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[deliverable/binutils-gdb.git] / gdb / objfiles.c
CommitLineData
c906108c 1/* GDB routines for manipulating objfiles.
af5f3db6 2
197e01b6 3 Copyright (C) 1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999, 2000,
b99607ea 4 2001, 2002, 2003, 2004 Free Software Foundation, Inc.
af5f3db6 5
c906108c
SS
6 Contributed by Cygnus Support, using pieces from other GDB modules.
7
c5aa993b 8 This file is part of GDB.
c906108c 9
c5aa993b
JM
10 This program is free software; you can redistribute it and/or modify
11 it under the terms of the GNU General Public License as published by
12 the Free Software Foundation; either version 2 of the License, or
13 (at your option) any later version.
c906108c 14
c5aa993b
JM
15 This program is distributed in the hope that it will be useful,
16 but WITHOUT ANY WARRANTY; without even the implied warranty of
17 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18 GNU General Public License for more details.
c906108c 19
c5aa993b
JM
20 You should have received a copy of the GNU General Public License
21 along with this program; if not, write to the Free Software
197e01b6
EZ
22 Foundation, Inc., 51 Franklin Street, Fifth Floor,
23 Boston, MA 02110-1301, USA. */
c906108c
SS
24
25/* This file contains support routines for creating, manipulating, and
26 destroying objfile structures. */
27
28#include "defs.h"
29#include "bfd.h" /* Binary File Description */
30#include "symtab.h"
31#include "symfile.h"
32#include "objfiles.h"
33#include "gdb-stabs.h"
34#include "target.h"
af5f3db6 35#include "bcache.h"
5b123146 36#include "mdebugread.h"
0d0e1a63 37#include "gdb_assert.h"
c906108c
SS
38#include <sys/types.h>
39#include "gdb_stat.h"
40#include <fcntl.h>
04ea0df1 41#include "gdb_obstack.h"
c906108c 42#include "gdb_string.h"
2de7ced7 43#include "hashtab.h"
c906108c 44
7a292a7a 45#include "breakpoint.h"
fe898f56 46#include "block.h"
de4f826b 47#include "dictionary.h"
7a292a7a 48
c906108c
SS
49/* Prototypes for local functions */
50
0d0e1a63
MK
51static void objfile_alloc_data (struct objfile *objfile);
52static void objfile_free_data (struct objfile *objfile);
53
c906108c
SS
54/* Externally visible variables that are owned by this module.
55 See declarations in objfile.h for more info. */
56
c5aa993b 57struct objfile *object_files; /* Linked list of all objfiles */
c906108c
SS
58struct objfile *current_objfile; /* For symbol file being read in */
59struct objfile *symfile_objfile; /* Main symbol table loaded from */
60struct objfile *rt_common_objfile; /* For runtime common symbols */
61
c906108c
SS
62/* Locate all mappable sections of a BFD file.
63 objfile_p_char is a char * to get it through
64 bfd_map_over_sections; we cast it back to its proper type. */
65
66#ifndef TARGET_KEEP_SECTION
67#define TARGET_KEEP_SECTION(ASECT) 0
68#endif
69
96baa820
JM
70/* Called via bfd_map_over_sections to build up the section table that
71 the objfile references. The objfile contains pointers to the start
72 of the table (objfile->sections) and to the first location after
73 the end of the table (objfile->sections_end). */
74
c906108c 75static void
7be0c536
AC
76add_to_objfile_sections (struct bfd *abfd, struct bfd_section *asect,
77 void *objfile_p_char)
c906108c
SS
78{
79 struct objfile *objfile = (struct objfile *) objfile_p_char;
80 struct obj_section section;
81 flagword aflag;
82
83 aflag = bfd_get_section_flags (abfd, asect);
84
c5aa993b 85 if (!(aflag & SEC_ALLOC) && !(TARGET_KEEP_SECTION (asect)))
c906108c
SS
86 return;
87
88 if (0 == bfd_section_size (abfd, asect))
89 return;
90 section.offset = 0;
91 section.objfile = objfile;
92 section.the_bfd_section = asect;
93 section.ovly_mapped = 0;
94 section.addr = bfd_section_vma (abfd, asect);
95 section.endaddr = section.addr + bfd_section_size (abfd, asect);
8b92e4d5 96 obstack_grow (&objfile->objfile_obstack, (char *) &section, sizeof (section));
c906108c
SS
97 objfile->sections_end = (struct obj_section *) (((unsigned long) objfile->sections_end) + 1);
98}
99
100/* Builds a section table for OBJFILE.
