new for ptx
[deliverable/binutils-gdb.git] / gdb / symtab.c
CommitLineData
bd5635a1 1/* Symbol table lookup for the GNU debugger, GDB.
87041845
JK
2 Copyright 1986, 1987, 1988, 1989, 1990, 1991, 1992, 1993, 1994
3 Free Software Foundation, Inc.
bd5635a1
RP
4
5This file is part of GDB.
6
997a978c 7This program is free software; you can redistribute it and/or modify
bd5635a1 8it under the terms of the GNU General Public License as published by
997a978c
JG
9the Free Software Foundation; either version 2 of the License, or
10(at your option) any later version.
bd5635a1 11
997a978c 12This program is distributed in the hope that it will be useful,
bd5635a1
RP
13but WITHOUT ANY WARRANTY; without even the implied warranty of
14MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15GNU General Public License for more details.
16
17You should have received a copy of the GNU General Public License
997a978c
JG
18along with this program; if not, write to the Free Software
19Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. */
bd5635a1 20
bd5635a1
RP
21#include "defs.h"
22#include "symtab.h"
cba0d141 23#include "gdbtypes.h"
bd5635a1
RP
24#include "gdbcore.h"
25#include "frame.h"
26#include "target.h"
27#include "value.h"
28#include "symfile.h"
35a25840 29#include "objfiles.h"
bd5635a1 30#include "gdbcmd.h"
35a25840 31#include "call-cmds.h"
5594d534 32#include "regex.h"
cba0d141 33#include "expression.h"
997a978c 34#include "language.h"
f70be3e4 35#include "demangle.h"
bd5635a1
RP
36
37#include <obstack.h>
38#include <assert.h>
39
40#include <sys/types.h>
41#include <fcntl.h>
42#include <string.h>
43#include <sys/stat.h>
2cd99985 44#include <ctype.h>
bd5635a1 45
cba0d141 46/* Prototypes for local functions */
bd5635a1 47
2cd99985 48extern int
2e4964ad 49find_methods PARAMS ((struct type *, char *, struct symbol **));
cba0d141
JG
50
51static void
f1ed4330 52completion_list_add_name PARAMS ((char *, char *, int, char *, char *));
cba0d141 53
6f87ec4a
PS
54static void
55build_canonical_line_spec PARAMS ((struct symtab_and_line *, char *, char ***));
56
cba0d141 57static struct symtabs_and_lines
6f87ec4a 58decode_line_2 PARAMS ((struct symbol *[], int, int, char ***));
cba0d141
JG
59
60static void
35a25840 61rbreak_command PARAMS ((char *, int));
cba0d141
JG
62
63static void
35a25840 64types_info PARAMS ((char *, int));
cba0d141
JG
65
66static void
35a25840 67functions_info PARAMS ((char *, int));
cba0d141
JG
68
69static void
35a25840 70variables_info PARAMS ((char *, int));
cba0d141
JG
71
72static void
35a25840 73sources_info PARAMS ((char *, int));
cba0d141
JG
74
75static void
ae6d035d 76list_symbols PARAMS ((char *, int, int, int));
cba0d141
JG
77
78static void
79output_source_filename PARAMS ((char *, int *));
80
81static char *
82operator_chars PARAMS ((char *, char **));
83
018ab14f 84static int find_line_common PARAMS ((struct linetable *, int, int *));
cba0d141
JG
85
86static struct partial_symbol *
87lookup_partial_symbol PARAMS ((struct partial_symtab *, const char *,
88 int, enum namespace));
89
cba0d141
JG
90static struct symtab *
91lookup_symtab_1 PARAMS ((char *));
92
93/* */
bd5635a1 94
997a978c 95/* The single non-language-specific builtin type */
bd5635a1
RP
96struct type *builtin_type_error;
97
98/* Block in which the most recently searched-for symbol was found.
99 Might be better to make this a parameter to lookup_symbol and
100 value_of_this. */
cba0d141
JG
101
102const struct block *block_found;
bd5635a1
RP
103
104char no_symtab_msg[] = "No symbol table is loaded. Use the \"file\" command.";
105
f70be3e4
JG
106/* While the C++ support is still in flux, issue a possibly helpful hint on
107 using the new command completion feature on single quoted demangled C++
108 symbols. Remove when loose ends are cleaned up. FIXME -fnf */
109
110void
111cplusplus_hint (name)
112 char *name;
113{
199b2450
TL
114 printf_unfiltered ("Hint: try '%s<TAB> or '%s<ESC-?>\n", name, name);
115 printf_unfiltered ("(Note leading single quote.)\n");
f70be3e4
JG
116}
117
bd5635a1
RP
118/* Check for a symtab of a specific name; first in symtabs, then in
119 psymtabs. *If* there is no '/' in the name, a match after a '/'
120 in the symtab filename will also work. */
121
122static struct symtab *
123lookup_symtab_1 (name)
124 char *name;
125{
126 register struct symtab *s;
127 register struct partial_symtab *ps;
35a25840 128 register char *slash;
cba0d141 129 register struct objfile *objfile;
bd5635a1 130
784fd92b 131 got_symtab:
35a25840 132
784fd92b
SG
133 /* First, search for an exact match */
134
135 ALL_SYMTABS (objfile, s)
2e4964ad 136 if (STREQ (name, s->filename))
784fd92b 137 return s;
35a25840
SG
138
139 slash = strchr (name, '/');
784fd92b
SG
140
141 /* Now, search for a matching tail (only if name doesn't have any dirs) */
35a25840 142
bd5635a1 143 if (!slash)
784fd92b
SG
144 ALL_SYMTABS (objfile, s)
145 {
146 char *p = s -> filename;
147 char *tail = strrchr (p, '/');
148
149 if (tail)
150 p = tail + 1;
151
2e4964ad 152 if (STREQ (p, name))
784fd92b
SG
153 return s;
154 }
155
156 /* Same search rules as above apply here, but now we look thru the
157 psymtabs. */
158
ad0a2521
JK
159 ps = lookup_partial_symtab (name);
160 if (!ps)
161 return (NULL);
784fd92b
SG
162
163 if (ps -> readin)
35fcebce
PB
164 error ("Internal: readin %s pst for `%s' found when no symtab found.",
165 ps -> filename, name);
784fd92b
SG
166
167 s = PSYMTAB_TO_SYMTAB (ps);
168
169 if (s)
170 return s;
171
172 /* At this point, we have located the psymtab for this file, but
173 the conversion to a symtab has failed. This usually happens
174 when we are looking up an include file. In this case,
175 PSYMTAB_TO_SYMTAB doesn't return a symtab, even though one has
176 been created. So, we need to run through the symtabs again in
177 order to find the file.
178 XXX - This is a crock, and should be fixed inside of the the
179 symbol parsing routines. */
180 goto got_symtab;
bd5635a1
RP
181}
182
183/* Lookup the symbol table of a source file named NAME. Try a couple
184 of variations if the first lookup doesn't work. */
185
186struct symtab *
187lookup_symtab (name)
188 char *name;
189{
190 register struct symtab *s;
191 register char *copy;
192
193 s = lookup_symtab_1 (name);
194 if (s) return s;
195
d8a66e60
JK
196#if 0
197 /* This screws c-exp.y:yylex if there is both a type "tree" and a symtab
198 "tree.c". */
199
bd5635a1 200 /* If name not found as specified, see if adding ".c" helps. */
ad0a2521
JK
201 /* Why is this? Is it just a user convenience? (If so, it's pretty
202 questionable in the presence of C++, FORTRAN, etc.). It's not in
203 the GDB manual. */
bd5635a1
RP
204
205 copy = (char *) alloca (strlen (name) + 3);
206 strcpy (copy, name);
207 strcat (copy, ".c");
208 s = lookup_symtab_1 (copy);
209 if (s) return s;
d8a66e60 210#endif /* 0 */
bd5635a1
RP
211
212 /* We didn't find anything; die. */
213 return 0;
214}
215
ad0a2521
JK
216/* Lookup the partial symbol table of a source file named NAME.
217 *If* there is no '/' in the name, a match after a '/'
218 in the psymtab filename will also work. */
bd5635a1
RP
219
220struct partial_symtab *
221lookup_partial_symtab (name)
222char *name;
223{
cba0d141
JG
224 register struct partial_symtab *pst;
225 register struct objfile *objfile;
bd5635a1 226
35a25840 227 ALL_PSYMTABS (objfile, pst)
bd5635a1 228 {
2e4964ad 229 if (STREQ (name, pst -> filename))
bd5635a1 230 {
35a25840 231 return (pst);
bd5635a1 232 }
35a25840 233 }
ad0a2521
JK
234
235 /* Now, search for a matching tail (only if name doesn't have any dirs) */
236
237 if (!strchr (name, '/'))
238 ALL_PSYMTABS (objfile, pst)
239 {
240 char *p = pst -> filename;
241 char *tail = strrchr (p, '/');
242
243 if (tail)
244 p = tail + 1;
245
246 if (STREQ (p, name))
247 return (pst);
248 }
249
cba0d141 250 return (NULL);
bd5635a1 251}
cba0d141 252\f
0b28c260
JK
253/* Demangle a GDB method stub type.
254 Note that this function is g++ specific. */
255
bd5635a1 256char *
bcccec8c 257gdb_mangle_name (type, i, j)
bd5635a1 258 struct type *type;
bcccec8c 259 int i, j;
bd5635a1 260{
bcccec8c
PB
261 int mangled_name_len;
262 char *mangled_name;
263 struct fn_field *f = TYPE_FN_FIELDLIST1 (type, i);
264 struct fn_field *method = &f[j];
265 char *field_name = TYPE_FN_FIELDLIST_NAME (type, i);
8050a57b 266 char *physname = TYPE_FN_FIELD_PHYSNAME (f, j);
35fcebce 267 char *newname = type_name_no_tag (type);
d47a7f52
JK
268
269 /* Does the form of physname indicate that it is the full mangled name
270 of a constructor (not just the args)? */
271 int is_full_physname_constructor;
272
ad0a2521 273 int is_constructor;
2d575e6f 274 int is_destructor = DESTRUCTOR_PREFIX_P (physname);
bcccec8c 275 /* Need a new type prefix. */
bcccec8c
PB
276 char *const_prefix = method->is_const ? "C" : "";
277 char *volatile_prefix = method->is_volatile ? "V" : "";
bcccec8c 278 char buf[20];
ad0a2521 279 int len = (newname == NULL ? 0 : strlen (newname));
ad0a2521 280
d47a7f52
JK
281 is_full_physname_constructor =
282 ((physname[0]=='_' && physname[1]=='_' &&
283 (isdigit(physname[2]) || physname[2]=='Q' || physname[2]=='t'))
284 || (strncmp(physname, "__ct", 4) == 0));
285
286 is_constructor =
287 is_full_physname_constructor || (newname && STREQ(field_name, newname));
288
ad0a2521
JK
289 if (!is_destructor)
290 is_destructor = (strncmp(physname, "__dt", 4) == 0);
35fcebce 291
ad0a2521 292#ifndef GCC_MANGLE_BUG
d47a7f52 293 if (is_destructor || is_full_physname_constructor)
35fcebce
PB
294 {
295 mangled_name = (char*) xmalloc(strlen(physname)+1);
296 strcpy(mangled_name, physname);
297 return mangled_name;
298 }
299
ad0a2521
JK
300 if (len == 0)
301 {
302 sprintf (buf, "__%s%s", const_prefix, volatile_prefix);
303 if (strcmp(buf, "__") == 0)
304 buf[0] = '\0';
305 }
306 else
307 {
308 sprintf (buf, "__%s%s%d", const_prefix, volatile_prefix, len);
309 }
35fcebce
PB
310 mangled_name_len = ((is_constructor ? 0 : strlen (field_name))
311 + strlen (buf) + len
312 + strlen (physname)
313 + 1);
314
315 /* Only needed for GNU-mangled names. ANSI-mangled names
316 work with the normal mechanisms. */
317 if (OPNAME_PREFIX_P (field_name))
318 {
319 char *opname = cplus_mangle_opname (field_name + 3, 0);
320 if (opname == NULL)
321 error ("No mangling for \"%s\"", field_name);
322 mangled_name_len += strlen (opname);
323 mangled_name = (char *)xmalloc (mangled_name_len);
324
325 strncpy (mangled_name, field_name, 3);
326 mangled_name[3] = '\0';
327 strcat (mangled_name, opname);
328 }
329 else
330 {
331 mangled_name = (char *)xmalloc (mangled_name_len);
332 if (is_constructor)
333 mangled_name[0] = '\0';
334 else
335 strcpy (mangled_name, field_name);
336 }
337 strcat (mangled_name, buf);
018ab14f
PS
338 /* If the class doesn't have a name, i.e. newname NULL, then we just
339 mangle it using 0 for the length of the class. Thus it gets mangled
2d575e6f 340 as something starting with `::' rather than `classname::'. */
018ab14f
PS
341 if (newname != NULL)
342 strcat (mangled_name, newname);
2d575e6f 343
35fcebce 344#else
bcccec8c 345
8050a57b
FF
346 if (is_constructor)
347 {
348 buf[0] = '\0';
349 }
350 else
351 {
352 sprintf (buf, "__%s%s", const_prefix, volatile_prefix);
353 }
354
7c4f3f4a 355 mangled_name_len = ((is_constructor ? 0 : strlen (field_name))
8050a57b 356 + strlen (buf) + strlen (physname) + 1);
bcccec8c 357
7d9884b9
JG
358 /* Only needed for GNU-mangled names. ANSI-mangled names
359 work with the normal mechanisms. */
bcccec8c
PB
360 if (OPNAME_PREFIX_P (field_name))
361 {
199b2450 362 char *opname;
8050a57b 363 opname = cplus_mangle_opname (field_name + 3, 0);
bcccec8c 364 if (opname == NULL)
8050a57b
FF
365 {
366 error ("No mangling for \"%s\"", field_name);
367 }
bcccec8c 368 mangled_name_len += strlen (opname);
8050a57b 369 mangled_name = (char *) xmalloc (mangled_name_len);
bcccec8c
PB
370
371 strncpy (mangled_name, field_name, 3);
8050a57b 372 strcpy (mangled_name + 3, opname);
bcccec8c
PB
373 }
374 else
bd5635a1 375 {
8050a57b 376 mangled_name = (char *) xmalloc (mangled_name_len);
7c4f3f4a 377 if (is_constructor)
8050a57b
FF
378 {
379 mangled_name[0] = '\0';
380 }
7c4f3f4a 381 else
8050a57b
FF
382 {
383 strcpy (mangled_name, field_name);
384 }
bd5635a1 385 }
bcccec8c 386 strcat (mangled_name, buf);
bcccec8c 387
35fcebce
PB
388#endif
389 strcat (mangled_name, physname);
8050a57b 390 return (mangled_name);
bd5635a1
RP
391}
392
cba0d141
JG
393\f
394/* Find which partial symtab on contains PC. Return 0 if none. */
f1d77e90 395
cba0d141
JG
396struct partial_symtab *
397find_pc_psymtab (pc)
398 register CORE_ADDR pc;
d96b54ea 399{
cba0d141
JG
400 register struct partial_symtab *pst;
401 register struct objfile *objfile;
d96b54ea 402
35a25840 403 ALL_PSYMTABS (objfile, pst)
bd5635a1 404 {
c1878f87
SG
405 if (pc >= pst->textlow && pc < pst->texthigh)
406 return (pst);
bd5635a1 407 }
cba0d141 408 return (NULL);
bd5635a1
RP
409}
410
411/* Find which partial symbol within a psymtab contains PC. Return 0
412 if none. Check all psymtabs if PSYMTAB is 0. */
413struct partial_symbol *
414find_pc_psymbol (psymtab, pc)
415 struct partial_symtab *psymtab;
416 CORE_ADDR pc;
417{
01d3fdba 418 struct partial_symbol *best = NULL, *p;
bd5635a1
RP
419 CORE_ADDR best_pc;
420
421 if (!psymtab)
422 psymtab = find_pc_psymtab (pc);
423 if (!psymtab)
424 return 0;
425
426 best_pc = psymtab->textlow - 1;
427
d8a66e60
JK
428 /* Search the global symbols as well as the static symbols, so that
429 find_pc_partial_function doesn't use a minimal symbol and thus
430 cache a bad endaddr. */
431 for (p = psymtab->objfile->global_psymbols.list + psymtab->globals_offset;
432 (p - (psymtab->objfile->global_psymbols.list + psymtab->globals_offset)
433 < psymtab->n_global_syms);
434 p++)
435 if (SYMBOL_NAMESPACE (p) == VAR_NAMESPACE
436 && SYMBOL_CLASS (p) == LOC_BLOCK
437 && pc >= SYMBOL_VALUE_ADDRESS (p)
438 && SYMBOL_VALUE_ADDRESS (p) > best_pc)
439 {
440 best_pc = SYMBOL_VALUE_ADDRESS (p);
441 best = p;
442 }
cba0d141
JG
443 for (p = psymtab->objfile->static_psymbols.list + psymtab->statics_offset;
444 (p - (psymtab->objfile->static_psymbols.list + psymtab->statics_offset)
bd5635a1
RP
445 < psymtab->n_static_syms);
446 p++)
447 if (SYMBOL_NAMESPACE (p) == VAR_NAMESPACE
448 && SYMBOL_CLASS (p) == LOC_BLOCK
449 && pc >= SYMBOL_VALUE_ADDRESS (p)
450 && SYMBOL_VALUE_ADDRESS (p) > best_pc)
451 {
452 best_pc = SYMBOL_VALUE_ADDRESS (p);
453 best = p;
454 }
455 if (best_pc == psymtab->textlow - 1)
456 return 0;
457 return best;
458}
459
460\f
461/* Find the definition for a specified symbol name NAME
462 in namespace NAMESPACE, visible from lexical block BLOCK.
