2013-07-22 Doug Evans <dje@google.com>
[deliverable/binutils-gdb.git] / gdb / solib.c
1 /* Handle shared libraries for GDB, the GNU Debugger.
2
3 Copyright (C) 1990-2013 Free Software Foundation, Inc.
4
5 This file is part of GDB.
6
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3 of the License, or
10 (at your option) any later version.
11
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
19
20 #include "defs.h"
21
22 #include <sys/types.h>
23 #include <fcntl.h>
24 #include "gdb_string.h"
25 #include "symtab.h"
26 #include "bfd.h"
27 #include "symfile.h"
28 #include "objfiles.h"
29 #include "exceptions.h"
30 #include "gdbcore.h"
31 #include "command.h"
32 #include "target.h"
33 #include "frame.h"
34 #include "gdb_regex.h"
35 #include "inferior.h"
36 #include "environ.h"
37 #include "language.h"
38 #include "gdbcmd.h"
39 #include "completer.h"
40 #include "filenames.h" /* for DOSish file names */
41 #include "exec.h"
42 #include "solist.h"
43 #include "observer.h"
44 #include "readline/readline.h"
45 #include "remote.h"
46 #include "solib.h"
47 #include "interps.h"
48 #include "filesystem.h"
49 #include "gdb_bfd.h"
50 #include "filestuff.h"
51
52 /* Architecture-specific operations. */
53
54 /* Per-architecture data key. */
55 static struct gdbarch_data *solib_data;
56
57 static void *
58 solib_init (struct obstack *obstack)
59 {
60 struct target_so_ops **ops;
61
62 ops = OBSTACK_ZALLOC (obstack, struct target_so_ops *);
63 *ops = current_target_so_ops;
64 return ops;
65 }
66
67 static const struct target_so_ops *
68 solib_ops (struct gdbarch *gdbarch)
69 {
70 const struct target_so_ops **ops = gdbarch_data (gdbarch, solib_data);
71
72 return *ops;
73 }
74
75 /* Set the solib operations for GDBARCH to NEW_OPS. */
76
77 void
78 set_solib_ops (struct gdbarch *gdbarch, const struct target_so_ops *new_ops)
79 {
80 const struct target_so_ops **ops = gdbarch_data (gdbarch, solib_data);
81
82 *ops = new_ops;
83 }
84 \f
85
86 /* external data declarations */
87
88 /* FIXME: gdbarch needs to control this variable, or else every
89 configuration needs to call set_solib_ops. */
90 struct target_so_ops *current_target_so_ops;
91
92 /* List of known shared objects */
93 #define so_list_head current_program_space->so_list
94
95 /* Local function prototypes */
96
97 /* If non-empty, this is a search path for loading non-absolute shared library
98 symbol files. This takes precedence over the environment variables PATH
99 and LD_LIBRARY_PATH. */
100 static char *solib_search_path = NULL;
101 static void
102 show_solib_search_path (struct ui_file *file, int from_tty,
103 struct cmd_list_element *c, const char *value)
104 {
105 fprintf_filtered (file, _("The search path for loading non-absolute "
106 "shared library symbol files is %s.\n"),
107 value);
108 }
109
110 /* Same as HAVE_DOS_BASED_FILE_SYSTEM, but useable as an rvalue. */
111 #if (HAVE_DOS_BASED_FILE_SYSTEM)
112 # define DOS_BASED_FILE_SYSTEM 1
113 #else
114 # define DOS_BASED_FILE_SYSTEM 0
115 #endif
116
117 /* Returns the full pathname of the shared library file, or NULL if
118 not found. (The pathname is malloc'ed; it needs to be freed by the
119 caller.) *FD is set to either -1 or an open file handle for the
120 library.
121
122 Global variable GDB_SYSROOT is used as a prefix directory
123 to search for shared libraries if they have an absolute path.
124
125 Global variable SOLIB_SEARCH_PATH is used as a prefix directory
126 (or set of directories, as in LD_LIBRARY_PATH) to search for all
127 shared libraries if not found in GDB_SYSROOT.
128
129 Search algorithm:
130 * If there is a gdb_sysroot and path is absolute:
131 * Search for gdb_sysroot/path.
132 * else
133 * Look for it literally (unmodified).
134 * Look in SOLIB_SEARCH_PATH.
135 * If available, use target defined search function.
136 * If gdb_sysroot is NOT set, perform the following two searches:
137 * Look in inferior's $PATH.
138 * Look in inferior's $LD_LIBRARY_PATH.
139 *
140 * The last check avoids doing this search when targetting remote
141 * machines since gdb_sysroot will almost always be set.
142 */
143
144 char *
145 solib_find (char *in_pathname, int *fd)
146 {
147 const struct target_so_ops *ops = solib_ops (target_gdbarch ());
148 int found_file = -1;
149 char *temp_pathname = NULL;
150 int gdb_sysroot_is_empty;
151 const char *solib_symbols_extension
152 = gdbarch_solib_symbols_extension (target_gdbarch ());
153 const char *fskind = effective_target_file_system_kind ();
154 struct cleanup *old_chain = make_cleanup (null_cleanup, NULL);
155 char *sysroot = NULL;
156
157 /* If solib_symbols_extension is set, replace the file's
158 extension. */
159 if (solib_symbols_extension)
160 {
161 char *p = in_pathname + strlen (in_pathname);
162
163 while (p > in_pathname && *p != '.')
164 p--;
165
166 if (*p == '.')
167 {
168 char *new_pathname;
169
170 new_pathname = alloca (p - in_pathname + 1
171 + strlen (solib_symbols_extension) + 1);
172 memcpy (new_pathname, in_pathname, p - in_pathname + 1);
173 strcpy (new_pathname + (p - in_pathname) + 1,
174 solib_symbols_extension);
175
176 in_pathname = new_pathname;
177 }
178 }
179
180 gdb_sysroot_is_empty = (gdb_sysroot == NULL || *gdb_sysroot == 0);
181
182 if (!gdb_sysroot_is_empty)
183 {
184 int prefix_len = strlen (gdb_sysroot);
185
186 /* Remove trailing slashes from absolute prefix. */
187 while (prefix_len > 0
188 && IS_DIR_SEPARATOR (gdb_sysroot[prefix_len - 1]))
189 prefix_len--;
190
191 sysroot = savestring (gdb_sysroot, prefix_len);
192 make_cleanup (xfree, sysroot);
193 }
194
195 /* If we're on a non-DOS-based system, backslashes won't be
196 understood as directory separator, so, convert them to forward
197 slashes, iff we're supposed to handle DOS-based file system
198 semantics for target paths. */
199 if (!DOS_BASED_FILE_SYSTEM && fskind == file_system_kind_dos_based)
200 {
201 char *p;
202
203 /* Avoid clobbering our input. */
204 p = alloca (strlen (in_pathname) + 1);
205 strcpy (p, in_pathname);
206 in_pathname = p;
207
208 for (; *p; p++)
209 {
210 if (*p == '\\')
211 *p = '/';
212 }
213 }
214
215 /* Note, we're interested in IS_TARGET_ABSOLUTE_PATH, not
216 IS_ABSOLUTE_PATH. The latter is for host paths only, while
217 IN_PATHNAME is a target path. For example, if we're supposed to
218 be handling DOS-like semantics we want to consider a
219 'c:/foo/bar.dll' path as an absolute path, even on a Unix box.
