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bd5635a1 | 1 | /* Symbol table lookup for the GNU debugger, GDB. |
35a25840 SG |
2 | Copyright 1986, 1987, 1988, 1989, 1990, 1991, 1992 |
3 | Free Software Foundation, Inc. | |
bd5635a1 RP |
4 | |
5 | This file is part of GDB. | |
6 | ||
997a978c | 7 | This program is free software; you can redistribute it and/or modify |
bd5635a1 | 8 | it under the terms of the GNU General Public License as published by |
997a978c JG |
9 | the Free Software Foundation; either version 2 of the License, or |
10 | (at your option) any later version. | |
bd5635a1 | 11 | |
997a978c | 12 | This program is distributed in the hope that it will be useful, |
bd5635a1 RP |
13 | but WITHOUT ANY WARRANTY; without even the implied warranty of |
14 | MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the | |
15 | GNU General Public License for more details. | |
16 | ||
17 | You should have received a copy of the GNU General Public License | |
997a978c JG |
18 | along with this program; if not, write to the Free Software |
19 | Foundation, 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 | 48 | extern int |
2e4964ad | 49 | find_methods PARAMS ((struct type *, char *, struct symbol **)); |
cba0d141 JG |
50 | |
51 | static void | |
f1ed4330 | 52 | completion_list_add_name PARAMS ((char *, char *, int, char *, char *)); |
cba0d141 | 53 | |
6f87ec4a PS |
54 | static void |
55 | build_canonical_line_spec PARAMS ((struct symtab_and_line *, char *, char ***)); | |
56 | ||
cba0d141 | 57 | static struct symtabs_and_lines |
6f87ec4a | 58 | decode_line_2 PARAMS ((struct symbol *[], int, int, char ***)); |
cba0d141 JG |
59 | |
60 | static void | |
35a25840 | 61 | rbreak_command PARAMS ((char *, int)); |
cba0d141 JG |
62 | |
63 | static void | |
35a25840 | 64 | types_info PARAMS ((char *, int)); |
cba0d141 JG |
65 | |
66 | static void | |
35a25840 | 67 | functions_info PARAMS ((char *, int)); |
cba0d141 JG |
68 | |
69 | static void | |
35a25840 | 70 | variables_info PARAMS ((char *, int)); |
cba0d141 JG |
71 | |
72 | static void | |
35a25840 | 73 | sources_info PARAMS ((char *, int)); |
cba0d141 JG |
74 | |
75 | static void | |
35a25840 | 76 | list_symbols PARAMS ((char *, int, int)); |
cba0d141 JG |
77 | |
78 | static void | |
79 | output_source_filename PARAMS ((char *, int *)); | |
80 | ||
81 | static char * | |
82 | operator_chars PARAMS ((char *, char **)); | |
83 | ||
018ab14f | 84 | static int find_line_common PARAMS ((struct linetable *, int, int *)); |
cba0d141 JG |
85 | |
86 | static struct partial_symbol * | |
87 | lookup_partial_symbol PARAMS ((struct partial_symtab *, const char *, | |
88 | int, enum namespace)); | |
89 | ||
cba0d141 JG |
90 | static struct symtab * |
91 | lookup_symtab_1 PARAMS ((char *)); | |
92 | ||
93 | /* */ | |
bd5635a1 | 94 | |
997a978c | 95 | /* The single non-language-specific builtin type */ |
bd5635a1 RP |
96 | struct 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 | |
102 | const struct block *block_found; | |
bd5635a1 RP |
103 | |
104 | char 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 | ||
110 | void | |
111 | cplusplus_hint (name) | |
112 | char *name; | |
113 | { | |
114 | printf ("Hint: try '%s<TAB> or '%s<ESC-?>\n", name, name); | |
115 | printf ("(Note leading single quote.)\n"); | |
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 | ||
122 | static struct symtab * | |
123 | lookup_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 | ||
159 | ALL_PSYMTABS (objfile, ps) | |
2e4964ad | 160 | if (STREQ (name, ps -> filename)) |
784fd92b SG |
161 | goto got_psymtab; |
162 | ||
163 | if (!slash) | |
164 | ALL_PSYMTABS (objfile, ps) | |
165 | { | |
166 | char *p = ps -> filename; | |
167 | char *tail = strrchr (p, '/'); | |
168 | ||
169 | if (tail) | |
170 | p = tail + 1; | |
171 | ||
2e4964ad | 172 | if (STREQ (p, name)) |
784fd92b SG |
173 | goto got_psymtab; |
174 | } | |
bd5635a1 | 175 | |
cba0d141 | 176 | return (NULL); |
784fd92b SG |
177 | |
178 | got_psymtab: | |
179 | ||
180 | if (ps -> readin) | |
35fcebce PB |
181 | error ("Internal: readin %s pst for `%s' found when no symtab found.", |
182 | ps -> filename, name); | |
784fd92b SG |
183 | |
184 | s = PSYMTAB_TO_SYMTAB (ps); | |
185 | ||
186 | if (s) | |
187 | return s; | |
188 | ||
189 | /* At this point, we have located the psymtab for this file, but | |
190 | the conversion to a symtab has failed. This usually happens | |
191 | when we are looking up an include file. In this case, | |
192 | PSYMTAB_TO_SYMTAB doesn't return a symtab, even though one has | |
193 | been created. So, we need to run through the symtabs again in | |
194 | order to find the file. | |
195 | XXX - This is a crock, and should be fixed inside of the the | |
196 | symbol parsing routines. */ | |
197 | goto got_symtab; | |
bd5635a1 RP |
198 | } |
199 | ||
200 | /* Lookup the symbol table of a source file named NAME. Try a couple | |
201 | of variations if the first lookup doesn't work. */ | |
202 | ||
203 | struct symtab * | |
204 | lookup_symtab (name) | |
205 | char *name; | |
206 | { | |
207 | register struct symtab *s; | |
208 | register char *copy; | |
209 | ||
210 | s = lookup_symtab_1 (name); | |
211 | if (s) return s; | |
212 | ||
213 | /* If name not found as specified, see if adding ".c" helps. */ | |
214 | ||
215 | copy = (char *) alloca (strlen (name) + 3); | |
216 | strcpy (copy, name); | |
217 | strcat (copy, ".c"); | |
218 | s = lookup_symtab_1 (copy); | |
219 | if (s) return s; | |
220 | ||
221 | /* We didn't find anything; die. */ | |
222 | return 0; | |
223 | } | |
224 | ||
225 | /* Lookup the partial symbol table of a source file named NAME. This | |
226 | only returns true on an exact match (ie. this semantics are | |
227 | different from lookup_symtab. */ | |
228 | ||
229 | struct partial_symtab * | |
230 | lookup_partial_symtab (name) | |
231 | char *name; | |
232 | { | |
cba0d141 JG |
233 | register struct partial_symtab *pst; |
234 | register struct objfile *objfile; | |
bd5635a1 | 235 | |
35a25840 | 236 | ALL_PSYMTABS (objfile, pst) |
bd5635a1 | 237 | { |
2e4964ad | 238 | if (STREQ (name, pst -> filename)) |
bd5635a1 | 239 | { |
35a25840 | 240 | return (pst); |
bd5635a1 | 241 | } |
35a25840 | 242 | } |
cba0d141 | 243 | return (NULL); |
bd5635a1 | 244 | } |
cba0d141 | 245 | \f |
0b28c260 JK |
246 | /* Demangle a GDB method stub type. |
247 | Note that this function is g++ specific. */ | |
248 | ||
bd5635a1 | 249 | char * |
bcccec8c | 250 | gdb_mangle_name (type, i, j) |
bd5635a1 | 251 | struct type *type; |
bcccec8c | 252 | int i, j; |
bd5635a1 | 253 | { |
bcccec8c PB |
254 | int mangled_name_len; |
255 | char *mangled_name; | |
256 | struct fn_field *f = TYPE_FN_FIELDLIST1 (type, i); | |
257 | struct fn_field *method = &f[j]; | |
258 | char *field_name = TYPE_FN_FIELDLIST_NAME (type, i); | |
8050a57b | 259 | char *physname = TYPE_FN_FIELD_PHYSNAME (f, j); |
35fcebce | 260 | char *newname = type_name_no_tag (type); |
2d575e6f KH |
261 | int is_constructor = (physname[0]=='_' && physname[1]=='_'); |
262 | int is_destructor = DESTRUCTOR_PREFIX_P (physname); | |
bcccec8c | 263 | /* Need a new type prefix. */ |
bcccec8c PB |
264 | char *const_prefix = method->is_const ? "C" : ""; |
265 | char *volatile_prefix = method->is_volatile ? "V" : ""; | |
bcccec8c | 266 | char buf[20]; |
2d575e6f | 267 | #ifdef GCC_MANGLE_BUG |
018ab14f | 268 | int len = newname == NULL ? 0 : strlen (newname); |
35fcebce PB |
269 | |
270 | if (is_destructor) | |
271 | { | |
272 | mangled_name = (char*) xmalloc(strlen(physname)+1); | |
273 | strcpy(mangled_name, physname); | |
274 | return mangled_name; | |
275 | } | |
276 | ||
277 | sprintf (buf, "__%s%s%d", const_prefix, volatile_prefix, len); | |
278 | mangled_name_len = ((is_constructor ? 0 : strlen (field_name)) | |
279 | + strlen (buf) + len | |
280 | + strlen (physname) | |
281 | + 1); | |
282 | ||
283 | /* Only needed for GNU-mangled names. ANSI-mangled names | |
284 | work with the normal mechanisms. */ | |
285 | if (OPNAME_PREFIX_P (field_name)) | |
286 | { | |
287 | char *opname = cplus_mangle_opname (field_name + 3, 0); | |
288 | if (opname == NULL) | |
289 | error ("No mangling for \"%s\"", field_name); | |
290 | mangled_name_len += strlen (opname); | |
291 | mangled_name = (char *)xmalloc (mangled_name_len); | |
292 | ||
293 | strncpy (mangled_name, field_name, 3); | |
294 | mangled_name[3] = '\0'; | |
295 | strcat (mangled_name, opname); | |
296 | } | |
297 | else | |
298 | { | |
299 | mangled_name = (char *)xmalloc (mangled_name_len); | |
300 | if (is_constructor) | |
301 | mangled_name[0] = '\0'; | |
302 | else | |
303 | strcpy (mangled_name, field_name); | |
304 | } | |
305 | strcat (mangled_name, buf); | |
018ab14f PS |
306 | /* If the class doesn't have a name, i.e. newname NULL, then we just |
307 | mangle it using 0 for the length of the class. Thus it gets mangled | |
2d575e6f | 308 | as something starting with `::' rather than `classname::'. */ |
018ab14f PS |
309 | if (newname != NULL) |
310 | strcat (mangled_name, newname); | |
2d575e6f | 311 | |
35fcebce PB |
312 | #else |
313 | char *opname; | |
bcccec8c | 314 | |
8050a57b FF |
315 | if (is_constructor) |
316 | { | |
317 | buf[0] = '\0'; | |
318 | } | |
319 | else | |
320 | { | |
321 | sprintf (buf, "__%s%s", const_prefix, volatile_prefix); | |
322 | } | |
323 | ||
7c4f3f4a | 324 | mangled_name_len = ((is_constructor ? 0 : strlen (field_name)) |
8050a57b | 325 | + strlen (buf) + strlen (physname) + 1); |
bcccec8c | 326 | |
7d9884b9 JG |
327 | /* Only needed for GNU-mangled names. ANSI-mangled names |
328 | work with the normal mechanisms. */ | |
bcccec8c PB |
329 | if (OPNAME_PREFIX_P (field_name)) |
330 | { | |
8050a57b | 331 | opname = cplus_mangle_opname (field_name + 3, 0); |
bcccec8c | 332 | if (opname == NULL) |
8050a57b FF |
333 | { |
334 | error ("No mangling for \"%s\"", field_name); | |
335 | } | |
bcccec8c | 336 | mangled_name_len += strlen (opname); |
8050a57b | 337 | mangled_name = (char *) xmalloc (mangled_name_len); |
bcccec8c PB |
338 | |
339 | strncpy (mangled_name, field_name, 3); | |
8050a57b | 340 | strcpy (mangled_name + 3, opname); |
bcccec8c PB |
341 | } |
342 | else | |
bd5635a1 | 343 | { |
8050a57b | 344 | mangled_name = (char *) xmalloc (mangled_name_len); |
7c4f3f4a | 345 | if (is_constructor) |
8050a57b FF |
346 | { |
347 | mangled_name[0] = '\0'; | |
348 | } | |
7c4f3f4a | 349 | else |
8050a57b FF |
350 | { |
351 | strcpy (mangled_name, field_name); | |
352 | } | |
bd5635a1 | 353 | } |
bcccec8c | 354 | strcat (mangled_name, buf); |
bcccec8c | 355 | |
35fcebce PB |
356 | #endif |
357 | strcat (mangled_name, physname); | |
8050a57b | 358 | return (mangled_name); |
bd5635a1 RP |
359 | } |
360 | ||
cba0d141 JG |
361 | \f |
362 | /* Find which partial symtab on contains PC. Return 0 if none. */ | |
f1d77e90 | 363 | |
cba0d141 JG |
364 | struct partial_symtab * |
365 | find_pc_psymtab (pc) | |
366 | register CORE_ADDR pc; | |
d96b54ea | 367 | { |
cba0d141 JG |
368 | register struct partial_symtab *pst; |
369 | register struct objfile *objfile; | |
d96b54ea | 370 | |
35a25840 | 371 | ALL_PSYMTABS (objfile, pst) |
bd5635a1 | 372 | { |
c1878f87 SG |
373 | if (pc >= pst->textlow && pc < pst->texthigh) |
374 | return (pst); | |
bd5635a1 | 375 | } |
cba0d141 | 376 | return (NULL); |
bd5635a1 RP |
377 | } |
378 | ||
379 | /* Find which partial symbol within a psymtab contains PC. Return 0 | |
380 | if none. Check all psymtabs if PSYMTAB is 0. */ | |
381 | struct partial_symbol * | |
382 | find_pc_psymbol (psymtab, pc) | |
383 | struct partial_symtab *psymtab; | |
384 | CORE_ADDR pc; | |
385 | { | |
01d3fdba | 386 | struct partial_symbol *best = NULL, *p; |
bd5635a1 RP |
387 | CORE_ADDR best_pc; |
388 | ||
389 | if (!psymtab) | |
390 | psymtab = find_pc_psymtab (pc); | |
391 | if (!psymtab) | |
392 | return 0; | |
393 | ||
394 | best_pc = psymtab->textlow - 1; | |
395 | ||
cba0d141 JG |
396 | for (p = psymtab->objfile->static_psymbols.list + psymtab->statics_offset; |
397 | (p - (psymtab->objfile->static_psymbols.list + psymtab->statics_offset) | |
bd5635a1 RP |
398 | < psymtab->n_static_syms); |
399 | p++) | |
400 | if (SYMBOL_NAMESPACE (p) == VAR_NAMESPACE | |
401 | && SYMBOL_CLASS (p) == LOC_BLOCK | |
402 | && pc >= SYMBOL_VALUE_ADDRESS (p) | |
403 | && SYMBOL_VALUE_ADDRESS (p) > best_pc) | |
404 | { | |
405 | best_pc = SYMBOL_VALUE_ADDRESS (p); | |
406 | best = p; | |
407 | } | |
408 | if (best_pc == psymtab->textlow - 1) | |
409 | return 0; | |
410 | return best; | |
411 | } | |
412 | ||
413 | \f | |
414 | /* Find the definition for a specified symbol name NAME | |
415 | in namespace NAMESPACE, visible from lexical block BLOCK. | |
416 | Returns the struct symbol pointer, or zero if no symbol is found. | |
417 | If SYMTAB is non-NULL, store the symbol table in which the | |
418 | symbol was found there, or NULL if not found. | |
419 | C++: if IS_A_FIELD_OF_THIS is nonzero on entry, check to see if | |
420 | NAME is a field of the current implied argument `this'. If so set | |
421 | *IS_A_FIELD_OF_THIS to 1, otherwise set it to zero. | |
422 | BLOCK_FOUND is set to the block in which NAME is found (in the case of | |
423 | a field of `this', value_of_this sets BLOCK_FOUND to the proper value.) */ | |
424 | ||
425 | struct symbol * | |
426 | lookup_symbol (name, block, namespace, is_a_field_of_this, symtab) | |
cba0d141 JG |
427 | const char *name; |
428 | register const struct block *block; | |
429 | const enum namespace namespace; | |
bd5635a1 RP |
430 | int *is_a_field_of_this; |
431 | struct symtab **symtab; | |
432 | { | |
433 | register struct symbol *sym; | |
01d3fdba | 434 | register struct symtab *s = NULL; |
bd5635a1 RP |
435 | register struct partial_symtab *ps; |
436 | struct blockvector *bv; | |
cba0d141 JG |
437 | register struct objfile *objfile; |
438 | register struct block *b; | |
cba0d141 | 439 | register struct minimal_symbol *msymbol; |
f70be3e4 | 440 | |
bd5635a1 RP |
441 | /* Search specified block and its superiors. */ |
442 | ||
443 | while (block != 0) | |
444 | { | |
445 | sym = lookup_block_symbol (block, name, namespace); | |