463 Returns the struct symbol pointer, or zero if no symbol is found.
464 If SYMTAB is non-NULL, store the symbol table in which the
465 symbol was found there, or NULL if not found.
466 C++: if IS_A_FIELD_OF_THIS is nonzero on entry, check to see if
467 NAME is a field of the current implied argument `this'. If so set
468 *IS_A_FIELD_OF_THIS to 1, otherwise set it to zero.
469 BLOCK_FOUND is set to the block in which NAME is found (in the case of
470 a field of `this', value_of_this sets BLOCK_FOUND to the proper value.) */
471
87041845
JK
472/* This function has a bunch of loops in it and it would seem to be
473 attractive to put in some QUIT's (though I'm not really sure
474 whether it can run long enough to be really important). But there
475 are a few calls for which it would appear to be bad news to quit
476 out of here: find_proc_desc in alpha-tdep.c and mips-tdep.c, and
477 nindy_frame_chain_valid in nindy-tdep.c. (Note that there is C++
478 code below which can error(), but that probably doesn't affect
479 these calls since they are looking for a known variable and thus
480 can probably assume it will never hit the C++ code). */
481
bd5635a1
RP
482struct symbol *
483lookup_symbol (name, block, namespace, is_a_field_of_this, symtab)
cba0d141
JG
484 const char *name;
485 register const struct block *block;
486 const enum namespace namespace;
bd5635a1
RP
487 int *is_a_field_of_this;
488 struct symtab **symtab;
489{
490 register struct symbol *sym;
01d3fdba 491 register struct symtab *s = NULL;
bd5635a1
RP
492 register struct partial_symtab *ps;
493 struct blockvector *bv;
cba0d141
JG
494 register struct objfile *objfile;
495 register struct block *b;
cba0d141 496 register struct minimal_symbol *msymbol;
f70be3e4 497
bd5635a1
RP
498 /* Search specified block and its superiors. */
499
500 while (block != 0)
501 {
502 sym = lookup_block_symbol (block, name, namespace);
503 if (sym)
504 {
505 block_found = block;
506 if (symtab != NULL)
507 {
508 /* Search the list of symtabs for one which contains the
509 address of the start of this block. */
35a25840 510 ALL_SYMTABS (objfile, s)
bd5635a1 511 {
35a25840
SG
512 bv = BLOCKVECTOR (s);
513 b = BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK);
514 if (BLOCK_START (b) <= BLOCK_START (block)
515 && BLOCK_END (b) > BLOCK_START (block))
516 goto found;
bd5635a1 517 }
35a25840 518found:
bd5635a1
RP
519 *symtab = s;
520 }
521
cba0d141 522 return (sym);
bd5635a1
RP
523 }
524 block = BLOCK_SUPERBLOCK (block);
525 }
526
0b28c260
JK
527 /* FIXME: this code is never executed--block is always NULL at this
528 point. What is it trying to do, anyway? We already should have
529 checked the STATIC_BLOCK above (it is the superblock of top-level
530 blocks). Why is VAR_NAMESPACE special-cased? */
2e4964ad 531 /* Don't need to mess with the psymtabs; if we have a block,
b039ac3a
JK
532 that file is read in. If we don't, then we deal later with
533 all the psymtab stuff that needs checking. */
534 if (namespace == VAR_NAMESPACE && block != NULL)
535 {
536 struct block *b;
537 /* Find the right symtab. */
35a25840 538 ALL_SYMTABS (objfile, s)
b039ac3a 539 {
35a25840
SG
540 bv = BLOCKVECTOR (s);
541 b = BLOCKVECTOR_BLOCK (bv, STATIC_BLOCK);
542 if (BLOCK_START (b) <= BLOCK_START (block)
543 && BLOCK_END (b) > BLOCK_START (block))
b039ac3a 544 {
2e4964ad 545 sym = lookup_block_symbol (b, name, VAR_NAMESPACE);
35a25840 546 if (sym)
b039ac3a 547 {
35a25840
SG
548 block_found = b;
549 if (symtab != NULL)
550 *symtab = s;
551 return sym;
b039ac3a
JK
552 }
553 }
554 }
555 }
556
557
bd5635a1
RP
558 /* C++: If requested to do so by the caller,
559 check to see if NAME is a field of `this'. */
560 if (is_a_field_of_this)
561 {
562 struct value *v = value_of_this (0);
563
564 *is_a_field_of_this = 0;
565 if (v && check_field (v, name))
566 {
567 *is_a_field_of_this = 1;
568 if (symtab != NULL)
569 *symtab = NULL;
570 return 0;
571 }
572 }
573
574 /* Now search all global blocks. Do the symtab's first, then
575 check the psymtab's */
cba0d141 576
35a25840 577 ALL_SYMTABS (objfile, s)
bd5635a1 578 {
35a25840
SG
579 bv = BLOCKVECTOR (s);
580 block = BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK);
581 sym = lookup_block_symbol (block, name, namespace);
582 if (sym)
bd5635a1 583 {
35a25840
SG
584 block_found = block;
585 if (symtab != NULL)
586 *symtab = s;
587 return sym;
bd5635a1
RP
588 }
589 }
590
591 /* Check for the possibility of the symbol being a global function
cba0d141 592 that is stored in one of the minimal symbol tables. Eventually, all
bd5635a1
RP
593 global symbols might be resolved in this way. */
594
595 if (namespace == VAR_NAMESPACE)
596 {
cba0d141 597 msymbol = lookup_minimal_symbol (name, (struct objfile *) NULL);
f70be3e4 598 if (msymbol != NULL)
bd5635a1 599 {
2e4964ad 600 s = find_pc_symtab (SYMBOL_VALUE_ADDRESS (msymbol));
318bf84f 601 /* If S is NULL, there are no debug symbols for this file.
997a978c 602 Skip this stuff and check for matching static symbols below. */
318bf84f 603 if (s != NULL)
bd5635a1
RP
604 {
605 bv = BLOCKVECTOR (s);
3ba6a043 606 block = BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK);
2e4964ad
FF
607 sym = lookup_block_symbol (block, SYMBOL_NAME (msymbol),
608 namespace);
318bf84f 609 /* We kept static functions in minimal symbol table as well as
818de002 610 in static scope. We want to find them in the symbol table. */
818de002
PB
611 if (!sym) {
612 block = BLOCKVECTOR_BLOCK (bv, STATIC_BLOCK);
2e4964ad 613 sym = lookup_block_symbol (block, SYMBOL_NAME (msymbol),
318bf84f 614 namespace);
818de002 615 }
818de002 616
cba0d141 617 /* sym == 0 if symbol was found in the minimal symbol table
bd5635a1 618 but not in the symtab.
cba0d141 619 Return 0 to use the msymbol definition of "foo_".
bd5635a1
RP
620
621 This happens for Fortran "foo_" symbols,
622 which are "foo" in the symtab.
623
624 This can also happen if "asm" is used to make a
625 regular symbol but not a debugging symbol, e.g.
626 asm(".globl _main");
627 asm("_main:");
628 */
629
630 if (symtab != NULL)
631 *symtab = s;
632 return sym;
633 }
634 }
635 }
636
35a25840 637 ALL_PSYMTABS (objfile, ps)
cba0d141 638 {
35a25840 639 if (!ps->readin && lookup_partial_symbol (ps, name, 1, namespace))
cba0d141 640 {
35a25840
SG
641 s = PSYMTAB_TO_SYMTAB(ps);
642 bv = BLOCKVECTOR (s);
643 block = BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK);
644 sym = lookup_block_symbol (block, name, namespace);
645 if (!sym)
35fcebce 646 error ("Internal: global symbol `%s' found in %s psymtab but not in symtab", name, ps->filename);
35a25840
SG
647 if (symtab != NULL)
648 *symtab = s;
649 return sym;
cba0d141
JG
650 }
651 }
bd5635a1
RP
652
653 /* Now search all per-file blocks.
654 Not strictly correct, but more useful than an error.
655 Do the symtabs first, then check the psymtabs */
656
35a25840 657 ALL_SYMTABS (objfile, s)
bd5635a1 658 {
35a25840
SG
659 bv = BLOCKVECTOR (s);
660 block = BLOCKVECTOR_BLOCK (bv, STATIC_BLOCK);
661 sym = lookup_block_symbol (block, name, namespace);
662 if (sym)
bd5635a1 663 {
35a25840
SG
664 block_found = block;
665 if (symtab != NULL)
666 *symtab = s;
667 return sym;
668 }
669 }
670
671 ALL_PSYMTABS (objfile, ps)
672 {
673 if (!ps->readin && lookup_partial_symbol (ps, name, 0, namespace))
674 {
675 s = PSYMTAB_TO_SYMTAB(ps);
cba0d141
JG
676 bv = BLOCKVECTOR (s);
677 block = BLOCKVECTOR_BLOCK (bv, STATIC_BLOCK);
678 sym = lookup_block_symbol (block, name, namespace);
35a25840 679 if (!sym)
35fcebce 680 error ("Internal: static symbol `%s' found in %s psymtab but not in symtab", name, ps->filename);
35a25840
SG
681 if (symtab != NULL)
682 *symtab = s;
683 return sym;
684 }
685 }
686
687 /* Now search all per-file blocks for static mangled symbols.
688 Do the symtabs first, then check the psymtabs. */
689
690 if (namespace == VAR_NAMESPACE)
691 {
692 ALL_SYMTABS (objfile, s)
693 {
694 bv = BLOCKVECTOR (s);
695 block = BLOCKVECTOR_BLOCK (bv, STATIC_BLOCK);
2e4964ad 696 sym = lookup_block_symbol (block, name, VAR_NAMESPACE);
cba0d141
JG
697 if (sym)
698 {
699 block_found = block;
700 if (symtab != NULL)
701 *symtab = s;
702 return sym;
703 }
bd5635a1 704 }
bd5635a1 705
35a25840 706 ALL_PSYMTABS (objfile, ps)
cba0d141 707 {
2e4964ad 708 if (!ps->readin && lookup_partial_symbol (ps, name, 0, VAR_NAMESPACE))
cba0d141
JG
709 {
710 s = PSYMTAB_TO_SYMTAB(ps);
711 bv = BLOCKVECTOR (s);
712 block = BLOCKVECTOR_BLOCK (bv, STATIC_BLOCK);
2e4964ad 713 sym = lookup_block_symbol (block, name, VAR_NAMESPACE);
cba0d141 714 if (!sym)
35fcebce 715 error ("Internal: mangled static symbol `%s' found in %s psymtab but not in symtab", name, ps->filename);
cba0d141
JG
716 if (symtab != NULL)
717 *symtab = s;
718 return sym;
719 }
720 }
721 }
bd5635a1
RP
722
723 if (symtab != NULL)
724 *symtab = NULL;
725 return 0;
726}
727
728/* Look, in partial_symtab PST, for symbol NAME. Check the global
729 symbols if GLOBAL, the static symbols if not */
730
731static struct partial_symbol *
732lookup_partial_symbol (pst, name, global, namespace)
733 struct partial_symtab *pst;
cba0d141 734 const char *name;
bd5635a1
RP
735 int global;
736 enum namespace namespace;
737{
738 struct partial_symbol *start, *psym;
2e4964ad 739 struct partial_symbol *top, *bottom, *center;
bd5635a1 740 int length = (global ? pst->n_global_syms : pst->n_static_syms);
2e4964ad 741 int do_linear_search = 1;
bd5635a1 742
2e4964ad
FF
743 if (length == 0)
744 {
745 return (NULL);
746 }
bd5635a1
RP
747
748 start = (global ?
cba0d141
JG
749 pst->objfile->global_psymbols.list + pst->globals_offset :
750 pst->objfile->static_psymbols.list + pst->statics_offset );
bd5635a1 751
2e4964ad 752 if (global) /* This means we can use a binary search. */
bd5635a1 753 {
2e4964ad 754 do_linear_search = 0;
bd5635a1
RP
755
756 /* Binary search. This search is guaranteed to end with center
757 pointing at the earliest partial symbol with the correct
758 name. At that point *all* partial symbols with that name
759 will be checked against the correct namespace. */
2e4964ad 760
bd5635a1
RP
761 bottom = start;
762 top = start + length - 1;
763 while (top > bottom)
764 {
765 center = bottom + (top - bottom) / 2;
bd5635a1 766 assert (center < top);
2e4964ad
FF
767 if (!do_linear_search && SYMBOL_LANGUAGE (center) == language_cplus)
768 {
769 do_linear_search = 1;
770 }
771 if (STRCMP (SYMBOL_NAME (center), name) >= 0)
772 {
773 top = center;
774 }
bd5635a1 775 else
2e4964ad
FF
776 {
777 bottom = center + 1;
778 }
bd5635a1
RP
779 }
780 assert (top == bottom);
2e4964ad 781 while (STREQ (SYMBOL_NAME (top), name))
bd5635a1
RP
782 {
783 if (SYMBOL_NAMESPACE (top) == namespace)
2e4964ad
FF
784 {
785 return top;
786 }
bd5635a1
RP
787 top ++;
788 }
789 }
2e4964ad
FF
790
791 /* Can't use a binary search or else we found during the binary search that
792 we should also do a linear search. */
793
794 if (do_linear_search)
bd5635a1 795 {
bd5635a1 796 for (psym = start; psym < start + length; psym++)
2e4964ad
FF
797 {
798 if (namespace == SYMBOL_NAMESPACE (psym))
799 {
800 if (SYMBOL_MATCHES_NAME (psym, name))
801 {
802 return (psym);
803 }
804 }
805 }
bd5635a1
RP
806 }
807
2e4964ad 808 return (NULL);
bd5635a1
RP
809}
810
0e2a896c 811/* Find the psymtab containing main(). */
c1878f87
SG
812/* FIXME: What about languages without main() or specially linked
813 executables that have no main() ? */
0e2a896c
PB
814
815struct partial_symtab *
816find_main_psymtab ()
817{
818 register struct partial_symtab *pst;
cba0d141
JG
819 register struct objfile *objfile;
820
35a25840 821 ALL_PSYMTABS (objfile, pst)
cba0d141 822 {
35a25840 823 if (lookup_partial_symbol (pst, "main", 1, VAR_NAMESPACE))
cba0d141 824 {
35a25840 825 return (pst);
cba0d141
JG
826 }
827 }
828 return (NULL);
0e2a896c
PB
829}
830
2e4964ad
FF
831/* Search BLOCK for symbol NAME in NAMESPACE.
832
833 Note that if NAME is the demangled form of a C++ symbol, we will fail
834 to find a match during the binary search of the non-encoded names, but
835 for now we don't worry about the slight inefficiency of looking for
836 a match we'll never find, since it will go pretty quick. Once the
837 binary search terminates, we drop through and do a straight linear
838 search on the symbols. Each symbol which is marked as being a C++
839 symbol (language_cplus set) has both the encoded and non-encoded names
840 tested for a match. */
bd5635a1
RP
841
842struct symbol *
843lookup_block_symbol (block, name, namespace)
cba0d141
JG
844 register const struct block *block;
845 const char *name;
846 const enum namespace namespace;
bd5635a1
RP
847{
848 register int bot, top, inc;
2e4964ad
FF
849 register struct symbol *sym;
850 register struct symbol *sym_found = NULL;
851 register int do_linear_search = 1;
bd5635a1
RP
852
853 /* If the blocks's symbols were sorted, start with a binary search. */
854
855 if (BLOCK_SHOULD_SORT (block))
856 {
2e4964ad
FF
857 /* Reset the linear search flag so if the binary search fails, we
858 won't do the linear search once unless we find some reason to
859 do so, such as finding a C++ symbol during the binary search.
