* linespec.c (decode_objc): Add cleanup to free
[deliverable/binutils-gdb.git] / gdb / linespec.c
1 /* Parser for linespec for the GNU debugger, GDB.
2
3 Copyright (C) 1986-2005, 2007-2012 Free Software Foundation, Inc.
4
5 This file is part of GDB.
6
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3 of the License, or
10 (at your option) any later version.
11
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
19
20 #include "defs.h"
21 #include "symtab.h"
22 #include "frame.h"
23 #include "command.h"
24 #include "symfile.h"
25 #include "objfiles.h"
26 #include "source.h"
27 #include "demangle.h"
28 #include "value.h"
29 #include "completer.h"
30 #include "cp-abi.h"
31 #include "cp-support.h"
32 #include "parser-defs.h"
33 #include "block.h"
34 #include "objc-lang.h"
35 #include "linespec.h"
36 #include "exceptions.h"
37 #include "language.h"
38 #include "interps.h"
39 #include "mi/mi-cmds.h"
40 #include "target.h"
41 #include "arch-utils.h"
42 #include <ctype.h>
43 #include "cli/cli-utils.h"
44 #include "filenames.h"
45 #include "ada-lang.h"
46
47 typedef struct symtab *symtab_p;
48 DEF_VEC_P (symtab_p);
49
50 typedef struct symbol *symbolp;
51 DEF_VEC_P (symbolp);
52
53 typedef struct type *typep;
54 DEF_VEC_P (typep);
55
56 /* An address entry is used to ensure that any given location is only
57 added to the result a single time. It holds an address and the
58 program space from which the address came. */
59
60 struct address_entry
61 {
62 struct program_space *pspace;
63 CORE_ADDR addr;
64 };
65
66 /* A helper struct which just holds a minimal symbol and the object
67 file from which it came. */
68
69 typedef struct minsym_and_objfile
70 {
71 struct minimal_symbol *minsym;
72 struct objfile *objfile;
73 } minsym_and_objfile_d;
74
75 DEF_VEC_O (minsym_and_objfile_d);
76
77 /* An enumeration of possible signs for a line offset. */
78 enum offset_relative_sign
79 {
80 /* No sign */
81 LINE_OFFSET_NONE,
82
83 /* A plus sign ("+") */
84 LINE_OFFSET_PLUS,
85
86 /* A minus sign ("-") */
87 LINE_OFFSET_MINUS,
88
89 /* A special "sign" for unspecified offset. */
90 LINE_OFFSET_UNKNOWN
91 };
92
93 /* A line offset in a linespec. */
94
95 struct line_offset
96 {
97 /* Line offset and any specified sign. */
98 int offset;
99 enum offset_relative_sign sign;
100 };
101
102 /* A linespec. Elements of this structure are filled in by a parser
103 (either parse_linespec or some other function). The structure is
104 then converted into SALs by convert_linespec_to_sals. */
105
106 struct linespec
107 {
108 /* An expression and the resulting PC. Specifying an expression
109 currently precludes the use of other members. */
110
111 /* The expression entered by the user. */
112 char *expression;
113
114 /* The resulting PC expression derived from evaluating EXPRESSION. */
115 CORE_ADDR expr_pc;
116
117 /* Any specified file symtabs. */
118
119 /* The user-supplied source filename or NULL if none was specified. */
120 char *source_filename;
121
122 /* The list of symtabs to search to which to limit the search. May not
123 be NULL. If SOURCE_FILENAME is NULL (no user-specified filename),
124 FILE_SYMTABS should contain one single NULL member. This will
125 cause the code to use the default symtab. */
126 VEC (symtab_p) *file_symtabs;
127
128 /* The name of a function or method and any matching symbols. */
129
130 /* The user-specified function name. If no function name was
131 supplied, this may be NULL. */
132 char *function_name;
133
134 /* A list of matching function symbols and minimal symbols. Both lists
135 may be NULL if no matching symbols were found. */
136 VEC (symbolp) *function_symbols;
137 VEC (minsym_and_objfile_d) *minimal_symbols;
138
139 /* The name of a label and matching symbols. */
140
141 /* The user-specified label name. */
142 char *label_name;
143
144 /* A structure of matching label symbols and the corresponding
145 function symbol in which the label was found. Both may be NULL
146 or both must be non-NULL. */
147 struct
148 {
149 VEC (symbolp) *label_symbols;
150 VEC (symbolp) *function_symbols;
151 } labels;
152
153 /* Line offset. It may be LINE_OFFSET_UNKNOWN, meaning that no
154 offset was specified. */
155 struct line_offset line_offset;
156 };
157 typedef struct linespec *linespec_p;
158
159 /* An instance of this is used to keep all state while linespec
160 operates. This instance is passed around as a 'this' pointer to
161 the various implementation methods. */
162
163 struct linespec_state
164 {
165 /* The language in use during linespec processing. */
166 const struct language_defn *language;
167
168 /* The program space as seen when the module was entered. */
169 struct program_space *program_space;
170
171 /* The default symtab to use, if no other symtab is specified. */
172 struct symtab *default_symtab;
173
174 /* The default line to use. */
175 int default_line;
176
177 /* The 'funfirstline' value that was passed in to decode_line_1 or
178 decode_line_full. */
179 int funfirstline;
180
181 /* Nonzero if we are running in 'list' mode; see decode_line_list. */
182 int list_mode;
183
184 /* The 'canonical' value passed to decode_line_full, or NULL. */
185 struct linespec_result *canonical;
186
187 /* Canonical strings that mirror the symtabs_and_lines result. */
188 char **canonical_names;
189
190 /* This is a set of address_entry objects which is used to prevent
191 duplicate symbols from being entered into the result. */
192 htab_t addr_set;
193 };
194
195 /* This is a helper object that is used when collecting symbols into a
196 result. */
197
198 struct collect_info
199 {
200 /* The linespec object in use. */
201 struct linespec_state *state;
202
203 /* A list of symtabs to which to restrict matches. */
204 VEC (symtab_p) *file_symtabs;
205
206 /* The result being accumulated. */
207 struct
208 {
209 VEC (symbolp) *symbols;
210 VEC (minsym_and_objfile_d) *minimal_symbols;
211 } result;
212 };
213
214 /* Token types */
215
216 enum ls_token_type
217 {
218 /* A keyword */
219 LSTOKEN_KEYWORD = 0,
220
221 /* A colon "separator" */
222 LSTOKEN_COLON,
223
224 /* A string */
225 LSTOKEN_STRING,
226
227 /* A number */
228 LSTOKEN_NUMBER,
229
230 /* A comma */
231 LSTOKEN_COMMA,
232
233 /* EOI (end of input) */
234 LSTOKEN_EOI,
235
236 /* Consumed token */
237 LSTOKEN_CONSUMED
238 };
239 typedef enum ls_token_type linespec_token_type;
240
241 /* List of keywords */
242
243 static const char * const linespec_keywords[] = { "if", "thread", "task" };
244
245 /* A token of the linespec lexer */
246
247 struct ls_token
248 {
249 /* The type of the token */
250 linespec_token_type type;
251
252 /* Data for the token */
253 union
254 {
255 /* A string, given as a stoken */
256 struct stoken string;
257
258 /* A keyword */
259 const char *keyword;
260 } data;
261 };
262 typedef struct ls_token linespec_token;
263
264 #define LS_TOKEN_STOKEN(TOK) (TOK).data.string
265 #define LS_TOKEN_KEYWORD(TOK) (TOK).data.keyword
266
267 /* An instance of the linespec parser. */
268
269 struct ls_parser
270 {
271 /* Lexer internal data */
272 struct
273 {
274 /* Save head of input stream. */
275 char *saved_arg;
276
277 /* Head of the input stream. */
278 char **stream;
279 #define PARSER_STREAM(P) (*(P)->lexer.stream)
280
281 /* The current token. */
282 linespec_token current;
283 } lexer;
284
285 /* Is the entire linespec quote-enclosed? */
286 int is_quote_enclosed;
287
288 /* The state of the parse. */
289 struct linespec_state state;
290 #define PARSER_STATE(PPTR) (&(PPTR)->state)
291
292 /* The result of the parse. */
293 struct linespec result;
294 #define PARSER_RESULT(PPTR) (&(PPTR)->result)
295 };
296 typedef struct ls_parser linespec_parser;
297
298 /* Prototypes for local functions. */
299
300 static void initialize_defaults (struct symtab **default_symtab,
301 int *default_line);
302
303 static CORE_ADDR linespec_expression_to_pc (char **exp_ptr);
304
305 static struct symtabs_and_lines decode_objc (struct linespec_state *self,
306 linespec_p ls,
307 char **argptr);
308
309 static VEC (symtab_p) *symtabs_from_filename (const char *);
310
311 static VEC (symbolp) *find_label_symbols (struct linespec_state *self,
312 VEC (symbolp) *function_symbols,
313 VEC (symbolp) **label_funcs_ret,
314 const char *name);
315
316 void find_linespec_symbols (struct linespec_state *self,
317 VEC (symtab_p) *file_symtabs,
318 const char *name,
319 VEC (symbolp) **symbols,
320 VEC (minsym_and_objfile_d) **minsyms);
321
322 static struct line_offset
323 linespec_parse_variable (struct linespec_state *self,
324 const char *variable);
325
326 static int symbol_to_sal (struct symtab_and_line *result,
327 int funfirstline, struct symbol *sym);
328
329 static void add_matching_symbols_to_info (const char *name,
330 struct collect_info *info,
331 struct program_space *pspace);
332
333 static void add_all_symbol_names_from_pspace (struct collect_info *info,
334 struct program_space *pspace,
335 VEC (const_char_ptr) *names);
336
337 static VEC (symtab_p) *collect_symtabs_from_filename (const char *file);
338
339 static void decode_digits_ordinary (struct linespec_state *self,
340 linespec_p ls,
341 int line,
342 struct symtabs_and_lines *sals,
343 struct linetable_entry **best_entry);
344
345 static void decode_digits_list_mode (struct linespec_state *self,
346 linespec_p ls,
347 struct symtabs_and_lines *values,
348 struct symtab_and_line val);
349
350 static void minsym_found (struct linespec_state *self, struct objfile *objfile,
351 struct minimal_symbol *msymbol,
352 struct symtabs_and_lines *result);
353
354 static int compare_symbols (const void *a, const void *b);
355
356 static int compare_msymbols (const void *a, const void *b);
357
358 static const char *find_toplevel_char (const char *s, char c);
359
360 /* Permitted quote characters for the parser. This is different from the
361 completer's quote characters to allow backward compatibility with the
362 previous parser. */
363 static const char *const linespec_quote_characters = "\"\'";
364
365 /* Lexer functions. */
366
367 /* Lex a number from the input in PARSER. This only supports
368 decimal numbers. */
369
370 static linespec_token
371 linespec_lexer_lex_number (linespec_parser *parser)
372 {
373 linespec_token token;
374
375 token.type = LSTOKEN_NUMBER;
376 LS_TOKEN_STOKEN (token).length = 0;
377 LS_TOKEN_STOKEN (token).ptr = PARSER_STREAM (parser);
378
379 /* Keep any sign at the start of the stream. */
380 if (*PARSER_STREAM (parser) == '+' || *PARSER_STREAM (parser) == '-')
381 {
382 ++LS_TOKEN_STOKEN (token).length;
383 ++(PARSER_STREAM (parser));
384 }
385
386 while (isdigit (*PARSER_STREAM (parser)))
387 {
388 ++LS_TOKEN_STOKEN (token).length;
389 ++(PARSER_STREAM (parser));
390 }
391
392 return token;
393 }
394
395 /* Does P represent one of the keywords? If so, return
396 the keyword. If not, return NULL. */
397
398 static const char *
399 linespec_lexer_lex_keyword (const char *p)
400 {
401 int i;
402
403 if (p != NULL)
404 {
405 for (i = 0; i < ARRAY_SIZE (linespec_keywords); ++i)
406 {
407 int len = strlen (linespec_keywords[i]);
408
409 /* If P begins with one of the keywords and the next
410 character is not a valid identifier character,
411 we have found a keyword. */
412 if (strncmp (p, linespec_keywords[i], len) == 0
413 && !(isalnum (p[len]) || p[len] == '_'))
414 return linespec_keywords[i];
415 }
416 }
417
418 return NULL;
419 }
420
421 /* Does STRING represent an Ada operator? If so, return the length
422 of the decoded operator name. If not, return 0. */
423
424 static int
425 is_ada_operator (const char *string)
426 {
427 const struct ada_opname_map *mapping;
428
429 for (mapping = ada_opname_table;
430 mapping->encoded != NULL
431 && strncmp (mapping->decoded, string,
432 strlen (mapping->decoded)) != 0; ++mapping)
433 ;
434
435 return mapping->decoded == NULL ? 0 : strlen (mapping->decoded);
436 }
437
438 /* Find QUOTE_CHAR in STRING, accounting for the ':' terminal. Return
439 the location of QUOTE_CHAR, or NULL if not found. */
440
441 static const char *
442 skip_quote_char (const char *string, char quote_char)
443 {
444 const char *p, *last;
445
446 p = last = find_toplevel_char (string, quote_char);
447 while (p && *p != '\0' && *p != ':')
448 {
449 p = find_toplevel_char (p, quote_char);
450 if (p != NULL)
451 last = p++;
452 }
453
454 return last;
455 }
456
457 /* Make a writable copy of the string given in TOKEN, trimming
458 any trailing whitespace. */
459
460 static char *
461 copy_token_string (linespec_token token)
462 {
463 char *str, *s;
464
465 if (token.type == LSTOKEN_KEYWORD)
466 return xstrdup (LS_TOKEN_KEYWORD (token));
467
468 str = savestring (LS_TOKEN_STOKEN (token).ptr,
469 LS_TOKEN_STOKEN (token).length);
470 s = remove_trailing_whitespace (str, str + LS_TOKEN_STOKEN (token).length);
471 *s = '\0';
472
473 return str;
474 }
475
476 /* Does P represent the end of a quote-enclosed linespec? */
477
478 static int
479 is_closing_quote_enclosed (const char *p)
480 {
481 if (strchr (linespec_quote_characters, *p))
482 ++p;
483 p = skip_spaces ((char *) p);
484 return (*p == '\0' || linespec_lexer_lex_keyword (p));
485 }
486
487 /* Find the end of the parameter list that starts with *INPUT.