101 Returns 0 if OK, 1 on error (in which case bfd_error contains the
96baa820
JM
102 error).
103
104 Note that while we are building the table, which goes into the
105 psymbol obstack, we hijack the sections_end pointer to instead hold
106 a count of the number of sections. When bfd_map_over_sections
107 returns, this count is used to compute the pointer to the end of
108 the sections table, which then overwrites the count.
109
110 Also note that the OFFSET and OVLY_MAPPED in each table entry
111 are initialized to zero.
112
113 Also note that if anything else writes to the psymbol obstack while
114 we are building the table, we're pretty much hosed. */
c906108c
SS
115
116int
fba45db2 117build_objfile_section_table (struct objfile *objfile)
c906108c
SS
118{
119 /* objfile->sections can be already set when reading a mapped symbol
120 file. I believe that we do need to rebuild the section table in
121 this case (we rebuild other things derived from the bfd), but we
8b92e4d5 122 can't free the old one (it's in the objfile_obstack). So we just
c906108c
SS
123 waste some memory. */
124
125 objfile->sections_end = 0;
c5aa993b 126 bfd_map_over_sections (objfile->obfd, add_to_objfile_sections, (char *) objfile);
c906108c 127 objfile->sections = (struct obj_section *)
8b92e4d5 128 obstack_finish (&objfile->objfile_obstack);
c906108c 129 objfile->sections_end = objfile->sections + (unsigned long) objfile->sections_end;
c5aa993b 130 return (0);
c906108c
SS
131}
132
2df3850c
JM
133/* Given a pointer to an initialized bfd (ABFD) and some flag bits
134 allocate a new objfile struct, fill it in as best we can, link it
135 into the list of all known objfiles, and return a pointer to the
136 new objfile struct.
c906108c 137
2df3850c 138 The FLAGS word contains various bits (OBJF_*) that can be taken as
78a4a9b9
AC
139 requests for specific operations. Other bits like OBJF_SHARED are
140 simply copied through to the new objfile flags member. */
c906108c 141
eb9a305d
DC
142/* NOTE: carlton/2003-02-04: This function is called with args NULL, 0
143 by jv-lang.c, to create an artificial objfile used to hold
144 information about dynamically-loaded Java classes. Unfortunately,
145 that branch of this function doesn't get tested very frequently, so
146 it's prone to breakage. (E.g. at one time the name was set to NULL
147 in that situation, which broke a loop over all names in the dynamic
148 library loader.) If you change this function, please try to leave
149 things in a consistent state even if abfd is NULL. */
150
c906108c 151struct objfile *
fba45db2 152allocate_objfile (bfd *abfd, int flags)
c906108c
SS
153{
154 struct objfile *objfile = NULL;
155 struct objfile *last_one = NULL;
156
c906108c
SS
157 /* If we don't support mapped symbol files, didn't ask for the file to be
158 mapped, or failed to open the mapped file for some reason, then revert
159 back to an unmapped objfile. */
160
161 if (objfile == NULL)
162 {
163 objfile = (struct objfile *) xmalloc (sizeof (struct objfile));
164 memset (objfile, 0, sizeof (struct objfile));
c5aa993b 165 objfile->md = NULL;
af5f3db6
AC
166 objfile->psymbol_cache = bcache_xmalloc ();
167 objfile->macro_cache = bcache_xmalloc ();
1ab21617
EZ
168 /* We could use obstack_specify_allocation here instead, but
169 gdb_obstack.h specifies the alloc/dealloc functions. */
170 obstack_init (&objfile->objfile_obstack);
15831452 171 terminate_minimal_symbol_table (objfile);
c906108c
SS
172 }
173
0d0e1a63
MK
174 objfile_alloc_data (objfile);
175
c906108c
SS
