Convert coffread.c to type-safe registry API
[deliverable/binutils-gdb.git] / gdb / coffread.c
1 /* Read coff symbol tables and convert to internal format, for GDB.
2 Copyright (C) 1987-2019 Free Software Foundation, Inc.
3 Contributed by David D. Johnson, Brown University (ddj@cs.brown.edu).
4
5 This file is part of GDB.
6
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3 of the License, or
10 (at your option) any later version.
11
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
19
20 #include "defs.h"
21 #include "symtab.h"
22 #include "gdbtypes.h"
23 #include "demangle.h"
24 #include "breakpoint.h"
25
26 #include "bfd.h"
27 #include "gdb_obstack.h"
28 #include <ctype.h>
29
30 #include "coff/internal.h" /* Internal format of COFF symbols in BFD */
31 #include "libcoff.h" /* FIXME secret internal data from BFD */
32 #include "objfiles.h"
33 #include "buildsym-legacy.h"
34 #include "gdb-stabs.h"
35 #include "stabsread.h"
36 #include "complaints.h"
37 #include "target.h"
38 #include "block.h"
39 #include "dictionary.h"
40
41 #include "coff-pe-read.h"
42
43 #include "psymtab.h"
44 #include "build-id.h"
45
46 /* The objfile we are currently reading. */
47
48 static struct objfile *coffread_objfile;
49
50 struct coff_symfile_info
51 {
52 file_ptr min_lineno_offset = 0; /* Where in file lowest line#s are. */
53 file_ptr max_lineno_offset = 0; /* 1+last byte of line#s in file. */
54
55 CORE_ADDR textaddr = 0; /* Addr of .text section. */
56 unsigned int textsize = 0; /* Size of .text section. */
57 std::vector<asection *> *stabsects; /* .stab sections. */
58 asection *stabstrsect = nullptr; /* Section pointer for .stab section. */
59 char *stabstrdata = nullptr;
60 };
61
62 /* Key for COFF-associated data. */
63
64 static const struct objfile_key<coff_symfile_info> coff_objfile_data_key;
65
66 /* Translate an external name string into a user-visible name. */
67 #define EXTERNAL_NAME(string, abfd) \
68 (string[0] == bfd_get_symbol_leading_char (abfd) \
69 ? string + 1 : string)
70
71 /* To be an sdb debug type, type must have at least a basic or primary
72 derived type. Using this rather than checking against T_NULL is
73 said to prevent core dumps if we try to operate on Michael Bloom
74 dbx-in-coff file. */
75
76 #define SDB_TYPE(type) (BTYPE(type) | (type & N_TMASK))
77
78 /* Core address of start and end of text of current source file.
79 This comes from a ".text" symbol where x_nlinno > 0. */
80
81 static CORE_ADDR current_source_start_addr;
82 static CORE_ADDR current_source_end_addr;
83
84 /* The addresses of the symbol table stream and number of symbols
85 of the object file we are reading (as copied into core). */
86
87 static bfd *nlist_bfd_global;
88 static int nlist_nsyms_global;
89
90
91 /* Pointers to scratch storage, used for reading raw symbols and
92 auxents. */
93
94 static char *temp_sym;
95 static char *temp_aux;
96
97 /* Local variables that hold the shift and mask values for the
98 COFF file that we are currently reading. These come back to us
99 from BFD, and are referenced by their macro names, as well as
100 internally to the BTYPE, ISPTR, ISFCN, ISARY, ISTAG, and DECREF
101 macros from include/coff/internal.h . */
102
103 static unsigned local_n_btmask;
104 static unsigned local_n_btshft;
105 static unsigned local_n_tmask;
106 static unsigned local_n_tshift;
107
108 #define N_BTMASK local_n_btmask
109 #define N_BTSHFT local_n_btshft
110 #define N_TMASK local_n_tmask
111 #define N_TSHIFT local_n_tshift
112
113 /* Local variables that hold the sizes in the file of various COFF
114 structures. (We only need to know this to read them from the file
115 -- BFD will then translate the data in them, into `internal_xxx'
116 structs in the right byte order, alignment, etc.) */
117
118 static unsigned local_linesz;
119 static unsigned local_symesz;
120 static unsigned local_auxesz;
121
122 /* This is set if this is a PE format file. */
123
124 static int pe_file;
125
126 /* Chain of typedefs of pointers to empty struct/union types.
127 They are chained thru the SYMBOL_VALUE_CHAIN. */
128
129 static struct symbol *opaque_type_chain[HASHSIZE];
130
131 /* Simplified internal version of coff symbol table information. */
132
133 struct coff_symbol
134 {
135 char *c_name;
136 int c_symnum; /* Symbol number of this entry. */
137 int c_naux; /* 0 if syment only, 1 if syment +
138 auxent, etc. */
139 CORE_ADDR c_value;
140 int c_sclass;
141 int c_secnum;
142 unsigned int c_type;
143 };
144
145 /* Vector of types defined so far, indexed by their type numbers. */
146
147 static struct type **type_vector;
148
149 /* Number of elements allocated for type_vector currently. */
150
151 static int type_vector_length;
152
153 /* Initial size of type vector. Is realloc'd larger if needed, and
154 realloc'd down to the size actually used, when completed. */
155
156 #define INITIAL_TYPE_VECTOR_LENGTH 160
157
158 static char *linetab = NULL;
159 static long linetab_offset;
160 static unsigned long linetab_size;
161
162 static char *stringtab = NULL;
163
164 extern void stabsread_clear_cache (void);
165
166 static struct type *coff_read_struct_type (int, int, int,
167 struct objfile *);
168
169 static struct type *decode_base_type (struct coff_symbol *,
170 unsigned int,
171 union internal_auxent *,
172 struct objfile *);
173
174 static struct type *decode_type (struct coff_symbol *, unsigned int,
175 union internal_auxent *,
176 struct objfile *);
177
178 static struct type *decode_function_type (struct coff_symbol *,
179 unsigned int,
180 union internal_auxent *,
181 struct objfile *);
182
183 static struct type *coff_read_enum_type (int, int, int,
184 struct objfile *);
185
186 static struct symbol *process_coff_symbol (struct coff_symbol *,
187 union internal_auxent *,
188 struct objfile *);
189
190 static void patch_opaque_types (struct symtab *);
191
192 static void enter_linenos (long, int, int, struct objfile *);
193
194 static int init_lineno (bfd *, long, int, gdb::unique_xmalloc_ptr<char> *);
195
196 static char *getsymname (struct internal_syment *);
197
198 static const char *coff_getfilename (union internal_auxent *);
199
200 static int init_stringtab (bfd *, long, gdb::unique_xmalloc_ptr<char> *);
201
202 static void read_one_sym (struct coff_symbol *,
203 struct internal_syment *,
204 union internal_auxent *);
205
206 static void coff_symtab_read (minimal_symbol_reader &,
207 long, unsigned int, struct objfile *);
208 \f
209 /* We are called once per section from coff_symfile_read. We
210 need to examine each section we are passed, check to see
211 if it is something we are interested in processing, and
212 if so, stash away some access information for the section.
213
214 FIXME: The section names should not be hardwired strings (what
215 should they be? I don't think most object file formats have enough
216 section flags to specify what kind of debug section it is
217 -kingdon). */
218
219 static void
220 coff_locate_sections (bfd *abfd, asection *sectp, void *csip)
221 {
222 struct coff_symfile_info *csi;
223 const char *name;
224
225 csi = (struct coff_symfile_info *) csip;
226 name = bfd_get_section_name (abfd, sectp);
227 if (strcmp (name, ".text") == 0)
228 {
229 csi->textaddr = bfd_section_vma (abfd, sectp);
230 csi->textsize += bfd_section_size (abfd, sectp);
231 }
232 else if (startswith (name, ".text"))
233 {
234 csi->textsize += bfd_section_size (abfd, sectp);
235 }
236 else if (strcmp (name, ".stabstr") == 0)
237 {
238 csi->stabstrsect = sectp;
239 }
240 else if (startswith (name, ".stab"))
241 {
242 const char *s;
243
244 /* We can have multiple .stab sections if linked with
245 --split-by-reloc. */
246 for (s = name + sizeof ".stab" - 1; *s != '\0'; s++)
247 if (!isdigit (*s))
248 break;
249 if (*s == '\0')
250 csi->stabsects->push_back (sectp);
251 }
252 }
253
254 /* Return the section_offsets* that CS points to. */
255 static int cs_to_section (struct coff_symbol *, struct objfile *);
256
257 struct find_targ_sec_arg
258 {
259 int targ_index;
260 asection **resultp;
261 };
262
263 static void
264 find_targ_sec (bfd *abfd, asection *sect, void *obj)
265 {
266 struct find_targ_sec_arg *args = (struct find_targ_sec_arg *) obj;
267
268 if (sect->target_index == args->targ_index)
269 *args->resultp = sect;
270 }
271
272 /* Return the bfd_section that CS points to. */
273 static struct bfd_section*
274 cs_to_bfd_section (struct coff_symbol *cs, struct objfile *objfile)
275 {
276 asection *sect = NULL;
277 struct find_targ_sec_arg args;
278
279 args.targ_index = cs->c_secnum;
280 args.resultp = &sect;
281 bfd_map_over_sections (objfile->obfd, find_targ_sec, &args);
282 return sect;
283 }
284
285 /* Return the section number (SECT_OFF_*) that CS points to. */
286 static int
287 cs_to_section (struct coff_symbol *cs, struct objfile *objfile)
288 {
289 asection *sect = cs_to_bfd_section (cs, objfile);
290
291 if (sect == NULL)
292 return SECT_OFF_TEXT (objfile);
293 return gdb_bfd_section_index (objfile->obfd, sect);
294 }
295
296 /* Return the address of the section of a COFF symbol. */
297
298 static CORE_ADDR cs_section_address (struct coff_symbol *, bfd *);
299
300 static CORE_ADDR
301 cs_section_address (struct coff_symbol *cs, bfd *abfd)
302 {
303 asection *sect = NULL;
304 struct find_targ_sec_arg args;
305 CORE_ADDR addr = 0;
306
307 args.targ_index = cs->c_secnum;
308 args.resultp = &sect;
309 bfd_map_over_sections (abfd, find_targ_sec, &args);
310 if (sect != NULL)
311 addr = bfd_get_section_vma (abfd, sect);
312 return addr;
313 }
314
315 /* Look up a coff type-number index. Return the address of the slot
316 where the type for that index is stored.
