* cp-demangle.c (d_encoding): Exit early on error.
[deliverable/binutils-gdb.git] / libiberty / cp-demangle.c
1 /* Demangler for g++ V3 ABI.
2 Copyright (C) 2003, 2004, 2005, 2006, 2007 Free Software Foundation, Inc.
3 Written by Ian Lance Taylor <ian@wasabisystems.com>.
4
5 This file is part of the libiberty library, which is part of GCC.
6
7 This file is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2 of the License, or
10 (at your option) any later version.
11
12 In addition to the permissions in the GNU General Public License, the
13 Free Software Foundation gives you unlimited permission to link the
14 compiled version of this file into combinations with other programs,
15 and to distribute those combinations without any restriction coming
16 from the use of this file. (The General Public License restrictions
17 do apply in other respects; for example, they cover modification of
18 the file, and distribution when not linked into a combined
19 executable.)
20
21 This program is distributed in the hope that it will be useful,
22 but WITHOUT ANY WARRANTY; without even the implied warranty of
23 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
24 GNU General Public License for more details.
25
26 You should have received a copy of the GNU General Public License
27 along with this program; if not, write to the Free Software
28 Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston, MA 02110-1301, USA.
29 */
30
31 /* This code implements a demangler for the g++ V3 ABI. The ABI is
32 described on this web page:
33 http://www.codesourcery.com/cxx-abi/abi.html#mangling
34
35 This code was written while looking at the demangler written by
36 Alex Samuel <samuel@codesourcery.com>.
37
38 This code first pulls the mangled name apart into a list of
39 components, and then walks the list generating the demangled
40 name.
41
42 This file will normally define the following functions, q.v.:
43 char *cplus_demangle_v3(const char *mangled, int options)
44 char *java_demangle_v3(const char *mangled)
45 int cplus_demangle_v3_callback(const char *mangled, int options,
46 demangle_callbackref callback)
47 int java_demangle_v3_callback(const char *mangled,
48 demangle_callbackref callback)
49 enum gnu_v3_ctor_kinds is_gnu_v3_mangled_ctor (const char *name)
50 enum gnu_v3_dtor_kinds is_gnu_v3_mangled_dtor (const char *name)
51
52 Also, the interface to the component list is public, and defined in
53 demangle.h. The interface consists of these types, which are
54 defined in demangle.h:
55 enum demangle_component_type
56 struct demangle_component
57 demangle_callbackref
58 and these functions defined in this file:
59 cplus_demangle_fill_name
60 cplus_demangle_fill_extended_operator
61 cplus_demangle_fill_ctor
62 cplus_demangle_fill_dtor
63 cplus_demangle_print
64 cplus_demangle_print_callback
65 and other functions defined in the file cp-demint.c.
66
67 This file also defines some other functions and variables which are
68 only to be used by the file cp-demint.c.
69
70 Preprocessor macros you can define while compiling this file:
71
72 IN_LIBGCC2
73 If defined, this file defines the following functions, q.v.:
74 char *__cxa_demangle (const char *mangled, char *buf, size_t *len,
75 int *status)
76 int __gcclibcxx_demangle_callback (const char *,
77 void (*)
78 (const char *, size_t, void *),
79 void *)
80 instead of cplus_demangle_v3[_callback]() and
81 java_demangle_v3[_callback]().
82
83 IN_GLIBCPP_V3
84 If defined, this file defines only __cxa_demangle() and
85 __gcclibcxx_demangle_callback(), and no other publically visible
86 functions or variables.
87
88 STANDALONE_DEMANGLER
89 If defined, this file defines a main() function which demangles
90 any arguments, or, if none, demangles stdin.
91
92 CP_DEMANGLE_DEBUG
93 If defined, turns on debugging mode, which prints information on
94 stdout about the mangled string. This is not generally useful.
95 */
96
97 #if defined (_AIX) && !defined (__GNUC__)
98 #pragma alloca
99 #endif
100
101 #ifdef HAVE_CONFIG_H
102 #include "config.h"
103 #endif
104
105 #include <stdio.h>
106
107 #ifdef HAVE_STDLIB_H
108 #include <stdlib.h>
109 #endif
110 #ifdef HAVE_STRING_H
111 #include <string.h>
112 #endif
113
114 #ifdef HAVE_ALLOCA_H
115 # include <alloca.h>
116 #else
117 # ifndef alloca
118 # ifdef __GNUC__
119 # define alloca __builtin_alloca
120 # else
121 extern char *alloca ();
122 # endif /* __GNUC__ */
123 # endif /* alloca */
124 #endif /* HAVE_ALLOCA_H */
125
126 #include "ansidecl.h"
127 #include "libiberty.h"
128 #include "demangle.h"
129 #include "cp-demangle.h"
130
131 /* If IN_GLIBCPP_V3 is defined, some functions are made static. We
132 also rename them via #define to avoid compiler errors when the
133 static definition conflicts with the extern declaration in a header
134 file. */
135 #ifdef IN_GLIBCPP_V3
136
137 #define CP_STATIC_IF_GLIBCPP_V3 static
138
139 #define cplus_demangle_fill_name d_fill_name
140 static int d_fill_name (struct demangle_component *, const char *, int);
141
142 #define cplus_demangle_fill_extended_operator d_fill_extended_operator
143 static int
144 d_fill_extended_operator (struct demangle_component *, int,
145 struct demangle_component *);
146
147 #define cplus_demangle_fill_ctor d_fill_ctor
148 static int
149 d_fill_ctor (struct demangle_component *, enum gnu_v3_ctor_kinds,
150 struct demangle_component *);
151
152 #define cplus_demangle_fill_dtor d_fill_dtor
153 static int
154 d_fill_dtor (struct demangle_component *, enum gnu_v3_dtor_kinds,
155 struct demangle_component *);
156
157 #define cplus_demangle_mangled_name d_mangled_name
158 static struct demangle_component *d_mangled_name (struct d_info *, int);
159
160 #define cplus_demangle_type d_type
161 static struct demangle_component *d_type (struct d_info *);
162
163 #define cplus_demangle_print d_print
164 static char *d_print (int, const struct demangle_component *, int, size_t *);
165
166 #define cplus_demangle_print_callback d_print_callback
167 static int d_print_callback (int, const struct demangle_component *,
168 demangle_callbackref, void *);
169
170 #define cplus_demangle_init_info d_init_info
171 static void d_init_info (const char *, int, size_t, struct d_info *);
172
173 #else /* ! defined(IN_GLIBCPP_V3) */
174 #define CP_STATIC_IF_GLIBCPP_V3
175 #endif /* ! defined(IN_GLIBCPP_V3) */
176
177 /* See if the compiler supports dynamic arrays. */
178
179 #ifdef __GNUC__
180 #define CP_DYNAMIC_ARRAYS
181 #else
182 #ifdef __STDC__
183 #ifdef __STDC_VERSION__
184 #if __STDC_VERSION__ >= 199901L
185 #define CP_DYNAMIC_ARRAYS
186 #endif /* __STDC__VERSION >= 199901L */
187 #endif /* defined (__STDC_VERSION__) */
188 #endif /* defined (__STDC__) */
189 #endif /* ! defined (__GNUC__) */
190
191 /* We avoid pulling in the ctype tables, to prevent pulling in
192 additional unresolved symbols when this code is used in a library.
193 FIXME: Is this really a valid reason? This comes from the original
194 V3 demangler code.
195
196 As of this writing this file has the following undefined references
197 when compiled with -DIN_GLIBCPP_V3: realloc, free, memcpy, strcpy,
198 strcat, strlen. */
199
200 #define IS_DIGIT(c) ((c) >= '0' && (c) <= '9')
201 #define IS_UPPER(c) ((c) >= 'A' && (c) <= 'Z')
202 #define IS_LOWER(c) ((c) >= 'a' && (c) <= 'z')
203
204 /* The prefix prepended by GCC to an identifier represnting the
205 anonymous namespace. */
206 #define ANONYMOUS_NAMESPACE_PREFIX "_GLOBAL_"
207 #define ANONYMOUS_NAMESPACE_PREFIX_LEN \
208 (sizeof (ANONYMOUS_NAMESPACE_PREFIX) - 1)
209
210 /* Information we keep for the standard substitutions. */
211
212 struct d_standard_sub_info
213 {
214 /* The code for this substitution. */
215 char code;
216 /* The simple string it expands to. */
217 const char *simple_expansion;
218 /* The length of the simple expansion. */
219 int simple_len;
220 /* The results of a full, verbose, expansion. This is used when
221 qualifying a constructor/destructor, or when in verbose mode. */
222 const char *full_expansion;
223 /* The length of the full expansion. */
224 int full_len;
225 /* What to set the last_name field of d_info to; NULL if we should
226 not set it. This is only relevant when qualifying a
227 constructor/destructor. */
228 const char *set_last_name;
229 /* The length of set_last_name. */
230 int set_last_name_len;
231 };
232
233 /* Accessors for subtrees of struct demangle_component. */
234
235 #define d_left(dc) ((dc)->u.s_binary.left)
236 #define d_right(dc) ((dc)->u.s_binary.right)
237
238 /* A list of templates. This is used while printing. */
239
240 struct d_print_template
241 {
242 /* Next template on the list. */
243 struct d_print_template *next;
244 /* This template. */
245 const struct demangle_component *template_decl;
246 };
247
248 /* A list of type modifiers. This is used while printing. */
249
250 struct d_print_mod
251 {
252 /* Next modifier on the list. These are in the reverse of the order
253 in which they appeared in the mangled string. */
254 struct d_print_mod *next;
255 /* The modifier. */
256 const struct demangle_component *mod;
257 /* Whether this modifier was printed. */
258 int printed;
259 /* The list of templates which applies to this modifier. */
260 struct d_print_template *templates;
261 };
262
263 /* We use these structures to hold information during printing. */
264
265 struct d_growable_string
266 {
267 /* Buffer holding the result. */
268 char *buf;
269 /* Current length of data in buffer. */
270 size_t len;
271 /* Allocated size of buffer. */
272 size_t alc;
273 /* Set to 1 if we had a memory allocation failure. */
274 int allocation_failure;
275 };
276
277 enum { D_PRINT_BUFFER_LENGTH = 256 };
278 struct d_print_info
279 {
280 /* The options passed to the demangler. */
281 int options;
282 /* Fixed-length allocated buffer for demangled data, flushed to the
283 callback with a NUL termination once full. */
284 char buf[D_PRINT_BUFFER_LENGTH];
285 /* Current length of data in buffer. */
286 size_t len;
287 /* The last character printed, saved individually so that it survives
288 any buffer flush. */
289 char last_char;
290 /* Callback function to handle demangled buffer flush. */
291 demangle_callbackref callback;
292 /* Opaque callback argument. */
293 void *opaque;
294 /* The current list of templates, if any. */
295 struct d_print_template *templates;
296 /* The current list of modifiers (e.g., pointer, reference, etc.),
297 if any. */
298 struct d_print_mod *modifiers;
299 /* Set to 1 if we saw a demangling error. */
300 int demangle_failure;
301 };
302
303 #ifdef CP_DEMANGLE_DEBUG
304 static void d_dump (struct demangle_component *, int);
305 #endif
306
307 static struct demangle_component *
308 d_make_empty (struct d_info *);
309
310 static struct demangle_component *
311 d_make_comp (struct d_info *, enum demangle_component_type,
312 struct demangle_component *,
313 struct demangle_component *);
314
315 static struct demangle_component *
316 d_make_name (struct d_info *, const char *, int);
317
318 static struct demangle_component *
319 d_make_builtin_type (struct d_info *,
320 const struct demangle_builtin_type_info *);
321
322 static struct demangle_component *
323 d_make_operator (struct d_info *,
324 const struct demangle_operator_info *);
325
326 static struct demangle_component *
327 d_make_extended_operator (struct d_info *, int,
328 struct demangle_component *);
329
330 static struct demangle_component *
331 d_make_ctor (struct d_info *, enum gnu_v3_ctor_kinds,
332 struct demangle_component *);
333
334 static struct demangle_component *
335 d_make_dtor (struct d_info *, enum gnu_v3_dtor_kinds,
336 struct demangle_component *);
337
338 static struct demangle_component *
339 d_make_template_param (struct d_info *, long);
340
341 static struct demangle_component *
342 d_make_sub (struct d_info *, const char *, int);
343
344 static int
345 has_return_type (struct demangle_component *);
346
347 static int
348 is_ctor_dtor_or_conversion (struct demangle_component *);
349
350 static struct demangle_component *d_encoding (struct d_info *, int);
351
352 static struct demangle_component *d_name (struct d_info *);
353
354 static struct demangle_component *d_nested_name (struct d_info *);
355
356 static struct demangle_component *d_prefix (struct d_info *);
357
358 static struct demangle_component *d_unqualified_name (struct d_info *);
359
360 static struct demangle_component *d_source_name (struct d_info *);
361
362 static long d_number (struct d_info *);
363
364 static struct demangle_component *d_identifier (struct d_info *, int);
365
366 static struct demangle_component *d_operator_name (struct d_info *);
367
368 static struct demangle_component *d_special_name (struct d_info *);
369
370 static int d_call_offset (struct d_info *, int);
371
372 static struct demangle_component *d_ctor_dtor_name (struct d_info *);
373
374 static struct demangle_component **
375 d_cv_qualifiers (struct d_info *, struct demangle_component **, int);
376
377 static struct demangle_component *
378 d_function_type (struct d_info *);
379
380 static struct demangle_component *
381 d_bare_function_type (struct d_info *, int);
382
383 static struct demangle_component *
384 d_class_enum_type (struct d_info *);
385
386 static struct demangle_component *d_array_type (struct d_info *);
387
388 static struct demangle_component *
389 d_pointer_to_member_type (struct d_info *);
390
391 static struct demangle_component *
392 d_template_param (struct d_info *);
393
394 static struct demangle_component *d_template_args (struct d_info *);
395
396 static struct demangle_component *
397 d_template_arg (struct d_info *);
398
399 static struct demangle_component *d_expression (struct d_info *);
400
401 static struct demangle_component *d_expr_primary (struct d_info *);
402
403 static struct demangle_component *d_local_name (struct d_info *);
404
405 static int d_discriminator (struct d_info *);
406
407 static int
408 d_add_substitution (struct d_info *, struct demangle_component *);
409
410 static struct demangle_component *d_substitution (struct d_info *, int);
411
412 static void d_growable_string_init (struct d_growable_string *, size_t);
413
414 static inline void
415 d_growable_string_resize (struct d_growable_string *, size_t);
416
417 static inline void
418 d_growable_string_append_buffer (struct d_growable_string *,
419 const char *, size_t);
420 static void
421 d_growable_string_callback_adapter (const char *, size_t, void *);
422
423 static void
424 d_print_init (struct d_print_info *, int, demangle_callbackref, void *);
425
426 static inline void d_print_error (struct d_print_info *);
427
428 static inline int d_print_saw_error (struct d_print_info *);
429
430 static inline void d_print_flush (struct d_print_info *);
431
432 static inline void d_append_char (struct d_print_info *, char);
433
434 static inline void d_append_buffer (struct d_print_info *,
435 const char *, size_t);
436
437 static inline void d_append_string (struct d_print_info *, const char *);
438
439 static inline char d_last_char (struct d_print_info *);
440
441 static void
442 d_print_comp (struct d_print_info *, const struct demangle_component *);
443
444 static void
445 d_print_java_identifier (struct d_print_info *, const char *, int);
446
447 static void
448 d_print_mod_list (struct d_print_info *, struct d_print_mod *, int);
