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/tmp/gdb-8.1/gdb/cp-support.c
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1 /* Helper routines for C++ support in GDB.
2  Copyright (C) 2002-2018 Free Software Foundation, Inc.
3 
4  Contributed by MontaVista Software.
5 
6  This file is part of GDB.
7 
8  This program is free software; you can redistribute it and/or modify
9  it under the terms of the GNU General Public License as published by
10  the Free Software Foundation; either version 3 of the License, or
11  (at your option) any later version.
12 
13  This program is distributed in the hope that it will be useful,
14  but WITHOUT ANY WARRANTY; without even the implied warranty of
15  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16  GNU General Public License for more details.
17 
18  You should have received a copy of the GNU General Public License
19  along with this program. If not, see <http://www.gnu.org/licenses/>. */
20 
21 #include "defs.h"
22 #include "cp-support.h"
23 #include "demangle.h"
24 #include "gdbcmd.h"
25 #include "dictionary.h"
26 #include "objfiles.h"
27 #include "frame.h"
28 #include "symtab.h"
29 #include "block.h"
30 #include "complaints.h"
31 #include "gdbtypes.h"
32 #include "expression.h"
33 #include "value.h"
34 #include "cp-abi.h"
35 #include "namespace.h"
36 #include <signal.h>
37 #include "gdb_setjmp.h"
38 #include "safe-ctype.h"
39 #include "selftest.h"
40 
41 #define d_left(dc) (dc)->u.s_binary.left
42 #define d_right(dc) (dc)->u.s_binary.right
43 
44 /* Functions related to demangled name parsing. */
45 
46 static unsigned int cp_find_first_component_aux (const char *name,
47  int permissive);
48 
49 static void demangled_name_complaint (const char *name);
50 
51 /* Functions/variables related to overload resolution. */
52 
53 static int sym_return_val_size = -1;
55 static struct symbol **sym_return_val;
56 
57 static void overload_list_add_symbol (struct symbol *sym,
58  const char *oload_name);
59 
60 static void make_symbol_overload_list_using (const char *func_name,
61  const char *the_namespace);
62 
63 static void make_symbol_overload_list_qualified (const char *func_name);
64 
65 /* The list of "maint cplus" commands. */
66 
68 
69 /* A list of typedefs which should not be substituted by replace_typedefs. */
70 static const char * const ignore_typedefs[] =
71  {
72  "std::istream", "std::iostream", "std::ostream", "std::string"
73  };
74 
75 static void
77  struct demangle_component *ret_comp,
78  canonicalization_ftype *finder,
79  void *data);
80 
81 /* A convenience function to copy STRING into OBSTACK, returning a pointer
82  to the newly allocated string and saving the number of bytes saved in LEN.
83 
84  It does not copy the terminating '\0' byte! */
85 
86 static char *
87 copy_string_to_obstack (struct obstack *obstack, const char *string,
88  long *len)
89 {
90  *len = strlen (string);
91  return (char *) obstack_copy (obstack, string, *len);
92 }
93 
94 /* Return 1 if STRING is clearly already in canonical form. This
95  function is conservative; things which it does not recognize are
96  assumed to be non-canonical, and the parser will sort them out
97  afterwards. This speeds up the critical path for alphanumeric
98  identifiers. */
99 
100 static int
101 cp_already_canonical (const char *string)
102 {
103  /* Identifier start character [a-zA-Z_]. */
104  if (!ISIDST (string[0]))
105  return 0;
106 
107  /* These are the only two identifiers which canonicalize to other
108  than themselves or an error: unsigned -> unsigned int and
109  signed -> int. */
110  if (string[0] == 'u' && strcmp (&string[1], "nsigned") == 0)
111  return 0;
112  else if (string[0] == 's' && strcmp (&string[1], "igned") == 0)
113  return 0;
114 
115  /* Identifier character [a-zA-Z0-9_]. */
116  while (ISIDNUM (string[1]))
117  string++;
118 
119  if (string[1] == '\0')
120  return 1;
121  else
122  return 0;
123 }
124 
125 /* Inspect the given RET_COMP for its type. If it is a typedef,
126  replace the node with the typedef's tree.
127 
128  Returns 1 if any typedef substitutions were made, 0 otherwise. */
129 
130 static int
132  struct demangle_component *ret_comp,
133  canonicalization_ftype *finder,
134  void *data)
135 {
136  int i;
137  char *name;
138  struct symbol *sym;
139 
140  /* Copy the symbol's name from RET_COMP and look it up
141  in the symbol table. */
142  name = (char *) alloca (ret_comp->u.s_name.len + 1);
143  memcpy (name, ret_comp->u.s_name.s, ret_comp->u.s_name.len);
144  name[ret_comp->u.s_name.len] = '\0';
145 
146  /* Ignore any typedefs that should not be substituted. */
147  for (i = 0; i < ARRAY_SIZE (ignore_typedefs); ++i)
148  {
149  if (strcmp (name, ignore_typedefs[i]) == 0)
150  return 0;
151  }
152 
153  sym = NULL;
154 
155  TRY
156  {
157  sym = lookup_symbol (name, 0, VAR_DOMAIN, 0).symbol;
158  }
159  CATCH (except, RETURN_MASK_ALL)
160  {
161  return 0;
162  }
163  END_CATCH
164 
165  if (sym != NULL)
166  {
167  struct type *otype = SYMBOL_TYPE (sym);
168 
169  if (finder != NULL)
170  {
171  const char *new_name = (*finder) (otype, data);
172 
173  if (new_name != NULL)
174  {
175  ret_comp->u.s_name.s = new_name;
176  ret_comp->u.s_name.len = strlen (new_name);
177  return 1;
178  }
179 
180  return 0;
181  }
182 
183  /* If the type is a typedef or namespace alias, replace it. */
184  if (TYPE_CODE (otype) == TYPE_CODE_TYPEDEF
185  || TYPE_CODE (otype) == TYPE_CODE_NAMESPACE)
186  {
187  long len;
188  int is_anon;
189  struct type *type;
190  std::unique_ptr<demangle_parse_info> i;
191 
192  /* Get the real type of the typedef. */
193  type = check_typedef (otype);
194 
195  /* If the symbol is a namespace and its type name is no different
196  than the name we looked up, this symbol is not a namespace
197  alias and does not need to be substituted. */
198  if (TYPE_CODE (otype) == TYPE_CODE_NAMESPACE
199  && strcmp (TYPE_NAME (type), name) == 0)
200  return 0;
201 
202  is_anon = (TYPE_TAG_NAME (type) == NULL
203  && (TYPE_CODE (type) == TYPE_CODE_ENUM
205  || TYPE_CODE (type) == TYPE_CODE_UNION));
206  if (is_anon)
207  {
208  struct type *last = otype;
209 
210  /* Find the last typedef for the type. */
211  while (TYPE_TARGET_TYPE (last) != NULL
212  && (TYPE_CODE (TYPE_TARGET_TYPE (last))
213  == TYPE_CODE_TYPEDEF))
214  last = TYPE_TARGET_TYPE (last);
215 
216  /* If there is only one typedef for this anonymous type,
217  do not substitute it. */
218  if (type == otype)
219  return 0;
220  else
221  /* Use the last typedef seen as the type for this
222  anonymous type. */
223  type = last;
224  }
225 
226  string_file buf;
227  TRY
228  {
229  type_print (type, "", &buf, -1);
230  }
231  /* If type_print threw an exception, there is little point
232  in continuing, so just bow out gracefully. */
233  CATCH (except, RETURN_MASK_ERROR)
234  {
235  return 0;
236  }
237  END_CATCH
238 
239  len = buf.size ();
240  name = (char *) obstack_copy0 (&info->obstack, buf.c_str (), len);
241 
242  /* Turn the result into a new tree. Note that this
243  tree will contain pointers into NAME, so NAME cannot
244  be free'd until all typedef conversion is done and
245  the final result is converted into a string. */
246  i = cp_demangled_name_to_comp (name, NULL);
247  if (i != NULL)
248  {
249  /* Merge the two trees. */
250  cp_merge_demangle_parse_infos (info, ret_comp, i.get ());
251 
252  /* Replace any newly introduced typedefs -- but not
253  if the type is anonymous (that would lead to infinite
254  looping). */
255  if (!is_anon)
256  replace_typedefs (info, ret_comp, finder, data);
257  }
258  else
259  {
260  /* This shouldn't happen unless the type printer has
261  output something that the name parser cannot grok.
262  Nonetheless, an ounce of prevention...
263 
264  Canonicalize the name again, and store it in the
265  current node (RET_COMP). */
267 
268  if (!canon.empty ())
269  {
270  /* Copy the canonicalization into the obstack. */
271  name = copy_string_to_obstack (&info->obstack, canon.c_str (), &len);
272  }
273 
274  ret_comp->u.s_name.s = name;
275  ret_comp->u.s_name.len = len;
276  }
277 
278  return 1;
279  }
280  }
281 
282  return 0;
283 }
284 
285 /* Replace any typedefs appearing in the qualified name
286  (DEMANGLE_COMPONENT_QUAL_NAME) represented in RET_COMP for the name parse
287  given in INFO. */
288 
289 static void
291  struct demangle_component *ret_comp,
292  canonicalization_ftype *finder,
293  void *data)
294 {
295  string_file buf;
296  struct demangle_component *comp = ret_comp;
297 
298  /* Walk each node of the qualified name, reconstructing the name of
299  this element. With every node, check for any typedef substitutions.
300  If a substitution has occurred, replace the qualified name node
301  with a DEMANGLE_COMPONENT_NAME node representing the new, typedef-
302  substituted name. */
303  while (comp->type == DEMANGLE_COMPONENT_QUAL_NAME)
304  {
305  if (d_left (comp)->type == DEMANGLE_COMPONENT_NAME)
306  {
307  struct demangle_component newobj;
308 
309  buf.write (d_left (comp)->u.s_name.s, d_left (comp)->u.s_name.len);
310  newobj.type = DEMANGLE_COMPONENT_NAME;
311  newobj.u.s_name.s
312  = (char *) obstack_copy0 (&info->obstack,
313  buf.c_str (), buf.size ());
314  newobj.u.s_name.len = buf.size ();
315  if (inspect_type (info, &newobj, finder, data))
316  {
317  char *s;
318  long slen;
319 
320  /* A typedef was substituted in NEW. Convert it to a
321  string and replace the top DEMANGLE_COMPONENT_QUAL_NAME
322  node. */
323 
324  buf.clear ();
326  = cp_comp_to_string (&newobj, 100);
327  if (n == NULL)
328  {
329  /* If something went astray, abort typedef substitutions. */
330  return;
331  }
332 
333  s = copy_string_to_obstack (&info->obstack, n.get (), &slen);
334 
335  d_left (ret_comp)->type = DEMANGLE_COMPONENT_NAME;
336  d_left (ret_comp)->u.s_name.s = s;
337  d_left (ret_comp)->u.s_name.len = slen;
338  d_right (ret_comp) = d_right (comp);
339  comp = ret_comp;
340  continue;
341  }
342  }
343  else
344  {
345  /* The current node is not a name, so simply replace any
346  typedefs in it. Then print it to the stream to continue
347  checking for more typedefs in the tree. */
348  replace_typedefs (info, d_left (comp), finder, data);
350  = cp_comp_to_string (d_left (comp), 100);
351  if (name == NULL)
352  {
353  /* If something went astray, abort typedef substitutions. */
354  return;
355  }
356  buf.puts (name.get ());
357  }
358 
359  buf.write ("::", 2);
360  comp = d_right (comp);
361  }
362 
363  /* If the next component is DEMANGLE_COMPONENT_NAME, save the qualified
364  name assembled above and append the name given by COMP. Then use this
365  reassembled name to check for a typedef. */
366 
367  if (comp->type == DEMANGLE_COMPONENT_NAME)
368  {
369  buf.write (comp->u.s_name.s, comp->u.s_name.len);
370 
371  /* Replace the top (DEMANGLE_COMPONENT_QUAL_NAME) node
372  with a DEMANGLE_COMPONENT_NAME node containing the whole
373  name. */
374  ret_comp->type = DEMANGLE_COMPONENT_NAME;
375  ret_comp->u.s_name.s
376  = (char *) obstack_copy0 (&info->obstack,
377  buf.c_str (), buf.size ());
378  ret_comp->u.s_name.len = buf.size ();
379  inspect_type (info, ret_comp, finder, data);
380  }
381  else
382  replace_typedefs (info, comp, finder, data);
383 }
384 
385 
386 /* A function to check const and volatile qualifiers for argument types.