317 The type-number is in INDEX.
318
319 This can be used for finding the type associated with that index
320 or for associating a new type with the index. */
321
322 static struct type **
323 coff_lookup_type (int index)
324 {
325 if (index >= type_vector_length)
326 {
327 int old_vector_length = type_vector_length;
328
329 type_vector_length *= 2;
330 if (index /* is still */ >= type_vector_length)
331 type_vector_length = index * 2;
332
333 type_vector = (struct type **)
334 xrealloc ((char *) type_vector,
335 type_vector_length * sizeof (struct type *));
336 memset (&type_vector[old_vector_length], 0,
337 (type_vector_length - old_vector_length) * sizeof (struct type *));
338 }
339 return &type_vector[index];
340 }
341
342 /* Make sure there is a type allocated for type number index
343 and return the type object.
344 This can create an empty (zeroed) type object. */
345
346 static struct type *
347 coff_alloc_type (int index)
348 {
349 struct type **type_addr = coff_lookup_type (index);
350 struct type *type = *type_addr;
351
352 /* If we are referring to a type not known at all yet,
353 allocate an empty type for it.
354 We will fill it in later if we find out how. */
355 if (type == NULL)
356 {
357 type = alloc_type (coffread_objfile);
358 *type_addr = type;
359 }
360 return type;
361 }
362 \f
363 /* Start a new symtab for a new source file.
364 This is called when a COFF ".file" symbol is seen;
365 it indicates the start of data for one original source file. */
366
367 static void
368 coff_start_symtab (struct objfile *objfile, const char *name)
369 {
370 within_function = 0;
371 start_symtab (objfile,
372 name,
373 /* We never know the directory name for COFF. */
374 NULL,
375 /* The start address is irrelevant, since we call
376 set_last_source_start_addr in coff_end_symtab. */
377 0,
378 /* Let buildsym.c deduce the language for this symtab. */
379 language_unknown);
380 record_debugformat ("COFF");
381 }
382
383 /* Save the vital information from when starting to read a file,
384 for use when closing off the current file.
385 NAME is the file name the symbols came from, START_ADDR is the
386 first text address for the file, and SIZE is the number of bytes of
387 text. */
388
389 static void
390 complete_symtab (const char *name, CORE_ADDR start_addr, unsigned int size)
391 {
392 set_last_source_file (name);
393 current_source_start_addr = start_addr;
394 current_source_end_addr = start_addr + size;
395 }
396
397 /* Finish the symbol definitions for one main source file, close off
398 all the lexical contexts for that file (creating struct block's for
399 them), then make the struct symtab for that file and put it in the
400 list of all such. */
401
402 static void
403 coff_end_symtab (struct objfile *objfile)
404 {
405 set_last_source_start_addr (current_source_start_addr);
406
407 end_symtab (current_source_end_addr, SECT_OFF_TEXT (objfile));
408
409 /* Reinitialize for beginning of new file. */
410 set_last_source_file (NULL);
411 }
412 \f
413 /* The linker sometimes generates some non-function symbols inside
414 functions referencing variables imported from another DLL.
415 Return nonzero if the given symbol corresponds to one of them. */
416
417 static int
418 is_import_fixup_symbol (struct coff_symbol *cs,
419 enum minimal_symbol_type type)
420 {
421 /* The following is a bit of a heuristic using the characterictics
422 of these fixup symbols, but should work well in practice... */
423 int i;
424
425 /* Must be a non-static text symbol. */
426 if (type != mst_text)
427 return 0;
428
429 /* Must be a non-function symbol. */
430 if (ISFCN (cs->c_type))
431 return 0;
432
433 /* The name must start with "__fu<digits>__". */
434 if (!startswith (cs->c_name, "__fu"))
435 return 0;
436 if (! isdigit (cs->c_name[4]))
437 return 0;
438 for (i = 5; cs->c_name[i] != '\0' && isdigit (cs->c_name[i]); i++)
439 /* Nothing, just incrementing index past all digits. */;
440 if (cs->c_name[i] != '_' || cs->c_name[i + 1] != '_')
441 return 0;
442
443 return 1;
444 }
445
446 static struct minimal_symbol *
447 record_minimal_symbol (minimal_symbol_reader &reader,
448 struct coff_symbol *cs, CORE_ADDR address,
449 enum minimal_symbol_type type, int section,
450 struct objfile *objfile)
451 {
452 /* We don't want TDESC entry points in the minimal symbol table. */
453 if (cs->c_name[0] == '@')
454 return NULL;
455
456 if (is_import_fixup_symbol (cs, type))
457 {
458 /* Because the value of these symbols is within a function code
459 range, these symbols interfere with the symbol-from-address
460 reverse lookup; this manifests itselfs in backtraces, or any
461 other commands that prints symbolic addresses. Just pretend
462 these symbols do not exist. */
463 return NULL;
464 }
465
466 return reader.record_full (cs->c_name, strlen (cs->c_name), true, address,
467 type, section);
468 }
469 \f
470 /* coff_symfile_init ()
471 is the coff-specific initialization routine for reading symbols.
472 It is passed a struct objfile which contains, among other things,
473 the BFD for the file whose symbols are being read, and a slot for
474 a pointer to "private data" which we fill with cookies and other
475 treats for coff_symfile_read ().
476
477 We will only be called if this is a COFF or COFF-like file. BFD
478 handles figuring out the format of the file, and code in symtab.c
479 uses BFD's determination to vector to us.
480
481 The ultimate result is a new symtab (or, FIXME, eventually a
482 psymtab). */
483
484 static void
485 coff_symfile_init (struct objfile *objfile)
486 {
487 struct dbx_symfile_info *dbx;
488
489 /* Allocate struct to keep track of stab reading. */
490 dbx = XCNEW (struct dbx_symfile_info);
491 set_objfile_data (objfile, dbx_objfile_data_key, dbx);
492
493 /* Allocate struct to keep track of the symfile. */
494 coff_objfile_data_key.emplace (objfile);
495
496 /* COFF objects may be reordered, so set OBJF_REORDERED. If we
497 find this causes a significant slowdown in gdb then we could
498 set it in the debug symbol readers only when necessary. */
499 objfile->flags |= OBJF_REORDERED;
500 }
501
502 /* This function is called for every section; it finds the outer
503 limits of the line table (minimum and maximum file offset) so that
504 the mainline code can read the whole thing for efficiency. */
505
506 static void
507 find_linenos (bfd *abfd, struct bfd_section *asect, void *vpinfo)
508 {
509 struct coff_symfile_info *info;
510 int size, count;
511 file_ptr offset, maxoff;
512
513 /* WARNING WILL ROBINSON! ACCESSING BFD-PRIVATE DATA HERE! FIXME! */
514 count = asect->lineno_count;
515 /* End of warning. */
516
517 if (count == 0)
518 return;
519 size = count * local_linesz;
520
521 info = (struct coff_symfile_info *) vpinfo;
522 /* WARNING WILL ROBINSON! ACCESSING BFD-PRIVATE DATA HERE! FIXME! */
523 offset = asect->line_filepos;
524 /* End of warning. */
525
526 if (offset < info->min_lineno_offset || info->min_lineno_offset == 0)
527 info->min_lineno_offset = offset;
528
529 maxoff = offset + size;
530 if (maxoff > info->max_lineno_offset)
531 info->max_lineno_offset = maxoff;
532 }
533
534
535 /* The BFD for this file -- only good while we're actively reading
536 symbols into a psymtab or a symtab. */
537
538 static bfd *symfile_bfd;
539
540 /* Read a symbol file, after initialization by coff_symfile_init. */
541
542 static void
543 coff_symfile_read (struct objfile *objfile, symfile_add_flags symfile_flags)
544 {
545 struct coff_symfile_info *info;
546 bfd *abfd = objfile->obfd;
547 coff_data_type *cdata = coff_data (abfd);
548 char *filename = bfd_get_filename (abfd);
549 int val;
550 unsigned int num_symbols;
551 int symtab_offset;
552 int stringtab_offset;
553 int stabstrsize;
554
555 info = coff_objfile_data_key.get (objfile);
556 symfile_bfd = abfd; /* Kludge for swap routines. */
557
558 std::vector<asection *> stabsects;
559 scoped_restore restore_stabsects
560 = make_scoped_restore (&info->stabsects, &stabsects);
561
562 /* WARNING WILL ROBINSON! ACCESSING BFD-PRIVATE DATA HERE! FIXME! */
563 num_symbols = bfd_get_symcount (abfd); /* How many syms */
564 symtab_offset = cdata->sym_filepos; /* Symbol table file offset */
565 stringtab_offset = symtab_offset + /* String table file offset */
566 num_symbols * cdata->local_symesz;
567
568 /* Set a few file-statics that give us specific information about
569 the particular COFF file format we're reading. */
570 local_n_btmask = cdata->local_n_btmask;
571 local_n_btshft = cdata->local_n_btshft;
572 local_n_tmask = cdata->local_n_tmask;
573 local_n_tshift = cdata->local_n_tshift;
574 local_linesz = cdata->local_linesz;
575 local_symesz = cdata->local_symesz;
576 local_auxesz = cdata->local_auxesz;
577
578 /* Allocate space for raw symbol and aux entries, based on their
579 space requirements as reported by BFD. */
580 gdb::def_vector<char> temp_storage (cdata->local_symesz
581 + cdata->local_auxesz);
582 temp_sym = temp_storage.data ();
583 temp_aux = temp_sym + cdata->local_symesz;
584
585 /* We need to know whether this is a PE file, because in PE files,
586 unlike standard COFF files, symbol values are stored as offsets
587 from the section address, rather than as absolute addresses.
588 FIXME: We should use BFD to read the symbol table, and thus avoid
589 this problem. */
590 pe_file =
591 startswith (bfd_get_target (objfile->obfd), "pe")
592 || startswith (bfd_get_target (objfile->obfd), "epoc-pe");
593
594 /* End of warning. */
595
596 info->min_lineno_offset = 0;
597 info->max_lineno_offset = 0;
598
599 /* Only read line number information if we have symbols.
