1 /* Read coff symbol tables and convert to internal format, for GDB.
2    Copyright 1987, 1988, 1989, 1990, 1991, 1992, 1993, 1994, 1995, 1996,
3    1997, 1998, 1999, 2000, 2001, 2002, 2003, 2004
4    Free Software Foundation, Inc.
5    Contributed by David D. Johnson, Brown University (ddj@cs.brown.edu).
6 
7    This file is part of GDB.
8 
9    This program is free software; you can redistribute it and/or modify
10    it under the terms of the GNU General Public License as published by
11    the Free Software Foundation; either version 2 of the License, or
12    (at your option) any later version.
13 
14    This program is distributed in the hope that it will be useful,
15    but WITHOUT ANY WARRANTY; without even the implied warranty of
16    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
17    GNU General Public License for more details.
18 
19    You should have received a copy of the GNU General Public License
20    along with this program; if not, write to the Free Software
21    Foundation, Inc., 59 Temple Place - Suite 330,
22    Boston, MA 02111-1307, USA.  */
23 
24 #include "defs.h"
25 #include "symtab.h"
26 #include "gdbtypes.h"
27 #include "demangle.h"
28 #include "breakpoint.h"
29 
30 #include "bfd.h"
31 #include "gdb_obstack.h"
32 
33 #include "gdb_string.h"
34 #include <ctype.h>
35 
36 #include "coff/internal.h"	/* Internal format of COFF symbols in BFD */
37 #include "libcoff.h"		/* FIXME secret internal data from BFD */
38 #include "objfiles.h"
39 #include "buildsym.h"
40 #include "gdb-stabs.h"
41 #include "stabsread.h"
42 #include "complaints.h"
43 #include "target.h"
44 #include "gdb_assert.h"
45 #include "block.h"
46 #include "dictionary.h"
47 
48 #include "coff-pe-read.h"
49 
50 extern void _initialize_coffread (void);
51 
52 struct coff_symfile_info
53   {
54     file_ptr min_lineno_offset;	/* Where in file lowest line#s are */
55     file_ptr max_lineno_offset;	/* 1+last byte of line#s in file */
56 
57     CORE_ADDR textaddr;		/* Addr of .text section. */
58     unsigned int textsize;	/* Size of .text section. */
59     struct stab_section_list *stabsects;	/* .stab sections.  */
60     asection *stabstrsect;	/* Section pointer for .stab section */
61     char *stabstrdata;
62   };
63 
64 /* Translate an external name string into a user-visible name.  */
65 #define	EXTERNAL_NAME(string, abfd) \
66 	(string[0] == bfd_get_symbol_leading_char(abfd)? string+1: string)
67 
68 /* To be an sdb debug type, type must have at least a basic or primary
69    derived type.  Using this rather than checking against T_NULL is
70    said to prevent core dumps if we try to operate on Michael Bloom
71    dbx-in-coff file.  */
72 
73 #define SDB_TYPE(type) (BTYPE(type) | (type & N_TMASK))
74 
75 /* Core address of start and end of text of current source file.
76    This comes from a ".text" symbol where x_nlinno > 0.  */
77 
78 static CORE_ADDR current_source_start_addr;
79 static CORE_ADDR current_source_end_addr;
80 
81 /* The addresses of the symbol table stream and number of symbols
82    of the object file we are reading (as copied into core).  */
83 
84 static bfd *nlist_bfd_global;
85 static int nlist_nsyms_global;
86 
87 
88 /* Pointers to scratch storage, used for reading raw symbols and auxents.  */
89 
90 static char *temp_sym;
91 static char *temp_aux;
92 
93 /* Local variables that hold the shift and mask values for the
94    COFF file that we are currently reading.  These come back to us
95    from BFD, and are referenced by their macro names, as well as
96    internally to the BTYPE, ISPTR, ISFCN, ISARY, ISTAG, and DECREF
97    macros from include/coff/internal.h .  */
98 
99 static unsigned local_n_btmask;
100 static unsigned local_n_btshft;
101 static unsigned local_n_tmask;
102 static unsigned local_n_tshift;
103 
104 #define	N_BTMASK	local_n_btmask
105 #define	N_BTSHFT	local_n_btshft
106 #define	N_TMASK		local_n_tmask
107 #define	N_TSHIFT	local_n_tshift
108 
109 /* Local variables that hold the sizes in the file of various COFF structures.
110    (We only need to know this to read them from the file -- BFD will then
111    translate the data in them, into `internal_xxx' structs in the right
112    byte order, alignment, etc.)  */
113 
114 static unsigned local_linesz;
115 static unsigned local_symesz;
116 static unsigned local_auxesz;
117 
118 /* This is set if this is a PE format file.  */
119 
120 static int pe_file;
121 
122 /* Chain of typedefs of pointers to empty struct/union types.
123    They are chained thru the SYMBOL_VALUE_CHAIN.  */
124 
125 static struct symbol *opaque_type_chain[HASHSIZE];
126 
127 /* Simplified internal version of coff symbol table information */
128 
129 struct coff_symbol
130   {
131     char *c_name;
132     int c_symnum;		/* symbol number of this entry */
133     int c_naux;			/* 0 if syment only, 1 if syment + auxent, etc */
134     long c_value;
135     int c_sclass;
136     int c_secnum;
137     unsigned int c_type;
138   };
139 
140 extern void stabsread_clear_cache (void);
141 
142 static struct type *coff_read_struct_type (int, int, int);
143 
144 static struct type *decode_base_type (struct coff_symbol *,
145 				      unsigned int, union internal_auxent *);
146 
147 static struct type *decode_type (struct coff_symbol *, unsigned int,
148 				 union internal_auxent *);
149 
150 static struct type *decode_function_type (struct coff_symbol *,
151 					  unsigned int,
152 					  union internal_auxent *);
153 
154 static struct type *coff_read_enum_type (int, int, int);
155 
156 static struct symbol *process_coff_symbol (struct coff_symbol *,
157 					   union internal_auxent *,
158 					   struct objfile *);
159 
160 static void patch_opaque_types (struct symtab *);
161 
162 static void enter_linenos (long, int, int, struct objfile *);
163 
164 static void free_linetab (void);
165 
166 static void free_linetab_cleanup (void *ignore);
167 
168 static int init_lineno (bfd *, long, int);
169 
170 static char *getsymname (struct internal_syment *);
171 
172 static char *coff_getfilename (union internal_auxent *);
173 
174 static void free_stringtab (void);
175 
176 static void free_stringtab_cleanup (void *ignore);
177 
178 static int init_stringtab (bfd *, long);
179 
180 static void read_one_sym (struct coff_symbol *,
181 			  struct internal_syment *, union internal_auxent *);
182 
183 static void coff_symtab_read (long, unsigned int, struct objfile *);
184 
185 /* We are called once per section from coff_symfile_read.  We
186    need to examine each section we are passed, check to see
187    if it is something we are interested in processing, and
188    if so, stash away some access information for the section.
189 
190    FIXME: The section names should not be hardwired strings (what
191    should they be?  I don't think most object file formats have enough
192    section flags to specify what kind of debug section it is
193    -kingdon).  */
194 
195 static void
coff_locate_sections(bfd * abfd,asection * sectp,void * csip)196 coff_locate_sections (bfd *abfd, asection *sectp, void *csip)
197 {
198   struct coff_symfile_info *csi;
199   const char *name;
200 
201   csi = (struct coff_symfile_info *) csip;
202   name = bfd_get_section_name (abfd, sectp);
203   if (DEPRECATED_STREQ (name, ".text"))
204     {
205       csi->textaddr = bfd_section_vma (abfd, sectp);
206       csi->textsize += bfd_section_size (abfd, sectp);
207     }
208   else if (strncmp (name, ".text", sizeof ".text" - 1) == 0)
209     {
210       csi->textsize += bfd_section_size (abfd, sectp);
211     }
212   else if (DEPRECATED_STREQ (name, ".stabstr"))
213     {
214       csi->stabstrsect = sectp;
215     }
216   else if (strncmp (name, ".stab", sizeof ".stab" - 1) == 0)
217     {
218       const char *s;
219 
220       /* We can have multiple .stab sections if linked with
221          --split-by-reloc.  */
222       for (s = name + sizeof ".stab" - 1; *s != '\0'; s++)
223 	if (!isdigit (*s))
224 	  break;
225       if (*s == '\0')
226 	{
227 	  struct stab_section_list *n, **pn;
228 
229 	  n = ((struct stab_section_list *)
230 	       xmalloc (sizeof (struct stab_section_list)));
231 	  n->section = sectp;
232 	  n->next = NULL;
233 	  for (pn = &csi->stabsects; *pn != NULL; pn = &(*pn)->next)
234 	    ;
235 	  *pn = n;
236 
237 	  /* This will be run after coffstab_build_psymtabs is called
238 	     in coff_symfile_read, at which point we no longer need
239 	     the information.  */
240 	  make_cleanup (xfree, n);
241 	}
242     }
243 }
244 
245 /* Return the section_offsets* that CS points to.  */
246 static int cs_to_section (struct coff_symbol *, struct objfile *);
247 
248 struct find_targ_sec_arg
249   {
250     int targ_index;
251     asection **resultp;
252   };
253 
254 static void
find_targ_sec(bfd * abfd,asection * sect,void * obj)255 find_targ_sec (bfd *abfd, asection *sect, void *obj)
256 {
257   struct find_targ_sec_arg *args = (struct find_targ_sec_arg *) obj;
258   if (sect->target_index == args->targ_index)
259     *args->resultp = sect;
260 }
261 
262 /* Return the section number (SECT_OFF_*) that CS points to.  */
263 static int
cs_to_section(struct coff_symbol * cs,struct objfile * objfile)264 cs_to_section (struct coff_symbol *cs, struct objfile *objfile)
265 {
266   asection *sect = NULL;
267   struct find_targ_sec_arg args;
268   int off = SECT_OFF_TEXT (objfile);
269 
270   args.targ_index = cs->c_secnum;
271   args.resultp = &sect;
272   bfd_map_over_sections (objfile->obfd, find_targ_sec, &args);
273   if (sect != NULL)
274     {
275       /* This is the section.  Figure out what SECT_OFF_* code it is.  */
276       if (bfd_get_section_flags (abfd, sect) & SEC_CODE)
277 	off = SECT_OFF_TEXT (objfile);
278       else if (bfd_get_section_flags (abfd, sect) & SEC_LOAD)
279 	off = SECT_OFF_DATA (objfile);
280       else
281 	/* Just return the bfd section index. */
282 	off = sect->index;
283     }
284   return off;
285 }
286 
287 /* Return the address of the section of a COFF symbol.  */
288 
289 static CORE_ADDR cs_section_address (struct coff_symbol *, bfd *);
290 
291 static CORE_ADDR
cs_section_address(struct coff_symbol * cs,bfd * abfd)292 cs_section_address (struct coff_symbol *cs, bfd *abfd)
293 {
294   asection *sect = NULL;
295   struct find_targ_sec_arg args;
296   CORE_ADDR addr = 0;
297 
298   args.targ_index = cs->c_secnum;
299   args.resultp = &sect;
300   bfd_map_over_sections (abfd, find_targ_sec, &args);
301   if (sect != NULL)
302     addr = bfd_get_section_vma (objfile->obfd, sect);
303   return addr;
304 }
305 
306 /* Look up a coff type-number index.  Return the address of the slot
307    where the type for that index is stored.