220 With such a path, before giving up on the sysroot, we'll try:
221
222 1st attempt, c:/foo/bar.dll ==> /sysroot/c:/foo/bar.dll
223 2nd attempt, c:/foo/bar.dll ==> /sysroot/c/foo/bar.dll
224 3rd attempt, c:/foo/bar.dll ==> /sysroot/foo/bar.dll
225 */
226
227 if (!IS_TARGET_ABSOLUTE_PATH (fskind, in_pathname) || gdb_sysroot_is_empty)
228 temp_pathname = xstrdup (in_pathname);
229 else
230 {
231 int need_dir_separator;
232
233 need_dir_separator = (!IS_DIR_SEPARATOR (in_pathname[0])
234 && !HAS_TARGET_DRIVE_SPEC (fskind, in_pathname));
235
236 /* Cat the prefixed pathname together. */
237 temp_pathname = concat (sysroot,
238 need_dir_separator ? SLASH_STRING : "",
239 in_pathname, (char *) NULL);
240 }
241
242 /* Handle remote files. */
243 if (remote_filename_p (temp_pathname))
244 {
245 *fd = -1;
246 do_cleanups (old_chain);
247 return temp_pathname;
248 }
249
250 /* Now see if we can open it. */
251 found_file = gdb_open_cloexec (temp_pathname, O_RDONLY | O_BINARY, 0);
252 if (found_file < 0)
253 xfree (temp_pathname);
254
255 /* If the search in gdb_sysroot failed, and the path name has a
256 drive spec (e.g, c:/foo), try stripping ':' from the drive spec,
257 and retrying in the sysroot:
258 c:/foo/bar.dll ==> /sysroot/c/foo/bar.dll. */
259
260 if (found_file < 0
261 && !gdb_sysroot_is_empty
262 && HAS_TARGET_DRIVE_SPEC (fskind, in_pathname))
263 {
264 int need_dir_separator = !IS_DIR_SEPARATOR (in_pathname[2]);
265 char *drive = savestring (in_pathname, 1);
266
267 temp_pathname = concat (sysroot,
268 SLASH_STRING,
269 drive,
270 need_dir_separator ? SLASH_STRING : "",
271 in_pathname + 2, (char *) NULL);
272 xfree (drive);
273
274 found_file = gdb_open_cloexec (temp_pathname, O_RDONLY | O_BINARY, 0);
275 if (found_file < 0)
276 {
277 xfree (temp_pathname);
278
279 /* If the search in gdb_sysroot still failed, try fully
280 stripping the drive spec, and trying once more in the
281 sysroot before giving up.
282
283 c:/foo/bar.dll ==> /sysroot/foo/bar.dll. */
284
285 temp_pathname = concat (sysroot,
286 need_dir_separator ? SLASH_STRING : "",
287 in_pathname + 2, (char *) NULL);
288
289 found_file = gdb_open_cloexec (temp_pathname, O_RDONLY | O_BINARY, 0);
290 if (found_file < 0)
291 xfree (temp_pathname);
292 }
293 }
294
295 do_cleanups (old_chain);
296
297 /* We try to find the library in various ways. After each attempt,
298 either found_file >= 0 and temp_pathname is a malloc'd string, or
299 found_file < 0 and temp_pathname does not point to storage that
300 needs to be freed. */
301
302 if (found_file < 0)
303 temp_pathname = NULL;
304
305 /* If the search in gdb_sysroot failed, and the path name is
306 absolute at this point, make it relative. (openp will try and open the
307 file according to its absolute path otherwise, which is not what we want.)
308 Affects subsequent searches for this solib. */
309 if (found_file < 0 && IS_TARGET_ABSOLUTE_PATH (fskind, in_pathname))
310 {
311 /* First, get rid of any drive letters etc. */
312 while (!IS_TARGET_DIR_SEPARATOR (fskind, *in_pathname))
313 in_pathname++;
314
315 /* Next, get rid of all leading dir separators. */
316 while (IS_TARGET_DIR_SEPARATOR (fskind, *in_pathname))
317 in_pathname++;
318 }
319
320 /* If not found, search the solib_search_path (if any). */
321 if (found_file < 0 && solib_search_path != NULL)
322 found_file = openp (solib_search_path, OPF_TRY_CWD_FIRST,
323 in_pathname, O_RDONLY | O_BINARY, &temp_pathname);
324
325 /* If not found, next search the solib_search_path (if any) for the basename
326 only (ignoring the path). This is to allow reading solibs from a path
327 that differs from the opened path. */
328 if (found_file < 0 && solib_search_path != NULL)
329 found_file = openp (solib_search_path, OPF_TRY_CWD_FIRST,
330 target_lbasename (fskind, in_pathname),
331 O_RDONLY | O_BINARY, &temp_pathname);
332
333 /* If not found, try to use target supplied solib search method. */
334 if (found_file < 0 && ops->find_and_open_solib)
335 found_file = ops->find_and_open_solib (in_pathname, O_RDONLY | O_BINARY,
336 &temp_pathname);
337
338 /* If not found, next search the inferior's $PATH environment variable. */
339 if (found_file < 0 && gdb_sysroot_is_empty)
340 found_file = openp (get_in_environ (current_inferior ()->environment,
341 "PATH"),
342 OPF_TRY_CWD_FIRST, in_pathname, O_RDONLY | O_BINARY,
343 &temp_pathname);
344
345 /* If not found, next search the inferior's $LD_LIBRARY_PATH
346 environment variable. */
347 if (found_file < 0 && gdb_sysroot_is_empty)
348 found_file = openp (get_in_environ (current_inferior ()->environment,
349 "LD_LIBRARY_PATH"),
350 OPF_TRY_CWD_FIRST, in_pathname, O_RDONLY | O_BINARY,
351 &temp_pathname);
352
353 *fd = found_file;
354 return temp_pathname;
355 }
356
357 /* Open and return a BFD for the shared library PATHNAME. If FD is not -1,
358 it is used as file handle to open the file. Throws an error if the file
359 could not be opened. Handles both local and remote file access.