600
601 On Windows NT, some of the system's DLL's have sections with
602 PointerToLinenumbers fields that are non-zero, but point at
603 random places within the image file. (In the case I found,
604 KERNEL32.DLL's .text section has a line number info pointer that
605 points into the middle of the string `lib\\i386\kernel32.dll'.)
606
607 However, these DLL's also have no symbols. The line number
608 tables are meaningless without symbols. And in fact, GDB never
609 uses the line number information unless there are symbols. So we
610 can avoid spurious error messages (and maybe run a little
611 faster!) by not even reading the line number table unless we have
612 symbols. */
613 scoped_restore restore_linetab = make_scoped_restore (&linetab);
614 gdb::unique_xmalloc_ptr<char> linetab_storage;
615 if (num_symbols > 0)
616 {
617 /* Read the line number table, all at once. */
618 bfd_map_over_sections (abfd, find_linenos, (void *) info);
619
620 val = init_lineno (abfd, info->min_lineno_offset,
621 info->max_lineno_offset - info->min_lineno_offset,
622 &linetab_storage);
623 if (val < 0)
624 error (_("\"%s\": error reading line numbers."), filename);
625 }
626
627 /* Now read the string table, all at once. */
628
629 scoped_restore restore_stringtab = make_scoped_restore (&stringtab);
630 gdb::unique_xmalloc_ptr<char> stringtab_storage;
631 val = init_stringtab (abfd, stringtab_offset, &stringtab_storage);
632 if (val < 0)
633 error (_("\"%s\": can't get string table"), filename);
634
635 minimal_symbol_reader reader (objfile);
636
637 /* Now that the executable file is positioned at symbol table,
638 process it and define symbols accordingly. */
639
640 coff_symtab_read (reader, (long) symtab_offset, num_symbols, objfile);
641
642 /* Install any minimal symbols that have been collected as the
643 current minimal symbols for this objfile. */
644
645 reader.install ();
646
647 if (pe_file)
648 {
649 for (minimal_symbol *msym : objfile->msymbols ())
650 {
651 const char *name = MSYMBOL_LINKAGE_NAME (msym);
652
653 /* If the minimal symbols whose name are prefixed by "__imp_"
654 or "_imp_", get rid of the prefix, and search the minimal
655 symbol in OBJFILE. Note that 'maintenance print msymbols'
656 shows that type of these "_imp_XXXX" symbols is mst_data. */
657 if (MSYMBOL_TYPE (msym) == mst_data)
658 {
659 const char *name1 = NULL;
660
661 if (startswith (name, "_imp_"))
662 name1 = name + 5;
663 else if (startswith (name, "__imp_"))
664 name1 = name + 6;
665 if (name1 != NULL)
666 {
667 int lead = bfd_get_symbol_leading_char (objfile->obfd);
668 struct bound_minimal_symbol found;
669
670 if (lead != '\0' && *name1 == lead)
671 name1 += 1;
672
673 found = lookup_minimal_symbol (name1, NULL, objfile);
674
675 /* If found, there are symbols named "_imp_foo" and "foo"
676 respectively in OBJFILE. Set the type of symbol "foo"
677 as 'mst_solib_trampoline'. */
678 if (found.minsym != NULL
679 && MSYMBOL_TYPE (found.minsym) == mst_text)
680 MSYMBOL_TYPE (found.minsym) = mst_solib_trampoline;
681 }
682 }
683 }
684 }
685
686 if (!(objfile->flags & OBJF_READNEVER))
687 bfd_map_over_sections (abfd, coff_locate_sections, (void *) info);
688
689 if (!info->stabsects->empty())
690 {
691 if (!info->stabstrsect)
692 {
693 error (_("The debugging information in `%s' is corrupted.\nThe "
694 "file has a `.stabs' section, but no `.stabstr' section."),
695 filename);
696 }
697
698 /* FIXME: dubious. Why can't we use something normal like
699 bfd_get_section_contents? */
700 bfd_seek (abfd, abfd->where, 0);
701
702 stabstrsize = bfd_section_size (abfd, info->stabstrsect);
703
704 coffstab_build_psymtabs (objfile,
705 info->textaddr, info->textsize,
706 *info->stabsects,
707 info->stabstrsect->filepos, stabstrsize);
708 }
709 if (dwarf2_has_info (objfile, NULL))
710 {
711 /* DWARF2 sections. */
712 dwarf2_build_psymtabs (objfile);
713 }
714
715 dwarf2_build_frame_info (objfile);
716
717 /* Try to add separate debug file if no symbols table found. */
718 if (!objfile_has_partial_symbols (objfile))
719 {
720 std::string debugfile = find_separate_debug_file_by_buildid (objfile);
721
722 if (debugfile.empty ())
723 debugfile = find_separate_debug_file_by_debuglink (objfile);
724
725 if (!debugfile.empty ())
726 {
727 gdb_bfd_ref_ptr debug_bfd (symfile_bfd_open (debugfile.c_str ()));
728
729 symbol_file_add_separate (debug_bfd.get (), debugfile.c_str (),
730 symfile_flags, objfile);
731 }
732 }
733 }
734
735 static void
736 coff_new_init (struct objfile *ignore)
737 {
738 }
739
740 /* Perform any local cleanups required when we are done with a
741 particular objfile. I.E, we are in the process of discarding all
742 symbol information for an objfile, freeing up all memory held for
743 it, and unlinking the objfile struct from the global list of known
744 objfiles. */
745
746 static void
747 coff_symfile_finish (struct objfile *objfile)
748 {
749 /* Let stabs reader clean up. */
750 stabsread_clear_cache ();
751 }
752 \f
753
754 /* Given pointers to a symbol table in coff style exec file,
755 analyze them and create struct symtab's describing the symbols.
756 NSYMS is the number of symbols in the symbol table.
757 We read them one at a time using read_one_sym (). */
758
759 static void
760 coff_symtab_read (minimal_symbol_reader &reader,
761 long symtab_offset, unsigned int nsyms,
762 struct objfile *objfile)
763 {
764 struct gdbarch *gdbarch = get_objfile_arch (objfile);
765 struct context_stack *newobj = nullptr;
766 struct coff_symbol coff_symbol;
767 struct coff_symbol *cs = &coff_symbol;
768 static struct internal_syment main_sym;
769 static union internal_auxent main_aux;
770 struct coff_symbol fcn_cs_saved;
771 static struct internal_syment fcn_sym_saved;
772 static union internal_auxent fcn_aux_saved;
773 /* A .file is open. */
774 int in_source_file = 0;
775 int next_file_symnum = -1;
776 /* Name of the current file. */
777 const char *filestring = "";
778 int depth = 0;
779 int fcn_first_line = 0;
780 CORE_ADDR fcn_first_line_addr = 0;
781 int fcn_last_line = 0;
782 int fcn_start_addr = 0;
783 long fcn_line_ptr = 0;
784 int val;
785 CORE_ADDR tmpaddr;
786 struct minimal_symbol *msym;
787
788 scoped_free_pendings free_pending;
789
790 /* Work around a stdio bug in SunOS4.1.1 (this makes me nervous....
791 it's hard to know I've really worked around it. The fix should
792 be harmless, anyway). The symptom of the bug is that the first
793 fread (in read_one_sym), will (in my example) actually get data
794 from file offset 268, when the fseek was to 264 (and ftell shows
795 264). This causes all hell to break loose. I was unable to
796 reproduce this on a short test program which operated on the same
797 file, performing (I think) the same sequence of operations.
798
799 It stopped happening when I put in this (former) rewind().
800
801 FIXME: Find out if this has been reported to Sun, whether it has
802 been fixed in a later release, etc. */
803
804 bfd_seek (objfile->obfd, 0, 0);
805
806 /* Position to read the symbol table. */
807 val = bfd_seek (objfile->obfd, (long) symtab_offset, 0);
808 if (val < 0)
809 perror_with_name (objfile_name (objfile));
810
811 coffread_objfile = objfile;
812 nlist_bfd_global = objfile->obfd;
813 nlist_nsyms_global = nsyms;
814 set_last_source_file (NULL);
815 memset (opaque_type_chain, 0, sizeof opaque_type_chain);
816
817 if (type_vector) /* Get rid of previous one. */
818 xfree (type_vector);
819 type_vector_length = INITIAL_TYPE_VECTOR_LENGTH;
820 type_vector = XCNEWVEC (struct type *, type_vector_length);
821
822 coff_start_symtab (objfile, "");
823
824 symnum = 0;
825 while (symnum < nsyms)
826 {
827 QUIT; /* Make this command interruptable. */
828
829 read_one_sym (cs, &main_sym, &main_aux);
830
831 if (cs->c_symnum == next_file_symnum && cs->c_sclass != C_FILE)
832 {
833 if (get_last_source_file ())
834 coff_end_symtab (objfile);
835
836 coff_start_symtab (objfile, "_globals_");
837 /* coff_start_symtab will set the language of this symtab to
838 language_unknown, since such a ``file name'' is not
839 recognized. Override that with the minimal language to
840 allow printing values in this symtab. */
841 get_current_subfile ()->language = language_minimal;
842 complete_symtab ("_globals_", 0, 0);
843 /* Done with all files, everything from here on out is
844 globals. */
845 }
846
847 /* Special case for file with type declarations only, no
848 text. */
849 if (!get_last_source_file () && SDB_TYPE (cs->c_type)
850 && cs->c_secnum == N_DEBUG)
851 complete_symtab (filestring, 0, 0);
852
853 /* Typedefs should not be treated as symbol definitions. */
854 if (ISFCN (cs->c_type) && cs->c_sclass != C_TPDEF)
855 {
856 /* Record all functions -- external and static -- in
857 minsyms. */
858 int section = cs_to_section (cs, objfile);
859
860 tmpaddr = cs->c_value;
861 /* Don't record unresolved symbols. */
862 if (!(cs->c_secnum <= 0 && cs->c_value == 0))
863 record_minimal_symbol (reader, cs, tmpaddr, mst_text,
864 section, objfile);
865
866 fcn_line_ptr = main_aux.x_sym.x_fcnary.x_fcn.x_lnnoptr;
867 fcn_start_addr = tmpaddr;
868 fcn_cs_saved = *cs;
869 fcn_sym_saved = main_sym;
870 fcn_aux_saved = main_aux;
871 continue;
872 }
873
874 switch (cs->c_sclass)
875 {
876 case C_EFCN:
877 case C_EXTDEF:
878 case C_ULABEL:
879 case C_USTATIC:
880 case C_LINE:
881 case C_ALIAS:
882 case C_HIDDEN:
883 complaint (_("Bad n_sclass for symbol %s"),
884 cs->c_name);
885 break;
886
887 case C_FILE:
888 /* c_value field contains symnum of next .file entry in
889 table or symnum of first global after last .file. */
890 next_file_symnum = cs->c_value;
891 if (cs->c_naux > 0)
892 filestring = coff_getfilename (&main_aux);
893 else
894 filestring = "";
895
896 /* Complete symbol table for last object file
897 containing debugging information. */
898 if (get_last_source_file ())
899 {
900 coff_end_symtab (objfile);
901 coff_start_symtab (objfile, filestring);
902 }
903 in_source_file = 1;
904 break;
905
906 /* C_LABEL is used for labels and static functions.
