merge from gcc
[deliverable/binutils-gdb.git] / libiberty / cp-demangle.c
1 /* Demangler for IA64 / g++ V3 ABI.
2 Copyright (C) 2000, 2001 Free Software Foundation, Inc.
3 Written by Alex Samuel <samuel@codesourcery.com>.
4
5 This file is part of GNU CC.
6
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2 of the License, or
10 (at your option) any later version.
11
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with this program; if not, write to the Free Software
19 Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
20 */
21
22 /* This file implements demangling of C++ names mangled according to
23 the IA64 / g++ V3 ABI. Use the cp_demangle function to
24 demangle a mangled name, or compile with the preprocessor macro
25 STANDALONE_DEMANGLER defined to create a demangling filter
26 executable (functionally similar to c++filt, but includes this
27 demangler only). */
28
29 #ifdef HAVE_CONFIG_H
30 #include "config.h"
31 #endif
32
33 #include <sys/types.h>
34
35 #ifdef HAVE_STDLIB_H
36 #include <stdlib.h>
37 #endif
38
39 #include <stdio.h>
40
41 #ifdef HAVE_STRING_H
42 #include <string.h>
43 #endif
44
45 #include "ansidecl.h"
46 #include "libiberty.h"
47 #include "dyn-string.h"
48 #include "demangle.h"
49
50 /* If CP_DEMANGLE_DEBUG is defined, a trace of the grammar evaluation,
51 and other debugging output, will be generated. */
52 #ifdef CP_DEMANGLE_DEBUG
53 #define DEMANGLE_TRACE(PRODUCTION, DM) \
54 fprintf (stderr, " -> %-24s at position %3d\n", \
55 (PRODUCTION), current_position (DM));
56 #else
57 #define DEMANGLE_TRACE(PRODUCTION, DM)
58 #endif
59
60 /* Don't include <ctype.h>, to prevent additional unresolved symbols
61 from being dragged into the C++ runtime library. */
62 #define IS_DIGIT(CHAR) ((CHAR) >= '0' && (CHAR) <= '9')
63 #define IS_ALPHA(CHAR) \
64 (((CHAR) >= 'a' && (CHAR) <= 'z') \
65 || ((CHAR) >= 'A' && (CHAR) <= 'Z'))
66
67 /* The prefix prepended by GCC to an identifier represnting the
68 anonymous namespace. */
69 #define ANONYMOUS_NAMESPACE_PREFIX "_GLOBAL_"
70
71 /* Character(s) to use for namespace separation in demangled output */
72 #define NAMESPACE_SEPARATOR (dm->style == DMGL_JAVA ? "." : "::")
73
74 /* If flag_verbose is zero, some simplifications will be made to the
75 output to make it easier to read and supress details that are
76 generally not of interest to the average C++ programmer.
77 Otherwise, the demangled representation will attempt to convey as
78 much information as the mangled form. */
79 static int flag_verbose;
80
81 /* If flag_strict is non-zero, demangle strictly according to the
82 specification -- don't demangle special g++ manglings. */
83 static int flag_strict;
84
85 /* String_list_t is an extended form of dyn_string_t which provides a
86 link field and a caret position for additions to the string. A
87 string_list_t may safely be cast to and used as a dyn_string_t. */
88
89 struct string_list_def
90 {
91 /* The dyn_string; must be first. */
92 struct dyn_string string;
93
94 /* The position at which additional text is added to this string
95 (using the result_add* macros). This value is an offset from the
96 end of the string, not the beginning (and should be
97 non-positive). */
98 int caret_position;
99
100 /* The next string in the list. */
101 struct string_list_def *next;
102 };
103
104 typedef struct string_list_def *string_list_t;
105
106 /* Data structure representing a potential substitution. */
107
108 struct substitution_def
109 {
110 /* The demangled text of the substitution. */
111 dyn_string_t text;
112
113 /* Whether this substitution represents a template item. */
114 int template_p : 1;
115 };
116
117 /* Data structure representing a template argument list. */
118
119 struct template_arg_list_def
120 {
121 /* The next (lower) template argument list in the stack of currently
122 active template arguments. */
123 struct template_arg_list_def *next;
124
125 /* The first element in the list of template arguments in
126 left-to-right order. */
127 string_list_t first_argument;
128
129 /* The last element in the arguments lists. */
130 string_list_t last_argument;
131 };
132
133 typedef struct template_arg_list_def *template_arg_list_t;
134
135 /* Data structure to maintain the state of the current demangling. */
136
137 struct demangling_def
138 {
139 /* The full mangled name being mangled. */
140 const char *name;
141
142 /* Pointer into name at the current position. */
143 const char *next;
144
145 /* Stack for strings containing demangled result generated so far.
146 Text is emitted to the topmost (first) string. */
147 string_list_t result;
148
149 /* The number of presently available substitutions. */
150 int num_substitutions;
151
152 /* The allocated size of the substitutions array. */
153 int substitutions_allocated;
154
155 /* An array of available substitutions. The number of elements in
156 the array is given by num_substitions, and the allocated array
157 size in substitutions_size.
158
159 The most recent substition is at the end, so
160
161 - `S_' corresponds to substititutions[num_substitutions - 1]
162 - `S0_' corresponds to substititutions[num_substitutions - 2]
163
164 etc. */
165 struct substitution_def *substitutions;
166
167 /* The stack of template argument lists. */
168 template_arg_list_t template_arg_lists;
169
170 /* The most recently demangled source-name. */
171 dyn_string_t last_source_name;
172
173 /* Language style to use for demangled output. */
174 int style;
175
176 /* Set to non-zero iff this name is a constructor. The actual value
177 indicates what sort of constructor this is; see demangle.h. */
178 enum gnu_v3_ctor_kinds is_constructor;
179
180 /* Set to non-zero iff this name is a destructor. The actual value
181 indicates what sort of destructor this is; see demangle.h. */
182 enum gnu_v3_dtor_kinds is_destructor;
183
184 };
185
186 typedef struct demangling_def *demangling_t;
187
188 /* This type is the standard return code from most functions. Values
189 other than STATUS_OK contain descriptive messages. */
190 typedef const char *status_t;
191
192 /* Special values that can be used as a status_t. */
193 #define STATUS_OK NULL
194 #define STATUS_ERROR "Error."
195 #define STATUS_UNIMPLEMENTED "Unimplemented."
196 #define STATUS_INTERNAL_ERROR "Internal error."
197
198 /* This status code indicates a failure in malloc or realloc. */
199 static const char *const status_allocation_failed = "Allocation failed.";
200 #define STATUS_ALLOCATION_FAILED status_allocation_failed
201
202 /* Non-zero if STATUS indicates that no error has occurred. */
203 #define STATUS_NO_ERROR(STATUS) ((STATUS) == STATUS_OK)
204
205 /* Evaluate EXPR, which must produce a status_t. If the status code
206 indicates an error, return from the current function with that
207 status code. */
208 #define RETURN_IF_ERROR(EXPR) \
209 do \
210 { \
211 status_t s = EXPR; \
212 if (!STATUS_NO_ERROR (s)) \
213 return s; \
214 } \
215 while (0)
216
217 static status_t int_to_dyn_string
218 PARAMS ((int, dyn_string_t));
219 static string_list_t string_list_new
220 PARAMS ((int));
221 static void string_list_delete
222 PARAMS ((string_list_t));
223 static status_t result_add_separated_char
224 PARAMS ((demangling_t, int));
225 static status_t result_push
226 PARAMS ((demangling_t));
227 static string_list_t result_pop
228 PARAMS ((demangling_t));
229 static int substitution_start
230 PARAMS ((demangling_t));
231 static status_t substitution_add
232 PARAMS ((demangling_t, int, int));
233 static dyn_string_t substitution_get
234 PARAMS ((demangling_t, int, int *));
235 #ifdef CP_DEMANGLE_DEBUG
236 static void substitutions_print
237 PARAMS ((demangling_t, FILE *));
238 #endif
239 static template_arg_list_t template_arg_list_new
240 PARAMS ((void));
241 static void template_arg_list_delete
242 PARAMS ((template_arg_list_t));
243 static void template_arg_list_add_arg
244 PARAMS ((template_arg_list_t, string_list_t));
245 static string_list_t template_arg_list_get_arg
246 PARAMS ((template_arg_list_t, int));
247 static void push_template_arg_list
248 PARAMS ((demangling_t, template_arg_list_t));
249 static void pop_to_template_arg_list
250 PARAMS ((demangling_t, template_arg_list_t));
251 #ifdef CP_DEMANGLE_DEBUG
252 static void template_arg_list_print
253 PARAMS ((template_arg_list_t, FILE *));
254 #endif
255 static template_arg_list_t current_template_arg_list
256 PARAMS ((demangling_t));
257 static demangling_t demangling_new
258 PARAMS ((const char *, int));
259 static void demangling_delete
260 PARAMS ((demangling_t));
261
262 /* The last character of DS. Warning: DS is evaluated twice. */
263 #define dyn_string_last_char(DS) \
264 (dyn_string_buf (DS)[dyn_string_length (DS) - 1])
265
266 /* Append a space character (` ') to DS if it does not already end
267 with one. Evaluates to 1 on success, or 0 on allocation failure. */
268 #define dyn_string_append_space(DS) \
269 ((dyn_string_length (DS) > 0 \
270 && dyn_string_last_char (DS) != ' ') \
271 ? dyn_string_append_char ((DS), ' ') \
272 : 1)
273
274 /* Returns the index of the current position in the mangled name. */
275 #define current_position(DM) ((DM)->next - (DM)->name)
276
277 /* Returns the character at the current position of the mangled name. */
278 #define peek_char(DM) (*((DM)->next))
279
280 /* Returns the character one past the current position of the mangled
281 name. */
282 #define peek_char_next(DM) \
283 (peek_char (DM) == '\0' ? '\0' : (*((DM)->next + 1)))
284
285 /* Returns the character at the current position, and advances the
286 current position to the next character. */
287 #define next_char(DM) (*((DM)->next)++)
288
289 /* Returns non-zero if the current position is the end of the mangled
290 name, i.e. one past the last character. */
291 #define end_of_name_p(DM) (peek_char (DM) == '\0')
292
293 /* Advances the current position by one character. */
294 #define advance_char(DM) (++(DM)->next)
295
296 /* Returns the string containing the current demangled result. */
297 #define result_string(DM) (&(DM)->result->string)
298
299 /* Returns the position at which new text is inserted into the
300 demangled result. */
301 #define result_caret_pos(DM) \
302 (result_length (DM) + \
303 ((string_list_t) result_string (DM))->caret_position)
304
305 /* Adds a dyn_string_t to the demangled result. */
306 #define result_add_string(DM, STRING) \
307 (dyn_string_insert (&(DM)->result->string, \
308 result_caret_pos (DM), (STRING)) \
309 ? STATUS_OK : STATUS_ALLOCATION_FAILED)
310
311 /* Adds NUL-terminated string CSTR to the demangled result. */
312 #define result_add(DM, CSTR) \
313 (dyn_string_insert_cstr (&(DM)->result->string, \
314 result_caret_pos (DM), (CSTR)) \
315 ? STATUS_OK : STATUS_ALLOCATION_FAILED)
316
317 /* Adds character CHAR to the demangled result. */
318 #define result_add_char(DM, CHAR) \
319 (dyn_string_insert_char (&(DM)->result->string, \
320 result_caret_pos (DM), (CHAR)) \
321 ? STATUS_OK : STATUS_ALLOCATION_FAILED)
322
323 /* Inserts a dyn_string_t to the demangled result at position POS. */
324 #define result_insert_string(DM, POS, STRING) \
325 (dyn_string_insert (&(DM)->result->string, (POS), (STRING)) \
326 ? STATUS_OK : STATUS_ALLOCATION_FAILED)
327
328 /* Inserts NUL-terminated string CSTR to the demangled result at
329 position POS. */
330 #define result_insert(DM, POS, CSTR) \
331 (dyn_string_insert_cstr (&(DM)->result->string, (POS), (CSTR)) \
332 ? STATUS_OK : STATUS_ALLOCATION_FAILED)
333
334 /* Inserts character CHAR to the demangled result at position POS. */
335 #define result_insert_char(DM, POS, CHAR) \
336 (dyn_string_insert_char (&(DM)->result->string, (POS), (CHAR)) \
337 ? STATUS_OK : STATUS_ALLOCATION_FAILED)
338
339 /* The length of the current demangled result. */
340 #define result_length(DM) \
341 dyn_string_length (&(DM)->result->string)
342
343 /* Appends a (less-than, greater-than) character to the result in DM
344 to (open, close) a template argument or parameter list. Appends a
345 space first if necessary to prevent spurious elision of angle
346 brackets with the previous character. */
347 #define result_open_template_list(DM) result_add_separated_char(DM, '<')
348 #define result_close_template_list(DM) result_add_separated_char(DM, '>')
349
350 /* Appends a base 10 representation of VALUE to DS. STATUS_OK on
351 success. On failure, deletes DS and returns an error code. */
352
353 static status_t
354 int_to_dyn_string (value, ds)
355 int value;
356 dyn_string_t ds;
357 {
358 int i;
359 int mask = 1;
360
361 /* Handle zero up front. */
362 if (value == 0)
363 {
364 if (!dyn_string_append_char (ds, '0'))
365 return STATUS_ALLOCATION_FAILED;
366 return STATUS_OK;
367 }
368
369 /* For negative numbers, emit a minus sign. */
370 if (value < 0)
371 {
372 if (!dyn_string_append_char (ds, '-'))
373 return STATUS_ALLOCATION_FAILED;
374 value = -value;
375 }
376
377 /* Find the power of 10 of the first digit. */
378 i = value;
379 while (i > 9)
380 {
381 mask *= 10;
382 i /= 10;
383 }
384
385 /* Write the digits. */
386 while (mask > 0)
387 {
388 int digit = value / mask;
389
390 if (!dyn_string_append_char (ds, '0' + digit))
391 return STATUS_ALLOCATION_FAILED;
392
393 value -= digit * mask;
394 mask /= 10;
395 }
396
397 return STATUS_OK;
398 }
399
400 /* Creates a new string list node. The contents of the string are
401 empty, but the initial buffer allocation is LENGTH. The string
402 list node should be deleted with string_list_delete. Returns NULL
403 if allocation fails. */
404
405 static string_list_t
406 string_list_new (length)
407 int length;
408 {
409 string_list_t s = (string_list_t) malloc (sizeof (struct string_list_def));
410 s->caret_position = 0;
411 if (s == NULL)
412 return NULL;
413 if (!dyn_string_init ((dyn_string_t) s, length))
414 return NULL;
415 return s;
416 }
417
418 /* Deletes the entire string list starting at NODE. */
419
420 static void
421 string_list_delete (node)
422 string_list_t node;
423 {
424 while (node != NULL)
425 {
426 string_list_t next = node->next;
427 free (node);
428 node = next;
429 }
430 }
431
432 /* Appends CHARACTER to the demangled result. If the current trailing
433 character of the result is CHARACTER, a space is inserted first. */
434
435 static status_t
436 result_add_separated_char (dm, character)
437 demangling_t dm;
438 int character;
439 {
440 char *result = dyn_string_buf (result_string (dm));
441 int caret_pos = result_caret_pos (dm);
442
443 /* Add a space if the last character is already the character we
444 want to add. */
445 if (caret_pos > 0 && result[caret_pos - 1] == character)
446 RETURN_IF_ERROR (result_add_char (dm, ' '));
447 /* Add the character. */
448 RETURN_IF_ERROR (result_add_char (dm, character));
449
450 return STATUS_OK;
451 }
452
453 /* Allocates and pushes a new string onto the demangled results stack
454 for DM. Subsequent demangling with DM will emit to the new string.
