gdb/remote: Remove a cleanup in remote_check_symbols
[deliverable/binutils-gdb.git] / gdb / cp-support.c
CommitLineData
de17c821 1/* Helper routines for C++ support in GDB.
42a4f53d 2 Copyright (C) 2002-2019 Free Software Foundation, Inc.
de17c821
DJ
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
a9762ec7 10 the Free Software Foundation; either version 3 of the License, or
de17c821
DJ
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
a9762ec7 19 along with this program. If not, see <http://www.gnu.org/licenses/>. */
de17c821
DJ
20
21#include "defs.h"
22#include "cp-support.h"
de17c821 23#include "demangle.h"
9219021c 24#include "gdbcmd.h"
b6429628
DC
25#include "dictionary.h"
26#include "objfiles.h"
27#include "frame.h"
28#include "symtab.h"
29#include "block.h"
b2a7f303 30#include "complaints.h"
362ff856 31#include "gdbtypes.h"
12907978
KS
32#include "expression.h"
33#include "value.h"
c4aeac85 34#include "cp-abi.h"
22cee43f 35#include "namespace.h"
992c7d70 36#include <signal.h>
173981bc 37#include "gdb_setjmp.h"
f88e9fd3 38#include "safe-ctype.h"
c62446b1 39#include "selftest.h"
f88e9fd3 40
fb4c6eba
DJ
41#define d_left(dc) (dc)->u.s_binary.left
42#define d_right(dc) (dc)->u.s_binary.right
b2a7f303 43
fb4c6eba 44/* Functions related to demangled name parsing. */
b2a7f303
DC
45
46static unsigned int cp_find_first_component_aux (const char *name,
47 int permissive);
48
49static void demangled_name_complaint (const char *name);
b6429628 50
0891c3cc 51/* Functions related to overload resolution. */
b6429628 52
8d577d32 53static void overload_list_add_symbol (struct symbol *sym,
0891c3cc
PA
54 const char *oload_name,
55 std::vector<symbol *> *overload_list);
8d577d32 56
0891c3cc
PA
57static void add_symbol_overload_list_using
58 (const char *func_name, const char *the_namespace,
59 std::vector<symbol *> *overload_list);
8d577d32 60
0891c3cc
PA
61static void add_symbol_overload_list_qualified
62 (const char *func_name,
63 std::vector<symbol *> *overload_list);
8d577d32 64
9219021c
DC
65/* The list of "maint cplus" commands. */
66
5c4e30ca 67struct cmd_list_element *maint_cplus_cmd_list = NULL;
9219021c 68
3a93a0c2
KS
69/* A list of typedefs which should not be substituted by replace_typedefs. */
70static const char * const ignore_typedefs[] =
71 {
72 "std::istream", "std::iostream", "std::ostream", "std::string"
73 };
74
75static void
76 replace_typedefs (struct demangle_parse_info *info,
2621e0fd
TT
77 struct demangle_component *ret_comp,
78 canonicalization_ftype *finder,
79 void *data);
3a93a0c2
KS
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
86static char *
87copy_string_to_obstack (struct obstack *obstack, const char *string,
88 long *len)
89{
90 *len = strlen (string);
224c3ddb 91 return (char *) obstack_copy (obstack, string, *len);
3a93a0c2
KS
92}
93
f88e9fd3
DJ
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
100static int
101cp_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}
9219021c 124
3a93a0c2
KS
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
130static int
131inspect_type (struct demangle_parse_info *info,
2621e0fd
TT
132 struct demangle_component *ret_comp,
133 canonicalization_ftype *finder,
134 void *data)
3a93a0c2 135{
3a93a0c2
KS
136 char *name;
137 struct symbol *sym;
3a93a0c2
KS
138
139 /* Copy the symbol's name from RET_COMP and look it up
140 in the symbol table. */
141 name = (char *) alloca (ret_comp->u.s_name.len + 1);
142 memcpy (name, ret_comp->u.s_name.s, ret_comp->u.s_name.len);
143 name[ret_comp->u.s_name.len] = '\0';
144
145 /* Ignore any typedefs that should not be substituted. */
b926417a 146 for (int i = 0; i < ARRAY_SIZE (ignore_typedefs); ++i)
3a93a0c2
KS
147 {
148 if (strcmp (name, ignore_typedefs[i]) == 0)
149 return 0;
150 }
151
152 sym = NULL;
3a93a0c2 153
492d29ea
PA
154 TRY
155 {
d12307c1 156 sym = lookup_symbol (name, 0, VAR_DOMAIN, 0).symbol;
492d29ea
PA
157 }
158 CATCH (except, RETURN_MASK_ALL)
159 {
160 return 0;
161 }
162 END_CATCH
163
164 if (sym != NULL)
3a93a0c2
KS
165 {
166 struct type *otype = SYMBOL_TYPE (sym);
167
2621e0fd
TT
168 if (finder != NULL)
169 {
170 const char *new_name = (*finder) (otype, data);
171
172 if (new_name != NULL)
173 {
174 ret_comp->u.s_name.s = new_name;
175 ret_comp->u.s_name.len = strlen (new_name);
176 return 1;
177 }
178
179 return 0;
180 }
181
74921315
KS
182 /* If the type is a typedef or namespace alias, replace it. */
183 if (TYPE_CODE (otype) == TYPE_CODE_TYPEDEF
184 || TYPE_CODE (otype) == TYPE_CODE_NAMESPACE)
3a93a0c2
KS
185 {
186 long len;
187 int is_anon;
188 struct type *type;
c8b23b3f 189 std::unique_ptr<demangle_parse_info> i;
3a93a0c2
KS
190
191 /* Get the real type of the typedef. */
192 type = check_typedef (otype);
193
74921315
KS
194 /* If the symbol is a namespace and its type name is no different
195 than the name we looked up, this symbol is not a namespace
196 alias and does not need to be substituted. */
197 if (TYPE_CODE (otype) == TYPE_CODE_NAMESPACE
198 && strcmp (TYPE_NAME (type), name) == 0)
199 return 0;
200
e86ca25f 201 is_anon = (TYPE_NAME (type) == NULL
3a93a0c2
KS
202 && (TYPE_CODE (type) == TYPE_CODE_ENUM
203 || TYPE_CODE (type) == TYPE_CODE_STRUCT
204 || TYPE_CODE (type) == TYPE_CODE_UNION));
205 if (is_anon)
206 {
207 struct type *last = otype;
208
209 /* Find the last typedef for the type. */
210 while (TYPE_TARGET_TYPE (last) != NULL
211 && (TYPE_CODE (TYPE_TARGET_TYPE (last))
212 == TYPE_CODE_TYPEDEF))
213 last = TYPE_TARGET_TYPE (last);
214
215 /* If there is only one typedef for this anonymous type,
216 do not substitute it. */
217 if (type == otype)
218 return 0;
219 else
220 /* Use the last typedef seen as the type for this
221 anonymous type. */
222 type = last;
223 }
224
d7e74731 225 string_file buf;
492d29ea 226 TRY
d7e74731
PA
227 {
228 type_print (type, "", &buf, -1);
229 }
3a93a0c2
KS
230 /* If type_print threw an exception, there is little point
231 in continuing, so just bow out gracefully. */
492d29ea 232 CATCH (except, RETURN_MASK_ERROR)
3a93a0c2 233 {
3a93a0c2
KS
234 return 0;
235 }
492d29ea 236 END_CATCH
3a93a0c2 237
d7e74731
PA
238 len = buf.size ();
239 name = (char *) obstack_copy0 (&info->obstack, buf.c_str (), len);
3a93a0c2
KS
240
241 /* Turn the result into a new tree. Note that this
242 tree will contain pointers into NAME, so NAME cannot
243 be free'd until all typedef conversion is done and
244 the final result is converted into a string. */
245 i = cp_demangled_name_to_comp (name, NULL);
246 if (i != NULL)
247 {
248 /* Merge the two trees. */
c8b23b3f 249 cp_merge_demangle_parse_infos (info, ret_comp, i.get ());
3a93a0c2
KS
250
251 /* Replace any newly introduced typedefs -- but not
252 if the type is anonymous (that would lead to infinite
253 looping). */
254 if (!is_anon)
2621e0fd 255 replace_typedefs (info, ret_comp, finder, data);
3a93a0c2
KS
256 }
257 else
258 {
259 /* This shouldn't happen unless the type printer has
260 output something that the name parser cannot grok.
261 Nonetheless, an ounce of prevention...
262
263 Canonicalize the name again, and store it in the
264 current node (RET_COMP). */
2f408ecb 265 std::string canon = cp_canonicalize_string_no_typedefs (name);
3a93a0c2 266
2f408ecb 267 if (!canon.empty ())
3a93a0c2 268 {
2f408ecb
PA
269 /* Copy the canonicalization into the obstack. */
270 name = copy_string_to_obstack (&info->obstack, canon.c_str (), &len);
3a93a0c2
KS
271 }
272
273 ret_comp->u.s_name.s = name;
274 ret_comp->u.s_name.len = len;
275 }
276
277 return 1;
278 }
279 }
280
281 return 0;
282}
283
284/* Replace any typedefs appearing in the qualified name
285 (DEMANGLE_COMPONENT_QUAL_NAME) represented in RET_COMP for the name parse
286 given in INFO. */
287
288static void
289replace_typedefs_qualified_name (struct demangle_parse_info *info,
2621e0fd
TT
290 struct demangle_component *ret_comp,
291 canonicalization_ftype *finder,
292 void *data)
3a93a0c2 293{
d7e74731 294 string_file buf;
3a93a0c2
KS
295 struct demangle_component *comp = ret_comp;
296
297 /* Walk each node of the qualified name, reconstructing the name of
298 this element. With every node, check for any typedef substitutions.