387 
388  "Parameter declarations that differ only in the presence
389  or absence of `const' and/or `volatile' are equivalent."
390  C++ Standard N3290, clause 13.1.3 #4. */
391 
392 static void
393 check_cv_qualifiers (struct demangle_component *ret_comp)
394 {
395  while (d_left (ret_comp) != NULL
396  && (d_left (ret_comp)->type == DEMANGLE_COMPONENT_CONST
397  || d_left (ret_comp)->type == DEMANGLE_COMPONENT_VOLATILE))
398  {
399  d_left (ret_comp) = d_left (d_left (ret_comp));
400  }
401 }
402 
403 /* Walk the parse tree given by RET_COMP, replacing any typedefs with
404  their basic types. */
405 
406 static void
408  struct demangle_component *ret_comp,
409  canonicalization_ftype *finder,
410  void *data)
411 {
412  if (ret_comp)
413  {
414  if (finder != NULL
415  && (ret_comp->type == DEMANGLE_COMPONENT_NAME
416  || ret_comp->type == DEMANGLE_COMPONENT_QUAL_NAME
417  || ret_comp->type == DEMANGLE_COMPONENT_TEMPLATE
418  || ret_comp->type == DEMANGLE_COMPONENT_BUILTIN_TYPE))
419  {
421  = cp_comp_to_string (ret_comp, 10);
422 
423  if (local_name != NULL)
424  {
425  struct symbol *sym = NULL;
426 
427  sym = NULL;
428  TRY
429  {
430  sym = lookup_symbol (local_name.get (), 0,
431  VAR_DOMAIN, 0).symbol;
432  }
433  CATCH (except, RETURN_MASK_ALL)
434  {
435  }
436  END_CATCH
437 
438  if (sym != NULL)
439  {
440  struct type *otype = SYMBOL_TYPE (sym);
441  const char *new_name = (*finder) (otype, data);
442 
443  if (new_name != NULL)
444  {
445  ret_comp->type = DEMANGLE_COMPONENT_NAME;
446  ret_comp->u.s_name.s = new_name;
447  ret_comp->u.s_name.len = strlen (new_name);
448  return;
449  }
450  }
451  }
452  }
453 
454  switch (ret_comp->type)
455  {
456  case DEMANGLE_COMPONENT_ARGLIST:
457  check_cv_qualifiers (ret_comp);
458  /* Fall through */
459 
460  case DEMANGLE_COMPONENT_FUNCTION_TYPE:
461  case DEMANGLE_COMPONENT_TEMPLATE:
462  case DEMANGLE_COMPONENT_TEMPLATE_ARGLIST:
463  case DEMANGLE_COMPONENT_TYPED_NAME:
464  replace_typedefs (info, d_left (ret_comp), finder, data);
465  replace_typedefs (info, d_right (ret_comp), finder, data);
466  break;
467 
468  case DEMANGLE_COMPONENT_NAME:
469  inspect_type (info, ret_comp, finder, data);
470  break;
471 
472  case DEMANGLE_COMPONENT_QUAL_NAME:
473  replace_typedefs_qualified_name (info, ret_comp, finder, data);
474  break;
475 
476  case DEMANGLE_COMPONENT_LOCAL_NAME:
477  case DEMANGLE_COMPONENT_CTOR:
478  case DEMANGLE_COMPONENT_ARRAY_TYPE:
479  case DEMANGLE_COMPONENT_PTRMEM_TYPE:
480  replace_typedefs (info, d_right (ret_comp), finder, data);
481  break;
482 
483  case DEMANGLE_COMPONENT_CONST:
484  case DEMANGLE_COMPONENT_RESTRICT:
485  case DEMANGLE_COMPONENT_VOLATILE:
486  case DEMANGLE_COMPONENT_VOLATILE_THIS:
487  case DEMANGLE_COMPONENT_CONST_THIS:
488  case DEMANGLE_COMPONENT_RESTRICT_THIS:
489  case DEMANGLE_COMPONENT_POINTER:
490  case DEMANGLE_COMPONENT_REFERENCE:
491  case DEMANGLE_COMPONENT_RVALUE_REFERENCE:
492  replace_typedefs (info, d_left (ret_comp), finder, data);
493  break;
494 
495  default:
496  break;
497  }
498  }
499 }
500 
501 /* Parse STRING and convert it to canonical form, resolving any
502  typedefs. If parsing fails, or if STRING is already canonical,
503  return the empty string. Otherwise return the canonical form. If
504  FINDER is not NULL, then type components are passed to FINDER to be
505  looked up. DATA is passed verbatim to FINDER. */
506 
508 cp_canonicalize_string_full (const char *string,
509  canonicalization_ftype *finder,
510  void *data)
511 {
512  std::string ret;
513  unsigned int estimated_len;
514  std::unique_ptr<demangle_parse_info> info;
515 
516  estimated_len = strlen (string) * 2;
517  info = cp_demangled_name_to_comp (string, NULL);
518  if (info != NULL)
519  {
520  /* Replace all the typedefs in the tree. */
521  replace_typedefs (info.get (), info->tree, finder, data);
522 
523  /* Convert the tree back into a string. */
525  estimated_len);
526  gdb_assert (us);
527 
528  ret = us.get ();
529  /* Finally, compare the original string with the computed
530  name, returning NULL if they are the same. */
531  if (ret == string)
532  return std::string ();
533  }
534 
535  return ret;
536 }
537 
538 /* Like cp_canonicalize_string_full, but always passes NULL for
539  FINDER. */
540 
543 {
544  return cp_canonicalize_string_full (string, NULL, NULL);
545 }
546 
547 /* Parse STRING and convert it to canonical form. If parsing fails,
548  or if STRING is already canonical, return the empty string.
549  Otherwise return the canonical form. */
550 
552 cp_canonicalize_string (const char *string)
553 {
554  std::unique_ptr<demangle_parse_info> info;
555  unsigned int estimated_len;
556 
557  if (cp_already_canonical (string))
558  return std::string ();
559 
560  info = cp_demangled_name_to_comp (string, NULL);
561  if (info == NULL)
562  return std::string ();
563 
564  estimated_len = strlen (string) * 2;
566  estimated_len));
567 
568  if (!us)
569  {
570  warning (_("internal error: string \"%s\" failed to be canonicalized"),
571  string);
572  return std::string ();
573  }
574 
575  std::string ret (us.get ());
576 
577  if (ret == string)
578  return std::string ();
579 
580  return ret;
581 }
582 
583 /* Convert a mangled name to a demangle_component tree. *MEMORY is
584  set to the block of used memory that should be freed when finished
585  with the tree. DEMANGLED_P is set to the char * that should be
586  freed when finished with the tree, or NULL if none was needed.
587  OPTIONS will be passed to the demangler. */
588 
589 static std::unique_ptr<demangle_parse_info>
590 mangled_name_to_comp (const char *mangled_name, int options,
591  void **memory, char **demangled_p)
592 {
593  char *demangled_name;
594 
595  /* If it looks like a v3 mangled name, then try to go directly
596  to trees. */
597  if (mangled_name[0] == '_' && mangled_name[1] == 'Z')
598  {
599  struct demangle_component *ret;
600 
601  ret = cplus_demangle_v3_components (mangled_name,
602  options, memory);
603  if (ret)
604  {
605  std::unique_ptr<demangle_parse_info> info (new demangle_parse_info);
606  info->tree = ret;
607  *demangled_p = NULL;
608  return info;
609  }
610  }
611 
612  /* If it doesn't, or if that failed, then try to demangle the
613  name. */
614  demangled_name = gdb_demangle (mangled_name, options);
615  if (demangled_name == NULL)
616  return NULL;
617 
618  /* If we could demangle the name, parse it to build the component
619  tree. */
620  std::unique_ptr<demangle_parse_info> info
621  = cp_demangled_name_to_comp (demangled_name, NULL);
622 
623  if (info == NULL)
624  {
625  xfree (demangled_name);
626  return NULL;
627  }
628 
629  *demangled_p = demangled_name;
630  return info;
631 }
632 
633 /* Return the name of the class containing method PHYSNAME. */
634 
635 char *
636 cp_class_name_from_physname (const char *physname)
637 {
638  void *storage = NULL;
639  char *demangled_name = NULL;
641  struct demangle_component *ret_comp, *prev_comp, *cur_comp;
642  std::unique_ptr<demangle_parse_info> info;
643  int done;
644 
645  info = mangled_name_to_comp (physname, DMGL_ANSI,
646  &storage, &demangled_name);
647  if (info == NULL)
648  return NULL;
649 
650  done = 0;
651  ret_comp = info->tree;
652 
653  /* First strip off any qualifiers, if we have a function or
654  method. */
655  while (!done)
656  switch (ret_comp->type)
657  {
658  case DEMANGLE_COMPONENT_CONST:
659  case DEMANGLE_COMPONENT_RESTRICT:
660  case DEMANGLE_COMPONENT_VOLATILE:
661  case DEMANGLE_COMPONENT_CONST_THIS:
662  case DEMANGLE_COMPONENT_RESTRICT_THIS:
663  case DEMANGLE_COMPONENT_VOLATILE_THIS:
664  case DEMANGLE_COMPONENT_VENDOR_TYPE_QUAL:
665  ret_comp = d_left (ret_comp);
666  break;
667  default:
668  done = 1;
669  break;
670  }
671 
672  /* If what we have now is a function, discard the argument list. */
673  if (ret_comp->type == DEMANGLE_COMPONENT_TYPED_NAME)
674  ret_comp = d_left (ret_comp);
675 
676  /* If what we have now is a template, strip off the template
677  arguments. The left subtree may be a qualified name. */
678  if (ret_comp->type == DEMANGLE_COMPONENT_TEMPLATE)
679  ret_comp = d_left (ret_comp);
680 
681  /* What we have now should be a name, possibly qualified.
