objdump: Add configure time option to enable colored disassembly output by default.
[binutils-gdb.git] / binutils / stabs.c
1 /* stabs.c -- Parse stabs debugging information
2 Copyright (C) 1995-2022 Free Software Foundation, Inc.
3 Written by Ian Lance Taylor <ian@cygnus.com>.
4
5 This file is part of GNU Binutils.
6
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3 of the License, or
10 (at your option) any later version.
11
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with this program; if not, write to the Free Software
19 Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston, MA
20 02110-1301, USA. */
21
22 /* This file contains code which parses stabs debugging information.
23 The organization of this code is based on the gdb stabs reading
24 code. The job it does is somewhat different, because it is not
25 trying to identify the correct address for anything. */
26
27 #include "sysdep.h"
28 #include "bfd.h"
29 #include "libiberty.h"
30 #include "safe-ctype.h"
31 #include "demangle.h"
32 #include "debug.h"
33 #include "budbg.h"
34 #include "filenames.h"
35 #include "aout/aout64.h"
36 #include "aout/stab_gnu.h"
37
38 /* The number of predefined XCOFF types. */
39
40 #define XCOFF_TYPE_COUNT 34
41
42 /* This structure is used as a handle so that the stab parsing doesn't
43 need to use any static variables. */
44
45 struct stab_handle
46 {
47 /* The BFD. */
48 bfd *abfd;
49 /* TRUE if this is stabs in sections. */
50 bool sections;
51 /* The symbol table. */
52 asymbol **syms;
53 /* The number of symbols. */
54 long symcount;
55 /* The accumulated file name string. */
56 char *so_string;
57 /* The value of the last N_SO symbol. */
58 bfd_vma so_value;
59 /* The value of the start of the file, so that we can handle file
60 relative N_LBRAC and N_RBRAC symbols. */
61 bfd_vma file_start_offset;
62 /* The offset of the start of the function, so that we can handle
63 function relative N_LBRAC and N_RBRAC symbols. */
64 bfd_vma function_start_offset;
65 /* The version number of gcc which compiled the current compilation
66 unit, 0 if not compiled by gcc. */
67 int gcc_compiled;
68 /* Whether an N_OPT symbol was seen that was not generated by gcc,
69 so that we can detect the SunPRO compiler. */
70 bool n_opt_found;
71 /* The main file name. */
72 char *main_filename;
73 /* A stack of unfinished N_BINCL files. */
74 struct bincl_file *bincl_stack;
75 /* A list of finished N_BINCL files. */
76 struct bincl_file *bincl_list;
77 /* Whether we are inside a function or not. */
78 bool within_function;
79 /* The address of the end of the function, used if we have seen an
80 N_FUN symbol while in a function. This is -1 if we have not seen
81 an N_FUN (the normal case). */
82 bfd_vma function_end;
83 /* The depth of block nesting. */
84 int block_depth;
85 /* List of pending variable definitions. */
86 struct stab_pending_var *pending;
87 /* Number of files for which we have types. */
88 unsigned int files;
89 /* Lists of types per file. */
90 struct stab_types **file_types;
91 /* Predefined XCOFF types. */
92 debug_type xcoff_types[XCOFF_TYPE_COUNT];
93 /* Undefined tags. */
94 struct stab_tag *tags;
95 /* Set by parse_stab_type if it sees a structure defined as a cross
96 reference to itself. Reset by parse_stab_type otherwise. */
97 bool self_crossref;
98 };
99
100 /* A list of these structures is used to hold pending variable
101 definitions seen before the N_LBRAC of a block. */
102
103 struct stab_pending_var
104 {
105 /* Next pending variable definition. */
106 struct stab_pending_var *next;
107 /* Name. */
108 const char *name;
109 /* Type. */
110 debug_type type;
111 /* Kind. */
112 enum debug_var_kind kind;
113 /* Value. */
114 bfd_vma val;
115 };
116
117 /* A list of these structures is used to hold the types for a single
118 file. */
119
120 struct stab_types
121 {
122 /* Next set of slots for this file. */
123 struct stab_types *next;
124 /* Types indexed by type number. */
125 #define STAB_TYPES_SLOTS (16)
126 debug_type types[STAB_TYPES_SLOTS];
127 };
128
129 /* We keep a list of undefined tags that we encounter, so that we can
130 fill them in if the tag is later defined. */
131
132 struct stab_tag
133 {
134 /* Next undefined tag. */
135 struct stab_tag *next;
136 /* Tag name. */
137 const char *name;
138 /* Type kind. */
139 enum debug_type_kind kind;
140 /* Slot to hold real type when we discover it. If we don't, we fill
141 in an undefined tag type. */
142 debug_type slot;
143 /* Indirect type we have created to point at slot. */
144 debug_type type;
145 };
146
147 static char *savestring (const char *, int);
148
149 static void bad_stab (const char *);
150 static void warn_stab (const char *, const char *);
151 static bool parse_stab_string
152 (void *, struct stab_handle *, int, int, bfd_vma,
153 const char *, const char *);
154 static debug_type parse_stab_type
155 (void *, struct stab_handle *, const char *, const char **,
156 debug_type **, const char *);
157 static bool parse_stab_type_number
158 (const char **, int *, const char *);
159 static debug_type parse_stab_range_type
160 (void *, struct stab_handle *, const char *, const char **,
161 const int *, const char *);
162 static debug_type parse_stab_sun_builtin_type
163 (void *, const char **, const char *);
164 static debug_type parse_stab_sun_floating_type
165 (void *, const char **, const char *);
166 static debug_type parse_stab_enum_type
167 (void *, const char **, const char *);
168 static debug_type parse_stab_struct_type
169 (void *, struct stab_handle *, const char *, const char **,
170 bool, const int *, const char *);
171 static bool parse_stab_baseclasses
172 (void *, struct stab_handle *, const char **, debug_baseclass **,
173 const char *);
174 static bool parse_stab_struct_fields
175 (void *, struct stab_handle *, const char **, debug_field **,
176 bool *, const char *);
177 static bool parse_stab_cpp_abbrev
178 (void *, struct stab_handle *, const char **, debug_field *, const char *);
179 static bool parse_stab_one_struct_field
180 (void *, struct stab_handle *, const char **, const char *,
181 debug_field *, bool *, const char *);
182 static bool parse_stab_members
183 (void *, struct stab_handle *, const char *, const char **, const int *,
184 debug_method **, const char *);
185 static debug_type parse_stab_argtypes
186 (void *, struct stab_handle *, debug_type, const char *, const char *,
187 debug_type, const char *, bool, bool, const char **);
188 static bool parse_stab_tilde_field
189 (void *, struct stab_handle *, const char **, const int *, debug_type *,
190 bool *, const char *);
191 static debug_type parse_stab_array_type
192 (void *, struct stab_handle *, const char **, bool, const char *);
193 static void push_bincl (struct stab_handle *, const char *, bfd_vma);
194 static const char *pop_bincl (struct stab_handle *);
195 static bool find_excl (struct stab_handle *, const char *, bfd_vma);
196 static bool stab_record_variable
197 (void *, struct stab_handle *, const char *, debug_type,
198 enum debug_var_kind, bfd_vma);
199 static bool stab_emit_pending_vars (void *, struct stab_handle *);
200 static debug_type *stab_find_slot (struct stab_handle *, const int *);
201 static debug_type stab_find_type (void *, struct stab_handle *, const int *);
202 static bool stab_record_type
203 (void *, struct stab_handle *, const int *, debug_type);
204 static debug_type stab_xcoff_builtin_type
205 (void *, struct stab_handle *, unsigned int);
206 static debug_type stab_find_tagged_type
207 (void *, struct stab_handle *, const char *, int, enum debug_type_kind);
208 static debug_type *stab_demangle_argtypes
209 (void *, struct stab_handle *, const char *, bool *, unsigned int);
210 static debug_type *stab_demangle_v3_argtypes
211 (void *, struct stab_handle *, const char *, bool *);
212 static debug_type *stab_demangle_v3_arglist
213 (void *, struct stab_handle *, struct demangle_component *, bool *);
214 static debug_type stab_demangle_v3_arg
215 (void *, struct stab_handle *, struct demangle_component *, debug_type,
216 bool *);
217
218 static int demangle_flags = DMGL_ANSI;
219
220 /* Save a string in memory. */
221
222 static char *
223 savestring (const char *start, int len)
224 {
225 char *ret;
226
227 ret = (char *) xmalloc (len + 1);
228 memcpy (ret, start, len);
229 ret[len] = '\0';
230 return ret;
231 }
232
233 /* Read a number from a string. */
234
235 static bfd_vma
236 parse_number (const char **pp, bool *poverflow, const char *p_end)
237 {
238 unsigned long ul;
239 const char *orig;
240
241 if (poverflow != NULL)
242 *poverflow = false;
243
244 orig = *pp;
245 if (orig >= p_end)
246 return (bfd_vma) 0;
247
248 /* Stop early if we are passed an empty string. */
249 if (*orig == 0)
250 return (bfd_vma) 0;
251
252 errno = 0;
253 ul = strtoul (*pp, (char **) pp, 0);
254 if (ul + 1 != 0 || errno == 0)
255 {
256 /* If bfd_vma is larger than unsigned long, and the number is
257 meant to be negative, we have to make sure that we sign
258 extend properly. */
259 if (*orig == '-')
260 return (bfd_vma) (bfd_signed_vma) (long) ul;
261 return (bfd_vma) ul;
262 }
263
264 /* Note that even though strtoul overflowed, it should have set *pp
265 to the end of the number, which is where we want it. */
266 if (sizeof (bfd_vma) > sizeof (unsigned long))
267 {
268 const char *p;
269 bool neg;
270 int base;
271 bfd_vma over, lastdig;
272 bool overflow;
273 bfd_vma v;
274
275 /* Our own version of strtoul, for a bfd_vma. */
276 p = orig;
277
278 neg = false;
279 if (*p == '+')
280 ++p;
281 else if (*p == '-')
282 {
283 neg = true;
284 ++p;
285 }
286
287 base = 10;
288 if (*p == '0')
289 {
290 if (p[1] == 'x' || p[1] == 'X')
291 {
292 base = 16;
293 p += 2;
294 }
295 else
296 {
297 base = 8;
298 ++p;
299 }
300 }
301
302 over = ((bfd_vma) (bfd_signed_vma) -1) / (bfd_vma) base;
303 lastdig = ((bfd_vma) (bfd_signed_vma) -1) % (bfd_vma) base;
304
305 overflow = false;
306 v = 0;
307 while (1)
308 {
309 int d;
310
311 d = *p++;
312 if (ISDIGIT (d))
313 d -= '0';
314 else if (ISUPPER (d))
315 d -= 'A';
316 else if (ISLOWER (d))
317 d -= 'a';
318 else
319 break;
320
321 if (d >= base)
322 break;
323
324 if (v > over || (v == over && (bfd_vma) d > lastdig))
325 {
326 overflow = true;
327 break;
328 }
329 }
330
331 if (! overflow)
332 {
333 if (neg)
334 v = - v;
335 return v;
336 }
337 }
338
339 /* If we get here, the number is too large to represent in a
340 bfd_vma. */
341 if (poverflow != NULL)
342 *poverflow = true;
343 else
344 warn_stab (orig, _("numeric overflow"));
345
346 return 0;
347 }
348
349 /* Give an error for a bad stab string. */
350
351 static void
352 bad_stab (const char *p)
353 {
354 fprintf (stderr, _("Bad stab: %s\n"), p);
355 }
356
357 /* Warn about something in a stab string. */
358
359 static void
360 warn_stab (const char *p, const char *err)
361 {
362 fprintf (stderr, _("Warning: %s: %s\n"), err, p);
363 }
364
365 /* Create a handle to parse stabs symbols with. */
366
367 void *
368 start_stab (void *dhandle ATTRIBUTE_UNUSED, bfd *abfd, bool sections,
369 asymbol **syms, long symcount)
370 {
371 struct stab_handle *ret;
372
373 ret = (struct stab_handle *) xmalloc (sizeof *ret);
374 memset (ret, 0, sizeof *ret);
375 ret->abfd = abfd;
376 ret->sections = sections;
377 ret->syms = syms;
378 ret->symcount = symcount;
379 ret->files = 1;
380 ret->file_types = (struct stab_types **) xmalloc (sizeof *ret->file_types);
381 ret->file_types[0] = NULL;
382 ret->function_end = (bfd_vma) -1;
383 return (void *) ret;
384 }
385
386 /* When we have processed all the stabs information, we need to go
387 through and fill in all the undefined tags. */
388
389 bool
390 finish_stab (void *dhandle, void *handle)
391 {
392 struct stab_handle *info = (struct stab_handle *) handle;
393 struct stab_tag *st;
394
395 if (info->within_function)
396 {
397 if (! stab_emit_pending_vars (dhandle, info)
398 || ! debug_end_function (dhandle, info->function_end))
399 return false;
400 info->within_function = false;
401 info->function_end = (bfd_vma) -1;
402 }
403
404 for (st = info->tags; st != NULL; st = st->next)
405 {
406 enum debug_type_kind kind;
407
408 kind = st->kind;
409 if (kind == DEBUG_KIND_ILLEGAL)
410 kind = DEBUG_KIND_STRUCT;
411 st->slot = debug_make_undefined_tagged_type (dhandle, st->name, kind);
412 if (st->slot == DEBUG_TYPE_NULL)
413 return false;
414 }
415
416 return true;
417 }
418
419 /* Handle a single stabs symbol. */
420
421 bool
422 parse_stab (void *dhandle, void *handle, int type, int desc, bfd_vma value,
423 const char *string)
424 {
425 const char * string_end;
426 struct stab_handle *info = (struct stab_handle *) handle;
427
428 /* gcc will emit two N_SO strings per compilation unit, one for the
429 directory name and one for the file name. We just collect N_SO
430 strings as we see them, and start the new compilation unit when
431 we see a non N_SO symbol. */
432 if (info->so_string != NULL
433 && (type != N_SO || *string == '\0' || value != info->so_value))
434 {
435 if (! debug_set_filename (dhandle, info->so_string))
436 return false;
437 info->main_filename = info->so_string;
438
439 info->gcc_compiled = 0;
440 info->n_opt_found = false;
441
442 /* Generally, for stabs in the symbol table, the N_LBRAC and
443 N_RBRAC symbols are relative to the N_SO symbol value. */
444 if (! info->sections)
445 info->file_start_offset = info->so_value;
446
447 /* We need to reset the mapping from type numbers to types. We
448 can't free the old mapping, because of the use of
449 debug_make_indirect_type. */
450 info->files = 1;
451 info->file_types = ((struct stab_types **)
452 xmalloc (sizeof *info->file_types));
453 info->file_types[0] = NULL;
454 info->so_string = NULL;
455
456 /* Now process whatever type we just got. */
457 }
458
459 string_end = string + strlen (string);
460
461 switch (type)
462 {
463 case N_FN:
464 case N_FN_SEQ:
465 break;
466
467 case N_LBRAC:
468 /* Ignore extra outermost context from SunPRO cc and acc. */
469 if (info->n_opt_found && desc == 1)
470 break;
471
472 if (! info->within_function)
473 {
474 fprintf (stderr, _("N_LBRAC not within function\n"));
475 return false;
476 }
477
478 /* Start an inner lexical block. */
479 if (! debug_start_block (dhandle,
480 (value
481 + info->file_start_offset
482 + info->function_start_offset)))
483 return false;
484
485 /* Emit any pending variable definitions. */
486 if (! stab_emit_pending_vars (dhandle, info))
487 return false;
488
489 ++info->block_depth;
490 break;
491
492 case N_RBRAC:
493 /* Ignore extra outermost context from SunPRO cc and acc. */
494 if (info->n_opt_found && desc == 1)
495 break;
496
497 /* We shouldn't have any pending variable definitions here, but,
498 if we do, we probably need to emit them before closing the
499 block. */
500 if (! stab_emit_pending_vars (dhandle, info))
501 return false;
502
503 /* End an inner lexical block. */
504 if (! debug_end_block (dhandle,
505 (value
506 + info->file_start_offset
507 + info->function_start_offset)))
508 return false;
509
510 --info->block_depth;
511 if (info->block_depth < 0)
512 {
513 fprintf (stderr, _("Too many N_RBRACs\n"));
514 return false;
515 }
516 break;
517
518 case N_SO:
519 /* This always ends a function. */
520 if (info->within_function)
521 {
522 bfd_vma endval;
523
524 endval = value;
525 if (*string != '\0'
526 && info->function_end != (bfd_vma) -1
527 && info->function_end < endval)
528 endval = info->function_end;
529 if (! stab_emit_pending_vars (dhandle, info)
530 || ! debug_end_function (dhandle, endval))
531 return false;
532 info->within_function = false;
533 info->function_end = (bfd_vma) -1;
534 }
535
536 /* An empty string is emitted by gcc at the end of a compilation
537 unit. */
538 if (*string == '\0')
539 return true;
540
541 /* Just accumulate strings until we see a non N_SO symbol. If
542 the string starts with a directory separator or some other
543 form of absolute path specification, we discard the previously
544 accumulated strings. */
545 if (info->so_string == NULL)
546 info->so_string = xstrdup (string);
547 else
548 {
549 char *f;
550
551 f = info->so_string;
552
553 if (IS_ABSOLUTE_PATH (string))
554 info->so_string = xstrdup (string);
555 else
556 info->so_string = concat (info->so_string, string,
557 (const char *) NULL);
558 free (f);
559 }
560
561 info->so_value = value;
562
563 break;
564
565 case N_SOL:
566 /* Start an include file. */
567 if (! debug_start_source (dhandle, string))
568 return false;
569 break;
570
571 case N_BINCL:
572 /* Start an include file which may be replaced. */
573 push_bincl (info, string, value);
574 if (! debug_start_source (dhandle, string))
575 return false;
576 break;
577
578 case N_EINCL:
579 /* End an N_BINCL include. */
580 if (! debug_start_source (dhandle, pop_bincl (info)))
581 return false;
582 break;
583
584 case N_EXCL:
585 /* This is a duplicate of a header file named by N_BINCL which
586 was eliminated by the linker. */
587 if (! find_excl (info, string, value))
588 return false;
589 break;
590
591 case N_SLINE:
592 if (! debug_record_line (dhandle, desc,
593 value + (info->within_function
594 ? info->function_start_offset : 0)))
595 return false;
596 break;
597
598 case N_BCOMM:
599 if (! debug_start_common_block (dhandle, string))
600 return false;
601 break;
602
603 case N_ECOMM:
604 if (! debug_end_common_block (dhandle, string))
605 return false;
606 break;
607
608 case N_FUN:
609 if (*string == '\0')
610 {
611 if (info->within_function)
612 {
613 /* This always marks the end of a function; we don't
614 need to worry about info->function_end. */
615 if (info->sections)
616 value += info->function_start_offset;
617 if (! stab_emit_pending_vars (dhandle, info)
618 || ! debug_end_function (dhandle, value))
619 return false;
620 info->within_function = false;
621 info->function_end = (bfd_vma) -1;
622 }
623 break;
624 }
625
626 /* A const static symbol in the .text section will have an N_FUN
627 entry. We need to use these to mark the end of the function,
628 in case we are looking at gcc output before it was changed to
629 always emit an empty N_FUN. We can't call debug_end_function
630 here, because it might be a local static symbol. */
631 if (info->within_function
632 && (info->function_end == (bfd_vma) -1
633 || value < info->function_end))
634 info->function_end = value;
635
636 /* Fall through. */
637 /* FIXME: gdb checks the string for N_STSYM, N_LCSYM or N_ROSYM
638 symbols, and if it does not start with :S, gdb relocates the
639 value to the start of the section. gcc always seems to use
640 :S, so we don't worry about this. */
641 /* Fall through. */
642 default:
643 {
644 const char *colon;
645
646 colon = strchr (string, ':');
647 if (colon != NULL
648 && (colon[1] == 'f' || colon[1] == 'F'))
649 {
650 if (info->within_function)
651 {
652 bfd_vma endval;
653
654 endval = value;
655 if (info->function_end != (bfd_vma) -1
656 && info->function_end < endval)
657 endval = info->function_end;
658 if (! stab_emit_pending_vars (dhandle, info)
659 || ! debug_end_function (dhandle, endval))
660 return false;
661 info->function_end = (bfd_vma) -1;
662 }
663 /* For stabs in sections, line numbers and block addresses
664 are offsets from the start of the function. */
665 if (info->sections)
666 info->function_start_offset = value;
667 info->within_function = true;
668 }
669
670 if (! parse_stab_string (dhandle, info, type, desc, value, string, string_end))
671 return false;
672 }
673 break;
674
675 case N_OPT:
676 if (string != NULL && strcmp (string, "gcc2_compiled.") == 0)
677 info->gcc_compiled = 2;
678 else if (string != NULL && strcmp (string, "gcc_compiled.") == 0)
679 info->gcc_compiled = 1;
680 else
681 info->n_opt_found = true;
682 break;
683
684 case N_OBJ:
685 case N_ENDM:
686 case N_MAIN:
687 case N_WARNING:
688 break;
689 }
690
691 return true;
692 }
693
694 /* Parse the stabs string. */
695
696 static bool
697 parse_stab_string (void *dhandle, struct stab_handle *info, int stabtype,
698 int desc ATTRIBUTE_UNUSED, bfd_vma value,
699 const char *string, const char * string_end)
700 {
701 const char *p;
702 char *name;
703 int type;
704 debug_type dtype;
705 bool synonym;
706 bool self_crossref;
707 debug_type *slot;
708
709 p = strchr (string, ':');
710 if (p == NULL)
711 return true;
712
713 while (p[1] == ':')
714 {
715 p += 2;
716 p = strchr (p, ':');
717 if (p == NULL)
718 {
719 bad_stab (string);
720 return false;
721 }
722 }
723
724 /* FIXME: Sometimes the special C++ names start with '.'. */
725 name = NULL;
726 if (string[0] == '$')
727 {
728 switch (string[1])
729 {
730 case 't':
731 name = "this";
732 break;
733 case 'v':
734 /* Was: name = "vptr"; */
735 break;
736 case 'e':
737 name = "eh_throw";
738 break;
739 case '_':
740 /* This was an anonymous type that was never fixed up. */
741 break;
742 case 'X':
743 /* SunPRO (3.0 at least) static variable encoding. */
744 break;
745 default:
746 warn_stab (string, _("unknown C++ encoded name"));
747 break;
748 }
749 }
750
751 if (name == NULL)
752 {
753 if (p == string || (string[0] == ' ' && p == string + 1))
754 name = NULL;
755 else
756 name = savestring (string, p - string);
757 }
758
759 ++p;
760 if (ISDIGIT (*p) || *p == '(' || *p == '-')
761 type = 'l';
762 else if (*p == 0)
763 {
764 bad_stab (string);
765 return false;
766 }
767 else
768 type = *p++;
769
770 switch (type)
771 {
772 case 'c':
773 /* c is a special case, not followed by a type-number.
