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c906108c 1/* Symbol table lookup for the GNU debugger, GDB.
8926118c 2
e2882c85 3 Copyright (C) 1986-2018 Free Software Foundation, Inc.
c906108c 4
c5aa993b 5 This file is part of GDB.
c906108c 6
c5aa993b
JM
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
a9762ec7 9 the Free Software Foundation; either version 3 of the License, or
c5aa993b 10 (at your option) any later version.
c906108c 11
c5aa993b
JM
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.
c906108c 16
c5aa993b 17 You should have received a copy of the GNU General Public License
a9762ec7 18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
c906108c
SS
19
20#include "defs.h"
21#include "symtab.h"
22#include "gdbtypes.h"
23#include "gdbcore.h"
24#include "frame.h"
25#include "target.h"
26#include "value.h"
27#include "symfile.h"
28#include "objfiles.h"
29#include "gdbcmd.h"
88987551 30#include "gdb_regex.h"
c906108c
SS
31#include "expression.h"
32#include "language.h"
33#include "demangle.h"
34#include "inferior.h"
0378c332 35#include "source.h"
a7fdf62f 36#include "filenames.h" /* for FILENAME_CMP */
1bae87b9 37#include "objc-lang.h"
6aecb9c2 38#include "d-lang.h"
1f8173e6 39#include "ada-lang.h"
a766d390 40#include "go-lang.h"
cd6c7346 41#include "p-lang.h"
ff013f42 42#include "addrmap.h"
529480d0 43#include "cli/cli-utils.h"
cce0e923 44#include "fnmatch.h"
2de7ced7 45#include "hashtab.h"
12615cba 46#include "typeprint.h"
2de7ced7 47
04ea0df1 48#include "gdb_obstack.h"
fe898f56 49#include "block.h"
de4f826b 50#include "dictionary.h"
c906108c
SS
51
52#include <sys/types.h>
53#include <fcntl.h>
53ce3c39 54#include <sys/stat.h>
c906108c 55#include <ctype.h>
015a42b4 56#include "cp-abi.h"
71c25dea 57#include "cp-support.h"
76727919 58#include "observable.h"
3a40aaa0 59#include "solist.h"
9a044a89
TT
60#include "macrotab.h"
61#include "macroscope.h"
c906108c 62
270140bd 63#include "parser-defs.h"
ef0b411a 64#include "completer.h"
5ed8105e 65#include "progspace-and-thread.h"
2d7cc5c7 66#include "common/gdb_optional.h"
bbf2f4df 67#include "filename-seen-cache.h"
46a62268 68#include "arch-utils.h"
b9c04fb2 69#include <algorithm>
b4987c95 70#include "common/pathstuff.h"
ccefe4c4 71
ff6c39cf 72/* Forward declarations for local functions. */
c906108c 73
0b39b52e 74static void rbreak_command (const char *, int);
c906108c 75
f8eba3c6 76static int find_line_common (struct linetable *, int, int *, int);
c906108c 77
d12307c1
PMR
78static struct block_symbol
79 lookup_symbol_aux (const char *name,
de63c46b 80 symbol_name_match_type match_type,
d12307c1
PMR
81 const struct block *block,
82 const domain_enum domain,
83 enum language language,
84 struct field_of_this_result *);
fba7f19c 85
e4051eeb 86static
d12307c1 87struct block_symbol lookup_local_symbol (const char *name,
de63c46b 88 symbol_name_match_type match_type,
d12307c1
PMR
89 const struct block *block,
90 const domain_enum domain,
91 enum language language);
8155455b 92
d12307c1 93static struct block_symbol
fe2a438d
DE
94 lookup_symbol_in_objfile (struct objfile *objfile, int block_index,
95 const char *name, const domain_enum domain);
c906108c 96
b6b80672
PA
97/* See symtab.h. */
98const struct block_symbol null_block_symbol = { NULL, NULL };
99
32ac0d11
TT
100/* Program space key for finding name and language of "main". */
101
102static const struct program_space_data *main_progspace_key;
103
104/* Type of the data stored on the program space. */
105
106struct main_info
107{
108 /* Name of "main". */
109
110 char *name_of_main;
111
112 /* Language of "main". */
113
114 enum language language_of_main;
115};
116
f57d2163
DE
117/* Program space key for finding its symbol cache. */
118
119static const struct program_space_data *symbol_cache_key;
120
121/* The default symbol cache size.
122 There is no extra cpu cost for large N (except when flushing the cache,
123 which is rare). The value here is just a first attempt. A better default
124 value may be higher or lower. A prime number can make up for a bad hash
125 computation, so that's why the number is what it is. */
126#define DEFAULT_SYMBOL_CACHE_SIZE 1021
127
128/* The maximum symbol cache size.
129 There's no method to the decision of what value to use here, other than
130 there's no point in allowing a user typo to make gdb consume all memory. */
131#define MAX_SYMBOL_CACHE_SIZE (1024*1024)
132
133/* symbol_cache_lookup returns this if a previous lookup failed to find the
134 symbol in any objfile. */
d12307c1
PMR
135#define SYMBOL_LOOKUP_FAILED \
136 ((struct block_symbol) {(struct symbol *) 1, NULL})
137#define SYMBOL_LOOKUP_FAILED_P(SIB) (SIB.symbol == (struct symbol *) 1)
f57d2163
DE
138
139/* Recording lookups that don't find the symbol is just as important, if not
140 more so, than recording found symbols. */
141
142enum symbol_cache_slot_state
143{
144 SYMBOL_SLOT_UNUSED,
145 SYMBOL_SLOT_NOT_FOUND,
146 SYMBOL_SLOT_FOUND
147};
148
52059ffd
TT
149struct symbol_cache_slot
150{
151 enum symbol_cache_slot_state state;
152
153 /* The objfile that was current when the symbol was looked up.
154 This is only needed for global blocks, but for simplicity's sake
155 we allocate the space for both. If data shows the extra space used
156 for static blocks is a problem, we can split things up then.
157
158 Global blocks need cache lookup to include the objfile context because
159 we need to account for gdbarch_iterate_over_objfiles_in_search_order
160 which can traverse objfiles in, effectively, any order, depending on
161 the current objfile, thus affecting which symbol is found. Normally,
162 only the current objfile is searched first, and then the rest are
163 searched in recorded order; but putting cache lookup inside
164 gdbarch_iterate_over_objfiles_in_search_order would be awkward.
165 Instead we just make the current objfile part of the context of
166 cache lookup. This means we can record the same symbol multiple times,
167 each with a different "current objfile" that was in effect when the
168 lookup was saved in the cache, but cache space is pretty cheap. */
169 const struct objfile *objfile_context;
170
171 union
172 {
d12307c1 173 struct block_symbol found;
52059ffd
TT
174 struct
175 {
176 char *name;
177 domain_enum domain;
178 } not_found;
179 } value;
180};
181
f57d2163
DE
182/* Symbols don't specify global vs static block.
183 So keep them in separate caches. */
184
185struct block_symbol_cache
186{
187 unsigned int hits;
188 unsigned int misses;
189 unsigned int collisions;
190
191 /* SYMBOLS is a variable length array of this size.
192 One can imagine that in general one cache (global/static) should be a
193 fraction of the size of the other, but there's no data at the moment
194 on which to decide. */
195 unsigned int size;
196
52059ffd 197 struct symbol_cache_slot symbols[1];
f57d2163
DE
198};
199
200/* The symbol cache.
201
202 Searching for symbols in the static and global blocks over multiple objfiles
203 again and again can be slow, as can searching very big objfiles. This is a
204 simple cache to improve symbol lookup performance, which is critical to
205 overall gdb performance.
206
207 Symbols are hashed on the name, its domain, and block.
208 They are also hashed on their objfile for objfile-specific lookups. */
209
210struct symbol_cache
211{
212 struct block_symbol_cache *global_symbols;
213 struct block_symbol_cache *static_symbols;
214};
215
45cfd468 216/* When non-zero, print debugging messages related to symtab creation. */
db0fec5c 217unsigned int symtab_create_debug = 0;
45cfd468 218
cc485e62
DE
219/* When non-zero, print debugging messages related to symbol lookup. */
220unsigned int symbol_lookup_debug = 0;
221
f57d2163
DE
222/* The size of the cache is staged here. */
223static unsigned int new_symbol_cache_size = DEFAULT_SYMBOL_CACHE_SIZE;
224
225/* The current value of the symbol cache size.
226 This is saved so that if the user enters a value too big we can restore
227 the original value from here. */
228static unsigned int symbol_cache_size = DEFAULT_SYMBOL_CACHE_SIZE;
229
c011a4f4
DE
230/* Non-zero if a file may be known by two different basenames.
231 This is the uncommon case, and significantly slows down gdb.
232 Default set to "off" to not slow down the common case. */
233int basenames_may_differ = 0;
234
717d2f5a
JB
235/* Allow the user to configure the debugger behavior with respect
236 to multiple-choice menus when more than one symbol matches during
237 a symbol lookup. */
238
7fc830e2
MK
239const char multiple_symbols_ask[] = "ask";
240const char multiple_symbols_all[] = "all";
241const char multiple_symbols_cancel[] = "cancel";
40478521 242static const char *const multiple_symbols_modes[] =
717d2f5a
JB
243{
244 multiple_symbols_ask,
245 multiple_symbols_all,
246 multiple_symbols_cancel,
247 NULL
248};
249static const char *multiple_symbols_mode = multiple_symbols_all;
250
251/* Read-only accessor to AUTO_SELECT_MODE. */
252
253const char *
254multiple_symbols_select_mode (void)
255{
256 return multiple_symbols_mode;
257}
258
20c681d1
DE
259/* Return the name of a domain_enum. */
260
261const char *
262domain_name (domain_enum e)
263{
264 switch (e)
265 {
266 case UNDEF_DOMAIN: return "UNDEF_DOMAIN";
267 case VAR_DOMAIN: return "VAR_DOMAIN";
268 case STRUCT_DOMAIN: return "STRUCT_DOMAIN";
540feddf 269 case MODULE_DOMAIN: return "MODULE_DOMAIN";
20c681d1
DE
270 case LABEL_DOMAIN: return "LABEL_DOMAIN";
271 case COMMON_BLOCK_DOMAIN: return "COMMON_BLOCK_DOMAIN";
272 default: gdb_assert_not_reached ("bad domain_enum");
273 }
274}
275
276/* Return the name of a search_domain . */
277
278const char *
279search_domain_name (enum search_domain e)
280{
281 switch (e)
282 {
283 case VARIABLES_DOMAIN: return "VARIABLES_DOMAIN";
284 case FUNCTIONS_DOMAIN: return "FUNCTIONS_DOMAIN";
285 case TYPES_DOMAIN: return "TYPES_DOMAIN";
286 case ALL_DOMAIN: return "ALL_DOMAIN";
287 default: gdb_assert_not_reached ("bad search_domain");
288 }
289}
290
43f3e411 291/* See symtab.h. */
db0fec5c 292
43f3e411
DE
293struct symtab *
294compunit_primary_filetab (const struct compunit_symtab *cust)
db0fec5c 295{
43f3e411 296 gdb_assert (COMPUNIT_FILETABS (cust) != NULL);
db0fec5c 297
43f3e411
DE
298 /* The primary file symtab is the first one in the list. */
299 return COMPUNIT_FILETABS (cust);
300}
301
302/* See symtab.h. */
303
304enum language
305compunit_language (const struct compunit_symtab *cust)
306{
307 struct symtab *symtab = compunit_primary_filetab (cust);
308
309/* The language of the compunit symtab is the language of its primary
310 source file. */
311 return SYMTAB_LANGUAGE (symtab);
db0fec5c
DE
312}
313
4aac40c8
TT
314/* See whether FILENAME matches SEARCH_NAME using the rule that we
315 advertise to the user. (The manual's description of linespecs
af529f8f
JK
316 describes what we advertise). Returns true if they match, false
317 otherwise. */
4aac40c8
TT
318
319int
b57a636e 320compare_filenames_for_search (const char *filename, const char *search_name)
4aac40c8
TT
321{
322 int len = strlen (filename);
b57a636e 323 size_t search_len = strlen (search_name);
4aac40c8
TT
324
325 if (len < search_len)
326 return 0;
327
328 /* The tail of FILENAME must match. */
329 if (FILENAME_CMP (filename + len - search_len, search_name) != 0)
330 return 0;
331
332 /* Either the names must completely match, or the character
333 preceding the trailing SEARCH_NAME segment of FILENAME must be a
d84fca2c
JK
334 directory separator.
335
af529f8f
JK
336 The check !IS_ABSOLUTE_PATH ensures SEARCH_NAME "/dir/file.c"
337 cannot match FILENAME "/path//dir/file.c" - as user has requested
338 absolute path. The sama applies for "c:\file.c" possibly
339 incorrectly hypothetically matching "d:\dir\c:\file.c".
340
d84fca2c
JK
341 The HAS_DRIVE_SPEC purpose is to make FILENAME "c:file.c"
342 compatible with SEARCH_NAME "file.c". In such case a compiler had
343 to put the "c:file.c" name into debug info. Such compatibility
344 works only on GDB built for DOS host. */
4aac40c8 345 return (len == search_len
af529f8f
JK
346 || (!IS_ABSOLUTE_PATH (search_name)
347 && IS_DIR_SEPARATOR (filename[len - search_len - 1]))
4aac40c8
TT
348 || (HAS_DRIVE_SPEC (filename)
349 && STRIP_DRIVE_SPEC (filename) == &filename[len - search_len]));
350}
351
cce0e923
DE
352/* Same as compare_filenames_for_search, but for glob-style patterns.
353 Heads up on the order of the arguments. They match the order of
354 compare_filenames_for_search, but it's the opposite of the order of
355 arguments to gdb_filename_fnmatch. */
356
357int
358compare_glob_filenames_for_search (const char *filename,
359 const char *search_name)
360{
361 /* We rely on the property of glob-style patterns with FNM_FILE_NAME that
362 all /s have to be explicitly specified. */
363 int file_path_elements = count_path_elements (filename);
364 int search_path_elements = count_path_elements (search_name);
365
366 if (search_path_elements > file_path_elements)
367 return 0;
368
369 if (IS_ABSOLUTE_PATH (search_name))
370 {
371 return (search_path_elements == file_path_elements
372 && gdb_filename_fnmatch (search_name, filename,
373 FNM_FILE_NAME | FNM_NOESCAPE) == 0);
374 }
375
376 {
377 const char *file_to_compare
378 = strip_leading_path_elements (filename,
379 file_path_elements - search_path_elements);
380
381 return gdb_filename_fnmatch (search_name, file_to_compare,
382 FNM_FILE_NAME | FNM_NOESCAPE) == 0;
383 }
384}
385
f8eba3c6
TT
386/* Check for a symtab of a specific name by searching some symtabs.
387 This is a helper function for callbacks of iterate_over_symtabs.
c906108c 388
b2d23133
DE
389 If NAME is not absolute, then REAL_PATH is NULL
390 If NAME is absolute, then REAL_PATH is the gdb_realpath form of NAME.
391
14bc53a8
PA
392 The return value, NAME, REAL_PATH and CALLBACK are identical to the
393 `map_symtabs_matching_filename' method of quick_symbol_functions.
f8eba3c6 394
43f3e411
DE
395 FIRST and AFTER_LAST indicate the range of compunit symtabs to search.
396 Each symtab within the specified compunit symtab is also searched.
397 AFTER_LAST is one past the last compunit symtab to search; NULL means to
f8eba3c6
TT
398 search until the end of the list. */
399
14bc53a8 400bool
f8eba3c6 401iterate_over_some_symtabs (const char *name,
f8eba3c6 402 const char *real_path,
43f3e411 403 struct compunit_symtab *first,
14bc53a8
PA
404 struct compunit_symtab *after_last,
405 gdb::function_view<bool (symtab *)> callback)
c906108c 406{
43f3e411
DE
407 struct compunit_symtab *cust;
408 struct symtab *s;
c011a4f4 409 const char* base_name = lbasename (name);
1f84b619 410
43f3e411 411 for (cust = first; cust != NULL && cust != after_last; cust = cust->next)
f079a2e5 412 {
43f3e411 413 ALL_COMPUNIT_FILETABS (cust, s)
a94e8645 414 {
43f3e411
DE
415 if (compare_filenames_for_search (s->filename, name))
416 {
14bc53a8
PA
417 if (callback (s))
418 return true;
43f3e411
DE
419 continue;
420 }
a94e8645 421
43f3e411
DE
422 /* Before we invoke realpath, which can get expensive when many
423 files are involved, do a quick comparison of the basenames. */
424 if (! basenames_may_differ
425 && FILENAME_CMP (base_name, lbasename (s->filename)) != 0)
426 continue;
a94e8645 427
43f3e411 428 if (compare_filenames_for_search (symtab_to_fullname (s), name))
a94e8645 429 {
14bc53a8
PA
430 if (callback (s))
431 return true;
a94e8645
DE
432 continue;
433 }
43f3e411
DE
434
435 /* If the user gave us an absolute path, try to find the file in
436 this symtab and use its absolute path. */
437 if (real_path != NULL)
438 {
439 const char *fullname = symtab_to_fullname (s);
440
441 gdb_assert (IS_ABSOLUTE_PATH (real_path));
442 gdb_assert (IS_ABSOLUTE_PATH (name));
443 if (FILENAME_CMP (real_path, fullname) == 0)
444 {
14bc53a8
PA
445 if (callback (s))
446 return true;
43f3e411
DE
447 continue;
448 }
449 }
a94e8645 450 }
f8eba3c6 451 }
58d370e0 452
14bc53a8 453 return false;
f8eba3c6
TT
454}
455
456/* Check for a symtab of a specific name; first in symtabs, then in
457 psymtabs. *If* there is no '/' in the name, a match after a '/'
458 in the symtab filename will also work.
459
14bc53a8
PA
460 Calls CALLBACK with each symtab that is found. If CALLBACK returns
461 true, the search stops. */
f8eba3c6
TT
462
463void
464iterate_over_symtabs (const char *name,
14bc53a8 465 gdb::function_view<bool (symtab *)> callback)
f8eba3c6 466{
f8eba3c6 467 struct objfile *objfile;
14bc53a8 468 gdb::unique_xmalloc_ptr<char> real_path;
f8eba3c6
TT
469
470 /* Here we are interested in canonicalizing an absolute path, not
471 absolutizing a relative path. */
472 if (IS_ABSOLUTE_PATH (name))
473 {
14278e1f 474 real_path = gdb_realpath (name);
14bc53a8 475 gdb_assert (IS_ABSOLUTE_PATH (real_path.get ()));
f8eba3c6
TT
476 }
477
478 ALL_OBJFILES (objfile)
14bc53a8
PA
479 {
480 if (iterate_over_some_symtabs (name, real_path.get (),
481 objfile->compunit_symtabs, NULL,
482 callback))
f8eba3c6 483 return;
14bc53a8 484 }
f8eba3c6 485
c906108c
SS
486 /* Same search rules as above apply here, but now we look thru the
487 psymtabs. */
488
ccefe4c4 489 ALL_OBJFILES (objfile)
14bc53a8
PA
490 {
491 if (objfile->sf
492 && objfile->sf->qf->map_symtabs_matching_filename (objfile,
493 name,
494 real_path.get (),
495 callback))
f8eba3c6 496 return;
14bc53a8 497 }
c906108c 498}
f8eba3c6
TT
499
500/* A wrapper for iterate_over_symtabs that returns the first matching
501 symtab, or NULL. */
502
503struct symtab *
504lookup_symtab (const char *name)
505{
506 struct symtab *result = NULL;
507
14bc53a8
PA
508 iterate_over_symtabs (name, [&] (symtab *symtab)
509 {
510 result = symtab;
511 return true;
512 });
513
f8eba3c6
TT
514 return result;
515}
516
c906108c
SS
517\f
518/* Mangle a GDB method stub type. This actually reassembles the pieces of the
519 full method name, which consist of the class name (from T), the unadorned
520 method name from METHOD_ID, and the signature for the specific overload,
c378eb4e 521 specified by SIGNATURE_ID. Note that this function is g++ specific. */
c906108c
SS
522
523char *
fba45db2 524gdb_mangle_name (struct type *type, int method_id, int signature_id)
c906108c
SS
525{
526 int mangled_name_len;
527 char *mangled_name;
528 struct fn_field *f = TYPE_FN_FIELDLIST1 (type, method_id);
529 struct fn_field *method = &f[signature_id];
0d5cff50 530 const char *field_name = TYPE_FN_FIELDLIST_NAME (type, method_id);
1d06ead6 531 const char *physname = TYPE_FN_FIELD_PHYSNAME (f, signature_id);
a737d952 532 const char *newname = TYPE_NAME (type);
c906108c
SS
533
534 /* Does the form of physname indicate that it is the full mangled name
535 of a constructor (not just the args)? */
536 int is_full_physname_constructor;
537
538 int is_constructor;
015a42b4 539 int is_destructor = is_destructor_name (physname);
c906108c 540 /* Need a new type prefix. */
e6a959d6
PA
541 const char *const_prefix = method->is_const ? "C" : "";
542 const char *volatile_prefix = method->is_volatile ? "V" : "";
c906108c
SS
543 char buf[20];
544 int len = (newname == NULL ? 0 : strlen (newname));
545
43630227
PS
546 /* Nothing to do if physname already contains a fully mangled v3 abi name
547 or an operator name. */
548 if ((physname[0] == '_' && physname[1] == 'Z')
549 || is_operator_name (field_name))
235d1e03
EZ
550 return xstrdup (physname);
551
015a42b4 552 is_full_physname_constructor = is_constructor_name (physname);
c906108c 553
3e43a32a
MS
554 is_constructor = is_full_physname_constructor
555 || (newname && strcmp (field_name, newname) == 0);
c906108c
SS
556
557 if (!is_destructor)
61012eef 558 is_destructor = (startswith (physname, "__dt"));
c906108c
SS
559
560 if (is_destructor || is_full_physname_constructor)
561 {
c5aa993b
JM
562 mangled_name = (char *) xmalloc (strlen (physname) + 1);
563 strcpy (mangled_name, physname);
c906108c
SS
564 return mangled_name;
565 }
566
567 if (len == 0)
568 {
8c042590 569 xsnprintf (buf, sizeof (buf), "__%s%s", const_prefix, volatile_prefix);
c906108c
SS
570 }
571 else if (physname[0] == 't' || physname[0] == 'Q')
572 {
573 /* The physname for template and qualified methods already includes
c5aa993b 574 the class name. */
8c042590 575 xsnprintf (buf, sizeof (buf), "__%s%s", const_prefix, volatile_prefix);
c906108c
SS
576 newname = NULL;
577 len = 0;
578 }
579 else
580 {
8c042590
PM
581 xsnprintf (buf, sizeof (buf), "__%s%s%d", const_prefix,
582 volatile_prefix, len);
c906108c
SS
583 }
584 mangled_name_len = ((is_constructor ? 0 : strlen (field_name))
235d1e03 585 + strlen (buf) + len + strlen (physname) + 1);
c906108c 586
433759f7
MS
587 mangled_name = (char *) xmalloc (mangled_name_len);
588 if (is_constructor)
589 mangled_name[0] = '\0';
590 else
591 strcpy (mangled_name, field_name);
592
c906108c
SS
593 strcat (mangled_name, buf);
594 /* If the class doesn't have a name, i.e. newname NULL, then we just
595 mangle it using 0 for the length of the class. Thus it gets mangled
c378eb4e 596 as something starting with `::' rather than `classname::'. */
c906108c
SS
597 if (newname != NULL)
598 strcat (mangled_name, newname);
599
600 strcat (mangled_name, physname);
601 return (mangled_name);
602}
12af6855 603
b250c185 604/* Set the demangled name of GSYMBOL to NAME. NAME must be already
7c5fdd25 605 correctly allocated. */
eca864fe 606
b250c185
SW
607void
608symbol_set_demangled_name (struct general_symbol_info *gsymbol,
cfc594ee 609 const char *name,
ccde22c0 610 struct obstack *obstack)
b250c185 611{
7c5fdd25 612 if (gsymbol->language == language_ada)
f85f34ed
TT
613 {
614 if (name == NULL)
615 {
616 gsymbol->ada_mangled = 0;
617 gsymbol->language_specific.obstack = obstack;
618 }
619 else
620 {
621 gsymbol->ada_mangled = 1;
615b3f62 622 gsymbol->language_specific.demangled_name = name;
f85f34ed
TT
623 }
624 }
29df156d 625 else
615b3f62 626 gsymbol->language_specific.demangled_name = name;
b250c185
SW
627}
628
629/* Return the demangled name of GSYMBOL. */
eca864fe 630
0d5cff50 631const char *
b250c185
SW
632symbol_get_demangled_name (const struct general_symbol_info *gsymbol)
633{
7c5fdd25 634 if (gsymbol->language == language_ada)
f85f34ed
TT
635 {
636 if (!gsymbol->ada_mangled)
637 return NULL;
638 /* Fall through. */
639 }
640
615b3f62 641 return gsymbol->language_specific.demangled_name;
b250c185
SW
642}
643
12af6855 644\f
89aad1f9 645/* Initialize the language dependent portion of a symbol
c378eb4e 646 depending upon the language for the symbol. */
eca864fe 647
89aad1f9 648void
33e5013e 649symbol_set_language (struct general_symbol_info *gsymbol,
f85f34ed
TT
650 enum language language,
651 struct obstack *obstack)
89aad1f9
EZ
652{
653 gsymbol->language = language;
7c5fdd25
DE
654 if (gsymbol->language == language_cplus
655 || gsymbol->language == language_d
a766d390 656 || gsymbol->language == language_go
f55ee35c
JK
657 || gsymbol->language == language_objc
658 || gsymbol->language == language_fortran)
89aad1f9 659 {
f85f34ed
TT
660 symbol_set_demangled_name (gsymbol, NULL, obstack);
661 }
662 else if (gsymbol->language == language_ada)
663 {
664 gdb_assert (gsymbol->ada_mangled == 0);
665 gsymbol->language_specific.obstack = obstack;
89aad1f9 666 }
89aad1f9
EZ
667 else
668 {
669 memset (&gsymbol->language_specific, 0,
670 sizeof (gsymbol->language_specific));
671 }
672}
673
2de7ced7
DJ
674/* Functions to initialize a symbol's mangled name. */
675
04a679b8
TT
676/* Objects of this type are stored in the demangled name hash table. */
677struct demangled_name_entry
678{
9d2ceabe 679 const char *mangled;
04a679b8
TT
680 char demangled[1];
681};
682
683/* Hash function for the demangled name hash. */
eca864fe 684
04a679b8
TT
685static hashval_t
686hash_demangled_name_entry (const void *data)
687{
19ba03f4
SM
688 const struct demangled_name_entry *e
689 = (const struct demangled_name_entry *) data;
433759f7 690
04a679b8
TT
691 return htab_hash_string (e->mangled);
692}
693
694/* Equality function for the demangled name hash. */
eca864fe 695
04a679b8
TT
696static int
697eq_demangled_name_entry (const void *a, const void *b)
698{
19ba03f4
SM
699 const struct demangled_name_entry *da
700 = (const struct demangled_name_entry *) a;
701 const struct demangled_name_entry *db
702 = (const struct demangled_name_entry *) b;
433759f7 703
04a679b8
TT
704 return strcmp (da->mangled, db->mangled) == 0;
705}
706
2de7ced7
DJ
707/* Create the hash table used for demangled names. Each hash entry is
708 a pair of strings; one for the mangled name and one for the demangled
709 name. The entry is hashed via just the mangled name. */
710
711static void
712create_demangled_names_hash (struct objfile *objfile)
713{
714 /* Choose 256 as the starting size of the hash table, somewhat arbitrarily.
9af17804 715 The hash table code will round this up to the next prime number.
2de7ced7
DJ
716 Choosing a much larger table size wastes memory, and saves only about
717 1% in symbol reading. */
718
84a1243b 719 objfile->per_bfd->demangled_names_hash = htab_create_alloc
04a679b8 720 (256, hash_demangled_name_entry, eq_demangled_name_entry,
aa2ee5f6 721 NULL, xcalloc, xfree);
2de7ced7 722}
12af6855 723
2de7ced7 724/* Try to determine the demangled name for a symbol, based on the
12af6855
JB
725 language of that symbol. If the language is set to language_auto,
726 it will attempt to find any demangling algorithm that works and
2de7ced7
DJ
727 then set the language appropriately. The returned name is allocated
728 by the demangler and should be xfree'd. */
12af6855 729
2de7ced7
DJ
730static char *
731symbol_find_demangled_name (struct general_symbol_info *gsymbol,
732 const char *mangled)
12af6855 733{
12af6855 734 char *demangled = NULL;
8b302db8 735 int i;
12af6855
JB
736
737 if (gsymbol->language == language_unknown)
738 gsymbol->language = language_auto;
1bae87b9 739
8b302db8 740 if (gsymbol->language != language_auto)
1bae87b9 741 {
8b302db8
TT
742 const struct language_defn *lang = language_def (gsymbol->language);
743
744 language_sniff_from_mangled_name (lang, mangled, &demangled);
745 return demangled;
6aecb9c2 746 }
8b302db8
TT
747
748 for (i = language_unknown; i < nr_languages; ++i)
a766d390 749 {
8b302db8
TT
750 enum language l = (enum language) i;
751 const struct language_defn *lang = language_def (l);
752
753 if (language_sniff_from_mangled_name (lang, mangled, &demangled))
a766d390 754 {
8b302db8 755 gsymbol->language = l;
a766d390
DE
756 return demangled;
757 }
758 }
759
2de7ced7
DJ
760 return NULL;
761}
762
980cae7a 763/* Set both the mangled and demangled (if any) names for GSYMBOL based
04a679b8
TT
764 on LINKAGE_NAME and LEN. Ordinarily, NAME is copied onto the
765 objfile's obstack; but if COPY_NAME is 0 and if NAME is
766 NUL-terminated, then this function assumes that NAME is already
767 correctly saved (either permanently or with a lifetime tied to the
768 objfile), and it will not be copied.
769
770 The hash table corresponding to OBJFILE is used, and the memory
84a1243b 771 comes from the per-BFD storage_obstack. LINKAGE_NAME is copied,
04a679b8 772 so the pointer can be discarded after calling this function. */
2de7ced7
DJ
773
774void
775symbol_set_names (struct general_symbol_info *gsymbol,
04a679b8
TT
776 const char *linkage_name, int len, int copy_name,
777 struct objfile *objfile)
2de7ced7 778{
04a679b8 779 struct demangled_name_entry **slot;
980cae7a
DC
780 /* A 0-terminated copy of the linkage name. */
781 const char *linkage_name_copy;
04a679b8 782 struct demangled_name_entry entry;
84a1243b 783 struct objfile_per_bfd_storage *per_bfd = objfile->per_bfd;
2de7ced7 784
b06ead72
JB
785 if (gsymbol->language == language_ada)
786 {
787 /* In Ada, we do the symbol lookups using the mangled name, so
9c37b5ae 788 we can save some space by not storing the demangled name. */
04a679b8 789 if (!copy_name)
0d5cff50 790 gsymbol->name = linkage_name;
04a679b8
TT
791 else
792 {
224c3ddb
SM
793 char *name = (char *) obstack_alloc (&per_bfd->storage_obstack,
794 len + 1);
0d5cff50
DE
795
796 memcpy (name, linkage_name, len);
797 name[len] = '\0';
798 gsymbol->name = name;
04a679b8 799 }
84a1243b 800 symbol_set_demangled_name (gsymbol, NULL, &per_bfd->storage_obstack);
b06ead72
JB
801
802 return;
803 }
804
84a1243b 805 if (per_bfd->demangled_names_hash == NULL)
04a679b8
TT
806 create_demangled_names_hash (objfile);
807
9c37b5ae 808 if (linkage_name[len] != '\0')
2de7ced7 809 {
980cae7a
DC
810 char *alloc_name;
811
9c37b5ae 812 alloc_name = (char *) alloca (len + 1);
980cae7a 813 memcpy (alloc_name, linkage_name, len);
9c37b5ae 814 alloc_name[len] = '\0';
980cae7a
DC
815
816 linkage_name_copy = alloc_name;
2de7ced7
DJ
817 }
818 else
9c37b5ae 819 linkage_name_copy = linkage_name;
2de7ced7 820
9c37b5ae 821 entry.mangled = linkage_name_copy;
04a679b8 822 slot = ((struct demangled_name_entry **)
84a1243b 823 htab_find_slot (per_bfd->demangled_names_hash,
04a679b8 824 &entry, INSERT));
2de7ced7
DJ
825
826 /* If this name is not in the hash table, add it. */
a766d390
DE
827 if (*slot == NULL
828 /* A C version of the symbol may have already snuck into the table.