176 /* Update the per-objfile information that comes from the bfd, ensuring
177 that any data that is reference is saved in the per-objfile data
178 region. */
179
c5aa993b
JM
180 objfile->obfd = abfd;
181 if (objfile->name != NULL)
c906108c 182 {
2dc74dc1 183 xfree (objfile->name);
c906108c
SS
184 }
185 if (abfd != NULL)
186 {
982526a1 187 objfile->name = xstrdup (bfd_get_filename (abfd));
c5aa993b 188 objfile->mtime = bfd_get_mtime (abfd);
c906108c
SS
189
190 /* Build section table. */
191
192 if (build_objfile_section_table (objfile))
193 {
8a3fe4f8 194 error (_("Can't find the file sections in `%s': %s"),
c5aa993b 195 objfile->name, bfd_errmsg (bfd_get_error ()));
c906108c
SS
196 }
197 }
eb9a305d
DC
198 else
199 {
982526a1 200 objfile->name = xstrdup ("<<anonymous objfile>>");
eb9a305d 201 }
c906108c 202
b8fbeb18
EZ
203 /* Initialize the section indexes for this objfile, so that we can
204 later detect if they are used w/o being properly assigned to. */
205
5c4e30ca
DC
206 objfile->sect_index_text = -1;
207 objfile->sect_index_data = -1;
208 objfile->sect_index_bss = -1;
209 objfile->sect_index_rodata = -1;
210
211 /* We don't yet have a C++-specific namespace symtab. */
212
213 objfile->cp_namespace_symtab = NULL;
b8fbeb18 214
c906108c
SS
215 /* Add this file onto the tail of the linked list of other such files. */
216
c5aa993b 217 objfile->next = NULL;
c906108c
SS
218 if (object_files == NULL)
219 object_files = objfile;
220 else
221 {
222 for (last_one = object_files;
c5aa993b
JM
223 last_one->next;
224 last_one = last_one->next);
225 last_one->next = objfile;
c906108c
SS
226 }
227
2df3850c
JM
228 /* Save passed in flag bits. */
229 objfile->flags |= flags;
c906108c
SS
230
231 return (objfile);
232}
233
9ab9195f
EZ
234/* Initialize entry point information for this objfile. */
235
236void
237init_entry_point_info (struct objfile *objfile)
238{
239 /* Save startup file's range of PC addresses to help blockframe.c
240 decide where the bottom of the stack is. */
241
242 if (bfd_get_file_flags (objfile->obfd) & EXEC_P)
243 {
244 /* Executable file -- record its entry point so we'll recognize
245 the startup file because it contains the entry point. */
246 objfile->ei.entry_point = bfd_get_start_address (objfile->obfd);
247 }
248 else
249 {
250 /* Examination of non-executable.o files. Short-circuit this stuff. */
251 objfile->ei.entry_point = INVALID_ENTRY_POINT;
252 }
9ab9195f
EZ
253}
254
255/* Get current entry point address. */
256
257CORE_ADDR
258entry_point_address (void)
259{
260 return symfile_objfile ? symfile_objfile->ei.entry_point : 0;
261}
15831452
JB
262
263/* Create the terminating entry of OBJFILE's minimal symbol table.
264 If OBJFILE->msymbols is zero, allocate a single entry from
4a146b47 265 OBJFILE->objfile_obstack; otherwise, just initialize
15831452
JB
266 OBJFILE->msymbols[OBJFILE->minimal_symbol_count]. */
267void
268terminate_minimal_symbol_table (struct objfile *objfile)
269{
270 if (! objfile->msymbols)
271 objfile->msymbols = ((struct minimal_symbol *)
4a146b47 272 obstack_alloc (&objfile->objfile_obstack,
15831452
JB
273 sizeof (objfile->msymbols[0])));
274
275 {
276 struct minimal_symbol *m
277 = &objfile->msymbols[objfile->minimal_symbol_count];
278
279 memset (m, 0, sizeof (*m));
5bf0017e
EZ
280 /* Don't rely on these enumeration values being 0's. */
281 MSYMBOL_TYPE (m) = mst_unknown;
15831452
JB
282 SYMBOL_INIT_LANGUAGE_SPECIFIC (m, language_unknown);
283 }
284}
285
286
5b5d99cf
JB
287/* Put one object file before a specified on in the global list.