682  Additional qualifiers could live in the left subtree or the right
683  subtree. Find the last piece. */
684  done = 0;
685  prev_comp = NULL;
686  cur_comp = ret_comp;
687  while (!done)
688  switch (cur_comp->type)
689  {
690  case DEMANGLE_COMPONENT_QUAL_NAME:
691  case DEMANGLE_COMPONENT_LOCAL_NAME:
692  prev_comp = cur_comp;
693  cur_comp = d_right (cur_comp);
694  break;
695  case DEMANGLE_COMPONENT_TEMPLATE:
696  case DEMANGLE_COMPONENT_NAME:
697  case DEMANGLE_COMPONENT_CTOR:
698  case DEMANGLE_COMPONENT_DTOR:
699  case DEMANGLE_COMPONENT_OPERATOR:
700  case DEMANGLE_COMPONENT_EXTENDED_OPERATOR:
701  done = 1;
702  break;
703  default:
704  done = 1;
705  cur_comp = NULL;
706  break;
707  }
708 
709  if (cur_comp != NULL && prev_comp != NULL)
710  {
711  /* We want to discard the rightmost child of PREV_COMP. */
712  *prev_comp = *d_left (prev_comp);
713  /* The ten is completely arbitrary; we don't have a good
714  estimate. */
715  ret = cp_comp_to_string (ret_comp, 10);
716  }
717 
718  xfree (storage);
719  xfree (demangled_name);
720  return ret.release ();
721 }
722 
723 /* Return the child of COMP which is the basename of a method,
724  variable, et cetera. All scope qualifiers are discarded, but
725  template arguments will be included. The component tree may be
726  modified. */
727 
728 static struct demangle_component *
729 unqualified_name_from_comp (struct demangle_component *comp)
730 {
731  struct demangle_component *ret_comp = comp, *last_template;
732  int done;
733 
734  done = 0;
735  last_template = NULL;
736  while (!done)
737  switch (ret_comp->type)
738  {
739  case DEMANGLE_COMPONENT_QUAL_NAME:
740  case DEMANGLE_COMPONENT_LOCAL_NAME:
741  ret_comp = d_right (ret_comp);
742  break;
743  case DEMANGLE_COMPONENT_TYPED_NAME:
744  ret_comp = d_left (ret_comp);
745  break;
746  case DEMANGLE_COMPONENT_TEMPLATE:
747  gdb_assert (last_template == NULL);
748  last_template = ret_comp;
749  ret_comp = d_left (ret_comp);
750  break;
751  case DEMANGLE_COMPONENT_CONST:
752  case DEMANGLE_COMPONENT_RESTRICT:
753  case DEMANGLE_COMPONENT_VOLATILE:
754  case DEMANGLE_COMPONENT_CONST_THIS:
755  case DEMANGLE_COMPONENT_RESTRICT_THIS:
756  case DEMANGLE_COMPONENT_VOLATILE_THIS:
757  case DEMANGLE_COMPONENT_VENDOR_TYPE_QUAL:
758  ret_comp = d_left (ret_comp);
759  break;
760  case DEMANGLE_COMPONENT_NAME:
761  case DEMANGLE_COMPONENT_CTOR:
762  case DEMANGLE_COMPONENT_DTOR:
763  case DEMANGLE_COMPONENT_OPERATOR:
764  case DEMANGLE_COMPONENT_EXTENDED_OPERATOR:
765  done = 1;
766  break;
767  default:
768  return NULL;
769  break;
770  }
771 
772  if (last_template)
773  {
774  d_left (last_template) = ret_comp;
775  return last_template;
776  }
777 
778  return ret_comp;
779 }
780 
781 /* Return the name of the method whose linkage name is PHYSNAME. */
782 
783 char *
784 method_name_from_physname (const char *physname)
785 {
786  void *storage = NULL;
787  char *demangled_name = NULL;
789  struct demangle_component *ret_comp;
790  std::unique_ptr<demangle_parse_info> info;
791 
792  info = mangled_name_to_comp (physname, DMGL_ANSI,
793  &storage, &demangled_name);
794  if (info == NULL)
795  return NULL;
796 
797  ret_comp = unqualified_name_from_comp (info->tree);
798 
799  if (ret_comp != NULL)
800  /* The ten is completely arbitrary; we don't have a good
801  estimate. */
802  ret = cp_comp_to_string (ret_comp, 10);
803 
804  xfree (storage);
805  xfree (demangled_name);
806  return ret.release ();
807 }
808 
809 /* If FULL_NAME is the demangled name of a C++ function (including an
810  arg list, possibly including namespace/class qualifications),
811  return a new string containing only the function name (without the
812  arg list/class qualifications). Otherwise, return NULL. The
813  caller is responsible for freeing the memory in question. */
814 
815 char *
816 cp_func_name (const char *full_name)
817 {
819  struct demangle_component *ret_comp;
820  std::unique_ptr<demangle_parse_info> info;
821 
822  info = cp_demangled_name_to_comp (full_name, NULL);
823  if (!info)
824  return NULL;
825 
826  ret_comp = unqualified_name_from_comp (info->tree);
827 
828  if (ret_comp != NULL)
829  ret = cp_comp_to_string (ret_comp, 10);
830 
831  return ret.release ();
832 }
833 
834 /* Helper for cp_remove_params. DEMANGLED_NAME is the name of a
835  function, including parameters and (optionally) a return type.
836  Return the name of the function without parameters or return type,
837  or NULL if we can not parse the name. If REQUIRE_PARAMS is false,
838  then tolerate a non-existing or unbalanced parameter list. */
839 
841 cp_remove_params_1 (const char *demangled_name, bool require_params)
842 {
843  bool done = false;
844  struct demangle_component *ret_comp;
845  std::unique_ptr<demangle_parse_info> info;
847 
848  if (demangled_name == NULL)
849  return NULL;
850 
851  info = cp_demangled_name_to_comp (demangled_name, NULL);
852  if (info == NULL)
853  return NULL;
854 
855  /* First strip off any qualifiers, if we have a function or method. */
856  ret_comp = info->tree;
857  while (!done)
858  switch (ret_comp->type)
859  {
860  case DEMANGLE_COMPONENT_CONST:
861  case DEMANGLE_COMPONENT_RESTRICT:
862  case DEMANGLE_COMPONENT_VOLATILE:
863  case DEMANGLE_COMPONENT_CONST_THIS:
864  case DEMANGLE_COMPONENT_RESTRICT_THIS:
865  case DEMANGLE_COMPONENT_VOLATILE_THIS:
866  case DEMANGLE_COMPONENT_VENDOR_TYPE_QUAL:
867  ret_comp = d_left (ret_comp);
868  break;
869  default:
870  done = true;
871  break;
872  }
873 
874  /* What we have now should be a function. Return its name. */
875  if (ret_comp->type == DEMANGLE_COMPONENT_TYPED_NAME)
876  ret = cp_comp_to_string (d_left (ret_comp), 10);
877  else if (!require_params
878  && (ret_comp->type == DEMANGLE_COMPONENT_NAME
879  || ret_comp->type == DEMANGLE_COMPONENT_QUAL_NAME
880  || ret_comp->type == DEMANGLE_COMPONENT_TEMPLATE))
881  ret = cp_comp_to_string (ret_comp, 10);
882 
883  return ret;
884 }
885 
886 /* DEMANGLED_NAME is the name of a function, including parameters and
887  (optionally) a return type. Return the name of the function
888  without parameters or return type, or NULL if we can not parse the
889  name. */
890 
892 cp_remove_params (const char *demangled_name)
893 {
894  return cp_remove_params_1 (demangled_name, true);
895 }
896 
897 /* See cp-support.h. */
898 
900 cp_remove_params_if_any (const char *demangled_name, bool completion_mode)
901 {
902  /* Trying to remove parameters from the empty string fails. If
903  we're completing / matching everything, avoid returning NULL
904  which would make callers interpret the result as an error. */
905  if (demangled_name[0] == '\0' && completion_mode)
906  return gdb::unique_xmalloc_ptr<char> (xstrdup (""));
907 
908  gdb::unique_xmalloc_ptr<char> without_params
909  = cp_remove_params_1 (demangled_name, false);
910 
911  if (without_params == NULL && completion_mode)
912  {
913  std::string copy = demangled_name;
914 
915  while (!copy.empty ())
916  {
917  copy.pop_back ();
918  without_params = cp_remove_params_1 (copy.c_str (), false);
919  if (without_params != NULL)
920  break;
921  }
922  }
923 
924  return without_params;
925 }
926 
927 /* Here are some random pieces of trivia to keep in mind while trying
928  to take apart demangled names:
929 
930  - Names can contain function arguments or templates, so the process
931  has to be, to some extent recursive: maybe keep track of your
932  depth based on encountering <> and ().
933 
934  - Parentheses don't just have to happen at the end of a name: they
935  can occur even if the name in question isn't a function, because
936  a template argument might be a type that's a function.
937 
938  - Conversely, even if you're trying to deal with a function, its
939  demangled name might not end with ')': it could be a const or
940  volatile class method, in which case it ends with "const" or
941  "volatile".
942 
943  - Parentheses are also used in anonymous namespaces: a variable
944  'foo' in an anonymous namespace gets demangled as "(anonymous
945  namespace)::foo".
946 
947  - And operator names can contain parentheses or angle brackets. */
948 
949 /* FIXME: carlton/2003-03-13: We have several functions here with
950  overlapping functionality; can we combine them? Also, do they
951  handle all the above considerations correctly? */
952 
953 
954 /* This returns the length of first component of NAME, which should be
955  the demangled name of a C++ variable/function/method/etc.
956  Specifically, it returns the index of the first colon forming the
957  boundary of the first component: so, given 'A::foo' or 'A::B::foo'
958  it returns the 1, and given 'foo', it returns 0. */
959 
960 /* The character in NAME indexed by the return value is guaranteed to
961  always be either ':' or '\0'. */
962 
963 /* NOTE: carlton/2003-03-13: This function is currently only intended
964  for internal use: it's probably not entirely safe when called on
965  user-generated input, because some of the 'index += 2' lines in
966  cp_find_first_component_aux might go past the end of malformed
967  input. */
968 
969 unsigned int
971 {
972  return cp_find_first_component_aux (name, 0);
973 }
974 
975 /* Helper function for cp_find_first_component. Like that function,
976  it returns the length of the first component of NAME, but to make
977  the recursion easier, it also stops if it reaches an unexpected ')'
978  or '>' if the value of PERMISSIVE is nonzero. */
979 
980 static unsigned int
981 cp_find_first_component_aux (const char *name, int permissive)
982 {
983  unsigned int index = 0;
984  /* Operator names can show up in unexpected places. Since these can
985  contain parentheses or angle brackets, they can screw up the
986  recursion. But not every string 'operator' is part of an
987  operater name: e.g. you could have a variable 'cooperator'. So
988  this variable tells us whether or not we should treat the string
989  'operator' as starting an operator. */
990  int operator_possible = 1;
991 
992  for (;; ++index)
993  {
994  switch (name[index])
995  {
996  case '<':
997  /* Template; eat it up. The calls to cp_first_component
998  should only return (I hope!) when they reach the '>'
999  terminating the component or a '::' between two
1000  components. (Hence the '+ 2'.) */
1001  index += 1;
1002  for (index += cp_find_first_component_aux (name + index, 1);
1003  name[index] != '>';
1004  index += cp_find_first_component_aux (name + index, 1))
1005  {
1006  if (name[index] != ':')
1007  {
1009  return strlen (name);
1010  }
1011  index += 2;
1012  }
1013  operator_possible = 1;
1014  break;
1015  case '(':
1016  /* Similar comment as to '<'. */
1017  index += 1;
1018  for (index += cp_find_first_component_aux (name + index, 1);
1019  name[index] != ')';
1020  index += cp_find_first_component_aux (name + index, 1))
1021  {
1022  if (name[index] != ':')
1023  {
1025  return strlen (name);
1026  }
1027  index += 2;
1028  }
1029  operator_possible = 1;
1030  break;
1031  case '>':
1032  case ')':
1033  if (permissive)
1034  return index;
1035  else
1036  {
1038  return strlen (name);
1039  }
1040  case '\0':
1041  return index;
1042  case ':':
1043  /* ':' marks a component iff the next character is also a ':'.