907 Including it here allows gdb to see static functions when
908 no debug info is available. */
909 case C_LABEL:
910 /* However, labels within a function can make weird
911 backtraces, so filter them out (from phdm@macqel.be). */
912 if (within_function)
913 break;
914 /* Fall through. */
915 case C_STAT:
916 case C_THUMBLABEL:
917 case C_THUMBSTAT:
918 case C_THUMBSTATFUNC:
919 if (cs->c_name[0] == '.')
920 {
921 if (strcmp (cs->c_name, ".text") == 0)
922 {
923 /* FIXME: don't wire in ".text" as section name or
924 symbol name! */
925 /* Check for in_source_file deals with case of a
926 file with debugging symbols followed by a later
927 file with no symbols. */
928 if (in_source_file)
929 complete_symtab (filestring,
930 cs->c_value + ANOFFSET (objfile->section_offsets,
931 SECT_OFF_TEXT (objfile)),
932 main_aux.x_scn.x_scnlen);
933 in_source_file = 0;
934 }
935 /* Flush rest of '.' symbols. */
936 break;
937 }
938 else if (!SDB_TYPE (cs->c_type)
939 && cs->c_name[0] == 'L'
940 && (startswith (cs->c_name, "LI%")
941 || startswith (cs->c_name, "LF%")
942 || startswith (cs->c_name, "LC%")
943 || startswith (cs->c_name, "LP%")
944 || startswith (cs->c_name, "LPB%")
945 || startswith (cs->c_name, "LBB%")
946 || startswith (cs->c_name, "LBE%")
947 || startswith (cs->c_name, "LPBX%")))
948 /* At least on a 3b1, gcc generates swbeg and string labels
949 that look like this. Ignore them. */
950 break;
951 /* For static symbols that don't start with '.'... */
952 /* Fall through. */
953 case C_THUMBEXT:
954 case C_THUMBEXTFUNC:
955 case C_EXT:
956 {
957 /* Record it in the minimal symbols regardless of
958 SDB_TYPE. This parallels what we do for other debug
959 formats, and probably is needed to make
960 print_address_symbolic work right without the (now
961 gone) "set fast-symbolic-addr off" kludge. */
962
963 enum minimal_symbol_type ms_type;
964 int sec;
965 CORE_ADDR offset = 0;
966
967 if (cs->c_secnum == N_UNDEF)
968 {
969 /* This is a common symbol. We used to rely on
970 the target to tell us whether it knows where
971 the symbol has been relocated to, but none of
972 the target implementations actually provided
973 that operation. So we just ignore the symbol,
974 the same way we would do if we had a target-side
975 symbol lookup which returned no match. */
976 break;
977 }
978 else if (cs->c_secnum == N_ABS)
979 {
980 /* Use the correct minimal symbol type (and don't
981 relocate) for absolute values. */
982 ms_type = mst_abs;
983 sec = cs_to_section (cs, objfile);
984 tmpaddr = cs->c_value;
985 }
986 else
987 {
988 asection *bfd_section = cs_to_bfd_section (cs, objfile);
989
990 sec = cs_to_section (cs, objfile);
991 tmpaddr = cs->c_value;
992 /* Statics in a PE file also get relocated. */
993 if (cs->c_sclass == C_EXT
994 || cs->c_sclass == C_THUMBEXTFUNC
995 || cs->c_sclass == C_THUMBEXT
996 || (pe_file && (cs->c_sclass == C_STAT)))
997 offset = ANOFFSET (objfile->section_offsets, sec);
998
999 if (bfd_section->flags & SEC_CODE)
1000 {
1001 ms_type =
1002 cs->c_sclass == C_EXT || cs->c_sclass == C_THUMBEXTFUNC
1003 || cs->c_sclass == C_THUMBEXT ?
1004 mst_text : mst_file_text;
1005 tmpaddr = gdbarch_addr_bits_remove (gdbarch, tmpaddr);
1006 }
1007 else if (bfd_section->flags & SEC_ALLOC
1008 && bfd_section->flags & SEC_LOAD)
1009 {
1010 ms_type =
1011 cs->c_sclass == C_EXT || cs->c_sclass == C_THUMBEXT
1012 ? mst_data : mst_file_data;
1013 }
1014 else if (bfd_section->flags & SEC_ALLOC)
1015 {
1016 ms_type =
1017 cs->c_sclass == C_EXT || cs->c_sclass == C_THUMBEXT
1018 ? mst_bss : mst_file_bss;
1019 }
1020 else
1021 ms_type = mst_unknown;
1022 }
1023
1024 msym = record_minimal_symbol (reader, cs, tmpaddr, ms_type,
1025 sec, objfile);
1026 if (msym)
1027 gdbarch_coff_make_msymbol_special (gdbarch,
1028 cs->c_sclass, msym);
1029
1030 if (SDB_TYPE (cs->c_type))
1031 {
1032 struct symbol *sym;
1033
1034 sym = process_coff_symbol
1035 (cs, &main_aux, objfile);
1036 SYMBOL_VALUE (sym) = tmpaddr + offset;
1037 SYMBOL_SECTION (sym) = sec;
1038 }
1039 }
1040 break;
1041
1042 case C_FCN:
1043 if (strcmp (cs->c_name, ".bf") == 0)
1044 {
1045 within_function = 1;
1046
1047 /* Value contains address of first non-init type
1048 code. */
1049 /* main_aux.x_sym.x_misc.x_lnsz.x_lnno
1050 contains line number of '{' }. */
1051 if (cs->c_naux != 1)
1052 complaint (_("`.bf' symbol %d has no aux entry"),
1053 cs->c_symnum);
1054 fcn_first_line = main_aux.x_sym.x_misc.x_lnsz.x_lnno;
1055 fcn_first_line_addr = cs->c_value;
1056
1057 /* Might want to check that locals are 0 and
1058 context_stack_depth is zero, and complain if not. */
1059
1060 depth = 0;
1061 newobj = push_context (depth, fcn_start_addr);
1062 fcn_cs_saved.c_name = getsymname (&fcn_sym_saved);
1063 newobj->name =
1064 process_coff_symbol (&fcn_cs_saved,
1065 &fcn_aux_saved, objfile);
1066 }
1067 else if (strcmp (cs->c_name, ".ef") == 0)
1068 {
1069 if (!within_function)
1070 error (_("Bad coff function information."));
1071 /* The value of .ef is the address of epilogue code;
1072 not useful for gdb. */
1073 /* { main_aux.x_sym.x_misc.x_lnsz.x_lnno
1074 contains number of lines to '}' */
1075
1076 if (outermost_context_p ())
1077 { /* We attempted to pop an empty context stack. */
1078 complaint (_("`.ef' symbol without matching `.bf' "
1079 "symbol ignored starting at symnum %d"),
1080 cs->c_symnum);
1081 within_function = 0;
1082 break;
1083 }
1084
1085 struct context_stack cstk = pop_context ();
1086 /* Stack must be empty now. */
1087 if (!outermost_context_p () || newobj == NULL)
1088 {
1089 complaint (_("Unmatched .ef symbol(s) ignored "
1090 "starting at symnum %d"),
1091 cs->c_symnum);
1092 within_function = 0;
1093 break;
1094 }
1095 if (cs->c_naux != 1)
1096 {
1097 complaint (_("`.ef' symbol %d has no aux entry"),
1098 cs->c_symnum);
1099 fcn_last_line = 0x7FFFFFFF;
1100 }
1101 else
1102 {
1103 fcn_last_line = main_aux.x_sym.x_misc.x_lnsz.x_lnno;
1104 }
1105 /* fcn_first_line is the line number of the opening '{'.