288 This can be used to make sure an object file is destroyed before
289 another when using ALL_OBJFILES_SAFE to free all objfiles. */
290void
291put_objfile_before (struct objfile *objfile, struct objfile *before_this)
292{
293 struct objfile **objp;
294
295 unlink_objfile (objfile);
296
297 for (objp = &object_files; *objp != NULL; objp = &((*objp)->next))
298 {
299 if (*objp == before_this)
300 {
301 objfile->next = *objp;
302 *objp = objfile;
303 return;
304 }
305 }
306
307 internal_error (__FILE__, __LINE__,
e2e0b3e5 308 _("put_objfile_before: before objfile not in list"));
5b5d99cf
JB
309}
310
c906108c
SS
311/* Put OBJFILE at the front of the list. */
312
313void
fba45db2 314objfile_to_front (struct objfile *objfile)
c906108c
SS
315{
316 struct objfile **objp;
317 for (objp = &object_files; *objp != NULL; objp = &((*objp)->next))
318 {
319 if (*objp == objfile)
320 {
321 /* Unhook it from where it is. */
322 *objp = objfile->next;
323 /* Put it in the front. */
324 objfile->next = object_files;
325 object_files = objfile;
326 break;
327 }
328 }
329}
330
331/* Unlink OBJFILE from the list of known objfiles, if it is found in the
332 list.
333
334 It is not a bug, or error, to call this function if OBJFILE is not known
335 to be in the current list. This is done in the case of mapped objfiles,
336 for example, just to ensure that the mapped objfile doesn't appear twice
337 in the list. Since the list is threaded, linking in a mapped objfile
338 twice would create a circular list.
339
340 If OBJFILE turns out to be in the list, we zap it's NEXT pointer after
341 unlinking it, just to ensure that we have completely severed any linkages
342 between the OBJFILE and the list. */
343
344void
fba45db2 345unlink_objfile (struct objfile *objfile)
c906108c 346{
c5aa993b 347 struct objfile **objpp;
c906108c 348
c5aa993b 349 for (objpp = &object_files; *objpp != NULL; objpp = &((*objpp)->next))
c906108c 350 {
c5aa993b 351 if (*objpp == objfile)
c906108c 352 {
c5aa993b
JM
353 *objpp = (*objpp)->next;
354 objfile->next = NULL;
07cd4b97 355 return;
c906108c
SS
356 }
357 }
07cd4b97 358
8e65ff28 359 internal_error (__FILE__, __LINE__,
e2e0b3e5 360 _("unlink_objfile: objfile already unlinked"));
c906108c
SS
361}
362
363
364/* Destroy an objfile and all the symtabs and psymtabs under it. Note
4a146b47
EZ
365 that as much as possible is allocated on the objfile_obstack
366 so that the memory can be efficiently freed.
c906108c
SS
367
368 Things which we do NOT free because they are not in malloc'd memory
369 or not in memory specific to the objfile include:
370
c5aa993b 371 objfile -> sf
c906108c
SS
372
373 FIXME: If the objfile is using reusable symbol information (via mmalloc),
374 then we need to take into account the fact that more than one process
375 may be using the symbol information at the same time (when mmalloc is
376 extended to support cooperative locking). When more than one process
377 is using the mapped symbol info, we need to be more careful about when
378 we free objects in the reusable area. */
379
380void
fba45db2 381free_objfile (struct objfile *objfile)
c906108c 382{
5b5d99cf
JB
383 if (objfile->separate_debug_objfile)
384 {
385 free_objfile (objfile->separate_debug_objfile);
386 }
387
388 if (objfile->separate_debug_objfile_backlink)
389 {
390 /* We freed the separate debug file, make sure the base objfile
391 doesn't reference it. */
392 objfile->separate_debug_objfile_backlink->separate_debug_objfile = NULL;