488 This helper function assists with lexing string segments
489 which might contain valid (non-terminating) commas. */
490
491 static char *
492 find_parameter_list_end (char *input)
493 {
494 char end_char, start_char;
495 int depth;
496 char *p;
497
498 start_char = *input;
499 if (start_char == '(')
500 end_char = ')';
501 else if (start_char == '<')
502 end_char = '>';
503 else
504 return NULL;
505
506 p = input;
507 depth = 0;
508 while (*p)
509 {
510 if (*p == start_char)
511 ++depth;
512 else if (*p == end_char)
513 {
514 if (--depth == 0)
515 {
516 ++p;
517 break;
518 }
519 }
520 ++p;
521 }
522
523 return p;
524 }
525
526
527 /* Lex a string from the input in PARSER. */
528
529 static linespec_token
530 linespec_lexer_lex_string (linespec_parser *parser)
531 {
532 linespec_token token;
533 char *start = PARSER_STREAM (parser);
534
535 token.type = LSTOKEN_STRING;
536
537 /* If the input stream starts with a quote character, skip to the next
538 quote character, regardless of the content. */
539 if (strchr (linespec_quote_characters, *PARSER_STREAM (parser)))
540 {
541 const char *end;
542 char quote_char = *PARSER_STREAM (parser);
543
544 /* Special case: Ada operators. */
545 if (PARSER_STATE (parser)->language->la_language == language_ada
546 && quote_char == '\"')
547 {
548 int len = is_ada_operator (PARSER_STREAM (parser));
549
550 if (len != 0)
551 {
552 /* The input is an Ada operator. Return the quoted string
553 as-is. */
554 LS_TOKEN_STOKEN (token).ptr = PARSER_STREAM (parser);
555 LS_TOKEN_STOKEN (token).length = len;
556 PARSER_STREAM (parser) += len;
557 return token;
558 }
559
560 /* The input does not represent an Ada operator -- fall through
561 to normal quoted string handling. */
562 }
563
564 /* Skip past the beginning quote. */
565 ++(PARSER_STREAM (parser));
566
567 /* Mark the start of the string. */
568 LS_TOKEN_STOKEN (token).ptr = PARSER_STREAM (parser);
569
570 /* Skip to the ending quote. */
571 end = skip_quote_char (PARSER_STREAM (parser), quote_char);
572
573 /* Error if the input did not terminate properly. */
574 if (end == NULL)
575 error (_("unmatched quote"));
576
577 /* Skip over the ending quote and mark the length of the string. */
578 PARSER_STREAM (parser) = (char *) ++end;
579 LS_TOKEN_STOKEN (token).length = PARSER_STREAM (parser) - 2 - start;
580 }
581 else
582 {
583 char *p;
584
585 /* Otherwise, only identifier characters are permitted.
586 Spaces are the exception. In general, we keep spaces,
587 but only if the next characters in the input do not resolve
588 to one of the keywords.
589
590 This allows users to forgo quoting CV-qualifiers, template arguments,
591 and similar common language constructs. */
592
593 while (1)
594 {
595 if (isspace (*PARSER_STREAM (parser)))
596 {
597 p = skip_spaces (PARSER_STREAM (parser));
598 if (linespec_lexer_lex_keyword (p) != NULL)
599 {
600 LS_TOKEN_STOKEN (token).ptr = start;
601 LS_TOKEN_STOKEN (token).length
602 = PARSER_STREAM (parser) - start;
603 return token;
604 }
605
606 /* Advance past the whitespace. */
607 PARSER_STREAM (parser) = p;
608 }
609
610 /* If the next character is EOI or (single) ':', the
611 string is complete; return the token. */
612 if (*PARSER_STREAM (parser) == 0)
613 {
614 LS_TOKEN_STOKEN (token).ptr = start;
615 LS_TOKEN_STOKEN (token).length = PARSER_STREAM (parser) - start;
616 return token;
617 }
618 else if (PARSER_STREAM (parser)[0] == ':')
619 {
620 /* Do not tokenize the C++ scope operator. */
621 if (PARSER_STREAM (parser)[1] == ':')
622 ++(PARSER_STREAM (parser));
623
624 /* Do not tokenify if the input length so far is one
625 (i.e, a single-letter drive name) and the next character
626 is a directory separator. This allows Windows-style
627 paths to be recognized as filenames without quoting it. */
628 else if ((PARSER_STREAM (parser) - start) != 1
629 || !IS_DIR_SEPARATOR (PARSER_STREAM (parser)[1]))
630 {
631 LS_TOKEN_STOKEN (token).ptr = start;
632 LS_TOKEN_STOKEN (token).length
633 = PARSER_STREAM (parser) - start;
634 return token;
635 }
636 }
637 /* Special case: permit quote-enclosed linespecs. */
638 else if (parser->is_quote_enclosed
639 && strchr (linespec_quote_characters,
640 *PARSER_STREAM (parser))
641 && is_closing_quote_enclosed (PARSER_STREAM (parser)))
642 {
643 LS_TOKEN_STOKEN (token).ptr = start;
644 LS_TOKEN_STOKEN (token).length = PARSER_STREAM (parser) - start;
645 return token;
646 }
647 /* Because commas may terminate a linespec and appear in
648 the middle of valid string input, special cases for
649 '<' and '(' are necessary. */
650 else if (*PARSER_STREAM (parser) == '<'
651 || *PARSER_STREAM (parser) == '(')
652 {
653 char *p;
654
655 p = find_parameter_list_end (PARSER_STREAM (parser));
656 if (p != NULL)
657 {
658 PARSER_STREAM (parser) = p;
659 continue;
660 }
661 }
662 /* Commas are terminators, but not if they are part of an
663 operator name. */
664 else if (*PARSER_STREAM (parser) == ',')
665 {
666 if ((PARSER_STATE (parser)->language->la_language
667 == language_cplus)
668 && (PARSER_STREAM (parser) - start) > 8
669 /* strlen ("operator") */)
670 {
671 char *p = strstr (start, "operator");
672
673 if (p != NULL && is_operator_name (p))
674 {
675 /* This is an operator name. Keep going. */
676 ++(PARSER_STREAM (parser));
677 continue;
678 }
679 }
680
681 /* Comma terminates the string. */
682 LS_TOKEN_STOKEN (token).ptr = start;
683 LS_TOKEN_STOKEN (token).length = PARSER_STREAM (parser) - start;
684 return token;
685 }
686
687 /* Advance the stream. */
688 ++(PARSER_STREAM (parser));
689 }
690 }
691
692 return token;
693 }
694
695 /* Lex a single linespec token from PARSER. */
696
697 static linespec_token
698 linespec_lexer_lex_one (linespec_parser *parser)
699 {
700 const char *keyword;
701
702 if (parser->lexer.current.type == LSTOKEN_CONSUMED)
703 {
704 /* Skip any whitespace. */
705 PARSER_STREAM (parser) = skip_spaces (PARSER_STREAM (parser));
706
707 /* Check for a keyword. */
708 keyword = linespec_lexer_lex_keyword (PARSER_STREAM (parser));
709 if (keyword != NULL)
710 {
711 parser->lexer.current.type = LSTOKEN_KEYWORD;
712 LS_TOKEN_KEYWORD (parser->lexer.current) = keyword;
713 return parser->lexer.current;
714 }
715
716 /* Handle other tokens. */
717 switch (*PARSER_STREAM (parser))
718 {
719 case 0:
720 parser->lexer.current.type = LSTOKEN_EOI;
721 break;
722
723 case '+': case '-':
724 case '0': case '1': case '2': case '3': case '4':
725 case '5': case '6': case '7': case '8': case '9':
726 parser->lexer.current = linespec_lexer_lex_number (parser);
727 break;
728
729 case ':':
730 /* If we have a scope operator, lex the input as a string.
731 Otherwise, return LSTOKEN_COLON. */
732 if (PARSER_STREAM (parser)[1] == ':')
733 parser->lexer.current = linespec_lexer_lex_string (parser);
734 else
735 {
736 parser->lexer.current.type = LSTOKEN_COLON;
737 ++(PARSER_STREAM (parser));
738 }
739 break;
740
741 case '\'': case '\"':
742 /* Special case: permit quote-enclosed linespecs. */
743 if (parser->is_quote_enclosed
744 && is_closing_quote_enclosed (PARSER_STREAM (parser)))
745 {
746 ++(PARSER_STREAM (parser));
747 parser->lexer.current.type = LSTOKEN_EOI;
748 }
749 else
750 parser->lexer.current = linespec_lexer_lex_string (parser);
751 break;
752
753 case ',':
754 parser->lexer.current.type = LSTOKEN_COMMA;
755 LS_TOKEN_STOKEN (parser->lexer.current).ptr
756 = PARSER_STREAM (parser);
757 LS_TOKEN_STOKEN (parser->lexer.current).length = 1;
758 ++(PARSER_STREAM (parser));
759 break;
760
761 default:
762 /* If the input is not a number, it must be a string.
763 [Keywords were already considered above.] */
764 parser->lexer.current = linespec_lexer_lex_string (parser);
765 break;
766 }
767 }
768
769 return parser->lexer.current;
770 }
771
772 /* Consume the current token and return the next token in PARSER's
773 input stream. */
774
775 static linespec_token
776 linespec_lexer_consume_token (linespec_parser *parser)
777 {
778 parser->lexer.current.type = LSTOKEN_CONSUMED;
779 return linespec_lexer_lex_one (parser);
780 }
781
782 /* Return the next token without consuming the current token. */
783
784 static linespec_token
785 linespec_lexer_peek_token (linespec_parser *parser)
786 {
787 linespec_token next;
788 char *saved_stream = PARSER_STREAM (parser);
789 linespec_token saved_token = parser->lexer.current;
790
791 next = linespec_lexer_consume_token (parser);
792 PARSER_STREAM (parser) = saved_stream;
793 parser->lexer.current = saved_token;
794 return next;
795 }
796
797 /* Helper functions. */
798
799 /* Add SAL to SALS. */
800
801 static void
802 add_sal_to_sals_basic (struct symtabs_and_lines *sals,
803 struct symtab_and_line *sal)
804 {
805 ++sals->nelts;
806 sals->sals = xrealloc (sals->sals, sals->nelts * sizeof (sals->sals[0]));
807 sals->sals[sals->nelts - 1] = *sal;
808 }
809
810 /* Add SAL to SALS, and also update SELF->CANONICAL_NAMES to reflect
811 the new sal, if needed. If not NULL, SYMNAME is the name of the
812 symbol to use when constructing the new canonical name. */
813
814 static void
815 add_sal_to_sals (struct linespec_state *self,
816 struct symtabs_and_lines *sals,
817 struct symtab_and_line *sal,
818 const char *symname)
819 {
820 add_sal_to_sals_basic (sals, sal);
821
822 if (self->canonical)
823 {
824 char *canonical_name = NULL;
825
826 self->canonical_names = xrealloc (self->canonical_names,
827 sals->nelts * sizeof (char *));
828 if (sal->symtab && sal->symtab->filename)
829 {
830 char *filename = sal->symtab->filename;
831
832 /* Note that the filter doesn't have to be a valid linespec
833 input. We only apply the ":LINE" treatment to Ada for
834 the time being. */
835 if (symname != NULL && sal->line != 0
836 && self->language->la_language == language_ada)
837 canonical_name = xstrprintf ("%s:%s:%d", filename, symname,
838 sal->line);
839 else if (symname != NULL)
840 canonical_name = xstrprintf ("%s:%s", filename, symname);
841 else
842 canonical_name = xstrprintf ("%s:%d", filename, sal->line);
843 }
844
845 self->canonical_names[sals->nelts - 1] = canonical_name;
846 }
847 }
848
849 /* A hash function for address_entry. */
850
851 static hashval_t
852 hash_address_entry (const void *p)
853 {
854 const struct address_entry *aep = p;
855 hashval_t hash;
856
857 hash = iterative_hash_object (aep->pspace, 0);
858 return iterative_hash_object (aep->addr, hash);
859 }
860
861 /* An equality function for address_entry. */
862
863 static int
864 eq_address_entry (const void *a, const void *b)
865 {
866 const struct address_entry *aea = a;
867 const struct address_entry *aeb = b;
868
869 return aea->pspace == aeb->pspace && aea->addr == aeb->addr;
870 }
871
872 /* Check whether the address, represented by PSPACE and ADDR, is
873 already in the set. If so, return 0. Otherwise, add it and return
874 1. */
875
876 static int
877 maybe_add_address (htab_t set, struct program_space *pspace, CORE_ADDR addr)
878 {
879 struct address_entry e, *p;
880 void **slot;
881
882 e.pspace = pspace;
883 e.addr = addr;
884 slot = htab_find_slot (set, &e, INSERT);
885 if (*slot)
886 return 0;
887
888 p = XNEW (struct address_entry);
889 memcpy (p, &e, sizeof (struct address_entry));
890 *slot = p;
891
892 return 1;
893 }
894
895 /* A callback function and the additional data to call it with. */
896
897 struct symbol_and_data_callback
898 {
899 /* The callback to use. */
900 symbol_found_callback_ftype *callback;
901
902 /* Data to be passed to the callback. */
903 void *data;
904 };
905
906 /* A helper for iterate_over_all_matching_symtabs that is used to
907 restrict calls to another callback to symbols representing inline
908 symbols only. */
909
910 static int
911 iterate_inline_only (struct symbol *sym, void *d)
912 {
913 if (SYMBOL_INLINED (sym))
914 {
915 struct symbol_and_data_callback *cad = d;
916
917 return cad->callback (sym, cad->data);
918 }
919 return 1; /* Continue iterating. */
920 }
921
922 /* Some data for the expand_symtabs_matching callback. */
923
924 struct symbol_matcher_data
925 {
926 /* The lookup name against which symbol name should be compared. */
927 const char *lookup_name;
928
929 /* The routine to be used for comparison. */
930 symbol_name_cmp_ftype symbol_name_cmp;
931 };
932
933 /* A helper for iterate_over_all_matching_symtabs that is passed as a
934 callback to the expand_symtabs_matching method. */
935
936 static int
937 iterate_name_matcher (const char *name, void *d)
938 {
939 const struct symbol_matcher_data *data = d;
940
941 if (data->symbol_name_cmp (name, data->lookup_name) == 0)
942 return 1; /* Expand this symbol's symbol table. */
943 return 0; /* Skip this symbol. */
944 }
945
946 /* A helper that walks over all matching symtabs in all objfiles and
947 calls CALLBACK for each symbol matching NAME. If SEARCH_PSPACE is
948 not NULL, then the search is restricted to just that program
949 space. If INCLUDE_INLINE is nonzero then symbols representing
950 inlined instances of functions will be included in the result. */
951
952 static void
953 iterate_over_all_matching_symtabs (struct linespec_state *state,
954 const char *name,
955 const domain_enum domain,
956 symbol_found_callback_ftype *callback,
957 void *data,
958 struct program_space *search_pspace,
959 int include_inline)
960 {
961 struct objfile *objfile;
962 struct program_space *pspace;
963 struct symbol_matcher_data matcher_data;
964
965 matcher_data.lookup_name = name;
966 matcher_data.symbol_name_cmp =
967 state->language->la_get_symbol_name_cmp != NULL
968 ? state->language->la_get_symbol_name_cmp (name)
969 : strcmp_iw;
970
971 ALL_PSPACES (pspace)
972 {
973 if (search_pspace != NULL && search_pspace != pspace)
974 continue;
975 if (pspace->executing_startup)
976 continue;
977
978 set_current_program_space (pspace);
979
980 ALL_OBJFILES (objfile)
981 {
982 struct symtab *symtab;
983
984 if (objfile->sf)
985 objfile->sf->qf->expand_symtabs_matching (objfile, NULL,
986 iterate_name_matcher,
987 ALL_DOMAIN,
988 &matcher_data);
989
990 ALL_OBJFILE_SYMTABS (objfile, symtab)
991 {
992 if (symtab->primary)
