* coffread.c (coff_sym_fns): Add default_symfile_segments.
[deliverable/binutils-gdb.git] / gdb / dbxread.c
1 /* Read dbx symbol tables and convert to internal format, for GDB.
2 Copyright (C) 1986, 1987, 1988, 1989, 1990, 1991, 1992, 1993, 1994, 1995,
3 1996, 1997, 1998, 1999, 2000, 2001, 2002, 2003, 2004.
4 Free Software Foundation, Inc.
5
6 This file is part of GDB.
7
8 This program is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
10 the Free Software Foundation; either version 2 of the License, or
11 (at your option) any later version.
12
13 This program is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
17
18 You should have received a copy of the GNU General Public License
19 along with this program; if not, write to the Free Software
20 Foundation, Inc., 51 Franklin Street, Fifth Floor,
21 Boston, MA 02110-1301, USA. */
22
23 /* This module provides three functions: dbx_symfile_init,
24 which initializes to read a symbol file; dbx_new_init, which
25 discards existing cached information when all symbols are being
26 discarded; and dbx_symfile_read, which reads a symbol table
27 from a file.
28
29 dbx_symfile_read only does the minimum work necessary for letting the
30 user "name" things symbolically; it does not read the entire symtab.
31 Instead, it reads the external and static symbols and puts them in partial
32 symbol tables. When more extensive information is requested of a
33 file, the corresponding partial symbol table is mutated into a full
34 fledged symbol table by going back and reading the symbols
35 for real. dbx_psymtab_to_symtab() is the function that does this */
36
37 #include "defs.h"
38 #include "gdb_string.h"
39
40 #if defined(__CYGNUSCLIB__)
41 #include <sys/types.h>
42 #include <fcntl.h>
43 #endif
44
45 #include "gdb_obstack.h"
46 #include "gdb_stat.h"
47 #include "symtab.h"
48 #include "breakpoint.h"
49 #include "target.h"
50 #include "gdbcore.h" /* for bfd stuff */
51 #include "libaout.h" /* FIXME Secret internal BFD stuff for a.out */
52 #include "objfiles.h"
53 #include "buildsym.h"
54 #include "stabsread.h"
55 #include "gdb-stabs.h"
56 #include "demangle.h"
57 #include "complaints.h"
58 #include "cp-abi.h"
59
60 #include "gdb_assert.h"
61 #include "gdb_string.h"
62
63 #include "aout/aout64.h"
64 #include "aout/stab_gnu.h" /* We always use GNU stabs, not native, now */
65 \f
66
67 /* We put a pointer to this structure in the read_symtab_private field
68 of the psymtab. */
69
70 struct symloc
71 {
72 /* Offset within the file symbol table of first local symbol for this
73 file. */
74
75 int ldsymoff;
76
77 /* Length (in bytes) of the section of the symbol table devoted to
78 this file's symbols (actually, the section bracketed may contain
79 more than just this file's symbols). If ldsymlen is 0, the only
80 reason for this thing's existence is the dependency list. Nothing
81 else will happen when it is read in. */
82
83 int ldsymlen;
84
85 /* The size of each symbol in the symbol file (in external form). */
86
87 int symbol_size;
88
89 /* Further information needed to locate the symbols if they are in
90 an ELF file. */
91
92 int symbol_offset;
93 int string_offset;
94 int file_string_offset;
95 };
96
97 #define LDSYMOFF(p) (((struct symloc *)((p)->read_symtab_private))->ldsymoff)
98 #define LDSYMLEN(p) (((struct symloc *)((p)->read_symtab_private))->ldsymlen)
99 #define SYMLOC(p) ((struct symloc *)((p)->read_symtab_private))
100 #define SYMBOL_SIZE(p) (SYMLOC(p)->symbol_size)
101 #define SYMBOL_OFFSET(p) (SYMLOC(p)->symbol_offset)
102 #define STRING_OFFSET(p) (SYMLOC(p)->string_offset)
103 #define FILE_STRING_OFFSET(p) (SYMLOC(p)->file_string_offset)
104 \f
105
106 /* Remember what we deduced to be the source language of this psymtab. */
107
108 static enum language psymtab_language = language_unknown;
109
110 /* The BFD for this file -- implicit parameter to next_symbol_text. */
111
112 static bfd *symfile_bfd;
113
114 /* The size of each symbol in the symbol file (in external form).
115 This is set by dbx_symfile_read when building psymtabs, and by
116 dbx_psymtab_to_symtab when building symtabs. */
117
118 static unsigned symbol_size;
119
120 /* This is the offset of the symbol table in the executable file. */
121
122 static unsigned symbol_table_offset;
123
124 /* This is the offset of the string table in the executable file. */
125
126 static unsigned string_table_offset;
127
128 /* For elf+stab executables, the n_strx field is not a simple index
129 into the string table. Instead, each .o file has a base offset in
130 the string table, and the associated symbols contain offsets from
131 this base. The following two variables contain the base offset for
132 the current and next .o files. */
133
134 static unsigned int file_string_table_offset;
135 static unsigned int next_file_string_table_offset;
136
137 /* .o and NLM files contain unrelocated addresses which are based at
138 0. When non-zero, this flag disables some of the special cases for
139 Solaris elf+stab text addresses at location 0. */
140
141 static int symfile_relocatable = 0;
142
143 /* If this is nonzero, N_LBRAC, N_RBRAC, and N_SLINE entries are
144 relative to the function start address. */
145
146 static int block_address_function_relative = 0;
147 \f
148 /* The lowest text address we have yet encountered. This is needed
149 because in an a.out file, there is no header field which tells us
150 what address the program is actually going to be loaded at, so we
151 need to make guesses based on the symbols (which *are* relocated to
152 reflect the address it will be loaded at). */
153
154 static CORE_ADDR lowest_text_address;
155
156 /* Non-zero if there is any line number info in the objfile. Prevents
157 end_psymtab from discarding an otherwise empty psymtab. */
158
159 static int has_line_numbers;
160
161 /* Complaints about the symbols we have encountered. */
162
163 static void
164 unknown_symtype_complaint (const char *arg1)
165 {
166 complaint (&symfile_complaints, _("unknown symbol type %s"), arg1);
167 }
168
169 static void
170 lbrac_mismatch_complaint (int arg1)
171 {
172 complaint (&symfile_complaints,
173 _("N_LBRAC/N_RBRAC symbol mismatch at symtab pos %d"), arg1);
174 }
175
176 static void
177 repeated_header_complaint (const char *arg1, int arg2)
178 {
179 complaint (&symfile_complaints,
180 _("\"repeated\" header file %s not previously seen, at symtab pos %d"),
181 arg1, arg2);
182 }
183
184 /* find_text_range --- find start and end of loadable code sections
185
186 The find_text_range function finds the shortest address range that
187 encloses all sections containing executable code, and stores it in
188 objfile's text_addr and text_size members.
189
190 dbx_symfile_read will use this to finish off the partial symbol
191 table, in some cases. */
192
193 static void
194 find_text_range (bfd * sym_bfd, struct objfile *objfile)
195 {
196 asection *sec;
197 int found_any = 0;
198 CORE_ADDR start = 0;
199 CORE_ADDR end = 0;
200
201 for (sec = sym_bfd->sections; sec; sec = sec->next)
202 if (bfd_get_section_flags (sym_bfd, sec) & SEC_CODE)
203 {
204 CORE_ADDR sec_start = bfd_section_vma (sym_bfd, sec);
205 CORE_ADDR sec_end = sec_start + bfd_section_size (sym_bfd, sec);
206
207 if (found_any)
208 {
209 if (sec_start < start)
210 start = sec_start;
211 if (sec_end > end)
212 end = sec_end;
213 }
214 else
215 {
216 start = sec_start;
217 end = sec_end;
218 }
219
220 found_any = 1;
221 }
222
223 if (!found_any)
224 error (_("Can't find any code sections in symbol file"));
225
226 DBX_TEXT_ADDR (objfile) = start;
227 DBX_TEXT_SIZE (objfile) = end - start;
228 }
229 \f
230
231
232 /* During initial symbol readin, we need to have a structure to keep
233 track of which psymtabs have which bincls in them. This structure
234 is used during readin to setup the list of dependencies within each
235 partial symbol table. */
236
237 struct header_file_location
238 {
239 char *name; /* Name of header file */
240 int instance; /* See above */
241 struct partial_symtab *pst; /* Partial symtab that has the
242 BINCL/EINCL defs for this file */
243 };
244
245 /* The actual list and controling variables */
246 static struct header_file_location *bincl_list, *next_bincl;
247 static int bincls_allocated;
248
249 /* Local function prototypes */
250
251 extern void _initialize_dbxread (void);
252
253 static void read_ofile_symtab (struct partial_symtab *);
254
255 static void dbx_psymtab_to_symtab (struct partial_symtab *);
256
257 static void dbx_psymtab_to_symtab_1 (struct partial_symtab *);
258
259 static void read_dbx_dynamic_symtab (struct objfile *objfile);
260
261 static void read_dbx_symtab (struct objfile *);
262
263 static void free_bincl_list (struct objfile *);
264
265 static struct partial_symtab *find_corresponding_bincl_psymtab (char *, int);
266
267 static void add_bincl_to_list (struct partial_symtab *, char *, int);
268
269 static void init_bincl_list (int, struct objfile *);
270
271 static char *dbx_next_symbol_text (struct objfile *);
272
273 static void fill_symbuf (bfd *);
274
275 static void dbx_symfile_init (struct objfile *);
276
277 static void dbx_new_init (struct objfile *);
278
279 static void dbx_symfile_read (struct objfile *, int);
280
281 static void dbx_symfile_finish (struct objfile *);
282
283 static void record_minimal_symbol (char *, CORE_ADDR, int, struct objfile *);
284
285 static void add_new_header_file (char *, int);
286
287 static void add_old_header_file (char *, int);
288
289 static void add_this_object_header_file (int);
290
291 static struct partial_symtab *start_psymtab (struct objfile *, char *,
292 CORE_ADDR, int,
293 struct partial_symbol **,
294 struct partial_symbol **);
295
296 /* Free up old header file tables */
297
298 void
299 free_header_files (void)
300 {
301 if (this_object_header_files)
302 {
303 xfree (this_object_header_files);
304 this_object_header_files = NULL;
305 }
306 n_allocated_this_object_header_files = 0;
307 }
308
309 /* Allocate new header file tables */
310
311 void
312 init_header_files (void)
313 {
314 n_allocated_this_object_header_files = 10;
315 this_object_header_files = (int *) xmalloc (10 * sizeof (int));
316 }
317
318 /* Add header file number I for this object file
319 at the next successive FILENUM. */
320
321 static void
322 add_this_object_header_file (int i)
323 {
324 if (n_this_object_header_files == n_allocated_this_object_header_files)
325 {
326 n_allocated_this_object_header_files *= 2;
327 this_object_header_files
328 = (int *) xrealloc ((char *) this_object_header_files,
329 n_allocated_this_object_header_files * sizeof (int));
330 }
331
332 this_object_header_files[n_this_object_header_files++] = i;
333 }
334
335 /* Add to this file an "old" header file, one already seen in
336 a previous object file. NAME is the header file's name.
337 INSTANCE is its instance code, to select among multiple
338 symbol tables for the same header file. */
339
340 static void
341 add_old_header_file (char *name, int instance)
342 {
343 struct header_file *p = HEADER_FILES (current_objfile);
344 int i;
345
346 for (i = 0; i < N_HEADER_FILES (current_objfile); i++)
347 if (strcmp (p[i].name, name) == 0 && instance == p[i].instance)
348 {
349 add_this_object_header_file (i);
350 return;
351 }
352 repeated_header_complaint (name, symnum);
353 }
354
355 /* Add to this file a "new" header file: definitions for its types follow.
356 NAME is the header file's name.
357 Most often this happens only once for each distinct header file,
358 but not necessarily. If it happens more than once, INSTANCE has
359 a different value each time, and references to the header file
360 use INSTANCE values to select among them.
361
362 dbx output contains "begin" and "end" markers for each new header file,
363 but at this level we just need to know which files there have been;
364 so we record the file when its "begin" is seen and ignore the "end". */
365
366 static void
367 add_new_header_file (char *name, int instance)
368 {
369 int i;
370 struct header_file *hfile;
371
372 /* Make sure there is room for one more header file. */
373
374 i = N_ALLOCATED_HEADER_FILES (current_objfile);
375
376 if (N_HEADER_FILES (current_objfile) == i)
377 {
378 if (i == 0)
379 {
380 N_ALLOCATED_HEADER_FILES (current_objfile) = 10;
381 HEADER_FILES (current_objfile) = (struct header_file *)
382 xmalloc (10 * sizeof (struct header_file));
383 }
384 else
385 {
386 i *= 2;
387 N_ALLOCATED_HEADER_FILES (current_objfile) = i;
388 HEADER_FILES (current_objfile) = (struct header_file *)
389 xrealloc ((char *) HEADER_FILES (current_objfile),
390 (i * sizeof (struct header_file)));
391 }
392 }
393
394 /* Create an entry for this header file. */
395
396 i = N_HEADER_FILES (current_objfile)++;
397 hfile = HEADER_FILES (current_objfile) + i;
398 hfile->name = savestring (name, strlen (name));
399 hfile->instance = instance;
400 hfile->length = 10;
401 hfile->vector
402 = (struct type **) xmalloc (10 * sizeof (struct type *));
403 memset (hfile->vector, 0, 10 * sizeof (struct type *));
404
405 add_this_object_header_file (i);
406 }
407
408 #if 0
409 static struct type **
410 explicit_lookup_type (int real_filenum, int index)
411 {
412 struct header_file *f = &HEADER_FILES (current_objfile)[real_filenum];
413
414 if (index >= f->length)
415 {
416 f->length *= 2;
417 f->vector = (struct type **)
418 xrealloc (f->vector, f->length * sizeof (struct type *));
419 memset (&f->vector[f->length / 2],
420 '\0', f->length * sizeof (struct type *) / 2);
421 }
422 return &f->vector[index];
423 }
424 #endif
425 \f
426 static void
427 record_minimal_symbol (char *name, CORE_ADDR address, int type,
428 struct objfile *objfile)
429 {
430 enum minimal_symbol_type ms_type;
431 int section;
432 asection *bfd_section;
433
434 switch (type)
435 {
436 case N_TEXT | N_EXT:
437 ms_type = mst_text;
438 section = SECT_OFF_TEXT (objfile);
439 bfd_section = DBX_TEXT_SECTION (objfile);
440 break;
441 case N_DATA | N_EXT:
442 ms_type = mst_data;
443 section = SECT_OFF_DATA (objfile);
444 bfd_section = DBX_DATA_SECTION (objfile);
445 break;
446 case N_BSS | N_EXT:
447 ms_type = mst_bss;
448 section = SECT_OFF_BSS (objfile);
449 bfd_section = DBX_BSS_SECTION (objfile);
450 break;
451 case N_ABS | N_EXT:
452 ms_type = mst_abs;
453 section = -1;
454 bfd_section = NULL;
455 break;
456 #ifdef N_SETV
457 case N_SETV | N_EXT:
458 ms_type = mst_data;
459 section = SECT_OFF_DATA (objfile);
460 bfd_section = DBX_DATA_SECTION (objfile);
461 break;
462 case N_SETV:
463 /* I don't think this type actually exists; since a N_SETV is the result
464 of going over many .o files, it doesn't make sense to have one
465 file local. */
466 ms_type = mst_file_data;
467 section = SECT_OFF_DATA (objfile);
468 bfd_section = DBX_DATA_SECTION (objfile);
469 break;
470 #endif
471 case N_TEXT:
472 case N_NBTEXT:
473 case N_FN:
474 case N_FN_SEQ:
475 ms_type = mst_file_text;
476 section = SECT_OFF_TEXT (objfile);
477 bfd_section = DBX_TEXT_SECTION (objfile);
478 break;
479 case N_DATA:
480 ms_type = mst_file_data;
481
482 /* Check for __DYNAMIC, which is used by Sun shared libraries.