449
450 static void
451 d_print_mod (struct d_print_info *, const struct demangle_component *);
452
453 static void
454 d_print_function_type (struct d_print_info *,
455 const struct demangle_component *,
456 struct d_print_mod *);
457
458 static void
459 d_print_array_type (struct d_print_info *,
460 const struct demangle_component *,
461 struct d_print_mod *);
462
463 static void
464 d_print_expr_op (struct d_print_info *, const struct demangle_component *);
465
466 static void
467 d_print_cast (struct d_print_info *, const struct demangle_component *);
468
469 static int d_demangle_callback (const char *, int,
470 demangle_callbackref, void *);
471 static char *d_demangle (const char *, int, size_t *);
472
473 #ifdef CP_DEMANGLE_DEBUG
474
475 static void
476 d_dump (struct demangle_component *dc, int indent)
477 {
478 int i;
479
480 if (dc == NULL)
481 {
482 if (indent == 0)
483 printf ("failed demangling\n");
484 return;
485 }
486
487 for (i = 0; i < indent; ++i)
488 putchar (' ');
489
490 switch (dc->type)
491 {
492 case DEMANGLE_COMPONENT_NAME:
493 printf ("name '%.*s'\n", dc->u.s_name.len, dc->u.s_name.s);
494 return;
495 case DEMANGLE_COMPONENT_TEMPLATE_PARAM:
496 printf ("template parameter %ld\n", dc->u.s_number.number);
497 return;
498 case DEMANGLE_COMPONENT_CTOR:
499 printf ("constructor %d\n", (int) dc->u.s_ctor.kind);
500 d_dump (dc->u.s_ctor.name, indent + 2);
501 return;
502 case DEMANGLE_COMPONENT_DTOR:
503 printf ("destructor %d\n", (int) dc->u.s_dtor.kind);
504 d_dump (dc->u.s_dtor.name, indent + 2);
505 return;
506 case DEMANGLE_COMPONENT_SUB_STD:
507 printf ("standard substitution %s\n", dc->u.s_string.string);
508 return;
509 case DEMANGLE_COMPONENT_BUILTIN_TYPE:
510 printf ("builtin type %s\n", dc->u.s_builtin.type->name);
511 return;
512 case DEMANGLE_COMPONENT_OPERATOR:
513 printf ("operator %s\n", dc->u.s_operator.op->name);
514 return;
515 case DEMANGLE_COMPONENT_EXTENDED_OPERATOR:
516 printf ("extended operator with %d args\n",
517 dc->u.s_extended_operator.args);
518 d_dump (dc->u.s_extended_operator.name, indent + 2);
519 return;
520
521 case DEMANGLE_COMPONENT_QUAL_NAME:
522 printf ("qualified name\n");
523 break;
524 case DEMANGLE_COMPONENT_LOCAL_NAME:
525 printf ("local name\n");
526 break;
527 case DEMANGLE_COMPONENT_TYPED_NAME:
528 printf ("typed name\n");
529 break;
530 case DEMANGLE_COMPONENT_TEMPLATE:
531 printf ("template\n");
532 break;
533 case DEMANGLE_COMPONENT_VTABLE:
534 printf ("vtable\n");
535 break;
536 case DEMANGLE_COMPONENT_VTT:
537 printf ("VTT\n");
538 break;
539 case DEMANGLE_COMPONENT_CONSTRUCTION_VTABLE:
540 printf ("construction vtable\n");
541 break;
542 case DEMANGLE_COMPONENT_TYPEINFO:
543 printf ("typeinfo\n");
544 break;
545 case DEMANGLE_COMPONENT_TYPEINFO_NAME:
546 printf ("typeinfo name\n");
547 break;
548 case DEMANGLE_COMPONENT_TYPEINFO_FN:
549 printf ("typeinfo function\n");
550 break;
551 case DEMANGLE_COMPONENT_THUNK:
552 printf ("thunk\n");
553 break;
554 case DEMANGLE_COMPONENT_VIRTUAL_THUNK:
555 printf ("virtual thunk\n");
556 break;
557 case DEMANGLE_COMPONENT_COVARIANT_THUNK:
558 printf ("covariant thunk\n");
559 break;
560 case DEMANGLE_COMPONENT_JAVA_CLASS:
561 printf ("java class\n");
562 break;
563 case DEMANGLE_COMPONENT_GUARD:
564 printf ("guard\n");
565 break;
566 case DEMANGLE_COMPONENT_REFTEMP:
567 printf ("reference temporary\n");
568 break;
569 case DEMANGLE_COMPONENT_HIDDEN_ALIAS:
570 printf ("hidden alias\n");
571 break;
572 case DEMANGLE_COMPONENT_RESTRICT:
573 printf ("restrict\n");
574 break;
575 case DEMANGLE_COMPONENT_VOLATILE:
576 printf ("volatile\n");
577 break;
578 case DEMANGLE_COMPONENT_CONST:
579 printf ("const\n");
580 break;
581 case DEMANGLE_COMPONENT_RESTRICT_THIS:
582 printf ("restrict this\n");
583 break;
584 case DEMANGLE_COMPONENT_VOLATILE_THIS:
585 printf ("volatile this\n");
586 break;
587 case DEMANGLE_COMPONENT_CONST_THIS:
588 printf ("const this\n");
589 break;
590 case DEMANGLE_COMPONENT_VENDOR_TYPE_QUAL:
591 printf ("vendor type qualifier\n");
592 break;
593 case DEMANGLE_COMPONENT_POINTER:
594 printf ("pointer\n");
595 break;
596 case DEMANGLE_COMPONENT_REFERENCE:
597 printf ("reference\n");
598 break;
599 case DEMANGLE_COMPONENT_COMPLEX:
600 printf ("complex\n");
601 break;
602 case DEMANGLE_COMPONENT_IMAGINARY:
603 printf ("imaginary\n");
604 break;
605 case DEMANGLE_COMPONENT_VENDOR_TYPE:
606 printf ("vendor type\n");
607 break;
608 case DEMANGLE_COMPONENT_FUNCTION_TYPE:
609 printf ("function type\n");
610 break;
611 case DEMANGLE_COMPONENT_ARRAY_TYPE:
612 printf ("array type\n");
613 break;
614 case DEMANGLE_COMPONENT_PTRMEM_TYPE:
615 printf ("pointer to member type\n");
616 break;
617 case DEMANGLE_COMPONENT_ARGLIST:
618 printf ("argument list\n");
619 break;
620 case DEMANGLE_COMPONENT_TEMPLATE_ARGLIST:
621 printf ("template argument list\n");
622 break;
623 case DEMANGLE_COMPONENT_CAST:
624 printf ("cast\n");
625 break;
626 case DEMANGLE_COMPONENT_UNARY:
627 printf ("unary operator\n");
628 break;
629 case DEMANGLE_COMPONENT_BINARY:
630 printf ("binary operator\n");
631 break;
632 case DEMANGLE_COMPONENT_BINARY_ARGS:
633 printf ("binary operator arguments\n");
634 break;
635 case DEMANGLE_COMPONENT_TRINARY:
636 printf ("trinary operator\n");
637 break;
638 case DEMANGLE_COMPONENT_TRINARY_ARG1:
639 printf ("trinary operator arguments 1\n");
640 break;
641 case DEMANGLE_COMPONENT_TRINARY_ARG2:
642 printf ("trinary operator arguments 1\n");
643 break;
644 case DEMANGLE_COMPONENT_LITERAL:
645 printf ("literal\n");
646 break;
647 case DEMANGLE_COMPONENT_LITERAL_NEG:
648 printf ("negative literal\n");
649 break;
650 }
651
652 d_dump (d_left (dc), indent + 2);
653 d_dump (d_right (dc), indent + 2);
654 }
655
656 #endif /* CP_DEMANGLE_DEBUG */
657
658 /* Fill in a DEMANGLE_COMPONENT_NAME. */
659
660 CP_STATIC_IF_GLIBCPP_V3
661 int
662 cplus_demangle_fill_name (struct demangle_component *p, const char *s, int len)
663 {
664 if (p == NULL || s == NULL || len == 0)
665 return 0;
666 p->type = DEMANGLE_COMPONENT_NAME;
667 p->u.s_name.s = s;
668 p->u.s_name.len = len;
669 return 1;
670 }
671
672 /* Fill in a DEMANGLE_COMPONENT_EXTENDED_OPERATOR. */
673
674 CP_STATIC_IF_GLIBCPP_V3
675 int
676 cplus_demangle_fill_extended_operator (struct demangle_component *p, int args,
677 struct demangle_component *name)
678 {
679 if (p == NULL || args < 0 || name == NULL)
680 return 0;
681 p->type = DEMANGLE_COMPONENT_EXTENDED_OPERATOR;
682 p->u.s_extended_operator.args = args;
683 p->u.s_extended_operator.name = name;
684 return 1;
685 }
686
687 /* Fill in a DEMANGLE_COMPONENT_CTOR. */
688
689 CP_STATIC_IF_GLIBCPP_V3
690 int
691 cplus_demangle_fill_ctor (struct demangle_component *p,
692 enum gnu_v3_ctor_kinds kind,
693 struct demangle_component *name)
694 {
695 if (p == NULL
696 || name == NULL
697 || (kind < gnu_v3_complete_object_ctor
698 && kind > gnu_v3_complete_object_allocating_ctor))
699 return 0;
700 p->type = DEMANGLE_COMPONENT_CTOR;
701 p->u.s_ctor.kind = kind;
702 p->u.s_ctor.name = name;
703 return 1;
704 }
705
706 /* Fill in a DEMANGLE_COMPONENT_DTOR. */
707
708 CP_STATIC_IF_GLIBCPP_V3
709 int
710 cplus_demangle_fill_dtor (struct demangle_component *p,
711 enum gnu_v3_dtor_kinds kind,
712 struct demangle_component *name)
713 {
714 if (p == NULL
715 || name == NULL
716 || (kind < gnu_v3_deleting_dtor
717 && kind > gnu_v3_base_object_dtor))
718 return 0;
719 p->type = DEMANGLE_COMPONENT_DTOR;
720 p->u.s_dtor.kind = kind;
721 p->u.s_dtor.name = name;
722 return 1;
723 }
724
725 /* Add a new component. */
726
727 static struct demangle_component *
728 d_make_empty (struct d_info *di)
729 {
730 struct demangle_component *p;
731
732 if (di->next_comp >= di->num_comps)
733 return NULL;
734 p = &di->comps[di->next_comp];
735 ++di->next_comp;
736 return p;
737 }
738
739 /* Add a new generic component. */
740
741 static struct demangle_component *
742 d_make_comp (struct d_info *di, enum demangle_component_type type,
743 struct demangle_component *left,
744 struct demangle_component *right)
745 {
746 struct demangle_component *p;
747
748 /* We check for errors here. A typical error would be a NULL return
749 from a subroutine. We catch those here, and return NULL
750 upward. */
751 switch (type)
752 {
753 /* These types require two parameters. */
754 case DEMANGLE_COMPONENT_QUAL_NAME:
755 case DEMANGLE_COMPONENT_LOCAL_NAME:
756 case DEMANGLE_COMPONENT_TYPED_NAME:
757 case DEMANGLE_COMPONENT_TEMPLATE:
758 case DEMANGLE_COMPONENT_CONSTRUCTION_VTABLE:
759 case DEMANGLE_COMPONENT_VENDOR_TYPE_QUAL:
760 case DEMANGLE_COMPONENT_PTRMEM_TYPE:
761 case DEMANGLE_COMPONENT_UNARY:
762 case DEMANGLE_COMPONENT_BINARY:
763 case DEMANGLE_COMPONENT_BINARY_ARGS:
764 case DEMANGLE_COMPONENT_TRINARY:
765 case DEMANGLE_COMPONENT_TRINARY_ARG1:
766 case DEMANGLE_COMPONENT_TRINARY_ARG2:
767 case DEMANGLE_COMPONENT_LITERAL:
768 case DEMANGLE_COMPONENT_LITERAL_NEG:
769 if (left == NULL || right == NULL)
770 return NULL;
771 break;
772
773 /* These types only require one parameter. */
774 case DEMANGLE_COMPONENT_VTABLE:
775 case DEMANGLE_COMPONENT_VTT:
776 case DEMANGLE_COMPONENT_TYPEINFO:
777 case DEMANGLE_COMPONENT_TYPEINFO_NAME:
778 case DEMANGLE_COMPONENT_TYPEINFO_FN:
779 case DEMANGLE_COMPONENT_THUNK:
780 case DEMANGLE_COMPONENT_VIRTUAL_THUNK:
781 case DEMANGLE_COMPONENT_COVARIANT_THUNK:
782 case DEMANGLE_COMPONENT_JAVA_CLASS:
783 case DEMANGLE_COMPONENT_GUARD:
784 case DEMANGLE_COMPONENT_REFTEMP:
785 case DEMANGLE_COMPONENT_HIDDEN_ALIAS:
786 case DEMANGLE_COMPONENT_POINTER:
787 case DEMANGLE_COMPONENT_REFERENCE:
788 case DEMANGLE_COMPONENT_COMPLEX:
789 case DEMANGLE_COMPONENT_IMAGINARY:
790 case DEMANGLE_COMPONENT_VENDOR_TYPE:
791 case DEMANGLE_COMPONENT_ARGLIST:
792 case DEMANGLE_COMPONENT_TEMPLATE_ARGLIST:
793 case DEMANGLE_COMPONENT_CAST:
794 if (left == NULL)
795 return NULL;
796 break;
797
798 /* This needs a right parameter, but the left parameter can be
799 empty. */
800 case DEMANGLE_COMPONENT_ARRAY_TYPE:
801 if (right == NULL)
802 return NULL;
803 break;
804
805 /* These are allowed to have no parameters--in some cases they
806 will be filled in later. */
807 case DEMANGLE_COMPONENT_FUNCTION_TYPE:
808 case DEMANGLE_COMPONENT_RESTRICT:
809 case DEMANGLE_COMPONENT_VOLATILE:
810 case DEMANGLE_COMPONENT_CONST:
811 case DEMANGLE_COMPONENT_RESTRICT_THIS:
812 case DEMANGLE_COMPONENT_VOLATILE_THIS:
813 case DEMANGLE_COMPONENT_CONST_THIS:
814 break;
815
816 /* Other types should not be seen here. */
817 default:
818 return NULL;
819 }
820
821 p = d_make_empty (di);
822 if (p != NULL)
823 {
824 p->type = type;
825 p->u.s_binary.left = left;
826 p->u.s_binary.right = right;
827 }
828 return p;
829 }
830
831 /* Add a new name component. */
832
833 static struct demangle_component *
834 d_make_name (struct d_info *di, const char *s, int len)
835 {
836 struct demangle_component *p;
837
838 p = d_make_empty (di);
839 if (! cplus_demangle_fill_name (p, s, len))
840 return NULL;
841 return p;
842 }
843
844 /* Add a new builtin type component. */
845
846 static struct demangle_component *
847 d_make_builtin_type (struct d_info *di,
848 const struct demangle_builtin_type_info *type)
849 {
850 struct demangle_component *p;
851
852 if (type == NULL)
853 return NULL;
854 p = d_make_empty (di);
855 if (p != NULL)
856 {
857 p->type = DEMANGLE_COMPONENT_BUILTIN_TYPE;
858 p->u.s_builtin.type = type;
859 }
860 return p;
861 }
862
863 /* Add a new operator component. */
864
865 static struct demangle_component *
866 d_make_operator (struct d_info *di, const struct demangle_operator_info *op)
867 {
868 struct demangle_component *p;
869
870 p = d_make_empty (di);
871 if (p != NULL)
872 {
873 p->type = DEMANGLE_COMPONENT_OPERATOR;
874 p->u.s_operator.op = op;
875 }
876 return p;
877 }
878
879 /* Add a new extended operator component. */
880
881 static struct demangle_component *
882 d_make_extended_operator (struct d_info *di, int args,
883 struct demangle_component *name)
884 {
885 struct demangle_component *p;
886
887 p = d_make_empty (di);
888 if (! cplus_demangle_fill_extended_operator (p, args, name))
889 return NULL;
890 return p;
891 }
892
893 /* Add a new constructor component. */
894
895 static struct demangle_component *
896 d_make_ctor (struct d_info *di, enum gnu_v3_ctor_kinds kind,
897 struct demangle_component *name)
898 {
899 struct demangle_component *p;
900
901 p = d_make_empty (di);
902 if (! cplus_demangle_fill_ctor (p, kind, name))
903 return NULL;
904 return p;
905 }
906
907 /* Add a new destructor component. */
908
909 static struct demangle_component *
910 d_make_dtor (struct d_info *di, enum gnu_v3_dtor_kinds kind,
911 struct demangle_component *name)
912 {
913 struct demangle_component *p;
914
915 p = d_make_empty (di);
916 if (! cplus_demangle_fill_dtor (p, kind, name))
917 return NULL;
918 return p;
919 }
920
921 /* Add a new template parameter. */
922
923 static struct demangle_component *
924 d_make_template_param (struct d_info *di, long i)
925 {
926 struct demangle_component *p;
927
928 p = d_make_empty (di);
929 if (p != NULL)
930 {
931 p->type = DEMANGLE_COMPONENT_TEMPLATE_PARAM;
932 p->u.s_number.number = i;
933 }
934 return p;
935 }
936
937 /* Add a new standard substitution component. */
938
939 static struct demangle_component *
940 d_make_sub (struct d_info *di, const char *name, int len)
941 {
942 struct demangle_component *p;
943
944 p = d_make_empty (di);
945 if (p != NULL)
946 {
947 p->type = DEMANGLE_COMPONENT_SUB_STD;
948 p->u.s_string.string = name;
949 p->u.s_string.len = len;
950 }
951 return p;
952 }
953
954 /* <mangled-name> ::= _Z <encoding>
955
956 TOP_LEVEL is non-zero when called at the top level. */
957
958 CP_STATIC_IF_GLIBCPP_V3
959 struct demangle_component *
960 cplus_demangle_mangled_name (struct d_info *di, int top_level)
961 {
962 if (! d_check_char (di, '_'))
963 return NULL;
964 if (! d_check_char (di, 'Z'))
965 return NULL;
966 return d_encoding (di, top_level);
967 }
968
969 /* Return whether a function should have a return type. The argument
970 is the function name, which may be qualified in various ways. The
971 rules are that template functions have return types with some
972 exceptions, function types which are not part of a function name
973 mangling have return types with some exceptions, and non-template
974 function names do not have return types. The exceptions are that
975 constructors, destructors, and conversion operators do not have
976 return types. */
977
978 static int
979 has_return_type (struct demangle_component *dc)
980 {
981 if (dc == NULL)
982 return 0;
983 switch (dc->type)
984 {
985 default:
986 return 0;
987 case DEMANGLE_COMPONENT_TEMPLATE:
988 return ! is_ctor_dtor_or_conversion (d_left (dc));
989 case DEMANGLE_COMPONENT_RESTRICT_THIS:
990 case DEMANGLE_COMPONENT_VOLATILE_THIS:
991 case DEMANGLE_COMPONENT_CONST_THIS:
992 return has_return_type (d_left (dc));
993 }
994 }
995
996 /* Return whether a name is a constructor, a destructor, or a
997 conversion operator. */
998
999 static int
1000 is_ctor_dtor_or_conversion (struct demangle_component *dc)
1001 {
1002 if (dc == NULL)
1003 return 0;
1004 switch (dc->type)
1005 {
1006 default:
1007 return 0;
1008 case DEMANGLE_COMPONENT_QUAL_NAME:
1009 case DEMANGLE_COMPONENT_LOCAL_NAME:
1010 return is_ctor_dtor_or_conversion (d_right (dc));