299 If a substitution has occurred, replace the qualified name node
300 with a DEMANGLE_COMPONENT_NAME node representing the new, typedef-
301 substituted name. */
302 while (comp->type == DEMANGLE_COMPONENT_QUAL_NAME)
303 {
304 if (d_left (comp)->type == DEMANGLE_COMPONENT_NAME)
305 {
fe978cb0 306 struct demangle_component newobj;
3a93a0c2 307
d7e74731 308 buf.write (d_left (comp)->u.s_name.s, d_left (comp)->u.s_name.len);
fe978cb0 309 newobj.type = DEMANGLE_COMPONENT_NAME;
29592bde
PA
310 newobj.u.s_name.s
311 = (char *) obstack_copy0 (&info->obstack,
312 buf.c_str (), buf.size ());
313 newobj.u.s_name.len = buf.size ();
fe978cb0 314 if (inspect_type (info, &newobj, finder, data))
3a93a0c2 315 {
29592bde 316 char *s;
3a93a0c2
KS
317 long slen;
318
319 /* A typedef was substituted in NEW. Convert it to a
320 string and replace the top DEMANGLE_COMPONENT_QUAL_NAME
321 node. */
322
d7e74731 323 buf.clear ();
29592bde
PA
324 gdb::unique_xmalloc_ptr<char> n
325 = cp_comp_to_string (&newobj, 100);
3a93a0c2
KS
326 if (n == NULL)
327 {
328 /* If something went astray, abort typedef substitutions. */
3a93a0c2
KS
329 return;
330 }
331
29592bde 332 s = copy_string_to_obstack (&info->obstack, n.get (), &slen);
3a93a0c2
KS
333
334 d_left (ret_comp)->type = DEMANGLE_COMPONENT_NAME;
335 d_left (ret_comp)->u.s_name.s = s;
336 d_left (ret_comp)->u.s_name.len = slen;
337 d_right (ret_comp) = d_right (comp);
338 comp = ret_comp;
339 continue;
340 }
341 }
342 else
343 {
344 /* The current node is not a name, so simply replace any
345 typedefs in it. Then print it to the stream to continue
346 checking for more typedefs in the tree. */
2621e0fd 347 replace_typedefs (info, d_left (comp), finder, data);
29592bde
PA
348 gdb::unique_xmalloc_ptr<char> name
349 = cp_comp_to_string (d_left (comp), 100);
3a93a0c2
KS
350 if (name == NULL)
351 {
352 /* If something went astray, abort typedef substitutions. */
3a93a0c2
KS
353 return;
354 }
29592bde 355 buf.puts (name.get ());
3a93a0c2 356 }
2621e0fd 357
d7e74731 358 buf.write ("::", 2);
3a93a0c2
KS
359 comp = d_right (comp);
360 }
361
362 /* If the next component is DEMANGLE_COMPONENT_NAME, save the qualified
363 name assembled above and append the name given by COMP. Then use this
364 reassembled name to check for a typedef. */
365
366 if (comp->type == DEMANGLE_COMPONENT_NAME)
367 {
d7e74731 368 buf.write (comp->u.s_name.s, comp->u.s_name.len);
3a93a0c2
KS
369
370 /* Replace the top (DEMANGLE_COMPONENT_QUAL_NAME) node
371 with a DEMANGLE_COMPONENT_NAME node containing the whole
372 name. */
373 ret_comp->type = DEMANGLE_COMPONENT_NAME;
29592bde
PA
374 ret_comp->u.s_name.s
375 = (char *) obstack_copy0 (&info->obstack,
376 buf.c_str (), buf.size ());
377 ret_comp->u.s_name.len = buf.size ();
2621e0fd 378 inspect_type (info, ret_comp, finder, data);
3a93a0c2
KS
379 }
380 else
2621e0fd 381 replace_typedefs (info, comp, finder, data);
3a93a0c2
KS
382}
383
384
385/* A function to check const and volatile qualifiers for argument types.
386
387 "Parameter declarations that differ only in the presence
388 or absence of `const' and/or `volatile' are equivalent."
389 C++ Standard N3290, clause 13.1.3 #4. */
390
391static void
392check_cv_qualifiers (struct demangle_component *ret_comp)
393{
394 while (d_left (ret_comp) != NULL
395 && (d_left (ret_comp)->type == DEMANGLE_COMPONENT_CONST
396 || d_left (ret_comp)->type == DEMANGLE_COMPONENT_VOLATILE))
397 {
398 d_left (ret_comp) = d_left (d_left (ret_comp));
399 }
400}
401
402/* Walk the parse tree given by RET_COMP, replacing any typedefs with
403 their basic types. */
404
405static void
406replace_typedefs (struct demangle_parse_info *info,
2621e0fd
TT
407 struct demangle_component *ret_comp,
408 canonicalization_ftype *finder,
409 void *data)
3a93a0c2
KS
410{
411 if (ret_comp)
412 {
2621e0fd
TT
413 if (finder != NULL
414 && (ret_comp->type == DEMANGLE_COMPONENT_NAME
415 || ret_comp->type == DEMANGLE_COMPONENT_QUAL_NAME
416 || ret_comp->type == DEMANGLE_COMPONENT_TEMPLATE
417 || ret_comp->type == DEMANGLE_COMPONENT_BUILTIN_TYPE))
418 {
29592bde
PA
419 gdb::unique_xmalloc_ptr<char> local_name
420 = cp_comp_to_string (ret_comp, 10);
2621e0fd
TT
421
422 if (local_name != NULL)
423 {
492d29ea 424 struct symbol *sym = NULL;
2621e0fd
TT
425
426 sym = NULL;
492d29ea 427 TRY
2621e0fd 428 {
29592bde
PA
429 sym = lookup_symbol (local_name.get (), 0,
430 VAR_DOMAIN, 0).symbol;
2621e0fd 431 }
492d29ea
PA
432 CATCH (except, RETURN_MASK_ALL)
433 {
434 }
435 END_CATCH
436
492d29ea 437 if (sym != NULL)
2621e0fd
TT
438 {
439 struct type *otype = SYMBOL_TYPE (sym);
440 const char *new_name = (*finder) (otype, data);
441
442 if (new_name != NULL)
443 {
444 ret_comp->type = DEMANGLE_COMPONENT_NAME;
445 ret_comp->u.s_name.s = new_name;
446 ret_comp->u.s_name.len = strlen (new_name);
447 return;
448 }
449 }
450 }
451 }
452
3a93a0c2
KS
453 switch (ret_comp->type)
454 {
455 case DEMANGLE_COMPONENT_ARGLIST:
456 check_cv_qualifiers (ret_comp);
457 /* Fall through */
458
459 case DEMANGLE_COMPONENT_FUNCTION_TYPE:
460 case DEMANGLE_COMPONENT_TEMPLATE:
461 case DEMANGLE_COMPONENT_TEMPLATE_ARGLIST:
462 case DEMANGLE_COMPONENT_TYPED_NAME:
2621e0fd
TT
463 replace_typedefs (info, d_left (ret_comp), finder, data);
464 replace_typedefs (info, d_right (ret_comp), finder, data);
3a93a0c2
KS
465 break;
466
467 case DEMANGLE_COMPONENT_NAME:
2621e0fd 468 inspect_type (info, ret_comp, finder, data);
3a93a0c2
KS
469 break;
470
471 case DEMANGLE_COMPONENT_QUAL_NAME:
2621e0fd 472 replace_typedefs_qualified_name (info, ret_comp, finder, data);
3a93a0c2
KS
473 break;
474
475 case DEMANGLE_COMPONENT_LOCAL_NAME:
476 case DEMANGLE_COMPONENT_CTOR:
477 case DEMANGLE_COMPONENT_ARRAY_TYPE:
478 case DEMANGLE_COMPONENT_PTRMEM_TYPE:
2621e0fd 479 replace_typedefs (info, d_right (ret_comp), finder, data);
3a93a0c2
KS
480 break;
481
482 case DEMANGLE_COMPONENT_CONST:
483 case DEMANGLE_COMPONENT_RESTRICT:
484 case DEMANGLE_COMPONENT_VOLATILE:
485 case DEMANGLE_COMPONENT_VOLATILE_THIS:
486 case DEMANGLE_COMPONENT_CONST_THIS:
487 case DEMANGLE_COMPONENT_RESTRICT_THIS:
488 case DEMANGLE_COMPONENT_POINTER:
489 case DEMANGLE_COMPONENT_REFERENCE:
e4347c89 490 case DEMANGLE_COMPONENT_RVALUE_REFERENCE:
2621e0fd 491 replace_typedefs (info, d_left (ret_comp), finder, data);
3a93a0c2
KS
492 break;
493
494 default:
495 break;
496 }
497 }
498}
499
2f408ecb
PA
500/* Parse STRING and convert it to canonical form, resolving any
501 typedefs. If parsing fails, or if STRING is already canonical,
502 return the empty string. Otherwise return the canonical form. If
503 FINDER is not NULL, then type components are passed to FINDER to be
504 looked up. DATA is passed verbatim to FINDER. */
3a93a0c2 505
2f408ecb 506std::string
2621e0fd
TT
507cp_canonicalize_string_full (const char *string,
508 canonicalization_ftype *finder,
509 void *data)
3a93a0c2 510{
2f408ecb 511 std::string ret;
3a93a0c2 512 unsigned int estimated_len;
c8b23b3f 513 std::unique_ptr<demangle_parse_info> info;
3a93a0c2 514
3a93a0c2
KS
515 estimated_len = strlen (string) * 2;
516 info = cp_demangled_name_to_comp (string, NULL);
517 if (info != NULL)
518 {
519 /* Replace all the typedefs in the tree. */
c8b23b3f 520 replace_typedefs (info.get (), info->tree, finder, data);
3a93a0c2
KS
521
522 /* Convert the tree back into a string. */
29592bde
PA
523 gdb::unique_xmalloc_ptr<char> us = cp_comp_to_string (info->tree,
524 estimated_len);
e88e8651 525 gdb_assert (us);
3a93a0c2 526
e88e8651 527 ret = us.get ();
3a93a0c2
KS
528 /* Finally, compare the original string with the computed
529 name, returning NULL if they are the same. */
2f408ecb
PA
530 if (ret == string)
531 return std::string ();
3a93a0c2
KS
532 }
533
534 return ret;
535}
536
2621e0fd
TT
537/* Like cp_canonicalize_string_full, but always passes NULL for
538 FINDER. */
539
2f408ecb 540std::string
2621e0fd
TT
541cp_canonicalize_string_no_typedefs (const char *string)
542{
543 return cp_canonicalize_string_full (string, NULL, NULL);
544}
545
f88e9fd3 546/* Parse STRING and convert it to canonical form. If parsing fails,
2f408ecb
PA
547 or if STRING is already canonical, return the empty string.
548 Otherwise return the canonical form. */
9219021c 549
2f408ecb 550std::string
fb4c6eba
DJ
551cp_canonicalize_string (const char *string)
552{
c8b23b3f 553 std::unique_ptr<demangle_parse_info> info;
f88e9fd3 554 unsigned int estimated_len;
9219021c 555
f88e9fd3 556 if (cp_already_canonical (string))
2f408ecb 557 return std::string ();
9219021c 558
3a93a0c2
KS
559 info = cp_demangled_name_to_comp (string, NULL);
560 if (info == NULL)
2f408ecb 561 return std::string ();
9219021c 562
f88e9fd3 563 estimated_len = strlen (string) * 2;
e88e8651
YQ
564 gdb::unique_xmalloc_ptr<char> us (cp_comp_to_string (info->tree,
565 estimated_len));
9219021c 566
e88e8651 567 if (!us)
9934703b
JK
568 {
569 warning (_("internal error: string \"%s\" failed to be canonicalized"),
570 string);
2f408ecb 571 return std::string ();
9934703b
JK
572 }
573
e88e8651
YQ
574 std::string ret (us.get ());
575
2f408ecb
PA
576 if (ret == string)
577 return std::string ();
de17c821 578
fb4c6eba
DJ
579 return ret;
580}
de17c821 581
aff410f1
MS
582/* Convert a mangled name to a demangle_component tree. *MEMORY is
583 set to the block of used memory that should be freed when finished
584 with the tree. DEMANGLED_P is set to the char * that should be
585 freed when finished with the tree, or NULL if none was needed.
