670 | sections[j] = NULL; | |
b34976b6 | 5671 | section->segment_mark = TRUE; |
252b5132 | 5672 | } |
0067a569 AM |
5673 | else if (first_suggested_lma) |
5674 | { | |
5675 | suggested_lma = output_section->lma; | |
5676 | first_suggested_lma = FALSE; | |
5677 | } | |
252b5132 RH |
5678 | } |
5679 | ||
bc67d8a6 | 5680 | BFD_ASSERT (map->count > 0); |
252b5132 RH |
5681 | |
5682 | /* Add the current segment to the list of built segments. */ | |
c044fabd KH |
5683 | *pointer_to_map = map; |
5684 | pointer_to_map = &map->next; | |
252b5132 | 5685 | |
bc67d8a6 | 5686 | if (isec < section_count) |
252b5132 RH |
5687 | { |
5688 | /* We still have not allocated all of the sections to | |
5689 | segments. Create a new segment here, initialise it | |
5690 | and carry on looping. */ | |
dc810e39 AM |
5691 | amt = sizeof (struct elf_segment_map); |
5692 | amt += ((bfd_size_type) section_count - 1) * sizeof (asection *); | |
217aa764 | 5693 | map = bfd_alloc (obfd, amt); |
bc67d8a6 | 5694 | if (map == NULL) |
5ed6aba4 NC |
5695 | { |
5696 | free (sections); | |
5697 | return FALSE; | |
5698 | } | |
252b5132 RH |
5699 | |
5700 | /* Initialise the fields of the segment map. Set the physical | |
5701 | physical address to the LMA of the first section that has | |
5702 | not yet been assigned. */ | |
0067a569 AM |
5703 | map->next = NULL; |
5704 | map->p_type = segment->p_type; | |
5705 | map->p_flags = segment->p_flags; | |
5706 | map->p_flags_valid = 1; | |
5707 | map->p_paddr = suggested_lma; | |
5c44b38e | 5708 | map->p_paddr_valid = p_paddr_valid; |
bc67d8a6 | 5709 | map->includes_filehdr = 0; |
0067a569 | 5710 | map->includes_phdrs = 0; |
252b5132 RH |
5711 | } |
5712 | } | |
bc67d8a6 | 5713 | while (isec < section_count); |
252b5132 RH |
5714 | |
5715 | free (sections); | |
5716 | } | |
5717 | ||
bc67d8a6 NC |
5718 | elf_tdata (obfd)->segment_map = map_first; |
5719 | ||
5720 | /* If we had to estimate the number of program headers that were | |
9ad5cbcf | 5721 | going to be needed, then check our estimate now and adjust |
bc67d8a6 NC |
5722 | the offset if necessary. */ |
5723 | if (phdr_adjust_seg != NULL) | |
5724 | { | |
5725 | unsigned int count; | |
c044fabd | 5726 | |
bc67d8a6 | 5727 | for (count = 0, map = map_first; map != NULL; map = map->next) |
c044fabd | 5728 | count++; |
252b5132 | 5729 | |
bc67d8a6 NC |
5730 | if (count > phdr_adjust_num) |
5731 | phdr_adjust_seg->p_paddr | |
5732 | -= (count - phdr_adjust_num) * iehdr->e_phentsize; | |
5733 | } | |
c044fabd | 5734 | |
bc67d8a6 | 5735 | #undef SEGMENT_END |
eecdbe52 | 5736 | #undef SECTION_SIZE |
bc67d8a6 NC |
5737 | #undef IS_CONTAINED_BY_VMA |
5738 | #undef IS_CONTAINED_BY_LMA | |
0efc80c8 | 5739 | #undef IS_NOTE |
252b5132 | 5740 | #undef IS_COREFILE_NOTE |
bc67d8a6 | 5741 | #undef IS_SOLARIS_PT_INTERP |
9f17e2a6 | 5742 | #undef IS_SECTION_IN_INPUT_SEGMENT |
bc67d8a6 NC |
5743 | #undef INCLUDE_SECTION_IN_SEGMENT |
5744 | #undef SEGMENT_AFTER_SEGMENT | |
5745 | #undef SEGMENT_OVERLAPS | |
b34976b6 | 5746 | return TRUE; |
252b5132 RH |
5747 | } |
5748 | ||
84d1d650 L |
5749 | /* Copy ELF program header information. */ |
5750 | ||
5751 | static bfd_boolean | |
5752 | copy_elf_program_header (bfd *ibfd, bfd *obfd) | |
5753 | { | |
5754 | Elf_Internal_Ehdr *iehdr; | |
5755 | struct elf_segment_map *map; | |
5756 | struct elf_segment_map *map_first; | |
5757 | struct elf_segment_map **pointer_to_map; | |
5758 | Elf_Internal_Phdr *segment; | |
5759 | unsigned int i; | |
5760 | unsigned int num_segments; | |
5761 | bfd_boolean phdr_included = FALSE; | |
88967714 | 5762 | bfd_boolean p_paddr_valid; |
84d1d650 L |
5763 | |
5764 | iehdr = elf_elfheader (ibfd); | |
5765 | ||
5766 | map_first = NULL; | |
5767 | pointer_to_map = &map_first; | |
5768 | ||
88967714 AM |
5769 | /* If all the segment p_paddr fields are zero, don't set |
5770 | map->p_paddr_valid. */ | |
5771 | p_paddr_valid = FALSE; | |
84d1d650 | 5772 | num_segments = elf_elfheader (ibfd)->e_phnum; |
88967714 AM |
5773 | for (i = 0, segment = elf_tdata (ibfd)->phdr; |
5774 | i < num_segments; | |
5775 | i++, segment++) | |
5776 | if (segment->p_paddr != 0) | |
5777 | { | |
5778 | p_paddr_valid = TRUE; | |
5779 | break; | |
5780 | } | |
5781 | ||
84d1d650 L |
5782 | for (i = 0, segment = elf_tdata (ibfd)->phdr; |
5783 | i < num_segments; | |
5784 | i++, segment++) | |
5785 | { | |
5786 | asection *section; | |
5787 | unsigned int section_count; | |
5788 | bfd_size_type amt; | |
5789 | Elf_Internal_Shdr *this_hdr; | |
53020534 | 5790 | asection *first_section = NULL; |
c981028a | 5791 | asection *lowest_section = NULL; |
84d1d650 | 5792 | |
84d1d650 L |
5793 | /* Compute how many sections are in this segment. */ |
5794 | for (section = ibfd->sections, section_count = 0; | |
5795 | section != NULL; | |
5796 | section = section->next) | |
5797 | { | |
5798 | this_hdr = &(elf_section_data(section)->this_hdr); | |
5799 | if (ELF_IS_SECTION_IN_SEGMENT_FILE (this_hdr, segment)) | |
3271a814 | 5800 | { |
53020534 | 5801 | if (!first_section) |
c981028a DJ |
5802 | first_section = lowest_section = section; |
5803 | if (section->lma < lowest_section->lma) | |
5804 | lowest_section = section; | |
3271a814 NS |
5805 | section_count++; |
5806 | } | |
84d1d650 L |
5807 | } |
5808 | ||
5809 | /* Allocate a segment map big enough to contain | |
5810 | all of the sections we have selected. */ | |
5811 | amt = sizeof (struct elf_segment_map); | |
5812 | if (section_count != 0) | |
5813 | amt += ((bfd_size_type) section_count - 1) * sizeof (asection *); | |
41f8ce69 | 5814 | map = bfd_zalloc (obfd, amt); |
84d1d650 L |
5815 | if (map == NULL) |
5816 | return FALSE; | |
5817 | ||
5818 | /* Initialize the fields of the output segment map with the | |
5819 | input segment. */ | |
5820 | map->next = NULL; | |
5821 | map->p_type = segment->p_type; | |
5822 | map->p_flags = segment->p_flags; | |
5823 | map->p_flags_valid = 1; | |
5824 | map->p_paddr = segment->p_paddr; | |
88967714 | 5825 | map->p_paddr_valid = p_paddr_valid; |
3f570048 AM |
5826 | map->p_align = segment->p_align; |
5827 | map->p_align_valid = 1; | |
3271a814 | 5828 | map->p_vaddr_offset = 0; |
84d1d650 | 5829 | |
9433b9b1 | 5830 | if (map->p_type == PT_GNU_RELRO) |
b10a8ae0 L |
5831 | { |
5832 | /* The PT_GNU_RELRO segment may contain the first a few | |
5833 | bytes in the .got.plt section even if the whole .got.plt | |
5834 | section isn't in the PT_GNU_RELRO segment. We won't | |
5835 | change the size of the PT_GNU_RELRO segment. */ | |
9433b9b1 | 5836 | map->p_size = segment->p_memsz; |
b10a8ae0 L |
5837 | map->p_size_valid = 1; |
5838 | } | |
5839 | ||
84d1d650 L |
5840 | /* Determine if this segment contains the ELF file header |
5841 | and if it contains the program headers themselves. */ | |
5842 | map->includes_filehdr = (segment->p_offset == 0 | |
5843 | && segment->p_filesz >= iehdr->e_ehsize); | |
5844 | ||
5845 | map->includes_phdrs = 0; | |
5846 | if (! phdr_included || segment->p_type != PT_LOAD) | |
5847 | { | |
5848 | map->includes_phdrs = | |
5849 | (segment->p_offset <= (bfd_vma) iehdr->e_phoff | |
5850 | && (segment->p_offset + segment->p_filesz | |
5851 | >= ((bfd_vma) iehdr->e_phoff | |
5852 | + iehdr->e_phnum * iehdr->e_phentsize))); | |
5853 | ||
5854 | if (segment->p_type == PT_LOAD && map->includes_phdrs) | |
5855 | phdr_included = TRUE; | |
5856 | } | |
5857 | ||
2b0bc088 NC |
5858 | if (map->includes_filehdr && first_section) |
5859 | /* We need to keep the space used by the headers fixed. */ | |
5860 | map->header_size = first_section->vma - segment->p_vaddr; | |
5861 | ||
88967714 AM |
5862 | if (!map->includes_phdrs |
5863 | && !map->includes_filehdr | |
5864 | && map->p_paddr_valid) | |
3271a814 | 5865 | /* There is some other padding before the first section. */ |
c981028a | 5866 | map->p_vaddr_offset = ((lowest_section ? lowest_section->lma : 0) |
53020534 | 5867 | - segment->p_paddr); |
08a40648 | 5868 | |
84d1d650 L |
5869 | if (section_count != 0) |
5870 | { | |
5871 | unsigned int isec = 0; | |
5872 | ||
53020534 | 5873 | for (section = first_section; |
84d1d650 L |
5874 | section != NULL; |
5875 | section = section->next) | |
5876 | { | |
5877 | this_hdr = &(elf_section_data(section)->this_hdr); | |
5878 | if (ELF_IS_SECTION_IN_SEGMENT_FILE (this_hdr, segment)) | |
53020534 L |
5879 | { |
5880 | map->sections[isec++] = section->output_section; | |
5881 | if (isec == section_count) | |
5882 | break; | |
5883 | } | |
84d1d650 L |
5884 | } |
5885 | } | |
5886 | ||
5887 | map->count = section_count; | |
5888 | *pointer_to_map = map; | |
5889 | pointer_to_map = &map->next; | |
5890 | } | |
5891 | ||
5892 | elf_tdata (obfd)->segment_map = map_first; | |
5893 | return TRUE; | |
5894 | } | |
5895 | ||
5896 | /* Copy private BFD data. This copies or rewrites ELF program header | |
5897 | information. */ | |
5898 | ||
5899 | static bfd_boolean | |
5900 | copy_private_bfd_data (bfd *ibfd, bfd *obfd) | |
5901 | { | |
84d1d650 L |
5902 | if (bfd_get_flavour (ibfd) != bfd_target_elf_flavour |
5903 | || bfd_get_flavour (obfd) != bfd_target_elf_flavour) | |
5904 | return TRUE; | |
5905 | ||
5906 | if (elf_tdata (ibfd)->phdr == NULL) | |
5907 | return TRUE; | |
5908 | ||
5909 | if (ibfd->xvec == obfd->xvec) | |
5910 | { | |
cb3ff1e5 NC |
5911 | /* Check to see if any sections in the input BFD |
5912 | covered by ELF program header have changed. */ | |
d55ce4e2 | 5913 | Elf_Internal_Phdr *segment; |
84d1d650 L |
5914 | asection *section, *osec; |
5915 | unsigned int i, num_segments; | |
5916 | Elf_Internal_Shdr *this_hdr; | |
147d51c2 L |
5917 | const struct elf_backend_data *bed; |
5918 | ||
5919 | bed = get_elf_backend_data (ibfd); | |
5920 | ||
5921 | /* Regenerate the segment map if p_paddr is set to 0. */ | |
5922 | if (bed->want_p_paddr_set_to_zero) | |
5923 | goto rewrite; | |
84d1d650 L |
5924 | |
5925 | /* Initialize the segment mark field. */ | |
5926 | for (section = obfd->sections; section != NULL; | |
5927 | section = section->next) | |
5928 | section->segment_mark = FALSE; | |
5929 | ||
5930 | num_segments = elf_elfheader (ibfd)->e_phnum; | |
5931 | for (i = 0, segment = elf_tdata (ibfd)->phdr; | |
5932 | i < num_segments; | |
5933 | i++, segment++) | |
5934 | { | |
5f6999aa NC |
5935 | /* PR binutils/3535. The Solaris linker always sets the p_paddr |
5936 | and p_memsz fields of special segments (DYNAMIC, INTERP) to 0 | |
5937 | which severly confuses things, so always regenerate the segment | |
5938 | map in this case. */ | |
5939 | if (segment->p_paddr == 0 | |
5940 | && segment->p_memsz == 0 | |
5941 | && (segment->p_type == PT_INTERP || segment->p_type == PT_DYNAMIC)) | |
cb3ff1e5 | 5942 | goto rewrite; |
5f6999aa | 5943 | |
84d1d650 L |
5944 | for (section = ibfd->sections; |
5945 | section != NULL; section = section->next) | |
5946 | { | |
5947 | /* We mark the output section so that we know it comes | |
5948 | from the input BFD. */ | |
5949 | osec = section->output_section; | |
5950 | if (osec) | |
5951 | osec->segment_mark = TRUE; | |
5952 | ||
5953 | /* Check if this section is covered by the segment. */ | |
5954 | this_hdr = &(elf_section_data(section)->this_hdr); | |
5955 | if (ELF_IS_SECTION_IN_SEGMENT_FILE (this_hdr, segment)) | |
5956 | { | |
5957 | /* FIXME: Check if its output section is changed or | |
5958 | removed. What else do we need to check? */ | |
5959 | if (osec == NULL | |
5960 | || section->flags != osec->flags | |
5961 | || section->lma != osec->lma | |
5962 | || section->vma != osec->vma | |
5963 | || section->size != osec->size | |
5964 | || section->rawsize != osec->rawsize | |
5965 | || section->alignment_power != osec->alignment_power) | |
5966 | goto rewrite; | |
5967 | } | |
5968 | } | |
5969 | } | |
5970 | ||
cb3ff1e5 | 5971 | /* Check to see if any output section do not come from the |
84d1d650 L |
5972 | input BFD. */ |
5973 | for (section = obfd->sections; section != NULL; | |
5974 | section = section->next) | |
5975 | { | |
5976 | if (section->segment_mark == FALSE) | |
5977 | goto rewrite; | |
5978 | else | |
5979 | section->segment_mark = FALSE; | |
5980 | } | |
5981 | ||
5982 | return copy_elf_program_header (ibfd, obfd); | |
5983 | } | |
5984 | ||
5985 | rewrite: | |
5986 | return rewrite_elf_program_header (ibfd, obfd); | |
5987 | } | |
5988 | ||
ccd2ec6a L |
5989 | /* Initialize private output section information from input section. */ |
5990 | ||
5991 | bfd_boolean | |
5992 | _bfd_elf_init_private_section_data (bfd *ibfd, | |
5993 | asection *isec, | |
5994 | bfd *obfd, | |
5995 | asection *osec, | |
5996 | struct bfd_link_info *link_info) | |
5997 | ||
5998 | { | |
5999 | Elf_Internal_Shdr *ihdr, *ohdr; | |
6000 | bfd_boolean need_group = link_info == NULL || link_info->relocatable; | |
6001 | ||
6002 | if (ibfd->xvec->flavour != bfd_target_elf_flavour | |
6003 | || obfd->xvec->flavour != bfd_target_elf_flavour) | |
6004 | return TRUE; | |
6005 | ||
e843e0f8 | 6006 | /* Don't copy the output ELF section type from input if the |
d3fd4074 | 6007 | output BFD section flags have been set to something different. |
e843e0f8 L |
6008 | elf_fake_sections will set ELF section type based on BFD |
6009 | section flags. */ | |
42bb2e33 AM |
6010 | if (elf_section_type (osec) == SHT_NULL |
6011 | && (osec->flags == isec->flags || !osec->flags)) | |
6012 | elf_section_type (osec) = elf_section_type (isec); | |
d270463e L |
6013 | |
6014 | /* FIXME: Is this correct for all OS/PROC specific flags? */ | |
6015 | elf_section_flags (osec) |= (elf_section_flags (isec) | |
6016 | & (SHF_MASKOS | SHF_MASKPROC)); | |
ccd2ec6a L |
6017 | |
6018 | /* Set things up for objcopy and relocatable link. The output | |
6019 | SHT_GROUP section will have its elf_next_in_group pointing back | |
6020 | to the input group members. Ignore linker created group section. | |
6021 | See elfNN_ia64_object_p in elfxx-ia64.c. */ | |
ccd2ec6a L |
6022 | if (need_group) |
6023 | { | |
6024 | if (elf_sec_group (isec) == NULL | |
6025 | || (elf_sec_group (isec)->flags & SEC_LINKER_CREATED) == 0) | |
6026 | { | |
6027 | if (elf_section_flags (isec) & SHF_GROUP) | |
6028 | elf_section_flags (osec) |= SHF_GROUP; | |
6029 | elf_next_in_group (osec) = elf_next_in_group (isec); | |
9659de1c | 6030 | elf_section_data (osec)->group = elf_section_data (isec)->group; |
ccd2ec6a L |
6031 | } |
6032 | } | |
6033 | ||
6034 | ihdr = &elf_section_data (isec)->this_hdr; | |
6035 | ||
6036 | /* We need to handle elf_linked_to_section for SHF_LINK_ORDER. We | |
6037 | don't use the output section of the linked-to section since it | |
6038 | may be NULL at this point. */ | |
6039 | if ((ihdr->sh_flags & SHF_LINK_ORDER) != 0) | |
6040 | { | |
6041 | ohdr = &elf_section_data (osec)->this_hdr; | |
6042 | ohdr->sh_flags |= SHF_LINK_ORDER; | |
6043 | elf_linked_to_section (osec) = elf_linked_to_section (isec); | |
6044 | } | |
6045 | ||
6046 | osec->use_rela_p = isec->use_rela_p; | |
6047 | ||
6048 | return TRUE; | |
6049 | } | |
6050 | ||
252b5132 RH |
6051 | /* Copy private section information. This copies over the entsize |
6052 | field, and sometimes the info field. */ | |
6053 | ||
b34976b6 | 6054 | bfd_boolean |
217aa764 AM |
6055 | _bfd_elf_copy_private_section_data (bfd *ibfd, |
6056 | asection *isec, | |
6057 | bfd *obfd, | |
6058 | asection *osec) | |
252b5132 RH |
6059 | { |
6060 | Elf_Internal_Shdr *ihdr, *ohdr; | |
6061 | ||
6062 | if (ibfd->xvec->flavour != bfd_target_elf_flavour | |
6063 | || obfd->xvec->flavour != bfd_target_elf_flavour) | |
b34976b6 | 6064 | return TRUE; |
252b5132 | 6065 | |
252b5132 RH |
6066 | ihdr = &elf_section_data (isec)->this_hdr; |
6067 | ohdr = &elf_section_data (osec)->this_hdr; | |
6068 | ||
6069 | ohdr->sh_entsize = ihdr->sh_entsize; | |
6070 | ||
6071 | if (ihdr->sh_type == SHT_SYMTAB | |
6072 | || ihdr->sh_type == SHT_DYNSYM | |