446 | if (sym) | |
447 | { | |
448 | block_found = block; | |
449 | if (symtab != NULL) | |
450 | { | |
451 | /* Search the list of symtabs for one which contains the | |
452 | address of the start of this block. */ | |
35a25840 | 453 | ALL_SYMTABS (objfile, s) |
bd5635a1 | 454 | { |
35a25840 SG |
455 | bv = BLOCKVECTOR (s); |
456 | b = BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK); | |
457 | if (BLOCK_START (b) <= BLOCK_START (block) | |
458 | && BLOCK_END (b) > BLOCK_START (block)) | |
459 | goto found; | |
bd5635a1 | 460 | } |
35a25840 | 461 | found: |
bd5635a1 RP |
462 | *symtab = s; |
463 | } | |
464 | ||
cba0d141 | 465 | return (sym); |
bd5635a1 RP |
466 | } |
467 | block = BLOCK_SUPERBLOCK (block); | |
468 | } | |
469 | ||
0b28c260 JK |
470 | /* FIXME: this code is never executed--block is always NULL at this |
471 | point. What is it trying to do, anyway? We already should have | |
472 | checked the STATIC_BLOCK above (it is the superblock of top-level | |
473 | blocks). Why is VAR_NAMESPACE special-cased? */ | |
2e4964ad | 474 | /* Don't need to mess with the psymtabs; if we have a block, |
b039ac3a JK |
475 | that file is read in. If we don't, then we deal later with |
476 | all the psymtab stuff that needs checking. */ | |
477 | if (namespace == VAR_NAMESPACE && block != NULL) | |
478 | { | |
479 | struct block *b; | |
480 | /* Find the right symtab. */ | |
35a25840 | 481 | ALL_SYMTABS (objfile, s) |
b039ac3a | 482 | { |
35a25840 SG |
483 | bv = BLOCKVECTOR (s); |
484 | b = BLOCKVECTOR_BLOCK (bv, STATIC_BLOCK); | |
485 | if (BLOCK_START (b) <= BLOCK_START (block) | |
486 | && BLOCK_END (b) > BLOCK_START (block)) | |
b039ac3a | 487 | { |
2e4964ad | 488 | sym = lookup_block_symbol (b, name, VAR_NAMESPACE); |
35a25840 | 489 | if (sym) |
b039ac3a | 490 | { |
35a25840 SG |
491 | block_found = b; |
492 | if (symtab != NULL) | |
493 | *symtab = s; | |
494 | return sym; | |
b039ac3a JK |
495 | } |
496 | } | |
497 | } | |
498 | } | |
499 | ||
500 | ||
bd5635a1 RP |
501 | /* C++: If requested to do so by the caller, |
502 | check to see if NAME is a field of `this'. */ | |
503 | if (is_a_field_of_this) | |
504 | { | |
505 | struct value *v = value_of_this (0); | |
506 | ||
507 | *is_a_field_of_this = 0; | |
508 | if (v && check_field (v, name)) | |
509 | { | |
510 | *is_a_field_of_this = 1; | |
511 | if (symtab != NULL) | |
512 | *symtab = NULL; | |
513 | return 0; | |
514 | } | |
515 | } | |
516 | ||
517 | /* Now search all global blocks. Do the symtab's first, then | |
518 | check the psymtab's */ | |
cba0d141 | 519 | |
35a25840 | 520 | ALL_SYMTABS (objfile, s) |
bd5635a1 | 521 | { |
35a25840 SG |
522 | bv = BLOCKVECTOR (s); |
523 | block = BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK); | |
524 | sym = lookup_block_symbol (block, name, namespace); | |
525 | if (sym) | |
bd5635a1 | 526 | { |
35a25840 SG |
527 | block_found = block; |
528 | if (symtab != NULL) | |
529 | *symtab = s; | |
530 | return sym; | |
bd5635a1 RP |
531 | } |
532 | } | |
533 | ||
534 | /* Check for the possibility of the symbol being a global function | |
cba0d141 | 535 | that is stored in one of the minimal symbol tables. Eventually, all |
bd5635a1 RP |
536 | global symbols might be resolved in this way. */ |
537 | ||
538 | if (namespace == VAR_NAMESPACE) | |
539 | { | |
cba0d141 | 540 | msymbol = lookup_minimal_symbol (name, (struct objfile *) NULL); |
f70be3e4 | 541 | if (msymbol != NULL) |
bd5635a1 | 542 | { |
2e4964ad | 543 | s = find_pc_symtab (SYMBOL_VALUE_ADDRESS (msymbol)); |
318bf84f | 544 | /* If S is NULL, there are no debug symbols for this file. |
997a978c | 545 | Skip this stuff and check for matching static symbols below. */ |
318bf84f | 546 | if (s != NULL) |
bd5635a1 RP |
547 | { |
548 | bv = BLOCKVECTOR (s); | |
3ba6a043 | 549 | block = BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK); |
2e4964ad FF |
550 | sym = lookup_block_symbol (block, SYMBOL_NAME (msymbol), |
551 | namespace); | |
318bf84f | 552 | /* We kept static functions in minimal symbol table as well as |
818de002 | 553 | in static scope. We want to find them in the symbol table. */ |
818de002 PB |
554 | if (!sym) { |
555 | block = BLOCKVECTOR_BLOCK (bv, STATIC_BLOCK); | |
2e4964ad | 556 | sym = lookup_block_symbol (block, SYMBOL_NAME (msymbol), |
318bf84f | 557 | namespace); |
818de002 | 558 | } |
818de002 | 559 | |
cba0d141 | 560 | /* sym == 0 if symbol was found in the minimal symbol table |
bd5635a1 | 561 | but not in the symtab. |
cba0d141 | 562 | Return 0 to use the msymbol definition of "foo_". |
bd5635a1 RP |
563 | |
564 | This happens for Fortran "foo_" symbols, | |
565 | which are "foo" in the symtab. | |
566 | ||
567 | This can also happen if "asm" is used to make a | |
568 | regular symbol but not a debugging symbol, e.g. | |
569 | asm(".globl _main"); | |
570 | asm("_main:"); | |
571 | */ | |
572 | ||
573 | if (symtab != NULL) | |
574 | *symtab = s; | |
575 | return sym; | |
576 | } | |
577 | } | |
578 | } | |
579 | ||
35a25840 | 580 | ALL_PSYMTABS (objfile, ps) |
cba0d141 | 581 | { |
35a25840 | 582 | if (!ps->readin && lookup_partial_symbol (ps, name, 1, namespace)) |
cba0d141 | 583 | { |
35a25840 SG |
584 | s = PSYMTAB_TO_SYMTAB(ps); |
585 | bv = BLOCKVECTOR (s); | |
586 | block = BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK); | |
587 | sym = lookup_block_symbol (block, name, namespace); | |
588 | if (!sym) | |
35fcebce | 589 | error ("Internal: global symbol `%s' found in %s psymtab but not in symtab", name, ps->filename); |
35a25840 SG |
590 | if (symtab != NULL) |
591 | *symtab = s; | |
592 | return sym; | |
cba0d141 JG |
593 | } |
594 | } | |
bd5635a1 RP |
595 | |
596 | /* Now search all per-file blocks. | |
597 | Not strictly correct, but more useful than an error. | |
598 | Do the symtabs first, then check the psymtabs */ | |
599 | ||
35a25840 | 600 | ALL_SYMTABS (objfile, s) |
bd5635a1 | 601 | { |
35a25840 SG |
602 | bv = BLOCKVECTOR (s); |
603 | block = BLOCKVECTOR_BLOCK (bv, STATIC_BLOCK); | |
604 | sym = lookup_block_symbol (block, name, namespace); | |
605 | if (sym) | |
bd5635a1 | 606 | { |
35a25840 SG |
607 | block_found = block; |
608 | if (symtab != NULL) | |
609 | *symtab = s; | |
610 | return sym; | |
611 | } | |
612 | } | |
613 | ||
614 | ALL_PSYMTABS (objfile, ps) | |
615 | { | |
616 | if (!ps->readin && lookup_partial_symbol (ps, name, 0, namespace)) | |
617 | { | |
618 | s = PSYMTAB_TO_SYMTAB(ps); | |
cba0d141 JG |
619 | bv = BLOCKVECTOR (s); |
620 | block = BLOCKVECTOR_BLOCK (bv, STATIC_BLOCK); | |
621 | sym = lookup_block_symbol (block, name, namespace); | |
35a25840 | 622 | if (!sym) |
35fcebce | 623 | error ("Internal: static symbol `%s' found in %s psymtab but not in symtab", name, ps->filename); |
35a25840 SG |
624 | if (symtab != NULL) |
625 | *symtab = s; | |
626 | return sym; | |
627 | } | |
628 | } | |
629 | ||
630 | /* Now search all per-file blocks for static mangled symbols. | |
631 | Do the symtabs first, then check the psymtabs. */ | |
632 | ||
633 | if (namespace == VAR_NAMESPACE) | |
634 | { | |
635 | ALL_SYMTABS (objfile, s) | |
636 | { | |
637 | bv = BLOCKVECTOR (s); | |
638 | block = BLOCKVECTOR_BLOCK (bv, STATIC_BLOCK); | |
2e4964ad | 639 | sym = lookup_block_symbol (block, name, VAR_NAMESPACE); |
cba0d141 JG |
640 | if (sym) |
641 | { | |
642 | block_found = block; | |
643 | if (symtab != NULL) | |
644 | *symtab = s; | |
645 | return sym; | |
646 | } | |
bd5635a1 | 647 | } |
bd5635a1 | 648 | |
35a25840 | 649 | ALL_PSYMTABS (objfile, ps) |
cba0d141 | 650 | { |
2e4964ad | 651 | if (!ps->readin && lookup_partial_symbol (ps, name, 0, VAR_NAMESPACE)) |
cba0d141 JG |
652 | { |
653 | s = PSYMTAB_TO_SYMTAB(ps); | |
654 | bv = BLOCKVECTOR (s); | |
655 | block = BLOCKVECTOR_BLOCK (bv, STATIC_BLOCK); | |
2e4964ad | 656 | sym = lookup_block_symbol (block, name, VAR_NAMESPACE); |
cba0d141 | 657 | if (!sym) |
35fcebce | 658 | error ("Internal: mangled static symbol `%s' found in %s psymtab but not in symtab", name, ps->filename); |
cba0d141 JG |
659 | if (symtab != NULL) |
660 | *symtab = s; | |
661 | return sym; | |
662 | } | |
663 | } | |
664 | } | |
bd5635a1 RP |
665 | |
666 | if (symtab != NULL) | |
667 | *symtab = NULL; | |
668 | return 0; | |
669 | } | |
670 | ||
671 | /* Look, in partial_symtab PST, for symbol NAME. Check the global | |
672 | symbols if GLOBAL, the static symbols if not */ | |
673 | ||
674 | static struct partial_symbol * | |
675 | lookup_partial_symbol (pst, name, global, namespace) | |
676 | struct partial_symtab *pst; | |
cba0d141 | 677 | const char *name; |
bd5635a1 RP |
678 | int global; |
679 | enum namespace namespace; | |
680 | { | |
681 | struct partial_symbol *start, *psym; | |
2e4964ad | 682 | struct partial_symbol *top, *bottom, *center; |
bd5635a1 | 683 | int length = (global ? pst->n_global_syms : pst->n_static_syms); |
2e4964ad | 684 | int do_linear_search = 1; |
bd5635a1 | 685 | |
2e4964ad FF |
686 | if (length == 0) |
687 | { | |
688 | return (NULL); | |
689 | } | |
bd5635a1 RP |
690 | |
691 | start = (global ? | |
cba0d141 JG |
692 | pst->objfile->global_psymbols.list + pst->globals_offset : |
693 | pst->objfile->static_psymbols.list + pst->statics_offset ); | |
bd5635a1 | 694 | |
2e4964ad | 695 | if (global) /* This means we can use a binary search. */ |
bd5635a1 | 696 | { |
2e4964ad | 697 | do_linear_search = 0; |
bd5635a1 RP |
698 | |
699 | /* Binary search. This search is guaranteed to end with center | |
700 | pointing at the earliest partial symbol with the correct | |
701 | name. At that point *all* partial symbols with that name | |
702 | will be checked against the correct namespace. */ | |
2e4964ad | 703 | |
bd5635a1 RP |
704 | bottom = start; |
705 | top = start + length - 1; | |
706 | while (top > bottom) | |
707 | { | |
708 | center = bottom + (top - bottom) / 2; | |
bd5635a1 | 709 | assert (center < top); |
2e4964ad FF |
710 | if (!do_linear_search && SYMBOL_LANGUAGE (center) == language_cplus) |
711 | { | |
712 | do_linear_search = 1; | |
713 | } | |
714 | if (STRCMP (SYMBOL_NAME (center), name) >= 0) | |
715 | { | |
716 | top = center; | |
717 | } | |
bd5635a1 | 718 | else |
2e4964ad FF |
719 | { |
720 | bottom = center + 1; | |
721 | } | |
bd5635a1 RP |
722 | } |
723 | assert (top == bottom); | |
2e4964ad | 724 | while (STREQ (SYMBOL_NAME (top), name)) |
bd5635a1 RP |
725 | { |
726 | if (SYMBOL_NAMESPACE (top) == namespace) | |
2e4964ad FF |
727 | { |
728 | return top; | |
729 | } | |
bd5635a1 RP |
730 | top ++; |
731 | } | |
732 | } | |
2e4964ad FF |
733 | |
734 | /* Can't use a binary search or else we found during the binary search that | |
735 | we should also do a linear search. */ | |
736 | ||
737 | if (do_linear_search) | |
bd5635a1 | 738 | { |
bd5635a1 | 739 | for (psym = start; psym < start + length; psym++) |
2e4964ad FF |
740 | { |
741 | if (namespace == SYMBOL_NAMESPACE (psym)) | |
742 | { | |
743 | if (SYMBOL_MATCHES_NAME (psym, name)) | |
744 | { | |
745 | return (psym); | |
746 | } | |
747 | } | |
748 | } | |
bd5635a1 RP |
749 | } |
750 | ||
2e4964ad | 751 | return (NULL); |
bd5635a1 RP |
752 | } |
753 | ||
0e2a896c | 754 | /* Find the psymtab containing main(). */ |
c1878f87 SG |
755 | /* FIXME: What about languages without main() or specially linked |
756 | executables that have no main() ? */ | |
0e2a896c PB |
757 | |
758 | struct partial_symtab * | |
759 | find_main_psymtab () | |
760 | { | |
761 | register struct partial_symtab *pst; | |
cba0d141 JG |
762 | register struct objfile *objfile; |
763 | ||
35a25840 | 764 | ALL_PSYMTABS (objfile, pst) |
cba0d141 | 765 | { |
35a25840 | 766 | if (lookup_partial_symbol (pst, "main", 1, VAR_NAMESPACE)) |
cba0d141 | 767 | { |
35a25840 | 768 | return (pst); |
cba0d141 JG |
769 | } |
770 | } | |
771 | return (NULL); | |
0e2a896c PB |
772 | } |
773 | ||
2e4964ad FF |
774 | /* Search BLOCK for symbol NAME in NAMESPACE. |
775 | ||
776 | Note that if NAME is the demangled form of a C++ symbol, we will fail | |
777 | to find a match during the binary search of the non-encoded names, but | |
778 | for now we don't worry about the slight inefficiency of looking for | |
779 | a match we'll never find, since it will go pretty quick. Once the | |
780 | binary search terminates, we drop through and do a straight linear | |
781 | search on the symbols. Each symbol which is marked as being a C++ | |
782 | symbol (language_cplus set) has both the encoded and non-encoded names | |
783 | tested for a match. */ | |
bd5635a1 RP |
784 | |
785 | struct symbol * | |
786 | lookup_block_symbol (block, name, namespace) | |
cba0d141 JG |
787 | register const struct block *block; |
788 | const char *name; | |
789 | const enum namespace namespace; | |
bd5635a1 RP |
790 | { |
791 | register int bot, top, inc; | |
2e4964ad FF |
792 | register struct symbol *sym; |
793 | register struct symbol *sym_found = NULL; | |
794 | register int do_linear_search = 1; | |
bd5635a1 RP |
795 | |
796 | /* If the blocks's symbols were sorted, start with a binary search. */ | |
797 | ||
798 | if (BLOCK_SHOULD_SORT (block)) | |
799 | { | |
2e4964ad FF |
800 | /* Reset the linear search flag so if the binary search fails, we |
801 | won't do the linear search once unless we find some reason to | |
802 | do so, such as finding a C++ symbol during the binary search. | |
803 | Note that for C++ modules, ALL the symbols in a block should | |
804 | end up marked as C++ symbols. */ | |
805 | ||
806 | do_linear_search = 0; | |
807 | top = BLOCK_NSYMS (block); | |
808 | bot = 0; | |
809 | ||
810 | /* Advance BOT to not far before the first symbol whose name is NAME. */ | |
bd5635a1 RP |
811 | |
812 | while (1) | |
813 | { | |
814 | inc = (top - bot + 1); | |
815 | /* No need to keep binary searching for the last few bits worth. */ | |
816 | if (inc < 4) | |
2e4964ad FF |
817 | { |
818 | break; | |
819 | } | |
bd5635a1 RP |
820 | inc = (inc >> 1) + bot; |
821 | sym = BLOCK_SYM (block, inc); | |
2e4964ad FF |
822 | if (!do_linear_search && SYMBOL_LANGUAGE (sym) == language_cplus) |
823 | { | |
824 | do_linear_search = 1; | |
825 | } | |
