Regenerate files using fixed aclocal install.
[deliverable/binutils-gdb.git] / bfd / bfd-in2.h
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252b5132 1/* Main header file for the bfd library -- portable access to object files.
5b93d8bb 2 Copyright 1990, 91, 92, 93, 94, 95, 96, 97, 98, 99, 2000
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3 Free Software Foundation, Inc.
4 Contributed by Cygnus Support.
5
6** NOTE: bfd.h and bfd-in2.h are GENERATED files. Don't change them;
7** instead, change bfd-in.h or the other BFD source files processed to
8** generate these files.
9
10This file is part of BFD, the Binary File Descriptor library.
11
12This program is free software; you can redistribute it and/or modify
13it under the terms of the GNU General Public License as published by
14the Free Software Foundation; either version 2 of the License, or
15(at your option) any later version.
16
17This program is distributed in the hope that it will be useful,
18but WITHOUT ANY WARRANTY; without even the implied warranty of
19MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
20GNU General Public License for more details.
21
22You should have received a copy of the GNU General Public License
23along with this program; if not, write to the Free Software
24Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. */
25
60bcf0fa 26/* bfd.h -- The only header file required by users of the bfd library
252b5132
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27
28The bfd.h file is generated from bfd-in.h and various .c files; if you
29change it, your changes will probably be lost.
30
31All the prototypes and definitions following the comment "THE FOLLOWING
32IS EXTRACTED FROM THE SOURCE" are extracted from the source files for
33BFD. If you change it, someone oneday will extract it from the source
34again, and your changes will be lost. To save yourself from this bind,
35change the definitions in the source in the bfd directory. Type "make
36docs" and then "make headers" in that directory, and magically this file
37will change to reflect your changes.
38
39If you don't have the tools to perform the extraction, then you are
40safe from someone on your system trampling over your header files.
41You should still maintain the equivalence between the source and this
42file though; every change you make to the .c file should be reflected
43here. */
44
45#ifndef __BFD_H_SEEN__
46#define __BFD_H_SEEN__
47
48#ifdef __cplusplus
49extern "C" {
50#endif
51
52#include "ansidecl.h"
53
54/* These two lines get substitutions done by commands in Makefile.in. */
55#define BFD_VERSION "@VERSION@"
56#define BFD_ARCH_SIZE @wordsize@
57#define BFD_HOST_64BIT_LONG @BFD_HOST_64BIT_LONG@
58#if @BFD_HOST_64_BIT_DEFINED@
59#define BFD_HOST_64_BIT @BFD_HOST_64_BIT@
60#define BFD_HOST_U_64_BIT @BFD_HOST_U_64_BIT@
61#endif
62
63#if BFD_ARCH_SIZE >= 64
64#define BFD64
65#endif
66
67#ifndef INLINE
68#if __GNUC__ >= 2
69#define INLINE __inline__
70#else
71#define INLINE
72#endif
73#endif
74
75/* forward declaration */
76typedef struct _bfd bfd;
77
78/* To squelch erroneous compiler warnings ("illegal pointer
79 combination") from the SVR3 compiler, we would like to typedef
80 boolean to int (it doesn't like functions which return boolean.
81 Making sure they are never implicitly declared to return int
82 doesn't seem to help). But this file is not configured based on
83 the host. */
84/* General rules: functions which are boolean return true on success
85 and false on failure (unless they're a predicate). -- bfd.doc */
86/* I'm sure this is going to break something and someone is going to
87 force me to change it. */
88/* typedef enum boolean {false, true} boolean; */
89/* Yup, SVR4 has a "typedef enum boolean" in <sys/types.h> -fnf */
90/* It gets worse if the host also defines a true/false enum... -sts */
91/* And even worse if your compiler has built-in boolean types... -law */
a1934524 92#if defined (__GNUG__) && (__GNUC__ > 2 || (__GNUC__ == 2 && __GNUC_MINOR__ >= 6))
252b5132
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93#define TRUE_FALSE_ALREADY_DEFINED
94#endif
95#ifdef MPW
96/* Pre-emptive strike - get the file with the enum. */
97#include <Types.h>
98#define TRUE_FALSE_ALREADY_DEFINED
99#endif /* MPW */
100#ifndef TRUE_FALSE_ALREADY_DEFINED
101typedef enum bfd_boolean {false, true} boolean;
102#define BFD_TRUE_FALSE
103#else
104/* Use enum names that will appear nowhere else. */
105typedef enum bfd_boolean {bfd_fffalse, bfd_tttrue} boolean;
106#endif
107
108/* A pointer to a position in a file. */
109/* FIXME: This should be using off_t from <sys/types.h>.
110 For now, try to avoid breaking stuff by not including <sys/types.h> here.
111 This will break on systems with 64-bit file offsets (e.g. 4.4BSD).
60bcf0fa 112 Probably the best long-term answer is to avoid using file_ptr AND off_t
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113 in this header file, and to handle this in the BFD implementation
114 rather than in its interface. */
115/* typedef off_t file_ptr; */
116typedef long int file_ptr;
117
118/* Support for different sizes of target format ints and addresses.
119 If the type `long' is at least 64 bits, BFD_HOST_64BIT_LONG will be
120 set to 1 above. Otherwise, if gcc is being used, this code will
121 use gcc's "long long" type. Otherwise, BFD_HOST_64_BIT must be
122 defined above. */
123
124#ifndef BFD_HOST_64_BIT
125# if BFD_HOST_64BIT_LONG
126# define BFD_HOST_64_BIT long
127# define BFD_HOST_U_64_BIT unsigned long
128# else
129# ifdef __GNUC__
130# if __GNUC__ >= 2
131# define BFD_HOST_64_BIT long long
132# define BFD_HOST_U_64_BIT unsigned long long
133# endif /* __GNUC__ >= 2 */
134# endif /* ! defined (__GNUC__) */
135# endif /* ! BFD_HOST_64BIT_LONG */
136#endif /* ! defined (BFD_HOST_64_BIT) */
137
138#ifdef BFD64
139
140#ifndef BFD_HOST_64_BIT
141 #error No 64 bit integer type available
142#endif /* ! defined (BFD_HOST_64_BIT) */
143
144typedef BFD_HOST_U_64_BIT bfd_vma;
145typedef BFD_HOST_64_BIT bfd_signed_vma;
146typedef BFD_HOST_U_64_BIT bfd_size_type;
147typedef BFD_HOST_U_64_BIT symvalue;
148
149#ifndef fprintf_vma
150#if BFD_HOST_64BIT_LONG
151#define sprintf_vma(s,x) sprintf (s, "%016lx", x)
152#define fprintf_vma(f,x) fprintf (f, "%016lx", x)
153#else
154#define _bfd_int64_low(x) ((unsigned long) (((x) & 0xffffffff)))
155#define _bfd_int64_high(x) ((unsigned long) (((x) >> 32) & 0xffffffff))
156#define fprintf_vma(s,x) \
157 fprintf ((s), "%08lx%08lx", _bfd_int64_high (x), _bfd_int64_low (x))
158#define sprintf_vma(s,x) \
159 sprintf ((s), "%08lx%08lx", _bfd_int64_high (x), _bfd_int64_low (x))
160#endif
161#endif
162
163#else /* not BFD64 */
164
165/* Represent a target address. Also used as a generic unsigned type
166 which is guaranteed to be big enough to hold any arithmetic types
167 we need to deal with. */
168typedef unsigned long bfd_vma;
169
170/* A generic signed type which is guaranteed to be big enough to hold any
171 arithmetic types we need to deal with. Can be assumed to be compatible
172 with bfd_vma in the same way that signed and unsigned ints are compatible
173 (as parameters, in assignment, etc). */
174typedef long bfd_signed_vma;
175
176typedef unsigned long symvalue;
177typedef unsigned long bfd_size_type;
178
179/* Print a bfd_vma x on stream s. */
180#define fprintf_vma(s,x) fprintf(s, "%08lx", x)
181#define sprintf_vma(s,x) sprintf(s, "%08lx", x)
182
183#endif /* not BFD64 */
184
185#define printf_vma(x) fprintf_vma(stdout,x)
186
187typedef unsigned int flagword; /* 32 bits of flags */
188typedef unsigned char bfd_byte;
189\f
190/** File formats */
191
192typedef enum bfd_format {
193 bfd_unknown = 0, /* file format is unknown */
194 bfd_object, /* linker/assember/compiler output */
195 bfd_archive, /* object archive file */
196 bfd_core, /* core dump */
197 bfd_type_end} /* marks the end; don't use it! */
198 bfd_format;
199
200/* Values that may appear in the flags field of a BFD. These also
201 appear in the object_flags field of the bfd_target structure, where
202 they indicate the set of flags used by that backend (not all flags
203 are meaningful for all object file formats) (FIXME: at the moment,
204 the object_flags values have mostly just been copied from backend
205 to another, and are not necessarily correct). */
206
207/* No flags. */
208#define BFD_NO_FLAGS 0x00
209
210/* BFD contains relocation entries. */
211#define HAS_RELOC 0x01
212
213/* BFD is directly executable. */
214#define EXEC_P 0x02
215
216/* BFD has line number information (basically used for F_LNNO in a
217 COFF header). */
218#define HAS_LINENO 0x04
219
220/* BFD has debugging information. */
221#define HAS_DEBUG 0x08
222
223/* BFD has symbols. */
224#define HAS_SYMS 0x10
225
226/* BFD has local symbols (basically used for F_LSYMS in a COFF
227 header). */
228#define HAS_LOCALS 0x20
229
230/* BFD is a dynamic object. */
231#define DYNAMIC 0x40
232
233/* Text section is write protected (if D_PAGED is not set, this is
234 like an a.out NMAGIC file) (the linker sets this by default, but
235 clears it for -r or -N). */
236#define WP_TEXT 0x80
237
238/* BFD is dynamically paged (this is like an a.out ZMAGIC file) (the
239 linker sets this by default, but clears it for -r or -n or -N). */
240#define D_PAGED 0x100
241
242/* BFD is relaxable (this means that bfd_relax_section may be able to
243 do something) (sometimes bfd_relax_section can do something even if
244 this is not set). */
245#define BFD_IS_RELAXABLE 0x200
246
247/* This may be set before writing out a BFD to request using a
248 traditional format. For example, this is used to request that when
249 writing out an a.out object the symbols not be hashed to eliminate
250 duplicates. */
251#define BFD_TRADITIONAL_FORMAT 0x400
252
253/* This flag indicates that the BFD contents are actually cached in
254 memory. If this is set, iostream points to a bfd_in_memory struct. */
255#define BFD_IN_MEMORY 0x800
256\f
257/* symbols and relocation */
258
259/* A count of carsyms (canonical archive symbols). */
260typedef unsigned long symindex;
261
262/* How to perform a relocation. */
263typedef const struct reloc_howto_struct reloc_howto_type;
264
265#define BFD_NO_MORE_SYMBOLS ((symindex) ~0)
266
267/* General purpose part of a symbol X;
268 target specific parts are in libcoff.h, libaout.h, etc. */
269
270#define bfd_get_section(x) ((x)->section)
271#define bfd_get_output_section(x) ((x)->section->output_section)
272#define bfd_set_section(x,y) ((x)->section) = (y)
273#define bfd_asymbol_base(x) ((x)->section->vma)
274#define bfd_asymbol_value(x) (bfd_asymbol_base(x) + (x)->value)
275#define bfd_asymbol_name(x) ((x)->name)
276/*Perhaps future: #define bfd_asymbol_bfd(x) ((x)->section->owner)*/
277#define bfd_asymbol_bfd(x) ((x)->the_bfd)
278#define bfd_asymbol_flavour(x) (bfd_asymbol_bfd(x)->xvec->flavour)
279
280/* A canonical archive symbol. */
281/* This is a type pun with struct ranlib on purpose! */
282typedef struct carsym {
283 char *name;
284 file_ptr file_offset; /* look here to find the file */
285} carsym; /* to make these you call a carsymogen */
286
60bcf0fa 287
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288/* Used in generating armaps (archive tables of contents).
289 Perhaps just a forward definition would do? */
290struct orl { /* output ranlib */
60bcf0fa 291 char **name; /* symbol name */
252b5132
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292 file_ptr pos; /* bfd* or file position */
293 int namidx; /* index into string table */
294};
295\f
296
297/* Linenumber stuff */
298typedef struct lineno_cache_entry {
60bcf0fa 299 unsigned int line_number; /* Linenumber from start of function*/
252b5132
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300 union {
301 struct symbol_cache_entry *sym; /* Function name */
302 unsigned long offset; /* Offset into section */
303 } u;
304} alent;
305\f
306/* object and core file sections */
307
308#define align_power(addr, align) \
309 ( ((addr) + ((1<<(align))-1)) & (-1 << (align)))
310
311typedef struct sec *sec_ptr;
312
313#define bfd_get_section_name(bfd, ptr) ((ptr)->name + 0)
314#define bfd_get_section_vma(bfd, ptr) ((ptr)->vma + 0)
315#define bfd_get_section_alignment(bfd, ptr) ((ptr)->alignment_power + 0)
316#define bfd_section_name(bfd, ptr) ((ptr)->name)
317#define bfd_section_size(bfd, ptr) (bfd_get_section_size_before_reloc(ptr))
318#define bfd_section_vma(bfd, ptr) ((ptr)->vma)
319#define bfd_section_lma(bfd, ptr) ((ptr)->lma)
320#define bfd_section_alignment(bfd, ptr) ((ptr)->alignment_power)
321#define bfd_get_section_flags(bfd, ptr) ((ptr)->flags + 0)
322#define bfd_get_section_userdata(bfd, ptr) ((ptr)->userdata)
323
324#define bfd_is_com_section(ptr) (((ptr)->flags & SEC_IS_COMMON) != 0)
325
326#define bfd_set_section_vma(bfd, ptr, val) (((ptr)->vma = (ptr)->lma= (val)), ((ptr)->user_set_vma = (boolean)true), true)
327#define bfd_set_section_alignment(bfd, ptr, val) (((ptr)->alignment_power = (val)),true)
328#define bfd_set_section_userdata(bfd, ptr, val) (((ptr)->userdata = (val)),true)
329
60bcf0fa 330typedef struct stat stat_type;
252b5132
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331\f
332typedef enum bfd_print_symbol
60bcf0fa 333{
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334 bfd_print_symbol_name,
335 bfd_print_symbol_more,
336 bfd_print_symbol_all
337} bfd_print_symbol_type;
60bcf0fa 338
252b5132
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339/* Information about a symbol that nm needs. */
340
341typedef struct _symbol_info
342{
343 symvalue value;
344 char type;
345 CONST char *name; /* Symbol name. */
346 unsigned char stab_type; /* Stab type. */
347 char stab_other; /* Stab other. */
348 short stab_desc; /* Stab desc. */
349 CONST char *stab_name; /* String for stab type. */
350} symbol_info;
351
352/* Get the name of a stabs type code. */
353
354extern const char *bfd_get_stab_name PARAMS ((int));
355\f
356/* Hash table routines. There is no way to free up a hash table. */
357
358/* An element in the hash table. Most uses will actually use a larger
359 structure, and an instance of this will be the first field. */
360
361struct bfd_hash_entry
362{
363 /* Next entry for this hash code. */
364 struct bfd_hash_entry *next;
365 /* String being hashed. */
366 const char *string;
367 /* Hash code. This is the full hash code, not the index into the
368 table. */
369 unsigned long hash;
370};
371
372/* A hash table. */
373
374struct bfd_hash_table
375{
376 /* The hash array. */
377 struct bfd_hash_entry **table;
378 /* The number of slots in the hash table. */
379 unsigned int size;
380 /* A function used to create new elements in the hash table. The
381 first entry is itself a pointer to an element. When this
382 function is first invoked, this pointer will be NULL. However,
383 having the pointer permits a hierarchy of method functions to be
384 built each of which calls the function in the superclass. Thus
385 each function should be written to allocate a new block of memory
386 only if the argument is NULL. */
387 struct bfd_hash_entry *(*newfunc) PARAMS ((struct bfd_hash_entry *,
388 struct bfd_hash_table *,
389 const char *));
390 /* An objalloc for this hash table. This is a struct objalloc *,
391 but we use PTR to avoid requiring the inclusion of objalloc.h. */
392 PTR memory;
393};
394
395/* Initialize a hash table. */
396extern boolean bfd_hash_table_init
397 PARAMS ((struct bfd_hash_table *,
398 struct bfd_hash_entry *(*) (struct bfd_hash_entry *,
399 struct bfd_hash_table *,
400 const char *)));
401
402/* Initialize a hash table specifying a size. */
403extern boolean bfd_hash_table_init_n
404 PARAMS ((struct bfd_hash_table *,
405 struct bfd_hash_entry *(*) (struct bfd_hash_entry *,
406 struct bfd_hash_table *,
407 const char *),
408 unsigned int size));
409
410/* Free up a hash table. */
411extern void bfd_hash_table_free PARAMS ((struct bfd_hash_table *));
412
413/* Look up a string in a hash table. If CREATE is true, a new entry
414 will be created for this string if one does not already exist. The
415 COPY argument must be true if this routine should copy the string
416 into newly allocated memory when adding an entry. */
417extern struct bfd_hash_entry *bfd_hash_lookup
418 PARAMS ((struct bfd_hash_table *, const char *, boolean create,
419 boolean copy));
420
421/* Replace an entry in a hash table. */
422extern void bfd_hash_replace
423 PARAMS ((struct bfd_hash_table *, struct bfd_hash_entry *old,
424 struct bfd_hash_entry *nw));
425
426/* Base method for creating a hash table entry. */
427extern struct bfd_hash_entry *bfd_hash_newfunc
428 PARAMS ((struct bfd_hash_entry *, struct bfd_hash_table *,
429 const char *));
430
431/* Grab some space for a hash table entry. */
432extern PTR bfd_hash_allocate PARAMS ((struct bfd_hash_table *,
433 unsigned int));
434
435/* Traverse a hash table in a random order, calling a function on each
436 element. If the function returns false, the traversal stops. The
437 INFO argument is passed to the function. */
438extern void bfd_hash_traverse PARAMS ((struct bfd_hash_table *,
439 boolean (*) (struct bfd_hash_entry *,
440 PTR),
441 PTR info));
442\f
443/* Semi-portable string concatenation in cpp.
444 The CAT4 hack is to avoid a problem with some strict ANSI C preprocessors.
445 The problem is, "32_" is not a valid preprocessing token, and we don't
446 want extra underscores (e.g., "nlm_32_"). The XCAT2 macro will cause the
447 inner CAT macros to be evaluated first, producing still-valid pp-tokens.
