Fix linking MSP430 files created by gcc's LTO optimizer.
[deliverable/binutils-gdb.git] / bfd / syms.c
CommitLineData
252b5132 1/* Generic symbol-table support for the BFD library.
219d1afa 2 Copyright (C) 1990-2018 Free Software Foundation, Inc.
252b5132
RH
3 Written by Cygnus Support.
4
21efdc8d 5 This file is part of BFD, the Binary File Descriptor library.
252b5132 6
21efdc8d
NC
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
cd123cb7 9 the Free Software Foundation; either version 3 of the License, or
21efdc8d 10 (at your option) any later version.
252b5132 11
21efdc8d
NC
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.
252b5132 16
21efdc8d
NC
17 You should have received a copy of the GNU General Public License
18 along with this program; if not, write to the Free Software
cd123cb7
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19 Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
20 MA 02110-1301, USA. */
252b5132
RH
21
22/*
23SECTION
24 Symbols
25
26 BFD tries to maintain as much symbol information as it can when
27 it moves information from file to file. BFD passes information
28 to applications though the <<asymbol>> structure. When the
29 application requests the symbol table, BFD reads the table in
30 the native form and translates parts of it into the internal
31 format. To maintain more than the information passed to
32 applications, some targets keep some information ``behind the
33 scenes'' in a structure only the particular back end knows
34 about. For example, the coff back end keeps the original
35 symbol table structure as well as the canonical structure when
36 a BFD is read in. On output, the coff back end can reconstruct
37 the output symbol table so that no information is lost, even
38 information unique to coff which BFD doesn't know or
39 understand. If a coff symbol table were read, but were written
40 through an a.out back end, all the coff specific information
41 would be lost. The symbol table of a BFD
42 is not necessarily read in until a canonicalize request is
43 made. Then the BFD back end fills in a table provided by the
44 application with pointers to the canonical information. To
45 output symbols, the application provides BFD with a table of
46 pointers to pointers to <<asymbol>>s. This allows applications
47 like the linker to output a symbol as it was read, since the ``behind
48 the scenes'' information will be still available.
49@menu
50@* Reading Symbols::
51@* Writing Symbols::
52@* Mini Symbols::
53@* typedef asymbol::
54@* symbol handling functions::
55@end menu
56
57INODE
58Reading Symbols, Writing Symbols, Symbols, Symbols
59SUBSECTION
60 Reading symbols
61
62 There are two stages to reading a symbol table from a BFD:
63 allocating storage, and the actual reading process. This is an
64 excerpt from an application which reads the symbol table:
65
07d6d2b8
AM
66| long storage_needed;
67| asymbol **symbol_table;
68| long number_of_symbols;
69| long i;
252b5132 70|
07d6d2b8 71| storage_needed = bfd_get_symtab_upper_bound (abfd);
252b5132
RH
72|
73| if (storage_needed < 0)
74| FAIL
75|
07d6d2b8
AM
76| if (storage_needed == 0)
77| return;
68ffbac6 78|
07d6d2b8
AM
79| symbol_table = xmalloc (storage_needed);
80| ...
81| number_of_symbols =
82| bfd_canonicalize_symtab (abfd, symbol_table);
252b5132
RH
83|
84| if (number_of_symbols < 0)
85| FAIL
86|
07d6d2b8
AM
87| for (i = 0; i < number_of_symbols; i++)
88| process_symbol (symbol_table[i]);
252b5132
RH
89
90 All storage for the symbols themselves is in an objalloc
91 connected to the BFD; it is freed when the BFD is closed.
92
252b5132
RH
93INODE
94Writing Symbols, Mini Symbols, Reading Symbols, Symbols
95SUBSECTION
96 Writing symbols
97
98 Writing of a symbol table is automatic when a BFD open for
99 writing is closed. The application attaches a vector of
100 pointers to pointers to symbols to the BFD being written, and
101 fills in the symbol count. The close and cleanup code reads
102 through the table provided and performs all the necessary
103 operations. The BFD output code must always be provided with an
104 ``owned'' symbol: one which has come from another BFD, or one
105 which has been created using <<bfd_make_empty_symbol>>. Here is an
106 example showing the creation of a symbol table with only one element:
107
07d6d2b8
AM
108| #include "sysdep.h"
109| #include "bfd.h"
110| int main (void)
111| {
112| bfd *abfd;
113| asymbol *ptrs[2];
114| asymbol *new;
252b5132 115|
07d6d2b8
AM
116| abfd = bfd_openw ("foo","a.out-sunos-big");
117| bfd_set_format (abfd, bfd_object);
118| new = bfd_make_empty_symbol (abfd);
119| new->name = "dummy_symbol";
120| new->section = bfd_make_section_old_way (abfd, ".text");
121| new->flags = BSF_GLOBAL;
122| new->value = 0x12345;
252b5132 123|
07d6d2b8
AM
124| ptrs[0] = new;
125| ptrs[1] = 0;
252b5132 126|
07d6d2b8
AM
127| bfd_set_symtab (abfd, ptrs, 1);
128| bfd_close (abfd);
129| return 0;
130| }
252b5132 131|
07d6d2b8
AM
132| ./makesym
133| nm foo
134| 00012345 A dummy_symbol
252b5132 135
7dee875e 136 Many formats cannot represent arbitrary symbol information; for
07d6d2b8 137 instance, the <<a.out>> object format does not allow an
7dee875e 138 arbitrary number of sections. A symbol pointing to a section
252b5132
RH
139 which is not one of <<.text>>, <<.data>> or <<.bss>> cannot
140 be described.
141
142INODE
143Mini Symbols, typedef asymbol, Writing Symbols, Symbols
144SUBSECTION
145 Mini Symbols
146
147 Mini symbols provide read-only access to the symbol table.
148 They use less memory space, but require more time to access.
149 They can be useful for tools like nm or objdump, which may
150 have to handle symbol tables of extremely large executables.
151
152 The <<bfd_read_minisymbols>> function will read the symbols
153 into memory in an internal form. It will return a <<void *>>
154 pointer to a block of memory, a symbol count, and the size of
155 each symbol. The pointer is allocated using <<malloc>>, and
156 should be freed by the caller when it is no longer needed.
157
158 The function <<bfd_minisymbol_to_symbol>> will take a pointer
159 to a minisymbol, and a pointer to a structure returned by
160 <<bfd_make_empty_symbol>>, and return a <<asymbol>> structure.
161 The return value may or may not be the same as the value from
162 <<bfd_make_empty_symbol>> which was passed in.
163
164*/
165
252b5132
RH
166/*
167DOCDD
168INODE
169typedef asymbol, symbol handling functions, Mini Symbols, Symbols
170
171*/
172/*
173SUBSECTION
174 typedef asymbol
175
176 An <<asymbol>> has the form:
177
178*/
179
180/*
181CODE_FRAGMENT
182
183.
fc0a2244 184.typedef struct bfd_symbol
252b5132 185.{
b5f79c76
NC
186. {* A pointer to the BFD which owns the symbol. This information
187. is necessary so that a back end can work out what additional
188. information (invisible to the application writer) is carried
189. with the symbol.
252b5132 190.
b5f79c76
NC
191. This field is *almost* redundant, since you can use section->owner
192. instead, except that some symbols point to the global sections
193. bfd_{abs,com,und}_section. This could be fixed by making
194. these globals be per-bfd (or per-target-flavor). FIXME. *}
2ce40c65 195. struct bfd *the_bfd; {* Use bfd_asymbol_bfd(sym) to access this field. *}
252b5132 196.
b5f79c76
NC
197. {* The text of the symbol. The name is left alone, and not copied; the
198. application may not alter it. *}
dc810e39 199. const char *name;
252b5132 200.