bd5635a1 | 826 | if (SYMBOL_NAME (sym)[0] < name[0]) |
2e4964ad FF |
827 | { |
828 | bot = inc; | |
829 | } | |
bd5635a1 | 830 | else if (SYMBOL_NAME (sym)[0] > name[0]) |
2e4964ad FF |
831 | { |
832 | top = inc; | |
833 | } | |
834 | else if (STRCMP (SYMBOL_NAME (sym), name) < 0) | |
835 | { | |
836 | bot = inc; | |
837 | } | |
bd5635a1 | 838 | else |
2e4964ad FF |
839 | { |
840 | top = inc; | |
841 | } | |
bd5635a1 RP |
842 | } |
843 | ||
f1ed4330 JK |
844 | /* Now scan forward until we run out of symbols, find one whose |
845 | name is greater than NAME, or find one we want. If there is | |
846 | more than one symbol with the right name and namespace, we | |
847 | return the first one; I believe it is now impossible for us | |
848 | to encounter two symbols with the same name and namespace | |
849 | here, because blocks containing argument symbols are no | |
850 | longer sorted. */ | |
bd5635a1 RP |
851 | |
852 | top = BLOCK_NSYMS (block); | |
853 | while (bot < top) | |
854 | { | |
855 | sym = BLOCK_SYM (block, bot); | |
856 | inc = SYMBOL_NAME (sym)[0] - name[0]; | |
857 | if (inc == 0) | |
2e4964ad FF |
858 | { |
859 | inc = STRCMP (SYMBOL_NAME (sym), name); | |
860 | } | |
bd5635a1 | 861 | if (inc == 0 && SYMBOL_NAMESPACE (sym) == namespace) |
2e4964ad FF |
862 | { |
863 | return (sym); | |
864 | } | |
bd5635a1 | 865 | if (inc > 0) |
2e4964ad FF |
866 | { |
867 | break; | |
868 | } | |
bd5635a1 RP |
869 | bot++; |
870 | } | |
bd5635a1 RP |
871 | } |
872 | ||
2e4964ad FF |
873 | /* Here if block isn't sorted, or we fail to find a match during the |
874 | binary search above. If during the binary search above, we find a | |
875 | symbol which is a C++ symbol, then we have re-enabled the linear | |
876 | search flag which was reset when starting the binary search. | |
877 | ||
878 | This loop is equivalent to the loop above, but hacked greatly for speed. | |
bd5635a1 RP |
879 | |
880 | Note that parameter symbols do not always show up last in the | |
881 | list; this loop makes sure to take anything else other than | |
882 | parameter symbols first; it only uses parameter symbols as a | |
883 | last resort. Note that this only takes up extra computation | |
884 | time on a match. */ | |
885 | ||
2e4964ad | 886 | if (do_linear_search) |
bd5635a1 | 887 | { |
2e4964ad FF |
888 | top = BLOCK_NSYMS (block); |
889 | bot = 0; | |
890 | while (bot < top) | |
bd5635a1 | 891 | { |
2e4964ad FF |
892 | sym = BLOCK_SYM (block, bot); |
893 | if (SYMBOL_NAMESPACE (sym) == namespace && | |
894 | SYMBOL_MATCHES_NAME (sym, name)) | |
895 | { | |
896 | sym_found = sym; | |
897 | if (SYMBOL_CLASS (sym) != LOC_ARG && | |
898 | SYMBOL_CLASS (sym) != LOC_LOCAL_ARG && | |
899 | SYMBOL_CLASS (sym) != LOC_REF_ARG && | |
f1ed4330 | 900 | SYMBOL_CLASS (sym) != LOC_REGPARM && |
a1c8d76e JK |
901 | SYMBOL_CLASS (sym) != LOC_REGPARM_ADDR && |
902 | SYMBOL_CLASS (sym) != LOC_BASEREG_ARG) | |
2e4964ad FF |
903 | { |
904 | break; | |
905 | } | |
906 | } | |
907 | bot++; | |
bd5635a1 | 908 | } |
bd5635a1 | 909 | } |
2e4964ad | 910 | return (sym_found); /* Will be NULL if not found. */ |
bd5635a1 | 911 | } |
2e4964ad | 912 | |
bd5635a1 RP |
913 | \f |
914 | /* Return the symbol for the function which contains a specified | |
915 | lexical block, described by a struct block BL. */ | |
916 | ||
917 | struct symbol * | |
918 | block_function (bl) | |
919 | struct block *bl; | |
920 | { | |
921 | while (BLOCK_FUNCTION (bl) == 0 && BLOCK_SUPERBLOCK (bl) != 0) | |
922 | bl = BLOCK_SUPERBLOCK (bl); | |
923 | ||
924 | return BLOCK_FUNCTION (bl); | |
925 | } | |
926 | ||
c1878f87 SG |
927 | /* Find the symtab associated with PC. Look through the psymtabs and read in |
928 | another symtab if necessary. */ | |
bd5635a1 RP |
929 | |
930 | struct symtab * | |
931 | find_pc_symtab (pc) | |
932 | register CORE_ADDR pc; | |
933 | { | |
934 | register struct block *b; | |
935 | struct blockvector *bv; | |
45a655b0 | 936 | register struct symtab *s = NULL; |
ca6a826d | 937 | register struct symtab *best_s = NULL; |
bd5635a1 | 938 | register struct partial_symtab *ps; |
cba0d141 | 939 | register struct objfile *objfile; |
018ab14f | 940 | int distance = 0; |
bd5635a1 | 941 | |
018ab14f PS |
942 | /* Search all symtabs for the one whose file contains our address, and which |
943 | is the smallest of all the ones containing the address. This is designed | |
944 | to deal with a case like symtab a is at 0x1000-0x2000 and 0x3000-0x4000 | |
945 | and symtab b is at 0x2000-0x3000. So the GLOBAL_BLOCK for a is from | |
946 | 0x1000-0x4000, but for address 0x2345 we want to return symtab b. | |
947 | This is said to happen for the mips; it might be swifter to create | |
948 | several symtabs with the same name like xcoff does (I'm not sure). */ | |
bd5635a1 | 949 | |
35a25840 | 950 | ALL_SYMTABS (objfile, s) |
bd5635a1 | 951 | { |
35a25840 SG |
952 | bv = BLOCKVECTOR (s); |
953 | b = BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK); | |
954 | if (BLOCK_START (b) <= pc | |
ca6a826d PS |
955 | && BLOCK_END (b) > pc |
956 | && (distance == 0 | |
957 | || BLOCK_END (b) - BLOCK_START (b) < distance)) | |
958 | { | |
959 | distance = BLOCK_END (b) - BLOCK_START (b); | |
960 | best_s = s; | |
961 | } | |
bd5635a1 RP |
962 | } |
963 | ||
ca6a826d PS |
964 | if (best_s != NULL) |
965 | return(best_s); | |
966 | ||
45a655b0 | 967 | s = NULL; |
c1878f87 SG |
968 | ps = find_pc_psymtab (pc); |
969 | if (ps) | |
bd5635a1 | 970 | { |
c1878f87 | 971 | if (ps->readin) |
ac82e9a5 JK |
972 | /* Might want to error() here (in case symtab is corrupt and |
973 | will cause a core dump), but maybe we can successfully | |
974 | continue, so let's not. */ | |
975 | warning ("\ | |
5573d7d4 JK |
976 | (Internal error: pc 0x%lx in read in psymtab, but not in symtab.)\n", |
977 | (unsigned long) pc); | |
c1878f87 | 978 | s = PSYMTAB_TO_SYMTAB (ps); |
bd5635a1 | 979 | } |
45a655b0 | 980 | return (s); |
bd5635a1 RP |
981 | } |
982 | ||
983 | /* Find the source file and line number for a given PC value. | |
984 | Return a structure containing a symtab pointer, a line number, | |
985 | and a pc range for the entire source line. | |
986 | The value's .pc field is NOT the specified pc. | |
987 | NOTCURRENT nonzero means, if specified pc is on a line boundary, | |
988 | use the line that ends there. Otherwise, in that case, the line | |
989 | that begins there is used. */ | |
990 | ||
b638ca91 SG |
991 | /* The big complication here is that a line may start in one file, and end just |
992 | before the start of another file. This usually occurs when you #include | |
993 | code in the middle of a subroutine. To properly find the end of a line's PC | |
994 | range, we must search all symtabs associated with this compilation unit, and | |
995 | find the one whose first PC is closer than that of the next line in this | |
01d3fdba | 996 | symtab. */ |
b638ca91 | 997 | |
d34d6f75 JK |
998 | /* If it's worth the effort, we could be using a binary search. */ |
999 | ||
bd5635a1 RP |
1000 | struct symtab_and_line |
1001 | find_pc_line (pc, notcurrent) | |
1002 | CORE_ADDR pc; | |
1003 | int notcurrent; | |
1004 | { | |
1005 | struct symtab *s; | |
1006 | register struct linetable *l; | |
1007 | register int len; | |
1008 | register int i; | |
b638ca91 | 1009 | register struct linetable_entry *item; |
bd5635a1 RP |
1010 | struct symtab_and_line val; |
1011 | struct blockvector *bv; | |
1012 | ||
1013 | /* Info on best line seen so far, and where it starts, and its file. */ | |
1014 | ||
b638ca91 | 1015 | struct linetable_entry *best = NULL; |
bd5635a1 RP |
1016 | CORE_ADDR best_end = 0; |
1017 | struct symtab *best_symtab = 0; | |
1018 | ||
1019 | /* Store here the first line number | |
1020 | of a file which contains the line at the smallest pc after PC. | |
1021 | If we don't find a line whose range contains PC, | |
1022 | we will use a line one less than this, | |
1023 | with a range from the start of that file to the first line's pc. */ | |
b638ca91 | 1024 | struct linetable_entry *alt = NULL; |
bd5635a1 RP |
1025 | struct symtab *alt_symtab = 0; |
1026 | ||
1027 | /* Info on best line seen in this file. */ | |
1028 | ||
b638ca91 | 1029 | struct linetable_entry *prev; |
bd5635a1 RP |
1030 | |
1031 | /* If this pc is not from the current frame, | |
1032 | it is the address of the end of a call instruction. | |
1033 | Quite likely that is the start of the following statement. | |
1034 | But what we want is the statement containing the instruction. | |
1035 | Fudge the pc to make sure we get that. */ | |
1036 | ||
1037 | if (notcurrent) pc -= 1; | |
1038 | ||
1039 | s = find_pc_symtab (pc); | |
c1878f87 | 1040 | if (!s) |
bd5635a1 RP |
1041 | { |
1042 | val.symtab = 0; | |
1043 | val.line = 0; | |
1044 | val.pc = pc; | |
1045 | val.end = 0; | |
1046 | return val; | |
1047 | } | |
1048 | ||
1049 | bv = BLOCKVECTOR (s); | |
1050 | ||
1051 | /* Look at all the symtabs that share this blockvector. | |
1052 | They all have the same apriori range, that we found was right; | |
1053 | but they have different line tables. */ | |
1054 | ||
1055 | for (; s && BLOCKVECTOR (s) == bv; s = s->next) | |
1056 | { | |
1057 | /* Find the best line in this symtab. */ | |
1058 | l = LINETABLE (s); | |
4137c5fc JG |
1059 | if (!l) |
1060 | continue; | |
bd5635a1 | 1061 | len = l->nitems; |
01d3fdba | 1062 | if (len <= 0) |
c1878f87 | 1063 | { |
01d3fdba JK |
1064 | /* I think len can be zero if the symtab lacks line numbers |
1065 | (e.g. gcc -g1). (Either that or the LINETABLE is NULL; | |
1066 | I'm not sure which, and maybe it depends on the symbol | |
1067 | reader). */ | |
c1878f87 SG |
1068 | continue; |
1069 | } | |
1070 | ||
b638ca91 SG |
1071 | prev = NULL; |
1072 | item = l->item; /* Get first line info */ | |
c1878f87 SG |
1073 | |
1074 | /* Is this file's first line closer than the first lines of other files? | |
1075 | If so, record this file, and its first line, as best alternate. */ | |
b638ca91 | 1076 | if (item->pc > pc && (!alt || item->pc < alt->pc)) |
c1878f87 SG |
1077 | { |
1078 | alt = item; | |
1079 | alt_symtab = s; | |
1080 | } | |
1081 | ||
b638ca91 | 1082 | for (i = 0; i < len; i++, item++) |
bd5635a1 | 1083 | { |
bd5635a1 | 1084 | /* Return the last line that did not start after PC. */ |
b638ca91 | 1085 | if (item->pc > pc) |
bd5635a1 | 1086 | break; |
c1878f87 SG |
1087 | |
1088 | prev = item; | |
bd5635a1 RP |
1089 | } |
1090 | ||
c1878f87 SG |
1091 | /* At this point, prev points at the line whose start addr is <= pc, and |
1092 | item points at the next line. If we ran off the end of the linetable | |
1093 | (pc >= start of the last line), then prev == item. If pc < start of | |
1094 | the first line, prev will not be set. */ | |
1095 | ||
bd5635a1 RP |
1096 | /* Is this file's best line closer than the best in the other files? |
1097 | If so, record this file, and its best line, as best so far. */ | |
c1878f87 | 1098 | |
b638ca91 | 1099 | if (prev && (!best || prev->pc > best->pc)) |
bd5635a1 | 1100 | { |
c1878f87 | 1101 | best = prev; |
bd5635a1 | 1102 | best_symtab = s; |
cba0d141 JG |
1103 | /* If another line is in the linetable, and its PC is closer |
1104 | than the best_end we currently have, take it as best_end. */ | |
b638ca91 SG |
1105 | if (i < len && (best_end == 0 || best_end > item->pc)) |
1106 | best_end = item->pc; | |
bd5635a1 RP |
1107 | } |
1108 | } | |
c1878f87 SG |
1109 | |
1110 | if (!best_symtab) | |
bd5635a1 | 1111 | { |
c1878f87 SG |
1112 | if (!alt_symtab) |
1113 | { /* If we didn't find any line # info, just | |
1114 | return zeros. */ | |
1115 | val.symtab = 0; | |
1116 | val.line = 0; | |
1117 | val.pc = pc; | |
1118 | val.end = 0; | |
1119 | } | |
1120 | else | |
1121 | { | |
1122 | val.symtab = alt_symtab; | |
b638ca91 | 1123 | val.line = alt->line - 1; |
c1878f87 | 1124 | val.pc = BLOCK_END (BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK)); |
b638ca91 | 1125 | val.end = alt->pc; |
c1878f87 | 1126 | } |
bd5635a1 RP |
1127 | } |
1128 | else | |
1129 | { | |
1130 | val.symtab = best_symtab; | |
b638ca91 SG |
1131 | val.line = best->line; |
1132 | val.pc = best->pc; | |
1133 | if (best_end && (!alt || best_end < alt->pc)) | |
cba0d141 | 1134 | val.end = best_end; |
a8a69e63 | 1135 | else if (alt) |
b638ca91 | 1136 | val.end = alt->pc; |
cba0d141 JG |
1137 | else |
1138 | val.end = BLOCK_END (BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK)); | |
bd5635a1 RP |
1139 | } |
1140 | return val; | |
1141 | } | |
1142 | \f | |
018ab14f PS |
1143 | static int find_line_symtab PARAMS ((struct symtab *, int, struct linetable **, |
1144 | int *, int *)); | |
1145 | ||
1146 | /* Find line number LINE in any symtab whose name is the same as | |
1147 | SYMTAB. | |
1148 | ||
1149 | If found, return 1, set *LINETABLE to the linetable in which it was | |
1150 | found, set *INDEX to the index in the linetable of the best entry | |
1151 | found, and set *EXACT_MATCH nonzero if the value returned is an | |
1152 | exact match. | |
1153 | ||
1154 | If not found, return 0. */ | |
1155 | ||
1156 | static int | |
1157 | find_line_symtab (symtab, line, linetable, index, exact_match) | |
1158 | struct symtab *symtab; | |
1159 | int line; | |
1160 | struct linetable **linetable; | |
1161 | int *index; | |
1162 | int *exact_match; | |
1163 | { | |
1164 | int exact; | |
1165 | ||
1166 | /* BEST_INDEX and BEST_LINETABLE identify the smallest linenumber > LINE | |
1167 | so far seen. */ | |
1168 | ||
1169 | int best_index; | |
1170 | struct linetable *best_linetable; | |
1171 | ||
1172 | /* First try looking it up in the given symtab. */ | |
1173 | best_linetable = LINETABLE (symtab); | |
1174 | best_index = find_line_common (best_linetable, line, &exact); | |
1175 | if (best_index < 0 || !exact) | |
1176 | { | |
1177 | /* Didn't find an exact match. So we better keep looking for | |
1178 | another symtab with the same name. In the case of xcoff, | |
1179 | multiple csects for one source file (produced by IBM's FORTRAN | |
1180 | compiler) produce multiple symtabs (this is unavoidable | |
1181 | assuming csects can be at arbitrary places in memory and that | |