393 }
394
c906108c
SS
395 /* First do any symbol file specific actions required when we are
396 finished with a particular symbol file. Note that if the objfile
397 is using reusable symbol information (via mmalloc) then each of
398 these routines is responsible for doing the correct thing, either
399 freeing things which are valid only during this particular gdb
400 execution, or leaving them to be reused during the next one. */
401
c5aa993b 402 if (objfile->sf != NULL)
c906108c 403 {
c5aa993b 404 (*objfile->sf->sym_finish) (objfile);
c906108c
SS
405 }
406
407 /* We always close the bfd. */
408
c5aa993b 409 if (objfile->obfd != NULL)
c906108c
SS
410 {
411 char *name = bfd_get_filename (objfile->obfd);
c5aa993b 412 if (!bfd_close (objfile->obfd))
8a3fe4f8 413 warning (_("cannot close \"%s\": %s"),
c906108c 414 name, bfd_errmsg (bfd_get_error ()));
b8c9b27d 415 xfree (name);
c906108c
SS
416 }
417
418 /* Remove it from the chain of all objfiles. */
419
420 unlink_objfile (objfile);
421
422 /* If we are going to free the runtime common objfile, mark it
423 as unallocated. */
424
425 if (objfile == rt_common_objfile)
426 rt_common_objfile = NULL;
427
428 /* Before the symbol table code was redone to make it easier to
429 selectively load and remove information particular to a specific
430 linkage unit, gdb used to do these things whenever the monolithic
431 symbol table was blown away. How much still needs to be done
432 is unknown, but we play it safe for now and keep each action until
433 it is shown to be no longer needed. */
c5aa993b 434
c906108c
SS
435 /* I *think* all our callers call clear_symtab_users. If so, no need
436 to call this here. */
437 clear_pc_function_cache ();
438
78a4a9b9 439 /* The last thing we do is free the objfile struct itself. */
c906108c 440
78a4a9b9
AC
441 objfile_free_data (objfile);
442 if (objfile->name != NULL)
c906108c 443 {
2dc74dc1 444 xfree (objfile->name);
c906108c 445 }
78a4a9b9 446 if (objfile->global_psymbols.list)
2dc74dc1 447 xfree (objfile->global_psymbols.list);
78a4a9b9 448 if (objfile->static_psymbols.list)
2dc74dc1 449 xfree (objfile->static_psymbols.list);
78a4a9b9
AC
450 /* Free the obstacks for non-reusable objfiles */
451 bcache_xfree (objfile->psymbol_cache);
452 bcache_xfree (objfile->macro_cache);
453 if (objfile->demangled_names_hash)
454 htab_delete (objfile->demangled_names_hash);
b99607ea 455 obstack_free (&objfile->objfile_obstack, 0);
2dc74dc1 456 xfree (objfile);
78a4a9b9 457 objfile = NULL;
c906108c
SS
458}
459
74b7792f
AC
460static void
461do_free_objfile_cleanup (void *obj)
462{
463 free_objfile (obj);
464}
465
466struct cleanup *
467make_cleanup_free_objfile (struct objfile *obj)
468{
469 return make_cleanup (do_free_objfile_cleanup, obj);
470}
c906108c
SS
471
472/* Free all the object files at once and clean up their users. */
473
474void
fba45db2 475free_all_objfiles (void)
c906108c
SS
476{
477 struct objfile *objfile, *temp;
478
479 ALL_OBJFILES_SAFE (objfile, temp)
c5aa993b
JM
480 {
481 free_objfile (objfile);
482 }
c906108c
SS
483 clear_symtab_users ();
484}
485\f
486/* Relocate OBJFILE to NEW_OFFSETS. There should be OBJFILE->NUM_SECTIONS
487 entries in new_offsets. */
488void
fba45db2 489objfile_relocate (struct objfile *objfile, struct section_offsets *new_offsets)
c906108c 490{
d4f3574e 491 struct section_offsets *delta =
a39a16c4
MM
492 ((struct section_offsets *)
493 alloca (SIZEOF_N_SECTION_OFFSETS (objfile->num_sections)));