6073 | || ihdr->sh_type == SHT_GNU_verneed | |
6074 | || ihdr->sh_type == SHT_GNU_verdef) | |
6075 | ohdr->sh_info = ihdr->sh_info; | |
6076 | ||
ccd2ec6a L |
6077 | return _bfd_elf_init_private_section_data (ibfd, isec, obfd, osec, |
6078 | NULL); | |
252b5132 RH |
6079 | } |
6080 | ||
80fccad2 BW |
6081 | /* Copy private header information. */ |
6082 | ||
6083 | bfd_boolean | |
6084 | _bfd_elf_copy_private_header_data (bfd *ibfd, bfd *obfd) | |
6085 | { | |
30288845 AM |
6086 | asection *isec; |
6087 | ||
80fccad2 BW |
6088 | if (bfd_get_flavour (ibfd) != bfd_target_elf_flavour |
6089 | || bfd_get_flavour (obfd) != bfd_target_elf_flavour) | |
6090 | return TRUE; | |
6091 | ||
6092 | /* Copy over private BFD data if it has not already been copied. | |
6093 | This must be done here, rather than in the copy_private_bfd_data | |
6094 | entry point, because the latter is called after the section | |
6095 | contents have been set, which means that the program headers have | |
6096 | already been worked out. */ | |
6097 | if (elf_tdata (obfd)->segment_map == NULL && elf_tdata (ibfd)->phdr != NULL) | |
6098 | { | |
6099 | if (! copy_private_bfd_data (ibfd, obfd)) | |
6100 | return FALSE; | |
6101 | } | |
6102 | ||
30288845 AM |
6103 | /* _bfd_elf_copy_private_section_data copied over the SHF_GROUP flag |
6104 | but this might be wrong if we deleted the group section. */ | |
6105 | for (isec = ibfd->sections; isec != NULL; isec = isec->next) | |
6106 | if (elf_section_type (isec) == SHT_GROUP | |
6107 | && isec->output_section == NULL) | |
6108 | { | |
6109 | asection *first = elf_next_in_group (isec); | |
6110 | asection *s = first; | |
6111 | while (s != NULL) | |
6112 | { | |
6113 | if (s->output_section != NULL) | |
6114 | { | |
6115 | elf_section_flags (s->output_section) &= ~SHF_GROUP; | |
6116 | elf_group_name (s->output_section) = NULL; | |
6117 | } | |
6118 | s = elf_next_in_group (s); | |
6119 | if (s == first) | |
6120 | break; | |
6121 | } | |
6122 | } | |
6123 | ||
80fccad2 BW |
6124 | return TRUE; |
6125 | } | |
6126 | ||
252b5132 RH |
6127 | /* Copy private symbol information. If this symbol is in a section |
6128 | which we did not map into a BFD section, try to map the section | |
6129 | index correctly. We use special macro definitions for the mapped | |
6130 | section indices; these definitions are interpreted by the | |
6131 | swap_out_syms function. */ | |
6132 | ||
9ad5cbcf AM |
6133 | #define MAP_ONESYMTAB (SHN_HIOS + 1) |
6134 | #define MAP_DYNSYMTAB (SHN_HIOS + 2) | |
6135 | #define MAP_STRTAB (SHN_HIOS + 3) | |
6136 | #define MAP_SHSTRTAB (SHN_HIOS + 4) | |
6137 | #define MAP_SYM_SHNDX (SHN_HIOS + 5) | |
252b5132 | 6138 | |
b34976b6 | 6139 | bfd_boolean |
217aa764 AM |
6140 | _bfd_elf_copy_private_symbol_data (bfd *ibfd, |
6141 | asymbol *isymarg, | |
6142 | bfd *obfd, | |
6143 | asymbol *osymarg) | |
252b5132 RH |
6144 | { |
6145 | elf_symbol_type *isym, *osym; | |
6146 | ||
6147 | if (bfd_get_flavour (ibfd) != bfd_target_elf_flavour | |
6148 | || bfd_get_flavour (obfd) != bfd_target_elf_flavour) | |
b34976b6 | 6149 | return TRUE; |
252b5132 RH |
6150 | |
6151 | isym = elf_symbol_from (ibfd, isymarg); | |
6152 | osym = elf_symbol_from (obfd, osymarg); | |
6153 | ||
6154 | if (isym != NULL | |
8424d8f5 | 6155 | && isym->internal_elf_sym.st_shndx != 0 |
252b5132 RH |
6156 | && osym != NULL |
6157 | && bfd_is_abs_section (isym->symbol.section)) | |
6158 | { | |
6159 | unsigned int shndx; | |
6160 | ||
6161 | shndx = isym->internal_elf_sym.st_shndx; | |
6162 | if (shndx == elf_onesymtab (ibfd)) | |
6163 | shndx = MAP_ONESYMTAB; | |
6164 | else if (shndx == elf_dynsymtab (ibfd)) | |
6165 | shndx = MAP_DYNSYMTAB; | |
6166 | else if (shndx == elf_tdata (ibfd)->strtab_section) | |
6167 | shndx = MAP_STRTAB; | |
6168 | else if (shndx == elf_tdata (ibfd)->shstrtab_section) | |
6169 | shndx = MAP_SHSTRTAB; | |
9ad5cbcf AM |
6170 | else if (shndx == elf_tdata (ibfd)->symtab_shndx_section) |
6171 | shndx = MAP_SYM_SHNDX; | |
252b5132 RH |
6172 | osym->internal_elf_sym.st_shndx = shndx; |
6173 | } | |
6174 | ||
b34976b6 | 6175 | return TRUE; |
252b5132 RH |
6176 | } |
6177 | ||
6178 | /* Swap out the symbols. */ | |
6179 | ||
b34976b6 | 6180 | static bfd_boolean |
217aa764 AM |
6181 | swap_out_syms (bfd *abfd, |
6182 | struct bfd_strtab_hash **sttp, | |
6183 | int relocatable_p) | |
252b5132 | 6184 | { |
9c5bfbb7 | 6185 | const struct elf_backend_data *bed; |
079e9a2f AM |
6186 | int symcount; |
6187 | asymbol **syms; | |
6188 | struct bfd_strtab_hash *stt; | |
6189 | Elf_Internal_Shdr *symtab_hdr; | |
9ad5cbcf | 6190 | Elf_Internal_Shdr *symtab_shndx_hdr; |
079e9a2f | 6191 | Elf_Internal_Shdr *symstrtab_hdr; |
f075ee0c AM |
6192 | bfd_byte *outbound_syms; |
6193 | bfd_byte *outbound_shndx; | |
079e9a2f AM |
6194 | int idx; |
6195 | bfd_size_type amt; | |
174fd7f9 | 6196 | bfd_boolean name_local_sections; |
252b5132 RH |
6197 | |
6198 | if (!elf_map_symbols (abfd)) | |
b34976b6 | 6199 | return FALSE; |
252b5132 | 6200 | |
c044fabd | 6201 | /* Dump out the symtabs. */ |
079e9a2f AM |
6202 | stt = _bfd_elf_stringtab_init (); |
6203 | if (stt == NULL) | |
b34976b6 | 6204 | return FALSE; |
252b5132 | 6205 | |
079e9a2f AM |
6206 | bed = get_elf_backend_data (abfd); |
6207 | symcount = bfd_get_symcount (abfd); | |
6208 | symtab_hdr = &elf_tdata (abfd)->symtab_hdr; | |
6209 | symtab_hdr->sh_type = SHT_SYMTAB; | |
6210 | symtab_hdr->sh_entsize = bed->s->sizeof_sym; | |
6211 | symtab_hdr->sh_size = symtab_hdr->sh_entsize * (symcount + 1); | |
6212 | symtab_hdr->sh_info = elf_num_locals (abfd) + 1; | |
72de5009 | 6213 | symtab_hdr->sh_addralign = (bfd_vma) 1 << bed->s->log_file_align; |
079e9a2f AM |
6214 | |
6215 | symstrtab_hdr = &elf_tdata (abfd)->strtab_hdr; | |
6216 | symstrtab_hdr->sh_type = SHT_STRTAB; | |
6217 | ||
d0fb9a8d | 6218 | outbound_syms = bfd_alloc2 (abfd, 1 + symcount, bed->s->sizeof_sym); |
079e9a2f | 6219 | if (outbound_syms == NULL) |
5ed6aba4 NC |
6220 | { |
6221 | _bfd_stringtab_free (stt); | |
6222 | return FALSE; | |
6223 | } | |
217aa764 | 6224 | symtab_hdr->contents = outbound_syms; |
252b5132 | 6225 | |
9ad5cbcf AM |
6226 | outbound_shndx = NULL; |
6227 | symtab_shndx_hdr = &elf_tdata (abfd)->symtab_shndx_hdr; | |
6228 | if (symtab_shndx_hdr->sh_name != 0) | |
6229 | { | |
6230 | amt = (bfd_size_type) (1 + symcount) * sizeof (Elf_External_Sym_Shndx); | |
d0fb9a8d JJ |
6231 | outbound_shndx = bfd_zalloc2 (abfd, 1 + symcount, |
6232 | sizeof (Elf_External_Sym_Shndx)); | |
9ad5cbcf | 6233 | if (outbound_shndx == NULL) |
5ed6aba4 NC |
6234 | { |
6235 | _bfd_stringtab_free (stt); | |
6236 | return FALSE; | |
6237 | } | |
6238 | ||
9ad5cbcf AM |
6239 | symtab_shndx_hdr->contents = outbound_shndx; |
6240 | symtab_shndx_hdr->sh_type = SHT_SYMTAB_SHNDX; | |
6241 | symtab_shndx_hdr->sh_size = amt; | |
6242 | symtab_shndx_hdr->sh_addralign = sizeof (Elf_External_Sym_Shndx); | |
6243 | symtab_shndx_hdr->sh_entsize = sizeof (Elf_External_Sym_Shndx); | |
6244 | } | |
6245 | ||
589e6347 | 6246 | /* Now generate the data (for "contents"). */ |
079e9a2f AM |
6247 | { |
6248 | /* Fill in zeroth symbol and swap it out. */ | |
6249 | Elf_Internal_Sym sym; | |
6250 | sym.st_name = 0; | |
6251 | sym.st_value = 0; | |
6252 | sym.st_size = 0; | |
6253 | sym.st_info = 0; | |
6254 | sym.st_other = 0; | |
6255 | sym.st_shndx = SHN_UNDEF; | |
9ad5cbcf | 6256 | bed->s->swap_symbol_out (abfd, &sym, outbound_syms, outbound_shndx); |
079e9a2f | 6257 | outbound_syms += bed->s->sizeof_sym; |
9ad5cbcf AM |
6258 | if (outbound_shndx != NULL) |
6259 | outbound_shndx += sizeof (Elf_External_Sym_Shndx); | |
079e9a2f | 6260 | } |
252b5132 | 6261 | |
174fd7f9 RS |
6262 | name_local_sections |
6263 | = (bed->elf_backend_name_local_section_symbols | |
6264 | && bed->elf_backend_name_local_section_symbols (abfd)); | |
6265 | ||
079e9a2f AM |
6266 | syms = bfd_get_outsymbols (abfd); |
6267 | for (idx = 0; idx < symcount; idx++) | |
252b5132 | 6268 | { |
252b5132 | 6269 | Elf_Internal_Sym sym; |
079e9a2f AM |
6270 | bfd_vma value = syms[idx]->value; |
6271 | elf_symbol_type *type_ptr; | |
6272 | flagword flags = syms[idx]->flags; | |
6273 | int type; | |
252b5132 | 6274 | |
174fd7f9 RS |
6275 | if (!name_local_sections |
6276 | && (flags & (BSF_SECTION_SYM | BSF_GLOBAL)) == BSF_SECTION_SYM) | |
079e9a2f AM |
6277 | { |
6278 | /* Local section symbols have no name. */ | |
6279 | sym.st_name = 0; | |
6280 | } | |
6281 | else | |
6282 | { | |
6283 | sym.st_name = (unsigned long) _bfd_stringtab_add (stt, | |
6284 | syms[idx]->name, | |
b34976b6 | 6285 | TRUE, FALSE); |
079e9a2f | 6286 | if (sym.st_name == (unsigned long) -1) |
5ed6aba4 NC |
6287 | { |
6288 | _bfd_stringtab_free (stt); | |
6289 | return FALSE; | |
6290 | } | |
079e9a2f | 6291 | } |
252b5132 | 6292 | |
079e9a2f | 6293 | type_ptr = elf_symbol_from (abfd, syms[idx]); |
252b5132 | 6294 | |
079e9a2f AM |
6295 | if ((flags & BSF_SECTION_SYM) == 0 |
6296 | && bfd_is_com_section (syms[idx]->section)) | |
6297 | { | |
6298 | /* ELF common symbols put the alignment into the `value' field, | |
6299 | and the size into the `size' field. This is backwards from | |
6300 | how BFD handles it, so reverse it here. */ | |
6301 | sym.st_size = value; | |
6302 | if (type_ptr == NULL | |
6303 | || type_ptr->internal_elf_sym.st_value == 0) | |
6304 | sym.st_value = value >= 16 ? 16 : (1 << bfd_log2 (value)); | |
6305 | else | |
6306 | sym.st_value = type_ptr->internal_elf_sym.st_value; | |
6307 | sym.st_shndx = _bfd_elf_section_from_bfd_section | |
6308 | (abfd, syms[idx]->section); | |
6309 | } | |
6310 | else | |
6311 | { | |
6312 | asection *sec = syms[idx]->section; | |
cb33740c | 6313 | unsigned int shndx; |
252b5132 | 6314 | |
079e9a2f AM |
6315 | if (sec->output_section) |
6316 | { | |
6317 | value += sec->output_offset; | |
6318 | sec = sec->output_section; | |
6319 | } | |
589e6347 | 6320 | |
079e9a2f AM |
6321 | /* Don't add in the section vma for relocatable output. */ |
6322 | if (! relocatable_p) | |
6323 | value += sec->vma; | |
6324 | sym.st_value = value; | |
6325 | sym.st_size = type_ptr ? type_ptr->internal_elf_sym.st_size : 0; | |
6326 | ||
6327 | if (bfd_is_abs_section (sec) | |
6328 | && type_ptr != NULL | |
6329 | && type_ptr->internal_elf_sym.st_shndx != 0) | |
6330 | { | |
6331 | /* This symbol is in a real ELF section which we did | |
6332 | not create as a BFD section. Undo the mapping done | |
6333 | by copy_private_symbol_data. */ | |
6334 | shndx = type_ptr->internal_elf_sym.st_shndx; | |
6335 | switch (shndx) | |
6336 | { | |
6337 | case MAP_ONESYMTAB: | |
6338 | shndx = elf_onesymtab (abfd); | |
6339 | break; | |
6340 | case MAP_DYNSYMTAB: | |
6341 | shndx = elf_dynsymtab (abfd); | |
6342 | break; | |
6343 | case MAP_STRTAB: | |
6344 | shndx = elf_tdata (abfd)->strtab_section; | |
6345 | break; | |
6346 | case MAP_SHSTRTAB: | |
6347 | shndx = elf_tdata (abfd)->shstrtab_section; | |
6348 | break; | |
9ad5cbcf AM |
6349 | case MAP_SYM_SHNDX: |
6350 | shndx = elf_tdata (abfd)->symtab_shndx_section; | |
6351 | break; | |
079e9a2f AM |
6352 | default: |
6353 | break; | |
6354 | } | |
6355 | } | |
6356 | else | |
6357 | { | |
6358 | shndx = _bfd_elf_section_from_bfd_section (abfd, sec); | |
252b5132 | 6359 | |
cb33740c | 6360 | if (shndx == SHN_BAD) |
079e9a2f AM |
6361 | { |
6362 | asection *sec2; | |
6363 | ||
6364 | /* Writing this would be a hell of a lot easier if | |
6365 | we had some decent documentation on bfd, and | |
6366 | knew what to expect of the library, and what to | |
6367 | demand of applications. For example, it | |
6368 | appears that `objcopy' might not set the | |
6369 | section of a symbol to be a section that is | |
6370 | actually in the output file. */ | |
6371 | sec2 = bfd_get_section_by_name (abfd, sec->name); | |
589e6347 NC |
6372 | if (sec2 == NULL) |
6373 | { | |
6374 | _bfd_error_handler (_("\ | |
6375 | Unable to find equivalent output section for symbol '%s' from section '%s'"), | |
6376 | syms[idx]->name ? syms[idx]->name : "<Local sym>", | |
6377 | sec->name); | |
811072d8 | 6378 | bfd_set_error (bfd_error_invalid_operation); |
5ed6aba4 | 6379 | _bfd_stringtab_free (stt); |
589e6347 NC |
6380 | return FALSE; |
6381 | } | |
811072d8 | 6382 | |
079e9a2f | 6383 | shndx = _bfd_elf_section_from_bfd_section (abfd, sec2); |
cb33740c | 6384 | BFD_ASSERT (shndx != SHN_BAD); |
079e9a2f AM |
6385 | } |
6386 | } | |
252b5132 | 6387 | |
079e9a2f AM |
6388 | sym.st_shndx = shndx; |
6389 | } | |
252b5132 | 6390 | |
13ae64f3 JJ |
6391 | if ((flags & BSF_THREAD_LOCAL) != 0) |
6392 | type = STT_TLS; | |
d8045f23 NC |
6393 | else if ((flags & BSF_GNU_INDIRECT_FUNCTION) != 0) |
6394 | type = STT_GNU_IFUNC; | |
13ae64f3 | 6395 | else if ((flags & BSF_FUNCTION) != 0) |
079e9a2f AM |
6396 | type = STT_FUNC; |
6397 | else if ((flags & BSF_OBJECT) != 0) | |
6398 | type = STT_OBJECT; | |
d9352518 DB |
6399 | else if ((flags & BSF_RELC) != 0) |
6400 | type = STT_RELC; | |
6401 | else if ((flags & BSF_SRELC) != 0) | |
6402 | type = STT_SRELC; | |
079e9a2f AM |
6403 | else |
6404 | type = STT_NOTYPE; | |
252b5132 | 6405 | |
13ae64f3 JJ |
6406 | if (syms[idx]->section->flags & SEC_THREAD_LOCAL) |
6407 | type = STT_TLS; | |
6408 | ||
589e6347 | 6409 | /* Processor-specific types. */ |
079e9a2f AM |
6410 | if (type_ptr != NULL |
6411 | && bed->elf_backend_get_symbol_type) | |
6412 | type = ((*bed->elf_backend_get_symbol_type) | |
6413 | (&type_ptr->internal_elf_sym, type)); | |
252b5132 | 6414 | |
079e9a2f AM |
6415 | if (flags & BSF_SECTION_SYM) |
6416 | { | |
6417 | if (flags & BSF_GLOBAL) | |
6418 | sym.st_info = ELF_ST_INFO (STB_GLOBAL, STT_SECTION); | |
6419 | else | |
6420 | sym.st_info = ELF_ST_INFO (STB_LOCAL, STT_SECTION); | |
6421 | } | |
6422 | else if (bfd_is_com_section (syms[idx]->section)) | |
0a40daed | 6423 | { |
504b7d20 | 6424 | #ifdef USE_STT_COMMON |
0a40daed MK |
6425 | if (type == STT_OBJECT) |
6426 | sym.st_info = ELF_ST_INFO (STB_GLOBAL, STT_COMMON); | |
6427 | else | |
504b7d20 | 6428 | #endif |
c91e322a | 6429 | sym.st_info = ELF_ST_INFO (STB_GLOBAL, type); |
0a40daed | 6430 | } |
079e9a2f AM |
6431 | else if (bfd_is_und_section (syms[idx]->section)) |
6432 | sym.st_info = ELF_ST_INFO (((flags & BSF_WEAK) | |
6433 | ? STB_WEAK | |
6434 | : STB_GLOBAL), | |
6435 | type); | |
6436 | else if (flags & BSF_FILE) | |
6437 | sym.st_info = ELF_ST_INFO (STB_LOCAL, STT_FILE); | |
6438 | else | |
6439 | { | |
6440 | int bind = STB_LOCAL; | |
252b5132 | 6441 | |
079e9a2f AM |
6442 | if (flags & BSF_LOCAL) |
6443 | bind = STB_LOCAL; | |
6444 | else if (flags & BSF_WEAK) | |
6445 | bind = STB_WEAK; | |
6446 | else if (flags & BSF_GLOBAL) | |
6447 | bind = STB_GLOBAL; | |
252b5132 | 6448 | |
079e9a2f AM |
6449 | sym.st_info = ELF_ST_INFO (bind, type); |
6450 | } | |
252b5132 | 6451 | |
079e9a2f AM |
6452 | if (type_ptr != NULL) |
6453 | sym.st_other = type_ptr->internal_elf_sym.st_other; | |
6454 | else | |
6455 | sym.st_other = 0; | |
252b5132 | 6456 | |
9ad5cbcf | 6457 | bed->s->swap_symbol_out (abfd, &sym, outbound_syms, outbound_shndx); |
079e9a2f | 6458 | outbound_syms += bed->s->sizeof_sym; |
9ad5cbcf AM |
6459 | if (outbound_shndx != NULL) |
6460 | outbound_shndx += sizeof (Elf_External_Sym_Shndx); | |
079e9a2f | 6461 | } |
252b5132 | 6462 | |
079e9a2f AM |
6463 | *sttp = stt; |
6464 | symstrtab_hdr->sh_size = _bfd_stringtab_size (stt); | |
6465 | symstrtab_hdr->sh_type = SHT_STRTAB; | |
252b5132 | 6466 | |
079e9a2f AM |
6467 | symstrtab_hdr->sh_flags = 0; |
6468 | symstrtab_hdr->sh_addr = 0; | |
6469 | symstrtab_hdr->sh_entsize = 0; | |
6470 | symstrtab_hdr->sh_link = 0; | |
6471 | symstrtab_hdr->sh_info = 0; | |
6472 | symstrtab_hdr->sh_addralign = 1; | |
252b5132 | 6473 | |
b34976b6 | 6474 | return TRUE; |
252b5132 RH |
6475 | } |
6476 | ||