860 Note that for C++ modules, ALL the symbols in a block should
861 end up marked as C++ symbols. */
862
863 do_linear_search = 0;
864 top = BLOCK_NSYMS (block);
865 bot = 0;
866
867 /* Advance BOT to not far before the first symbol whose name is NAME. */
bd5635a1
RP
868
869 while (1)
870 {
871 inc = (top - bot + 1);
872 /* No need to keep binary searching for the last few bits worth. */
873 if (inc < 4)
2e4964ad
FF
874 {
875 break;
876 }
bd5635a1
RP
877 inc = (inc >> 1) + bot;
878 sym = BLOCK_SYM (block, inc);
2e4964ad
FF
879 if (!do_linear_search && SYMBOL_LANGUAGE (sym) == language_cplus)
880 {
881 do_linear_search = 1;
882 }
bd5635a1 883 if (SYMBOL_NAME (sym)[0] < name[0])
2e4964ad
FF
884 {
885 bot = inc;
886 }
bd5635a1 887 else if (SYMBOL_NAME (sym)[0] > name[0])
2e4964ad
FF
888 {
889 top = inc;
890 }
891 else if (STRCMP (SYMBOL_NAME (sym), name) < 0)
892 {
893 bot = inc;
894 }
bd5635a1 895 else
2e4964ad
FF
896 {
897 top = inc;
898 }
bd5635a1
RP
899 }
900
f1ed4330
JK
901 /* Now scan forward until we run out of symbols, find one whose
902 name is greater than NAME, or find one we want. If there is
903 more than one symbol with the right name and namespace, we
904 return the first one; I believe it is now impossible for us
905 to encounter two symbols with the same name and namespace
906 here, because blocks containing argument symbols are no
907 longer sorted. */
bd5635a1
RP
908
909 top = BLOCK_NSYMS (block);
910 while (bot < top)
911 {
912 sym = BLOCK_SYM (block, bot);
913 inc = SYMBOL_NAME (sym)[0] - name[0];
914 if (inc == 0)
2e4964ad
FF
915 {
916 inc = STRCMP (SYMBOL_NAME (sym), name);
917 }
bd5635a1 918 if (inc == 0 && SYMBOL_NAMESPACE (sym) == namespace)
2e4964ad
FF
919 {
920 return (sym);
921 }
bd5635a1 922 if (inc > 0)
2e4964ad
FF
923 {
924 break;
925 }
bd5635a1
RP
926 bot++;
927 }
bd5635a1
RP
928 }
929
2e4964ad
FF
930 /* Here if block isn't sorted, or we fail to find a match during the
931 binary search above. If during the binary search above, we find a
932 symbol which is a C++ symbol, then we have re-enabled the linear
933 search flag which was reset when starting the binary search.
934
935 This loop is equivalent to the loop above, but hacked greatly for speed.
bd5635a1
RP
936
937 Note that parameter symbols do not always show up last in the
938 list; this loop makes sure to take anything else other than
939 parameter symbols first; it only uses parameter symbols as a
940 last resort. Note that this only takes up extra computation
941 time on a match. */
942
2e4964ad 943 if (do_linear_search)
bd5635a1 944 {
2e4964ad
FF
945 top = BLOCK_NSYMS (block);
946 bot = 0;
947 while (bot < top)
bd5635a1 948 {
2e4964ad
FF
949 sym = BLOCK_SYM (block, bot);
950 if (SYMBOL_NAMESPACE (sym) == namespace &&
951 SYMBOL_MATCHES_NAME (sym, name))
952 {
953 sym_found = sym;
954 if (SYMBOL_CLASS (sym) != LOC_ARG &&
955 SYMBOL_CLASS (sym) != LOC_LOCAL_ARG &&
956 SYMBOL_CLASS (sym) != LOC_REF_ARG &&
f1ed4330 957 SYMBOL_CLASS (sym) != LOC_REGPARM &&
a1c8d76e
JK
958 SYMBOL_CLASS (sym) != LOC_REGPARM_ADDR &&
959 SYMBOL_CLASS (sym) != LOC_BASEREG_ARG)
2e4964ad
FF
960 {
961 break;
962 }
963 }
964 bot++;
bd5635a1 965 }
bd5635a1 966 }
2e4964ad 967 return (sym_found); /* Will be NULL if not found. */
bd5635a1 968}
2e4964ad 969
bd5635a1
RP
970\f
971/* Return the symbol for the function which contains a specified
972 lexical block, described by a struct block BL. */
973
974struct symbol *
975block_function (bl)
976 struct block *bl;
977{
978 while (BLOCK_FUNCTION (bl) == 0 && BLOCK_SUPERBLOCK (bl) != 0)
979 bl = BLOCK_SUPERBLOCK (bl);
980
981 return BLOCK_FUNCTION (bl);
982}
983
c1878f87
SG
984/* Find the symtab associated with PC. Look through the psymtabs and read in
985 another symtab if necessary. */
bd5635a1
RP
986
987struct symtab *
988find_pc_symtab (pc)
989 register CORE_ADDR pc;
990{
991 register struct block *b;
992 struct blockvector *bv;
45a655b0 993 register struct symtab *s = NULL;
ca6a826d 994 register struct symtab *best_s = NULL;
bd5635a1 995 register struct partial_symtab *ps;
cba0d141 996 register struct objfile *objfile;
018ab14f 997 int distance = 0;
bd5635a1 998
018ab14f
PS
999 /* Search all symtabs for the one whose file contains our address, and which
1000 is the smallest of all the ones containing the address. This is designed
1001 to deal with a case like symtab a is at 0x1000-0x2000 and 0x3000-0x4000
1002 and symtab b is at 0x2000-0x3000. So the GLOBAL_BLOCK for a is from
1003 0x1000-0x4000, but for address 0x2345 we want to return symtab b.
1004 This is said to happen for the mips; it might be swifter to create
1005 several symtabs with the same name like xcoff does (I'm not sure). */
bd5635a1 1006
35a25840 1007 ALL_SYMTABS (objfile, s)
bd5635a1 1008 {
35a25840
SG
1009 bv = BLOCKVECTOR (s);
1010 b = BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK);
1011 if (BLOCK_START (b) <= pc
ca6a826d
PS
1012 && BLOCK_END (b) > pc
1013 && (distance == 0
1014 || BLOCK_END (b) - BLOCK_START (b) < distance))
1015 {
1016 distance = BLOCK_END (b) - BLOCK_START (b);
1017 best_s = s;
1018 }
bd5635a1
RP
1019 }
1020
ca6a826d
PS
1021 if (best_s != NULL)
1022 return(best_s);
1023
45a655b0 1024 s = NULL;
c1878f87
SG
1025 ps = find_pc_psymtab (pc);
1026 if (ps)
bd5635a1 1027 {
c1878f87 1028 if (ps->readin)
ac82e9a5
JK
1029 /* Might want to error() here (in case symtab is corrupt and
1030 will cause a core dump), but maybe we can successfully
1031 continue, so let's not. */
e3d6ec4a 1032 /* FIXME-32x64: assumes pc fits in a long */
ac82e9a5 1033 warning ("\
5573d7d4
JK
1034(Internal error: pc 0x%lx in read in psymtab, but not in symtab.)\n",
1035 (unsigned long) pc);
c1878f87 1036 s = PSYMTAB_TO_SYMTAB (ps);
bd5635a1 1037 }
45a655b0 1038 return (s);
bd5635a1 1039}
e0ea0fbd
JG
1040\f
1041/* Find the closest symbol value (of any sort -- function or variable)
1042 for a given address value. Slow but complete. */
1043
1044struct symbol *
87041845 1045find_addr_symbol (addr, symtabp, symaddrp)
e0ea0fbd 1046 CORE_ADDR addr;
87041845
JK
1047 struct symtab **symtabp;
1048 CORE_ADDR *symaddrp;
e0ea0fbd 1049{
87041845 1050 struct symtab *symtab, *best_symtab;
e0ea0fbd
JG
1051 struct objfile *objfile;
1052 register int bot, top;
1053 register struct symbol *sym;
1054 register CORE_ADDR sym_addr;
1055 struct block *block;
1056 int blocknum;
1057
1058 /* Info on best symbol seen so far */
1059
1060 register CORE_ADDR best_sym_addr = 0;
1061 struct symbol *best_sym = 0;
1062
1063 /* FIXME -- we should pull in all the psymtabs, too! */
1064 ALL_SYMTABS (objfile, symtab)
1065 {
1066 /* Search the global and static blocks in this symtab for
1067 the closest symbol-address to the desired address. */
1068
1069 for (blocknum = GLOBAL_BLOCK; blocknum <= STATIC_BLOCK; blocknum++)
1070 {
1071 QUIT;
1072 block = BLOCKVECTOR_BLOCK (BLOCKVECTOR (symtab), blocknum);
1073 top = BLOCK_NSYMS (block);
1074 for (bot = 0; bot < top; bot++)
1075 {
1076 sym = BLOCK_SYM (block, bot);
1077 switch (SYMBOL_CLASS (sym))
1078 {
1079 case LOC_STATIC:
1080 case LOC_LABEL:
1081 sym_addr = SYMBOL_VALUE_ADDRESS (sym);
1082 break;
1083
1084 case LOC_BLOCK:
1085 sym_addr = BLOCK_START (SYMBOL_BLOCK_VALUE (sym));
1086 break;
1087
1088 default:
1089 continue;
1090 }
1091
1092 if (sym_addr <= addr)
1093 if (sym_addr > best_sym_addr)
1094 {
1095 /* Quit if we found an exact match. */
e0ea0fbd
JG
1096 best_sym = sym;
1097 best_sym_addr = sym_addr;
87041845
JK
1098 best_symtab = symtab;
1099 if (sym_addr == addr)
1100 goto done;
e0ea0fbd
JG
1101 }
1102 }
1103 }
1104 }
87041845
JK
1105
1106 done:
1107 if (symtabp)
1108 *symtabp = best_symtab;
1109 if (symaddrp)
1110 *symaddrp = best_sym_addr;
e0ea0fbd
JG
1111 return best_sym;
1112}
1113
bd5635a1
RP
1114
1115/* Find the source file and line number for a given PC value.
1116 Return a structure containing a symtab pointer, a line number,
1117 and a pc range for the entire source line.
1118 The value's .pc field is NOT the specified pc.
1119 NOTCURRENT nonzero means, if specified pc is on a line boundary,
1120 use the line that ends there. Otherwise, in that case, the line
1121 that begins there is used. */
1122
b638ca91
SG
1123/* The big complication here is that a line may start in one file, and end just
1124 before the start of another file. This usually occurs when you #include
1125 code in the middle of a subroutine. To properly find the end of a line's PC
1126 range, we must search all symtabs associated with this compilation unit, and
1127 find the one whose first PC is closer than that of the next line in this
01d3fdba 1128 symtab. */
b638ca91 1129
d34d6f75
JK
1130/* If it's worth the effort, we could be using a binary search. */
1131
bd5635a1
RP
1132struct symtab_and_line
1133find_pc_line (pc, notcurrent)
1134 CORE_ADDR pc;
1135 int notcurrent;
1136{
1137 struct symtab *s;
1138 register struct linetable *l;
1139 register int len;
1140 register int i;
b638ca91 1141 register struct linetable_entry *item;
bd5635a1
RP
1142 struct symtab_and_line val;
1143 struct blockvector *bv;
1144
1145 /* Info on best line seen so far, and where it starts, and its file. */
1146
b638ca91 1147 struct linetable_entry *best = NULL;
bd5635a1
RP
1148 CORE_ADDR best_end = 0;
1149 struct symtab *best_symtab = 0;
1150
1151 /* Store here the first line number
1152 of a file which contains the line at the smallest pc after PC.
1153 If we don't find a line whose range contains PC,
1154 we will use a line one less than this,
1155 with a range from the start of that file to the first line's pc. */
b638ca91 1156 struct linetable_entry *alt = NULL;
bd5635a1
RP
1157 struct symtab *alt_symtab = 0;
1158
1159 /* Info on best line seen in this file. */
1160
b638ca91 1161 struct linetable_entry *prev;
bd5635a1
RP
1162
1163 /* If this pc is not from the current frame,
1164 it is the address of the end of a call instruction.
1165 Quite likely that is the start of the following statement.
1166 But what we want is the statement containing the instruction.
1167 Fudge the pc to make sure we get that. */
1168
1169 if (notcurrent) pc -= 1;
1170
1171 s = find_pc_symtab (pc);
c1878f87 1172 if (!s)
bd5635a1
RP
1173 {
1174 val.symtab = 0;
1175 val.line = 0;
1176 val.pc = pc;
1177 val.end = 0;
1178 return val;
1179 }
1180
1181 bv = BLOCKVECTOR (s);
1182
1183 /* Look at all the symtabs that share this blockvector.
1184 They all have the same apriori range, that we found was right;
1185 but they have different line tables. */
1186
1187 for (; s && BLOCKVECTOR (s) == bv; s = s->next)
1188 {
1189 /* Find the best line in this symtab. */
1190 l = LINETABLE (s);
4137c5fc
JG
1191 if (!l)
1192 continue;
bd5635a1 1193 len = l->nitems;
01d3fdba 1194 if (len <= 0)
c1878f87 1195 {
01d3fdba
JK
1196 /* I think len can be zero if the symtab lacks line numbers
1197 (e.g. gcc -g1). (Either that or the LINETABLE is NULL;
1198 I'm not sure which, and maybe it depends on the symbol
1199 reader). */
c1878f87
SG
1200 continue;
1201 }
1202
b638ca91
SG
1203 prev = NULL;
1204 item = l->item; /* Get first line info */
c1878f87
SG
1205
1206 /* Is this file's first line closer than the first lines of other files?
1207 If so, record this file, and its first line, as best alternate. */
b638ca91 1208 if (item->pc > pc && (!alt || item->pc < alt->pc))
c1878f87
SG
1209 {
1210 alt = item;
1211 alt_symtab = s;
1212 }
1213
b638ca91 1214 for (i = 0; i < len; i++, item++)
bd5635a1 1215 {
bd5635a1 1216 /* Return the last line that did not start after PC. */
b638ca91 1217 if (item->pc > pc)
bd5635a1 1218 break;
c1878f87
SG
1219
1220 prev = item;
bd5635a1
RP
1221 }
1222
c1878f87
SG
1223 /* At this point, prev points at the line whose start addr is <= pc, and
1224 item points at the next line. If we ran off the end of the linetable
1225 (pc >= start of the last line), then prev == item. If pc < start of
1226 the first line, prev will not be set. */
1227
bd5635a1
RP
1228 /* Is this file's best line closer than the best in the other files?
1229 If so, record this file, and its best line, as best so far. */
c1878f87 1230
b638ca91 1231 if (prev && (!best || prev->pc > best->pc))
bd5635a1 1232 {
c1878f87 1233 best = prev;
bd5635a1 1234 best_symtab = s;
cba0d141
JG
1235 /* If another line is in the linetable, and its PC is closer
1236 than the best_end we currently have, take it as best_end. */
b638ca91
SG
1237 if (i < len && (best_end == 0 || best_end > item->pc))
1238 best_end = item->pc;
bd5635a1
RP
1239 }
1240 }
c1878f87
SG
1241
1242 if (!best_symtab)
bd5635a1 1243 {
c1878f87
SG
1244 if (!alt_symtab)
1245 { /* If we didn't find any line # info, just
1246 return zeros. */
1247 val.symtab = 0;
1248 val.line = 0;
1249 val.pc = pc;
1250 val.end = 0;
1251 }
1252 else
1253 {
1254 val.symtab = alt_symtab;
b638ca91 1255 val.line = alt->line - 1;
c1878f87 1256 val.pc = BLOCK_END (BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK));
b638ca91 1257 val.end = alt->pc;
c1878f87 1258 }
bd5635a1
RP
1259 }
1260 else
1261 {
1262 val.symtab = best_symtab;
b638ca91
SG
1263 val.line = best->line;
1264 val.pc = best->pc;
1265 if (best_end && (!alt || best_end < alt->pc))
cba0d141 1266 val.end = best_end;
a8a69e63 1267 else if (alt)
b638ca91 1268 val.end = alt->pc;
cba0d141
JG
1269 else
1270 val.end = BLOCK_END (BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK));
bd5635a1
RP
1271 }
1272 return val;
1273}
1274\f
018ab14f
PS
1275static int find_line_symtab PARAMS ((struct symtab *, int, struct linetable **,
1276 int *, int *));
1277
1278/* Find line number LINE in any symtab whose name is the same as
1279 SYMTAB.
1280
1281 If found, return 1, set *LINETABLE to the linetable in which it was
1282 found, set *INDEX to the index in the linetable of the best entry
1283 found, and set *EXACT_MATCH nonzero if the value returned is an
1284 exact match.