308    The type-number is in INDEX.
309 
310    This can be used for finding the type associated with that index
311    or for associating a new type with the index.  */
312 
313 static struct type **
coff_lookup_type(int index)314 coff_lookup_type (int index)
315 {
316   if (index >= type_vector_length)
317     {
318       int old_vector_length = type_vector_length;
319 
320       type_vector_length *= 2;
321       if (index /* is still */  >= type_vector_length)
322 	type_vector_length = index * 2;
323 
324       type_vector = (struct type **)
325 	xrealloc ((char *) type_vector,
326 		  type_vector_length * sizeof (struct type *));
327       memset (&type_vector[old_vector_length], 0,
328 	 (type_vector_length - old_vector_length) * sizeof (struct type *));
329     }
330   return &type_vector[index];
331 }
332 
333 /* Make sure there is a type allocated for type number index
334    and return the type object.
335    This can create an empty (zeroed) type object.  */
336 
337 static struct type *
coff_alloc_type(int index)338 coff_alloc_type (int index)
339 {
340   struct type **type_addr = coff_lookup_type (index);
341   struct type *type = *type_addr;
342 
343   /* If we are referring to a type not known at all yet,
344      allocate an empty type for it.
345      We will fill it in later if we find out how.  */
346   if (type == NULL)
347     {
348       type = alloc_type (current_objfile);
349       *type_addr = type;
350     }
351   return type;
352 }
353 
354 /* Start a new symtab for a new source file.
355    This is called when a COFF ".file" symbol is seen;
356    it indicates the start of data for one original source file.  */
357 
358 static void
coff_start_symtab(char * name)359 coff_start_symtab (char *name)
360 {
361   start_symtab (
362   /* We fill in the filename later.  start_symtab puts
363      this pointer into last_source_file and we put it in
364      subfiles->name, which end_symtab frees; that's why
365      it must be malloc'd.  */
366 		 savestring (name, strlen (name)),
367   /* We never know the directory name for COFF.  */
368 		 NULL,
369   /* The start address is irrelevant, since we set
370      last_source_start_addr in coff_end_symtab.  */
371 		 0);
372   record_debugformat ("COFF");
373 }
374 
375 /* Save the vital information from when starting to read a file,
376    for use when closing off the current file.
377    NAME is the file name the symbols came from, START_ADDR is the first
378    text address for the file, and SIZE is the number of bytes of text.  */
379 
380 static void
complete_symtab(char * name,CORE_ADDR start_addr,unsigned int size)381 complete_symtab (char *name, CORE_ADDR start_addr, unsigned int size)
382 {
383   if (last_source_file != NULL)
384     xfree (last_source_file);
385   last_source_file = savestring (name, strlen (name));
386   current_source_start_addr = start_addr;
387   current_source_end_addr = start_addr + size;
388 }
389 
390 /* Finish the symbol definitions for one main source file,
391    close off all the lexical contexts for that file
392    (creating struct block's for them), then make the
393    struct symtab for that file and put it in the list of all such. */
394 
395 static void
coff_end_symtab(struct objfile * objfile)396 coff_end_symtab (struct objfile *objfile)
397 {
398   struct symtab *symtab;
399 
400   last_source_start_addr = current_source_start_addr;
401 
402   symtab = end_symtab (current_source_end_addr, objfile, SECT_OFF_TEXT (objfile));
403 
404   if (symtab != NULL)
405     free_named_symtabs (symtab->filename);
406 
407   /* Reinitialize for beginning of new file. */
408   last_source_file = NULL;
409 }
410 
411 static void
record_minimal_symbol(char * name,CORE_ADDR address,enum minimal_symbol_type type,struct objfile * objfile)412 record_minimal_symbol (char *name, CORE_ADDR address,
413 		       enum minimal_symbol_type type, struct objfile *objfile)
414 {
415   /* We don't want TDESC entry points in the minimal symbol table */
416   if (name[0] == '@')
417     return;
418 
419   prim_record_minimal_symbol (name, address, type, objfile);
420 }
421 
422 /* coff_symfile_init ()
423    is the coff-specific initialization routine for reading symbols.
424    It is passed a struct objfile which contains, among other things,
425    the BFD for the file whose symbols are being read, and a slot for
426    a pointer to "private data" which we fill with cookies and other
427    treats for coff_symfile_read ().
428 
429    We will only be called if this is a COFF or COFF-like file.
430    BFD handles figuring out the format of the file, and code in symtab.c
431    uses BFD's determination to vector to us.
432 
433    The ultimate result is a new symtab (or, FIXME, eventually a psymtab).  */
434 
435 static void
coff_symfile_init(struct objfile * objfile)436 coff_symfile_init (struct objfile *objfile)
437 {
438   /* Allocate struct to keep track of stab reading. */
439   objfile->sym_stab_info = (struct dbx_symfile_info *)
440     xmmalloc (objfile->md, sizeof (struct dbx_symfile_info));
441 
442   memset (objfile->sym_stab_info, 0,
443 	  sizeof (struct dbx_symfile_info));
444 
445   /* Allocate struct to keep track of the symfile */
446   objfile->sym_private = xmmalloc (objfile->md,
447 				   sizeof (struct coff_symfile_info));
448 
449   memset (objfile->sym_private, 0, sizeof (struct coff_symfile_info));
450 
451   /* COFF objects may be reordered, so set OBJF_REORDERED.  If we
452      find this causes a significant slowdown in gdb then we could
453      set it in the debug symbol readers only when necessary.  */
454   objfile->flags |= OBJF_REORDERED;
455 
456   init_entry_point_info (objfile);
457 }
458 
459 /* This function is called for every section; it finds the outer limits
460    of the line table (minimum and maximum file offset) so that the
461    mainline code can read the whole thing for efficiency.  */
462 
463 static void
find_linenos(bfd * abfd,struct bfd_section * asect,void * vpinfo)464 find_linenos (bfd *abfd, struct bfd_section *asect, void *vpinfo)
465 {
466   struct coff_symfile_info *info;
467   int size, count;
468   file_ptr offset, maxoff;
469 
470 /* WARNING WILL ROBINSON!  ACCESSING BFD-PRIVATE DATA HERE!  FIXME!  */
471   count = asect->lineno_count;
472 /* End of warning */
473 
474   if (count == 0)
475     return;
476   size = count * local_linesz;
477 
478   info = (struct coff_symfile_info *) vpinfo;
479 /* WARNING WILL ROBINSON!  ACCESSING BFD-PRIVATE DATA HERE!  FIXME!  */
480   offset = asect->line_filepos;
481 /* End of warning */
482 
483   if (offset < info->min_lineno_offset || info->min_lineno_offset == 0)
484     info->min_lineno_offset = offset;
485 
486   maxoff = offset + size;
487   if (maxoff > info->max_lineno_offset)
488     info->max_lineno_offset = maxoff;
489 }
490 
491 
492 /* The BFD for this file -- only good while we're actively reading
493    symbols into a psymtab or a symtab.  */
494 
495 static bfd *symfile_bfd;
496 
497 /* Read a symbol file, after initialization by coff_symfile_init.  */
498 
499 static void
coff_symfile_read(struct objfile * objfile,int mainline)500 coff_symfile_read (struct objfile *objfile, int mainline)
501 {
502   struct coff_symfile_info *info;
503   struct dbx_symfile_info *dbxinfo;
504   bfd *abfd = objfile->obfd;
505   coff_data_type *cdata = coff_data (abfd);
506   char *name = bfd_get_filename (abfd);
507   int val;
508   unsigned int num_symbols;
509   int symtab_offset;
510   int stringtab_offset;
511   struct cleanup *back_to, *cleanup_minimal_symbols;
512   int stabstrsize;
513   int len;
514   char * target;
515 
516   info = (struct coff_symfile_info *) objfile->sym_private;
517   dbxinfo = objfile->sym_stab_info;
518   symfile_bfd = abfd;		/* Kludge for swap routines */
519 
520 /* WARNING WILL ROBINSON!  ACCESSING BFD-PRIVATE DATA HERE!  FIXME!  */
521   num_symbols = bfd_get_symcount (abfd);	/* How many syms */
522   symtab_offset = cdata->sym_filepos;	/* Symbol table file offset */
523   stringtab_offset = symtab_offset +	/* String table file offset */
524     num_symbols * cdata->local_symesz;
525 
526   /* Set a few file-statics that give us specific information about
527      the particular COFF file format we're reading.  */
528   local_n_btmask = cdata->local_n_btmask;
529   local_n_btshft = cdata->local_n_btshft;
530   local_n_tmask = cdata->local_n_tmask;
531   local_n_tshift = cdata->local_n_tshift;
532   local_linesz = cdata->local_linesz;
533   local_symesz = cdata->local_symesz;
534   local_auxesz = cdata->local_auxesz;
535 
536   /* Allocate space for raw symbol and aux entries, based on their
537      space requirements as reported by BFD.  */
538   temp_sym = (char *) xmalloc
539     (cdata->local_symesz + cdata->local_auxesz);
540   temp_aux = temp_sym + cdata->local_symesz;
541   back_to = make_cleanup (free_current_contents, &temp_sym);
542 
543   /* We need to know whether this is a PE file, because in PE files,
544      unlike standard COFF files, symbol values are stored as offsets
545      from the section address, rather than as absolute addresses.
546      FIXME: We should use BFD to read the symbol table, and thus avoid
547      this problem.  */
548   pe_file =
549     strncmp (bfd_get_target (objfile->obfd), "pe", 2) == 0
550     || strncmp (bfd_get_target (objfile->obfd), "epoc-pe", 7) == 0;
551 
552 /* End of warning */
553 
554   info->min_lineno_offset = 0;
555   info->max_lineno_offset = 0;
556 
557   /* Only read line number information if we have symbols.
558 
559      On Windows NT, some of the system's DLL's have sections with
560      PointerToLinenumbers fields that are non-zero, but point at
561      random places within the image file.  (In the case I found,
562      KERNEL32.DLL's .text section has a line number info pointer that
563      points into the middle of the string `lib\\i386\kernel32.dll'.)
