2009-12-02 Tristan Gingold <gingold@adacore.com>
[deliverable/binutils-gdb.git] / gdb / elfread.c
CommitLineData
c906108c 1/* Read ELF (Executable and Linking Format) object files for GDB.
1bac305b 2
6aba47ca 3 Copyright (C) 1991, 1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999, 2000,
0fb0cc75 4 2001, 2002, 2003, 2004, 2005, 2006, 2007, 2008, 2009
9b254dd1 5 Free Software Foundation, Inc.
1bac305b 6
c906108c
SS
7 Written by Fred Fish at Cygnus Support.
8
c5aa993b 9 This file is part of GDB.
c906108c 10
c5aa993b
JM
11 This program is free software; you can redistribute it and/or modify
12 it under the terms of the GNU General Public License as published by
a9762ec7 13 the Free Software Foundation; either version 3 of the License, or
c5aa993b 14 (at your option) any later version.
c906108c 15
c5aa993b
JM
16 This program is distributed in the hope that it will be useful,
17 but WITHOUT ANY WARRANTY; without even the implied warranty of
18 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
19 GNU General Public License for more details.
c906108c 20
c5aa993b 21 You should have received a copy of the GNU General Public License
a9762ec7 22 along with this program. If not, see <http://www.gnu.org/licenses/>. */
c906108c
SS
23
24#include "defs.h"
25#include "bfd.h"
26#include "gdb_string.h"
27#include "elf-bfd.h"
31d99776
DJ
28#include "elf/common.h"
29#include "elf/internal.h"
c906108c
SS
30#include "elf/mips.h"
31#include "symtab.h"
32#include "symfile.h"
33#include "objfiles.h"
34#include "buildsym.h"
35#include "stabsread.h"
36#include "gdb-stabs.h"
37#include "complaints.h"
38#include "demangle.h"
39
a14ed312 40extern void _initialize_elfread (void);
392a587b 41
c906108c 42/* The struct elfinfo is available only during ELF symbol table and
6426a772 43 psymtab reading. It is destroyed at the completion of psymtab-reading.
c906108c
SS
44 It's local to elf_symfile_read. */
45
c5aa993b
JM
46struct elfinfo
47 {
c5aa993b
JM
48 asection *stabsect; /* Section pointer for .stab section */
49 asection *stabindexsect; /* Section pointer for .stab.index section */
50 asection *mdebugsect; /* Section pointer for .mdebug section */
51 };
c906108c 52
12b9c64f 53static void free_elfinfo (void *);
c906108c 54
31d99776
DJ
55/* Locate the segments in ABFD. */
56
57static struct symfile_segment_data *
58elf_symfile_segments (bfd *abfd)
59{
60 Elf_Internal_Phdr *phdrs, **segments;
61 long phdrs_size;
62 int num_phdrs, num_segments, num_sections, i;
63 asection *sect;
64 struct symfile_segment_data *data;
65
66 phdrs_size = bfd_get_elf_phdr_upper_bound (abfd);
67 if (phdrs_size == -1)
68 return NULL;
69
70 phdrs = alloca (phdrs_size);
71 num_phdrs = bfd_get_elf_phdrs (abfd, phdrs);
72 if (num_phdrs == -1)
73 return NULL;
74
75 num_segments = 0;
76 segments = alloca (sizeof (Elf_Internal_Phdr *) * num_phdrs);
77 for (i = 0; i < num_phdrs; i++)
78 if (phdrs[i].p_type == PT_LOAD)
79 segments[num_segments++] = &phdrs[i];
80
81 if (num_segments == 0)
82 return NULL;
83
84 data = XZALLOC (struct symfile_segment_data);
85 data->num_segments = num_segments;
86 data->segment_bases = XCALLOC (num_segments, CORE_ADDR);
87 data->segment_sizes = XCALLOC (num_segments, CORE_ADDR);
88
89 for (i = 0; i < num_segments; i++)
90 {
91 data->segment_bases[i] = segments[i]->p_vaddr;
92 data->segment_sizes[i] = segments[i]->p_memsz;
93 }
94
95 num_sections = bfd_count_sections (abfd);
96 data->segment_info = XCALLOC (num_sections, int);
97
98 for (i = 0, sect = abfd->sections; sect != NULL; i++, sect = sect->next)
99 {
100 int j;
101 CORE_ADDR vma;
102
103 if ((bfd_get_section_flags (abfd, sect) & SEC_ALLOC) == 0)
104 continue;
105
106 vma = bfd_get_section_vma (abfd, sect);
107
108 for (j = 0; j < num_segments; j++)
109 if (segments[j]->p_memsz > 0
110 && vma >= segments[j]->p_vaddr
a366c65a 111 && (vma - segments[j]->p_vaddr) < segments[j]->p_memsz)
31d99776
DJ
112 {
113 data->segment_info[i] = j + 1;
114 break;
115 }
116
ad09a548
DJ
117 /* We should have found a segment for every non-empty section.
