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c906108c 1/* Symbol table lookup for the GNU debugger, GDB.
8926118c
AC
2
3 Copyright 1986, 1987, 1988, 1989, 1990, 1991, 1992, 1993, 1994,
083ae935
DJ
4 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002, 2003
5 Free Software Foundation, Inc.
c906108c 6
c5aa993b 7 This file is part of GDB.
c906108c 8
c5aa993b
JM
9 This program is free software; you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
11 the Free Software Foundation; either version 2 of the License, or
12 (at your option) any later version.
c906108c 13
c5aa993b
JM
14 This program is distributed in the hope that it will be useful,
15 but WITHOUT ANY WARRANTY; without even the implied warranty of
16 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 GNU General Public License for more details.
c906108c 18
c5aa993b
JM
19 You should have received a copy of the GNU General Public License
20 along with this program; if not, write to the Free Software
21 Foundation, Inc., 59 Temple Place - Suite 330,
22 Boston, MA 02111-1307, USA. */
c906108c
SS
23
24#include "defs.h"
25#include "symtab.h"
26#include "gdbtypes.h"
27#include "gdbcore.h"
28#include "frame.h"
29#include "target.h"
30#include "value.h"
31#include "symfile.h"
32#include "objfiles.h"
33#include "gdbcmd.h"
34#include "call-cmds.h"
88987551 35#include "gdb_regex.h"
c906108c
SS
36#include "expression.h"
37#include "language.h"
38#include "demangle.h"
39#include "inferior.h"
c5f0f3d0 40#include "linespec.h"
0378c332 41#include "source.h"
a7fdf62f 42#include "filenames.h" /* for FILENAME_CMP */
1bae87b9 43#include "objc-lang.h"
c906108c 44
2de7ced7
DJ
45#include "hashtab.h"
46
04ea0df1 47#include "gdb_obstack.h"
fe898f56 48#include "block.h"
de4f826b 49#include "dictionary.h"
c906108c
SS
50
51#include <sys/types.h>
52#include <fcntl.h>
53#include "gdb_string.h"
54#include "gdb_stat.h"
55#include <ctype.h>
015a42b4 56#include "cp-abi.h"
c906108c 57
c906108c
SS
58/* Prototypes for local functions */
59
a14ed312 60static void completion_list_add_name (char *, char *, int, char *, char *);
c906108c 61
a14ed312 62static void rbreak_command (char *, int);
c906108c 63
a14ed312 64static void types_info (char *, int);
c906108c 65
a14ed312 66static void functions_info (char *, int);
c906108c 67
a14ed312 68static void variables_info (char *, int);
c906108c 69
a14ed312 70static void sources_info (char *, int);
c906108c 71
a14ed312 72static void output_source_filename (char *, int *);
c906108c 73
a14ed312 74static int find_line_common (struct linetable *, int, int *);
c906108c 75
50641945
FN
76/* This one is used by linespec.c */
77
78char *operator_chars (char *p, char **end);
79
3121eff0 80static struct symbol *lookup_symbol_aux (const char *name,
5ad1c190 81 const char *linkage_name,
3121eff0 82 const struct block *block,
176620f1 83 const domain_enum domain,
3121eff0
DJ
84 int *is_a_field_of_this,
85 struct symtab **symtab);
fba7f19c 86
e4051eeb
DC
87static
88struct symbol *lookup_symbol_aux_local (const char *name,
5ad1c190 89 const char *linkage_name,
e4051eeb 90 const struct block *block,
176620f1 91 const domain_enum domain,
89a9d1b1 92 struct symtab **symtab);
8155455b
DC
93
94static
95struct symbol *lookup_symbol_aux_symtabs (int block_index,
96 const char *name,
5ad1c190 97 const char *linkage_name,
176620f1 98 const domain_enum domain,
8155455b
DC
99 struct symtab **symtab);
100
101static
102struct symbol *lookup_symbol_aux_psymtabs (int block_index,
103 const char *name,
5ad1c190 104 const char *linkage_name,
176620f1 105 const domain_enum domain,
8155455b 106 struct symtab **symtab);
fba7f19c 107
ae2f03ac 108#if 0
406bc4de
DC
109static
110struct symbol *lookup_symbol_aux_minsyms (const char *name,
5ad1c190 111 const char *linkage_name,
176620f1 112 const domain_enum domain,
406bc4de 113 int *is_a_field_of_this,
e45febe2 114 struct symtab **symtab);
ae2f03ac 115#endif
406bc4de 116
c906108c
SS
117/* This flag is used in hppa-tdep.c, and set in hp-symtab-read.c */
118/* Signals the presence of objects compiled by HP compilers */
119int hp_som_som_object_present = 0;
120
a14ed312 121static void fixup_section (struct general_symbol_info *, struct objfile *);
c906108c 122
a14ed312 123static int file_matches (char *, char **, int);
c906108c 124
176620f1 125static void print_symbol_info (domain_enum,
a14ed312 126 struct symtab *, struct symbol *, int, char *);
c906108c 127
a14ed312 128static void print_msymbol_info (struct minimal_symbol *);
c906108c 129
176620f1 130static void symtab_symbol_info (char *, domain_enum, int);
c906108c 131
a14ed312 132void _initialize_symtab (void);
c906108c
SS
133
134/* */
135
136/* The single non-language-specific builtin type */
137struct type *builtin_type_error;
138
139/* Block in which the most recently searched-for symbol was found.
140 Might be better to make this a parameter to lookup_symbol and
141 value_of_this. */
142
143const struct block *block_found;
144
c906108c
SS
145/* Check for a symtab of a specific name; first in symtabs, then in
146 psymtabs. *If* there is no '/' in the name, a match after a '/'
147 in the symtab filename will also work. */
148
1b15f1fa
TT
149struct symtab *
150lookup_symtab (const char *name)
c906108c 151{
52f0bd74
AC
152 struct symtab *s;
153 struct partial_symtab *ps;
154 struct objfile *objfile;
58d370e0 155 char *real_path = NULL;
f079a2e5 156 char *full_path = NULL;
58d370e0
TT
157
158 /* Here we are interested in canonicalizing an absolute path, not
159 absolutizing a relative path. */
160 if (IS_ABSOLUTE_PATH (name))
f079a2e5
JB
161 {
162 full_path = xfullpath (name);
163 make_cleanup (xfree, full_path);
164 real_path = gdb_realpath (name);
165 make_cleanup (xfree, real_path);
166 }
c906108c 167
c5aa993b 168got_symtab:
c906108c
SS
169
170 /* First, search for an exact match */
171
172 ALL_SYMTABS (objfile, s)
58d370e0 173 {
a7fdf62f 174 if (FILENAME_CMP (name, s->filename) == 0)
58d370e0 175 {
58d370e0
TT
176 return s;
177 }
f079a2e5 178
58d370e0
TT
179 /* If the user gave us an absolute path, try to find the file in
180 this symtab and use its absolute path. */
f079a2e5
JB
181
182 if (full_path != NULL)
183 {
184 const char *fp = symtab_to_filename (s);
185 if (FILENAME_CMP (full_path, fp) == 0)
186 {
187 return s;
188 }
189 }
190
58d370e0
TT
191 if (real_path != NULL)
192 {
25f1b008 193 char *rp = gdb_realpath (symtab_to_filename (s));
f079a2e5 194 make_cleanup (xfree, rp);
58d370e0
TT
195 if (FILENAME_CMP (real_path, rp) == 0)
196 {
58d370e0
TT
197 return s;
198 }
199 }
200 }
201
c906108c
SS
202 /* Now, search for a matching tail (only if name doesn't have any dirs) */
203
caadab2c 204 if (lbasename (name) == name)
c906108c 205 ALL_SYMTABS (objfile, s)
c5aa993b 206 {
31889e00 207 if (FILENAME_CMP (lbasename (s->filename), name) == 0)
c5aa993b
JM
208 return s;
209 }
c906108c
SS
210
211 /* Same search rules as above apply here, but now we look thru the
212 psymtabs. */
213
214 ps = lookup_partial_symtab (name);
215 if (!ps)
216 return (NULL);
217
c5aa993b 218 if (ps->readin)
c906108c 219 error ("Internal: readin %s pst for `%s' found when no symtab found.",
c5aa993b 220 ps->filename, name);
c906108c
SS
221
222 s = PSYMTAB_TO_SYMTAB (ps);
223
224 if (s)
225 return s;
226
227 /* At this point, we have located the psymtab for this file, but
228 the conversion to a symtab has failed. This usually happens
229 when we are looking up an include file. In this case,
230 PSYMTAB_TO_SYMTAB doesn't return a symtab, even though one has
231 been created. So, we need to run through the symtabs again in
232 order to find the file.
233 XXX - This is a crock, and should be fixed inside of the the
234 symbol parsing routines. */
235 goto got_symtab;
236}
237
c906108c
SS
238/* Lookup the partial symbol table of a source file named NAME.
239 *If* there is no '/' in the name, a match after a '/'
240 in the psymtab filename will also work. */
241
242struct partial_symtab *
1f8cc6db 243lookup_partial_symtab (const char *name)
c906108c 244{
52f0bd74
AC
245 struct partial_symtab *pst;
246 struct objfile *objfile;
f079a2e5 247 char *full_path = NULL;
58d370e0
TT
248 char *real_path = NULL;
249
250 /* Here we are interested in canonicalizing an absolute path, not
251 absolutizing a relative path. */
252 if (IS_ABSOLUTE_PATH (name))
f079a2e5
JB
253 {
254 full_path = xfullpath (name);
255 make_cleanup (xfree, full_path);
256 real_path = gdb_realpath (name);
257 make_cleanup (xfree, real_path);
258 }
c5aa993b 259
c906108c 260 ALL_PSYMTABS (objfile, pst)
c5aa993b 261 {
a7fdf62f 262 if (FILENAME_CMP (name, pst->filename) == 0)
c5aa993b
JM
263 {
264 return (pst);
265 }
f079a2e5 266
58d370e0
TT
267 /* If the user gave us an absolute path, try to find the file in
268 this symtab and use its absolute path. */
f079a2e5 269 if (full_path != NULL)
58d370e0
TT
270 {
271 if (pst->fullname == NULL)
272 source_full_path_of (pst->filename, &pst->fullname);
273 if (pst->fullname != NULL
f079a2e5 274 && FILENAME_CMP (full_path, pst->fullname) == 0)
58d370e0 275 {
58d370e0
TT
276 return pst;
277 }
278 }
c906108c 279
f079a2e5
JB
280 if (real_path != NULL)
281 {
282 char *rp = NULL;
283 if (pst->fullname == NULL)
284 source_full_path_of (pst->filename, &pst->fullname);
285 if (pst->fullname != NULL)
286 {
287 rp = gdb_realpath (pst->fullname);
288 make_cleanup (xfree, rp);
289 }
290 if (rp != NULL && FILENAME_CMP (real_path, rp) == 0)
291 {
292 return pst;
293 }
294 }
295 }
58d370e0 296
c906108c
SS
297 /* Now, search for a matching tail (only if name doesn't have any dirs) */
298
caadab2c 299 if (lbasename (name) == name)
c906108c 300 ALL_PSYMTABS (objfile, pst)
c5aa993b 301 {
31889e00 302 if (FILENAME_CMP (lbasename (pst->filename), name) == 0)
c5aa993b
JM
303 return (pst);
304 }
c906108c
SS
305
306 return (NULL);
307}
308\f
309/* Mangle a GDB method stub type. This actually reassembles the pieces of the
310 full method name, which consist of the class name (from T), the unadorned
311 method name from METHOD_ID, and the signature for the specific overload,
312 specified by SIGNATURE_ID. Note that this function is g++ specific. */
313
314char *
fba45db2 315gdb_mangle_name (struct type *type, int method_id, int signature_id)
c906108c
SS
316{
317 int mangled_name_len;
318 char *mangled_name;
319 struct fn_field *f = TYPE_FN_FIELDLIST1 (type, method_id);
320 struct fn_field *method = &f[signature_id];
321 char *field_name = TYPE_FN_FIELDLIST_NAME (type, method_id);
322 char *physname = TYPE_FN_FIELD_PHYSNAME (f, signature_id);
323 char *newname = type_name_no_tag (type);
324
325 /* Does the form of physname indicate that it is the full mangled name
326 of a constructor (not just the args)? */
327 int is_full_physname_constructor;
328
329 int is_constructor;
015a42b4 330 int is_destructor = is_destructor_name (physname);
c906108c
SS
331 /* Need a new type prefix. */
332 char *const_prefix = method->is_const ? "C" : "";
333 char *volatile_prefix = method->is_volatile ? "V" : "";
334 char buf[20];
335 int len = (newname == NULL ? 0 : strlen (newname));
336
43630227
PS
337 /* Nothing to do if physname already contains a fully mangled v3 abi name
338 or an operator name. */
339 if ((physname[0] == '_' && physname[1] == 'Z')
340 || is_operator_name (field_name))
235d1e03
EZ
341 return xstrdup (physname);
342
015a42b4 343 is_full_physname_constructor = is_constructor_name (physname);
c906108c
SS
344
345 is_constructor =
c5aa993b 346 is_full_physname_constructor || (newname && STREQ (field_name, newname));
c906108c
SS
347
348 if (!is_destructor)
c5aa993b 349 is_destructor = (strncmp (physname, "__dt", 4) == 0);
c906108c
SS
350
351 if (is_destructor || is_full_physname_constructor)
352 {
c5aa993b
JM
353 mangled_name = (char *) xmalloc (strlen (physname) + 1);
354 strcpy (mangled_name, physname);
c906108c
SS
355 return mangled_name;
356 }
357
358 if (len == 0)
359 {
360 sprintf (buf, "__%s%s", const_prefix, volatile_prefix);
361 }
362 else if (physname[0] == 't' || physname[0] == 'Q')
363 {
364 /* The physname for template and qualified methods already includes
c5aa993b 365 the class name. */
c906108c
SS
366 sprintf (buf, "__%s%s", const_prefix, volatile_prefix);
367 newname = NULL;
368 len = 0;
369 }
370 else
371 {
372 sprintf (buf, "__%s%s%d", const_prefix, volatile_prefix, len);
373 }
374 mangled_name_len = ((is_constructor ? 0 : strlen (field_name))
235d1e03 375 + strlen (buf) + len + strlen (physname) + 1);
c906108c 376
c906108c 377 {
c5aa993b 378 mangled_name = (char *) xmalloc (mangled_name_len);
c906108c
SS
379 if (is_constructor)
380 mangled_name[0] = '\0';
381 else
382 strcpy (mangled_name, field_name);
383 }
384 strcat (mangled_name, buf);
385 /* If the class doesn't have a name, i.e. newname NULL, then we just
386 mangle it using 0 for the length of the class. Thus it gets mangled
c5aa993b 387 as something starting with `::' rather than `classname::'. */
c906108c
SS
388 if (newname != NULL)
389 strcat (mangled_name, newname);
390
391 strcat (mangled_name, physname);
392 return (mangled_name);
393}
12af6855
JB
394
395\f
89aad1f9
EZ
396/* Initialize the language dependent portion of a symbol
397 depending upon the language for the symbol. */
398void
399symbol_init_language_specific (struct general_symbol_info *gsymbol,
400 enum language language)
401{
402 gsymbol->language = language;
403 if (gsymbol->language == language_cplus
5784d15e
AF
404 || gsymbol->language == language_java
405 || gsymbol->language == language_objc)
89aad1f9
EZ
406 {
407 gsymbol->language_specific.cplus_specific.demangled_name = NULL;
408 }
89aad1f9
EZ
409 else
410 {
411 memset (&gsymbol->language_specific, 0,
412 sizeof (gsymbol->language_specific));
413 }
414}
415
2de7ced7
DJ
416/* Functions to initialize a symbol's mangled name. */
417
418/* Create the hash table used for demangled names. Each hash entry is
419 a pair of strings; one for the mangled name and one for the demangled
420 name. The entry is hashed via just the mangled name. */
421
422static void
423create_demangled_names_hash (struct objfile *objfile)
424{
425 /* Choose 256 as the starting size of the hash table, somewhat arbitrarily.
426 The hash table code will round this up to the next prime number.
427 Choosing a much larger table size wastes memory, and saves only about
428 1% in symbol reading. */
429
430 objfile->demangled_names_hash = htab_create_alloc_ex
431 (256, htab_hash_string, (int (*) (const void *, const void *)) streq,
432 NULL, objfile->md, xmcalloc, xmfree);
433}
12af6855 434
2de7ced7 435/* Try to determine the demangled name for a symbol, based on the
12af6855
JB
436 language of that symbol. If the language is set to language_auto,
437 it will attempt to find any demangling algorithm that works and
2de7ced7
DJ
438 then set the language appropriately. The returned name is allocated
439 by the demangler and should be xfree'd. */
12af6855 440
2de7ced7
DJ
441static char *
442symbol_find_demangled_name (struct general_symbol_info *gsymbol,
443 const char *mangled)
12af6855 444{
12af6855
JB
445 char *demangled = NULL;
446
447 if (gsymbol->language == language_unknown)
448 gsymbol->language = language_auto;
1bae87b9
AF
449
450 if (gsymbol->language == language_objc
451 || gsymbol->language == language_auto)
452 {
453 demangled =
454 objc_demangle (mangled, 0);
455 if (demangled != NULL)
456 {
457 gsymbol->language = language_objc;
458 return demangled;
459 }
460 }
12af6855
JB
461 if (gsymbol->language == language_cplus
462 || gsymbol->language == language_auto)
463 {
464 demangled =
2de7ced7 465 cplus_demangle (mangled, DMGL_PARAMS | DMGL_ANSI);
12af6855 466 if (demangled != NULL)
2de7ced7
DJ
467 {
468 gsymbol->language = language_cplus;
469 return demangled;
470 }
12af6855
JB
471 }
472 if (gsymbol->language == language_java)
473 {
474 demangled =
2de7ced7 475 cplus_demangle (mangled,
12af6855
JB
476 DMGL_PARAMS | DMGL_ANSI | DMGL_JAVA);
477 if (demangled != NULL)
2de7ced7
DJ
478 {
479 gsymbol->language = language_java;
480 return demangled;
481 }
482 }
483 return NULL;
484}
485
980cae7a
DC
486/* Set both the mangled and demangled (if any) names for GSYMBOL based
487 on LINKAGE_NAME and LEN. The hash table corresponding to OBJFILE
488 is used, and the memory comes from that objfile's symbol_obstack.
489 LINKAGE_NAME is copied, so the pointer can be discarded after
490 calling this function. */
2de7ced7 491
d2a52b27
DC
492/* We have to be careful when dealing with Java names: when we run
493 into a Java minimal symbol, we don't know it's a Java symbol, so it
494 gets demangled as a C++ name. This is unfortunate, but there's not
495 much we can do about it: but when demangling partial symbols and
496 regular symbols, we'd better not reuse the wrong demangled name.
497 (See PR gdb/1039.) We solve this by putting a distinctive prefix
498 on Java names when storing them in the hash table. */
499
500/* FIXME: carlton/2003-03-13: This is an unfortunate situation. I
501 don't mind the Java prefix so much: different languages have
502 different demangling requirements, so it's only natural that we
503 need to keep language data around in our demangling cache. But
504 it's not good that the minimal symbol has the wrong demangled name.