829 This happens to, e.g., main.init (__go_init_main). Cope. */
830 || (gsymbol->language == language_go
831 && (*slot)->demangled[0] == '\0'))
2de7ced7 832 {
980cae7a
DC
833 char *demangled_name = symbol_find_demangled_name (gsymbol,
834 linkage_name_copy);
2de7ced7
DJ
835 int demangled_len = demangled_name ? strlen (demangled_name) : 0;
836
04a679b8 837 /* Suppose we have demangled_name==NULL, copy_name==0, and
9c37b5ae 838 linkage_name_copy==linkage_name. In this case, we already have the
04a679b8
TT
839 mangled name saved, and we don't have a demangled name. So,
840 you might think we could save a little space by not recording
841 this in the hash table at all.
842
843 It turns out that it is actually important to still save such
844 an entry in the hash table, because storing this name gives
705b5767 845 us better bcache hit rates for partial symbols. */
9c37b5ae 846 if (!copy_name && linkage_name_copy == linkage_name)
04a679b8 847 {
224c3ddb
SM
848 *slot
849 = ((struct demangled_name_entry *)
850 obstack_alloc (&per_bfd->storage_obstack,
851 offsetof (struct demangled_name_entry, demangled)
852 + demangled_len + 1));
9c37b5ae 853 (*slot)->mangled = linkage_name;
04a679b8
TT
854 }
855 else
856 {
9d2ceabe
TT
857 char *mangled_ptr;
858
04a679b8
TT
859 /* If we must copy the mangled name, put it directly after
860 the demangled name so we can have a single
861 allocation. */
224c3ddb
SM
862 *slot
863 = ((struct demangled_name_entry *)
864 obstack_alloc (&per_bfd->storage_obstack,
865 offsetof (struct demangled_name_entry, demangled)
9c37b5ae 866 + len + demangled_len + 2));
9d2ceabe 867 mangled_ptr = &((*slot)->demangled[demangled_len + 1]);
9c37b5ae 868 strcpy (mangled_ptr, linkage_name_copy);
9d2ceabe 869 (*slot)->mangled = mangled_ptr;
04a679b8
TT
870 }
871
980cae7a 872 if (demangled_name != NULL)
2de7ced7 873 {
04a679b8 874 strcpy ((*slot)->demangled, demangled_name);
2de7ced7
DJ
875 xfree (demangled_name);
876 }
877 else
04a679b8 878 (*slot)->demangled[0] = '\0';
2de7ced7
DJ
879 }
880
9c37b5ae 881 gsymbol->name = (*slot)->mangled;
04a679b8 882 if ((*slot)->demangled[0] != '\0')
ccde22c0 883 symbol_set_demangled_name (gsymbol, (*slot)->demangled,
84a1243b 884 &per_bfd->storage_obstack);
2de7ced7 885 else
84a1243b 886 symbol_set_demangled_name (gsymbol, NULL, &per_bfd->storage_obstack);
2de7ced7
DJ
887}
888
22abf04a
DC
889/* Return the source code name of a symbol. In languages where
890 demangling is necessary, this is the demangled name. */
891
0d5cff50 892const char *
22abf04a
DC
893symbol_natural_name (const struct general_symbol_info *gsymbol)
894{
9af17804 895 switch (gsymbol->language)
22abf04a 896 {
1f8173e6 897 case language_cplus:
6aecb9c2 898 case language_d:
a766d390 899 case language_go:
1f8173e6 900 case language_objc:
f55ee35c 901 case language_fortran:
b250c185
SW
902 if (symbol_get_demangled_name (gsymbol) != NULL)
903 return symbol_get_demangled_name (gsymbol);
1f8173e6
PH
904 break;
905 case language_ada:
f85f34ed 906 return ada_decode_symbol (gsymbol);
1f8173e6
PH
907 default:
908 break;
22abf04a 909 }
1f8173e6 910 return gsymbol->name;
22abf04a
DC
911}
912
9cc0d196 913/* Return the demangled name for a symbol based on the language for
c378eb4e 914 that symbol. If no demangled name exists, return NULL. */
eca864fe 915
0d5cff50 916const char *
df8a16a1 917symbol_demangled_name (const struct general_symbol_info *gsymbol)
9cc0d196 918{
c6e5ee5e
SDJ
919 const char *dem_name = NULL;
920
9af17804 921 switch (gsymbol->language)
1f8173e6
PH
922 {
923 case language_cplus:
6aecb9c2 924 case language_d:
a766d390 925 case language_go:
1f8173e6 926 case language_objc:
f55ee35c 927 case language_fortran:
c6e5ee5e 928 dem_name = symbol_get_demangled_name (gsymbol);
1f8173e6
PH
929 break;
930 case language_ada:
f85f34ed 931 dem_name = ada_decode_symbol (gsymbol);
1f8173e6
PH
932 break;
933 default:
934 break;
935 }
c6e5ee5e 936 return dem_name;
9cc0d196 937}
fe39c653 938
4725b721
PH
939/* Return the search name of a symbol---generally the demangled or
940 linkage name of the symbol, depending on how it will be searched for.
9af17804 941 If there is no distinct demangled name, then returns the same value
c378eb4e 942 (same pointer) as SYMBOL_LINKAGE_NAME. */
eca864fe 943
0d5cff50 944const char *
fc062ac6
JB
945symbol_search_name (const struct general_symbol_info *gsymbol)
946{
1f8173e6
PH
947 if (gsymbol->language == language_ada)
948 return gsymbol->name;
949 else
950 return symbol_natural_name (gsymbol);
4725b721 951}
b5ec771e
PA
952
953/* See symtab.h. */
954
955bool
956symbol_matches_search_name (const struct general_symbol_info *gsymbol,
957 const lookup_name_info &name)
958{
959 symbol_name_matcher_ftype *name_match
618daa93 960 = get_symbol_name_matcher (language_def (gsymbol->language), name);
b5ec771e
PA
961 return name_match (symbol_search_name (gsymbol), name, NULL);
962}
963
c906108c
SS
964\f
965
94277a38
DJ
966/* Return 1 if the two sections are the same, or if they could
967 plausibly be copies of each other, one in an original object
968 file and another in a separated debug file. */
969
970int
714835d5
UW
971matching_obj_sections (struct obj_section *obj_first,
972 struct obj_section *obj_second)
94277a38 973{
714835d5
UW
974 asection *first = obj_first? obj_first->the_bfd_section : NULL;
975 asection *second = obj_second? obj_second->the_bfd_section : NULL;
94277a38
DJ
976 struct objfile *obj;
977
978 /* If they're the same section, then they match. */
979 if (first == second)
980 return 1;
981
982 /* If either is NULL, give up. */
983 if (first == NULL || second == NULL)
984 return 0;
985
986 /* This doesn't apply to absolute symbols. */
987 if (first->owner == NULL || second->owner == NULL)
988 return 0;
989
990 /* If they're in the same object file, they must be different sections. */
991 if (first->owner == second->owner)
992 return 0;
993
994 /* Check whether the two sections are potentially corresponding. They must
995 have the same size, address, and name. We can't compare section indexes,
996 which would be more reliable, because some sections may have been
997 stripped. */
998 if (bfd_get_section_size (first) != bfd_get_section_size (second))
999 return 0;
1000
818f79f6 1001 /* In-memory addresses may start at a different offset, relativize them. */
94277a38 1002 if (bfd_get_section_vma (first->owner, first)
818f79f6
DJ
1003 - bfd_get_start_address (first->owner)
1004 != bfd_get_section_vma (second->owner, second)
1005 - bfd_get_start_address (second->owner))
94277a38
DJ
1006 return 0;
1007
1008 if (bfd_get_section_name (first->owner, first) == NULL
1009 || bfd_get_section_name (second->owner, second) == NULL
1010 || strcmp (bfd_get_section_name (first->owner, first),
1011 bfd_get_section_name (second->owner, second)) != 0)
1012 return 0;
1013
1014 /* Otherwise check that they are in corresponding objfiles. */
1015
1016 ALL_OBJFILES (obj)
1017 if (obj->obfd == first->owner)
1018 break;
1019 gdb_assert (obj != NULL);
1020
1021 if (obj->separate_debug_objfile != NULL
1022 && obj->separate_debug_objfile->obfd == second->owner)
1023 return 1;
1024 if (obj->separate_debug_objfile_backlink != NULL
1025 && obj->separate_debug_objfile_backlink->obfd == second->owner)
1026 return 1;
1027
1028 return 0;
1029}
c5aa993b 1030
2097ae25
DE
1031/* See symtab.h. */
1032
1033void
1034expand_symtab_containing_pc (CORE_ADDR pc, struct obj_section *section)
c906108c 1035{
52f0bd74 1036 struct objfile *objfile;
77e371c0 1037 struct bound_minimal_symbol msymbol;
8a48e967
DJ
1038
1039 /* If we know that this is not a text address, return failure. This is
1040 necessary because we loop based on texthigh and textlow, which do
1041 not include the data ranges. */
77e371c0
TT
1042 msymbol = lookup_minimal_symbol_by_pc_section (pc, section);
1043 if (msymbol.minsym
1044 && (MSYMBOL_TYPE (msymbol.minsym) == mst_data
1045 || MSYMBOL_TYPE (msymbol.minsym) == mst_bss
1046 || MSYMBOL_TYPE (msymbol.minsym) == mst_abs
1047 || MSYMBOL_TYPE (msymbol.minsym) == mst_file_data
1048 || MSYMBOL_TYPE (msymbol.minsym) == mst_file_bss))
2097ae25 1049 return;
c906108c 1050
ff013f42 1051 ALL_OBJFILES (objfile)
ccefe4c4 1052 {
43f3e411 1053 struct compunit_symtab *cust = NULL;
433759f7 1054
ccefe4c4 1055 if (objfile->sf)
43f3e411
DE
1056 cust = objfile->sf->qf->find_pc_sect_compunit_symtab (objfile, msymbol,
1057 pc, section, 0);
1058 if (cust)
2097ae25 1059 return;
ccefe4c4 1060 }
c906108c 1061}
c906108c 1062\f
f57d2163
DE
1063/* Hash function for the symbol cache. */
1064
1065static unsigned int
1066hash_symbol_entry (const struct objfile *objfile_context,
1067 const char *name, domain_enum domain)
1068{
1069 unsigned int hash = (uintptr_t) objfile_context;
1070
1071 if (name != NULL)
1072 hash += htab_hash_string (name);
1073
2c26b84f
DE
1074 /* Because of symbol_matches_domain we need VAR_DOMAIN and STRUCT_DOMAIN
1075 to map to the same slot. */
1076 if (domain == STRUCT_DOMAIN)
1077 hash += VAR_DOMAIN * 7;
1078 else
1079 hash += domain * 7;
f57d2163
DE
1080
1081 return hash;
1082}
1083
1084/* Equality function for the symbol cache. */
1085
1086static int
1087eq_symbol_entry (const struct symbol_cache_slot *slot,
1088 const struct objfile *objfile_context,
1089 const char *name, domain_enum domain)
1090{
1091 const char *slot_name;
1092 domain_enum slot_domain;
1093
1094 if (slot->state == SYMBOL_SLOT_UNUSED)
1095 return 0;
1096
1097 if (slot->objfile_context != objfile_context)
1098 return 0;
1099
1100 if (slot->state == SYMBOL_SLOT_NOT_FOUND)
1101 {
1102 slot_name = slot->value.not_found.name;
1103 slot_domain = slot->value.not_found.domain;
1104 }
1105 else
1106 {
d12307c1
PMR
1107 slot_name = SYMBOL_SEARCH_NAME (slot->value.found.symbol);
1108 slot_domain = SYMBOL_DOMAIN (slot->value.found.symbol);
f57d2163
DE
1109 }
1110
1111 /* NULL names match. */
1112 if (slot_name == NULL && name == NULL)
1113 {
1114 /* But there's no point in calling symbol_matches_domain in the
1115 SYMBOL_SLOT_FOUND case. */
1116 if (slot_domain != domain)
1117 return 0;
1118 }
1119 else if (slot_name != NULL && name != NULL)
1120 {
b5ec771e
PA
1121 /* It's important that we use the same comparison that was done
1122 the first time through. If the slot records a found symbol,
1123 then this means using the symbol name comparison function of
1124 the symbol's language with SYMBOL_SEARCH_NAME. See
1125 dictionary.c. It also means using symbol_matches_domain for
1126 found symbols. See block.c.
f57d2163
DE
1127
1128 If the slot records a not-found symbol, then require a precise match.
1129 We could still be lax with whitespace like strcmp_iw though. */
1130
1131 if (slot->state == SYMBOL_SLOT_NOT_FOUND)
1132 {
1133 if (strcmp (slot_name, name) != 0)
1134 return 0;
1135 if (slot_domain != domain)
1136 return 0;
1137 }
1138 else
1139 {
d12307c1 1140 struct symbol *sym = slot->value.found.symbol;
b5ec771e 1141 lookup_name_info lookup_name (name, symbol_name_match_type::FULL);
f57d2163 1142
b5ec771e 1143 if (!SYMBOL_MATCHES_SEARCH_NAME (sym, lookup_name))
f57d2163 1144 return 0;
b5ec771e 1145
f57d2163
DE
1146 if (!symbol_matches_domain (SYMBOL_LANGUAGE (sym),
1147 slot_domain, domain))
1148 return 0;
1149 }
1150 }
1151 else
1152 {
1153 /* Only one name is NULL. */
1154 return 0;
1155 }
1156
1157 return 1;
1158}
1159
1160/* Given a cache of size SIZE, return the size of the struct (with variable
1161 length array) in bytes. */
1162
1163static size_t
1164symbol_cache_byte_size (unsigned int size)
1165{
1166 return (sizeof (struct block_symbol_cache)
1167 + ((size - 1) * sizeof (struct symbol_cache_slot)));
1168}
1169
1170/* Resize CACHE. */
1171
1172static void
1173resize_symbol_cache (struct symbol_cache *cache, unsigned int new_size)
1174{
1175 /* If there's no change in size, don't do anything.
1176 All caches have the same size, so we can just compare with the size
1177 of the global symbols cache. */
1178 if ((cache->global_symbols != NULL
1179 && cache->global_symbols->size == new_size)
1180 || (cache->global_symbols == NULL
1181 && new_size == 0))
1182 return;
1183
1184 xfree (cache->global_symbols);
1185 xfree (cache->static_symbols);
1186
1187 if (new_size == 0)
1188 {
1189 cache->global_symbols = NULL;
1190 cache->static_symbols = NULL;
1191 }
1192 else
1193 {
1194 size_t total_size = symbol_cache_byte_size (new_size);
1195
224c3ddb
SM
1196 cache->global_symbols
1197 = (struct block_symbol_cache *) xcalloc (1, total_size);
1198 cache->static_symbols
1199 = (struct block_symbol_cache *) xcalloc (1, total_size);
f57d2163
DE
1200 cache->global_symbols->size = new_size;
1201 cache->static_symbols->size = new_size;
1202 }
1203}
1204
1205/* Make a symbol cache of size SIZE. */
1206
1207static struct symbol_cache *
1208make_symbol_cache (unsigned int size)
1209{
1210 struct symbol_cache *cache;
1211
1212 cache = XCNEW (struct symbol_cache);
1213 resize_symbol_cache (cache, symbol_cache_size);
1214 return cache;
1215}
1216
1217/* Free the space used by CACHE. */
1218
1219static void
1220free_symbol_cache (struct symbol_cache *cache)
1221{
1222 xfree (cache->global_symbols);
1223 xfree (cache->static_symbols);
1224 xfree (cache);
1225}
1226
1227/* Return the symbol cache of PSPACE.
1228 Create one if it doesn't exist yet. */
1229
1230static struct symbol_cache *
1231get_symbol_cache (struct program_space *pspace)
1232{
19ba03f4
SM
1233 struct symbol_cache *cache
1234 = (struct symbol_cache *) program_space_data (pspace, symbol_cache_key);
f57d2163
DE
1235
1236 if (cache == NULL)
1237 {
1238 cache = make_symbol_cache (symbol_cache_size);
1239 set_program_space_data (pspace, symbol_cache_key, cache);
1240 }
1241
1242 return cache;
1243}
1244
1245/* Delete the symbol cache of PSPACE.
1246 Called when PSPACE is destroyed. */
1247
1248static void
1249symbol_cache_cleanup (struct program_space *pspace, void *data)
1250{
19ba03f4 1251 struct symbol_cache *cache = (struct symbol_cache *) data;
f57d2163
DE
1252
1253 free_symbol_cache (cache);
1254}
1255
1256/* Set the size of the symbol cache in all program spaces. */
1257
1258static void
1259set_symbol_cache_size (unsigned int new_size)
1260{
1261 struct program_space *pspace;
1262
1263 ALL_PSPACES (pspace)
1264 {
1265 struct symbol_cache *cache
19ba03f4 1266 = (struct symbol_cache *) program_space_data (pspace, symbol_cache_key);
f57d2163
DE
1267
1268 /* The pspace could have been created but not have a cache yet. */
1269 if (cache != NULL)
1270 resize_symbol_cache (cache, new_size);
1271 }
1272}
1273
1274/* Called when symbol-cache-size is set. */
1275
1276static void
eb4c3f4a 1277set_symbol_cache_size_handler (const char *args, int from_tty,
f57d2163
DE
1278 struct cmd_list_element *c)
1279{
1280 if (new_symbol_cache_size > MAX_SYMBOL_CACHE_SIZE)
1281 {
1282 /* Restore the previous value.
1283 This is the value the "show" command prints. */
1284 new_symbol_cache_size = symbol_cache_size;
1285
1286 error (_("Symbol cache size is too large, max is %u."),
1287 MAX_SYMBOL_CACHE_SIZE);
1288 }
1289 symbol_cache_size = new_symbol_cache_size;
1290
1291 set_symbol_cache_size (symbol_cache_size);
1292}
1293
1294/* Lookup symbol NAME,DOMAIN in BLOCK in the symbol cache of PSPACE.
1295 OBJFILE_CONTEXT is the current objfile, which may be NULL.
1296 The result is the symbol if found, SYMBOL_LOOKUP_FAILED if a previous lookup
1297 failed (and thus this one will too), or NULL if the symbol is not present
1298 in the cache.
2c26b84f
DE
1299 If the symbol is not present in the cache, then *BSC_PTR and *SLOT_PTR are
1300 set to the cache and slot of the symbol to save the result of a full lookup
1301 attempt. */
f57d2163 1302
d12307c1 1303static struct block_symbol
f57d2163
DE
1304symbol_cache_lookup (struct symbol_cache *cache,
1305 struct objfile *objfile_context, int block,
1306 const char *name, domain_enum domain,
1307 struct block_symbol_cache **bsc_ptr,
1308 struct symbol_cache_slot **slot_ptr)
1309{
1310 struct block_symbol_cache *bsc;
1311 unsigned int hash;
1312 struct symbol_cache_slot *slot;
1313
1314 if (block == GLOBAL_BLOCK)
1315 bsc = cache->global_symbols;
1316 else
1317 bsc = cache->static_symbols;
1318 if (bsc == NULL)
1319 {
1320 *bsc_ptr = NULL;
1321 *slot_ptr = NULL;
d12307c1 1322 return (struct block_symbol) {NULL, NULL};
f57d2163
DE
1323 }
1324
1325 hash = hash_symbol_entry (objfile_context, name, domain);
1326 slot = bsc->symbols + hash % bsc->size;
f57d2163
DE
1327
1328 if (eq_symbol_entry (slot, objfile_context, name, domain))
1329 {
1330 if (symbol_lookup_debug)
1331 fprintf_unfiltered (gdb_stdlog,
1332 "%s block symbol cache hit%s for %s, %s\n",
1333 block == GLOBAL_BLOCK ? "Global" : "Static",
1334 slot->state == SYMBOL_SLOT_NOT_FOUND
1335 ? " (not found)" : "",
1336 name, domain_name (domain));
1337 ++bsc->hits;
1338 if (slot->state == SYMBOL_SLOT_NOT_FOUND)
1339 return SYMBOL_LOOKUP_FAILED;
1340 return slot->value.found;
1341 }
1342
2c26b84f
DE
1343 /* Symbol is not present in the cache. */
1344
1345 *bsc_ptr = bsc;
1346 *slot_ptr = slot;
1347
f57d2163
DE
1348 if (symbol_lookup_debug)
1349 {
1350 fprintf_unfiltered (gdb_stdlog,
1351 "%s block symbol cache miss for %s, %s\n",
1352 block == GLOBAL_BLOCK ? "Global" : "Static",
1353 name, domain_name (domain));
1354 }
1355 ++bsc->misses;
d12307c1 1356 return (struct block_symbol) {NULL, NULL};
f57d2163
DE
1357}
1358
1359/* Clear out SLOT. */
1360
1361static void
1362symbol_cache_clear_slot (struct symbol_cache_slot *slot)
1363{
1364 if (slot->state == SYMBOL_SLOT_NOT_FOUND)
1365 xfree (slot->value.not_found.name);
1366 slot->state = SYMBOL_SLOT_UNUSED;
1367}
1368
1369/* Mark SYMBOL as found in SLOT.
1370 OBJFILE_CONTEXT is the current objfile when the lookup was done, or NULL
1371 if it's not needed to distinguish lookups (STATIC_BLOCK). It is *not*
1372 necessarily the objfile the symbol was found in. */
1373
1374static void
1375symbol_cache_mark_found (struct block_symbol_cache *bsc,
1376 struct symbol_cache_slot *slot,
1377 struct objfile *objfile_context,
d12307c1
PMR
1378 struct symbol *symbol,
1379 const struct block *block)
f57d2163
DE
1380{
1381 if (bsc == NULL)
1382 return;
1383 if (slot->state != SYMBOL_SLOT_UNUSED)
1384 {
1385 ++bsc->collisions;
1386 symbol_cache_clear_slot (slot);
1387 }
1388 slot->state = SYMBOL_SLOT_FOUND;
1389 slot->objfile_context = objfile_context;
d12307c1
PMR
1390 slot->value.found.symbol = symbol;
1391 slot->value.found.block = block;
f57d2163
DE
1392}
1393
1394/* Mark symbol NAME, DOMAIN as not found in SLOT.
1395 OBJFILE_CONTEXT is the current objfile when the lookup was done, or NULL
1396 if it's not needed to distinguish lookups (STATIC_BLOCK). */
1397
1398static void
1399symbol_cache_mark_not_found (struct block_symbol_cache *bsc,
1400 struct symbol_cache_slot *slot,
1401 struct objfile *objfile_context,
1402 const char *name, domain_enum domain)
1403{
1404 if (bsc == NULL)
1405 return;
1406 if (slot->state != SYMBOL_SLOT_UNUSED)
1407 {
1408 ++bsc->collisions;
1409 symbol_cache_clear_slot (slot);
1410 }
1411 slot->state = SYMBOL_SLOT_NOT_FOUND;
1412 slot->objfile_context = objfile_context;
1413 slot->value.not_found.name = xstrdup (name);
1414 slot->value.not_found.domain = domain;
1415}
1416
1417/* Flush the symbol cache of PSPACE. */
1418
1419static void
1420symbol_cache_flush (struct program_space *pspace)
1421{
19ba03f4
SM
1422 struct symbol_cache *cache
1423 = (struct symbol_cache *) program_space_data (pspace, symbol_cache_key);
f57d2163 1424 int pass;
f57d2163
DE
1425
1426 if (cache == NULL)
1427 return;
1428 if (cache->global_symbols == NULL)
1429 {
1430 gdb_assert (symbol_cache_size == 0);
1431 gdb_assert (cache->static_symbols == NULL);
1432 return;
1433 }
1434
1435 /* If the cache is untouched since the last flush, early exit.
1436 This is important for performance during the startup of a program linked
1437 with 100s (or 1000s) of shared libraries. */
1438 if (cache->global_symbols->misses == 0
1439 && cache->static_symbols->misses == 0)
1440 return;
1441
1442 gdb_assert (cache->global_symbols->size == symbol_cache_size);
1443 gdb_assert (cache->static_symbols->size == symbol_cache_size);
1444
1445 for (pass = 0; pass < 2; ++pass)
1446 {
1447 struct block_symbol_cache *bsc
1448 = pass == 0 ? cache->global_symbols : cache->static_symbols;
1449 unsigned int i;
1450
1451 for (i = 0; i < bsc->size; ++i)
1452 symbol_cache_clear_slot (&bsc->symbols[i]);
1453 }
1454
1455 cache->global_symbols->hits = 0;
1456 cache->global_symbols->misses = 0;
1457 cache->global_symbols->collisions = 0;
1458 cache->static_symbols->hits = 0;
1459 cache->static_symbols->misses = 0;
1460 cache->static_symbols->collisions = 0;
1461}
1462
1463/* Dump CACHE. */
1464
1465static void
1466symbol_cache_dump (const struct symbol_cache *cache)
1467{
1468 int pass;
1469
1470 if (cache->global_symbols == NULL)
1471 {
1472 printf_filtered (" <disabled>\n");
1473 return;
1474 }
1475
1476 for (pass = 0; pass < 2; ++pass)
1477 {
1478 const struct block_symbol_cache *bsc
1479 = pass == 0 ? cache->global_symbols : cache->static_symbols;
1480 unsigned int i;
1481
1482 if (pass == 0)
1483 printf_filtered ("Global symbols:\n");
1484 else
1485 printf_filtered ("Static symbols:\n");
1486
1487 for (i = 0; i < bsc->size; ++i)
1488 {
1489 const struct symbol_cache_slot *slot = &bsc->symbols[i];
1490
1491 QUIT;
1492
1493 switch (slot->state)
1494 {
1495 case SYMBOL_SLOT_UNUSED:
1496 break;
1497 case SYMBOL_SLOT_NOT_FOUND:
2c26b84f 1498 printf_filtered (" [%4u] = %s, %s %s (not found)\n", i,
f57d2163 1499 host_address_to_string (slot->objfile_context),
2c26b84f
DE
1500 slot->value.not_found.name,
1501 domain_name (slot->value.not_found.domain));
f57d2163
DE
1502 break;
1503 case SYMBOL_SLOT_FOUND:
d12307c1
PMR
1504 {
1505 struct symbol *found = slot->value.found.symbol;
1506 const struct objfile *context = slot->objfile_context;
1507
1508 printf_filtered (" [%4u] = %s, %s %s\n", i,
1509 host_address_to_string (context),
1510 SYMBOL_PRINT_NAME (found),
1511 domain_name (SYMBOL_DOMAIN (found)));
1512 break;
1513 }
f57d2163
DE
1514 }
1515 }
1516 }
1517}
1518
1519/* The "mt print symbol-cache" command. */
1520
1521static void
510e5e56 1522maintenance_print_symbol_cache (const char *args, int from_tty)
f57d2163
DE
1523{
1524 struct program_space *pspace;
1525
1526 ALL_PSPACES (pspace)
1527 {
1528 struct symbol_cache *cache;
1529
1530 printf_filtered (_("Symbol cache for pspace %d\n%s:\n"),
1531 pspace->num,
1532 pspace->symfile_object_file != NULL
1533 ? objfile_name (pspace->symfile_object_file)
1534 : "(no object file)");
1535
1536 /* If the cache hasn't been created yet, avoid creating one. */
19ba03f4
SM
1537 cache
1538 = (struct symbol_cache *) program_space_data (pspace, symbol_cache_key);
f57d2163
DE
1539 if (cache == NULL)
1540 printf_filtered (" <empty>\n");
1541 else
1542 symbol_cache_dump (cache);
1543 }
1544}
1545
1546/* The "mt flush-symbol-cache" command. */
1547
1548static void
510e5e56 1549maintenance_flush_symbol_cache (const char *args, int from_tty)
f57d2163
DE
1550{
1551 struct program_space *pspace;
1552
1553 ALL_PSPACES (pspace)
1554 {
1555 symbol_cache_flush (pspace);
1556 }
1557}
1558
1559/* Print usage statistics of CACHE. */
1560
1561static void
1562symbol_cache_stats (struct symbol_cache *cache)
1563{
1564 int pass;
1565
1566 if (cache->global_symbols == NULL)
1567 {
1568 printf_filtered (" <disabled>\n");
1569 return;
1570 }
1571
1572 for (pass = 0; pass < 2; ++pass)
1573 {
1574 const struct block_symbol_cache *bsc
1575 = pass == 0 ? cache->global_symbols : cache->static_symbols;
1576
1577 QUIT;
1578
1579 if (pass == 0)
1580 printf_filtered ("Global block cache stats:\n");
1581 else
1582 printf_filtered ("Static block cache stats:\n");
1583
1584 printf_filtered (" size: %u\n", bsc->size);
1585 printf_filtered (" hits: %u\n", bsc->hits);
1586 printf_filtered (" misses: %u\n", bsc->misses);
1587 printf_filtered (" collisions: %u\n", bsc->collisions);
1588 }
1589}
1590
1591/* The "mt print symbol-cache-statistics" command. */
1592
1593static void
510e5e56 1594maintenance_print_symbol_cache_statistics (const char *args, int from_tty)
f57d2163
DE
1595{
1596 struct program_space *pspace;
1597
1598 ALL_PSPACES (pspace)
1599 {
1600 struct symbol_cache *cache;
1601
1602 printf_filtered (_("Symbol cache statistics for pspace %d\n%s:\n"),
1603 pspace->num,
1604 pspace->symfile_object_file != NULL
1605 ? objfile_name (pspace->symfile_object_file)
1606 : "(no object file)");
1607
1608 /* If the cache hasn't been created yet, avoid creating one. */
19ba03f4
SM
1609 cache
1610 = (struct symbol_cache *) program_space_data (pspace, symbol_cache_key);
f57d2163
DE
1611 if (cache == NULL)
1612 printf_filtered (" empty, no stats available\n");
1613 else
1614 symbol_cache_stats (cache);
1615 }
1616}
1617
1618/* This module's 'new_objfile' observer. */
1619
1620static void
1621symtab_new_objfile_observer (struct objfile *objfile)
1622{
1623 /* Ideally we'd use OBJFILE->pspace, but OBJFILE may be NULL. */
1624 symbol_cache_flush (current_program_space);
1625}
1626
1627/* This module's 'free_objfile' observer. */
1628
1629static void
1630symtab_free_objfile_observer (struct objfile *objfile)
1631{
1632 symbol_cache_flush (objfile->pspace);
1633}
1634\f
c906108c
SS
1635/* Debug symbols usually don't have section information. We need to dig that
1636 out of the minimal symbols and stash that in the debug symbol. */
1637
ccefe4c4 1638void
907fc202
UW
1639fixup_section (struct general_symbol_info *ginfo,
1640 CORE_ADDR addr, struct objfile *objfile)
c906108c
SS
1641{
1642 struct minimal_symbol *msym;
c906108c 1643
bccdca4a
UW
1644 /* First, check whether a minimal symbol with the same name exists
1645 and points to the same address. The address check is required
1646 e.g. on PowerPC64, where the minimal symbol for a function will
1647 point to the function descriptor, while the debug symbol will
1648 point to the actual function code. */
907fc202
UW
1649 msym = lookup_minimal_symbol_by_pc_name (addr, ginfo->name, objfile);
1650 if (msym)
efd66ac6 1651 ginfo->section = MSYMBOL_SECTION (msym);
907fc202 1652 else
19e2d14b
KB
1653 {
1654 /* Static, function-local variables do appear in the linker
1655 (minimal) symbols, but are frequently given names that won't
1656 be found via lookup_minimal_symbol(). E.g., it has been
1657 observed in frv-uclinux (ELF) executables that a static,
1658 function-local variable named "foo" might appear in the
1659 linker symbols as "foo.6" or "foo.3". Thus, there is no
1660 point in attempting to extend the lookup-by-name mechanism to
1661 handle this case due to the fact that there can be multiple
1662 names.
