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[deliverable/binutils-gdb.git] / gdb / symfile.h
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c906108c 1/* Definitions for reading symbol files into GDB.
3a6c3343 2
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3 Copyright (C) 1990, 1991, 1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999,
4 2000, 2001, 2002, 2003, 2004, 2007 Free Software Foundation, Inc.
c906108c 5
c5aa993b 6 This file is part of GDB.
c906108c 7
c5aa993b
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8 This program is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
a9762ec7 10 the Free Software Foundation; either version 3 of the License, or
c5aa993b 11 (at your option) any later version.
c906108c 12
c5aa993b
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13 This program is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
c906108c 17
c5aa993b 18 You should have received a copy of the GNU General Public License
a9762ec7 19 along with this program. If not, see <http://www.gnu.org/licenses/>. */
c906108c
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20
21#if !defined (SYMFILE_H)
22#define SYMFILE_H
23
24/* This file requires that you first include "bfd.h". */
16708cba 25#include "symtab.h"
c906108c 26
63ca651f 27/* Opaque declarations. */
3a6c3343 28struct section_table;
da3331ec 29struct objfile;
1c772458 30struct obj_section;
63ca651f 31struct obstack;
fe898f56 32struct block;
63ca651f 33
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34/* Partial symbols are stored in the psymbol_cache and pointers to
35 them are kept in a dynamically grown array that is obtained from
36 malloc and grown as necessary via realloc. Each objfile typically
37 has two of these, one for global symbols and one for static
38 symbols. Although this adds a level of indirection for storing or
39 accessing the partial symbols, it allows us to throw away duplicate
40 psymbols and set all pointers to the single saved instance. */
c906108c 41
c5aa993b 42struct psymbol_allocation_list
3a6c3343 43{
c906108c 44
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45 /* Pointer to beginning of dynamically allocated array of pointers
46 to partial symbols. The array is dynamically expanded as
47 necessary to accommodate more pointers. */
c906108c 48
3a6c3343 49 struct partial_symbol **list;
c906108c 50
3a6c3343
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51 /* Pointer to next available slot in which to store a pointer to a
52 partial symbol. */
c906108c 53
3a6c3343 54 struct partial_symbol **next;
c906108c 55
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56 /* Number of allocated pointer slots in current dynamic array (not
57 the number of bytes of storage). The "next" pointer will always
58 point somewhere between list[0] and list[size], and when at
59 list[size] the array will be expanded on the next attempt to
60 store a pointer. */
c906108c 61
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62 int size;
63};
c906108c 64
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65/* Define an array of addresses to accommodate non-contiguous dynamic
66 loading of modules. This is for use when entering commands, so we
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67 can keep track of the section names until we read the file and can
68 map them to bfd sections. This structure is also used by solib.c
69 to communicate the section addresses in shared objects to
70 symbol_file_add (). */
71
72struct section_addr_info
62557bbc 73{
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74 /* The number of sections for which address information is
75 available. */
76 size_t num_sections;
9d8a64cb 77 /* Sections whose names are file format dependent. */
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78 struct other_sections
79 {
80 CORE_ADDR addr;
81 char *name;
82 int sectindex;
a39a16c4 83 } other[1];
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84};
85
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86
87/* A table listing the load segments in a symfile, and which segment
88 each BFD section belongs to. */
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89struct symfile_segment_data
90{
91 /* How many segments are present in this file. If there are
92 two, the text segment is the first one and the data segment
93 is the second one. */
94 int num_segments;
95
96 /* If NUM_SEGMENTS is greater than zero, the original base address
97 of each segment. */
98 CORE_ADDR *segment_bases;
99
100 /* If NUM_SEGMENTS is greater than zero, the memory size of each
101 segment. */
102 CORE_ADDR *segment_sizes;
103
104 /* If NUM_SEGMENTS is greater than zero, this is an array of entries
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105 recording which segment contains each BFD section.
