150cd16f3497ba036082a797aeacd32d28130fe6
[deliverable/binutils-gdb.git] / gdb / mdebugread.c
1 /* Read a symbol table in ECOFF format (Third-Eye).
2
3 Copyright (C) 1986-2019 Free Software Foundation, Inc.
4
5 Original version contributed by Alessandro Forin (af@cs.cmu.edu) at
6 CMU. Major work by Per Bothner, John Gilmore and Ian Lance Taylor
7 at Cygnus Support.
8
9 This file is part of GDB.
10
11 This program is free software; you can redistribute it and/or modify
12 it under the terms of the GNU General Public License as published by
13 the Free Software Foundation; either version 3 of the License, or
14 (at your option) any later version.
15
16 This program is distributed in the hope that it will be useful,
17 but WITHOUT ANY WARRANTY; without even the implied warranty of
18 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
19 GNU General Public License for more details.
20
21 You should have received a copy of the GNU General Public License
22 along with this program. If not, see <http://www.gnu.org/licenses/>. */
23
24 /* This module provides the function mdebug_build_psymtabs. It reads
25 ECOFF debugging information into partial symbol tables. The
26 debugging information is read from two structures. A struct
27 ecoff_debug_swap includes the sizes of each ECOFF structure and
28 swapping routines; these are fixed for a particular target. A
29 struct ecoff_debug_info points to the debugging information for a
30 particular object file.
31
32 ECOFF symbol tables are mostly written in the byte order of the
33 target machine. However, one section of the table (the auxiliary
34 symbol information) is written in the host byte order. There is a
35 bit in the other symbol info which describes which host byte order
36 was used. ECOFF thereby takes the trophy from Intel `b.out' for
37 the most brain-dead adaptation of a file format to byte order.
38
39 This module can read all four of the known byte-order combinations,
40 on any type of host. */
41
42 #include "defs.h"
43 #include "symtab.h"
44 #include "gdbtypes.h"
45 #include "gdbcore.h"
46 #include "filenames.h"
47 #include "objfiles.h"
48 #include "gdb_obstack.h"
49 #include "buildsym-legacy.h"
50 #include "stabsread.h"
51 #include "complaints.h"
52 #include "demangle.h"
53 #include "gdb-demangle.h"
54 #include "block.h"
55 #include "dictionary.h"
56 #include "mdebugread.h"
57 #include <sys/stat.h>
58 #include "psympriv.h"
59 #include "source.h"
60
61 #include "bfd.h"
62
63 #include "coff/ecoff.h" /* COFF-like aspects of ecoff files. */
64
65 #include "libaout.h" /* Private BFD a.out information. */
66 #include "aout/aout64.h"
67 #include "aout/stab_gnu.h" /* STABS information. */
68
69 #include "expression.h"
70
71 /* Provide a way to test if we have both ECOFF and ELF symbol tables.
72 We use this define in order to know whether we should override a
73 symbol's ECOFF section with its ELF section. This is necessary in
74 case the symbol's ELF section could not be represented in ECOFF. */
75 #define ECOFF_IN_ELF(bfd) (bfd_get_flavour (bfd) == bfd_target_elf_flavour \
76 && bfd_get_section_by_name (bfd, ".mdebug") != NULL)
77
78 /* The objfile we are currently reading. */
79
80 static struct objfile *mdebugread_objfile;
81
82 \f
83
84 /* We put a pointer to this structure in the read_symtab_private field
85 of the psymtab. */
86
87 struct symloc
88 {
89 /* Index of the FDR that this psymtab represents. */
90 int fdr_idx;
91 /* The BFD that the psymtab was created from. */
92 bfd *cur_bfd;
93 const struct ecoff_debug_swap *debug_swap;
94 struct ecoff_debug_info *debug_info;
95 struct mdebug_pending **pending_list;
96 /* Pointer to external symbols for this file. */
97 EXTR *extern_tab;
98 /* Size of extern_tab. */
99 int extern_count;
100 enum language pst_language;
101 };
102
103 #define PST_PRIVATE(p) ((struct symloc *)(p)->read_symtab_private)
104 #define FDR_IDX(p) (PST_PRIVATE(p)->fdr_idx)
105 #define CUR_BFD(p) (PST_PRIVATE(p)->cur_bfd)
106 #define DEBUG_SWAP(p) (PST_PRIVATE(p)->debug_swap)
107 #define DEBUG_INFO(p) (PST_PRIVATE(p)->debug_info)
108 #define PENDING_LIST(p) (PST_PRIVATE(p)->pending_list)
109
110 #define SC_IS_TEXT(sc) ((sc) == scText \
111 || (sc) == scRConst \
112 || (sc) == scInit \
113 || (sc) == scFini)
114 #define SC_IS_DATA(sc) ((sc) == scData \
115 || (sc) == scSData \
116 || (sc) == scRData \
117 || (sc) == scPData \
118 || (sc) == scXData)
119 #define SC_IS_COMMON(sc) ((sc) == scCommon || (sc) == scSCommon)
120 #define SC_IS_BSS(sc) ((sc) == scBss)
121 #define SC_IS_SBSS(sc) ((sc) == scSBss)
122 #define SC_IS_UNDEF(sc) ((sc) == scUndefined || (sc) == scSUndefined)
123 \f
124 /* Various complaints about symbol reading that don't abort the process. */
125 static void
126 index_complaint (const char *arg1)
127 {
128 complaint (_("bad aux index at symbol %s"), arg1);
129 }
130
131 static void
132 unknown_ext_complaint (const char *arg1)
133 {
134 complaint (_("unknown external symbol %s"), arg1);
135 }
136
137 static void
138 basic_type_complaint (int arg1, const char *arg2)
139 {
140 complaint (_("cannot map ECOFF basic type 0x%x for %s"),
141 arg1, arg2);
142 }
143
144 static void
145 bad_tag_guess_complaint (const char *arg1)
146 {
147 complaint (_("guessed tag type of %s incorrectly"), arg1);
148 }
149
150 static void
151 bad_rfd_entry_complaint (const char *arg1, int arg2, int arg3)
152 {
153 complaint (_("bad rfd entry for %s: file %d, index %d"),
154 arg1, arg2, arg3);
155 }
156
157 static void
158 unexpected_type_code_complaint (const char *arg1)
159 {
160 complaint (_("unexpected type code for %s"), arg1);
161 }
162
163 /* Macros and extra defs. */
164
165 /* Puns: hard to find whether -g was used and how. */
166
167 #define MIN_GLEVEL GLEVEL_0
168 #define compare_glevel(a,b) \
169 (((a) == GLEVEL_3) ? ((b) < GLEVEL_3) : \
170 ((b) == GLEVEL_3) ? -1 : (int)((b) - (a)))
171 \f
172 /* Things that really are local to this module. */
173
174 /* Remember what we deduced to be the source language of this psymtab. */
175
176 static enum language psymtab_language = language_unknown;
177
178 /* Current BFD. */
179
180 static bfd *cur_bfd;
181
182 /* How to parse debugging information for CUR_BFD. */
183
184 static const struct ecoff_debug_swap *debug_swap;
185
186 /* Pointers to debugging information for CUR_BFD. */
187
188 static struct ecoff_debug_info *debug_info;
189
190 /* Pointer to current file decriptor record, and its index. */
191
192 static FDR *cur_fdr;
193 static int cur_fd;
194
195 /* Index of current symbol. */
196
197 static int cur_sdx;
198
199 /* Note how much "debuggable" this image is. We would like
200 to see at least one FDR with full symbols. */
201
202 static int max_gdbinfo;
203 static int max_glevel;
204
205 /* When examining .o files, report on undefined symbols. */
206
207 static int n_undef_symbols, n_undef_labels, n_undef_vars, n_undef_procs;
208
209 /* Pseudo symbol to use when putting stabs into the symbol table. */
210
211 static char stabs_symbol[] = STABS_SYMBOL;
212
213 /* Nonzero if we have seen ecoff debugging info for a file. */
214
215 static int found_ecoff_debugging_info;
216
217 /* Forward declarations. */
218
219 static int upgrade_type (int, struct type **, int, union aux_ext *,
220 int, const char *);
221
222 static void parse_partial_symbols (minimal_symbol_reader &,
223 struct objfile *);
224
225 static int has_opaque_xref (FDR *, SYMR *);
226
227 static int cross_ref (int, union aux_ext *, struct type **, enum type_code,
228 const char **, int, const char *);
229
230 static struct symbol *new_symbol (const char *);
231
232 static struct type *new_type (char *);
233
234 enum block_type { FUNCTION_BLOCK, NON_FUNCTION_BLOCK };
235
236 static struct block *new_block (enum block_type, enum language);
237
238 static struct compunit_symtab *new_symtab (const char *, int, struct objfile *);
239
240 static struct linetable *new_linetable (int);
241
242 static struct blockvector *new_bvect (int);
243
244 static struct type *parse_type (int, union aux_ext *, unsigned int, int *,
245 int, const char *);
246
247 static struct symbol *mylookup_symbol (const char *, const struct block *,
248 domain_enum, enum address_class);
249
250 static void sort_blocks (struct symtab *);
251
252 static struct partial_symtab *new_psymtab (const char *, struct objfile *);
253
254 static void psymtab_to_symtab_1 (struct objfile *objfile,
255 struct partial_symtab *, const char *);
256
257 static void add_block (struct block *, struct symtab *);
258
259 static void add_symbol (struct symbol *, struct symtab *, struct block *);
260
261 static int add_line (struct linetable *, int, CORE_ADDR, int);
262
263 static struct linetable *shrink_linetable (struct linetable *);
264
265 static void handle_psymbol_enumerators (struct objfile *, FDR *, int,
266 CORE_ADDR);
267
268 static const char *mdebug_next_symbol_text (struct objfile *);
269 \f
270 /* Exported procedure: Builds a symtab from the partial symtab SELF.
271 Restores the environment in effect when SELF was created, delegates
272 most of the work to an ancillary procedure, and sorts
273 and reorders the symtab list at the end. SELF is not NULL. */
274
275 static void
276 mdebug_read_symtab (struct partial_symtab *self, struct objfile *objfile)
277 {
278 if (info_verbose)
279 {
280 printf_filtered (_("Reading in symbols for %s..."), self->filename);
281 gdb_flush (gdb_stdout);
282 }
283
284 next_symbol_text_func = mdebug_next_symbol_text;
285
286 psymtab_to_symtab_1 (objfile, self, self->filename);
287
288 /* Match with global symbols. This only needs to be done once,
289 after all of the symtabs and dependencies have been read in. */
290 scan_file_globals (objfile);
291
292 if (info_verbose)
293 printf_filtered (_("done.\n"));
294 }
295 \f
296 /* File-level interface functions. */
297
298 /* Find a file descriptor given its index RF relative to a file CF. */
299
300 static FDR *
301 get_rfd (int cf, int rf)
302 {
303 FDR *fdrs;
304 FDR *f;
305 RFDT rfd;
306
307 fdrs = debug_info->fdr;
308 f = fdrs + cf;
309 /* Object files do not have the RFD table, all refs are absolute. */
310 if (f->rfdBase == 0)
311 return fdrs + rf;
312 (*debug_swap->swap_rfd_in) (cur_bfd,
313 ((char *) debug_info->external_rfd
314 + ((f->rfdBase + rf)
315 * debug_swap->external_rfd_size)),
316 &rfd);
317 return fdrs + rfd;
318 }
319
320 /* Return a safer print NAME for a file descriptor. */
321
322 static const char *
323 fdr_name (FDR *f)
324 {
325 if (f->rss == -1)
326 return "<stripped file>";
327 if (f->rss == 0)
328 return "<NFY>";
329 return debug_info->ss + f->issBase + f->rss;
330 }
331
332
333 /* Read in and parse the symtab of the file OBJFILE. Symbols from
334 different sections are relocated via the SECTION_OFFSETS. */
335
336 void
337 mdebug_build_psymtabs (minimal_symbol_reader &reader,
338 struct objfile *objfile,
339 const struct ecoff_debug_swap *swap,
340 struct ecoff_debug_info *info)
341 {
342 cur_bfd = objfile->obfd;
343 debug_swap = swap;
344 debug_info = info;
345
346 stabsread_new_init ();
347 free_header_files ();
348 init_header_files ();
349
350 /* Make sure all the FDR information is swapped in. */
351 if (info->fdr == (FDR *) NULL)
352 {
353 char *fdr_src;
354 char *fdr_end;
355 FDR *fdr_ptr;
356
357 info->fdr = (FDR *) XOBNEWVEC (&objfile->objfile_obstack, FDR,
358 info->symbolic_header.ifdMax);
359 fdr_src = (char *) info->external_fdr;
360 fdr_end = (fdr_src
361 + info->symbolic_header.ifdMax * swap->external_fdr_size);
362 fdr_ptr = info->fdr;
363 for (; fdr_src < fdr_end; fdr_src += swap->external_fdr_size, fdr_ptr++)
364 (*swap->swap_fdr_in) (objfile->obfd, fdr_src, fdr_ptr);
365 }
366
367 parse_partial_symbols (reader, objfile);
368
369 #if 0
370 /* Check to make sure file was compiled with -g. If not, warn the
371 user of this limitation. */
372 if (compare_glevel (max_glevel, GLEVEL_2) < 0)
373 {
374 if (max_gdbinfo == 0)
375 printf_unfiltered (_("\n%s not compiled with -g, "
376 "debugging support is limited.\n"),
377 objfile->name);
378 printf_unfiltered (_("You should compile with -g2 or "
379 "-g3 for best debugging support.\n"));
380 gdb_flush (gdb_stdout);
381 }
382 #endif
383 }
384 \f
385 /* Local utilities */
386
387 /* Map of FDR indexes to partial symtabs. */
388
389 struct pst_map
390 {
391 struct partial_symtab *pst; /* the psymtab proper */
392 long n_globals; /* exported globals (external symbols) */
393 long globals_offset; /* cumulative */
394 };
395
396
397 /* Utility stack, used to nest procedures and blocks properly.
398 It is a doubly linked list, to avoid too many alloc/free.
399 Since we might need it quite a few times it is NOT deallocated
400 after use. */
401
402 static struct parse_stack
403 {
404 struct parse_stack *next, *prev;
405 struct symtab *cur_st; /* Current symtab. */
406 struct block *cur_block; /* Block in it. */
407
408 /* What are we parsing. stFile, or stBlock are for files and
409 blocks. stProc or stStaticProc means we have seen the start of a
410 procedure, but not the start of the block within in. When we see
411 the start of that block, we change it to stNil, without pushing a
412 new block, i.e. stNil means both a procedure and a block. */
413
414 int blocktype;
415
416 struct type *cur_type; /* Type we parse fields for. */
417 int cur_field; /* Field number in cur_type. */
418 CORE_ADDR procadr; /* Start addres of this procedure. */
419 int numargs; /* Its argument count. */
420 }
421
422 *top_stack; /* Top stack ptr */
423
424
425 /* Enter a new lexical context. */
426
427 static void
428 push_parse_stack (void)
429 {
430 struct parse_stack *newobj;
431
432 /* Reuse frames if possible. */
433 if (top_stack && top_stack->prev)
434 newobj = top_stack->prev;
435 else
436 newobj = XCNEW (struct parse_stack);
437 /* Initialize new frame with previous content. */
438 if (top_stack)
439 {
440 struct parse_stack *prev = newobj->prev;
441
442 *newobj = *top_stack;
443 top_stack->prev = newobj;
444 newobj->prev = prev;
445 newobj->next = top_stack;
446 }
447 top_stack = newobj;
448 }
449
450 /* Exit a lexical context. */
451
452 static void
453 pop_parse_stack (void)
454 {
455 if (!top_stack)
456 return;
457 if (top_stack->next)
458 top_stack = top_stack->next;
459 }
460
461
462 /* Cross-references might be to things we haven't looked at
463 yet, e.g. type references. To avoid too many type
464 duplications we keep a quick fixup table, an array
465 of lists of references indexed by file descriptor. */
466
467 struct mdebug_pending
468 {
469 struct mdebug_pending *next; /* link */
470 char *s; /* the unswapped symbol */
471 struct type *t; /* its partial type descriptor */
472 };
473
474
475 /* The pending information is kept for an entire object file. We
476 allocate the pending information table when we create the partial
477 symbols, and we store a pointer to the single table in each
478 psymtab. */
479
480 static struct mdebug_pending **pending_list;
481
482 /* Check whether we already saw symbol SH in file FH. */
483
484 static struct mdebug_pending *
485 is_pending_symbol (FDR *fh, char *sh)
486 {
487 int f_idx = fh - debug_info->fdr;
488 struct mdebug_pending *p;
489
490 /* Linear search is ok, list is typically no more than 10 deep. */
491 for (p = pending_list[f_idx]; p; p = p->next)
492 if (p->s == sh)
493 break;
494 return p;
495 }
496
497 /* Add a new symbol SH of type T. */
498
499 static void
500 add_pending (FDR *fh, char *sh, struct type *t)
501 {
502 int f_idx = fh - debug_info->fdr;
503 struct mdebug_pending *p = is_pending_symbol (fh, sh);
504
505 /* Make sure we do not make duplicates. */
506 if (!p)
507 {
508 p = XOBNEW (&mdebugread_objfile->objfile_obstack, mdebug_pending);
509 p->s = sh;
510 p->t = t;
511 p->next = pending_list[f_idx];
512 pending_list[f_idx] = p;
513 }
514 }
515 \f
516
517 /* Parsing Routines proper. */
518
519 static void
520 reg_value_complaint (int regnum, int num_regs, const char *sym)
521 {
522 complaint (_("bad register number %d (max %d) in symbol %s"),
523 regnum, num_regs - 1, sym);
524 }
525
526 /* Parse a single symbol. Mostly just make up a GDB symbol for it.
527 For blocks, procedures and types we open a new lexical context.
528 This is basically just a big switch on the symbol's type. Argument
529 AX is the base pointer of aux symbols for this file (fh->iauxBase).
530 EXT_SH points to the unswapped symbol, which is needed for struct,
531 union, etc., types; it is NULL for an EXTR. BIGEND says whether
532 aux symbols are big-endian or little-endian. Return count of
533 SYMR's handled (normally one). */
534
535 static int
536 mdebug_reg_to_regnum (struct symbol *sym, struct gdbarch *gdbarch)
537 {
538 int regno = gdbarch_ecoff_reg_to_regnum (gdbarch, SYMBOL_VALUE (sym));
539
540 if (regno < 0 || regno >= gdbarch_num_cooked_regs (gdbarch))
541 {
542 reg_value_complaint (regno, gdbarch_num_cooked_regs (gdbarch),
543 SYMBOL_PRINT_NAME (sym));
544
545 regno = gdbarch_sp_regnum (gdbarch); /* Known safe, though useless. */
546 }
547
548 return regno;
549 }
550
551 static const struct symbol_register_ops mdebug_register_funcs = {
552 mdebug_reg_to_regnum
553 };
554
555 /* The "aclass" indices for computed symbols. */
556
557 static int mdebug_register_index;
558 static int mdebug_regparm_index;
559
560 /* Common code for symbols describing data. */
561
562 static void
563 add_data_symbol (SYMR *sh, union aux_ext *ax, int bigend,
564 struct symbol *s, int aclass_index, struct block *b,
565 struct objfile *objfile, const char *name)
566 {
567 SYMBOL_DOMAIN (s) = VAR_DOMAIN;
568 SYMBOL_ACLASS_INDEX (s) = aclass_index;
569 add_symbol (s, top_stack->cur_st, b);
570
571 /* Type could be missing if file is compiled without debugging info. */
572 if (SC_IS_UNDEF (sh->sc)
573 || sh->sc == scNil || sh->index == indexNil)
574 SYMBOL_TYPE (s) = objfile_type (objfile)->nodebug_data_symbol;
575 else
576 SYMBOL_TYPE (s) = parse_type (cur_fd, ax, sh->index, 0, bigend, name);
577 /* Value of a data symbol is its memory address. */
578 }
579
580 static int
581 parse_symbol (SYMR *sh, union aux_ext *ax, char *ext_sh, int bigend,
582 struct section_offsets *section_offsets, struct objfile *objfile)
583 {
584 struct gdbarch *gdbarch = get_objfile_arch (objfile);
585 const bfd_size_type external_sym_size = debug_swap->external_sym_size;
586 void (*const swap_sym_in) (bfd *, void *, SYMR *) = debug_swap->swap_sym_in;
587 const char *name;
588 struct symbol *s;
589 struct block *b;
590 struct mdebug_pending *pend;
591 struct type *t;
592 int count = 1;
593 TIR tir;
594 long svalue = sh->value;
595 int bitsize;
596
597 if (ext_sh == (char *) NULL)
598 name = debug_info->ssext + sh->iss;
599 else
600 name = debug_info->ss + cur_fdr->issBase + sh->iss;
601
602 switch (sh->sc)
603 {
604 case scText:
605 case scRConst:
606 /* Do not relocate relative values.
607 The value of a stEnd symbol is the displacement from the
608 corresponding start symbol value.