1011 case DEMANGLE_COMPONENT_CTOR:
1012 case DEMANGLE_COMPONENT_DTOR:
1013 case DEMANGLE_COMPONENT_CAST:
1014 return 1;
1015 }
1016 }
1017
1018 /* <encoding> ::= <(function) name> <bare-function-type>
1019 ::= <(data) name>
1020 ::= <special-name>
1021
1022 TOP_LEVEL is non-zero when called at the top level, in which case
1023 if DMGL_PARAMS is not set we do not demangle the function
1024 parameters. We only set this at the top level, because otherwise
1025 we would not correctly demangle names in local scopes. */
1026
1027 static struct demangle_component *
1028 d_encoding (struct d_info *di, int top_level)
1029 {
1030 char peek = d_peek_char (di);
1031
1032 if (peek == 'G' || peek == 'T')
1033 return d_special_name (di);
1034 else
1035 {
1036 struct demangle_component *dc;
1037
1038 dc = d_name (di);
1039
1040 if (dc != NULL && top_level && (di->options & DMGL_PARAMS) == 0)
1041 {
1042 /* Strip off any initial CV-qualifiers, as they really apply
1043 to the `this' parameter, and they were not output by the
1044 v2 demangler without DMGL_PARAMS. */
1045 while (dc->type == DEMANGLE_COMPONENT_RESTRICT_THIS
1046 || dc->type == DEMANGLE_COMPONENT_VOLATILE_THIS
1047 || dc->type == DEMANGLE_COMPONENT_CONST_THIS)
1048 dc = d_left (dc);
1049
1050 /* If the top level is a DEMANGLE_COMPONENT_LOCAL_NAME, then
1051 there may be CV-qualifiers on its right argument which
1052 really apply here; this happens when parsing a class
1053 which is local to a function. */
1054 if (dc->type == DEMANGLE_COMPONENT_LOCAL_NAME)
1055 {
1056 struct demangle_component *dcr;
1057
1058 dcr = d_right (dc);
1059 while (dcr->type == DEMANGLE_COMPONENT_RESTRICT_THIS
1060 || dcr->type == DEMANGLE_COMPONENT_VOLATILE_THIS
1061 || dcr->type == DEMANGLE_COMPONENT_CONST_THIS)
1062 dcr = d_left (dcr);
1063 dc->u.s_binary.right = dcr;
1064 }
1065
1066 return dc;
1067 }
1068
1069 peek = d_peek_char (di);
1070 if (dc == NULL || peek == '\0' || peek == 'E')
1071 return dc;
1072 return d_make_comp (di, DEMANGLE_COMPONENT_TYPED_NAME, dc,
1073 d_bare_function_type (di, has_return_type (dc)));
1074 }
1075 }
1076
1077 /* <name> ::= <nested-name>
1078 ::= <unscoped-name>
1079 ::= <unscoped-template-name> <template-args>
1080 ::= <local-name>
1081
1082 <unscoped-name> ::= <unqualified-name>
1083 ::= St <unqualified-name>
1084
1085 <unscoped-template-name> ::= <unscoped-name>
1086 ::= <substitution>
1087 */
1088
1089 static struct demangle_component *
1090 d_name (struct d_info *di)
1091 {
1092 char peek = d_peek_char (di);
1093 struct demangle_component *dc;
1094
1095 switch (peek)
1096 {
1097 case 'N':
1098 return d_nested_name (di);
1099
1100 case 'Z':
1101 return d_local_name (di);
1102
1103 case 'S':
1104 {
1105 int subst;
1106
1107 if (d_peek_next_char (di) != 't')
1108 {
1109 dc = d_substitution (di, 0);
1110 subst = 1;
1111 }
1112 else
1113 {
1114 d_advance (di, 2);
1115 dc = d_make_comp (di, DEMANGLE_COMPONENT_QUAL_NAME,
1116 d_make_name (di, "std", 3),
1117 d_unqualified_name (di));
1118 di->expansion += 3;
1119 subst = 0;
1120 }
1121
1122 if (d_peek_char (di) != 'I')
1123 {
1124 /* The grammar does not permit this case to occur if we
1125 called d_substitution() above (i.e., subst == 1). We
1126 don't bother to check. */
1127 }
1128 else
1129 {
1130 /* This is <template-args>, which means that we just saw
1131 <unscoped-template-name>, which is a substitution
1132 candidate if we didn't just get it from a
1133 substitution. */
1134 if (! subst)
1135 {
1136 if (! d_add_substitution (di, dc))
1137 return NULL;
1138 }
1139 dc = d_make_comp (di, DEMANGLE_COMPONENT_TEMPLATE, dc,
1140 d_template_args (di));
1141 }
1142
1143 return dc;
1144 }
1145
1146 default:
1147 dc = d_unqualified_name (di);
1148 if (d_peek_char (di) == 'I')
1149 {
1150 /* This is <template-args>, which means that we just saw
1151 <unscoped-template-name>, which is a substitution
1152 candidate. */
1153 if (! d_add_substitution (di, dc))
1154 return NULL;
1155 dc = d_make_comp (di, DEMANGLE_COMPONENT_TEMPLATE, dc,
1156 d_template_args (di));
1157 }
1158 return dc;
1159 }
1160 }
1161
1162 /* <nested-name> ::= N [<CV-qualifiers>] <prefix> <unqualified-name> E
1163 ::= N [<CV-qualifiers>] <template-prefix> <template-args> E
1164 */
1165
1166 static struct demangle_component *
1167 d_nested_name (struct d_info *di)
1168 {
1169 struct demangle_component *ret;
1170 struct demangle_component **pret;
1171
1172 if (! d_check_char (di, 'N'))
1173 return NULL;
1174
1175 pret = d_cv_qualifiers (di, &ret, 1);
1176 if (pret == NULL)
1177 return NULL;
1178
1179 *pret = d_prefix (di);
1180 if (*pret == NULL)
1181 return NULL;
1182
1183 if (! d_check_char (di, 'E'))
1184 return NULL;
1185
1186 return ret;
1187 }
1188
1189 /* <prefix> ::= <prefix> <unqualified-name>
1190 ::= <template-prefix> <template-args>
1191 ::= <template-param>
1192 ::=
1193 ::= <substitution>
1194
1195 <template-prefix> ::= <prefix> <(template) unqualified-name>
1196 ::= <template-param>
1197 ::= <substitution>
1198 */
1199
1200 static struct demangle_component *
1201 d_prefix (struct d_info *di)
1202 {
1203 struct demangle_component *ret = NULL;
1204
1205 while (1)
1206 {
1207 char peek;
1208 enum demangle_component_type comb_type;
1209 struct demangle_component *dc;
1210
1211 peek = d_peek_char (di);
1212 if (peek == '\0')
1213 return NULL;
1214
1215 /* The older code accepts a <local-name> here, but I don't see
1216 that in the grammar. The older code does not accept a
1217 <template-param> here. */
1218
1219 comb_type = DEMANGLE_COMPONENT_QUAL_NAME;
1220 if (IS_DIGIT (peek)
1221 || IS_LOWER (peek)
1222 || peek == 'C'
1223 || peek == 'D')
1224 dc = d_unqualified_name (di);
1225 else if (peek == 'S')
1226 dc = d_substitution (di, 1);
1227 else if (peek == 'I')
1228 {
1229 if (ret == NULL)
1230 return NULL;
1231 comb_type = DEMANGLE_COMPONENT_TEMPLATE;
1232 dc = d_template_args (di);
1233 }
1234 else if (peek == 'T')
1235 dc = d_template_param (di);
1236 else if (peek == 'E')
1237 return ret;
1238 else
1239 return NULL;
1240
1241 if (ret == NULL)
1242 ret = dc;
1243 else
1244 ret = d_make_comp (di, comb_type, ret, dc);
1245
1246 if (peek != 'S' && d_peek_char (di) != 'E')
1247 {
1248 if (! d_add_substitution (di, ret))
1249 return NULL;
1250 }
1251 }
1252 }
1253
1254 /* <unqualified-name> ::= <operator-name>
1255 ::= <ctor-dtor-name>
1256 ::= <source-name>
1257 */
1258
1259 static struct demangle_component *
1260 d_unqualified_name (struct d_info *di)
1261 {
1262 char peek;
1263
1264 peek = d_peek_char (di);
1265 if (IS_DIGIT (peek))
1266 return d_source_name (di);
1267 else if (IS_LOWER (peek))
1268 {
1269 struct demangle_component *ret;
1270
1271 ret = d_operator_name (di);
1272 if (ret != NULL && ret->type == DEMANGLE_COMPONENT_OPERATOR)
1273 di->expansion += sizeof "operator" + ret->u.s_operator.op->len - 2;
1274 return ret;
1275 }
1276 else if (peek == 'C' || peek == 'D')
1277 return d_ctor_dtor_name (di);
1278 else
1279 return NULL;
1280 }
1281
1282 /* <source-name> ::= <(positive length) number> <identifier> */
1283
1284 static struct demangle_component *
1285 d_source_name (struct d_info *di)
1286 {
1287 long len;
1288 struct demangle_component *ret;
1289
1290 len = d_number (di);
1291 if (len <= 0)
1292 return NULL;
1293 ret = d_identifier (di, len);
1294 di->last_name = ret;
1295 return ret;
1296 }
1297
1298 /* number ::= [n] <(non-negative decimal integer)> */
1299
1300 static long
1301 d_number (struct d_info *di)
1302 {
1303 int negative;
1304 char peek;
1305 long ret;
1306
1307 negative = 0;
1308 peek = d_peek_char (di);
1309 if (peek == 'n')
1310 {
1311 negative = 1;
1312 d_advance (di, 1);
1313 peek = d_peek_char (di);
1314 }
1315
1316 ret = 0;
1317 while (1)
1318 {
1319 if (! IS_DIGIT (peek))
1320 {
1321 if (negative)
1322 ret = - ret;
1323 return ret;
1324 }
1325 ret = ret * 10 + peek - '0';
1326 d_advance (di, 1);
1327 peek = d_peek_char (di);
1328 }
1329 }
1330
1331 /* identifier ::= <(unqualified source code identifier)> */
1332
1333 static struct demangle_component *
1334 d_identifier (struct d_info *di, int len)
1335 {
1336 const char *name;
1337
1338 name = d_str (di);
1339
1340 if (di->send - name < len)
1341 return NULL;
1342
1343 d_advance (di, len);
1344
1345 /* A Java mangled name may have a trailing '$' if it is a C++
1346 keyword. This '$' is not included in the length count. We just
1347 ignore the '$'. */
1348 if ((di->options & DMGL_JAVA) != 0
1349 && d_peek_char (di) == '$')
1350 d_advance (di, 1);
1351
1352 /* Look for something which looks like a gcc encoding of an
1353 anonymous namespace, and replace it with a more user friendly
1354 name. */
1355 if (len >= (int) ANONYMOUS_NAMESPACE_PREFIX_LEN + 2
1356 && memcmp (name, ANONYMOUS_NAMESPACE_PREFIX,
1357 ANONYMOUS_NAMESPACE_PREFIX_LEN) == 0)
1358 {
1359 const char *s;
1360
1361 s = name + ANONYMOUS_NAMESPACE_PREFIX_LEN;
1362 if ((*s == '.' || *s == '_' || *s == '$')
1363 && s[1] == 'N')
1364 {
1365 di->expansion -= len - sizeof "(anonymous namespace)";
1366 return d_make_name (di, "(anonymous namespace)",
1367 sizeof "(anonymous namespace)" - 1);
1368 }
1369 }
1370
1371 return d_make_name (di, name, len);
1372 }
1373
1374 /* operator_name ::= many different two character encodings.
1375 ::= cv <type>
1376 ::= v <digit> <source-name>
1377 */
1378
1379 #define NL(s) s, (sizeof s) - 1
1380
1381 CP_STATIC_IF_GLIBCPP_V3
1382 const struct demangle_operator_info cplus_demangle_operators[] =
1383 {
1384 { "aN", NL ("&="), 2 },
1385 { "aS", NL ("="), 2 },
1386 { "aa", NL ("&&"), 2 },
1387 { "ad", NL ("&"), 1 },
1388 { "an", NL ("&"), 2 },
1389 { "cl", NL ("()"), 0 },
1390 { "cm", NL (","), 2 },
1391 { "co", NL ("~"), 1 },
1392 { "dV", NL ("/="), 2 },
1393 { "da", NL ("delete[]"), 1 },
1394 { "de", NL ("*"), 1 },
1395 { "dl", NL ("delete"), 1 },
1396 { "dv", NL ("/"), 2 },
1397 { "eO", NL ("^="), 2 },
1398 { "eo", NL ("^"), 2 },
1399 { "eq", NL ("=="), 2 },
1400 { "ge", NL (">="), 2 },
1401 { "gt", NL (">"), 2 },
1402 { "ix", NL ("[]"), 2 },
1403 { "lS", NL ("<<="), 2 },
1404 { "le", NL ("<="), 2 },
1405 { "ls", NL ("<<"), 2 },
1406 { "lt", NL ("<"), 2 },
1407 { "mI", NL ("-="), 2 },
1408 { "mL", NL ("*="), 2 },
1409 { "mi", NL ("-"), 2 },
1410 { "ml", NL ("*"), 2 },
1411 { "mm", NL ("--"), 1 },
1412 { "na", NL ("new[]"), 1 },
1413 { "ne", NL ("!="), 2 },
1414 { "ng", NL ("-"), 1 },
1415 { "nt", NL ("!"), 1 },
1416 { "nw", NL ("new"), 1 },
1417 { "oR", NL ("|="), 2 },
1418 { "oo", NL ("||"), 2 },
1419 { "or", NL ("|"), 2 },
1420 { "pL", NL ("+="), 2 },
1421 { "pl", NL ("+"), 2 },
1422 { "pm", NL ("->*"), 2 },
1423 { "pp", NL ("++"), 1 },
1424 { "ps", NL ("+"), 1 },
1425 { "pt", NL ("->"), 2 },
1426 { "qu", NL ("?"), 3 },
1427 { "rM", NL ("%="), 2 },
1428 { "rS", NL (">>="), 2 },
1429 { "rm", NL ("%"), 2 },
1430 { "rs", NL (">>"), 2 },
1431 { "st", NL ("sizeof "), 1 },
1432 { "sz", NL ("sizeof "), 1 },
1433 { NULL, NULL, 0, 0 }
1434 };
1435
1436 static struct demangle_component *
1437 d_operator_name (struct d_info *di)
1438 {
1439 char c1;
1440 char c2;
1441
1442 c1 = d_next_char (di);
1443 c2 = d_next_char (di);
1444 if (c1 == 'v' && IS_DIGIT (c2))
1445 return d_make_extended_operator (di, c2 - '0', d_source_name (di));
1446 else if (c1 == 'c' && c2 == 'v')
1447 return d_make_comp (di, DEMANGLE_COMPONENT_CAST,
1448 cplus_demangle_type (di), NULL);
1449 else
1450 {
1451 /* LOW is the inclusive lower bound. */
1452 int low = 0;
1453 /* HIGH is the exclusive upper bound. We subtract one to ignore
1454 the sentinel at the end of the array. */
1455 int high = ((sizeof (cplus_demangle_operators)
1456 / sizeof (cplus_demangle_operators[0]))
1457 - 1);
1458
1459 while (1)
1460 {
1461 int i;
1462 const struct demangle_operator_info *p;
1463
1464 i = low + (high - low) / 2;
1465 p = cplus_demangle_operators + i;
1466
1467 if (c1 == p->code[0] && c2 == p->code[1])
1468 return d_make_operator (di, p);
1469
1470 if (c1 < p->code[0] || (c1 == p->code[0] && c2 < p->code[1]))
1471 high = i;
1472 else
1473 low = i + 1;
1474 if (low == high)
1475 return NULL;
1476 }
1477 }
1478 }
1479
1480 /* <special-name> ::= TV <type>
1481 ::= TT <type>
1482 ::= TI <type>
1483 ::= TS <type>
1484 ::= GV <(object) name>
1485 ::= T <call-offset> <(base) encoding>
1486 ::= Tc <call-offset> <call-offset> <(base) encoding>
1487 Also g++ extensions:
1488 ::= TC <type> <(offset) number> _ <(base) type>
1489 ::= TF <type>
1490 ::= TJ <type>
1491 ::= GR <name>
1492 ::= GA <encoding>
1493 */
1494
1495 static struct demangle_component *
1496 d_special_name (struct d_info *di)
1497 {
1498 di->expansion += 20;
1499 if (d_check_char (di, 'T'))
1500 {
1501 switch (d_next_char (di))
1502 {
1503 case 'V':
1504 di->expansion -= 5;
1505 return d_make_comp (di, DEMANGLE_COMPONENT_VTABLE,
1506 cplus_demangle_type (di), NULL);
1507 case 'T':
1508 di->expansion -= 10;
1509 return d_make_comp (di, DEMANGLE_COMPONENT_VTT,
1510 cplus_demangle_type (di), NULL);
1511 case 'I':
1512 return d_make_comp (di, DEMANGLE_COMPONENT_TYPEINFO,
1513 cplus_demangle_type (di), NULL);
1514 case 'S':
1515 return d_make_comp (di, DEMANGLE_COMPONENT_TYPEINFO_NAME,
1516 cplus_demangle_type (di), NULL);
1517
1518 case 'h':
1519 if (! d_call_offset (di, 'h'))
1520 return NULL;
1521 return d_make_comp (di, DEMANGLE_COMPONENT_THUNK,
1522 d_encoding (di, 0), NULL);
1523
1524 case 'v':
1525 if (! d_call_offset (di, 'v'))
1526 return NULL;
1527 return d_make_comp (di, DEMANGLE_COMPONENT_VIRTUAL_THUNK,
1528 d_encoding (di, 0), NULL);
1529
1530 case 'c':
1531 if (! d_call_offset (di, '\0'))
1532 return NULL;
1533 if (! d_call_offset (di, '\0'))
1534 return NULL;
1535 return d_make_comp (di, DEMANGLE_COMPONENT_COVARIANT_THUNK,
1536 d_encoding (di, 0), NULL);
1537
1538 case 'C':
1539 {
1540 struct demangle_component *derived_type;
1541 long offset;
1542 struct demangle_component *base_type;
1543
1544 derived_type = cplus_demangle_type (di);
1545 offset = d_number (di);
1546 if (offset < 0)
1547 return NULL;
1548 if (! d_check_char (di, '_'))
1549 return NULL;
1550 base_type = cplus_demangle_type (di);
1551 /* We don't display the offset. FIXME: We should display
1552 it in verbose mode. */
1553 di->expansion += 5;
1554 return d_make_comp (di, DEMANGLE_COMPONENT_CONSTRUCTION_VTABLE,
1555 base_type, derived_type);
1556 }
1557
1558 case 'F':
1559 return d_make_comp (di, DEMANGLE_COMPONENT_TYPEINFO_FN,
1560 cplus_demangle_type (di), NULL);
1561 case 'J':
1562 return d_make_comp (di, DEMANGLE_COMPONENT_JAVA_CLASS,
1563 cplus_demangle_type (di), NULL);
1564
1565 default:
1566 return NULL;
1567 }
1568 }
1569 else if (d_check_char (di, 'G'))
1570 {
1571 switch (d_next_char (di))
1572 {
1573 case 'V':
1574 return d_make_comp (di, DEMANGLE_COMPONENT_GUARD, d_name (di), NULL);
1575
1576 case 'R':
1577 return d_make_comp (di, DEMANGLE_COMPONENT_REFTEMP, d_name (di),
1578 NULL);
1579
1580 case 'A':
1581 return d_make_comp (di, DEMANGLE_COMPONENT_HIDDEN_ALIAS,
1582 d_encoding (di, 0), NULL);
1583
1584 default:
1585 return NULL;
1586 }
1587 }
1588 else
1589 return NULL;
1590 }
1591
1592 /* <call-offset> ::= h <nv-offset> _
1593 ::= v <v-offset> _
1594
1595 <nv-offset> ::= <(offset) number>
1596
1597 <v-offset> ::= <(offset) number> _ <(virtual offset) number>
1598
1599 The C parameter, if not '\0', is a character we just read which is
1600 the start of the <call-offset>.