448 Then the final concatenation can be done. (Sigh.) */
449#ifndef CAT
450#ifdef SABER
451#define CAT(a,b) a##b
452#define CAT3(a,b,c) a##b##c
453#define CAT4(a,b,c,d) a##b##c##d
454#else
455#if defined(__STDC__) || defined(ALMOST_STDC)
456#define CAT(a,b) a##b
457#define CAT3(a,b,c) a##b##c
458#define XCAT2(a,b) CAT(a,b)
459#define CAT4(a,b,c,d) XCAT2(CAT(a,b),CAT(c,d))
460#else
461#define CAT(a,b) a/**/b
462#define CAT3(a,b,c) a/**/b/**/c
463#define CAT4(a,b,c,d) a/**/b/**/c/**/d
464#endif
465#endif
466#endif
467
468#define COFF_SWAP_TABLE (PTR) &bfd_coff_std_swap_table
469\f
470/* User program access to BFD facilities */
471
472/* Direct I/O routines, for programs which know more about the object
473 file than BFD does. Use higher level routines if possible. */
474
475extern bfd_size_type bfd_read
476 PARAMS ((PTR, bfd_size_type size, bfd_size_type nitems, bfd *abfd));
477extern bfd_size_type bfd_write
478 PARAMS ((const PTR, bfd_size_type size, bfd_size_type nitems, bfd *abfd));
479extern int bfd_seek PARAMS ((bfd *abfd, file_ptr fp, int direction));
480extern long bfd_tell PARAMS ((bfd *abfd));
481extern int bfd_flush PARAMS ((bfd *abfd));
482extern int bfd_stat PARAMS ((bfd *abfd, struct stat *));
483
484
485/* Cast from const char * to char * so that caller can assign to
486 a char * without a warning. */
487#define bfd_get_filename(abfd) ((char *) (abfd)->filename)
488#define bfd_get_cacheable(abfd) ((abfd)->cacheable)
489#define bfd_get_format(abfd) ((abfd)->format)
490#define bfd_get_target(abfd) ((abfd)->xvec->name)
491#define bfd_get_flavour(abfd) ((abfd)->xvec->flavour)
9bd09e22
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492#define bfd_family_coff(abfd) \
493 (bfd_get_flavour (abfd) == bfd_target_coff_flavour || \
494 bfd_get_flavour (abfd) == bfd_target_xcoff_flavour)
252b5132
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495#define bfd_big_endian(abfd) ((abfd)->xvec->byteorder == BFD_ENDIAN_BIG)
496#define bfd_little_endian(abfd) ((abfd)->xvec->byteorder == BFD_ENDIAN_LITTLE)
497#define bfd_header_big_endian(abfd) \
498 ((abfd)->xvec->header_byteorder == BFD_ENDIAN_BIG)
499#define bfd_header_little_endian(abfd) \
500 ((abfd)->xvec->header_byteorder == BFD_ENDIAN_LITTLE)
501#define bfd_get_file_flags(abfd) ((abfd)->flags)
502#define bfd_applicable_file_flags(abfd) ((abfd)->xvec->object_flags)
503#define bfd_applicable_section_flags(abfd) ((abfd)->xvec->section_flags)
504#define bfd_my_archive(abfd) ((abfd)->my_archive)
505#define bfd_has_map(abfd) ((abfd)->has_armap)
506
507#define bfd_valid_reloc_types(abfd) ((abfd)->xvec->valid_reloc_types)
508#define bfd_usrdata(abfd) ((abfd)->usrdata)
509
510#define bfd_get_start_address(abfd) ((abfd)->start_address)
511#define bfd_get_symcount(abfd) ((abfd)->symcount)
512#define bfd_get_outsymbols(abfd) ((abfd)->outsymbols)
513#define bfd_count_sections(abfd) ((abfd)->section_count)
514
515#define bfd_get_symbol_leading_char(abfd) ((abfd)->xvec->symbol_leading_char)
516
517#define bfd_set_cacheable(abfd,bool) (((abfd)->cacheable = (boolean)(bool)), true)
518
519extern boolean bfd_record_phdr
520 PARAMS ((bfd *, unsigned long, boolean, flagword, boolean, bfd_vma,
521 boolean, boolean, unsigned int, struct sec **));
522
523/* Byte swapping routines. */
524
525bfd_vma bfd_getb64 PARAMS ((const unsigned char *));
526bfd_vma bfd_getl64 PARAMS ((const unsigned char *));
527bfd_signed_vma bfd_getb_signed_64 PARAMS ((const unsigned char *));
528bfd_signed_vma bfd_getl_signed_64 PARAMS ((const unsigned char *));
529bfd_vma bfd_getb32 PARAMS ((const unsigned char *));
530bfd_vma bfd_getl32 PARAMS ((const unsigned char *));
531bfd_signed_vma bfd_getb_signed_32 PARAMS ((const unsigned char *));
532bfd_signed_vma bfd_getl_signed_32 PARAMS ((const unsigned char *));
533bfd_vma bfd_getb16 PARAMS ((const unsigned char *));
534bfd_vma bfd_getl16 PARAMS ((const unsigned char *));
535bfd_signed_vma bfd_getb_signed_16 PARAMS ((const unsigned char *));
536bfd_signed_vma bfd_getl_signed_16 PARAMS ((const unsigned char *));
537void bfd_putb64 PARAMS ((bfd_vma, unsigned char *));
538void bfd_putl64 PARAMS ((bfd_vma, unsigned char *));
539void bfd_putb32 PARAMS ((bfd_vma, unsigned char *));
540void bfd_putl32 PARAMS ((bfd_vma, unsigned char *));
541void bfd_putb16 PARAMS ((bfd_vma, unsigned char *));
542void bfd_putl16 PARAMS ((bfd_vma, unsigned char *));
543\f
544/* Externally visible ECOFF routines. */
545
546#if defined(__STDC__) || defined(ALMOST_STDC)
547struct ecoff_debug_info;
548struct ecoff_debug_swap;
549struct ecoff_extr;
550struct symbol_cache_entry;
551struct bfd_link_info;
552struct bfd_link_hash_entry;
553struct bfd_elf_version_tree;
554#endif
555extern bfd_vma bfd_ecoff_get_gp_value PARAMS ((bfd * abfd));
556extern boolean bfd_ecoff_set_gp_value PARAMS ((bfd *abfd, bfd_vma gp_value));
557extern boolean bfd_ecoff_set_regmasks
558 PARAMS ((bfd *abfd, unsigned long gprmask, unsigned long fprmask,
559 unsigned long *cprmask));
560extern PTR bfd_ecoff_debug_init
561 PARAMS ((bfd *output_bfd, struct ecoff_debug_info *output_debug,
562 const struct ecoff_debug_swap *output_swap,
563 struct bfd_link_info *));
564extern void bfd_ecoff_debug_free
565 PARAMS ((PTR handle, bfd *output_bfd, struct ecoff_debug_info *output_debug,
566 const struct ecoff_debug_swap *output_swap,
567 struct bfd_link_info *));
568extern boolean bfd_ecoff_debug_accumulate
569 PARAMS ((PTR handle, bfd *output_bfd, struct ecoff_debug_info *output_debug,
570 const struct ecoff_debug_swap *output_swap,
571 bfd *input_bfd, struct ecoff_debug_info *input_debug,
572 const struct ecoff_debug_swap *input_swap,
573 struct bfd_link_info *));
574extern boolean bfd_ecoff_debug_accumulate_other
575 PARAMS ((PTR handle, bfd *output_bfd, struct ecoff_debug_info *output_debug,
576 const struct ecoff_debug_swap *output_swap, bfd *input_bfd,
577 struct bfd_link_info *));
578extern boolean bfd_ecoff_debug_externals
579 PARAMS ((bfd *abfd, struct ecoff_debug_info *debug,
580 const struct ecoff_debug_swap *swap,
581 boolean relocateable,
582 boolean (*get_extr) (struct symbol_cache_entry *,
583 struct ecoff_extr *),
584 void (*set_index) (struct symbol_cache_entry *,
585 bfd_size_type)));
586extern boolean bfd_ecoff_debug_one_external
587 PARAMS ((bfd *abfd, struct ecoff_debug_info *debug,
588 const struct ecoff_debug_swap *swap,
589 const char *name, struct ecoff_extr *esym));
590extern bfd_size_type bfd_ecoff_debug_size
591 PARAMS ((bfd *abfd, struct ecoff_debug_info *debug,
592 const struct ecoff_debug_swap *swap));
593extern boolean bfd_ecoff_write_debug
594 PARAMS ((bfd *abfd, struct ecoff_debug_info *debug,
595 const struct ecoff_debug_swap *swap, file_ptr where));
596extern boolean bfd_ecoff_write_accumulated_debug
597 PARAMS ((PTR handle, bfd *abfd, struct ecoff_debug_info *debug,
598 const struct ecoff_debug_swap *swap,
599 struct bfd_link_info *info, file_ptr where));
600extern boolean bfd_mips_ecoff_create_embedded_relocs
601 PARAMS ((bfd *, struct bfd_link_info *, struct sec *, struct sec *,
602 char **));
603
604/* Externally visible ELF routines. */
605
606struct bfd_link_needed_list
607{
608 struct bfd_link_needed_list *next;
609 bfd *by;
610 const char *name;
611};
612
613extern boolean bfd_elf32_record_link_assignment
614 PARAMS ((bfd *, struct bfd_link_info *, const char *, boolean));
615extern boolean bfd_elf64_record_link_assignment
616 PARAMS ((bfd *, struct bfd_link_info *, const char *, boolean));
617extern struct bfd_link_needed_list *bfd_elf_get_needed_list
618 PARAMS ((bfd *, struct bfd_link_info *));
619extern boolean bfd_elf_get_bfd_needed_list
620 PARAMS ((bfd *, struct bfd_link_needed_list **));
621extern boolean bfd_elf32_size_dynamic_sections
622 PARAMS ((bfd *, const char *, const char *, boolean, const char *,
623 const char * const *, struct bfd_link_info *, struct sec **,
624 struct bfd_elf_version_tree *));
625extern boolean bfd_elf64_size_dynamic_sections
626 PARAMS ((bfd *, const char *, const char *, boolean, const char *,
627 const char * const *, struct bfd_link_info *, struct sec **,
628 struct bfd_elf_version_tree *));
629extern void bfd_elf_set_dt_needed_name PARAMS ((bfd *, const char *));
74816898 630extern void bfd_elf_set_dt_needed_soname PARAMS ((bfd *, const char *));
252b5132 631extern const char *bfd_elf_get_dt_soname PARAMS ((bfd *));
a963dc6a
L
632extern struct bfd_link_needed_list *bfd_elf_get_runpath_list
633 PARAMS ((bfd *, struct bfd_link_info *));
252b5132 634
7f8d5fc9
ILT
635/* Return an upper bound on the number of bytes required to store a
636 copy of ABFD's program header table entries. Return -1 if an error
637 occurs; bfd_get_error will return an appropriate code. */
638extern long bfd_get_elf_phdr_upper_bound PARAMS ((bfd *abfd));
639
640/* Copy ABFD's program header table entries to *PHDRS. The entries
641 will be stored as an array of Elf_Internal_Phdr structures, as
642 defined in include/elf/internal.h. To find out how large the
643 buffer needs to be, call bfd_get_elf_phdr_upper_bound.
644
645 Return the number of program header table entries read, or -1 if an
646 error occurs; bfd_get_error will return an appropriate code. */
647extern int bfd_get_elf_phdrs PARAMS ((bfd *abfd, void *phdrs));
648
3425c182 649/* Return the arch_size field of an elf bfd, or -1 if not elf. */
125c4a69 650extern int bfd_get_arch_size PARAMS ((bfd *));
3425c182 651
6d9019e4 652/* Return true if address "naturally" sign extends, or -1 if not elf. */
125c4a69 653extern int bfd_get_sign_extend_vma PARAMS ((bfd *));
6d9019e4 654
252b5132
RH
655/* SunOS shared library support routines for the linker. */
656
657extern struct bfd_link_needed_list *bfd_sunos_get_needed_list
658 PARAMS ((bfd *, struct bfd_link_info *));
659extern boolean bfd_sunos_record_link_assignment
660 PARAMS ((bfd *, struct bfd_link_info *, const char *));
661extern boolean bfd_sunos_size_dynamic_sections
662 PARAMS ((bfd *, struct bfd_link_info *, struct sec **, struct sec **,
663 struct sec **));
664
665/* Linux shared library support routines for the linker. */
666
667extern boolean bfd_i386linux_size_dynamic_sections
668 PARAMS ((bfd *, struct bfd_link_info *));
669extern boolean bfd_m68klinux_size_dynamic_sections
670 PARAMS ((bfd *, struct bfd_link_info *));
671extern boolean bfd_sparclinux_size_dynamic_sections
672 PARAMS ((bfd *, struct bfd_link_info *));
673
674/* mmap hacks */
675
676struct _bfd_window_internal;
677typedef struct _bfd_window_internal bfd_window_internal;
678
679typedef struct _bfd_window {
680 /* What the user asked for. */
681 PTR data;
682 bfd_size_type size;
683 /* The actual window used by BFD. Small user-requested read-only
684 regions sharing a page may share a single window into the object
685 file. Read-write versions shouldn't until I've fixed things to
686 keep track of which portions have been claimed by the
687 application; don't want to give the same region back when the
688 application wants two writable copies! */
689 struct _bfd_window_internal *i;
690} bfd_window;
691
692extern void bfd_init_window PARAMS ((bfd_window *));
693extern void bfd_free_window PARAMS ((bfd_window *));
694extern boolean bfd_get_file_window
695 PARAMS ((bfd *, file_ptr, bfd_size_type, bfd_window *, boolean));
696
697/* XCOFF support routines for the linker. */
698
699extern boolean bfd_xcoff_link_record_set
700 PARAMS ((bfd *, struct bfd_link_info *, struct bfd_link_hash_entry *,
701 bfd_size_type));
702extern boolean bfd_xcoff_import_symbol
703 PARAMS ((bfd *, struct bfd_link_info *, struct bfd_link_hash_entry *,
704 bfd_vma, const char *, const char *, const char *));
705extern boolean bfd_xcoff_export_symbol
706 PARAMS ((bfd *, struct bfd_link_info *, struct bfd_link_hash_entry *,
707 boolean));
708extern boolean bfd_xcoff_link_count_reloc
709 PARAMS ((bfd *, struct bfd_link_info *, const char *));
710extern boolean bfd_xcoff_record_link_assignment
711 PARAMS ((bfd *, struct bfd_link_info *, const char *));
712extern boolean bfd_xcoff_size_dynamic_sections
713 PARAMS ((bfd *, struct bfd_link_info *, const char *, const char *,
714 unsigned long, unsigned long, unsigned long, boolean,
715 int, boolean, boolean, struct sec **));
716
717/* Externally visible COFF routines. */
718
719#if defined(__STDC__) || defined(ALMOST_STDC)
720struct internal_syment;
721union internal_auxent;
722#endif
723
724extern boolean bfd_coff_get_syment
725 PARAMS ((bfd *, struct symbol_cache_entry *, struct internal_syment *));
726
727extern boolean bfd_coff_get_auxent
728 PARAMS ((bfd *, struct symbol_cache_entry *, int, union internal_auxent *));
729
730extern boolean bfd_coff_set_symbol_class
731 PARAMS ((bfd *, struct symbol_cache_entry *, unsigned int));
732
3eb6f68f
NC
733extern boolean bfd_m68k_coff_create_embedded_relocs
734 PARAMS ((bfd *, struct bfd_link_info *, struct sec *, struct sec *,
735 char **));
736
252b5132
RH
737/* ARM Interworking support. Called from linker. */
738extern boolean bfd_arm_allocate_interworking_sections
739 PARAMS ((struct bfd_link_info *));
740
741extern boolean bfd_arm_process_before_allocation
742 PARAMS ((bfd *, struct bfd_link_info *, int));
743
744extern boolean bfd_arm_get_bfd_for_interworking
745 PARAMS ((bfd *, struct bfd_link_info *));
746
86033394
NC
747/* PE ARM Interworking support. Called from linker. */
748extern boolean bfd_arm_pe_allocate_interworking_sections
749 PARAMS ((struct bfd_link_info *));
750
751extern boolean bfd_arm_pe_process_before_allocation
752 PARAMS ((bfd *, struct bfd_link_info *, int));
753
754extern boolean bfd_arm_pe_get_bfd_for_interworking
755 PARAMS ((bfd *, struct bfd_link_info *));
756
252b5132 757/* ELF ARM Interworking support. Called from linker. */
67e5d3d6
ILT
758extern boolean bfd_elf32_arm_allocate_interworking_sections
759 PARAMS ((struct bfd_link_info *));
760
761extern boolean bfd_elf32_arm_process_before_allocation
762 PARAMS ((bfd *, struct bfd_link_info *, int));
763
764extern boolean bfd_elf32_arm_get_bfd_for_interworking
765 PARAMS ((bfd *, struct bfd_link_info *));
252b5132 766
b9af77f5
TW
767/* TI COFF load page support. */
768extern void bfd_ticoff_set_section_load_page
769 PARAMS ((struct sec *, int));
770
771extern int bfd_ticoff_get_section_load_page
772 PARAMS ((struct sec *));
773
252b5132
RH
774/* And more from the source. */
775void
776bfd_init PARAMS ((void));
777
778bfd *
779bfd_openr PARAMS ((CONST char *filename, CONST char *target));
780
781bfd *
782bfd_fdopenr PARAMS ((CONST char *filename, CONST char *target, int fd));
783
784bfd *
785bfd_openstreamr PARAMS ((const char *, const char *, PTR));
786
787bfd *
788bfd_openw PARAMS ((CONST char *filename, CONST char *target));
789
790boolean
791bfd_close PARAMS ((bfd *abfd));
792
793boolean
794bfd_close_all_done PARAMS ((bfd *));
795
796bfd *
797bfd_create PARAMS ((CONST char *filename, bfd *templ));
798
799boolean
800bfd_make_writable PARAMS ((bfd *abfd));
801
802boolean
803bfd_make_readable PARAMS ((bfd *abfd));
804
805
52b219b5 806/* Byte swapping macros for user section data. */
252b5132
RH
807
808#define bfd_put_8(abfd, val, ptr) \
9ebbd33e 809 ((void) (*((unsigned char *)(ptr)) = (unsigned char)(val)))
252b5132
RH
810#define bfd_put_signed_8 \
811 bfd_put_8
812#define bfd_get_8(abfd, ptr) \
813 (*(unsigned char *)(ptr))
814#define bfd_get_signed_8(abfd, ptr) \
815 ((*(unsigned char *)(ptr) ^ 0x80) - 0x80)
816
817#define bfd_put_16(abfd, val, ptr) \
818 BFD_SEND(abfd, bfd_putx16, ((val),(ptr)))
819#define bfd_put_signed_16 \
820 bfd_put_16
821#define bfd_get_16(abfd, ptr) \
822 BFD_SEND(abfd, bfd_getx16, (ptr))
823#define bfd_get_signed_16(abfd, ptr) \
824 BFD_SEND (abfd, bfd_getx_signed_16, (ptr))
825
826#define bfd_put_32(abfd, val, ptr) \
827 BFD_SEND(abfd, bfd_putx32, ((val),(ptr)))
828#define bfd_put_signed_32 \
829 bfd_put_32
830#define bfd_get_32(abfd, ptr) \
831 BFD_SEND(abfd, bfd_getx32, (ptr))
832#define bfd_get_signed_32(abfd, ptr) \
833 BFD_SEND(abfd, bfd_getx_signed_32, (ptr))
834
835#define bfd_put_64(abfd, val, ptr) \
836 BFD_SEND(abfd, bfd_putx64, ((val), (ptr)))
837#define bfd_put_signed_64 \
838 bfd_put_64
839#define bfd_get_64(abfd, ptr) \
840 BFD_SEND(abfd, bfd_getx64, (ptr))
841#define bfd_get_signed_64(abfd, ptr) \
842 BFD_SEND(abfd, bfd_getx_signed_64, (ptr))
843
c7ac6ff8
MM
844#define bfd_get(bits, abfd, ptr) \
845 ((bits) == 8 ? bfd_get_8 (abfd, ptr) \
846 : (bits) == 16 ? bfd_get_16 (abfd, ptr) \
847 : (bits) == 32 ? bfd_get_32 (abfd, ptr) \
848 : (bits) == 64 ? bfd_get_64 (abfd, ptr) \
849 : (abort (), (bfd_vma) - 1))
850
851#define bfd_put(bits, abfd, val, ptr) \
852 ((bits) == 8 ? bfd_put_8 (abfd, val, ptr) \
853 : (bits) == 16 ? bfd_put_16 (abfd, val, ptr) \
854 : (bits) == 32 ? bfd_put_32 (abfd, val, ptr) \
855 : (bits) == 64 ? bfd_put_64 (abfd, val, ptr) \
856 : (abort (), (void) 0))
857
252b5132 858
52b219b5 859/* Byte swapping macros for file header data. */
252b5132
RH
860
861#define bfd_h_put_8(abfd, val, ptr) \
862 bfd_put_8 (abfd, val, ptr)
863#define bfd_h_put_signed_8(abfd, val, ptr) \
864 bfd_put_8 (abfd, val, ptr)
865#define bfd_h_get_8(abfd, ptr) \
866 bfd_get_8 (abfd, ptr)
867#define bfd_h_get_signed_8(abfd, ptr) \
868 bfd_get_signed_8 (abfd, ptr)
869
870#define bfd_h_put_16(abfd, val, ptr) \
871 BFD_SEND(abfd, bfd_h_putx16,(val,ptr))
872#define bfd_h_put_signed_16 \
873 bfd_h_put_16
874#define bfd_h_get_16(abfd, ptr) \
875 BFD_SEND(abfd, bfd_h_getx16,(ptr))
876#define bfd_h_get_signed_16(abfd, ptr) \
877 BFD_SEND(abfd, bfd_h_getx_signed_16, (ptr))
878
879#define bfd_h_put_32(abfd, val, ptr) \
880 BFD_SEND(abfd, bfd_h_putx32,(val,ptr))
881#define bfd_h_put_signed_32 \
882 bfd_h_put_32
883#define bfd_h_get_32(abfd, ptr) \
884 BFD_SEND(abfd, bfd_h_getx32,(ptr))
885#define bfd_h_get_signed_32(abfd, ptr) \
886 BFD_SEND(abfd, bfd_h_getx_signed_32, (ptr))
887
888#define bfd_h_put_64(abfd, val, ptr) \
889 BFD_SEND(abfd, bfd_h_putx64,(val, ptr))
890#define bfd_h_put_signed_64 \
891 bfd_h_put_64
892#define bfd_h_get_64(abfd, ptr) \
893 BFD_SEND(abfd, bfd_h_getx64,(ptr))
894#define bfd_h_get_signed_64(abfd, ptr) \
895 BFD_SEND(abfd, bfd_h_getx_signed_64, (ptr))
896
52b219b5
AM
897/* This structure is used for a comdat section, as in PE. A comdat
898 section is associated with a particular symbol. When the linker
899 sees a comdat section, it keeps only one of the sections with a
900 given name and associated with a given symbol. */
022a5af4
ILT
901
902struct bfd_comdat_info
903{
52b219b5 904 /* The name of the symbol associated with a comdat section. */
022a5af4
ILT
905 const char *name;
906
52b219b5 907 /* The local symbol table index of the symbol associated with a
022a5af4
ILT
908 comdat section. This is only meaningful to the object file format
909 specific code; it is not an index into the list returned by
910 bfd_canonicalize_symtab. */
911 long symbol;
912
52b219b5 913 /* If this section is being discarded, the linker uses this field
022a5af4
ILT
914 to point to the input section which is being kept. */
915 struct sec *sec;
916};
917
252b5132
RH
918typedef struct sec
919{
52b219b5
AM
920 /* The name of the section; the name isn't a copy, the pointer is
921 the same as that passed to bfd_make_section. */
252b5132 922
52b219b5
AM
923 const char *name;
924
925 /* A unique sequence number. */
252b5132 926
52b219b5 927 int id;
252b5132 928
52b219b5 929 /* Which section is it; 0..nth. */
252b5132 930
52b219b5 931 int index;
252b5132 932
52b219b5 933 /* The next section in the list belonging to the BFD, or NULL. */
252b5132 934
52b219b5 935 struct sec *next;
252b5132 936
52b219b5
AM
937 /* The field flags contains attributes of the section. Some
938 flags are read in from the object file, and some are
939 synthesized from other information. */
940
941 flagword flags;
252b5132
RH
942
943#define SEC_NO_FLAGS 0x000
944
52b219b5
AM
945 /* Tells the OS to allocate space for this section when loading.