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NC
201. {* The value of the symbol. This really should be a union of a
202. numeric value with a pointer, since some flags indicate that
203. a pointer to another symbol is stored here. *}
252b5132
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204. symvalue value;
205.
b5f79c76 206. {* Attributes of a symbol. *}
07d6d2b8 207.#define BSF_NO_FLAGS 0
252b5132 208.
b5f79c76
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209. {* The symbol has local scope; <<static>> in <<C>>. The value
210. is the offset into the section of the data. *}
07d6d2b8 211.#define BSF_LOCAL (1 << 0)
252b5132 212.
b5f79c76
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213. {* The symbol has global scope; initialized data in <<C>>. The
214. value is the offset into the section of the data. *}
07d6d2b8 215.#define BSF_GLOBAL (1 << 1)
252b5132 216.
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NC
217. {* The symbol has global scope and is exported. The value is
218. the offset into the section of the data. *}
07d6d2b8 219.#define BSF_EXPORT BSF_GLOBAL {* No real difference. *}
252b5132 220.
b5f79c76 221. {* A normal C symbol would be one of:
75c1920b 222. <<BSF_LOCAL>>, <<BSF_UNDEFINED>> or <<BSF_GLOBAL>>. *}
252b5132 223.
7dee875e 224. {* The symbol is a debugging record. The value has an arbitrary
b5f79c76 225. meaning, unless BSF_DEBUGGING_RELOC is also set. *}
07d6d2b8 226.#define BSF_DEBUGGING (1 << 2)
252b5132 227.
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228. {* The symbol denotes a function entry point. Used in ELF,
229. perhaps others someday. *}
07d6d2b8 230.#define BSF_FUNCTION (1 << 3)
e7c33416 231.
b5f79c76 232. {* Used by the linker. *}
07d6d2b8 233.#define BSF_KEEP (1 << 5)
b8871f35
L
234.
235. {* An ELF common symbol. *}
07d6d2b8 236.#define BSF_ELF_COMMON (1 << 6)
252b5132 237.
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NC
238. {* A weak global symbol, overridable without warnings by
239. a regular global symbol of the same name. *}
07d6d2b8 240.#define BSF_WEAK (1 << 7)
252b5132 241.
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NC
242. {* This symbol was created to point to a section, e.g. ELF's
243. STT_SECTION symbols. *}
07d6d2b8 244.#define BSF_SECTION_SYM (1 << 8)
252b5132 245.
b5f79c76
NC
246. {* The symbol used to be a common symbol, but now it is
247. allocated. *}
07d6d2b8 248.#define BSF_OLD_COMMON (1 << 9)
252b5132 249.
b5f79c76
NC
250. {* In some files the type of a symbol sometimes alters its
251. location in an output file - ie in coff a <<ISFCN>> symbol
252. which is also <<C_EXT>> symbol appears where it was
253. declared and not at the end of a section. This bit is set
254. by the target BFD part to convey this information. *}
07d6d2b8 255.#define BSF_NOT_AT_END (1 << 10)
252b5132 256.
b5f79c76 257. {* Signal that the symbol is the label of constructor section. *}
07d6d2b8 258.#define BSF_CONSTRUCTOR (1 << 11)
252b5132 259.
b5f79c76
NC
260. {* Signal that the symbol is a warning symbol. The name is a
261. warning. The name of the next symbol is the one to warn about;
262. if a reference is made to a symbol with the same name as the next
263. symbol, a warning is issued by the linker. *}
07d6d2b8 264.#define BSF_WARNING (1 << 12)
252b5132 265.
b5f79c76
NC
266. {* Signal that the symbol is indirect. This symbol is an indirect
267. pointer to the symbol with the same name as the next symbol. *}
07d6d2b8 268.#define BSF_INDIRECT (1 << 13)
252b5132 269.
b5f79c76
NC
270. {* BSF_FILE marks symbols that contain a file name. This is used
271. for ELF STT_FILE symbols. *}
07d6d2b8 272.#define BSF_FILE (1 << 14)
252b5132 273.
b5f79c76 274. {* Symbol is from dynamic linking information. *}
07d6d2b8 275.#define BSF_DYNAMIC (1 << 15)
252b5132 276.
b5f79c76
NC
277. {* The symbol denotes a data object. Used in ELF, and perhaps
278. others someday. *}
07d6d2b8 279.#define BSF_OBJECT (1 << 16)
252b5132 280.
b5f79c76
NC
281. {* This symbol is a debugging symbol. The value is the offset
282. into the section of the data. BSF_DEBUGGING should be set
283. as well. *}
07d6d2b8 284.#define BSF_DEBUGGING_RELOC (1 << 17)
703153b5 285.
13ae64f3 286. {* This symbol is thread local. Used in ELF. *}
07d6d2b8 287.#define BSF_THREAD_LOCAL (1 << 18)
13ae64f3 288.
d9352518
DB
289. {* This symbol represents a complex relocation expression,
290. with the expression tree serialized in the symbol name. *}
07d6d2b8 291.#define BSF_RELC (1 << 19)
d9352518
DB
292.
293. {* This symbol represents a signed complex relocation expression,
294. with the expression tree serialized in the symbol name. *}
07d6d2b8 295.#define BSF_SRELC (1 << 20)
d9352518 296.
6ba2a415 297. {* This symbol was created by bfd_get_synthetic_symtab. *}
07d6d2b8 298.#define BSF_SYNTHETIC (1 << 21)
6ba2a415 299.
d8045f23
NC
300. {* This symbol is an indirect code object. Unrelated to BSF_INDIRECT.
301. The dynamic linker will compute the value of this symbol by
302. calling the function that it points to. BSF_FUNCTION must
303. also be also set. *}
304.#define BSF_GNU_INDIRECT_FUNCTION (1 << 22)
3e7a7d11
NC
305. {* This symbol is a globally unique data object. The dynamic linker
306. will make sure that in the entire process there is just one symbol
307. with this name and type in use. BSF_OBJECT must also be set. *}
07d6d2b8 308.#define BSF_GNU_UNIQUE (1 << 23)
d8045f23 309.
252b5132
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310. flagword flags;
311.
b5f79c76
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312. {* A pointer to the section to which this symbol is
313. relative. This will always be non NULL, there are special
314. sections for undefined and absolute symbols. *}
198beae2 315. struct bfd_section *section;
252b5132 316.
b5f79c76 317. {* Back end special data. *}
252b5132
RH
318. union
319. {
c58b9523 320. void *p;
252b5132 321. bfd_vma i;
b5f79c76
NC
322. }
323. udata;
324.}
325.asymbol;
252b5132 326.
252b5132
RH
327*/
328
252b5132 329#include "sysdep.h"
3db64b00 330#include "bfd.h"
252b5132 331#include "libbfd.h"
3882b010 332#include "safe-ctype.h"
252b5132
RH
333#include "bfdlink.h"
334#include "aout/stab_gnu.h"
335
252b5132
RH
336/*
337DOCDD
338INODE
339symbol handling functions, , typedef asymbol, Symbols
340SUBSECTION
341 Symbol handling functions
342*/
343
344/*
345FUNCTION
346 bfd_get_symtab_upper_bound
347
348DESCRIPTION
349 Return the number of bytes required to store a vector of pointers
350 to <<asymbols>> for all the symbols in the BFD @var{abfd},
351 including a terminal NULL pointer. If there are no symbols in
352 the BFD, then return 0. If an error occurs, return -1.
353
354.#define bfd_get_symtab_upper_bound(abfd) \
07d6d2b8 355. BFD_SEND (abfd, _bfd_get_symtab_upper_bound, (abfd))
b5f79c76 356.
252b5132
RH
357*/
358
359/*
360FUNCTION
361 bfd_is_local_label
362
363SYNOPSIS
07d6d2b8 364 bfd_boolean bfd_is_local_label (bfd *abfd, asymbol *sym);
252b5132
RH
365
366DESCRIPTION
b34976b6
AM
367 Return TRUE if the given symbol @var{sym} in the BFD @var{abfd} is
368 a compiler generated local label, else return FALSE.
