Call wrap_hint in one more spot in py-framefilter.c
[deliverable/binutils-gdb.git] / gdb / minsyms.c
CommitLineData
c906108c 1/* GDB routines for manipulating the minimal symbol tables.
e2882c85 2 Copyright (C) 1992-2018 Free Software Foundation, Inc.
c906108c
SS
3 Contributed by Cygnus Support, using pieces from other GDB modules.
4
c5aa993b 5 This file is part of GDB.
c906108c 6
c5aa993b
JM
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
a9762ec7 9 the Free Software Foundation; either version 3 of the License, or
c5aa993b 10 (at your option) any later version.
c906108c 11
c5aa993b
JM
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
c906108c 16
c5aa993b 17 You should have received a copy of the GNU General Public License
a9762ec7 18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
c906108c
SS
19
20
21/* This file contains support routines for creating, manipulating, and
22 destroying minimal symbol tables.
23
24 Minimal symbol tables are used to hold some very basic information about
25 all defined global symbols (text, data, bss, abs, etc). The only two
26 required pieces of information are the symbol's name and the address
27 associated with that symbol.
28
29 In many cases, even if a file was compiled with no special options for
30 debugging at all, as long as was not stripped it will contain sufficient
31 information to build useful minimal symbol tables using this structure.
c5aa993b 32
c906108c
SS
33 Even when a file contains enough debugging information to build a full
34 symbol table, these minimal symbols are still useful for quickly mapping
35 between names and addresses, and vice versa. They are also sometimes used
025bb325 36 to figure out what full symbol table entries need to be read in. */
c906108c
SS
37
38
39#include "defs.h"
9227b5eb 40#include <ctype.h>
c906108c
SS
41#include "symtab.h"
42#include "bfd.h"
0ba1096a 43#include "filenames.h"
c906108c
SS
44#include "symfile.h"
45#include "objfiles.h"
46#include "demangle.h"
7ed49443
JB
47#include "value.h"
48#include "cp-abi.h"
42848c96 49#include "target.h"
71c25dea
TT
50#include "cp-support.h"
51#include "language.h"
529480d0 52#include "cli/cli-utils.h"
bd9269f7 53#include "symbol.h"
b5ec771e 54#include <algorithm>
deeeba55 55#include "safe-ctype.h"
c906108c 56
bf223d3e
PA
57/* See minsyms.h. */
58
59bool
4024cf2b
PA
60msymbol_is_function (struct objfile *objfile, minimal_symbol *minsym,
61 CORE_ADDR *func_address_p)
bf223d3e 62{
4024cf2b
PA
63 CORE_ADDR msym_addr = MSYMBOL_VALUE_ADDRESS (objfile, minsym);
64
65 switch (minsym->type)
bf223d3e 66 {
4024cf2b
PA
67 case mst_slot_got_plt:
68 case mst_data:
69 case mst_bss:
70 case mst_abs:
71 case mst_file_data:
72 case mst_file_bss:
73 {
74 struct gdbarch *gdbarch = get_objfile_arch (objfile);
75 CORE_ADDR pc = gdbarch_convert_from_func_ptr_addr (gdbarch, msym_addr,
76 &current_target);
77 if (pc != msym_addr)
78 {
79 if (func_address_p != NULL)
80 *func_address_p = pc;
81 return true;
82 }
83 return false;
84 }
bf223d3e 85 default:
4024cf2b
PA
86 if (func_address_p != NULL)
87 *func_address_p = msym_addr;
88 return true;
bf223d3e
PA
89 }
90}
91
c906108c
SS
92/* Accumulate the minimal symbols for each objfile in bunches of BUNCH_SIZE.
93 At the end, copy them all into one newly allocated location on an objfile's
34643a32 94 per-BFD storage obstack. */
c906108c
SS
95
96#define BUNCH_SIZE 127
97
98struct msym_bunch
c5aa993b
JM
99 {
100 struct msym_bunch *next;
101 struct minimal_symbol contents[BUNCH_SIZE];
102 };
c906108c 103
b19686e0 104/* See minsyms.h. */
9227b5eb
JB
105
106unsigned int
107msymbol_hash_iw (const char *string)
108{
109 unsigned int hash = 0;
b8d56208 110
9227b5eb
JB
111 while (*string && *string != '(')
112 {
f1735a53 113 string = skip_spaces (string);
9227b5eb 114 if (*string && *string != '(')
375f3d86 115 {
59d7bcaf 116 hash = SYMBOL_HASH_NEXT (hash, *string);
375f3d86
DJ
117 ++string;
118 }
9227b5eb 119 }
261397f8 120 return hash;
9227b5eb
JB
121}
122
b19686e0 123/* See minsyms.h. */
9227b5eb
JB
124
125unsigned int
126msymbol_hash (const char *string)
127{
128 unsigned int hash = 0;
b8d56208 129
9227b5eb 130 for (; *string; ++string)
59d7bcaf 131 hash = SYMBOL_HASH_NEXT (hash, *string);
261397f8 132 return hash;
9227b5eb
JB
133}
134
135/* Add the minimal symbol SYM to an objfile's minsym hash table, TABLE. */
984ac464 136static void
9227b5eb
JB
137add_minsym_to_hash_table (struct minimal_symbol *sym,
138 struct minimal_symbol **table)
139{
140 if (sym->hash_next == NULL)
141 {
f56f77c1 142 unsigned int hash
efd66ac6 143 = msymbol_hash (MSYMBOL_LINKAGE_NAME (sym)) % MINIMAL_SYMBOL_HASH_SIZE;
b8d56208 144
9227b5eb
JB
145 sym->hash_next = table[hash];
146 table[hash] = sym;
147 }
148}
149
0729fd50
DB
150/* Add the minimal symbol SYM to an objfile's minsym demangled hash table,
151 TABLE. */
152static void
153add_minsym_to_demangled_hash_table (struct minimal_symbol *sym,
b5ec771e 154 struct objfile *objfile)
0729fd50
DB
155{
156 if (sym->demangled_hash_next == NULL)
157 {
b5ec771e
PA
158 unsigned int hash = search_name_hash (MSYMBOL_LANGUAGE (sym),
159 MSYMBOL_SEARCH_NAME (sym));
160
161 auto &vec = objfile->per_bfd->demangled_hash_languages;
162 auto it = std::lower_bound (vec.begin (), vec.end (),
163 MSYMBOL_LANGUAGE (sym));
164 if (it == vec.end () || *it != MSYMBOL_LANGUAGE (sym))
165 vec.insert (it, MSYMBOL_LANGUAGE (sym));
166
167 struct minimal_symbol **table
168 = objfile->per_bfd->msymbol_demangled_hash;
169 unsigned int hash_index = hash % MINIMAL_SYMBOL_HASH_SIZE;
170 sym->demangled_hash_next = table[hash_index];
171 table[hash_index] = sym;
172 }
173}
b8d56208 174
b5ec771e
PA
175/* Worker object for lookup_minimal_symbol. Stores temporary results
176 while walking the symbol tables. */
177
178struct found_minimal_symbols
179{
180 /* External symbols are best. */
181 bound_minimal_symbol external_symbol {};
182
183 /* File-local symbols are next best. */
184 bound_minimal_symbol file_symbol {};
185
186 /* Symbols for shared library trampolines are next best. */
187 bound_minimal_symbol trampoline_symbol {};
188
189 /* Called when a symbol name matches. Check if the minsym is a
190 better type than what we had already found, and record it in one
191 of the members fields if so. Returns true if we collected the
192 real symbol, in which case we can stop searching. */
193 bool maybe_collect (const char *sfile, objfile *objf,
194 minimal_symbol *msymbol);
195};
196
197/* See declaration above. */
198
199bool
200found_minimal_symbols::maybe_collect (const char *sfile,
201 struct objfile *objfile,
202 minimal_symbol *msymbol)
203{
204 switch (MSYMBOL_TYPE (msymbol))
205 {
206 case mst_file_text:
207 case mst_file_data:
208 case mst_file_bss:
209 if (sfile == NULL
210 || filename_cmp (msymbol->filename, sfile) == 0)
211 {
212 file_symbol.minsym = msymbol;
213 file_symbol.objfile = objfile;
214 }
215 break;
216
217 case mst_solib_trampoline:
218
219 /* If a trampoline symbol is found, we prefer to keep
220 looking for the *real* symbol. If the actual symbol
221 is not found, then we'll use the trampoline
222 entry. */
223 if (trampoline_symbol.minsym == NULL)
224 {
225 trampoline_symbol.minsym = msymbol;
226 trampoline_symbol.objfile = objfile;
227 }
228 break;
229
230 case mst_unknown:
231 default:
232 external_symbol.minsym = msymbol;
233 external_symbol.objfile = objfile;
234 /* We have the real symbol. No use looking further. */
235 return true;
236 }
237
238 /* Keep looking. */
239 return false;
240}
241
242/* Walk the mangled name hash table, and pass each symbol whose name
243 matches LOOKUP_NAME according to NAMECMP to FOUND. */
244
245static void
246lookup_minimal_symbol_mangled (const char *lookup_name,
247 const char *sfile,
248 struct objfile *objfile,
249 struct minimal_symbol **table,
250 unsigned int hash,
251 int (*namecmp) (const char *, const char *),
252 found_minimal_symbols &found)
253{
254 for (minimal_symbol *msymbol = table[hash];
255 msymbol != NULL;
256 msymbol = msymbol->hash_next)
257 {
258 const char *symbol_name = MSYMBOL_LINKAGE_NAME (msymbol);
259
260 if (namecmp (symbol_name, lookup_name) == 0
261 && found.maybe_collect (sfile, objfile, msymbol))
262 return;
263 }
264}
265
266/* Walk the demangled name hash table, and pass each symbol whose name
267 matches LOOKUP_NAME according to MATCHER to FOUND. */
268
269static void
270lookup_minimal_symbol_demangled (const lookup_name_info &lookup_name,
271 const char *sfile,
272 struct objfile *objfile,
273 struct minimal_symbol **table,
274 unsigned int hash,
275 symbol_name_matcher_ftype *matcher,
276 found_minimal_symbols &found)
277{
278 for (minimal_symbol *msymbol = table[hash];
279 msymbol != NULL;
280 msymbol = msymbol->demangled_hash_next)
281 {
282 const char *symbol_name = MSYMBOL_SEARCH_NAME (msymbol);
283
284 if (matcher (symbol_name, lookup_name, NULL)
285 && found.maybe_collect (sfile, objfile, msymbol))
286 return;
0729fd50
DB
287 }
288}
289
c906108c
SS
290/* Look through all the current minimal symbol tables and find the
291 first minimal symbol that matches NAME. If OBJF is non-NULL, limit
72a5efb3
DJ
292 the search to that objfile. If SFILE is non-NULL, the only file-scope
293 symbols considered will be from that source file (global symbols are
294 still preferred). Returns a pointer to the minimal symbol that
c906108c
SS
295 matches, or NULL if no match is found.