106 SEGMENT_INFO[I] is S+1 if the I'th BFD section belongs to segment
107 S, or zero if it is not in any segment. */
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108 int *segment_info;
109};
110
c906108c
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111/* Structure to keep track of symbol reading functions for various
112 object file types. */
113
c5aa993b 114struct sym_fns
3a6c3343 115{
c906108c 116
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117 /* BFD flavour that we handle, or (as a special kludge, see
118 xcoffread.c, (enum bfd_flavour)-1 for xcoff). */
c906108c 119
3a6c3343 120 enum bfd_flavour sym_flavour;
c906108c 121
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122 /* Initializes anything that is global to the entire symbol table.
123 It is called during symbol_file_add, when we begin debugging an
124 entirely new program. */
c906108c 125
3a6c3343 126 void (*sym_new_init) (struct objfile *);
c906108c 127
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128 /* Reads any initial information from a symbol file, and initializes
129 the struct sym_fns SF in preparation for sym_read(). It is
130 called every time we read a symbol file for any reason. */
c906108c 131
3a6c3343 132 void (*sym_init) (struct objfile *);
c906108c 133
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134 /* sym_read (objfile, mainline) Reads a symbol file into a psymtab
135 (or possibly a symtab). OBJFILE is the objfile struct for the
136 file we are reading. MAINLINE is 1 if this is the main symbol
137 table being read, and 0 if a secondary symbol file (e.g. shared
138 library or dynamically loaded file) is being read. */
c906108c 139
3a6c3343 140 void (*sym_read) (struct objfile *, int);
c906108c 141
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142 /* Called when we are finished with an objfile. Should do all
143 cleanup that is specific to the object file format for the
144 particular objfile. */
c906108c 145
3a6c3343 146 void (*sym_finish) (struct objfile *);
c906108c 147
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148 /* This function produces a file-dependent section_offsets
149 structure, allocated in the objfile's storage, and based on the
150 parameter. The parameter is currently a CORE_ADDR (FIXME!) for
151 backward compatibility with the higher levels of GDB. It should
152 probably be changed to a string, where NULL means the default,
153 and others are parsed in a file dependent way. */
c906108c 154
3a6c3343 155 void (*sym_offsets) (struct objfile *, struct section_addr_info *);
c906108c 156
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157 /* This function produces a format-independent description of
158 the segments of ABFD. Each segment is a unit of the file
159 which may be relocated independently. */
160
161 struct symfile_segment_data *(*sym_segments) (bfd *abfd);
162
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163 /* This function should read the linetable from the objfile when
164 the line table cannot be read while processing the debugging
165 information. */
166 void (*sym_read_linetable) (void);
167
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168 /* Finds the next struct sym_fns. They are allocated and
169 initialized in whatever module implements the functions pointed
170 to; an initializer calls add_symtab_fns to add them to the global
171 chain. */
c906108c 172
3a6c3343 173 struct sym_fns *next;
c5aa993b 174
3a6c3343 175};
c906108c
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176
177/* The default version of sym_fns.sym_offsets for readers that don't
178 do anything special. */
179
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180extern void default_symfile_offsets (struct objfile *objfile,
181 struct section_addr_info *);
c906108c 182
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183/* The default version of sym_fns.sym_segments for readers that don't
184 do anything special. */
185
186extern struct symfile_segment_data *default_symfile_segments (bfd *abfd);
c906108c 187
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188extern void extend_psymbol_list (struct psymbol_allocation_list *,
189 struct objfile *);
c906108c 190
3a6c3343 191/* Add any kind of symbol to a psymbol_allocation_list. */
c906108c
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192
193/* #include "demangle.h" */
194
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195extern const
196struct partial_symbol *add_psymbol_to_list (char *, int, domain_enum,