505 Unfortunately, I can't think of any easy solution to that
506 problem. */
507
508#define JAVA_PREFIX "##JAVA$$"
509#define JAVA_PREFIX_LEN 8
510
2de7ced7
DJ
511void
512symbol_set_names (struct general_symbol_info *gsymbol,
980cae7a 513 const char *linkage_name, int len, struct objfile *objfile)
2de7ced7
DJ
514{
515 char **slot;
980cae7a
DC
516 /* A 0-terminated copy of the linkage name. */
517 const char *linkage_name_copy;
d2a52b27
DC
518 /* A copy of the linkage name that might have a special Java prefix
519 added to it, for use when looking names up in the hash table. */
520 const char *lookup_name;
521 /* The length of lookup_name. */
522 int lookup_len;
2de7ced7
DJ
523
524 if (objfile->demangled_names_hash == NULL)
525 create_demangled_names_hash (objfile);
526
980cae7a
DC
527 /* The stabs reader generally provides names that are not
528 NUL-terminated; most of the other readers don't do this, so we
d2a52b27
DC
529 can just use the given copy, unless we're in the Java case. */
530 if (gsymbol->language == language_java)
531 {
532 char *alloc_name;
533 lookup_len = len + JAVA_PREFIX_LEN;
534
535 alloc_name = alloca (lookup_len + 1);
536 memcpy (alloc_name, JAVA_PREFIX, JAVA_PREFIX_LEN);
537 memcpy (alloc_name + JAVA_PREFIX_LEN, linkage_name, len);
538 alloc_name[lookup_len] = '\0';
539
540 lookup_name = alloc_name;
541 linkage_name_copy = alloc_name + JAVA_PREFIX_LEN;
542 }
543 else if (linkage_name[len] != '\0')
2de7ced7 544 {
980cae7a 545 char *alloc_name;
d2a52b27 546 lookup_len = len;
980cae7a 547
d2a52b27 548 alloc_name = alloca (lookup_len + 1);
980cae7a 549 memcpy (alloc_name, linkage_name, len);
d2a52b27 550 alloc_name[lookup_len] = '\0';
980cae7a 551
d2a52b27 552 lookup_name = alloc_name;
980cae7a 553 linkage_name_copy = alloc_name;
2de7ced7
DJ
554 }
555 else
980cae7a 556 {
d2a52b27
DC
557 lookup_len = len;
558 lookup_name = linkage_name;
980cae7a
DC
559 linkage_name_copy = linkage_name;
560 }
2de7ced7 561
980cae7a 562 slot = (char **) htab_find_slot (objfile->demangled_names_hash,
d2a52b27 563 lookup_name, INSERT);
2de7ced7
DJ
564
565 /* If this name is not in the hash table, add it. */
566 if (*slot == NULL)
567 {
980cae7a
DC
568 char *demangled_name = symbol_find_demangled_name (gsymbol,
569 linkage_name_copy);
2de7ced7
DJ
570 int demangled_len = demangled_name ? strlen (demangled_name) : 0;
571
572 /* If there is a demangled name, place it right after the mangled name.
573 Otherwise, just place a second zero byte after the end of the mangled
574 name. */
575 *slot = obstack_alloc (&objfile->symbol_obstack,
d2a52b27
DC
576 lookup_len + demangled_len + 2);
577 memcpy (*slot, lookup_name, lookup_len + 1);
980cae7a 578 if (demangled_name != NULL)
2de7ced7 579 {
d2a52b27 580 memcpy (*slot + lookup_len + 1, demangled_name, demangled_len + 1);
2de7ced7
DJ
581 xfree (demangled_name);
582 }
583 else
d2a52b27 584 (*slot)[lookup_len + 1] = '\0';
2de7ced7
DJ
585 }
586
d2a52b27
DC
587 gsymbol->name = *slot + lookup_len - len;
588 if ((*slot)[lookup_len + 1] != '\0')
2de7ced7 589 gsymbol->language_specific.cplus_specific.demangled_name
d2a52b27 590 = &(*slot)[lookup_len + 1];
2de7ced7
DJ
591 else
592 gsymbol->language_specific.cplus_specific.demangled_name = NULL;
593}
594
595/* Initialize the demangled name of GSYMBOL if possible. Any required space
596 to store the name is obtained from the specified obstack. The function
597 symbol_set_names, above, should be used instead where possible for more
598 efficient memory usage. */
599
600void
601symbol_init_demangled_name (struct general_symbol_info *gsymbol,
602 struct obstack *obstack)
603{
604 char *mangled = gsymbol->name;
605 char *demangled = NULL;
606
607 demangled = symbol_find_demangled_name (gsymbol, mangled);
608 if (gsymbol->language == language_cplus
1bae87b9
AF
609 || gsymbol->language == language_java
610 || gsymbol->language == language_objc)
2de7ced7
DJ
611 {
612 if (demangled)
613 {
614 gsymbol->language_specific.cplus_specific.demangled_name
615 = obsavestring (demangled, strlen (demangled), obstack);
616 xfree (demangled);
617 }
12af6855 618 else
2de7ced7
DJ
619 gsymbol->language_specific.cplus_specific.demangled_name = NULL;
620 }
621 else
622 {
623 /* Unknown language; just clean up quietly. */
624 if (demangled)
625 xfree (demangled);
12af6855 626 }
12af6855
JB
627}
628
22abf04a
DC
629/* Return the source code name of a symbol. In languages where
630 demangling is necessary, this is the demangled name. */
631
632char *
633symbol_natural_name (const struct general_symbol_info *gsymbol)
634{
635 if ((gsymbol->language == language_cplus
636 || gsymbol->language == language_java
637 || gsymbol->language == language_objc)
638 && (gsymbol->language_specific.cplus_specific.demangled_name != NULL))
639 {
640 return gsymbol->language_specific.cplus_specific.demangled_name;
641 }
642 else
643 {
644 return gsymbol->name;
645 }
646}
647
9cc0d196
EZ
648/* Return the demangled name for a symbol based on the language for
649 that symbol. If no demangled name exists, return NULL. */
650char *
651symbol_demangled_name (struct general_symbol_info *gsymbol)
652{
653 if (gsymbol->language == language_cplus
5784d15e
AF
654 || gsymbol->language == language_java
655 || gsymbol->language == language_objc)
9cc0d196 656 return gsymbol->language_specific.cplus_specific.demangled_name;
12af6855 657
9cc0d196
EZ
658 else
659 return NULL;
9cc0d196 660}
fe39c653
EZ
661
662/* Initialize the structure fields to zero values. */
663void
664init_sal (struct symtab_and_line *sal)
665{
666 sal->symtab = 0;
667 sal->section = 0;
668 sal->line = 0;
669 sal->pc = 0;
670 sal->end = 0;
671}
c906108c
SS
672\f
673
c5aa993b 674
c906108c
SS
675/* Find which partial symtab on contains PC and SECTION. Return 0 if none. */
676
677struct partial_symtab *
fba45db2 678find_pc_sect_psymtab (CORE_ADDR pc, asection *section)
c906108c 679{
52f0bd74
AC
680 struct partial_symtab *pst;
681 struct objfile *objfile;
8a48e967
DJ
682 struct minimal_symbol *msymbol;
683
684 /* If we know that this is not a text address, return failure. This is
685 necessary because we loop based on texthigh and textlow, which do
686 not include the data ranges. */
687 msymbol = lookup_minimal_symbol_by_pc_section (pc, section);
688 if (msymbol
689 && (msymbol->type == mst_data
690 || msymbol->type == mst_bss
691 || msymbol->type == mst_abs
692 || msymbol->type == mst_file_data
693 || msymbol->type == mst_file_bss))
694 return NULL;
c906108c
SS
695
696 ALL_PSYMTABS (objfile, pst)
c5aa993b 697 {
c5aa993b 698 if (pc >= pst->textlow && pc < pst->texthigh)
c5aa993b 699 {
c5aa993b
JM
700 struct partial_symtab *tpst;
701
702 /* An objfile that has its functions reordered might have
703 many partial symbol tables containing the PC, but
704 we want the partial symbol table that contains the
705 function containing the PC. */
706 if (!(objfile->flags & OBJF_REORDERED) &&
707 section == 0) /* can't validate section this way */
708 return (pst);
709
c5aa993b
JM
710 if (msymbol == NULL)
711 return (pst);
712
713 for (tpst = pst; tpst != NULL; tpst = tpst->next)
714 {
c5aa993b 715 if (pc >= tpst->textlow && pc < tpst->texthigh)
c5aa993b
JM
716 {
717 struct partial_symbol *p;
c906108c 718
c5aa993b
JM
719 p = find_pc_sect_psymbol (tpst, pc, section);
720 if (p != NULL
721 && SYMBOL_VALUE_ADDRESS (p)
722 == SYMBOL_VALUE_ADDRESS (msymbol))
723 return (tpst);
724 }
725 }
726 return (pst);
727 }
728 }
c906108c
SS
729 return (NULL);
730}
731
732/* Find which partial symtab contains PC. Return 0 if none.
733 Backward compatibility, no section */
734
735struct partial_symtab *
fba45db2 736find_pc_psymtab (CORE_ADDR pc)
c906108c
SS
737{
738 return find_pc_sect_psymtab (pc, find_pc_mapped_section (pc));
739}
740
741/* Find which partial symbol within a psymtab matches PC and SECTION.
742 Return 0 if none. Check all psymtabs if PSYMTAB is 0. */
743
744struct partial_symbol *
fba45db2
KB
745find_pc_sect_psymbol (struct partial_symtab *psymtab, CORE_ADDR pc,
746 asection *section)
c906108c
SS
747{
748 struct partial_symbol *best = NULL, *p, **pp;
749 CORE_ADDR best_pc;
c5aa993b 750
c906108c
SS
751 if (!psymtab)
752 psymtab = find_pc_sect_psymtab (pc, section);
753 if (!psymtab)
754 return 0;
755
756 /* Cope with programs that start at address 0 */
757 best_pc = (psymtab->textlow != 0) ? psymtab->textlow - 1 : 0;
758
759 /* Search the global symbols as well as the static symbols, so that
760 find_pc_partial_function doesn't use a minimal symbol and thus
761 cache a bad endaddr. */
762 for (pp = psymtab->objfile->global_psymbols.list + psymtab->globals_offset;
c5aa993b
JM
763 (pp - (psymtab->objfile->global_psymbols.list + psymtab->globals_offset)
764 < psymtab->n_global_syms);
c906108c
SS
765 pp++)
766 {
767 p = *pp;
176620f1 768 if (SYMBOL_DOMAIN (p) == VAR_DOMAIN
c906108c
SS
769 && SYMBOL_CLASS (p) == LOC_BLOCK
770 && pc >= SYMBOL_VALUE_ADDRESS (p)
771 && (SYMBOL_VALUE_ADDRESS (p) > best_pc
772 || (psymtab->textlow == 0
773 && best_pc == 0 && SYMBOL_VALUE_ADDRESS (p) == 0)))
774 {
c5aa993b 775 if (section) /* match on a specific section */
c906108c
SS
776 {
777 fixup_psymbol_section (p, psymtab->objfile);
778 if (SYMBOL_BFD_SECTION (p) != section)
779 continue;
780 }
781 best_pc = SYMBOL_VALUE_ADDRESS (p);
782 best = p;
783 }
784 }
785
786 for (pp = psymtab->objfile->static_psymbols.list + psymtab->statics_offset;
c5aa993b
JM
787 (pp - (psymtab->objfile->static_psymbols.list + psymtab->statics_offset)
788 < psymtab->n_static_syms);
c906108c
SS
789 pp++)
790 {
791 p = *pp;
176620f1 792 if (SYMBOL_DOMAIN (p) == VAR_DOMAIN
c906108c
SS
793 && SYMBOL_CLASS (p) == LOC_BLOCK
794 && pc >= SYMBOL_VALUE_ADDRESS (p)
795 && (SYMBOL_VALUE_ADDRESS (p) > best_pc
c5aa993b 796 || (psymtab->textlow == 0
c906108c
SS
797 && best_pc == 0 && SYMBOL_VALUE_ADDRESS (p) == 0)))
798 {
c5aa993b 799 if (section) /* match on a specific section */
c906108c
SS
800 {
801 fixup_psymbol_section (p, psymtab->objfile);
802 if (SYMBOL_BFD_SECTION (p) != section)
803 continue;
804 }
805 best_pc = SYMBOL_VALUE_ADDRESS (p);
806 best = p;
807 }
808 }
809
810 return best;
811}
812
813/* Find which partial symbol within a psymtab matches PC. Return 0 if none.
814 Check all psymtabs if PSYMTAB is 0. Backwards compatibility, no section. */
815
816struct partial_symbol *
fba45db2 817find_pc_psymbol (struct partial_symtab *psymtab, CORE_ADDR pc)
c906108c
SS
818{
819 return find_pc_sect_psymbol (psymtab, pc, find_pc_mapped_section (pc));
820}
821\f
822/* Debug symbols usually don't have section information. We need to dig that
823 out of the minimal symbols and stash that in the debug symbol. */
824
825static void
fba45db2 826fixup_section (struct general_symbol_info *ginfo, struct objfile *objfile)
c906108c
SS
827{
828 struct minimal_symbol *msym;
829 msym = lookup_minimal_symbol (ginfo->name, NULL, objfile);
830
831 if (msym)
7a78d0ee
KB
832 {
833 ginfo->bfd_section = SYMBOL_BFD_SECTION (msym);
834 ginfo->section = SYMBOL_SECTION (msym);
835 }
c906108c
SS
836}
837
838struct symbol *
fba45db2 839fixup_symbol_section (struct symbol *sym, struct objfile *objfile)
c906108c
SS
840{
841 if (!sym)
842 return NULL;
843
844 if (SYMBOL_BFD_SECTION (sym))
845 return sym;
846
847 fixup_section (&sym->ginfo, objfile);
848
849 return sym;
850}
851
7a78d0ee 852struct partial_symbol *
fba45db2 853fixup_psymbol_section (struct partial_symbol *psym, struct objfile *objfile)
c906108c
SS
854{
855 if (!psym)
856 return NULL;
857
858 if (SYMBOL_BFD_SECTION (psym))
859 return psym;
860
861 fixup_section (&psym->ginfo, objfile);
862
863 return psym;
864}
865
866/* Find the definition for a specified symbol name NAME
176620f1 867 in domain DOMAIN, visible from lexical block BLOCK.
c906108c
SS
868 Returns the struct symbol pointer, or zero if no symbol is found.
869 If SYMTAB is non-NULL, store the symbol table in which the
870 symbol was found there, or NULL if not found.
871 C++: if IS_A_FIELD_OF_THIS is nonzero on entry, check to see if
872 NAME is a field of the current implied argument `this'. If so set
873 *IS_A_FIELD_OF_THIS to 1, otherwise set it to zero.
874 BLOCK_FOUND is set to the block in which NAME is found (in the case of
875 a field of `this', value_of_this sets BLOCK_FOUND to the proper value.) */
876
877/* This function has a bunch of loops in it and it would seem to be
878 attractive to put in some QUIT's (though I'm not really sure
879 whether it can run long enough to be really important). But there
880 are a few calls for which it would appear to be bad news to quit
7ca9f392
AC
881 out of here: find_proc_desc in alpha-tdep.c and mips-tdep.c. (Note
882 that there is C++ code below which can error(), but that probably
883 doesn't affect these calls since they are looking for a known
884 variable and thus can probably assume it will never hit the C++
885 code). */
c906108c
SS
886
887struct symbol *
fba7f19c 888lookup_symbol (const char *name, const struct block *block,
176620f1 889 const domain_enum domain, int *is_a_field_of_this,
fba45db2 890 struct symtab **symtab)
c906108c 891{
729051e6
DJ
892 char *demangled_name = NULL;
893 const char *modified_name = NULL;
3121eff0 894 const char *mangled_name = NULL;
fba7f19c
EZ
895 int needtofreename = 0;
896 struct symbol *returnval;
c906108c 897
729051e6
DJ
898 modified_name = name;
899
900 /* If we are using C++ language, demangle the name before doing a lookup, so
901 we can always binary search. */
902 if (current_language->la_language == language_cplus)
903 {
904 demangled_name = cplus_demangle (name, DMGL_ANSI | DMGL_PARAMS);
905 if (demangled_name)
906 {
907 mangled_name = name;
908 modified_name = demangled_name;
909 needtofreename = 1;
910 }
911 }
912
63872f9d
JG
913 if (case_sensitivity == case_sensitive_off)
914 {
915 char *copy;
916 int len, i;
917
918 len = strlen (name);
919 copy = (char *) alloca (len + 1);
920 for (i= 0; i < len; i++)
921 copy[i] = tolower (name[i]);
922 copy[len] = 0;
fba7f19c 923 modified_name = copy;
63872f9d 924 }
fba7f19c 925
3121eff0 926 returnval = lookup_symbol_aux (modified_name, mangled_name, block,
176620f1 927 domain, is_a_field_of_this, symtab);
fba7f19c 928 if (needtofreename)
729051e6 929 xfree (demangled_name);
fba7f19c
EZ
930
931 return returnval;
932}
933
5ad1c190
DC
934/* Behave like lookup_symbol_aux except that NAME is the natural name
935 of the symbol that we're looking for and, if LINKAGE_NAME is
936 non-NULL, ensure that the symbol's linkage name matches as
937 well. */
938
fba7f19c 939static struct symbol *
5ad1c190 940lookup_symbol_aux (const char *name, const char *linkage_name,
176620f1 941 const struct block *block, const domain_enum domain,
3121eff0 942 int *is_a_field_of_this, struct symtab **symtab)
fba7f19c 943{
8155455b 944 struct symbol *sym;
406bc4de 945
9a146a11
EZ
946 /* Make sure we do something sensible with is_a_field_of_this, since
947 the callers that set this parameter to some non-null value will
948 certainly use it later and expect it to be either 0 or 1.
949 If we don't set it, the contents of is_a_field_of_this are
950 undefined. */
951 if (is_a_field_of_this != NULL)
952 *is_a_field_of_this = 0;
953
e4051eeb
DC
954 /* Search specified block and its superiors. Don't search
955 STATIC_BLOCK or GLOBAL_BLOCK. */
c906108c 956
5ad1c190 957 sym = lookup_symbol_aux_local (name, linkage_name, block, domain,
89a9d1b1 958 symtab);
8155455b
DC
959 if (sym != NULL)
960 return sym;
c906108c 961
5f9a71c3
DC
962 /* If requested to do so by the caller and if appropriate for the
963 current language, check to see if NAME is a field of `this'. */
964
965 if (current_language->la_value_of_this != NULL
966 && is_a_field_of_this != NULL)
c906108c 967 {
5f9a71c3 968 struct value *v = current_language->la_value_of_this (0);
c5aa993b 969
c906108c
SS
970 if (v && check_field (v, name))
971 {
972 *is_a_field_of_this = 1;
973 if (symtab != NULL)
974 *symtab = NULL;
975 return NULL;
976 }
977 }
978
5f9a71c3
DC
979 /* Now do whatever is appropriate for the current language to look
980 up static and global variables. */
c906108c 981
5f9a71c3
DC
982 sym = current_language->la_lookup_symbol_nonlocal (name, linkage_name,
983 block, domain,
984 symtab);
8155455b
DC
985 if (sym != NULL)
986 return sym;
c906108c 987
8155455b
DC
988 /* Now search all static file-level symbols. Not strictly correct,
989 but more useful than an error. Do the symtabs first, then check
990 the psymtabs. If a psymtab indicates the existence of the
991 desired name as a file-level static, then do psymtab-to-symtab
c906108c
SS
992 conversion on the fly and return the found symbol. */
993
5ad1c190 994 sym = lookup_symbol_aux_symtabs (STATIC_BLOCK, name, linkage_name,
176620f1 995 domain, symtab);
8155455b
DC
996 if (sym != NULL)
997 return sym;
998
5ad1c190 999 sym = lookup_symbol_aux_psymtabs (STATIC_BLOCK, name, linkage_name,
176620f1 1000 domain, symtab);
8155455b
DC
1001 if (sym != NULL)
1002 return sym;
c906108c 1003
c906108c
SS
1004 if (symtab != NULL)
1005 *symtab = NULL;
8155455b 1006 return NULL;
c906108c 1007}
8155455b 1008
e4051eeb 1009/* Check to see if the symbol is defined in BLOCK or its superiors.