296
297 Note: One instance where there may be duplicate minimal symbols with
298 the same name is when the symbol tables for a shared library and the
299 symbol tables for an executable contain global symbols with the same
d73f140a
JB
300 names (the dynamic linker deals with the duplication).
301
302 It's also possible to have minimal symbols with different mangled
303 names, but identical demangled names. For example, the GNU C++ v3
304 ABI requires the generation of two (or perhaps three) copies of
305 constructor functions --- "in-charge", "not-in-charge", and
306 "allocate" copies; destructors may be duplicated as well.
307 Obviously, there must be distinct mangled names for each of these,
308 but the demangled names are all the same: S::S or S::~S. */
c906108c 309
3b7344d5
TT
310struct bound_minimal_symbol
311lookup_minimal_symbol (const char *name, const char *sfile,
312 struct objfile *objf)
c906108c
SS
313{
314 struct objfile *objfile;
b5ec771e 315 found_minimal_symbols found;
c906108c 316
b5ec771e 317 unsigned int mangled_hash = msymbol_hash (name) % MINIMAL_SYMBOL_HASH_SIZE;
9227b5eb 318
b5ec771e
PA
319 auto *mangled_cmp
320 = (case_sensitivity == case_sensitive_on
321 ? strcmp
322 : strcasecmp);
71c25dea 323
c906108c 324 if (sfile != NULL)
9f37bbcc 325 sfile = lbasename (sfile);
c906108c 326
b5ec771e 327 lookup_name_info lookup_name (name, symbol_name_match_type::FULL);
71c25dea 328
c906108c 329 for (objfile = object_files;
b5ec771e 330 objfile != NULL && found.external_symbol.minsym == NULL;
c5aa993b 331 objfile = objfile->next)
c906108c 332 {
56e3f43c 333 if (objf == NULL || objf == objfile
15d123c9 334 || objf == objfile->separate_debug_objfile_backlink)
c906108c 335 {
b5ec771e
PA
336 if (symbol_lookup_debug)
337 {
338 fprintf_unfiltered (gdb_stdlog,
339 "lookup_minimal_symbol (%s, %s, %s)\n",
340 name, sfile != NULL ? sfile : "NULL",
341 objfile_debug_name (objfile));
342 }
343
9227b5eb
JB
344 /* Do two passes: the first over the ordinary hash table,
345 and the second over the demangled hash table. */
b5ec771e
PA
346 lookup_minimal_symbol_mangled (name, sfile, objfile,
347 objfile->per_bfd->msymbol_hash,
348 mangled_hash, mangled_cmp, found);
cc485e62 349
b5ec771e
PA
350 /* If not found, try the demangled hash table. */
351 if (found.external_symbol.minsym == NULL)
c906108c 352 {
b5ec771e
PA
353 /* Once for each language in the demangled hash names
354 table (usually just zero or one languages). */
355 for (auto lang : objfile->per_bfd->demangled_hash_languages)
c906108c 356 {
b5ec771e
PA
357 unsigned int hash
358 = (lookup_name.search_name_hash (lang)
359 % MINIMAL_SYMBOL_HASH_SIZE);
360
361 symbol_name_matcher_ftype *match
618daa93
PA
362 = get_symbol_name_matcher (language_def (lang),
363 lookup_name);
b5ec771e
PA
364 struct minimal_symbol **msymbol_demangled_hash
365 = objfile->per_bfd->msymbol_demangled_hash;
366
367 lookup_minimal_symbol_demangled (lookup_name, sfile, objfile,
368 msymbol_demangled_hash,
369 hash, match, found);
370
371 if (found.external_symbol.minsym != NULL)
372 break;
9227b5eb 373 }
c906108c
SS
374 }
375 }
376 }
71c25dea 377
c906108c 378 /* External symbols are best. */
b5ec771e 379 if (found.external_symbol.minsym != NULL)
cc485e62
DE
380 {
381 if (symbol_lookup_debug)
382 {
b5ec771e
PA
383 minimal_symbol *minsym = found.external_symbol.minsym;
384
cc485e62 385 fprintf_unfiltered (gdb_stdlog,
b5ec771e
PA
386 "lookup_minimal_symbol (...) = %s (external)\n",
387 host_address_to_string (minsym));
cc485e62 388 }
b5ec771e 389 return found.external_symbol;
cc485e62 390 }
c906108c
SS
391
392 /* File-local symbols are next best. */
b5ec771e 393 if (found.file_symbol.minsym != NULL)
cc485e62
DE
394 {
395 if (symbol_lookup_debug)
396 {
b5ec771e
PA
397 minimal_symbol *minsym = found.file_symbol.minsym;
398
cc485e62 399 fprintf_unfiltered (gdb_stdlog,
b5ec771e
PA
400 "lookup_minimal_symbol (...) = %s (file-local)\n",
401 host_address_to_string (minsym));
cc485e62 402 }
b5ec771e 403 return found.file_symbol;
cc485e62 404 }
c906108c
SS
405
406 /* Symbols for shared library trampolines are next best. */
b5ec771e 407 if (found.trampoline_symbol.minsym != NULL)
cc485e62 408 {
b5ec771e
PA
409 if (symbol_lookup_debug)
410 {
411 minimal_symbol *minsym = found.trampoline_symbol.minsym;
412
413 fprintf_unfiltered (gdb_stdlog,
414 "lookup_minimal_symbol (...) = %s (trampoline)\n",
415 host_address_to_string (minsym));
416 }
417
418 return found.trampoline_symbol;
cc485e62 419 }
b5ec771e
PA
420
421 /* Not found. */
422 if (symbol_lookup_debug)
423 fprintf_unfiltered (gdb_stdlog, "lookup_minimal_symbol (...) = NULL\n");
424 return {};
7c7b6655
TT
425}
426
427/* See minsyms.h. */
c906108c 428
7c7b6655
TT
429struct bound_minimal_symbol
430lookup_bound_minimal_symbol (const char *name)
431{
3b7344d5 432 return lookup_minimal_symbol (name, NULL, NULL);
c906108c
SS
433}
434
bd9269f7
GB
435/* See common/symbol.h. */
436
437int
438find_minimal_symbol_address (const char *name, CORE_ADDR *addr,
439 struct objfile *objfile)
440{
441 struct bound_minimal_symbol sym
442 = lookup_minimal_symbol (name, NULL, objfile);
443
444 if (sym.minsym != NULL)
445 *addr = BMSYMBOL_VALUE_ADDRESS (sym);
446
447 return sym.minsym == NULL;
448}
449
8825213e
PA
450/* Get the lookup name form best suitable for linkage name
451 matching. */
452
453static const char *
454linkage_name_str (const lookup_name_info &lookup_name)
455{
456 /* Unlike most languages (including C++), Ada uses the
457 encoded/linkage name as the search name recorded in symbols. So
458 if debugging in Ada mode, prefer the Ada-encoded name. This also
459 makes Ada's verbatim match syntax ("<...>") work, because
460 "lookup_name.name()" includes the "<>"s, while
461 "lookup_name.ada().lookup_name()" is the encoded name with "<>"s
462 stripped. */
463 if (current_language->la_language == language_ada)
464 return lookup_name.ada ().lookup_name ().c_str ();
465
466 return lookup_name.name ().c_str ();
467}
468
b19686e0 469/* See minsyms.h. */
f8eba3c6
TT
470
471void
b5ec771e
PA
472iterate_over_minimal_symbols (struct objfile *objf,