118 If we haven't, we will not relocate this section by any
119 offsets we apply to the segments. As an exception, do not
120 warn about SHT_NOBITS sections; in normal ELF execution
121 environments, SHT_NOBITS means zero-initialized and belongs
122 in a segment, but in no-OS environments some tools (e.g. ARM
123 RealView) use SHT_NOBITS for uninitialized data. Since it is
124 uninitialized, it doesn't need a program header. Such
125 binaries are not relocatable. */
126 if (bfd_get_section_size (sect) > 0 && j == num_segments
127 && (bfd_get_section_flags (abfd, sect) & SEC_LOAD) != 0)
31d99776
DJ
128 warning (_("Loadable segment \"%s\" outside of ELF segments"),
129 bfd_section_name (abfd, sect));
130 }
131
132 return data;
133}
134
c906108c
SS
135/* We are called once per section from elf_symfile_read. We
136 need to examine each section we are passed, check to see
137 if it is something we are interested in processing, and
138 if so, stash away some access information for the section.
139
140 For now we recognize the dwarf debug information sections and
141 line number sections from matching their section names. The
142 ELF definition is no real help here since it has no direct
143 knowledge of DWARF (by design, so any debugging format can be
144 used).
145
146 We also recognize the ".stab" sections used by the Sun compilers
147 released with Solaris 2.
148
149 FIXME: The section names should not be hardwired strings (what
150 should they be? I don't think most object file formats have enough
151 section flags to specify what kind of debug section it is
152 -kingdon). */
153
154static void
12b9c64f 155elf_locate_sections (bfd *ignore_abfd, asection *sectp, void *eip)
c906108c 156{
52f0bd74 157 struct elfinfo *ei;
c906108c
SS
158
159 ei = (struct elfinfo *) eip;
7ce59000 160 if (strcmp (sectp->name, ".stab") == 0)
c906108c 161 {
c5aa993b 162 ei->stabsect = sectp;
c906108c 163 }
6314a349 164 else if (strcmp (sectp->name, ".stab.index") == 0)
c906108c 165 {
c5aa993b 166 ei->stabindexsect = sectp;
c906108c 167 }
6314a349 168 else if (strcmp (sectp->name, ".mdebug") == 0)
c906108c 169 {
c5aa993b 170 ei->mdebugsect = sectp;
c906108c
SS
171 }
172}
173
c906108c 174static struct minimal_symbol *
04a679b8
TT
175record_minimal_symbol (const char *name, int name_len, int copy_name,
176 CORE_ADDR address,
f594e5e9
MC
177 enum minimal_symbol_type ms_type,
178 asection *bfd_section, struct objfile *objfile)
c906108c 179{
5e2b427d
UW
180 struct gdbarch *gdbarch = get_objfile_arch (objfile);
181
bbeae047 182 if (ms_type == mst_text || ms_type == mst_file_text)
5e2b427d 183 address = gdbarch_smash_text_address (gdbarch, address);
c906108c 184
04a679b8
TT
185 return prim_record_minimal_symbol_full (name, name_len, copy_name, address,
186 ms_type, bfd_section->index,
187 bfd_section, objfile);
c906108c
SS
188}
189
190/*
191
c5aa993b 192 LOCAL FUNCTION
c906108c 193
c5aa993b 194 elf_symtab_read -- read the symbol table of an ELF file
c906108c 195
c5aa993b 196 SYNOPSIS
c906108c 197
6f610d07 198 void elf_symtab_read (struct objfile *objfile, int type,
62553543 199 long number_of_symbols, asymbol **symbol_table)
c906108c 200
c5aa993b 201 DESCRIPTION
c906108c 202
62553543 203 Given an objfile, a symbol table, and a flag indicating whether the
6f610d07
UW
204 symbol table contains regular, dynamic, or synthetic symbols, add all
205 the global function and data symbols to the minimal symbol table.
c906108c 206
c5aa993b
JM
207 In stabs-in-ELF, as implemented by Sun, there are some local symbols
208 defined in the ELF symbol table, which can be used to locate
209 the beginnings of sections from each ".o" file that was linked to
210 form the executable objfile. We gather any such info and record it
211 in data structures hung off the objfile's private data.