89a9d1b1 1010 Don't search STATIC_BLOCK or GLOBAL_BLOCK. */
8155455b
DC
1011
1012static struct symbol *
5ad1c190 1013lookup_symbol_aux_local (const char *name, const char *linkage_name,
8155455b 1014 const struct block *block,
176620f1 1015 const domain_enum domain,
89a9d1b1 1016 struct symtab **symtab)
8155455b
DC
1017{
1018 struct symbol *sym;
89a9d1b1
DC
1019 const struct block *static_block = block_static_block (block);
1020
e4051eeb
DC
1021 /* Check if either no block is specified or it's a global block. */
1022
89a9d1b1
DC
1023 if (static_block == NULL)
1024 return NULL;
e4051eeb 1025
89a9d1b1 1026 while (block != static_block)
f61e8913 1027 {
5ad1c190 1028 sym = lookup_symbol_aux_block (name, linkage_name, block, domain,
f61e8913
DC
1029 symtab);
1030 if (sym != NULL)
1031 return sym;
1032 block = BLOCK_SUPERBLOCK (block);
1033 }
1034
89a9d1b1 1035 /* We've reached the static block without finding a result. */
e4051eeb 1036
f61e8913
DC
1037 return NULL;
1038}
1039
1040/* Look up a symbol in a block; if found, locate its symtab, fixup the
1041 symbol, and set block_found appropriately. */
1042
5f9a71c3 1043struct symbol *
5ad1c190 1044lookup_symbol_aux_block (const char *name, const char *linkage_name,
f61e8913 1045 const struct block *block,
176620f1 1046 const domain_enum domain,
f61e8913
DC
1047 struct symtab **symtab)
1048{
1049 struct symbol *sym;
8155455b
DC
1050 struct objfile *objfile = NULL;
1051 struct blockvector *bv;
1052 struct block *b;
1053 struct symtab *s = NULL;
f61e8913 1054
5ad1c190 1055 sym = lookup_block_symbol (block, name, linkage_name, domain);
f61e8913 1056 if (sym)
8155455b 1057 {
f61e8913
DC
1058 block_found = block;
1059 if (symtab != NULL)
8155455b 1060 {
f61e8913
DC
1061 /* Search the list of symtabs for one which contains the
1062 address of the start of this block. */
1063 ALL_SYMTABS (objfile, s)
8155455b 1064 {
f61e8913
DC
1065 bv = BLOCKVECTOR (s);
1066 b = BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK);
1067 if (BLOCK_START (b) <= BLOCK_START (block)
1068 && BLOCK_END (b) > BLOCK_START (block))
1069 goto found;
8155455b 1070 }
f61e8913
DC
1071 found:
1072 *symtab = s;
8155455b 1073 }
f61e8913
DC
1074
1075 return fixup_symbol_section (sym, objfile);
8155455b
DC
1076 }
1077
1078 return NULL;
1079}
1080
1081/* Check to see if the symbol is defined in one of the symtabs.
1082 BLOCK_INDEX should be either GLOBAL_BLOCK or STATIC_BLOCK,
1083 depending on whether or not we want to search global symbols or
1084 static symbols. */
1085
1086static struct symbol *
1087lookup_symbol_aux_symtabs (int block_index,
5ad1c190 1088 const char *name, const char *linkage_name,
176620f1 1089 const domain_enum domain,
8155455b
DC
1090 struct symtab **symtab)
1091{
1092 struct symbol *sym;
1093 struct objfile *objfile;
1094 struct blockvector *bv;
1095 const struct block *block;
1096 struct symtab *s;
1097
1098 ALL_SYMTABS (objfile, s)
1099 {
1100 bv = BLOCKVECTOR (s);
1101 block = BLOCKVECTOR_BLOCK (bv, block_index);
5ad1c190 1102 sym = lookup_block_symbol (block, name, linkage_name, domain);
8155455b
DC
1103 if (sym)
1104 {
1105 block_found = block;
1106 if (symtab != NULL)
1107 *symtab = s;
1108 return fixup_symbol_section (sym, objfile);
1109 }
1110 }
1111
1112 return NULL;
1113}
1114
1115/* Check to see if the symbol is defined in one of the partial
1116 symtabs. BLOCK_INDEX should be either GLOBAL_BLOCK or
1117 STATIC_BLOCK, depending on whether or not we want to search global
1118 symbols or static symbols. */
1119
1120static struct symbol *
1121lookup_symbol_aux_psymtabs (int block_index, const char *name,
5ad1c190 1122 const char *linkage_name,
176620f1 1123 const domain_enum domain,
8155455b
DC
1124 struct symtab **symtab)
1125{
1126 struct symbol *sym;
1127 struct objfile *objfile;
1128 struct blockvector *bv;
1129 const struct block *block;
1130 struct partial_symtab *ps;
1131 struct symtab *s;
1132 const int psymtab_index = (block_index == GLOBAL_BLOCK ? 1 : 0);
1133
1134 ALL_PSYMTABS (objfile, ps)
1135 {
1136 if (!ps->readin
5ad1c190 1137 && lookup_partial_symbol (ps, name, linkage_name,
176620f1 1138 psymtab_index, domain))
8155455b
DC
1139 {
1140 s = PSYMTAB_TO_SYMTAB (ps);
1141 bv = BLOCKVECTOR (s);
1142 block = BLOCKVECTOR_BLOCK (bv, block_index);
5ad1c190 1143 sym = lookup_block_symbol (block, name, linkage_name, domain);
8155455b
DC
1144 if (!sym)
1145 {
1146 /* This shouldn't be necessary, but as a last resort try
1147 looking in the statics even though the psymtab claimed
1148 the symbol was global, or vice-versa. It's possible
1149 that the psymtab gets it wrong in some cases. */
1150
1151 /* FIXME: carlton/2002-09-30: Should we really do that?
1152 If that happens, isn't it likely to be a GDB error, in
1153 which case we should fix the GDB error rather than
1154 silently dealing with it here? So I'd vote for
1155 removing the check for the symbol in the other
1156 block. */
1157 block = BLOCKVECTOR_BLOCK (bv,
1158 block_index == GLOBAL_BLOCK ?
1159 STATIC_BLOCK : GLOBAL_BLOCK);
5ad1c190 1160 sym = lookup_block_symbol (block, name, linkage_name, domain);
8155455b
DC
1161 if (!sym)
1162 error ("Internal: %s symbol `%s' found in %s psymtab but not in symtab.\n%s may be an inlined function, or may be a template function\n(if a template, try specifying an instantiation: %s<type>).",
1163 block_index == GLOBAL_BLOCK ? "global" : "static",
1164 name, ps->filename, name, name);
1165 }
1166 if (symtab != NULL)
1167 *symtab = s;
1168 return fixup_symbol_section (sym, objfile);
1169 }
1170 }
1171
1172 return NULL;
1173}
1174
ae2f03ac 1175#if 0
406bc4de
DC
1176/* Check for the possibility of the symbol being a function or a
1177 mangled variable that is stored in one of the minimal symbol
1178 tables. Eventually, all global symbols might be resolved in this
1179 way. */
1180
e45febe2
DC
1181/* NOTE: carlton/2002-12-05: At one point, this function was part of
1182 lookup_symbol_aux, and what are now 'return' statements within
1183 lookup_symbol_aux_minsyms returned from lookup_symbol_aux, even if
1184 sym was NULL. As far as I can tell, this was basically accidental;
1185 it didn't happen every time that msymbol was non-NULL, but only if
1186 some additional conditions held as well, and it caused problems
1187 with HP-generated symbol tables. */
1188
ae2f03ac
EZ
1189/* NOTE: carlton/2003-05-14: This function was once used as part of
1190 lookup_symbol. It is currently unnecessary for correctness
1191 reasons, however, and using it doesn't seem to be any faster than
1192 using lookup_symbol_aux_psymtabs, so I'm commenting it out. */
1193
406bc4de
DC
1194static struct symbol *
1195lookup_symbol_aux_minsyms (const char *name,
5ad1c190 1196 const char *linkage_name,
176620f1 1197 const domain_enum domain,
406bc4de 1198 int *is_a_field_of_this,
e45febe2 1199 struct symtab **symtab)
406bc4de
DC
1200{
1201 struct symbol *sym;
1202 struct blockvector *bv;
1203 const struct block *block;
1204 struct minimal_symbol *msymbol;
1205 struct symtab *s;
1206
176620f1 1207 if (domain == VAR_DOMAIN)
406bc4de
DC
1208 {
1209 msymbol = lookup_minimal_symbol (name, NULL, NULL);
1210
1211 if (msymbol != NULL)
1212 {
1213 /* OK, we found a minimal symbol in spite of not finding any
1214 symbol. There are various possible explanations for
1215 this. One possibility is the symbol exists in code not
1216 compiled -g. Another possibility is that the 'psymtab'
1217 isn't doing its job. A third possibility, related to #2,
1218 is that we were confused by name-mangling. For instance,
1219 maybe the psymtab isn't doing its job because it only
1220 know about demangled names, but we were given a mangled
1221 name... */
1222
1223 /* We first use the address in the msymbol to try to locate
1224 the appropriate symtab. Note that find_pc_sect_symtab()
1225 has a side-effect of doing psymtab-to-symtab expansion,
1226 for the found symtab. */
1227 s = find_pc_sect_symtab (SYMBOL_VALUE_ADDRESS (msymbol),
1228 SYMBOL_BFD_SECTION (msymbol));
1229 if (s != NULL)
1230 {
1231 /* This is a function which has a symtab for its address. */
1232 bv = BLOCKVECTOR (s);
1233 block = BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK);
1234
2335f48e 1235 /* This call used to pass `SYMBOL_LINKAGE_NAME (msymbol)' as the
406bc4de
DC
1236 `name' argument to lookup_block_symbol. But the name
1237 of a minimal symbol is always mangled, so that seems
1238 to be clearly the wrong thing to pass as the
1239 unmangled name. */
1240 sym =
5ad1c190 1241 lookup_block_symbol (block, name, linkage_name, domain);
406bc4de
DC
1242 /* We kept static functions in minimal symbol table as well as
1243 in static scope. We want to find them in the symbol table. */
1244 if (!sym)
1245 {
1246 block = BLOCKVECTOR_BLOCK (bv, STATIC_BLOCK);
1247 sym = lookup_block_symbol (block, name,
5ad1c190 1248 linkage_name, domain);
406bc4de
DC
1249 }
1250
1251 /* NOTE: carlton/2002-12-04: The following comment was
1252 taken from a time when two versions of this function
1253 were part of the body of lookup_symbol_aux: this
1254 comment was taken from the version of the function
1255 that was #ifdef HPUXHPPA, and the comment was right
1256 before the 'return NULL' part of lookup_symbol_aux.
1257 (Hence the "Fall through and return 0" comment.)
1258 Elena did some digging into the situation for
1259 Fortran, and she reports:
1260
1261 "I asked around (thanks to Jeff Knaggs), and I think
1262 the story for Fortran goes like this:
1263
1264 "Apparently, in older Fortrans, '_' was not part of
1265 the user namespace. g77 attached a final '_' to
1266 procedure names as the exported symbols for linkage
1267 (foo_) , but the symbols went in the debug info just
1268 like 'foo'. The rationale behind this is not
1269 completely clear, and maybe it was done to other
1270 symbols as well, not just procedures." */
1271
1272 /* If we get here with sym == 0, the symbol was
1273 found in the minimal symbol table
1274 but not in the symtab.
1275 Fall through and return 0 to use the msymbol
1276 definition of "foo_".
1277 (Note that outer code generally follows up a call
1278 to this routine with a call to lookup_minimal_symbol(),
1279 so a 0 return means we'll just flow into that other routine).
1280
1281 This happens for Fortran "foo_" symbols,
1282 which are "foo" in the symtab.
1283
1284 This can also happen if "asm" is used to make a
1285 regular symbol but not a debugging symbol, e.g.
1286 asm(".globl _main");
1287 asm("_main:");
1288 */
1289
1290 if (symtab != NULL && sym != NULL)
1291 *symtab = s;
406bc4de
DC
1292 return fixup_symbol_section (sym, s->objfile);
1293 }
406bc4de
DC
1294 }
1295 }
1296
1297 return NULL;
1298}
ae2f03ac 1299#endif /* 0 */
406bc4de 1300
5f9a71c3
DC
1301/* A default version of lookup_symbol_nonlocal for use by languages
1302 that can't think of anything better to do. This implements the C
1303 lookup rules. */
1304
1305struct symbol *
1306basic_lookup_symbol_nonlocal (const char *name,
1307 const char *linkage_name,
1308 const struct block *block,
1309 const domain_enum domain,
1310 struct symtab **symtab)
1311{
1312 struct symbol *sym;
1313
1314 /* NOTE: carlton/2003-05-19: The comments below were written when
1315 this (or what turned into this) was part of lookup_symbol_aux;
1316 I'm much less worried about these questions now, since these
1317 decisions have turned out well, but I leave these comments here
1318 for posterity. */
1319
1320 /* NOTE: carlton/2002-12-05: There is a question as to whether or
1321 not it would be appropriate to search the current global block
1322 here as well. (That's what this code used to do before the
1323 is_a_field_of_this check was moved up.) On the one hand, it's
1324 redundant with the lookup_symbol_aux_symtabs search that happens
1325 next. On the other hand, if decode_line_1 is passed an argument
1326 like filename:var, then the user presumably wants 'var' to be
1327 searched for in filename. On the third hand, there shouldn't be
1328 multiple global variables all of which are named 'var', and it's
1329 not like decode_line_1 has ever restricted its search to only
1330 global variables in a single filename. All in all, only
1331 searching the static block here seems best: it's correct and it's
1332 cleanest. */
1333
1334 /* NOTE: carlton/2002-12-05: There's also a possible performance
1335 issue here: if you usually search for global symbols in the
1336 current file, then it would be slightly better to search the
1337 current global block before searching all the symtabs. But there
1338 are other factors that have a much greater effect on performance
1339 than that one, so I don't think we should worry about that for
1340 now. */
1341
1342 sym = lookup_symbol_static (name, linkage_name, block, domain, symtab);
1343 if (sym != NULL)
1344 return sym;
1345
1346 return lookup_symbol_global (name, linkage_name, domain, symtab);
1347}
1348
1349/* Lookup a symbol in the static block associated to BLOCK, if there
1350 is one; do nothing if BLOCK is NULL or a global block. */
1351
1352struct symbol *
1353lookup_symbol_static (const char *name,
1354 const char *linkage_name,
1355 const struct block *block,
1356 const domain_enum domain,
1357 struct symtab **symtab)
1358{
1359 const struct block *static_block = block_static_block (block);
1360
1361 if (static_block != NULL)
1362 return lookup_symbol_aux_block (name, linkage_name, static_block,
1363 domain, symtab);
1364 else
1365 return NULL;
1366}
1367
1368/* Lookup a symbol in all files' global blocks (searching psymtabs if
1369 necessary). */
1370
1371struct symbol *
1372lookup_symbol_global (const char *name,
1373 const char *linkage_name,
1374 const domain_enum domain,
1375 struct symtab **symtab)
1376{
1377 struct symbol *sym;
1378
1379 sym = lookup_symbol_aux_symtabs (GLOBAL_BLOCK, name, linkage_name,
1380 domain, symtab);
1381 if (sym != NULL)
1382 return sym;
1383
1384 return lookup_symbol_aux_psymtabs (GLOBAL_BLOCK, name, linkage_name,
1385 domain, symtab);
1386}
1387
3d4e8fd2
DC
1388/* Look, in partial_symtab PST, for symbol whose natural name is NAME.
1389 If LINKAGE_NAME is non-NULL, check in addition that the symbol's
1390 linkage name matches it. Check the global symbols if GLOBAL, the
1391 static symbols if not */
c906108c 1392
b6429628 1393struct partial_symbol *
3d4e8fd2
DC
1394lookup_partial_symbol (struct partial_symtab *pst, const char *name,
1395 const char *linkage_name, int global,
176620f1 1396 domain_enum domain)
c906108c 1397{
357e46e7 1398 struct partial_symbol *temp;
c906108c 1399 struct partial_symbol **start, **psym;
38d49aff 1400 struct partial_symbol **top, **real_top, **bottom, **center;
c906108c
SS
1401 int length = (global ? pst->n_global_syms : pst->n_static_syms);
1402 int do_linear_search = 1;
357e46e7 1403
c906108c
SS
1404 if (length == 0)
1405 {
1406 return (NULL);
1407 }
c906108c
SS
1408 start = (global ?
1409 pst->objfile->global_psymbols.list + pst->globals_offset :
c5aa993b 1410 pst->objfile->static_psymbols.list + pst->statics_offset);
357e46e7 1411
c5aa993b 1412 if (global) /* This means we can use a binary search. */
c906108c
SS
1413 {
1414 do_linear_search = 0;
1415
1416 /* Binary search. This search is guaranteed to end with center
0fe19209
DC
1417 pointing at the earliest partial symbol whose name might be
1418 correct. At that point *all* partial symbols with an
1419 appropriate name will be checked against the correct
176620f1 1420 domain. */
c906108c
SS
1421
1422 bottom = start;
1423 top = start + length - 1;
38d49aff 1424 real_top = top;
c906108c
SS
1425 while (top > bottom)
1426 {
1427 center = bottom + (top - bottom) / 2;
1428 if (!(center < top))
e1e9e218 1429 internal_error (__FILE__, __LINE__, "failed internal consistency check");
c906108c 1430 if (!do_linear_search
357e46e7 1431 && (SYMBOL_LANGUAGE (*center) == language_java))
c906108c
SS
1432 {
1433 do_linear_search = 1;
1434 }
c8be8951 1435 if (strcmp_iw_ordered (SYMBOL_NATURAL_NAME (*center), name) >= 0)
c906108c
SS
1436 {
1437 top = center;
1438 }
1439 else
1440 {
1441 bottom = center + 1;
1442 }
1443 }
1444 if (!(top == bottom))
e1e9e218 1445 internal_error (__FILE__, __LINE__, "failed internal consistency check");
357e46e7 1446
3d4e8fd2
DC
1447 while (top <= real_top
1448 && (linkage_name != NULL
1449 ? strcmp (SYMBOL_LINKAGE_NAME (*top), linkage_name) == 0
1450 : SYMBOL_MATCHES_NATURAL_NAME (*top,name)))
c906108c 1451 {
176620f1 1452 if (SYMBOL_DOMAIN (*top) == domain)
c906108c 1453 {
357e46e7 1454 return (*top);
c906108c 1455 }
c5aa993b 1456 top++;
c906108c
SS
1457 }
1458 }
1459
1460 /* Can't use a binary search or else we found during the binary search that
1461 we should also do a linear search. */
1462
1463 if (do_linear_search)
357e46e7 1464 {
c906108c
SS
1465 for (psym = start; psym < start + length; psym++)
1466 {
176620f1 1467 if (domain == SYMBOL_DOMAIN (*psym))
c906108c 1468 {
3d4e8fd2
DC
1469 if (linkage_name != NULL
1470 ? strcmp (SYMBOL_LINKAGE_NAME (*psym), linkage_name) == 0
1471 : SYMBOL_MATCHES_NATURAL_NAME (*psym, name))
c906108c
SS
1472 {
1473 return (*psym);
1474 }
1475 }
1476 }
1477 }
1478
1479 return (NULL);
1480}
1481
176620f1 1482/* Look up a type named NAME in the struct_domain. The type returned
c906108c
SS
1483 must not be opaque -- i.e., must have at least one field defined
1484
1485 This code was modelled on lookup_symbol -- the parts not relevant to looking
1486 up types were just left out. In particular it's assumed here that types
176620f1 1487 are available in struct_domain and only at file-static or global blocks. */
c906108c
SS
1488
1489
1490struct type *
fba45db2 1491lookup_transparent_type (const char *name)
c906108c 1492{
52f0bd74
AC
1493 struct symbol *sym;
1494 struct symtab *s = NULL;
1495 struct partial_symtab *ps;
c906108c 1496 struct blockvector *bv;
52f0bd74
AC
1497 struct objfile *objfile;
1498 struct block *block;
c906108c
SS
1499
1500 /* Now search all the global symbols. Do the symtab's first, then
1501 check the psymtab's. If a psymtab indicates the existence
1502 of the desired name as a global, then do psymtab-to-symtab
1503 conversion on the fly and return the found symbol. */
c5aa993b 1504
c906108c 1505 ALL_SYMTABS (objfile, s)
c5aa993b
JM
1506 {
1507 bv = BLOCKVECTOR (s);
1508 block = BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK);
176620f1 1509 sym = lookup_block_symbol (block, name, NULL, STRUCT_DOMAIN);
c5aa993b
JM
1510 if (sym && !TYPE_IS_OPAQUE (SYMBOL_TYPE (sym)))
1511 {
1512 return SYMBOL_TYPE (sym);
1513 }
1514 }
c906108c
SS
1515
1516 ALL_PSYMTABS (objfile, ps)
c5aa993b 1517 {
3d4e8fd2 1518 if (!ps->readin && lookup_partial_symbol (ps, name, NULL,
176620f1 1519 1, STRUCT_DOMAIN))
c5aa993b
JM
1520 {
1521 s = PSYMTAB_TO_SYMTAB (ps);
1522 bv = BLOCKVECTOR (s);
1523 block = BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK);
176620f1 1524 sym = lookup_block_symbol (block, name, NULL, STRUCT_DOMAIN);
c5aa993b
JM
1525 if (!sym)
1526 {
1527 /* This shouldn't be necessary, but as a last resort
1528 * try looking in the statics even though the psymtab
1529 * claimed the symbol was global. It's possible that
1530 * the psymtab gets it wrong in some cases.