1285
1286 If not found, return 0. */
1287
1288static int
1289find_line_symtab (symtab, line, linetable, index, exact_match)
1290 struct symtab *symtab;
1291 int line;
1292 struct linetable **linetable;
1293 int *index;
1294 int *exact_match;
1295{
1296 int exact;
1297
1298 /* BEST_INDEX and BEST_LINETABLE identify the smallest linenumber > LINE
1299 so far seen. */
1300
1301 int best_index;
1302 struct linetable *best_linetable;
1303
1304 /* First try looking it up in the given symtab. */
1305 best_linetable = LINETABLE (symtab);
1306 best_index = find_line_common (best_linetable, line, &exact);
1307 if (best_index < 0 || !exact)
1308 {
1309 /* Didn't find an exact match. So we better keep looking for
1310 another symtab with the same name. In the case of xcoff,
1311 multiple csects for one source file (produced by IBM's FORTRAN
1312 compiler) produce multiple symtabs (this is unavoidable
1313 assuming csects can be at arbitrary places in memory and that
1314 the GLOBAL_BLOCK of a symtab has a begin and end address). */
1315
1316 /* BEST is the smallest linenumber > LINE so far seen,
1317 or 0 if none has been seen so far.
1318 BEST_INDEX and BEST_LINETABLE identify the item for it. */
1319 int best;
1320
1321 struct objfile *objfile;
1322 struct symtab *s;
1323
1324 if (best_index >= 0)
1325 best = best_linetable->item[best_index].line;
1326 else
1327 best = 0;
1328
1329 ALL_SYMTABS (objfile, s)
1330 {
1331 struct linetable *l;
1332 int ind;
1333
1334 if (!STREQ (symtab->filename, s->filename))
1335 continue;
1336 l = LINETABLE (s);
1337 ind = find_line_common (l, line, &exact);
1338 if (ind >= 0)
1339 {
1340 if (exact)
1341 {
1342 best_index = ind;
1343 best_linetable = l;
1344 goto done;
1345 }
1346 if (best == 0 || l->item[ind].line < best)
1347 {
1348 best = l->item[ind].line;
1349 best_index = ind;
1350 best_linetable = l;
1351 }
1352 }
1353 }
1354 }
1355 done:
1356 if (best_index < 0)
1357 return 0;
1358
1359 if (index)
1360 *index = best_index;
1361 if (linetable)
1362 *linetable = best_linetable;
1363 if (exact_match)
1364 *exact_match = exact;
1365 return 1;
1366}
1367\f
bd5635a1
RP
1368/* Find the PC value for a given source file and line number.
1369 Returns zero for invalid line number.
1370 The source file is specified with a struct symtab. */
1371
1372CORE_ADDR
1373find_line_pc (symtab, line)
1374 struct symtab *symtab;
1375 int line;
1376{
018ab14f
PS
1377 struct linetable *l;
1378 int ind;
bd5635a1
RP
1379
1380 if (symtab == 0)
1381 return 0;
018ab14f
PS
1382 if (find_line_symtab (symtab, line, &l, &ind, NULL))
1383 return l->item[ind].pc;
1384 else
1385 return 0;
bd5635a1
RP
1386}
1387
1388/* Find the range of pc values in a line.
1389 Store the starting pc of the line into *STARTPTR
1390 and the ending pc (start of next line) into *ENDPTR.
1391 Returns 1 to indicate success.
1392 Returns 0 if could not find the specified line. */
1393
1394int
b86a1b3b
JK
1395find_line_pc_range (sal, startptr, endptr)
1396 struct symtab_and_line sal;
bd5635a1
RP
1397 CORE_ADDR *startptr, *endptr;
1398{
b86a1b3b
JK
1399 CORE_ADDR startaddr;
1400 struct symtab_and_line found_sal;
bd5635a1 1401
b86a1b3b
JK
1402 startaddr = sal.pc;
1403 if (startaddr == 0)
1404 {
1405 startaddr = find_line_pc (sal.symtab, sal.line);
1406 }
1407 if (startaddr == 0)
bd5635a1
RP
1408 return 0;
1409
b86a1b3b
JK
1410 /* This whole function is based on address. For example, if line 10 has
1411 two parts, one from 0x100 to 0x200 and one from 0x300 to 0x400, then
1412 "info line *0x123" should say the line goes from 0x100 to 0x200
1413 and "info line *0x355" should say the line goes from 0x300 to 0x400.
1414 This also insures that we never give a range like "starts at 0x134
1415 and ends at 0x12c". */
1416
1417 found_sal = find_pc_line (startaddr, 0);
1418 if (found_sal.line != sal.line)
bd5635a1 1419 {
b86a1b3b
JK
1420 /* The specified line (sal) has zero bytes. */
1421 *startptr = found_sal.pc;
1422 *endptr = found_sal.pc;
bd5635a1 1423 }
b86a1b3b
JK
1424 else
1425 {
1426 *startptr = found_sal.pc;
1427 *endptr = found_sal.end;
1428 }
1429 return 1;
bd5635a1
RP
1430}
1431
1432/* Given a line table and a line number, return the index into the line
1433 table for the pc of the nearest line whose number is >= the specified one.
b203fc18 1434 Return -1 if none is found. The value is >= 0 if it is an index.
bd5635a1
RP
1435
1436 Set *EXACT_MATCH nonzero if the value returned is an exact match. */
1437
1438static int
1439find_line_common (l, lineno, exact_match)
1440 register struct linetable *l;
1441 register int lineno;
1442 int *exact_match;
1443{
1444 register int i;
1445 register int len;
1446
1447 /* BEST is the smallest linenumber > LINENO so far seen,
1448 or 0 if none has been seen so far.
1449 BEST_INDEX identifies the item for it. */
1450
b203fc18 1451 int best_index = -1;
bd5635a1
RP
1452 int best = 0;
1453
1454 if (lineno <= 0)
b203fc18 1455 return -1;
4137c5fc
JG
1456 if (l == 0)
1457 return -1;
bd5635a1
RP
1458
1459 len = l->nitems;
1460 for (i = 0; i < len; i++)
1461 {
1462 register struct linetable_entry *item = &(l->item[i]);
1463
1464 if (item->line == lineno)
1465 {
d34d6f75 1466 /* Return the first (lowest address) entry which matches. */
bd5635a1
RP
1467 *exact_match = 1;
1468 return i;
1469 }
1470
1471 if (item->line > lineno && (best == 0 || item->line < best))
1472 {
1473 best = item->line;
1474 best_index = i;
1475 }
1476 }
1477
1478 /* If we got here, we didn't get an exact match. */
1479
1480 *exact_match = 0;
1481 return best_index;
1482}
1483
1484int
1485find_pc_line_pc_range (pc, startptr, endptr)
1486 CORE_ADDR pc;
1487 CORE_ADDR *startptr, *endptr;
1488{
1489 struct symtab_and_line sal;
1490 sal = find_pc_line (pc, 0);
1491 *startptr = sal.pc;
1492 *endptr = sal.end;
1493 return sal.symtab != 0;
1494}
1495\f
d96b54ea
JK
1496/* If P is of the form "operator[ \t]+..." where `...' is
1497 some legitimate operator text, return a pointer to the
1498 beginning of the substring of the operator text.
1499 Otherwise, return "". */
1500static char *
1501operator_chars (p, end)
1502 char *p;
1503 char **end;
1504{
1505 *end = "";
1506 if (strncmp (p, "operator", 8))
1507 return *end;
1508 p += 8;
1509
1510 /* Don't get faked out by `operator' being part of a longer
1511 identifier. */
2cd99985 1512 if (isalpha(*p) || *p == '_' || *p == '$' || *p == '\0')
d96b54ea
JK
1513 return *end;
1514
1515 /* Allow some whitespace between `operator' and the operator symbol. */
1516 while (*p == ' ' || *p == '\t')
1517 p++;
1518
2cd99985
PB
1519 /* Recognize 'operator TYPENAME'. */
1520
1521 if (isalpha(*p) || *p == '_' || *p == '$')
1522 {
1523 register char *q = p+1;
1524 while (isalnum(*q) || *q == '_' || *q == '$')
1525 q++;
1526 *end = q;
1527 return p;
1528 }
1529
d96b54ea
JK
1530 switch (*p)
1531 {
1532 case '!':
1533 case '=':
1534 case '*':
1535 case '/':
1536 case '%':
1537 case '^':
1538 if (p[1] == '=')
1539 *end = p+2;
1540 else
1541 *end = p+1;
1542 return p;
1543 case '<':
1544 case '>':
1545 case '+':
1546 case '-':
1547 case '&':
1548 case '|':
1549 if (p[1] == '=' || p[1] == p[0])
1550 *end = p+2;
1551 else
1552 *end = p+1;
1553 return p;
1554 case '~':
1555 case ',':
1556 *end = p+1;
1557 return p;
1558 case '(':
1559 if (p[1] != ')')
1560 error ("`operator ()' must be specified without whitespace in `()'");
1561 *end = p+2;
1562 return p;
1563 case '?':
1564 if (p[1] != ':')
1565 error ("`operator ?:' must be specified without whitespace in `?:'");
1566 *end = p+2;
1567 return p;
1568 case '[':
1569 if (p[1] != ']')
1570 error ("`operator []' must be specified without whitespace in `[]'");
1571 *end = p+2;
1572 return p;
1573 default:
1574 error ("`operator %s' not supported", p);
1575 break;
1576 }
1577 *end = "";
1578 return *end;
1579}
1580
bd5635a1
RP
1581/* Recursive helper function for decode_line_1.
1582 * Look for methods named NAME in type T.
1583 * Return number of matches.
2e4964ad 1584 * Put matches in SYM_ARR (which better be big enough!).
bd5635a1
RP
1585 * These allocations seem to define "big enough":
1586 * sym_arr = (struct symbol **) alloca(TYPE_NFN_FIELDS_TOTAL (t) * sizeof(struct symbol*));
0b28c260 1587 * Note that this function is g++ specific.
bd5635a1
RP
1588 */
1589
2cd99985 1590int
2e4964ad 1591find_methods (t, name, sym_arr)
bd5635a1
RP
1592 struct type *t;
1593 char *name;
bd5635a1
RP
1594 struct symbol **sym_arr;
1595{
1596 int i1 = 0;
1597 int ibase;
1598 struct symbol *sym_class;
1599 char *class_name = type_name_no_tag (t);
d34d6f75
JK
1600 /* Ignore this class if it doesn't have a name. This is ugly, but
1601 unless we figure out how to get the physname without the name of
1602 the class, then the loop can't do any good. */
bd5635a1
RP
1603 if (class_name
1604 && (sym_class = lookup_symbol (class_name,
1605 (struct block *)NULL,
1606 STRUCT_NAMESPACE,
1607 (int *)NULL,
1608 (struct symtab **)NULL)))
1609 {
1610 int method_counter;
d34d6f75 1611 /* FIXME: Shouldn't this just be check_stub_type (t)? */
bd5635a1
RP
1612 t = SYMBOL_TYPE (sym_class);
1613 for (method_counter = TYPE_NFN_FIELDS (t) - 1;
1614 method_counter >= 0;
1615 --method_counter)
1616 {
1617 int field_counter;
1618 struct fn_field *f = TYPE_FN_FIELDLIST1 (t, method_counter);
bd5635a1 1619 char *method_name = TYPE_FN_FIELDLIST_NAME (t, method_counter);
d0cde99c
PS
1620 char dem_opname[64];
1621
1622 if (strncmp(method_name, "__", 2)==0 ||
1623 strncmp(method_name, "op", 2)==0 ||
1624 strncmp(method_name, "type", 4)==0 )
1625 {
1626 if (cplus_demangle_opname(method_name, dem_opname, DMGL_ANSI))
1627 method_name = dem_opname;
1628 else if (cplus_demangle_opname(method_name, dem_opname, 0))
1629 method_name = dem_opname;
1630 }
2e4964ad 1631 if (STREQ (name, method_name))
bd5635a1
RP
1632 /* Find all the fields with that name. */
1633 for (field_counter = TYPE_FN_FIELDLIST_LENGTH (t, method_counter) - 1;
1634 field_counter >= 0;
1635 --field_counter)
1636 {
1637 char *phys_name;
7e258d18 1638 if (TYPE_FN_FIELD_STUB (f, field_counter))
bd5635a1
RP
1639 check_stub_method (t, method_counter, field_counter);
1640 phys_name = TYPE_FN_FIELD_PHYSNAME (f, field_counter);
ca6a826d
PS
1641 /* Destructor is handled by caller, dont add it to the list */
1642 if (DESTRUCTOR_PREFIX_P (phys_name))
1643 continue;
d34d6f75
JK
1644
1645 /* FIXME: Why are we looking this up in the
1646 SYMBOL_BLOCK_VALUE (sym_class)? It is intended as a hook
1647 for nested types? If so, it should probably hook to the
1648 type, not the symbol. mipsread.c is the only symbol
1649 reader which sets the SYMBOL_BLOCK_VALUE for types, and
1650 this is not documented in symtab.h. -26Aug93. */
1651
bd5635a1
RP
1652 sym_arr[i1] = lookup_symbol (phys_name,
1653 SYMBOL_BLOCK_VALUE (sym_class),
1654 VAR_NAMESPACE,
1655 (int *) NULL,
1656 (struct symtab **) NULL);
1657 if (sym_arr[i1]) i1++;
2cd99985
PB
1658 else
1659 {
199b2450
TL
1660 fputs_filtered("(Cannot find method ", gdb_stdout);
1661 fprintf_symbol_filtered (gdb_stdout, phys_name,
d0cde99c
PS
1662 language_cplus,
1663 DMGL_PARAMS | DMGL_ANSI);
199b2450 1664 fputs_filtered(" - possibly inlined.)\n", gdb_stdout);
2cd99985 1665 }
bd5635a1
RP
1666 }
1667 }
1668 }
d34d6f75
JK
1669
1670 /* Only search baseclasses if there is no match yet, since names in
1671 derived classes override those in baseclasses.
1672
1673 FIXME: The above is not true; it is only true of member functions
1674 if they have the same number of arguments (??? - section 13.1 of the
1675 ARM says the function members are not in the same scope but doesn't
1676 really spell out the rules in a way I understand. In any case, if
1677 the number of arguments differ this is a case in which we can overload
1678 rather than hiding without any problem, and gcc 2.4.5 does overload
1679 rather than hiding in this case). */
1680
bd5635a1
RP
1681 if (i1)
1682 return i1;
1683 for (ibase = 0; ibase < TYPE_N_BASECLASSES (t); ibase++)
1684 i1 += find_methods(TYPE_BASECLASS(t, ibase), name,
2e4964ad 1685 sym_arr + i1);
bd5635a1
RP
1686 return i1;
1687}
1688
6f87ec4a
PS
1689/* Helper function for decode_line_1.
1690 Build a canonical line spec in CANONICAL if it is non-NULL and if
1691 the SAL has a symtab.
1692 If SYMNAME is non-NULL the canonical line spec is `filename:symname'.
1693 If SYMNAME is NULL the line number from SAL is used and the canonical
1694 line spec is `filename:linenum'. */
1695
1696static void
1697build_canonical_line_spec (sal, symname, canonical)
1698 struct symtab_and_line *sal;
1699 char *symname;
1700 char ***canonical;
1701{
1702 char **canonical_arr;
1703 char *canonical_name;
1704 char *filename;
1705 struct symtab *s = sal->symtab;
1706
1707 if (s == (struct symtab *)NULL
1708 || s->filename == (char *)NULL
1709 || canonical == (char ***)NULL)
1710 return;
1711
1712 canonical_arr = (char **) xmalloc (sizeof (char *));
1713 *canonical = canonical_arr;
1714
1715 filename = s->filename;
1716 if (symname != NULL)
1717 {
1718 canonical_name = xmalloc (strlen (filename) + strlen (symname) + 2);
1719 sprintf (canonical_name, "%s:%s", filename, symname);
1720 }
1721 else
1722 {
1723 canonical_name = xmalloc (strlen (filename) + 30);
1724 sprintf (canonical_name, "%s:%d", filename, sal->line);
1725 }
1726 canonical_arr[0] = canonical_name;
1727}
1728
bd5635a1
RP
1729/* Parse a string that specifies a line number.
