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[thirdparty/binutils-gdb.git] / gdb / linespec.c
1 /* Parser for linespec for the GNU debugger, GDB.
2
3 Copyright (C) 1986-2018 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 "language.h"
37 #include "interps.h"
38 #include "mi/mi-cmds.h"
39 #include "target.h"
40 #include "arch-utils.h"
41 #include <ctype.h>
42 #include "cli/cli-utils.h"
43 #include "filenames.h"
44 #include "ada-lang.h"
45 #include "stack.h"
46 #include "location.h"
47 #include "common/function-view.h"
48 #include "common/def-vector.h"
49 #include <algorithm>
50
51 /* An enumeration of the various things a user might attempt to
52 complete for a linespec location. */
53
54 enum class linespec_complete_what
55 {
56 /* Nothing, no possible completion. */
57 NOTHING,
58
59 /* A function/method name. Due to ambiguity between
60
61 (gdb) b source[TAB]
62 source_file.c
63 source_function
64
65 this can also indicate a source filename, iff we haven't seen a
66 separate source filename component, as in "b source.c:function". */
67 FUNCTION,
68
69 /* A label symbol. E.g., break file.c:function:LABEL. */
70 LABEL,
71
72 /* An expression. E.g., "break foo if EXPR", or "break *EXPR". */
73 EXPRESSION,
74
75 /* A linespec keyword ("if"/"thread"/"task").
76 E.g., "break func threa<tab>". */
77 KEYWORD,
78 };
79
80 /* Typedef for unique_ptrs of vectors of symtabs. */
81
82 typedef std::unique_ptr<std::vector<symtab *>> symtab_vector_up;
83
84 /* An address entry is used to ensure that any given location is only
85 added to the result a single time. It holds an address and the
86 program space from which the address came. */
87
88 struct address_entry
89 {
90 struct program_space *pspace;
91 CORE_ADDR addr;
92 };
93
94 /* A linespec. Elements of this structure are filled in by a parser
95 (either parse_linespec or some other function). The structure is
96 then converted into SALs by convert_linespec_to_sals. */
97
98 struct linespec
99 {
100 /* An explicit location describing the SaLs. */
101 struct explicit_location explicit_loc;
102
103 /* The list of symtabs to search to which to limit the search. May not
104 be NULL. If explicit.SOURCE_FILENAME is NULL (no user-specified
105 filename), FILE_SYMTABS should contain one single NULL member. This
106 will cause the code to use the default symtab. */
107 std::vector<symtab *> *file_symtabs;
108
109 /* A list of matching function symbols and minimal symbols. Both lists
110 may be NULL (or empty) if no matching symbols were found. */
111 std::vector<block_symbol> *function_symbols;
112 std::vector<bound_minimal_symbol> *minimal_symbols;
113
114 /* A structure of matching label symbols and the corresponding
115 function symbol in which the label was found. Both may be NULL
116 or both must be non-NULL. */
117 struct
118 {
119 std::vector<block_symbol> *label_symbols;
120 std::vector<block_symbol> *function_symbols;
121 } labels;
122 };
123 typedef struct linespec *linespec_p;
124
125 /* A canonical linespec represented as a symtab-related string.
126
127 Each entry represents the "SYMTAB:SUFFIX" linespec string.
128 SYMTAB can be converted for example by symtab_to_fullname or
129 symtab_to_filename_for_display as needed. */
130
131 struct linespec_canonical_name
132 {
133 /* Remaining text part of the linespec string. */
134 char *suffix;
135
136 /* If NULL then SUFFIX is the whole linespec string. */
137 struct symtab *symtab;
138 };
139
140 /* An instance of this is used to keep all state while linespec
141 operates. This instance is passed around as a 'this' pointer to
142 the various implementation methods. */
143
144 struct linespec_state
145 {
146 /* The language in use during linespec processing. */
147 const struct language_defn *language;
148
149 /* The program space as seen when the module was entered. */
150 struct program_space *program_space;
151
152 /* If not NULL, the search is restricted to just this program
153 space. */
154 struct program_space *search_pspace;
155
156 /* The default symtab to use, if no other symtab is specified. */
157 struct symtab *default_symtab;
158
159 /* The default line to use. */
160 int default_line;
161
162 /* The 'funfirstline' value that was passed in to decode_line_1 or
163 decode_line_full. */
164 int funfirstline;
165
166 /* Nonzero if we are running in 'list' mode; see decode_line_list. */
167 int list_mode;
168
169 /* The 'canonical' value passed to decode_line_full, or NULL. */
170 struct linespec_result *canonical;
171
172 /* Canonical strings that mirror the std::vector<symtab_and_line> result. */
173 struct linespec_canonical_name *canonical_names;
174
175 /* This is a set of address_entry objects which is used to prevent
176 duplicate symbols from being entered into the result. */
177 htab_t addr_set;
178
179 /* Are we building a linespec? */
180 int is_linespec;
181 };
182
183 /* This is a helper object that is used when collecting symbols into a
184 result. */
185
186 struct collect_info
187 {
188 /* The linespec object in use. */
189 struct linespec_state *state;
190
191 /* A list of symtabs to which to restrict matches. */
192 std::vector<symtab *> *file_symtabs;
193
194 /* The result being accumulated. */
195 struct
196 {
197 std::vector<block_symbol> *symbols;
198 std::vector<bound_minimal_symbol> *minimal_symbols;
199 } result;
200
201 /* Possibly add a symbol to the results. */
202 virtual bool add_symbol (block_symbol *bsym);
203 };
204
205 bool
206 collect_info::add_symbol (block_symbol *bsym)
207 {
208 /* In list mode, add all matching symbols, regardless of class.
209 This allows the user to type "list a_global_variable". */
210 if (SYMBOL_CLASS (bsym->symbol) == LOC_BLOCK || this->state->list_mode)
211 this->result.symbols->push_back (*bsym);
212
213 /* Continue iterating. */
214 return true;
215 }
216
217 /* Custom collect_info for symbol_searcher. */
218
219 struct symbol_searcher_collect_info
220 : collect_info
221 {
222 bool add_symbol (block_symbol *bsym) override
223 {
224 /* Add everything. */
225 this->result.symbols->push_back (*bsym);
226
227 /* Continue iterating. */
228 return true;
229 }
230 };
231
232 /* Token types */
233
234 enum ls_token_type
235 {
236 /* A keyword */
237 LSTOKEN_KEYWORD = 0,
238
239 /* A colon "separator" */
240 LSTOKEN_COLON,
241
242 /* A string */
243 LSTOKEN_STRING,
244
245 /* A number */
246 LSTOKEN_NUMBER,
247
248 /* A comma */
249 LSTOKEN_COMMA,
250
251 /* EOI (end of input) */
252 LSTOKEN_EOI,
253
254 /* Consumed token */
255 LSTOKEN_CONSUMED
256 };
257 typedef enum ls_token_type linespec_token_type;
258
259 /* List of keywords. This is NULL-terminated so that it can be used
260 as enum completer. */
261 const char * const linespec_keywords[] = { "if", "thread", "task", NULL };
262 #define IF_KEYWORD_INDEX 0
263
264 /* A token of the linespec lexer */
265
266 struct ls_token
267 {
268 /* The type of the token */
269 linespec_token_type type;
270
271 /* Data for the token */
272 union
273 {
274 /* A string, given as a stoken */
275 struct stoken string;
276
277 /* A keyword */
278 const char *keyword;
279 } data;
280 };
281 typedef struct ls_token linespec_token;
282
283 #define LS_TOKEN_STOKEN(TOK) (TOK).data.string
284 #define LS_TOKEN_KEYWORD(TOK) (TOK).data.keyword
285
286 /* An instance of the linespec parser. */
287
288 struct ls_parser
289 {
290 /* Lexer internal data */
291 struct
292 {
293 /* Save head of input stream. */
294 const char *saved_arg;
295
296 /* Head of the input stream. */
297 const char *stream;
298 #define PARSER_STREAM(P) ((P)->lexer.stream)
299
300 /* The current token. */
301 linespec_token current;
302 } lexer;
303
304 /* Is the entire linespec quote-enclosed? */
305 int is_quote_enclosed;
306
307 /* The state of the parse. */
308 struct linespec_state state;
309 #define PARSER_STATE(PPTR) (&(PPTR)->state)
310
311 /* The result of the parse. */
312 struct linespec result;
313 #define PARSER_RESULT(PPTR) (&(PPTR)->result)
314
315 /* What the parser believes the current word point should complete
316 to. */
317 linespec_complete_what complete_what;
318
319 /* The completion word point. The parser advances this as it skips
320 tokens. At some point the input string will end or parsing will
321 fail, and then we attempt completion at the captured completion
322 word point, interpreting the string at completion_word as
323 COMPLETE_WHAT. */
324 const char *completion_word;
325
326 /* If the current token was a quoted string, then this is the
327 quoting character (either " or '). */
328 int completion_quote_char;
329
330 /* If the current token was a quoted string, then this points at the
331 end of the quoted string. */
332 const char *completion_quote_end;
333
334 /* If parsing for completion, then this points at the completion
335 tracker. Otherwise, this is NULL. */
336 struct completion_tracker *completion_tracker;
337 };
338 typedef struct ls_parser linespec_parser;
339
340 /* A convenience macro for accessing the explicit location result of
341 the parser. */
342 #define PARSER_EXPLICIT(PPTR) (&PARSER_RESULT ((PPTR))->explicit_loc)
343
344 /* Prototypes for local functions. */
345
346 static void iterate_over_file_blocks
347 (struct symtab *symtab, const lookup_name_info &name,
348 domain_enum domain,
349 gdb::function_view<symbol_found_callback_ftype> callback);
350
351 static void initialize_defaults (struct symtab **default_symtab,
352 int *default_line);
353
354 CORE_ADDR linespec_expression_to_pc (const char **exp_ptr);
355
356 static std::vector<symtab_and_line> decode_objc (struct linespec_state *self,
357 linespec_p ls,
358 const char *arg);
359
360 static symtab_vector_up symtabs_from_filename
361 (const char *, struct program_space *pspace);
362
363 static std::vector<block_symbol> *find_label_symbols
364 (struct linespec_state *self, std::vector<block_symbol> *function_symbols,
365 std::vector<block_symbol> *label_funcs_ret, const char *name,
366 bool completion_mode = false);
367
368 static void find_linespec_symbols (struct linespec_state *self,
369 std::vector<symtab *> *file_symtabs,
370 const char *name,
371 symbol_name_match_type name_match_type,
372 std::vector<block_symbol> *symbols,
373 std::vector<bound_minimal_symbol> *minsyms);
374
375 static struct line_offset
376 linespec_parse_variable (struct linespec_state *self,
377 const char *variable);
378
379 static int symbol_to_sal (struct symtab_and_line *result,
380 int funfirstline, struct symbol *sym);
381
382 static void add_matching_symbols_to_info (const char *name,
383 symbol_name_match_type name_match_type,
384 enum search_domain search_domain,
385 struct collect_info *info,
386 struct program_space *pspace);
387
388 static void add_all_symbol_names_from_pspace
389 (struct collect_info *info, struct program_space *pspace,
390 const std::vector<const char *> &names, enum search_domain search_domain);
391
392 static symtab_vector_up
393 collect_symtabs_from_filename (const char *file,
394 struct program_space *pspace);
395
396 static std::vector<symtab_and_line> decode_digits_ordinary
397 (struct linespec_state *self,
398 linespec_p ls,
399 int line,
400 linetable_entry **best_entry);
401
402 static std::vector<symtab_and_line> decode_digits_list_mode
403 (struct linespec_state *self,
404 linespec_p ls,
405 struct symtab_and_line val);
406
407 static void minsym_found (struct linespec_state *self, struct objfile *objfile,
408 struct minimal_symbol *msymbol,
409 std::vector<symtab_and_line> *result);
410
411 static bool compare_symbols (const block_symbol &a, const block_symbol &b);
412
413 static bool compare_msymbols (const bound_minimal_symbol &a,
414 const bound_minimal_symbol &b);
415
416 /* Permitted quote characters for the parser. This is different from the
417 completer's quote characters to allow backward compatibility with the
418 previous parser. */
419 static const char *const linespec_quote_characters = "\"\'";
420
421 /* Lexer functions. */
422
423 /* Lex a number from the input in PARSER. This only supports
424 decimal numbers.
425
426 Return true if input is decimal numbers. Return false if not. */
427
428 static int
429 linespec_lexer_lex_number (linespec_parser *parser, linespec_token *tokenp)
430 {
431 tokenp->type = LSTOKEN_NUMBER;
432 LS_TOKEN_STOKEN (*tokenp).length = 0;
433 LS_TOKEN_STOKEN (*tokenp).ptr = PARSER_STREAM (parser);
434
435 /* Keep any sign at the start of the stream. */
436 if (*PARSER_STREAM (parser) == '+' || *PARSER_STREAM (parser) == '-')
437 {
438 ++LS_TOKEN_STOKEN (*tokenp).length;
439 ++(PARSER_STREAM (parser));
440 }
441
442 while (isdigit (*PARSER_STREAM (parser)))
443 {
444 ++LS_TOKEN_STOKEN (*tokenp).length;
445 ++(PARSER_STREAM (parser));
446 }
447
448 /* If the next character in the input buffer is not a space, comma,
449 quote, or colon, this input does not represent a number. */
450 if (*PARSER_STREAM (parser) != '\0'
451 && !isspace (*PARSER_STREAM (parser)) && *PARSER_STREAM (parser) != ','
452 && *PARSER_STREAM (parser) != ':'
453 && !strchr (linespec_quote_characters, *PARSER_STREAM (parser)))
454 {
455 PARSER_STREAM (parser) = LS_TOKEN_STOKEN (*tokenp).ptr;
456 return 0;
457 }
458
459 return 1;
460 }
461
462 /* See linespec.h. */
463
464 const char *
465 linespec_lexer_lex_keyword (const char *p)
466 {
467 int i;
468
469 if (p != NULL)
470 {
471 for (i = 0; linespec_keywords[i] != NULL; ++i)
472 {
473 int len = strlen (linespec_keywords[i]);
474
475 /* If P begins with one of the keywords and the next
476 character is whitespace, we may have found a keyword.
477 It is only a keyword if it is not followed by another
478 keyword. */
479 if (strncmp (p, linespec_keywords[i], len) == 0
480 && isspace (p[len]))
481 {
482 int j;
483
484 /* Special case: "if" ALWAYS stops the lexer, since it
485 is not possible to predict what is going to appear in
486 the condition, which can only be parsed after SaLs have
487 been found. */
488 if (i != IF_KEYWORD_INDEX)
489 {
490 p += len;
491 p = skip_spaces (p);
492 for (j = 0; linespec_keywords[j] != NULL; ++j)
493 {
494 int nextlen = strlen (linespec_keywords[j]);
495
496 if (strncmp (p, linespec_keywords[j], nextlen) == 0
497 && isspace (p[nextlen]))
498 return NULL;
499 }
500 }
501
502 return linespec_keywords[i];
503 }
504 }
505 }
506
507 return NULL;
508 }
509
510 /* See description in linespec.h. */
511
512 int
513 is_ada_operator (const char *string)
514 {
515 const struct ada_opname_map *mapping;
516
517 for (mapping = ada_opname_table;
518 mapping->encoded != NULL
519 && !startswith (string, mapping->decoded); ++mapping)
520 ;
521
522 return mapping->decoded == NULL ? 0 : strlen (mapping->decoded);
523 }
524
525 /* Find QUOTE_CHAR in STRING, accounting for the ':' terminal. Return
526 the location of QUOTE_CHAR, or NULL if not found. */
527
528 static const char *
529 skip_quote_char (const char *string, char quote_char)
530 {
531 const char *p, *last;
532
533 p = last = find_toplevel_char (string, quote_char);
534 while (p && *p != '\0' && *p != ':')
535 {
536 p = find_toplevel_char (p, quote_char);
537 if (p != NULL)
538 last = p++;
539 }
540
541 return last;
542 }
543
544 /* Make a writable copy of the string given in TOKEN, trimming
545 any trailing whitespace. */
546
547 static gdb::unique_xmalloc_ptr<char>
548 copy_token_string (linespec_token token)
549 {
550 const char *str, *s;
551
552 if (token.type == LSTOKEN_KEYWORD)
553 return gdb::unique_xmalloc_ptr<char> (xstrdup (LS_TOKEN_KEYWORD (token)));
554
555 str = LS_TOKEN_STOKEN (token).ptr;
556 s = remove_trailing_whitespace (str, str + LS_TOKEN_STOKEN (token).length);
557
558 return gdb::unique_xmalloc_ptr<char> (savestring (str, s - str));
559 }
560
561 /* Does P represent the end of a quote-enclosed linespec? */
562
563 static int
564 is_closing_quote_enclosed (const char *p)
565 {
566 if (strchr (linespec_quote_characters, *p))
567 ++p;
568 p = skip_spaces ((char *) p);
569 return (*p == '\0' || linespec_lexer_lex_keyword (p));
570 }
571
572 /* Find the end of the parameter list that starts with *INPUT.
573 This helper function assists with lexing string segments
574 which might contain valid (non-terminating) commas. */
575
576 static const char *
577 find_parameter_list_end (const char *input)
578 {
579 char end_char, start_char;
580 int depth;
581 const char *p;
582
583 start_char = *input;
584 if (start_char == '(')
585 end_char = ')';
586 else if (start_char == '<')
587 end_char = '>';
588 else
589 return NULL;
590
591 p = input;
592 depth = 0;
593 while (*p)
594 {
595 if (*p == start_char)
596 ++depth;
597 else if (*p == end_char)
598 {
599 if (--depth == 0)
600 {
601 ++p;
602 break;
603 }
604 }
605 ++p;
606 }
607
608 return p;
609 }
610
611 /* If the [STRING, STRING_LEN) string ends with what looks like a
612 keyword, return the keyword start offset in STRING. Return -1
613 otherwise. */
614
615 static size_t
616 string_find_incomplete_keyword_at_end (const char * const *keywords,
617 const char *string, size_t string_len)
618 {
619 const char *end = string + string_len;
620 const char *p = end;
621
622 while (p > string && *p != ' ')
623 --p;
624 if (p > string)
625 {
626 p++;
627 size_t len = end - p;
628 for (size_t i = 0; keywords[i] != NULL; ++i)
629 if (strncmp (keywords[i], p, len) == 0)
630 return p - string;
631 }
632
633 return -1;
634 }
635
636 /* Lex a string from the input in PARSER. */
637
638 static linespec_token
639 linespec_lexer_lex_string (linespec_parser *parser)
640 {
641 linespec_token token;
642 const char *start = PARSER_STREAM (parser);
643
644 token.type = LSTOKEN_STRING;
645
646 /* If the input stream starts with a quote character, skip to the next
647 quote character, regardless of the content. */
648 if (strchr (linespec_quote_characters, *PARSER_STREAM (parser)))
649 {
650 const char *end;
651 char quote_char = *PARSER_STREAM (parser);
652
653 /* Special case: Ada operators. */
654 if (PARSER_STATE (parser)->language->la_language == language_ada
655 && quote_char == '\"')
656 {
657 int len = is_ada_operator (PARSER_STREAM (parser));
658
659 if (len != 0)
660 {
661 /* The input is an Ada operator. Return the quoted string
662 as-is. */
663 LS_TOKEN_STOKEN (token).ptr = PARSER_STREAM (parser);
664 LS_TOKEN_STOKEN (token).length = len;
665 PARSER_STREAM (parser) += len;
666 return token;
667 }
668
669 /* The input does not represent an Ada operator -- fall through
670 to normal quoted string handling. */
671 }
672
673 /* Skip past the beginning quote. */
674 ++(PARSER_STREAM (parser));
675
676 /* Mark the start of the string. */
677 LS_TOKEN_STOKEN (token).ptr = PARSER_STREAM (parser);
678
679 /* Skip to the ending quote. */
680 end = skip_quote_char (PARSER_STREAM (parser), quote_char);
681
682 /* This helps the completer mode decide whether we have a
683 complete string. */
684 parser->completion_quote_char = quote_char;
685 parser->completion_quote_end = end;
686
687 /* Error if the input did not terminate properly, unless in
688 completion mode. */
689 if (end == NULL)
690 {
691 if (parser->completion_tracker == NULL)
692 error (_("unmatched quote"));
693
694 /* In completion mode, we'll try to complete the incomplete
695 token. */
696 token.type = LSTOKEN_STRING;
697 while (*PARSER_STREAM (parser) != '\0')
698 PARSER_STREAM (parser)++;
699 LS_TOKEN_STOKEN (token).length = PARSER_STREAM (parser) - 1 - start;
700 }
701 else
702 {
703 /* Skip over the ending quote and mark the length of the string. */
704 PARSER_STREAM (parser) = (char *) ++end;
705 LS_TOKEN_STOKEN (token).length = PARSER_STREAM (parser) - 2 - start;
706 }
707 }
708 else
709 {
710 const char *p;
711
712 /* Otherwise, only identifier characters are permitted.