473 const lookup_name_info &lookup_name,
f8eba3c6
TT
474 void (*callback) (struct minimal_symbol *,
475 void *),
476 void *user_data)
477{
f8eba3c6
TT
478
479 /* The first pass is over the ordinary hash table. */
f8eba3c6 480 {
8825213e 481 const char *name = linkage_name_str (lookup_name);
b5ec771e
PA
482 unsigned int hash = msymbol_hash (name) % MINIMAL_SYMBOL_HASH_SIZE;
483 auto *mangled_cmp
484 = (case_sensitivity == case_sensitive_on
485 ? strcmp
486 : strcasecmp);
487
488 for (minimal_symbol *iter = objf->per_bfd->msymbol_hash[hash];
489 iter != NULL;
490 iter = iter->hash_next)
491 {
492 if (mangled_cmp (MSYMBOL_LINKAGE_NAME (iter), name) == 0)
493 (*callback) (iter, user_data);
494 }
f8eba3c6
TT
495 }
496
b5ec771e
PA
497 /* The second pass is over the demangled table. Once for each
498 language in the demangled hash names table (usually just zero or
499 one). */
500 for (auto lang : objf->per_bfd->demangled_hash_languages)
f8eba3c6 501 {
b5ec771e
PA
502 const language_defn *lang_def = language_def (lang);
503 symbol_name_matcher_ftype *name_match
618daa93 504 = get_symbol_name_matcher (lang_def, lookup_name);
b5ec771e
PA
505
506 unsigned int hash
507 = lookup_name.search_name_hash (lang) % MINIMAL_SYMBOL_HASH_SIZE;
508 for (minimal_symbol *iter = objf->per_bfd->msymbol_demangled_hash[hash];
509 iter != NULL;
510 iter = iter->demangled_hash_next)
511 if (name_match (MSYMBOL_SEARCH_NAME (iter), lookup_name, NULL))
512 (*callback) (iter, user_data);
f8eba3c6
TT
513 }
514}
515
b19686e0 516/* See minsyms.h. */
c5aa993b 517
3b7344d5 518struct bound_minimal_symbol
5520a790 519lookup_minimal_symbol_text (const char *name, struct objfile *objf)
c906108c
SS
520{
521 struct objfile *objfile;
522 struct minimal_symbol *msymbol;
3b7344d5
TT
523 struct bound_minimal_symbol found_symbol = { NULL, NULL };
524 struct bound_minimal_symbol found_file_symbol = { NULL, NULL };
c906108c 525
72a5efb3
DJ
526 unsigned int hash = msymbol_hash (name) % MINIMAL_SYMBOL_HASH_SIZE;
527
c906108c 528 for (objfile = object_files;
3b7344d5 529 objfile != NULL && found_symbol.minsym == NULL;
c5aa993b 530 objfile = objfile->next)
c906108c 531 {
56e3f43c 532 if (objf == NULL || objf == objfile
15d123c9 533 || objf == objfile->separate_debug_objfile_backlink)
c906108c 534 {
34643a32 535 for (msymbol = objfile->per_bfd->msymbol_hash[hash];
3b7344d5 536 msymbol != NULL && found_symbol.minsym == NULL;
72a5efb3 537 msymbol = msymbol->hash_next)
c906108c 538 {
efd66ac6 539 if (strcmp (MSYMBOL_LINKAGE_NAME (msymbol), name) == 0 &&
0875794a
JK
540 (MSYMBOL_TYPE (msymbol) == mst_text
541 || MSYMBOL_TYPE (msymbol) == mst_text_gnu_ifunc
542 || MSYMBOL_TYPE (msymbol) == mst_file_text))
c906108c
SS
543 {
544 switch (MSYMBOL_TYPE (msymbol))
545 {
546 case mst_file_text:
3b7344d5
TT
547 found_file_symbol.minsym = msymbol;
548 found_file_symbol.objfile = objfile;
c906108c
SS
549 break;
550 default:
3b7344d5
TT
551 found_symbol.minsym = msymbol;
552 found_symbol.objfile = objfile;
c906108c
SS
553 break;
554 }
555 }
556 }
557 }
558 }
559 /* External symbols are best. */
3b7344d5 560 if (found_symbol.minsym)
c906108c
SS
561 return found_symbol;
562
563 /* File-local symbols are next best. */
3b7344d5 564 return found_file_symbol;
c906108c
SS
565}
566
b19686e0 567/* See minsyms.h. */
907fc202
UW
568
569struct minimal_symbol *
570lookup_minimal_symbol_by_pc_name (CORE_ADDR pc, const char *name,
571 struct objfile *objf)
572{
573 struct objfile *objfile;
574 struct minimal_symbol *msymbol;
575
576 unsigned int hash = msymbol_hash (name) % MINIMAL_SYMBOL_HASH_SIZE;
577
578 for (objfile = object_files;
579 objfile != NULL;
580 objfile = objfile->next)
581 {
582 if (objf == NULL || objf == objfile
15d123c9 583 || objf == objfile->separate_debug_objfile_backlink)
907fc202 584 {
34643a32 585 for (msymbol = objfile->per_bfd->msymbol_hash[hash];
907fc202
UW
586 msymbol != NULL;
587 msymbol = msymbol->hash_next)
588 {
77e371c0 589 if (MSYMBOL_VALUE_ADDRESS (objfile, msymbol) == pc
efd66ac6 590 && strcmp (MSYMBOL_LINKAGE_NAME (msymbol), name) == 0)
907fc202
UW
591 return msymbol;
592 }
593 }
594 }
595
596 return NULL;
597}
598
b19686e0 599/* See minsyms.h. */
c5aa993b 600
3b7344d5 601struct bound_minimal_symbol
aa1ee363 602lookup_minimal_symbol_solib_trampoline (const char *name,
aa1ee363 603 struct objfile *objf)
c906108c
SS
604{
605 struct objfile *objfile;
606 struct minimal_symbol *msymbol;
3b7344d5 607 struct bound_minimal_symbol found_symbol = { NULL, NULL };
c906108c 608
72a5efb3
DJ
609 unsigned int hash = msymbol_hash (name) % MINIMAL_SYMBOL_HASH_SIZE;
610
c906108c 611 for (objfile = object_files;
3b7344d5 612 objfile != NULL;
c5aa993b 613 objfile = objfile->next)
c906108c 614 {
56e3f43c 615 if (objf == NULL || objf == objfile
15d123c9 616 || objf == objfile->separate_debug_objfile_backlink)
c906108c 617 {
34643a32 618 for (msymbol = objfile->per_bfd->msymbol_hash[hash];
3b7344d5 619 msymbol != NULL;
72a5efb3 620 msymbol = msymbol->hash_next)
c906108c 621 {
efd66ac6 622 if (strcmp (MSYMBOL_LINKAGE_NAME (msymbol), name) == 0 &&
c906108c 623 MSYMBOL_TYPE (msymbol) == mst_solib_trampoline)
3b7344d5
TT
624 {
625 found_symbol.objfile = objfile;
626 found_symbol.minsym = msymbol;
627 return found_symbol;
628 }
c906108c
SS
629 }
630 }
631 }
632
3b7344d5 633 return found_symbol;
c906108c
SS
634}
635
77e371c0
TT
636/* A helper function that makes *PC section-relative. This searches
637 the sections of OBJFILE and if *PC is in a section, it subtracts
638 the section offset and returns true. Otherwise it returns
639 false. */
640
641static int
642frob_address (struct objfile *objfile, CORE_ADDR *pc)
643{
644 struct obj_section *iter;
645
646 ALL_OBJFILE_OSECTIONS (objfile, iter)
647 {
648 if (*pc >= obj_section_addr (iter) && *pc < obj_section_endaddr (iter))
649 {
650 *pc -= obj_section_offset (iter);
651 return 1;
652 }
653 }
654
655 return 0;
656}
657
c906108c
SS
658/* Search through the minimal symbol table for each objfile and find
659 the symbol whose address is the largest address that is still less
00878c6e
PP
660 than or equal to PC, and matches SECTION (which is not NULL).