483 Record it as global even if it's local, not global, so
484 lookup_minimal_symbol can find it. We don't check symbol_leading_char
485 because for SunOS4 it always is '_'. */
486 if (name[8] == 'C' && strcmp ("__DYNAMIC", name) == 0)
487 ms_type = mst_data;
488
489 /* Same with virtual function tables, both global and static. */
490 {
491 char *tempstring = name;
492 if (tempstring[0] == bfd_get_symbol_leading_char (objfile->obfd))
493 ++tempstring;
494 if (is_vtable_name (tempstring))
495 ms_type = mst_data;
496 }
497 section = SECT_OFF_DATA (objfile);
498 bfd_section = DBX_DATA_SECTION (objfile);
499 break;
500 case N_BSS:
501 ms_type = mst_file_bss;
502 section = SECT_OFF_BSS (objfile);
503 bfd_section = DBX_BSS_SECTION (objfile);
504 break;
505 default:
506 ms_type = mst_unknown;
507 section = -1;
508 bfd_section = NULL;
509 break;
510 }
511
512 if ((ms_type == mst_file_text || ms_type == mst_text)
513 && address < lowest_text_address)
514 lowest_text_address = address;
515
516 prim_record_minimal_symbol_and_info
517 (name, address, ms_type, NULL, section, bfd_section, objfile);
518 }
519 \f
520 /* Scan and build partial symbols for a symbol file.
521 We have been initialized by a call to dbx_symfile_init, which
522 put all the relevant info into a "struct dbx_symfile_info",
523 hung off the objfile structure.
524
525 MAINLINE is true if we are reading the main symbol
526 table (as opposed to a shared lib or dynamically loaded file). */
527
528 static void
529 dbx_symfile_read (struct objfile *objfile, int mainline)
530 {
531 bfd *sym_bfd;
532 int val;
533 struct cleanup *back_to;
534
535 sym_bfd = objfile->obfd;
536
537 /* .o and .nlm files are relocatables with text, data and bss segs based at
538 0. This flag disables special (Solaris stabs-in-elf only) fixups for
539 symbols with a value of 0. */
540
541 symfile_relocatable = bfd_get_file_flags (sym_bfd) & HAS_RELOC;
542
543 /* This is true for Solaris (and all other systems which put stabs
544 in sections, hopefully, since it would be silly to do things
545 differently from Solaris), and false for SunOS4 and other a.out
546 file formats. */
547 block_address_function_relative =
548 ((0 == strncmp (bfd_get_target (sym_bfd), "elf", 3))
549 || (0 == strncmp (bfd_get_target (sym_bfd), "som", 3))
550 || (0 == strncmp (bfd_get_target (sym_bfd), "coff", 4))
551 || (0 == strncmp (bfd_get_target (sym_bfd), "pe", 2))
552 || (0 == strncmp (bfd_get_target (sym_bfd), "epoc-pe", 7))
553 || (0 == strncmp (bfd_get_target (sym_bfd), "nlm", 3)));
554
555 val = bfd_seek (sym_bfd, DBX_SYMTAB_OFFSET (objfile), SEEK_SET);
556 if (val < 0)
557 perror_with_name (objfile->name);
558
559 /* If we are reinitializing, or if we have never loaded syms yet, init */
560 if (mainline
561 || (objfile->global_psymbols.size == 0
562 && objfile->static_psymbols.size == 0))
563 init_psymbol_list (objfile, DBX_SYMCOUNT (objfile));
564
565 symbol_size = DBX_SYMBOL_SIZE (objfile);
566 symbol_table_offset = DBX_SYMTAB_OFFSET (objfile);
567
568 free_pending_blocks ();
569 back_to = make_cleanup (really_free_pendings, 0);
570
571 init_minimal_symbol_collection ();
572 make_cleanup_discard_minimal_symbols ();
573
574 /* Read stabs data from executable file and define symbols. */
575
576 read_dbx_symtab (objfile);
577
578 /* Add the dynamic symbols. */
579
580 read_dbx_dynamic_symtab (objfile);
581
582 /* Install any minimal symbols that have been collected as the current
583 minimal symbols for this objfile. */
584
585 install_minimal_symbols (objfile);
586
587 do_cleanups (back_to);
588 }
589
590 /* Initialize anything that needs initializing when a completely new
591 symbol file is specified (not just adding some symbols from another
592 file, e.g. a shared library). */
593
594 static void
595 dbx_new_init (struct objfile *ignore)
596 {
597 stabsread_new_init ();
598 buildsym_new_init ();
599 init_header_files ();
600 }
601
602
603 /* dbx_symfile_init ()
604 is the dbx-specific initialization routine for reading symbols.
605 It is passed a struct objfile which contains, among other things,
606 the BFD for the file whose symbols are being read, and a slot for a pointer
607 to "private data" which we fill with goodies.
608
609 We read the string table into malloc'd space and stash a pointer to it.
610
611 Since BFD doesn't know how to read debug symbols in a format-independent
612 way (and may never do so...), we have to do it ourselves. We will never
613 be called unless this is an a.out (or very similar) file.
614 FIXME, there should be a cleaner peephole into the BFD environment here. */
615
616 #define DBX_STRINGTAB_SIZE_SIZE sizeof(long) /* FIXME */
617
618 static void
619 dbx_symfile_init (struct objfile *objfile)
620 {
621 int val;
622 bfd *sym_bfd = objfile->obfd;
623 char *name = bfd_get_filename (sym_bfd);
624 asection *text_sect;
625 unsigned char size_temp[DBX_STRINGTAB_SIZE_SIZE];
626
627 /* Allocate struct to keep track of the symfile */
628 objfile->deprecated_sym_stab_info = (struct dbx_symfile_info *)
629 xmalloc (sizeof (struct dbx_symfile_info));
630 memset (objfile->deprecated_sym_stab_info, 0, sizeof (struct dbx_symfile_info));
631
632 DBX_TEXT_SECTION (objfile) = bfd_get_section_by_name (sym_bfd, ".text");
633 DBX_DATA_SECTION (objfile) = bfd_get_section_by_name (sym_bfd, ".data");
634 DBX_BSS_SECTION (objfile) = bfd_get_section_by_name (sym_bfd, ".bss");
635
636 /* FIXME POKING INSIDE BFD DATA STRUCTURES */
637 #define STRING_TABLE_OFFSET (sym_bfd->origin + obj_str_filepos (sym_bfd))
638 #define SYMBOL_TABLE_OFFSET (sym_bfd->origin + obj_sym_filepos (sym_bfd))
639
640 /* FIXME POKING INSIDE BFD DATA STRUCTURES */
641
642 DBX_SYMFILE_INFO (objfile)->stab_section_info = NULL;
643
644 text_sect = bfd_get_section_by_name (sym_bfd, ".text");
645 if (!text_sect)
646 error (_("Can't find .text section in symbol file"));
647 DBX_TEXT_ADDR (objfile) = bfd_section_vma (sym_bfd, text_sect);
648 DBX_TEXT_SIZE (objfile) = bfd_section_size (sym_bfd, text_sect);
649
650 DBX_SYMBOL_SIZE (objfile) = obj_symbol_entry_size (sym_bfd);
651 DBX_SYMCOUNT (objfile) = bfd_get_symcount (sym_bfd);
652 DBX_SYMTAB_OFFSET (objfile) = SYMBOL_TABLE_OFFSET;
653
654 /* Read the string table and stash it away in the objfile_obstack.
655 When we blow away the objfile the string table goes away as well.
656 Note that gdb used to use the results of attempting to malloc the
657 string table, based on the size it read, as a form of sanity check
658 for botched byte swapping, on the theory that a byte swapped string
659 table size would be so totally bogus that the malloc would fail. Now
660 that we put in on the objfile_obstack, we can't do this since gdb gets
661 a fatal error (out of virtual memory) if the size is bogus. We can
662 however at least check to see if the size is less than the size of
663 the size field itself, or larger than the size of the entire file.
664 Note that all valid string tables have a size greater than zero, since
665 the bytes used to hold the size are included in the count. */
666
667 if (STRING_TABLE_OFFSET == 0)
668 {
669 /* It appears that with the existing bfd code, STRING_TABLE_OFFSET
670 will never be zero, even when there is no string table. This
671 would appear to be a bug in bfd. */
672 DBX_STRINGTAB_SIZE (objfile) = 0;
673 DBX_STRINGTAB (objfile) = NULL;
674 }
675 else
676 {
677 val = bfd_seek (sym_bfd, STRING_TABLE_OFFSET, SEEK_SET);
678 if (val < 0)
679 perror_with_name (name);
680
681 memset (size_temp, 0, sizeof (size_temp));
682 val = bfd_bread (size_temp, sizeof (size_temp), sym_bfd);
683 if (val < 0)
684 {
685 perror_with_name (name);
686 }
687 else if (val == 0)
688 {
689 /* With the existing bfd code, STRING_TABLE_OFFSET will be set to
690 EOF if there is no string table, and attempting to read the size
691 from EOF will read zero bytes. */
692 DBX_STRINGTAB_SIZE (objfile) = 0;
693 DBX_STRINGTAB (objfile) = NULL;
694 }
695 else
696 {
697 /* Read some data that would appear to be the string table size.
698 If there really is a string table, then it is probably the right
699 size. Byteswap if necessary and validate the size. Note that
700 the minimum is DBX_STRINGTAB_SIZE_SIZE. If we just read some
701 random data that happened to be at STRING_TABLE_OFFSET, because
702 bfd can't tell us there is no string table, the sanity checks may
703 or may not catch this. */
704 DBX_STRINGTAB_SIZE (objfile) = bfd_h_get_32 (sym_bfd, size_temp);
705
706 if (DBX_STRINGTAB_SIZE (objfile) < sizeof (size_temp)
707 || DBX_STRINGTAB_SIZE (objfile) > bfd_get_size (sym_bfd))
708 error (_("ridiculous string table size (%d bytes)."),
709 DBX_STRINGTAB_SIZE (objfile));
710
711 DBX_STRINGTAB (objfile) =
712 (char *) obstack_alloc (&objfile->objfile_obstack,
713 DBX_STRINGTAB_SIZE (objfile));
714 OBJSTAT (objfile, sz_strtab += DBX_STRINGTAB_SIZE (objfile));
715
716 /* Now read in the string table in one big gulp. */
717
718 val = bfd_seek (sym_bfd, STRING_TABLE_OFFSET, SEEK_SET);
719 if (val < 0)
720 perror_with_name (name);
721 val = bfd_bread (DBX_STRINGTAB (objfile),
722 DBX_STRINGTAB_SIZE (objfile),
723 sym_bfd);
724 if (val != DBX_STRINGTAB_SIZE (objfile))
725 perror_with_name (name);
726 }
727 }
728 }
729
730 /* Perform any local cleanups required when we are done with a particular
731 objfile. I.E, we are in the process of discarding all symbol information
732 for an objfile, freeing up all memory held for it, and unlinking the
733 objfile struct from the global list of known objfiles. */
734
735 static void
736 dbx_symfile_finish (struct objfile *objfile)
737 {
738 if (objfile->deprecated_sym_stab_info != NULL)
739 {
740 if (HEADER_FILES (objfile) != NULL)
741 {
742 int i = N_HEADER_FILES (objfile);
743 struct header_file *hfiles = HEADER_FILES (objfile);
744
745 while (--i >= 0)
746 {
747 xfree (hfiles[i].name);
748 xfree (hfiles[i].vector);
749 }
750 xfree (hfiles);
751 }
752 xfree (objfile->deprecated_sym_stab_info);
753 }
754 free_header_files ();
755 }
756 \f
757
758 /* Buffer for reading the symbol table entries. */
759 static struct external_nlist symbuf[4096];
760 static int symbuf_idx;
761 static int symbuf_end;
762
763 /* Name of last function encountered. Used in Solaris to approximate
764 object file boundaries. */
765 static char *last_function_name;
766
767 /* The address in memory of the string table of the object file we are
768 reading (which might not be the "main" object file, but might be a
769 shared library or some other dynamically loaded thing). This is
770 set by read_dbx_symtab when building psymtabs, and by
771 read_ofile_symtab when building symtabs, and is used only by
772 next_symbol_text. FIXME: If that is true, we don't need it when
773 building psymtabs, right? */
774 static char *stringtab_global;
775
776 /* These variables are used to control fill_symbuf when the stabs
777 symbols are not contiguous (as may be the case when a COFF file is
778 linked using --split-by-reloc). */
779 static struct stab_section_list *symbuf_sections;
780 static unsigned int symbuf_left;
781 static unsigned int symbuf_read;
782
783 /* This variable stores a global stabs buffer, if we read stabs into
784 memory in one chunk in order to process relocations. */
785 static bfd_byte *stabs_data;
786
787 /* Refill the symbol table input buffer
788 and set the variables that control fetching entries from it.
789 Reports an error if no data available.
790 This function can read past the end of the symbol table
791 (into the string table) but this does no harm. */
792
793 static void
794 fill_symbuf (bfd *sym_bfd)
795 {
796 unsigned int count;
797 int nbytes;
798
799 if (stabs_data)
800 {
801 nbytes = sizeof (symbuf);
802 if (nbytes > symbuf_left)
803 nbytes = symbuf_left;
804 memcpy (symbuf, stabs_data + symbuf_read, nbytes);
805 }
806 else if (symbuf_sections == NULL)
807 {
808 count = sizeof (symbuf);
809 nbytes = bfd_bread (symbuf, count, sym_bfd);
810 }
811 else
812 {
813 if (symbuf_left <= 0)
814 {
815 file_ptr filepos = symbuf_sections->section->filepos;
816 if (bfd_seek (sym_bfd, filepos, SEEK_SET) != 0)
817 perror_with_name (bfd_get_filename (sym_bfd));
818 symbuf_left = bfd_section_size (sym_bfd, symbuf_sections->section);
819 symbol_table_offset = filepos - symbuf_read;
820 symbuf_sections = symbuf_sections->next;
821 }
822
823 count = symbuf_left;
824 if (count > sizeof (symbuf))
825 count = sizeof (symbuf);
826 nbytes = bfd_bread (symbuf, count, sym_bfd);
827 }
828
829 if (nbytes < 0)
830 perror_with_name (bfd_get_filename (sym_bfd));
831 else if (nbytes == 0)
832 error (_("Premature end of file reading symbol table"));
833 symbuf_end = nbytes / symbol_size;
834 symbuf_idx = 0;
835 symbuf_left -= nbytes;
836 symbuf_read += nbytes;
837 }
838
839 static void
840 stabs_seek (int sym_offset)
841 {
842 if (stabs_data)
843 {
844 symbuf_read += sym_offset;
845 symbuf_left -= sym_offset;
846 }
847 else
848 bfd_seek (symfile_bfd, sym_offset, SEEK_CUR);
849 }
850
851 #define INTERNALIZE_SYMBOL(intern, extern, abfd) \
852 { \
853 (intern).n_type = bfd_h_get_8 (abfd, (extern)->e_type); \
854 (intern).n_strx = bfd_h_get_32 (abfd, (extern)->e_strx); \
855 (intern).n_desc = bfd_h_get_16 (abfd, (extern)->e_desc); \
856 if (bfd_get_sign_extend_vma (abfd)) \
857 (intern).n_value = bfd_h_get_signed_32 (abfd, (extern)->e_value); \
858 else \
859 (intern).n_value = bfd_h_get_32 (abfd, (extern)->e_value); \
860 }
861
862 /* Invariant: The symbol pointed to by symbuf_idx is the first one
863 that hasn't been swapped. Swap the symbol at the same time
864 that symbuf_idx is incremented. */
865
866 /* dbx allows the text of a symbol name to be continued into the
867 next symbol name! When such a continuation is encountered
868 (a \ at the end of the text of a name)
869 call this function to get the continuation. */
870
871 static char *
872 dbx_next_symbol_text (struct objfile *objfile)
873 {
874 struct internal_nlist nlist;
875
876 if (symbuf_idx == symbuf_end)
877 fill_symbuf (symfile_bfd);
878
879 symnum++;
880 INTERNALIZE_SYMBOL (nlist, &symbuf[symbuf_idx], symfile_bfd);
881 OBJSTAT (objfile, n_stabs++);
882
883 symbuf_idx++;
884
885 return nlist.n_strx + stringtab_global + file_string_table_offset;
886 }
887 \f
888 /* Initialize the list of bincls to contain none and have some
889 allocated. */
890
891 static void
892 init_bincl_list (int number, struct objfile *objfile)
893 {
894 bincls_allocated = number;
895 next_bincl = bincl_list = (struct header_file_location *)
896 xmalloc (bincls_allocated * sizeof (struct header_file_location));
897 }
898
899 /* Add a bincl to the list. */
900
901 static void
902 add_bincl_to_list (struct partial_symtab *pst, char *name, int instance)
903 {
904 if (next_bincl >= bincl_list + bincls_allocated)
905 {
906 int offset = next_bincl - bincl_list;
907 bincls_allocated *= 2;
908 bincl_list = (struct header_file_location *)
909 xrealloc ((char *) bincl_list,
910 bincls_allocated * sizeof (struct header_file_location));
911 next_bincl = bincl_list + offset;
912 }
913 next_bincl->pst = pst;
914 next_bincl->instance = instance;
915 next_bincl++->name = name;
916 }
917
918 /* Given a name, value pair, find the corresponding
919 bincl in the list. Return the partial symtab associated
920 with that header_file_location. */
921
922 static struct partial_symtab *
923 find_corresponding_bincl_psymtab (char *name, int instance)
924 {
925 struct header_file_location *bincl;
926
927 for (bincl = bincl_list; bincl < next_bincl; bincl++)
928 if (bincl->instance == instance
929 && strcmp (name, bincl->name) == 0)
930 return bincl->pst;
931
932 repeated_header_complaint (name, symnum);
933 return (struct partial_symtab *) 0;
934 }
935
936 /* Free the storage allocated for the bincl list. */
937
938 static void
939 free_bincl_list (struct objfile *objfile)
940 {
941 xfree (bincl_list);
942 bincls_allocated = 0;
943 }
944
945 static void
946 do_free_bincl_list_cleanup (void *objfile)
947 {
948 free_bincl_list (objfile);
949 }
950
951 static struct cleanup *
952 make_cleanup_free_bincl_list (struct objfile *objfile)
953 {
954 return make_cleanup (do_free_bincl_list_cleanup, objfile);
955 }
956
957 /* Set namestring based on nlist. If the string table index is invalid,
958 give a fake name, and print a single error message per symbol file read,
959 rather than abort the symbol reading or flood the user with messages. */
960
961 static char *
962 set_namestring (struct objfile *objfile, struct internal_nlist nlist)
963 {
964 char *namestring;
965
966 if (((unsigned) nlist.n_strx + file_string_table_offset) >=
967 DBX_STRINGTAB_SIZE (objfile))
968 {
969 complaint (&symfile_complaints, _("bad string table offset in symbol %d"),
970 symnum);
971 namestring = "<bad string table offset>";
972 }
973 else
974 namestring = nlist.n_strx + file_string_table_offset +
975 DBX_STRINGTAB (objfile);
976 return namestring;
977 }
978
979 /* Scan a SunOs dynamic symbol table for symbols of interest and
980 add them to the minimal symbol table. */
981
982 static void
983 read_dbx_dynamic_symtab (struct objfile *objfile)
984 {
985 bfd *abfd = objfile->obfd;
986 struct cleanup *back_to;
987 int counter;
988 long dynsym_size;
989 long dynsym_count;
990 asymbol **dynsyms;
991 asymbol **symptr;
992 arelent **relptr;
993 long dynrel_size;
994 long dynrel_count;
995 arelent **dynrels;
996 CORE_ADDR sym_value;
997 char *name;
998
999 /* Check that the symbol file has dynamic symbols that we know about.