1044  Otherwise it is probably malformed input. */
1045  if (name[index + 1] == ':')
1046  return index;
1047  break;
1048  case 'o':
1049  /* Operator names can screw up the recursion. */
1050  if (operator_possible
1051  && startswith (name + index, CP_OPERATOR_STR))
1052  {
1053  index += CP_OPERATOR_LEN;
1054  while (ISSPACE(name[index]))
1055  ++index;
1056  switch (name[index])
1057  {
1058  case '\0':
1059  return index;
1060  /* Skip over one less than the appropriate number of
1061  characters: the for loop will skip over the last
1062  one. */
1063  case '<':
1064  if (name[index + 1] == '<')
1065  index += 1;
1066  else
1067  index += 0;
1068  break;
1069  case '>':
1070  case '-':
1071  if (name[index + 1] == '>')
1072  index += 1;
1073  else
1074  index += 0;
1075  break;
1076  case '(':
1077  index += 1;
1078  break;
1079  default:
1080  index += 0;
1081  break;
1082  }
1083  }
1084  operator_possible = 0;
1085  break;
1086  case ' ':
1087  case ',':
1088  case '.':
1089  case '&':
1090  case '*':
1091  /* NOTE: carlton/2003-04-18: I'm not sure what the precise
1092  set of relevant characters are here: it's necessary to
1093  include any character that can show up before 'operator'
1094  in a demangled name, and it's safe to include any
1095  character that can't be part of an identifier's name. */
1096  operator_possible = 1;
1097  break;
1098  default:
1099  operator_possible = 0;
1100  break;
1101  }
1102  }
1103 }
1104 
1105 /* Complain about a demangled name that we don't know how to parse.
1106  NAME is the demangled name in question. */
1107 
1108 static void
1110 {
1112  "unexpected demangled name '%s'", name);
1113 }
1114 
1115 /* If NAME is the fully-qualified name of a C++
1116  function/variable/method/etc., this returns the length of its
1117  entire prefix: all of the namespaces and classes that make up its
1118  name. Given 'A::foo', it returns 1, given 'A::B::foo', it returns
1119  4, given 'foo', it returns 0. */
1120 
1121 unsigned int
1123 {
1124  unsigned int current_len = cp_find_first_component (name);
1125  unsigned int previous_len = 0;
1126 
1127  while (name[current_len] != '\0')
1128  {
1129  gdb_assert (name[current_len] == ':');
1130  previous_len = current_len;
1131  /* Skip the '::'. */
1132  current_len += 2;
1133  current_len += cp_find_first_component (name + current_len);
1134  }
1135 
1136  return previous_len;
1137 }
1138 
1139 /* Overload resolution functions. */
1140 
1141 /* Test to see if SYM is a symbol that we haven't seen corresponding
1142  to a function named OLOAD_NAME. If so, add it to the current
1143  completion list. */
1144 
1145 static void
1147  const char *oload_name)
1148 {
1149  int newsize;
1150  int i;
1152 
1153  /* If there is no type information, we can't do anything, so
1154  skip. */
1155  if (SYMBOL_TYPE (sym) == NULL)
1156  return;
1157 
1158  /* skip any symbols that we've already considered. */
1159  for (i = 0; i < sym_return_val_index; ++i)
1160  if (strcmp (SYMBOL_LINKAGE_NAME (sym),
1162  return;
1163 
1164  /* Get the demangled name without parameters */
1165  sym_name = cp_remove_params (SYMBOL_NATURAL_NAME (sym));
1166  if (!sym_name)
1167  return;
1168 
1169  /* skip symbols that cannot match */
1170  if (strcmp (sym_name.get (), oload_name) != 0)
1171  return;
1172 
1173  /* We have a match for an overload instance, so add SYM to the
1174  current list of overload instances */
1176  {
1177  newsize = (sym_return_val_size *= 2) * sizeof (struct symbol *);
1178  sym_return_val = (struct symbol **)
1179  xrealloc ((char *) sym_return_val, newsize);
1180  }
1183 }
1184 
1185 /* Return a null-terminated list of pointers to function symbols that
1186  are named FUNC_NAME and are visible within NAMESPACE. */
1187 
1188 struct symbol **
1189 make_symbol_overload_list (const char *func_name,
1190  const char *the_namespace)
1191 {
1192  struct cleanup *old_cleanups;
1193  const char *name;
1194 
1195  sym_return_val_size = 100;
1198  sym_return_val[0] = NULL;
1199 
1200  old_cleanups = make_cleanup (xfree, sym_return_val);
1201 
1202  make_symbol_overload_list_using (func_name, the_namespace);
1203 
1204  if (the_namespace[0] == '\0')
1205  name = func_name;
1206  else
1207  {
1208  char *concatenated_name
1209  = (char *) alloca (strlen (the_namespace) + 2 + strlen (func_name) + 1);
1210  strcpy (concatenated_name, the_namespace);
1211  strcat (concatenated_name, "::");
1212  strcat (concatenated_name, func_name);
1213  name = concatenated_name;
1214  }
1215 
1217 
1218  discard_cleanups (old_cleanups);
1219 
1220  return sym_return_val;
1221 }
1222 
1223 /* Add all symbols with a name matching NAME in BLOCK to the overload
1224  list. */
1225 
1226 static void
1228  const struct block *block)
1229 {
1230  struct block_iterator iter;
1231  struct symbol *sym;
1232 
1234 
1235  ALL_BLOCK_SYMBOLS_WITH_NAME (block, lookup_name, iter, sym)
1237 }
1238 
1239 /* Adds the function FUNC_NAME from NAMESPACE to the overload set. */
1240 
1241 static void
1243  const char *the_namespace)
1244 {
1245  const char *name;
1246  const struct block *block = NULL;
1247 
1248  if (the_namespace[0] == '\0')
1249  name = func_name;
1250  else
1251  {
1252  char *concatenated_name
1253  = (char *) alloca (strlen (the_namespace) + 2 + strlen (func_name) + 1);
1254 
1255  strcpy (concatenated_name, the_namespace);
1256  strcat (concatenated_name, "::");
1257  strcat (concatenated_name, func_name);
1258  name = concatenated_name;
1259  }
1260 
1261  /* Look in the static block. */
1263  if (block)
1265 
1266  /* Look in the global block. */
1268  if (block)
1270 
1271 }
1272 
1273 /* Search the namespace of the given type and namespace of and public
1274  base types. */
1275 
1276 static void
1278  const char *func_name)
1279 {
1280  char *the_namespace;
1281  const char *type_name;
1282  int i, prefix_len;
1283 
1284  while (TYPE_CODE (type) == TYPE_CODE_PTR
1285  || TYPE_IS_REFERENCE (type)
1288  {
1289  if (TYPE_CODE (type) == TYPE_CODE_TYPEDEF)
1290  type = check_typedef(type);
1291  else
1293  }
1294 
1295  type_name = TYPE_NAME (type);
1296 
1297  if (type_name == NULL)
1298  return;
1299 
1300  prefix_len = cp_entire_prefix_len (type_name);
1301 
1302  if (prefix_len != 0)
1303  {
1304  the_namespace = (char *) alloca (prefix_len + 1);
1305  strncpy (the_namespace, type_name, prefix_len);
1306  the_namespace[prefix_len] = '\0';
1307 
1308  make_symbol_overload_list_namespace (func_name, the_namespace);
1309  }
1310 
1311  /* Check public base type */
1312  if (TYPE_CODE (type) == TYPE_CODE_STRUCT)
1313  for (i = 0; i < TYPE_N_BASECLASSES (type); i++)
1314  {
1315  if (BASETYPE_VIA_PUBLIC (type, i))
1317  i),
1318  func_name);
1319  }
1320 }
1321 
1322 /* Adds the overload list overload candidates for FUNC_NAME found
1323  through argument dependent lookup. */
1324 
1325 struct symbol **
1326 make_symbol_overload_list_adl (struct type **arg_types, int nargs,
1327  const char *func_name)
1328 {
1329  int i;
1330 
1332 
1333  for (i = 1; i <= nargs; i++)
1334  make_symbol_overload_list_adl_namespace (arg_types[i - 1],
1335  func_name);
1336 
1337  return sym_return_val;
1338 }
1339 
1340 /* This applies the using directives to add namespaces to search in,
1341  and then searches for overloads in all of those namespaces. It
1342  adds the symbols found to sym_return_val. Arguments are as in
1343  make_symbol_overload_list. */
1344 
1345 static void
1346 make_symbol_overload_list_using (const char *func_name,
1347  const char *the_namespace)
1348 {
1349  struct using_direct *current;
1350  const struct block *block;
1351 
1352  /* First, go through the using directives. If any of them apply,
1353  look in the appropriate namespaces for new functions to match
1354  on. */
1355 
1356  for (block = get_selected_block (0);
1357  block != NULL;
1359  for (current = block_using (block);
1360  current != NULL;
1361  current = current->next)
1362  {
1363  /* Prevent recursive calls. */
1364  if (current->searched)
1365  continue;
1366 
1367  /* If this is a namespace alias or imported declaration ignore
1368  it. */
1369  if (current->alias != NULL || current->declaration != NULL)
1370  continue;
1371 
1372  if (strcmp (the_namespace, current->import_dest) == 0)
1373  {
1374  /* Mark this import as searched so that the recursive call
1375  does not search it again. */
1376  scoped_restore reset_directive_searched
1377  = make_scoped_restore (&current->searched, 1);
1378 
1380  current->import_src);
1381  }
1382  }
1383 
1384  /* Now, add names for this namespace. */
1385  make_symbol_overload_list_namespace (func_name, the_namespace);
1386 }
1387 
1388 /* This does the bulk of the work of finding overloaded symbols.