197 enum address_class,
198 struct psymbol_allocation_list *,
199 long, CORE_ADDR,
200 enum language, struct objfile *);
c906108c 201
a14ed312 202extern void init_psymbol_list (struct objfile *, int);
c906108c 203
a14ed312 204extern void sort_pst_symbols (struct partial_symtab *);
c906108c 205
a14ed312 206extern struct symtab *allocate_symtab (char *, struct objfile *);
c906108c 207
a14ed312 208extern int free_named_symtabs (char *);
c906108c 209
a14ed312 210extern void fill_in_vptr_fieldno (struct type *);
c906108c 211
a14ed312 212extern void add_symtab_fns (struct sym_fns *);
c906108c 213
7e8580c1 214extern void syms_from_objfile (struct objfile *,
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215 struct section_addr_info *,
216 struct section_offsets *, int, int, int);
c906108c 217
a14ed312 218extern void new_symfile_objfile (struct objfile *, int, int);
c906108c 219
a14ed312
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220extern struct objfile *symbol_file_add (char *, int,
221 struct section_addr_info *, int, int);
62557bbc 222
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223extern struct objfile *symbol_file_add_from_bfd (bfd *, int,
224 struct section_addr_info *,
225 int, int);
226
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227/* Create a new section_addr_info, with room for NUM_SECTIONS. */
228
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229extern struct section_addr_info *alloc_section_addr_info (size_t
230 num_sections);
a39a16c4 231
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232/* Return a freshly allocated copy of ADDRS. The section names, if
233 any, are also freshly allocated copies of those in ADDRS. */
234extern struct section_addr_info *(copy_section_addr_info
235 (struct section_addr_info *addrs));
236
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237/* Build (allocate and populate) a section_addr_info struct from an
238 existing section table. */
62557bbc 239
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240extern struct section_addr_info
241 *build_section_addr_info_from_section_table (const struct section_table
242 *start,
243 const struct section_table
244 *end);
62557bbc 245
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246/* Free all memory allocated by
247 build_section_addr_info_from_section_table. */
62557bbc 248
570b8f7c 249extern void free_section_addr_info (struct section_addr_info *);
62557bbc
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250
251
a14ed312
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252extern struct partial_symtab *start_psymtab_common (struct objfile *,
253 struct section_offsets *,
254 char *, CORE_ADDR,
255 struct partial_symbol **,
256 struct partial_symbol **);
c906108c 257
3a6c3343
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258/* Make a copy of the string at PTR with SIZE characters in the symbol
259 obstack (and add a null character at the end in the copy). Returns
260 the address of the copy. */
c906108c 261
63ca651f 262extern char *obsavestring (const char *, int, struct obstack *);
c906108c 263
3a6c3343 264/* Concatenate strings S1, S2 and S3; return the new string. Space is
4a146b47 265 found in the OBSTACKP */
c906108c 266
a14ed312
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267extern char *obconcat (struct obstack *obstackp, const char *, const char *,
268 const char *);
c906108c
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269
270 /* Variables */
271
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272/* If non-zero, shared library symbols will be added automatically
273 when the inferior is created, new libraries are loaded, or when
274 attaching to the inferior. This is almost always what users will
275 want to have happen; but for very large programs, the startup time
276 will be excessive, and so if this is a problem, the user can clear
277 this flag and then add the shared library symbols as needed. Note
278 that there is a potential for confusion, since if the shared
279 library symbols are not loaded, commands like "info fun" will *not*
3a6c3343 280 report all the functions that are actually present. */
c906108c 281
b7209cb4 282extern int auto_solib_add;
c906108c 283
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FF
284/* For systems that support it, a threshold size in megabytes. If
285 automatically adding a new library's symbol table to those already
286 known to the debugger would cause the total shared library symbol