1531 */
1532 block = BLOCKVECTOR_BLOCK (bv, STATIC_BLOCK);
176620f1 1533 sym = lookup_block_symbol (block, name, NULL, STRUCT_DOMAIN);
c5aa993b
JM
1534 if (!sym)
1535 error ("Internal: global symbol `%s' found in %s psymtab but not in symtab.\n\
c906108c
SS
1536%s may be an inlined function, or may be a template function\n\
1537(if a template, try specifying an instantiation: %s<type>).",
c5aa993b
JM
1538 name, ps->filename, name, name);
1539 }
1540 if (!TYPE_IS_OPAQUE (SYMBOL_TYPE (sym)))
1541 return SYMBOL_TYPE (sym);
1542 }
1543 }
c906108c
SS
1544
1545 /* Now search the static file-level symbols.
1546 Not strictly correct, but more useful than an error.
1547 Do the symtab's first, then
1548 check the psymtab's. If a psymtab indicates the existence
1549 of the desired name as a file-level static, then do psymtab-to-symtab
1550 conversion on the fly and return the found symbol.
1551 */
1552
1553 ALL_SYMTABS (objfile, s)
c5aa993b
JM
1554 {
1555 bv = BLOCKVECTOR (s);
1556 block = BLOCKVECTOR_BLOCK (bv, STATIC_BLOCK);
176620f1 1557 sym = lookup_block_symbol (block, name, NULL, STRUCT_DOMAIN);
c5aa993b
JM
1558 if (sym && !TYPE_IS_OPAQUE (SYMBOL_TYPE (sym)))
1559 {
1560 return SYMBOL_TYPE (sym);
1561 }
1562 }
c906108c
SS
1563
1564 ALL_PSYMTABS (objfile, ps)
c5aa993b 1565 {
176620f1 1566 if (!ps->readin && lookup_partial_symbol (ps, name, NULL, 0, STRUCT_DOMAIN))
c5aa993b
JM
1567 {
1568 s = PSYMTAB_TO_SYMTAB (ps);
1569 bv = BLOCKVECTOR (s);
1570 block = BLOCKVECTOR_BLOCK (bv, STATIC_BLOCK);
176620f1 1571 sym = lookup_block_symbol (block, name, NULL, STRUCT_DOMAIN);
c5aa993b
JM
1572 if (!sym)
1573 {
1574 /* This shouldn't be necessary, but as a last resort
1575 * try looking in the globals even though the psymtab
1576 * claimed the symbol was static. It's possible that
1577 * the psymtab gets it wrong in some cases.
1578 */
1579 block = BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK);
176620f1 1580 sym = lookup_block_symbol (block, name, NULL, STRUCT_DOMAIN);
c5aa993b
JM
1581 if (!sym)
1582 error ("Internal: static symbol `%s' found in %s psymtab but not in symtab.\n\
c906108c
SS
1583%s may be an inlined function, or may be a template function\n\
1584(if a template, try specifying an instantiation: %s<type>).",
c5aa993b
JM
1585 name, ps->filename, name, name);
1586 }
1587 if (!TYPE_IS_OPAQUE (SYMBOL_TYPE (sym)))
1588 return SYMBOL_TYPE (sym);
1589 }
1590 }
c906108c
SS
1591 return (struct type *) 0;
1592}
1593
1594
1595/* Find the psymtab containing main(). */
1596/* FIXME: What about languages without main() or specially linked
1597 executables that have no main() ? */
1598
1599struct partial_symtab *
fba45db2 1600find_main_psymtab (void)
c906108c 1601{
52f0bd74
AC
1602 struct partial_symtab *pst;
1603 struct objfile *objfile;
c906108c
SS
1604
1605 ALL_PSYMTABS (objfile, pst)
c5aa993b 1606 {
176620f1 1607 if (lookup_partial_symbol (pst, main_name (), NULL, 1, VAR_DOMAIN))
c5aa993b
JM
1608 {
1609 return (pst);
1610 }
1611 }
c906108c
SS
1612 return (NULL);
1613}
1614
176620f1 1615/* Search BLOCK for symbol NAME in DOMAIN.
c906108c
SS
1616
1617 Note that if NAME is the demangled form of a C++ symbol, we will fail
1618 to find a match during the binary search of the non-encoded names, but
1619 for now we don't worry about the slight inefficiency of looking for
1620 a match we'll never find, since it will go pretty quick. Once the
1621 binary search terminates, we drop through and do a straight linear
1bae87b9
AF
1622 search on the symbols. Each symbol which is marked as being a ObjC/C++
1623 symbol (language_cplus or language_objc set) has both the encoded and
1624 non-encoded names tested for a match.
3121eff0 1625
5ad1c190 1626 If LINKAGE_NAME is non-NULL, verify that any symbol we find has this
3121eff0
DJ
1627 particular mangled name.
1628*/
c906108c
SS
1629
1630struct symbol *
aa1ee363 1631lookup_block_symbol (const struct block *block, const char *name,
5ad1c190 1632 const char *linkage_name,
176620f1 1633 const domain_enum domain)
c906108c 1634{
de4f826b
DC
1635 struct dict_iterator iter;
1636 struct symbol *sym;
c906108c 1637
de4f826b 1638 if (!BLOCK_FUNCTION (block))
261397f8 1639 {
de4f826b
DC
1640 for (sym = dict_iter_name_first (BLOCK_DICT (block), name, &iter);
1641 sym != NULL;
1642 sym = dict_iter_name_next (name, &iter))
261397f8 1643 {
de4f826b
DC
1644 if (SYMBOL_DOMAIN (sym) == domain
1645 && (linkage_name != NULL
1646 ? strcmp (SYMBOL_LINKAGE_NAME (sym), linkage_name) == 0 : 1))
261397f8
DJ
1647 return sym;
1648 }
1649 return NULL;
1650 }
526e70c0 1651 else
c906108c 1652 {
526e70c0
DC
1653 /* Note that parameter symbols do not always show up last in the
1654 list; this loop makes sure to take anything else other than
1655 parameter symbols first; it only uses parameter symbols as a
1656 last resort. Note that this only takes up extra computation
1657 time on a match. */
de4f826b
DC
1658
1659 struct symbol *sym_found = NULL;
1660
1661 for (sym = dict_iter_name_first (BLOCK_DICT (block), name, &iter);
1662 sym != NULL;
1663 sym = dict_iter_name_next (name, &iter))
c906108c 1664 {
176620f1 1665 if (SYMBOL_DOMAIN (sym) == domain
de4f826b
DC
1666 && (linkage_name != NULL
1667 ? strcmp (SYMBOL_LINKAGE_NAME (sym), linkage_name) == 0 : 1))
c906108c 1668 {
c906108c
SS
1669 sym_found = sym;
1670 if (SYMBOL_CLASS (sym) != LOC_ARG &&
1671 SYMBOL_CLASS (sym) != LOC_LOCAL_ARG &&
1672 SYMBOL_CLASS (sym) != LOC_REF_ARG &&
1673 SYMBOL_CLASS (sym) != LOC_REGPARM &&
1674 SYMBOL_CLASS (sym) != LOC_REGPARM_ADDR &&
4c2df51b
DJ
1675 SYMBOL_CLASS (sym) != LOC_BASEREG_ARG &&
1676 SYMBOL_CLASS (sym) != LOC_COMPUTED_ARG)
c906108c
SS
1677 {
1678 break;
1679 }
1680 }
c906108c 1681 }
de4f826b 1682 return (sym_found); /* Will be NULL if not found. */
c906108c 1683 }
c906108c
SS
1684}
1685
c906108c
SS
1686/* Find the symtab associated with PC and SECTION. Look through the
1687 psymtabs and read in another symtab if necessary. */
1688
1689struct symtab *
fba45db2 1690find_pc_sect_symtab (CORE_ADDR pc, asection *section)
c906108c 1691{
52f0bd74 1692 struct block *b;
c906108c 1693 struct blockvector *bv;
52f0bd74
AC
1694 struct symtab *s = NULL;
1695 struct symtab *best_s = NULL;
1696 struct partial_symtab *ps;
1697 struct objfile *objfile;
c906108c 1698 CORE_ADDR distance = 0;
8a48e967
DJ
1699 struct minimal_symbol *msymbol;
1700
1701 /* If we know that this is not a text address, return failure. This is
1702 necessary because we loop based on the block's high and low code
1703 addresses, which do not include the data ranges, and because
1704 we call find_pc_sect_psymtab which has a similar restriction based
1705 on the partial_symtab's texthigh and textlow. */
1706 msymbol = lookup_minimal_symbol_by_pc_section (pc, section);
1707 if (msymbol
1708 && (msymbol->type == mst_data
1709 || msymbol->type == mst_bss
1710 || msymbol->type == mst_abs
1711 || msymbol->type == mst_file_data
1712 || msymbol->type == mst_file_bss))
1713 return NULL;
c906108c
SS
1714
1715 /* Search all symtabs for the one whose file contains our address, and which
1716 is the smallest of all the ones containing the address. This is designed
1717 to deal with a case like symtab a is at 0x1000-0x2000 and 0x3000-0x4000
1718 and symtab b is at 0x2000-0x3000. So the GLOBAL_BLOCK for a is from
1719 0x1000-0x4000, but for address 0x2345 we want to return symtab b.
1720
1721 This happens for native ecoff format, where code from included files
1722 gets its own symtab. The symtab for the included file should have
1723 been read in already via the dependency mechanism.
1724 It might be swifter to create several symtabs with the same name
1725 like xcoff does (I'm not sure).
1726
1727 It also happens for objfiles that have their functions reordered.
1728 For these, the symtab we are looking for is not necessarily read in. */
1729
1730 ALL_SYMTABS (objfile, s)
c5aa993b
JM
1731 {
1732 bv = BLOCKVECTOR (s);
1733 b = BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK);
c906108c 1734
c5aa993b 1735 if (BLOCK_START (b) <= pc
c5aa993b 1736 && BLOCK_END (b) > pc
c5aa993b
JM
1737 && (distance == 0
1738 || BLOCK_END (b) - BLOCK_START (b) < distance))
1739 {
1740 /* For an objfile that has its functions reordered,
1741 find_pc_psymtab will find the proper partial symbol table
1742 and we simply return its corresponding symtab. */
1743 /* In order to better support objfiles that contain both
1744 stabs and coff debugging info, we continue on if a psymtab
1745 can't be found. */
1746 if ((objfile->flags & OBJF_REORDERED) && objfile->psymtabs)
1747 {
1748 ps = find_pc_sect_psymtab (pc, section);
1749 if (ps)
1750 return PSYMTAB_TO_SYMTAB (ps);
1751 }
1752 if (section != 0)
1753 {
de4f826b 1754 struct dict_iterator iter;
261397f8 1755 struct symbol *sym = NULL;
c906108c 1756
de4f826b 1757 ALL_BLOCK_SYMBOLS (b, iter, sym)
c5aa993b 1758 {
261397f8
DJ
1759 fixup_symbol_section (sym, objfile);
1760 if (section == SYMBOL_BFD_SECTION (sym))
c5aa993b
JM
1761 break;
1762 }
de4f826b 1763 if (sym == NULL)
c5aa993b
JM
1764 continue; /* no symbol in this symtab matches section */
1765 }
1766 distance = BLOCK_END (b) - BLOCK_START (b);
1767 best_s = s;
1768 }
1769 }
c906108c
SS
1770
1771 if (best_s != NULL)
c5aa993b 1772 return (best_s);
c906108c
SS
1773
1774 s = NULL;
1775 ps = find_pc_sect_psymtab (pc, section);
1776 if (ps)
1777 {
1778 if (ps->readin)
1779 /* Might want to error() here (in case symtab is corrupt and
1780 will cause a core dump), but maybe we can successfully
1781 continue, so let's not. */
c906108c 1782 warning ("\
d730266b
AC
1783(Internal error: pc 0x%s in read in psymtab, but not in symtab.)\n",
1784 paddr_nz (pc));
c906108c
SS
1785 s = PSYMTAB_TO_SYMTAB (ps);
1786 }
1787 return (s);
1788}
1789
1790/* Find the symtab associated with PC. Look through the psymtabs and
1791 read in another symtab if necessary. Backward compatibility, no section */
1792
1793struct symtab *
fba45db2 1794find_pc_symtab (CORE_ADDR pc)
c906108c
SS
1795{
1796 return find_pc_sect_symtab (pc, find_pc_mapped_section (pc));
1797}
c906108c 1798\f
c5aa993b 1799
7e73cedf 1800/* Find the source file and line number for a given PC value and SECTION.
c906108c
SS
1801 Return a structure containing a symtab pointer, a line number,
1802 and a pc range for the entire source line.
1803 The value's .pc field is NOT the specified pc.
1804 NOTCURRENT nonzero means, if specified pc is on a line boundary,
1805 use the line that ends there. Otherwise, in that case, the line
1806 that begins there is used. */
1807
1808/* The big complication here is that a line may start in one file, and end just
1809 before the start of another file. This usually occurs when you #include
1810 code in the middle of a subroutine. To properly find the end of a line's PC
1811 range, we must search all symtabs associated with this compilation unit, and
1812 find the one whose first PC is closer than that of the next line in this
1813 symtab. */
1814
1815/* If it's worth the effort, we could be using a binary search. */
1816
1817struct symtab_and_line
198beae2 1818find_pc_sect_line (CORE_ADDR pc, struct bfd_section *section, int notcurrent)
c906108c
SS
1819{
1820 struct symtab *s;
52f0bd74
AC
1821 struct linetable *l;
1822 int len;
1823 int i;
1824 struct linetable_entry *item;
c906108c
SS
1825 struct symtab_and_line val;
1826 struct blockvector *bv;
1827 struct minimal_symbol *msymbol;
1828 struct minimal_symbol *mfunsym;
1829
1830 /* Info on best line seen so far, and where it starts, and its file. */
1831
1832 struct linetable_entry *best = NULL;
1833 CORE_ADDR best_end = 0;
1834 struct symtab *best_symtab = 0;
1835
1836 /* Store here the first line number
1837 of a file which contains the line at the smallest pc after PC.
1838 If we don't find a line whose range contains PC,
1839 we will use a line one less than this,
1840 with a range from the start of that file to the first line's pc. */
1841 struct linetable_entry *alt = NULL;
1842 struct symtab *alt_symtab = 0;
1843
1844 /* Info on best line seen in this file. */
1845
1846 struct linetable_entry *prev;
1847
1848 /* If this pc is not from the current frame,
1849 it is the address of the end of a call instruction.
1850 Quite likely that is the start of the following statement.
1851 But what we want is the statement containing the instruction.
1852 Fudge the pc to make sure we get that. */
1853
fe39c653 1854 init_sal (&val); /* initialize to zeroes */
c906108c 1855
b77b1eb7
JB
1856 /* It's tempting to assume that, if we can't find debugging info for
1857 any function enclosing PC, that we shouldn't search for line
1858 number info, either. However, GAS can emit line number info for
1859 assembly files --- very helpful when debugging hand-written
1860 assembly code. In such a case, we'd have no debug info for the
1861 function, but we would have line info. */
648f4f79 1862
c906108c
SS
1863 if (notcurrent)
1864 pc -= 1;
1865
c5aa993b 1866 /* elz: added this because this function returned the wrong
c906108c
SS
1867 information if the pc belongs to a stub (import/export)
1868 to call a shlib function. This stub would be anywhere between
1869 two functions in the target, and the line info was erroneously
1870 taken to be the one of the line before the pc.
c5aa993b 1871 */
c906108c 1872 /* RT: Further explanation:
c5aa993b 1873
c906108c
SS
1874 * We have stubs (trampolines) inserted between procedures.
1875 *
1876 * Example: "shr1" exists in a shared library, and a "shr1" stub also
1877 * exists in the main image.
1878 *
1879 * In the minimal symbol table, we have a bunch of symbols
1880 * sorted by start address. The stubs are marked as "trampoline",
1881 * the others appear as text. E.g.:
1882 *
1883 * Minimal symbol table for main image
1884 * main: code for main (text symbol)
1885 * shr1: stub (trampoline symbol)
1886 * foo: code for foo (text symbol)
1887 * ...
1888 * Minimal symbol table for "shr1" image:
1889 * ...
1890 * shr1: code for shr1 (text symbol)
1891 * ...
1892 *
1893 * So the code below is trying to detect if we are in the stub
1894 * ("shr1" stub), and if so, find the real code ("shr1" trampoline),
1895 * and if found, do the symbolization from the real-code address
1896 * rather than the stub address.
1897 *
1898 * Assumptions being made about the minimal symbol table:
1899 * 1. lookup_minimal_symbol_by_pc() will return a trampoline only
1900 * if we're really in the trampoline. If we're beyond it (say
1901 * we're in "foo" in the above example), it'll have a closer
1902 * symbol (the "foo" text symbol for example) and will not
1903 * return the trampoline.
1904 * 2. lookup_minimal_symbol_text() will find a real text symbol
1905 * corresponding to the trampoline, and whose address will
1906 * be different than the trampoline address. I put in a sanity
1907 * check for the address being the same, to avoid an
1908 * infinite recursion.