713 Spaces are the exception. In general, we keep spaces,
714 but only if the next characters in the input do not resolve
715 to one of the keywords.
716
717 This allows users to forgo quoting CV-qualifiers, template arguments,
718 and similar common language constructs. */
719
720 while (1)
721 {
722 if (isspace (*PARSER_STREAM (parser)))
723 {
724 p = skip_spaces (PARSER_STREAM (parser));
725 /* When we get here we know we've found something followed by
726 a space (we skip over parens and templates below).
727 So if we find a keyword now, we know it is a keyword and not,
728 say, a function name. */
729 if (linespec_lexer_lex_keyword (p) != NULL)
730 {
731 LS_TOKEN_STOKEN (token).ptr = start;
732 LS_TOKEN_STOKEN (token).length
733 = PARSER_STREAM (parser) - start;
734 return token;
735 }
736
737 /* Advance past the whitespace. */
738 PARSER_STREAM (parser) = p;
739 }
740
741 /* If the next character is EOI or (single) ':', the
742 string is complete; return the token. */
743 if (*PARSER_STREAM (parser) == 0)
744 {
745 LS_TOKEN_STOKEN (token).ptr = start;
746 LS_TOKEN_STOKEN (token).length = PARSER_STREAM (parser) - start;
747 return token;
748 }
749 else if (PARSER_STREAM (parser)[0] == ':')
750 {
751 /* Do not tokenize the C++ scope operator. */
752 if (PARSER_STREAM (parser)[1] == ':')
753 ++(PARSER_STREAM (parser));
754
755 /* Do not tokenize ABI tags such as "[abi:cxx11]". */
756 else if (PARSER_STREAM (parser) - start > 4
757 && startswith (PARSER_STREAM (parser) - 4, "[abi"))
758 ++(PARSER_STREAM (parser));
759
760 /* Do not tokenify if the input length so far is one
761 (i.e, a single-letter drive name) and the next character
762 is a directory separator. This allows Windows-style
763 paths to be recognized as filenames without quoting it. */
764 else if ((PARSER_STREAM (parser) - start) != 1
765 || !IS_DIR_SEPARATOR (PARSER_STREAM (parser)[1]))
766 {
767 LS_TOKEN_STOKEN (token).ptr = start;
768 LS_TOKEN_STOKEN (token).length
769 = PARSER_STREAM (parser) - start;
770 return token;
771 }
772 }
773 /* Special case: permit quote-enclosed linespecs. */
774 else if (parser->is_quote_enclosed
775 && strchr (linespec_quote_characters,
776 *PARSER_STREAM (parser))
777 && is_closing_quote_enclosed (PARSER_STREAM (parser)))
778 {
779 LS_TOKEN_STOKEN (token).ptr = start;
780 LS_TOKEN_STOKEN (token).length = PARSER_STREAM (parser) - start;
781 return token;
782 }
783 /* Because commas may terminate a linespec and appear in
784 the middle of valid string input, special cases for
785 '<' and '(' are necessary. */
786 else if (*PARSER_STREAM (parser) == '<'
787 || *PARSER_STREAM (parser) == '(')
788 {
789 /* Don't interpret 'operator<' / 'operator<<' as a
790 template parameter list though. */
791 if (*PARSER_STREAM (parser) == '<'
792 && (PARSER_STATE (parser)->language->la_language
793 == language_cplus)
794 && (PARSER_STREAM (parser) - start) >= CP_OPERATOR_LEN)
795 {
796 const char *op = PARSER_STREAM (parser);
797
798 while (op > start && isspace (op[-1]))
799 op--;
800 if (op - start >= CP_OPERATOR_LEN)
801 {
802 op -= CP_OPERATOR_LEN;
803 if (strncmp (op, CP_OPERATOR_STR, CP_OPERATOR_LEN) == 0
804 && (op == start
805 || !(isalnum (op[-1]) || op[-1] == '_')))
806 {
807 /* This is an operator name. Keep going. */
808 ++(PARSER_STREAM (parser));
809 if (*PARSER_STREAM (parser) == '<')
810 ++(PARSER_STREAM (parser));
811 continue;
812 }
813 }
814 }
815
816 const char *end = find_parameter_list_end (PARSER_STREAM (parser));
817 PARSER_STREAM (parser) = end;
818
819 /* Don't loop around to the normal \0 case above because
820 we don't want to misinterpret a potential keyword at
821 the end of the token when the string isn't
822 "()<>"-balanced. This handles "b
823 function(thread<tab>" in completion mode. */
824 if (*end == '\0')
825 {
826 LS_TOKEN_STOKEN (token).ptr = start;
827 LS_TOKEN_STOKEN (token).length
828 = PARSER_STREAM (parser) - start;
829 return token;
830 }
831 else
832 continue;
833 }
834 /* Commas are terminators, but not if they are part of an
835 operator name. */
836 else if (*PARSER_STREAM (parser) == ',')
837 {
838 if ((PARSER_STATE (parser)->language->la_language
839 == language_cplus)
840 && (PARSER_STREAM (parser) - start) > CP_OPERATOR_LEN)
841 {
842 const char *op = strstr (start, CP_OPERATOR_STR);
843
844 if (op != NULL && is_operator_name (op))
845 {
846 /* This is an operator name. Keep going. */
847 ++(PARSER_STREAM (parser));
848 continue;
849 }
850 }
851
852 /* Comma terminates the string. */
853 LS_TOKEN_STOKEN (token).ptr = start;
854 LS_TOKEN_STOKEN (token).length = PARSER_STREAM (parser) - start;
855 return token;
856 }
857
858 /* Advance the stream. */
859 ++(PARSER_STREAM (parser));
860 }
861 }
862
863 return token;
864 }
865
866 /* Lex a single linespec token from PARSER. */
867
868 static linespec_token
869 linespec_lexer_lex_one (linespec_parser *parser)
870 {
871 const char *keyword;
872
873 if (parser->lexer.current.type == LSTOKEN_CONSUMED)
874 {
875 /* Skip any whitespace. */
876 PARSER_STREAM (parser) = skip_spaces (PARSER_STREAM (parser));
877
878 /* Check for a keyword, they end the linespec. */
879 keyword = linespec_lexer_lex_keyword (PARSER_STREAM (parser));
880 if (keyword != NULL)
881 {
882 parser->lexer.current.type = LSTOKEN_KEYWORD;
883 LS_TOKEN_KEYWORD (parser->lexer.current) = keyword;
884 /* We do not advance the stream here intentionally:
885 we would like lexing to stop when a keyword is seen.
886
887 PARSER_STREAM (parser) += strlen (keyword); */
888
889 return parser->lexer.current;
890 }
891
892 /* Handle other tokens. */
893 switch (*PARSER_STREAM (parser))
894 {
895 case 0:
896 parser->lexer.current.type = LSTOKEN_EOI;
897 break;
898
899 case '+': case '-':
900 case '0': case '1': case '2': case '3': case '4':
901 case '5': case '6': case '7': case '8': case '9':
902 if (!linespec_lexer_lex_number (parser, &(parser->lexer.current)))
903 parser->lexer.current = linespec_lexer_lex_string (parser);
904 break;
905
906 case ':':
907 /* If we have a scope operator, lex the input as a string.
908 Otherwise, return LSTOKEN_COLON. */
909 if (PARSER_STREAM (parser)[1] == ':')
910 parser->lexer.current = linespec_lexer_lex_string (parser);
911 else
912 {
913 parser->lexer.current.type = LSTOKEN_COLON;
914 ++(PARSER_STREAM (parser));
915 }
916 break;
917
918 case '\'': case '\"':
919 /* Special case: permit quote-enclosed linespecs. */
920 if (parser->is_quote_enclosed
921 && is_closing_quote_enclosed (PARSER_STREAM (parser)))
922 {
923 ++(PARSER_STREAM (parser));
924 parser->lexer.current.type = LSTOKEN_EOI;
925 }
926 else
927 parser->lexer.current = linespec_lexer_lex_string (parser);
928 break;
929
930 case ',':
931 parser->lexer.current.type = LSTOKEN_COMMA;
932 LS_TOKEN_STOKEN (parser->lexer.current).ptr
933 = PARSER_STREAM (parser);
934 LS_TOKEN_STOKEN (parser->lexer.current).length = 1;
935 ++(PARSER_STREAM (parser));
936 break;
937
938 default:
939 /* If the input is not a number, it must be a string.
940 [Keywords were already considered above.] */
941 parser->lexer.current = linespec_lexer_lex_string (parser);
942 break;
943 }
944 }
945
946 return parser->lexer.current;
947 }
948
949 /* Consume the current token and return the next token in PARSER's
950 input stream. Also advance the completion word for completion
951 mode. */
952
953 static linespec_token
954 linespec_lexer_consume_token (linespec_parser *parser)
955 {
956 gdb_assert (parser->lexer.current.type != LSTOKEN_EOI);
957
958 bool advance_word = (parser->lexer.current.type != LSTOKEN_STRING
959 || *PARSER_STREAM (parser) != '\0');
960
961 /* If we're moving past a string to some other token, it must be the
962 quote was terminated. */
963 if (parser->completion_quote_char)
964 {
965 gdb_assert (parser->lexer.current.type == LSTOKEN_STRING);
966
967 /* If the string was the last (non-EOI) token, we're past the
968 quote, but remember that for later. */
969 if (*PARSER_STREAM (parser) != '\0')
970 {
971 parser->completion_quote_char = '\0';
972 parser->completion_quote_end = NULL;;
973 }
974 }
975
976 parser->lexer.current.type = LSTOKEN_CONSUMED;
977 linespec_lexer_lex_one (parser);
978
979 if (parser->lexer.current.type == LSTOKEN_STRING)
980 {
981 /* Advance the completion word past a potential initial
982 quote-char. */
983 parser->completion_word = LS_TOKEN_STOKEN (parser->lexer.current).ptr;
984 }
985 else if (advance_word)
986 {
987 /* Advance the completion word past any whitespace. */
988 parser->completion_word = PARSER_STREAM (parser);
989 }
990
991 return parser->lexer.current;
992 }
993
994 /* Return the next token without consuming the current token. */
995
996 static linespec_token
997 linespec_lexer_peek_token (linespec_parser *parser)
998 {
999 linespec_token next;
1000 const char *saved_stream = PARSER_STREAM (parser);
1001 linespec_token saved_token = parser->lexer.current;
1002 int saved_completion_quote_char = parser->completion_quote_char;
1003 const char *saved_completion_quote_end = parser->completion_quote_end;
1004 const char *saved_completion_word = parser->completion_word;
1005
1006 next = linespec_lexer_consume_token (parser);
1007 PARSER_STREAM (parser) = saved_stream;
1008 parser->lexer.current = saved_token;
1009 parser->completion_quote_char = saved_completion_quote_char;
1010 parser->completion_quote_end = saved_completion_quote_end;
1011 parser->completion_word = saved_completion_word;
1012 return next;
1013 }
1014
1015 /* Helper functions. */
1016
1017 /* Add SAL to SALS, and also update SELF->CANONICAL_NAMES to reflect
1018 the new sal, if needed. If not NULL, SYMNAME is the name of the
1019 symbol to use when constructing the new canonical name.
1020
1021 If LITERAL_CANONICAL is non-zero, SYMNAME will be used as the
1022 canonical name for the SAL. */
1023
1024 static void
1025 add_sal_to_sals (struct linespec_state *self,
1026 std::vector<symtab_and_line> *sals,
1027 struct symtab_and_line *sal,
1028 const char *symname, int literal_canonical)
1029 {
1030 sals->push_back (*sal);
1031
1032 if (self->canonical)
1033 {
1034 struct linespec_canonical_name *canonical;
1035
1036 self->canonical_names = XRESIZEVEC (struct linespec_canonical_name,
1037 self->canonical_names,
1038 sals->size ());
1039 canonical = &self->canonical_names[sals->size () - 1];
1040 if (!literal_canonical && sal->symtab)
1041 {
1042 symtab_to_fullname (sal->symtab);
1043
1044 /* Note that the filter doesn't have to be a valid linespec
1045 input. We only apply the ":LINE" treatment to Ada for
1046 the time being. */
1047 if (symname != NULL && sal->line != 0
1048 && self->language->la_language == language_ada)
1049 canonical->suffix = xstrprintf ("%s:%d", symname, sal->line);
1050 else if (symname != NULL)
1051 canonical->suffix = xstrdup (symname);
1052 else
1053 canonical->suffix = xstrprintf ("%d", sal->line);
1054 canonical->symtab = sal->symtab;
1055 }
1056 else
1057 {
1058 if (symname != NULL)
1059 canonical->suffix = xstrdup (symname);
1060 else
1061 canonical->suffix = xstrdup ("<unknown>");
1062 canonical->symtab = NULL;
1063 }
1064 }
1065 }
1066
1067 /* A hash function for address_entry. */
1068
1069 static hashval_t
1070 hash_address_entry (const void *p)
1071 {
1072 const struct address_entry *aep = (const struct address_entry *) p;
1073 hashval_t hash;
1074
1075 hash = iterative_hash_object (aep->pspace, 0);
1076 return iterative_hash_object (aep->addr, hash);
1077 }
1078
1079 /* An equality function for address_entry. */
1080
1081 static int
1082 eq_address_entry (const void *a, const void *b)
1083 {
1084 const struct address_entry *aea = (const struct address_entry *) a;
1085 const struct address_entry *aeb = (const struct address_entry *) b;
1086
1087 return aea->pspace == aeb->pspace && aea->addr == aeb->addr;
1088 }
1089
1090 /* Check whether the address, represented by PSPACE and ADDR, is
1091 already in the set. If so, return 0. Otherwise, add it and return
1092 1. */
1093
1094 static int
1095 maybe_add_address (htab_t set, struct program_space *pspace, CORE_ADDR addr)
1096 {
1097 struct address_entry e, *p;
1098 void **slot;
1099
1100 e.pspace = pspace;
1101 e.addr = addr;
1102 slot = htab_find_slot (set, &e, INSERT);
1103 if (*slot)
1104 return 0;
1105
1106 p = XNEW (struct address_entry);
1107 memcpy (p, &e, sizeof (struct address_entry));
1108 *slot = p;
1109
1110 return 1;
1111 }
1112
1113 /* A helper that walks over all matching symtabs in all objfiles and
1114 calls CALLBACK for each symbol matching NAME. If SEARCH_PSPACE is
1115 not NULL, then the search is restricted to just that program
1116 space. If INCLUDE_INLINE is true then symbols representing
1117 inlined instances of functions will be included in the result. */
1118
1119 static void
1120 iterate_over_all_matching_symtabs
1121 (struct linespec_state *state,
1122 const lookup_name_info &lookup_name,
1123 const domain_enum name_domain,
1124 enum search_domain search_domain,
1125 struct program_space *search_pspace, bool include_inline,
1126 gdb::function_view<symbol_found_callback_ftype> callback)
1127 {
1128 struct objfile *objfile;
1129 struct program_space *pspace;
1130
1131 ALL_PSPACES (pspace)
1132 {
1133 if (search_pspace != NULL && search_pspace != pspace)
1134 continue;
1135 if (pspace->executing_startup)
1136 continue;
1137
1138 set_current_program_space (pspace);
1139
1140 ALL_OBJFILES (objfile)
1141 {
1142 struct compunit_symtab *cu;
1143
1144 if (objfile->sf)
1145 objfile->sf->qf->expand_symtabs_matching (objfile,
1146 NULL,
1147 lookup_name,
1148 NULL, NULL,
1149 search_domain);
1150
1151 ALL_OBJFILE_COMPUNITS (objfile, cu)
1152 {
1153 struct symtab *symtab = COMPUNIT_FILETABS (cu);
1154
1155 iterate_over_file_blocks (symtab, lookup_name, name_domain, callback);
1156
1157 if (include_inline)
1158 {
1159 struct block *block;
1160 int i;
1161
1162 for (i = FIRST_LOCAL_BLOCK;
1163 i < BLOCKVECTOR_NBLOCKS (SYMTAB_BLOCKVECTOR (symtab));
1164 i++)
1165 {
1166 block = BLOCKVECTOR_BLOCK (SYMTAB_BLOCKVECTOR (symtab), i);
1167 state->language->la_iterate_over_symbols
1168 (block, lookup_name, name_domain, [&] (block_symbol *bsym)
1169 {
1170 /* Restrict calls to CALLBACK to symbols
1171 representing inline symbols only. */
1172 if (SYMBOL_INLINED (bsym->symbol))
1173 return callback (bsym);
1174 return true;
1175 });
1176 }
1177 }
1178 }
1179 }
1180 }
1181 }
1182
1183 /* Returns the block to be used for symbol searches from
1184 the current location. */
1185
1186 static const struct block *
1187 get_current_search_block (void)
1188 {
1189 const struct block *block;
1190 enum language save_language;
1191
1192 /* get_selected_block can change the current language when there is
1193 no selected frame yet. */
1194 save_language = current_language->la_language;
1195 block = get_selected_block (0);
1196 set_language (save_language);
1197
1198 return block;
1199 }
1200
1201 /* Iterate over static and global blocks. */
1202
1203 static void
1204 iterate_over_file_blocks
1205 (struct symtab *symtab, const lookup_name_info &name,
1206 domain_enum domain, gdb::function_view<symbol_found_callback_ftype> callback)
1207 {
1208 struct block *block;
1209
1210 for (block = BLOCKVECTOR_BLOCK (SYMTAB_BLOCKVECTOR (symtab), STATIC_BLOCK);
1211 block != NULL;
1212 block = BLOCK_SUPERBLOCK (block))
1213 LA_ITERATE_OVER_SYMBOLS (block, name, domain, callback);
1214 }
1215
1216 /* A helper for find_method. This finds all methods in type T of
1217 language T_LANG which match NAME. It adds matching symbol names to
1218 RESULT_NAMES, and adds T's direct superclasses to SUPERCLASSES. */
1219
1220 static void
1221 find_methods (struct type *t, enum language t_lang, const char *name,
1222 std::vector<const char *> *result_names,
1223 std::vector<struct type *> *superclasses)
1224 {
1225 int ibase;
1226 const char *class_name = TYPE_NAME (t);
1227
1228 /* Ignore this class if it doesn't have a name. This is ugly, but
1229 unless we figure out how to get the physname without the name of
1230 the class, then the loop can't do any good. */
1231 if (class_name)
1232 {
1233 int method_counter;
1234 lookup_name_info lookup_name (name, symbol_name_match_type::FULL);
1235 symbol_name_matcher_ftype *symbol_name_compare
1236 = get_symbol_name_matcher (language_def (t_lang), lookup_name);
1237
1238 t = check_typedef (t);
1239
1240 /* Loop over each method name. At this level, all overloads of a name
1241 are counted as a single name. There is an inner loop which loops over
1242 each overload. */
1243
1244 for (method_counter = TYPE_NFN_FIELDS (t) - 1;
1245 method_counter >= 0;
1246 --method_counter)
1247 {
1248 const char *method_name = TYPE_FN_FIELDLIST_NAME (t, method_counter);
1249 char dem_opname[64];
1250
1251 if (startswith (method_name, "__") ||
1252 startswith (method_name, "op") ||
1253 startswith (method_name, "type"))
1254 {
1255 if (cplus_demangle_opname (method_name, dem_opname, DMGL_ANSI))
