Introduce partial_symtab::read_symtab method
[deliverable/binutils-gdb.git] / gdb / psymtab.c
1 /* Partial symbol tables.
2
3 Copyright (C) 2009-2020 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 "objfiles.h"
23 #include "psympriv.h"
24 #include "block.h"
25 #include "filenames.h"
26 #include "source.h"
27 #include "addrmap.h"
28 #include "gdbtypes.h"
29 #include "ui-out.h"
30 #include "command.h"
31 #include "readline/tilde.h"
32 #include "gdb_regex.h"
33 #include "dictionary.h"
34 #include "language.h"
35 #include "cp-support.h"
36 #include "gdbcmd.h"
37 #include <algorithm>
38 #include <set>
39
40 static struct partial_symbol *lookup_partial_symbol (struct objfile *,
41 struct partial_symtab *,
42 const char *, int,
43 domain_enum);
44
45 static const char *psymtab_to_fullname (struct partial_symtab *ps);
46
47 static struct partial_symbol *find_pc_sect_psymbol (struct objfile *,
48 struct partial_symtab *,
49 CORE_ADDR,
50 struct obj_section *);
51
52 static struct compunit_symtab *psymtab_to_symtab (struct objfile *objfile,
53 struct partial_symtab *pst);
54
55 \f
56
57 static unsigned long psymbol_hash (const void *addr, int length);
58 static int psymbol_compare (const void *addr1, const void *addr2, int length);
59
60 psymtab_storage::psymtab_storage ()
61 : psymbol_cache (psymbol_hash, psymbol_compare)
62 {
63 }
64
65 psymtab_storage::~psymtab_storage ()
66 {
67 partial_symtab *iter = psymtabs;
68 while (iter != nullptr)
69 {
70 partial_symtab *next = iter->next;
71 delete iter;
72 iter = next;
73 }
74 }
75
76 /* See psymtab.h. */
77
78 void
79 psymtab_storage::install_psymtab (partial_symtab *pst)
80 {
81 pst->next = psymtabs;
82 psymtabs = pst;
83 }
84
85 \f
86
87 /* See psymtab.h. */
88
89 psymtab_storage::partial_symtab_range
90 require_partial_symbols (struct objfile *objfile, bool verbose)
91 {
92 if ((objfile->flags & OBJF_PSYMTABS_READ) == 0)
93 {
94 objfile->flags |= OBJF_PSYMTABS_READ;
95
96 if (objfile->sf->sym_read_psymbols)
97 {
98 if (verbose)
99 printf_filtered (_("Reading symbols from %s...\n"),
100 objfile_name (objfile));
101 (*objfile->sf->sym_read_psymbols) (objfile);
102
103 /* Partial symbols list are not expected to changed after this
104 point. */
105 objfile->partial_symtabs->global_psymbols.shrink_to_fit ();
106 objfile->partial_symtabs->static_psymbols.shrink_to_fit ();
107
108 if (verbose && !objfile_has_symbols (objfile))
109 printf_filtered (_("(No debugging symbols found in %s)\n"),
110 objfile_name (objfile));
111 }
112 }
113
114 return objfile->psymtabs ();
115 }
116
117 /* Helper function for psym_map_symtabs_matching_filename that
118 expands the symtabs and calls the iterator. */
119
120 static bool
121 partial_map_expand_apply (struct objfile *objfile,
122 const char *name,
123 const char *real_path,
124 struct partial_symtab *pst,
125 gdb::function_view<bool (symtab *)> callback)
126 {
127 struct compunit_symtab *last_made = objfile->compunit_symtabs;
128
129 /* Shared psymtabs should never be seen here. Instead they should
130 be handled properly by the caller. */
131 gdb_assert (pst->user == NULL);
132
133 /* Don't visit already-expanded psymtabs. */
134 if (pst->readin)
135 return 0;
136
137 /* This may expand more than one symtab, and we want to iterate over
138 all of them. */
139 psymtab_to_symtab (objfile, pst);
140
141 return iterate_over_some_symtabs (name, real_path, objfile->compunit_symtabs,
142 last_made, callback);
143 }
144
145 /* Psymtab version of map_symtabs_matching_filename. See its definition in
146 the definition of quick_symbol_functions in symfile.h. */
147
148 static bool
149 psym_map_symtabs_matching_filename
150 (struct objfile *objfile,
151 const char *name,
152 const char *real_path,
153 gdb::function_view<bool (symtab *)> callback)
154 {
155 const char *name_basename = lbasename (name);
156
157 for (partial_symtab *pst : require_partial_symbols (objfile, true))
158 {
159 /* We can skip shared psymtabs here, because any file name will be
160 attached to the unshared psymtab. */
161 if (pst->user != NULL)
162 continue;
163
164 /* Anonymous psymtabs don't have a file name. */
165 if (pst->anonymous)
166 continue;
167
168 if (compare_filenames_for_search (pst->filename, name))
169 {
170 if (partial_map_expand_apply (objfile, name, real_path,
171 pst, callback))
172 return true;
173 continue;
174 }
175
176 /* Before we invoke realpath, which can get expensive when many
177 files are involved, do a quick comparison of the basenames. */
178 if (! basenames_may_differ
179 && FILENAME_CMP (name_basename, lbasename (pst->filename)) != 0)
180 continue;
181
182 if (compare_filenames_for_search (psymtab_to_fullname (pst), name))
183 {
184 if (partial_map_expand_apply (objfile, name, real_path,
185 pst, callback))
186 return true;
187 continue;
188 }
189
190 /* If the user gave us an absolute path, try to find the file in
191 this symtab and use its absolute path. */
192 if (real_path != NULL)
193 {
194 gdb_assert (IS_ABSOLUTE_PATH (real_path));
195 gdb_assert (IS_ABSOLUTE_PATH (name));
196 if (filename_cmp (psymtab_to_fullname (pst), real_path) == 0)
197 {
198 if (partial_map_expand_apply (objfile, name, real_path,
199 pst, callback))
200 return true;
201 continue;
202 }
203 }
204 }
205
206 return false;
207 }
208
209 /* Find which partial symtab contains PC and SECTION starting at psymtab PST.
210 We may find a different psymtab than PST. See FIND_PC_SECT_PSYMTAB. */
211
212 static struct partial_symtab *
213 find_pc_sect_psymtab_closer (struct objfile *objfile,
214 CORE_ADDR pc, struct obj_section *section,
215 struct partial_symtab *pst,
216 struct bound_minimal_symbol msymbol)
217 {
218 struct partial_symtab *tpst;
219 struct partial_symtab *best_pst = pst;
220 CORE_ADDR best_addr = pst->text_low (objfile);
221
222 gdb_assert (!pst->psymtabs_addrmap_supported);
223
224 /* An objfile that has its functions reordered might have
225 many partial symbol tables containing the PC, but
226 we want the partial symbol table that contains the
227 function containing the PC. */
228 if (!(objfile->flags & OBJF_REORDERED)
229 && section == NULL) /* Can't validate section this way. */
230 return pst;
231
232 if (msymbol.minsym == NULL)
233 return pst;
234
235 /* The code range of partial symtabs sometimes overlap, so, in
236 the loop below, we need to check all partial symtabs and
237 find the one that fits better for the given PC address. We
238 select the partial symtab that contains a symbol whose
239 address is closest to the PC address. By closest we mean
240 that find_pc_sect_symbol returns the symbol with address
241 that is closest and still less than the given PC. */
242 for (tpst = pst; tpst != NULL; tpst = tpst->next)
243 {
244 if (pc >= tpst->text_low (objfile) && pc < tpst->text_high (objfile))
245 {
246 struct partial_symbol *p;
247 CORE_ADDR this_addr;
248
249 /* NOTE: This assumes that every psymbol has a
250 corresponding msymbol, which is not necessarily
251 true; the debug info might be much richer than the
252 object's symbol table. */
253 p = find_pc_sect_psymbol (objfile, tpst, pc, section);
254 if (p != NULL
255 && (p->address (objfile) == BMSYMBOL_VALUE_ADDRESS (msymbol)))
256 return tpst;
257
258 /* Also accept the textlow value of a psymtab as a
259 "symbol", to provide some support for partial
260 symbol tables with line information but no debug
261 symbols (e.g. those produced by an assembler). */
262 if (p != NULL)
263 this_addr = p->address (objfile);
264 else
265 this_addr = tpst->text_low (objfile);
266
267 /* Check whether it is closer than our current
268 BEST_ADDR. Since this symbol address is
269 necessarily lower or equal to PC, the symbol closer
270 to PC is the symbol which address is the highest.
271 This way we return the psymtab which contains such
272 best match symbol. This can help in cases where the
273 symbol information/debuginfo is not complete, like
274 for instance on IRIX6 with gcc, where no debug info
275 is emitted for statics. (See also the nodebug.exp
276 testcase.) */
277 if (this_addr > best_addr)
278 {
279 best_addr = this_addr;
280 best_pst = tpst;
281 }
282 }
283 }
284 return best_pst;
285 }
286
287 /* Find which partial symtab contains PC and SECTION. Return NULL if
288 none. We return the psymtab that contains a symbol whose address
289 exactly matches PC, or, if we cannot find an exact match, the
290 psymtab that contains a symbol whose address is closest to PC. */
291
292 static struct partial_symtab *
293 find_pc_sect_psymtab (struct objfile *objfile, CORE_ADDR pc,
294 struct obj_section *section,
295 struct bound_minimal_symbol msymbol)
296 {
297 /* Try just the PSYMTABS_ADDRMAP mapping first as it has better
298 granularity than the later used TEXTLOW/TEXTHIGH one. However, we need
299 to take care as the PSYMTABS_ADDRMAP can hold things other than partial
300 symtabs in some cases.