774 SYMBOL:c=iVALUE for an integer constant symbol.
775 SYMBOL:c=rVALUE for a floating constant symbol.
776 SYMBOL:c=eTYPE,INTVALUE for an enum constant symbol.
777 e.g. "b:c=e6,0" for "const b = blob1"
778 (where type 6 is defined by "blobs:t6=eblob1:0,blob2:1,;"). */
779 if (*p != '=')
780 {
781 bad_stab (string);
782 return false;
783 }
784 ++p;
785 switch (*p++)
786 {
787 case 'r':
788 /* Floating point constant. */
789 if (! debug_record_float_const (dhandle, name, atof (p)))
790 return false;
791 break;
792 case 'i':
793 /* Integer constant. */
794 /* Defining integer constants this way is kind of silly,
795 since 'e' constants allows the compiler to give not only
796 the value, but the type as well. C has at least int,
797 long, unsigned int, and long long as constant types;
798 other languages probably should have at least unsigned as
799 well as signed constants. */
800 if (! debug_record_int_const (dhandle, name, atoi (p)))
801 return false;
802 break;
803 case 'e':
804 /* SYMBOL:c=eTYPE,INTVALUE for a constant symbol whose value
805 can be represented as integral.
806 e.g. "b:c=e6,0" for "const b = blob1"
807 (where type 6 is defined by "blobs:t6=eblob1:0,blob2:1,;"). */
808 dtype = parse_stab_type (dhandle, info, (const char *) NULL,
809 &p, (debug_type **) NULL, string_end);
810 if (dtype == DEBUG_TYPE_NULL)
811 return false;
812 if (*p != ',')
813 {
814 bad_stab (string);
815 return false;
816 }
817 if (! debug_record_typed_const (dhandle, name, dtype, atoi (p)))
818 return false;
819 break;
820 default:
821 bad_stab (string);
822 return false;
823 }
824
825 break;
826
827 case 'C':
828 /* The name of a caught exception. */
829 dtype = parse_stab_type (dhandle, info, (const char *) NULL,
830 &p, (debug_type **) NULL, string_end);
831 if (dtype == DEBUG_TYPE_NULL)
832 return false;
833 if (! debug_record_label (dhandle, name, dtype, value))
834 return false;
835 break;
836
837 case 'f':
838 case 'F':
839 /* A function definition. */
840 dtype = parse_stab_type (dhandle, info, (const char *) NULL, &p,
841 (debug_type **) NULL, string_end);
842 if (dtype == DEBUG_TYPE_NULL)
843 return false;
844 if (! debug_record_function (dhandle, name, dtype, type == 'F', value))
845 return false;
846
847 /* Sun acc puts declared types of arguments here. We don't care
848 about their actual types (FIXME -- we should remember the whole
849 function prototype), but the list may define some new types
850 that we have to remember, so we must scan it now. */
851 while (*p == ';')
852 {
853 ++p;
854 if (parse_stab_type (dhandle, info, (const char *) NULL, &p,
855 (debug_type **) NULL, string_end)
856 == DEBUG_TYPE_NULL)
857 return false;
858 }
859
860 break;
861
862 case 'G':
863 {
864 asymbol **ps;
865
866 /* A global symbol. The value must be extracted from the
867 symbol table. */
868 dtype = parse_stab_type (dhandle, info, (const char *) NULL, &p,
869 (debug_type **) NULL, string_end);
870 if (dtype == DEBUG_TYPE_NULL)
871 return false;
872 if (name != NULL)
873 {
874 char leading;
875 long c;
876
877 leading = bfd_get_symbol_leading_char (info->abfd);
878 for (c = info->symcount, ps = info->syms; c > 0; --c, ++ps)
879 {
880 const char *n;
881
882 n = bfd_asymbol_name (*ps);
883 if (leading != '\0' && *n == leading)
884 ++n;
885 if (*n == *name && strcmp (n, name) == 0)
886 break;
887 }
888
889 if (c > 0)
890 value = bfd_asymbol_value (*ps);
891 }
892
893 if (! stab_record_variable (dhandle, info, name, dtype, DEBUG_GLOBAL,
894 value))
895 return false;
896 }
897 break;
898
899 /* This case is faked by a conditional above, when there is no
900 code letter in the dbx data. Dbx data never actually
901 contains 'l'. */
902 case 'l':
903 case 's':
904 dtype = parse_stab_type (dhandle, info, (const char *) NULL, &p,
905 (debug_type **) NULL, string_end);
906 if (dtype == DEBUG_TYPE_NULL)
907 return false;
908 if (! stab_record_variable (dhandle, info, name, dtype, DEBUG_LOCAL,
909 value))
910 return false;
911 break;
912
913 case 'p':
914 /* A function parameter. */
915 if (*p != 'F')
916 dtype = parse_stab_type (dhandle, info, (const char *) NULL, &p,
917 (debug_type **) NULL, string_end);
918 else
919 {
920 /* pF is a two-letter code that means a function parameter in
921 Fortran. The type-number specifies the type of the return
922 value. Translate it into a pointer-to-function type. */
923 ++p;
924 dtype = parse_stab_type (dhandle, info, (const char *) NULL, &p,
925 (debug_type **) NULL, string_end);
926 if (dtype != DEBUG_TYPE_NULL)
927 {
928 debug_type ftype;
929
930 ftype = debug_make_function_type (dhandle, dtype,
931 (debug_type *) NULL, false);
932 dtype = debug_make_pointer_type (dhandle, ftype);
933 }
934 }
935 if (dtype == DEBUG_TYPE_NULL)
936 return false;
937 if (! debug_record_parameter (dhandle, name, dtype, DEBUG_PARM_STACK,
938 value))
939 return false;
940
941 /* FIXME: At this point gdb considers rearranging the parameter
942 address on a big endian machine if it is smaller than an int.
943 We have no way to do that, since we don't really know much
944 about the target. */
945 break;
946
947 case 'P':
948 if (stabtype == N_FUN)
949 {
950 /* Prototype of a function referenced by this file. */
951 while (*p == ';')
952 {
953 ++p;
954 if (parse_stab_type (dhandle, info, (const char *) NULL, &p,
955 (debug_type **) NULL, string_end)
956 == DEBUG_TYPE_NULL)
957 return false;
958 }
959 break;
960 }
961 /* Fall through. */
962 case 'R':
963 /* Parameter which is in a register. */
964 dtype = parse_stab_type (dhandle, info, (const char *) NULL, &p,
965 (debug_type **) NULL, string_end);
966 if (dtype == DEBUG_TYPE_NULL)
967 return false;
968 if (! debug_record_parameter (dhandle, name, dtype, DEBUG_PARM_REG,
969 value))
970 return false;
971 break;
972
973 case 'r':
974 /* Register variable (either global or local). */
975 dtype = parse_stab_type (dhandle, info, (const char *) NULL, &p,
976 (debug_type **) NULL, string_end);
977 if (dtype == DEBUG_TYPE_NULL)
978 return false;
979 if (! stab_record_variable (dhandle, info, name, dtype, DEBUG_REGISTER,
980 value))
981 return false;
982
983 /* FIXME: At this point gdb checks to combine pairs of 'p' and
984 'r' stabs into a single 'P' stab. */
985 break;
986
987 case 'S':
988 /* Static symbol at top level of file. */
989 dtype = parse_stab_type (dhandle, info, (const char *) NULL, &p,
990 (debug_type **) NULL, string_end);
991 if (dtype == DEBUG_TYPE_NULL)
992 return false;
993 if (! stab_record_variable (dhandle, info, name, dtype, DEBUG_STATIC,
994 value))
995 return false;
996 break;
997
998 case 't':
999 /* A typedef. */
1000 dtype = parse_stab_type (dhandle, info, name, &p, &slot, string_end);
1001 if (dtype == DEBUG_TYPE_NULL)
1002 return false;
1003 if (name == NULL)
1004 {
1005 /* A nameless type. Nothing to do. */
1006 return true;
1007 }
1008
1009 dtype = debug_name_type (dhandle, name, dtype);
1010 if (dtype == DEBUG_TYPE_NULL)
1011 return false;
1012
1013 if (slot != NULL)
1014 *slot = dtype;
1015
1016 break;
1017
1018 case 'T':
1019 /* Struct, union, or enum tag. For GNU C++, this can be followed
1020 by 't' which means we are typedef'ing it as well. */
1021 if (*p != 't')
1022 {
1023 synonym = false;
1024 /* FIXME: gdb sets synonym to TRUE if the current language
1025 is C++. */
1026 }
1027 else
1028 {
1029 synonym = true;
1030 ++p;
1031 }
1032
1033 dtype = parse_stab_type (dhandle, info, name, &p, &slot, string_end);
1034 if (dtype == DEBUG_TYPE_NULL)
1035 return false;
1036 if (name == NULL)
1037 return true;
1038
1039 /* INFO->SELF_CROSSREF is set by parse_stab_type if this type is
1040 a cross reference to itself. These are generated by some
1041 versions of g++. */
1042 self_crossref = info->self_crossref;
1043
1044 dtype = debug_tag_type (dhandle, name, dtype);
1045 if (dtype == DEBUG_TYPE_NULL)
1046 return false;
1047 if (slot != NULL)
1048 *slot = dtype;
1049
1050 /* See if we have a cross reference to this tag which we can now
1051 fill in. Avoid filling in a cross reference to ourselves,
1052 because that would lead to circular debugging information. */
1053 if (! self_crossref)
1054 {
1055 register struct stab_tag **pst;
1056
1057 for (pst = &info->tags; *pst != NULL; pst = &(*pst)->next)
1058 {
1059 if ((*pst)->name[0] == name[0]
1060 && strcmp ((*pst)->name, name) == 0)
1061 {
1062 (*pst)->slot = dtype;
1063 *pst = (*pst)->next;
1064 break;
1065 }
1066 }
1067 }
1068
1069 if (synonym)
1070 {
1071 dtype = debug_name_type (dhandle, name, dtype);
1072 if (dtype == DEBUG_TYPE_NULL)
1073 return false;
1074
1075 if (slot != NULL)
1076 *slot = dtype;
1077 }
1078
1079 break;
1080
1081 case 'V':
1082 /* Static symbol of local scope */
1083 dtype = parse_stab_type (dhandle, info, (const char *) NULL, &p,
1084 (debug_type **) NULL, string_end);
1085 if (dtype == DEBUG_TYPE_NULL)
1086 return false;
1087 /* FIXME: gdb checks os9k_stabs here. */
1088 if (! stab_record_variable (dhandle, info, name, dtype,
1089 DEBUG_LOCAL_STATIC, value))
1090 return false;
1091 break;
1092
1093 case 'v':
1094 /* Reference parameter. */
1095 dtype = parse_stab_type (dhandle, info, (const char *) NULL, &p,
1096 (debug_type **) NULL, string_end);
1097 if (dtype == DEBUG_TYPE_NULL)
1098 return false;
1099 if (! debug_record_parameter (dhandle, name, dtype, DEBUG_PARM_REFERENCE,
1100 value))
1101 return false;
1102 break;
1103
1104 case 'a':
1105 /* Reference parameter which is in a register. */
1106 dtype = parse_stab_type (dhandle, info, (const char *) NULL, &p,
1107 (debug_type **) NULL, string_end);
1108 if (dtype == DEBUG_TYPE_NULL)
1109 return false;
1110 if (! debug_record_parameter (dhandle, name, dtype, DEBUG_PARM_REF_REG,
1111 value))
1112 return false;
1113 break;
1114
1115 case 'X':
1116 /* This is used by Sun FORTRAN for "function result value".
1117 Sun claims ("dbx and dbxtool interfaces", 2nd ed)
1118 that Pascal uses it too, but when I tried it Pascal used
1119 "x:3" (local symbol) instead. */
1120 dtype = parse_stab_type (dhandle, info, (const char *) NULL, &p,
1121 (debug_type **) NULL, string_end);
1122 if (dtype == DEBUG_TYPE_NULL)
1123 return false;
1124 if (! stab_record_variable (dhandle, info, name, dtype, DEBUG_LOCAL,
1125 value))
1126 return false;
1127 break;
1128
1129 case 'Y':
1130 /* SUNPro C++ Namespace =Yn0. */
1131 /* Skip the namespace mapping, as it is not used now. */
1132 if (*p++ != 0 && *p++ == 'n' && *p++ == '0')
1133 {
1134 /* =Yn0name; */
1135 while (*p && *p != ';')
1136 ++p;
1137 if (*p)
1138 return true;
1139 }
1140 /* TODO SUNPro C++ support:
1141 Support default arguments after F,P parameters
1142 Ya = Anonymous unions
1143 YM,YD = Pointers to class members
1144 YT,YI = Templates
1145 YR = Run-time type information (RTTI) */
1146
1147 /* Fall through. */
1148
1149 default:
1150 bad_stab (string);
1151 return false;
1152 }
1153
1154 /* FIXME: gdb converts structure values to structure pointers in a
1155 couple of cases, depending upon the target. */
1156
1157 return true;
1158 }
1159
1160 /* Parse a stabs type. The typename argument is non-NULL if this is a
1161 typedef or a tag definition. The pp argument points to the stab
1162 string, and is updated. The slotp argument points to a place to
1163 store the slot used if the type is being defined. */
1164
1165 static debug_type
1166 parse_stab_type (void * dhandle,
1167 struct stab_handle * info,
1168 const char * type_name,
1169 const char ** pp,
1170 debug_type ** slotp,
1171 const char * p_end)
1172 {
1173 const char *orig;
1174 int typenums[2];
1175 int size;
1176 bool stringp;
1177 int descriptor;
1178 debug_type dtype;
1179
1180 if (slotp != NULL)
1181 *slotp = NULL;
1182
1183 orig = *pp;
1184 if (orig >= p_end)
1185 return DEBUG_TYPE_NULL;
1186
1187 size = -1;
1188 stringp = false;
1189
1190 info->self_crossref = false;
1191
1192 /* Read type number if present. The type number may be omitted.
1193 for instance in a two-dimensional array declared with type
1194 "ar1;1;10;ar1;1;10;4". */
1195 if (! ISDIGIT (**pp) && **pp != '(' && **pp != '-')
1196 {
1197 /* 'typenums=' not present, type is anonymous. Read and return
1198 the definition, but don't put it in the type vector. */
1199 typenums[0] = typenums[1] = -1;
1200 }
1201 else
1202 {
1203 if (! parse_stab_type_number (pp, typenums, p_end))
1204 return DEBUG_TYPE_NULL;
1205
1206 if (**pp != '=')
1207 /* Type is not being defined here. Either it already
1208 exists, or this is a forward reference to it. */
1209 return stab_find_type (dhandle, info, typenums);
1210
1211 /* Only set the slot if the type is being defined. This means
1212 that the mapping from type numbers to types will only record
1213 the name of the typedef which defines a type. If we don't do
1214 this, then something like
1215 typedef int foo;
1216 int i;
1217 will record that i is of type foo. Unfortunately, stabs
1218 information is ambiguous about variable types. For this code,
1219 typedef int foo;
1220 int i;
1221 foo j;
1222 the stabs information records both i and j as having the same
1223 type. This could be fixed by patching the compiler. */
1224 if (slotp != NULL && typenums[0] >= 0 && typenums[1] >= 0)
1225 *slotp = stab_find_slot (info, typenums);
1226
1227 /* Type is being defined here. */
1228 /* Skip the '='. */
1229 ++*pp;
1230
1231 while (**pp == '@')
1232 {
1233 const char *p = *pp + 1;
1234 const char *attr;
1235
1236 if (ISDIGIT (*p) || *p == '(' || *p == '-')
1237 /* Member type. */
1238 break;
1239
1240 /* Type attributes. */
1241 attr = p;
1242
1243 for (; *p != ';'; ++p)
1244 {
1245 if (*p == '\0')
1246 {
1247 bad_stab (orig);
1248 return DEBUG_TYPE_NULL;
1249 }
1250 }
1251 *pp = p + 1;
1252
1253 switch (*attr)
1254 {
1255 case 's':
1256 size = atoi (attr + 1);
1257 size /= 8; /* Size is in bits. We store it in bytes. */
1258 if (size <= 0)
1259 size = -1;
1260 break;
1261
1262 case 'S':
1263 stringp = true;
1264 break;
1265
1266 case 0:
1267 bad_stab (orig);
1268 return DEBUG_TYPE_NULL;
1269
1270 default:
1271 /* Ignore unrecognized type attributes, so future
1272 compilers can invent new ones. */
1273 break;
1274 }
1275 }
1276 }
1277
1278 descriptor = **pp;
1279 ++*pp;
1280
1281 switch (descriptor)
1282 {
1283 case 'x':
1284 {
1285 enum debug_type_kind code;
1286 const char *q1, *q2, *p;
1287
1288 /* A cross reference to another type. */
1289 switch (**pp)
1290 {
1291 case 's':
1292 code = DEBUG_KIND_STRUCT;
1293 break;
1294 case 'u':
1295 code = DEBUG_KIND_UNION;
1296 break;
1297 case 'e':
1298 code = DEBUG_KIND_ENUM;
1299 break;
1300 case 0:
1301 bad_stab (orig);
1302 return DEBUG_TYPE_NULL;
1303
1304 default:
1305 /* Complain and keep going, so compilers can invent new
1306 cross-reference types. */
1307 warn_stab (orig, _("unrecognized cross reference type"));
1308 code = DEBUG_KIND_STRUCT;
1309 break;
1310 }
1311 ++*pp;
1312
1313 q1 = strchr (*pp, '<');
1314 p = strchr (*pp, ':');
1315 if (p == NULL)
1316 {
1317 bad_stab (orig);
1318 return DEBUG_TYPE_NULL;
1319 }
1320 if (q1 != NULL && p > q1 && p[1] == ':')
1321 {
1322 int nest = 0;
1323
1324 for (q2 = q1; *q2 != '\0'; ++q2)
1325 {
1326 if (*q2 == '<')
1327 ++nest;
1328 else if (*q2 == '>')
1329 --nest;
1330 else if (*q2 == ':' && nest == 0)
1331 break;
1332 }
1333 p = q2;
1334 if (*p != ':')
1335 {
1336 bad_stab (orig);
1337 return DEBUG_TYPE_NULL;
1338 }
1339 }
1340
1341 /* Some versions of g++ can emit stabs like
1342 fleep:T20=xsfleep:
1343 which define structures in terms of themselves. We need to
1344 tell the caller to avoid building a circular structure. */
1345 if (type_name != NULL
1346 && strncmp (type_name, *pp, p - *pp) == 0
1347 && type_name[p - *pp] == '\0')
1348 info->self_crossref = true;
1349
1350 dtype = stab_find_tagged_type (dhandle, info, *pp, p - *pp, code);
1351
1352 *pp = p + 1;
1353 }
1354 break;
1355
1356 case '-':
1357 case '0':
1358 case '1':
1359 case '2':
1360 case '3':
1361 case '4':
1362 case '5':
1363 case '6':
1364 case '7':
1365 case '8':
1366 case '9':
1367 case '(':
1368 {
1369 const char *hold;
1370 int xtypenums[2];
1371
1372 /* This type is defined as another type. */
1373 (*pp)--;
1374 hold = *pp;
1375
1376 /* Peek ahead at the number to detect void. */
1377 if (! parse_stab_type_number (pp, xtypenums, p_end))
1378 return DEBUG_TYPE_NULL;
1379
1380 if (typenums[0] == xtypenums[0] && typenums[1] == xtypenums[1])
1381 {
1382 /* This type is being defined as itself, which means that
1383 it is void. */
1384 dtype = debug_make_void_type (dhandle);
1385 }
1386 else
1387 {
1388 *pp = hold;
1389
1390 /* Go back to the number and have parse_stab_type get it.