455 Returns STATUS_OK on success, STATUS_ALLOCATION_FAILED on
456 allocation failure. */
457
458 static status_t
459 result_push (dm)
460 demangling_t dm;
461 {
462 string_list_t new_string = string_list_new (0);
463 if (new_string == NULL)
464 /* Allocation failed. */
465 return STATUS_ALLOCATION_FAILED;
466
467 /* Link the new string to the front of the list of result strings. */
468 new_string->next = (string_list_t) dm->result;
469 dm->result = new_string;
470 return STATUS_OK;
471 }
472
473 /* Removes and returns the topmost element on the demangled results
474 stack for DM. The caller assumes ownership for the returned
475 string. */
476
477 static string_list_t
478 result_pop (dm)
479 demangling_t dm;
480 {
481 string_list_t top = dm->result;
482 dm->result = top->next;
483 return top;
484 }
485
486 /* Returns the current value of the caret for the result string. The
487 value is an offet from the end of the result string. */
488
489 static int
490 result_get_caret (dm)
491 demangling_t dm;
492 {
493 return ((string_list_t) result_string (dm))->caret_position;
494 }
495
496 /* Sets the value of the caret for the result string, counted as an
497 offet from the end of the result string. */
498
499 static void
500 result_set_caret (dm, position)
501 demangling_t dm;
502 int position;
503 {
504 ((string_list_t) result_string (dm))->caret_position = position;
505 }
506
507 /* Shifts the position of the next addition to the result by
508 POSITION_OFFSET. A negative value shifts the caret to the left. */
509
510 static void
511 result_shift_caret (dm, position_offset)
512 demangling_t dm;
513 int position_offset;
514 {
515 ((string_list_t) result_string (dm))->caret_position += position_offset;
516 }
517
518 /* Returns non-zero if the character that comes right before the place
519 where text will be added to the result is a space. In this case,
520 the caller should supress adding another space. */
521
522 static int
523 result_previous_char_is_space (dm)
524 demangling_t dm;
525 {
526 char *result = dyn_string_buf (result_string (dm));
527 int pos = result_caret_pos (dm);
528 return pos > 0 && result[pos - 1] == ' ';
529 }
530
531 /* Returns the start position of a fragment of the demangled result
532 that will be a substitution candidate. Should be called at the
533 start of productions that can add substitutions. */
534
535 static int
536 substitution_start (dm)
537 demangling_t dm;
538 {
539 return result_caret_pos (dm);
540 }
541
542 /* Adds the suffix of the current demangled result of DM starting at
543 START_POSITION as a potential substitution. If TEMPLATE_P is
544 non-zero, this potential substitution is a template-id. */
545
546 static status_t
547 substitution_add (dm, start_position, template_p)
548 demangling_t dm;
549 int start_position;
550 int template_p;
551 {
552 dyn_string_t result = result_string (dm);
553 dyn_string_t substitution = dyn_string_new (0);
554 int i;
555
556 if (substitution == NULL)
557 return STATUS_ALLOCATION_FAILED;
558
559 /* Extract the substring of the current demangling result that
560 represents the subsitution candidate. */
561 if (!dyn_string_substring (substitution,
562 result, start_position, result_caret_pos (dm)))
563 {
564 dyn_string_delete (substitution);
565 return STATUS_ALLOCATION_FAILED;
566 }
567
568 /* If there's no room for the new entry, grow the array. */
569 if (dm->substitutions_allocated == dm->num_substitutions)
570 {
571 size_t new_array_size;
572 if (dm->substitutions_allocated > 0)
573 dm->substitutions_allocated *= 2;
574 else
575 dm->substitutions_allocated = 2;
576 new_array_size =
577 sizeof (struct substitution_def) * dm->substitutions_allocated;
578
579 dm->substitutions = (struct substitution_def *)
580 realloc (dm->substitutions, new_array_size);
581 if (dm->substitutions == NULL)
582 /* Realloc failed. */
583 {
584 dyn_string_delete (substitution);
585 return STATUS_ALLOCATION_FAILED;
586 }
587 }
588
589 /* Add the substitution to the array. */
590 i = dm->num_substitutions++;
591 dm->substitutions[i].text = substitution;
592 dm->substitutions[i].template_p = template_p;
593
594 #ifdef CP_DEMANGLE_DEBUG
595 substitutions_print (dm, stderr);
596 #endif
597
598 return STATUS_OK;
599 }
600
601 /* Returns the Nth-most-recent substitution. Sets *TEMPLATE_P to
602 non-zero if the substitution is a template-id, zero otherwise.
603 N is numbered from zero. DM retains ownership of the returned
604 string. If N is negative, or equal to or greater than the current
605 number of substitution candidates, returns NULL. */
606
607 static dyn_string_t
608 substitution_get (dm, n, template_p)
609 demangling_t dm;
610 int n;
611 int *template_p;
612 {
613 struct substitution_def *sub;
614
615 /* Make sure N is in the valid range. */
616 if (n < 0 || n >= dm->num_substitutions)
617 return NULL;
618
619 sub = &(dm->substitutions[n]);
620 *template_p = sub->template_p;
621 return sub->text;
622 }
623
624 #ifdef CP_DEMANGLE_DEBUG
625 /* Debugging routine to print the current substitutions to FP. */
626
627 static void
628 substitutions_print (dm, fp)
629 demangling_t dm;
630 FILE *fp;
631 {
632 int seq_id;
633 int num = dm->num_substitutions;
634
635 fprintf (fp, "SUBSTITUTIONS:\n");
636 for (seq_id = -1; seq_id < num - 1; ++seq_id)
637 {
638 int template_p;
639 dyn_string_t text = substitution_get (dm, seq_id + 1, &template_p);
640
641 if (seq_id == -1)
642 fprintf (fp, " S_ ");
643 else
644 fprintf (fp, " S%d_", seq_id);
645 fprintf (fp, " %c: %s\n", template_p ? '*' : ' ', dyn_string_buf (text));
646 }
647 }
648
649 #endif /* CP_DEMANGLE_DEBUG */
650
651 /* Creates a new template argument list. Returns NULL if allocation
652 fails. */
653
654 static template_arg_list_t
655 template_arg_list_new ()
656 {
657 template_arg_list_t new_list =
658 (template_arg_list_t) malloc (sizeof (struct template_arg_list_def));
659 if (new_list == NULL)
660 return NULL;
661 /* Initialize the new list to have no arguments. */
662 new_list->first_argument = NULL;
663 new_list->last_argument = NULL;
664 /* Return the new list. */
665 return new_list;
666 }
667
668 /* Deletes a template argument list and the template arguments it
669 contains. */
670
671 static void
672 template_arg_list_delete (list)
673 template_arg_list_t list;
674 {
675 /* If there are any arguments on LIST, delete them. */
676 if (list->first_argument != NULL)
677 string_list_delete (list->first_argument);
678 /* Delete LIST. */
679 free (list);
680 }
681
682 /* Adds ARG to the template argument list ARG_LIST. */
683
684 static void
685 template_arg_list_add_arg (arg_list, arg)
686 template_arg_list_t arg_list;
687 string_list_t arg;
688 {
689 if (arg_list->first_argument == NULL)
690 /* If there were no arguments before, ARG is the first one. */
691 arg_list->first_argument = arg;
692 else
693 /* Make ARG the last argument on the list. */
694 arg_list->last_argument->next = arg;
695 /* Make ARG the last on the list. */
696 arg_list->last_argument = arg;
697 arg->next = NULL;
698 }
699
700 /* Returns the template arugment at position INDEX in template
701 argument list ARG_LIST. */
702
703 static string_list_t
704 template_arg_list_get_arg (arg_list, index)
705 template_arg_list_t arg_list;
706 int index;
707 {
708 string_list_t arg = arg_list->first_argument;
709 /* Scan down the list of arguments to find the one at position
710 INDEX. */
711 while (index--)
712 {
713 arg = arg->next;
714 if (arg == NULL)
715 /* Ran out of arguments before INDEX hit zero. That's an
716 error. */
717 return NULL;
718 }
719 /* Return the argument at position INDEX. */
720 return arg;
721 }
722
723 /* Pushes ARG_LIST onto the top of the template argument list stack. */
724
725 static void
726 push_template_arg_list (dm, arg_list)
727 demangling_t dm;
728 template_arg_list_t arg_list;
729 {
730 arg_list->next = dm->template_arg_lists;
731 dm->template_arg_lists = arg_list;
732 #ifdef CP_DEMANGLE_DEBUG
733 fprintf (stderr, " ** pushing template arg list\n");
734 template_arg_list_print (arg_list, stderr);
735 #endif
736 }
737
738 /* Pops and deletes elements on the template argument list stack until
739 arg_list is the topmost element. If arg_list is NULL, all elements
740 are popped and deleted. */
741
742 static void
743 pop_to_template_arg_list (dm, arg_list)
744 demangling_t dm;
745 template_arg_list_t arg_list;
746 {
747 while (dm->template_arg_lists != arg_list)
748 {
749 template_arg_list_t top = dm->template_arg_lists;
750 /* Disconnect the topmost element from the list. */
751 dm->template_arg_lists = top->next;
752 /* Delete the popped element. */
753 template_arg_list_delete (top);
754 #ifdef CP_DEMANGLE_DEBUG
755 fprintf (stderr, " ** removing template arg list\n");
756 #endif
757 }
758 }
759
760 #ifdef CP_DEMANGLE_DEBUG
761
762 /* Prints the contents of ARG_LIST to FP. */
763
764 static void
765 template_arg_list_print (arg_list, fp)
766 template_arg_list_t arg_list;
767 FILE *fp;
768 {
769 string_list_t arg;
770 int index = -1;
771
772 fprintf (fp, "TEMPLATE ARGUMENT LIST:\n");
773 for (arg = arg_list->first_argument; arg != NULL; arg = arg->next)
774 {
775 if (index == -1)
776 fprintf (fp, " T_ : ");
777 else
778 fprintf (fp, " T%d_ : ", index);
779 ++index;
780 fprintf (fp, "%s\n", dyn_string_buf ((dyn_string_t) arg));
781 }
782 }
783
784 #endif /* CP_DEMANGLE_DEBUG */
785
786 /* Returns the topmost element on the stack of template argument
787 lists. If there is no list of template arguments, returns NULL. */
788
789 static template_arg_list_t
790 current_template_arg_list (dm)
791 demangling_t dm;
792 {
793 return dm->template_arg_lists;
794 }
795
796 /* Allocates a demangling_t object for demangling mangled NAME. A new
797 result must be pushed before the returned object can be used.
798 Returns NULL if allocation fails. */
799
800 static demangling_t
801 demangling_new (name, style)
802 const char *name;
803 int style;
804 {
805 demangling_t dm;
806 dm = (demangling_t) malloc (sizeof (struct demangling_def));
807 if (dm == NULL)
808 return NULL;
809
810 dm->name = name;
811 dm->next = name;
812 dm->result = NULL;
813 dm->num_substitutions = 0;
814 dm->substitutions_allocated = 10;
815 dm->template_arg_lists = NULL;
816 dm->last_source_name = dyn_string_new (0);
817 if (dm->last_source_name == NULL)
818 return NULL;
819 dm->substitutions = (struct substitution_def *)
820 malloc (dm->substitutions_allocated * sizeof (struct substitution_def));
821 if (dm->substitutions == NULL)
822 {
823 dyn_string_delete (dm->last_source_name);
824 return NULL;
825 }
826 dm->style = style;
827 dm->is_constructor = 0;
828 dm->is_destructor = 0;
829
830 return dm;
831 }
832
833 /* Deallocates a demangling_t object and all memory associated with
834 it. */
835
836 static void
837 demangling_delete (dm)
838 demangling_t dm;
839 {
840 int i;
841 template_arg_list_t arg_list = dm->template_arg_lists;
842
843 /* Delete the stack of template argument lists. */
844 while (arg_list != NULL)
845 {
846 template_arg_list_t next = arg_list->next;
847 template_arg_list_delete (arg_list);
848 arg_list = next;
849 }
850 /* Delete the list of substitutions. */
851 for (i = dm->num_substitutions; --i >= 0; )
852 dyn_string_delete (dm->substitutions[i].text);
853 free (dm->substitutions);
854 /* Delete the demangled result. */
855 string_list_delete (dm->result);
856 /* Delete the stored identifier name. */
857 dyn_string_delete (dm->last_source_name);
858 /* Delete the context object itself. */
859 free (dm);
860 }
861
862 /* These functions demangle an alternative of the corresponding
863 production in the mangling spec. The first argument of each is a
864 demangling context structure for the current demangling
865 operation. Most emit demangled text directly to the topmost result
866 string on the result string stack in the demangling context
867 structure. */
868
869 static status_t demangle_char
870 PARAMS ((demangling_t, int));
871 static status_t demangle_mangled_name
872 PARAMS ((demangling_t));
873 static status_t demangle_encoding
874 PARAMS ((demangling_t));
875 static status_t demangle_name
876 PARAMS ((demangling_t, int *));
877 static status_t demangle_nested_name
878 PARAMS ((demangling_t, int *));
879 static status_t demangle_prefix
880 PARAMS ((demangling_t, int *));
881 static status_t demangle_unqualified_name
882 PARAMS ((demangling_t, int *));
883 static status_t demangle_source_name
884 PARAMS ((demangling_t));
885 static status_t demangle_number
886 PARAMS ((demangling_t, int *, int, int));
887 static status_t demangle_number_literally
888 PARAMS ((demangling_t, dyn_string_t, int, int));
889 static status_t demangle_identifier
890 PARAMS ((demangling_t, int, dyn_string_t));
891 static status_t demangle_operator_name
892 PARAMS ((demangling_t, int, int *));
893 static status_t demangle_nv_offset
894 PARAMS ((demangling_t));
895 static status_t demangle_v_offset
896 PARAMS ((demangling_t));
897 static status_t demangle_call_offset
898 PARAMS ((demangling_t));
899 static status_t demangle_special_name
900 PARAMS ((demangling_t));
901 static status_t demangle_ctor_dtor_name
902 PARAMS ((demangling_t));
903 static status_t demangle_type_ptr
904 PARAMS ((demangling_t, int *, int));
905 static status_t demangle_type
906 PARAMS ((demangling_t));
907 static status_t demangle_CV_qualifiers
908 PARAMS ((demangling_t, dyn_string_t));
909 static status_t demangle_builtin_type
910 PARAMS ((demangling_t));
911 static status_t demangle_function_type
912 PARAMS ((demangling_t, int *));
913 static status_t demangle_bare_function_type
914 PARAMS ((demangling_t, int *));
915 static status_t demangle_class_enum_type
916 PARAMS ((demangling_t, int *));
917 static status_t demangle_array_type
918 PARAMS ((demangling_t, int *));
919 static status_t demangle_template_param
920 PARAMS ((demangling_t));
921 static status_t demangle_template_args
922 PARAMS ((demangling_t));
923 static status_t demangle_literal
924 PARAMS ((demangling_t));
925 static status_t demangle_template_arg
926 PARAMS ((demangling_t));
927 static status_t demangle_expression
928 PARAMS ((demangling_t));
929 static status_t demangle_scope_expression
930 PARAMS ((demangling_t));
931 static status_t demangle_expr_primary
932 PARAMS ((demangling_t));
933 static status_t demangle_substitution
934 PARAMS ((demangling_t, int *));
935 static status_t demangle_local_name
936 PARAMS ((demangling_t));
937 static status_t demangle_discriminator
938 PARAMS ((demangling_t, int));
939 static status_t cp_demangle
940 PARAMS ((const char *, dyn_string_t, int));
941 #ifdef IN_LIBGCC2
942 static status_t cp_demangle_type
943 PARAMS ((const char*, dyn_string_t));
944 #endif
945
946 /* When passed to demangle_bare_function_type, indicates that the
947 function's return type is not encoded before its parameter types. */
948 #define BFT_NO_RETURN_TYPE NULL
949
950 /* Check that the next character is C. If so, consume it. If not,
951 return an error. */
952
953 static status_t
954 demangle_char (dm, c)
955 demangling_t dm;
956 int c;
957 {
958 static char *error_message = NULL;
959
960 if (peek_char (dm) == c)
961 {
962 advance_char (dm);
963 return STATUS_OK;
964 }
965 else
966 {
967 if (error_message == NULL)
968 error_message = strdup ("Expected ?");
969 error_message[9] = c;
970 return error_message;
971 }
972 }
973
974 /* Demangles and emits a <mangled-name>.
975
976 <mangled-name> ::= _Z <encoding> */
977
978 static status_t
979 demangle_mangled_name (dm)
980 demangling_t dm;
981 {
982 DEMANGLE_TRACE ("mangled-name", dm);
983 RETURN_IF_ERROR (demangle_char (dm, '_'));
984 RETURN_IF_ERROR (demangle_char (dm, 'Z'));
985 RETURN_IF_ERROR (demangle_encoding (dm));
986 return STATUS_OK;
987 }
988
989 /* Demangles and emits an <encoding>.
990
991 <encoding> ::= <function name> <bare-function-type>
992 ::= <data name>
993 ::= <special-name> */
994
995 static status_t
996 demangle_encoding (dm)
997 demangling_t dm;
998 {
999 int encode_return_type;
1000 int start_position;
1001 template_arg_list_t old_arg_list = current_template_arg_list (dm);
1002 char peek = peek_char (dm);
1003
1004 DEMANGLE_TRACE ("encoding", dm);
1005
1006 /* Remember where the name starts. If it turns out to be a template
1007 function, we'll have to insert the return type here. */
1008 start_position = result_caret_pos (dm);
1009
1010 if (peek == 'G' || peek == 'T')
1011 RETURN_IF_ERROR (demangle_special_name (dm));
1012 else
1013 {
1014 /* Now demangle the name. */
1015 RETURN_IF_ERROR (demangle_name (dm, &encode_return_type));
1016
1017 /* If there's anything left, the name was a function name, with
1018 maybe its return type, and its parameter types, following. */
1019 if (!end_of_name_p (dm)
1020 && peek_char (dm) != 'E')
1021 {
1022 if (encode_return_type)
1023 /* Template functions have their return type encoded. The
1024 return type should be inserted at start_position. */
1025 RETURN_IF_ERROR
1026 (demangle_bare_function_type (dm, &start_position));
1027 else
1028 /* Non-template functions don't have their return type
1029 encoded. */
1030 RETURN_IF_ERROR
1031 (demangle_bare_function_type (dm, BFT_NO_RETURN_TYPE));
1032 }
1033 }
1034
1035 /* Pop off template argument lists that were built during the
1036 mangling of this name, to restore the old template context. */
1037 pop_to_template_arg_list (dm, old_arg_list);
1038
1039 return STATUS_OK;
1040 }
1041
1042 /* Demangles and emits a <name>.
1043
1044 <name> ::= <unscoped-name>
1045 ::= <unscoped-template-name> <template-args>
1046 ::= <nested-name>
1047 ::= <local-name>
1048
1049 <unscoped-name> ::= <unqualified-name>
1050 ::= St <unqualified-name> # ::std::
1051
1052 <unscoped-template-name>
1053 ::= <unscoped-name>
1054 ::= <substitution> */
1055
1056 static status_t
1057 demangle_name (dm, encode_return_type)
1058 demangling_t dm;
1059 int *encode_return_type;
1060 {
1061 int start = substitution_start (dm);
1062 char peek = peek_char (dm);
1063 int is_std_substitution = 0;
1064
1065 /* Generally, the return type is encoded if the function is a
1066 template-id, and suppressed otherwise. There are a few cases,
1067 though, in which the return type is not encoded even for a
1068 templated function. In these cases, this flag is set. */
1069 int suppress_return_type = 0;
1070
1071 DEMANGLE_TRACE ("name", dm);
1072
1073 switch (peek)
1074 {
1075 case 'N':
1076 /* This is a <nested-name>. */
1077 RETURN_IF_ERROR (demangle_nested_name (dm, encode_return_type));
1078 break;
1079
1080 case 'Z':
1081 RETURN_IF_ERROR (demangle_local_name (dm));
1082 *encode_return_type = 0;
1083 break;
1084
1085 case 'S':
1086 /* The `St' substitution allows a name nested in std:: to appear
1087 without being enclosed in a nested name. */
1088 if (peek_char_next (dm) == 't')
1089 {
1090 (void) next_char (dm);
1091 (void) next_char (dm);
1092 RETURN_IF_ERROR (result_add (dm, "std::"));
1093 RETURN_IF_ERROR
1094 (demangle_unqualified_name (dm, &suppress_return_type));
1095 is_std_substitution = 1;
1096 }
1097 else
1098 RETURN_IF_ERROR (demangle_substitution (dm, encode_return_type));
1099 /* Check if a template argument list immediately follows.