301
302 This function should only be called for objfiles that are using partial
303 symtabs, not for objfiles that are using indexes (.gdb_index or
304 .debug_names), however 'maintenance print psymbols' calls this function
305 directly for all objfiles. If we assume that PSYMTABS_ADDRMAP contains
306 partial symtabs then we will end up returning a pointer to an object
307 that is not a partial_symtab, which doesn't end well. */
308
309 if (objfile->partial_symtabs->psymtabs != NULL
310 && objfile->partial_symtabs->psymtabs_addrmap != NULL)
311 {
312 CORE_ADDR baseaddr = objfile->text_section_offset ();
313
314 struct partial_symtab *pst
315 = ((struct partial_symtab *)
316 addrmap_find (objfile->partial_symtabs->psymtabs_addrmap,
317 pc - baseaddr));
318 if (pst != NULL)
319 {
320 /* FIXME: addrmaps currently do not handle overlayed sections,
321 so fall back to the non-addrmap case if we're debugging
322 overlays and the addrmap returned the wrong section. */
323 if (overlay_debugging && msymbol.minsym != NULL && section != NULL)
324 {
325 struct partial_symbol *p;
326
327 /* NOTE: This assumes that every psymbol has a
328 corresponding msymbol, which is not necessarily
329 true; the debug info might be much richer than the
330 object's symbol table. */
331 p = find_pc_sect_psymbol (objfile, pst, pc, section);
332 if (p == NULL
333 || (p->address (objfile)
334 != BMSYMBOL_VALUE_ADDRESS (msymbol)))
335 goto next;
336 }
337
338 /* We do not try to call FIND_PC_SECT_PSYMTAB_CLOSER as
339 PSYMTABS_ADDRMAP we used has already the best 1-byte
340 granularity and FIND_PC_SECT_PSYMTAB_CLOSER may mislead us into
341 a worse chosen section due to the TEXTLOW/TEXTHIGH ranges
342 overlap. */
343
344 return pst;
345 }
346 }
347
348 next:
349
350 /* Existing PSYMTABS_ADDRMAP mapping is present even for PARTIAL_SYMTABs
351 which still have no corresponding full SYMTABs read. But it is not
352 present for non-DWARF2 debug infos not supporting PSYMTABS_ADDRMAP in GDB
353 so far. */
354
355 /* Check even OBJFILE with non-zero PSYMTABS_ADDRMAP as only several of
356 its CUs may be missing in PSYMTABS_ADDRMAP as they may be varying
357 debug info type in single OBJFILE. */
358
359 for (partial_symtab *pst : require_partial_symbols (objfile, true))
360 if (!pst->psymtabs_addrmap_supported
361 && pc >= pst->text_low (objfile) && pc < pst->text_high (objfile))
362 {
363 struct partial_symtab *best_pst;
364
365 best_pst = find_pc_sect_psymtab_closer (objfile, pc, section, pst,
366 msymbol);
367 if (best_pst != NULL)
368 return best_pst;
369 }
370
371 return NULL;
372 }
373
374 /* Psymtab version of find_pc_sect_compunit_symtab. See its definition in
375 the definition of quick_symbol_functions in symfile.h. */
376
377 static struct compunit_symtab *
378 psym_find_pc_sect_compunit_symtab (struct objfile *objfile,
379 struct bound_minimal_symbol msymbol,
380 CORE_ADDR pc,
381 struct obj_section *section,
382 int warn_if_readin)
383 {
384 struct partial_symtab *ps = find_pc_sect_psymtab (objfile, pc, section,
385 msymbol);
386 if (ps != NULL)
387 {
388 if (warn_if_readin && ps->readin)
389 /* Might want to error() here (in case symtab is corrupt and
390 will cause a core dump), but maybe we can successfully
391 continue, so let's not. */
392 warning (_("\
393 (Internal error: pc %s in read in psymtab, but not in symtab.)\n"),
394 paddress (get_objfile_arch (objfile), pc));
395 psymtab_to_symtab (objfile, ps);
396 return ps->compunit_symtab;
397 }
398 return NULL;
399 }
400
401 /* Find which partial symbol within a psymtab matches PC and SECTION.
402 Return NULL if none. */
403
404 static struct partial_symbol *
405 find_pc_sect_psymbol (struct objfile *objfile,
406 struct partial_symtab *psymtab, CORE_ADDR pc,
407 struct obj_section *section)
408 {
409 struct partial_symbol *best = NULL;
410 CORE_ADDR best_pc;
411 const CORE_ADDR textlow = psymtab->text_low (objfile);
412
413 gdb_assert (psymtab != NULL);
414
415 /* Cope with programs that start at address 0. */
416 best_pc = (textlow != 0) ? textlow - 1 : 0;
417
418 /* Search the global symbols as well as the static symbols, so that
419 find_pc_partial_function doesn't use a minimal symbol and thus
420 cache a bad endaddr. */
421 for (int i = 0; i < psymtab->n_global_syms; i++)
422 {
423 partial_symbol *p
424 = objfile->partial_symtabs->global_psymbols[psymtab->globals_offset
425 + i];
426
427 if (p->domain == VAR_DOMAIN
428 && p->aclass == LOC_BLOCK
429 && pc >= p->address (objfile)
430 && (p->address (objfile) > best_pc
431 || (psymtab->text_low (objfile) == 0
432 && best_pc == 0 && p->address (objfile) == 0)))
433 {
434 if (section != NULL) /* Match on a specific section. */
435 {
436 if (!matching_obj_sections (p->obj_section (objfile),
437 section))
438 continue;
439 }
440 best_pc = p->address (objfile);
441 best = p;
442 }
443 }
444
445 for (int i = 0; i < psymtab->n_static_syms; i++)
446 {
447 partial_symbol *p
448 = objfile->partial_symtabs->static_psymbols[psymtab->statics_offset
449 + i];
450
451 if (p->domain == VAR_DOMAIN
452 && p->aclass == LOC_BLOCK
453 && pc >= p->address (objfile)
454 && (p->address (objfile) > best_pc
455 || (psymtab->text_low (objfile) == 0
456 && best_pc == 0 && p->address (objfile) == 0)))
457 {
458 if (section != NULL) /* Match on a specific section. */
459 {
460 if (!matching_obj_sections (p->obj_section (objfile),
461 section))
462 continue;
463 }
464 best_pc = p->address (objfile);
465 best = p;
466 }
467 }
468
469 return best;
470 }
471
472 /* Psymtab version of lookup_symbol. See its definition in
473 the definition of quick_symbol_functions in symfile.h. */
474
475 static struct compunit_symtab *
476 psym_lookup_symbol (struct objfile *objfile,
477 block_enum block_index, const char *name,
478 const domain_enum domain)
479 {
480 const int psymtab_index = (block_index == GLOBAL_BLOCK ? 1 : 0);
481 struct compunit_symtab *stab_best = NULL;
482
483 lookup_name_info lookup_name (name, symbol_name_match_type::FULL);
484
485 for (partial_symtab *ps : require_partial_symbols (objfile, true))
486 {
487 if (!ps->readin && lookup_partial_symbol (objfile, ps, name,
488 psymtab_index, domain))
489 {
490 struct symbol *sym, *with_opaque = NULL;
491 struct compunit_symtab *stab = psymtab_to_symtab (objfile, ps);
492 /* Note: While psymtab_to_symtab can return NULL if the
493 partial symtab is empty, we can assume it won't here
494 because lookup_partial_symbol succeeded. */
495 const struct blockvector *bv = COMPUNIT_BLOCKVECTOR (stab);
496 const struct block *block = BLOCKVECTOR_BLOCK (bv, block_index);
497
498 sym = block_find_symbol (block, name, domain,
499 block_find_non_opaque_type_preferred,
500 &with_opaque);
501
502 /* Some caution must be observed with overloaded functions
503 and methods, since the index will not contain any overload
504 information (but NAME might contain it). */
505
506 if (sym != NULL
507 && SYMBOL_MATCHES_SEARCH_NAME (sym, lookup_name))
508 return stab;
509 if (with_opaque != NULL
510 && SYMBOL_MATCHES_SEARCH_NAME (with_opaque, lookup_name))
511 stab_best = stab;
512
513 /* Keep looking through other psymtabs. */
514 }
515 }
516
517 return stab_best;
518 }
519
520 /* Returns true if PSYM matches LOOKUP_NAME. */
521
522 static bool
523 psymbol_name_matches (partial_symbol *psym,
524 const lookup_name_info &lookup_name)
525 {
526 const language_defn *lang = language_def (psym->ginfo.language ());
527 symbol_name_matcher_ftype *name_match
528 = get_symbol_name_matcher (lang, lookup_name);
529 return name_match (psym->ginfo.search_name (), lookup_name, NULL);
530 }
531
532 /* Look in PST for a symbol in DOMAIN whose name matches NAME. Search
533 the global block of PST if GLOBAL, and otherwise the static block.
534 MATCH is the comparison operation that returns true iff MATCH (s,
535 NAME), where s is a SYMBOL_SEARCH_NAME. If ORDERED_COMPARE is
536 non-null, the symbols in the block are assumed to be ordered
537 according to it (allowing binary search). It must be compatible
538 with MATCH. Returns the symbol, if found, and otherwise NULL. */
539
540 static struct partial_symbol *
541 match_partial_symbol (struct objfile *objfile,
542 struct partial_symtab *pst, int global,
543 const lookup_name_info &name, domain_enum domain,
544 symbol_compare_ftype *ordered_compare)
545 {
546 struct partial_symbol **start, **psym;
547 struct partial_symbol **top, **real_top, **bottom, **center;
548 int length = (global ? pst->n_global_syms : pst->n_static_syms);
549 int do_linear_search = 1;
550
551 if (length == 0)
552 return NULL;
553
554 start = (global ?