564 
565      However, these DLL's also have no symbols.  The line number
566      tables are meaningless without symbols.  And in fact, GDB never
567      uses the line number information unless there are symbols.  So we
568      can avoid spurious error messages (and maybe run a little
569      faster!) by not even reading the line number table unless we have
570      symbols.  */
571   if (num_symbols > 0)
572     {
573       /* Read the line number table, all at once.  */
574       bfd_map_over_sections (abfd, find_linenos, (void *) info);
575 
576       make_cleanup (free_linetab_cleanup, 0 /*ignore*/);
577       val = init_lineno (abfd, info->min_lineno_offset,
578                          info->max_lineno_offset - info->min_lineno_offset);
579       if (val < 0)
580         error ("\"%s\": error reading line numbers\n", name);
581     }
582 
583   /* Now read the string table, all at once.  */
584 
585   make_cleanup (free_stringtab_cleanup, 0 /*ignore*/);
586   val = init_stringtab (abfd, stringtab_offset);
587   if (val < 0)
588     error ("\"%s\": can't get string table", name);
589 
590   init_minimal_symbol_collection ();
591   cleanup_minimal_symbols = make_cleanup_discard_minimal_symbols ();
592 
593   /* Now that the executable file is positioned at symbol table,
594      process it and define symbols accordingly.  */
595 
596   coff_symtab_read ((long) symtab_offset, num_symbols, objfile);
597 
598   /* Install any minimal symbols that have been collected as the current
599      minimal symbols for this objfile.  */
600 
601   install_minimal_symbols (objfile);
602 
603   /* Free the installed minimal symbol data.  */
604   do_cleanups (cleanup_minimal_symbols);
605 
606   /* If we are reinitializing, or if we have not loaded syms yet,
607      empty the psymtab.  "mainline" is cleared so the *_read_psymtab
608      functions do not all re-initialize it.  */
609   if (mainline)
610     {
611       init_psymbol_list (objfile, 0);
612       mainline = 0;
613     }
614 
615   bfd_map_over_sections (abfd, coff_locate_sections, (void *) info);
616 
617   if (info->stabsects)
618     {
619       if (!info->stabstrsect)
620 	{
621 	  error (("The debugging information in `%s' is corrupted.\n"
622 		  "The file has a `.stabs' section, but no `.stabstr' "
623 		  "section."),
624 		 name);
625 	}
626 
627       /* FIXME: dubious.  Why can't we use something normal like
628          bfd_get_section_contents?  */
629       bfd_seek (abfd, abfd->where, 0);
630 
631       stabstrsize = bfd_section_size (abfd, info->stabstrsect);
632 
633       coffstab_build_psymtabs (objfile,
634 			       mainline,
635 			       info->textaddr, info->textsize,
636 			       info->stabsects,
637 			       info->stabstrsect->filepos, stabstrsize);
638     }
639   if (dwarf2_has_info (objfile))
640     {
641       /* DWARF2 sections.  */
642       dwarf2_build_psymtabs (objfile, mainline);
643     }
644 
645   dwarf2_build_frame_info (objfile);
646 
647   do_cleanups (back_to);
648 }
649 
650 static void
coff_new_init(struct objfile * ignore)651 coff_new_init (struct objfile *ignore)
652 {
653 }
654 
655 /* Perform any local cleanups required when we are done with a particular
656    objfile.  I.E, we are in the process of discarding all symbol information
657    for an objfile, freeing up all memory held for it, and unlinking the
658    objfile struct from the global list of known objfiles. */
659 
660 static void
coff_symfile_finish(struct objfile * objfile)661 coff_symfile_finish (struct objfile *objfile)
662 {
663   if (objfile->sym_private != NULL)
664     {
665       xmfree (objfile->md, objfile->sym_private);
666     }
667 
668   /* Let stabs reader clean up */
669   stabsread_clear_cache ();
670 }
671 
672 
673 /* Given pointers to a symbol table in coff style exec file,
674    analyze them and create struct symtab's describing the symbols.
675    NSYMS is the number of symbols in the symbol table.
676    We read them one at a time using read_one_sym ().  */
677 
678 static void
coff_symtab_read(long symtab_offset,unsigned int nsyms,struct objfile * objfile)679 coff_symtab_read (long symtab_offset, unsigned int nsyms,
680 		  struct objfile *objfile)
681 {
682   struct context_stack *new;
683   struct coff_symbol coff_symbol;
684   struct coff_symbol *cs = &coff_symbol;
685   static struct internal_syment main_sym;
686   static union internal_auxent main_aux;
687   struct coff_symbol fcn_cs_saved;
688   static struct internal_syment fcn_sym_saved;
689   static union internal_auxent fcn_aux_saved;
690   struct symtab *s;
691   /* A .file is open.  */
692   int in_source_file = 0;
693   int next_file_symnum = -1;
694   /* Name of the current file.  */
695   char *filestring = "";
696   int depth = 0;
697   int fcn_first_line = 0;
698   CORE_ADDR fcn_first_line_addr = 0;
699   int fcn_last_line = 0;
700   int fcn_start_addr = 0;
701   long fcn_line_ptr = 0;
702   int val;
703   CORE_ADDR tmpaddr;
704 
705   /* Work around a stdio bug in SunOS4.1.1 (this makes me nervous....
706      it's hard to know I've really worked around it.  The fix should be
707      harmless, anyway).  The symptom of the bug is that the first
708      fread (in read_one_sym), will (in my example) actually get data
709      from file offset 268, when the fseek was to 264 (and ftell shows
710      264).  This causes all hell to break loose.  I was unable to
711      reproduce this on a short test program which operated on the same
712      file, performing (I think) the same sequence of operations.
713 
714      It stopped happening when I put in this (former) rewind().
715 
716      FIXME: Find out if this has been reported to Sun, whether it has
717      been fixed in a later release, etc.  */
718 
719   bfd_seek (objfile->obfd, 0, 0);
720 
721   /* Position to read the symbol table. */
722   val = bfd_seek (objfile->obfd, (long) symtab_offset, 0);
723   if (val < 0)
724     perror_with_name (objfile->name);
725 
726   current_objfile = objfile;
727   nlist_bfd_global = objfile->obfd;
728   nlist_nsyms_global = nsyms;
729   last_source_file = NULL;
730   memset (opaque_type_chain, 0, sizeof opaque_type_chain);
731 
732   if (type_vector)		/* Get rid of previous one */
733     xfree (type_vector);
734   type_vector_length = 160;
735   type_vector = (struct type **)
736     xmalloc (type_vector_length * sizeof (struct type *));
737   memset (type_vector, 0, type_vector_length * sizeof (struct type *));
738 
739   coff_start_symtab ("");
740 
741   symnum = 0;
742   while (symnum < nsyms)
743     {
744       QUIT;			/* Make this command interruptable.  */
745 
746       read_one_sym (cs, &main_sym, &main_aux);
747 
748       if (cs->c_symnum == next_file_symnum && cs->c_sclass != C_FILE)
749 	{
750 	  if (last_source_file)
751 	    coff_end_symtab (objfile);
752 
753 	  coff_start_symtab ("_globals_");
754 	  complete_symtab ("_globals_", 0, 0);
755 	  /* done with all files, everything from here on out is globals */
756 	}
757 
758       /* Special case for file with type declarations only, no text.  */
759       if (!last_source_file && SDB_TYPE (cs->c_type)
760 	  && cs->c_secnum == N_DEBUG)
761 	complete_symtab (filestring, 0, 0);
762 
763       /* Typedefs should not be treated as symbol definitions.  */
764       if (ISFCN (cs->c_type) && cs->c_sclass != C_TPDEF)
765 	{
766 	  /* Record all functions -- external and static -- in minsyms. */
767 	  tmpaddr = cs->c_value + ANOFFSET (objfile->section_offsets, SECT_OFF_TEXT (objfile));
768 	  record_minimal_symbol (cs->c_name, tmpaddr, mst_text, objfile);
769 
770 	  fcn_line_ptr = main_aux.x_sym.x_fcnary.x_fcn.x_lnnoptr;
771 	  fcn_start_addr = tmpaddr;
772 	  fcn_cs_saved = *cs;
773 	  fcn_sym_saved = main_sym;
774 	  fcn_aux_saved = main_aux;
775 	  continue;
776 	}
777 
778       switch (cs->c_sclass)
779 	{
780 	case C_EFCN:
781 	case C_EXTDEF:
782 	case C_ULABEL:
783 	case C_USTATIC:
784 	case C_LINE:
785 	case C_ALIAS:
786 	case C_HIDDEN:
787 	  complaint (&symfile_complaints, "Bad n_sclass for symbol %s",
788 		     cs->c_name);
789 	  break;
790 
791 	case C_FILE:
792 	  /* c_value field contains symnum of next .file entry in table
793 	     or symnum of first global after last .file.  */
794 	  next_file_symnum = cs->c_value;
795 	  if (cs->c_naux > 0)
796 	    filestring = coff_getfilename (&main_aux);
797 	  else
798 	    filestring = "";
799 
800 	  /* Complete symbol table for last object file
801 	     containing debugging information.  */
802 	  if (last_source_file)
803 	    {
804 	      coff_end_symtab (objfile);
805 	      coff_start_symtab (filestring);
806 	    }
807 	  in_source_file = 1;
808 	  break;
809 
810 	  /* C_LABEL is used for labels and static functions.  Including
811 	     it here allows gdb to see static functions when no debug
812 	     info is available.  */
813 	case C_LABEL:
814 	  /* However, labels within a function can make weird backtraces,
815 	     so filter them out (from phdm@macqel.be). */
816 	  if (within_function)
817 	    break;
818 	case C_STAT:
819 	case C_THUMBLABEL:
820 	case C_THUMBSTAT:
821 	case C_THUMBSTATFUNC:
822 	  if (cs->c_name[0] == '.')
823 	    {
824 	      if (DEPRECATED_STREQ (cs->c_name, ".text"))
825 		{
826 		  /* FIXME:  don't wire in ".text" as section name
827 		     or symbol name! */
828 		  /* Check for in_source_file deals with case of
829 		     a file with debugging symbols
830 		     followed by a later file with no symbols.  */
831 		  if (in_source_file)
832 		    complete_symtab (filestring,
833 		    cs->c_value + ANOFFSET (objfile->section_offsets, SECT_OFF_TEXT (objfile)),
834 				     main_aux.x_scn.x_scnlen);
835 		  in_source_file = 0;
836 		}
837 	      /* flush rest of '.' symbols */
838 	      break;
839 	    }
840 	  else if (!SDB_TYPE (cs->c_type)
841 		   && cs->c_name[0] == 'L'
842 		   && (strncmp (cs->c_name, "LI%", 3) == 0
843 		       || strncmp (cs->c_name, "LF%", 3) == 0
844 		       || strncmp (cs->c_name, "LC%", 3) == 0
845 		       || strncmp (cs->c_name, "LP%", 3) == 0
846 		       || strncmp (cs->c_name, "LPB%", 4) == 0
847 		       || strncmp (cs->c_name, "LBB%", 4) == 0
848 		       || strncmp (cs->c_name, "LBE%", 4) == 0
849 		       || strncmp (cs->c_name, "LPBX%", 5) == 0))
850 	    /* At least on a 3b1, gcc generates swbeg and string labels
851 	       that look like this.  Ignore them.  */
852 	    break;
853 	  /* fall in for static symbols that don't start with '.' */
854 	case C_THUMBEXT:
855 	case C_THUMBEXTFUNC:
856 	case C_EXT:
857 	  {
858 	    /* Record it in the minimal symbols regardless of
859 	       SDB_TYPE.  This parallels what we do for other debug
860 	       formats, and probably is needed to make
861 	       print_address_symbolic work right without the (now
862 	       gone) "set fast-symbolic-addr off" kludge.  */
863 
864 	    enum minimal_symbol_type ms_type;
865 	    int sec;
866 
867 	    if (cs->c_secnum == N_UNDEF)
868 	      {
869 		/* This is a common symbol.  See if the target
870 		   environment knows where it has been relocated to.  */
871 		CORE_ADDR reladdr;
872 		if (target_lookup_symbol (cs->c_name, &reladdr))
873 		  {
874 		    /* Error in lookup; ignore symbol.  */
875 		    break;
876 		  }
877 		tmpaddr = reladdr;
878 		/* The address has already been relocated; make sure that
879 		   objfile_relocate doesn't relocate it again.  */
880 		sec = -2;
881 		ms_type = cs->c_sclass == C_EXT
882 		  || cs->c_sclass == C_THUMBEXT ?