360
361 PATHNAME must be malloc'ed by the caller. It will be freed by this
362 function. If unsuccessful, the FD will be closed (unless FD was
363 -1). */
364
365 bfd *
366 solib_bfd_fopen (char *pathname, int fd)
367 {
368 bfd *abfd;
369
370 if (remote_filename_p (pathname))
371 {
372 gdb_assert (fd == -1);
373 abfd = remote_bfd_open (pathname, gnutarget);
374 }
375 else
376 {
377 abfd = gdb_bfd_open (pathname, gnutarget, fd);
378
379 if (abfd)
380 bfd_set_cacheable (abfd, 1);
381 }
382
383 if (!abfd)
384 {
385 make_cleanup (xfree, pathname);
386 error (_("Could not open `%s' as an executable file: %s"),
387 pathname, bfd_errmsg (bfd_get_error ()));
388 }
389
390 xfree (pathname);
391
392 return abfd;
393 }
394
395 /* Find shared library PATHNAME and open a BFD for it. */
396
397 bfd *
398 solib_bfd_open (char *pathname)
399 {
400 char *found_pathname;
401 int found_file;
402 bfd *abfd;
403 const struct bfd_arch_info *b;
404
405 /* Search for shared library file. */
406 found_pathname = solib_find (pathname, &found_file);
407 if (found_pathname == NULL)
408 {
409 /* Return failure if the file could not be found, so that we can
410 accumulate messages about missing libraries. */
411 if (errno == ENOENT)
412 return NULL;
413
414 perror_with_name (pathname);
415 }
416
417 /* Open bfd for shared library. */
418 abfd = solib_bfd_fopen (found_pathname, found_file);
419
420 /* Check bfd format. */
421 if (!bfd_check_format (abfd, bfd_object))
422 {
423 make_cleanup_bfd_unref (abfd);
424 error (_("`%s': not in executable format: %s"),
425 bfd_get_filename (abfd), bfd_errmsg (bfd_get_error ()));
426 }
427
428 /* Check bfd arch. */
429 b = gdbarch_bfd_arch_info (target_gdbarch ());
430 if (!b->compatible (b, bfd_get_arch_info (abfd)))
431 warning (_("`%s': Shared library architecture %s is not compatible "
432 "with target architecture %s."), bfd_get_filename (abfd),
433 bfd_get_arch_info (abfd)->printable_name, b->printable_name);
434
435 return abfd;
436 }
437
438 /* Given a pointer to one of the shared objects in our list of mapped
439 objects, use the recorded name to open a bfd descriptor for the
440 object, build a section table, relocate all the section addresses
441 by the base address at which the shared object was mapped, and then
442 add the sections to the target's section table.
443
444 FIXME: In most (all?) cases the shared object file name recorded in
445 the dynamic linkage tables will be a fully qualified pathname. For
446 cases where it isn't, do we really mimic the systems search
447 mechanism correctly in the below code (particularly the tilde
448 expansion stuff?). */
449
450 static int
451 solib_map_sections (struct so_list *so)
452 {
453 const struct target_so_ops *ops = solib_ops (target_gdbarch ());
454 char *filename;
455 struct target_section *p;
456 struct cleanup *old_chain;
457 bfd *abfd;
458
459 filename = tilde_expand (so->so_name);
460 old_chain = make_cleanup (xfree, filename);
461 abfd = ops->bfd_open (filename);
462 do_cleanups (old_chain);
463
464 if (abfd == NULL)
465 return 0;
466
467 /* Leave bfd open, core_xfer_memory and "info files" need it. */
468 so->abfd = abfd;
469
470 if (build_section_table (abfd, &so->sections, &so->sections_end))
471 {
472 error (_("Can't find the file sections in `%s': %s"),
473 bfd_get_filename (abfd), bfd_errmsg (bfd_get_error ()));
474 }
475
476 for (p = so->sections; p < so->sections_end; p++)
477 {
478 /* Relocate the section binding addresses as recorded in the shared
479 object's file by the base address to which the object was actually
480 mapped. */
481 ops->relocate_section_addresses (so, p);
482
483 /* If the target didn't provide information about the address
484 range of the shared object, assume we want the location of
485 the .text section. */
486 if (so->addr_low == 0 && so->addr_high == 0
487 && strcmp (p->the_bfd_section->name, ".text") == 0)
488 {
489 so->addr_low = p->addr;
490 so->addr_high = p->endaddr;
491 }
492 }
493
494 /* Add the shared object's sections to the current set of file
495 section tables. Do this immediately after mapping the object so
496 that later nodes in the list can query this object, as is needed
497 in solib-osf.c. */
498 add_target_sections (so, so->sections, so->sections_end);
499
500 return 1;
501 }
502
503 /* Free symbol-file related contents of SO and reset for possible reloading
504 of SO. If we have opened a BFD for SO, close it. If we have placed SO's
505 sections in some target's section table, the caller is responsible for
506 removing them.
507
508 This function doesn't mess with objfiles at all. If there is an
509 objfile associated with SO that needs to be removed, the caller is
510 responsible for taking care of that. */
511
512 static void
513 clear_so (struct so_list *so)
514 {
515 const struct target_so_ops *ops = solib_ops (target_gdbarch ());
516
517 if (so->sections)
518 {
519 xfree (so->sections);
520 so->sections = so->sections_end = NULL;
521 }
522
523 gdb_bfd_unref (so->abfd);
524 so->abfd = NULL;
525
526 /* Our caller closed the objfile, possibly via objfile_purge_solibs. */
527 so->symbols_loaded = 0;
528 so->objfile = NULL;
529
530 so->addr_low = so->addr_high = 0;
531
532 /* Restore the target-supplied file name. SO_NAME may be the path
533 of the symbol file. */
534 strcpy (so->so_name, so->so_original_name);
535
536 /* Do the same for target-specific data. */
537 if (ops->clear_so != NULL)
538 ops->clear_so (so);
539 }
540
541 /* Free the storage associated with the `struct so_list' object SO.
542 If we have opened a BFD for SO, close it.
543
544 The caller is responsible for removing SO from whatever list it is
545 a member of. If we have placed SO's sections in some target's
546 section table, the caller is responsible for removing them.