946 This is clear for a section containing debug information only. */
252b5132
RH
947#define SEC_ALLOC 0x001
948
52b219b5
AM
949 /* Tells the OS to load the section from the file when loading.
950 This is clear for a .bss section. */
252b5132
RH
951#define SEC_LOAD 0x002
952
52b219b5
AM
953 /* The section contains data still to be relocated, so there is
954 some relocation information too. */
252b5132
RH
955#define SEC_RELOC 0x004
956
52b219b5 957#if 0 /* Obsolete ? */
252b5132
RH
958#define SEC_BALIGN 0x008
959#endif
960
52b219b5 961 /* A signal to the OS that the section contains read only data. */
252b5132
RH
962#define SEC_READONLY 0x010
963
52b219b5 964 /* The section contains code only. */
252b5132
RH
965#define SEC_CODE 0x020
966
52b219b5 967 /* The section contains data only. */
252b5132
RH
968#define SEC_DATA 0x040
969
52b219b5 970 /* The section will reside in ROM. */
252b5132
RH
971#define SEC_ROM 0x080
972
52b219b5
AM
973 /* The section contains constructor information. This section
974 type is used by the linker to create lists of constructors and
975 destructors used by <<g++>>. When a back end sees a symbol
976 which should be used in a constructor list, it creates a new
977 section for the type of name (e.g., <<__CTOR_LIST__>>), attaches
978 the symbol to it, and builds a relocation. To build the lists
979 of constructors, all the linker has to do is catenate all the
980 sections called <<__CTOR_LIST__>> and relocate the data
981 contained within - exactly the operations it would peform on
982 standard data. */
252b5132
RH
983#define SEC_CONSTRUCTOR 0x100
984
52b219b5
AM
985 /* The section is a constructor, and should be placed at the
986 end of the text, data, or bss section(?). */
252b5132
RH
987#define SEC_CONSTRUCTOR_TEXT 0x1100
988#define SEC_CONSTRUCTOR_DATA 0x2100
989#define SEC_CONSTRUCTOR_BSS 0x3100
990
52b219b5
AM
991 /* The section has contents - a data section could be
992 <<SEC_ALLOC>> | <<SEC_HAS_CONTENTS>>; a debug section could be
993 <<SEC_HAS_CONTENTS>> */
252b5132
RH
994#define SEC_HAS_CONTENTS 0x200
995
52b219b5
AM
996 /* An instruction to the linker to not output the section
997 even if it has information which would normally be written. */
252b5132
RH
998#define SEC_NEVER_LOAD 0x400
999
52b219b5
AM
1000 /* The section is a COFF shared library section. This flag is
1001 only for the linker. If this type of section appears in
1002 the input file, the linker must copy it to the output file
1003 without changing the vma or size. FIXME: Although this
1004 was originally intended to be general, it really is COFF
1005 specific (and the flag was renamed to indicate this). It
1006 might be cleaner to have some more general mechanism to
1007 allow the back end to control what the linker does with
1008 sections. */
252b5132
RH
1009#define SEC_COFF_SHARED_LIBRARY 0x800
1010
1bd91689
AM
1011 /* The section has GOT references. This flag is only for the
1012 linker, and is currently only used by the elf32-hppa back end.
1013 It will be set if global offset table references were detected
1014 in this section, which indicate to the linker that the section
1015 contains PIC code, and must be handled specially when doing a
1016 static link. */
1017#define SEC_HAS_GOT_REF 0x4000
1018
52b219b5
AM
1019 /* The section contains common symbols (symbols may be defined
1020 multiple times, the value of a symbol is the amount of
1021 space it requires, and the largest symbol value is the one
1022 used). Most targets have exactly one of these (which we
1023 translate to bfd_com_section_ptr), but ECOFF has two. */
252b5132
RH
1024#define SEC_IS_COMMON 0x8000
1025
52b219b5
AM
1026 /* The section contains only debugging information. For
1027 example, this is set for ELF .debug and .stab sections.
1028 strip tests this flag to see if a section can be
1029 discarded. */
252b5132
RH
1030#define SEC_DEBUGGING 0x10000
1031
52b219b5
AM
1032 /* The contents of this section are held in memory pointed to
1033 by the contents field. This is checked by bfd_get_section_contents,
1034 and the data is retrieved from memory if appropriate. */
252b5132
RH
1035#define SEC_IN_MEMORY 0x20000
1036
52b219b5
AM
1037 /* The contents of this section are to be excluded by the
1038 linker for executable and shared objects unless those
1039 objects are to be further relocated. */
252b5132
RH
1040#define SEC_EXCLUDE 0x40000
1041
52b219b5
AM
1042 /* The contents of this section are to be sorted by the
1043 based on the address specified in the associated symbol
1044 table. */
252b5132
RH
1045#define SEC_SORT_ENTRIES 0x80000
1046
52b219b5
AM
1047 /* When linking, duplicate sections of the same name should be
1048 discarded, rather than being combined into a single section as
1049 is usually done. This is similar to how common symbols are
1050 handled. See SEC_LINK_DUPLICATES below. */
252b5132
RH
1051#define SEC_LINK_ONCE 0x100000
1052
52b219b5
AM
1053 /* If SEC_LINK_ONCE is set, this bitfield describes how the linker
1054 should handle duplicate sections. */
252b5132
RH
1055#define SEC_LINK_DUPLICATES 0x600000
1056
52b219b5
AM
1057 /* This value for SEC_LINK_DUPLICATES means that duplicate
1058 sections with the same name should simply be discarded. */
252b5132
RH
1059#define SEC_LINK_DUPLICATES_DISCARD 0x0
1060
52b219b5
AM
1061 /* This value for SEC_LINK_DUPLICATES means that the linker
1062 should warn if there are any duplicate sections, although
1063 it should still only link one copy. */
252b5132
RH
1064#define SEC_LINK_DUPLICATES_ONE_ONLY 0x200000
1065
52b219b5
AM
1066 /* This value for SEC_LINK_DUPLICATES means that the linker
1067 should warn if any duplicate sections are a different size. */
252b5132
RH
1068#define SEC_LINK_DUPLICATES_SAME_SIZE 0x400000
1069
52b219b5
AM
1070 /* This value for SEC_LINK_DUPLICATES means that the linker
1071 should warn if any duplicate sections contain different
1072 contents. */
252b5132
RH
1073#define SEC_LINK_DUPLICATES_SAME_CONTENTS 0x600000
1074
52b219b5
AM
1075 /* This section was created by the linker as part of dynamic
1076 relocation or other arcane processing. It is skipped when
1077 going through the first-pass output, trusting that someone
1078 else up the line will take care of it later. */
252b5132
RH
1079#define SEC_LINKER_CREATED 0x800000
1080
52b219b5 1081 /* This section should not be subject to garbage collection. */
252b5132
RH
1082#define SEC_KEEP 0x1000000
1083
52b219b5
AM
1084 /* This section contains "short" data, and should be placed
1085 "near" the GP. */
851edbaf 1086#define SEC_SMALL_DATA 0x2000000
0c3ff40b 1087
52b219b5
AM
1088 /* This section contains data which may be shared with other
1089 executables or shared objects. */
bd826630
ILT
1090#define SEC_SHARED 0x4000000
1091
52b219b5
AM
1092 /* When a section with this flag is being linked, then if the size of
1093 the input section is less than a page, it should not cross a page
1094 boundary. If the size of the input section is one page or more, it
1095 should be aligned on a page boundary. */
34cbe64e
TW
1096#define SEC_BLOCK 0x8000000
1097
52b219b5
AM
1098 /* Conditionally link this section; do not link if there are no
1099 references found to any symbol in the section. */
34cbe64e
TW
1100#define SEC_CLINK 0x10000000
1101
52b219b5 1102 /* End of section flags. */
252b5132 1103
52b219b5 1104 /* Some internal packed boolean fields. */
252b5132 1105
52b219b5
AM
1106 /* See the vma field. */
1107 unsigned int user_set_vma : 1;
252b5132 1108
52b219b5
AM
1109 /* Whether relocations have been processed. */
1110 unsigned int reloc_done : 1;
252b5132 1111
52b219b5
AM
1112 /* A mark flag used by some of the linker backends. */
1113 unsigned int linker_mark : 1;
252b5132 1114
52b219b5
AM
1115 /* A mark flag used by some linker backends for garbage collection. */
1116 unsigned int gc_mark : 1;
252b5132 1117
bc67d8a6
NC
1118 /* Used by the ELF code to mark sections which have been allocated to segments. */
1119 unsigned int segment_mark : 1;
1120
52b219b5 1121 /* End of internal packed boolean fields. */
252b5132 1122
52b219b5
AM
1123 /* The virtual memory address of the section - where it will be
1124 at run time. The symbols are relocated against this. The
1125 user_set_vma flag is maintained by bfd; if it's not set, the
1126 backend can assign addresses (for example, in <<a.out>>, where
1127 the default address for <<.data>> is dependent on the specific
1128 target and various flags). */
252b5132 1129
52b219b5 1130 bfd_vma vma;
252b5132 1131
52b219b5
AM
1132 /* The load address of the section - where it would be in a
1133 rom image; really only used for writing section header
1134 information. */
252b5132 1135
52b219b5 1136 bfd_vma lma;
252b5132 1137
52b219b5
AM
1138 /* The size of the section in octets, as it will be output.
1139 Contains a value even if the section has no contents (e.g., the
1140 size of <<.bss>>). This will be filled in after relocation. */
252b5132 1141
52b219b5 1142 bfd_size_type _cooked_size;
252b5132 1143
52b219b5
AM
1144 /* The original size on disk of the section, in octets. Normally this
1145 value is the same as the size, but if some relaxing has
1146 been done, then this value will be bigger. */
252b5132 1147
52b219b5 1148 bfd_size_type _raw_size;
252b5132 1149
52b219b5
AM
1150 /* If this section is going to be output, then this value is the
1151 offset in *bytes* into the output section of the first byte in the
1152 input section (byte ==> smallest addressable unit on the
1153 target). In most cases, if this was going to start at the
1154 100th octet (8-bit quantity) in the output section, this value
1155 would be 100. However, if the target byte size is 16 bits
1156 (bfd_octets_per_byte is "2"), this value would be 50. */
252b5132 1157
52b219b5 1158 bfd_vma output_offset;
252b5132 1159
52b219b5 1160 /* The output section through which to map on output. */
252b5132 1161
52b219b5 1162 struct sec *output_section;
252b5132 1163
52b219b5
AM
1164 /* The alignment requirement of the section, as an exponent of 2 -
1165 e.g., 3 aligns to 2^3 (or 8). */
252b5132 1166
52b219b5 1167 unsigned int alignment_power;
252b5132 1168
52b219b5
AM
1169 /* If an input section, a pointer to a vector of relocation
1170 records for the data in this section. */
252b5132 1171
52b219b5 1172 struct reloc_cache_entry *relocation;
252b5132 1173
52b219b5
AM
1174 /* If an output section, a pointer to a vector of pointers to
1175 relocation records for the data in this section. */
252b5132 1176
52b219b5 1177 struct reloc_cache_entry **orelocation;
252b5132 1178
52b219b5 1179 /* The number of relocation records in one of the above */
252b5132 1180
52b219b5 1181 unsigned reloc_count;
252b5132 1182
52b219b5
AM
1183 /* Information below is back end specific - and not always used
1184 or updated. */
252b5132 1185
52b219b5 1186 /* File position of section data. */
252b5132 1187
52b219b5 1188 file_ptr filepos;
252b5132 1189
52b219b5 1190 /* File position of relocation info. */
252b5132 1191
52b219b5 1192 file_ptr rel_filepos;
252b5132 1193
52b219b5 1194 /* File position of line data. */
252b5132 1195
52b219b5 1196 file_ptr line_filepos;
252b5132 1197
52b219b5 1198 /* Pointer to data for applications. */
252b5132 1199
52b219b5 1200 PTR userdata;
252b5132 1201
52b219b5
AM
1202 /* If the SEC_IN_MEMORY flag is set, this points to the actual
1203 contents. */
1204 unsigned char *contents;
252b5132 1205
52b219b5 1206 /* Attached line number information. */
252b5132 1207
52b219b5 1208 alent *lineno;
252b5132 1209
52b219b5 1210 /* Number of line number records. */
252b5132 1211
52b219b5 1212 unsigned int lineno_count;
252b5132 1213
52b219b5 1214 /* Optional information about a COMDAT entry; NULL if not COMDAT. */
022a5af4 1215
52b219b5 1216 struct bfd_comdat_info *comdat;
022a5af4 1217
52b219b5
AM
1218 /* When a section is being output, this value changes as more
1219 linenumbers are written out. */
252b5132 1220
52b219b5 1221 file_ptr moving_line_filepos;
252b5132 1222
52b219b5 1223 /* What the section number is in the target world. */
252b5132 1224
52b219b5 1225 int target_index;
252b5132 1226
52b219b5 1227 PTR used_by_bfd;
252b5132 1228
52b219b5
AM
1229 /* If this is a constructor section then here is a list of the
1230 relocations created to relocate items within it. */
252b5132 1231
52b219b5 1232 struct relent_chain *constructor_chain;
252b5132 1233
52b219b5 1234 /* The BFD which owns the section. */
252b5132 1235
52b219b5 1236 bfd *owner;
252b5132 1237
52b219b5
AM
1238 /* A symbol which points at this section only */
1239 struct symbol_cache_entry *symbol;
1240 struct symbol_cache_entry **symbol_ptr_ptr;
252b5132 1241
52b219b5
AM
1242 struct bfd_link_order *link_order_head;
1243 struct bfd_link_order *link_order_tail;
252b5132
RH
1244} asection ;
1245
52b219b5
AM
1246/* These sections are global, and are managed by BFD. The application
1247 and target back end are not permitted to change the values in
1248 these sections. New code should use the section_ptr macros rather
1249 than referring directly to the const sections. The const sections
1250 may eventually vanish. */
252b5132
RH
1251#define BFD_ABS_SECTION_NAME "*ABS*"
1252#define BFD_UND_SECTION_NAME "*UND*"
1253#define BFD_COM_SECTION_NAME "*COM*"
1254#define BFD_IND_SECTION_NAME "*IND*"
1255
52b219b5 1256/* the absolute section */
252b5132
RH
1257extern const asection bfd_abs_section;
1258#define bfd_abs_section_ptr ((asection *) &bfd_abs_section)
1259#define bfd_is_abs_section(sec) ((sec) == bfd_abs_section_ptr)
52b219b5 1260/* Pointer to the undefined section */
252b5132
RH
1261extern const asection bfd_und_section;
1262#define bfd_und_section_ptr ((asection *) &bfd_und_section)
1263#define bfd_is_und_section(sec) ((sec) == bfd_und_section_ptr)
52b219b5 1264/* Pointer to the common section */
252b5132
RH
1265extern const asection bfd_com_section;
1266#define bfd_com_section_ptr ((asection *) &bfd_com_section)
52b219b5 1267/* Pointer to the indirect section */
252b5132
RH
1268extern const asection bfd_ind_section;
1269#define bfd_ind_section_ptr ((asection *) &bfd_ind_section)
1270#define bfd_is_ind_section(sec) ((sec) == bfd_ind_section_ptr)
1271
1272extern const struct symbol_cache_entry * const bfd_abs_symbol;
1273extern const struct symbol_cache_entry * const bfd_com_symbol;
1274extern const struct symbol_cache_entry * const bfd_und_symbol;
1275extern const struct symbol_cache_entry * const bfd_ind_symbol;
1276#define bfd_get_section_size_before_reloc(section) \
f6af82bd
AM
1277 ((section)->reloc_done ? (abort (), (bfd_size_type) 1) \
1278 : (section)->_raw_size)
252b5132 1279#define bfd_get_section_size_after_reloc(section) \
f6af82bd
AM
1280 ((section)->reloc_done ? (section)->_cooked_size \
1281 : (abort (), (bfd_size_type) 1))
252b5132 1282asection *
52b219b5 1283bfd_get_section_by_name PARAMS ((bfd *abfd, const char *name));
252b5132 1284
1bd91689
AM
1285char *
1286bfd_get_unique_section_name PARAMS ((bfd *abfd,
1287 const char *template,
1288 int *count));
1289
252b5132 1290asection *
52b219b5 1291bfd_make_section_old_way PARAMS ((bfd *abfd, const char *name));
252b5132
RH
1292
1293asection *
52b219b5 1294bfd_make_section_anyway PARAMS ((bfd *abfd, const char *name));
252b5132
RH
1295
1296asection *
52b219b5 1297bfd_make_section PARAMS ((bfd *, const char *name));
252b5132
RH
1298
1299boolean
1300bfd_set_section_flags PARAMS ((bfd *abfd, asection *sec, flagword flags));
1301
1302void
1303bfd_map_over_sections PARAMS ((bfd *abfd,
1304 void (*func)(bfd *abfd,
1305 asection *sect,
1306 PTR obj),
1307 PTR obj));
1308
1309boolean
1310bfd_set_section_size PARAMS ((bfd *abfd, asection *sec, bfd_size_type val));
1311
1312boolean
1313bfd_set_section_contents
1314 PARAMS ((bfd *abfd,
1315 asection *section,
1316 PTR data,
1317 file_ptr offset,
1318 bfd_size_type count));
1319
1320boolean
1321bfd_get_section_contents
1322 PARAMS ((bfd *abfd, asection *section, PTR location,
1323 file_ptr offset, bfd_size_type count));
1324
1325boolean
1326bfd_copy_private_section_data PARAMS ((bfd *ibfd, asection *isec, bfd *obfd, asection *osec));
1327
1328#define bfd_copy_private_section_data(ibfd, isection, obfd, osection) \
1329 BFD_SEND (obfd, _bfd_copy_private_section_data, \
1330 (ibfd, isection, obfd, osection))
1331void
1332_bfd_strip_section_from_output
7f8d5fc9 1333 PARAMS ((struct bfd_link_info *info, asection *section));
252b5132
RH
1334
1335enum bfd_architecture
1336{
52b219b5
AM
1337 bfd_arch_unknown, /* File arch not known */
1338 bfd_arch_obscure, /* Arch known, not one of these */
1339 bfd_arch_m68k, /* Motorola 68xxx */
252b5132
RH
1340#define bfd_mach_m68000 1
1341#define bfd_mach_m68008 2
1342#define bfd_mach_m68010 3
1343#define bfd_mach_m68020 4
1344#define bfd_mach_m68030 5
1345#define bfd_mach_m68040 6
1346#define bfd_mach_m68060 7
1347#define bfd_mach_cpu32 8
52b219b5
AM
1348 bfd_arch_vax, /* DEC Vax */
1349 bfd_arch_i960, /* Intel 960 */
1350 /* The order of the following is important.
252b5132
RH
1351 lower number indicates a machine type that
1352 only accepts a subset of the instructions
1353 available to machines with higher numbers.