1730 Pass the address of a char * variable; that variable will be
1731 advanced over the characters actually parsed.
1732
1733 The string can be:
1734
1735 LINENUM -- that line number in current file. PC returned is 0.
1736 FILE:LINENUM -- that line in that file. PC returned is 0.
1737 FUNCTION -- line number of openbrace of that function.
1738 PC returned is the start of the function.
1739 VARIABLE -- line number of definition of that variable.
1740 PC returned is 0.
1741 FILE:FUNCTION -- likewise, but prefer functions in that file.
1742 *EXPR -- line in which address EXPR appears.
1743
cba0d141 1744 FUNCTION may be an undebuggable function found in minimal symbol table.
bd5635a1
RP
1745
1746 If the argument FUNFIRSTLINE is nonzero, we want the first line
1747 of real code inside a function when a function is specified.
1748
1749 DEFAULT_SYMTAB specifies the file to use if none is specified.
1750 It defaults to current_source_symtab.
1751 DEFAULT_LINE specifies the line number to use for relative
1752 line numbers (that start with signs). Defaults to current_source_line.
6f87ec4a
PS
1753 If CANONICAL is non-NULL, store an array of strings containing the canonical
1754 line specs there if necessary. Currently overloaded member functions and
1755 line numbers or static functions without a filename yield a canonical
1756 line spec. The array and the line spec strings are allocated on the heap,
1757 it is the callers responsibility to free them.
bd5635a1
RP
1758
1759 Note that it is possible to return zero for the symtab
1760 if no file is validly specified. Callers must check that.
1761 Also, the line number returned may be invalid. */
1762
dbdf5a2a
JK
1763/* We allow single quotes in various places. This is a hideous
1764 kludge, which exists because the completer can't yet deal with the
1765 lack of single quotes. FIXME: write a linespec_completer which we
1766 can use as appropriate instead of make_symbol_completion_list. */
1767
bd5635a1 1768struct symtabs_and_lines
6f87ec4a 1769decode_line_1 (argptr, funfirstline, default_symtab, default_line, canonical)
bd5635a1
RP
1770 char **argptr;
1771 int funfirstline;
1772 struct symtab *default_symtab;
1773 int default_line;
6f87ec4a 1774 char ***canonical;
bd5635a1 1775{
bd5635a1 1776 struct symtabs_and_lines values;
c1878f87
SG
1777#ifdef HPPA_COMPILER_BUG
1778 /* FIXME: The native HP 9000/700 compiler has a bug which appears
1779 when optimizing this file with target i960-vxworks. I haven't
1780 been able to construct a simple test case. The problem is that
1781 in the second call to SKIP_PROLOGUE below, the compiler somehow
1782 does not realize that the statement val = find_pc_line (...) will
1783 change the values of the fields of val. It extracts the elements
1784 into registers at the top of the block, and does not update the
1785 registers after the call to find_pc_line. You can check this by
1786 inserting a printf at the end of find_pc_line to show what values
1787 it is returning for val.pc and val.end and another printf after
1788 the call to see what values the function actually got (remember,
1789 this is compiling with cc -O, with this patch removed). You can
1790 also examine the assembly listing: search for the second call to
1791 skip_prologue; the LDO statement before the next call to
1792 find_pc_line loads the address of the structure which
1793 find_pc_line will return; if there is a LDW just before the LDO,
1794 which fetches an element of the structure, then the compiler
1795 still has the bug.
1796
1797 Setting val to volatile avoids the problem. We must undef
1798 volatile, because the HPPA native compiler does not define
1799 __STDC__, although it does understand volatile, and so volatile
1800 will have been defined away in defs.h. */
1801#undef volatile
1802 volatile struct symtab_and_line val;
1803#define volatile /*nothing*/
1804#else
bd5635a1 1805 struct symtab_and_line val;
c1878f87 1806#endif
bd5635a1 1807 register char *p, *p1;
7e6deb7a 1808 char *q, *q1, *pp;
bd5635a1
RP
1809 register struct symtab *s;
1810
1811 register struct symbol *sym;
1812 /* The symtab that SYM was found in. */
1813 struct symtab *sym_symtab;
1814
1815 register CORE_ADDR pc;
cba0d141 1816 register struct minimal_symbol *msymbol;
bd5635a1
RP
1817 char *copy;
1818 struct symbol *sym_class;
1819 int i1;
7e6deb7a 1820 int is_quoted, has_parens;
bd5635a1
RP
1821 struct symbol **sym_arr;
1822 struct type *t;
f70be3e4
JG
1823 char *saved_arg = *argptr;
1824 extern char *gdb_completer_quote_characters;
bd5635a1
RP
1825
1826 /* Defaults have defaults. */
1827
1828 if (default_symtab == 0)
1829 {
1830 default_symtab = current_source_symtab;
1831 default_line = current_source_line;
1832 }
1833
8050a57b 1834 /* See if arg is *PC */
bd5635a1 1835
8050a57b 1836 if (**argptr == '*')
f70be3e4
JG
1837 {
1838 if (**argptr == '*')
1839 {
1840 (*argptr)++;
1841 }
bd5635a1
RP
1842 pc = parse_and_eval_address_1 (argptr);
1843 values.sals = (struct symtab_and_line *)
1844 xmalloc (sizeof (struct symtab_and_line));
1845 values.nelts = 1;
1846 values.sals[0] = find_pc_line (pc, 0);
1847 values.sals[0].pc = pc;
6f87ec4a 1848 build_canonical_line_spec (values.sals, NULL, canonical);
bd5635a1
RP
1849 return values;
1850 }
1851
1852 /* Maybe arg is FILE : LINENUM or FILE : FUNCTION */
1853
8050a57b 1854 s = NULL;
7e6deb7a
KH
1855 is_quoted = (strchr(gdb_completer_quote_characters, **argptr) != NULL);
1856 has_parens = (( pp = strchr(*argptr, '(')) != NULL &&
1857 (pp = strchr(pp, ')')) != NULL);
bd5635a1
RP
1858
1859 for (p = *argptr; *p; p++)
1860 {
7e6deb7a
KH
1861 if (p[0] == '<')
1862 {
1863 while(!++p && *p != '>');
1864 if (!p)
1865 {
dbdf5a2a
JK
1866 /* FIXME: Why warning() and then return_to_top_level?
1867 What's wrong with error()? */
7e6deb7a
KH
1868 warning("non-matching '<' and '>' in command");
1869 return_to_top_level (RETURN_ERROR);
1870 }
1871 }
bd5635a1
RP
1872 if (p[0] == ':' || p[0] == ' ' || p[0] == '\t')
1873 break;
1874 }
1875 while (p[0] == ' ' || p[0] == '\t') p++;
1876
7e6deb7a 1877 if ((p[0] == ':') && !has_parens)
bd5635a1
RP
1878 {
1879
1880 /* C++ */
7e6deb7a 1881 if (is_quoted) *argptr = *argptr+1;
bd5635a1
RP
1882 if (p[1] ==':')
1883 {
1884 /* Extract the class name. */
1885 p1 = p;
1886 while (p != *argptr && p[-1] == ' ') --p;
1887 copy = (char *) alloca (p - *argptr + 1);
4ed3a9ea 1888 memcpy (copy, *argptr, p - *argptr);
bd5635a1
RP
1889 copy[p - *argptr] = 0;
1890
1891 /* Discard the class name from the arg. */
1892 p = p1 + 2;
1893 while (*p == ' ' || *p == '\t') p++;
1894 *argptr = p;
1895
1896 sym_class = lookup_symbol (copy, 0, STRUCT_NAMESPACE, 0,
1897 (struct symtab **)NULL);
1898
1899 if (sym_class &&
f1d77e90 1900 ( TYPE_CODE (SYMBOL_TYPE (sym_class)) == TYPE_CODE_STRUCT
bd5635a1
RP
1901 || TYPE_CODE (SYMBOL_TYPE (sym_class)) == TYPE_CODE_UNION))
1902 {
1903 /* Arg token is not digits => try it as a function name
d0cde99c
PS
1904 Find the next token(everything up to end or next blank). */
1905 if (strchr(gdb_completer_quote_characters, **argptr) != NULL)
1906 {
1907 p = skip_quoted(*argptr);
1908 *argptr = *argptr + 1;
1909 }
1910 else
1911 {
1912 p = *argptr;
1913 while (*p && *p!=' ' && *p!='\t' && *p!=',' && *p!=':') p++;
1914 }
1915/*
d96b54ea 1916 q = operator_chars (*argptr, &q1);
d96b54ea
JK
1917 if (q1 - q)
1918 {
2cd99985
PB
1919 char *opname;
1920 char *tmp = alloca (q1 - q + 1);
1921 memcpy (tmp, q, q1 - q);
1922 tmp[q1 - q] = '\0';
8050a57b 1923 opname = cplus_mangle_opname (tmp, DMGL_ANSI);
2cd99985 1924 if (opname == NULL)
f70be3e4
JG
1925 {
1926 warning ("no mangling for \"%s\"", tmp);
1927 cplusplus_hint (saved_arg);
f1ed4330 1928 return_to_top_level (RETURN_ERROR);
f70be3e4 1929 }
2cd99985
PB
1930 copy = (char*) alloca (3 + strlen(opname));
1931 sprintf (copy, "__%s", opname);
d96b54ea
JK
1932 p = q1;
1933 }
1934 else
d0cde99c 1935*/
d96b54ea 1936 {
d0cde99c 1937 copy = (char *) alloca (p - *argptr + 1 );
4ed3a9ea 1938 memcpy (copy, *argptr, p - *argptr);
d96b54ea 1939 copy[p - *argptr] = '\0';
d0cde99c
PS
1940 if (strchr(gdb_completer_quote_characters, copy[p-*argptr-1]) != NULL)
1941 copy[p - *argptr -1] = '\0';
d96b54ea 1942 }
bd5635a1
RP
1943
1944 /* no line number may be specified */
1945 while (*p == ' ' || *p == '\t') p++;
1946 *argptr = p;
1947
1948 sym = 0;
1949 i1 = 0; /* counter for the symbol array */
1950 t = SYMBOL_TYPE (sym_class);
1951 sym_arr = (struct symbol **) alloca(TYPE_NFN_FIELDS_TOTAL (t) * sizeof(struct symbol*));
bd5635a1 1952
018ab14f
PS
1953 /* Cfront objects don't have fieldlists. */
1954 if (destructor_name_p (copy, t) && TYPE_FN_FIELDLISTS (t) != NULL)
bd5635a1
RP
1955 {
1956 /* destructors are a special case. */
1957 struct fn_field *f = TYPE_FN_FIELDLIST1 (t, 0);
1958 int len = TYPE_FN_FIELDLIST_LENGTH (t, 0) - 1;
ca6a826d
PS
1959 /* gcc 1.x puts destructor in last field,
1960 gcc 2.x puts destructor in first field. */
bd5635a1 1961 char *phys_name = TYPE_FN_FIELD_PHYSNAME (f, len);
ca6a826d
PS
1962 if (!DESTRUCTOR_PREFIX_P (phys_name))
1963 {
1964 phys_name = TYPE_FN_FIELD_PHYSNAME (f, 0);
1965 if (!DESTRUCTOR_PREFIX_P (phys_name))
1966 phys_name = "";
1967 }
bd5635a1
RP
1968 sym_arr[i1] =
1969 lookup_symbol (phys_name, SYMBOL_BLOCK_VALUE (sym_class),
1970 VAR_NAMESPACE, 0, (struct symtab **)NULL);
1971 if (sym_arr[i1]) i1++;
1972 }
1973 else
2e4964ad 1974 i1 = find_methods (t, copy, sym_arr);
bd5635a1
RP
1975 if (i1 == 1)
1976 {
1977 /* There is exactly one field with that name. */
1978 sym = sym_arr[0];
1979
1980 if (sym && SYMBOL_CLASS (sym) == LOC_BLOCK)
1981 {
1982 /* Arg is the name of a function */
2cacd1e3 1983 pc = BLOCK_START (SYMBOL_BLOCK_VALUE (sym));
bd5635a1 1984 if (funfirstline)
2cacd1e3
PS
1985 {
1986 pc += FUNCTION_START_OFFSET;
1987 SKIP_PROLOGUE (pc);
1988 }
bd5635a1
RP
1989 values.sals = (struct symtab_and_line *)xmalloc (sizeof (struct symtab_and_line));
1990 values.nelts = 1;
1991 values.sals[0] = find_pc_line (pc, 0);
1992 values.sals[0].pc = (values.sals[0].end && values.sals[0].pc != pc) ? values.sals[0].end : pc;
1993 }
1994 else
1995 {
1996 values.nelts = 0;
1997 }
1998 return values;
1999 }
2000 if (i1 > 0)
2001 {
2002 /* There is more than one field with that name
2003 (overloaded). Ask the user which one to use. */
6f87ec4a 2004 return decode_line_2 (sym_arr, i1, funfirstline, canonical);
bd5635a1
RP
2005 }
2006 else
d96b54ea
JK
2007 {
2008 char *tmp;
2009
2010 if (OPNAME_PREFIX_P (copy))
2011 {
2012 tmp = (char *)alloca (strlen (copy+3) + 9);
2013 strcpy (tmp, "operator ");
2014 strcat (tmp, copy+3);
2015 }
2016 else
2017 tmp = copy;
0e2a896c 2018 if (tmp[0] == '~')
f70be3e4 2019 warning ("the class `%s' does not have destructor defined",
2e4964ad 2020 SYMBOL_SOURCE_NAME(sym_class));
0e2a896c 2021 else
f70be3e4 2022 warning ("the class %s does not have any method named %s",
2e4964ad 2023 SYMBOL_SOURCE_NAME(sym_class), tmp);
f70be3e4 2024 cplusplus_hint (saved_arg);
f1ed4330 2025 return_to_top_level (RETURN_ERROR);
d96b54ea 2026 }
bd5635a1
RP
2027 }
2028 else
f70be3e4
JG
2029 {
2030 /* The quotes are important if copy is empty. */
2031 warning ("can't find class, struct, or union named \"%s\"",
2032 copy);
2033 cplusplus_hint (saved_arg);
f1ed4330 2034 return_to_top_level (RETURN_ERROR);
f70be3e4 2035 }
bd5635a1
RP
2036 }
2037 /* end of C++ */
2038
2039
2040 /* Extract the file name. */
2041 p1 = p;
2042 while (p != *argptr && p[-1] == ' ') --p;
58050209 2043 copy = (char *) alloca (p - *argptr + 1);
4ed3a9ea 2044 memcpy (copy, *argptr, p - *argptr);
58050209 2045 copy[p - *argptr] = 0;
bd5635a1
RP
2046
2047 /* Find that file's data. */
2048 s = lookup_symtab (copy);
2049 if (s == 0)
2050 {
cba0d141 2051 if (!have_full_symbols () && !have_partial_symbols ())
bd5635a1
RP
2052 error (no_symtab_msg);
2053 error ("No source file named %s.", copy);
2054 }
2055
2056 /* Discard the file name from the arg. */
2057 p = p1 + 1;
2058 while (*p == ' ' || *p == '\t') p++;
2059 *argptr = p;
2060 }
2061
2062 /* S is specified file's symtab, or 0 if no file specified.
2063 arg no longer contains the file name. */
2064
2065 /* Check whether arg is all digits (and sign) */
2066
d0cde99c
PS
2067 q = *argptr;
2068 if (*q == '-' || *q == '+') q++;
2069 while (*q >= '0' && *q <= '9')
2070 q++;
bd5635a1 2071
d0cde99c 2072 if (q != *argptr && (*q == 0 || *q == ' ' || *q == '\t' || *q == ','))
bd5635a1
RP
2073 {
2074 /* We found a token consisting of all digits -- at least one digit. */
2075 enum sign {none, plus, minus} sign = none;
2076
6f87ec4a
PS
2077 /* We might need a canonical line spec if no file was specified. */
2078 int need_canonical = (s == 0) ? 1 : 0;
2079
bd5635a1
RP
2080 /* This is where we need to make sure that we have good defaults.