547
548 This function doesn't mess with objfiles at all. If there is an
549 objfile associated with SO that needs to be removed, the caller is
550 responsible for taking care of that. */
551
552 void
553 free_so (struct so_list *so)
554 {
555 const struct target_so_ops *ops = solib_ops (target_gdbarch ());
556
557 clear_so (so);
558 ops->free_so (so);
559
560 xfree (so);
561 }
562
563
564 /* Return address of first so_list entry in master shared object list. */
565 struct so_list *
566 master_so_list (void)
567 {
568 return so_list_head;
569 }
570
571 /* Read in symbols for shared object SO. If SYMFILE_VERBOSE is set in FLAGS,
572 be chatty about it. Return non-zero if any symbols were actually
573 loaded. */
574
575 int
576 solib_read_symbols (struct so_list *so, int flags)
577 {
578 const int from_tty = flags & SYMFILE_VERBOSE;
579
580 if (so->symbols_loaded)
581 {
582 /* If needed, we've already warned in our caller. */
583 }
584 else if (so->abfd == NULL)
585 {
586 /* We've already warned about this library, when trying to open
587 it. */
588 }
589 else
590 {
591 volatile struct gdb_exception e;
592
593 flags |= current_inferior ()->symfile_flags;
594
595 TRY_CATCH (e, RETURN_MASK_ERROR)
596 {
597 struct section_addr_info *sap;
598
599 /* Have we already loaded this shared object? */
600 ALL_OBJFILES (so->objfile)
601 {
602 if (filename_cmp (so->objfile->name, so->so_name) == 0
603 && so->objfile->addr_low == so->addr_low)
604 break;
605 }
606 if (so->objfile != NULL)
607 break;
608
609 sap = build_section_addr_info_from_section_table (so->sections,
610 so->sections_end);
611 so->objfile = symbol_file_add_from_bfd (so->abfd,
612 flags, sap, OBJF_SHARED,
613 NULL);
614 so->objfile->addr_low = so->addr_low;
615 free_section_addr_info (sap);
616 }
617
618 if (e.reason < 0)
619 exception_fprintf (gdb_stderr, e, _("Error while reading shared"
620 " library symbols for %s:\n"),
621 so->so_name);
622 else
623 {
624 if (from_tty || info_verbose)
625 printf_unfiltered (_("Loaded symbols for %s\n"), so->so_name);
626 so->symbols_loaded = 1;
627 }
628 return 1;
629 }
630
631 return 0;
632 }
633
634 /* Return 1 if KNOWN->objfile is used by any other so_list object in the
635 SO_LIST_HEAD list. Return 0 otherwise. */
636
637 static int
638 solib_used (const struct so_list *const known)
639 {
640 const struct so_list *pivot;
641
642 for (pivot = so_list_head; pivot != NULL; pivot = pivot->next)
643 if (pivot != known && pivot->objfile == known->objfile)
644 return 1;
645 return 0;
646 }
647
648 /* Synchronize GDB's shared object list with inferior's.
649
650 Extract the list of currently loaded shared objects from the
651 inferior, and compare it with the list of shared objects currently
652 in GDB's so_list_head list. Edit so_list_head to bring it in sync
653 with the inferior's new list.
654
655 If we notice that the inferior has unloaded some shared objects,
656 free any symbolic info GDB had read about those shared objects.
657
658 Don't load symbolic info for any new shared objects; just add them
659 to the list, and leave their symbols_loaded flag clear.
660
661 If FROM_TTY is non-null, feel free to print messages about what
662 we're doing.
663
664 If TARGET is non-null, add the sections of all new shared objects
665 to TARGET's section table. Note that this doesn't remove any
666 sections for shared objects that have been unloaded, and it
667 doesn't check to see if the new shared objects are already present in
668 the section table. But we only use this for core files and
669 processes we've just attached to, so that's okay. */
670
671 static void
672 update_solib_list (int from_tty, struct target_ops *target)
673 {
674 const struct target_so_ops *ops = solib_ops (target_gdbarch ());
675 struct so_list *inferior = ops->current_sos();
676 struct so_list *gdb, **gdb_link;
677
678 /* We can reach here due to changing solib-search-path or the
679 sysroot, before having any inferior. */
680 if (target_has_execution && !ptid_equal (inferior_ptid, null_ptid))
681 {
682 struct inferior *inf = current_inferior ();
683
684 /* If we are attaching to a running process for which we
685 have not opened a symbol file, we may be able to get its
686 symbols now! */
687 if (inf->attach_flag && symfile_objfile == NULL)
688 catch_errors (ops->open_symbol_file_object, &from_tty,
689 "Error reading attached process's symbol file.\n",
690 RETURN_MASK_ALL);
691 }
692
693 /* GDB and the inferior's dynamic linker each maintain their own
694 list of currently loaded shared objects; we want to bring the
695 former in sync with the latter. Scan both lists, seeing which
696 shared objects appear where. There are three cases:
697
698 - A shared object appears on both lists. This means that GDB
699 knows about it already, and it's still loaded in the inferior.
700 Nothing needs to happen.
701
702 - A shared object appears only on GDB's list. This means that
703 the inferior has unloaded it. We should remove the shared
704 object from GDB's tables.
705
706 - A shared object appears only on the inferior's list. This
707 means that it's just been loaded. We should add it to GDB's
708 tables.
709
710 So we walk GDB's list, checking each entry to see if it appears
711 in the inferior's list too. If it does, no action is needed, and
712 we remove it from the inferior's list. If it doesn't, the
713 inferior has unloaded it, and we remove it from GDB's list. By
714 the time we're done walking GDB's list, the inferior's list
715 contains only the new shared objects, which we then add. */
716
717 gdb = so_list_head;
718 gdb_link = &so_list_head;
719 while (gdb)
720 {
721 struct so_list *i = inferior;
722 struct so_list **i_link = &inferior;
723
724 /* Check to see whether the shared object *gdb also appears in
725 the inferior's current list. */
726 while (i)
727 {
728 if (ops->same)
729 {
730 if (ops->same (gdb, i))
731 break;
732 }
733 else
734 {
735 if (! filename_cmp (gdb->so_original_name, i->so_original_name))
736 break;
737 }
738
739 i_link = &i->next;
740 i = *i_link;
741 }
742
743 /* If the shared object appears on the inferior's list too, then