1391 This means that we can deal with something like
1392 t(1,2)=(3,4)=... which the Lucid compiler uses. */
1393 dtype = parse_stab_type (dhandle, info, (const char *) NULL,
1394 pp, (debug_type **) NULL, p_end);
1395 if (dtype == DEBUG_TYPE_NULL)
1396 return DEBUG_TYPE_NULL;
1397 }
1398
1399 if (typenums[0] != -1)
1400 {
1401 if (! stab_record_type (dhandle, info, typenums, dtype))
1402 return DEBUG_TYPE_NULL;
1403 }
1404
1405 break;
1406 }
1407
1408 case '*':
1409 dtype = debug_make_pointer_type (dhandle,
1410 parse_stab_type (dhandle, info,
1411 (const char *) NULL,
1412 pp,
1413 (debug_type **) NULL,
1414 p_end));
1415 break;
1416
1417 case '&':
1418 /* Reference to another type. */
1419 dtype = (debug_make_reference_type
1420 (dhandle,
1421 parse_stab_type (dhandle, info, (const char *) NULL, pp,
1422 (debug_type **) NULL, p_end)));
1423 break;
1424
1425 case 'f':
1426 /* Function returning another type. */
1427 /* FIXME: gdb checks os9k_stabs here. */
1428 dtype = (debug_make_function_type
1429 (dhandle,
1430 parse_stab_type (dhandle, info, (const char *) NULL, pp,
1431 (debug_type **) NULL, p_end),
1432 (debug_type *) NULL, false));
1433 break;
1434
1435 case 'k':
1436 /* Const qualifier on some type (Sun). */
1437 /* FIXME: gdb accepts 'c' here if os9k_stabs. */
1438 dtype = debug_make_const_type (dhandle,
1439 parse_stab_type (dhandle, info,
1440 (const char *) NULL,
1441 pp,
1442 (debug_type **) NULL,
1443 p_end));
1444 break;
1445
1446 case 'B':
1447 /* Volatile qual on some type (Sun). */
1448 /* FIXME: gdb accepts 'i' here if os9k_stabs. */
1449 dtype = (debug_make_volatile_type
1450 (dhandle,
1451 parse_stab_type (dhandle, info, (const char *) NULL, pp,
1452 (debug_type **) NULL, p_end)));
1453 break;
1454
1455 case '@':
1456 /* Offset (class & variable) type. This is used for a pointer
1457 relative to an object. */
1458 {
1459 debug_type domain;
1460 debug_type memtype;
1461
1462 /* Member type. */
1463
1464 domain = parse_stab_type (dhandle, info, (const char *) NULL, pp,
1465 (debug_type **) NULL, p_end);
1466 if (domain == DEBUG_TYPE_NULL)
1467 return DEBUG_TYPE_NULL;
1468
1469 if (**pp != ',')
1470 {
1471 bad_stab (orig);
1472 return DEBUG_TYPE_NULL;
1473 }
1474 ++*pp;
1475
1476 memtype = parse_stab_type (dhandle, info, (const char *) NULL, pp,
1477 (debug_type **) NULL, p_end);
1478 if (memtype == DEBUG_TYPE_NULL)
1479 return DEBUG_TYPE_NULL;
1480
1481 dtype = debug_make_offset_type (dhandle, domain, memtype);
1482 }
1483 break;
1484
1485 case '#':
1486 /* Method (class & fn) type. */
1487 if (**pp == '#')
1488 {
1489 debug_type return_type;
1490
1491 ++*pp;
1492 return_type = parse_stab_type (dhandle, info, (const char *) NULL,
1493 pp, (debug_type **) NULL, p_end);
1494 if (return_type == DEBUG_TYPE_NULL)
1495 return DEBUG_TYPE_NULL;
1496 if (**pp != ';')
1497 {
1498 bad_stab (orig);
1499 return DEBUG_TYPE_NULL;
1500 }
1501 ++*pp;
1502 dtype = debug_make_method_type (dhandle, return_type,
1503 DEBUG_TYPE_NULL,
1504 (debug_type *) NULL, false);
1505 }
1506 else
1507 {
1508 debug_type domain;
1509 debug_type return_type;
1510 debug_type *args;
1511 unsigned int n;
1512 unsigned int alloc;
1513 bool varargs;
1514
1515 domain = parse_stab_type (dhandle, info, (const char *) NULL,
1516 pp, (debug_type **) NULL, p_end);
1517 if (domain == DEBUG_TYPE_NULL)
1518 return DEBUG_TYPE_NULL;
1519
1520 if (**pp != ',')
1521 {
1522 bad_stab (orig);
1523 return DEBUG_TYPE_NULL;
1524 }
1525 ++*pp;
1526
1527 return_type = parse_stab_type (dhandle, info, (const char *) NULL,
1528 pp, (debug_type **) NULL, p_end);
1529 if (return_type == DEBUG_TYPE_NULL)
1530 return DEBUG_TYPE_NULL;
1531
1532 alloc = 10;
1533 args = (debug_type *) xmalloc (alloc * sizeof *args);
1534 n = 0;
1535 while (**pp != ';')
1536 {
1537 if (**pp != ',')
1538 {
1539 bad_stab (orig);
1540 return DEBUG_TYPE_NULL;
1541 }
1542 ++*pp;
1543
1544 if (n + 1 >= alloc)
1545 {
1546 alloc += 10;
1547 args = ((debug_type *)
1548 xrealloc (args, alloc * sizeof *args));
1549 }
1550
1551 args[n] = parse_stab_type (dhandle, info, (const char *) NULL,
1552 pp, (debug_type **) NULL, p_end);
1553 if (args[n] == DEBUG_TYPE_NULL)
1554 return DEBUG_TYPE_NULL;
1555 ++n;
1556 }
1557 ++*pp;
1558
1559 /* If the last type is not void, then this function takes a
1560 variable number of arguments. Otherwise, we must strip
1561 the void type. */
1562 if (n == 0
1563 || debug_get_type_kind (dhandle, args[n - 1]) != DEBUG_KIND_VOID)
1564 varargs = true;
1565 else
1566 {
1567 --n;
1568 varargs = false;
1569 }
1570
1571 args[n] = DEBUG_TYPE_NULL;
1572
1573 dtype = debug_make_method_type (dhandle, return_type, domain, args,
1574 varargs);
1575 }
1576 break;
1577
1578 case 'r':
1579 /* Range type. */
1580 dtype = parse_stab_range_type (dhandle, info, type_name, pp, typenums, p_end);
1581 break;
1582
1583 case 'b':
1584 /* FIXME: gdb checks os9k_stabs here. */
1585 /* Sun ACC builtin int type. */
1586 dtype = parse_stab_sun_builtin_type (dhandle, pp, p_end);
1587 break;
1588
1589 case 'R':
1590 /* Sun ACC builtin float type. */
1591 dtype = parse_stab_sun_floating_type (dhandle, pp, p_end);
1592 break;
1593
1594 case 'e':
1595 /* Enumeration type. */
1596 dtype = parse_stab_enum_type (dhandle, pp, p_end);
1597 break;
1598
1599 case 's':
1600 case 'u':
1601 /* Struct or union type. */
1602 dtype = parse_stab_struct_type (dhandle, info, type_name, pp,
1603 descriptor == 's', typenums, p_end);
1604 break;
1605
1606 case 'a':
1607 /* Array type. */
1608 if (**pp != 'r')
1609 {
1610 bad_stab (orig);
1611 return DEBUG_TYPE_NULL;
1612 }
1613 ++*pp;
1614
1615 dtype = parse_stab_array_type (dhandle, info, pp, stringp, p_end);
1616 break;
1617
1618 case 'S':
1619 dtype = debug_make_set_type (dhandle,
1620 parse_stab_type (dhandle, info,
1621 (const char *) NULL,
1622 pp,
1623 (debug_type **) NULL,
1624 p_end),
1625 stringp);
1626 break;
1627
1628 default:
1629 bad_stab (orig);
1630 return DEBUG_TYPE_NULL;
1631 }
1632
1633 if (dtype == DEBUG_TYPE_NULL)
1634 return DEBUG_TYPE_NULL;
1635
1636 if (typenums[0] != -1)
1637 {
1638 if (! stab_record_type (dhandle, info, typenums, dtype))
1639 return DEBUG_TYPE_NULL;
1640 }
1641
1642 if (size != -1)
1643 {
1644 if (! debug_record_type_size (dhandle, dtype, (unsigned int) size))
1645 return DEBUG_TYPE_NULL;
1646 }
1647
1648 return dtype;
1649 }
1650
1651 /* Read a number by which a type is referred to in dbx data, or
1652 perhaps read a pair (FILENUM, TYPENUM) in parentheses. Just a
1653 single number N is equivalent to (0,N). Return the two numbers by
1654 storing them in the vector TYPENUMS. */
1655
1656 static bool
1657 parse_stab_type_number (const char **pp, int *typenums, const char *p_end)
1658 {
1659 const char *orig;
1660
1661 orig = *pp;
1662
1663 if (**pp != '(')
1664 {
1665 typenums[0] = 0;
1666 typenums[1] = (int) parse_number (pp, (bool *) NULL, p_end);
1667 return true;
1668 }
1669
1670 ++*pp;
1671 typenums[0] = (int) parse_number (pp, (bool *) NULL, p_end);
1672 if (**pp != ',')
1673 {
1674 bad_stab (orig);
1675 return false;
1676 }
1677
1678 ++*pp;
1679 typenums[1] = (int) parse_number (pp, (bool *) NULL, p_end);
1680 if (**pp != ')')
1681 {
1682 bad_stab (orig);
1683 return false;
1684 }
1685
1686 ++*pp;
1687 return true;
1688 }
1689
1690 /* Parse a range type. */
1691
1692 static debug_type
1693 parse_stab_range_type (void * dhandle,
1694 struct stab_handle * info,
1695 const char * type_name,
1696 const char ** pp,
1697 const int * typenums,
1698 const char * p_end)
1699 {
1700 const char *orig;
1701 int rangenums[2];
1702 bool self_subrange;
1703 debug_type index_type;
1704 const char *s2, *s3;
1705 bfd_signed_vma n2, n3;
1706 bool ov2, ov3;
1707
1708 orig = *pp;
1709 if (orig >= p_end)
1710 return DEBUG_TYPE_NULL;
1711
1712 index_type = DEBUG_TYPE_NULL;
1713
1714 /* First comes a type we are a subrange of.
1715 In C it is usually 0, 1 or the type being defined. */
1716 if (! parse_stab_type_number (pp, rangenums, p_end))
1717 return DEBUG_TYPE_NULL;
1718
1719 self_subrange = (rangenums[0] == typenums[0]
1720 && rangenums[1] == typenums[1]);
1721
1722 if (**pp == '=')
1723 {
1724 *pp = orig;
1725 index_type = parse_stab_type (dhandle, info, (const char *) NULL,
1726 pp, (debug_type **) NULL, p_end);
1727 if (index_type == DEBUG_TYPE_NULL)
1728 return DEBUG_TYPE_NULL;
1729 }
1730
1731 if (**pp == ';')
1732 ++*pp;
1733
1734 /* The remaining two operands are usually lower and upper bounds of
1735 the range. But in some special cases they mean something else. */
1736 s2 = *pp;
1737 n2 = parse_number (pp, &ov2, p_end);
1738 if (**pp != ';')
1739 {
1740 bad_stab (orig);
1741 return DEBUG_TYPE_NULL;
1742 }
1743 ++*pp;
1744
1745 s3 = *pp;
1746 n3 = parse_number (pp, &ov3, p_end);
1747 if (**pp != ';')
1748 {
1749 bad_stab (orig);
1750 return DEBUG_TYPE_NULL;
1751 }
1752 ++*pp;
1753
1754 if (ov2 || ov3)
1755 {
1756 /* gcc will emit range stabs for long long types. Handle this
1757 as a special case. FIXME: This needs to be more general. */
1758 #define LLLOW "01000000000000000000000;"
1759 #define LLHIGH "0777777777777777777777;"
1760 #define ULLHIGH "01777777777777777777777;"
1761 if (index_type == DEBUG_TYPE_NULL)
1762 {
1763 if (startswith (s2, LLLOW)
1764 && startswith (s3, LLHIGH))
1765 return debug_make_int_type (dhandle, 8, false);
1766 if (! ov2
1767 && n2 == 0
1768 && startswith (s3, ULLHIGH))
1769 return debug_make_int_type (dhandle, 8, true);
1770 }
1771
1772 warn_stab (orig, _("numeric overflow"));
1773 }
1774
1775 if (index_type == DEBUG_TYPE_NULL)
1776 {
1777 /* A type defined as a subrange of itself, with both bounds 0,
1778 is void. */
1779 if (self_subrange && n2 == 0 && n3 == 0)
1780 return debug_make_void_type (dhandle);
1781
1782 /* A type defined as a subrange of itself, with n2 positive and
1783 n3 zero, is a complex type, and n2 is the number of bytes. */
1784 if (self_subrange && n3 == 0 && n2 > 0)
1785 return debug_make_complex_type (dhandle, n2);
1786
1787 /* If n3 is zero and n2 is positive, this is a floating point
1788 type, and n2 is the number of bytes. */
1789 if (n3 == 0 && n2 > 0)
1790 return debug_make_float_type (dhandle, n2);
1791
1792 /* If the upper bound is -1, this is an unsigned int. */
1793 if (n2 == 0 && n3 == -1)
1794 {
1795 /* When gcc is used with -gstabs, but not -gstabs+, it will emit
1796 long long int:t6=r1;0;-1;
1797 long long unsigned int:t7=r1;0;-1;
1798 We hack here to handle this reasonably. */
1799 if (type_name != NULL)
1800 {
1801 if (strcmp (type_name, "long long int") == 0)
1802 return debug_make_int_type (dhandle, 8, false);
1803 else if (strcmp (type_name, "long long unsigned int") == 0)
1804 return debug_make_int_type (dhandle, 8, true);
1805 }
1806 /* FIXME: The size here really depends upon the target. */
1807 return debug_make_int_type (dhandle, 4, true);
1808 }
1809
1810 /* A range of 0 to 127 is char. */
1811 if (self_subrange && n2 == 0 && n3 == 127)
1812 return debug_make_int_type (dhandle, 1, false);
1813
1814 /* FIXME: gdb checks for the language CHILL here. */
1815
1816 if (n2 == 0)
1817 {
1818 if (n3 < 0)
1819 return debug_make_int_type (dhandle, - n3, true);
1820 else if (n3 == 0xff)
1821 return debug_make_int_type (dhandle, 1, true);
1822 else if (n3 == 0xffff)
1823 return debug_make_int_type (dhandle, 2, true);
1824 else if (n3 == (bfd_signed_vma) 0xffffffff)
1825 return debug_make_int_type (dhandle, 4, true);
1826 #ifdef BFD64
1827 else if (n3 == (bfd_signed_vma) 0xffffffffffffffffLL)
1828 return debug_make_int_type (dhandle, 8, true);
1829 #endif
1830 }
1831 else if (n3 == 0
1832 && n2 < 0
1833 && (self_subrange || n2 == -8))
1834 return debug_make_int_type (dhandle, - n2, true);
1835 else if (n2 == - n3 - 1 || n2 == n3 + 1)
1836 {
1837 if (n3 == 0x7f)
1838 return debug_make_int_type (dhandle, 1, false);
1839 else if (n3 == 0x7fff)
1840 return debug_make_int_type (dhandle, 2, false);
1841 else if (n3 == 0x7fffffff)
1842 return debug_make_int_type (dhandle, 4, false);
1843 #ifdef BFD64
1844 else if (n3 == ((((bfd_vma) 0x7fffffff) << 32) | 0xffffffff))
1845 return debug_make_int_type (dhandle, 8, false);
1846 #endif
1847 }
1848 }
1849
1850 /* At this point I don't have the faintest idea how to deal with a
1851 self_subrange type; I'm going to assume that this is used as an
1852 idiom, and that all of them are special cases. So . . . */
1853 if (self_subrange)
1854 {
1855 bad_stab (orig);
1856 return DEBUG_TYPE_NULL;
1857 }
1858
1859 index_type = stab_find_type (dhandle, info, rangenums);
1860 if (index_type == DEBUG_TYPE_NULL)
1861 {
1862 /* Does this actually ever happen? Is that why we are worrying
1863 about dealing with it rather than just calling error_type? */
1864 warn_stab (orig, _("missing index type"));
1865 index_type = debug_make_int_type (dhandle, 4, false);
1866 }
1867
1868 return debug_make_range_type (dhandle, index_type, n2, n3);
1869 }
1870
1871 /* Sun's ACC uses a somewhat saner method for specifying the builtin
1872 typedefs in every file (for int, long, etc):
1873
1874 type = b <signed> <width>; <offset>; <nbits>
1875 signed = u or s. Possible c in addition to u or s (for char?).
1876 offset = offset from high order bit to start bit of type.
1877 width is # bytes in object of this type, nbits is # bits in type.
1878
1879 The width/offset stuff appears to be for small objects stored in
1880 larger ones (e.g. `shorts' in `int' registers). We ignore it for now,
1881 FIXME. */
1882
1883 static debug_type
1884 parse_stab_sun_builtin_type (void *dhandle, const char **pp, const char * p_end)
1885 {
1886 const char *orig;
1887 bool unsignedp;
1888 bfd_vma bits;
1889
1890 orig = *pp;
1891 if (orig >= p_end)
1892 return DEBUG_TYPE_NULL;
1893
1894 switch (**pp)
1895 {
1896 case 's':
1897 unsignedp = false;
1898 break;
1899 case 'u':
1900 unsignedp = true;
1901 break;
1902 default:
1903 bad_stab (orig);
1904 return DEBUG_TYPE_NULL;
1905 }
1906 ++*pp;
1907
1908 /* OpenSolaris source code indicates that one of "cbv" characters
1909 can come next and specify the intrinsic 'iformat' encoding.
1910 'c' is character encoding, 'b' is boolean encoding, and 'v' is
1911 varargs encoding. This field can be safely ignored because
1912 the type of the field is determined from the bitwidth extracted
1913 below. */
1914 if (**pp == 'c' || **pp == 'b' || **pp == 'v')
1915 ++*pp;
1916
1917 /* The first number appears to be the number of bytes occupied
1918 by this type, except that unsigned short is 4 instead of 2.
1919 Since this information is redundant with the third number,
1920 we will ignore it. */
1921 (void) parse_number (pp, (bool *) NULL, p_end);
1922 if (**pp != ';')
1923 {
1924 bad_stab (orig);
1925 return DEBUG_TYPE_NULL;
1926 }
1927 ++*pp;
1928
1929 /* The second number is always 0, so ignore it too. */
1930 (void) parse_number (pp, (bool *) NULL, p_end);
1931 if (**pp != ';')
1932 {
1933 bad_stab (orig);
1934 return DEBUG_TYPE_NULL;
1935 }
1936 ++*pp;
1937
1938 /* The third number is the number of bits for this type. */
1939 bits = parse_number (pp, (bool *) NULL, p_end);
1940
1941 /* The type *should* end with a semicolon. If it are embedded
1942 in a larger type the semicolon may be the only way to know where
1943 the type ends. If this type is at the end of the stabstring we
1944 can deal with the omitted semicolon (but we don't have to like
1945 it). Don't bother to complain(), Sun's compiler omits the semicolon
1946 for "void". */
1947 if (**pp == ';')
1948 ++*pp;
1949
1950 if (bits == 0)
1951 return debug_make_void_type (dhandle);
1952
1953 return debug_make_int_type (dhandle, bits / 8, unsignedp);
1954 }
1955
1956 /* Parse a builtin floating type generated by the Sun compiler. */
1957
1958 static debug_type
1959 parse_stab_sun_floating_type (void *dhandle, const char **pp, const char *p_end)
1960 {
1961 const char *orig;
1962 bfd_vma details;
1963 bfd_vma bytes;
1964
1965 orig = *pp;
1966 if (orig >= p_end)
1967 return DEBUG_TYPE_NULL;
1968
1969 /* The first number has more details about the type, for example
1970 FN_COMPLEX. */
1971 details = parse_number (pp, (bool *) NULL, p_end);
1972 if (**pp != ';')
1973 {
1974 bad_stab (orig);
1975 return DEBUG_TYPE_NULL;
1976 }
1977
1978 /* The second number is the number of bytes occupied by this type */
1979 bytes = parse_number (pp, (bool *) NULL, p_end);
1980 if (**pp != ';')
1981 {
1982 bad_stab (orig);
1983 return DEBUG_TYPE_NULL;
1984 }
1985
1986 if (details == NF_COMPLEX
1987 || details == NF_COMPLEX16
1988 || details == NF_COMPLEX32)
1989 return debug_make_complex_type (dhandle, bytes);
1990
1991 return debug_make_float_type (dhandle, bytes);
1992 }
1993
1994 /* Handle an enum type. */
1995
1996 static debug_type
1997 parse_stab_enum_type (void *dhandle, const char **pp, const char * p_end)
1998 {
1999 const char *orig;
2000 const char **names;
2001 bfd_signed_vma *values;
2002 unsigned int n;
2003 unsigned int alloc;
2004
2005 orig = *pp;
2006 if (orig >= p_end)
2007 return DEBUG_TYPE_NULL;
2008
2009 /* FIXME: gdb checks os9k_stabs here. */
2010
2011 /* The aix4 compiler emits an extra field before the enum members;
2012 my guess is it's a type of some sort. Just ignore it. */
2013 if (**pp == '-')
2014 {
2015 while (**pp != ':' && **pp != 0)
2016 ++*pp;
2017
2018 if (**pp == 0)
2019 {
2020 bad_stab (orig);
2021 return DEBUG_TYPE_NULL;
2022 }
2023 ++*pp;
2024 }
2025
2026 /* Read the value-names and their values.