6477 | /* Return the number of bytes required to hold the symtab vector. | |
6478 | ||
6479 | Note that we base it on the count plus 1, since we will null terminate | |
6480 | the vector allocated based on this size. However, the ELF symbol table | |
6481 | always has a dummy entry as symbol #0, so it ends up even. */ | |
6482 | ||
6483 | long | |
217aa764 | 6484 | _bfd_elf_get_symtab_upper_bound (bfd *abfd) |
252b5132 RH |
6485 | { |
6486 | long symcount; | |
6487 | long symtab_size; | |
6488 | Elf_Internal_Shdr *hdr = &elf_tdata (abfd)->symtab_hdr; | |
6489 | ||
6490 | symcount = hdr->sh_size / get_elf_backend_data (abfd)->s->sizeof_sym; | |
b99d1833 AM |
6491 | symtab_size = (symcount + 1) * (sizeof (asymbol *)); |
6492 | if (symcount > 0) | |
6493 | symtab_size -= sizeof (asymbol *); | |
252b5132 RH |
6494 | |
6495 | return symtab_size; | |
6496 | } | |
6497 | ||
6498 | long | |
217aa764 | 6499 | _bfd_elf_get_dynamic_symtab_upper_bound (bfd *abfd) |
252b5132 RH |
6500 | { |
6501 | long symcount; | |
6502 | long symtab_size; | |
6503 | Elf_Internal_Shdr *hdr = &elf_tdata (abfd)->dynsymtab_hdr; | |
6504 | ||
6505 | if (elf_dynsymtab (abfd) == 0) | |
6506 | { | |
6507 | bfd_set_error (bfd_error_invalid_operation); | |
6508 | return -1; | |
6509 | } | |
6510 | ||
6511 | symcount = hdr->sh_size / get_elf_backend_data (abfd)->s->sizeof_sym; | |
b99d1833 AM |
6512 | symtab_size = (symcount + 1) * (sizeof (asymbol *)); |
6513 | if (symcount > 0) | |
6514 | symtab_size -= sizeof (asymbol *); | |
252b5132 RH |
6515 | |
6516 | return symtab_size; | |
6517 | } | |
6518 | ||
6519 | long | |
217aa764 AM |
6520 | _bfd_elf_get_reloc_upper_bound (bfd *abfd ATTRIBUTE_UNUSED, |
6521 | sec_ptr asect) | |
252b5132 RH |
6522 | { |
6523 | return (asect->reloc_count + 1) * sizeof (arelent *); | |
6524 | } | |
6525 | ||
6526 | /* Canonicalize the relocs. */ | |
6527 | ||
6528 | long | |
217aa764 AM |
6529 | _bfd_elf_canonicalize_reloc (bfd *abfd, |
6530 | sec_ptr section, | |
6531 | arelent **relptr, | |
6532 | asymbol **symbols) | |
252b5132 RH |
6533 | { |
6534 | arelent *tblptr; | |
6535 | unsigned int i; | |
9c5bfbb7 | 6536 | const struct elf_backend_data *bed = get_elf_backend_data (abfd); |
252b5132 | 6537 | |
b34976b6 | 6538 | if (! bed->s->slurp_reloc_table (abfd, section, symbols, FALSE)) |
252b5132 RH |
6539 | return -1; |
6540 | ||
6541 | tblptr = section->relocation; | |
6542 | for (i = 0; i < section->reloc_count; i++) | |
6543 | *relptr++ = tblptr++; | |
6544 | ||
6545 | *relptr = NULL; | |
6546 | ||
6547 | return section->reloc_count; | |
6548 | } | |
6549 | ||
6550 | long | |
6cee3f79 | 6551 | _bfd_elf_canonicalize_symtab (bfd *abfd, asymbol **allocation) |
252b5132 | 6552 | { |
9c5bfbb7 | 6553 | const struct elf_backend_data *bed = get_elf_backend_data (abfd); |
217aa764 | 6554 | long symcount = bed->s->slurp_symbol_table (abfd, allocation, FALSE); |
252b5132 RH |
6555 | |
6556 | if (symcount >= 0) | |
6557 | bfd_get_symcount (abfd) = symcount; | |
6558 | return symcount; | |
6559 | } | |
6560 | ||
6561 | long | |
217aa764 AM |
6562 | _bfd_elf_canonicalize_dynamic_symtab (bfd *abfd, |
6563 | asymbol **allocation) | |
252b5132 | 6564 | { |
9c5bfbb7 | 6565 | const struct elf_backend_data *bed = get_elf_backend_data (abfd); |
217aa764 | 6566 | long symcount = bed->s->slurp_symbol_table (abfd, allocation, TRUE); |
1f70368c DJ |
6567 | |
6568 | if (symcount >= 0) | |
6569 | bfd_get_dynamic_symcount (abfd) = symcount; | |
6570 | return symcount; | |
252b5132 RH |
6571 | } |
6572 | ||
8615f3f2 AM |
6573 | /* Return the size required for the dynamic reloc entries. Any loadable |
6574 | section that was actually installed in the BFD, and has type SHT_REL | |
6575 | or SHT_RELA, and uses the dynamic symbol table, is considered to be a | |
6576 | dynamic reloc section. */ | |
252b5132 RH |
6577 | |
6578 | long | |
217aa764 | 6579 | _bfd_elf_get_dynamic_reloc_upper_bound (bfd *abfd) |
252b5132 RH |
6580 | { |
6581 | long ret; | |
6582 | asection *s; | |
6583 | ||
6584 | if (elf_dynsymtab (abfd) == 0) | |
6585 | { | |
6586 | bfd_set_error (bfd_error_invalid_operation); | |
6587 | return -1; | |
6588 | } | |
6589 | ||
6590 | ret = sizeof (arelent *); | |
6591 | for (s = abfd->sections; s != NULL; s = s->next) | |
266b05cf | 6592 | if (elf_section_data (s)->this_hdr.sh_link == elf_dynsymtab (abfd) |
252b5132 RH |
6593 | && (elf_section_data (s)->this_hdr.sh_type == SHT_REL |
6594 | || elf_section_data (s)->this_hdr.sh_type == SHT_RELA)) | |
eea6121a | 6595 | ret += ((s->size / elf_section_data (s)->this_hdr.sh_entsize) |
252b5132 RH |
6596 | * sizeof (arelent *)); |
6597 | ||
6598 | return ret; | |
6599 | } | |
6600 | ||
8615f3f2 AM |
6601 | /* Canonicalize the dynamic relocation entries. Note that we return the |
6602 | dynamic relocations as a single block, although they are actually | |
6603 | associated with particular sections; the interface, which was | |
6604 | designed for SunOS style shared libraries, expects that there is only | |
6605 | one set of dynamic relocs. Any loadable section that was actually | |
6606 | installed in the BFD, and has type SHT_REL or SHT_RELA, and uses the | |
6607 | dynamic symbol table, is considered to be a dynamic reloc section. */ | |
252b5132 RH |
6608 | |
6609 | long | |
217aa764 AM |
6610 | _bfd_elf_canonicalize_dynamic_reloc (bfd *abfd, |
6611 | arelent **storage, | |
6612 | asymbol **syms) | |
252b5132 | 6613 | { |
217aa764 | 6614 | bfd_boolean (*slurp_relocs) (bfd *, asection *, asymbol **, bfd_boolean); |
252b5132 RH |
6615 | asection *s; |
6616 | long ret; | |
6617 | ||
6618 | if (elf_dynsymtab (abfd) == 0) | |
6619 | { | |
6620 | bfd_set_error (bfd_error_invalid_operation); | |
6621 | return -1; | |
6622 | } | |
6623 | ||
6624 | slurp_relocs = get_elf_backend_data (abfd)->s->slurp_reloc_table; | |
6625 | ret = 0; | |
6626 | for (s = abfd->sections; s != NULL; s = s->next) | |
6627 | { | |
266b05cf | 6628 | if (elf_section_data (s)->this_hdr.sh_link == elf_dynsymtab (abfd) |
252b5132 RH |
6629 | && (elf_section_data (s)->this_hdr.sh_type == SHT_REL |
6630 | || elf_section_data (s)->this_hdr.sh_type == SHT_RELA)) | |
6631 | { | |
6632 | arelent *p; | |
6633 | long count, i; | |
6634 | ||
b34976b6 | 6635 | if (! (*slurp_relocs) (abfd, s, syms, TRUE)) |
252b5132 | 6636 | return -1; |
eea6121a | 6637 | count = s->size / elf_section_data (s)->this_hdr.sh_entsize; |
252b5132 RH |
6638 | p = s->relocation; |
6639 | for (i = 0; i < count; i++) | |
6640 | *storage++ = p++; | |
6641 | ret += count; | |
6642 | } | |
6643 | } | |
6644 | ||
6645 | *storage = NULL; | |
6646 | ||
6647 | return ret; | |
6648 | } | |
6649 | \f | |
6650 | /* Read in the version information. */ | |
6651 | ||
b34976b6 | 6652 | bfd_boolean |
fc0e6df6 | 6653 | _bfd_elf_slurp_version_tables (bfd *abfd, bfd_boolean default_imported_symver) |
252b5132 RH |
6654 | { |
6655 | bfd_byte *contents = NULL; | |
fc0e6df6 PB |
6656 | unsigned int freeidx = 0; |
6657 | ||
6658 | if (elf_dynverref (abfd) != 0) | |
6659 | { | |
6660 | Elf_Internal_Shdr *hdr; | |
6661 | Elf_External_Verneed *everneed; | |
6662 | Elf_Internal_Verneed *iverneed; | |
6663 | unsigned int i; | |
d0fb9a8d | 6664 | bfd_byte *contents_end; |
fc0e6df6 PB |
6665 | |
6666 | hdr = &elf_tdata (abfd)->dynverref_hdr; | |
6667 | ||
d0fb9a8d JJ |
6668 | elf_tdata (abfd)->verref = bfd_zalloc2 (abfd, hdr->sh_info, |
6669 | sizeof (Elf_Internal_Verneed)); | |
fc0e6df6 PB |
6670 | if (elf_tdata (abfd)->verref == NULL) |
6671 | goto error_return; | |
6672 | ||
6673 | elf_tdata (abfd)->cverrefs = hdr->sh_info; | |
6674 | ||
6675 | contents = bfd_malloc (hdr->sh_size); | |
6676 | if (contents == NULL) | |
d0fb9a8d JJ |
6677 | { |
6678 | error_return_verref: | |
6679 | elf_tdata (abfd)->verref = NULL; | |
6680 | elf_tdata (abfd)->cverrefs = 0; | |
6681 | goto error_return; | |
6682 | } | |
fc0e6df6 PB |
6683 | if (bfd_seek (abfd, hdr->sh_offset, SEEK_SET) != 0 |
6684 | || bfd_bread (contents, hdr->sh_size, abfd) != hdr->sh_size) | |
d0fb9a8d | 6685 | goto error_return_verref; |
fc0e6df6 | 6686 | |
d0fb9a8d JJ |
6687 | if (hdr->sh_info && hdr->sh_size < sizeof (Elf_External_Verneed)) |
6688 | goto error_return_verref; | |
6689 | ||
6690 | BFD_ASSERT (sizeof (Elf_External_Verneed) | |
6691 | == sizeof (Elf_External_Vernaux)); | |
6692 | contents_end = contents + hdr->sh_size - sizeof (Elf_External_Verneed); | |
fc0e6df6 PB |
6693 | everneed = (Elf_External_Verneed *) contents; |
6694 | iverneed = elf_tdata (abfd)->verref; | |
6695 | for (i = 0; i < hdr->sh_info; i++, iverneed++) | |
6696 | { | |
6697 | Elf_External_Vernaux *evernaux; | |
6698 | Elf_Internal_Vernaux *ivernaux; | |
6699 | unsigned int j; | |
6700 | ||
6701 | _bfd_elf_swap_verneed_in (abfd, everneed, iverneed); | |
6702 | ||
6703 | iverneed->vn_bfd = abfd; | |
6704 | ||
6705 | iverneed->vn_filename = | |
6706 | bfd_elf_string_from_elf_section (abfd, hdr->sh_link, | |
6707 | iverneed->vn_file); | |
6708 | if (iverneed->vn_filename == NULL) | |
d0fb9a8d | 6709 | goto error_return_verref; |
fc0e6df6 | 6710 | |
d0fb9a8d JJ |
6711 | if (iverneed->vn_cnt == 0) |
6712 | iverneed->vn_auxptr = NULL; | |
6713 | else | |
6714 | { | |
6715 | iverneed->vn_auxptr = bfd_alloc2 (abfd, iverneed->vn_cnt, | |
6716 | sizeof (Elf_Internal_Vernaux)); | |
6717 | if (iverneed->vn_auxptr == NULL) | |
6718 | goto error_return_verref; | |
6719 | } | |
6720 | ||
6721 | if (iverneed->vn_aux | |
6722 | > (size_t) (contents_end - (bfd_byte *) everneed)) | |
6723 | goto error_return_verref; | |
fc0e6df6 PB |
6724 | |
6725 | evernaux = ((Elf_External_Vernaux *) | |
6726 | ((bfd_byte *) everneed + iverneed->vn_aux)); | |
6727 | ivernaux = iverneed->vn_auxptr; | |
6728 | for (j = 0; j < iverneed->vn_cnt; j++, ivernaux++) | |
6729 | { | |
6730 | _bfd_elf_swap_vernaux_in (abfd, evernaux, ivernaux); | |
6731 | ||
6732 | ivernaux->vna_nodename = | |
6733 | bfd_elf_string_from_elf_section (abfd, hdr->sh_link, | |
6734 | ivernaux->vna_name); | |
6735 | if (ivernaux->vna_nodename == NULL) | |
d0fb9a8d | 6736 | goto error_return_verref; |
fc0e6df6 PB |
6737 | |
6738 | if (j + 1 < iverneed->vn_cnt) | |
6739 | ivernaux->vna_nextptr = ivernaux + 1; | |
6740 | else | |
6741 | ivernaux->vna_nextptr = NULL; | |
6742 | ||
d0fb9a8d JJ |
6743 | if (ivernaux->vna_next |
6744 | > (size_t) (contents_end - (bfd_byte *) evernaux)) | |
6745 | goto error_return_verref; | |
6746 | ||
fc0e6df6 PB |
6747 | evernaux = ((Elf_External_Vernaux *) |
6748 | ((bfd_byte *) evernaux + ivernaux->vna_next)); | |
6749 | ||
6750 | if (ivernaux->vna_other > freeidx) | |
6751 | freeidx = ivernaux->vna_other; | |
6752 | } | |
6753 | ||
6754 | if (i + 1 < hdr->sh_info) | |
6755 | iverneed->vn_nextref = iverneed + 1; | |
6756 | else | |
6757 | iverneed->vn_nextref = NULL; | |
6758 | ||
d0fb9a8d JJ |
6759 | if (iverneed->vn_next |
6760 | > (size_t) (contents_end - (bfd_byte *) everneed)) | |
6761 | goto error_return_verref; | |
6762 | ||
fc0e6df6 PB |
6763 | everneed = ((Elf_External_Verneed *) |
6764 | ((bfd_byte *) everneed + iverneed->vn_next)); | |
6765 | } | |
6766 | ||
6767 | free (contents); | |
6768 | contents = NULL; | |
6769 | } | |
252b5132 RH |
6770 | |
6771 | if (elf_dynverdef (abfd) != 0) | |
6772 | { | |
6773 | Elf_Internal_Shdr *hdr; | |
6774 | Elf_External_Verdef *everdef; | |
6775 | Elf_Internal_Verdef *iverdef; | |
f631889e UD |
6776 | Elf_Internal_Verdef *iverdefarr; |
6777 | Elf_Internal_Verdef iverdefmem; | |
252b5132 | 6778 | unsigned int i; |
062e2358 | 6779 | unsigned int maxidx; |
d0fb9a8d | 6780 | bfd_byte *contents_end_def, *contents_end_aux; |
252b5132 RH |
6781 | |
6782 | hdr = &elf_tdata (abfd)->dynverdef_hdr; | |
6783 | ||
217aa764 | 6784 | contents = bfd_malloc (hdr->sh_size); |
252b5132 RH |
6785 | if (contents == NULL) |
6786 | goto error_return; | |
6787 | if (bfd_seek (abfd, hdr->sh_offset, SEEK_SET) != 0 | |
217aa764 | 6788 | || bfd_bread (contents, hdr->sh_size, abfd) != hdr->sh_size) |
252b5132 RH |
6789 | goto error_return; |
6790 | ||
d0fb9a8d JJ |
6791 | if (hdr->sh_info && hdr->sh_size < sizeof (Elf_External_Verdef)) |
6792 | goto error_return; | |
6793 | ||
6794 | BFD_ASSERT (sizeof (Elf_External_Verdef) | |
6795 | >= sizeof (Elf_External_Verdaux)); | |
6796 | contents_end_def = contents + hdr->sh_size | |
6797 | - sizeof (Elf_External_Verdef); | |
6798 | contents_end_aux = contents + hdr->sh_size | |
6799 | - sizeof (Elf_External_Verdaux); | |
6800 | ||
f631889e UD |
6801 | /* We know the number of entries in the section but not the maximum |
6802 | index. Therefore we have to run through all entries and find | |
6803 | the maximum. */ | |
252b5132 | 6804 | everdef = (Elf_External_Verdef *) contents; |
f631889e UD |
6805 | maxidx = 0; |
6806 | for (i = 0; i < hdr->sh_info; ++i) | |
6807 | { | |
6808 | _bfd_elf_swap_verdef_in (abfd, everdef, &iverdefmem); | |
6809 | ||
062e2358 AM |
6810 | if ((iverdefmem.vd_ndx & ((unsigned) VERSYM_VERSION)) > maxidx) |
6811 | maxidx = iverdefmem.vd_ndx & ((unsigned) VERSYM_VERSION); | |
f631889e | 6812 | |
d0fb9a8d JJ |
6813 | if (iverdefmem.vd_next |
6814 | > (size_t) (contents_end_def - (bfd_byte *) everdef)) | |
6815 | goto error_return; | |
6816 | ||
f631889e UD |
6817 | everdef = ((Elf_External_Verdef *) |
6818 | ((bfd_byte *) everdef + iverdefmem.vd_next)); | |
6819 | } | |
6820 | ||
fc0e6df6 PB |
6821 | if (default_imported_symver) |
6822 | { | |
6823 | if (freeidx > maxidx) | |
6824 | maxidx = ++freeidx; | |
6825 | else | |
6826 | freeidx = ++maxidx; | |
6827 | } | |
d0fb9a8d JJ |
6828 | elf_tdata (abfd)->verdef = bfd_zalloc2 (abfd, maxidx, |
6829 | sizeof (Elf_Internal_Verdef)); | |
f631889e UD |
6830 | if (elf_tdata (abfd)->verdef == NULL) |
6831 | goto error_return; | |
6832 | ||
6833 | elf_tdata (abfd)->cverdefs = maxidx; | |
6834 | ||
6835 | everdef = (Elf_External_Verdef *) contents; | |
6836 | iverdefarr = elf_tdata (abfd)->verdef; | |
6837 | for (i = 0; i < hdr->sh_info; i++) | |
252b5132 RH |
6838 | { |
6839 | Elf_External_Verdaux *everdaux; | |
6840 | Elf_Internal_Verdaux *iverdaux; | |
6841 | unsigned int j; | |
6842 | ||
f631889e UD |
6843 | _bfd_elf_swap_verdef_in (abfd, everdef, &iverdefmem); |
6844 | ||
d0fb9a8d JJ |
6845 | if ((iverdefmem.vd_ndx & VERSYM_VERSION) == 0) |
6846 | { | |
6847 | error_return_verdef: | |
6848 | elf_tdata (abfd)->verdef = NULL; | |
6849 | elf_tdata (abfd)->cverdefs = 0; | |
6850 | goto error_return; | |
6851 | } | |
6852 | ||
f631889e UD |
6853 | iverdef = &iverdefarr[(iverdefmem.vd_ndx & VERSYM_VERSION) - 1]; |
6854 | memcpy (iverdef, &iverdefmem, sizeof (Elf_Internal_Verdef)); | |
252b5132 RH |
6855 | |
6856 | iverdef->vd_bfd = abfd; | |
6857 | ||
d0fb9a8d JJ |
6858 | if (iverdef->vd_cnt == 0) |
6859 | iverdef->vd_auxptr = NULL; | |
6860 | else | |
6861 | { | |
6862 | iverdef->vd_auxptr = bfd_alloc2 (abfd, iverdef->vd_cnt, | |
6863 | sizeof (Elf_Internal_Verdaux)); | |
6864 | if (iverdef->vd_auxptr == NULL) | |
6865 | goto error_return_verdef; | |
6866 | } | |
6867 | ||
6868 | if (iverdef->vd_aux | |
6869 | > (size_t) (contents_end_aux - (bfd_byte *) everdef)) | |
6870 | goto error_return_verdef; | |
252b5132 RH |
6871 | |
6872 | everdaux = ((Elf_External_Verdaux *) | |
6873 | ((bfd_byte *) everdef + iverdef->vd_aux)); | |
6874 | iverdaux = iverdef->vd_auxptr; | |
6875 | for (j = 0; j < iverdef->vd_cnt; j++, iverdaux++) | |
6876 | { | |
6877 | _bfd_elf_swap_verdaux_in (abfd, everdaux, iverdaux); | |
6878 | ||
6879 | iverdaux->vda_nodename = | |
6880 | bfd_elf_string_from_elf_section (abfd, hdr->sh_link, | |
6881 | iverdaux->vda_name); | |
6882 | if (iverdaux->vda_nodename == NULL) | |
d0fb9a8d | 6883 | goto error_return_verdef; |
252b5132 RH |
6884 | |
6885 | if (j + 1 < iverdef->vd_cnt) | |
6886 | iverdaux->vda_nextptr = iverdaux + 1; | |
6887 | else | |
6888 | iverdaux->vda_nextptr = NULL; | |
6889 | ||
d0fb9a8d JJ |