1256 method_name = dem_opname;
1257 else if (cplus_demangle_opname (method_name, dem_opname, 0))
1258 method_name = dem_opname;
1259 }
1260
1261 if (symbol_name_compare (method_name, lookup_name, NULL))
1262 {
1263 int field_counter;
1264
1265 for (field_counter = (TYPE_FN_FIELDLIST_LENGTH (t, method_counter)
1266 - 1);
1267 field_counter >= 0;
1268 --field_counter)
1269 {
1270 struct fn_field *f;
1271 const char *phys_name;
1272
1273 f = TYPE_FN_FIELDLIST1 (t, method_counter);
1274 if (TYPE_FN_FIELD_STUB (f, field_counter))
1275 continue;
1276 phys_name = TYPE_FN_FIELD_PHYSNAME (f, field_counter);
1277 result_names->push_back (phys_name);
1278 }
1279 }
1280 }
1281 }
1282
1283 for (ibase = 0; ibase < TYPE_N_BASECLASSES (t); ibase++)
1284 superclasses->push_back (TYPE_BASECLASS (t, ibase));
1285 }
1286
1287 /* Find an instance of the character C in the string S that is outside
1288 of all parenthesis pairs, single-quoted strings, and double-quoted
1289 strings. Also, ignore the char within a template name, like a ','
1290 within foo<int, int>, while considering C++ operator</operator<<. */
1291
1292 const char *
1293 find_toplevel_char (const char *s, char c)
1294 {
1295 int quoted = 0; /* zero if we're not in quotes;
1296 '"' if we're in a double-quoted string;
1297 '\'' if we're in a single-quoted string. */
1298 int depth = 0; /* Number of unclosed parens we've seen. */
1299 const char *scan;
1300
1301 for (scan = s; *scan; scan++)
1302 {
1303 if (quoted)
1304 {
1305 if (*scan == quoted)
1306 quoted = 0;
1307 else if (*scan == '\\' && *(scan + 1))
1308 scan++;
1309 }
1310 else if (*scan == c && ! quoted && depth == 0)
1311 return scan;
1312 else if (*scan == '"' || *scan == '\'')
1313 quoted = *scan;
1314 else if (*scan == '(' || *scan == '<')
1315 depth++;
1316 else if ((*scan == ')' || *scan == '>') && depth > 0)
1317 depth--;
1318 else if (*scan == 'o' && !quoted && depth == 0)
1319 {
1320 /* Handle C++ operator names. */
1321 if (strncmp (scan, CP_OPERATOR_STR, CP_OPERATOR_LEN) == 0)
1322 {
1323 scan += CP_OPERATOR_LEN;
1324 if (*scan == c)
1325 return scan;
1326 while (isspace (*scan))
1327 {
1328 ++scan;
1329 if (*scan == c)
1330 return scan;
1331 }
1332 if (*scan == '\0')
1333 break;
1334
1335 switch (*scan)
1336 {
1337 /* Skip over one less than the appropriate number of
1338 characters: the for loop will skip over the last
1339 one. */
1340 case '<':
1341 if (scan[1] == '<')
1342 {
1343 scan++;
1344 if (*scan == c)
1345 return scan;
1346 }
1347 break;
1348 case '>':
1349 if (scan[1] == '>')
1350 {
1351 scan++;
1352 if (*scan == c)
1353 return scan;
1354 }
1355 break;
1356 }
1357 }
1358 }
1359 }
1360
1361 return 0;
1362 }
1363
1364 /* The string equivalent of find_toplevel_char. Returns a pointer
1365 to the location of NEEDLE in HAYSTACK, ignoring any occurrences
1366 inside "()" and "<>". Returns NULL if NEEDLE was not found. */
1367
1368 static const char *
1369 find_toplevel_string (const char *haystack, const char *needle)
1370 {
1371 const char *s = haystack;
1372
1373 do
1374 {
1375 s = find_toplevel_char (s, *needle);
1376
1377 if (s != NULL)
1378 {
1379 /* Found first char in HAYSTACK; check rest of string. */
1380 if (startswith (s, needle))
1381 return s;
1382
1383 /* Didn't find it; loop over HAYSTACK, looking for the next
1384 instance of the first character of NEEDLE. */
1385 ++s;
1386 }
1387 }
1388 while (s != NULL && *s != '\0');
1389
1390 /* NEEDLE was not found in HAYSTACK. */
1391 return NULL;
1392 }
1393
1394 /* Convert CANONICAL to its string representation using
1395 symtab_to_fullname for SYMTAB. */
1396
1397 static std::string
1398 canonical_to_fullform (const struct linespec_canonical_name *canonical)
1399 {
1400 if (canonical->symtab == NULL)
1401 return canonical->suffix;
1402 else
1403 return string_printf ("%s:%s", symtab_to_fullname (canonical->symtab),
1404 canonical->suffix);
1405 }
1406
1407 /* Given FILTERS, a list of canonical names, filter the sals in RESULT
1408 and store the result in SELF->CANONICAL. */
1409
1410 static void
1411 filter_results (struct linespec_state *self,
1412 std::vector<symtab_and_line> *result,
1413 const std::vector<const char *> &filters)
1414 {
1415 for (const char *name : filters)
1416 {
1417 linespec_sals lsal;
1418
1419 for (size_t j = 0; j < result->size (); ++j)
1420 {
1421 const struct linespec_canonical_name *canonical;
1422
1423 canonical = &self->canonical_names[j];
1424 std::string fullform = canonical_to_fullform (canonical);
1425
1426 if (name == fullform)
1427 lsal.sals.push_back ((*result)[j]);
1428 }
1429
1430 if (!lsal.sals.empty ())
1431 {
1432 lsal.canonical = xstrdup (name);
1433 self->canonical->lsals.push_back (std::move (lsal));
1434 }
1435 }
1436
1437 self->canonical->pre_expanded = 0;
1438 }
1439
1440 /* Store RESULT into SELF->CANONICAL. */
1441
1442 static void
1443 convert_results_to_lsals (struct linespec_state *self,
1444 std::vector<symtab_and_line> *result)
1445 {
1446 struct linespec_sals lsal;
1447
1448 lsal.canonical = NULL;
1449 lsal.sals = std::move (*result);
1450 self->canonical->lsals.push_back (std::move (lsal));
1451 }
1452
1453 /* A structure that contains two string representations of a struct
1454 linespec_canonical_name:
1455 - one where the the symtab's fullname is used;
1456 - one where the filename followed the "set filename-display"
1457 setting. */
1458
1459 struct decode_line_2_item
1460 {
1461 decode_line_2_item (std::string &&fullform_, std::string &&displayform_,
1462 bool selected_)
1463 : fullform (std::move (fullform_)),
1464 displayform (std::move (displayform_)),
1465 selected (selected_)
1466 {
1467 }
1468
1469 /* The form using symtab_to_fullname. */
1470 std::string fullform;
1471
1472 /* The form using symtab_to_filename_for_display. */
1473 std::string displayform;
1474
1475 /* Field is initialized to zero and it is set to one if the user
1476 requested breakpoint for this entry. */
1477 unsigned int selected : 1;
1478 };
1479
1480 /* Helper for std::sort to sort decode_line_2_item entries by
1481 DISPLAYFORM and secondarily by FULLFORM. */
1482
1483 static bool
1484 decode_line_2_compare_items (const decode_line_2_item &a,
1485 const decode_line_2_item &b)
1486 {
1487 if (a.displayform != b.displayform)
1488 return a.displayform < b.displayform;
1489 return a.fullform < b.fullform;
1490 }
1491
1492 /* Handle multiple results in RESULT depending on SELECT_MODE. This
1493 will either return normally, throw an exception on multiple
1494 results, or present a menu to the user. On return, the SALS vector
1495 in SELF->CANONICAL is set up properly. */
1496
1497 static void
1498 decode_line_2 (struct linespec_state *self,
1499 std::vector<symtab_and_line> *result,
1500 const char *select_mode)
1501 {
1502 char *args;
1503 const char *prompt;
1504 int i;
1505 std::vector<const char *> filters;
1506 std::vector<struct decode_line_2_item> items;
1507
1508 gdb_assert (select_mode != multiple_symbols_all);
1509 gdb_assert (self->canonical != NULL);
1510 gdb_assert (!result->empty ());
1511
1512 /* Prepare ITEMS array. */
1513 for (i = 0; i < result->size (); ++i)
1514 {
1515 const struct linespec_canonical_name *canonical;
1516 std::string displayform;
1517
1518 canonical = &self->canonical_names[i];
1519 gdb_assert (canonical->suffix != NULL);
1520
1521 std::string fullform = canonical_to_fullform (canonical);
1522
1523 if (canonical->symtab == NULL)
1524 displayform = canonical->suffix;
1525 else
1526 {
1527 const char *fn_for_display;
1528
1529 fn_for_display = symtab_to_filename_for_display (canonical->symtab);
1530 displayform = string_printf ("%s:%s", fn_for_display,
1531 canonical->suffix);
1532 }
1533
1534 items.emplace_back (std::move (fullform), std::move (displayform),
1535 false);
1536 }
1537
1538 /* Sort the list of method names. */
1539 std::sort (items.begin (), items.end (), decode_line_2_compare_items);
1540
1541 /* Remove entries with the same FULLFORM. */
1542 items.erase (std::unique (items.begin (), items.end (),
1543 [] (const struct decode_line_2_item &a,
1544 const struct decode_line_2_item &b)
1545 {
1546 return a.fullform == b.fullform;
1547 }),
1548 items.end ());
1549
1550 if (select_mode == multiple_symbols_cancel && items.size () > 1)
1551 error (_("canceled because the command is ambiguous\n"
1552 "See set/show multiple-symbol."));
1553
1554 if (select_mode == multiple_symbols_all || items.size () == 1)
1555 {
1556 convert_results_to_lsals (self, result);
1557 return;
1558 }
1559
1560 printf_unfiltered (_("[0] cancel\n[1] all\n"));
1561 for (i = 0; i < items.size (); i++)
1562 printf_unfiltered ("[%d] %s\n", i + 2, items[i].displayform.c_str ());
1563
1564 prompt = getenv ("PS2");
1565 if (prompt == NULL)
1566 {
1567 prompt = "> ";
1568 }
1569 args = command_line_input (prompt, "overload-choice");
1570
1571 if (args == 0 || *args == 0)
1572 error_no_arg (_("one or more choice numbers"));
1573
1574 number_or_range_parser parser (args);
1575 while (!parser.finished ())
1576 {
1577 int num = parser.get_number ();
1578
1579 if (num == 0)
1580 error (_("canceled"));
1581 else if (num == 1)
1582 {
1583 /* We intentionally make this result in a single breakpoint,
1584 contrary to what older versions of gdb did. The
1585 rationale is that this lets a user get the
1586 multiple_symbols_all behavior even with the 'ask'
1587 setting; and he can get separate breakpoints by entering
1588 "2-57" at the query. */
1589 convert_results_to_lsals (self, result);
1590 return;
1591 }
1592
1593 num -= 2;
1594 if (num >= items.size ())
1595 printf_unfiltered (_("No choice number %d.\n"), num);
1596 else
1597 {
1598 struct decode_line_2_item *item = &items[num];
1599
1600 if (!item->selected)
1601 {
1602 filters.push_back (item->fullform.c_str ());
1603 item->selected = 1;
1604 }
1605 else
1606 {
1607 printf_unfiltered (_("duplicate request for %d ignored.\n"),
1608 num + 2);
1609 }
1610 }
1611 }
1612
1613 filter_results (self, result, filters);
1614 }
1615
1616 \f
1617
1618 /* The parser of linespec itself. */
1619
1620 /* Throw an appropriate error when SYMBOL is not found (optionally in
1621 FILENAME). */
1622
1623 static void ATTRIBUTE_NORETURN
1624 symbol_not_found_error (const char *symbol, const char *filename)
1625 {
1626 if (symbol == NULL)
1627 symbol = "";
1628
1629 if (!have_full_symbols ()
1630 && !have_partial_symbols ()
1631 && !have_minimal_symbols ())
1632 throw_error (NOT_FOUND_ERROR,
1633 _("No symbol table is loaded. Use the \"file\" command."));
1634
1635 /* If SYMBOL starts with '$', the user attempted to either lookup
1636 a function/variable in his code starting with '$' or an internal
1637 variable of that name. Since we do not know which, be concise and
1638 explain both possibilities. */
1639 if (*symbol == '$')
1640 {
1641 if (filename)
1642 throw_error (NOT_FOUND_ERROR,
1643 _("Undefined convenience variable or function \"%s\" "
1644 "not defined in \"%s\"."), symbol, filename);
1645 else
1646 throw_error (NOT_FOUND_ERROR,
1647 _("Undefined convenience variable or function \"%s\" "
1648 "not defined."), symbol);
1649 }
1650 else
1651 {
1652 if (filename)
1653 throw_error (NOT_FOUND_ERROR,
1654 _("Function \"%s\" not defined in \"%s\"."),
1655 symbol, filename);
1656 else
1657 throw_error (NOT_FOUND_ERROR,
1658 _("Function \"%s\" not defined."), symbol);
1659 }
1660 }
1661
1662 /* Throw an appropriate error when an unexpected token is encountered
1663 in the input. */
1664
1665 static void ATTRIBUTE_NORETURN
1666 unexpected_linespec_error (linespec_parser *parser)
1667 {
1668 linespec_token token;
1669 static const char * token_type_strings[]
1670 = {"keyword", "colon", "string", "number", "comma", "end of input"};
1671
1672 /* Get the token that generated the error. */
1673 token = linespec_lexer_lex_one (parser);
1674
1675 /* Finally, throw the error. */
1676 if (token.type == LSTOKEN_STRING || token.type == LSTOKEN_NUMBER
1677 || token.type == LSTOKEN_KEYWORD)
1678 {
1679 gdb::unique_xmalloc_ptr<char> string = copy_token_string (token);
1680 throw_error (GENERIC_ERROR,
1681 _("malformed linespec error: unexpected %s, \"%s\""),
1682 token_type_strings[token.type], string.get ());
1683 }
1684 else
1685 throw_error (GENERIC_ERROR,
1686 _("malformed linespec error: unexpected %s"),
1687 token_type_strings[token.type]);
1688 }
1689
1690 /* Throw an undefined label error. */
1691
1692 static void ATTRIBUTE_NORETURN
1693 undefined_label_error (const char *function, const char *label)
1694 {
1695 if (function != NULL)
1696 throw_error (NOT_FOUND_ERROR,
1697 _("No label \"%s\" defined in function \"%s\"."),
1698 label, function);
1699 else
1700 throw_error (NOT_FOUND_ERROR,
1701 _("No label \"%s\" defined in current function."),
1702 label);
1703 }
1704
1705 /* Throw a source file not found error. */
1706
1707 static void ATTRIBUTE_NORETURN
1708 source_file_not_found_error (const char *name)
1709 {
1710 throw_error (NOT_FOUND_ERROR, _("No source file named %s."), name);
1711 }
1712
1713 /* Unless at EIO, save the current stream position as completion word
1714 point, and consume the next token. */
1715
1716 static linespec_token
1717 save_stream_and_consume_token (linespec_parser *parser)
1718 {
1719 if (linespec_lexer_peek_token (parser).type != LSTOKEN_EOI)
1720 parser->completion_word = PARSER_STREAM (parser);
1721 return linespec_lexer_consume_token (parser);
1722 }
1723
1724 /* See description in linespec.h. */
1725
1726 struct line_offset
1727 linespec_parse_line_offset (const char *string)
1728 {
1729 const char *start = string;
1730 struct line_offset line_offset = {0, LINE_OFFSET_NONE};
1731
1732 if (*string == '+')
1733 {
1734 line_offset.sign = LINE_OFFSET_PLUS;
1735 ++string;
1736 }
1737 else if (*string == '-')
1738 {
1739 line_offset.sign = LINE_OFFSET_MINUS;
1740 ++string;
1741 }
1742
1743 if (*string != '\0' && !isdigit (*string))
1744 error (_("malformed line offset: \"%s\""), start);
1745
1746 /* Right now, we only allow base 10 for offsets. */
1747 line_offset.offset = atoi (string);
1748 return line_offset;
1749 }
1750
1751 /* In completion mode, if the user is still typing the number, there's
1752 no possible completion to offer. But if there's already input past
1753 the number, setup to expect NEXT. */
1754
1755 static void
1756 set_completion_after_number (linespec_parser *parser,
1757 linespec_complete_what next)
1758 {
1759 if (*PARSER_STREAM (parser) == ' ')
1760 {
1761 parser->completion_word = skip_spaces (PARSER_STREAM (parser) + 1);
1762 parser->complete_what = next;
1763 }
1764 else
1765 {
1766 parser->completion_word = PARSER_STREAM (parser);
1767 parser->complete_what = linespec_complete_what::NOTHING;
1768 }
1769 }
1770
1771 /* Parse the basic_spec in PARSER's input. */
1772
1773 static void
1774 linespec_parse_basic (linespec_parser *parser)
1775 {
1776 gdb::unique_xmalloc_ptr<char> name;
1777 linespec_token token;
1778 std::vector<block_symbol> symbols;
1779 std::vector<block_symbol> *labels;
1780 std::vector<bound_minimal_symbol> minimal_symbols;
1781
1782 /* Get the next token. */
1783 token = linespec_lexer_lex_one (parser);
1784
1785 /* If it is EOI or KEYWORD, issue an error. */
1786 if (token.type == LSTOKEN_KEYWORD)
1787 {
1788 parser->complete_what = linespec_complete_what::NOTHING;
1789 unexpected_linespec_error (parser);
1790 }
1791 else if (token.type == LSTOKEN_EOI)
1792 {
1793 unexpected_linespec_error (parser);
1794 }
1795 /* If it is a LSTOKEN_NUMBER, we have an offset. */
1796 else if (token.type == LSTOKEN_NUMBER)
1797 {
1798 set_completion_after_number (parser, linespec_complete_what::KEYWORD);
1799
1800 /* Record the line offset and get the next token. */
1801 name = copy_token_string (token);
1802 PARSER_EXPLICIT (parser)->line_offset
1803 = linespec_parse_line_offset (name.get ());
1804
1805 /* Get the next token. */
1806 token = linespec_lexer_consume_token (parser);
1807
1808 /* If the next token is a comma, stop parsing and return. */
1809 if (token.type == LSTOKEN_COMMA)
1810 {
1811 parser->complete_what = linespec_complete_what::NOTHING;
1812 return;
1813 }
1814
1815 /* If the next token is anything but EOI or KEYWORD, issue
1816 an error. */
1817 if (token.type != LSTOKEN_KEYWORD && token.type != LSTOKEN_EOI)
1818 unexpected_linespec_error (parser);
1819 }
1820
1821 if (token.type == LSTOKEN_KEYWORD || token.type == LSTOKEN_EOI)
1822 return;
1823
1824 /* Next token must be LSTOKEN_STRING. */
1825 if (token.type != LSTOKEN_STRING)
1826 {
1827 parser->complete_what = linespec_complete_what::NOTHING;
1828 unexpected_linespec_error (parser);
1829 }
1830
1831 /* The current token will contain the name of a function, method,
1832 or label. */
1833 name = copy_token_string (token);
1834
1835 if (parser->completion_tracker != NULL)
1836 {
1837 /* If the function name ends with a ":", then this may be an
1838 incomplete "::" scope operator instead of a label separator.