1000 bfd_arch_unknown can happen if we are reading a sun3 symbol file
1001 on a sun4 host (and vice versa) and bfd is not configured
1002 --with-target=all. This would trigger an assertion in bfd/sunos.c,
1003 so we ignore the dynamic symbols in this case. */
1004 if (bfd_get_flavour (abfd) != bfd_target_aout_flavour
1005 || (bfd_get_file_flags (abfd) & DYNAMIC) == 0
1006 || bfd_get_arch (abfd) == bfd_arch_unknown)
1007 return;
1008
1009 dynsym_size = bfd_get_dynamic_symtab_upper_bound (abfd);
1010 if (dynsym_size < 0)
1011 return;
1012
1013 dynsyms = (asymbol **) xmalloc (dynsym_size);
1014 back_to = make_cleanup (xfree, dynsyms);
1015
1016 dynsym_count = bfd_canonicalize_dynamic_symtab (abfd, dynsyms);
1017 if (dynsym_count < 0)
1018 {
1019 do_cleanups (back_to);
1020 return;
1021 }
1022
1023 /* Enter dynamic symbols into the minimal symbol table
1024 if this is a stripped executable. */
1025 if (bfd_get_symcount (abfd) <= 0)
1026 {
1027 symptr = dynsyms;
1028 for (counter = 0; counter < dynsym_count; counter++, symptr++)
1029 {
1030 asymbol *sym = *symptr;
1031 asection *sec;
1032 int type;
1033
1034 sec = bfd_get_section (sym);
1035
1036 /* BFD symbols are section relative. */
1037 sym_value = sym->value + sec->vma;
1038
1039 if (bfd_get_section_flags (abfd, sec) & SEC_CODE)
1040 {
1041 sym_value += ANOFFSET (objfile->section_offsets, SECT_OFF_TEXT (objfile));
1042 type = N_TEXT;
1043 }
1044 else if (bfd_get_section_flags (abfd, sec) & SEC_DATA)
1045 {
1046 sym_value += ANOFFSET (objfile->section_offsets, SECT_OFF_DATA (objfile));
1047 type = N_DATA;
1048 }
1049 else if (bfd_get_section_flags (abfd, sec) & SEC_ALLOC)
1050 {
1051 sym_value += ANOFFSET (objfile->section_offsets, SECT_OFF_BSS (objfile));
1052 type = N_BSS;
1053 }
1054 else
1055 continue;
1056
1057 if (sym->flags & BSF_GLOBAL)
1058 type |= N_EXT;
1059
1060 record_minimal_symbol ((char *) bfd_asymbol_name (sym), sym_value,
1061 type, objfile);
1062 }
1063 }
1064
1065 /* Symbols from shared libraries have a dynamic relocation entry
1066 that points to the associated slot in the procedure linkage table.
1067 We make a mininal symbol table entry with type mst_solib_trampoline
1068 at the address in the procedure linkage table. */
1069 dynrel_size = bfd_get_dynamic_reloc_upper_bound (abfd);
1070 if (dynrel_size < 0)
1071 {
1072 do_cleanups (back_to);
1073 return;
1074 }
1075
1076 dynrels = (arelent **) xmalloc (dynrel_size);
1077 make_cleanup (xfree, dynrels);
1078
1079 dynrel_count = bfd_canonicalize_dynamic_reloc (abfd, dynrels, dynsyms);
1080 if (dynrel_count < 0)
1081 {
1082 do_cleanups (back_to);
1083 return;
1084 }
1085
1086 for (counter = 0, relptr = dynrels;
1087 counter < dynrel_count;
1088 counter++, relptr++)
1089 {
1090 arelent *rel = *relptr;
1091 CORE_ADDR address =
1092 rel->address + ANOFFSET (objfile->section_offsets, SECT_OFF_DATA (objfile));
1093
1094 switch (bfd_get_arch (abfd))
1095 {
1096 case bfd_arch_sparc:
1097 if (rel->howto->type != RELOC_JMP_SLOT)
1098 continue;
1099 break;
1100 case bfd_arch_m68k:
1101 /* `16' is the type BFD produces for a jump table relocation. */
1102 if (rel->howto->type != 16)
1103 continue;
1104
1105 /* Adjust address in the jump table to point to
1106 the start of the bsr instruction. */
1107 address -= 2;
1108 break;
1109 default:
1110 continue;
1111 }
1112
1113 name = (char *) bfd_asymbol_name (*rel->sym_ptr_ptr);
1114 prim_record_minimal_symbol (name, address, mst_solib_trampoline,
1115 objfile);
1116 }
1117
1118 do_cleanups (back_to);
1119 }
1120
1121 #ifdef SOFUN_ADDRESS_MAYBE_MISSING
1122 static CORE_ADDR
1123 find_stab_function_addr (char *namestring, char *filename,
1124 struct objfile *objfile)
1125 {
1126 struct minimal_symbol *msym;
1127 char *p;
1128 int n;
1129
1130 p = strchr (namestring, ':');
1131 if (p == NULL)
1132 p = namestring;
1133 n = p - namestring;
1134 p = alloca (n + 2);
1135 strncpy (p, namestring, n);
1136 p[n] = 0;
1137
1138 msym = lookup_minimal_symbol (p, filename, objfile);
1139 if (msym == NULL)
1140 {
1141 /* Sun Fortran appends an underscore to the minimal symbol name,
1142 try again with an appended underscore if the minimal symbol
1143 was not found. */
1144 p[n] = '_';
1145 p[n + 1] = 0;
1146 msym = lookup_minimal_symbol (p, filename, objfile);
1147 }
1148
1149 if (msym == NULL && filename != NULL)
1150 {
1151 /* Try again without the filename. */
1152 p[n] = 0;
1153 msym = lookup_minimal_symbol (p, NULL, objfile);
1154 }
1155 if (msym == NULL && filename != NULL)
1156 {
1157 /* And try again for Sun Fortran, but without the filename. */
1158 p[n] = '_';
1159 p[n + 1] = 0;
1160 msym = lookup_minimal_symbol (p, NULL, objfile);
1161 }
1162
1163 return msym == NULL ? 0 : SYMBOL_VALUE_ADDRESS (msym);
1164 }
1165 #endif /* SOFUN_ADDRESS_MAYBE_MISSING */
1166
1167 static void
1168 function_outside_compilation_unit_complaint (const char *arg1)
1169 {
1170 complaint (&symfile_complaints,
1171 _("function `%s' appears to be defined outside of all compilation units"),
1172 arg1);
1173 }
1174
1175 /* Setup partial_symtab's describing each source file for which
1176 debugging information is available. */
1177
1178 static void
1179 read_dbx_symtab (struct objfile *objfile)
1180 {
1181 struct external_nlist *bufp = 0; /* =0 avoids gcc -Wall glitch */
1182 struct internal_nlist nlist;
1183 CORE_ADDR text_addr;
1184 int text_size;
1185
1186 char *namestring;
1187 int nsl;
1188 int past_first_source_file = 0;
1189 CORE_ADDR last_o_file_start = 0;
1190 CORE_ADDR last_function_start = 0;
1191 struct cleanup *back_to;
1192 bfd *abfd;
1193 int textlow_not_set;
1194 int data_sect_index;
1195
1196 /* Current partial symtab */
1197 struct partial_symtab *pst;
1198
1199 /* List of current psymtab's include files */
1200 char **psymtab_include_list;
1201 int includes_allocated;
1202 int includes_used;
1203
1204 /* Index within current psymtab dependency list */
1205 struct partial_symtab **dependency_list;
1206 int dependencies_used, dependencies_allocated;
1207
1208 text_addr = DBX_TEXT_ADDR (objfile);
1209 text_size = DBX_TEXT_SIZE (objfile);
1210
1211 /* FIXME. We probably want to change stringtab_global rather than add this
1212 while processing every symbol entry. FIXME. */
1213 file_string_table_offset = 0;
1214 next_file_string_table_offset = 0;
1215
1216 stringtab_global = DBX_STRINGTAB (objfile);
1217
1218 pst = (struct partial_symtab *) 0;
1219
1220 includes_allocated = 30;
1221 includes_used = 0;
1222 psymtab_include_list = (char **) alloca (includes_allocated *
1223 sizeof (char *));
1224
1225 dependencies_allocated = 30;
1226 dependencies_used = 0;
1227 dependency_list =
1228 (struct partial_symtab **) alloca (dependencies_allocated *
1229 sizeof (struct partial_symtab *));
1230
1231 /* Init bincl list */
1232 init_bincl_list (20, objfile);
1233 back_to = make_cleanup_free_bincl_list (objfile);
1234
1235 last_source_file = NULL;
1236
1237 lowest_text_address = (CORE_ADDR) -1;
1238
1239 symfile_bfd = objfile->obfd; /* For next_text_symbol */
1240 abfd = objfile->obfd;
1241 symbuf_end = symbuf_idx = 0;
1242 next_symbol_text_func = dbx_next_symbol_text;
1243 textlow_not_set = 1;
1244 has_line_numbers = 0;
1245
1246 /* FIXME: jimb/2003-09-12: We don't apply the right section's offset
1247 to global and static variables. The stab for a global or static
1248 variable doesn't give us any indication of which section it's in,
1249 so we can't tell immediately which offset in
1250 objfile->section_offsets we should apply to the variable's
1251 address.
1252
1253 We could certainly find out which section contains the variable
1254 by looking up the variable's unrelocated address with
1255 find_pc_section, but that would be expensive; this is the
1256 function that constructs the partial symbol tables by examining
1257 every symbol in the entire executable, and it's
1258 performance-critical. So that expense would not be welcome. I'm
1259 not sure what to do about this at the moment.
1260
1261 What we have done for years is to simply assume that the .data
1262 section's offset is appropriate for all global and static
1263 variables. Recently, this was expanded to fall back to the .bss
1264 section's offset if there is no .data section, and then to the
1265 .rodata section's offset. */
1266 data_sect_index = objfile->sect_index_data;
1267 if (data_sect_index == -1)
1268 data_sect_index = SECT_OFF_BSS (objfile);
1269 if (data_sect_index == -1)
1270 data_sect_index = SECT_OFF_RODATA (objfile);
1271
1272 /* If data_sect_index is still -1, that's okay. It's perfectly fine
1273 for the file to have no .data, no .bss, and no .text at all, if
1274 it also has no global or static variables. If it does, we will
1275 get an internal error from an ANOFFSET macro below when we try to
1276 use data_sect_index. */
1277
1278 for (symnum = 0; symnum < DBX_SYMCOUNT (objfile); symnum++)
1279 {
1280 /* Get the symbol for this run and pull out some info */
1281 QUIT; /* allow this to be interruptable */
1282 if (symbuf_idx == symbuf_end)
1283 fill_symbuf (abfd);
1284 bufp = &symbuf[symbuf_idx++];
1285
1286 /*
1287 * Special case to speed up readin.
1288 */
1289 if (bfd_h_get_8 (abfd, bufp->e_type) == N_SLINE)
1290 {
1291 has_line_numbers = 1;
1292 continue;
1293 }
1294
1295 INTERNALIZE_SYMBOL (nlist, bufp, abfd);
1296 OBJSTAT (objfile, n_stabs++);
1297
1298 /* Ok. There is a lot of code duplicated in the rest of this
1299 switch statement (for efficiency reasons). Since I don't
1300 like duplicating code, I will do my penance here, and
1301 describe the code which is duplicated:
1302
1303 *) The assignment to namestring.
1304 *) The call to strchr.
1305 *) The addition of a partial symbol the the two partial
1306 symbol lists. This last is a large section of code, so
1307 I've imbedded it in the following macro.
1308 */
1309
1310 switch (nlist.n_type)
1311 {
1312 char *p;
1313 /*
1314 * Standard, external, non-debugger, symbols
1315 */
1316
1317 case N_TEXT | N_EXT:
1318 case N_NBTEXT | N_EXT:
1319 nlist.n_value += ANOFFSET (objfile->section_offsets, SECT_OFF_TEXT (objfile));
1320 goto record_it;
1321
1322 case N_DATA | N_EXT:
1323 case N_NBDATA | N_EXT:
1324 nlist.n_value += ANOFFSET (objfile->section_offsets, SECT_OFF_DATA (objfile));
1325 goto record_it;
1326
1327 case N_BSS:
1328 case N_BSS | N_EXT:
1329 case N_NBBSS | N_EXT:
1330 case N_SETV | N_EXT: /* FIXME, is this in BSS? */
1331 nlist.n_value += ANOFFSET (objfile->section_offsets, SECT_OFF_BSS (objfile));
1332 goto record_it;
1333
1334 case N_ABS | N_EXT:
1335 record_it:
1336 namestring = set_namestring (objfile, nlist);
1337
1338 bss_ext_symbol:
1339 record_minimal_symbol (namestring, nlist.n_value,
1340 nlist.n_type, objfile); /* Always */
1341 continue;
1342
1343 /* Standard, local, non-debugger, symbols */
1344
1345 case N_NBTEXT:
1346
1347 /* We need to be able to deal with both N_FN or N_TEXT,
1348 because we have no way of knowing whether the sys-supplied ld
1349 or GNU ld was used to make the executable. Sequents throw
1350 in another wrinkle -- they renumbered N_FN. */
1351
1352 case N_FN:
1353 case N_FN_SEQ:
1354 case N_TEXT:
1355 nlist.n_value += ANOFFSET (objfile->section_offsets, SECT_OFF_TEXT (objfile));
1356 namestring = set_namestring (objfile, nlist);
1357
1358 if ((namestring[0] == '-' && namestring[1] == 'l')
1359 || (namestring[(nsl = strlen (namestring)) - 1] == 'o'
1360 && namestring[nsl - 2] == '.'))