252b5132
RH
369*/
370
b34976b6 371bfd_boolean
c58b9523 372bfd_is_local_label (bfd *abfd, asymbol *sym)
252b5132 373{
a78f18dc
JW
374 /* The BSF_SECTION_SYM check is needed for IA-64, where every label that
375 starts with '.' is local. This would accidentally catch section names
376 if we didn't reject them here. */
864274b0 377 if ((sym->flags & (BSF_GLOBAL | BSF_WEAK | BSF_FILE | BSF_SECTION_SYM)) != 0)
b34976b6 378 return FALSE;
252b5132 379 if (sym->name == NULL)
b34976b6 380 return FALSE;
252b5132
RH
381 return bfd_is_local_label_name (abfd, sym->name);
382}
383
384/*
385FUNCTION
386 bfd_is_local_label_name
387
388SYNOPSIS
07d6d2b8 389 bfd_boolean bfd_is_local_label_name (bfd *abfd, const char *name);
252b5132
RH
390
391DESCRIPTION
b34976b6 392 Return TRUE if a symbol with the name @var{name} in the BFD
252b5132 393 @var{abfd} is a compiler generated local label, else return
b34976b6 394 FALSE. This just checks whether the name has the form of a
252b5132
RH
395 local label.
396
397.#define bfd_is_local_label_name(abfd, name) \
07d6d2b8 398. BFD_SEND (abfd, _bfd_is_local_label_name, (abfd, name))
b5f79c76 399.
252b5132
RH
400*/
401
3c9458e9
NC
402/*
403FUNCTION
404 bfd_is_target_special_symbol
405
406SYNOPSIS
07d6d2b8 407 bfd_boolean bfd_is_target_special_symbol (bfd *abfd, asymbol *sym);
3c9458e9
NC
408
409DESCRIPTION
410 Return TRUE iff a symbol @var{sym} in the BFD @var{abfd} is something
411 special to the particular target represented by the BFD. Such symbols
412 should normally not be mentioned to the user.
413
414.#define bfd_is_target_special_symbol(abfd, sym) \
07d6d2b8 415. BFD_SEND (abfd, _bfd_is_target_special_symbol, (abfd, sym))
3c9458e9
NC
416.
417*/
418
252b5132
RH
419/*
420FUNCTION
421 bfd_canonicalize_symtab
422
423DESCRIPTION
424 Read the symbols from the BFD @var{abfd}, and fills in
425 the vector @var{location} with pointers to the symbols and
426 a trailing NULL.
427 Return the actual number of symbol pointers, not
428 including the NULL.
429
252b5132 430.#define bfd_canonicalize_symtab(abfd, location) \
07d6d2b8 431. BFD_SEND (abfd, _bfd_canonicalize_symtab, (abfd, location))
b5f79c76 432.
252b5132
RH
433*/
434
252b5132
RH
435/*
436FUNCTION
437 bfd_set_symtab
438
439SYNOPSIS
c58b9523
AM
440 bfd_boolean bfd_set_symtab
441 (bfd *abfd, asymbol **location, unsigned int count);
252b5132
RH
442
443DESCRIPTION
444 Arrange that when the output BFD @var{abfd} is closed,
445 the table @var{location} of @var{count} pointers to symbols
446 will be written.
447*/
448
b34976b6 449bfd_boolean
c58b9523 450bfd_set_symtab (bfd *abfd, asymbol **location, unsigned int symcount)
252b5132 451{
c58b9523 452 if (abfd->format != bfd_object || bfd_read_p (abfd))
252b5132
RH
453 {
454 bfd_set_error (bfd_error_invalid_operation);
b34976b6 455 return FALSE;
252b5132
RH
456 }
457
458 bfd_get_outsymbols (abfd) = location;
459 bfd_get_symcount (abfd) = symcount;
b34976b6 460 return TRUE;
252b5132
RH
461}
462
463/*
464FUNCTION
465 bfd_print_symbol_vandf
466
467SYNOPSIS
c58b9523 468 void bfd_print_symbol_vandf (bfd *abfd, void *file, asymbol *symbol);
252b5132
RH
469
470DESCRIPTION
471 Print the value and flags of the @var{symbol} supplied to the
472 stream @var{file}.
473*/
474void
c58b9523 475bfd_print_symbol_vandf (bfd *abfd, void *arg, asymbol *symbol)
252b5132 476{
a50b1753 477 FILE *file = (FILE *) arg;
21efdc8d 478
252b5132 479 flagword type = symbol->flags;
21efdc8d 480
c58b9523
AM
481 if (symbol->section != NULL)
482 bfd_fprintf_vma (abfd, file, symbol->value + symbol->section->vma);
252b5132 483 else
21efdc8d 484 bfd_fprintf_vma (abfd, file, symbol->value);
252b5132
RH
485
486 /* This presumes that a symbol can not be both BSF_DEBUGGING and
487 BSF_DYNAMIC, nor more than one of BSF_FUNCTION, BSF_FILE, and
488 BSF_OBJECT. */
489 fprintf (file, " %c%c%c%c%c%c%c",
490 ((type & BSF_LOCAL)
491 ? (type & BSF_GLOBAL) ? '!' : 'l'
3e7a7d11
NC
492 : (type & BSF_GLOBAL) ? 'g'
493 : (type & BSF_GNU_UNIQUE) ? 'u' : ' '),
252b5132
RH
494 (type & BSF_WEAK) ? 'w' : ' ',
495 (type & BSF_CONSTRUCTOR) ? 'C' : ' ',
496 (type & BSF_WARNING) ? 'W' : ' ',
d8045f23 497 (type & BSF_INDIRECT) ? 'I' : (type & BSF_GNU_INDIRECT_FUNCTION) ? 'i' : ' ',
252b5132
RH
498 (type & BSF_DEBUGGING) ? 'd' : (type & BSF_DYNAMIC) ? 'D' : ' ',
499 ((type & BSF_FUNCTION)
500 ? 'F'
501 : ((type & BSF_FILE)
502 ? 'f'
503 : ((type & BSF_OBJECT) ? 'O' : ' '))));
504}
505
252b5132
RH
506/*
507FUNCTION
508 bfd_make_empty_symbol
509
510DESCRIPTION
511 Create a new <<asymbol>> structure for the BFD @var{abfd}
512 and return a pointer to it.
513
514 This routine is necessary because each back end has private
515 information surrounding the <<asymbol>>. Building your own
516 <<asymbol>> and pointing to it will not create the private
517 information, and will cause problems later on.
518
519.#define bfd_make_empty_symbol(abfd) \
07d6d2b8 520. BFD_SEND (abfd, _bfd_make_empty_symbol, (abfd))
b5f79c76 521.
252b5132
RH
522*/
523
3f3c5c34
AM
524/*
525FUNCTION
526 _bfd_generic_make_empty_symbol
527
528SYNOPSIS
c58b9523 529 asymbol *_bfd_generic_make_empty_symbol (bfd *);
3f3c5c34
AM
530
531DESCRIPTION
532 Create a new <<asymbol>> structure for the BFD @var{abfd}
533 and return a pointer to it. Used by core file routines,
534 binary back-end and anywhere else where no private info
535 is needed.
536*/
537
538asymbol *
c58b9523 539_bfd_generic_make_empty_symbol (bfd *abfd)
3f3c5c34
AM
540{
541 bfd_size_type amt = sizeof (asymbol);
d3ce72d0
NC
542 asymbol *new_symbol = (asymbol *) bfd_zalloc (abfd, amt);
543 if (new_symbol)
544 new_symbol->the_bfd = abfd;
545 return new_symbol;
3f3c5c34
AM
546}
547
252b5132
RH
548/*
549FUNCTION
550 bfd_make_debug_symbol
551
552DESCRIPTION
553 Create a new <<asymbol>> structure for the BFD @var{abfd},
554 to be used as a debugging symbol. Further details of its use have
555 yet to be worked out.
556
557.#define bfd_make_debug_symbol(abfd,ptr,size) \
07d6d2b8 558. BFD_SEND (abfd, _bfd_make_debug_symbol, (abfd, ptr, size))
b5f79c76 559.