1601
1602 We don't display the offset information anywhere. FIXME: We should
1603 display it in verbose mode. */
1604
1605 static int
1606 d_call_offset (struct d_info *di, int c)
1607 {
1608 if (c == '\0')
1609 c = d_next_char (di);
1610
1611 if (c == 'h')
1612 d_number (di);
1613 else if (c == 'v')
1614 {
1615 d_number (di);
1616 if (! d_check_char (di, '_'))
1617 return 0;
1618 d_number (di);
1619 }
1620 else
1621 return 0;
1622
1623 if (! d_check_char (di, '_'))
1624 return 0;
1625
1626 return 1;
1627 }
1628
1629 /* <ctor-dtor-name> ::= C1
1630 ::= C2
1631 ::= C3
1632 ::= D0
1633 ::= D1
1634 ::= D2
1635 */
1636
1637 static struct demangle_component *
1638 d_ctor_dtor_name (struct d_info *di)
1639 {
1640 if (di->last_name != NULL)
1641 {
1642 if (di->last_name->type == DEMANGLE_COMPONENT_NAME)
1643 di->expansion += di->last_name->u.s_name.len;
1644 else if (di->last_name->type == DEMANGLE_COMPONENT_SUB_STD)
1645 di->expansion += di->last_name->u.s_string.len;
1646 }
1647 switch (d_peek_char (di))
1648 {
1649 case 'C':
1650 {
1651 enum gnu_v3_ctor_kinds kind;
1652
1653 switch (d_peek_next_char (di))
1654 {
1655 case '1':
1656 kind = gnu_v3_complete_object_ctor;
1657 break;
1658 case '2':
1659 kind = gnu_v3_base_object_ctor;
1660 break;
1661 case '3':
1662 kind = gnu_v3_complete_object_allocating_ctor;
1663 break;
1664 default:
1665 return NULL;
1666 }
1667 d_advance (di, 2);
1668 return d_make_ctor (di, kind, di->last_name);
1669 }
1670
1671 case 'D':
1672 {
1673 enum gnu_v3_dtor_kinds kind;
1674
1675 switch (d_peek_next_char (di))
1676 {
1677 case '0':
1678 kind = gnu_v3_deleting_dtor;
1679 break;
1680 case '1':
1681 kind = gnu_v3_complete_object_dtor;
1682 break;
1683 case '2':
1684 kind = gnu_v3_base_object_dtor;
1685 break;
1686 default:
1687 return NULL;
1688 }
1689 d_advance (di, 2);
1690 return d_make_dtor (di, kind, di->last_name);
1691 }
1692
1693 default:
1694 return NULL;
1695 }
1696 }
1697
1698 /* <type> ::= <builtin-type>
1699 ::= <function-type>
1700 ::= <class-enum-type>
1701 ::= <array-type>
1702 ::= <pointer-to-member-type>
1703 ::= <template-param>
1704 ::= <template-template-param> <template-args>
1705 ::= <substitution>
1706 ::= <CV-qualifiers> <type>
1707 ::= P <type>
1708 ::= R <type>
1709 ::= C <type>
1710 ::= G <type>
1711 ::= U <source-name> <type>
1712
1713 <builtin-type> ::= various one letter codes
1714 ::= u <source-name>
1715 */
1716
1717 CP_STATIC_IF_GLIBCPP_V3
1718 const struct demangle_builtin_type_info
1719 cplus_demangle_builtin_types[D_BUILTIN_TYPE_COUNT] =
1720 {
1721 /* a */ { NL ("signed char"), NL ("signed char"), D_PRINT_DEFAULT },
1722 /* b */ { NL ("bool"), NL ("boolean"), D_PRINT_BOOL },
1723 /* c */ { NL ("char"), NL ("byte"), D_PRINT_DEFAULT },
1724 /* d */ { NL ("double"), NL ("double"), D_PRINT_FLOAT },
1725 /* e */ { NL ("long double"), NL ("long double"), D_PRINT_FLOAT },
1726 /* f */ { NL ("float"), NL ("float"), D_PRINT_FLOAT },
1727 /* g */ { NL ("__float128"), NL ("__float128"), D_PRINT_FLOAT },
1728 /* h */ { NL ("unsigned char"), NL ("unsigned char"), D_PRINT_DEFAULT },
1729 /* i */ { NL ("int"), NL ("int"), D_PRINT_INT },
1730 /* j */ { NL ("unsigned int"), NL ("unsigned"), D_PRINT_UNSIGNED },
1731 /* k */ { NULL, 0, NULL, 0, D_PRINT_DEFAULT },
1732 /* l */ { NL ("long"), NL ("long"), D_PRINT_LONG },
1733 /* m */ { NL ("unsigned long"), NL ("unsigned long"), D_PRINT_UNSIGNED_LONG },
1734 /* n */ { NL ("__int128"), NL ("__int128"), D_PRINT_DEFAULT },
1735 /* o */ { NL ("unsigned __int128"), NL ("unsigned __int128"),
1736 D_PRINT_DEFAULT },
1737 /* p */ { NULL, 0, NULL, 0, D_PRINT_DEFAULT },
1738 /* q */ { NULL, 0, NULL, 0, D_PRINT_DEFAULT },
1739 /* r */ { NULL, 0, NULL, 0, D_PRINT_DEFAULT },
1740 /* s */ { NL ("short"), NL ("short"), D_PRINT_DEFAULT },
1741 /* t */ { NL ("unsigned short"), NL ("unsigned short"), D_PRINT_DEFAULT },
1742 /* u */ { NULL, 0, NULL, 0, D_PRINT_DEFAULT },
1743 /* v */ { NL ("void"), NL ("void"), D_PRINT_VOID },
1744 /* w */ { NL ("wchar_t"), NL ("char"), D_PRINT_DEFAULT },
1745 /* x */ { NL ("long long"), NL ("long"), D_PRINT_LONG_LONG },
1746 /* y */ { NL ("unsigned long long"), NL ("unsigned long long"),
1747 D_PRINT_UNSIGNED_LONG_LONG },
1748 /* z */ { NL ("..."), NL ("..."), D_PRINT_DEFAULT },
1749 };
1750
1751 CP_STATIC_IF_GLIBCPP_V3
1752 struct demangle_component *
1753 cplus_demangle_type (struct d_info *di)
1754 {
1755 char peek;
1756 struct demangle_component *ret;
1757 int can_subst;
1758
1759 /* The ABI specifies that when CV-qualifiers are used, the base type
1760 is substitutable, and the fully qualified type is substitutable,
1761 but the base type with a strict subset of the CV-qualifiers is
1762 not substitutable. The natural recursive implementation of the
1763 CV-qualifiers would cause subsets to be substitutable, so instead
1764 we pull them all off now.
1765
1766 FIXME: The ABI says that order-insensitive vendor qualifiers
1767 should be handled in the same way, but we have no way to tell
1768 which vendor qualifiers are order-insensitive and which are
1769 order-sensitive. So we just assume that they are all
1770 order-sensitive. g++ 3.4 supports only one vendor qualifier,
1771 __vector, and it treats it as order-sensitive when mangling
1772 names. */
1773
1774 peek = d_peek_char (di);
1775 if (peek == 'r' || peek == 'V' || peek == 'K')
1776 {
1777 struct demangle_component **pret;
1778
1779 pret = d_cv_qualifiers (di, &ret, 0);
1780 if (pret == NULL)
1781 return NULL;
1782 *pret = cplus_demangle_type (di);
1783 if (! *pret || ! d_add_substitution (di, ret))
1784 return NULL;
1785 return ret;
1786 }
1787
1788 can_subst = 1;
1789
1790 switch (peek)
1791 {
1792 case 'a': case 'b': case 'c': case 'd': case 'e': case 'f': case 'g':
1793 case 'h': case 'i': case 'j': case 'l': case 'm': case 'n':
1794 case 'o': case 's': case 't':
1795 case 'v': case 'w': case 'x': case 'y': case 'z':
1796 ret = d_make_builtin_type (di,
1797 &cplus_demangle_builtin_types[peek - 'a']);
1798 di->expansion += ret->u.s_builtin.type->len;
1799 can_subst = 0;
1800 d_advance (di, 1);
1801 break;
1802
1803 case 'u':
1804 d_advance (di, 1);
1805 ret = d_make_comp (di, DEMANGLE_COMPONENT_VENDOR_TYPE,
1806 d_source_name (di), NULL);
1807 break;
1808
1809 case 'F':
1810 ret = d_function_type (di);
1811 break;
1812
1813 case '0': case '1': case '2': case '3': case '4':
1814 case '5': case '6': case '7': case '8': case '9':
1815 case 'N':
1816 case 'Z':
1817 ret = d_class_enum_type (di);
1818 break;
1819
1820 case 'A':
1821 ret = d_array_type (di);
1822 break;
1823
1824 case 'M':
1825 ret = d_pointer_to_member_type (di);
1826 break;
1827
1828 case 'T':
1829 ret = d_template_param (di);
1830 if (d_peek_char (di) == 'I')
1831 {
1832 /* This is <template-template-param> <template-args>. The
1833 <template-template-param> part is a substitution
1834 candidate. */
1835 if (! d_add_substitution (di, ret))
1836 return NULL;
1837 ret = d_make_comp (di, DEMANGLE_COMPONENT_TEMPLATE, ret,
1838 d_template_args (di));
1839 }
1840 break;
1841
1842 case 'S':
1843 /* If this is a special substitution, then it is the start of
1844 <class-enum-type>. */
1845 {
1846 char peek_next;
1847
1848 peek_next = d_peek_next_char (di);
1849 if (IS_DIGIT (peek_next)
1850 || peek_next == '_'
1851 || IS_UPPER (peek_next))
1852 {
1853 ret = d_substitution (di, 0);
1854 /* The substituted name may have been a template name and
1855 may be followed by tepmlate args. */
1856 if (d_peek_char (di) == 'I')
1857 ret = d_make_comp (di, DEMANGLE_COMPONENT_TEMPLATE, ret,
1858 d_template_args (di));
1859 else
1860 can_subst = 0;
1861 }
1862 else
1863 {
1864 ret = d_class_enum_type (di);
1865 /* If the substitution was a complete type, then it is not
1866 a new substitution candidate. However, if the
1867 substitution was followed by template arguments, then
1868 the whole thing is a substitution candidate. */
1869 if (ret != NULL && ret->type == DEMANGLE_COMPONENT_SUB_STD)
1870 can_subst = 0;
1871 }
1872 }
1873 break;
1874
1875 case 'P':
1876 d_advance (di, 1);
1877 ret = d_make_comp (di, DEMANGLE_COMPONENT_POINTER,
1878 cplus_demangle_type (di), NULL);
1879 break;
1880
1881 case 'R':
1882 d_advance (di, 1);
1883 ret = d_make_comp (di, DEMANGLE_COMPONENT_REFERENCE,
1884 cplus_demangle_type (di), NULL);
1885 break;
1886
1887 case 'C':
1888 d_advance (di, 1);
1889 ret = d_make_comp (di, DEMANGLE_COMPONENT_COMPLEX,
1890 cplus_demangle_type (di), NULL);
1891 break;
1892
1893 case 'G':
1894 d_advance (di, 1);
1895 ret = d_make_comp (di, DEMANGLE_COMPONENT_IMAGINARY,
1896 cplus_demangle_type (di), NULL);
1897 break;
1898
1899 case 'U':
1900 d_advance (di, 1);
1901 ret = d_source_name (di);
1902 ret = d_make_comp (di, DEMANGLE_COMPONENT_VENDOR_TYPE_QUAL,
1903 cplus_demangle_type (di), ret);
1904 break;
1905
1906 default:
1907 return NULL;
1908 }
1909
1910 if (can_subst)
1911 {
1912 if (! d_add_substitution (di, ret))
1913 return NULL;
1914 }
1915
1916 return ret;
1917 }
1918
1919 /* <CV-qualifiers> ::= [r] [V] [K] */
1920
1921 static struct demangle_component **
1922 d_cv_qualifiers (struct d_info *di,
1923 struct demangle_component **pret, int member_fn)
1924 {
1925 char peek;
1926
1927 peek = d_peek_char (di);
1928 while (peek == 'r' || peek == 'V' || peek == 'K')
1929 {
1930 enum demangle_component_type t;
1931
1932 d_advance (di, 1);
1933 if (peek == 'r')
1934 {
1935 t = (member_fn
1936 ? DEMANGLE_COMPONENT_RESTRICT_THIS
1937 : DEMANGLE_COMPONENT_RESTRICT);
1938 di->expansion += sizeof "restrict";
1939 }
1940 else if (peek == 'V')
1941 {
1942 t = (member_fn
1943 ? DEMANGLE_COMPONENT_VOLATILE_THIS
1944 : DEMANGLE_COMPONENT_VOLATILE);
1945 di->expansion += sizeof "volatile";
1946 }
1947 else
1948 {
1949 t = (member_fn
1950 ? DEMANGLE_COMPONENT_CONST_THIS
1951 : DEMANGLE_COMPONENT_CONST);
1952 di->expansion += sizeof "const";
1953 }
1954
1955 *pret = d_make_comp (di, t, NULL, NULL);
1956 if (*pret == NULL)
1957 return NULL;
1958 pret = &d_left (*pret);
1959
1960 peek = d_peek_char (di);
1961 }
1962
1963 return pret;
1964 }
1965
1966 /* <function-type> ::= F [Y] <bare-function-type> E */
1967
1968 static struct demangle_component *
1969 d_function_type (struct d_info *di)
1970 {
1971 struct demangle_component *ret;
1972
1973 if (! d_check_char (di, 'F'))
1974 return NULL;
1975 if (d_peek_char (di) == 'Y')
1976 {
1977 /* Function has C linkage. We don't print this information.
1978 FIXME: We should print it in verbose mode. */
1979 d_advance (di, 1);
1980 }
1981 ret = d_bare_function_type (di, 1);
1982 if (! d_check_char (di, 'E'))
1983 return NULL;
1984 return ret;
1985 }
1986
1987 /* <bare-function-type> ::= [J]<type>+ */
1988
1989 static struct demangle_component *
1990 d_bare_function_type (struct d_info *di, int has_return_type)
1991 {
1992 struct demangle_component *return_type;
1993 struct demangle_component *tl;
1994 struct demangle_component **ptl;
1995 char peek;
1996
1997 /* Detect special qualifier indicating that the first argument
1998 is the return type. */
1999 peek = d_peek_char (di);
2000 if (peek == 'J')
2001 {
2002 d_advance (di, 1);
2003 has_return_type = 1;
2004 }
2005
2006 return_type = NULL;
2007 tl = NULL;
2008 ptl = &tl;
2009 while (1)
2010 {
2011 struct demangle_component *type;
2012
2013 peek = d_peek_char (di);
2014 if (peek == '\0' || peek == 'E')
2015 break;
2016 type = cplus_demangle_type (di);
2017 if (type == NULL)
2018 return NULL;
2019 if (has_return_type)
2020 {
2021 return_type = type;
2022 has_return_type = 0;
2023 }
2024 else
2025 {
2026 *ptl = d_make_comp (di, DEMANGLE_COMPONENT_ARGLIST, type, NULL);
2027 if (*ptl == NULL)
2028 return NULL;
2029 ptl = &d_right (*ptl);
2030 }
2031 }
2032
2033 /* There should be at least one parameter type besides the optional
2034 return type. A function which takes no arguments will have a
2035 single parameter type void. */
2036 if (tl == NULL)
2037 return NULL;
2038
2039 /* If we have a single parameter type void, omit it. */
2040 if (d_right (tl) == NULL
2041 && d_left (tl)->type == DEMANGLE_COMPONENT_BUILTIN_TYPE
2042 && d_left (tl)->u.s_builtin.type->print == D_PRINT_VOID)
2043 {
2044 di->expansion -= d_left (tl)->u.s_builtin.type->len;
2045 tl = NULL;
2046 }
2047
2048 return d_make_comp (di, DEMANGLE_COMPONENT_FUNCTION_TYPE, return_type, tl);
2049 }
2050
2051 /* <class-enum-type> ::= <name> */
2052
2053 static struct demangle_component *
2054 d_class_enum_type (struct d_info *di)
2055 {
2056 return d_name (di);
2057 }
2058
2059 /* <array-type> ::= A <(positive dimension) number> _ <(element) type>
2060 ::= A [<(dimension) expression>] _ <(element) type>
2061 */
2062
2063 static struct demangle_component *
2064 d_array_type (struct d_info *di)
2065 {
2066 char peek;
2067 struct demangle_component *dim;
2068
2069 if (! d_check_char (di, 'A'))
2070 return NULL;
2071
2072 peek = d_peek_char (di);
2073 if (peek == '_')
2074 dim = NULL;
2075 else if (IS_DIGIT (peek))
2076 {
2077 const char *s;
2078
2079 s = d_str (di);
2080 do
2081 {
2082 d_advance (di, 1);
2083 peek = d_peek_char (di);
2084 }
2085 while (IS_DIGIT (peek));
2086 dim = d_make_name (di, s, d_str (di) - s);
2087 if (dim == NULL)
2088 return NULL;
2089 }
2090 else
2091 {
2092 dim = d_expression (di);
2093 if (dim == NULL)
2094 return NULL;
2095 }
2096
2097 if (! d_check_char (di, '_'))
2098 return NULL;
2099
2100 return d_make_comp (di, DEMANGLE_COMPONENT_ARRAY_TYPE, dim,
2101 cplus_demangle_type (di));
2102 }
2103
2104 /* <pointer-to-member-type> ::= M <(class) type> <(member) type> */
2105
2106 static struct demangle_component *
2107 d_pointer_to_member_type (struct d_info *di)
2108 {
2109 struct demangle_component *cl;
2110 struct demangle_component *mem;
2111 struct demangle_component **pmem;
2112
2113 if (! d_check_char (di, 'M'))
2114 return NULL;
2115
2116 cl = cplus_demangle_type (di);
2117
2118 /* The ABI specifies that any type can be a substitution source, and
2119 that M is followed by two types, and that when a CV-qualified
2120 type is seen both the base type and the CV-qualified types are
2121 substitution sources. The ABI also specifies that for a pointer
2122 to a CV-qualified member function, the qualifiers are attached to
2123 the second type. Given the grammar, a plain reading of the ABI
2124 suggests that both the CV-qualified member function and the
2125 non-qualified member function are substitution sources. However,
2126 g++ does not work that way. g++ treats only the CV-qualified
2127 member function as a substitution source. FIXME. So to work
2128 with g++, we need to pull off the CV-qualifiers here, in order to
2129 avoid calling add_substitution() in cplus_demangle_type(). But
2130 for a CV-qualified member which is not a function, g++ does
2131 follow the ABI, so we need to handle that case here by calling
2132 d_add_substitution ourselves. */
2133
2134 pmem = d_cv_qualifiers (di, &mem, 1);
2135 if (pmem == NULL)
2136 return NULL;
2137 *pmem = cplus_demangle_type (di);
2138 if (*pmem == NULL)
2139 return NULL;
2140
2141 if (pmem != &mem && (*pmem)->type != DEMANGLE_COMPONENT_FUNCTION_TYPE)
2142 {
2143 if (! d_add_substitution (di, mem))
2144 return NULL;
2145 }
2146
2147 return d_make_comp (di, DEMANGLE_COMPONENT_PTRMEM_TYPE, cl, mem);
2148 }
2149
2150 /* <template-param> ::= T_
2151 ::= T <(parameter-2 non-negative) number> _
2152 */
2153
2154 static struct demangle_component *
2155 d_template_param (struct d_info *di)
2156 {
2157 long param;
2158
2159 if (! d_check_char (di, 'T'))
2160 return NULL;
2161
2162 if (d_peek_char (di) == '_')
2163 param = 0;
2164 else
2165 {
2166 param = d_number (di);
2167 if (param < 0)
2168 return NULL;
2169 param += 1;
2170 }
2171
2172 if (! d_check_char (di, '_'))
2173 return NULL;
2174
2175 ++di->did_subs;
2176
2177 return d_make_template_param (di, param);
2178 }
2179