1361 {
1362 if (past_first_source_file && pst
1363 /* The gould NP1 uses low values for .o and -l symbols
1364 which are not the address. */
1365 && nlist.n_value >= pst->textlow)
1366 {
1367 end_psymtab (pst, psymtab_include_list, includes_used,
1368 symnum * symbol_size,
1369 nlist.n_value > pst->texthigh
1370 ? nlist.n_value : pst->texthigh,
1371 dependency_list, dependencies_used, textlow_not_set);
1372 pst = (struct partial_symtab *) 0;
1373 includes_used = 0;
1374 dependencies_used = 0;
1375 }
1376 else
1377 past_first_source_file = 1;
1378 last_o_file_start = nlist.n_value;
1379 }
1380 else
1381 goto record_it;
1382 continue;
1383
1384 case N_DATA:
1385 nlist.n_value += ANOFFSET (objfile->section_offsets, SECT_OFF_DATA (objfile));
1386 goto record_it;
1387
1388 case N_UNDF | N_EXT:
1389 if (nlist.n_value != 0)
1390 {
1391 /* This is a "Fortran COMMON" symbol. See if the target
1392 environment knows where it has been relocated to. */
1393
1394 CORE_ADDR reladdr;
1395
1396 namestring = set_namestring (objfile, nlist);
1397 if (target_lookup_symbol (namestring, &reladdr))
1398 {
1399 continue; /* Error in lookup; ignore symbol for now. */
1400 }
1401 nlist.n_type ^= (N_BSS ^ N_UNDF); /* Define it as a bss-symbol */
1402 nlist.n_value = reladdr;
1403 goto bss_ext_symbol;
1404 }
1405 continue; /* Just undefined, not COMMON */
1406
1407 case N_UNDF:
1408 if (processing_acc_compilation && nlist.n_strx == 1)
1409 {
1410 /* Deal with relative offsets in the string table
1411 used in ELF+STAB under Solaris. If we want to use the
1412 n_strx field, which contains the name of the file,
1413 we must adjust file_string_table_offset *before* calling
1414 set_namestring(). */
1415 past_first_source_file = 1;
1416 file_string_table_offset = next_file_string_table_offset;
1417 next_file_string_table_offset =
1418 file_string_table_offset + nlist.n_value;
1419 if (next_file_string_table_offset < file_string_table_offset)
1420 error (_("string table offset backs up at %d"), symnum);
1421 /* FIXME -- replace error() with complaint. */
1422 continue;
1423 }
1424 continue;
1425
1426 /* Lots of symbol types we can just ignore. */
1427
1428 case N_ABS:
1429 case N_NBDATA:
1430 case N_NBBSS:
1431 continue;
1432
1433 /* Keep going . . . */
1434
1435 /*
1436 * Special symbol types for GNU
1437 */
1438 case N_INDR:
1439 case N_INDR | N_EXT:
1440 case N_SETA:
1441 case N_SETA | N_EXT:
1442 case N_SETT:
1443 case N_SETT | N_EXT:
1444 case N_SETD:
1445 case N_SETD | N_EXT:
1446 case N_SETB:
1447 case N_SETB | N_EXT:
1448 case N_SETV:
1449 continue;
1450
1451 /*
1452 * Debugger symbols
1453 */
1454
1455 case N_SO:
1456 {
1457 CORE_ADDR valu;
1458 static int prev_so_symnum = -10;
1459 static int first_so_symnum;
1460 char *p;
1461 static char *dirname_nso;
1462 int prev_textlow_not_set;
1463
1464 valu = nlist.n_value + ANOFFSET (objfile->section_offsets, SECT_OFF_TEXT (objfile));
1465
1466 prev_textlow_not_set = textlow_not_set;
1467
1468 #ifdef SOFUN_ADDRESS_MAYBE_MISSING
1469 /* A zero value is probably an indication for the SunPRO 3.0
1470 compiler. end_psymtab explicitly tests for zero, so
1471 don't relocate it. */
1472
1473 if (nlist.n_value == 0)
1474 {
1475 textlow_not_set = 1;
1476 valu = 0;
1477 }
1478 else
1479 textlow_not_set = 0;
1480 #else
1481 textlow_not_set = 0;
1482 #endif
1483 past_first_source_file = 1;
1484
1485 if (prev_so_symnum != symnum - 1)
1486 { /* Here if prev stab wasn't N_SO */
1487 first_so_symnum = symnum;
1488
1489 if (pst)
1490 {
1491 end_psymtab (pst, psymtab_include_list, includes_used,
1492 symnum * symbol_size,
1493 valu > pst->texthigh ? valu : pst->texthigh,
1494 dependency_list, dependencies_used,
1495 prev_textlow_not_set);
1496 pst = (struct partial_symtab *) 0;
1497 includes_used = 0;
1498 dependencies_used = 0;
1499 }
1500 }
1501
1502 prev_so_symnum = symnum;
1503
1504 /* End the current partial symtab and start a new one */
1505
1506 namestring = set_namestring (objfile, nlist);
1507
1508 /* Null name means end of .o file. Don't start a new one. */
1509 if (*namestring == '\000')
1510 continue;
1511
1512 /* Some compilers (including gcc) emit a pair of initial N_SOs.
1513 The first one is a directory name; the second the file name.
1514 If pst exists, is empty, and has a filename ending in '/',
1515 we assume the previous N_SO was a directory name. */
1516
1517 p = strrchr (namestring, '/');
1518 if (p && *(p + 1) == '\000')
1519 {
1520 /* Save the directory name SOs locally, then save it into
1521 the psymtab when it's created below. */
1522 dirname_nso = namestring;
1523 continue;
1524 }
1525
1526 /* Some other compilers (C++ ones in particular) emit useless
1527 SOs for non-existant .c files. We ignore all subsequent SOs that
1528 immediately follow the first. */
1529
1530 if (!pst)
1531 {
1532 pst = start_psymtab (objfile,
1533 namestring, valu,
1534 first_so_symnum * symbol_size,
1535 objfile->global_psymbols.next,
1536 objfile->static_psymbols.next);
1537 pst->dirname = dirname_nso;
1538 dirname_nso = NULL;
1539 }
1540 continue;
1541 }
1542
1543 case N_BINCL:
1544 {
1545 enum language tmp_language;
1546 /* Add this bincl to the bincl_list for future EXCLs. No
1547 need to save the string; it'll be around until
1548 read_dbx_symtab function returns */
1549
1550 namestring = set_namestring (objfile, nlist);
1551 tmp_language = deduce_language_from_filename (namestring);
1552
1553 /* Only change the psymtab's language if we've learned
1554 something useful (eg. tmp_language is not language_unknown).
1555 In addition, to match what start_subfile does, never change
1556 from C++ to C. */
1557 if (tmp_language != language_unknown
1558 && (tmp_language != language_c
1559 || psymtab_language != language_cplus))
1560 psymtab_language = tmp_language;
1561
1562 if (pst == NULL)
1563 {
1564 /* FIXME: we should not get here without a PST to work on.
1565 Attempt to recover. */
1566 complaint (&symfile_complaints,
1567 _("N_BINCL %s not in entries for any file, at symtab pos %d"),
1568 namestring, symnum);
1569 continue;
1570 }
1571 add_bincl_to_list (pst, namestring, nlist.n_value);
1572
1573 /* Mark down an include file in the current psymtab */
1574
1575 goto record_include_file;
1576 }
1577
1578 case N_SOL:
1579 {
1580 enum language tmp_language;
1581 /* Mark down an include file in the current psymtab */
1582
1583 namestring = set_namestring (objfile, nlist);
1584 tmp_language = deduce_language_from_filename (namestring);
1585
1586 /* Only change the psymtab's language if we've learned
1587 something useful (eg. tmp_language is not language_unknown).
1588 In addition, to match what start_subfile does, never change
1589 from C++ to C. */
1590 if (tmp_language != language_unknown
1591 && (tmp_language != language_c
1592 || psymtab_language != language_cplus))
1593 psymtab_language = tmp_language;
1594
1595 /* In C++, one may expect the same filename to come round many
1596 times, when code is coming alternately from the main file
1597 and from inline functions in other files. So I check to see
1598 if this is a file we've seen before -- either the main
1599 source file, or a previously included file.
1600
1601 This seems to be a lot of time to be spending on N_SOL, but
1602 things like "break c-exp.y:435" need to work (I
1603 suppose the psymtab_include_list could be hashed or put
1604 in a binary tree, if profiling shows this is a major hog). */
1605 if (pst && strcmp (namestring, pst->filename) == 0)
1606 continue;
1607 {
1608 int i;
1609 for (i = 0; i < includes_used; i++)
1610 if (strcmp (namestring, psymtab_include_list[i]) == 0)
1611 {
1612 i = -1;
1613 break;
1614 }
1615 if (i == -1)
1616 continue;
1617 }
1618
1619 record_include_file:
1620
1621 psymtab_include_list[includes_used++] = namestring;
1622 if (includes_used >= includes_allocated)
1623 {
1624 char **orig = psymtab_include_list;
1625
1626 psymtab_include_list = (char **)
1627 alloca ((includes_allocated *= 2) *
1628 sizeof (char *));
1629 memcpy (psymtab_include_list, orig,
1630 includes_used * sizeof (char *));
1631 }
1632 continue;
1633 }
1634 case N_LSYM: /* Typedef or automatic variable. */
1635 case N_STSYM: /* Data seg var -- static */
1636 case N_LCSYM: /* BSS " */
1637 case N_ROSYM: /* Read-only data seg var -- static. */
1638 case N_NBSTS: /* Gould nobase. */
1639 case N_NBLCS: /* symbols. */
1640 case N_FUN:
1641 case N_GSYM: /* Global (extern) variable; can be
1642 data or bss (sigh FIXME). */
1643
1644 /* Following may probably be ignored; I'll leave them here
1645 for now (until I do Pascal and Modula 2 extensions). */
1646
1647 case N_PC: /* I may or may not need this; I
1648 suspect not. */
1649 case N_M2C: /* I suspect that I can ignore this here. */
1650 case N_SCOPE: /* Same. */
1651
1652 namestring = set_namestring (objfile, nlist);
1653
1654 /* See if this is an end of function stab. */
1655 if (pst && nlist.n_type == N_FUN && *namestring == '\000')
1656 {
1657 CORE_ADDR valu;
1658
1659 /* It's value is the size (in bytes) of the function for
1660 function relative stabs, or the address of the function's
1661 end for old style stabs. */
1662 valu = nlist.n_value + last_function_start;
1663 if (pst->texthigh == 0 || valu > pst->texthigh)
1664 pst->texthigh = valu;
1665 break;
1666 }
1667
1668 p = (char *) strchr (namestring, ':');
1669 if (!p)
1670 continue; /* Not a debugging symbol. */
1671
1672
1673
1674 /* Main processing section for debugging symbols which
1675 the initial read through the symbol tables needs to worry
1676 about. If we reach this point, the symbol which we are
1677 considering is definitely one we are interested in.
1678 p must also contain the (valid) index into the namestring
1679 which indicates the debugging type symbol. */
1680
1681 switch (p[1])
1682 {
1683 case 'S':
1684 nlist.n_value += ANOFFSET (objfile->section_offsets, data_sect_index);
1685 #ifdef STATIC_TRANSFORM_NAME
1686 namestring = STATIC_TRANSFORM_NAME (namestring);
1687 #endif
1688 add_psymbol_to_list (namestring, p - namestring,
1689 VAR_DOMAIN, LOC_STATIC,
1690 &objfile->static_psymbols,
1691 0, nlist.n_value,
1692 psymtab_language, objfile);
1693 continue;
1694 case 'G':
1695 nlist.n_value += ANOFFSET (objfile->section_offsets, data_sect_index);
1696 /* The addresses in these entries are reported to be
1697 wrong. See the code that reads 'G's for symtabs. */
1698 add_psymbol_to_list (namestring, p - namestring,
1699 VAR_DOMAIN, LOC_STATIC,
1700 &objfile->global_psymbols,
1701 0, nlist.n_value,
1702 psymtab_language, objfile);
1703 continue;
1704
1705 case 'T':
1706 /* When a 'T' entry is defining an anonymous enum, it
1707 may have a name which is the empty string, or a
1708 single space. Since they're not really defining a
1709 symbol, those shouldn't go in the partial symbol
1710 table. We do pick up the elements of such enums at
1711 'check_enum:', below. */
1712 if (p >= namestring + 2
1713 || (p == namestring + 1
1714 && namestring[0] != ' '))
1715 {
1716 add_psymbol_to_list (namestring, p - namestring,
1717 STRUCT_DOMAIN, LOC_TYPEDEF,
1718 &objfile->static_psymbols,
1719 nlist.n_value, 0,
1720 psymtab_language, objfile);
1721 if (p[2] == 't')
1722 {
1723 /* Also a typedef with the same name. */
1724 add_psymbol_to_list (namestring, p - namestring,
1725 VAR_DOMAIN, LOC_TYPEDEF,
1726 &objfile->static_psymbols,
1727 nlist.n_value, 0,
1728 psymtab_language, objfile);
1729 p += 1;
1730 }
1731 }
1732 goto check_enum;
1733 case 't':
1734 if (p != namestring) /* a name is there, not just :T... */
1735 {
1736 add_psymbol_to_list (namestring, p - namestring,
1737 VAR_DOMAIN, LOC_TYPEDEF,
1738 &objfile->static_psymbols,
1739 nlist.n_value, 0,
1740 psymtab_language, objfile);
1741 }
1742 check_enum:
1743 /* If this is an enumerated type, we need to
1744 add all the enum constants to the partial symbol
1745 table. This does not cover enums without names, e.g.
1746 "enum {a, b} c;" in C, but fortunately those are
1747 rare. There is no way for GDB to find those from the
1748 enum type without spending too much time on it. Thus
1749 to solve this problem, the compiler needs to put out the
1750 enum in a nameless type. GCC2 does this. */
1751
1752 /* We are looking for something of the form
1753 <name> ":" ("t" | "T") [<number> "="] "e"
1754 {<constant> ":" <value> ","} ";". */
1755
1756 /* Skip over the colon and the 't' or 'T'. */
1757 p += 2;
1758 /* This type may be given a number. Also, numbers can come
1759 in pairs like (0,26). Skip over it. */
1760 while ((*p >= '0' && *p <= '9')
1761 || *p == '(' || *p == ',' || *p == ')'
1762 || *p == '=')
1763 p++;
1764
1765 if (*p++ == 'e')
1766 {
1767 /* The aix4 compiler emits extra crud before the members. */
1768 if (*p == '-')
1769 {
1770 /* Skip over the type (?). */
1771 while (*p != ':')
1772 p++;
1773
1774 /* Skip over the colon. */
1775 p++;
1776 }
1777
1778 /* We have found an enumerated type. */
1779 /* According to comments in read_enum_type
1780 a comma could end it instead of a semicolon.
1781 I don't know where that happens.
1782 Accept either. */
1783 while (*p && *p != ';' && *p != ',')
1784 {
1785 char *q;
1786
1787 /* Check for and handle cretinous dbx symbol name
1788 continuation! */
1789 if (*p == '\\' || (*p == '?' && p[1] == '\0'))
1790 p = next_symbol_text (objfile);
1791
1792 /* Point to the character after the name
1793 of the enum constant. */
1794 for (q = p; *q && *q != ':'; q++)
1795 ;
1796 /* Note that the value doesn't matter for
1797 enum constants in psymtabs, just in symtabs. */
1798 add_psymbol_to_list (p, q - p,
1799 VAR_DOMAIN, LOC_CONST,
1800 &objfile->static_psymbols, 0,
1801 0, psymtab_language, objfile);
1802 /* Point past the name. */
1803 p = q;
1804 /* Skip over the value. */
1805 while (*p && *p != ',')
1806 p++;
1807 /* Advance past the comma. */
1808 if (*p)
1809 p++;
1810 }
1811 }
1812 continue;
1813 case 'c':
1814 /* Constant, e.g. from "const" in Pascal. */
1815 add_psymbol_to_list (namestring, p - namestring,
1816 VAR_DOMAIN, LOC_CONST,
1817 &objfile->static_psymbols, nlist.n_value,
1818 0, psymtab_language, objfile);
1819 continue;
1820
1821 case 'f':
1822 if (! pst)
1823 {
1824 int name_len = p - namestring;
1825 char *name = xmalloc (name_len + 1);
1826 memcpy (name, namestring, name_len);
1827 name[name_len] = '\0';
1828 function_outside_compilation_unit_complaint (name);
1829 xfree (name);
1830 }
1831 nlist.n_value += ANOFFSET (objfile->section_offsets, SECT_OFF_TEXT (objfile));
1832 /* Kludges for ELF/STABS with Sun ACC */
1833 last_function_name = namestring;
1834 #ifdef SOFUN_ADDRESS_MAYBE_MISSING
1835 /* Do not fix textlow==0 for .o or NLM files, as 0 is a legit
1836 value for the bottom of the text seg in those cases. */
1837 if (nlist.n_value == ANOFFSET (objfile->section_offsets,
1838 SECT_OFF_TEXT (objfile)))
1839 {
1840 CORE_ADDR minsym_valu =
1841 find_stab_function_addr (namestring, pst->filename, objfile);
1842 /* find_stab_function_addr will return 0 if the minimal
1843 symbol wasn't found. (Unfortunately, this might also
1844 be a valid address.) Anyway, if it *does* return 0,
1845 it is likely that the value was set correctly to begin
1846 with... */
1847 if (minsym_valu != 0)
1848 nlist.n_value = minsym_valu;
1849 }
1850 if (pst && textlow_not_set)
1851 {
1852 pst->textlow = nlist.n_value;
1853 textlow_not_set = 0;
1854 }
1855 #endif
1856 /* End kludge. */
1857
1858 /* Keep track of the start of the last function so we
1859 can handle end of function symbols. */
1860 last_function_start = nlist.n_value;
1861
1862 /* In reordered executables this function may lie outside
1863 the bounds created by N_SO symbols. If that's the case
1864 use the address of this function as the low bound for
1865 the partial symbol table. */
1866 if (pst
1867 && (textlow_not_set
1868 || (nlist.n_value < pst->textlow
1869 && (nlist.n_value
1870 != ANOFFSET (objfile->section_offsets,
1871 SECT_OFF_TEXT (objfile))))))
1872 {
1873 pst->textlow = nlist.n_value;
1874 textlow_not_set = 0;
1875 }
1876 add_psymbol_to_list (namestring, p - namestring,
1877 VAR_DOMAIN, LOC_BLOCK,
1878 &objfile->static_psymbols,
1879 0, nlist.n_value,
1880 psymtab_language, objfile);
1881 continue;
1882
1883 /* Global functions were ignored here, but now they
1884 are put into the global psymtab like one would expect.