883 		  mst_bss : mst_file_bss;
884 	      }
885  	    else if (cs->c_secnum == N_ABS)
886  	      {
887  		/* Use the correct minimal symbol type (and don't
888  		   relocate) for absolute values. */
889  		ms_type = mst_abs;
890  		sec = cs_to_section (cs, objfile);
891  		tmpaddr = cs->c_value;
892  	      }
893 	    else
894 	      {
895 		sec = cs_to_section (cs, objfile);
896 		tmpaddr = cs->c_value;
897  		/* Statics in a PE file also get relocated */
898  		if (cs->c_sclass == C_EXT
899  		    || cs->c_sclass == C_THUMBEXTFUNC
900  		    || cs->c_sclass == C_THUMBEXT
901  		    || (pe_file && (cs->c_sclass == C_STAT)))
902 		  tmpaddr += ANOFFSET (objfile->section_offsets, sec);
903 
904 		if (sec == SECT_OFF_TEXT (objfile))
905 		  {
906 		    ms_type =
907 		      cs->c_sclass == C_EXT || cs->c_sclass == C_THUMBEXTFUNC
908 		      || cs->c_sclass == C_THUMBEXT ?
909 		      mst_text : mst_file_text;
910 		    tmpaddr = SMASH_TEXT_ADDRESS (tmpaddr);
911 		  }
912 		else if (sec == SECT_OFF_DATA (objfile))
913 		  {
914 		    ms_type =
915 		      cs->c_sclass == C_EXT || cs->c_sclass == C_THUMBEXT ?
916 		      mst_data : mst_file_data;
917 		  }
918 		else if (sec == SECT_OFF_BSS (objfile))
919 		  {
920 		    ms_type =
921 		      cs->c_sclass == C_EXT || cs->c_sclass == C_THUMBEXT ?
922 		      mst_data : mst_file_data;
923 		  }
924 		else
925 		  ms_type = mst_unknown;
926 	      }
927 
928 	    if (cs->c_name[0] != '@' /* Skip tdesc symbols */ )
929 	      {
930 		struct minimal_symbol *msym;
931 		msym = prim_record_minimal_symbol_and_info
932 		  (cs->c_name, tmpaddr, ms_type, NULL,
933 		   sec, NULL, objfile);
934 		if (msym)
935 		  COFF_MAKE_MSYMBOL_SPECIAL (cs->c_sclass, msym);
936 	      }
937 	    if (SDB_TYPE (cs->c_type))
938 	      {
939 		struct symbol *sym;
940 		sym = process_coff_symbol
941 		  (cs, &main_aux, objfile);
942 		SYMBOL_VALUE (sym) = tmpaddr;
943 		SYMBOL_SECTION (sym) = sec;
944 	      }
945 	  }
946 	  break;
947 
948 	case C_FCN:
949 	  if (DEPRECATED_STREQ (cs->c_name, ".bf"))
950 	    {
951 	      within_function = 1;
952 
953 	      /* value contains address of first non-init type code */
954 	      /* main_aux.x_sym.x_misc.x_lnsz.x_lnno
955 	         contains line number of '{' } */
956 	      if (cs->c_naux != 1)
957 		complaint (&symfile_complaints,
958 			   "`.bf' symbol %d has no aux entry", cs->c_symnum);
959 	      fcn_first_line = main_aux.x_sym.x_misc.x_lnsz.x_lnno;
960 	      fcn_first_line_addr = cs->c_value;
961 
962 	      /* Might want to check that locals are 0 and
963 	         context_stack_depth is zero, and complain if not.  */
964 
965 	      depth = 0;
966 	      new = push_context (depth, fcn_start_addr);
967 	      fcn_cs_saved.c_name = getsymname (&fcn_sym_saved);
968 	      new->name =
969 		process_coff_symbol (&fcn_cs_saved, &fcn_aux_saved, objfile);
970 	    }
971 	  else if (DEPRECATED_STREQ (cs->c_name, ".ef"))
972 	    {
973 	      if (!within_function)
974 		error ("Bad coff function information\n");
975 	      /* the value of .ef is the address of epilogue code;
976 	         not useful for gdb.  */
977 	      /* { main_aux.x_sym.x_misc.x_lnsz.x_lnno
978 	         contains number of lines to '}' */
979 
980 	      if (context_stack_depth <= 0)
981 		{		/* We attempted to pop an empty context stack */
982 		  complaint (&symfile_complaints,
983 			     "`.ef' symbol without matching `.bf' symbol ignored starting at symnum %d",
984 			     cs->c_symnum);
985 		  within_function = 0;
986 		  break;
987 		}
988 
989 	      new = pop_context ();
990 	      /* Stack must be empty now.  */
991 	      if (context_stack_depth > 0 || new == NULL)
992 		{
993 		  complaint (&symfile_complaints,
994 			     "Unmatched .ef symbol(s) ignored starting at symnum %d",
995 			     cs->c_symnum);
996 		  within_function = 0;
997 		  break;
998 		}
999 	      if (cs->c_naux != 1)
1000 		{
1001 		  complaint (&symfile_complaints,
1002 			     "`.ef' symbol %d has no aux entry", cs->c_symnum);
1003 		  fcn_last_line = 0x7FFFFFFF;
1004 		}
1005 	      else
1006 		{
1007 		  fcn_last_line = main_aux.x_sym.x_misc.x_lnsz.x_lnno;
1008 		}
1009 	      /* fcn_first_line is the line number of the opening '{'.
1010 	         Do not record it - because it would affect gdb's idea
1011 	         of the line number of the first statement of the function -
1012 	         except for one-line functions, for which it is also the line
1013 	         number of all the statements and of the closing '}', and
1014 	         for which we do not have any other statement-line-number. */
1015 	      if (fcn_last_line == 1)
1016 		record_line (current_subfile, fcn_first_line,
1017 			     fcn_first_line_addr);
1018 	      else
1019 		enter_linenos (fcn_line_ptr, fcn_first_line, fcn_last_line,
1020 			       objfile);
1021 
1022 	      finish_block (new->name, &local_symbols, new->old_blocks,
1023 			    new->start_addr,
1024 #if defined (FUNCTION_EPILOGUE_SIZE)
1025 	      /* This macro should be defined only on
1026 	         machines where the
1027 	         fcn_aux_saved.x_sym.x_misc.x_fsize
1028 	         field is always zero.
1029 	         So use the .bf record information that
1030 	         points to the epilogue and add the size
1031 	         of the epilogue.  */
1032 			    cs->c_value
1033 			    + FUNCTION_EPILOGUE_SIZE
1034 			    + ANOFFSET (objfile->section_offsets, SECT_OFF_TEXT (objfile)),
1035 #else
1036 			    fcn_cs_saved.c_value
1037 			    + fcn_aux_saved.x_sym.x_misc.x_fsize
1038 			    + ANOFFSET (objfile->section_offsets, SECT_OFF_TEXT (objfile)),
1039 #endif
1040 			    objfile
1041 		);
1042 	      within_function = 0;
1043 	    }
1044 	  break;
1045 
1046 	case C_BLOCK:
1047 	  if (DEPRECATED_STREQ (cs->c_name, ".bb"))
1048 	    {
1049 	      tmpaddr = cs->c_value;
1050 	      tmpaddr += ANOFFSET (objfile->section_offsets, SECT_OFF_TEXT (objfile));
1051 	      push_context (++depth, tmpaddr);
1052 	    }
1053 	  else if (DEPRECATED_STREQ (cs->c_name, ".eb"))
1054 	    {
1055 	      if (context_stack_depth <= 0)
1056 		{		/* We attempted to pop an empty context stack */
1057 		  complaint (&symfile_complaints,
1058 			     "`.eb' symbol without matching `.bb' symbol ignored starting at symnum %d",
1059 			     cs->c_symnum);
1060 		  break;
1061 		}
1062 
1063 	      new = pop_context ();
1064 	      if (depth-- != new->depth)
1065 		{
1066 		  complaint (&symfile_complaints,
1067 			     "Mismatched .eb symbol ignored starting at symnum %d",
1068 			     symnum);
1069 		  break;
1070 		}
1071 	      if (local_symbols && context_stack_depth > 0)
1072 		{
1073 		  tmpaddr =
1074 		    cs->c_value + ANOFFSET (objfile->section_offsets, SECT_OFF_TEXT (objfile));
1075 		  /* Make a block for the local symbols within.  */
1076 		  finish_block (0, &local_symbols, new->old_blocks,
1077 				new->start_addr, tmpaddr, objfile);
1078 		}
1079 	      /* Now pop locals of block just finished.  */
1080 	      local_symbols = new->locals;
1081 	    }
1082 	  break;
1083 
1084 	default:
1085 	  process_coff_symbol (cs, &main_aux, objfile);
1086 	  break;
1087 	}
1088     }
1089 
1090   if ((nsyms == 0) && (pe_file))
1091     {
1092       /* We've got no debugging symbols, but it's is a portable
1093 	 executable, so try to read the export table */
1094       read_pe_exported_syms (objfile);
1095     }
1096 
1097   if (last_source_file)
1098     coff_end_symtab (objfile);
1099 
1100   /* Patch up any opaque types (references to types that are not defined
1101      in the file where they are referenced, e.g. "struct foo *bar").  */
1102   ALL_OBJFILE_SYMTABS (objfile, s)
1103     patch_opaque_types (s);
1104 
1105   current_objfile = NULL;
1106 }
1107 
1108 /* Routines for reading headers and symbols from executable.  */
1109 
1110 /* Read the next symbol, swap it, and return it in both internal_syment
1111    form, and coff_symbol form.  Also return its first auxent, if any,
1112    in internal_auxent form, and skip any other auxents.  */
1113 
1114 static void
read_one_sym(struct coff_symbol * cs,struct internal_syment * sym,union internal_auxent * aux)1115 read_one_sym (struct coff_symbol *cs,
1116 	      struct internal_syment *sym,
1117 	      union internal_auxent *aux)
1118 {
1119   int i;
1120 
1121   cs->c_symnum = symnum;
1122   bfd_bread (temp_sym, local_symesz, nlist_bfd_global);
1123   bfd_coff_swap_sym_in (symfile_bfd, temp_sym, (char *) sym);
1124   cs->c_naux = sym->n_numaux & 0xff;
1125   if (cs->c_naux >= 1)
1126     {
1127       bfd_bread (temp_aux, local_auxesz, nlist_bfd_global);
1128       bfd_coff_swap_aux_in (symfile_bfd, temp_aux, sym->n_type, sym->n_sclass,
1129 			    0, cs->c_naux, (char *) aux);
1130       /* If more than one aux entry, read past it (only the first aux
1131          is important). */
1132       for (i = 1; i < cs->c_naux; i++)
1133 	bfd_bread (temp_aux, local_auxesz, nlist_bfd_global);
1134     }
1135   cs->c_name = getsymname (sym);
1136   cs->c_value = sym->n_value;
1137   cs->c_sclass = (sym->n_sclass & 0xff);
1138   cs->c_secnum = sym->n_scnum;