9af17804 1663
19e2d14b
KB
1664 So, instead, search the section table when lookup by name has
1665 failed. The ``addr'' and ``endaddr'' fields may have already
1666 been relocated. If so, the relocation offset (i.e. the
1667 ANOFFSET value) needs to be subtracted from these values when
1668 performing the comparison. We unconditionally subtract it,
1669 because, when no relocation has been performed, the ANOFFSET
1670 value will simply be zero.
9af17804 1671
19e2d14b
KB
1672 The address of the symbol whose section we're fixing up HAS
1673 NOT BEEN adjusted (relocated) yet. It can't have been since
1674 the section isn't yet known and knowing the section is
1675 necessary in order to add the correct relocation value. In
1676 other words, we wouldn't even be in this function (attempting
1677 to compute the section) if it were already known.
1678
1679 Note that it is possible to search the minimal symbols
1680 (subtracting the relocation value if necessary) to find the
1681 matching minimal symbol, but this is overkill and much less
1682 efficient. It is not necessary to find the matching minimal
9af17804
DE
1683 symbol, only its section.
1684
19e2d14b
KB
1685 Note that this technique (of doing a section table search)
1686 can fail when unrelocated section addresses overlap. For
1687 this reason, we still attempt a lookup by name prior to doing
1688 a search of the section table. */
9af17804 1689
19e2d14b 1690 struct obj_section *s;
e27d198c 1691 int fallback = -1;
433759f7 1692
19e2d14b
KB
1693 ALL_OBJFILE_OSECTIONS (objfile, s)
1694 {
65cf3563 1695 int idx = s - objfile->sections;
19e2d14b
KB
1696 CORE_ADDR offset = ANOFFSET (objfile->section_offsets, idx);
1697
e27d198c
TT
1698 if (fallback == -1)
1699 fallback = idx;
1700
f1f6aadf
PA
1701 if (obj_section_addr (s) - offset <= addr
1702 && addr < obj_section_endaddr (s) - offset)
19e2d14b 1703 {
19e2d14b
KB
1704 ginfo->section = idx;
1705 return;
1706 }
1707 }
e27d198c
TT
1708
1709 /* If we didn't find the section, assume it is in the first
1710 section. If there is no allocated section, then it hardly
1711 matters what we pick, so just pick zero. */
1712 if (fallback == -1)
1713 ginfo->section = 0;
1714 else
1715 ginfo->section = fallback;
19e2d14b 1716 }
c906108c
SS
1717}
1718
1719struct symbol *
fba45db2 1720fixup_symbol_section (struct symbol *sym, struct objfile *objfile)
c906108c 1721{
907fc202
UW
1722 CORE_ADDR addr;
1723
c906108c
SS
1724 if (!sym)
1725 return NULL;
1726
1994afbf
DE
1727 if (!SYMBOL_OBJFILE_OWNED (sym))
1728 return sym;
1729
907fc202
UW
1730 /* We either have an OBJFILE, or we can get at it from the sym's
1731 symtab. Anything else is a bug. */
08be3fe3 1732 gdb_assert (objfile || symbol_symtab (sym));
907fc202
UW
1733
1734 if (objfile == NULL)
08be3fe3 1735 objfile = symbol_objfile (sym);
907fc202 1736
e27d198c
TT
1737 if (SYMBOL_OBJ_SECTION (objfile, sym))
1738 return sym;
1739
907fc202
UW
1740 /* We should have an objfile by now. */
1741 gdb_assert (objfile);
1742
1743 switch (SYMBOL_CLASS (sym))
1744 {
1745 case LOC_STATIC:
1746 case LOC_LABEL:
907fc202
UW
1747 addr = SYMBOL_VALUE_ADDRESS (sym);
1748 break;
1749 case LOC_BLOCK:
2b1ffcfd 1750 addr = BLOCK_ENTRY_PC (SYMBOL_BLOCK_VALUE (sym));
907fc202
UW
1751 break;
1752
1753 default:
1754 /* Nothing else will be listed in the minsyms -- no use looking
1755 it up. */
1756 return sym;
1757 }
1758
1759 fixup_section (&sym->ginfo, addr, objfile);
c906108c
SS
1760
1761 return sym;
1762}
1763
b5ec771e
PA
1764/* See symtab.h. */
1765
1766demangle_for_lookup_info::demangle_for_lookup_info
1767 (const lookup_name_info &lookup_name, language lang)
1768{
1769 demangle_result_storage storage;
1770
c62446b1
PA
1771 if (lookup_name.ignore_parameters () && lang == language_cplus)
1772 {
1773 gdb::unique_xmalloc_ptr<char> without_params
1774 = cp_remove_params_if_any (lookup_name.name ().c_str (),
1775 lookup_name.completion_mode ());
1776
1777 if (without_params != NULL)
1778 {
de63c46b
PA
1779 if (lookup_name.match_type () != symbol_name_match_type::SEARCH_NAME)
1780 m_demangled_name = demangle_for_lookup (without_params.get (),
1781 lang, storage);
c62446b1
PA
1782 return;
1783 }
1784 }
1785
de63c46b
PA
1786 if (lookup_name.match_type () == symbol_name_match_type::SEARCH_NAME)
1787 m_demangled_name = lookup_name.name ();
1788 else
1789 m_demangled_name = demangle_for_lookup (lookup_name.name ().c_str (),
1790 lang, storage);
b5ec771e
PA
1791}
1792
1793/* See symtab.h. */
1794
1795const lookup_name_info &
1796lookup_name_info::match_any ()
1797{
1798 /* Lookup any symbol that "" would complete. I.e., this matches all
1799 symbol names. */
1800 static const lookup_name_info lookup_name ({}, symbol_name_match_type::FULL,
1801 true);
1802
1803 return lookup_name;
1804}
1805
f8eba3c6 1806/* Compute the demangled form of NAME as used by the various symbol
2f408ecb
PA
1807 lookup functions. The result can either be the input NAME
1808 directly, or a pointer to a buffer owned by the STORAGE object.
f8eba3c6 1809
2f408ecb 1810 For Ada, this function just returns NAME, unmodified.
f8eba3c6
TT
1811 Normally, Ada symbol lookups are performed using the encoded name
1812 rather than the demangled name, and so it might seem to make sense
1813 for this function to return an encoded version of NAME.
1814 Unfortunately, we cannot do this, because this function is used in
1815 circumstances where it is not appropriate to try to encode NAME.
1816 For instance, when displaying the frame info, we demangle the name
1817 of each parameter, and then perform a symbol lookup inside our
1818 function using that demangled name. In Ada, certain functions
1819 have internally-generated parameters whose name contain uppercase
1820 characters. Encoding those name would result in those uppercase
1821 characters to become lowercase, and thus cause the symbol lookup
1822 to fail. */
c906108c 1823
2f408ecb 1824const char *
f8eba3c6 1825demangle_for_lookup (const char *name, enum language lang,
2f408ecb 1826 demangle_result_storage &storage)
c906108c 1827{
9c37b5ae 1828 /* If we are using C++, D, or Go, demangle the name before doing a
c378eb4e 1829 lookup, so we can always binary search. */
53c5240f 1830 if (lang == language_cplus)
729051e6 1831 {
2f408ecb
PA
1832 char *demangled_name = gdb_demangle (name, DMGL_ANSI | DMGL_PARAMS);
1833 if (demangled_name != NULL)
1834 return storage.set_malloc_ptr (demangled_name);
1835
1836 /* If we were given a non-mangled name, canonicalize it
1837 according to the language (so far only for C++). */
1838 std::string canon = cp_canonicalize_string (name);
1839 if (!canon.empty ())
1840 return storage.swap_string (canon);
729051e6 1841 }
6aecb9c2
JB
1842 else if (lang == language_d)
1843 {
2f408ecb
PA
1844 char *demangled_name = d_demangle (name, 0);
1845 if (demangled_name != NULL)
1846 return storage.set_malloc_ptr (demangled_name);
6aecb9c2 1847 }
a766d390
DE
1848 else if (lang == language_go)
1849 {
2f408ecb
PA
1850 char *demangled_name = go_demangle (name, 0);
1851 if (demangled_name != NULL)
1852 return storage.set_malloc_ptr (demangled_name);
a766d390 1853 }
729051e6 1854
2f408ecb 1855 return name;
f8eba3c6
TT
1856}
1857
5ffa0793
PA
1858/* See symtab.h. */
1859
1860unsigned int
1861search_name_hash (enum language language, const char *search_name)
1862{
1863 return language_def (language)->la_search_name_hash (search_name);
1864}
1865
cf901d3b 1866/* See symtab.h.
f8eba3c6 1867
cf901d3b 1868 This function (or rather its subordinates) have a bunch of loops and
7e082072
DE
1869 it would seem to be attractive to put in some QUIT's (though I'm not really
1870 sure whether it can run long enough to be really important). But there
f8eba3c6 1871 are a few calls for which it would appear to be bad news to quit
7e082072 1872 out of here: e.g., find_proc_desc in alpha-mdebug-tdep.c. (Note
f8eba3c6
TT
1873 that there is C++ code below which can error(), but that probably
1874 doesn't affect these calls since they are looking for a known
1875 variable and thus can probably assume it will never hit the C++
1876 code). */
1877
d12307c1 1878struct block_symbol
f8eba3c6
TT
1879lookup_symbol_in_language (const char *name, const struct block *block,
1880 const domain_enum domain, enum language lang,
1993b719 1881 struct field_of_this_result *is_a_field_of_this)
f8eba3c6 1882{
2f408ecb
PA
1883 demangle_result_storage storage;
1884 const char *modified_name = demangle_for_lookup (name, lang, storage);
f8eba3c6 1885
de63c46b
PA
1886 return lookup_symbol_aux (modified_name,
1887 symbol_name_match_type::FULL,
1888 block, domain, lang,
2f408ecb 1889 is_a_field_of_this);
fba7f19c
EZ
1890}
1891
cf901d3b 1892/* See symtab.h. */
53c5240f 1893
d12307c1 1894struct block_symbol
53c5240f 1895lookup_symbol (const char *name, const struct block *block,
1993b719
TT
1896 domain_enum domain,
1897 struct field_of_this_result *is_a_field_of_this)
53c5240f
PA
1898{
1899 return lookup_symbol_in_language (name, block, domain,
1900 current_language->la_language,
2570f2b7 1901 is_a_field_of_this);
53c5240f
PA
1902}
1903
cf901d3b 1904/* See symtab.h. */
66a17cb6 1905
de63c46b
PA
1906struct block_symbol
1907lookup_symbol_search_name (const char *search_name, const struct block *block,
1908 domain_enum domain)
1909{
1910 return lookup_symbol_aux (search_name, symbol_name_match_type::SEARCH_NAME,
1911 block, domain, language_asm, NULL);
1912}
1913
1914/* See symtab.h. */
1915
d12307c1 1916struct block_symbol
66a17cb6
TT
1917lookup_language_this (const struct language_defn *lang,
1918 const struct block *block)
1919{
1920 if (lang->la_name_of_this == NULL || block == NULL)
d12307c1 1921 return (struct block_symbol) {NULL, NULL};
66a17cb6 1922
cc485e62
DE
1923 if (symbol_lookup_debug > 1)
1924 {
1925 struct objfile *objfile = lookup_objfile_from_block (block);
1926
1927 fprintf_unfiltered (gdb_stdlog,
1928 "lookup_language_this (%s, %s (objfile %s))",
1929 lang->la_name, host_address_to_string (block),
1930 objfile_debug_name (objfile));
1931 }
1932
03de6823 1933 while (block)
66a17cb6
TT
1934 {
1935 struct symbol *sym;
1936
de63c46b
PA
1937 sym = block_lookup_symbol (block, lang->la_name_of_this,
1938 symbol_name_match_type::SEARCH_NAME,
1939 VAR_DOMAIN);
66a17cb6 1940 if (sym != NULL)
f149aabd 1941 {
cc485e62
DE
1942 if (symbol_lookup_debug > 1)
1943 {
1944 fprintf_unfiltered (gdb_stdlog, " = %s (%s, block %s)\n",
1945 SYMBOL_PRINT_NAME (sym),
1946 host_address_to_string (sym),
1947 host_address_to_string (block));
1948 }
d12307c1 1949 return (struct block_symbol) {sym, block};
f149aabd 1950 }
66a17cb6 1951 if (BLOCK_FUNCTION (block))
03de6823 1952 break;
66a17cb6
TT
1953 block = BLOCK_SUPERBLOCK (block);
1954 }
03de6823 1955
cc485e62
DE
1956 if (symbol_lookup_debug > 1)
1957 fprintf_unfiltered (gdb_stdlog, " = NULL\n");
d12307c1 1958 return (struct block_symbol) {NULL, NULL};
66a17cb6
TT
1959}
1960
2dc3df72
TT
1961/* Given TYPE, a structure/union,
1962 return 1 if the component named NAME from the ultimate target
1963 structure/union is defined, otherwise, return 0. */
1964
1965static int
1993b719
TT
1966check_field (struct type *type, const char *name,
1967 struct field_of_this_result *is_a_field_of_this)
2dc3df72
TT
1968{
1969 int i;
1970
1971 /* The type may be a stub. */
f168693b 1972 type = check_typedef (type);
2dc3df72
TT
1973
1974 for (i = TYPE_NFIELDS (type) - 1; i >= TYPE_N_BASECLASSES (type); i--)
1975 {
1976 const char *t_field_name = TYPE_FIELD_NAME (type, i);
1977
1978 if (t_field_name && (strcmp_iw (t_field_name, name) == 0))
1993b719
TT
1979 {
1980 is_a_field_of_this->type = type;
1981 is_a_field_of_this->field = &TYPE_FIELD (type, i);
1982 return 1;
1983 }
2dc3df72
TT
1984 }
1985
1986 /* C++: If it was not found as a data field, then try to return it
1987 as a pointer to a method. */
1988
1989 for (i = TYPE_NFN_FIELDS (type) - 1; i >= 0; --i)
1990 {
1991 if (strcmp_iw (TYPE_FN_FIELDLIST_NAME (type, i), name) == 0)
1993b719
TT
1992 {
1993 is_a_field_of_this->type = type;
1994 is_a_field_of_this->fn_field = &TYPE_FN_FIELDLIST (type, i);
1995 return 1;
1996 }
2dc3df72
TT
1997 }
1998
1999 for (i = TYPE_N_BASECLASSES (type) - 1; i >= 0; i--)
1993b719 2000 if (check_field (TYPE_BASECLASS (type, i), name, is_a_field_of_this))
2dc3df72
TT
2001 return 1;
2002
2003 return 0;
2004}
2005
53c5240f 2006/* Behave like lookup_symbol except that NAME is the natural name
7e082072 2007 (e.g., demangled name) of the symbol that we're looking for. */
5ad1c190 2008
d12307c1 2009static struct block_symbol
de63c46b
PA
2010lookup_symbol_aux (const char *name, symbol_name_match_type match_type,
2011 const struct block *block,
94af9270 2012 const domain_enum domain, enum language language,
1993b719 2013 struct field_of_this_result *is_a_field_of_this)
fba7f19c 2014{
d12307c1 2015 struct block_symbol result;
53c5240f 2016 const struct language_defn *langdef;
406bc4de 2017
cc485e62
DE
2018 if (symbol_lookup_debug)
2019 {
2020 struct objfile *objfile = lookup_objfile_from_block (block);
2021
2022 fprintf_unfiltered (gdb_stdlog,
2023 "lookup_symbol_aux (%s, %s (objfile %s), %s, %s)\n",
2024 name, host_address_to_string (block),
2025 objfile != NULL
2026 ? objfile_debug_name (objfile) : "NULL",
2027 domain_name (domain), language_str (language));
2028 }
2029
9a146a11
EZ
2030 /* Make sure we do something sensible with is_a_field_of_this, since
2031 the callers that set this parameter to some non-null value will
1993b719
TT
2032 certainly use it later. If we don't set it, the contents of
2033 is_a_field_of_this are undefined. */
9a146a11 2034 if (is_a_field_of_this != NULL)
1993b719 2035 memset (is_a_field_of_this, 0, sizeof (*is_a_field_of_this));
9a146a11 2036
e4051eeb
DC
2037 /* Search specified block and its superiors. Don't search
2038 STATIC_BLOCK or GLOBAL_BLOCK. */
c906108c 2039
de63c46b 2040 result = lookup_local_symbol (name, match_type, block, domain, language);
d12307c1 2041 if (result.symbol != NULL)
cc485e62
DE
2042 {
2043 if (symbol_lookup_debug)
2044 {
2045 fprintf_unfiltered (gdb_stdlog, "lookup_symbol_aux (...) = %s\n",
d12307c1 2046 host_address_to_string (result.symbol));
cc485e62 2047 }
d12307c1 2048 return result;
cc485e62 2049 }
c906108c 2050
53c5240f 2051 /* If requested to do so by the caller and if appropriate for LANGUAGE,
13387711 2052 check to see if NAME is a field of `this'. */
53c5240f
PA
2053
2054 langdef = language_def (language);
5f9a71c3 2055
6592e36f
TT
2056 /* Don't do this check if we are searching for a struct. It will
2057 not be found by check_field, but will be found by other
2058 means. */
2059 if (is_a_field_of_this != NULL && domain != STRUCT_DOMAIN)
c906108c 2060 {
d12307c1 2061 result = lookup_language_this (langdef, block);
2b2d9e11 2062
d12307c1 2063 if (result.symbol)
c906108c 2064 {
d12307c1 2065 struct type *t = result.symbol->type;
9af17804 2066
2b2d9e11
VP
2067 /* I'm not really sure that type of this can ever
2068 be typedefed; just be safe. */
f168693b 2069 t = check_typedef (t);
aa006118 2070 if (TYPE_CODE (t) == TYPE_CODE_PTR || TYPE_IS_REFERENCE (t))
2b2d9e11 2071 t = TYPE_TARGET_TYPE (t);
9af17804 2072
2b2d9e11
VP
2073 if (TYPE_CODE (t) != TYPE_CODE_STRUCT
2074 && TYPE_CODE (t) != TYPE_CODE_UNION)
9af17804 2075 error (_("Internal error: `%s' is not an aggregate"),
2b2d9e11 2076 langdef->la_name_of_this);
9af17804 2077
1993b719 2078 if (check_field (t, name, is_a_field_of_this))
cc485e62
DE
2079 {
2080 if (symbol_lookup_debug)
2081 {
2082 fprintf_unfiltered (gdb_stdlog,
2083 "lookup_symbol_aux (...) = NULL\n");
2084 }
d12307c1 2085 return (struct block_symbol) {NULL, NULL};
cc485e62 2086 }
c906108c
SS
2087 }
2088 }
2089
53c5240f 2090 /* Now do whatever is appropriate for LANGUAGE to look
774b6a14 2091 up static and global variables. */
c906108c 2092
d12307c1
PMR
2093 result = langdef->la_lookup_symbol_nonlocal (langdef, name, block, domain);
2094 if (result.symbol != NULL)
cc485e62
DE
2095 {
2096 if (symbol_lookup_debug)
2097 {
2098 fprintf_unfiltered (gdb_stdlog, "lookup_symbol_aux (...) = %s\n",
d12307c1 2099 host_address_to_string (result.symbol));
cc485e62 2100 }
d12307c1 2101 return result;
cc485e62 2102 }
c906108c 2103
774b6a14
TT
2104 /* Now search all static file-level symbols. Not strictly correct,
2105 but more useful than an error. */
41f62f39 2106
d12307c1 2107 result = lookup_static_symbol (name, domain);
cc485e62
DE
2108 if (symbol_lookup_debug)
2109 {
2110 fprintf_unfiltered (gdb_stdlog, "lookup_symbol_aux (...) = %s\n",
d12307c1
PMR
2111 result.symbol != NULL
2112 ? host_address_to_string (result.symbol)
2113 : "NULL");
cc485e62 2114 }
d12307c1 2115 return result;
41f62f39
JK
2116}
2117
e4051eeb 2118/* Check to see if the symbol is defined in BLOCK or its superiors.
89a9d1b1 2119 Don't search STATIC_BLOCK or GLOBAL_BLOCK. */
8155455b 2120
d12307c1 2121static struct block_symbol
de63c46b
PA
2122lookup_local_symbol (const char *name,
2123 symbol_name_match_type match_type,
2124 const struct block *block,
74016e12
DE
2125 const domain_enum domain,
2126 enum language language)
8155455b
DC
2127{
2128 struct symbol *sym;
89a9d1b1 2129 const struct block *static_block = block_static_block (block);
13387711
SW
2130 const char *scope = block_scope (block);
2131
e4051eeb
DC
2132 /* Check if either no block is specified or it's a global block. */
2133
89a9d1b1 2134 if (static_block == NULL)
d12307c1 2135 return (struct block_symbol) {NULL, NULL};
e4051eeb 2136
89a9d1b1 2137 while (block != static_block)
f61e8913 2138 {
de63c46b 2139 sym = lookup_symbol_in_block (name, match_type, block, domain);
f61e8913 2140 if (sym != NULL)
d12307c1 2141 return (struct block_symbol) {sym, block};
edb3359d 2142
f55ee35c 2143 if (language == language_cplus || language == language_fortran)
13387711 2144 {
b926417a 2145 struct block_symbol blocksym
d12307c1
PMR
2146 = cp_lookup_symbol_imports_or_template (scope, name, block,
2147 domain);
2148
b926417a
TT
2149 if (blocksym.symbol != NULL)
2150 return blocksym;
13387711
SW
2151 }
2152
edb3359d
DJ
2153 if (BLOCK_FUNCTION (block) != NULL && block_inlined_p (block))
2154 break;
f61e8913
DC
2155 block = BLOCK_SUPERBLOCK (block);
2156 }
2157
3aee438b 2158 /* We've reached the end of the function without finding a result. */
e4051eeb 2159
d12307c1 2160 return (struct block_symbol) {NULL, NULL};
f61e8913
DC
2161}
2162
cf901d3b 2163/* See symtab.h. */
3a40aaa0 2164
c0201579 2165struct objfile *
3a40aaa0
UW
2166lookup_objfile_from_block (const struct block *block)
2167{
2168 struct objfile *obj;
43f3e411 2169 struct compunit_symtab *cust;
3a40aaa0
UW
2170
2171 if (block == NULL)
2172 return NULL;
2173
2174 block = block_global_block (block);
43f3e411
DE
2175 /* Look through all blockvectors. */
2176 ALL_COMPUNITS (obj, cust)
2177 if (block == BLOCKVECTOR_BLOCK (COMPUNIT_BLOCKVECTOR (cust),
2178 GLOBAL_BLOCK))
61f0d762
JK
2179 {
2180 if (obj->separate_debug_objfile_backlink)
2181 obj = obj->separate_debug_objfile_backlink;
2182
2183 return obj;
2184 }
3a40aaa0
UW
2185
2186 return NULL;
2187}
2188
cf901d3b 2189/* See symtab.h. */
f61e8913 2190
5f9a71c3 2191struct symbol *
de63c46b
PA
2192lookup_symbol_in_block (const char *name, symbol_name_match_type match_type,
2193 const struct block *block,
d1a2d36d 2194 const domain_enum domain)
f61e8913
DC
2195{
2196 struct symbol *sym;
f61e8913 2197
cc485e62
DE
2198 if (symbol_lookup_debug > 1)
2199 {
2200 struct objfile *objfile = lookup_objfile_from_block (block);
2201
2202 fprintf_unfiltered (gdb_stdlog,
2203 "lookup_symbol_in_block (%s, %s (objfile %s), %s)",
2204 name, host_address_to_string (block),
2205 objfile_debug_name (objfile),
2206 domain_name (domain));
2207 }
2208
de63c46b 2209 sym = block_lookup_symbol (block, name, match_type, domain);
f61e8913 2210 if (sym)
8155455b 2211 {
cc485e62
DE
2212 if (symbol_lookup_debug > 1)
2213 {
2214 fprintf_unfiltered (gdb_stdlog, " = %s\n",
2215 host_address_to_string (sym));
2216 }
21b556f4 2217 return fixup_symbol_section (sym, NULL);
8155455b
DC
2218 }
2219
cc485e62
DE
2220 if (symbol_lookup_debug > 1)
2221 fprintf_unfiltered (gdb_stdlog, " = NULL\n");
8155455b
DC
2222 return NULL;
2223}
2224
cf901d3b 2225/* See symtab.h. */
3a40aaa0 2226
d12307c1 2227struct block_symbol
efad9b6a 2228lookup_global_symbol_from_objfile (struct objfile *main_objfile,
3a40aaa0 2229 const char *name,
21b556f4 2230 const domain_enum domain)
3a40aaa0 2231{
efad9b6a 2232 struct objfile *objfile;
3a40aaa0 2233
15d123c9
TG
2234 for (objfile = main_objfile;
2235 objfile;
2236 objfile = objfile_separate_debug_iterate (main_objfile, objfile))
2237 {
d12307c1
PMR
2238 struct block_symbol result
2239 = lookup_symbol_in_objfile (objfile, GLOBAL_BLOCK, name, domain);
15d123c9 2240
d12307c1
PMR
2241 if (result.symbol != NULL)
2242 return result;
15d123c9 2243 }
56e3f43c 2244
d12307c1 2245 return (struct block_symbol) {NULL, NULL};
3a40aaa0
UW
2246}
2247
19630284
JB
2248/* Check to see if the symbol is defined in one of the OBJFILE's
2249 symtabs. BLOCK_INDEX should be either GLOBAL_BLOCK or STATIC_BLOCK,
8155455b
DC
2250 depending on whether or not we want to search global symbols or
2251 static symbols. */
2252
d12307c1 2253static struct block_symbol
74016e12
DE
2254lookup_symbol_in_objfile_symtabs (struct objfile *objfile, int block_index,
2255 const char *name, const domain_enum domain)
19630284 2256{
43f3e411 2257 struct compunit_symtab *cust;
19630284 2258
ba715d7f
JK
2259 gdb_assert (block_index == GLOBAL_BLOCK || block_index == STATIC_BLOCK);
2260
cc485e62
DE
2261 if (symbol_lookup_debug > 1)
2262 {
2263 fprintf_unfiltered (gdb_stdlog,
2264 "lookup_symbol_in_objfile_symtabs (%s, %s, %s, %s)",
2265 objfile_debug_name (objfile),
2266 block_index == GLOBAL_BLOCK
2267 ? "GLOBAL_BLOCK" : "STATIC_BLOCK",
2268 name, domain_name (domain));
2269 }
2270
43f3e411 2271 ALL_OBJFILE_COMPUNITS (objfile, cust)
a743abeb 2272 {
43f3e411
DE
2273 const struct blockvector *bv;
2274 const struct block *block;
d12307c1 2275 struct block_symbol result;
43f3e411
DE
2276
2277 bv = COMPUNIT_BLOCKVECTOR (cust);
a743abeb 2278 block = BLOCKVECTOR_BLOCK (bv, block_index);
d12307c1
PMR
2279 result.symbol = block_lookup_symbol_primary (block, name, domain);
2280 result.block = block;
2281 if (result.symbol != NULL)
a743abeb 2282 {
cc485e62
DE
2283 if (symbol_lookup_debug > 1)
2284 {
2285 fprintf_unfiltered (gdb_stdlog, " = %s (block %s)\n",
d12307c1 2286 host_address_to_string (result.symbol),
cc485e62
DE
2287 host_address_to_string (block));
2288 }
d12307c1
PMR
2289 result.symbol = fixup_symbol_section (result.symbol, objfile);
2290 return result;
2291
a743abeb
DE
2292 }
2293 }
19630284 2294
cc485e62
DE
2295 if (symbol_lookup_debug > 1)
2296 fprintf_unfiltered (gdb_stdlog, " = NULL\n");
d12307c1 2297 return (struct block_symbol) {NULL, NULL};
19630284
JB
2298}
2299
74016e12 2300/* Wrapper around lookup_symbol_in_objfile_symtabs for search_symbols.
422d65e7 2301 Look up LINKAGE_NAME in DOMAIN in the global and static blocks of OBJFILE
01465b56
DE
2302 and all associated separate debug objfiles.