555 &objfile->partial_symtabs->global_psymbols[pst->globals_offset] :
556 &objfile->partial_symtabs->static_psymbols[pst->statics_offset]);
557
558 if (global && ordered_compare) /* Can use a binary search. */
559 {
560 do_linear_search = 0;
561
562 /* Binary search. This search is guaranteed to end with center
563 pointing at the earliest partial symbol whose name might be
564 correct. At that point *all* partial symbols with an
565 appropriate name will be checked against the correct
566 domain. */
567
568 bottom = start;
569 top = start + length - 1;
570 real_top = top;
571 while (top > bottom)
572 {
573 center = bottom + (top - bottom) / 2;
574 gdb_assert (center < top);
575
576 enum language lang = (*center)->ginfo.language ();
577 const char *lang_ln
578 = name.language_lookup_name (lang).c_str ();
579
580 if (ordered_compare ((*center)->ginfo.search_name (),
581 lang_ln) >= 0)
582 top = center;
583 else
584 bottom = center + 1;
585 }
586 gdb_assert (top == bottom);
587
588 while (top <= real_top
589 && psymbol_name_matches (*top, name))
590 {
591 if (symbol_matches_domain ((*top)->ginfo.language (),
592 (*top)->domain, domain))
593 return *top;
594 top++;
595 }
596 }
597
598 /* Can't use a binary search or else we found during the binary search that
599 we should also do a linear search. */
600
601 if (do_linear_search)
602 {
603 for (psym = start; psym < start + length; psym++)
604 {
605 if (symbol_matches_domain ((*psym)->ginfo.language (),
606 (*psym)->domain, domain)
607 && psymbol_name_matches (*psym, name))
608 return *psym;
609 }
610 }
611
612 return NULL;
613 }
614
615 /* Returns the name used to search psymtabs. Unlike symtabs, psymtabs do
616 not contain any method/function instance information (since this would
617 force reading type information while reading psymtabs). Therefore,
618 if NAME contains overload information, it must be stripped before searching
619 psymtabs. */
620
621 static gdb::unique_xmalloc_ptr<char>
622 psymtab_search_name (const char *name)
623 {
624 switch (current_language->la_language)
625 {
626 case language_cplus:
627 {
628 if (strchr (name, '('))
629 {
630 gdb::unique_xmalloc_ptr<char> ret = cp_remove_params (name);
631
632 if (ret)
633 return ret;
634 }
635 }
636 break;
637
638 default:
639 break;
640 }
641
642 return make_unique_xstrdup (name);
643 }
644
645 /* Look, in partial_symtab PST, for symbol whose natural name is NAME.
646 Check the global symbols if GLOBAL, the static symbols if not. */
647
648 static struct partial_symbol *
649 lookup_partial_symbol (struct objfile *objfile,
650 struct partial_symtab *pst, const char *name,
651 int global, domain_enum domain)
652 {
653 struct partial_symbol **start, **psym;
654 struct partial_symbol **top, **real_top, **bottom, **center;
655 int length = (global ? pst->n_global_syms : pst->n_static_syms);
656 int do_linear_search = 1;
657
658 if (length == 0)
659 return NULL;
660
661 gdb::unique_xmalloc_ptr<char> search_name = psymtab_search_name (name);
662
663 lookup_name_info lookup_name (search_name.get (), symbol_name_match_type::FULL);
664
665 start = (global ?
666 &objfile->partial_symtabs->global_psymbols[pst->globals_offset] :
667 &objfile->partial_symtabs->static_psymbols[pst->statics_offset]);
668
669 if (global) /* This means we can use a binary search. */
670 {
671 do_linear_search = 0;
672
673 /* Binary search. This search is guaranteed to end with center
674 pointing at the earliest partial symbol whose name might be
675 correct. At that point *all* partial symbols with an
676 appropriate name will be checked against the correct
677 domain. */
678
679 bottom = start;
680 top = start + length - 1;
681 real_top = top;
682 while (top > bottom)
683 {
684 center = bottom + (top - bottom) / 2;
685 if (!(center < top))
686 internal_error (__FILE__, __LINE__,
687 _("failed internal consistency check"));
688 if (strcmp_iw_ordered ((*center)->ginfo.search_name (),
689 search_name.get ()) >= 0)
690 {
691 top = center;
692 }
693 else
694 {
695 bottom = center + 1;
696 }
697 }
698 if (!(top == bottom))
699 internal_error (__FILE__, __LINE__,
700 _("failed internal consistency check"));
701
702 /* For `case_sensitivity == case_sensitive_off' strcmp_iw_ordered will
703 search more exactly than what matches SYMBOL_MATCHES_SEARCH_NAME. */
704 while (top >= start && symbol_matches_search_name (&(*top)->ginfo,
705 lookup_name))
706 top--;
707
708 /* Fixup to have a symbol which matches SYMBOL_MATCHES_SEARCH_NAME. */
709 top++;
710
711 while (top <= real_top && symbol_matches_search_name (&(*top)->ginfo,
712 lookup_name))
713 {
714 if (symbol_matches_domain ((*top)->ginfo.language (),
715 (*top)->domain, domain))
716 return *top;
717 top++;
718 }
719 }
720
721 /* Can't use a binary search or else we found during the binary search that
722 we should also do a linear search. */
723
724 if (do_linear_search)
725 {
726 for (psym = start; psym < start + length; psym++)
727 {
728 if (symbol_matches_domain ((*psym)->ginfo.language (),
729 (*psym)->domain, domain)
730 && symbol_matches_search_name (&(*psym)->ginfo, lookup_name))
731 return *psym;
732 }
733 }
734
735 return NULL;
736 }
737
738 /* Get the symbol table that corresponds to a partial_symtab.
739 This is fast after the first time you do it.
740 The result will be NULL if the primary symtab has no symbols,
741 which can happen. Otherwise the result is the primary symtab
742 that contains PST. */
743
744 static struct compunit_symtab *
745 psymtab_to_symtab (struct objfile *objfile, struct partial_symtab *pst)
746 {
747 /* If it is a shared psymtab, find an unshared psymtab that includes
748 it. Any such psymtab will do. */
749 while (pst->user != NULL)
750 pst = pst->user;
751
752 /* If it's been looked up before, return it. */
753 if (pst->compunit_symtab)
754 return pst->compunit_symtab;
755
756 /* If it has not yet been read in, read it. */
757 if (!pst->readin)
758 {
759 scoped_restore decrementer = increment_reading_symtab ();
760
761 pst->read_symtab (objfile);
762 }
763
764 return pst->compunit_symtab;
765 }
766
767 /* Psymtab version of find_last_source_symtab. See its definition in
768 the definition of quick_symbol_functions in symfile.h. */
769
770 static struct symtab *
771 psym_find_last_source_symtab (struct objfile *ofp)
772 {
773 struct partial_symtab *cs_pst = NULL;
774
775 for (partial_symtab *ps : require_partial_symbols (ofp, true))
776 {
777 const char *name = ps->filename;
778 int len = strlen (name);
779
780 if (!(len > 2 && (strcmp (&name[len - 2], ".h") == 0
781 || strcmp (name, "<<C++-namespaces>>") == 0)))
782 cs_pst = ps;
783 }
784
785 if (cs_pst)
786 {
787 if (cs_pst->readin)
788 {
789 internal_error (__FILE__, __LINE__,
790 _("select_source_symtab: "
791 "readin pst found and no symtabs."));
792 }
793 else
794 {
795 struct compunit_symtab *cust = psymtab_to_symtab (ofp, cs_pst);
796
797 if (cust == NULL)
798 return NULL;
799 return compunit_primary_filetab (cust);
800 }
801 }
802 return NULL;
803 }
804
805 /* Psymtab version of forget_cached_source_info. See its definition in
806 the definition of quick_symbol_functions in symfile.h. */
807
808 static void
809 psym_forget_cached_source_info (struct objfile *objfile)
810 {
811 for (partial_symtab *pst : require_partial_symbols (objfile, true))
812 {
813 if (pst->fullname != NULL)
814 {
815 xfree (pst->fullname);
816 pst->fullname = NULL;
817 }
818 }
819 }
820
821 static void
822 print_partial_symbols (struct gdbarch *gdbarch, struct objfile *objfile,
823 struct partial_symbol **p, int count, const char *what,
824 struct ui_file *outfile)
825 {
826 fprintf_filtered (outfile, " %s partial symbols:\n", what);
827 while (count-- > 0)
828 {
829 QUIT;
830 fprintf_filtered (outfile, " `%s'", (*p)->ginfo.linkage_name ());
831 if ((*p)->ginfo.demangled_name () != NULL)
832 {
833 fprintf_filtered (outfile, " `%s'",
834 (*p)->ginfo.demangled_name ());
835 }
836 fputs_filtered (", ", outfile);
837 switch ((*p)->domain)
838 {
839 case UNDEF_DOMAIN:
840 fputs_filtered ("undefined domain, ", outfile);
841 break;
842 case VAR_DOMAIN:
843 /* This is the usual thing -- don't print it. */
844 break;
845 case STRUCT_DOMAIN:
846 fputs_filtered ("struct domain, ", outfile);
847 break;
848 case MODULE_DOMAIN:
849 fputs_filtered ("module domain, ", outfile);
850 break;
851 case LABEL_DOMAIN:
852 fputs_filtered ("label domain, ", outfile);
853 break;
854 case COMMON_BLOCK_DOMAIN:
855 fputs_filtered ("common block domain, ", outfile);
856 break;
857 default:
858 fputs_filtered ("<invalid domain>, ", outfile);
859 break;
860 }
861 switch ((*p)->aclass)
862 {
863 case LOC_UNDEF:
864 fputs_filtered ("undefined", outfile);
865 break;
866 case LOC_CONST:
867 fputs_filtered ("constant int", outfile);
868 break;
869 case LOC_STATIC:
870 fputs_filtered ("static", outfile);
871 break;
872 case LOC_REGISTER:
873 fputs_filtered ("register", outfile);
874 break;
875 case LOC_ARG:
876 fputs_filtered ("pass by value", outfile);
877 break;
878 case LOC_REF_ARG:
879 fputs_filtered ("pass by reference", outfile);
880 break;
881 case LOC_REGPARM_ADDR:
882 fputs_filtered ("register address parameter", outfile);
883 break;
884 case LOC_LOCAL:
885 fputs_filtered ("stack parameter", outfile);
886 break;
887 case LOC_TYPEDEF:
888 fputs_filtered ("type", outfile);
889 break;
890 case LOC_LABEL:
891 fputs_filtered ("label", outfile);
892 break;
893 case LOC_BLOCK:
894 fputs_filtered ("function", outfile);
895 break;
896 case LOC_CONST_BYTES:
897 fputs_filtered ("constant bytes", outfile);
898 break;
899 case LOC_UNRESOLVED:
900 fputs_filtered ("unresolved", outfile);
901 break;
902 case LOC_OPTIMIZED_OUT:
903 fputs_filtered ("optimized out", outfile);
904 break;
905 case LOC_COMPUTED:
906 fputs_filtered ("computed at runtime", outfile);
907 break;
908 default:
909 fputs_filtered ("<invalid location>", outfile);
910 break;
911 }
912 fputs_filtered (", ", outfile);
913 fputs_filtered (paddress (gdbarch, (*p)->unrelocated_address ()), outfile);
914 fprintf_filtered (outfile, "\n");
915 p++;
916 }
917 }
918
919 static void
920 dump_psymtab (struct objfile *objfile, struct partial_symtab *psymtab,
921 struct ui_file *outfile)
922 {
923 struct gdbarch *gdbarch = get_objfile_arch (objfile);
924 int i;
925
926 if (psymtab->anonymous)
927 {
928 fprintf_filtered (outfile, "\nAnonymous partial symtab (%s) ",
929 psymtab->filename);
930 }
931 else
932 {
933 fprintf_filtered (outfile, "\nPartial symtab for source file %s ",
934 psymtab->filename);
935 }
936 fprintf_filtered (outfile, "(object ");
937 gdb_print_host_address (psymtab, outfile);
938 fprintf_filtered (outfile, ")\n\n");
939 fprintf_filtered (outfile, " Read from object file %s (",
940 objfile_name (objfile));
941 gdb_print_host_address (objfile, outfile);
942 fprintf_filtered (outfile, ")\n");
943
944 if (psymtab->readin)
945 {
946 fprintf_filtered (outfile,
947 " Full symtab was read (at ");
948 gdb_print_host_address (psymtab->compunit_symtab, outfile);
949 fprintf_filtered (outfile, ")\n");
950 }
951
952 fprintf_filtered (outfile, " Symbols cover text addresses ");
953 fputs_filtered (paddress (gdbarch, psymtab->text_low (objfile)), outfile);
954 fprintf_filtered (outfile, "-");
955 fputs_filtered (paddress (gdbarch, psymtab->text_high (objfile)), outfile);
956 fprintf_filtered (outfile, "\n");
957 fprintf_filtered (outfile, " Address map supported - %s.\n",
958 psymtab->psymtabs_addrmap_supported ? "yes" : "no");
959 fprintf_filtered (outfile, " Depends on %d other partial symtabs.\n",
960 psymtab->number_of_dependencies);
961 for (i = 0; i < psymtab->number_of_dependencies; i++)
962 {
963 fprintf_filtered (outfile, " %d ", i);
964 gdb_print_host_address (psymtab->dependencies[i], outfile);
965 fprintf_filtered (outfile, " %s\n",
966 psymtab->dependencies[i]->filename);
967 }
968 if (psymtab->user != NULL)
969 {
970 fprintf_filtered (outfile, " Shared partial symtab with user ");
971 gdb_print_host_address (psymtab->user, outfile);
972 fprintf_filtered (outfile, "\n");
973 }
974 if (psymtab->n_global_syms > 0)
975 {
976 print_partial_symbols
977 (gdbarch, objfile,
978 &objfile->partial_symtabs->global_psymbols[psymtab->globals_offset],
979 psymtab->n_global_syms, "Global", outfile);
980 }
981 if (psymtab->n_static_syms > 0)
982 {
983 print_partial_symbols
984 (gdbarch, objfile,
985 &objfile->partial_symtabs->static_psymbols[psymtab->statics_offset],
986 psymtab->n_static_syms, "Static", outfile);
987 }
988 fprintf_filtered (outfile, "\n");
989 }
990
991 /* Psymtab version of print_stats. See its definition in
992 the definition of quick_symbol_functions in symfile.h. */
993
994 static void
995 psym_print_stats (struct objfile *objfile)
996 {
997 int i;
998
999 i = 0;
1000 for (partial_symtab *ps : require_partial_symbols (objfile, true))
1001 {
1002 if (!ps->readin)
1003 i++;
1004 }
1005 printf_filtered (_(" Number of psym tables (not yet expanded): %d\n"), i);
1006 }
1007
1008 /* Psymtab version of dump. See its definition in
1009 the definition of quick_symbol_functions in symfile.h. */
1010
1011 static void
1012 psym_dump (struct objfile *objfile)
1013 {
1014 struct partial_symtab *psymtab;
1015
1016 if (objfile->partial_symtabs->psymtabs)
1017 {
1018 printf_filtered ("Psymtabs:\n");
1019 for (psymtab = objfile->partial_symtabs->psymtabs;
1020 psymtab != NULL;
1021 psymtab = psymtab->next)
1022 {
1023 printf_filtered ("%s at ",
1024 psymtab->filename);
1025 gdb_print_host_address (psymtab, gdb_stdout);
1026 printf_filtered (", ");
1027 wrap_here (" ");
1028 }
1029 printf_filtered ("\n\n");
1030 }
1031 }
1032
1033 /* Psymtab version of expand_symtabs_for_function. See its definition in
1034 the definition of quick_symbol_functions in symfile.h. */
1035
1036 static void
1037 psym_expand_symtabs_for_function (struct objfile *objfile,
1038 const char *func_name)
1039 {
1040 for (partial_symtab *ps : require_partial_symbols (objfile, true))
1041 {
1042 if (ps->readin)
1043 continue;
1044
1045 if ((lookup_partial_symbol (objfile, ps, func_name, 1, VAR_DOMAIN)
1046 != NULL)
1047 || (lookup_partial_symbol (objfile, ps, func_name, 0, VAR_DOMAIN)
1048 != NULL))
1049 psymtab_to_symtab (objfile, ps);
1050 }
1051 }
1052
1053 /* Psymtab version of expand_all_symtabs. See its definition in
1054 the definition of quick_symbol_functions in symfile.h. */
1055
1056 static void
1057 psym_expand_all_symtabs (struct objfile *objfile)
1058 {
1059 for (partial_symtab *psymtab : require_partial_symbols (objfile, true))
1060 psymtab_to_symtab (objfile, psymtab);
1061 }
1062
1063 /* Psymtab version of expand_symtabs_with_fullname. See its definition in
1064 the definition of quick_symbol_functions in symfile.h. */
1065
1066 static void
1067 psym_expand_symtabs_with_fullname (struct objfile *objfile,
1068 const char *fullname)
1069 {
1070 for (partial_symtab *p : require_partial_symbols (objfile, true))
1071 {
1072 /* Anonymous psymtabs don't have a name of a source file. */
1073 if (p->anonymous)
1074 continue;
1075
1076 /* psymtab_to_fullname tries to open the file which is slow.
1077 Don't call it if we know the basenames don't match. */
1078 if ((basenames_may_differ
1079 || filename_cmp (lbasename (fullname), lbasename (p->filename)) == 0)
1080 && filename_cmp (fullname, psymtab_to_fullname (p)) == 0)
1081 psymtab_to_symtab (objfile, p);
1082 }
1083 }
1084
1085 /* Psymtab version of map_symbol_filenames. See its definition in
1086 the definition of quick_symbol_functions in symfile.h. */
1087
1088 static void
1089 psym_map_symbol_filenames (struct objfile *objfile,
1090 symbol_filename_ftype *fun, void *data,
1091 int need_fullname)
1092 {
1093 for (partial_symtab *ps : require_partial_symbols (objfile, true))
1094 {
1095 const char *fullname;
1096
1097 if (ps->readin)
1098 continue;
1099
1100 /* We can skip shared psymtabs here, because any file name will be
1101 attached to the unshared psymtab. */
1102 if (ps->user != NULL)
1103 continue;
1104
1105 /* Anonymous psymtabs don't have a file name. */
1106 if (ps->anonymous)
1107 continue;
1108
1109 QUIT;
1110 if (need_fullname)
1111 fullname = psymtab_to_fullname (ps);
1112 else
1113 fullname = NULL;
1114 (*fun) (ps->filename, fullname, data);
1115 }
1116 }
1117
1118 /* Finds the fullname that a partial_symtab represents.
1119
1120 If this functions finds the fullname, it will save it in ps->fullname
1121 and it will also return the value.
1122
1123 If this function fails to find the file that this partial_symtab represents,
1124 NULL will be returned and ps->fullname will be set to NULL. */
1125
1126 static const char *
1127 psymtab_to_fullname (struct partial_symtab *ps)
1128 {
1129 gdb_assert (!ps->anonymous);
1130
1131 /* Use cached copy if we have it.