661 Returns a pointer to the minimal symbol if such a symbol is found,
662 or NULL if PC is not in a suitable range.
663 Note that we need to look through ALL the minimal symbol tables
664 before deciding on the symbol that comes closest to the specified PC.
665 This is because objfiles can overlap, for example objfile A has .text
666 at 0x100 and .data at 0x40000 and objfile B has .text at 0x234 and
667 .data at 0x40048.
c906108c 668
2eaf8d2a
DJ
669 If WANT_TRAMPOLINE is set, prefer mst_solib_trampoline symbols when
670 there are text and trampoline symbols at the same address.
671 Otherwise prefer mst_text symbols. */
672
7cbd4a93 673static struct bound_minimal_symbol
77e371c0 674lookup_minimal_symbol_by_pc_section_1 (CORE_ADDR pc_in,
714835d5 675 struct obj_section *section,
2eaf8d2a 676 int want_trampoline)
c906108c
SS
677{
678 int lo;
679 int hi;
fe978cb0 680 int newobj;
c906108c
SS
681 struct objfile *objfile;
682 struct minimal_symbol *msymbol;
683 struct minimal_symbol *best_symbol = NULL;
7cbd4a93
TT
684 struct objfile *best_objfile = NULL;
685 struct bound_minimal_symbol result;
2eaf8d2a 686 enum minimal_symbol_type want_type, other_type;
c906108c 687
2eaf8d2a
DJ
688 want_type = want_trampoline ? mst_solib_trampoline : mst_text;
689 other_type = want_trampoline ? mst_text : mst_solib_trampoline;
00878c6e
PP
690
691 /* We can not require the symbol found to be in section, because
96225718
DJ
692 e.g. IRIX 6.5 mdebug relies on this code returning an absolute
693 symbol - but find_pc_section won't return an absolute section and
694 hence the code below would skip over absolute symbols. We can
695 still take advantage of the call to find_pc_section, though - the
696 object file still must match. In case we have separate debug
697 files, search both the file and its separate debug file. There's
698 no telling which one will have the minimal symbols. */
699
00878c6e 700 gdb_assert (section != NULL);
96225718 701
15d123c9
TG
702 for (objfile = section->objfile;
703 objfile != NULL;
704 objfile = objfile_separate_debug_iterate (section->objfile, objfile))
c906108c 705 {
77e371c0
TT
706 CORE_ADDR pc = pc_in;
707
c906108c 708 /* If this objfile has a minimal symbol table, go search it using
c5aa993b
JM
709 a binary search. Note that a minimal symbol table always consists
710 of at least two symbols, a "real" symbol and the terminating
711 "null symbol". If there are no real symbols, then there is no
025bb325 712 minimal symbol table at all. */
c906108c 713
34643a32 714 if (objfile->per_bfd->minimal_symbol_count > 0)
c906108c 715 {
29e8a844
DJ
716 int best_zero_sized = -1;
717
34643a32 718 msymbol = objfile->per_bfd->msymbols;
c906108c 719 lo = 0;
34643a32 720 hi = objfile->per_bfd->minimal_symbol_count - 1;
c906108c
SS
721
722 /* This code assumes that the minimal symbols are sorted by
723 ascending address values. If the pc value is greater than or
724 equal to the first symbol's address, then some symbol in this
725 minimal symbol table is a suitable candidate for being the
726 "best" symbol. This includes the last real symbol, for cases
727 where the pc value is larger than any address in this vector.
728
729 By iterating until the address associated with the current
730 hi index (the endpoint of the test interval) is less than
731 or equal to the desired pc value, we accomplish two things:
732 (1) the case where the pc value is larger than any minimal
733 symbol address is trivially solved, (2) the address associated
734 with the hi index is always the one we want when the interation
735 terminates. In essence, we are iterating the test interval
736 down until the pc value is pushed out of it from the high end.
737
025bb325 738 Warning: this code is trickier than it would appear at first. */
c906108c 739
77e371c0
TT
740 if (frob_address (objfile, &pc)
741 && pc >= MSYMBOL_VALUE_RAW_ADDRESS (&msymbol[lo]))
c906108c 742 {
77e371c0 743 while (MSYMBOL_VALUE_RAW_ADDRESS (&msymbol[hi]) > pc)
c906108c 744 {
025bb325
MS
745 /* pc is still strictly less than highest address. */
746 /* Note "new" will always be >= lo. */
fe978cb0
PA
747 newobj = (lo + hi) / 2;
748 if ((MSYMBOL_VALUE_RAW_ADDRESS (&msymbol[newobj]) >= pc)
749 || (lo == newobj))
c906108c 750 {
fe978cb0 751 hi = newobj;
c906108c
SS
752 }
753 else
754 {
fe978cb0 755 lo = newobj;
c906108c
SS
756 }
757 }
758
759 /* If we have multiple symbols at the same address, we want
c5aa993b
JM
760 hi to point to the last one. That way we can find the
761 right symbol if it has an index greater than hi. */
34643a32 762 while (hi < objfile->per_bfd->minimal_symbol_count - 1
77e371c0
TT
763 && (MSYMBOL_VALUE_RAW_ADDRESS (&msymbol[hi])
764 == MSYMBOL_VALUE_RAW_ADDRESS (&msymbol[hi + 1])))
c906108c
SS
765 hi++;
766
29e8a844
DJ
767 /* Skip various undesirable symbols. */
768 while (hi >= 0)
769 {
770 /* Skip any absolute symbols. This is apparently
771 what adb and dbx do, and is needed for the CM-5.
772 There are two known possible problems: (1) on
773 ELF, apparently end, edata, etc. are absolute.
774 Not sure ignoring them here is a big deal, but if
775 we want to use them, the fix would go in
776 elfread.c. (2) I think shared library entry
777 points on the NeXT are absolute. If we want
778 special handling for this it probably should be
779 triggered by a special mst_abs_or_lib or some
780 such. */
781
712f90be 782 if (MSYMBOL_TYPE (&msymbol[hi]) == mst_abs)
29e8a844
DJ
783 {
784 hi--;
785 continue;
786 }
787
788 /* If SECTION was specified, skip any symbol from
789 wrong section. */
790 if (section
791 /* Some types of debug info, such as COFF,
792 don't fill the bfd_section member, so don't
793 throw away symbols on those platforms. */
efd66ac6 794 && MSYMBOL_OBJ_SECTION (objfile, &msymbol[hi]) != NULL
714835d5 795 && (!matching_obj_sections
efd66ac6 796 (MSYMBOL_OBJ_SECTION (objfile, &msymbol[hi]),
e27d198c 797 section)))
29e8a844
DJ
798 {
799 hi--;
800 continue;
801 }
802
2eaf8d2a
DJ
803 /* If we are looking for a trampoline and this is a
804 text symbol, or the other way around, check the
177b42fe 805 preceding symbol too. If they are otherwise
2eaf8d2a
DJ
806 identical prefer that one. */
807 if (hi > 0
808 && MSYMBOL_TYPE (&msymbol[hi]) == other_type
809 && MSYMBOL_TYPE (&msymbol[hi - 1]) == want_type
810 && (MSYMBOL_SIZE (&msymbol[hi])
811 == MSYMBOL_SIZE (&msymbol[hi - 1]))
77e371c0
TT
812 && (MSYMBOL_VALUE_RAW_ADDRESS (&msymbol[hi])
813 == MSYMBOL_VALUE_RAW_ADDRESS (&msymbol[hi - 1]))
efd66ac6
TT
814 && (MSYMBOL_OBJ_SECTION (objfile, &msymbol[hi])
815 == MSYMBOL_OBJ_SECTION (objfile, &msymbol[hi - 1])))
2eaf8d2a
DJ
816 {
817 hi--;
818 continue;
819 }
820
29e8a844
DJ
821 /* If the minimal symbol has a zero size, save it
822 but keep scanning backwards looking for one with
823 a non-zero size. A zero size may mean that the
824 symbol isn't an object or function (e.g. a
825 label), or it may just mean that the size was not
826 specified. */
5506f9f6 827 if (MSYMBOL_SIZE (&msymbol[hi]) == 0)
29e8a844 828 {
5506f9f6
KB
829 if (best_zero_sized == -1)
830 best_zero_sized = hi;
29e8a844
DJ
831 hi--;
832 continue;
833 }
834
f7a6bb70
DJ