2303
2304 Normally we only look in OBJFILE, and not any separate debug objfiles
2305 because the outer loop will cause them to be searched too. This case is
2306 different. Here we're called from search_symbols where it will only
2307 call us for the the objfile that contains a matching minsym. */
422d65e7 2308
d12307c1 2309static struct block_symbol
422d65e7
DE
2310lookup_symbol_in_objfile_from_linkage_name (struct objfile *objfile,
2311 const char *linkage_name,
2312 domain_enum domain)
2313{
2314 enum language lang = current_language->la_language;
422d65e7
DE
2315 struct objfile *main_objfile, *cur_objfile;
2316
2f408ecb
PA
2317 demangle_result_storage storage;
2318 const char *modified_name = demangle_for_lookup (linkage_name, lang, storage);
2319
422d65e7
DE
2320 if (objfile->separate_debug_objfile_backlink)
2321 main_objfile = objfile->separate_debug_objfile_backlink;
2322 else
2323 main_objfile = objfile;
2324
2325 for (cur_objfile = main_objfile;
2326 cur_objfile;
2327 cur_objfile = objfile_separate_debug_iterate (main_objfile, cur_objfile))
2328 {
d12307c1
PMR
2329 struct block_symbol result;
2330
2331 result = lookup_symbol_in_objfile_symtabs (cur_objfile, GLOBAL_BLOCK,
2332 modified_name, domain);
2333 if (result.symbol == NULL)
2334 result = lookup_symbol_in_objfile_symtabs (cur_objfile, STATIC_BLOCK,
2335 modified_name, domain);
2336 if (result.symbol != NULL)
2f408ecb 2337 return result;
422d65e7
DE
2338 }
2339
d12307c1 2340 return (struct block_symbol) {NULL, NULL};
422d65e7
DE
2341}
2342
08c23b0d
TT
2343/* A helper function that throws an exception when a symbol was found
2344 in a psymtab but not in a symtab. */
2345
2346static void ATTRIBUTE_NORETURN
f88cb4b6 2347error_in_psymtab_expansion (int block_index, const char *name,
43f3e411 2348 struct compunit_symtab *cust)
08c23b0d
TT
2349{
2350 error (_("\
2351Internal: %s symbol `%s' found in %s psymtab but not in symtab.\n\
2352%s may be an inlined function, or may be a template function\n \
2353(if a template, try specifying an instantiation: %s<type>)."),
f88cb4b6 2354 block_index == GLOBAL_BLOCK ? "global" : "static",
43f3e411
DE
2355 name,
2356 symtab_to_filename_for_display (compunit_primary_filetab (cust)),
2357 name, name);
08c23b0d
TT
2358}
2359
74016e12
DE
2360/* A helper function for various lookup routines that interfaces with
2361 the "quick" symbol table functions. */
8155455b 2362
d12307c1 2363static struct block_symbol
74016e12
DE
2364lookup_symbol_via_quick_fns (struct objfile *objfile, int block_index,
2365 const char *name, const domain_enum domain)
8155455b 2366{
43f3e411 2367 struct compunit_symtab *cust;
346d1dfe 2368 const struct blockvector *bv;
8155455b 2369 const struct block *block;
d12307c1 2370 struct block_symbol result;
8155455b 2371
ccefe4c4 2372 if (!objfile->sf)
d12307c1 2373 return (struct block_symbol) {NULL, NULL};
cc485e62
DE
2374
2375 if (symbol_lookup_debug > 1)
2376 {
2377 fprintf_unfiltered (gdb_stdlog,
2378 "lookup_symbol_via_quick_fns (%s, %s, %s, %s)\n",
2379 objfile_debug_name (objfile),
2380 block_index == GLOBAL_BLOCK
2381 ? "GLOBAL_BLOCK" : "STATIC_BLOCK",
2382 name, domain_name (domain));
2383 }
2384
43f3e411
DE
2385 cust = objfile->sf->qf->lookup_symbol (objfile, block_index, name, domain);
2386 if (cust == NULL)
cc485e62
DE
2387 {
2388 if (symbol_lookup_debug > 1)
2389 {
2390 fprintf_unfiltered (gdb_stdlog,
2391 "lookup_symbol_via_quick_fns (...) = NULL\n");
2392 }
d12307c1 2393 return (struct block_symbol) {NULL, NULL};
cc485e62 2394 }
8155455b 2395
43f3e411 2396 bv = COMPUNIT_BLOCKVECTOR (cust);
f88cb4b6 2397 block = BLOCKVECTOR_BLOCK (bv, block_index);
de63c46b
PA
2398 result.symbol = block_lookup_symbol (block, name,
2399 symbol_name_match_type::FULL, domain);
d12307c1 2400 if (result.symbol == NULL)
43f3e411 2401 error_in_psymtab_expansion (block_index, name, cust);
cc485e62
DE
2402
2403 if (symbol_lookup_debug > 1)
2404 {
2405 fprintf_unfiltered (gdb_stdlog,
2406 "lookup_symbol_via_quick_fns (...) = %s (block %s)\n",
d12307c1 2407 host_address_to_string (result.symbol),
cc485e62
DE
2408 host_address_to_string (block));
2409 }
2410
d12307c1
PMR
2411 result.symbol = fixup_symbol_section (result.symbol, objfile);
2412 result.block = block;
2413 return result;
8155455b
DC
2414}
2415
cf901d3b 2416/* See symtab.h. */
5f9a71c3 2417
d12307c1 2418struct block_symbol
f606139a
DE
2419basic_lookup_symbol_nonlocal (const struct language_defn *langdef,
2420 const char *name,
5f9a71c3 2421 const struct block *block,
21b556f4 2422 const domain_enum domain)
5f9a71c3 2423{
d12307c1 2424 struct block_symbol result;
5f9a71c3
DC
2425
2426 /* NOTE: carlton/2003-05-19: The comments below were written when
2427 this (or what turned into this) was part of lookup_symbol_aux;
2428 I'm much less worried about these questions now, since these
2429 decisions have turned out well, but I leave these comments here
2430 for posterity. */
2431
2432 /* NOTE: carlton/2002-12-05: There is a question as to whether or
2433 not it would be appropriate to search the current global block
2434 here as well. (That's what this code used to do before the
2435 is_a_field_of_this check was moved up.) On the one hand, it's
af3768e9 2436 redundant with the lookup in all objfiles search that happens
5f9a71c3
DC
2437 next. On the other hand, if decode_line_1 is passed an argument
2438 like filename:var, then the user presumably wants 'var' to be
2439 searched for in filename. On the third hand, there shouldn't be
2440 multiple global variables all of which are named 'var', and it's
2441 not like decode_line_1 has ever restricted its search to only
2442 global variables in a single filename. All in all, only
2443 searching the static block here seems best: it's correct and it's
2444 cleanest. */
2445
2446 /* NOTE: carlton/2002-12-05: There's also a possible performance
2447 issue here: if you usually search for global symbols in the
2448 current file, then it would be slightly better to search the
2449 current global block before searching all the symtabs. But there
2450 are other factors that have a much greater effect on performance
2451 than that one, so I don't think we should worry about that for
2452 now. */
2453
d9060ba6
DE
2454 /* NOTE: dje/2014-10-26: The lookup in all objfiles search could skip
2455 the current objfile. Searching the current objfile first is useful
2456 for both matching user expectations as well as performance. */
2457
d12307c1
PMR
2458 result = lookup_symbol_in_static_block (name, block, domain);
2459 if (result.symbol != NULL)
2460 return result;
5f9a71c3 2461
1994afbf
DE
2462 /* If we didn't find a definition for a builtin type in the static block,
2463 search for it now. This is actually the right thing to do and can be
2464 a massive performance win. E.g., when debugging a program with lots of
2465 shared libraries we could search all of them only to find out the
2466 builtin type isn't defined in any of them. This is common for types
2467 like "void". */
2468 if (domain == VAR_DOMAIN)
2469 {
2470 struct gdbarch *gdbarch;
2471
2472 if (block == NULL)
2473 gdbarch = target_gdbarch ();
2474 else
2475 gdbarch = block_gdbarch (block);
d12307c1
PMR
2476 result.symbol = language_lookup_primitive_type_as_symbol (langdef,
2477 gdbarch, name);
2478 result.block = NULL;
2479 if (result.symbol != NULL)
2480 return result;
1994afbf
DE
2481 }
2482
08724ab7 2483 return lookup_global_symbol (name, block, domain);
5f9a71c3
DC
2484}
2485
cf901d3b 2486/* See symtab.h. */
5f9a71c3 2487
d12307c1 2488struct block_symbol
24d864bb
DE
2489lookup_symbol_in_static_block (const char *name,
2490 const struct block *block,
2491 const domain_enum domain)
5f9a71c3
DC
2492{
2493 const struct block *static_block = block_static_block (block);
cc485e62 2494 struct symbol *sym;
5f9a71c3 2495
cc485e62 2496 if (static_block == NULL)
d12307c1 2497 return (struct block_symbol) {NULL, NULL};
cc485e62
DE
2498
2499 if (symbol_lookup_debug)
2500 {
2501 struct objfile *objfile = lookup_objfile_from_block (static_block);
2502
2503 fprintf_unfiltered (gdb_stdlog,
2504 "lookup_symbol_in_static_block (%s, %s (objfile %s),"
2505 " %s)\n",
2506 name,
2507 host_address_to_string (block),
2508 objfile_debug_name (objfile),
2509 domain_name (domain));
2510 }
2511
de63c46b
PA
2512 sym = lookup_symbol_in_block (name,
2513 symbol_name_match_type::FULL,
2514 static_block, domain);
cc485e62
DE
2515 if (symbol_lookup_debug)
2516 {
2517 fprintf_unfiltered (gdb_stdlog,
2518 "lookup_symbol_in_static_block (...) = %s\n",
2519 sym != NULL ? host_address_to_string (sym) : "NULL");
2520 }
d12307c1 2521 return (struct block_symbol) {sym, static_block};
5f9a71c3
DC
2522}
2523
af3768e9
DE
2524/* Perform the standard symbol lookup of NAME in OBJFILE:
2525 1) First search expanded symtabs, and if not found
2526 2) Search the "quick" symtabs (partial or .gdb_index).
2527 BLOCK_INDEX is one of GLOBAL_BLOCK or STATIC_BLOCK. */
2528
d12307c1 2529static struct block_symbol
af3768e9
DE
2530lookup_symbol_in_objfile (struct objfile *objfile, int block_index,
2531 const char *name, const domain_enum domain)
2532{
d12307c1 2533 struct block_symbol result;
af3768e9 2534
cc485e62
DE
2535 if (symbol_lookup_debug)
2536 {
2537 fprintf_unfiltered (gdb_stdlog,
2538 "lookup_symbol_in_objfile (%s, %s, %s, %s)\n",
2539 objfile_debug_name (objfile),
2540 block_index == GLOBAL_BLOCK
2541 ? "GLOBAL_BLOCK" : "STATIC_BLOCK",
2542 name, domain_name (domain));
2543 }
2544
af3768e9
DE
2545 result = lookup_symbol_in_objfile_symtabs (objfile, block_index,
2546 name, domain);
d12307c1 2547 if (result.symbol != NULL)
af3768e9 2548 {
cc485e62
DE
2549 if (symbol_lookup_debug)
2550 {
2551 fprintf_unfiltered (gdb_stdlog,
2552 "lookup_symbol_in_objfile (...) = %s"
2553 " (in symtabs)\n",
d12307c1 2554 host_address_to_string (result.symbol));
cc485e62
DE
2555 }
2556 return result;
af3768e9
DE
2557 }
2558
cc485e62
DE
2559 result = lookup_symbol_via_quick_fns (objfile, block_index,
2560 name, domain);
2561 if (symbol_lookup_debug)
2562 {
2563 fprintf_unfiltered (gdb_stdlog,
2564 "lookup_symbol_in_objfile (...) = %s%s\n",
d12307c1
PMR
2565 result.symbol != NULL
2566 ? host_address_to_string (result.symbol)
cc485e62 2567 : "NULL",
d12307c1 2568 result.symbol != NULL ? " (via quick fns)" : "");
cc485e62 2569 }
af3768e9
DE
2570 return result;
2571}
2572
2573/* See symtab.h. */
2574
d12307c1 2575struct block_symbol
af3768e9
DE
2576lookup_static_symbol (const char *name, const domain_enum domain)
2577{
f57d2163 2578 struct symbol_cache *cache = get_symbol_cache (current_program_space);
af3768e9 2579 struct objfile *objfile;
d12307c1 2580 struct block_symbol result;
f57d2163
DE
2581 struct block_symbol_cache *bsc;
2582 struct symbol_cache_slot *slot;
2583
2584 /* Lookup in STATIC_BLOCK is not current-objfile-dependent, so just pass
2585 NULL for OBJFILE_CONTEXT. */
2586 result = symbol_cache_lookup (cache, NULL, STATIC_BLOCK, name, domain,
2587 &bsc, &slot);
d12307c1 2588 if (result.symbol != NULL)
f57d2163 2589 {
d12307c1
PMR
2590 if (SYMBOL_LOOKUP_FAILED_P (result))
2591 return (struct block_symbol) {NULL, NULL};
f57d2163
DE
2592 return result;
2593 }
af3768e9
DE
2594
2595 ALL_OBJFILES (objfile)
2596 {
2597 result = lookup_symbol_in_objfile (objfile, STATIC_BLOCK, name, domain);
d12307c1 2598 if (result.symbol != NULL)
f57d2163
DE
2599 {
2600 /* Still pass NULL for OBJFILE_CONTEXT here. */
d12307c1
PMR
2601 symbol_cache_mark_found (bsc, slot, NULL, result.symbol,
2602 result.block);
f57d2163
DE
2603 return result;
2604 }
af3768e9
DE
2605 }
2606
f57d2163
DE
2607 /* Still pass NULL for OBJFILE_CONTEXT here. */
2608 symbol_cache_mark_not_found (bsc, slot, NULL, name, domain);
d12307c1 2609 return (struct block_symbol) {NULL, NULL};
af3768e9
DE
2610}
2611
19630284
JB
2612/* Private data to be used with lookup_symbol_global_iterator_cb. */
2613
2614struct global_sym_lookup_data
2615{
2616 /* The name of the symbol we are searching for. */
2617 const char *name;
2618
2619 /* The domain to use for our search. */
2620 domain_enum domain;
2621
2622 /* The field where the callback should store the symbol if found.
d12307c1
PMR
2623 It should be initialized to {NULL, NULL} before the search is started. */
2624 struct block_symbol result;
19630284
JB
2625};
2626
2627/* A callback function for gdbarch_iterate_over_objfiles_in_search_order.
2628 It searches by name for a symbol in the GLOBAL_BLOCK of the given
2629 OBJFILE. The arguments for the search are passed via CB_DATA,
2630 which in reality is a pointer to struct global_sym_lookup_data. */
2631
2632static int
2633lookup_symbol_global_iterator_cb (struct objfile *objfile,
2634 void *cb_data)
2635{
2636 struct global_sym_lookup_data *data =
2637 (struct global_sym_lookup_data *) cb_data;
2638
d12307c1
PMR
2639 gdb_assert (data->result.symbol == NULL
2640 && data->result.block == NULL);
19630284 2641
af3768e9
DE
2642 data->result = lookup_symbol_in_objfile (objfile, GLOBAL_BLOCK,
2643 data->name, data->domain);
19630284
JB
2644
2645 /* If we found a match, tell the iterator to stop. Otherwise,
2646 keep going. */
d12307c1 2647 return (data->result.symbol != NULL);
19630284
JB
2648}
2649
cf901d3b 2650/* See symtab.h. */
5f9a71c3 2651
d12307c1 2652struct block_symbol
08724ab7 2653lookup_global_symbol (const char *name,
3a40aaa0 2654 const struct block *block,
21b556f4 2655 const domain_enum domain)
5f9a71c3 2656{
f57d2163 2657 struct symbol_cache *cache = get_symbol_cache (current_program_space);
d12307c1 2658 struct block_symbol result;
f57d2163 2659 struct objfile *objfile;
19630284 2660 struct global_sym_lookup_data lookup_data;
f57d2163
DE
2661 struct block_symbol_cache *bsc;
2662 struct symbol_cache_slot *slot;
b2fb95e0 2663
6a3ca067 2664 objfile = lookup_objfile_from_block (block);
f57d2163
DE
2665
2666 /* First see if we can find the symbol in the cache.
2667 This works because we use the current objfile to qualify the lookup. */
d12307c1
PMR
2668 result = symbol_cache_lookup (cache, objfile, GLOBAL_BLOCK, name, domain,
2669 &bsc, &slot);
2670 if (result.symbol != NULL)
f57d2163 2671 {
d12307c1
PMR
2672 if (SYMBOL_LOOKUP_FAILED_P (result))
2673 return (struct block_symbol) {NULL, NULL};
2674 return result;
f57d2163
DE
2675 }
2676
2677 /* Call library-specific lookup procedure. */
67ff19f7 2678 if (objfile != NULL)
d12307c1 2679 result = solib_global_lookup (objfile, name, domain);
b2fb95e0 2680
f57d2163 2681 /* If that didn't work go a global search (of global blocks, heh). */
d12307c1 2682 if (result.symbol == NULL)
f57d2163
DE
2683 {
2684 memset (&lookup_data, 0, sizeof (lookup_data));
2685 lookup_data.name = name;
2686 lookup_data.domain = domain;
2687 gdbarch_iterate_over_objfiles_in_search_order
2688 (objfile != NULL ? get_objfile_arch (objfile) : target_gdbarch (),
2689 lookup_symbol_global_iterator_cb, &lookup_data, objfile);
d12307c1 2690 result = lookup_data.result;
f57d2163 2691 }
6a3ca067 2692
d12307c1
PMR
2693 if (result.symbol != NULL)
2694 symbol_cache_mark_found (bsc, slot, objfile, result.symbol, result.block);
f57d2163
DE
2695 else
2696 symbol_cache_mark_not_found (bsc, slot, objfile, name, domain);
2697
d12307c1 2698 return result;
5f9a71c3
DC
2699}
2700
4186eb54
KS
2701int
2702symbol_matches_domain (enum language symbol_language,
2703 domain_enum symbol_domain,
2704 domain_enum domain)
2705{
2706 /* For C++ "struct foo { ... }" also defines a typedef for "foo".
4186eb54
KS
2707 Similarly, any Ada type declaration implicitly defines a typedef. */
2708 if (symbol_language == language_cplus
2709 || symbol_language == language_d
65547233
TT
2710 || symbol_language == language_ada
2711 || symbol_language == language_rust)
4186eb54
KS
2712 {
2713 if ((domain == VAR_DOMAIN || domain == STRUCT_DOMAIN)
2714 && symbol_domain == STRUCT_DOMAIN)
2715 return 1;
2716 }
2717 /* For all other languages, strict match is required. */
2718 return (symbol_domain == domain);
2719}
2720
cf901d3b 2721/* See symtab.h. */
c906108c 2722
ccefe4c4
TT
2723struct type *
2724lookup_transparent_type (const char *name)
c906108c 2725{
ccefe4c4
TT
2726 return current_language->la_lookup_transparent_type (name);
2727}
9af17804 2728
ccefe4c4
TT
2729/* A helper for basic_lookup_transparent_type that interfaces with the
2730 "quick" symbol table functions. */
357e46e7 2731
ccefe4c4 2732static struct type *
f88cb4b6 2733basic_lookup_transparent_type_quick (struct objfile *objfile, int block_index,
ccefe4c4
TT
2734 const char *name)
2735{
43f3e411 2736 struct compunit_symtab *cust;
346d1dfe 2737 const struct blockvector *bv;
ccefe4c4
TT
2738 struct block *block;
2739 struct symbol *sym;
c906108c 2740
ccefe4c4
TT
2741 if (!objfile->sf)
2742 return NULL;
43f3e411
DE
2743 cust = objfile->sf->qf->lookup_symbol (objfile, block_index, name,
2744 STRUCT_DOMAIN);
2745 if (cust == NULL)
ccefe4c4 2746 return NULL;
c906108c 2747
43f3e411 2748 bv = COMPUNIT_BLOCKVECTOR (cust);
f88cb4b6 2749 block = BLOCKVECTOR_BLOCK (bv, block_index);
b2e2f908
DE
2750 sym = block_find_symbol (block, name, STRUCT_DOMAIN,
2751 block_find_non_opaque_type, NULL);
2752 if (sym == NULL)
43f3e411 2753 error_in_psymtab_expansion (block_index, name, cust);
b2e2f908
DE
2754 gdb_assert (!TYPE_IS_OPAQUE (SYMBOL_TYPE (sym)));
2755 return SYMBOL_TYPE (sym);
2756}
08c23b0d 2757
b2e2f908
DE
2758/* Subroutine of basic_lookup_transparent_type to simplify it.
2759 Look up the non-opaque definition of NAME in BLOCK_INDEX of OBJFILE.
2760 BLOCK_INDEX is either GLOBAL_BLOCK or STATIC_BLOCK. */
2761
2762static struct type *
2763basic_lookup_transparent_type_1 (struct objfile *objfile, int block_index,
2764 const char *name)
2765{
2766 const struct compunit_symtab *cust;
2767 const struct blockvector *bv;
2768 const struct block *block;
2769 const struct symbol *sym;
2770
2771 ALL_OBJFILE_COMPUNITS (objfile, cust)
2772 {
2773 bv = COMPUNIT_BLOCKVECTOR (cust);
2774 block = BLOCKVECTOR_BLOCK (bv, block_index);
2775 sym = block_find_symbol (block, name, STRUCT_DOMAIN,
2776 block_find_non_opaque_type, NULL);
2777 if (sym != NULL)
2778 {
2779 gdb_assert (!TYPE_IS_OPAQUE (SYMBOL_TYPE (sym)));
2780 return SYMBOL_TYPE (sym);
2781 }
2782 }
c906108c 2783
ccefe4c4 2784 return NULL;
b368761e 2785}
c906108c 2786
b368761e
DC
2787/* The standard implementation of lookup_transparent_type. This code
2788 was modeled on lookup_symbol -- the parts not relevant to looking
2789 up types were just left out. In particular it's assumed here that
cf901d3b 2790 types are available in STRUCT_DOMAIN and only in file-static or
b368761e 2791 global blocks. */
c906108c
SS
2792
2793struct type *
b368761e 2794basic_lookup_transparent_type (const char *name)
c906108c 2795{
52f0bd74 2796 struct objfile *objfile;
ccefe4c4 2797 struct type *t;
c906108c
SS
2798
2799 /* Now search all the global symbols. Do the symtab's first, then
c378eb4e 2800 check the psymtab's. If a psymtab indicates the existence
c906108c
SS
2801 of the desired name as a global, then do psymtab-to-symtab
2802 conversion on the fly and return the found symbol. */
c5aa993b 2803
58b6ab13 2804 ALL_OBJFILES (objfile)
c5aa993b 2805 {
b2e2f908
DE
2806 t = basic_lookup_transparent_type_1 (objfile, GLOBAL_BLOCK, name);
2807 if (t)
2808 return t;
c5aa993b 2809 }
c906108c 2810
ccefe4c4 2811 ALL_OBJFILES (objfile)
c5aa993b 2812 {
ccefe4c4
TT
2813 t = basic_lookup_transparent_type_quick (objfile, GLOBAL_BLOCK, name);
2814 if (t)
2815 return t;
c5aa993b 2816 }
c906108c
SS
2817
2818 /* Now search the static file-level symbols.
2819 Not strictly correct, but more useful than an error.
2820 Do the symtab's first, then
c378eb4e 2821 check the psymtab's. If a psymtab indicates the existence
c906108c 2822 of the desired name as a file-level static, then do psymtab-to-symtab
c378eb4e 2823 conversion on the fly and return the found symbol. */
c906108c 2824
54ec275a 2825 ALL_OBJFILES (objfile)
c5aa993b 2826 {
b2e2f908
DE
2827 t = basic_lookup_transparent_type_1 (objfile, STATIC_BLOCK, name);
2828 if (t)
2829 return t;
c5aa993b 2830 }
c906108c 2831
ccefe4c4 2832 ALL_OBJFILES (objfile)
c5aa993b 2833 {
ccefe4c4
TT
2834 t = basic_lookup_transparent_type_quick (objfile, STATIC_BLOCK, name);
2835 if (t)
2836 return t;
c5aa993b 2837 }
ccefe4c4 2838
c906108c
SS
2839 return (struct type *) 0;
2840}
2841
4eeaa230 2842/* Iterate over the symbols named NAME, matching DOMAIN, in BLOCK.
14bc53a8
PA
2843
2844 For each symbol that matches, CALLBACK is called. The symbol is
2845 passed to the callback.
2846
2847 If CALLBACK returns false, the iteration ends. Otherwise, the
4eeaa230 2848 search continues. */
f8eba3c6
TT
2849
2850void
b5ec771e
PA
2851iterate_over_symbols (const struct block *block,
2852 const lookup_name_info &name,
f8eba3c6 2853 const domain_enum domain,
14bc53a8 2854 gdb::function_view<symbol_found_callback_ftype> callback)
f8eba3c6 2855{
4eeaa230
DE
2856 struct block_iterator iter;
2857 struct symbol *sym;
f8eba3c6 2858
358d6ab3 2859 ALL_BLOCK_SYMBOLS_WITH_NAME (block, name, iter, sym)
4eeaa230 2860 {
4186eb54
KS
2861 if (symbol_matches_domain (SYMBOL_LANGUAGE (sym),
2862 SYMBOL_DOMAIN (sym), domain))
f8eba3c6 2863 {
7e41c8db
KS
2864 struct block_symbol block_sym = {sym, block};
2865
2866 if (!callback (&block_sym))
4eeaa230 2867 return;
f8eba3c6 2868 }
f8eba3c6
TT
2869 }
2870}
2871
43f3e411
DE
2872/* Find the compunit symtab associated with PC and SECTION.
2873 This will read in debug info as necessary. */
c906108c 2874
43f3e411
DE
2875struct compunit_symtab *
2876find_pc_sect_compunit_symtab (CORE_ADDR pc, struct obj_section *section)
c906108c 2877{
43f3e411
DE
2878 struct compunit_symtab *cust;
2879 struct compunit_symtab *best_cust = NULL;
52f0bd74 2880 struct objfile *objfile;
c906108c 2881 CORE_ADDR distance = 0;
77e371c0 2882 struct bound_minimal_symbol msymbol;
8a48e967
DJ
2883
2884 /* If we know that this is not a text address, return failure. This is
2885 necessary because we loop based on the block's high and low code
2886 addresses, which do not include the data ranges, and because
2887 we call find_pc_sect_psymtab which has a similar restriction based
2888 on the partial_symtab's texthigh and textlow. */
77e371c0
TT
2889 msymbol = lookup_minimal_symbol_by_pc_section (pc, section);
2890 if (msymbol.minsym
2891 && (MSYMBOL_TYPE (msymbol.minsym) == mst_data
2892 || MSYMBOL_TYPE (msymbol.minsym) == mst_bss
2893 || MSYMBOL_TYPE (msymbol.minsym) == mst_abs
2894 || MSYMBOL_TYPE (msymbol.minsym) == mst_file_data
2895 || MSYMBOL_TYPE (msymbol.minsym) == mst_file_bss))
8a48e967 2896 return NULL;
c906108c
SS
2897
2898 /* Search all symtabs for the one whose file contains our address, and which
2899 is the smallest of all the ones containing the address. This is designed
2900 to deal with a case like symtab a is at 0x1000-0x2000 and 0x3000-0x4000
2901 and symtab b is at 0x2000-0x3000. So the GLOBAL_BLOCK for a is from
2902 0x1000-0x4000, but for address 0x2345 we want to return symtab b.
2903
2904 This happens for native ecoff format, where code from included files
c378eb4e 2905 gets its own symtab. The symtab for the included file should have
c906108c
SS
2906 been read in already via the dependency mechanism.
2907 It might be swifter to create several symtabs with the same name
2908 like xcoff does (I'm not sure).
2909
2910 It also happens for objfiles that have their functions reordered.
2911 For these, the symtab we are looking for is not necessarily read in. */
2912
43f3e411 2913 ALL_COMPUNITS (objfile, cust)
c5aa993b 2914 {
43f3e411
DE
2915 struct block *b;
2916 const struct blockvector *bv;
2917
2918 bv = COMPUNIT_BLOCKVECTOR (cust);
c5aa993b 2919 b = BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK);
c906108c 2920
c5aa993b 2921 if (BLOCK_START (b) <= pc
c5aa993b 2922 && BLOCK_END (b) > pc
c5aa993b
JM
2923 && (distance == 0
2924 || BLOCK_END (b) - BLOCK_START (b) < distance))
2925 {
2926 /* For an objfile that has its functions reordered,
2927 find_pc_psymtab will find the proper partial symbol table
2928 and we simply return its corresponding symtab. */
2929 /* In order to better support objfiles that contain both
2930 stabs and coff debugging info, we continue on if a psymtab
c378eb4e 2931 can't be found. */
ccefe4c4 2932 if ((objfile->flags & OBJF_REORDERED) && objfile->sf)
c5aa993b 2933 {
43f3e411 2934 struct compunit_symtab *result;
433759f7 2935
ccefe4c4 2936 result
43f3e411
DE
2937 = objfile->sf->qf->find_pc_sect_compunit_symtab (objfile,
2938 msymbol,
2939 pc, section,
2940 0);
2941 if (result != NULL)
ccefe4c4 2942 return result;
c5aa993b
JM
2943 }
2944 if (section != 0)
2945 {
8157b174 2946 struct block_iterator iter;
261397f8 2947 struct symbol *sym = NULL;
c906108c 2948
de4f826b 2949 ALL_BLOCK_SYMBOLS (b, iter, sym)
c5aa993b 2950 {
261397f8 2951 fixup_symbol_section (sym, objfile);
e27d198c
TT
2952 if (matching_obj_sections (SYMBOL_OBJ_SECTION (objfile, sym),
2953 section))
c5aa993b
JM
2954 break;
2955 }
de4f826b 2956 if (sym == NULL)
c378eb4e
MS
2957 continue; /* No symbol in this symtab matches
2958 section. */
c5aa993b
JM
2959 }
2960 distance = BLOCK_END (b) - BLOCK_START (b);
43f3e411 2961 best_cust = cust;
c5aa993b
JM
2962 }
2963 }
c906108c 2964
43f3e411
DE
2965 if (best_cust != NULL)
2966 return best_cust;
c906108c 2967
072cabfe
DE
2968 /* Not found in symtabs, search the "quick" symtabs (e.g. psymtabs). */
2969
ccefe4c4
TT
2970 ALL_OBJFILES (objfile)
2971 {
43f3e411 2972 struct compunit_symtab *result;
433759f7 2973
ccefe4c4
TT
2974 if (!objfile->sf)
2975 continue;
43f3e411
DE
2976 result = objfile->sf->qf->find_pc_sect_compunit_symtab (objfile,
2977 msymbol,
2978 pc, section,
2979 1);
2980 if (result != NULL)
ccefe4c4
TT
2981 return result;
2982 }
2983
2984 return NULL;
c906108c
SS
2985}
2986
43f3e411
DE
2987/* Find the compunit symtab associated with PC.
2988 This will read in debug info as necessary.
2989 Backward compatibility, no section. */
c906108c 2990
43f3e411
DE
2991struct compunit_symtab *
2992find_pc_compunit_symtab (CORE_ADDR pc)
c906108c 2993{
43f3e411 2994 return find_pc_sect_compunit_symtab (pc, find_pc_mapped_section (pc));
c906108c 2995}
71a3c369
TT
2996
2997/* See symtab.h. */
2998
2999struct symbol *
3000find_symbol_at_address (CORE_ADDR address)
3001{
3002 struct objfile *objfile;
3003
3004 ALL_OBJFILES (objfile)
3005 {
3006 if (objfile->sf == NULL
3007 || objfile->sf->qf->find_compunit_symtab_by_address == NULL)
3008 continue;
3009
3010 struct compunit_symtab *symtab
3011 = objfile->sf->qf->find_compunit_symtab_by_address (objfile, address);
3012 if (symtab != NULL)
3013 {
3014 const struct blockvector *bv = COMPUNIT_BLOCKVECTOR (symtab);
3015
3016 for (int i = GLOBAL_BLOCK; i <= STATIC_BLOCK; ++i)
3017 {
3018 struct block *b = BLOCKVECTOR_BLOCK (bv, i);
3019 struct block_iterator iter;
3020 struct symbol *sym;
3021
3022 ALL_BLOCK_SYMBOLS (b, iter, sym)
3023 {
3024 if (SYMBOL_CLASS (sym) == LOC_STATIC
3025 && SYMBOL_VALUE_ADDRESS (sym) == address)
3026 return sym;
3027 }
3028 }
3029 }
3030 }
3031
3032 return NULL;
3033}
3034
c906108c 3035\f
c5aa993b 3036
7e73cedf 3037/* Find the source file and line number for a given PC value and SECTION.
c906108c
SS
3038 Return a structure containing a symtab pointer, a line number,
3039 and a pc range for the entire source line.
3040 The value's .pc field is NOT the specified pc.
3041 NOTCURRENT nonzero means, if specified pc is on a line boundary,
3042 use the line that ends there. Otherwise, in that case, the line
3043 that begins there is used. */
3044
3045/* The big complication here is that a line may start in one file, and end just
3046 before the start of another file. This usually occurs when you #include
3047 code in the middle of a subroutine. To properly find the end of a line's PC
3048 range, we must search all symtabs associated with this compilation unit, and
3049 find the one whose first PC is closer than that of the next line in this
3050 symtab. */
3051
c906108c 3052struct symtab_and_line
714835d5 3053find_pc_sect_line (CORE_ADDR pc, struct obj_section *section, int notcurrent)
c906108c 3054{
43f3e411
DE
3055 struct compunit_symtab *cust;
3056 struct symtab *iter_s;
52f0bd74
AC
3057 struct linetable *l;
3058 int len;
52f0bd74 3059 struct linetable_entry *item;
346d1dfe 3060 const struct blockvector *bv;
7cbd4a93 3061 struct bound_minimal_symbol msymbol;
c906108c
SS
3062
3063 /* Info on best line seen so far, and where it starts, and its file. */
3064
3065 struct linetable_entry *best = NULL;
3066 CORE_ADDR best_end = 0;
3067 struct symtab *best_symtab = 0;
3068
3069 /* Store here the first line number
3070 of a file which contains the line at the smallest pc after PC.
3071 If we don't find a line whose range contains PC,
3072 we will use a line one less than this,
3073 with a range from the start of that file to the first line's pc. */
3074 struct linetable_entry *alt = NULL;
c906108c
SS
3075
3076 /* Info on best line seen in this file. */
3077
3078 struct linetable_entry *prev;
3079
3080 /* If this pc is not from the current frame,
3081 it is the address of the end of a call instruction.
3082 Quite likely that is the start of the following statement.
3083 But what we want is the statement containing the instruction.
3084 Fudge the pc to make sure we get that. */
3085
b77b1eb7
JB
3086 /* It's tempting to assume that, if we can't find debugging info for
3087 any function enclosing PC, that we shouldn't search for line
3088 number info, either. However, GAS can emit line number info for
3089 assembly files --- very helpful when debugging hand-written
3090 assembly code. In such a case, we'd have no debug info for the
3091 function, but we would have line info. */
648f4f79 3092
c906108c
SS
3093 if (notcurrent)
3094 pc -= 1;
3095
c5aa993b 3096 /* elz: added this because this function returned the wrong
c906108c 3097 information if the pc belongs to a stub (import/export)
c378eb4e 3098 to call a shlib function. This stub would be anywhere between
9af17804 3099 two functions in the target, and the line info was erroneously
c378eb4e
MS
3100 taken to be the one of the line before the pc. */
3101
c906108c 3102 /* RT: Further explanation:
c5aa993b 3103
c906108c
SS
3104 * We have stubs (trampolines) inserted between procedures.