586 OPTIONS will be passed to the demangler. */
de17c821 587
c8b23b3f 588static std::unique_ptr<demangle_parse_info>
fb4c6eba
DJ
589mangled_name_to_comp (const char *mangled_name, int options,
590 void **memory, char **demangled_p)
de17c821 591{
fb4c6eba 592 char *demangled_name;
de17c821 593
fb4c6eba
DJ
594 /* If it looks like a v3 mangled name, then try to go directly
595 to trees. */
596 if (mangled_name[0] == '_' && mangled_name[1] == 'Z')
de17c821 597 {
3a93a0c2
KS
598 struct demangle_component *ret;
599
aff410f1
MS
600 ret = cplus_demangle_v3_components (mangled_name,
601 options, memory);
fb4c6eba
DJ
602 if (ret)
603 {
c8b23b3f 604 std::unique_ptr<demangle_parse_info> info (new demangle_parse_info);
3a93a0c2 605 info->tree = ret;
fb4c6eba 606 *demangled_p = NULL;
3a93a0c2 607 return info;
fb4c6eba 608 }
de17c821
DJ
609 }
610
aff410f1
MS
611 /* If it doesn't, or if that failed, then try to demangle the
612 name. */
8de20a37 613 demangled_name = gdb_demangle (mangled_name, options);
fb4c6eba
DJ
614 if (demangled_name == NULL)
615 return NULL;
616
aff410f1
MS
617 /* If we could demangle the name, parse it to build the component
618 tree. */
c8b23b3f
TT
619 std::unique_ptr<demangle_parse_info> info
620 = cp_demangled_name_to_comp (demangled_name, NULL);
de17c821 621
3a93a0c2 622 if (info == NULL)
fb4c6eba 623 {
6c761d9c 624 xfree (demangled_name);
fb4c6eba
DJ
625 return NULL;
626 }
de17c821 627
fb4c6eba 628 *demangled_p = demangled_name;
3a93a0c2 629 return info;
de17c821
DJ
630}
631
632/* Return the name of the class containing method PHYSNAME. */
633
634char *
31c27f77 635cp_class_name_from_physname (const char *physname)
de17c821 636{
de237128 637 void *storage = NULL;
29592bde
PA
638 char *demangled_name = NULL;
639 gdb::unique_xmalloc_ptr<char> ret;
5e5100cb 640 struct demangle_component *ret_comp, *prev_comp, *cur_comp;
c8b23b3f 641 std::unique_ptr<demangle_parse_info> info;
fb4c6eba
DJ
642 int done;
643
3a93a0c2
KS
644 info = mangled_name_to_comp (physname, DMGL_ANSI,
645 &storage, &demangled_name);
646 if (info == NULL)
de17c821
DJ
647 return NULL;
648
fb4c6eba 649 done = 0;
3a93a0c2 650 ret_comp = info->tree;
5e5100cb 651
aff410f1
MS
652 /* First strip off any qualifiers, if we have a function or
653 method. */
fb4c6eba
DJ
654 while (!done)
655 switch (ret_comp->type)
656 {
fb4c6eba
DJ
657 case DEMANGLE_COMPONENT_CONST:
658 case DEMANGLE_COMPONENT_RESTRICT:
659 case DEMANGLE_COMPONENT_VOLATILE:
660 case DEMANGLE_COMPONENT_CONST_THIS:
661 case DEMANGLE_COMPONENT_RESTRICT_THIS:
662 case DEMANGLE_COMPONENT_VOLATILE_THIS:
663 case DEMANGLE_COMPONENT_VENDOR_TYPE_QUAL:
fb4c6eba
DJ
664 ret_comp = d_left (ret_comp);
665 break;
5e5100cb
DJ
666 default:
667 done = 1;
668 break;
669 }
670
671 /* If what we have now is a function, discard the argument list. */
672 if (ret_comp->type == DEMANGLE_COMPONENT_TYPED_NAME)
673 ret_comp = d_left (ret_comp);
674
675 /* If what we have now is a template, strip off the template
676 arguments. The left subtree may be a qualified name. */
677 if (ret_comp->type == DEMANGLE_COMPONENT_TEMPLATE)
678 ret_comp = d_left (ret_comp);
679
aff410f1
MS
680 /* What we have now should be a name, possibly qualified.
681 Additional qualifiers could live in the left subtree or the right
682 subtree. Find the last piece. */
5e5100cb
DJ
683 done = 0;
684 prev_comp = NULL;
685 cur_comp = ret_comp;
686 while (!done)
687 switch (cur_comp->type)
688 {
689 case DEMANGLE_COMPONENT_QUAL_NAME:
690 case DEMANGLE_COMPONENT_LOCAL_NAME:
691 prev_comp = cur_comp;
692 cur_comp = d_right (cur_comp);
693 break;
fb4c6eba 694 case DEMANGLE_COMPONENT_TEMPLATE:
5e5100cb 695 case DEMANGLE_COMPONENT_NAME:
fb4c6eba
DJ
696 case DEMANGLE_COMPONENT_CTOR:
697 case DEMANGLE_COMPONENT_DTOR:
698 case DEMANGLE_COMPONENT_OPERATOR:
699 case DEMANGLE_COMPONENT_EXTENDED_OPERATOR:
700 done = 1;
701 break;
702 default:
703 done = 1;
5e5100cb 704 cur_comp = NULL;
fb4c6eba
DJ
705 break;
706 }
707
5e5100cb 708 if (cur_comp != NULL && prev_comp != NULL)
de17c821 709 {
5e5100cb 710 /* We want to discard the rightmost child of PREV_COMP. */
fb4c6eba 711 *prev_comp = *d_left (prev_comp);
aff410f1
MS
712 /* The ten is completely arbitrary; we don't have a good
713 estimate. */
5e5100cb 714 ret = cp_comp_to_string (ret_comp, 10);
de17c821
DJ
715 }
716
fb4c6eba 717 xfree (storage);
3a93a0c2 718 xfree (demangled_name);
29592bde 719 return ret.release ();
de17c821
DJ
720}
721
aff410f1
MS
722/* Return the child of COMP which is the basename of a method,
723 variable, et cetera. All scope qualifiers are discarded, but
724 template arguments will be included. The component tree may be
725 modified. */
de17c821 726
5e5100cb
DJ
727static struct demangle_component *
728unqualified_name_from_comp (struct demangle_component *comp)
de17c821 729{
5e5100cb 730 struct demangle_component *ret_comp = comp, *last_template;
fb4c6eba
DJ
731 int done;
732
fb4c6eba 733 done = 0;
5e5100cb 734 last_template = NULL;
fb4c6eba
DJ
735 while (!done)
736 switch (ret_comp->type)
737 {
738 case DEMANGLE_COMPONENT_QUAL_NAME:
739 case DEMANGLE_COMPONENT_LOCAL_NAME:
fb4c6eba
DJ
740 ret_comp = d_right (ret_comp);
741 break;
5e5100cb
DJ
742 case DEMANGLE_COMPONENT_TYPED_NAME:
743 ret_comp = d_left (ret_comp);
744 break;
745 case DEMANGLE_COMPONENT_TEMPLATE:
746 gdb_assert (last_template == NULL);
747 last_template = ret_comp;
748 ret_comp = d_left (ret_comp);
749 break;
fb4c6eba
DJ
750 case DEMANGLE_COMPONENT_CONST:
751 case DEMANGLE_COMPONENT_RESTRICT:
752 case DEMANGLE_COMPONENT_VOLATILE:
753 case DEMANGLE_COMPONENT_CONST_THIS:
754 case DEMANGLE_COMPONENT_RESTRICT_THIS:
755 case DEMANGLE_COMPONENT_VOLATILE_THIS:
756 case DEMANGLE_COMPONENT_VENDOR_TYPE_QUAL:
757 ret_comp = d_left (ret_comp);
758 break;
759 case DEMANGLE_COMPONENT_NAME:
fb4c6eba
DJ
760 case DEMANGLE_COMPONENT_CTOR:
761 case DEMANGLE_COMPONENT_DTOR:
762 case DEMANGLE_COMPONENT_OPERATOR:
763 case DEMANGLE_COMPONENT_EXTENDED_OPERATOR:
764 done = 1;
765 break;
766 default:
5e5100cb 767 return NULL;
fb4c6eba
DJ
768 break;
769 }
770
5e5100cb
DJ
771 if (last_template)
772 {
773 d_left (last_template) = ret_comp;
774 return last_template;
775 }
776
777 return ret_comp;
778}
779
780/* Return the name of the method whose linkage name is PHYSNAME. */
781
782char *
783method_name_from_physname (const char *physname)
784{
de237128 785 void *storage = NULL;
29592bde
PA
786 char *demangled_name = NULL;
787 gdb::unique_xmalloc_ptr<char> ret;
5e5100cb 788 struct demangle_component *ret_comp;
c8b23b3f 789 std::unique_ptr<demangle_parse_info> info;
5e5100cb 790
3a93a0c2
KS
791 info = mangled_name_to_comp (physname, DMGL_ANSI,
792 &storage, &demangled_name);
793 if (info == NULL)
5e5100cb
DJ
794 return NULL;
795
3a93a0c2 796 ret_comp = unqualified_name_from_comp (info->tree);
5e5100cb 797
fb4c6eba 798 if (ret_comp != NULL)
aff410f1
MS
799 /* The ten is completely arbitrary; we don't have a good
800 estimate. */
fb4c6eba
DJ
801 ret = cp_comp_to_string (ret_comp, 10);
802
803 xfree (storage);
3a93a0c2 804 xfree (demangled_name);
29592bde 805 return ret.release ();
fb4c6eba 806}
de17c821 807
5e5100cb
DJ
808/* If FULL_NAME is the demangled name of a C++ function (including an
809 arg list, possibly including namespace/class qualifications),
810 return a new string containing only the function name (without the
811 arg list/class qualifications). Otherwise, return NULL. The
812 caller is responsible for freeing the memory in question. */
813
814char *
815cp_func_name (const char *full_name)
816{
29592bde 817 gdb::unique_xmalloc_ptr<char> ret;
5e5100cb 818 struct demangle_component *ret_comp;
c8b23b3f 819 std::unique_ptr<demangle_parse_info> info;
5e5100cb 820
3a93a0c2
KS
821 info = cp_demangled_name_to_comp (full_name, NULL);
822 if (!info)
5e5100cb
DJ
823 return NULL;
824
3a93a0c2 825 ret_comp = unqualified_name_from_comp (info->tree);
5e5100cb 826
5e5100cb
DJ
827 if (ret_comp != NULL)
828 ret = cp_comp_to_string (ret_comp, 10);
829
29592bde 830 return ret.release ();
5e5100cb
DJ
831}
832
c62446b1
PA
833/* Helper for cp_remove_params. DEMANGLED_NAME is the name of a
834 function, including parameters and (optionally) a return type.