1106 Do not record it - because it would affect gdb's idea
1107 of the line number of the first statement of the
1108 function - except for one-line functions, for which
1109 it is also the line number of all the statements and
1110 of the closing '}', and for which we do not have any
1111 other statement-line-number. */
1112 if (fcn_last_line == 1)
1113 record_line (get_current_subfile (), fcn_first_line,
1114 gdbarch_addr_bits_remove (gdbarch,
1115 fcn_first_line_addr));
1116 else
1117 enter_linenos (fcn_line_ptr, fcn_first_line,
1118 fcn_last_line, objfile);
1119
1120 finish_block (cstk.name, cstk.old_blocks,
1121 NULL, cstk.start_addr,
1122 fcn_cs_saved.c_value
1123 + fcn_aux_saved.x_sym.x_misc.x_fsize
1124 + ANOFFSET (objfile->section_offsets,
1125 SECT_OFF_TEXT (objfile)));
1126 within_function = 0;
1127 }
1128 break;
1129
1130 case C_BLOCK:
1131 if (strcmp (cs->c_name, ".bb") == 0)
1132 {
1133 tmpaddr = cs->c_value;
1134 tmpaddr += ANOFFSET (objfile->section_offsets,
1135 SECT_OFF_TEXT (objfile));
1136 push_context (++depth, tmpaddr);
1137 }
1138 else if (strcmp (cs->c_name, ".eb") == 0)
1139 {
1140 if (outermost_context_p ())
1141 { /* We attempted to pop an empty context stack. */
1142 complaint (_("`.eb' symbol without matching `.bb' "
1143 "symbol ignored starting at symnum %d"),
1144 cs->c_symnum);
1145 break;
1146 }
1147
1148 struct context_stack cstk = pop_context ();
1149 if (depth-- != cstk.depth)
1150 {
1151 complaint (_("Mismatched .eb symbol ignored "
1152 "starting at symnum %d"),
1153 symnum);
1154 break;
1155 }
1156 if (*get_local_symbols () && !outermost_context_p ())
1157 {
1158 tmpaddr =
1159 cs->c_value + ANOFFSET (objfile->section_offsets,
1160 SECT_OFF_TEXT (objfile));
1161 /* Make a block for the local symbols within. */
1162 finish_block (0, cstk.old_blocks, NULL,
1163 cstk.start_addr, tmpaddr);
1164 }
1165 /* Now pop locals of block just finished. */
1166 *get_local_symbols () = cstk.locals;
1167 }
1168 break;
1169
1170 default:
1171 process_coff_symbol (cs, &main_aux, objfile);
1172 break;
1173 }
1174 }
1175
1176 if ((nsyms == 0) && (pe_file))
1177 {
1178 /* We've got no debugging symbols, but it's a portable
1179 executable, so try to read the export table. */
1180 read_pe_exported_syms (reader, objfile);
1181 }
1182
1183 if (get_last_source_file ())
1184 coff_end_symtab (objfile);
1185
1186 /* Patch up any opaque types (references to types that are not defined
1187 in the file where they are referenced, e.g. "struct foo *bar"). */
1188 {
1189 for (compunit_symtab *cu : objfile->compunits ())
1190 {
1191 for (symtab *s : compunit_filetabs (cu))
1192 patch_opaque_types (s);
1193 }
1194 }
1195
1196 coffread_objfile = NULL;
1197 }
1198 \f
1199 /* Routines for reading headers and symbols from executable. */
1200
1201 /* Read the next symbol, swap it, and return it in both
1202 internal_syment form, and coff_symbol form. Also return its first
1203 auxent, if any, in internal_auxent form, and skip any other
1204 auxents. */
1205
1206 static void
1207 read_one_sym (struct coff_symbol *cs,
1208 struct internal_syment *sym,
1209 union internal_auxent *aux)
1210 {
1211 int i;
1212 bfd_size_type bytes;
1213
1214 cs->c_symnum = symnum;
1215 bytes = bfd_bread (temp_sym, local_symesz, nlist_bfd_global);
1216 if (bytes != local_symesz)
1217 error (_("%s: error reading symbols"), objfile_name (coffread_objfile));
1218 bfd_coff_swap_sym_in (symfile_bfd, temp_sym, (char *) sym);
1219 cs->c_naux = sym->n_numaux & 0xff;
1220 if (cs->c_naux >= 1)
1221 {
1222 bytes = bfd_bread (temp_aux, local_auxesz, nlist_bfd_global);
1223 if (bytes != local_auxesz)
1224 error (_("%s: error reading symbols"), objfile_name (coffread_objfile));
1225 bfd_coff_swap_aux_in (symfile_bfd, temp_aux,
1226 sym->n_type, sym->n_sclass,
1227 0, cs->c_naux, (char *) aux);
1228 /* If more than one aux entry, read past it (only the first aux
1229 is important). */
1230 for (i = 1; i < cs->c_naux; i++)
1231 {
1232 bytes = bfd_bread (temp_aux, local_auxesz, nlist_bfd_global);
1233 if (bytes != local_auxesz)
1234 error (_("%s: error reading symbols"),
1235 objfile_name (coffread_objfile));
1236 }
1237 }
1238 cs->c_name = getsymname (sym);
1239 cs->c_value = sym->n_value;
1240 cs->c_sclass = (sym->n_sclass & 0xff);
1241 cs->c_secnum = sym->n_scnum;
1242 cs->c_type = (unsigned) sym->n_type;
1243 if (!SDB_TYPE (cs->c_type))
1244 cs->c_type = 0;
1245
1246 #if 0
1247 if (cs->c_sclass & 128)
1248 printf (_("thumb symbol %s, class 0x%x\n"), cs->c_name, cs->c_sclass);
1249 #endif
1250
1251 symnum += 1 + cs->c_naux;
1252
1253 /* The PE file format stores symbol values as offsets within the
1254 section, rather than as absolute addresses. We correct that
1255 here, if the symbol has an appropriate storage class. FIXME: We
1256 should use BFD to read the symbols, rather than duplicating the
1257 work here. */
1258 if (pe_file)
1259 {
1260 switch (cs->c_sclass)
1261 {
1262 case C_EXT:
1263 case C_THUMBEXT:
1264 case C_THUMBEXTFUNC:
1265 case C_SECTION:
1266 case C_NT_WEAK:
1267 case C_STAT:
1268 case C_THUMBSTAT:
1269 case C_THUMBSTATFUNC:
1270 case C_LABEL:
1271 case C_THUMBLABEL:
1272 case C_BLOCK:
1273 case C_FCN:
1274 case C_EFCN:
1275 if (cs->c_secnum != 0)
1276 cs->c_value += cs_section_address (cs, symfile_bfd);
1277 break;
1278 }
1279 }
1280 }
1281 \f
1282 /* Support for string table handling. */
1283
1284 static int
1285 init_stringtab (bfd *abfd, long offset, gdb::unique_xmalloc_ptr<char> *storage)
1286 {
1287 long length;
1288 int val;
1289 unsigned char lengthbuf[4];
1290
1291 /* If the file is stripped, the offset might be zero, indicating no
1292 string table. Just return with `stringtab' set to null. */
1293 if (offset == 0)
1294 return 0;
1295
1296 if (bfd_seek (abfd, offset, 0) < 0)
1297 return -1;
1298
1299 val = bfd_bread ((char *) lengthbuf, sizeof lengthbuf, abfd);
1300 length = bfd_h_get_32 (symfile_bfd, lengthbuf);
1301
1302 /* If no string table is needed, then the file may end immediately
1303 after the symbols. Just return with `stringtab' set to null. */
1304 if (val != sizeof lengthbuf || length < sizeof lengthbuf)
1305 return 0;
1306
1307 storage->reset ((char *) xmalloc (length));
1308 stringtab = storage->get ();
1309 /* This is in target format (probably not very useful, and not
1310 currently used), not host format. */
1311 memcpy (stringtab, lengthbuf, sizeof lengthbuf);
1312 if (length == sizeof length) /* Empty table -- just the count. */
1313 return 0;
1314
1315 val = bfd_bread (stringtab + sizeof lengthbuf,
1316 length - sizeof lengthbuf, abfd);
1317 if (val != length - sizeof lengthbuf || stringtab[length - 1] != '\0')
1318 return -1;
1319
1320 return 0;
1321 }
1322
1323 static char *
1324 getsymname (struct internal_syment *symbol_entry)
1325 {
1326 static char buffer[SYMNMLEN + 1];
1327 char *result;
1328
1329 if (symbol_entry->_n._n_n._n_zeroes == 0)
1330 {
1331 /* FIXME: Probably should be detecting corrupt symbol files by
1332 seeing whether offset points to within the stringtab. */
1333 result = stringtab + symbol_entry->_n._n_n._n_offset;
1334 }
1335 else
1336 {
1337 strncpy (buffer, symbol_entry->_n._n_name, SYMNMLEN);
1338 buffer[SYMNMLEN] = '\0';
1339 result = buffer;
1340 }
1341 return result;
1342 }
1343
1344 /* Extract the file name from the aux entry of a C_FILE symbol.
1345 Return only the last component of the name. Result is in static
1346 storage and is only good for temporary use. */
1347
1348 static const char *
1349 coff_getfilename (union internal_auxent *aux_entry)
1350 {
1351 static char buffer[BUFSIZ];
1352 const char *result;
1353
1354 if (aux_entry->x_file.x_n.x_zeroes == 0)
1355 {
1356 if (strlen (stringtab + aux_entry->x_file.x_n.x_offset) >= BUFSIZ)
1357 internal_error (__FILE__, __LINE__, _("coff file name too long"));
1358 strcpy (buffer, stringtab + aux_entry->x_file.x_n.x_offset);
1359 }
1360 else
1361 {
1362 strncpy (buffer, aux_entry->x_file.x_fname, FILNMLEN);
1363 buffer[FILNMLEN] = '\0';
1364 }
1365 result = buffer;
1366
1367 /* FIXME: We should not be throwing away the information about what
1368 directory. It should go into dirname of the symtab, or some such
1369 place. */
1370 result = lbasename (result);
1371 return (result);
1372 }
1373 \f
1374 /* Support for line number handling. */
1375
1376 /* Read in all the line numbers for fast lookups later. Leave them in
1377 external (unswapped) format in memory; we'll swap them as we enter
1378 them into GDB's data structures. */
1379
1380 static int
1381 init_lineno (bfd *abfd, long offset, int size,
1382 gdb::unique_xmalloc_ptr<char> *storage)
1383 {
1384 int val;
1385
1386 linetab_offset = offset;
1387 linetab_size = size;
1388
1389 if (size == 0)
1390 return 0;
1391
1392 if (bfd_seek (abfd, offset, 0) < 0)
1393 return -1;
1394
1395 /* Allocate the desired table, plus a sentinel. */
1396 storage->reset ((char *) xmalloc (size + local_linesz));
1397 linetab = storage->get ();
1398
1399 val = bfd_bread (storage->get (), size, abfd);
1400 if (val != size)
1401 return -1;
1402
1403 /* Terminate it with an all-zero sentinel record. */
1404 memset (linetab + size, 0, local_linesz);
1405
1406 return 0;
1407 }
1408
1409 #if !defined (L_LNNO32)
1410 #define L_LNNO32(lp) ((lp)->l_lnno)
1411 #endif
1412
1413 static void
1414 enter_linenos (long file_offset, int first_line,
1415 int last_line, struct objfile *objfile)
1416 {
1417 struct gdbarch *gdbarch = get_objfile_arch (objfile);
1418 char *rawptr;
1419 struct internal_lineno lptr;
1420
1421 if (!linetab)
1422 return;
1423 if (file_offset < linetab_offset)
1424 {
1425 complaint (_("Line number pointer %ld lower than start of line numbers"),
1426 file_offset);
1427 if (file_offset > linetab_size) /* Too big to be an offset? */
1428 return;
1429 file_offset += linetab_offset; /* Try reading at that linetab
1430 offset. */
1431 }
1432
1433 rawptr = &linetab[file_offset - linetab_offset];
1434
1435 /* Skip first line entry for each function. */
1436 rawptr += local_linesz;
1437 /* Line numbers start at one for the first line of the function. */
1438 first_line--;
1439
1440 /* If the line number table is full (e.g. 64K lines in COFF debug
1441 info), the next function's L_LNNO32 might not be zero, so don't
1442 overstep the table's end in any case. */
1443 while (rawptr <= &linetab[0] + linetab_size)
1444 {
1445 bfd_coff_swap_lineno_in (symfile_bfd, rawptr, &lptr);
1446 rawptr += local_linesz;
1447 /* The next function, or the sentinel, will have L_LNNO32 zero;
1448 we exit. */
1449 if (L_LNNO32 (&lptr) && L_LNNO32 (&lptr) <= last_line)
1450 {
1451 CORE_ADDR addr = lptr.l_addr.l_paddr;
1452 addr += ANOFFSET (objfile->section_offsets,
1453 SECT_OFF_TEXT (objfile));
1454 record_line (get_current_subfile (),
1455 first_line + L_LNNO32 (&lptr),
1456 gdbarch_addr_bits_remove (gdbarch, addr));
1457 }
1458 else
1459 break;
1460 }
1461 }
1462 \f
1463 static void
1464 patch_type (struct type *type, struct type *real_type)
1465 {
1466 struct type *target = TYPE_TARGET_TYPE (type);
1467 struct type *real_target = TYPE_TARGET_TYPE (real_type);
1468 int field_size = TYPE_NFIELDS (real_target) * sizeof (struct field);
1469
1470 TYPE_LENGTH (target) = TYPE_LENGTH (real_target);
1471 TYPE_NFIELDS (target) = TYPE_NFIELDS (real_target);
1472 TYPE_FIELDS (target) = (struct field *) TYPE_ALLOC (target,
1473 field_size);
1474
1475 memcpy (TYPE_FIELDS (target),
1476 TYPE_FIELDS (real_target),
1477 field_size);
1478
1479 if (TYPE_NAME (real_target))
1480 {
1481 /* The previous copy of TYPE_NAME is allocated by
1482 process_coff_symbol. */
1483 if (TYPE_NAME (target))
1484 xfree ((char*) TYPE_NAME (target));
1485 TYPE_NAME (target) = xstrdup (TYPE_NAME (real_target));
1486 }
1487 }
1488
1489 /* Patch up all appropriate typedef symbols in the opaque_type_chains
1490 so that they can be used to print out opaque data structures
1491 properly. */
1492
1493 static void
1494 patch_opaque_types (struct symtab *s)
1495 {
1496 const struct block *b;
1497 struct block_iterator iter;
1498 struct symbol *real_sym;
1499
1500 /* Go through the per-file symbols only. */
1501 b = BLOCKVECTOR_BLOCK (SYMTAB_BLOCKVECTOR (s), STATIC_BLOCK);
1502 ALL_BLOCK_SYMBOLS (b, iter, real_sym)
1503 {
1504 /* Find completed typedefs to use to fix opaque ones.