2180 /* <template-args> ::= I <template-arg>+ E */
2181
2182 static struct demangle_component *
2183 d_template_args (struct d_info *di)
2184 {
2185 struct demangle_component *hold_last_name;
2186 struct demangle_component *al;
2187 struct demangle_component **pal;
2188
2189 /* Preserve the last name we saw--don't let the template arguments
2190 clobber it, as that would give us the wrong name for a subsequent
2191 constructor or destructor. */
2192 hold_last_name = di->last_name;
2193
2194 if (! d_check_char (di, 'I'))
2195 return NULL;
2196
2197 al = NULL;
2198 pal = &al;
2199 while (1)
2200 {
2201 struct demangle_component *a;
2202
2203 a = d_template_arg (di);
2204 if (a == NULL)
2205 return NULL;
2206
2207 *pal = d_make_comp (di, DEMANGLE_COMPONENT_TEMPLATE_ARGLIST, a, NULL);
2208 if (*pal == NULL)
2209 return NULL;
2210 pal = &d_right (*pal);
2211
2212 if (d_peek_char (di) == 'E')
2213 {
2214 d_advance (di, 1);
2215 break;
2216 }
2217 }
2218
2219 di->last_name = hold_last_name;
2220
2221 return al;
2222 }
2223
2224 /* <template-arg> ::= <type>
2225 ::= X <expression> E
2226 ::= <expr-primary>
2227 */
2228
2229 static struct demangle_component *
2230 d_template_arg (struct d_info *di)
2231 {
2232 struct demangle_component *ret;
2233
2234 switch (d_peek_char (di))
2235 {
2236 case 'X':
2237 d_advance (di, 1);
2238 ret = d_expression (di);
2239 if (! d_check_char (di, 'E'))
2240 return NULL;
2241 return ret;
2242
2243 case 'L':
2244 return d_expr_primary (di);
2245
2246 default:
2247 return cplus_demangle_type (di);
2248 }
2249 }
2250
2251 /* <expression> ::= <(unary) operator-name> <expression>
2252 ::= <(binary) operator-name> <expression> <expression>
2253 ::= <(trinary) operator-name> <expression> <expression> <expression>
2254 ::= st <type>
2255 ::= <template-param>
2256 ::= sr <type> <unqualified-name>
2257 ::= sr <type> <unqualified-name> <template-args>
2258 ::= <expr-primary>
2259 */
2260
2261 static struct demangle_component *
2262 d_expression (struct d_info *di)
2263 {
2264 char peek;
2265
2266 peek = d_peek_char (di);
2267 if (peek == 'L')
2268 return d_expr_primary (di);
2269 else if (peek == 'T')
2270 return d_template_param (di);
2271 else if (peek == 's' && d_peek_next_char (di) == 'r')
2272 {
2273 struct demangle_component *type;
2274 struct demangle_component *name;
2275
2276 d_advance (di, 2);
2277 type = cplus_demangle_type (di);
2278 name = d_unqualified_name (di);
2279 if (d_peek_char (di) != 'I')
2280 return d_make_comp (di, DEMANGLE_COMPONENT_QUAL_NAME, type, name);
2281 else
2282 return d_make_comp (di, DEMANGLE_COMPONENT_QUAL_NAME, type,
2283 d_make_comp (di, DEMANGLE_COMPONENT_TEMPLATE, name,
2284 d_template_args (di)));
2285 }
2286 else
2287 {
2288 struct demangle_component *op;
2289 int args;
2290
2291 op = d_operator_name (di);
2292 if (op == NULL)
2293 return NULL;
2294
2295 if (op->type == DEMANGLE_COMPONENT_OPERATOR)
2296 di->expansion += op->u.s_operator.op->len - 2;
2297
2298 if (op->type == DEMANGLE_COMPONENT_OPERATOR
2299 && strcmp (op->u.s_operator.op->code, "st") == 0)
2300 return d_make_comp (di, DEMANGLE_COMPONENT_UNARY, op,
2301 cplus_demangle_type (di));
2302
2303 switch (op->type)
2304 {
2305 default:
2306 return NULL;
2307 case DEMANGLE_COMPONENT_OPERATOR:
2308 args = op->u.s_operator.op->args;
2309 break;
2310 case DEMANGLE_COMPONENT_EXTENDED_OPERATOR:
2311 args = op->u.s_extended_operator.args;
2312 break;
2313 case DEMANGLE_COMPONENT_CAST:
2314 args = 1;
2315 break;
2316 }
2317
2318 switch (args)
2319 {
2320 case 1:
2321 return d_make_comp (di, DEMANGLE_COMPONENT_UNARY, op,
2322 d_expression (di));
2323 case 2:
2324 {
2325 struct demangle_component *left;
2326
2327 left = d_expression (di);
2328 return d_make_comp (di, DEMANGLE_COMPONENT_BINARY, op,
2329 d_make_comp (di,
2330 DEMANGLE_COMPONENT_BINARY_ARGS,
2331 left,
2332 d_expression (di)));
2333 }
2334 case 3:
2335 {
2336 struct demangle_component *first;
2337 struct demangle_component *second;
2338
2339 first = d_expression (di);
2340 second = d_expression (di);
2341 return d_make_comp (di, DEMANGLE_COMPONENT_TRINARY, op,
2342 d_make_comp (di,
2343 DEMANGLE_COMPONENT_TRINARY_ARG1,
2344 first,
2345 d_make_comp (di,
2346 DEMANGLE_COMPONENT_TRINARY_ARG2,
2347 second,
2348 d_expression (di))));
2349 }
2350 default:
2351 return NULL;
2352 }
2353 }
2354 }
2355
2356 /* <expr-primary> ::= L <type> <(value) number> E
2357 ::= L <type> <(value) float> E
2358 ::= L <mangled-name> E
2359 */
2360
2361 static struct demangle_component *
2362 d_expr_primary (struct d_info *di)
2363 {
2364 struct demangle_component *ret;
2365
2366 if (! d_check_char (di, 'L'))
2367 return NULL;
2368 if (d_peek_char (di) == '_')
2369 ret = cplus_demangle_mangled_name (di, 0);
2370 else
2371 {
2372 struct demangle_component *type;
2373 enum demangle_component_type t;
2374 const char *s;
2375
2376 type = cplus_demangle_type (di);
2377 if (type == NULL)
2378 return NULL;
2379
2380 /* If we have a type we know how to print, we aren't going to
2381 print the type name itself. */
2382 if (type->type == DEMANGLE_COMPONENT_BUILTIN_TYPE
2383 && type->u.s_builtin.type->print != D_PRINT_DEFAULT)
2384 di->expansion -= type->u.s_builtin.type->len;
2385
2386 /* Rather than try to interpret the literal value, we just
2387 collect it as a string. Note that it's possible to have a
2388 floating point literal here. The ABI specifies that the
2389 format of such literals is machine independent. That's fine,
2390 but what's not fine is that versions of g++ up to 3.2 with
2391 -fabi-version=1 used upper case letters in the hex constant,
2392 and dumped out gcc's internal representation. That makes it
2393 hard to tell where the constant ends, and hard to dump the
2394 constant in any readable form anyhow. We don't attempt to
2395 handle these cases. */
2396
2397 t = DEMANGLE_COMPONENT_LITERAL;
2398 if (d_peek_char (di) == 'n')
2399 {
2400 t = DEMANGLE_COMPONENT_LITERAL_NEG;
2401 d_advance (di, 1);
2402 }
2403 s = d_str (di);
2404 while (d_peek_char (di) != 'E')
2405 {
2406 if (d_peek_char (di) == '\0')
2407 return NULL;
2408 d_advance (di, 1);
2409 }
2410 ret = d_make_comp (di, t, type, d_make_name (di, s, d_str (di) - s));
2411 }
2412 if (! d_check_char (di, 'E'))
2413 return NULL;
2414 return ret;
2415 }
2416
2417 /* <local-name> ::= Z <(function) encoding> E <(entity) name> [<discriminator>]
2418 ::= Z <(function) encoding> E s [<discriminator>]
2419 */
2420
2421 static struct demangle_component *
2422 d_local_name (struct d_info *di)
2423 {
2424 struct demangle_component *function;
2425
2426 if (! d_check_char (di, 'Z'))
2427 return NULL;
2428
2429 function = d_encoding (di, 0);
2430
2431 if (! d_check_char (di, 'E'))
2432 return NULL;
2433
2434 if (d_peek_char (di) == 's')
2435 {
2436 d_advance (di, 1);
2437 if (! d_discriminator (di))
2438 return NULL;
2439 return d_make_comp (di, DEMANGLE_COMPONENT_LOCAL_NAME, function,
2440 d_make_name (di, "string literal",
2441 sizeof "string literal" - 1));
2442 }
2443 else
2444 {
2445 struct demangle_component *name;
2446
2447 name = d_name (di);
2448 if (! d_discriminator (di))
2449 return NULL;
2450 return d_make_comp (di, DEMANGLE_COMPONENT_LOCAL_NAME, function, name);
2451 }
2452 }
2453
2454 /* <discriminator> ::= _ <(non-negative) number>
2455
2456 We demangle the discriminator, but we don't print it out. FIXME:
2457 We should print it out in verbose mode. */
2458
2459 static int
2460 d_discriminator (struct d_info *di)
2461 {
2462 long discrim;
2463
2464 if (d_peek_char (di) != '_')
2465 return 1;
2466 d_advance (di, 1);
2467 discrim = d_number (di);
2468 if (discrim < 0)
2469 return 0;
2470 return 1;
2471 }
2472
2473 /* Add a new substitution. */
2474
2475 static int
2476 d_add_substitution (struct d_info *di, struct demangle_component *dc)
2477 {
2478 if (dc == NULL)
2479 return 0;
2480 if (di->next_sub >= di->num_subs)
2481 return 0;
2482 di->subs[di->next_sub] = dc;
2483 ++di->next_sub;
2484 return 1;
2485 }
2486
2487 /* <substitution> ::= S <seq-id> _
2488 ::= S_
2489 ::= St
2490 ::= Sa
2491 ::= Sb
2492 ::= Ss
2493 ::= Si
2494 ::= So
2495 ::= Sd
2496
2497 If PREFIX is non-zero, then this type is being used as a prefix in
2498 a qualified name. In this case, for the standard substitutions, we
2499 need to check whether we are being used as a prefix for a
2500 constructor or destructor, and return a full template name.
2501 Otherwise we will get something like std::iostream::~iostream()
2502 which does not correspond particularly well to any function which
2503 actually appears in the source.
2504 */
2505
2506 static const struct d_standard_sub_info standard_subs[] =
2507 {
2508 { 't', NL ("std"),
2509 NL ("std"),
2510 NULL, 0 },
2511 { 'a', NL ("std::allocator"),
2512 NL ("std::allocator"),
2513 NL ("allocator") },
2514 { 'b', NL ("std::basic_string"),
2515 NL ("std::basic_string"),
2516 NL ("basic_string") },
2517 { 's', NL ("std::string"),
2518 NL ("std::basic_string<char, std::char_traits<char>, std::allocator<char> >"),
2519 NL ("basic_string") },
2520 { 'i', NL ("std::istream"),
2521 NL ("std::basic_istream<char, std::char_traits<char> >"),
2522 NL ("basic_istream") },
2523 { 'o', NL ("std::ostream"),
2524 NL ("std::basic_ostream<char, std::char_traits<char> >"),
2525 NL ("basic_ostream") },
2526 { 'd', NL ("std::iostream"),
2527 NL ("std::basic_iostream<char, std::char_traits<char> >"),
2528 NL ("basic_iostream") }
2529 };
2530
2531 static struct demangle_component *
2532 d_substitution (struct d_info *di, int prefix)
2533 {
2534 char c;
2535
2536 if (! d_check_char (di, 'S'))
2537 return NULL;
2538
2539 c = d_next_char (di);
2540 if (c == '_' || IS_DIGIT (c) || IS_UPPER (c))
2541 {
2542 int id;
2543
2544 id = 0;
2545 if (c != '_')
2546 {
2547 do
2548 {
2549 if (IS_DIGIT (c))
2550 id = id * 36 + c - '0';
2551 else if (IS_UPPER (c))
2552 id = id * 36 + c - 'A' + 10;
2553 else
2554 return NULL;
2555 if (id < 0)
2556 return NULL;
2557 c = d_next_char (di);
2558 }
2559 while (c != '_');
2560
2561 ++id;
2562 }
2563
2564 if (id >= di->next_sub)
2565 return NULL;
2566
2567 ++di->did_subs;
2568
2569 return di->subs[id];
2570 }
2571 else
2572 {
2573 int verbose;
2574 const struct d_standard_sub_info *p;
2575 const struct d_standard_sub_info *pend;
2576
2577 verbose = (di->options & DMGL_VERBOSE) != 0;
2578 if (! verbose && prefix)
2579 {
2580 char peek;
2581
2582 peek = d_peek_char (di);
2583 if (peek == 'C' || peek == 'D')
2584 verbose = 1;
2585 }
2586
2587 pend = (&standard_subs[0]
2588 + sizeof standard_subs / sizeof standard_subs[0]);
2589 for (p = &standard_subs[0]; p < pend; ++p)
2590 {
2591 if (c == p->code)
2592 {
2593 const char *s;
2594 int len;
2595
2596 if (p->set_last_name != NULL)
2597 di->last_name = d_make_sub (di, p->set_last_name,
2598 p->set_last_name_len);
2599 if (verbose)
2600 {
2601 s = p->full_expansion;
2602 len = p->full_len;
2603 }
2604 else
2605 {
2606 s = p->simple_expansion;
2607 len = p->simple_len;
2608 }
2609 di->expansion += len;
2610 return d_make_sub (di, s, len);
2611 }
2612 }
2613
2614 return NULL;
2615 }
2616 }
2617
2618 /* Initialize a growable string. */
2619
2620 static void
2621 d_growable_string_init (struct d_growable_string *dgs, size_t estimate)
2622 {
2623 dgs->buf = NULL;
2624 dgs->len = 0;
2625 dgs->alc = 0;
2626 dgs->allocation_failure = 0;
2627
2628 if (estimate > 0)
2629 d_growable_string_resize (dgs, estimate);
2630 }
2631
2632 /* Grow a growable string to a given size. */
2633
2634 static inline void
2635 d_growable_string_resize (struct d_growable_string *dgs, size_t need)
2636 {
2637 size_t newalc;
2638 char *newbuf;
2639
2640 if (dgs->allocation_failure)
2641 return;
2642
2643 /* Start allocation at two bytes to avoid any possibility of confusion
2644 with the special value of 1 used as a return in *palc to indicate
2645 allocation failures. */
2646 newalc = dgs->alc > 0 ? dgs->alc : 2;
2647 while (newalc < need)
2648 newalc <<= 1;
2649
2650 newbuf = (char *) realloc (dgs->buf, newalc);
2651 if (newbuf == NULL)
2652 {
2653 free (dgs->buf);
2654 dgs->buf = NULL;
2655 dgs->len = 0;
2656 dgs->alc = 0;
2657 dgs->allocation_failure = 1;
2658 return;
2659 }
2660 dgs->buf = newbuf;
2661 dgs->alc = newalc;
2662 }
2663
2664 /* Append a buffer to a growable string. */
2665
2666 static inline void
2667 d_growable_string_append_buffer (struct d_growable_string *dgs,
2668 const char *s, size_t l)
2669 {
2670 size_t need;
2671
2672 need = dgs->len + l + 1;
2673 if (need > dgs->alc)
2674 d_growable_string_resize (dgs, need);
2675
2676 if (dgs->allocation_failure)
2677 return;
2678
2679 memcpy (dgs->buf + dgs->len, s, l);
2680 dgs->buf[dgs->len + l] = '\0';
2681 dgs->len += l;
2682 }
2683
2684 /* Bridge growable strings to the callback mechanism. */
2685
2686 static void
2687 d_growable_string_callback_adapter (const char *s, size_t l, void *opaque)
2688 {
2689 struct d_growable_string *dgs = (struct d_growable_string*) opaque;
2690
2691 d_growable_string_append_buffer (dgs, s, l);
2692 }
2693
2694 /* Initialize a print information structure. */
2695
2696 static void
2697 d_print_init (struct d_print_info *dpi, int options,
2698 demangle_callbackref callback, void *opaque)
2699 {
2700 dpi->options = options;
2701 dpi->len = 0;
2702 dpi->last_char = '\0';
2703 dpi->templates = NULL;
2704 dpi->modifiers = NULL;
2705
2706 dpi->callback = callback;
2707 dpi->opaque = opaque;
2708
2709 dpi->demangle_failure = 0;
2710 }
2711
2712 /* Indicate that an error occurred during printing, and test for error. */
2713
2714 static inline void
2715 d_print_error (struct d_print_info *dpi)
2716 {
2717 dpi->demangle_failure = 1;
2718 }
2719
2720 static inline int
2721 d_print_saw_error (struct d_print_info *dpi)
2722 {
2723 return dpi->demangle_failure != 0;
2724 }
2725
2726 /* Flush buffered characters to the callback. */
2727
2728 static inline void
2729 d_print_flush (struct d_print_info *dpi)
2730 {
2731 dpi->buf[dpi->len] = '\0';
2732 dpi->callback (dpi->buf, dpi->len, dpi->opaque);
2733 dpi->len = 0;
2734 }
2735
2736 /* Append characters and buffers for printing. */
2737
2738 static inline void
2739 d_append_char (struct d_print_info *dpi, char c)
2740 {
2741 if (dpi->len == sizeof (dpi->buf) - 1)
2742 d_print_flush (dpi);
2743
2744 dpi->buf[dpi->len++] = c;
2745 dpi->last_char = c;
2746 }
2747
2748 static inline void
2749 d_append_buffer (struct d_print_info *dpi, const char *s, size_t l)
2750 {
2751 size_t i;
2752
2753 for (i = 0; i < l; i++)
2754 d_append_char (dpi, s[i]);
2755 }
2756
2757 static inline void
2758 d_append_string (struct d_print_info *dpi, const char *s)
2759 {
2760 d_append_buffer (dpi, s, strlen (s));
2761 }
2762
2763 static inline char
2764 d_last_char (struct d_print_info *dpi)
2765 {
2766 return dpi->last_char;
2767 }
2768
2769 /* Turn components into a human readable string. OPTIONS is the
2770 options bits passed to the demangler. DC is the tree to print.
2771 CALLBACK is a function to call to flush demangled string segments
2772 as they fill the intermediate buffer, and OPAQUE is a generalized
2773 callback argument. On success, this returns 1. On failure,
2774 it returns 0, indicating a bad parse. It does not use heap
2775 memory to build an output string, so cannot encounter memory
2776 allocation failure. */
2777
2778 CP_STATIC_IF_GLIBCPP_V3
2779 int
2780 cplus_demangle_print_callback (int options,
2781 const struct demangle_component *dc,
2782 demangle_callbackref callback, void *opaque)
2783 {
2784 struct d_print_info dpi;
2785
2786 d_print_init (&dpi, options, callback, opaque);
2787
2788 d_print_comp (&dpi, dc);
2789
2790 d_print_flush (&dpi);
2791
2792 return ! d_print_saw_error (&dpi);
2793 }
2794
2795 /* Turn components into a human readable string. OPTIONS is the
2796 options bits passed to the demangler. DC is the tree to print.