1132 We rely on forget_cached_source_info being called appropriately
1133 to handle cases like the file being moved. */
1134 if (ps->fullname == NULL)
1135 {
1136 gdb::unique_xmalloc_ptr<char> fullname;
1137 scoped_fd fd = find_and_open_source (ps->filename, ps->dirname,
1138 &fullname);
1139 ps->fullname = fullname.release ();
1140
1141 if (fd.get () < 0)
1142 {
1143 /* rewrite_source_path would be applied by find_and_open_source, we
1144 should report the pathname where GDB tried to find the file. */
1145
1146 if (ps->dirname == NULL || IS_ABSOLUTE_PATH (ps->filename))
1147 fullname.reset (xstrdup (ps->filename));
1148 else
1149 fullname.reset (concat (ps->dirname, SLASH_STRING,
1150 ps->filename, (char *) NULL));
1151
1152 ps->fullname = rewrite_source_path (fullname.get ()).release ();
1153 if (ps->fullname == NULL)
1154 ps->fullname = fullname.release ();
1155 }
1156 }
1157
1158 return ps->fullname;
1159 }
1160
1161 /* Psymtab version of map_matching_symbols. See its definition in
1162 the definition of quick_symbol_functions in symfile.h. */
1163
1164 static void
1165 psym_map_matching_symbols
1166 (struct objfile *objfile,
1167 const lookup_name_info &name, domain_enum domain,
1168 int global,
1169 gdb::function_view<symbol_found_callback_ftype> callback,
1170 symbol_compare_ftype *ordered_compare)
1171 {
1172 const int block_kind = global ? GLOBAL_BLOCK : STATIC_BLOCK;
1173
1174 for (partial_symtab *ps : require_partial_symbols (objfile, true))
1175 {
1176 QUIT;
1177 if (ps->readin
1178 || match_partial_symbol (objfile, ps, global, name, domain,
1179 ordered_compare))
1180 {
1181 struct compunit_symtab *cust = psymtab_to_symtab (objfile, ps);
1182 const struct block *block;
1183
1184 if (cust == NULL)
1185 continue;
1186 block = BLOCKVECTOR_BLOCK (COMPUNIT_BLOCKVECTOR (cust), block_kind);
1187 if (!iterate_over_symbols_terminated (block, name,
1188 domain, callback))
1189 return;
1190 }
1191 }
1192 }
1193
1194 /* A helper for psym_expand_symtabs_matching that handles searching
1195 included psymtabs. This returns true if a symbol is found, and
1196 false otherwise. It also updates the 'searched_flag' on the
1197 various psymtabs that it searches. */
1198
1199 static bool
1200 recursively_search_psymtabs
1201 (struct partial_symtab *ps,
1202 struct objfile *objfile,
1203 enum search_domain domain,
1204 const lookup_name_info &lookup_name,
1205 gdb::function_view<expand_symtabs_symbol_matcher_ftype> sym_matcher)
1206 {
1207 int keep_going = 1;
1208 enum psymtab_search_status result = PST_SEARCHED_AND_NOT_FOUND;
1209 int i;
1210
1211 if (ps->searched_flag != PST_NOT_SEARCHED)
1212 return ps->searched_flag == PST_SEARCHED_AND_FOUND;
1213
1214 /* Recurse into shared psymtabs first, because they may have already
1215 been searched, and this could save some time. */
1216 for (i = 0; i < ps->number_of_dependencies; ++i)
1217 {
1218 int r;
1219
1220 /* Skip non-shared dependencies, these are handled elsewhere. */
1221 if (ps->dependencies[i]->user == NULL)
1222 continue;
1223
1224 r = recursively_search_psymtabs (ps->dependencies[i],
1225 objfile, domain, lookup_name,
1226 sym_matcher);
1227 if (r != 0)
1228 {
1229 ps->searched_flag = PST_SEARCHED_AND_FOUND;
1230 return true;
1231 }
1232 }
1233
1234 partial_symbol **gbound
1235 = (objfile->partial_symtabs->global_psymbols.data ()
1236 + ps->globals_offset + ps->n_global_syms);
1237 partial_symbol **sbound
1238 = (objfile->partial_symtabs->static_psymbols.data ()
1239 + ps->statics_offset + ps->n_static_syms);
1240 partial_symbol **bound = gbound;
1241
1242 /* Go through all of the symbols stored in a partial
1243 symtab in one loop. */
1244 partial_symbol **psym = (objfile->partial_symtabs->global_psymbols.data ()
1245 + ps->globals_offset);
1246 while (keep_going)
1247 {
1248 if (psym >= bound)
1249 {
1250 if (bound == gbound && ps->n_static_syms != 0)
1251 {
1252 psym = (objfile->partial_symtabs->static_psymbols.data ()
1253 + ps->statics_offset);
1254 bound = sbound;
1255 }
1256 else
1257 keep_going = 0;
1258 continue;
1259 }
1260 else
1261 {
1262 QUIT;
1263
1264 if ((domain == ALL_DOMAIN
1265 || (domain == MODULES_DOMAIN
1266 && (*psym)->domain == MODULE_DOMAIN)
1267 || (domain == VARIABLES_DOMAIN
1268 && (*psym)->aclass != LOC_TYPEDEF
1269 && (*psym)->aclass != LOC_BLOCK)
1270 || (domain == FUNCTIONS_DOMAIN
1271 && (*psym)->aclass == LOC_BLOCK)
1272 || (domain == TYPES_DOMAIN
1273 && (*psym)->aclass == LOC_TYPEDEF))
1274 && psymbol_name_matches (*psym, lookup_name)
1275 && (sym_matcher == NULL
1276 || sym_matcher ((*psym)->ginfo.search_name ())))
1277 {
1278 /* Found a match, so notify our caller. */
1279 result = PST_SEARCHED_AND_FOUND;
1280 keep_going = 0;
1281 }
1282 }
1283 psym++;
1284 }
1285
1286 ps->searched_flag = result;
1287 return result == PST_SEARCHED_AND_FOUND;
1288 }
1289
1290 /* Psymtab version of expand_symtabs_matching. See its definition in
1291 the definition of quick_symbol_functions in symfile.h. */
1292
1293 static void
1294 psym_expand_symtabs_matching
1295 (struct objfile *objfile,
1296 gdb::function_view<expand_symtabs_file_matcher_ftype> file_matcher,
1297 const lookup_name_info &lookup_name_in,
1298 gdb::function_view<expand_symtabs_symbol_matcher_ftype> symbol_matcher,
1299 gdb::function_view<expand_symtabs_exp_notify_ftype> expansion_notify,
1300 enum search_domain domain)
1301 {
1302 lookup_name_info lookup_name = lookup_name_in.make_ignore_params ();
1303
1304 /* Clear the search flags. */
1305 for (partial_symtab *ps : require_partial_symbols (objfile, true))
1306 ps->searched_flag = PST_NOT_SEARCHED;
1307
1308 for (partial_symtab *ps : objfile->psymtabs ())
1309 {
1310 QUIT;
1311
1312 if (ps->readin)
1313 continue;
1314
1315 /* We skip shared psymtabs because file-matching doesn't apply
1316 to them; but we search them later in the loop. */
1317 if (ps->user != NULL)
1318 continue;
1319
1320 if (file_matcher)
1321 {
1322 bool match;
1323
1324 if (ps->anonymous)
1325 continue;
1326
1327 match = file_matcher (ps->filename, false);
1328 if (!match)
1329 {
1330 /* Before we invoke realpath, which can get expensive when many
1331 files are involved, do a quick comparison of the basenames. */
1332 if (basenames_may_differ
1333 || file_matcher (lbasename (ps->filename), true))
1334 match = file_matcher (psymtab_to_fullname (ps), false);
1335 }
1336 if (!match)
1337 continue;
1338 }
1339
1340 if (recursively_search_psymtabs (ps, objfile, domain,
1341 lookup_name, symbol_matcher))
1342 {
1343 struct compunit_symtab *symtab =
1344 psymtab_to_symtab (objfile, ps);
1345
1346 if (expansion_notify != NULL)
1347 expansion_notify (symtab);
1348 }
1349 }
1350 }
1351
1352 /* Psymtab version of has_symbols. See its definition in
1353 the definition of quick_symbol_functions in symfile.h. */
1354
1355 static int
1356 psym_has_symbols (struct objfile *objfile)
1357 {
1358 return objfile->partial_symtabs->psymtabs != NULL;
1359 }
1360
1361 /* Helper function for psym_find_compunit_symtab_by_address that fills
1362 in psymbol_map for a given range of psymbols. */
1363
1364 static void
1365 psym_fill_psymbol_map (struct objfile *objfile,
1366 struct partial_symtab *psymtab,
1367 std::set<CORE_ADDR> *seen_addrs,
1368 const std::vector<partial_symbol *> &symbols,
1369 int start,
1370 int length)
1371 {
1372 for (int i = 0; i < length; ++i)
1373 {
1374 struct partial_symbol *psym = symbols[start + i];
1375
1376 if (psym->aclass == LOC_STATIC)
1377 {
1378 CORE_ADDR addr = psym->address (objfile);
1379 if (seen_addrs->find (addr) == seen_addrs->end ())
1380 {
1381 seen_addrs->insert (addr);
1382 objfile->psymbol_map.emplace_back (addr, psymtab);
1383 }
1384 }
1385 }
1386 }
1387
1388 /* See find_compunit_symtab_by_address in quick_symbol_functions, in
1389 symfile.h. */
1390
1391 static compunit_symtab *
1392 psym_find_compunit_symtab_by_address (struct objfile *objfile,
1393 CORE_ADDR address)
1394 {
1395 if (objfile->psymbol_map.empty ())
1396 {
1397 std::set<CORE_ADDR> seen_addrs;
1398
1399 for (partial_symtab *pst : require_partial_symbols (objfile, true))
1400 {
1401 psym_fill_psymbol_map (objfile, pst,
1402 &seen_addrs,
1403 objfile->partial_symtabs->global_psymbols,
1404 pst->globals_offset,
1405 pst->n_global_syms);
1406 psym_fill_psymbol_map (objfile, pst,
1407 &seen_addrs,
1408 objfile->partial_symtabs->static_psymbols,
1409 pst->statics_offset,
1410 pst->n_static_syms);
1411 }
1412
1413 objfile->psymbol_map.shrink_to_fit ();
1414
1415 std::sort (objfile->psymbol_map.begin (), objfile->psymbol_map.end (),
1416 [] (const std::pair<CORE_ADDR, partial_symtab *> &a,
1417 const std::pair<CORE_ADDR, partial_symtab *> &b)
1418 {
1419 return a.first < b.first;
1420 });
1421 }
1422
1423 auto iter = std::lower_bound
1424 (objfile->psymbol_map.begin (), objfile->psymbol_map.end (), address,
1425 [] (const std::pair<CORE_ADDR, partial_symtab *> &a,
1426 CORE_ADDR b)
1427 {
1428 return a.first < b;
1429 });
1430
1431 if (iter == objfile->psymbol_map.end () || iter->first != address)
1432 return NULL;
1433
1434 return psymtab_to_symtab (objfile, iter->second);
1435 }
1436
1437 const struct quick_symbol_functions psym_functions =
1438 {
1439 psym_has_symbols,
1440 psym_find_last_source_symtab,
1441 psym_forget_cached_source_info,