835 Return the name of the function without parameters or return type,
836 or NULL if we can not parse the name. If REQUIRE_PARAMS is false,
837 then tolerate a non-existing or unbalanced parameter list. */
5e5100cb 838
c62446b1
PA
839static gdb::unique_xmalloc_ptr<char>
840cp_remove_params_1 (const char *demangled_name, bool require_params)
5e5100cb 841{
109483d9 842 bool done = false;
5e5100cb 843 struct demangle_component *ret_comp;
c8b23b3f 844 std::unique_ptr<demangle_parse_info> info;
29592bde 845 gdb::unique_xmalloc_ptr<char> ret;
5e5100cb
DJ
846
847 if (demangled_name == NULL)
848 return NULL;
849
3a93a0c2
KS
850 info = cp_demangled_name_to_comp (demangled_name, NULL);
851 if (info == NULL)
5e5100cb
DJ
852 return NULL;
853
854 /* First strip off any qualifiers, if we have a function or method. */
3a93a0c2 855 ret_comp = info->tree;
5e5100cb
DJ
856 while (!done)
857 switch (ret_comp->type)
858 {
859 case DEMANGLE_COMPONENT_CONST:
860 case DEMANGLE_COMPONENT_RESTRICT:
861 case DEMANGLE_COMPONENT_VOLATILE:
862 case DEMANGLE_COMPONENT_CONST_THIS:
863 case DEMANGLE_COMPONENT_RESTRICT_THIS:
864 case DEMANGLE_COMPONENT_VOLATILE_THIS:
865 case DEMANGLE_COMPONENT_VENDOR_TYPE_QUAL:
866 ret_comp = d_left (ret_comp);
867 break;
868 default:
109483d9 869 done = true;
5e5100cb
DJ
870 break;
871 }
872
873 /* What we have now should be a function. Return its name. */
874 if (ret_comp->type == DEMANGLE_COMPONENT_TYPED_NAME)
875 ret = cp_comp_to_string (d_left (ret_comp), 10);
c62446b1
PA
876 else if (!require_params
877 && (ret_comp->type == DEMANGLE_COMPONENT_NAME
878 || ret_comp->type == DEMANGLE_COMPONENT_QUAL_NAME
879 || ret_comp->type == DEMANGLE_COMPONENT_TEMPLATE))
880 ret = cp_comp_to_string (ret_comp, 10);
5e5100cb 881
109483d9 882 return ret;
5e5100cb
DJ
883}
884
c62446b1
PA
885/* DEMANGLED_NAME is the name of a function, including parameters and
886 (optionally) a return type. Return the name of the function
887 without parameters or return type, or NULL if we can not parse the
888 name. */
889
890gdb::unique_xmalloc_ptr<char>
891cp_remove_params (const char *demangled_name)
892{
893 return cp_remove_params_1 (demangled_name, true);
894}
895
896/* See cp-support.h. */
897
898gdb::unique_xmalloc_ptr<char>
899cp_remove_params_if_any (const char *demangled_name, bool completion_mode)
900{
901 /* Trying to remove parameters from the empty string fails. If
902 we're completing / matching everything, avoid returning NULL
903 which would make callers interpret the result as an error. */
904 if (demangled_name[0] == '\0' && completion_mode)
905 return gdb::unique_xmalloc_ptr<char> (xstrdup (""));
906
907 gdb::unique_xmalloc_ptr<char> without_params
908 = cp_remove_params_1 (demangled_name, false);
909
910 if (without_params == NULL && completion_mode)
911 {
912 std::string copy = demangled_name;
913
914 while (!copy.empty ())
915 {
916 copy.pop_back ();
917 without_params = cp_remove_params_1 (copy.c_str (), false);
918 if (without_params != NULL)
919 break;
920 }
921 }
922
923 return without_params;
924}
925
fb4c6eba
DJ
926/* Here are some random pieces of trivia to keep in mind while trying
927 to take apart demangled names:
de17c821 928
fb4c6eba
DJ
929 - Names can contain function arguments or templates, so the process
930 has to be, to some extent recursive: maybe keep track of your
931 depth based on encountering <> and ().
932
933 - Parentheses don't just have to happen at the end of a name: they
934 can occur even if the name in question isn't a function, because
935 a template argument might be a type that's a function.
936
937 - Conversely, even if you're trying to deal with a function, its
938 demangled name might not end with ')': it could be a const or
939 volatile class method, in which case it ends with "const" or
940 "volatile".
941
942 - Parentheses are also used in anonymous namespaces: a variable
943 'foo' in an anonymous namespace gets demangled as "(anonymous
944 namespace)::foo".
945
946 - And operator names can contain parentheses or angle brackets. */
947
948/* FIXME: carlton/2003-03-13: We have several functions here with
949 overlapping functionality; can we combine them? Also, do they
950 handle all the above considerations correctly? */
de17c821 951
9219021c
DC
952
953/* This returns the length of first component of NAME, which should be
954 the demangled name of a C++ variable/function/method/etc.
955 Specifically, it returns the index of the first colon forming the
956 boundary of the first component: so, given 'A::foo' or 'A::B::foo'
957 it returns the 1, and given 'foo', it returns 0. */
958
b2a7f303
DC
959/* The character in NAME indexed by the return value is guaranteed to
960 always be either ':' or '\0'. */
9219021c
DC
961
962/* NOTE: carlton/2003-03-13: This function is currently only intended
963 for internal use: it's probably not entirely safe when called on
b2a7f303
DC
964 user-generated input, because some of the 'index += 2' lines in
965 cp_find_first_component_aux might go past the end of malformed
966 input. */
967
968unsigned int
969cp_find_first_component (const char *name)
970{
971 return cp_find_first_component_aux (name, 0);
972}
973
974/* Helper function for cp_find_first_component. Like that function,
975 it returns the length of the first component of NAME, but to make
976 the recursion easier, it also stops if it reaches an unexpected ')'
977 or '>' if the value of PERMISSIVE is nonzero. */
9219021c 978
b2a7f303
DC
979static unsigned int
980cp_find_first_component_aux (const char *name, int permissive)
9219021c 981{
9219021c 982 unsigned int index = 0;
0f20eeea
DC
983 /* Operator names can show up in unexpected places. Since these can
984 contain parentheses or angle brackets, they can screw up the
985 recursion. But not every string 'operator' is part of an
986 operater name: e.g. you could have a variable 'cooperator'. So
987 this variable tells us whether or not we should treat the string
988 'operator' as starting an operator. */
989 int operator_possible = 1;
9219021c
DC
990
991 for (;; ++index)
992 {
993 switch (name[index])
994 {
995 case '<':
996 /* Template; eat it up. The calls to cp_first_component
997 should only return (I hope!) when they reach the '>'
998 terminating the component or a '::' between two
999 components. (Hence the '+ 2'.) */
1000 index += 1;
b2a7f303 1001 for (index += cp_find_first_component_aux (name + index, 1);
9219021c 1002 name[index] != '>';
b2a7f303 1003 index += cp_find_first_component_aux (name + index, 1))
9219021c 1004 {
b2a7f303
DC
1005 if (name[index] != ':')
1006 {
1007 demangled_name_complaint (name);
1008 return strlen (name);
1009 }
9219021c
DC
1010 index += 2;
1011 }
0f20eeea 1012 operator_possible = 1;
9219021c
DC
1013 break;
1014 case '(':
1015 /* Similar comment as to '<'. */
1016 index += 1;
b2a7f303 1017 for (index += cp_find_first_component_aux (name + index, 1);
9219021c 1018 name[index] != ')';
b2a7f303 1019 index += cp_find_first_component_aux (name + index, 1))
9219021c 1020 {
b2a7f303
DC
1021 if (name[index] != ':')
1022 {
1023 demangled_name_complaint (name);
1024 return strlen (name);
1025 }
9219021c
DC
1026 index += 2;
1027 }
0f20eeea 1028 operator_possible = 1;
9219021c
DC
1029 break;
1030 case '>':
1031 case ')':
b2a7f303 1032 if (permissive)
7a20f2c2 1033 return index;
b2a7f303
DC
1034 else
1035 {
1036 demangled_name_complaint (name);
1037 return strlen (name);
1038 }
9219021c 1039 case '\0':
9219021c 1040 return index;
1cafadb4
DB
1041 case ':':
1042 /* ':' marks a component iff the next character is also a ':'.
1043 Otherwise it is probably malformed input. */
1044 if (name[index + 1] == ':')
1045 return index;
1046 break;
0f20eeea
DC
1047 case 'o':
1048 /* Operator names can screw up the recursion. */
1049 if (operator_possible
8090b426 1050 && startswith (name + index, CP_OPERATOR_STR))
0f20eeea 1051 {
8090b426 1052 index += CP_OPERATOR_LEN;
f88e9fd3 1053 while (ISSPACE(name[index]))
0f20eeea
DC
1054 ++index;
1055 switch (name[index])
1056 {
cf325299
PA
1057 case '\0':
1058 return index;
0f20eeea
DC
1059 /* Skip over one less than the appropriate number of
1060 characters: the for loop will skip over the last
1061 one. */
1062 case '<':
1063 if (name[index + 1] == '<')
1064 index += 1;
1065 else
1066 index += 0;
1067 break;
1068 case '>':
1069 case '-':
1070 if (name[index + 1] == '>')
1071 index += 1;
1072 else
1073 index += 0;
1074 break;
1075 case '(':
1076 index += 1;
1077 break;
1078 default:
1079 index += 0;
1080 break;
1081 }
1082 }
1083 operator_possible = 0;
1084 break;
1085 case ' ':
1086 case ',':
1087 case '.':
1088 case '&':
1089 case '*':
1090 /* NOTE: carlton/2003-04-18: I'm not sure what the precise
1091 set of relevant characters are here: it's necessary to
1092 include any character that can show up before 'operator'
1093 in a demangled name, and it's safe to include any
1094 character that can't be part of an identifier's name. */
1095 operator_possible = 1;
1096 break;
9219021c 1097 default:
0f20eeea 1098 operator_possible = 0;
9219021c
DC
1099 break;
1100 }
1101 }
1102}
1103
b2a7f303
DC
1104/* Complain about a demangled name that we don't know how to parse.