1182 | the GLOBAL_BLOCK of a symtab has a begin and end address). */ | |
1183 | ||
1184 | /* BEST is the smallest linenumber > LINE so far seen, | |
1185 | or 0 if none has been seen so far. | |
1186 | BEST_INDEX and BEST_LINETABLE identify the item for it. */ | |
1187 | int best; | |
1188 | ||
1189 | struct objfile *objfile; | |
1190 | struct symtab *s; | |
1191 | ||
1192 | if (best_index >= 0) | |
1193 | best = best_linetable->item[best_index].line; | |
1194 | else | |
1195 | best = 0; | |
1196 | ||
1197 | ALL_SYMTABS (objfile, s) | |
1198 | { | |
1199 | struct linetable *l; | |
1200 | int ind; | |
1201 | ||
1202 | if (!STREQ (symtab->filename, s->filename)) | |
1203 | continue; | |
1204 | l = LINETABLE (s); | |
1205 | ind = find_line_common (l, line, &exact); | |
1206 | if (ind >= 0) | |
1207 | { | |
1208 | if (exact) | |
1209 | { | |
1210 | best_index = ind; | |
1211 | best_linetable = l; | |
1212 | goto done; | |
1213 | } | |
1214 | if (best == 0 || l->item[ind].line < best) | |
1215 | { | |
1216 | best = l->item[ind].line; | |
1217 | best_index = ind; | |
1218 | best_linetable = l; | |
1219 | } | |
1220 | } | |
1221 | } | |
1222 | } | |
1223 | done: | |
1224 | if (best_index < 0) | |
1225 | return 0; | |
1226 | ||
1227 | if (index) | |
1228 | *index = best_index; | |
1229 | if (linetable) | |
1230 | *linetable = best_linetable; | |
1231 | if (exact_match) | |
1232 | *exact_match = exact; | |
1233 | return 1; | |
1234 | } | |
1235 | \f | |
bd5635a1 RP |
1236 | /* Find the PC value for a given source file and line number. |
1237 | Returns zero for invalid line number. | |
1238 | The source file is specified with a struct symtab. */ | |
1239 | ||
1240 | CORE_ADDR | |
1241 | find_line_pc (symtab, line) | |
1242 | struct symtab *symtab; | |
1243 | int line; | |
1244 | { | |
018ab14f PS |
1245 | struct linetable *l; |
1246 | int ind; | |
bd5635a1 RP |
1247 | |
1248 | if (symtab == 0) | |
1249 | return 0; | |
018ab14f PS |
1250 | if (find_line_symtab (symtab, line, &l, &ind, NULL)) |
1251 | return l->item[ind].pc; | |
1252 | else | |
1253 | return 0; | |
bd5635a1 RP |
1254 | } |
1255 | ||
1256 | /* Find the range of pc values in a line. | |
1257 | Store the starting pc of the line into *STARTPTR | |
1258 | and the ending pc (start of next line) into *ENDPTR. | |
1259 | Returns 1 to indicate success. | |
1260 | Returns 0 if could not find the specified line. */ | |
1261 | ||
1262 | int | |
1263 | find_line_pc_range (symtab, thisline, startptr, endptr) | |
1264 | struct symtab *symtab; | |
1265 | int thisline; | |
1266 | CORE_ADDR *startptr, *endptr; | |
1267 | { | |
018ab14f PS |
1268 | struct linetable *l; |
1269 | int ind; | |
bd5635a1 RP |
1270 | int exact_match; /* did we get an exact linenumber match */ |
1271 | ||
1272 | if (symtab == 0) | |
1273 | return 0; | |
1274 | ||
018ab14f | 1275 | if (find_line_symtab (symtab, thisline, &l, &ind, &exact_match)) |
bd5635a1 RP |
1276 | { |
1277 | *startptr = l->item[ind].pc; | |
1278 | /* If we have not seen an entry for the specified line, | |
1279 | assume that means the specified line has zero bytes. */ | |
1280 | if (!exact_match || ind == l->nitems-1) | |
1281 | *endptr = *startptr; | |
1282 | else | |
1283 | /* Perhaps the following entry is for the following line. | |
1284 | It's worth a try. */ | |
1285 | if (ind+1 < l->nitems | |
1286 | && l->item[ind+1].line == thisline + 1) | |
1287 | *endptr = l->item[ind+1].pc; | |
1288 | else | |
1289 | *endptr = find_line_pc (symtab, thisline+1); | |
1290 | return 1; | |
1291 | } | |
1292 | ||
1293 | return 0; | |
1294 | } | |
1295 | ||
1296 | /* Given a line table and a line number, return the index into the line | |
1297 | table for the pc of the nearest line whose number is >= the specified one. | |
b203fc18 | 1298 | Return -1 if none is found. The value is >= 0 if it is an index. |
bd5635a1 RP |
1299 | |
1300 | Set *EXACT_MATCH nonzero if the value returned is an exact match. */ | |
1301 | ||
1302 | static int | |
1303 | find_line_common (l, lineno, exact_match) | |
1304 | register struct linetable *l; | |
1305 | register int lineno; | |
1306 | int *exact_match; | |
1307 | { | |
1308 | register int i; | |
1309 | register int len; | |
1310 | ||
1311 | /* BEST is the smallest linenumber > LINENO so far seen, | |
1312 | or 0 if none has been seen so far. | |
1313 | BEST_INDEX identifies the item for it. */ | |
1314 | ||
b203fc18 | 1315 | int best_index = -1; |
bd5635a1 RP |
1316 | int best = 0; |
1317 | ||
1318 | if (lineno <= 0) | |
b203fc18 | 1319 | return -1; |
4137c5fc JG |
1320 | if (l == 0) |
1321 | return -1; | |
bd5635a1 RP |
1322 | |
1323 | len = l->nitems; | |
1324 | for (i = 0; i < len; i++) | |
1325 | { | |
1326 | register struct linetable_entry *item = &(l->item[i]); | |
1327 | ||
1328 | if (item->line == lineno) | |
1329 | { | |
d34d6f75 | 1330 | /* Return the first (lowest address) entry which matches. */ |
bd5635a1 RP |
1331 | *exact_match = 1; |
1332 | return i; | |
1333 | } | |
1334 | ||
1335 | if (item->line > lineno && (best == 0 || item->line < best)) | |
1336 | { | |
1337 | best = item->line; | |
1338 | best_index = i; | |
1339 | } | |
1340 | } | |
1341 | ||
1342 | /* If we got here, we didn't get an exact match. */ | |
1343 | ||
1344 | *exact_match = 0; | |
1345 | return best_index; | |
1346 | } | |
1347 | ||
1348 | int | |
1349 | find_pc_line_pc_range (pc, startptr, endptr) | |
1350 | CORE_ADDR pc; | |
1351 | CORE_ADDR *startptr, *endptr; | |
1352 | { | |
1353 | struct symtab_and_line sal; | |
1354 | sal = find_pc_line (pc, 0); | |
1355 | *startptr = sal.pc; | |
1356 | *endptr = sal.end; | |
1357 | return sal.symtab != 0; | |
1358 | } | |
1359 | \f | |
d96b54ea JK |
1360 | /* If P is of the form "operator[ \t]+..." where `...' is |
1361 | some legitimate operator text, return a pointer to the | |
1362 | beginning of the substring of the operator text. | |
1363 | Otherwise, return "". */ | |
1364 | static char * | |
1365 | operator_chars (p, end) | |
1366 | char *p; | |
1367 | char **end; | |
1368 | { | |
1369 | *end = ""; | |
1370 | if (strncmp (p, "operator", 8)) | |
1371 | return *end; | |
1372 | p += 8; | |
1373 | ||
1374 | /* Don't get faked out by `operator' being part of a longer | |
1375 | identifier. */ | |
2cd99985 | 1376 | if (isalpha(*p) || *p == '_' || *p == '$' || *p == '\0') |
d96b54ea JK |
1377 | return *end; |
1378 | ||
1379 | /* Allow some whitespace between `operator' and the operator symbol. */ | |
1380 | while (*p == ' ' || *p == '\t') | |
1381 | p++; | |
1382 | ||
2cd99985 PB |
1383 | /* Recognize 'operator TYPENAME'. */ |
1384 | ||
1385 | if (isalpha(*p) || *p == '_' || *p == '$') | |
1386 | { | |
1387 | register char *q = p+1; | |
1388 | while (isalnum(*q) || *q == '_' || *q == '$') | |
1389 | q++; | |
1390 | *end = q; | |
1391 | return p; | |
1392 | } | |
1393 | ||
d96b54ea JK |
1394 | switch (*p) |
1395 | { | |
1396 | case '!': | |
1397 | case '=': | |
1398 | case '*': | |
1399 | case '/': | |
1400 | case '%': | |
1401 | case '^': | |
1402 | if (p[1] == '=') | |
1403 | *end = p+2; | |
1404 | else | |
1405 | *end = p+1; | |
1406 | return p; | |
1407 | case '<': | |
1408 | case '>': | |
1409 | case '+': | |
1410 | case '-': | |
1411 | case '&': | |
1412 | case '|': | |
1413 | if (p[1] == '=' || p[1] == p[0]) | |
1414 | *end = p+2; | |
1415 | else | |
1416 | *end = p+1; | |
1417 | return p; | |
1418 | case '~': | |
1419 | case ',': | |
1420 | *end = p+1; | |
1421 | return p; | |
1422 | case '(': | |
1423 | if (p[1] != ')') | |
1424 | error ("`operator ()' must be specified without whitespace in `()'"); | |
1425 | *end = p+2; | |
1426 | return p; | |
1427 | case '?': | |
1428 | if (p[1] != ':') | |
1429 | error ("`operator ?:' must be specified without whitespace in `?:'"); | |
1430 | *end = p+2; | |
1431 | return p; | |
1432 | case '[': | |
1433 | if (p[1] != ']') | |
1434 | error ("`operator []' must be specified without whitespace in `[]'"); | |
1435 | *end = p+2; | |
1436 | return p; | |
1437 | default: | |
1438 | error ("`operator %s' not supported", p); | |
1439 | break; | |
1440 | } | |
1441 | *end = ""; | |
1442 | return *end; | |
1443 | } | |
1444 | ||
bd5635a1 RP |
1445 | /* Recursive helper function for decode_line_1. |
1446 | * Look for methods named NAME in type T. | |
1447 | * Return number of matches. | |
2e4964ad | 1448 | * Put matches in SYM_ARR (which better be big enough!). |
bd5635a1 RP |
1449 | * These allocations seem to define "big enough": |
1450 | * sym_arr = (struct symbol **) alloca(TYPE_NFN_FIELDS_TOTAL (t) * sizeof(struct symbol*)); | |
0b28c260 | 1451 | * Note that this function is g++ specific. |
bd5635a1 RP |
1452 | */ |
1453 | ||
2cd99985 | 1454 | int |
2e4964ad | 1455 | find_methods (t, name, sym_arr) |
bd5635a1 RP |
1456 | struct type *t; |
1457 | char *name; | |
bd5635a1 RP |
1458 | struct symbol **sym_arr; |
1459 | { | |
1460 | int i1 = 0; | |
1461 | int ibase; | |
1462 | struct symbol *sym_class; | |
1463 | char *class_name = type_name_no_tag (t); | |
d34d6f75 JK |
1464 | /* Ignore this class if it doesn't have a name. This is ugly, but |
1465 | unless we figure out how to get the physname without the name of | |
1466 | the class, then the loop can't do any good. */ | |
bd5635a1 RP |
1467 | if (class_name |
1468 | && (sym_class = lookup_symbol (class_name, | |
1469 | (struct block *)NULL, | |
1470 | STRUCT_NAMESPACE, | |
1471 | (int *)NULL, | |
1472 | (struct symtab **)NULL))) | |
1473 | { | |
1474 | int method_counter; | |
d34d6f75 | 1475 | /* FIXME: Shouldn't this just be check_stub_type (t)? */ |
bd5635a1 RP |
1476 | t = SYMBOL_TYPE (sym_class); |
1477 | for (method_counter = TYPE_NFN_FIELDS (t) - 1; | |
1478 | method_counter >= 0; | |
1479 | --method_counter) | |
1480 | { | |
1481 | int field_counter; | |
1482 | struct fn_field *f = TYPE_FN_FIELDLIST1 (t, method_counter); | |
1483 | ||
1484 | char *method_name = TYPE_FN_FIELDLIST_NAME (t, method_counter); | |
2e4964ad | 1485 | if (STREQ (name, method_name)) |
bd5635a1 RP |
1486 | /* Find all the fields with that name. */ |
1487 | for (field_counter = TYPE_FN_FIELDLIST_LENGTH (t, method_counter) - 1; | |
1488 | field_counter >= 0; | |
1489 | --field_counter) | |
1490 | { | |
1491 | char *phys_name; | |
7e258d18 | 1492 | if (TYPE_FN_FIELD_STUB (f, field_counter)) |
bd5635a1 RP |
1493 | check_stub_method (t, method_counter, field_counter); |
1494 | phys_name = TYPE_FN_FIELD_PHYSNAME (f, field_counter); | |
ca6a826d PS |
1495 | /* Destructor is handled by caller, dont add it to the list */ |
1496 | if (DESTRUCTOR_PREFIX_P (phys_name)) | |
1497 | continue; | |
d34d6f75 JK |
1498 | |
1499 | /* FIXME: Why are we looking this up in the | |
1500 | SYMBOL_BLOCK_VALUE (sym_class)? It is intended as a hook | |
1501 | for nested types? If so, it should probably hook to the | |
1502 | type, not the symbol. mipsread.c is the only symbol | |
1503 | reader which sets the SYMBOL_BLOCK_VALUE for types, and | |
1504 | this is not documented in symtab.h. -26Aug93. */ | |
1505 | ||
bd5635a1 RP |
1506 | sym_arr[i1] = lookup_symbol (phys_name, |
1507 | SYMBOL_BLOCK_VALUE (sym_class), | |
1508 | VAR_NAMESPACE, | |
1509 | (int *) NULL, | |
1510 | (struct symtab **) NULL); | |
1511 | if (sym_arr[i1]) i1++; | |
2cd99985 PB |
1512 | else |
1513 | { | |
1514 | fputs_filtered("(Cannot find method ", stdout); | |
5e81259d FF |
1515 | fprintf_symbol_filtered (stdout, phys_name, |
1516 | language_cplus, DMGL_PARAMS); | |
2cd99985 PB |
1517 | fputs_filtered(" - possibly inlined.)\n", stdout); |
1518 | } | |
bd5635a1 RP |
1519 | } |
1520 | } | |
1521 | } | |
d34d6f75 JK |
1522 | |
1523 | /* Only search baseclasses if there is no match yet, since names in | |
1524 | derived classes override those in baseclasses. | |
1525 | ||
1526 | FIXME: The above is not true; it is only true of member functions | |
1527 | if they have the same number of arguments (??? - section 13.1 of the | |
1528 | ARM says the function members are not in the same scope but doesn't | |
1529 | really spell out the rules in a way I understand. In any case, if | |
1530 | the number of arguments differ this is a case in which we can overload | |
1531 | rather than hiding without any problem, and gcc 2.4.5 does overload | |
1532 | rather than hiding in this case). */ | |
1533 | ||
bd5635a1 RP |
1534 | if (i1) |
1535 | return i1; | |
1536 | for (ibase = 0; ibase < TYPE_N_BASECLASSES (t); ibase++) | |
1537 | i1 += find_methods(TYPE_BASECLASS(t, ibase), name, | |
2e4964ad | 1538 | sym_arr + i1); |
bd5635a1 RP |
1539 | return i1; |
1540 | } | |
1541 | ||
6f87ec4a PS |
1542 | /* Helper function for decode_line_1. |
1543 | Build a canonical line spec in CANONICAL if it is non-NULL and if | |
1544 | the SAL has a symtab. | |
1545 | If SYMNAME is non-NULL the canonical line spec is `filename:symname'. | |
1546 | If SYMNAME is NULL the line number from SAL is used and the canonical | |
1547 | line spec is `filename:linenum'. */ | |
1548 | ||
1549 | static void | |
1550 | build_canonical_line_spec (sal, symname, canonical) | |
1551 | struct symtab_and_line *sal; | |
1552 | char *symname; | |
1553 | char ***canonical; | |
1554 | { | |
1555 | char **canonical_arr; | |
1556 | char *canonical_name; | |
1557 | char *filename; | |
1558 | struct symtab *s = sal->symtab; | |
1559 | ||
1560 | if (s == (struct symtab *)NULL | |
1561 | || s->filename == (char *)NULL | |
1562 | || canonical == (char ***)NULL) | |
1563 | return; | |
1564 | ||
1565 | canonical_arr = (char **) xmalloc (sizeof (char *)); | |
1566 | *canonical = canonical_arr; | |
1567 | ||
1568 | filename = s->filename; | |
1569 | if (symname != NULL) | |
1570 | { | |
1571 | canonical_name = xmalloc (strlen (filename) + strlen (symname) + 2); | |
1572 | sprintf (canonical_name, "%s:%s", filename, symname); | |
1573 | } | |
1574 | else | |
1575 | { | |
1576 | canonical_name = xmalloc (strlen (filename) + 30); | |
1577 | sprintf (canonical_name, "%s:%d", filename, sal->line); | |
1578 | } | |
1579 | canonical_arr[0] = canonical_name; | |
1580 | } | |
1581 | ||
bd5635a1 RP |
1582 | /* Parse a string that specifies a line number. |
1583 | Pass the address of a char * variable; that variable will be | |