c906108c
SS
494
495 {
496 int i;
497 int something_changed = 0;
498 for (i = 0; i < objfile->num_sections; ++i)
499 {
a4c8257b 500 delta->offsets[i] =
c906108c
SS
501 ANOFFSET (new_offsets, i) - ANOFFSET (objfile->section_offsets, i);
502 if (ANOFFSET (delta, i) != 0)
503 something_changed = 1;
504 }
505 if (!something_changed)
506 return;
507 }
508
509 /* OK, get all the symtabs. */
510 {
511 struct symtab *s;
512
513 ALL_OBJFILE_SYMTABS (objfile, s)
c5aa993b
JM
514 {
515 struct linetable *l;
516 struct blockvector *bv;
517 int i;
518
519 /* First the line table. */
520 l = LINETABLE (s);
521 if (l)
522 {
523 for (i = 0; i < l->nitems; ++i)
524 l->item[i].pc += ANOFFSET (delta, s->block_line_section);
525 }
c906108c 526
c5aa993b
JM
527 /* Don't relocate a shared blockvector more than once. */
528 if (!s->primary)
529 continue;
c906108c 530
c5aa993b
JM
531 bv = BLOCKVECTOR (s);
532 for (i = 0; i < BLOCKVECTOR_NBLOCKS (bv); ++i)
533 {
534 struct block *b;
e88c90f2 535 struct symbol *sym;
de4f826b 536 struct dict_iterator iter;
c5aa993b
JM
537
538 b = BLOCKVECTOR_BLOCK (bv, i);
539 BLOCK_START (b) += ANOFFSET (delta, s->block_line_section);
540 BLOCK_END (b) += ANOFFSET (delta, s->block_line_section);
541
de4f826b 542 ALL_BLOCK_SYMBOLS (b, iter, sym)
c5aa993b 543 {
7a78d0ee
KB
544 fixup_symbol_section (sym, objfile);
545
c5aa993b 546 /* The RS6000 code from which this was taken skipped
176620f1 547 any symbols in STRUCT_DOMAIN or UNDEF_DOMAIN.
c5aa993b
JM
548 But I'm leaving out that test, on the theory that
549 they can't possibly pass the tests below. */
550 if ((SYMBOL_CLASS (sym) == LOC_LABEL
551 || SYMBOL_CLASS (sym) == LOC_STATIC
552 || SYMBOL_CLASS (sym) == LOC_INDIRECT)
553 && SYMBOL_SECTION (sym) >= 0)
554 {
555 SYMBOL_VALUE_ADDRESS (sym) +=
556 ANOFFSET (delta, SYMBOL_SECTION (sym));
557 }
c5aa993b
JM
558 }
559 }
560 }
c906108c
SS
561 }
562
563 {
564 struct partial_symtab *p;
565
566 ALL_OBJFILE_PSYMTABS (objfile, p)
c5aa993b 567 {
b8fbeb18
EZ
568 p->textlow += ANOFFSET (delta, SECT_OFF_TEXT (objfile));
569 p->texthigh += ANOFFSET (delta, SECT_OFF_TEXT (objfile));
c5aa993b 570 }
c906108c
SS
571 }
572
573 {
574 struct partial_symbol **psym;
575
576 for (psym = objfile->global_psymbols.list;
577 psym < objfile->global_psymbols.next;
578 psym++)
7a78d0ee
KB
579 {
580 fixup_psymbol_section (*psym, objfile);
581 if (SYMBOL_SECTION (*psym) >= 0)
582 SYMBOL_VALUE_ADDRESS (*psym) += ANOFFSET (delta,
583 SYMBOL_SECTION (*psym));
584 }
c906108c
SS
585 for (psym = objfile->static_psymbols.list;
586 psym < objfile->static_psymbols.next;
587 psym++)
7a78d0ee
KB
588 {
589 fixup_psymbol_section (*psym, objfile);
590 if (SYMBOL_SECTION (*psym) >= 0)
591 SYMBOL_VALUE_ADDRESS (*psym) += ANOFFSET (delta,
592 SYMBOL_SECTION (*psym));
593 }
c906108c
SS
594 }
595
596 {
597 struct minimal_symbol *msym;
598 ALL_OBJFILE_MSYMBOLS (objfile, msym)
599 if (SYMBOL_SECTION (msym) >= 0)
c5aa993b 600 SYMBOL_VALUE_ADDRESS (msym) += ANOFFSET (delta, SYMBOL_SECTION (msym));
c906108c
SS
601 }
602 /* Relocating different sections by different amounts may cause the symbols
603 to be out of order. */
604 msymbols_sort (objfile);
605
606 {
607 int i;
608 for (i = 0; i < objfile->num_sections; ++i)
a4c8257b 609 (objfile->section_offsets)->offsets[i] = ANOFFSET (new_offsets, i);
c906108c
SS
610 }
611
36b0c0e0
PS
612 if (objfile->ei.entry_point != ~(CORE_ADDR) 0)
613 {
614 /* Relocate ei.entry_point with its section offset, use SECT_OFF_TEXT