1354 The exception is the "ca", which is
1355 incompatible with all other machines except
1356 "core". */
1357
1358#define bfd_mach_i960_core 1
1359#define bfd_mach_i960_ka_sa 2
1360#define bfd_mach_i960_kb_sb 3
1361#define bfd_mach_i960_mc 4
1362#define bfd_mach_i960_xa 5
1363#define bfd_mach_i960_ca 6
1364#define bfd_mach_i960_jx 7
1365#define bfd_mach_i960_hx 8
1366
52b219b5
AM
1367 bfd_arch_a29k, /* AMD 29000 */
1368 bfd_arch_sparc, /* SPARC */
252b5132 1369#define bfd_mach_sparc 1
52b219b5 1370/* The difference between v8plus and v9 is that v9 is a true 64 bit env. */
252b5132
RH
1371#define bfd_mach_sparc_sparclet 2
1372#define bfd_mach_sparc_sparclite 3
1373#define bfd_mach_sparc_v8plus 4
52b219b5 1374#define bfd_mach_sparc_v8plusa 5 /* with ultrasparc add'ns */
252b5132
RH
1375#define bfd_mach_sparc_sparclite_le 6
1376#define bfd_mach_sparc_v9 7
52b219b5
AM
1377#define bfd_mach_sparc_v9a 8 /* with ultrasparc add'ns */
1378/* Nonzero if MACH has the v9 instruction set. */
252b5132
RH
1379#define bfd_mach_sparc_v9_p(mach) \
1380 ((mach) >= bfd_mach_sparc_v8plus && (mach) <= bfd_mach_sparc_v9a)
52b219b5 1381 bfd_arch_mips, /* MIPS Rxxxx */
252b5132
RH
1382#define bfd_mach_mips3000 3000
1383#define bfd_mach_mips3900 3900
1384#define bfd_mach_mips4000 4000
1385#define bfd_mach_mips4010 4010
1386#define bfd_mach_mips4100 4100
1387#define bfd_mach_mips4111 4111
1388#define bfd_mach_mips4300 4300
1389#define bfd_mach_mips4400 4400
1390#define bfd_mach_mips4600 4600
1391#define bfd_mach_mips4650 4650
1392#define bfd_mach_mips5000 5000
1393#define bfd_mach_mips6000 6000
1394#define bfd_mach_mips8000 8000
1395#define bfd_mach_mips10000 10000
1396#define bfd_mach_mips16 16
52b219b5 1397 bfd_arch_i386, /* Intel 386 */
252b5132
RH
1398#define bfd_mach_i386_i386 0
1399#define bfd_mach_i386_i8086 1
1400#define bfd_mach_i386_i386_intel_syntax 2
52b219b5
AM
1401 bfd_arch_we32k, /* AT&T WE32xxx */
1402 bfd_arch_tahoe, /* CCI/Harris Tahoe */
1403 bfd_arch_i860, /* Intel 860 */
1404 bfd_arch_i370, /* IBM 360/370 Mainframes */
1405 bfd_arch_romp, /* IBM ROMP PC/RT */
1406 bfd_arch_alliant, /* Alliant */
1407 bfd_arch_convex, /* Convex */
1408 bfd_arch_m88k, /* Motorola 88xxx */
1409 bfd_arch_pyramid, /* Pyramid Technology */
1410 bfd_arch_h8300, /* Hitachi H8/300 */
252b5132
RH
1411#define bfd_mach_h8300 1
1412#define bfd_mach_h8300h 2
1413#define bfd_mach_h8300s 3
52b219b5 1414 bfd_arch_powerpc, /* PowerPC */
87f33987
ND
1415#define bfd_mach_ppc 0
1416#define bfd_mach_ppc_403 403
1417#define bfd_mach_ppc_403gc 4030
1418#define bfd_mach_ppc_505 505
1419#define bfd_mach_ppc_601 601
1420#define bfd_mach_ppc_602 602
1421#define bfd_mach_ppc_603 603
1422#define bfd_mach_ppc_ec603e 6031
1423#define bfd_mach_ppc_604 604
1424#define bfd_mach_ppc_620 620
1425#define bfd_mach_ppc_630 630
1426#define bfd_mach_ppc_750 750
1427#define bfd_mach_ppc_860 860
1428#define bfd_mach_ppc_a35 35
1429#define bfd_mach_ppc_rs64ii 642
1430#define bfd_mach_ppc_rs64iii 643
1431#define bfd_mach_ppc_7400 7400
52b219b5 1432 bfd_arch_rs6000, /* IBM RS/6000 */
87f33987
ND
1433#define bfd_mach_rs6k 0
1434#define bfd_mach_rs6k_rs1 6001
1435#define bfd_mach_rs6k_rsc 6003
1436#define bfd_mach_rs6k_rs2 6002
52b219b5
AM
1437 bfd_arch_hppa, /* HP PA RISC */
1438 bfd_arch_d10v, /* Mitsubishi D10V */
7af8cca9
MM
1439#define bfd_mach_d10v 0
1440#define bfd_mach_d10v_ts2 2
1441#define bfd_mach_d10v_ts3 3
52b219b5
AM
1442 bfd_arch_d30v, /* Mitsubishi D30V */
1443 bfd_arch_m68hc11, /* Motorola 68HC11 */
1444 bfd_arch_m68hc12, /* Motorola 68HC12 */
1445 bfd_arch_z8k, /* Zilog Z8000 */
252b5132
RH
1446#define bfd_mach_z8001 1
1447#define bfd_mach_z8002 2
52b219b5
AM
1448 bfd_arch_h8500, /* Hitachi H8/500 */
1449 bfd_arch_sh, /* Hitachi SH */
252b5132 1450#define bfd_mach_sh 0
d4845d57
JR
1451#define bfd_mach_sh2 0x20
1452#define bfd_mach_sh_dsp 0x2d
252b5132 1453#define bfd_mach_sh3 0x30
d4845d57 1454#define bfd_mach_sh3_dsp 0x3d
252b5132 1455#define bfd_mach_sh3e 0x3e
d4845d57 1456#define bfd_mach_sh4 0x40
52b219b5 1457 bfd_arch_alpha, /* Dec Alpha */
252b5132
RH
1458#define bfd_mach_alpha_ev4 0x10
1459#define bfd_mach_alpha_ev5 0x20
1460#define bfd_mach_alpha_ev6 0x30
52b219b5 1461 bfd_arch_arm, /* Advanced Risc Machines ARM */
252b5132 1462#define bfd_mach_arm_2 1
478d07d6 1463#define bfd_mach_arm_2a 2
252b5132
RH
1464#define bfd_mach_arm_3 3
1465#define bfd_mach_arm_3M 4
478d07d6 1466#define bfd_mach_arm_4 5
252b5132 1467#define bfd_mach_arm_4T 6
478d07d6
NC
1468#define bfd_mach_arm_5 7
1469#define bfd_mach_arm_5T 8
52b219b5
AM
1470 bfd_arch_ns32k, /* National Semiconductors ns32000 */
1471 bfd_arch_w65, /* WDC 65816 */
1472 bfd_arch_tic30, /* Texas Instruments TMS320C30 */
1473 bfd_arch_tic54x, /* Texas Instruments TMS320C54X */
1474 bfd_arch_tic80, /* TI TMS320c80 (MVP) */
1475 bfd_arch_v850, /* NEC V850 */
252b5132
RH
1476#define bfd_mach_v850 0
1477#define bfd_mach_v850e 'E'
1478#define bfd_mach_v850ea 'A'
52b219b5 1479 bfd_arch_arc, /* Argonaut RISC Core */
252b5132 1480#define bfd_mach_arc_base 0
52b219b5
AM
1481 bfd_arch_m32r, /* Mitsubishi M32R/D */
1482#define bfd_mach_m32r 0 /* backwards compatibility */
a23ef39f 1483#define bfd_mach_m32rx 'x'
52b219b5
AM
1484 bfd_arch_mn10200, /* Matsushita MN10200 */
1485 bfd_arch_mn10300, /* Matsushita MN10300 */
252b5132 1486#define bfd_mach_mn10300 300
7f8d5fc9 1487#define bfd_mach_am33 330
252b5132
RH
1488 bfd_arch_fr30,
1489#define bfd_mach_fr30 0x46523330
1490 bfd_arch_mcore,
52b219b5 1491 bfd_arch_ia64, /* HP/Intel ia64 */
0bcb993b 1492 bfd_arch_pj,
52b219b5 1493 bfd_arch_avr, /* Atmel AVR microcontrollers */
adde6300
AM
1494#define bfd_mach_avr1 1
1495#define bfd_mach_avr2 2
1496#define bfd_mach_avr3 3
1497#define bfd_mach_avr4 4
65aa24b6 1498#define bfd_mach_avr5 5
06c15ad7 1499 bfd_arch_cris, /* Axis CRIS */
252b5132
RH
1500 bfd_arch_last
1501 };
1502
1503typedef struct bfd_arch_info
1504{
1505 int bits_per_word;
1506 int bits_per_address;
1507 int bits_per_byte;
1508 enum bfd_architecture arch;
1509 unsigned long mach;
1510 const char *arch_name;
1511 const char *printable_name;
1512 unsigned int section_align_power;
52b219b5 1513 /* True if this is the default machine for the architecture. */
252b5132
RH
1514 boolean the_default;
1515 const struct bfd_arch_info * (*compatible)
1516 PARAMS ((const struct bfd_arch_info *a,
1517 const struct bfd_arch_info *b));
1518
1519 boolean (*scan) PARAMS ((const struct bfd_arch_info *, const char *));
1520
1521 const struct bfd_arch_info *next;
1522} bfd_arch_info_type;
1523const char *
1524bfd_printable_name PARAMS ((bfd *abfd));
1525
1526const bfd_arch_info_type *
1527bfd_scan_arch PARAMS ((const char *string));
1528
1529const char **
1530bfd_arch_list PARAMS ((void));
1531
1532const bfd_arch_info_type *
1533bfd_arch_get_compatible PARAMS ((
1534 const bfd *abfd,
1535 const bfd *bbfd));
1536
1537void
1538bfd_set_arch_info PARAMS ((bfd *abfd, const bfd_arch_info_type *arg));
1539
1540enum bfd_architecture
1541bfd_get_arch PARAMS ((bfd *abfd));
1542
1543unsigned long
1544bfd_get_mach PARAMS ((bfd *abfd));
1545
1546unsigned int
1547bfd_arch_bits_per_byte PARAMS ((bfd *abfd));
1548
1549unsigned int
1550bfd_arch_bits_per_address PARAMS ((bfd *abfd));
1551
1552const bfd_arch_info_type *
1553bfd_get_arch_info PARAMS ((bfd *abfd));
1554
1555const bfd_arch_info_type *
1556bfd_lookup_arch
1557 PARAMS ((enum bfd_architecture
1558 arch,
1559 unsigned long machine));
1560
1561const char *
1562bfd_printable_arch_mach
1563 PARAMS ((enum bfd_architecture arch, unsigned long machine));
1564
f6af82bd 1565unsigned int
9a968f43
NC
1566bfd_octets_per_byte PARAMS ((bfd *abfd));
1567
f6af82bd 1568unsigned int
9a968f43 1569bfd_arch_mach_octets_per_byte PARAMS ((enum bfd_architecture arch,
7f8d5fc9 1570 unsigned long machine));
9a968f43 1571
252b5132
RH
1572typedef enum bfd_reloc_status
1573{
52b219b5 1574 /* No errors detected */
252b5132
RH
1575 bfd_reloc_ok,
1576
52b219b5 1577 /* The relocation was performed, but there was an overflow. */
252b5132
RH
1578 bfd_reloc_overflow,
1579
52b219b5 1580 /* The address to relocate was not within the section supplied. */
252b5132
RH
1581 bfd_reloc_outofrange,
1582
52b219b5 1583 /* Used by special functions */
252b5132
RH
1584 bfd_reloc_continue,
1585
52b219b5 1586 /* Unsupported relocation size requested. */
252b5132
RH
1587 bfd_reloc_notsupported,
1588
52b219b5 1589 /* Unused */
252b5132
RH
1590 bfd_reloc_other,
1591
52b219b5 1592 /* The symbol to relocate against was undefined. */
252b5132
RH
1593 bfd_reloc_undefined,
1594
52b219b5 1595 /* The relocation was performed, but may not be ok - presently
252b5132
RH
1596 generated only when linking i960 coff files with i960 b.out
1597 symbols. If this type is returned, the error_message argument
1598 to bfd_perform_relocation will be set. */
1599 bfd_reloc_dangerous
1600 }
1601 bfd_reloc_status_type;
1602
1603
1604typedef struct reloc_cache_entry
1605{
52b219b5 1606 /* A pointer into the canonical table of pointers */
252b5132
RH
1607 struct symbol_cache_entry **sym_ptr_ptr;
1608
52b219b5 1609 /* offset in section */
252b5132
RH
1610 bfd_size_type address;
1611
52b219b5 1612 /* addend for relocation value */
252b5132
RH
1613 bfd_vma addend;
1614
52b219b5 1615 /* Pointer to how to perform the required relocation */
252b5132
RH
1616 reloc_howto_type *howto;
1617
1618} arelent;
1619enum complain_overflow
1620{
52b219b5 1621 /* Do not complain on overflow. */
252b5132
RH
1622 complain_overflow_dont,
1623
52b219b5 1624 /* Complain if the bitfield overflows, whether it is considered
252b5132
RH
1625 as signed or unsigned. */
1626 complain_overflow_bitfield,
1627
52b219b5 1628 /* Complain if the value overflows when considered as signed
252b5132
RH
1629 number. */
1630 complain_overflow_signed,
1631
52b219b5 1632 /* Complain if the value overflows when considered as an
252b5132
RH
1633 unsigned number. */
1634 complain_overflow_unsigned
1635};
1636
1637struct reloc_howto_struct
1638{
52b219b5 1639 /* The type field has mainly a documentary use - the back end can
252b5132
RH
1640 do what it wants with it, though normally the back end's
1641 external idea of what a reloc number is stored
1642 in this field. For example, a PC relative word relocation
1643 in a coff environment has the type 023 - because that's
1644 what the outside world calls a R_PCRWORD reloc. */
1645 unsigned int type;
1646
52b219b5 1647 /* The value the final relocation is shifted right by. This drops
252b5132
RH
1648 unwanted data from the relocation. */
1649 unsigned int rightshift;
1650
52b219b5 1651 /* The size of the item to be relocated. This is *not* a
252b5132
RH
1652 power-of-two measure. To get the number of bytes operated
1653 on by a type of relocation, use bfd_get_reloc_size. */
1654 int size;
1655
52b219b5 1656 /* The number of bits in the item to be relocated. This is used
252b5132
RH
1657 when doing overflow checking. */
1658 unsigned int bitsize;
1659
52b219b5 1660 /* Notes that the relocation is relative to the location in the
252b5132
RH
1661 data section of the addend. The relocation function will
1662 subtract from the relocation value the address of the location
1663 being relocated. */
1664 boolean pc_relative;
1665
52b219b5 1666 /* The bit position of the reloc value in the destination.
252b5132
RH
1667 The relocated value is left shifted by this amount. */
1668 unsigned int bitpos;
1669
52b219b5 1670 /* What type of overflow error should be checked for when
252b5132
RH
1671 relocating. */
1672 enum complain_overflow complain_on_overflow;
1673
52b219b5 1674 /* If this field is non null, then the supplied function is
252b5132
RH
1675 called rather than the normal function. This allows really
1676 strange relocation methods to be accomodated (e.g., i960 callj
1677 instructions). */
1678 bfd_reloc_status_type (*special_function)
1679 PARAMS ((bfd *abfd,
1680 arelent *reloc_entry,
1681 struct symbol_cache_entry *symbol,
1682 PTR data,
1683 asection *input_section,
1684 bfd *output_bfd,
1685 char **error_message));
1686
52b219b5 1687 /* The textual name of the relocation type. */
252b5132
RH
1688 char *name;
1689
52b219b5 1690 /* Some formats record a relocation addend in the section contents
c1b7949f
DE
1691 rather than with the relocation. For ELF formats this is the
1692 distinction between USE_REL and USE_RELA (though the code checks
1693 for USE_REL == 1/0). The value of this field is TRUE if the
1694 addend is recorded with the section contents; when performing a
1695 partial link (ld -r) the section contents (the data) will be
1696 modified. The value of this field is FALSE if addends are
1697 recorded with the relocation (in arelent.addend); when performing
1698 a partial link the relocation will be modified.
1699 All relocations for all ELF USE_RELA targets should set this field
1700 to FALSE (values of TRUE should be looked on with suspicion).
1701 However, the converse is not true: not all relocations of all ELF
1702 USE_REL targets set this field to TRUE. Why this is so is peculiar
1703 to each particular target. For relocs that aren't used in partial
1704 links (e.g. GOT stuff) it doesn't matter what this is set to. */
252b5132
RH
1705 boolean partial_inplace;
1706
52b219b5 1707 /* The src_mask selects which parts of the read in data
252b5132 1708 are to be used in the relocation sum. E.g., if this was an 8 bit
adde6300 1709 byte of data which we read and relocated, this would be
252b5132
RH
1710 0x000000ff. When we have relocs which have an addend, such as
1711 sun4 extended relocs, the value in the offset part of a
1712 relocating field is garbage so we never use it. In this case
1713 the mask would be 0x00000000. */
1714 bfd_vma src_mask;
1715
52b219b5 1716 /* The dst_mask selects which parts of the instruction are replaced
252b5132
RH
1717 into the instruction. In most cases src_mask == dst_mask,
1718 except in the above special case, where dst_mask would be
1719 0x000000ff, and src_mask would be 0x00000000. */
1720 bfd_vma dst_mask;
1721
52b219b5 1722 /* When some formats create PC relative instructions, they leave
252b5132
RH
1723 the value of the pc of the place being relocated in the offset
1724 slot of the instruction, so that a PC relative relocation can
1725 be made just by adding in an ordinary offset (e.g., sun3 a.out).
1726 Some formats leave the displacement part of an instruction
1727 empty (e.g., m88k bcs); this flag signals the fact.*/
1728 boolean pcrel_offset;
1729
1730};
1731#define HOWTO(C, R,S,B, P, BI, O, SF, NAME, INPLACE, MASKSRC, MASKDST, PC) \
1732 {(unsigned)C,R,S,B, P, BI, O,SF,NAME,INPLACE,MASKSRC,MASKDST,PC}
1733#define NEWHOWTO( FUNCTION, NAME,SIZE,REL,IN) HOWTO(0,0,SIZE,0,REL,0,complain_overflow_dont,FUNCTION, NAME,false,0,0,IN)
1734
5f771d47
ILT
1735#define EMPTY_HOWTO(C) \
1736 HOWTO((C),0,0,0,false,0,complain_overflow_dont,NULL,NULL,false,0,0,false)
1737
252b5132
RH
1738#define HOWTO_PREPARE(relocation, symbol) \
1739 { \
1740 if (symbol != (asymbol *)NULL) { \
1741 if (bfd_is_com_section (symbol->section)) { \
1742 relocation = 0; \
1743 } \
1744 else { \
1745 relocation = symbol->value; \
1746 } \
1747 } \
1748}
1749unsigned int
1750bfd_get_reloc_size PARAMS ((reloc_howto_type *));
1751
1752typedef struct relent_chain {
1753 arelent relent;
1754 struct relent_chain *next;
1755} arelent_chain;
1756bfd_reloc_status_type
1757
1758bfd_check_overflow
1759 PARAMS ((enum complain_overflow how,
1760 unsigned int bitsize,
1761 unsigned int rightshift,
1762 unsigned int addrsize,
1763 bfd_vma relocation));
1764
1765bfd_reloc_status_type
1766
1767bfd_perform_relocation
1768 PARAMS ((bfd *abfd,
1769 arelent *reloc_entry,
1770 PTR data,
1771 asection *input_section,
1772 bfd *output_bfd,
1773 char **error_message));
1774
1775bfd_reloc_status_type
1776
1777bfd_install_relocation
1778 PARAMS ((bfd *abfd,
1779 arelent *reloc_entry,
1780 PTR data, bfd_vma data_start,
1781 asection *input_section,
1782 char **error_message));
1783
1784enum bfd_reloc_code_real {
1785 _dummy_first_bfd_reloc_code_real,
1786
1787
1788/* Basic absolute relocations of N bits. */
1789 BFD_RELOC_64,
1790 BFD_RELOC_32,
1791 BFD_RELOC_26,
1792 BFD_RELOC_24,
1793 BFD_RELOC_16,
1794 BFD_RELOC_14,
1795 BFD_RELOC_8,
1796
1797/* PC-relative relocations. Sometimes these are relative to the address
1798of the relocation itself; sometimes they are relative to the start of
1799the section containing the relocation. It depends on the specific target.