1584 | advanced over the characters actually parsed. | |
1585 | ||
1586 | The string can be: | |
1587 | ||
1588 | LINENUM -- that line number in current file. PC returned is 0. | |
1589 | FILE:LINENUM -- that line in that file. PC returned is 0. | |
1590 | FUNCTION -- line number of openbrace of that function. | |
1591 | PC returned is the start of the function. | |
1592 | VARIABLE -- line number of definition of that variable. | |
1593 | PC returned is 0. | |
1594 | FILE:FUNCTION -- likewise, but prefer functions in that file. | |
1595 | *EXPR -- line in which address EXPR appears. | |
1596 | ||
cba0d141 | 1597 | FUNCTION may be an undebuggable function found in minimal symbol table. |
bd5635a1 RP |
1598 | |
1599 | If the argument FUNFIRSTLINE is nonzero, we want the first line | |
1600 | of real code inside a function when a function is specified. | |
1601 | ||
1602 | DEFAULT_SYMTAB specifies the file to use if none is specified. | |
1603 | It defaults to current_source_symtab. | |
1604 | DEFAULT_LINE specifies the line number to use for relative | |
1605 | line numbers (that start with signs). Defaults to current_source_line. | |
6f87ec4a PS |
1606 | If CANONICAL is non-NULL, store an array of strings containing the canonical |
1607 | line specs there if necessary. Currently overloaded member functions and | |
1608 | line numbers or static functions without a filename yield a canonical | |
1609 | line spec. The array and the line spec strings are allocated on the heap, | |
1610 | it is the callers responsibility to free them. | |
bd5635a1 RP |
1611 | |
1612 | Note that it is possible to return zero for the symtab | |
1613 | if no file is validly specified. Callers must check that. | |
1614 | Also, the line number returned may be invalid. */ | |
1615 | ||
1616 | struct symtabs_and_lines | |
6f87ec4a | 1617 | decode_line_1 (argptr, funfirstline, default_symtab, default_line, canonical) |
bd5635a1 RP |
1618 | char **argptr; |
1619 | int funfirstline; | |
1620 | struct symtab *default_symtab; | |
1621 | int default_line; | |
6f87ec4a | 1622 | char ***canonical; |
bd5635a1 | 1623 | { |
bd5635a1 | 1624 | struct symtabs_and_lines values; |
c1878f87 SG |
1625 | #ifdef HPPA_COMPILER_BUG |
1626 | /* FIXME: The native HP 9000/700 compiler has a bug which appears | |
1627 | when optimizing this file with target i960-vxworks. I haven't | |
1628 | been able to construct a simple test case. The problem is that | |
1629 | in the second call to SKIP_PROLOGUE below, the compiler somehow | |
1630 | does not realize that the statement val = find_pc_line (...) will | |
1631 | change the values of the fields of val. It extracts the elements | |
1632 | into registers at the top of the block, and does not update the | |
1633 | registers after the call to find_pc_line. You can check this by | |
1634 | inserting a printf at the end of find_pc_line to show what values | |
1635 | it is returning for val.pc and val.end and another printf after | |
1636 | the call to see what values the function actually got (remember, | |
1637 | this is compiling with cc -O, with this patch removed). You can | |
1638 | also examine the assembly listing: search for the second call to | |
1639 | skip_prologue; the LDO statement before the next call to | |
1640 | find_pc_line loads the address of the structure which | |
1641 | find_pc_line will return; if there is a LDW just before the LDO, | |
1642 | which fetches an element of the structure, then the compiler | |
1643 | still has the bug. | |
1644 | ||
1645 | Setting val to volatile avoids the problem. We must undef | |
1646 | volatile, because the HPPA native compiler does not define | |
1647 | __STDC__, although it does understand volatile, and so volatile | |
1648 | will have been defined away in defs.h. */ | |
1649 | #undef volatile | |
1650 | volatile struct symtab_and_line val; | |
1651 | #define volatile /*nothing*/ | |
1652 | #else | |
bd5635a1 | 1653 | struct symtab_and_line val; |
c1878f87 | 1654 | #endif |
bd5635a1 | 1655 | register char *p, *p1; |
d96b54ea | 1656 | char *q, *q1; |
bd5635a1 RP |
1657 | register struct symtab *s; |
1658 | ||
1659 | register struct symbol *sym; | |
1660 | /* The symtab that SYM was found in. */ | |
1661 | struct symtab *sym_symtab; | |
1662 | ||
1663 | register CORE_ADDR pc; | |
cba0d141 | 1664 | register struct minimal_symbol *msymbol; |
bd5635a1 RP |
1665 | char *copy; |
1666 | struct symbol *sym_class; | |
1667 | int i1; | |
8050a57b | 1668 | int is_quoted; |
bd5635a1 RP |
1669 | struct symbol **sym_arr; |
1670 | struct type *t; | |
f70be3e4 JG |
1671 | char *saved_arg = *argptr; |
1672 | extern char *gdb_completer_quote_characters; | |
bd5635a1 RP |
1673 | |
1674 | /* Defaults have defaults. */ | |
1675 | ||
1676 | if (default_symtab == 0) | |
1677 | { | |
1678 | default_symtab = current_source_symtab; | |
1679 | default_line = current_source_line; | |
1680 | } | |
1681 | ||
8050a57b | 1682 | /* See if arg is *PC */ |
bd5635a1 | 1683 | |
8050a57b | 1684 | if (**argptr == '*') |
f70be3e4 JG |
1685 | { |
1686 | if (**argptr == '*') | |
1687 | { | |
1688 | (*argptr)++; | |
1689 | } | |
bd5635a1 RP |
1690 | pc = parse_and_eval_address_1 (argptr); |
1691 | values.sals = (struct symtab_and_line *) | |
1692 | xmalloc (sizeof (struct symtab_and_line)); | |
1693 | values.nelts = 1; | |
1694 | values.sals[0] = find_pc_line (pc, 0); | |
1695 | values.sals[0].pc = pc; | |
6f87ec4a | 1696 | build_canonical_line_spec (values.sals, NULL, canonical); |
bd5635a1 RP |
1697 | return values; |
1698 | } | |
1699 | ||
1700 | /* Maybe arg is FILE : LINENUM or FILE : FUNCTION */ | |
1701 | ||
8050a57b FF |
1702 | s = NULL; |
1703 | is_quoted = (strchr (gdb_completer_quote_characters, **argptr) != NULL); | |
bd5635a1 RP |
1704 | |
1705 | for (p = *argptr; *p; p++) | |
1706 | { | |
1707 | if (p[0] == ':' || p[0] == ' ' || p[0] == '\t') | |
1708 | break; | |
1709 | } | |
1710 | while (p[0] == ' ' || p[0] == '\t') p++; | |
1711 | ||
8050a57b | 1712 | if ((p[0] == ':') && !is_quoted) |
bd5635a1 RP |
1713 | { |
1714 | ||
1715 | /* C++ */ | |
1716 | if (p[1] ==':') | |
1717 | { | |
1718 | /* Extract the class name. */ | |
1719 | p1 = p; | |
1720 | while (p != *argptr && p[-1] == ' ') --p; | |
1721 | copy = (char *) alloca (p - *argptr + 1); | |
4ed3a9ea | 1722 | memcpy (copy, *argptr, p - *argptr); |
bd5635a1 RP |
1723 | copy[p - *argptr] = 0; |
1724 | ||
1725 | /* Discard the class name from the arg. */ | |
1726 | p = p1 + 2; | |
1727 | while (*p == ' ' || *p == '\t') p++; | |
1728 | *argptr = p; | |
1729 | ||
1730 | sym_class = lookup_symbol (copy, 0, STRUCT_NAMESPACE, 0, | |
1731 | (struct symtab **)NULL); | |
1732 | ||
1733 | if (sym_class && | |
f1d77e90 | 1734 | ( TYPE_CODE (SYMBOL_TYPE (sym_class)) == TYPE_CODE_STRUCT |
bd5635a1 RP |
1735 | || TYPE_CODE (SYMBOL_TYPE (sym_class)) == TYPE_CODE_UNION)) |
1736 | { | |
1737 | /* Arg token is not digits => try it as a function name | |
1738 | Find the next token (everything up to end or next whitespace). */ | |
1739 | p = *argptr; | |
1740 | while (*p && *p != ' ' && *p != '\t' && *p != ',' && *p !=':') p++; | |
d96b54ea | 1741 | q = operator_chars (*argptr, &q1); |
aec4cb91 | 1742 | |
d96b54ea JK |
1743 | if (q1 - q) |
1744 | { | |
2cd99985 PB |
1745 | char *opname; |
1746 | char *tmp = alloca (q1 - q + 1); | |
1747 | memcpy (tmp, q, q1 - q); | |
1748 | tmp[q1 - q] = '\0'; | |
8050a57b | 1749 | opname = cplus_mangle_opname (tmp, DMGL_ANSI); |
2cd99985 | 1750 | if (opname == NULL) |
f70be3e4 JG |
1751 | { |
1752 | warning ("no mangling for \"%s\"", tmp); | |
1753 | cplusplus_hint (saved_arg); | |
f1ed4330 | 1754 | return_to_top_level (RETURN_ERROR); |
f70be3e4 | 1755 | } |
2cd99985 PB |
1756 | copy = (char*) alloca (3 + strlen(opname)); |
1757 | sprintf (copy, "__%s", opname); | |
d96b54ea JK |
1758 | p = q1; |
1759 | } | |
1760 | else | |
1761 | { | |
2cd99985 | 1762 | copy = (char *) alloca (p - *argptr + 1 + (q1 - q)); |
4ed3a9ea | 1763 | memcpy (copy, *argptr, p - *argptr); |
d96b54ea JK |
1764 | copy[p - *argptr] = '\0'; |
1765 | } | |
bd5635a1 RP |
1766 | |
1767 | /* no line number may be specified */ | |
1768 | while (*p == ' ' || *p == '\t') p++; | |
1769 | *argptr = p; | |
1770 | ||
1771 | sym = 0; | |
1772 | i1 = 0; /* counter for the symbol array */ | |
1773 | t = SYMBOL_TYPE (sym_class); | |
1774 | sym_arr = (struct symbol **) alloca(TYPE_NFN_FIELDS_TOTAL (t) * sizeof(struct symbol*)); | |
bd5635a1 | 1775 | |
018ab14f PS |
1776 | /* Cfront objects don't have fieldlists. */ |
1777 | if (destructor_name_p (copy, t) && TYPE_FN_FIELDLISTS (t) != NULL) | |
bd5635a1 RP |
1778 | { |
1779 | /* destructors are a special case. */ | |
1780 | struct fn_field *f = TYPE_FN_FIELDLIST1 (t, 0); | |
1781 | int len = TYPE_FN_FIELDLIST_LENGTH (t, 0) - 1; | |
ca6a826d PS |
1782 | /* gcc 1.x puts destructor in last field, |
1783 | gcc 2.x puts destructor in first field. */ | |
bd5635a1 | 1784 | char *phys_name = TYPE_FN_FIELD_PHYSNAME (f, len); |
ca6a826d PS |
1785 | if (!DESTRUCTOR_PREFIX_P (phys_name)) |
1786 | { | |
1787 | phys_name = TYPE_FN_FIELD_PHYSNAME (f, 0); | |
1788 | if (!DESTRUCTOR_PREFIX_P (phys_name)) | |
1789 | phys_name = ""; | |
1790 | } | |
bd5635a1 RP |
1791 | sym_arr[i1] = |
1792 | lookup_symbol (phys_name, SYMBOL_BLOCK_VALUE (sym_class), | |
1793 | VAR_NAMESPACE, 0, (struct symtab **)NULL); | |
1794 | if (sym_arr[i1]) i1++; | |
1795 | } | |
1796 | else | |
2e4964ad | 1797 | i1 = find_methods (t, copy, sym_arr); |
bd5635a1 RP |
1798 | if (i1 == 1) |
1799 | { | |
1800 | /* There is exactly one field with that name. */ | |
1801 | sym = sym_arr[0]; | |
1802 | ||
1803 | if (sym && SYMBOL_CLASS (sym) == LOC_BLOCK) | |
1804 | { | |
1805 | /* Arg is the name of a function */ | |
1806 | pc = BLOCK_START (SYMBOL_BLOCK_VALUE (sym)) + FUNCTION_START_OFFSET; | |
1807 | if (funfirstline) | |
1808 | SKIP_PROLOGUE (pc); | |
1809 | values.sals = (struct symtab_and_line *)xmalloc (sizeof (struct symtab_and_line)); | |
1810 | values.nelts = 1; | |
1811 | values.sals[0] = find_pc_line (pc, 0); | |
1812 | values.sals[0].pc = (values.sals[0].end && values.sals[0].pc != pc) ? values.sals[0].end : pc; | |
1813 | } | |
1814 | else | |
1815 | { | |
1816 | values.nelts = 0; | |
1817 | } | |
1818 | return values; | |
1819 | } | |
1820 | if (i1 > 0) | |
1821 | { | |
1822 | /* There is more than one field with that name | |
1823 | (overloaded). Ask the user which one to use. */ | |
6f87ec4a | 1824 | return decode_line_2 (sym_arr, i1, funfirstline, canonical); |
bd5635a1 RP |
1825 | } |
1826 | else | |
d96b54ea JK |
1827 | { |
1828 | char *tmp; | |
1829 | ||
1830 | if (OPNAME_PREFIX_P (copy)) | |
1831 | { | |
1832 | tmp = (char *)alloca (strlen (copy+3) + 9); | |
1833 | strcpy (tmp, "operator "); | |
1834 | strcat (tmp, copy+3); | |
1835 | } | |
1836 | else | |
1837 | tmp = copy; | |
0e2a896c | 1838 | if (tmp[0] == '~') |
f70be3e4 | 1839 | warning ("the class `%s' does not have destructor defined", |
2e4964ad | 1840 | SYMBOL_SOURCE_NAME(sym_class)); |
0e2a896c | 1841 | else |
f70be3e4 | 1842 | warning ("the class %s does not have any method named %s", |
2e4964ad | 1843 | SYMBOL_SOURCE_NAME(sym_class), tmp); |
f70be3e4 | 1844 | cplusplus_hint (saved_arg); |
f1ed4330 | 1845 | return_to_top_level (RETURN_ERROR); |
d96b54ea | 1846 | } |
bd5635a1 RP |
1847 | } |
1848 | else | |
f70be3e4 JG |
1849 | { |
1850 | /* The quotes are important if copy is empty. */ | |
1851 | warning ("can't find class, struct, or union named \"%s\"", | |
1852 | copy); | |
1853 | cplusplus_hint (saved_arg); | |
f1ed4330 | 1854 | return_to_top_level (RETURN_ERROR); |
f70be3e4 | 1855 | } |
bd5635a1 RP |
1856 | } |
1857 | /* end of C++ */ | |
1858 | ||
1859 | ||
1860 | /* Extract the file name. */ | |
1861 | p1 = p; | |
1862 | while (p != *argptr && p[-1] == ' ') --p; | |
58050209 | 1863 | copy = (char *) alloca (p - *argptr + 1); |
4ed3a9ea | 1864 | memcpy (copy, *argptr, p - *argptr); |
58050209 | 1865 | copy[p - *argptr] = 0; |
bd5635a1 RP |
1866 | |
1867 | /* Find that file's data. */ | |
1868 | s = lookup_symtab (copy); | |
1869 | if (s == 0) | |
1870 | { | |
cba0d141 | 1871 | if (!have_full_symbols () && !have_partial_symbols ()) |
bd5635a1 RP |
1872 | error (no_symtab_msg); |
1873 | error ("No source file named %s.", copy); | |
1874 | } | |
1875 | ||
1876 | /* Discard the file name from the arg. */ | |
1877 | p = p1 + 1; | |
1878 | while (*p == ' ' || *p == '\t') p++; | |
1879 | *argptr = p; | |
1880 | } | |
1881 | ||
1882 | /* S is specified file's symtab, or 0 if no file specified. | |
1883 | arg no longer contains the file name. */ | |
1884 | ||
1885 | /* Check whether arg is all digits (and sign) */ | |
1886 | ||
1887 | p = *argptr; | |
1888 | if (*p == '-' || *p == '+') p++; | |
1889 | while (*p >= '0' && *p <= '9') | |
1890 | p++; | |
1891 | ||
1892 | if (p != *argptr && (*p == 0 || *p == ' ' || *p == '\t' || *p == ',')) | |
1893 | { | |
1894 | /* We found a token consisting of all digits -- at least one digit. */ | |
1895 | enum sign {none, plus, minus} sign = none; | |
1896 | ||
6f87ec4a PS |
1897 | /* We might need a canonical line spec if no file was specified. */ |
1898 | int need_canonical = (s == 0) ? 1 : 0; | |
1899 | ||
bd5635a1 RP |
1900 | /* This is where we need to make sure that we have good defaults. |
1901 | We must guarantee that this section of code is never executed | |
1902 | when we are called with just a function name, since | |
1903 | select_source_symtab calls us with such an argument */ | |
1904 | ||
1905 | if (s == 0 && default_symtab == 0) | |
1906 | { | |
bd5635a1 RP |
1907 | select_source_symtab (0); |
1908 | default_symtab = current_source_symtab; | |
1909 | default_line = current_source_line; | |
1910 | } | |
1911 | ||
1912 | if (**argptr == '+') | |
1913 | sign = plus, (*argptr)++; | |
1914 | else if (**argptr == '-') | |
1915 | sign = minus, (*argptr)++; | |
1916 | val.line = atoi (*argptr); | |
1917 | switch (sign) | |
1918 | { | |
1919 | case plus: | |
1920 | if (p == *argptr) | |
1921 | val.line = 5; | |
1922 | if (s == 0) | |
1923 | val.line = default_line + val.line; | |
1924 | break; | |