1505 Remove syms from the chain when their types are stored,
1506 but search the whole chain, as there may be several syms
1507 from different files with the same name. */
1508 if (SYMBOL_CLASS (real_sym) == LOC_TYPEDEF
1509 && SYMBOL_DOMAIN (real_sym) == VAR_DOMAIN
1510 && TYPE_CODE (SYMBOL_TYPE (real_sym)) == TYPE_CODE_PTR
1511 && TYPE_LENGTH (TYPE_TARGET_TYPE (SYMBOL_TYPE (real_sym))) != 0)
1512 {
1513 const char *name = SYMBOL_LINKAGE_NAME (real_sym);
1514 int hash = hashname (name);
1515 struct symbol *sym, *prev;
1516
1517 prev = 0;
1518 for (sym = opaque_type_chain[hash]; sym;)
1519 {
1520 if (name[0] == SYMBOL_LINKAGE_NAME (sym)[0]
1521 && strcmp (name + 1, SYMBOL_LINKAGE_NAME (sym) + 1) == 0)
1522 {
1523 if (prev)
1524 {
1525 SYMBOL_VALUE_CHAIN (prev) = SYMBOL_VALUE_CHAIN (sym);
1526 }
1527 else
1528 {
1529 opaque_type_chain[hash] = SYMBOL_VALUE_CHAIN (sym);
1530 }
1531
1532 patch_type (SYMBOL_TYPE (sym), SYMBOL_TYPE (real_sym));
1533
1534 if (prev)
1535 {
1536 sym = SYMBOL_VALUE_CHAIN (prev);
1537 }
1538 else
1539 {
1540 sym = opaque_type_chain[hash];
1541 }
1542 }
1543 else
1544 {
1545 prev = sym;
1546 sym = SYMBOL_VALUE_CHAIN (sym);
1547 }
1548 }
1549 }
1550 }
1551 }
1552 \f
1553 static int
1554 coff_reg_to_regnum (struct symbol *sym, struct gdbarch *gdbarch)
1555 {
1556 return gdbarch_sdb_reg_to_regnum (gdbarch, SYMBOL_VALUE (sym));
1557 }
1558
1559 static const struct symbol_register_ops coff_register_funcs = {
1560 coff_reg_to_regnum
1561 };
1562
1563 /* The "aclass" index for computed COFF symbols. */
1564
1565 static int coff_register_index;
1566
1567 static struct symbol *
1568 process_coff_symbol (struct coff_symbol *cs,
1569 union internal_auxent *aux,
1570 struct objfile *objfile)
1571 {
1572 struct symbol *sym = allocate_symbol (objfile);
1573 char *name;
1574
1575 name = cs->c_name;
1576 name = EXTERNAL_NAME (name, objfile->obfd);
1577 SYMBOL_SET_LANGUAGE (sym, get_current_subfile ()->language,
1578 &objfile->objfile_obstack);
1579 SYMBOL_SET_NAMES (sym, name, strlen (name), 1, objfile);
1580
1581 /* default assumptions */
1582 SYMBOL_VALUE (sym) = cs->c_value;
1583 SYMBOL_DOMAIN (sym) = VAR_DOMAIN;
1584 SYMBOL_SECTION (sym) = cs_to_section (cs, objfile);
1585
1586 if (ISFCN (cs->c_type))
1587 {
1588 SYMBOL_VALUE (sym) += ANOFFSET (objfile->section_offsets,
1589 SECT_OFF_TEXT (objfile));
1590 SYMBOL_TYPE (sym) =
1591 lookup_function_type (decode_function_type (cs, cs->c_type,
1592 aux, objfile));
1593
1594 SYMBOL_ACLASS_INDEX (sym) = LOC_BLOCK;
1595 if (cs->c_sclass == C_STAT || cs->c_sclass == C_THUMBSTAT
1596 || cs->c_sclass == C_THUMBSTATFUNC)
1597 add_symbol_to_list (sym, get_file_symbols ());
1598 else if (cs->c_sclass == C_EXT || cs->c_sclass == C_THUMBEXT
1599 || cs->c_sclass == C_THUMBEXTFUNC)
1600 add_symbol_to_list (sym, get_global_symbols ());
1601 }
1602 else
1603 {
1604 SYMBOL_TYPE (sym) = decode_type (cs, cs->c_type, aux, objfile);
1605 switch (cs->c_sclass)
1606 {
1607 case C_NULL:
1608 break;
1609
1610 case C_AUTO:
1611 SYMBOL_ACLASS_INDEX (sym) = LOC_LOCAL;
1612 add_symbol_to_list (sym, get_local_symbols ());
1613 break;
1614
1615 case C_THUMBEXT:
1616 case C_THUMBEXTFUNC:
1617 case C_EXT:
1618 SYMBOL_ACLASS_INDEX (sym) = LOC_STATIC;
1619 SYMBOL_VALUE_ADDRESS (sym) = (CORE_ADDR) cs->c_value;
1620 SYMBOL_VALUE_ADDRESS (sym) += ANOFFSET (objfile->section_offsets,
1621 SECT_OFF_TEXT (objfile));
1622 add_symbol_to_list (sym, get_global_symbols ());
1623 break;
1624
1625 case C_THUMBSTAT:
1626 case C_THUMBSTATFUNC:
1627 case C_STAT:
1628 SYMBOL_ACLASS_INDEX (sym) = LOC_STATIC;
1629 SYMBOL_VALUE_ADDRESS (sym) = (CORE_ADDR) cs->c_value;
1630 SYMBOL_VALUE_ADDRESS (sym) += ANOFFSET (objfile->section_offsets,
1631 SECT_OFF_TEXT (objfile));
1632 if (within_function)
1633 {
1634 /* Static symbol of local scope. */
1635 add_symbol_to_list (sym, get_local_symbols ());
1636 }
1637 else
1638 {
1639 /* Static symbol at top level of file. */
1640 add_symbol_to_list (sym, get_file_symbols ());
1641 }
1642 break;
1643
1644 #ifdef C_GLBLREG /* AMD coff */
1645 case C_GLBLREG:
1646 #endif
1647 case C_REG:
1648 SYMBOL_ACLASS_INDEX (sym) = coff_register_index;
1649 SYMBOL_VALUE (sym) = cs->c_value;
1650 add_symbol_to_list (sym, get_local_symbols ());
1651 break;
1652
1653 case C_THUMBLABEL:
1654 case C_LABEL:
1655 break;
1656
1657 case C_ARG:
1658 SYMBOL_ACLASS_INDEX (sym) = LOC_ARG;
1659 SYMBOL_IS_ARGUMENT (sym) = 1;
1660 add_symbol_to_list (sym, get_local_symbols ());
1661 break;
1662
1663 case C_REGPARM:
1664 SYMBOL_ACLASS_INDEX (sym) = coff_register_index;
1665 SYMBOL_IS_ARGUMENT (sym) = 1;
1666 SYMBOL_VALUE (sym) = cs->c_value;
1667 add_symbol_to_list (sym, get_local_symbols ());
1668 break;
1669
1670 case C_TPDEF:
1671 SYMBOL_ACLASS_INDEX (sym) = LOC_TYPEDEF;
1672 SYMBOL_DOMAIN (sym) = VAR_DOMAIN;
1673
1674 /* If type has no name, give it one. */
1675 if (TYPE_NAME (SYMBOL_TYPE (sym)) == 0)
1676 {
1677 if (TYPE_CODE (SYMBOL_TYPE (sym)) == TYPE_CODE_PTR
1678 || TYPE_CODE (SYMBOL_TYPE (sym)) == TYPE_CODE_FUNC)
1679 {
1680 /* If we are giving a name to a type such as
1681 "pointer to foo" or "function returning foo", we
1682 better not set the TYPE_NAME. If the program
1683 contains "typedef char *caddr_t;", we don't want
1684 all variables of type char * to print as caddr_t.