1800
1801The 24-bit relocation is used in some Intel 960 configurations. */
1802 BFD_RELOC_64_PCREL,
1803 BFD_RELOC_32_PCREL,
1804 BFD_RELOC_24_PCREL,
1805 BFD_RELOC_16_PCREL,
1806 BFD_RELOC_12_PCREL,
1807 BFD_RELOC_8_PCREL,
1808
1809/* For ELF. */
1810 BFD_RELOC_32_GOT_PCREL,
1811 BFD_RELOC_16_GOT_PCREL,
1812 BFD_RELOC_8_GOT_PCREL,
1813 BFD_RELOC_32_GOTOFF,
1814 BFD_RELOC_16_GOTOFF,
1815 BFD_RELOC_LO16_GOTOFF,
1816 BFD_RELOC_HI16_GOTOFF,
1817 BFD_RELOC_HI16_S_GOTOFF,
1818 BFD_RELOC_8_GOTOFF,
1819 BFD_RELOC_32_PLT_PCREL,
1820 BFD_RELOC_24_PLT_PCREL,
1821 BFD_RELOC_16_PLT_PCREL,
1822 BFD_RELOC_8_PLT_PCREL,
1823 BFD_RELOC_32_PLTOFF,
1824 BFD_RELOC_16_PLTOFF,
1825 BFD_RELOC_LO16_PLTOFF,
1826 BFD_RELOC_HI16_PLTOFF,
1827 BFD_RELOC_HI16_S_PLTOFF,
1828 BFD_RELOC_8_PLTOFF,
1829
1830/* Relocations used by 68K ELF. */
1831 BFD_RELOC_68K_GLOB_DAT,
1832 BFD_RELOC_68K_JMP_SLOT,
1833 BFD_RELOC_68K_RELATIVE,
1834
1835/* Linkage-table relative. */
1836 BFD_RELOC_32_BASEREL,
1837 BFD_RELOC_16_BASEREL,
1838 BFD_RELOC_LO16_BASEREL,
1839 BFD_RELOC_HI16_BASEREL,
1840 BFD_RELOC_HI16_S_BASEREL,
1841 BFD_RELOC_8_BASEREL,
1842 BFD_RELOC_RVA,
1843
1844/* Absolute 8-bit relocation, but used to form an address like 0xFFnn. */
1845 BFD_RELOC_8_FFnn,
1846
1847/* These PC-relative relocations are stored as word displacements --
1848i.e., byte displacements shifted right two bits. The 30-bit word
1849displacement (<<32_PCREL_S2>> -- 32 bits, shifted 2) is used on the
1850SPARC. (SPARC tools generally refer to this as <<WDISP30>>.) The
1851signed 16-bit displacement is used on the MIPS, and the 23-bit
1852displacement is used on the Alpha. */
1853 BFD_RELOC_32_PCREL_S2,
1854 BFD_RELOC_16_PCREL_S2,
1855 BFD_RELOC_23_PCREL_S2,
1856
1857/* High 22 bits and low 10 bits of 32-bit value, placed into lower bits of
1858the target word. These are used on the SPARC. */
1859 BFD_RELOC_HI22,
1860 BFD_RELOC_LO10,
1861
1862/* For systems that allocate a Global Pointer register, these are
1863displacements off that register. These relocation types are
1864handled specially, because the value the register will have is
1865decided relatively late. */
1866 BFD_RELOC_GPREL16,
1867 BFD_RELOC_GPREL32,
1868
1869/* Reloc types used for i960/b.out. */
1870 BFD_RELOC_I960_CALLJ,
1871
1872/* SPARC ELF relocations. There is probably some overlap with other
1873relocation types already defined. */
1874 BFD_RELOC_NONE,
1875 BFD_RELOC_SPARC_WDISP22,
1876 BFD_RELOC_SPARC22,
1877 BFD_RELOC_SPARC13,
1878 BFD_RELOC_SPARC_GOT10,
1879 BFD_RELOC_SPARC_GOT13,
1880 BFD_RELOC_SPARC_GOT22,
1881 BFD_RELOC_SPARC_PC10,
1882 BFD_RELOC_SPARC_PC22,
1883 BFD_RELOC_SPARC_WPLT30,
1884 BFD_RELOC_SPARC_COPY,
1885 BFD_RELOC_SPARC_GLOB_DAT,
1886 BFD_RELOC_SPARC_JMP_SLOT,
1887 BFD_RELOC_SPARC_RELATIVE,
1888 BFD_RELOC_SPARC_UA32,
1889
1890/* I think these are specific to SPARC a.out (e.g., Sun 4). */
1891 BFD_RELOC_SPARC_BASE13,
1892 BFD_RELOC_SPARC_BASE22,
1893
1894/* SPARC64 relocations */
1895#define BFD_RELOC_SPARC_64 BFD_RELOC_64
1896 BFD_RELOC_SPARC_10,
1897 BFD_RELOC_SPARC_11,
1898 BFD_RELOC_SPARC_OLO10,
1899 BFD_RELOC_SPARC_HH22,
1900 BFD_RELOC_SPARC_HM10,
1901 BFD_RELOC_SPARC_LM22,
1902 BFD_RELOC_SPARC_PC_HH22,
1903 BFD_RELOC_SPARC_PC_HM10,
1904 BFD_RELOC_SPARC_PC_LM22,
1905 BFD_RELOC_SPARC_WDISP16,
1906 BFD_RELOC_SPARC_WDISP19,
1907 BFD_RELOC_SPARC_7,
1908 BFD_RELOC_SPARC_6,
1909 BFD_RELOC_SPARC_5,
1910#define BFD_RELOC_SPARC_DISP64 BFD_RELOC_64_PCREL
1911 BFD_RELOC_SPARC_PLT64,
1912 BFD_RELOC_SPARC_HIX22,
1913 BFD_RELOC_SPARC_LOX10,
1914 BFD_RELOC_SPARC_H44,
1915 BFD_RELOC_SPARC_M44,
1916 BFD_RELOC_SPARC_L44,
1917 BFD_RELOC_SPARC_REGISTER,
1918
1919/* SPARC little endian relocation */
1920 BFD_RELOC_SPARC_REV32,
1921
1922/* Alpha ECOFF and ELF relocations. Some of these treat the symbol or
1923"addend" in some special way.
1924For GPDISP_HI16 ("gpdisp") relocations, the symbol is ignored when
1925writing; when reading, it will be the absolute section symbol. The
1926addend is the displacement in bytes of the "lda" instruction from
1927the "ldah" instruction (which is at the address of this reloc). */
1928 BFD_RELOC_ALPHA_GPDISP_HI16,
1929
1930/* For GPDISP_LO16 ("ignore") relocations, the symbol is handled as
1931with GPDISP_HI16 relocs. The addend is ignored when writing the
1932relocations out, and is filled in with the file's GP value on
1933reading, for convenience. */
1934 BFD_RELOC_ALPHA_GPDISP_LO16,
1935
1936/* The ELF GPDISP relocation is exactly the same as the GPDISP_HI16
1937relocation except that there is no accompanying GPDISP_LO16
1938relocation. */
1939 BFD_RELOC_ALPHA_GPDISP,
1940
1941/* The Alpha LITERAL/LITUSE relocs are produced by a symbol reference;
1942the assembler turns it into a LDQ instruction to load the address of
1943the symbol, and then fills in a register in the real instruction.
1944
1945The LITERAL reloc, at the LDQ instruction, refers to the .lita
1946section symbol. The addend is ignored when writing, but is filled
1947in with the file's GP value on reading, for convenience, as with the
1948GPDISP_LO16 reloc.
1949
1950The ELF_LITERAL reloc is somewhere between 16_GOTOFF and GPDISP_LO16.
1951It should refer to the symbol to be referenced, as with 16_GOTOFF,
1952but it generates output not based on the position within the .got
1953section, but relative to the GP value chosen for the file during the
1954final link stage.
1955
1956The LITUSE reloc, on the instruction using the loaded address, gives
1957information to the linker that it might be able to use to optimize
1958away some literal section references. The symbol is ignored (read
1959as the absolute section symbol), and the "addend" indicates the type
1960of instruction using the register:
19611 - "memory" fmt insn
19622 - byte-manipulation (byte offset reg)
19633 - jsr (target of branch)
1964
1965The GNU linker currently doesn't do any of this optimizing. */
1966 BFD_RELOC_ALPHA_LITERAL,
1967 BFD_RELOC_ALPHA_ELF_LITERAL,
1968 BFD_RELOC_ALPHA_LITUSE,
1969
fe174262
MM
1970/* The BFD_RELOC_ALPHA_USER_* relocations are used by the assembler to
1971process the explicit !<reloc>!sequence relocations, and are mapped
1972into the normal relocations at the end of processing. */
1973 BFD_RELOC_ALPHA_USER_LITERAL,
1974 BFD_RELOC_ALPHA_USER_LITUSE_BASE,
1975 BFD_RELOC_ALPHA_USER_LITUSE_BYTOFF,
1976 BFD_RELOC_ALPHA_USER_LITUSE_JSR,
1977 BFD_RELOC_ALPHA_USER_GPDISP,
1978 BFD_RELOC_ALPHA_USER_GPRELHIGH,
1979 BFD_RELOC_ALPHA_USER_GPRELLOW,
1980
252b5132
RH
1981/* The HINT relocation indicates a value that should be filled into the
1982"hint" field of a jmp/jsr/ret instruction, for possible branch-
1983prediction logic which may be provided on some processors. */
1984 BFD_RELOC_ALPHA_HINT,
1985
1986/* The LINKAGE relocation outputs a linkage pair in the object file,
1987which is filled by the linker. */
1988 BFD_RELOC_ALPHA_LINKAGE,
1989
1990/* The CODEADDR relocation outputs a STO_CA in the object file,
1991which is filled by the linker. */
1992 BFD_RELOC_ALPHA_CODEADDR,
1993
1994/* Bits 27..2 of the relocation address shifted right 2 bits;
1995simple reloc otherwise. */
1996 BFD_RELOC_MIPS_JMP,
1997
1998/* The MIPS16 jump instruction. */
1999 BFD_RELOC_MIPS16_JMP,
2000
2001/* MIPS16 GP relative reloc. */
2002 BFD_RELOC_MIPS16_GPREL,
2003
2004/* High 16 bits of 32-bit value; simple reloc. */
2005 BFD_RELOC_HI16,
2006
2007/* High 16 bits of 32-bit value but the low 16 bits will be sign
2008extended and added to form the final result. If the low 16
2009bits form a negative number, we need to add one to the high value
2010to compensate for the borrow when the low bits are added. */
2011 BFD_RELOC_HI16_S,
2012
2013/* Low 16 bits. */
2014 BFD_RELOC_LO16,
2015
2016/* Like BFD_RELOC_HI16_S, but PC relative. */
2017 BFD_RELOC_PCREL_HI16_S,
2018
2019/* Like BFD_RELOC_LO16, but PC relative. */
2020 BFD_RELOC_PCREL_LO16,
2021
2022/* Relocation relative to the global pointer. */
2023#define BFD_RELOC_MIPS_GPREL BFD_RELOC_GPREL16
2024
2025/* Relocation against a MIPS literal section. */
2026 BFD_RELOC_MIPS_LITERAL,
2027
2028/* MIPS ELF relocations. */
2029 BFD_RELOC_MIPS_GOT16,
2030 BFD_RELOC_MIPS_CALL16,
2031#define BFD_RELOC_MIPS_GPREL32 BFD_RELOC_GPREL32
2032 BFD_RELOC_MIPS_GOT_HI16,
2033 BFD_RELOC_MIPS_GOT_LO16,
2034 BFD_RELOC_MIPS_CALL_HI16,
2035 BFD_RELOC_MIPS_CALL_LO16,
3f830999
MM
2036 BFD_RELOC_MIPS_SUB,
2037 BFD_RELOC_MIPS_GOT_PAGE,
2038 BFD_RELOC_MIPS_GOT_OFST,
2039 BFD_RELOC_MIPS_GOT_DISP,
252b5132
RH
2040
2041
2042/* i386/elf relocations */
2043 BFD_RELOC_386_GOT32,
2044 BFD_RELOC_386_PLT32,
2045 BFD_RELOC_386_COPY,
2046 BFD_RELOC_386_GLOB_DAT,
2047 BFD_RELOC_386_JUMP_SLOT,
2048 BFD_RELOC_386_RELATIVE,
2049 BFD_RELOC_386_GOTOFF,
2050 BFD_RELOC_386_GOTPC,
2051
2052/* ns32k relocations */
2053 BFD_RELOC_NS32K_IMM_8,
2054 BFD_RELOC_NS32K_IMM_16,
2055 BFD_RELOC_NS32K_IMM_32,
2056 BFD_RELOC_NS32K_IMM_8_PCREL,
2057 BFD_RELOC_NS32K_IMM_16_PCREL,
2058 BFD_RELOC_NS32K_IMM_32_PCREL,
2059 BFD_RELOC_NS32K_DISP_8,
2060 BFD_RELOC_NS32K_DISP_16,
2061 BFD_RELOC_NS32K_DISP_32,
2062 BFD_RELOC_NS32K_DISP_8_PCREL,
2063 BFD_RELOC_NS32K_DISP_16_PCREL,
2064 BFD_RELOC_NS32K_DISP_32_PCREL,
2065
0bcb993b
ILT
2066/* Picojava relocs. Not all of these appear in object files. */
2067 BFD_RELOC_PJ_CODE_HI16,
2068 BFD_RELOC_PJ_CODE_LO16,
2069 BFD_RELOC_PJ_CODE_DIR16,
2070 BFD_RELOC_PJ_CODE_DIR32,
2071 BFD_RELOC_PJ_CODE_REL16,
2072 BFD_RELOC_PJ_CODE_REL32,
2073
252b5132
RH
2074/* Power(rs6000) and PowerPC relocations. */
2075 BFD_RELOC_PPC_B26,
2076 BFD_RELOC_PPC_BA26,
2077 BFD_RELOC_PPC_TOC16,
2078 BFD_RELOC_PPC_B16,
2079 BFD_RELOC_PPC_B16_BRTAKEN,
2080 BFD_RELOC_PPC_B16_BRNTAKEN,
2081 BFD_RELOC_PPC_BA16,
2082 BFD_RELOC_PPC_BA16_BRTAKEN,
2083 BFD_RELOC_PPC_BA16_BRNTAKEN,
2084 BFD_RELOC_PPC_COPY,
2085 BFD_RELOC_PPC_GLOB_DAT,
2086 BFD_RELOC_PPC_JMP_SLOT,
2087 BFD_RELOC_PPC_RELATIVE,
2088 BFD_RELOC_PPC_LOCAL24PC,
2089 BFD_RELOC_PPC_EMB_NADDR32,
2090 BFD_RELOC_PPC_EMB_NADDR16,
2091 BFD_RELOC_PPC_EMB_NADDR16_LO,
2092 BFD_RELOC_PPC_EMB_NADDR16_HI,
2093 BFD_RELOC_PPC_EMB_NADDR16_HA,
2094 BFD_RELOC_PPC_EMB_SDAI16,
2095 BFD_RELOC_PPC_EMB_SDA2I16,
2096 BFD_RELOC_PPC_EMB_SDA2REL,
2097 BFD_RELOC_PPC_EMB_SDA21,
2098 BFD_RELOC_PPC_EMB_MRKREF,
2099 BFD_RELOC_PPC_EMB_RELSEC16,
2100 BFD_RELOC_PPC_EMB_RELST_LO,
2101 BFD_RELOC_PPC_EMB_RELST_HI,
2102 BFD_RELOC_PPC_EMB_RELST_HA,
2103 BFD_RELOC_PPC_EMB_BIT_FLD,
2104 BFD_RELOC_PPC_EMB_RELSDA,
2105
5b93d8bb
AM
2106/* IBM 370/390 relocations */
2107 BFD_RELOC_I370_D12,
2108
252b5132
RH
2109/* The type of reloc used to build a contructor table - at the moment
2110probably a 32 bit wide absolute relocation, but the target can choose.
2111It generally does map to one of the other relocation types. */
2112 BFD_RELOC_CTOR,
2113
2114/* ARM 26 bit pc-relative branch. The lowest two bits must be zero and are
2115not stored in the instruction. */
2116 BFD_RELOC_ARM_PCREL_BRANCH,
2117
dfc5f959
NC
2118/* ARM 26 bit pc-relative branch. The lowest bit must be zero and is
2119not stored in the instruction. The 2nd lowest bit comes from a 1 bit
2120field in the instruction. */
2121 BFD_RELOC_ARM_PCREL_BLX,
2122
2123/* Thumb 22 bit pc-relative branch. The lowest bit must be zero and is
2124not stored in the instruction. The 2nd lowest bit comes from a 1 bit
2125field in the instruction. */
2126 BFD_RELOC_THUMB_PCREL_BLX,
2127
252b5132
RH
2128/* These relocs are only used within the ARM assembler. They are not
2129(at present) written to any object files. */
2130 BFD_RELOC_ARM_IMMEDIATE,
752149a0 2131 BFD_RELOC_ARM_ADRL_IMMEDIATE,
252b5132
RH
2132 BFD_RELOC_ARM_OFFSET_IMM,
2133 BFD_RELOC_ARM_SHIFT_IMM,
2134 BFD_RELOC_ARM_SWI,
2135 BFD_RELOC_ARM_MULTI,
2136 BFD_RELOC_ARM_CP_OFF_IMM,
2137 BFD_RELOC_ARM_ADR_IMM,
2138 BFD_RELOC_ARM_LDR_IMM,
2139 BFD_RELOC_ARM_LITERAL,
2140 BFD_RELOC_ARM_IN_POOL,
2141 BFD_RELOC_ARM_OFFSET_IMM8,
2142 BFD_RELOC_ARM_HWLITERAL,
2143 BFD_RELOC_ARM_THUMB_ADD,
2144 BFD_RELOC_ARM_THUMB_IMM,
2145 BFD_RELOC_ARM_THUMB_SHIFT,
2146 BFD_RELOC_ARM_THUMB_OFFSET,
2147 BFD_RELOC_ARM_GOT12,
2148 BFD_RELOC_ARM_GOT32,
2149 BFD_RELOC_ARM_JUMP_SLOT,
2150 BFD_RELOC_ARM_COPY,
2151 BFD_RELOC_ARM_GLOB_DAT,
2152 BFD_RELOC_ARM_PLT32,
2153 BFD_RELOC_ARM_RELATIVE,
2154 BFD_RELOC_ARM_GOTOFF,
2155 BFD_RELOC_ARM_GOTPC,
2156
2157/* Hitachi SH relocs. Not all of these appear in object files. */
2158 BFD_RELOC_SH_PCDISP8BY2,
2159 BFD_RELOC_SH_PCDISP12BY2,
2160 BFD_RELOC_SH_IMM4,
2161 BFD_RELOC_SH_IMM4BY2,
2162 BFD_RELOC_SH_IMM4BY4,
2163 BFD_RELOC_SH_IMM8,
2164 BFD_RELOC_SH_IMM8BY2,
2165 BFD_RELOC_SH_IMM8BY4,
2166 BFD_RELOC_SH_PCRELIMM8BY2,
2167 BFD_RELOC_SH_PCRELIMM8BY4,
2168 BFD_RELOC_SH_SWITCH16,
2169 BFD_RELOC_SH_SWITCH32,
2170 BFD_RELOC_SH_USES,
2171 BFD_RELOC_SH_COUNT,
2172 BFD_RELOC_SH_ALIGN,
2173 BFD_RELOC_SH_CODE,
2174 BFD_RELOC_SH_DATA,
2175 BFD_RELOC_SH_LABEL,
015551fc
JR
2176 BFD_RELOC_SH_LOOP_START,
2177 BFD_RELOC_SH_LOOP_END,
1bd91689
AM
2178 BFD_RELOC_SH_COPY,
2179 BFD_RELOC_SH_GLOB_DAT,
2180 BFD_RELOC_SH_JMP_SLOT,
2181 BFD_RELOC_SH_RELATIVE,
2182 BFD_RELOC_SH_GOTPC,
252b5132
RH
2183
2184/* Thumb 23-, 12- and 9-bit pc-relative branches. The lowest bit must
2185be zero and is not stored in the instruction. */
2186 BFD_RELOC_THUMB_PCREL_BRANCH9,
2187 BFD_RELOC_THUMB_PCREL_BRANCH12,
2188 BFD_RELOC_THUMB_PCREL_BRANCH23,
2189
2190/* Argonaut RISC Core (ARC) relocs.
2191ARC 22 bit pc-relative branch. The lowest two bits must be zero and are
2192not stored in the instruction. The high 20 bits are installed in bits 26
2193through 7 of the instruction. */
2194 BFD_RELOC_ARC_B22_PCREL,
2195
2196/* ARC 26 bit absolute branch. The lowest two bits must be zero and are not
2197stored in the instruction. The high 24 bits are installed in bits 23
2198through 0. */
2199 BFD_RELOC_ARC_B26,
2200
2201/* Mitsubishi D10V relocs.
2202This is a 10-bit reloc with the right 2 bits
2203assumed to be 0. */
2204 BFD_RELOC_D10V_10_PCREL_R,
2205
2206/* Mitsubishi D10V relocs.
2207This is a 10-bit reloc with the right 2 bits
2208assumed to be 0. This is the same as the previous reloc
2209except it is in the left container, i.e.,
2210shifted left 15 bits. */
2211 BFD_RELOC_D10V_10_PCREL_L,
2212
2213/* This is an 18-bit reloc with the right 2 bits
2214assumed to be 0. */
2215 BFD_RELOC_D10V_18,
2216
2217/* This is an 18-bit reloc with the right 2 bits
2218assumed to be 0. */
2219 BFD_RELOC_D10V_18_PCREL,
2220
2221/* Mitsubishi D30V relocs.