744 it's still loaded, so we don't need to do anything. Delete
745 it from the inferior's list, and leave it on GDB's list. */
746 if (i)
747 {
748 *i_link = i->next;
749 free_so (i);
750 gdb_link = &gdb->next;
751 gdb = *gdb_link;
752 }
753
754 /* If it's not on the inferior's list, remove it from GDB's tables. */
755 else
756 {
757 /* Notify any observer that the shared object has been
758 unloaded before we remove it from GDB's tables. */
759 observer_notify_solib_unloaded (gdb);
760
761 VEC_safe_push (char_ptr, current_program_space->deleted_solibs,
762 xstrdup (gdb->so_name));
763
764 *gdb_link = gdb->next;
765
766 /* Unless the user loaded it explicitly, free SO's objfile. */
767 if (gdb->objfile && ! (gdb->objfile->flags & OBJF_USERLOADED)
768 && !solib_used (gdb))
769 free_objfile (gdb->objfile);
770
771 /* Some targets' section tables might be referring to
772 sections from so->abfd; remove them. */
773 remove_target_sections (gdb);
774
775 free_so (gdb);
776 gdb = *gdb_link;
777 }
778 }
779
780 /* Now the inferior's list contains only shared objects that don't
781 appear in GDB's list --- those that are newly loaded. Add them
782 to GDB's shared object list. */
783 if (inferior)
784 {
785 int not_found = 0;
786 const char *not_found_filename = NULL;
787
788 struct so_list *i;
789
790 /* Add the new shared objects to GDB's list. */
791 *gdb_link = inferior;
792
793 /* Fill in the rest of each of the `struct so_list' nodes. */
794 for (i = inferior; i; i = i->next)
795 {
796 volatile struct gdb_exception e;
797
798 i->pspace = current_program_space;
799 VEC_safe_push (so_list_ptr, current_program_space->added_solibs, i);
800
801 TRY_CATCH (e, RETURN_MASK_ERROR)
802 {
803 /* Fill in the rest of the `struct so_list' node. */
804 if (!solib_map_sections (i))
805 {
806 not_found++;
807 if (not_found_filename == NULL)
808 not_found_filename = i->so_original_name;
809 }
810 }
811
812 if (e.reason < 0)
813 exception_fprintf (gdb_stderr, e,
814 _("Error while mapping shared "
815 "library sections:\n"));
816
817 /* Notify any observer that the shared object has been
818 loaded now that we've added it to GDB's tables. */
819 observer_notify_solib_loaded (i);
820 }
821
822 /* If a library was not found, issue an appropriate warning
823 message. We have to use a single call to warning in case the
824 front end does something special with warnings, e.g., pop up
825 a dialog box. It Would Be Nice if we could get a "warning: "
826 prefix on each line in the CLI front end, though - it doesn't
827 stand out well. */
828
829 if (not_found == 1)
830 warning (_("Could not load shared library symbols for %s.\n"
831 "Do you need \"set solib-search-path\" "
832 "or \"set sysroot\"?"),
833 not_found_filename);
834 else if (not_found > 1)
835 warning (_("\
836 Could not load shared library symbols for %d libraries, e.g. %s.\n\
837 Use the \"info sharedlibrary\" command to see the complete listing.\n\
838 Do you need \"set solib-search-path\" or \"set sysroot\"?"),
839 not_found, not_found_filename);
840 }
841 }
842
843
844 /* Return non-zero if NAME is the libpthread shared library.
845
846 Uses a fairly simplistic heuristic approach where we check
847 the file name against "/libpthread". This can lead to false
848 positives, but this should be good enough in practice. */
849
850 int
851 libpthread_name_p (const char *name)
852 {
853 return (strstr (name, "/libpthread") != NULL);
854 }
855
856 /* Return non-zero if SO is the libpthread shared library. */
857
858 static int
859 libpthread_solib_p (struct so_list *so)
860 {
861 return libpthread_name_p (so->so_name);
862 }
863
864 /* Read in symbolic information for any shared objects whose names
865 match PATTERN. (If we've already read a shared object's symbol
866 info, leave it alone.) If PATTERN is zero, read them all.
867
868 If READSYMS is 0, defer reading symbolic information until later
869 but still do any needed low level processing.
870
871 FROM_TTY and TARGET are as described for update_solib_list, above. */
872
873 void
874 solib_add (char *pattern, int from_tty,
875 struct target_ops *target, int readsyms)
876 {
877 struct so_list *gdb;
878
879 current_program_space->solib_add_generation++;
880
881 if (pattern)
882 {
883 char *re_err = re_comp (pattern);
884
885 if (re_err)
886 error (_("Invalid regexp: %s"), re_err);
887 }
888
889 update_solib_list (from_tty, target);
890
891 /* Walk the list of currently loaded shared libraries, and read
892 symbols for any that match the pattern --- or any whose symbols
893 aren't already loaded, if no pattern was given. */
894 {
895 int any_matches = 0;
896 int loaded_any_symbols = 0;
897 const int flags =
898 SYMFILE_DEFER_BP_RESET | (from_tty ? SYMFILE_VERBOSE : 0);
899
900 for (gdb = so_list_head; gdb; gdb = gdb->next)
901 if (! pattern || re_exec (gdb->so_name))
902 {
903 /* Normally, we would read the symbols from that library
904 only if READSYMS is set. However, we're making a small
905 exception for the pthread library, because we sometimes
906 need the library symbols to be loaded in order to provide
907 thread support (x86-linux for instance). */
908 const int add_this_solib =
909 (readsyms || libpthread_solib_p (gdb));
910
911 any_matches = 1;
912 if (add_this_solib)
913 {
914 if (gdb->symbols_loaded)
915 {
916 /* If no pattern was given, be quiet for shared
917 libraries we have already loaded. */
918 if (pattern && (from_tty || info_verbose))
919 printf_unfiltered (_("Symbols already loaded for %s\n"),
920 gdb->so_name);
921 }
922 else if (solib_read_symbols (gdb, flags))
923 loaded_any_symbols = 1;
924 }
925 }
926
927 if (loaded_any_symbols)
928 breakpoint_re_set ();
929
930 if (from_tty && pattern && ! any_matches)
931 printf_unfiltered
932 ("No loaded shared libraries match the pattern `%s'.\n", pattern);
933
934 if (loaded_any_symbols)
935 {
936 const struct target_so_ops *ops = solib_ops (target_gdbarch ());
937
938 /* Getting new symbols may change our opinion about what is
939 frameless. */
940 reinit_frame_cache ();
941
942 ops->special_symbol_handling ();