252b5132
RH
560*/
561
562struct section_to_type
563{
dc810e39 564 const char *section;
252b5132
RH
565 char type;
566};
567
568/* Map section names to POSIX/BSD single-character symbol types.
569 This table is probably incomplete. It is sorted for convenience of
570 adding entries. Since it is so short, a linear search is used. */
dc810e39 571static const struct section_to_type stt[] =
252b5132 572{
252b5132 573 {".bss", 'b'},
6eeeec9b 574 {"code", 't'}, /* MRI .text */
252b5132 575 {".data", 'd'},
6eeeec9b 576 {"*DEBUG*", 'N'},
07d6d2b8
AM
577 {".debug", 'N'}, /* MSVC's .debug (non-standard debug syms) */
578 {".drectve", 'i'}, /* MSVC's .drective section */
579 {".edata", 'e'}, /* MSVC's .edata (export) section */
6eeeec9b 580 {".fini", 't'}, /* ELF fini section */
07d6d2b8 581 {".idata", 'i'}, /* MSVC's .idata (import) section */
6eeeec9b 582 {".init", 't'}, /* ELF init section */
07d6d2b8 583 {".pdata", 'p'}, /* MSVC's .pdata (stack unwind) section */
252b5132
RH
584 {".rdata", 'r'}, /* Read only data. */
585 {".rodata", 'r'}, /* Read only data. */
586 {".sbss", 's'}, /* Small BSS (uninitialized data). */
587 {".scommon", 'c'}, /* Small common. */
588 {".sdata", 'g'}, /* Small initialized data. */
589 {".text", 't'},
6eeeec9b
FCE
590 {"vars", 'd'}, /* MRI .data */
591 {"zerovars", 'b'}, /* MRI .bss */
252b5132
RH
592 {0, 0}
593};
594
595/* Return the single-character symbol type corresponding to
7b82c249 596 section S, or '?' for an unknown COFF section.
252b5132
RH
597
598 Check for any leading string which matches, so .text5 returns
599 't' as well as .text */
600
601static char
c58b9523 602coff_section_type (const char *s)
252b5132 603{
dc810e39 604 const struct section_to_type *t;
252b5132 605
7b82c249 606 for (t = &stt[0]; t->section; t++)
252b5132
RH
607 if (!strncmp (s, t->section, strlen (t->section)))
608 return t->type;
609
610 return '?';
611}
612
b3212001
JW
613/* Return the single-character symbol type corresponding to section
614 SECTION, or '?' for an unknown section. This uses section flags to
615 identify sections.
616
617 FIXME These types are unhandled: c, i, e, p. If we handled these also,
618 we could perhaps obsolete coff_section_type. */
619
620static char
198beae2 621decode_section_type (const struct bfd_section *section)
b3212001
JW
622{
623 if (section->flags & SEC_CODE)
624 return 't';
625 if (section->flags & SEC_DATA)
626 {
627 if (section->flags & SEC_READONLY)
628 return 'r';
629 else if (section->flags & SEC_SMALL_DATA)
630 return 'g';
631 else
632 return 'd';
633 }
634 if ((section->flags & SEC_HAS_CONTENTS) == 0)
635 {
636 if (section->flags & SEC_SMALL_DATA)
637 return 's';
638 else
639 return 'b';
640 }
641 if (section->flags & SEC_DEBUGGING)
642 return 'N';
c58b9523 643 if ((section->flags & SEC_HAS_CONTENTS) && (section->flags & SEC_READONLY))
a3b6428f 644 return 'n';
b3212001
JW
645
646 return '?';
647}
648
252b5132
RH
649/*
650FUNCTION
651 bfd_decode_symclass
652
653DESCRIPTION
654 Return a character corresponding to the symbol
655 class of @var{symbol}, or '?' for an unknown class.
656
657SYNOPSIS
21efdc8d 658 int bfd_decode_symclass (asymbol *symbol);
252b5132
RH
659*/
660int
c58b9523 661bfd_decode_symclass (asymbol *symbol)
252b5132
RH
662{
663 char c;
664
c82a7c57 665 if (symbol->section && bfd_is_com_section (symbol->section))
252b5132
RH
666 return 'C';
667 if (bfd_is_und_section (symbol->section))
92962560
ILT
668 {
669 if (symbol->flags & BSF_WEAK)
fad6fcbb
NC
670 {
671 /* If weak, determine if it's specifically an object
672 or non-object weak. */
673 if (symbol->flags & BSF_OBJECT)
674 return 'v';
675 else
676 return 'w';
677 }
92962560
ILT
678 else
679 return 'U';
680 }
252b5132
RH
681 if (bfd_is_ind_section (symbol->section))
682 return 'I';
d8045f23
NC
683 if (symbol->flags & BSF_GNU_INDIRECT_FUNCTION)
684 return 'i';
252b5132 685 if (symbol->flags & BSF_WEAK)
fad6fcbb
NC
686 {
687 /* If weak, determine if it's specifically an object
688 or non-object weak. */
689 if (symbol->flags & BSF_OBJECT)
690 return 'V';
691 else
692 return 'W';
693 }
3e7a7d11
NC
694 if (symbol->flags & BSF_GNU_UNIQUE)
695 return 'u';
252b5132
RH
696 if (!(symbol->flags & (BSF_GLOBAL | BSF_LOCAL)))
697 return '?';
698
699 if (bfd_is_abs_section (symbol->section))
700 c = 'a';
701 else if (symbol->section)
b3212001
JW
702 {
703 c = coff_section_type (symbol->section->name);
704 if (c == '?')
705 c = decode_section_type (symbol->section);
706 }
252b5132
RH
707 else
708 return '?';
709 if (symbol->flags & BSF_GLOBAL)
3882b010 710 c = TOUPPER (c);
252b5132
RH
711 return c;
712
713 /* We don't have to handle these cases just yet, but we will soon:
714 N_SETV: 'v';
715 N_SETA: 'l';
716 N_SETT: 'x';
717 N_SETD: 'z';
718 N_SETB: 's';
719 N_INDR: 'i';
720 */
721}
722
fad6fcbb
NC
723/*
724FUNCTION
7b82c249 725 bfd_is_undefined_symclass
fad6fcbb
NC
726
727DESCRIPTION
728 Returns non-zero if the class symbol returned by
729 bfd_decode_symclass represents an undefined symbol.
730 Returns zero otherwise.
731
732SYNOPSIS
b34976b6 733 bfd_boolean bfd_is_undefined_symclass (int symclass);
fad6fcbb
NC
734*/
735
b34976b6 736bfd_boolean
c58b9523 737bfd_is_undefined_symclass (int symclass)
fad6fcbb 738{
b34976b6 739 return symclass == 'U' || symclass == 'w' || symclass == 'v';
fad6fcbb
NC
740}
741
252b5132
RH
742/*
743FUNCTION
744 bfd_symbol_info
745
746DESCRIPTION
747 Fill in the basic info about symbol that nm needs.
748 Additional info may be added by the back-ends after
749 calling this function.
750
751SYNOPSIS
21efdc8d 752 void bfd_symbol_info (asymbol *symbol, symbol_info *ret);
252b5132
RH
753*/
754
755void
c58b9523 756bfd_symbol_info (asymbol *symbol, symbol_info *ret)
252b5132
RH
757{
758 ret->type = bfd_decode_symclass (symbol);
7b82c249 759
fad6fcbb 760 if (bfd_is_undefined_symclass (ret->type))
252b5132 761 ret->value = 0;
fad6fcbb
NC
762 else
763 ret->value = symbol->value + symbol->section->vma;
7b82c249 764
252b5132
RH
765 ret->name = symbol->name;
766}
767
768/*
769FUNCTION
770 bfd_copy_private_symbol_data
771
772SYNOPSIS
c58b9523
AM
773 bfd_boolean bfd_copy_private_symbol_data
774 (bfd *ibfd, asymbol *isym, bfd *obfd, asymbol *osym);
252b5132
RH
775
776DESCRIPTION
777 Copy private symbol information from @var{isym} in the BFD
778 @var{ibfd} to the symbol @var{osym} in the BFD @var{obfd}.
b34976b6 779 Return <<TRUE>> on success, <<FALSE>> on error. Possible error
252b5132
RH
780 returns are:
781
782 o <<bfd_error_no_memory>> -
783 Not enough memory exists to create private data for @var{osec}.
784
785.#define bfd_copy_private_symbol_data(ibfd, isymbol, obfd, osymbol) \
07d6d2b8
AM
786. BFD_SEND (obfd, _bfd_copy_private_symbol_data, \
787. (ibfd, isymbol, obfd, osymbol))
b5f79c76 788.