609 The value of a stBlock symbol is the displacement from the
610 procedure address. */
611 if (sh->st != stEnd && sh->st != stBlock)
612 sh->value += ANOFFSET (section_offsets, SECT_OFF_TEXT (objfile));
613 break;
614 case scData:
615 case scSData:
616 case scRData:
617 case scPData:
618 case scXData:
619 sh->value += ANOFFSET (section_offsets, SECT_OFF_DATA (objfile));
620 break;
621 case scBss:
622 case scSBss:
623 sh->value += ANOFFSET (section_offsets, SECT_OFF_BSS (objfile));
624 break;
625 }
626
627 switch (sh->st)
628 {
629 case stNil:
630 break;
631
632 case stGlobal: /* External symbol, goes into global block. */
633 b = BLOCKVECTOR_BLOCK (SYMTAB_BLOCKVECTOR (top_stack->cur_st),
634 GLOBAL_BLOCK);
635 s = new_symbol (name);
636 SYMBOL_VALUE_ADDRESS (s) = (CORE_ADDR) sh->value;
637 add_data_symbol (sh, ax, bigend, s, LOC_STATIC, b, objfile, name);
638 break;
639
640 case stStatic: /* Static data, goes into current block. */
641 b = top_stack->cur_block;
642 s = new_symbol (name);
643 if (SC_IS_COMMON (sh->sc))
644 {
645 /* It is a FORTRAN common block. At least for SGI Fortran the
646 address is not in the symbol; we need to fix it later in
647 scan_file_globals. */
648 int bucket = hashname (SYMBOL_LINKAGE_NAME (s));
649 SYMBOL_VALUE_CHAIN (s) = global_sym_chain[bucket];
650 global_sym_chain[bucket] = s;
651 }
652 else
653 SYMBOL_VALUE_ADDRESS (s) = (CORE_ADDR) sh->value;
654 add_data_symbol (sh, ax, bigend, s, LOC_STATIC, b, objfile, name);
655 break;
656
657 case stLocal: /* Local variable, goes into current block. */
658 b = top_stack->cur_block;
659 s = new_symbol (name);
660 SYMBOL_VALUE (s) = svalue;
661 if (sh->sc == scRegister)
662 add_data_symbol (sh, ax, bigend, s, mdebug_register_index,
663 b, objfile, name);
664 else
665 add_data_symbol (sh, ax, bigend, s, LOC_LOCAL,
666 b, objfile, name);
667 break;
668
669 case stParam: /* Arg to procedure, goes into current
670 block. */
671 max_gdbinfo++;
672 found_ecoff_debugging_info = 1;
673 top_stack->numargs++;
674
675 /* Special GNU C++ name. */
676 if (is_cplus_marker (name[0]) && name[1] == 't' && name[2] == 0)
677 name = "this"; /* FIXME, not alloc'd in obstack. */
678 s = new_symbol (name);
679
680 SYMBOL_DOMAIN (s) = VAR_DOMAIN;
681 SYMBOL_IS_ARGUMENT (s) = 1;
682 switch (sh->sc)
683 {
684 case scRegister:
685 /* Pass by value in register. */
686 SYMBOL_ACLASS_INDEX (s) = mdebug_register_index;
687 break;
688 case scVar:
689 /* Pass by reference on stack. */
690 SYMBOL_ACLASS_INDEX (s) = LOC_REF_ARG;
691 break;
692 case scVarRegister:
693 /* Pass by reference in register. */
694 SYMBOL_ACLASS_INDEX (s) = mdebug_regparm_index;
695 break;
696 default:
697 /* Pass by value on stack. */
698 SYMBOL_ACLASS_INDEX (s) = LOC_ARG;
699 break;
700 }
701 SYMBOL_VALUE (s) = svalue;
702 SYMBOL_TYPE (s) = parse_type (cur_fd, ax, sh->index, 0, bigend, name);
703 add_symbol (s, top_stack->cur_st, top_stack->cur_block);
704 break;
705
706 case stLabel: /* label, goes into current block. */
707 s = new_symbol (name);
708 SYMBOL_DOMAIN (s) = VAR_DOMAIN; /* So that it can be used */
709 SYMBOL_ACLASS_INDEX (s) = LOC_LABEL; /* but not misused. */
710 SYMBOL_VALUE_ADDRESS (s) = (CORE_ADDR) sh->value;
711 SYMBOL_TYPE (s) = objfile_type (objfile)->builtin_int;
712 add_symbol (s, top_stack->cur_st, top_stack->cur_block);
713 break;
714
715 case stProc: /* Procedure, usually goes into global block. */
716 case stStaticProc: /* Static procedure, goes into current block. */
717 /* For stProc symbol records, we need to check the storage class
718 as well, as only (stProc, scText) entries represent "real"
719 procedures - See the Compaq document titled "Object File /
720 Symbol Table Format Specification" for more information.
721 If the storage class is not scText, we discard the whole block
722 of symbol records for this stProc. */
723 if (sh->st == stProc && sh->sc != scText)
724 {
725 char *ext_tsym = ext_sh;
726 int keep_counting = 1;
727 SYMR tsym;
728
729 while (keep_counting)
730 {
731 ext_tsym += external_sym_size;
732 (*swap_sym_in) (cur_bfd, ext_tsym, &tsym);
733 count++;
734 switch (tsym.st)
735 {
736 case stParam:
737 break;
738 case stEnd:
739 keep_counting = 0;
740 break;
741 default:
742 complaint (_("unknown symbol type 0x%x"), sh->st);
743 break;
744 }
745 }
746 break;
747 }
748 s = new_symbol (name);
749 SYMBOL_DOMAIN (s) = VAR_DOMAIN;
750 SYMBOL_ACLASS_INDEX (s) = LOC_BLOCK;
751 /* Type of the return value. */
752 if (SC_IS_UNDEF (sh->sc) || sh->sc == scNil)
753 t = objfile_type (objfile)->builtin_int;
754 else
755 {
756 t = parse_type (cur_fd, ax, sh->index + 1, 0, bigend, name);
757 if (strcmp (name, "malloc") == 0
758 && TYPE_CODE (t) == TYPE_CODE_VOID)
759 {
760 /* I don't know why, but, at least under Alpha GNU/Linux,
761 when linking against a malloc without debugging
762 symbols, its read as a function returning void---this
763 is bad because it means we cannot call functions with
764 string arguments interactively; i.e., "call
765 printf("howdy\n")" would fail with the error message
766 "program has no memory available". To avoid this, we
767 patch up the type and make it void*
768 instead. (davidm@azstarnet.com). */
769 t = make_pointer_type (t, NULL);
770 }
771 }
772 b = top_stack->cur_block;
773 if (sh->st == stProc)
774 {
775 const struct blockvector *bv
776 = SYMTAB_BLOCKVECTOR (top_stack->cur_st);
777
778 /* The next test should normally be true, but provides a
779 hook for nested functions (which we don't want to make
780 global). */
781 if (b == BLOCKVECTOR_BLOCK (bv, STATIC_BLOCK))
782 b = BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK);
783 /* Irix 5 sometimes has duplicate names for the same
784 function. We want to add such names up at the global
785 level, not as a nested function. */
786 else if (sh->value == top_stack->procadr)
787 b = BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK);
788 }
789 add_symbol (s, top_stack->cur_st, b);
790
791 /* Make a type for the procedure itself. */
792 SYMBOL_TYPE (s) = lookup_function_type (t);
793
794 /* All functions in C++ have prototypes. For C we don't have enough
795 information in the debug info. */
796 if (SYMBOL_LANGUAGE (s) == language_cplus)
797 TYPE_PROTOTYPED (SYMBOL_TYPE (s)) = 1;
798
799 /* Create and enter a new lexical context. */
800 b = new_block (FUNCTION_BLOCK, SYMBOL_LANGUAGE (s));
801 SYMBOL_BLOCK_VALUE (s) = b;
802 BLOCK_FUNCTION (b) = s;
803 BLOCK_START (b) = BLOCK_END (b) = sh->value;
804 BLOCK_SUPERBLOCK (b) = top_stack->cur_block;
805 add_block (b, top_stack->cur_st);
806
807 /* Not if we only have partial info. */
808 if (SC_IS_UNDEF (sh->sc) || sh->sc == scNil)
809 break;
810
811 push_parse_stack ();
812 top_stack->cur_block = b;
813 top_stack->blocktype = sh->st;
814 top_stack->cur_type = SYMBOL_TYPE (s);
815 top_stack->cur_field = -1;
816 top_stack->procadr = sh->value;
817 top_stack->numargs = 0;
818 break;
819
820 /* Beginning of code for structure, union, and enum definitions.
821 They all share a common set of local variables, defined here. */
822 {
823 enum type_code type_code;
824 char *ext_tsym;
825 int nfields;
826 long max_value;
827 struct field *f;
828
829 case stStruct: /* Start a block defining a struct type. */
830 type_code = TYPE_CODE_STRUCT;
831 goto structured_common;
832
833 case stUnion: /* Start a block defining a union type. */
834 type_code = TYPE_CODE_UNION;
835 goto structured_common;
836
837 case stEnum: /* Start a block defining an enum type. */
838 type_code = TYPE_CODE_ENUM;
839 goto structured_common;
840
841 case stBlock: /* Either a lexical block, or some type. */
842 if (sh->sc != scInfo && !SC_IS_COMMON (sh->sc))
843 goto case_stBlock_code; /* Lexical block */
844
845 type_code = TYPE_CODE_UNDEF; /* We have a type. */
846
847 /* Common code for handling struct, union, enum, and/or as-yet-
848 unknown-type blocks of info about structured data. `type_code'
849 has been set to the proper TYPE_CODE, if we know it. */
850 structured_common:
851 found_ecoff_debugging_info = 1;
852 push_parse_stack ();
853 top_stack->blocktype = stBlock;
854
855 /* First count the number of fields and the highest value. */
856 nfields = 0;
857 max_value = 0;
858 for (ext_tsym = ext_sh + external_sym_size;
859 ;
860 ext_tsym += external_sym_size)
861 {
862 SYMR tsym;
863
864 (*swap_sym_in) (cur_bfd, ext_tsym, &tsym);
865
866 switch (tsym.st)
867 {
868 case stEnd:
869 /* C++ encodes class types as structures where there the
870 methods are encoded as stProc. The scope of stProc
871 symbols also ends with stEnd, thus creating a risk of
872 taking the wrong stEnd symbol record as the end of
873 the current struct, which would cause GDB to undercount
874 the real number of fields in this struct. To make sure
875 we really reached the right stEnd symbol record, we
876 check the associated name, and match it against the
877 struct name. Since method names are mangled while
878 the class name is not, there is no risk of having a
879 method whose name is identical to the class name
880 (in particular constructor method names are different
881 from the class name). There is therefore no risk that
882 this check stops the count on the StEnd of a method.
883
884 Also, assume that we're really at the end when tsym.iss
885 is 0 (issNull). */
886 if (tsym.iss == issNull
887 || strcmp (debug_info->ss + cur_fdr->issBase + tsym.iss,
888 name) == 0)
889 goto end_of_fields;
890 break;
891
892 case stMember:
893 if (nfields == 0 && type_code == TYPE_CODE_UNDEF)
894 {
895 /* If the type of the member is Nil (or Void),
896 without qualifiers, assume the tag is an
897 enumeration.
898 Alpha cc -migrate enums are recognized by a zero
899 index and a zero symbol value.
900 DU 4.0 cc enums are recognized by a member type of
901 btEnum without qualifiers and a zero symbol value. */
902 if (tsym.index == indexNil
903 || (tsym.index == 0 && sh->value == 0))
904 type_code = TYPE_CODE_ENUM;
905 else
906 {
907 (*debug_swap->swap_tir_in) (bigend,
908 &ax[tsym.index].a_ti,
909 &tir);
910 if ((tir.bt == btNil || tir.bt == btVoid
911 || (tir.bt == btEnum && sh->value == 0))
912 && tir.tq0 == tqNil)
913 type_code = TYPE_CODE_ENUM;
914 }
915 }
916 nfields++;
917 if (tsym.value > max_value)
918 max_value = tsym.value;
919 break;
920
921 case stBlock:
922 case stUnion:
923 case stEnum:
924 case stStruct:
925 {
926 #if 0
927 /* This is a no-op; is it trying to tell us something
928 we should be checking? */
929 if (tsym.sc == scVariant); /*UNIMPLEMENTED */
930 #endif
931 if (tsym.index != 0)
932 {
933 /* This is something like a struct within a
934 struct. Skip over the fields of the inner
935 struct. The -1 is because the for loop will
936 increment ext_tsym. */
937 ext_tsym = ((char *) debug_info->external_sym
938 + ((cur_fdr->isymBase + tsym.index - 1)
939 * external_sym_size));
940 }
941 }
942 break;
943
944 case stTypedef:
945 /* mips cc puts out a typedef for struct x if it is not yet
946 defined when it encounters
947 struct y { struct x *xp; };
948 Just ignore it. */
949 break;
950
951 case stIndirect:
952 /* Irix5 cc puts out a stIndirect for struct x if it is not
953 yet defined when it encounters
954 struct y { struct x *xp; };
955 Just ignore it. */
956 break;
957
958 default:
959 complaint (_("declaration block contains "
960 "unhandled symbol type %d"),
961 tsym.st);
962 }
963 }
964 end_of_fields:
965
966 /* In an stBlock, there is no way to distinguish structs,
967 unions, and enums at this point. This is a bug in the
968 original design (that has been fixed with the recent
969 addition of the stStruct, stUnion, and stEnum symbol
970 types.) The way you can tell is if/when you see a variable
971 or field of that type. In that case the variable's type
972 (in the AUX table) says if the type is struct, union, or
973 enum, and points back to the stBlock here. So you can
974 patch the tag kind up later - but only if there actually is
975 a variable or field of that type.
976
977 So until we know for sure, we will guess at this point.
978 The heuristic is:
979 If the first member has index==indexNil or a void type,
980 assume we have an enumeration.
981 Otherwise, if there is more than one member, and all
982 the members have offset 0, assume we have a union.
983 Otherwise, assume we have a struct.
984
985 The heuristic could guess wrong in the case of of an
986 enumeration with no members or a union with one (or zero)
987 members, or when all except the last field of a struct have
988 width zero. These are uncommon and/or illegal situations,
989 and in any case guessing wrong probably doesn't matter
990 much.
991
992 But if we later do find out we were wrong, we fixup the tag
993 kind. Members of an enumeration must be handled
994 differently from struct/union fields, and that is harder to
995 patch up, but luckily we shouldn't need to. (If there are
996 any enumeration members, we can tell for sure it's an enum
997 here.) */
998
999 if (type_code == TYPE_CODE_UNDEF)
1000 {
1001 if (nfields > 1 && max_value == 0)
1002 type_code = TYPE_CODE_UNION;
1003 else
1004 type_code = TYPE_CODE_STRUCT;
1005 }
1006
1007 /* Create a new type or use the pending type. */
1008 pend = is_pending_symbol (cur_fdr, ext_sh);
1009 if (pend == (struct mdebug_pending *) NULL)
1010 {
1011 t = new_type (NULL);
1012 add_pending (cur_fdr, ext_sh, t);
1013 }
1014 else
1015 t = pend->t;
1016
1017 /* Do not set the tag name if it is a compiler generated tag name
1018 (.Fxx or .xxfake or empty) for unnamed struct/union/enums.
1019 Alpha cc puts out an sh->iss of zero for those. */
1020 if (sh->iss == 0 || name[0] == '.' || name[0] == '\0')
1021 TYPE_NAME (t) = NULL;
1022 else
1023 TYPE_NAME (t) = obconcat (&mdebugread_objfile->objfile_obstack,
1024 name, (char *) NULL);
1025
1026 TYPE_CODE (t) = type_code;
1027 TYPE_LENGTH (t) = sh->value;
1028 TYPE_NFIELDS (t) = nfields;
1029 TYPE_FIELDS (t) = f = ((struct field *)
1030 TYPE_ALLOC (t,
1031 nfields * sizeof (struct field)));
1032
1033 if (type_code == TYPE_CODE_ENUM)
1034 {
1035 int unsigned_enum = 1;
1036
1037 /* This is a non-empty enum. */
1038
1039 /* DEC c89 has the number of enumerators in the sh.value field,
1040 not the type length, so we have to compensate for that
1041 incompatibility quirk.
1042 This might do the wrong thing for an enum with one or two
1043 enumerators and gcc -gcoff -fshort-enums, but these cases
1044 are hopefully rare enough.
1045 Alpha cc -migrate has a sh.value field of zero, we adjust
1046 that too. */
1047 if (TYPE_LENGTH (t) == TYPE_NFIELDS (t)
1048 || TYPE_LENGTH (t) == 0)
1049 TYPE_LENGTH (t) = gdbarch_int_bit (gdbarch) / HOST_CHAR_BIT;
1050 for (ext_tsym = ext_sh + external_sym_size;
1051 ;
1052 ext_tsym += external_sym_size)
1053 {
1054 SYMR tsym;
1055 struct symbol *enum_sym;
1056
1057 (*swap_sym_in) (cur_bfd, ext_tsym, &tsym);
1058
1059 if (tsym.st != stMember)
1060 break;
1061
1062 SET_FIELD_ENUMVAL (*f, tsym.value);
1063 FIELD_TYPE (*f) = t;
1064 FIELD_NAME (*f) = debug_info->ss + cur_fdr->issBase + tsym.iss;
1065 FIELD_BITSIZE (*f) = 0;
1066
1067 enum_sym = allocate_symbol (mdebugread_objfile);
1068 SYMBOL_SET_LINKAGE_NAME
1069 (enum_sym,
1070 (char *) obstack_copy0 (&mdebugread_objfile->objfile_obstack,
1071 f->name, strlen (f->name)));
1072 SYMBOL_ACLASS_INDEX (enum_sym) = LOC_CONST;
1073 SYMBOL_TYPE (enum_sym) = t;
1074 SYMBOL_DOMAIN (enum_sym) = VAR_DOMAIN;
1075 SYMBOL_VALUE (enum_sym) = tsym.value;
1076 if (SYMBOL_VALUE (enum_sym) < 0)
1077 unsigned_enum = 0;
1078 add_symbol (enum_sym, top_stack->cur_st, top_stack->cur_block);
1079
1080 /* Skip the stMembers that we've handled. */
1081 count++;
1082 f++;
1083 }
1084 if (unsigned_enum)
1085 TYPE_UNSIGNED (t) = 1;
1086 }
1087 /* Make this the current type. */
1088 top_stack->cur_type = t;
1089 top_stack->cur_field = 0;
1090
1091 /* Do not create a symbol for alpha cc unnamed structs. */
1092 if (sh->iss == 0)
1093 break;
1094
1095 /* gcc puts out an empty struct for an opaque struct definitions,
1096 do not create a symbol for it either. */
1097 if (TYPE_NFIELDS (t) == 0)
1098 {
1099 TYPE_STUB (t) = 1;
1100 break;
1101 }
1102
1103 s = new_symbol (name);
1104 SYMBOL_DOMAIN (s) = STRUCT_DOMAIN;
1105 SYMBOL_ACLASS_INDEX (s) = LOC_TYPEDEF;
1106 SYMBOL_VALUE (s) = 0;
1107 SYMBOL_TYPE (s) = t;
1108 add_symbol (s, top_stack->cur_st, top_stack->cur_block);
1109 break;
1110
1111 /* End of local variables shared by struct, union, enum, and
1112 block (as yet unknown struct/union/enum) processing. */
1113 }
1114
1115 case_stBlock_code:
1116 found_ecoff_debugging_info = 1;
1117 /* Beginnning of (code) block. Value of symbol
1118 is the displacement from procedure start. */
1119 push_parse_stack ();
1120
1121 /* Do not start a new block if this is the outermost block of a
1122 procedure. This allows the LOC_BLOCK symbol to point to the
1123 block with the local variables, so funcname::var works. */
1124 if (top_stack->blocktype == stProc
1125 || top_stack->blocktype == stStaticProc)
1126 {
1127 top_stack->blocktype = stNil;
1128 break;
1129 }
1130
1131 top_stack->blocktype = stBlock;
1132 b = new_block (NON_FUNCTION_BLOCK, psymtab_language);
1133 BLOCK_START (b) = sh->value + top_stack->procadr;
1134 BLOCK_SUPERBLOCK (b) = top_stack->cur_block;
1135 top_stack->cur_block = b;
1136 add_block (b, top_stack->cur_st);
1137 break;
1138
1139 case stEnd: /* end (of anything) */
1140 if (sh->sc == scInfo || SC_IS_COMMON (sh->sc))
1141 {
1142 /* Finished with type */
1143 top_stack->cur_type = 0;
1144 }
1145 else if (sh->sc == scText &&
1146 (top_stack->blocktype == stProc ||
1147 top_stack->blocktype == stStaticProc))
1148 {
1149 /* Finished with procedure */
1150 const struct blockvector *bv
1151 = SYMTAB_BLOCKVECTOR (top_stack->cur_st);
1152 struct mdebug_extra_func_info *e;
1153 struct block *cblock = top_stack->cur_block;
1154 struct type *ftype = top_stack->cur_type;
1155 int i;
1156
1157 BLOCK_END (top_stack->cur_block) += sh->value; /* size */
1158
1159 /* Make up special symbol to contain procedure specific info. */
1160 s = new_symbol (MDEBUG_EFI_SYMBOL_NAME);
1161 SYMBOL_DOMAIN (s) = LABEL_DOMAIN;
1162 SYMBOL_ACLASS_INDEX (s) = LOC_CONST;
1163 SYMBOL_TYPE (s) = objfile_type (mdebugread_objfile)->builtin_void;
1164 e = OBSTACK_ZALLOC (&mdebugread_objfile->objfile_obstack,
1165 mdebug_extra_func_info);
1166 SYMBOL_VALUE_BYTES (s) = (gdb_byte *) e;
1167 e->numargs = top_stack->numargs;
1168 e->pdr.framereg = -1;
1169 add_symbol (s, top_stack->cur_st, top_stack->cur_block);
1170
1171 /* f77 emits proc-level with address bounds==[0,0],
1172 So look for such child blocks, and patch them. */
1173 for (i = 0; i < BLOCKVECTOR_NBLOCKS (bv); i++)
1174 {
1175 struct block *b_bad = BLOCKVECTOR_BLOCK (bv, i);
1176
1177 if (BLOCK_SUPERBLOCK (b_bad) == cblock
1178 && BLOCK_START (b_bad) == top_stack->procadr
1179 && BLOCK_END (b_bad) == top_stack->procadr)
1180 {
1181 BLOCK_START (b_bad) = BLOCK_START (cblock);
1182 BLOCK_END (b_bad) = BLOCK_END (cblock);
1183 }
1184 }
1185
1186 if (TYPE_NFIELDS (ftype) <= 0)
1187 {
1188 /* No parameter type information is recorded with the function's
1189 type. Set that from the type of the parameter symbols. */
1190 int nparams = top_stack->numargs;
1191 int iparams;
1192 struct symbol *sym;
1193
1194 if (nparams > 0)
1195 {
1196 struct block_iterator iter;
1197
1198 TYPE_NFIELDS (ftype) = nparams;
1199 TYPE_FIELDS (ftype) = (struct field *)
1200 TYPE_ALLOC (ftype, nparams * sizeof (struct field));
1201
1202 iparams = 0;
1203 ALL_BLOCK_SYMBOLS (cblock, iter, sym)
1204 {
1205 if (iparams == nparams)
1206 break;
1207
1208 if (SYMBOL_IS_ARGUMENT (sym))
1209 {
1210 TYPE_FIELD_TYPE (ftype, iparams) = SYMBOL_TYPE (sym);
1211 TYPE_FIELD_ARTIFICIAL (ftype, iparams) = 0;
1212 iparams++;
1213 }
1214 }
1215 }
1216 }
1217 }
1218 else if (sh->sc == scText && top_stack->blocktype == stBlock)
1219 {
1220 /* End of (code) block. The value of the symbol is the
1221 displacement from the procedure`s start address of the
1222 end of this block. */
1223 BLOCK_END (top_stack->cur_block) = sh->value + top_stack->procadr;
1224 }
1225 else if (sh->sc == scText && top_stack->blocktype == stNil)
1226 {
1227 /* End of outermost block. Pop parse stack and ignore. The
1228 following stEnd of stProc will take care of the block. */
1229 ;
1230 }
1231 else if (sh->sc == scText && top_stack->blocktype == stFile)
1232 {
1233 /* End of file. Pop parse stack and ignore. Higher
1234 level code deals with this. */
1235 ;
1236 }
1237 else
1238 complaint (_("stEnd with storage class %d not handled"), sh->sc);
1239
1240 pop_parse_stack (); /* Restore previous lexical context. */
1241 break;
1242
1243 case stMember: /* member of struct or union */
1244 {
1245 struct field *f
1246 = &TYPE_FIELDS (top_stack->cur_type)[top_stack->cur_field++];
1247 FIELD_NAME (*f) = name;
1248 SET_FIELD_BITPOS (*f, sh->value);
1249 bitsize = 0;
1250 FIELD_TYPE (*f) = parse_type (cur_fd, ax, sh->index,
1251 &bitsize, bigend, name);
1252 FIELD_BITSIZE (*f) = bitsize;
1253 }
1254 break;
1255
1256 case stIndirect: /* forward declaration on Irix5 */
1257 /* Forward declarations from Irix5 cc are handled by cross_ref,
1258 skip them. */
1259 break;
1260
1261 case stTypedef: /* type definition */
1262 found_ecoff_debugging_info = 1;
1263
1264 /* Typedefs for forward declarations and opaque structs from alpha cc
1265 are handled by cross_ref, skip them. */
1266 if (sh->iss == 0)
1267 break;
1268
1269 /* Parse the type or use the pending type. */
1270 pend = is_pending_symbol (cur_fdr, ext_sh);
1271 if (pend == (struct mdebug_pending *) NULL)
1272 {
1273 t = parse_type (cur_fd, ax, sh->index, (int *) NULL, bigend, name);
1274 add_pending (cur_fdr, ext_sh, t);
1275 }
1276 else
1277 t = pend->t;
1278
1279 /* Mips cc puts out a typedef with the name of the struct for forward
1280 declarations. These should not go into the symbol table and
1281 TYPE_NAME should not be set for them.
1282 They can't be distinguished from an intentional typedef to
1283 the same name however:
1284 x.h:
1285 struct x { int ix; int jx; };
1286 struct xx;
1287 x.c:
1288 typedef struct x x;
1289 struct xx {int ixx; int jxx; };
1290 generates a cross referencing stTypedef for x and xx.