2027 The input syntax is NAME:VALUE,NAME:VALUE, and so on.
2028 A semicolon or comma instead of a NAME means the end. */
2029 alloc = 10;
2030 names = (const char **) xmalloc (alloc * sizeof *names);
2031 values = (bfd_signed_vma *) xmalloc (alloc * sizeof *values);
2032 n = 0;
2033 while (**pp != '\0' && **pp != ';' && **pp != ',')
2034 {
2035 const char *p;
2036 char *name;
2037 bfd_signed_vma val;
2038
2039 p = *pp;
2040 while (*p != ':' && *p != 0)
2041 ++p;
2042
2043 if (*p == 0)
2044 {
2045 bad_stab (orig);
2046 free (names);
2047 free (values);
2048 return DEBUG_TYPE_NULL;
2049 }
2050
2051 name = savestring (*pp, p - *pp);
2052
2053 *pp = p + 1;
2054 val = (bfd_signed_vma) parse_number (pp, (bool *) NULL, p_end);
2055 if (**pp != ',')
2056 {
2057 bad_stab (orig);
2058 free (name);
2059 free (names);
2060 free (values);
2061 return DEBUG_TYPE_NULL;
2062 }
2063 ++*pp;
2064
2065 if (n + 1 >= alloc)
2066 {
2067 alloc += 10;
2068 names = ((const char **)
2069 xrealloc (names, alloc * sizeof *names));
2070 values = ((bfd_signed_vma *)
2071 xrealloc (values, alloc * sizeof *values));
2072 }
2073
2074 names[n] = name;
2075 values[n] = val;
2076 ++n;
2077 }
2078
2079 names[n] = NULL;
2080 values[n] = 0;
2081
2082 if (**pp == ';')
2083 ++*pp;
2084
2085 return debug_make_enum_type (dhandle, names, values);
2086 }
2087
2088 /* Read the description of a structure (or union type) and return an object
2089 describing the type.
2090
2091 PP points to a character pointer that points to the next unconsumed token
2092 in the stabs string. For example, given stabs "A:T4=s4a:1,0,32;;",
2093 *PP will point to "4a:1,0,32;;". */
2094
2095 static debug_type
2096 parse_stab_struct_type (void *dhandle,
2097 struct stab_handle *info,
2098 const char *tagname,
2099 const char **pp,
2100 bool structp,
2101 const int *typenums,
2102 const char *p_end)
2103 {
2104 bfd_vma size;
2105 debug_baseclass *baseclasses;
2106 debug_field *fields = NULL;
2107 bool statics;
2108 debug_method *methods;
2109 debug_type vptrbase;
2110 bool ownvptr;
2111
2112 /* Get the size. */
2113 size = parse_number (pp, (bool *) NULL, p_end);
2114
2115 /* Get the other information. */
2116 if (! parse_stab_baseclasses (dhandle, info, pp, &baseclasses, p_end)
2117 || ! parse_stab_struct_fields (dhandle, info, pp, &fields, &statics, p_end)
2118 || ! parse_stab_members (dhandle, info, tagname, pp, typenums, &methods, p_end)
2119 || ! parse_stab_tilde_field (dhandle, info, pp, typenums, &vptrbase,
2120 &ownvptr, p_end))
2121 {
2122 free (fields);
2123 return DEBUG_TYPE_NULL;
2124 }
2125
2126 if (! statics
2127 && baseclasses == NULL
2128 && methods == NULL
2129 && vptrbase == DEBUG_TYPE_NULL
2130 && ! ownvptr)
2131 return debug_make_struct_type (dhandle, structp, size, fields);
2132
2133 return debug_make_object_type (dhandle, structp, size, fields, baseclasses,
2134 methods, vptrbase, ownvptr);
2135 }
2136
2137 /* The stabs for C++ derived classes contain baseclass information which
2138 is marked by a '!' character after the total size. This function is
2139 called when we encounter the baseclass marker, and slurps up all the
2140 baseclass information.
2141
2142 Immediately following the '!' marker is the number of base classes that
2143 the class is derived from, followed by information for each base class.
2144 For each base class, there are two visibility specifiers, a bit offset
2145 to the base class information within the derived class, a reference to
2146 the type for the base class, and a terminating semicolon.
2147
2148 A typical example, with two base classes, would be "!2,020,19;0264,21;".
2149 ^^ ^ ^ ^ ^ ^ ^
2150 Baseclass information marker __________________|| | | | | | |
2151 Number of baseclasses __________________________| | | | | | |
2152 Visibility specifiers (2) ________________________| | | | | |
2153 Offset in bits from start of class _________________| | | | |
2154 Type number for base class ___________________________| | | |
2155 Visibility specifiers (2) _______________________________| | |
2156 Offset in bits from start of class ________________________| |
2157 Type number of base class ____________________________________|
2158
2159 Return TRUE for success, FALSE for failure. */
2160
2161 static bool
2162 parse_stab_baseclasses (void * dhandle,
2163 struct stab_handle * info,
2164 const char ** pp,
2165 debug_baseclass ** retp,
2166 const char * p_end)
2167 {
2168 const char *orig;
2169 unsigned int c, i;
2170 debug_baseclass *classes;
2171
2172 *retp = NULL;
2173
2174 orig = *pp;
2175 if (orig >= p_end)
2176 return false;
2177
2178 if (**pp != '!')
2179 {
2180 /* No base classes. */
2181 return true;
2182 }
2183 ++*pp;
2184
2185 c = (unsigned int) parse_number (pp, (bool *) NULL, p_end);
2186
2187 if (**pp != ',')
2188 {
2189 bad_stab (orig);
2190 return false;
2191 }
2192 ++*pp;
2193
2194 classes = (debug_baseclass *) xmalloc ((c + 1) * sizeof (**retp));
2195
2196 for (i = 0; i < c; i++)
2197 {
2198 bool is_virtual;
2199 enum debug_visibility visibility;
2200 bfd_vma bitpos;
2201 debug_type type;
2202
2203 switch (**pp)
2204 {
2205 case '0':
2206 is_virtual = false;
2207 break;
2208 case '1':
2209 is_virtual = true;
2210 break;
2211 case 0:
2212 bad_stab (orig);
2213 return false;
2214 default:
2215 warn_stab (orig, _("unknown virtual character for baseclass"));
2216 is_virtual = false;
2217 break;
2218 }
2219 ++*pp;
2220
2221 switch (**pp)
2222 {
2223 case '0':
2224 visibility = DEBUG_VISIBILITY_PRIVATE;
2225 break;
2226 case '1':
2227 visibility = DEBUG_VISIBILITY_PROTECTED;
2228 break;
2229 case '2':
2230 visibility = DEBUG_VISIBILITY_PUBLIC;
2231 break;
2232 case 0:
2233 bad_stab (orig);
2234 return false;
2235 default:
2236 warn_stab (orig, _("unknown visibility character for baseclass"));
2237 visibility = DEBUG_VISIBILITY_PUBLIC;
2238 break;
2239 }
2240 ++*pp;
2241
2242 /* The remaining value is the bit offset of the portion of the
2243 object corresponding to this baseclass. Always zero in the
2244 absence of multiple inheritance. */
2245 bitpos = parse_number (pp, (bool *) NULL, p_end);
2246 if (**pp != ',')
2247 {
2248 bad_stab (orig);
2249 return false;
2250 }
2251 ++*pp;
2252
2253 type = parse_stab_type (dhandle, info, (const char *) NULL, pp,
2254 (debug_type **) NULL, p_end);
2255 if (type == DEBUG_TYPE_NULL)
2256 return false;
2257
2258 classes[i] = debug_make_baseclass (dhandle, type, bitpos, is_virtual,
2259 visibility);
2260 if (classes[i] == DEBUG_BASECLASS_NULL)
2261 return false;
2262
2263 if (**pp != ';')
2264 return false;
2265 ++*pp;
2266 }
2267
2268 classes[i] = DEBUG_BASECLASS_NULL;
2269
2270 *retp = classes;
2271
2272 return true;
2273 }
2274
2275 /* Read struct or class data fields. They have the form:
2276
2277 NAME : [VISIBILITY] TYPENUM , BITPOS , BITSIZE ;
2278
2279 At the end, we see a semicolon instead of a field.
2280
2281 In C++, this may wind up being NAME:?TYPENUM:PHYSNAME; for
2282 a static field.
2283
2284 The optional VISIBILITY is one of:
2285
2286 '/0' (VISIBILITY_PRIVATE)
2287 '/1' (VISIBILITY_PROTECTED)
2288 '/2' (VISIBILITY_PUBLIC)
2289 '/9' (VISIBILITY_IGNORE)
2290
2291 or nothing, for C style fields with public visibility.
2292
2293 Returns 1 for success, 0 for failure. */
2294
2295 static bool
2296 parse_stab_struct_fields (void *dhandle,
2297 struct stab_handle *info,
2298 const char **pp,
2299 debug_field **retp,
2300 bool *staticsp,
2301 const char * p_end)
2302 {
2303 const char *orig;
2304 const char *p;
2305 debug_field *fields;
2306 unsigned int c;
2307 unsigned int alloc;
2308
2309 *retp = NULL;
2310 *staticsp = false;
2311
2312 orig = *pp;
2313 if (orig >= p_end)
2314 return false;
2315
2316 c = 0;
2317 alloc = 10;
2318 fields = (debug_field *) xmalloc (alloc * sizeof *fields);
2319 while (**pp != ';')
2320 {
2321 /* FIXME: gdb checks os9k_stabs here. */
2322
2323 p = *pp;
2324
2325 /* Add 1 to c to leave room for NULL pointer at end. */
2326 if (c + 1 >= alloc)
2327 {
2328 alloc += 10;
2329 fields = ((debug_field *)
2330 xrealloc (fields, alloc * sizeof *fields));
2331 }
2332
2333 /* If it starts with CPLUS_MARKER it is a special abbreviation,
2334 unless the CPLUS_MARKER is followed by an underscore, in
2335 which case it is just the name of an anonymous type, which we
2336 should handle like any other type name. We accept either '$'
2337 or '.', because a field name can never contain one of these
2338 characters except as a CPLUS_MARKER. */
2339
2340 if ((*p == '$' || *p == '.') && p[1] != '_')
2341 {
2342 ++*pp;
2343 if (! parse_stab_cpp_abbrev (dhandle, info, pp, fields + c, p_end))
2344 {
2345 free (fields);
2346 return false;
2347 }
2348 ++c;
2349 continue;
2350 }
2351
2352 /* Look for the ':' that separates the field name from the field
2353 values. Data members are delimited by a single ':', while member
2354 functions are delimited by a pair of ':'s. When we hit the member
2355 functions (if any), terminate scan loop and return. */
2356
2357 p = strchr (p, ':');
2358 if (p == NULL)
2359 {
2360 bad_stab (orig);
2361 free (fields);
2362 return false;
2363 }
2364
2365 if (p[1] == ':')
2366 break;
2367
2368 if (! parse_stab_one_struct_field (dhandle, info, pp, p, fields + c,
2369 staticsp, p_end))
2370 {
2371 free (fields);
2372 return false;
2373 }
2374
2375 ++c;
2376 }
2377
2378 fields[c] = DEBUG_FIELD_NULL;
2379
2380 *retp = fields;
2381
2382 return true;
2383 }
2384
2385 /* Special GNU C++ name. */
2386
2387 static bool
2388 parse_stab_cpp_abbrev (void * dhandle,
2389 struct stab_handle * info,
2390 const char ** pp,
2391 debug_field * retp,
2392 const char * p_end)
2393 {
2394 const char *orig;
2395 int cpp_abbrev;
2396 debug_type context;
2397 const char *name;
2398 const char *type_name;
2399 debug_type type;
2400 bfd_vma bitpos;
2401
2402 *retp = DEBUG_FIELD_NULL;
2403
2404 orig = *pp;
2405 if (orig >= p_end)
2406 return false;
2407
2408 if (**pp != 'v')
2409 {
2410 bad_stab (*pp);
2411 return false;
2412 }
2413 ++*pp;
2414
2415 cpp_abbrev = **pp;
2416 if (cpp_abbrev == 0)
2417 {
2418 bad_stab (orig);
2419 return false;
2420 }
2421 ++*pp;
2422
2423 /* At this point, *pp points to something like "22:23=*22...", where
2424 the type number before the ':' is the "context" and everything
2425 after is a regular type definition. Lookup the type, find it's
2426 name, and construct the field name. */
2427
2428 context = parse_stab_type (dhandle, info, (const char *) NULL, pp,
2429 (debug_type **) NULL, p_end);
2430 if (context == DEBUG_TYPE_NULL)
2431 return false;
2432
2433 switch (cpp_abbrev)
2434 {
2435 case 'f':
2436 /* $vf -- a virtual function table pointer. */
2437 name = "_vptr$";
2438 break;
2439 case 'b':
2440 /* $vb -- a virtual bsomethingorother */
2441 type_name = debug_get_type_name (dhandle, context);
2442 if (type_name == NULL)
2443 {
2444 warn_stab (orig, _("unnamed $vb type"));
2445 type_name = "FOO";
2446 }
2447 name = concat ("_vb$", type_name, (const char *) NULL);
2448 break;
2449 default:
2450 warn_stab (orig, _("unrecognized C++ abbreviation"));
2451 name = "INVALID_CPLUSPLUS_ABBREV";
2452 break;
2453 }
2454
2455 if (**pp != ':')
2456 {
2457 bad_stab (orig);
2458 return false;
2459 }
2460 ++*pp;
2461
2462 type = parse_stab_type (dhandle, info, (const char *) NULL, pp,
2463 (debug_type **) NULL, p_end);
2464 if (**pp != ',')
2465 {
2466 bad_stab (orig);
2467 return false;
2468 }
2469 ++*pp;
2470
2471 bitpos = parse_number (pp, (bool *) NULL, p_end);
2472 if (**pp != ';')
2473 {
2474 bad_stab (orig);
2475 return false;
2476 }
2477 ++*pp;
2478
2479 *retp = debug_make_field (dhandle, name, type, bitpos, 0,
2480 DEBUG_VISIBILITY_PRIVATE);
2481 if (*retp == DEBUG_FIELD_NULL)
2482 return false;
2483
2484 return true;
2485 }
2486
2487 /* Parse a single field in a struct or union. */
2488
2489 static bool
2490 parse_stab_one_struct_field (void *dhandle,
2491 struct stab_handle *info,
2492 const char **pp,
2493 const char *p,
2494 debug_field *retp,
2495 bool *staticsp,
2496 const char *p_end)
2497 {
2498 const char *orig;
2499 char *name;
2500 enum debug_visibility visibility;
2501 debug_type type;
2502 bfd_vma bitpos;
2503 bfd_vma bitsize;
2504
2505 orig = *pp;
2506 if (orig >= p_end)
2507 return false;
2508
2509 /* FIXME: gdb checks ARM_DEMANGLING here. */
2510
2511 name = savestring (*pp, p - *pp);
2512
2513 *pp = p + 1;
2514
2515 if (**pp != '/')
2516 visibility = DEBUG_VISIBILITY_PUBLIC;
2517 else
2518 {
2519 ++*pp;
2520 switch (**pp)
2521 {
2522 case '0':
2523 visibility = DEBUG_VISIBILITY_PRIVATE;
2524 break;
2525 case '1':
2526 visibility = DEBUG_VISIBILITY_PROTECTED;
2527 break;
2528 case '2':
2529 visibility = DEBUG_VISIBILITY_PUBLIC;
2530 break;
2531 case 0:
2532 bad_stab (orig);
2533 return false;
2534 default:
2535 warn_stab (orig, _("unknown visibility character for field"));
2536 visibility = DEBUG_VISIBILITY_PUBLIC;
2537 break;
2538 }
2539 ++*pp;
2540 }
2541
2542 type = parse_stab_type (dhandle, info, (const char *) NULL, pp,
2543 (debug_type **) NULL, p_end);
2544 if (type == DEBUG_TYPE_NULL)
2545 {
2546 free (name);
2547 return false;
2548 }
2549
2550 if (**pp == ':')
2551 {
2552 char *varname;
2553
2554 /* This is a static class member. */
2555 ++*pp;
2556 p = strchr (*pp, ';');
2557 if (p == NULL)
2558 {
2559 bad_stab (orig);
2560 free (name);
2561 return false;
2562 }
2563
2564 varname = savestring (*pp, p - *pp);
2565
2566 *pp = p + 1;
2567
2568 *retp = debug_make_static_member (dhandle, name, type, varname,
2569 visibility);
2570 *staticsp = true;
2571
2572 return true;
2573 }
2574
2575 if (**pp != ',')
2576 {
2577 bad_stab (orig);
2578 free (name);
2579 return false;
2580 }
2581 ++*pp;
2582
2583 bitpos = parse_number (pp, (bool *) NULL, p_end);
2584 if (**pp != ',')
2585 {
2586 bad_stab (orig);
2587 free (name);
2588 return false;
2589 }
2590 ++*pp;
2591
2592 bitsize = parse_number (pp, (bool *) NULL, p_end);
2593 if (**pp != ';')
2594 {
2595 bad_stab (orig);
2596 free (name);
2597 return false;
2598 }
2599 ++*pp;
2600
2601 if (bitpos == 0 && bitsize == 0)
2602 {
2603 /* This can happen in two cases: (1) at least for gcc 2.4.5 or
2604 so, it is a field which has been optimized out. The correct
2605 stab for this case is to use VISIBILITY_IGNORE, but that is a
2606 recent invention. (2) It is a 0-size array. For example
2607 union { int num; char str[0]; } foo. Printing "<no value>"
2608 for str in "p foo" is OK, since foo.str (and thus foo.str[3])
2609 will continue to work, and a 0-size array as a whole doesn't
2610 have any contents to print.
2611
2612 I suspect this probably could also happen with gcc -gstabs
2613 (not -gstabs+) for static fields, and perhaps other C++
2614 extensions. Hopefully few people use -gstabs with gdb, since
2615 it is intended for dbx compatibility. */
2616 visibility = DEBUG_VISIBILITY_IGNORE;
2617 }
2618
2619 /* FIXME: gdb does some stuff here to mark fields as unpacked. */
2620
2621 *retp = debug_make_field (dhandle, name, type, bitpos, bitsize, visibility);
2622
2623 return true;
2624 }
2625
2626 /* Read member function stabs info for C++ classes. The form of each member
2627 function data is:
2628
2629 NAME :: TYPENUM[=type definition] ARGS : PHYSNAME ;
2630
2631 An example with two member functions is:
2632
2633 afunc1::20=##15;:i;2A.;afunc2::20:i;2A.;
2634
2635 For the case of overloaded operators, the format is op$::*.funcs, where
2636 $ is the CPLUS_MARKER (usually '$'), `*' holds the place for an operator
2637 name (such as `+=') and `.' marks the end of the operator name. */
2638
2639 static bool
2640 parse_stab_members (void * dhandle,
2641 struct stab_handle * info,
2642 const char * tagname,
2643 const char ** pp,
2644 const int * typenums,
2645 debug_method ** retp,
2646 const char * p_end)
2647 {
2648 const char *orig;
2649 debug_method *methods;
2650 unsigned int c;
2651 unsigned int alloc;
2652 char *name = NULL;
2653 debug_method_variant *variants = NULL;
2654 char *argtypes = NULL;
2655
2656 *retp = NULL;
2657
2658 orig = *pp;
2659 if (orig >= p_end)
2660 return false;
2661
2662 alloc = 0;
2663 methods = NULL;
2664 c = 0;
2665
2666 while (**pp != ';')
2667 {
2668 const char *p;
2669 unsigned int cvars;
2670 unsigned int allocvars;
2671 debug_type look_ahead_type;
2672
2673 p = strchr (*pp, ':');
2674 if (p == NULL || p[1] != ':')
2675 break;
2676
2677 /* FIXME: Some systems use something other than '$' here. */
2678 if ((*pp)[0] != 'o' || (*pp)[1] != 'p' || (*pp)[2] != '$')
2679 {
2680 name = savestring (*pp, p - *pp);
2681 *pp = p + 2;
2682 }
2683 else
2684 {
2685 /* This is a completely weird case. In order to stuff in the
2686 names that might contain colons (the usual name delimiter),
2687 Mike Tiemann defined a different name format which is
2688 signalled if the identifier is "op$". In that case, the
2689 format is "op$::XXXX." where XXXX is the name. This is
2690 used for names like "+" or "=". YUUUUUUUK! FIXME! */
2691 *pp = p + 2;
2692 for (p = *pp; *p != '.' && *p != '\0'; p++)
2693 ;
2694 if (*p != '.')