1685 This is not just a consequence of GDB's type
1686 management; CC and GCC (at least through version
1687 2.4) both output variables of either type char *
1688 or caddr_t with the type refering to the C_TPDEF
1689 symbol for caddr_t. If a future compiler cleans
1690 this up it GDB is not ready for it yet, but if it
1691 becomes ready we somehow need to disable this
1692 check (without breaking the PCC/GCC2.4 case).
1693
1694 Sigh.
1695
1696 Fortunately, this check seems not to be necessary
1697 for anything except pointers or functions. */
1698 ;
1699 }
1700 else
1701 TYPE_NAME (SYMBOL_TYPE (sym)) =
1702 xstrdup (SYMBOL_LINKAGE_NAME (sym));
1703 }
1704
1705 /* Keep track of any type which points to empty structured
1706 type, so it can be filled from a definition from another
1707 file. A simple forward reference (TYPE_CODE_UNDEF) is
1708 not an empty structured type, though; the forward
1709 references work themselves out via the magic of
1710 coff_lookup_type. */
1711 if (TYPE_CODE (SYMBOL_TYPE (sym)) == TYPE_CODE_PTR
1712 && TYPE_LENGTH (TYPE_TARGET_TYPE (SYMBOL_TYPE (sym))) == 0
1713 && TYPE_CODE (TYPE_TARGET_TYPE (SYMBOL_TYPE (sym)))
1714 != TYPE_CODE_UNDEF)
1715 {
1716 int i = hashname (SYMBOL_LINKAGE_NAME (sym));
1717
1718 SYMBOL_VALUE_CHAIN (sym) = opaque_type_chain[i];
1719 opaque_type_chain[i] = sym;
1720 }
1721 add_symbol_to_list (sym, get_file_symbols ());
1722 break;
1723
1724 case C_STRTAG:
1725 case C_UNTAG:
1726 case C_ENTAG:
1727 SYMBOL_ACLASS_INDEX (sym) = LOC_TYPEDEF;
1728 SYMBOL_DOMAIN (sym) = STRUCT_DOMAIN;
1729
1730 /* Some compilers try to be helpful by inventing "fake"
1731 names for anonymous enums, structures, and unions, like
1732 "~0fake" or ".0fake". Thanks, but no thanks... */
1733 if (TYPE_NAME (SYMBOL_TYPE (sym)) == 0)
1734 if (SYMBOL_LINKAGE_NAME (sym) != NULL
1735 && *SYMBOL_LINKAGE_NAME (sym) != '~'
1736 && *SYMBOL_LINKAGE_NAME (sym) != '.')
1737 TYPE_NAME (SYMBOL_TYPE (sym)) =
1738 concat (SYMBOL_LINKAGE_NAME (sym), (char *)NULL);
1739
1740 add_symbol_to_list (sym, get_file_symbols ());
1741 break;
1742
1743 default:
1744 break;
1745 }
1746 }
1747 return sym;
1748 }
1749 \f
1750 /* Decode a coff type specifier; return the type that is meant. */
1751
1752 static struct type *
1753 decode_type (struct coff_symbol *cs, unsigned int c_type,
1754 union internal_auxent *aux, struct objfile *objfile)
1755 {
1756 struct type *type = 0;
1757 unsigned int new_c_type;
1758
1759 if (c_type & ~N_BTMASK)
1760 {
1761 new_c_type = DECREF (c_type);
1762 if (ISPTR (c_type))
1763 {
1764 type = decode_type (cs, new_c_type, aux, objfile);
1765 type = lookup_pointer_type (type);
1766 }
1767 else if (ISFCN (c_type))
1768 {
1769 type = decode_type (cs, new_c_type, aux, objfile);
1770 type = lookup_function_type (type);
1771 }
1772 else if (ISARY (c_type))
1773 {
1774 int i, n;
1775 unsigned short *dim;
1776 struct type *base_type, *index_type, *range_type;
1777
1778 /* Define an array type. */
1779 /* auxent refers to array, not base type. */
1780 if (aux->x_sym.x_tagndx.l == 0)
1781 cs->c_naux = 0;
1782
1783 /* Shift the indices down. */
1784 dim = &aux->x_sym.x_fcnary.x_ary.x_dimen[0];
1785 i = 1;
1786 n = dim[0];
1787 for (i = 0; *dim && i < DIMNUM - 1; i++, dim++)
1788 *dim = *(dim + 1);
1789 *dim = 0;
1790
1791 base_type = decode_type (cs, new_c_type, aux, objfile);
1792 index_type = objfile_type (objfile)->builtin_int;
1793 range_type
1794 = create_static_range_type ((struct type *) NULL,
1795 index_type, 0, n - 1);
1796 type =
1797 create_array_type ((struct type *) NULL,
1798 base_type, range_type);
1799 }
1800 return type;
1801 }
1802
1803 /* Reference to existing type. This only occurs with the struct,
1804 union, and enum types. EPI a29k coff fakes us out by producing
1805 aux entries with a nonzero x_tagndx for definitions of structs,
1806 unions, and enums, so we have to check the c_sclass field. SCO
1807 3.2v4 cc gets confused with pointers to pointers to defined
1808 structs, and generates negative x_tagndx fields. */
1809 if (cs->c_naux > 0 && aux->x_sym.x_tagndx.l != 0)
1810 {
1811 if (cs->c_sclass != C_STRTAG
1812 && cs->c_sclass != C_UNTAG
1813 && cs->c_sclass != C_ENTAG
1814 && aux->x_sym.x_tagndx.l >= 0)
1815 {
1816 type = coff_alloc_type (aux->x_sym.x_tagndx.l);
1817 return type;
1818 }
1819 else
1820 {
1821 complaint (_("Symbol table entry for %s has bad tagndx value"),
1822 cs->c_name);
1823 /* And fall through to decode_base_type... */
1824 }
1825 }
1826
1827 return decode_base_type (cs, BTYPE (c_type), aux, objfile);
1828 }
1829
1830 /* Decode a coff type specifier for function definition;
1831 return the type that the function returns. */
1832
1833 static struct type *
1834 decode_function_type (struct coff_symbol *cs,
1835 unsigned int c_type,
1836 union internal_auxent *aux,
1837 struct objfile *objfile)
1838 {
1839 if (aux->x_sym.x_tagndx.l == 0)
1840 cs->c_naux = 0; /* auxent refers to function, not base
1841 type. */
1842
1843 return decode_type (cs, DECREF (c_type), aux, objfile);
1844 }
1845 \f
1846 /* Basic C types. */
1847
1848 static struct type *
1849 decode_base_type (struct coff_symbol *cs,
1850 unsigned int c_type,
1851 union internal_auxent *aux,
1852 struct objfile *objfile)
1853 {
1854 struct gdbarch *gdbarch = get_objfile_arch (objfile);
1855 struct type *type;
1856
1857 switch (c_type)
1858 {
1859 case T_NULL:
1860 /* Shows up with "void (*foo)();" structure members. */
1861 return objfile_type (objfile)->builtin_void;
1862
1863 #ifdef T_VOID
1864 case T_VOID:
1865 /* Intel 960 COFF has this symbol and meaning. */
1866 return objfile_type (objfile)->builtin_void;
1867 #endif
1868
1869 case T_CHAR:
1870 return objfile_type (objfile)->builtin_char;
1871
1872 case T_SHORT:
1873 return objfile_type (objfile)->builtin_short;
1874
1875 case T_INT:
1876 return objfile_type (objfile)->builtin_int;
1877
1878 case T_LONG:
1879 if (cs->c_sclass == C_FIELD
1880 && aux->x_sym.x_misc.x_lnsz.x_size
1881 > gdbarch_long_bit (gdbarch))
1882 return objfile_type (objfile)->builtin_long_long;
1883 else
1884 return objfile_type (objfile)->builtin_long;
1885
1886 case T_FLOAT:
1887 return objfile_type (objfile)->builtin_float;
1888
1889 case T_DOUBLE:
1890 return objfile_type (objfile)->builtin_double;
1891
1892 case T_LNGDBL:
1893 return objfile_type (objfile)->builtin_long_double;
1894
1895 case T_STRUCT:
1896 if (cs->c_naux != 1)
1897 {
1898 /* Anonymous structure type. */
1899 type = coff_alloc_type (cs->c_symnum);
1900 TYPE_CODE (type) = TYPE_CODE_STRUCT;
1901 TYPE_NAME (type) = NULL;
1902 INIT_CPLUS_SPECIFIC (type);
1903 TYPE_LENGTH (type) = 0;
1904 TYPE_FIELDS (type) = 0;
1905 TYPE_NFIELDS (type) = 0;
1906 }
1907 else
1908 {
1909 type = coff_read_struct_type (cs->c_symnum,
1910 aux->x_sym.x_misc.x_lnsz.x_size,
1911 aux->x_sym.x_fcnary.x_fcn.x_endndx.l,
1912 objfile);
1913 }
1914 return type;
1915
1916 case T_UNION:
1917 if (cs->c_naux != 1)
1918 {
1919 /* Anonymous union type. */
1920 type = coff_alloc_type (cs->c_symnum);
1921 TYPE_NAME (type) = NULL;
1922 INIT_CPLUS_SPECIFIC (type);
1923 TYPE_LENGTH (type) = 0;
1924 TYPE_FIELDS (type) = 0;
1925 TYPE_NFIELDS (type) = 0;
1926 }
1927 else
1928 {
1929 type = coff_read_struct_type (cs->c_symnum,
1930 aux->x_sym.x_misc.x_lnsz.x_size,
1931 aux->x_sym.x_fcnary.x_fcn.x_endndx.l,
1932 objfile);
1933 }
1934 TYPE_CODE (type) = TYPE_CODE_UNION;
1935 return type;
1936
1937 case T_ENUM:
1938 if (cs->c_naux != 1)
1939 {
1940 /* Anonymous enum type. */
1941 type = coff_alloc_type (cs->c_symnum);
1942 TYPE_CODE (type) = TYPE_CODE_ENUM;
1943 TYPE_NAME (type) = NULL;
1944 TYPE_LENGTH (type) = 0;
1945 TYPE_FIELDS (type) = 0;
1946 TYPE_NFIELDS (type) = 0;
1947 }
1948 else
1949 {
1950 type = coff_read_enum_type (cs->c_symnum,
1951 aux->x_sym.x_misc.x_lnsz.x_size,