1291 The user visible effect of this is that the type of a pointer
1292 to struct foo sometimes is given as `foo *' instead of `struct foo *'.
1293 The problem is fixed with alpha cc and Irix5 cc. */
1294
1295 /* However if the typedef cross references to an opaque aggregate, it
1296 is safe to omit it from the symbol table. */
1297
1298 if (has_opaque_xref (cur_fdr, sh))
1299 break;
1300 s = new_symbol (name);
1301 SYMBOL_DOMAIN (s) = VAR_DOMAIN;
1302 SYMBOL_ACLASS_INDEX (s) = LOC_TYPEDEF;
1303 SYMBOL_BLOCK_VALUE (s) = top_stack->cur_block;
1304 SYMBOL_TYPE (s) = t;
1305 add_symbol (s, top_stack->cur_st, top_stack->cur_block);
1306
1307 /* Incomplete definitions of structs should not get a name. */
1308 if (TYPE_NAME (SYMBOL_TYPE (s)) == NULL
1309 && (TYPE_NFIELDS (SYMBOL_TYPE (s)) != 0
1310 || (TYPE_CODE (SYMBOL_TYPE (s)) != TYPE_CODE_STRUCT
1311 && TYPE_CODE (SYMBOL_TYPE (s)) != TYPE_CODE_UNION)))
1312 {
1313 if (TYPE_CODE (SYMBOL_TYPE (s)) == TYPE_CODE_PTR
1314 || TYPE_CODE (SYMBOL_TYPE (s)) == TYPE_CODE_FUNC)
1315 {
1316 /* If we are giving a name to a type such as "pointer to
1317 foo" or "function returning foo", we better not set
1318 the TYPE_NAME. If the program contains "typedef char
1319 *caddr_t;", we don't want all variables of type char
1320 * to print as caddr_t. This is not just a
1321 consequence of GDB's type management; CC and GCC (at
1322 least through version 2.4) both output variables of
1323 either type char * or caddr_t with the type
1324 refering to the stTypedef symbol for caddr_t. If a future
1325 compiler cleans this up it GDB is not ready for it
1326 yet, but if it becomes ready we somehow need to
1327 disable this check (without breaking the PCC/GCC2.4
1328 case).
1329
1330 Sigh.
1331
1332 Fortunately, this check seems not to be necessary
1333 for anything except pointers or functions. */
1334 }
1335 else
1336 TYPE_NAME (SYMBOL_TYPE (s)) = SYMBOL_LINKAGE_NAME (s);
1337 }
1338 break;
1339
1340 case stFile: /* file name */
1341 push_parse_stack ();
1342 top_stack->blocktype = sh->st;
1343 break;
1344
1345 /* I`ve never seen these for C */
1346 case stRegReloc:
1347 break; /* register relocation */
1348 case stForward:
1349 break; /* forwarding address */
1350 case stConstant:
1351 break; /* constant */
1352 default:
1353 complaint (_("unknown symbol type 0x%x"), sh->st);
1354 break;
1355 }
1356
1357 return count;
1358 }
1359
1360 /* Basic types. */
1361
1362 static const struct objfile_data *basic_type_data;
1363
1364 static struct type *
1365 basic_type (int bt, struct objfile *objfile)
1366 {
1367 struct gdbarch *gdbarch = get_objfile_arch (objfile);
1368 struct type **map_bt
1369 = (struct type **) objfile_data (objfile, basic_type_data);
1370 struct type *tp;
1371
1372 if (bt >= btMax)
1373 return NULL;
1374
1375 if (!map_bt)
1376 {
1377 map_bt = OBSTACK_CALLOC (&objfile->objfile_obstack,
1378 btMax, struct type *);
1379 set_objfile_data (objfile, basic_type_data, map_bt);
1380 }
1381
1382 if (map_bt[bt])
1383 return map_bt[bt];
1384
1385 switch (bt)
1386 {
1387 case btNil:
1388 tp = objfile_type (objfile)->builtin_void;
1389 break;
1390
1391 case btAdr:
1392 tp = init_pointer_type (objfile, 32, "adr_32",
1393 objfile_type (objfile)->builtin_void);
1394 break;
1395
1396 case btChar:
1397 tp = init_integer_type (objfile, 8, 0, "char");
1398 TYPE_NOSIGN (tp) = 1;
1399 break;
1400
1401 case btUChar:
1402 tp = init_integer_type (objfile, 8, 1, "unsigned char");
1403 break;
1404
1405 case btShort:
1406 tp = init_integer_type (objfile, 16, 0, "short");
1407 break;
1408
1409 case btUShort:
1410 tp = init_integer_type (objfile, 16, 1, "unsigned short");
1411 break;
1412
1413 case btInt:
1414 tp = init_integer_type (objfile, 32, 0, "int");
1415 break;
1416
1417 case btUInt:
1418 tp = init_integer_type (objfile, 32, 1, "unsigned int");
1419 break;
1420
1421 case btLong:
1422 tp = init_integer_type (objfile, 32, 0, "long");
1423 break;
1424
1425 case btULong:
1426 tp = init_integer_type (objfile, 32, 1, "unsigned long");
1427 break;
1428
1429 case btFloat:
1430 tp = init_float_type (objfile, gdbarch_float_bit (gdbarch),
1431 "float", gdbarch_float_format (gdbarch));
1432 break;
1433
1434 case btDouble:
1435 tp = init_float_type (objfile, gdbarch_double_bit (gdbarch),
1436 "double", gdbarch_double_format (gdbarch));
1437 break;
1438
1439 case btComplex:
1440 tp = init_complex_type (objfile, "complex",
1441 basic_type (btFloat, objfile));
1442 break;
1443
1444 case btDComplex:
1445 tp = init_complex_type (objfile, "double complex",
1446 basic_type (btFloat, objfile));
1447 break;
1448
1449 case btFixedDec:
1450 /* We use TYPE_CODE_INT to print these as integers. Does this do any
1451 good? Would we be better off with TYPE_CODE_ERROR? Should
1452 TYPE_CODE_ERROR print things in hex if it knows the size? */
1453 tp = init_integer_type (objfile, gdbarch_int_bit (gdbarch), 0,
1454 "fixed decimal");
1455 break;
1456
1457 case btFloatDec:
1458 tp = init_type (objfile, TYPE_CODE_ERROR,
1459 gdbarch_double_bit (gdbarch), "floating decimal");
1460 break;
1461
1462 case btString:
1463 /* Is a "string" the way btString means it the same as TYPE_CODE_STRING?
1464 FIXME. */
1465 tp = init_type (objfile, TYPE_CODE_STRING, TARGET_CHAR_BIT, "string");
1466 break;
1467
1468 case btVoid:
1469 tp = objfile_type (objfile)->builtin_void;
1470 break;
1471
1472 case btLong64:
1473 tp = init_integer_type (objfile, 64, 0, "long");
1474 break;
1475
1476 case btULong64:
1477 tp = init_integer_type (objfile, 64, 1, "unsigned long");
1478 break;
1479
1480 case btLongLong64:
1481 tp = init_integer_type (objfile, 64, 0, "long long");
1482 break;
1483
1484 case btULongLong64:
1485 tp = init_integer_type (objfile, 64, 1, "unsigned long long");
1486 break;
1487
1488 case btAdr64:
1489 tp = init_pointer_type (objfile, 64, "adr_64",
1490 objfile_type (objfile)->builtin_void);
1491 break;
1492
1493 case btInt64:
1494 tp = init_integer_type (objfile, 64, 0, "int");
1495 break;
1496
1497 case btUInt64:
1498 tp = init_integer_type (objfile, 64, 1, "unsigned int");
1499 break;
1500
1501 default:
1502 tp = NULL;
1503 break;
1504 }
1505
1506 map_bt[bt] = tp;
1507 return tp;
1508 }
1509
1510 /* Parse the type information provided in the raw AX entries for
1511 the symbol SH. Return the bitfield size in BS, in case.
1512 We must byte-swap the AX entries before we use them; BIGEND says whether
1513 they are big-endian or little-endian (from fh->fBigendian). */
1514
1515 static struct type *
1516 parse_type (int fd, union aux_ext *ax, unsigned int aux_index, int *bs,
1517 int bigend, const char *sym_name)
1518 {
1519 TIR t[1];
1520 struct type *tp = 0;
1521 enum type_code type_code = TYPE_CODE_UNDEF;
1522
1523 /* Handle undefined types, they have indexNil. */
1524 if (aux_index == indexNil)
1525 return basic_type (btInt, mdebugread_objfile);
1526
1527 /* Handle corrupt aux indices. */
1528 if (aux_index >= (debug_info->fdr + fd)->caux)
1529 {
1530 index_complaint (sym_name);
1531 return basic_type (btInt, mdebugread_objfile);
1532 }
1533 ax += aux_index;
1534
1535 /* Use aux as a type information record, map its basic type. */
1536 (*debug_swap->swap_tir_in) (bigend, &ax->a_ti, t);
1537 tp = basic_type (t->bt, mdebugread_objfile);
1538 if (tp == NULL)
1539 {
1540 /* Cannot use builtin types -- build our own. */
1541 switch (t->bt)
1542 {
1543 case btStruct:
1544 type_code = TYPE_CODE_STRUCT;
1545 break;
1546 case btUnion:
1547 type_code = TYPE_CODE_UNION;
1548 break;
1549 case btEnum:
1550 type_code = TYPE_CODE_ENUM;
1551 break;
1552 case btRange:
1553 type_code = TYPE_CODE_RANGE;
1554 break;
1555 case btSet:
1556 type_code = TYPE_CODE_SET;
1557 break;
1558 case btIndirect:
1559 /* alpha cc -migrate uses this for typedefs. The true type will
1560 be obtained by crossreferencing below. */
1561 type_code = TYPE_CODE_ERROR;
1562 break;
1563 case btTypedef:
1564 /* alpha cc uses this for typedefs. The true type will be
1565 obtained by crossreferencing below. */
1566 type_code = TYPE_CODE_ERROR;
1567 break;
1568 default:
1569 basic_type_complaint (t->bt, sym_name);
1570 return basic_type (btInt, mdebugread_objfile);
1571 }
1572 }
1573
1574 /* Move on to next aux. */
1575 ax++;
1576
1577 if (t->fBitfield)
1578 {
1579 int width = AUX_GET_WIDTH (bigend, ax);
1580
1581 /* Inhibit core dumps if TIR is corrupted. */
1582 if (bs == (int *) NULL)
1583 {
1584 /* Alpha cc -migrate encodes char and unsigned char types
1585 as short and unsigned short types with a field width of 8.
1586 Enum types also have a field width which we ignore for now. */
1587 if (t->bt == btShort && width == 8)
1588 tp = basic_type (btChar, mdebugread_objfile);
1589 else if (t->bt == btUShort && width == 8)
1590 tp = basic_type (btUChar, mdebugread_objfile);
1591 else if (t->bt == btEnum)
1592 ;
1593 else
1594 complaint (_("can't handle TIR fBitfield for %s"),
1595 sym_name);
1596 }
1597 else
1598 *bs = width;
1599 ax++;
1600 }
1601
1602 /* A btIndirect entry cross references to an aux entry containing
1603 the type. */
1604 if (t->bt == btIndirect)
1605 {
1606 RNDXR rn[1];
1607 int rf;
1608 FDR *xref_fh;
1609 int xref_fd;
1610
1611 (*debug_swap->swap_rndx_in) (bigend, &ax->a_rndx, rn);
1612 ax++;
1613 if (rn->rfd == 0xfff)
1614 {
1615 rf = AUX_GET_ISYM (bigend, ax);
1616 ax++;
1617 }
1618 else
1619 rf = rn->rfd;
1620
1621 if (rf == -1)
1622 {
1623 complaint (_("unable to cross ref btIndirect for %s"), sym_name);
1624 return basic_type (btInt, mdebugread_objfile);
1625 }
1626 xref_fh = get_rfd (fd, rf);
1627 xref_fd = xref_fh - debug_info->fdr;
1628 tp = parse_type (xref_fd, debug_info->external_aux + xref_fh->iauxBase,
1629 rn->index, (int *) NULL, xref_fh->fBigendian, sym_name);
1630 }
1631
1632 /* All these types really point to some (common) MIPS type
1633 definition, and only the type-qualifiers fully identify
1634 them. We'll make the same effort at sharing. */
1635 if (t->bt == btStruct ||
1636 t->bt == btUnion ||
1637 t->bt == btEnum ||
1638
1639 /* btSet (I think) implies that the name is a tag name, not a typedef
1640 name. This apparently is a MIPS extension for C sets. */
1641 t->bt == btSet)
1642 {
1643 const char *name;
1644
1645 /* Try to cross reference this type, build new type on failure. */
1646 ax += cross_ref (fd, ax, &tp, type_code, &name, bigend, sym_name);
1647 if (tp == (struct type *) NULL)
1648 tp = init_type (mdebugread_objfile, type_code, 0, NULL);
1649
1650 /* DEC c89 produces cross references to qualified aggregate types,
1651 dereference them. */
1652 while (TYPE_CODE (tp) == TYPE_CODE_PTR
1653 || TYPE_CODE (tp) == TYPE_CODE_ARRAY)
1654 tp = TYPE_TARGET_TYPE (tp);
1655
1656 /* Make sure that TYPE_CODE(tp) has an expected type code.
1657 Any type may be returned from cross_ref if file indirect entries
1658 are corrupted. */
1659 if (TYPE_CODE (tp) != TYPE_CODE_STRUCT
1660 && TYPE_CODE (tp) != TYPE_CODE_UNION
1661 && TYPE_CODE (tp) != TYPE_CODE_ENUM)
1662 {
1663 unexpected_type_code_complaint (sym_name);
1664 }
1665 else
1666 {
1667 /* Usually, TYPE_CODE(tp) is already type_code. The main
1668 exception is if we guessed wrong re struct/union/enum.
1669 But for struct vs. union a wrong guess is harmless, so
1670 don't complain(). */
1671 if ((TYPE_CODE (tp) == TYPE_CODE_ENUM
1672 && type_code != TYPE_CODE_ENUM)
1673 || (TYPE_CODE (tp) != TYPE_CODE_ENUM
1674 && type_code == TYPE_CODE_ENUM))
1675 {
1676 bad_tag_guess_complaint (sym_name);
1677 }
1678
1679 if (TYPE_CODE (tp) != type_code)
1680 {
1681 TYPE_CODE (tp) = type_code;
1682 }
1683
1684 /* Do not set the tag name if it is a compiler generated tag name
1685 (.Fxx or .xxfake or empty) for unnamed struct/union/enums. */
1686 if (name[0] == '.' || name[0] == '\0')
1687 TYPE_NAME (tp) = NULL;
1688 else if (TYPE_NAME (tp) == NULL
1689 || strcmp (TYPE_NAME (tp), name) != 0)
1690 TYPE_NAME (tp)
1691 = ((const char *)
1692 obstack_copy0 (&mdebugread_objfile->objfile_obstack,
1693 name, strlen (name)));
1694 }
1695 }
1696
1697 /* All these types really point to some (common) MIPS type
1698 definition, and only the type-qualifiers fully identify
1699 them. We'll make the same effort at sharing.
1700 FIXME: We are not doing any guessing on range types. */
1701 if (t->bt == btRange)
1702 {
1703 const char *name;
1704
1705 /* Try to cross reference this type, build new type on failure. */
1706 ax += cross_ref (fd, ax, &tp, type_code, &name, bigend, sym_name);
1707 if (tp == (struct type *) NULL)
1708 tp = init_type (mdebugread_objfile, type_code, 0, NULL);
1709
1710 /* Make sure that TYPE_CODE(tp) has an expected type code.
1711 Any type may be returned from cross_ref if file indirect entries
1712 are corrupted. */
1713 if (TYPE_CODE (tp) != TYPE_CODE_RANGE)
1714 {
1715 unexpected_type_code_complaint (sym_name);
1716 }
1717 else
1718 {
1719 /* Usually, TYPE_CODE(tp) is already type_code. The main
1720 exception is if we guessed wrong re struct/union/enum. */
1721 if (TYPE_CODE (tp) != type_code)
1722 {
1723 bad_tag_guess_complaint (sym_name);
1724 TYPE_CODE (tp) = type_code;
1725 }
1726 if (TYPE_NAME (tp) == NULL
1727 || strcmp (TYPE_NAME (tp), name) != 0)
1728 TYPE_NAME (tp)
1729 = ((const char *)
1730 obstack_copy0 (&mdebugread_objfile->objfile_obstack,
1731 name, strlen (name)));
1732 }
1733 }
1734 if (t->bt == btTypedef)
1735 {
1736 const char *name;
1737
1738 /* Try to cross reference this type, it should succeed. */
1739 ax += cross_ref (fd, ax, &tp, type_code, &name, bigend, sym_name);
1740 if (tp == (struct type *) NULL)
1741 {
1742 complaint (_("unable to cross ref btTypedef for %s"), sym_name);
1743 tp = basic_type (btInt, mdebugread_objfile);
1744 }
1745 }
1746
1747 /* Deal with range types. */
1748 if (t->bt == btRange)
1749 {
1750 TYPE_NFIELDS (tp) = 0;
1751 TYPE_RANGE_DATA (tp) = ((struct range_bounds *)
1752 TYPE_ZALLOC (tp, sizeof (struct range_bounds)));
1753 TYPE_LOW_BOUND (tp) = AUX_GET_DNLOW (bigend, ax);
1754 ax++;
1755 TYPE_HIGH_BOUND (tp) = AUX_GET_DNHIGH (bigend, ax);
1756 ax++;
1757 }
1758
1759 /* Parse all the type qualifiers now. If there are more
1760 than 6 the game will continue in the next aux. */
1761
1762 while (1)
1763 {
1764 #define PARSE_TQ(tq) \
1765 if (t->tq != tqNil) \
1766 ax += upgrade_type(fd, &tp, t->tq, ax, bigend, sym_name); \
1767 else \
1768 break;
1769
1770 PARSE_TQ (tq0);
1771 PARSE_TQ (tq1);
1772 PARSE_TQ (tq2);
1773 PARSE_TQ (tq3);
1774 PARSE_TQ (tq4);
1775 PARSE_TQ (tq5);
1776 #undef PARSE_TQ
1777
1778 /* mips cc 2.x and gcc never put out continued aux entries. */
1779 if (!t->continued)
1780 break;
1781
1782 (*debug_swap->swap_tir_in) (bigend, &ax->a_ti, t);
1783 ax++;
1784 }
1785
1786 /* Complain for illegal continuations due to corrupt aux entries. */
1787 if (t->continued)
1788 complaint (_("illegal TIR continued for %s"), sym_name);
1789
1790 return tp;
1791 }
1792
1793 /* Make up a complex type from a basic one. Type is passed by
1794 reference in TPP and side-effected as necessary. The type
1795 qualifier TQ says how to handle the aux symbols at AX for
1796 the symbol SX we are currently analyzing. BIGEND says whether
1797 aux symbols are big-endian or little-endian.