2797 ESTIMATE is a guess at the length of the result. This returns a
2798 string allocated by malloc, or NULL on error. On success, this
2799 sets *PALC to the size of the allocated buffer. On failure, this
2800 sets *PALC to 0 for a bad parse, or to 1 for a memory allocation
2801 failure. */
2802
2803 CP_STATIC_IF_GLIBCPP_V3
2804 char *
2805 cplus_demangle_print (int options, const struct demangle_component *dc,
2806 int estimate, size_t *palc)
2807 {
2808 struct d_growable_string dgs;
2809
2810 d_growable_string_init (&dgs, estimate);
2811
2812 if (! cplus_demangle_print_callback (options, dc,
2813 d_growable_string_callback_adapter,
2814 &dgs))
2815 {
2816 free (dgs.buf);
2817 *palc = 0;
2818 return NULL;
2819 }
2820
2821 *palc = dgs.allocation_failure ? 1 : dgs.alc;
2822 return dgs.buf;
2823 }
2824
2825 /* Subroutine to handle components. */
2826
2827 static void
2828 d_print_comp (struct d_print_info *dpi,
2829 const struct demangle_component *dc)
2830 {
2831 if (dc == NULL)
2832 {
2833 d_print_error (dpi);
2834 return;
2835 }
2836 if (d_print_saw_error (dpi))
2837 return;
2838
2839 switch (dc->type)
2840 {
2841 case DEMANGLE_COMPONENT_NAME:
2842 if ((dpi->options & DMGL_JAVA) == 0)
2843 d_append_buffer (dpi, dc->u.s_name.s, dc->u.s_name.len);
2844 else
2845 d_print_java_identifier (dpi, dc->u.s_name.s, dc->u.s_name.len);
2846 return;
2847
2848 case DEMANGLE_COMPONENT_QUAL_NAME:
2849 case DEMANGLE_COMPONENT_LOCAL_NAME:
2850 d_print_comp (dpi, d_left (dc));
2851 if ((dpi->options & DMGL_JAVA) == 0)
2852 d_append_string (dpi, "::");
2853 else
2854 d_append_char (dpi, '.');
2855 d_print_comp (dpi, d_right (dc));
2856 return;
2857
2858 case DEMANGLE_COMPONENT_TYPED_NAME:
2859 {
2860 struct d_print_mod *hold_modifiers;
2861 struct demangle_component *typed_name;
2862 struct d_print_mod adpm[4];
2863 unsigned int i;
2864 struct d_print_template dpt;
2865
2866 /* Pass the name down to the type so that it can be printed in
2867 the right place for the type. We also have to pass down
2868 any CV-qualifiers, which apply to the this parameter. */
2869 hold_modifiers = dpi->modifiers;
2870 i = 0;
2871 typed_name = d_left (dc);
2872 while (typed_name != NULL)
2873 {
2874 if (i >= sizeof adpm / sizeof adpm[0])
2875 {
2876 d_print_error (dpi);
2877 return;
2878 }
2879
2880 adpm[i].next = dpi->modifiers;
2881 dpi->modifiers = &adpm[i];
2882 adpm[i].mod = typed_name;
2883 adpm[i].printed = 0;
2884 adpm[i].templates = dpi->templates;
2885 ++i;
2886
2887 if (typed_name->type != DEMANGLE_COMPONENT_RESTRICT_THIS
2888 && typed_name->type != DEMANGLE_COMPONENT_VOLATILE_THIS
2889 && typed_name->type != DEMANGLE_COMPONENT_CONST_THIS)
2890 break;
2891
2892 typed_name = d_left (typed_name);
2893 }
2894
2895 /* If typed_name is a template, then it applies to the
2896 function type as well. */
2897 if (typed_name->type == DEMANGLE_COMPONENT_TEMPLATE)
2898 {
2899 dpt.next = dpi->templates;
2900 dpi->templates = &dpt;
2901 dpt.template_decl = typed_name;
2902 }
2903
2904 /* If typed_name is a DEMANGLE_COMPONENT_LOCAL_NAME, then
2905 there may be CV-qualifiers on its right argument which
2906 really apply here; this happens when parsing a class which
2907 is local to a function. */
2908 if (typed_name->type == DEMANGLE_COMPONENT_LOCAL_NAME)
2909 {
2910 struct demangle_component *local_name;
2911
2912 local_name = d_right (typed_name);
2913 while (local_name->type == DEMANGLE_COMPONENT_RESTRICT_THIS
2914 || local_name->type == DEMANGLE_COMPONENT_VOLATILE_THIS
2915 || local_name->type == DEMANGLE_COMPONENT_CONST_THIS)
2916 {
2917 if (i >= sizeof adpm / sizeof adpm[0])
2918 {
2919 d_print_error (dpi);
2920 return;
2921 }
2922
2923 adpm[i] = adpm[i - 1];
2924 adpm[i].next = &adpm[i - 1];
2925 dpi->modifiers = &adpm[i];
2926
2927 adpm[i - 1].mod = local_name;
2928 adpm[i - 1].printed = 0;
2929 adpm[i - 1].templates = dpi->templates;
2930 ++i;
2931
2932 local_name = d_left (local_name);
2933 }
2934 }
2935
2936 d_print_comp (dpi, d_right (dc));
2937
2938 if (typed_name->type == DEMANGLE_COMPONENT_TEMPLATE)
2939 dpi->templates = dpt.next;
2940
2941 /* If the modifiers didn't get printed by the type, print them
2942 now. */
2943 while (i > 0)
2944 {
2945 --i;
2946 if (! adpm[i].printed)
2947 {
2948 d_append_char (dpi, ' ');
2949 d_print_mod (dpi, adpm[i].mod);
2950 }
2951 }
2952
2953 dpi->modifiers = hold_modifiers;
2954
2955 return;
2956 }
2957
2958 case DEMANGLE_COMPONENT_TEMPLATE:
2959 {
2960 struct d_print_mod *hold_dpm;
2961 struct demangle_component *dcl;
2962
2963 /* Don't push modifiers into a template definition. Doing so
2964 could give the wrong definition for a template argument.
2965 Instead, treat the template essentially as a name. */
2966
2967 hold_dpm = dpi->modifiers;
2968 dpi->modifiers = NULL;
2969
2970 dcl = d_left (dc);
2971
2972 if ((dpi->options & DMGL_JAVA) != 0
2973 && dcl->type == DEMANGLE_COMPONENT_NAME
2974 && dcl->u.s_name.len == 6
2975 && strncmp (dcl->u.s_name.s, "JArray", 6) == 0)
2976 {
2977 /* Special-case Java arrays, so that JArray<TYPE> appears
2978 instead as TYPE[]. */
2979
2980 d_print_comp (dpi, d_right (dc));
2981 d_append_string (dpi, "[]");
2982 }
2983 else
2984 {
2985 d_print_comp (dpi, dcl);
2986 if (d_last_char (dpi) == '<')
2987 d_append_char (dpi, ' ');
2988 d_append_char (dpi, '<');
2989 d_print_comp (dpi, d_right (dc));
2990 /* Avoid generating two consecutive '>' characters, to avoid
2991 the C++ syntactic ambiguity. */
2992 if (d_last_char (dpi) == '>')
2993 d_append_char (dpi, ' ');
2994 d_append_char (dpi, '>');
2995 }
2996
2997 dpi->modifiers = hold_dpm;
2998
2999 return;
3000 }
3001
3002 case DEMANGLE_COMPONENT_TEMPLATE_PARAM:
3003 {
3004 long i;
3005 struct demangle_component *a;
3006 struct d_print_template *hold_dpt;
3007
3008 if (dpi->templates == NULL)
3009 {
3010 d_print_error (dpi);
3011 return;
3012 }
3013 i = dc->u.s_number.number;
3014 for (a = d_right (dpi->templates->template_decl);
3015 a != NULL;
3016 a = d_right (a))
3017 {
3018 if (a->type != DEMANGLE_COMPONENT_TEMPLATE_ARGLIST)
3019 {
3020 d_print_error (dpi);
3021 return;
3022 }
3023 if (i <= 0)
3024 break;
3025 --i;
3026 }
3027 if (i != 0 || a == NULL)
3028 {
3029 d_print_error (dpi);
3030 return;
3031 }
3032
3033 /* While processing this parameter, we need to pop the list of
3034 templates. This is because the template parameter may
3035 itself be a reference to a parameter of an outer
3036 template. */
3037
3038 hold_dpt = dpi->templates;
3039 dpi->templates = hold_dpt->next;
3040
3041 d_print_comp (dpi, d_left (a));
3042
3043 dpi->templates = hold_dpt;
3044
3045 return;
3046 }
3047
3048 case DEMANGLE_COMPONENT_CTOR:
3049 d_print_comp (dpi, dc->u.s_ctor.name);
3050 return;
3051
3052 case DEMANGLE_COMPONENT_DTOR:
3053 d_append_char (dpi, '~');
3054 d_print_comp (dpi, dc->u.s_dtor.name);
3055 return;
3056
3057 case DEMANGLE_COMPONENT_VTABLE:
3058 d_append_string (dpi, "vtable for ");
3059 d_print_comp (dpi, d_left (dc));
3060 return;
3061
3062 case DEMANGLE_COMPONENT_VTT:
3063 d_append_string (dpi, "VTT for ");
3064 d_print_comp (dpi, d_left (dc));
3065 return;
3066
3067 case DEMANGLE_COMPONENT_CONSTRUCTION_VTABLE:
3068 d_append_string (dpi, "construction vtable for ");
3069 d_print_comp (dpi, d_left (dc));
3070 d_append_string (dpi, "-in-");
3071 d_print_comp (dpi, d_right (dc));
3072 return;
3073
3074 case DEMANGLE_COMPONENT_TYPEINFO:
3075 d_append_string (dpi, "typeinfo for ");
3076 d_print_comp (dpi, d_left (dc));
3077 return;
3078
3079 case DEMANGLE_COMPONENT_TYPEINFO_NAME:
3080 d_append_string (dpi, "typeinfo name for ");
3081 d_print_comp (dpi, d_left (dc));
3082 return;
3083
3084 case DEMANGLE_COMPONENT_TYPEINFO_FN:
3085 d_append_string (dpi, "typeinfo fn for ");
3086 d_print_comp (dpi, d_left (dc));
3087 return;
3088
3089 case DEMANGLE_COMPONENT_THUNK:
3090 d_append_string (dpi, "non-virtual thunk to ");
3091 d_print_comp (dpi, d_left (dc));
3092 return;
3093
3094 case DEMANGLE_COMPONENT_VIRTUAL_THUNK:
3095 d_append_string (dpi, "virtual thunk to ");
3096 d_print_comp (dpi, d_left (dc));
3097 return;
3098
3099 case DEMANGLE_COMPONENT_COVARIANT_THUNK:
3100 d_append_string (dpi, "covariant return thunk to ");
3101 d_print_comp (dpi, d_left (dc));
3102 return;
3103
3104 case DEMANGLE_COMPONENT_JAVA_CLASS:
3105 d_append_string (dpi, "java Class for ");
3106 d_print_comp (dpi, d_left (dc));
3107 return;
3108
3109 case DEMANGLE_COMPONENT_GUARD:
3110 d_append_string (dpi, "guard variable for ");
3111 d_print_comp (dpi, d_left (dc));
3112 return;
3113
3114 case DEMANGLE_COMPONENT_REFTEMP:
3115 d_append_string (dpi, "reference temporary for ");
3116 d_print_comp (dpi, d_left (dc));
3117 return;
3118
3119 case DEMANGLE_COMPONENT_HIDDEN_ALIAS:
3120 d_append_string (dpi, "hidden alias for ");
3121 d_print_comp (dpi, d_left (dc));
3122 return;
3123
3124 case DEMANGLE_COMPONENT_SUB_STD:
3125 d_append_buffer (dpi, dc->u.s_string.string, dc->u.s_string.len);
3126 return;
3127
3128 case DEMANGLE_COMPONENT_RESTRICT:
3129 case DEMANGLE_COMPONENT_VOLATILE:
3130 case DEMANGLE_COMPONENT_CONST:
3131 {
3132 struct d_print_mod *pdpm;
3133
3134 /* When printing arrays, it's possible to have cases where the
3135 same CV-qualifier gets pushed on the stack multiple times.
3136 We only need to print it once. */
3137
3138 for (pdpm = dpi->modifiers; pdpm != NULL; pdpm = pdpm->next)
3139 {
3140 if (! pdpm->printed)
3141 {
3142 if (pdpm->mod->type != DEMANGLE_COMPONENT_RESTRICT
3143 && pdpm->mod->type != DEMANGLE_COMPONENT_VOLATILE
3144 && pdpm->mod->type != DEMANGLE_COMPONENT_CONST)
3145 break;
3146 if (pdpm->mod->type == dc->type)
3147 {
3148 d_print_comp (dpi, d_left (dc));
3149 return;
3150 }
3151 }
3152 }
3153 }
3154 /* Fall through. */
3155 case DEMANGLE_COMPONENT_RESTRICT_THIS:
3156 case DEMANGLE_COMPONENT_VOLATILE_THIS:
3157 case DEMANGLE_COMPONENT_CONST_THIS:
3158 case DEMANGLE_COMPONENT_VENDOR_TYPE_QUAL:
3159 case DEMANGLE_COMPONENT_POINTER:
3160 case DEMANGLE_COMPONENT_REFERENCE:
3161 case DEMANGLE_COMPONENT_COMPLEX:
3162 case DEMANGLE_COMPONENT_IMAGINARY:
3163 {
3164 /* We keep a list of modifiers on the stack. */
3165 struct d_print_mod dpm;
3166
3167 dpm.next = dpi->modifiers;
3168 dpi->modifiers = &dpm;
3169 dpm.mod = dc;
3170 dpm.printed = 0;
3171 dpm.templates = dpi->templates;
3172
3173 d_print_comp (dpi, d_left (dc));
3174
3175 /* If the modifier didn't get printed by the type, print it
3176 now. */
3177 if (! dpm.printed)
3178 d_print_mod (dpi, dc);
3179
3180 dpi->modifiers = dpm.next;
3181
3182 return;
3183 }
3184
3185 case DEMANGLE_COMPONENT_BUILTIN_TYPE:
3186 if ((dpi->options & DMGL_JAVA) == 0)
3187 d_append_buffer (dpi, dc->u.s_builtin.type->name,
3188 dc->u.s_builtin.type->len);
3189 else
3190 d_append_buffer (dpi, dc->u.s_builtin.type->java_name,
3191 dc->u.s_builtin.type->java_len);
3192 return;
3193
3194 case DEMANGLE_COMPONENT_VENDOR_TYPE:
3195 d_print_comp (dpi, d_left (dc));
3196 return;
3197
3198 case DEMANGLE_COMPONENT_FUNCTION_TYPE:
3199 {
3200 if ((dpi->options & DMGL_RET_POSTFIX) != 0)
3201 d_print_function_type (dpi, dc, dpi->modifiers);
3202
3203 /* Print return type if present */
3204 if (d_left (dc) != NULL)
3205 {
3206 struct d_print_mod dpm;
3207
3208 /* We must pass this type down as a modifier in order to
3209 print it in the right location. */
3210 dpm.next = dpi->modifiers;
3211 dpi->modifiers = &dpm;
3212 dpm.mod = dc;
3213 dpm.printed = 0;
3214 dpm.templates = dpi->templates;
3215
3216 d_print_comp (dpi, d_left (dc));
3217
3218 dpi->modifiers = dpm.next;
3219
3220 if (dpm.printed)
3221 return;
3222
3223 /* In standard prefix notation, there is a space between the
3224 return type and the function signature. */
3225 if ((dpi->options & DMGL_RET_POSTFIX) == 0)
3226 d_append_char (dpi, ' ');
3227 }
3228
3229 if ((dpi->options & DMGL_RET_POSTFIX) == 0)
3230 d_print_function_type (dpi, dc, dpi->modifiers);
3231
3232 return;
3233 }
3234
3235 case DEMANGLE_COMPONENT_ARRAY_TYPE:
3236 {
3237 struct d_print_mod *hold_modifiers;
3238 struct d_print_mod adpm[4];
3239 unsigned int i;
3240 struct d_print_mod *pdpm;
3241
3242 /* We must pass this type down as a modifier in order to print
3243 multi-dimensional arrays correctly. If the array itself is
3244 CV-qualified, we act as though the element type were
3245 CV-qualified. We do this by copying the modifiers down
3246 rather than fiddling pointers, so that we don't wind up
3247 with a d_print_mod higher on the stack pointing into our
3248 stack frame after we return. */
3249
3250 hold_modifiers = dpi->modifiers;
3251
3252 adpm[0].next = hold_modifiers;
3253 dpi->modifiers = &adpm[0];
3254 adpm[0].mod = dc;
3255 adpm[0].printed = 0;
3256 adpm[0].templates = dpi->templates;
3257
3258 i = 1;
3259 pdpm = hold_modifiers;
3260 while (pdpm != NULL
3261 && (pdpm->mod->type == DEMANGLE_COMPONENT_RESTRICT
3262 || pdpm->mod->type == DEMANGLE_COMPONENT_VOLATILE
3263 || pdpm->mod->type == DEMANGLE_COMPONENT_CONST))
3264 {
3265 if (! pdpm->printed)
3266 {
3267 if (i >= sizeof adpm / sizeof adpm[0])
3268 {
3269 d_print_error (dpi);
3270 return;
3271 }
3272
3273 adpm[i] = *pdpm;
3274 adpm[i].next = dpi->modifiers;
3275 dpi->modifiers = &adpm[i];
3276 pdpm->printed = 1;
3277 ++i;
3278 }
3279
3280 pdpm = pdpm->next;
3281 }
3282
3283 d_print_comp (dpi, d_right (dc));
3284
3285 dpi->modifiers = hold_modifiers;
3286
3287 if (adpm[0].printed)
3288 return;
3289
3290 while (i > 1)
3291 {
3292 --i;
3293 d_print_mod (dpi, adpm[i].mod);
3294 }
3295
3296 d_print_array_type (dpi, dc, dpi->modifiers);
3297
3298 return;
3299 }
3300
3301 case DEMANGLE_COMPONENT_PTRMEM_TYPE:
3302 {
3303 struct d_print_mod dpm;
3304
3305 dpm.next = dpi->modifiers;
3306 dpi->modifiers = &dpm;
3307 dpm.mod = dc;
3308 dpm.printed = 0;
3309 dpm.templates = dpi->templates;
3310
3311 d_print_comp (dpi, d_right (dc));
3312
3313 /* If the modifier didn't get printed by the type, print it
3314 now. */
3315 if (! dpm.printed)
3316 {
3317 d_append_char (dpi, ' ');
3318 d_print_comp (dpi, d_left (dc));
3319 d_append_string (dpi, "::*");
3320 }
3321
3322 dpi->modifiers = dpm.next;
3323
3324 return;
3325 }
3326
3327 case DEMANGLE_COMPONENT_ARGLIST:
3328 case DEMANGLE_COMPONENT_TEMPLATE_ARGLIST:
3329 d_print_comp (dpi, d_left (dc));
3330 if (d_right (dc) != NULL)
3331 {
3332 d_append_string (dpi, ", ");
3333 d_print_comp (dpi, d_right (dc));
3334 }
3335 return;
3336
3337 case DEMANGLE_COMPONENT_OPERATOR:
3338 {
3339 char c;
3340
3341 d_append_string (dpi, "operator");
3342 c = dc->u.s_operator.op->name[0];
3343 if (IS_LOWER (c))
3344 d_append_char (dpi, ' ');
3345 d_append_buffer (dpi, dc->u.s_operator.op->name,
3346 dc->u.s_operator.op->len);
3347 return;
3348 }
3349
3350 case DEMANGLE_COMPONENT_EXTENDED_OPERATOR:
3351 d_append_string (dpi, "operator ");
3352 d_print_comp (dpi, dc->u.s_extended_operator.name);
3353 return;
3354
3355 case DEMANGLE_COMPONENT_CAST:
3356 d_append_string (dpi, "operator ");
3357 d_print_cast (dpi, dc);
3358 return;
3359
3360 case DEMANGLE_COMPONENT_UNARY:
3361 if (d_left (dc)->type != DEMANGLE_COMPONENT_CAST)
3362 d_print_expr_op (dpi, d_left (dc));
3363 else
3364 {
3365 d_append_char (dpi, '(');
3366 d_print_cast (dpi, d_left (dc));
3367 d_append_char (dpi, ')');
3368 }
3369 d_append_char (dpi, '(');
3370 d_print_comp (dpi, d_right (dc));
3371 d_append_char (dpi, ')');
3372 return;
3373
3374 case DEMANGLE_COMPONENT_BINARY:
3375 if (d_right (dc)->type != DEMANGLE_COMPONENT_BINARY_ARGS)
3376 {
3377 d_print_error (dpi);
3378 return;
3379 }
3380
3381 /* We wrap an expression which uses the greater-than operator in
3382 an extra layer of parens so that it does not get confused
3383 with the '>' which ends the template parameters. */
3384 if (d_left (dc)->type == DEMANGLE_COMPONENT_OPERATOR
3385 && d_left (dc)->u.s_operator.op->len == 1
3386 && d_left (dc)->u.s_operator.op->name[0] == '>')
3387 d_append_char (dpi, '(');
3388
3389 d_append_char (dpi, '(');
3390 d_print_comp (dpi, d_left (d_right (dc)));
3391 d_append_string (dpi, ") ");
3392 d_print_expr_op (dpi, d_left (dc));
3393 d_append_string (dpi, " (");
3394 d_print_comp (dpi, d_right (d_right (dc)));
3395 d_append_char (dpi, ')');
3396
3397 if (d_left (dc)->type == DEMANGLE_COMPONENT_OPERATOR
3398 && d_left (dc)->u.s_operator.op->len == 1
3399 && d_left (dc)->u.s_operator.op->name[0] == '>')
3400 d_append_char (dpi, ')');
3401
3402 return;
3403
3404 case DEMANGLE_COMPONENT_BINARY_ARGS:
3405 /* We should only see this as part of DEMANGLE_COMPONENT_BINARY. */
3406 d_print_error (dpi);
3407 return;
3408
3409 case DEMANGLE_COMPONENT_TRINARY:
3410 if (d_right (dc)->type != DEMANGLE_COMPONENT_TRINARY_ARG1
3411 || d_right (d_right (dc))->type != DEMANGLE_COMPONENT_TRINARY_ARG2)