252b5132
RH
789*/
790
791/* The generic version of the function which returns mini symbols.
792 This is used when the backend does not provide a more efficient
793 version. It just uses BFD asymbol structures as mini symbols. */
794
795long
c58b9523
AM
796_bfd_generic_read_minisymbols (bfd *abfd,
797 bfd_boolean dynamic,
798 void **minisymsp,
799 unsigned int *sizep)
252b5132
RH
800{
801 long storage;
802 asymbol **syms = NULL;
803 long symcount;
804
805 if (dynamic)
806 storage = bfd_get_dynamic_symtab_upper_bound (abfd);
807 else
808 storage = bfd_get_symtab_upper_bound (abfd);
809 if (storage < 0)
810 goto error_return;
ce9c7f50
RH
811 if (storage == 0)
812 return 0;
252b5132 813
a50b1753 814 syms = (asymbol **) bfd_malloc (storage);
252b5132
RH
815 if (syms == NULL)
816 goto error_return;
817
818 if (dynamic)
819 symcount = bfd_canonicalize_dynamic_symtab (abfd, syms);
820 else
821 symcount = bfd_canonicalize_symtab (abfd, syms);
822 if (symcount < 0)
823 goto error_return;
824
c58b9523 825 *minisymsp = syms;
252b5132 826 *sizep = sizeof (asymbol *);
896ca098 827
252b5132
RH
828 return symcount;
829
830 error_return:
0ab72ee2 831 bfd_set_error (bfd_error_no_symbols);
252b5132
RH
832 if (syms != NULL)
833 free (syms);
834 return -1;
835}
836
837/* The generic version of the function which converts a minisymbol to
838 an asymbol. We don't worry about the sym argument we are passed;
839 we just return the asymbol the minisymbol points to. */
840
252b5132 841asymbol *
c58b9523
AM
842_bfd_generic_minisymbol_to_symbol (bfd *abfd ATTRIBUTE_UNUSED,
843 bfd_boolean dynamic ATTRIBUTE_UNUSED,
844 const void *minisym,
845 asymbol *sym ATTRIBUTE_UNUSED)
252b5132
RH
846{
847 return *(asymbol **) minisym;
848}
849
850/* Look through stabs debugging information in .stab and .stabstr
851 sections to find the source file and line closest to a desired
852 location. This is used by COFF and ELF targets. It sets *pfound
b34976b6 853 to TRUE if it finds some information. The *pinfo field is used to
252b5132
RH
854 pass cached information in and out of this routine; this first time
855 the routine is called for a BFD, *pinfo should be NULL. The value
856 placed in *pinfo should be saved with the BFD, and passed back each
857 time this function is called. */
858
859/* We use a cache by default. */
860
861#define ENABLE_CACHING
862
863/* We keep an array of indexentry structures to record where in the
864 stabs section we should look to find line number information for a
865 particular address. */
866
867struct indexentry
868{
869 bfd_vma val;
870 bfd_byte *stab;
871 bfd_byte *str;
872 char *directory_name;
873 char *file_name;
874 char *function_name;
875};
876
877/* Compare two indexentry structures. This is called via qsort. */
878
879static int
c58b9523 880cmpindexentry (const void *a, const void *b)
252b5132 881{
a50b1753
NC
882 const struct indexentry *contestantA = (const struct indexentry *) a;
883 const struct indexentry *contestantB = (const struct indexentry *) b;
252b5132
RH
884
885 if (contestantA->val < contestantB->val)
886 return -1;
887 else if (contestantA->val > contestantB->val)
888 return 1;
889 else
890 return 0;
891}
892
893/* A pointer to this structure is stored in *pinfo. */
894
895struct stab_find_info
896{
897 /* The .stab section. */
898 asection *stabsec;
899 /* The .stabstr section. */
900 asection *strsec;
901 /* The contents of the .stab section. */
902 bfd_byte *stabs;
903 /* The contents of the .stabstr section. */
904 bfd_byte *strs;
905
906 /* A table that indexes stabs by memory address. */
907 struct indexentry *indextable;
908 /* The number of entries in indextable. */
909 int indextablesize;
910
911#ifdef ENABLE_CACHING
912 /* Cached values to restart quickly. */
913 struct indexentry *cached_indexentry;
914 bfd_vma cached_offset;
915 bfd_byte *cached_stab;
916 char *cached_file_name;
917#endif
918
919 /* Saved ptr to malloc'ed filename. */
920 char *filename;
921};
922
b34976b6 923bfd_boolean
c58b9523
AM
924_bfd_stab_section_find_nearest_line (bfd *abfd,
925 asymbol **symbols,
926 asection *section,
927 bfd_vma offset,
928 bfd_boolean *pfound,
929 const char **pfilename,
930 const char **pfnname,
931 unsigned int *pline,
932 void **pinfo)
252b5132
RH
933{
934 struct stab_find_info *info;
935 bfd_size_type stabsize, strsize;
7442e600 936 bfd_byte *stab, *str;
8a865bcb 937 bfd_byte *nul_fun, *nul_str;
252b5132
RH
938 bfd_size_type stroff;
939 struct indexentry *indexentry;
dc810e39
AM
940 char *file_name;
941 char *directory_name;
b34976b6 942 bfd_boolean saw_line, saw_func;
252b5132 943
b34976b6 944 *pfound = FALSE;
252b5132
RH
945 *pfilename = bfd_get_filename (abfd);
946 *pfnname = NULL;
947 *pline = 0;
948
949 /* Stabs entries use a 12 byte format:
950 4 byte string table index
951 1 byte stab type
952 1 byte stab other field
953 2 byte stab desc field
954 4 byte stab value
955 FIXME: This will have to change for a 64 bit object format.
956
957 The stabs symbols are divided into compilation units. For the
958 first entry in each unit, the type of 0, the value is the length
959 of the string table for this unit, and the desc field is the
960 number of stabs symbols for this unit. */
961
962#define STRDXOFF (0)
963#define TYPEOFF (4)
964#define OTHEROFF (5)
965#define DESCOFF (6)
966#define VALOFF (8)
967#define STABSIZE (12)
968
a50b1753 969 info = (struct stab_find_info *) *pinfo;
252b5132
RH
970 if (info != NULL)
971 {
972 if (info->stabsec == NULL || info->strsec == NULL)
973 {
974 /* No stabs debugging information. */
b34976b6 975 return TRUE;
252b5132
RH
976 }
977
eea6121a
AM
978 stabsize = (info->stabsec->rawsize
979 ? info->stabsec->rawsize
980 : info->stabsec->size);
981 strsize = (info->strsec->rawsize
982 ? info->strsec->rawsize
983 : info->strsec->size);
252b5132
RH
984 }
985 else
986 {
987 long reloc_size, reloc_count;
988 arelent **reloc_vector;
989 int i;
252b5132 990 char *function_name;
dc810e39 991 bfd_size_type amt = sizeof *info;
252b5132 992
a50b1753 993 info = (struct stab_find_info *) bfd_zalloc (abfd, amt);
252b5132 994 if (info == NULL)
b34976b6 995 return FALSE;
252b5132
RH
996
997 /* FIXME: When using the linker --split-by-file or
998 --split-by-reloc options, it is possible for the .stab and
999 .stabstr sections to be split. We should handle that. */
1000
1001 info->stabsec = bfd_get_section_by_name (abfd, ".stab");
1002 info->strsec = bfd_get_section_by_name (abfd, ".stabstr");
1003
1004 if (info->stabsec == NULL || info->strsec == NULL)
1005 {
6119d252
NC
1006 /* Try SOM section names. */
1007 info->stabsec = bfd_get_section_by_name (abfd, "$GDB_SYMBOLS$");
1008 info->strsec = bfd_get_section_by_name (abfd, "$GDB_STRINGS$");
68ffbac6 1009
6119d252
NC
1010 if (info->stabsec == NULL || info->strsec == NULL)
1011 {
1012 /* No stabs debugging information. Set *pinfo so that we
1013 can return quickly in the info != NULL case above. */
1014 *pinfo = info;
1015 return TRUE;
1016 }
252b5132
RH
1017 }
1018
eea6121a
AM
1019 stabsize = (info->stabsec->rawsize
1020 ? info->stabsec->rawsize
1021 : info->stabsec->size);
8a865bcb 1022 stabsize = (stabsize / STABSIZE) * STABSIZE;
eea6121a
AM
1023 strsize = (info->strsec->rawsize
1024 ? info->strsec->rawsize
1025 : info->strsec->size);
252b5132 1026
a50b1753
NC
1027 info->stabs = (bfd_byte *) bfd_alloc (abfd, stabsize);
1028 info->strs = (bfd_byte *) bfd_alloc (abfd, strsize);
252b5132 1029 if (info->stabs == NULL || info->strs == NULL)
b34976b6 1030 return FALSE;
252b5132 1031
dc810e39 1032 if (! bfd_get_section_contents (abfd, info->stabsec, info->stabs,
eea6121a 1033 0, stabsize)
dc810e39 1034 || ! bfd_get_section_contents (abfd, info->strsec, info->strs,
eea6121a 1035 0, strsize))
b34976b6 1036 return FALSE;
252b5132 1037
30838132
AM
1038 /* Stab strings ought to be nul terminated. Ensure the last one
1039 is, to prevent running off the end of the buffer. */
1040 info->strs[strsize - 1] = 0;
1041
1049f94e 1042 /* If this is a relocatable object file, we have to relocate
252b5132
RH
1043 the entries in .stab. This should always be simple 32 bit
1044 relocations against symbols defined in this object file, so
1045 this should be no big deal. */
1046 reloc_size = bfd_get_reloc_upper_bound (abfd, info->stabsec);
1047 if (reloc_size < 0)
b34976b6 1048 return FALSE;
a50b1753 1049 reloc_vector = (arelent **) bfd_malloc (reloc_size);
252b5132 1050 if (reloc_vector == NULL && reloc_size != 0)
b34976b6 1051 return FALSE;
252b5132
RH
1052 reloc_count = bfd_canonicalize_reloc (abfd, info->stabsec, reloc_vector,
1053 symbols);
1054 if (reloc_count < 0)
1055 {
1056 if (reloc_vector != NULL)
1057 free (reloc_vector);
b34976b6 1058 return FALSE;
252b5132
RH
1059 }
1060 if (reloc_count > 0)
1061 {
1062 arelent **pr;
1063
1064 for (pr = reloc_vector; *pr != NULL; pr++)
1065 {
1066 arelent *r;
1067 unsigned long val;
1068 asymbol *sym;
1069
1070 r = *pr;
7785be14
AM
1071 /* Ignore R_*_NONE relocs. */
1072 if (r->howto->dst_mask == 0)
1073 continue;
1074
252b5132
RH
1075 if (r->howto->rightshift != 0
1076 || r->howto->size != 2
1077 || r->howto->bitsize != 32
1078 || r->howto->pc_relative
1079 || r->howto->bitpos != 0
30838132
AM
1080 || r->howto->dst_mask != 0xffffffff
1081 || r->address * bfd_octets_per_byte (abfd) + 4 > stabsize)
252b5132 1082 {
4eca0228 1083 _bfd_error_handler
6e05870c 1084 (_("unsupported .stab relocation"));
252b5132
RH
1085 bfd_set_error (bfd_error_invalid_operation);
1086 if (reloc_vector != NULL)
1087 free (reloc_vector);
b34976b6 1088 return FALSE;
252b5132
RH
1089 }
1090
37b01f6a
DG
1091 val = bfd_get_32 (abfd, info->stabs
1092 + r->address * bfd_octets_per_byte (abfd));
252b5132
RH
1093 val &= r->howto->src_mask;
1094 sym = *r->sym_ptr_ptr;
1095 val += sym->value + sym->section->vma + r->addend;
37b01f6a
DG
1096 bfd_put_32 (abfd, (bfd_vma) val, info->stabs
1097 + r->address * bfd_octets_per_byte (abfd));
252b5132
RH
1098 }
1099 }
1100
1101 if (reloc_vector != NULL)
1102 free (reloc_vector);
1103
1104 /* First time through this function, build a table matching
1105 function VM addresses to stabs, then sort based on starting
1106 VM address. Do this in two passes: once to count how many
1107 table entries we'll need, and a second to actually build the
1108 table. */
1109
1110 info->indextablesize = 0;
8a865bcb 1111 nul_fun = NULL;
252b5132
RH
1112 for (stab = info->stabs; stab < info->stabs + stabsize; stab += STABSIZE)
1113 {
d45913a0 1114 if (stab[TYPEOFF] == (bfd_byte) N_SO)
252b5132 1115 {
7b82c249 1116 /* if we did not see a function def, leave space for one. */
8a865bcb 1117 if (nul_fun != NULL)
252b5132
RH
1118 ++info->indextablesize;
1119
8a865bcb
AM
1120 /* N_SO with null name indicates EOF */
1121 if (bfd_get_32 (abfd, stab + STRDXOFF) == 0)
1122 nul_fun = NULL;
1123 else
252b5132 1124 {
8a865bcb
AM
1125 nul_fun = stab;
1126
1127 /* two N_SO's in a row is a filename and directory. Skip */
1128 if (stab + STABSIZE + TYPEOFF < info->stabs + stabsize
1129 && *(stab + STABSIZE + TYPEOFF) == (bfd_byte) N_SO)
1130 stab += STABSIZE;
252b5132
RH
1131 }
1132 }
8a865bcb
AM
1133 else if (stab[TYPEOFF] == (bfd_byte) N_FUN
1134 && bfd_get_32 (abfd, stab + STRDXOFF) != 0)
252b5132 1135 {
8a865bcb 1136 nul_fun = NULL;
252b5132
RH
1137 ++info->indextablesize;
1138 }
1139 }
1140
8a865bcb 1141 if (nul_fun != NULL)
252b5132 1142 ++info->indextablesize;
7b82c249 1143
252b5132 1144 if (info->indextablesize == 0)
b34976b6 1145 return TRUE;
252b5132
RH
1146 ++info->indextablesize;
1147
dc810e39
AM
1148 amt = info->indextablesize;
1149 amt *= sizeof (struct indexentry);
a50b1753 1150 info->indextable = (struct indexentry *) bfd_alloc (abfd, amt);
252b5132 1151 if (info->indextable == NULL)
b34976b6 1152 return FALSE;
252b5132
RH
1153
1154 file_name = NULL;
1155 directory_name = NULL;
8a865bcb 1156 nul_fun = NULL;
fa549f3b 1157 stroff = 0;
252b5132 1158
8a865bcb 1159 for (i = 0, stab = info->stabs, nul_str = str = info->strs;
252b5132
RH
1160 i < info->indextablesize && stab < info->stabs + stabsize;
1161 stab += STABSIZE)
1162 {
1163 switch (stab[TYPEOFF])
1164 {
1165 case 0:
1166 /* This is the first entry in a compilation unit. */
1167 if ((bfd_size_type) ((info->strs + strsize) - str) < stroff)
1168 break;
1169 str += stroff;
1170 stroff = bfd_get_32 (abfd, stab + VALOFF);
1171 break;
1172
1173 case N_SO:
1174 /* The main file name. */
1175
1176 /* The following code creates a new indextable entry with
07d6d2b8
AM
1177 a NULL function name if there were no N_FUNs in a file.