1389  FUNC_NAME is the name of the overloaded function we're looking for
1390  (possibly including namespace info). */
1391 
1392 static void
1394 {
1395  struct compunit_symtab *cust;
1396  struct objfile *objfile;
1397  const struct block *b, *surrounding_static_block = 0;
1398 
1399  /* Look through the partial symtabs for all symbols which begin by
1400  matching FUNC_NAME. Make sure we read that symbol table in. */
1401 
1403  {
1404  if (objfile->sf)
1406  }
1407 
1408  /* Search upwards from currently selected frame (so that we can
1409  complete on local vars. */
1410 
1411  for (b = get_selected_block (0); b != NULL; b = BLOCK_SUPERBLOCK (b))
1412  make_symbol_overload_list_block (func_name, b);
1413 
1414  surrounding_static_block = block_static_block (get_selected_block (0));
1415 
1416  /* Go through the symtabs and check the externs and statics for
1417  symbols which match. */
1418 
1419  ALL_COMPUNITS (objfile, cust)
1420  {
1421  QUIT;
1423  make_symbol_overload_list_block (func_name, b);
1424  }
1425 
1426  ALL_COMPUNITS (objfile, cust)
1427  {
1428  QUIT;
1430  /* Don't do this block twice. */
1431  if (b == surrounding_static_block)
1432  continue;
1433  make_symbol_overload_list_block (func_name, b);
1434  }
1435 }
1436 
1437 /* Lookup the rtti type for a class name. */
1438 
1439 struct type *
1440 cp_lookup_rtti_type (const char *name, struct block *block)
1441 {
1442  struct symbol * rtti_sym;
1443  struct type * rtti_type;
1444 
1445  /* Use VAR_DOMAIN here as NAME may be a typedef. PR 18141, 18417.
1446  Classes "live" in both STRUCT_DOMAIN and VAR_DOMAIN. */
1447  rtti_sym = lookup_symbol (name, block, VAR_DOMAIN, NULL).symbol;
1448 
1449  if (rtti_sym == NULL)
1450  {
1451  warning (_("RTTI symbol not found for class '%s'"), name);
1452  return NULL;
1453  }
1454 
1455  if (SYMBOL_CLASS (rtti_sym) != LOC_TYPEDEF)
1456  {
1457  warning (_("RTTI symbol for class '%s' is not a type"), name);
1458  return NULL;
1459  }
1460 
1461  rtti_type = check_typedef (SYMBOL_TYPE (rtti_sym));
1462 
1463  switch (TYPE_CODE (rtti_type))
1464  {
1465  case TYPE_CODE_STRUCT:
1466  break;
1467  case TYPE_CODE_NAMESPACE:
1468  /* chastain/2003-11-26: the symbol tables often contain fake
1469  symbols for namespaces with the same name as the struct.
1470  This warning is an indication of a bug in the lookup order
1471  or a bug in the way that the symbol tables are populated. */
1472  warning (_("RTTI symbol for class '%s' is a namespace"), name);
1473  return NULL;
1474  default:
1475  warning (_("RTTI symbol for class '%s' has bad type"), name);
1476  return NULL;
1477  }
1478 
1479  return rtti_type;
1480 }
1481 
1482 #ifdef HAVE_WORKING_FORK
1483 
1484 /* If nonzero, attempt to catch crashes in the demangler and print
1485  useful debugging information. */
1486 
1488 
1489 /* Stack context and environment for demangler crash recovery. */
1490 
1492 
1493 /* If nonzero, attempt to dump core from the signal handler. */
1494 
1496 
1497 /* Signal handler for gdb_demangle. */
1498 
1499 static void
1501 {
1503  {
1504  if (fork () == 0)
1505  dump_core ();
1506 
1508  }
1509 
1511 }
1512 
1513 #endif
1514 
1515 /* A wrapper for bfd_demangle. */
1516 
1517 char *
1518 gdb_demangle (const char *name, int options)
1519 {
1520  char *result = NULL;
1521  int crash_signal = 0;
1522 
1523 #ifdef HAVE_WORKING_FORK
1524 #if defined (HAVE_SIGACTION) && defined (SA_RESTART)
1525  struct sigaction sa, old_sa;
1526 #else
1527  sighandler_t ofunc;
1528 #endif
1529  static int core_dump_allowed = -1;
1530 
1531  if (core_dump_allowed == -1)
1532  {
1533  core_dump_allowed = can_dump_core (LIMIT_CUR);
1534 
1535  if (!core_dump_allowed)
1537  }
1538 
1540  {
1541 #if defined (HAVE_SIGACTION) && defined (SA_RESTART)
1542  sa.sa_handler = gdb_demangle_signal_handler;
1543  sigemptyset (&sa.sa_mask);
1544 #ifdef HAVE_SIGALTSTACK
1545  sa.sa_flags = SA_ONSTACK;
1546 #else
1547  sa.sa_flags = 0;
1548 #endif
1549  sigaction (SIGSEGV, &sa, &old_sa);
1550 #else
1551  ofunc = signal (SIGSEGV, gdb_demangle_signal_handler);
1552 #endif
1553 
1554  crash_signal = SIGSETJMP (gdb_demangle_jmp_buf);
1555  }
1556 #endif
1557 
1558  if (crash_signal == 0)
1559  result = bfd_demangle (NULL, name, options);
1560 
1561 #ifdef HAVE_WORKING_FORK
1563  {
1564 #if defined (HAVE_SIGACTION) && defined (SA_RESTART)
1565  sigaction (SIGSEGV, &old_sa, NULL);
1566 #else
1567  signal (SIGSEGV, ofunc);
1568 #endif
1569 
1570  if (crash_signal != 0)
1571  {
1572  static int error_reported = 0;
1573 
1574  if (!error_reported)
1575  {
1576  std::string short_msg
1577  = string_printf (_("unable to demangle '%s' "
1578  "(demangler failed with signal %d)"),
1579  name, crash_signal);
1580 
1581  std::string long_msg
1582  = string_printf ("%s:%d: %s: %s", __FILE__, __LINE__,
1583  "demangler-warning", short_msg.c_str ());
1584 
1587 
1588  begin_line ();
1589  if (core_dump_allowed)
1591  _("%s\nAttempting to dump core.\n"),
1592  long_msg.c_str ());
1593  else
1594  warn_cant_dump_core (long_msg.c_str ());
1595 
1596  demangler_warning (__FILE__, __LINE__, "%s", short_msg.c_str ());
1597 
1598  error_reported = 1;
1599  }
1600 
1601  result = NULL;
1602  }
1603  }
1604 #endif
1605 
1606  return result;
1607 }
1608 
1609 /* See cp-support.h. */
1610 
1611 int
1612 gdb_sniff_from_mangled_name (const char *mangled, char **demangled)
1613 {
1614  *demangled = gdb_demangle (mangled, DMGL_PARAMS | DMGL_ANSI);
1615  return *demangled != NULL;
1616 }
1617 
1618 /* See cp-support.h. */
1619 
1620 unsigned int
1621 cp_search_name_hash (const char *search_name)
1622 {
1623  /* cp_entire_prefix_len assumes a fully-qualified name with no
1624  leading "::". */
1625  if (startswith (search_name, "::"))
1626  search_name += 2;
1627 
1628  unsigned int prefix_len = cp_entire_prefix_len (search_name);
1629  if (prefix_len != 0)
1630  search_name += prefix_len + 2;
1631 
1632  unsigned int hash = 0;
1633  for (const char *string = search_name; *string != '\0'; ++string)
1634  {
1635  string = skip_spaces (string);
1636 
1637  if (*string == '(')
1638  break;
1639 
1640  /* Ignore ABI tags such as "[abi:cxx11]. */
1641  if (*string == '['
1642  && startswith (string + 1, "abi:")
1643  && string[5] != ':')
1644  break;
1645 
1646  hash = SYMBOL_HASH_NEXT (hash, *string);
1647  }
1648  return hash;
1649 }
1650 
1651 /* Helper for cp_symbol_name_matches (i.e., symbol_name_matcher_ftype
1652  implementation for symbol_name_match_type::WILD matching). Split
1653  to a separate function for unit-testing convenience.
1654 
1655  If SYMBOL_SEARCH_NAME has more scopes than LOOKUP_NAME, we try to
1656  match ignoring the extra leading scopes of SYMBOL_SEARCH_NAME.
1657  This allows conveniently setting breakpoints on functions/methods
1658  inside any namespace/class without specifying the fully-qualified
1659  name.
1660 
1661  E.g., these match:
1662 
1663  [symbol search name] [lookup name]
1664  foo::bar::func foo::bar::func
1665  foo::bar::func bar::func
1666  foo::bar::func func
1667 
1668  While these don't:
1669 
1670  [symbol search name] [lookup name]
1671  foo::zbar::func bar::func
1672  foo::bar::func foo::func
1673 
1674  See more examples in the test_cp_symbol_name_matches selftest
1675  function below.
1676 
1677  See symbol_name_matcher_ftype for description of SYMBOL_SEARCH_NAME
1678  and COMP_MATCH_RES.
1679 
1680  LOOKUP_NAME/LOOKUP_NAME_LEN is the name we're looking up.
1681 
1682  See strncmp_iw_with_mode for description of MODE.
1683 */
1684 
1685 static bool
1687  const char *lookup_name,
1688  size_t lookup_name_len,
1689  strncmp_iw_mode mode,
1690  completion_match_result *comp_match_res)
1691 {
1692  const char *sname = symbol_search_name;
1693  completion_match_for_lcd *match_for_lcd
1694  = (comp_match_res != NULL ? &comp_match_res->match_for_lcd : NULL);
1695 
1696  while (true)
1697  {
1698  if (strncmp_iw_with_mode (sname, lookup_name, lookup_name_len,
1699  mode, language_cplus, match_for_lcd) == 0)
1700  {
1701  if (comp_match_res != NULL)
1702  {
1703  /* Note here we set different MATCH and MATCH_FOR_LCD
1704  strings. This is because with
1705 
1706  (gdb) b push_bac[TAB]
1707 
1708  we want the completion matches to list
1709 
1710  std::vector<int>::push_back(...)
1711  std::vector<char>::push_back(...)
1712 
1713  etc., which are SYMBOL_SEARCH_NAMEs, while we want
1714  the input line to auto-complete to
1715 
1716  (gdb) push_back(...)
1717 
1718  which is SNAME, not to
1719 
1720  (gdb) std::vector<
1721 
1722  which would be the regular common prefix between all
1723  the matches otherwise. */
1724  comp_match_res->set_match (symbol_search_name, sname);
1725  }
1726  return true;
1727  }
1728 
1729  unsigned int len = cp_find_first_component (sname);
1730 
1731  if (sname[len] == '\0')
1732  return false;
1733 
1734  gdb_assert (sname[len] == ':');
1735  /* Skip the '::'. */
1736  sname += len + 2;
1737  }
1738 }
1739 
1740 /* C++ symbol_name_matcher_ftype implementation. */
1741 
1742 static bool
1744  const lookup_name_info &lookup_name,
1745  completion_match_result *comp_match_res)
1746 {
1747  /* Get the demangled name. */
1748  const std::string &name = lookup_name.cplus ().lookup_name ();
1749  completion_match_for_lcd *match_for_lcd
1750  = (comp_match_res != NULL ? &comp_match_res->match_for_lcd : NULL);
1751  strncmp_iw_mode mode = (lookup_name.completion_mode ()
1754 
1756  name.c_str (), name.size (),
1757  mode, language_cplus, match_for_lcd) == 0)
1758  {
1759  if (comp_match_res != NULL)
1760  comp_match_res->set_match (symbol_search_name);
1761  return true;
1762  }
1763 
1764  return false;
1765 }
1766 
1767 /* C++ symbol_name_matcher_ftype implementation for wild matches.