1839 E.g.,
1840 "b klass:<tab>"
1841 which should expand to:
1842 "b klass::method()"
1843
1844 Do a tentative completion assuming the later. If we find
1845 completions, advance the stream past the colon token and make
1846 it part of the function name/token. */
1847
1848 if (!parser->completion_quote_char
1849 && strcmp (PARSER_STREAM (parser), ":") == 0)
1850 {
1851 completion_tracker tmp_tracker;
1852 const char *source_filename
1853 = PARSER_EXPLICIT (parser)->source_filename;
1854 symbol_name_match_type match_type
1855 = PARSER_EXPLICIT (parser)->func_name_match_type;
1856
1857 linespec_complete_function (tmp_tracker,
1858 parser->completion_word,
1859 match_type,
1860 source_filename);
1861
1862 if (tmp_tracker.have_completions ())
1863 {
1864 PARSER_STREAM (parser)++;
1865 LS_TOKEN_STOKEN (token).length++;
1866
1867 name.reset (savestring (parser->completion_word,
1868 (PARSER_STREAM (parser)
1869 - parser->completion_word)));
1870 }
1871 }
1872
1873 PARSER_EXPLICIT (parser)->function_name = name.release ();
1874 }
1875 else
1876 {
1877 /* Try looking it up as a function/method. */
1878 find_linespec_symbols (PARSER_STATE (parser),
1879 PARSER_RESULT (parser)->file_symtabs, name.get (),
1880 PARSER_EXPLICIT (parser)->func_name_match_type,
1881 &symbols, &minimal_symbols);
1882
1883 if (!symbols.empty () || !minimal_symbols.empty ())
1884 {
1885 PARSER_RESULT (parser)->function_symbols
1886 = new std::vector<block_symbol> (std::move (symbols));
1887 PARSER_RESULT (parser)->minimal_symbols
1888 = new std::vector<bound_minimal_symbol>
1889 (std::move (minimal_symbols));
1890 PARSER_EXPLICIT (parser)->function_name = name.release ();
1891 }
1892 else
1893 {
1894 /* NAME was not a function or a method. So it must be a label
1895 name or user specified variable like "break foo.c:$zippo". */
1896 labels = find_label_symbols (PARSER_STATE (parser), NULL,
1897 &symbols, name.get ());
1898 if (labels != NULL)
1899 {
1900 PARSER_RESULT (parser)->labels.label_symbols = labels;
1901 PARSER_RESULT (parser)->labels.function_symbols
1902 = new std::vector<block_symbol> (std::move (symbols));
1903 PARSER_EXPLICIT (parser)->label_name = name.release ();
1904 }
1905 else if (token.type == LSTOKEN_STRING
1906 && *LS_TOKEN_STOKEN (token).ptr == '$')
1907 {
1908 /* User specified a convenience variable or history value. */
1909 PARSER_EXPLICIT (parser)->line_offset
1910 = linespec_parse_variable (PARSER_STATE (parser), name.get ());
1911
1912 if (PARSER_EXPLICIT (parser)->line_offset.sign == LINE_OFFSET_UNKNOWN)
1913 {
1914 /* The user-specified variable was not valid. Do not
1915 throw an error here. parse_linespec will do it for us. */
1916 PARSER_EXPLICIT (parser)->function_name = name.release ();
1917 return;
1918 }
1919 }
1920 else
1921 {
1922 /* The name is also not a label. Abort parsing. Do not throw
1923 an error here. parse_linespec will do it for us. */
1924
1925 /* Save a copy of the name we were trying to lookup. */
1926 PARSER_EXPLICIT (parser)->function_name = name.release ();
1927 return;
1928 }
1929 }
1930 }
1931
1932 int previous_qc = parser->completion_quote_char;
1933
1934 /* Get the next token. */
1935 token = linespec_lexer_consume_token (parser);
1936
1937 if (token.type == LSTOKEN_EOI)
1938 {
1939 if (previous_qc && !parser->completion_quote_char)
1940 parser->complete_what = linespec_complete_what::KEYWORD;
1941 }
1942 else if (token.type == LSTOKEN_COLON)
1943 {
1944 /* User specified a label or a lineno. */
1945 token = linespec_lexer_consume_token (parser);
1946
1947 if (token.type == LSTOKEN_NUMBER)
1948 {
1949 /* User specified an offset. Record the line offset and
1950 get the next token. */
1951 set_completion_after_number (parser, linespec_complete_what::KEYWORD);
1952
1953 name = copy_token_string (token);
1954 PARSER_EXPLICIT (parser)->line_offset
1955 = linespec_parse_line_offset (name.get ());
1956
1957 /* Get the next token. */
1958 token = linespec_lexer_consume_token (parser);
1959 }
1960 else if (token.type == LSTOKEN_EOI && parser->completion_tracker != NULL)
1961 {
1962 parser->complete_what = linespec_complete_what::LABEL;
1963 }
1964 else if (token.type == LSTOKEN_STRING)
1965 {
1966 parser->complete_what = linespec_complete_what::LABEL;
1967
1968 /* If we have text after the label separated by whitespace
1969 (e.g., "b func():lab i<tab>"), don't consider it part of
1970 the label. In completion mode that should complete to
1971 "if", in normal mode, the 'i' should be treated as
1972 garbage. */
1973 if (parser->completion_quote_char == '\0')
1974 {
1975 const char *ptr = LS_TOKEN_STOKEN (token).ptr;
1976 for (size_t i = 0; i < LS_TOKEN_STOKEN (token).length; i++)
1977 {
1978 if (ptr[i] == ' ')
1979 {
1980 LS_TOKEN_STOKEN (token).length = i;
1981 PARSER_STREAM (parser) = skip_spaces (ptr + i + 1);
1982 break;
1983 }
1984 }
1985 }
1986
1987 if (parser->completion_tracker != NULL)
1988 {
1989 if (PARSER_STREAM (parser)[-1] == ' ')
1990 {
1991 parser->completion_word = PARSER_STREAM (parser);
1992 parser->complete_what = linespec_complete_what::KEYWORD;
1993 }
1994 }
1995 else
1996 {
1997 /* Grab a copy of the label's name and look it up. */
1998 name = copy_token_string (token);
1999 labels
2000 = find_label_symbols (PARSER_STATE (parser),
2001 PARSER_RESULT (parser)->function_symbols,
2002 &symbols, name.get ());
2003
2004 if (labels != NULL)
2005 {
2006 PARSER_RESULT (parser)->labels.label_symbols = labels;
2007 PARSER_RESULT (parser)->labels.function_symbols
2008 = new std::vector<block_symbol> (std::move (symbols));
2009 PARSER_EXPLICIT (parser)->label_name = name.release ();
2010 }
2011 else
2012 {
2013 /* We don't know what it was, but it isn't a label. */
2014 undefined_label_error
2015 (PARSER_EXPLICIT (parser)->function_name, name.get ());
2016 }
2017
2018 }
2019
2020 /* Check for a line offset. */
2021 token = save_stream_and_consume_token (parser);
2022 if (token.type == LSTOKEN_COLON)
2023 {
2024 /* Get the next token. */
2025 token = linespec_lexer_consume_token (parser);
2026
2027 /* It must be a line offset. */
2028 if (token.type != LSTOKEN_NUMBER)
2029 unexpected_linespec_error (parser);
2030
2031 /* Record the line offset and get the next token. */
2032 name = copy_token_string (token);
2033
2034 PARSER_EXPLICIT (parser)->line_offset
2035 = linespec_parse_line_offset (name.get ());
2036
2037 /* Get the next token. */
2038 token = linespec_lexer_consume_token (parser);
2039 }
2040 }
2041 else
2042 {
2043 /* Trailing ':' in the input. Issue an error. */
2044 unexpected_linespec_error (parser);
2045 }
2046 }
2047 }
2048
2049 /* Canonicalize the linespec contained in LS. The result is saved into
2050 STATE->canonical. This function handles both linespec and explicit
2051 locations. */
2052
2053 static void
2054 canonicalize_linespec (struct linespec_state *state, const linespec_p ls)
2055 {
2056 struct event_location *canon;
2057 struct explicit_location *explicit_loc;
2058
2059 /* If canonicalization was not requested, no need to do anything. */
2060 if (!state->canonical)
2061 return;
2062
2063 /* Save everything as an explicit location. */
2064 state->canonical->location
2065 = new_explicit_location (&ls->explicit_loc);
2066 canon = state->canonical->location.get ();
2067 explicit_loc = get_explicit_location (canon);
2068
2069 if (explicit_loc->label_name != NULL)
2070 {
2071 state->canonical->special_display = 1;
2072
2073 if (explicit_loc->function_name == NULL)
2074 {
2075 /* No function was specified, so add the symbol name. */
2076 gdb_assert (!ls->labels.function_symbols->empty ()
2077 && (ls->labels.function_symbols->size () == 1));
2078 block_symbol s = ls->labels.function_symbols->front ();
2079 explicit_loc->function_name
2080 = xstrdup (SYMBOL_NATURAL_NAME (s.symbol));
2081 }
2082 }
2083
2084 /* If this location originally came from a linespec, save a string
2085 representation of it for display and saving to file. */
2086 if (state->is_linespec)
2087 {
2088 char *linespec = explicit_location_to_linespec (explicit_loc);
2089
2090 set_event_location_string (canon, linespec);
2091 xfree (linespec);
2092 }
2093 }
2094
2095 /* Given a line offset in LS, construct the relevant SALs. */
2096
2097 static std::vector<symtab_and_line>
2098 create_sals_line_offset (struct linespec_state *self,
2099 linespec_p ls)
2100 {
2101 int use_default = 0;
2102
2103 /* This is where we need to make sure we have good defaults.
2104 We must guarantee that this section of code is never executed
2105 when we are called with just a function name, since
2106 set_default_source_symtab_and_line uses
2107 select_source_symtab that calls us with such an argument. */
2108
2109 if (ls->file_symtabs->size () == 1
2110 && ls->file_symtabs->front () == nullptr)
2111 {
2112 const char *fullname;
2113
2114 set_current_program_space (self->program_space);
2115
2116 /* Make sure we have at least a default source line. */
2117 set_default_source_symtab_and_line ();
2118 initialize_defaults (&self->default_symtab, &self->default_line);
2119 fullname = symtab_to_fullname (self->default_symtab);
2120 symtab_vector_up r =
2121 collect_symtabs_from_filename (fullname, self->search_pspace);
2122 ls->file_symtabs = r.release ();
2123 use_default = 1;
2124 }
2125
2126 symtab_and_line val;
2127 val.line = ls->explicit_loc.line_offset.offset;
2128 switch (ls->explicit_loc.line_offset.sign)
2129 {
2130 case LINE_OFFSET_PLUS:
2131 if (ls->explicit_loc.line_offset.offset == 0)
2132 val.line = 5;
2133 if (use_default)
2134 val.line = self->default_line + val.line;
2135 break;
2136
2137 case LINE_OFFSET_MINUS:
2138 if (ls->explicit_loc.line_offset.offset == 0)
2139 val.line = 15;
2140 if (use_default)
2141 val.line = self->default_line - val.line;
2142 else
2143 val.line = -val.line;
2144 break;
2145
2146 case LINE_OFFSET_NONE:
2147 break; /* No need to adjust val.line. */
2148 }
2149
2150 std::vector<symtab_and_line> values;
2151 if (self->list_mode)
2152 values = decode_digits_list_mode (self, ls, val);
2153 else
2154 {
2155 struct linetable_entry *best_entry = NULL;
2156 int i, j;
2157
2158 std::vector<symtab_and_line> intermediate_results
2159 = decode_digits_ordinary (self, ls, val.line, &best_entry);
2160 if (intermediate_results.empty () && best_entry != NULL)
2161 intermediate_results = decode_digits_ordinary (self, ls,
2162 best_entry->line,
2163 &best_entry);
2164
2165 /* For optimized code, the compiler can scatter one source line
2166 across disjoint ranges of PC values, even when no duplicate
2167 functions or inline functions are involved. For example,
2168 'for (;;)' inside a non-template, non-inline, and non-ctor-or-dtor
2169 function can result in two PC ranges. In this case, we don't
2170 want to set a breakpoint on the first PC of each range. To filter
2171 such cases, we use containing blocks -- for each PC found
2172 above, we see if there are other PCs that are in the same
2173 block. If yes, the other PCs are filtered out. */
2174
2175 gdb::def_vector<int> filter (intermediate_results.size ());
2176 gdb::def_vector<const block *> blocks (intermediate_results.size ());
2177
2178 for (i = 0; i < intermediate_results.size (); ++i)
2179 {
2180 set_current_program_space (intermediate_results[i].pspace);
2181
2182 filter[i] = 1;
2183 blocks[i] = block_for_pc_sect (intermediate_results[i].pc,
2184 intermediate_results[i].section);
2185 }
2186
2187 for (i = 0; i < intermediate_results.size (); ++i)
2188 {
2189 if (blocks[i] != NULL)
2190 for (j = i + 1; j < intermediate_results.size (); ++j)
2191 {
2192 if (blocks[j] == blocks[i])
2193 {
2194 filter[j] = 0;
2195 break;
2196 }
2197 }
2198 }
2199
2200 for (i = 0; i < intermediate_results.size (); ++i)
2201 if (filter[i])
2202 {
2203 struct symbol *sym = (blocks[i]
2204 ? block_containing_function (blocks[i])
2205 : NULL);
2206
2207 if (self->funfirstline)
2208 skip_prologue_sal (&intermediate_results[i]);
2209 intermediate_results[i].symbol = sym;
2210 add_sal_to_sals (self, &values, &intermediate_results[i],
2211 sym ? SYMBOL_NATURAL_NAME (sym) : NULL, 0);
2212 }
2213 }
2214
2215 if (values.empty ())
2216 {
2217 if (ls->explicit_loc.source_filename)
2218 throw_error (NOT_FOUND_ERROR, _("No line %d in file \"%s\"."),
2219 val.line, ls->explicit_loc.source_filename);
2220 else
2221 throw_error (NOT_FOUND_ERROR, _("No line %d in the current file."),
2222 val.line);
2223 }
2224
2225 return values;
2226 }
2227
2228 /* Convert the given ADDRESS into SaLs. */
2229
2230 static std::vector<symtab_and_line>
2231 convert_address_location_to_sals (struct linespec_state *self,
2232 CORE_ADDR address)
2233 {
2234 symtab_and_line sal = find_pc_line (address, 0);
2235 sal.pc = address;
2236 sal.section = find_pc_overlay (address);
2237 sal.explicit_pc = 1;
2238 sal.symbol = find_pc_sect_containing_function (sal.pc, sal.section);
2239
2240 std::vector<symtab_and_line> sals;
2241 add_sal_to_sals (self, &sals, &sal, core_addr_to_string (address), 1);
2242
2243 return sals;
2244 }
2245
2246 /* Create and return SALs from the linespec LS. */
2247
2248 static std::vector<symtab_and_line>
2249 convert_linespec_to_sals (struct linespec_state *state, linespec_p ls)
2250 {
2251 std::vector<symtab_and_line> sals;
2252
2253 if (ls->labels.label_symbols != NULL)
2254 {
2255 /* We have just a bunch of functions/methods or labels. */
2256 struct symtab_and_line sal;
2257
2258 for (const auto &sym : *ls->labels.label_symbols)
2259 {
2260 struct program_space *pspace
2261 = SYMTAB_PSPACE (symbol_symtab (sym.symbol));
2262
2263 if (symbol_to_sal (&sal, state->funfirstline, sym.symbol)
2264 && maybe_add_address (state->addr_set, pspace, sal.pc))
2265 add_sal_to_sals (state, &sals, &sal,
2266 SYMBOL_NATURAL_NAME (sym.symbol), 0);
2267 }
2268 }
2269 else if (ls->function_symbols != NULL || ls->minimal_symbols != NULL)
2270 {
2271 /* We have just a bunch of functions and/or methods. */
2272 if (ls->function_symbols != NULL)
2273 {
2274 /* Sort symbols so that symbols with the same program space are next
2275 to each other. */
2276 std::sort (ls->function_symbols->begin (),
2277 ls->function_symbols->end (),
2278 compare_symbols);
2279
2280 for (const auto &sym : *ls->function_symbols)
2281 {
2282 program_space *pspace
2283 = SYMTAB_PSPACE (symbol_symtab (sym.symbol));
2284 set_current_program_space (pspace);
2285
2286 /* Don't skip to the first line of the function if we
2287 had found an ifunc minimal symbol for this function,
2288 because that means that this function is an ifunc
2289 resolver with the same name as the ifunc itself. */
2290 bool found_ifunc = false;
2291
2292 if (state->funfirstline
2293 && ls->minimal_symbols != NULL
2294 && SYMBOL_CLASS (sym.symbol) == LOC_BLOCK)
2295 {
2296 const CORE_ADDR addr
2297 = BLOCK_ENTRY_PC (SYMBOL_BLOCK_VALUE (sym.symbol));
2298
2299 for (const auto &elem : *ls->minimal_symbols)
2300 {
2301 if (MSYMBOL_TYPE (elem.minsym) == mst_text_gnu_ifunc
2302 || MSYMBOL_TYPE (elem.minsym) == mst_data_gnu_ifunc)
2303 {
2304 CORE_ADDR msym_addr = BMSYMBOL_VALUE_ADDRESS (elem);
2305 if (MSYMBOL_TYPE (elem.minsym) == mst_data_gnu_ifunc)
2306 {
2307 struct gdbarch *gdbarch
2308 = get_objfile_arch (elem.objfile);
2309 msym_addr
2310 = (gdbarch_convert_from_func_ptr_addr
2311 (gdbarch,
2312 msym_addr,
2313 current_top_target ()));
2314 }
2315
2316 if (msym_addr == addr)
2317 {
2318 found_ifunc = true;
2319 break;
2320 }
2321 }
2322 }
2323 }
2324
2325 if (!found_ifunc)
2326 {
2327 symtab_and_line sal;
2328 if (symbol_to_sal (&sal, state->funfirstline, sym.symbol)
2329 && maybe_add_address (state->addr_set, pspace, sal.pc))
2330 add_sal_to_sals (state, &sals, &sal,
2331 SYMBOL_NATURAL_NAME (sym.symbol), 0);
2332 }
2333 }
2334 }
2335
2336 if (ls->minimal_symbols != NULL)
2337 {
2338 /* Sort minimal symbols by program space, too */
2339 std::sort (ls->minimal_symbols->begin (),
2340 ls->minimal_symbols->end (),
2341 compare_msymbols);
2342
2343 for (const auto &elem : *ls->minimal_symbols)
2344 {
2345 program_space *pspace = elem.objfile->pspace;
2346 set_current_program_space (pspace);
2347 minsym_found (state, elem.objfile, elem.minsym, &sals);
2348 }
2349 }
2350 }
2351 else if (ls->explicit_loc.line_offset.sign != LINE_OFFSET_UNKNOWN)
2352 {
2353 /* Only an offset was specified. */
2354 sals = create_sals_line_offset (state, ls);
2355
2356 /* Make sure we have a filename for canonicalization. */
2357 if (ls->explicit_loc.source_filename == NULL)
2358 {
2359 const char *fullname = symtab_to_fullname (state->default_symtab);
2360
2361 /* It may be more appropriate to keep DEFAULT_SYMTAB in its symtab
2362 form so that displaying SOURCE_FILENAME can follow the current
2363 FILENAME_DISPLAY_STRING setting. But as it is used only rarely
2364 it has been kept for code simplicity only in absolute form. */
2365 ls->explicit_loc.source_filename = xstrdup (fullname);
2366 }
2367 }
2368 else
2369 {
2370 /* We haven't found any results... */
2371 return sals;
2372 }
2373
2374 canonicalize_linespec (state, ls);
2375
2376 if (!sals.empty () && state->canonical != NULL)
2377 state->canonical->pre_expanded = 1;
2378
2379 return sals;
2380 }
2381
2382 /* Build RESULT from the explicit location components SOURCE_FILENAME,
2383 FUNCTION_NAME, LABEL_NAME and LINE_OFFSET. */
2384
2385 static void
2386 convert_explicit_location_to_linespec (struct linespec_state *self,
2387 linespec_p result,
2388 const char *source_filename,
2389 const char *function_name,
2390 symbol_name_match_type fname_match_type,
2391 const char *label_name,
2392 struct line_offset line_offset)
2393 {
2394 std::vector<block_symbol> symbols;
2395 std::vector<block_symbol> *labels;
2396 std::vector<bound_minimal_symbol> minimal_symbols;
2397
2398 result->explicit_loc.func_name_match_type = fname_match_type;
2399
2400 if (source_filename != NULL)
2401 {
2402 TRY
2403 {
2404 result->file_symtabs
2405 = symtabs_from_filename (source_filename,
2406 self->search_pspace).release ();
2407 }
2408 CATCH (except, RETURN_MASK_ERROR)
2409 {
2410 source_file_not_found_error (source_filename);
2411 }
2412 END_CATCH
2413 result->explicit_loc.source_filename = xstrdup (source_filename);
2414 }
2415 else
2416 {
2417 /* A NULL entry means to use the default symtab. */
2418 result->file_symtabs->push_back (nullptr);
2419 }
2420
2421 if (function_name != NULL)
2422 {
2423 find_linespec_symbols (self, result->file_symtabs,
2424 function_name, fname_match_type,
2425 &symbols, &minimal_symbols);
2426
2427 if (symbols.empty () && minimal_symbols.empty ())
2428 symbol_not_found_error (function_name,
2429 result->explicit_loc.source_filename);
2430
2431 result->explicit_loc.function_name = xstrdup (function_name);
2432 result->function_symbols
2433 = new std::vector<block_symbol> (std::move (symbols));
2434 result->minimal_symbols
2435 = new std::vector<bound_minimal_symbol> (std::move (minimal_symbols));
2436 }
2437
2438 if (label_name != NULL)
2439 {
2440 labels = find_label_symbols (self, result->function_symbols,
2441 &symbols, label_name);
2442
2443 if (labels == NULL)
2444 undefined_label_error (result->explicit_loc.function_name,
2445 label_name);
2446
2447 result->explicit_loc.label_name = xstrdup (label_name);
2448 result->labels.label_symbols = labels;
2449 result->labels.function_symbols
2450 = new std::vector<block_symbol> (std::move (symbols));
2451 }
2452
2453 if (line_offset.sign != LINE_OFFSET_UNKNOWN)
2454 result->explicit_loc.line_offset = line_offset;
2455 }
2456
2457 /* Convert the explicit location EXPLICIT_LOC into SaLs. */
2458
2459 static std::vector<symtab_and_line>
2460 convert_explicit_location_to_sals (struct linespec_state *self,
2461 linespec_p result,
2462 const struct explicit_location *explicit_loc)
2463 {
2464 convert_explicit_location_to_linespec (self, result,
2465 explicit_loc->source_filename,
2466 explicit_loc->function_name,
2467 explicit_loc->func_name_match_type,
2468 explicit_loc->label_name,
2469 explicit_loc->line_offset);
2470 return convert_linespec_to_sals (self, result);
2471 }
2472
2473 /* Parse a string that specifies a linespec.