1885 They're also in the minimal symbol table. */
1886 case 'F':
1887 if (! pst)
1888 {
1889 int name_len = p - namestring;
1890 char *name = xmalloc (name_len + 1);
1891 memcpy (name, namestring, name_len);
1892 name[name_len] = '\0';
1893 function_outside_compilation_unit_complaint (name);
1894 xfree (name);
1895 }
1896 nlist.n_value += ANOFFSET (objfile->section_offsets, SECT_OFF_TEXT (objfile));
1897 /* Kludges for ELF/STABS with Sun ACC */
1898 last_function_name = namestring;
1899 #ifdef SOFUN_ADDRESS_MAYBE_MISSING
1900 /* Do not fix textlow==0 for .o or NLM files, as 0 is a legit
1901 value for the bottom of the text seg in those cases. */
1902 if (nlist.n_value == ANOFFSET (objfile->section_offsets,
1903 SECT_OFF_TEXT (objfile)))
1904 {
1905 CORE_ADDR minsym_valu =
1906 find_stab_function_addr (namestring, pst->filename, objfile);
1907 /* find_stab_function_addr will return 0 if the minimal
1908 symbol wasn't found. (Unfortunately, this might also
1909 be a valid address.) Anyway, if it *does* return 0,
1910 it is likely that the value was set correctly to begin
1911 with... */
1912 if (minsym_valu != 0)
1913 nlist.n_value = minsym_valu;
1914 }
1915 if (pst && textlow_not_set)
1916 {
1917 pst->textlow = nlist.n_value;
1918 textlow_not_set = 0;
1919 }
1920 #endif
1921 /* End kludge. */
1922
1923 /* Keep track of the start of the last function so we
1924 can handle end of function symbols. */
1925 last_function_start = nlist.n_value;
1926
1927 /* In reordered executables this function may lie outside
1928 the bounds created by N_SO symbols. If that's the case
1929 use the address of this function as the low bound for
1930 the partial symbol table. */
1931 if (pst
1932 && (textlow_not_set
1933 || (nlist.n_value < pst->textlow
1934 && (nlist.n_value
1935 != ANOFFSET (objfile->section_offsets,
1936 SECT_OFF_TEXT (objfile))))))
1937 {
1938 pst->textlow = nlist.n_value;
1939 textlow_not_set = 0;
1940 }
1941 add_psymbol_to_list (namestring, p - namestring,
1942 VAR_DOMAIN, LOC_BLOCK,
1943 &objfile->global_psymbols,
1944 0, nlist.n_value,
1945 psymtab_language, objfile);
1946 continue;
1947
1948 /* Two things show up here (hopefully); static symbols of
1949 local scope (static used inside braces) or extensions
1950 of structure symbols. We can ignore both. */
1951 case 'V':
1952 case '(':
1953 case '0':
1954 case '1':
1955 case '2':
1956 case '3':
1957 case '4':
1958 case '5':
1959 case '6':
1960 case '7':
1961 case '8':
1962 case '9':
1963 case '-':
1964 case '#': /* for symbol identification (used in live ranges) */
1965 continue;
1966
1967 case ':':
1968 /* It is a C++ nested symbol. We don't need to record it
1969 (I don't think); if we try to look up foo::bar::baz,
1970 then symbols for the symtab containing foo should get
1971 read in, I think. */
1972 /* Someone says sun cc puts out symbols like
1973 /foo/baz/maclib::/usr/local/bin/maclib,
1974 which would get here with a symbol type of ':'. */
1975 continue;
1976
1977 default:
1978 /* Unexpected symbol descriptor. The second and subsequent stabs
1979 of a continued stab can show up here. The question is
1980 whether they ever can mimic a normal stab--it would be
1981 nice if not, since we certainly don't want to spend the
1982 time searching to the end of every string looking for
1983 a backslash. */
1984
1985 complaint (&symfile_complaints, _("unknown symbol descriptor `%c'"),
1986 p[1]);
1987
1988 /* Ignore it; perhaps it is an extension that we don't
1989 know about. */
1990 continue;
1991 }
1992
1993 case N_EXCL:
1994
1995 namestring = set_namestring (objfile, nlist);
1996
1997 /* Find the corresponding bincl and mark that psymtab on the
1998 psymtab dependency list */
1999 {
2000 struct partial_symtab *needed_pst =
2001 find_corresponding_bincl_psymtab (namestring, nlist.n_value);
2002
2003 /* If this include file was defined earlier in this file,
2004 leave it alone. */
2005 if (needed_pst == pst)
2006 continue;
2007
2008 if (needed_pst)
2009 {
2010 int i;
2011 int found = 0;
2012
2013 for (i = 0; i < dependencies_used; i++)
2014 if (dependency_list[i] == needed_pst)
2015 {
2016 found = 1;
2017 break;
2018 }
2019
2020 /* If it's already in the list, skip the rest. */
2021 if (found)
2022 continue;
2023
2024 dependency_list[dependencies_used++] = needed_pst;
2025 if (dependencies_used >= dependencies_allocated)
2026 {
2027 struct partial_symtab **orig = dependency_list;
2028 dependency_list =
2029 (struct partial_symtab **)
2030 alloca ((dependencies_allocated *= 2)
2031 * sizeof (struct partial_symtab *));
2032 memcpy (dependency_list, orig,
2033 (dependencies_used
2034 * sizeof (struct partial_symtab *)));
2035 #ifdef DEBUG_INFO
2036 fprintf_unfiltered (gdb_stderr, "Had to reallocate dependency list.\n");
2037 fprintf_unfiltered (gdb_stderr, "New dependencies allocated: %d\n",
2038 dependencies_allocated);
2039 #endif
2040 }
2041 }
2042 }
2043 continue;
2044
2045 case N_ENDM:
2046 #ifdef SOFUN_ADDRESS_MAYBE_MISSING
2047 /* Solaris 2 end of module, finish current partial symbol table.
2048 end_psymtab will set pst->texthigh to the proper value, which
2049 is necessary if a module compiled without debugging info
2050 follows this module. */
2051 if (pst)
2052 {
2053 end_psymtab (pst, psymtab_include_list, includes_used,
2054 symnum * symbol_size,
2055 (CORE_ADDR) 0,
2056 dependency_list, dependencies_used, textlow_not_set);
2057 pst = (struct partial_symtab *) 0;
2058 includes_used = 0;
2059 dependencies_used = 0;
2060 }
2061 #endif
2062 continue;
2063
2064 case N_RBRAC:
2065 #ifdef HANDLE_RBRAC
2066 HANDLE_RBRAC (nlist.n_value);
2067 continue;
2068 #endif
2069 case N_EINCL:
2070 case N_DSLINE:
2071 case N_BSLINE:
2072 case N_SSYM: /* Claim: Structure or union element.
2073 Hopefully, I can ignore this. */
2074 case N_ENTRY: /* Alternate entry point; can ignore. */
2075 case N_MAIN: /* Can definitely ignore this. */
2076 case N_CATCH: /* These are GNU C++ extensions */
2077 case N_EHDECL: /* that can safely be ignored here. */
2078 case N_LENG:
2079 case N_BCOMM:
2080 case N_ECOMM:
2081 case N_ECOML:
2082 case N_FNAME:
2083 case N_SLINE:
2084 case N_RSYM:
2085 case N_PSYM:
2086 case N_LBRAC:
2087 case N_NSYMS: /* Ultrix 4.0: symbol count */
2088 case N_DEFD: /* GNU Modula-2 */
2089 case N_ALIAS: /* SunPro F77: alias name, ignore for now. */
2090
2091 case N_OBJ: /* useless types from Solaris */
2092 case N_OPT:
2093 case N_PATCH:
2094 /* These symbols aren't interesting; don't worry about them */
2095
2096 continue;
2097
2098 default:
2099 /* If we haven't found it yet, ignore it. It's probably some
2100 new type we don't know about yet. */
2101 unknown_symtype_complaint (hex_string (nlist.n_type));
2102 continue;
2103 }
2104 }
2105
2106 /* If there's stuff to be cleaned up, clean it up. */
2107 if (pst)
2108 {
2109 /* Don't set pst->texthigh lower than it already is. */
2110 CORE_ADDR text_end =
2111 (lowest_text_address == (CORE_ADDR) -1
2112 ? (text_addr + ANOFFSET (objfile->section_offsets, SECT_OFF_TEXT (objfile)))
2113 : lowest_text_address)
2114 + text_size;
2115
2116 end_psymtab (pst, psymtab_include_list, includes_used,
2117 symnum * symbol_size,
2118 text_end > pst->texthigh ? text_end : pst->texthigh,
2119 dependency_list, dependencies_used, textlow_not_set);
2120 }
2121
2122 do_cleanups (back_to);
2123 }
2124
2125 /* Allocate and partially fill a partial symtab. It will be
2126 completely filled at the end of the symbol list.
2127
2128 SYMFILE_NAME is the name of the symbol-file we are reading from, and ADDR
2129 is the address relative to which its symbols are (incremental) or 0
2130 (normal). */
2131
2132
2133 static struct partial_symtab *
2134 start_psymtab (struct objfile *objfile, char *filename, CORE_ADDR textlow,
2135 int ldsymoff, struct partial_symbol **global_syms,
2136 struct partial_symbol **static_syms)
2137 {
2138 struct partial_symtab *result =
2139 start_psymtab_common (objfile, objfile->section_offsets,
2140 filename, textlow, global_syms, static_syms);
2141
2142 result->read_symtab_private = (char *)
2143 obstack_alloc (&objfile->objfile_obstack, sizeof (struct symloc));
2144 LDSYMOFF (result) = ldsymoff;
2145 result->read_symtab = dbx_psymtab_to_symtab;
2146 SYMBOL_SIZE (result) = symbol_size;
2147 SYMBOL_OFFSET (result) = symbol_table_offset;
2148 STRING_OFFSET (result) = string_table_offset;
2149 FILE_STRING_OFFSET (result) = file_string_table_offset;
2150
2151 #ifdef HAVE_ELF
2152 /* If we're handling an ELF file, drag some section-relocation info
2153 for this source file out of the ELF symbol table, to compensate for
2154 Sun brain death. This replaces the section_offsets in this psymtab,
2155 if successful. */
2156 elfstab_offset_sections (objfile, result);
2157 #endif
2158
2159 /* Deduce the source language from the filename for this psymtab. */
2160 psymtab_language = deduce_language_from_filename (filename);
2161
2162 return result;
2163 }
2164
2165 /* Close off the current usage of PST.
2166 Returns PST or NULL if the partial symtab was empty and thrown away.
2167
2168 FIXME: List variables and peculiarities of same. */
2169
2170 struct partial_symtab *
2171 end_psymtab (struct partial_symtab *pst, char **include_list, int num_includes,
2172 int capping_symbol_offset, CORE_ADDR capping_text,
2173 struct partial_symtab **dependency_list, int number_dependencies,
2174 int textlow_not_set)
2175 {
2176 int i;
2177 struct objfile *objfile = pst->objfile;
2178
2179 if (capping_symbol_offset != -1)
2180 LDSYMLEN (pst) = capping_symbol_offset - LDSYMOFF (pst);
2181 pst->texthigh = capping_text;
2182
2183 #ifdef SOFUN_ADDRESS_MAYBE_MISSING
2184 /* Under Solaris, the N_SO symbols always have a value of 0,
2185 instead of the usual address of the .o file. Therefore,
2186 we have to do some tricks to fill in texthigh and textlow.
2187 The first trick is: if we see a static
2188 or global function, and the textlow for the current pst
2189 is not set (ie: textlow_not_set), then we use that function's
2190 address for the textlow of the pst. */
2191
2192 /* Now, to fill in texthigh, we remember the last function seen
2193 in the .o file. Also, there's a hack in
2194 bfd/elf.c and gdb/elfread.c to pass the ELF st_size field
2195 to here via the misc_info field. Therefore, we can fill in
2196 a reliable texthigh by taking the address plus size of the
2197 last function in the file. */
2198
2199 if (pst->texthigh == 0 && last_function_name)
2200 {
2201 char *p;
2202 int n;
2203 struct minimal_symbol *minsym;
2204
2205 p = strchr (last_function_name, ':');
2206 if (p == NULL)
2207 p = last_function_name;
2208 n = p - last_function_name;
2209 p = alloca (n + 2);
2210 strncpy (p, last_function_name, n);
2211 p[n] = 0;
2212
2213 minsym = lookup_minimal_symbol (p, pst->filename, objfile);
2214 if (minsym == NULL)
2215 {
2216 /* Sun Fortran appends an underscore to the minimal symbol name,
2217 try again with an appended underscore if the minimal symbol
2218 was not found. */
2219 p[n] = '_';
2220 p[n + 1] = 0;
2221 minsym = lookup_minimal_symbol (p, pst->filename, objfile);
2222 }
2223
2224 if (minsym)
2225 pst->texthigh = SYMBOL_VALUE_ADDRESS (minsym) + MSYMBOL_SIZE (minsym);
2226
2227 last_function_name = NULL;
2228 }
2229
2230 /* this test will be true if the last .o file is only data */
2231 if (textlow_not_set)
2232 pst->textlow = pst->texthigh;
2233 else
2234 {
2235 struct partial_symtab *p1;
2236
2237 /* If we know our own starting text address, then walk through all other
2238 psymtabs for this objfile, and if any didn't know their ending text
2239 address, set it to our starting address. Take care to not set our
2240 own ending address to our starting address, nor to set addresses on
2241 `dependency' files that have both textlow and texthigh zero. */
2242
2243 ALL_OBJFILE_PSYMTABS (objfile, p1)
2244 {
2245 if (p1->texthigh == 0 && p1->textlow != 0 && p1 != pst)
2246 {
2247 p1->texthigh = pst->textlow;
2248 /* if this file has only data, then make textlow match texthigh */
2249 if (p1->textlow == 0)
2250 p1->textlow = p1->texthigh;
2251 }
2252 }
2253 }
2254
2255 /* End of kludge for patching Solaris textlow and texthigh. */
2256 #endif /* SOFUN_ADDRESS_MAYBE_MISSING. */
2257
2258 pst->n_global_syms =
2259 objfile->global_psymbols.next - (objfile->global_psymbols.list + pst->globals_offset);
2260 pst->n_static_syms =
2261 objfile->static_psymbols.next - (objfile->static_psymbols.list + pst->statics_offset);
2262
2263 pst->number_of_dependencies = number_dependencies;
2264 if (number_dependencies)
2265 {
2266 pst->dependencies = (struct partial_symtab **)
2267 obstack_alloc (&objfile->objfile_obstack,
2268 number_dependencies * sizeof (struct partial_symtab *));
2269 memcpy (pst->dependencies, dependency_list,
2270 number_dependencies * sizeof (struct partial_symtab *));
2271 }
2272 else
2273 pst->dependencies = 0;
2274
2275 for (i = 0; i < num_includes; i++)
2276 {
2277 struct partial_symtab *subpst =
2278 allocate_psymtab (include_list[i], objfile);
2279
2280 /* Copy the sesction_offsets array from the main psymtab. */
2281 subpst->section_offsets = pst->section_offsets;
2282 subpst->read_symtab_private =
2283 (char *) obstack_alloc (&objfile->objfile_obstack,
2284 sizeof (struct symloc));
2285 LDSYMOFF (subpst) =
2286 LDSYMLEN (subpst) =
2287 subpst->textlow =
2288 subpst->texthigh = 0;
2289
2290 /* We could save slight bits of space by only making one of these,
2291 shared by the entire set of include files. FIXME-someday. */
2292 subpst->dependencies = (struct partial_symtab **)
2293 obstack_alloc (&objfile->objfile_obstack,
2294 sizeof (struct partial_symtab *));
2295 subpst->dependencies[0] = pst;
2296 subpst->number_of_dependencies = 1;
2297
2298 subpst->globals_offset =
2299 subpst->n_global_syms =
2300 subpst->statics_offset =
2301 subpst->n_static_syms = 0;
2302
2303 subpst->readin = 0;
2304 subpst->symtab = 0;
2305 subpst->read_symtab = pst->read_symtab;
2306 }
2307
2308 sort_pst_symbols (pst);
2309
2310 /* If there is already a psymtab or symtab for a file of this name, remove it.