993 {
994 struct block *block;
995
996 block = BLOCKVECTOR_BLOCK (BLOCKVECTOR (symtab), STATIC_BLOCK);
997 LA_ITERATE_OVER_SYMBOLS (block, name, domain, callback, data);
998
999 if (include_inline)
1000 {
1001 struct symbol_and_data_callback cad = { callback, data };
1002 int i;
1003
1004 for (i = FIRST_LOCAL_BLOCK;
1005 i < BLOCKVECTOR_NBLOCKS (BLOCKVECTOR (symtab)); i++)
1006 {
1007 block = BLOCKVECTOR_BLOCK (BLOCKVECTOR (symtab), i);
1008 LA_ITERATE_OVER_SYMBOLS (block, name, domain,
1009 iterate_inline_only, &cad);
1010 }
1011 }
1012 }
1013 }
1014 }
1015 }
1016 }
1017
1018 /* Returns the block to be used for symbol searches for the given SYMTAB,
1019 which may be NULL. */
1020
1021 static struct block *
1022 get_search_block (struct symtab *symtab)
1023 {
1024 struct block *block;
1025
1026 if (symtab != NULL)
1027 block = BLOCKVECTOR_BLOCK (BLOCKVECTOR (symtab), STATIC_BLOCK);
1028 else
1029 {
1030 enum language save_language;
1031
1032 /* get_selected_block can change the current language when there is
1033 no selected frame yet. */
1034 save_language = current_language->la_language;
1035 block = get_selected_block (0);
1036 set_language (save_language);
1037 }
1038
1039 return block;
1040 }
1041
1042 /* A helper for find_method. This finds all methods in type T which
1043 match NAME. It adds matching symbol names to RESULT_NAMES, and
1044 adds T's direct superclasses to SUPERCLASSES. */
1045
1046 static void
1047 find_methods (struct type *t, const char *name,
1048 VEC (const_char_ptr) **result_names,
1049 VEC (typep) **superclasses)
1050 {
1051 int i1 = 0;
1052 int ibase;
1053 const char *class_name = type_name_no_tag (t);
1054
1055 /* Ignore this class if it doesn't have a name. This is ugly, but
1056 unless we figure out how to get the physname without the name of
1057 the class, then the loop can't do any good. */
1058 if (class_name)
1059 {
1060 int method_counter;
1061 int name_len = strlen (name);
1062
1063 CHECK_TYPEDEF (t);
1064
1065 /* Loop over each method name. At this level, all overloads of a name
1066 are counted as a single name. There is an inner loop which loops over
1067 each overload. */
1068
1069 for (method_counter = TYPE_NFN_FIELDS (t) - 1;
1070 method_counter >= 0;
1071 --method_counter)
1072 {
1073 const char *method_name = TYPE_FN_FIELDLIST_NAME (t, method_counter);
1074 char dem_opname[64];
1075
1076 if (strncmp (method_name, "__", 2) == 0 ||
1077 strncmp (method_name, "op", 2) == 0 ||
1078 strncmp (method_name, "type", 4) == 0)
1079 {
1080 if (cplus_demangle_opname (method_name, dem_opname, DMGL_ANSI))
1081 method_name = dem_opname;
1082 else if (cplus_demangle_opname (method_name, dem_opname, 0))
1083 method_name = dem_opname;
1084 }
1085
1086 if (strcmp_iw (method_name, name) == 0)
1087 {
1088 int field_counter;
1089
1090 for (field_counter = (TYPE_FN_FIELDLIST_LENGTH (t, method_counter)
1091 - 1);
1092 field_counter >= 0;
1093 --field_counter)
1094 {
1095 struct fn_field *f;
1096 const char *phys_name;
1097
1098 f = TYPE_FN_FIELDLIST1 (t, method_counter);
1099 if (TYPE_FN_FIELD_STUB (f, field_counter))
1100 continue;
1101 phys_name = TYPE_FN_FIELD_PHYSNAME (f, field_counter);
1102 VEC_safe_push (const_char_ptr, *result_names, phys_name);
1103 }
1104 }
1105 }
1106 }
1107
1108 for (ibase = 0; ibase < TYPE_N_BASECLASSES (t); ibase++)
1109 VEC_safe_push (typep, *superclasses, TYPE_BASECLASS (t, ibase));
1110 }
1111
1112 /* Find an instance of the character C in the string S that is outside
1113 of all parenthesis pairs, single-quoted strings, and double-quoted
1114 strings. Also, ignore the char within a template name, like a ','
1115 within foo<int, int>. */
1116
1117 static const char *
1118 find_toplevel_char (const char *s, char c)
1119 {
1120 int quoted = 0; /* zero if we're not in quotes;
1121 '"' if we're in a double-quoted string;
1122 '\'' if we're in a single-quoted string. */
1123 int depth = 0; /* Number of unclosed parens we've seen. */
1124 const char *scan;
1125
1126 for (scan = s; *scan; scan++)
1127 {
1128 if (quoted)
1129 {
1130 if (*scan == quoted)
1131 quoted = 0;
1132 else if (*scan == '\\' && *(scan + 1))
1133 scan++;
1134 }
1135 else if (*scan == c && ! quoted && depth == 0)
1136 return scan;
1137 else if (*scan == '"' || *scan == '\'')
1138 quoted = *scan;
1139 else if (*scan == '(' || *scan == '<')
1140 depth++;
1141 else if ((*scan == ')' || *scan == '>') && depth > 0)
1142 depth--;
1143 }
1144
1145 return 0;
1146 }
1147
1148 /* The string equivalent of find_toplevel_char. Returns a pointer
1149 to the location of NEEDLE in HAYSTACK, ignoring any occurrences
1150 inside "()" and "<>". Returns NULL if NEEDLE was not found. */
1151
1152 static const char *
1153 find_toplevel_string (const char *haystack, const char *needle)
1154 {
1155 const char *s = haystack;
1156
1157 do
1158 {
1159 s = find_toplevel_char (s, *needle);
1160
1161 if (s != NULL)
1162 {
1163 /* Found first char in HAYSTACK; check rest of string. */
1164 if (strncmp (s, needle, strlen (needle)) == 0)
1165 return s;
1166
1167 /* Didn't find it; loop over HAYSTACK, looking for the next
1168 instance of the first character of NEEDLE. */
1169 ++s;
1170 }
1171 }
1172 while (s != NULL && *s != '\0');
1173
1174 /* NEEDLE was not found in HAYSTACK. */
1175 return NULL;
1176 }
1177
1178 /* Given FILTERS, a list of canonical names, filter the sals in RESULT
1179 and store the result in SELF->CANONICAL. */
1180
1181 static void
1182 filter_results (struct linespec_state *self,
1183 struct symtabs_and_lines *result,
1184 VEC (const_char_ptr) *filters)
1185 {
1186 int i;
1187 const char *name;
1188
1189 for (i = 0; VEC_iterate (const_char_ptr, filters, i, name); ++i)
1190 {
1191 struct linespec_sals lsal;
1192 int j;
1193
1194 memset (&lsal, 0, sizeof (lsal));
1195
1196 for (j = 0; j < result->nelts; ++j)
1197 {
1198 if (strcmp (name, self->canonical_names[j]) == 0)
1199 add_sal_to_sals_basic (&lsal.sals, &result->sals[j]);
1200 }
1201
1202 if (lsal.sals.nelts > 0)
1203 {
1204 lsal.canonical = xstrdup (name);
1205 VEC_safe_push (linespec_sals, self->canonical->sals, &lsal);
1206 }
1207 }
1208
1209 self->canonical->pre_expanded = 0;
1210 }
1211
1212 /* Store RESULT into SELF->CANONICAL. */
1213
1214 static void
1215 convert_results_to_lsals (struct linespec_state *self,
1216 struct symtabs_and_lines *result)
1217 {
1218 struct linespec_sals lsal;
1219
1220 lsal.canonical = NULL;
1221 lsal.sals = *result;
1222 VEC_safe_push (linespec_sals, self->canonical->sals, &lsal);
1223 }
1224
1225 /* Handle multiple results in RESULT depending on SELECT_MODE. This
1226 will either return normally, throw an exception on multiple
1227 results, or present a menu to the user. On return, the SALS vector
1228 in SELF->CANONICAL is set up properly. */
1229
1230 static void
1231 decode_line_2 (struct linespec_state *self,
1232 struct symtabs_and_lines *result,
1233 const char *select_mode)
1234 {
1235 const char *iter;
1236 char *args, *prompt;
1237 int i;
1238 struct cleanup *old_chain;
1239 VEC (const_char_ptr) *item_names = NULL, *filters = NULL;
1240 struct get_number_or_range_state state;
1241
1242 gdb_assert (select_mode != multiple_symbols_all);
1243 gdb_assert (self->canonical != NULL);
1244
1245 old_chain = make_cleanup (VEC_cleanup (const_char_ptr), &item_names);
1246 make_cleanup (VEC_cleanup (const_char_ptr), &filters);
1247 for (i = 0; i < result->nelts; ++i)
1248 {
1249 int j, found = 0;
1250 const char *iter;
1251
1252 gdb_assert (self->canonical_names[i] != NULL);
1253 for (j = 0; VEC_iterate (const_char_ptr, item_names, j, iter); ++j)
1254 {
1255 if (strcmp (iter, self->canonical_names[i]) == 0)
1256 {
1257 found = 1;
1258 break;
1259 }
1260 }
1261
1262 if (!found)
1263 VEC_safe_push (const_char_ptr, item_names, self->canonical_names[i]);
1264 }
1265
1266 if (select_mode == multiple_symbols_cancel
1267 && VEC_length (const_char_ptr, item_names) > 1)
1268 error (_("canceled because the command is ambiguous\n"
1269 "See set/show multiple-symbol."));
1270
1271 if (select_mode == multiple_symbols_all
1272 || VEC_length (const_char_ptr, item_names) == 1)
1273 {
1274 do_cleanups (old_chain);
1275 convert_results_to_lsals (self, result);
1276 return;
1277 }
1278
1279 /* Sort the list of method names alphabetically. */
1280 qsort (VEC_address (const_char_ptr, item_names),
1281 VEC_length (const_char_ptr, item_names),
1282 sizeof (const_char_ptr), compare_strings);
1283
1284 printf_unfiltered (_("[0] cancel\n[1] all\n"));
1285 for (i = 0; VEC_iterate (const_char_ptr, item_names, i, iter); ++i)
1286 printf_unfiltered ("[%d] %s\n", i + 2, iter);
1287
1288 prompt = getenv ("PS2");
1289 if (prompt == NULL)
1290 {
1291 prompt = "> ";
1292 }
1293 args = command_line_input (prompt, 0, "overload-choice");
1294
1295 if (args == 0 || *args == 0)
1296 error_no_arg (_("one or more choice numbers"));
1297
1298 init_number_or_range (&state, args);
1299 while (!state.finished)
1300 {
1301 int num;
1302
1303 num = get_number_or_range (&state);
1304
1305 if (num == 0)
1306 error (_("canceled"));
1307 else if (num == 1)
1308 {
1309 /* We intentionally make this result in a single breakpoint,
1310 contrary to what older versions of gdb did. The
1311 rationale is that this lets a user get the
1312 multiple_symbols_all behavior even with the 'ask'
1313 setting; and he can get separate breakpoints by entering
1314 "2-57" at the query. */
1315 do_cleanups (old_chain);
1316 convert_results_to_lsals (self, result);
1317 return;
1318 }
1319
1320 num -= 2;
1321 if (num >= VEC_length (const_char_ptr, item_names))
1322 printf_unfiltered (_("No choice number %d.\n"), num);
1323 else
1324 {
1325 const char *elt = VEC_index (const_char_ptr, item_names, num);
1326
1327 if (elt != NULL)
1328 {
1329 VEC_safe_push (const_char_ptr, filters, elt);
1330 VEC_replace (const_char_ptr, item_names, num, NULL);
1331 }
1332 else
1333 {
1334 printf_unfiltered (_("duplicate request for %d ignored.\n"),
1335 num);
1336 }
1337 }
1338 }
1339
1340 filter_results (self, result, filters);
1341 do_cleanups (old_chain);
1342 }
1343
1344 \f
1345
1346 /* The parser of linespec itself. */
1347
1348 /* Throw an appropriate error when SYMBOL is not found (optionally in
1349 FILENAME). */
1350
1351 static void ATTRIBUTE_NORETURN
1352 symbol_not_found_error (char *symbol, char *filename)
1353 {
1354 if (symbol == NULL)
1355 symbol = "";
1356
1357 if (!have_full_symbols ()
1358 && !have_partial_symbols ()
1359 && !have_minimal_symbols ())
1360 throw_error (NOT_FOUND_ERROR,
1361 _("No symbol table is loaded. Use the \"file\" command."));
1362
1363 /* If SYMBOL starts with '$', the user attempted to either lookup
1364 a function/variable in his code starting with '$' or an internal
1365 variable of that name. Since we do not know which, be concise and
1366 explain both possibilities. */
1367 if (*symbol == '$')
1368 {
1369 if (filename)
1370 throw_error (NOT_FOUND_ERROR,
1371 _("Undefined convenience variable or function \"%s\" "
1372 "not defined in \"%s\"."), symbol, filename);
1373 else
1374 throw_error (NOT_FOUND_ERROR,
1375 _("Undefined convenience variable or function \"%s\" "
1376 "not defined."), symbol);
1377 }
1378 else
1379 {
1380 if (filename)
1381 throw_error (NOT_FOUND_ERROR,
1382 _("Function \"%s\" not defined in \"%s\"."),
1383 symbol, filename);
1384 else
1385 throw_error (NOT_FOUND_ERROR,
1386 _("Function \"%s\" not defined."), symbol);
1387 }
1388 }
1389
1390 /* Throw an appropriate error when an unexpected token is encountered
1391 in the input. */
1392
1393 static void ATTRIBUTE_NORETURN
1394 unexpected_linespec_error (linespec_parser *parser)
1395 {
1396 linespec_token token;
1397 static const char * token_type_strings[]
1398 = {"keyword", "colon", "string", "number", "comma", "end of input"};
1399
1400 /* Get the token that generated the error. */
1401 token = linespec_lexer_lex_one (parser);
1402
1403 /* Finally, throw the error. */
1404 if (token.type == LSTOKEN_STRING || token.type == LSTOKEN_NUMBER
1405 || token.type == LSTOKEN_KEYWORD)
1406 {
1407 char *string;
1408 struct cleanup *cleanup;
1409
1410 string = copy_token_string (token);
1411 cleanup = make_cleanup (xfree, string);
1412 throw_error (GENERIC_ERROR,
1413 _("malformed linespec error: unexpected %s, \"%s\""),
1414 token_type_strings[token.type], string);
1415 }
1416 else
1417 throw_error (GENERIC_ERROR,
1418 _("malformed linespec error: unexpected %s"),
1419 token_type_strings[token.type]);
1420 }
1421
1422 /* Parse and return a line offset in STRING. */
1423
1424 static struct line_offset
1425 linespec_parse_line_offset (char *string)
1426 {
1427 struct line_offset line_offset = {0, LINE_OFFSET_NONE};
1428
1429 if (*string == '+')
1430 {
1431 line_offset.sign = LINE_OFFSET_PLUS;
1432 ++string;
1433 }
1434 else if (*string == '-')
1435 {
1436 line_offset.sign = LINE_OFFSET_MINUS;
1437 ++string;
1438 }
1439
1440 /* Right now, we only allow base 10 for offsets. */
1441 line_offset.offset = atoi (string);
1442 return line_offset;
1443 }
1444
1445 /* Parse the basic_spec in PARSER's input. */
1446
1447 static void
1448 linespec_parse_basic (linespec_parser *parser)
1449 {
1450 char *name;
1451 linespec_token token;
1452 VEC (symbolp) *symbols, *labels;
1453 VEC (minsym_and_objfile_d) *minimal_symbols;
1454 struct cleanup *cleanup;
1455
1456 /* Get the next token. */
1457 token = linespec_lexer_lex_one (parser);
1458
1459 /* If it is EOI or KEYWORD, issue an error. */
1460 if (token.type == LSTOKEN_KEYWORD || token.type == LSTOKEN_EOI)
1461 unexpected_linespec_error (parser);
1462 /* If it is a LSTOKEN_NUMBER, we have an offset. */
1463 else if (token.type == LSTOKEN_NUMBER)
1464 {
1465 /* Record the line offset and get the next token. */
1466 name = copy_token_string (token);
1467 cleanup = make_cleanup (xfree, name);
1468 PARSER_RESULT (parser)->line_offset = linespec_parse_line_offset (name);
1469 do_cleanups (cleanup);
1470
1471 /* Get the next token. */
1472 token = linespec_lexer_consume_token (parser);
1473
1474 /* If the next token is a comma, stop parsing and return. */