c906108c 212
c5aa993b 213 */
c906108c 214
6f610d07
UW
215#define ST_REGULAR 0
216#define ST_DYNAMIC 1
217#define ST_SYNTHETIC 2
218
c906108c 219static void
6f610d07 220elf_symtab_read (struct objfile *objfile, int type,
04a679b8
TT
221 long number_of_symbols, asymbol **symbol_table,
222 int copy_names)
c906108c 223{
5e2b427d 224 struct gdbarch *gdbarch = get_objfile_arch (objfile);
c906108c
SS
225 long storage_needed;
226 asymbol *sym;
c906108c 227 long i;
c906108c 228 CORE_ADDR symaddr;
d4f3574e 229 CORE_ADDR offset;
c906108c
SS
230 enum minimal_symbol_type ms_type;
231 /* If sectinfo is nonNULL, it contains section info that should end up
232 filed in the objfile. */
233 struct stab_section_info *sectinfo = NULL;
234 /* If filesym is nonzero, it points to a file symbol, but we haven't
235 seen any section info for it yet. */
236 asymbol *filesym = 0;
1c9e8358
TT
237 /* Name of filesym. This is either a constant string or is saved on
238 the objfile's obstack. */
239 char *filesymname = "";
0a6ddd08 240 struct dbx_symfile_info *dbx = objfile->deprecated_sym_stab_info;
d4f3574e 241 int stripped = (bfd_get_symcount (objfile->obfd) == 0);
c5aa993b 242
0cc7b392 243 for (i = 0; i < number_of_symbols; i++)
c906108c 244 {
0cc7b392
DJ
245 sym = symbol_table[i];
246 if (sym->name == NULL || *sym->name == '\0')
c906108c 247 {
0cc7b392
DJ
248 /* Skip names that don't exist (shouldn't happen), or names
249 that are null strings (may happen). */
250 continue;
251 }
c906108c 252
74763737
DJ
253 /* Skip "special" symbols, e.g. ARM mapping symbols. These are
254 symbols which do not correspond to objects in the symbol table,
255 but have some other target-specific meaning. */
256 if (bfd_is_target_special_symbol (objfile->obfd, sym))
60c5725c
DJ
257 {
258 if (gdbarch_record_special_symbol_p (gdbarch))
259 gdbarch_record_special_symbol (gdbarch, objfile, sym);
260 continue;
261 }
74763737 262
0cc7b392 263 offset = ANOFFSET (objfile->section_offsets, sym->section->index);
6f610d07 264 if (type == ST_DYNAMIC
0cc7b392
DJ
265 && sym->section == &bfd_und_section
266 && (sym->flags & BSF_FUNCTION))
267 {
268 struct minimal_symbol *msym;
02c75f72
UW
269 bfd *abfd = objfile->obfd;
270 asection *sect;
0cc7b392
DJ
271
272 /* Symbol is a reference to a function defined in
273 a shared library.
274 If its value is non zero then it is usually the address
275 of the corresponding entry in the procedure linkage table,
276 plus the desired section offset.
277 If its value is zero then the dynamic linker has to resolve
278 the symbol. We are unable to find any meaningful address
279 for this symbol in the executable file, so we skip it. */
280 symaddr = sym->value;
281 if (symaddr == 0)
282 continue;
02c75f72
UW
283
284 /* sym->section is the undefined section. However, we want to
285 record the section where the PLT stub resides with the
286 minimal symbol. Search the section table for the one that
287 covers the stub's address. */
288 for (sect = abfd->sections; sect != NULL; sect = sect->next)
289 {
290 if ((bfd_get_section_flags (abfd, sect) & SEC_ALLOC) == 0)
291 continue;
292
293 if (symaddr >= bfd_get_section_vma (abfd, sect)
294 && symaddr < bfd_get_section_vma (abfd, sect)
295 + bfd_get_section_size (sect))
296 break;
297 }
298 if (!sect)
299 continue;
300
301 symaddr += ANOFFSET (objfile->section_offsets, sect->index);
302
0cc7b392 303 msym = record_minimal_symbol
04a679b8
TT
304 (sym->name, strlen (sym->name), copy_names,
305 symaddr, mst_solib_trampoline, sect, objfile);
0cc7b392
DJ
306 if (msym != NULL)
307 msym->filename = filesymname;
0cc7b392
DJ
308 continue;
309 }
c906108c 310
0cc7b392
DJ
311 /* If it is a nonstripped executable, do not enter dynamic
312 symbols, as the dynamic symbol table is usually a subset
313 of the main symbol table. */
6f610d07 314 if (type == ST_DYNAMIC && !stripped)
0cc7b392
DJ
315 continue;
316 if (sym->flags & BSF_FILE)
317 {
318 /* STT_FILE debugging symbol that helps stabs-in-elf debugging.