1909 */
c5aa993b
JM
1910 msymbol = lookup_minimal_symbol_by_pc (pc);
1911 if (msymbol != NULL)
c906108c 1912 if (MSYMBOL_TYPE (msymbol) == mst_solib_trampoline)
c5aa993b 1913 {
2335f48e 1914 mfunsym = lookup_minimal_symbol_text (SYMBOL_LINKAGE_NAME (msymbol),
5520a790 1915 NULL);
c5aa993b
JM
1916 if (mfunsym == NULL)
1917 /* I eliminated this warning since it is coming out
1918 * in the following situation:
1919 * gdb shmain // test program with shared libraries
1920 * (gdb) break shr1 // function in shared lib
1921 * Warning: In stub for ...
1922 * In the above situation, the shared lib is not loaded yet,
1923 * so of course we can't find the real func/line info,
1924 * but the "break" still works, and the warning is annoying.
1925 * So I commented out the warning. RT */
2335f48e 1926 /* warning ("In stub for %s; unable to find real function/line info", SYMBOL_LINKAGE_NAME (msymbol)) */ ;
c5aa993b
JM
1927 /* fall through */
1928 else if (SYMBOL_VALUE (mfunsym) == SYMBOL_VALUE (msymbol))
1929 /* Avoid infinite recursion */
1930 /* See above comment about why warning is commented out */
2335f48e 1931 /* warning ("In stub for %s; unable to find real function/line info", SYMBOL_LINKAGE_NAME (msymbol)) */ ;
c5aa993b
JM
1932 /* fall through */
1933 else
1934 return find_pc_line (SYMBOL_VALUE (mfunsym), 0);
1935 }
c906108c
SS
1936
1937
1938 s = find_pc_sect_symtab (pc, section);
1939 if (!s)
1940 {
1941 /* if no symbol information, return previous pc */
1942 if (notcurrent)
1943 pc++;
1944 val.pc = pc;
1945 return val;
1946 }
1947
1948 bv = BLOCKVECTOR (s);
1949
1950 /* Look at all the symtabs that share this blockvector.
1951 They all have the same apriori range, that we found was right;
1952 but they have different line tables. */
1953
1954 for (; s && BLOCKVECTOR (s) == bv; s = s->next)
1955 {
1956 /* Find the best line in this symtab. */
1957 l = LINETABLE (s);
1958 if (!l)
c5aa993b 1959 continue;
c906108c
SS
1960 len = l->nitems;
1961 if (len <= 0)
1962 {
1963 /* I think len can be zero if the symtab lacks line numbers
1964 (e.g. gcc -g1). (Either that or the LINETABLE is NULL;
1965 I'm not sure which, and maybe it depends on the symbol
1966 reader). */
1967 continue;
1968 }
1969
1970 prev = NULL;
1971 item = l->item; /* Get first line info */
1972
1973 /* Is this file's first line closer than the first lines of other files?
c5aa993b 1974 If so, record this file, and its first line, as best alternate. */
c906108c
SS
1975 if (item->pc > pc && (!alt || item->pc < alt->pc))
1976 {
1977 alt = item;
1978 alt_symtab = s;
1979 }
1980
1981 for (i = 0; i < len; i++, item++)
1982 {
1983 /* Leave prev pointing to the linetable entry for the last line
1984 that started at or before PC. */
1985 if (item->pc > pc)
1986 break;
1987
1988 prev = item;
1989 }
1990
1991 /* At this point, prev points at the line whose start addr is <= pc, and
c5aa993b
JM
1992 item points at the next line. If we ran off the end of the linetable
1993 (pc >= start of the last line), then prev == item. If pc < start of
1994 the first line, prev will not be set. */
c906108c
SS
1995
1996 /* Is this file's best line closer than the best in the other files?
083ae935
DJ
1997 If so, record this file, and its best line, as best so far. Don't
1998 save prev if it represents the end of a function (i.e. line number
1999 0) instead of a real line. */
c906108c 2000
083ae935 2001 if (prev && prev->line && (!best || prev->pc > best->pc))
c906108c
SS
2002 {
2003 best = prev;
2004 best_symtab = s;
25d53da1
KB
2005
2006 /* Discard BEST_END if it's before the PC of the current BEST. */
2007 if (best_end <= best->pc)
2008 best_end = 0;
c906108c 2009 }
25d53da1
KB
2010
2011 /* If another line (denoted by ITEM) is in the linetable and its
2012 PC is after BEST's PC, but before the current BEST_END, then
2013 use ITEM's PC as the new best_end. */
2014 if (best && i < len && item->pc > best->pc
2015 && (best_end == 0 || best_end > item->pc))
2016 best_end = item->pc;
c906108c
SS
2017 }
2018
2019 if (!best_symtab)
2020 {
2021 if (!alt_symtab)
2022 { /* If we didn't find any line # info, just
2023 return zeros. */
2024 val.pc = pc;
2025 }
2026 else
2027 {
2028 val.symtab = alt_symtab;
2029 val.line = alt->line - 1;
2030
2031 /* Don't return line 0, that means that we didn't find the line. */
c5aa993b
JM
2032 if (val.line == 0)
2033 ++val.line;
c906108c
SS
2034
2035 val.pc = BLOCK_END (BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK));
2036 val.end = alt->pc;
2037 }
2038 }
e8717518
FF
2039 else if (best->line == 0)
2040 {
2041 /* If our best fit is in a range of PC's for which no line
2042 number info is available (line number is zero) then we didn't
2043 find any valid line information. */
2044 val.pc = pc;
2045 }
c906108c
SS
2046 else
2047 {
2048 val.symtab = best_symtab;
2049 val.line = best->line;
2050 val.pc = best->pc;
2051 if (best_end && (!alt || best_end < alt->pc))
2052 val.end = best_end;
2053 else if (alt)
2054 val.end = alt->pc;
2055 else
2056 val.end = BLOCK_END (BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK));
2057 }
2058 val.section = section;
2059 return val;
2060}
2061
2062/* Backward compatibility (no section) */
2063
2064struct symtab_and_line
fba45db2 2065find_pc_line (CORE_ADDR pc, int notcurrent)
c906108c 2066{
c5aa993b 2067 asection *section;
c906108c
SS
2068
2069 section = find_pc_overlay (pc);
2070 if (pc_in_unmapped_range (pc, section))
2071 pc = overlay_mapped_address (pc, section);
2072 return find_pc_sect_line (pc, section, notcurrent);
2073}
c906108c 2074\f
c906108c
SS
2075/* Find line number LINE in any symtab whose name is the same as
2076 SYMTAB.
2077
2078 If found, return the symtab that contains the linetable in which it was
2079 found, set *INDEX to the index in the linetable of the best entry
2080 found, and set *EXACT_MATCH nonzero if the value returned is an
2081 exact match.
2082
2083 If not found, return NULL. */
2084
50641945 2085struct symtab *
fba45db2 2086find_line_symtab (struct symtab *symtab, int line, int *index, int *exact_match)
c906108c
SS
2087{
2088 int exact;
2089
2090 /* BEST_INDEX and BEST_LINETABLE identify the smallest linenumber > LINE
2091 so far seen. */
2092
2093 int best_index;
2094 struct linetable *best_linetable;
2095 struct symtab *best_symtab;
2096
2097 /* First try looking it up in the given symtab. */
2098 best_linetable = LINETABLE (symtab);
2099 best_symtab = symtab;
2100 best_index = find_line_common (best_linetable, line, &exact);
2101 if (best_index < 0 || !exact)
2102 {
2103 /* Didn't find an exact match. So we better keep looking for
c5aa993b
JM
2104 another symtab with the same name. In the case of xcoff,
2105 multiple csects for one source file (produced by IBM's FORTRAN
2106 compiler) produce multiple symtabs (this is unavoidable
2107 assuming csects can be at arbitrary places in memory and that
2108 the GLOBAL_BLOCK of a symtab has a begin and end address). */
c906108c
SS
2109
2110 /* BEST is the smallest linenumber > LINE so far seen,
c5aa993b
JM
2111 or 0 if none has been seen so far.
2112 BEST_INDEX and BEST_LINETABLE identify the item for it. */
c906108c
SS
2113 int best;
2114
2115 struct objfile *objfile;
2116 struct symtab *s;
2117
2118 if (best_index >= 0)
2119 best = best_linetable->item[best_index].line;
2120 else
2121 best = 0;
2122
2123 ALL_SYMTABS (objfile, s)
c5aa993b
JM
2124 {
2125 struct linetable *l;
2126 int ind;
c906108c 2127
c5aa993b
JM
2128 if (!STREQ (symtab->filename, s->filename))
2129 continue;
2130 l = LINETABLE (s);
2131 ind = find_line_common (l, line, &exact);
2132 if (ind >= 0)
2133 {
2134 if (exact)
2135 {
2136 best_index = ind;
2137 best_linetable = l;
2138 best_symtab = s;
2139 goto done;
2140 }
2141 if (best == 0 || l->item[ind].line < best)
2142 {
2143 best = l->item[ind].line;
2144 best_index = ind;
2145 best_linetable = l;
2146 best_symtab = s;
2147 }
2148 }
2149 }
c906108c 2150 }
c5aa993b 2151done:
c906108c
SS
2152 if (best_index < 0)
2153 return NULL;
2154
2155 if (index)
2156 *index = best_index;
2157 if (exact_match)
2158 *exact_match = exact;
2159
2160 return best_symtab;
2161}
2162\f
2163/* Set the PC value for a given source file and line number and return true.
2164 Returns zero for invalid line number (and sets the PC to 0).
2165 The source file is specified with a struct symtab. */
2166
2167int
fba45db2 2168find_line_pc (struct symtab *symtab, int line, CORE_ADDR *pc)
c906108c
SS
2169{
2170 struct linetable *l;
2171 int ind;
2172
2173 *pc = 0;
2174 if (symtab == 0)
2175 return 0;
2176
2177 symtab = find_line_symtab (symtab, line, &ind, NULL);
2178 if (symtab != NULL)
2179 {
2180 l = LINETABLE (symtab);
2181 *pc = l->item[ind].pc;
2182 return 1;
2183 }
2184 else
2185 return 0;
2186}
2187
2188/* Find the range of pc values in a line.
2189 Store the starting pc of the line into *STARTPTR
2190 and the ending pc (start of next line) into *ENDPTR.
2191 Returns 1 to indicate success.
2192 Returns 0 if could not find the specified line. */
2193
2194int
fba45db2
KB
2195find_line_pc_range (struct symtab_and_line sal, CORE_ADDR *startptr,
2196 CORE_ADDR *endptr)
c906108c
SS
2197{
2198 CORE_ADDR startaddr;
2199 struct symtab_and_line found_sal;
2200
2201 startaddr = sal.pc;
c5aa993b 2202 if (startaddr == 0 && !find_line_pc (sal.symtab, sal.line, &startaddr))
c906108c
SS
2203 return 0;
2204
2205 /* This whole function is based on address. For example, if line 10 has
2206 two parts, one from 0x100 to 0x200 and one from 0x300 to 0x400, then
2207 "info line *0x123" should say the line goes from 0x100 to 0x200
2208 and "info line *0x355" should say the line goes from 0x300 to 0x400.
2209 This also insures that we never give a range like "starts at 0x134
2210 and ends at 0x12c". */
2211
2212 found_sal = find_pc_sect_line (startaddr, sal.section, 0);
2213 if (found_sal.line != sal.line)
2214 {
2215 /* The specified line (sal) has zero bytes. */
2216 *startptr = found_sal.pc;
2217 *endptr = found_sal.pc;
2218 }
2219 else
2220 {
2221 *startptr = found_sal.pc;
2222 *endptr = found_sal.end;
2223 }
2224 return 1;
2225}
2226
2227/* Given a line table and a line number, return the index into the line
2228 table for the pc of the nearest line whose number is >= the specified one.
2229 Return -1 if none is found. The value is >= 0 if it is an index.
2230
2231 Set *EXACT_MATCH nonzero if the value returned is an exact match. */
2232
2233static int
aa1ee363 2234find_line_common (struct linetable *l, int lineno,
fba45db2 2235 int *exact_match)
c906108c 2236{
52f0bd74
AC
2237 int i;
2238 int len;
c906108c
SS
2239
2240 /* BEST is the smallest linenumber > LINENO so far seen,
2241 or 0 if none has been seen so far.
2242 BEST_INDEX identifies the item for it. */
2243
2244 int best_index = -1;
2245 int best = 0;
2246
2247 if (lineno <= 0)
2248 return -1;
2249 if (l == 0)
2250 return -1;
2251
2252 len = l->nitems;
2253 for (i = 0; i < len; i++)
2254 {
aa1ee363 2255 struct linetable_entry *item = &(l->item[i]);
c906108c
SS
2256
2257 if (item->line == lineno)
2258 {
2259 /* Return the first (lowest address) entry which matches. */
2260 *exact_match = 1;
2261 return i;
2262 }
2263
2264 if (item->line > lineno && (best == 0 || item->line < best))
2265 {
2266 best = item->line;
2267 best_index = i;
2268 }
2269 }
2270
2271 /* If we got here, we didn't get an exact match. */
2272
2273 *exact_match = 0;
2274 return best_index;
2275}
2276
2277int
fba45db2 2278find_pc_line_pc_range (CORE_ADDR pc, CORE_ADDR *startptr, CORE_ADDR *endptr)
c906108c
SS
2279{
2280 struct symtab_and_line sal;
2281 sal = find_pc_line (pc, 0);
2282 *startptr = sal.pc;
2283 *endptr = sal.end;
2284 return sal.symtab != 0;
2285}
2286
2287/* Given a function symbol SYM, find the symtab and line for the start
2288 of the function.
2289 If the argument FUNFIRSTLINE is nonzero, we want the first line
2290 of real code inside the function. */
2291
50641945 2292struct symtab_and_line
fba45db2 2293find_function_start_sal (struct symbol *sym, int funfirstline)
c906108c
SS
2294{
2295 CORE_ADDR pc;
2296 struct symtab_and_line sal;
2297
2298 pc = BLOCK_START (SYMBOL_BLOCK_VALUE (sym));
2299 fixup_symbol_section (sym, NULL);
2300 if (funfirstline)
c5aa993b 2301 { /* skip "first line" of function (which is actually its prologue) */
c906108c
SS
2302 asection *section = SYMBOL_BFD_SECTION (sym);
2303 /* If function is in an unmapped overlay, use its unmapped LMA
c5aa993b 2304 address, so that SKIP_PROLOGUE has something unique to work on */
c906108c
SS
2305 if (section_is_overlay (section) &&
2306 !section_is_mapped (section))
2307 pc = overlay_unmapped_address (pc, section);
2308
2309 pc += FUNCTION_START_OFFSET;
b83266a0 2310 pc = SKIP_PROLOGUE (pc);
c906108c
SS
2311
2312 /* For overlays, map pc back into its mapped VMA range */
2313 pc = overlay_mapped_address (pc, section);
2314 }
2315 sal = find_pc_sect_line (pc, SYMBOL_BFD_SECTION (sym), 0);
2316
2317#ifdef PROLOGUE_FIRSTLINE_OVERLAP
2318 /* Convex: no need to suppress code on first line, if any */
2319 sal.pc = pc;
2320#else
2321 /* Check if SKIP_PROLOGUE left us in mid-line, and the next
2322 line is still part of the same function. */
2323 if (sal.pc != pc
2324 && BLOCK_START (SYMBOL_BLOCK_VALUE (sym)) <= sal.end
2325 && sal.end < BLOCK_END (SYMBOL_BLOCK_VALUE (sym)))
2326 {
2327 /* First pc of next line */
2328 pc = sal.end;
2329 /* Recalculate the line number (might not be N+1). */
2330 sal = find_pc_sect_line (pc, SYMBOL_BFD_SECTION (sym), 0);
2331 }
2332 sal.pc = pc;
2333#endif
2334
2335 return sal;
2336}
50641945 2337
c906108c
SS
2338/* If P is of the form "operator[ \t]+..." where `...' is
2339 some legitimate operator text, return a pointer to the
2340 beginning of the substring of the operator text.
2341 Otherwise, return "". */
2342char *
fba45db2 2343operator_chars (char *p, char **end)
c906108c
SS
2344{
2345 *end = "";
2346 if (strncmp (p, "operator", 8))
2347 return *end;
2348 p += 8;
2349
2350 /* Don't get faked out by `operator' being part of a longer
2351 identifier. */
c5aa993b 2352 if (isalpha (*p) || *p == '_' || *p == '$' || *p == '\0')
c906108c
SS
2353 return *end;
2354
2355 /* Allow some whitespace between `operator' and the operator symbol. */
2356 while (*p == ' ' || *p == '\t')
2357 p++;
2358
2359 /* Recognize 'operator TYPENAME'. */
2360
c5aa993b 2361 if (isalpha (*p) || *p == '_' || *p == '$')
c906108c 2362 {
aa1ee363 2363 char *q = p + 1;
c5aa993b 2364 while (isalnum (*q) || *q == '_' || *q == '$')
c906108c
SS
2365 q++;
2366 *end = q;
2367 return p;
2368 }
2369
53e8ad3d
MS
2370 while (*p)
2371 switch (*p)
2372 {
2373 case '\\': /* regexp quoting */
2374 if (p[1] == '*')
2375 {
2376 if (p[2] == '=') /* 'operator\*=' */
2377 *end = p + 3;
2378 else /* 'operator\*' */
2379 *end = p + 2;
2380 return p;
2381 }
2382 else if (p[1] == '[')
2383 {
2384 if (p[2] == ']')
2385 error ("mismatched quoting on brackets, try 'operator\\[\\]'");
2386 else if (p[2] == '\\' && p[3] == ']')
2387 {
2388 *end = p + 4; /* 'operator\[\]' */
2389 return p;
2390 }
2391 else
2392 error ("nothing is allowed between '[' and ']'");
2393 }
2394 else
2395 {
2396 /* Gratuitous qoute: skip it and move on. */
2397 p++;
2398 continue;
2399 }
2400 break;
2401 case '!':
2402 case '=':
2403 case '*':
2404 case '/':
2405 case '%':
2406 case '^':
2407 if (p[1] == '=')
2408 *end = p + 2;
2409 else
2410 *end = p + 1;
2411 return p;
2412 case '<':
2413 case '>':
2414 case '+':
2415 case '-':
2416 case '&':
2417 case '|':
2418 if (p[0] == '-' && p[1] == '>')
2419 {
2420 /* Struct pointer member operator 'operator->'. */
2421 if (p[2] == '*')
2422 {
2423 *end = p + 3; /* 'operator->*' */
2424 return p;
2425 }
2426 else if (p[2] == '\\')
2427 {
2428 *end = p + 4; /* Hopefully 'operator->\*' */
2429 return p;
2430 }
2431 else
2432 {
2433 *end = p + 2; /* 'operator->' */
2434 return p;
2435 }
2436 }
2437 if (p[1] == '=' || p[1] == p[0])
2438 *end = p + 2;
2439 else
2440 *end = p + 1;
2441 return p;
2442 case '~':
2443 case ',':
c5aa993b 2444 *end = p + 1;
53e8ad3d
MS
2445 return p;
2446 case '(':
2447 if (p[1] != ')')
2448 error ("`operator ()' must be specified without whitespace in `()'");
c5aa993b 2449 *end = p + 2;
53e8ad3d
MS
2450 return p;
2451 case '?':
2452 if (p[1] != ':')
2453 error ("`operator ?:' must be specified without whitespace in `?:'");
2454 *end = p + 2;
2455 return p;
2456 case '[':
2457 if (p[1] != ']')
2458 error ("`operator []' must be specified without whitespace in `[]'");
2459 *end = p + 2;
2460 return p;
2461 default:
2462 error ("`operator %s' not supported", p);
2463 break;
2464 }
2465
c906108c
SS
2466 *end = "";
2467 return *end;
2468}
c906108c 2469\f
c5aa993b 2470
c94fdfd0
EZ
2471/* If FILE is not already in the table of files, return zero;
2472 otherwise return non-zero. Optionally add FILE to the table if ADD
2473 is non-zero. If *FIRST is non-zero, forget the old table
2474 contents. */
2475static int
2476filename_seen (const char *file, int add, int *first)
c906108c 2477{
c94fdfd0
EZ
2478 /* Table of files seen so far. */
2479 static const char **tab = NULL;
c906108c
SS
2480 /* Allocated size of tab in elements.