2695 {
2696 bad_stab (orig);
2697 goto fail;
2698 }
2699 name = savestring (*pp, p - *pp);
2700 *pp = p + 1;
2701 }
2702
2703 allocvars = 10;
2704 variants = ((debug_method_variant *)
2705 xmalloc (allocvars * sizeof *variants));
2706 cvars = 0;
2707
2708 look_ahead_type = DEBUG_TYPE_NULL;
2709
2710 do
2711 {
2712 debug_type type;
2713 bool stub;
2714 enum debug_visibility visibility;
2715 bool constp, volatilep, staticp;
2716 bfd_vma voffset;
2717 debug_type context;
2718 const char *physname;
2719 bool varargs;
2720
2721 if (look_ahead_type != DEBUG_TYPE_NULL)
2722 {
2723 /* g++ version 1 kludge */
2724 type = look_ahead_type;
2725 look_ahead_type = DEBUG_TYPE_NULL;
2726 }
2727 else
2728 {
2729 type = parse_stab_type (dhandle, info, (const char *) NULL, pp,
2730 (debug_type **) NULL, p_end);
2731 if (type == DEBUG_TYPE_NULL)
2732 goto fail;
2733
2734 if (**pp != ':')
2735 {
2736 bad_stab (orig);
2737 goto fail;
2738 }
2739 }
2740
2741 ++*pp;
2742 p = strchr (*pp, ';');
2743 if (p == NULL)
2744 {
2745 bad_stab (orig);
2746 goto fail;
2747 }
2748
2749 stub = false;
2750 if (debug_get_type_kind (dhandle, type) == DEBUG_KIND_METHOD
2751 && debug_get_parameter_types (dhandle, type, &varargs) == NULL)
2752 stub = true;
2753
2754 argtypes = savestring (*pp, p - *pp);
2755 *pp = p + 1;
2756
2757 switch (**pp)
2758 {
2759 case '0':
2760 visibility = DEBUG_VISIBILITY_PRIVATE;
2761 break;
2762 case '1':
2763 visibility = DEBUG_VISIBILITY_PROTECTED;
2764 break;
2765 case 0:
2766 bad_stab (orig);
2767 goto fail;
2768 default:
2769 visibility = DEBUG_VISIBILITY_PUBLIC;
2770 break;
2771 }
2772 ++*pp;
2773
2774 constp = false;
2775 volatilep = false;
2776 switch (**pp)
2777 {
2778 case 'A':
2779 /* Normal function. */
2780 ++*pp;
2781 break;
2782 case 'B':
2783 /* const member function. */
2784 constp = true;
2785 ++*pp;
2786 break;
2787 case 'C':
2788 /* volatile member function. */
2789 volatilep = true;
2790 ++*pp;
2791 break;
2792 case 'D':
2793 /* const volatile member function. */
2794 constp = true;
2795 volatilep = true;
2796 ++*pp;
2797 break;
2798 case '*':
2799 case '?':
2800 case '.':
2801 /* File compiled with g++ version 1; no information. */
2802 break;
2803 default:
2804 warn_stab (orig, _("const/volatile indicator missing"));
2805 break;
2806 }
2807
2808 staticp = false;
2809 switch (**pp)
2810 {
2811 case '*':
2812 /* virtual member function, followed by index. The sign
2813 bit is supposedly set to distinguish
2814 pointers-to-methods from virtual function indices. */
2815 ++*pp;
2816 voffset = parse_number (pp, (bool *) NULL, p_end);
2817 if (**pp != ';')
2818 {
2819 bad_stab (orig);
2820 goto fail;
2821 }
2822 ++*pp;
2823 voffset &= 0x7fffffff;
2824
2825 if (**pp == ';' || **pp == '\0')
2826 {
2827 /* Must be g++ version 1. */
2828 context = DEBUG_TYPE_NULL;
2829 }
2830 else
2831 {
2832 /* Figure out from whence this virtual function
2833 came. It may belong to virtual function table of
2834 one of its baseclasses. */
2835 look_ahead_type = parse_stab_type (dhandle, info,
2836 (const char *) NULL,
2837 pp,
2838 (debug_type **) NULL,
2839 p_end);
2840 if (**pp == ':')
2841 {
2842 /* g++ version 1 overloaded methods. */
2843 context = DEBUG_TYPE_NULL;
2844 }
2845 else
2846 {
2847 context = look_ahead_type;
2848 look_ahead_type = DEBUG_TYPE_NULL;
2849 if (**pp != ';')
2850 {
2851 bad_stab (orig);
2852 goto fail;
2853 }
2854 ++*pp;
2855 }
2856 }
2857 break;
2858
2859 case '?':
2860 /* static member function. */
2861 ++*pp;
2862 staticp = true;
2863 voffset = 0;
2864 context = DEBUG_TYPE_NULL;
2865 if (strncmp (argtypes, name, strlen (name)) != 0)
2866 stub = true;
2867 break;
2868
2869 default:
2870 warn_stab (orig, "member function type missing");
2871 voffset = 0;
2872 context = DEBUG_TYPE_NULL;
2873 break;
2874
2875 case '.':
2876 ++*pp;
2877 voffset = 0;
2878 context = DEBUG_TYPE_NULL;
2879 break;
2880 }
2881
2882 /* If the type is not a stub, then the argtypes string is
2883 the physical name of the function. Otherwise the
2884 argtypes string is the mangled form of the argument
2885 types, and the full type and the physical name must be
2886 extracted from them. */
2887 physname = argtypes;
2888 if (stub)
2889 {
2890 debug_type class_type, return_type;
2891
2892 class_type = stab_find_type (dhandle, info, typenums);
2893 if (class_type == DEBUG_TYPE_NULL)
2894 goto fail;
2895 return_type = debug_get_return_type (dhandle, type);
2896 if (return_type == DEBUG_TYPE_NULL)
2897 {
2898 bad_stab (orig);
2899 goto fail;
2900 }
2901 type = parse_stab_argtypes (dhandle, info, class_type, name,
2902 tagname, return_type, argtypes,
2903 constp, volatilep, &physname);
2904 if (type == DEBUG_TYPE_NULL)
2905 goto fail;
2906 }
2907
2908 if (cvars + 1 >= allocvars)
2909 {
2910 allocvars += 10;
2911 variants = ((debug_method_variant *)
2912 xrealloc (variants,
2913 allocvars * sizeof *variants));
2914 }
2915
2916 if (! staticp)
2917 variants[cvars] = debug_make_method_variant (dhandle, physname,
2918 type, visibility,
2919 constp, volatilep,
2920 voffset, context);
2921 else
2922 variants[cvars] = debug_make_static_method_variant (dhandle,
2923 physname,
2924 type,
2925 visibility,
2926 constp,
2927 volatilep);
2928 if (variants[cvars] == DEBUG_METHOD_VARIANT_NULL)
2929 goto fail;
2930
2931 ++cvars;
2932 }
2933 while (**pp != ';' && **pp != '\0');
2934
2935 variants[cvars] = DEBUG_METHOD_VARIANT_NULL;
2936
2937 if (**pp != '\0')
2938 ++*pp;
2939
2940 if (c + 1 >= alloc)
2941 {
2942 alloc += 10;
2943 methods = ((debug_method *)
2944 xrealloc (methods, alloc * sizeof *methods));
2945 }
2946
2947 methods[c] = debug_make_method (dhandle, name, variants);
2948
2949 ++c;
2950 }
2951
2952 if (methods != NULL)
2953 methods[c] = DEBUG_METHOD_NULL;
2954
2955 *retp = methods;
2956
2957 return true;
2958
2959 fail:
2960 free (name);
2961 free (variants);
2962 free (argtypes);
2963 return false;
2964 }
2965
2966 /* Parse a string representing argument types for a method. Stabs
2967 tries to save space by packing argument types into a mangled
2968 string. This string should give us enough information to extract
2969 both argument types and the physical name of the function, given
2970 the tag name. */
2971
2972 static debug_type
2973 parse_stab_argtypes (void *dhandle, struct stab_handle *info,
2974 debug_type class_type, const char *fieldname,
2975 const char *tagname, debug_type return_type,
2976 const char *argtypes, bool constp,
2977 bool volatilep, const char **pphysname)
2978 {
2979 bool is_full_physname_constructor;
2980 bool is_constructor;
2981 bool is_destructor;
2982 bool is_v3;
2983 debug_type *args;
2984 bool varargs;
2985 unsigned int physname_len = 0;
2986
2987 /* Constructors are sometimes handled specially. */
2988 is_full_physname_constructor = ((argtypes[0] == '_'
2989 && argtypes[1] == '_'
2990 && (ISDIGIT (argtypes[2])
2991 || argtypes[2] == 'Q'
2992 || argtypes[2] == 't'))
2993 || startswith (argtypes, "__ct"));
2994
2995 is_constructor = (is_full_physname_constructor
2996 || (tagname != NULL
2997 && strcmp (fieldname, tagname) == 0));
2998 is_destructor = ((argtypes[0] == '_'
2999 && (argtypes[1] == '$' || argtypes[1] == '.')
3000 && argtypes[2] == '_')
3001 || startswith (argtypes, "__dt"));
3002 is_v3 = argtypes[0] == '_' && argtypes[1] == 'Z';
3003
3004 if (!(is_destructor || is_full_physname_constructor || is_v3))
3005 {
3006 unsigned int len;
3007 const char *const_prefix;
3008 const char *volatile_prefix;
3009 char buf[20];
3010 unsigned int mangled_name_len;
3011 char *physname;
3012
3013 len = tagname == NULL ? 0 : strlen (tagname);
3014 const_prefix = constp ? "C" : "";
3015 volatile_prefix = volatilep ? "V" : "";
3016
3017 if (len == 0)
3018 sprintf (buf, "__%s%s", const_prefix, volatile_prefix);
3019 else if (tagname != NULL && strchr (tagname, '<') != NULL)
3020 {
3021 /* Template methods are fully mangled. */
3022 sprintf (buf, "__%s%s", const_prefix, volatile_prefix);
3023 tagname = NULL;
3024 len = 0;
3025 }
3026 else
3027 sprintf (buf, "__%s%s%d", const_prefix, volatile_prefix, len);
3028
3029 mangled_name_len = ((is_constructor ? 0 : strlen (fieldname))
3030 + strlen (buf)
3031 + len
3032 + strlen (argtypes)
3033 + 1);
3034
3035 if (fieldname[0] == 'o'
3036 && fieldname[1] == 'p'
3037 && (fieldname[2] == '$' || fieldname[2] == '.'))
3038 {
3039 /* Opname selection is no longer supported by libiberty's demangler. */
3040 return DEBUG_TYPE_NULL;
3041 }
3042
3043 physname = (char *) xmalloc (mangled_name_len);
3044 if (is_constructor)
3045 physname[0] = '\0';
3046 else
3047 strcpy (physname, fieldname);
3048
3049 physname_len = strlen (physname);
3050 strcat (physname, buf);
3051 if (tagname != NULL)
3052 strcat (physname, tagname);
3053 strcat (physname, argtypes);
3054
3055 *pphysname = physname;
3056 }
3057
3058 if (*argtypes == '\0' || is_destructor)
3059 {
3060 args = (debug_type *) xmalloc (sizeof *args);
3061 *args = NULL;
3062 return debug_make_method_type (dhandle, return_type, class_type, args,
3063 false);
3064 }
3065
3066 args = stab_demangle_argtypes (dhandle, info, *pphysname, &varargs, physname_len);
3067 if (args == NULL)
3068 return DEBUG_TYPE_NULL;
3069
3070 return debug_make_method_type (dhandle, return_type, class_type, args,
3071 varargs);
3072 }
3073
3074 /* The tail end of stabs for C++ classes that contain a virtual function
3075 pointer contains a tilde, a %, and a type number.
3076 The type number refers to the base class (possibly this class itself) which
3077 contains the vtable pointer for the current class.
3078
3079 This function is called when we have parsed all the method declarations,
3080 so we can look for the vptr base class info. */
3081
3082 static bool
3083 parse_stab_tilde_field (void *dhandle,
3084 struct stab_handle *info,
3085 const char **pp,
3086 const int *typenums,
3087 debug_type *retvptrbase,
3088 bool *retownvptr,
3089 const char *p_end)
3090 {
3091 const char *orig;
3092 const char *hold;
3093 int vtypenums[2];
3094
3095 *retvptrbase = DEBUG_TYPE_NULL;
3096 *retownvptr = false;
3097
3098 orig = *pp;
3099 if (orig >= p_end)
3100 return false;
3101
3102 /* If we are positioned at a ';', then skip it. */
3103 if (**pp == ';')
3104 ++*pp;
3105
3106 if (**pp != '~')
3107 return true;
3108 ++*pp;
3109
3110 if (**pp == '=' || **pp == '+' || **pp == '-')
3111 {
3112 /* Obsolete flags that used to indicate the presence of
3113 constructors and/or destructors. */
3114 ++*pp;
3115 }
3116
3117 if (**pp != '%')
3118 return true;
3119 ++*pp;
3120
3121 hold = *pp;
3122
3123 /* The next number is the type number of the base class (possibly
3124 our own class) which supplies the vtable for this class. */
3125 if (! parse_stab_type_number (pp, vtypenums, p_end))
3126 return false;
3127
3128 if (vtypenums[0] == typenums[0]
3129 && vtypenums[1] == typenums[1])
3130 *retownvptr = true;
3131 else
3132 {
3133 debug_type vtype;
3134 const char *p;
3135
3136 *pp = hold;
3137
3138 vtype = parse_stab_type (dhandle, info, (const char *) NULL, pp,
3139 (debug_type **) NULL, p_end);
3140 for (p = *pp; *p != ';' && *p != '\0'; p++)
3141 ;
3142 if (*p != ';')
3143 {
3144 bad_stab (orig);
3145 return false;
3146 }
3147
3148 *retvptrbase = vtype;
3149
3150 *pp = p + 1;
3151 }
3152
3153 return true;
3154 }
3155
3156 /* Read a definition of an array type. */
3157
3158 static debug_type
3159 parse_stab_array_type (void *dhandle,
3160 struct stab_handle *info,
3161 const char **pp,
3162 bool stringp,
3163 const char *p_end)
3164 {
3165 const char *orig;
3166 const char *p;
3167 int typenums[2];
3168 debug_type index_type;
3169 bool adjustable;
3170 bfd_signed_vma lower, upper;
3171 debug_type element_type;
3172
3173 /* Format of an array type:
3174 "ar<index type>;lower;upper;<array_contents_type>".
3175 OS9000: "arlower,upper;<array_contents_type>".
3176
3177 Fortran adjustable arrays use Adigits or Tdigits for lower or upper;
3178 for these, produce a type like float[][]. */
3179
3180 orig = *pp;
3181 if (orig >= p_end)
3182 return DEBUG_TYPE_NULL;
3183
3184 /* FIXME: gdb checks os9k_stabs here. */
3185
3186 /* If the index type is type 0, we take it as int. */
3187 p = *pp;
3188 if (! parse_stab_type_number (&p, typenums, p_end))
3189 return DEBUG_TYPE_NULL;
3190
3191 if (typenums[0] == 0 && typenums[1] == 0 && **pp != '=')
3192 {
3193 index_type = debug_find_named_type (dhandle, "int");
3194 if (index_type == DEBUG_TYPE_NULL)
3195 {
3196 index_type = debug_make_int_type (dhandle, 4, false);
3197 if (index_type == DEBUG_TYPE_NULL)
3198 return DEBUG_TYPE_NULL;
3199 }
3200 *pp = p;
3201 }
3202 else
3203 {
3204 index_type = parse_stab_type (dhandle, info, (const char *) NULL, pp,
3205 (debug_type **) NULL, p_end);
3206 }
3207
3208 if (**pp != ';')
3209 {
3210 bad_stab (orig);
3211 return DEBUG_TYPE_NULL;
3212 }
3213 ++*pp;
3214
3215 adjustable = false;
3216
3217 if (! ISDIGIT (**pp) && **pp != '-' && **pp != 0)
3218 {
3219 ++*pp;
3220 adjustable = true;
3221 }
3222
3223 lower = (bfd_signed_vma) parse_number (pp, (bool *) NULL, p_end);
3224 if (**pp != ';')
3225 {
3226 bad_stab (orig);
3227 return DEBUG_TYPE_NULL;
3228 }
3229 ++*pp;
3230
3231 if (! ISDIGIT (**pp) && **pp != '-' && **pp != 0)
3232 {
3233 ++*pp;
3234 adjustable = true;
3235 }
3236
3237 upper = (bfd_signed_vma) parse_number (pp, (bool *) NULL, p_end);
3238 if (**pp != ';')
3239 {
3240 bad_stab (orig);
3241 return DEBUG_TYPE_NULL;
3242 }
3243 ++*pp;
3244
3245 element_type = parse_stab_type (dhandle, info, (const char *) NULL, pp,
3246 (debug_type **) NULL, p_end);
3247 if (element_type == DEBUG_TYPE_NULL)
3248 return DEBUG_TYPE_NULL;
3249
3250 if (adjustable)
3251 {
3252 lower = 0;
3253 upper = -1;
3254 }
3255
3256 return debug_make_array_type (dhandle, element_type, index_type, lower,
3257 upper, stringp);
3258 }
3259
3260 /* This struct holds information about files we have seen using
3261 N_BINCL. */
3262
3263 struct bincl_file
3264 {
3265 /* The next N_BINCL file. */
3266 struct bincl_file *next;
3267 /* The next N_BINCL on the stack. */
3268 struct bincl_file *next_stack;
3269 /* The file name. */
3270 const char *name;
3271 /* The hash value. */
3272 bfd_vma hash;
3273 /* The file index. */
3274 unsigned int file;
3275 /* The list of types defined in this file. */
3276 struct stab_types *file_types;
3277 };
3278
3279 /* Start a new N_BINCL file, pushing it onto the stack. */
3280
3281 static void
3282 push_bincl (struct stab_handle *info, const char *name, bfd_vma hash)
3283 {
3284 struct bincl_file *n;
3285
3286 n = (struct bincl_file *) xmalloc (sizeof *n);
3287 n->next = info->bincl_list;
3288 n->next_stack = info->bincl_stack;
3289 n->name = name;
3290 n->hash = hash;
3291 n->file = info->files;
3292 n->file_types = NULL;
3293 info->bincl_list = n;
3294 info->bincl_stack = n;
3295
3296 ++info->files;
3297 info->file_types = ((struct stab_types **)
3298 xrealloc (info->file_types,
3299 (info->files
3300 * sizeof *info->file_types)));
3301 info->file_types[n->file] = NULL;
3302 }
3303
3304 /* Finish an N_BINCL file, at an N_EINCL, popping the name off the
3305 stack. */
3306
3307 static const char *
3308 pop_bincl (struct stab_handle *info)
3309 {
3310 struct bincl_file *o;
3311
3312 o = info->bincl_stack;
3313 if (o == NULL)
3314 return info->main_filename;
3315 info->bincl_stack = o->next_stack;
3316
3317 if (o->file >= info->files)
3318 return info->main_filename;
3319
3320 o->file_types = info->file_types[o->file];
3321
3322 if (info->bincl_stack == NULL)
3323 return info->main_filename;
3324 return info->bincl_stack->name;
3325 }
3326
3327 /* Handle an N_EXCL: get the types from the corresponding N_BINCL. */
3328
3329 static bool
3330 find_excl (struct stab_handle *info, const char *name, bfd_vma hash)
3331 {
3332 struct bincl_file *l;
3333
3334 ++info->files;
3335 info->file_types = ((struct stab_types **)
3336 xrealloc (info->file_types,
3337 (info->files
3338 * sizeof *info->file_types)));
3339
3340 for (l = info->bincl_list; l != NULL; l = l->next)
3341 if (l->hash == hash && strcmp (l->name, name) == 0)
3342 break;
3343 if (l == NULL)
3344 {
3345 warn_stab (name, _("Undefined N_EXCL"));
3346 info->file_types[info->files - 1] = NULL;
3347 return true;
3348 }
3349
3350 info->file_types[info->files - 1] = l->file_types;
3351
3352 return true;
3353 }
3354
3355 /* Handle a variable definition. gcc emits variable definitions for a
3356 block before the N_LBRAC, so we must hold onto them until we see
3357 it. The SunPRO compiler emits variable definitions after the
3358 N_LBRAC, so we can call debug_record_variable immediately. */
3359
3360 static bool
3361 stab_record_variable (void *dhandle, struct stab_handle *info,
3362 const char *name, debug_type type,
3363 enum debug_var_kind kind, bfd_vma val)
3364 {
3365 struct stab_pending_var *v;
3366
3367 if ((kind == DEBUG_GLOBAL || kind == DEBUG_STATIC)
3368 || ! info->within_function
3369 || (info->gcc_compiled == 0 && info->n_opt_found))
3370 return debug_record_variable (dhandle, name, type, kind, val);
3371
3372 v = (struct stab_pending_var *) xmalloc (sizeof *v);
3373 memset (v, 0, sizeof *v);
3374
3375 v->next = info->pending;
3376 v->name = name;
3377 v->type = type;
3378 v->kind = kind;
3379 v->val = val;
3380 info->pending = v;
3381
3382 return true;
3383 }
3384
3385 /* Emit pending variable definitions. This is called after we see the
3386 N_LBRAC that starts the block. */
3387
3388 static bool
3389 stab_emit_pending_vars (void *dhandle, struct stab_handle *info)
3390 {
3391 struct stab_pending_var *v;
3392
3393 v = info->pending;
3394 while (v != NULL)
3395 {
3396 struct stab_pending_var *next;
3397
3398 if (! debug_record_variable (dhandle, v->name, v->type, v->kind, v->val))
3399 return false;
3400
3401 next = v->next;
3402 free (v);
3403 v = next;
3404 }
3405
3406 info->pending = NULL;
3407
3408 return true;
3409 }
3410
3411 /* Find the slot for a type in the database. */
3412
3413 static debug_type *
3414 stab_find_slot (struct stab_handle *info, const int *typenums)
3415 {
3416 int filenum;
3417 int tindex;
3418 struct stab_types **ps;
3419
3420 filenum = typenums[0];
3421 tindex = typenums[1];
3422
3423 if (filenum < 0 || (unsigned int) filenum >= info->files)
3424 {
3425 fprintf (stderr, _("Type file number %d out of range\n"), filenum);
3426 return NULL;
3427 }
3428 if (tindex < 0)
3429 {
3430 fprintf (stderr, _("Type index number %d out of range\n"), tindex);
3431 return NULL;
3432 }
3433
3434 ps = info->file_types + filenum;
3435
3436 while (tindex >= STAB_TYPES_SLOTS)
3437 {
3438 if (*ps == NULL)
3439 {
3440 *ps = (struct stab_types *) xmalloc (sizeof **ps);
3441 memset (*ps, 0, sizeof **ps);
3442 }
3443 ps = &(*ps)->next;
3444 tindex -= STAB_TYPES_SLOTS;
3445 }
3446 if (*ps == NULL)
3447 {
3448 *ps = (struct stab_types *) xmalloc (sizeof **ps);
3449 memset (*ps, 0, sizeof **ps);
3450 }
3451
3452 return (*ps)->types + tindex;
3453 }
3454
3455 /* Find a type given a type number. If the type has not been
3456 allocated yet, create an indirect type. */
3457
3458 static debug_type
3459 stab_find_type (void *dhandle, struct stab_handle *info, const int *typenums)
3460 {
3461 debug_type *slot;
3462
3463 if (typenums[0] == 0 && typenums[1] < 0)
3464 {
3465 /* A negative type number indicates an XCOFF builtin type. */
3466 return stab_xcoff_builtin_type (dhandle, info, typenums[1]);
3467 }
3468
3469 slot = stab_find_slot (info, typenums);
3470 if (slot == NULL)
3471 return DEBUG_TYPE_NULL;
3472
3473 if (*slot == DEBUG_TYPE_NULL)
3474 return debug_make_indirect_type (dhandle, slot, (const char *) NULL);
3475
3476 return *slot;
3477 }
3478
3479 /* Record that a given type number refers to a given type. */
3480
3481 static bool
3482 stab_record_type (void *dhandle ATTRIBUTE_UNUSED, struct stab_handle *info,
3483 const int *typenums, debug_type type)
3484 {
3485 debug_type *slot;
3486
3487 slot = stab_find_slot (info, typenums);
3488 if (slot == NULL)
3489 return false;
3490
3491 /* gdb appears to ignore type redefinitions, so we do as well. */
3492
3493 *slot = type;
3494
3495 return true;
3496 }
3497
3498 /* Return an XCOFF builtin type. */
3499
3500 static debug_type
3501 stab_xcoff_builtin_type (void *dhandle, struct stab_handle *info,
3502 unsigned int typenum)
3503 {
3504 debug_type rettype;
3505 const char *name;
3506
3507 typenum = -typenum - 1;
3508 if (typenum >= XCOFF_TYPE_COUNT)
3509 {
3510 fprintf (stderr, _("Unrecognized XCOFF type %d\n"), -typenum - 1);
3511 return DEBUG_TYPE_NULL;
3512 }