319 Chain any old one onto the objfile; remember new sym. */
320 if (sectinfo != NULL)
c906108c 321 {
0cc7b392
DJ
322 sectinfo->next = dbx->stab_section_info;
323 dbx->stab_section_info = sectinfo;
324 sectinfo = NULL;
325 }
326 filesym = sym;
0cc7b392
DJ
327 filesymname =
328 obsavestring ((char *) filesym->name, strlen (filesym->name),
329 &objfile->objfile_obstack);
0cc7b392
DJ
330 }
331 else if (sym->flags & BSF_SECTION_SYM)
332 continue;
333 else if (sym->flags & (BSF_GLOBAL | BSF_LOCAL | BSF_WEAK))
334 {
335 struct minimal_symbol *msym;
336
337 /* Select global/local/weak symbols. Note that bfd puts abs
338 symbols in their own section, so all symbols we are
339 interested in will have a section. */
340 /* Bfd symbols are section relative. */
341 symaddr = sym->value + sym->section->vma;
45148c2e
UW
342 /* Relocate all non-absolute and non-TLS symbols by the
343 section offset. */
344 if (sym->section != &bfd_abs_section
345 && !(sym->section->flags & SEC_THREAD_LOCAL))
0cc7b392
DJ
346 {
347 symaddr += offset;
c906108c 348 }
0cc7b392
DJ
349 /* For non-absolute symbols, use the type of the section
350 they are relative to, to intuit text/data. Bfd provides
351 no way of figuring this out for absolute symbols. */
352 if (sym->section == &bfd_abs_section)
c906108c 353 {
0cc7b392
DJ
354 /* This is a hack to get the minimal symbol type
355 right for Irix 5, which has absolute addresses
6f610d07
UW
356 with special section indices for dynamic symbols.
357
358 NOTE: uweigand-20071112: Synthetic symbols do not
359 have an ELF-private part, so do not touch those. */
4fbb74a6 360 unsigned int shndx = type == ST_SYNTHETIC ? 0 :
0cc7b392
DJ
361 ((elf_symbol_type *) sym)->internal_elf_sym.st_shndx;
362
363 switch (shndx)
c906108c 364 {
0cc7b392
DJ
365 case SHN_MIPS_TEXT:
366 ms_type = mst_text;
367 break;
368 case SHN_MIPS_DATA:
369 ms_type = mst_data;
370 break;
371 case SHN_MIPS_ACOMMON:
372 ms_type = mst_bss;
373 break;
374 default:
375 ms_type = mst_abs;
376 }
377
378 /* If it is an Irix dynamic symbol, skip section name
379 symbols, relocate all others by section offset. */
380 if (ms_type != mst_abs)
381 {
382 if (sym->name[0] == '.')
383 continue;
d4f3574e 384 symaddr += offset;
c906108c 385 }
0cc7b392
DJ
386 }
387 else if (sym->section->flags & SEC_CODE)
388 {
08232497 389 if (sym->flags & (BSF_GLOBAL | BSF_WEAK))
c906108c 390 {
0cc7b392
DJ
391 ms_type = mst_text;
392 }
393 else if ((sym->name[0] == '.' && sym->name[1] == 'L')
394 || ((sym->flags & BSF_LOCAL)
395 && sym->name[0] == '$'
396 && sym->name[1] == 'L'))
397 /* Looks like a compiler-generated label. Skip
398 it. The assembler should be skipping these (to
399 keep executables small), but apparently with
400 gcc on the (deleted) delta m88k SVR4, it loses.
401 So to have us check too should be harmless (but
402 I encourage people to fix this in the assembler
403 instead of adding checks here). */
404 continue;
405 else
406 {
407 ms_type = mst_file_text;
c906108c 408 }
0cc7b392
DJ
409 }
410 else if (sym->section->flags & SEC_ALLOC)
411 {
412 if (sym->flags & (BSF_GLOBAL | BSF_WEAK))
c906108c 413 {
0cc7b392 414 if (sym->section->flags & SEC_LOAD)
c906108c 415 {
0cc7b392 416 ms_type = mst_data;
c906108c 417 }
c906108c
SS
418 else
419 {
0cc7b392 420 ms_type = mst_bss;
c906108c
SS
421 }
422 }
0cc7b392 423 else if (sym->flags & BSF_LOCAL)
c906108c 424 {
0cc7b392
DJ
425 /* Named Local variable in a Data section.
426 Check its name for stabs-in-elf. */
427 int special_local_sect;
428 if (strcmp ("Bbss.bss", sym->name) == 0)
429 special_local_sect = SECT_OFF_BSS (objfile);
430 else if (strcmp ("Ddata.data", sym->name) == 0)
431 special_local_sect = SECT_OFF_DATA (objfile);
432 else if (strcmp ("Drodata.rodata", sym->name) == 0)
433 special_local_sect = SECT_OFF_RODATA (objfile);
434 else
435 special_local_sect = -1;
436 if (special_local_sect >= 0)
c906108c 437 {
0cc7b392
DJ
438 /* Found a special local symbol. Allocate a
439 sectinfo, if needed, and fill it in. */
440 if (sectinfo == NULL)
c906108c 441 {
0cc7b392
DJ
442 int max_index;
443 size_t size;
444
25c2f6ab
PP
445 max_index = SECT_OFF_BSS (objfile);
446 if (objfile->sect_index_data > max_index)
447 max_index = objfile->sect_index_data;
448 if (objfile->sect_index_rodata > max_index)
449 max_index = objfile->sect_index_rodata;
0cc7b392
DJ
450
451 /* max_index is the largest index we'll
452 use into this array, so we must
453 allocate max_index+1 elements for it.