1768  Defers work to cp_symbol_name_matches_1. */
1769 
1770 static bool
1772  const lookup_name_info &lookup_name,
1773  completion_match_result *comp_match_res)
1774 {
1775  /* Get the demangled name. */
1776  const std::string &name = lookup_name.cplus ().lookup_name ();
1777 
1778  strncmp_iw_mode mode = (lookup_name.completion_mode ()
1781 
1783  name.c_str (), name.size (),
1784  mode, comp_match_res);
1785 }
1786 
1787 /* See cp-support.h. */
1788 
1791 {
1792  switch (lookup_name.match_type ())
1793  {
1799  return cp_symbol_name_matches;
1800  }
1801 
1803 }
1804 
1805 #if GDB_SELF_TEST
1806 
1807 namespace selftests {
1808 
1809 void
1810 test_cp_symbol_name_matches ()
1811 {
1812 #define CHECK_MATCH(SYMBOL, INPUT) \
1813  SELF_CHECK (cp_symbol_name_matches_1 (SYMBOL, \
1814  INPUT, sizeof (INPUT) - 1, \
1815  strncmp_iw_mode::MATCH_PARAMS, \
1816  NULL))
1817 
1818 #define CHECK_NOT_MATCH(SYMBOL, INPUT) \
1819  SELF_CHECK (!cp_symbol_name_matches_1 (SYMBOL, \
1820  INPUT, sizeof (INPUT) - 1, \
1821  strncmp_iw_mode::MATCH_PARAMS, \
1822  NULL))
1823 
1824  /* Like CHECK_MATCH, and also check that INPUT (and all substrings
1825  that start at index 0) completes to SYMBOL. */
1826 #define CHECK_MATCH_C(SYMBOL, INPUT) \
1827  do \
1828  { \
1829  CHECK_MATCH (SYMBOL, INPUT); \
1830  for (size_t i = 0; i < sizeof (INPUT) - 1; i++) \
1831  SELF_CHECK (cp_symbol_name_matches_1 (SYMBOL, INPUT, i, \
1832  strncmp_iw_mode::NORMAL, \
1833  NULL)); \
1834  } while (0)
1835 
1836  /* Like CHECK_NOT_MATCH, and also check that INPUT does NOT complete
1837  to SYMBOL. */
1838 #define CHECK_NOT_MATCH_C(SYMBOL, INPUT) \
1839  do \
1840  { \
1841  CHECK_NOT_MATCH (SYMBOL, INPUT); \
1842  SELF_CHECK (!cp_symbol_name_matches_1 (SYMBOL, INPUT, \
1843  sizeof (INPUT) - 1, \
1844  strncmp_iw_mode::NORMAL, \
1845  NULL)); \
1846  } while (0)
1847 
1848  /* Lookup name without parens matches all overloads. */
1849  CHECK_MATCH_C ("function()", "function");
1850  CHECK_MATCH_C ("function(int)", "function");
1851 
1852  /* Check whitespace around parameters is ignored. */
1853  CHECK_MATCH_C ("function()", "function ()");
1854  CHECK_MATCH_C ("function ( )", "function()");
1855  CHECK_MATCH_C ("function ()", "function( )");
1856  CHECK_MATCH_C ("func(int)", "func( int )");
1857  CHECK_MATCH_C ("func(int)", "func ( int ) ");
1858  CHECK_MATCH_C ("func ( int )", "func( int )");
1859  CHECK_MATCH_C ("func ( int )", "func ( int ) ");
1860 
1861  /* Check symbol name prefixes aren't incorrectly matched. */
1862  CHECK_NOT_MATCH ("func", "function");
1863  CHECK_NOT_MATCH ("function", "func");
1864  CHECK_NOT_MATCH ("function()", "func");
1865 
1866  /* Check that if the lookup name includes parameters, only the right
1867  overload matches. */
1868  CHECK_MATCH_C ("function(int)", "function(int)");
1869  CHECK_NOT_MATCH_C ("function(int)", "function()");
1870 
1871  /* Check that whitespace within symbol names is not ignored. */
1872  CHECK_NOT_MATCH_C ("function", "func tion");
1873  CHECK_NOT_MATCH_C ("func__tion", "func_ _tion");
1874  CHECK_NOT_MATCH_C ("func11tion", "func1 1tion");
1875 
1876  /* Check the converse, which can happen with template function,
1877  where the return type is part of the demangled name. */
1878  CHECK_NOT_MATCH_C ("func tion", "function");
1879  CHECK_NOT_MATCH_C ("func1 1tion", "func11tion");
1880  CHECK_NOT_MATCH_C ("func_ _tion", "func__tion");
1881 
1882  /* Within parameters too. */
1883  CHECK_NOT_MATCH_C ("func(param)", "func(par am)");
1884 
1885  /* Check handling of whitespace around C++ operators. */
1886  CHECK_NOT_MATCH_C ("operator<<", "opera tor<<");
1887  CHECK_NOT_MATCH_C ("operator<<", "operator< <");
1888  CHECK_NOT_MATCH_C ("operator<<", "operator < <");
1889  CHECK_NOT_MATCH_C ("operator==", "operator= =");
1890  CHECK_NOT_MATCH_C ("operator==", "operator = =");
1891  CHECK_MATCH_C ("operator<<", "operator <<");
1892  CHECK_MATCH_C ("operator<<()", "operator <<");
1893  CHECK_NOT_MATCH_C ("operator<<()", "operator<<(int)");
1894  CHECK_NOT_MATCH_C ("operator<<(int)", "operator<<()");
1895  CHECK_MATCH_C ("operator==", "operator ==");
1896  CHECK_MATCH_C ("operator==()", "operator ==");
1897  CHECK_MATCH_C ("operator <<", "operator<<");
1898  CHECK_MATCH_C ("operator ==", "operator==");
1899  CHECK_MATCH_C ("operator bool", "operator bool");
1900  CHECK_MATCH_C ("operator bool ()", "operator bool");
1901  CHECK_MATCH_C ("operatorX<<", "operatorX < <");
1902  CHECK_MATCH_C ("Xoperator<<", "Xoperator < <");
1903 
1904  CHECK_MATCH_C ("operator()(int)", "operator()(int)");
1905  CHECK_MATCH_C ("operator()(int)", "operator ( ) ( int )");
1906  CHECK_MATCH_C ("operator()<long>(int)", "operator ( ) < long > ( int )");
1907  /* The first "()" is not the parameter list. */
1908  CHECK_NOT_MATCH ("operator()(int)", "operator");
1909 
1910  /* Misc user-defined operator tests. */
1911 
1912  CHECK_NOT_MATCH_C ("operator/=()", "operator ^=");
1913  /* Same length at end of input. */
1914  CHECK_NOT_MATCH_C ("operator>>", "operator[]");
1915  /* Same length but not at end of input. */
1916  CHECK_NOT_MATCH_C ("operator>>()", "operator[]()");
1917 
1918  CHECK_MATCH_C ("base::operator char*()", "base::operator char*()");
1919  CHECK_MATCH_C ("base::operator char*()", "base::operator char * ()");
1920  CHECK_MATCH_C ("base::operator char**()", "base::operator char * * ()");
1921  CHECK_MATCH ("base::operator char**()", "base::operator char * *");
1922  CHECK_MATCH_C ("base::operator*()", "base::operator*()");
1923  CHECK_NOT_MATCH_C ("base::operator char*()", "base::operatorc");
1924  CHECK_NOT_MATCH ("base::operator char*()", "base::operator char");
1925  CHECK_NOT_MATCH ("base::operator char*()", "base::operat");
1926 
1927  /* Check handling of whitespace around C++ scope operators. */
1928  CHECK_NOT_MATCH_C ("foo::bar", "foo: :bar");
1929  CHECK_MATCH_C ("foo::bar", "foo :: bar");
1930  CHECK_MATCH_C ("foo :: bar", "foo::bar");
1931 
1932  CHECK_MATCH_C ("abc::def::ghi()", "abc::def::ghi()");
1933  CHECK_MATCH_C ("abc::def::ghi ( )", "abc::def::ghi()");
1934  CHECK_MATCH_C ("abc::def::ghi()", "abc::def::ghi ( )");
1935  CHECK_MATCH_C ("function()", "function()");
1936  CHECK_MATCH_C ("bar::function()", "bar::function()");
1937 
1938  /* Wild matching tests follow. */
1939 
1940  /* Tests matching symbols in some scope. */
1941  CHECK_MATCH_C ("foo::function()", "function");
1942  CHECK_MATCH_C ("foo::function(int)", "function");
1943  CHECK_MATCH_C ("foo::bar::function()", "function");
1944  CHECK_MATCH_C ("bar::function()", "bar::function");
1945  CHECK_MATCH_C ("foo::bar::function()", "bar::function");
1946  CHECK_MATCH_C ("foo::bar::function(int)", "bar::function");
1947 
1948  /* Same, with parameters in the lookup name. */
1949  CHECK_MATCH_C ("foo::function()", "function()");
1950  CHECK_MATCH_C ("foo::bar::function()", "function()");
1951  CHECK_MATCH_C ("foo::function(int)", "function(int)");
1952  CHECK_MATCH_C ("foo::function()", "foo::function()");
1953  CHECK_MATCH_C ("foo::bar::function()", "bar::function()");
1954  CHECK_MATCH_C ("foo::bar::function(int)", "bar::function(int)");
1955  CHECK_MATCH_C ("bar::function()", "bar::function()");
1956 
1957  CHECK_NOT_MATCH_C ("foo::bar::function(int)", "bar::function()");
1958 
1959  CHECK_MATCH_C ("(anonymous namespace)::bar::function(int)",
1960  "bar::function(int)");
1961  CHECK_MATCH_C ("foo::(anonymous namespace)::bar::function(int)",
1962  "function(int)");
1963 
1964  /* Lookup scope wider than symbol scope, should not match. */
1965  CHECK_NOT_MATCH_C ("function()", "bar::function");
1966  CHECK_NOT_MATCH_C ("function()", "bar::function()");
1967 
1968  /* Explicit global scope doesn't match. */
1969  CHECK_NOT_MATCH_C ("foo::function()", "::function");
1970  CHECK_NOT_MATCH_C ("foo::function()", "::function()");
1971  CHECK_NOT_MATCH_C ("foo::function(int)", "::function()");
1972  CHECK_NOT_MATCH_C ("foo::function(int)", "::function(int)");
1973 
1974  /* Test ABI tag matching/ignoring. */
1975 
1976  /* If the symbol name has an ABI tag, but the lookup name doesn't,
1977  then the ABI tag in the symbol name is ignored. */
1978  CHECK_MATCH_C ("function[abi:foo]()", "function");
1979  CHECK_MATCH_C ("function[abi:foo](int)", "function");
1980  CHECK_MATCH_C ("function[abi:foo]()", "function ()");
1981  CHECK_NOT_MATCH_C ("function[abi:foo]()", "function (int)");
1982 
1983  CHECK_MATCH_C ("function[abi:foo]()", "function[abi:foo]");
1984  CHECK_MATCH_C ("function[abi:foo](int)", "function[abi:foo]");
1985  CHECK_MATCH_C ("function[abi:foo]()", "function[abi:foo] ()");
1986  CHECK_MATCH_C ("function[abi:foo][abi:bar]()", "function");
1987  CHECK_MATCH_C ("function[abi:foo][abi:bar](int)", "function");
1988  CHECK_MATCH_C ("function[abi:foo][abi:bar]()", "function[abi:foo]");
1989  CHECK_MATCH_C ("function[abi:foo][abi:bar](int)", "function[abi:foo]");
1990  CHECK_MATCH_C ("function[abi:foo][abi:bar]()", "function[abi:foo] ()");
1991  CHECK_NOT_MATCH_C ("function[abi:foo][abi:bar]()", "function[abi:foo] (int)");
1992 
1993  CHECK_MATCH_C ("function [abi:foo][abi:bar] ( )", "function [abi:foo]");
1994 
1995  /* If the symbol name does not have an ABI tag, while the lookup
1996  name has one, then there's no match. */
1997  CHECK_NOT_MATCH_C ("function()", "function[abi:foo]()");
1998  CHECK_NOT_MATCH_C ("function()", "function[abi:foo]");
1999 }
2000 
2001 /* If non-NULL, return STR wrapped in quotes. Otherwise, return a
2002  "<null>" string (with no quotes). */
2003 
2004 static std::string
2005 quote (const char *str)
2006 {
2007  if (str != NULL)
2008  return std::string (1, '\"') + str + '\"';
2009  else
2010  return "<null>";
2011 }
2012 
2013 /* Check that removing parameter info out of NAME produces EXPECTED.