2222This is a 6-bit absolute reloc. */
2223 BFD_RELOC_D30V_6,
2224
adde6300 2225/* This is a 6-bit pc-relative reloc with
252b5132
RH
2226the right 3 bits assumed to be 0. */
2227 BFD_RELOC_D30V_9_PCREL,
2228
adde6300 2229/* This is a 6-bit pc-relative reloc with
252b5132
RH
2230the right 3 bits assumed to be 0. Same
2231as the previous reloc but on the right side
2232of the container. */
2233 BFD_RELOC_D30V_9_PCREL_R,
2234
adde6300 2235/* This is a 12-bit absolute reloc with the
252b5132
RH
2236right 3 bitsassumed to be 0. */
2237 BFD_RELOC_D30V_15,
2238
adde6300 2239/* This is a 12-bit pc-relative reloc with
252b5132
RH
2240the right 3 bits assumed to be 0. */
2241 BFD_RELOC_D30V_15_PCREL,
2242
adde6300 2243/* This is a 12-bit pc-relative reloc with
252b5132
RH
2244the right 3 bits assumed to be 0. Same
2245as the previous reloc but on the right side
2246of the container. */
2247 BFD_RELOC_D30V_15_PCREL_R,
2248
adde6300 2249/* This is an 18-bit absolute reloc with
252b5132
RH
2250the right 3 bits assumed to be 0. */
2251 BFD_RELOC_D30V_21,
2252
adde6300 2253/* This is an 18-bit pc-relative reloc with
252b5132
RH
2254the right 3 bits assumed to be 0. */
2255 BFD_RELOC_D30V_21_PCREL,
2256
adde6300 2257/* This is an 18-bit pc-relative reloc with
252b5132
RH
2258the right 3 bits assumed to be 0. Same
2259as the previous reloc but on the right side
2260of the container. */
2261 BFD_RELOC_D30V_21_PCREL_R,
2262
2263/* This is a 32-bit absolute reloc. */
2264 BFD_RELOC_D30V_32,
2265
2266/* This is a 32-bit pc-relative reloc. */
2267 BFD_RELOC_D30V_32_PCREL,
2268
2269/* Mitsubishi M32R relocs.
2270This is a 24 bit absolute address. */
2271 BFD_RELOC_M32R_24,
2272
2273/* This is a 10-bit pc-relative reloc with the right 2 bits assumed to be 0. */
2274 BFD_RELOC_M32R_10_PCREL,
2275
2276/* This is an 18-bit reloc with the right 2 bits assumed to be 0. */
2277 BFD_RELOC_M32R_18_PCREL,
2278
2279/* This is a 26-bit reloc with the right 2 bits assumed to be 0. */
2280 BFD_RELOC_M32R_26_PCREL,
2281
2282/* This is a 16-bit reloc containing the high 16 bits of an address
2283used when the lower 16 bits are treated as unsigned. */
2284 BFD_RELOC_M32R_HI16_ULO,
2285
2286/* This is a 16-bit reloc containing the high 16 bits of an address
2287used when the lower 16 bits are treated as signed. */
2288 BFD_RELOC_M32R_HI16_SLO,
2289
2290/* This is a 16-bit reloc containing the lower 16 bits of an address. */
2291 BFD_RELOC_M32R_LO16,
2292
2293/* This is a 16-bit reloc containing the small data area offset for use in
2294add3, load, and store instructions. */
2295 BFD_RELOC_M32R_SDA16,
2296
2297/* This is a 9-bit reloc */
2298 BFD_RELOC_V850_9_PCREL,
2299
2300/* This is a 22-bit reloc */
2301 BFD_RELOC_V850_22_PCREL,
2302
2303/* This is a 16 bit offset from the short data area pointer. */
2304 BFD_RELOC_V850_SDA_16_16_OFFSET,
2305
2306/* This is a 16 bit offset (of which only 15 bits are used) from the
2307short data area pointer. */
2308 BFD_RELOC_V850_SDA_15_16_OFFSET,
2309
2310/* This is a 16 bit offset from the zero data area pointer. */
2311 BFD_RELOC_V850_ZDA_16_16_OFFSET,
2312
2313/* This is a 16 bit offset (of which only 15 bits are used) from the
2314zero data area pointer. */
2315 BFD_RELOC_V850_ZDA_15_16_OFFSET,
2316
2317/* This is an 8 bit offset (of which only 6 bits are used) from the
2318tiny data area pointer. */
2319 BFD_RELOC_V850_TDA_6_8_OFFSET,
2320
2321/* This is an 8bit offset (of which only 7 bits are used) from the tiny
2322data area pointer. */
2323 BFD_RELOC_V850_TDA_7_8_OFFSET,
2324
2325/* This is a 7 bit offset from the tiny data area pointer. */
2326 BFD_RELOC_V850_TDA_7_7_OFFSET,
2327
2328/* This is a 16 bit offset from the tiny data area pointer. */
2329 BFD_RELOC_V850_TDA_16_16_OFFSET,
2330
2331/* This is a 5 bit offset (of which only 4 bits are used) from the tiny
2332data area pointer. */
2333 BFD_RELOC_V850_TDA_4_5_OFFSET,
2334
2335/* This is a 4 bit offset from the tiny data area pointer. */
2336 BFD_RELOC_V850_TDA_4_4_OFFSET,
2337
2338/* This is a 16 bit offset from the short data area pointer, with the
2339bits placed non-contigously in the instruction. */
2340 BFD_RELOC_V850_SDA_16_16_SPLIT_OFFSET,
2341
2342/* This is a 16 bit offset from the zero data area pointer, with the
2343bits placed non-contigously in the instruction. */
2344 BFD_RELOC_V850_ZDA_16_16_SPLIT_OFFSET,
2345
2346/* This is a 6 bit offset from the call table base pointer. */
2347 BFD_RELOC_V850_CALLT_6_7_OFFSET,
2348
2349/* This is a 16 bit offset from the call table base pointer. */
2350 BFD_RELOC_V850_CALLT_16_16_OFFSET,
2351
2352
2353/* This is a 32bit pcrel reloc for the mn10300, offset by two bytes in the
2354instruction. */
2355 BFD_RELOC_MN10300_32_PCREL,
2356
2357/* This is a 16bit pcrel reloc for the mn10300, offset by two bytes in the
2358instruction. */
2359 BFD_RELOC_MN10300_16_PCREL,
2360
2361/* This is a 8bit DP reloc for the tms320c30, where the most
2362significant 8 bits of a 24 bit word are placed into the least
2363significant 8 bits of the opcode. */
2364 BFD_RELOC_TIC30_LDP,
2365
81635ce4
TW
2366/* This is a 7bit reloc for the tms320c54x, where the least
2367significant 7 bits of a 16 bit word are placed into the least
2368significant 7 bits of the opcode. */
2369 BFD_RELOC_TIC54X_PARTLS7,
2370
2371/* This is a 9bit DP reloc for the tms320c54x, where the most
2372significant 9 bits of a 16 bit word are placed into the least
2373significant 9 bits of the opcode. */
2374 BFD_RELOC_TIC54X_PARTMS9,
2375
2376/* This is an extended address 23-bit reloc for the tms320c54x. */
2377 BFD_RELOC_TIC54X_23,
2378
2379/* This is a 16-bit reloc for the tms320c54x, where the least
2380significant 16 bits of a 23-bit extended address are placed into
2381the opcode. */
2382 BFD_RELOC_TIC54X_16_OF_23,
2383
2384/* This is a reloc for the tms320c54x, where the most
2385significant 7 bits of a 23-bit extended address are placed into
2386the opcode. */
2387 BFD_RELOC_TIC54X_MS7_OF_23,
2388
252b5132
RH
2389/* This is a 48 bit reloc for the FR30 that stores 32 bits. */
2390 BFD_RELOC_FR30_48,
2391
2392/* This is a 32 bit reloc for the FR30 that stores 20 bits split up into
2393two sections. */
2394 BFD_RELOC_FR30_20,
2395
2396/* This is a 16 bit reloc for the FR30 that stores a 6 bit word offset in
23974 bits. */
2398 BFD_RELOC_FR30_6_IN_4,
2399
2400/* This is a 16 bit reloc for the FR30 that stores an 8 bit byte offset
2401into 8 bits. */
2402 BFD_RELOC_FR30_8_IN_8,
2403
2404/* This is a 16 bit reloc for the FR30 that stores a 9 bit short offset
2405into 8 bits. */
2406 BFD_RELOC_FR30_9_IN_8,
2407
2408/* This is a 16 bit reloc for the FR30 that stores a 10 bit word offset
2409into 8 bits. */
2410 BFD_RELOC_FR30_10_IN_8,
2411
2412/* This is a 16 bit reloc for the FR30 that stores a 9 bit pc relative
2413short offset into 8 bits. */
2414 BFD_RELOC_FR30_9_PCREL,
2415
2416/* This is a 16 bit reloc for the FR30 that stores a 12 bit pc relative
2417short offset into 11 bits. */
2418 BFD_RELOC_FR30_12_PCREL,
2419
2420/* Motorola Mcore relocations. */
2421 BFD_RELOC_MCORE_PCREL_IMM8BY4,
2422 BFD_RELOC_MCORE_PCREL_IMM11BY2,
2423 BFD_RELOC_MCORE_PCREL_IMM4BY2,
2424 BFD_RELOC_MCORE_PCREL_32,
2425 BFD_RELOC_MCORE_PCREL_JSR_IMM11BY2,
36797d47 2426 BFD_RELOC_MCORE_RVA,
252b5132 2427
adde6300
AM
2428/* This is a 16 bit reloc for the AVR that stores 8 bit pc relative
2429short offset into 7 bits. */
2430 BFD_RELOC_AVR_7_PCREL,
2431
2432/* This is a 16 bit reloc for the AVR that stores 13 bit pc relative
2433short offset into 12 bits. */
2434 BFD_RELOC_AVR_13_PCREL,
2435
2436/* This is a 16 bit reloc for the AVR that stores 17 bit value (usually
2437program memory address) into 16 bits. */
2438 BFD_RELOC_AVR_16_PM,
2439
2440/* This is a 16 bit reloc for the AVR that stores 8 bit value (usually
2441data memory address) into 8 bit immediate value of LDI insn. */
2442 BFD_RELOC_AVR_LO8_LDI,
2443
2444/* This is a 16 bit reloc for the AVR that stores 8 bit value (high 8 bit
2445of data memory address) into 8 bit immediate value of LDI insn. */
2446 BFD_RELOC_AVR_HI8_LDI,
2447
2448/* This is a 16 bit reloc for the AVR that stores 8 bit value (most high 8 bit
2449of program memory address) into 8 bit immediate value of LDI insn. */
2450 BFD_RELOC_AVR_HH8_LDI,
2451
2452/* This is a 16 bit reloc for the AVR that stores negated 8 bit value
2453(usually data memory address) into 8 bit immediate value of SUBI insn. */
2454 BFD_RELOC_AVR_LO8_LDI_NEG,
2455
2456/* This is a 16 bit reloc for the AVR that stores negated 8 bit value
2457(high 8 bit of data memory address) into 8 bit immediate value of
2458SUBI insn. */
2459 BFD_RELOC_AVR_HI8_LDI_NEG,
2460
2461/* This is a 16 bit reloc for the AVR that stores negated 8 bit value
2462(most high 8 bit of program memory address) into 8 bit immediate value
2463of LDI or SUBI insn. */
2464 BFD_RELOC_AVR_HH8_LDI_NEG,
2465
2466/* This is a 16 bit reloc for the AVR that stores 8 bit value (usually
2467command address) into 8 bit immediate value of LDI insn. */
2468 BFD_RELOC_AVR_LO8_LDI_PM,
2469
2470/* This is a 16 bit reloc for the AVR that stores 8 bit value (high 8 bit
2471of command address) into 8 bit immediate value of LDI insn. */
2472 BFD_RELOC_AVR_HI8_LDI_PM,
2473
2474/* This is a 16 bit reloc for the AVR that stores 8 bit value (most high 8 bit
2475of command address) into 8 bit immediate value of LDI insn. */
2476 BFD_RELOC_AVR_HH8_LDI_PM,
2477
2478/* This is a 16 bit reloc for the AVR that stores negated 8 bit value
2479(usually command address) into 8 bit immediate value of SUBI insn. */
2480 BFD_RELOC_AVR_LO8_LDI_PM_NEG,
2481
2482/* This is a 16 bit reloc for the AVR that stores negated 8 bit value
2483(high 8 bit of 16 bit command address) into 8 bit immediate value
2484of SUBI insn. */
2485 BFD_RELOC_AVR_HI8_LDI_PM_NEG,
2486
2487/* This is a 16 bit reloc for the AVR that stores negated 8 bit value
2488(high 6 bit of 22 bit command address) into 8 bit immediate
2489value of SUBI insn. */
2490 BFD_RELOC_AVR_HH8_LDI_PM_NEG,
2491
2492/* This is a 32 bit reloc for the AVR that stores 23 bit value
2493into 22 bits. */
2494 BFD_RELOC_AVR_CALL,
2495
2496/* These two relocations are used by the linker to determine which of
252b5132
RH
2497the entries in a C++ virtual function table are actually used. When
2498the --gc-sections option is given, the linker will zero out the entries
2499that are not used, so that the code for those functions need not be
2500included in the output.
2501
2502VTABLE_INHERIT is a zero-space relocation used to describe to the
2503linker the inheritence tree of a C++ virtual function table. The
2504relocation's symbol should be the parent class' vtable, and the
2505relocation should be located at the child vtable.
2506
2507VTABLE_ENTRY is a zero-space relocation that describes the use of a
2508virtual function table entry. The reloc's symbol should refer to the
2509table of the class mentioned in the code. Off of that base, an offset
adde6300 2510describes the entry that is being used. For Rela hosts, this offset
252b5132
RH
2511is stored in the reloc's addend. For Rel hosts, we are forced to put
2512this offset in the reloc's section offset. */
2513 BFD_RELOC_VTABLE_INHERIT,
2514 BFD_RELOC_VTABLE_ENTRY,
800eeca4
JW
2515
2516/* Intel IA64 Relocations. */
2517 BFD_RELOC_IA64_IMM14,
2518 BFD_RELOC_IA64_IMM22,
2519 BFD_RELOC_IA64_IMM64,
2520 BFD_RELOC_IA64_DIR32MSB,
2521 BFD_RELOC_IA64_DIR32LSB,
2522 BFD_RELOC_IA64_DIR64MSB,
2523 BFD_RELOC_IA64_DIR64LSB,
2524 BFD_RELOC_IA64_GPREL22,
2525 BFD_RELOC_IA64_GPREL64I,
2526 BFD_RELOC_IA64_GPREL32MSB,
2527 BFD_RELOC_IA64_GPREL32LSB,
2528 BFD_RELOC_IA64_GPREL64MSB,
2529 BFD_RELOC_IA64_GPREL64LSB,
2530 BFD_RELOC_IA64_LTOFF22,
2531 BFD_RELOC_IA64_LTOFF64I,
2532 BFD_RELOC_IA64_PLTOFF22,
2533 BFD_RELOC_IA64_PLTOFF64I,
2534 BFD_RELOC_IA64_PLTOFF64MSB,
2535 BFD_RELOC_IA64_PLTOFF64LSB,
2536 BFD_RELOC_IA64_FPTR64I,
2537 BFD_RELOC_IA64_FPTR32MSB,
2538 BFD_RELOC_IA64_FPTR32LSB,
2539 BFD_RELOC_IA64_FPTR64MSB,
2540 BFD_RELOC_IA64_FPTR64LSB,
2541 BFD_RELOC_IA64_PCREL21B,
748abff6 2542 BFD_RELOC_IA64_PCREL21BI,
800eeca4
JW
2543 BFD_RELOC_IA64_PCREL21M,
2544 BFD_RELOC_IA64_PCREL21F,
748abff6
RH
2545 BFD_RELOC_IA64_PCREL22,
2546 BFD_RELOC_IA64_PCREL60B,
2547 BFD_RELOC_IA64_PCREL64I,
800eeca4
JW
2548 BFD_RELOC_IA64_PCREL32MSB,
2549 BFD_RELOC_IA64_PCREL32LSB,
2550 BFD_RELOC_IA64_PCREL64MSB,
2551 BFD_RELOC_IA64_PCREL64LSB,
2552 BFD_RELOC_IA64_LTOFF_FPTR22,
2553 BFD_RELOC_IA64_LTOFF_FPTR64I,
2554 BFD_RELOC_IA64_LTOFF_FPTR64MSB,
2555 BFD_RELOC_IA64_LTOFF_FPTR64LSB,
2556 BFD_RELOC_IA64_SEGBASE,
2557 BFD_RELOC_IA64_SEGREL32MSB,
2558 BFD_RELOC_IA64_SEGREL32LSB,
2559 BFD_RELOC_IA64_SEGREL64MSB,
2560 BFD_RELOC_IA64_SEGREL64LSB,
2561 BFD_RELOC_IA64_SECREL32MSB,
2562 BFD_RELOC_IA64_SECREL32LSB,
2563 BFD_RELOC_IA64_SECREL64MSB,
2564 BFD_RELOC_IA64_SECREL64LSB,
2565 BFD_RELOC_IA64_REL32MSB,
2566 BFD_RELOC_IA64_REL32LSB,
2567 BFD_RELOC_IA64_REL64MSB,
2568 BFD_RELOC_IA64_REL64LSB,
2569 BFD_RELOC_IA64_LTV32MSB,
2570 BFD_RELOC_IA64_LTV32LSB,
2571 BFD_RELOC_IA64_LTV64MSB,
2572 BFD_RELOC_IA64_LTV64LSB,
2573 BFD_RELOC_IA64_IPLTMSB,
2574 BFD_RELOC_IA64_IPLTLSB,
2575 BFD_RELOC_IA64_EPLTMSB,
2576 BFD_RELOC_IA64_EPLTLSB,
2577 BFD_RELOC_IA64_COPY,
2578 BFD_RELOC_IA64_TPREL22,
2579 BFD_RELOC_IA64_TPREL64MSB,
2580 BFD_RELOC_IA64_TPREL64LSB,
2581 BFD_RELOC_IA64_LTOFF_TP22,
2582 BFD_RELOC_IA64_LTOFF22X,
2583 BFD_RELOC_IA64_LDXMOV,
60bcf0fa
NC
2584
2585/* Motorola 68HC11 reloc.
2586This is the 8 bits high part of an absolute address. */
2587 BFD_RELOC_M68HC11_HI8,
2588
2589/* Motorola 68HC11 reloc.
2590This is the 8 bits low part of an absolute address. */
2591 BFD_RELOC_M68HC11_LO8,
2592
2593/* Motorola 68HC11 reloc.
2594This is the 3 bits of a value. */
2595 BFD_RELOC_M68HC11_3B,
06c15ad7
HPN
2596
2597/* These relocs are only used within the CRIS assembler. They are not
2598(at present) written to any object files. */
2599 BFD_RELOC_CRIS_BDISP8,
2600 BFD_RELOC_CRIS_UNSIGNED_5,
2601 BFD_RELOC_CRIS_SIGNED_6,
2602 BFD_RELOC_CRIS_UNSIGNED_6,
2603 BFD_RELOC_CRIS_UNSIGNED_4,
a87fdb8d
JE
2604
2605/* Intel i860 Relocations. */
2606 BFD_RELOC_860_COPY,
2607 BFD_RELOC_860_GLOB_DAT,
2608 BFD_RELOC_860_JUMP_SLOT,
2609 BFD_RELOC_860_RELATIVE,
2610 BFD_RELOC_860_PC26,
2611 BFD_RELOC_860_PLT26,
2612 BFD_RELOC_860_PC16,
2613 BFD_RELOC_860_LOW0,
2614 BFD_RELOC_860_SPLIT0,
2615 BFD_RELOC_860_LOW1,
2616 BFD_RELOC_860_SPLIT1,
2617 BFD_RELOC_860_LOW2,
2618 BFD_RELOC_860_SPLIT2,
2619 BFD_RELOC_860_LOW3,
2620 BFD_RELOC_860_LOGOT0,
2621 BFD_RELOC_860_SPGOT0,
2622 BFD_RELOC_860_LOGOT1,
2623 BFD_RELOC_860_SPGOT1,
2624 BFD_RELOC_860_LOGOTOFF0,
2625 BFD_RELOC_860_SPGOTOFF0,
2626 BFD_RELOC_860_LOGOTOFF1,
2627 BFD_RELOC_860_SPGOTOFF1,
2628 BFD_RELOC_860_LOGOTOFF2,
2629 BFD_RELOC_860_LOGOTOFF3,
2630 BFD_RELOC_860_LOPC,
2631 BFD_RELOC_860_HIGHADJ,
2632 BFD_RELOC_860_HAGOT,
2633 BFD_RELOC_860_HAGOTOFF,
2634 BFD_RELOC_860_HAPC,
2635 BFD_RELOC_860_HIGH,
2636 BFD_RELOC_860_HIGOT,
2637 BFD_RELOC_860_HIGOTOFF,
252b5132
RH
2638 BFD_RELOC_UNUSED };
2639typedef enum bfd_reloc_code_real bfd_reloc_code_real_type;
2640reloc_howto_type *
2641
2642bfd_reloc_type_lookup PARAMS ((bfd *abfd, bfd_reloc_code_real_type code));
2643
2644const char *
2645bfd_get_reloc_code_name PARAMS ((bfd_reloc_code_real_type code));
2646
2647
2648typedef struct symbol_cache_entry
2649{
52b219b5 2650 /* A pointer to the BFD which owns the symbol. This information
252b5132
RH
2651 is necessary so that a back end can work out what additional
2652 information (invisible to the application writer) is carried
2653 with the symbol.