3105 *
3106 * Example: "shr1" exists in a shared library, and a "shr1" stub also
3107 * exists in the main image.
3108 *
3109 * In the minimal symbol table, we have a bunch of symbols
c378eb4e 3110 * sorted by start address. The stubs are marked as "trampoline",
c906108c
SS
3111 * the others appear as text. E.g.:
3112 *
9af17804 3113 * Minimal symbol table for main image
c906108c
SS
3114 * main: code for main (text symbol)
3115 * shr1: stub (trampoline symbol)
3116 * foo: code for foo (text symbol)
3117 * ...
3118 * Minimal symbol table for "shr1" image:
3119 * ...
3120 * shr1: code for shr1 (text symbol)
3121 * ...
3122 *
3123 * So the code below is trying to detect if we are in the stub
3124 * ("shr1" stub), and if so, find the real code ("shr1" trampoline),
3125 * and if found, do the symbolization from the real-code address
3126 * rather than the stub address.
3127 *
3128 * Assumptions being made about the minimal symbol table:
3129 * 1. lookup_minimal_symbol_by_pc() will return a trampoline only
c378eb4e 3130 * if we're really in the trampoline.s If we're beyond it (say
9af17804 3131 * we're in "foo" in the above example), it'll have a closer
c906108c
SS
3132 * symbol (the "foo" text symbol for example) and will not
3133 * return the trampoline.
3134 * 2. lookup_minimal_symbol_text() will find a real text symbol
3135 * corresponding to the trampoline, and whose address will
c378eb4e 3136 * be different than the trampoline address. I put in a sanity
c906108c
SS
3137 * check for the address being the same, to avoid an
3138 * infinite recursion.
3139 */
c5aa993b 3140 msymbol = lookup_minimal_symbol_by_pc (pc);
7cbd4a93
TT
3141 if (msymbol.minsym != NULL)
3142 if (MSYMBOL_TYPE (msymbol.minsym) == mst_solib_trampoline)
c5aa993b 3143 {
77e371c0 3144 struct bound_minimal_symbol mfunsym
efd66ac6 3145 = lookup_minimal_symbol_text (MSYMBOL_LINKAGE_NAME (msymbol.minsym),
77e371c0
TT
3146 NULL);
3147
3148 if (mfunsym.minsym == NULL)
c5aa993b
JM
3149 /* I eliminated this warning since it is coming out
3150 * in the following situation:
3151 * gdb shmain // test program with shared libraries
3152 * (gdb) break shr1 // function in shared lib
3153 * Warning: In stub for ...
9af17804 3154 * In the above situation, the shared lib is not loaded yet,
c5aa993b
JM
3155 * so of course we can't find the real func/line info,
3156 * but the "break" still works, and the warning is annoying.
c378eb4e 3157 * So I commented out the warning. RT */
3e43a32a 3158 /* warning ("In stub for %s; unable to find real function/line info",
c378eb4e
MS
3159 SYMBOL_LINKAGE_NAME (msymbol)); */
3160 ;
c5aa993b 3161 /* fall through */
77e371c0
TT
3162 else if (BMSYMBOL_VALUE_ADDRESS (mfunsym)
3163 == BMSYMBOL_VALUE_ADDRESS (msymbol))
c5aa993b 3164 /* Avoid infinite recursion */
c378eb4e 3165 /* See above comment about why warning is commented out. */
3e43a32a 3166 /* warning ("In stub for %s; unable to find real function/line info",
c378eb4e
MS
3167 SYMBOL_LINKAGE_NAME (msymbol)); */
3168 ;
c5aa993b
JM
3169 /* fall through */
3170 else
77e371c0 3171 return find_pc_line (BMSYMBOL_VALUE_ADDRESS (mfunsym), 0);
c5aa993b 3172 }
c906108c 3173
51abb421
PA
3174 symtab_and_line val;
3175 val.pspace = current_program_space;
c906108c 3176
43f3e411
DE
3177 cust = find_pc_sect_compunit_symtab (pc, section);
3178 if (cust == NULL)
c906108c 3179 {
c378eb4e 3180 /* If no symbol information, return previous pc. */
c906108c
SS
3181 if (notcurrent)
3182 pc++;
3183 val.pc = pc;
3184 return val;
3185 }
3186
43f3e411 3187 bv = COMPUNIT_BLOCKVECTOR (cust);
c906108c
SS
3188
3189 /* Look at all the symtabs that share this blockvector.
3190 They all have the same apriori range, that we found was right;
3191 but they have different line tables. */
3192
43f3e411 3193 ALL_COMPUNIT_FILETABS (cust, iter_s)
c906108c
SS
3194 {
3195 /* Find the best line in this symtab. */
43f3e411 3196 l = SYMTAB_LINETABLE (iter_s);
c906108c 3197 if (!l)
c5aa993b 3198 continue;
c906108c
SS
3199 len = l->nitems;
3200 if (len <= 0)
3201 {
3202 /* I think len can be zero if the symtab lacks line numbers
3203 (e.g. gcc -g1). (Either that or the LINETABLE is NULL;
3204 I'm not sure which, and maybe it depends on the symbol
3205 reader). */
3206 continue;
3207 }
3208
3209 prev = NULL;
c378eb4e 3210 item = l->item; /* Get first line info. */
c906108c
SS
3211
3212 /* Is this file's first line closer than the first lines of other files?
c5aa993b 3213 If so, record this file, and its first line, as best alternate. */
c906108c 3214 if (item->pc > pc && (!alt || item->pc < alt->pc))
c656bca5 3215 alt = item;
c906108c 3216
b926417a 3217 auto pc_compare = [](const CORE_ADDR & comp_pc,
7cbe16e9
SR
3218 const struct linetable_entry & lhs)->bool
3219 {
b926417a 3220 return comp_pc < lhs.pc;
7cbe16e9 3221 };
c906108c 3222
7cbe16e9
SR
3223 struct linetable_entry *first = item;
3224 struct linetable_entry *last = item + len;
3225 item = std::upper_bound (first, last, pc, pc_compare);
3226 if (item != first)
3227 prev = item - 1; /* Found a matching item. */
c906108c
SS
3228
3229 /* At this point, prev points at the line whose start addr is <= pc, and
c5aa993b
JM
3230 item points at the next line. If we ran off the end of the linetable
3231 (pc >= start of the last line), then prev == item. If pc < start of
3232 the first line, prev will not be set. */
c906108c
SS
3233
3234 /* Is this file's best line closer than the best in the other files?
083ae935
DJ
3235 If so, record this file, and its best line, as best so far. Don't
3236 save prev if it represents the end of a function (i.e. line number
3237 0) instead of a real line. */
c906108c 3238
083ae935 3239 if (prev && prev->line && (!best || prev->pc > best->pc))
c906108c
SS
3240 {
3241 best = prev;
43f3e411 3242 best_symtab = iter_s;
25d53da1
KB
3243
3244 /* Discard BEST_END if it's before the PC of the current BEST. */
3245 if (best_end <= best->pc)
3246 best_end = 0;
c906108c 3247 }
25d53da1
KB
3248
3249 /* If another line (denoted by ITEM) is in the linetable and its
7cbe16e9 3250 PC is after BEST's PC, but before the current BEST_END, then
25d53da1 3251 use ITEM's PC as the new best_end. */
4ee89e90 3252 if (best && item < last && item->pc > best->pc
7cbe16e9 3253 && (best_end == 0 || best_end > item->pc))
25d53da1 3254 best_end = item->pc;
c906108c
SS
3255 }
3256
3257 if (!best_symtab)
3258 {
e86e87f7
DJ
3259 /* If we didn't find any line number info, just return zeros.
3260 We used to return alt->line - 1 here, but that could be
3261 anywhere; if we don't have line number info for this PC,
3262 don't make some up. */
3263 val.pc = pc;
c906108c 3264 }
e8717518
FF
3265 else if (best->line == 0)
3266 {
3267 /* If our best fit is in a range of PC's for which no line
3268 number info is available (line number is zero) then we didn't
c378eb4e 3269 find any valid line information. */
e8717518
FF
3270 val.pc = pc;
3271 }
c906108c
SS
3272 else
3273 {
3274 val.symtab = best_symtab;
3275 val.line = best->line;
3276 val.pc = best->pc;
3277 if (best_end && (!alt || best_end < alt->pc))
3278 val.end = best_end;
3279 else if (alt)
3280 val.end = alt->pc;
3281 else
3282 val.end = BLOCK_END (BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK));
3283 }
3284 val.section = section;
3285 return val;
3286}
3287
c378eb4e 3288/* Backward compatibility (no section). */
c906108c
SS
3289
3290struct symtab_and_line
fba45db2 3291find_pc_line (CORE_ADDR pc, int notcurrent)
c906108c 3292{
714835d5 3293 struct obj_section *section;
c906108c
SS
3294
3295 section = find_pc_overlay (pc);
3296 if (pc_in_unmapped_range (pc, section))
3297 pc = overlay_mapped_address (pc, section);
3298 return find_pc_sect_line (pc, section, notcurrent);
3299}
34248c3a
DE
3300
3301/* See symtab.h. */
3302
3303struct symtab *
3304find_pc_line_symtab (CORE_ADDR pc)
3305{
3306 struct symtab_and_line sal;
3307
3308 /* This always passes zero for NOTCURRENT to find_pc_line.
3309 There are currently no callers that ever pass non-zero. */
3310 sal = find_pc_line (pc, 0);
3311 return sal.symtab;
3312}
c906108c 3313\f
c906108c
SS
3314/* Find line number LINE in any symtab whose name is the same as
3315 SYMTAB.
3316
3317 If found, return the symtab that contains the linetable in which it was
3318 found, set *INDEX to the index in the linetable of the best entry
3319 found, and set *EXACT_MATCH nonzero if the value returned is an
3320 exact match.
3321
3322 If not found, return NULL. */
3323
50641945 3324struct symtab *
433759f7
MS
3325find_line_symtab (struct symtab *symtab, int line,
3326 int *index, int *exact_match)
c906108c 3327{
6f43c46f 3328 int exact = 0; /* Initialized here to avoid a compiler warning. */
c906108c
SS
3329
3330 /* BEST_INDEX and BEST_LINETABLE identify the smallest linenumber > LINE
3331 so far seen. */
3332
3333 int best_index;
3334 struct linetable *best_linetable;
3335 struct symtab *best_symtab;
3336
3337 /* First try looking it up in the given symtab. */
8435453b 3338 best_linetable = SYMTAB_LINETABLE (symtab);
c906108c 3339 best_symtab = symtab;
f8eba3c6 3340 best_index = find_line_common (best_linetable, line, &exact, 0);
c906108c
SS
3341 if (best_index < 0 || !exact)
3342 {
3343 /* Didn't find an exact match. So we better keep looking for
c5aa993b
JM
3344 another symtab with the same name. In the case of xcoff,
3345 multiple csects for one source file (produced by IBM's FORTRAN
3346 compiler) produce multiple symtabs (this is unavoidable
3347 assuming csects can be at arbitrary places in memory and that
3348 the GLOBAL_BLOCK of a symtab has a begin and end address). */
c906108c
SS
3349
3350 /* BEST is the smallest linenumber > LINE so far seen,
c5aa993b
JM
3351 or 0 if none has been seen so far.
3352 BEST_INDEX and BEST_LINETABLE identify the item for it. */
c906108c
SS
3353 int best;
3354
3355 struct objfile *objfile;
43f3e411 3356 struct compunit_symtab *cu;
c906108c
SS
3357 struct symtab *s;
3358
3359 if (best_index >= 0)
3360 best = best_linetable->item[best_index].line;
3361 else
3362 best = 0;
3363
ccefe4c4 3364 ALL_OBJFILES (objfile)
51432cca 3365 {
ccefe4c4 3366 if (objfile->sf)
652a8996 3367 objfile->sf->qf->expand_symtabs_with_fullname (objfile,
05cba821 3368 symtab_to_fullname (symtab));
51432cca
CES
3369 }
3370
43f3e411 3371 ALL_FILETABS (objfile, cu, s)
c5aa993b
JM
3372 {
3373 struct linetable *l;
3374 int ind;
c906108c 3375
3ffc00b8 3376 if (FILENAME_CMP (symtab->filename, s->filename) != 0)
c5aa993b 3377 continue;
d180bcbd
JK
3378 if (FILENAME_CMP (symtab_to_fullname (symtab),
3379 symtab_to_fullname (s)) != 0)
3ffc00b8 3380 continue;
8435453b 3381 l = SYMTAB_LINETABLE (s);
f8eba3c6 3382 ind = find_line_common (l, line, &exact, 0);
c5aa993b
JM
3383 if (ind >= 0)
3384 {
3385 if (exact)
3386 {
3387 best_index = ind;
3388 best_linetable = l;
3389 best_symtab = s;
3390 goto done;
3391 }
3392 if (best == 0 || l->item[ind].line < best)
3393 {
3394 best = l->item[ind].line;
3395 best_index = ind;
3396 best_linetable = l;
3397 best_symtab = s;
3398 }
3399 }
3400 }
c906108c 3401 }
c5aa993b 3402done:
c906108c
SS
3403 if (best_index < 0)
3404 return NULL;
3405
3406 if (index)
3407 *index = best_index;
3408 if (exact_match)
3409 *exact_match = exact;
3410
3411 return best_symtab;
3412}
f8eba3c6
TT
3413
3414/* Given SYMTAB, returns all the PCs function in the symtab that
67d89901
TT
3415 exactly match LINE. Returns an empty vector if there are no exact
3416 matches, but updates BEST_ITEM in this case. */
f8eba3c6 3417
67d89901 3418std::vector<CORE_ADDR>
f8eba3c6
TT
3419find_pcs_for_symtab_line (struct symtab *symtab, int line,
3420 struct linetable_entry **best_item)
3421{
c656bca5 3422 int start = 0;
67d89901 3423 std::vector<CORE_ADDR> result;
f8eba3c6
TT
3424
3425 /* First, collect all the PCs that are at this line. */
3426 while (1)
3427 {
3428 int was_exact;
3429 int idx;
3430
8435453b
DE
3431 idx = find_line_common (SYMTAB_LINETABLE (symtab), line, &was_exact,
3432 start);
f8eba3c6
TT
3433 if (idx < 0)
3434 break;
3435
3436 if (!was_exact)
3437 {
8435453b 3438 struct linetable_entry *item = &SYMTAB_LINETABLE (symtab)->item[idx];
f8eba3c6
TT
3439
3440 if (*best_item == NULL || item->line < (*best_item)->line)
3441 *best_item = item;
3442
3443 break;
3444 }
3445
67d89901 3446 result.push_back (SYMTAB_LINETABLE (symtab)->item[idx].pc);
f8eba3c6
TT
3447 start = idx + 1;
3448 }
3449
3450 return result;
3451}
3452
c906108c
SS
3453\f
3454/* Set the PC value for a given source file and line number and return true.
3455 Returns zero for invalid line number (and sets the PC to 0).
3456 The source file is specified with a struct symtab. */
3457
3458int
fba45db2 3459find_line_pc (struct symtab *symtab, int line, CORE_ADDR *pc)
c906108c
SS
3460{
3461 struct linetable *l;
3462 int ind;
3463
3464 *pc = 0;
3465 if (symtab == 0)
3466 return 0;
3467
3468 symtab = find_line_symtab (symtab, line, &ind, NULL);
3469 if (symtab != NULL)
3470 {
8435453b 3471 l = SYMTAB_LINETABLE (symtab);
c906108c
SS
3472 *pc = l->item[ind].pc;
3473 return 1;
3474 }
3475 else
3476 return 0;
3477}
3478
3479/* Find the range of pc values in a line.
3480 Store the starting pc of the line into *STARTPTR
3481 and the ending pc (start of next line) into *ENDPTR.
3482 Returns 1 to indicate success.
3483 Returns 0 if could not find the specified line. */
3484
3485int
fba45db2
KB
3486find_line_pc_range (struct symtab_and_line sal, CORE_ADDR *startptr,
3487 CORE_ADDR *endptr)
c906108c
SS
3488{
3489 CORE_ADDR startaddr;
3490 struct symtab_and_line found_sal;
3491
3492 startaddr = sal.pc;
c5aa993b 3493 if (startaddr == 0 && !find_line_pc (sal.symtab, sal.line, &startaddr))
c906108c
SS
3494 return 0;
3495
3496 /* This whole function is based on address. For example, if line 10 has
3497 two parts, one from 0x100 to 0x200 and one from 0x300 to 0x400, then
3498 "info line *0x123" should say the line goes from 0x100 to 0x200
3499 and "info line *0x355" should say the line goes from 0x300 to 0x400.
3500 This also insures that we never give a range like "starts at 0x134
3501 and ends at 0x12c". */
3502
3503 found_sal = find_pc_sect_line (startaddr, sal.section, 0);
3504 if (found_sal.line != sal.line)
3505 {
3506 /* The specified line (sal) has zero bytes. */
3507 *startptr = found_sal.pc;
3508 *endptr = found_sal.pc;
3509 }
3510 else
3511 {
3512 *startptr = found_sal.pc;
3513 *endptr = found_sal.end;
3514 }
3515 return 1;
3516}
3517
3518/* Given a line table and a line number, return the index into the line
3519 table for the pc of the nearest line whose number is >= the specified one.
3520 Return -1 if none is found. The value is >= 0 if it is an index.
f8eba3c6 3521 START is the index at which to start searching the line table.
c906108c
SS
3522
3523 Set *EXACT_MATCH nonzero if the value returned is an exact match. */
3524
3525static int
aa1ee363 3526find_line_common (struct linetable *l, int lineno,
f8eba3c6 3527 int *exact_match, int start)
c906108c 3528{
52f0bd74
AC
3529 int i;
3530 int len;
c906108c
SS
3531
3532 /* BEST is the smallest linenumber > LINENO so far seen,
3533 or 0 if none has been seen so far.
3534 BEST_INDEX identifies the item for it. */
3535
3536 int best_index = -1;
3537 int best = 0;
3538
b7589f7d
DJ
3539 *exact_match = 0;
3540
c906108c
SS
3541 if (lineno <= 0)
3542 return -1;
3543 if (l == 0)
3544 return -1;
3545
3546 len = l->nitems;
f8eba3c6 3547 for (i = start; i < len; i++)
c906108c 3548 {
aa1ee363 3549 struct linetable_entry *item = &(l->item[i]);
c906108c
SS
3550
3551 if (item->line == lineno)
3552 {
3553 /* Return the first (lowest address) entry which matches. */
3554 *exact_match = 1;
3555 return i;
3556 }
3557
3558 if (item->line > lineno && (best == 0 || item->line < best))
3559 {
3560 best = item->line;
3561 best_index = i;
3562 }
3563 }
3564
3565 /* If we got here, we didn't get an exact match. */
c906108c
SS
3566 return best_index;
3567}
3568
3569int
fba45db2 3570find_pc_line_pc_range (CORE_ADDR pc, CORE_ADDR *startptr, CORE_ADDR *endptr)
c906108c
SS
3571{
3572 struct symtab_and_line sal;
433759f7 3573
c906108c
SS
3574 sal = find_pc_line (pc, 0);
3575 *startptr = sal.pc;
3576 *endptr = sal.end;
3577 return sal.symtab != 0;
3578}
3579
cd2bb709
PA
3580/* Helper for find_function_start_sal. Does most of the work, except
3581 setting the sal's symbol. */
aab2f208 3582
cd2bb709
PA
3583static symtab_and_line
3584find_function_start_sal_1 (CORE_ADDR func_addr, obj_section *section,
3585 bool funfirstline)
aab2f208 3586{
42ddae10 3587 symtab_and_line sal = find_pc_sect_line (func_addr, section, 0);
aab2f208 3588
6e22494e
JK
3589 if (funfirstline && sal.symtab != NULL
3590 && (COMPUNIT_LOCATIONS_VALID (SYMTAB_COMPUNIT (sal.symtab))
3591 || SYMTAB_LANGUAGE (sal.symtab) == language_asm))
3592 {
42ddae10 3593 struct gdbarch *gdbarch = get_objfile_arch (SYMTAB_OBJFILE (sal.symtab));
141c5cc4 3594
42ddae10 3595 sal.pc = func_addr;
141c5cc4
JK
3596 if (gdbarch_skip_entrypoint_p (gdbarch))
3597 sal.pc = gdbarch_skip_entrypoint (gdbarch, sal.pc);
6e22494e
JK
3598 return sal;
3599 }
3600
aab2f208 3601 /* We always should have a line for the function start address.
42ddae10 3602 If we don't, something is odd. Create a plain SAL referring
aab2f208
DE
3603 just the PC and hope that skip_prologue_sal (if requested)
3604 can find a line number for after the prologue. */
42ddae10 3605 if (sal.pc < func_addr)
aab2f208 3606 {
51abb421 3607 sal = {};
aab2f208 3608 sal.pspace = current_program_space;
42ddae10 3609 sal.pc = func_addr;
08be3fe3 3610 sal.section = section;
aab2f208
DE
3611 }
3612
3613 if (funfirstline)
3614 skip_prologue_sal (&sal);
3615
3616 return sal;
3617}
3618
42ddae10
PA
3619/* See symtab.h. */
3620
cd2bb709
PA
3621symtab_and_line
3622find_function_start_sal (CORE_ADDR func_addr, obj_section *section,
3623 bool funfirstline)
3624{
3625 symtab_and_line sal
3626 = find_function_start_sal_1 (func_addr, section, funfirstline);
3627
3628 /* find_function_start_sal_1 does a linetable search, so it finds
3629 the symtab and linenumber, but not a symbol. Fill in the
3630 function symbol too. */
3631 sal.symbol = find_pc_sect_containing_function (sal.pc, sal.section);
3632
3633 return sal;
3634}
3635
3636/* See symtab.h. */
3637
42ddae10
PA
3638symtab_and_line
3639find_function_start_sal (symbol *sym, bool funfirstline)
3640{
3641 fixup_symbol_section (sym, NULL);
3642 symtab_and_line sal
2b1ffcfd 3643 = find_function_start_sal_1 (BLOCK_ENTRY_PC (SYMBOL_BLOCK_VALUE (sym)),
cd2bb709
PA
3644 SYMBOL_OBJ_SECTION (symbol_objfile (sym), sym),
3645 funfirstline);
42ddae10
PA
3646 sal.symbol = sym;
3647 return sal;
3648}
3649
3650
8c7a1ee8
EZ
3651/* Given a function start address FUNC_ADDR and SYMTAB, find the first
3652 address for that function that has an entry in SYMTAB's line info
3653 table. If such an entry cannot be found, return FUNC_ADDR
3654 unaltered. */
eca864fe 3655
70221824 3656static CORE_ADDR
8c7a1ee8
EZ
3657skip_prologue_using_lineinfo (CORE_ADDR func_addr, struct symtab *symtab)
3658{
3659 CORE_ADDR func_start, func_end;
3660 struct linetable *l;
952a6d41 3661 int i;
8c7a1ee8
EZ
3662
3663 /* Give up if this symbol has no lineinfo table. */
8435453b 3664 l = SYMTAB_LINETABLE (symtab);
8c7a1ee8
EZ
3665 if (l == NULL)
3666 return func_addr;
3667
3668 /* Get the range for the function's PC values, or give up if we
3669 cannot, for some reason. */
3670 if (!find_pc_partial_function (func_addr, NULL, &func_start, &func_end))
3671 return func_addr;
3672
3673 /* Linetable entries are ordered by PC values, see the commentary in
3674 symtab.h where `struct linetable' is defined. Thus, the first
3675 entry whose PC is in the range [FUNC_START..FUNC_END[ is the
3676 address we are looking for. */
3677 for (i = 0; i < l->nitems; i++)
3678 {
3679 struct linetable_entry *item = &(l->item[i]);
3680
3681 /* Don't use line numbers of zero, they mark special entries in
3682 the table. See the commentary on symtab.h before the
3683 definition of struct linetable. */
3684 if (item->line > 0 && func_start <= item->pc && item->pc < func_end)
3685 return item->pc;
3686 }
3687
3688 return func_addr;
3689}
3690
059acae7
UW
3691/* Adjust SAL to the first instruction past the function prologue.
3692 If the PC was explicitly specified, the SAL is not changed.
3693 If the line number was explicitly specified, at most the SAL's PC
3694 is updated. If SAL is already past the prologue, then do nothing. */
eca864fe 3695
059acae7
UW
3696void
3697skip_prologue_sal (struct symtab_and_line *sal)
3698{
3699 struct symbol *sym;
3700 struct symtab_and_line start_sal;
8be455d7 3701 CORE_ADDR pc, saved_pc;
059acae7
UW
3702 struct obj_section *section;
3703 const char *name;
3704 struct objfile *objfile;
3705 struct gdbarch *gdbarch;
3977b71f 3706 const struct block *b, *function_block;
8be455d7 3707 int force_skip, skip;
c906108c 3708
a4b411d6 3709 /* Do not change the SAL if PC was specified explicitly. */
059acae7
UW
3710 if (sal->explicit_pc)
3711 return;
6c95b8df 3712
5ed8105e
PA
3713 scoped_restore_current_pspace_and_thread restore_pspace_thread;
3714
059acae7 3715 switch_to_program_space_and_thread (sal->pspace);
6c95b8df 3716
059acae7
UW
3717 sym = find_pc_sect_function (sal->pc, sal->section);
3718 if (sym != NULL)
bccdca4a 3719 {
059acae7
UW
3720 fixup_symbol_section (sym, NULL);
3721
08be3fe3 3722 objfile = symbol_objfile (sym);
2b1ffcfd 3723 pc = BLOCK_ENTRY_PC (SYMBOL_BLOCK_VALUE (sym));
08be3fe3 3724 section = SYMBOL_OBJ_SECTION (objfile, sym);
059acae7 3725 name = SYMBOL_LINKAGE_NAME (sym);
c906108c 3726 }
059acae7
UW
3727 else
3728 {
7c7b6655
TT
3729 struct bound_minimal_symbol msymbol
3730 = lookup_minimal_symbol_by_pc_section (sal->pc, sal->section);
433759f7 3731
7c7b6655 3732 if (msymbol.minsym == NULL)
5ed8105e 3733 return;
059acae7 3734
7c7b6655 3735 objfile = msymbol.objfile;
77e371c0 3736 pc = BMSYMBOL_VALUE_ADDRESS (msymbol);
efd66ac6
TT
3737 section = MSYMBOL_OBJ_SECTION (objfile, msymbol.minsym);
3738 name = MSYMBOL_LINKAGE_NAME (msymbol.minsym);
059acae7
UW
3739 }
3740
3741 gdbarch = get_objfile_arch (objfile);
3742
8be455d7
JK
3743 /* Process the prologue in two passes. In the first pass try to skip the
3744 prologue (SKIP is true) and verify there is a real need for it (indicated
3745 by FORCE_SKIP). If no such reason was found run a second pass where the
3746 prologue is not skipped (SKIP is false). */
059acae7 3747
8be455d7
JK
3748 skip = 1;
3749 force_skip = 1;
059acae7 3750
8be455d7
JK
3751 /* Be conservative - allow direct PC (without skipping prologue) only if we
3752 have proven the CU (Compilation Unit) supports it. sal->SYMTAB does not
3753 have to be set by the caller so we use SYM instead. */
08be3fe3
DE
3754 if (sym != NULL
3755 && COMPUNIT_LOCATIONS_VALID (SYMTAB_COMPUNIT (symbol_symtab (sym))))
8be455d7 3756 force_skip = 0;
059acae7 3757
8be455d7
JK
3758 saved_pc = pc;
3759 do
c906108c 3760 {
8be455d7 3761 pc = saved_pc;
4309257c 3762
8be455d7
JK
3763 /* If the function is in an unmapped overlay, use its unmapped LMA address,
3764 so that gdbarch_skip_prologue has something unique to work on. */
3765 if (section_is_overlay (section) && !section_is_mapped (section))
3766 pc = overlay_unmapped_address (pc, section);
3767
3768 /* Skip "first line" of function (which is actually its prologue). */
3769 pc += gdbarch_deprecated_function_start_offset (gdbarch);
591a12a1
UW
3770 if (gdbarch_skip_entrypoint_p (gdbarch))
3771 pc = gdbarch_skip_entrypoint (gdbarch, pc);
8be455d7 3772 if (skip)
46a62268 3773 pc = gdbarch_skip_prologue_noexcept (gdbarch, pc);
8be455d7
JK
3774
3775 /* For overlays, map pc back into its mapped VMA range. */
3776 pc = overlay_mapped_address (pc, section);
3777
3778 /* Calculate line number. */
059acae7 3779 start_sal = find_pc_sect_line (pc, section, 0);
8be455d7
JK
3780
3781 /* Check if gdbarch_skip_prologue left us in mid-line, and the next
3782 line is still part of the same function. */
3783 if (skip && start_sal.pc != pc
2b1ffcfd 3784 && (sym ? (BLOCK_ENTRY_PC (SYMBOL_BLOCK_VALUE (sym)) <= start_sal.end
b1d96efd 3785 && start_sal.end < BLOCK_END (SYMBOL_BLOCK_VALUE (sym)))
7cbd4a93
TT
3786 : (lookup_minimal_symbol_by_pc_section (start_sal.end, section).minsym
3787 == lookup_minimal_symbol_by_pc_section (pc, section).minsym)))
8be455d7
JK
3788 {
3789 /* First pc of next line */
3790 pc = start_sal.end;
3791 /* Recalculate the line number (might not be N+1). */
3792 start_sal = find_pc_sect_line (pc, section, 0);
3793 }
3794
3795 /* On targets with executable formats that don't have a concept of
3796 constructors (ELF with .init has, PE doesn't), gcc emits a call
3797 to `__main' in `main' between the prologue and before user
3798 code. */
3799 if (gdbarch_skip_main_prologue_p (gdbarch)
7ccffd7c 3800 && name && strcmp_iw (name, "main") == 0)
8be455d7
JK
3801 {
3802 pc = gdbarch_skip_main_prologue (gdbarch, pc);
3803 /* Recalculate the line number (might not be N+1). */
3804 start_sal = find_pc_sect_line (pc, section, 0);
3805 force_skip = 1;
3806 }
4309257c 3807 }
8be455d7 3808 while (!force_skip && skip--);
4309257c 3809
8c7a1ee8
EZ
3810 /* If we still don't have a valid source line, try to find the first
3811 PC in the lineinfo table that belongs to the same function. This
3812 happens with COFF debug info, which does not seem to have an
3813 entry in lineinfo table for the code after the prologue which has
3814 no direct relation to source. For example, this was found to be
3815 the case with the DJGPP target using "gcc -gcoff" when the
3816 compiler inserted code after the prologue to make sure the stack
3817 is aligned. */
8be455d7 3818 if (!force_skip && sym && start_sal.symtab == NULL)
8c7a1ee8 3819 {
08be3fe3 3820 pc = skip_prologue_using_lineinfo (pc, symbol_symtab (sym));
8c7a1ee8 3821 /* Recalculate the line number. */
059acae7 3822 start_sal = find_pc_sect_line (pc, section, 0);
8c7a1ee8
EZ
3823 }
3824
059acae7
UW
3825 /* If we're already past the prologue, leave SAL unchanged. Otherwise
3826 forward SAL to the end of the prologue. */
3827 if (sal->pc >= pc)
3828 return;
3829
3830 sal->pc = pc;
3831 sal->section = section;
3832
3833 /* Unless the explicit_line flag was set, update the SAL line
3834 and symtab to correspond to the modified PC location. */
3835 if (sal->explicit_line)
3836 return;
3837
3838 sal->symtab = start_sal.symtab;
3839 sal->line = start_sal.line;
3840 sal->end = start_sal.end;
c906108c 3841
edb3359d
DJ
3842 /* Check if we are now inside an inlined function. If we can,
3843 use the call site of the function instead. */
059acae7 3844 b = block_for_pc_sect (sal->pc, sal->section);
edb3359d
DJ
3845 function_block = NULL;
3846 while (b != NULL)
3847 {
3848 if (BLOCK_FUNCTION (b) != NULL && block_inlined_p (b))
3849 function_block = b;
3850 else if (BLOCK_FUNCTION (b) != NULL)
3851 break;
3852 b = BLOCK_SUPERBLOCK (b);
3853 }
3854 if (function_block != NULL
3855 && SYMBOL_LINE (BLOCK_FUNCTION (function_block)) != 0)
3856 {
059acae7 3857 sal->line = SYMBOL_LINE (BLOCK_FUNCTION (function_block));
08be3fe3 3858 sal->symtab = symbol_symtab (BLOCK_FUNCTION (function_block));
edb3359d 3859 }
c906108c 3860}
50641945 3861
f1f58506
DE
3862/* Given PC at the function's start address, attempt to find the
3863 prologue end using SAL information. Return zero if the skip fails.