2311 (If there is a symtab, more drastic things also happen.)
2312 This happens in VxWorks. */
2313 free_named_symtabs (pst->filename);
2314
2315 if (num_includes == 0
2316 && number_dependencies == 0
2317 && pst->n_global_syms == 0
2318 && pst->n_static_syms == 0
2319 && has_line_numbers == 0)
2320 {
2321 /* Throw away this psymtab, it's empty. We can't deallocate it, since
2322 it is on the obstack, but we can forget to chain it on the list. */
2323 /* Empty psymtabs happen as a result of header files which don't have
2324 any symbols in them. There can be a lot of them. But this check
2325 is wrong, in that a psymtab with N_SLINE entries but nothing else
2326 is not empty, but we don't realize that. Fixing that without slowing
2327 things down might be tricky. */
2328
2329 discard_psymtab (pst);
2330
2331 /* Indicate that psymtab was thrown away. */
2332 pst = (struct partial_symtab *) NULL;
2333 }
2334 return pst;
2335 }
2336 \f
2337 static void
2338 dbx_psymtab_to_symtab_1 (struct partial_symtab *pst)
2339 {
2340 struct cleanup *old_chain;
2341 int i;
2342
2343 if (!pst)
2344 return;
2345
2346 if (pst->readin)
2347 {
2348 fprintf_unfiltered (gdb_stderr, "Psymtab for %s already read in. Shouldn't happen.\n",
2349 pst->filename);
2350 return;
2351 }
2352
2353 /* Read in all partial symtabs on which this one is dependent */
2354 for (i = 0; i < pst->number_of_dependencies; i++)
2355 if (!pst->dependencies[i]->readin)
2356 {
2357 /* Inform about additional files that need to be read in. */
2358 if (info_verbose)
2359 {
2360 fputs_filtered (" ", gdb_stdout);
2361 wrap_here ("");
2362 fputs_filtered ("and ", gdb_stdout);
2363 wrap_here ("");
2364 printf_filtered ("%s...", pst->dependencies[i]->filename);
2365 wrap_here (""); /* Flush output */
2366 gdb_flush (gdb_stdout);
2367 }
2368 dbx_psymtab_to_symtab_1 (pst->dependencies[i]);
2369 }
2370
2371 if (LDSYMLEN (pst)) /* Otherwise it's a dummy */
2372 {
2373 /* Init stuff necessary for reading in symbols */
2374 stabsread_init ();
2375 buildsym_init ();
2376 old_chain = make_cleanup (really_free_pendings, 0);
2377 file_string_table_offset = FILE_STRING_OFFSET (pst);
2378 symbol_size = SYMBOL_SIZE (pst);
2379
2380 /* Read in this file's symbols */
2381 bfd_seek (pst->objfile->obfd, SYMBOL_OFFSET (pst), SEEK_SET);
2382 read_ofile_symtab (pst);
2383
2384 do_cleanups (old_chain);
2385 }
2386
2387 pst->readin = 1;
2388 }
2389
2390 /* Read in all of the symbols for a given psymtab for real.
2391 Be verbose about it if the user wants that. */
2392
2393 static void
2394 dbx_psymtab_to_symtab (struct partial_symtab *pst)
2395 {
2396 bfd *sym_bfd;
2397 struct cleanup *back_to = NULL;
2398
2399 if (!pst)
2400 return;
2401
2402 if (pst->readin)
2403 {
2404 fprintf_unfiltered (gdb_stderr, "Psymtab for %s already read in. Shouldn't happen.\n",
2405 pst->filename);
2406 return;
2407 }
2408
2409 if (LDSYMLEN (pst) || pst->number_of_dependencies)
2410 {
2411 /* Print the message now, before reading the string table,
2412 to avoid disconcerting pauses. */
2413 if (info_verbose)
2414 {
2415 printf_filtered ("Reading in symbols for %s...", pst->filename);
2416 gdb_flush (gdb_stdout);
2417 }
2418
2419 sym_bfd = pst->objfile->obfd;
2420
2421 next_symbol_text_func = dbx_next_symbol_text;
2422
2423 if (DBX_STAB_SECTION (pst->objfile))
2424 {
2425 stabs_data
2426 = symfile_relocate_debug_section (pst->objfile->obfd,
2427 DBX_STAB_SECTION (pst->objfile),
2428 NULL);
2429 if (stabs_data)
2430 back_to = make_cleanup (free_current_contents, (void *) &stabs_data);
2431 }
2432
2433 dbx_psymtab_to_symtab_1 (pst);
2434
2435 if (back_to)
2436 do_cleanups (back_to);
2437
2438 /* Match with global symbols. This only needs to be done once,
2439 after all of the symtabs and dependencies have been read in. */
2440 scan_file_globals (pst->objfile);
2441
2442 /* Finish up the debug error message. */
2443 if (info_verbose)
2444 printf_filtered ("done.\n");
2445 }
2446 }
2447
2448 /* Read in a defined section of a specific object file's symbols. */
2449
2450 static void
2451 read_ofile_symtab (struct partial_symtab *pst)
2452 {
2453 char *namestring;
2454 struct external_nlist *bufp;
2455 struct internal_nlist nlist;
2456 unsigned char type;
2457 unsigned max_symnum;
2458 bfd *abfd;
2459 struct objfile *objfile;
2460 int sym_offset; /* Offset to start of symbols to read */
2461 int sym_size; /* Size of symbols to read */
2462 CORE_ADDR text_offset; /* Start of text segment for symbols */
2463 int text_size; /* Size of text segment for symbols */
2464 struct section_offsets *section_offsets;
2465
2466 objfile = pst->objfile;
2467 sym_offset = LDSYMOFF (pst);
2468 sym_size = LDSYMLEN (pst);
2469 text_offset = pst->textlow;
2470 text_size = pst->texthigh - pst->textlow;
2471 /* This cannot be simply objfile->section_offsets because of
2472 elfstab_offset_sections() which initializes the psymtab section
2473 offsets information in a special way, and that is different from
2474 objfile->section_offsets. */
2475 section_offsets = pst->section_offsets;
2476
2477 current_objfile = objfile;
2478 subfile_stack = NULL;
2479
2480 stringtab_global = DBX_STRINGTAB (objfile);
2481 last_source_file = NULL;
2482
2483 abfd = objfile->obfd;
2484 symfile_bfd = objfile->obfd; /* Implicit param to next_text_symbol */
2485 symbuf_end = symbuf_idx = 0;
2486 symbuf_read = 0;
2487 symbuf_left = sym_offset + sym_size;
2488
2489 /* It is necessary to actually read one symbol *before* the start
2490 of this symtab's symbols, because the GCC_COMPILED_FLAG_SYMBOL
2491 occurs before the N_SO symbol.
2492
2493 Detecting this in read_dbx_symtab
2494 would slow down initial readin, so we look for it here instead. */
2495 if (!processing_acc_compilation && sym_offset >= (int) symbol_size)
2496 {
2497 stabs_seek (sym_offset - symbol_size);
2498 fill_symbuf (abfd);
2499 bufp = &symbuf[symbuf_idx++];
2500 INTERNALIZE_SYMBOL (nlist, bufp, abfd);
2501 OBJSTAT (objfile, n_stabs++);
2502
2503 namestring = set_namestring (objfile, nlist);
2504
2505 processing_gcc_compilation = 0;
2506 if (nlist.n_type == N_TEXT)
2507 {
2508 const char *tempstring = namestring;
2509
2510 if (strcmp (namestring, GCC_COMPILED_FLAG_SYMBOL) == 0)
2511 processing_gcc_compilation = 1;
2512 else if (strcmp (namestring, GCC2_COMPILED_FLAG_SYMBOL) == 0)
2513 processing_gcc_compilation = 2;
2514 if (tempstring[0] == bfd_get_symbol_leading_char (symfile_bfd))
2515 ++tempstring;
2516 if (strncmp (tempstring, "__gnu_compiled", 14) == 0)
2517 processing_gcc_compilation = 2;
2518 }
2519
2520 /* Try to select a C++ demangling based on the compilation unit
2521 producer. */
2522
2523 #if 0
2524 /* For now, stay with AUTO_DEMANGLING for g++ output, as we don't
2525 know whether it will use the old style or v3 mangling. */
2526 if (processing_gcc_compilation)
2527 {
2528 if (AUTO_DEMANGLING)
2529 {
2530 set_demangling_style (GNU_DEMANGLING_STYLE_STRING);
2531 }
2532 }
2533 #endif
2534 }
2535 else
2536 {
2537 /* The N_SO starting this symtab is the first symbol, so we
2538 better not check the symbol before it. I'm not this can
2539 happen, but it doesn't hurt to check for it. */
2540 stabs_seek (sym_offset);
2541 processing_gcc_compilation = 0;
2542 }
2543
2544 if (symbuf_idx == symbuf_end)
2545 fill_symbuf (abfd);
2546 bufp = &symbuf[symbuf_idx];
2547 if (bfd_h_get_8 (abfd, bufp->e_type) != N_SO)
2548 error (_("First symbol in segment of executable not a source symbol"));
2549
2550 max_symnum = sym_size / symbol_size;
2551
2552 for (symnum = 0;
2553 symnum < max_symnum;
2554 symnum++)
2555 {
2556 QUIT; /* Allow this to be interruptable */
2557 if (symbuf_idx == symbuf_end)
2558 fill_symbuf (abfd);
2559 bufp = &symbuf[symbuf_idx++];
2560 INTERNALIZE_SYMBOL (nlist, bufp, abfd);
2561 OBJSTAT (objfile, n_stabs++);
2562
2563 type = bfd_h_get_8 (abfd, bufp->e_type);
2564
2565 namestring = set_namestring (objfile, nlist);
2566
2567 if (type & N_STAB)
2568 {
2569 process_one_symbol (type, nlist.n_desc, nlist.n_value,
2570 namestring, section_offsets, objfile);
2571 }
2572 /* We skip checking for a new .o or -l file; that should never
2573 happen in this routine. */
2574 else if (type == N_TEXT)
2575 {
2576 /* I don't think this code will ever be executed, because
2577 the GCC_COMPILED_FLAG_SYMBOL usually is right before
2578 the N_SO symbol which starts this source file.
2579 However, there is no reason not to accept
2580 the GCC_COMPILED_FLAG_SYMBOL anywhere. */
2581
2582 if (strcmp (namestring, GCC_COMPILED_FLAG_SYMBOL) == 0)
2583 processing_gcc_compilation = 1;
2584 else if (strcmp (namestring, GCC2_COMPILED_FLAG_SYMBOL) == 0)
2585 processing_gcc_compilation = 2;
2586
2587 #if 0
2588 /* For now, stay with AUTO_DEMANGLING for g++ output, as we don't
2589 know whether it will use the old style or v3 mangling. */
2590 if (AUTO_DEMANGLING)
2591 {
2592 set_demangling_style (GNU_DEMANGLING_STYLE_STRING);
2593 }
2594 #endif
2595 }
2596 else if (type & N_EXT || type == (unsigned char) N_TEXT
2597 || type == (unsigned char) N_NBTEXT
2598 )
2599 {
2600 /* Global symbol: see if we came across a dbx defintion for
2601 a corresponding symbol. If so, store the value. Remove
2602 syms from the chain when their values are stored, but
2603 search the whole chain, as there may be several syms from
2604 different files with the same name. */
2605 /* This is probably not true. Since the files will be read
2606 in one at a time, each reference to a global symbol will
2607 be satisfied in each file as it appears. So we skip this
2608 section. */
2609 ;
2610 }
2611 }
2612
2613 /* In a Solaris elf file, this variable, which comes from the
2614 value of the N_SO symbol, will still be 0. Luckily, text_offset,
2615 which comes from pst->textlow is correct. */
2616 if (last_source_start_addr == 0)
2617 last_source_start_addr = text_offset;
2618
2619 /* In reordered executables last_source_start_addr may not be the
2620 lower bound for this symtab, instead use text_offset which comes
2621 from pst->textlow which is correct. */
2622 if (last_source_start_addr > text_offset)
2623 last_source_start_addr = text_offset;
2624
2625 pst->symtab = end_symtab (text_offset + text_size, objfile, SECT_OFF_TEXT (objfile));
2626
2627 end_stabs ();
2628
2629 current_objfile = NULL;
2630 }
2631 \f
2632
2633 /* This handles a single symbol from the symbol-file, building symbols
2634 into a GDB symtab. It takes these arguments and an implicit argument.
2635
2636 TYPE is the type field of the ".stab" symbol entry.
2637 DESC is the desc field of the ".stab" entry.
2638 VALU is the value field of the ".stab" entry.
2639 NAME is the symbol name, in our address space.
2640 SECTION_OFFSETS is a set of amounts by which the sections of this
2641 object file were relocated when it was loaded into memory. Note
2642 that these section_offsets are not the objfile->section_offsets but
2643 the pst->section_offsets. All symbols that refer to memory
2644 locations need to be offset by these amounts.
2645 OBJFILE is the object file from which we are reading symbols. It
2646 is used in end_symtab. */
2647
2648 void
2649 process_one_symbol (int type, int desc, CORE_ADDR valu, char *name,
2650 struct section_offsets *section_offsets,
2651 struct objfile *objfile)
2652 {
2653 struct context_stack *new;
2654 /* This remembers the address of the start of a function. It is
2655 used because in Solaris 2, N_LBRAC, N_RBRAC, and N_SLINE entries
2656 are relative to the current function's start address. On systems
2657 other than Solaris 2, this just holds the SECT_OFF_TEXT value,
2658 and is used to relocate these symbol types rather than
2659 SECTION_OFFSETS. */
2660 static CORE_ADDR function_start_offset;
2661
2662 /* This holds the address of the start of a function, without the
2663 system peculiarities of function_start_offset. */
2664 static CORE_ADDR last_function_start;
2665
2666 /* If this is nonzero, we've seen an N_SLINE since the start of the
2667 current function. We use this to tell us to move the first sline
2668 to the beginning of the function regardless of what its given
2669 value is. */
2670 static int sline_found_in_function = 1;
2671
2672 /* If this is nonzero, we've seen a non-gcc N_OPT symbol for this
2673 source file. Used to detect the SunPRO solaris compiler. */
2674 static int n_opt_found;
2675
2676 /* The stab type used for the definition of the last function.
2677 N_STSYM or N_GSYM for SunOS4 acc; N_FUN for other compilers. */
2678 static int function_stab_type = 0;
2679
2680 if (!block_address_function_relative)
2681 {
2682 /* N_LBRAC, N_RBRAC and N_SLINE entries are not relative to the
2683 function start address, so just use the text offset. */
2684 function_start_offset =
2685 ANOFFSET (section_offsets, SECT_OFF_TEXT (objfile));
2686 }
2687
2688 /* Something is wrong if we see real data before seeing a source
2689 file name. */
2690
2691 if (last_source_file == NULL && type != (unsigned char) N_SO)
2692 {
2693 /* Ignore any symbols which appear before an N_SO symbol.