1139   cs->c_type = (unsigned) sym->n_type;
1140   if (!SDB_TYPE (cs->c_type))
1141     cs->c_type = 0;
1142 
1143 #if 0
1144   if (cs->c_sclass & 128)
1145     printf ("thumb symbol %s, class 0x%x\n", cs->c_name, cs->c_sclass);
1146 #endif
1147 
1148   symnum += 1 + cs->c_naux;
1149 
1150   /* The PE file format stores symbol values as offsets within the
1151      section, rather than as absolute addresses.  We correct that
1152      here, if the symbol has an appropriate storage class.  FIXME: We
1153      should use BFD to read the symbols, rather than duplicating the
1154      work here.  */
1155   if (pe_file)
1156     {
1157       switch (cs->c_sclass)
1158 	{
1159 	case C_EXT:
1160 	case C_THUMBEXT:
1161 	case C_THUMBEXTFUNC:
1162 	case C_SECTION:
1163 	case C_NT_WEAK:
1164 	case C_STAT:
1165 	case C_THUMBSTAT:
1166 	case C_THUMBSTATFUNC:
1167 	case C_LABEL:
1168 	case C_THUMBLABEL:
1169 	case C_BLOCK:
1170 	case C_FCN:
1171 	case C_EFCN:
1172 	  if (cs->c_secnum != 0)
1173 	    cs->c_value += cs_section_address (cs, symfile_bfd);
1174 	  break;
1175 	}
1176     }
1177 }
1178 
1179 /* Support for string table handling */
1180 
1181 static char *stringtab = NULL;
1182 
1183 static int
init_stringtab(bfd * abfd,long offset)1184 init_stringtab (bfd *abfd, long offset)
1185 {
1186   long length;
1187   int val;
1188   unsigned char lengthbuf[4];
1189 
1190   free_stringtab ();
1191 
1192   /* If the file is stripped, the offset might be zero, indicating no
1193      string table.  Just return with `stringtab' set to null. */
1194   if (offset == 0)
1195     return 0;
1196 
1197   if (bfd_seek (abfd, offset, 0) < 0)
1198     return -1;
1199 
1200   val = bfd_bread ((char *) lengthbuf, sizeof lengthbuf, abfd);
1201   length = bfd_h_get_32 (symfile_bfd, lengthbuf);
1202 
1203   /* If no string table is needed, then the file may end immediately
1204      after the symbols.  Just return with `stringtab' set to null. */
1205   if (val != sizeof lengthbuf || length < sizeof lengthbuf)
1206     return 0;
1207 
1208   stringtab = (char *) xmalloc (length);
1209   /* This is in target format (probably not very useful, and not currently
1210      used), not host format.  */
1211   memcpy (stringtab, lengthbuf, sizeof lengthbuf);
1212   if (length == sizeof length)	/* Empty table -- just the count */
1213     return 0;
1214 
1215   val = bfd_bread (stringtab + sizeof lengthbuf, length - sizeof lengthbuf,
1216 		   abfd);
1217   if (val != length - sizeof lengthbuf || stringtab[length - 1] != '\0')
1218     return -1;
1219 
1220   return 0;
1221 }
1222 
1223 static void
free_stringtab(void)1224 free_stringtab (void)
1225 {
1226   if (stringtab)
1227     xfree (stringtab);
1228   stringtab = NULL;
1229 }
1230 
1231 static void
free_stringtab_cleanup(void * ignore)1232 free_stringtab_cleanup (void *ignore)
1233 {
1234   free_stringtab ();
1235 }
1236 
1237 static char *
getsymname(struct internal_syment * symbol_entry)1238 getsymname (struct internal_syment *symbol_entry)
1239 {
1240   static char buffer[SYMNMLEN + 1];
1241   char *result;
1242 
1243   if (symbol_entry->_n._n_n._n_zeroes == 0)
1244     {
1245       /* FIXME: Probably should be detecting corrupt symbol files by
1246          seeing whether offset points to within the stringtab.  */
1247       result = stringtab + symbol_entry->_n._n_n._n_offset;
1248     }
1249   else
1250     {
1251       strncpy (buffer, symbol_entry->_n._n_name, SYMNMLEN);
1252       buffer[SYMNMLEN] = '\0';
1253       result = buffer;
1254     }
1255   return result;
1256 }
1257 
1258 /* Extract the file name from the aux entry of a C_FILE symbol.  Return
1259    only the last component of the name.  Result is in static storage and
1260    is only good for temporary use.  */
1261 
1262 static char *
coff_getfilename(union internal_auxent * aux_entry)1263 coff_getfilename (union internal_auxent *aux_entry)
1264 {
1265   static char buffer[BUFSIZ];
1266   char *temp;
1267   char *result;
1268 
1269   if (aux_entry->x_file.x_n.x_zeroes == 0)
1270     strcpy (buffer, stringtab + aux_entry->x_file.x_n.x_offset);
1271   else
1272     {
1273       strncpy (buffer, aux_entry->x_file.x_fname, FILNMLEN);
1274       buffer[FILNMLEN] = '\0';
1275     }
1276   result = buffer;
1277 
1278   /* FIXME: We should not be throwing away the information about what
1279      directory.  It should go into dirname of the symtab, or some such
1280      place.  */
1281   if ((temp = strrchr (result, '/')) != NULL)
1282     result = temp + 1;
1283   return (result);
1284 }
1285 
1286 /* Support for line number handling.  */
1287 
1288 static char *linetab = NULL;
1289 static long linetab_offset;
1290 static unsigned long linetab_size;
1291 
1292 /* Read in all the line numbers for fast lookups later.  Leave them in
1293    external (unswapped) format in memory; we'll swap them as we enter
1294    them into GDB's data structures.  */
1295 
1296 static int
init_lineno(bfd * abfd,long offset,int size)1297 init_lineno (bfd *abfd, long offset, int size)
1298 {
1299   int val;
1300 
1301   linetab_offset = offset;
1302   linetab_size = size;
1303 
1304   free_linetab ();
1305 
1306   if (size == 0)
1307     return 0;
1308 
1309   if (bfd_seek (abfd, offset, 0) < 0)
1310     return -1;
1311 
1312   /* Allocate the desired table, plus a sentinel */
1313   linetab = (char *) xmalloc (size + local_linesz);
1314 
1315   val = bfd_bread (linetab, size, abfd);
1316   if (val != size)
1317     return -1;
1318 
1319   /* Terminate it with an all-zero sentinel record */
1320   memset (linetab + size, 0, local_linesz);
1321 
1322   return 0;
1323 }
1324 
1325 static void
free_linetab(void)1326 free_linetab (void)
1327 {
1328   if (linetab)
1329     xfree (linetab);
1330   linetab = NULL;
1331 }
1332 
1333 static void
free_linetab_cleanup(void * ignore)1334 free_linetab_cleanup (void *ignore)
1335 {
1336   free_linetab ();
1337 }
1338 
1339 #if !defined (L_LNNO32)
1340 #define L_LNNO32(lp) ((lp)->l_lnno)
1341 #endif
1342 
1343 static void
enter_linenos(long file_offset,int first_line,int last_line,struct objfile * objfile)1344 enter_linenos (long file_offset, int first_line,
1345 	       int last_line, struct objfile *objfile)
1346 {
1347   char *rawptr;
1348   struct internal_lineno lptr;
1349 
1350   if (!linetab)
1351     return;
1352   if (file_offset < linetab_offset)
1353     {
1354       complaint (&symfile_complaints,
1355 		 "Line number pointer %ld lower than start of line numbers",
1356 		 file_offset);
1357       if (file_offset > linetab_size)	/* Too big to be an offset? */
1358 	return;
1359       file_offset += linetab_offset;	/* Try reading at that linetab offset */
1360     }
1361 
1362   rawptr = &linetab[file_offset - linetab_offset];
1363 
1364   /* skip first line entry for each function */
1365   rawptr += local_linesz;
1366   /* line numbers start at one for the first line of the function */
1367   first_line--;
1368 
1369   /* If the line number table is full (e.g. 64K lines in COFF debug
1370      info), the next function's L_LNNO32 might not be zero, so don't
1371      overstep the table's end in any case.  */
1372   while (rawptr <= &linetab[0] + linetab_size)
1373     {
1374       bfd_coff_swap_lineno_in (symfile_bfd, rawptr, &lptr);
1375       rawptr += local_linesz;
1376       /* The next function, or the sentinel, will have L_LNNO32 zero;
1377 	 we exit. */
1378       if (L_LNNO32 (&lptr) && L_LNNO32 (&lptr) <= last_line)
1379 	record_line (current_subfile, first_line + L_LNNO32 (&lptr),
1380 		     lptr.l_addr.l_paddr
1381 		     + ANOFFSET (objfile->section_offsets, SECT_OFF_TEXT (objfile)));
1382       else
1383 	break;
1384     }
1385 }
1386 
1387 static void
patch_type(struct type * type,struct type * real_type)1388 patch_type (struct type *type, struct type *real_type)
1389 {
1390   struct type *target = TYPE_TARGET_TYPE (type);
1391   struct type *real_target = TYPE_TARGET_TYPE (real_type);
1392   int field_size = TYPE_NFIELDS (real_target) * sizeof (struct field);
1393 
1394   TYPE_LENGTH (target) = TYPE_LENGTH (real_target);
1395   TYPE_NFIELDS (target) = TYPE_NFIELDS (real_target);
1396   TYPE_FIELDS (target) = (struct field *) TYPE_ALLOC (target, field_size);
1397 
1398   memcpy (TYPE_FIELDS (target), TYPE_FIELDS (real_target), field_size);
1399 
1400   if (TYPE_NAME (real_target))
1401     {
1402       if (TYPE_NAME (target))
1403 	xfree (TYPE_NAME (target));
1404       TYPE_NAME (target) = concat (TYPE_NAME (real_target), NULL);
1405     }
1406 }
1407 
1408 /* Patch up all appropriate typedef symbols in the opaque_type_chains
1409    so that they can be used to print out opaque data structures properly.  */
1410 
1411 static void
patch_opaque_types(struct symtab * s)1412 patch_opaque_types (struct symtab *s)
1413 {
1414   struct block *b;
1415   struct dict_iterator iter;
1416   struct symbol *real_sym;
1417 
1418   /* Go through the per-file symbols only */
1419   b = BLOCKVECTOR_BLOCK (BLOCKVECTOR (s), STATIC_BLOCK);
1420   ALL_BLOCK_SYMBOLS (b, iter, real_sym)
1421     {
1422       /* Find completed typedefs to use to fix opaque ones.