3864
3865 A non-optimized prologue traditionally has one SAL for the function
3866 and a second for the function body. A single line function has
3867 them both pointing at the same line.
3868
3869 An optimized prologue is similar but the prologue may contain
3870 instructions (SALs) from the instruction body. Need to skip those
3871 while not getting into the function body.
3872
3873 The functions end point and an increasing SAL line are used as
3874 indicators of the prologue's endpoint.
3875
3876 This code is based on the function refine_prologue_limit
3877 (found in ia64). */
3878
3879CORE_ADDR
3880skip_prologue_using_sal (struct gdbarch *gdbarch, CORE_ADDR func_addr)
3881{
3882 struct symtab_and_line prologue_sal;
3883 CORE_ADDR start_pc;
3884 CORE_ADDR end_pc;
3885 const struct block *bl;
3886
3887 /* Get an initial range for the function. */
3888 find_pc_partial_function (func_addr, NULL, &start_pc, &end_pc);
3889 start_pc += gdbarch_deprecated_function_start_offset (gdbarch);
3890
3891 prologue_sal = find_pc_line (start_pc, 0);
3892 if (prologue_sal.line != 0)
3893 {
3894 /* For languages other than assembly, treat two consecutive line
3895 entries at the same address as a zero-instruction prologue.
3896 The GNU assembler emits separate line notes for each instruction
3897 in a multi-instruction macro, but compilers generally will not
3898 do this. */
3899 if (prologue_sal.symtab->language != language_asm)
3900 {
8435453b 3901 struct linetable *linetable = SYMTAB_LINETABLE (prologue_sal.symtab);
f1f58506
DE
3902 int idx = 0;
3903
3904 /* Skip any earlier lines, and any end-of-sequence marker
3905 from a previous function. */
3906 while (linetable->item[idx].pc != prologue_sal.pc
3907 || linetable->item[idx].line == 0)
3908 idx++;
3909
3910 if (idx+1 < linetable->nitems
3911 && linetable->item[idx+1].line != 0
3912 && linetable->item[idx+1].pc == start_pc)
3913 return start_pc;
3914 }
3915
3916 /* If there is only one sal that covers the entire function,
3917 then it is probably a single line function, like
3918 "foo(){}". */
3919 if (prologue_sal.end >= end_pc)
3920 return 0;
3921
3922 while (prologue_sal.end < end_pc)
3923 {
3924 struct symtab_and_line sal;
3925
3926 sal = find_pc_line (prologue_sal.end, 0);
3927 if (sal.line == 0)
3928 break;
3929 /* Assume that a consecutive SAL for the same (or larger)
3930 line mark the prologue -> body transition. */
3931 if (sal.line >= prologue_sal.line)
3932 break;
3933 /* Likewise if we are in a different symtab altogether
3934 (e.g. within a file included via #include).  */
3935 if (sal.symtab != prologue_sal.symtab)
3936 break;
3937
3938 /* The line number is smaller. Check that it's from the
3939 same function, not something inlined. If it's inlined,
3940 then there is no point comparing the line numbers. */
3941 bl = block_for_pc (prologue_sal.end);
3942 while (bl)
3943 {
3944 if (block_inlined_p (bl))
3945 break;
3946 if (BLOCK_FUNCTION (bl))
3947 {
3948 bl = NULL;
3949 break;
3950 }
3951 bl = BLOCK_SUPERBLOCK (bl);
3952 }
3953 if (bl != NULL)
3954 break;
3955
3956 /* The case in which compiler's optimizer/scheduler has
3957 moved instructions into the prologue. We look ahead in
3958 the function looking for address ranges whose
3959 corresponding line number is less the first one that we
3960 found for the function. This is more conservative then
3961 refine_prologue_limit which scans a large number of SALs
3962 looking for any in the prologue. */
3963 prologue_sal = sal;
3964 }
3965 }
3966
3967 if (prologue_sal.end < end_pc)
3968 /* Return the end of this line, or zero if we could not find a
3969 line. */
3970 return prologue_sal.end;
3971 else
3972 /* Don't return END_PC, which is past the end of the function. */
3973 return prologue_sal.pc;
3974}
bf223d3e
PA
3975
3976/* See symtab.h. */
3977
3978symbol *
3979find_function_alias_target (bound_minimal_symbol msymbol)
3980{
4024cf2b
PA
3981 CORE_ADDR func_addr;
3982 if (!msymbol_is_function (msymbol.objfile, msymbol.minsym, &func_addr))
bf223d3e
PA
3983 return NULL;
3984
4024cf2b 3985 symbol *sym = find_pc_function (func_addr);
bf223d3e
PA
3986 if (sym != NULL
3987 && SYMBOL_CLASS (sym) == LOC_BLOCK
2b1ffcfd 3988 && BLOCK_ENTRY_PC (SYMBOL_BLOCK_VALUE (sym)) == func_addr)
bf223d3e
PA
3989 return sym;
3990
3991 return NULL;
3992}
3993
f1f58506 3994\f
c906108c
SS
3995/* If P is of the form "operator[ \t]+..." where `...' is
3996 some legitimate operator text, return a pointer to the
3997 beginning of the substring of the operator text.
3998 Otherwise, return "". */
eca864fe 3999
96142726
TT
4000static const char *
4001operator_chars (const char *p, const char **end)
c906108c
SS
4002{
4003 *end = "";
8090b426 4004 if (!startswith (p, CP_OPERATOR_STR))
c906108c 4005 return *end;
8090b426 4006 p += CP_OPERATOR_LEN;
c906108c
SS
4007
4008 /* Don't get faked out by `operator' being part of a longer
4009 identifier. */
c5aa993b 4010 if (isalpha (*p) || *p == '_' || *p == '$' || *p == '\0')
c906108c
SS
4011 return *end;
4012
4013 /* Allow some whitespace between `operator' and the operator symbol. */
4014 while (*p == ' ' || *p == '\t')
4015 p++;
4016
c378eb4e 4017 /* Recognize 'operator TYPENAME'. */
c906108c 4018
c5aa993b 4019 if (isalpha (*p) || *p == '_' || *p == '$')
c906108c 4020 {
96142726 4021 const char *q = p + 1;
433759f7 4022
c5aa993b 4023 while (isalnum (*q) || *q == '_' || *q == '$')
c906108c
SS
4024 q++;
4025 *end = q;
4026 return p;
4027 }
4028
53e8ad3d
MS
4029 while (*p)
4030 switch (*p)
4031 {
4032 case '\\': /* regexp quoting */
4033 if (p[1] == '*')
4034 {
3e43a32a 4035 if (p[2] == '=') /* 'operator\*=' */
53e8ad3d
MS
4036 *end = p + 3;
4037 else /* 'operator\*' */
4038 *end = p + 2;
4039 return p;
4040 }
4041 else if (p[1] == '[')
4042 {
4043 if (p[2] == ']')
3e43a32a
MS
4044 error (_("mismatched quoting on brackets, "
4045 "try 'operator\\[\\]'"));
53e8ad3d
MS
4046 else if (p[2] == '\\' && p[3] == ']')
4047 {
4048 *end = p + 4; /* 'operator\[\]' */
4049 return p;
4050 }
4051 else
8a3fe4f8 4052 error (_("nothing is allowed between '[' and ']'"));
53e8ad3d 4053 }
9af17804 4054 else
53e8ad3d 4055 {
c378eb4e 4056 /* Gratuitous qoute: skip it and move on. */
53e8ad3d
MS
4057 p++;
4058 continue;
4059 }
4060 break;
4061 case '!':
4062 case '=':
4063 case '*':
4064 case '/':
4065 case '%':
4066 case '^':
4067 if (p[1] == '=')
4068 *end = p + 2;
4069 else
4070 *end = p + 1;
4071 return p;
4072 case '<':
4073 case '>':
4074 case '+':
4075 case '-':
4076 case '&':
4077 case '|':
4078 if (p[0] == '-' && p[1] == '>')
4079 {
c378eb4e 4080 /* Struct pointer member operator 'operator->'. */
53e8ad3d
MS
4081 if (p[2] == '*')
4082 {
4083 *end = p + 3; /* 'operator->*' */
4084 return p;
4085 }
4086 else if (p[2] == '\\')
4087 {
4088 *end = p + 4; /* Hopefully 'operator->\*' */
4089 return p;
4090 }
4091 else
4092 {
4093 *end = p + 2; /* 'operator->' */
4094 return p;
4095 }
4096 }
4097 if (p[1] == '=' || p[1] == p[0])
4098 *end = p + 2;
4099 else
4100 *end = p + 1;
4101 return p;
4102 case '~':
4103 case ',':
c5aa993b 4104 *end = p + 1;
53e8ad3d
MS
4105 return p;
4106 case '(':
4107 if (p[1] != ')')
3e43a32a
MS
4108 error (_("`operator ()' must be specified "
4109 "without whitespace in `()'"));
c5aa993b 4110 *end = p + 2;
53e8ad3d
MS
4111 return p;
4112 case '?':
4113 if (p[1] != ':')
3e43a32a
MS
4114 error (_("`operator ?:' must be specified "
4115 "without whitespace in `?:'"));
53e8ad3d
MS
4116 *end = p + 2;
4117 return p;
4118 case '[':
4119 if (p[1] != ']')
3e43a32a
MS
4120 error (_("`operator []' must be specified "
4121 "without whitespace in `[]'"));
53e8ad3d
MS
4122 *end = p + 2;
4123 return p;
4124 default:
8a3fe4f8 4125 error (_("`operator %s' not supported"), p);
53e8ad3d
MS
4126 break;
4127 }
4128
c906108c
SS
4129 *end = "";
4130 return *end;
4131}
c906108c 4132\f
c5aa993b 4133
9fdc877b
DE
4134/* Data structure to maintain printing state for output_source_filename. */
4135
4136struct output_source_filename_data
4137{
4138 /* Cache of what we've seen so far. */
4139 struct filename_seen_cache *filename_seen_cache;
4140
4141 /* Flag of whether we're printing the first one. */
4142 int first;
4143};
4144
c94fdfd0 4145/* Slave routine for sources_info. Force line breaks at ,'s.
9fdc877b
DE
4146 NAME is the name to print.
4147 DATA contains the state for printing and watching for duplicates. */
eca864fe 4148
c94fdfd0 4149static void
9fdc877b
DE
4150output_source_filename (const char *name,
4151 struct output_source_filename_data *data)
c94fdfd0
EZ
4152{
4153 /* Since a single source file can result in several partial symbol
4154 tables, we need to avoid printing it more than once. Note: if
4155 some of the psymtabs are read in and some are not, it gets
4156 printed both under "Source files for which symbols have been
4157 read" and "Source files for which symbols will be read in on
4158 demand". I consider this a reasonable way to deal with the
4159 situation. I'm not sure whether this can also happen for
4160 symtabs; it doesn't hurt to check. */
4161
4162 /* Was NAME already seen? */
bbf2f4df 4163 if (data->filename_seen_cache->seen (name))
c94fdfd0
EZ
4164 {
4165 /* Yes; don't print it again. */
4166 return;
4167 }
9fdc877b 4168
c94fdfd0 4169 /* No; print it and reset *FIRST. */
9fdc877b
DE
4170 if (! data->first)
4171 printf_filtered (", ");
4172 data->first = 0;
c906108c
SS
4173
4174 wrap_here ("");
4175 fputs_filtered (name, gdb_stdout);
c5aa993b 4176}
c906108c 4177
ccefe4c4 4178/* A callback for map_partial_symbol_filenames. */
eca864fe 4179
ccefe4c4 4180static void
533a737e 4181output_partial_symbol_filename (const char *filename, const char *fullname,
ccefe4c4
TT
4182 void *data)
4183{
19ba03f4
SM
4184 output_source_filename (fullname ? fullname : filename,
4185 (struct output_source_filename_data *) data);
ccefe4c4
TT
4186}
4187
c906108c 4188static void
1d12d88f 4189info_sources_command (const char *ignore, int from_tty)
c906108c 4190{
43f3e411 4191 struct compunit_symtab *cu;
52f0bd74 4192 struct symtab *s;
52f0bd74 4193 struct objfile *objfile;
9fdc877b 4194 struct output_source_filename_data data;
c5aa993b 4195
c906108c
SS
4196 if (!have_full_symbols () && !have_partial_symbols ())
4197 {
8a3fe4f8 4198 error (_("No symbol table is loaded. Use the \"file\" command."));
c906108c 4199 }
c5aa993b 4200
bbf2f4df
PA
4201 filename_seen_cache filenames_seen;
4202
4203 data.filename_seen_cache = &filenames_seen;
9fdc877b 4204
c906108c
SS
4205 printf_filtered ("Source files for which symbols have been read in:\n\n");
4206
9fdc877b 4207 data.first = 1;
43f3e411 4208 ALL_FILETABS (objfile, cu, s)
c5aa993b 4209 {
d092d1a2 4210 const char *fullname = symtab_to_fullname (s);
433759f7 4211
f35a17b5 4212 output_source_filename (fullname, &data);
c5aa993b 4213 }
c906108c 4214 printf_filtered ("\n\n");
c5aa993b 4215
3e43a32a
MS
4216 printf_filtered ("Source files for which symbols "
4217 "will be read in on demand:\n\n");
c906108c 4218
bbf2f4df 4219 filenames_seen.clear ();
9fdc877b 4220 data.first = 1;
bb4142cf
DE
4221 map_symbol_filenames (output_partial_symbol_filename, &data,
4222 1 /*need_fullname*/);
c906108c
SS
4223 printf_filtered ("\n");
4224}
4225
fbd9ab74
JK
4226/* Compare FILE against all the NFILES entries of FILES. If BASENAMES is
4227 non-zero compare only lbasename of FILES. */
4228
c906108c 4229static int
96142726 4230file_matches (const char *file, const char *files[], int nfiles, int basenames)
c906108c
SS
4231{
4232 int i;
4233
4234 if (file != NULL && nfiles != 0)
4235 {
4236 for (i = 0; i < nfiles; i++)
c5aa993b 4237 {
fbd9ab74
JK
4238 if (compare_filenames_for_search (file, (basenames
4239 ? lbasename (files[i])
4240 : files[i])))
c5aa993b
JM
4241 return 1;
4242 }
c906108c
SS
4243 }
4244 else if (nfiles == 0)
4245 return 1;
4246 return 0;
4247}
4248
b52109bc 4249/* Helper function for sort_search_symbols_remove_dups and qsort. Can only
434d2d4f 4250 sort symbols, not minimal symbols. */
eca864fe 4251
b9c04fb2
TT
4252int
4253symbol_search::compare_search_syms (const symbol_search &sym_a,
4254 const symbol_search &sym_b)
434d2d4f 4255{
b52109bc
DE
4256 int c;
4257
b9c04fb2
TT
4258 c = FILENAME_CMP (symbol_symtab (sym_a.symbol)->filename,
4259 symbol_symtab (sym_b.symbol)->filename);
b52109bc
DE
4260 if (c != 0)
4261 return c;
434d2d4f 4262
b9c04fb2
TT
4263 if (sym_a.block != sym_b.block)
4264 return sym_a.block - sym_b.block;
b52109bc 4265
b9c04fb2
TT
4266 return strcmp (SYMBOL_PRINT_NAME (sym_a.symbol),
4267 SYMBOL_PRINT_NAME (sym_b.symbol));
434d2d4f
DJ
4268}
4269
12615cba
PW
4270/* Returns true if the type_name of symbol_type of SYM matches TREG.
4271 If SYM has no symbol_type or symbol_name, returns false. */
4272
4273bool
4274treg_matches_sym_type_name (const compiled_regex &treg,
4275 const struct symbol *sym)
4276{
4277 struct type *sym_type;
4278 std::string printed_sym_type_name;
4279
4280 if (symbol_lookup_debug > 1)
4281 {
4282 fprintf_unfiltered (gdb_stdlog,
4283 "treg_matches_sym_type_name\n sym %s\n",
4284 SYMBOL_NATURAL_NAME (sym));
4285 }
4286
4287 sym_type = SYMBOL_TYPE (sym);
4288 if (sym_type == NULL)
4289 return false;
4290
4291 if (language_mode == language_mode_auto)
4292 {
4293 scoped_restore_current_language l;
4294
4295 set_language (SYMBOL_LANGUAGE (sym));
4296 printed_sym_type_name = type_to_string (sym_type);
4297 }
4298 else
4299 printed_sym_type_name = type_to_string (sym_type);
4300
4301 if (symbol_lookup_debug > 1)
4302 {
4303 fprintf_unfiltered (gdb_stdlog,
4304 " sym_type_name %s\n",
4305 printed_sym_type_name.c_str ());
4306 }
4307
4308
4309 if (printed_sym_type_name.empty ())
4310 return false;
4311
4312 return treg.exec (printed_sym_type_name.c_str (), 0, NULL, 0) == 0;
4313}
4314
4315
b9c04fb2 4316/* Sort the symbols in RESULT and remove duplicates. */
b52109bc
DE
4317
4318static void
b9c04fb2 4319sort_search_symbols_remove_dups (std::vector<symbol_search> *result)
434d2d4f 4320{
b9c04fb2
TT
4321 std::sort (result->begin (), result->end ());
4322 result->erase (std::unique (result->begin (), result->end ()),
4323 result->end ());
434d2d4f 4324}
5bd98722 4325
c906108c 4326/* Search the symbol table for matches to the regular expression REGEXP,
b9c04fb2 4327 returning the results.
c906108c
SS
4328
4329 Only symbols of KIND are searched:
e8930875 4330 VARIABLES_DOMAIN - search all symbols, excluding functions, type names,
12615cba
PW
4331 and constants (enums).
4332 if T_REGEXP is not NULL, only returns var that have
4333 a type matching regular expression T_REGEXP.
176620f1
EZ
4334 FUNCTIONS_DOMAIN - search all functions
4335 TYPES_DOMAIN - search all type names
7b08b9eb 4336 ALL_DOMAIN - an internal error for this function
c906108c 4337
b52109bc
DE
4338 Within each file the results are sorted locally; each symtab's global and
4339 static blocks are separately alphabetized.
4340 Duplicate entries are removed. */
c378eb4e 4341
b9c04fb2 4342std::vector<symbol_search>
96142726 4343search_symbols (const char *regexp, enum search_domain kind,
12615cba 4344 const char *t_regexp,
b9c04fb2 4345 int nfiles, const char *files[])
c906108c 4346{
43f3e411 4347 struct compunit_symtab *cust;
346d1dfe 4348 const struct blockvector *bv;
52f0bd74
AC
4349 struct block *b;
4350 int i = 0;
8157b174 4351 struct block_iterator iter;
52f0bd74 4352 struct symbol *sym;
c906108c
SS
4353 struct objfile *objfile;
4354 struct minimal_symbol *msymbol;
c906108c 4355 int found_misc = 0;
bc043ef3 4356 static const enum minimal_symbol_type types[]
e8930875 4357 = {mst_data, mst_text, mst_abs};
bc043ef3 4358 static const enum minimal_symbol_type types2[]
e8930875 4359 = {mst_bss, mst_file_text, mst_abs};
bc043ef3 4360 static const enum minimal_symbol_type types3[]
e8930875 4361 = {mst_file_data, mst_solib_trampoline, mst_abs};
bc043ef3 4362 static const enum minimal_symbol_type types4[]
e8930875 4363 = {mst_file_bss, mst_text_gnu_ifunc, mst_abs};
c906108c
SS
4364 enum minimal_symbol_type ourtype;
4365 enum minimal_symbol_type ourtype2;
4366 enum minimal_symbol_type ourtype3;
4367 enum minimal_symbol_type ourtype4;
b9c04fb2 4368 std::vector<symbol_search> result;
2d7cc5c7 4369 gdb::optional<compiled_regex> preg;
12615cba 4370 gdb::optional<compiled_regex> treg;
c906108c 4371
e8930875
JK
4372 gdb_assert (kind <= TYPES_DOMAIN);
4373
8903c50d
TT
4374 ourtype = types[kind];
4375 ourtype2 = types2[kind];
4376 ourtype3 = types3[kind];
4377 ourtype4 = types4[kind];
c906108c 4378
c906108c
SS
4379 if (regexp != NULL)
4380 {
4381 /* Make sure spacing is right for C++ operators.
4382 This is just a courtesy to make the matching less sensitive
4383 to how many spaces the user leaves between 'operator'
c378eb4e 4384 and <TYPENAME> or <OPERATOR>. */
96142726
TT
4385 const char *opend;
4386 const char *opname = operator_chars (regexp, &opend);
433759f7 4387
c906108c 4388 if (*opname)
c5aa993b 4389 {
3e43a32a
MS
4390 int fix = -1; /* -1 means ok; otherwise number of
4391 spaces needed. */
433759f7 4392
c5aa993b
JM
4393 if (isalpha (*opname) || *opname == '_' || *opname == '$')
4394 {
c378eb4e 4395 /* There should 1 space between 'operator' and 'TYPENAME'. */
c5aa993b
JM
4396 if (opname[-1] != ' ' || opname[-2] == ' ')
4397 fix = 1;
4398 }
4399 else
4400 {
c378eb4e 4401 /* There should 0 spaces between 'operator' and 'OPERATOR'. */
c5aa993b
JM
4402 if (opname[-1] == ' ')
4403 fix = 0;
4404 }
c378eb4e 4405 /* If wrong number of spaces, fix it. */
c5aa993b
JM
4406 if (fix >= 0)
4407 {
045f55a6 4408 char *tmp = (char *) alloca (8 + fix + strlen (opname) + 1);
433759f7 4409
c5aa993b
JM
4410 sprintf (tmp, "operator%.*s%s", fix, " ", opname);
4411 regexp = tmp;
4412 }
4413 }
4414
2d7cc5c7
PA
4415 int cflags = REG_NOSUB | (case_sensitivity == case_sensitive_off
4416 ? REG_ICASE : 0);
4417 preg.emplace (regexp, cflags, _("Invalid regexp"));
c906108c
SS
4418 }
4419
12615cba
PW
4420 if (t_regexp != NULL)
4421 {
4422 int cflags = REG_NOSUB | (case_sensitivity == case_sensitive_off
4423 ? REG_ICASE : 0);
4424 treg.emplace (t_regexp, cflags, _("Invalid regexp"));
4425 }
4426
c906108c
SS
4427 /* Search through the partial symtabs *first* for all symbols
4428 matching the regexp. That way we don't have to reproduce all of
c378eb4e 4429 the machinery below. */
14bc53a8
PA
4430 expand_symtabs_matching ([&] (const char *filename, bool basenames)
4431 {
4432 return file_matches (filename, files, nfiles,
4433 basenames);
4434 },
b5ec771e 4435 lookup_name_info::match_any (),
14bc53a8
PA
4436 [&] (const char *symname)
4437 {
12615cba
PW
4438 return (!preg.has_value ()
4439 || preg->exec (symname,
4440 0, NULL, 0) == 0);
14bc53a8
PA
4441 },
4442 NULL,
4443 kind);
c906108c
SS
4444
4445 /* Here, we search through the minimal symbol tables for functions
4446 and variables that match, and force their symbols to be read.
4447 This is in particular necessary for demangled variable names,
4448 which are no longer put into the partial symbol tables.
4449 The symbol will then be found during the scan of symtabs below.
4450
4451 For functions, find_pc_symtab should succeed if we have debug info
422d65e7
DE
4452 for the function, for variables we have to call
4453 lookup_symbol_in_objfile_from_linkage_name to determine if the variable
4454 has debug info.
c906108c 4455 If the lookup fails, set found_misc so that we will rescan to print
422d65e7
DE
4456 any matching symbols without debug info.
4457 We only search the objfile the msymbol came from, we no longer search
4458 all objfiles. In large programs (1000s of shared libs) searching all
4459 objfiles is not worth the pain. */
c906108c 4460
176620f1 4461 if (nfiles == 0 && (kind == VARIABLES_DOMAIN || kind == FUNCTIONS_DOMAIN))
c906108c
SS
4462 {
4463 ALL_MSYMBOLS (objfile, msymbol)
c5aa993b 4464 {
89295b4d
PP
4465 QUIT;
4466
422d65e7
DE
4467 if (msymbol->created_by_gdb)
4468 continue;
4469
d50bd42b
DE
4470 if (MSYMBOL_TYPE (msymbol) == ourtype
4471 || MSYMBOL_TYPE (msymbol) == ourtype2
4472 || MSYMBOL_TYPE (msymbol) == ourtype3
4473 || MSYMBOL_TYPE (msymbol) == ourtype4)
c5aa993b 4474 {
12615cba 4475 if (!preg.has_value ()
2d7cc5c7
PA
4476 || preg->exec (MSYMBOL_NATURAL_NAME (msymbol), 0,
4477 NULL, 0) == 0)
c5aa993b 4478 {
422d65e7
DE
4479 /* Note: An important side-effect of these lookup functions
4480 is to expand the symbol table if msymbol is found, for the
43f3e411 4481 benefit of the next loop on ALL_COMPUNITS. */
422d65e7 4482 if (kind == FUNCTIONS_DOMAIN
43f3e411
DE
4483 ? (find_pc_compunit_symtab
4484 (MSYMBOL_VALUE_ADDRESS (objfile, msymbol)) == NULL)
422d65e7 4485 : (lookup_symbol_in_objfile_from_linkage_name
efd66ac6 4486 (objfile, MSYMBOL_LINKAGE_NAME (msymbol), VAR_DOMAIN)
d12307c1 4487 .symbol == NULL))
422d65e7 4488 found_misc = 1;
c5aa993b
JM
4489 }
4490 }
4491 }
c906108c
SS
4492 }
4493
43f3e411 4494 ALL_COMPUNITS (objfile, cust)
c5aa993b 4495 {
43f3e411 4496 bv = COMPUNIT_BLOCKVECTOR (cust);
d50bd42b
DE
4497 for (i = GLOBAL_BLOCK; i <= STATIC_BLOCK; i++)
4498 {
d50bd42b
DE
4499 b = BLOCKVECTOR_BLOCK (bv, i);
4500 ALL_BLOCK_SYMBOLS (b, iter, sym)
4501 {
08be3fe3 4502 struct symtab *real_symtab = symbol_symtab (sym);
d50bd42b
DE
4503
4504 QUIT;
4505
fbd9ab74
JK
4506 /* Check first sole REAL_SYMTAB->FILENAME. It does not need to be
4507 a substring of symtab_to_fullname as it may contain "./" etc. */
4508 if ((file_matches (real_symtab->filename, files, nfiles, 0)
4509 || ((basenames_may_differ
4510 || file_matches (lbasename (real_symtab->filename),
4511 files, nfiles, 1))
4512 && file_matches (symtab_to_fullname (real_symtab),
4513 files, nfiles, 0)))
12615cba 4514 && ((!preg.has_value ()
2d7cc5c7
PA
4515 || preg->exec (SYMBOL_NATURAL_NAME (sym), 0,
4516 NULL, 0) == 0)
d50bd42b
DE
4517 && ((kind == VARIABLES_DOMAIN
4518 && SYMBOL_CLASS (sym) != LOC_TYPEDEF
4519 && SYMBOL_CLASS (sym) != LOC_UNRESOLVED
4520 && SYMBOL_CLASS (sym) != LOC_BLOCK
4521 /* LOC_CONST can be used for more than just enums,
4522 e.g., c++ static const members.