2694 Currently no one puts symbols there, but we should deal
2695 gracefully with the case. A complain()t might be in order,
2696 but this should not be an error (). */
2697 return;
2698 }
2699
2700 switch (type)
2701 {
2702 case N_FUN:
2703 case N_FNAME:
2704
2705 if (*name == '\000')
2706 {
2707 /* This N_FUN marks the end of a function. This closes off
2708 the current block. */
2709
2710 if (context_stack_depth <= 0)
2711 {
2712 lbrac_mismatch_complaint (symnum);
2713 break;
2714 }
2715
2716 /* The following check is added before recording line 0 at
2717 end of function so as to handle hand-generated stabs
2718 which may have an N_FUN stabs at the end of the function,
2719 but no N_SLINE stabs. */
2720 if (sline_found_in_function)
2721 record_line (current_subfile, 0, last_function_start + valu);
2722
2723 within_function = 0;
2724 new = pop_context ();
2725
2726 /* Make a block for the local symbols within. */
2727 finish_block (new->name, &local_symbols, new->old_blocks,
2728 new->start_addr, new->start_addr + valu,
2729 objfile);
2730
2731 /* May be switching to an assembler file which may not be using
2732 block relative stabs, so reset the offset. */
2733 if (block_address_function_relative)
2734 function_start_offset = 0;
2735
2736 break;
2737 }
2738
2739 sline_found_in_function = 0;
2740
2741 /* Relocate for dynamic loading. */
2742 valu += ANOFFSET (section_offsets, SECT_OFF_TEXT (objfile));
2743 valu = gdbarch_smash_text_address (current_gdbarch, valu);
2744 last_function_start = valu;
2745
2746 goto define_a_symbol;
2747
2748 case N_LBRAC:
2749 /* This "symbol" just indicates the start of an inner lexical
2750 context within a function. */
2751
2752 /* Ignore extra outermost context from SunPRO cc and acc. */
2753 if (n_opt_found && desc == 1)
2754 break;
2755
2756 if (block_address_function_relative)
2757 /* Relocate for Sun ELF acc fn-relative syms. */
2758 valu += function_start_offset;
2759 else
2760 /* On most machines, the block addresses are relative to the
2761 N_SO, the linker did not relocate them (sigh). */
2762 valu += last_source_start_addr;
2763
2764 new = push_context (desc, valu);
2765 break;
2766
2767 case N_RBRAC:
2768 /* This "symbol" just indicates the end of an inner lexical
2769 context that was started with N_LBRAC. */
2770
2771 /* Ignore extra outermost context from SunPRO cc and acc. */
2772 if (n_opt_found && desc == 1)
2773 break;
2774
2775 if (block_address_function_relative)
2776 /* Relocate for Sun ELF acc fn-relative syms. */
2777 valu += function_start_offset;
2778 else
2779 /* On most machines, the block addresses are relative to the
2780 N_SO, the linker did not relocate them (sigh). */
2781 valu += last_source_start_addr;
2782
2783 if (context_stack_depth <= 0)
2784 {
2785 lbrac_mismatch_complaint (symnum);
2786 break;
2787 }
2788
2789 new = pop_context ();
2790 if (desc != new->depth)
2791 lbrac_mismatch_complaint (symnum);
2792
2793 /* Some compilers put the variable decls inside of an
2794 LBRAC/RBRAC block. This macro should be nonzero if this is
2795 true. DESC is N_DESC from the N_RBRAC symbol. GCC_P is true
2796 if we've detected the GCC_COMPILED_SYMBOL or the
2797 GCC2_COMPILED_SYMBOL. */
2798 #if !defined (VARIABLES_INSIDE_BLOCK)
2799 #define VARIABLES_INSIDE_BLOCK(desc, gcc_p) 0
2800 #endif
2801
2802 /* Can only use new->locals as local symbols here if we're in
2803 GCC or on a machine that puts them before the lbrack. */
2804 if (!VARIABLES_INSIDE_BLOCK (desc, processing_gcc_compilation))
2805 {
2806 if (local_symbols != NULL)
2807 {
2808 /* GCC development snapshots from March to December of
2809 2000 would output N_LSYM entries after N_LBRAC
2810 entries. As a consequence, these symbols are simply
2811 discarded. Complain if this is the case. Note that
2812 there are some compilers which legitimately put local
2813 symbols within an LBRAC/RBRAC block; this complaint
2814 might also help sort out problems in which
2815 VARIABLES_INSIDE_BLOCK is incorrectly defined. */
2816 complaint (&symfile_complaints, _("\
2817 misplaced N_LBRAC entry; discarding local symbols which have \
2818 no enclosing block"));
2819 }
2820 local_symbols = new->locals;
2821 }
2822
2823 if (context_stack_depth
2824 > !VARIABLES_INSIDE_BLOCK (desc, processing_gcc_compilation))
2825 {
2826 /* This is not the outermost LBRAC...RBRAC pair in the
2827 function, its local symbols preceded it, and are the ones
2828 just recovered from the context stack. Define the block
2829 for them (but don't bother if the block contains no
2830 symbols. Should we complain on blocks without symbols?
2831 I can't think of any useful purpose for them). */
2832 if (local_symbols != NULL)
2833 {
2834 /* Muzzle a compiler bug that makes end < start.
2835
2836 ??? Which compilers? Is this ever harmful?. */
2837 if (new->start_addr > valu)
2838 {
2839 complaint (&symfile_complaints,
2840 _("block start larger than block end"));
2841 new->start_addr = valu;
2842 }
2843 /* Make a block for the local symbols within. */
2844 finish_block (0, &local_symbols, new->old_blocks,
2845 new->start_addr, valu, objfile);
2846 }
2847 }
2848 else
2849 {
2850 /* This is the outermost LBRAC...RBRAC pair. There is no
2851 need to do anything; leave the symbols that preceded it
2852 to be attached to the function's own block. We need to
2853 indicate that we just moved outside of the function. */
2854 within_function = 0;
2855 }
2856
2857 if (VARIABLES_INSIDE_BLOCK (desc, processing_gcc_compilation))
2858 /* Now pop locals of block just finished. */
2859 local_symbols = new->locals;
2860 break;
2861
2862 case N_FN:
2863 case N_FN_SEQ:
2864 /* This kind of symbol indicates the start of an object file.
2865 Relocate for dynamic loading. */
2866 valu += ANOFFSET (section_offsets, SECT_OFF_TEXT (objfile));
2867 break;
2868
2869 case N_SO:
2870 /* This type of symbol indicates the start of data for one
2871 source file. Finish the symbol table of the previous source
2872 file (if any) and start accumulating a new symbol table.
2873 Relocate for dynamic loading. */
2874 valu += ANOFFSET (section_offsets, SECT_OFF_TEXT (objfile));
2875
2876 n_opt_found = 0;
2877
2878 if (last_source_file)
2879 {
2880 /* Check if previous symbol was also an N_SO (with some
2881 sanity checks). If so, that one was actually the
2882 directory name, and the current one is the real file
2883 name. Patch things up. */
2884 if (previous_stab_code == (unsigned char) N_SO)
2885 {
2886 patch_subfile_names (current_subfile, name);
2887 break; /* Ignore repeated SOs */
2888 }
2889 end_symtab (valu, objfile, SECT_OFF_TEXT (objfile));
2890 end_stabs ();
2891 }
2892
2893 /* Null name means this just marks the end of text for this .o
2894 file. Don't start a new symtab in this case. */
2895 if (*name == '\000')
2896 break;
2897
2898 if (block_address_function_relative)
2899 function_start_offset = 0;
2900
2901 start_stabs ();
2902 start_symtab (name, NULL, valu);
2903 record_debugformat ("stabs");
2904 break;
2905
2906 case N_SOL:
2907 /* This type of symbol indicates the start of data for a
2908 sub-source-file, one whose contents were copied or included
2909 in the compilation of the main source file (whose name was
2910 given in the N_SO symbol). Relocate for dynamic loading. */
2911 valu += ANOFFSET (section_offsets, SECT_OFF_TEXT (objfile));
2912 start_subfile (name, current_subfile->dirname);
2913 break;
2914
2915 case N_BINCL:
2916 push_subfile ();
2917 add_new_header_file (name, valu);
2918 start_subfile (name, current_subfile->dirname);
2919 break;
2920
2921 case N_EINCL:
2922 start_subfile (pop_subfile (), current_subfile->dirname);
2923 break;
2924
2925 case N_EXCL:
2926 add_old_header_file (name, valu);
2927 break;
2928
2929 case N_SLINE:
2930 /* This type of "symbol" really just records one line-number --
2931 core-address correspondence. Enter it in the line list for
2932 this symbol table. */
2933
2934 /* Relocate for dynamic loading and for ELF acc
2935 function-relative symbols. */
2936 valu += function_start_offset;
2937
2938 /* GCC 2.95.3 emits the first N_SLINE stab somwehere in the
2939 middle of the prologue instead of right at the start of the
2940 function. To deal with this we record the address for the
2941 first N_SLINE stab to be the start of the function instead of
2942 the listed location. We really shouldn't to this. When
2943 compiling with optimization, this first N_SLINE stab might be
2944 optimized away. Other (non-GCC) compilers don't emit this
2945 stab at all. There is no real harm in having an extra
2946 numbered line, although it can be a bit annoying for the
2947 user. However, it totally screws up our testsuite.
2948
2949 So for now, keep adjusting the address of the first N_SLINE
2950 stab, but only for code compiled with GCC. */
2951
2952 if (within_function && sline_found_in_function == 0)
2953 {
2954 if (processing_gcc_compilation == 2)
2955 record_line (current_subfile, desc, last_function_start);
2956 else
2957 record_line (current_subfile, desc, valu);
2958 sline_found_in_function = 1;
2959 }
2960 else
2961 record_line (current_subfile, desc, valu);
2962 break;
2963
2964 case N_BCOMM:
2965 common_block_start (name, objfile);
2966 break;
2967
2968 case N_ECOMM:
2969 common_block_end (objfile);
2970 break;
2971
2972 /* The following symbol types need to have the appropriate
2973 offset added to their value; then we process symbol
2974 definitions in the name. */
2975
2976 case N_STSYM: /* Static symbol in data segment. */
2977 case N_LCSYM: /* Static symbol in BSS segment. */
2978 case N_ROSYM: /* Static symbol in read-only data segment. */
2979 /* HORRID HACK DEPT. However, it's Sun's furgin' fault.
2980 Solaris 2's stabs-in-elf makes *most* symbols relative but
2981 leaves a few absolute (at least for Solaris 2.1 and version
2982 2.0.1 of the SunPRO compiler). N_STSYM and friends sit on
2983 the fence. .stab "foo:S...",N_STSYM is absolute (ld
2984 relocates it) .stab "foo:V...",N_STSYM is relative (section
2985 base subtracted). This leaves us no choice but to search for
2986 the 'S' or 'V'... (or pass the whole section_offsets stuff
2987 down ONE MORE function call level, which we really don't want
2988 to do). */
2989 {
2990 char *p;
2991
2992 /* Normal object file and NLMs have non-zero text seg offsets,
2993 but don't need their static syms offset in this fashion.
2994 XXX - This is really a crock that should be fixed in the
2995 solib handling code so that I don't have to work around it
2996 here. */
2997
2998 if (!symfile_relocatable)
2999 {
3000 p = strchr (name, ':');
3001 if (p != 0 && p[1] == 'S')
3002 {
3003 /* The linker relocated it. We don't want to add an
3004 elfstab_offset_sections-type offset, but we *do*
3005 want to add whatever solib.c passed to
3006 symbol_file_add as addr (this is known to affect
3007 SunOS 4, and I suspect ELF too). Since
3008 elfstab_offset_sections currently does not muck
3009 with the text offset (there is no Ttext.text
3010 symbol), we can get addr from the text offset. If
3011 elfstab_offset_sections ever starts dealing with
3012 the text offset, and we still need to do this, we
3013 need to invent a SECT_OFF_ADDR_KLUDGE or something. */
3014 valu += ANOFFSET (section_offsets, SECT_OFF_TEXT (objfile));
3015 goto define_a_symbol;
3016 }
3017 }
3018 /* Since it's not the kludge case, re-dispatch to the right
3019 handler. */
3020 switch (type)
3021 {
3022 case N_STSYM:
3023 goto case_N_STSYM;
3024 case N_LCSYM:
3025 goto case_N_LCSYM;
3026 case N_ROSYM:
3027 goto case_N_ROSYM;
3028 default:
3029 internal_error (__FILE__, __LINE__,
3030 _("failed internal consistency check"));
3031 }
3032 }
3033
3034 case_N_STSYM: /* Static symbol in data segment. */
3035 case N_DSLINE: /* Source line number, data segment. */
3036 valu += ANOFFSET (section_offsets, SECT_OFF_DATA (objfile));
3037 goto define_a_symbol;
3038
3039 case_N_LCSYM: /* Static symbol in BSS segment. */
3040 case N_BSLINE: /* Source line number, BSS segment. */
3041 /* N_BROWS: overlaps with N_BSLINE. */
3042 valu += ANOFFSET (section_offsets, SECT_OFF_BSS (objfile));
3043 goto define_a_symbol;
3044
3045 case_N_ROSYM: /* Static symbol in read-only data segment. */
3046 valu += ANOFFSET (section_offsets, SECT_OFF_RODATA (objfile));
3047 goto define_a_symbol;
3048
3049 case N_ENTRY: /* Alternate entry point. */
3050 /* Relocate for dynamic loading. */
3051 valu += ANOFFSET (section_offsets, SECT_OFF_TEXT (objfile));
3052 goto define_a_symbol;
3053
3054 /* The following symbol types we don't know how to process.
3055 Handle them in a "default" way, but complain to people who
3056 care. */
3057 default:
3058 case N_CATCH: /* Exception handler catcher. */
3059 case N_EHDECL: /* Exception handler name. */
3060 case N_PC: /* Global symbol in Pascal. */
3061 case N_M2C: /* Modula-2 compilation unit. */
3062 /* N_MOD2: overlaps with N_EHDECL. */
3063 case N_SCOPE: /* Modula-2 scope information. */
3064 case N_ECOML: /* End common (local name). */
3065 case N_NBTEXT: /* Gould Non-Base-Register symbols??? */
3066 case N_NBDATA:
3067 case N_NBBSS:
3068 case N_NBSTS:
3069 case N_NBLCS:
3070 unknown_symtype_complaint (hex_string (type));
3071 /* FALLTHROUGH */
3072
3073 /* The following symbol types don't need the address field
3074 relocated, since it is either unused, or is absolute. */
3075 define_a_symbol:
3076 case N_GSYM: /* Global variable. */
3077 case N_NSYMS: /* Number of symbols (Ultrix). */
3078 case N_NOMAP: /* No map? (Ultrix). */
3079 case N_RSYM: /* Register variable. */
3080 case N_DEFD: /* Modula-2 GNU module dependency. */
3081 case N_SSYM: /* Struct or union element. */
3082 case N_LSYM: /* Local symbol in stack. */
3083 case N_PSYM: /* Parameter variable. */
3084 case N_LENG: /* Length of preceding symbol type. */
3085 if (name)
3086 {
3087 int deftype;
3088 char *colon_pos = strchr (name, ':');
3089 if (colon_pos == NULL)
3090 deftype = '\0';
3091 else
3092 deftype = colon_pos[1];
3093
3094 switch (deftype)
3095 {
3096 case 'f':
3097 case 'F':
3098 function_stab_type = type;
3099
3100 #ifdef SOFUN_ADDRESS_MAYBE_MISSING
3101 /* Deal with the SunPRO 3.0 compiler which omits the
3102 address from N_FUN symbols. */
3103 if (type == N_FUN
3104 && valu == ANOFFSET (section_offsets,
3105 SECT_OFF_TEXT (objfile)))
3106 {
3107 CORE_ADDR minsym_valu =
3108 find_stab_function_addr (name, last_source_file, objfile);
3109
3110 /* The function find_stab_function_addr will return
3111 0 if the minimal symbol wasn't found.