6890 | if (iverdaux->vda_next |
6891 | > (size_t) (contents_end_aux - (bfd_byte *) everdaux)) | |
6892 | goto error_return_verdef; | |
6893 | ||
252b5132 RH |
6894 | everdaux = ((Elf_External_Verdaux *) |
6895 | ((bfd_byte *) everdaux + iverdaux->vda_next)); | |
6896 | } | |
6897 | ||
d0fb9a8d JJ |
6898 | if (iverdef->vd_cnt) |
6899 | iverdef->vd_nodename = iverdef->vd_auxptr->vda_nodename; | |
252b5132 | 6900 | |
d0fb9a8d | 6901 | if ((size_t) (iverdef - iverdefarr) + 1 < maxidx) |
252b5132 RH |
6902 | iverdef->vd_nextdef = iverdef + 1; |
6903 | else | |
6904 | iverdef->vd_nextdef = NULL; | |
6905 | ||
6906 | everdef = ((Elf_External_Verdef *) | |
6907 | ((bfd_byte *) everdef + iverdef->vd_next)); | |
6908 | } | |
6909 | ||
6910 | free (contents); | |
6911 | contents = NULL; | |
6912 | } | |
fc0e6df6 | 6913 | else if (default_imported_symver) |
252b5132 | 6914 | { |
fc0e6df6 PB |
6915 | if (freeidx < 3) |
6916 | freeidx = 3; | |
6917 | else | |
6918 | freeidx++; | |
252b5132 | 6919 | |
d0fb9a8d JJ |
6920 | elf_tdata (abfd)->verdef = bfd_zalloc2 (abfd, freeidx, |
6921 | sizeof (Elf_Internal_Verdef)); | |
fc0e6df6 | 6922 | if (elf_tdata (abfd)->verdef == NULL) |
252b5132 RH |
6923 | goto error_return; |
6924 | ||
fc0e6df6 PB |
6925 | elf_tdata (abfd)->cverdefs = freeidx; |
6926 | } | |
252b5132 | 6927 | |
fc0e6df6 PB |
6928 | /* Create a default version based on the soname. */ |
6929 | if (default_imported_symver) | |
6930 | { | |
6931 | Elf_Internal_Verdef *iverdef; | |
6932 | Elf_Internal_Verdaux *iverdaux; | |
252b5132 | 6933 | |
fc0e6df6 | 6934 | iverdef = &elf_tdata (abfd)->verdef[freeidx - 1];; |
252b5132 | 6935 | |
fc0e6df6 PB |
6936 | iverdef->vd_version = VER_DEF_CURRENT; |
6937 | iverdef->vd_flags = 0; | |
6938 | iverdef->vd_ndx = freeidx; | |
6939 | iverdef->vd_cnt = 1; | |
252b5132 | 6940 | |
fc0e6df6 | 6941 | iverdef->vd_bfd = abfd; |
252b5132 | 6942 | |
fc0e6df6 PB |
6943 | iverdef->vd_nodename = bfd_elf_get_dt_soname (abfd); |
6944 | if (iverdef->vd_nodename == NULL) | |
d0fb9a8d | 6945 | goto error_return_verdef; |
fc0e6df6 | 6946 | iverdef->vd_nextdef = NULL; |
d0fb9a8d JJ |
6947 | iverdef->vd_auxptr = bfd_alloc (abfd, sizeof (Elf_Internal_Verdaux)); |
6948 | if (iverdef->vd_auxptr == NULL) | |
6949 | goto error_return_verdef; | |
252b5132 | 6950 | |
fc0e6df6 PB |
6951 | iverdaux = iverdef->vd_auxptr; |
6952 | iverdaux->vda_nodename = iverdef->vd_nodename; | |
6953 | iverdaux->vda_nextptr = NULL; | |
252b5132 RH |
6954 | } |
6955 | ||
b34976b6 | 6956 | return TRUE; |
252b5132 RH |
6957 | |
6958 | error_return: | |
5ed6aba4 | 6959 | if (contents != NULL) |
252b5132 | 6960 | free (contents); |
b34976b6 | 6961 | return FALSE; |
252b5132 RH |
6962 | } |
6963 | \f | |
6964 | asymbol * | |
217aa764 | 6965 | _bfd_elf_make_empty_symbol (bfd *abfd) |
252b5132 RH |
6966 | { |
6967 | elf_symbol_type *newsym; | |
dc810e39 | 6968 | bfd_size_type amt = sizeof (elf_symbol_type); |
252b5132 | 6969 | |
217aa764 | 6970 | newsym = bfd_zalloc (abfd, amt); |
252b5132 RH |
6971 | if (!newsym) |
6972 | return NULL; | |
6973 | else | |
6974 | { | |
6975 | newsym->symbol.the_bfd = abfd; | |
6976 | return &newsym->symbol; | |
6977 | } | |
6978 | } | |
6979 | ||
6980 | void | |
217aa764 AM |
6981 | _bfd_elf_get_symbol_info (bfd *abfd ATTRIBUTE_UNUSED, |
6982 | asymbol *symbol, | |
6983 | symbol_info *ret) | |
252b5132 RH |
6984 | { |
6985 | bfd_symbol_info (symbol, ret); | |
6986 | } | |
6987 | ||
6988 | /* Return whether a symbol name implies a local symbol. Most targets | |
6989 | use this function for the is_local_label_name entry point, but some | |
6990 | override it. */ | |
6991 | ||
b34976b6 | 6992 | bfd_boolean |
217aa764 AM |
6993 | _bfd_elf_is_local_label_name (bfd *abfd ATTRIBUTE_UNUSED, |
6994 | const char *name) | |
252b5132 RH |
6995 | { |
6996 | /* Normal local symbols start with ``.L''. */ | |
6997 | if (name[0] == '.' && name[1] == 'L') | |
b34976b6 | 6998 | return TRUE; |
252b5132 RH |
6999 | |
7000 | /* At least some SVR4 compilers (e.g., UnixWare 2.1 cc) generate | |
7001 | DWARF debugging symbols starting with ``..''. */ | |
7002 | if (name[0] == '.' && name[1] == '.') | |
b34976b6 | 7003 | return TRUE; |
252b5132 RH |
7004 | |
7005 | /* gcc will sometimes generate symbols beginning with ``_.L_'' when | |
7006 | emitting DWARF debugging output. I suspect this is actually a | |
7007 | small bug in gcc (it calls ASM_OUTPUT_LABEL when it should call | |
7008 | ASM_GENERATE_INTERNAL_LABEL, and this causes the leading | |
7009 | underscore to be emitted on some ELF targets). For ease of use, | |
7010 | we treat such symbols as local. */ | |
7011 | if (name[0] == '_' && name[1] == '.' && name[2] == 'L' && name[3] == '_') | |
b34976b6 | 7012 | return TRUE; |
252b5132 | 7013 | |
b34976b6 | 7014 | return FALSE; |
252b5132 RH |
7015 | } |
7016 | ||
7017 | alent * | |
217aa764 AM |
7018 | _bfd_elf_get_lineno (bfd *abfd ATTRIBUTE_UNUSED, |
7019 | asymbol *symbol ATTRIBUTE_UNUSED) | |
252b5132 RH |
7020 | { |
7021 | abort (); | |
7022 | return NULL; | |
7023 | } | |
7024 | ||
b34976b6 | 7025 | bfd_boolean |
217aa764 AM |
7026 | _bfd_elf_set_arch_mach (bfd *abfd, |
7027 | enum bfd_architecture arch, | |
7028 | unsigned long machine) | |
252b5132 RH |
7029 | { |
7030 | /* If this isn't the right architecture for this backend, and this | |
7031 | isn't the generic backend, fail. */ | |
7032 | if (arch != get_elf_backend_data (abfd)->arch | |
7033 | && arch != bfd_arch_unknown | |
7034 | && get_elf_backend_data (abfd)->arch != bfd_arch_unknown) | |
b34976b6 | 7035 | return FALSE; |
252b5132 RH |
7036 | |
7037 | return bfd_default_set_arch_mach (abfd, arch, machine); | |
7038 | } | |
7039 | ||
d1fad7c6 NC |
7040 | /* Find the function to a particular section and offset, |
7041 | for error reporting. */ | |
252b5132 | 7042 | |
b34976b6 | 7043 | static bfd_boolean |
b9d678e0 | 7044 | elf_find_function (bfd *abfd, |
217aa764 AM |
7045 | asection *section, |
7046 | asymbol **symbols, | |
7047 | bfd_vma offset, | |
7048 | const char **filename_ptr, | |
7049 | const char **functionname_ptr) | |
252b5132 | 7050 | { |
252b5132 | 7051 | const char *filename; |
57426232 | 7052 | asymbol *func, *file; |
252b5132 RH |
7053 | bfd_vma low_func; |
7054 | asymbol **p; | |
57426232 JB |
7055 | /* ??? Given multiple file symbols, it is impossible to reliably |
7056 | choose the right file name for global symbols. File symbols are | |
7057 | local symbols, and thus all file symbols must sort before any | |
7058 | global symbols. The ELF spec may be interpreted to say that a | |
7059 | file symbol must sort before other local symbols, but currently | |
7060 | ld -r doesn't do this. So, for ld -r output, it is possible to | |
7061 | make a better choice of file name for local symbols by ignoring | |
7062 | file symbols appearing after a given local symbol. */ | |
7063 | enum { nothing_seen, symbol_seen, file_after_symbol_seen } state; | |
b9d678e0 | 7064 | const struct elf_backend_data *bed = get_elf_backend_data (abfd); |
252b5132 | 7065 | |
252b5132 RH |
7066 | filename = NULL; |
7067 | func = NULL; | |
57426232 | 7068 | file = NULL; |
252b5132 | 7069 | low_func = 0; |
57426232 | 7070 | state = nothing_seen; |
252b5132 RH |
7071 | |
7072 | for (p = symbols; *p != NULL; p++) | |
7073 | { | |
7074 | elf_symbol_type *q; | |
b9d678e0 | 7075 | unsigned int type; |
252b5132 RH |
7076 | |
7077 | q = (elf_symbol_type *) *p; | |
7078 | ||
b9d678e0 L |
7079 | type = ELF_ST_TYPE (q->internal_elf_sym.st_info); |
7080 | switch (type) | |
252b5132 | 7081 | { |
252b5132 | 7082 | case STT_FILE: |
57426232 JB |
7083 | file = &q->symbol; |
7084 | if (state == symbol_seen) | |
7085 | state = file_after_symbol_seen; | |
7086 | continue; | |
b9d678e0 L |
7087 | default: |
7088 | if (!bed->is_function_type (type)) | |
7089 | break; | |
252b5132 | 7090 | case STT_NOTYPE: |
6b40fcba | 7091 | if (bfd_get_section (&q->symbol) == section |
252b5132 RH |
7092 | && q->symbol.value >= low_func |
7093 | && q->symbol.value <= offset) | |
7094 | { | |
7095 | func = (asymbol *) q; | |
7096 | low_func = q->symbol.value; | |
a1923858 AM |
7097 | filename = NULL; |
7098 | if (file != NULL | |
7099 | && (ELF_ST_BIND (q->internal_elf_sym.st_info) == STB_LOCAL | |
7100 | || state != file_after_symbol_seen)) | |
57426232 | 7101 | filename = bfd_asymbol_name (file); |
252b5132 RH |
7102 | } |
7103 | break; | |
7104 | } | |
57426232 JB |
7105 | if (state == nothing_seen) |
7106 | state = symbol_seen; | |
252b5132 RH |
7107 | } |
7108 | ||
7109 | if (func == NULL) | |
b34976b6 | 7110 | return FALSE; |
252b5132 | 7111 | |
d1fad7c6 NC |
7112 | if (filename_ptr) |
7113 | *filename_ptr = filename; | |
7114 | if (functionname_ptr) | |
7115 | *functionname_ptr = bfd_asymbol_name (func); | |
7116 | ||
b34976b6 | 7117 | return TRUE; |
d1fad7c6 NC |
7118 | } |
7119 | ||
7120 | /* Find the nearest line to a particular section and offset, | |
7121 | for error reporting. */ | |
7122 | ||
b34976b6 | 7123 | bfd_boolean |
217aa764 AM |
7124 | _bfd_elf_find_nearest_line (bfd *abfd, |
7125 | asection *section, | |
7126 | asymbol **symbols, | |
7127 | bfd_vma offset, | |
7128 | const char **filename_ptr, | |
7129 | const char **functionname_ptr, | |
7130 | unsigned int *line_ptr) | |
d1fad7c6 | 7131 | { |
b34976b6 | 7132 | bfd_boolean found; |
d1fad7c6 NC |
7133 | |
7134 | if (_bfd_dwarf1_find_nearest_line (abfd, section, symbols, offset, | |
4e8a9624 AM |
7135 | filename_ptr, functionname_ptr, |
7136 | line_ptr)) | |
d1fad7c6 NC |
7137 | { |
7138 | if (!*functionname_ptr) | |
4e8a9624 AM |
7139 | elf_find_function (abfd, section, symbols, offset, |
7140 | *filename_ptr ? NULL : filename_ptr, | |
7141 | functionname_ptr); | |
7142 | ||
b34976b6 | 7143 | return TRUE; |
d1fad7c6 NC |
7144 | } |
7145 | ||
7146 | if (_bfd_dwarf2_find_nearest_line (abfd, section, symbols, offset, | |
4e8a9624 AM |
7147 | filename_ptr, functionname_ptr, |
7148 | line_ptr, 0, | |
7149 | &elf_tdata (abfd)->dwarf2_find_line_info)) | |
d1fad7c6 NC |
7150 | { |
7151 | if (!*functionname_ptr) | |
4e8a9624 AM |
7152 | elf_find_function (abfd, section, symbols, offset, |
7153 | *filename_ptr ? NULL : filename_ptr, | |
7154 | functionname_ptr); | |
7155 | ||
b34976b6 | 7156 | return TRUE; |
d1fad7c6 NC |
7157 | } |
7158 | ||
7159 | if (! _bfd_stab_section_find_nearest_line (abfd, symbols, section, offset, | |
4e8a9624 AM |
7160 | &found, filename_ptr, |
7161 | functionname_ptr, line_ptr, | |
7162 | &elf_tdata (abfd)->line_info)) | |
b34976b6 | 7163 | return FALSE; |
dc43ada5 | 7164 | if (found && (*functionname_ptr || *line_ptr)) |
b34976b6 | 7165 | return TRUE; |
d1fad7c6 NC |
7166 | |
7167 | if (symbols == NULL) | |
b34976b6 | 7168 | return FALSE; |
d1fad7c6 NC |
7169 | |
7170 | if (! elf_find_function (abfd, section, symbols, offset, | |
4e8a9624 | 7171 | filename_ptr, functionname_ptr)) |
b34976b6 | 7172 | return FALSE; |
d1fad7c6 | 7173 | |
252b5132 | 7174 | *line_ptr = 0; |
b34976b6 | 7175 | return TRUE; |
252b5132 RH |
7176 | } |
7177 | ||
5420f73d L |
7178 | /* Find the line for a symbol. */ |
7179 | ||
7180 | bfd_boolean | |
7181 | _bfd_elf_find_line (bfd *abfd, asymbol **symbols, asymbol *symbol, | |
7182 | const char **filename_ptr, unsigned int *line_ptr) | |
7183 | { | |
7184 | return _bfd_dwarf2_find_line (abfd, symbols, symbol, | |
7185 | filename_ptr, line_ptr, 0, | |
7186 | &elf_tdata (abfd)->dwarf2_find_line_info); | |
7187 | } | |
7188 | ||
4ab527b0 FF |
7189 | /* After a call to bfd_find_nearest_line, successive calls to |
7190 | bfd_find_inliner_info can be used to get source information about | |
7191 | each level of function inlining that terminated at the address | |
7192 | passed to bfd_find_nearest_line. Currently this is only supported | |
7193 | for DWARF2 with appropriate DWARF3 extensions. */ | |
7194 | ||
7195 | bfd_boolean | |
7196 | _bfd_elf_find_inliner_info (bfd *abfd, | |
7197 | const char **filename_ptr, | |
7198 | const char **functionname_ptr, | |
7199 | unsigned int *line_ptr) | |
7200 | { | |
7201 | bfd_boolean found; | |
7202 | found = _bfd_dwarf2_find_inliner_info (abfd, filename_ptr, | |
7203 | functionname_ptr, line_ptr, | |
7204 | & elf_tdata (abfd)->dwarf2_find_line_info); | |
7205 | return found; | |
7206 | } | |
7207 | ||
252b5132 | 7208 | int |
a6b96beb | 7209 | _bfd_elf_sizeof_headers (bfd *abfd, struct bfd_link_info *info) |
252b5132 | 7210 | { |
8ded5a0f AM |
7211 | const struct elf_backend_data *bed = get_elf_backend_data (abfd); |
7212 | int ret = bed->s->sizeof_ehdr; | |
252b5132 | 7213 | |
a6b96beb | 7214 | if (!info->relocatable) |
8ded5a0f | 7215 | { |
62d7a5f6 | 7216 | bfd_size_type phdr_size = elf_tdata (abfd)->program_header_size; |
8ded5a0f | 7217 | |
62d7a5f6 AM |
7218 | if (phdr_size == (bfd_size_type) -1) |
7219 | { | |
7220 | struct elf_segment_map *m; | |
7221 | ||
7222 | phdr_size = 0; | |
7223 | for (m = elf_tdata (abfd)->segment_map; m != NULL; m = m->next) | |
7224 | phdr_size += bed->s->sizeof_phdr; | |
8ded5a0f | 7225 | |
62d7a5f6 AM |
7226 | if (phdr_size == 0) |
7227 | phdr_size = get_program_header_size (abfd, info); | |
7228 | } | |
8ded5a0f AM |
7229 | |
7230 | elf_tdata (abfd)->program_header_size = phdr_size; | |
7231 | ret += phdr_size; | |
7232 | } | |
7233 | ||
252b5132 RH |
7234 | return ret; |
7235 | } | |
7236 | ||
b34976b6 | 7237 | bfd_boolean |
217aa764 AM |
7238 | _bfd_elf_set_section_contents (bfd *abfd, |
7239 | sec_ptr section, | |
0f867abe | 7240 | const void *location, |
217aa764 AM |
7241 | file_ptr offset, |
7242 | bfd_size_type count) | |
252b5132 RH |
7243 | { |
7244 | Elf_Internal_Shdr *hdr; | |
dc810e39 | 7245 | bfd_signed_vma pos; |
252b5132 RH |
7246 | |
7247 | if (! abfd->output_has_begun | |
217aa764 | 7248 | && ! _bfd_elf_compute_section_file_positions (abfd, NULL)) |
b34976b6 | 7249 | return FALSE; |
252b5132 RH |
7250 | |
7251 | hdr = &elf_section_data (section)->this_hdr; | |
dc810e39 AM |
7252 | pos = hdr->sh_offset + offset; |
7253 | if (bfd_seek (abfd, pos, SEEK_SET) != 0 | |
7254 | || bfd_bwrite (location, count, abfd) != count) | |
b34976b6 | 7255 | return FALSE; |
252b5132 | 7256 | |
b34976b6 | 7257 | return TRUE; |
252b5132 RH |
7258 | } |
7259 | ||
7260 | void | |
217aa764 AM |
7261 | _bfd_elf_no_info_to_howto (bfd *abfd ATTRIBUTE_UNUSED, |
7262 | arelent *cache_ptr ATTRIBUTE_UNUSED, | |
7263 | Elf_Internal_Rela *dst ATTRIBUTE_UNUSED) | |
252b5132 RH |
7264 | { |
7265 | abort (); | |
7266 | } | |
7267 | ||
252b5132 RH |
7268 | /* Try to convert a non-ELF reloc into an ELF one. */ |
7269 | ||
b34976b6 | 7270 | bfd_boolean |
217aa764 | 7271 | _bfd_elf_validate_reloc (bfd *abfd, arelent *areloc) |
252b5132 | 7272 | { |
c044fabd | 7273 | /* Check whether we really have an ELF howto. */ |
252b5132 RH |
7274 | |
7275 | if ((*areloc->sym_ptr_ptr)->the_bfd->xvec != abfd->xvec) | |
7276 | { | |
7277 | bfd_reloc_code_real_type code; | |
7278 | reloc_howto_type *howto; | |
7279 | ||
7280 | /* Alien reloc: Try to determine its type to replace it with an | |
c044fabd | 7281 | equivalent ELF reloc. */ |
252b5132 RH |
7282 | |
7283 | if (areloc->howto->pc_relative) | |
7284 | { | |
7285 | switch (areloc->howto->bitsize) | |
7286 | { | |
7287 | case 8: | |
7288 | code = BFD_RELOC_8_PCREL; | |
7289 | break; | |
7290 | case 12: | |
7291 | code = BFD_RELOC_12_PCREL; | |
7292 | break; | |
7293 | case 16: | |
7294 | code = BFD_RELOC_16_PCREL; | |
7295 | break; | |
7296 | case 24: | |
7297 | code = BFD_RELOC_24_PCREL; | |
7298 | break; | |
7299 | case 32: | |
7300 | code = BFD_RELOC_32_PCREL; | |
7301 | break; | |
7302 | case 64: | |
7303 | code = BFD_RELOC_64_PCREL; | |
7304 | break; | |
7305 | default: | |
7306 | goto fail; | |
7307 | } | |
7308 | ||
7309 | howto = bfd_reloc_type_lookup (abfd, code); | |
7310 | ||
7311 | if (areloc->howto->pcrel_offset != howto->pcrel_offset) | |