943 }
944 }
945 }
946
947 /* Implement the "info sharedlibrary" command. Walk through the
948 shared library list and print information about each attached
949 library matching PATTERN. If PATTERN is elided, print them
950 all. */
951
952 static void
953 info_sharedlibrary_command (char *pattern, int from_tty)
954 {
955 struct so_list *so = NULL; /* link map state variable */
956 int so_missing_debug_info = 0;
957 int addr_width;
958 int nr_libs;
959 struct cleanup *table_cleanup;
960 struct gdbarch *gdbarch = target_gdbarch ();
961 struct ui_out *uiout = current_uiout;
962
963 if (pattern)
964 {
965 char *re_err = re_comp (pattern);
966
967 if (re_err)
968 error (_("Invalid regexp: %s"), re_err);
969 }
970
971 /* "0x", a little whitespace, and two hex digits per byte of pointers. */
972 addr_width = 4 + (gdbarch_ptr_bit (gdbarch) / 4);
973
974 update_solib_list (from_tty, 0);
975
976 /* make_cleanup_ui_out_table_begin_end needs to know the number of
977 rows, so we need to make two passes over the libs. */
978
979 for (nr_libs = 0, so = so_list_head; so; so = so->next)
980 {
981 if (so->so_name[0])
982 {
983 if (pattern && ! re_exec (so->so_name))
984 continue;
985 ++nr_libs;
986 }
987 }
988
989 table_cleanup =
990 make_cleanup_ui_out_table_begin_end (uiout, 4, nr_libs,
991 "SharedLibraryTable");
992
993 /* The "- 1" is because ui_out adds one space between columns. */
994 ui_out_table_header (uiout, addr_width - 1, ui_left, "from", "From");
995 ui_out_table_header (uiout, addr_width - 1, ui_left, "to", "To");
996 ui_out_table_header (uiout, 12 - 1, ui_left, "syms-read", "Syms Read");
997 ui_out_table_header (uiout, 0, ui_noalign,
998 "name", "Shared Object Library");
999
1000 ui_out_table_body (uiout);
1001
1002 for (so = so_list_head; so; so = so->next)
1003 {
1004 struct cleanup *lib_cleanup;
1005
1006 if (! so->so_name[0])
1007 continue;
1008 if (pattern && ! re_exec (so->so_name))
1009 continue;
1010
1011 lib_cleanup = make_cleanup_ui_out_tuple_begin_end (uiout, "lib");
1012
1013 if (so->addr_high != 0)
1014 {
1015 ui_out_field_core_addr (uiout, "from", gdbarch, so->addr_low);
1016 ui_out_field_core_addr (uiout, "to", gdbarch, so->addr_high);
1017 }
1018 else
1019 {
1020 ui_out_field_skip (uiout, "from");
1021 ui_out_field_skip (uiout, "to");
1022 }
1023
1024 if (! ui_out_is_mi_like_p (interp_ui_out (top_level_interpreter ()))
1025 && so->symbols_loaded
1026 && !objfile_has_symbols (so->objfile))
1027 {
1028 so_missing_debug_info = 1;
1029 ui_out_field_string (uiout, "syms-read", "Yes (*)");
1030 }
1031 else
1032 ui_out_field_string (uiout, "syms-read",
1033 so->symbols_loaded ? "Yes" : "No");
1034
1035 ui_out_field_string (uiout, "name", so->so_name);
1036
1037 ui_out_text (uiout, "\n");
1038
1039 do_cleanups (lib_cleanup);
1040 }
1041
1042 do_cleanups (table_cleanup);
1043
1044 if (nr_libs == 0)
1045 {
1046 if (pattern)
1047 ui_out_message (uiout, 0,
1048 _("No shared libraries matched.\n"));
1049 else
1050 ui_out_message (uiout, 0,
1051 _("No shared libraries loaded at this time.\n"));
1052 }
1053 else
1054 {
1055 if (so_missing_debug_info)
1056 ui_out_message (uiout, 0,
1057 _("(*): Shared library is missing "
1058 "debugging information.\n"));
1059 }
1060 }
1061
1062 /* Return 1 if ADDRESS lies within SOLIB. */
1063
1064 int
1065 solib_contains_address_p (const struct so_list *const solib,
1066 CORE_ADDR address)
1067 {
1068 struct target_section *p;
1069
1070 for (p = solib->sections; p < solib->sections_end; p++)
1071 if (p->addr <= address && address < p->endaddr)
1072 return 1;
1073
1074 return 0;
1075 }
1076
1077 /* If ADDRESS is in a shared lib in program space PSPACE, return its
1078 name.
1079
1080 Provides a hook for other gdb routines to discover whether or not a
1081 particular address is within the mapped address space of a shared
1082 library.
1083
1084 For example, this routine is called at one point to disable
1085 breakpoints which are in shared libraries that are not currently
1086 mapped in. */
1087
1088 char *
1089 solib_name_from_address (struct program_space *pspace, CORE_ADDR address)
1090 {
1091 struct so_list *so = NULL;
1092
1093 for (so = pspace->so_list; so; so = so->next)
1094 if (solib_contains_address_p (so, address))
1095 return (so->so_name);
1096
1097 return (0);
1098 }
1099
1100 /* Return whether the data starting at VADDR, size SIZE, must be kept
1101 in a core file for shared libraries loaded before "gcore" is used
1102 to be handled correctly when the core file is loaded. This only
1103 applies when the section would otherwise not be kept in the core
1104 file (in particular, for readonly sections). */
1105
1106 int
1107 solib_keep_data_in_core (CORE_ADDR vaddr, unsigned long size)
1108 {
1109 const struct target_so_ops *ops = solib_ops (target_gdbarch ());
1110
1111 if (ops->keep_data_in_core)
1112 return ops->keep_data_in_core (vaddr, size);
1113 else
1114 return 0;
1115 }
1116
1117 /* Called by free_all_symtabs */
1118
1119 void
1120 clear_solib (void)
1121 {
1122 const struct target_so_ops *ops = solib_ops (target_gdbarch ());
1123
1124 /* This function is expected to handle ELF shared libraries. It is
1125 also used on Solaris, which can run either ELF or a.out binaries
1126 (for compatibility with SunOS 4), both of which can use shared
1127 libraries. So we don't know whether we have an ELF executable or
1128 an a.out executable until the user chooses an executable file.
1129
1130 ELF shared libraries don't get mapped into the address space
1131 until after the program starts, so we'd better not try to insert
1132 breakpoints in them immediately. We have to wait until the
1133 dynamic linker has loaded them; we'll hit a bp_shlib_event
1134 breakpoint (look for calls to create_solib_event_breakpoint) when
1135 it's ready.
1136
1137 SunOS shared libraries seem to be different --- they're present
1138 as soon as the process begins execution, so there's no need to
1139 put off inserting breakpoints. There's also nowhere to put a
1140 bp_shlib_event breakpoint, so if we put it off, we'll never get
1141 around to it.