1798 Returns the number of aux symbols we parsed. */
1799
1800 static int
1801 upgrade_type (int fd, struct type **tpp, int tq, union aux_ext *ax, int bigend,
1802 const char *sym_name)
1803 {
1804 int off;
1805 struct type *t;
1806
1807 /* Used in array processing. */
1808 int rf, id;
1809 FDR *fh;
1810 struct type *range;
1811 struct type *indx;
1812 int lower, upper;
1813 RNDXR rndx;
1814
1815 switch (tq)
1816 {
1817 case tqPtr:
1818 t = lookup_pointer_type (*tpp);
1819 *tpp = t;
1820 return 0;
1821
1822 case tqProc:
1823 t = lookup_function_type (*tpp);
1824 *tpp = t;
1825 return 0;
1826
1827 case tqArray:
1828 off = 0;
1829
1830 /* Determine and record the domain type (type of index). */
1831 (*debug_swap->swap_rndx_in) (bigend, &ax->a_rndx, &rndx);
1832 id = rndx.index;
1833 rf = rndx.rfd;
1834 if (rf == 0xfff)
1835 {
1836 ax++;
1837 rf = AUX_GET_ISYM (bigend, ax);
1838 off++;
1839 }
1840 fh = get_rfd (fd, rf);
1841
1842 indx = parse_type (fh - debug_info->fdr,
1843 debug_info->external_aux + fh->iauxBase,
1844 id, (int *) NULL, bigend, sym_name);
1845
1846 /* The bounds type should be an integer type, but might be anything
1847 else due to corrupt aux entries. */
1848 if (TYPE_CODE (indx) != TYPE_CODE_INT)
1849 {
1850 complaint (_("illegal array index type for %s, assuming int"),
1851 sym_name);
1852 indx = objfile_type (mdebugread_objfile)->builtin_int;
1853 }
1854
1855 /* Get the bounds, and create the array type. */
1856 ax++;
1857 lower = AUX_GET_DNLOW (bigend, ax);
1858 ax++;
1859 upper = AUX_GET_DNHIGH (bigend, ax);
1860 ax++;
1861 rf = AUX_GET_WIDTH (bigend, ax); /* bit size of array element */
1862
1863 range = create_static_range_type ((struct type *) NULL, indx,
1864 lower, upper);
1865
1866 t = create_array_type ((struct type *) NULL, *tpp, range);
1867
1868 /* We used to fill in the supplied array element bitsize
1869 here if the TYPE_LENGTH of the target type was zero.
1870 This happens for a `pointer to an array of anonymous structs',
1871 but in this case the array element bitsize is also zero,
1872 so nothing is gained.
1873 And we used to check the TYPE_LENGTH of the target type against
1874 the supplied array element bitsize.
1875 gcc causes a mismatch for `pointer to array of object',
1876 since the sdb directives it uses do not have a way of
1877 specifying the bitsize, but it does no harm (the
1878 TYPE_LENGTH should be correct) and we should be able to
1879 ignore the erroneous bitsize from the auxiliary entry safely.
1880 dbx seems to ignore it too. */
1881
1882 /* TYPE_TARGET_STUB now takes care of the zero TYPE_LENGTH problem. */
1883 if (TYPE_LENGTH (*tpp) == 0)
1884 TYPE_TARGET_STUB (t) = 1;
1885
1886 *tpp = t;
1887 return 4 + off;
1888
1889 case tqVol:
1890 /* Volatile -- currently ignored */
1891 return 0;
1892
1893 case tqConst:
1894 /* Const -- currently ignored */
1895 return 0;
1896
1897 default:
1898 complaint (_("unknown type qualifier 0x%x"), tq);
1899 return 0;
1900 }
1901 }
1902
1903
1904 /* Parse a procedure descriptor record PR. Note that the procedure is
1905 parsed _after_ the local symbols, now we just insert the extra
1906 information we need into a MDEBUG_EFI_SYMBOL_NAME symbol that has
1907 already been placed in the procedure's main block. Note also that
1908 images that have been partially stripped (ld -x) have been deprived
1909 of local symbols, and we have to cope with them here. FIRST_OFF is
1910 the offset of the first procedure for this FDR; we adjust the
1911 address by this amount, but I don't know why. SEARCH_SYMTAB is the symtab
1912 to look for the function which contains the MDEBUG_EFI_SYMBOL_NAME symbol
1913 in question, or NULL to use top_stack->cur_block. */
1914
1915 static void
1916 parse_procedure (PDR *pr, struct compunit_symtab *search_symtab,
1917 struct partial_symtab *pst)
1918 {
1919 struct symbol *s, *i;
1920 const struct block *b;
1921 char *sh_name;
1922
1923 /* Simple rule to find files linked "-x". */
1924 if (cur_fdr->rss == -1)
1925 {
1926 if (pr->isym == -1)
1927 {
1928 /* Static procedure at address pr->adr. Sigh. */
1929 /* FIXME-32x64. assuming pr->adr fits in long. */
1930 complaint (_("can't handle PDR for static proc at 0x%lx"),
1931 (unsigned long) pr->adr);
1932 return;
1933 }
1934 else
1935 {
1936 /* external */
1937 EXTR she;
1938
1939 (*debug_swap->swap_ext_in) (cur_bfd,
1940 ((char *) debug_info->external_ext
1941 + (pr->isym
1942 * debug_swap->external_ext_size)),
1943 &she);
1944 sh_name = debug_info->ssext + she.asym.iss;
1945 }
1946 }
1947 else
1948 {
1949 /* Full symbols */
1950 SYMR sh;
1951
1952 (*debug_swap->swap_sym_in) (cur_bfd,
1953 ((char *) debug_info->external_sym
1954 + ((cur_fdr->isymBase + pr->isym)
1955 * debug_swap->external_sym_size)),
1956 &sh);
1957 sh_name = debug_info->ss + cur_fdr->issBase + sh.iss;
1958 }
1959
1960 if (search_symtab != NULL)
1961 {
1962 #if 0
1963 /* This loses both in the case mentioned (want a static, find a global),
1964 but also if we are looking up a non-mangled name which happens to
1965 match the name of a mangled function. */
1966 /* We have to save the cur_fdr across the call to lookup_symbol.
1967 If the pdr is for a static function and if a global function with
1968 the same name exists, lookup_symbol will eventually read in the symtab
1969 for the global function and clobber cur_fdr. */
1970 FDR *save_cur_fdr = cur_fdr;
1971
1972 s = lookup_symbol (sh_name, NULL, VAR_DOMAIN, 0);
1973 cur_fdr = save_cur_fdr;
1974 #else
1975 s = mylookup_symbol
1976 (sh_name,
1977 BLOCKVECTOR_BLOCK (COMPUNIT_BLOCKVECTOR (search_symtab),
1978 STATIC_BLOCK),
1979 VAR_DOMAIN,
1980 LOC_BLOCK);
1981 #endif
1982 }
1983 else
1984 s = mylookup_symbol (sh_name, top_stack->cur_block,
1985 VAR_DOMAIN, LOC_BLOCK);
1986
1987 if (s != 0)
1988 {
1989 b = SYMBOL_BLOCK_VALUE (s);
1990 }
1991 else
1992 {
1993 complaint (_("PDR for %s, but no symbol"), sh_name);
1994 #if 1
1995 return;
1996 #else
1997 /* FIXME -- delete. We can't do symbol allocation now; it's all done. */
1998 s = new_symbol (sh_name);
1999 SYMBOL_DOMAIN (s) = VAR_DOMAIN;
2000 SYMBOL_CLASS (s) = LOC_BLOCK;
2001 /* Donno its type, hope int is ok. */
2002 SYMBOL_TYPE (s)
2003 = lookup_function_type (objfile_type (pst->objfile)->builtin_int);
2004 add_symbol (s, top_stack->cur_st, top_stack->cur_block);
2005 /* Won't have symbols for this one. */
2006 b = new_block (2);
2007 SYMBOL_BLOCK_VALUE (s) = b;
2008 BLOCK_FUNCTION (b) = s;
2009 BLOCK_START (b) = pr->adr;
2010 /* BOUND used to be the end of procedure's text, but the
2011 argument is no longer passed in. */
2012 BLOCK_END (b) = bound;
2013 BLOCK_SUPERBLOCK (b) = top_stack->cur_block;
2014 add_block (b, top_stack->cur_st);
2015 #endif
2016 }
2017
2018 i = mylookup_symbol (MDEBUG_EFI_SYMBOL_NAME, b, LABEL_DOMAIN, LOC_CONST);
2019
2020 if (i)
2021 {
2022 struct mdebug_extra_func_info *e;
2023
2024 e = (struct mdebug_extra_func_info *) SYMBOL_VALUE_BYTES (i);
2025 e->pdr = *pr;
2026
2027 /* GDB expects the absolute function start address for the
2028 procedure descriptor in e->pdr.adr.
2029 As the address in the procedure descriptor is usually relative,
2030 we would have to relocate e->pdr.adr with cur_fdr->adr and
2031 ANOFFSET (pst->section_offsets, SECT_OFF_TEXT (pst->objfile)).
2032 Unfortunately cur_fdr->adr and e->pdr.adr are both absolute
2033 in shared libraries on some systems, and on other systems
2034 e->pdr.adr is sometimes offset by a bogus value.
2035 To work around these problems, we replace e->pdr.adr with
2036 the start address of the function. */
2037 e->pdr.adr = BLOCK_START (b);
2038 }
2039
2040 /* It would be reasonable that functions that have been compiled
2041 without debugging info have a btNil type for their return value,
2042 and functions that are void and are compiled with debugging info
2043 have btVoid.
2044 gcc and DEC f77 put out btNil types for both cases, so btNil is mapped
2045 to TYPE_CODE_VOID in parse_type to get the `compiled with debugging info'
2046 case right.
2047 The glevel field in cur_fdr could be used to determine the presence
2048 of debugging info, but GCC doesn't always pass the -g switch settings
2049 to the assembler and GAS doesn't set the glevel field from the -g switch
2050 settings.
2051 To work around these problems, the return value type of a TYPE_CODE_VOID
2052 function is adjusted accordingly if no debugging info was found in the
2053 compilation unit. */
2054
2055 if (processing_gcc_compilation == 0
2056 && found_ecoff_debugging_info == 0
2057 && TYPE_CODE (TYPE_TARGET_TYPE (SYMBOL_TYPE (s))) == TYPE_CODE_VOID)
2058 SYMBOL_TYPE (s) = objfile_type (mdebugread_objfile)->nodebug_text_symbol;
2059 }
2060
2061 /* Parse the external symbol ES. Just call parse_symbol() after
2062 making sure we know where the aux are for it.
2063 BIGEND says whether aux entries are big-endian or little-endian.
2064
2065 This routine clobbers top_stack->cur_block and ->cur_st. */
2066
2067 static void parse_external (EXTR *, int, struct section_offsets *,
2068 struct objfile *);
2069
2070 static void
2071 parse_external (EXTR *es, int bigend, struct section_offsets *section_offsets,
2072 struct objfile *objfile)
2073 {
2074 union aux_ext *ax;
2075
2076 if (es->ifd != ifdNil)
2077 {
2078 cur_fd = es->ifd;
2079 cur_fdr = debug_info->fdr + cur_fd;
2080 ax = debug_info->external_aux + cur_fdr->iauxBase;
2081 }
2082 else
2083 {
2084 cur_fdr = debug_info->fdr;
2085 ax = 0;
2086 }
2087
2088 /* Reading .o files */
2089 if (SC_IS_UNDEF (es->asym.sc) || es->asym.sc == scNil)
2090 {
2091 const char *what;
2092 switch (es->asym.st)
2093 {
2094 case stNil:
2095 /* These are generated for static symbols in .o files,
2096 ignore them. */
2097 return;
2098 case stStaticProc:
2099 case stProc:
2100 what = "procedure";
2101 n_undef_procs++;
2102 break;
2103 case stGlobal:
2104 what = "variable";
2105 n_undef_vars++;
2106 break;
2107 case stLabel:
2108 what = "label";
2109 n_undef_labels++;
2110 break;
2111 default:
2112 what = "symbol";
2113 break;
2114 }
2115 n_undef_symbols++;
2116 /* FIXME: Turn this into a complaint? */
2117 if (info_verbose)
2118 printf_filtered (_("Warning: %s `%s' is undefined (in %s)\n"),
2119 what, debug_info->ssext + es->asym.iss,
2120 fdr_name (cur_fdr));
2121 return;
2122 }
2123
2124 switch (es->asym.st)
2125 {
2126 case stProc:
2127 case stStaticProc:
2128 /* There is no need to parse the external procedure symbols.
2129 If they are from objects compiled without -g, their index will
2130 be indexNil, and the symbol definition from the minimal symbol
2131 is preferrable (yielding a function returning int instead of int).
2132 If the index points to a local procedure symbol, the local
2133 symbol already provides the correct type.
2134 Note that the index of the external procedure symbol points
2135 to the local procedure symbol in the local symbol table, and
2136 _not_ to the auxiliary symbol info. */
2137 break;
2138 case stGlobal:
2139 case stLabel:
2140 /* Global common symbols are resolved by the runtime loader,
2141 ignore them. */
2142 if (SC_IS_COMMON (es->asym.sc))
2143 break;
2144
2145 /* Note that the case of a symbol with indexNil must be handled
2146 anyways by parse_symbol(). */
2147 parse_symbol (&es->asym, ax, (char *) NULL,
2148 bigend, section_offsets, objfile);
2149 break;
2150 default:
2151 break;
2152 }
2153 }
2154
2155 /* Parse the line number info for file descriptor FH into
2156 GDB's linetable LT. MIPS' encoding requires a little bit
2157 of magic to get things out. Note also that MIPS' line
2158 numbers can go back and forth, apparently we can live
2159 with that and do not need to reorder our linetables. */
2160
2161 static void
2162 parse_lines (FDR *fh, PDR *pr, struct linetable *lt, int maxlines,
2163 CORE_ADDR textlow, CORE_ADDR lowest_pdr_addr)
2164 {
2165 unsigned char *base;
2166 int j, k;
2167 int delta, count, lineno = 0;
2168
2169 if (fh->cbLine == 0)
2170 return;
2171
2172 /* Scan by procedure descriptors. */
2173 k = 0;
2174 for (j = 0; j < fh->cpd; j++, pr++)
2175 {
2176 CORE_ADDR l;
2177 CORE_ADDR adr;
2178 unsigned char *halt;
2179
2180 /* No code for this one. */
2181 if (pr->iline == ilineNil ||
2182 pr->lnLow == -1 || pr->lnHigh == -1)
2183 continue;
2184
2185 /* Determine start and end address of compressed line bytes for
2186 this procedure. */
2187 base = debug_info->line + fh->cbLineOffset;
2188 if (j != (fh->cpd - 1))
2189 halt = base + pr[1].cbLineOffset;
2190 else
2191 halt = base + fh->cbLine;
2192 base += pr->cbLineOffset;
2193
2194 adr = textlow + pr->adr - lowest_pdr_addr;
2195
2196 l = adr >> 2; /* in words */
2197 for (lineno = pr->lnLow; base < halt;)
2198 {
2199 count = *base & 0x0f;
2200 delta = *base++ >> 4;
2201 if (delta >= 8)
2202 delta -= 16;
2203 if (delta == -8)
2204 {
2205 delta = (base[0] << 8) | base[1];
2206 if (delta >= 0x8000)
2207 delta -= 0x10000;
2208 base += 2;
2209 }
2210 lineno += delta; /* first delta is 0 */
2211
2212 /* Complain if the line table overflows. Could happen
2213 with corrupt binaries. */
2214 if (lt->nitems >= maxlines)
2215 {
2216 complaint (_("guessed size of linetable for %s incorrectly"),
2217 fdr_name (fh));
2218 break;
2219 }
2220 k = add_line (lt, lineno, l, k);
2221 l += count + 1;
2222 }
2223 }
2224 }
2225 \f
2226 static void
2227 function_outside_compilation_unit_complaint (const char *arg1)
2228 {
2229 complaint (_("function `%s' appears to be defined "
2230 "outside of all compilation units"),
2231 arg1);
2232 }
2233
2234 /* Use the STORAGE_CLASS to compute which section the given symbol
2235 belongs to, and then records this new minimal symbol. */
2236
2237 static void
2238 record_minimal_symbol (minimal_symbol_reader &reader,
2239 const char *name, const CORE_ADDR address,
2240 enum minimal_symbol_type ms_type, int storage_class,
2241 struct objfile *objfile)
2242 {
2243 int section;
2244
2245 switch (storage_class)
2246 {
2247 case scText:
2248 section = SECT_OFF_TEXT (objfile);
2249 break;
2250 case scData:
2251 section = SECT_OFF_DATA (objfile);
2252 break;
2253 case scBss:
2254 section = SECT_OFF_BSS (objfile);
2255 break;
2256 case scSData:
2257 section = get_section_index (objfile, ".sdata");
2258 break;
2259 case scSBss:
2260 section = get_section_index (objfile, ".sbss");
2261 break;
2262 case scRData:
2263 section = get_section_index (objfile, ".rdata");
2264 break;
2265 case scInit:
2266 section = get_section_index (objfile, ".init");
2267 break;
2268 case scXData:
2269 section = get_section_index (objfile, ".xdata");
2270 break;
2271 case scPData:
2272 section = get_section_index (objfile, ".pdata");
2273 break;
2274 case scFini:
2275 section = get_section_index (objfile, ".fini");
2276 break;
2277 case scRConst:
2278 section = get_section_index (objfile, ".rconst");
2279 break;
2280 #ifdef scTlsData
2281 case scTlsData:
2282 section = get_section_index (objfile, ".tlsdata");
2283 break;
2284 #endif
2285 #ifdef scTlsBss
2286 case scTlsBss:
2287 section = get_section_index (objfile, ".tlsbss");
2288 break;
2289 #endif
2290 default:
2291 /* This kind of symbol is not associated to a section. */
2292 section = -1;
2293 }
2294
2295 reader.record_with_info (name, address, ms_type, section);
2296 }
2297
2298 /* Master parsing procedure for first-pass reading of file symbols
2299 into a partial_symtab. */
2300
2301 static void
2302 parse_partial_symbols (minimal_symbol_reader &reader,
2303 struct objfile *objfile)
2304 {
2305 struct gdbarch *gdbarch = get_objfile_arch (objfile);
2306 const bfd_size_type external_sym_size = debug_swap->external_sym_size;
2307 const bfd_size_type external_rfd_size = debug_swap->external_rfd_size;
2308 const bfd_size_type external_ext_size = debug_swap->external_ext_size;
2309 void (*const swap_ext_in) (bfd *, void *, EXTR *) = debug_swap->swap_ext_in;
2310 void (*const swap_sym_in) (bfd *, void *, SYMR *) = debug_swap->swap_sym_in;
2311 void (*const swap_rfd_in) (bfd *, void *, RFDT *) = debug_swap->swap_rfd_in;
2312 int f_idx, s_idx;
2313 HDRR *hdr = &debug_info->symbolic_header;
2314 /* Running pointers */
2315 FDR *fh;
2316 char *ext_out;
2317 char *ext_out_end;
2318 EXTR *ext_in;
2319 EXTR *ext_in_end;
2320 SYMR sh;
2321 struct partial_symtab *pst;
2322 int textlow_not_set = 1;
2323
2324 /* List of current psymtab's include files. */
2325 const char **psymtab_include_list;
2326 int includes_allocated;
2327 int includes_used;
2328 EXTR *extern_tab;
2329 struct pst_map *fdr_to_pst;
2330 /* Index within current psymtab dependency list. */
2331 struct partial_symtab **dependency_list;
2332 int dependencies_used, dependencies_allocated;
2333 char *name;
2334 enum language prev_language;
2335 asection *text_sect;
2336 int relocatable = 0;
2337
2338 /* Irix 5.2 shared libraries have a fh->adr field of zero, but
2339 the shared libraries are prelinked at a high memory address.
2340 We have to adjust the start address of the object file for this case,
2341 by setting it to the start address of the first procedure in the file.
2342 But we should do no adjustments if we are debugging a .o file, where
2343 the text section (and fh->adr) really starts at zero. */
2344 text_sect = bfd_get_section_by_name (cur_bfd, ".text");
2345 if (text_sect != NULL
2346 && (bfd_get_section_flags (cur_bfd, text_sect) & SEC_RELOC))
2347 relocatable = 1;
2348
2349 extern_tab = XOBNEWVEC (&objfile->objfile_obstack, EXTR, hdr->iextMax);
2350
2351 includes_allocated = 30;
2352 includes_used = 0;
2353 psymtab_include_list = (const char **) alloca (includes_allocated *
2354 sizeof (const char *));
2355 next_symbol_text_func = mdebug_next_symbol_text;
2356
2357 dependencies_allocated = 30;
2358 dependencies_used = 0;
2359 dependency_list =
2360 (struct partial_symtab **) alloca (dependencies_allocated *
2361 sizeof (struct partial_symtab *));
2362
2363 set_last_source_file (NULL);
2364
2365 /*
2366 * Big plan:
2367 *
2368 * Only parse the Local and External symbols, and the Relative FDR.
2369 * Fixup enough of the loader symtab to be able to use it.
2370 * Allocate space only for the file's portions we need to
2371 * look at. (XXX)
2372 */
2373
2374 max_gdbinfo = 0;
2375 max_glevel = MIN_GLEVEL;
2376
2377 /* Allocate the map FDR -> PST.