1925 | case minus: | |
1926 | if (p == *argptr) | |
1927 | val.line = 15; | |
1928 | if (s == 0) | |
1929 | val.line = default_line - val.line; | |
1930 | else | |
1931 | val.line = 1; | |
1932 | break; | |
1933 | case none: | |
1934 | break; /* No need to adjust val.line. */ | |
1935 | } | |
1936 | ||
1937 | while (*p == ' ' || *p == '\t') p++; | |
1938 | *argptr = p; | |
1939 | if (s == 0) | |
1940 | s = default_symtab; | |
1941 | val.symtab = s; | |
1942 | val.pc = 0; | |
1943 | values.sals = (struct symtab_and_line *)xmalloc (sizeof (struct symtab_and_line)); | |
1944 | values.sals[0] = val; | |
1945 | values.nelts = 1; | |
6f87ec4a PS |
1946 | if (need_canonical) |
1947 | build_canonical_line_spec (values.sals, NULL, canonical); | |
bd5635a1 RP |
1948 | return values; |
1949 | } | |
1950 | ||
1951 | /* Arg token is not digits => try it as a variable name | |
1952 | Find the next token (everything up to end or next whitespace). */ | |
2cd99985 | 1953 | |
f70be3e4 | 1954 | p = skip_quoted (*argptr); |
018ab14f PS |
1955 | if (is_quoted && p[-1] != '\'') |
1956 | error ("Unmatched single quote."); | |
bd5635a1 | 1957 | copy = (char *) alloca (p - *argptr + 1); |
4ed3a9ea | 1958 | memcpy (copy, *argptr, p - *argptr); |
f70be3e4 JG |
1959 | copy[p - *argptr] = '\0'; |
1960 | if ((copy[0] == copy [p - *argptr - 1]) | |
1961 | && strchr (gdb_completer_quote_characters, copy[0]) != NULL) | |
1962 | { | |
f70be3e4 JG |
1963 | copy [p - *argptr - 1] = '\0'; |
1964 | copy++; | |
f70be3e4 | 1965 | } |
bd5635a1 RP |
1966 | while (*p == ' ' || *p == '\t') p++; |
1967 | *argptr = p; | |
1968 | ||
1969 | /* Look up that token as a variable. | |
1970 | If file specified, use that file's per-file block to start with. */ | |
1971 | ||
1972 | sym = lookup_symbol (copy, | |
3ba6a043 | 1973 | (s ? BLOCKVECTOR_BLOCK (BLOCKVECTOR (s), STATIC_BLOCK) |
bd5635a1 RP |
1974 | : get_selected_block ()), |
1975 | VAR_NAMESPACE, 0, &sym_symtab); | |
1976 | ||
1977 | if (sym != NULL) | |
1978 | { | |
1979 | if (SYMBOL_CLASS (sym) == LOC_BLOCK) | |
1980 | { | |
1981 | /* Arg is the name of a function */ | |
1982 | pc = BLOCK_START (SYMBOL_BLOCK_VALUE (sym)) + FUNCTION_START_OFFSET; | |
1983 | if (funfirstline) | |
1984 | SKIP_PROLOGUE (pc); | |
1985 | val = find_pc_line (pc, 0); | |
1986 | #ifdef PROLOGUE_FIRSTLINE_OVERLAP | |
1987 | /* Convex: no need to suppress code on first line, if any */ | |
1988 | val.pc = pc; | |
1989 | #else | |
f1ed4330 JK |
1990 | /* Check if SKIP_PROLOGUE left us in mid-line, and the next |
1991 | line is still part of the same function. */ | |
1992 | if (val.pc != pc | |
1993 | && BLOCK_START (SYMBOL_BLOCK_VALUE (sym)) <= val.end | |
1994 | && val.end < BLOCK_END (SYMBOL_BLOCK_VALUE (sym))) | |
1995 | { | |
1996 | /* First pc of next line */ | |
1997 | pc = val.end; | |
1998 | /* Recalculate the line number (might not be N+1). */ | |
1999 | val = find_pc_line (pc, 0); | |
2000 | } | |
7b2a87ca | 2001 | val.pc = pc; |
bd5635a1 RP |
2002 | #endif |
2003 | values.sals = (struct symtab_and_line *)xmalloc (sizeof (struct symtab_and_line)); | |
2004 | values.sals[0] = val; | |
2005 | values.nelts = 1; | |
2006 | ||
2007 | /* I think this is always the same as the line that | |
2008 | we calculate above, but the general principle is | |
2009 | "trust the symbols more than stuff like | |
2010 | SKIP_PROLOGUE". */ | |
2011 | if (SYMBOL_LINE (sym) != 0) | |
2012 | values.sals[0].line = SYMBOL_LINE (sym); | |
6f87ec4a PS |
2013 | |
2014 | /* We might need a canonical line spec if it is a static function. */ | |
2015 | if (s == 0) | |
2016 | { | |
2017 | struct blockvector *bv = BLOCKVECTOR (sym_symtab); | |
2018 | struct block *b = BLOCKVECTOR_BLOCK (bv, STATIC_BLOCK); | |
2019 | if (lookup_block_symbol (b, copy, VAR_NAMESPACE) != NULL) | |
2020 | build_canonical_line_spec (values.sals, copy, canonical); | |
2021 | } | |
bd5635a1 RP |
2022 | return values; |
2023 | } | |
2024 | else if (SYMBOL_LINE (sym) != 0) | |
2025 | { | |
2026 | /* We know its line number. */ | |
2027 | values.sals = (struct symtab_and_line *) | |
2028 | xmalloc (sizeof (struct symtab_and_line)); | |
2029 | values.nelts = 1; | |
4ed3a9ea | 2030 | memset (&values.sals[0], 0, sizeof (values.sals[0])); |
bd5635a1 RP |
2031 | values.sals[0].symtab = sym_symtab; |
2032 | values.sals[0].line = SYMBOL_LINE (sym); | |
2033 | return values; | |
2034 | } | |
2035 | else | |
2036 | /* This can happen if it is compiled with a compiler which doesn't | |
2037 | put out line numbers for variables. */ | |
f1ed4330 JK |
2038 | /* FIXME: Shouldn't we just set .line and .symtab to zero and |
2039 | return? For example, "info line foo" could print the address. */ | |
bd5635a1 RP |
2040 | error ("Line number not known for symbol \"%s\"", copy); |
2041 | } | |
2042 | ||
cba0d141 JG |
2043 | msymbol = lookup_minimal_symbol (copy, (struct objfile *) NULL); |
2044 | if (msymbol != NULL) | |
bd5635a1 RP |
2045 | { |
2046 | val.symtab = 0; | |
2047 | val.line = 0; | |
2e4964ad | 2048 | val.pc = SYMBOL_VALUE_ADDRESS (msymbol) + FUNCTION_START_OFFSET; |
bd5635a1 RP |
2049 | if (funfirstline) |
2050 | SKIP_PROLOGUE (val.pc); | |
2051 | values.sals = (struct symtab_and_line *)xmalloc (sizeof (struct symtab_and_line)); | |
2052 | values.sals[0] = val; | |
2053 | values.nelts = 1; | |
2054 | return values; | |
2055 | } | |
2056 | ||
cba0d141 JG |
2057 | if (!have_full_symbols () && |
2058 | !have_partial_symbols () && !have_minimal_symbols ()) | |
997a978c JG |
2059 | error (no_symtab_msg); |
2060 | ||
f70be3e4 | 2061 | error ("Function \"%s\" not defined.", copy); |
bd5635a1 RP |
2062 | return values; /* for lint */ |
2063 | } | |
2064 | ||
2065 | struct symtabs_and_lines | |
2066 | decode_line_spec (string, funfirstline) | |
2067 | char *string; | |
2068 | int funfirstline; | |
2069 | { | |
2070 | struct symtabs_and_lines sals; | |
2071 | if (string == 0) | |
2072 | error ("Empty line specification."); | |
2073 | sals = decode_line_1 (&string, funfirstline, | |
6f87ec4a PS |
2074 | current_source_symtab, current_source_line, |
2075 | (char ***)NULL); | |
bd5635a1 RP |
2076 | if (*string) |
2077 | error ("Junk at end of line specification: %s", string); | |
2078 | return sals; | |
2079 | } | |
2080 | ||
6f87ec4a PS |
2081 | /* Given a list of NELTS symbols in SYM_ARR, return a list of lines to |
2082 | operate on (ask user if necessary). | |
2083 | If CANONICAL is non-NULL return a corresponding array of mangled names | |
2084 | as canonical line specs there. */ | |
2e4964ad | 2085 | |
cba0d141 | 2086 | static struct symtabs_and_lines |
6f87ec4a | 2087 | decode_line_2 (sym_arr, nelts, funfirstline, canonical) |
bd5635a1 RP |
2088 | struct symbol *sym_arr[]; |
2089 | int nelts; | |
2090 | int funfirstline; | |
6f87ec4a | 2091 | char ***canonical; |
bd5635a1 | 2092 | { |
bd5635a1 RP |
2093 | struct symtabs_and_lines values, return_values; |
2094 | register CORE_ADDR pc; | |
cba0d141 | 2095 | char *args, *arg1; |
bd5635a1 RP |
2096 | int i; |
2097 | char *prompt; | |
2e4964ad | 2098 | char *symname; |
6f87ec4a PS |
2099 | struct cleanup *old_chain; |
2100 | char **canonical_arr = (char **)NULL; | |
bd5635a1 RP |
2101 | |
2102 | values.sals = (struct symtab_and_line *) alloca (nelts * sizeof(struct symtab_and_line)); | |
2103 | return_values.sals = (struct symtab_and_line *) xmalloc (nelts * sizeof(struct symtab_and_line)); | |
6f87ec4a PS |
2104 | old_chain = make_cleanup (free, return_values.sals); |
2105 | ||
2106 | if (canonical) | |
2107 | { | |
2108 | canonical_arr = (char **) xmalloc (nelts * sizeof (char *)); | |
2109 | make_cleanup (free, canonical_arr); | |
2110 | memset (canonical_arr, 0, nelts * sizeof (char *)); | |
2111 | *canonical = canonical_arr; | |
2112 | } | |
bd5635a1 RP |
2113 | |
2114 | i = 0; | |
2115 | printf("[0] cancel\n[1] all\n"); | |
2116 | while (i < nelts) | |
2117 | { | |
2118 | if (sym_arr[i] && SYMBOL_CLASS (sym_arr[i]) == LOC_BLOCK) | |
2119 | { | |
2120 | /* Arg is the name of a function */ | |
2121 | pc = BLOCK_START (SYMBOL_BLOCK_VALUE (sym_arr[i])) | |
2122 | + FUNCTION_START_OFFSET; | |
2123 | if (funfirstline) | |
2124 | SKIP_PROLOGUE (pc); | |
2125 | values.sals[i] = find_pc_line (pc, 0); | |
2126 | values.sals[i].pc = (values.sals[i].end && values.sals[i].pc != pc) ? | |
2127 | values.sals[i].end : pc; | |
2e4964ad | 2128 | printf("[%d] %s at %s:%d\n", (i+2), SYMBOL_SOURCE_NAME (sym_arr[i]), |
8050a57b | 2129 | values.sals[i].symtab->filename, values.sals[i].line); |
bd5635a1 RP |
2130 | } |
2131 | else printf ("?HERE\n"); | |
2132 | i++; | |
2133 | } | |
2134 | ||
2135 | if ((prompt = getenv ("PS2")) == NULL) | |
2136 | { | |
2137 | prompt = ">"; | |
2138 | } | |
2139 | printf("%s ",prompt); | |
2140 | fflush(stdout); | |
2141 | ||
cba0d141 | 2142 | args = command_line_input ((char *) NULL, 0); |
bd5635a1 | 2143 | |
6f87ec4a | 2144 | if (args == 0 || *args == 0) |
bd5635a1 RP |
2145 | error_no_arg ("one or more choice numbers"); |
2146 | ||
2147 | i = 0; | |
2148 | while (*args) | |
2149 | { | |
2150 | int num; | |
2151 | ||
2152 | arg1 = args; | |
2153 | while (*arg1 >= '0' && *arg1 <= '9') arg1++; | |
2154 | if (*arg1 && *arg1 != ' ' && *arg1 != '\t') | |
2155 | error ("Arguments must be choice numbers."); | |
2156 | ||
2157 | num = atoi (args); | |
2158 | ||
2159 | if (num == 0) | |
2160 | error ("cancelled"); | |
2161 | else if (num == 1) | |
2162 | { | |
6f87ec4a PS |
2163 | if (canonical_arr) |
2164 | { | |
2165 | for (i = 0; i < nelts; i++) | |
2166 | { | |
2167 | if (canonical_arr[i] == NULL) | |
2168 | { | |
2169 | symname = SYMBOL_NAME (sym_arr[i]); | |
2170 | canonical_arr[i] = savestring (symname, strlen (symname)); | |
2171 | } | |
2172 | } | |
2173 | } | |
4ed3a9ea FF |
2174 | memcpy (return_values.sals, values.sals, |
2175 | (nelts * sizeof(struct symtab_and_line))); | |
bd5635a1 | 2176 | return_values.nelts = nelts; |
6f87ec4a | 2177 | discard_cleanups (old_chain); |
bd5635a1 RP |
2178 | return return_values; |
2179 | } | |
2180 | ||
2181 | if (num > nelts + 2) | |
2182 | { | |
2183 | printf ("No choice number %d.\n", num); | |
2184 | } | |
2185 | else | |
2186 | { | |
2187 | num -= 2; | |
2188 | if (values.sals[num].pc) | |
2189 | { | |
6f87ec4a PS |
2190 | if (canonical_arr) |
2191 | { | |
2192 | symname = SYMBOL_NAME (sym_arr[num]); | |
2193 | make_cleanup (free, symname); | |
2194 | canonical_arr[i] = savestring (symname, strlen (symname)); | |
2195 | } | |
bd5635a1 RP |
2196 | return_values.sals[i++] = values.sals[num]; |
2197 | values.sals[num].pc = 0; | |
2198 | } | |
2199 | else | |
2200 | { | |
2201 | printf ("duplicate request for %d ignored.\n", num); | |
2202 | } | |
2203 | } | |
2204 | ||
2205 | args = arg1; | |
2206 | while (*args == ' ' || *args == '\t') args++; | |
2207 | } | |
2208 | return_values.nelts = i; | |
6f87ec4a | 2209 | discard_cleanups (old_chain); |
bd5635a1 RP |
2210 | return return_values; |
2211 | } | |
2212 | ||
bd5635a1 RP |
2213 | \f |
2214 | /* Slave routine for sources_info. Force line breaks at ,'s. | |
2215 | NAME is the name to print and *FIRST is nonzero if this is the first | |
2216 | name printed. Set *FIRST to zero. */ | |
2217 | static void | |
2218 | output_source_filename (name, first) | |
2219 | char *name; | |
2220 | int *first; | |
2221 | { | |
bd5635a1 RP |
2222 | /* Table of files printed so far. Since a single source file can |
2223 | result in several partial symbol tables, we need to avoid printing | |
2224 | it more than once. Note: if some of the psymtabs are read in and | |
2225 | some are not, it gets printed both under "Source files for which | |
2226 | symbols have been read" and "Source files for which symbols will | |
2227 | be read in on demand". I consider this a reasonable way to deal | |
2228 | with the situation. I'm not sure whether this can also happen for | |
2229 | symtabs; it doesn't hurt to check. */ | |
2230 | static char **tab = NULL; | |
2231 | /* Allocated size of tab in elements. | |
2232 | Start with one 256-byte block (when using GNU malloc.c). | |
2233 | 24 is the malloc overhead when range checking is in effect. */ | |
2234 | static int tab_alloc_size = (256 - 24) / sizeof (char *); | |
2235 | /* Current size of tab in elements. */ | |
2236 | static int tab_cur_size; | |
2237 | ||
2238 | char **p; | |
2239 | ||
2240 | if (*first) | |
2241 | { | |
2242 | if (tab == NULL) | |
2243 | tab = (char **) xmalloc (tab_alloc_size * sizeof (*tab)); | |
2244 | tab_cur_size = 0; | |
2245 | } | |
2246 | ||
2247 | /* Is NAME in tab? */ | |
2248 | for (p = tab; p < tab + tab_cur_size; p++) | |
2e4964ad | 2249 | if (STREQ (*p, name)) |
bd5635a1 RP |
2250 | /* Yes; don't print it again. */ |
2251 | return; | |
2252 | /* No; add it to tab. */ | |
2253 | if (tab_cur_size == tab_alloc_size) | |
2254 | { | |
2255 | tab_alloc_size *= 2; | |
cba0d141 | 2256 | tab = (char **) xrealloc ((char *) tab, tab_alloc_size * sizeof (*tab)); |
bd5635a1 RP |
2257 | } |
2258 | tab[tab_cur_size++] = name; | |
2259 | ||
2260 | if (*first) | |
2261 | { | |
bd5635a1 RP |
2262 | *first = 0; |
2263 | } | |
2264 | else | |
2265 | { | |
f70be3e4 | 2266 | printf_filtered (", "); |
bd5635a1 RP |
2267 | } |
2268 | ||
f70be3e4 | 2269 | wrap_here (""); |
bd5635a1 | 2270 | fputs_filtered (name, stdout); |
bd5635a1 RP |
2271 | } |
2272 | ||
2273 | static void | |
35a25840 SG |
2274 | sources_info (ignore, from_tty) |
2275 | char *ignore; | |
2276 | int from_tty; | |
bd5635a1 RP |
2277 | { |
2278 | register struct symtab *s; | |
2279 | register struct partial_symtab *ps; | |
cba0d141 | 2280 | register struct objfile *objfile; |
bd5635a1 RP |
2281 | int first; |
2282 | ||
cba0d141 | 2283 | if (!have_full_symbols () && !have_partial_symbols ()) |
bd5635a1 | 2284 | { |
3053b9f2 | 2285 | error (no_symtab_msg); |
bd5635a1 RP |
2286 | } |
2287 | ||
2288 | printf_filtered ("Source files for which symbols have been read in:\n\n"); | |
2289 | ||
2290 | first = 1; | |
35a25840 | 2291 | ALL_SYMTABS (objfile, s) |
cba0d141 | 2292 | { |
35a25840 | 2293 | output_source_filename (s -> filename, &first); |
cba0d141 | 2294 | } |
bd5635a1 RP |
2295 | printf_filtered ("\n\n"); |
2296 | ||