454 However, 'struct stab_section_info'
455 already includes one element, so we
456 need to allocate max_index aadditional
457 elements. */
458 size = (sizeof (struct stab_section_info)
459 + (sizeof (CORE_ADDR)
460 * max_index));
461 sectinfo = (struct stab_section_info *)
462 xmalloc (size);
463 memset (sectinfo, 0, size);
464 sectinfo->num_sections = max_index;
465 if (filesym == NULL)
c906108c 466 {
0cc7b392
DJ
467 complaint (&symfile_complaints,
468 _("elf/stab section information %s without a preceding file symbol"),
469 sym->name);
470 }
471 else
472 {
473 sectinfo->filename =
474 (char *) filesym->name;
c906108c 475 }
c906108c 476 }
0cc7b392
DJ
477 if (sectinfo->sections[special_local_sect] != 0)
478 complaint (&symfile_complaints,
479 _("duplicated elf/stab section information for %s"),
480 sectinfo->filename);
481 /* BFD symbols are section relative. */
482 symaddr = sym->value + sym->section->vma;
483 /* Relocate non-absolute symbols by the
484 section offset. */
485 if (sym->section != &bfd_abs_section)
486 symaddr += offset;
487 sectinfo->sections[special_local_sect] = symaddr;
488 /* The special local symbols don't go in the
489 minimal symbol table, so ignore this one. */
490 continue;
491 }
492 /* Not a special stabs-in-elf symbol, do regular
493 symbol processing. */
494 if (sym->section->flags & SEC_LOAD)
495 {
496 ms_type = mst_file_data;
c906108c
SS
497 }
498 else
499 {
0cc7b392 500 ms_type = mst_file_bss;
c906108c
SS
501 }
502 }
503 else
504 {
0cc7b392 505 ms_type = mst_unknown;
c906108c 506 }
0cc7b392
DJ
507 }
508 else
509 {
510 /* FIXME: Solaris2 shared libraries include lots of
511 odd "absolute" and "undefined" symbols, that play
512 hob with actions like finding what function the PC
513 is in. Ignore them if they aren't text, data, or bss. */
514 /* ms_type = mst_unknown; */
515 continue; /* Skip this symbol. */
516 }
517 msym = record_minimal_symbol
04a679b8 518 (sym->name, strlen (sym->name), copy_names, symaddr,
0cc7b392 519 ms_type, sym->section, objfile);
6f610d07 520
0cc7b392
DJ
521 if (msym)
522 {
523 /* Pass symbol size field in via BFD. FIXME!!! */
6f610d07
UW
524 elf_symbol_type *elf_sym;
525
526 /* NOTE: uweigand-20071112: A synthetic symbol does not have an
527 ELF-private part. However, in some cases (e.g. synthetic
528 'dot' symbols on ppc64) the udata.p entry is set to point back
529 to the original ELF symbol it was derived from. Get the size
530 from that symbol. */
531 if (type != ST_SYNTHETIC)
532 elf_sym = (elf_symbol_type *) sym;
533 else
534 elf_sym = (elf_symbol_type *) sym->udata.p;
535
536 if (elf_sym)
537 MSYMBOL_SIZE(msym) = elf_sym->internal_elf_sym.st_size;
a103a963
DJ
538
539 msym->filename = filesymname;
540 gdbarch_elf_make_msymbol_special (gdbarch, sym, msym);
0cc7b392 541 }
2eaf8d2a
DJ
542
543 /* For @plt symbols, also record a trampoline to the
544 destination symbol. The @plt symbol will be used in
545 disassembly, and the trampoline will be used when we are
546 trying to find the target. */
547 if (msym && ms_type == mst_text && type == ST_SYNTHETIC)
548 {
549 int len = strlen (sym->name);
550
551 if (len > 4 && strcmp (sym->name + len - 4, "@plt") == 0)
552 {
2eaf8d2a
DJ
553 struct minimal_symbol *mtramp;
554
04a679b8
TT
555 mtramp = record_minimal_symbol (sym->name, len - 4, 1,
556 symaddr,
2eaf8d2a
DJ
557 mst_solib_trampoline,
558 sym->section, objfile);
559 if (mtramp)
560 {
561 MSYMBOL_SIZE (mtramp) = MSYMBOL_SIZE (msym);
562 mtramp->filename = filesymname;
563 gdbarch_elf_make_msymbol_special (gdbarch, sym, mtramp);
564 }
565 }
566 }
c906108c 567 }
c906108c
SS
568 }
569}
570
571/* Scan and build partial symbols for a symbol file.
572 We have been initialized by a call to elf_symfile_init, which
573 currently does nothing.
574
575 SECTION_OFFSETS is a set of offsets to apply to relocate the symbols
576 in each section. We simplify it down to a single offset for all
577 symbols. FIXME.
578
c906108c
SS
579 This function only does the minimum work necessary for letting the
580 user "name" things symbolically; it does not read the entire symtab.