835 /* If we are past the end of the current symbol, try
836 the previous symbol if it has a larger overlapping
837 size. This happens on i686-pc-linux-gnu with glibc;
838 the nocancel variants of system calls are inside
839 the cancellable variants, but both have sizes. */
840 if (hi > 0
841 && MSYMBOL_SIZE (&msymbol[hi]) != 0
77e371c0 842 && pc >= (MSYMBOL_VALUE_RAW_ADDRESS (&msymbol[hi])
f7a6bb70 843 + MSYMBOL_SIZE (&msymbol[hi]))
77e371c0 844 && pc < (MSYMBOL_VALUE_RAW_ADDRESS (&msymbol[hi - 1])
f7a6bb70
DJ
845 + MSYMBOL_SIZE (&msymbol[hi - 1])))
846 {
847 hi--;
848 continue;
849 }
850
29e8a844
DJ
851 /* Otherwise, this symbol must be as good as we're going
852 to get. */
853 break;
854 }
855
856 /* If HI has a zero size, and best_zero_sized is set,
857 then we had two or more zero-sized symbols; prefer
858 the first one we found (which may have a higher
859 address). Also, if we ran off the end, be sure
860 to back up. */
861 if (best_zero_sized != -1
862 && (hi < 0 || MSYMBOL_SIZE (&msymbol[hi]) == 0))
863 hi = best_zero_sized;
864
865 /* If the minimal symbol has a non-zero size, and this
866 PC appears to be outside the symbol's contents, then
867 refuse to use this symbol. If we found a zero-sized
868 symbol with an address greater than this symbol's,
869 use that instead. We assume that if symbols have
870 specified sizes, they do not overlap. */
871
872 if (hi >= 0
873 && MSYMBOL_SIZE (&msymbol[hi]) != 0
77e371c0 874 && pc >= (MSYMBOL_VALUE_RAW_ADDRESS (&msymbol[hi])
29e8a844
DJ
875 + MSYMBOL_SIZE (&msymbol[hi])))
876 {
877 if (best_zero_sized != -1)
878 hi = best_zero_sized;
879 else
880 /* Go on to the next object file. */
881 continue;
882 }
883
c906108c 884 /* The minimal symbol indexed by hi now is the best one in this
c5aa993b 885 objfile's minimal symbol table. See if it is the best one
025bb325 886 overall. */
c906108c 887
c906108c
SS
888 if (hi >= 0
889 && ((best_symbol == NULL) ||
77e371c0
TT
890 (MSYMBOL_VALUE_RAW_ADDRESS (best_symbol) <
891 MSYMBOL_VALUE_RAW_ADDRESS (&msymbol[hi]))))
c906108c
SS
892 {
893 best_symbol = &msymbol[hi];
7cbd4a93 894 best_objfile = objfile;
c906108c
SS
895 }
896 }
897 }
898 }
7cbd4a93
TT
899
900 result.minsym = best_symbol;
901 result.objfile = best_objfile;
902 return result;
c906108c
SS
903}
904
7cbd4a93 905struct bound_minimal_symbol
714835d5 906lookup_minimal_symbol_by_pc_section (CORE_ADDR pc, struct obj_section *section)
2eaf8d2a 907{
00878c6e
PP
908 if (section == NULL)
909 {
910 /* NOTE: cagney/2004-01-27: This was using find_pc_mapped_section to
911 force the section but that (well unless you're doing overlay
912 debugging) always returns NULL making the call somewhat useless. */
913 section = find_pc_section (pc);
914 if (section == NULL)
7cbd4a93
TT
915 {
916 struct bound_minimal_symbol result;
917
918 memset (&result, 0, sizeof (result));
919 return result;
920 }
00878c6e 921 }
2eaf8d2a
DJ
922 return lookup_minimal_symbol_by_pc_section_1 (pc, section, 0);
923}
924
b19686e0 925/* See minsyms.h. */
c906108c 926
7cbd4a93 927struct bound_minimal_symbol
fba45db2 928lookup_minimal_symbol_by_pc (CORE_ADDR pc)
c906108c 929{
7cbd4a93
TT
930 struct obj_section *section = find_pc_section (pc);
931
932 if (section == NULL)
933 {
934 struct bound_minimal_symbol result;
935
936 memset (&result, 0, sizeof (result));
937 return result;
938 }
939 return lookup_minimal_symbol_by_pc_section_1 (pc, section, 0);
c906108c 940}
0d5392b8 941
0875794a
JK
942/* Return non-zero iff PC is in an STT_GNU_IFUNC function resolver. */
943
944int
945in_gnu_ifunc_stub (CORE_ADDR pc)
946{
7cbd4a93 947 struct bound_minimal_symbol msymbol = lookup_minimal_symbol_by_pc (pc);
0875794a 948
7cbd4a93 949 return msymbol.minsym && MSYMBOL_TYPE (msymbol.minsym) == mst_text_gnu_ifunc;
0875794a
JK
950}
951
07be84bf
JK
952/* See elf_gnu_ifunc_resolve_addr for its real implementation. */
953
954static CORE_ADDR
955stub_gnu_ifunc_resolve_addr (struct gdbarch *gdbarch, CORE_ADDR pc)
956{
957 error (_("GDB cannot resolve STT_GNU_IFUNC symbol at address %s without "
958 "the ELF support compiled in."),
959 paddress (gdbarch, pc));
960}
961
962/* See elf_gnu_ifunc_resolve_name for its real implementation. */
963
964static int
965stub_gnu_ifunc_resolve_name (const char *function_name,
966 CORE_ADDR *function_address_p)
967{
968 error (_("GDB cannot resolve STT_GNU_IFUNC symbol \"%s\" without "
969 "the ELF support compiled in."),
970 function_name);
971}
972
0e30163f
JK
973/* See elf_gnu_ifunc_resolver_stop for its real implementation. */
974
975static void
976stub_gnu_ifunc_resolver_stop (struct breakpoint *b)
977{
978 internal_error (__FILE__, __LINE__,
979 _("elf_gnu_ifunc_resolver_stop cannot be reached."));
980}
981
982/* See elf_gnu_ifunc_resolver_return_stop for its real implementation. */
983
984static void
985stub_gnu_ifunc_resolver_return_stop (struct breakpoint *b)
986{
987 internal_error (__FILE__, __LINE__,
988 _("elf_gnu_ifunc_resolver_return_stop cannot be reached."));
989}
990
07be84bf
JK
991/* See elf_gnu_ifunc_fns for its real implementation. */
992
993static const struct gnu_ifunc_fns stub_gnu_ifunc_fns =
994{
995 stub_gnu_ifunc_resolve_addr,
996 stub_gnu_ifunc_resolve_name,
0e30163f
JK
997 stub_gnu_ifunc_resolver_stop,
998 stub_gnu_ifunc_resolver_return_stop,
07be84bf
JK
999};
1000
1001/* A placeholder for &elf_gnu_ifunc_fns. */
1002
1003const struct gnu_ifunc_fns *gnu_ifunc_fns_p = &stub_gnu_ifunc_fns;
1004
b19686e0 1005/* See minsyms.h. */
0d5392b8 1006
7cbd4a93
TT
1007struct bound_minimal_symbol
1008lookup_minimal_symbol_and_objfile (const char *name)
0d5392b8 1009{
7cbd4a93 1010 struct bound_minimal_symbol result;
0d5392b8 1011 struct objfile *objfile;
0d5392b8
TT
1012
1013 ALL_OBJFILES (objfile)
1014 {
bce02d88
WP
1015 result = lookup_minimal_symbol (name, NULL, objfile);
1016 if (result.minsym != NULL)
1017 return result;
0d5392b8
TT
1018 }
1019
7cbd4a93
TT
1020 memset (&result, 0, sizeof (result));
1021 return result;
0d5392b8 1022}
c906108c 1023\f
c5aa993b 1024
025bb325 1025/* Return leading symbol character for a BFD. If BFD is NULL,
c906108c
SS
1026 return the leading symbol character from the main objfile. */
1027
c906108c 1028static int
fba45db2 1029get_symbol_leading_char (bfd *abfd)
c906108c
SS
1030{
1031 if (abfd != NULL)
1032 return bfd_get_symbol_leading_char (abfd);
1033 if (symfile_objfile != NULL && symfile_objfile->obfd != NULL)
1034 return bfd_get_symbol_leading_char (symfile_objfile->obfd);
1035 return 0;
1036}
1037
b19686e0 1038/* See minsyms.h. */
c906108c 1039
d25e8719 1040minimal_symbol_reader::minimal_symbol_reader (struct objfile *obj)
8dddcb8f
TT
1041: m_objfile (obj),
1042 m_msym_bunch (NULL),
1043 /* Note that presetting m_msym_bunch_index to BUNCH_SIZE causes the
b19686e0
TT
1044 first call to save a minimal symbol to allocate the memory for
1045 the first bunch. */
8dddcb8f
TT
1046 m_msym_bunch_index (BUNCH_SIZE),
1047 m_msym_count (0)
1048{
c906108c
SS
1049}
1050
873a915e
TT
1051/* Discard the currently collected minimal symbols, if any. If we wish
1052 to save them for later use, we must have already copied them somewhere
1053 else before calling this function.