1142
1143 So: disable breakpoints only if we're using ELF shared libs. */
1144 if (exec_bfd != NULL
1145 && bfd_get_flavour (exec_bfd) != bfd_target_aout_flavour)
1146 disable_breakpoints_in_shlibs ();
1147
1148 while (so_list_head)
1149 {
1150 struct so_list *so = so_list_head;
1151
1152 so_list_head = so->next;
1153 observer_notify_solib_unloaded (so);
1154 remove_target_sections (so);
1155 free_so (so);
1156 }
1157
1158 ops->clear_solib ();
1159 }
1160
1161 /* Shared library startup support. When GDB starts up the inferior,
1162 it nurses it along (through the shell) until it is ready to execute
1163 its first instruction. At this point, this function gets
1164 called. */
1165
1166 void
1167 solib_create_inferior_hook (int from_tty)
1168 {
1169 const struct target_so_ops *ops = solib_ops (target_gdbarch ());
1170
1171 ops->solib_create_inferior_hook (from_tty);
1172 }
1173
1174 /* Check to see if an address is in the dynamic loader's dynamic
1175 symbol resolution code. Return 1 if so, 0 otherwise. */
1176
1177 int
1178 in_solib_dynsym_resolve_code (CORE_ADDR pc)
1179 {
1180 const struct target_so_ops *ops = solib_ops (target_gdbarch ());
1181
1182 return ops->in_dynsym_resolve_code (pc);
1183 }
1184
1185 /* Implements the "sharedlibrary" command. */
1186
1187 static void
1188 sharedlibrary_command (char *args, int from_tty)
1189 {
1190 dont_repeat ();
1191 solib_add (args, from_tty, (struct target_ops *) 0, 1);
1192 }
1193
1194 /* Implements the command "nosharedlibrary", which discards symbols
1195 that have been auto-loaded from shared libraries. Symbols from
1196 shared libraries that were added by explicit request of the user
1197 are not discarded. Also called from remote.c. */
1198
1199 void
1200 no_shared_libraries (char *ignored, int from_tty)
1201 {
1202 /* The order of the two routines below is important: clear_solib notifies
1203 the solib_unloaded observers, and some of these observers might need
1204 access to their associated objfiles. Therefore, we can not purge the
1205 solibs' objfiles before clear_solib has been called. */
1206
1207 clear_solib ();
1208 objfile_purge_solibs ();
1209 }
1210
1211 /* See solib.h. */
1212
1213 void
1214 update_solib_breakpoints (void)
1215 {
1216 const struct target_so_ops *ops = solib_ops (target_gdbarch ());
1217
1218 if (ops->update_breakpoints != NULL)
1219 ops->update_breakpoints ();
1220 }
1221
1222 /* See solib.h. */
1223
1224 void
1225 handle_solib_event (void)
1226 {
1227 const struct target_so_ops *ops = solib_ops (target_gdbarch ());
1228
1229 if (ops->handle_event != NULL)
1230 ops->handle_event ();
1231
1232 clear_program_space_solib_cache (current_inferior ()->pspace);
1233
1234 /* Check for any newly added shared libraries if we're supposed to
1235 be adding them automatically. Switch terminal for any messages
1236 produced by breakpoint_re_set. */
1237 target_terminal_ours_for_output ();
1238 solib_add (NULL, 0, &current_target, auto_solib_add);
1239 target_terminal_inferior ();
1240 }
1241
1242 /* Reload shared libraries, but avoid reloading the same symbol file
1243 we already have loaded. */
1244
1245 static void
1246 reload_shared_libraries_1 (int from_tty)
1247 {
1248 struct so_list *so;
1249 struct cleanup *old_chain = make_cleanup (null_cleanup, NULL);
1250
1251 for (so = so_list_head; so != NULL; so = so->next)
1252 {
1253 char *filename, *found_pathname = NULL;
1254 bfd *abfd;
1255 int was_loaded = so->symbols_loaded;
1256 const int flags =
1257 SYMFILE_DEFER_BP_RESET | (from_tty ? SYMFILE_VERBOSE : 0);
1258
1259 filename = tilde_expand (so->so_original_name);
1260 make_cleanup (xfree, filename);
1261 abfd = solib_bfd_open (filename);
1262 if (abfd != NULL)
1263 {
1264 found_pathname = xstrdup (bfd_get_filename (abfd));
1265 make_cleanup (xfree, found_pathname);
1266 gdb_bfd_unref (abfd);
1267 }
1268
1269 /* If this shared library is no longer associated with its previous
1270 symbol file, close that. */
1271 if ((found_pathname == NULL && was_loaded)
1272 || (found_pathname != NULL
1273 && filename_cmp (found_pathname, so->so_name) != 0))
1274 {
1275 if (so->objfile && ! (so->objfile->flags & OBJF_USERLOADED)
1276 && !solib_used (so))
1277 free_objfile (so->objfile);
1278 remove_target_sections (so);
1279 clear_so (so);
1280 }
1281
1282 /* If this shared library is now associated with a new symbol
1283 file, open it. */
1284 if (found_pathname != NULL
1285 && (!was_loaded
1286 || filename_cmp (found_pathname, so->so_name) != 0))
1287 {
1288 volatile struct gdb_exception e;
1289
1290 TRY_CATCH (e, RETURN_MASK_ERROR)
1291 solib_map_sections (so);
1292
1293 if (e.reason < 0)
1294 exception_fprintf (gdb_stderr, e,
1295 _("Error while mapping "
1296 "shared library sections:\n"));
1297 else if (auto_solib_add || was_loaded || libpthread_solib_p (so))
1298 solib_read_symbols (so, flags);
1299 }
1300 }
1301
1302 do_cleanups (old_chain);
1303 }
1304
1305 static void
1306 reload_shared_libraries (char *ignored, int from_tty,
1307 struct cmd_list_element *e)
1308 {
1309 const struct target_so_ops *ops;
1310
1311 reload_shared_libraries_1 (from_tty);
1312
1313 ops = solib_ops (target_gdbarch ());
1314
1315 /* Creating inferior hooks here has two purposes. First, if we reload
1316 shared libraries then the address of solib breakpoint we've computed
1317 previously might be no longer valid. For example, if we forgot to set
1318 solib-absolute-prefix and are setting it right now, then the previous
1319 breakpoint address is plain wrong. Second, installing solib hooks
1320 also implicitly figures were ld.so is and loads symbols for it.