3513 if (info->xcoff_types[typenum] != NULL)
3514 return info->xcoff_types[typenum];
3515
3516 switch (typenum)
3517 {
3518 case 0:
3519 /* The size of this and all the other types are fixed, defined
3520 by the debugging format. */
3521 name = "int";
3522 rettype = debug_make_int_type (dhandle, 4, false);
3523 break;
3524 case 1:
3525 name = "char";
3526 rettype = debug_make_int_type (dhandle, 1, false);
3527 break;
3528 case 2:
3529 name = "short";
3530 rettype = debug_make_int_type (dhandle, 2, false);
3531 break;
3532 case 3:
3533 name = "long";
3534 rettype = debug_make_int_type (dhandle, 4, false);
3535 break;
3536 case 4:
3537 name = "unsigned char";
3538 rettype = debug_make_int_type (dhandle, 1, true);
3539 break;
3540 case 5:
3541 name = "signed char";
3542 rettype = debug_make_int_type (dhandle, 1, false);
3543 break;
3544 case 6:
3545 name = "unsigned short";
3546 rettype = debug_make_int_type (dhandle, 2, true);
3547 break;
3548 case 7:
3549 name = "unsigned int";
3550 rettype = debug_make_int_type (dhandle, 4, true);
3551 break;
3552 case 8:
3553 name = "unsigned";
3554 rettype = debug_make_int_type (dhandle, 4, true);
3555 break;
3556 case 9:
3557 name = "unsigned long";
3558 rettype = debug_make_int_type (dhandle, 4, true);
3559 break;
3560 case 10:
3561 name = "void";
3562 rettype = debug_make_void_type (dhandle);
3563 break;
3564 case 11:
3565 /* IEEE single precision (32 bit). */
3566 name = "float";
3567 rettype = debug_make_float_type (dhandle, 4);
3568 break;
3569 case 12:
3570 /* IEEE double precision (64 bit). */
3571 name = "double";
3572 rettype = debug_make_float_type (dhandle, 8);
3573 break;
3574 case 13:
3575 /* This is an IEEE double on the RS/6000, and different machines
3576 with different sizes for "long double" should use different
3577 negative type numbers. See stabs.texinfo. */
3578 name = "long double";
3579 rettype = debug_make_float_type (dhandle, 8);
3580 break;
3581 case 14:
3582 name = "integer";
3583 rettype = debug_make_int_type (dhandle, 4, false);
3584 break;
3585 case 15:
3586 name = "boolean";
3587 rettype = debug_make_bool_type (dhandle, 4);
3588 break;
3589 case 16:
3590 name = "short real";
3591 rettype = debug_make_float_type (dhandle, 4);
3592 break;
3593 case 17:
3594 name = "real";
3595 rettype = debug_make_float_type (dhandle, 8);
3596 break;
3597 case 18:
3598 /* FIXME */
3599 name = "stringptr";
3600 rettype = NULL;
3601 break;
3602 case 19:
3603 /* FIXME */
3604 name = "character";
3605 rettype = debug_make_int_type (dhandle, 1, true);
3606 break;
3607 case 20:
3608 name = "logical*1";
3609 rettype = debug_make_bool_type (dhandle, 1);
3610 break;
3611 case 21:
3612 name = "logical*2";
3613 rettype = debug_make_bool_type (dhandle, 2);
3614 break;
3615 case 22:
3616 name = "logical*4";
3617 rettype = debug_make_bool_type (dhandle, 4);
3618 break;
3619 case 23:
3620 name = "logical";
3621 rettype = debug_make_bool_type (dhandle, 4);
3622 break;
3623 case 24:
3624 /* Complex type consisting of two IEEE single precision values. */
3625 name = "complex";
3626 rettype = debug_make_complex_type (dhandle, 8);
3627 break;
3628 case 25:
3629 /* Complex type consisting of two IEEE double precision values. */
3630 name = "double complex";
3631 rettype = debug_make_complex_type (dhandle, 16);
3632 break;
3633 case 26:
3634 name = "integer*1";
3635 rettype = debug_make_int_type (dhandle, 1, false);
3636 break;
3637 case 27:
3638 name = "integer*2";
3639 rettype = debug_make_int_type (dhandle, 2, false);
3640 break;
3641 case 28:
3642 name = "integer*4";
3643 rettype = debug_make_int_type (dhandle, 4, false);
3644 break;
3645 case 29:
3646 /* FIXME */
3647 name = "wchar";
3648 rettype = debug_make_int_type (dhandle, 2, false);
3649 break;
3650 case 30:
3651 name = "long long";
3652 rettype = debug_make_int_type (dhandle, 8, false);
3653 break;
3654 case 31:
3655 name = "unsigned long long";
3656 rettype = debug_make_int_type (dhandle, 8, true);
3657 break;
3658 case 32:
3659 name = "logical*8";
3660 rettype = debug_make_bool_type (dhandle, 8);
3661 break;
3662 case 33:
3663 name = "integer*8";
3664 rettype = debug_make_int_type (dhandle, 8, false);
3665 break;
3666 default:
3667 abort ();
3668 }
3669
3670 rettype = debug_name_type (dhandle, name, rettype);
3671 info->xcoff_types[typenum] = rettype;
3672 return rettype;
3673 }
3674
3675 /* Find or create a tagged type. */
3676
3677 static debug_type
3678 stab_find_tagged_type (void *dhandle, struct stab_handle *info,
3679 const char *p, int len, enum debug_type_kind kind)
3680 {
3681 char *name;
3682 debug_type dtype;
3683 struct stab_tag *st;
3684
3685 name = savestring (p, len);
3686
3687 /* We pass DEBUG_KIND_ILLEGAL because we want all tags in the same
3688 namespace. This is right for C, and I don't know how to handle
3689 other languages. FIXME. */
3690 dtype = debug_find_tagged_type (dhandle, name, DEBUG_KIND_ILLEGAL);
3691 if (dtype != DEBUG_TYPE_NULL)
3692 {
3693 free (name);
3694 return dtype;
3695 }
3696
3697 /* We need to allocate an entry on the undefined tag list. */
3698 for (st = info->tags; st != NULL; st = st->next)
3699 {
3700 if (st->name[0] == name[0]
3701 && strcmp (st->name, name) == 0)
3702 {
3703 if (st->kind == DEBUG_KIND_ILLEGAL)
3704 st->kind = kind;
3705 free (name);
3706 break;
3707 }
3708 }
3709 if (st == NULL)
3710 {
3711 st = (struct stab_tag *) xmalloc (sizeof *st);
3712 memset (st, 0, sizeof *st);
3713
3714 st->next = info->tags;
3715 st->name = name;
3716 st->kind = kind;
3717 st->slot = DEBUG_TYPE_NULL;
3718 st->type = debug_make_indirect_type (dhandle, &st->slot, name);
3719 info->tags = st;
3720 }
3721
3722 return st->type;
3723 }
3724 \f
3725 /* In order to get the correct argument types for a stubbed method, we
3726 need to extract the argument types from a C++ mangled string.
3727 Since the argument types can refer back to the return type, this
3728 means that we must demangle the entire physical name. In gdb this
3729 is done by calling cplus_demangle and running the results back
3730 through the C++ expression parser. Since we have no expression
3731 parser, we must duplicate much of the work of cplus_demangle here.
3732
3733 We assume that GNU style demangling is used, since this is only
3734 done for method stubs, and only g++ should output that form of
3735 debugging information. */
3736
3737 /* This structure is used to hold a pointer to type information which
3738 demangling a string. */
3739
3740 struct stab_demangle_typestring
3741 {
3742 /* The start of the type. This is not null terminated. */
3743 const char *typestring;
3744 /* The length of the type. */
3745 unsigned int len;
3746 };
3747
3748 /* This structure is used to hold information while demangling a
3749 string. */
3750
3751 struct stab_demangle_info
3752 {
3753 /* The debugging information handle. */
3754 void *dhandle;
3755 /* The stab information handle. */
3756 struct stab_handle *info;
3757 /* The array of arguments we are building. */
3758 debug_type *args;
3759 /* Whether the method takes a variable number of arguments. */
3760 bool varargs;
3761 /* The array of types we have remembered. */
3762 struct stab_demangle_typestring *typestrings;
3763 /* The number of typestrings. */
3764 unsigned int typestring_count;
3765 /* The number of typestring slots we have allocated. */
3766 unsigned int typestring_alloc;
3767 };
3768
3769 static void stab_bad_demangle (const char *);
3770 static unsigned int stab_demangle_count (const char **);
3771 static bool stab_demangle_get_count (const char **, unsigned int *);
3772 static bool stab_demangle_prefix
3773 (struct stab_demangle_info *, const char **, unsigned int);
3774 static bool stab_demangle_function_name
3775 (struct stab_demangle_info *, const char **, const char *);
3776 static bool stab_demangle_signature
3777 (struct stab_demangle_info *, const char **);
3778 static bool stab_demangle_qualified
3779 (struct stab_demangle_info *, const char **, debug_type *);
3780 static bool stab_demangle_template
3781 (struct stab_demangle_info *, const char **, char **);
3782 static bool stab_demangle_class
3783 (struct stab_demangle_info *, const char **, const char **);
3784 static bool stab_demangle_args
3785 (struct stab_demangle_info *, const char **, debug_type **, bool *);
3786 static bool stab_demangle_arg
3787 (struct stab_demangle_info *, const char **, debug_type **,
3788 unsigned int *, unsigned int *);
3789 static bool stab_demangle_type
3790 (struct stab_demangle_info *, const char **, debug_type *);
3791 static bool stab_demangle_fund_type
3792 (struct stab_demangle_info *, const char **, debug_type *);
3793 static bool stab_demangle_remember_type
3794 (struct stab_demangle_info *, const char *, int);
3795
3796 /* Warn about a bad demangling. */
3797
3798 static void
3799 stab_bad_demangle (const char *s)
3800 {
3801 fprintf (stderr, _("bad mangled name `%s'\n"), s);
3802 }
3803
3804 /* Get a count from a stab string. */
3805
3806 static unsigned int
3807 stab_demangle_count (const char **pp)
3808 {
3809 unsigned int count;
3810
3811 count = 0;
3812 while (ISDIGIT (**pp))
3813 {
3814 count *= 10;
3815 count += **pp - '0';
3816 ++*pp;
3817 }
3818 return count;
3819 }
3820
3821 /* Require a count in a string. The count may be multiple digits, in
3822 which case it must end in an underscore. */
3823
3824 static bool
3825 stab_demangle_get_count (const char **pp, unsigned int *pi)
3826 {
3827 if (! ISDIGIT (**pp))
3828 return false;
3829
3830 *pi = **pp - '0';
3831 ++*pp;
3832 if (ISDIGIT (**pp))
3833 {
3834 unsigned int count;
3835 const char *p;
3836
3837 count = *pi;
3838 p = *pp;
3839 do
3840 {
3841 count *= 10;
3842 count += *p - '0';
3843 ++p;
3844 }
3845 while (ISDIGIT (*p));
3846 if (*p == '_')
3847 {
3848 *pp = p + 1;
3849 *pi = count;
3850 }
3851 }
3852
3853 return true;
3854 }
3855
3856 /* This function demangles a physical name, returning a NULL
3857 terminated array of argument types. */
3858
3859 static debug_type *
3860 stab_demangle_argtypes (void *dhandle, struct stab_handle *info,
3861 const char *physname, bool *pvarargs,
3862 unsigned int physname_len)
3863 {
3864 struct stab_demangle_info minfo;
3865
3866 /* Check for the g++ V3 ABI. */
3867 if (physname[0] == '_' && physname[1] == 'Z')
3868 return stab_demangle_v3_argtypes (dhandle, info, physname, pvarargs);
3869
3870 minfo.dhandle = dhandle;
3871 minfo.info = info;
3872 minfo.args = NULL;
3873 minfo.varargs = false;
3874 minfo.typestring_alloc = 10;
3875 minfo.typestrings = ((struct stab_demangle_typestring *)
3876 xmalloc (minfo.typestring_alloc
3877 * sizeof *minfo.typestrings));
3878 minfo.typestring_count = 0;
3879
3880 /* cplus_demangle checks for special GNU mangled forms, but we can't
3881 see any of them in mangled method argument types. */
3882
3883 if (! stab_demangle_prefix (&minfo, &physname, physname_len))
3884 goto error_return;
3885
3886 if (*physname != '\0')
3887 {
3888 if (! stab_demangle_signature (&minfo, &physname))
3889 goto error_return;
3890 }
3891
3892 free (minfo.typestrings);
3893 minfo.typestrings = NULL;
3894
3895 if (minfo.args == NULL)
3896 fprintf (stderr, _("no argument types in mangled string\n"));
3897
3898 *pvarargs = minfo.varargs;
3899 return minfo.args;
3900
3901 error_return:
3902 free (minfo.typestrings);
3903 return NULL;
3904 }
3905
3906 /* Demangle the prefix of the mangled name. */
3907
3908 static bool
3909 stab_demangle_prefix (struct stab_demangle_info *minfo, const char **pp,
3910 unsigned int physname_len)
3911 {
3912 const char *scan;
3913 unsigned int i;
3914
3915 /* cplus_demangle checks for global constructors and destructors,
3916 but we can't see them in mangled argument types. */
3917
3918 if (physname_len)
3919 scan = *pp + physname_len;
3920 else
3921 {
3922 /* Look for `__'. */
3923 scan = *pp;
3924 do
3925 scan = strchr (scan, '_');
3926 while (scan != NULL && *++scan != '_');
3927
3928 if (scan == NULL)
3929 {
3930 stab_bad_demangle (*pp);
3931 return false;
3932 }
3933
3934 --scan;
3935
3936 /* We found `__'; move ahead to the last contiguous `__' pair. */
3937 i = strspn (scan, "_");
3938 if (i > 2)
3939 scan += i - 2;
3940 }
3941
3942 if (scan == *pp
3943 && (ISDIGIT (scan[2])
3944 || scan[2] == 'Q'
3945 || scan[2] == 't'))
3946 {
3947 /* This is a GNU style constructor name. */
3948 *pp = scan + 2;
3949 return true;
3950 }
3951 else if (scan == *pp
3952 && ! ISDIGIT (scan[2])
3953 && scan[2] != 't')
3954 {
3955 /* Look for the `__' that separates the prefix from the
3956 signature. */
3957 while (*scan == '_')
3958 ++scan;
3959 scan = strstr (scan, "__");
3960 if (scan == NULL || scan[2] == '\0')
3961 {
3962 stab_bad_demangle (*pp);
3963 return false;
3964 }
3965
3966 return stab_demangle_function_name (minfo, pp, scan);
3967 }
3968 else if (scan[2] != '\0')
3969 {
3970 /* The name doesn't start with `__', but it does contain `__'. */
3971 return stab_demangle_function_name (minfo, pp, scan);
3972 }
3973 else
3974 {
3975 stab_bad_demangle (*pp);
3976 return false;
3977 }
3978 /*NOTREACHED*/
3979 }
3980
3981 /* Demangle a function name prefix. The scan argument points to the
3982 double underscore which separates the function name from the
3983 signature. */
3984
3985 static bool
3986 stab_demangle_function_name (struct stab_demangle_info *minfo,
3987 const char **pp, const char *scan)
3988 {
3989 const char *name;
3990
3991 /* The string from *pp to scan is the name of the function. We
3992 don't care about the name, since we just looking for argument
3993 types. However, for conversion operators, the name may include a
3994 type which we must remember in order to handle backreferences. */
3995
3996 name = *pp;
3997 *pp = scan + 2;
3998
3999 if (*pp - name >= 5
4000 && startswith (name, "type")
4001 && (name[4] == '$' || name[4] == '.'))
4002 {
4003 const char *tem;
4004
4005 /* This is a type conversion operator. */
4006 tem = name + 5;
4007 if (! stab_demangle_type (minfo, &tem, (debug_type *) NULL))
4008 return false;
4009 }
4010 else if (name[0] == '_'
4011 && name[1] == '_'
4012 && name[2] == 'o'
4013 && name[3] == 'p')
4014 {
4015 const char *tem;
4016
4017 /* This is a type conversion operator. */
4018 tem = name + 4;
4019 if (! stab_demangle_type (minfo, &tem, (debug_type *) NULL))
4020 return false;
4021 }
4022
4023 return true;
4024 }
4025
4026 /* Demangle the signature. This is where the argument types are
4027 found. */
4028
4029 static bool
4030 stab_demangle_signature (struct stab_demangle_info *minfo, const char **pp)
4031 {
4032 const char *orig;
4033 bool expect_func, func_done;
4034 const char *hold;
4035
4036 orig = *pp;
4037
4038 expect_func = false;
4039 func_done = false;
4040 hold = NULL;
4041
4042 while (**pp != '\0')
4043 {
4044 switch (**pp)
4045 {
4046 case 'Q':
4047 hold = *pp;
4048 if (! stab_demangle_qualified (minfo, pp, (debug_type *) NULL)
4049 || ! stab_demangle_remember_type (minfo, hold, *pp - hold))
4050 return false;
4051 expect_func = true;
4052 hold = NULL;
4053 break;
4054
4055 case 'S':
4056 /* Static member function. FIXME: Can this happen? */
4057 if (hold == NULL)
4058 hold = *pp;
4059 ++*pp;
4060 break;
4061
4062 case 'C':
4063 /* Const member function. */
4064 if (hold == NULL)
4065 hold = *pp;
4066 ++*pp;
4067 break;
4068
4069 case '0': case '1': case '2': case '3': case '4':
4070 case '5': case '6': case '7': case '8': case '9':
4071 if (hold == NULL)
4072 hold = *pp;
4073 if (! stab_demangle_class (minfo, pp, (const char **) NULL)
4074 || ! stab_demangle_remember_type (minfo, hold, *pp - hold))
4075 return false;
4076 expect_func = true;
4077 hold = NULL;
4078 break;
4079
4080 case 'F':
4081 /* Function. I don't know if this actually happens with g++
4082 output. */
4083 hold = NULL;
4084 func_done = true;
4085 ++*pp;
4086 if (! stab_demangle_args (minfo, pp, &minfo->args, &minfo->varargs))
4087 return false;
4088 break;
4089
4090 case 't':
4091 /* Template. */
4092 if (hold == NULL)
4093 hold = *pp;
4094 if (! stab_demangle_template (minfo, pp, (char **) NULL)
4095 || ! stab_demangle_remember_type (minfo, hold, *pp - hold))
4096 return false;
4097 hold = NULL;
4098 expect_func = true;
4099 break;
4100
4101 case '_':
4102 /* At the outermost level, we cannot have a return type
4103 specified, so if we run into another '_' at this point we
4104 are dealing with a mangled name that is either bogus, or
4105 has been mangled by some algorithm we don't know how to
4106 deal with. So just reject the entire demangling. */
4107 stab_bad_demangle (orig);
4108 return false;
4109
4110 default:
4111 /* Assume we have stumbled onto the first outermost function
4112 argument token, and start processing args. */
4113 func_done = true;
4114 if (! stab_demangle_args (minfo, pp, &minfo->args, &minfo->varargs))
4115 return false;
4116 break;
4117 }
4118
4119 if (expect_func)
4120 {
4121 func_done = true;
4122 if (! stab_demangle_args (minfo, pp, &minfo->args, &minfo->varargs))
4123 return false;
4124 }
4125 }
4126
4127 if (! func_done)
4128 {
4129 /* With GNU style demangling, bar__3foo is 'foo::bar(void)', and
4130 bar__3fooi is 'foo::bar(int)'. We get here when we find the
4131 first case, and need to ensure that the '(void)' gets added
4132 to the current declp. */
4133 if (! stab_demangle_args (minfo, pp, &minfo->args, &minfo->varargs))
4134 return false;
4135 }
4136
4137 return true;
4138 }
4139
4140 /* Demangle a qualified name, such as "Q25Outer5Inner" which is the
4141 mangled form of "Outer::Inner". */
4142
4143 static bool
4144 stab_demangle_qualified (struct stab_demangle_info *minfo, const char **pp,
4145 debug_type *ptype)
4146 {
4147 const char *orig;
4148 const char *p;
4149 unsigned int qualifiers;
4150 debug_type context;
4151
4152 orig = *pp;
4153
4154 switch ((*pp)[1])
4155 {
4156 case '_':
4157 /* GNU mangled name with more than 9 classes. The count is
4158 preceded by an underscore (to distinguish it from the <= 9
4159 case) and followed by an underscore. */
4160 p = *pp + 2;
4161 if (! ISDIGIT (*p) || *p == '0')
4162 {
4163 stab_bad_demangle (orig);
4164 return false;
4165 }
4166 qualifiers = atoi (p);
4167 while (ISDIGIT (*p))
4168 ++p;
4169 if (*p != '_')
4170 {
4171 stab_bad_demangle (orig);
4172 return false;
4173 }
4174 *pp = p + 1;
4175 break;
4176
4177 case '1': case '2': case '3': case '4': case '5':
4178 case '6': case '7': case '8': case '9':
4179 qualifiers = (*pp)[1] - '0';
4180 /* Skip an optional underscore after the count. */
4181 if ((*pp)[2] == '_')
4182 ++*pp;
4183 *pp += 2;
4184 break;
4185
4186 case '0':
4187 default:
4188 stab_bad_demangle (orig);
4189 return false;
4190 }
4191
4192 context = DEBUG_TYPE_NULL;
4193
4194 /* Pick off the names. */
4195 while (qualifiers-- > 0)
4196 {
4197 if (**pp == '_')
4198 ++*pp;
4199 if (**pp == 't')
4200 {
4201 char *name;
4202
4203 if (! stab_demangle_template (minfo, pp,
4204 ptype != NULL ? &name : NULL))
4205 return false;
4206
4207 if (ptype != NULL)
4208 {
4209 context = stab_find_tagged_type (minfo->dhandle, minfo->info,
4210 name, strlen (name),
4211 DEBUG_KIND_CLASS);
4212 free (name);
4213 if (context == DEBUG_TYPE_NULL)
4214 return false;
4215 }
4216 }
4217 else
4218 {
4219 unsigned int len;
4220
4221 len = stab_demangle_count (pp);
4222 if (strlen (*pp) < len)
4223 {
4224 stab_bad_demangle (orig);
4225 return false;
4226 }
4227
4228 if (ptype != NULL)
4229 {
4230 const debug_field *fields;
4231
4232 fields = NULL;
4233 if (context != DEBUG_TYPE_NULL)
4234 fields = debug_get_fields (minfo->dhandle, context);
4235
4236 context = DEBUG_TYPE_NULL;
4237
4238 if (fields != NULL)
4239 {
4240 char *name;
4241
4242 /* Try to find the type by looking through the
4243 fields of context until we find a field with the
4244 same type. This ought to work for a class
4245 defined within a class, but it won't work for,
4246 e.g., an enum defined within a class. stabs does
4247 not give us enough information to figure out the
4248 latter case. */
4249
4250 name = savestring (*pp, len);
4251
4252 for (; *fields != DEBUG_FIELD_NULL; fields++)
4253 {
4254 debug_type ft;
4255 const char *dn;
4256
4257 ft = debug_get_field_type (minfo->dhandle, *fields);
4258 if (ft == NULL)
4259 {
4260 free (name);
4261 return false;
4262 }
4263 dn = debug_get_type_name (minfo->dhandle, ft);
4264 if (dn != NULL && strcmp (dn, name) == 0)
4265 {
4266 context = ft;
4267 break;
4268 }
4269 }
4270
4271 free (name);
4272 }
4273
4274 if (context == DEBUG_TYPE_NULL)
4275 {
4276 /* We have to fall back on finding the type by name.