2014  COMPLETION_MODE indicates whether we're testing normal and
2015  completion mode. FILE and LINE are used to provide better test
2016  location information in case ithe check fails. */
2017 
2018 static void
2019 check_remove_params (const char *file, int line,
2020  const char *name, const char *expected,
2021  bool completion_mode)
2022 {
2024  = cp_remove_params_if_any (name, completion_mode);
2025 
2026  if ((expected == NULL) != (result == NULL)
2027  || (expected != NULL
2028  && strcmp (result.get (), expected) != 0))
2029  {
2030  error (_("%s:%d: make-paramless self-test failed: (completion=%d) "
2031  "\"%s\" -> %s, expected %s"),
2032  file, line, completion_mode, name,
2033  quote (result.get ()).c_str (), quote (expected).c_str ());
2034  }
2035 }
2036 
2037 /* Entry point for cp_remove_params unit tests. */
2038 
2039 static void
2040 test_cp_remove_params ()
2041 {
2042  /* Check that removing parameter info out of NAME produces EXPECTED.
2043  Checks both normal and completion modes. */
2044 #define CHECK(NAME, EXPECTED) \
2045  do \
2046  { \
2047  check_remove_params (__FILE__, __LINE__, NAME, EXPECTED, false); \
2048  check_remove_params (__FILE__, __LINE__, NAME, EXPECTED, true); \
2049  } \
2050  while (0)
2051 
2052  /* Similar, but used when NAME is incomplete -- i.e., is has
2053  unbalanced parentheses. In this case, looking for the exact name
2054  should fail / return empty. */
2055 #define CHECK_INCOMPL(NAME, EXPECTED) \
2056  do \
2057  { \
2058  check_remove_params (__FILE__, __LINE__, NAME, NULL, false); \
2059  check_remove_params (__FILE__, __LINE__, NAME, EXPECTED, true); \
2060  } \
2061  while (0)
2062 
2063  CHECK ("function()", "function");
2064  CHECK_INCOMPL ("function(", "function");
2065  CHECK ("function() const", "function");
2066 
2067  CHECK ("(anonymous namespace)::A::B::C",
2068  "(anonymous namespace)::A::B::C");
2069 
2070  CHECK ("A::(anonymous namespace)",
2071  "A::(anonymous namespace)");
2072 
2073  CHECK_INCOMPL ("A::(anonymou", "A");
2074 
2075  CHECK ("A::foo<int>()",
2076  "A::foo<int>");
2077 
2078  CHECK_INCOMPL ("A::foo<int>(",
2079  "A::foo<int>");
2080 
2081  CHECK ("A::foo<(anonymous namespace)::B>::func(int)",
2082  "A::foo<(anonymous namespace)::B>::func");
2083 
2084  CHECK_INCOMPL ("A::foo<(anonymous namespace)::B>::func(in",
2085  "A::foo<(anonymous namespace)::B>::func");
2086 
2087  CHECK_INCOMPL ("A::foo<(anonymous namespace)::B>::",
2088  "A::foo<(anonymous namespace)::B>");
2089 
2090  CHECK_INCOMPL ("A::foo<(anonymous namespace)::B>:",
2091  "A::foo<(anonymous namespace)::B>");
2092 
2093  CHECK ("A::foo<(anonymous namespace)::B>",
2094  "A::foo<(anonymous namespace)::B>");
2095 
2096  CHECK_INCOMPL ("A::foo<(anonymous namespace)::B",
2097  "A::foo");
2098 
2099  /* Shouldn't this parse? Looks like a bug in
2100  cp_demangled_name_to_comp. See PR c++/22411. */
2101 #if 0
2102  CHECK ("A::foo<void(int)>::func(int)",
2103  "A::foo<void(int)>::func");
2104 #else
2105  CHECK_INCOMPL ("A::foo<void(int)>::func(int)",
2106  "A::foo");
2107 #endif
2108 
2109  CHECK_INCOMPL ("A::foo<void(int",
2110  "A::foo");
2111 
2112 #undef CHECK
2113 #undef CHECK_INCOMPL
2114 }
2115 
2116 } // namespace selftests
2117 
2118 #endif /* GDB_SELF_CHECK */
2119 
2120 /* Don't allow just "maintenance cplus". */
2121 
2122 static void
2123 maint_cplus_command (const char *arg, int from_tty)
2124 {
2125  printf_unfiltered (_("\"maintenance cplus\" must be followed "
2126  "by the name of a command.\n"));
2128  "maintenance cplus ",
2130 }
2131 
2132 /* This is a front end for cp_find_first_component, for unit testing.
2133  Be careful when using it: see the NOTE above
2134  cp_find_first_component. */
2135 
2136 static void
2137 first_component_command (const char *arg, int from_tty)
2138 {
2139  int len;
2140  char *prefix;
2141 
2142  if (!arg)
2143  return;
2144 
2145  len = cp_find_first_component (arg);
2146  prefix = (char *) alloca (len + 1);
2147 
2148  memcpy (prefix, arg, len);
2149  prefix[len] = '\0';
2150 
2151  printf_unfiltered ("%s\n", prefix);
2152 }
2153 
2154 /* Implement "info vtbl". */
2155 
2156 static void
2157 info_vtbl_command (const char *arg, int from_tty)
2158 {
2159  struct value *value;
2160 
2161  value = parse_and_eval (arg);
2163 }
2164 
2165 void
2167 {
2170  _("C++ maintenance commands."),
2172  "maintenance cplus ",
2173  0, &maintenancelist);
2174  add_alias_cmd ("cp", "cplus",
2175  class_maintenance, 1,
2176  &maintenancelist);
2177 
2178  add_cmd ("first_component",
2181  _("Print the first class/namespace component of NAME."),
2183 
2184  add_info ("vtbl", info_vtbl_command,
2185  _("Show the virtual function table for a C++ object.\n\
2186 Usage: info vtbl EXPRESSION\n\
2187 Evaluate EXPRESSION and display the virtual function table for the\n\
2188 resulting object."));
2189 
2190 #ifdef HAVE_WORKING_FORK
2191  add_setshow_boolean_cmd ("catch-demangler-crashes", class_maintenance,
2193 Set whether to attempt to catch demangler crashes."), _("\
2194 Show whether to attempt to catch demangler crashes."), _("\
2195 If enabled GDB will attempt to catch demangler crashes and\n\
2196 display the offending symbol."),
2197  NULL,
2198  NULL,
2201 #endif
2202 
2203 #if GDB_SELF_TEST
2204  selftests::register_test ("cp_symbol_name_matches",
2205  selftests::test_cp_symbol_name_matches);
2206  selftests::register_test ("cp_remove_params",
2207  selftests::test_cp_remove_params);
2208 #endif
2209 }
const char * string
Definition: signals.c:50
#define CHECK(LANG, NAME, EXPECTED)
static int cp_already_canonical(const char *string)
Definition: cp-support.c:101
struct std::unique_ptr< demangle_parse_info > cp_demangled_name_to_comp(const char *demangled_name, const char **errmsg)
#define SIGSETJMP(buf)
Definition: gdb_setjmp.h:30
const char * import_dest
Definition: namespace.h:93
const char * alias
Definition: namespace.h:95
static void maint_cplus_command(const char *arg, int from_tty)
Definition: cp-support.c:2123
#define TYPE_N_BASECLASSES(thistype)
Definition: gdbtypes.h:1331
const char * import_src
Definition: namespace.h:92
void cp_merge_demangle_parse_infos(struct demangle_parse_info *dest, struct demangle_component *target, struct demangle_parse_info *src)
static struct symbol ** sym_return_val
Definition: cp-support.c:55
static const char *const ignore_typedefs[]
Definition: cp-support.c:70
static gdb::unique_xmalloc_ptr< char > cp_remove_params_1(const char *demangled_name, bool require_params)
Definition: cp-support.c:841
void xfree(void *)
gdb::unique_xmalloc_ptr< char > cp_comp_to_string(struct demangle_component *result, int estimated_len)
static void demangled_name_complaint(const char *name)
Definition: cp-support.c:1109
void warning(const char *fmt,...)
Definition: errors.c:26
const char * symbol_search_name(const struct general_symbol_info *gsymbol)
Definition: symtab.c:943
#define TYPE_NAME(thistype)
Definition: gdbtypes.h:1224
const std::string & lookup_name() const
Definition: symtab.h:159
const struct block * block_global_block(const struct block *block)
Definition: block.c:379
char * cp_func_name(const char *full_name)
Definition: cp-support.c:816
bool completion_mode() const
Definition: symtab.h:195
static int sym_return_val_index
Definition: cp-support.c:54
struct cmd_list_element * add_info(const char *name, cmd_const_cfunc_ftype *fun, const char *doc)
Definition: cli-decode.c:886
#define SYMBOL_CLASS(symbol)
Definition: symtab.h:1155
static int sym_return_val_size
Definition: cp-support.c:53
bool() symbol_name_matcher_ftype(const char *symbol_search_name, const lookup_name_info &lookup_name, completion_match_result *comp_match_res)
Definition: symtab.h:324
struct cmd_list_element * add_cmd(const char *name, enum command_class theclass, const char *doc, struct cmd_list_element **list)
Definition: cli-decode.c:262
void type_print(struct type *type, const char *varstring, struct ui_file *stream, int show)
Definition: typeprint.c:358
void write(const char *buf, long length_buf) override
Definition: ui-file.c:138
#define BLOCKVECTOR_BLOCK(blocklist, n)
Definition: block.h:125
struct block_symbol lookup_symbol(const char *name, const struct block *block, domain_enum domain, struct field_of_this_result *is_a_field_of_this)
Definition: symtab.c:1893
char * skip_spaces(char *chp)
Definition: common-utils.c:337
#define _(String)
Definition: gdb_locale.h:35
static unsigned int cp_find_first_component_aux(const char *name, int permissive)
Definition: cp-support.c:981
void demangler_warning(const char *file, int line, const char *string,...)