1321 Absent this call, if we've just connected to a target and set
1322 solib-absolute-prefix or solib-search-path, we'll lose all information
1323 about ld.so. */
1324 if (target_has_execution)
1325 {
1326 /* Reset or free private data structures not associated with
1327 so_list entries. */
1328 ops->clear_solib ();
1329
1330 /* Remove any previous solib event breakpoint. This is usually
1331 done in common code, at breakpoint_init_inferior time, but
1332 we're not really starting up the inferior here. */
1333 remove_solib_event_breakpoints ();
1334
1335 solib_create_inferior_hook (from_tty);
1336 }
1337
1338 /* Sometimes the platform-specific hook loads initial shared
1339 libraries, and sometimes it doesn't. If it doesn't FROM_TTY will be
1340 incorrectly 0 but such solib targets should be fixed anyway. If we
1341 made all the inferior hook methods consistent, this call could be
1342 removed. Call it only after the solib target has been initialized by
1343 solib_create_inferior_hook. */
1344
1345 solib_add (NULL, 0, NULL, auto_solib_add);
1346
1347 breakpoint_re_set ();
1348
1349 /* We may have loaded or unloaded debug info for some (or all)
1350 shared libraries. However, frames may still reference them. For
1351 example, a frame's unwinder might still point at DWARF FDE
1352 structures that are now freed. Also, getting new symbols may
1353 change our opinion about what is frameless. */
1354 reinit_frame_cache ();
1355
1356 ops->special_symbol_handling ();
1357 }
1358
1359 static void
1360 show_auto_solib_add (struct ui_file *file, int from_tty,
1361 struct cmd_list_element *c, const char *value)
1362 {
1363 fprintf_filtered (file, _("Autoloading of shared library symbols is %s.\n"),
1364 value);
1365 }
1366
1367
1368 /* Handler for library-specific lookup of global symbol NAME in OBJFILE. Call
1369 the library-specific handler if it is installed for the current target. */
1370
1371 struct symbol *
1372 solib_global_lookup (const struct objfile *objfile,
1373 const char *name,
1374 const domain_enum domain)
1375 {
1376 const struct target_so_ops *ops = solib_ops (target_gdbarch ());
1377
1378 if (ops->lookup_lib_global_symbol != NULL)
1379 return ops->lookup_lib_global_symbol (objfile, name, domain);
1380 return NULL;
1381 }
1382
1383 /* Lookup the value for a specific symbol from dynamic symbol table. Look
1384 up symbol from ABFD. MATCH_SYM is a callback function to determine
1385 whether to pick up a symbol. DATA is the input of this callback
1386 function. Return NULL if symbol is not found. */
1387
1388 CORE_ADDR
1389 gdb_bfd_lookup_symbol_from_symtab (bfd *abfd,
1390 int (*match_sym) (asymbol *, void *),
1391 void *data)
1392 {
1393 long storage_needed = bfd_get_symtab_upper_bound (abfd);
1394 CORE_ADDR symaddr = 0;
1395
1396 if (storage_needed > 0)
1397 {
1398 unsigned int i;
1399
1400 asymbol **symbol_table = (asymbol **) xmalloc (storage_needed);
1401 struct cleanup *back_to = make_cleanup (xfree, symbol_table);
1402 unsigned int number_of_symbols =
1403 bfd_canonicalize_symtab (abfd, symbol_table);
1404
1405 for (i = 0; i < number_of_symbols; i++)
1406 {
1407 asymbol *sym = *symbol_table++;
1408
1409 if (match_sym (sym, data))
1410 {
1411 /* BFD symbols are section relative. */
1412 symaddr = sym->value + sym->section->vma;
1413 break;
1414 }
1415 }
1416 do_cleanups (back_to);
1417 }
1418
1419 return symaddr;
1420 }
1421
1422 /* Lookup the value for a specific symbol from symbol table. Look up symbol
1423 from ABFD. MATCH_SYM is a callback function to determine whether to pick
1424 up a symbol. DATA is the input of this callback function. Return NULL
1425 if symbol is not found. */
1426
1427 static CORE_ADDR
1428 bfd_lookup_symbol_from_dyn_symtab (bfd *abfd,
1429 int (*match_sym) (asymbol *, void *),
1430 void *data)
1431 {
1432 long storage_needed = bfd_get_dynamic_symtab_upper_bound (abfd);
1433 CORE_ADDR symaddr = 0;
1434
1435 if (storage_needed > 0)
1436 {
1437 unsigned int i;
1438 asymbol **symbol_table = (asymbol **) xmalloc (storage_needed);
1439 struct cleanup *back_to = make_cleanup (xfree, symbol_table);
1440 unsigned int number_of_symbols =
1441 bfd_canonicalize_dynamic_symtab (abfd, symbol_table);
1442
1443 for (i = 0; i < number_of_symbols; i++)
1444 {
1445 asymbol *sym = *symbol_table++;
1446
1447 if (match_sym (sym, data))
1448 {
1449 /* BFD symbols are section relative. */
1450 symaddr = sym->value + sym->section->vma;
1451 break;
1452 }
1453 }
1454 do_cleanups (back_to);
1455 }
1456 return symaddr;
1457 }
1458
1459 /* Lookup the value for a specific symbol from symbol table and dynamic
1460 symbol table. Look up symbol from ABFD. MATCH_SYM is a callback
1461 function to determine whether to pick up a symbol. DATA is the
1462 input of this callback function. Return NULL if symbol is not
1463 found. */
1464
1465 CORE_ADDR
1466 gdb_bfd_lookup_symbol (bfd *abfd,
1467 int (*match_sym) (asymbol *, void *),
1468 void *data)
1469 {
1470 CORE_ADDR symaddr = gdb_bfd_lookup_symbol_from_symtab (abfd, match_sym, data);
1471
1472 /* On FreeBSD, the dynamic linker is stripped by default. So we'll
1473 have to check the dynamic string table too. */
1474 if (symaddr == 0)
1475 symaddr = bfd_lookup_symbol_from_dyn_symtab (abfd, match_sym, data);
1476
1477 return symaddr;
1478 }
1479
1480 extern initialize_file_ftype _initialize_solib; /* -Wmissing-prototypes */
1481
1482 void
1483 _initialize_solib (void)
1484 {
1485 solib_data = gdbarch_data_register_pre_init (solib_init);
1486
1487 add_com ("sharedlibrary", class_files, sharedlibrary_command,
1488 _("Load shared object library symbols for files matching REGEXP."));
1489 add_info ("sharedlibrary", info_sharedlibrary_command,
1490 _("Status of loaded shared object libraries."));
1491 add_com ("nosharedlibrary", class_files, no_shared_libraries,
1492 _("Unload all shared object library symbols."));
1493
1494 add_setshow_boolean_cmd ("auto-solib-add", class_support,
1495 &auto_solib_add, _("\
1496 Set autoloading of shared library symbols."), _("\
1497 Show autoloading of shared library symbols."), _("\
1498 If \"on\", symbols from all shared object libraries will be loaded\n\
1499 automatically when the inferior begins execution, when the dynamic linker\n\
1500 informs gdb that a new library has been loaded, or when attaching to the\n\
1501 inferior. Otherwise, symbols must be loaded manually, using \
1502 `sharedlibrary'."),
1503 NULL,
1504 show_auto_solib_add,
1505 &setlist, &showlist);
1506
1507 add_setshow_filename_cmd ("sysroot", class_support,
1508 &gdb_sysroot, _("\
1509 Set an alternate system root."), _("\
1510 Show the current system root."), _("\
1511 The system root is used to load absolute shared library symbol files.\n\
1512 For other (relative) files, you can add directories using\n\
1513 `set solib-search-path'."),
1514 reload_shared_libraries,
1515 NULL,
1516 &setlist, &showlist);
1517
1518 add_alias_cmd ("solib-absolute-prefix", "sysroot", class_support, 0,
1519 &setlist);
1520 add_alias_cmd ("solib-absolute-prefix", "sysroot", class_support, 0,
1521 &showlist);
1522
1523 add_setshow_optional_filename_cmd ("solib-search-path", class_support,
1524 &solib_search_path, _("\
1525 Set the search path for loading non-absolute shared library symbol files."),
1526 _("\
1527 Show the search path for loading non-absolute shared library symbol files."),
1528 _("\
1529 This takes precedence over the environment variables \
1530 PATH and LD_LIBRARY_PATH."),
1531 reload_shared_libraries,
1532 show_solib_search_path,
1533 &setlist, &showlist);
1534 }
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