615 only as a fallback. */
616 struct obj_section *s;
617 s = find_pc_section (objfile->ei.entry_point);
618 if (s)
619 objfile->ei.entry_point += ANOFFSET (delta, s->the_bfd_section->index);
620 else
621 objfile->ei.entry_point += ANOFFSET (delta, SECT_OFF_TEXT (objfile));
622 }
623
c906108c
SS
624 {
625 struct obj_section *s;
626 bfd *abfd;
627
628 abfd = objfile->obfd;
629
96baa820 630 ALL_OBJFILE_OSECTIONS (objfile, s)
c906108c 631 {
78f0949b
KB
632 int idx = s->the_bfd_section->index;
633
634 s->addr += ANOFFSET (delta, idx);
635 s->endaddr += ANOFFSET (delta, idx);
c906108c
SS
636 }
637 }
638
c906108c
SS
639 /* Relocate breakpoints as necessary, after things are relocated. */
640 breakpoint_re_set ();
641}
642\f
643/* Many places in gdb want to test just to see if we have any partial
644 symbols available. This function returns zero if none are currently
645 available, nonzero otherwise. */
646
647int
fba45db2 648have_partial_symbols (void)
c906108c
SS
649{
650 struct objfile *ofp;
651
652 ALL_OBJFILES (ofp)
c5aa993b
JM
653 {
654 if (ofp->psymtabs != NULL)
655 {
656 return 1;
657 }
658 }
c906108c
SS
659 return 0;
660}
661
662/* Many places in gdb want to test just to see if we have any full
663 symbols available. This function returns zero if none are currently
664 available, nonzero otherwise. */
665
666int
fba45db2 667have_full_symbols (void)
c906108c
SS
668{
669 struct objfile *ofp;
670
671 ALL_OBJFILES (ofp)
c5aa993b
JM
672 {
673 if (ofp->symtabs != NULL)
674 {
675 return 1;
676 }
677 }
c906108c
SS
678 return 0;
679}
680
681
682/* This operations deletes all objfile entries that represent solibs that
683 weren't explicitly loaded by the user, via e.g., the add-symbol-file
684 command.
c5aa993b 685 */
c906108c 686void
fba45db2 687objfile_purge_solibs (void)
c906108c 688{
c5aa993b
JM
689 struct objfile *objf;
690 struct objfile *temp;
c906108c
SS
691
692 ALL_OBJFILES_SAFE (objf, temp)
693 {
694 /* We assume that the solib package has been purged already, or will
695 be soon.
c5aa993b 696 */
2df3850c 697 if (!(objf->flags & OBJF_USERLOADED) && (objf->flags & OBJF_SHARED))
c906108c
SS
698 free_objfile (objf);
699 }
700}
701
702
703/* Many places in gdb want to test just to see if we have any minimal
704 symbols available. This function returns zero if none are currently
705 available, nonzero otherwise. */
706
707int
fba45db2 708have_minimal_symbols (void)
c906108c
SS
709{
710 struct objfile *ofp;
711
712 ALL_OBJFILES (ofp)
c5aa993b 713 {
15831452 714 if (ofp->minimal_symbol_count > 0)
c5aa993b
JM
715 {
716 return 1;
717 }
718 }
c906108c
SS
719 return 0;
720}
721
198beae2
AC
722/* Returns a section whose range includes PC and SECTION, or NULL if
723 none found. Note the distinction between the return type, struct
724 obj_section (which is defined in gdb), and the input type "struct
725 bfd_section" (which is a bfd-defined data type). The obj_section
726 contains a pointer to the "struct bfd_section". */
c906108c
SS
727
728struct obj_section *
198beae2 729find_pc_sect_section (CORE_ADDR pc, struct bfd_section *section)
c906108c
SS
730{
731 struct obj_section *s;
732 struct objfile *objfile;
c5aa993b 733
96baa820 734 ALL_OBJSECTIONS (objfile, s)
c5aa993b
JM
735 if ((section == 0 || section == s->the_bfd_section) &&
736 s->addr <= pc && pc < s->endaddr)
c5aa993b 737 return (s);
c906108c 738
c5aa993b 739 return (NULL);
c906108c
SS
740}
741
742/* Returns a section whose range includes PC or NULL if none found.