1423          Remove syms from the chain when their types are stored,
1424          but search the whole chain, as there may be several syms
1425          from different files with the same name.  */
1426       if (SYMBOL_CLASS (real_sym) == LOC_TYPEDEF &&
1427 	  SYMBOL_DOMAIN (real_sym) == VAR_DOMAIN &&
1428 	  TYPE_CODE (SYMBOL_TYPE (real_sym)) == TYPE_CODE_PTR &&
1429 	  TYPE_LENGTH (TYPE_TARGET_TYPE (SYMBOL_TYPE (real_sym))) != 0)
1430 	{
1431 	  char *name = DEPRECATED_SYMBOL_NAME (real_sym);
1432 	  int hash = hashname (name);
1433 	  struct symbol *sym, *prev;
1434 
1435 	  prev = 0;
1436 	  for (sym = opaque_type_chain[hash]; sym;)
1437 	    {
1438 	      if (name[0] == DEPRECATED_SYMBOL_NAME (sym)[0] &&
1439 		  strcmp (name + 1, DEPRECATED_SYMBOL_NAME (sym) + 1) == 0)
1440 		{
1441 		  if (prev)
1442 		    {
1443 		      SYMBOL_VALUE_CHAIN (prev) = SYMBOL_VALUE_CHAIN (sym);
1444 		    }
1445 		  else
1446 		    {
1447 		      opaque_type_chain[hash] = SYMBOL_VALUE_CHAIN (sym);
1448 		    }
1449 
1450 		  patch_type (SYMBOL_TYPE (sym), SYMBOL_TYPE (real_sym));
1451 
1452 		  if (prev)
1453 		    {
1454 		      sym = SYMBOL_VALUE_CHAIN (prev);
1455 		    }
1456 		  else
1457 		    {
1458 		      sym = opaque_type_chain[hash];
1459 		    }
1460 		}
1461 	      else
1462 		{
1463 		  prev = sym;
1464 		  sym = SYMBOL_VALUE_CHAIN (sym);
1465 		}
1466 	    }
1467 	}
1468     }
1469 }
1470 
1471 static struct symbol *
process_coff_symbol(struct coff_symbol * cs,union internal_auxent * aux,struct objfile * objfile)1472 process_coff_symbol (struct coff_symbol *cs,
1473 		     union internal_auxent *aux,
1474 		     struct objfile *objfile)
1475 {
1476   struct symbol *sym
1477   = (struct symbol *) obstack_alloc (&objfile->objfile_obstack,
1478 				     sizeof (struct symbol));
1479   char *name;
1480 
1481   memset (sym, 0, sizeof (struct symbol));
1482   name = cs->c_name;
1483   name = EXTERNAL_NAME (name, objfile->obfd);
1484   SYMBOL_LANGUAGE (sym) = language_auto;
1485   SYMBOL_SET_NAMES (sym, name, strlen (name), objfile);
1486 
1487   /* default assumptions */
1488   SYMBOL_VALUE (sym) = cs->c_value;
1489   SYMBOL_DOMAIN (sym) = VAR_DOMAIN;
1490   SYMBOL_SECTION (sym) = cs_to_section (cs, objfile);
1491 
1492   if (ISFCN (cs->c_type))
1493     {
1494       SYMBOL_VALUE (sym) += ANOFFSET (objfile->section_offsets, SECT_OFF_TEXT (objfile));
1495       SYMBOL_TYPE (sym) =
1496 	lookup_function_type (decode_function_type (cs, cs->c_type, aux));
1497 
1498       SYMBOL_CLASS (sym) = LOC_BLOCK;
1499       if (cs->c_sclass == C_STAT || cs->c_sclass == C_THUMBSTAT
1500 	  || cs->c_sclass == C_THUMBSTATFUNC)
1501 	add_symbol_to_list (sym, &file_symbols);
1502       else if (cs->c_sclass == C_EXT || cs->c_sclass == C_THUMBEXT
1503 	       || cs->c_sclass == C_THUMBEXTFUNC)
1504 	add_symbol_to_list (sym, &global_symbols);
1505     }
1506   else
1507     {
1508       SYMBOL_TYPE (sym) = decode_type (cs, cs->c_type, aux);
1509       switch (cs->c_sclass)
1510 	{
1511 	case C_NULL:
1512 	  break;
1513 
1514 	case C_AUTO:
1515 	  SYMBOL_CLASS (sym) = LOC_LOCAL;
1516 	  add_symbol_to_list (sym, &local_symbols);
1517 	  break;
1518 
1519 	case C_THUMBEXT:
1520 	case C_THUMBEXTFUNC:
1521 	case C_EXT:
1522 	  SYMBOL_CLASS (sym) = LOC_STATIC;
1523 	  SYMBOL_VALUE_ADDRESS (sym) = (CORE_ADDR) cs->c_value;
1524 	  SYMBOL_VALUE_ADDRESS (sym) += ANOFFSET (objfile->section_offsets, SECT_OFF_TEXT (objfile));
1525 	  add_symbol_to_list (sym, &global_symbols);
1526 	  break;
1527 
1528 	case C_THUMBSTAT:
1529 	case C_THUMBSTATFUNC:
1530 	case C_STAT:
1531 	  SYMBOL_CLASS (sym) = LOC_STATIC;
1532 	  SYMBOL_VALUE_ADDRESS (sym) = (CORE_ADDR) cs->c_value;
1533 	  SYMBOL_VALUE_ADDRESS (sym) += ANOFFSET (objfile->section_offsets, SECT_OFF_TEXT (objfile));
1534 	  if (within_function)
1535 	    {
1536 	      /* Static symbol of local scope */
1537 	      add_symbol_to_list (sym, &local_symbols);
1538 	    }
1539 	  else
1540 	    {
1541 	      /* Static symbol at top level of file */
1542 	      add_symbol_to_list (sym, &file_symbols);
1543 	    }
1544 	  break;
1545 
1546 #ifdef C_GLBLREG		/* AMD coff */
1547 	case C_GLBLREG:
1548 #endif
1549 	case C_REG:
1550 	  SYMBOL_CLASS (sym) = LOC_REGISTER;
1551 	  SYMBOL_VALUE (sym) = SDB_REG_TO_REGNUM (cs->c_value);
1552 	  add_symbol_to_list (sym, &local_symbols);
1553 	  break;
1554 
1555 	case C_THUMBLABEL:
1556 	case C_LABEL:
1557 	  break;
1558 
1559 	case C_ARG:
1560 	  SYMBOL_CLASS (sym) = LOC_ARG;
1561 	  add_symbol_to_list (sym, &local_symbols);
1562 #if !defined (BELIEVE_PCC_PROMOTION)
1563 	  if (TARGET_BYTE_ORDER == BFD_ENDIAN_BIG)
1564 	    {
1565 	      /* If PCC says a parameter is a short or a char,
1566 	         aligned on an int boundary, realign it to the
1567 	         "little end" of the int.  */
1568 	      struct type *temptype;
1569 	      temptype = lookup_fundamental_type (current_objfile,
1570 						  FT_INTEGER);
1571 	      if (TYPE_LENGTH (SYMBOL_TYPE (sym)) < TYPE_LENGTH (temptype)
1572 		  && TYPE_CODE (SYMBOL_TYPE (sym)) == TYPE_CODE_INT
1573 		  && 0 == SYMBOL_VALUE (sym) % TYPE_LENGTH (temptype))
1574 		{
1575 		  SYMBOL_VALUE (sym) +=
1576 		    TYPE_LENGTH (temptype)
1577 		    - TYPE_LENGTH (SYMBOL_TYPE (sym));
1578 		}
1579 	    }
1580 #endif
1581 	  break;
1582 
1583 	case C_REGPARM:
1584 	  SYMBOL_CLASS (sym) = LOC_REGPARM;
1585 	  SYMBOL_VALUE (sym) = SDB_REG_TO_REGNUM (cs->c_value);
1586 	  add_symbol_to_list (sym, &local_symbols);
1587 #if !defined (BELIEVE_PCC_PROMOTION)
1588 	  /* FIXME:  This should retain the current type, since it's just
1589 	     a register value.  gnu@adobe, 26Feb93 */
1590 	  {
1591 	    /* If PCC says a parameter is a short or a char,
1592 	       it is really an int.  */
1593 	    struct type *temptype;
1594 	    temptype =
1595 	      lookup_fundamental_type (current_objfile, FT_INTEGER);
1596 	    if (TYPE_LENGTH (SYMBOL_TYPE (sym)) < TYPE_LENGTH (temptype)
1597 		&& TYPE_CODE (SYMBOL_TYPE (sym)) == TYPE_CODE_INT)
1598 	      {
1599 		SYMBOL_TYPE (sym) =
1600 		  (TYPE_UNSIGNED (SYMBOL_TYPE (sym))
1601 		   ? lookup_fundamental_type (current_objfile,
1602 					      FT_UNSIGNED_INTEGER)
1603 		   : temptype);
1604 	      }
1605 	  }
1606 #endif
1607 	  break;
1608 
1609 	case C_TPDEF:
1610 	  SYMBOL_CLASS (sym) = LOC_TYPEDEF;
1611 	  SYMBOL_DOMAIN (sym) = VAR_DOMAIN;
1612 
1613 	  /* If type has no name, give it one */
1614 	  if (TYPE_NAME (SYMBOL_TYPE (sym)) == 0)
1615 	    {
1616 	      if (TYPE_CODE (SYMBOL_TYPE (sym)) == TYPE_CODE_PTR
1617 		  || TYPE_CODE (SYMBOL_TYPE (sym)) == TYPE_CODE_FUNC)
1618 		{
1619 		  /* If we are giving a name to a type such as "pointer to
1620 		     foo" or "function returning foo", we better not set
1621 		     the TYPE_NAME.  If the program contains "typedef char
1622 		     *caddr_t;", we don't want all variables of type char
1623 		     * to print as caddr_t.  This is not just a
1624 		     consequence of GDB's type management; CC and GCC (at
1625 		     least through version 2.4) both output variables of
1626 		     either type char * or caddr_t with the type
1627 		     refering to the C_TPDEF symbol for caddr_t.  If a future
1628 		     compiler cleans this up it GDB is not ready for it
1629 		     yet, but if it becomes ready we somehow need to
1630 		     disable this check (without breaking the PCC/GCC2.4
1631 		     case).