2297 | printf_filtered ("Source files for which symbols will be read in on demand:\n\n"); | |
2298 | ||
2299 | first = 1; | |
35a25840 | 2300 | ALL_PSYMTABS (objfile, ps) |
cba0d141 | 2301 | { |
35a25840 | 2302 | if (!ps->readin) |
cba0d141 | 2303 | { |
35a25840 | 2304 | output_source_filename (ps -> filename, &first); |
cba0d141 JG |
2305 | } |
2306 | } | |
bd5635a1 RP |
2307 | printf_filtered ("\n"); |
2308 | } | |
2309 | ||
2e4964ad | 2310 | /* List all symbols (if REGEXP is NULL) or all symbols matching REGEXP. |
3a16d640 JG |
2311 | If CLASS is zero, list all symbols except functions, type names, and |
2312 | constants (enums). | |
bd5635a1 RP |
2313 | If CLASS is 1, list only functions. |
2314 | If CLASS is 2, list only type names. | |
997a978c | 2315 | If CLASS is 3, list only method names. |
bd5635a1 RP |
2316 | |
2317 | BPT is non-zero if we should set a breakpoint at the functions | |
2318 | we find. */ | |
2319 | ||
2320 | static void | |
2321 | list_symbols (regexp, class, bpt) | |
2322 | char *regexp; | |
2323 | int class; | |
2324 | int bpt; | |
2325 | { | |
2326 | register struct symtab *s; | |
2327 | register struct partial_symtab *ps; | |
2328 | register struct blockvector *bv; | |
2329 | struct blockvector *prev_bv = 0; | |
2330 | register struct block *b; | |
2331 | register int i, j; | |
2332 | register struct symbol *sym; | |
2333 | struct partial_symbol *psym; | |
cba0d141 JG |
2334 | struct objfile *objfile; |
2335 | struct minimal_symbol *msymbol; | |
35a25840 | 2336 | char *val; |
bd5635a1 RP |
2337 | static char *classnames[] |
2338 | = {"variable", "function", "type", "method"}; | |
2339 | int found_in_file = 0; | |
997a978c | 2340 | int found_misc = 0; |
cba0d141 JG |
2341 | static enum minimal_symbol_type types[] |
2342 | = {mst_data, mst_text, mst_abs, mst_unknown}; | |
2343 | static enum minimal_symbol_type types2[] | |
2344 | = {mst_bss, mst_text, mst_abs, mst_unknown}; | |
2345 | enum minimal_symbol_type ourtype = types[class]; | |
2346 | enum minimal_symbol_type ourtype2 = types2[class]; | |
bd5635a1 | 2347 | |
2e4964ad | 2348 | if (regexp != NULL) |
2cd99985 PB |
2349 | { |
2350 | /* Make sure spacing is right for C++ operators. | |
2351 | This is just a courtesy to make the matching less sensitive | |
2352 | to how many spaces the user leaves between 'operator' | |
2353 | and <TYPENAME> or <OPERATOR>. */ | |
2354 | char *opend; | |
2355 | char *opname = operator_chars (regexp, &opend); | |
2356 | if (*opname) | |
2357 | { | |
2358 | int fix = -1; /* -1 means ok; otherwise number of spaces needed. */ | |
2359 | if (isalpha(*opname) || *opname == '_' || *opname == '$') | |
2360 | { | |
2361 | /* There should 1 space between 'operator' and 'TYPENAME'. */ | |
2362 | if (opname[-1] != ' ' || opname[-2] == ' ') | |
2363 | fix = 1; | |
2364 | } | |
2365 | else | |
2366 | { | |
2367 | /* There should 0 spaces between 'operator' and 'OPERATOR'. */ | |
2368 | if (opname[-1] == ' ') | |
2369 | fix = 0; | |
2370 | } | |
2371 | /* If wrong number of spaces, fix it. */ | |
2372 | if (fix >= 0) | |
2373 | { | |
2374 | char *tmp = (char*) alloca(opend-opname+10); | |
2375 | sprintf(tmp, "operator%.*s%s", fix, " ", opname); | |
2376 | regexp = tmp; | |
2377 | } | |
2378 | } | |
2379 | ||
2380 | if (0 != (val = re_comp (regexp))) | |
2381 | error ("Invalid regexp (%s): %s", val, regexp); | |
2382 | } | |
bd5635a1 | 2383 | |
cba0d141 | 2384 | /* Search through the partial symtabs *first* for all symbols |
bd5635a1 RP |
2385 | matching the regexp. That way we don't have to reproduce all of |
2386 | the machinery below. */ | |
bd5635a1 | 2387 | |
35a25840 | 2388 | ALL_PSYMTABS (objfile, ps) |
cba0d141 | 2389 | { |
35a25840 SG |
2390 | struct partial_symbol *bound, *gbound, *sbound; |
2391 | int keep_going = 1; | |
2392 | ||
2393 | if (ps->readin) continue; | |
2394 | ||
2395 | gbound = objfile->global_psymbols.list + ps->globals_offset + ps->n_global_syms; | |
2396 | sbound = objfile->static_psymbols.list + ps->statics_offset + ps->n_static_syms; | |
2397 | bound = gbound; | |
2398 | ||
2399 | /* Go through all of the symbols stored in a partial | |
2400 | symtab in one loop. */ | |
2401 | psym = objfile->global_psymbols.list + ps->globals_offset; | |
2402 | while (keep_going) | |
bd5635a1 | 2403 | { |
35a25840 | 2404 | if (psym >= bound) |
bd5635a1 | 2405 | { |
35a25840 | 2406 | if (bound == gbound && ps->n_static_syms != 0) |
bd5635a1 | 2407 | { |
35a25840 SG |
2408 | psym = objfile->static_psymbols.list + ps->statics_offset; |
2409 | bound = sbound; | |
bd5635a1 RP |
2410 | } |
2411 | else | |
35a25840 SG |
2412 | keep_going = 0; |
2413 | continue; | |
2414 | } | |
2415 | else | |
2416 | { | |
2417 | QUIT; | |
2418 | ||
2419 | /* If it would match (logic taken from loop below) | |
2420 | load the file and go on to the next one */ | |
2e4964ad | 2421 | if ((regexp == NULL || SYMBOL_MATCHES_REGEXP (psym)) |
35a25840 SG |
2422 | && ((class == 0 && SYMBOL_CLASS (psym) != LOC_TYPEDEF |
2423 | && SYMBOL_CLASS (psym) != LOC_BLOCK) | |
2424 | || (class == 1 && SYMBOL_CLASS (psym) == LOC_BLOCK) | |
2425 | || (class == 2 && SYMBOL_CLASS (psym) == LOC_TYPEDEF) | |
2426 | || (class == 3 && SYMBOL_CLASS (psym) == LOC_BLOCK))) | |
bd5635a1 | 2427 | { |
4ed3a9ea | 2428 | PSYMTAB_TO_SYMTAB(ps); |
35a25840 | 2429 | keep_going = 0; |
bd5635a1 RP |
2430 | } |
2431 | } | |
35a25840 | 2432 | psym++; |
bd5635a1 RP |
2433 | } |
2434 | } | |
2435 | ||
cba0d141 | 2436 | /* Here, we search through the minimal symbol tables for functions that |
bd5635a1 RP |
2437 | match, and call find_pc_symtab on them to force their symbols to |
2438 | be read. The symbol will then be found during the scan of symtabs | |
997a978c JG |
2439 | below. If find_pc_symtab fails, set found_misc so that we will |
2440 | rescan to print any matching symbols without debug info. */ | |
2441 | ||
cba0d141 JG |
2442 | if (class == 1) |
2443 | { | |
35a25840 | 2444 | ALL_MSYMBOLS (objfile, msymbol) |
cba0d141 | 2445 | { |
2e4964ad FF |
2446 | if (MSYMBOL_TYPE (msymbol) == ourtype || |
2447 | MSYMBOL_TYPE (msymbol) == ourtype2) | |
cba0d141 | 2448 | { |
2e4964ad | 2449 | if (regexp == NULL || SYMBOL_MATCHES_REGEXP (msymbol)) |
cba0d141 | 2450 | { |
2e4964ad | 2451 | if (0 == find_pc_symtab (SYMBOL_VALUE_ADDRESS (msymbol))) |
cba0d141 | 2452 | { |
35a25840 | 2453 | found_misc = 1; |
cba0d141 JG |
2454 | } |
2455 | } | |
2456 | } | |
2457 | } | |
bd5635a1 RP |
2458 | } |
2459 | ||
2460 | /* Printout here so as to get after the "Reading in symbols" | |
2461 | messages which will be generated above. */ | |
2462 | if (!bpt) | |
2463 | printf_filtered (regexp | |
2464 | ? "All %ss matching regular expression \"%s\":\n" | |
2465 | : "All defined %ss:\n", | |
2466 | classnames[class], | |
2467 | regexp); | |
2468 | ||
35a25840 | 2469 | ALL_SYMTABS (objfile, s) |
bd5635a1 | 2470 | { |
35a25840 SG |
2471 | found_in_file = 0; |
2472 | bv = BLOCKVECTOR (s); | |
2473 | /* Often many files share a blockvector. | |
2474 | Scan each blockvector only once so that | |
2475 | we don't get every symbol many times. | |
2476 | It happens that the first symtab in the list | |
2477 | for any given blockvector is the main file. */ | |
2478 | if (bv != prev_bv) | |
2479 | for (i = GLOBAL_BLOCK; i <= STATIC_BLOCK; i++) | |
2480 | { | |
2481 | b = BLOCKVECTOR_BLOCK (bv, i); | |
2482 | /* Skip the sort if this block is always sorted. */ | |
2483 | if (!BLOCK_SHOULD_SORT (b)) | |
2484 | sort_block_syms (b); | |
2485 | for (j = 0; j < BLOCK_NSYMS (b); j++) | |
bd5635a1 | 2486 | { |
35a25840 SG |
2487 | QUIT; |
2488 | sym = BLOCK_SYM (b, j); | |
2e4964ad | 2489 | if ((regexp == NULL || SYMBOL_MATCHES_REGEXP (sym)) |
35a25840 | 2490 | && ((class == 0 && SYMBOL_CLASS (sym) != LOC_TYPEDEF |
3a16d640 JG |
2491 | && SYMBOL_CLASS (sym) != LOC_BLOCK |
2492 | && SYMBOL_CLASS (sym) != LOC_CONST) | |
35a25840 SG |
2493 | || (class == 1 && SYMBOL_CLASS (sym) == LOC_BLOCK) |
2494 | || (class == 2 && SYMBOL_CLASS (sym) == LOC_TYPEDEF) | |
2495 | || (class == 3 && SYMBOL_CLASS (sym) == LOC_BLOCK))) | |
bd5635a1 | 2496 | { |
35a25840 | 2497 | if (bpt) |
bd5635a1 | 2498 | { |
35a25840 SG |
2499 | /* Set a breakpoint here, if it's a function */ |
2500 | if (class == 1) | |
ca6a826d PS |
2501 | { |
2502 | /* There may be more than one function with the | |
2503 | same name but in different files. In order to | |
2504 | set breakpoints on all of them, we must give | |
2505 | both the file name and the function name to | |
2506 | break_command. */ | |
2507 | char *string = | |
2508 | (char *) alloca (strlen (s->filename) | |
2509 | + strlen (SYMBOL_NAME(sym)) | |
2510 | + 2); | |
2511 | strcpy (string, s->filename); | |
2512 | strcat (string, ":"); | |
2513 | strcat (string, SYMBOL_NAME(sym)); | |
2514 | break_command (string, 0); | |
2515 | } | |
35a25840 SG |
2516 | } |
2517 | else if (!found_in_file) | |
2518 | { | |
2519 | fputs_filtered ("\nFile ", stdout); | |
2520 | fputs_filtered (s->filename, stdout); | |
2521 | fputs_filtered (":\n", stdout); | |
2522 | } | |
2523 | found_in_file = 1; | |
2524 | ||
2525 | if (class != 2 && i == STATIC_BLOCK) | |
2526 | printf_filtered ("static "); | |
2527 | ||
2528 | /* Typedef that is not a C++ class */ | |
2529 | if (class == 2 | |
2530 | && SYMBOL_NAMESPACE (sym) != STRUCT_NAMESPACE) | |
a8a69e63 | 2531 | c_typedef_print (SYMBOL_TYPE(sym), sym, stdout); |
35a25840 SG |
2532 | /* variable, func, or typedef-that-is-c++-class */ |
2533 | else if (class < 2 || | |
2534 | (class == 2 && | |
2535 | SYMBOL_NAMESPACE(sym) == STRUCT_NAMESPACE)) | |
2536 | { | |
2537 | type_print (SYMBOL_TYPE (sym), | |
2538 | (SYMBOL_CLASS (sym) == LOC_TYPEDEF | |
2e4964ad | 2539 | ? "" : SYMBOL_SOURCE_NAME (sym)), |
35a25840 | 2540 | stdout, 0); |
cba0d141 | 2541 | |
35a25840 SG |
2542 | printf_filtered (";\n"); |
2543 | } | |
2544 | else | |
2545 | { | |
a8a69e63 | 2546 | # if 0 /* FIXME, why is this zapped out? */ |
35a25840 | 2547 | char buf[1024]; |
a8a69e63 FF |
2548 | c_type_print_base (TYPE_FN_FIELD_TYPE(t, i), |
2549 | stdout, 0, 0); | |
2550 | c_type_print_varspec_prefix (TYPE_FN_FIELD_TYPE(t, i), | |
2551 | stdout, 0); | |
35a25840 | 2552 | sprintf (buf, " %s::", type_name_no_tag (t)); |
a8a69e63 FF |
2553 | cp_type_print_method_args (TYPE_FN_FIELD_ARGS (t, i), |
2554 | buf, name, stdout); | |
bd5635a1 RP |
2555 | # endif |
2556 | } | |
2557 | } | |
2558 | } | |
35a25840 SG |
2559 | } |
2560 | prev_bv = bv; | |
bd5635a1 | 2561 | } |
997a978c | 2562 | |
997a978c | 2563 | /* If there are no eyes, avoid all contact. I mean, if there are |
cba0d141 JG |
2564 | no debug symbols, then print directly from the msymbol_vector. */ |
2565 | ||
2566 | if (found_misc || class != 1) | |
2567 | { | |
2568 | found_in_file = 0; | |
35a25840 | 2569 | ALL_MSYMBOLS (objfile, msymbol) |
cba0d141 | 2570 | { |
2e4964ad FF |
2571 | if (MSYMBOL_TYPE (msymbol) == ourtype || |
2572 | MSYMBOL_TYPE (msymbol) == ourtype2) | |
cba0d141 | 2573 | { |
2e4964ad | 2574 | if (regexp == NULL || SYMBOL_MATCHES_REGEXP (msymbol)) |
cba0d141 | 2575 | { |
35a25840 | 2576 | /* Functions: Look up by address. */ |
f70be3e4 | 2577 | if (class != 1 || |
2e4964ad | 2578 | (0 == find_pc_symtab (SYMBOL_VALUE_ADDRESS (msymbol)))) |
cba0d141 | 2579 | { |
35a25840 | 2580 | /* Variables/Absolutes: Look up by name */ |
2e4964ad FF |
2581 | if (lookup_symbol (SYMBOL_NAME (msymbol), |
2582 | (struct block *) NULL, VAR_NAMESPACE, | |
2583 | 0, (struct symtab **) NULL) == NULL) | |
cba0d141 | 2584 | { |
35a25840 | 2585 | if (!found_in_file) |
cba0d141 | 2586 | { |
35a25840 SG |
2587 | printf_filtered ("\nNon-debugging symbols:\n"); |
2588 | found_in_file = 1; | |
cba0d141 | 2589 | } |
5573d7d4 JK |
2590 | printf_filtered (" %08lx %s\n", |
2591 | (unsigned long) SYMBOL_VALUE_ADDRESS (msymbol), | |
2e4964ad | 2592 | SYMBOL_SOURCE_NAME (msymbol)); |
cba0d141 JG |
2593 | } |
2594 | } | |
2595 | } | |
2596 | } | |
997a978c | 2597 | } |
997a978c | 2598 | } |
bd5635a1 RP |
2599 | } |
2600 | ||
2601 | static void | |
35a25840 | 2602 | variables_info (regexp, from_tty) |
bd5635a1 | 2603 | char *regexp; |
35a25840 | 2604 | int from_tty; |
bd5635a1 RP |
2605 | { |
2606 | list_symbols (regexp, 0, 0); | |
2607 | } | |
2608 | ||
2609 | static void | |
35a25840 | 2610 | functions_info (regexp, from_tty) |
bd5635a1 | 2611 | char *regexp; |
35a25840 | 2612 | int from_tty; |
bd5635a1 RP |
2613 | { |
2614 | list_symbols (regexp, 1, 0); | |
2615 | } | |
2616 | ||
bd5635a1 | 2617 | static void |
35a25840 | 2618 | types_info (regexp, from_tty) |
bd5635a1 | 2619 | char *regexp; |
35a25840 | 2620 | int from_tty; |
bd5635a1 RP |
2621 | { |
2622 | list_symbols (regexp, 2, 0); | |
2623 | } | |
bd5635a1 RP |
2624 | |
2625 | #if 0 | |
2626 | /* Tiemann says: "info methods was never implemented." */ | |
2627 | static void | |
2628 | methods_info (regexp) | |
2629 | char *regexp; | |
2630 | { | |
2631 | list_symbols (regexp, 3, 0); | |
2632 | } | |
2633 | #endif /* 0 */ | |
2634 | ||
2635 | /* Breakpoint all functions matching regular expression. */ | |
2636 | static void | |
35a25840 | 2637 | rbreak_command (regexp, from_tty) |
bd5635a1 | 2638 | char *regexp; |
35a25840 | 2639 | int from_tty; |
bd5635a1 RP |
2640 | { |
2641 | list_symbols (regexp, 1, 1); | |
2642 | } | |
2643 | \f | |
bd5635a1 RP |
2644 | |
2645 | /* Return Nonzero if block a is lexically nested within block b, | |
2646 | or if a and b have the same pc range. | |
2647 | Return zero otherwise. */ | |
2648 | int | |
2649 | contained_in (a, b) | |
2650 | struct block *a, *b; | |
2651 | { | |
2652 | if (!a || !b) | |
2653 | return 0; | |
2654 | return BLOCK_START (a) >= BLOCK_START (b) | |
2655 | && BLOCK_END (a) <= BLOCK_END (b); | |
2656 | } | |
2657 | ||
2658 | \f | |
2659 | /* Helper routine for make_symbol_completion_list. */ | |
2660 | ||
f70be3e4 JG |
2661 | static int return_val_size; |
2662 | static int return_val_index; | |
2663 | static char **return_val; | |
2664 | ||
f1ed4330 | 2665 | #define COMPLETION_LIST_ADD_SYMBOL(symbol, sym_text, len, text, word) \ |
2e4964ad | 2666 | do { \ |
f1ed4330 | 2667 | if (SYMBOL_DEMANGLED_NAME (symbol) != NULL) \ |