4523 We only want to skip enums here. */
4524 && !(SYMBOL_CLASS (sym) == LOC_CONST
01465b56 4525 && (TYPE_CODE (SYMBOL_TYPE (sym))
12615cba
PW
4526 == TYPE_CODE_ENUM))
4527 && (!treg.has_value ()
4528 || treg_matches_sym_type_name (*treg, sym)))
4529 || (kind == FUNCTIONS_DOMAIN
4530 && SYMBOL_CLASS (sym) == LOC_BLOCK
4531 && (!treg.has_value ()
4532 || treg_matches_sym_type_name (*treg, sym)))
d50bd42b
DE
4533 || (kind == TYPES_DOMAIN
4534 && SYMBOL_CLASS (sym) == LOC_TYPEDEF))))
4535 {
4536 /* match */
b9c04fb2 4537 result.emplace_back (i, sym);
d50bd42b
DE
4538 }
4539 }
d50bd42b 4540 }
c5aa993b 4541 }
c906108c 4542
b9c04fb2
TT
4543 if (!result.empty ())
4544 sort_search_symbols_remove_dups (&result);
b52109bc 4545
c906108c 4546 /* If there are no eyes, avoid all contact. I mean, if there are
01465b56 4547 no debug symbols, then add matching minsyms. */
c906108c 4548
422d65e7 4549 if (found_misc || (nfiles == 0 && kind != FUNCTIONS_DOMAIN))
c906108c
SS
4550 {
4551 ALL_MSYMBOLS (objfile, msymbol)
c5aa993b 4552 {
89295b4d
PP
4553 QUIT;
4554
422d65e7
DE
4555 if (msymbol->created_by_gdb)
4556 continue;
4557
d50bd42b
DE
4558 if (MSYMBOL_TYPE (msymbol) == ourtype
4559 || MSYMBOL_TYPE (msymbol) == ourtype2
4560 || MSYMBOL_TYPE (msymbol) == ourtype3
4561 || MSYMBOL_TYPE (msymbol) == ourtype4)
c5aa993b 4562 {
12615cba
PW
4563 /* If the user wants to see var matching a type regexp,
4564 then never give a minimal symbol. */
4565 if (kind != VARIABLES_DOMAIN
4566 && !treg.has_value () /* minimal symbol has never a type ???? */
4567 && (!preg.has_value ()
4568 || preg->exec (MSYMBOL_NATURAL_NAME (msymbol), 0,
4569 NULL, 0) == 0))
c5aa993b 4570 {
422d65e7
DE
4571 /* For functions we can do a quick check of whether the
4572 symbol might be found via find_pc_symtab. */
4573 if (kind != FUNCTIONS_DOMAIN
43f3e411
DE
4574 || (find_pc_compunit_symtab
4575 (MSYMBOL_VALUE_ADDRESS (objfile, msymbol)) == NULL))
c5aa993b 4576 {
422d65e7 4577 if (lookup_symbol_in_objfile_from_linkage_name
efd66ac6 4578 (objfile, MSYMBOL_LINKAGE_NAME (msymbol), VAR_DOMAIN)
d12307c1 4579 .symbol == NULL)
c5aa993b
JM
4580 {
4581 /* match */
b9c04fb2 4582 result.emplace_back (i, msymbol, objfile);
c5aa993b
JM
4583 }
4584 }
4585 }
4586 }
4587 }
c906108c
SS
4588 }
4589
b9c04fb2 4590 return result;
c906108c
SS
4591}
4592
4593/* Helper function for symtab_symbol_info, this function uses
4594 the data returned from search_symbols() to print information
c7dcbf88
AA
4595 regarding the match to gdb_stdout. If LAST is not NULL,
4596 print file and line number information for the symbol as
4597 well. Skip printing the filename if it matches LAST. */
c378eb4e 4598
c906108c 4599static void
8903c50d 4600print_symbol_info (enum search_domain kind,
d01060f0 4601 struct symbol *sym,
05cba821 4602 int block, const char *last)
c906108c 4603{
08be3fe3 4604 struct symtab *s = symbol_symtab (sym);
05cba821 4605
c7dcbf88 4606 if (last != NULL)
c906108c 4607 {
c7dcbf88 4608 const char *s_filename = symtab_to_filename_for_display (s);
c906108c 4609
c7dcbf88
AA
4610 if (filename_cmp (last, s_filename) != 0)
4611 {
4612 fputs_filtered ("\nFile ", gdb_stdout);
4613 fputs_filtered (s_filename, gdb_stdout);
4614 fputs_filtered (":\n", gdb_stdout);
4615 }
4616
4617 if (SYMBOL_LINE (sym) != 0)
4618 printf_filtered ("%d:\t", SYMBOL_LINE (sym));
4619 else
4620 puts_filtered ("\t");
4621 }
b744723f 4622
176620f1 4623 if (kind != TYPES_DOMAIN && block == STATIC_BLOCK)
c906108c 4624 printf_filtered ("static ");
c5aa993b 4625
c378eb4e 4626 /* Typedef that is not a C++ class. */
176620f1
EZ
4627 if (kind == TYPES_DOMAIN
4628 && SYMBOL_DOMAIN (sym) != STRUCT_DOMAIN)
a5238fbc 4629 typedef_print (SYMBOL_TYPE (sym), sym, gdb_stdout);
c378eb4e 4630 /* variable, func, or typedef-that-is-c++-class. */
d50bd42b
DE
4631 else if (kind < TYPES_DOMAIN
4632 || (kind == TYPES_DOMAIN
4633 && SYMBOL_DOMAIN (sym) == STRUCT_DOMAIN))
c906108c
SS
4634 {
4635 type_print (SYMBOL_TYPE (sym),
c5aa993b 4636 (SYMBOL_CLASS (sym) == LOC_TYPEDEF
de5ad195 4637 ? "" : SYMBOL_PRINT_NAME (sym)),
c5aa993b 4638 gdb_stdout, 0);
c906108c
SS
4639
4640 printf_filtered (";\n");
4641 }
c906108c
SS
4642}
4643
4644/* This help function for symtab_symbol_info() prints information
c378eb4e
MS
4645 for non-debugging symbols to gdb_stdout. */
4646
c906108c 4647static void
7c7b6655 4648print_msymbol_info (struct bound_minimal_symbol msymbol)
c906108c 4649{
7c7b6655 4650 struct gdbarch *gdbarch = get_objfile_arch (msymbol.objfile);
3ac4495a
MS
4651 char *tmp;
4652
d80b854b 4653 if (gdbarch_addr_bit (gdbarch) <= 32)
77e371c0 4654 tmp = hex_string_custom (BMSYMBOL_VALUE_ADDRESS (msymbol)
bb599908
PH
4655 & (CORE_ADDR) 0xffffffff,
4656 8);
3ac4495a 4657 else
77e371c0 4658 tmp = hex_string_custom (BMSYMBOL_VALUE_ADDRESS (msymbol),
bb599908 4659 16);
3ac4495a 4660 printf_filtered ("%s %s\n",
efd66ac6 4661 tmp, MSYMBOL_PRINT_NAME (msymbol.minsym));
c906108c
SS
4662}
4663
4664/* This is the guts of the commands "info functions", "info types", and
c378eb4e 4665 "info variables". It calls search_symbols to find all matches and then
c906108c 4666 print_[m]symbol_info to print out some useful information about the
c378eb4e
MS
4667 matches. */
4668
c906108c 4669static void
12615cba
PW
4670symtab_symbol_info (bool quiet,
4671 const char *regexp, enum search_domain kind,
4672 const char *t_regexp, int from_tty)
c906108c 4673{
bc043ef3 4674 static const char * const classnames[] =
e8930875 4675 {"variable", "function", "type"};
c7dcbf88 4676 const char *last_filename = "";
c906108c
SS
4677 int first = 1;
4678
e8930875
JK
4679 gdb_assert (kind <= TYPES_DOMAIN);
4680
c378eb4e 4681 /* Must make sure that if we're interrupted, symbols gets freed. */
12615cba
PW
4682 std::vector<symbol_search> symbols = search_symbols (regexp, kind,
4683 t_regexp, 0, NULL);
c906108c 4684
12615cba
PW
4685 if (!quiet)
4686 {
4687 if (regexp != NULL)
4688 {
4689 if (t_regexp != NULL)
4690 printf_filtered
4691 (_("All %ss matching regular expression \"%s\""
4692 " with type matching regulation expression \"%s\":\n"),
4693 classnames[kind], regexp, t_regexp);
4694 else
4695 printf_filtered (_("All %ss matching regular expression \"%s\":\n"),
4696 classnames[kind], regexp);
4697 }
4698 else
4699 {
4700 if (t_regexp != NULL)
4701 printf_filtered
4702 (_("All defined %ss"
4703 " with type matching regulation expression \"%s\" :\n"),
4704 classnames[kind], t_regexp);
4705 else
4706 printf_filtered (_("All defined %ss:\n"), classnames[kind]);
4707 }
4708 }
c906108c 4709
b9c04fb2 4710 for (const symbol_search &p : symbols)
c906108c
SS
4711 {
4712 QUIT;
4713
b9c04fb2 4714 if (p.msymbol.minsym != NULL)
c5aa993b
JM
4715 {
4716 if (first)
4717 {
12615cba
PW
4718 if (!quiet)
4719 printf_filtered (_("\nNon-debugging symbols:\n"));
c5aa993b
JM
4720 first = 0;
4721 }
b9c04fb2 4722 print_msymbol_info (p.msymbol);
c5aa993b 4723 }
c906108c 4724 else
c5aa993b
JM
4725 {
4726 print_symbol_info (kind,
b9c04fb2
TT
4727 p.symbol,
4728 p.block,
c5aa993b 4729 last_filename);
d01060f0 4730 last_filename
b9c04fb2 4731 = symtab_to_filename_for_display (symbol_symtab (p.symbol));
c5aa993b 4732 }
c906108c 4733 }
c906108c
SS
4734}
4735
0b39b52e 4736static void
12615cba 4737info_variables_command (const char *args, int from_tty)
0b39b52e 4738{
12615cba
PW
4739 std::string regexp;
4740 std::string t_regexp;
4741 bool quiet = false;
4742
4743 while (args != NULL
4744 && extract_info_print_args (&args, &quiet, &regexp, &t_regexp))
4745 ;
4746
4747 if (args != NULL)
4748 report_unrecognized_option_error ("info variables", args);
4749
4750 symtab_symbol_info (quiet,
4751 regexp.empty () ? NULL : regexp.c_str (),
4752 VARIABLES_DOMAIN,
4753 t_regexp.empty () ? NULL : t_regexp.c_str (),
4754 from_tty);
0b39b52e
TT
4755}
4756
12615cba 4757
c906108c 4758static void
12615cba 4759info_functions_command (const char *args, int from_tty)
c906108c 4760{
12615cba
PW
4761 std::string regexp;
4762 std::string t_regexp;
d54cfd76 4763 bool quiet = false;
12615cba
PW
4764
4765 while (args != NULL
4766 && extract_info_print_args (&args, &quiet, &regexp, &t_regexp))
4767 ;
4768
4769 if (args != NULL)
4770 report_unrecognized_option_error ("info functions", args);
4771
4772 symtab_symbol_info (quiet,
4773 regexp.empty () ? NULL : regexp.c_str (),
4774 FUNCTIONS_DOMAIN,
4775 t_regexp.empty () ? NULL : t_regexp.c_str (),
4776 from_tty);
c906108c
SS
4777}
4778
357e46e7 4779
c906108c 4780static void
1d12d88f 4781info_types_command (const char *regexp, int from_tty)
c906108c 4782{
12615cba 4783 symtab_symbol_info (false, regexp, TYPES_DOMAIN, NULL, from_tty);
c906108c
SS
4784}
4785
c378eb4e 4786/* Breakpoint all functions matching regular expression. */
8926118c 4787
8b93c638 4788void
fba45db2 4789rbreak_command_wrapper (char *regexp, int from_tty)
8b93c638
JM
4790{
4791 rbreak_command (regexp, from_tty);
4792}
8926118c 4793
c906108c 4794static void
0b39b52e 4795rbreak_command (const char *regexp, int from_tty)
c906108c 4796{
c80049d3 4797 std::string string;
96142726
TT
4798 const char **files = NULL;
4799 const char *file_name;
8bd10a10 4800 int nfiles = 0;
c906108c 4801
8bd10a10
CM
4802 if (regexp)
4803 {
0b39b52e 4804 const char *colon = strchr (regexp, ':');
433759f7 4805
8bd10a10
CM
4806 if (colon && *(colon + 1) != ':')
4807 {
4808 int colon_index;
96142726 4809 char *local_name;
8bd10a10
CM
4810
4811 colon_index = colon - regexp;
224c3ddb 4812 local_name = (char *) alloca (colon_index + 1);
96142726
TT
4813 memcpy (local_name, regexp, colon_index);
4814 local_name[colon_index--] = 0;
4815 while (isspace (local_name[colon_index]))
4816 local_name[colon_index--] = 0;
4817 file_name = local_name;
8bd10a10
CM
4818 files = &file_name;
4819 nfiles = 1;
529480d0 4820 regexp = skip_spaces (colon + 1);
8bd10a10
CM
4821 }
4822 }
4823
b9c04fb2
TT
4824 std::vector<symbol_search> symbols = search_symbols (regexp,
4825 FUNCTIONS_DOMAIN,
12615cba 4826 NULL,
b9c04fb2 4827 nfiles, files);
c906108c 4828
c80049d3 4829 scoped_rbreak_breakpoints finalize;
b9c04fb2 4830 for (const symbol_search &p : symbols)
c906108c 4831 {
b9c04fb2 4832 if (p.msymbol.minsym == NULL)
c5aa993b 4833 {
b9c04fb2 4834 struct symtab *symtab = symbol_symtab (p.symbol);
d01060f0 4835 const char *fullname = symtab_to_fullname (symtab);
05cba821 4836
c80049d3
TT
4837 string = string_printf ("%s:'%s'", fullname,
4838 SYMBOL_LINKAGE_NAME (p.symbol));
4839 break_command (&string[0], from_tty);
c7dcbf88 4840 print_symbol_info (FUNCTIONS_DOMAIN, p.symbol, p.block, NULL);
c5aa993b 4841 }
c906108c 4842 else
c5aa993b 4843 {
c80049d3
TT
4844 string = string_printf ("'%s'",
4845 MSYMBOL_LINKAGE_NAME (p.msymbol.minsym));
6214f497 4846
c80049d3 4847 break_command (&string[0], from_tty);
c5aa993b 4848 printf_filtered ("<function, no debug info> %s;\n",
b9c04fb2 4849 MSYMBOL_PRINT_NAME (p.msymbol.minsym));
c5aa993b 4850 }
c906108c 4851 }
c906108c 4852}
c906108c 4853\f
c5aa993b 4854
c62446b1 4855/* Evaluate if SYMNAME matches LOOKUP_NAME. */
1976171a
JK
4856
4857static int
c62446b1 4858compare_symbol_name (const char *symbol_name, language symbol_language,
b5ec771e 4859 const lookup_name_info &lookup_name,
b5ec771e
PA
4860 completion_match_result &match_res)
4861{
d4c2a405 4862 const language_defn *lang = language_def (symbol_language);
1976171a 4863
b5ec771e 4864 symbol_name_matcher_ftype *name_match
618daa93 4865 = get_symbol_name_matcher (lang, lookup_name);
1976171a 4866
a207cff2 4867 return name_match (symbol_name, lookup_name, &match_res);
1976171a
JK
4868}
4869
b5ec771e 4870/* See symtab.h. */
c906108c 4871
b5ec771e 4872void
eb3ff9a5 4873completion_list_add_name (completion_tracker &tracker,
b5ec771e 4874 language symbol_language,
eb3ff9a5 4875 const char *symname,
b5ec771e 4876 const lookup_name_info &lookup_name,
0d5cff50 4877 const char *text, const char *word)
c906108c 4878{
b5ec771e
PA
4879 completion_match_result &match_res
4880 = tracker.reset_completion_match_result ();
4881
c378eb4e 4882 /* Clip symbols that cannot match. */
c62446b1 4883 if (!compare_symbol_name (symname, symbol_language, lookup_name, match_res))
1976171a 4884 return;
c906108c 4885
b5ec771e
PA
4886 /* Refresh SYMNAME from the match string. It's potentially
4887 different depending on language. (E.g., on Ada, the match may be
4888 the encoded symbol name wrapped in "<>"). */
4889 symname = match_res.match.match ();
4890 gdb_assert (symname != NULL);
4891
c906108c 4892 /* We have a match for a completion, so add SYMNAME to the current list
c378eb4e 4893 of matches. Note that the name is moved to freshly malloc'd space. */
c906108c
SS
4894
4895 {
60a20c19
PA
4896 gdb::unique_xmalloc_ptr<char> completion
4897 = make_completion_match_str (symname, text, word);
ef0b411a 4898
a207cff2
PA
4899 /* Here we pass the match-for-lcd object to add_completion. Some
4900 languages match the user text against substrings of symbol
4901 names in some cases. E.g., in C++, "b push_ba" completes to
4902 "std::vector::push_back", "std::string::push_back", etc., and
4903 in this case we want the completion lowest common denominator
4904 to be "push_back" instead of "std::". */
4905 tracker.add_completion (std::move (completion),
a22ecf70 4906 &match_res.match_for_lcd, text, word);
c906108c
SS
4907 }
4908}
4909
6da67eb1
PA
4910/* completion_list_add_name wrapper for struct symbol. */
4911
4912static void
eb3ff9a5
PA
4913completion_list_add_symbol (completion_tracker &tracker,
4914 symbol *sym,
b5ec771e 4915 const lookup_name_info &lookup_name,
6da67eb1
PA
4916 const char *text, const char *word)
4917{
b5ec771e
PA
4918 completion_list_add_name (tracker, SYMBOL_LANGUAGE (sym),
4919 SYMBOL_NATURAL_NAME (sym),
1b026119 4920 lookup_name, text, word);
6da67eb1
PA
4921}
4922
4923/* completion_list_add_name wrapper for struct minimal_symbol. */
4924
4925static void
eb3ff9a5
PA
4926completion_list_add_msymbol (completion_tracker &tracker,
4927 minimal_symbol *sym,
b5ec771e 4928 const lookup_name_info &lookup_name,
6da67eb1
PA
4929 const char *text, const char *word)
4930{
b5ec771e
PA
4931 completion_list_add_name (tracker, MSYMBOL_LANGUAGE (sym),
4932 MSYMBOL_NATURAL_NAME (sym),
1b026119 4933 lookup_name, text, word);
6da67eb1
PA
4934}
4935
b5ec771e 4936
69636828
AF
4937/* ObjC: In case we are completing on a selector, look as the msymbol
4938 again and feed all the selectors into the mill. */
4939
4940static void
eb3ff9a5
PA
4941completion_list_objc_symbol (completion_tracker &tracker,
4942 struct minimal_symbol *msymbol,
b5ec771e 4943 const lookup_name_info &lookup_name,
0d5cff50 4944 const char *text, const char *word)
69636828
AF
4945{
4946 static char *tmp = NULL;
4947 static unsigned int tmplen = 0;
9af17804 4948
0d5cff50 4949 const char *method, *category, *selector;
69636828 4950 char *tmp2 = NULL;
9af17804 4951
efd66ac6 4952 method = MSYMBOL_NATURAL_NAME (msymbol);
69636828
AF
4953
4954 /* Is it a method? */
4955 if ((method[0] != '-') && (method[0] != '+'))
4956 return;
4957
1b026119 4958 if (text[0] == '[')
69636828 4959 /* Complete on shortened method method. */
b5ec771e
PA
4960 completion_list_add_name (tracker, language_objc,
4961 method + 1,
4962 lookup_name,
1b026119 4963 text, word);
9af17804 4964
69636828
AF
4965 while ((strlen (method) + 1) >= tmplen)
4966 {
4967 if (tmplen == 0)
4968 tmplen = 1024;
4969 else
4970 tmplen *= 2;
224c3ddb 4971 tmp = (char *) xrealloc (tmp, tmplen);
69636828
AF
4972 }
4973 selector = strchr (method, ' ');
4974 if (selector != NULL)
4975 selector++;
9af17804 4976
69636828 4977 category = strchr (method, '(');
9af17804 4978
69636828
AF
4979 if ((category != NULL) && (selector != NULL))
4980 {
4981 memcpy (tmp, method, (category - method));
4982 tmp[category - method] = ' ';
4983 memcpy (tmp + (category - method) + 1, selector, strlen (selector) + 1);
b5ec771e 4984 completion_list_add_name (tracker, language_objc, tmp,
1b026119
PA
4985 lookup_name, text, word);
4986 if (text[0] == '[')
b5ec771e 4987 completion_list_add_name (tracker, language_objc, tmp + 1,
1b026119 4988 lookup_name, text, word);
69636828 4989 }
9af17804 4990
69636828
AF
4991 if (selector != NULL)
4992 {
4993 /* Complete on selector only. */
4994 strcpy (tmp, selector);
4995 tmp2 = strchr (tmp, ']');
4996 if (tmp2 != NULL)
4997 *tmp2 = '\0';
9af17804 4998
b5ec771e 4999 completion_list_add_name (tracker, language_objc, tmp,
1b026119 5000 lookup_name, text, word);
69636828
AF
5001 }
5002}
5003
5004/* Break the non-quoted text based on the characters which are in
c378eb4e 5005 symbols. FIXME: This should probably be language-specific. */
69636828 5006
6f937416
PA
5007static const char *
5008language_search_unquoted_string (const char *text, const char *p)
69636828
AF
5009{
5010 for (; p > text; --p)
5011 {
5012 if (isalnum (p[-1]) || p[-1] == '_' || p[-1] == '\0')
5013 continue;
5014 else
5015 {
5016 if ((current_language->la_language == language_objc))
5017 {
c378eb4e 5018 if (p[-1] == ':') /* Might be part of a method name. */
69636828
AF
5019 continue;
5020 else if (p[-1] == '[' && (p[-2] == '-' || p[-2] == '+'))
c378eb4e 5021 p -= 2; /* Beginning of a method name. */
69636828 5022 else if (p[-1] == ' ' || p[-1] == '(' || p[-1] == ')')
c378eb4e 5023 { /* Might be part of a method name. */
6f937416 5024 const char *t = p;
69636828
AF
5025
5026 /* Seeing a ' ' or a '(' is not conclusive evidence
5027 that we are in the middle of a method name. However,
5028 finding "-[" or "+[" should be pretty un-ambiguous.
5029 Unfortunately we have to find it now to decide. */
5030
5031 while (t > text)
5032 if (isalnum (t[-1]) || t[-1] == '_' ||
5033 t[-1] == ' ' || t[-1] == ':' ||
5034 t[-1] == '(' || t[-1] == ')')
5035 --t;
5036 else
5037 break;
5038
5039 if (t[-1] == '[' && (t[-2] == '-' || t[-2] == '+'))
c378eb4e
MS
5040 p = t - 2; /* Method name detected. */
5041 /* Else we leave with p unchanged. */
69636828
AF
5042 }
5043 }
5044 break;
5045 }
5046 }
5047 return p;
5048}
5049
edb3359d 5050static void
eb3ff9a5
PA
5051completion_list_add_fields (completion_tracker &tracker,
5052 struct symbol *sym,
b5ec771e 5053 const lookup_name_info &lookup_name,
eb3ff9a5 5054 const char *text, const char *word)
edb3359d
DJ
5055{
5056 if (SYMBOL_CLASS (sym) == LOC_TYPEDEF)
5057 {
5058 struct type *t = SYMBOL_TYPE (sym);
5059 enum type_code c = TYPE_CODE (t);
5060 int j;
5061
5062 if (c == TYPE_CODE_UNION || c == TYPE_CODE_STRUCT)
5063 for (j = TYPE_N_BASECLASSES (t); j < TYPE_NFIELDS (t); j++)
5064 if (TYPE_FIELD_NAME (t, j))
b5ec771e
PA
5065 completion_list_add_name (tracker, SYMBOL_LANGUAGE (sym),
5066 TYPE_FIELD_NAME (t, j),
1b026119 5067 lookup_name, text, word);
edb3359d
DJ
5068 }
5069}
5070
f9d67a22
PA
5071/* See symtab.h. */
5072
5073bool
5074symbol_is_function_or_method (symbol *sym)
5075{
5076 switch (TYPE_CODE (SYMBOL_TYPE (sym)))
5077 {
5078 case TYPE_CODE_FUNC:
5079 case TYPE_CODE_METHOD:
5080 return true;
5081 default:
5082 return false;
5083 }
5084}
5085
5086/* See symtab.h. */
5087
5088bool
5089symbol_is_function_or_method (minimal_symbol *msymbol)
5090{
5091 switch (MSYMBOL_TYPE (msymbol))
5092 {
5093 case mst_text:
5094 case mst_text_gnu_ifunc:
5095 case mst_solib_trampoline:
5096 case mst_file_text:
5097 return true;
5098 default:
5099 return false;
5100 }
5101}
5102
ca31ab1d
PA
5103/* See symtab.h. */
5104
5105bound_minimal_symbol
5106find_gnu_ifunc (const symbol *sym)
5107{
5108 if (SYMBOL_CLASS (sym) != LOC_BLOCK)
5109 return {};
5110
5111 lookup_name_info lookup_name (SYMBOL_SEARCH_NAME (sym),
5112 symbol_name_match_type::SEARCH_NAME);
5113 struct objfile *objfile = symbol_objfile (sym);
5114
2b1ffcfd 5115 CORE_ADDR address = BLOCK_ENTRY_PC (SYMBOL_BLOCK_VALUE (sym));
ca31ab1d
PA
5116 minimal_symbol *ifunc = NULL;
5117
5118 iterate_over_minimal_symbols (objfile, lookup_name,
5119 [&] (minimal_symbol *minsym)
5120 {
5121 if (MSYMBOL_TYPE (minsym) == mst_text_gnu_ifunc
f50776aa 5122 || MSYMBOL_TYPE (minsym) == mst_data_gnu_ifunc)
ca31ab1d 5123 {
f50776aa
PA
5124 CORE_ADDR msym_addr = MSYMBOL_VALUE_ADDRESS (objfile, minsym);
5125 if (MSYMBOL_TYPE (minsym) == mst_data_gnu_ifunc)
5126 {
5127 struct gdbarch *gdbarch = get_objfile_arch (objfile);
8b88a78e
PA
5128 msym_addr
5129 = gdbarch_convert_from_func_ptr_addr (gdbarch,
5130 msym_addr,
5131 current_top_target ());
f50776aa
PA
5132 }
5133 if (msym_addr == address)
5134 {
5135 ifunc = minsym;
5136 return true;
5137 }
ca31ab1d
PA
5138 }
5139 return false;
5140 });
5141
5142 if (ifunc != NULL)
5143 return {ifunc, objfile};
5144 return {};
5145}
5146
e11c72c7
GB
5147/* Add matching symbols from SYMTAB to the current completion list. */
5148
5149static void
5150add_symtab_completions (struct compunit_symtab *cust,
eb3ff9a5 5151 completion_tracker &tracker,
f9d67a22 5152 complete_symbol_mode mode,
b5ec771e 5153 const lookup_name_info &lookup_name,
e11c72c7
GB
5154 const char *text, const char *word,
5155 enum type_code code)
5156{
5157 struct symbol *sym;
5158 const struct block *b;
5159 struct block_iterator iter;
5160 int i;
5161
ff6fa247
GB
5162 if (cust == NULL)
5163 return;
5164
e11c72c7
GB
5165 for (i = GLOBAL_BLOCK; i <= STATIC_BLOCK; i++)
5166 {
5167 QUIT;
5168 b = BLOCKVECTOR_BLOCK (COMPUNIT_BLOCKVECTOR (cust), i);
5169 ALL_BLOCK_SYMBOLS (b, iter, sym)
5170 {
f9d67a22
PA
5171 if (completion_skip_symbol (mode, sym))
5172 continue;
5173
e11c72c7
GB
5174 if (code == TYPE_CODE_UNDEF
5175 || (SYMBOL_DOMAIN (sym) == STRUCT_DOMAIN
5176 && TYPE_CODE (SYMBOL_TYPE (sym)) == code))
eb3ff9a5 5177 completion_list_add_symbol (tracker, sym,
b5ec771e 5178 lookup_name,
e11c72c7
GB
5179 text, word);
5180 }
5181 }
5182}
5183
eb3ff9a5
PA
5184void
5185default_collect_symbol_completion_matches_break_on
b5ec771e
PA
5186 (completion_tracker &tracker, complete_symbol_mode mode,
5187 symbol_name_match_type name_match_type,
eb3ff9a5
PA
5188 const char *text, const char *word,
5189 const char *break_on, enum type_code code)
c906108c 5190{
41d27058
JB
5191 /* Problem: All of the symbols have to be copied because readline
5192 frees them. I'm not going to worry about this; hopefully there
5193 won't be that many. */
5194
de4f826b 5195 struct symbol *sym;
43f3e411 5196 struct compunit_symtab *cust;
de4f826b
DC
5197 struct minimal_symbol *msymbol;
5198 struct objfile *objfile;
3977b71f 5199 const struct block *b;
edb3359d 5200 const struct block *surrounding_static_block, *surrounding_global_block;
8157b174 5201 struct block_iterator iter;
c906108c 5202 /* The symbol we are completing on. Points in same buffer as text. */
6f937416 5203 const char *sym_text;
c906108c 5204
41d27058 5205 /* Now look for the symbol we are supposed to complete on. */
c6756f62
PA
5206 if (mode == complete_symbol_mode::LINESPEC)
5207 sym_text = text;
5208 else
c906108c 5209 {
6f937416 5210 const char *p;
c906108c 5211 char quote_found;
6f937416 5212 const char *quote_pos = NULL;
c906108c
SS
5213
5214 /* First see if this is a quoted string. */
5215 quote_found = '\0';
5216 for (p = text; *p != '\0'; ++p)
5217 {
5218 if (quote_found != '\0')
5219 {
5220 if (*p == quote_found)
5221 /* Found close quote. */
5222 quote_found = '\0';
5223 else if (*p == '\\' && p[1] == quote_found)
5224 /* A backslash followed by the quote character
c5aa993b 5225 doesn't end the string. */
c906108c
SS
5226 ++p;
5227 }
5228 else if (*p == '\'' || *p == '"')
5229 {
5230 quote_found = *p;
5231 quote_pos = p;
5232 }
5233 }
5234 if (quote_found == '\'')
5235 /* A string within single quotes can be a symbol, so complete on it. */
5236 sym_text = quote_pos + 1;
5237 else if (quote_found == '"')
5238 /* A double-quoted string is never a symbol, nor does it make sense
c5aa993b 5239 to complete it any other way. */
c94fdfd0 5240 {
ef0b411a 5241 return;
c94fdfd0 5242 }
c906108c
SS
5243 else
5244 {
5245 /* It is not a quoted string. Break it based on the characters
5246 which are in symbols. */
5247 while (p > text)
5248 {
95699ff0 5249 if (isalnum (p[-1]) || p[-1] == '_' || p[-1] == '\0'
f55ee35c 5250 || p[-1] == ':' || strchr (break_on, p[-1]) != NULL)
c906108c
SS
5251 --p;
5252 else
5253 break;
5254 }
5255 sym_text = p;
5256 }
5257 }
5258
1b026119 5259 lookup_name_info lookup_name (sym_text, name_match_type, true);
b5ec771e 5260
c906108c
SS
5261 /* At this point scan through the misc symbol vectors and add each
5262 symbol you find to the list. Eventually we want to ignore
5263 anything that isn't a text symbol (everything else will be
e11c72c7 5264 handled by the psymtab code below). */
c906108c 5265
2f68a895
TT
5266 if (code == TYPE_CODE_UNDEF)
5267 {
5268 ALL_MSYMBOLS (objfile, msymbol)
5269 {
5270 QUIT;
9af17804 5271
f9d67a22
PA
5272 if (completion_skip_symbol (mode, msymbol))
5273 continue;
5274
b5ec771e 5275 completion_list_add_msymbol (tracker, msymbol, lookup_name,
1b026119 5276 sym_text, word);
eb3ff9a5 5277
b5ec771e 5278 completion_list_objc_symbol (tracker, msymbol, lookup_name,
1b026119 5279 sym_text, word);
2f68a895
TT
5280 }
5281 }
c906108c 5282
e11c72c7
GB
5283 /* Add completions for all currently loaded symbol tables. */
5284 ALL_COMPUNITS (objfile, cust)
f9d67a22 5285 add_symtab_completions (cust, tracker, mode, lookup_name,
1b026119 5286 sym_text, word, code);
e11c72c7 5287
14bc53a8
PA
5288 /* Look through the partial symtabs for all symbols which begin by
5289 matching SYM_TEXT. Expand all CUs that you find to the list. */
5290 expand_symtabs_matching (NULL,
b5ec771e
PA
5291 lookup_name,
5292 NULL,
14bc53a8
PA
5293 [&] (compunit_symtab *symtab) /* expansion notify */
5294 {
5295 add_symtab_completions (symtab,
f9d67a22 5296 tracker, mode, lookup_name,
1b026119 5297 sym_text, word, code);
14bc53a8
PA
5298 },
5299 ALL_DOMAIN);
e11c72c7 5300
c906108c 5301 /* Search upwards from currently selected frame (so that we can
edb3359d
DJ
5302 complete on local vars). Also catch fields of types defined in
5303 this places which match our text string. Only complete on types
c378eb4e 5304 visible from current context. */
edb3359d
DJ
5305
5306 b = get_selected_block (0);
5307 surrounding_static_block = block_static_block (b);
5308 surrounding_global_block = block_global_block (b);
5309 if (surrounding_static_block != NULL)
5310 while (b != surrounding_static_block)
5311 {
5312 QUIT;
c906108c 5313
edb3359d
DJ
5314 ALL_BLOCK_SYMBOLS (b, iter, sym)
5315 {
2f68a895
TT
5316 if (code == TYPE_CODE_UNDEF)
5317 {
b5ec771e 5318 completion_list_add_symbol (tracker, sym, lookup_name,
1b026119 5319 sym_text, word);
b5ec771e 5320 completion_list_add_fields (tracker, sym, lookup_name,
1b026119 5321 sym_text, word);
2f68a895
TT
5322 }
5323 else if (SYMBOL_DOMAIN (sym) == STRUCT_DOMAIN
5324 && TYPE_CODE (SYMBOL_TYPE (sym)) == code)
b5ec771e 5325 completion_list_add_symbol (tracker, sym, lookup_name,
1b026119 5326 sym_text, word);
edb3359d 5327 }
c5aa993b 5328
edb3359d
DJ
5329 /* Stop when we encounter an enclosing function. Do not stop for
5330 non-inlined functions - the locals of the enclosing function
5331 are in scope for a nested function. */
5332 if (BLOCK_FUNCTION (b) != NULL && block_inlined_p (b))
5333 break;
5334 b = BLOCK_SUPERBLOCK (b);
5335 }
c906108c 5336
edb3359d 5337 /* Add fields from the file's types; symbols will be added below. */
c906108c 5338
2f68a895
TT
5339 if (code == TYPE_CODE_UNDEF)
5340 {
5341 if (surrounding_static_block != NULL)
5342 ALL_BLOCK_SYMBOLS (surrounding_static_block, iter, sym)
b5ec771e 5343 completion_list_add_fields (tracker, sym, lookup_name,
1b026119 5344 sym_text, word);
edb3359d 5345
2f68a895
TT
5346 if (surrounding_global_block != NULL)
5347 ALL_BLOCK_SYMBOLS (surrounding_global_block, iter, sym)
b5ec771e 5348 completion_list_add_fields (tracker, sym, lookup_name,
1b026119 5349 sym_text, word);
2f68a895 5350 }
c906108c 5351
2f68a895
TT
5352 /* Skip macros if we are completing a struct tag -- arguable but
5353 usually what is expected. */
5354 if (current_language->la_macro_expansion == macro_expansion_c
5355 && code == TYPE_CODE_UNDEF)
9a044a89 5356 {
f6c2623e 5357 gdb::unique_xmalloc_ptr<struct macro_scope> scope;
9a044a89 5358
14bc53a8
PA
5359 /* This adds a macro's name to the current completion list. */
5360 auto add_macro_name = [&] (const char *macro_name,
5361 const macro_definition *,
5362 macro_source_file *,
5363 int)
5364 {
1b026119
PA
5365 completion_list_add_name (tracker, language_c, macro_name,
5366 lookup_name, sym_text, word);
14bc53a8
PA
5367 };
5368
9a044a89
TT
5369 /* Add any macros visible in the default scope. Note that this
5370 may yield the occasional wrong result, because an expression
5371 might be evaluated in a scope other than the default. For
5372 example, if the user types "break file:line if <TAB>", the
5373 resulting expression will be evaluated at "file:line" -- but
5374 at there does not seem to be a way to detect this at
5375 completion time. */
5376 scope = default_macro_scope ();
5377 if (scope)
f6c2623e
TT
5378 macro_for_each_in_scope (scope->file, scope->line,
5379 add_macro_name);
9a044a89
TT
5380
5381 /* User-defined macros are always visible. */
14bc53a8 5382 macro_for_each (macro_user_macros, add_macro_name);
9a044a89 5383 }
ef0b411a
GB
5384}
5385
eb3ff9a5
PA
5386void
5387default_collect_symbol_completion_matches (completion_tracker &tracker,
c6756f62 5388 complete_symbol_mode mode,
b5ec771e 5389 symbol_name_match_type name_match_type,
eb3ff9a5
PA
5390 const char *text, const char *word,
5391 enum type_code code)
f55ee35c 5392{
c6756f62 5393 return default_collect_symbol_completion_matches_break_on (tracker, mode,
b5ec771e 5394 name_match_type,
eb3ff9a5
PA
5395 text, word, "",
5396 code);
f55ee35c
JK
5397}
5398
eb3ff9a5
PA
5399/* Collect all symbols (regardless of class) which begin by matching
5400 TEXT. */
41d27058 5401
eb3ff9a5
PA
5402void
5403collect_symbol_completion_matches (completion_tracker &tracker,
c6756f62 5404 complete_symbol_mode mode,
b5ec771e 5405 symbol_name_match_type name_match_type,
eb3ff9a5 5406 const char *text, const char *word)
41d27058 5407{
c6756f62 5408 current_language->la_collect_symbol_completion_matches (tracker, mode,
b5ec771e 5409 name_match_type,
eb3ff9a5
PA
5410 text, word,
5411 TYPE_CODE_UNDEF);
2f68a895
TT
5412}
5413
eb3ff9a5
PA
5414/* Like collect_symbol_completion_matches, but only collect
5415 STRUCT_DOMAIN symbols whose type code is CODE. */
2f68a895 5416
eb3ff9a5
PA
5417void
5418collect_symbol_completion_matches_type (completion_tracker &tracker,
5419 const char *text, const char *word,
5420 enum type_code code)
2f68a895 5421{
c6756f62 5422 complete_symbol_mode mode = complete_symbol_mode::EXPRESSION;
b5ec771e 5423 symbol_name_match_type name_match_type = symbol_name_match_type::EXPRESSION;
c6756f62 5424
2f68a895
TT
5425 gdb_assert (code == TYPE_CODE_UNION
5426 || code == TYPE_CODE_STRUCT
2f68a895 5427 || code == TYPE_CODE_ENUM);
c6756f62 5428 current_language->la_collect_symbol_completion_matches (tracker, mode,
b5ec771e 5429 name_match_type,
eb3ff9a5 5430 text, word, code);
41d27058
JB
5431}
5432
eb3ff9a5
PA
5433/* Like collect_symbol_completion_matches, but collects a list of
5434 symbols defined in all source files named SRCFILE. */
c94fdfd0 5435
eb3ff9a5
PA
5436void
5437collect_file_symbol_completion_matches (completion_tracker &tracker,
c6756f62 5438 complete_symbol_mode mode,
b5ec771e 5439 symbol_name_match_type name_match_type,
eb3ff9a5
PA
5440 const char *text, const char *word,
5441 const char *srcfile)
c94fdfd0 5442{
c94fdfd0 5443 /* The symbol we are completing on. Points in same buffer as text. */
6f937416 5444 const char *sym_text;
c94fdfd0
EZ
5445
5446 /* Now look for the symbol we are supposed to complete on.