7312 | { | |
7313 | if (howto->pcrel_offset) | |
7314 | areloc->addend += areloc->address; | |
7315 | else | |
7316 | areloc->addend -= areloc->address; /* addend is unsigned!! */ | |
7317 | } | |
7318 | } | |
7319 | else | |
7320 | { | |
7321 | switch (areloc->howto->bitsize) | |
7322 | { | |
7323 | case 8: | |
7324 | code = BFD_RELOC_8; | |
7325 | break; | |
7326 | case 14: | |
7327 | code = BFD_RELOC_14; | |
7328 | break; | |
7329 | case 16: | |
7330 | code = BFD_RELOC_16; | |
7331 | break; | |
7332 | case 26: | |
7333 | code = BFD_RELOC_26; | |
7334 | break; | |
7335 | case 32: | |
7336 | code = BFD_RELOC_32; | |
7337 | break; | |
7338 | case 64: | |
7339 | code = BFD_RELOC_64; | |
7340 | break; | |
7341 | default: | |
7342 | goto fail; | |
7343 | } | |
7344 | ||
7345 | howto = bfd_reloc_type_lookup (abfd, code); | |
7346 | } | |
7347 | ||
7348 | if (howto) | |
7349 | areloc->howto = howto; | |
7350 | else | |
7351 | goto fail; | |
7352 | } | |
7353 | ||
b34976b6 | 7354 | return TRUE; |
252b5132 RH |
7355 | |
7356 | fail: | |
7357 | (*_bfd_error_handler) | |
d003868e AM |
7358 | (_("%B: unsupported relocation type %s"), |
7359 | abfd, areloc->howto->name); | |
252b5132 | 7360 | bfd_set_error (bfd_error_bad_value); |
b34976b6 | 7361 | return FALSE; |
252b5132 RH |
7362 | } |
7363 | ||
b34976b6 | 7364 | bfd_boolean |
217aa764 | 7365 | _bfd_elf_close_and_cleanup (bfd *abfd) |
252b5132 RH |
7366 | { |
7367 | if (bfd_get_format (abfd) == bfd_object) | |
7368 | { | |
b25e3d87 | 7369 | if (elf_tdata (abfd) != NULL && elf_shstrtab (abfd) != NULL) |
2b0f7ef9 | 7370 | _bfd_elf_strtab_free (elf_shstrtab (abfd)); |
6f140a15 | 7371 | _bfd_dwarf2_cleanup_debug_info (abfd); |
252b5132 RH |
7372 | } |
7373 | ||
7374 | return _bfd_generic_close_and_cleanup (abfd); | |
7375 | } | |
7376 | ||
7377 | /* For Rel targets, we encode meaningful data for BFD_RELOC_VTABLE_ENTRY | |
7378 | in the relocation's offset. Thus we cannot allow any sort of sanity | |
7379 | range-checking to interfere. There is nothing else to do in processing | |
7380 | this reloc. */ | |
7381 | ||
7382 | bfd_reloc_status_type | |
217aa764 AM |
7383 | _bfd_elf_rel_vtable_reloc_fn |
7384 | (bfd *abfd ATTRIBUTE_UNUSED, arelent *re ATTRIBUTE_UNUSED, | |
fc0a2244 | 7385 | struct bfd_symbol *symbol ATTRIBUTE_UNUSED, |
217aa764 AM |
7386 | void *data ATTRIBUTE_UNUSED, asection *is ATTRIBUTE_UNUSED, |
7387 | bfd *obfd ATTRIBUTE_UNUSED, char **errmsg ATTRIBUTE_UNUSED) | |
252b5132 RH |
7388 | { |
7389 | return bfd_reloc_ok; | |
7390 | } | |
252b5132 RH |
7391 | \f |
7392 | /* Elf core file support. Much of this only works on native | |
7393 | toolchains, since we rely on knowing the | |
7394 | machine-dependent procfs structure in order to pick | |
c044fabd | 7395 | out details about the corefile. */ |
252b5132 RH |
7396 | |
7397 | #ifdef HAVE_SYS_PROCFS_H | |
7398 | # include <sys/procfs.h> | |
7399 | #endif | |
7400 | ||
c044fabd | 7401 | /* FIXME: this is kinda wrong, but it's what gdb wants. */ |
252b5132 RH |
7402 | |
7403 | static int | |
217aa764 | 7404 | elfcore_make_pid (bfd *abfd) |
252b5132 RH |
7405 | { |
7406 | return ((elf_tdata (abfd)->core_lwpid << 16) | |
7407 | + (elf_tdata (abfd)->core_pid)); | |
7408 | } | |
7409 | ||
252b5132 RH |
7410 | /* If there isn't a section called NAME, make one, using |
7411 | data from SECT. Note, this function will generate a | |
7412 | reference to NAME, so you shouldn't deallocate or | |
c044fabd | 7413 | overwrite it. */ |
252b5132 | 7414 | |
b34976b6 | 7415 | static bfd_boolean |
217aa764 | 7416 | elfcore_maybe_make_sect (bfd *abfd, char *name, asection *sect) |
252b5132 | 7417 | { |
c044fabd | 7418 | asection *sect2; |
252b5132 RH |
7419 | |
7420 | if (bfd_get_section_by_name (abfd, name) != NULL) | |
b34976b6 | 7421 | return TRUE; |
252b5132 | 7422 | |
117ed4f8 | 7423 | sect2 = bfd_make_section_with_flags (abfd, name, sect->flags); |
252b5132 | 7424 | if (sect2 == NULL) |
b34976b6 | 7425 | return FALSE; |
252b5132 | 7426 | |
eea6121a | 7427 | sect2->size = sect->size; |
252b5132 | 7428 | sect2->filepos = sect->filepos; |
252b5132 | 7429 | sect2->alignment_power = sect->alignment_power; |
b34976b6 | 7430 | return TRUE; |
252b5132 RH |
7431 | } |
7432 | ||
bb0082d6 AM |
7433 | /* Create a pseudosection containing SIZE bytes at FILEPOS. This |
7434 | actually creates up to two pseudosections: | |
7435 | - For the single-threaded case, a section named NAME, unless | |
7436 | such a section already exists. | |
7437 | - For the multi-threaded case, a section named "NAME/PID", where | |
7438 | PID is elfcore_make_pid (abfd). | |
7439 | Both pseudosections have identical contents. */ | |
b34976b6 | 7440 | bfd_boolean |
217aa764 AM |
7441 | _bfd_elfcore_make_pseudosection (bfd *abfd, |
7442 | char *name, | |
7443 | size_t size, | |
7444 | ufile_ptr filepos) | |
bb0082d6 AM |
7445 | { |
7446 | char buf[100]; | |
7447 | char *threaded_name; | |
d4c88bbb | 7448 | size_t len; |
bb0082d6 AM |
7449 | asection *sect; |
7450 | ||
7451 | /* Build the section name. */ | |
7452 | ||
7453 | sprintf (buf, "%s/%d", name, elfcore_make_pid (abfd)); | |
d4c88bbb | 7454 | len = strlen (buf) + 1; |
217aa764 | 7455 | threaded_name = bfd_alloc (abfd, len); |
bb0082d6 | 7456 | if (threaded_name == NULL) |
b34976b6 | 7457 | return FALSE; |
d4c88bbb | 7458 | memcpy (threaded_name, buf, len); |
bb0082d6 | 7459 | |
117ed4f8 AM |
7460 | sect = bfd_make_section_anyway_with_flags (abfd, threaded_name, |
7461 | SEC_HAS_CONTENTS); | |
bb0082d6 | 7462 | if (sect == NULL) |
b34976b6 | 7463 | return FALSE; |
eea6121a | 7464 | sect->size = size; |
bb0082d6 | 7465 | sect->filepos = filepos; |
bb0082d6 AM |
7466 | sect->alignment_power = 2; |
7467 | ||
936e320b | 7468 | return elfcore_maybe_make_sect (abfd, name, sect); |
bb0082d6 AM |
7469 | } |
7470 | ||
252b5132 | 7471 | /* prstatus_t exists on: |
4a938328 | 7472 | solaris 2.5+ |
252b5132 RH |
7473 | linux 2.[01] + glibc |
7474 | unixware 4.2 | |
7475 | */ | |
7476 | ||
7477 | #if defined (HAVE_PRSTATUS_T) | |
a7b97311 | 7478 | |
b34976b6 | 7479 | static bfd_boolean |
217aa764 | 7480 | elfcore_grok_prstatus (bfd *abfd, Elf_Internal_Note *note) |
252b5132 | 7481 | { |
eea6121a | 7482 | size_t size; |
7ee38065 | 7483 | int offset; |
252b5132 | 7484 | |
4a938328 MS |
7485 | if (note->descsz == sizeof (prstatus_t)) |
7486 | { | |
7487 | prstatus_t prstat; | |
252b5132 | 7488 | |
eea6121a | 7489 | size = sizeof (prstat.pr_reg); |
7ee38065 | 7490 | offset = offsetof (prstatus_t, pr_reg); |
4a938328 | 7491 | memcpy (&prstat, note->descdata, sizeof (prstat)); |
252b5132 | 7492 | |
fa49d224 NC |
7493 | /* Do not overwrite the core signal if it |
7494 | has already been set by another thread. */ | |
7495 | if (elf_tdata (abfd)->core_signal == 0) | |
7496 | elf_tdata (abfd)->core_signal = prstat.pr_cursig; | |
4a938328 | 7497 | elf_tdata (abfd)->core_pid = prstat.pr_pid; |
252b5132 | 7498 | |
4a938328 MS |
7499 | /* pr_who exists on: |
7500 | solaris 2.5+ | |
7501 | unixware 4.2 | |
7502 | pr_who doesn't exist on: | |
7503 | linux 2.[01] | |
7504 | */ | |
252b5132 | 7505 | #if defined (HAVE_PRSTATUS_T_PR_WHO) |
4a938328 | 7506 | elf_tdata (abfd)->core_lwpid = prstat.pr_who; |
252b5132 | 7507 | #endif |
4a938328 | 7508 | } |
7ee38065 | 7509 | #if defined (HAVE_PRSTATUS32_T) |
4a938328 MS |
7510 | else if (note->descsz == sizeof (prstatus32_t)) |
7511 | { | |
7512 | /* 64-bit host, 32-bit corefile */ | |
7513 | prstatus32_t prstat; | |
7514 | ||
eea6121a | 7515 | size = sizeof (prstat.pr_reg); |
7ee38065 | 7516 | offset = offsetof (prstatus32_t, pr_reg); |
4a938328 MS |
7517 | memcpy (&prstat, note->descdata, sizeof (prstat)); |
7518 | ||
fa49d224 NC |
7519 | /* Do not overwrite the core signal if it |
7520 | has already been set by another thread. */ | |
7521 | if (elf_tdata (abfd)->core_signal == 0) | |
7522 | elf_tdata (abfd)->core_signal = prstat.pr_cursig; | |
4a938328 MS |
7523 | elf_tdata (abfd)->core_pid = prstat.pr_pid; |
7524 | ||
7525 | /* pr_who exists on: | |
7526 | solaris 2.5+ | |
7527 | unixware 4.2 | |
7528 | pr_who doesn't exist on: | |
7529 | linux 2.[01] | |
7530 | */ | |
7ee38065 | 7531 | #if defined (HAVE_PRSTATUS32_T_PR_WHO) |
4a938328 MS |
7532 | elf_tdata (abfd)->core_lwpid = prstat.pr_who; |
7533 | #endif | |
7534 | } | |
7ee38065 | 7535 | #endif /* HAVE_PRSTATUS32_T */ |
4a938328 MS |
7536 | else |
7537 | { | |
7538 | /* Fail - we don't know how to handle any other | |
7539 | note size (ie. data object type). */ | |
b34976b6 | 7540 | return TRUE; |
4a938328 | 7541 | } |
252b5132 | 7542 | |
bb0082d6 | 7543 | /* Make a ".reg/999" section and a ".reg" section. */ |
936e320b | 7544 | return _bfd_elfcore_make_pseudosection (abfd, ".reg", |
eea6121a | 7545 | size, note->descpos + offset); |
252b5132 RH |
7546 | } |
7547 | #endif /* defined (HAVE_PRSTATUS_T) */ | |
7548 | ||
bb0082d6 | 7549 | /* Create a pseudosection containing the exact contents of NOTE. */ |
b34976b6 | 7550 | static bfd_boolean |
217aa764 AM |
7551 | elfcore_make_note_pseudosection (bfd *abfd, |
7552 | char *name, | |
7553 | Elf_Internal_Note *note) | |
252b5132 | 7554 | { |
936e320b AM |
7555 | return _bfd_elfcore_make_pseudosection (abfd, name, |
7556 | note->descsz, note->descpos); | |
252b5132 RH |
7557 | } |
7558 | ||
ff08c6bb JB |
7559 | /* There isn't a consistent prfpregset_t across platforms, |
7560 | but it doesn't matter, because we don't have to pick this | |
c044fabd KH |
7561 | data structure apart. */ |
7562 | ||
b34976b6 | 7563 | static bfd_boolean |
217aa764 | 7564 | elfcore_grok_prfpreg (bfd *abfd, Elf_Internal_Note *note) |
ff08c6bb JB |
7565 | { |
7566 | return elfcore_make_note_pseudosection (abfd, ".reg2", note); | |
7567 | } | |
7568 | ||
ff08c6bb | 7569 | /* Linux dumps the Intel SSE regs in a note named "LINUX" with a note |
971d4640 | 7570 | type of NT_PRXFPREG. Just include the whole note's contents |
ff08c6bb | 7571 | literally. */ |
c044fabd | 7572 | |
b34976b6 | 7573 | static bfd_boolean |
217aa764 | 7574 | elfcore_grok_prxfpreg (bfd *abfd, Elf_Internal_Note *note) |
ff08c6bb JB |
7575 | { |
7576 | return elfcore_make_note_pseudosection (abfd, ".reg-xfp", note); | |
7577 | } | |
7578 | ||
97753bd5 AM |
7579 | static bfd_boolean |
7580 | elfcore_grok_ppc_vmx (bfd *abfd, Elf_Internal_Note *note) | |
7581 | { | |
7582 | return elfcore_make_note_pseudosection (abfd, ".reg-ppc-vmx", note); | |
7583 | } | |
7584 | ||
89eeb0bc LM |
7585 | static bfd_boolean |
7586 | elfcore_grok_ppc_vsx (bfd *abfd, Elf_Internal_Note *note) | |
7587 | { | |
7588 | return elfcore_make_note_pseudosection (abfd, ".reg-ppc-vsx", note); | |
7589 | } | |
97753bd5 | 7590 | |
252b5132 | 7591 | #if defined (HAVE_PRPSINFO_T) |
4a938328 | 7592 | typedef prpsinfo_t elfcore_psinfo_t; |
7ee38065 | 7593 | #if defined (HAVE_PRPSINFO32_T) /* Sparc64 cross Sparc32 */ |
4a938328 MS |
7594 | typedef prpsinfo32_t elfcore_psinfo32_t; |
7595 | #endif | |
252b5132 RH |
7596 | #endif |
7597 | ||
7598 | #if defined (HAVE_PSINFO_T) | |
4a938328 | 7599 | typedef psinfo_t elfcore_psinfo_t; |
7ee38065 | 7600 | #if defined (HAVE_PSINFO32_T) /* Sparc64 cross Sparc32 */ |
4a938328 MS |
7601 | typedef psinfo32_t elfcore_psinfo32_t; |
7602 | #endif | |
252b5132 RH |
7603 | #endif |
7604 | ||
252b5132 RH |
7605 | /* return a malloc'ed copy of a string at START which is at |
7606 | most MAX bytes long, possibly without a terminating '\0'. | |
c044fabd | 7607 | the copy will always have a terminating '\0'. */ |
252b5132 | 7608 | |
936e320b | 7609 | char * |
217aa764 | 7610 | _bfd_elfcore_strndup (bfd *abfd, char *start, size_t max) |
252b5132 | 7611 | { |
dc810e39 | 7612 | char *dups; |
c044fabd | 7613 | char *end = memchr (start, '\0', max); |
dc810e39 | 7614 | size_t len; |
252b5132 RH |
7615 | |
7616 | if (end == NULL) | |
7617 | len = max; | |
7618 | else | |
7619 | len = end - start; | |
7620 | ||
217aa764 | 7621 | dups = bfd_alloc (abfd, len + 1); |
dc810e39 | 7622 | if (dups == NULL) |
252b5132 RH |
7623 | return NULL; |
7624 | ||
dc810e39 AM |
7625 | memcpy (dups, start, len); |
7626 | dups[len] = '\0'; | |
252b5132 | 7627 | |
dc810e39 | 7628 | return dups; |
252b5132 RH |
7629 | } |
7630 | ||
bb0082d6 | 7631 | #if defined (HAVE_PRPSINFO_T) || defined (HAVE_PSINFO_T) |
b34976b6 | 7632 | static bfd_boolean |
217aa764 | 7633 | elfcore_grok_psinfo (bfd *abfd, Elf_Internal_Note *note) |
252b5132 | 7634 | { |
4a938328 MS |
7635 | if (note->descsz == sizeof (elfcore_psinfo_t)) |
7636 | { | |
7637 | elfcore_psinfo_t psinfo; | |
252b5132 | 7638 | |
7ee38065 | 7639 | memcpy (&psinfo, note->descdata, sizeof (psinfo)); |
252b5132 | 7640 | |
4a938328 | 7641 | elf_tdata (abfd)->core_program |
936e320b AM |
7642 | = _bfd_elfcore_strndup (abfd, psinfo.pr_fname, |
7643 | sizeof (psinfo.pr_fname)); | |
252b5132 | 7644 | |
4a938328 | 7645 | elf_tdata (abfd)->core_command |
936e320b AM |
7646 | = _bfd_elfcore_strndup (abfd, psinfo.pr_psargs, |
7647 | sizeof (psinfo.pr_psargs)); | |
4a938328 | 7648 | } |
7ee38065 | 7649 | #if defined (HAVE_PRPSINFO32_T) || defined (HAVE_PSINFO32_T) |
4a938328 MS |
7650 | else if (note->descsz == sizeof (elfcore_psinfo32_t)) |
7651 | { | |
7652 | /* 64-bit host, 32-bit corefile */ | |
7653 | elfcore_psinfo32_t psinfo; | |
7654 | ||
7ee38065 | 7655 | memcpy (&psinfo, note->descdata, sizeof (psinfo)); |
252b5132 | 7656 | |
4a938328 | 7657 | elf_tdata (abfd)->core_program |
936e320b AM |
7658 | = _bfd_elfcore_strndup (abfd, psinfo.pr_fname, |
7659 | sizeof (psinfo.pr_fname)); | |
4a938328 MS |
7660 | |
7661 | elf_tdata (abfd)->core_command | |
936e320b AM |
7662 | = _bfd_elfcore_strndup (abfd, psinfo.pr_psargs, |
7663 | sizeof (psinfo.pr_psargs)); | |
4a938328 MS |
7664 | } |
7665 | #endif | |
7666 | ||
7667 | else | |
7668 | { | |
7669 | /* Fail - we don't know how to handle any other | |
7670 | note size (ie. data object type). */ | |
b34976b6 | 7671 | return TRUE; |
4a938328 | 7672 | } |
252b5132 RH |
7673 | |
7674 | /* Note that for some reason, a spurious space is tacked | |
7675 | onto the end of the args in some (at least one anyway) | |
c044fabd | 7676 | implementations, so strip it off if it exists. */ |
252b5132 RH |
7677 | |
7678 | { | |
c044fabd | 7679 | char *command = elf_tdata (abfd)->core_command; |
252b5132 RH |
7680 | int n = strlen (command); |
7681 | ||
7682 | if (0 < n && command[n - 1] == ' ') | |
7683 | command[n - 1] = '\0'; | |
7684 | } | |
7685 | ||
b34976b6 | 7686 | return TRUE; |
252b5132 RH |
7687 | } |
7688 | #endif /* defined (HAVE_PRPSINFO_T) || defined (HAVE_PSINFO_T) */ | |
7689 | ||
252b5132 | 7690 | #if defined (HAVE_PSTATUS_T) |
b34976b6 | 7691 | static bfd_boolean |
217aa764 | 7692 | elfcore_grok_pstatus (bfd *abfd, Elf_Internal_Note *note) |
252b5132 | 7693 | { |
f572a39d AM |
7694 | if (note->descsz == sizeof (pstatus_t) |
7695 | #if defined (HAVE_PXSTATUS_T) | |
7696 | || note->descsz == sizeof (pxstatus_t) | |
7697 | #endif | |
7698 | ) | |
4a938328 MS |
7699 | { |
7700 | pstatus_t pstat; | |
252b5132 | 7701 | |
4a938328 | 7702 | memcpy (&pstat, note->descdata, sizeof (pstat)); |
252b5132 | 7703 | |
4a938328 MS |
7704 | elf_tdata (abfd)->core_pid = pstat.pr_pid; |
7705 | } | |
7ee38065 | 7706 | #if defined (HAVE_PSTATUS32_T) |
4a938328 MS |
7707 | else if (note->descsz == sizeof (pstatus32_t)) |
7708 | { | |
7709 | /* 64-bit host, 32-bit corefile */ | |
7710 | pstatus32_t pstat; | |
252b5132 | 7711 | |
4a938328 | 7712 | memcpy (&pstat, note->descdata, sizeof (pstat)); |
252b5132 | 7713 | |
4a938328 MS |
7714 | elf_tdata (abfd)->core_pid = pstat.pr_pid; |
7715 | } | |
7716 | #endif | |
252b5132 RH |
7717 | /* Could grab some more details from the "representative" |
7718 | lwpstatus_t in pstat.pr_lwp, but we'll catch it all in an | |
c044fabd | 7719 | NT_LWPSTATUS note, presumably. */ |
252b5132 | 7720 | |