2481 Start with one 256-byte block (when using GNU malloc.c).
2482 24 is the malloc overhead when range checking is in effect. */
2483 static int tab_alloc_size = (256 - 24) / sizeof (char *);
2484 /* Current size of tab in elements. */
2485 static int tab_cur_size;
c94fdfd0 2486 const char **p;
c906108c
SS
2487
2488 if (*first)
2489 {
2490 if (tab == NULL)
c94fdfd0 2491 tab = (const char **) xmalloc (tab_alloc_size * sizeof (*tab));
c906108c
SS
2492 tab_cur_size = 0;
2493 }
2494
c94fdfd0 2495 /* Is FILE in tab? */
c906108c 2496 for (p = tab; p < tab + tab_cur_size; p++)
c94fdfd0
EZ
2497 if (strcmp (*p, file) == 0)
2498 return 1;
2499
2500 /* No; maybe add it to tab. */
2501 if (add)
c906108c 2502 {
c94fdfd0
EZ
2503 if (tab_cur_size == tab_alloc_size)
2504 {
2505 tab_alloc_size *= 2;
2506 tab = (const char **) xrealloc ((char *) tab,
2507 tab_alloc_size * sizeof (*tab));
2508 }
2509 tab[tab_cur_size++] = file;
c906108c 2510 }
c906108c 2511
c94fdfd0
EZ
2512 return 0;
2513}
2514
2515/* Slave routine for sources_info. Force line breaks at ,'s.
2516 NAME is the name to print and *FIRST is nonzero if this is the first
2517 name printed. Set *FIRST to zero. */
2518static void
2519output_source_filename (char *name, int *first)
2520{
2521 /* Since a single source file can result in several partial symbol
2522 tables, we need to avoid printing it more than once. Note: if
2523 some of the psymtabs are read in and some are not, it gets
2524 printed both under "Source files for which symbols have been
2525 read" and "Source files for which symbols will be read in on
2526 demand". I consider this a reasonable way to deal with the
2527 situation. I'm not sure whether this can also happen for
2528 symtabs; it doesn't hurt to check. */
2529
2530 /* Was NAME already seen? */
2531 if (filename_seen (name, 1, first))
2532 {
2533 /* Yes; don't print it again. */
2534 return;
2535 }
2536 /* No; print it and reset *FIRST. */
c906108c
SS
2537 if (*first)
2538 {
2539 *first = 0;
2540 }
2541 else
2542 {
2543 printf_filtered (", ");
2544 }
2545
2546 wrap_here ("");
2547 fputs_filtered (name, gdb_stdout);
c5aa993b 2548}
c906108c
SS
2549
2550static void
fba45db2 2551sources_info (char *ignore, int from_tty)
c906108c 2552{
52f0bd74
AC
2553 struct symtab *s;
2554 struct partial_symtab *ps;
2555 struct objfile *objfile;
c906108c 2556 int first;
c5aa993b 2557
c906108c
SS
2558 if (!have_full_symbols () && !have_partial_symbols ())
2559 {
e85428fc 2560 error ("No symbol table is loaded. Use the \"file\" command.");
c906108c 2561 }
c5aa993b 2562
c906108c
SS
2563 printf_filtered ("Source files for which symbols have been read in:\n\n");
2564
2565 first = 1;
2566 ALL_SYMTABS (objfile, s)
c5aa993b
JM
2567 {
2568 output_source_filename (s->filename, &first);
2569 }
c906108c 2570 printf_filtered ("\n\n");
c5aa993b 2571
c906108c
SS
2572 printf_filtered ("Source files for which symbols will be read in on demand:\n\n");
2573
2574 first = 1;
2575 ALL_PSYMTABS (objfile, ps)
c5aa993b
JM
2576 {
2577 if (!ps->readin)
2578 {
2579 output_source_filename (ps->filename, &first);
2580 }
2581 }
c906108c
SS
2582 printf_filtered ("\n");
2583}
2584
2585static int
fd118b61 2586file_matches (char *file, char *files[], int nfiles)
c906108c
SS
2587{
2588 int i;
2589
2590 if (file != NULL && nfiles != 0)
2591 {
2592 for (i = 0; i < nfiles; i++)
c5aa993b 2593 {
31889e00 2594 if (strcmp (files[i], lbasename (file)) == 0)
c5aa993b
JM
2595 return 1;
2596 }
c906108c
SS
2597 }
2598 else if (nfiles == 0)
2599 return 1;
2600 return 0;
2601}
2602
2603/* Free any memory associated with a search. */
2604void
fba45db2 2605free_search_symbols (struct symbol_search *symbols)
c906108c
SS
2606{
2607 struct symbol_search *p;
2608 struct symbol_search *next;
2609
2610 for (p = symbols; p != NULL; p = next)
2611 {
2612 next = p->next;
b8c9b27d 2613 xfree (p);
c906108c
SS
2614 }
2615}
2616
5bd98722
AC
2617static void
2618do_free_search_symbols_cleanup (void *symbols)
2619{
2620 free_search_symbols (symbols);
2621}
2622
2623struct cleanup *
2624make_cleanup_free_search_symbols (struct symbol_search *symbols)
2625{
2626 return make_cleanup (do_free_search_symbols_cleanup, symbols);
2627}
2628
434d2d4f
DJ
2629/* Helper function for sort_search_symbols and qsort. Can only
2630 sort symbols, not minimal symbols. */
2631static int
2632compare_search_syms (const void *sa, const void *sb)
2633{
2634 struct symbol_search **sym_a = (struct symbol_search **) sa;
2635 struct symbol_search **sym_b = (struct symbol_search **) sb;
2636
de5ad195
DC
2637 return strcmp (SYMBOL_PRINT_NAME ((*sym_a)->symbol),
2638 SYMBOL_PRINT_NAME ((*sym_b)->symbol));
434d2d4f
DJ
2639}
2640
2641/* Sort the ``nfound'' symbols in the list after prevtail. Leave
2642 prevtail where it is, but update its next pointer to point to
2643 the first of the sorted symbols. */
2644static struct symbol_search *
2645sort_search_symbols (struct symbol_search *prevtail, int nfound)
2646{
2647 struct symbol_search **symbols, *symp, *old_next;
2648 int i;
2649
2650 symbols = (struct symbol_search **) xmalloc (sizeof (struct symbol_search *)
2651 * nfound);
2652 symp = prevtail->next;
2653 for (i = 0; i < nfound; i++)
2654 {
2655 symbols[i] = symp;
2656 symp = symp->next;
2657 }
2658 /* Generally NULL. */
2659 old_next = symp;
2660
2661 qsort (symbols, nfound, sizeof (struct symbol_search *),
2662 compare_search_syms);
2663
2664 symp = prevtail;
2665 for (i = 0; i < nfound; i++)
2666 {
2667 symp->next = symbols[i];
2668 symp = symp->next;
2669 }
2670 symp->next = old_next;
2671
8ed32cc0 2672 xfree (symbols);
434d2d4f
DJ
2673 return symp;
2674}
5bd98722 2675
c906108c
SS
2676/* Search the symbol table for matches to the regular expression REGEXP,
2677 returning the results in *MATCHES.
2678
2679 Only symbols of KIND are searched:
176620f1
EZ
2680 FUNCTIONS_DOMAIN - search all functions
2681 TYPES_DOMAIN - search all type names
2682 METHODS_DOMAIN - search all methods NOT IMPLEMENTED
2683 VARIABLES_DOMAIN - search all symbols, excluding functions, type names,
c5aa993b 2684 and constants (enums)
c906108c
SS
2685
2686 free_search_symbols should be called when *MATCHES is no longer needed.
434d2d4f
DJ
2687
2688 The results are sorted locally; each symtab's global and static blocks are
2689 separately alphabetized.
c5aa993b 2690 */
c906108c 2691void
176620f1 2692search_symbols (char *regexp, domain_enum kind, int nfiles, char *files[],
fd118b61 2693 struct symbol_search **matches)
c906108c 2694{
52f0bd74
AC
2695 struct symtab *s;
2696 struct partial_symtab *ps;
2697 struct blockvector *bv;
c906108c 2698 struct blockvector *prev_bv = 0;
52f0bd74
AC
2699 struct block *b;
2700 int i = 0;
de4f826b 2701 struct dict_iterator iter;
52f0bd74 2702 struct symbol *sym;
c906108c
SS
2703 struct partial_symbol **psym;
2704 struct objfile *objfile;
2705 struct minimal_symbol *msymbol;
2706 char *val;
2707 int found_misc = 0;
2708 static enum minimal_symbol_type types[]
c5aa993b
JM
2709 =
2710 {mst_data, mst_text, mst_abs, mst_unknown};
c906108c 2711 static enum minimal_symbol_type types2[]
c5aa993b
JM
2712 =
2713 {mst_bss, mst_file_text, mst_abs, mst_unknown};
c906108c 2714 static enum minimal_symbol_type types3[]
c5aa993b
JM
2715 =
2716 {mst_file_data, mst_solib_trampoline, mst_abs, mst_unknown};
c906108c 2717 static enum minimal_symbol_type types4[]
c5aa993b
JM
2718 =
2719 {mst_file_bss, mst_text, mst_abs, mst_unknown};
c906108c
SS
2720 enum minimal_symbol_type ourtype;
2721 enum minimal_symbol_type ourtype2;
2722 enum minimal_symbol_type ourtype3;
2723 enum minimal_symbol_type ourtype4;
2724 struct symbol_search *sr;
2725 struct symbol_search *psr;
2726 struct symbol_search *tail;
2727 struct cleanup *old_chain = NULL;
2728
176620f1
EZ
2729 if (kind < VARIABLES_DOMAIN)
2730 error ("must search on specific domain");
c906108c 2731
176620f1
EZ
2732 ourtype = types[(int) (kind - VARIABLES_DOMAIN)];
2733 ourtype2 = types2[(int) (kind - VARIABLES_DOMAIN)];
2734 ourtype3 = types3[(int) (kind - VARIABLES_DOMAIN)];
2735 ourtype4 = types4[(int) (kind - VARIABLES_DOMAIN)];
c906108c
SS
2736
2737 sr = *matches = NULL;
2738 tail = NULL;
2739
2740 if (regexp != NULL)
2741 {
2742 /* Make sure spacing is right for C++ operators.
2743 This is just a courtesy to make the matching less sensitive
2744 to how many spaces the user leaves between 'operator'
2745 and <TYPENAME> or <OPERATOR>. */
2746 char *opend;
2747 char *opname = operator_chars (regexp, &opend);
2748 if (*opname)
c5aa993b
JM
2749 {
2750 int fix = -1; /* -1 means ok; otherwise number of spaces needed. */
2751 if (isalpha (*opname) || *opname == '_' || *opname == '$')
2752 {
2753 /* There should 1 space between 'operator' and 'TYPENAME'. */
2754 if (opname[-1] != ' ' || opname[-2] == ' ')
2755 fix = 1;
2756 }
2757 else
2758 {
2759 /* There should 0 spaces between 'operator' and 'OPERATOR'. */
2760 if (opname[-1] == ' ')
2761 fix = 0;
2762 }
2763 /* If wrong number of spaces, fix it. */
2764 if (fix >= 0)
2765 {
045f55a6 2766 char *tmp = (char *) alloca (8 + fix + strlen (opname) + 1);
c5aa993b
JM
2767 sprintf (tmp, "operator%.*s%s", fix, " ", opname);
2768 regexp = tmp;
2769 }
2770 }
2771
c906108c 2772 if (0 != (val = re_comp (regexp)))
c5aa993b 2773 error ("Invalid regexp (%s): %s", val, regexp);
c906108c
SS
2774 }
2775
2776 /* Search through the partial symtabs *first* for all symbols
2777 matching the regexp. That way we don't have to reproduce all of
2778 the machinery below. */
2779
2780 ALL_PSYMTABS (objfile, ps)
c5aa993b
JM
2781 {
2782 struct partial_symbol **bound, **gbound, **sbound;
2783 int keep_going = 1;
2784
2785 if (ps->readin)
2786 continue;
2787
2788 gbound = objfile->global_psymbols.list + ps->globals_offset + ps->n_global_syms;
2789 sbound = objfile->static_psymbols.list + ps->statics_offset + ps->n_static_syms;
2790 bound = gbound;
2791
2792 /* Go through all of the symbols stored in a partial
2793 symtab in one loop. */
2794 psym = objfile->global_psymbols.list + ps->globals_offset;
2795 while (keep_going)
2796 {
2797 if (psym >= bound)
2798 {
2799 if (bound == gbound && ps->n_static_syms != 0)
2800 {
2801 psym = objfile->static_psymbols.list + ps->statics_offset;
2802 bound = sbound;
2803 }
2804 else
2805 keep_going = 0;
2806 continue;
2807 }
2808 else
2809 {
2810 QUIT;
2811
2812 /* If it would match (logic taken from loop below)
2813 load the file and go on to the next one */
2814 if (file_matches (ps->filename, files, nfiles)
25120b0d
DC
2815 && ((regexp == NULL
2816 || re_exec (SYMBOL_NATURAL_NAME (*psym)) != 0)
176620f1 2817 && ((kind == VARIABLES_DOMAIN && SYMBOL_CLASS (*psym) != LOC_TYPEDEF
c5aa993b 2818 && SYMBOL_CLASS (*psym) != LOC_BLOCK)
176620f1
EZ
2819 || (kind == FUNCTIONS_DOMAIN && SYMBOL_CLASS (*psym) == LOC_BLOCK)
2820 || (kind == TYPES_DOMAIN && SYMBOL_CLASS (*psym) == LOC_TYPEDEF)
2821 || (kind == METHODS_DOMAIN && SYMBOL_CLASS (*psym) == LOC_BLOCK))))
c5aa993b
JM
2822 {
2823 PSYMTAB_TO_SYMTAB (ps);
2824 keep_going = 0;
2825 }
2826 }
2827 psym++;
2828 }
2829 }
c906108c
SS
2830
2831 /* Here, we search through the minimal symbol tables for functions
2832 and variables that match, and force their symbols to be read.
2833 This is in particular necessary for demangled variable names,
2834 which are no longer put into the partial symbol tables.
2835 The symbol will then be found during the scan of symtabs below.
2836
2837 For functions, find_pc_symtab should succeed if we have debug info
2838 for the function, for variables we have to call lookup_symbol
2839 to determine if the variable has debug info.
2840 If the lookup fails, set found_misc so that we will rescan to print
2841 any matching symbols without debug info.
c5aa993b 2842 */
c906108c 2843
176620f1 2844 if (nfiles == 0 && (kind == VARIABLES_DOMAIN || kind == FUNCTIONS_DOMAIN))
c906108c
SS
2845 {
2846 ALL_MSYMBOLS (objfile, msymbol)
c5aa993b
JM
2847 {
2848 if (MSYMBOL_TYPE (msymbol) == ourtype ||
2849 MSYMBOL_TYPE (msymbol) == ourtype2 ||
2850 MSYMBOL_TYPE (msymbol) == ourtype3 ||
2851 MSYMBOL_TYPE (msymbol) == ourtype4)
2852 {
25120b0d
DC
2853 if (regexp == NULL
2854 || re_exec (SYMBOL_NATURAL_NAME (msymbol)) != 0)
c5aa993b
JM
2855 {
2856 if (0 == find_pc_symtab (SYMBOL_VALUE_ADDRESS (msymbol)))
2857 {
b1262a02
DC
2858 /* FIXME: carlton/2003-02-04: Given that the
2859 semantics of lookup_symbol keeps on changing
2860 slightly, it would be a nice idea if we had a
2861 function lookup_symbol_minsym that found the
2862 symbol associated to a given minimal symbol (if
2863 any). */
176620f1 2864 if (kind == FUNCTIONS_DOMAIN
2335f48e 2865 || lookup_symbol (SYMBOL_LINKAGE_NAME (msymbol),
b1262a02 2866 (struct block *) NULL,
176620f1 2867 VAR_DOMAIN,
b1262a02
DC
2868 0, (struct symtab **) NULL) == NULL)
2869 found_misc = 1;
c5aa993b
JM
2870 }
2871 }
2872 }
2873 }
c906108c
SS
2874 }
2875
2876 ALL_SYMTABS (objfile, s)
c5aa993b
JM
2877 {
2878 bv = BLOCKVECTOR (s);
2879 /* Often many files share a blockvector.
2880 Scan each blockvector only once so that
2881 we don't get every symbol many times.