1475 if (token.type == LSTOKEN_COMMA)
1476 return;
1477
1478 /* If the next token is anything but EOI or KEYWORD, issue
1479 an error. */
1480 if (token.type != LSTOKEN_KEYWORD && token.type != LSTOKEN_EOI)
1481 unexpected_linespec_error (parser);
1482 }
1483
1484 if (token.type == LSTOKEN_KEYWORD || token.type == LSTOKEN_EOI)
1485 return;
1486
1487 /* Next token must be LSTOKEN_STRING. */
1488 if (token.type != LSTOKEN_STRING)
1489 unexpected_linespec_error (parser);
1490
1491 /* The current token will contain the name of a function, method,
1492 or label. */
1493 name = copy_token_string (token);
1494 cleanup = make_cleanup (xfree, name);
1495
1496 /* Try looking it up as a function/method. */
1497 find_linespec_symbols (PARSER_STATE (parser),
1498 PARSER_RESULT (parser)->file_symtabs, name,
1499 &symbols, &minimal_symbols);
1500
1501 if (symbols != NULL || minimal_symbols != NULL)
1502 {
1503 PARSER_RESULT (parser)->function_symbols = symbols;
1504 PARSER_RESULT (parser)->minimal_symbols = minimal_symbols;
1505 PARSER_RESULT (parser)->function_name = name;
1506 symbols = NULL;
1507 discard_cleanups (cleanup);
1508 }
1509 else
1510 {
1511 /* NAME was not a function or a method. So it must be a label
1512 name. */
1513 labels = find_label_symbols (PARSER_STATE (parser), NULL,
1514 &symbols, name);
1515 if (labels != NULL)
1516 {
1517 PARSER_RESULT (parser)->labels.label_symbols = labels;
1518 PARSER_RESULT (parser)->labels.function_symbols = symbols;
1519 PARSER_RESULT (parser)->label_name = name;
1520 symbols = NULL;
1521 discard_cleanups (cleanup);
1522 }
1523 else
1524 {
1525 /* The name is also not a label. Abort parsing. Do not throw
1526 an error here. parse_linespec will do it for us. */
1527
1528 /* Save a copy of the name we were trying to lookup. */
1529 PARSER_RESULT (parser)->function_name = name;
1530 discard_cleanups (cleanup);
1531 return;
1532 }
1533 }
1534
1535 /* Get the next token. */
1536 token = linespec_lexer_consume_token (parser);
1537
1538 if (token.type == LSTOKEN_COLON)
1539 {
1540 /* User specified a label or a lineno. */
1541 token = linespec_lexer_consume_token (parser);
1542
1543 if (token.type == LSTOKEN_NUMBER)
1544 {
1545 /* User specified an offset. Record the line offset and
1546 get the next token. */
1547 name = copy_token_string (token);
1548 cleanup = make_cleanup (xfree, name);
1549 PARSER_RESULT (parser)->line_offset
1550 = linespec_parse_line_offset (name);
1551 do_cleanups (cleanup);
1552
1553 /* Ge the next token. */
1554 token = linespec_lexer_consume_token (parser);
1555 }
1556 else if (token.type == LSTOKEN_STRING)
1557 {
1558 /* Grab a copy of the label's name and look it up. */
1559 name = copy_token_string (token);
1560 cleanup = make_cleanup (xfree, name);
1561 labels = find_label_symbols (PARSER_STATE (parser),
1562 PARSER_RESULT (parser)->function_symbols,
1563 &symbols, name);
1564
1565 if (labels != NULL)
1566 {
1567 PARSER_RESULT (parser)->labels.label_symbols = labels;
1568 PARSER_RESULT (parser)->labels.function_symbols = symbols;
1569 PARSER_RESULT (parser)->label_name = name;
1570 symbols = NULL;
1571 discard_cleanups (cleanup);
1572 }
1573 else
1574 {
1575 /* We don't know what it was, but it isn't a label. */
1576 throw_error (NOT_FOUND_ERROR,
1577 _("No label \"%s\" defined in function \"%s\"."),
1578 name, PARSER_RESULT (parser)->function_name);
1579 }
1580
1581 /* Check for a line offset. */
1582 token = linespec_lexer_consume_token (parser);
1583 if (token.type == LSTOKEN_COLON)
1584 {
1585 /* Get the next token. */
1586 token = linespec_lexer_consume_token (parser);
1587
1588 /* It must be a line offset. */
1589 if (token.type != LSTOKEN_NUMBER)
1590 unexpected_linespec_error (parser);
1591
1592 /* Record the lione offset and get the next token. */
1593 name = copy_token_string (token);
1594 cleanup = make_cleanup (xfree, name);
1595
1596 PARSER_RESULT (parser)->line_offset
1597 = linespec_parse_line_offset (name);
1598 do_cleanups (cleanup);
1599
1600 /* Get the next token. */
1601 token = linespec_lexer_consume_token (parser);
1602 }
1603 }
1604 else
1605 {
1606 /* Trailing ':' in the input. Issue an error. */
1607 unexpected_linespec_error (parser);
1608 }
1609 }
1610 }
1611
1612 /* Canonicalize the linespec contained in LS. The result is saved into
1613 STATE->canonical. */
1614
1615 static void
1616 canonicalize_linespec (struct linespec_state *state, linespec_p ls)
1617 {
1618 /* If canonicalization was not requested, no need to do anything. */
1619 if (!state->canonical)
1620 return;
1621
1622 /* Shortcut expressions, which can only appear by themselves. */
1623 if (ls->expression != NULL)
1624 state->canonical->addr_string = xstrdup (ls->expression);
1625 else
1626 {
1627 struct ui_file *buf;
1628 int need_colon = 0;
1629
1630 buf = mem_fileopen ();
1631 if (ls->source_filename)
1632 {
1633 fputs_unfiltered (ls->source_filename, buf);
1634 need_colon = 1;
1635 }
1636
1637 if (ls->function_name)
1638 {
1639 if (need_colon)
1640 fputc_unfiltered (':', buf);
1641 fputs_unfiltered (ls->function_name, buf);
1642 need_colon = 1;
1643 }
1644
1645 if (ls->label_name)
1646 {
1647 if (need_colon)
1648 fputc_unfiltered (':', buf);
1649
1650 if (ls->function_name == NULL)
1651 {
1652 struct symbol *s;
1653
1654 /* No function was specified, so add the symbol name. */
1655 gdb_assert (ls->labels.function_symbols != NULL
1656 && (VEC_length (symbolp, ls->labels.function_symbols)
1657 == 1));
1658 s = VEC_index (symbolp, ls->labels.function_symbols, 0);
1659 fputs_unfiltered (SYMBOL_NATURAL_NAME (s), buf);
1660 fputc_unfiltered (':', buf);
1661 }
1662
1663 fputs_unfiltered (ls->label_name, buf);
1664 need_colon = 1;
1665 state->canonical->special_display = 1;
1666 }
1667
1668 if (ls->line_offset.sign != LINE_OFFSET_UNKNOWN)
1669 {
1670 if (need_colon)
1671 fputc_unfiltered (':', buf);
1672 fprintf_filtered (buf, "%s%d",
1673 (ls->line_offset.sign == LINE_OFFSET_NONE ? ""
1674 : (ls->line_offset.sign
1675 == LINE_OFFSET_PLUS ? "+" : "-")),
1676 ls->line_offset.offset);
1677 }
1678
1679 state->canonical->addr_string = ui_file_xstrdup (buf, NULL);
1680 ui_file_delete (buf);
1681 }
1682 }
1683
1684 /* Given a line offset in LS, construct the relevant SALs. */
1685
1686 static struct symtabs_and_lines
1687 create_sals_line_offset (struct linespec_state *self,
1688 linespec_p ls)
1689 {
1690 struct symtabs_and_lines values;
1691 struct symtab_and_line val;
1692 int use_default = 0;
1693
1694 init_sal (&val);
1695 values.sals = NULL;
1696 values.nelts = 0;
1697
1698 /* This is where we need to make sure we have good defaults.
1699 We must guarantee that this section of code is never executed
1700 when we are called with just a function anme, since
1701 set_default_source_symtab_and_line uses
1702 select_source_symtab that calls us with such an argument. */
1703
1704 if (VEC_length (symtab_p, ls->file_symtabs) == 1
1705 && VEC_index (symtab_p, ls->file_symtabs, 0) == NULL)
1706 {
1707 set_current_program_space (self->program_space);
1708
1709 /* Make sure we have at least a default source line. */
1710 set_default_source_symtab_and_line ();
1711 initialize_defaults (&self->default_symtab, &self->default_line);
1712 VEC_pop (symtab_p, ls->file_symtabs);
1713 VEC_free (symtab_p, ls->file_symtabs);
1714 ls->file_symtabs
1715 = collect_symtabs_from_filename (self->default_symtab->filename);
1716 use_default = 1;
1717 }
1718
1719 val.line = ls->line_offset.offset;
1720 switch (ls->line_offset.sign)
1721 {
1722 case LINE_OFFSET_PLUS:
1723 if (ls->line_offset.offset == 0)
1724 val.line = 5;
1725 if (use_default)
1726 val.line = self->default_line + val.line;
1727 break;
1728
1729 case LINE_OFFSET_MINUS:
1730 if (ls->line_offset.offset == 0)
1731 val.line = 15;
1732 if (use_default)
1733 val.line = self->default_line - val.line;
1734 else
1735 val.line = -val.line;
1736 break;
1737
1738 case LINE_OFFSET_NONE:
1739 break; /* No need to adjust val.line. */
1740 }
1741
1742 if (self->list_mode)
1743 decode_digits_list_mode (self, ls, &values, val);
1744 else
1745 {
1746 struct linetable_entry *best_entry = NULL;
1747 int *filter;
1748 struct block **blocks;
1749 struct cleanup *cleanup;
1750 struct symtabs_and_lines intermediate_results;
1751 int i, j;
1752
1753 intermediate_results.sals = NULL;
1754 intermediate_results.nelts = 0;
1755
1756 decode_digits_ordinary (self, ls, val.line, &intermediate_results,
1757 &best_entry);
1758 if (intermediate_results.nelts == 0 && best_entry != NULL)
1759 decode_digits_ordinary (self, ls, best_entry->line,
1760 &intermediate_results, &best_entry);
1761
1762 cleanup = make_cleanup (xfree, intermediate_results.sals);
1763
1764 /* For optimized code, the compiler can scatter one source line
1765 across disjoint ranges of PC values, even when no duplicate
1766 functions or inline functions are involved. For example,
1767 'for (;;)' inside a non-template, non-inline, and non-ctor-or-dtor
1768 function can result in two PC ranges. In this case, we don't
1769 want to set a breakpoint on the first PC of each range. To filter
1770 such cases, we use containing blocks -- for each PC found
1771 above, we see if there are other PCs that are in the same
1772 block. If yes, the other PCs are filtered out. */
1773
1774 filter = XNEWVEC (int, intermediate_results.nelts);
1775 make_cleanup (xfree, filter);
1776 blocks = XNEWVEC (struct block *, intermediate_results.nelts);
1777 make_cleanup (xfree, blocks);
1778
1779 for (i = 0; i < intermediate_results.nelts; ++i)
1780 {
1781 set_current_program_space (intermediate_results.sals[i].pspace);
1782
1783 filter[i] = 1;
1784 blocks[i] = block_for_pc_sect (intermediate_results.sals[i].pc,
1785 intermediate_results.sals[i].section);
1786 }
1787
1788 for (i = 0; i < intermediate_results.nelts; ++i)
1789 {
1790 if (blocks[i] != NULL)
1791 for (j = i + 1; j < intermediate_results.nelts; ++j)
1792 {
1793 if (blocks[j] == blocks[i])
1794 {
1795 filter[j] = 0;
1796 break;
1797 }
1798 }
1799 }
1800
1801 for (i = 0; i < intermediate_results.nelts; ++i)
1802 if (filter[i])
1803 {
1804 struct symbol *sym = (blocks[i]
1805 ? block_containing_function (blocks[i])
1806 : NULL);
1807
1808 if (self->funfirstline)
1809 skip_prologue_sal (&intermediate_results.sals[i]);
1810 /* Make sure the line matches the request, not what was
1811 found. */
1812 intermediate_results.sals[i].line = val.line;
1813 add_sal_to_sals (self, &values, &intermediate_results.sals[i],
1814 sym ? SYMBOL_NATURAL_NAME (sym) : NULL);
1815 }
1816
1817 do_cleanups (cleanup);
1818 }
1819
1820 if (values.nelts == 0)
1821 {
1822 if (ls->source_filename)
1823 throw_error (NOT_FOUND_ERROR, _("No line %d in file \"%s\"."),
1824 val.line, ls->source_filename);
1825 else
1826 throw_error (NOT_FOUND_ERROR, _("No line %d in the current file."),
1827 val.line);
1828 }
1829
1830 return values;
1831 }
1832
1833 /* Create and return SALs from the linespec LS. */
1834
1835 static struct symtabs_and_lines
1836 convert_linespec_to_sals (struct linespec_state *state, linespec_p ls)
1837 {
1838 struct symtabs_and_lines sals = {NULL, 0};
1839
1840 if (ls->expression != NULL)
1841 {
1842 /* We have an expression. No other attribute is allowed. */
1843 sals.sals = XMALLOC (struct symtab_and_line);
1844 sals.nelts = 1;
1845 sals.sals[0] = find_pc_line (ls->expr_pc, 0);
1846 sals.sals[0].pc = ls->expr_pc;
1847 sals.sals[0].section = find_pc_overlay (ls->expr_pc);
1848 sals.sals[0].explicit_pc = 1;
1849 }
1850 else if (ls->labels.label_symbols != NULL)
1851 {
1852 /* We have just a bunch of functions/methods or labels. */
1853 int i;
1854 struct symtab_and_line sal;
1855 struct symbol *sym;
1856
1857 for (i = 0; VEC_iterate (symbolp, ls->labels.label_symbols, i, sym); ++i)
1858 {
1859 symbol_to_sal (&sal, state->funfirstline, sym);
1860 add_sal_to_sals (state, &sals, &sal,
1861 SYMBOL_NATURAL_NAME (sym));
1862 }
1863 }
1864 else if (ls->function_symbols != NULL || ls->minimal_symbols != NULL)
1865 {
1866 /* We have just a bunch of functions and/or methods. */
1867 int i;
1868 struct symtab_and_line sal;
1869 struct symbol *sym;
1870 minsym_and_objfile_d *elem;
1871 struct program_space *pspace;
1872
1873 if (ls->function_symbols != NULL)
1874 {
1875 /* Sort symbols so that symbols with the same program space are next
1876 to each other. */
1877 qsort (VEC_address (symbolp, ls->function_symbols),
1878 VEC_length (symbolp, ls->function_symbols),
1879 sizeof (symbolp), compare_symbols);
1880
1881 for (i = 0; VEC_iterate (symbolp, ls->function_symbols, i, sym); ++i)
1882 {
1883 pspace = SYMTAB_PSPACE (SYMBOL_SYMTAB (sym));
1884 set_current_program_space (pspace);
1885 symbol_to_sal (&sal, state->funfirstline, sym);
1886 if (maybe_add_address (state->addr_set, pspace, sal.pc))
1887 add_sal_to_sals (state, &sals, &sal, SYMBOL_NATURAL_NAME (sym));
1888 }
1889 }
1890
1891 if (ls->minimal_symbols != NULL)
1892 {
1893 /* Sort minimal symbols by program space, too. */
1894 qsort (VEC_address (minsym_and_objfile_d, ls->minimal_symbols),
1895 VEC_length (minsym_and_objfile_d, ls->minimal_symbols),
1896 sizeof (minsym_and_objfile_d), compare_msymbols);
1897
1898 for (i = 0;
1899 VEC_iterate (minsym_and_objfile_d, ls->minimal_symbols, i, elem);
1900 ++i)
1901 {
1902 pspace = elem->objfile->pspace;
1903 set_current_program_space (pspace);
1904 minsym_found (state, elem->objfile, elem->minsym, &sals);
1905 }
1906 }
1907 }
1908 else if (ls->line_offset.sign != LINE_OFFSET_UNKNOWN)
1909 {
1910 /* Only an offset was specified. */
1911 sals = create_sals_line_offset (state, ls);
1912
1913 /* Make sure we have a filename for canonicalization. */
1914 if (ls->source_filename == NULL)
1915 ls->source_filename = xstrdup (state->default_symtab->filename);
1916 }
1917 else
1918 {
1919 /* We haven't found any results... */
1920 return sals;
1921 }
1922
1923 canonicalize_linespec (state, ls);
1924
1925 if (sals.nelts > 0 && state->canonical != NULL)
1926 state->canonical->pre_expanded = 1;
1927
1928 return sals;
1929 }
1930
1931 /* Parse a string that specifies a linespec.