2474
2475 The basic grammar of linespecs:
2476
2477 linespec -> var_spec | basic_spec
2478 var_spec -> '$' (STRING | NUMBER)
2479
2480 basic_spec -> file_offset_spec | function_spec | label_spec
2481 file_offset_spec -> opt_file_spec offset_spec
2482 function_spec -> opt_file_spec function_name_spec opt_label_spec
2483 label_spec -> label_name_spec
2484
2485 opt_file_spec -> "" | file_name_spec ':'
2486 opt_label_spec -> "" | ':' label_name_spec
2487
2488 file_name_spec -> STRING
2489 function_name_spec -> STRING
2490 label_name_spec -> STRING
2491 function_name_spec -> STRING
2492 offset_spec -> NUMBER
2493 -> '+' NUMBER
2494 -> '-' NUMBER
2495
2496 This may all be followed by several keywords such as "if EXPR",
2497 which we ignore.
2498
2499 A comma will terminate parsing.
2500
2501 The function may be an undebuggable function found in minimal symbol table.
2502
2503 If the argument FUNFIRSTLINE is nonzero, we want the first line
2504 of real code inside a function when a function is specified, and it is
2505 not OK to specify a variable or type to get its line number.
2506
2507 DEFAULT_SYMTAB specifies the file to use if none is specified.
2508 It defaults to current_source_symtab.
2509 DEFAULT_LINE specifies the line number to use for relative
2510 line numbers (that start with signs). Defaults to current_source_line.
2511 If CANONICAL is non-NULL, store an array of strings containing the canonical
2512 line specs there if necessary. Currently overloaded member functions and
2513 line numbers or static functions without a filename yield a canonical
2514 line spec. The array and the line spec strings are allocated on the heap,
2515 it is the callers responsibility to free them.
2516
2517 Note that it is possible to return zero for the symtab
2518 if no file is validly specified. Callers must check that.
2519 Also, the line number returned may be invalid. */
2520
2521 /* Parse the linespec in ARG. MATCH_TYPE indicates how function names
2522 should be matched. */
2523
2524 static std::vector<symtab_and_line>
2525 parse_linespec (linespec_parser *parser, const char *arg,
2526 symbol_name_match_type match_type)
2527 {
2528 linespec_token token;
2529 struct gdb_exception file_exception = exception_none;
2530
2531 /* A special case to start. It has become quite popular for
2532 IDEs to work around bugs in the previous parser by quoting
2533 the entire linespec, so we attempt to deal with this nicely. */
2534 parser->is_quote_enclosed = 0;
2535 if (parser->completion_tracker == NULL
2536 && !is_ada_operator (arg)
2537 && strchr (linespec_quote_characters, *arg) != NULL)
2538 {
2539 const char *end;
2540
2541 end = skip_quote_char (arg + 1, *arg);
2542 if (end != NULL && is_closing_quote_enclosed (end))
2543 {
2544 /* Here's the special case. Skip ARG past the initial
2545 quote. */
2546 ++arg;
2547 parser->is_quote_enclosed = 1;
2548 }
2549 }
2550
2551 parser->lexer.saved_arg = arg;
2552 parser->lexer.stream = arg;
2553 parser->completion_word = arg;
2554 parser->complete_what = linespec_complete_what::FUNCTION;
2555 PARSER_EXPLICIT (parser)->func_name_match_type = match_type;
2556
2557 /* Initialize the default symtab and line offset. */
2558 initialize_defaults (&PARSER_STATE (parser)->default_symtab,
2559 &PARSER_STATE (parser)->default_line);
2560
2561 /* Objective-C shortcut. */
2562 if (parser->completion_tracker == NULL)
2563 {
2564 std::vector<symtab_and_line> values
2565 = decode_objc (PARSER_STATE (parser), PARSER_RESULT (parser), arg);
2566 if (!values.empty ())
2567 return values;
2568 }
2569 else
2570 {
2571 /* "-"/"+" is either an objc selector, or a number. There's
2572 nothing to complete the latter to, so just let the caller
2573 complete on functions, which finds objc selectors, if there's
2574 any. */
2575 if ((arg[0] == '-' || arg[0] == '+') && arg[1] == '\0')
2576 return {};
2577 }
2578
2579 /* Start parsing. */
2580
2581 /* Get the first token. */
2582 token = linespec_lexer_consume_token (parser);
2583
2584 /* It must be either LSTOKEN_STRING or LSTOKEN_NUMBER. */
2585 if (token.type == LSTOKEN_STRING && *LS_TOKEN_STOKEN (token).ptr == '$')
2586 {
2587 /* A NULL entry means to use GLOBAL_DEFAULT_SYMTAB. */
2588 if (parser->completion_tracker == NULL)
2589 PARSER_RESULT (parser)->file_symtabs->push_back (nullptr);
2590
2591 /* User specified a convenience variable or history value. */
2592 gdb::unique_xmalloc_ptr<char> var = copy_token_string (token);
2593 PARSER_EXPLICIT (parser)->line_offset
2594 = linespec_parse_variable (PARSER_STATE (parser), var.get ());
2595
2596 /* If a line_offset wasn't found (VAR is the name of a user
2597 variable/function), then skip to normal symbol processing. */
2598 if (PARSER_EXPLICIT (parser)->line_offset.sign != LINE_OFFSET_UNKNOWN)
2599 {
2600 /* Consume this token. */
2601 linespec_lexer_consume_token (parser);
2602
2603 goto convert_to_sals;
2604 }
2605 }
2606 else if (token.type == LSTOKEN_EOI && parser->completion_tracker != NULL)
2607 {
2608 /* Let the default linespec_complete_what::FUNCTION kick in. */
2609 unexpected_linespec_error (parser);
2610 }
2611 else if (token.type != LSTOKEN_STRING && token.type != LSTOKEN_NUMBER)
2612 {
2613 parser->complete_what = linespec_complete_what::NOTHING;
2614 unexpected_linespec_error (parser);
2615 }
2616
2617 /* Shortcut: If the next token is not LSTOKEN_COLON, we know that
2618 this token cannot represent a filename. */
2619 token = linespec_lexer_peek_token (parser);
2620
2621 if (token.type == LSTOKEN_COLON)
2622 {
2623 /* Get the current token again and extract the filename. */
2624 token = linespec_lexer_lex_one (parser);
2625 gdb::unique_xmalloc_ptr<char> user_filename = copy_token_string (token);
2626
2627 /* Check if the input is a filename. */
2628 TRY
2629 {
2630 symtab_vector_up r
2631 = symtabs_from_filename (user_filename.get (),
2632 PARSER_STATE (parser)->search_pspace);
2633 PARSER_RESULT (parser)->file_symtabs = r.release ();
2634 }
2635 CATCH (ex, RETURN_MASK_ERROR)
2636 {
2637 file_exception = ex;
2638 }
2639 END_CATCH
2640
2641 if (file_exception.reason >= 0)
2642 {
2643 /* Symtabs were found for the file. Record the filename. */
2644 PARSER_EXPLICIT (parser)->source_filename = user_filename.release ();
2645
2646 /* Get the next token. */
2647 token = linespec_lexer_consume_token (parser);
2648
2649 /* This is LSTOKEN_COLON; consume it. */
2650 linespec_lexer_consume_token (parser);
2651 }
2652 else
2653 {
2654 /* A NULL entry means to use GLOBAL_DEFAULT_SYMTAB. */
2655 PARSER_RESULT (parser)->file_symtabs->push_back (nullptr);
2656 }
2657 }
2658 /* If the next token is not EOI, KEYWORD, or COMMA, issue an error. */
2659 else if (parser->completion_tracker == NULL
2660 && (token.type != LSTOKEN_EOI && token.type != LSTOKEN_KEYWORD
2661 && token.type != LSTOKEN_COMMA))
2662 {
2663 /* TOKEN is the _next_ token, not the one currently in the parser.
2664 Consuming the token will give the correct error message. */
2665 linespec_lexer_consume_token (parser);
2666 unexpected_linespec_error (parser);
2667 }
2668 else
2669 {
2670 /* A NULL entry means to use GLOBAL_DEFAULT_SYMTAB. */
2671 PARSER_RESULT (parser)->file_symtabs->push_back (nullptr);
2672 }
2673
2674 /* Parse the rest of the linespec. */
2675 linespec_parse_basic (parser);
2676
2677 if (parser->completion_tracker == NULL
2678 && PARSER_RESULT (parser)->function_symbols == NULL
2679 && PARSER_RESULT (parser)->labels.label_symbols == NULL
2680 && PARSER_EXPLICIT (parser)->line_offset.sign == LINE_OFFSET_UNKNOWN
2681 && PARSER_RESULT (parser)->minimal_symbols == NULL)
2682 {
2683 /* The linespec didn't parse. Re-throw the file exception if
2684 there was one. */
2685 if (file_exception.reason < 0)
2686 throw_exception (file_exception);
2687
2688 /* Otherwise, the symbol is not found. */
2689 symbol_not_found_error (PARSER_EXPLICIT (parser)->function_name,
2690 PARSER_EXPLICIT (parser)->source_filename);
2691 }
2692
2693 convert_to_sals:
2694
2695 /* Get the last token and record how much of the input was parsed,
2696 if necessary. */
2697 token = linespec_lexer_lex_one (parser);
2698 if (token.type != LSTOKEN_EOI && token.type != LSTOKEN_KEYWORD)
2699 unexpected_linespec_error (parser);
2700 else if (token.type == LSTOKEN_KEYWORD)
2701 {
2702 /* Setup the completion word past the keyword. Lexing never
2703 advances past a keyword automatically, so skip it
2704 manually. */
2705 parser->completion_word
2706 = skip_spaces (skip_to_space (PARSER_STREAM (parser)));
2707 parser->complete_what = linespec_complete_what::EXPRESSION;
2708 }
2709
2710 /* Convert the data in PARSER_RESULT to SALs. */
2711 if (parser->completion_tracker == NULL)
2712 return convert_linespec_to_sals (PARSER_STATE (parser),
2713 PARSER_RESULT (parser));
2714
2715 return {};
2716 }
2717
2718
2719 /* A constructor for linespec_state. */
2720
2721 static void
2722 linespec_state_constructor (struct linespec_state *self,
2723 int flags, const struct language_defn *language,
2724 struct program_space *search_pspace,
2725 struct symtab *default_symtab,
2726 int default_line,
2727 struct linespec_result *canonical)
2728 {
2729 memset (self, 0, sizeof (*self));
2730 self->language = language;
2731 self->funfirstline = (flags & DECODE_LINE_FUNFIRSTLINE) ? 1 : 0;
2732 self->list_mode = (flags & DECODE_LINE_LIST_MODE) ? 1 : 0;
2733 self->search_pspace = search_pspace;
2734 self->default_symtab = default_symtab;
2735 self->default_line = default_line;
2736 self->canonical = canonical;
2737 self->program_space = current_program_space;
2738 self->addr_set = htab_create_alloc (10, hash_address_entry, eq_address_entry,
2739 xfree, xcalloc, xfree);
2740 self->is_linespec = 0;
2741 }
2742
2743 /* Initialize a new linespec parser. */
2744
2745 static void
2746 linespec_parser_new (linespec_parser *parser,
2747 int flags, const struct language_defn *language,
2748 struct program_space *search_pspace,
2749 struct symtab *default_symtab,
2750 int default_line,
2751 struct linespec_result *canonical)
2752 {
2753 memset (parser, 0, sizeof (linespec_parser));
2754 parser->lexer.current.type = LSTOKEN_CONSUMED;
2755 memset (PARSER_RESULT (parser), 0, sizeof (struct linespec));
2756 PARSER_RESULT (parser)->file_symtabs = new std::vector<symtab *> ();
2757 PARSER_EXPLICIT (parser)->func_name_match_type
2758 = symbol_name_match_type::WILD;
2759 PARSER_EXPLICIT (parser)->line_offset.sign = LINE_OFFSET_UNKNOWN;
2760 linespec_state_constructor (PARSER_STATE (parser), flags, language,
2761 search_pspace,
2762 default_symtab, default_line, canonical);
2763 }
2764
2765 /* A destructor for linespec_state. */
2766
2767 static void
2768 linespec_state_destructor (struct linespec_state *self)
2769 {
2770 htab_delete (self->addr_set);
2771 }
2772
2773 /* Delete a linespec parser. */
2774
2775 static void
2776 linespec_parser_delete (void *arg)
2777 {
2778 linespec_parser *parser = (linespec_parser *) arg;
2779
2780 xfree (PARSER_EXPLICIT (parser)->source_filename);
2781 xfree (PARSER_EXPLICIT (parser)->label_name);
2782 xfree (PARSER_EXPLICIT (parser)->function_name);
2783
2784 delete PARSER_RESULT (parser)->file_symtabs;
2785 delete PARSER_RESULT (parser)->function_symbols;
2786 delete PARSER_RESULT (parser)->minimal_symbols;
2787 delete PARSER_RESULT (parser)->labels.label_symbols;
2788 delete PARSER_RESULT (parser)->labels.function_symbols;
2789
2790 linespec_state_destructor (PARSER_STATE (parser));
2791 }
2792
2793 /* See description in linespec.h. */
2794
2795 void
2796 linespec_lex_to_end (const char **stringp)
2797 {
2798 linespec_parser parser;
2799 struct cleanup *cleanup;
2800 linespec_token token;
2801 const char *orig;
2802
2803 if (stringp == NULL || *stringp == NULL)
2804 return;
2805
2806 linespec_parser_new (&parser, 0, current_language, NULL, NULL, 0, NULL);
2807 cleanup = make_cleanup (linespec_parser_delete, &parser);
2808 parser.lexer.saved_arg = *stringp;
2809 PARSER_STREAM (&parser) = orig = *stringp;
2810
2811 do
2812 {
2813 /* Stop before any comma tokens; we need it to keep it
2814 as the next token in the string. */
2815 token = linespec_lexer_peek_token (&parser);
2816 if (token.type == LSTOKEN_COMMA)
2817 break;
2818 token = linespec_lexer_consume_token (&parser);
2819 }
2820 while (token.type != LSTOKEN_EOI && token.type != LSTOKEN_KEYWORD);
2821
2822 *stringp += PARSER_STREAM (&parser) - orig;
2823 do_cleanups (cleanup);
2824 }
2825
2826 /* See linespec.h. */
2827
2828 void
2829 linespec_complete_function (completion_tracker &tracker,
2830 const char *function,
2831 symbol_name_match_type func_match_type,
2832 const char *source_filename)
2833 {
2834 complete_symbol_mode mode = complete_symbol_mode::LINESPEC;
2835
2836 if (source_filename != NULL)
2837 {
2838 collect_file_symbol_completion_matches (tracker, mode, func_match_type,
2839 function, function, source_filename);
2840 }
2841 else
2842 {
2843 collect_symbol_completion_matches (tracker, mode, func_match_type,
2844 function, function);
2845
2846 }
2847 }
2848
2849 /* Helper for complete_linespec to simplify it. SOURCE_FILENAME is
2850 only meaningful if COMPONENT is FUNCTION. */
2851
2852 static void
2853 complete_linespec_component (linespec_parser *parser,
2854 completion_tracker &tracker,
2855 const char *text,
2856 linespec_complete_what component,
2857 const char *source_filename)
2858 {
2859 if (component == linespec_complete_what::KEYWORD)
2860 {
2861 complete_on_enum (tracker, linespec_keywords, text, text);
2862 }
2863 else if (component == linespec_complete_what::EXPRESSION)
2864 {
2865 const char *word
2866 = advance_to_expression_complete_word_point (tracker, text);
2867 complete_expression (tracker, text, word);
2868 }
2869 else if (component == linespec_complete_what::FUNCTION)
2870 {
2871 completion_list fn_list;
2872
2873 symbol_name_match_type match_type
2874 = PARSER_EXPLICIT (parser)->func_name_match_type;
2875 linespec_complete_function (tracker, text, match_type, source_filename);
2876 if (source_filename == NULL)
2877 {
2878 /* Haven't seen a source component, like in "b
2879 file.c:function[TAB]". Maybe this wasn't a function, but
2880 a filename instead, like "b file.[TAB]". */
2881 fn_list = complete_source_filenames (text);
2882 }
2883
2884 /* If we only have a single filename completion, append a ':' for
2885 the user, since that's the only thing that can usefully follow
2886 the filename. */
2887 if (fn_list.size () == 1 && !tracker.have_completions ())
2888 {
2889 char *fn = fn_list[0].release ();
2890
2891 /* If we also need to append a quote char, it needs to be
2892 appended before the ':'. Append it now, and make ':' the
2893 new "quote" char. */
2894 if (tracker.quote_char ())
2895 {
2896 char quote_char_str[2] = { (char) tracker.quote_char () };
2897
2898 fn = reconcat (fn, fn, quote_char_str, (char *) NULL);
2899 tracker.set_quote_char (':');
2900 }
2901 else
2902 fn = reconcat (fn, fn, ":", (char *) NULL);
2903 fn_list[0].reset (fn);
2904
2905 /* Tell readline to skip appending a space. */
2906 tracker.set_suppress_append_ws (true);
2907 }
2908 tracker.add_completions (std::move (fn_list));
2909 }
2910 }
2911
2912 /* Helper for linespec_complete_label. Find labels that match
2913 LABEL_NAME in the function symbols listed in the PARSER, and add
2914 them to the tracker. */
2915
2916 static void
2917 complete_label (completion_tracker &tracker,
2918 linespec_parser *parser,
2919 const char *label_name)
2920 {
2921 std::vector<block_symbol> label_function_symbols;
2922 std::vector<block_symbol> *labels
2923 = find_label_symbols (PARSER_STATE (parser),
2924 PARSER_RESULT (parser)->function_symbols,
2925 &label_function_symbols,
2926 label_name, true);
2927
2928 if (labels != nullptr)
2929 {
2930 for (const auto &label : *labels)
2931 {
2932 char *match = xstrdup (SYMBOL_SEARCH_NAME (label.symbol));
2933 tracker.add_completion (gdb::unique_xmalloc_ptr<char> (match));
2934 }
2935 delete labels;
2936 }
2937 }
2938
2939 /* See linespec.h. */
2940
2941 void
2942 linespec_complete_label (completion_tracker &tracker,
2943 const struct language_defn *language,
2944 const char *source_filename,
2945 const char *function_name,
2946 symbol_name_match_type func_name_match_type,
2947 const char *label_name)
2948 {
2949 linespec_parser parser;
2950 struct cleanup *cleanup;