2654
2655 This field is *almost* redundant, since you can use section->owner
2656 instead, except that some symbols point to the global sections
2657 bfd_{abs,com,und}_section. This could be fixed by making
2658 these globals be per-bfd (or per-target-flavor). FIXME. */
2659
52b219b5 2660 struct _bfd *the_bfd; /* Use bfd_asymbol_bfd(sym) to access this field. */
252b5132 2661
52b219b5 2662 /* The text of the symbol. The name is left alone, and not copied; the
252b5132
RH
2663 application may not alter it. */
2664 CONST char *name;
2665
52b219b5 2666 /* The value of the symbol. This really should be a union of a
252b5132
RH
2667 numeric value with a pointer, since some flags indicate that
2668 a pointer to another symbol is stored here. */
2669 symvalue value;
2670
52b219b5 2671 /* Attributes of a symbol: */
252b5132
RH
2672
2673#define BSF_NO_FLAGS 0x00
2674
52b219b5 2675 /* The symbol has local scope; <<static>> in <<C>>. The value
252b5132
RH
2676 is the offset into the section of the data. */
2677#define BSF_LOCAL 0x01
2678
52b219b5 2679 /* The symbol has global scope; initialized data in <<C>>. The
252b5132
RH
2680 value is the offset into the section of the data. */
2681#define BSF_GLOBAL 0x02
2682
52b219b5 2683 /* The symbol has global scope and is exported. The value is
252b5132 2684 the offset into the section of the data. */
52b219b5 2685#define BSF_EXPORT BSF_GLOBAL /* no real difference */
252b5132 2686
52b219b5 2687 /* A normal C symbol would be one of:
252b5132
RH
2688 <<BSF_LOCAL>>, <<BSF_FORT_COMM>>, <<BSF_UNDEFINED>> or
2689 <<BSF_GLOBAL>> */
2690
52b219b5 2691 /* The symbol is a debugging record. The value has an arbitary
703153b5 2692 meaning, unless BSF_DEBUGGING_RELOC is also set. */
252b5132
RH
2693#define BSF_DEBUGGING 0x08
2694
52b219b5 2695 /* The symbol denotes a function entry point. Used in ELF,
252b5132
RH
2696 perhaps others someday. */
2697#define BSF_FUNCTION 0x10
2698
52b219b5 2699 /* Used by the linker. */
252b5132
RH
2700#define BSF_KEEP 0x20
2701#define BSF_KEEP_G 0x40
2702
52b219b5 2703 /* A weak global symbol, overridable without warnings by
252b5132
RH
2704 a regular global symbol of the same name. */
2705#define BSF_WEAK 0x80
2706
52b219b5 2707 /* This symbol was created to point to a section, e.g. ELF's
252b5132
RH
2708 STT_SECTION symbols. */
2709#define BSF_SECTION_SYM 0x100
2710
52b219b5 2711 /* The symbol used to be a common symbol, but now it is
252b5132
RH
2712 allocated. */
2713#define BSF_OLD_COMMON 0x200
2714
52b219b5 2715 /* The default value for common data. */
252b5132
RH
2716#define BFD_FORT_COMM_DEFAULT_VALUE 0
2717
52b219b5 2718 /* In some files the type of a symbol sometimes alters its
252b5132
RH
2719 location in an output file - ie in coff a <<ISFCN>> symbol
2720 which is also <<C_EXT>> symbol appears where it was
2721 declared and not at the end of a section. This bit is set
2722 by the target BFD part to convey this information. */
2723
2724#define BSF_NOT_AT_END 0x400
2725
52b219b5 2726 /* Signal that the symbol is the label of constructor section. */
252b5132
RH
2727#define BSF_CONSTRUCTOR 0x800
2728
52b219b5 2729 /* Signal that the symbol is a warning symbol. The name is a
252b5132
RH
2730 warning. The name of the next symbol is the one to warn about;
2731 if a reference is made to a symbol with the same name as the next
2732 symbol, a warning is issued by the linker. */
2733#define BSF_WARNING 0x1000
2734
52b219b5 2735 /* Signal that the symbol is indirect. This symbol is an indirect
252b5132
RH
2736 pointer to the symbol with the same name as the next symbol. */
2737#define BSF_INDIRECT 0x2000
2738
52b219b5 2739 /* BSF_FILE marks symbols that contain a file name. This is used
252b5132
RH
2740 for ELF STT_FILE symbols. */
2741#define BSF_FILE 0x4000
2742
52b219b5 2743 /* Symbol is from dynamic linking information. */
252b5132
RH
2744#define BSF_DYNAMIC 0x8000
2745
52b219b5 2746 /* The symbol denotes a data object. Used in ELF, and perhaps
252b5132
RH
2747 others someday. */
2748#define BSF_OBJECT 0x10000
2749
52b219b5 2750 /* This symbol is a debugging symbol. The value is the offset
703153b5
ILT
2751 into the section of the data. BSF_DEBUGGING should be set
2752 as well. */
2753#define BSF_DEBUGGING_RELOC 0x20000
2754
252b5132
RH
2755 flagword flags;
2756
52b219b5 2757 /* A pointer to the section to which this symbol is
252b5132
RH
2758 relative. This will always be non NULL, there are special
2759 sections for undefined and absolute symbols. */
2760 struct sec *section;
2761
52b219b5 2762 /* Back end special data. */
252b5132
RH
2763 union
2764 {
2765 PTR p;
2766 bfd_vma i;
2767 } udata;
2768
2769} asymbol;
2770#define bfd_get_symtab_upper_bound(abfd) \
2771 BFD_SEND (abfd, _bfd_get_symtab_upper_bound, (abfd))
2772boolean
2773bfd_is_local_label PARAMS ((bfd *abfd, asymbol *sym));
2774
2775boolean
2776bfd_is_local_label_name PARAMS ((bfd *abfd, const char *name));
2777
2778#define bfd_is_local_label_name(abfd, name) \
2779 BFD_SEND (abfd, _bfd_is_local_label_name, (abfd, name))
2780#define bfd_canonicalize_symtab(abfd, location) \
2781 BFD_SEND (abfd, _bfd_canonicalize_symtab,\
2782 (abfd, location))
2783boolean
2784bfd_set_symtab PARAMS ((bfd *abfd, asymbol **location, unsigned int count));
2785
2786void
2787bfd_print_symbol_vandf PARAMS ((PTR file, asymbol *symbol));
2788
2789#define bfd_make_empty_symbol(abfd) \
2790 BFD_SEND (abfd, _bfd_make_empty_symbol, (abfd))
2791#define bfd_make_debug_symbol(abfd,ptr,size) \
2792 BFD_SEND (abfd, _bfd_make_debug_symbol, (abfd, ptr, size))
2793int
2794bfd_decode_symclass PARAMS ((asymbol *symbol));
2795
7f8d5fc9
ILT
2796boolean
2797bfd_is_undefined_symclass PARAMS ((int symclass));
fad6fcbb 2798
252b5132
RH
2799void
2800bfd_symbol_info PARAMS ((asymbol *symbol, symbol_info *ret));
2801
2802boolean
2803bfd_copy_private_symbol_data PARAMS ((bfd *ibfd, asymbol *isym, bfd *obfd, asymbol *osym));
2804
2805#define bfd_copy_private_symbol_data(ibfd, isymbol, obfd, osymbol) \
2806 BFD_SEND (obfd, _bfd_copy_private_symbol_data, \
2807 (ibfd, isymbol, obfd, osymbol))
2808struct _bfd
2809{
52b219b5 2810 /* The filename the application opened the BFD with. */
252b5132
RH
2811 CONST char *filename;
2812
52b219b5 2813 /* A pointer to the target jump table. */
252b5132
RH
2814 const struct bfd_target *xvec;
2815
52b219b5 2816 /* To avoid dragging too many header files into every file that
252b5132
RH
2817 includes `<<bfd.h>>', IOSTREAM has been declared as a "char
2818 *", and MTIME as a "long". Their correct types, to which they
2819 are cast when used, are "FILE *" and "time_t". The iostream
2820 is the result of an fopen on the filename. However, if the
2821 BFD_IN_MEMORY flag is set, then iostream is actually a pointer
2822 to a bfd_in_memory struct. */
2823 PTR iostream;
2824
52b219b5 2825 /* Is the file descriptor being cached? That is, can it be closed as
252b5132
RH
2826 needed, and re-opened when accessed later? */
2827
2828 boolean cacheable;
2829
52b219b5 2830 /* Marks whether there was a default target specified when the
252b5132
RH
2831 BFD was opened. This is used to select which matching algorithm
2832 to use to choose the back end. */
2833
2834 boolean target_defaulted;
2835
52b219b5 2836 /* The caching routines use these to maintain a
252b5132
RH
2837 least-recently-used list of BFDs */
2838
2839 struct _bfd *lru_prev, *lru_next;
2840
52b219b5 2841 /* When a file is closed by the caching routines, BFD retains
252b5132
RH
2842 state information on the file here: */
2843
2844 file_ptr where;
2845
52b219b5 2846 /* and here: (``once'' means at least once) */
252b5132
RH
2847
2848 boolean opened_once;
2849
52b219b5 2850 /* Set if we have a locally maintained mtime value, rather than
252b5132
RH
2851 getting it from the file each time: */
2852
2853 boolean mtime_set;
2854
52b219b5 2855 /* File modified time, if mtime_set is true: */
252b5132
RH
2856
2857 long mtime;
2858
52b219b5 2859 /* Reserved for an unimplemented file locking extension.*/
252b5132
RH
2860
2861 int ifd;
2862
52b219b5 2863 /* The format which belongs to the BFD. (object, core, etc.) */
252b5132
RH
2864
2865 bfd_format format;
2866
52b219b5 2867 /* The direction the BFD was opened with*/
252b5132
RH
2868
2869 enum bfd_direction {no_direction = 0,
2870 read_direction = 1,
2871 write_direction = 2,
2872 both_direction = 3} direction;
2873
52b219b5 2874 /* Format_specific flags*/
252b5132
RH
2875
2876 flagword flags;
2877
52b219b5 2878 /* Currently my_archive is tested before adding origin to
252b5132
RH
2879 anything. I believe that this can become always an add of
2880 origin, with origin set to 0 for non archive files. */
2881
2882 file_ptr origin;
2883
52b219b5 2884 /* Remember when output has begun, to stop strange things
252b5132
RH
2885 from happening. */
2886 boolean output_has_begun;
2887
52b219b5 2888 /* Pointer to linked list of sections*/
252b5132
RH
2889 struct sec *sections;
2890
52b219b5 2891 /* The number of sections */
252b5132
RH
2892 unsigned int section_count;
2893
52b219b5 2894 /* Stuff only useful for object files:
252b5132
RH
2895 The start address. */
2896 bfd_vma start_address;
2897
52b219b5 2898 /* Used for input and output*/
252b5132
RH
2899 unsigned int symcount;
2900
52b219b5 2901 /* Symbol table for output BFD (with symcount entries) */
252b5132
RH
2902 struct symbol_cache_entry **outsymbols;
2903
52b219b5 2904 /* Pointer to structure which contains architecture information*/
252b5132
RH
2905 const struct bfd_arch_info *arch_info;
2906
52b219b5 2907 /* Stuff only useful for archives:*/
252b5132 2908 PTR arelt_data;
52b219b5
AM
2909 struct _bfd *my_archive; /* The containing archive BFD. */
2910 struct _bfd *next; /* The next BFD in the archive. */
2911 struct _bfd *archive_head; /* The first BFD in the archive. */
252b5132
RH
2912 boolean has_armap;
2913
52b219b5 2914 /* A chain of BFD structures involved in a link. */
252b5132
RH
2915 struct _bfd *link_next;
2916
52b219b5 2917 /* A field used by _bfd_generic_link_add_archive_symbols. This will
252b5132
RH
2918 be used only for archive elements. */
2919 int archive_pass;
2920
52b219b5 2921 /* Used by the back end to hold private data. */
252b5132
RH
2922
2923 union
2924 {
2925 struct aout_data_struct *aout_data;
2926 struct artdata *aout_ar_data;
2927 struct _oasys_data *oasys_obj_data;
2928 struct _oasys_ar_data *oasys_ar_data;
2929 struct coff_tdata *coff_obj_data;
2930 struct pe_tdata *pe_obj_data;
2931 struct xcoff_tdata *xcoff_obj_data;
2932 struct ecoff_tdata *ecoff_obj_data;
2933 struct ieee_data_struct *ieee_data;
2934 struct ieee_ar_data_struct *ieee_ar_data;
2935 struct srec_data_struct *srec_data;
2936 struct ihex_data_struct *ihex_data;
2937 struct tekhex_data_struct *tekhex_data;
2938 struct elf_obj_tdata *elf_obj_data;
2939 struct nlm_obj_tdata *nlm_obj_data;
2940 struct bout_data_struct *bout_data;
2941 struct sun_core_struct *sun_core_data;
2942 struct sco5_core_struct *sco5_core_data;
2943 struct trad_core_struct *trad_core_data;
2944 struct som_data_struct *som_data;
2945 struct hpux_core_struct *hpux_core_data;
2946 struct hppabsd_core_struct *hppabsd_core_data;
2947 struct sgi_core_struct *sgi_core_data;
2948 struct lynx_core_struct *lynx_core_data;
2949 struct osf_core_struct *osf_core_data;
2950 struct cisco_core_struct *cisco_core_data;
2951 struct versados_data_struct *versados_data;
2952 struct netbsd_core_struct *netbsd_core_data;
2953 PTR any;
2954 } tdata;
2955
52b219b5 2956 /* Used by the application to hold private data*/
252b5132
RH
2957 PTR usrdata;
2958
52b219b5 2959 /* Where all the allocated stuff under this BFD goes. This is a
252b5132
RH
2960 struct objalloc *, but we use PTR to avoid requiring the inclusion of
2961 objalloc.h. */
2962 PTR memory;
2963};
2964
2965typedef enum bfd_error
2966{
2967 bfd_error_no_error = 0,
2968 bfd_error_system_call,
2969 bfd_error_invalid_target,
2970 bfd_error_wrong_format,
2971 bfd_error_invalid_operation,
2972 bfd_error_no_memory,
2973 bfd_error_no_symbols,
2974 bfd_error_no_armap,
2975 bfd_error_no_more_archived_files,
2976 bfd_error_malformed_archive,
2977 bfd_error_file_not_recognized,
2978 bfd_error_file_ambiguously_recognized,
2979 bfd_error_no_contents,
2980 bfd_error_nonrepresentable_section,
2981 bfd_error_no_debug_section,
2982 bfd_error_bad_value,
2983 bfd_error_file_truncated,
2984 bfd_error_file_too_big,
2985 bfd_error_invalid_error_code
2986} bfd_error_type;
2987
2988bfd_error_type
2989bfd_get_error PARAMS ((void));
2990
2991void
2992bfd_set_error PARAMS ((bfd_error_type error_tag));
2993
2994CONST char *
2995bfd_errmsg PARAMS ((bfd_error_type error_tag));
2996
2997void
2998bfd_perror PARAMS ((CONST char *message));
2999
3000typedef void (*bfd_error_handler_type) PARAMS ((const char *, ...));
3001
3002bfd_error_handler_type
3003bfd_set_error_handler PARAMS ((bfd_error_handler_type));
3004
3005void
3006bfd_set_error_program_name PARAMS ((const char *));
3007
3008bfd_error_handler_type
3009bfd_get_error_handler PARAMS ((void));
3010
3011long
3012bfd_get_reloc_upper_bound PARAMS ((bfd *abfd, asection *sect));
3013
3014long
3015bfd_canonicalize_reloc
3016 PARAMS ((bfd *abfd,
3017 asection *sec,
3018 arelent **loc,
3019 asymbol **syms));
3020
3021void
3022bfd_set_reloc
3023 PARAMS ((bfd *abfd, asection *sec, arelent **rel, unsigned int count)
3024
3025 );
3026
3027boolean
3028bfd_set_file_flags PARAMS ((bfd *abfd, flagword flags));
3029
125c4a69
NC
3030int
3031bfd_get_arch_size PARAMS ((bfd *abfd));
3032
3033int
3034bfd_get_sign_extend_vma PARAMS ((bfd *abfd));
3035
252b5132
RH
3036boolean
3037bfd_set_start_address PARAMS ((bfd *abfd, bfd_vma vma));
3038
3039long
3040bfd_get_mtime PARAMS ((bfd *abfd));
3041
3042long
3043bfd_get_size PARAMS ((bfd *abfd));
3044
3045int
3046bfd_get_gp_size PARAMS ((bfd *abfd));
3047
3048void
3049bfd_set_gp_size PARAMS ((bfd *abfd, int i));
3050
3051bfd_vma
3052bfd_scan_vma PARAMS ((CONST char *string, CONST char **end, int base));
3053
3054boolean
3055bfd_copy_private_bfd_data PARAMS ((bfd *ibfd, bfd *obfd));
3056
3057#define bfd_copy_private_bfd_data(ibfd, obfd) \
3058 BFD_SEND (obfd, _bfd_copy_private_bfd_data, \
3059 (ibfd, obfd))
3060boolean
3061bfd_merge_private_bfd_data PARAMS ((bfd *ibfd, bfd *obfd));
3062
3063#define bfd_merge_private_bfd_data(ibfd, obfd) \
3064 BFD_SEND (obfd, _bfd_merge_private_bfd_data, \
3065 (ibfd, obfd))
3066boolean
3067bfd_set_private_flags PARAMS ((bfd *abfd, flagword flags));
3068
3069#define bfd_set_private_flags(abfd, flags) \
3070 BFD_SEND (abfd, _bfd_set_private_flags, \
3071 (abfd, flags))
3072#define bfd_sizeof_headers(abfd, reloc) \
3073 BFD_SEND (abfd, _bfd_sizeof_headers, (abfd, reloc))
3074
3075#define bfd_find_nearest_line(abfd, sec, syms, off, file, func, line) \
3076 BFD_SEND (abfd, _bfd_find_nearest_line, (abfd, sec, syms, off, file, func, line))
3077
52b219b5 3078 /* Do these three do anything useful at all, for any back end? */
252b5132
RH
3079#define bfd_debug_info_start(abfd) \
3080 BFD_SEND (abfd, _bfd_debug_info_start, (abfd))
3081
3082#define bfd_debug_info_end(abfd) \
3083 BFD_SEND (abfd, _bfd_debug_info_end, (abfd))
3084
3085#define bfd_debug_info_accumulate(abfd, section) \
3086 BFD_SEND (abfd, _bfd_debug_info_accumulate, (abfd, section))
3087
3088
3089#define bfd_stat_arch_elt(abfd, stat) \
3090 BFD_SEND (abfd, _bfd_stat_arch_elt,(abfd, stat))
3091
3092#define bfd_update_armap_timestamp(abfd) \
3093 BFD_SEND (abfd, _bfd_update_armap_timestamp, (abfd))
3094
3095#define bfd_set_arch_mach(abfd, arch, mach)\
3096 BFD_SEND ( abfd, _bfd_set_arch_mach, (abfd, arch, mach))
3097
3098#define bfd_relax_section(abfd, section, link_info, again) \
3099 BFD_SEND (abfd, _bfd_relax_section, (abfd, section, link_info, again))
3100
3101#define bfd_gc_sections(abfd, link_info) \
3102 BFD_SEND (abfd, _bfd_gc_sections, (abfd, link_info))
3103
3104#define bfd_link_hash_table_create(abfd) \