1100 If so, then we just demangled an <unqualified-template-name>. */
1101 if (peek_char (dm) == 'I')
1102 {
1103 /* A template name of the form std::<unqualified-name> is a
1104 substitution candidate. */
1105 if (is_std_substitution)
1106 RETURN_IF_ERROR (substitution_add (dm, start, 0));
1107 /* Demangle the <template-args> here. */
1108 RETURN_IF_ERROR (demangle_template_args (dm));
1109 *encode_return_type = !suppress_return_type;
1110 }
1111 else
1112 *encode_return_type = 0;
1113
1114 break;
1115
1116 default:
1117 /* This is an <unscoped-name> or <unscoped-template-name>. */
1118 RETURN_IF_ERROR (demangle_unqualified_name (dm, &suppress_return_type));
1119
1120 /* If the <unqualified-name> is followed by template args, this
1121 is an <unscoped-template-name>. */
1122 if (peek_char (dm) == 'I')
1123 {
1124 /* Add a substitution for the unqualified template name. */
1125 RETURN_IF_ERROR (substitution_add (dm, start, 0));
1126
1127 RETURN_IF_ERROR (demangle_template_args (dm));
1128 *encode_return_type = !suppress_return_type;
1129 }
1130 else
1131 *encode_return_type = 0;
1132
1133 break;
1134 }
1135
1136 return STATUS_OK;
1137 }
1138
1139 /* Demangles and emits a <nested-name>.
1140
1141 <nested-name> ::= N [<CV-qualifiers>] <prefix> <unqulified-name> E */
1142
1143 static status_t
1144 demangle_nested_name (dm, encode_return_type)
1145 demangling_t dm;
1146 int *encode_return_type;
1147 {
1148 char peek;
1149
1150 DEMANGLE_TRACE ("nested-name", dm);
1151
1152 RETURN_IF_ERROR (demangle_char (dm, 'N'));
1153
1154 peek = peek_char (dm);
1155 if (peek == 'r' || peek == 'V' || peek == 'K')
1156 {
1157 dyn_string_t cv_qualifiers;
1158 status_t status;
1159
1160 /* Snarf up CV qualifiers. */
1161 cv_qualifiers = dyn_string_new (24);
1162 if (cv_qualifiers == NULL)
1163 return STATUS_ALLOCATION_FAILED;
1164 demangle_CV_qualifiers (dm, cv_qualifiers);
1165
1166 /* Emit them, preceded by a space. */
1167 status = result_add_char (dm, ' ');
1168 if (STATUS_NO_ERROR (status))
1169 status = result_add_string (dm, cv_qualifiers);
1170 /* The CV qualifiers that occur in a <nested-name> will be
1171 qualifiers for member functions. These are placed at the end
1172 of the function. Therefore, shift the caret to the left by
1173 the length of the qualifiers, so other text is inserted
1174 before them and they stay at the end. */
1175 result_shift_caret (dm, -dyn_string_length (cv_qualifiers) - 1);
1176 /* Clean up. */
1177 dyn_string_delete (cv_qualifiers);
1178 RETURN_IF_ERROR (status);
1179 }
1180
1181 RETURN_IF_ERROR (demangle_prefix (dm, encode_return_type));
1182 /* No need to demangle the final <unqualified-name>; demangle_prefix
1183 will handle it. */
1184 RETURN_IF_ERROR (demangle_char (dm, 'E'));
1185
1186 return STATUS_OK;
1187 }
1188
1189 /* Demangles and emits a <prefix>.
1190
1191 <prefix> ::= <prefix> <unqualified-name>
1192 ::= <template-prefix> <template-args>
1193 ::= # empty
1194 ::= <substitution>
1195
1196 <template-prefix> ::= <prefix>
1197 ::= <substitution> */
1198
1199 static status_t
1200 demangle_prefix (dm, encode_return_type)
1201 demangling_t dm;
1202 int *encode_return_type;
1203 {
1204 int start = substitution_start (dm);
1205 int nested = 0;
1206
1207 /* ENCODE_RETURN_TYPE is updated as we decend the nesting chain.
1208 After <template-args>, it is set to non-zero; after everything
1209 else it is set to zero. */
1210
1211 /* Generally, the return type is encoded if the function is a
1212 template-id, and suppressed otherwise. There are a few cases,
1213 though, in which the return type is not encoded even for a
1214 templated function. In these cases, this flag is set. */
1215 int suppress_return_type = 0;
1216
1217 DEMANGLE_TRACE ("prefix", dm);
1218
1219 while (1)
1220 {
1221 char peek;
1222
1223 if (end_of_name_p (dm))
1224 return "Unexpected end of name in <compound-name>.";
1225
1226 peek = peek_char (dm);
1227
1228 /* We'll initialize suppress_return_type to false, and set it to true
1229 if we end up demangling a constructor name. However, make
1230 sure we're not actually about to demangle template arguments
1231 -- if so, this is the <template-args> following a
1232 <template-prefix>, so we'll want the previous flag value
1233 around. */
1234 if (peek != 'I')
1235 suppress_return_type = 0;
1236
1237 if (IS_DIGIT ((unsigned char) peek)
1238 || (peek >= 'a' && peek <= 'z')
1239 || peek == 'C' || peek == 'D'
1240 || peek == 'S')
1241 {
1242 /* We have another level of scope qualification. */
1243 if (nested)
1244 RETURN_IF_ERROR (result_add (dm, NAMESPACE_SEPARATOR));
1245 else
1246 nested = 1;
1247
1248 if (peek == 'S')
1249 /* The substitution determines whether this is a
1250 template-id. */
1251 RETURN_IF_ERROR (demangle_substitution (dm, encode_return_type));
1252 else
1253 {
1254 /* It's just a name. */
1255 RETURN_IF_ERROR
1256 (demangle_unqualified_name (dm, &suppress_return_type));
1257 *encode_return_type = 0;
1258 }
1259 }
1260 else if (peek == 'Z')
1261 RETURN_IF_ERROR (demangle_local_name (dm));
1262 else if (peek == 'I')
1263 {
1264 RETURN_IF_ERROR (demangle_template_args (dm));
1265
1266 /* Now we want to indicate to the caller that we've
1267 demangled template arguments, thus the prefix was a
1268 <template-prefix>. That's so that the caller knows to
1269 demangle the function's return type, if this turns out to
1270 be a function name. But, if it's a member template
1271 constructor or a templated conversion operator, report it
1272 as untemplated. Those never get encoded return types. */
1273 *encode_return_type = !suppress_return_type;
1274 }
1275 else if (peek == 'E')
1276 /* All done. */
1277 return STATUS_OK;
1278 else
1279 return "Unexpected character in <compound-name>.";
1280
1281 if (peek != 'S'
1282 && peek_char (dm) != 'E')
1283 /* Add a new substitution for the prefix thus far. */
1284 RETURN_IF_ERROR (substitution_add (dm, start, *encode_return_type));
1285 }
1286 }
1287
1288 /* Demangles and emits an <unqualified-name>. If this
1289 <unqualified-name> is for a special function type that should never
1290 have its return type encoded (particularly, a constructor or
1291 conversion operator), *SUPPRESS_RETURN_TYPE is set to 1; otherwise,
1292 it is set to zero.
1293
1294 <unqualified-name> ::= <operator-name>
1295 ::= <special-name>
1296 ::= <source-name> */
1297
1298 static status_t
1299 demangle_unqualified_name (dm, suppress_return_type)
1300 demangling_t dm;
1301 int *suppress_return_type;
1302 {
1303 char peek = peek_char (dm);
1304
1305 DEMANGLE_TRACE ("unqualified-name", dm);
1306
1307 /* By default, don't force suppression of the return type (though
1308 non-template functions still don't get a return type encoded). */
1309 *suppress_return_type = 0;
1310
1311 if (IS_DIGIT ((unsigned char) peek))
1312 RETURN_IF_ERROR (demangle_source_name (dm));
1313 else if (peek >= 'a' && peek <= 'z')
1314 {
1315 int num_args;
1316
1317 /* Conversion operators never have a return type encoded. */
1318 if (peek == 'c' && peek_char_next (dm) == 'v')
1319 *suppress_return_type = 1;
1320
1321 RETURN_IF_ERROR (demangle_operator_name (dm, 0, &num_args));
1322 }
1323 else if (peek == 'C' || peek == 'D')
1324 {
1325 /* Constructors never have a return type encoded. */
1326 if (peek == 'C')
1327 *suppress_return_type = 1;
1328
1329 RETURN_IF_ERROR (demangle_ctor_dtor_name (dm));
1330 }
1331 else
1332 return "Unexpected character in <unqualified-name>.";
1333
1334 return STATUS_OK;
1335 }
1336
1337 /* Demangles and emits <source-name>.
1338
1339 <source-name> ::= <length number> <identifier> */
1340
1341 static status_t
1342 demangle_source_name (dm)
1343 demangling_t dm;
1344 {
1345 int length;
1346
1347 DEMANGLE_TRACE ("source-name", dm);
1348
1349 /* Decode the length of the identifier. */
1350 RETURN_IF_ERROR (demangle_number (dm, &length, 10, 0));
1351 if (length == 0)
1352 return "Zero length in <source-name>.";
1353
1354 /* Now the identifier itself. It's placed into last_source_name,
1355 where it can be used to build a constructor or destructor name. */
1356 RETURN_IF_ERROR (demangle_identifier (dm, length,
1357 dm->last_source_name));
1358
1359 /* Emit it. */
1360 RETURN_IF_ERROR (result_add_string (dm, dm->last_source_name));
1361
1362 return STATUS_OK;
1363 }
1364
1365 /* Demangles a number, either a <number> or a <positive-number> at the
1366 current position, consuming all consecutive digit characters. Sets
1367 *VALUE to the resulting numberand returns STATUS_OK. The number is
1368 interpreted as BASE, which must be either 10 or 36. If IS_SIGNED
1369 is non-zero, negative numbers -- prefixed with `n' -- are accepted.
1370
1371 <number> ::= [n] <positive-number>
1372
1373 <positive-number> ::= <decimal integer> */
1374
1375 static status_t
1376 demangle_number (dm, value, base, is_signed)
1377 demangling_t dm;
1378 int *value;
1379 int base;
1380 int is_signed;
1381 {
1382 dyn_string_t number = dyn_string_new (10);
1383
1384 DEMANGLE_TRACE ("number", dm);
1385
1386 if (number == NULL)
1387 return STATUS_ALLOCATION_FAILED;
1388
1389 demangle_number_literally (dm, number, base, is_signed);
1390 *value = strtol (dyn_string_buf (number), NULL, base);
1391 dyn_string_delete (number);
1392
1393 return STATUS_OK;
1394 }
1395
1396 /* Demangles a number at the current position. The digits (and minus
1397 sign, if present) that make up the number are appended to STR.
1398 Only base-BASE digits are accepted; BASE must be either 10 or 36.
1399 If IS_SIGNED, negative numbers -- prefixed with `n' -- are
1400 accepted. Does not consume a trailing underscore or other
1401 terminating character. */
1402
1403 static status_t
1404 demangle_number_literally (dm, str, base, is_signed)
1405 demangling_t dm;
1406 dyn_string_t str;
1407 int base;
1408 int is_signed;
1409 {
1410 DEMANGLE_TRACE ("number*", dm);
1411
1412 if (base != 10 && base != 36)
1413 return STATUS_INTERNAL_ERROR;
1414
1415 /* An `n' denotes a negative number. */
1416 if (is_signed && peek_char (dm) == 'n')
1417 {
1418 /* Skip past the n. */
1419 advance_char (dm);
1420 /* The normal way to write a negative number is with a minus
1421 sign. */
1422 if (!dyn_string_append_char (str, '-'))
1423 return STATUS_ALLOCATION_FAILED;
1424 }
1425
1426 /* Loop until we hit a non-digit. */
1427 while (1)
1428 {
1429 char peek = peek_char (dm);
1430 if (IS_DIGIT ((unsigned char) peek)
1431 || (base == 36 && peek >= 'A' && peek <= 'Z'))
1432 {
1433 /* Accumulate digits. */
1434 if (!dyn_string_append_char (str, next_char (dm)))
1435 return STATUS_ALLOCATION_FAILED;
1436 }
1437 else
1438 /* Not a digit? All done. */
1439 break;
1440 }
1441
1442 return STATUS_OK;
1443 }
1444
1445 /* Demangles an identifier at the current position of LENGTH
1446 characters and places it in IDENTIFIER. */
1447
1448 static status_t
1449 demangle_identifier (dm, length, identifier)
1450 demangling_t dm;
1451 int length;
1452 dyn_string_t identifier;
1453 {
1454 DEMANGLE_TRACE ("identifier", dm);
1455
1456 dyn_string_clear (identifier);
1457 if (!dyn_string_resize (identifier, length))
1458 return STATUS_ALLOCATION_FAILED;
1459
1460 while (length-- > 0)
1461 {
1462 if (end_of_name_p (dm))
1463 return "Unexpected end of name in <identifier>.";
1464 if (!dyn_string_append_char (identifier, next_char (dm)))
1465 return STATUS_ALLOCATION_FAILED;
1466 }
1467
1468 /* GCC encodes anonymous namespaces using a `_GLOBAL_[_.$]N.'
1469 followed by the source file name and some random characters.
1470 Unless we're in strict mode, decipher these names appropriately. */
1471 if (!flag_strict)
1472 {
1473 char *name = dyn_string_buf (identifier);
1474 int prefix_length = strlen (ANONYMOUS_NAMESPACE_PREFIX);
1475
1476 /* Compare the first, fixed part. */
1477 if (strncmp (name, ANONYMOUS_NAMESPACE_PREFIX, prefix_length) == 0)
1478 {
1479 name += prefix_length;
1480 /* The next character might be a period, an underscore, or
1481 dollar sign, depending on the target architecture's
1482 assembler's capabilities. After that comes an `N'. */
1483 if ((*name == '.' || *name == '_' || *name == '$')
1484 && *(name + 1) == 'N')
1485 /* This looks like the anonymous namespace identifier.
1486 Replace it with something comprehensible. */
1487 dyn_string_copy_cstr (identifier, "(anonymous namespace)");
1488 }
1489 }
1490
1491 return STATUS_OK;
1492 }
1493
1494 /* Demangles and emits an <operator-name>. If SHORT_NAME is non-zero,
1495 the short form is emitted; otherwise the full source form
1496 (`operator +' etc.) is emitted. *NUM_ARGS is set to the number of
1497 operands that the operator takes.
1498
1499 <operator-name>
1500 ::= nw # new
1501 ::= na # new[]
1502 ::= dl # delete
1503 ::= da # delete[]
1504 ::= ps # + (unary)
1505 ::= ng # - (unary)
1506 ::= ad # & (unary)
1507 ::= de # * (unary)
1508 ::= co # ~
1509 ::= pl # +
1510 ::= mi # -
1511 ::= ml # *
1512 ::= dv # /
1513 ::= rm # %
1514 ::= an # &
1515 ::= or # |
1516 ::= eo # ^
1517 ::= aS # =
1518 ::= pL # +=
1519 ::= mI # -=
1520 ::= mL # *=
1521 ::= dV # /=
1522 ::= rM # %=
1523 ::= aN # &=
1524 ::= oR # |=
1525 ::= eO # ^=
1526 ::= ls # <<
1527 ::= rs # >>
1528 ::= lS # <<=
1529 ::= rS # >>=
1530 ::= eq # ==
1531 ::= ne # !=
1532 ::= lt # <
1533 ::= gt # >
1534 ::= le # <=
1535 ::= ge # >=
1536 ::= nt # !
1537 ::= aa # &&
1538 ::= oo # ||
1539 ::= pp # ++
1540 ::= mm # --
1541 ::= cm # ,
1542 ::= pm # ->*
1543 ::= pt # ->
1544 ::= cl # ()
1545 ::= ix # []
1546 ::= qu # ?