581 Instead, it reads the external and static symbols and puts them in partial
582 symbol tables. When more extensive information is requested of a
583 file, the corresponding partial symbol table is mutated into a full
584 fledged symbol table by going back and reading the symbols
585 for real.
586
587 We look for sections with specific names, to tell us what debug
588 format to look for: FIXME!!!
589
c906108c
SS
590 elfstab_build_psymtabs() handles STABS symbols;
591 mdebug_build_psymtabs() handles ECOFF debugging information.
592
593 Note that ELF files have a "minimal" symbol table, which looks a lot
594 like a COFF symbol table, but has only the minimal information necessary
595 for linking. We process this also, and use the information to
596 build gdb's minimal symbol table. This gives us some minimal debugging
597 capability even for files compiled without -g. */
598
599static void
f4352531 600elf_symfile_read (struct objfile *objfile, int symfile_flags)
c906108c
SS
601{
602 bfd *abfd = objfile->obfd;
603 struct elfinfo ei;
604 struct cleanup *back_to;
605 CORE_ADDR offset;
62553543
EZ
606 long symcount = 0, dynsymcount = 0, synthcount, storage_needed;
607 asymbol **symbol_table = NULL, **dyn_symbol_table = NULL;
608 asymbol *synthsyms;
c906108c
SS
609
610 init_minimal_symbol_collection ();
56e290f4 611 back_to = make_cleanup_discard_minimal_symbols ();
c906108c
SS
612
613 memset ((char *) &ei, 0, sizeof (ei));
614
615 /* Allocate struct to keep track of the symfile */
0a6ddd08 616 objfile->deprecated_sym_stab_info = (struct dbx_symfile_info *)
7936743b 617 xmalloc (sizeof (struct dbx_symfile_info));
0a6ddd08 618 memset ((char *) objfile->deprecated_sym_stab_info, 0, sizeof (struct dbx_symfile_info));
12b9c64f 619 make_cleanup (free_elfinfo, (void *) objfile);
c906108c
SS
620
621 /* Process the normal ELF symbol table first. This may write some
0a6ddd08 622 chain of info into the dbx_symfile_info in objfile->deprecated_sym_stab_info,
c906108c
SS
623 which can later be used by elfstab_offset_sections. */
624
62553543
EZ
625 storage_needed = bfd_get_symtab_upper_bound (objfile->obfd);
626 if (storage_needed < 0)
627 error (_("Can't read symbols from %s: %s"), bfd_get_filename (objfile->obfd),
628 bfd_errmsg (bfd_get_error ()));
629
630 if (storage_needed > 0)
631 {
632 symbol_table = (asymbol **) xmalloc (storage_needed);
633 make_cleanup (xfree, symbol_table);
634 symcount = bfd_canonicalize_symtab (objfile->obfd, symbol_table);
635
636 if (symcount < 0)
637 error (_("Can't read symbols from %s: %s"), bfd_get_filename (objfile->obfd),
638 bfd_errmsg (bfd_get_error ()));
639
04a679b8 640 elf_symtab_read (objfile, ST_REGULAR, symcount, symbol_table, 0);
62553543 641 }
c906108c
SS
642
643 /* Add the dynamic symbols. */
644
62553543
EZ
645 storage_needed = bfd_get_dynamic_symtab_upper_bound (objfile->obfd);
646
647 if (storage_needed > 0)
648 {
649 dyn_symbol_table = (asymbol **) xmalloc (storage_needed);
650 make_cleanup (xfree, dyn_symbol_table);
651 dynsymcount = bfd_canonicalize_dynamic_symtab (objfile->obfd,
652 dyn_symbol_table);
653
654 if (dynsymcount < 0)
655 error (_("Can't read symbols from %s: %s"), bfd_get_filename (objfile->obfd),
656 bfd_errmsg (bfd_get_error ()));
657
04a679b8 658 elf_symtab_read (objfile, ST_DYNAMIC, dynsymcount, dyn_symbol_table, 0);
62553543
EZ
659 }
660
661 /* Add synthetic symbols - for instance, names for any PLT entries. */
662
663 synthcount = bfd_get_synthetic_symtab (abfd, symcount, symbol_table,
664 dynsymcount, dyn_symbol_table,
665 &synthsyms);
666 if (synthcount > 0)
667 {
668 asymbol **synth_symbol_table;
669 long i;
670
671 make_cleanup (xfree, synthsyms);
672 synth_symbol_table = xmalloc (sizeof (asymbol *) * synthcount);
673 for (i = 0; i < synthcount; i++)
9f20e3da 674 synth_symbol_table[i] = synthsyms + i;
62553543 675 make_cleanup (xfree, synth_symbol_table);
04a679b8 676 elf_symtab_read (objfile, ST_SYNTHETIC, synthcount, synth_symbol_table, 1);
62553543 677 }
c906108c 678
7134143f
DJ
679 /* Install any minimal symbols that have been collected as the current
680 minimal symbols for this objfile. The debug readers below this point
681 should not generate new minimal symbols; if they do it's their
682 responsibility to install them. "mdebug" appears to be the only one
683 which will do this. */
684
685 install_minimal_symbols (objfile);
686 do_cleanups (back_to);
687
c906108c
SS
688 /* Now process debugging information, which is contained in
689 special ELF sections. */
690
c906108c 691 /* We first have to find them... */
12b9c64f 692 bfd_map_over_sections (abfd, elf_locate_sections, (void *) & ei);
c906108c
SS
693
694 /* ELF debugging information is inserted into the psymtab in the
695 order of least informative first - most informative last. Since
696 the psymtab table is searched `most recent insertion first' this
697 increases the probability that more detailed debug information
698 for a section is found.