1178 Note that a N_SO without a file name is an EOF and
1179 there could be 2 N_SO following it with the new filename
1180 and directory. */
8a865bcb 1181 if (nul_fun != NULL)
252b5132 1182 {
8a865bcb
AM
1183 info->indextable[i].val = bfd_get_32 (abfd, nul_fun + VALOFF);
1184 info->indextable[i].stab = nul_fun;
1185 info->indextable[i].str = nul_str;
252b5132
RH
1186 info->indextable[i].directory_name = directory_name;
1187 info->indextable[i].file_name = file_name;
1188 info->indextable[i].function_name = NULL;
1189 ++i;
1190 }
7b82c249 1191
8a865bcb 1192 directory_name = NULL;
252b5132 1193 file_name = (char *) str + bfd_get_32 (abfd, stab + STRDXOFF);
8a865bcb 1194 if (file_name == (char *) str)
252b5132 1195 {
252b5132 1196 file_name = NULL;
8a865bcb 1197 nul_fun = NULL;
252b5132 1198 }
7442e600
ILT
1199 else
1200 {
8a865bcb
AM
1201 nul_fun = stab;
1202 nul_str = str;
30838132
AM
1203 if (file_name >= (char *) info->strs + strsize
1204 || file_name < (char *) str)
896ca098 1205 file_name = NULL;
8a865bcb
AM
1206 if (stab + STABSIZE + TYPEOFF < info->stabs + stabsize
1207 && *(stab + STABSIZE + TYPEOFF) == (bfd_byte) N_SO)
7442e600
ILT
1208 {
1209 /* Two consecutive N_SOs are a directory and a
1210 file name. */
1211 stab += STABSIZE;
1212 directory_name = file_name;
1213 file_name = ((char *) str
1214 + bfd_get_32 (abfd, stab + STRDXOFF));
30838132
AM
1215 if (file_name >= (char *) info->strs + strsize
1216 || file_name < (char *) str)
896ca098 1217 file_name = NULL;
7442e600
ILT
1218 }
1219 }
252b5132
RH
1220 break;
1221
1222 case N_SOL:
1223 /* The name of an include file. */
1224 file_name = (char *) str + bfd_get_32 (abfd, stab + STRDXOFF);
896ca098 1225 /* PR 17512: file: 0c680a1f. */
dbb3fbbb 1226 /* PR 17512: file: 5da8aec4. */
30838132
AM
1227 if (file_name >= (char *) info->strs + strsize
1228 || file_name < (char *) str)
896ca098 1229 file_name = NULL;
252b5132
RH
1230 break;
1231
1232 case N_FUN:
1233 /* A function name. */
8a865bcb
AM
1234 function_name = (char *) str + bfd_get_32 (abfd, stab + STRDXOFF);
1235 if (function_name == (char *) str)
252b5132 1236 continue;
30838132
AM
1237 if (function_name >= (char *) info->strs + strsize
1238 || function_name < (char *) str)
896ca098 1239 function_name = NULL;
252b5132 1240
8a865bcb 1241 nul_fun = NULL;
252b5132
RH
1242 info->indextable[i].val = bfd_get_32 (abfd, stab + VALOFF);
1243 info->indextable[i].stab = stab;
1244 info->indextable[i].str = str;
1245 info->indextable[i].directory_name = directory_name;
1246 info->indextable[i].file_name = file_name;
1247 info->indextable[i].function_name = function_name;
1248 ++i;
1249 break;
1250 }
1251 }
1252
8a865bcb 1253 if (nul_fun != NULL)
252b5132 1254 {
8a865bcb
AM
1255 info->indextable[i].val = bfd_get_32 (abfd, nul_fun + VALOFF);
1256 info->indextable[i].stab = nul_fun;
1257 info->indextable[i].str = nul_str;
252b5132
RH
1258 info->indextable[i].directory_name = directory_name;
1259 info->indextable[i].file_name = file_name;
1260 info->indextable[i].function_name = NULL;
1261 ++i;
1262 }
1263
1264 info->indextable[i].val = (bfd_vma) -1;
1265 info->indextable[i].stab = info->stabs + stabsize;
1266 info->indextable[i].str = str;
1267 info->indextable[i].directory_name = NULL;
1268 info->indextable[i].file_name = NULL;
1269 info->indextable[i].function_name = NULL;
1270 ++i;
1271
1272 info->indextablesize = i;
dc810e39
AM
1273 qsort (info->indextable, (size_t) i, sizeof (struct indexentry),
1274 cmpindexentry);
252b5132 1275
c58b9523 1276 *pinfo = info;
252b5132
RH
1277 }
1278
1279 /* We are passed a section relative offset. The offsets in the
1280 stabs information are absolute. */
1281 offset += bfd_get_section_vma (abfd, section);
1282
1283#ifdef ENABLE_CACHING
1284 if (info->cached_indexentry != NULL
1285 && offset >= info->cached_offset
1286 && offset < (info->cached_indexentry + 1)->val)
1287 {
1288 stab = info->cached_stab;
1289 indexentry = info->cached_indexentry;
1290 file_name = info->cached_file_name;
1291 }
1292 else
1293#endif
1294 {
252b5132
RH
1295 long low, high;
1296 long mid = -1;
1297
7dee875e 1298 /* Cache non-existent or invalid. Do binary search on
07d6d2b8 1299 indextable. */
252b5132
RH
1300 indexentry = NULL;
1301
1302 low = 0;
1303 high = info->indextablesize - 1;
1304 while (low != high)
1305 {
1306 mid = (high + low) / 2;
1307 if (offset >= info->indextable[mid].val
1308 && offset < info->indextable[mid + 1].val)
1309 {
1310 indexentry = &info->indextable[mid];
1311 break;
1312 }
1313
1314 if (info->indextable[mid].val > offset)
1315 high = mid;
1316 else
1317 low = mid + 1;
1318 }
1319
1320 if (indexentry == NULL)
b34976b6 1321 return TRUE;
252b5132
RH
1322
1323 stab = indexentry->stab + STABSIZE;
1324 file_name = indexentry->file_name;
1325 }
1326
1327 directory_name = indexentry->directory_name;
1328 str = indexentry->str;
1329
b34976b6
AM
1330 saw_line = FALSE;
1331 saw_func = FALSE;
252b5132
RH
1332 for (; stab < (indexentry+1)->stab; stab += STABSIZE)
1333 {
b34976b6 1334 bfd_boolean done;
252b5132
RH
1335 bfd_vma val;
1336
b34976b6 1337 done = FALSE;
252b5132
RH
1338
1339 switch (stab[TYPEOFF])
1340 {
1341 case N_SOL:
1342 /* The name of an include file. */
1343 val = bfd_get_32 (abfd, stab + VALOFF);
1344 if (val <= offset)
1345 {
1346 file_name = (char *) str + bfd_get_32 (abfd, stab + STRDXOFF);
30838132
AM
1347 if (file_name >= (char *) info->strs + strsize
1348 || file_name < (char *) str)
896ca098 1349 file_name = NULL;
252b5132
RH
1350 *pline = 0;
1351 }
1352 break;
1353
1354 case N_SLINE:
1355 case N_DSLINE:
1356 case N_BSLINE:
21efdc8d
NC
1357 /* A line number. If the function was specified, then the value
1358 is relative to the start of the function. Otherwise, the