2081 We must guarantee that this section of code is never executed
2082 when we are called with just a function name, since
2083 select_source_symtab calls us with such an argument */
2084
2085 if (s == 0 && default_symtab == 0)
2086 {
bd5635a1
RP
2087 select_source_symtab (0);
2088 default_symtab = current_source_symtab;
2089 default_line = current_source_line;
2090 }
2091
2092 if (**argptr == '+')
2093 sign = plus, (*argptr)++;
2094 else if (**argptr == '-')
2095 sign = minus, (*argptr)++;
2096 val.line = atoi (*argptr);
2097 switch (sign)
2098 {
2099 case plus:
d0cde99c 2100 if (q == *argptr)
bd5635a1
RP
2101 val.line = 5;
2102 if (s == 0)
2103 val.line = default_line + val.line;
2104 break;
2105 case minus:
d0cde99c 2106 if (q == *argptr)
bd5635a1
RP
2107 val.line = 15;
2108 if (s == 0)
2109 val.line = default_line - val.line;
2110 else
2111 val.line = 1;
2112 break;
2113 case none:
2114 break; /* No need to adjust val.line. */
2115 }
2116
d0cde99c
PS
2117 while (*q == ' ' || *q == '\t') q++;
2118 *argptr = q;
bd5635a1
RP
2119 if (s == 0)
2120 s = default_symtab;
2121 val.symtab = s;
2122 val.pc = 0;
2123 values.sals = (struct symtab_and_line *)xmalloc (sizeof (struct symtab_and_line));
2124 values.sals[0] = val;
2125 values.nelts = 1;
6f87ec4a
PS
2126 if (need_canonical)
2127 build_canonical_line_spec (values.sals, NULL, canonical);
bd5635a1
RP
2128 return values;
2129 }
2130
2131 /* Arg token is not digits => try it as a variable name
2132 Find the next token (everything up to end or next whitespace). */
2cd99985 2133
7e6deb7a
KH
2134 if (is_quoted)
2135 {
2136 p = skip_quoted (*argptr);
2137 if (p[-1] != '\'')
2138 error ("Unmatched single quote.");
2139 }
2140 else if (has_parens)
2141 {
2142 p = pp+1;
2143 }
d0cde99c
PS
2144 else
2145 {
2146 p = skip_quoted(*argptr);
2147 }
2148
bd5635a1 2149 copy = (char *) alloca (p - *argptr + 1);
4ed3a9ea 2150 memcpy (copy, *argptr, p - *argptr);
f70be3e4 2151 copy[p - *argptr] = '\0';
e3d6ec4a
PS
2152 if (p != *argptr
2153 && (copy[0] == copy [p - *argptr - 1])
f70be3e4
JG
2154 && strchr (gdb_completer_quote_characters, copy[0]) != NULL)
2155 {
f70be3e4
JG
2156 copy [p - *argptr - 1] = '\0';
2157 copy++;
f70be3e4 2158 }
bd5635a1
RP
2159 while (*p == ' ' || *p == '\t') p++;
2160 *argptr = p;
2161
2162 /* Look up that token as a variable.
2163 If file specified, use that file's per-file block to start with. */
2164
2165 sym = lookup_symbol (copy,
3ba6a043 2166 (s ? BLOCKVECTOR_BLOCK (BLOCKVECTOR (s), STATIC_BLOCK)
bd5635a1
RP
2167 : get_selected_block ()),
2168 VAR_NAMESPACE, 0, &sym_symtab);
2169
2170 if (sym != NULL)
2171 {
2172 if (SYMBOL_CLASS (sym) == LOC_BLOCK)
2173 {
2174 /* Arg is the name of a function */
2cacd1e3 2175 pc = BLOCK_START (SYMBOL_BLOCK_VALUE (sym));
bd5635a1 2176 if (funfirstline)
2cacd1e3
PS
2177 {
2178 pc += FUNCTION_START_OFFSET;
2179 SKIP_PROLOGUE (pc);
2180 }
bd5635a1
RP
2181 val = find_pc_line (pc, 0);
2182#ifdef PROLOGUE_FIRSTLINE_OVERLAP
2183 /* Convex: no need to suppress code on first line, if any */
2184 val.pc = pc;
2185#else
f1ed4330
JK
2186 /* Check if SKIP_PROLOGUE left us in mid-line, and the next
2187 line is still part of the same function. */
2188 if (val.pc != pc
2189 && BLOCK_START (SYMBOL_BLOCK_VALUE (sym)) <= val.end
2190 && val.end < BLOCK_END (SYMBOL_BLOCK_VALUE (sym)))
2191 {
2192 /* First pc of next line */
2193 pc = val.end;
2194 /* Recalculate the line number (might not be N+1). */
2195 val = find_pc_line (pc, 0);
2196 }
7b2a87ca 2197 val.pc = pc;
bd5635a1
RP
2198#endif
2199 values.sals = (struct symtab_and_line *)xmalloc (sizeof (struct symtab_and_line));
2200 values.sals[0] = val;
2201 values.nelts = 1;
ad0a2521
JK
2202
2203 /* Don't use the SYMBOL_LINE; if used at all it points to
2204 the line containing the parameters or thereabouts, not
2205 the first line of code. */
2206
2207 /* We might need a canonical line spec if it is a static
2208 function. */
6f87ec4a
PS
2209 if (s == 0)
2210 {
2211 struct blockvector *bv = BLOCKVECTOR (sym_symtab);
2212 struct block *b = BLOCKVECTOR_BLOCK (bv, STATIC_BLOCK);
2213 if (lookup_block_symbol (b, copy, VAR_NAMESPACE) != NULL)
2214 build_canonical_line_spec (values.sals, copy, canonical);
2215 }
bd5635a1
RP
2216 return values;
2217 }
2218 else if (SYMBOL_LINE (sym) != 0)
2219 {
2220 /* We know its line number. */
2221 values.sals = (struct symtab_and_line *)
2222 xmalloc (sizeof (struct symtab_and_line));
2223 values.nelts = 1;
4ed3a9ea 2224 memset (&values.sals[0], 0, sizeof (values.sals[0]));
bd5635a1
RP
2225 values.sals[0].symtab = sym_symtab;
2226 values.sals[0].line = SYMBOL_LINE (sym);
2227 return values;
2228 }
2229 else
2230 /* This can happen if it is compiled with a compiler which doesn't
2231 put out line numbers for variables. */
f1ed4330
JK
2232 /* FIXME: Shouldn't we just set .line and .symtab to zero and
2233 return? For example, "info line foo" could print the address. */
bd5635a1
RP
2234 error ("Line number not known for symbol \"%s\"", copy);
2235 }
2236
cba0d141
JG
2237 msymbol = lookup_minimal_symbol (copy, (struct objfile *) NULL);
2238 if (msymbol != NULL)
bd5635a1
RP
2239 {
2240 val.symtab = 0;
2241 val.line = 0;
2cacd1e3 2242 val.pc = SYMBOL_VALUE_ADDRESS (msymbol);
bd5635a1 2243 if (funfirstline)
2cacd1e3
PS
2244 {
2245 val.pc += FUNCTION_START_OFFSET;
2246 SKIP_PROLOGUE (val.pc);
2247 }
bd5635a1
RP
2248 values.sals = (struct symtab_and_line *)xmalloc (sizeof (struct symtab_and_line));
2249 values.sals[0] = val;
2250 values.nelts = 1;
2251 return values;
2252 }
2253
cba0d141
JG
2254 if (!have_full_symbols () &&
2255 !have_partial_symbols () && !have_minimal_symbols ())
997a978c
JG
2256 error (no_symtab_msg);
2257
f70be3e4 2258 error ("Function \"%s\" not defined.", copy);
bd5635a1
RP
2259 return values; /* for lint */
2260}
2261
2262struct symtabs_and_lines
2263decode_line_spec (string, funfirstline)
2264 char *string;
2265 int funfirstline;
2266{
2267 struct symtabs_and_lines sals;
2268 if (string == 0)
2269 error ("Empty line specification.");
2270 sals = decode_line_1 (&string, funfirstline,
6f87ec4a
PS
2271 current_source_symtab, current_source_line,
2272 (char ***)NULL);
bd5635a1
RP
2273 if (*string)
2274 error ("Junk at end of line specification: %s", string);
2275 return sals;
2276}
2277
6f87ec4a
PS
2278/* Given a list of NELTS symbols in SYM_ARR, return a list of lines to
2279 operate on (ask user if necessary).
2280 If CANONICAL is non-NULL return a corresponding array of mangled names
2281 as canonical line specs there. */
2e4964ad 2282
cba0d141 2283static struct symtabs_and_lines
6f87ec4a 2284decode_line_2 (sym_arr, nelts, funfirstline, canonical)
bd5635a1
RP
2285 struct symbol *sym_arr[];
2286 int nelts;
2287 int funfirstline;
6f87ec4a 2288 char ***canonical;
bd5635a1 2289{
bd5635a1
RP
2290 struct symtabs_and_lines values, return_values;
2291 register CORE_ADDR pc;
cba0d141 2292 char *args, *arg1;
bd5635a1
RP
2293 int i;
2294 char *prompt;
2e4964ad 2295 char *symname;
6f87ec4a
PS
2296 struct cleanup *old_chain;
2297 char **canonical_arr = (char **)NULL;
bd5635a1
RP
2298
2299 values.sals = (struct symtab_and_line *) alloca (nelts * sizeof(struct symtab_and_line));
2300 return_values.sals = (struct symtab_and_line *) xmalloc (nelts * sizeof(struct symtab_and_line));
6f87ec4a
PS
2301 old_chain = make_cleanup (free, return_values.sals);
2302
2303 if (canonical)
2304 {
2305 canonical_arr = (char **) xmalloc (nelts * sizeof (char *));
2306 make_cleanup (free, canonical_arr);
2307 memset (canonical_arr, 0, nelts * sizeof (char *));
2308 *canonical = canonical_arr;
2309 }
bd5635a1
RP
2310
2311 i = 0;
199b2450 2312 printf_unfiltered("[0] cancel\n[1] all\n");
bd5635a1
RP
2313 while (i < nelts)
2314 {
2315 if (sym_arr[i] && SYMBOL_CLASS (sym_arr[i]) == LOC_BLOCK)
2316 {
2317 /* Arg is the name of a function */
2cacd1e3 2318 pc = BLOCK_START (SYMBOL_BLOCK_VALUE (sym_arr[i]));
bd5635a1 2319 if (funfirstline)
2cacd1e3
PS
2320 {
2321 pc += FUNCTION_START_OFFSET;
2322 SKIP_PROLOGUE (pc);
2323 }
bd5635a1
RP
2324 values.sals[i] = find_pc_line (pc, 0);
2325 values.sals[i].pc = (values.sals[i].end && values.sals[i].pc != pc) ?
2326 values.sals[i].end : pc;
199b2450 2327 printf_unfiltered("[%d] %s at %s:%d\n", (i+2), SYMBOL_SOURCE_NAME (sym_arr[i]),
8050a57b 2328 values.sals[i].symtab->filename, values.sals[i].line);
bd5635a1 2329 }
199b2450 2330 else printf_unfiltered ("?HERE\n");
bd5635a1
RP
2331 i++;
2332 }
2333
2334 if ((prompt = getenv ("PS2")) == NULL)
2335 {
2336 prompt = ">";
2337 }
199b2450
TL
2338 printf_unfiltered("%s ",prompt);
2339 gdb_flush(gdb_stdout);
bd5635a1 2340
cba0d141 2341 args = command_line_input ((char *) NULL, 0);
bd5635a1 2342
6f87ec4a 2343 if (args == 0 || *args == 0)
bd5635a1
RP
2344 error_no_arg ("one or more choice numbers");
2345
2346 i = 0;
2347 while (*args)
2348 {
2349 int num;
2350
2351 arg1 = args;
2352 while (*arg1 >= '0' && *arg1 <= '9') arg1++;
2353 if (*arg1 && *arg1 != ' ' && *arg1 != '\t')
2354 error ("Arguments must be choice numbers.");
2355
2356 num = atoi (args);
2357
2358 if (num == 0)
2359 error ("cancelled");
2360 else if (num == 1)
2361 {
6f87ec4a
PS
2362 if (canonical_arr)
2363 {
2364 for (i = 0; i < nelts; i++)
2365 {
2366 if (canonical_arr[i] == NULL)
2367 {
2368 symname = SYMBOL_NAME (sym_arr[i]);
2369 canonical_arr[i] = savestring (symname, strlen (symname));
2370 }
2371 }
2372 }
4ed3a9ea
FF
2373 memcpy (return_values.sals, values.sals,
2374 (nelts * sizeof(struct symtab_and_line)));
bd5635a1 2375 return_values.nelts = nelts;
6f87ec4a 2376 discard_cleanups (old_chain);
bd5635a1
RP
2377 return return_values;
2378 }
2379
2380 if (num > nelts + 2)
2381 {
199b2450 2382 printf_unfiltered ("No choice number %d.\n", num);
bd5635a1
RP
2383 }
2384 else
2385 {
2386 num -= 2;
2387 if (values.sals[num].pc)
2388 {
6f87ec4a
PS
2389 if (canonical_arr)
2390 {
2391 symname = SYMBOL_NAME (sym_arr[num]);
2392 make_cleanup (free, symname);
2393 canonical_arr[i] = savestring (symname, strlen (symname));
2394 }
bd5635a1
RP
2395 return_values.sals[i++] = values.sals[num];
2396 values.sals[num].pc = 0;
2397 }
2398 else
2399 {
199b2450 2400 printf_unfiltered ("duplicate request for %d ignored.\n", num);
bd5635a1
RP
2401 }
2402 }
2403
2404 args = arg1;
2405 while (*args == ' ' || *args == '\t') args++;
2406 }
2407 return_values.nelts = i;
6f87ec4a 2408 discard_cleanups (old_chain);
bd5635a1
RP
2409 return return_values;
2410}
2411
bd5635a1
RP
2412\f
2413/* Slave routine for sources_info. Force line breaks at ,'s.
2414 NAME is the name to print and *FIRST is nonzero if this is the first
2415 name printed. Set *FIRST to zero. */
2416static void
2417output_source_filename (name, first)
2418 char *name;
2419 int *first;
2420{
bd5635a1
RP
2421 /* Table of files printed so far. Since a single source file can
2422 result in several partial symbol tables, we need to avoid printing
2423 it more than once. Note: if some of the psymtabs are read in and
2424 some are not, it gets printed both under "Source files for which
2425 symbols have been read" and "Source files for which symbols will
2426 be read in on demand". I consider this a reasonable way to deal
2427 with the situation. I'm not sure whether this can also happen for
2428 symtabs; it doesn't hurt to check. */
2429 static char **tab = NULL;
2430 /* Allocated size of tab in elements.
2431 Start with one 256-byte block (when using GNU malloc.c).
2432 24 is the malloc overhead when range checking is in effect. */
2433 static int tab_alloc_size = (256 - 24) / sizeof (char *);
2434 /* Current size of tab in elements. */
2435 static int tab_cur_size;
2436
2437 char **p;
2438
2439 if (*first)
2440 {
2441 if (tab == NULL)
2442 tab = (char **) xmalloc (tab_alloc_size * sizeof (*tab));
2443 tab_cur_size = 0;
2444 }
2445
2446 /* Is NAME in tab? */
2447 for (p = tab; p < tab + tab_cur_size; p++)
2e4964ad 2448 if (STREQ (*p, name))
bd5635a1
RP
2449 /* Yes; don't print it again. */
2450 return;
2451 /* No; add it to tab. */
2452 if (tab_cur_size == tab_alloc_size)
2453 {
2454 tab_alloc_size *= 2;
cba0d141 2455 tab = (char **) xrealloc ((char *) tab, tab_alloc_size * sizeof (*tab));
bd5635a1
RP
2456 }
2457 tab[tab_cur_size++] = name;
2458
2459 if (*first)
2460 {
bd5635a1
RP
2461 *first = 0;
2462 }
2463 else
2464 {
f70be3e4 2465 printf_filtered (", ");
bd5635a1
RP
2466 }
2467
f70be3e4 2468 wrap_here ("");
199b2450 2469 fputs_filtered (name, gdb_stdout);
bd5635a1
RP
2470}
2471
2472static void
35a25840
SG
2473sources_info (ignore, from_tty)
2474 char *ignore;
2475 int from_tty;
bd5635a1
RP
2476{
2477 register struct symtab *s;
2478 register struct partial_symtab *ps;
cba0d141 2479 register struct objfile *objfile;
bd5635a1
RP
2480 int first;
2481
cba0d141 2482 if (!have_full_symbols () && !have_partial_symbols ())
bd5635a1 2483 {
3053b9f2 2484 error (no_symtab_msg);
bd5635a1
RP
2485 }
2486
2487 printf_filtered ("Source files for which symbols have been read in:\n\n");
2488
2489 first = 1;
35a25840 2490 ALL_SYMTABS (objfile, s)
cba0d141 2491 {
35a25840 2492 output_source_filename (s -> filename, &first);
cba0d141 2493 }
bd5635a1
RP
2494 printf_filtered ("\n\n");
2495
2496 printf_filtered ("Source files for which symbols will be read in on demand:\n\n");
2497
2498 first = 1;
35a25840 2499 ALL_PSYMTABS (objfile, ps)
cba0d141 2500 {
35a25840 2501 if (!ps->readin)
cba0d141 2502 {
35a25840 2503 output_source_filename (ps -> filename, &first);
cba0d141
JG
2504 }
2505 }
bd5635a1
RP
2506 printf_filtered ("\n");
2507}
2508
2e4964ad 2509/* List all symbols (if REGEXP is NULL) or all symbols matching REGEXP.