1547 ::= sz # sizeof
1548 ::= cv <type> # cast
1549 ::= v [0-9] <source-name> # vendor extended operator */
1550
1551 static status_t
1552 demangle_operator_name (dm, short_name, num_args)
1553 demangling_t dm;
1554 int short_name;
1555 int *num_args;
1556 {
1557 struct operator_code
1558 {
1559 /* The mangled code for this operator. */
1560 const char *code;
1561 /* The source name of this operator. */
1562 const char *name;
1563 /* The number of arguments this operator takes. */
1564 int num_args;
1565 };
1566
1567 static const struct operator_code operators[] =
1568 {
1569 { "aN", "&=" , 2 },
1570 { "aS", "=" , 2 },
1571 { "aa", "&&" , 2 },
1572 { "ad", "&" , 1 },
1573 { "an", "&" , 2 },
1574 { "cl", "()" , 0 },
1575 { "cm", "," , 2 },
1576 { "co", "~" , 1 },
1577 { "dV", "/=" , 2 },
1578 { "da", " delete[]", 1 },
1579 { "de", "*" , 1 },
1580 { "dl", " delete" , 1 },
1581 { "dv", "/" , 2 },
1582 { "eO", "^=" , 2 },
1583 { "eo", "^" , 2 },
1584 { "eq", "==" , 2 },
1585 { "ge", ">=" , 2 },
1586 { "gt", ">" , 2 },
1587 { "ix", "[]" , 2 },
1588 { "lS", "<<=" , 2 },
1589 { "le", "<=" , 2 },
1590 { "ls", "<<" , 2 },
1591 { "lt", "<" , 2 },
1592 { "mI", "-=" , 2 },
1593 { "mL", "*=" , 2 },
1594 { "mi", "-" , 2 },
1595 { "ml", "*" , 2 },
1596 { "mm", "--" , 1 },
1597 { "na", " new[]" , 1 },
1598 { "ne", "!=" , 2 },
1599 { "ng", "-" , 1 },
1600 { "nt", "!" , 1 },
1601 { "nw", " new" , 1 },
1602 { "oR", "|=" , 2 },
1603 { "oo", "||" , 2 },
1604 { "or", "|" , 2 },
1605 { "pL", "+=" , 2 },
1606 { "pl", "+" , 2 },
1607 { "pm", "->*" , 2 },
1608 { "pp", "++" , 1 },
1609 { "ps", "+" , 1 },
1610 { "pt", "->" , 2 },
1611 { "qu", "?" , 3 },
1612 { "rM", "%=" , 2 },
1613 { "rS", ">>=" , 2 },
1614 { "rm", "%" , 2 },
1615 { "rs", ">>" , 2 },
1616 { "sz", " sizeof" , 1 }
1617 };
1618
1619 const int num_operators =
1620 sizeof (operators) / sizeof (struct operator_code);
1621
1622 int c0 = next_char (dm);
1623 int c1 = next_char (dm);
1624 const struct operator_code* p1 = operators;
1625 const struct operator_code* p2 = operators + num_operators;
1626
1627 DEMANGLE_TRACE ("operator-name", dm);
1628
1629 /* Is this a vendor-extended operator? */
1630 if (c0 == 'v' && IS_DIGIT (c1))
1631 {
1632 RETURN_IF_ERROR (result_add (dm, "operator "));
1633 RETURN_IF_ERROR (demangle_source_name (dm));
1634 *num_args = 0;
1635 return STATUS_OK;
1636 }
1637
1638 /* Is this a conversion operator? */
1639 if (c0 == 'c' && c1 == 'v')
1640 {
1641 RETURN_IF_ERROR (result_add (dm, "operator "));
1642 /* Demangle the converted-to type. */
1643 RETURN_IF_ERROR (demangle_type (dm));
1644 *num_args = 0;
1645 return STATUS_OK;
1646 }
1647
1648 /* Perform a binary search for the operator code. */
1649 while (1)
1650 {
1651 const struct operator_code* p = p1 + (p2 - p1) / 2;
1652 char match0 = p->code[0];
1653 char match1 = p->code[1];
1654
1655 if (c0 == match0 && c1 == match1)
1656 /* Found it. */
1657 {
1658 if (!short_name)
1659 RETURN_IF_ERROR (result_add (dm, "operator"));
1660 RETURN_IF_ERROR (result_add (dm, p->name));
1661 *num_args = p->num_args;
1662
1663 return STATUS_OK;
1664 }
1665
1666 if (p == p1)
1667 /* Couldn't find it. */
1668 return "Unknown code in <operator-name>.";
1669
1670 /* Try again. */
1671 if (c0 < match0 || (c0 == match0 && c1 < match1))
1672 p2 = p;
1673 else
1674 p1 = p;
1675 }
1676 }
1677
1678 /* Demangles and omits an <nv-offset>.
1679
1680 <nv-offset> ::= <offset number> # non-virtual base override */
1681
1682 static status_t
1683 demangle_nv_offset (dm)
1684 demangling_t dm;
1685 {
1686 dyn_string_t number;
1687 status_t status = STATUS_OK;
1688
1689 DEMANGLE_TRACE ("h-offset", dm);
1690
1691 /* Demangle the offset. */
1692 number = dyn_string_new (4);
1693 if (number == NULL)
1694 return STATUS_ALLOCATION_FAILED;
1695 demangle_number_literally (dm, number, 10, 1);
1696
1697 /* Don't display the offset unless in verbose mode. */
1698 if (flag_verbose)
1699 {
1700 status = result_add (dm, " [nv:");
1701 if (STATUS_NO_ERROR (status))
1702 status = result_add_string (dm, number);
1703 if (STATUS_NO_ERROR (status))
1704 status = result_add_char (dm, ']');
1705 }
1706
1707 /* Clean up. */
1708 dyn_string_delete (number);
1709 RETURN_IF_ERROR (status);
1710 return STATUS_OK;
1711 }
1712
1713 /* Demangles and emits a <v-offset>.
1714
1715 <v-offset> ::= <offset number> _ <virtual offset number>
1716 # virtual base override, with vcall offset */
1717
1718 static status_t
1719 demangle_v_offset (dm)
1720 demangling_t dm;
1721 {
1722 dyn_string_t number;
1723 status_t status = STATUS_OK;
1724
1725 DEMANGLE_TRACE ("v-offset", dm);
1726
1727 /* Demangle the offset. */
1728 number = dyn_string_new (4);
1729 if (number == NULL)
1730 return STATUS_ALLOCATION_FAILED;
1731 demangle_number_literally (dm, number, 10, 1);
1732
1733 /* Don't display the offset unless in verbose mode. */
1734 if (flag_verbose)
1735 {
1736 status = result_add (dm, " [v:");
1737 if (STATUS_NO_ERROR (status))
1738 status = result_add_string (dm, number);
1739 if (STATUS_NO_ERROR (status))
1740 result_add_char (dm, ',');
1741 }
1742 dyn_string_delete (number);
1743 RETURN_IF_ERROR (status);
1744
1745 /* Demangle the separator. */
1746 RETURN_IF_ERROR (demangle_char (dm, '_'));
1747
1748 /* Demangle the vcall offset. */
1749 number = dyn_string_new (4);
1750 if (number == NULL)
1751 return STATUS_ALLOCATION_FAILED;
1752 demangle_number_literally (dm, number, 10, 1);
1753
1754 /* Don't display the vcall offset unless in verbose mode. */
1755 if (flag_verbose)
1756 {
1757 status = result_add_string (dm, number);
1758 if (STATUS_NO_ERROR (status))
1759 status = result_add_char (dm, ']');
1760 }
1761 dyn_string_delete (number);
1762 RETURN_IF_ERROR (status);
1763
1764 return STATUS_OK;
1765 }
1766
1767 /* Demangles and emits a <call-offset>.
1768
1769 <call-offset> ::= h <nv-offset> _
1770 ::= v <v-offset> _ */
1771
1772 static status_t
1773 demangle_call_offset (dm)
1774 demangling_t dm;
1775 {
1776 DEMANGLE_TRACE ("call-offset", dm);
1777
1778 switch (peek_char (dm))
1779 {
1780 case 'h':
1781 advance_char (dm);
1782 /* Demangle the offset. */
1783 RETURN_IF_ERROR (demangle_nv_offset (dm));
1784 /* Demangle the separator. */
1785 RETURN_IF_ERROR (demangle_char (dm, '_'));
1786 break;
1787
1788 case 'v':
1789 advance_char (dm);
1790 /* Demangle the offset. */
1791 RETURN_IF_ERROR (demangle_v_offset (dm));
1792 /* Demangle the separator. */
1793 RETURN_IF_ERROR (demangle_char (dm, '_'));
1794 break;
1795
1796 default:
1797 return "Unrecognized <call-offset>.";
1798 }
1799
1800 return STATUS_OK;
1801 }
1802
1803 /* Demangles and emits a <special-name>.
1804
1805 <special-name> ::= GV <object name> # Guard variable
1806 ::= TV <type> # virtual table
1807 ::= TT <type> # VTT
1808 ::= TI <type> # typeinfo structure
1809 ::= TS <type> # typeinfo name
1810
1811 Other relevant productions include thunks:
1812
1813 <special-name> ::= T <call-offset> <base encoding>
1814 # base is the nominal target function of thunk
1815
1816 <special-name> ::= Tc <call-offset> <call-offset> <base encoding>
1817 # base is the nominal target function of thunk
1818 # first call-offset is 'this' adjustment
1819 # second call-offset is result adjustment
1820
1821 where
1822
1823 <call-offset> ::= h <nv-offset> _
1824 ::= v <v-offset> _
1825
1826 Also demangles the special g++ manglings,
1827
1828 <special-name> ::= TC <type> <offset number> _ <base type>
1829 # construction vtable
1830 ::= TF <type> # typeinfo function (old ABI only)
1831 ::= TJ <type> # java Class structure */
1832
1833 static status_t
1834 demangle_special_name (dm)
1835 demangling_t dm;
1836 {
1837 dyn_string_t number;
1838 int unused;
1839 char peek = peek_char (dm);
1840
1841 DEMANGLE_TRACE ("special-name", dm);
1842
1843 if (peek == 'G')
1844 {
1845 /* A guard variable name. Consume the G. */
1846 advance_char (dm);
1847 RETURN_IF_ERROR (demangle_char (dm, 'V'));
1848 RETURN_IF_ERROR (result_add (dm, "guard variable for "));
1849 RETURN_IF_ERROR (demangle_name (dm, &unused));
1850 }
1851 else if (peek == 'T')
1852 {
1853 status_t status = STATUS_OK;
1854
1855 /* Other C++ implementation miscellania. Consume the T. */
1856 advance_char (dm);
1857
1858 switch (peek_char (dm))
1859 {
1860 case 'V':
1861 /* Virtual table. */
1862 advance_char (dm);
1863 RETURN_IF_ERROR (result_add (dm, "vtable for "));
1864 RETURN_IF_ERROR (demangle_type (dm));
1865 break;
1866
1867 case 'T':
1868 /* VTT structure. */
1869 advance_char (dm);
1870 RETURN_IF_ERROR (result_add (dm, "VTT for "));
1871 RETURN_IF_ERROR (demangle_type (dm));
1872 break;
1873
1874 case 'I':
1875 /* Typeinfo structure. */
1876 advance_char (dm);
1877 RETURN_IF_ERROR (result_add (dm, "typeinfo for "));
1878 RETURN_IF_ERROR (demangle_type (dm));
1879 break;
1880
1881 case 'F':
1882 /* Typeinfo function. Used only in old ABI with new mangling. */
1883 advance_char (dm);
1884 RETURN_IF_ERROR (result_add (dm, "typeinfo fn for "));
1885 RETURN_IF_ERROR (demangle_type (dm));
1886 break;
1887
1888 case 'S':
1889 /* Character string containing type name, used in typeinfo. */
1890 advance_char (dm);
1891 RETURN_IF_ERROR (result_add (dm, "typeinfo name for "));
1892 RETURN_IF_ERROR (demangle_type (dm));
1893 break;
1894
1895 case 'J':
1896 /* The java Class variable corresponding to a C++ class. */
1897 advance_char (dm);
1898 RETURN_IF_ERROR (result_add (dm, "java Class for "));
1899 RETURN_IF_ERROR (demangle_type (dm));
1900 break;
1901
1902 case 'h':
1903 /* Non-virtual thunk. */
1904 advance_char (dm);
1905 RETURN_IF_ERROR (result_add (dm, "non-virtual thunk"));
1906 RETURN_IF_ERROR (demangle_nv_offset (dm));
1907 /* Demangle the separator. */
1908 RETURN_IF_ERROR (demangle_char (dm, '_'));
1909 /* Demangle and emit the target name and function type. */
1910 RETURN_IF_ERROR (result_add (dm, " to "));
1911 RETURN_IF_ERROR (demangle_encoding (dm));
1912 break;
1913
1914 case 'v':
1915 /* Virtual thunk. */
1916 advance_char (dm);
1917 RETURN_IF_ERROR (result_add (dm, "virtual thunk"));
1918 RETURN_IF_ERROR (demangle_v_offset (dm));
1919 /* Demangle the separator. */
1920 RETURN_IF_ERROR (demangle_char (dm, '_'));
1921 /* Demangle and emit the target function. */
1922 RETURN_IF_ERROR (result_add (dm, " to "));
1923 RETURN_IF_ERROR (demangle_encoding (dm));
1924 break;
1925
1926 case 'c':
1927 /* Covariant return thunk. */
1928 advance_char (dm);
1929 RETURN_IF_ERROR (result_add (dm, "covariant return thunk"));
1930 RETURN_IF_ERROR (demangle_call_offset (dm));
1931 RETURN_IF_ERROR (demangle_call_offset (dm));
1932 /* Demangle and emit the target function. */
1933 RETURN_IF_ERROR (result_add (dm, " to "));
1934 RETURN_IF_ERROR (demangle_encoding (dm));
1935 break;
1936
1937 case 'C':
1938 /* TC is a special g++ mangling for a construction vtable. */
1939 if (!flag_strict)
1940 {
1941 dyn_string_t derived_type;
1942
1943 advance_char (dm);
1944 RETURN_IF_ERROR (result_add (dm, "construction vtable for "));
1945
1946 /* Demangle the derived type off to the side. */
1947 RETURN_IF_ERROR (result_push (dm));
1948 RETURN_IF_ERROR (demangle_type (dm));
1949 derived_type = (dyn_string_t) result_pop (dm);
1950
1951 /* Demangle the offset. */
1952 number = dyn_string_new (4);
1953 if (number == NULL)
1954 {
1955 dyn_string_delete (derived_type);
1956 return STATUS_ALLOCATION_FAILED;
1957 }
1958 demangle_number_literally (dm, number, 10, 1);
1959 /* Demangle the underscore separator. */
1960 status = demangle_char (dm, '_');
1961
1962 /* Demangle the base type. */
1963 if (STATUS_NO_ERROR (status))
1964 status = demangle_type (dm);
1965
1966 /* Emit the derived type. */
1967 if (STATUS_NO_ERROR (status))
1968 status = result_add (dm, "-in-");
1969 if (STATUS_NO_ERROR (status))
1970 status = result_add_string (dm, derived_type);
1971 dyn_string_delete (derived_type);
1972
1973 /* Don't display the offset unless in verbose mode. */
1974 if (flag_verbose)
1975 {
1976 status = result_add_char (dm, ' ');
1977 if (STATUS_NO_ERROR (status))
1978 result_add_string (dm, number);
1979 }
1980 dyn_string_delete (number);
1981 RETURN_IF_ERROR (status);
1982 break;
1983 }
1984 /* If flag_strict, fall through. */
1985
1986 default:
1987 return "Unrecognized <special-name>.";
1988 }
1989 }
1990 else
1991 return STATUS_ERROR;
1992
1993 return STATUS_OK;
1994 }
1995
1996 /* Demangles and emits a <ctor-dtor-name>.
1997
1998 <ctor-dtor-name>
1999 ::= C1 # complete object (in-charge) ctor
2000 ::= C2 # base object (not-in-charge) ctor
2001 ::= C3 # complete object (in-charge) allocating ctor
2002 ::= D0 # deleting (in-charge) dtor
2003 ::= D1 # complete object (in-charge) dtor
2004 ::= D2 # base object (not-in-charge) dtor */
2005
2006 static status_t
2007 demangle_ctor_dtor_name (dm)
2008 demangling_t dm;
2009 {
2010 static const char *const ctor_flavors[] =
2011 {
2012 "in-charge",
2013 "not-in-charge",
2014 "allocating"
2015 };
2016 static const char *const dtor_flavors[] =
2017 {
2018 "in-charge deleting",
2019 "in-charge",
2020 "not-in-charge"
2021 };
2022
2023 int flavor;
2024 char peek = peek_char (dm);
2025
2026 DEMANGLE_TRACE ("ctor-dtor-name", dm);
2027
2028 if (peek == 'C')
2029 {
2030 /* A constructor name. Consume the C. */
2031 advance_char (dm);
2032 flavor = next_char (dm);
2033 if (flavor < '1' || flavor > '3')
2034 return "Unrecognized constructor.";
2035 RETURN_IF_ERROR (result_add_string (dm, dm->last_source_name));
2036 switch (flavor)
2037 {
2038 case '1': dm->is_constructor = gnu_v3_complete_object_ctor;
2039 break;
2040 case '2': dm->is_constructor = gnu_v3_base_object_ctor;
2041 break;
2042 case '3': dm->is_constructor = gnu_v3_complete_object_allocating_ctor;
2043 break;
2044 }
2045 /* Print the flavor of the constructor if in verbose mode. */
2046 if (flag_verbose)
2047 {
2048 RETURN_IF_ERROR (result_add (dm, "["));
2049 RETURN_IF_ERROR (result_add (dm, ctor_flavors[flavor - '1']));
2050 RETURN_IF_ERROR (result_add_char (dm, ']'));
2051 }
2052 }
2053 else if (peek == 'D')
2054 {
2055 /* A destructor name. Consume the D. */
2056 advance_char (dm);
2057 flavor = next_char (dm);
2058 if (flavor < '0' || flavor > '2')
2059 return "Unrecognized destructor.";
2060 RETURN_IF_ERROR (result_add_char (dm, '~'));
2061 RETURN_IF_ERROR (result_add_string (dm, dm->last_source_name));
2062 switch (flavor)
2063 {
2064 case '0': dm->is_destructor = gnu_v3_deleting_dtor;
2065 break;
2066 case '1': dm->is_destructor = gnu_v3_complete_object_dtor;
2067 break;
2068 case '2': dm->is_destructor = gnu_v3_base_object_dtor;
2069 break;
2070 }
2071 /* Print the flavor of the destructor if in verbose mode. */
2072 if (flag_verbose)
2073 {
2074 RETURN_IF_ERROR (result_add (dm, " ["));
2075 RETURN_IF_ERROR (result_add (dm, dtor_flavors[flavor - '0']));
2076 RETURN_IF_ERROR (result_add_char (dm, ']'));
2077 }
2078 }
2079 else
2080 return STATUS_ERROR;
2081
2082 return STATUS_OK;
2083 }
2084
2085 /* Handle pointer, reference, and pointer-to-member cases for
2086 demangle_type. All consecutive `P's, `R's, and 'M's are joined to
2087 build a pointer/reference type. We snarf all these, plus the
2088 following <type>, all at once since we need to know whether we have
2089 a pointer to data or pointer to function to construct the right
2090 output syntax. C++'s pointer syntax is hairy.