699
700 For instance, an object file might contain both .mdebug (XCOFF)
701 and .debug_info (DWARF2) sections then .mdebug is inserted first
702 (searched last) and DWARF2 is inserted last (searched first). If
703 we don't do this then the XCOFF info is found first - for code in
704 an included file XCOFF info is useless. */
705
706 if (ei.mdebugsect)
707 {
708 const struct ecoff_debug_swap *swap;
709
710 /* .mdebug section, presumably holding ECOFF debugging
c5aa993b 711 information. */
c906108c
SS
712 swap = get_elf_backend_data (abfd)->elf_backend_ecoff_debug_swap;
713 if (swap)
d4f3574e 714 elfmdebug_build_psymtabs (objfile, swap, ei.mdebugsect);
c906108c
SS
715 }
716 if (ei.stabsect)
717 {
718 asection *str_sect;
719
720 /* Stab sections have an associated string table that looks like
c5aa993b 721 a separate section. */
c906108c
SS
722 str_sect = bfd_get_section_by_name (abfd, ".stabstr");
723
724 /* FIXME should probably warn about a stab section without a stabstr. */
725 if (str_sect)
726 elfstab_build_psymtabs (objfile,
086df311 727 ei.stabsect,
c906108c
SS
728 str_sect->filepos,
729 bfd_section_size (abfd, str_sect));
730 }
c5edf76a 731 if (dwarf2_has_info (objfile))
c906108c
SS
732 {
733 /* DWARF 2 sections */
f29dff0a 734 dwarf2_build_psymtabs (objfile);
c906108c 735 }
c906108c 736
625b0b97
AC
737 /* FIXME: kettenis/20030504: This still needs to be integrated with
738 dwarf2read.c in a better way. */
739 dwarf2_build_frame_info (objfile);
9cce227f
TG
740
741 /* If the file has its own symbol tables it has no separate debug info.
742 `.dynsym'/`.symtab' go to MSYMBOLS, `.debug_info' goes to SYMTABS/PSYMTABS.
743 `.gnu_debuglink' may no longer be present with `.note.gnu.build-id'. */
744 if (!objfile_has_partial_symbols (objfile))
745 {
746 char *debugfile;
747
748 debugfile = find_separate_debug_file_by_buildid (objfile);
749
750 if (debugfile == NULL)
751 debugfile = find_separate_debug_file_by_debuglink (objfile);
752
753 if (debugfile)
754 {
755 bfd *abfd = symfile_bfd_open (debugfile);
756 symbol_file_add_separate (abfd, symfile_flags, objfile);
757 xfree (debugfile);
758 }
759 }
c906108c
SS
760}
761
0a6ddd08
AC
762/* This cleans up the objfile's deprecated_sym_stab_info pointer, and
763 the chain of stab_section_info's, that might be dangling from
764 it. */
c906108c
SS
765
766static void
12b9c64f 767free_elfinfo (void *objp)
c906108c 768{
c5aa993b 769 struct objfile *objfile = (struct objfile *) objp;
0a6ddd08 770 struct dbx_symfile_info *dbxinfo = objfile->deprecated_sym_stab_info;
c906108c
SS
771 struct stab_section_info *ssi, *nssi;
772
773 ssi = dbxinfo->stab_section_info;
774 while (ssi)
775 {
776 nssi = ssi->next;
2dc74dc1 777 xfree (ssi);
c906108c
SS
778 ssi = nssi;
779 }
780
781 dbxinfo->stab_section_info = 0; /* Just say No mo info about this. */
782}
783
784
785/* Initialize anything that needs initializing when a completely new symbol
786 file is specified (not just adding some symbols from another file, e.g. a
787 shared library).
788
789 We reinitialize buildsym, since we may be reading stabs from an ELF file. */
790
791static void
fba45db2 792elf_new_init (struct objfile *ignore)
c906108c
SS
793{
794 stabsread_new_init ();
795 buildsym_new_init ();
796}
797
798/* Perform any local cleanups required when we are done with a particular
799 objfile. I.E, we are in the process of discarding all symbol information
800 for an objfile, freeing up all memory held for it, and unlinking the
801 objfile struct from the global list of known objfiles. */
802
803static void
fba45db2 804elf_symfile_finish (struct objfile *objfile)
c906108c 805{
0a6ddd08 806 if (objfile->deprecated_sym_stab_info != NULL)
c906108c 807 {
0a6ddd08 808 xfree (objfile->deprecated_sym_stab_info);
c906108c 809 }
fe3e1990
DJ
810
811 dwarf2_free_objfile (objfile);
c906108c
SS
812}
813
814/* ELF specific initialization routine for reading symbols.