2378 Minor hack: -O3 images might claim some global data belongs
2379 to FDR -1. We`ll go along with that. */
2380 gdb::def_vector<struct pst_map> fdr_to_pst_holder (hdr->ifdMax + 1);
2381 fdr_to_pst = fdr_to_pst_holder.data ();
2382 fdr_to_pst++;
2383 {
2384 struct partial_symtab *new_pst = new_psymtab ("", objfile);
2385
2386 fdr_to_pst[-1].pst = new_pst;
2387 FDR_IDX (new_pst) = -1;
2388 }
2389
2390 /* Allocate the global pending list. */
2391 pending_list = XOBNEWVEC (&objfile->objfile_obstack, mdebug_pending *,
2392 hdr->ifdMax);
2393 memset (pending_list, 0,
2394 hdr->ifdMax * sizeof (struct mdebug_pending *));
2395
2396 /* Pass 0 over external syms: swap them in. */
2397 gdb::def_vector<EXTR> ext_block (hdr->iextMax);
2398
2399 ext_out = (char *) debug_info->external_ext;
2400 ext_out_end = ext_out + hdr->iextMax * external_ext_size;
2401 ext_in = ext_block.data ();
2402 for (; ext_out < ext_out_end; ext_out += external_ext_size, ext_in++)
2403 (*swap_ext_in) (cur_bfd, ext_out, ext_in);
2404
2405 /* Pass 1 over external syms: Presize and partition the list. */
2406 ext_in = ext_block.data ();
2407 ext_in_end = ext_in + hdr->iextMax;
2408 for (; ext_in < ext_in_end; ext_in++)
2409 {
2410 /* See calls to complain below. */
2411 if (ext_in->ifd >= -1
2412 && ext_in->ifd < hdr->ifdMax
2413 && ext_in->asym.iss >= 0
2414 && ext_in->asym.iss < hdr->issExtMax)
2415 fdr_to_pst[ext_in->ifd].n_globals++;
2416 }
2417
2418 /* Pass 1.5 over files: partition out global symbol space. */
2419 s_idx = 0;
2420 for (f_idx = -1; f_idx < hdr->ifdMax; f_idx++)
2421 {
2422 fdr_to_pst[f_idx].globals_offset = s_idx;
2423 s_idx += fdr_to_pst[f_idx].n_globals;
2424 fdr_to_pst[f_idx].n_globals = 0;
2425 }
2426
2427 /* ECOFF in ELF:
2428
2429 For ECOFF in ELF, we skip the creation of the minimal symbols.
2430 The ECOFF symbols should be a subset of the Elf symbols, and the
2431 section information of the elf symbols will be more accurate.
2432 FIXME! What about Irix 5's native linker?
2433
2434 By default, Elf sections which don't exist in ECOFF
2435 get put in ECOFF's absolute section by the gnu linker.
2436 Since absolute sections don't get relocated, we
2437 end up calculating an address different from that of
2438 the symbol's minimal symbol (created earlier from the
2439 Elf symtab).
2440
2441 To fix this, either :
2442 1) don't create the duplicate symbol
2443 (assumes ECOFF symtab is a subset of the ELF symtab;
2444 assumes no side-effects result from ignoring ECOFF symbol)
2445 2) create it, only if lookup for existing symbol in ELF's minimal
2446 symbols fails
2447 (inefficient;
2448 assumes no side-effects result from ignoring ECOFF symbol)
2449 3) create it, but lookup ELF's minimal symbol and use it's section
2450 during relocation, then modify "uniqify" phase to merge and
2451 eliminate the duplicate symbol
2452 (highly inefficient)
2453
2454 I've implemented #1 here...
2455 Skip the creation of the minimal symbols based on the ECOFF
2456 symbol table. */
2457
2458 /* Pass 2 over external syms: fill in external symbols. */
2459 ext_in = ext_block.data ();
2460 ext_in_end = ext_in + hdr->iextMax;
2461 for (; ext_in < ext_in_end; ext_in++)
2462 {
2463 enum minimal_symbol_type ms_type = mst_text;
2464 CORE_ADDR svalue = ext_in->asym.value;
2465
2466 /* The Irix 5 native tools seem to sometimes generate bogus
2467 external symbols. */
2468 if (ext_in->ifd < -1 || ext_in->ifd >= hdr->ifdMax)
2469 {
2470 complaint (_("bad ifd for external symbol: %d (max %ld)"),
2471 ext_in->ifd, hdr->ifdMax);
2472 continue;
2473 }
2474 if (ext_in->asym.iss < 0 || ext_in->asym.iss >= hdr->issExtMax)
2475 {
2476 complaint (_("bad iss for external symbol: %ld (max %ld)"),
2477 ext_in->asym.iss, hdr->issExtMax);
2478 continue;
2479 }
2480
2481 extern_tab[fdr_to_pst[ext_in->ifd].globals_offset
2482 + fdr_to_pst[ext_in->ifd].n_globals++] = *ext_in;
2483
2484
2485 if (SC_IS_UNDEF (ext_in->asym.sc) || ext_in->asym.sc == scNil)
2486 continue;
2487
2488
2489 /* Pass 3 over files, over local syms: fill in static symbols. */
2490 name = debug_info->ssext + ext_in->asym.iss;
2491
2492 /* Process ECOFF Symbol Types and Storage Classes. */
2493 switch (ext_in->asym.st)
2494 {
2495 case stProc:
2496 /* Beginnning of Procedure */
2497 break;
2498 case stStaticProc:
2499 /* Load time only static procs */
2500 ms_type = mst_file_text;
2501 break;
2502 case stGlobal:
2503 /* External symbol */
2504 if (SC_IS_COMMON (ext_in->asym.sc))
2505 {
2506 /* The value of a common symbol is its size, not its address.
2507 Ignore it. */
2508 continue;
2509 }
2510 else if (SC_IS_DATA (ext_in->asym.sc))
2511 {
2512 ms_type = mst_data;
2513 }
2514 else if (SC_IS_BSS (ext_in->asym.sc))
2515 {
2516 ms_type = mst_bss;
2517 }
2518 else if (SC_IS_SBSS (ext_in->asym.sc))
2519 {
2520 ms_type = mst_bss;
2521 }
2522 else
2523 ms_type = mst_abs;
2524 break;
2525 case stLabel:
2526 /* Label */
2527
2528 /* On certain platforms, some extra label symbols can be
2529 generated by the linker. One possible usage for this kind
2530 of symbols is to represent the address of the begining of a
2531 given section. For instance, on Tru64 5.1, the address of
2532 the _ftext label is the start address of the .text section.
2533
2534 The storage class of these symbols is usually directly
2535 related to the section to which the symbol refers. For
2536 instance, on Tru64 5.1, the storage class for the _fdata
2537 label is scData, refering to the .data section.
2538
2539 It is actually possible that the section associated to the
2540 storage class of the label does not exist. On True64 5.1
2541 for instance, the libm.so shared library does not contain
2542 any .data section, although it contains a _fpdata label
2543 which storage class is scData... Since these symbols are
2544 usually useless for the debugger user anyway, we just
2545 discard these symbols. */
2546
2547 if (SC_IS_TEXT (ext_in->asym.sc))
2548 {
2549 if (objfile->sect_index_text == -1)
2550 continue;
2551
2552 ms_type = mst_file_text;
2553 }
2554 else if (SC_IS_DATA (ext_in->asym.sc))
2555 {
2556 if (objfile->sect_index_data == -1)
2557 continue;
2558
2559 ms_type = mst_file_data;
2560 }
2561 else if (SC_IS_BSS (ext_in->asym.sc))
2562 {
2563 if (objfile->sect_index_bss == -1)
2564 continue;
2565
2566 ms_type = mst_file_bss;
2567 }
2568 else if (SC_IS_SBSS (ext_in->asym.sc))
2569 {
2570 const int sbss_sect_index = get_section_index (objfile, ".sbss");
2571
2572 if (sbss_sect_index == -1)
2573 continue;
2574
2575 ms_type = mst_file_bss;
2576 }
2577 else
2578 ms_type = mst_abs;
2579 break;
2580 case stLocal:
2581 case stNil:
2582 /* The alpha has the section start addresses in stLocal symbols
2583 whose name starts with a `.'. Skip those but complain for all
2584 other stLocal symbols.
2585 Irix6 puts the section start addresses in stNil symbols, skip
2586 those too. */
2587 if (name[0] == '.')
2588 continue;
2589 /* Fall through. */
2590 default:
2591 ms_type = mst_unknown;
2592 unknown_ext_complaint (name);
2593 }
2594 if (!ECOFF_IN_ELF (cur_bfd))
2595 record_minimal_symbol (reader, name, svalue, ms_type, ext_in->asym.sc,
2596 objfile);
2597 }
2598
2599 /* Pass 3 over files, over local syms: fill in static symbols. */
2600 for (f_idx = 0; f_idx < hdr->ifdMax; f_idx++)
2601 {
2602 struct partial_symtab *save_pst;
2603 EXTR *ext_ptr;
2604 CORE_ADDR textlow;
2605
2606 cur_fdr = fh = debug_info->fdr + f_idx;
2607
2608 if (fh->csym == 0)
2609 {
2610 fdr_to_pst[f_idx].pst = NULL;
2611 continue;
2612 }
2613
2614 /* Determine the start address for this object file from the
2615 file header and relocate it, except for Irix 5.2 zero fh->adr. */
2616 if (fh->cpd)
2617 textlow = fh->adr;
2618 else
2619 textlow = 0;
2620 pst = start_psymtab_common (objfile,
2621 fdr_name (fh),
2622 textlow);
2623 pst->read_symtab_private = XOBNEW (&objfile->objfile_obstack, symloc);
2624 memset (pst->read_symtab_private, 0, sizeof (struct symloc));
2625
2626 save_pst = pst;
2627 FDR_IDX (pst) = f_idx;
2628 CUR_BFD (pst) = cur_bfd;
2629 DEBUG_SWAP (pst) = debug_swap;
2630 DEBUG_INFO (pst) = debug_info;
2631 PENDING_LIST (pst) = pending_list;
2632
2633 /* The way to turn this into a symtab is to call... */
2634 pst->read_symtab = mdebug_read_symtab;
2635
2636 /* Set up language for the pst.
2637 The language from the FDR is used if it is unambigious (e.g. cfront
2638 with native cc and g++ will set the language to C).
2639 Otherwise we have to deduce the language from the filename.
2640 Native ecoff has every header file in a separate FDR, so
2641 deduce_language_from_filename will return language_unknown for
2642 a header file, which is not what we want.
2643 But the FDRs for the header files are after the FDR for the source
2644 file, so we can assign the language of the source file to the
2645 following header files. Then we save the language in the private
2646 pst data so that we can reuse it when building symtabs. */
2647 prev_language = psymtab_language;
2648
2649 switch (fh->lang)
2650 {
2651 case langCplusplusV2:
2652 psymtab_language = language_cplus;
2653 break;
2654 default:
2655 psymtab_language = deduce_language_from_filename (fdr_name (fh));
2656 break;
2657 }
2658 if (psymtab_language == language_unknown)
2659 psymtab_language = prev_language;
2660 PST_PRIVATE (pst)->pst_language = psymtab_language;
2661
2662 pst->set_text_high (pst->raw_text_low ());
2663
2664 /* For stabs-in-ecoff files, the second symbol must be @stab.
2665 This symbol is emitted by mips-tfile to signal that the
2666 current object file uses encapsulated stabs instead of mips
2667 ecoff for local symbols. (It is the second symbol because
2668 the first symbol is the stFile used to signal the start of a
2669 file). */
2670 processing_gcc_compilation = 0;
2671 if (fh->csym >= 2)
2672 {
2673 (*swap_sym_in) (cur_bfd,
2674 ((char *) debug_info->external_sym
2675 + (fh->isymBase + 1) * external_sym_size),
2676 &sh);
2677 if (strcmp (debug_info->ss + fh->issBase + sh.iss,
2678 stabs_symbol) == 0)
2679 processing_gcc_compilation = 2;
2680 }
2681
2682 if (processing_gcc_compilation != 0)
2683 {
2684 for (cur_sdx = 2; cur_sdx < fh->csym; cur_sdx++)
2685 {
2686 int type_code;
2687 const char *namestring;
2688
2689 (*swap_sym_in) (cur_bfd,
2690 (((char *) debug_info->external_sym)
2691 + (fh->isymBase + cur_sdx) * external_sym_size),
2692 &sh);
2693 type_code = ECOFF_UNMARK_STAB (sh.index);
2694 if (!ECOFF_IS_STAB (&sh))
2695 {
2696 if (sh.st == stProc || sh.st == stStaticProc)
2697 {
2698 CORE_ADDR procaddr;
2699 long isym;
2700
2701 if (sh.st == stStaticProc)
2702 {
2703 namestring = debug_info->ss + fh->issBase + sh.iss;
2704 record_minimal_symbol (reader, namestring, sh.value,
2705 mst_file_text, sh.sc,
2706 objfile);
2707 }
2708 procaddr = sh.value;
2709
2710 isym = AUX_GET_ISYM (fh->fBigendian,
2711 (debug_info->external_aux
2712 + fh->iauxBase
2713 + sh.index));
2714 (*swap_sym_in) (cur_bfd,
2715 ((char *) debug_info->external_sym
2716 + ((fh->isymBase + isym - 1)
2717 * external_sym_size)),
2718 &sh);
2719 if (sh.st == stEnd)
2720 {
2721 CORE_ADDR high = procaddr + sh.value;
2722
2723 /* Kludge for Irix 5.2 zero fh->adr. */
2724 if (!relocatable
2725 && (!pst->text_low_valid
2726 || procaddr < pst->raw_text_low ()))
2727 pst->set_text_low (procaddr);
2728 if (high > pst->raw_text_high ())
2729 pst->set_text_high (high);
2730 }
2731 }
2732 else if (sh.st == stStatic)
2733 {
2734 switch (sh.sc)
2735 {
2736 case scUndefined:
2737 case scSUndefined:
2738 case scNil:
2739 case scAbs:
2740 break;
2741
2742 case scData:
2743 case scSData:
2744 case scRData:
2745 case scPData:
2746 case scXData:
2747 namestring = debug_info->ss + fh->issBase + sh.iss;
2748 record_minimal_symbol (reader, namestring, sh.value,
2749 mst_file_data, sh.sc,
2750 objfile);
2751 break;
2752
2753 default:
2754 /* FIXME! Shouldn't this use cases for bss,
2755 then have the default be abs? */
2756 namestring = debug_info->ss + fh->issBase + sh.iss;
2757 record_minimal_symbol (reader, namestring, sh.value,
2758 mst_file_bss, sh.sc,
2759 objfile);
2760 break;
2761 }
2762 }
2763 continue;
2764 }
2765 /* Handle stabs continuation. */
2766 {
2767 char *stabstring = debug_info->ss + fh->issBase + sh.iss;
2768 int len = strlen (stabstring);
2769
2770 while (stabstring[len - 1] == '\\')
2771 {
2772 SYMR sh2;
2773 char *stabstring1 = stabstring;
2774 char *stabstring2;
2775 int len2;
2776
2777 /* Ignore continuation char from 1st string. */
2778 len--;
2779
2780 /* Read next stabstring. */
2781 cur_sdx++;
2782 (*swap_sym_in) (cur_bfd,
2783 (((char *) debug_info->external_sym)
2784 + (fh->isymBase + cur_sdx)
2785 * external_sym_size),
2786 &sh2);
2787 stabstring2 = debug_info->ss + fh->issBase + sh2.iss;
2788 len2 = strlen (stabstring2);
2789
2790 /* Concatinate stabstring2 with stabstring1. */
2791 if (stabstring
2792 && stabstring != debug_info->ss + fh->issBase + sh.iss)
2793 stabstring
2794 = (char *) xrealloc (stabstring, len + len2 + 1);
2795 else
2796 {
2797 stabstring = (char *) xmalloc (len + len2 + 1);
2798 strcpy (stabstring, stabstring1);
2799 }
2800 strcpy (stabstring + len, stabstring2);
2801 len += len2;
2802 }
2803
2804 switch (type_code)
2805 {
2806 const char *p;
2807
2808 /* Standard, external, non-debugger, symbols. */
2809
2810 case N_TEXT | N_EXT:
2811 case N_NBTEXT | N_EXT:
2812 goto record_it;
2813
2814 case N_DATA | N_EXT:
2815 case N_NBDATA | N_EXT:
2816 goto record_it;
2817
2818 case N_BSS:
2819 case N_BSS | N_EXT:
2820 case N_NBBSS | N_EXT:
2821 case N_SETV | N_EXT: /* FIXME, is this in BSS? */
2822 goto record_it;
2823
2824 case N_ABS | N_EXT:
2825 record_it:
2826 continue;
2827
2828 /* Standard, local, non-debugger, symbols. */
2829
2830 case N_NBTEXT:
2831
2832 /* We need to be able to deal with both N_FN or
2833 N_TEXT, because we have no way of knowing
2834 whether the sys-supplied ld or GNU ld was used
2835 to make the executable. Sequents throw in
2836 another wrinkle -- they renumbered N_FN. */
2837
2838 case N_FN:
2839 case N_FN_SEQ:
2840 case N_TEXT:
2841 continue;
2842
2843 case N_DATA:
2844 goto record_it;
2845
2846 case N_UNDF | N_EXT:
2847 continue; /* Just undefined, not COMMON. */
2848
2849 case N_UNDF:
2850 continue;
2851
2852 /* Lots of symbol types we can just ignore. */
2853
2854 case N_ABS:
2855 case N_NBDATA:
2856 case N_NBBSS:
2857 continue;
2858
2859 /* Keep going . . . */
2860
2861 /*
2862 * Special symbol types for GNU
2863 */
2864 case N_INDR:
2865 case N_INDR | N_EXT:
2866 case N_SETA:
2867 case N_SETA | N_EXT:
2868 case N_SETT:
2869 case N_SETT | N_EXT:
2870 case N_SETD:
2871 case N_SETD | N_EXT:
2872 case N_SETB:
2873 case N_SETB | N_EXT:
2874 case N_SETV:
2875 continue;
2876
2877 /*
2878 * Debugger symbols
2879 */
2880
2881 case N_SO:
2882 {
2883 static int prev_so_symnum = -10;
2884 const char *basename;
2885
2886 /* A zero value is probably an indication for the
2887 SunPRO 3.0 compiler. dbx_end_psymtab explicitly tests
2888 for zero, so don't relocate it. */
2889
2890 if (sh.value == 0
2891 && gdbarch_sofun_address_maybe_missing (gdbarch))
2892 textlow_not_set = 1;
2893 else
2894 textlow_not_set = 0;
2895
2896 if (prev_so_symnum != symnum - 1)
2897 { /* Here if prev stab wasn't N_SO. */
2898 if (pst)
2899 {
2900 pst = (struct partial_symtab *) 0;
2901 includes_used = 0;
2902 dependencies_used = 0;
2903 }
2904 }
2905
2906 prev_so_symnum = symnum;
2907
2908 /* End the current partial symtab and start a
2909 new one. */
2910
2911 /* SET_NAMESTRING ();*/
2912 namestring = stabstring;
2913
2914 /* Null name means end of .o file. Don't start a new
2915 one. */
2916 if (*namestring == '\000')
2917 continue;
2918
2919 /* Some compilers (including gcc) emit a pair of
2920 initial N_SOs. The first one is a directory name;
2921 the second the file name. If pst exists, is
2922 empty, and has a filename ending in '/', we assume
2923 the previous N_SO was a directory name. */
2924 basename = lbasename (namestring);
2925 if (basename != namestring && *basename == '\000')
2926 continue; /* Simply ignore directory
2927 name SOs. */
2928
2929 /* Some other compilers (C++ ones in particular) emit
2930 useless SOs for non-existant .c files. We ignore
2931 all subsequent SOs that immediately follow the
2932 first. */
2933
2934 if (!pst)
2935 pst = save_pst;
2936 continue;
2937 }
2938
2939 case N_BINCL:
2940 continue;
2941
2942 case N_SOL:
2943 {
2944 enum language tmp_language;
2945
2946 /* Mark down an include file in the current psymtab. */
2947
2948 /* SET_NAMESTRING (); */
2949 namestring = stabstring;
2950
2951 tmp_language
2952 = deduce_language_from_filename (namestring);
2953
2954 /* Only change the psymtab's language if we've
2955 learned something useful (eg. tmp_language is not
2956 language_unknown). In addition, to match what
2957 start_subfile does, never change from C++ to
2958 C. */
2959 if (tmp_language != language_unknown
2960 && (tmp_language != language_c
2961 || psymtab_language != language_cplus))
2962 psymtab_language = tmp_language;
2963
2964 /* In C++, one may expect the same filename to come
2965 round many times, when code is coming alternately
2966 from the main file and from inline functions in
2967 other files. So I check to see if this is a file
2968 we've seen before -- either the main source file,
2969 or a previously included file.