2091
2092 This function adds substitution candidates for every nested
2093 pointer/reference type it processes, including the outermost, final
2094 type, assuming the substitution starts at SUBSTITUTION_START in the
2095 demangling result. For example, if this function demangles
2096 `PP3Foo', it will add a substitution for `Foo', `Foo*', and
2097 `Foo**', in that order.
2098
2099 *INSERT_POS is a quantity used internally, when this function calls
2100 itself recursively, to figure out where to insert pointer
2101 punctuation on the way up. On entry to this function, INSERT_POS
2102 should point to a temporary value, but that value need not be
2103 initialized.
2104
2105 <type> ::= P <type>
2106 ::= R <type>
2107 ::= <pointer-to-member-type>
2108
2109 <pointer-to-member-type> ::= M </class/ type> </member/ type> */
2110
2111 static status_t
2112 demangle_type_ptr (dm, insert_pos, substitution_start)
2113 demangling_t dm;
2114 int *insert_pos;
2115 int substitution_start;
2116 {
2117 status_t status;
2118 int is_substitution_candidate = 1;
2119
2120 DEMANGLE_TRACE ("type*", dm);
2121
2122 /* Scan forward, collecting pointers and references into symbols,
2123 until we hit something else. Then emit the type. */
2124 switch (peek_char (dm))
2125 {
2126 case 'P':
2127 /* A pointer. Snarf the `P'. */
2128 advance_char (dm);
2129 /* Demangle the underlying type. */
2130 RETURN_IF_ERROR (demangle_type_ptr (dm, insert_pos,
2131 substitution_start));
2132 /* Insert an asterisk where we're told to; it doesn't
2133 necessarily go at the end. If we're doing Java style output,
2134 there is no pointer symbol. */
2135 if (dm->style != DMGL_JAVA)
2136 RETURN_IF_ERROR (result_insert_char (dm, *insert_pos, '*'));
2137 /* The next (outermost) pointer or reference character should go
2138 after this one. */
2139 ++(*insert_pos);
2140 break;
2141
2142 case 'R':
2143 /* A reference. Snarf the `R'. */
2144 advance_char (dm);
2145 /* Demangle the underlying type. */
2146 RETURN_IF_ERROR (demangle_type_ptr (dm, insert_pos,
2147 substitution_start));
2148 /* Insert an ampersand where we're told to; it doesn't
2149 necessarily go at the end. */
2150 RETURN_IF_ERROR (result_insert_char (dm, *insert_pos, '&'));
2151 /* The next (outermost) pointer or reference character should go
2152 after this one. */
2153 ++(*insert_pos);
2154 break;
2155
2156 case 'M':
2157 {
2158 /* A pointer-to-member. */
2159 dyn_string_t class_type;
2160
2161 /* Eat the 'M'. */
2162 advance_char (dm);
2163
2164 /* Capture the type of which this is a pointer-to-member. */
2165 RETURN_IF_ERROR (result_push (dm));
2166 RETURN_IF_ERROR (demangle_type (dm));
2167 class_type = (dyn_string_t) result_pop (dm);
2168
2169 if (peek_char (dm) == 'F')
2170 /* A pointer-to-member function. We want output along the
2171 lines of `void (C::*) (int, int)'. Demangle the function
2172 type, which would in this case give `void () (int, int)'
2173 and set *insert_pos to the spot between the first
2174 parentheses. */
2175 status = demangle_type_ptr (dm, insert_pos, substitution_start);
2176 else if (peek_char (dm) == 'A')
2177 /* A pointer-to-member array variable. We want output that
2178 looks like `int (Klass::*) [10]'. Demangle the array type
2179 as `int () [10]', and set *insert_pos to the spot between
2180 the parentheses. */
2181 status = demangle_array_type (dm, insert_pos);
2182 else
2183 {
2184 /* A pointer-to-member variable. Demangle the type of the
2185 pointed-to member. */
2186 status = demangle_type (dm);
2187 /* Make it pretty. */
2188 if (STATUS_NO_ERROR (status)
2189 && !result_previous_char_is_space (dm))
2190 status = result_add_char (dm, ' ');
2191 /* The pointer-to-member notation (e.g. `C::*') follows the
2192 member's type. */
2193 *insert_pos = result_caret_pos (dm);
2194 }
2195
2196 /* Build the pointer-to-member notation. */
2197 if (STATUS_NO_ERROR (status))
2198 status = result_insert (dm, *insert_pos, "::*");
2199 if (STATUS_NO_ERROR (status))
2200 status = result_insert_string (dm, *insert_pos, class_type);
2201 /* There may be additional levels of (pointer or reference)
2202 indirection in this type. If so, the `*' and `&' should be
2203 added after the pointer-to-member notation (e.g. `C::*&' for
2204 a reference to a pointer-to-member of class C). */
2205 *insert_pos += dyn_string_length (class_type) + 3;
2206
2207 /* Clean up. */
2208 dyn_string_delete (class_type);
2209
2210 RETURN_IF_ERROR (status);
2211 }
2212 break;
2213
2214 case 'F':
2215 /* Ooh, tricky, a pointer-to-function. When we demangle the
2216 function type, the return type should go at the very
2217 beginning. */
2218 *insert_pos = result_caret_pos (dm);
2219 /* The parentheses indicate this is a function pointer or
2220 reference type. */
2221 RETURN_IF_ERROR (result_add (dm, "()"));
2222 /* Now demangle the function type. The return type will be
2223 inserted before the `()', and the argument list will go after
2224 it. */
2225 RETURN_IF_ERROR (demangle_function_type (dm, insert_pos));
2226 /* We should now have something along the lines of
2227 `void () (int, int)'. The pointer or reference characters
2228 have to inside the first set of parentheses. *insert_pos has
2229 already been updated to point past the end of the return
2230 type. Move it one character over so it points inside the
2231 `()'. */
2232 ++(*insert_pos);
2233 break;
2234
2235 case 'A':
2236 /* An array pointer or reference. demangle_array_type will figure
2237 out where the asterisks and ampersands go. */
2238 RETURN_IF_ERROR (demangle_array_type (dm, insert_pos));
2239 break;
2240
2241 default:
2242 /* No more pointer or reference tokens; this is therefore a
2243 pointer to data. Finish up by demangling the underlying
2244 type. */
2245 RETURN_IF_ERROR (demangle_type (dm));
2246 /* The pointer or reference characters follow the underlying
2247 type, as in `int*&'. */
2248 *insert_pos = result_caret_pos (dm);
2249 /* Because of the production <type> ::= <substitution>,
2250 demangle_type will already have added the underlying type as
2251 a substitution candidate. Don't do it again. */
2252 is_substitution_candidate = 0;
2253 break;
2254 }
2255
2256 if (is_substitution_candidate)
2257 RETURN_IF_ERROR (substitution_add (dm, substitution_start, 0));
2258
2259 return STATUS_OK;
2260 }
2261
2262 /* Demangles and emits a <type>.
2263
2264 <type> ::= <builtin-type>
2265 ::= <function-type>
2266 ::= <class-enum-type>
2267 ::= <array-type>
2268 ::= <pointer-to-member-type>
2269 ::= <template-param>
2270 ::= <template-template-param> <template-args>
2271 ::= <CV-qualifiers> <type>
2272 ::= P <type> # pointer-to
2273 ::= R <type> # reference-to
2274 ::= C <type> # complex pair (C 2000)
2275 ::= G <type> # imaginary (C 2000)
2276 ::= U <source-name> <type> # vendor extended type qualifier
2277 ::= <substitution> */
2278
2279 static status_t
2280 demangle_type (dm)
2281 demangling_t dm;
2282 {
2283 int start = substitution_start (dm);
2284 char peek = peek_char (dm);
2285 char peek_next;
2286 int encode_return_type = 0;
2287 template_arg_list_t old_arg_list = current_template_arg_list (dm);
2288 int insert_pos;
2289
2290 /* A <type> can be a <substitution>; therefore, this <type> is a
2291 substitution candidate unless a special condition holds (see
2292 below). */
2293 int is_substitution_candidate = 1;
2294
2295 DEMANGLE_TRACE ("type", dm);
2296
2297 /* A <class-enum-type> can start with a digit (a <source-name>), an
2298 N (a <nested-name>), or a Z (a <local-name>). */
2299 if (IS_DIGIT ((unsigned char) peek) || peek == 'N' || peek == 'Z')
2300 RETURN_IF_ERROR (demangle_class_enum_type (dm, &encode_return_type));
2301 /* Lower-case letters begin <builtin-type>s, except for `r', which
2302 denotes restrict. */
2303 else if (peek >= 'a' && peek <= 'z' && peek != 'r')
2304 {
2305 RETURN_IF_ERROR (demangle_builtin_type (dm));
2306 /* Built-in types are not substitution candidates. */
2307 is_substitution_candidate = 0;
2308 }
2309 else
2310 switch (peek)
2311 {
2312 case 'r':
2313 case 'V':
2314 case 'K':
2315 /* CV-qualifiers (including restrict). We have to demangle
2316 them off to the side, since C++ syntax puts them in a funny
2317 place for qualified pointer and reference types. */
2318 {
2319 status_t status;
2320 dyn_string_t cv_qualifiers = dyn_string_new (24);
2321 int old_caret_position = result_get_caret (dm);
2322
2323 if (cv_qualifiers == NULL)
2324 return STATUS_ALLOCATION_FAILED;
2325
2326 /* Decode all adjacent CV qualifiers. */
2327 demangle_CV_qualifiers (dm, cv_qualifiers);
2328 /* Emit them, and shift the caret left so that the
2329 underlying type will be emitted before the qualifiers. */
2330 status = result_add_string (dm, cv_qualifiers);
2331 result_shift_caret (dm, -dyn_string_length (cv_qualifiers));
2332 /* Clean up. */
2333 dyn_string_delete (cv_qualifiers);
2334 RETURN_IF_ERROR (status);
2335 /* Also prepend a blank, if needed. */
2336 RETURN_IF_ERROR (result_add_char (dm, ' '));
2337 result_shift_caret (dm, -1);
2338
2339 /* Demangle the underlying type. It will be emitted before
2340 the CV qualifiers, since we moved the caret. */
2341 RETURN_IF_ERROR (demangle_type (dm));
2342
2343 /* Put the caret back where it was previously. */
2344 result_set_caret (dm, old_caret_position);
2345 }
2346 break;
2347
2348 case 'F':
2349 return "Non-pointer or -reference function type.";
2350
2351 case 'A':
2352 RETURN_IF_ERROR (demangle_array_type (dm, NULL));
2353 break;
2354
2355 case 'T':
2356 /* It's either a <template-param> or a
2357 <template-template-param>. In either case, demangle the
2358 `T' token first. */
2359 RETURN_IF_ERROR (demangle_template_param (dm));
2360
2361 /* Check for a template argument list; if one is found, it's a
2362 <template-template-param> ::= <template-param>
2363 ::= <substitution> */
2364 if (peek_char (dm) == 'I')
2365 {
2366 /* Add a substitution candidate. The template parameter
2367 `T' token is a substitution candidate by itself,
2368 without the template argument list. */
2369 RETURN_IF_ERROR (substitution_add (dm, start, encode_return_type));
2370
2371 /* Now demangle the template argument list. */
2372 RETURN_IF_ERROR (demangle_template_args (dm));
2373 /* The entire type, including the template template
2374 parameter and its argument list, will be added as a
2375 substitution candidate below. */
2376 }
2377
2378 break;
2379
2380 case 'S':
2381 /* First check if this is a special substitution. If it is,
2382 this is a <class-enum-type>. Special substitutions have a
2383 letter following the `S'; other substitutions have a digit
2384 or underscore. */
2385 peek_next = peek_char_next (dm);
2386 if (IS_DIGIT (peek_next) || peek_next == '_')
2387 {
2388 RETURN_IF_ERROR (demangle_substitution (dm, &encode_return_type));
2389
2390 /* The substituted name may have been a template name.
2391 Check if template arguments follow, and if so, demangle
2392 them. */
2393 if (peek_char (dm) == 'I')
2394 RETURN_IF_ERROR (demangle_template_args (dm));
2395 else
2396 /* A substitution token is not itself a substitution
2397 candidate. (However, if the substituted template is
2398 instantiated, the resulting type is.) */
2399 is_substitution_candidate = 0;
2400 }
2401 else
2402 {
2403 /* Now some trickiness. We have a special substitution
2404 here. Often, the special substitution provides the
2405 name of a template that's subsequently instantiated,
2406 for instance `SaIcE' => std::allocator<char>. In these
2407 cases we need to add a substitution candidate for the
2408 entire <class-enum-type> and thus don't want to clear
2409 the is_substitution_candidate flag.
2410
2411 However, it's possible that what we have here is a
2412 substitution token representing an entire type, such as
2413 `Ss' => std::string. In this case, we mustn't add a
2414 new substitution candidate for this substitution token.
2415 To detect this case, remember where the start of the
2416 substitution token is. */
2417 const char *next = dm->next;
2418 /* Now demangle the <class-enum-type>. */
2419 RETURN_IF_ERROR
2420 (demangle_class_enum_type (dm, &encode_return_type));
2421 /* If all that was just demangled is the two-character
2422 special substitution token, supress the addition of a
2423 new candidate for it. */
2424 if (dm->next == next + 2)
2425 is_substitution_candidate = 0;
2426 }
2427
2428 break;
2429
2430 case 'P':
2431 case 'R':
2432 case 'M':
2433 RETURN_IF_ERROR (demangle_type_ptr (dm, &insert_pos, start));
2434 /* demangle_type_ptr adds all applicable substitution
2435 candidates. */
2436 is_substitution_candidate = 0;
2437 break;
2438
2439 case 'C':
2440 /* A C99 complex type. */
2441 RETURN_IF_ERROR (result_add (dm, "complex "));
2442 advance_char (dm);
2443 RETURN_IF_ERROR (demangle_type (dm));
2444 break;
2445
2446 case 'G':
2447 /* A C99 imaginary type. */
2448 RETURN_IF_ERROR (result_add (dm, "imaginary "));
2449 advance_char (dm);
2450 RETURN_IF_ERROR (demangle_type (dm));
2451 break;
2452
2453 case 'U':
2454 /* Vendor-extended type qualifier. */
2455 advance_char (dm);
2456 RETURN_IF_ERROR (demangle_source_name (dm));
2457 RETURN_IF_ERROR (result_add_char (dm, ' '));
2458 RETURN_IF_ERROR (demangle_type (dm));
2459 break;
2460
2461 default:
2462 return "Unexpected character in <type>.";
2463 }
2464
2465 if (is_substitution_candidate)
2466 /* Add a new substitution for the type. If this type was a
2467 <template-param>, pass its index since from the point of
2468 substitutions; a <template-param> token is a substitution
2469 candidate distinct from the type that is substituted for it. */
2470 RETURN_IF_ERROR (substitution_add (dm, start, encode_return_type));
2471
2472 /* Pop off template argument lists added during mangling of this
2473 type. */
2474 pop_to_template_arg_list (dm, old_arg_list);
2475
2476 return STATUS_OK;
2477 }
2478
2479 /* C++ source names of builtin types, indexed by the mangled code
2480 letter's position in the alphabet ('a' -> 0, 'b' -> 1, etc). */
2481 static const char *const builtin_type_names[26] =
2482 {
2483 "signed char", /* a */
2484 "bool", /* b */
2485 "char", /* c */
2486 "double", /* d */
2487 "long double", /* e */
2488 "float", /* f */
2489 "__float128", /* g */
2490 "unsigned char", /* h */
2491 "int", /* i */
2492 "unsigned", /* j */
2493 NULL, /* k */
2494 "long", /* l */
2495 "unsigned long", /* m */
2496 "__int128", /* n */
2497 "unsigned __int128", /* o */
2498 NULL, /* p */
2499 NULL, /* q */
2500 NULL, /* r */
2501 "short", /* s */
2502 "unsigned short", /* t */
2503 NULL, /* u */
2504 "void", /* v */
2505 "wchar_t", /* w */
2506 "long long", /* x */
2507 "unsigned long long", /* y */
2508 "..." /* z */
2509 };
2510
2511 /* Java source names of builtin types. Types that arn't valid in Java
2512 are also included here - we don't fail if someone attempts to demangle a
2513 C++ symbol in Java style. */
2514 static const char *const java_builtin_type_names[26] =
2515 {
2516 "signed char", /* a */
2517 "boolean", /* C++ "bool" */ /* b */
2518 "byte", /* C++ "char" */ /* c */
2519 "double", /* d */
2520 "long double", /* e */
2521 "float", /* f */
2522 "__float128", /* g */
2523 "unsigned char", /* h */
2524 "int", /* i */
2525 "unsigned", /* j */
2526 NULL, /* k */
2527 "long", /* l */
2528 "unsigned long", /* m */
2529 "__int128", /* n */
2530 "unsigned __int128", /* o */
2531 NULL, /* p */
2532 NULL, /* q */
2533 NULL, /* r */
2534 "short", /* s */
2535 "unsigned short", /* t */
2536 NULL, /* u */
2537 "void", /* v */
2538 "char", /* C++ "wchar_t" */ /* w */
2539 "long", /* C++ "long long" */ /* x */
2540 "unsigned long long", /* y */
2541 "..." /* z */
2542 };
2543
2544 /* Demangles and emits a <builtin-type>.