1932 Pass the address of a char * variable; that variable will be
1933 advanced over the characters actually parsed.
1934
1935 The basic grammar of linespecs:
1936
1937 linespec -> expr_spec | var_spec | basic_spec
1938 expr_spec -> '*' STRING
1939 var_spec -> '$' (STRING | NUMBER)
1940
1941 basic_spec -> file_offset_spec | function_spec | label_spec
1942 file_offset_spec -> opt_file_spec offset_spec
1943 function_spec -> opt_file_spec function_name_spec opt_label_spec
1944 label_spec -> label_name_spec
1945
1946 opt_file_spec -> "" | file_name_spec ':'
1947 opt_label_spec -> "" | ':' label_name_spec
1948
1949 file_name_spec -> STRING
1950 function_name_spec -> STRING
1951 label_name_spec -> STRING
1952 function_name_spec -> STRING
1953 offset_spec -> NUMBER
1954 -> '+' NUMBER
1955 -> '-' NUMBER
1956
1957 This may all be followed by several keywords such as "if EXPR",
1958 which we ignore.
1959
1960 A comma will terminate parsing.
1961
1962 The function may be an undebuggable function found in minimal symbol table.
1963
1964 If the argument FUNFIRSTLINE is nonzero, we want the first line
1965 of real code inside a function when a function is specified, and it is
1966 not OK to specify a variable or type to get its line number.
1967
1968 DEFAULT_SYMTAB specifies the file to use if none is specified.
1969 It defaults to current_source_symtab.
1970 DEFAULT_LINE specifies the line number to use for relative
1971 line numbers (that start with signs). Defaults to current_source_line.
1972 If CANONICAL is non-NULL, store an array of strings containing the canonical
1973 line specs there if necessary. Currently overloaded member functions and
1974 line numbers or static functions without a filename yield a canonical
1975 line spec. The array and the line spec strings are allocated on the heap,
1976 it is the callers responsibility to free them.
1977
1978 Note that it is possible to return zero for the symtab
1979 if no file is validly specified. Callers must check that.
1980 Also, the line number returned may be invalid. */
1981
1982 /* Parse the linespec in ARGPTR. */
1983
1984 static struct symtabs_and_lines
1985 parse_linespec (linespec_parser *parser, char **argptr)
1986 {
1987 linespec_token token;
1988 struct symtabs_and_lines values;
1989 volatile struct gdb_exception file_exception;
1990 struct cleanup *cleanup;
1991
1992 /* A special case to start. It has become quite popular for
1993 IDEs to work around bugs in the previous parser by quoting
1994 the entire linespec, so we attempt to deal with this nicely. */
1995 parser->is_quote_enclosed = 0;
1996 if (!is_ada_operator (*argptr)
1997 && strchr (linespec_quote_characters, **argptr) != NULL)
1998 {
1999 const char *end;
2000
2001 end = skip_quote_char (*argptr + 1, **argptr);
2002 if (end != NULL && is_closing_quote_enclosed (end))
2003 {
2004 /* Here's the special case. Skip ARGPTR past the initial
2005 quote. */
2006 ++(*argptr);
2007 parser->is_quote_enclosed = 1;
2008 }
2009 }
2010
2011 parser->lexer.saved_arg = *argptr;
2012 parser->lexer.stream = argptr;
2013 file_exception.reason = 0;
2014
2015 /* Initialize the default symtab and line offset. */
2016 initialize_defaults (&PARSER_STATE (parser)->default_symtab,
2017 &PARSER_STATE (parser)->default_line);
2018
2019 /* Objective-C shortcut. */
2020 values = decode_objc (PARSER_STATE (parser), PARSER_RESULT (parser), argptr);
2021 if (values.sals != NULL)
2022 return values;
2023
2024 /* Start parsing. */
2025
2026 /* Get the first token. */
2027 token = linespec_lexer_lex_one (parser);
2028
2029 /* It must be either LSTOKEN_STRING or LSTOKEN_NUMBER. */
2030 if (token.type == LSTOKEN_STRING && *LS_TOKEN_STOKEN (token).ptr == '*')
2031 {
2032 char *expr, *copy;
2033
2034 /* User specified an expression, *EXPR. */
2035 copy = expr = copy_token_string (token);
2036 cleanup = make_cleanup (xfree, expr);
2037 PARSER_RESULT (parser)->expr_pc = linespec_expression_to_pc (&copy);
2038 discard_cleanups (cleanup);
2039 PARSER_RESULT (parser)->expression = expr;
2040
2041 /* This is a little hacky/tricky. If linespec_expression_to_pc
2042 did not evaluate the entire token, then we must find the
2043 string COPY inside the original token buffer. */
2044 if (*copy != '\0')
2045 {
2046 PARSER_STREAM (parser) = strstr (parser->lexer.saved_arg, copy);
2047 gdb_assert (PARSER_STREAM (parser) != NULL);
2048 }
2049
2050 /* Consume the token. */
2051 linespec_lexer_consume_token (parser);
2052
2053 goto convert_to_sals;
2054 }
2055 else if (token.type == LSTOKEN_STRING && *LS_TOKEN_STOKEN (token).ptr == '$')
2056 {
2057 char *var;
2058
2059 /* A NULL entry means to use GLOBAL_DEFAULT_SYMTAB. */
2060 VEC_safe_push (symtab_p, PARSER_RESULT (parser)->file_symtabs, NULL);
2061
2062 /* User specified a convenience variable or history value. */
2063 var = copy_token_string (token);
2064 cleanup = make_cleanup (xfree, var);
2065 PARSER_RESULT (parser)->line_offset
2066 = linespec_parse_variable (PARSER_STATE (parser), var);
2067
2068 /* If a line_offset wasn't found (VAR is the name of a user
2069 variable/function), then skip to normal symbol processing. */
2070 if (PARSER_RESULT (parser)->line_offset.sign != LINE_OFFSET_UNKNOWN)
2071 {
2072 discard_cleanups (cleanup);
2073
2074 /* Consume this token. */
2075 linespec_lexer_consume_token (parser);
2076
2077 goto convert_to_sals;
2078 }
2079
2080 do_cleanups (cleanup);
2081 }
2082 else if (token.type != LSTOKEN_STRING && token.type != LSTOKEN_NUMBER)
2083 unexpected_linespec_error (parser);
2084
2085 /* Shortcut: If the next token is not LSTOKEN_COLON, we know that
2086 this token cannot represent a filename. */
2087 token = linespec_lexer_peek_token (parser);
2088
2089 if (token.type == LSTOKEN_COLON)
2090 {
2091 char *user_filename;
2092
2093 /* Get the current token again and extract the filename. */
2094 token = linespec_lexer_lex_one (parser);
2095 user_filename = copy_token_string (token);
2096
2097 /* Check if the input is a filename. */
2098 TRY_CATCH (file_exception, RETURN_MASK_ERROR)
2099 {
2100 PARSER_RESULT (parser)->file_symtabs
2101 = symtabs_from_filename (user_filename);
2102 }
2103
2104 if (file_exception.reason >= 0)
2105 {
2106 /* Symtabs were found for the file. Record the filename. */
2107 PARSER_RESULT (parser)->source_filename = user_filename;
2108
2109 /* Get the next token. */
2110 token = linespec_lexer_consume_token (parser);
2111
2112 /* This is LSTOKEN_COLON; consume it. */
2113 linespec_lexer_consume_token (parser);
2114 }
2115 else
2116 {
2117 /* No symtabs found -- discard user_filename. */
2118 xfree (user_filename);
2119
2120 /* A NULL entry means to use GLOBAL_DEFAULT_SYMTAB. */
2121 VEC_safe_push (symtab_p, PARSER_RESULT (parser)->file_symtabs, NULL);
2122 }
2123 }
2124 /* If the next token is not EOI, KEYWORD, or COMMA, issue an error. */
2125 else if (token.type != LSTOKEN_EOI && token.type != LSTOKEN_KEYWORD
2126 && token.type != LSTOKEN_COMMA)
2127 {
2128 /* TOKEN is the _next_ token, not the one currently in the parser.