4277 If there are more types to come, then this must
4278 be a class. Otherwise, it could be anything. */
4279
4280 if (qualifiers == 0)
4281 {
4282 char *name;
4283
4284 name = savestring (*pp, len);
4285 context = debug_find_named_type (minfo->dhandle,
4286 name);
4287 free (name);
4288 }
4289
4290 if (context == DEBUG_TYPE_NULL)
4291 {
4292 context = stab_find_tagged_type (minfo->dhandle,
4293 minfo->info,
4294 *pp, len,
4295 (qualifiers == 0
4296 ? DEBUG_KIND_ILLEGAL
4297 : DEBUG_KIND_CLASS));
4298 if (context == DEBUG_TYPE_NULL)
4299 return false;
4300 }
4301 }
4302 }
4303
4304 *pp += len;
4305 }
4306 }
4307
4308 if (ptype != NULL)
4309 *ptype = context;
4310
4311 return true;
4312 }
4313
4314 /* Demangle a template. If PNAME is not NULL, this sets *PNAME to a
4315 string representation of the template. */
4316
4317 static bool
4318 stab_demangle_template (struct stab_demangle_info *minfo, const char **pp,
4319 char **pname)
4320 {
4321 const char *orig;
4322 unsigned int r, i;
4323
4324 orig = *pp;
4325
4326 ++*pp;
4327
4328 /* Skip the template name. */
4329 r = stab_demangle_count (pp);
4330 if (r == 0 || strlen (*pp) < r)
4331 {
4332 stab_bad_demangle (orig);
4333 return false;
4334 }
4335 *pp += r;
4336
4337 /* Get the size of the parameter list. */
4338 if (stab_demangle_get_count (pp, &r) == 0)
4339 {
4340 stab_bad_demangle (orig);
4341 return false;
4342 }
4343
4344 for (i = 0; i < r; i++)
4345 {
4346 if (**pp == 'Z')
4347 {
4348 /* This is a type parameter. */
4349 ++*pp;
4350 if (! stab_demangle_type (minfo, pp, (debug_type *) NULL))
4351 return false;
4352 }
4353 else
4354 {
4355 const char *old_p;
4356 bool pointerp, realp, integralp, charp, boolp;
4357 bool done;
4358
4359 old_p = *pp;
4360 pointerp = false;
4361 realp = false;
4362 integralp = false;
4363 charp = false;
4364 boolp = false;
4365 done = false;
4366
4367 /* This is a value parameter. */
4368
4369 if (! stab_demangle_type (minfo, pp, (debug_type *) NULL))
4370 return false;
4371
4372 while (*old_p != '\0' && ! done)
4373 {
4374 switch (*old_p)
4375 {
4376 case 'P':
4377 case 'p':
4378 case 'R':
4379 pointerp = true;
4380 done = true;
4381 break;
4382 case 'C': /* Const. */
4383 case 'S': /* Signed. */
4384 case 'U': /* Unsigned. */
4385 case 'V': /* Volatile. */
4386 case 'F': /* Function. */
4387 case 'M': /* Member function. */
4388 case 'O': /* ??? */
4389 ++old_p;
4390 break;
4391 case 'Q': /* Qualified name. */
4392 integralp = true;
4393 done = true;
4394 break;
4395 case 'T': /* Remembered type. */
4396 abort ();
4397 case 'v': /* Void. */
4398 abort ();
4399 case 'x': /* Long long. */
4400 case 'l': /* Long. */
4401 case 'i': /* Int. */
4402 case 's': /* Short. */
4403 case 'w': /* Wchar_t. */
4404 integralp = true;
4405 done = true;
4406 break;
4407 case 'b': /* Bool. */
4408 boolp = true;
4409 done = true;
4410 break;
4411 case 'c': /* Char. */
4412 charp = true;
4413 done = true;
4414 break;
4415 case 'r': /* Long double. */
4416 case 'd': /* Double. */
4417 case 'f': /* Float. */
4418 realp = true;
4419 done = true;
4420 break;
4421 default:
4422 /* Assume it's a user defined integral type. */
4423 integralp = true;
4424 done = true;
4425 break;
4426 }
4427 }
4428
4429 if (integralp)
4430 {
4431 if (**pp == 'm')
4432 ++*pp;
4433 while (ISDIGIT (**pp))
4434 ++*pp;
4435 }
4436 else if (charp)
4437 {
4438 unsigned int val;
4439
4440 if (**pp == 'm')
4441 ++*pp;
4442 val = stab_demangle_count (pp);
4443 if (val == 0)
4444 {
4445 stab_bad_demangle (orig);
4446 return false;
4447 }
4448 }
4449 else if (boolp)
4450 {
4451 unsigned int val;
4452
4453 val = stab_demangle_count (pp);
4454 if (val != 0 && val != 1)
4455 {
4456 stab_bad_demangle (orig);
4457 return false;
4458 }
4459 }
4460 else if (realp)
4461 {
4462 if (**pp == 'm')
4463 ++*pp;
4464 while (ISDIGIT (**pp))
4465 ++*pp;
4466 if (**pp == '.')
4467 {
4468 ++*pp;
4469 while (ISDIGIT (**pp))
4470 ++*pp;
4471 }
4472 if (**pp == 'e')
4473 {
4474 ++*pp;
4475 while (ISDIGIT (**pp))
4476 ++*pp;
4477 }
4478 }
4479 else if (pointerp)
4480 {
4481 unsigned int len;
4482
4483 len = stab_demangle_count (pp);
4484 if (len == 0)
4485 {
4486 stab_bad_demangle (orig);
4487 return false;
4488 }
4489 *pp += len;
4490 }
4491 }
4492 }
4493
4494 /* We can translate this to a string fairly easily by invoking the
4495 regular demangling routine. */
4496 if (pname != NULL)
4497 {
4498 char *s1, *s2, *s3, *s4 = NULL;
4499 char *from, *to;
4500
4501 s1 = savestring (orig, *pp - orig);
4502
4503 s2 = concat ("NoSuchStrinG__", s1, (const char *) NULL);
4504
4505 free (s1);
4506
4507 s3 = cplus_demangle (s2, demangle_flags);
4508
4509 free (s2);
4510
4511 if (s3 != NULL)
4512 s4 = strstr (s3, "::NoSuchStrinG");
4513 if (s3 == NULL || s4 == NULL)
4514 {
4515 stab_bad_demangle (orig);
4516 free (s3);
4517 return false;
4518 }
4519
4520 /* Eliminating all spaces, except those between > characters,
4521 makes it more likely that the demangled name will match the
4522 name which g++ used as the structure name. */
4523 for (from = to = s3; from != s4; ++from)
4524 if (*from != ' '
4525 || (from[1] == '>' && from > s3 && from[-1] == '>'))
4526 *to++ = *from;
4527
4528 *pname = savestring (s3, to - s3);
4529
4530 free (s3);
4531 }
4532
4533 return true;
4534 }
4535
4536 /* Demangle a class name. */
4537
4538 static bool
4539 stab_demangle_class (struct stab_demangle_info *minfo ATTRIBUTE_UNUSED,
4540 const char **pp, const char **pstart)
4541 {
4542 const char *orig;
4543 unsigned int n;
4544
4545 orig = *pp;
4546
4547 n = stab_demangle_count (pp);
4548 if (strlen (*pp) < n)
4549 {
4550 stab_bad_demangle (orig);
4551 return false;
4552 }
4553
4554 if (pstart != NULL)
4555 *pstart = *pp;
4556
4557 *pp += n;
4558
4559 return true;
4560 }
4561
4562 /* Demangle function arguments. If the pargs argument is not NULL, it
4563 is set to a NULL terminated array holding the arguments. */
4564
4565 static bool
4566 stab_demangle_args (struct stab_demangle_info *minfo, const char **pp,
4567 debug_type **pargs, bool *pvarargs)
4568 {
4569 const char *orig;
4570 unsigned int alloc, count;
4571
4572 orig = *pp;
4573
4574 alloc = 10;
4575 if (pargs != NULL)
4576 {
4577 *pargs = (debug_type *) xmalloc (alloc * sizeof **pargs);
4578 *pvarargs = false;
4579 }
4580 count = 0;
4581
4582 while (**pp != '_' && **pp != '\0' && **pp != 'e')
4583 {
4584 if (**pp == 'N' || **pp == 'T')
4585 {
4586 char temptype;
4587 unsigned int r, t;
4588
4589 temptype = **pp;
4590 ++*pp;
4591
4592 if (temptype == 'T')
4593 r = 1;
4594 else
4595 {
4596 if (! stab_demangle_get_count (pp, &r))
4597 {
4598 stab_bad_demangle (orig);
4599 return false;
4600 }
4601 }
4602
4603 if (! stab_demangle_get_count (pp, &t))
4604 {
4605 stab_bad_demangle (orig);
4606 return false;
4607 }
4608
4609 if (t >= minfo->typestring_count)
4610 {
4611 stab_bad_demangle (orig);
4612 return false;
4613 }
4614 while (r-- > 0)
4615 {
4616 const char *tem;
4617
4618 tem = minfo->typestrings[t].typestring;
4619 if (! stab_demangle_arg (minfo, &tem, pargs, &count, &alloc))
4620 return false;
4621 }
4622 }
4623 else
4624 {
4625 if (! stab_demangle_arg (minfo, pp, pargs, &count, &alloc))
4626 return false;
4627 }
4628 }
4629
4630 if (pargs != NULL)
4631 (*pargs)[count] = DEBUG_TYPE_NULL;
4632
4633 if (**pp == 'e')
4634 {
4635 if (pargs != NULL)
4636 *pvarargs = true;
4637 ++*pp;
4638 }
4639
4640 return true;
4641 }
4642
4643 /* Demangle a single argument. */
4644
4645 static bool
4646 stab_demangle_arg (struct stab_demangle_info *minfo, const char **pp,
4647 debug_type **pargs, unsigned int *pcount,
4648 unsigned int *palloc)
4649 {
4650 const char *start;
4651 debug_type type;
4652
4653 start = *pp;
4654 if (! stab_demangle_type (minfo, pp,
4655 pargs == NULL ? (debug_type *) NULL : &type)
4656 || ! stab_demangle_remember_type (minfo, start, *pp - start))
4657 return false;
4658
4659 if (pargs != NULL)
4660 {
4661 if (type == DEBUG_TYPE_NULL)
4662 return false;
4663
4664 if (*pcount + 1 >= *palloc)
4665 {
4666 *palloc += 10;
4667 *pargs = ((debug_type *)
4668 xrealloc (*pargs, *palloc * sizeof **pargs));
4669 }
4670 (*pargs)[*pcount] = type;
4671 ++*pcount;
4672 }
4673
4674 return true;
4675 }
4676
4677 /* Demangle a type. If the ptype argument is not NULL, *ptype is set
4678 to the newly allocated type. */
4679
4680 static bool
4681 stab_demangle_type (struct stab_demangle_info *minfo, const char **pp,
4682 debug_type *ptype)
4683 {
4684 const char *orig;
4685
4686 orig = *pp;
4687
4688 switch (**pp)
4689 {
4690 case 'P':
4691 case 'p':
4692 /* A pointer type. */
4693 ++*pp;
4694 if (! stab_demangle_type (minfo, pp, ptype))
4695 return false;
4696 if (ptype != NULL)
4697 *ptype = debug_make_pointer_type (minfo->dhandle, *ptype);
4698 break;
4699
4700 case 'R':
4701 /* A reference type. */
4702 ++*pp;
4703 if (! stab_demangle_type (minfo, pp, ptype))
4704 return false;
4705 if (ptype != NULL)
4706 *ptype = debug_make_reference_type (minfo->dhandle, *ptype);
4707 break;
4708
4709 case 'A':
4710 /* An array. */
4711 {
4712 unsigned long high;
4713
4714 ++*pp;
4715 high = 0;
4716 while (**pp != '\0' && **pp != '_')
4717 {
4718 if (! ISDIGIT (**pp))
4719 {
4720 stab_bad_demangle (orig);
4721 return false;
4722 }
4723 high *= 10;
4724 high += **pp - '0';
4725 ++*pp;
4726 }
4727 if (**pp != '_')
4728 {
4729 stab_bad_demangle (orig);
4730 return false;
4731 }
4732 ++*pp;
4733
4734 if (! stab_demangle_type (minfo, pp, ptype))
4735 return false;
4736 if (ptype != NULL)
4737 {
4738 debug_type int_type;
4739
4740 int_type = debug_find_named_type (minfo->dhandle, "int");
4741 if (int_type == NULL)
4742 int_type = debug_make_int_type (minfo->dhandle, 4, false);
4743 *ptype = debug_make_array_type (minfo->dhandle, *ptype, int_type,
4744 0, high, false);
4745 }
4746 }
4747 break;
4748
4749 case 'T':
4750 /* A back reference to a remembered type. */
4751 {
4752 unsigned int i;
4753 const char *p;
4754
4755 ++*pp;
4756 if (! stab_demangle_get_count (pp, &i))
4757 {
4758 stab_bad_demangle (orig);
4759 return false;
4760 }
4761 if (i >= minfo->typestring_count)
4762 {
4763 stab_bad_demangle (orig);
4764 return false;
4765 }
4766 p = minfo->typestrings[i].typestring;
4767 if (! stab_demangle_type (minfo, &p, ptype))
4768 return false;
4769 }
4770 break;
4771
4772 case 'F':
4773 /* A function. */
4774 {
4775 debug_type *args;
4776 bool varargs;
4777
4778 ++*pp;
4779 if (! stab_demangle_args (minfo, pp,
4780 (ptype == NULL
4781 ? (debug_type **) NULL
4782 : &args),
4783 (ptype == NULL
4784 ? (bool *) NULL
4785 : &varargs)))
4786 return false;
4787 if (**pp != '_')
4788 {
4789 /* cplus_demangle will accept a function without a return
4790 type, but I don't know when that will happen, or what
4791 to do if it does. */
4792 stab_bad_demangle (orig);
4793 return false;
4794 }
4795 ++*pp;
4796 if (! stab_demangle_type (minfo, pp, ptype))
4797 return false;
4798 if (ptype != NULL)
4799 *ptype = debug_make_function_type (minfo->dhandle, *ptype, args,
4800 varargs);
4801
4802 }
4803 break;
4804
4805 case 'M':
4806 case 'O':
4807 {
4808 bool memberp;
4809 debug_type class_type = DEBUG_TYPE_NULL;
4810 debug_type *args;
4811 bool varargs;
4812 unsigned int n;
4813 const char *name;
4814
4815 memberp = **pp == 'M';
4816 args = NULL;
4817 varargs = false;
4818
4819 ++*pp;
4820 if (ISDIGIT (**pp))
4821 {
4822 n = stab_demangle_count (pp);
4823 if (strlen (*pp) < n)
4824 {
4825 stab_bad_demangle (orig);
4826 return false;
4827 }
4828 name = *pp;
4829 *pp += n;
4830
4831 if (ptype != NULL)
4832 {
4833 class_type = stab_find_tagged_type (minfo->dhandle,
4834 minfo->info,
4835 name, (int) n,
4836 DEBUG_KIND_CLASS);
4837 if (class_type == DEBUG_TYPE_NULL)
4838 return false;
4839 }
4840 }
4841 else if (**pp == 'Q')
4842 {
4843 if (! stab_demangle_qualified (minfo, pp,
4844 (ptype == NULL
4845 ? (debug_type *) NULL
4846 : &class_type)))
4847 return false;
4848 }
4849 else
4850 {
4851 stab_bad_demangle (orig);
4852 return false;
4853 }
4854
4855 if (memberp)
4856 {
4857 if (**pp == 'C')
4858 {
4859 ++*pp;
4860 }
4861 else if (**pp == 'V')
4862 {
4863 ++*pp;
4864 }
4865 if (**pp != 'F')
4866 {
4867 stab_bad_demangle (orig);
4868 return false;
4869 }
4870 ++*pp;
4871 if (! stab_demangle_args (minfo, pp,
4872 (ptype == NULL
4873 ? (debug_type **) NULL
4874 : &args),
4875 (ptype == NULL
4876 ? (bool *) NULL
4877 : &varargs)))
4878 return false;
4879 }
4880
4881 if (**pp != '_')
4882 {
4883 stab_bad_demangle (orig);
4884 return false;
4885 }
4886 ++*pp;
4887
4888 if (! stab_demangle_type (minfo, pp, ptype))
4889 return false;
4890
4891 if (ptype != NULL)
4892 {
4893 if (! memberp)
4894 *ptype = debug_make_offset_type (minfo->dhandle, class_type,
4895 *ptype);
4896 else
4897 {
4898 /* FIXME: We have no way to record constp or
4899 volatilep. */
4900 *ptype = debug_make_method_type (minfo->dhandle, *ptype,
4901 class_type, args, varargs);
4902 }
4903 }
4904 }
4905 break;
4906
4907 case 'G':
4908 ++*pp;
4909 if (! stab_demangle_type (minfo, pp, ptype))
4910 return false;
4911 break;
4912
4913 case 'C':
4914 ++*pp;
4915 if (! stab_demangle_type (minfo, pp, ptype))
4916 return false;
4917 if (ptype != NULL)
4918 *ptype = debug_make_const_type (minfo->dhandle, *ptype);
4919 break;
4920
4921 case 'Q':
4922 {
4923 if (! stab_demangle_qualified (minfo, pp, ptype))
4924 return false;
4925 }
4926 break;
4927
4928 default:
4929 if (! stab_demangle_fund_type (minfo, pp, ptype))
4930 return false;
4931 break;
4932 }
4933
4934 return true;
4935 }
4936
4937 /* Demangle a fundamental type. If the ptype argument is not NULL,
4938 *ptype is set to the newly allocated type. */
4939
4940 static bool
4941 stab_demangle_fund_type (struct stab_demangle_info *minfo, const char **pp,
4942 debug_type *ptype)
4943 {
4944 const char *orig;
4945 bool constp, volatilep, unsignedp, signedp;
4946 bool done;
4947
4948 orig = *pp;
4949
4950 constp = false;
4951 volatilep = false;
4952 unsignedp = false;
4953 signedp = false;
4954
4955 done = false;
4956 while (! done)
4957 {
4958 switch (**pp)
4959 {
4960 case 'C':
4961 constp = true;
4962 ++*pp;
4963 break;
4964
4965 case 'U':
4966 unsignedp = true;
4967 ++*pp;
4968 break;
4969
4970 case 'S':
4971 signedp = true;
4972 ++*pp;
4973 break;
4974
4975 case 'V':
4976 volatilep = true;
4977 ++*pp;
4978 break;
4979
4980 default:
4981 done = true;
4982 break;
4983 }
4984 }
4985
4986 switch (**pp)
4987 {
4988 case '\0':
4989 case '_':
4990 /* cplus_demangle permits this, but I don't know what it means. */
4991 stab_bad_demangle (orig);
4992 break;
4993
4994 case 'v': /* void */
4995 if (ptype != NULL)
4996 {
4997 *ptype = debug_find_named_type (minfo->dhandle, "void");
4998 if (*ptype == DEBUG_TYPE_NULL)
4999 *ptype = debug_make_void_type (minfo->dhandle);
5000 }
5001 ++*pp;
5002 break;
5003
5004 case 'x': /* long long */
5005 if (ptype != NULL)
5006 {
5007 *ptype = debug_find_named_type (minfo->dhandle,
5008 (unsignedp
5009 ? "long long unsigned int"
5010 : "long long int"));
5011 if (*ptype == DEBUG_TYPE_NULL)
5012 *ptype = debug_make_int_type (minfo->dhandle, 8, unsignedp);
5013 }
5014 ++*pp;
5015 break;
5016
5017 case 'l': /* long */
5018 if (ptype != NULL)
5019 {
5020 *ptype = debug_find_named_type (minfo->dhandle,
5021 (unsignedp
5022 ? "long unsigned int"
5023 : "long int"));