67a64bec JK |
2668 | /* Put only the mangled name on the list. */ \ |
2669 | /* Advantage: "b foo<TAB>" completes to "b foo(int, int)" */ \ | |
2670 | /* Disadvantage: "b foo__i<TAB>" doesn't complete. */ \ | |
f1ed4330 JK |
2671 | completion_list_add_name \ |
2672 | (SYMBOL_DEMANGLED_NAME (symbol), (sym_text), (len), (text), (word)); \ | |
67a64bec JK |
2673 | else \ |
2674 | completion_list_add_name \ | |
2675 | (SYMBOL_NAME (symbol), (sym_text), (len), (text), (word)); \ | |
2e4964ad FF |
2676 | } while (0) |
2677 | ||
2678 | /* Test to see if the symbol specified by SYMNAME (which is already | |
f1ed4330 | 2679 | demangled for C++ symbols) matches SYM_TEXT in the first SYM_TEXT_LEN |
2e4964ad | 2680 | characters. If so, add it to the current completion list. */ |
bd5635a1 | 2681 | |
cba0d141 | 2682 | static void |
f1ed4330 | 2683 | completion_list_add_name (symname, sym_text, sym_text_len, text, word) |
bd5635a1 | 2684 | char *symname; |
f1ed4330 JK |
2685 | char *sym_text; |
2686 | int sym_text_len; | |
f70be3e4 | 2687 | char *text; |
f1ed4330 | 2688 | char *word; |
bd5635a1 | 2689 | { |
f70be3e4 | 2690 | int newsize; |
8005788c RP |
2691 | int i; |
2692 | ||
2693 | /* clip symbols that cannot match */ | |
2694 | ||
f1ed4330 | 2695 | if (strncmp (symname, sym_text, sym_text_len) != 0) |
2e4964ad | 2696 | { |
8005788c RP |
2697 | return; |
2698 | } | |
f70be3e4 | 2699 | |
2e4964ad FF |
2700 | /* Clip any symbol names that we've already considered. (This is a |
2701 | time optimization) */ | |
8005788c | 2702 | |
2e4964ad FF |
2703 | for (i = 0; i < return_val_index; ++i) |
2704 | { | |
2705 | if (STREQ (symname, return_val[i])) | |
2706 | { | |
2707 | return; | |
2708 | } | |
f70be3e4 | 2709 | } |
2e4964ad FF |
2710 | |
2711 | /* We have a match for a completion, so add SYMNAME to the current list | |
2712 | of matches. Note that the name is moved to freshly malloc'd space. */ | |
f70be3e4 | 2713 | |
f1ed4330 JK |
2714 | { |
2715 | char *new; | |
2716 | if (word == sym_text) | |
2717 | { | |
2718 | new = xmalloc (strlen (symname) + 5); | |
2719 | strcpy (new, symname); | |
2720 | } | |
2721 | else if (word > sym_text) | |
2722 | { | |
2723 | /* Return some portion of symname. */ | |
2724 | new = xmalloc (strlen (symname) + 5); | |
2725 | strcpy (new, symname + (word - sym_text)); | |
2726 | } | |
2727 | else | |
2728 | { | |
2729 | /* Return some of SYM_TEXT plus symname. */ | |
2730 | new = xmalloc (strlen (symname) + (sym_text - word) + 5); | |
2731 | strncpy (new, word, sym_text - word); | |
2732 | new[sym_text - word] = '\0'; | |
2733 | strcat (new, symname); | |
2734 | } | |
2735 | ||
2736 | if (return_val_index + 3 > return_val_size) | |
2737 | { | |
2738 | newsize = (return_val_size *= 2) * sizeof (char *); | |
2739 | return_val = (char **) xrealloc ((char *) return_val, newsize); | |
2740 | } | |
2741 | return_val[return_val_index++] = new; | |
2742 | return_val[return_val_index] = NULL; | |
2743 | } | |
bd5635a1 RP |
2744 | } |
2745 | ||
2746 | /* Return a NULL terminated array of all symbols (regardless of class) which | |
2747 | begin by matching TEXT. If the answer is no symbols, then the return value | |
2748 | is an array which contains only a NULL pointer. | |
2749 | ||
f70be3e4 JG |
2750 | Problem: All of the symbols have to be copied because readline frees them. |
2751 | I'm not going to worry about this; hopefully there won't be that many. */ | |
bd5635a1 RP |
2752 | |
2753 | char ** | |
f1ed4330 JK |
2754 | make_symbol_completion_list (text, word) |
2755 | char *text; | |
2756 | char *word; | |
bd5635a1 | 2757 | { |
f70be3e4 | 2758 | register struct symbol *sym; |
bd5635a1 RP |
2759 | register struct symtab *s; |
2760 | register struct partial_symtab *ps; | |
cba0d141 JG |
2761 | register struct minimal_symbol *msymbol; |
2762 | register struct objfile *objfile; | |
bd5635a1 | 2763 | register struct block *b, *surrounding_static_block = 0; |
bd5635a1 RP |
2764 | register int i, j; |
2765 | struct partial_symbol *psym; | |
f1ed4330 JK |
2766 | /* The symbol we are completing on. Points in same buffer as text. */ |
2767 | char *sym_text; | |
2768 | /* Length of sym_text. */ | |
2769 | int sym_text_len; | |
2770 | ||
2771 | /* Now look for the symbol we are supposed to complete on. | |
2772 | FIXME: This should be language-specific. */ | |
2773 | { | |
2774 | char *p; | |
2775 | char quote_found; | |
01d3fdba | 2776 | char *quote_pos = NULL; |
f1ed4330 JK |
2777 | |
2778 | /* First see if this is a quoted string. */ | |
2779 | quote_found = '\0'; | |
2780 | for (p = text; *p != '\0'; ++p) | |
2781 | { | |
2782 | if (quote_found != '\0') | |
2783 | { | |
2784 | if (*p == quote_found) | |
2785 | /* Found close quote. */ | |
2786 | quote_found = '\0'; | |
2787 | else if (*p == '\\' && p[1] == quote_found) | |
2788 | /* A backslash followed by the quote character | |
2789 | doesn't end the string. */ | |
2790 | ++p; | |
2791 | } | |
2792 | else if (*p == '\'' || *p == '"') | |
2793 | { | |
2794 | quote_found = *p; | |
2795 | quote_pos = p; | |
2796 | } | |
2797 | } | |
2798 | if (quote_found == '\'') | |
2799 | /* A string within single quotes can be a symbol, so complete on it. */ | |
2800 | sym_text = quote_pos + 1; | |
2801 | else if (quote_found == '"') | |
2802 | /* A double-quoted string is never a symbol, nor does it make sense | |
2803 | to complete it any other way. */ | |
2804 | return NULL; | |
2805 | else | |
2806 | { | |
2807 | /* It is not a quoted string. Break it based on the characters | |
2808 | which are in symbols. */ | |
2809 | while (p > text) | |
2810 | { | |
2811 | if (isalnum (p[-1]) || p[-1] == '_' || p[-1] == '\0') | |
2812 | --p; | |
2813 | else | |
2814 | break; | |
2815 | } | |
2816 | sym_text = p; | |
2817 | } | |
2818 | } | |
2819 | ||
2820 | sym_text_len = strlen (sym_text); | |
bd5635a1 | 2821 | |
bd5635a1 RP |
2822 | return_val_size = 100; |
2823 | return_val_index = 0; | |
f70be3e4 JG |
2824 | return_val = (char **) xmalloc ((return_val_size + 1) * sizeof (char *)); |
2825 | return_val[0] = NULL; | |
bd5635a1 RP |
2826 | |
2827 | /* Look through the partial symtabs for all symbols which begin | |
f1ed4330 | 2828 | by matching SYM_TEXT. Add each one that you find to the list. */ |
bd5635a1 | 2829 | |
35a25840 | 2830 | ALL_PSYMTABS (objfile, ps) |
bd5635a1 | 2831 | { |
35a25840 SG |
2832 | /* If the psymtab's been read in we'll get it when we search |
2833 | through the blockvector. */ | |
2834 | if (ps->readin) continue; | |
2835 | ||
2836 | for (psym = objfile->global_psymbols.list + ps->globals_offset; | |
2837 | psym < (objfile->global_psymbols.list + ps->globals_offset | |
2838 | + ps->n_global_syms); | |
2839 | psym++) | |
bd5635a1 | 2840 | { |
f70be3e4 JG |
2841 | /* If interrupted, then quit. */ |
2842 | QUIT; | |
f1ed4330 | 2843 | COMPLETION_LIST_ADD_SYMBOL (psym, sym_text, sym_text_len, text, word); |
35a25840 SG |
2844 | } |
2845 | ||
2846 | for (psym = objfile->static_psymbols.list + ps->statics_offset; | |
2847 | psym < (objfile->static_psymbols.list + ps->statics_offset | |
2848 | + ps->n_static_syms); | |
2849 | psym++) | |
2850 | { | |
2851 | QUIT; | |
f1ed4330 | 2852 | COMPLETION_LIST_ADD_SYMBOL (psym, sym_text, sym_text_len, text, word); |
bd5635a1 RP |
2853 | } |
2854 | } | |
2855 | ||
cba0d141 | 2856 | /* At this point scan through the misc symbol vectors and add each |
bd5635a1 RP |
2857 | symbol you find to the list. Eventually we want to ignore |
2858 | anything that isn't a text symbol (everything else will be | |
2859 | handled by the psymtab code above). */ | |
2860 | ||
35a25840 | 2861 | ALL_MSYMBOLS (objfile, msymbol) |
cba0d141 | 2862 | { |
f70be3e4 | 2863 | QUIT; |
f1ed4330 | 2864 | COMPLETION_LIST_ADD_SYMBOL (msymbol, sym_text, sym_text_len, text, word); |
cba0d141 | 2865 | } |
bd5635a1 RP |
2866 | |
2867 | /* Search upwards from currently selected frame (so that we can | |
2868 | complete on local vars. */ | |
f70be3e4 JG |
2869 | |
2870 | for (b = get_selected_block (); b != NULL; b = BLOCK_SUPERBLOCK (b)) | |
2871 | { | |
2872 | if (!BLOCK_SUPERBLOCK (b)) | |
2873 | { | |
2874 | surrounding_static_block = b; /* For elmin of dups */ | |
2875 | } | |
2876 | ||
2877 | /* Also catch fields of types defined in this places which match our | |
2878 | text string. Only complete on types visible from current context. */ | |
2879 | ||
2880 | for (i = 0; i < BLOCK_NSYMS (b); i++) | |
2881 | { | |
2882 | sym = BLOCK_SYM (b, i); | |
f1ed4330 | 2883 | COMPLETION_LIST_ADD_SYMBOL (sym, sym_text, sym_text_len, text, word); |
f70be3e4 JG |
2884 | if (SYMBOL_CLASS (sym) == LOC_TYPEDEF) |
2885 | { | |
2886 | struct type *t = SYMBOL_TYPE (sym); | |
2887 | enum type_code c = TYPE_CODE (t); | |
2888 | ||
2889 | if (c == TYPE_CODE_UNION || c == TYPE_CODE_STRUCT) | |
2890 | { | |
2891 | for (j = TYPE_N_BASECLASSES (t); j < TYPE_NFIELDS (t); j++) | |
2892 | { | |
2893 | if (TYPE_FIELD_NAME (t, j)) | |
2894 | { | |
2e4964ad | 2895 | completion_list_add_name (TYPE_FIELD_NAME (t, j), |
f1ed4330 | 2896 | sym_text, sym_text_len, text, word); |
f70be3e4 JG |
2897 | } |
2898 | } | |
2899 | } | |
2900 | } | |
2901 | } | |
2902 | } | |
2903 | ||
2904 | /* Go through the symtabs and check the externs and statics for | |
2905 | symbols which match. */ | |
2906 | ||
2907 | ALL_SYMTABS (objfile, s) | |
2908 | { | |
2909 | QUIT; | |
2910 | b = BLOCKVECTOR_BLOCK (BLOCKVECTOR (s), GLOBAL_BLOCK); | |
2911 | for (i = 0; i < BLOCK_NSYMS (b); i++) | |
2912 | { | |
2913 | sym = BLOCK_SYM (b, i); | |
f1ed4330 | 2914 | COMPLETION_LIST_ADD_SYMBOL (sym, sym_text, sym_text_len, text, word); |
f70be3e4 JG |
2915 | } |
2916 | } | |
2917 | ||
2918 | ALL_SYMTABS (objfile, s) | |
2919 | { | |
2920 | QUIT; | |
2921 | b = BLOCKVECTOR_BLOCK (BLOCKVECTOR (s), STATIC_BLOCK); | |
2922 | /* Don't do this block twice. */ | |
2923 | if (b == surrounding_static_block) continue; | |
2924 | for (i = 0; i < BLOCK_NSYMS (b); i++) | |
2925 | { | |
2926 | sym = BLOCK_SYM (b, i); | |
f1ed4330 | 2927 | COMPLETION_LIST_ADD_SYMBOL (sym, sym_text, sym_text_len, text, word); |
f70be3e4 JG |
2928 | } |
2929 | } | |
2930 | ||
2931 | return (return_val); | |
2932 | } | |
2933 | ||
bd5635a1 | 2934 | \f |
997a978c JG |
2935 | #if 0 |
2936 | /* Add the type of the symbol sym to the type of the current | |
2937 | function whose block we are in (assumed). The type of | |
2938 | this current function is contained in *TYPE. | |
2939 | ||
2940 | This basically works as follows: When we find a function | |
2941 | symbol (N_FUNC with a 'f' or 'F' in the symbol name), we record | |
2942 | a pointer to its type in the global in_function_type. Every | |
2943 | time we come across a parameter symbol ('p' in its name), then | |
2944 | this procedure adds the name and type of that parameter | |
2945 | to the function type pointed to by *TYPE. (Which should correspond | |
2946 | to in_function_type if it was called correctly). | |
2947 | ||
2948 | Note that since we are modifying a type, the result of | |
51b57ded | 2949 | lookup_function_type() should be memcpy()ed before calling |
997a978c JG |
2950 | this. When not in strict typing mode, the expression |
2951 | evaluator can choose to ignore this. | |
2952 | ||
2953 | Assumption: All of a function's parameter symbols will | |
2954 | appear before another function symbol is found. The parameters | |
2955 | appear in the same order in the argument list as they do in the | |
2956 | symbol table. */ | |
2957 | ||
2958 | void | |
2959 | add_param_to_type (type,sym) | |
2960 | struct type **type; | |
2961 | struct symbol *sym; | |
2962 | { | |
2963 | int num = ++(TYPE_NFIELDS(*type)); | |
2964 | ||
2965 | if(TYPE_NFIELDS(*type)-1) | |
cba0d141 JG |
2966 | TYPE_FIELDS(*type) = (struct field *) |
2967 | (*current_objfile->xrealloc) ((char *)(TYPE_FIELDS(*type)), | |
2968 | num*sizeof(struct field)); | |
997a978c | 2969 | else |
cba0d141 JG |
2970 | TYPE_FIELDS(*type) = (struct field *) |
2971 | (*current_objfile->xmalloc) (num*sizeof(struct field)); | |
997a978c JG |
2972 | |
2973 | TYPE_FIELD_BITPOS(*type,num-1) = num-1; | |
2974 | TYPE_FIELD_BITSIZE(*type,num-1) = 0; | |
2975 | TYPE_FIELD_TYPE(*type,num-1) = SYMBOL_TYPE(sym); | |
2976 | TYPE_FIELD_NAME(*type,num-1) = SYMBOL_NAME(sym); | |
2977 | } | |
2978 | #endif | |
2979 | \f | |
bd5635a1 RP |
2980 | void |
2981 | _initialize_symtab () | |
2982 | { | |
2983 | add_info ("variables", variables_info, | |
2984 | "All global and static variable names, or those matching REGEXP."); | |
2985 | add_info ("functions", functions_info, | |
2986 | "All function names, or those matching REGEXP."); | |
3ba6a043 JG |
2987 | |
2988 | /* FIXME: This command has at least the following problems: | |
bd5635a1 RP |
2989 | 1. It prints builtin types (in a very strange and confusing fashion). |
2990 | 2. It doesn't print right, e.g. with | |
2991 | typedef struct foo *FOO | |
2992 | type_print prints "FOO" when we want to make it (in this situation) | |
2993 | print "struct foo *". | |
2994 | I also think "ptype" or "whatis" is more likely to be useful (but if | |
2995 | there is much disagreement "info types" can be fixed). */ | |
2996 | add_info ("types", types_info, | |
a0a6174a | 2997 | "All type names, or those matching REGEXP."); |
3ba6a043 | 2998 | |
bd5635a1 RP |
2999 | #if 0 |
3000 | add_info ("methods", methods_info, | |
3001 | "All method names, or those matching REGEXP::REGEXP.\n\ | |
50e0dc41 | 3002 | If the class qualifier is omitted, it is assumed to be the current scope.\n\ |
cba0d141 | 3003 | If the first REGEXP is omitted, then all methods matching the second REGEXP\n\ |
bd5635a1 RP |
3004 | are listed."); |
3005 | #endif | |
3006 | add_info ("sources", sources_info, | |
3007 | "Source files in the program."); | |
3008 | ||
3009 | add_com ("rbreak", no_class, rbreak_command, | |
3010 | "Set a breakpoint for all functions matching REGEXP."); | |
3011 | ||
997a978c | 3012 | /* Initialize the one built-in type that isn't language dependent... */ |
cba0d141 JG |
3013 | builtin_type_error = init_type (TYPE_CODE_ERROR, 0, 0, |
3014 | "<unknown type>", (struct objfile *) NULL); | |
bd5635a1 | 3015 | } |