2129 Consuming the token will give the correct error message. */
2130 linespec_lexer_consume_token (parser);
2131 unexpected_linespec_error (parser);
2132 }
2133 else
2134 {
2135 /* A NULL entry means to use GLOBAL_DEFAULT_SYMTAB. */
2136 VEC_safe_push (symtab_p, PARSER_RESULT (parser)->file_symtabs, NULL);
2137 }
2138
2139 /* Parse the rest of the linespec. */
2140 linespec_parse_basic (parser);
2141
2142 if (PARSER_RESULT (parser)->function_symbols == NULL
2143 && PARSER_RESULT (parser)->labels.label_symbols == NULL
2144 && PARSER_RESULT (parser)->line_offset.sign == LINE_OFFSET_UNKNOWN
2145 && PARSER_RESULT (parser)->minimal_symbols == NULL)
2146 {
2147 /* The linespec didn't parse. Re-throw the file exception if
2148 there was one. */
2149 if (file_exception.reason < 0)
2150 throw_exception (file_exception);
2151
2152 /* Otherwise, the symbol is not found. */
2153 symbol_not_found_error (PARSER_RESULT (parser)->function_name,
2154 PARSER_RESULT (parser)->source_filename);
2155 }
2156
2157 convert_to_sals:
2158
2159 /* Get the last token and record how much of the input was parsed,
2160 if necessary. */
2161 token = linespec_lexer_lex_one (parser);
2162 if (token.type != LSTOKEN_EOI && token.type != LSTOKEN_KEYWORD)
2163 PARSER_STREAM (parser) = LS_TOKEN_STOKEN (token).ptr;
2164
2165 /* Convert the data in PARSER_RESULT to SALs. */
2166 values = convert_linespec_to_sals (PARSER_STATE (parser),
2167 PARSER_RESULT (parser));
2168
2169 return values;
2170 }
2171
2172
2173 /* A constructor for linespec_state. */
2174
2175 static void
2176 linespec_state_constructor (struct linespec_state *self,
2177 int flags, const struct language_defn *language,
2178 struct symtab *default_symtab,
2179 int default_line,
2180 struct linespec_result *canonical)
2181 {
2182 memset (self, 0, sizeof (*self));
2183 self->language = language;
2184 self->funfirstline = (flags & DECODE_LINE_FUNFIRSTLINE) ? 1 : 0;
2185 self->list_mode = (flags & DECODE_LINE_LIST_MODE) ? 1 : 0;
2186 self->default_symtab = default_symtab;
2187 self->default_line = default_line;
2188 self->canonical = canonical;
2189 self->program_space = current_program_space;
2190 self->addr_set = htab_create_alloc (10, hash_address_entry, eq_address_entry,
2191 xfree, xcalloc, xfree);
2192 }
2193
2194 /* Initialize a new linespec parser. */
2195
2196 static void
2197 linespec_parser_new (linespec_parser *parser,
2198 int flags, const struct language_defn *language,
2199 struct symtab *default_symtab,
2200 int default_line,
2201 struct linespec_result *canonical)
2202 {
2203 parser->lexer.current.type = LSTOKEN_CONSUMED;
2204 memset (PARSER_RESULT (parser), 0, sizeof (struct linespec));
2205 PARSER_RESULT (parser)->line_offset.sign = LINE_OFFSET_UNKNOWN;
2206 linespec_state_constructor (PARSER_STATE (parser), flags, language,
2207 default_symtab, default_line, canonical);
2208 }
2209
2210 /* A destructor for linespec_state. */
2211
2212 static void
2213 linespec_state_destructor (struct linespec_state *self)
2214 {
2215 htab_delete (self->addr_set);
2216 }
2217
2218 /* Delete a linespec parser. */
2219
2220 static void
2221 linespec_parser_delete (void *arg)
2222 {
2223 linespec_parser *parser = (linespec_parser *) arg;
2224
2225 if (PARSER_RESULT (parser)->expression)
2226 xfree (PARSER_RESULT (parser)->expression);
2227 if (PARSER_RESULT (parser)->source_filename)
2228 xfree (PARSER_RESULT (parser)->source_filename);
2229 if (PARSER_RESULT (parser)->label_name)
2230 xfree (PARSER_RESULT (parser)->label_name);
2231 if (PARSER_RESULT (parser)->function_name)
2232 xfree (PARSER_RESULT (parser)->function_name);
2233
2234 if (PARSER_RESULT (parser)->file_symtabs != NULL)
2235 VEC_free (symtab_p, PARSER_RESULT (parser)->file_symtabs);
2236
2237 if (PARSER_RESULT (parser)->function_symbols != NULL)
2238 VEC_free (symbolp, PARSER_RESULT (parser)->function_symbols);
2239
2240 if (PARSER_RESULT (parser)->minimal_symbols != NULL)
2241 VEC_free (minsym_and_objfile_d, PARSER_RESULT (parser)->minimal_symbols);
2242
2243 if (PARSER_RESULT (parser)->labels.label_symbols != NULL)
2244 VEC_free (symbolp, PARSER_RESULT (parser)->labels.label_symbols);
2245
2246 if (PARSER_RESULT (parser)->labels.function_symbols != NULL)
2247 VEC_free (symbolp, PARSER_RESULT (parser)->labels.function_symbols);
2248
2249 linespec_state_destructor (PARSER_STATE (parser));
2250 }
2251
2252 /* See linespec.h. */
2253
2254 void
2255 decode_line_full (char **argptr, int flags,
2256 struct symtab *default_symtab,
2257 int default_line, struct linespec_result *canonical,
2258 const char *select_mode,
2259 const char *filter)
2260 {
2261 struct symtabs_and_lines result;
2262 struct cleanup *cleanups;
2263 char *arg_start = *argptr;
2264 VEC (const_char_ptr) *filters = NULL;
2265 linespec_parser parser;
2266 struct linespec_state *state;
2267
2268 gdb_assert (canonical != NULL);
2269 /* The filter only makes sense for 'all'. */
2270 gdb_assert (filter == NULL || select_mode == multiple_symbols_all);
2271 gdb_assert (select_mode == NULL
2272 || select_mode == multiple_symbols_all
2273 || select_mode == multiple_symbols_ask
2274 || select_mode == multiple_symbols_cancel);
2275 gdb_assert ((flags & DECODE_LINE_LIST_MODE) == 0);
2276
2277 linespec_parser_new (&parser, flags, current_language, default_symtab,
2278 default_line, canonical);
2279 cleanups = make_cleanup (linespec_parser_delete, &parser);
2280 save_current_program_space ();
2281
2282 result = parse_linespec (&parser, argptr);
2283 state = PARSER_STATE (&parser);
2284
2285 gdb_assert (result.nelts == 1 || canonical->pre_expanded);
2286 gdb_assert (canonical->addr_string != NULL);
2287 canonical->pre_expanded = 1;
2288
2289 /* Fill in the missing canonical names. */
2290 if (result.nelts > 0)
2291 {
2292 int i;
2293
2294 if (state->canonical_names == NULL)
2295 state->canonical_names = xcalloc (result.nelts, sizeof (char *));
2296 make_cleanup (xfree, state->canonical_names);
2297 for (i = 0; i < result.nelts; ++i)
2298 {
2299 if (state->canonical_names[i] == NULL)
2300 state->canonical_names[i] = savestring (arg_start,
2301 *argptr - arg_start);
2302 make_cleanup (xfree, state->canonical_names[i]);
2303 }
2304 }
2305
2306 if (select_mode == NULL)
2307 {
2308 if (ui_out_is_mi_like_p (interp_ui_out (top_level_interpreter ())))
2309 select_mode = multiple_symbols_all;
2310 else
2311 select_mode = multiple_symbols_select_mode ();
2312 }
2313
2314 if (select_mode == multiple_symbols_all)
2315 {
2316 if (filter != NULL)
2317 {
2318 make_cleanup (VEC_cleanup (const_char_ptr), &filters);
2319 VEC_safe_push (const_char_ptr, filters, filter);
2320 filter_results (state, &result, filters);
2321 }
2322 else
2323 convert_results_to_lsals (state, &result);
2324 }
2325 else
2326 decode_line_2 (state, &result, select_mode);
2327
2328 do_cleanups (cleanups);
2329 }
2330
2331 struct symtabs_and_lines
2332 decode_line_1 (char **argptr, int flags,
2333 struct symtab *default_symtab,
2334 int default_line)
2335 {
2336 struct symtabs_and_lines result;
2337 linespec_parser parser;
2338 struct cleanup *cleanups;
2339
2340 linespec_parser_new (&parser, flags, current_language, default_symtab,
2341 default_line, NULL);
2342 cleanups = make_cleanup (linespec_parser_delete, &parser);
2343 save_current_program_space ();
2344
2345 result = parse_linespec (&parser, argptr);
2346
2347 do_cleanups (cleanups);
2348 return result;
2349 }
2350
2351 \f
2352
2353 /* First, some functions to initialize stuff at the beggining of the
2354 function. */
2355
2356 static void
2357 initialize_defaults (struct symtab **default_symtab, int *default_line)
2358 {
2359 if (*default_symtab == 0)
2360 {
2361 /* Use whatever we have for the default source line. We don't use
2362 get_current_or_default_symtab_and_line as it can recurse and call
2363 us back! */
2364 struct symtab_and_line cursal =
2365 get_current_source_symtab_and_line ();
2366
2367 *default_symtab = cursal.symtab;
2368 *default_line = cursal.line;
2369 }
2370 }
2371
2372 \f
2373
2374 /* Evaluate the expression pointed to by EXP_PTR into a CORE_ADDR,
2375 advancing EXP_PTR past any parsed text. */
2376
2377 static CORE_ADDR
2378 linespec_expression_to_pc (char **exp_ptr)
2379 {
2380 if (current_program_space->executing_startup)
2381 /* The error message doesn't really matter, because this case
2382 should only hit during breakpoint reset. */
2383 throw_error (NOT_FOUND_ERROR, _("cannot evaluate expressions while "
2384 "program space is in startup"));
2385
2386 (*exp_ptr)++;
2387 return value_as_address (parse_to_comma_and_eval (exp_ptr));
2388 }
2389
2390 \f
2391
2392 /* Here's where we recognise an Objective-C Selector. An Objective C
2393 selector may be implemented by more than one class, therefore it
2394 may represent more than one method/function. This gives us a
2395 situation somewhat analogous to C++ overloading. If there's more
2396 than one method that could represent the selector, then use some of
2397 the existing C++ code to let the user choose one. */
2398
2399 static struct symtabs_and_lines
2400 decode_objc (struct linespec_state *self, linespec_p ls, char **argptr)
2401 {
2402 struct collect_info info;
2403 VEC (const_char_ptr) *symbol_names = NULL;
2404 struct symtabs_and_lines values;
2405 char *new_argptr;
2406 struct cleanup *cleanup = make_cleanup (VEC_cleanup (const_char_ptr),
2407 &symbol_names);
2408
2409 info.state = self;
2410 info.file_symtabs = NULL;
2411 VEC_safe_push (symtab_p, info.file_symtabs, NULL);
2412 make_cleanup (VEC_cleanup (symtab_p), &info.file_symtabs);
2413 info.result.symbols = NULL;
2414 info.result.minimal_symbols = NULL;
2415 values.nelts = 0;
2416 values.sals = NULL;
2417
2418 new_argptr = find_imps (*argptr, &symbol_names);
2419 if (VEC_empty (const_char_ptr, symbol_names))
2420 {
2421 do_cleanups (cleanup);
2422 return values;
2423 }
2424
2425 add_all_symbol_names_from_pspace (&info, NULL, symbol_names);
2426
2427 if (!VEC_empty (symbolp, info.result.symbols)
2428 || !VEC_empty (minsym_and_objfile_d, info.result.minimal_symbols))
2429 {
2430 char *saved_arg;
2431
2432 saved_arg = alloca (new_argptr - *argptr + 1);
2433 memcpy (saved_arg, *argptr, new_argptr - *argptr);
2434 saved_arg[new_argptr - *argptr] = '\0';
2435
2436 ls->function_symbols = info.result.symbols;
2437 ls->minimal_symbols = info.result.minimal_symbols;
2438 values = convert_linespec_to_sals (self, ls);
2439
2440 if (self->canonical)
2441 {
2442 self->canonical->pre_expanded = 1;
2443 if (ls->source_filename)
2444 self->canonical->addr_string
2445 = xstrprintf ("%s:%s", ls->source_filename, saved_arg);
2446 else
2447 self->canonical->addr_string = xstrdup (saved_arg);
2448 }
2449 }
2450
2451 *argptr = new_argptr;
2452
2453 do_cleanups (cleanup);
2454
2455 return values;
2456 }
2457
2458 /* An instance of this type is used when collecting prefix symbols for
2459 decode_compound. */
2460
2461 struct decode_compound_collector
2462 {
2463 /* The result vector. */
2464 VEC (symbolp) *symbols;
2465
2466 /* A hash table of all symbols we found. We use this to avoid
2467 adding any symbol more than once. */
2468 htab_t unique_syms;
2469 };
2470
2471 /* A callback for iterate_over_symbols that is used by
2472 lookup_prefix_sym to collect type symbols. */
2473
2474 static int
2475 collect_one_symbol (struct symbol *sym, void *d)
2476 {
2477 struct decode_compound_collector *collector = d;
2478 void **slot;
2479 struct type *t;
2480
2481 if (SYMBOL_CLASS (sym) != LOC_TYPEDEF)
2482 return 1; /* Continue iterating. */
2483
2484 t = SYMBOL_TYPE (sym);
2485 CHECK_TYPEDEF (t);
2486 if (TYPE_CODE (t) != TYPE_CODE_STRUCT
2487 && TYPE_CODE (t) != TYPE_CODE_UNION
2488 && TYPE_CODE (t) != TYPE_CODE_NAMESPACE)
2489 return 1; /* Continue iterating. */
2490
2491 slot = htab_find_slot (collector->unique_syms, sym, INSERT);
2492 if (!*slot)
2493 {
2494 *slot = sym;
2495 VEC_safe_push (symbolp, collector->symbols, sym);
2496 }
2497
2498 return 1; /* Continue iterating. */
2499 }
2500
2501 /* Return any symbols corresponding to CLASS_NAME in FILE_SYMTABS. */
2502
2503 static VEC (symbolp) *
2504 lookup_prefix_sym (struct linespec_state *state, VEC (symtab_p) *file_symtabs,
2505 const char *class_name)
2506 {
2507 int ix;
2508 struct symtab *elt;
2509 struct decode_compound_collector collector;
2510 struct cleanup *outer;
2511 struct cleanup *cleanup;
2512
2513 collector.symbols = NULL;
2514 outer = make_cleanup (VEC_cleanup (symbolp), &collector.symbols);
2515
2516 collector.unique_syms = htab_create_alloc (1, htab_hash_pointer,
2517 htab_eq_pointer, NULL,
2518 xcalloc, xfree);
2519 cleanup = make_cleanup_htab_delete (collector.unique_syms);
2520
2521 for (ix = 0; VEC_iterate (symtab_p, file_symtabs, ix, elt); ++ix)
2522 {
2523 if (elt == NULL)
2524 {
2525 iterate_over_all_matching_symtabs (state, class_name, STRUCT_DOMAIN,
2526 collect_one_symbol, &collector,
2527 NULL, 0);
2528 iterate_over_all_matching_symtabs (state, class_name, VAR_DOMAIN,
2529 collect_one_symbol, &collector,
2530 NULL, 0);
2531 }
2532 else
2533 {
2534 struct block *search_block;
2535
2536 /* Program spaces that are executing startup should have
2537 been filtered out earlier. */
2538 gdb_assert (!SYMTAB_PSPACE (elt)->executing_startup);
2539 set_current_program_space (SYMTAB_PSPACE (elt));
2540 search_block = get_search_block (elt);