3412 {
3413 d_print_error (dpi);
3414 return;
3415 }
3416 d_append_char (dpi, '(');
3417 d_print_comp (dpi, d_left (d_right (dc)));
3418 d_append_string (dpi, ") ");
3419 d_print_expr_op (dpi, d_left (dc));
3420 d_append_string (dpi, " (");
3421 d_print_comp (dpi, d_left (d_right (d_right (dc))));
3422 d_append_string (dpi, ") : (");
3423 d_print_comp (dpi, d_right (d_right (d_right (dc))));
3424 d_append_char (dpi, ')');
3425 return;
3426
3427 case DEMANGLE_COMPONENT_TRINARY_ARG1:
3428 case DEMANGLE_COMPONENT_TRINARY_ARG2:
3429 /* We should only see these are part of DEMANGLE_COMPONENT_TRINARY. */
3430 d_print_error (dpi);
3431 return;
3432
3433 case DEMANGLE_COMPONENT_LITERAL:
3434 case DEMANGLE_COMPONENT_LITERAL_NEG:
3435 {
3436 enum d_builtin_type_print tp;
3437
3438 /* For some builtin types, produce simpler output. */
3439 tp = D_PRINT_DEFAULT;
3440 if (d_left (dc)->type == DEMANGLE_COMPONENT_BUILTIN_TYPE)
3441 {
3442 tp = d_left (dc)->u.s_builtin.type->print;
3443 switch (tp)
3444 {
3445 case D_PRINT_INT:
3446 case D_PRINT_UNSIGNED:
3447 case D_PRINT_LONG:
3448 case D_PRINT_UNSIGNED_LONG:
3449 case D_PRINT_LONG_LONG:
3450 case D_PRINT_UNSIGNED_LONG_LONG:
3451 if (d_right (dc)->type == DEMANGLE_COMPONENT_NAME)
3452 {
3453 if (dc->type == DEMANGLE_COMPONENT_LITERAL_NEG)
3454 d_append_char (dpi, '-');
3455 d_print_comp (dpi, d_right (dc));
3456 switch (tp)
3457 {
3458 default:
3459 break;
3460 case D_PRINT_UNSIGNED:
3461 d_append_char (dpi, 'u');
3462 break;
3463 case D_PRINT_LONG:
3464 d_append_char (dpi, 'l');
3465 break;
3466 case D_PRINT_UNSIGNED_LONG:
3467 d_append_string (dpi, "ul");
3468 break;
3469 case D_PRINT_LONG_LONG:
3470 d_append_string (dpi, "ll");
3471 break;
3472 case D_PRINT_UNSIGNED_LONG_LONG:
3473 d_append_string (dpi, "ull");
3474 break;
3475 }
3476 return;
3477 }
3478 break;
3479
3480 case D_PRINT_BOOL:
3481 if (d_right (dc)->type == DEMANGLE_COMPONENT_NAME
3482 && d_right (dc)->u.s_name.len == 1
3483 && dc->type == DEMANGLE_COMPONENT_LITERAL)
3484 {
3485 switch (d_right (dc)->u.s_name.s[0])
3486 {
3487 case '0':
3488 d_append_string (dpi, "false");
3489 return;
3490 case '1':
3491 d_append_string (dpi, "true");
3492 return;
3493 default:
3494 break;
3495 }
3496 }
3497 break;
3498
3499 default:
3500 break;
3501 }
3502 }
3503
3504 d_append_char (dpi, '(');
3505 d_print_comp (dpi, d_left (dc));
3506 d_append_char (dpi, ')');
3507 if (dc->type == DEMANGLE_COMPONENT_LITERAL_NEG)
3508 d_append_char (dpi, '-');
3509 if (tp == D_PRINT_FLOAT)
3510 d_append_char (dpi, '[');
3511 d_print_comp (dpi, d_right (dc));
3512 if (tp == D_PRINT_FLOAT)
3513 d_append_char (dpi, ']');
3514 }
3515 return;
3516
3517 default:
3518 d_print_error (dpi);
3519 return;
3520 }
3521 }
3522
3523 /* Print a Java dentifier. For Java we try to handle encoded extended
3524 Unicode characters. The C++ ABI doesn't mention Unicode encoding,
3525 so we don't it for C++. Characters are encoded as
3526 __U<hex-char>+_. */
3527
3528 static void
3529 d_print_java_identifier (struct d_print_info *dpi, const char *name, int len)
3530 {
3531 const char *p;
3532 const char *end;
3533
3534 end = name + len;
3535 for (p = name; p < end; ++p)
3536 {
3537 if (end - p > 3
3538 && p[0] == '_'
3539 && p[1] == '_'
3540 && p[2] == 'U')
3541 {
3542 unsigned long c;
3543 const char *q;
3544
3545 c = 0;
3546 for (q = p + 3; q < end; ++q)
3547 {
3548 int dig;
3549
3550 if (IS_DIGIT (*q))
3551 dig = *q - '0';
3552 else if (*q >= 'A' && *q <= 'F')
3553 dig = *q - 'A' + 10;
3554 else if (*q >= 'a' && *q <= 'f')
3555 dig = *q - 'a' + 10;
3556 else
3557 break;
3558
3559 c = c * 16 + dig;
3560 }
3561 /* If the Unicode character is larger than 256, we don't try
3562 to deal with it here. FIXME. */
3563 if (q < end && *q == '_' && c < 256)
3564 {
3565 d_append_char (dpi, c);
3566 p = q;
3567 continue;
3568 }
3569 }
3570
3571 d_append_char (dpi, *p);
3572 }
3573 }
3574
3575 /* Print a list of modifiers. SUFFIX is 1 if we are printing
3576 qualifiers on this after printing a function. */
3577
3578 static void
3579 d_print_mod_list (struct d_print_info *dpi,
3580 struct d_print_mod *mods, int suffix)
3581 {
3582 struct d_print_template *hold_dpt;
3583
3584 if (mods == NULL || d_print_saw_error (dpi))
3585 return;
3586
3587 if (mods->printed
3588 || (! suffix
3589 && (mods->mod->type == DEMANGLE_COMPONENT_RESTRICT_THIS
3590 || mods->mod->type == DEMANGLE_COMPONENT_VOLATILE_THIS
3591 || mods->mod->type == DEMANGLE_COMPONENT_CONST_THIS)))
3592 {
3593 d_print_mod_list (dpi, mods->next, suffix);
3594 return;
3595 }
3596
3597 mods->printed = 1;
3598
3599 hold_dpt = dpi->templates;
3600 dpi->templates = mods->templates;
3601
3602 if (mods->mod->type == DEMANGLE_COMPONENT_FUNCTION_TYPE)
3603 {
3604 d_print_function_type (dpi, mods->mod, mods->next);
3605 dpi->templates = hold_dpt;
3606 return;
3607 }
3608 else if (mods->mod->type == DEMANGLE_COMPONENT_ARRAY_TYPE)
3609 {
3610 d_print_array_type (dpi, mods->mod, mods->next);
3611 dpi->templates = hold_dpt;
3612 return;
3613 }
3614 else if (mods->mod->type == DEMANGLE_COMPONENT_LOCAL_NAME)
3615 {
3616 struct d_print_mod *hold_modifiers;
3617 struct demangle_component *dc;
3618
3619 /* When this is on the modifier stack, we have pulled any
3620 qualifiers off the right argument already. Otherwise, we
3621 print it as usual, but don't let the left argument see any
3622 modifiers. */
3623
3624 hold_modifiers = dpi->modifiers;
3625 dpi->modifiers = NULL;
3626 d_print_comp (dpi, d_left (mods->mod));
3627 dpi->modifiers = hold_modifiers;
3628
3629 if ((dpi->options & DMGL_JAVA) == 0)
3630 d_append_string (dpi, "::");
3631 else
3632 d_append_char (dpi, '.');
3633
3634 dc = d_right (mods->mod);
3635 while (dc->type == DEMANGLE_COMPONENT_RESTRICT_THIS
3636 || dc->type == DEMANGLE_COMPONENT_VOLATILE_THIS
3637 || dc->type == DEMANGLE_COMPONENT_CONST_THIS)
3638 dc = d_left (dc);
3639
3640 d_print_comp (dpi, dc);
3641
3642 dpi->templates = hold_dpt;
3643 return;
3644 }
3645
3646 d_print_mod (dpi, mods->mod);
3647
3648 dpi->templates = hold_dpt;
3649
3650 d_print_mod_list (dpi, mods->next, suffix);
3651 }
3652
3653 /* Print a modifier. */
3654
3655 static void
3656 d_print_mod (struct d_print_info *dpi,
3657 const struct demangle_component *mod)
3658 {
3659 switch (mod->type)
3660 {
3661 case DEMANGLE_COMPONENT_RESTRICT:
3662 case DEMANGLE_COMPONENT_RESTRICT_THIS:
3663 d_append_string (dpi, " restrict");
3664 return;
3665 case DEMANGLE_COMPONENT_VOLATILE:
3666 case DEMANGLE_COMPONENT_VOLATILE_THIS:
3667 d_append_string (dpi, " volatile");
3668 return;
3669 case DEMANGLE_COMPONENT_CONST:
3670 case DEMANGLE_COMPONENT_CONST_THIS:
3671 d_append_string (dpi, " const");
3672 return;
3673 case DEMANGLE_COMPONENT_VENDOR_TYPE_QUAL:
3674 d_append_char (dpi, ' ');
3675 d_print_comp (dpi, d_right (mod));
3676 return;
3677 case DEMANGLE_COMPONENT_POINTER:
3678 /* There is no pointer symbol in Java. */
3679 if ((dpi->options & DMGL_JAVA) == 0)
3680 d_append_char (dpi, '*');
3681 return;
3682 case DEMANGLE_COMPONENT_REFERENCE:
3683 d_append_char (dpi, '&');
3684 return;
3685 case DEMANGLE_COMPONENT_COMPLEX:
3686 d_append_string (dpi, "complex ");
3687 return;
3688 case DEMANGLE_COMPONENT_IMAGINARY:
3689 d_append_string (dpi, "imaginary ");
3690 return;
3691 case DEMANGLE_COMPONENT_PTRMEM_TYPE:
3692 if (d_last_char (dpi) != '(')
3693 d_append_char (dpi, ' ');
3694 d_print_comp (dpi, d_left (mod));
3695 d_append_string (dpi, "::*");
3696 return;
3697 case DEMANGLE_COMPONENT_TYPED_NAME:
3698 d_print_comp (dpi, d_left (mod));
3699 return;
3700 default:
3701 /* Otherwise, we have something that won't go back on the
3702 modifier stack, so we can just print it. */
3703 d_print_comp (dpi, mod);
3704 return;
3705 }
3706 }
3707
3708 /* Print a function type, except for the return type. */
3709
3710 static void
3711 d_print_function_type (struct d_print_info *dpi,
3712 const struct demangle_component *dc,
3713 struct d_print_mod *mods)
3714 {
3715 int need_paren;
3716 int saw_mod;
3717 int need_space;
3718 struct d_print_mod *p;
3719 struct d_print_mod *hold_modifiers;
3720
3721 need_paren = 0;
3722 saw_mod = 0;
3723 need_space = 0;
3724 for (p = mods; p != NULL; p = p->next)
3725 {
3726 if (p->printed)
3727 break;
3728
3729 saw_mod = 1;
3730 switch (p->mod->type)
3731 {
3732 case DEMANGLE_COMPONENT_POINTER:
3733 case DEMANGLE_COMPONENT_REFERENCE:
3734 need_paren = 1;
3735 break;
3736 case DEMANGLE_COMPONENT_RESTRICT:
3737 case DEMANGLE_COMPONENT_VOLATILE:
3738 case DEMANGLE_COMPONENT_CONST:
3739 case DEMANGLE_COMPONENT_VENDOR_TYPE_QUAL:
3740 case DEMANGLE_COMPONENT_COMPLEX:
3741 case DEMANGLE_COMPONENT_IMAGINARY:
3742 case DEMANGLE_COMPONENT_PTRMEM_TYPE:
3743 need_space = 1;
3744 need_paren = 1;
3745 break;
3746 case DEMANGLE_COMPONENT_RESTRICT_THIS:
3747 case DEMANGLE_COMPONENT_VOLATILE_THIS:
3748 case DEMANGLE_COMPONENT_CONST_THIS:
3749 break;
3750 default:
3751 break;
3752 }
3753 if (need_paren)
3754 break;
3755 }
3756
3757 if (d_left (dc) != NULL && ! saw_mod)
3758 need_paren = 1;
3759
3760 if (need_paren)
3761 {
3762 if (! need_space)
3763 {
3764 if (d_last_char (dpi) != '('
3765 && d_last_char (dpi) != '*')
3766 need_space = 1;
3767 }
3768 if (need_space && d_last_char (dpi) != ' ')
3769 d_append_char (dpi, ' ');
3770 d_append_char (dpi, '(');
3771 }
3772
3773 hold_modifiers = dpi->modifiers;
3774 dpi->modifiers = NULL;
3775
3776 d_print_mod_list (dpi, mods, 0);
3777
3778 if (need_paren)
3779 d_append_char (dpi, ')');
3780
3781 d_append_char (dpi, '(');
3782
3783 if (d_right (dc) != NULL)
3784 d_print_comp (dpi, d_right (dc));
3785
3786 d_append_char (dpi, ')');
3787
3788 d_print_mod_list (dpi, mods, 1);
3789
3790 dpi->modifiers = hold_modifiers;
3791 }
3792
3793 /* Print an array type, except for the element type. */
3794
3795 static void
3796 d_print_array_type (struct d_print_info *dpi,
3797 const struct demangle_component *dc,
3798 struct d_print_mod *mods)
3799 {
3800 int need_space;
3801
3802 need_space = 1;
3803 if (mods != NULL)
3804 {
3805 int need_paren;
3806 struct d_print_mod *p;
3807
3808 need_paren = 0;
3809 for (p = mods; p != NULL; p = p->next)
3810 {
3811 if (! p->printed)
3812 {
3813 if (p->mod->type == DEMANGLE_COMPONENT_ARRAY_TYPE)
3814 {
3815 need_space = 0;
3816 break;
3817 }
3818 else
3819 {
3820 need_paren = 1;
3821 need_space = 1;
3822 break;
3823 }
3824 }
3825 }
3826
3827 if (need_paren)
3828 d_append_string (dpi, " (");
3829
3830 d_print_mod_list (dpi, mods, 0);
3831
3832 if (need_paren)
3833 d_append_char (dpi, ')');
3834 }
3835
3836 if (need_space)
3837 d_append_char (dpi, ' ');
3838
3839 d_append_char (dpi, '[');
3840
3841 if (d_left (dc) != NULL)
3842 d_print_comp (dpi, d_left (dc));
3843
3844 d_append_char (dpi, ']');
3845 }
3846
3847 /* Print an operator in an expression. */
3848
3849 static void
3850 d_print_expr_op (struct d_print_info *dpi,
3851 const struct demangle_component *dc)
3852 {
3853 if (dc->type == DEMANGLE_COMPONENT_OPERATOR)
3854 d_append_buffer (dpi, dc->u.s_operator.op->name,
3855 dc->u.s_operator.op->len);
3856 else
3857 d_print_comp (dpi, dc);
3858 }
3859
3860 /* Print a cast. */
3861
3862 static void
3863 d_print_cast (struct d_print_info *dpi,
3864 const struct demangle_component *dc)
3865 {
3866 if (d_left (dc)->type != DEMANGLE_COMPONENT_TEMPLATE)
3867 d_print_comp (dpi, d_left (dc));
3868 else
3869 {
3870 struct d_print_mod *hold_dpm;
3871 struct d_print_template dpt;
3872
3873 /* It appears that for a templated cast operator, we need to put
3874 the template parameters in scope for the operator name, but
3875 not for the parameters. The effect is that we need to handle
3876 the template printing here. */
3877
3878 hold_dpm = dpi->modifiers;
3879 dpi->modifiers = NULL;
3880
3881 dpt.next = dpi->templates;
3882 dpi->templates = &dpt;
3883 dpt.template_decl = d_left (dc);
3884
3885 d_print_comp (dpi, d_left (d_left (dc)));
3886
3887 dpi->templates = dpt.next;
3888
3889 if (d_last_char (dpi) == '<')
3890 d_append_char (dpi, ' ');
3891 d_append_char (dpi, '<');
3892 d_print_comp (dpi, d_right (d_left (dc)));
3893 /* Avoid generating two consecutive '>' characters, to avoid
3894 the C++ syntactic ambiguity. */
3895 if (d_last_char (dpi) == '>')
3896 d_append_char (dpi, ' ');
3897 d_append_char (dpi, '>');
3898
3899 dpi->modifiers = hold_dpm;
3900 }
3901 }
3902
3903 /* Initialize the information structure we use to pass around
3904 information. */
3905
3906 CP_STATIC_IF_GLIBCPP_V3
3907 void
3908 cplus_demangle_init_info (const char *mangled, int options, size_t len,
3909 struct d_info *di)
3910 {
3911 di->s = mangled;
3912 di->send = mangled + len;
3913 di->options = options;
3914
3915 di->n = mangled;
3916
3917 /* We can not need more components than twice the number of chars in
3918 the mangled string. Most components correspond directly to
3919 chars, but the ARGLIST types are exceptions. */
3920 di->num_comps = 2 * len;
3921 di->next_comp = 0;
3922
3923 /* Similarly, we can not need more substitutions than there are
3924 chars in the mangled string. */
3925 di->num_subs = len;
3926 di->next_sub = 0;
3927 di->did_subs = 0;
3928
3929 di->last_name = NULL;
3930
3931 di->expansion = 0;
3932 }
3933
3934 /* Internal implementation for the demangler. If MANGLED is a g++ v3 ABI
3935 mangled name, return strings in repeated callback giving the demangled
3936 name. OPTIONS is the usual libiberty demangler options. On success,
3937 this returns 1. On failure, returns 0. */
3938
3939 static int
3940 d_demangle_callback (const char *mangled, int options,
3941 demangle_callbackref callback, void *opaque)
3942 {
3943 int type;
3944 struct d_info di;
3945 struct demangle_component *dc;
3946 int status;
3947
3948 if (mangled[0] == '_' && mangled[1] == 'Z')
3949 type = 0;
3950 else if (strncmp (mangled, "_GLOBAL_", 8) == 0
3951 && (mangled[8] == '.' || mangled[8] == '_' || mangled[8] == '$')
3952 && (mangled[9] == 'D' || mangled[9] == 'I')
3953 && mangled[10] == '_')
3954 {
3955 const char *intro;
3956
3957 intro = (mangled[9] == 'I')
3958 ? "global constructors keyed to "
3959 : "global destructors keyed to ";
3960
3961 callback (intro, strlen (intro), opaque);
3962 callback (mangled + 11, strlen (mangled + 11), opaque);
3963 return 1;
3964 }
3965 else
3966 {
3967 if ((options & DMGL_TYPES) == 0)
3968 return 0;
3969 type = 1;
3970 }
3971
3972 cplus_demangle_init_info (mangled, options, strlen (mangled), &di);
3973
3974 {
3975 #ifdef CP_DYNAMIC_ARRAYS
3976 __extension__ struct demangle_component comps[di.num_comps];
3977 __extension__ struct demangle_component *subs[di.num_subs];
3978
3979 di.comps = comps;
3980 di.subs = subs;
3981 #else
3982 di.comps = alloca (di.num_comps * sizeof (*di.comps));
3983 di.subs = alloca (di.num_subs * sizeof (*di.subs));
3984 #endif
3985
3986 if (type)
3987 dc = cplus_demangle_type (&di);
3988 else
3989 dc = cplus_demangle_mangled_name (&di, 1);
3990
3991 /* If DMGL_PARAMS is set, then if we didn't consume the entire
3992 mangled string, then we didn't successfully demangle it. If
3993 DMGL_PARAMS is not set, we didn't look at the trailing
3994 parameters. */
3995 if (((options & DMGL_PARAMS) != 0) && d_peek_char (&di) != '\0')
3996 dc = NULL;
3997
3998 #ifdef CP_DEMANGLE_DEBUG
3999 d_dump (dc, 0);
4000 #endif
4001
4002 status = (dc != NULL)
4003 ? cplus_demangle_print_callback (options, dc, callback, opaque)
4004 : 0;
4005 }
4006
4007 return status;
4008 }
4009
4010 /* Entry point for the demangler. If MANGLED is a g++ v3 ABI mangled
4011 name, return a buffer allocated with malloc holding the demangled
4012 name. OPTIONS is the usual libiberty demangler options. On
4013 success, this sets *PALC to the allocated size of the returned
4014 buffer. On failure, this sets *PALC to 0 for a bad name, or 1 for
4015 a memory allocation failure, and returns NULL. */
4016
4017 static char *
4018 d_demangle (const char *mangled, int options, size_t *palc)
4019 {
4020 struct d_growable_string dgs;
4021 int status;
4022
4023 d_growable_string_init (&dgs, 0);
4024
4025 status = d_demangle_callback (mangled, options,
4026 d_growable_string_callback_adapter, &dgs);
4027 if (status == 0)
4028 {
4029 free (dgs.buf);
4030 *palc = 0;
4031 return NULL;
4032 }
4033
4034 *palc = dgs.allocation_failure ? 1 : 0;
4035 return dgs.buf;
4036 }
4037
4038 #if defined(IN_LIBGCC2) || defined(IN_GLIBCPP_V3)
4039
4040 extern char *__cxa_demangle (const char *, char *, size_t *, int *);
4041
4042 /* ia64 ABI-mandated entry point in the C++ runtime library for
4043 performing demangling. MANGLED_NAME is a NUL-terminated character
4044 string containing the name to be demangled.