2545
2546 <builtin-type> ::= v # void
2547 ::= w # wchar_t
2548 ::= b # bool
2549 ::= c # char
2550 ::= a # signed char
2551 ::= h # unsigned char
2552 ::= s # short
2553 ::= t # unsigned short
2554 ::= i # int
2555 ::= j # unsigned int
2556 ::= l # long
2557 ::= m # unsigned long
2558 ::= x # long long, __int64
2559 ::= y # unsigned long long, __int64
2560 ::= n # __int128
2561 ::= o # unsigned __int128
2562 ::= f # float
2563 ::= d # double
2564 ::= e # long double, __float80
2565 ::= g # __float128
2566 ::= z # ellipsis
2567 ::= u <source-name> # vendor extended type */
2568
2569 static status_t
2570 demangle_builtin_type (dm)
2571 demangling_t dm;
2572 {
2573
2574 char code = peek_char (dm);
2575
2576 DEMANGLE_TRACE ("builtin-type", dm);
2577
2578 if (code == 'u')
2579 {
2580 advance_char (dm);
2581 RETURN_IF_ERROR (demangle_source_name (dm));
2582 return STATUS_OK;
2583 }
2584 else if (code >= 'a' && code <= 'z')
2585 {
2586 const char *type_name;
2587 /* Java uses different names for some built-in types. */
2588 if (dm->style == DMGL_JAVA)
2589 type_name = java_builtin_type_names[code - 'a'];
2590 else
2591 type_name = builtin_type_names[code - 'a'];
2592 if (type_name == NULL)
2593 return "Unrecognized <builtin-type> code.";
2594
2595 RETURN_IF_ERROR (result_add (dm, type_name));
2596 advance_char (dm);
2597 return STATUS_OK;
2598 }
2599 else
2600 return "Non-alphabetic <builtin-type> code.";
2601 }
2602
2603 /* Demangles all consecutive CV-qualifiers (const, volatile, and
2604 restrict) at the current position. The qualifiers are appended to
2605 QUALIFIERS. Returns STATUS_OK. */
2606
2607 static status_t
2608 demangle_CV_qualifiers (dm, qualifiers)
2609 demangling_t dm;
2610 dyn_string_t qualifiers;
2611 {
2612 DEMANGLE_TRACE ("CV-qualifiers", dm);
2613
2614 while (1)
2615 {
2616 switch (peek_char (dm))
2617 {
2618 case 'r':
2619 if (!dyn_string_append_space (qualifiers))
2620 return STATUS_ALLOCATION_FAILED;
2621 if (!dyn_string_append_cstr (qualifiers, "restrict"))
2622 return STATUS_ALLOCATION_FAILED;
2623 break;
2624
2625 case 'V':
2626 if (!dyn_string_append_space (qualifiers))
2627 return STATUS_ALLOCATION_FAILED;
2628 if (!dyn_string_append_cstr (qualifiers, "volatile"))
2629 return STATUS_ALLOCATION_FAILED;
2630 break;
2631
2632 case 'K':
2633 if (!dyn_string_append_space (qualifiers))
2634 return STATUS_ALLOCATION_FAILED;
2635 if (!dyn_string_append_cstr (qualifiers, "const"))
2636 return STATUS_ALLOCATION_FAILED;
2637 break;
2638
2639 default:
2640 return STATUS_OK;
2641 }
2642
2643 advance_char (dm);
2644 }
2645 }
2646
2647 /* Demangles and emits a <function-type>. *FUNCTION_NAME_POS is the
2648 position in the result string of the start of the function
2649 identifier, at which the function's return type will be inserted;
2650 *FUNCTION_NAME_POS is updated to position past the end of the
2651 function's return type.
2652
2653 <function-type> ::= F [Y] <bare-function-type> E */
2654
2655 static status_t
2656 demangle_function_type (dm, function_name_pos)
2657 demangling_t dm;
2658 int *function_name_pos;
2659 {
2660 DEMANGLE_TRACE ("function-type", dm);
2661 RETURN_IF_ERROR (demangle_char (dm, 'F'));
2662 if (peek_char (dm) == 'Y')
2663 {
2664 /* Indicate this function has C linkage if in verbose mode. */
2665 if (flag_verbose)
2666 RETURN_IF_ERROR (result_add (dm, " [extern \"C\"] "));
2667 advance_char (dm);
2668 }
2669 RETURN_IF_ERROR (demangle_bare_function_type (dm, function_name_pos));
2670 RETURN_IF_ERROR (demangle_char (dm, 'E'));
2671 return STATUS_OK;
2672 }
2673
2674 /* Demangles and emits a <bare-function-type>. RETURN_TYPE_POS is the
2675 position in the result string at which the function return type
2676 should be inserted. If RETURN_TYPE_POS is BFT_NO_RETURN_TYPE, the
2677 function's return type is assumed not to be encoded.
2678
2679 <bare-function-type> ::= <signature type>+ */
2680
2681 static status_t
2682 demangle_bare_function_type (dm, return_type_pos)
2683 demangling_t dm;
2684 int *return_type_pos;
2685 {
2686 /* Sequence is the index of the current function parameter, counting
2687 from zero. The value -1 denotes the return type. */
2688 int sequence =
2689 (return_type_pos == BFT_NO_RETURN_TYPE ? 0 : -1);
2690
2691 DEMANGLE_TRACE ("bare-function-type", dm);
2692
2693 RETURN_IF_ERROR (result_add_char (dm, '('));
2694 while (!end_of_name_p (dm) && peek_char (dm) != 'E')
2695 {
2696 if (sequence == -1)
2697 /* We're decoding the function's return type. */
2698 {
2699 dyn_string_t return_type;
2700 status_t status = STATUS_OK;
2701
2702 /* Decode the return type off to the side. */
2703 RETURN_IF_ERROR (result_push (dm));
2704 RETURN_IF_ERROR (demangle_type (dm));
2705 return_type = (dyn_string_t) result_pop (dm);
2706
2707 /* Add a space to the end of the type. Insert the return
2708 type where we've been asked to. */
2709 if (!dyn_string_append_space (return_type))
2710 status = STATUS_ALLOCATION_FAILED;
2711 if (STATUS_NO_ERROR (status))
2712 {
2713 if (!dyn_string_insert (result_string (dm), *return_type_pos,
2714 return_type))
2715 status = STATUS_ALLOCATION_FAILED;
2716 else
2717 *return_type_pos += dyn_string_length (return_type);
2718 }
2719
2720 dyn_string_delete (return_type);
2721 RETURN_IF_ERROR (status);
2722 }
2723 else
2724 {
2725 /* Skip `void' parameter types. One should only occur as
2726 the only type in a parameter list; in that case, we want
2727 to print `foo ()' instead of `foo (void)'. */
2728 if (peek_char (dm) == 'v')
2729 /* Consume the v. */
2730 advance_char (dm);
2731 else
2732 {
2733 /* Separate parameter types by commas. */
2734 if (sequence > 0)
2735 RETURN_IF_ERROR (result_add (dm, ", "));
2736 /* Demangle the type. */
2737 RETURN_IF_ERROR (demangle_type (dm));
2738 }
2739 }
2740
2741 ++sequence;
2742 }
2743 RETURN_IF_ERROR (result_add_char (dm, ')'));
2744
2745 /* We should have demangled at least one parameter type (which would
2746 be void, for a function that takes no parameters), plus the
2747 return type, if we were supposed to demangle that. */
2748 if (sequence == -1)
2749 return "Missing function return type.";
2750 else if (sequence == 0)
2751 return "Missing function parameter.";
2752
2753 return STATUS_OK;
2754 }
2755
2756 /* Demangles and emits a <class-enum-type>. *ENCODE_RETURN_TYPE is set to
2757 non-zero if the type is a template-id, zero otherwise.
2758
2759 <class-enum-type> ::= <name> */
2760
2761 static status_t
2762 demangle_class_enum_type (dm, encode_return_type)
2763 demangling_t dm;
2764 int *encode_return_type;
2765 {
2766 DEMANGLE_TRACE ("class-enum-type", dm);
2767
2768 RETURN_IF_ERROR (demangle_name (dm, encode_return_type));
2769 return STATUS_OK;
2770 }
2771
2772 /* Demangles and emits an <array-type>.
2773
2774 If PTR_INSERT_POS is not NULL, the array type is formatted as a
2775 pointer or reference to an array, except that asterisk and
2776 ampersand punctuation is omitted (since it's not know at this
2777 point). *PTR_INSERT_POS is set to the position in the demangled
2778 name at which this punctuation should be inserted. For example,
2779 `A10_i' is demangled to `int () [10]' and *PTR_INSERT_POS points
2780 between the parentheses.
2781
2782 If PTR_INSERT_POS is NULL, the array type is assumed not to be
2783 pointer- or reference-qualified. Then, for example, `A10_i' is
2784 demangled simply as `int[10]'.
2785
2786 <array-type> ::= A [<dimension number>] _ <element type>
2787 ::= A <dimension expression> _ <element type> */
2788
2789 static status_t
2790 demangle_array_type (dm, ptr_insert_pos)
2791 demangling_t dm;
2792 int *ptr_insert_pos;
2793 {
2794 status_t status = STATUS_OK;
2795 dyn_string_t array_size = NULL;
2796 char peek;
2797
2798 DEMANGLE_TRACE ("array-type", dm);
2799
2800 RETURN_IF_ERROR (demangle_char (dm, 'A'));
2801
2802 /* Demangle the array size into array_size. */
2803 peek = peek_char (dm);
2804 if (peek == '_')
2805 /* Array bound is omitted. This is a C99-style VLA. */
2806 ;
2807 else if (IS_DIGIT (peek_char (dm)))
2808 {
2809 /* It looks like a constant array bound. */
2810 array_size = dyn_string_new (10);
2811 if (array_size == NULL)
2812 return STATUS_ALLOCATION_FAILED;
2813 status = demangle_number_literally (dm, array_size, 10, 0);
2814 }
2815 else
2816 {
2817 /* Anything is must be an expression for a nont-constant array
2818 bound. This happens if the array type occurs in a template
2819 and the array bound references a template parameter. */
2820 RETURN_IF_ERROR (result_push (dm));
2821 RETURN_IF_ERROR (demangle_expression (dm));
2822 array_size = (dyn_string_t) result_pop (dm);
2823 }
2824 /* array_size may have been allocated by now, so we can't use
2825 RETURN_IF_ERROR until it's been deallocated. */
2826
2827 /* Demangle the base type of the array. */
2828 if (STATUS_NO_ERROR (status))
2829 status = demangle_char (dm, '_');
2830 if (STATUS_NO_ERROR (status))
2831 status = demangle_type (dm);
2832
2833 if (ptr_insert_pos != NULL)
2834 {
2835 /* This array is actually part of an pointer- or
2836 reference-to-array type. Format appropriately, except we
2837 don't know which and how much punctuation to use. */
2838 if (STATUS_NO_ERROR (status))
2839 status = result_add (dm, " () ");
2840 /* Let the caller know where to insert the punctuation. */
2841 *ptr_insert_pos = result_caret_pos (dm) - 2;
2842 }
2843
2844 /* Emit the array dimension syntax. */
2845 if (STATUS_NO_ERROR (status))
2846 status = result_add_char (dm, '[');
2847 if (STATUS_NO_ERROR (status) && array_size != NULL)
2848 status = result_add_string (dm, array_size);
2849 if (STATUS_NO_ERROR (status))
2850 status = result_add_char (dm, ']');
2851 if (array_size != NULL)
2852 dyn_string_delete (array_size);
2853
2854 RETURN_IF_ERROR (status);
2855
2856 return STATUS_OK;
2857 }
2858
2859 /* Demangles and emits a <template-param>.
2860
2861 <template-param> ::= T_ # first template parameter
2862 ::= T <parameter-2 number> _ */
2863
2864 static status_t
2865 demangle_template_param (dm)
2866 demangling_t dm;
2867 {
2868 int parm_number;
2869 template_arg_list_t current_arg_list = current_template_arg_list (dm);
2870 string_list_t arg;
2871
2872 DEMANGLE_TRACE ("template-param", dm);
2873
2874 /* Make sure there is a template argmust list in which to look up
2875 this parameter reference. */
2876 if (current_arg_list == NULL)
2877 return "Template parameter outside of template.";
2878
2879 RETURN_IF_ERROR (demangle_char (dm, 'T'));
2880 if (peek_char (dm) == '_')
2881 parm_number = 0;
2882 else
2883 {
2884 RETURN_IF_ERROR (demangle_number (dm, &parm_number, 10, 0));
2885 ++parm_number;
2886 }
2887 RETURN_IF_ERROR (demangle_char (dm, '_'));
2888
2889 arg = template_arg_list_get_arg (current_arg_list, parm_number);
2890 if (arg == NULL)
2891 /* parm_number exceeded the number of arguments in the current
2892 template argument list. */
2893 return "Template parameter number out of bounds.";
2894 RETURN_IF_ERROR (result_add_string (dm, (dyn_string_t) arg));
2895
2896 return STATUS_OK;
2897 }
2898
2899 /* Demangles and emits a <template-args>.
2900
2901 <template-args> ::= I <template-arg>+ E */
2902
2903 static status_t
2904 demangle_template_args (dm)
2905 demangling_t dm;
2906 {
2907 int first = 1;
2908 dyn_string_t old_last_source_name;
2909 template_arg_list_t arg_list = template_arg_list_new ();
2910
2911 if (arg_list == NULL)
2912 return STATUS_ALLOCATION_FAILED;
2913
2914 /* Preserve the most recently demangled source name. */
2915 old_last_source_name = dm->last_source_name;
2916 dm->last_source_name = dyn_string_new (0);
2917
2918 DEMANGLE_TRACE ("template-args", dm);
2919
2920 if (dm->last_source_name == NULL)
2921 return STATUS_ALLOCATION_FAILED;
2922
2923 RETURN_IF_ERROR (demangle_char (dm, 'I'));
2924 RETURN_IF_ERROR (result_open_template_list (dm));
2925 do
2926 {
2927 string_list_t arg;
2928
2929 if (first)
2930 first = 0;
2931 else
2932 RETURN_IF_ERROR (result_add (dm, ", "));
2933
2934 /* Capture the template arg. */
2935 RETURN_IF_ERROR (result_push (dm));
2936 RETURN_IF_ERROR (demangle_template_arg (dm));
2937 arg = result_pop (dm);
2938
2939 /* Emit it in the demangled name. */
2940 RETURN_IF_ERROR (result_add_string (dm, (dyn_string_t) arg));
2941
2942 /* Save it for use in expanding <template-param>s. */
2943 template_arg_list_add_arg (arg_list, arg);
2944 }
2945 while (peek_char (dm) != 'E');
2946 /* Append the '>'. */
2947 RETURN_IF_ERROR (result_close_template_list (dm));
2948
2949 /* Consume the 'E'. */
2950 advance_char (dm);
2951
2952 /* Restore the most recent demangled source name. */
2953 dyn_string_delete (dm->last_source_name);
2954 dm->last_source_name = old_last_source_name;
2955
2956 /* Push the list onto the top of the stack of template argument
2957 lists, so that arguments from it are used from now on when
2958 expanding <template-param>s. */
2959 push_template_arg_list (dm, arg_list);
2960
2961 return STATUS_OK;
2962 }
2963
2964 /* This function, which does not correspond to a production in the
2965 mangling spec, handles the `literal' production for both
2966 <template-arg> and <expr-primary>. It does not expect or consume
2967 the initial `L' or final `E'. The demangling is given by:
2968
2969 <literal> ::= <type> </value/ number>
2970
2971 and the emitted output is `(type)number'. */
2972
2973 static status_t
2974 demangle_literal (dm)
2975 demangling_t dm;
2976 {
2977 char peek = peek_char (dm);
2978 dyn_string_t value_string;
2979 status_t status;
2980
2981 DEMANGLE_TRACE ("literal", dm);
2982
2983 if (!flag_verbose && peek >= 'a' && peek <= 'z')
2984 {
2985 /* If not in verbose mode and this is a builtin type, see if we
2986 can produce simpler numerical output. In particular, for
2987 integer types shorter than `long', just write the number
2988 without type information; for bools, write `true' or `false'.
2989 Other refinements could be made here too. */
2990
2991 /* This constant string is used to map from <builtin-type> codes
2992 (26 letters of the alphabet) to codes that determine how the
2993 value will be displayed. The codes are:
2994 b: display as bool
2995 i: display as int
2996 l: display as long
2997 A space means the value will be represented using cast
2998 notation. */
2999 static const char *const code_map = "ibi iii ll ii i ";
3000
3001 char code = code_map[peek - 'a'];
3002 /* FIXME: Implement demangling of floats and doubles. */
3003 if (code == 'u')
3004 return STATUS_UNIMPLEMENTED;
3005 if (code == 'b')
3006 {
3007 /* It's a boolean. */
3008 char value;
3009
3010 /* Consume the b. */
3011 advance_char (dm);
3012 /* Look at the next character. It should be 0 or 1,
3013 corresponding to false or true, respectively. */
3014 value = peek_char (dm);
3015 if (value == '0')
3016 RETURN_IF_ERROR (result_add (dm, "false"));
3017 else if (value == '1')
3018 RETURN_IF_ERROR (result_add (dm, "true"));
3019 else
3020 return "Unrecognized bool constant.";
3021 /* Consume the 0 or 1. */
3022 advance_char (dm);
3023 return STATUS_OK;
3024 }
3025 else if (code == 'i' || code == 'l')
3026 {
3027 /* It's an integer or long. */
3028
3029 /* Consume the type character. */
3030 advance_char (dm);
3031
3032 /* Demangle the number and write it out. */
3033 value_string = dyn_string_new (0);
3034 status = demangle_number_literally (dm, value_string, 10, 1);
3035 if (STATUS_NO_ERROR (status))
3036 status = result_add_string (dm, value_string);
3037 /* For long integers, append an l. */
3038 if (code == 'l' && STATUS_NO_ERROR (status))
3039 status = result_add_char (dm, code);
3040 dyn_string_delete (value_string);
3041
3042 RETURN_IF_ERROR (status);
3043 return STATUS_OK;
3044 }
3045 /* ...else code == ' ', so fall through to represent this
3046 literal's type explicitly using cast syntax. */
3047 }
3048
3049 RETURN_IF_ERROR (result_add_char (dm, '('));
3050 RETURN_IF_ERROR (demangle_type (dm));
3051 RETURN_IF_ERROR (result_add_char (dm, ')'));
3052
3053 value_string = dyn_string_new (0);
3054 if (value_string == NULL)
3055 return STATUS_ALLOCATION_FAILED;
3056
3057 status = demangle_number_literally (dm, value_string, 10, 1);
3058 if (STATUS_NO_ERROR (status))
3059 status = result_add_string (dm, value_string);
3060 dyn_string_delete (value_string);
3061 RETURN_IF_ERROR (status);
3062
3063 return STATUS_OK;
3064 }
3065
3066 /* Demangles and emits a <template-arg>.