1952 aux->x_sym.x_fcnary.x_fcn.x_endndx.l,
1953 objfile);
1954 }
1955 return type;
1956
1957 case T_MOE:
1958 /* Shouldn't show up here. */
1959 break;
1960
1961 case T_UCHAR:
1962 return objfile_type (objfile)->builtin_unsigned_char;
1963
1964 case T_USHORT:
1965 return objfile_type (objfile)->builtin_unsigned_short;
1966
1967 case T_UINT:
1968 return objfile_type (objfile)->builtin_unsigned_int;
1969
1970 case T_ULONG:
1971 if (cs->c_sclass == C_FIELD
1972 && aux->x_sym.x_misc.x_lnsz.x_size
1973 > gdbarch_long_bit (gdbarch))
1974 return objfile_type (objfile)->builtin_unsigned_long_long;
1975 else
1976 return objfile_type (objfile)->builtin_unsigned_long;
1977 }
1978 complaint (_("Unexpected type for symbol %s"), cs->c_name);
1979 return objfile_type (objfile)->builtin_void;
1980 }
1981 \f
1982 /* This page contains subroutines of read_type. */
1983
1984 /* Read the description of a structure (or union type) and return an
1985 object describing the type. */
1986
1987 static struct type *
1988 coff_read_struct_type (int index, int length, int lastsym,
1989 struct objfile *objfile)
1990 {
1991 struct nextfield
1992 {
1993 struct nextfield *next;
1994 struct field field;
1995 };
1996
1997 struct type *type;
1998 struct nextfield *list = 0;
1999 struct nextfield *newobj;
2000 int nfields = 0;
2001 int n;
2002 char *name;
2003 struct coff_symbol member_sym;
2004 struct coff_symbol *ms = &member_sym;
2005 struct internal_syment sub_sym;
2006 union internal_auxent sub_aux;
2007 int done = 0;
2008
2009 type = coff_alloc_type (index);
2010 TYPE_CODE (type) = TYPE_CODE_STRUCT;
2011 INIT_CPLUS_SPECIFIC (type);
2012 TYPE_LENGTH (type) = length;
2013
2014 while (!done && symnum < lastsym && symnum < nlist_nsyms_global)
2015 {
2016 read_one_sym (ms, &sub_sym, &sub_aux);
2017 name = ms->c_name;
2018 name = EXTERNAL_NAME (name, objfile->obfd);
2019
2020 switch (ms->c_sclass)
2021 {
2022 case C_MOS:
2023 case C_MOU:
2024
2025 /* Get space to record the next field's data. */
2026 newobj = XALLOCA (struct nextfield);
2027 newobj->next = list;
2028 list = newobj;
2029
2030 /* Save the data. */
2031 list->field.name
2032 = (const char *) obstack_copy0 (&objfile->objfile_obstack,
2033 name, strlen (name));
2034 FIELD_TYPE (list->field) = decode_type (ms, ms->c_type,
2035 &sub_aux, objfile);
2036 SET_FIELD_BITPOS (list->field, 8 * ms->c_value);
2037 FIELD_BITSIZE (list->field) = 0;
2038 nfields++;
2039 break;
2040
2041 case C_FIELD:
2042
2043 /* Get space to record the next field's data. */
2044 newobj = XALLOCA (struct nextfield);
2045 newobj->next = list;
2046 list = newobj;
2047
2048 /* Save the data. */
2049 list->field.name
2050 = (const char *) obstack_copy0 (&objfile->objfile_obstack,
2051 name, strlen (name));
2052 FIELD_TYPE (list->field) = decode_type (ms, ms->c_type,
2053 &sub_aux, objfile);
2054 SET_FIELD_BITPOS (list->field, ms->c_value);
2055 FIELD_BITSIZE (list->field) = sub_aux.x_sym.x_misc.x_lnsz.x_size;
2056 nfields++;
2057 break;
2058
2059 case C_EOS:
2060 done = 1;
2061 break;
2062 }
2063 }
2064 /* Now create the vector of fields, and record how big it is. */
2065
2066 TYPE_NFIELDS (type) = nfields;
2067 TYPE_FIELDS (type) = (struct field *)
2068 TYPE_ALLOC (type, sizeof (struct field) * nfields);
2069
2070 /* Copy the saved-up fields into the field vector. */
2071
2072 for (n = nfields; list; list = list->next)
2073 TYPE_FIELD (type, --n) = list->field;
2074
2075 return type;
2076 }
2077 \f
2078 /* Read a definition of an enumeration type,
2079 and create and return a suitable type object.
2080 Also defines the symbols that represent the values of the type. */
2081
2082 static struct type *
2083 coff_read_enum_type (int index, int length, int lastsym,
2084 struct objfile *objfile)
2085 {
2086 struct gdbarch *gdbarch = get_objfile_arch (objfile);
2087 struct symbol *sym;
2088 struct type *type;
2089 int nsyms = 0;
2090 int done = 0;
2091 struct pending **symlist;
2092 struct coff_symbol member_sym;
2093 struct coff_symbol *ms = &member_sym;
2094 struct internal_syment sub_sym;
2095 union internal_auxent sub_aux;
2096 struct pending *osyms, *syms;
2097 int o_nsyms;
2098 int n;
2099 char *name;
2100 int unsigned_enum = 1;
2101
2102 type = coff_alloc_type (index);
2103 if (within_function)
2104 symlist = get_local_symbols ();
2105 else
2106 symlist = get_file_symbols ();
2107 osyms = *symlist;
2108 o_nsyms = osyms ? osyms->nsyms : 0;
2109
2110 while (!done && symnum < lastsym && symnum < nlist_nsyms_global)
2111 {
2112 read_one_sym (ms, &sub_sym, &sub_aux);
2113 name = ms->c_name;
2114 name = EXTERNAL_NAME (name, objfile->obfd);
2115
2116 switch (ms->c_sclass)
2117 {
2118 case C_MOE:
2119 sym = allocate_symbol (objfile);
2120
2121 name = (char *) obstack_copy0 (&objfile->objfile_obstack, name,
2122 strlen (name));
2123 SYMBOL_SET_LINKAGE_NAME (sym, name);
2124 SYMBOL_ACLASS_INDEX (sym) = LOC_CONST;
2125 SYMBOL_DOMAIN (sym) = VAR_DOMAIN;
2126 SYMBOL_VALUE (sym) = ms->c_value;
2127 add_symbol_to_list (sym, symlist);
2128 nsyms++;
2129 break;
2130
2131 case C_EOS:
2132 /* Sometimes the linker (on 386/ix 2.0.2 at least) screws
2133 up the count of how many symbols to read. So stop
2134 on .eos. */
2135 done = 1;
2136 break;
2137 }
2138 }
2139
2140 /* Now fill in the fields of the type-structure. */
2141
2142 if (length > 0)
2143 TYPE_LENGTH (type) = length;
2144 else /* Assume ints. */
2145 TYPE_LENGTH (type) = gdbarch_int_bit (gdbarch) / TARGET_CHAR_BIT;
2146 TYPE_CODE (type) = TYPE_CODE_ENUM;
2147 TYPE_NFIELDS (type) = nsyms;
2148 TYPE_FIELDS (type) = (struct field *)
2149 TYPE_ALLOC (type, sizeof (struct field) * nsyms);
2150
2151 /* Find the symbols for the values and put them into the type.
2152 The symbols can be found in the symlist that we put them on
2153 to cause them to be defined. osyms contains the old value
2154 of that symlist; everything up to there was defined by us. */
2155 /* Note that we preserve the order of the enum constants, so
2156 that in something like "enum {FOO, LAST_THING=FOO}" we print
2157 FOO, not LAST_THING. */
2158
2159 for (syms = *symlist, n = 0; syms; syms = syms->next)
2160 {
2161 int j = 0;
2162
2163 if (syms == osyms)
2164 j = o_nsyms;
2165 for (; j < syms->nsyms; j++, n++)
2166 {
2167 struct symbol *xsym = syms->symbol[j];
2168
2169 SYMBOL_TYPE (xsym) = type;
2170 TYPE_FIELD_NAME (type, n) = SYMBOL_LINKAGE_NAME (xsym);
2171 SET_FIELD_ENUMVAL (TYPE_FIELD (type, n), SYMBOL_VALUE (xsym));
2172 if (SYMBOL_VALUE (xsym) < 0)
2173 unsigned_enum = 0;
2174 TYPE_FIELD_BITSIZE (type, n) = 0;
2175 }
2176 if (syms == osyms)
2177 break;
2178 }
2179
2180 if (unsigned_enum)
2181 TYPE_UNSIGNED (type) = 1;
2182
2183 return type;
2184 }
2185
2186 /* Register our ability to parse symbols for coff BFD files. */
2187
2188 static const struct sym_fns coff_sym_fns =
2189 {
2190 coff_new_init, /* sym_new_init: init anything gbl to
2191 entire symtab */
2192 coff_symfile_init, /* sym_init: read initial info, setup
2193 for sym_read() */
2194 coff_symfile_read, /* sym_read: read a symbol file into
2195 symtab */
2196 NULL, /* sym_read_psymbols */
2197 coff_symfile_finish, /* sym_finish: finished with file,
2198 cleanup */
2199 default_symfile_offsets, /* sym_offsets: xlate external to
2200 internal form */
2201 default_symfile_segments, /* sym_segments: Get segment
2202 information from a file */
2203 NULL, /* sym_read_linetable */
2204
2205 default_symfile_relocate, /* sym_relocate: Relocate a debug
2206 section. */
2207 NULL, /* sym_probe_fns */
2208 &psym_functions
2209 };
2210
2211 void
2212 _initialize_coffread (void)
2213 {
2214 add_symtab_fns (bfd_target_coff_flavour, &coff_sym_fns);
2215
2216 coff_register_index
2217 = register_symbol_register_impl (LOC_REGISTER, &coff_register_funcs);
2218 }
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