1054
1055 FIXME: We could allocate the minimal symbol bunches on their own
1056 obstack and then simply blow the obstack away when we are done with
1057 it. Is it worth the extra trouble though? */
1058
1059minimal_symbol_reader::~minimal_symbol_reader ()
1060{
1061 struct msym_bunch *next;
1062
8dddcb8f 1063 while (m_msym_bunch != NULL)
873a915e 1064 {
8dddcb8f
TT
1065 next = m_msym_bunch->next;
1066 xfree (m_msym_bunch);
1067 m_msym_bunch = next;
873a915e
TT
1068 }
1069}
1070
b19686e0
TT
1071/* See minsyms.h. */
1072
c906108c 1073void
8dddcb8f 1074minimal_symbol_reader::record (const char *name, CORE_ADDR address,
ce6c454e 1075 enum minimal_symbol_type ms_type)
c906108c
SS
1076{
1077 int section;
1078
1079 switch (ms_type)
1080 {
1081 case mst_text:
0875794a 1082 case mst_text_gnu_ifunc:
c906108c
SS
1083 case mst_file_text:
1084 case mst_solib_trampoline:
8dddcb8f 1085 section = SECT_OFF_TEXT (m_objfile);
c906108c
SS
1086 break;
1087 case mst_data:
1088 case mst_file_data:
8dddcb8f 1089 section = SECT_OFF_DATA (m_objfile);
c906108c
SS
1090 break;
1091 case mst_bss:
1092 case mst_file_bss:
8dddcb8f 1093 section = SECT_OFF_BSS (m_objfile);
c906108c
SS
1094 break;
1095 default:
1096 section = -1;
1097 }
1098
8dddcb8f 1099 record_with_info (name, address, ms_type, section);
c906108c
SS
1100}
1101
b19686e0 1102/* See minsyms.h. */
c906108c
SS
1103
1104struct minimal_symbol *
8dddcb8f 1105minimal_symbol_reader::record_full (const char *name, int name_len,
ce6c454e
TT
1106 bool copy_name, CORE_ADDR address,
1107 enum minimal_symbol_type ms_type,
1108 int section)
c906108c 1109{
fe978cb0 1110 struct msym_bunch *newobj;
52f0bd74 1111 struct minimal_symbol *msymbol;
c906108c 1112
66337bb1
CV
1113 /* Don't put gcc_compiled, __gnu_compiled_cplus, and friends into
1114 the minimal symbols, because if there is also another symbol
1115 at the same address (e.g. the first function of the file),
1116 lookup_minimal_symbol_by_pc would have no way of getting the
1117 right one. */
1118 if (ms_type == mst_file_text && name[0] == 'g'
1119 && (strcmp (name, GCC_COMPILED_FLAG_SYMBOL) == 0
1120 || strcmp (name, GCC2_COMPILED_FLAG_SYMBOL) == 0))
1121 return (NULL);
1122
1123 /* It's safe to strip the leading char here once, since the name
025bb325 1124 is also stored stripped in the minimal symbol table. */
8dddcb8f 1125 if (name[0] == get_symbol_leading_char (m_objfile->obfd))
04a679b8
TT
1126 {
1127 ++name;
1128 --name_len;
1129 }
66337bb1 1130
61012eef 1131 if (ms_type == mst_file_text && startswith (name, "__gnu_compiled"))
66337bb1 1132 return (NULL);
c906108c 1133
8dddcb8f 1134 if (m_msym_bunch_index == BUNCH_SIZE)
c906108c 1135 {
fe978cb0 1136 newobj = XCNEW (struct msym_bunch);
8dddcb8f
TT
1137 m_msym_bunch_index = 0;
1138 newobj->next = m_msym_bunch;
1139 m_msym_bunch = newobj;
c906108c 1140 }
8dddcb8f 1141 msymbol = &m_msym_bunch->contents[m_msym_bunch_index];
34643a32 1142 MSYMBOL_SET_LANGUAGE (msymbol, language_auto,
8dddcb8f
TT
1143 &m_objfile->per_bfd->storage_obstack);
1144 MSYMBOL_SET_NAMES (msymbol, name, name_len, copy_name, m_objfile);
2de7ced7 1145
40c1a007 1146 SET_MSYMBOL_VALUE_ADDRESS (msymbol, address);
efd66ac6 1147 MSYMBOL_SECTION (msymbol) = section;
714835d5 1148
c906108c 1149 MSYMBOL_TYPE (msymbol) = ms_type;
b887350f
TT
1150 MSYMBOL_TARGET_FLAG_1 (msymbol) = 0;
1151 MSYMBOL_TARGET_FLAG_2 (msymbol) = 0;
d9eaeb59
JB
1152 /* Do not use the SET_MSYMBOL_SIZE macro to initialize the size,
1153 as it would also set the has_size flag. */
1154 msymbol->size = 0;
9227b5eb 1155
a79dea61 1156 /* The hash pointers must be cleared! If they're not,
025bb325 1157 add_minsym_to_hash_table will NOT add this msymbol to the hash table. */
9227b5eb
JB
1158 msymbol->hash_next = NULL;
1159 msymbol->demangled_hash_next = NULL;
1160
34643a32
TT
1161 /* If we already read minimal symbols for this objfile, then don't
1162 ever allocate a new one. */
8dddcb8f 1163 if (!m_objfile->per_bfd->minsyms_read)
5f6cac40 1164 {
8dddcb8f
TT
1165 m_msym_bunch_index++;
1166 m_objfile->per_bfd->n_minsyms++;
5f6cac40 1167 }
8dddcb8f 1168 m_msym_count++;
c906108c
SS
1169 return msymbol;
1170}
1171
1172/* Compare two minimal symbols by address and return a signed result based
025bb325 1173 on unsigned comparisons, so that we sort into unsigned numeric order.
c906108c
SS
1174 Within groups with the same address, sort by name. */
1175
1176static int
12b9c64f 1177compare_minimal_symbols (const void *fn1p, const void *fn2p)
c906108c 1178{
52f0bd74
AC
1179 const struct minimal_symbol *fn1;
1180 const struct minimal_symbol *fn2;
c906108c
SS
1181
1182 fn1 = (const struct minimal_symbol *) fn1p;
1183 fn2 = (const struct minimal_symbol *) fn2p;
1184
77e371c0 1185 if (MSYMBOL_VALUE_RAW_ADDRESS (fn1) < MSYMBOL_VALUE_RAW_ADDRESS (fn2))
c906108c 1186 {
025bb325 1187 return (-1); /* addr 1 is less than addr 2. */
c906108c 1188 }
77e371c0 1189 else if (MSYMBOL_VALUE_RAW_ADDRESS (fn1) > MSYMBOL_VALUE_RAW_ADDRESS (fn2))
c906108c 1190 {
025bb325 1191 return (1); /* addr 1 is greater than addr 2. */
c906108c 1192 }
c5aa993b
JM
1193 else
1194 /* addrs are equal: sort by name */
c906108c 1195 {
efd66ac6
TT
1196 const char *name1 = MSYMBOL_LINKAGE_NAME (fn1);
1197 const char *name2 = MSYMBOL_LINKAGE_NAME (fn2);
c906108c
SS
1198
1199 if (name1 && name2) /* both have names */
1200 return strcmp (name1, name2);
1201 else if (name2)
025bb325
MS
1202 return 1; /* fn1 has no name, so it is "less". */
1203 else if (name1) /* fn2 has no name, so it is "less". */
c906108c
SS
1204 return -1;
1205 else
025bb325 1206 return (0); /* Neither has a name, so they're equal. */
c906108c
SS
1207 }
1208}
1209
c906108c
SS
1210/* Compact duplicate entries out of a minimal symbol table by walking
1211 through the table and compacting out entries with duplicate addresses
1212 and matching names. Return the number of entries remaining.
1213
1214 On entry, the table resides between msymbol[0] and msymbol[mcount].
1215 On exit, it resides between msymbol[0] and msymbol[result_count].
1216
1217 When files contain multiple sources of symbol information, it is
1218 possible for the minimal symbol table to contain many duplicate entries.
1219 As an example, SVR4 systems use ELF formatted object files, which
1220 usually contain at least two different types of symbol tables (a
1221 standard ELF one and a smaller dynamic linking table), as well as
1222 DWARF debugging information for files compiled with -g.
1223
1224 Without compacting, the minimal symbol table for gdb itself contains
1225 over a 1000 duplicates, about a third of the total table size. Aside
1226 from the potential trap of not noticing that two successive entries
1227 identify the same location, this duplication impacts the time required
1228 to linearly scan the table, which is done in a number of places. So we
1229 just do one linear scan here and toss out the duplicates.