2951
2952 linespec_parser_new (&parser, 0, language, NULL, NULL, 0, NULL);
2953 cleanup = make_cleanup (linespec_parser_delete, &parser);
2954
2955 line_offset unknown_offset = { 0, LINE_OFFSET_UNKNOWN };
2956
2957 TRY
2958 {
2959 convert_explicit_location_to_linespec (PARSER_STATE (&parser),
2960 PARSER_RESULT (&parser),
2961 source_filename,
2962 function_name,
2963 func_name_match_type,
2964 NULL, unknown_offset);
2965 }
2966 CATCH (ex, RETURN_MASK_ERROR)
2967 {
2968 do_cleanups (cleanup);
2969 return;
2970 }
2971 END_CATCH
2972
2973 complete_label (tracker, &parser, label_name);
2974
2975 do_cleanups (cleanup);
2976 }
2977
2978 /* See description in linespec.h. */
2979
2980 void
2981 linespec_complete (completion_tracker &tracker, const char *text,
2982 symbol_name_match_type match_type)
2983 {
2984 linespec_parser parser;
2985 struct cleanup *cleanup;
2986 const char *orig = text;
2987
2988 linespec_parser_new (&parser, 0, current_language, NULL, NULL, 0, NULL);
2989 cleanup = make_cleanup (linespec_parser_delete, &parser);
2990 parser.lexer.saved_arg = text;
2991 PARSER_EXPLICIT (&parser)->func_name_match_type = match_type;
2992 PARSER_STREAM (&parser) = text;
2993
2994 parser.completion_tracker = &tracker;
2995 PARSER_STATE (&parser)->is_linespec = 1;
2996
2997 /* Parse as much as possible. parser.completion_word will hold
2998 furthest completion point we managed to parse to. */
2999 TRY
3000 {
3001 parse_linespec (&parser, text, match_type);
3002 }
3003 CATCH (except, RETURN_MASK_ERROR)
3004 {
3005 }
3006 END_CATCH
3007
3008 if (parser.completion_quote_char != '\0'
3009 && parser.completion_quote_end != NULL
3010 && parser.completion_quote_end[1] == '\0')
3011 {
3012 /* If completing a quoted string with the cursor right at
3013 terminating quote char, complete the completion word without
3014 interpretation, so that readline advances the cursor one
3015 whitespace past the quote, even if there's no match. This
3016 makes these cases behave the same:
3017
3018 before: "b function()"
3019 after: "b function() "
3020
3021 before: "b 'function()'"
3022 after: "b 'function()' "
3023
3024 and trusts the user in this case:
3025
3026 before: "b 'not_loaded_function_yet()'"
3027 after: "b 'not_loaded_function_yet()' "
3028 */
3029 parser.complete_what = linespec_complete_what::NOTHING;
3030 parser.completion_quote_char = '\0';
3031
3032 gdb::unique_xmalloc_ptr<char> text_copy
3033 (xstrdup (parser.completion_word));
3034 tracker.add_completion (std::move (text_copy));
3035 }
3036
3037 tracker.set_quote_char (parser.completion_quote_char);
3038
3039 if (parser.complete_what == linespec_complete_what::LABEL)
3040 {
3041 parser.complete_what = linespec_complete_what::NOTHING;
3042
3043 const char *func_name = PARSER_EXPLICIT (&parser)->function_name;
3044
3045 std::vector<block_symbol> function_symbols;
3046 std::vector<bound_minimal_symbol> minimal_symbols;
3047 find_linespec_symbols (PARSER_STATE (&parser),
3048 PARSER_RESULT (&parser)->file_symtabs,
3049 func_name, match_type,
3050 &function_symbols, &minimal_symbols);
3051
3052 PARSER_RESULT (&parser)->function_symbols
3053 = new std::vector<block_symbol> (std::move (function_symbols));
3054 PARSER_RESULT (&parser)->minimal_symbols
3055 = new std::vector<bound_minimal_symbol> (std::move (minimal_symbols));
3056
3057 complete_label (tracker, &parser, parser.completion_word);
3058 }
3059 else if (parser.complete_what == linespec_complete_what::FUNCTION)
3060 {
3061 /* While parsing/lexing, we didn't know whether the completion
3062 word completes to a unique function/source name already or
3063 not.
3064
3065 E.g.:
3066 "b function() <tab>"
3067 may need to complete either to:
3068 "b function() const"
3069 or to:
3070 "b function() if/thread/task"
3071
3072 Or, this:
3073 "b foo t"
3074 may need to complete either to:
3075 "b foo template_fun<T>()"
3076 with "foo" being the template function's return type, or to:
3077 "b foo thread/task"
3078
3079 Or, this:
3080 "b file<TAB>"
3081 may need to complete either to a source file name:
3082 "b file.c"
3083 or this, also a filename, but a unique completion:
3084 "b file.c:"
3085 or to a function name:
3086 "b file_function"
3087
3088 Address that by completing assuming source or function, and
3089 seeing if we find a completion that matches exactly the
3090 completion word. If so, then it must be a function (see note
3091 below) and we advance the completion word to the end of input
3092 and switch to KEYWORD completion mode.
3093
3094 Note: if we find a unique completion for a source filename,
3095 then it won't match the completion word, because the LCD will
3096 contain a trailing ':'. And if we're completing at or after
3097 the ':', then complete_linespec_component won't try to
3098 complete on source filenames. */
3099
3100 const char *word = parser.completion_word;
3101
3102 complete_linespec_component (&parser, tracker,
3103 parser.completion_word,
3104 linespec_complete_what::FUNCTION,
3105 PARSER_EXPLICIT (&parser)->source_filename);
3106
3107 parser.complete_what = linespec_complete_what::NOTHING;
3108
3109 if (tracker.quote_char ())
3110 {
3111 /* The function/file name was not close-quoted, so this
3112 can't be a keyword. Note: complete_linespec_component
3113 may have swapped the original quote char for ':' when we
3114 get here, but that still indicates the same. */
3115 }
3116 else if (!tracker.have_completions ())
3117 {
3118 size_t key_start;
3119 size_t wordlen = strlen (parser.completion_word);
3120
3121 key_start
3122 = string_find_incomplete_keyword_at_end (linespec_keywords,
3123 parser.completion_word,
3124 wordlen);
3125
3126 if (key_start != -1
3127 || (wordlen > 0
3128 && parser.completion_word[wordlen - 1] == ' '))
3129 {
3130 parser.completion_word += key_start;
3131 parser.complete_what = linespec_complete_what::KEYWORD;
3132 }
3133 }
3134 else if (tracker.completes_to_completion_word (word))
3135 {
3136 /* Skip the function and complete on keywords. */
3137 parser.completion_word += strlen (word);
3138 parser.complete_what = linespec_complete_what::KEYWORD;
3139 tracker.discard_completions ();
3140 }
3141 }
3142
3143 tracker.advance_custom_word_point_by (parser.completion_word - orig);
3144
3145 complete_linespec_component (&parser, tracker,
3146 parser.completion_word,
3147 parser.complete_what,
3148 PARSER_EXPLICIT (&parser)->source_filename);
3149
3150 /* If we're past the "filename:function:label:offset" linespec, and
3151 didn't find any match, then assume the user might want to create
3152 a pending breakpoint anyway and offer the keyword
3153 completions. */
3154 if (!parser.completion_quote_char
3155 && (parser.complete_what == linespec_complete_what::FUNCTION
3156 || parser.complete_what == linespec_complete_what::LABEL
3157 || parser.complete_what == linespec_complete_what::NOTHING)
3158 && !tracker.have_completions ())
3159 {
3160 const char *end
3161 = parser.completion_word + strlen (parser.completion_word);
3162
3163 if (end > orig && end[-1] == ' ')
3164 {
3165 tracker.advance_custom_word_point_by (end - parser.completion_word);
3166
3167 complete_linespec_component (&parser, tracker, end,
3168 linespec_complete_what::KEYWORD,
3169 NULL);
3170 }
3171 }
3172
3173 do_cleanups (cleanup);
3174 }
3175
3176 /* A helper function for decode_line_full and decode_line_1 to
3177 turn LOCATION into std::vector<symtab_and_line>. */
3178
3179 static std::vector<symtab_and_line>
3180 event_location_to_sals (linespec_parser *parser,
3181 const struct event_location *location)
3182 {
3183 std::vector<symtab_and_line> result;
3184
3185 switch (event_location_type (location))
3186 {
3187 case LINESPEC_LOCATION:
3188 {
3189 PARSER_STATE (parser)->is_linespec = 1;
3190 TRY
3191 {
3192 const linespec_location *ls = get_linespec_location (location);
3193 result = parse_linespec (parser,
3194 ls->spec_string, ls->match_type);
3195 }
3196 CATCH (except, RETURN_MASK_ERROR)
3197 {
3198 throw_exception (except);
3199 }
3200 END_CATCH
3201 }
3202 break;
3203
3204 case ADDRESS_LOCATION:
3205 {
3206 const char *addr_string = get_address_string_location (location);
3207 CORE_ADDR addr = get_address_location (location);
3208
3209 if (addr_string != NULL)
3210 {
3211 addr = linespec_expression_to_pc (&addr_string);
3212 if (PARSER_STATE (parser)->canonical != NULL)
3213 PARSER_STATE (parser)->canonical->location
3214 = copy_event_location (location);
3215 }
3216
3217 result = convert_address_location_to_sals (PARSER_STATE (parser),
3218 addr);
3219 }
3220 break;
3221
3222 case EXPLICIT_LOCATION:
3223 {
3224 const struct explicit_location *explicit_loc;
3225
3226 explicit_loc = get_explicit_location_const (location);
3227 result = convert_explicit_location_to_sals (PARSER_STATE (parser),
3228 PARSER_RESULT (parser),
3229 explicit_loc);
3230 }
3231 break;
3232
3233 case PROBE_LOCATION:
3234 /* Probes are handled by their own decoders. */
3235 gdb_assert_not_reached ("attempt to decode probe location");
3236 break;
3237
3238 default:
3239 gdb_assert_not_reached ("unhandled event location type");
3240 }
3241
3242 return result;
3243 }
3244
3245 /* See linespec.h. */
3246
3247 void
3248 decode_line_full (const struct event_location *location, int flags,
3249 struct program_space *search_pspace,
3250 struct symtab *default_symtab,
3251 int default_line, struct linespec_result *canonical,
3252 const char *select_mode,
3253 const char *filter)
3254 {
3255 struct cleanup *cleanups;
3256 std::vector<const char *> filters;
3257 linespec_parser parser;
3258 struct linespec_state *state;
3259
3260 gdb_assert (canonical != NULL);
3261 /* The filter only makes sense for 'all'. */
3262 gdb_assert (filter == NULL || select_mode == multiple_symbols_all);
3263 gdb_assert (select_mode == NULL
3264 || select_mode == multiple_symbols_all
3265 || select_mode == multiple_symbols_ask
3266 || select_mode == multiple_symbols_cancel);
3267 gdb_assert ((flags & DECODE_LINE_LIST_MODE) == 0);
3268
3269 linespec_parser_new (&parser, flags, current_language,
3270 search_pspace, default_symtab,
3271 default_line, canonical);
3272 cleanups = make_cleanup (linespec_parser_delete, &parser);
3273
3274 scoped_restore_current_program_space restore_pspace;
3275
3276 std::vector<symtab_and_line> result = event_location_to_sals (&parser,
3277 location);
3278 state = PARSER_STATE (&parser);
3279
3280 gdb_assert (result.size () == 1 || canonical->pre_expanded);
3281 canonical->pre_expanded = 1;
3282
3283 /* Arrange for allocated canonical names to be freed. */
3284 if (!result.empty ())
3285 {
3286 int i;
3287
3288 make_cleanup (xfree, state->canonical_names);
3289 for (i = 0; i < result.size (); ++i)
3290 {
3291 gdb_assert (state->canonical_names[i].suffix != NULL);
3292 make_cleanup (xfree, state->canonical_names[i].suffix);
3293 }
3294 }
3295
3296 if (select_mode == NULL)
3297 {
3298 if (top_level_interpreter ()->interp_ui_out ()->is_mi_like_p ())
3299 select_mode = multiple_symbols_all;
3300 else
3301 select_mode = multiple_symbols_select_mode ();
3302 }
3303
3304 if (select_mode == multiple_symbols_all)
3305 {
3306 if (filter != NULL)
3307 {
3308 filters.push_back (filter);
3309 filter_results (state, &result, filters);
3310 }
3311 else
3312 convert_results_to_lsals (state, &result);
3313 }
3314 else
3315 decode_line_2 (state, &result, select_mode);
3316
3317 do_cleanups (cleanups);
3318 }
3319
3320 /* See linespec.h. */
3321
3322 std::vector<symtab_and_line>
3323 decode_line_1 (const struct event_location *location, int flags,
3324 struct program_space *search_pspace,
3325 struct symtab *default_symtab,
3326 int default_line)
3327 {
3328 linespec_parser parser;
3329 struct cleanup *cleanups;
3330
3331 linespec_parser_new (&parser, flags, current_language,
3332 search_pspace, default_symtab,
3333 default_line, NULL);
3334 cleanups = make_cleanup (linespec_parser_delete, &parser);
3335
3336 scoped_restore_current_program_space restore_pspace;
3337
3338 std::vector<symtab_and_line> result = event_location_to_sals (&parser,
3339 location);
3340
3341 do_cleanups (cleanups);
3342 return result;
3343 }
3344
3345 /* See linespec.h. */
3346
3347 std::vector<symtab_and_line>
3348 decode_line_with_current_source (const char *string, int flags)
3349 {
3350 if (string == 0)
3351 error (_("Empty line specification."));
3352
3353 /* We use whatever is set as the current source line. We do not try
3354 and get a default source symtab+line or it will recursively call us! */
3355 symtab_and_line cursal = get_current_source_symtab_and_line ();
3356
3357 event_location_up location = string_to_event_location (&string,
3358 current_language);
3359 std::vector<symtab_and_line> sals
3360 = decode_line_1 (location.get (), flags, NULL, cursal.symtab, cursal.line);
3361
3362 if (*string)
3363 error (_("Junk at end of line specification: %s"), string);
3364
3365 return sals;
3366 }
3367
3368 /* See linespec.h. */
3369
3370 std::vector<symtab_and_line>
3371 decode_line_with_last_displayed (const char *string, int flags)
3372 {
3373 if (string == 0)
3374 error (_("Empty line specification."));
3375
3376 event_location_up location = string_to_event_location (&string,
3377 current_language);
3378 std::vector<symtab_and_line> sals
3379 = (last_displayed_sal_is_valid ()
3380 ? decode_line_1 (location.get (), flags, NULL,
3381 get_last_displayed_symtab (),
3382 get_last_displayed_line ())
3383 : decode_line_1 (location.get (), flags, NULL,
3384 (struct symtab *) NULL, 0));
3385
3386 if (*string)
3387 error (_("Junk at end of line specification: %s"), string);
3388
3389 return sals;
3390 }
3391
3392 \f
3393
3394 /* First, some functions to initialize stuff at the beggining of the
3395 function. */
3396
3397 static void
3398 initialize_defaults (struct symtab **default_symtab, int *default_line)
3399 {
3400 if (*default_symtab == 0)
3401 {
3402 /* Use whatever we have for the default source line. We don't use
3403 get_current_or_default_symtab_and_line as it can recurse and call
3404 us back! */
3405 struct symtab_and_line cursal =
3406 get_current_source_symtab_and_line ();
3407
3408 *default_symtab = cursal.symtab;
3409 *default_line = cursal.line;
3410 }
3411 }
3412
3413 \f
3414
3415 /* Evaluate the expression pointed to by EXP_PTR into a CORE_ADDR,
3416 advancing EXP_PTR past any parsed text. */
3417
3418 CORE_ADDR
3419 linespec_expression_to_pc (const char **exp_ptr)
3420 {
3421 if (current_program_space->executing_startup)
3422 /* The error message doesn't really matter, because this case
3423 should only hit during breakpoint reset. */
3424 throw_error (NOT_FOUND_ERROR, _("cannot evaluate expressions while "
3425 "program space is in startup"));
3426
3427 (*exp_ptr)++;
3428 return value_as_address (parse_to_comma_and_eval (exp_ptr));
3429 }
3430
3431 \f
3432
3433 /* Here's where we recognise an Objective-C Selector. An Objective C
3434 selector may be implemented by more than one class, therefore it
3435 may represent more than one method/function. This gives us a
3436 situation somewhat analogous to C++ overloading. If there's more
3437 than one method that could represent the selector, then use some of
3438 the existing C++ code to let the user choose one. */
3439
3440 static std::vector<symtab_and_line>
3441 decode_objc (struct linespec_state *self, linespec_p ls, const char *arg)
3442 {
3443 struct collect_info info;
3444 std::vector<const char *> symbol_names;
3445 const char *new_argptr;
3446
3447 info.state = self;
3448 std::vector<symtab *> symtabs;
3449 symtabs.push_back (nullptr);
3450
3451 info.file_symtabs = &symtabs;
3452
3453 std::vector<block_symbol> symbols;
3454 info.result.symbols = &symbols;
3455 std::vector<bound_minimal_symbol> minimal_symbols;
3456 info.result.minimal_symbols = &minimal_symbols;
3457
3458 new_argptr = find_imps (arg, &symbol_names);
3459 if (symbol_names.empty ())
3460 return {};
3461
3462 add_all_symbol_names_from_pspace (&info, NULL, symbol_names,
3463 FUNCTIONS_DOMAIN);
3464
3465 std::vector<symtab_and_line> values;
3466 if (!symbols.empty () || !minimal_symbols.empty ())
3467 {
3468 char *saved_arg;
3469
3470 saved_arg = (char *) alloca (new_argptr - arg + 1);
3471 memcpy (saved_arg, arg, new_argptr - arg);
3472 saved_arg[new_argptr - arg] = '\0';
3473