1442 psym_map_symtabs_matching_filename,
1443 psym_lookup_symbol,
1444 psym_print_stats,
1445 psym_dump,
1446 psym_expand_symtabs_for_function,
1447 psym_expand_all_symtabs,
1448 psym_expand_symtabs_with_fullname,
1449 psym_map_matching_symbols,
1450 psym_expand_symtabs_matching,
1451 psym_find_pc_sect_compunit_symtab,
1452 psym_find_compunit_symtab_by_address,
1453 psym_map_symbol_filenames
1454 };
1455
1456 \f
1457
1458 static void
1459 sort_pst_symbols (struct objfile *objfile, struct partial_symtab *pst)
1460 {
1461 /* Sort the global list; don't sort the static list. */
1462 auto begin = objfile->partial_symtabs->global_psymbols.begin ();
1463 std::advance (begin, pst->globals_offset);
1464
1465 /* The psymbols for this partial_symtab are currently at the end of the
1466 vector. */
1467 auto end = objfile->partial_symtabs->global_psymbols.end ();
1468
1469 std::sort (begin, end, [] (partial_symbol *s1, partial_symbol *s2)
1470 {
1471 return strcmp_iw_ordered (s1->ginfo.search_name (),
1472 s2->ginfo.search_name ()) < 0;
1473 });
1474 }
1475
1476 /* Partially fill a partial symtab. It will be completely filled at
1477 the end of the symbol list. */
1478
1479 partial_symtab::partial_symtab (const char *filename,
1480 struct objfile *objfile,
1481 CORE_ADDR textlow)
1482 : partial_symtab (filename, objfile)
1483 {
1484 set_text_low (textlow);
1485 set_text_high (raw_text_low ()); /* default */
1486 globals_offset = objfile->partial_symtabs->global_psymbols.size ();
1487 statics_offset = objfile->partial_symtabs->static_psymbols.size ();
1488 }
1489
1490 /* Perform "finishing up" operations of a partial symtab. */
1491
1492 void
1493 end_psymtab_common (struct objfile *objfile, struct partial_symtab *pst)
1494 {
1495 pst->n_global_syms = (objfile->partial_symtabs->global_psymbols.size ()
1496 - pst->globals_offset);
1497 pst->n_static_syms = (objfile->partial_symtabs->static_psymbols.size ()
1498 - pst->statics_offset);
1499
1500 sort_pst_symbols (objfile, pst);
1501 }
1502
1503 /* Calculate a hash code for the given partial symbol. The hash is
1504 calculated using the symbol's value, language, domain, class
1505 and name. These are the values which are set by
1506 add_psymbol_to_bcache. */
1507
1508 static unsigned long
1509 psymbol_hash (const void *addr, int length)
1510 {
1511 unsigned long h = 0;
1512 struct partial_symbol *psymbol = (struct partial_symbol *) addr;
1513 unsigned int lang = psymbol->ginfo.language ();
1514 unsigned int domain = psymbol->domain;
1515 unsigned int theclass = psymbol->aclass;
1516
1517 h = fast_hash (&psymbol->ginfo.value, sizeof (psymbol->ginfo.value), h);
1518 h = fast_hash (&lang, sizeof (unsigned int), h);
1519 h = fast_hash (&domain, sizeof (unsigned int), h);
1520 h = fast_hash (&theclass, sizeof (unsigned int), h);
1521 /* Note that psymbol names are interned via compute_and_set_names, so
1522 there's no need to hash the contents of the name here. */
1523 h = fast_hash (&psymbol->ginfo.m_name, sizeof (psymbol->ginfo.m_name), h);
1524
1525 return h;
1526 }
1527
1528 /* Returns true if the symbol at addr1 equals the symbol at addr2.
1529 For the comparison this function uses a symbols value,
1530 language, domain, class and name. */
1531
1532 static int
1533 psymbol_compare (const void *addr1, const void *addr2, int length)
1534 {
1535 struct partial_symbol *sym1 = (struct partial_symbol *) addr1;
1536 struct partial_symbol *sym2 = (struct partial_symbol *) addr2;
1537
1538 return (memcmp (&sym1->ginfo.value, &sym2->ginfo.value,
1539 sizeof (sym1->ginfo.value)) == 0
1540 && sym1->ginfo.language () == sym2->ginfo.language ()
1541 && sym1->domain == sym2->domain
1542 && sym1->aclass == sym2->aclass
1543 /* Note that psymbol names are interned via
1544 compute_and_set_names, so there's no need to compare the
1545 contents of the name here. */
1546 && sym1->ginfo.linkage_name () == sym2->ginfo.linkage_name ());
1547 }
1548
1549 /* Helper function, initialises partial symbol structure and stashes
1550 it into objfile's bcache. Note that our caching mechanism will
1551 use all fields of struct partial_symbol to determine hash value of the
1552 structure. In other words, having two symbols with the same name but
1553 different domain (or address) is possible and correct. */
1554
1555 static struct partial_symbol *
1556 add_psymbol_to_bcache (gdb::string_view name, bool copy_name,
1557 domain_enum domain,
1558 enum address_class theclass,
1559 short section,
1560 CORE_ADDR coreaddr,
1561 enum language language, struct objfile *objfile,
1562 int *added)
1563 {
1564 struct partial_symbol psymbol;
1565 memset (&psymbol, 0, sizeof (psymbol));
1566
1567 psymbol.set_unrelocated_address (coreaddr);
1568 psymbol.ginfo.section = section;
1569 psymbol.domain = domain;
1570 psymbol.aclass = theclass;
1571 psymbol.ginfo.set_language (language, objfile->partial_symtabs->obstack ());
1572 psymbol.ginfo.compute_and_set_names (name, copy_name, objfile->per_bfd);
1573
1574 /* Stash the partial symbol away in the cache. */
1575 return ((struct partial_symbol *)
1576 objfile->partial_symtabs->psymbol_cache.insert
1577 (&psymbol, sizeof (struct partial_symbol), added));
1578 }
1579
1580 /* Helper function, adds partial symbol to the given partial symbol list. */
1581
1582 static void
1583 append_psymbol_to_list (std::vector<partial_symbol *> *list,
1584 struct partial_symbol *psym,
1585 struct objfile *objfile)
1586 {
1587 list->push_back (psym);
1588 OBJSTAT (objfile, n_psyms++);
1589 }
1590
1591 /* See psympriv.h. */
1592
1593 void
1594 add_psymbol_to_list (gdb::string_view name, bool copy_name,
1595 domain_enum domain,
1596 enum address_class theclass,
1597 short section,
1598 psymbol_placement where,
1599 CORE_ADDR coreaddr,
1600 enum language language, struct objfile *objfile)
1601 {
1602 struct partial_symbol *psym;
1603
1604 int added;
1605
1606 /* Stash the partial symbol away in the cache. */
1607 psym = add_psymbol_to_bcache (name, copy_name, domain, theclass,
1608 section, coreaddr, language, objfile, &added);
1609
1610 /* Do not duplicate global partial symbols. */
1611 if (where == psymbol_placement::GLOBAL && !added)
1612 return;
1613
1614 /* Save pointer to partial symbol in psymtab, growing symtab if needed. */
1615 std::vector<partial_symbol *> *list
1616 = (where == psymbol_placement::STATIC
1617 ? &objfile->partial_symtabs->static_psymbols
1618 : &objfile->partial_symtabs->global_psymbols);
1619 append_psymbol_to_list (list, psym, objfile);
1620 }
1621
1622 /* See psympriv.h. */
1623
1624 void
1625 init_psymbol_list (struct objfile *objfile, int total_symbols)
1626 {
1627 if (objfile->partial_symtabs->global_psymbols.capacity () == 0
1628 && objfile->partial_symtabs->static_psymbols.capacity () == 0)
1629 {
1630 /* Current best guess is that approximately a twentieth of the
1631 total symbols (in a debugging file) are global or static
1632 oriented symbols, then multiply that by slop factor of
1633 two. */
1634 objfile->partial_symtabs->global_psymbols.reserve (total_symbols / 10);
1635 objfile->partial_symtabs->static_psymbols.reserve (total_symbols / 10);
1636 }
1637 }
1638
1639 /* See psympriv.h. */
1640
1641 partial_symtab::partial_symtab (const char *filename_, struct objfile *objfile)
1642 : searched_flag (PST_NOT_SEARCHED),
1643 text_low_valid (0),
1644 text_high_valid (0)
1645 {
1646 objfile->partial_symtabs->install_psymtab (this);
1647
1648 filename
1649 = ((const char *) objfile->per_bfd->filename_cache.insert
1650 (filename_, strlen (filename_) + 1));
1651 compunit_symtab = NULL;
1652
1653 if (symtab_create_debug)
1654 {
1655 /* Be a bit clever with debugging messages, and don't print objfile
1656 every time, only when it changes. */
1657 static char *last_objfile_name = NULL;
1658
1659 if (last_objfile_name == NULL
1660 || strcmp (last_objfile_name, objfile_name (objfile)) != 0)
1661 {
1662 xfree (last_objfile_name);
1663 last_objfile_name = xstrdup (objfile_name (objfile));
1664 fprintf_filtered (gdb_stdlog,
1665 "Creating one or more psymtabs for objfile %s ...\n",
1666 last_objfile_name);
1667 }
1668 fprintf_filtered (gdb_stdlog,
1669 "Created psymtab %s for module %s.\n",
1670 host_address_to_string (this), filename);
1671 }
1672 }
1673
1674 void
1675 psymtab_storage::discard_psymtab (struct partial_symtab *pst)
1676 {
1677 struct partial_symtab **prev_pst;
1678
1679 /* From dbxread.c:
1680 Empty psymtabs happen as a result of header files which don't
1681 have any symbols in them. There can be a lot of them. But this
1682 check is wrong, in that a psymtab with N_SLINE entries but
1683 nothing else is not empty, but we don't realize that. Fixing
1684 that without slowing things down might be tricky. */
1685
1686 /* First, snip it out of the psymtab chain. */
1687
1688 prev_pst = &psymtabs;
1689 while ((*prev_pst) != pst)
1690 prev_pst = &((*prev_pst)->next);
1691 (*prev_pst) = pst->next;
1692 delete pst;
1693 }
1694
1695 \f
1696
1697 /* We need to pass a couple of items to the addrmap_foreach function,
1698 so use a struct. */
1699
1700 struct dump_psymtab_addrmap_data
1701 {
1702 struct objfile *objfile;
1703 struct partial_symtab *psymtab;
1704 struct ui_file *outfile;
1705
1706 /* Non-zero if the previously printed addrmap entry was for PSYMTAB.