1105 NAME is the demangled name in question. */
1106
1107static void
1108demangled_name_complaint (const char *name)
1109{
b98664d3 1110 complaint ("unexpected demangled name '%s'", name);
b2a7f303
DC
1111}
1112
9219021c
DC
1113/* If NAME is the fully-qualified name of a C++
1114 function/variable/method/etc., this returns the length of its
1115 entire prefix: all of the namespaces and classes that make up its
1116 name. Given 'A::foo', it returns 1, given 'A::B::foo', it returns
1117 4, given 'foo', it returns 0. */
1118
1119unsigned int
1120cp_entire_prefix_len (const char *name)
1121{
1122 unsigned int current_len = cp_find_first_component (name);
1123 unsigned int previous_len = 0;
1124
1125 while (name[current_len] != '\0')
1126 {
1127 gdb_assert (name[current_len] == ':');
1128 previous_len = current_len;
1129 /* Skip the '::'. */
1130 current_len += 2;
1131 current_len += cp_find_first_component (name + current_len);
1132 }
1133
1134 return previous_len;
1135}
1136
b6429628
DC
1137/* Overload resolution functions. */
1138
8d577d32 1139/* Test to see if SYM is a symbol that we haven't seen corresponding
0891c3cc
PA
1140 to a function named OLOAD_NAME. If so, add it to
1141 OVERLOAD_LIST. */
b6429628
DC
1142
1143static void
aff410f1 1144overload_list_add_symbol (struct symbol *sym,
0891c3cc
PA
1145 const char *oload_name,
1146 std::vector<symbol *> *overload_list)
b6429628 1147{
aff410f1
MS
1148 /* If there is no type information, we can't do anything, so
1149 skip. */
b6429628
DC
1150 if (SYMBOL_TYPE (sym) == NULL)
1151 return;
1152
aff410f1 1153 /* skip any symbols that we've already considered. */
0891c3cc 1154 for (symbol *listed_sym : *overload_list)
8d577d32 1155 if (strcmp (SYMBOL_LINKAGE_NAME (sym),
0891c3cc 1156 SYMBOL_LINKAGE_NAME (listed_sym)) == 0)
b6429628
DC
1157 return;
1158
1159 /* Get the demangled name without parameters */
0891c3cc
PA
1160 gdb::unique_xmalloc_ptr<char> sym_name
1161 = cp_remove_params (SYMBOL_NATURAL_NAME (sym));
b6429628
DC
1162 if (!sym_name)
1163 return;
1164
1165 /* skip symbols that cannot match */
109483d9
PA
1166 if (strcmp (sym_name.get (), oload_name) != 0)
1167 return;
b6429628 1168
0891c3cc 1169 overload_list->push_back (sym);
b6429628
DC
1170}
1171
1172/* Return a null-terminated list of pointers to function symbols that
8d577d32 1173 are named FUNC_NAME and are visible within NAMESPACE. */
b6429628 1174
0891c3cc 1175struct std::vector<symbol *>
8d577d32 1176make_symbol_overload_list (const char *func_name,
fe978cb0 1177 const char *the_namespace)
b6429628 1178{
245040d7 1179 const char *name;
0891c3cc 1180 std::vector<symbol *> overload_list;
b6429628 1181
0891c3cc 1182 overload_list.reserve (100);
8d577d32 1183
0891c3cc 1184 add_symbol_overload_list_using (func_name, the_namespace, &overload_list);
8d577d32 1185
fe978cb0 1186 if (the_namespace[0] == '\0')
245040d7
SW
1187 name = func_name;
1188 else
1189 {
1190 char *concatenated_name
224c3ddb 1191 = (char *) alloca (strlen (the_namespace) + 2 + strlen (func_name) + 1);
fe978cb0 1192 strcpy (concatenated_name, the_namespace);
245040d7
SW
1193 strcat (concatenated_name, "::");
1194 strcat (concatenated_name, func_name);
1195 name = concatenated_name;
1196 }
1197
0891c3cc
PA
1198 add_symbol_overload_list_qualified (name, &overload_list);
1199 return overload_list;
8d577d32
DC
1200}
1201
245040d7
SW
1202/* Add all symbols with a name matching NAME in BLOCK to the overload
1203 list. */
1204
1205static void
0891c3cc
PA
1206add_symbol_overload_list_block (const char *name,
1207 const struct block *block,
1208 std::vector<symbol *> *overload_list)
245040d7 1209{
8157b174 1210 struct block_iterator iter;
245040d7
SW
1211 struct symbol *sym;
1212
b5ec771e
PA
1213 lookup_name_info lookup_name (name, symbol_name_match_type::FULL);
1214
1215 ALL_BLOCK_SYMBOLS_WITH_NAME (block, lookup_name, iter, sym)
0891c3cc 1216 overload_list_add_symbol (sym, name, overload_list);
245040d7
SW
1217}
1218
7322dca9
SW
1219/* Adds the function FUNC_NAME from NAMESPACE to the overload set. */
1220
1221static void
0891c3cc
PA
1222add_symbol_overload_list_namespace (const char *func_name,
1223 const char *the_namespace,
1224 std::vector<symbol *> *overload_list)
7322dca9 1225{
245040d7
SW
1226 const char *name;
1227 const struct block *block = NULL;
1228
fe978cb0 1229 if (the_namespace[0] == '\0')
245040d7 1230 name = func_name;
7322dca9
SW
1231 else
1232 {
1233 char *concatenated_name
224c3ddb 1234 = (char *) alloca (strlen (the_namespace) + 2 + strlen (func_name) + 1);
c5504eaf 1235
fe978cb0 1236 strcpy (concatenated_name, the_namespace);
7322dca9
SW
1237 strcat (concatenated_name, "::");
1238 strcat (concatenated_name, func_name);
245040d7 1239 name = concatenated_name;
7322dca9 1240 }
245040d7
SW
1241
1242 /* Look in the static block. */
1243 block = block_static_block (get_selected_block (0));
eeaafae2 1244 if (block)
0891c3cc 1245 add_symbol_overload_list_block (name, block, overload_list);
245040d7
SW
1246
1247 /* Look in the global block. */
1248 block = block_global_block (block);
eeaafae2 1249 if (block)
0891c3cc 1250 add_symbol_overload_list_block (name, block, overload_list);
245040d7 1251
7322dca9
SW
1252}
1253
aff410f1
MS
1254/* Search the namespace of the given type and namespace of and public
1255 base types. */
7322dca9
SW
1256
1257static void
0891c3cc
PA
1258add_symbol_overload_list_adl_namespace (struct type *type,
1259 const char *func_name,
1260 std::vector<symbol *> *overload_list)
7322dca9 1261{
fe978cb0 1262 char *the_namespace;
0d5cff50 1263 const char *type_name;
7322dca9
SW
1264 int i, prefix_len;
1265
aff410f1 1266 while (TYPE_CODE (type) == TYPE_CODE_PTR
aa006118 1267 || TYPE_IS_REFERENCE (type)
7322dca9
SW
1268 || TYPE_CODE (type) == TYPE_CODE_ARRAY
1269 || TYPE_CODE (type) == TYPE_CODE_TYPEDEF)
1270 {
1271 if (TYPE_CODE (type) == TYPE_CODE_TYPEDEF)
1272 type = check_typedef(type);
1273 else
1274 type = TYPE_TARGET_TYPE (type);
1275 }
1276
1277 type_name = TYPE_NAME (type);
1278
7d3fe98e
SW
1279 if (type_name == NULL)
1280 return;
1281
7322dca9
SW
1282 prefix_len = cp_entire_prefix_len (type_name);
1283
1284 if (prefix_len != 0)
1285 {
224c3ddb 1286 the_namespace = (char *) alloca (prefix_len + 1);
fe978cb0
PA
1287 strncpy (the_namespace, type_name, prefix_len);
1288 the_namespace[prefix_len] = '\0';
7322dca9 1289
0891c3cc
PA
1290 add_symbol_overload_list_namespace (func_name, the_namespace,
1291 overload_list);
7322dca9
SW
1292 }
1293
1294 /* Check public base type */
4753d33b 1295 if (TYPE_CODE (type) == TYPE_CODE_STRUCT)
7322dca9
SW
1296 for (i = 0; i < TYPE_N_BASECLASSES (type); i++)
1297 {
1298 if (BASETYPE_VIA_PUBLIC (type, i))
0891c3cc
PA
1299 add_symbol_overload_list_adl_namespace (TYPE_BASECLASS (type, i),
1300 func_name,
1301 overload_list);
7322dca9
SW
1302 }
1303}
1304
0891c3cc
PA
1305/* Adds to OVERLOAD_LIST the overload list overload candidates for
1306 FUNC_NAME found through argument dependent lookup. */
7322dca9 1307
0891c3cc
PA
1308void
1309add_symbol_overload_list_adl (gdb::array_view<type *> arg_types,
1310 const char *func_name,
1311 std::vector<symbol *> *overload_list)
7322dca9 1312{
0891c3cc
PA
1313 for (type *arg_type : arg_types)
1314 add_symbol_overload_list_adl_namespace (arg_type, func_name,
1315 overload_list);
7322dca9
SW
1316}
1317
8d577d32
DC
1318/* This applies the using directives to add namespaces to search in,
1319 and then searches for overloads in all of those namespaces. It
1320 adds the symbols found to sym_return_val. Arguments are as in
1321 make_symbol_overload_list. */
1322
1323static void
0891c3cc
PA
1324add_symbol_overload_list_using (const char *func_name,
1325 const char *the_namespace,
1326 std::vector<symbol *> *overload_list)
8d577d32 1327{
19c0c0f8 1328 struct using_direct *current;
4c3376c8 1329 const struct block *block;
8d577d32
DC
1330
1331 /* First, go through the using directives. If any of them apply,
1332 look in the appropriate namespaces for new functions to match
1333 on. */
b6429628 1334
4c3376c8
SW
1335 for (block = get_selected_block (0);
1336 block != NULL;
1337 block = BLOCK_SUPERBLOCK (block))
1338 for (current = block_using (block);
1339 current != NULL;
1340 current = current->next)
1341 {
19c0c0f8
UW
1342 /* Prevent recursive calls. */
1343 if (current->searched)
1344 continue;
1345
aff410f1
MS
1346 /* If this is a namespace alias or imported declaration ignore
1347 it. */
4c3376c8
SW
1348 if (current->alias != NULL || current->declaration != NULL)
1349 continue;
1350
fe978cb0 1351 if (strcmp (the_namespace, current->import_dest) == 0)
19c0c0f8 1352 {
aff410f1
MS
1353 /* Mark this import as searched so that the recursive call
1354 does not search it again. */
167b0be1
TT
1355 scoped_restore reset_directive_searched
1356 = make_scoped_restore (&current->searched, 1);
19c0c0f8 1357
0891c3cc
PA
1358 add_symbol_overload_list_using (func_name,
1359 current->import_src,
1360 overload_list);
19c0c0f8 1361 }
4c3376c8 1362 }
b6429628 1363
8d577d32 1364 /* Now, add names for this namespace. */
0891c3cc
PA
1365 add_symbol_overload_list_namespace (func_name, the_namespace,
1366 overload_list);
8d577d32 1367}
b6429628 1368
8d577d32
DC
1369/* This does the bulk of the work of finding overloaded symbols.
1370 FUNC_NAME is the name of the overloaded function we're looking for
1371 (possibly including namespace info). */
b6429628 1372
8d577d32 1373static void
0891c3cc
PA
1374add_symbol_overload_list_qualified (const char *func_name,
1375 std::vector<symbol *> *overload_list)
8d577d32 1376{
43f3e411 1377 struct compunit_symtab *cust;
8d577d32
DC
1378 struct objfile *objfile;
1379 const struct block *b, *surrounding_static_block = 0;
b6429628 1380
aff410f1
MS
1381 /* Look through the partial symtabs for all symbols which begin by
1382 matching FUNC_NAME. Make sure we read that symbol table in. */
b6429628 1383
ccefe4c4
TT
1384 ALL_OBJFILES (objfile)
1385 {
1386 if (objfile->sf)
1387 objfile->sf->qf->expand_symtabs_for_function (objfile, func_name);
1388 }
b6429628
DC
1389
1390 /* Search upwards from currently selected frame (so that we can
1391 complete on local vars. */
1392
1393 for (b = get_selected_block (0); b != NULL; b = BLOCK_SUPERBLOCK (b))
0891c3cc 1394 add_symbol_overload_list_block (func_name, b, overload_list);
b6429628 1395
8d577d32
DC
1396 surrounding_static_block = block_static_block (get_selected_block (0));
1397
b6429628
DC
1398 /* Go through the symtabs and check the externs and statics for
1399 symbols which match. */
1400
43f3e411 1401 ALL_COMPUNITS (objfile, cust)
b6429628
DC
1402 {
1403 QUIT;
43f3e411 1404 b = BLOCKVECTOR_BLOCK (COMPUNIT_BLOCKVECTOR (cust), GLOBAL_BLOCK);
0891c3cc 1405 add_symbol_overload_list_block (func_name, b, overload_list);
b6429628
DC
1406 }
1407
43f3e411 1408 ALL_COMPUNITS (objfile, cust)
b6429628
DC
1409 {
1410 QUIT;
43f3e411 1411 b = BLOCKVECTOR_BLOCK (COMPUNIT_BLOCKVECTOR (cust), STATIC_BLOCK);
b6429628
DC
1412 /* Don't do this block twice. */
1413 if (b == surrounding_static_block)
1414 continue;
0891c3cc 1415 add_symbol_overload_list_block (func_name, b, overload_list);
b6429628 1416 }
8d577d32
DC
1417}
1418
aff410f1 1419/* Lookup the rtti type for a class name. */
362ff856
MC
1420
1421struct type *
1422cp_lookup_rtti_type (const char *name, struct block *block)
1423{
1424 struct symbol * rtti_sym;
1425 struct type * rtti_type;
1426
82c7be31
DE
1427 /* Use VAR_DOMAIN here as NAME may be a typedef. PR 18141, 18417.