1632 
1633 		     Sigh.
1634 
1635 		     Fortunately, this check seems not to be necessary
1636 		     for anything except pointers or functions.  */
1637 		  ;
1638 		}
1639 	      else
1640 		TYPE_NAME (SYMBOL_TYPE (sym)) =
1641 		  concat (DEPRECATED_SYMBOL_NAME (sym), NULL);
1642 	    }
1643 
1644 	  /* Keep track of any type which points to empty structured type,
1645 	     so it can be filled from a definition from another file.  A
1646 	     simple forward reference (TYPE_CODE_UNDEF) is not an
1647 	     empty structured type, though; the forward references
1648 	     work themselves out via the magic of coff_lookup_type.  */
1649 	  if (TYPE_CODE (SYMBOL_TYPE (sym)) == TYPE_CODE_PTR &&
1650 	      TYPE_LENGTH (TYPE_TARGET_TYPE (SYMBOL_TYPE (sym))) == 0 &&
1651 	      TYPE_CODE (TYPE_TARGET_TYPE (SYMBOL_TYPE (sym))) !=
1652 	      TYPE_CODE_UNDEF)
1653 	    {
1654 	      int i = hashname (DEPRECATED_SYMBOL_NAME (sym));
1655 
1656 	      SYMBOL_VALUE_CHAIN (sym) = opaque_type_chain[i];
1657 	      opaque_type_chain[i] = sym;
1658 	    }
1659 	  add_symbol_to_list (sym, &file_symbols);
1660 	  break;
1661 
1662 	case C_STRTAG:
1663 	case C_UNTAG:
1664 	case C_ENTAG:
1665 	  SYMBOL_CLASS (sym) = LOC_TYPEDEF;
1666 	  SYMBOL_DOMAIN (sym) = STRUCT_DOMAIN;
1667 
1668 	  /* Some compilers try to be helpful by inventing "fake"
1669 	     names for anonymous enums, structures, and unions, like
1670 	     "~0fake" or ".0fake".  Thanks, but no thanks... */
1671 	  if (TYPE_TAG_NAME (SYMBOL_TYPE (sym)) == 0)
1672 	    if (DEPRECATED_SYMBOL_NAME (sym) != NULL
1673 		&& *DEPRECATED_SYMBOL_NAME (sym) != '~'
1674 		&& *DEPRECATED_SYMBOL_NAME (sym) != '.')
1675 	      TYPE_TAG_NAME (SYMBOL_TYPE (sym)) =
1676 		concat (DEPRECATED_SYMBOL_NAME (sym), NULL);
1677 
1678 	  add_symbol_to_list (sym, &file_symbols);
1679 	  break;
1680 
1681 	default:
1682 	  break;
1683 	}
1684     }
1685   return sym;
1686 }
1687 
1688 /* Decode a coff type specifier;  return the type that is meant.  */
1689 
1690 static struct type *
decode_type(struct coff_symbol * cs,unsigned int c_type,union internal_auxent * aux)1691 decode_type (struct coff_symbol *cs, unsigned int c_type,
1692 	     union internal_auxent *aux)
1693 {
1694   struct type *type = 0;
1695   unsigned int new_c_type;
1696 
1697   if (c_type & ~N_BTMASK)
1698     {
1699       new_c_type = DECREF (c_type);
1700       if (ISPTR (c_type))
1701 	{
1702 	  type = decode_type (cs, new_c_type, aux);
1703 	  type = lookup_pointer_type (type);
1704 	}
1705       else if (ISFCN (c_type))
1706 	{
1707 	  type = decode_type (cs, new_c_type, aux);
1708 	  type = lookup_function_type (type);
1709 	}
1710       else if (ISARY (c_type))
1711 	{
1712 	  int i, n;
1713 	  unsigned short *dim;
1714 	  struct type *base_type, *index_type, *range_type;
1715 
1716 	  /* Define an array type.  */
1717 	  /* auxent refers to array, not base type */
1718 	  if (aux->x_sym.x_tagndx.l == 0)
1719 	    cs->c_naux = 0;
1720 
1721 	  /* shift the indices down */
1722 	  dim = &aux->x_sym.x_fcnary.x_ary.x_dimen[0];
1723 	  i = 1;
1724 	  n = dim[0];
1725 	  for (i = 0; *dim && i < DIMNUM - 1; i++, dim++)
1726 	    *dim = *(dim + 1);
1727 	  *dim = 0;
1728 
1729 	  base_type = decode_type (cs, new_c_type, aux);
1730 	  index_type = lookup_fundamental_type (current_objfile, FT_INTEGER);
1731 	  range_type =
1732 	    create_range_type ((struct type *) NULL, index_type, 0, n - 1);
1733 	  type =
1734 	    create_array_type ((struct type *) NULL, base_type, range_type);
1735 	}
1736       return type;
1737     }
1738 
1739   /* Reference to existing type.  This only occurs with the
1740      struct, union, and enum types.  EPI a29k coff
1741      fakes us out by producing aux entries with a nonzero
1742      x_tagndx for definitions of structs, unions, and enums, so we
1743      have to check the c_sclass field.  SCO 3.2v4 cc gets confused
1744      with pointers to pointers to defined structs, and generates
1745      negative x_tagndx fields.  */
1746   if (cs->c_naux > 0 && aux->x_sym.x_tagndx.l != 0)
1747     {
1748       if (cs->c_sclass != C_STRTAG
1749 	  && cs->c_sclass != C_UNTAG
1750 	  && cs->c_sclass != C_ENTAG
1751 	  && aux->x_sym.x_tagndx.l >= 0)
1752 	{
1753 	  type = coff_alloc_type (aux->x_sym.x_tagndx.l);
1754 	  return type;
1755 	}
1756       else
1757 	{
1758 	  complaint (&symfile_complaints,
1759 		     "Symbol table entry for %s has bad tagndx value",
1760 		     cs->c_name);
1761 	  /* And fall through to decode_base_type... */
1762 	}
1763     }
1764 
1765   return decode_base_type (cs, BTYPE (c_type), aux);
1766 }
1767 
1768 /* Decode a coff type specifier for function definition;
1769    return the type that the function returns.  */
1770 
1771 static struct type *
decode_function_type(struct coff_symbol * cs,unsigned int c_type,union internal_auxent * aux)1772 decode_function_type (struct coff_symbol *cs, unsigned int c_type,
1773 		      union internal_auxent *aux)
1774 {
1775   if (aux->x_sym.x_tagndx.l == 0)
1776     cs->c_naux = 0;		/* auxent refers to function, not base type */
1777 
1778   return decode_type (cs, DECREF (c_type), aux);
1779 }
1780 
1781 /* basic C types */
1782 
1783 static struct type *
decode_base_type(struct coff_symbol * cs,unsigned int c_type,union internal_auxent * aux)1784 decode_base_type (struct coff_symbol *cs, unsigned int c_type,
1785 		  union internal_auxent *aux)
1786 {
1787   struct type *type;
1788 
1789   switch (c_type)
1790     {
1791     case T_NULL:
1792       /* shows up with "void (*foo)();" structure members */
1793       return lookup_fundamental_type (current_objfile, FT_VOID);
1794 
1795 #ifdef T_VOID
1796     case T_VOID:
1797       /* Intel 960 COFF has this symbol and meaning.  */
1798       return lookup_fundamental_type (current_objfile, FT_VOID);
1799 #endif
1800 
1801     case T_CHAR:
1802       return lookup_fundamental_type (current_objfile, FT_CHAR);
1803 
1804     case T_SHORT:
1805       return lookup_fundamental_type (current_objfile, FT_SHORT);
1806 
1807     case T_INT:
1808       return lookup_fundamental_type (current_objfile, FT_INTEGER);
1809 
1810     case T_LONG:
1811       if (cs->c_sclass == C_FIELD
1812 	  && aux->x_sym.x_misc.x_lnsz.x_size > TARGET_LONG_BIT)
1813 	return lookup_fundamental_type (current_objfile, FT_LONG_LONG);
1814       else
1815 	return lookup_fundamental_type (current_objfile, FT_LONG);
1816 
1817     case T_FLOAT:
1818       return lookup_fundamental_type (current_objfile, FT_FLOAT);
1819 
1820     case T_DOUBLE:
1821       return lookup_fundamental_type (current_objfile, FT_DBL_PREC_FLOAT);
1822 
1823     case T_LNGDBL:
1824       return lookup_fundamental_type (current_objfile, FT_EXT_PREC_FLOAT);
1825 
1826     case T_STRUCT:
1827       if (cs->c_naux != 1)
1828 	{
1829 	  /* anonymous structure type */
1830 	  type = coff_alloc_type (cs->c_symnum);
1831 	  TYPE_CODE (type) = TYPE_CODE_STRUCT;
1832 	  TYPE_NAME (type) = NULL;
1833 	  /* This used to set the tag to "<opaque>".  But I think setting it
1834 	     to NULL is right, and the printing code can print it as
1835 	     "struct {...}".  */
1836 	  TYPE_TAG_NAME (type) = NULL;
1837 	  INIT_CPLUS_SPECIFIC (type);
1838 	  TYPE_LENGTH (type) = 0;
1839 	  TYPE_FIELDS (type) = 0;
1840 	  TYPE_NFIELDS (type) = 0;
1841 	}
1842       else
1843 	{
1844 	  type = coff_read_struct_type (cs->c_symnum,
1845 					aux->x_sym.x_misc.x_lnsz.x_size,
1846 				      aux->x_sym.x_fcnary.x_fcn.x_endndx.l);
1847 	}
1848       return type;
1849 
1850     case T_UNION:
1851       if (cs->c_naux != 1)
1852 	{
1853 	  /* anonymous union type */
1854 	  type = coff_alloc_type (cs->c_symnum);
1855 	  TYPE_NAME (type) = NULL;
1856 	  /* This used to set the tag to "<opaque>".  But I think setting it
1857 	     to NULL is right, and the printing code can print it as
1858 	     "union {...}".  */
1859 	  TYPE_TAG_NAME (type) = NULL;
1860 	  INIT_CPLUS_SPECIFIC (type);
1861 	  TYPE_LENGTH (type) = 0;
1862 	  TYPE_FIELDS (type) = 0;
1863 	  TYPE_NFIELDS (type) = 0;
1864 	}
1865       else
1866 	{
1867 	  type = coff_read_struct_type (cs->c_symnum,
1868 					aux->x_sym.x_misc.x_lnsz.x_size,
1869 				      aux->x_sym.x_fcnary.x_fcn.x_endndx.l);
1870 	}
1871       TYPE_CODE (type) = TYPE_CODE_UNION;
1872       return type;
1873 
1874     case T_ENUM:
1875       if (cs->c_naux != 1)
1876 	{
1877 	  /* anonymous enum type */
1878 	  type = coff_alloc_type (cs->c_symnum);
1879 	  TYPE_CODE (type) = TYPE_CODE_ENUM;
1880 	  TYPE_NAME (type) = NULL;
1881 	  /* This used to set the tag to "<opaque>".  But I think setting it
1882 	     to NULL is right, and the printing code can print it as