3a16d640
JG
2510 If CLASS is zero, list all symbols except functions, type names, and
2511 constants (enums).
bd5635a1
RP
2512 If CLASS is 1, list only functions.
2513 If CLASS is 2, list only type names.
997a978c 2514 If CLASS is 3, list only method names.
bd5635a1
RP
2515
2516 BPT is non-zero if we should set a breakpoint at the functions
2517 we find. */
2518
2519static void
ae6d035d 2520list_symbols (regexp, class, bpt, from_tty)
bd5635a1
RP
2521 char *regexp;
2522 int class;
2523 int bpt;
ae6d035d 2524 int from_tty;
bd5635a1
RP
2525{
2526 register struct symtab *s;
2527 register struct partial_symtab *ps;
2528 register struct blockvector *bv;
2529 struct blockvector *prev_bv = 0;
2530 register struct block *b;
2531 register int i, j;
2532 register struct symbol *sym;
2533 struct partial_symbol *psym;
cba0d141
JG
2534 struct objfile *objfile;
2535 struct minimal_symbol *msymbol;
35a25840 2536 char *val;
bd5635a1
RP
2537 static char *classnames[]
2538 = {"variable", "function", "type", "method"};
2539 int found_in_file = 0;
997a978c 2540 int found_misc = 0;
cba0d141
JG
2541 static enum minimal_symbol_type types[]
2542 = {mst_data, mst_text, mst_abs, mst_unknown};
2543 static enum minimal_symbol_type types2[]
ae6d035d
PS
2544 = {mst_bss, mst_file_text, mst_abs, mst_unknown};
2545 static enum minimal_symbol_type types3[]
2546 = {mst_file_data, mst_solib_trampoline, mst_abs, mst_unknown};
2547 static enum minimal_symbol_type types4[]
2548 = {mst_file_bss, mst_text, mst_abs, mst_unknown};
cba0d141
JG
2549 enum minimal_symbol_type ourtype = types[class];
2550 enum minimal_symbol_type ourtype2 = types2[class];
ae6d035d
PS
2551 enum minimal_symbol_type ourtype3 = types3[class];
2552 enum minimal_symbol_type ourtype4 = types4[class];
bd5635a1 2553
2e4964ad 2554 if (regexp != NULL)
2cd99985
PB
2555 {
2556 /* Make sure spacing is right for C++ operators.
2557 This is just a courtesy to make the matching less sensitive
2558 to how many spaces the user leaves between 'operator'
2559 and <TYPENAME> or <OPERATOR>. */
2560 char *opend;
2561 char *opname = operator_chars (regexp, &opend);
2562 if (*opname)
2563 {
2564 int fix = -1; /* -1 means ok; otherwise number of spaces needed. */
2565 if (isalpha(*opname) || *opname == '_' || *opname == '$')
2566 {
2567 /* There should 1 space between 'operator' and 'TYPENAME'. */
2568 if (opname[-1] != ' ' || opname[-2] == ' ')
2569 fix = 1;
2570 }
2571 else
2572 {
2573 /* There should 0 spaces between 'operator' and 'OPERATOR'. */
2574 if (opname[-1] == ' ')
2575 fix = 0;
2576 }
2577 /* If wrong number of spaces, fix it. */
2578 if (fix >= 0)
2579 {
2580 char *tmp = (char*) alloca(opend-opname+10);
2581 sprintf(tmp, "operator%.*s%s", fix, " ", opname);
2582 regexp = tmp;
2583 }
2584 }
2585
2586 if (0 != (val = re_comp (regexp)))
2587 error ("Invalid regexp (%s): %s", val, regexp);
2588 }
bd5635a1 2589
cba0d141 2590 /* Search through the partial symtabs *first* for all symbols
bd5635a1
RP
2591 matching the regexp. That way we don't have to reproduce all of
2592 the machinery below. */
bd5635a1 2593
35a25840 2594 ALL_PSYMTABS (objfile, ps)
cba0d141 2595 {
35a25840
SG
2596 struct partial_symbol *bound, *gbound, *sbound;
2597 int keep_going = 1;
2598
2599 if (ps->readin) continue;
2600
2601 gbound = objfile->global_psymbols.list + ps->globals_offset + ps->n_global_syms;
2602 sbound = objfile->static_psymbols.list + ps->statics_offset + ps->n_static_syms;
2603 bound = gbound;
2604
2605 /* Go through all of the symbols stored in a partial
2606 symtab in one loop. */
2607 psym = objfile->global_psymbols.list + ps->globals_offset;
2608 while (keep_going)
bd5635a1 2609 {
35a25840 2610 if (psym >= bound)
bd5635a1 2611 {
35a25840 2612 if (bound == gbound && ps->n_static_syms != 0)
bd5635a1 2613 {
35a25840
SG
2614 psym = objfile->static_psymbols.list + ps->statics_offset;
2615 bound = sbound;
bd5635a1
RP
2616 }
2617 else
35a25840
SG
2618 keep_going = 0;
2619 continue;
2620 }
2621 else
2622 {
2623 QUIT;
2624
2625 /* If it would match (logic taken from loop below)
2626 load the file and go on to the next one */
2e4964ad 2627 if ((regexp == NULL || SYMBOL_MATCHES_REGEXP (psym))
35a25840
SG
2628 && ((class == 0 && SYMBOL_CLASS (psym) != LOC_TYPEDEF
2629 && SYMBOL_CLASS (psym) != LOC_BLOCK)
2630 || (class == 1 && SYMBOL_CLASS (psym) == LOC_BLOCK)
2631 || (class == 2 && SYMBOL_CLASS (psym) == LOC_TYPEDEF)
2632 || (class == 3 && SYMBOL_CLASS (psym) == LOC_BLOCK)))
bd5635a1 2633 {
4ed3a9ea 2634 PSYMTAB_TO_SYMTAB(ps);
35a25840 2635 keep_going = 0;
bd5635a1
RP
2636 }
2637 }
35a25840 2638 psym++;
bd5635a1
RP
2639 }
2640 }
2641
cba0d141 2642 /* Here, we search through the minimal symbol tables for functions that
bd5635a1
RP
2643 match, and call find_pc_symtab on them to force their symbols to
2644 be read. The symbol will then be found during the scan of symtabs
997a978c
JG
2645 below. If find_pc_symtab fails, set found_misc so that we will
2646 rescan to print any matching symbols without debug info. */
2647
cba0d141
JG
2648 if (class == 1)
2649 {
35a25840 2650 ALL_MSYMBOLS (objfile, msymbol)
cba0d141 2651 {
2e4964ad 2652 if (MSYMBOL_TYPE (msymbol) == ourtype ||
ae6d035d
PS
2653 MSYMBOL_TYPE (msymbol) == ourtype2 ||
2654 MSYMBOL_TYPE (msymbol) == ourtype3 ||
2655 MSYMBOL_TYPE (msymbol) == ourtype4)
cba0d141 2656 {
2e4964ad 2657 if (regexp == NULL || SYMBOL_MATCHES_REGEXP (msymbol))
cba0d141 2658 {
2e4964ad 2659 if (0 == find_pc_symtab (SYMBOL_VALUE_ADDRESS (msymbol)))
cba0d141 2660 {
35a25840 2661 found_misc = 1;
cba0d141
JG
2662 }
2663 }
2664 }
2665 }
bd5635a1
RP
2666 }
2667
2668 /* Printout here so as to get after the "Reading in symbols"
2669 messages which will be generated above. */
2670 if (!bpt)
2671 printf_filtered (regexp
2672 ? "All %ss matching regular expression \"%s\":\n"
2673 : "All defined %ss:\n",
2674 classnames[class],
2675 regexp);
2676
35a25840 2677 ALL_SYMTABS (objfile, s)
bd5635a1 2678 {
35a25840
SG
2679 found_in_file = 0;
2680 bv = BLOCKVECTOR (s);
2681 /* Often many files share a blockvector.
2682 Scan each blockvector only once so that
2683 we don't get every symbol many times.
2684 It happens that the first symtab in the list
2685 for any given blockvector is the main file. */
2686 if (bv != prev_bv)
2687 for (i = GLOBAL_BLOCK; i <= STATIC_BLOCK; i++)
2688 {
2689 b = BLOCKVECTOR_BLOCK (bv, i);
2690 /* Skip the sort if this block is always sorted. */
2691 if (!BLOCK_SHOULD_SORT (b))
2692 sort_block_syms (b);
2693 for (j = 0; j < BLOCK_NSYMS (b); j++)
bd5635a1 2694 {
35a25840
SG
2695 QUIT;
2696 sym = BLOCK_SYM (b, j);
2e4964ad 2697 if ((regexp == NULL || SYMBOL_MATCHES_REGEXP (sym))
35a25840 2698 && ((class == 0 && SYMBOL_CLASS (sym) != LOC_TYPEDEF
3a16d640
JG
2699 && SYMBOL_CLASS (sym) != LOC_BLOCK
2700 && SYMBOL_CLASS (sym) != LOC_CONST)
35a25840
SG
2701 || (class == 1 && SYMBOL_CLASS (sym) == LOC_BLOCK)
2702 || (class == 2 && SYMBOL_CLASS (sym) == LOC_TYPEDEF)
2703 || (class == 3 && SYMBOL_CLASS (sym) == LOC_BLOCK)))
bd5635a1 2704 {
35a25840 2705 if (bpt)
bd5635a1 2706 {
35a25840
SG
2707 /* Set a breakpoint here, if it's a function */
2708 if (class == 1)
ca6a826d
PS
2709 {
2710 /* There may be more than one function with the
2711 same name but in different files. In order to
2712 set breakpoints on all of them, we must give
2713 both the file name and the function name to
2714 break_command. */
2715 char *string =
2716 (char *) alloca (strlen (s->filename)
2717 + strlen (SYMBOL_NAME(sym))
2718 + 2);
2719 strcpy (string, s->filename);
2720 strcat (string, ":");
2721 strcat (string, SYMBOL_NAME(sym));
ae6d035d 2722 break_command (string, from_tty);
ca6a826d 2723 }
35a25840
SG
2724 }
2725 else if (!found_in_file)
2726 {
199b2450
TL
2727 fputs_filtered ("\nFile ", gdb_stdout);
2728 fputs_filtered (s->filename, gdb_stdout);
2729 fputs_filtered (":\n", gdb_stdout);
35a25840
SG
2730 }
2731 found_in_file = 1;
2732
2733 if (class != 2 && i == STATIC_BLOCK)
2734 printf_filtered ("static ");
2735
2736 /* Typedef that is not a C++ class */
2737 if (class == 2
2738 && SYMBOL_NAMESPACE (sym) != STRUCT_NAMESPACE)
199b2450 2739 c_typedef_print (SYMBOL_TYPE(sym), sym, gdb_stdout);
35a25840
SG
2740 /* variable, func, or typedef-that-is-c++-class */
2741 else if (class < 2 ||
2742 (class == 2 &&
2743 SYMBOL_NAMESPACE(sym) == STRUCT_NAMESPACE))
2744 {
2745 type_print (SYMBOL_TYPE (sym),
2746 (SYMBOL_CLASS (sym) == LOC_TYPEDEF
2e4964ad 2747 ? "" : SYMBOL_SOURCE_NAME (sym)),
199b2450 2748 gdb_stdout, 0);
cba0d141 2749
35a25840
SG
2750 printf_filtered (";\n");
2751 }
2752 else
2753 {
a8a69e63 2754# if 0 /* FIXME, why is this zapped out? */
35a25840 2755 char buf[1024];
a8a69e63 2756 c_type_print_base (TYPE_FN_FIELD_TYPE(t, i),
199b2450 2757 gdb_stdout, 0, 0);
a8a69e63 2758 c_type_print_varspec_prefix (TYPE_FN_FIELD_TYPE(t, i),
199b2450 2759 gdb_stdout, 0);
35a25840 2760 sprintf (buf, " %s::", type_name_no_tag (t));
a8a69e63 2761 cp_type_print_method_args (TYPE_FN_FIELD_ARGS (t, i),
199b2450 2762 buf, name, gdb_stdout);
bd5635a1
RP
2763# endif
2764 }
2765 }
2766 }
35a25840
SG
2767 }
2768 prev_bv = bv;
bd5635a1 2769 }
997a978c 2770
997a978c 2771 /* If there are no eyes, avoid all contact. I mean, if there are
cba0d141
JG
2772 no debug symbols, then print directly from the msymbol_vector. */
2773
2774 if (found_misc || class != 1)
2775 {
2776 found_in_file = 0;
35a25840 2777 ALL_MSYMBOLS (objfile, msymbol)
cba0d141 2778 {
2e4964ad 2779 if (MSYMBOL_TYPE (msymbol) == ourtype ||
ae6d035d
PS
2780 MSYMBOL_TYPE (msymbol) == ourtype2 ||
2781 MSYMBOL_TYPE (msymbol) == ourtype3 ||
2782 MSYMBOL_TYPE (msymbol) == ourtype4)
cba0d141 2783 {
2e4964ad 2784 if (regexp == NULL || SYMBOL_MATCHES_REGEXP (msymbol))
cba0d141 2785 {
35a25840 2786 /* Functions: Look up by address. */
f70be3e4 2787 if (class != 1 ||
2e4964ad 2788 (0 == find_pc_symtab (SYMBOL_VALUE_ADDRESS (msymbol))))
cba0d141 2789 {
35a25840 2790 /* Variables/Absolutes: Look up by name */
2e4964ad
FF
2791 if (lookup_symbol (SYMBOL_NAME (msymbol),
2792 (struct block *) NULL, VAR_NAMESPACE,
2793 0, (struct symtab **) NULL) == NULL)
cba0d141 2794 {
35a25840 2795 if (!found_in_file)
cba0d141 2796 {
35a25840
SG
2797 printf_filtered ("\nNon-debugging symbols:\n");
2798 found_in_file = 1;
cba0d141 2799 }
5573d7d4
JK
2800 printf_filtered (" %08lx %s\n",
2801 (unsigned long) SYMBOL_VALUE_ADDRESS (msymbol),
2e4964ad 2802 SYMBOL_SOURCE_NAME (msymbol));
cba0d141
JG
2803 }
2804 }
2805 }
2806 }
997a978c 2807 }
997a978c 2808 }
bd5635a1
RP
2809}
2810
2811static void
35a25840 2812variables_info (regexp, from_tty)
bd5635a1 2813 char *regexp;
35a25840 2814 int from_tty;
bd5635a1 2815{
ae6d035d 2816 list_symbols (regexp, 0, 0, from_tty);
bd5635a1
RP
2817}
2818
2819static void
35a25840 2820functions_info (regexp, from_tty)
bd5635a1 2821 char *regexp;
35a25840 2822 int from_tty;
bd5635a1 2823{
ae6d035d 2824 list_symbols (regexp, 1, 0, from_tty);
bd5635a1
RP
2825}
2826
bd5635a1 2827static void
35a25840 2828types_info (regexp, from_tty)
bd5635a1 2829 char *regexp;
35a25840 2830 int from_tty;
bd5635a1 2831{
ae6d035d 2832 list_symbols (regexp, 2, 0, from_tty);
bd5635a1 2833}
bd5635a1
RP
2834
2835#if 0
2836/* Tiemann says: "info methods was never implemented." */
2837static void
2838methods_info (regexp)
2839 char *regexp;
2840{
ae6d035d 2841 list_symbols (regexp, 3, 0, from_tty);
bd5635a1
RP
2842}
2843#endif /* 0 */
2844
2845/* Breakpoint all functions matching regular expression. */
2846static void
35a25840 2847rbreak_command (regexp, from_tty)
bd5635a1 2848 char *regexp;
35a25840 2849 int from_tty;
bd5635a1 2850{
ae6d035d 2851 list_symbols (regexp, 1, 1, from_tty);
bd5635a1
RP
2852}
2853\f
bd5635a1
RP
2854
2855/* Return Nonzero if block a is lexically nested within block b,
2856 or if a and b have the same pc range.