2541 LA_ITERATE_OVER_SYMBOLS (search_block, class_name, STRUCT_DOMAIN,
2542 collect_one_symbol, &collector);
2543 LA_ITERATE_OVER_SYMBOLS (search_block, class_name, VAR_DOMAIN,
2544 collect_one_symbol, &collector);
2545 }
2546 }
2547
2548 do_cleanups (cleanup);
2549 discard_cleanups (outer);
2550 return collector.symbols;
2551 }
2552
2553 /* A qsort comparison function for symbols. The resulting order does
2554 not actually matter; we just need to be able to sort them so that
2555 symbols with the same program space end up next to each other. */
2556
2557 static int
2558 compare_symbols (const void *a, const void *b)
2559 {
2560 struct symbol * const *sa = a;
2561 struct symbol * const *sb = b;
2562 uintptr_t uia, uib;
2563
2564 uia = (uintptr_t) SYMTAB_PSPACE (SYMBOL_SYMTAB (*sa));
2565 uib = (uintptr_t) SYMTAB_PSPACE (SYMBOL_SYMTAB (*sb));
2566
2567 if (uia < uib)
2568 return -1;
2569 if (uia > uib)
2570 return 1;
2571
2572 uia = (uintptr_t) *sa;
2573 uib = (uintptr_t) *sb;
2574
2575 if (uia < uib)
2576 return -1;
2577 if (uia > uib)
2578 return 1;
2579
2580 return 0;
2581 }
2582
2583 /* Like compare_symbols but for minimal symbols. */
2584
2585 static int
2586 compare_msymbols (const void *a, const void *b)
2587 {
2588 const struct minsym_and_objfile *sa = a;
2589 const struct minsym_and_objfile *sb = b;
2590 uintptr_t uia, uib;
2591
2592 uia = (uintptr_t) sa->objfile->pspace;
2593 uib = (uintptr_t) sa->objfile->pspace;
2594
2595 if (uia < uib)
2596 return -1;
2597 if (uia > uib)
2598 return 1;
2599
2600 uia = (uintptr_t) sa->minsym;
2601 uib = (uintptr_t) sb->minsym;
2602
2603 if (uia < uib)
2604 return -1;
2605 if (uia > uib)
2606 return 1;
2607
2608 return 0;
2609 }
2610
2611 /* Look for all the matching instances of each symbol in NAMES. Only
2612 instances from PSPACE are considered; other program spaces are
2613 handled by our caller. If PSPACE is NULL, then all program spaces
2614 are considered. Results are stored into INFO. */
2615
2616 static void
2617 add_all_symbol_names_from_pspace (struct collect_info *info,
2618 struct program_space *pspace,
2619 VEC (const_char_ptr) *names)
2620 {
2621 int ix;
2622 const char *iter;
2623
2624 for (ix = 0; VEC_iterate (const_char_ptr, names, ix, iter); ++ix)
2625 add_matching_symbols_to_info (iter, info, pspace);
2626 }
2627
2628 static void
2629 find_superclass_methods (VEC (typep) *superclasses,
2630 const char *name,
2631 VEC (const_char_ptr) **result_names)
2632 {
2633 int old_len = VEC_length (const_char_ptr, *result_names);
2634 VEC (typep) *iter_classes;
2635 struct cleanup *cleanup = make_cleanup (null_cleanup, NULL);
2636
2637 iter_classes = superclasses;
2638 while (1)
2639 {
2640 VEC (typep) *new_supers = NULL;
2641 int ix;
2642 struct type *t;
2643
2644 make_cleanup (VEC_cleanup (typep), &new_supers);
2645 for (ix = 0; VEC_iterate (typep, iter_classes, ix, t); ++ix)
2646 find_methods (t, name, result_names, &new_supers);
2647
2648 if (VEC_length (const_char_ptr, *result_names) != old_len
2649 || VEC_empty (typep, new_supers))
2650 break;
2651
2652 iter_classes = new_supers;
2653 }
2654
2655 do_cleanups (cleanup);
2656 }
2657
2658 /* This finds the method METHOD_NAME in the class CLASS_NAME whose type is
2659 given by one of the symbols in SYM_CLASSES. Matches are returned
2660 in SYMBOLS (for debug symbols) and MINSYMS (for minimal symbols). */
2661
2662 static void
2663 find_method (struct linespec_state *self, VEC (symtab_p) *file_symtabs,
2664 const char *class_name, const char *method_name,
2665 VEC (symbolp) *sym_classes, VEC (symbolp) **symbols,
2666 VEC (minsym_and_objfile_d) **minsyms)
2667 {
2668 struct symbol *sym;
2669 struct cleanup *cleanup = make_cleanup (null_cleanup, NULL);
2670 int ix;
2671 int last_result_len;
2672 VEC (typep) *superclass_vec;
2673 VEC (const_char_ptr) *result_names;
2674 struct collect_info info;
2675
2676 /* Sort symbols so that symbols with the same program space are next
2677 to each other. */
2678 qsort (VEC_address (symbolp, sym_classes),
2679 VEC_length (symbolp, sym_classes),
2680 sizeof (symbolp),
2681 compare_symbols);
2682
2683 info.state = self;
2684 info.file_symtabs = file_symtabs;
2685 info.result.symbols = NULL;
2686 info.result.minimal_symbols = NULL;
2687
2688 /* Iterate over all the types, looking for the names of existing
2689 methods matching METHOD_NAME. If we cannot find a direct method in a
2690 given program space, then we consider inherited methods; this is
2691 not ideal (ideal would be to respect C++ hiding rules), but it
2692 seems good enough and is what GDB has historically done. We only
2693 need to collect the names because later we find all symbols with
2694 those names. This loop is written in a somewhat funny way
2695 because we collect data across the program space before deciding
2696 what to do. */
2697 superclass_vec = NULL;
2698 make_cleanup (VEC_cleanup (typep), &superclass_vec);
2699 result_names = NULL;
2700 make_cleanup (VEC_cleanup (const_char_ptr), &result_names);
2701 last_result_len = 0;
2702 for (ix = 0; VEC_iterate (symbolp, sym_classes, ix, sym); ++ix)
2703 {
2704 struct type *t;
2705 struct program_space *pspace;
2706
2707 /* Program spaces that are executing startup should have
2708 been filtered out earlier. */
2709 gdb_assert (!SYMTAB_PSPACE (SYMBOL_SYMTAB (sym))->executing_startup);
2710 pspace = SYMTAB_PSPACE (SYMBOL_SYMTAB (sym));
2711 set_current_program_space (pspace);
2712 t = check_typedef (SYMBOL_TYPE (sym));
2713 find_methods (t, method_name, &result_names, &superclass_vec);
2714
2715 /* Handle all items from a single program space at once; and be
2716 sure not to miss the last batch. */
2717 if (ix == VEC_length (symbolp, sym_classes) - 1
2718 || (pspace
2719 != SYMTAB_PSPACE (SYMBOL_SYMTAB (VEC_index (symbolp, sym_classes,
2720 ix + 1)))))
2721 {
2722 /* If we did not find a direct implementation anywhere in
2723 this program space, consider superclasses. */
2724 if (VEC_length (const_char_ptr, result_names) == last_result_len)
2725 find_superclass_methods (superclass_vec, method_name,
2726 &result_names);
2727
2728 /* We have a list of candidate symbol names, so now we
2729 iterate over the symbol tables looking for all
2730 matches in this pspace. */
2731 add_all_symbol_names_from_pspace (&info, pspace, result_names);
2732
2733 VEC_truncate (typep, superclass_vec, 0);
2734 last_result_len = VEC_length (const_char_ptr, result_names);
2735 }
2736 }
2737
2738 if (!VEC_empty (symbolp, info.result.symbols)
2739 || !VEC_empty (minsym_and_objfile_d, info.result.minimal_symbols))
2740 {
2741 *symbols = info.result.symbols;
2742 *minsyms = info.result.minimal_symbols;
2743 do_cleanups (cleanup);
2744 return;
2745 }
2746
2747 /* Throw an NOT_FOUND_ERROR. This will be caught by the caller
2748 and other attempts to locate the symbol will be made. */
2749 throw_error (NOT_FOUND_ERROR, _("see caller, this text doesn't matter"));
2750 }
2751
2752 \f
2753
2754 /* This object is used when collecting all matching symtabs. */
2755
2756 struct symtab_collector
2757 {
2758 /* The result vector of symtabs. */
2759 VEC (symtab_p) *symtabs;
2760
2761 /* This is used to ensure the symtabs are unique. */
2762 htab_t symtab_table;
2763 };
2764
2765 /* Callback for iterate_over_symtabs. */
2766
2767 static int
2768 add_symtabs_to_list (struct symtab *symtab, void *d)
2769 {
2770 struct symtab_collector *data = d;
2771 void **slot;
2772
2773 slot = htab_find_slot (data->symtab_table, symtab, INSERT);
2774 if (!*slot)
2775 {
2776 *slot = symtab;
2777 VEC_safe_push (symtab_p, data->symtabs, symtab);
2778 }
2779
2780 return 0;
2781 }
2782
2783 /* Given a file name, return a VEC of all matching symtabs. */
2784
2785 static VEC (symtab_p) *
2786 collect_symtabs_from_filename (const char *file)
2787 {
2788 struct symtab_collector collector;
2789 struct cleanup *cleanups;
2790 struct program_space *pspace;
2791
2792 collector.symtabs = NULL;
2793 collector.symtab_table = htab_create (1, htab_hash_pointer, htab_eq_pointer,
2794 NULL);
2795 cleanups = make_cleanup_htab_delete (collector.symtab_table);
2796
2797 /* Find that file's data. */
2798 ALL_PSPACES (pspace)
2799 {
2800 if (pspace->executing_startup)
2801 continue;
2802
2803 set_current_program_space (pspace);
2804 iterate_over_symtabs (file, add_symtabs_to_list, &collector);
2805 }
2806
2807 do_cleanups (cleanups);
2808 return collector.symtabs;
2809 }
2810
2811 /* Return all the symtabs associated to the FILENAME. */
2812
2813 static VEC (symtab_p) *
2814 symtabs_from_filename (const char *filename)
2815 {
2816 VEC (symtab_p) *result;
2817
2818 result = collect_symtabs_from_filename (filename);
2819
2820 if (VEC_empty (symtab_p, result))
2821 {
2822 if (!have_full_symbols () && !have_partial_symbols ())
2823 throw_error (NOT_FOUND_ERROR,
2824 _("No symbol table is loaded. "
2825 "Use the \"file\" command."));
2826 throw_error (NOT_FOUND_ERROR, _("No source file named %s."), filename);
2827 }
2828
2829 return result;
2830 }
2831
2832 /* Look up a function symbol named NAME in symtabs FILE_SYMTABS. Matching
2833 debug symbols are returned in SYMBOLS. Matching minimal symbols are
2834 returned in MINSYMS. */
2835
2836 static void
2837 find_function_symbols (struct linespec_state *state,
2838 VEC (symtab_p) *file_symtabs, const char *name,
2839 VEC (symbolp) **symbols,
2840 VEC (minsym_and_objfile_d) **minsyms)
2841 {
2842 struct collect_info info;
2843 VEC (const_char_ptr) *symbol_names = NULL;
2844 struct cleanup *cleanup = make_cleanup (VEC_cleanup (const_char_ptr),
2845 &symbol_names);
2846
2847 info.state = state;
2848 info.result.symbols = NULL;
2849 info.result.minimal_symbols = NULL;
2850 info.file_symtabs = file_symtabs;
2851
2852 /* Try NAME as an Objective-C selector. */
2853 find_imps ((char *) name, &symbol_names);
2854 if (!VEC_empty (const_char_ptr, symbol_names))
2855 add_all_symbol_names_from_pspace (&info, NULL, symbol_names);
2856 else
2857 add_matching_symbols_to_info (name, &info, NULL);
2858
2859 do_cleanups (cleanup);
2860
2861 if (VEC_empty (symbolp, info.result.symbols))
2862 {
2863 VEC_free (symbolp, info.result.symbols);
2864 *symbols = NULL;
2865 }
2866 else
2867 *symbols = info.result.symbols;
2868
2869 if (VEC_empty (minsym_and_objfile_d, info.result.minimal_symbols))
2870 {
2871 VEC_free (minsym_and_objfile_d, info.result.minimal_symbols);
2872 *minsyms = NULL;
2873 }
2874 else
2875 *minsyms = info.result.minimal_symbols;
2876 }
2877
2878 /* Find all symbols named NAME in FILE_SYMTABS, returning debug symbols
2879 in SYMBOLS and minimal symbols in MINSYMS. */
2880
2881 void
2882 find_linespec_symbols (struct linespec_state *state,
2883 VEC (symtab_p) *file_symtabs,
2884 const char *name,
2885 VEC (symbolp) **symbols,
2886 VEC (minsym_and_objfile_d) **minsyms)
2887 {
2888 char *klass, *method, *canon;
2889 const char *lookup_name, *last, *p, *scope_op;
2890 struct cleanup *cleanup;
2891 VEC (symbolp) *classes;
2892 volatile struct gdb_exception except;
2893
2894 cleanup = demangle_for_lookup (name, state->language->la_language,
2895 &lookup_name);
2896 if (state->language->la_language == language_ada)
2897 {
2898 /* In Ada, the symbol lookups are performed using the encoded
2899 name rather than the demangled name. */
2900 lookup_name = ada_name_for_lookup (name);
2901 make_cleanup (xfree, (void *) lookup_name);
2902 }
2903
2904 canon = cp_canonicalize_string_no_typedefs (lookup_name);
2905 if (canon != NULL)
2906 {
2907 lookup_name = canon;
2908 cleanup = make_cleanup (xfree, canon);
2909 }
2910
2911 /* See if we can find a scope operator and break this symbol
2912 name into namespaces${SCOPE_OPERATOR}class_name and method_name. */
2913 scope_op = "::";
2914 p = find_toplevel_string (lookup_name, scope_op);
2915 if (p == NULL)
2916 {
2917 /* No C++ scope operator. Try Java. */
2918 scope_op = ".";
2919 p = find_toplevel_string (lookup_name, scope_op);
2920 }
2921
2922 last = NULL;
2923 while (p != NULL)
2924 {
2925 last = p;
2926 p = find_toplevel_string (p + strlen (scope_op), scope_op);
2927 }
2928
2929 /* If no scope operator was found, lookup the name as a symbol. */
2930 if (last == NULL)
2931 {
2932 find_function_symbols (state, file_symtabs, lookup_name,
2933 symbols, minsyms);
2934 do_cleanups (cleanup);
2935 return;
2936 }
2937
2938 /* NAME points to the class name.
2939 LAST points to the method name. */
2940 klass = xmalloc ((last - lookup_name + 1) * sizeof (char));
2941 make_cleanup (xfree, klass);
2942 strncpy (klass, lookup_name, last - lookup_name);
2943 klass[last - lookup_name] = '\0';
2944
2945 /* Skip past the scope operator. */
2946 last += strlen (scope_op);
2947 method = xmalloc ((strlen (last) + 1) * sizeof (char));
2948 make_cleanup (xfree, method);
2949 strcpy (method, last);
2950
2951 /* Find a list of classes named KLASS. */
2952 classes = lookup_prefix_sym (state, file_symtabs, klass);
2953 make_cleanup (VEC_cleanup (symbolp), &classes);
2954 if (!VEC_empty (symbolp, classes))
2955 {
2956 /* Now locate a list of suitable methods named METHOD. */
2957 TRY_CATCH (except, RETURN_MASK_ERROR)
2958 {
2959 find_method (state, file_symtabs, klass, method, classes,
2960 symbols, minsyms);
2961 }
2962
2963 /* If successful, we're done. If NOT_FOUND_ERROR
2964 was not thrown, rethrow the exception that we did get.