5447 FIXME: This should be language-specific. */
c6756f62
PA
5448 if (mode == complete_symbol_mode::LINESPEC)
5449 sym_text = text;
5450 else
c94fdfd0 5451 {
6f937416 5452 const char *p;
c94fdfd0 5453 char quote_found;
6f937416 5454 const char *quote_pos = NULL;
c94fdfd0
EZ
5455
5456 /* First see if this is a quoted string. */
5457 quote_found = '\0';
5458 for (p = text; *p != '\0'; ++p)
5459 {
5460 if (quote_found != '\0')
5461 {
5462 if (*p == quote_found)
5463 /* Found close quote. */
5464 quote_found = '\0';
5465 else if (*p == '\\' && p[1] == quote_found)
5466 /* A backslash followed by the quote character
5467 doesn't end the string. */
5468 ++p;
5469 }
5470 else if (*p == '\'' || *p == '"')
5471 {
5472 quote_found = *p;
5473 quote_pos = p;
5474 }
5475 }
5476 if (quote_found == '\'')
5477 /* A string within single quotes can be a symbol, so complete on it. */
5478 sym_text = quote_pos + 1;
5479 else if (quote_found == '"')
5480 /* A double-quoted string is never a symbol, nor does it make sense
5481 to complete it any other way. */
5482 {
eb3ff9a5 5483 return;
c94fdfd0
EZ
5484 }
5485 else
5486 {
69636828
AF
5487 /* Not a quoted string. */
5488 sym_text = language_search_unquoted_string (text, p);
c94fdfd0
EZ
5489 }
5490 }
5491
1b026119 5492 lookup_name_info lookup_name (sym_text, name_match_type, true);
b5ec771e 5493
8f14146e
PA
5494 /* Go through symtabs for SRCFILE and check the externs and statics
5495 for symbols which match. */
5496 iterate_over_symtabs (srcfile, [&] (symtab *s)
c94fdfd0 5497 {
8f14146e 5498 add_symtab_completions (SYMTAB_COMPUNIT (s),
f9d67a22 5499 tracker, mode, lookup_name,
1b026119 5500 sym_text, word, TYPE_CODE_UNDEF);
8f14146e
PA
5501 return false;
5502 });
e27852be
DE
5503}
5504
c94fdfd0
EZ
5505/* A helper function for make_source_files_completion_list. It adds
5506 another file name to a list of possible completions, growing the
5507 list as necessary. */
5508
5509static void
6f937416 5510add_filename_to_list (const char *fname, const char *text, const char *word,
eb3ff9a5 5511 completion_list *list)
c94fdfd0 5512{
60a20c19 5513 list->emplace_back (make_completion_match_str (fname, text, word));
c94fdfd0
EZ
5514}
5515
5516static int
5517not_interesting_fname (const char *fname)
5518{
5519 static const char *illegal_aliens[] = {
5520 "_globals_", /* inserted by coff_symtab_read */
5521 NULL
5522 };
5523 int i;
5524
5525 for (i = 0; illegal_aliens[i]; i++)
5526 {
0ba1096a 5527 if (filename_cmp (fname, illegal_aliens[i]) == 0)
c94fdfd0
EZ
5528 return 1;
5529 }
5530 return 0;
5531}
5532
ccefe4c4
TT
5533/* An object of this type is passed as the user_data argument to
5534 map_partial_symbol_filenames. */
5535struct add_partial_filename_data
5536{
9fdc877b 5537 struct filename_seen_cache *filename_seen_cache;
6f937416
PA
5538 const char *text;
5539 const char *word;
ccefe4c4 5540 int text_len;
eb3ff9a5 5541 completion_list *list;
ccefe4c4
TT
5542};
5543
5544/* A callback for map_partial_symbol_filenames. */
eca864fe 5545
ccefe4c4 5546static void
2837d59e 5547maybe_add_partial_symtab_filename (const char *filename, const char *fullname,
ccefe4c4
TT
5548 void *user_data)
5549{
19ba03f4
SM
5550 struct add_partial_filename_data *data
5551 = (struct add_partial_filename_data *) user_data;
ccefe4c4
TT
5552
5553 if (not_interesting_fname (filename))
5554 return;
bbf2f4df 5555 if (!data->filename_seen_cache->seen (filename)
0ba1096a 5556 && filename_ncmp (filename, data->text, data->text_len) == 0)
ccefe4c4
TT
5557 {
5558 /* This file matches for a completion; add it to the
5559 current list of matches. */
49c4e619 5560 add_filename_to_list (filename, data->text, data->word, data->list);
ccefe4c4
TT
5561 }
5562 else
5563 {
5564 const char *base_name = lbasename (filename);
433759f7 5565
ccefe4c4 5566 if (base_name != filename
bbf2f4df 5567 && !data->filename_seen_cache->seen (base_name)
0ba1096a 5568 && filename_ncmp (base_name, data->text, data->text_len) == 0)
49c4e619 5569 add_filename_to_list (base_name, data->text, data->word, data->list);
ccefe4c4
TT
5570 }
5571}
5572
eb3ff9a5 5573/* Return a list of all source files whose names begin with matching
49c4e619 5574 TEXT. The file names are looked up in the symbol tables of this
eb3ff9a5 5575 program. */
c94fdfd0 5576
eb3ff9a5 5577completion_list
6f937416 5578make_source_files_completion_list (const char *text, const char *word)
c94fdfd0 5579{
43f3e411 5580 struct compunit_symtab *cu;
52f0bd74 5581 struct symtab *s;
52f0bd74 5582 struct objfile *objfile;
c94fdfd0 5583 size_t text_len = strlen (text);
eb3ff9a5 5584 completion_list list;
31889e00 5585 const char *base_name;
ccefe4c4 5586 struct add_partial_filename_data datum;
c94fdfd0 5587
c94fdfd0
EZ
5588 if (!have_full_symbols () && !have_partial_symbols ())
5589 return list;
5590
bbf2f4df 5591 filename_seen_cache filenames_seen;
9fdc877b 5592
43f3e411 5593 ALL_FILETABS (objfile, cu, s)
c94fdfd0
EZ
5594 {
5595 if (not_interesting_fname (s->filename))
5596 continue;
bbf2f4df 5597 if (!filenames_seen.seen (s->filename)
0ba1096a 5598 && filename_ncmp (s->filename, text, text_len) == 0)
c94fdfd0
EZ
5599 {
5600 /* This file matches for a completion; add it to the current
5601 list of matches. */
49c4e619 5602 add_filename_to_list (s->filename, text, word, &list);
c94fdfd0
EZ
5603 }
5604 else
5605 {
5606 /* NOTE: We allow the user to type a base name when the
5607 debug info records leading directories, but not the other
5608 way around. This is what subroutines of breakpoint
5609 command do when they parse file names. */
31889e00 5610 base_name = lbasename (s->filename);
c94fdfd0 5611 if (base_name != s->filename
bbf2f4df 5612 && !filenames_seen.seen (base_name)
0ba1096a 5613 && filename_ncmp (base_name, text, text_len) == 0)
49c4e619 5614 add_filename_to_list (base_name, text, word, &list);
c94fdfd0
EZ
5615 }
5616 }
5617
bbf2f4df 5618 datum.filename_seen_cache = &filenames_seen;
ccefe4c4
TT
5619 datum.text = text;
5620 datum.word = word;
5621 datum.text_len = text_len;
5622 datum.list = &list;
bb4142cf
DE
5623 map_symbol_filenames (maybe_add_partial_symtab_filename, &datum,
5624 0 /*need_fullname*/);
9fdc877b 5625
c94fdfd0
EZ
5626 return list;
5627}
c906108c 5628\f
51cc5b07 5629/* Track MAIN */
32ac0d11
TT
5630
5631/* Return the "main_info" object for the current program space. If
5632 the object has not yet been created, create it and fill in some
5633 default values. */
5634
5635static struct main_info *
5636get_main_info (void)
5637{
19ba03f4
SM
5638 struct main_info *info
5639 = (struct main_info *) program_space_data (current_program_space,
32ac0d11
TT
5640 main_progspace_key);
5641
5642 if (info == NULL)
5643 {
3d548a53
TT
5644 /* It may seem strange to store the main name in the progspace
5645 and also in whatever objfile happens to see a main name in
5646 its debug info. The reason for this is mainly historical:
5647 gdb returned "main" as the name even if no function named
5648 "main" was defined the program; and this approach lets us
5649 keep compatibility. */
32ac0d11
TT
5650 info = XCNEW (struct main_info);
5651 info->language_of_main = language_unknown;
5652 set_program_space_data (current_program_space, main_progspace_key,
5653 info);
5654 }
5655
5656 return info;
5657}
5658
5659/* A cleanup to destroy a struct main_info when a progspace is
5660 destroyed. */
5661
5662static void
5663main_info_cleanup (struct program_space *pspace, void *data)
5664{
19ba03f4 5665 struct main_info *info = (struct main_info *) data;
32ac0d11
TT
5666
5667 if (info != NULL)
5668 xfree (info->name_of_main);
5669 xfree (info);
5670}
51cc5b07 5671
3d548a53 5672static void
9e6c82ad 5673set_main_name (const char *name, enum language lang)
51cc5b07 5674{
32ac0d11
TT
5675 struct main_info *info = get_main_info ();
5676
5677 if (info->name_of_main != NULL)
51cc5b07 5678 {
32ac0d11
TT
5679 xfree (info->name_of_main);
5680 info->name_of_main = NULL;
5681 info->language_of_main = language_unknown;
51cc5b07
AC
5682 }
5683 if (name != NULL)
5684 {
32ac0d11
TT
5685 info->name_of_main = xstrdup (name);
5686 info->language_of_main = lang;
51cc5b07
AC
5687 }
5688}
5689
ea53e89f
JB
5690/* Deduce the name of the main procedure, and set NAME_OF_MAIN
5691 accordingly. */
5692
5693static void
5694find_main_name (void)
5695{
cd6c7346 5696 const char *new_main_name;
3d548a53
TT
5697 struct objfile *objfile;
5698
5699 /* First check the objfiles to see whether a debuginfo reader has
5700 picked up the appropriate main name. Historically the main name
5701 was found in a more or less random way; this approach instead
5702 relies on the order of objfile creation -- which still isn't
5703 guaranteed to get the correct answer, but is just probably more
5704 accurate. */
5705 ALL_OBJFILES (objfile)
5706 {
5707 if (objfile->per_bfd->name_of_main != NULL)
5708 {
5709 set_main_name (objfile->per_bfd->name_of_main,
5710 objfile->per_bfd->language_of_main);
5711 return;
5712 }
5713 }
ea53e89f
JB
5714
5715 /* Try to see if the main procedure is in Ada. */
5716 /* FIXME: brobecker/2005-03-07: Another way of doing this would
5717 be to add a new method in the language vector, and call this
5718 method for each language until one of them returns a non-empty
5719 name. This would allow us to remove this hard-coded call to
5720 an Ada function. It is not clear that this is a better approach
5721 at this point, because all methods need to be written in a way
c378eb4e 5722 such that false positives never be returned. For instance, it is
ea53e89f
JB
5723 important that a method does not return a wrong name for the main
5724 procedure if the main procedure is actually written in a different
5725 language. It is easy to guaranty this with Ada, since we use a
5726 special symbol generated only when the main in Ada to find the name
c378eb4e 5727 of the main procedure. It is difficult however to see how this can
ea53e89f
JB
5728 be guarantied for languages such as C, for instance. This suggests
5729 that order of call for these methods becomes important, which means
5730 a more complicated approach. */
5731 new_main_name = ada_main_name ();
5732 if (new_main_name != NULL)
9af17804 5733 {
9e6c82ad 5734 set_main_name (new_main_name, language_ada);
ea53e89f
JB
5735 return;
5736 }
5737
63778547
IB
5738 new_main_name = d_main_name ();
5739 if (new_main_name != NULL)
5740 {
5741 set_main_name (new_main_name, language_d);
5742 return;
5743 }
5744
a766d390
DE
5745 new_main_name = go_main_name ();
5746 if (new_main_name != NULL)
5747 {
9e6c82ad 5748 set_main_name (new_main_name, language_go);
a766d390
DE
5749 return;
5750 }
5751
cd6c7346
PM
5752 new_main_name = pascal_main_name ();
5753 if (new_main_name != NULL)
9af17804 5754 {
9e6c82ad 5755 set_main_name (new_main_name, language_pascal);
cd6c7346
PM
5756 return;
5757 }
5758
ea53e89f
JB
5759 /* The languages above didn't identify the name of the main procedure.
5760 Fallback to "main". */
9e6c82ad 5761 set_main_name ("main", language_unknown);
ea53e89f
JB
5762}
5763
51cc5b07
AC
5764char *
5765main_name (void)
5766{
32ac0d11
TT
5767 struct main_info *info = get_main_info ();
5768
5769 if (info->name_of_main == NULL)
ea53e89f
JB
5770 find_main_name ();
5771
32ac0d11 5772 return info->name_of_main;
51cc5b07
AC
5773}
5774
9e6c82ad
TT
5775/* Return the language of the main function. If it is not known,
5776 return language_unknown. */
5777
5778enum language
5779main_language (void)
5780{
32ac0d11
TT
5781 struct main_info *info = get_main_info ();
5782
5783 if (info->name_of_main == NULL)
5784 find_main_name ();
5785
5786 return info->language_of_main;
9e6c82ad
TT
5787}
5788
ea53e89f
JB
5789/* Handle ``executable_changed'' events for the symtab module. */
5790
5791static void
781b42b0 5792symtab_observer_executable_changed (void)
ea53e89f
JB
5793{
5794 /* NAME_OF_MAIN may no longer be the same, so reset it for now. */
9e6c82ad 5795 set_main_name (NULL, language_unknown);
ea53e89f 5796}
51cc5b07 5797
a6c727b2
DJ
5798/* Return 1 if the supplied producer string matches the ARM RealView
5799 compiler (armcc). */
5800
5801int
5802producer_is_realview (const char *producer)
5803{
5804 static const char *const arm_idents[] = {
5805 "ARM C Compiler, ADS",
5806 "Thumb C Compiler, ADS",
5807 "ARM C++ Compiler, ADS",
5808 "Thumb C++ Compiler, ADS",
5809 "ARM/Thumb C/C++ Compiler, RVCT",
5810 "ARM C/C++ Compiler, RVCT"
5811 };
5812 int i;
5813
5814 if (producer == NULL)
5815 return 0;
5816
5817 for (i = 0; i < ARRAY_SIZE (arm_idents); i++)
61012eef 5818 if (startswith (producer, arm_idents[i]))
a6c727b2
DJ
5819 return 1;
5820
5821 return 0;
5822}
ed0616c6 5823
f1e6e072
TT
5824\f
5825
5826/* The next index to hand out in response to a registration request. */
5827
5828static int next_aclass_value = LOC_FINAL_VALUE;
5829
5830/* The maximum number of "aclass" registrations we support. This is
5831 constant for convenience. */
5832#define MAX_SYMBOL_IMPLS (LOC_FINAL_VALUE + 10)
5833
5834/* The objects representing the various "aclass" values. The elements
5835 from 0 up to LOC_FINAL_VALUE-1 represent themselves, and subsequent
5836 elements are those registered at gdb initialization time. */
5837
5838static struct symbol_impl symbol_impl[MAX_SYMBOL_IMPLS];
5839
5840/* The globally visible pointer. This is separate from 'symbol_impl'
5841 so that it can be const. */
5842
5843const struct symbol_impl *symbol_impls = &symbol_impl[0];
5844
5845/* Make sure we saved enough room in struct symbol. */
5846
5847gdb_static_assert (MAX_SYMBOL_IMPLS <= (1 << SYMBOL_ACLASS_BITS));
5848
5849/* Register a computed symbol type. ACLASS must be LOC_COMPUTED. OPS
5850 is the ops vector associated with this index. This returns the new
5851 index, which should be used as the aclass_index field for symbols
5852 of this type. */
5853
5854int
5855register_symbol_computed_impl (enum address_class aclass,
5856 const struct symbol_computed_ops *ops)
5857{
5858 int result = next_aclass_value++;
5859
5860 gdb_assert (aclass == LOC_COMPUTED);
5861 gdb_assert (result < MAX_SYMBOL_IMPLS);
5862 symbol_impl[result].aclass = aclass;
5863 symbol_impl[result].ops_computed = ops;
5864
24d6c2a0
TT
5865 /* Sanity check OPS. */
5866 gdb_assert (ops != NULL);
5867 gdb_assert (ops->tracepoint_var_ref != NULL);
5868 gdb_assert (ops->describe_location != NULL);
0b31a4bc 5869 gdb_assert (ops->get_symbol_read_needs != NULL);
24d6c2a0
TT
5870 gdb_assert (ops->read_variable != NULL);
5871
f1e6e072
TT
5872 return result;
5873}
5874
5875/* Register a function with frame base type. ACLASS must be LOC_BLOCK.
5876 OPS is the ops vector associated with this index. This returns the
5877 new index, which should be used as the aclass_index field for symbols
5878 of this type. */
5879
5880int
5881register_symbol_block_impl (enum address_class aclass,
5882 const struct symbol_block_ops *ops)
5883{
5884 int result = next_aclass_value++;
5885
5886 gdb_assert (aclass == LOC_BLOCK);
5887 gdb_assert (result < MAX_SYMBOL_IMPLS);
5888 symbol_impl[result].aclass = aclass;
5889 symbol_impl[result].ops_block = ops;
5890
5891 /* Sanity check OPS. */
5892 gdb_assert (ops != NULL);
5893 gdb_assert (ops->find_frame_base_location != NULL);
5894
5895 return result;
5896}
5897
5898/* Register a register symbol type. ACLASS must be LOC_REGISTER or
5899 LOC_REGPARM_ADDR. OPS is the register ops vector associated with
5900 this index. This returns the new index, which should be used as
5901 the aclass_index field for symbols of this type. */
5902
5903int
5904register_symbol_register_impl (enum address_class aclass,
5905 const struct symbol_register_ops *ops)
5906{
5907 int result = next_aclass_value++;
5908
5909 gdb_assert (aclass == LOC_REGISTER || aclass == LOC_REGPARM_ADDR);
5910 gdb_assert (result < MAX_SYMBOL_IMPLS);
5911 symbol_impl[result].aclass = aclass;
5912 symbol_impl[result].ops_register = ops;
5913
5914 return result;
5915}
5916
5917/* Initialize elements of 'symbol_impl' for the constants in enum
5918 address_class. */
5919
5920static void
5921initialize_ordinary_address_classes (void)
5922{
5923 int i;
5924
5925 for (i = 0; i < LOC_FINAL_VALUE; ++i)
aead7601 5926 symbol_impl[i].aclass = (enum address_class) i;
f1e6e072
TT
5927}
5928
5929\f
5930
1994afbf
DE
5931/* Helper function to initialize the fields of an objfile-owned symbol.
5932 It assumed that *SYM is already all zeroes. */
5933
5934static void
5935initialize_objfile_symbol_1 (struct symbol *sym)
5936{
5937 SYMBOL_OBJFILE_OWNED (sym) = 1;
5938 SYMBOL_SECTION (sym) = -1;
5939}
5940
5941/* Initialize the symbol SYM, and mark it as being owned by an objfile. */
e623cf5d
TT
5942
5943void
38bf1463 5944initialize_objfile_symbol (struct symbol *sym)
e623cf5d
TT
5945{
5946 memset (sym, 0, sizeof (*sym));
1994afbf 5947 initialize_objfile_symbol_1 (sym);
e623cf5d
TT
5948}
5949
5950/* Allocate and initialize a new 'struct symbol' on OBJFILE's
5951 obstack. */
5952
5953struct symbol *
5954allocate_symbol (struct objfile *objfile)
5955{
5956 struct symbol *result;
5957
5958 result = OBSTACK_ZALLOC (&objfile->objfile_obstack, struct symbol);
1994afbf 5959 initialize_objfile_symbol_1 (result);
e623cf5d
TT
5960
5961 return result;
5962}
5963
5964/* Allocate and initialize a new 'struct template_symbol' on OBJFILE's
5965 obstack. */
5966
5967struct template_symbol *
5968allocate_template_symbol (struct objfile *objfile)
5969{
5970 struct template_symbol *result;
5971
5972 result = OBSTACK_ZALLOC (&objfile->objfile_obstack, struct template_symbol);
68e745e3 5973 initialize_objfile_symbol_1 (result);
e623cf5d
TT
5974
5975 return result;
5976}
5977
08be3fe3
DE
5978/* See symtab.h. */
5979
5980struct objfile *
5981symbol_objfile (const struct symbol *symbol)
5982{
1994afbf
DE
5983 gdb_assert (SYMBOL_OBJFILE_OWNED (symbol));
5984 return SYMTAB_OBJFILE (symbol->owner.symtab);
08be3fe3
DE
5985}
5986
5987/* See symtab.h. */
5988
5989struct gdbarch *
5990symbol_arch (const struct symbol *symbol)
5991{
1994afbf
DE
5992 if (!SYMBOL_OBJFILE_OWNED (symbol))
5993 return symbol->owner.arch;
5994 return get_objfile_arch (SYMTAB_OBJFILE (symbol->owner.symtab));
08be3fe3
DE
5995}
5996
5997/* See symtab.h. */
5998
5999struct symtab *
6000symbol_symtab (const struct symbol *symbol)
6001{
1994afbf
DE
6002 gdb_assert (SYMBOL_OBJFILE_OWNED (symbol));
6003 return symbol->owner.symtab;
08be3fe3
DE
6004}
6005
6006/* See symtab.h. */
6007
6008void
6009symbol_set_symtab (struct symbol *symbol, struct symtab *symtab)
6010{
1994afbf
DE
6011 gdb_assert (SYMBOL_OBJFILE_OWNED (symbol));
6012 symbol->owner.symtab = symtab;
08be3fe3
DE
6013}
6014
e623cf5d
TT
6015\f
6016
c906108c 6017void
fba45db2 6018_initialize_symtab (void)
c906108c 6019{
f1e6e072
TT
6020 initialize_ordinary_address_classes ();
6021
32ac0d11
TT
6022 main_progspace_key
6023 = register_program_space_data_with_cleanup (NULL, main_info_cleanup);
6024
f57d2163
DE
6025 symbol_cache_key
6026 = register_program_space_data_with_cleanup (NULL, symbol_cache_cleanup);
6027
12615cba
PW
6028 add_info ("variables", info_variables_command,
6029 info_print_args_help (_("\
6030All global and static variable names or those matching REGEXPs.\n\
6031Usage: info variables [-q] [-t TYPEREGEXP] [NAMEREGEXP]\n\
6032Prints the global and static variables.\n"),
6033 _("global and static variables")));
c906108c 6034 if (dbx_commands)
12615cba
PW
6035 add_com ("whereis", class_info, info_variables_command,
6036 info_print_args_help (_("\
6037All global and static variable names, or those matching REGEXPs.\n\
6038Usage: whereis [-q] [-t TYPEREGEXP] [NAMEREGEXP]\n\
6039Prints the global and static variables.\n"),
6040 _("global and static variables")));
c906108c 6041
11db9430 6042 add_info ("functions", info_functions_command,
12615cba
PW
6043 info_print_args_help (_("\
6044All function names or those matching REGEXPs.\n\
6045Usage: info functions [-q] [-t TYPEREGEXP] [NAMEREGEXP]\n\
6046Prints the functions.\n"),
6047 _("functions")));
c906108c
SS
6048
6049 /* FIXME: This command has at least the following problems:
6050 1. It prints builtin types (in a very strange and confusing fashion).
6051 2. It doesn't print right, e.g. with
c5aa993b
JM
6052 typedef struct foo *FOO
6053 type_print prints "FOO" when we want to make it (in this situation)
6054 print "struct foo *".
c906108c
SS
6055 I also think "ptype" or "whatis" is more likely to be useful (but if
6056 there is much disagreement "info types" can be fixed). */
11db9430 6057 add_info ("types", info_types_command,
1bedd215 6058 _("All type names, or those matching REGEXP."));
c906108c 6059
11db9430 6060 add_info ("sources", info_sources_command,
1bedd215 6061 _("Source files in the program."));
c906108c
SS
6062
6063 add_com ("rbreak", class_breakpoint, rbreak_command,
1bedd215 6064 _("Set a breakpoint for all functions matching REGEXP."));
c906108c 6065
717d2f5a
JB
6066 add_setshow_enum_cmd ("multiple-symbols", no_class,
6067 multiple_symbols_modes, &multiple_symbols_mode,
6068 _("\
6069Set the debugger behavior when more than one symbol are possible matches\n\
6070in an expression."), _("\
6071Show how the debugger handles ambiguities in expressions."), _("\
6072Valid values are \"ask\", \"all\", \"cancel\", and the default is \"all\"."),
6073 NULL, NULL, &setlist, &showlist);
6074
c011a4f4
DE
6075 add_setshow_boolean_cmd ("basenames-may-differ", class_obscure,
6076 &basenames_may_differ, _("\
6077Set whether a source file may have multiple base names."), _("\
6078Show whether a source file may have multiple base names."), _("\
6079(A \"base name\" is the name of a file with the directory part removed.\n\
6080Example: The base name of \"/home/user/hello.c\" is \"hello.c\".)\n\
6081If set, GDB will canonicalize file names (e.g., expand symlinks)\n\
6082before comparing them. Canonicalization is an expensive operation,\n\
6083but it allows the same file be known by more than one base name.\n\
6084If not set (the default), all source files are assumed to have just\n\
6085one base name, and gdb will do file name comparisons more efficiently."),
6086 NULL, NULL,
6087 &setlist, &showlist);
6088
db0fec5c
DE
6089 add_setshow_zuinteger_cmd ("symtab-create", no_class, &symtab_create_debug,
6090 _("Set debugging of symbol table creation."),
6091 _("Show debugging of symbol table creation."), _("\
6092When enabled (non-zero), debugging messages are printed when building\n\
6093symbol tables. A value of 1 (one) normally provides enough information.\n\
6094A value greater than 1 provides more verbose information."),
6095 NULL,
6096 NULL,
6097 &setdebuglist, &showdebuglist);
45cfd468 6098
cc485e62
DE
6099 add_setshow_zuinteger_cmd ("symbol-lookup", no_class, &symbol_lookup_debug,
6100 _("\
6101Set debugging of symbol lookup."), _("\
6102Show debugging of symbol lookup."), _("\
6103When enabled (non-zero), symbol lookups are logged."),
6104 NULL, NULL,
6105 &setdebuglist, &showdebuglist);
6106
f57d2163
DE
6107 add_setshow_zuinteger_cmd ("symbol-cache-size", no_class,
6108 &new_symbol_cache_size,
6109 _("Set the size of the symbol cache."),
6110 _("Show the size of the symbol cache."), _("\
6111The size of the symbol cache.\n\
6112If zero then the symbol cache is disabled."),
6113 set_symbol_cache_size_handler, NULL,
6114 &maintenance_set_cmdlist,
6115 &maintenance_show_cmdlist);
6116
6117 add_cmd ("symbol-cache", class_maintenance, maintenance_print_symbol_cache,
6118 _("Dump the symbol cache for each program space."),
6119 &maintenanceprintlist);
6120
6121 add_cmd ("symbol-cache-statistics", class_maintenance,
6122 maintenance_print_symbol_cache_statistics,
6123 _("Print symbol cache statistics for each program space."),
6124 &maintenanceprintlist);
6125
6126 add_cmd ("flush-symbol-cache", class_maintenance,
6127 maintenance_flush_symbol_cache,
6128 _("Flush the symbol cache for each program space."),
6129 &maintenancelist);
6130
76727919
TT
6131 gdb::observers::executable_changed.attach (symtab_observer_executable_changed);
6132 gdb::observers::new_objfile.attach (symtab_new_objfile_observer);
6133 gdb::observers::free_objfile.attach (symtab_free_objfile_observer);
c906108c 6134}