2882 It happens that the first symtab in the list
2883 for any given blockvector is the main file. */
2884 if (bv != prev_bv)
2885 for (i = GLOBAL_BLOCK; i <= STATIC_BLOCK; i++)
2886 {
434d2d4f
DJ
2887 struct symbol_search *prevtail = tail;
2888 int nfound = 0;
c5aa993b 2889 b = BLOCKVECTOR_BLOCK (bv, i);
de4f826b 2890 ALL_BLOCK_SYMBOLS (b, iter, sym)
c5aa993b
JM
2891 {
2892 QUIT;
c5aa993b 2893 if (file_matches (s->filename, files, nfiles)
25120b0d
DC
2894 && ((regexp == NULL
2895 || re_exec (SYMBOL_NATURAL_NAME (sym)) != 0)
176620f1 2896 && ((kind == VARIABLES_DOMAIN && SYMBOL_CLASS (sym) != LOC_TYPEDEF
c5aa993b
JM
2897 && SYMBOL_CLASS (sym) != LOC_BLOCK
2898 && SYMBOL_CLASS (sym) != LOC_CONST)
176620f1
EZ
2899 || (kind == FUNCTIONS_DOMAIN && SYMBOL_CLASS (sym) == LOC_BLOCK)
2900 || (kind == TYPES_DOMAIN && SYMBOL_CLASS (sym) == LOC_TYPEDEF)
2901 || (kind == METHODS_DOMAIN && SYMBOL_CLASS (sym) == LOC_BLOCK))))
c5aa993b
JM
2902 {
2903 /* match */
2904 psr = (struct symbol_search *) xmalloc (sizeof (struct symbol_search));
2905 psr->block = i;
2906 psr->symtab = s;
2907 psr->symbol = sym;
2908 psr->msymbol = NULL;
2909 psr->next = NULL;
2910 if (tail == NULL)
434d2d4f 2911 sr = psr;
c5aa993b
JM
2912 else
2913 tail->next = psr;
2914 tail = psr;
434d2d4f
DJ
2915 nfound ++;
2916 }
2917 }
2918 if (nfound > 0)
2919 {
2920 if (prevtail == NULL)
2921 {
2922 struct symbol_search dummy;
2923
2924 dummy.next = sr;
2925 tail = sort_search_symbols (&dummy, nfound);
2926 sr = dummy.next;
2927
2928 old_chain = make_cleanup_free_search_symbols (sr);
c5aa993b 2929 }
434d2d4f
DJ
2930 else
2931 tail = sort_search_symbols (prevtail, nfound);
c5aa993b
JM
2932 }
2933 }
2934 prev_bv = bv;
2935 }
c906108c
SS
2936
2937 /* If there are no eyes, avoid all contact. I mean, if there are
2938 no debug symbols, then print directly from the msymbol_vector. */
2939
176620f1 2940 if (found_misc || kind != FUNCTIONS_DOMAIN)
c906108c
SS
2941 {
2942 ALL_MSYMBOLS (objfile, msymbol)
c5aa993b
JM
2943 {
2944 if (MSYMBOL_TYPE (msymbol) == ourtype ||
2945 MSYMBOL_TYPE (msymbol) == ourtype2 ||
2946 MSYMBOL_TYPE (msymbol) == ourtype3 ||
2947 MSYMBOL_TYPE (msymbol) == ourtype4)
2948 {
25120b0d
DC
2949 if (regexp == NULL
2950 || re_exec (SYMBOL_NATURAL_NAME (msymbol)) != 0)
c5aa993b
JM
2951 {
2952 /* Functions: Look up by address. */
176620f1 2953 if (kind != FUNCTIONS_DOMAIN ||
c5aa993b
JM
2954 (0 == find_pc_symtab (SYMBOL_VALUE_ADDRESS (msymbol))))
2955 {
2956 /* Variables/Absolutes: Look up by name */
2335f48e 2957 if (lookup_symbol (SYMBOL_LINKAGE_NAME (msymbol),
176620f1 2958 (struct block *) NULL, VAR_DOMAIN,
c5aa993b
JM
2959 0, (struct symtab **) NULL) == NULL)
2960 {
2961 /* match */
2962 psr = (struct symbol_search *) xmalloc (sizeof (struct symbol_search));
2963 psr->block = i;
2964 psr->msymbol = msymbol;
2965 psr->symtab = NULL;
2966 psr->symbol = NULL;
2967 psr->next = NULL;
2968 if (tail == NULL)
2969 {
2970 sr = psr;
5bd98722 2971 old_chain = make_cleanup_free_search_symbols (sr);
c5aa993b
JM
2972 }
2973 else
2974 tail->next = psr;
2975 tail = psr;
2976 }
2977 }
2978 }
2979 }
2980 }
c906108c
SS
2981 }
2982
2983 *matches = sr;
2984 if (sr != NULL)
2985 discard_cleanups (old_chain);
2986}
2987
2988/* Helper function for symtab_symbol_info, this function uses
2989 the data returned from search_symbols() to print information
2990 regarding the match to gdb_stdout.
c5aa993b 2991 */
c906108c 2992static void
176620f1 2993print_symbol_info (domain_enum kind, struct symtab *s, struct symbol *sym,
fba45db2 2994 int block, char *last)
c906108c
SS
2995{
2996 if (last == NULL || strcmp (last, s->filename) != 0)
2997 {
2998 fputs_filtered ("\nFile ", gdb_stdout);
2999 fputs_filtered (s->filename, gdb_stdout);
3000 fputs_filtered (":\n", gdb_stdout);
3001 }
3002
176620f1 3003 if (kind != TYPES_DOMAIN && block == STATIC_BLOCK)
c906108c 3004 printf_filtered ("static ");
c5aa993b 3005
c906108c 3006 /* Typedef that is not a C++ class */
176620f1
EZ
3007 if (kind == TYPES_DOMAIN
3008 && SYMBOL_DOMAIN (sym) != STRUCT_DOMAIN)
a5238fbc 3009 typedef_print (SYMBOL_TYPE (sym), sym, gdb_stdout);
c906108c 3010 /* variable, func, or typedef-that-is-c++-class */
176620f1
EZ
3011 else if (kind < TYPES_DOMAIN ||
3012 (kind == TYPES_DOMAIN &&
3013 SYMBOL_DOMAIN (sym) == STRUCT_DOMAIN))
c906108c
SS
3014 {
3015 type_print (SYMBOL_TYPE (sym),
c5aa993b 3016 (SYMBOL_CLASS (sym) == LOC_TYPEDEF
de5ad195 3017 ? "" : SYMBOL_PRINT_NAME (sym)),
c5aa993b 3018 gdb_stdout, 0);
c906108c
SS
3019
3020 printf_filtered (";\n");
3021 }
c906108c
SS
3022}
3023
3024/* This help function for symtab_symbol_info() prints information
3025 for non-debugging symbols to gdb_stdout.
c5aa993b 3026 */
c906108c 3027static void
fba45db2 3028print_msymbol_info (struct minimal_symbol *msymbol)
c906108c 3029{
3ac4495a
MS
3030 char *tmp;
3031
3032 if (TARGET_ADDR_BIT <= 32)
14a5e767
AC
3033 tmp = local_hex_string_custom (SYMBOL_VALUE_ADDRESS (msymbol)
3034 & (CORE_ADDR) 0xffffffff,
3035 "08l");
3ac4495a 3036 else
14a5e767
AC
3037 tmp = local_hex_string_custom (SYMBOL_VALUE_ADDRESS (msymbol),
3038 "016l");
3ac4495a 3039 printf_filtered ("%s %s\n",
de5ad195 3040 tmp, SYMBOL_PRINT_NAME (msymbol));
c906108c
SS
3041}
3042
3043/* This is the guts of the commands "info functions", "info types", and
3044 "info variables". It calls search_symbols to find all matches and then
3045 print_[m]symbol_info to print out some useful information about the
3046 matches.
c5aa993b 3047 */
c906108c 3048static void
176620f1 3049symtab_symbol_info (char *regexp, domain_enum kind, int from_tty)
c906108c
SS
3050{
3051 static char *classnames[]
c5aa993b
JM
3052 =
3053 {"variable", "function", "type", "method"};
c906108c
SS
3054 struct symbol_search *symbols;
3055 struct symbol_search *p;
3056 struct cleanup *old_chain;
3057 char *last_filename = NULL;
3058 int first = 1;
3059
3060 /* must make sure that if we're interrupted, symbols gets freed */
3061 search_symbols (regexp, kind, 0, (char **) NULL, &symbols);
5bd98722 3062 old_chain = make_cleanup_free_search_symbols (symbols);
c906108c
SS
3063
3064 printf_filtered (regexp
c5aa993b
JM
3065 ? "All %ss matching regular expression \"%s\":\n"
3066 : "All defined %ss:\n",
176620f1 3067 classnames[(int) (kind - VARIABLES_DOMAIN)], regexp);
c906108c
SS
3068
3069 for (p = symbols; p != NULL; p = p->next)
3070 {
3071 QUIT;
3072
3073 if (p->msymbol != NULL)
c5aa993b
JM
3074 {
3075 if (first)
3076 {
3077 printf_filtered ("\nNon-debugging symbols:\n");
3078 first = 0;
3079 }
3080 print_msymbol_info (p->msymbol);
3081 }
c906108c 3082 else
c5aa993b
JM
3083 {
3084 print_symbol_info (kind,
3085 p->symtab,
3086 p->symbol,
3087 p->block,
3088 last_filename);
3089 last_filename = p->symtab->filename;
3090 }
c906108c
SS
3091 }
3092
3093 do_cleanups (old_chain);
3094}
3095
3096static void
fba45db2 3097variables_info (char *regexp, int from_tty)
c906108c 3098{
176620f1 3099 symtab_symbol_info (regexp, VARIABLES_DOMAIN, from_tty);
c906108c
SS
3100}
3101
3102static void
fba45db2 3103functions_info (char *regexp, int from_tty)
c906108c 3104{
176620f1 3105 symtab_symbol_info (regexp, FUNCTIONS_DOMAIN, from_tty);
c906108c
SS
3106}
3107
357e46e7 3108
c906108c 3109static void
fba45db2 3110types_info (char *regexp, int from_tty)
c906108c 3111{
176620f1 3112 symtab_symbol_info (regexp, TYPES_DOMAIN, from_tty);
c906108c
SS
3113}
3114
c906108c 3115/* Breakpoint all functions matching regular expression. */
8926118c 3116
8b93c638 3117void
fba45db2 3118rbreak_command_wrapper (char *regexp, int from_tty)
8b93c638
JM
3119{
3120 rbreak_command (regexp, from_tty);
3121}
8926118c 3122
c906108c 3123static void
fba45db2 3124rbreak_command (char *regexp, int from_tty)
c906108c
SS
3125{
3126 struct symbol_search *ss;
3127 struct symbol_search *p;
3128 struct cleanup *old_chain;
3129
176620f1 3130 search_symbols (regexp, FUNCTIONS_DOMAIN, 0, (char **) NULL, &ss);
5bd98722 3131 old_chain = make_cleanup_free_search_symbols (ss);
c906108c
SS
3132
3133 for (p = ss; p != NULL; p = p->next)
3134 {
3135 if (p->msymbol == NULL)
c5aa993b 3136 {
2335f48e
DC
3137 char *string = alloca (strlen (p->symtab->filename)
3138 + strlen (SYMBOL_LINKAGE_NAME (p->symbol))
3139 + 4);
c5aa993b
JM
3140 strcpy (string, p->symtab->filename);
3141 strcat (string, ":'");
2335f48e 3142 strcat (string, SYMBOL_LINKAGE_NAME (p->symbol));
c5aa993b
JM
3143 strcat (string, "'");
3144 break_command (string, from_tty);
176620f1 3145 print_symbol_info (FUNCTIONS_DOMAIN,
c5aa993b
JM
3146 p->symtab,
3147 p->symbol,
3148 p->block,
3149 p->symtab->filename);
3150 }
c906108c 3151 else
c5aa993b 3152 {
2335f48e 3153 break_command (SYMBOL_LINKAGE_NAME (p->msymbol), from_tty);
c5aa993b 3154 printf_filtered ("<function, no debug info> %s;\n",
de5ad195 3155 SYMBOL_PRINT_NAME (p->msymbol));
c5aa993b 3156 }
c906108c
SS
3157 }
3158
3159 do_cleanups (old_chain);
3160}
c906108c 3161\f
c5aa993b 3162
c906108c
SS
3163/* Helper routine for make_symbol_completion_list. */
3164
3165static int return_val_size;
3166static int return_val_index;
3167static char **return_val;
3168
3169#define COMPLETION_LIST_ADD_SYMBOL(symbol, sym_text, len, text, word) \
c906108c 3170 completion_list_add_name \
2335f48e 3171 (SYMBOL_NATURAL_NAME (symbol), (sym_text), (len), (text), (word))
c906108c
SS
3172
3173/* Test to see if the symbol specified by SYMNAME (which is already
c5aa993b
JM
3174 demangled for C++ symbols) matches SYM_TEXT in the first SYM_TEXT_LEN
3175 characters. If so, add it to the current completion list. */
c906108c
SS
3176
3177static void
fba45db2
KB
3178completion_list_add_name (char *symname, char *sym_text, int sym_text_len,
3179 char *text, char *word)
c906108c
SS
3180{
3181 int newsize;
3182 int i;
3183
3184 /* clip symbols that cannot match */
3185
3186 if (strncmp (symname, sym_text, sym_text_len) != 0)
3187 {
3188 return;
3189 }
3190
c906108c
SS
3191 /* We have a match for a completion, so add SYMNAME to the current list
3192 of matches. Note that the name is moved to freshly malloc'd space. */
3193
3194 {
3195 char *new;
3196 if (word == sym_text)
3197 {
3198 new = xmalloc (strlen (symname) + 5);
3199 strcpy (new, symname);
3200 }
3201 else if (word > sym_text)
3202 {
3203 /* Return some portion of symname. */
3204 new = xmalloc (strlen (symname) + 5);
3205 strcpy (new, symname + (word - sym_text));
3206 }
3207 else
3208 {
3209 /* Return some of SYM_TEXT plus symname. */
3210 new = xmalloc (strlen (symname) + (sym_text - word) + 5);
3211 strncpy (new, word, sym_text - word);
3212 new[sym_text - word] = '\0';
3213 strcat (new, symname);
3214 }
3215
c906108c
SS
3216 if (return_val_index + 3 > return_val_size)
3217 {
3218 newsize = (return_val_size *= 2) * sizeof (char *);
3219 return_val = (char **) xrealloc ((char *) return_val, newsize);
3220 }
3221 return_val[return_val_index++] = new;
3222 return_val[return_val_index] = NULL;
3223 }
3224}
3225
69636828
AF
3226/* ObjC: In case we are completing on a selector, look as the msymbol
3227 again and feed all the selectors into the mill. */
3228
3229static void
3230completion_list_objc_symbol (struct minimal_symbol *msymbol, char *sym_text,
3231 int sym_text_len, char *text, char *word)
3232{
3233 static char *tmp = NULL;
3234 static unsigned int tmplen = 0;
3235
3236 char *method, *category, *selector;
3237 char *tmp2 = NULL;
3238
3239 method = SYMBOL_NATURAL_NAME (msymbol);
3240
3241 /* Is it a method? */
3242 if ((method[0] != '-') && (method[0] != '+'))
3243 return;
3244
3245 if (sym_text[0] == '[')
3246 /* Complete on shortened method method. */
3247 completion_list_add_name (method + 1, sym_text, sym_text_len, text, word);
3248
3249 while ((strlen (method) + 1) >= tmplen)
3250 {
3251 if (tmplen == 0)
3252 tmplen = 1024;
3253 else
3254 tmplen *= 2;
3255 tmp = xrealloc (tmp, tmplen);
3256 }
3257 selector = strchr (method, ' ');
3258 if (selector != NULL)
3259 selector++;
3260
3261 category = strchr (method, '(');
3262
3263 if ((category != NULL) && (selector != NULL))
3264 {
3265 memcpy (tmp, method, (category - method));
3266 tmp[category - method] = ' ';
3267 memcpy (tmp + (category - method) + 1, selector, strlen (selector) + 1);
3268 completion_list_add_name (tmp, sym_text, sym_text_len, text, word);
3269 if (sym_text[0] == '[')
3270 completion_list_add_name (tmp + 1, sym_text, sym_text_len, text, word);
3271 }
3272
3273 if (selector != NULL)
3274 {
3275 /* Complete on selector only. */
3276 strcpy (tmp, selector);
3277 tmp2 = strchr (tmp, ']');
3278 if (tmp2 != NULL)
3279 *tmp2 = '\0';
3280
3281 completion_list_add_name (tmp, sym_text, sym_text_len, text, word);
3282 }
3283}
3284
3285/* Break the non-quoted text based on the characters which are in
3286 symbols. FIXME: This should probably be language-specific. */
3287
3288static char *
3289language_search_unquoted_string (char *text, char *p)
3290{
3291 for (; p > text; --p)
3292 {
3293 if (isalnum (p[-1]) || p[-1] == '_' || p[-1] == '\0')
3294 continue;
3295 else
3296 {
3297 if ((current_language->la_language == language_objc))
3298 {
3299 if (p[-1] == ':') /* might be part of a method name */
3300 continue;
3301 else if (p[-1] == '[' && (p[-2] == '-' || p[-2] == '+'))
3302 p -= 2; /* beginning of a method name */
3303 else if (p[-1] == ' ' || p[-1] == '(' || p[-1] == ')')
3304 { /* might be part of a method name */
3305 char *t = p;
3306
3307 /* Seeing a ' ' or a '(' is not conclusive evidence
3308 that we are in the middle of a method name. However,
3309 finding "-[" or "+[" should be pretty un-ambiguous.
3310 Unfortunately we have to find it now to decide. */
3311
3312 while (t > text)
3313 if (isalnum (t[-1]) || t[-1] == '_' ||
3314 t[-1] == ' ' || t[-1] == ':' ||
3315 t[-1] == '(' || t[-1] == ')')
3316 --t;
3317 else
3318 break;
3319
3320 if (t[-1] == '[' && (t[-2] == '-' || t[-2] == '+'))
3321 p = t - 2; /* method name detected */
3322 /* else we leave with p unchanged */
3323 }
3324 }
3325 break;
3326 }
3327 }
3328 return p;
3329}
3330
3331
c94fdfd0
EZ
3332/* Return a NULL terminated array of all symbols (regardless of class)
3333 which begin by matching TEXT. If the answer is no symbols, then
3334 the return value is an array which contains only a NULL pointer.
c906108c
SS
3335
3336 Problem: All of the symbols have to be copied because readline frees them.
3337 I'm not going to worry about this; hopefully there won't be that many. */
3338
3339char **
fba45db2 3340make_symbol_completion_list (char *text, char *word)
c906108c 3341{
de4f826b
DC
3342 struct symbol *sym;
3343 struct symtab *s;
3344 struct partial_symtab *ps;
3345 struct minimal_symbol *msymbol;
3346 struct objfile *objfile;
3347 struct block *b, *surrounding_static_block = 0;
3348 struct dict_iterator iter;
3349 int j;
c906108c
SS
3350 struct partial_symbol **psym;
3351 /* The symbol we are completing on. Points in same buffer as text. */
3352 char *sym_text;
3353 /* Length of sym_text. */
3354 int sym_text_len;
3355
3356 /* Now look for the symbol we are supposed to complete on.