2965 Otherwise, fall back to looking up the entire name as a symbol.
2966 This can happen with namespace::function. */
2967 if (except.reason >= 0)
2968 {
2969 do_cleanups (cleanup);
2970 return;
2971 }
2972 else if (except.error != NOT_FOUND_ERROR)
2973 throw_exception (except);
2974 }
2975
2976 /* We couldn't find a class, so we check the entire name as a symbol
2977 instead. */
2978 find_function_symbols (state, file_symtabs, lookup_name, symbols, minsyms);
2979 do_cleanups (cleanup);
2980 }
2981
2982 /* Return all labels named NAME in FUNCTION_SYMBOLS. Return the
2983 actual function symbol in which the label was found in LABEL_FUNC_RET. */
2984
2985 static VEC (symbolp) *
2986 find_label_symbols (struct linespec_state *self,
2987 VEC (symbolp) *function_symbols,
2988 VEC (symbolp) **label_funcs_ret, const char *name)
2989 {
2990 int ix;
2991 struct block *block;
2992 struct symbol *sym;
2993 struct symbol *fn_sym;
2994 VEC (symbolp) *result = NULL;
2995
2996 if (function_symbols == NULL)
2997 {
2998 set_current_program_space (self->program_space);
2999 block = get_search_block (NULL);
3000
3001 for (;
3002 block && !BLOCK_FUNCTION (block);
3003 block = BLOCK_SUPERBLOCK (block))
3004 ;
3005 if (!block)
3006 return NULL;
3007 fn_sym = BLOCK_FUNCTION (block);
3008
3009 sym = lookup_symbol (name, block, LABEL_DOMAIN, 0);
3010
3011 if (sym != NULL)
3012 {
3013 VEC_safe_push (symbolp, result, sym);
3014 VEC_safe_push (symbolp, *label_funcs_ret, fn_sym);
3015 }
3016 }
3017 else
3018 {
3019 for (ix = 0;
3020 VEC_iterate (symbolp, function_symbols, ix, fn_sym); ++ix)
3021 {
3022 set_current_program_space (SYMTAB_PSPACE (SYMBOL_SYMTAB (fn_sym)));
3023 block = SYMBOL_BLOCK_VALUE (fn_sym);
3024 sym = lookup_symbol (name, block, LABEL_DOMAIN, 0);
3025
3026 if (sym != NULL)
3027 {
3028 VEC_safe_push (symbolp, result, sym);
3029 VEC_safe_push (symbolp, *label_funcs_ret, fn_sym);
3030 }
3031 }
3032 }
3033
3034 return result;
3035 }
3036
3037 \f
3038
3039 /* A helper for create_sals_line_offset that handles the 'list_mode' case. */
3040
3041 static void
3042 decode_digits_list_mode (struct linespec_state *self,
3043 linespec_p ls,
3044 struct symtabs_and_lines *values,
3045 struct symtab_and_line val)
3046 {
3047 int ix;
3048 struct symtab *elt;
3049
3050 gdb_assert (self->list_mode);
3051
3052 for (ix = 0; VEC_iterate (symtab_p, ls->file_symtabs, ix, elt);
3053 ++ix)
3054 {
3055 /* The logic above should ensure this. */
3056 gdb_assert (elt != NULL);
3057
3058 set_current_program_space (SYMTAB_PSPACE (elt));
3059
3060 /* Simplistic search just for the list command. */
3061 val.symtab = find_line_symtab (elt, val.line, NULL, NULL);
3062 if (val.symtab == NULL)
3063 val.symtab = elt;
3064 val.pspace = SYMTAB_PSPACE (elt);
3065 val.pc = 0;
3066 val.explicit_line = 1;
3067
3068 add_sal_to_sals (self, values, &val, NULL);
3069 }
3070 }
3071
3072 /* A helper for create_sals_line_offset that iterates over the symtabs,
3073 adding lines to the VEC. */
3074
3075 static void
3076 decode_digits_ordinary (struct linespec_state *self,
3077 linespec_p ls,
3078 int line,
3079 struct symtabs_and_lines *sals,
3080 struct linetable_entry **best_entry)
3081 {
3082 int ix;
3083 struct symtab *elt;
3084
3085 for (ix = 0; VEC_iterate (symtab_p, ls->file_symtabs, ix, elt); ++ix)
3086 {
3087 int i;
3088 VEC (CORE_ADDR) *pcs;
3089 CORE_ADDR pc;
3090
3091 /* The logic above should ensure this. */
3092 gdb_assert (elt != NULL);
3093
3094 set_current_program_space (SYMTAB_PSPACE (elt));
3095
3096 pcs = find_pcs_for_symtab_line (elt, line, best_entry);
3097 for (i = 0; VEC_iterate (CORE_ADDR, pcs, i, pc); ++i)
3098 {
3099 struct symtab_and_line sal;
3100
3101 init_sal (&sal);
3102 sal.pspace = SYMTAB_PSPACE (elt);
3103 sal.symtab = elt;
3104 sal.line = line;
3105 sal.pc = pc;
3106 add_sal_to_sals_basic (sals, &sal);
3107 }
3108
3109 VEC_free (CORE_ADDR, pcs);
3110 }
3111 }
3112
3113 \f
3114
3115 /* Return the line offset represented by VARIABLE. */
3116
3117 static struct line_offset
3118 linespec_parse_variable (struct linespec_state *self, const char *variable)
3119 {
3120 int index = 0;
3121 const char *p;
3122 struct line_offset offset = {0, LINE_OFFSET_NONE};
3123
3124 p = (variable[1] == '$') ? variable + 2 : variable + 1;
3125 if (*p == '$')
3126 ++p;
3127 while (*p >= '0' && *p <= '9')
3128 ++p;
3129 if (!*p) /* Reached end of token without hitting non-digit. */
3130 {
3131 /* We have a value history reference. */
3132 struct value *val_history;
3133
3134 sscanf ((variable[1] == '$') ? variable + 2 : variable + 1, "%d", &index);
3135 val_history
3136 = access_value_history ((variable[1] == '$') ? -index : index);
3137 if (TYPE_CODE (value_type (val_history)) != TYPE_CODE_INT)
3138 error (_("History values used in line "
3139 "specs must have integer values."));
3140 offset.offset = value_as_long (val_history);
3141 }
3142 else
3143 {
3144 /* Not all digits -- may be user variable/function or a
3145 convenience variable. */
3146 LONGEST valx;
3147 struct internalvar *ivar;
3148
3149 /* Try it as a convenience variable. If it is not a convenience
3150 variable, return and allow normal symbol lookup to occur. */
3151 ivar = lookup_only_internalvar (variable + 1);
3152 if (ivar == NULL)
3153 /* No internal variable with that name. Mark the offset
3154 as unknown to allow the name to be looked up as a symbol. */
3155 offset.sign = LINE_OFFSET_UNKNOWN;
3156 else
3157 {
3158 /* We found a valid variable name. If it is not an integer,
3159 throw an error. */
3160 if (!get_internalvar_integer (ivar, &valx))
3161 error (_("Convenience variables used in line "
3162 "specs must have integer values."));
3163 else
3164 offset.offset = valx;
3165 }
3166 }
3167
3168 return offset;
3169 }
3170 \f
3171
3172 /* A callback used to possibly add a symbol to the results. */
3173
3174 static int
3175 collect_symbols (struct symbol *sym, void *data)
3176 {
3177 struct collect_info *info = data;
3178
3179 /* In list mode, add all matching symbols, regardless of class.
3180 This allows the user to type "list a_global_variable". */
3181 if (SYMBOL_CLASS (sym) == LOC_BLOCK || info->state->list_mode)
3182 VEC_safe_push (symbolp, info->result.symbols, sym);
3183 return 1; /* Continue iterating. */
3184 }
3185
3186 /* We've found a minimal symbol MSYMBOL in OBJFILE to associate with our
3187 linespec; return the SAL in RESULT. */
3188
3189 static void
3190 minsym_found (struct linespec_state *self, struct objfile *objfile,
3191 struct minimal_symbol *msymbol,
3192 struct symtabs_and_lines *result)
3193 {
3194 struct gdbarch *gdbarch = get_objfile_arch (objfile);
3195 CORE_ADDR pc;
3196 struct symtab_and_line sal;
3197
3198 sal = find_pc_sect_line (SYMBOL_VALUE_ADDRESS (msymbol),
3199 (struct obj_section *) 0, 0);
3200 sal.section = SYMBOL_OBJ_SECTION (msymbol);
3201
3202 /* The minimal symbol might point to a function descriptor;
3203 resolve it to the actual code address instead. */
3204 pc = gdbarch_convert_from_func_ptr_addr (gdbarch, sal.pc, &current_target);
3205 if (pc != sal.pc)
3206 sal = find_pc_sect_line (pc, NULL, 0);
3207
3208 if (self->funfirstline)
3209 skip_prologue_sal (&sal);
3210
3211 if (maybe_add_address (self->addr_set, objfile->pspace, sal.pc))
3212 add_sal_to_sals (self, result, &sal, SYMBOL_NATURAL_NAME (msymbol));
3213 }
3214
3215 /* A helper struct to pass some data through
3216 iterate_over_minimal_symbols. */
3217
3218 struct collect_minsyms
3219 {
3220 /* The objfile we're examining. */
3221 struct objfile *objfile;
3222
3223 /* The funfirstline setting from the initial call. */
3224 int funfirstline;
3225
3226 /* The list_mode setting from the initial call. */
3227 int list_mode;
3228
3229 /* The resulting symbols. */
3230 VEC (minsym_and_objfile_d) *msyms;
3231 };
3232
3233 /* A helper function to classify a minimal_symbol_type according to
3234 priority. */
3235
3236 static int
3237 classify_mtype (enum minimal_symbol_type t)
3238 {
3239 switch (t)
3240 {
3241 case mst_file_text:
3242 case mst_file_data:
3243 case mst_file_bss:
3244 /* Intermediate priority. */
3245 return 1;
3246
3247 case mst_solib_trampoline:
3248 /* Lowest priority. */
3249 return 2;
3250
3251 default:
3252 /* Highest priority. */
3253 return 0;
3254 }
3255 }
3256
3257 /* Callback for qsort that sorts symbols by priority. */
3258
3259 static int
3260 compare_msyms (const void *a, const void *b)
3261 {
3262 const minsym_and_objfile_d *moa = a;
3263 const minsym_and_objfile_d *mob = b;
3264 enum minimal_symbol_type ta = MSYMBOL_TYPE (moa->minsym);
3265 enum minimal_symbol_type tb = MSYMBOL_TYPE (mob->minsym);
3266
3267 return classify_mtype (ta) - classify_mtype (tb);
3268 }
3269
3270 /* Callback for iterate_over_minimal_symbols that adds the symbol to
3271 the result. */
3272
3273 static void
3274 add_minsym (struct minimal_symbol *minsym, void *d)
3275 {
3276 struct collect_minsyms *info = d;
3277 minsym_and_objfile_d mo;
3278
3279 /* Exclude data symbols when looking for breakpoint locations. */
3280 if (!info->list_mode)
3281 switch (minsym->type)
3282 {
3283 case mst_slot_got_plt:
3284 case mst_data:
3285 case mst_bss:
3286 case mst_abs:
3287 case mst_file_data:
3288 case mst_file_bss:
3289 {
3290 /* Make sure this minsym is not a function descriptor
3291 before we decide to discard it. */
3292 struct gdbarch *gdbarch = info->objfile->gdbarch;
3293 CORE_ADDR addr = gdbarch_convert_from_func_ptr_addr
3294 (gdbarch, SYMBOL_VALUE_ADDRESS (minsym),
3295 &current_target);
3296
3297 if (addr == SYMBOL_VALUE_ADDRESS (minsym))
3298 return;
3299 }
3300 }
3301
3302 mo.minsym = minsym;
3303 mo.objfile = info->objfile;
3304 VEC_safe_push (minsym_and_objfile_d, info->msyms, &mo);
3305 }
3306
3307 /* Search minimal symbols in all objfiles for NAME. If SEARCH_PSPACE
3308 is not NULL, the search is restricted to just that program
3309 space. */
3310
3311 static void
3312 search_minsyms_for_name (struct collect_info *info, const char *name,
3313 struct program_space *search_pspace)
3314 {
3315 struct objfile *objfile;
3316 struct program_space *pspace;
3317
3318 ALL_PSPACES (pspace)
3319 {
3320 struct collect_minsyms local;
3321 struct cleanup *cleanup;
3322
3323 if (search_pspace != NULL && search_pspace != pspace)
3324 continue;
3325 if (pspace->executing_startup)
3326 continue;
3327
3328 set_current_program_space (pspace);
3329
3330 memset (&local, 0, sizeof (local));
3331 local.funfirstline = info->state->funfirstline;
3332 local.list_mode = info->state->list_mode;
3333
3334 cleanup = make_cleanup (VEC_cleanup (minsym_and_objfile_d),
3335 &local.msyms);
3336
3337 ALL_OBJFILES (objfile)
3338 {
3339 local.objfile = objfile;
3340 iterate_over_minimal_symbols (objfile, name, add_minsym, &local);
3341 }
3342
3343 if (!VEC_empty (minsym_and_objfile_d, local.msyms))
3344 {
3345 int classification;
3346 int ix;
3347 minsym_and_objfile_d *item;
3348
3349 qsort (VEC_address (minsym_and_objfile_d, local.msyms),
3350 VEC_length (minsym_and_objfile_d, local.msyms),
3351 sizeof (minsym_and_objfile_d),
3352 compare_msyms);
3353
3354 /* Now the minsyms are in classification order. So, we walk
3355 over them and process just the minsyms with the same
3356 classification as the very first minsym in the list. */
3357 item = VEC_index (minsym_and_objfile_d, local.msyms, 0);
3358 classification = classify_mtype (MSYMBOL_TYPE (item->minsym));
3359
3360 for (ix = 0;
3361 VEC_iterate (minsym_and_objfile_d, local.msyms, ix, item);
3362 ++ix)
3363 {
3364 if (classify_mtype (MSYMBOL_TYPE (item->minsym)) != classification)
3365 break;
3366
3367 VEC_safe_push (minsym_and_objfile_d,
3368 info->result.minimal_symbols, item);
3369 }
3370 }
3371
3372 do_cleanups (cleanup);
3373 }
3374 }
3375
3376 /* A helper function to add all symbols matching NAME to INFO. If
3377 PSPACE is not NULL, the search is restricted to just that program
3378 space. */
3379
3380 static void
3381 add_matching_symbols_to_info (const char *name,
3382 struct collect_info *info,
3383 struct program_space *pspace)
3384 {
3385 int ix;
3386 struct symtab *elt;
3387
3388 for (ix = 0; VEC_iterate (symtab_p, info->file_symtabs, ix, elt); ++ix)
3389 {
3390 if (elt == NULL)
3391 {
3392 iterate_over_all_matching_symtabs (info->state, name, VAR_DOMAIN,
3393 collect_symbols, info,
3394 pspace, 1);
3395 search_minsyms_for_name (info, name, pspace);
3396 }
3397 else if (pspace == NULL || pspace == SYMTAB_PSPACE (elt))
3398 {
3399 /* Program spaces that are executing startup should have
3400 been filtered out earlier. */
3401 gdb_assert (!SYMTAB_PSPACE (elt)->executing_startup);
3402 set_current_program_space (SYMTAB_PSPACE (elt));
3403 LA_ITERATE_OVER_SYMBOLS (get_search_block (elt), name,
3404 VAR_DOMAIN, collect_symbols,
3405 info);
3406 }
3407 }
3408 }
3409
3410 \f
3411
3412 /* Now come some functions that are called from multiple places within
3413 decode_line_1. */
3414
3415 static int
3416 symbol_to_sal (struct symtab_and_line *result,
3417 int funfirstline, struct symbol *sym)
3418 {
3419 if (SYMBOL_CLASS (sym) == LOC_BLOCK)
3420 {
3421 *result = find_function_start_sal (sym, funfirstline);
3422 return 1;
3423 }
3424 else
3425 {
3426 if (SYMBOL_CLASS (sym) == LOC_LABEL && SYMBOL_VALUE_ADDRESS (sym) != 0)
3427 {
3428 init_sal (result);
3429 result->symtab = SYMBOL_SYMTAB (sym);
3430 result->line = SYMBOL_LINE (sym);
3431 result->pc = SYMBOL_VALUE_ADDRESS (sym);
3432 result->pspace = SYMTAB_PSPACE (SYMBOL_SYMTAB (sym));
3433 result->explicit_pc = 1;
3434 return 1;
3435 }
3436 else if (funfirstline)
3437 {
3438 /* Nothing. */
3439 }
3440 else if (SYMBOL_LINE (sym) != 0)
3441 {
3442 /* We know its line number. */
3443 init_sal (result);
3444 result->symtab = SYMBOL_SYMTAB (sym);
3445 result->line = SYMBOL_LINE (sym);
3446 result->pspace = SYMTAB_PSPACE (SYMBOL_SYMTAB (sym));
3447 return 1;
3448 }
3449 }
3450
3451 return 0;
3452 }
3453
3454 /* See the comment in linespec.h. */
3455
3456 void
3457 init_linespec_result (struct linespec_result *lr)
3458 {
3459 memset (lr, 0, sizeof (*lr));
3460 }
3461
3462 /* See the comment in linespec.h. */
3463
3464 void
3465 destroy_linespec_result (struct linespec_result *ls)
3466 {
3467 int i;
3468 struct linespec_sals *lsal;
3469
3470 xfree (ls->addr_string);
3471 for (i = 0; VEC_iterate (linespec_sals, ls->sals, i, lsal); ++i)
3472 {
3473 xfree (lsal->canonical);
3474 xfree (lsal->sals.sals);
3475 }
3476 VEC_free (linespec_sals, ls->sals);
3477 }
3478
3479 /* Cleanup function for a linespec_result. */
3480
3481 static void
3482 cleanup_linespec_result (void *a)
3483 {
3484 destroy_linespec_result (a);
3485 }
3486
3487 /* See the comment in linespec.h. */
3488
3489 struct cleanup *
3490 make_cleanup_destroy_linespec_result (struct linespec_result *ls)
3491 {
3492 return make_cleanup (cleanup_linespec_result, ls);
3493 }
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