b34976b6 | 7721 | return TRUE; |
252b5132 RH |
7722 | } |
7723 | #endif /* defined (HAVE_PSTATUS_T) */ | |
7724 | ||
252b5132 | 7725 | #if defined (HAVE_LWPSTATUS_T) |
b34976b6 | 7726 | static bfd_boolean |
217aa764 | 7727 | elfcore_grok_lwpstatus (bfd *abfd, Elf_Internal_Note *note) |
252b5132 RH |
7728 | { |
7729 | lwpstatus_t lwpstat; | |
7730 | char buf[100]; | |
c044fabd | 7731 | char *name; |
d4c88bbb | 7732 | size_t len; |
c044fabd | 7733 | asection *sect; |
252b5132 | 7734 | |
f572a39d AM |
7735 | if (note->descsz != sizeof (lwpstat) |
7736 | #if defined (HAVE_LWPXSTATUS_T) | |
7737 | && note->descsz != sizeof (lwpxstatus_t) | |
7738 | #endif | |
7739 | ) | |
b34976b6 | 7740 | return TRUE; |
252b5132 RH |
7741 | |
7742 | memcpy (&lwpstat, note->descdata, sizeof (lwpstat)); | |
7743 | ||
7744 | elf_tdata (abfd)->core_lwpid = lwpstat.pr_lwpid; | |
7745 | elf_tdata (abfd)->core_signal = lwpstat.pr_cursig; | |
7746 | ||
c044fabd | 7747 | /* Make a ".reg/999" section. */ |
252b5132 RH |
7748 | |
7749 | sprintf (buf, ".reg/%d", elfcore_make_pid (abfd)); | |
d4c88bbb | 7750 | len = strlen (buf) + 1; |
217aa764 | 7751 | name = bfd_alloc (abfd, len); |
252b5132 | 7752 | if (name == NULL) |
b34976b6 | 7753 | return FALSE; |
d4c88bbb | 7754 | memcpy (name, buf, len); |
252b5132 | 7755 | |
117ed4f8 | 7756 | sect = bfd_make_section_anyway_with_flags (abfd, name, SEC_HAS_CONTENTS); |
252b5132 | 7757 | if (sect == NULL) |
b34976b6 | 7758 | return FALSE; |
252b5132 RH |
7759 | |
7760 | #if defined (HAVE_LWPSTATUS_T_PR_CONTEXT) | |
eea6121a | 7761 | sect->size = sizeof (lwpstat.pr_context.uc_mcontext.gregs); |
252b5132 RH |
7762 | sect->filepos = note->descpos |
7763 | + offsetof (lwpstatus_t, pr_context.uc_mcontext.gregs); | |
7764 | #endif | |
7765 | ||
7766 | #if defined (HAVE_LWPSTATUS_T_PR_REG) | |
eea6121a | 7767 | sect->size = sizeof (lwpstat.pr_reg); |
252b5132 RH |
7768 | sect->filepos = note->descpos + offsetof (lwpstatus_t, pr_reg); |
7769 | #endif | |
7770 | ||
252b5132 RH |
7771 | sect->alignment_power = 2; |
7772 | ||
7773 | if (!elfcore_maybe_make_sect (abfd, ".reg", sect)) | |
b34976b6 | 7774 | return FALSE; |
252b5132 RH |
7775 | |
7776 | /* Make a ".reg2/999" section */ | |
7777 | ||
7778 | sprintf (buf, ".reg2/%d", elfcore_make_pid (abfd)); | |
d4c88bbb | 7779 | len = strlen (buf) + 1; |
217aa764 | 7780 | name = bfd_alloc (abfd, len); |
252b5132 | 7781 | if (name == NULL) |
b34976b6 | 7782 | return FALSE; |
d4c88bbb | 7783 | memcpy (name, buf, len); |
252b5132 | 7784 | |
117ed4f8 | 7785 | sect = bfd_make_section_anyway_with_flags (abfd, name, SEC_HAS_CONTENTS); |
252b5132 | 7786 | if (sect == NULL) |
b34976b6 | 7787 | return FALSE; |
252b5132 RH |
7788 | |
7789 | #if defined (HAVE_LWPSTATUS_T_PR_CONTEXT) | |
eea6121a | 7790 | sect->size = sizeof (lwpstat.pr_context.uc_mcontext.fpregs); |
252b5132 RH |
7791 | sect->filepos = note->descpos |
7792 | + offsetof (lwpstatus_t, pr_context.uc_mcontext.fpregs); | |
7793 | #endif | |
7794 | ||
7795 | #if defined (HAVE_LWPSTATUS_T_PR_FPREG) | |
eea6121a | 7796 | sect->size = sizeof (lwpstat.pr_fpreg); |
252b5132 RH |
7797 | sect->filepos = note->descpos + offsetof (lwpstatus_t, pr_fpreg); |
7798 | #endif | |
7799 | ||
252b5132 RH |
7800 | sect->alignment_power = 2; |
7801 | ||
936e320b | 7802 | return elfcore_maybe_make_sect (abfd, ".reg2", sect); |
252b5132 RH |
7803 | } |
7804 | #endif /* defined (HAVE_LWPSTATUS_T) */ | |
7805 | ||
b34976b6 | 7806 | static bfd_boolean |
217aa764 | 7807 | elfcore_grok_win32pstatus (bfd *abfd, Elf_Internal_Note *note) |
16e9c715 NC |
7808 | { |
7809 | char buf[30]; | |
c044fabd | 7810 | char *name; |
d4c88bbb | 7811 | size_t len; |
c044fabd | 7812 | asection *sect; |
4a6636fb PA |
7813 | int type; |
7814 | int is_active_thread; | |
7815 | bfd_vma base_addr; | |
16e9c715 | 7816 | |
4a6636fb | 7817 | if (note->descsz < 728) |
b34976b6 | 7818 | return TRUE; |
16e9c715 | 7819 | |
4a6636fb PA |
7820 | if (! CONST_STRNEQ (note->namedata, "win32")) |
7821 | return TRUE; | |
7822 | ||
7823 | type = bfd_get_32 (abfd, note->descdata); | |
c044fabd | 7824 | |
4a6636fb | 7825 | switch (type) |
16e9c715 | 7826 | { |
4a6636fb | 7827 | case 1 /* NOTE_INFO_PROCESS */: |
16e9c715 | 7828 | /* FIXME: need to add ->core_command. */ |
4a6636fb PA |
7829 | /* process_info.pid */ |
7830 | elf_tdata (abfd)->core_pid = bfd_get_32 (abfd, note->descdata + 8); | |
7831 | /* process_info.signal */ | |
7832 | elf_tdata (abfd)->core_signal = bfd_get_32 (abfd, note->descdata + 12); | |
c044fabd | 7833 | break; |
16e9c715 | 7834 | |
4a6636fb | 7835 | case 2 /* NOTE_INFO_THREAD */: |
16e9c715 | 7836 | /* Make a ".reg/999" section. */ |
4a6636fb PA |
7837 | /* thread_info.tid */ |
7838 | sprintf (buf, ".reg/%ld", (long) bfd_get_32 (abfd, note->descdata + 8)); | |
c044fabd | 7839 | |
d4c88bbb | 7840 | len = strlen (buf) + 1; |
217aa764 | 7841 | name = bfd_alloc (abfd, len); |
16e9c715 | 7842 | if (name == NULL) |
b34976b6 | 7843 | return FALSE; |
c044fabd | 7844 | |
d4c88bbb | 7845 | memcpy (name, buf, len); |
16e9c715 | 7846 | |
117ed4f8 | 7847 | sect = bfd_make_section_anyway_with_flags (abfd, name, SEC_HAS_CONTENTS); |
16e9c715 | 7848 | if (sect == NULL) |
b34976b6 | 7849 | return FALSE; |
c044fabd | 7850 | |
4a6636fb PA |
7851 | /* sizeof (thread_info.thread_context) */ |
7852 | sect->size = 716; | |
7853 | /* offsetof (thread_info.thread_context) */ | |
7854 | sect->filepos = note->descpos + 12; | |
16e9c715 NC |
7855 | sect->alignment_power = 2; |
7856 | ||
4a6636fb PA |
7857 | /* thread_info.is_active_thread */ |
7858 | is_active_thread = bfd_get_32 (abfd, note->descdata + 8); | |
7859 | ||
7860 | if (is_active_thread) | |
16e9c715 | 7861 | if (! elfcore_maybe_make_sect (abfd, ".reg", sect)) |
b34976b6 | 7862 | return FALSE; |
16e9c715 NC |
7863 | break; |
7864 | ||
4a6636fb | 7865 | case 3 /* NOTE_INFO_MODULE */: |
16e9c715 | 7866 | /* Make a ".module/xxxxxxxx" section. */ |
4a6636fb PA |
7867 | /* module_info.base_address */ |
7868 | base_addr = bfd_get_32 (abfd, note->descdata + 4); | |
0af1713e | 7869 | sprintf (buf, ".module/%08lx", (unsigned long) base_addr); |
c044fabd | 7870 | |
d4c88bbb | 7871 | len = strlen (buf) + 1; |
217aa764 | 7872 | name = bfd_alloc (abfd, len); |
16e9c715 | 7873 | if (name == NULL) |
b34976b6 | 7874 | return FALSE; |
c044fabd | 7875 | |
d4c88bbb | 7876 | memcpy (name, buf, len); |
252b5132 | 7877 | |
117ed4f8 | 7878 | sect = bfd_make_section_anyway_with_flags (abfd, name, SEC_HAS_CONTENTS); |
c044fabd | 7879 | |
16e9c715 | 7880 | if (sect == NULL) |
b34976b6 | 7881 | return FALSE; |
c044fabd | 7882 | |
eea6121a | 7883 | sect->size = note->descsz; |
16e9c715 | 7884 | sect->filepos = note->descpos; |
16e9c715 NC |
7885 | sect->alignment_power = 2; |
7886 | break; | |
7887 | ||
7888 | default: | |
b34976b6 | 7889 | return TRUE; |
16e9c715 NC |
7890 | } |
7891 | ||
b34976b6 | 7892 | return TRUE; |
16e9c715 | 7893 | } |
252b5132 | 7894 | |
b34976b6 | 7895 | static bfd_boolean |
217aa764 | 7896 | elfcore_grok_note (bfd *abfd, Elf_Internal_Note *note) |
252b5132 | 7897 | { |
9c5bfbb7 | 7898 | const struct elf_backend_data *bed = get_elf_backend_data (abfd); |
bb0082d6 | 7899 | |
252b5132 RH |
7900 | switch (note->type) |
7901 | { | |
7902 | default: | |
b34976b6 | 7903 | return TRUE; |
252b5132 | 7904 | |
252b5132 | 7905 | case NT_PRSTATUS: |
bb0082d6 AM |
7906 | if (bed->elf_backend_grok_prstatus) |
7907 | if ((*bed->elf_backend_grok_prstatus) (abfd, note)) | |
b34976b6 | 7908 | return TRUE; |
bb0082d6 | 7909 | #if defined (HAVE_PRSTATUS_T) |
252b5132 | 7910 | return elfcore_grok_prstatus (abfd, note); |
bb0082d6 | 7911 | #else |
b34976b6 | 7912 | return TRUE; |
252b5132 RH |
7913 | #endif |
7914 | ||
7915 | #if defined (HAVE_PSTATUS_T) | |
7916 | case NT_PSTATUS: | |
7917 | return elfcore_grok_pstatus (abfd, note); | |
7918 | #endif | |
7919 | ||
7920 | #if defined (HAVE_LWPSTATUS_T) | |
7921 | case NT_LWPSTATUS: | |
7922 | return elfcore_grok_lwpstatus (abfd, note); | |
7923 | #endif | |
7924 | ||
7925 | case NT_FPREGSET: /* FIXME: rename to NT_PRFPREG */ | |
7926 | return elfcore_grok_prfpreg (abfd, note); | |
7927 | ||
c044fabd | 7928 | case NT_WIN32PSTATUS: |
16e9c715 | 7929 | return elfcore_grok_win32pstatus (abfd, note); |
16e9c715 | 7930 | |
c044fabd | 7931 | case NT_PRXFPREG: /* Linux SSE extension */ |
e377ab71 MK |
7932 | if (note->namesz == 6 |
7933 | && strcmp (note->namedata, "LINUX") == 0) | |
ff08c6bb JB |
7934 | return elfcore_grok_prxfpreg (abfd, note); |
7935 | else | |
b34976b6 | 7936 | return TRUE; |
ff08c6bb | 7937 | |
97753bd5 AM |
7938 | case NT_PPC_VMX: |
7939 | if (note->namesz == 6 | |
7940 | && strcmp (note->namedata, "LINUX") == 0) | |
7941 | return elfcore_grok_ppc_vmx (abfd, note); | |
7942 | else | |
7943 | return TRUE; | |
7944 | ||
89eeb0bc LM |
7945 | case NT_PPC_VSX: |
7946 | if (note->namesz == 6 | |
7947 | && strcmp (note->namedata, "LINUX") == 0) | |
7948 | return elfcore_grok_ppc_vsx (abfd, note); | |
7949 | else | |
7950 | return TRUE; | |
7951 | ||
252b5132 RH |
7952 | case NT_PRPSINFO: |
7953 | case NT_PSINFO: | |
bb0082d6 AM |
7954 | if (bed->elf_backend_grok_psinfo) |
7955 | if ((*bed->elf_backend_grok_psinfo) (abfd, note)) | |
b34976b6 | 7956 | return TRUE; |
bb0082d6 | 7957 | #if defined (HAVE_PRPSINFO_T) || defined (HAVE_PSINFO_T) |
252b5132 | 7958 | return elfcore_grok_psinfo (abfd, note); |
bb0082d6 | 7959 | #else |
b34976b6 | 7960 | return TRUE; |
252b5132 | 7961 | #endif |
3333a7c3 RM |
7962 | |
7963 | case NT_AUXV: | |
7964 | { | |
117ed4f8 AM |
7965 | asection *sect = bfd_make_section_anyway_with_flags (abfd, ".auxv", |
7966 | SEC_HAS_CONTENTS); | |
3333a7c3 RM |
7967 | |
7968 | if (sect == NULL) | |
7969 | return FALSE; | |
eea6121a | 7970 | sect->size = note->descsz; |
3333a7c3 | 7971 | sect->filepos = note->descpos; |
3333a7c3 RM |
7972 | sect->alignment_power = 1 + bfd_get_arch_size (abfd) / 32; |
7973 | ||
7974 | return TRUE; | |
7975 | } | |
252b5132 RH |
7976 | } |
7977 | } | |
7978 | ||
718175fa JK |
7979 | static bfd_boolean |
7980 | elfobj_grok_gnu_build_id (bfd *abfd, Elf_Internal_Note *note) | |
7981 | { | |
7982 | elf_tdata (abfd)->build_id_size = note->descsz; | |
7983 | elf_tdata (abfd)->build_id = bfd_alloc (abfd, note->descsz); | |
7984 | if (elf_tdata (abfd)->build_id == NULL) | |
7985 | return FALSE; | |
7986 | ||
7987 | memcpy (elf_tdata (abfd)->build_id, note->descdata, note->descsz); | |
7988 | ||
7989 | return TRUE; | |
7990 | } | |
7991 | ||
7992 | static bfd_boolean | |
7993 | elfobj_grok_gnu_note (bfd *abfd, Elf_Internal_Note *note) | |
7994 | { | |
7995 | switch (note->type) | |
7996 | { | |
7997 | default: | |
7998 | return TRUE; | |
7999 | ||
8000 | case NT_GNU_BUILD_ID: | |
8001 | return elfobj_grok_gnu_build_id (abfd, note); | |
8002 | } | |
8003 | } | |
8004 | ||
b34976b6 | 8005 | static bfd_boolean |
217aa764 | 8006 | elfcore_netbsd_get_lwpid (Elf_Internal_Note *note, int *lwpidp) |
50b2bdb7 AM |
8007 | { |
8008 | char *cp; | |
8009 | ||
8010 | cp = strchr (note->namedata, '@'); | |
8011 | if (cp != NULL) | |
8012 | { | |
d2b64500 | 8013 | *lwpidp = atoi(cp + 1); |
b34976b6 | 8014 | return TRUE; |
50b2bdb7 | 8015 | } |
b34976b6 | 8016 | return FALSE; |
50b2bdb7 AM |
8017 | } |
8018 | ||
b34976b6 | 8019 | static bfd_boolean |
217aa764 | 8020 | elfcore_grok_netbsd_procinfo (bfd *abfd, Elf_Internal_Note *note) |
50b2bdb7 | 8021 | { |
50b2bdb7 AM |
8022 | /* Signal number at offset 0x08. */ |
8023 | elf_tdata (abfd)->core_signal | |
8024 | = bfd_h_get_32 (abfd, (bfd_byte *) note->descdata + 0x08); | |
8025 | ||
8026 | /* Process ID at offset 0x50. */ | |
8027 | elf_tdata (abfd)->core_pid | |
8028 | = bfd_h_get_32 (abfd, (bfd_byte *) note->descdata + 0x50); | |
8029 | ||
8030 | /* Command name at 0x7c (max 32 bytes, including nul). */ | |
8031 | elf_tdata (abfd)->core_command | |
8032 | = _bfd_elfcore_strndup (abfd, note->descdata + 0x7c, 31); | |
8033 | ||
7720ba9f MK |
8034 | return elfcore_make_note_pseudosection (abfd, ".note.netbsdcore.procinfo", |
8035 | note); | |
50b2bdb7 AM |
8036 | } |
8037 | ||
b34976b6 | 8038 | static bfd_boolean |
217aa764 | 8039 | elfcore_grok_netbsd_note (bfd *abfd, Elf_Internal_Note *note) |
50b2bdb7 AM |
8040 | { |
8041 | int lwp; | |
8042 | ||
8043 | if (elfcore_netbsd_get_lwpid (note, &lwp)) | |
8044 | elf_tdata (abfd)->core_lwpid = lwp; | |
8045 | ||
b4db1224 | 8046 | if (note->type == NT_NETBSDCORE_PROCINFO) |
50b2bdb7 AM |
8047 | { |
8048 | /* NetBSD-specific core "procinfo". Note that we expect to | |
08a40648 AM |
8049 | find this note before any of the others, which is fine, |
8050 | since the kernel writes this note out first when it | |
8051 | creates a core file. */ | |
47d9a591 | 8052 | |
50b2bdb7 AM |
8053 | return elfcore_grok_netbsd_procinfo (abfd, note); |
8054 | } | |
8055 | ||
b4db1224 JT |
8056 | /* As of Jan 2002 there are no other machine-independent notes |
8057 | defined for NetBSD core files. If the note type is less | |
8058 | than the start of the machine-dependent note types, we don't | |
8059 | understand it. */ | |
47d9a591 | 8060 | |
b4db1224 | 8061 | if (note->type < NT_NETBSDCORE_FIRSTMACH) |
b34976b6 | 8062 | return TRUE; |
50b2bdb7 AM |
8063 | |
8064 | ||
8065 | switch (bfd_get_arch (abfd)) | |
8066 | { | |
08a40648 AM |
8067 | /* On the Alpha, SPARC (32-bit and 64-bit), PT_GETREGS == mach+0 and |
8068 | PT_GETFPREGS == mach+2. */ | |
50b2bdb7 AM |
8069 | |
8070 | case bfd_arch_alpha: | |
8071 | case bfd_arch_sparc: | |
8072 | switch (note->type) | |
08a40648 AM |
8073 | { |
8074 | case NT_NETBSDCORE_FIRSTMACH+0: | |
8075 | return elfcore_make_note_pseudosection (abfd, ".reg", note); | |
50b2bdb7 | 8076 | |
08a40648 AM |
8077 | case NT_NETBSDCORE_FIRSTMACH+2: |
8078 | return elfcore_make_note_pseudosection (abfd, ".reg2", note); | |
50b2bdb7 | 8079 | |
08a40648 AM |
8080 | default: |
8081 | return TRUE; | |
8082 | } | |
50b2bdb7 | 8083 | |
08a40648 AM |
8084 | /* On all other arch's, PT_GETREGS == mach+1 and |
8085 | PT_GETFPREGS == mach+3. */ | |
50b2bdb7 AM |
8086 | |
8087 | default: | |
8088 | switch (note->type) | |
08a40648 AM |
8089 | { |
8090 | case NT_NETBSDCORE_FIRSTMACH+1: | |
8091 | return elfcore_make_note_pseudosection (abfd, ".reg", note); | |
50b2bdb7 | 8092 | |
08a40648 AM |
8093 | case NT_NETBSDCORE_FIRSTMACH+3: |
8094 | return elfcore_make_note_pseudosection (abfd, ".reg2", note); | |
50b2bdb7 | 8095 | |
08a40648 AM |
8096 | default: |
8097 | return TRUE; | |
8098 | } | |
50b2bdb7 AM |
8099 | } |
8100 | /* NOTREACHED */ | |
8101 | } | |
8102 | ||
67cc5033 MK |
8103 | static bfd_boolean |
8104 | elfcore_grok_openbsd_procinfo (bfd *abfd, Elf_Internal_Note *note) | |
8105 | { | |
8106 | /* Signal number at offset 0x08. */ | |
8107 | elf_tdata (abfd)->core_signal | |
8108 | = bfd_h_get_32 (abfd, (bfd_byte *) note->descdata + 0x08); | |
8109 | ||
8110 | /* Process ID at offset 0x20. */ | |
8111 | elf_tdata (abfd)->core_pid | |
8112 | = bfd_h_get_32 (abfd, (bfd_byte *) note->descdata + 0x20); | |
8113 | ||
8114 | /* Command name at 0x48 (max 32 bytes, including nul). */ | |
8115 | elf_tdata (abfd)->core_command | |
8116 | = _bfd_elfcore_strndup (abfd, note->descdata + 0x48, 31); | |
8117 | ||
8118 | return TRUE; | |
8119 | } | |
8120 | ||
8121 | static bfd_boolean | |
8122 | elfcore_grok_openbsd_note (bfd *abfd, Elf_Internal_Note *note) | |
8123 | { | |
8124 | if (note->type == NT_OPENBSD_PROCINFO) | |
8125 | return elfcore_grok_openbsd_procinfo (abfd, note); | |
8126 | ||
8127 | if (note->type == NT_OPENBSD_REGS) | |
8128 | return elfcore_make_note_pseudosection (abfd, ".reg", note); | |
8129 | ||
8130 | if (note->type == NT_OPENBSD_FPREGS) | |
8131 | return elfcore_make_note_pseudosection (abfd, ".reg2", note); | |
8132 | ||
8133 | if (note->type == NT_OPENBSD_XFPREGS) | |
8134 | return elfcore_make_note_pseudosection (abfd, ".reg-xfp", note); | |