1230
1231 Note that we are not concerned here about recovering the space that
1232 is potentially freed up, because the strings themselves are allocated
34643a32 1233 on the storage_obstack, and will get automatically freed when the symbol
c906108c
SS
1234 table is freed. The caller can free up the unused minimal symbols at
1235 the end of the compacted region if their allocation strategy allows it.
1236
1237 Also note we only go up to the next to last entry within the loop
1238 and then copy the last entry explicitly after the loop terminates.
1239
1240 Since the different sources of information for each symbol may
1241 have different levels of "completeness", we may have duplicates
1242 that have one entry with type "mst_unknown" and the other with a
1243 known type. So if the one we are leaving alone has type mst_unknown,
1244 overwrite its type with the type from the one we are compacting out. */
1245
1246static int
fba45db2
KB
1247compact_minimal_symbols (struct minimal_symbol *msymbol, int mcount,
1248 struct objfile *objfile)
c906108c
SS
1249{
1250 struct minimal_symbol *copyfrom;
1251 struct minimal_symbol *copyto;
1252
1253 if (mcount > 0)
1254 {
1255 copyfrom = copyto = msymbol;
1256 while (copyfrom < msymbol + mcount - 1)
1257 {
77e371c0
TT
1258 if (MSYMBOL_VALUE_RAW_ADDRESS (copyfrom)
1259 == MSYMBOL_VALUE_RAW_ADDRESS ((copyfrom + 1))
1260 && MSYMBOL_SECTION (copyfrom) == MSYMBOL_SECTION (copyfrom + 1)
efd66ac6
TT
1261 && strcmp (MSYMBOL_LINKAGE_NAME (copyfrom),
1262 MSYMBOL_LINKAGE_NAME ((copyfrom + 1))) == 0)
c906108c 1263 {
c5aa993b 1264 if (MSYMBOL_TYPE ((copyfrom + 1)) == mst_unknown)
c906108c
SS
1265 {
1266 MSYMBOL_TYPE ((copyfrom + 1)) = MSYMBOL_TYPE (copyfrom);
1267 }
1268 copyfrom++;
1269 }
1270 else
afbb8d7a 1271 *copyto++ = *copyfrom++;
c906108c
SS
1272 }
1273 *copyto++ = *copyfrom++;
1274 mcount = copyto - msymbol;
1275 }
1276 return (mcount);
1277}
1278
afbb8d7a
KB
1279/* Build (or rebuild) the minimal symbol hash tables. This is necessary
1280 after compacting or sorting the table since the entries move around
025bb325 1281 thus causing the internal minimal_symbol pointers to become jumbled. */
afbb8d7a
KB
1282
1283static void
1284build_minimal_symbol_hash_tables (struct objfile *objfile)
1285{
1286 int i;
1287 struct minimal_symbol *msym;
1288
025bb325 1289 /* Clear the hash tables. */
afbb8d7a
KB
1290 for (i = 0; i < MINIMAL_SYMBOL_HASH_SIZE; i++)
1291 {
34643a32
TT
1292 objfile->per_bfd->msymbol_hash[i] = 0;
1293 objfile->per_bfd->msymbol_demangled_hash[i] = 0;
afbb8d7a
KB
1294 }
1295
025bb325 1296 /* Now, (re)insert the actual entries. */
34643a32
TT
1297 for ((i = objfile->per_bfd->minimal_symbol_count,
1298 msym = objfile->per_bfd->msymbols);
afbb8d7a
KB
1299 i > 0;
1300 i--, msym++)
1301 {
1302 msym->hash_next = 0;
34643a32 1303 add_minsym_to_hash_table (msym, objfile->per_bfd->msymbol_hash);
afbb8d7a
KB
1304
1305 msym->demangled_hash_next = 0;
efd66ac6 1306 if (MSYMBOL_SEARCH_NAME (msym) != MSYMBOL_LINKAGE_NAME (msym))
b5ec771e 1307 add_minsym_to_demangled_hash_table (msym, objfile);
afbb8d7a
KB
1308 }
1309}
1310
c906108c
SS
1311/* Add the minimal symbols in the existing bunches to the objfile's official
1312 minimal symbol table. In most cases there is no minimal symbol table yet
1313 for this objfile, and the existing bunches are used to create one. Once
1314 in a while (for shared libraries for example), we add symbols (e.g. common
1315 symbols) to an existing objfile.
1316
1317 Because of the way minimal symbols are collected, we generally have no way
1318 of knowing what source language applies to any particular minimal symbol.
1319 Specifically, we have no way of knowing if the minimal symbol comes from a
1320 C++ compilation unit or not. So for the sake of supporting cached
1321 demangled C++ names, we have no choice but to try and demangle each new one
1322 that comes in. If the demangling succeeds, then we assume it is a C++
1323 symbol and set the symbol's language and demangled name fields
1324 appropriately. Note that in order to avoid unnecessary demanglings, and
1325 allocating obstack space that subsequently can't be freed for the demangled
1326 names, we mark all newly added symbols with language_auto. After
1327 compaction of the minimal symbols, we go back and scan the entire minimal
1328 symbol table looking for these new symbols. For each new symbol we attempt
1329 to demangle it, and if successful, record it as a language_cplus symbol
1330 and cache the demangled form on the symbol obstack. Symbols which don't
1331 demangle are marked as language_unknown symbols, which inhibits future
025bb325 1332 attempts to demangle them if we later add more minimal symbols. */
c906108c
SS
1333
1334void
d25e8719 1335minimal_symbol_reader::install ()
c906108c 1336{
52f0bd74
AC
1337 int bindex;
1338 int mcount;
1339 struct msym_bunch *bunch;
1340 struct minimal_symbol *msymbols;
c906108c 1341 int alloc_count;
c906108c 1342
d25e8719 1343 if (m_objfile->per_bfd->minsyms_read)
34643a32
TT
1344 return;
1345
8dddcb8f 1346 if (m_msym_count > 0)
c906108c 1347 {
45cfd468
DE
1348 if (symtab_create_debug)
1349 {
1350 fprintf_unfiltered (gdb_stdlog,
1351 "Installing %d minimal symbols of objfile %s.\n",
8dddcb8f 1352 m_msym_count, objfile_name (m_objfile));
45cfd468
DE
1353 }
1354
c906108c 1355 /* Allocate enough space in the obstack, into which we will gather the
c5aa993b
JM
1356 bunches of new and existing minimal symbols, sort them, and then
1357 compact out the duplicate entries. Once we have a final table,
1358 we will give back the excess space. */
c906108c 1359
8dddcb8f 1360 alloc_count = m_msym_count + m_objfile->per_bfd->minimal_symbol_count + 1;
d25e8719 1361 obstack_blank (&m_objfile->per_bfd->storage_obstack,
c906108c
SS
1362 alloc_count * sizeof (struct minimal_symbol));
1363 msymbols = (struct minimal_symbol *)
d25e8719 1364 obstack_base (&m_objfile->per_bfd->storage_obstack);
c906108c
SS
1365
1366 /* Copy in the existing minimal symbols, if there are any. */
1367
d25e8719
TT
1368 if (m_objfile->per_bfd->minimal_symbol_count)
1369 memcpy ((char *) msymbols, (char *) m_objfile->per_bfd->msymbols,
1370 m_objfile->per_bfd->minimal_symbol_count * sizeof (struct minimal_symbol));
c906108c
SS
1371
1372 /* Walk through the list of minimal symbol bunches, adding each symbol
c5aa993b
JM
1373 to the new contiguous array of symbols. Note that we start with the
1374 current, possibly partially filled bunch (thus we use the current
1375 msym_bunch_index for the first bunch we copy over), and thereafter
025bb325 1376 each bunch is full. */
c5aa993b 1377
d25e8719 1378 mcount = m_objfile->per_bfd->minimal_symbol_count;
c5aa993b 1379
8dddcb8f 1380 for (bunch = m_msym_bunch; bunch != NULL; bunch = bunch->next)
c906108c 1381 {
8dddcb8f 1382 for (bindex = 0; bindex < m_msym_bunch_index; bindex++, mcount++)
66337bb1 1383 msymbols[mcount] = bunch->contents[bindex];
8dddcb8f 1384 m_msym_bunch_index = BUNCH_SIZE;
c906108c
SS
1385 }
1386
1387 /* Sort the minimal symbols by address. */
c5aa993b 1388
c906108c
SS
1389 qsort (msymbols, mcount, sizeof (struct minimal_symbol),
1390 compare_minimal_symbols);
c5aa993b 1391
c906108c 1392 /* Compact out any duplicates, and free up whatever space we are
c5aa993b
JM
1393 no longer using. */
1394
d25e8719 1395 mcount = compact_minimal_symbols (msymbols, mcount, m_objfile);
c906108c 1396
d25e8719 1397 obstack_blank_fast (&m_objfile->per_bfd->storage_obstack,
c5aa993b 1398 (mcount + 1 - alloc_count) * sizeof (struct minimal_symbol));
c906108c 1399 msymbols = (struct minimal_symbol *)
d25e8719 1400 obstack_finish (&m_objfile->per_bfd->storage_obstack);
c906108c
SS
1401
1402 /* We also terminate the minimal symbol table with a "null symbol",
c5aa993b
JM
1403 which is *not* included in the size of the table. This makes it
1404 easier to find the end of the table when we are handed a pointer
1405 to some symbol in the middle of it. Zero out the fields in the
1406 "null symbol" allocated at the end of the array. Note that the
1407 symbol count does *not* include this null symbol, which is why it
025bb325 1408 is indexed by mcount and not mcount-1. */
c906108c 1409
a83e9154 1410 memset (&msymbols[mcount], 0, sizeof (struct minimal_symbol));
c906108c
SS
1411
1412 /* Attach the minimal symbol table to the specified objfile.