3474 ls->explicit_loc.function_name = xstrdup (saved_arg);
3475 ls->function_symbols
3476 = new std::vector<block_symbol> (std::move (symbols));
3477 ls->minimal_symbols
3478 = new std::vector<bound_minimal_symbol> (std::move (minimal_symbols));
3479 values = convert_linespec_to_sals (self, ls);
3480
3481 if (self->canonical)
3482 {
3483 std::string holder;
3484 const char *str;
3485
3486 self->canonical->pre_expanded = 1;
3487
3488 if (ls->explicit_loc.source_filename)
3489 {
3490 holder = string_printf ("%s:%s",
3491 ls->explicit_loc.source_filename,
3492 saved_arg);
3493 str = holder.c_str ();
3494 }
3495 else
3496 str = saved_arg;
3497
3498 self->canonical->location
3499 = new_linespec_location (&str, symbol_name_match_type::FULL);
3500 }
3501 }
3502
3503 return values;
3504 }
3505
3506 namespace {
3507
3508 /* A function object that serves as symbol_found_callback_ftype
3509 callback for iterate_over_symbols. This is used by
3510 lookup_prefix_sym to collect type symbols. */
3511 class decode_compound_collector
3512 {
3513 public:
3514 decode_compound_collector ()
3515 {
3516 m_unique_syms = htab_create_alloc (1, htab_hash_pointer,
3517 htab_eq_pointer, NULL,
3518 xcalloc, xfree);
3519 }
3520
3521 ~decode_compound_collector ()
3522 {
3523 if (m_unique_syms != NULL)
3524 htab_delete (m_unique_syms);
3525 }
3526
3527 /* Return all symbols collected. */
3528 std::vector<block_symbol> release_symbols ()
3529 {
3530 return std::move (m_symbols);
3531 }
3532
3533 /* Callable as a symbol_found_callback_ftype callback. */
3534 bool operator () (block_symbol *bsym);
3535
3536 private:
3537 /* A hash table of all symbols we found. We use this to avoid
3538 adding any symbol more than once. */
3539 htab_t m_unique_syms;
3540
3541 /* The result vector. */
3542 std::vector<block_symbol> m_symbols;
3543 };
3544
3545 bool
3546 decode_compound_collector::operator () (block_symbol *bsym)
3547 {
3548 void **slot;
3549 struct type *t;
3550 struct symbol *sym = bsym->symbol;
3551
3552 if (SYMBOL_CLASS (sym) != LOC_TYPEDEF)
3553 return true; /* Continue iterating. */
3554
3555 t = SYMBOL_TYPE (sym);
3556 t = check_typedef (t);
3557 if (TYPE_CODE (t) != TYPE_CODE_STRUCT
3558 && TYPE_CODE (t) != TYPE_CODE_UNION
3559 && TYPE_CODE (t) != TYPE_CODE_NAMESPACE)
3560 return true; /* Continue iterating. */
3561
3562 slot = htab_find_slot (m_unique_syms, sym, INSERT);
3563 if (!*slot)
3564 {
3565 *slot = sym;
3566 m_symbols.push_back (*bsym);
3567 }
3568
3569 return true; /* Continue iterating. */
3570 }
3571
3572 } // namespace
3573
3574 /* Return any symbols corresponding to CLASS_NAME in FILE_SYMTABS. */
3575
3576 static std::vector<block_symbol>
3577 lookup_prefix_sym (struct linespec_state *state,
3578 std::vector<symtab *> *file_symtabs,
3579 const char *class_name)
3580 {
3581 decode_compound_collector collector;
3582
3583 lookup_name_info lookup_name (class_name, symbol_name_match_type::FULL);
3584
3585 for (const auto &elt : *file_symtabs)
3586 {
3587 if (elt == nullptr)
3588 {
3589 iterate_over_all_matching_symtabs (state, lookup_name,
3590 STRUCT_DOMAIN, ALL_DOMAIN,
3591 NULL, false, collector);
3592 iterate_over_all_matching_symtabs (state, lookup_name,
3593 VAR_DOMAIN, ALL_DOMAIN,
3594 NULL, false, collector);
3595 }
3596 else
3597 {
3598 /* Program spaces that are executing startup should have
3599 been filtered out earlier. */
3600 gdb_assert (!SYMTAB_PSPACE (elt)->executing_startup);
3601 set_current_program_space (SYMTAB_PSPACE (elt));
3602 iterate_over_file_blocks (elt, lookup_name, STRUCT_DOMAIN, collector);
3603 iterate_over_file_blocks (elt, lookup_name, VAR_DOMAIN, collector);
3604 }
3605 }
3606
3607 return collector.release_symbols ();
3608 }
3609
3610 /* A std::sort comparison function for symbols. The resulting order does
3611 not actually matter; we just need to be able to sort them so that
3612 symbols with the same program space end up next to each other. */
3613
3614 static bool
3615 compare_symbols (const block_symbol &a, const block_symbol &b)
3616 {
3617 uintptr_t uia, uib;
3618
3619 uia = (uintptr_t) SYMTAB_PSPACE (symbol_symtab (a.symbol));
3620 uib = (uintptr_t) SYMTAB_PSPACE (symbol_symtab (b.symbol));
3621
3622 if (uia < uib)
3623 return true;
3624 if (uia > uib)
3625 return false;
3626
3627 uia = (uintptr_t) a.symbol;
3628 uib = (uintptr_t) b.symbol;
3629
3630 if (uia < uib)
3631 return true;
3632
3633 return false;
3634 }
3635
3636 /* Like compare_symbols but for minimal symbols. */
3637
3638 static bool
3639 compare_msymbols (const bound_minimal_symbol &a, const bound_minimal_symbol &b)
3640 {
3641 uintptr_t uia, uib;
3642
3643 uia = (uintptr_t) a.objfile->pspace;
3644 uib = (uintptr_t) a.objfile->pspace;
3645
3646 if (uia < uib)
3647 return true;
3648 if (uia > uib)
3649 return false;
3650
3651 uia = (uintptr_t) a.minsym;
3652 uib = (uintptr_t) b.minsym;
3653
3654 if (uia < uib)
3655 return true;
3656
3657 return false;
3658 }
3659
3660 /* Look for all the matching instances of each symbol in NAMES. Only
3661 instances from PSPACE are considered; other program spaces are
3662 handled by our caller. If PSPACE is NULL, then all program spaces
3663 are considered. Results are stored into INFO. */
3664
3665 static void
3666 add_all_symbol_names_from_pspace (struct collect_info *info,
3667 struct program_space *pspace,
3668 const std::vector<const char *> &names,
3669 enum search_domain search_domain)
3670 {
3671 for (const char *iter : names)
3672 add_matching_symbols_to_info (iter,
3673 symbol_name_match_type::FULL,
3674 search_domain, info, pspace);
3675 }
3676
3677 static void
3678 find_superclass_methods (std::vector<struct type *> &&superclasses,
3679 const char *name, enum language name_lang,
3680 std::vector<const char *> *result_names)
3681 {
3682 size_t old_len = result_names->size ();
3683
3684 while (1)
3685 {
3686 std::vector<struct type *> new_supers;
3687
3688 for (type *t : superclasses)
3689 find_methods (t, name_lang, name, result_names, &new_supers);
3690
3691 if (result_names->size () != old_len || new_supers.empty ())
3692 break;
3693
3694 superclasses = std::move (new_supers);
3695 }
3696 }
3697
3698 /* This finds the method METHOD_NAME in the class CLASS_NAME whose type is
3699 given by one of the symbols in SYM_CLASSES. Matches are returned
3700 in SYMBOLS (for debug symbols) and MINSYMS (for minimal symbols). */
3701
3702 static void
3703 find_method (struct linespec_state *self, std::vector<symtab *> *file_symtabs,
3704 const char *class_name, const char *method_name,
3705 std::vector<block_symbol> *sym_classes,
3706 std::vector<block_symbol> *symbols,
3707 std::vector<bound_minimal_symbol> *minsyms)
3708 {
3709 size_t last_result_len;
3710 std::vector<struct type *> superclass_vec;
3711 std::vector<const char *> result_names;
3712 struct collect_info info;
3713
3714 /* Sort symbols so that symbols with the same program space are next
3715 to each other. */
3716 std::sort (sym_classes->begin (), sym_classes->end (),
3717 compare_symbols);
3718
3719 info.state = self;
3720 info.file_symtabs = file_symtabs;
3721 info.result.symbols = symbols;
3722 info.result.minimal_symbols = minsyms;
3723
3724 /* Iterate over all the types, looking for the names of existing
3725 methods matching METHOD_NAME. If we cannot find a direct method in a
3726 given program space, then we consider inherited methods; this is
3727 not ideal (ideal would be to respect C++ hiding rules), but it
3728 seems good enough and is what GDB has historically done. We only
3729 need to collect the names because later we find all symbols with
3730 those names. This loop is written in a somewhat funny way
3731 because we collect data across the program space before deciding
3732 what to do. */
3733 last_result_len = 0;
3734 unsigned int ix = 0;
3735 for (const auto &elt : *sym_classes)
3736 {
3737 struct type *t;
3738 struct program_space *pspace;
3739 struct symbol *sym = elt.symbol;
3740
3741 /* Program spaces that are executing startup should have
3742 been filtered out earlier. */
3743 pspace = SYMTAB_PSPACE (symbol_symtab (sym));
3744 gdb_assert (!pspace->executing_startup);
3745 set_current_program_space (pspace);
3746 t = check_typedef (SYMBOL_TYPE (sym));
3747 find_methods (t, SYMBOL_LANGUAGE (sym),
3748 method_name, &result_names, &superclass_vec);
3749
3750 /* Handle all items from a single program space at once; and be
3751 sure not to miss the last batch. */
3752 if (ix == sym_classes->size () - 1
3753 || (pspace
3754 != SYMTAB_PSPACE (symbol_symtab (sym_classes->at (ix + 1).symbol))))
3755 {
3756 /* If we did not find a direct implementation anywhere in
3757 this program space, consider superclasses. */
3758 if (result_names.size () == last_result_len)
3759 find_superclass_methods (std::move (superclass_vec), method_name,
3760 SYMBOL_LANGUAGE (sym), &result_names);
3761
3762 /* We have a list of candidate symbol names, so now we
3763 iterate over the symbol tables looking for all
3764 matches in this pspace. */
3765 add_all_symbol_names_from_pspace (&info, pspace, result_names,
3766 FUNCTIONS_DOMAIN);
3767
3768 superclass_vec.clear ();
3769 last_result_len = result_names.size ();
3770 ++ix;
3771 }
3772 }
3773
3774 if (!symbols->empty () || !minsyms->empty ())
3775 return;
3776
3777 /* Throw an NOT_FOUND_ERROR. This will be caught by the caller
3778 and other attempts to locate the symbol will be made. */
3779 throw_error (NOT_FOUND_ERROR, _("see caller, this text doesn't matter"));
3780 }
3781
3782 \f
3783
3784 namespace {
3785
3786 /* This function object is a callback for iterate_over_symtabs, used
3787 when collecting all matching symtabs. */
3788
3789 class symtab_collector
3790 {
3791 public:
3792 symtab_collector ()
3793 : m_symtabs (new std::vector<symtab *> ())
3794 {
3795 m_symtab_table = htab_create (1, htab_hash_pointer, htab_eq_pointer,
3796 NULL);
3797 }
3798
3799 ~symtab_collector ()
3800 {
3801 if (m_symtab_table != NULL)
3802 htab_delete (m_symtab_table);
3803 }
3804
3805 /* Callable as a symbol_found_callback_ftype callback. */
3806 bool operator () (symtab *sym);
3807
3808 /* Releases ownership of the collected symtabs and returns them. */
3809 symtab_vector_up release_symtabs ()
3810 {
3811 return std::move (m_symtabs);
3812 }
3813
3814 private:
3815 /* The result vector of symtabs. */
3816 symtab_vector_up m_symtabs;
3817
3818 /* This is used to ensure the symtabs are unique. */
3819 htab_t m_symtab_table;
3820 };
3821
3822 bool
3823 symtab_collector::operator () (struct symtab *symtab)
3824 {
3825 void **slot;
3826
3827 slot = htab_find_slot (m_symtab_table, symtab, INSERT);
3828 if (!*slot)
3829 {
3830 *slot = symtab;
3831 m_symtabs->push_back (symtab);
3832 }
3833
3834 return false;
3835 }
3836
3837 } // namespace
3838
3839 /* Given a file name, return a list of all matching symtabs. If
3840 SEARCH_PSPACE is not NULL, the search is restricted to just that
3841 program space. */
3842
3843 static symtab_vector_up
3844 collect_symtabs_from_filename (const char *file,
3845 struct program_space *search_pspace)
3846 {
3847 symtab_collector collector;
3848
3849 /* Find that file's data. */
3850 if (search_pspace == NULL)
3851 {
3852 struct program_space *pspace;
3853
3854 ALL_PSPACES (pspace)
3855 {
3856 if (pspace->executing_startup)
3857 continue;
3858
3859 set_current_program_space (pspace);
3860 iterate_over_symtabs (file, collector);
3861 }
3862 }
3863 else
3864 {
3865 set_current_program_space (search_pspace);
3866 iterate_over_symtabs (file, collector);
3867 }
3868
3869 return collector.release_symtabs ();
3870 }
3871
3872 /* Return all the symtabs associated to the FILENAME. If SEARCH_PSPACE is
3873 not NULL, the search is restricted to just that program space. */
3874
3875 static symtab_vector_up
3876 symtabs_from_filename (const char *filename,
3877 struct program_space *search_pspace)
3878 {
3879 symtab_vector_up result
3880 = collect_symtabs_from_filename (filename, search_pspace);
3881
3882 if (result->empty ())
3883 {
3884 if (!have_full_symbols () && !have_partial_symbols ())
3885 throw_error (NOT_FOUND_ERROR,
3886 _("No symbol table is loaded. "
3887 "Use the \"file\" command."));
3888 source_file_not_found_error (filename);
3889 }
3890
3891 return result;
3892 }
3893
3894 /* See symtab.h. */
3895
3896 void
3897 symbol_searcher::find_all_symbols (const std::string &name,
3898 const struct language_defn *language,
3899 enum search_domain search_domain,
3900 std::vector<symtab *> *search_symtabs,
3901 struct program_space *search_pspace)
3902 {
3903 symbol_searcher_collect_info info;
3904 struct linespec_state state;
3905
3906 memset (&state, 0, sizeof (state));
3907 state.language = language;
3908 info.state = &state;
3909
3910 info.result.symbols = &m_symbols;
3911 info.result.minimal_symbols = &m_minimal_symbols;
3912 std::vector<symtab *> all_symtabs;
3913 if (search_symtabs == nullptr)
3914 {
3915 all_symtabs.push_back (nullptr);
3916 search_symtabs = &all_symtabs;
3917 }
3918 info.file_symtabs = search_symtabs;
3919
3920 add_matching_symbols_to_info (name.c_str (), symbol_name_match_type::WILD,
3921 search_domain, &info, search_pspace);
3922 }
3923
3924 /* Look up a function symbol named NAME in symtabs FILE_SYMTABS. Matching
3925 debug symbols are returned in SYMBOLS. Matching minimal symbols are
3926 returned in MINSYMS. */
3927
3928 static void
3929 find_function_symbols (struct linespec_state *state,
3930 std::vector<symtab *> *file_symtabs, const char *name,
3931 symbol_name_match_type name_match_type,
3932 std::vector<block_symbol> *symbols,
3933 std::vector<bound_minimal_symbol> *minsyms)
3934 {
3935 struct collect_info info;
3936 std::vector<const char *> symbol_names;
3937
3938 info.state = state;
3939 info.result.symbols = symbols;
3940 info.result.minimal_symbols = minsyms;
3941 info.file_symtabs = file_symtabs;
3942
3943 /* Try NAME as an Objective-C selector. */
3944 find_imps (name, &symbol_names);
3945 if (!symbol_names.empty ())
3946 add_all_symbol_names_from_pspace (&info, state->search_pspace,
3947 symbol_names, FUNCTIONS_DOMAIN);
3948 else
3949 add_matching_symbols_to_info (name, name_match_type, FUNCTIONS_DOMAIN,
3950 &info, state->search_pspace);
3951 }
3952
3953 /* Find all symbols named NAME in FILE_SYMTABS, returning debug symbols
3954 in SYMBOLS and minimal symbols in MINSYMS. */
3955
3956 static void
3957 find_linespec_symbols (struct linespec_state *state,
3958 std::vector<symtab *> *file_symtabs,
3959 const char *lookup_name,
3960 symbol_name_match_type name_match_type,
3961 std::vector <block_symbol> *symbols,
3962 std::vector<bound_minimal_symbol> *minsyms)
3963 {
3964 std::string canon = cp_canonicalize_string_no_typedefs (lookup_name);
3965 if (!canon.empty ())
3966 lookup_name = canon.c_str ();
3967
3968 /* It's important to not call expand_symtabs_matching unnecessarily
3969 as it can really slow things down (by unnecessarily expanding
3970 potentially 1000s of symtabs, which when debugging some apps can
3971 cost 100s of seconds). Avoid this to some extent by *first* calling
3972 find_function_symbols, and only if that doesn't find anything
3973 *then* call find_method. This handles two important cases:
3974 1) break (anonymous namespace)::foo
3975 2) break class::method where method is in class (and not a baseclass) */
3976
3977 find_function_symbols (state, file_symtabs, lookup_name,
3978 name_match_type, symbols, minsyms);
3979
3980 /* If we were unable to locate a symbol of the same name, try dividing
3981 the name into class and method names and searching the class and its
3982 baseclasses. */
3983 if (symbols->empty () && minsyms->empty ())
3984 {
3985 std::string klass, method;
3986 const char *last, *p, *scope_op;
3987
3988 /* See if we can find a scope operator and break this symbol
3989 name into namespaces${SCOPE_OPERATOR}class_name and method_name. */
3990 scope_op = "::";
3991 p = find_toplevel_string (lookup_name, scope_op);
3992
3993 last = NULL;
3994 while (p != NULL)
3995 {
3996 last = p;
3997 p = find_toplevel_string (p + strlen (scope_op), scope_op);
3998 }
3999
4000 /* If no scope operator was found, there is nothing more we can do;
4001 we already attempted to lookup the entire name as a symbol
4002 and failed. */
4003 if (last == NULL)
4004 return;
4005
4006 /* LOOKUP_NAME points to the class name.