1359 value is an absolute address. */
1360 val = ((indexentry->function_name ? indexentry->val : 0)
1361 + bfd_get_32 (abfd, stab + VALOFF));
1ee24f27
DJ
1362 /* If this line starts before our desired offset, or if it's
1363 the first line we've been able to find, use it. The
1364 !saw_line check works around a bug in GCC 2.95.3, which emits
1365 the first N_SLINE late. */
1366 if (!saw_line || val <= offset)
252b5132
RH
1367 {
1368 *pline = bfd_get_16 (abfd, stab + DESCOFF);
1369
1370#ifdef ENABLE_CACHING
1371 info->cached_stab = stab;
1372 info->cached_offset = val;
1373 info->cached_file_name = file_name;
1374 info->cached_indexentry = indexentry;
1375#endif
1376 }
1377 if (val > offset)
b34976b6
AM
1378 done = TRUE;
1379 saw_line = TRUE;
252b5132
RH
1380 break;
1381
1382 case N_FUN:
1383 case N_SO:
1ee24f27 1384 if (saw_func || saw_line)
b34976b6
AM
1385 done = TRUE;
1386 saw_func = TRUE;
252b5132
RH
1387 break;
1388 }
1389
1390 if (done)
1391 break;
1392 }
1393
b34976b6 1394 *pfound = TRUE;
252b5132 1395
818c39a3
AM
1396 if (file_name == NULL || IS_ABSOLUTE_PATH (file_name)
1397 || directory_name == NULL)
252b5132
RH
1398 *pfilename = file_name;
1399 else
1400 {
1401 size_t dirlen;
1402
1403 dirlen = strlen (directory_name);
1404 if (info->filename == NULL
007d6189
KT
1405 || filename_ncmp (info->filename, directory_name, dirlen) != 0
1406 || filename_cmp (info->filename + dirlen, file_name) != 0)
252b5132 1407 {
d4c88bbb
AM
1408 size_t len;
1409
13c0e967
AM
1410 /* Don't free info->filename here. objdump and other
1411 apps keep a copy of a previously returned file name
1412 pointer. */
d4c88bbb 1413 len = strlen (file_name) + 1;
a50b1753 1414 info->filename = (char *) bfd_alloc (abfd, dirlen + len);
252b5132 1415 if (info->filename == NULL)
b34976b6 1416 return FALSE;
d4c88bbb
AM
1417 memcpy (info->filename, directory_name, dirlen);
1418 memcpy (info->filename + dirlen, file_name, len);
252b5132
RH
1419 }
1420
1421 *pfilename = info->filename;
1422 }
1423
1424 if (indexentry->function_name != NULL)
1425 {
1426 char *s;
1427
1428 /* This will typically be something like main:F(0,1), so we want
07d6d2b8
AM
1429 to clobber the colon. It's OK to change the name, since the
1430 string is in our own local storage anyhow. */
252b5132
RH
1431 s = strchr (indexentry->function_name, ':');
1432 if (s != NULL)
1433 *s = '\0';
1434
1435 *pfnname = indexentry->function_name;
1436 }
1437
b34976b6 1438 return TRUE;
252b5132 1439}
d00dd7dc
AM
1440
1441long
1442_bfd_nosymbols_canonicalize_symtab (bfd *abfd ATTRIBUTE_UNUSED,
1443 asymbol **location ATTRIBUTE_UNUSED)
1444{
1445 return 0;
1446}
1447
1448void
1449_bfd_nosymbols_print_symbol (bfd *abfd ATTRIBUTE_UNUSED,
1450 void *afile ATTRIBUTE_UNUSED,
1451 asymbol *symbol ATTRIBUTE_UNUSED,
1452 bfd_print_symbol_type how ATTRIBUTE_UNUSED)
1453{
1454}
1455
1456void
1457_bfd_nosymbols_get_symbol_info (bfd *abfd ATTRIBUTE_UNUSED,
1458 asymbol *sym ATTRIBUTE_UNUSED,
1459 symbol_info *ret ATTRIBUTE_UNUSED)
1460{
1461}
1462
1463const char *
1464_bfd_nosymbols_get_symbol_version_string (bfd *abfd,
1465 asymbol *symbol ATTRIBUTE_UNUSED,
1466 bfd_boolean *hidden ATTRIBUTE_UNUSED)
1467{
1468 return (const char *) _bfd_ptr_bfd_null_error (abfd);
1469}
1470
1471bfd_boolean
1472_bfd_nosymbols_bfd_is_local_label_name (bfd *abfd ATTRIBUTE_UNUSED,
1473 const char *name ATTRIBUTE_UNUSED)
1474{
1475 return FALSE;
1476}
1477
1478alent *
1479_bfd_nosymbols_get_lineno (bfd *abfd, asymbol *sym ATTRIBUTE_UNUSED)
1480{
1481 return (alent *) _bfd_ptr_bfd_null_error (abfd);
1482}
1483
1484bfd_boolean
1485_bfd_nosymbols_find_nearest_line
1486 (bfd *abfd,
1487 asymbol **symbols ATTRIBUTE_UNUSED,
1488 asection *section ATTRIBUTE_UNUSED,
1489 bfd_vma offset ATTRIBUTE_UNUSED,
1490 const char **filename_ptr ATTRIBUTE_UNUSED,
1491 const char **functionname_ptr ATTRIBUTE_UNUSED,
1492 unsigned int *line_ptr ATTRIBUTE_UNUSED,
1493 unsigned int *discriminator_ptr ATTRIBUTE_UNUSED)
1494{
1495 return _bfd_bool_bfd_false_error (abfd);
1496}
1497
1498bfd_boolean
1499_bfd_nosymbols_find_line (bfd *abfd,
1500 asymbol **symbols ATTRIBUTE_UNUSED,
1501 asymbol *symbol ATTRIBUTE_UNUSED,
1502 const char **filename_ptr ATTRIBUTE_UNUSED,
1503 unsigned int *line_ptr ATTRIBUTE_UNUSED)
1504{
1505 return _bfd_bool_bfd_false_error (abfd);
1506}
1507
1508bfd_boolean
1509_bfd_nosymbols_find_inliner_info
1510 (bfd *abfd,
1511 const char **filename_ptr ATTRIBUTE_UNUSED,
1512 const char **functionname_ptr ATTRIBUTE_UNUSED,
1513 unsigned int *line_ptr ATTRIBUTE_UNUSED)
1514{
1515 return _bfd_bool_bfd_false_error (abfd);
1516}
1517
1518asymbol *
1519_bfd_nosymbols_bfd_make_debug_symbol (bfd *abfd,
1520 void *ptr ATTRIBUTE_UNUSED,
1521 unsigned long sz ATTRIBUTE_UNUSED)
1522{
1523 return (asymbol *) _bfd_ptr_bfd_null_error (abfd);
1524}
1525
1526long
1527_bfd_nosymbols_read_minisymbols (bfd *abfd,
1528 bfd_boolean dynamic ATTRIBUTE_UNUSED,
1529 void **minisymsp ATTRIBUTE_UNUSED,
1530 unsigned int *sizep ATTRIBUTE_UNUSED)
1531{
1532 return _bfd_long_bfd_n1_error (abfd);
1533}
1534
1535asymbol *
1536_bfd_nosymbols_minisymbol_to_symbol (bfd *abfd,
1537 bfd_boolean dynamic ATTRIBUTE_UNUSED,
1538 const void *minisym ATTRIBUTE_UNUSED,
1539 asymbol *sym ATTRIBUTE_UNUSED)
1540{
1541 return (asymbol *) _bfd_ptr_bfd_null_error (abfd);
1542}
1543
1544long
1545_bfd_nodynamic_get_synthetic_symtab (bfd *abfd,
1546 long symcount ATTRIBUTE_UNUSED,
1547 asymbol **syms ATTRIBUTE_UNUSED,
1548 long dynsymcount ATTRIBUTE_UNUSED,
1549 asymbol **dynsyms ATTRIBUTE_UNUSED,
1550 asymbol **ret ATTRIBUTE_UNUSED)
1551{
1552 return _bfd_long_bfd_n1_error (abfd);
1553}
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