1428 Classes "live" in both STRUCT_DOMAIN and VAR_DOMAIN. */
d12307c1 1429 rtti_sym = lookup_symbol (name, block, VAR_DOMAIN, NULL).symbol;
362ff856
MC
1430
1431 if (rtti_sym == NULL)
1432 {
8a3fe4f8 1433 warning (_("RTTI symbol not found for class '%s'"), name);
362ff856
MC
1434 return NULL;
1435 }
1436
1437 if (SYMBOL_CLASS (rtti_sym) != LOC_TYPEDEF)
1438 {
8a3fe4f8 1439 warning (_("RTTI symbol for class '%s' is not a type"), name);
362ff856
MC
1440 return NULL;
1441 }
1442
82c7be31 1443 rtti_type = check_typedef (SYMBOL_TYPE (rtti_sym));
362ff856
MC
1444
1445 switch (TYPE_CODE (rtti_type))
1446 {
4753d33b 1447 case TYPE_CODE_STRUCT:
362ff856
MC
1448 break;
1449 case TYPE_CODE_NAMESPACE:
1450 /* chastain/2003-11-26: the symbol tables often contain fake
1451 symbols for namespaces with the same name as the struct.
1452 This warning is an indication of a bug in the lookup order
1453 or a bug in the way that the symbol tables are populated. */
8a3fe4f8 1454 warning (_("RTTI symbol for class '%s' is a namespace"), name);
362ff856
MC
1455 return NULL;
1456 default:
8a3fe4f8 1457 warning (_("RTTI symbol for class '%s' has bad type"), name);
362ff856
MC
1458 return NULL;
1459 }
1460
1461 return rtti_type;
1462}
b6429628 1463
992c7d70
GB
1464#ifdef HAVE_WORKING_FORK
1465
1466/* If nonzero, attempt to catch crashes in the demangler and print
1467 useful debugging information. */
1468
1469static int catch_demangler_crashes = 1;
1470
992c7d70
GB
1471/* Stack context and environment for demangler crash recovery. */
1472
1473static SIGJMP_BUF gdb_demangle_jmp_buf;
1474
1475/* If nonzero, attempt to dump core from the signal handler. */
1476
1477static int gdb_demangle_attempt_core_dump = 1;
1478
1479/* Signal handler for gdb_demangle. */
1480
1481static void
1482gdb_demangle_signal_handler (int signo)
1483{
1484 if (gdb_demangle_attempt_core_dump)
1485 {
1486 if (fork () == 0)
1487 dump_core ();
1488
1489 gdb_demangle_attempt_core_dump = 0;
1490 }
1491
1492 SIGLONGJMP (gdb_demangle_jmp_buf, signo);
1493}
1494
1495#endif
1496
8de20a37
TT
1497/* A wrapper for bfd_demangle. */
1498
1499char *
1500gdb_demangle (const char *name, int options)
1501{
992c7d70
GB
1502 char *result = NULL;
1503 int crash_signal = 0;
1504
1505#ifdef HAVE_WORKING_FORK
1506#if defined (HAVE_SIGACTION) && defined (SA_RESTART)
1507 struct sigaction sa, old_sa;
1508#else
a40805d4 1509 sighandler_t ofunc;
992c7d70
GB
1510#endif
1511 static int core_dump_allowed = -1;
1512
1513 if (core_dump_allowed == -1)
1514 {
1515 core_dump_allowed = can_dump_core (LIMIT_CUR);
1516
1517 if (!core_dump_allowed)
1518 gdb_demangle_attempt_core_dump = 0;
1519 }
1520
1521 if (catch_demangler_crashes)
1522 {
1523#if defined (HAVE_SIGACTION) && defined (SA_RESTART)
1524 sa.sa_handler = gdb_demangle_signal_handler;
1525 sigemptyset (&sa.sa_mask);
91b52240 1526#ifdef HAVE_SIGALTSTACK
992c7d70 1527 sa.sa_flags = SA_ONSTACK;
91b52240
GB
1528#else
1529 sa.sa_flags = 0;
1530#endif
992c7d70
GB
1531 sigaction (SIGSEGV, &sa, &old_sa);
1532#else
a40805d4 1533 ofunc = signal (SIGSEGV, gdb_demangle_signal_handler);
992c7d70
GB
1534#endif
1535
1536 crash_signal = SIGSETJMP (gdb_demangle_jmp_buf);
1537 }
1538#endif
1539
1540 if (crash_signal == 0)
1541 result = bfd_demangle (NULL, name, options);
1542
1543#ifdef HAVE_WORKING_FORK
1544 if (catch_demangler_crashes)
1545 {
1546#if defined (HAVE_SIGACTION) && defined (SA_RESTART)
1547 sigaction (SIGSEGV, &old_sa, NULL);
1548#else
1549 signal (SIGSEGV, ofunc);
1550#endif
1551
1552 if (crash_signal != 0)
1553 {
1554 static int error_reported = 0;
1555
1556 if (!error_reported)
1557 {
6ad94bc7
TT
1558 std::string short_msg
1559 = string_printf (_("unable to demangle '%s' "
1560 "(demangler failed with signal %d)"),
1561 name, crash_signal);
992c7d70 1562
6ad94bc7
TT
1563 std::string long_msg
1564 = string_printf ("%s:%d: %s: %s", __FILE__, __LINE__,
1565 "demangler-warning", short_msg.c_str ());
992c7d70 1566
223ffa71
TT
1567 target_terminal::scoped_restore_terminal_state term_state;
1568 target_terminal::ours_for_output ();
c509f1e1 1569
992c7d70
GB
1570 begin_line ();
1571 if (core_dump_allowed)
1572 fprintf_unfiltered (gdb_stderr,
1573 _("%s\nAttempting to dump core.\n"),
6ad94bc7 1574 long_msg.c_str ());
992c7d70 1575 else
6ad94bc7 1576 warn_cant_dump_core (long_msg.c_str ());
992c7d70 1577
6ad94bc7 1578 demangler_warning (__FILE__, __LINE__, "%s", short_msg.c_str ());
992c7d70
GB
1579
1580 error_reported = 1;
1581 }
1582
1583 result = NULL;
1584 }
1585 }
1586#endif
1587
1588 return result;
8de20a37
TT
1589}
1590
8b302db8
TT
1591/* See cp-support.h. */
1592
1593int
1594gdb_sniff_from_mangled_name (const char *mangled, char **demangled)
1595{
1596 *demangled = gdb_demangle (mangled, DMGL_PARAMS | DMGL_ANSI);
1597 return *demangled != NULL;
1598}
1599
a20714ff
PA
1600/* See cp-support.h. */
1601
1602unsigned int
1603cp_search_name_hash (const char *search_name)
1604{
1605 /* cp_entire_prefix_len assumes a fully-qualified name with no
1606 leading "::". */
1607 if (startswith (search_name, "::"))
1608 search_name += 2;
1609
1610 unsigned int prefix_len = cp_entire_prefix_len (search_name);
1611 if (prefix_len != 0)
1612 search_name += prefix_len + 2;
1613
bd69330d
PA
1614 unsigned int hash = 0;
1615 for (const char *string = search_name; *string != '\0'; ++string)
1616 {
1617 string = skip_spaces (string);
1618
1619 if (*string == '(')
1620 break;
1621
1622 /* Ignore ABI tags such as "[abi:cxx11]. */
1623 if (*string == '['
1624 && startswith (string + 1, "abi:")
1625 && string[5] != ':')
1626 break;
1627
1628 hash = SYMBOL_HASH_NEXT (hash, *string);
1629 }
1630 return hash;
a20714ff
PA
1631}
1632
1633/* Helper for cp_symbol_name_matches (i.e., symbol_name_matcher_ftype
1634 implementation for symbol_name_match_type::WILD matching). Split
1635 to a separate function for unit-testing convenience.
1636
1637 If SYMBOL_SEARCH_NAME has more scopes than LOOKUP_NAME, we try to
1638 match ignoring the extra leading scopes of SYMBOL_SEARCH_NAME.
1639 This allows conveniently setting breakpoints on functions/methods
1640 inside any namespace/class without specifying the fully-qualified
1641 name.
1642
1643 E.g., these match:
b5ec771e 1644
a20714ff
PA
1645 [symbol search name] [lookup name]
1646 foo::bar::func foo::bar::func
1647 foo::bar::func bar::func
1648 foo::bar::func func
1649
1650 While these don't:
1651
1652 [symbol search name] [lookup name]
1653 foo::zbar::func bar::func
1654 foo::bar::func foo::func
1655
1656 See more examples in the test_cp_symbol_name_matches selftest
1657 function below.
0662b6a7
PA
1658
1659 See symbol_name_matcher_ftype for description of SYMBOL_SEARCH_NAME
1660 and COMP_MATCH_RES.
1661
1662 LOOKUP_NAME/LOOKUP_NAME_LEN is the name we're looking up.
1663
1664 See strncmp_iw_with_mode for description of MODE.
1665*/
1666
1667static bool
1668cp_symbol_name_matches_1 (const char *symbol_search_name,
1669 const char *lookup_name,
1670 size_t lookup_name_len,
1671 strncmp_iw_mode mode,
a207cff2 1672 completion_match_result *comp_match_res)
0662b6a7 1673{
a20714ff 1674 const char *sname = symbol_search_name;
bd69330d
PA
1675 completion_match_for_lcd *match_for_lcd
1676 = (comp_match_res != NULL ? &comp_match_res->match_for_lcd : NULL);
a20714ff
PA
1677
1678 while (true)
1679 {
1680 if (strncmp_iw_with_mode (sname, lookup_name, lookup_name_len,
bd69330d 1681 mode, language_cplus, match_for_lcd) == 0)
a20714ff
PA
1682 {
1683 if (comp_match_res != NULL)
1684 {
1685 /* Note here we set different MATCH and MATCH_FOR_LCD
1686 strings. This is because with
1687
1688 (gdb) b push_bac[TAB]
1689
1690 we want the completion matches to list
1691
1692 std::vector<int>::push_back(...)
1693 std::vector<char>::push_back(...)
1694
1695 etc., which are SYMBOL_SEARCH_NAMEs, while we want
1696 the input line to auto-complete to
1697
1698 (gdb) push_back(...)