815
816 It is passed a pointer to a struct sym_fns which contains, among other
817 things, the BFD for the file whose symbols are being read, and a slot for
818 a pointer to "private data" which we can fill with goodies.
819
820 For now at least, we have nothing in particular to do, so this function is
821 just a stub. */
822
823static void
fba45db2 824elf_symfile_init (struct objfile *objfile)
c906108c
SS
825{
826 /* ELF objects may be reordered, so set OBJF_REORDERED. If we
827 find this causes a significant slowdown in gdb then we could
828 set it in the debug symbol readers only when necessary. */
829 objfile->flags |= OBJF_REORDERED;
830}
831
832/* When handling an ELF file that contains Sun STABS debug info,
833 some of the debug info is relative to the particular chunk of the
834 section that was generated in its individual .o file. E.g.
835 offsets to static variables are relative to the start of the data
836 segment *for that module before linking*. This information is
837 painfully squirreled away in the ELF symbol table as local symbols
838 with wierd names. Go get 'em when needed. */
839
840void
fba45db2 841elfstab_offset_sections (struct objfile *objfile, struct partial_symtab *pst)
c906108c
SS
842{
843 char *filename = pst->filename;
0a6ddd08 844 struct dbx_symfile_info *dbx = objfile->deprecated_sym_stab_info;
c906108c
SS
845 struct stab_section_info *maybe = dbx->stab_section_info;
846 struct stab_section_info *questionable = 0;
847 int i;
848 char *p;
849
850 /* The ELF symbol info doesn't include path names, so strip the path
851 (if any) from the psymtab filename. */
852 while (0 != (p = strchr (filename, '/')))
c5aa993b 853 filename = p + 1;
c906108c
SS
854
855 /* FIXME: This linear search could speed up significantly
856 if it was chained in the right order to match how we search it,
857 and if we unchained when we found a match. */
858 for (; maybe; maybe = maybe->next)
859 {
860 if (filename[0] == maybe->filename[0]
6314a349 861 && strcmp (filename, maybe->filename) == 0)
c906108c
SS
862 {
863 /* We found a match. But there might be several source files
864 (from different directories) with the same name. */
865 if (0 == maybe->found)
866 break;
c5aa993b 867 questionable = maybe; /* Might use it later. */
c906108c
SS
868 }
869 }
870
871 if (maybe == 0 && questionable != 0)
872 {
23136709 873 complaint (&symfile_complaints,
e2e0b3e5 874 _("elf/stab section information questionable for %s"), filename);
c906108c
SS
875 maybe = questionable;
876 }
877
878 if (maybe)
879 {
880 /* Found it! Allocate a new psymtab struct, and fill it in. */
881 maybe->found++;
882 pst->section_offsets = (struct section_offsets *)
8b92e4d5 883 obstack_alloc (&objfile->objfile_obstack,
a39a16c4
MM
884 SIZEOF_N_SECTION_OFFSETS (objfile->num_sections));
885 for (i = 0; i < maybe->num_sections; i++)
a4c8257b 886 (pst->section_offsets)->offsets[i] = maybe->sections[i];
c906108c
SS
887 return;
888 }
889
890 /* We were unable to find any offsets for this file. Complain. */
c5aa993b 891 if (dbx->stab_section_info) /* If there *is* any info, */
23136709 892 complaint (&symfile_complaints,
e2e0b3e5 893 _("elf/stab section information missing for %s"), filename);
c906108c
SS
894}
895\f
896/* Register that we are able to handle ELF object file formats. */
897
898static struct sym_fns elf_sym_fns =
899{
900 bfd_target_elf_flavour,
c5aa993b
JM
901 elf_new_init, /* sym_new_init: init anything gbl to entire symtab */
902 elf_symfile_init, /* sym_init: read initial info, setup for sym_read() */
903 elf_symfile_read, /* sym_read: read a symbol file into symtab */
904 elf_symfile_finish, /* sym_finish: finished with file, cleanup */
96baa820 905 default_symfile_offsets, /* sym_offsets: Translate ext. to int. relocation */
31d99776
DJ
906 elf_symfile_segments, /* sym_segments: Get segment information from
907 a file. */
c295b2e5 908 NULL, /* sym_read_linetable */
c5aa993b 909 NULL /* next: pointer to next struct sym_fns */
c906108c
SS
910};
911
912void
fba45db2 913_initialize_elfread (void)
c906108c
SS
914{
915 add_symtab_fns (&elf_sym_fns);
916}
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