Definition: utils.c:543
static bool cp_symbol_name_matches_1(const char *symbol_search_name, const char *lookup_name, size_t lookup_name_len, strncmp_iw_mode mode, completion_match_result *comp_match_res)
Definition: cp-support.c:1686
#define END_CATCH
static void replace_typedefs(struct demangle_parse_info *info, struct demangle_component *ret_comp, canonicalization_ftype *finder, void *data)
Definition: cp-support.c:407
struct cmd_list_element * maintenance_set_cmdlist
Definition: maint.c:634
char * method_name_from_physname(const char *physname)
Definition: cp-support.c:784
unsigned int cp_search_name_hash(const char *search_name)
Definition: cp-support.c:1621
int strncmp_iw_with_mode(const char *string1, const char *string2, size_t string2_len, strncmp_iw_mode mode, enum language language, completion_match_for_lcd *match_for_lcd)
Definition: utils.c:2277
#define TYPE_IS_REFERENCE(t)
Definition: gdbtypes.h:332
struct symbol ** make_symbol_overload_list_adl(struct type **arg_types, int nargs, const char *func_name)
Definition: cp-support.c:1326
struct cmd_list_element * add_prefix_cmd(const char *name, enum command_class theclass, cmd_const_cfunc_ftype *fun, const char *doc, struct cmd_list_element **prefixlist, const char *prefixname, int allow_unknown, struct cmd_list_element **list)
Definition: cli-decode.c:367
symbol_name_match_type match_type() const
Definition: symtab.h:194
scoped_restore_tmpl< T > make_scoped_restore(T *var)
static void make_symbol_overload_list_qualified(const char *func_name)
Definition: cp-support.c:1393
#define d_right(dc)
Definition: cp-support.c:42
#define TRY
const char *const name
Definition: aarch64-tdep.c:76
char * gdb_demangle(const char *name, int options)
Definition: cp-support.c:1518
struct type * check_typedef(struct type *type)
Definition: gdbtypes.c:2421
std::string cp_canonicalize_string_no_typedefs(const char *string)
Definition: cp-support.c:542
#define CATCH(EXCEPTION, MASK)
static SIGJMP_BUF gdb_demangle_jmp_buf
Definition: cp-support.c:1491
std::unique_ptr< T, xfree_deleter< T > > unique_xmalloc_ptr
struct type * cp_lookup_rtti_type(const char *name, struct block *block)
Definition: cp-support.c:1440
#define SIGLONGJMP(buf, val)
Definition: gdb_setjmp.h:31
objfile(bfd *, const char *, objfile_flags)
Definition: objfiles.c:373
struct symbol ** make_symbol_overload_list(const char *func_name, const char *the_namespace)
Definition: cp-support.c:1189
unsigned int cp_find_first_component(const char *name)
Definition: cp-support.c:970
void fprintf_unfiltered(struct ui_file *stream, const char *format,...)
Definition: utils.c:2018
#define SYMBOL_HASH_NEXT(hash, c)
Definition: minsyms.h:184
#define gdb_assert_not_reached(message)
Definition: gdb_assert.h:55
const struct sym_fns * sf
Definition: objfiles.h:381
void _initialize_cp_support(void)
Definition: cp-support.c:2166
struct cleanup * make_cleanup(make_cleanup_ftype *function, void *arg)
Definition: cleanups.c:116
static void info_vtbl_command(const char *arg, int from_tty)
Definition: cp-support.c:2157
#define ALL_COMPUNITS(objfile, cu)
Definition: objfiles.h:619
struct using_direct * block_using(const struct block *block)
Definition: block.c:324
Definition: gdbtypes.h:749
struct obstack obstack
Definition: cp-support.h:72
#define BLOCK_SUPERBLOCK(bl)
Definition: block.h:108
struct cmd_list_element * maint_cplus_cmd_list
Definition: cp-support.c:67
static struct demangle_component * unqualified_name_from_comp(struct demangle_component *comp)
Definition: cp-support.c:729
void clear()
Definition: ui-file.h:140
static const char * type
Definition: language.c:113
#define SYMBOL_LINKAGE_NAME(symbol)
Definition: symtab.h:523
const char *() canonicalization_ftype(struct type *, void *)
Definition: cp-support.h:82
#define complaint(COMPLAINTS, FMT,...)
Definition: complaints.h:40
static int startswith(const char *string, const char *pattern)
Definition: common-utils.h:107
size_t size() const
Definition: ui-file.h:138
symbol_name_matcher_ftype * cp_get_symbol_name_matcher(const lookup_name_info &lookup_name)
Definition: cp-support.c:1790
#define TYPE_BASECLASS(thistype, index)
Definition: gdbtypes.h:1330
void(* expand_symtabs_for_function)(struct objfile *objfile, const char *func_name)
Definition: symfile.h:197
void printf_unfiltered(const char *format,...)
Definition: utils.c:2056
#define SIGJMP_BUF
Definition: gdb_setjmp.h:29
static void make_symbol_overload_list_namespace(const char *func_name, const char *the_namespace)
Definition: cp-support.c:1242
virtual void puts(const char *str)
Definition: ui-file.h:63
completion_match_for_lcd match_for_lcd
Definition: completer.h:211
static void ours_for_output()
Definition: target.c:501
struct cmd_list_element * add_alias_cmd(const char *name, cmd_list_element *old, enum command_class theclass, int abbrev_flag, struct cmd_list_element **list)
Definition: cli-decode.c:306
struct symbol * symbol
Definition: symtab.h:1136
#define gdb_assert(expr)
Definition: gdb_assert.h:32
Definition: block.h:60
Definition: value.c:169
unsigned long hash(const void *addr, int length)
Definition: bcache.c:98
std::string cp_canonicalize_string_full(const char *string, canonicalization_ftype *finder, void *data)
Definition: cp-support.c:508
struct using_direct * next
Definition: namespace.h:98
#define CP_OPERATOR_STR
Definition: cp-support.h:51
#define CP_OPERATOR_LEN
Definition: cp-support.h:55
static bool cp_symbol_name_matches(const char *symbol_search_name, const lookup_name_info &lookup_name, completion_match_result *comp_match_res)
Definition: cp-support.c:1771
PTR xrealloc(PTR ptr, size_t size)
Definition: common-utils.c:52
char * cp_class_name_from_physname(const char *physname)
Definition: cp-support.c:636
static void check_cv_qualifiers(struct demangle_component *ret_comp)
Definition: cp-support.c:393
#define COMPUNIT_BLOCKVECTOR(cust)
Definition: symtab.h:1465
static std::unique_ptr< demangle_parse_info > mangled_name_to_comp(const char *mangled_name, int options, void **memory, char **demangled_p)
Definition: cp-support.c:590
void help_list(struct cmd_list_element *list, const char *cmdtype, enum command_class theclass, struct ui_file *stream)
Definition: cli-decode.c:1071
#define XNEWVEC(T, N)
Definition: poison.h:145
void discard_cleanups(struct cleanup *old_chain)
Definition: cleanups.c:212
const demangle_for_lookup_info & cplus() const
Definition: symtab.h:247
#define TYPE_TARGET_TYPE(thistype)
Definition: gdbtypes.h:1226
void set_match(const char *m, const char *m_for_lcd=NULL)
Definition: completer.h:215
strncmp_iw_mode
Definition: utils.h:36
static void overload_list_add_symbol(struct symbol *sym, const char *oload_name)
Definition: cp-support.c:1146
#define gdb_stderr
Definition: utils.h:344
static void make_symbol_overload_list_block(const char *name, const struct block *block)
Definition: cp-support.c:1227
const struct block * block_static_block(const struct block *block)
Definition: block.c:364
#define TYPE_CODE(thistype)
Definition: gdbtypes.h:1238
const char * c_str() const
Definition: ui-file.h:137
struct complaints * symfile_complaints
Definition: complaints.c:96
gdb::unique_xmalloc_ptr< char > cp_remove_params_if_any(const char *demangled_name, bool completion_mode)
Definition: cp-support.c:900
int gdb_sniff_from_mangled_name(const char *mangled, char **demangled)
Definition: cp-support.c:1612
void add_setshow_boolean_cmd(const char *name, enum command_class theclass, int *var, const char *set_doc, const char *show_doc, const char *help_doc, cmd_const_sfunc_ftype *set_func, show_value_ftype *show_func, struct cmd_list_element **set_list, struct cmd_list_element **show_list)
Definition: cli-decode.c:569
static int inspect_type(struct demangle_parse_info *info, struct demangle_component *ret_comp, canonicalization_ftype *finder, void *data)
Definition: cp-support.c:131
static bool cp_fq_symbol_name_matches(const char *symbol_search_name, const lookup_name_info &lookup_name, completion_match_result *comp_match_res)
Definition: cp-support.c:1743
std::string cp_canonicalize_string(const char *string)
Definition: cp-support.c:552
static int gdb_demangle_attempt_core_dump
Definition: cp-support.c:1495
std::string string_printf(const char *fmt,...)
Definition: common-utils.c:150
static sighandler_t ofunc
Definition: nto-procfs.c:53
#define TYPE_TAG_NAME(type)
Definition: gdbtypes.h:1225
const struct block * get_selected_block(CORE_ADDR *addr_in_block)
Definition: stack.c:2216
#define SYMBOL_NATURAL_NAME(symbol)
Definition: symtab.h:513
struct value * parse_and_eval(const char *exp)
Definition: eval.c:119
#define BASETYPE_VIA_PUBLIC(thistype, index)
Definition: gdbtypes.h:1334
#define CHECK_INCOMPL(LANG, NAME, EXPECTED)
int can_dump_core(enum resource_limit_kind limit_kind)
Definition: utils.c:293
#define SYMBOL_TYPE(symbol)
Definition: symtab.h:1161
struct cmd_list_element * maintenancelist
Definition: cli-cmds.c:135
void warn_cant_dump_core(const char *reason)
Definition: utils.c:320
static int catch_demangler_crashes
Definition: cp-support.c:1487
void cplus_print_vtable(struct value *value)
Definition: cp-abi.c:176
#define ALL_BLOCK_SYMBOLS_WITH_NAME(block, name, iter, sym)
Definition: block.h:320
#define ALL_OBJFILES(obj)
Definition: objfiles.h:582
#define QUIT
Definition: defs.h:179
static void make_symbol_overload_list_adl_namespace(struct type *type, const char *func_name)
Definition: cp-support.c:1277
const struct quick_symbol_functions * qf
Definition: symfile.h:369
static void first_component_command(const char *arg, int from_tty)
Definition: cp-support.c:2137
const char * declaration
Definition: namespace.h:96
struct cmd_list_element * maintenance_show_cmdlist
Definition: maint.c:635
#define d_left(dc)
Definition: cp-support.c:41
unsigned int cp_entire_prefix_len(const char *name)
Definition: cp-support.c:1122
static void replace_typedefs_qualified_name(struct demangle_parse_info *info, struct demangle_component *ret_comp, canonicalization_ftype *finder, void *data)
Definition: cp-support.c:290
void register_test(const std::string &name, selftest *test)
Definition: selftest.c:52
void error(const char *fmt,...)
Definition: errors.c:38
static void make_symbol_overload_list_using(const char *func_name, const char *the_namespace)
Definition: cp-support.c:1346
static char * copy_string_to_obstack(struct obstack *obstack, const char *string, long *len)
Definition: cp-support.c:87
void begin_line(void)
Definition: utils.c:1682
#define gdb_stdout
Definition: utils.h:340
static void gdb_demangle_signal_handler(int signo)
Definition: cp-support.c:1500
void dump_core(void)
Definition: utils.c:276
gdb::unique_xmalloc_ptr< char > cp_remove_params(const char *demangled_name)
Definition: cp-support.c:892