1699
1700 which is SNAME, not to
1701
1702 (gdb) std::vector<
1703
1704 which would be the regular common prefix between all
1705 the matches otherwise. */
1706 comp_match_res->set_match (symbol_search_name, sname);
1707 }
1708 return true;
1709 }
1710
1711 unsigned int len = cp_find_first_component (sname);
1712
1713 if (sname[len] == '\0')
1714 return false;
1715
1716 gdb_assert (sname[len] == ':');
1717 /* Skip the '::'. */
1718 sname += len + 2;
1719 }
1720}
1721
1722/* C++ symbol_name_matcher_ftype implementation. */
1723
1724static bool
1725cp_fq_symbol_name_matches (const char *symbol_search_name,
1726 const lookup_name_info &lookup_name,
1727 completion_match_result *comp_match_res)
1728{
1729 /* Get the demangled name. */
1730 const std::string &name = lookup_name.cplus ().lookup_name ();
bd69330d
PA
1731 completion_match_for_lcd *match_for_lcd
1732 = (comp_match_res != NULL ? &comp_match_res->match_for_lcd : NULL);
a20714ff
PA
1733 strncmp_iw_mode mode = (lookup_name.completion_mode ()
1734 ? strncmp_iw_mode::NORMAL
1735 : strncmp_iw_mode::MATCH_PARAMS);
1736
0662b6a7 1737 if (strncmp_iw_with_mode (symbol_search_name,
a20714ff 1738 name.c_str (), name.size (),
bd69330d 1739 mode, language_cplus, match_for_lcd) == 0)
0662b6a7 1740 {
a207cff2
PA
1741 if (comp_match_res != NULL)
1742 comp_match_res->set_match (symbol_search_name);
0662b6a7
PA
1743 return true;
1744 }
1745
1746 return false;
1747}
1748
a20714ff
PA
1749/* C++ symbol_name_matcher_ftype implementation for wild matches.
1750 Defers work to cp_symbol_name_matches_1. */
0662b6a7 1751
b5ec771e 1752static bool
a20714ff
PA
1753cp_symbol_name_matches (const char *symbol_search_name,
1754 const lookup_name_info &lookup_name,
1755 completion_match_result *comp_match_res)
b5ec771e
PA
1756{
1757 /* Get the demangled name. */
1758 const std::string &name = lookup_name.cplus ().lookup_name ();
1759
1760 strncmp_iw_mode mode = (lookup_name.completion_mode ()
1761 ? strncmp_iw_mode::NORMAL
1762 : strncmp_iw_mode::MATCH_PARAMS);
1763
0662b6a7
PA
1764 return cp_symbol_name_matches_1 (symbol_search_name,
1765 name.c_str (), name.size (),
a207cff2 1766 mode, comp_match_res);
b5ec771e
PA
1767}
1768
1769/* See cp-support.h. */
1770
1771symbol_name_matcher_ftype *
1772cp_get_symbol_name_matcher (const lookup_name_info &lookup_name)
1773{
a20714ff
PA
1774 switch (lookup_name.match_type ())
1775 {
1776 case symbol_name_match_type::FULL:
1777 case symbol_name_match_type::EXPRESSION:
de63c46b 1778 case symbol_name_match_type::SEARCH_NAME:
a20714ff
PA
1779 return cp_fq_symbol_name_matches;
1780 case symbol_name_match_type::WILD:
1781 return cp_symbol_name_matches;
1782 }
1783
1784 gdb_assert_not_reached ("");
b5ec771e
PA
1785}
1786
c62446b1
PA
1787#if GDB_SELF_TEST
1788
1789namespace selftests {
1790
0662b6a7
PA
1791void
1792test_cp_symbol_name_matches ()
1793{
1794#define CHECK_MATCH(SYMBOL, INPUT) \
1795 SELF_CHECK (cp_symbol_name_matches_1 (SYMBOL, \
1796 INPUT, sizeof (INPUT) - 1, \
1797 strncmp_iw_mode::MATCH_PARAMS, \
1798 NULL))
1799
1800#define CHECK_NOT_MATCH(SYMBOL, INPUT) \
1801 SELF_CHECK (!cp_symbol_name_matches_1 (SYMBOL, \
1802 INPUT, sizeof (INPUT) - 1, \
1803 strncmp_iw_mode::MATCH_PARAMS, \
1804 NULL))
1805
1806 /* Like CHECK_MATCH, and also check that INPUT (and all substrings
1807 that start at index 0) completes to SYMBOL. */
1808#define CHECK_MATCH_C(SYMBOL, INPUT) \
1809 do \
1810 { \
1811 CHECK_MATCH (SYMBOL, INPUT); \
1812 for (size_t i = 0; i < sizeof (INPUT) - 1; i++) \
1813 SELF_CHECK (cp_symbol_name_matches_1 (SYMBOL, INPUT, i, \
1814 strncmp_iw_mode::NORMAL, \
1815 NULL)); \
1816 } while (0)
1817
1818 /* Like CHECK_NOT_MATCH, and also check that INPUT does NOT complete
1819 to SYMBOL. */
1820#define CHECK_NOT_MATCH_C(SYMBOL, INPUT) \
1821 do \
1822 { \
1823 CHECK_NOT_MATCH (SYMBOL, INPUT); \
1824 SELF_CHECK (!cp_symbol_name_matches_1 (SYMBOL, INPUT, \
1825 sizeof (INPUT) - 1, \
1826 strncmp_iw_mode::NORMAL, \
1827 NULL)); \
1828 } while (0)
1829
1830 /* Lookup name without parens matches all overloads. */
1831 CHECK_MATCH_C ("function()", "function");
1832 CHECK_MATCH_C ("function(int)", "function");
1833
1834 /* Check whitespace around parameters is ignored. */
1835 CHECK_MATCH_C ("function()", "function ()");
1836 CHECK_MATCH_C ("function ( )", "function()");
1837 CHECK_MATCH_C ("function ()", "function( )");
1838 CHECK_MATCH_C ("func(int)", "func( int )");
1839 CHECK_MATCH_C ("func(int)", "func ( int ) ");
1840 CHECK_MATCH_C ("func ( int )", "func( int )");
1841 CHECK_MATCH_C ("func ( int )", "func ( int ) ");
1842
1843 /* Check symbol name prefixes aren't incorrectly matched. */
1844 CHECK_NOT_MATCH ("func", "function");
1845 CHECK_NOT_MATCH ("function", "func");
1846 CHECK_NOT_MATCH ("function()", "func");
1847
1848 /* Check that if the lookup name includes parameters, only the right
1849 overload matches. */
1850 CHECK_MATCH_C ("function(int)", "function(int)");
1851 CHECK_NOT_MATCH_C ("function(int)", "function()");
1852
1853 /* Check that whitespace within symbol names is not ignored. */
1854 CHECK_NOT_MATCH_C ("function", "func tion");
1855 CHECK_NOT_MATCH_C ("func__tion", "func_ _tion");
1856 CHECK_NOT_MATCH_C ("func11tion", "func1 1tion");
1857
1858 /* Check the converse, which can happen with template function,
1859 where the return type is part of the demangled name. */
1860 CHECK_NOT_MATCH_C ("func tion", "function");
1861 CHECK_NOT_MATCH_C ("func1 1tion", "func11tion");
1862 CHECK_NOT_MATCH_C ("func_ _tion", "func__tion");
1863
1864 /* Within parameters too. */
1865 CHECK_NOT_MATCH_C ("func(param)", "func(par am)");
1866
1867 /* Check handling of whitespace around C++ operators. */
1868 CHECK_NOT_MATCH_C ("operator<<", "opera tor<<");
1869 CHECK_NOT_MATCH_C ("operator<<", "operator< <");
1870 CHECK_NOT_MATCH_C ("operator<<", "operator < <");
1871 CHECK_NOT_MATCH_C ("operator==", "operator= =");
1872 CHECK_NOT_MATCH_C ("operator==", "operator = =");
1873 CHECK_MATCH_C ("operator<<", "operator <<");
1874 CHECK_MATCH_C ("operator<<()", "operator <<");
1875 CHECK_NOT_MATCH_C ("operator<<()", "operator<<(int)");
1876 CHECK_NOT_MATCH_C ("operator<<(int)", "operator<<()");
1877 CHECK_MATCH_C ("operator==", "operator ==");
1878 CHECK_MATCH_C ("operator==()", "operator ==");
1879 CHECK_MATCH_C ("operator <<", "operator<<");
1880 CHECK_MATCH_C ("operator ==", "operator==");
1881 CHECK_MATCH_C ("operator bool", "operator bool");
1882 CHECK_MATCH_C ("operator bool ()", "operator bool");
1883 CHECK_MATCH_C ("operatorX<<", "operatorX < <");
1884 CHECK_MATCH_C ("Xoperator<<", "Xoperator < <");
1885
1886 CHECK_MATCH_C ("operator()(int)", "operator()(int)");
1887 CHECK_MATCH_C ("operator()(int)", "operator ( ) ( int )");
1888 CHECK_MATCH_C ("operator()<long>(int)", "operator ( ) < long > ( int )");
1889 /* The first "()" is not the parameter list. */
1890 CHECK_NOT_MATCH ("operator()(int)", "operator");
1891
1892 /* Misc user-defined operator tests. */
1893
1894 CHECK_NOT_MATCH_C ("operator/=()", "operator ^=");
1895 /* Same length at end of input. */
1896 CHECK_NOT_MATCH_C ("operator>>", "operator[]");
1897 /* Same length but not at end of input. */
1898 CHECK_NOT_MATCH_C ("operator>>()", "operator[]()");
1899
1900 CHECK_MATCH_C ("base::operator char*()", "base::operator char*()");
1901 CHECK_MATCH_C ("base::operator char*()", "base::operator char * ()");
1902 CHECK_MATCH_C ("base::operator char**()", "base::operator char * * ()");
1903 CHECK_MATCH ("base::operator char**()", "base::operator char * *");
1904 CHECK_MATCH_C ("base::operator*()", "base::operator*()");
1905 CHECK_NOT_MATCH_C ("base::operator char*()", "base::operatorc");
1906 CHECK_NOT_MATCH ("base::operator char*()", "base::operator char");
1907 CHECK_NOT_MATCH ("base::operator char*()", "base::operat");
1908
1909 /* Check handling of whitespace around C++ scope operators. */
1910 CHECK_NOT_MATCH_C ("foo::bar", "foo: :bar");
1911 CHECK_MATCH_C ("foo::bar", "foo :: bar");
1912 CHECK_MATCH_C ("foo :: bar", "foo::bar");
1913
1914 CHECK_MATCH_C ("abc::def::ghi()", "abc::def::ghi()");
1915 CHECK_MATCH_C ("abc::def::ghi ( )", "abc::def::ghi()");
1916 CHECK_MATCH_C ("abc::def::ghi()", "abc::def::ghi ( )");
1917 CHECK_MATCH_C ("function()", "function()");
1918 CHECK_MATCH_C ("bar::function()", "bar::function()");
a20714ff
PA
1919
1920 /* Wild matching tests follow. */
1921
1922 /* Tests matching symbols in some scope. */
1923 CHECK_MATCH_C ("foo::function()", "function");
1924 CHECK_MATCH_C ("foo::function(int)", "function");
1925 CHECK_MATCH_C ("foo::bar::function()", "function");
1926 CHECK_MATCH_C ("bar::function()", "bar::function");
1927 CHECK_MATCH_C ("foo::bar::function()", "bar::function");
1928 CHECK_MATCH_C ("foo::bar::function(int)", "bar::function");
1929
1930 /* Same, with parameters in the lookup name. */
1931 CHECK_MATCH_C ("foo::function()", "function()");
1932 CHECK_MATCH_C ("foo::bar::function()", "function()");