4007 LAST points to the method name. */
4008 klass = std::string (lookup_name, last - lookup_name);
4009
4010 /* Skip past the scope operator. */
4011 last += strlen (scope_op);
4012 method = last;
4013
4014 /* Find a list of classes named KLASS. */
4015 std::vector<block_symbol> classes
4016 = lookup_prefix_sym (state, file_symtabs, klass.c_str ());
4017 if (!classes.empty ())
4018 {
4019 /* Now locate a list of suitable methods named METHOD. */
4020 TRY
4021 {
4022 find_method (state, file_symtabs,
4023 klass.c_str (), method.c_str (),
4024 &classes, symbols, minsyms);
4025 }
4026
4027 /* If successful, we're done. If NOT_FOUND_ERROR
4028 was not thrown, rethrow the exception that we did get. */
4029 CATCH (except, RETURN_MASK_ERROR)
4030 {
4031 if (except.error != NOT_FOUND_ERROR)
4032 throw_exception (except);
4033 }
4034 END_CATCH
4035 }
4036 }
4037 }
4038
4039 /* Helper for find_label_symbols. Find all labels that match name
4040 NAME in BLOCK. Return all labels that match in FUNCTION_SYMBOLS.
4041 Return the actual function symbol in which the label was found in
4042 LABEL_FUNC_RET. If COMPLETION_MODE is true, then NAME is
4043 interpreted as a label name prefix. Otherwise, only a label named
4044 exactly NAME match. */
4045
4046 static void
4047 find_label_symbols_in_block (const struct block *block,
4048 const char *name, struct symbol *fn_sym,
4049 bool completion_mode,
4050 std::vector<block_symbol> *result,
4051 std::vector<block_symbol> *label_funcs_ret)
4052 {
4053 if (completion_mode)
4054 {
4055 struct block_iterator iter;
4056 struct symbol *sym;
4057 size_t name_len = strlen (name);
4058
4059 int (*cmp) (const char *, const char *, size_t);
4060 cmp = case_sensitivity == case_sensitive_on ? strncmp : strncasecmp;
4061
4062 ALL_BLOCK_SYMBOLS (block, iter, sym)
4063 {
4064 if (symbol_matches_domain (SYMBOL_LANGUAGE (sym),
4065 SYMBOL_DOMAIN (sym), LABEL_DOMAIN)
4066 && cmp (SYMBOL_SEARCH_NAME (sym), name, name_len) == 0)
4067 {
4068 result->push_back ({sym, block});
4069 label_funcs_ret->push_back ({fn_sym, block});
4070 }
4071 }
4072 }
4073 else
4074 {
4075 struct block_symbol label_sym
4076 = lookup_symbol (name, block, LABEL_DOMAIN, 0);
4077
4078 if (label_sym.symbol != NULL)
4079 {
4080 result->push_back (label_sym);
4081 label_funcs_ret->push_back ({fn_sym, block});
4082 }
4083 }
4084 }
4085
4086 /* Return all labels that match name NAME in FUNCTION_SYMBOLS or NULL
4087 if no matches were found.
4088
4089 Return the actual function symbol in which the label was found in
4090 LABEL_FUNC_RET. If COMPLETION_MODE is true, then NAME is
4091 interpreted as a label name prefix. Otherwise, only labels named
4092 exactly NAME match. */
4093
4094
4095 static std::vector<block_symbol> *
4096 find_label_symbols (struct linespec_state *self,
4097 std::vector<block_symbol> *function_symbols,
4098 std::vector<block_symbol> *label_funcs_ret,
4099 const char *name,
4100 bool completion_mode)
4101 {
4102 const struct block *block;
4103 struct symbol *fn_sym;
4104 std::vector<block_symbol> result;
4105
4106 if (function_symbols == NULL)
4107 {
4108 set_current_program_space (self->program_space);
4109 block = get_current_search_block ();
4110
4111 for (;
4112 block && !BLOCK_FUNCTION (block);
4113 block = BLOCK_SUPERBLOCK (block))
4114 ;
4115 if (!block)
4116 return NULL;
4117 fn_sym = BLOCK_FUNCTION (block);
4118
4119 find_label_symbols_in_block (block, name, fn_sym, completion_mode,
4120 &result, label_funcs_ret);
4121 }
4122 else
4123 {
4124 for (const auto &elt : *function_symbols)
4125 {
4126 fn_sym = elt.symbol;
4127 set_current_program_space (SYMTAB_PSPACE (symbol_symtab (fn_sym)));
4128 block = SYMBOL_BLOCK_VALUE (fn_sym);
4129
4130 find_label_symbols_in_block (block, name, fn_sym, completion_mode,
4131 &result, label_funcs_ret);
4132 }
4133 }
4134
4135 if (!result.empty ())
4136 return new std::vector<block_symbol> (std::move (result));
4137 return nullptr;
4138 }
4139
4140 \f
4141
4142 /* A helper for create_sals_line_offset that handles the 'list_mode' case. */
4143
4144 static std::vector<symtab_and_line>
4145 decode_digits_list_mode (struct linespec_state *self,
4146 linespec_p ls,
4147 struct symtab_and_line val)
4148 {
4149 gdb_assert (self->list_mode);
4150
4151 std::vector<symtab_and_line> values;
4152
4153 for (const auto &elt : *ls->file_symtabs)
4154 {
4155 /* The logic above should ensure this. */
4156 gdb_assert (elt != NULL);
4157
4158 set_current_program_space (SYMTAB_PSPACE (elt));
4159
4160 /* Simplistic search just for the list command. */
4161 val.symtab = find_line_symtab (elt, val.line, NULL, NULL);
4162 if (val.symtab == NULL)
4163 val.symtab = elt;
4164 val.pspace = SYMTAB_PSPACE (elt);
4165 val.pc = 0;
4166 val.explicit_line = 1;
4167
4168 add_sal_to_sals (self, &values, &val, NULL, 0);
4169 }
4170
4171 return values;
4172 }
4173
4174 /* A helper for create_sals_line_offset that iterates over the symtabs,
4175 adding lines to the VEC. */
4176
4177 static std::vector<symtab_and_line>
4178 decode_digits_ordinary (struct linespec_state *self,
4179 linespec_p ls,
4180 int line,
4181 struct linetable_entry **best_entry)
4182 {
4183 std::vector<symtab_and_line> sals;
4184 for (const auto &elt : *ls->file_symtabs)
4185 {
4186 std::vector<CORE_ADDR> pcs;
4187
4188 /* The logic above should ensure this. */
4189 gdb_assert (elt != NULL);
4190
4191 set_current_program_space (SYMTAB_PSPACE (elt));
4192
4193 pcs = find_pcs_for_symtab_line (elt, line, best_entry);
4194 for (CORE_ADDR pc : pcs)
4195 {
4196 symtab_and_line sal;
4197 sal.pspace = SYMTAB_PSPACE (elt);
4198 sal.symtab = elt;
4199 sal.line = line;
4200 sal.pc = pc;
4201 sals.push_back (std::move (sal));
4202 }
4203 }
4204
4205 return sals;
4206 }
4207
4208 \f
4209
4210 /* Return the line offset represented by VARIABLE. */
4211
4212 static struct line_offset
4213 linespec_parse_variable (struct linespec_state *self, const char *variable)
4214 {
4215 int index = 0;
4216 const char *p;
4217 struct line_offset offset = {0, LINE_OFFSET_NONE};
4218
4219 p = (variable[1] == '$') ? variable + 2 : variable + 1;
4220 if (*p == '$')
4221 ++p;
4222 while (*p >= '0' && *p <= '9')
4223 ++p;
4224 if (!*p) /* Reached end of token without hitting non-digit. */
4225 {
4226 /* We have a value history reference. */
4227 struct value *val_history;
4228
4229 sscanf ((variable[1] == '$') ? variable + 2 : variable + 1, "%d", &index);
4230 val_history
4231 = access_value_history ((variable[1] == '$') ? -index : index);
4232 if (TYPE_CODE (value_type (val_history)) != TYPE_CODE_INT)
4233 error (_("History values used in line "
4234 "specs must have integer values."));
4235 offset.offset = value_as_long (val_history);
4236 }
4237 else
4238 {
4239 /* Not all digits -- may be user variable/function or a
4240 convenience variable. */
4241 LONGEST valx;
4242 struct internalvar *ivar;
4243
4244 /* Try it as a convenience variable. If it is not a convenience
4245 variable, return and allow normal symbol lookup to occur. */
4246 ivar = lookup_only_internalvar (variable + 1);
4247 if (ivar == NULL)
4248 /* No internal variable with that name. Mark the offset
4249 as unknown to allow the name to be looked up as a symbol. */
4250 offset.sign = LINE_OFFSET_UNKNOWN;
4251 else
4252 {
4253 /* We found a valid variable name. If it is not an integer,
4254 throw an error. */
4255 if (!get_internalvar_integer (ivar, &valx))
4256 error (_("Convenience variables used in line "
4257 "specs must have integer values."));
4258 else
4259 offset.offset = valx;
4260 }
4261 }
4262
4263 return offset;
4264 }
4265 \f
4266
4267 /* We've found a minimal symbol MSYMBOL in OBJFILE to associate with our
4268 linespec; return the SAL in RESULT. This function should return SALs
4269 matching those from find_function_start_sal, otherwise false
4270 multiple-locations breakpoints could be placed. */
4271
4272 static void
4273 minsym_found (struct linespec_state *self, struct objfile *objfile,
4274 struct minimal_symbol *msymbol,
4275 std::vector<symtab_and_line> *result)
4276 {
4277 bool want_start_sal;
4278
4279 CORE_ADDR func_addr;
4280 bool is_function = msymbol_is_function (objfile, msymbol, &func_addr);
4281
4282 if (is_function)
4283 {
4284 const char *msym_name = MSYMBOL_LINKAGE_NAME (msymbol);
4285
4286 if (MSYMBOL_TYPE (msymbol) == mst_text_gnu_ifunc
4287 || MSYMBOL_TYPE (msymbol) == mst_data_gnu_ifunc)
4288 want_start_sal = gnu_ifunc_resolve_name (msym_name, &func_addr);
4289 else
4290 want_start_sal = true;
4291 }
4292
4293 symtab_and_line sal;
4294
4295 if (is_function && want_start_sal)
4296 sal = find_function_start_sal (func_addr, NULL, self->funfirstline);
4297 else
4298 {
4299 sal.objfile = objfile;
4300 sal.msymbol = msymbol;
4301 /* Store func_addr, not the minsym's address in case this was an
4302 ifunc that hasn't been resolved yet. */
4303 if (is_function)
4304 sal.pc = func_addr;
4305 else
4306 sal.pc = MSYMBOL_VALUE_ADDRESS (objfile, msymbol);
4307 sal.pspace = current_program_space;
4308 }
4309
4310 sal.section = MSYMBOL_OBJ_SECTION (objfile, msymbol);
4311
4312 if (maybe_add_address (self->addr_set, objfile->pspace, sal.pc))
4313 add_sal_to_sals (self, result, &sal, MSYMBOL_NATURAL_NAME (msymbol), 0);
4314 }
4315
4316 /* A helper function to classify a minimal_symbol_type according to
4317 priority. */
4318
4319 static int
4320 classify_mtype (enum minimal_symbol_type t)
4321 {
4322 switch (t)
4323 {
4324 case mst_file_text:
4325 case mst_file_data:
4326 case mst_file_bss:
4327 /* Intermediate priority. */
4328 return 1;
4329
4330 case mst_solib_trampoline:
4331 /* Lowest priority. */
4332 return 2;
4333
4334 default:
4335 /* Highest priority. */
4336 return 0;
4337 }
4338 }
4339
4340 /* Callback for std::sort that sorts symbols by priority. */
4341
4342 static bool
4343 compare_msyms (const bound_minimal_symbol &a, const bound_minimal_symbol &b)
4344 {
4345 enum minimal_symbol_type ta = MSYMBOL_TYPE (a.minsym);
4346 enum minimal_symbol_type tb = MSYMBOL_TYPE (b.minsym);
4347
4348 return classify_mtype (ta) < classify_mtype (tb);
4349 }
4350
4351 /* Helper for search_minsyms_for_name that adds the symbol to the
4352 result. */
4353
4354 static void
4355 add_minsym (struct minimal_symbol *minsym, struct objfile *objfile,
4356 struct symtab *symtab, int list_mode,
4357 std::vector<struct bound_minimal_symbol> *msyms)
4358 {
4359 if (symtab != NULL)
4360 {
4361 /* We're looking for a label for which we don't have debug
4362 info. */
4363 CORE_ADDR func_addr;
4364 if (msymbol_is_function (objfile, minsym, &func_addr))
4365 {
4366 symtab_and_line sal = find_pc_sect_line (func_addr, NULL, 0);
4367
4368 if (symtab != sal.symtab)
4369 return;
4370 }
4371 }
4372
4373 /* Exclude data symbols when looking for breakpoint locations. */
4374 if (!list_mode && !msymbol_is_function (objfile, minsym))
4375 return;
4376
4377 struct bound_minimal_symbol mo = {minsym, objfile};
4378 msyms->push_back (mo);
4379 return;
4380 }
4381
4382 /* Search for minimal symbols called NAME. If SEARCH_PSPACE
4383 is not NULL, the search is restricted to just that program
4384 space.
4385
4386 If SYMTAB is NULL, search all objfiles, otherwise
4387 restrict results to the given SYMTAB. */
4388
4389 static void
4390 search_minsyms_for_name (struct collect_info *info,
4391 const lookup_name_info &name,
4392 struct program_space *search_pspace,
4393 struct symtab *symtab)
4394 {
4395 std::vector<struct bound_minimal_symbol> minsyms;
4396
4397 if (symtab == NULL)
4398 {
4399 struct program_space *pspace;
4400
4401 ALL_PSPACES (pspace)
4402 {
4403 struct objfile *objfile;
4404
4405 if (search_pspace != NULL && search_pspace != pspace)
4406 continue;
4407 if (pspace->executing_startup)
4408 continue;
4409
4410 set_current_program_space (pspace);
4411
4412 ALL_OBJFILES (objfile)
4413 {
4414 iterate_over_minimal_symbols (objfile, name,
4415 [&] (struct minimal_symbol *msym)
4416 {
4417 add_minsym (msym, objfile, nullptr,
4418 info->state->list_mode,
4419 &minsyms);
4420 return false;
4421 });
4422 }
4423 }
4424 }
4425 else
4426 {
4427 if (search_pspace == NULL || SYMTAB_PSPACE (symtab) == search_pspace)
4428 {
4429 set_current_program_space (SYMTAB_PSPACE (symtab));
4430 iterate_over_minimal_symbols
4431 (SYMTAB_OBJFILE (symtab), name,
4432 [&] (struct minimal_symbol *msym)
4433 {
4434 add_minsym (msym, SYMTAB_OBJFILE (symtab), symtab,
4435 info->state->list_mode, &minsyms);
4436 return false;
4437 });
4438 }
4439 }
4440
4441 if (!minsyms.empty ())
4442 {
4443 int classification;
4444
4445 std::sort (minsyms.begin (), minsyms.end (), compare_msyms);
4446
4447 /* Now the minsyms are in classification order. So, we walk
4448 over them and process just the minsyms with the same
4449 classification as the very first minsym in the list. */
4450 classification = classify_mtype (MSYMBOL_TYPE (minsyms[0].minsym));
4451
4452 for (const bound_minimal_symbol &item : minsyms)
4453 {
4454 if (classify_mtype (MSYMBOL_TYPE (item.minsym)) != classification)
4455 break;
4456
4457 info->result.minimal_symbols->push_back (item);
4458 }
4459 }
4460 }
4461
4462 /* A helper function to add all symbols matching NAME to INFO. If
4463 PSPACE is not NULL, the search is restricted to just that program
4464 space. */
4465
4466 static void
4467 add_matching_symbols_to_info (const char *name,
4468 symbol_name_match_type name_match_type,
4469 enum search_domain search_domain,
4470 struct collect_info *info,
4471 struct program_space *pspace)
4472 {
4473 lookup_name_info lookup_name (name, name_match_type);
4474
4475 for (const auto &elt : *info->file_symtabs)
4476 {
4477 if (elt == nullptr)
4478 {
4479 iterate_over_all_matching_symtabs (info->state, lookup_name,
4480 VAR_DOMAIN, search_domain,
4481 pspace, true,
4482 [&] (block_symbol *bsym)
4483 { return info->add_symbol (bsym); });
4484 search_minsyms_for_name (info, lookup_name, pspace, NULL);
4485 }
4486 else if (pspace == NULL || pspace == SYMTAB_PSPACE (elt))
4487 {
4488 int prev_len = info->result.symbols->size ();
4489
4490 /* Program spaces that are executing startup should have
4491 been filtered out earlier. */
4492 gdb_assert (!SYMTAB_PSPACE (elt)->executing_startup);
4493 set_current_program_space (SYMTAB_PSPACE (elt));
4494 iterate_over_file_blocks (elt, lookup_name, VAR_DOMAIN,
4495 [&] (block_symbol *bsym)
4496 { return info->add_symbol (bsym); });
4497
4498 /* If no new symbols were found in this iteration and this symtab
4499 is in assembler, we might actually be looking for a label for
4500 which we don't have debug info. Check for a minimal symbol in
4501 this case. */
4502 if (prev_len == info->result.symbols->size ()
4503 && elt->language == language_asm)
4504 search_minsyms_for_name (info, lookup_name, pspace, elt);
4505 }
4506 }
4507 }
4508
4509 \f
4510
4511 /* Now come some functions that are called from multiple places within
4512 decode_line_1. */
4513
4514 static int
4515 symbol_to_sal (struct symtab_and_line *result,
4516 int funfirstline, struct symbol *sym)
4517 {
4518 if (SYMBOL_CLASS (sym) == LOC_BLOCK)
4519 {
4520 *result = find_function_start_sal (sym, funfirstline);
4521 return 1;
4522 }
4523 else
4524 {
4525 if (SYMBOL_CLASS (sym) == LOC_LABEL && SYMBOL_VALUE_ADDRESS (sym) != 0)
4526 {
4527 *result = {};
4528 result->symtab = symbol_symtab (sym);
4529 result->symbol = sym;
4530 result->line = SYMBOL_LINE (sym);
4531 result->pc = SYMBOL_VALUE_ADDRESS (sym);
4532 result->pspace = SYMTAB_PSPACE (result->symtab);
4533 result->explicit_pc = 1;
4534 return 1;
4535 }
4536 else if (funfirstline)
4537 {
4538 /* Nothing. */
4539 }
4540 else if (SYMBOL_LINE (sym) != 0)
4541 {
4542 /* We know its line number. */
4543 *result = {};
4544 result->symtab = symbol_symtab (sym);
4545 result->symbol = sym;
4546 result->line = SYMBOL_LINE (sym);
4547 result->pc = SYMBOL_VALUE_ADDRESS (sym);
4548 result->pspace = SYMTAB_PSPACE (result->symtab);
4549 return 1;
4550 }
4551 }
4552
4553 return 0;
4554 }
4555
4556 linespec_result::~linespec_result ()
4557 {
4558 for (linespec_sals &lsal : lsals)
4559 xfree (lsal.canonical);
4560 }
4561
4562 /* Return the quote characters permitted by the linespec parser. */
4563
4564 const char *
4565 get_gdb_linespec_parser_quote_characters (void)
4566 {
4567 return linespec_quote_characters;
4568 }