5024 if (*ptype == DEBUG_TYPE_NULL)
5025 *ptype = debug_make_int_type (minfo->dhandle, 4, unsignedp);
5026 }
5027 ++*pp;
5028 break;
5029
5030 case 'i': /* int */
5031 if (ptype != NULL)
5032 {
5033 *ptype = debug_find_named_type (minfo->dhandle,
5034 (unsignedp
5035 ? "unsigned int"
5036 : "int"));
5037 if (*ptype == DEBUG_TYPE_NULL)
5038 *ptype = debug_make_int_type (minfo->dhandle, 4, unsignedp);
5039 }
5040 ++*pp;
5041 break;
5042
5043 case 's': /* short */
5044 if (ptype != NULL)
5045 {
5046 *ptype = debug_find_named_type (minfo->dhandle,
5047 (unsignedp
5048 ? "short unsigned int"
5049 : "short int"));
5050 if (*ptype == DEBUG_TYPE_NULL)
5051 *ptype = debug_make_int_type (minfo->dhandle, 2, unsignedp);
5052 }
5053 ++*pp;
5054 break;
5055
5056 case 'b': /* bool */
5057 if (ptype != NULL)
5058 {
5059 *ptype = debug_find_named_type (minfo->dhandle, "bool");
5060 if (*ptype == DEBUG_TYPE_NULL)
5061 *ptype = debug_make_bool_type (minfo->dhandle, 4);
5062 }
5063 ++*pp;
5064 break;
5065
5066 case 'c': /* char */
5067 if (ptype != NULL)
5068 {
5069 *ptype = debug_find_named_type (minfo->dhandle,
5070 (unsignedp
5071 ? "unsigned char"
5072 : (signedp
5073 ? "signed char"
5074 : "char")));
5075 if (*ptype == DEBUG_TYPE_NULL)
5076 *ptype = debug_make_int_type (minfo->dhandle, 1, unsignedp);
5077 }
5078 ++*pp;
5079 break;
5080
5081 case 'w': /* wchar_t */
5082 if (ptype != NULL)
5083 {
5084 *ptype = debug_find_named_type (minfo->dhandle, "__wchar_t");
5085 if (*ptype == DEBUG_TYPE_NULL)
5086 *ptype = debug_make_int_type (minfo->dhandle, 2, true);
5087 }
5088 ++*pp;
5089 break;
5090
5091 case 'r': /* long double */
5092 if (ptype != NULL)
5093 {
5094 *ptype = debug_find_named_type (minfo->dhandle, "long double");
5095 if (*ptype == DEBUG_TYPE_NULL)
5096 *ptype = debug_make_float_type (minfo->dhandle, 8);
5097 }
5098 ++*pp;
5099 break;
5100
5101 case 'd': /* double */
5102 if (ptype != NULL)
5103 {
5104 *ptype = debug_find_named_type (minfo->dhandle, "double");
5105 if (*ptype == DEBUG_TYPE_NULL)
5106 *ptype = debug_make_float_type (minfo->dhandle, 8);
5107 }
5108 ++*pp;
5109 break;
5110
5111 case 'f': /* float */
5112 if (ptype != NULL)
5113 {
5114 *ptype = debug_find_named_type (minfo->dhandle, "float");
5115 if (*ptype == DEBUG_TYPE_NULL)
5116 *ptype = debug_make_float_type (minfo->dhandle, 4);
5117 }
5118 ++*pp;
5119 break;
5120
5121 case 'G':
5122 ++*pp;
5123 if (! ISDIGIT (**pp))
5124 {
5125 stab_bad_demangle (orig);
5126 return false;
5127 }
5128 /* Fall through. */
5129 case '0': case '1': case '2': case '3': case '4':
5130 case '5': case '6': case '7': case '8': case '9':
5131 {
5132 const char *hold;
5133
5134 if (! stab_demangle_class (minfo, pp, &hold))
5135 return false;
5136 if (ptype != NULL)
5137 {
5138 char *name;
5139
5140 name = savestring (hold, *pp - hold);
5141 *ptype = debug_find_named_type (minfo->dhandle, name);
5142 free (name);
5143 if (*ptype == DEBUG_TYPE_NULL)
5144 {
5145 /* FIXME: It is probably incorrect to assume that
5146 undefined types are tagged types. */
5147 *ptype = stab_find_tagged_type (minfo->dhandle, minfo->info,
5148 hold, *pp - hold,
5149 DEBUG_KIND_ILLEGAL);
5150 if (*ptype == DEBUG_TYPE_NULL)
5151 return false;
5152 }
5153 }
5154 }
5155 break;
5156
5157 case 't':
5158 {
5159 char *name;
5160
5161 if (! stab_demangle_template (minfo, pp,
5162 ptype != NULL ? &name : NULL))
5163 return false;
5164 if (ptype != NULL)
5165 {
5166 *ptype = stab_find_tagged_type (minfo->dhandle, minfo->info,
5167 name, strlen (name),
5168 DEBUG_KIND_CLASS);
5169 free (name);
5170 if (*ptype == DEBUG_TYPE_NULL)
5171 return false;
5172 }
5173 }
5174 break;
5175
5176 default:
5177 stab_bad_demangle (orig);
5178 return false;
5179 }
5180
5181 if (ptype != NULL)
5182 {
5183 if (constp)
5184 *ptype = debug_make_const_type (minfo->dhandle, *ptype);
5185 if (volatilep)
5186 *ptype = debug_make_volatile_type (minfo->dhandle, *ptype);
5187 }
5188
5189 return true;
5190 }
5191
5192 /* Remember a type string in a demangled string. */
5193
5194 static bool
5195 stab_demangle_remember_type (struct stab_demangle_info *minfo,
5196 const char *p, int len)
5197 {
5198 if (minfo->typestring_count >= minfo->typestring_alloc)
5199 {
5200 minfo->typestring_alloc += 10;
5201 minfo->typestrings = ((struct stab_demangle_typestring *)
5202 xrealloc (minfo->typestrings,
5203 (minfo->typestring_alloc
5204 * sizeof *minfo->typestrings)));
5205 }
5206
5207 minfo->typestrings[minfo->typestring_count].typestring = p;
5208 minfo->typestrings[minfo->typestring_count].len = (unsigned int) len;
5209 ++minfo->typestring_count;
5210
5211 return true;
5212 }
5213 \f
5214 /* Demangle names encoded using the g++ V3 ABI. The newer versions of
5215 g++ which use this ABI do not encode ordinary method argument types
5216 in a mangled name; they simply output the argument types. However,
5217 for a static method, g++ simply outputs the return type and the
5218 physical name. So in that case we need to demangle the name here.
5219 Here PHYSNAME is the physical name of the function, and we set the
5220 variable pointed at by PVARARGS to indicate whether this function
5221 is varargs. This returns NULL, or a NULL terminated array of
5222 argument types. */
5223
5224 static debug_type *
5225 stab_demangle_v3_argtypes (void *dhandle, struct stab_handle *info,
5226 const char *physname, bool *pvarargs)
5227 {
5228 struct demangle_component *dc;
5229 void *mem;
5230 debug_type *pargs;
5231
5232 dc = cplus_demangle_v3_components (physname, DMGL_PARAMS | demangle_flags, &mem);
5233 if (dc == NULL)
5234 {
5235 stab_bad_demangle (physname);
5236 return NULL;
5237 }
5238
5239 /* We expect to see TYPED_NAME, and the right subtree describes the
5240 function type. */
5241 if (dc->type != DEMANGLE_COMPONENT_TYPED_NAME
5242 || dc->u.s_binary.right->type != DEMANGLE_COMPONENT_FUNCTION_TYPE)
5243 {
5244 fprintf (stderr, _("Demangled name is not a function\n"));
5245 free (mem);
5246 return NULL;
5247 }
5248
5249 pargs = stab_demangle_v3_arglist (dhandle, info,
5250 dc->u.s_binary.right->u.s_binary.right,
5251 pvarargs);
5252
5253 free (mem);
5254
5255 return pargs;
5256 }
5257
5258 /* Demangle an argument list in a struct demangle_component tree.
5259 Returns a DEBUG_TYPE_NULL terminated array of argument types, and
5260 sets *PVARARGS to indicate whether this is a varargs function. */
5261
5262 static debug_type *
5263 stab_demangle_v3_arglist (void *dhandle, struct stab_handle *info,
5264 struct demangle_component *arglist,
5265 bool *pvarargs)
5266 {
5267 struct demangle_component *dc;
5268 unsigned int alloc, count;
5269 debug_type *pargs;
5270
5271 alloc = 10;
5272 pargs = (debug_type *) xmalloc (alloc * sizeof *pargs);
5273 *pvarargs = false;
5274
5275 count = 0;
5276
5277 for (dc = arglist;
5278 dc != NULL;
5279 dc = dc->u.s_binary.right)
5280 {
5281 debug_type arg;
5282 bool varargs;
5283
5284 if (dc->type != DEMANGLE_COMPONENT_ARGLIST)
5285 {
5286 fprintf (stderr, _("Unexpected type in v3 arglist demangling\n"));
5287 free (pargs);
5288 return NULL;
5289 }
5290
5291 /* PR 13925: Cope if the demangler returns an empty
5292 context for a function with no arguments. */
5293 if (dc->u.s_binary.left == NULL)
5294 break;
5295
5296 arg = stab_demangle_v3_arg (dhandle, info, dc->u.s_binary.left,
5297 NULL, &varargs);
5298 if (arg == NULL)
5299 {
5300 if (varargs)
5301 {
5302 *pvarargs = true;
5303 continue;
5304 }
5305 free (pargs);
5306 return NULL;
5307 }
5308
5309 if (count + 1 >= alloc)
5310 {
5311 alloc += 10;
5312 pargs = (debug_type *) xrealloc (pargs, alloc * sizeof *pargs);
5313 }
5314
5315 pargs[count] = arg;
5316 ++count;
5317 }
5318
5319 pargs[count] = DEBUG_TYPE_NULL;
5320
5321 return pargs;
5322 }
5323
5324 /* Convert a struct demangle_component tree describing an argument
5325 type into a debug_type. */
5326
5327 static debug_type
5328 stab_demangle_v3_arg (void *dhandle, struct stab_handle *info,
5329 struct demangle_component *dc, debug_type context,
5330 bool *pvarargs)
5331 {
5332 debug_type dt;
5333
5334 if (pvarargs != NULL)
5335 *pvarargs = false;
5336
5337 switch (dc->type)
5338 {
5339 /* FIXME: These are demangle component types which we probably
5340 need to handle one way or another. */
5341 case DEMANGLE_COMPONENT_LOCAL_NAME:
5342 case DEMANGLE_COMPONENT_TYPED_NAME:
5343 case DEMANGLE_COMPONENT_TEMPLATE_PARAM:
5344 case DEMANGLE_COMPONENT_CTOR:
5345 case DEMANGLE_COMPONENT_DTOR:
5346 case DEMANGLE_COMPONENT_JAVA_CLASS:
5347 case DEMANGLE_COMPONENT_RESTRICT_THIS:
5348 case DEMANGLE_COMPONENT_VOLATILE_THIS:
5349 case DEMANGLE_COMPONENT_CONST_THIS:
5350 case DEMANGLE_COMPONENT_VENDOR_TYPE_QUAL:
5351 case DEMANGLE_COMPONENT_COMPLEX:
5352 case DEMANGLE_COMPONENT_IMAGINARY:
5353 case DEMANGLE_COMPONENT_VENDOR_TYPE:
5354 case DEMANGLE_COMPONENT_ARRAY_TYPE:
5355 case DEMANGLE_COMPONENT_PTRMEM_TYPE:
5356 case DEMANGLE_COMPONENT_ARGLIST:
5357 default:
5358 fprintf (stderr, _("Unrecognized demangle component %d\n"),
5359 (int) dc->type);
5360 return NULL;
5361
5362 case DEMANGLE_COMPONENT_NAME:
5363 if (context != NULL)
5364 {
5365 const debug_field *fields;
5366
5367 fields = debug_get_fields (dhandle, context);
5368 if (fields != NULL)
5369 {
5370 /* Try to find this type by looking through the context
5371 class. */
5372 for (; *fields != DEBUG_FIELD_NULL; fields++)
5373 {
5374 debug_type ft;
5375 const char *dn;
5376
5377 ft = debug_get_field_type (dhandle, *fields);
5378 if (ft == NULL)
5379 return NULL;
5380 dn = debug_get_type_name (dhandle, ft);
5381 if (dn != NULL
5382 && (int) strlen (dn) == dc->u.s_name.len
5383 && strncmp (dn, dc->u.s_name.s, dc->u.s_name.len) == 0)
5384 return ft;
5385 }
5386 }
5387 }
5388 return stab_find_tagged_type (dhandle, info, dc->u.s_name.s,
5389 dc->u.s_name.len, DEBUG_KIND_ILLEGAL);
5390
5391 case DEMANGLE_COMPONENT_QUAL_NAME:
5392 context = stab_demangle_v3_arg (dhandle, info, dc->u.s_binary.left,
5393 context, NULL);
5394 if (context == NULL)
5395 return NULL;
5396 return stab_demangle_v3_arg (dhandle, info, dc->u.s_binary.right,
5397 context, NULL);
5398
5399 case DEMANGLE_COMPONENT_TEMPLATE:
5400 {
5401 char *p;
5402 size_t alc;
5403
5404 /* We print this component to get a class name which we can
5405 use. FIXME: This probably won't work if the template uses
5406 template parameters which refer to an outer template. */
5407 p = cplus_demangle_print (DMGL_PARAMS | demangle_flags, dc, 20, &alc);
5408 if (p == NULL)
5409 {
5410 fprintf (stderr, _("Failed to print demangled template\n"));
5411 return NULL;
5412 }
5413 dt = stab_find_tagged_type (dhandle, info, p, strlen (p),
5414 DEBUG_KIND_CLASS);
5415 free (p);
5416 return dt;
5417 }
5418
5419 case DEMANGLE_COMPONENT_SUB_STD:
5420 return stab_find_tagged_type (dhandle, info, dc->u.s_string.string,
5421 dc->u.s_string.len, DEBUG_KIND_ILLEGAL);
5422
5423 case DEMANGLE_COMPONENT_RESTRICT:
5424 case DEMANGLE_COMPONENT_VOLATILE:
5425 case DEMANGLE_COMPONENT_CONST:
5426 case DEMANGLE_COMPONENT_POINTER:
5427 case DEMANGLE_COMPONENT_REFERENCE:
5428 dt = stab_demangle_v3_arg (dhandle, info, dc->u.s_binary.left, NULL,
5429 NULL);
5430 if (dt == NULL)
5431 return NULL;
5432
5433 switch (dc->type)
5434 {
5435 default:
5436 abort ();
5437 case DEMANGLE_COMPONENT_RESTRICT:
5438 /* FIXME: We have no way to represent restrict. */
5439 return dt;
5440 case DEMANGLE_COMPONENT_VOLATILE:
5441 return debug_make_volatile_type (dhandle, dt);
5442 case DEMANGLE_COMPONENT_CONST:
5443 return debug_make_const_type (dhandle, dt);
5444 case DEMANGLE_COMPONENT_POINTER:
5445 return debug_make_pointer_type (dhandle, dt);
5446 case DEMANGLE_COMPONENT_REFERENCE:
5447 return debug_make_reference_type (dhandle, dt);
5448 }
5449
5450 case DEMANGLE_COMPONENT_FUNCTION_TYPE:
5451 {
5452 debug_type *pargs;
5453 bool varargs;
5454
5455 if (dc->u.s_binary.left == NULL)
5456 {
5457 /* In this case the return type is actually unknown.
5458 However, I'm not sure this will ever arise in practice;
5459 normally an unknown return type would only appear at
5460 the top level, which is handled above. */
5461 dt = debug_make_void_type (dhandle);
5462 }
5463 else
5464 dt = stab_demangle_v3_arg (dhandle, info, dc->u.s_binary.left, NULL,
5465 NULL);
5466 if (dt == NULL)
5467 return NULL;
5468
5469 pargs = stab_demangle_v3_arglist (dhandle, info,
5470 dc->u.s_binary.right,
5471 &varargs);
5472 if (pargs == NULL)
5473 {
5474 free (dt);
5475 return NULL;
5476 }
5477
5478 return debug_make_function_type (dhandle, dt, pargs, varargs);
5479 }
5480
5481 case DEMANGLE_COMPONENT_BUILTIN_TYPE:
5482 {
5483 char *p;
5484 size_t alc;
5485 debug_type ret;
5486
5487 /* We print this component in order to find out the type name.
5488 FIXME: Should we instead expose the
5489 demangle_builtin_type_info structure? */
5490 p = cplus_demangle_print (DMGL_PARAMS | demangle_flags, dc, 20, &alc);
5491 if (p == NULL)
5492 {
5493 fprintf (stderr, _("Couldn't get demangled builtin type\n"));
5494 return NULL;
5495 }
5496
5497 /* The mangling is based on the type, but does not itself
5498 indicate what the sizes are. So we have to guess. */
5499 if (strcmp (p, "signed char") == 0)
5500 ret = debug_make_int_type (dhandle, 1, false);
5501 else if (strcmp (p, "bool") == 0)
5502 ret = debug_make_bool_type (dhandle, 1);
5503 else if (strcmp (p, "char") == 0)
5504 ret = debug_make_int_type (dhandle, 1, false);
5505 else if (strcmp (p, "double") == 0)
5506 ret = debug_make_float_type (dhandle, 8);
5507 else if (strcmp (p, "long double") == 0)
5508 ret = debug_make_float_type (dhandle, 8);
5509 else if (strcmp (p, "float") == 0)
5510 ret = debug_make_float_type (dhandle, 4);
5511 else if (strcmp (p, "__float128") == 0)
5512 ret = debug_make_float_type (dhandle, 16);
5513 else if (strcmp (p, "unsigned char") == 0)
5514 ret = debug_make_int_type (dhandle, 1, true);
5515 else if (strcmp (p, "int") == 0)
5516 ret = debug_make_int_type (dhandle, 4, false);
5517 else if (strcmp (p, "unsigned int") == 0)
5518 ret = debug_make_int_type (dhandle, 4, true);
5519 else if (strcmp (p, "long") == 0)
5520 ret = debug_make_int_type (dhandle, 4, false);
5521 else if (strcmp (p, "unsigned long") == 0)
5522 ret = debug_make_int_type (dhandle, 4, true);
5523 else if (strcmp (p, "__int128") == 0)
5524 ret = debug_make_int_type (dhandle, 16, false);
5525 else if (strcmp (p, "unsigned __int128") == 0)
5526 ret = debug_make_int_type (dhandle, 16, true);
5527 else if (strcmp (p, "short") == 0)
5528 ret = debug_make_int_type (dhandle, 2, false);
5529 else if (strcmp (p, "unsigned short") == 0)
5530 ret = debug_make_int_type (dhandle, 2, true);
5531 else if (strcmp (p, "void") == 0)
5532 ret = debug_make_void_type (dhandle);
5533 else if (strcmp (p, "wchar_t") == 0)
5534 ret = debug_make_int_type (dhandle, 4, true);
5535 else if (strcmp (p, "long long") == 0)
5536 ret = debug_make_int_type (dhandle, 8, false);
5537 else if (strcmp (p, "unsigned long long") == 0)
5538 ret = debug_make_int_type (dhandle, 8, true);
5539 else if (strcmp (p, "...") == 0)
5540 {
5541 if (pvarargs == NULL)
5542 fprintf (stderr, _("Unexpected demangled varargs\n"));
5543 else
5544 *pvarargs = true;
5545 ret = NULL;
5546 }
5547 else
5548 {
5549 fprintf (stderr, _("Unrecognized demangled builtin type\n"));
5550 ret = NULL;
5551 }
5552
5553 free (p);
5554
5555 return ret;
5556 }
5557 }
5558 }