1933 CHECK_MATCH_C ("foo::function(int)", "function(int)");
1934 CHECK_MATCH_C ("foo::function()", "foo::function()");
1935 CHECK_MATCH_C ("foo::bar::function()", "bar::function()");
1936 CHECK_MATCH_C ("foo::bar::function(int)", "bar::function(int)");
1937 CHECK_MATCH_C ("bar::function()", "bar::function()");
1938
1939 CHECK_NOT_MATCH_C ("foo::bar::function(int)", "bar::function()");
1940
1941 CHECK_MATCH_C ("(anonymous namespace)::bar::function(int)",
1942 "bar::function(int)");
1943 CHECK_MATCH_C ("foo::(anonymous namespace)::bar::function(int)",
1944 "function(int)");
1945
1946 /* Lookup scope wider than symbol scope, should not match. */
1947 CHECK_NOT_MATCH_C ("function()", "bar::function");
1948 CHECK_NOT_MATCH_C ("function()", "bar::function()");
1949
1950 /* Explicit global scope doesn't match. */
1951 CHECK_NOT_MATCH_C ("foo::function()", "::function");
1952 CHECK_NOT_MATCH_C ("foo::function()", "::function()");
1953 CHECK_NOT_MATCH_C ("foo::function(int)", "::function()");
1954 CHECK_NOT_MATCH_C ("foo::function(int)", "::function(int)");
bd69330d
PA
1955
1956 /* Test ABI tag matching/ignoring. */
1957
1958 /* If the symbol name has an ABI tag, but the lookup name doesn't,
1959 then the ABI tag in the symbol name is ignored. */
1960 CHECK_MATCH_C ("function[abi:foo]()", "function");
1961 CHECK_MATCH_C ("function[abi:foo](int)", "function");
1962 CHECK_MATCH_C ("function[abi:foo]()", "function ()");
1963 CHECK_NOT_MATCH_C ("function[abi:foo]()", "function (int)");
1964
1965 CHECK_MATCH_C ("function[abi:foo]()", "function[abi:foo]");
1966 CHECK_MATCH_C ("function[abi:foo](int)", "function[abi:foo]");
1967 CHECK_MATCH_C ("function[abi:foo]()", "function[abi:foo] ()");
1968 CHECK_MATCH_C ("function[abi:foo][abi:bar]()", "function");
1969 CHECK_MATCH_C ("function[abi:foo][abi:bar](int)", "function");
1970 CHECK_MATCH_C ("function[abi:foo][abi:bar]()", "function[abi:foo]");
1971 CHECK_MATCH_C ("function[abi:foo][abi:bar](int)", "function[abi:foo]");
1972 CHECK_MATCH_C ("function[abi:foo][abi:bar]()", "function[abi:foo] ()");
1973 CHECK_NOT_MATCH_C ("function[abi:foo][abi:bar]()", "function[abi:foo] (int)");
1974
1975 CHECK_MATCH_C ("function [abi:foo][abi:bar] ( )", "function [abi:foo]");
1976
1977 /* If the symbol name does not have an ABI tag, while the lookup
1978 name has one, then there's no match. */
1979 CHECK_NOT_MATCH_C ("function()", "function[abi:foo]()");
1980 CHECK_NOT_MATCH_C ("function()", "function[abi:foo]");
0662b6a7
PA
1981}
1982
c62446b1
PA
1983/* If non-NULL, return STR wrapped in quotes. Otherwise, return a
1984 "<null>" string (with no quotes). */
1985
1986static std::string
1987quote (const char *str)
1988{
1989 if (str != NULL)
1990 return std::string (1, '\"') + str + '\"';
1991 else
1992 return "<null>";
1993}
1994
1995/* Check that removing parameter info out of NAME produces EXPECTED.
1996 COMPLETION_MODE indicates whether we're testing normal and
1997 completion mode. FILE and LINE are used to provide better test
1998 location information in case ithe check fails. */
1999
2000static void
2001check_remove_params (const char *file, int line,
2002 const char *name, const char *expected,
2003 bool completion_mode)
2004{
2005 gdb::unique_xmalloc_ptr<char> result
2006 = cp_remove_params_if_any (name, completion_mode);
2007
2008 if ((expected == NULL) != (result == NULL)
2009 || (expected != NULL
2010 && strcmp (result.get (), expected) != 0))
2011 {
2012 error (_("%s:%d: make-paramless self-test failed: (completion=%d) "
2013 "\"%s\" -> %s, expected %s"),
2014 file, line, completion_mode, name,
2015 quote (result.get ()).c_str (), quote (expected).c_str ());
2016 }
2017}
2018
2019/* Entry point for cp_remove_params unit tests. */
2020
2021static void
2022test_cp_remove_params ()
2023{
2024 /* Check that removing parameter info out of NAME produces EXPECTED.
2025 Checks both normal and completion modes. */
2026#define CHECK(NAME, EXPECTED) \
2027 do \
2028 { \
2029 check_remove_params (__FILE__, __LINE__, NAME, EXPECTED, false); \
2030 check_remove_params (__FILE__, __LINE__, NAME, EXPECTED, true); \
2031 } \
2032 while (0)
2033
2034 /* Similar, but used when NAME is incomplete -- i.e., is has
2035 unbalanced parentheses. In this case, looking for the exact name
2036 should fail / return empty. */
2037#define CHECK_INCOMPL(NAME, EXPECTED) \
2038 do \
2039 { \
2040 check_remove_params (__FILE__, __LINE__, NAME, NULL, false); \
2041 check_remove_params (__FILE__, __LINE__, NAME, EXPECTED, true); \
2042 } \
2043 while (0)
2044
2045 CHECK ("function()", "function");
2046 CHECK_INCOMPL ("function(", "function");
2047 CHECK ("function() const", "function");
2048
2049 CHECK ("(anonymous namespace)::A::B::C",
2050 "(anonymous namespace)::A::B::C");
2051
2052 CHECK ("A::(anonymous namespace)",
2053 "A::(anonymous namespace)");
2054
2055 CHECK_INCOMPL ("A::(anonymou", "A");
2056
2057 CHECK ("A::foo<int>()",
2058 "A::foo<int>");
2059
2060 CHECK_INCOMPL ("A::foo<int>(",
2061 "A::foo<int>");
2062
2063 CHECK ("A::foo<(anonymous namespace)::B>::func(int)",
2064 "A::foo<(anonymous namespace)::B>::func");
2065
2066 CHECK_INCOMPL ("A::foo<(anonymous namespace)::B>::func(in",
2067 "A::foo<(anonymous namespace)::B>::func");
2068
2069 CHECK_INCOMPL ("A::foo<(anonymous namespace)::B>::",
2070 "A::foo<(anonymous namespace)::B>");
2071
2072 CHECK_INCOMPL ("A::foo<(anonymous namespace)::B>:",
2073 "A::foo<(anonymous namespace)::B>");
2074
2075 CHECK ("A::foo<(anonymous namespace)::B>",
2076 "A::foo<(anonymous namespace)::B>");
2077
2078 CHECK_INCOMPL ("A::foo<(anonymous namespace)::B",
2079 "A::foo");
2080
2081 /* Shouldn't this parse? Looks like a bug in
2082 cp_demangled_name_to_comp. See PR c++/22411. */
2083#if 0
2084 CHECK ("A::foo<void(int)>::func(int)",
2085 "A::foo<void(int)>::func");
2086#else
2087 CHECK_INCOMPL ("A::foo<void(int)>::func(int)",
2088 "A::foo");
2089#endif
2090
2091 CHECK_INCOMPL ("A::foo<void(int",
2092 "A::foo");
2093
2094#undef CHECK
2095#undef CHECK_INCOMPL
2096}
2097
2098} // namespace selftests
2099
2100#endif /* GDB_SELF_CHECK */
2101
9219021c
DC
2102/* Don't allow just "maintenance cplus". */
2103
2104static void
981a3fb3 2105maint_cplus_command (const char *arg, int from_tty)
9219021c 2106{
3e43a32a
MS
2107 printf_unfiltered (_("\"maintenance cplus\" must be followed "
2108 "by the name of a command.\n"));
aff410f1
MS
2109 help_list (maint_cplus_cmd_list,
2110 "maintenance cplus ",
635c7e8a 2111 all_commands, gdb_stdout);
9219021c
DC
2112}
2113
2114/* This is a front end for cp_find_first_component, for unit testing.
2115 Be careful when using it: see the NOTE above
2116 cp_find_first_component. */
2117
2118static void
4a475551 2119first_component_command (const char *arg, int from_tty)
9219021c 2120{
c836824f
AR
2121 int len;
2122 char *prefix;
2123
2124 if (!arg)
2125 return;
2126
2127 len = cp_find_first_component (arg);
224c3ddb 2128 prefix = (char *) alloca (len + 1);
9219021c
DC
2129
2130 memcpy (prefix, arg, len);
2131 prefix[len] = '\0';
2132
2133 printf_unfiltered ("%s\n", prefix);
2134}
2135
57651221 2136/* Implement "info vtbl". */
c4aeac85
TT
2137
2138static void
1d12d88f 2139info_vtbl_command (const char *arg, int from_tty)
c4aeac85
TT
2140{
2141 struct value *value;
2142
2143 value = parse_and_eval (arg);
2144 cplus_print_vtable (value);
2145}
2146
9219021c
DC
2147void
2148_initialize_cp_support (void)
2149{
aff410f1
MS
2150 add_prefix_cmd ("cplus", class_maintenance,
2151 maint_cplus_command,
2152 _("C++ maintenance commands."),
2153 &maint_cplus_cmd_list,
2154 "maintenance cplus ",
2155 0, &maintenancelist);
2156 add_alias_cmd ("cp", "cplus",
2157 class_maintenance, 1,
2158 &maintenancelist);
2159
2160 add_cmd ("first_component",
2161 class_maintenance,
2162 first_component_command,
1a966eab 2163 _("Print the first class/namespace component of NAME."),
9219021c 2164 &maint_cplus_cmd_list);
c4aeac85
TT
2165
2166 add_info ("vtbl", info_vtbl_command,
57651221 2167 _("Show the virtual function table for a C++ object.\n\
c4aeac85
TT
2168Usage: info vtbl EXPRESSION\n\
2169Evaluate EXPRESSION and display the virtual function table for the\n\
2170resulting object."));
992c7d70
GB
2171
2172#ifdef HAVE_WORKING_FORK
2173 add_setshow_boolean_cmd ("catch-demangler-crashes", class_maintenance,
2174 &catch_demangler_crashes, _("\
2175Set whether to attempt to catch demangler crashes."), _("\
2176Show whether to attempt to catch demangler crashes."), _("\
2177If enabled GDB will attempt to catch demangler crashes and\n\
2178display the offending symbol."),
2179 NULL,
2180 NULL,
2181 &maintenance_set_cmdlist,
2182 &maintenance_show_cmdlist);
2183#endif
c62446b1
PA
2184
2185#if GDB_SELF_TEST
0662b6a7
PA
2186 selftests::register_test ("cp_symbol_name_matches",
2187 selftests::test_cp_symbol_name_matches);
c62446b1
PA
2188 selftests::register_test ("cp_remove_params",
2189 selftests::test_cp_remove_params);
2190#endif
9219021c 2191}
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