3112 (Unfortunately, this might also be a valid
3113 address.) Anyway, if it *does* return 0, it is
3114 likely that the value was set correctly to begin
3115 with... */
3116 if (minsym_valu != 0)
3117 valu = minsym_valu;
3118 }
3119 #endif
3120
3121 if (block_address_function_relative)
3122 /* For Solaris 2 compilers, the block addresses and
3123 N_SLINE's are relative to the start of the
3124 function. On normal systems, and when using GCC on
3125 Solaris 2, these addresses are just absolute, or
3126 relative to the N_SO, depending on
3127 BLOCK_ADDRESS_ABSOLUTE. */
3128 function_start_offset = valu;
3129
3130 within_function = 1;
3131
3132 if (context_stack_depth > 1)
3133 {
3134 complaint (&symfile_complaints,
3135 _("unmatched N_LBRAC before symtab pos %d"), symnum);
3136 break;
3137 }
3138
3139 if (context_stack_depth > 0)
3140 {
3141 new = pop_context ();
3142 /* Make a block for the local symbols within. */
3143 finish_block (new->name, &local_symbols, new->old_blocks,
3144 new->start_addr, valu, objfile);
3145 }
3146
3147 new = push_context (0, valu);
3148 new->name = define_symbol (valu, name, desc, type, objfile);
3149 break;
3150
3151 default:
3152 define_symbol (valu, name, desc, type, objfile);
3153 break;
3154 }
3155 }
3156 break;
3157
3158 /* We use N_OPT to carry the gcc2_compiled flag. Sun uses it
3159 for a bunch of other flags, too. Someday we may parse their
3160 flags; for now we ignore theirs and hope they'll ignore ours. */
3161 case N_OPT: /* Solaris 2: Compiler options. */
3162 if (name)
3163 {
3164 if (strcmp (name, GCC2_COMPILED_FLAG_SYMBOL) == 0)
3165 {
3166 processing_gcc_compilation = 2;
3167 #if 0 /* Works, but is experimental. -fnf */
3168 /* For now, stay with AUTO_DEMANGLING for g++ output, as
3169 we don't know whether it will use the old style or v3
3170 mangling. */
3171 if (AUTO_DEMANGLING)
3172 {
3173 set_demangling_style (GNU_DEMANGLING_STYLE_STRING);
3174 }
3175 #endif
3176 }
3177 else
3178 n_opt_found = 1;
3179 }
3180 break;
3181
3182 case N_MAIN: /* Name of main routine. */
3183 /* FIXME: If one has a symbol file with N_MAIN and then replaces
3184 it with a symbol file with "main" and without N_MAIN. I'm
3185 not sure exactly what rule to follow but probably something
3186 like: N_MAIN takes precedence over "main" no matter what
3187 objfile it is in; If there is more than one N_MAIN, choose
3188 the one in the symfile_objfile; If there is more than one
3189 N_MAIN within a given objfile, complain() and choose
3190 arbitrarily. (kingdon) */
3191 if (name != NULL)
3192 set_main_name (name);
3193 break;
3194
3195 /* The following symbol types can be ignored. */
3196 case N_OBJ: /* Solaris 2: Object file dir and name. */
3197 case N_PATCH: /* Solaris 2: Patch Run Time Checker. */
3198 /* N_UNDF: Solaris 2: File separator mark. */
3199 /* N_UNDF: -- we will never encounter it, since we only process
3200 one file's symbols at once. */
3201 case N_ENDM: /* Solaris 2: End of module. */
3202 case N_ALIAS: /* SunPro F77: alias name, ignore for now. */
3203 break;
3204 }
3205
3206 /* '#' is a GNU C extension to allow one symbol to refer to another
3207 related symbol.
3208
3209 Generally this is used so that an alias can refer to its main
3210 symbol. */
3211 if (name[0] == '#')
3212 {
3213 /* Initialize symbol reference names and determine if this is a
3214 definition. If a symbol reference is being defined, go ahead
3215 and add it. Otherwise, just return. */
3216
3217 char *s = name;
3218 int refnum;
3219
3220 /* If this stab defines a new reference ID that is not on the
3221 reference list, then put it on the reference list.
3222
3223 We go ahead and advance NAME past the reference, even though
3224 it is not strictly necessary at this time. */
3225 refnum = symbol_reference_defined (&s);
3226 if (refnum >= 0)
3227 if (!ref_search (refnum))
3228 ref_add (refnum, 0, name, valu);
3229 name = s;
3230 }
3231
3232 previous_stab_code = type;
3233 }
3234 \f
3235 /* FIXME: The only difference between this and elfstab_build_psymtabs
3236 is the call to install_minimal_symbols for elf, and the support for
3237 split sections. If the differences are really that small, the code
3238 should be shared. */
3239
3240 /* Scan and build partial symbols for an coff symbol file.
3241 The coff file has already been processed to get its minimal symbols.
3242
3243 This routine is the equivalent of dbx_symfile_init and dbx_symfile_read
3244 rolled into one.
3245
3246 OBJFILE is the object file we are reading symbols from.
3247 ADDR is the address relative to which the symbols are (e.g.
3248 the base address of the text segment).
3249 MAINLINE is true if we are reading the main symbol
3250 table (as opposed to a shared lib or dynamically loaded file).
3251 TEXTADDR is the address of the text section.
3252 TEXTSIZE is the size of the text section.
3253 STABSECTS is the list of .stab sections in OBJFILE.
3254 STABSTROFFSET and STABSTRSIZE define the location in OBJFILE where the
3255 .stabstr section exists.
3256
3257 This routine is mostly copied from dbx_symfile_init and dbx_symfile_read,
3258 adjusted for coff details. */
3259
3260 void
3261 coffstab_build_psymtabs (struct objfile *objfile, int mainline,
3262 CORE_ADDR textaddr, unsigned int textsize,
3263 struct stab_section_list *stabsects,
3264 file_ptr stabstroffset, unsigned int stabstrsize)
3265 {
3266 int val;
3267 bfd *sym_bfd = objfile->obfd;
3268 char *name = bfd_get_filename (sym_bfd);
3269 struct dbx_symfile_info *info;
3270 unsigned int stabsize;
3271
3272 /* There is already a dbx_symfile_info allocated by our caller.
3273 It might even contain some info from the coff symtab to help us. */
3274 info = objfile->deprecated_sym_stab_info;
3275
3276 DBX_TEXT_ADDR (objfile) = textaddr;
3277 DBX_TEXT_SIZE (objfile) = textsize;
3278
3279 #define COFF_STABS_SYMBOL_SIZE 12 /* XXX FIXME XXX */
3280 DBX_SYMBOL_SIZE (objfile) = COFF_STABS_SYMBOL_SIZE;
3281 DBX_STRINGTAB_SIZE (objfile) = stabstrsize;
3282
3283 if (stabstrsize > bfd_get_size (sym_bfd))
3284 error (_("ridiculous string table size: %d bytes"), stabstrsize);
3285 DBX_STRINGTAB (objfile) = (char *)
3286 obstack_alloc (&objfile->objfile_obstack, stabstrsize + 1);
3287 OBJSTAT (objfile, sz_strtab += stabstrsize + 1);
3288
3289 /* Now read in the string table in one big gulp. */
3290
3291 val = bfd_seek (sym_bfd, stabstroffset, SEEK_SET);
3292 if (val < 0)
3293 perror_with_name (name);
3294 val = bfd_bread (DBX_STRINGTAB (objfile), stabstrsize, sym_bfd);
3295 if (val != stabstrsize)
3296 perror_with_name (name);
3297
3298 stabsread_new_init ();
3299 buildsym_new_init ();
3300 free_header_files ();
3301 init_header_files ();
3302
3303 processing_acc_compilation = 1;
3304
3305 /* In a coff file, we've already installed the minimal symbols that came
3306 from the coff (non-stab) symbol table, so always act like an
3307 incremental load here. */
3308 if (stabsects->next == NULL)
3309 {
3310 stabsize = bfd_section_size (sym_bfd, stabsects->section);
3311 DBX_SYMCOUNT (objfile) = stabsize / DBX_SYMBOL_SIZE (objfile);
3312 DBX_SYMTAB_OFFSET (objfile) = stabsects->section->filepos;
3313 }
3314 else
3315 {
3316 struct stab_section_list *stabsect;
3317
3318 DBX_SYMCOUNT (objfile) = 0;
3319 for (stabsect = stabsects; stabsect != NULL; stabsect = stabsect->next)
3320 {
3321 stabsize = bfd_section_size (sym_bfd, stabsect->section);
3322 DBX_SYMCOUNT (objfile) += stabsize / DBX_SYMBOL_SIZE (objfile);
3323 }
3324
3325 DBX_SYMTAB_OFFSET (objfile) = stabsects->section->filepos;
3326
3327 symbuf_sections = stabsects->next;
3328 symbuf_left = bfd_section_size (sym_bfd, stabsects->section);
3329 symbuf_read = 0;
3330 }
3331
3332 dbx_symfile_read (objfile, 0);
3333 }
3334 \f
3335 /* Scan and build partial symbols for an ELF symbol file.
3336 This ELF file has already been processed to get its minimal symbols.
3337
3338 This routine is the equivalent of dbx_symfile_init and dbx_symfile_read
3339 rolled into one.
3340
3341 OBJFILE is the object file we are reading symbols from.
3342 ADDR is the address relative to which the symbols are (e.g.
3343 the base address of the text segment).
3344 MAINLINE is true if we are reading the main symbol
3345 table (as opposed to a shared lib or dynamically loaded file).
3346 STABSECT is the BFD section information for the .stab section.
3347 STABSTROFFSET and STABSTRSIZE define the location in OBJFILE where the
3348 .stabstr section exists.
3349
3350 This routine is mostly copied from dbx_symfile_init and dbx_symfile_read,
3351 adjusted for elf details. */
3352
3353 void
3354 elfstab_build_psymtabs (struct objfile *objfile, int mainline,
3355 asection *stabsect,
3356 file_ptr stabstroffset, unsigned int stabstrsize)
3357 {
3358 int val;
3359 bfd *sym_bfd = objfile->obfd;
3360 char *name = bfd_get_filename (sym_bfd);
3361 struct dbx_symfile_info *info;
3362 struct cleanup *back_to = NULL;
3363
3364 /* There is already a dbx_symfile_info allocated by our caller.
3365 It might even contain some info from the ELF symtab to help us. */
3366 info = objfile->deprecated_sym_stab_info;
3367
3368 /* Find the first and last text address. dbx_symfile_read seems to
3369 want this. */
3370 find_text_range (sym_bfd, objfile);
3371
3372 #define ELF_STABS_SYMBOL_SIZE 12 /* XXX FIXME XXX */
3373 DBX_SYMBOL_SIZE (objfile) = ELF_STABS_SYMBOL_SIZE;
3374 DBX_SYMCOUNT (objfile)
3375 = bfd_section_size (objfile->obfd, stabsect) / DBX_SYMBOL_SIZE (objfile);
3376 DBX_STRINGTAB_SIZE (objfile) = stabstrsize;
3377 DBX_SYMTAB_OFFSET (objfile) = stabsect->filepos;
3378 DBX_STAB_SECTION (objfile) = stabsect;
3379
3380 if (stabstrsize > bfd_get_size (sym_bfd))
3381 error (_("ridiculous string table size: %d bytes"), stabstrsize);
3382 DBX_STRINGTAB (objfile) = (char *)
3383 obstack_alloc (&objfile->objfile_obstack, stabstrsize + 1);
3384 OBJSTAT (objfile, sz_strtab += stabstrsize + 1);
3385
3386 /* Now read in the string table in one big gulp. */
3387
3388 val = bfd_seek (sym_bfd, stabstroffset, SEEK_SET);
3389 if (val < 0)
3390 perror_with_name (name);
3391 val = bfd_bread (DBX_STRINGTAB (objfile), stabstrsize, sym_bfd);
3392 if (val != stabstrsize)
3393 perror_with_name (name);
3394
3395 stabsread_new_init ();
3396 buildsym_new_init ();
3397 free_header_files ();
3398 init_header_files ();
3399
3400 processing_acc_compilation = 1;
3401
3402 symbuf_read = 0;
3403 symbuf_left = bfd_section_size (objfile->obfd, stabsect);
3404 stabs_data = symfile_relocate_debug_section (objfile->obfd, stabsect, NULL);
3405 if (stabs_data)
3406 back_to = make_cleanup (free_current_contents, (void *) &stabs_data);
3407
3408 /* In an elf file, we've already installed the minimal symbols that came
3409 from the elf (non-stab) symbol table, so always act like an
3410 incremental load here. dbx_symfile_read should not generate any new
3411 minimal symbols, since we will have already read the ELF dynamic symbol
3412 table and normal symbol entries won't be in the ".stab" section; but in
3413 case it does, it will install them itself. */
3414 dbx_symfile_read (objfile, 0);
3415
3416 if (back_to)
3417 do_cleanups (back_to);
3418 }
3419 \f
3420 /* Scan and build partial symbols for a file with special sections for stabs
3421 and stabstrings. The file has already been processed to get its minimal
3422 symbols, and any other symbols that might be necessary to resolve GSYMs.
3423
3424 This routine is the equivalent of dbx_symfile_init and dbx_symfile_read
3425 rolled into one.
3426
3427 OBJFILE is the object file we are reading symbols from.
3428 ADDR is the address relative to which the symbols are (e.g. the base address
3429 of the text segment).
3430 MAINLINE is true if we are reading the main symbol table (as opposed to a
3431 shared lib or dynamically loaded file).
3432 STAB_NAME is the name of the section that contains the stabs.
3433 STABSTR_NAME is the name of the section that contains the stab strings.
3434
3435 This routine is mostly copied from dbx_symfile_init and dbx_symfile_read. */
3436
3437 void
3438 stabsect_build_psymtabs (struct objfile *objfile, int mainline, char *stab_name,
3439 char *stabstr_name, char *text_name)
3440 {
3441 int val;
3442 bfd *sym_bfd = objfile->obfd;
3443 char *name = bfd_get_filename (sym_bfd);
3444 asection *stabsect;
3445 asection *stabstrsect;
3446 asection *text_sect;
3447
3448 stabsect = bfd_get_section_by_name (sym_bfd, stab_name);
3449 stabstrsect = bfd_get_section_by_name (sym_bfd, stabstr_name);
3450
3451 if (!stabsect)
3452 return;
3453
3454 if (!stabstrsect)
3455 error (_("stabsect_build_psymtabs: Found stabs (%s), but not string section (%s)"),
3456 stab_name, stabstr_name);
3457
3458 objfile->deprecated_sym_stab_info = (struct dbx_symfile_info *)
3459 xmalloc (sizeof (struct dbx_symfile_info));
3460 memset (objfile->deprecated_sym_stab_info, 0, sizeof (struct dbx_symfile_info));
3461
3462 text_sect = bfd_get_section_by_name (sym_bfd, text_name);
3463 if (!text_sect)
3464 error (_("Can't find %s section in symbol file"), text_name);
3465 DBX_TEXT_ADDR (objfile) = bfd_section_vma (sym_bfd, text_sect);
3466 DBX_TEXT_SIZE (objfile) = bfd_section_size (sym_bfd, text_sect);
3467
3468 DBX_SYMBOL_SIZE (objfile) = sizeof (struct external_nlist);
3469 DBX_SYMCOUNT (objfile) = bfd_section_size (sym_bfd, stabsect)
3470 / DBX_SYMBOL_SIZE (objfile);
3471 DBX_STRINGTAB_SIZE (objfile) = bfd_section_size (sym_bfd, stabstrsect);
3472 DBX_SYMTAB_OFFSET (objfile) = stabsect->filepos; /* XXX - FIXME: POKING INSIDE BFD DATA STRUCTURES */
3473
3474 if (DBX_STRINGTAB_SIZE (objfile) > bfd_get_size (sym_bfd))
3475 error (_("ridiculous string table size: %d bytes"), DBX_STRINGTAB_SIZE (objfile));
3476 DBX_STRINGTAB (objfile) = (char *)
3477 obstack_alloc (&objfile->objfile_obstack, DBX_STRINGTAB_SIZE (objfile) + 1);
3478 OBJSTAT (objfile, sz_strtab += DBX_STRINGTAB_SIZE (objfile) + 1);
3479
3480 /* Now read in the string table in one big gulp. */
3481
3482 val = bfd_get_section_contents (sym_bfd, /* bfd */
3483 stabstrsect, /* bfd section */
3484 DBX_STRINGTAB (objfile), /* input buffer */
3485 0, /* offset into section */
3486 DBX_STRINGTAB_SIZE (objfile)); /* amount to read */
3487
3488 if (!val)
3489 perror_with_name (name);
3490
3491 stabsread_new_init ();
3492 buildsym_new_init ();
3493 free_header_files ();
3494 init_header_files ();
3495
3496 /* Now, do an incremental load */
3497
3498 processing_acc_compilation = 1;
3499 dbx_symfile_read (objfile, 0);
3500 }
3501 \f
3502 static struct sym_fns aout_sym_fns =
3503 {
3504 bfd_target_aout_flavour,
3505 dbx_new_init, /* sym_new_init: init anything gbl to entire symtab */
3506 dbx_symfile_init, /* sym_init: read initial info, setup for sym_read() */
3507 dbx_symfile_read, /* sym_read: read a symbol file into symtab */
3508 dbx_symfile_finish, /* sym_finish: finished with file, cleanup */
3509 default_symfile_offsets, /* sym_offsets: parse user's offsets to internal form */
3510 default_symfile_segments, /* sym_segments: Get segment information from
3511 a file. */
3512 NULL /* next: pointer to next struct sym_fns */
3513 };
3514
3515 void
3516 _initialize_dbxread (void)
3517 {
3518 add_symtab_fns (&aout_sym_fns);
3519 }
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