743 Backward compatibility, no section. */
744
745struct obj_section *
fba45db2 746find_pc_section (CORE_ADDR pc)
c906108c
SS
747{
748 return find_pc_sect_section (pc, find_pc_mapped_section (pc));
749}
c5aa993b 750
c906108c
SS
751
752/* In SVR4, we recognize a trampoline by it's section name.
753 That is, if the pc is in a section named ".plt" then we are in
754 a trampoline. */
755
756int
fba45db2 757in_plt_section (CORE_ADDR pc, char *name)
c906108c
SS
758{
759 struct obj_section *s;
760 int retval = 0;
c5aa993b
JM
761
762 s = find_pc_section (pc);
763
c906108c
SS
764 retval = (s != NULL
765 && s->the_bfd_section->name != NULL
6314a349 766 && strcmp (s->the_bfd_section->name, ".plt") == 0);
c5aa993b 767 return (retval);
c906108c 768}
7be570e7
JM
769
770/* Return nonzero if NAME is in the import list of OBJFILE. Else
771 return zero. */
772
773int
fba45db2 774is_in_import_list (char *name, struct objfile *objfile)
7be570e7 775{
52f0bd74 776 int i;
7be570e7
JM
777
778 if (!objfile || !name || !*name)
779 return 0;
780
781 for (i = 0; i < objfile->import_list_size; i++)
cb137aa5 782 if (objfile->import_list[i] && DEPRECATED_STREQ (name, objfile->import_list[i]))
7be570e7
JM
783 return 1;
784 return 0;
785}
0d0e1a63
MK
786\f
787
788/* Keep a registry of per-objfile data-pointers required by other GDB
789 modules. */
790
791struct objfile_data
792{
793 unsigned index;
794};
795
796struct objfile_data_registration
797{
798 struct objfile_data *data;
799 struct objfile_data_registration *next;
800};
801
802struct objfile_data_registry
803{
804 struct objfile_data_registration *registrations;
805 unsigned num_registrations;
806};
807
808static struct objfile_data_registry objfile_data_registry = { NULL, 0 };
809
810const struct objfile_data *
811register_objfile_data (void)
812{
813 struct objfile_data_registration **curr;
814
815 /* Append new registration. */
816 for (curr = &objfile_data_registry.registrations;
817 *curr != NULL; curr = &(*curr)->next);
7be570e7 818
0d0e1a63
MK
819 *curr = XMALLOC (struct objfile_data_registration);
820 (*curr)->next = NULL;
821 (*curr)->data = XMALLOC (struct objfile_data);
822 (*curr)->data->index = objfile_data_registry.num_registrations++;
823
824 return (*curr)->data;
825}
826
827static void
828objfile_alloc_data (struct objfile *objfile)
829{
830 gdb_assert (objfile->data == NULL);
831 objfile->num_data = objfile_data_registry.num_registrations;
832 objfile->data = XCALLOC (objfile->num_data, void *);
833}
834
835static void
836objfile_free_data (struct objfile *objfile)
837{
838 gdb_assert (objfile->data != NULL);
839 xfree (objfile->data);
840 objfile->data = NULL;
841}
842
7b097ae3
MK
843void
844clear_objfile_data (struct objfile *objfile)
845{
846 gdb_assert (objfile->data != NULL);
847 memset (objfile->data, 0, objfile->num_data * sizeof (void *));
848}
849
0d0e1a63
MK
850void
851set_objfile_data (struct objfile *objfile, const struct objfile_data *data,
852 void *value)
853{
854 gdb_assert (data->index < objfile->num_data);
855 objfile->data[data->index] = value;
856}
857
858void *
859objfile_data (struct objfile *objfile, const struct objfile_data *data)
860{
861 gdb_assert (data->index < objfile->num_data);
862 return objfile->data[data->index];
863}
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