8135 | ||
8136 | if (note->type == NT_OPENBSD_AUXV) | |
8137 | { | |
8138 | asection *sect = bfd_make_section_anyway_with_flags (abfd, ".auxv", | |
8139 | SEC_HAS_CONTENTS); | |
8140 | ||
8141 | if (sect == NULL) | |
8142 | return FALSE; | |
8143 | sect->size = note->descsz; | |
8144 | sect->filepos = note->descpos; | |
8145 | sect->alignment_power = 1 + bfd_get_arch_size (abfd) / 32; | |
8146 | ||
8147 | return TRUE; | |
8148 | } | |
8149 | ||
8150 | if (note->type == NT_OPENBSD_WCOOKIE) | |
8151 | { | |
8152 | asection *sect = bfd_make_section_anyway_with_flags (abfd, ".wcookie", | |
8153 | SEC_HAS_CONTENTS); | |
8154 | ||
8155 | if (sect == NULL) | |
8156 | return FALSE; | |
8157 | sect->size = note->descsz; | |
8158 | sect->filepos = note->descpos; | |
8159 | sect->alignment_power = 1 + bfd_get_arch_size (abfd) / 32; | |
8160 | ||
8161 | return TRUE; | |
8162 | } | |
8163 | ||
8164 | return TRUE; | |
8165 | } | |
8166 | ||
07c6e936 | 8167 | static bfd_boolean |
d3fd4074 | 8168 | elfcore_grok_nto_status (bfd *abfd, Elf_Internal_Note *note, long *tid) |
07c6e936 NC |
8169 | { |
8170 | void *ddata = note->descdata; | |
8171 | char buf[100]; | |
8172 | char *name; | |
8173 | asection *sect; | |
f8843e87 AM |
8174 | short sig; |
8175 | unsigned flags; | |
07c6e936 NC |
8176 | |
8177 | /* nto_procfs_status 'pid' field is at offset 0. */ | |
8178 | elf_tdata (abfd)->core_pid = bfd_get_32 (abfd, (bfd_byte *) ddata); | |
8179 | ||
f8843e87 AM |
8180 | /* nto_procfs_status 'tid' field is at offset 4. Pass it back. */ |
8181 | *tid = bfd_get_32 (abfd, (bfd_byte *) ddata + 4); | |
8182 | ||
8183 | /* nto_procfs_status 'flags' field is at offset 8. */ | |
8184 | flags = bfd_get_32 (abfd, (bfd_byte *) ddata + 8); | |
07c6e936 NC |
8185 | |
8186 | /* nto_procfs_status 'what' field is at offset 14. */ | |
f8843e87 AM |
8187 | if ((sig = bfd_get_16 (abfd, (bfd_byte *) ddata + 14)) > 0) |
8188 | { | |
8189 | elf_tdata (abfd)->core_signal = sig; | |
8190 | elf_tdata (abfd)->core_lwpid = *tid; | |
8191 | } | |
07c6e936 | 8192 | |
f8843e87 AM |
8193 | /* _DEBUG_FLAG_CURTID (current thread) is 0x80. Some cores |
8194 | do not come from signals so we make sure we set the current | |
8195 | thread just in case. */ | |
8196 | if (flags & 0x00000080) | |
8197 | elf_tdata (abfd)->core_lwpid = *tid; | |
07c6e936 NC |
8198 | |
8199 | /* Make a ".qnx_core_status/%d" section. */ | |
d3fd4074 | 8200 | sprintf (buf, ".qnx_core_status/%ld", *tid); |
07c6e936 | 8201 | |
217aa764 | 8202 | name = bfd_alloc (abfd, strlen (buf) + 1); |
07c6e936 NC |
8203 | if (name == NULL) |
8204 | return FALSE; | |
8205 | strcpy (name, buf); | |
8206 | ||
117ed4f8 | 8207 | sect = bfd_make_section_anyway_with_flags (abfd, name, SEC_HAS_CONTENTS); |
07c6e936 NC |
8208 | if (sect == NULL) |
8209 | return FALSE; | |
8210 | ||
eea6121a | 8211 | sect->size = note->descsz; |
07c6e936 | 8212 | sect->filepos = note->descpos; |
07c6e936 NC |
8213 | sect->alignment_power = 2; |
8214 | ||
8215 | return (elfcore_maybe_make_sect (abfd, ".qnx_core_status", sect)); | |
8216 | } | |
8217 | ||
8218 | static bfd_boolean | |
d69f560c KW |
8219 | elfcore_grok_nto_regs (bfd *abfd, |
8220 | Elf_Internal_Note *note, | |
d3fd4074 | 8221 | long tid, |
d69f560c | 8222 | char *base) |
07c6e936 NC |
8223 | { |
8224 | char buf[100]; | |
8225 | char *name; | |
8226 | asection *sect; | |
8227 | ||
d69f560c | 8228 | /* Make a "(base)/%d" section. */ |
d3fd4074 | 8229 | sprintf (buf, "%s/%ld", base, tid); |
07c6e936 | 8230 | |
217aa764 | 8231 | name = bfd_alloc (abfd, strlen (buf) + 1); |
07c6e936 NC |
8232 | if (name == NULL) |
8233 | return FALSE; | |
8234 | strcpy (name, buf); | |
8235 | ||
117ed4f8 | 8236 | sect = bfd_make_section_anyway_with_flags (abfd, name, SEC_HAS_CONTENTS); |
07c6e936 NC |
8237 | if (sect == NULL) |
8238 | return FALSE; | |
8239 | ||
eea6121a | 8240 | sect->size = note->descsz; |
07c6e936 | 8241 | sect->filepos = note->descpos; |
07c6e936 NC |
8242 | sect->alignment_power = 2; |
8243 | ||
f8843e87 AM |
8244 | /* This is the current thread. */ |
8245 | if (elf_tdata (abfd)->core_lwpid == tid) | |
d69f560c | 8246 | return elfcore_maybe_make_sect (abfd, base, sect); |
f8843e87 AM |
8247 | |
8248 | return TRUE; | |
07c6e936 NC |
8249 | } |
8250 | ||
8251 | #define BFD_QNT_CORE_INFO 7 | |
8252 | #define BFD_QNT_CORE_STATUS 8 | |
8253 | #define BFD_QNT_CORE_GREG 9 | |
8254 | #define BFD_QNT_CORE_FPREG 10 | |
8255 | ||
8256 | static bfd_boolean | |
217aa764 | 8257 | elfcore_grok_nto_note (bfd *abfd, Elf_Internal_Note *note) |
07c6e936 NC |
8258 | { |
8259 | /* Every GREG section has a STATUS section before it. Store the | |
811072d8 | 8260 | tid from the previous call to pass down to the next gregs |
07c6e936 | 8261 | function. */ |
d3fd4074 | 8262 | static long tid = 1; |
07c6e936 NC |
8263 | |
8264 | switch (note->type) | |
8265 | { | |
d69f560c KW |
8266 | case BFD_QNT_CORE_INFO: |
8267 | return elfcore_make_note_pseudosection (abfd, ".qnx_core_info", note); | |
8268 | case BFD_QNT_CORE_STATUS: | |
8269 | return elfcore_grok_nto_status (abfd, note, &tid); | |
8270 | case BFD_QNT_CORE_GREG: | |
8271 | return elfcore_grok_nto_regs (abfd, note, tid, ".reg"); | |
8272 | case BFD_QNT_CORE_FPREG: | |
8273 | return elfcore_grok_nto_regs (abfd, note, tid, ".reg2"); | |
8274 | default: | |
8275 | return TRUE; | |
07c6e936 NC |
8276 | } |
8277 | } | |
8278 | ||
b15fa79e AM |
8279 | static bfd_boolean |
8280 | elfcore_grok_spu_note (bfd *abfd, Elf_Internal_Note *note) | |
8281 | { | |
8282 | char *name; | |
8283 | asection *sect; | |
8284 | size_t len; | |
8285 | ||
8286 | /* Use note name as section name. */ | |
8287 | len = note->namesz; | |
8288 | name = bfd_alloc (abfd, len); | |
8289 | if (name == NULL) | |
8290 | return FALSE; | |
8291 | memcpy (name, note->namedata, len); | |
8292 | name[len - 1] = '\0'; | |
8293 | ||
8294 | sect = bfd_make_section_anyway_with_flags (abfd, name, SEC_HAS_CONTENTS); | |
8295 | if (sect == NULL) | |
8296 | return FALSE; | |
8297 | ||
8298 | sect->size = note->descsz; | |
8299 | sect->filepos = note->descpos; | |
8300 | sect->alignment_power = 1; | |
8301 | ||
8302 | return TRUE; | |
8303 | } | |
8304 | ||
7c76fa91 MS |
8305 | /* Function: elfcore_write_note |
8306 | ||
47d9a591 | 8307 | Inputs: |
a39f3346 | 8308 | buffer to hold note, and current size of buffer |
7c76fa91 MS |
8309 | name of note |
8310 | type of note | |
8311 | data for note | |
8312 | size of data for note | |
8313 | ||
a39f3346 AM |
8314 | Writes note to end of buffer. ELF64 notes are written exactly as |
8315 | for ELF32, despite the current (as of 2006) ELF gabi specifying | |
8316 | that they ought to have 8-byte namesz and descsz field, and have | |
8317 | 8-byte alignment. Other writers, eg. Linux kernel, do the same. | |
8318 | ||
7c76fa91 | 8319 | Return: |
a39f3346 | 8320 | Pointer to realloc'd buffer, *BUFSIZ updated. */ |
7c76fa91 MS |
8321 | |
8322 | char * | |
a39f3346 | 8323 | elfcore_write_note (bfd *abfd, |
217aa764 | 8324 | char *buf, |
a39f3346 | 8325 | int *bufsiz, |
217aa764 | 8326 | const char *name, |
a39f3346 | 8327 | int type, |
217aa764 | 8328 | const void *input, |
a39f3346 | 8329 | int size) |
7c76fa91 MS |
8330 | { |
8331 | Elf_External_Note *xnp; | |
d4c88bbb | 8332 | size_t namesz; |
d4c88bbb | 8333 | size_t newspace; |
a39f3346 | 8334 | char *dest; |
7c76fa91 | 8335 | |
d4c88bbb | 8336 | namesz = 0; |
d4c88bbb | 8337 | if (name != NULL) |
a39f3346 | 8338 | namesz = strlen (name) + 1; |
d4c88bbb | 8339 | |
a39f3346 | 8340 | newspace = 12 + ((namesz + 3) & -4) + ((size + 3) & -4); |
d4c88bbb | 8341 | |
a39f3346 | 8342 | buf = realloc (buf, *bufsiz + newspace); |
14b1c01e AM |
8343 | if (buf == NULL) |
8344 | return buf; | |
a39f3346 | 8345 | dest = buf + *bufsiz; |
7c76fa91 MS |
8346 | *bufsiz += newspace; |
8347 | xnp = (Elf_External_Note *) dest; | |
8348 | H_PUT_32 (abfd, namesz, xnp->namesz); | |
8349 | H_PUT_32 (abfd, size, xnp->descsz); | |
8350 | H_PUT_32 (abfd, type, xnp->type); | |
d4c88bbb AM |
8351 | dest = xnp->name; |
8352 | if (name != NULL) | |
8353 | { | |
8354 | memcpy (dest, name, namesz); | |
8355 | dest += namesz; | |
a39f3346 | 8356 | while (namesz & 3) |
d4c88bbb AM |
8357 | { |
8358 | *dest++ = '\0'; | |
a39f3346 | 8359 | ++namesz; |
d4c88bbb AM |
8360 | } |
8361 | } | |
8362 | memcpy (dest, input, size); | |
a39f3346 AM |
8363 | dest += size; |
8364 | while (size & 3) | |
8365 | { | |
8366 | *dest++ = '\0'; | |
8367 | ++size; | |
8368 | } | |
8369 | return buf; | |
7c76fa91 MS |
8370 | } |
8371 | ||
8372 | #if defined (HAVE_PRPSINFO_T) || defined (HAVE_PSINFO_T) | |
8373 | char * | |
217aa764 AM |
8374 | elfcore_write_prpsinfo (bfd *abfd, |
8375 | char *buf, | |
8376 | int *bufsiz, | |
8377 | const char *fname, | |
8378 | const char *psargs) | |
7c76fa91 | 8379 | { |
183e98be AM |
8380 | const char *note_name = "CORE"; |
8381 | const struct elf_backend_data *bed = get_elf_backend_data (abfd); | |
8382 | ||
8383 | if (bed->elf_backend_write_core_note != NULL) | |
8384 | { | |
8385 | char *ret; | |
8386 | ret = (*bed->elf_backend_write_core_note) (abfd, buf, bufsiz, | |
8387 | NT_PRPSINFO, fname, psargs); | |
8388 | if (ret != NULL) | |
8389 | return ret; | |
8390 | } | |
7c76fa91 | 8391 | |
183e98be AM |
8392 | #if defined (HAVE_PRPSINFO32_T) || defined (HAVE_PSINFO32_T) |
8393 | if (bed->s->elfclass == ELFCLASS32) | |
8394 | { | |
8395 | #if defined (HAVE_PSINFO32_T) | |
8396 | psinfo32_t data; | |
8397 | int note_type = NT_PSINFO; | |
8398 | #else | |
8399 | prpsinfo32_t data; | |
8400 | int note_type = NT_PRPSINFO; | |
8401 | #endif | |
8402 | ||
8403 | memset (&data, 0, sizeof (data)); | |
8404 | strncpy (data.pr_fname, fname, sizeof (data.pr_fname)); | |
8405 | strncpy (data.pr_psargs, psargs, sizeof (data.pr_psargs)); | |
8406 | return elfcore_write_note (abfd, buf, bufsiz, | |
8407 | note_name, note_type, &data, sizeof (data)); | |
8408 | } | |
8409 | else | |
8410 | #endif | |
8411 | { | |
7c76fa91 | 8412 | #if defined (HAVE_PSINFO_T) |
183e98be AM |
8413 | psinfo_t data; |
8414 | int note_type = NT_PSINFO; | |
7c76fa91 | 8415 | #else |
183e98be AM |
8416 | prpsinfo_t data; |
8417 | int note_type = NT_PRPSINFO; | |
7c76fa91 MS |
8418 | #endif |
8419 | ||
183e98be AM |
8420 | memset (&data, 0, sizeof (data)); |
8421 | strncpy (data.pr_fname, fname, sizeof (data.pr_fname)); | |
8422 | strncpy (data.pr_psargs, psargs, sizeof (data.pr_psargs)); | |
8423 | return elfcore_write_note (abfd, buf, bufsiz, | |
8424 | note_name, note_type, &data, sizeof (data)); | |
8425 | } | |
7c76fa91 MS |
8426 | } |
8427 | #endif /* PSINFO_T or PRPSINFO_T */ | |
8428 | ||
8429 | #if defined (HAVE_PRSTATUS_T) | |
8430 | char * | |
217aa764 AM |
8431 | elfcore_write_prstatus (bfd *abfd, |
8432 | char *buf, | |
8433 | int *bufsiz, | |
8434 | long pid, | |
8435 | int cursig, | |
8436 | const void *gregs) | |
7c76fa91 | 8437 | { |
183e98be AM |
8438 | const char *note_name = "CORE"; |
8439 | const struct elf_backend_data *bed = get_elf_backend_data (abfd); | |
7c76fa91 | 8440 | |
183e98be AM |
8441 | if (bed->elf_backend_write_core_note != NULL) |
8442 | { | |
8443 | char *ret; | |
8444 | ret = (*bed->elf_backend_write_core_note) (abfd, buf, bufsiz, | |
8445 | NT_PRSTATUS, | |
8446 | pid, cursig, gregs); | |
8447 | if (ret != NULL) | |
8448 | return ret; | |
8449 | } | |
8450 | ||
8451 | #if defined (HAVE_PRSTATUS32_T) | |
8452 | if (bed->s->elfclass == ELFCLASS32) | |
8453 | { | |
8454 | prstatus32_t prstat; | |
8455 | ||
8456 | memset (&prstat, 0, sizeof (prstat)); | |
8457 | prstat.pr_pid = pid; | |
8458 | prstat.pr_cursig = cursig; | |
8459 | memcpy (&prstat.pr_reg, gregs, sizeof (prstat.pr_reg)); | |
8460 | return elfcore_write_note (abfd, buf, bufsiz, note_name, | |
8461 | NT_PRSTATUS, &prstat, sizeof (prstat)); | |
8462 | } | |
8463 | else | |
8464 | #endif | |
8465 | { | |
8466 | prstatus_t prstat; | |
8467 | ||
8468 | memset (&prstat, 0, sizeof (prstat)); | |
8469 | prstat.pr_pid = pid; | |
8470 | prstat.pr_cursig = cursig; | |
8471 | memcpy (&prstat.pr_reg, gregs, sizeof (prstat.pr_reg)); | |
8472 | return elfcore_write_note (abfd, buf, bufsiz, note_name, | |
8473 | NT_PRSTATUS, &prstat, sizeof (prstat)); | |
8474 | } | |
7c76fa91 MS |
8475 | } |
8476 | #endif /* HAVE_PRSTATUS_T */ | |
8477 | ||
51316059 MS |
8478 | #if defined (HAVE_LWPSTATUS_T) |
8479 | char * | |
217aa764 AM |
8480 | elfcore_write_lwpstatus (bfd *abfd, |
8481 | char *buf, | |
8482 | int *bufsiz, | |
8483 | long pid, | |
8484 | int cursig, | |
8485 | const void *gregs) | |
51316059 MS |
8486 | { |
8487 | lwpstatus_t lwpstat; | |
183e98be | 8488 | const char *note_name = "CORE"; |
51316059 MS |
8489 | |
8490 | memset (&lwpstat, 0, sizeof (lwpstat)); | |
8491 | lwpstat.pr_lwpid = pid >> 16; | |
8492 | lwpstat.pr_cursig = cursig; | |
8493 | #if defined (HAVE_LWPSTATUS_T_PR_REG) | |
8494 | memcpy (lwpstat.pr_reg, gregs, sizeof (lwpstat.pr_reg)); | |
8495 | #elif defined (HAVE_LWPSTATUS_T_PR_CONTEXT) | |
8496 | #if !defined(gregs) | |
8497 | memcpy (lwpstat.pr_context.uc_mcontext.gregs, | |
8498 | gregs, sizeof (lwpstat.pr_context.uc_mcontext.gregs)); | |
8499 | #else | |
8500 | memcpy (lwpstat.pr_context.uc_mcontext.__gregs, | |
8501 | gregs, sizeof (lwpstat.pr_context.uc_mcontext.__gregs)); | |
8502 | #endif | |
8503 | #endif | |
47d9a591 | 8504 | return elfcore_write_note (abfd, buf, bufsiz, note_name, |
51316059 MS |
8505 | NT_LWPSTATUS, &lwpstat, sizeof (lwpstat)); |
8506 | } | |
8507 | #endif /* HAVE_LWPSTATUS_T */ | |
8508 | ||
7c76fa91 MS |
8509 | #if defined (HAVE_PSTATUS_T) |
8510 | char * | |
217aa764 AM |
8511 | elfcore_write_pstatus (bfd *abfd, |
8512 | char *buf, | |
8513 | int *bufsiz, | |
8514 | long pid, | |
6c10990d NC |
8515 | int cursig ATTRIBUTE_UNUSED, |
8516 | const void *gregs ATTRIBUTE_UNUSED) | |
7c76fa91 | 8517 | { |
183e98be AM |
8518 | const char *note_name = "CORE"; |
8519 | #if defined (HAVE_PSTATUS32_T) | |
8520 | const struct elf_backend_data *bed = get_elf_backend_data (abfd); | |
7c76fa91 | 8521 | |
183e98be AM |
8522 | if (bed->s->elfclass == ELFCLASS32) |
8523 | { | |
8524 | pstatus32_t pstat; | |
8525 | ||
8526 | memset (&pstat, 0, sizeof (pstat)); | |
8527 | pstat.pr_pid = pid & 0xffff; | |
8528 | buf = elfcore_write_note (abfd, buf, bufsiz, note_name, | |
8529 | NT_PSTATUS, &pstat, sizeof (pstat)); | |
8530 | return buf; | |
8531 | } | |
8532 | else | |
8533 | #endif | |
8534 | { | |
8535 | pstatus_t pstat; | |
8536 | ||
8537 | memset (&pstat, 0, sizeof (pstat)); | |
8538 | pstat.pr_pid = pid & 0xffff; | |
8539 | buf = elfcore_write_note (abfd, buf, bufsiz, note_name, | |
8540 | NT_PSTATUS, &pstat, sizeof (pstat)); | |
8541 | return buf; | |
8542 | } | |
7c76fa91 MS |
8543 | } |
8544 | #endif /* HAVE_PSTATUS_T */ | |
8545 | ||
8546 | char * | |
217aa764 AM |
8547 | elfcore_write_prfpreg (bfd *abfd, |
8548 | char *buf, | |
8549 | int *bufsiz, | |
8550 | const void *fpregs, | |
8551 | int size) | |
7c76fa91 | 8552 | { |
183e98be | 8553 | const char *note_name = "CORE"; |
47d9a591 | 8554 | return elfcore_write_note (abfd, buf, bufsiz, |
7c76fa91 MS |
8555 | note_name, NT_FPREGSET, fpregs, size); |
8556 | } | |
8557 | ||
8558 | char * | |
217aa764 AM |
8559 | elfcore_write_prxfpreg (bfd *abfd, |
8560 | char *buf, | |
8561 | int *bufsiz, | |
8562 | const void *xfpregs, | |
8563 | int size) | |
7c76fa91 MS |
8564 | { |
8565 | char *note_name = "LINUX"; | |
47d9a591 | 8566 | return elfcore_write_note (abfd, buf, bufsiz, |
7c76fa91 MS |
8567 | note_name, NT_PRXFPREG, xfpregs, size); |
8568 | } | |
8569 | ||
97753bd5 AM |
8570 | char * |
8571 | elfcore_write_ppc_vmx (bfd *abfd, | |
8572 | char *buf, | |
8573 | int *bufsiz, | |
8574 | const void *ppc_vmx, | |
8575 | int size) | |
8576 | { | |
8577 | char *note_name = "LINUX"; | |