2970
2971 This seems to be a lot of time to be spending on
2972 N_SOL, but things like "break c-exp.y:435" need to
2973 work (I suppose the psymtab_include_list could be
2974 hashed or put in a binary tree, if profiling shows
2975 this is a major hog). */
2976 if (pst && filename_cmp (namestring, pst->filename) == 0)
2977 continue;
2978
2979 {
2980 int i;
2981
2982 for (i = 0; i < includes_used; i++)
2983 if (filename_cmp (namestring,
2984 psymtab_include_list[i]) == 0)
2985 {
2986 i = -1;
2987 break;
2988 }
2989 if (i == -1)
2990 continue;
2991 }
2992
2993 psymtab_include_list[includes_used++] = namestring;
2994 if (includes_used >= includes_allocated)
2995 {
2996 const char **orig = psymtab_include_list;
2997
2998 psymtab_include_list = (const char **)
2999 alloca ((includes_allocated *= 2) *
3000 sizeof (const char *));
3001 memcpy (psymtab_include_list, orig,
3002 includes_used * sizeof (const char *));
3003 }
3004 continue;
3005 }
3006 case N_LSYM: /* Typedef or automatic variable. */
3007 case N_STSYM: /* Data seg var -- static */
3008 case N_LCSYM: /* BSS " */
3009 case N_ROSYM: /* Read-only data seg var -- static. */
3010 case N_NBSTS: /* Gould nobase. */
3011 case N_NBLCS: /* symbols. */
3012 case N_FUN:
3013 case N_GSYM: /* Global (extern) variable; can be
3014 data or bss (sigh FIXME). */
3015
3016 /* Following may probably be ignored; I'll leave them here
3017 for now (until I do Pascal and Modula 2 extensions). */
3018
3019 case N_PC: /* I may or may not need this; I
3020 suspect not. */
3021 case N_M2C: /* I suspect that I can ignore this
3022 here. */
3023 case N_SCOPE: /* Same. */
3024
3025 /* SET_NAMESTRING (); */
3026 namestring = stabstring;
3027 p = (char *) strchr (namestring, ':');
3028 if (!p)
3029 continue; /* Not a debugging symbol. */
3030
3031
3032
3033 /* Main processing section for debugging symbols which
3034 the initial read through the symbol tables needs to
3035 worry about. If we reach this point, the symbol
3036 which we are considering is definitely one we are
3037 interested in. p must also contain the (valid)
3038 index into the namestring which indicates the
3039 debugging type symbol. */
3040
3041 switch (p[1])
3042 {
3043 case 'S':
3044 if (gdbarch_static_transform_name_p (gdbarch))
3045 namestring = gdbarch_static_transform_name
3046 (gdbarch, namestring);
3047
3048 add_psymbol_to_list (namestring, p - namestring, 1,
3049 VAR_DOMAIN, LOC_STATIC,
3050 SECT_OFF_DATA (objfile),
3051 psymbol_placement::STATIC,
3052 sh.value,
3053 psymtab_language, objfile);
3054 continue;
3055 case 'G':
3056 /* The addresses in these entries are reported
3057 to be wrong. See the code that reads 'G's
3058 for symtabs. */
3059 add_psymbol_to_list (namestring, p - namestring, 1,
3060 VAR_DOMAIN, LOC_STATIC,
3061 SECT_OFF_DATA (objfile),
3062 psymbol_placement::GLOBAL,
3063 sh.value,
3064 psymtab_language, objfile);
3065 continue;
3066
3067 case 'T':
3068 /* When a 'T' entry is defining an anonymous enum, it
3069 may have a name which is the empty string, or a
3070 single space. Since they're not really defining a
3071 symbol, those shouldn't go in the partial symbol
3072 table. We do pick up the elements of such enums at
3073 'check_enum:', below. */
3074 if (p >= namestring + 2
3075 || (p == namestring + 1
3076 && namestring[0] != ' '))
3077 {
3078 add_psymbol_to_list (namestring, p - namestring, 1,
3079 STRUCT_DOMAIN, LOC_TYPEDEF,
3080 -1,
3081 psymbol_placement::STATIC,
3082 0, psymtab_language, objfile);
3083 if (p[2] == 't')
3084 {
3085 /* Also a typedef with the same name. */
3086 add_psymbol_to_list (namestring,
3087 p - namestring, 1,
3088 VAR_DOMAIN, LOC_TYPEDEF,
3089 -1,
3090 psymbol_placement::STATIC,
3091 0, psymtab_language,
3092 objfile);
3093 p += 1;
3094 }
3095 }
3096 goto check_enum;
3097 case 't':
3098 if (p != namestring) /* a name is there, not
3099 just :T... */
3100 {
3101 add_psymbol_to_list (namestring, p - namestring, 1,
3102 VAR_DOMAIN, LOC_TYPEDEF,
3103 -1,
3104 psymbol_placement::STATIC,
3105 0, psymtab_language, objfile);
3106 }
3107 check_enum:
3108 /* If this is an enumerated type, we need to add
3109 all the enum constants to the partial symbol
3110 table. This does not cover enums without names,
3111 e.g. "enum {a, b} c;" in C, but fortunately
3112 those are rare. There is no way for GDB to find
3113 those from the enum type without spending too
3114 much time on it. Thus to solve this problem,
3115 the compiler needs to put out the enum in a
3116 nameless type. GCC2 does this. */
3117
3118 /* We are looking for something of the form
3119 <name> ":" ("t" | "T") [<number> "="] "e"
3120 {<constant> ":" <value> ","} ";". */
3121
3122 /* Skip over the colon and the 't' or 'T'. */
3123 p += 2;
3124 /* This type may be given a number. Also, numbers
3125 can come in pairs like (0,26). Skip over it. */
3126 while ((*p >= '0' && *p <= '9')
3127 || *p == '(' || *p == ',' || *p == ')'
3128 || *p == '=')
3129 p++;
3130
3131 if (*p++ == 'e')
3132 {
3133 /* The aix4 compiler emits extra crud before
3134 the members. */
3135 if (*p == '-')
3136 {
3137 /* Skip over the type (?). */
3138 while (*p != ':')
3139 p++;
3140
3141 /* Skip over the colon. */
3142 p++;
3143 }
3144
3145 /* We have found an enumerated type. */
3146 /* According to comments in read_enum_type
3147 a comma could end it instead of a semicolon.
3148 I don't know where that happens.
3149 Accept either. */
3150 while (*p && *p != ';' && *p != ',')
3151 {
3152 const char *q;
3153
3154 /* Check for and handle cretinous dbx
3155 symbol name continuation! */
3156 if (*p == '\\' || (*p == '?' && p[1] == '\0'))
3157 p = next_symbol_text (objfile);
3158
3159 /* Point to the character after the name
3160 of the enum constant. */
3161 for (q = p; *q && *q != ':'; q++)
3162 ;
3163 /* Note that the value doesn't matter for
3164 enum constants in psymtabs, just in
3165 symtabs. */
3166 add_psymbol_to_list (p, q - p, 1,
3167 VAR_DOMAIN, LOC_CONST,
3168 -1,
3169 psymbol_placement::STATIC,
3170 0, psymtab_language,
3171 objfile);
3172 /* Point past the name. */
3173 p = q;
3174 /* Skip over the value. */
3175 while (*p && *p != ',')
3176 p++;
3177 /* Advance past the comma. */
3178 if (*p)
3179 p++;
3180 }
3181 }
3182 continue;
3183 case 'c':
3184 /* Constant, e.g. from "const" in Pascal. */
3185 add_psymbol_to_list (namestring, p - namestring, 1,
3186 VAR_DOMAIN, LOC_CONST, -1,
3187 psymbol_placement::STATIC,
3188 0, psymtab_language, objfile);
3189 continue;
3190
3191 case 'f':
3192 if (! pst)
3193 {
3194 std::string copy (namestring, p);
3195 function_outside_compilation_unit_complaint
3196 (copy.c_str ());
3197 }
3198 add_psymbol_to_list (namestring, p - namestring, 1,
3199 VAR_DOMAIN, LOC_BLOCK,
3200 SECT_OFF_TEXT (objfile),
3201 psymbol_placement::STATIC,
3202 sh.value,
3203 psymtab_language, objfile);
3204 continue;
3205
3206 /* Global functions were ignored here, but now they
3207 are put into the global psymtab like one would
3208 expect. They're also in the minimal symbol
3209 table. */
3210 case 'F':
3211 if (! pst)
3212 {
3213 std::string copy (namestring, p);
3214 function_outside_compilation_unit_complaint
3215 (copy.c_str ());
3216 }
3217 add_psymbol_to_list (namestring, p - namestring, 1,
3218 VAR_DOMAIN, LOC_BLOCK,
3219 SECT_OFF_TEXT (objfile),
3220 psymbol_placement::GLOBAL,
3221 sh.value,
3222 psymtab_language, objfile);
3223 continue;
3224
3225 /* Two things show up here (hopefully); static
3226 symbols of local scope (static used inside
3227 braces) or extensions of structure symbols. We
3228 can ignore both. */
3229 case 'V':
3230 case '(':
3231 case '0':
3232 case '1':
3233 case '2':
3234 case '3':
3235 case '4':
3236 case '5':
3237 case '6':
3238 case '7':
3239 case '8':
3240 case '9':
3241 case '-':
3242 case '#': /* For symbol identification (used
3243 in live ranges). */
3244 continue;
3245
3246 case ':':
3247 /* It is a C++ nested symbol. We don't need to
3248 record it (I don't think); if we try to look up
3249 foo::bar::baz, then symbols for the symtab
3250 containing foo should get read in, I think. */
3251 /* Someone says sun cc puts out symbols like
3252 /foo/baz/maclib::/usr/local/bin/maclib,
3253 which would get here with a symbol type of ':'. */
3254 continue;
3255
3256 default:
3257 /* Unexpected symbol descriptor. The second and
3258 subsequent stabs of a continued stab can show up
3259 here. The question is whether they ever can
3260 mimic a normal stab--it would be nice if not,
3261 since we certainly don't want to spend the time
3262 searching to the end of every string looking for
3263 a backslash. */
3264
3265 complaint (_("unknown symbol descriptor `%c'"), p[1]);
3266
3267 /* Ignore it; perhaps it is an extension that we don't
3268 know about. */
3269 continue;
3270 }
3271
3272 case N_EXCL:
3273 continue;
3274
3275 case N_ENDM:
3276 /* Solaris 2 end of module, finish current partial
3277 symbol table. dbx_end_psymtab will set the
3278 high text address of PST to the proper value,
3279 which is necessary if a module compiled without
3280 debugging info follows this module. */
3281 if (pst
3282 && gdbarch_sofun_address_maybe_missing (gdbarch))
3283 {
3284 pst = (struct partial_symtab *) 0;
3285 includes_used = 0;
3286 dependencies_used = 0;
3287 }
3288 continue;
3289
3290 case N_RBRAC:
3291 if (sh.value > save_pst->raw_text_high ())
3292 save_pst->set_text_high (sh.value);
3293 continue;
3294 case N_EINCL:
3295 case N_DSLINE:
3296 case N_BSLINE:
3297 case N_SSYM: /* Claim: Structure or union
3298 element. Hopefully, I can
3299 ignore this. */
3300 case N_ENTRY: /* Alternate entry point; can
3301 ignore. */
3302 case N_MAIN: /* Can definitely ignore this. */
3303 case N_CATCH: /* These are GNU C++ extensions. */
3304 case N_EHDECL: /* that can safely be ignored here. */
3305 case N_LENG:
3306 case N_BCOMM:
3307 case N_ECOMM:
3308 case N_ECOML:
3309 case N_FNAME:
3310 case N_SLINE:
3311 case N_RSYM:
3312 case N_PSYM:
3313 case N_LBRAC:
3314 case N_NSYMS: /* Ultrix 4.0: symbol count */
3315 case N_DEFD: /* GNU Modula-2 */
3316 case N_ALIAS: /* SunPro F77: alias name, ignore
3317 for now. */
3318
3319 case N_OBJ: /* Useless types from Solaris. */
3320 case N_OPT:
3321 /* These symbols aren't interesting; don't worry about
3322 them. */
3323
3324 continue;
3325
3326 default:
3327 /* If we haven't found it yet, ignore it. It's
3328 probably some new type we don't know about yet. */
3329 complaint (_("unknown symbol type %s"),
3330 hex_string (type_code)); /* CUR_SYMBOL_TYPE */
3331 continue;
3332 }
3333 if (stabstring
3334 && stabstring != debug_info->ss + fh->issBase + sh.iss)
3335 xfree (stabstring);
3336 }
3337 /* end - Handle continuation */
3338 }
3339 }
3340 else
3341 {
3342 for (cur_sdx = 0; cur_sdx < fh->csym;)
3343 {
3344 char *sym_name;
3345 enum address_class theclass;
3346 CORE_ADDR minsym_value;
3347 short section = -1;
3348
3349 (*swap_sym_in) (cur_bfd,
3350 ((char *) debug_info->external_sym
3351 + ((fh->isymBase + cur_sdx)
3352 * external_sym_size)),
3353 &sh);
3354
3355 if (ECOFF_IS_STAB (&sh))
3356 {
3357 cur_sdx++;
3358 continue;
3359 }
3360
3361 /* Non absolute static symbols go into the minimal table. */
3362 if (SC_IS_UNDEF (sh.sc) || sh.sc == scNil
3363 || (sh.index == indexNil
3364 && (sh.st != stStatic || sh.sc == scAbs)))
3365 {
3366 /* FIXME, premature? */
3367 cur_sdx++;
3368 continue;
3369 }
3370
3371 sym_name = debug_info->ss + fh->issBase + sh.iss;
3372
3373 minsym_value = sh.value;
3374
3375 switch (sh.sc)
3376 {
3377 case scText:
3378 case scRConst:
3379 /* The value of a stEnd symbol is the displacement from the
3380 corresponding start symbol value, do not relocate it. */
3381 if (sh.st != stEnd)
3382 section = SECT_OFF_TEXT (objfile);
3383 break;
3384 case scData:
3385 case scSData:
3386 case scRData:
3387 case scPData:
3388 case scXData:
3389 section = SECT_OFF_DATA (objfile);
3390 break;
3391 case scBss:
3392 case scSBss:
3393 section = SECT_OFF_BSS (objfile);
3394 break;
3395 }
3396
3397 switch (sh.st)
3398 {
3399 CORE_ADDR high;
3400 CORE_ADDR procaddr;
3401 int new_sdx;
3402
3403 case stStaticProc:
3404 reader.record_with_info (sym_name, minsym_value,
3405 mst_file_text,
3406 SECT_OFF_TEXT (objfile));
3407
3408 /* FALLTHROUGH */
3409
3410 case stProc:
3411 /* Ignore all parameter symbol records. */
3412 if (sh.index >= hdr->iauxMax)
3413 {
3414 /* Should not happen, but does when cross-compiling
3415 with the MIPS compiler. FIXME -- pull later. */
3416 index_complaint (sym_name);
3417 new_sdx = cur_sdx + 1; /* Don't skip at all. */
3418 }
3419 else
3420 new_sdx = AUX_GET_ISYM (fh->fBigendian,
3421 (debug_info->external_aux
3422 + fh->iauxBase
3423 + sh.index));
3424
3425 if (new_sdx <= cur_sdx)
3426 {
3427 /* This should not happen either... FIXME. */
3428 complaint (_("bad proc end in aux found from symbol %s"),
3429 sym_name);
3430 new_sdx = cur_sdx + 1; /* Don't skip backward. */
3431 }
3432
3433 /* For stProc symbol records, we need to check the
3434 storage class as well, as only (stProc, scText)
3435 entries represent "real" procedures - See the
3436 Compaq document titled "Object File / Symbol Table
3437 Format Specification" for more information. If the
3438 storage class is not scText, we discard the whole
3439 block of symbol records for this stProc. */
3440 if (sh.st == stProc && sh.sc != scText)
3441 goto skip;
3442
3443 /* Usually there is a local and a global stProc symbol
3444 for a function. This means that the function name
3445 has already been entered into the mimimal symbol table
3446 while processing the global symbols in pass 2 above.
3447 One notable exception is the PROGRAM name from
3448 f77 compiled executables, it is only put out as
3449 local stProc symbol, and a global MAIN__ stProc symbol
3450 points to it. It doesn't matter though, as gdb is
3451 still able to find the PROGRAM name via the partial
3452 symbol table, and the MAIN__ symbol via the minimal
3453 symbol table. */
3454 if (sh.st == stProc)
3455 add_psymbol_to_list (sym_name, strlen (sym_name), 1,
3456 VAR_DOMAIN, LOC_BLOCK,
3457 section,
3458 psymbol_placement::GLOBAL,
3459 sh.value, psymtab_language, objfile);
3460 else
3461 add_psymbol_to_list (sym_name, strlen (sym_name), 1,
3462 VAR_DOMAIN, LOC_BLOCK,
3463 section,
3464 psymbol_placement::STATIC,
3465 sh.value, psymtab_language, objfile);
3466
3467 procaddr = sh.value;
3468
3469 cur_sdx = new_sdx;
3470 (*swap_sym_in) (cur_bfd,
3471 ((char *) debug_info->external_sym
3472 + ((fh->isymBase + cur_sdx - 1)
3473 * external_sym_size)),
3474 &sh);
3475 if (sh.st != stEnd)
3476 continue;
3477
3478 /* Kludge for Irix 5.2 zero fh->adr. */
3479 if (!relocatable
3480 && (!pst->text_low_valid
3481 || procaddr < pst->raw_text_low ()))
3482 pst->set_text_low (procaddr);
3483
3484 high = procaddr + sh.value;
3485 if (high > pst->raw_text_high ())
3486 pst->set_text_high (high);
3487 continue;
3488
3489 case stStatic: /* Variable */
3490 if (SC_IS_DATA (sh.sc))
3491 reader.record_with_info (sym_name, minsym_value,
3492 mst_file_data,
3493 SECT_OFF_DATA (objfile));
3494 else
3495 reader.record_with_info (sym_name, minsym_value,
3496 mst_file_bss,
3497 SECT_OFF_BSS (objfile));
3498 theclass = LOC_STATIC;
3499 break;
3500
3501 case stIndirect: /* Irix5 forward declaration */
3502 /* Skip forward declarations from Irix5 cc. */
3503 goto skip;
3504
3505 case stTypedef: /* Typedef */
3506 /* Skip typedefs for forward declarations and opaque
3507 structs from alpha and mips cc. */
3508 if (sh.iss == 0 || has_opaque_xref (fh, &sh))
3509 goto skip;
3510 theclass = LOC_TYPEDEF;
3511 break;
3512
3513 case stConstant: /* Constant decl */
3514 theclass = LOC_CONST;
3515 break;
3516
3517 case stUnion:
3518 case stStruct:
3519 case stEnum:
3520 case stBlock: /* { }, str, un, enum */
3521 /* Do not create a partial symbol for cc unnamed aggregates
3522 and gcc empty aggregates. */
3523 if ((sh.sc == scInfo
3524 || SC_IS_COMMON (sh.sc))
3525 && sh.iss != 0
3526 && sh.index != cur_sdx + 2)
3527 {
3528 add_psymbol_to_list (sym_name, strlen (sym_name), 1,
3529 STRUCT_DOMAIN, LOC_TYPEDEF, -1,
3530 psymbol_placement::STATIC,
3531 0, psymtab_language, objfile);
3532 }
3533 handle_psymbol_enumerators (objfile, fh, sh.st, sh.value);
3534
3535 /* Skip over the block. */
3536 new_sdx = sh.index;
3537 if (new_sdx <= cur_sdx)
3538 {
3539 /* This happens with the Ultrix kernel. */
3540 complaint (_("bad aux index at block symbol %s"),
3541 sym_name);
3542 new_sdx = cur_sdx + 1; /* Don't skip backward. */
3543 }
3544 cur_sdx = new_sdx;
3545 continue;
3546
3547 case stFile: /* File headers */
3548 case stLabel: /* Labels */
3549 case stEnd: /* Ends of files */
3550 goto skip;
3551
3552 case stLocal: /* Local variables */
3553 /* Normally these are skipped because we skip over
3554 all blocks we see. However, these can occur
3555 as visible symbols in a .h file that contains code. */
3556 goto skip;
3557
3558 default:
3559 /* Both complaints are valid: one gives symbol sym_name,
3560 the other the offending symbol type. */
3561 complaint (_("unknown local symbol %s"),
3562 sym_name);
3563 complaint (_("with type %d"), sh.st);
3564 cur_sdx++;
3565 continue;
3566 }
3567 /* Use this gdb symbol. */
3568 add_psymbol_to_list (sym_name, strlen (sym_name), 1,
3569 VAR_DOMAIN, theclass, section,
3570 psymbol_placement::STATIC,
3571 sh.value, psymtab_language, objfile);
3572 skip:
3573 cur_sdx++; /* Go to next file symbol. */
3574 }
3575
3576 /* Now do enter the external symbols. */
3577 ext_ptr = &extern_tab[fdr_to_pst[f_idx].globals_offset];
3578 cur_sdx = fdr_to_pst[f_idx].n_globals;
3579 PST_PRIVATE (save_pst)->extern_count = cur_sdx;
3580 PST_PRIVATE (save_pst)->extern_tab = ext_ptr;
3581 for (; --cur_sdx >= 0; ext_ptr++)
3582 {
3583 enum address_class theclass;
3584 SYMR *psh;
3585 CORE_ADDR svalue;
3586 short section;
3587
3588 if (ext_ptr->ifd != f_idx)
3589 internal_error (__FILE__, __LINE__,
3590 _("failed internal consistency check"));
3591 psh = &ext_ptr->asym;
3592
3593 /* Do not add undefined symbols to the partial symbol table. */
3594 if (SC_IS_UNDEF (psh->sc) || psh->sc == scNil)
3595 continue;
3596
3597 svalue = psh->value;
3598 switch (psh->sc)
3599 {
3600 default:
3601 case scText:
3602 case scRConst:
3603 section = SECT_OFF_TEXT (objfile);
3604 break;
3605 case scData:
3606 case scSData:
3607 case scRData:
3608 case scPData:
3609 case scXData:
3610 section = SECT_OFF_DATA (objfile);
3611 break;
3612 case scBss:
3613 case scSBss:
3614 section = SECT_OFF_BSS (objfile);
3615 break;
3616 }
3617
3618 switch (psh->st)
3619 {
3620 case stNil:
3621 /* These are generated for static symbols in .o files,
3622 ignore them. */
3623 continue;
3624 case stProc:
3625 case stStaticProc:
3626 /* External procedure symbols have been entered
3627 into the minimal symbol table in pass 2 above.
3628 Ignore them, as parse_external will ignore them too. */
3629 continue;
3630 case stLabel:
3631 theclass = LOC_LABEL;
3632 break;
3633 default:
3634 unknown_ext_complaint (debug_info->ssext + psh->iss);
3635 /* Pretend it's global. */
3636 /* Fall through. */
3637 case stGlobal:
3638 /* Global common symbols are resolved by the runtime loader,
3639 ignore them. */
3640 if (SC_IS_COMMON (psh->sc))
3641 continue;
3642
3643 theclass = LOC_STATIC;
3644 break;
3645 }
3646 char *sym_name = debug_info->ssext + psh->iss;
3647 add_psymbol_to_list (sym_name, strlen (sym_name), 1,
3648 VAR_DOMAIN, theclass,
3649 section,
3650 psymbol_placement::GLOBAL,
3651 svalue, psymtab_language, objfile);
3652 }
3653 }
3654
3655 /* Link pst to FDR. dbx_end_psymtab returns NULL if the psymtab was
3656 empty and put on the free list. */
3657 fdr_to_pst[f_idx].pst
3658 = dbx_end_psymtab (objfile, save_pst,
3659 psymtab_include_list, includes_used,
3660 -1, save_pst->raw_text_high (),
3661 dependency_list, dependencies_used,
3662 textlow_not_set);
3663 includes_used = 0;
3664 dependencies_used = 0;
3665
3666 /* The objfile has its functions reordered if this partial symbol
3667 table overlaps any other partial symbol table.
3668 We cannot assume a reordered objfile if a partial symbol table
3669 is contained within another partial symbol table, as partial symbol
3670 tables for include files with executable code are contained
3671 within the partial symbol table for the including source file,
3672 and we do not want to flag the objfile reordered for these cases.