2857 Return zero otherwise. */
2858int
2859contained_in (a, b)
2860 struct block *a, *b;
2861{
2862 if (!a || !b)
2863 return 0;
2864 return BLOCK_START (a) >= BLOCK_START (b)
2865 && BLOCK_END (a) <= BLOCK_END (b);
2866}
2867
2868\f
2869/* Helper routine for make_symbol_completion_list. */
2870
f70be3e4
JG
2871static int return_val_size;
2872static int return_val_index;
2873static char **return_val;
2874
f1ed4330 2875#define COMPLETION_LIST_ADD_SYMBOL(symbol, sym_text, len, text, word) \
2e4964ad 2876 do { \
f1ed4330 2877 if (SYMBOL_DEMANGLED_NAME (symbol) != NULL) \
67a64bec
JK
2878 /* Put only the mangled name on the list. */ \
2879 /* Advantage: "b foo<TAB>" completes to "b foo(int, int)" */ \
2880 /* Disadvantage: "b foo__i<TAB>" doesn't complete. */ \
f1ed4330
JK
2881 completion_list_add_name \
2882 (SYMBOL_DEMANGLED_NAME (symbol), (sym_text), (len), (text), (word)); \
67a64bec
JK
2883 else \
2884 completion_list_add_name \
2885 (SYMBOL_NAME (symbol), (sym_text), (len), (text), (word)); \
2e4964ad
FF
2886 } while (0)
2887
2888/* Test to see if the symbol specified by SYMNAME (which is already
f1ed4330 2889 demangled for C++ symbols) matches SYM_TEXT in the first SYM_TEXT_LEN
2e4964ad 2890 characters. If so, add it to the current completion list. */
bd5635a1 2891
cba0d141 2892static void
f1ed4330 2893completion_list_add_name (symname, sym_text, sym_text_len, text, word)
bd5635a1 2894 char *symname;
f1ed4330
JK
2895 char *sym_text;
2896 int sym_text_len;
f70be3e4 2897 char *text;
f1ed4330 2898 char *word;
bd5635a1 2899{
f70be3e4 2900 int newsize;
8005788c
RP
2901 int i;
2902
2903 /* clip symbols that cannot match */
2904
f1ed4330 2905 if (strncmp (symname, sym_text, sym_text_len) != 0)
2e4964ad 2906 {
8005788c
RP
2907 return;
2908 }
f70be3e4 2909
2e4964ad
FF
2910 /* Clip any symbol names that we've already considered. (This is a
2911 time optimization) */
8005788c 2912
2e4964ad
FF
2913 for (i = 0; i < return_val_index; ++i)
2914 {
2915 if (STREQ (symname, return_val[i]))
2916 {
2917 return;
2918 }
f70be3e4 2919 }
2e4964ad
FF
2920
2921 /* We have a match for a completion, so add SYMNAME to the current list
2922 of matches. Note that the name is moved to freshly malloc'd space. */
f70be3e4 2923
f1ed4330
JK
2924 {
2925 char *new;
2926 if (word == sym_text)
2927 {
2928 new = xmalloc (strlen (symname) + 5);
2929 strcpy (new, symname);
2930 }
2931 else if (word > sym_text)
2932 {
2933 /* Return some portion of symname. */
2934 new = xmalloc (strlen (symname) + 5);
2935 strcpy (new, symname + (word - sym_text));
2936 }
2937 else
2938 {
2939 /* Return some of SYM_TEXT plus symname. */
2940 new = xmalloc (strlen (symname) + (sym_text - word) + 5);
2941 strncpy (new, word, sym_text - word);
2942 new[sym_text - word] = '\0';
2943 strcat (new, symname);
2944 }
2945
2946 if (return_val_index + 3 > return_val_size)
2947 {
2948 newsize = (return_val_size *= 2) * sizeof (char *);
2949 return_val = (char **) xrealloc ((char *) return_val, newsize);
2950 }
2951 return_val[return_val_index++] = new;
2952 return_val[return_val_index] = NULL;
2953 }
bd5635a1
RP
2954}
2955
2956/* Return a NULL terminated array of all symbols (regardless of class) which
2957 begin by matching TEXT. If the answer is no symbols, then the return value
2958 is an array which contains only a NULL pointer.
2959
f70be3e4
JG
2960 Problem: All of the symbols have to be copied because readline frees them.
2961 I'm not going to worry about this; hopefully there won't be that many. */
bd5635a1
RP
2962
2963char **
f1ed4330
JK
2964make_symbol_completion_list (text, word)
2965 char *text;
2966 char *word;
bd5635a1 2967{
f70be3e4 2968 register struct symbol *sym;
bd5635a1
RP
2969 register struct symtab *s;
2970 register struct partial_symtab *ps;
cba0d141
JG
2971 register struct minimal_symbol *msymbol;
2972 register struct objfile *objfile;
bd5635a1 2973 register struct block *b, *surrounding_static_block = 0;
bd5635a1
RP
2974 register int i, j;
2975 struct partial_symbol *psym;
f1ed4330
JK
2976 /* The symbol we are completing on. Points in same buffer as text. */
2977 char *sym_text;
2978 /* Length of sym_text. */
2979 int sym_text_len;
2980
2981 /* Now look for the symbol we are supposed to complete on.
2982 FIXME: This should be language-specific. */
2983 {
2984 char *p;
2985 char quote_found;
01d3fdba 2986 char *quote_pos = NULL;
f1ed4330
JK
2987
2988 /* First see if this is a quoted string. */
2989 quote_found = '\0';
2990 for (p = text; *p != '\0'; ++p)
2991 {
2992 if (quote_found != '\0')
2993 {
2994 if (*p == quote_found)
2995 /* Found close quote. */
2996 quote_found = '\0';
2997 else if (*p == '\\' && p[1] == quote_found)
2998 /* A backslash followed by the quote character
2999 doesn't end the string. */
3000 ++p;
3001 }
3002 else if (*p == '\'' || *p == '"')
3003 {
3004 quote_found = *p;
3005 quote_pos = p;
3006 }
3007 }
3008 if (quote_found == '\'')
3009 /* A string within single quotes can be a symbol, so complete on it. */
3010 sym_text = quote_pos + 1;
3011 else if (quote_found == '"')
3012 /* A double-quoted string is never a symbol, nor does it make sense
3013 to complete it any other way. */
3014 return NULL;
3015 else
3016 {
3017 /* It is not a quoted string. Break it based on the characters
3018 which are in symbols. */
3019 while (p > text)
3020 {
3021 if (isalnum (p[-1]) || p[-1] == '_' || p[-1] == '\0')
3022 --p;
3023 else
3024 break;
3025 }
3026 sym_text = p;
3027 }
3028 }
3029
3030 sym_text_len = strlen (sym_text);
bd5635a1 3031
bd5635a1
RP
3032 return_val_size = 100;
3033 return_val_index = 0;
f70be3e4
JG
3034 return_val = (char **) xmalloc ((return_val_size + 1) * sizeof (char *));
3035 return_val[0] = NULL;
bd5635a1
RP
3036
3037 /* Look through the partial symtabs for all symbols which begin
f1ed4330 3038 by matching SYM_TEXT. Add each one that you find to the list. */
bd5635a1 3039
35a25840 3040 ALL_PSYMTABS (objfile, ps)
bd5635a1 3041 {
35a25840
SG
3042 /* If the psymtab's been read in we'll get it when we search
3043 through the blockvector. */
3044 if (ps->readin) continue;
3045
3046 for (psym = objfile->global_psymbols.list + ps->globals_offset;
3047 psym < (objfile->global_psymbols.list + ps->globals_offset
3048 + ps->n_global_syms);
3049 psym++)
bd5635a1 3050 {
f70be3e4
JG
3051 /* If interrupted, then quit. */
3052 QUIT;
f1ed4330 3053 COMPLETION_LIST_ADD_SYMBOL (psym, sym_text, sym_text_len, text, word);
35a25840
SG
3054 }
3055
3056 for (psym = objfile->static_psymbols.list + ps->statics_offset;
3057 psym < (objfile->static_psymbols.list + ps->statics_offset
3058 + ps->n_static_syms);
3059 psym++)
3060 {
3061 QUIT;
f1ed4330 3062 COMPLETION_LIST_ADD_SYMBOL (psym, sym_text, sym_text_len, text, word);
bd5635a1
RP
3063 }
3064 }
3065
cba0d141 3066 /* At this point scan through the misc symbol vectors and add each
bd5635a1
RP
3067 symbol you find to the list. Eventually we want to ignore
3068 anything that isn't a text symbol (everything else will be
3069 handled by the psymtab code above). */
3070
35a25840 3071 ALL_MSYMBOLS (objfile, msymbol)
cba0d141 3072 {
f70be3e4 3073 QUIT;
f1ed4330 3074 COMPLETION_LIST_ADD_SYMBOL (msymbol, sym_text, sym_text_len, text, word);
cba0d141 3075 }
bd5635a1
RP
3076
3077 /* Search upwards from currently selected frame (so that we can
3078 complete on local vars. */
f70be3e4
JG
3079
3080 for (b = get_selected_block (); b != NULL; b = BLOCK_SUPERBLOCK (b))
3081 {
3082 if (!BLOCK_SUPERBLOCK (b))
3083 {
3084 surrounding_static_block = b; /* For elmin of dups */
3085 }
3086
3087 /* Also catch fields of types defined in this places which match our
3088 text string. Only complete on types visible from current context. */
3089
3090 for (i = 0; i < BLOCK_NSYMS (b); i++)
3091 {
3092 sym = BLOCK_SYM (b, i);
f1ed4330 3093 COMPLETION_LIST_ADD_SYMBOL (sym, sym_text, sym_text_len, text, word);
f70be3e4
JG
3094 if (SYMBOL_CLASS (sym) == LOC_TYPEDEF)
3095 {
3096 struct type *t = SYMBOL_TYPE (sym);
3097 enum type_code c = TYPE_CODE (t);
3098
3099 if (c == TYPE_CODE_UNION || c == TYPE_CODE_STRUCT)
3100 {
3101 for (j = TYPE_N_BASECLASSES (t); j < TYPE_NFIELDS (t); j++)
3102 {
3103 if (TYPE_FIELD_NAME (t, j))
3104 {
2e4964ad 3105 completion_list_add_name (TYPE_FIELD_NAME (t, j),
f1ed4330 3106 sym_text, sym_text_len, text, word);
f70be3e4
JG
3107 }
3108 }
3109 }
3110 }
3111 }
3112 }
3113
3114 /* Go through the symtabs and check the externs and statics for
3115 symbols which match. */
3116
3117 ALL_SYMTABS (objfile, s)
3118 {
3119 QUIT;
3120 b = BLOCKVECTOR_BLOCK (BLOCKVECTOR (s), GLOBAL_BLOCK);
3121 for (i = 0; i < BLOCK_NSYMS (b); i++)
3122 {
3123 sym = BLOCK_SYM (b, i);
f1ed4330 3124 COMPLETION_LIST_ADD_SYMBOL (sym, sym_text, sym_text_len, text, word);
f70be3e4
JG
3125 }
3126 }
3127
3128 ALL_SYMTABS (objfile, s)
3129 {
3130 QUIT;
3131 b = BLOCKVECTOR_BLOCK (BLOCKVECTOR (s), STATIC_BLOCK);
3132 /* Don't do this block twice. */
3133 if (b == surrounding_static_block) continue;
3134 for (i = 0; i < BLOCK_NSYMS (b); i++)
3135 {
3136 sym = BLOCK_SYM (b, i);
f1ed4330 3137 COMPLETION_LIST_ADD_SYMBOL (sym, sym_text, sym_text_len, text, word);
f70be3e4
JG
3138 }
3139 }
3140
3141 return (return_val);
3142}
3143
bd5635a1 3144\f
997a978c
JG
3145#if 0
3146/* Add the type of the symbol sym to the type of the current
3147 function whose block we are in (assumed). The type of
3148 this current function is contained in *TYPE.
3149
3150 This basically works as follows: When we find a function
3151 symbol (N_FUNC with a 'f' or 'F' in the symbol name), we record
3152 a pointer to its type in the global in_function_type. Every
3153 time we come across a parameter symbol ('p' in its name), then
3154 this procedure adds the name and type of that parameter
3155 to the function type pointed to by *TYPE. (Which should correspond
3156 to in_function_type if it was called correctly).
3157
3158 Note that since we are modifying a type, the result of
51b57ded 3159 lookup_function_type() should be memcpy()ed before calling
997a978c
JG
3160 this. When not in strict typing mode, the expression
3161 evaluator can choose to ignore this.
3162
3163 Assumption: All of a function's parameter symbols will
3164 appear before another function symbol is found. The parameters
3165 appear in the same order in the argument list as they do in the
3166 symbol table. */
3167
3168void
3169add_param_to_type (type,sym)
3170 struct type **type;
3171 struct symbol *sym;
3172{
3173 int num = ++(TYPE_NFIELDS(*type));
3174
3175 if(TYPE_NFIELDS(*type)-1)
cba0d141
JG
3176 TYPE_FIELDS(*type) = (struct field *)
3177 (*current_objfile->xrealloc) ((char *)(TYPE_FIELDS(*type)),
3178 num*sizeof(struct field));
997a978c 3179 else
cba0d141
JG
3180 TYPE_FIELDS(*type) = (struct field *)
3181 (*current_objfile->xmalloc) (num*sizeof(struct field));
997a978c
JG
3182
3183 TYPE_FIELD_BITPOS(*type,num-1) = num-1;
3184 TYPE_FIELD_BITSIZE(*type,num-1) = 0;
3185 TYPE_FIELD_TYPE(*type,num-1) = SYMBOL_TYPE(sym);
3186 TYPE_FIELD_NAME(*type,num-1) = SYMBOL_NAME(sym);
3187}
3188#endif
3189\f
bd5635a1
RP
3190void
3191_initialize_symtab ()
3192{
3193 add_info ("variables", variables_info,
3194 "All global and static variable names, or those matching REGEXP.");
3195 add_info ("functions", functions_info,
3196 "All function names, or those matching REGEXP.");
3ba6a043
JG
3197
3198 /* FIXME: This command has at least the following problems:
bd5635a1
RP
3199 1. It prints builtin types (in a very strange and confusing fashion).
3200 2. It doesn't print right, e.g. with
3201 typedef struct foo *FOO
3202 type_print prints "FOO" when we want to make it (in this situation)
3203 print "struct foo *".
3204 I also think "ptype" or "whatis" is more likely to be useful (but if
3205 there is much disagreement "info types" can be fixed). */
3206 add_info ("types", types_info,
a0a6174a 3207 "All type names, or those matching REGEXP.");
3ba6a043 3208
bd5635a1
RP
3209#if 0
3210 add_info ("methods", methods_info,
3211 "All method names, or those matching REGEXP::REGEXP.\n\
50e0dc41 3212If the class qualifier is omitted, it is assumed to be the current scope.\n\
cba0d141 3213If the first REGEXP is omitted, then all methods matching the second REGEXP\n\
bd5635a1
RP
3214are listed.");
3215#endif
3216 add_info ("sources", sources_info,
3217 "Source files in the program.");
3218
3219 add_com ("rbreak", no_class, rbreak_command,
3220 "Set a breakpoint for all functions matching REGEXP.");
3221
997a978c 3222 /* Initialize the one built-in type that isn't language dependent... */
cba0d141
JG
3223 builtin_type_error = init_type (TYPE_CODE_ERROR, 0, 0,
3224 "<unknown type>", (struct objfile *) NULL);
bd5635a1 3225}
This page took 0.330118 seconds and 4 git commands to generate.