1883 	     "enum {...}".  */
1884 	  TYPE_TAG_NAME (type) = NULL;
1885 	  TYPE_LENGTH (type) = 0;
1886 	  TYPE_FIELDS (type) = 0;
1887 	  TYPE_NFIELDS (type) = 0;
1888 	}
1889       else
1890 	{
1891 	  type = coff_read_enum_type (cs->c_symnum,
1892 				      aux->x_sym.x_misc.x_lnsz.x_size,
1893 				      aux->x_sym.x_fcnary.x_fcn.x_endndx.l);
1894 	}
1895       return type;
1896 
1897     case T_MOE:
1898       /* shouldn't show up here */
1899       break;
1900 
1901     case T_UCHAR:
1902       return lookup_fundamental_type (current_objfile, FT_UNSIGNED_CHAR);
1903 
1904     case T_USHORT:
1905       return lookup_fundamental_type (current_objfile, FT_UNSIGNED_SHORT);
1906 
1907     case T_UINT:
1908       return lookup_fundamental_type (current_objfile, FT_UNSIGNED_INTEGER);
1909 
1910     case T_ULONG:
1911       if (cs->c_sclass == C_FIELD
1912 	  && aux->x_sym.x_misc.x_lnsz.x_size > TARGET_LONG_BIT)
1913 	return lookup_fundamental_type (current_objfile, FT_UNSIGNED_LONG_LONG);
1914       else
1915 	return lookup_fundamental_type (current_objfile, FT_UNSIGNED_LONG);
1916     }
1917   complaint (&symfile_complaints, "Unexpected type for symbol %s", cs->c_name);
1918   return lookup_fundamental_type (current_objfile, FT_VOID);
1919 }
1920 
1921 /* This page contains subroutines of read_type.  */
1922 
1923 /* Read the description of a structure (or union type) and return an
1924    object describing the type.  */
1925 
1926 static struct type *
coff_read_struct_type(int index,int length,int lastsym)1927 coff_read_struct_type (int index, int length, int lastsym)
1928 {
1929   struct nextfield
1930     {
1931       struct nextfield *next;
1932       struct field field;
1933     };
1934 
1935   struct type *type;
1936   struct nextfield *list = 0;
1937   struct nextfield *new;
1938   int nfields = 0;
1939   int n;
1940   char *name;
1941   struct coff_symbol member_sym;
1942   struct coff_symbol *ms = &member_sym;
1943   struct internal_syment sub_sym;
1944   union internal_auxent sub_aux;
1945   int done = 0;
1946 
1947   type = coff_alloc_type (index);
1948   TYPE_CODE (type) = TYPE_CODE_STRUCT;
1949   INIT_CPLUS_SPECIFIC (type);
1950   TYPE_LENGTH (type) = length;
1951 
1952   while (!done && symnum < lastsym && symnum < nlist_nsyms_global)
1953     {
1954       read_one_sym (ms, &sub_sym, &sub_aux);
1955       name = ms->c_name;
1956       name = EXTERNAL_NAME (name, current_objfile->obfd);
1957 
1958       switch (ms->c_sclass)
1959 	{
1960 	case C_MOS:
1961 	case C_MOU:
1962 
1963 	  /* Get space to record the next field's data.  */
1964 	  new = (struct nextfield *) alloca (sizeof (struct nextfield));
1965 	  new->next = list;
1966 	  list = new;
1967 
1968 	  /* Save the data.  */
1969 	  list->field.name =
1970 	    obsavestring (name,
1971 			  strlen (name),
1972 			  &current_objfile->objfile_obstack);
1973 	  FIELD_TYPE (list->field) = decode_type (ms, ms->c_type, &sub_aux);
1974 	  FIELD_BITPOS (list->field) = 8 * ms->c_value;
1975 	  FIELD_BITSIZE (list->field) = 0;
1976 	  FIELD_STATIC_KIND (list->field) = 0;
1977 	  nfields++;
1978 	  break;
1979 
1980 	case C_FIELD:
1981 
1982 	  /* Get space to record the next field's data.  */
1983 	  new = (struct nextfield *) alloca (sizeof (struct nextfield));
1984 	  new->next = list;
1985 	  list = new;
1986 
1987 	  /* Save the data.  */
1988 	  list->field.name =
1989 	    obsavestring (name,
1990 			  strlen (name),
1991 			  &current_objfile->objfile_obstack);
1992 	  FIELD_TYPE (list->field) = decode_type (ms, ms->c_type, &sub_aux);
1993 	  FIELD_BITPOS (list->field) = ms->c_value;
1994 	  FIELD_BITSIZE (list->field) = sub_aux.x_sym.x_misc.x_lnsz.x_size;
1995 	  FIELD_STATIC_KIND (list->field) = 0;
1996 	  nfields++;
1997 	  break;
1998 
1999 	case C_EOS:
2000 	  done = 1;
2001 	  break;
2002 	}
2003     }
2004   /* Now create the vector of fields, and record how big it is.  */
2005 
2006   TYPE_NFIELDS (type) = nfields;
2007   TYPE_FIELDS (type) = (struct field *)
2008     TYPE_ALLOC (type, sizeof (struct field) * nfields);
2009 
2010   /* Copy the saved-up fields into the field vector.  */
2011 
2012   for (n = nfields; list; list = list->next)
2013     TYPE_FIELD (type, --n) = list->field;
2014 
2015   return type;
2016 }
2017 
2018 /* Read a definition of an enumeration type,
2019    and create and return a suitable type object.
2020    Also defines the symbols that represent the values of the type.  */
2021 
2022 static struct type *
coff_read_enum_type(int index,int length,int lastsym)2023 coff_read_enum_type (int index, int length, int lastsym)
2024 {
2025   struct symbol *sym;
2026   struct type *type;
2027   int nsyms = 0;
2028   int done = 0;
2029   struct pending **symlist;
2030   struct coff_symbol member_sym;
2031   struct coff_symbol *ms = &member_sym;
2032   struct internal_syment sub_sym;
2033   union internal_auxent sub_aux;
2034   struct pending *osyms, *syms;
2035   int o_nsyms;
2036   int n;
2037   char *name;
2038   int unsigned_enum = 1;
2039 
2040   type = coff_alloc_type (index);
2041   if (within_function)
2042     symlist = &local_symbols;
2043   else
2044     symlist = &file_symbols;
2045   osyms = *symlist;
2046   o_nsyms = osyms ? osyms->nsyms : 0;
2047 
2048   while (!done && symnum < lastsym && symnum < nlist_nsyms_global)
2049     {
2050       read_one_sym (ms, &sub_sym, &sub_aux);
2051       name = ms->c_name;
2052       name = EXTERNAL_NAME (name, current_objfile->obfd);
2053 
2054       switch (ms->c_sclass)
2055 	{
2056 	case C_MOE:
2057 	  sym = (struct symbol *) obstack_alloc
2058 	    (&current_objfile->objfile_obstack,
2059 	     sizeof (struct symbol));
2060 	  memset (sym, 0, sizeof (struct symbol));
2061 
2062 	  DEPRECATED_SYMBOL_NAME (sym) =
2063 	    obsavestring (name, strlen (name),
2064 			  &current_objfile->objfile_obstack);
2065 	  SYMBOL_CLASS (sym) = LOC_CONST;
2066 	  SYMBOL_DOMAIN (sym) = VAR_DOMAIN;
2067 	  SYMBOL_VALUE (sym) = ms->c_value;
2068 	  add_symbol_to_list (sym, symlist);
2069 	  nsyms++;
2070 	  break;
2071 
2072 	case C_EOS:
2073 	  /* Sometimes the linker (on 386/ix 2.0.2 at least) screws
2074 	     up the count of how many symbols to read.  So stop
2075 	     on .eos.  */
2076 	  done = 1;
2077 	  break;
2078 	}
2079     }
2080 
2081   /* Now fill in the fields of the type-structure.  */
2082 
2083   if (length > 0)
2084     TYPE_LENGTH (type) = length;
2085   else
2086     TYPE_LENGTH (type) = TARGET_INT_BIT / TARGET_CHAR_BIT;	/* Assume ints */
2087   TYPE_CODE (type) = TYPE_CODE_ENUM;
2088   TYPE_NFIELDS (type) = nsyms;
2089   TYPE_FIELDS (type) = (struct field *)
2090     TYPE_ALLOC (type, sizeof (struct field) * nsyms);
2091 
2092   /* Find the symbols for the values and put them into the type.
2093      The symbols can be found in the symlist that we put them on
2094      to cause them to be defined.  osyms contains the old value
2095      of that symlist; everything up to there was defined by us.  */
2096   /* Note that we preserve the order of the enum constants, so
2097      that in something like "enum {FOO, LAST_THING=FOO}" we print
2098      FOO, not LAST_THING.  */
2099 
2100   for (syms = *symlist, n = 0; syms; syms = syms->next)
2101     {
2102       int j = 0;
2103 
2104       if (syms == osyms)
2105 	j = o_nsyms;
2106       for (; j < syms->nsyms; j++, n++)
2107 	{
2108 	  struct symbol *xsym = syms->symbol[j];
2109 	  SYMBOL_TYPE (xsym) = type;
2110 	  TYPE_FIELD_NAME (type, n) = DEPRECATED_SYMBOL_NAME (xsym);
2111 	  TYPE_FIELD_BITPOS (type, n) = SYMBOL_VALUE (xsym);
2112 	  if (SYMBOL_VALUE (xsym) < 0)
2113 	    unsigned_enum = 0;
2114 	  TYPE_FIELD_BITSIZE (type, n) = 0;
2115 	  TYPE_FIELD_STATIC_KIND (type, n) = 0;
2116 	}
2117       if (syms == osyms)
2118 	break;
2119     }
2120 
2121   if (unsigned_enum)
2122     TYPE_FLAGS (type) |= TYPE_FLAG_UNSIGNED;
2123 
2124   return type;
2125 }
2126 
2127 /* Register our ability to parse symbols for coff BFD files. */
2128 
2129 static struct sym_fns coff_sym_fns =
2130 {
2131   bfd_target_coff_flavour,
2132   coff_new_init,		/* sym_new_init: init anything gbl to entire symtab */
2133   coff_symfile_init,		/* sym_init: read initial info, setup for sym_read() */
2134   coff_symfile_read,		/* sym_read: read a symbol file into symtab */
2135   coff_symfile_finish,		/* sym_finish: finished with file, cleanup */
2136   default_symfile_offsets,	/* sym_offsets:  xlate external to internal form */
2137   NULL				/* next: pointer to next struct sym_fns */
2138 };
2139 
2140 void
_initialize_coffread(void)2141 _initialize_coffread (void)
2142 {
2143   add_symtab_fns (&coff_sym_fns);
2144 }
2145