287 size to exceed this threshhold, then the shlib's symbols are not
288 added. The threshold is ignored if the user explicitly asks for a
3a6c3343 289 shlib to be added, such as when using the "sharedlibrary" command. */
c906108c 290
b7209cb4 291extern int auto_solib_limit;
c906108c
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292
293/* From symfile.c */
294
a14ed312 295extern struct partial_symtab *allocate_psymtab (char *, struct objfile *);
c906108c 296
a14ed312 297extern void discard_psymtab (struct partial_symtab *);
c906108c 298
4efb68b1 299extern void find_lowest_section (bfd *, asection *, void *);
c906108c 300
a14ed312 301extern bfd *symfile_bfd_open (char *);
c906108c 302
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303extern int get_section_index (struct objfile *, char *);
304
c906108c 305/* Utility functions for overlay sections: */
3a6c3343
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306extern enum overlay_debugging_state
307{
308 ovly_off,
309 ovly_on,
d874f1e2
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310 ovly_auto
311} overlay_debugging;
c906108c
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312extern int overlay_cache_invalid;
313
3a6c3343 314/* Return the "mapped" overlay section containing the PC. */
a14ed312 315extern asection *find_pc_mapped_section (CORE_ADDR);
c906108c 316
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317/* Return any overlay section containing the PC (even in its LMA
318 region). */
a14ed312 319extern asection *find_pc_overlay (CORE_ADDR);
c906108c 320
3a6c3343 321/* Return true if the section is an overlay. */
a14ed312 322extern int section_is_overlay (asection *);
c906108c 323
3a6c3343 324/* Return true if the overlay section is currently "mapped". */
a14ed312 325extern int section_is_mapped (asection *);
c906108c 326
3a6c3343 327/* Return true if pc belongs to section's VMA. */
a14ed312 328extern CORE_ADDR pc_in_mapped_range (CORE_ADDR, asection *);
c906108c 329
3a6c3343 330/* Return true if pc belongs to section's LMA. */
a14ed312 331extern CORE_ADDR pc_in_unmapped_range (CORE_ADDR, asection *);
c906108c 332
3a6c3343 333/* Map an address from a section's LMA to its VMA. */
a14ed312 334extern CORE_ADDR overlay_mapped_address (CORE_ADDR, asection *);
c906108c 335
3a6c3343 336/* Map an address from a section's VMA to its LMA. */
a14ed312 337extern CORE_ADDR overlay_unmapped_address (CORE_ADDR, asection *);
c906108c 338
3a6c3343 339/* Convert an address in an overlay section (force into VMA range). */
a14ed312 340extern CORE_ADDR symbol_overlayed_address (CORE_ADDR, asection *);
c906108c 341
3a6c3343 342/* Load symbols from a file. */
1adeb98a
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343extern void symbol_file_add_main (char *args, int from_tty);
344
3a6c3343 345/* Clear GDB symbol tables. */
1adeb98a
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346extern void symbol_file_clear (int from_tty);
347
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348/* Default overlay update function. */
349extern void simple_overlay_update (struct obj_section *);
350
086df311 351extern bfd_byte *symfile_relocate_debug_section (bfd *abfd, asection *sectp,
3a6c3343 352 bfd_byte * buf);
086df311 353
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DJ
354extern int symfile_map_offsets_to_segments (bfd *,
355 struct symfile_segment_data *,
356 struct section_offsets *,
357 int, const CORE_ADDR *);
358struct symfile_segment_data *get_symfile_segment_data (bfd *abfd);
359void free_symfile_segment_data (struct symfile_segment_data *data);
360
c906108c
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361/* From dwarf2read.c */
362
c5edf76a 363extern int dwarf2_has_info (struct objfile *);
c906108c 364
a14ed312 365extern void dwarf2_build_psymtabs (struct objfile *, int);
b6af0555 366extern void dwarf2_build_frame_info (struct objfile *);
d4f3574e 367
c906108c
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368/* From mdebugread.c */
369
370/* Hack to force structures to exist before use in parameter list. */
371struct ecoff_debug_hack
3a6c3343
AC
372{
373 struct ecoff_debug_swap *a;
374 struct ecoff_debug_info *b;
375};
376
377extern void mdebug_build_psymtabs (struct objfile *,
378 const struct ecoff_debug_swap *,
379 struct ecoff_debug_info *);
380
381extern void elfmdebug_build_psymtabs (struct objfile *,
382 const struct ecoff_debug_swap *,
383 asection *);
c906108c 384
c5aa993b 385#endif /* !defined(SYMFILE_H) */
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