3067
3068 <template-arg> ::= <type> # type
3069 ::= L <type> <value number> E # literal
3070 ::= LZ <encoding> E # external name
3071 ::= X <expression> E # expression */
3072
3073 static status_t
3074 demangle_template_arg (dm)
3075 demangling_t dm;
3076 {
3077 DEMANGLE_TRACE ("template-arg", dm);
3078
3079 switch (peek_char (dm))
3080 {
3081 case 'L':
3082 advance_char (dm);
3083
3084 if (peek_char (dm) == 'Z')
3085 {
3086 /* External name. */
3087 advance_char (dm);
3088 /* FIXME: Standard is contradictory here. */
3089 RETURN_IF_ERROR (demangle_encoding (dm));
3090 }
3091 else
3092 RETURN_IF_ERROR (demangle_literal (dm));
3093 RETURN_IF_ERROR (demangle_char (dm, 'E'));
3094 break;
3095
3096 case 'X':
3097 /* Expression. */
3098 advance_char (dm);
3099 RETURN_IF_ERROR (demangle_expression (dm));
3100 RETURN_IF_ERROR (demangle_char (dm, 'E'));
3101 break;
3102
3103 default:
3104 RETURN_IF_ERROR (demangle_type (dm));
3105 break;
3106 }
3107
3108 return STATUS_OK;
3109 }
3110
3111 /* Demangles and emits an <expression>.
3112
3113 <expression> ::= <unary operator-name> <expression>
3114 ::= <binary operator-name> <expression> <expression>
3115 ::= <expr-primary>
3116 ::= <scope-expression> */
3117
3118 static status_t
3119 demangle_expression (dm)
3120 demangling_t dm;
3121 {
3122 char peek = peek_char (dm);
3123
3124 DEMANGLE_TRACE ("expression", dm);
3125
3126 if (peek == 'L' || peek == 'T')
3127 RETURN_IF_ERROR (demangle_expr_primary (dm));
3128 else if (peek == 's' && peek_char_next (dm) == 'r')
3129 RETURN_IF_ERROR (demangle_scope_expression (dm));
3130 else
3131 /* An operator expression. */
3132 {
3133 int num_args;
3134 status_t status = STATUS_OK;
3135 dyn_string_t operator_name;
3136
3137 /* We have an operator name. Since we want to output binary
3138 operations in infix notation, capture the operator name
3139 first. */
3140 RETURN_IF_ERROR (result_push (dm));
3141 RETURN_IF_ERROR (demangle_operator_name (dm, 1, &num_args));
3142 operator_name = (dyn_string_t) result_pop (dm);
3143
3144 /* If it's binary, do an operand first. */
3145 if (num_args > 1)
3146 {
3147 status = result_add_char (dm, '(');
3148 if (STATUS_NO_ERROR (status))
3149 status = demangle_expression (dm);
3150 if (STATUS_NO_ERROR (status))
3151 status = result_add_char (dm, ')');
3152 }
3153
3154 /* Emit the operator. */
3155 if (STATUS_NO_ERROR (status))
3156 status = result_add_string (dm, operator_name);
3157 dyn_string_delete (operator_name);
3158 RETURN_IF_ERROR (status);
3159
3160 /* Emit its second (if binary) or only (if unary) operand. */
3161 RETURN_IF_ERROR (result_add_char (dm, '('));
3162 RETURN_IF_ERROR (demangle_expression (dm));
3163 RETURN_IF_ERROR (result_add_char (dm, ')'));
3164
3165 /* The ternary operator takes a third operand. */
3166 if (num_args == 3)
3167 {
3168 RETURN_IF_ERROR (result_add (dm, ":("));
3169 RETURN_IF_ERROR (demangle_expression (dm));
3170 RETURN_IF_ERROR (result_add_char (dm, ')'));
3171 }
3172 }
3173
3174 return STATUS_OK;
3175 }
3176
3177 /* Demangles and emits a <scope-expression>.
3178
3179 <scope-expression> ::= sr <qualifying type> <source-name>
3180 ::= sr <qualifying type> <encoding> */
3181
3182 static status_t
3183 demangle_scope_expression (dm)
3184 demangling_t dm;
3185 {
3186 RETURN_IF_ERROR (demangle_char (dm, 's'));
3187 RETURN_IF_ERROR (demangle_char (dm, 'r'));
3188 RETURN_IF_ERROR (demangle_type (dm));
3189 RETURN_IF_ERROR (result_add (dm, "::"));
3190 RETURN_IF_ERROR (demangle_encoding (dm));
3191 return STATUS_OK;
3192 }
3193
3194 /* Demangles and emits an <expr-primary>.
3195
3196 <expr-primary> ::= <template-param>
3197 ::= L <type> <value number> E # literal
3198 ::= L <mangled-name> E # external name */
3199
3200 static status_t
3201 demangle_expr_primary (dm)
3202 demangling_t dm;
3203 {
3204 char peek = peek_char (dm);
3205
3206 DEMANGLE_TRACE ("expr-primary", dm);
3207
3208 if (peek == 'T')
3209 RETURN_IF_ERROR (demangle_template_param (dm));
3210 else if (peek == 'L')
3211 {
3212 /* Consume the `L'. */
3213 advance_char (dm);
3214 peek = peek_char (dm);
3215
3216 if (peek == '_')
3217 RETURN_IF_ERROR (demangle_mangled_name (dm));
3218 else
3219 RETURN_IF_ERROR (demangle_literal (dm));
3220
3221 RETURN_IF_ERROR (demangle_char (dm, 'E'));
3222 }
3223 else
3224 return STATUS_ERROR;
3225
3226 return STATUS_OK;
3227 }
3228
3229 /* Demangles and emits a <substitution>. Sets *TEMPLATE_P to non-zero
3230 if the substitution is the name of a template, zero otherwise.
3231
3232 <substitution> ::= S <seq-id> _
3233 ::= S_
3234
3235 ::= St # ::std::
3236 ::= Sa # ::std::allocator
3237 ::= Sb # ::std::basic_string
3238 ::= Ss # ::std::basic_string<char,
3239 ::std::char_traits<char>,
3240 ::std::allocator<char> >
3241 ::= Si # ::std::basic_istream<char,
3242 std::char_traits<char> >
3243 ::= So # ::std::basic_ostream<char,
3244 std::char_traits<char> >
3245 ::= Sd # ::std::basic_iostream<char,
3246 std::char_traits<char> >
3247 */
3248
3249 static status_t
3250 demangle_substitution (dm, template_p)
3251 demangling_t dm;
3252 int *template_p;
3253 {
3254 int seq_id;
3255 int peek;
3256 dyn_string_t text;
3257
3258 DEMANGLE_TRACE ("substitution", dm);
3259
3260 RETURN_IF_ERROR (demangle_char (dm, 'S'));
3261
3262 /* Scan the substitution sequence index. A missing number denotes
3263 the first index. */
3264 peek = peek_char (dm);
3265 if (peek == '_')
3266 seq_id = -1;
3267 /* If the following character is 0-9 or a capital letter, interpret
3268 the sequence up to the next underscore as a base-36 substitution
3269 index. */
3270 else if (IS_DIGIT ((unsigned char) peek)
3271 || (peek >= 'A' && peek <= 'Z'))
3272 RETURN_IF_ERROR (demangle_number (dm, &seq_id, 36, 0));
3273 else
3274 {
3275 const char *new_last_source_name = NULL;
3276
3277 switch (peek)
3278 {
3279 case 't':
3280 RETURN_IF_ERROR (result_add (dm, "std"));
3281 break;
3282
3283 case 'a':
3284 RETURN_IF_ERROR (result_add (dm, "std::allocator"));
3285 new_last_source_name = "allocator";
3286 *template_p = 1;
3287 break;
3288
3289 case 'b':
3290 RETURN_IF_ERROR (result_add (dm, "std::basic_string"));
3291 new_last_source_name = "basic_string";
3292 *template_p = 1;
3293 break;
3294
3295 case 's':
3296 if (!flag_verbose)
3297 {
3298 RETURN_IF_ERROR (result_add (dm, "std::string"));
3299 new_last_source_name = "string";
3300 }
3301 else
3302 {
3303 RETURN_IF_ERROR (result_add (dm, "std::basic_string<char, std::char_traits<char>, std::allocator<char> >"));
3304 new_last_source_name = "basic_string";
3305 }
3306 *template_p = 0;
3307 break;
3308
3309 case 'i':
3310 if (!flag_verbose)
3311 {
3312 RETURN_IF_ERROR (result_add (dm, "std::istream"));
3313 new_last_source_name = "istream";
3314 }
3315 else
3316 {
3317 RETURN_IF_ERROR (result_add (dm, "std::basic_istream<char, std::char_traints<char> >"));
3318 new_last_source_name = "basic_istream";
3319 }
3320 *template_p = 0;
3321 break;
3322
3323 case 'o':
3324 if (!flag_verbose)
3325 {
3326 RETURN_IF_ERROR (result_add (dm, "std::ostream"));
3327 new_last_source_name = "ostream";
3328 }
3329 else
3330 {
3331 RETURN_IF_ERROR (result_add (dm, "std::basic_ostream<char, std::char_traits<char> >"));
3332 new_last_source_name = "basic_ostream";
3333 }
3334 *template_p = 0;
3335 break;
3336
3337 case 'd':
3338 if (!flag_verbose)
3339 {
3340 RETURN_IF_ERROR (result_add (dm, "std::iostream"));
3341 new_last_source_name = "iostream";
3342 }
3343 else
3344 {
3345 RETURN_IF_ERROR (result_add (dm, "std::basic_iostream<char, std::char_traits<char> >"));
3346 new_last_source_name = "basic_iostream";
3347 }
3348 *template_p = 0;
3349 break;
3350
3351 default:
3352 return "Unrecognized <substitution>.";
3353 }
3354
3355 /* Consume the character we just processed. */
3356 advance_char (dm);
3357
3358 if (new_last_source_name != NULL)
3359 {
3360 if (!dyn_string_copy_cstr (dm->last_source_name,
3361 new_last_source_name))
3362 return STATUS_ALLOCATION_FAILED;
3363 }
3364
3365 return STATUS_OK;
3366 }
3367
3368 /* Look up the substitution text. Since `S_' is the most recent
3369 substitution, `S0_' is the second-most-recent, etc., shift the
3370 numbering by one. */
3371 text = substitution_get (dm, seq_id + 1, template_p);
3372 if (text == NULL)
3373 return "Substitution number out of range.";
3374
3375 /* Emit the substitution text. */
3376 RETURN_IF_ERROR (result_add_string (dm, text));
3377
3378 RETURN_IF_ERROR (demangle_char (dm, '_'));
3379 return STATUS_OK;
3380 }
3381
3382 /* Demangles and emits a <local-name>.
3383
3384 <local-name> := Z <function encoding> E <entity name> [<discriminator>]
3385 := Z <function encoding> E s [<discriminator>] */
3386
3387 static status_t
3388 demangle_local_name (dm)
3389 demangling_t dm;
3390 {
3391 DEMANGLE_TRACE ("local-name", dm);
3392
3393 RETURN_IF_ERROR (demangle_char (dm, 'Z'));
3394 RETURN_IF_ERROR (demangle_encoding (dm));
3395 RETURN_IF_ERROR (demangle_char (dm, 'E'));
3396 RETURN_IF_ERROR (result_add (dm, "::"));
3397
3398 if (peek_char (dm) == 's')
3399 {
3400 /* Local character string literal. */
3401 RETURN_IF_ERROR (result_add (dm, "string literal"));
3402 /* Consume the s. */
3403 advance_char (dm);
3404 RETURN_IF_ERROR (demangle_discriminator (dm, 0));
3405 }
3406 else
3407 {
3408 int unused;
3409 /* Local name for some other entity. Demangle its name. */
3410 RETURN_IF_ERROR (demangle_name (dm, &unused));
3411 RETURN_IF_ERROR (demangle_discriminator (dm, 1));
3412 }
3413
3414 return STATUS_OK;
3415 }
3416
3417 /* Optimonally demangles and emits a <discriminator>. If there is no
3418 <discriminator> at the current position in the mangled string, the
3419 descriminator is assumed to be zero. Emit the discriminator number
3420 in parentheses, unless SUPPRESS_FIRST is non-zero and the
3421 discriminator is zero.
3422
3423 <discriminator> ::= _ <number> */
3424
3425 static status_t
3426 demangle_discriminator (dm, suppress_first)
3427 demangling_t dm;
3428 int suppress_first;
3429 {
3430 /* Output for <discriminator>s to the demangled name is completely
3431 suppressed if not in verbose mode. */
3432
3433 if (peek_char (dm) == '_')
3434 {
3435 /* Consume the underscore. */
3436 advance_char (dm);
3437 if (flag_verbose)
3438 RETURN_IF_ERROR (result_add (dm, " [#"));
3439 /* Check if there's a number following the underscore. */
3440 if (IS_DIGIT ((unsigned char) peek_char (dm)))
3441 {
3442 int discriminator;
3443 /* Demangle the number. */
3444 RETURN_IF_ERROR (demangle_number (dm, &discriminator, 10, 0));
3445 if (flag_verbose)
3446 /* Write the discriminator. The mangled number is two
3447 less than the discriminator ordinal, counting from
3448 zero. */
3449 RETURN_IF_ERROR (int_to_dyn_string (discriminator + 2,
3450 (dyn_string_t) dm->result));
3451 }
3452 else
3453 {
3454 if (flag_verbose)
3455 /* A missing digit correspond to one. */
3456 RETURN_IF_ERROR (result_add_char (dm, '1'));
3457 }
3458 if (flag_verbose)
3459 RETURN_IF_ERROR (result_add_char (dm, ']'));
3460 }
3461 else if (!suppress_first)
3462 {
3463 if (flag_verbose)
3464 RETURN_IF_ERROR (result_add (dm, " [#0]"));
3465 }
3466
3467 return STATUS_OK;
3468 }
3469
3470 /* Demangle NAME into RESULT, which must be an initialized
3471 dyn_string_t. On success, returns STATUS_OK. On failure, returns
3472 an error message, and the contents of RESULT are unchanged. */
3473
3474 static status_t
3475 cp_demangle (name, result, style)
3476 const char *name;
3477 dyn_string_t result;
3478 int style;
3479 {
3480 status_t status;
3481 int length = strlen (name);
3482
3483 if (length > 2 && name[0] == '_' && name[1] == 'Z')
3484 {
3485 demangling_t dm = demangling_new (name, style);
3486 if (dm == NULL)
3487 return STATUS_ALLOCATION_FAILED;
3488
3489 status = result_push (dm);
3490 if (status != STATUS_OK)
3491 {
3492 demangling_delete (dm);
3493 return status;
3494 }
3495
3496 status = demangle_mangled_name (dm);
3497 if (STATUS_NO_ERROR (status))
3498 {
3499 dyn_string_t demangled = (dyn_string_t) result_pop (dm);
3500 if (!dyn_string_copy (result, demangled))
3501 return STATUS_ALLOCATION_FAILED;
3502 dyn_string_delete (demangled);
3503 }
3504
3505 demangling_delete (dm);
3506 }
3507 else
3508 {
3509 /* It's evidently not a mangled C++ name. It could be the name
3510 of something with C linkage, though, so just copy NAME into
3511 RESULT. */
3512 if (!dyn_string_copy_cstr (result, name))
3513 return STATUS_ALLOCATION_FAILED;
3514 status = STATUS_OK;
3515 }
3516
3517 return status;
3518 }
3519
3520 /* Demangle TYPE_NAME into RESULT, which must be an initialized
3521 dyn_string_t. On success, returns STATUS_OK. On failiure, returns
3522 an error message, and the contents of RESULT are unchanged. */
3523
3524 #ifdef IN_LIBGCC2
3525 static status_t
3526 cp_demangle_type (type_name, result)
3527 const char* type_name;
3528 dyn_string_t result;
3529 {
3530 status_t status;
3531 demangling_t dm = demangling_new (type_name);
3532
3533 if (dm == NULL)
3534 return STATUS_ALLOCATION_FAILED;
3535
3536 /* Demangle the type name. The demangled name is stored in dm. */
3537 status = result_push (dm);
3538 if (status != STATUS_OK)
3539 {
3540 demangling_delete (dm);
3541 return status;
3542 }
3543
3544 status = demangle_type (dm);
3545
3546 if (STATUS_NO_ERROR (status))
3547 {
3548 /* The demangling succeeded. Pop the result out of dm and copy
3549 it into RESULT. */
3550 dyn_string_t demangled = (dyn_string_t) result_pop (dm);
3551 if (!dyn_string_copy (result, demangled))
3552 return STATUS_ALLOCATION_FAILED;
3553 dyn_string_delete (demangled);
3554 }
3555
3556 /* Clean up. */
3557 demangling_delete (dm);
3558
3559 return status;
3560 }
3561
3562 extern char *__cxa_demangle PARAMS ((const char *, char *, size_t *, int *));
3563
3564 /* ia64 ABI-mandated entry point in the C++ runtime library for performing
3565 demangling. MANGLED_NAME is a NUL-terminated character string
3566 containing the name to be demangled.