1707 If so, we want to print the next one as well (since the next addrmap
1708 entry defines the end of the range). */
1709 int previous_matched;
1710 };
1711
1712 /* Helper function for dump_psymtab_addrmap to print an addrmap entry. */
1713
1714 static int
1715 dump_psymtab_addrmap_1 (void *datap, CORE_ADDR start_addr, void *obj)
1716 {
1717 struct dump_psymtab_addrmap_data *data
1718 = (struct dump_psymtab_addrmap_data *) datap;
1719 struct gdbarch *gdbarch = get_objfile_arch (data->objfile);
1720 struct partial_symtab *addrmap_psymtab = (struct partial_symtab *) obj;
1721 const char *psymtab_address_or_end = NULL;
1722
1723 QUIT;
1724
1725 if (data->psymtab == NULL
1726 || data->psymtab == addrmap_psymtab)
1727 psymtab_address_or_end = host_address_to_string (addrmap_psymtab);
1728 else if (data->previous_matched)
1729 psymtab_address_or_end = "<ends here>";
1730
1731 if (data->psymtab == NULL
1732 || data->psymtab == addrmap_psymtab
1733 || data->previous_matched)
1734 {
1735 fprintf_filtered (data->outfile, " %s%s %s\n",
1736 data->psymtab != NULL ? " " : "",
1737 paddress (gdbarch, start_addr),
1738 psymtab_address_or_end);
1739 }
1740
1741 data->previous_matched = (data->psymtab == NULL
1742 || data->psymtab == addrmap_psymtab);
1743
1744 return 0;
1745 }
1746
1747 /* Helper function for maintenance_print_psymbols to print the addrmap
1748 of PSYMTAB. If PSYMTAB is NULL print the entire addrmap. */
1749
1750 static void
1751 dump_psymtab_addrmap (struct objfile *objfile, struct partial_symtab *psymtab,
1752 struct ui_file *outfile)
1753 {
1754 struct dump_psymtab_addrmap_data addrmap_dump_data;
1755
1756 if ((psymtab == NULL
1757 || psymtab->psymtabs_addrmap_supported)
1758 && objfile->partial_symtabs->psymtabs_addrmap != NULL)
1759 {
1760 addrmap_dump_data.objfile = objfile;
1761 addrmap_dump_data.psymtab = psymtab;
1762 addrmap_dump_data.outfile = outfile;
1763 addrmap_dump_data.previous_matched = 0;
1764 fprintf_filtered (outfile, "%sddress map:\n",
1765 psymtab == NULL ? "Entire a" : " A");
1766 addrmap_foreach (objfile->partial_symtabs->psymtabs_addrmap,
1767 dump_psymtab_addrmap_1, &addrmap_dump_data);
1768 }
1769 }
1770
1771 static void
1772 maintenance_print_psymbols (const char *args, int from_tty)
1773 {
1774 struct ui_file *outfile = gdb_stdout;
1775 char *address_arg = NULL, *source_arg = NULL, *objfile_arg = NULL;
1776 int i, outfile_idx, found;
1777 CORE_ADDR pc = 0;
1778 struct obj_section *section = NULL;
1779
1780 dont_repeat ();
1781
1782 gdb_argv argv (args);
1783
1784 for (i = 0; argv != NULL && argv[i] != NULL; ++i)
1785 {
1786 if (strcmp (argv[i], "-pc") == 0)
1787 {
1788 if (argv[i + 1] == NULL)
1789 error (_("Missing pc value"));
1790 address_arg = argv[++i];
1791 }
1792 else if (strcmp (argv[i], "-source") == 0)
1793 {
1794 if (argv[i + 1] == NULL)
1795 error (_("Missing source file"));
1796 source_arg = argv[++i];
1797 }
1798 else if (strcmp (argv[i], "-objfile") == 0)
1799 {
1800 if (argv[i + 1] == NULL)
1801 error (_("Missing objfile name"));
1802 objfile_arg = argv[++i];
1803 }
1804 else if (strcmp (argv[i], "--") == 0)
1805 {
1806 /* End of options. */
1807 ++i;
1808 break;
1809 }
1810 else if (argv[i][0] == '-')
1811 {
1812 /* Future proofing: Don't allow OUTFILE to begin with "-". */
1813 error (_("Unknown option: %s"), argv[i]);
1814 }
1815 else
1816 break;
1817 }
1818 outfile_idx = i;
1819
1820 if (address_arg != NULL && source_arg != NULL)
1821 error (_("Must specify at most one of -pc and -source"));
1822
1823 stdio_file arg_outfile;
1824
1825 if (argv != NULL && argv[outfile_idx] != NULL)
1826 {
1827 if (argv[outfile_idx + 1] != NULL)
1828 error (_("Junk at end of command"));
1829 gdb::unique_xmalloc_ptr<char> outfile_name
1830 (tilde_expand (argv[outfile_idx]));
1831 if (!arg_outfile.open (outfile_name.get (), FOPEN_WT))
1832 perror_with_name (outfile_name.get ());
1833 outfile = &arg_outfile;
1834 }
1835
1836 if (address_arg != NULL)
1837 {
1838 pc = parse_and_eval_address (address_arg);
1839 /* If we fail to find a section, that's ok, try the lookup anyway. */
1840 section = find_pc_section (pc);
1841 }
1842
1843 found = 0;
1844 for (objfile *objfile : current_program_space->objfiles ())
1845 {
1846 int printed_objfile_header = 0;
1847 int print_for_objfile = 1;
1848
1849 QUIT;
1850 if (objfile_arg != NULL)
1851 print_for_objfile
1852 = compare_filenames_for_search (objfile_name (objfile),
1853 objfile_arg);
1854 if (!print_for_objfile)
1855 continue;
1856
1857 if (address_arg != NULL)
1858 {
1859 struct bound_minimal_symbol msymbol = { NULL, NULL };
1860
1861 /* We don't assume each pc has a unique objfile (this is for
1862 debugging). */
1863 struct partial_symtab *ps = find_pc_sect_psymtab (objfile, pc,
1864 section, msymbol);
1865 if (ps != NULL)
1866 {
1867 if (!printed_objfile_header)
1868 {
1869 outfile->printf ("\nPartial symtabs for objfile %s\n",
1870 objfile_name (objfile));
1871 printed_objfile_header = 1;
1872 }
1873 dump_psymtab (objfile, ps, outfile);
1874 dump_psymtab_addrmap (objfile, ps, outfile);
1875 found = 1;
1876 }
1877 }
1878 else
1879 {
1880 for (partial_symtab *ps : require_partial_symbols (objfile, true))
1881 {
1882 int print_for_source = 0;
1883
1884 QUIT;
1885 if (source_arg != NULL)
1886 {
1887 print_for_source
1888 = compare_filenames_for_search (ps->filename, source_arg);
1889 found = 1;
1890 }
1891 if (source_arg == NULL
1892 || print_for_source)
1893 {
1894 if (!printed_objfile_header)
1895 {
1896 outfile->printf ("\nPartial symtabs for objfile %s\n",
1897 objfile_name (objfile));
1898 printed_objfile_header = 1;
1899 }
1900 dump_psymtab (objfile, ps, outfile);
1901 dump_psymtab_addrmap (objfile, ps, outfile);
1902 }
1903 }
1904 }
1905
1906 /* If we're printing all the objfile's symbols dump the full addrmap. */
1907
1908 if (address_arg == NULL
1909 && source_arg == NULL
1910 && objfile->partial_symtabs->psymtabs_addrmap != NULL)
1911 {
1912 outfile->puts ("\n");
1913 dump_psymtab_addrmap (objfile, NULL, outfile);
1914 }
1915 }
1916
1917 if (!found)
1918 {
1919 if (address_arg != NULL)
1920 error (_("No partial symtab for address: %s"), address_arg);
1921 if (source_arg != NULL)
1922 error (_("No partial symtab for source file: %s"), source_arg);
1923 }
1924 }
1925
1926 /* List all the partial symbol tables whose names match REGEXP (optional). */
1927
1928 static void
1929 maintenance_info_psymtabs (const char *regexp, int from_tty)
1930 {
1931 struct program_space *pspace;
1932
1933 if (regexp)
1934 re_comp (regexp);
1935
1936 ALL_PSPACES (pspace)
1937 for (objfile *objfile : pspace->objfiles ())
1938 {
1939 struct gdbarch *gdbarch = get_objfile_arch (objfile);
1940
1941 /* We don't want to print anything for this objfile until we
1942 actually find a symtab whose name matches. */
1943 int printed_objfile_start = 0;
1944
1945 for (partial_symtab *psymtab : require_partial_symbols (objfile, true))
1946 {
1947 QUIT;
1948
1949 if (! regexp
1950 || re_exec (psymtab->filename))
1951 {