34643a32 1413 The strings themselves are also located in the storage_obstack
c5aa993b 1414 of this objfile. */
c906108c 1415
d25e8719
TT
1416 m_objfile->per_bfd->minimal_symbol_count = mcount;
1417 m_objfile->per_bfd->msymbols = msymbols;
c906108c 1418
afbb8d7a
KB
1419 /* Now build the hash tables; we can't do this incrementally
1420 at an earlier point since we weren't finished with the obstack
1421 yet. (And if the msymbol obstack gets moved, all the internal
025bb325 1422 pointers to other msymbols need to be adjusted.) */
d25e8719 1423 build_minimal_symbol_hash_tables (m_objfile);
c906108c
SS
1424 }
1425}
1426
c35384fb
TT
1427/* See minsyms.h. */
1428
1429void
1430terminate_minimal_symbol_table (struct objfile *objfile)
1431{
34643a32
TT
1432 if (! objfile->per_bfd->msymbols)
1433 objfile->per_bfd->msymbols
1434 = ((struct minimal_symbol *)
1435 obstack_alloc (&objfile->per_bfd->storage_obstack,
1436 sizeof (struct minimal_symbol)));
c35384fb
TT
1437
1438 {
1439 struct minimal_symbol *m
34643a32 1440 = &objfile->per_bfd->msymbols[objfile->per_bfd->minimal_symbol_count];
c35384fb
TT
1441
1442 memset (m, 0, sizeof (*m));
1443 /* Don't rely on these enumeration values being 0's. */
1444 MSYMBOL_TYPE (m) = mst_unknown;
34643a32
TT
1445 MSYMBOL_SET_LANGUAGE (m, language_unknown,
1446 &objfile->per_bfd->storage_obstack);
c35384fb
TT
1447 }
1448}
1449
c9630d9c
TT
1450/* Check if PC is in a shared library trampoline code stub.
1451 Return minimal symbol for the trampoline entry or NULL if PC is not
1452 in a trampoline code stub. */
c906108c 1453
c9630d9c 1454static struct minimal_symbol *
fba45db2 1455lookup_solib_trampoline_symbol_by_pc (CORE_ADDR pc)
c906108c 1456{
2eaf8d2a 1457 struct obj_section *section = find_pc_section (pc);
7cbd4a93 1458 struct bound_minimal_symbol msymbol;
2eaf8d2a
DJ
1459
1460 if (section == NULL)
1461 return NULL;
714835d5 1462 msymbol = lookup_minimal_symbol_by_pc_section_1 (pc, section, 1);
c906108c 1463
7cbd4a93
TT
1464 if (msymbol.minsym != NULL
1465 && MSYMBOL_TYPE (msymbol.minsym) == mst_solib_trampoline)
1466 return msymbol.minsym;
c906108c
SS
1467 return NULL;
1468}
1469
1470/* If PC is in a shared library trampoline code stub, return the
1471 address of the `real' function belonging to the stub.
1472 Return 0 if PC is not in a trampoline code stub or if the real
1473 function is not found in the minimal symbol table.
1474
1475 We may fail to find the right function if a function with the
1476 same name is defined in more than one shared library, but this
025bb325 1477 is considered bad programming style. We could return 0 if we find
c906108c
SS
1478 a duplicate function in case this matters someday. */
1479
1480CORE_ADDR
52f729a7 1481find_solib_trampoline_target (struct frame_info *frame, CORE_ADDR pc)
c906108c
SS
1482{
1483 struct objfile *objfile;
1484 struct minimal_symbol *msymbol;
1485 struct minimal_symbol *tsymbol = lookup_solib_trampoline_symbol_by_pc (pc);
1486
1487 if (tsymbol != NULL)
1488 {
1489 ALL_MSYMBOLS (objfile, msymbol)
c5aa993b 1490 {
0875794a
JK
1491 if ((MSYMBOL_TYPE (msymbol) == mst_text
1492 || MSYMBOL_TYPE (msymbol) == mst_text_gnu_ifunc)
efd66ac6
TT
1493 && strcmp (MSYMBOL_LINKAGE_NAME (msymbol),
1494 MSYMBOL_LINKAGE_NAME (tsymbol)) == 0)
77e371c0 1495 return MSYMBOL_VALUE_ADDRESS (objfile, msymbol);
42848c96
UW
1496
1497 /* Also handle minimal symbols pointing to function descriptors. */
1498 if (MSYMBOL_TYPE (msymbol) == mst_data
efd66ac6
TT
1499 && strcmp (MSYMBOL_LINKAGE_NAME (msymbol),
1500 MSYMBOL_LINKAGE_NAME (tsymbol)) == 0)
42848c96
UW
1501 {
1502 CORE_ADDR func;
b8d56208 1503
42848c96
UW
1504 func = gdbarch_convert_from_func_ptr_addr
1505 (get_objfile_arch (objfile),
77e371c0 1506 MSYMBOL_VALUE_ADDRESS (objfile, msymbol),
42848c96
UW
1507 &current_target);
1508
1509 /* Ignore data symbols that are not function descriptors. */
77e371c0 1510 if (func != MSYMBOL_VALUE_ADDRESS (objfile, msymbol))
42848c96
UW
1511 return func;
1512 }
c5aa993b 1513 }
c906108c
SS
1514 }
1515 return 0;
1516}
50e65b17
TT
1517
1518/* See minsyms.h. */
1519
1520CORE_ADDR
1521minimal_symbol_upper_bound (struct bound_minimal_symbol minsym)
1522{
1523 int i;
1524 short section;
1525 struct obj_section *obj_section;
1526 CORE_ADDR result;
1527 struct minimal_symbol *msymbol;
1528
1529 gdb_assert (minsym.minsym != NULL);
1530
1531 /* If the minimal symbol has a size, use it. Otherwise use the
1532 lesser of the next minimal symbol in the same section, or the end
1533 of the section, as the end of the function. */
1534
1535 if (MSYMBOL_SIZE (minsym.minsym) != 0)
77e371c0 1536 return BMSYMBOL_VALUE_ADDRESS (minsym) + MSYMBOL_SIZE (minsym.minsym);
50e65b17
TT
1537
1538 /* Step over other symbols at this same address, and symbols in
1539 other sections, to find the next symbol in this section with a
1540 different address. */
1541
1542 msymbol = minsym.minsym;
efd66ac6
TT
1543 section = MSYMBOL_SECTION (msymbol);
1544 for (i = 1; MSYMBOL_LINKAGE_NAME (msymbol + i) != NULL; i++)
50e65b17 1545 {
77e371c0
TT
1546 if ((MSYMBOL_VALUE_RAW_ADDRESS (msymbol + i)
1547 != MSYMBOL_VALUE_RAW_ADDRESS (msymbol))
efd66ac6 1548 && MSYMBOL_SECTION (msymbol + i) == section)
50e65b17
TT
1549 break;
1550 }
1551
efd66ac6
TT
1552 obj_section = MSYMBOL_OBJ_SECTION (minsym.objfile, minsym.minsym);
1553 if (MSYMBOL_LINKAGE_NAME (msymbol + i) != NULL
77e371c0 1554 && (MSYMBOL_VALUE_ADDRESS (minsym.objfile, msymbol + i)
efd66ac6 1555 < obj_section_endaddr (obj_section)))
77e371c0 1556 result = MSYMBOL_VALUE_ADDRESS (minsym.objfile, msymbol + i);
50e65b17
TT
1557 else
1558 /* We got the start address from the last msymbol in the objfile.
1559 So the end address is the end of the section. */
1560 result = obj_section_endaddr (obj_section);
1561
1562 return result;
1563}
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