8578 | return elfcore_write_note (abfd, buf, bufsiz, | |
8579 | note_name, NT_PPC_VMX, ppc_vmx, size); | |
8580 | } | |
8581 | ||
89eeb0bc LM |
8582 | char * |
8583 | elfcore_write_ppc_vsx (bfd *abfd, | |
8584 | char *buf, | |
8585 | int *bufsiz, | |
8586 | const void *ppc_vsx, | |
8587 | int size) | |
8588 | { | |
8589 | char *note_name = "LINUX"; | |
8590 | return elfcore_write_note (abfd, buf, bufsiz, | |
8591 | note_name, NT_PPC_VSX, ppc_vsx, size); | |
8592 | } | |
8593 | ||
bb864ac1 CES |
8594 | char * |
8595 | elfcore_write_register_note (bfd *abfd, | |
8596 | char *buf, | |
8597 | int *bufsiz, | |
8598 | const char *section, | |
8599 | const void *data, | |
8600 | int size) | |
8601 | { | |
8602 | if (strcmp (section, ".reg2") == 0) | |
8603 | return elfcore_write_prfpreg (abfd, buf, bufsiz, data, size); | |
8604 | if (strcmp (section, ".reg-xfp") == 0) | |
8605 | return elfcore_write_prxfpreg (abfd, buf, bufsiz, data, size); | |
8606 | if (strcmp (section, ".reg-ppc-vmx") == 0) | |
8607 | return elfcore_write_ppc_vmx (abfd, buf, bufsiz, data, size); | |
89eeb0bc LM |
8608 | if (strcmp (section, ".reg-ppc-vsx") == 0) |
8609 | return elfcore_write_ppc_vsx (abfd, buf, bufsiz, data, size); | |
bb864ac1 CES |
8610 | return NULL; |
8611 | } | |
8612 | ||
b34976b6 | 8613 | static bfd_boolean |
718175fa | 8614 | elf_parse_notes (bfd *abfd, char *buf, size_t size, file_ptr offset) |
252b5132 | 8615 | { |
c044fabd | 8616 | char *p; |
252b5132 | 8617 | |
252b5132 RH |
8618 | p = buf; |
8619 | while (p < buf + size) | |
8620 | { | |
c044fabd KH |
8621 | /* FIXME: bad alignment assumption. */ |
8622 | Elf_External_Note *xnp = (Elf_External_Note *) p; | |
252b5132 RH |
8623 | Elf_Internal_Note in; |
8624 | ||
baea7ef1 AM |
8625 | if (offsetof (Elf_External_Note, name) > buf - p + size) |
8626 | return FALSE; | |
8627 | ||
dc810e39 | 8628 | in.type = H_GET_32 (abfd, xnp->type); |
252b5132 | 8629 | |
dc810e39 | 8630 | in.namesz = H_GET_32 (abfd, xnp->namesz); |
252b5132 | 8631 | in.namedata = xnp->name; |
baea7ef1 AM |
8632 | if (in.namesz > buf - in.namedata + size) |
8633 | return FALSE; | |
252b5132 | 8634 | |
dc810e39 | 8635 | in.descsz = H_GET_32 (abfd, xnp->descsz); |
252b5132 RH |
8636 | in.descdata = in.namedata + BFD_ALIGN (in.namesz, 4); |
8637 | in.descpos = offset + (in.descdata - buf); | |
baea7ef1 AM |
8638 | if (in.descsz != 0 |
8639 | && (in.descdata >= buf + size | |
8640 | || in.descsz > buf - in.descdata + size)) | |
8641 | return FALSE; | |
252b5132 | 8642 | |
718175fa JK |
8643 | switch (bfd_get_format (abfd)) |
8644 | { | |
8645 | default: | |
8646 | return TRUE; | |
8647 | ||
8648 | case bfd_core: | |
8649 | if (CONST_STRNEQ (in.namedata, "NetBSD-CORE")) | |
8650 | { | |
8651 | if (! elfcore_grok_netbsd_note (abfd, &in)) | |
8652 | return FALSE; | |
8653 | } | |
67cc5033 MK |
8654 | else if (CONST_STRNEQ (in.namedata, "OpenBSD")) |
8655 | { | |
8656 | if (! elfcore_grok_openbsd_note (abfd, &in)) | |
8657 | return FALSE; | |
8658 | } | |
718175fa JK |
8659 | else if (CONST_STRNEQ (in.namedata, "QNX")) |
8660 | { | |
8661 | if (! elfcore_grok_nto_note (abfd, &in)) | |
8662 | return FALSE; | |
8663 | } | |
b15fa79e AM |
8664 | else if (CONST_STRNEQ (in.namedata, "SPU/")) |
8665 | { | |
8666 | if (! elfcore_grok_spu_note (abfd, &in)) | |
8667 | return FALSE; | |
8668 | } | |
718175fa JK |
8669 | else |
8670 | { | |
8671 | if (! elfcore_grok_note (abfd, &in)) | |
8672 | return FALSE; | |
8673 | } | |
8674 | break; | |
8675 | ||
8676 | case bfd_object: | |
8677 | if (in.namesz == sizeof "GNU" && strcmp (in.namedata, "GNU") == 0) | |
8678 | { | |
8679 | if (! elfobj_grok_gnu_note (abfd, &in)) | |
8680 | return FALSE; | |
8681 | } | |
8682 | break; | |
08a40648 | 8683 | } |
252b5132 RH |
8684 | |
8685 | p = in.descdata + BFD_ALIGN (in.descsz, 4); | |
8686 | } | |
8687 | ||
718175fa JK |
8688 | return TRUE; |
8689 | } | |
8690 | ||
8691 | static bfd_boolean | |
8692 | elf_read_notes (bfd *abfd, file_ptr offset, bfd_size_type size) | |
8693 | { | |
8694 | char *buf; | |
8695 | ||
8696 | if (size <= 0) | |
8697 | return TRUE; | |
8698 | ||
8699 | if (bfd_seek (abfd, offset, SEEK_SET) != 0) | |
8700 | return FALSE; | |
8701 | ||
8702 | buf = bfd_malloc (size); | |
8703 | if (buf == NULL) | |
8704 | return FALSE; | |
8705 | ||
8706 | if (bfd_bread (buf, size, abfd) != size | |
8707 | || !elf_parse_notes (abfd, buf, size, offset)) | |
8708 | { | |
8709 | free (buf); | |
8710 | return FALSE; | |
8711 | } | |
8712 | ||
252b5132 | 8713 | free (buf); |
b34976b6 | 8714 | return TRUE; |
252b5132 | 8715 | } |
98d8431c JB |
8716 | \f |
8717 | /* Providing external access to the ELF program header table. */ | |
8718 | ||
8719 | /* Return an upper bound on the number of bytes required to store a | |
8720 | copy of ABFD's program header table entries. Return -1 if an error | |
8721 | occurs; bfd_get_error will return an appropriate code. */ | |
c044fabd | 8722 | |
98d8431c | 8723 | long |
217aa764 | 8724 | bfd_get_elf_phdr_upper_bound (bfd *abfd) |
98d8431c JB |
8725 | { |
8726 | if (abfd->xvec->flavour != bfd_target_elf_flavour) | |
8727 | { | |
8728 | bfd_set_error (bfd_error_wrong_format); | |
8729 | return -1; | |
8730 | } | |
8731 | ||
936e320b | 8732 | return elf_elfheader (abfd)->e_phnum * sizeof (Elf_Internal_Phdr); |
98d8431c JB |
8733 | } |
8734 | ||
98d8431c JB |
8735 | /* Copy ABFD's program header table entries to *PHDRS. The entries |
8736 | will be stored as an array of Elf_Internal_Phdr structures, as | |
8737 | defined in include/elf/internal.h. To find out how large the | |
8738 | buffer needs to be, call bfd_get_elf_phdr_upper_bound. | |
8739 | ||
8740 | Return the number of program header table entries read, or -1 if an | |
8741 | error occurs; bfd_get_error will return an appropriate code. */ | |
c044fabd | 8742 | |
98d8431c | 8743 | int |
217aa764 | 8744 | bfd_get_elf_phdrs (bfd *abfd, void *phdrs) |
98d8431c JB |
8745 | { |
8746 | int num_phdrs; | |
8747 | ||
8748 | if (abfd->xvec->flavour != bfd_target_elf_flavour) | |
8749 | { | |
8750 | bfd_set_error (bfd_error_wrong_format); | |
8751 | return -1; | |
8752 | } | |
8753 | ||
8754 | num_phdrs = elf_elfheader (abfd)->e_phnum; | |
c044fabd | 8755 | memcpy (phdrs, elf_tdata (abfd)->phdr, |
98d8431c JB |
8756 | num_phdrs * sizeof (Elf_Internal_Phdr)); |
8757 | ||
8758 | return num_phdrs; | |
8759 | } | |
ae4221d7 | 8760 | |
db6751f2 | 8761 | enum elf_reloc_type_class |
217aa764 | 8762 | _bfd_elf_reloc_type_class (const Elf_Internal_Rela *rela ATTRIBUTE_UNUSED) |
db6751f2 JJ |
8763 | { |
8764 | return reloc_class_normal; | |
8765 | } | |
f8df10f4 | 8766 | |
47d9a591 | 8767 | /* For RELA architectures, return the relocation value for a |
f8df10f4 JJ |
8768 | relocation against a local symbol. */ |
8769 | ||
8770 | bfd_vma | |
217aa764 AM |
8771 | _bfd_elf_rela_local_sym (bfd *abfd, |
8772 | Elf_Internal_Sym *sym, | |
8517fae7 | 8773 | asection **psec, |
217aa764 | 8774 | Elf_Internal_Rela *rel) |
f8df10f4 | 8775 | { |
8517fae7 | 8776 | asection *sec = *psec; |
f8df10f4 JJ |
8777 | bfd_vma relocation; |
8778 | ||
8779 | relocation = (sec->output_section->vma | |
8780 | + sec->output_offset | |
8781 | + sym->st_value); | |
8782 | if ((sec->flags & SEC_MERGE) | |
c629eae0 | 8783 | && ELF_ST_TYPE (sym->st_info) == STT_SECTION |
68bfbfcc | 8784 | && sec->sec_info_type == ELF_INFO_TYPE_MERGE) |
f8df10f4 | 8785 | { |
f8df10f4 | 8786 | rel->r_addend = |
8517fae7 | 8787 | _bfd_merged_section_offset (abfd, psec, |
65765700 | 8788 | elf_section_data (sec)->sec_info, |
753731ee AM |
8789 | sym->st_value + rel->r_addend); |
8790 | if (sec != *psec) | |
8791 | { | |
8792 | /* If we have changed the section, and our original section is | |
8793 | marked with SEC_EXCLUDE, it means that the original | |
8794 | SEC_MERGE section has been completely subsumed in some | |
8795 | other SEC_MERGE section. In this case, we need to leave | |
8796 | some info around for --emit-relocs. */ | |
8797 | if ((sec->flags & SEC_EXCLUDE) != 0) | |
8798 | sec->kept_section = *psec; | |
8799 | sec = *psec; | |
8800 | } | |
8517fae7 AM |
8801 | rel->r_addend -= relocation; |
8802 | rel->r_addend += sec->output_section->vma + sec->output_offset; | |
f8df10f4 JJ |
8803 | } |
8804 | return relocation; | |
8805 | } | |
c629eae0 JJ |
8806 | |
8807 | bfd_vma | |
217aa764 AM |
8808 | _bfd_elf_rel_local_sym (bfd *abfd, |
8809 | Elf_Internal_Sym *sym, | |
8810 | asection **psec, | |
8811 | bfd_vma addend) | |
47d9a591 | 8812 | { |
c629eae0 JJ |
8813 | asection *sec = *psec; |
8814 | ||
68bfbfcc | 8815 | if (sec->sec_info_type != ELF_INFO_TYPE_MERGE) |
c629eae0 JJ |
8816 | return sym->st_value + addend; |
8817 | ||
8818 | return _bfd_merged_section_offset (abfd, psec, | |
65765700 | 8819 | elf_section_data (sec)->sec_info, |
753731ee | 8820 | sym->st_value + addend); |
c629eae0 JJ |
8821 | } |
8822 | ||
8823 | bfd_vma | |
217aa764 | 8824 | _bfd_elf_section_offset (bfd *abfd, |
92e4ec35 | 8825 | struct bfd_link_info *info, |
217aa764 AM |
8826 | asection *sec, |
8827 | bfd_vma offset) | |
c629eae0 | 8828 | { |
68bfbfcc | 8829 | switch (sec->sec_info_type) |
65765700 JJ |
8830 | { |
8831 | case ELF_INFO_TYPE_STABS: | |
eea6121a AM |
8832 | return _bfd_stab_section_offset (sec, elf_section_data (sec)->sec_info, |
8833 | offset); | |
65765700 | 8834 | case ELF_INFO_TYPE_EH_FRAME: |
92e4ec35 | 8835 | return _bfd_elf_eh_frame_section_offset (abfd, info, sec, offset); |
65765700 JJ |
8836 | default: |
8837 | return offset; | |
8838 | } | |
c629eae0 | 8839 | } |
3333a7c3 RM |
8840 | \f |
8841 | /* Create a new BFD as if by bfd_openr. Rather than opening a file, | |
8842 | reconstruct an ELF file by reading the segments out of remote memory | |
8843 | based on the ELF file header at EHDR_VMA and the ELF program headers it | |
8844 | points to. If not null, *LOADBASEP is filled in with the difference | |
8845 | between the VMAs from which the segments were read, and the VMAs the | |
8846 | file headers (and hence BFD's idea of each section's VMA) put them at. | |
8847 | ||
8848 | The function TARGET_READ_MEMORY is called to copy LEN bytes from the | |
8849 | remote memory at target address VMA into the local buffer at MYADDR; it | |
8850 | should return zero on success or an `errno' code on failure. TEMPL must | |
8851 | be a BFD for an ELF target with the word size and byte order found in | |
8852 | the remote memory. */ | |
8853 | ||
8854 | bfd * | |
217aa764 AM |
8855 | bfd_elf_bfd_from_remote_memory |
8856 | (bfd *templ, | |
8857 | bfd_vma ehdr_vma, | |
8858 | bfd_vma *loadbasep, | |
f075ee0c | 8859 | int (*target_read_memory) (bfd_vma, bfd_byte *, int)) |
3333a7c3 RM |
8860 | { |
8861 | return (*get_elf_backend_data (templ)->elf_backend_bfd_from_remote_memory) | |
8862 | (templ, ehdr_vma, loadbasep, target_read_memory); | |
8863 | } | |
4c45e5c9 JJ |
8864 | \f |
8865 | long | |
c9727e01 AM |
8866 | _bfd_elf_get_synthetic_symtab (bfd *abfd, |
8867 | long symcount ATTRIBUTE_UNUSED, | |
8868 | asymbol **syms ATTRIBUTE_UNUSED, | |
8615f3f2 | 8869 | long dynsymcount, |
c9727e01 AM |
8870 | asymbol **dynsyms, |
8871 | asymbol **ret) | |
4c45e5c9 JJ |
8872 | { |
8873 | const struct elf_backend_data *bed = get_elf_backend_data (abfd); | |
8874 | asection *relplt; | |
8875 | asymbol *s; | |
8876 | const char *relplt_name; | |
8877 | bfd_boolean (*slurp_relocs) (bfd *, asection *, asymbol **, bfd_boolean); | |
8878 | arelent *p; | |
8879 | long count, i, n; | |
8880 | size_t size; | |
8881 | Elf_Internal_Shdr *hdr; | |
8882 | char *names; | |
8883 | asection *plt; | |
8884 | ||
8615f3f2 AM |
8885 | *ret = NULL; |
8886 | ||
90e3cdf2 JJ |
8887 | if ((abfd->flags & (DYNAMIC | EXEC_P)) == 0) |
8888 | return 0; | |
8889 | ||
8615f3f2 AM |
8890 | if (dynsymcount <= 0) |
8891 | return 0; | |
8892 | ||
4c45e5c9 JJ |
8893 | if (!bed->plt_sym_val) |
8894 | return 0; | |
8895 | ||
8896 | relplt_name = bed->relplt_name; | |
8897 | if (relplt_name == NULL) | |
d35fd659 | 8898 | relplt_name = bed->rela_plts_and_copies_p ? ".rela.plt" : ".rel.plt"; |
4c45e5c9 JJ |
8899 | relplt = bfd_get_section_by_name (abfd, relplt_name); |
8900 | if (relplt == NULL) | |
8901 | return 0; | |
8902 | ||
8903 | hdr = &elf_section_data (relplt)->this_hdr; | |
8904 | if (hdr->sh_link != elf_dynsymtab (abfd) | |
8905 | || (hdr->sh_type != SHT_REL && hdr->sh_type != SHT_RELA)) | |
8906 | return 0; | |
8907 | ||
8908 | plt = bfd_get_section_by_name (abfd, ".plt"); | |
8909 | if (plt == NULL) | |
8910 | return 0; | |
8911 | ||
8912 | slurp_relocs = get_elf_backend_data (abfd)->s->slurp_reloc_table; | |
c9727e01 | 8913 | if (! (*slurp_relocs) (abfd, relplt, dynsyms, TRUE)) |
4c45e5c9 JJ |
8914 | return -1; |
8915 | ||
eea6121a | 8916 | count = relplt->size / hdr->sh_entsize; |
4c45e5c9 JJ |
8917 | size = count * sizeof (asymbol); |
8918 | p = relplt->relocation; | |
cb53bf42 | 8919 | for (i = 0; i < count; i++, p += bed->s->int_rels_per_ext_rel) |
4c45e5c9 JJ |
8920 | size += strlen ((*p->sym_ptr_ptr)->name) + sizeof ("@plt"); |
8921 | ||
8922 | s = *ret = bfd_malloc (size); | |
8923 | if (s == NULL) | |
8924 | return -1; | |
8925 | ||
8926 | names = (char *) (s + count); | |
8927 | p = relplt->relocation; | |
8928 | n = 0; | |
cb53bf42 | 8929 | for (i = 0; i < count; i++, p += bed->s->int_rels_per_ext_rel) |
4c45e5c9 JJ |
8930 | { |
8931 | size_t len; | |
8932 | bfd_vma addr; | |
8933 | ||
8934 | addr = bed->plt_sym_val (i, plt, p); | |
8935 | if (addr == (bfd_vma) -1) | |
8936 | continue; | |
8937 | ||
8938 | *s = **p->sym_ptr_ptr; | |
65a7a66f AM |
8939 | /* Undefined syms won't have BSF_LOCAL or BSF_GLOBAL set. Since |
8940 | we are defining a symbol, ensure one of them is set. */ | |
8941 | if ((s->flags & BSF_LOCAL) == 0) | |
8942 | s->flags |= BSF_GLOBAL; | |
6ba2a415 | 8943 | s->flags |= BSF_SYNTHETIC; |
4c45e5c9 JJ |
8944 | s->section = plt; |
8945 | s->value = addr - plt->vma; | |
8946 | s->name = names; | |
8f39ba8e | 8947 | s->udata.p = NULL; |
4c45e5c9 JJ |
8948 | len = strlen ((*p->sym_ptr_ptr)->name); |
8949 | memcpy (names, (*p->sym_ptr_ptr)->name, len); | |
8950 | names += len; | |
8951 | memcpy (names, "@plt", sizeof ("@plt")); | |
8952 | names += sizeof ("@plt"); | |
8f39ba8e | 8953 | ++s, ++n; |
4c45e5c9 JJ |
8954 | } |
8955 | ||
8956 | return n; | |
8957 | } | |
3d7f7666 | 8958 | |
3b22753a L |
8959 | /* It is only used by x86-64 so far. */ |
8960 | asection _bfd_elf_large_com_section | |
8961 | = BFD_FAKE_SECTION (_bfd_elf_large_com_section, | |
f592407e | 8962 | SEC_IS_COMMON, NULL, "LARGE_COMMON", 0); |
ecca9871 | 8963 | |
d1036acb L |
8964 | void |
8965 | _bfd_elf_set_osabi (bfd * abfd, | |
8966 | struct bfd_link_info * link_info ATTRIBUTE_UNUSED) | |
8967 | { | |
8968 | Elf_Internal_Ehdr * i_ehdrp; /* ELF file header, internal form. */ | |
8969 | ||
8970 | i_ehdrp = elf_elfheader (abfd); | |
8971 | ||
8972 | i_ehdrp->e_ident[EI_OSABI] = get_elf_backend_data (abfd)->elf_osabi; | |
d8045f23 NC |
8973 | |
8974 | /* To make things simpler for the loader on Linux systems we set the | |
8975 | osabi field to ELFOSABI_LINUX if the binary contains symbols of | |
8976 | the STT_GNU_IFUNC type. */ | |
8977 | if (i_ehdrp->e_ident[EI_OSABI] == ELFOSABI_NONE | |
8978 | && elf_tdata (abfd)->has_ifunc_symbols) | |
8979 | i_ehdrp->e_ident[EI_OSABI] = ELFOSABI_LINUX; | |
d1036acb | 8980 | } |
fcb93ecf PB |
8981 | |
8982 | ||
8983 | /* Return TRUE for ELF symbol types that represent functions. | |
8984 | This is the default version of this function, which is sufficient for | |
d8045f23 | 8985 | most targets. It returns true if TYPE is STT_FUNC or STT_GNU_IFUNC. */ |
fcb93ecf PB |
8986 | |
8987 | bfd_boolean | |
8988 | _bfd_elf_is_function_type (unsigned int type) | |
8989 | { | |
d8045f23 NC |
8990 | return (type == STT_FUNC |
8991 | || type == STT_GNU_IFUNC); | |
fcb93ecf | 8992 | } |