3357 FIXME: This should be language-specific. */
3358 {
3359 char *p;
3360 char quote_found;
3361 char *quote_pos = NULL;
3362
3363 /* First see if this is a quoted string. */
3364 quote_found = '\0';
3365 for (p = text; *p != '\0'; ++p)
3366 {
3367 if (quote_found != '\0')
3368 {
3369 if (*p == quote_found)
3370 /* Found close quote. */
3371 quote_found = '\0';
3372 else if (*p == '\\' && p[1] == quote_found)
3373 /* A backslash followed by the quote character
c5aa993b 3374 doesn't end the string. */
c906108c
SS
3375 ++p;
3376 }
3377 else if (*p == '\'' || *p == '"')
3378 {
3379 quote_found = *p;
3380 quote_pos = p;
3381 }
3382 }
3383 if (quote_found == '\'')
3384 /* A string within single quotes can be a symbol, so complete on it. */
3385 sym_text = quote_pos + 1;
3386 else if (quote_found == '"')
3387 /* A double-quoted string is never a symbol, nor does it make sense
c5aa993b 3388 to complete it any other way. */
c94fdfd0
EZ
3389 {
3390 return_val = (char **) xmalloc (sizeof (char *));
3391 return_val[0] = NULL;
3392 return return_val;
3393 }
c906108c
SS
3394 else
3395 {
3396 /* It is not a quoted string. Break it based on the characters
3397 which are in symbols. */
3398 while (p > text)
3399 {
3400 if (isalnum (p[-1]) || p[-1] == '_' || p[-1] == '\0')
3401 --p;
3402 else
3403 break;
3404 }
3405 sym_text = p;
3406 }
3407 }
3408
3409 sym_text_len = strlen (sym_text);
3410
3411 return_val_size = 100;
3412 return_val_index = 0;
3413 return_val = (char **) xmalloc ((return_val_size + 1) * sizeof (char *));
3414 return_val[0] = NULL;
3415
3416 /* Look through the partial symtabs for all symbols which begin
3417 by matching SYM_TEXT. Add each one that you find to the list. */
3418
3419 ALL_PSYMTABS (objfile, ps)
c5aa993b
JM
3420 {
3421 /* If the psymtab's been read in we'll get it when we search
3422 through the blockvector. */
3423 if (ps->readin)
3424 continue;
3425
3426 for (psym = objfile->global_psymbols.list + ps->globals_offset;
3427 psym < (objfile->global_psymbols.list + ps->globals_offset
3428 + ps->n_global_syms);
3429 psym++)
3430 {
3431 /* If interrupted, then quit. */
3432 QUIT;
3433 COMPLETION_LIST_ADD_SYMBOL (*psym, sym_text, sym_text_len, text, word);
3434 }
3435
3436 for (psym = objfile->static_psymbols.list + ps->statics_offset;
3437 psym < (objfile->static_psymbols.list + ps->statics_offset
3438 + ps->n_static_syms);
3439 psym++)
3440 {
3441 QUIT;
3442 COMPLETION_LIST_ADD_SYMBOL (*psym, sym_text, sym_text_len, text, word);
3443 }
3444 }
c906108c
SS
3445
3446 /* At this point scan through the misc symbol vectors and add each
3447 symbol you find to the list. Eventually we want to ignore
3448 anything that isn't a text symbol (everything else will be
3449 handled by the psymtab code above). */
3450
3451 ALL_MSYMBOLS (objfile, msymbol)
c5aa993b
JM
3452 {
3453 QUIT;
3454 COMPLETION_LIST_ADD_SYMBOL (msymbol, sym_text, sym_text_len, text, word);
69636828
AF
3455
3456 completion_list_objc_symbol (msymbol, sym_text, sym_text_len, text, word);
c5aa993b 3457 }
c906108c
SS
3458
3459 /* Search upwards from currently selected frame (so that we can
3460 complete on local vars. */
3461
ae767bfb 3462 for (b = get_selected_block (0); b != NULL; b = BLOCK_SUPERBLOCK (b))
c906108c
SS
3463 {
3464 if (!BLOCK_SUPERBLOCK (b))
3465 {
c5aa993b 3466 surrounding_static_block = b; /* For elmin of dups */
c906108c 3467 }
c5aa993b 3468
c906108c 3469 /* Also catch fields of types defined in this places which match our
c5aa993b 3470 text string. Only complete on types visible from current context. */
c906108c 3471
de4f826b 3472 ALL_BLOCK_SYMBOLS (b, iter, sym)
c906108c 3473 {
69636828 3474 QUIT;
c906108c
SS
3475 COMPLETION_LIST_ADD_SYMBOL (sym, sym_text, sym_text_len, text, word);
3476 if (SYMBOL_CLASS (sym) == LOC_TYPEDEF)
3477 {
3478 struct type *t = SYMBOL_TYPE (sym);
3479 enum type_code c = TYPE_CODE (t);
3480
3481 if (c == TYPE_CODE_UNION || c == TYPE_CODE_STRUCT)
3482 {
3483 for (j = TYPE_N_BASECLASSES (t); j < TYPE_NFIELDS (t); j++)
3484 {
3485 if (TYPE_FIELD_NAME (t, j))
3486 {
3487 completion_list_add_name (TYPE_FIELD_NAME (t, j),
c5aa993b 3488 sym_text, sym_text_len, text, word);
c906108c
SS
3489 }
3490 }
3491 }
3492 }
3493 }
3494 }
3495
3496 /* Go through the symtabs and check the externs and statics for
3497 symbols which match. */
3498
3499 ALL_SYMTABS (objfile, s)
c5aa993b
JM
3500 {
3501 QUIT;
3502 b = BLOCKVECTOR_BLOCK (BLOCKVECTOR (s), GLOBAL_BLOCK);
de4f826b 3503 ALL_BLOCK_SYMBOLS (b, iter, sym)
c5aa993b 3504 {
c5aa993b
JM
3505 COMPLETION_LIST_ADD_SYMBOL (sym, sym_text, sym_text_len, text, word);
3506 }
3507 }
c906108c
SS
3508
3509 ALL_SYMTABS (objfile, s)
c5aa993b
JM
3510 {
3511 QUIT;
3512 b = BLOCKVECTOR_BLOCK (BLOCKVECTOR (s), STATIC_BLOCK);
3513 /* Don't do this block twice. */
3514 if (b == surrounding_static_block)
3515 continue;
de4f826b 3516 ALL_BLOCK_SYMBOLS (b, iter, sym)
c5aa993b 3517 {
c5aa993b
JM
3518 COMPLETION_LIST_ADD_SYMBOL (sym, sym_text, sym_text_len, text, word);
3519 }
3520 }
c906108c
SS
3521
3522 return (return_val);
3523}
3524
c94fdfd0
EZ
3525/* Like make_symbol_completion_list, but returns a list of symbols
3526 defined in a source file FILE. */
3527
3528char **
3529make_file_symbol_completion_list (char *text, char *word, char *srcfile)
3530{
52f0bd74
AC
3531 struct symbol *sym;
3532 struct symtab *s;
3533 struct block *b;
de4f826b 3534 struct dict_iterator iter;
c94fdfd0
EZ
3535 /* The symbol we are completing on. Points in same buffer as text. */
3536 char *sym_text;
3537 /* Length of sym_text. */
3538 int sym_text_len;
3539
3540 /* Now look for the symbol we are supposed to complete on.
3541 FIXME: This should be language-specific. */
3542 {
3543 char *p;
3544 char quote_found;
3545 char *quote_pos = NULL;
3546
3547 /* First see if this is a quoted string. */
3548 quote_found = '\0';
3549 for (p = text; *p != '\0'; ++p)
3550 {
3551 if (quote_found != '\0')
3552 {
3553 if (*p == quote_found)
3554 /* Found close quote. */
3555 quote_found = '\0';
3556 else if (*p == '\\' && p[1] == quote_found)
3557 /* A backslash followed by the quote character
3558 doesn't end the string. */
3559 ++p;
3560 }
3561 else if (*p == '\'' || *p == '"')
3562 {
3563 quote_found = *p;
3564 quote_pos = p;
3565 }
3566 }
3567 if (quote_found == '\'')
3568 /* A string within single quotes can be a symbol, so complete on it. */
3569 sym_text = quote_pos + 1;
3570 else if (quote_found == '"')
3571 /* A double-quoted string is never a symbol, nor does it make sense
3572 to complete it any other way. */
3573 {
3574 return_val = (char **) xmalloc (sizeof (char *));
3575 return_val[0] = NULL;
3576 return return_val;
3577 }
3578 else
3579 {
69636828
AF
3580 /* Not a quoted string. */
3581 sym_text = language_search_unquoted_string (text, p);
c94fdfd0
EZ
3582 }
3583 }
3584
3585 sym_text_len = strlen (sym_text);
3586
3587 return_val_size = 10;
3588 return_val_index = 0;
3589 return_val = (char **) xmalloc ((return_val_size + 1) * sizeof (char *));
3590 return_val[0] = NULL;
3591
3592 /* Find the symtab for SRCFILE (this loads it if it was not yet read
3593 in). */
3594 s = lookup_symtab (srcfile);
3595 if (s == NULL)
3596 {
3597 /* Maybe they typed the file with leading directories, while the
3598 symbol tables record only its basename. */
31889e00 3599 const char *tail = lbasename (srcfile);
c94fdfd0
EZ
3600
3601 if (tail > srcfile)
3602 s = lookup_symtab (tail);
3603 }
3604
3605 /* If we have no symtab for that file, return an empty list. */
3606 if (s == NULL)
3607 return (return_val);
3608
3609 /* Go through this symtab and check the externs and statics for
3610 symbols which match. */
3611
3612 b = BLOCKVECTOR_BLOCK (BLOCKVECTOR (s), GLOBAL_BLOCK);
de4f826b 3613 ALL_BLOCK_SYMBOLS (b, iter, sym)
c94fdfd0 3614 {
c94fdfd0
EZ
3615 COMPLETION_LIST_ADD_SYMBOL (sym, sym_text, sym_text_len, text, word);
3616 }
3617
3618 b = BLOCKVECTOR_BLOCK (BLOCKVECTOR (s), STATIC_BLOCK);
de4f826b 3619 ALL_BLOCK_SYMBOLS (b, iter, sym)
c94fdfd0 3620 {
c94fdfd0
EZ
3621 COMPLETION_LIST_ADD_SYMBOL (sym, sym_text, sym_text_len, text, word);
3622 }
3623
3624 return (return_val);
3625}
3626
3627/* A helper function for make_source_files_completion_list. It adds
3628 another file name to a list of possible completions, growing the
3629 list as necessary. */
3630
3631static void
3632add_filename_to_list (const char *fname, char *text, char *word,
3633 char ***list, int *list_used, int *list_alloced)
3634{
3635 char *new;
3636 size_t fnlen = strlen (fname);
3637
3638 if (*list_used + 1 >= *list_alloced)
3639 {
3640 *list_alloced *= 2;
3641 *list = (char **) xrealloc ((char *) *list,
3642 *list_alloced * sizeof (char *));
3643 }
3644
3645 if (word == text)
3646 {
3647 /* Return exactly fname. */
3648 new = xmalloc (fnlen + 5);
3649 strcpy (new, fname);
3650 }
3651 else if (word > text)
3652 {
3653 /* Return some portion of fname. */
3654 new = xmalloc (fnlen + 5);
3655 strcpy (new, fname + (word - text));
3656 }
3657 else
3658 {
3659 /* Return some of TEXT plus fname. */
3660 new = xmalloc (fnlen + (text - word) + 5);
3661 strncpy (new, word, text - word);
3662 new[text - word] = '\0';
3663 strcat (new, fname);
3664 }
3665 (*list)[*list_used] = new;
3666 (*list)[++*list_used] = NULL;
3667}
3668
3669static int
3670not_interesting_fname (const char *fname)
3671{
3672 static const char *illegal_aliens[] = {
3673 "_globals_", /* inserted by coff_symtab_read */
3674 NULL
3675 };
3676 int i;
3677
3678 for (i = 0; illegal_aliens[i]; i++)
3679 {
3680 if (strcmp (fname, illegal_aliens[i]) == 0)
3681 return 1;
3682 }
3683 return 0;
3684}
3685
3686/* Return a NULL terminated array of all source files whose names
3687 begin with matching TEXT. The file names are looked up in the
3688 symbol tables of this program. If the answer is no matchess, then
3689 the return value is an array which contains only a NULL pointer. */
3690
3691char **
3692make_source_files_completion_list (char *text, char *word)
3693{
52f0bd74
AC
3694 struct symtab *s;
3695 struct partial_symtab *ps;
3696 struct objfile *objfile;
c94fdfd0
EZ
3697 int first = 1;
3698 int list_alloced = 1;
3699 int list_used = 0;
3700 size_t text_len = strlen (text);
3701 char **list = (char **) xmalloc (list_alloced * sizeof (char *));
31889e00 3702 const char *base_name;
c94fdfd0
EZ
3703
3704 list[0] = NULL;
3705
3706 if (!have_full_symbols () && !have_partial_symbols ())
3707 return list;
3708
3709 ALL_SYMTABS (objfile, s)
3710 {
3711 if (not_interesting_fname (s->filename))
3712 continue;
3713 if (!filename_seen (s->filename, 1, &first)
3714#if HAVE_DOS_BASED_FILE_SYSTEM
3715 && strncasecmp (s->filename, text, text_len) == 0
3716#else
3717 && strncmp (s->filename, text, text_len) == 0
3718#endif
3719 )
3720 {
3721 /* This file matches for a completion; add it to the current
3722 list of matches. */
3723 add_filename_to_list (s->filename, text, word,
3724 &list, &list_used, &list_alloced);
3725 }
3726 else
3727 {
3728 /* NOTE: We allow the user to type a base name when the
3729 debug info records leading directories, but not the other
3730 way around. This is what subroutines of breakpoint
3731 command do when they parse file names. */
31889e00 3732 base_name = lbasename (s->filename);
c94fdfd0
EZ
3733 if (base_name != s->filename
3734 && !filename_seen (base_name, 1, &first)
3735#if HAVE_DOS_BASED_FILE_SYSTEM
3736 && strncasecmp (base_name, text, text_len) == 0
3737#else
3738 && strncmp (base_name, text, text_len) == 0
3739#endif
3740 )
3741 add_filename_to_list (base_name, text, word,
3742 &list, &list_used, &list_alloced);
3743 }
3744 }
3745
3746 ALL_PSYMTABS (objfile, ps)
3747 {
3748 if (not_interesting_fname (ps->filename))
3749 continue;
3750 if (!ps->readin)
3751 {
3752 if (!filename_seen (ps->filename, 1, &first)
3753#if HAVE_DOS_BASED_FILE_SYSTEM
3754 && strncasecmp (ps->filename, text, text_len) == 0
3755#else
3756 && strncmp (ps->filename, text, text_len) == 0
3757#endif
3758 )
3759 {
3760 /* This file matches for a completion; add it to the
3761 current list of matches. */
3762 add_filename_to_list (ps->filename, text, word,
3763 &list, &list_used, &list_alloced);
3764
3765 }
3766 else
3767 {
31889e00 3768 base_name = lbasename (ps->filename);
c94fdfd0
EZ
3769 if (base_name != ps->filename
3770 && !filename_seen (base_name, 1, &first)
3771#if HAVE_DOS_BASED_FILE_SYSTEM
3772 && strncasecmp (base_name, text, text_len) == 0
3773#else
3774 && strncmp (base_name, text, text_len) == 0
3775#endif
3776 )
3777 add_filename_to_list (base_name, text, word,
3778 &list, &list_used, &list_alloced);
3779 }
3780 }
3781 }
3782
3783 return list;
3784}
3785
c906108c
SS
3786/* Determine if PC is in the prologue of a function. The prologue is the area
3787 between the first instruction of a function, and the first executable line.
3788 Returns 1 if PC *might* be in prologue, 0 if definately *not* in prologue.
3789
3790 If non-zero, func_start is where we think the prologue starts, possibly
3791 by previous examination of symbol table information.
3792 */
3793
3794int
fba45db2 3795in_prologue (CORE_ADDR pc, CORE_ADDR func_start)
c906108c
SS
3796{
3797 struct symtab_and_line sal;
3798 CORE_ADDR func_addr, func_end;
3799
54cf9c03
EZ
3800 /* We have several sources of information we can consult to figure
3801 this out.
3802 - Compilers usually emit line number info that marks the prologue
3803 as its own "source line". So the ending address of that "line"
3804 is the end of the prologue. If available, this is the most
3805 reliable method.
3806 - The minimal symbols and partial symbols, which can usually tell
3807 us the starting and ending addresses of a function.
3808 - If we know the function's start address, we can call the
3809 architecture-defined SKIP_PROLOGUE function to analyze the
3810 instruction stream and guess where the prologue ends.
3811 - Our `func_start' argument; if non-zero, this is the caller's
3812 best guess as to the function's entry point. At the time of
3813 this writing, handle_inferior_event doesn't get this right, so
3814 it should be our last resort. */
3815
3816 /* Consult the partial symbol table, to find which function
3817 the PC is in. */
3818 if (! find_pc_partial_function (pc, NULL, &func_addr, &func_end))
3819 {
3820 CORE_ADDR prologue_end;
c906108c 3821
54cf9c03
EZ
3822 /* We don't even have minsym information, so fall back to using
3823 func_start, if given. */
3824 if (! func_start)
3825 return 1; /* We *might* be in a prologue. */
c906108c 3826
54cf9c03 3827 prologue_end = SKIP_PROLOGUE (func_start);
c906108c 3828
54cf9c03
EZ
3829 return func_start <= pc && pc < prologue_end;
3830 }
c906108c 3831
54cf9c03
EZ
3832 /* If we have line number information for the function, that's
3833 usually pretty reliable. */
3834 sal = find_pc_line (func_addr, 0);
c906108c 3835
54cf9c03
EZ
3836 /* Now sal describes the source line at the function's entry point,
3837 which (by convention) is the prologue. The end of that "line",
3838 sal.end, is the end of the prologue.
3839
3840 Note that, for functions whose source code is all on a single
3841 line, the line number information doesn't always end up this way.
3842 So we must verify that our purported end-of-prologue address is
3843 *within* the function, not at its start or end. */
3844 if (sal.line == 0
3845 || sal.end <= func_addr
3846 || func_end <= sal.end)
3847 {
3848 /* We don't have any good line number info, so use the minsym
3849 information, together with the architecture-specific prologue
3850 scanning code. */
3851 CORE_ADDR prologue_end = SKIP_PROLOGUE (func_addr);
c906108c 3852
54cf9c03
EZ
3853 return func_addr <= pc && pc < prologue_end;
3854 }
c906108c 3855
54cf9c03
EZ
3856 /* We have line number info, and it looks good. */
3857 return func_addr <= pc && pc < sal.end;
c906108c
SS
3858}
3859
c906108c 3860\f
50641945
FN
3861struct symtabs_and_lines
3862decode_line_spec (char *string, int funfirstline)
3863{
3864 struct symtabs_and_lines sals;
0378c332
FN
3865 struct symtab_and_line cursal;
3866
50641945
FN
3867 if (string == 0)
3868 error ("Empty line specification.");
0378c332
FN
3869
3870 /* We use whatever is set as the current source line. We do not try
3871 and get a default or it will recursively call us! */
3872 cursal = get_current_source_symtab_and_line ();
3873
50641945 3874 sals = decode_line_1 (&string, funfirstline,
0378c332 3875 cursal.symtab, cursal.line,
50641945 3876 (char ***) NULL);
0378c332 3877
50641945
FN
3878 if (*string)
3879 error ("Junk at end of line specification: %s", string);
3880 return sals;
3881}
c5aa993b 3882
51cc5b07
AC
3883/* Track MAIN */
3884static char *name_of_main;
3885
3886void
3887set_main_name (const char *name)
3888{
3889 if (name_of_main != NULL)
3890 {
3891 xfree (name_of_main);
3892 name_of_main = NULL;
3893 }
3894 if (name != NULL)
3895 {
3896 name_of_main = xstrdup (name);
3897 }
3898}
3899
3900char *
3901main_name (void)
3902{
3903 if (name_of_main != NULL)
3904 return name_of_main;
3905 else
3906 return "main";
3907}
3908
3909
c906108c 3910void
fba45db2 3911_initialize_symtab (void)
c906108c
SS
3912{
3913 add_info ("variables", variables_info,
c5aa993b 3914 "All global and static variable names, or those matching REGEXP.");
c906108c 3915 if (dbx_commands)
c5aa993b
JM
3916 add_com ("whereis", class_info, variables_info,
3917 "All global and static variable names, or those matching REGEXP.");
c906108c
SS
3918
3919 add_info ("functions", functions_info,
3920 "All function names, or those matching REGEXP.");
3921
357e46e7 3922
c906108c
SS
3923 /* FIXME: This command has at least the following problems:
3924 1. It prints builtin types (in a very strange and confusing fashion).
3925 2. It doesn't print right, e.g. with
c5aa993b
JM
3926 typedef struct foo *FOO
3927 type_print prints "FOO" when we want to make it (in this situation)
3928 print "struct foo *".
c906108c
SS
3929 I also think "ptype" or "whatis" is more likely to be useful (but if
3930 there is much disagreement "info types" can be fixed). */
3931 add_info ("types", types_info,
3932 "All type names, or those matching REGEXP.");
3933
c906108c
SS
3934 add_info ("sources", sources_info,
3935 "Source files in the program.");
3936
3937 add_com ("rbreak", class_breakpoint, rbreak_command,
c5aa993b 3938 "Set a breakpoint for all functions matching REGEXP.");
c906108c
SS
3939
3940 if (xdb_commands)
3941 {
3942 add_com ("lf", class_info, sources_info, "Source files in the program");
3943 add_com ("lg", class_info, variables_info,
c5aa993b 3944 "All global and static variable names, or those matching REGEXP.");
c906108c
SS
3945 }
3946
3947 /* Initialize the one built-in type that isn't language dependent... */
3948 builtin_type_error = init_type (TYPE_CODE_ERROR, 0, 0,
3949 "<unknown type>", (struct objfile *) NULL);
3950}