3567
3568 OUTPUT_BUFFER is a region of memory, allocated with malloc, of
3569 *LENGTH bytes, into which the demangled name is stored. If
3570 OUTPUT_BUFFER is not long enough, it is expanded using realloc.
3571 OUTPUT_BUFFER may instead be NULL; in that case, the demangled name
3572 is placed in a region of memory allocated with malloc.
3573
3574 If LENGTH is non-NULL, the length of the buffer conaining the
3575 demangled name, is placed in *LENGTH.
3576
3577 The return value is a pointer to the start of the NUL-terminated
3578 demangled name, or NULL if the demangling fails. The caller is
3579 responsible for deallocating this memory using free.
3580
3581 *STATUS is set to one of the following values:
3582 0: The demangling operation succeeded.
3583 -1: A memory allocation failiure occurred.
3584 -2: MANGLED_NAME is not a valid name under the C++ ABI mangling rules.
3585 -3: One of the arguments is invalid.
3586
3587 The demagling is performed using the C++ ABI mangling rules, with
3588 GNU extensions. */
3589
3590 char *
3591 __cxa_demangle (mangled_name, output_buffer, length, status)
3592 const char *mangled_name;
3593 char *output_buffer;
3594 size_t *length;
3595 int *status;
3596 {
3597 struct dyn_string demangled_name;
3598 status_t result;
3599
3600 if (status == NULL)
3601 return NULL;
3602
3603 if (mangled_name == NULL) {
3604 *status = -3;
3605 return NULL;
3606 }
3607
3608 /* Did the caller provide a buffer for the demangled name? */
3609 if (output_buffer == NULL) {
3610 /* No; dyn_string will malloc a buffer for us. */
3611 if (!dyn_string_init (&demangled_name, 0))
3612 {
3613 *status = -1;
3614 return NULL;
3615 }
3616 }
3617 else {
3618 /* Yes. Check that the length was provided. */
3619 if (length == NULL) {
3620 *status = -3;
3621 return NULL;
3622 }
3623 /* Install the buffer into a dyn_string. */
3624 demangled_name.allocated = *length;
3625 demangled_name.length = 0;
3626 demangled_name.s = output_buffer;
3627 }
3628
3629 if (mangled_name[0] == '_' && mangled_name[1] == 'Z')
3630 /* MANGLED_NAME apprears to be a function or variable name.
3631 Demangle it accordingly. */
3632 result = cp_demangle (mangled_name, &demangled_name, 0);
3633 else
3634 /* Try to demangled MANGLED_NAME as the name of a type. */
3635 result = cp_demangle_type (mangled_name, &demangled_name);
3636
3637 if (result == STATUS_OK)
3638 /* The demangling succeeded. */
3639 {
3640 /* If LENGTH isn't NULL, store the allocated buffer length
3641 there; the buffer may have been realloced by dyn_string
3642 functions. */
3643 if (length != NULL)
3644 *length = demangled_name.allocated;
3645 /* The operation was a success. */
3646 *status = 0;
3647 return dyn_string_buf (&demangled_name);
3648 }
3649 else if (result == STATUS_ALLOCATION_FAILED)
3650 /* A call to malloc or realloc failed during the demangling
3651 operation. */
3652 {
3653 *status = -1;
3654 return NULL;
3655 }
3656 else
3657 /* The demangling failed for another reason, most probably because
3658 MANGLED_NAME isn't a valid mangled name. */
3659 {
3660 /* If the buffer containing the demangled name wasn't provided
3661 by the caller, free it. */
3662 if (output_buffer == NULL)
3663 free (dyn_string_buf (&demangled_name));
3664 *status = -2;
3665 return NULL;
3666 }
3667 }
3668
3669 #else /* !IN_LIBGCC2 */
3670
3671 /* Variant entry point for integration with the existing cplus-dem
3672 demangler. Attempts to demangle MANGLED. If the demangling
3673 succeeds, returns a buffer, allocated with malloc, containing the
3674 demangled name. The caller must deallocate the buffer using free.
3675 If the demangling failes, returns NULL. */
3676
3677 char *
3678 cplus_demangle_v3 (mangled)
3679 const char* mangled;
3680 {
3681 dyn_string_t demangled;
3682 status_t status;
3683
3684 /* If this isn't a mangled name, don't pretend to demangle it. */
3685 if (strncmp (mangled, "_Z", 2) != 0)
3686 return NULL;
3687
3688 /* Create a dyn_string to hold the demangled name. */
3689 demangled = dyn_string_new (0);
3690 /* Attempt the demangling. */
3691 status = cp_demangle ((char *) mangled, demangled, 0);
3692
3693 if (STATUS_NO_ERROR (status))
3694 /* Demangling succeeded. */
3695 {
3696 /* Grab the demangled result from the dyn_string. It was
3697 allocated with malloc, so we can return it directly. */
3698 char *return_value = dyn_string_release (demangled);
3699 /* Hand back the demangled name. */
3700 return return_value;
3701 }
3702 else if (status == STATUS_ALLOCATION_FAILED)
3703 {
3704 fprintf (stderr, "Memory allocation failed.\n");
3705 abort ();
3706 }
3707 else
3708 /* Demangling failed. */
3709 {
3710 dyn_string_delete (demangled);
3711 return NULL;
3712 }
3713 }
3714
3715 /* Demangle a Java symbol. Java uses a subset of the V3 ABI C++ mangling
3716 conventions, but the output formatting is a little different.
3717 This instructs the C++ demangler not to emit pointer characters ("*"), and
3718 to use Java's namespace separator symbol ("." instead of "::"). It then
3719 does an additional pass over the demangled output to replace instances
3720 of JArray<TYPE> with TYPE[]. */
3721
3722 char *
3723 java_demangle_v3 (mangled)
3724 const char* mangled;
3725 {
3726 dyn_string_t demangled;
3727 char *next;
3728 char *end;
3729 int len;
3730 status_t status;
3731 int nesting = 0;
3732 char *cplus_demangled;
3733 char *return_value;
3734
3735 /* Create a dyn_string to hold the demangled name. */
3736 demangled = dyn_string_new (0);
3737
3738 /* Attempt the demangling. */
3739 status = cp_demangle ((char *) mangled, demangled, DMGL_JAVA);
3740
3741 if (STATUS_NO_ERROR (status))
3742 /* Demangling succeeded. */
3743 {
3744 /* Grab the demangled result from the dyn_string. */
3745 cplus_demangled = dyn_string_release (demangled);
3746 }
3747 else if (status == STATUS_ALLOCATION_FAILED)
3748 {
3749 fprintf (stderr, "Memory allocation failed.\n");
3750 abort ();
3751 }
3752 else
3753 /* Demangling failed. */
3754 {
3755 dyn_string_delete (demangled);
3756 return NULL;
3757 }
3758
3759 len = strlen (cplus_demangled);
3760 next = cplus_demangled;
3761 end = next + len;
3762 demangled = NULL;
3763
3764 /* Replace occurances of JArray<TYPE> with TYPE[]. */
3765 while (next < end)
3766 {
3767 char *open_str = strstr (next, "JArray<");
3768 char *close_str = NULL;
3769 if (nesting > 0)
3770 close_str = strchr (next, '>');
3771
3772 if (open_str != NULL && (close_str == NULL || close_str > open_str))
3773 {
3774 ++nesting;
3775
3776 if (!demangled)
3777 demangled = dyn_string_new(len);
3778
3779 /* Copy prepending symbols, if any. */
3780 if (open_str > next)
3781 {
3782 open_str[0] = 0;
3783 dyn_string_append_cstr (demangled, next);
3784 }
3785 next = open_str + 7;
3786 }
3787 else if (close_str != NULL)
3788 {
3789 --nesting;
3790
3791 /* Copy prepending type symbol, if any. Squash any spurious
3792 whitespace. */
3793 if (close_str > next && next[0] != ' ')
3794 {
3795 close_str[0] = 0;
3796 dyn_string_append_cstr (demangled, next);
3797 }
3798 dyn_string_append_cstr (demangled, "[]");
3799 next = close_str + 1;
3800 }
3801 else
3802 {
3803 /* There are no more arrays. Copy the rest of the symbol, or
3804 simply return the original symbol if no changes were made. */
3805 if (next == cplus_demangled)
3806 return cplus_demangled;
3807
3808 dyn_string_append_cstr (demangled, next);
3809 next = end;
3810 }
3811 }
3812
3813 free (cplus_demangled);
3814
3815 return_value = dyn_string_release (demangled);
3816 return return_value;
3817 }
3818
3819 #endif /* IN_LIBGCC2 */
3820
3821
3822 /* Demangle NAME in the G++ V3 ABI demangling style, and return either
3823 zero, indicating that some error occurred, or a demangling_t
3824 holding the results. */
3825 static demangling_t
3826 demangle_v3_with_details (const char *name)
3827 {
3828 demangling_t dm;
3829 status_t status;
3830
3831 if (strncmp (name, "_Z", 2))
3832 return 0;
3833
3834 dm = demangling_new (name, DMGL_GNU_V3);
3835 if (dm == NULL)
3836 {
3837 fprintf (stderr, "Memory allocation failed.\n");
3838 abort ();
3839 }
3840
3841 status = result_push (dm);
3842 if (! STATUS_NO_ERROR (status))
3843 {
3844 demangling_delete (dm);
3845 fprintf (stderr, "%s\n", status);
3846 abort ();
3847 }
3848
3849 status = demangle_mangled_name (dm);
3850 if (STATUS_NO_ERROR (status))
3851 return dm;
3852
3853 demangling_delete (dm);
3854 return 0;
3855 }
3856
3857
3858 /* Return non-zero iff NAME is the mangled form of a constructor name
3859 in the G++ V3 ABI demangling style. Specifically, return:
3860 - '1' if NAME is a complete object constructor,
3861 - '2' if NAME is a base object constructor, or
3862 - '3' if NAME is a complete object allocating constructor. */
3863 enum gnu_v3_ctor_kinds
3864 is_gnu_v3_mangled_ctor (const char *name)
3865 {
3866 demangling_t dm = demangle_v3_with_details (name);
3867
3868 if (dm)
3869 {
3870 enum gnu_v3_ctor_kinds result = dm->is_constructor;
3871 demangling_delete (dm);
3872 return result;
3873 }
3874 else
3875 return 0;
3876 }
3877
3878
3879 /* Return non-zero iff NAME is the mangled form of a destructor name
3880 in the G++ V3 ABI demangling style. Specifically, return:
3881 - '0' if NAME is a deleting destructor,
3882 - '1' if NAME is a complete object destructor, or
3883 - '2' if NAME is a base object destructor. */
3884 enum gnu_v3_dtor_kinds
3885 is_gnu_v3_mangled_dtor (const char *name)
3886 {
3887 demangling_t dm = demangle_v3_with_details (name);
3888
3889 if (dm)
3890 {
3891 enum gnu_v3_dtor_kinds result = dm->is_destructor;
3892 demangling_delete (dm);
3893 return result;
3894 }
3895 else
3896 return 0;
3897 }
3898
3899
3900 #ifdef STANDALONE_DEMANGLER
3901
3902 #include "getopt.h"
3903
3904 static void print_usage
3905 PARAMS ((FILE* fp, int exit_value));
3906
3907 /* Non-zero if CHAR is a character than can occur in a mangled name. */
3908 #define is_mangled_char(CHAR) \
3909 (IS_ALPHA (CHAR) || IS_DIGIT (CHAR) \
3910 || (CHAR) == '_' || (CHAR) == '.' || (CHAR) == '$')
3911
3912 /* The name of this program, as invoked. */
3913 const char* program_name;
3914
3915 /* Prints usage summary to FP and then exits with EXIT_VALUE. */
3916
3917 static void
3918 print_usage (fp, exit_value)
3919 FILE* fp;
3920 int exit_value;
3921 {
3922 fprintf (fp, "Usage: %s [options] [names ...]\n", program_name);
3923 fprintf (fp, "Options:\n");
3924 fprintf (fp, " -h,--help Display this message.\n");
3925 fprintf (fp, " -s,--strict Demangle standard names only.\n");
3926 fprintf (fp, " -v,--verbose Produce verbose demanglings.\n");
3927 fprintf (fp, "If names are provided, they are demangled. Otherwise filters standard input.\n");
3928
3929 exit (exit_value);
3930 }
3931
3932 /* Option specification for getopt_long. */
3933 static struct option long_options[] =
3934 {
3935 { "help", no_argument, NULL, 'h' },
3936 { "strict", no_argument, NULL, 's' },
3937 { "verbose", no_argument, NULL, 'v' },
3938 { NULL, no_argument, NULL, 0 },
3939 };
3940
3941 /* Main entry for a demangling filter executable. It will demangle
3942 its command line arguments, if any. If none are provided, it will
3943 filter stdin to stdout, replacing any recognized mangled C++ names
3944 with their demangled equivalents. */
3945
3946 int
3947 main (argc, argv)
3948 int argc;
3949 char *argv[];
3950 {
3951 status_t status;
3952 int i;
3953 int opt_char;
3954
3955 /* Use the program name of this program, as invoked. */
3956 program_name = argv[0];
3957
3958 /* Parse options. */
3959 do
3960 {
3961 opt_char = getopt_long (argc, argv, "hsv", long_options, NULL);
3962 switch (opt_char)
3963 {
3964 case '?': /* Unrecognized option. */
3965 print_usage (stderr, 1);
3966 break;
3967
3968 case 'h':
3969 print_usage (stdout, 0);
3970 break;
3971
3972 case 's':
3973 flag_strict = 1;
3974 break;
3975
3976 case 'v':
3977 flag_verbose = 1;
3978 break;
3979 }
3980 }
3981 while (opt_char != -1);
3982
3983 if (optind == argc)
3984 /* No command line arguments were provided. Filter stdin. */
3985 {
3986 dyn_string_t mangled = dyn_string_new (3);
3987 dyn_string_t demangled = dyn_string_new (0);
3988 status_t status;
3989
3990 /* Read all of input. */
3991 while (!feof (stdin))
3992 {
3993 char c = getchar ();
3994
3995 /* The first character of a mangled name is an underscore. */
3996 if (feof (stdin))
3997 break;
3998 if (c != '_')
3999 {
4000 /* It's not a mangled name. Print the character and go
4001 on. */
4002 putchar (c);
4003 continue;
4004 }
4005 c = getchar ();
4006
4007 /* The second character of a mangled name is a capital `Z'. */
4008 if (feof (stdin))
4009 break;
4010 if (c != 'Z')
4011 {
4012 /* It's not a mangled name. Print the previous
4013 underscore, the `Z', and go on. */
4014 putchar ('_');
4015 putchar (c);
4016 continue;
4017 }
4018
4019 /* Start keeping track of the candidate mangled name. */
4020 dyn_string_append_char (mangled, '_');
4021 dyn_string_append_char (mangled, 'Z');
4022
4023 /* Pile characters into mangled until we hit one that can't
4024 occur in a mangled name. */
4025 c = getchar ();
4026 while (!feof (stdin) && is_mangled_char (c))
4027 {
4028 dyn_string_append_char (mangled, c);
4029 if (feof (stdin))
4030 break;
4031 c = getchar ();
4032 }
4033
4034 /* Attempt to demangle the name. */
4035 status = cp_demangle (dyn_string_buf (mangled), demangled, 0);
4036
4037 /* If the demangling succeeded, great! Print out the
4038 demangled version. */
4039 if (STATUS_NO_ERROR (status))
4040 fputs (dyn_string_buf (demangled), stdout);
4041 /* Abort on allocation failures. */
4042 else if (status == STATUS_ALLOCATION_FAILED)
4043 {
4044 fprintf (stderr, "Memory allocation failed.\n");
4045 abort ();
4046 }
4047 /* Otherwise, it might not have been a mangled name. Just
4048 print out the original text. */
4049 else
4050 fputs (dyn_string_buf (mangled), stdout);
4051
4052 /* If we haven't hit EOF yet, we've read one character that
4053 can't occur in a mangled name, so print it out. */
4054 if (!feof (stdin))
4055 putchar (c);
4056
4057 /* Clear the candidate mangled name, to start afresh next
4058 time we hit a `_Z'. */
4059 dyn_string_clear (mangled);
4060 }
4061
4062 dyn_string_delete (mangled);
4063 dyn_string_delete (demangled);
4064 }
4065 else
4066 /* Demangle command line arguments. */
4067 {
4068 dyn_string_t result = dyn_string_new (0);
4069
4070 /* Loop over command line arguments. */
4071 for (i = optind; i < argc; ++i)
4072 {
4073 /* Attempt to demangle. */
4074 status = cp_demangle (argv[i], result, 0);
4075
4076 /* If it worked, print the demangled name. */
4077 if (STATUS_NO_ERROR (status))
4078 printf ("%s\n", dyn_string_buf (result));
4079 /* Abort on allocaiton failures. */
4080 else if (status == STATUS_ALLOCATION_FAILED)
4081 {
4082 fprintf (stderr, "Memory allocation failed.\n");
4083 abort ();
4084 }
4085 /* If not, print the error message to stderr instead. */
4086 else
4087 fprintf (stderr, "%s\n", status);
4088 }
4089 dyn_string_delete (result);
4090 }
4091
4092 return 0;
4093 }
4094
4095 #endif /* STANDALONE_DEMANGLER */
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