4045
4046 OUTPUT_BUFFER is a region of memory, allocated with malloc, of
4047 *LENGTH bytes, into which the demangled name is stored. If
4048 OUTPUT_BUFFER is not long enough, it is expanded using realloc.
4049 OUTPUT_BUFFER may instead be NULL; in that case, the demangled name
4050 is placed in a region of memory allocated with malloc.
4051
4052 If LENGTH is non-NULL, the length of the buffer containing the
4053 demangled name, is placed in *LENGTH.
4054
4055 The return value is a pointer to the start of the NUL-terminated
4056 demangled name, or NULL if the demangling fails. The caller is
4057 responsible for deallocating this memory using free.
4058
4059 *STATUS is set to one of the following values:
4060 0: The demangling operation succeeded.
4061 -1: A memory allocation failure occurred.
4062 -2: MANGLED_NAME is not a valid name under the C++ ABI mangling rules.
4063 -3: One of the arguments is invalid.
4064
4065 The demangling is performed using the C++ ABI mangling rules, with
4066 GNU extensions. */
4067
4068 char *
4069 __cxa_demangle (const char *mangled_name, char *output_buffer,
4070 size_t *length, int *status)
4071 {
4072 char *demangled;
4073 size_t alc;
4074
4075 if (mangled_name == NULL)
4076 {
4077 if (status != NULL)
4078 *status = -3;
4079 return NULL;
4080 }
4081
4082 if (output_buffer != NULL && length == NULL)
4083 {
4084 if (status != NULL)
4085 *status = -3;
4086 return NULL;
4087 }
4088
4089 demangled = d_demangle (mangled_name, DMGL_PARAMS | DMGL_TYPES, &alc);
4090
4091 if (demangled == NULL)
4092 {
4093 if (status != NULL)
4094 {
4095 if (alc == 1)
4096 *status = -1;
4097 else
4098 *status = -2;
4099 }
4100 return NULL;
4101 }
4102
4103 if (output_buffer == NULL)
4104 {
4105 if (length != NULL)
4106 *length = alc;
4107 }
4108 else
4109 {
4110 if (strlen (demangled) < *length)
4111 {
4112 strcpy (output_buffer, demangled);
4113 free (demangled);
4114 demangled = output_buffer;
4115 }
4116 else
4117 {
4118 free (output_buffer);
4119 *length = alc;
4120 }
4121 }
4122
4123 if (status != NULL)
4124 *status = 0;
4125
4126 return demangled;
4127 }
4128
4129 extern int __gcclibcxx_demangle_callback (const char *,
4130 void (*)
4131 (const char *, size_t, void *),
4132 void *);
4133
4134 /* Alternative, allocationless entry point in the C++ runtime library
4135 for performing demangling. MANGLED_NAME is a NUL-terminated character
4136 string containing the name to be demangled.
4137
4138 CALLBACK is a callback function, called with demangled string
4139 segments as demangling progresses; it is called at least once,
4140 but may be called more than once. OPAQUE is a generalized pointer
4141 used as a callback argument.
4142
4143 The return code is one of the following values, equivalent to
4144 the STATUS values of __cxa_demangle() (excluding -1, since this
4145 function performs no memory allocations):
4146 0: The demangling operation succeeded.
4147 -2: MANGLED_NAME is not a valid name under the C++ ABI mangling rules.
4148 -3: One of the arguments is invalid.
4149
4150 The demangling is performed using the C++ ABI mangling rules, with
4151 GNU extensions. */
4152
4153 int
4154 __gcclibcxx_demangle_callback (const char *mangled_name,
4155 void (*callback) (const char *, size_t, void *),
4156 void *opaque)
4157 {
4158 int status;
4159
4160 if (mangled_name == NULL || callback == NULL)
4161 return -3;
4162
4163 status = d_demangle_callback (mangled_name, DMGL_PARAMS | DMGL_TYPES,
4164 callback, opaque);
4165 if (status == 0)
4166 return -2;
4167
4168 return 0;
4169 }
4170
4171 #else /* ! (IN_LIBGCC2 || IN_GLIBCPP_V3) */
4172
4173 /* Entry point for libiberty demangler. If MANGLED is a g++ v3 ABI
4174 mangled name, return a buffer allocated with malloc holding the
4175 demangled name. Otherwise, return NULL. */
4176
4177 char *
4178 cplus_demangle_v3 (const char *mangled, int options)
4179 {
4180 size_t alc;
4181
4182 return d_demangle (mangled, options, &alc);
4183 }
4184
4185 int
4186 cplus_demangle_v3_callback (const char *mangled, int options,
4187 demangle_callbackref callback, void *opaque)
4188 {
4189 return d_demangle_callback (mangled, options, callback, opaque);
4190 }
4191
4192 /* Demangle a Java symbol. Java uses a subset of the V3 ABI C++ mangling
4193 conventions, but the output formatting is a little different.
4194 This instructs the C++ demangler not to emit pointer characters ("*"), to
4195 use Java's namespace separator symbol ("." instead of "::"), and to output
4196 JArray<TYPE> as TYPE[]. */
4197
4198 char *
4199 java_demangle_v3 (const char *mangled)
4200 {
4201 size_t alc;
4202
4203 return d_demangle (mangled, DMGL_JAVA | DMGL_PARAMS | DMGL_RET_POSTFIX, &alc);
4204 }
4205
4206 int
4207 java_demangle_v3_callback (const char *mangled,
4208 demangle_callbackref callback, void *opaque)
4209 {
4210 return d_demangle_callback (mangled,
4211 DMGL_JAVA | DMGL_PARAMS | DMGL_RET_POSTFIX,
4212 callback, opaque);
4213 }
4214
4215 #endif /* IN_LIBGCC2 || IN_GLIBCPP_V3 */
4216
4217 #ifndef IN_GLIBCPP_V3
4218
4219 /* Demangle a string in order to find out whether it is a constructor
4220 or destructor. Return non-zero on success. Set *CTOR_KIND and
4221 *DTOR_KIND appropriately. */
4222
4223 static int
4224 is_ctor_or_dtor (const char *mangled,
4225 enum gnu_v3_ctor_kinds *ctor_kind,
4226 enum gnu_v3_dtor_kinds *dtor_kind)
4227 {
4228 struct d_info di;
4229 struct demangle_component *dc;
4230 int ret;
4231
4232 *ctor_kind = (enum gnu_v3_ctor_kinds) 0;
4233 *dtor_kind = (enum gnu_v3_dtor_kinds) 0;
4234
4235 cplus_demangle_init_info (mangled, DMGL_GNU_V3, strlen (mangled), &di);
4236
4237 {
4238 #ifdef CP_DYNAMIC_ARRAYS
4239 __extension__ struct demangle_component comps[di.num_comps];
4240 __extension__ struct demangle_component *subs[di.num_subs];
4241
4242 di.comps = comps;
4243 di.subs = subs;
4244 #else
4245 di.comps = alloca (di.num_comps * sizeof (*di.comps));
4246 di.subs = alloca (di.num_subs * sizeof (*di.subs));
4247 #endif
4248
4249 dc = cplus_demangle_mangled_name (&di, 1);
4250
4251 /* Note that because we did not pass DMGL_PARAMS, we don't expect
4252 to demangle the entire string. */
4253
4254 ret = 0;
4255 while (dc != NULL)
4256 {
4257 switch (dc->type)
4258 {
4259 default:
4260 dc = NULL;
4261 break;
4262 case DEMANGLE_COMPONENT_TYPED_NAME:
4263 case DEMANGLE_COMPONENT_TEMPLATE:
4264 case DEMANGLE_COMPONENT_RESTRICT_THIS:
4265 case DEMANGLE_COMPONENT_VOLATILE_THIS:
4266 case DEMANGLE_COMPONENT_CONST_THIS:
4267 dc = d_left (dc);
4268 break;
4269 case DEMANGLE_COMPONENT_QUAL_NAME:
4270 case DEMANGLE_COMPONENT_LOCAL_NAME:
4271 dc = d_right (dc);
4272 break;
4273 case DEMANGLE_COMPONENT_CTOR:
4274 *ctor_kind = dc->u.s_ctor.kind;
4275 ret = 1;
4276 dc = NULL;
4277 break;
4278 case DEMANGLE_COMPONENT_DTOR:
4279 *dtor_kind = dc->u.s_dtor.kind;
4280 ret = 1;
4281 dc = NULL;
4282 break;
4283 }
4284 }
4285 }
4286
4287 return ret;
4288 }
4289
4290 /* Return whether NAME is the mangled form of a g++ V3 ABI constructor
4291 name. A non-zero return indicates the type of constructor. */
4292
4293 enum gnu_v3_ctor_kinds
4294 is_gnu_v3_mangled_ctor (const char *name)
4295 {
4296 enum gnu_v3_ctor_kinds ctor_kind;
4297 enum gnu_v3_dtor_kinds dtor_kind;
4298
4299 if (! is_ctor_or_dtor (name, &ctor_kind, &dtor_kind))
4300 return (enum gnu_v3_ctor_kinds) 0;
4301 return ctor_kind;
4302 }
4303
4304
4305 /* Return whether NAME is the mangled form of a g++ V3 ABI destructor
4306 name. A non-zero return indicates the type of destructor. */
4307
4308 enum gnu_v3_dtor_kinds
4309 is_gnu_v3_mangled_dtor (const char *name)
4310 {
4311 enum gnu_v3_ctor_kinds ctor_kind;
4312 enum gnu_v3_dtor_kinds dtor_kind;
4313
4314 if (! is_ctor_or_dtor (name, &ctor_kind, &dtor_kind))
4315 return (enum gnu_v3_dtor_kinds) 0;
4316 return dtor_kind;
4317 }
4318
4319 #endif /* IN_GLIBCPP_V3 */
4320
4321 #ifdef STANDALONE_DEMANGLER
4322
4323 #include "getopt.h"
4324 #include "dyn-string.h"
4325
4326 static void print_usage (FILE* fp, int exit_value);
4327
4328 #define IS_ALPHA(CHAR) \
4329 (((CHAR) >= 'a' && (CHAR) <= 'z') \
4330 || ((CHAR) >= 'A' && (CHAR) <= 'Z'))
4331
4332 /* Non-zero if CHAR is a character than can occur in a mangled name. */
4333 #define is_mangled_char(CHAR) \
4334 (IS_ALPHA (CHAR) || IS_DIGIT (CHAR) \
4335 || (CHAR) == '_' || (CHAR) == '.' || (CHAR) == '$')
4336
4337 /* The name of this program, as invoked. */
4338 const char* program_name;
4339
4340 /* Prints usage summary to FP and then exits with EXIT_VALUE. */
4341
4342 static void
4343 print_usage (FILE* fp, int exit_value)
4344 {
4345 fprintf (fp, "Usage: %s [options] [names ...]\n", program_name);
4346 fprintf (fp, "Options:\n");
4347 fprintf (fp, " -h,--help Display this message.\n");
4348 fprintf (fp, " -p,--no-params Don't display function parameters\n");
4349 fprintf (fp, " -v,--verbose Produce verbose demanglings.\n");
4350 fprintf (fp, "If names are provided, they are demangled. Otherwise filters standard input.\n");
4351
4352 exit (exit_value);
4353 }
4354
4355 /* Option specification for getopt_long. */
4356 static const struct option long_options[] =
4357 {
4358 { "help", no_argument, NULL, 'h' },
4359 { "no-params", no_argument, NULL, 'p' },
4360 { "verbose", no_argument, NULL, 'v' },
4361 { NULL, no_argument, NULL, 0 },
4362 };
4363
4364 /* Main entry for a demangling filter executable. It will demangle
4365 its command line arguments, if any. If none are provided, it will
4366 filter stdin to stdout, replacing any recognized mangled C++ names
4367 with their demangled equivalents. */
4368
4369 int
4370 main (int argc, char *argv[])
4371 {
4372 int i;
4373 int opt_char;
4374 int options = DMGL_PARAMS | DMGL_ANSI | DMGL_TYPES;
4375
4376 /* Use the program name of this program, as invoked. */
4377 program_name = argv[0];
4378
4379 /* Parse options. */
4380 do
4381 {
4382 opt_char = getopt_long (argc, argv, "hpv", long_options, NULL);
4383 switch (opt_char)
4384 {
4385 case '?': /* Unrecognized option. */
4386 print_usage (stderr, 1);
4387 break;
4388
4389 case 'h':
4390 print_usage (stdout, 0);
4391 break;
4392
4393 case 'p':
4394 options &= ~ DMGL_PARAMS;
4395 break;
4396
4397 case 'v':
4398 options |= DMGL_VERBOSE;
4399 break;
4400 }
4401 }
4402 while (opt_char != -1);
4403
4404 if (optind == argc)
4405 /* No command line arguments were provided. Filter stdin. */
4406 {
4407 dyn_string_t mangled = dyn_string_new (3);
4408 char *s;
4409
4410 /* Read all of input. */
4411 while (!feof (stdin))
4412 {
4413 char c;
4414
4415 /* Pile characters into mangled until we hit one that can't
4416 occur in a mangled name. */
4417 c = getchar ();
4418 while (!feof (stdin) && is_mangled_char (c))
4419 {
4420 dyn_string_append_char (mangled, c);
4421 if (feof (stdin))
4422 break;
4423 c = getchar ();
4424 }
4425
4426 if (dyn_string_length (mangled) > 0)
4427 {
4428 #ifdef IN_GLIBCPP_V3
4429 s = __cxa_demangle (dyn_string_buf (mangled), NULL, NULL, NULL);
4430 #else
4431 s = cplus_demangle_v3 (dyn_string_buf (mangled), options);
4432 #endif
4433
4434 if (s != NULL)
4435 {
4436 fputs (s, stdout);
4437 free (s);
4438 }
4439 else
4440 {
4441 /* It might not have been a mangled name. Print the
4442 original text. */
4443 fputs (dyn_string_buf (mangled), stdout);
4444 }
4445
4446 dyn_string_clear (mangled);
4447 }
4448
4449 /* If we haven't hit EOF yet, we've read one character that
4450 can't occur in a mangled name, so print it out. */
4451 if (!feof (stdin))
4452 putchar (c);
4453 }
4454
4455 dyn_string_delete (mangled);
4456 }
4457 else
4458 /* Demangle command line arguments. */
4459 {
4460 /* Loop over command line arguments. */
4461 for (i = optind; i < argc; ++i)
4462 {
4463 char *s;
4464 #ifdef IN_GLIBCPP_V3
4465 int status;
4466 #endif
4467
4468 /* Attempt to demangle. */
4469 #ifdef IN_GLIBCPP_V3
4470 s = __cxa_demangle (argv[i], NULL, NULL, &status);
4471 #else
4472 s = cplus_demangle_v3 (argv[i], options);
4473 #endif
4474
4475 /* If it worked, print the demangled name. */
4476 if (s != NULL)
4477 {
4478 printf ("%s\n", s);
4479 free (s);
4480 }
4481 else
4482 {
4483 #ifdef IN_GLIBCPP_V3
4484 fprintf (stderr, "Failed: %s (status %d)\n", argv[i], status);
4485 #else
4486 fprintf (stderr, "Failed: %s\n", argv[i]);
4487 #endif
4488 }
4489 }
4490 }
4491
4492 return 0;
4493 }
4494
4495 #endif /* STANDALONE_DEMANGLER */
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