3105 BFD_SEND (abfd, _bfd_link_hash_table_create, (abfd))
3106
3107#define bfd_link_add_symbols(abfd, info) \
3108 BFD_SEND (abfd, _bfd_link_add_symbols, (abfd, info))
3109
3110#define bfd_final_link(abfd, info) \
3111 BFD_SEND (abfd, _bfd_final_link, (abfd, info))
3112
3113#define bfd_free_cached_info(abfd) \
3114 BFD_SEND (abfd, _bfd_free_cached_info, (abfd))
3115
3116#define bfd_get_dynamic_symtab_upper_bound(abfd) \
3117 BFD_SEND (abfd, _bfd_get_dynamic_symtab_upper_bound, (abfd))
3118
3119#define bfd_print_private_bfd_data(abfd, file)\
3120 BFD_SEND (abfd, _bfd_print_private_bfd_data, (abfd, file))
3121
3122#define bfd_canonicalize_dynamic_symtab(abfd, asymbols) \
3123 BFD_SEND (abfd, _bfd_canonicalize_dynamic_symtab, (abfd, asymbols))
3124
3125#define bfd_get_dynamic_reloc_upper_bound(abfd) \
3126 BFD_SEND (abfd, _bfd_get_dynamic_reloc_upper_bound, (abfd))
3127
3128#define bfd_canonicalize_dynamic_reloc(abfd, arels, asyms) \
3129 BFD_SEND (abfd, _bfd_canonicalize_dynamic_reloc, (abfd, arels, asyms))
3130
3131extern bfd_byte *bfd_get_relocated_section_contents
3132 PARAMS ((bfd *, struct bfd_link_info *,
3133 struct bfd_link_order *, bfd_byte *,
3134 boolean, asymbol **));
3135
3136symindex
3137bfd_get_next_mapent PARAMS ((bfd *abfd, symindex previous, carsym **sym));
3138
3139boolean
3140bfd_set_archive_head PARAMS ((bfd *output, bfd *new_head));
3141
3142bfd *
3143bfd_openr_next_archived_file PARAMS ((bfd *archive, bfd *previous));
3144
3145CONST char *
3146bfd_core_file_failing_command PARAMS ((bfd *abfd));
3147
3148int
3149bfd_core_file_failing_signal PARAMS ((bfd *abfd));
3150
3151boolean
3152core_file_matches_executable_p
3153 PARAMS ((bfd *core_bfd, bfd *exec_bfd));
3154
3155#define BFD_SEND(bfd, message, arglist) \
3156 ((*((bfd)->xvec->message)) arglist)
3157
3158#ifdef DEBUG_BFD_SEND
3159#undef BFD_SEND
3160#define BFD_SEND(bfd, message, arglist) \
3161 (((bfd) && (bfd)->xvec && (bfd)->xvec->message) ? \
3162 ((*((bfd)->xvec->message)) arglist) : \
3163 (bfd_assert (__FILE__,__LINE__), NULL))
3164#endif
3165#define BFD_SEND_FMT(bfd, message, arglist) \
3166 (((bfd)->xvec->message[(int)((bfd)->format)]) arglist)
3167
3168#ifdef DEBUG_BFD_SEND
3169#undef BFD_SEND_FMT
3170#define BFD_SEND_FMT(bfd, message, arglist) \
3171 (((bfd) && (bfd)->xvec && (bfd)->xvec->message) ? \
3172 (((bfd)->xvec->message[(int)((bfd)->format)]) arglist) : \
3173 (bfd_assert (__FILE__,__LINE__), NULL))
3174#endif
3175enum bfd_flavour {
3176 bfd_target_unknown_flavour,
3177 bfd_target_aout_flavour,
3178 bfd_target_coff_flavour,
3179 bfd_target_ecoff_flavour,
9bd09e22 3180 bfd_target_xcoff_flavour,
252b5132
RH
3181 bfd_target_elf_flavour,
3182 bfd_target_ieee_flavour,
3183 bfd_target_nlm_flavour,
3184 bfd_target_oasys_flavour,
3185 bfd_target_tekhex_flavour,
3186 bfd_target_srec_flavour,
3187 bfd_target_ihex_flavour,
3188 bfd_target_som_flavour,
3189 bfd_target_os9k_flavour,
3190 bfd_target_versados_flavour,
3191 bfd_target_msdos_flavour,
3192 bfd_target_ovax_flavour,
3193 bfd_target_evax_flavour
3194};
3195
3196enum bfd_endian { BFD_ENDIAN_BIG, BFD_ENDIAN_LITTLE, BFD_ENDIAN_UNKNOWN };
3197
52b219b5 3198/* Forward declaration. */
252b5132
RH
3199typedef struct bfd_link_info _bfd_link_info;
3200
3201typedef struct bfd_target
3202{
3203 char *name;
3204 enum bfd_flavour flavour;
3205 enum bfd_endian byteorder;
3206 enum bfd_endian header_byteorder;
3207 flagword object_flags;
3208 flagword section_flags;
3209 char symbol_leading_char;
3210 char ar_pad_char;
3211 unsigned short ar_max_namelen;
3212 bfd_vma (*bfd_getx64) PARAMS ((const bfd_byte *));
3213 bfd_signed_vma (*bfd_getx_signed_64) PARAMS ((const bfd_byte *));
3214 void (*bfd_putx64) PARAMS ((bfd_vma, bfd_byte *));
3215 bfd_vma (*bfd_getx32) PARAMS ((const bfd_byte *));
3216 bfd_signed_vma (*bfd_getx_signed_32) PARAMS ((const bfd_byte *));
3217 void (*bfd_putx32) PARAMS ((bfd_vma, bfd_byte *));
3218 bfd_vma (*bfd_getx16) PARAMS ((const bfd_byte *));
3219 bfd_signed_vma (*bfd_getx_signed_16) PARAMS ((const bfd_byte *));
3220 void (*bfd_putx16) PARAMS ((bfd_vma, bfd_byte *));
3221 bfd_vma (*bfd_h_getx64) PARAMS ((const bfd_byte *));
3222 bfd_signed_vma (*bfd_h_getx_signed_64) PARAMS ((const bfd_byte *));
3223 void (*bfd_h_putx64) PARAMS ((bfd_vma, bfd_byte *));
3224 bfd_vma (*bfd_h_getx32) PARAMS ((const bfd_byte *));
3225 bfd_signed_vma (*bfd_h_getx_signed_32) PARAMS ((const bfd_byte *));
3226 void (*bfd_h_putx32) PARAMS ((bfd_vma, bfd_byte *));
3227 bfd_vma (*bfd_h_getx16) PARAMS ((const bfd_byte *));
3228 bfd_signed_vma (*bfd_h_getx_signed_16) PARAMS ((const bfd_byte *));
3229 void (*bfd_h_putx16) PARAMS ((bfd_vma, bfd_byte *));
3230 const struct bfd_target *(*_bfd_check_format[bfd_type_end]) PARAMS ((bfd *));
3231 boolean (*_bfd_set_format[bfd_type_end]) PARAMS ((bfd *));
3232 boolean (*_bfd_write_contents[bfd_type_end]) PARAMS ((bfd *));
3233
52b219b5 3234 /* Generic entry points. */
252b5132
RH
3235#define BFD_JUMP_TABLE_GENERIC(NAME)\
3236CAT(NAME,_close_and_cleanup),\
3237CAT(NAME,_bfd_free_cached_info),\
3238CAT(NAME,_new_section_hook),\
3239CAT(NAME,_get_section_contents),\
3240CAT(NAME,_get_section_contents_in_window)
3241
52b219b5 3242 /* Called when the BFD is being closed to do any necessary cleanup. */
252b5132 3243 boolean (*_close_and_cleanup) PARAMS ((bfd *));
52b219b5 3244 /* Ask the BFD to free all cached information. */
252b5132 3245 boolean (*_bfd_free_cached_info) PARAMS ((bfd *));
52b219b5 3246 /* Called when a new section is created. */
252b5132 3247 boolean (*_new_section_hook) PARAMS ((bfd *, sec_ptr));
52b219b5 3248 /* Read the contents of a section. */
252b5132
RH
3249 boolean (*_bfd_get_section_contents) PARAMS ((bfd *, sec_ptr, PTR,
3250 file_ptr, bfd_size_type));
3251 boolean (*_bfd_get_section_contents_in_window)
3252 PARAMS ((bfd *, sec_ptr, bfd_window *,
3253 file_ptr, bfd_size_type));
3254
52b219b5 3255 /* Entry points to copy private data. */
252b5132
RH
3256#define BFD_JUMP_TABLE_COPY(NAME)\
3257CAT(NAME,_bfd_copy_private_bfd_data),\
3258CAT(NAME,_bfd_merge_private_bfd_data),\
3259CAT(NAME,_bfd_copy_private_section_data),\
3260CAT(NAME,_bfd_copy_private_symbol_data),\
3261CAT(NAME,_bfd_set_private_flags),\
3262CAT(NAME,_bfd_print_private_bfd_data)\
52b219b5 3263 /* Called to copy BFD general private data from one object file
252b5132
RH
3264 to another. */
3265 boolean (*_bfd_copy_private_bfd_data) PARAMS ((bfd *, bfd *));
52b219b5 3266 /* Called to merge BFD general private data from one object file
252b5132
RH
3267 to a common output file when linking. */
3268 boolean (*_bfd_merge_private_bfd_data) PARAMS ((bfd *, bfd *));
52b219b5 3269 /* Called to copy BFD private section data from one object file
252b5132
RH
3270 to another. */
3271 boolean (*_bfd_copy_private_section_data) PARAMS ((bfd *, sec_ptr,
3272 bfd *, sec_ptr));
52b219b5 3273 /* Called to copy BFD private symbol data from one symbol
252b5132
RH
3274 to another. */
3275 boolean (*_bfd_copy_private_symbol_data) PARAMS ((bfd *, asymbol *,
3276 bfd *, asymbol *));
52b219b5 3277 /* Called to set private backend flags */
252b5132
RH
3278 boolean (*_bfd_set_private_flags) PARAMS ((bfd *, flagword));
3279
52b219b5 3280 /* Called to print private BFD data */
252b5132
RH
3281 boolean (*_bfd_print_private_bfd_data) PARAMS ((bfd *, PTR));
3282
52b219b5 3283 /* Core file entry points. */
252b5132
RH
3284#define BFD_JUMP_TABLE_CORE(NAME)\
3285CAT(NAME,_core_file_failing_command),\
3286CAT(NAME,_core_file_failing_signal),\
3287CAT(NAME,_core_file_matches_executable_p)
3288 char * (*_core_file_failing_command) PARAMS ((bfd *));
3289 int (*_core_file_failing_signal) PARAMS ((bfd *));
3290 boolean (*_core_file_matches_executable_p) PARAMS ((bfd *, bfd *));
3291
52b219b5 3292 /* Archive entry points. */
252b5132
RH
3293#define BFD_JUMP_TABLE_ARCHIVE(NAME)\
3294CAT(NAME,_slurp_armap),\
3295CAT(NAME,_slurp_extended_name_table),\
3296CAT(NAME,_construct_extended_name_table),\
3297CAT(NAME,_truncate_arname),\
3298CAT(NAME,_write_armap),\
3299CAT(NAME,_read_ar_hdr),\
3300CAT(NAME,_openr_next_archived_file),\
3301CAT(NAME,_get_elt_at_index),\
3302CAT(NAME,_generic_stat_arch_elt),\
77fb9c28 3303CAT(NAME,_update_armap_timestamp)
252b5132
RH
3304 boolean (*_bfd_slurp_armap) PARAMS ((bfd *));
3305 boolean (*_bfd_slurp_extended_name_table) PARAMS ((bfd *));
3306 boolean (*_bfd_construct_extended_name_table)
3307 PARAMS ((bfd *, char **, bfd_size_type *, const char **));
3308 void (*_bfd_truncate_arname) PARAMS ((bfd *, CONST char *, char *));
3309 boolean (*write_armap) PARAMS ((bfd *arch,
3310 unsigned int elength,
3311 struct orl *map,
3312 unsigned int orl_count,
3313 int stridx));
77fb9c28 3314 PTR (*_bfd_read_ar_hdr_fn) PARAMS ((bfd *));
252b5132
RH
3315 bfd * (*openr_next_archived_file) PARAMS ((bfd *arch, bfd *prev));
3316#define bfd_get_elt_at_index(b,i) BFD_SEND(b, _bfd_get_elt_at_index, (b,i))
3317 bfd * (*_bfd_get_elt_at_index) PARAMS ((bfd *, symindex));
3318 int (*_bfd_stat_arch_elt) PARAMS ((bfd *, struct stat *));
3319 boolean (*_bfd_update_armap_timestamp) PARAMS ((bfd *));
77fb9c28 3320
52b219b5 3321 /* Entry points used for symbols. */
252b5132
RH
3322#define BFD_JUMP_TABLE_SYMBOLS(NAME)\
3323CAT(NAME,_get_symtab_upper_bound),\
3324CAT(NAME,_get_symtab),\
3325CAT(NAME,_make_empty_symbol),\
3326CAT(NAME,_print_symbol),\
3327CAT(NAME,_get_symbol_info),\
3328CAT(NAME,_bfd_is_local_label_name),\
3329CAT(NAME,_get_lineno),\
3330CAT(NAME,_find_nearest_line),\
3331CAT(NAME,_bfd_make_debug_symbol),\
3332CAT(NAME,_read_minisymbols),\
3333CAT(NAME,_minisymbol_to_symbol)
3334 long (*_bfd_get_symtab_upper_bound) PARAMS ((bfd *));
3335 long (*_bfd_canonicalize_symtab) PARAMS ((bfd *,
3336 struct symbol_cache_entry **));
3337 struct symbol_cache_entry *
3338 (*_bfd_make_empty_symbol) PARAMS ((bfd *));
3339 void (*_bfd_print_symbol) PARAMS ((bfd *, PTR,
3340 struct symbol_cache_entry *,
3341 bfd_print_symbol_type));
3342#define bfd_print_symbol(b,p,s,e) BFD_SEND(b, _bfd_print_symbol, (b,p,s,e))
3343 void (*_bfd_get_symbol_info) PARAMS ((bfd *,
3344 struct symbol_cache_entry *,
3345 symbol_info *));
3346#define bfd_get_symbol_info(b,p,e) BFD_SEND(b, _bfd_get_symbol_info, (b,p,e))
3347 boolean (*_bfd_is_local_label_name) PARAMS ((bfd *, const char *));
3348
3349 alent * (*_get_lineno) PARAMS ((bfd *, struct symbol_cache_entry *));
3350 boolean (*_bfd_find_nearest_line) PARAMS ((bfd *abfd,
3351 struct sec *section, struct symbol_cache_entry **symbols,
3352 bfd_vma offset, CONST char **file, CONST char **func,
3353 unsigned int *line));
52b219b5 3354 /* Back-door to allow format-aware applications to create debug symbols
252b5132
RH
3355 while using BFD for everything else. Currently used by the assembler
3356 when creating COFF files. */
3357 asymbol * (*_bfd_make_debug_symbol) PARAMS ((
3358 bfd *abfd,
3359 void *ptr,
3360 unsigned long size));
3361#define bfd_read_minisymbols(b, d, m, s) \
3362 BFD_SEND (b, _read_minisymbols, (b, d, m, s))
3363 long (*_read_minisymbols) PARAMS ((bfd *, boolean, PTR *,
3364 unsigned int *));
3365#define bfd_minisymbol_to_symbol(b, d, m, f) \
3366 BFD_SEND (b, _minisymbol_to_symbol, (b, d, m, f))
3367 asymbol *(*_minisymbol_to_symbol) PARAMS ((bfd *, boolean, const PTR,
3368 asymbol *));
3369
52b219b5 3370 /* Routines for relocs. */
252b5132
RH
3371#define BFD_JUMP_TABLE_RELOCS(NAME)\
3372CAT(NAME,_get_reloc_upper_bound),\
3373CAT(NAME,_canonicalize_reloc),\
3374CAT(NAME,_bfd_reloc_type_lookup)
3375 long (*_get_reloc_upper_bound) PARAMS ((bfd *, sec_ptr));
3376 long (*_bfd_canonicalize_reloc) PARAMS ((bfd *, sec_ptr, arelent **,
3377 struct symbol_cache_entry **));
52b219b5 3378 /* See documentation on reloc types. */
252b5132
RH
3379 reloc_howto_type *
3380 (*reloc_type_lookup) PARAMS ((bfd *abfd,
3381 bfd_reloc_code_real_type code));
3382
52b219b5 3383 /* Routines used when writing an object file. */
252b5132
RH
3384#define BFD_JUMP_TABLE_WRITE(NAME)\
3385CAT(NAME,_set_arch_mach),\
3386CAT(NAME,_set_section_contents)
3387 boolean (*_bfd_set_arch_mach) PARAMS ((bfd *, enum bfd_architecture,
3388 unsigned long));
3389 boolean (*_bfd_set_section_contents) PARAMS ((bfd *, sec_ptr, PTR,
3390 file_ptr, bfd_size_type));
3391
52b219b5 3392 /* Routines used by the linker. */
252b5132
RH
3393#define BFD_JUMP_TABLE_LINK(NAME)\
3394CAT(NAME,_sizeof_headers),\
3395CAT(NAME,_bfd_get_relocated_section_contents),\
3396CAT(NAME,_bfd_relax_section),\
3397CAT(NAME,_bfd_link_hash_table_create),\
3398CAT(NAME,_bfd_link_add_symbols),\
3399CAT(NAME,_bfd_final_link),\
3400CAT(NAME,_bfd_link_split_section),\
3401CAT(NAME,_bfd_gc_sections)
3402 int (*_bfd_sizeof_headers) PARAMS ((bfd *, boolean));
3403 bfd_byte * (*_bfd_get_relocated_section_contents) PARAMS ((bfd *,
3404 struct bfd_link_info *, struct bfd_link_order *,
3405 bfd_byte *data, boolean relocateable,
3406 struct symbol_cache_entry **));
3407
3408 boolean (*_bfd_relax_section) PARAMS ((bfd *, struct sec *,
3409 struct bfd_link_info *, boolean *again));
3410
52b219b5 3411 /* Create a hash table for the linker. Different backends store
252b5132
RH
3412 different information in this table. */
3413 struct bfd_link_hash_table *(*_bfd_link_hash_table_create) PARAMS ((bfd *));
3414
52b219b5 3415 /* Add symbols from this object file into the hash table. */
252b5132
RH
3416 boolean (*_bfd_link_add_symbols) PARAMS ((bfd *, struct bfd_link_info *));
3417
52b219b5 3418 /* Do a link based on the link_order structures attached to each
252b5132
RH
3419 section of the BFD. */
3420 boolean (*_bfd_final_link) PARAMS ((bfd *, struct bfd_link_info *));
3421
52b219b5 3422 /* Should this section be split up into smaller pieces during linking. */
252b5132
RH
3423 boolean (*_bfd_link_split_section) PARAMS ((bfd *, struct sec *));
3424
52b219b5 3425 /* Remove sections that are not referenced from the output. */
252b5132
RH
3426 boolean (*_bfd_gc_sections) PARAMS ((bfd *, struct bfd_link_info *));
3427
52b219b5 3428 /* Routines to handle dynamic symbols and relocs. */
252b5132
RH
3429#define BFD_JUMP_TABLE_DYNAMIC(NAME)\
3430CAT(NAME,_get_dynamic_symtab_upper_bound),\
3431CAT(NAME,_canonicalize_dynamic_symtab),\
3432CAT(NAME,_get_dynamic_reloc_upper_bound),\
3433CAT(NAME,_canonicalize_dynamic_reloc)
52b219b5 3434 /* Get the amount of memory required to hold the dynamic symbols. */
252b5132 3435 long (*_bfd_get_dynamic_symtab_upper_bound) PARAMS ((bfd *));
52b219b5 3436 /* Read in the dynamic symbols. */
252b5132
RH
3437 long (*_bfd_canonicalize_dynamic_symtab)
3438 PARAMS ((bfd *, struct symbol_cache_entry **));
52b219b5 3439 /* Get the amount of memory required to hold the dynamic relocs. */
252b5132 3440 long (*_bfd_get_dynamic_reloc_upper_bound) PARAMS ((bfd *));
52b219b5 3441 /* Read in the dynamic relocs. */
252b5132
RH
3442 long (*_bfd_canonicalize_dynamic_reloc)
3443 PARAMS ((bfd *, arelent **, struct symbol_cache_entry **));
b23b8e6e 3444
52b219b5 3445 /* Opposite endian version of this target. */
c3c89269
NC
3446 const struct bfd_target * alternative_target;
3447
252b5132 3448 PTR backend_data;
c3c89269 3449
252b5132
RH
3450} bfd_target;
3451boolean
3452bfd_set_default_target PARAMS ((const char *name));
3453
3454const bfd_target *
3455bfd_find_target PARAMS ((CONST char *target_name, bfd *abfd));
3456
3457const char **
3458bfd_target_list PARAMS ((void));
3459
b23b8e6e
ILT
3460const bfd_target *
3461bfd_search_for_target PARAMS ((int (* search_func)(const bfd_target *, void *), void *));
c3c89269 3462
252b5132
RH
3463boolean
3464bfd_check_format PARAMS ((bfd *abfd, bfd_format format));
3465
3466boolean
3467bfd_check_format_matches PARAMS ((bfd *abfd, bfd_format format, char ***matching));
3468
3469boolean
3470bfd_set_format PARAMS ((bfd *abfd, bfd_format format));
3471
3472CONST char *
3473bfd_format_string PARAMS ((bfd_format format));
3474
3475#ifdef __cplusplus
3476}
3477#endif
3478#endif
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