3673
3674 This strategy works well for Irix-5.2 shared libraries, but we
3675 might have to use a more elaborate (and slower) algorithm for
3676 other cases. */
3677 save_pst = fdr_to_pst[f_idx].pst;
3678 if (save_pst != NULL
3679 && save_pst->text_low_valid
3680 && !(objfile->flags & OBJF_REORDERED))
3681 {
3682 for (partial_symtab *iter : objfile_psymtabs (objfile))
3683 {
3684 if (save_pst != iter
3685 && save_pst->raw_text_low () >= iter->raw_text_low ()
3686 && save_pst->raw_text_low () < iter->raw_text_high ()
3687 && save_pst->raw_text_high () > iter->raw_text_high ())
3688 {
3689 objfile->flags |= OBJF_REORDERED;
3690 break;
3691 }
3692 }
3693 }
3694 }
3695
3696 /* Now scan the FDRs for dependencies. */
3697 for (f_idx = 0; f_idx < hdr->ifdMax; f_idx++)
3698 {
3699 fh = f_idx + debug_info->fdr;
3700 pst = fdr_to_pst[f_idx].pst;
3701
3702 if (pst == (struct partial_symtab *) NULL)
3703 continue;
3704
3705 /* This should catch stabs-in-ecoff. */
3706 if (fh->crfd <= 1)
3707 continue;
3708
3709 /* Skip the first file indirect entry as it is a self dependency for
3710 source files or a reverse .h -> .c dependency for header files. */
3711 pst->number_of_dependencies = 0;
3712 pst->dependencies
3713 = objfile->partial_symtabs->allocate_dependencies (fh->crfd - 1);
3714 for (s_idx = 1; s_idx < fh->crfd; s_idx++)
3715 {
3716 RFDT rh;
3717
3718 (*swap_rfd_in) (cur_bfd,
3719 ((char *) debug_info->external_rfd
3720 + (fh->rfdBase + s_idx) * external_rfd_size),
3721 &rh);
3722 if (rh < 0 || rh >= hdr->ifdMax)
3723 {
3724 complaint (_("bad file number %ld"), rh);
3725 continue;
3726 }
3727
3728 /* Skip self dependencies of header files. */
3729 if (rh == f_idx)
3730 continue;
3731
3732 /* Do not add to dependeny list if psymtab was empty. */
3733 if (fdr_to_pst[rh].pst == (struct partial_symtab *) NULL)
3734 continue;
3735 pst->dependencies[pst->number_of_dependencies++]
3736 = fdr_to_pst[rh].pst;
3737 }
3738 }
3739
3740 /* Remove the dummy psymtab created for -O3 images above, if it is
3741 still empty, to enable the detection of stripped executables. */
3742 pst = objfile->partial_symtabs->psymtabs;
3743 if (pst->next == NULL
3744 && pst->number_of_dependencies == 0
3745 && pst->n_global_syms == 0
3746 && pst->n_static_syms == 0)
3747 objfile->partial_symtabs->psymtabs = NULL;
3748 }
3749
3750 /* If the current psymbol has an enumerated type, we need to add
3751 all the enum constants to the partial symbol table. */
3752
3753 static void
3754 handle_psymbol_enumerators (struct objfile *objfile, FDR *fh, int stype,
3755 CORE_ADDR svalue)
3756 {
3757 const bfd_size_type external_sym_size = debug_swap->external_sym_size;
3758 void (*const swap_sym_in) (bfd *, void *, SYMR *) = debug_swap->swap_sym_in;
3759 char *ext_sym = ((char *) debug_info->external_sym
3760 + ((fh->isymBase + cur_sdx + 1) * external_sym_size));
3761 SYMR sh;
3762 TIR tir;
3763
3764 switch (stype)
3765 {
3766 case stEnum:
3767 break;
3768
3769 case stBlock:
3770 /* It is an enumerated type if the next symbol entry is a stMember
3771 and its auxiliary index is indexNil or its auxiliary entry
3772 is a plain btNil or btVoid.
3773 Alpha cc -migrate enums are recognized by a zero index and
3774 a zero symbol value.
3775 DU 4.0 cc enums are recognized by a member type of btEnum without
3776 qualifiers and a zero symbol value. */
3777 (*swap_sym_in) (cur_bfd, ext_sym, &sh);
3778 if (sh.st != stMember)
3779 return;
3780
3781 if (sh.index == indexNil
3782 || (sh.index == 0 && svalue == 0))
3783 break;
3784 (*debug_swap->swap_tir_in) (fh->fBigendian,
3785 &(debug_info->external_aux
3786 + fh->iauxBase + sh.index)->a_ti,
3787 &tir);
3788 if ((tir.bt != btNil
3789 && tir.bt != btVoid
3790 && (tir.bt != btEnum || svalue != 0))
3791 || tir.tq0 != tqNil)
3792 return;
3793 break;
3794
3795 default:
3796 return;
3797 }
3798
3799 for (;;)
3800 {
3801 char *name;
3802
3803 (*swap_sym_in) (cur_bfd, ext_sym, &sh);
3804 if (sh.st != stMember)
3805 break;
3806 name = debug_info->ss + cur_fdr->issBase + sh.iss;
3807
3808 /* Note that the value doesn't matter for enum constants
3809 in psymtabs, just in symtabs. */
3810 add_psymbol_to_list (name, strlen (name), 1,
3811 VAR_DOMAIN, LOC_CONST, -1,
3812 psymbol_placement::STATIC, 0,
3813 psymtab_language, objfile);
3814 ext_sym += external_sym_size;
3815 }
3816 }
3817
3818 /* Get the next symbol. OBJFILE is unused. */
3819
3820 static const char *
3821 mdebug_next_symbol_text (struct objfile *objfile)
3822 {
3823 SYMR sh;
3824
3825 cur_sdx++;
3826 (*debug_swap->swap_sym_in) (cur_bfd,
3827 ((char *) debug_info->external_sym
3828 + ((cur_fdr->isymBase + cur_sdx)
3829 * debug_swap->external_sym_size)),
3830 &sh);
3831 return debug_info->ss + cur_fdr->issBase + sh.iss;
3832 }
3833
3834 /* Ancillary function to psymtab_to_symtab(). Does all the work
3835 for turning the partial symtab PST into a symtab, recurring
3836 first on all dependent psymtabs. The argument FILENAME is
3837 only passed so we can see in debug stack traces what file
3838 is being read.
3839
3840 This function has a split personality, based on whether the
3841 symbol table contains ordinary ecoff symbols, or stabs-in-ecoff.
3842 The flow of control and even the memory allocation differs. FIXME. */
3843
3844 static void
3845 psymtab_to_symtab_1 (struct objfile *objfile,
3846 struct partial_symtab *pst, const char *filename)
3847 {
3848 bfd_size_type external_sym_size;
3849 bfd_size_type external_pdr_size;
3850 void (*swap_sym_in) (bfd *, void *, SYMR *);
3851 void (*swap_pdr_in) (bfd *, void *, PDR *);
3852 int i;
3853 struct compunit_symtab *cust = NULL;
3854 FDR *fh;
3855 struct linetable *lines;
3856 CORE_ADDR lowest_pdr_addr = 0;
3857 int last_symtab_ended = 0;
3858 struct section_offsets *section_offsets = objfile->section_offsets;
3859
3860 if (pst->readin)
3861 return;
3862 pst->readin = 1;
3863
3864 /* Read in all partial symbtabs on which this one is dependent.
3865 NOTE that we do have circular dependencies, sigh. We solved
3866 that by setting pst->readin before this point. */
3867
3868 for (i = 0; i < pst->number_of_dependencies; i++)
3869 if (!pst->dependencies[i]->readin)
3870 {
3871 /* Inform about additional files to be read in. */
3872 if (info_verbose)
3873 {
3874 fputs_filtered (" ", gdb_stdout);
3875 wrap_here ("");
3876 fputs_filtered ("and ", gdb_stdout);
3877 wrap_here ("");
3878 printf_filtered ("%s...",
3879 pst->dependencies[i]->filename);
3880 wrap_here (""); /* Flush output */
3881 gdb_flush (gdb_stdout);
3882 }
3883 /* We only pass the filename for debug purposes. */
3884 psymtab_to_symtab_1 (objfile, pst->dependencies[i],
3885 pst->dependencies[i]->filename);
3886 }
3887
3888 /* Do nothing if this is a dummy psymtab. */
3889
3890 if (pst->n_global_syms == 0 && pst->n_static_syms == 0
3891 && !pst->text_low_valid && !pst->text_high_valid)
3892 return;
3893
3894 /* Now read the symbols for this symtab. */
3895
3896 cur_bfd = CUR_BFD (pst);
3897 debug_swap = DEBUG_SWAP (pst);
3898 debug_info = DEBUG_INFO (pst);
3899 pending_list = PENDING_LIST (pst);
3900 external_sym_size = debug_swap->external_sym_size;
3901 external_pdr_size = debug_swap->external_pdr_size;
3902 swap_sym_in = debug_swap->swap_sym_in;
3903 swap_pdr_in = debug_swap->swap_pdr_in;
3904 mdebugread_objfile = objfile;
3905 cur_fd = FDR_IDX (pst);
3906 fh = ((cur_fd == -1)
3907 ? (FDR *) NULL
3908 : debug_info->fdr + cur_fd);
3909 cur_fdr = fh;
3910
3911 /* See comment in parse_partial_symbols about the @stabs sentinel. */
3912 processing_gcc_compilation = 0;
3913 if (fh != (FDR *) NULL && fh->csym >= 2)
3914 {
3915 SYMR sh;
3916
3917 (*swap_sym_in) (cur_bfd,
3918 ((char *) debug_info->external_sym
3919 + (fh->isymBase + 1) * external_sym_size),
3920 &sh);
3921 if (strcmp (debug_info->ss + fh->issBase + sh.iss,
3922 stabs_symbol) == 0)
3923 {
3924 /* We indicate that this is a GCC compilation so that certain
3925 features will be enabled in stabsread/dbxread. */
3926 processing_gcc_compilation = 2;
3927 }
3928 }
3929
3930 if (processing_gcc_compilation != 0)
3931 {
3932 struct gdbarch *gdbarch = get_objfile_arch (objfile);
3933
3934 /* This symbol table contains stabs-in-ecoff entries. */
3935
3936 /* Parse local symbols first. */
3937
3938 if (fh->csym <= 2) /* FIXME, this blows psymtab->symtab ptr. */
3939 {
3940 mdebugread_objfile = NULL;
3941 return;
3942 }
3943 for (cur_sdx = 2; cur_sdx < fh->csym; cur_sdx++)
3944 {
3945 SYMR sh;
3946 char *name;
3947 CORE_ADDR valu;
3948
3949 (*swap_sym_in) (cur_bfd,
3950 (((char *) debug_info->external_sym)
3951 + (fh->isymBase + cur_sdx) * external_sym_size),
3952 &sh);
3953 name = debug_info->ss + fh->issBase + sh.iss;
3954 valu = sh.value;
3955 /* XXX This is a hack. It will go away! */
3956 if (ECOFF_IS_STAB (&sh) || (name[0] == '#'))
3957 {
3958 int type_code = ECOFF_UNMARK_STAB (sh.index);
3959 enum language language = PST_PRIVATE (pst)->pst_language;
3960
3961 /* We should never get non N_STAB symbols here, but they
3962 should be harmless, so keep process_one_symbol from
3963 complaining about them. */
3964 if (type_code & N_STAB)
3965 {
3966 /* If we found a trailing N_SO with no name, process
3967 it here instead of in process_one_symbol, so we
3968 can keep a handle to its symtab. The symtab
3969 would otherwise be ended twice, once in
3970 process_one_symbol, and once after this loop. */
3971 if (type_code == N_SO
3972 && get_last_source_file ()
3973 && previous_stab_code != (unsigned char) N_SO
3974 && *name == '\000')
3975 {
3976 valu += ANOFFSET (section_offsets,
3977 SECT_OFF_TEXT (objfile));
3978 previous_stab_code = N_SO;
3979 cust = end_symtab (valu, SECT_OFF_TEXT (objfile));
3980 end_stabs ();
3981 last_symtab_ended = 1;
3982 }
3983 else
3984 {
3985 last_symtab_ended = 0;
3986 process_one_symbol (type_code, 0, valu, name,
3987 section_offsets, objfile, language);
3988 }
3989 }
3990 /* Similarly a hack. */
3991 else if (name[0] == '#')
3992 {
3993 process_one_symbol (N_SLINE, 0, valu, name,
3994 section_offsets, objfile, language);
3995 }
3996 if (type_code == N_FUN)
3997 {
3998 /* Make up special symbol to contain
3999 procedure specific info. */
4000 mdebug_extra_func_info *e
4001 = OBSTACK_ZALLOC (&mdebugread_objfile->objfile_obstack,
4002 mdebug_extra_func_info);
4003 struct symbol *s = new_symbol (MDEBUG_EFI_SYMBOL_NAME);
4004
4005 SYMBOL_DOMAIN (s) = LABEL_DOMAIN;
4006 SYMBOL_ACLASS_INDEX (s) = LOC_CONST;
4007 SYMBOL_TYPE (s) = objfile_type (objfile)->builtin_void;
4008 SYMBOL_VALUE_BYTES (s) = (gdb_byte *) e;
4009 e->pdr.framereg = -1;
4010 add_symbol_to_list (s, get_local_symbols ());
4011 }
4012 }
4013 else if (sh.st == stLabel)
4014 {
4015 if (sh.index == indexNil)
4016 {
4017 /* This is what the gcc2_compiled and __gnu_compiled_*
4018 show up as. So don't complain. */
4019 ;
4020 }
4021 else
4022 {
4023 /* Handle encoded stab line number. */
4024 valu += ANOFFSET (section_offsets,
4025 SECT_OFF_TEXT (objfile));
4026 record_line (get_current_subfile (), sh.index,
4027 gdbarch_addr_bits_remove (gdbarch, valu));
4028 }
4029 }
4030 else if (sh.st == stProc || sh.st == stStaticProc
4031 || sh.st == stStatic || sh.st == stEnd)
4032 /* These are generated by gcc-2.x, do not complain. */
4033 ;
4034 else
4035 complaint (_("unknown stabs symbol %s"), name);
4036 }
4037
4038 if (! last_symtab_ended)
4039 {
4040 cust = end_symtab (pst->raw_text_high (), SECT_OFF_TEXT (objfile));
4041 end_stabs ();
4042 }
4043
4044 /* There used to be a call to sort_blocks here, but this should not
4045 be necessary for stabs symtabs. And as sort_blocks modifies the
4046 start address of the GLOBAL_BLOCK to the FIRST_LOCAL_BLOCK,
4047 it did the wrong thing if the first procedure in a file was
4048 generated via asm statements. */
4049
4050 /* Fill in procedure info next. */
4051 if (fh->cpd > 0)
4052 {
4053 char *pdr_ptr;
4054 char *pdr_end;
4055 PDR *pdr_in;
4056 PDR *pdr_in_end;
4057
4058 gdb::def_vector<PDR> pr_block (fh->cpd);
4059
4060 pdr_ptr = ((char *) debug_info->external_pdr
4061 + fh->ipdFirst * external_pdr_size);
4062 pdr_end = pdr_ptr + fh->cpd * external_pdr_size;
4063 pdr_in = pr_block.data ();
4064 for (;
4065 pdr_ptr < pdr_end;
4066 pdr_ptr += external_pdr_size, pdr_in++)
4067 {
4068 (*swap_pdr_in) (cur_bfd, pdr_ptr, pdr_in);
4069
4070 /* Determine lowest PDR address, the PDRs are not always
4071 sorted. */
4072 if (pdr_in == pr_block.data ())
4073 lowest_pdr_addr = pdr_in->adr;
4074 else if (pdr_in->adr < lowest_pdr_addr)
4075 lowest_pdr_addr = pdr_in->adr;
4076 }
4077
4078 pdr_in = pr_block.data ();
4079 pdr_in_end = pdr_in + fh->cpd;
4080 for (; pdr_in < pdr_in_end; pdr_in++)
4081 parse_procedure (pdr_in, cust, pst);
4082 }
4083 }
4084 else
4085 {
4086 /* This symbol table contains ordinary ecoff entries. */
4087
4088 int maxlines, size;
4089 EXTR *ext_ptr;
4090
4091 if (fh == 0)
4092 {
4093 maxlines = 0;
4094 cust = new_symtab ("unknown", 0, objfile);
4095 }
4096 else
4097 {
4098 maxlines = 2 * fh->cline;
4099 cust = new_symtab (pst->filename, maxlines, objfile);
4100
4101 /* The proper language was already determined when building
4102 the psymtab, use it. */
4103 COMPUNIT_FILETABS (cust)->language = PST_PRIVATE (pst)->pst_language;
4104 }
4105
4106 psymtab_language = COMPUNIT_FILETABS (cust)->language;
4107
4108 lines = SYMTAB_LINETABLE (COMPUNIT_FILETABS (cust));
4109
4110 /* Get a new lexical context. */
4111
4112 push_parse_stack ();
4113 top_stack->cur_st = COMPUNIT_FILETABS (cust);
4114 top_stack->cur_block
4115 = BLOCKVECTOR_BLOCK (COMPUNIT_BLOCKVECTOR (cust), STATIC_BLOCK);
4116 BLOCK_START (top_stack->cur_block) = pst->text_low (objfile);
4117 BLOCK_END (top_stack->cur_block) = 0;
4118 top_stack->blocktype = stFile;
4119 top_stack->cur_type = 0;
4120 top_stack->procadr = 0;
4121 top_stack->numargs = 0;
4122 found_ecoff_debugging_info = 0;
4123
4124 if (fh)
4125 {
4126 char *sym_ptr;
4127 char *sym_end;
4128
4129 /* Parse local symbols first. */
4130 sym_ptr = ((char *) debug_info->external_sym
4131 + fh->isymBase * external_sym_size);
4132 sym_end = sym_ptr + fh->csym * external_sym_size;
4133 while (sym_ptr < sym_end)
4134 {
4135 SYMR sh;
4136 int c;
4137
4138 (*swap_sym_in) (cur_bfd, sym_ptr, &sh);
4139 c = parse_symbol (&sh,
4140 debug_info->external_aux + fh->iauxBase,
4141 sym_ptr, fh->fBigendian,
4142 section_offsets, objfile);
4143 sym_ptr += c * external_sym_size;
4144 }
4145
4146 /* Linenumbers. At the end, check if we can save memory.
4147 parse_lines has to look ahead an arbitrary number of PDR
4148 structures, so we swap them all first. */
4149 if (fh->cpd > 0)
4150 {
4151 char *pdr_ptr;
4152 char *pdr_end;
4153 PDR *pdr_in;
4154 PDR *pdr_in_end;
4155
4156 gdb::def_vector<PDR> pr_block (fh->cpd);
4157
4158 pdr_ptr = ((char *) debug_info->external_pdr
4159 + fh->ipdFirst * external_pdr_size);
4160 pdr_end = pdr_ptr + fh->cpd * external_pdr_size;
4161 pdr_in = pr_block.data ();
4162 for (;
4163 pdr_ptr < pdr_end;
4164 pdr_ptr += external_pdr_size, pdr_in++)
4165 {
4166 (*swap_pdr_in) (cur_bfd, pdr_ptr, pdr_in);
4167
4168 /* Determine lowest PDR address, the PDRs are not always
4169 sorted. */
4170 if (pdr_in == pr_block.data ())
4171 lowest_pdr_addr = pdr_in->adr;
4172 else if (pdr_in->adr < lowest_pdr_addr)
4173 lowest_pdr_addr = pdr_in->adr;
4174 }
4175
4176 parse_lines (fh, pr_block.data (), lines, maxlines,
4177 pst->text_low (objfile), lowest_pdr_addr);
4178 if (lines->nitems < fh->cline)
4179 lines = shrink_linetable (lines);
4180
4181 /* Fill in procedure info next. */
4182 pdr_in = pr_block.data ();
4183 pdr_in_end = pdr_in + fh->cpd;
4184 for (; pdr_in < pdr_in_end; pdr_in++)
4185 parse_procedure (pdr_in, NULL, pst);
4186 }
4187 }
4188
4189 size = lines->nitems;
4190 if (size > 1)
4191 --size;
4192 SYMTAB_LINETABLE (COMPUNIT_FILETABS (cust))
4193 = ((struct linetable *)
4194 obstack_copy (&mdebugread_objfile->objfile_obstack,
4195 lines, (sizeof (struct linetable)
4196 + size * sizeof (lines->item))));
4197 xfree (lines);
4198
4199 /* .. and our share of externals.
4200 XXX use the global list to speed up things here. How?
4201 FIXME, Maybe quit once we have found the right number of ext's? */
4202 top_stack->cur_st = COMPUNIT_FILETABS (cust);
4203 top_stack->cur_block
4204 = BLOCKVECTOR_BLOCK (SYMTAB_BLOCKVECTOR (top_stack->cur_st),
4205 GLOBAL_BLOCK);
4206 top_stack->blocktype = stFile;
4207
4208 ext_ptr = PST_PRIVATE (pst)->extern_tab;
4209 for (i = PST_PRIVATE (pst)->extern_count; --i >= 0; ext_ptr++)
4210 parse_external (ext_ptr, fh->fBigendian,
4211 section_offsets, objfile);
4212
4213 /* If there are undefined symbols, tell the user.