1952 if (! printed_objfile_start)
1953 {
1954 printf_filtered ("{ objfile %s ", objfile_name (objfile));
1955 wrap_here (" ");
1956 printf_filtered ("((struct objfile *) %s)\n",
1957 host_address_to_string (objfile));
1958 printed_objfile_start = 1;
1959 }
1960
1961 printf_filtered (" { psymtab %s ", psymtab->filename);
1962 wrap_here (" ");
1963 printf_filtered ("((struct partial_symtab *) %s)\n",
1964 host_address_to_string (psymtab));
1965
1966 printf_filtered (" readin %s\n",
1967 psymtab->readin ? "yes" : "no");
1968 printf_filtered (" fullname %s\n",
1969 psymtab->fullname
1970 ? psymtab->fullname : "(null)");
1971 printf_filtered (" text addresses ");
1972 fputs_filtered (paddress (gdbarch,
1973 psymtab->text_low (objfile)),
1974 gdb_stdout);
1975 printf_filtered (" -- ");
1976 fputs_filtered (paddress (gdbarch,
1977 psymtab->text_high (objfile)),
1978 gdb_stdout);
1979 printf_filtered ("\n");
1980 printf_filtered (" psymtabs_addrmap_supported %s\n",
1981 (psymtab->psymtabs_addrmap_supported
1982 ? "yes" : "no"));
1983 printf_filtered (" globals ");
1984 if (psymtab->n_global_syms)
1985 {
1986 auto p = &(objfile->partial_symtabs
1987 ->global_psymbols[psymtab->globals_offset]);
1988
1989 printf_filtered
1990 ("(* (struct partial_symbol **) %s @ %d)\n",
1991 host_address_to_string (p),
1992 psymtab->n_global_syms);
1993 }
1994 else
1995 printf_filtered ("(none)\n");
1996 printf_filtered (" statics ");
1997 if (psymtab->n_static_syms)
1998 {
1999 auto p = &(objfile->partial_symtabs
2000 ->static_psymbols[psymtab->statics_offset]);
2001
2002 printf_filtered
2003 ("(* (struct partial_symbol **) %s @ %d)\n",
2004 host_address_to_string (p),
2005 psymtab->n_static_syms);
2006 }
2007 else
2008 printf_filtered ("(none)\n");
2009 printf_filtered (" dependencies ");
2010 if (psymtab->number_of_dependencies)
2011 {
2012 int i;
2013
2014 printf_filtered ("{\n");
2015 for (i = 0; i < psymtab->number_of_dependencies; i++)
2016 {
2017 struct partial_symtab *dep = psymtab->dependencies[i];
2018
2019 /* Note the string concatenation there --- no
2020 comma. */
2021 printf_filtered (" psymtab %s "
2022 "((struct partial_symtab *) %s)\n",
2023 dep->filename,
2024 host_address_to_string (dep));
2025 }
2026 printf_filtered (" }\n");
2027 }
2028 else
2029 printf_filtered ("(none)\n");
2030 printf_filtered (" }\n");
2031 }
2032 }
2033
2034 if (printed_objfile_start)
2035 printf_filtered ("}\n");
2036 }
2037 }
2038
2039 /* Check consistency of currently expanded psymtabs vs symtabs. */
2040
2041 static void
2042 maintenance_check_psymtabs (const char *ignore, int from_tty)
2043 {
2044 struct symbol *sym;
2045 struct compunit_symtab *cust = NULL;
2046 const struct blockvector *bv;
2047 const struct block *b;
2048 int length;
2049
2050 for (objfile *objfile : current_program_space->objfiles ())
2051 for (partial_symtab *ps : require_partial_symbols (objfile, true))
2052 {
2053 struct gdbarch *gdbarch = get_objfile_arch (objfile);
2054
2055 /* We don't call psymtab_to_symtab here because that may cause symtab
2056 expansion. When debugging a problem it helps if checkers leave
2057 things unchanged. */
2058 cust = ps->compunit_symtab;
2059
2060 /* First do some checks that don't require the associated symtab. */
2061 if (ps->text_high (objfile) < ps->text_low (objfile))
2062 {
2063 printf_filtered ("Psymtab ");
2064 puts_filtered (ps->filename);
2065 printf_filtered (" covers bad range ");
2066 fputs_filtered (paddress (gdbarch, ps->text_low (objfile)),
2067 gdb_stdout);
2068 printf_filtered (" - ");
2069 fputs_filtered (paddress (gdbarch, ps->text_high (objfile)),
2070 gdb_stdout);
2071 printf_filtered ("\n");
2072 continue;
2073 }
2074
2075 /* Now do checks requiring the associated symtab. */
2076 if (cust == NULL)
2077 continue;
2078 bv = COMPUNIT_BLOCKVECTOR (cust);
2079 b = BLOCKVECTOR_BLOCK (bv, STATIC_BLOCK);
2080 partial_symbol **psym
2081 = &objfile->partial_symtabs->static_psymbols[ps->statics_offset];
2082 length = ps->n_static_syms;
2083 while (length--)
2084 {
2085 sym = block_lookup_symbol (b, (*psym)->ginfo.search_name (),
2086 symbol_name_match_type::SEARCH_NAME,
2087 (*psym)->domain);
2088 if (!sym)
2089 {
2090 printf_filtered ("Static symbol `");
2091 puts_filtered ((*psym)->ginfo.linkage_name ());
2092 printf_filtered ("' only found in ");
2093 puts_filtered (ps->filename);
2094 printf_filtered (" psymtab\n");
2095 }
2096 psym++;
2097 }
2098 b = BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK);
2099 psym = &objfile->partial_symtabs->global_psymbols[ps->globals_offset];
2100 length = ps->n_global_syms;
2101 while (length--)
2102 {
2103 sym = block_lookup_symbol (b, (*psym)->ginfo.search_name (),
2104 symbol_name_match_type::SEARCH_NAME,
2105 (*psym)->domain);
2106 if (!sym)
2107 {
2108 printf_filtered ("Global symbol `");
2109 puts_filtered ((*psym)->ginfo.linkage_name ());
2110 printf_filtered ("' only found in ");
2111 puts_filtered (ps->filename);
2112 printf_filtered (" psymtab\n");
2113 }
2114 psym++;
2115 }
2116 if (ps->raw_text_high () != 0
2117 && (ps->text_low (objfile) < BLOCK_START (b)
2118 || ps->text_high (objfile) > BLOCK_END (b)))
2119 {
2120 printf_filtered ("Psymtab ");
2121 puts_filtered (ps->filename);
2122 printf_filtered (" covers ");
2123 fputs_filtered (paddress (gdbarch, ps->text_low (objfile)),
2124 gdb_stdout);
2125 printf_filtered (" - ");
2126 fputs_filtered (paddress (gdbarch, ps->text_high (objfile)),
2127 gdb_stdout);
2128 printf_filtered (" but symtab covers only ");
2129 fputs_filtered (paddress (gdbarch, BLOCK_START (b)), gdb_stdout);
2130 printf_filtered (" - ");
2131 fputs_filtered (paddress (gdbarch, BLOCK_END (b)), gdb_stdout);
2132 printf_filtered ("\n");
2133 }
2134 }
2135 }
2136
2137 void _initialize_psymtab ();
2138 void
2139 _initialize_psymtab ()
2140 {
2141 add_cmd ("psymbols", class_maintenance, maintenance_print_psymbols, _("\
2142 Print dump of current partial symbol definitions.\n\
2143 Usage: mt print psymbols [-objfile OBJFILE] [-pc ADDRESS] [--] [OUTFILE]\n\
2144 mt print psymbols [-objfile OBJFILE] [-source SOURCE] [--] [OUTFILE]\n\
2145 Entries in the partial symbol table are dumped to file OUTFILE,\n\
2146 or the terminal if OUTFILE is unspecified.\n\
2147 If ADDRESS is provided, dump only the file for that address.\n\
2148 If SOURCE is provided, dump only that file's symbols.\n\
2149 If OBJFILE is provided, dump only that file's minimal symbols."),
2150 &maintenanceprintlist);
2151
2152 add_cmd ("psymtabs", class_maintenance, maintenance_info_psymtabs, _("\
2153 List the partial symbol tables for all object files.\n\
2154 This does not include information about individual partial symbols,\n\
2155 just the symbol table structures themselves."),
2156 &maintenanceinfolist);
2157
2158 add_cmd ("check-psymtabs", class_maintenance, maintenance_check_psymtabs,
2159 _("\
2160 Check consistency of currently expanded psymtabs versus symtabs."),
2161 &maintenancelist);
2162 }
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