4214 The alpha has an undefined symbol for every symbol that is
4215 from a shared library, so tell the user only if verbose is on. */
4216 if (info_verbose && n_undef_symbols)
4217 {
4218 printf_filtered (_("File %s contains %d unresolved references:"),
4219 symtab_to_filename_for_display
4220 (COMPUNIT_FILETABS (cust)),
4221 n_undef_symbols);
4222 printf_filtered ("\n\t%4d variables\n\t%4d "
4223 "procedures\n\t%4d labels\n",
4224 n_undef_vars, n_undef_procs, n_undef_labels);
4225 n_undef_symbols = n_undef_labels = n_undef_vars = n_undef_procs = 0;
4226
4227 }
4228 pop_parse_stack ();
4229
4230 sort_blocks (COMPUNIT_FILETABS (cust));
4231 }
4232
4233 /* Now link the psymtab and the symtab. */
4234 pst->compunit_symtab = cust;
4235
4236 mdebugread_objfile = NULL;
4237 }
4238 \f
4239 /* Ancillary parsing procedures. */
4240
4241 /* Return 1 if the symbol pointed to by SH has a cross reference
4242 to an opaque aggregate type, else 0. */
4243
4244 static int
4245 has_opaque_xref (FDR *fh, SYMR *sh)
4246 {
4247 TIR tir;
4248 union aux_ext *ax;
4249 RNDXR rn[1];
4250 unsigned int rf;
4251
4252 if (sh->index == indexNil)
4253 return 0;
4254
4255 ax = debug_info->external_aux + fh->iauxBase + sh->index;
4256 (*debug_swap->swap_tir_in) (fh->fBigendian, &ax->a_ti, &tir);
4257 if (tir.bt != btStruct && tir.bt != btUnion && tir.bt != btEnum)
4258 return 0;
4259
4260 ax++;
4261 (*debug_swap->swap_rndx_in) (fh->fBigendian, &ax->a_rndx, rn);
4262 if (rn->rfd == 0xfff)
4263 rf = AUX_GET_ISYM (fh->fBigendian, ax + 1);
4264 else
4265 rf = rn->rfd;
4266 if (rf != -1)
4267 return 0;
4268 return 1;
4269 }
4270
4271 /* Lookup the type at relative index RN. Return it in TPP
4272 if found and in any event come up with its name PNAME.
4273 BIGEND says whether aux symbols are big-endian or not (from fh->fBigendian).
4274 Return value says how many aux symbols we ate. */
4275
4276 static int
4277 cross_ref (int fd, union aux_ext *ax, struct type **tpp,
4278 enum type_code type_code,
4279 /* Use to alloc new type if none is found. */
4280 const char **pname, int bigend, const char *sym_name)
4281 {
4282 RNDXR rn[1];
4283 unsigned int rf;
4284 int result = 1;
4285 FDR *fh;
4286 char *esh;
4287 SYMR sh;
4288 int xref_fd;
4289 struct mdebug_pending *pend;
4290
4291 *tpp = NULL;
4292
4293 (*debug_swap->swap_rndx_in) (bigend, &ax->a_rndx, rn);
4294
4295 /* Escape index means 'the next one'. */
4296 if (rn->rfd == 0xfff)
4297 {
4298 result++;
4299 rf = AUX_GET_ISYM (bigend, ax + 1);
4300 }
4301 else
4302 {
4303 rf = rn->rfd;
4304 }
4305
4306 /* mips cc uses a rf of -1 for opaque struct definitions.
4307 Set TYPE_STUB for these types so that check_typedef will
4308 resolve them if the struct gets defined in another compilation unit. */
4309 if (rf == -1)
4310 {
4311 *pname = "<undefined>";
4312 *tpp = init_type (mdebugread_objfile, type_code, 0, NULL);
4313 TYPE_STUB (*tpp) = 1;
4314 return result;
4315 }
4316
4317 /* mips cc uses an escaped rn->index of 0 for struct return types
4318 of procedures that were compiled without -g. These will always remain
4319 undefined. */
4320 if (rn->rfd == 0xfff && rn->index == 0)
4321 {
4322 *pname = "<undefined>";
4323 return result;
4324 }
4325
4326 /* Find the relative file descriptor and the symbol in it. */
4327 fh = get_rfd (fd, rf);
4328 xref_fd = fh - debug_info->fdr;
4329
4330 if (rn->index >= fh->csym)
4331 {
4332 /* File indirect entry is corrupt. */
4333 *pname = "<illegal>";
4334 bad_rfd_entry_complaint (sym_name, xref_fd, rn->index);
4335 return result;
4336 }
4337
4338 /* If we have processed this symbol then we left a forwarding
4339 pointer to the type in the pending list. If not, we`ll put
4340 it in a list of pending types, to be processed later when
4341 the file will be. In any event, we collect the name for the
4342 type here. */
4343
4344 esh = ((char *) debug_info->external_sym
4345 + ((fh->isymBase + rn->index)
4346 * debug_swap->external_sym_size));
4347 (*debug_swap->swap_sym_in) (cur_bfd, esh, &sh);
4348
4349 /* Make sure that this type of cross reference can be handled. */
4350 if ((sh.sc != scInfo
4351 || (sh.st != stBlock && sh.st != stTypedef && sh.st != stIndirect
4352 && sh.st != stStruct && sh.st != stUnion
4353 && sh.st != stEnum))
4354 && (sh.st != stBlock || !SC_IS_COMMON (sh.sc)))
4355 {
4356 /* File indirect entry is corrupt. */
4357 *pname = "<illegal>";
4358 bad_rfd_entry_complaint (sym_name, xref_fd, rn->index);
4359 return result;
4360 }
4361
4362 *pname = debug_info->ss + fh->issBase + sh.iss;
4363
4364 pend = is_pending_symbol (fh, esh);
4365 if (pend)
4366 *tpp = pend->t;
4367 else
4368 {
4369 /* We have not yet seen this type. */
4370
4371 if ((sh.iss == 0 && sh.st == stTypedef) || sh.st == stIndirect)
4372 {
4373 TIR tir;
4374
4375 /* alpha cc puts out a stTypedef with a sh.iss of zero for
4376 two cases:
4377 a) forward declarations of structs/unions/enums which are not
4378 defined in this compilation unit.
4379 For these the type will be void. This is a bad design decision
4380 as cross referencing across compilation units is impossible
4381 due to the missing name.
4382 b) forward declarations of structs/unions/enums/typedefs which
4383 are defined later in this file or in another file in the same
4384 compilation unit. Irix5 cc uses a stIndirect symbol for this.
4385 Simply cross reference those again to get the true type.
4386 The forward references are not entered in the pending list and
4387 in the symbol table. */
4388
4389 (*debug_swap->swap_tir_in) (bigend,
4390 &(debug_info->external_aux
4391 + fh->iauxBase + sh.index)->a_ti,
4392 &tir);
4393 if (tir.tq0 != tqNil)
4394 complaint (_("illegal tq0 in forward typedef for %s"), sym_name);
4395 switch (tir.bt)
4396 {
4397 case btVoid:
4398 *tpp = init_type (mdebugread_objfile, type_code, 0, NULL);
4399 *pname = "<undefined>";
4400 break;
4401
4402 case btStruct:
4403 case btUnion:
4404 case btEnum:
4405 cross_ref (xref_fd,
4406 (debug_info->external_aux
4407 + fh->iauxBase + sh.index + 1),
4408 tpp, type_code, pname,
4409 fh->fBigendian, sym_name);
4410 break;
4411
4412 case btTypedef:
4413 /* Follow a forward typedef. This might recursively
4414 call cross_ref till we get a non typedef'ed type.
4415 FIXME: This is not correct behaviour, but gdb currently
4416 cannot handle typedefs without type copying. Type
4417 copying is impossible as we might have mutual forward
4418 references between two files and the copied type would not
4419 get filled in when we later parse its definition. */
4420 *tpp = parse_type (xref_fd,
4421 debug_info->external_aux + fh->iauxBase,
4422 sh.index,
4423 (int *) NULL,
4424 fh->fBigendian,
4425 debug_info->ss + fh->issBase + sh.iss);
4426 add_pending (fh, esh, *tpp);
4427 break;
4428
4429 default:
4430 complaint (_("illegal bt %d in forward typedef for %s"), tir.bt,
4431 sym_name);
4432 *tpp = init_type (mdebugread_objfile, type_code, 0, NULL);
4433 break;
4434 }
4435 return result;
4436 }
4437 else if (sh.st == stTypedef)
4438 {
4439 /* Parse the type for a normal typedef. This might recursively call
4440 cross_ref till we get a non typedef'ed type.
4441 FIXME: This is not correct behaviour, but gdb currently
4442 cannot handle typedefs without type copying. But type copying is
4443 impossible as we might have mutual forward references between
4444 two files and the copied type would not get filled in when
4445 we later parse its definition. */
4446 *tpp = parse_type (xref_fd,
4447 debug_info->external_aux + fh->iauxBase,
4448 sh.index,
4449 (int *) NULL,
4450 fh->fBigendian,
4451 debug_info->ss + fh->issBase + sh.iss);
4452 }
4453 else
4454 {
4455 /* Cross reference to a struct/union/enum which is defined
4456 in another file in the same compilation unit but that file
4457 has not been parsed yet.
4458 Initialize the type only, it will be filled in when
4459 it's definition is parsed. */
4460 *tpp = init_type (mdebugread_objfile, type_code, 0, NULL);
4461 }
4462 add_pending (fh, esh, *tpp);
4463 }
4464
4465 /* We used one auxent normally, two if we got a "next one" rf. */
4466 return result;
4467 }
4468
4469
4470 /* Quick&dirty lookup procedure, to avoid the MI ones that require
4471 keeping the symtab sorted. */
4472
4473 static struct symbol *
4474 mylookup_symbol (const char *name, const struct block *block,
4475 domain_enum domain, enum address_class theclass)
4476 {
4477 struct block_iterator iter;
4478 int inc;
4479 struct symbol *sym;
4480
4481 inc = name[0];
4482 ALL_BLOCK_SYMBOLS (block, iter, sym)
4483 {
4484 if (SYMBOL_LINKAGE_NAME (sym)[0] == inc
4485 && SYMBOL_DOMAIN (sym) == domain
4486 && SYMBOL_CLASS (sym) == theclass
4487 && strcmp (SYMBOL_LINKAGE_NAME (sym), name) == 0)
4488 return sym;
4489 }
4490
4491 block = BLOCK_SUPERBLOCK (block);
4492 if (block)
4493 return mylookup_symbol (name, block, domain, theclass);
4494 return 0;
4495 }
4496
4497
4498 /* Add a new symbol S to a block B. */
4499
4500 static void
4501 add_symbol (struct symbol *s, struct symtab *symtab, struct block *b)
4502 {
4503 symbol_set_symtab (s, symtab);
4504 dict_add_symbol (BLOCK_DICT (b), s);
4505 }
4506
4507 /* Add a new block B to a symtab S. */
4508
4509 static void
4510 add_block (struct block *b, struct symtab *s)
4511 {
4512 /* Cast away "const", but that's ok because we're building the
4513 symtab and blockvector here. */
4514 struct blockvector *bv = (struct blockvector *) SYMTAB_BLOCKVECTOR (s);
4515
4516 bv = (struct blockvector *) xrealloc ((void *) bv,
4517 (sizeof (struct blockvector)
4518 + BLOCKVECTOR_NBLOCKS (bv)
4519 * sizeof (bv->block)));
4520 if (bv != SYMTAB_BLOCKVECTOR (s))
4521 SYMTAB_BLOCKVECTOR (s) = bv;
4522
4523 BLOCKVECTOR_BLOCK (bv, BLOCKVECTOR_NBLOCKS (bv)++) = b;
4524 }
4525
4526 /* Add a new linenumber entry (LINENO,ADR) to a linevector LT.
4527 MIPS' linenumber encoding might need more than one byte
4528 to describe it, LAST is used to detect these continuation lines.
4529
4530 Combining lines with the same line number seems like a bad idea.
4531 E.g: There could be a line number entry with the same line number after the
4532 prologue and GDB should not ignore it (this is a better way to find
4533 a prologue than mips_skip_prologue).
4534 But due to the compressed line table format there are line number entries
4535 for the same line which are needed to bridge the gap to the next
4536 line number entry. These entries have a bogus address info with them
4537 and we are unable to tell them from intended duplicate line number
4538 entries.
4539 This is another reason why -ggdb debugging format is preferable. */
4540
4541 static int
4542 add_line (struct linetable *lt, int lineno, CORE_ADDR adr, int last)
4543 {
4544 /* DEC c89 sometimes produces zero linenos which confuse gdb.
4545 Change them to something sensible. */
4546 if (lineno == 0)
4547 lineno = 1;
4548 if (last == 0)
4549 last = -2; /* Make sure we record first line. */
4550
4551 if (last == lineno) /* Skip continuation lines. */
4552 return lineno;
4553
4554 lt->item[lt->nitems].line = lineno;
4555 lt->item[lt->nitems++].pc = adr << 2;
4556 return lineno;
4557 }
4558 \f
4559 /* Sorting and reordering procedures. */
4560
4561 /* Blocks with a smaller low bound should come first. */
4562
4563 static int
4564 compare_blocks (const void *arg1, const void *arg2)
4565 {
4566 LONGEST addr_diff;
4567 struct block **b1 = (struct block **) arg1;
4568 struct block **b2 = (struct block **) arg2;
4569
4570 addr_diff = (BLOCK_START ((*b1))) - (BLOCK_START ((*b2)));
4571 if (addr_diff == 0)
4572 return (BLOCK_END ((*b2))) - (BLOCK_END ((*b1)));
4573 return addr_diff;
4574 }
4575
4576 /* Sort the blocks of a symtab S.
4577 Reorder the blocks in the blockvector by code-address,
4578 as required by some MI search routines. */
4579
4580 static void
4581 sort_blocks (struct symtab *s)
4582 {
4583 /* We have to cast away const here, but this is ok because we're
4584 constructing the blockvector in this code. */
4585 struct blockvector *bv = (struct blockvector *) SYMTAB_BLOCKVECTOR (s);
4586
4587 if (BLOCKVECTOR_NBLOCKS (bv) <= FIRST_LOCAL_BLOCK)
4588 {
4589 /* Cosmetic */
4590 if (BLOCK_END (BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK)) == 0)
4591 BLOCK_START (BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK)) = 0;
4592 if (BLOCK_END (BLOCKVECTOR_BLOCK (bv, STATIC_BLOCK)) == 0)
4593 BLOCK_START (BLOCKVECTOR_BLOCK (bv, STATIC_BLOCK)) = 0;
4594 return;
4595 }
4596 /*
4597 * This is very unfortunate: normally all functions are compiled in
4598 * the order they are found, but if the file is compiled -O3 things
4599 * are very different. It would be nice to find a reliable test
4600 * to detect -O3 images in advance.
4601 */
4602 if (BLOCKVECTOR_NBLOCKS (bv) > FIRST_LOCAL_BLOCK + 1)
4603 qsort (&BLOCKVECTOR_BLOCK (bv, FIRST_LOCAL_BLOCK),
4604 BLOCKVECTOR_NBLOCKS (bv) - FIRST_LOCAL_BLOCK,
4605 sizeof (struct block *),
4606 compare_blocks);
4607
4608 {
4609 CORE_ADDR high = 0;
4610 int i, j = BLOCKVECTOR_NBLOCKS (bv);
4611
4612 for (i = FIRST_LOCAL_BLOCK; i < j; i++)
4613 if (high < BLOCK_END (BLOCKVECTOR_BLOCK (bv, i)))
4614 high = BLOCK_END (BLOCKVECTOR_BLOCK (bv, i));
4615 BLOCK_END (BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK)) = high;
4616 }
4617
4618 BLOCK_START (BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK)) =
4619 BLOCK_START (BLOCKVECTOR_BLOCK (bv, FIRST_LOCAL_BLOCK));
4620
4621 BLOCK_START (BLOCKVECTOR_BLOCK (bv, STATIC_BLOCK)) =
4622 BLOCK_START (BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK));
4623 BLOCK_END (BLOCKVECTOR_BLOCK (bv, STATIC_BLOCK)) =
4624 BLOCK_END (BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK));
4625 }
4626 \f
4627
4628 /* Constructor/restructor/destructor procedures. */
4629
4630 /* Allocate a new symtab for NAME. Needs an estimate of how many
4631 linenumbers MAXLINES we'll put in it. */
4632
4633 static struct compunit_symtab *
4634 new_symtab (const char *name, int maxlines, struct objfile *objfile)
4635 {
4636 struct compunit_symtab *cust = allocate_compunit_symtab (objfile, name);
4637 struct symtab *symtab;
4638 struct blockvector *bv;
4639 enum language lang;
4640
4641 add_compunit_symtab_to_objfile (cust);
4642 symtab = allocate_symtab (cust, name);
4643
4644 SYMTAB_LINETABLE (symtab) = new_linetable (maxlines);
4645 lang = compunit_language (cust);
4646
4647 /* All symtabs must have at least two blocks. */
4648 bv = new_bvect (2);
4649 BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK) = new_block (NON_FUNCTION_BLOCK, lang);
4650 BLOCKVECTOR_BLOCK (bv, STATIC_BLOCK) = new_block (NON_FUNCTION_BLOCK, lang);
4651 BLOCK_SUPERBLOCK (BLOCKVECTOR_BLOCK (bv, STATIC_BLOCK)) =
4652 BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK);
4653 COMPUNIT_BLOCKVECTOR (cust) = bv;
4654
4655 COMPUNIT_DEBUGFORMAT (cust) = "ECOFF";
4656 return cust;
4657 }
4658
4659 /* Allocate a new partial_symtab NAME. */
4660
4661 static struct partial_symtab *
4662 new_psymtab (const char *name, struct objfile *objfile)
4663 {
4664 struct partial_symtab *psymtab;
4665
4666 psymtab = allocate_psymtab (name, objfile);
4667
4668 /* Keep a backpointer to the file's symbols. */
4669
4670 psymtab->read_symtab_private
4671 = OBSTACK_ZALLOC (&objfile->objfile_obstack, symloc);
4672 CUR_BFD (psymtab) = cur_bfd;
4673 DEBUG_SWAP (psymtab) = debug_swap;
4674 DEBUG_INFO (psymtab) = debug_info;
4675 PENDING_LIST (psymtab) = pending_list;
4676
4677 /* The way to turn this into a symtab is to call... */
4678 psymtab->read_symtab = mdebug_read_symtab;
4679 return (psymtab);
4680 }
4681
4682
4683 /* Allocate a linetable array of the given SIZE. Since the struct
4684 already includes one item, we subtract one when calculating the
4685 proper size to allocate. */
4686
4687 static struct linetable *
4688 new_linetable (int size)
4689 {
4690 struct linetable *l;
4691
4692 if (size > 1)
4693 --size;
4694 size = size * sizeof (l->item) + sizeof (struct linetable);
4695 l = (struct linetable *) xmalloc (size);
4696 l->nitems = 0;
4697 return l;
4698 }
4699
4700 /* Oops, too big. Shrink it. This was important with the 2.4 linetables,
4701 I am not so sure about the 3.4 ones.
4702
4703 Since the struct linetable already includes one item, we subtract one when
4704 calculating the proper size to allocate. */
4705
4706 static struct linetable *
4707 shrink_linetable (struct linetable *lt)
4708 {
4709 return (struct linetable *) xrealloc ((void *) lt,
4710 (sizeof (struct linetable)
4711 + ((lt->nitems - 1)
4712 * sizeof (lt->item))));
4713 }
4714
4715 /* Allocate and zero a new blockvector of NBLOCKS blocks. */
4716
4717 static struct blockvector *
4718 new_bvect (int nblocks)
4719 {
4720 struct blockvector *bv;
4721 int size;
4722
4723 size = sizeof (struct blockvector) + nblocks * sizeof (struct block *);
4724 bv = (struct blockvector *) xzalloc (size);
4725
4726 BLOCKVECTOR_NBLOCKS (bv) = nblocks;
4727
4728 return bv;
4729 }
4730
4731 /* Allocate and zero a new block of language LANGUAGE, and set its
4732 BLOCK_DICT. If function is non-zero, assume the block is
4733 associated to a function, and make sure that the symbols are stored
4734 linearly; otherwise, store them hashed. */
4735
4736 static struct block *
4737 new_block (enum block_type type, enum language language)
4738 {
4739 /* FIXME: carlton/2003-09-11: This should use allocate_block to
4740 allocate the block. Which, in turn, suggests that the block
4741 should be allocated on an obstack. */
4742 struct block *retval = XCNEW (struct block);
4743
4744 if (type == FUNCTION_BLOCK)
4745 BLOCK_DICT (retval) = dict_create_linear_expandable (language);
4746 else
4747 BLOCK_DICT (retval) = dict_create_hashed_expandable (language);
4748
4749 return retval;
4750 }
4751
4752 /* Create a new symbol with printname NAME. */
4753
4754 static struct symbol *
4755 new_symbol (const char *name)
4756 {
4757 struct symbol *s = allocate_symbol (mdebugread_objfile);
4758
4759 SYMBOL_SET_LANGUAGE (s, psymtab_language,
4760 &mdebugread_objfile->objfile_obstack);
4761 SYMBOL_SET_NAMES (s, name, strlen (name), 1, mdebugread_objfile);
4762 return s;
4763 }
4764
4765 /* Create a new type with printname NAME. */
4766
4767 static struct type *
4768 new_type (char *name)
4769 {
4770 struct type *t;
4771
4772 t = alloc_type (mdebugread_objfile);
4773 TYPE_NAME (t) = name;
4774 INIT_CPLUS_SPECIFIC (t);
4775 return t;
4776 }
4777 \f
4778 /* Read ECOFF debugging information from a BFD section. This is
4779 called from elfread.c. It parses the section into a
4780 ecoff_debug_info struct, and then lets the rest of the file handle
4781 it as normal. */
4782
4783 void
4784 elfmdebug_build_psymtabs (struct objfile *objfile,
4785 const struct ecoff_debug_swap *swap, asection *sec)
4786 {
4787 bfd *abfd = objfile->obfd;
4788 struct ecoff_debug_info *info;
4789
4790 /* FIXME: It's not clear whether we should be getting minimal symbol
4791 information from .mdebug in an ELF file, or whether we will.
4792 Re-initialize the minimal symbol reader in case we do. */
4793
4794 minimal_symbol_reader reader (objfile);
4795
4796 info = XOBNEW (&objfile->objfile_obstack, ecoff_debug_info);
4797
4798 if (!(*swap->read_debug_info) (abfd, sec, info))
4799 error (_("Error reading ECOFF debugging information: %s"),
4800 bfd_errmsg (bfd_get_error ()));
4801
4802 mdebug_build_psymtabs (reader, objfile, swap, info);
4803
4804 reader.install ();
4805 }
4806
4807 void
4808 _initialize_mdebugread (void)
4809 {
4810 basic_type_data = register_objfile_data ();
4811
4812 mdebug_register_index
4813 = register_symbol_register_impl (LOC_REGISTER, &mdebug_register_funcs);
4814 mdebug_regparm_index
4815 = register_symbol_register_impl (LOC_REGPARM_ADDR, &mdebug_register_funcs);
4816 }
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