* elfxx-mips.c (_bfd_mips_elf_merge_private_bfd_data): Allow
[binutils.git] / include / bfdlink.h
blob761bd0513e35ca79f130b48ff7094bd7ac491ecf
1 /* bfdlink.h -- header file for BFD link routines
2 Copyright 1993, 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002,
3 2003, 2004, 2005 Free Software Foundation, Inc.
4 Written by Steve Chamberlain and Ian Lance Taylor, Cygnus Support.
6 This file is part of BFD, the Binary File Descriptor library.
8 This program is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
10 the Free Software Foundation; either version 2 of the License, or
11 (at your option) any later version.
13 This program is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
18 You should have received a copy of the GNU General Public License
19 along with this program; if not, write to the Free Software
20 Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston, MA 02110-1301, USA. */
22 #ifndef BFDLINK_H
23 #define BFDLINK_H
25 /* Which symbols to strip during a link. */
26 enum bfd_link_strip
28 strip_none, /* Don't strip any symbols. */
29 strip_debugger, /* Strip debugging symbols. */
30 strip_some, /* keep_hash is the list of symbols to keep. */
31 strip_all /* Strip all symbols. */
34 /* Which local symbols to discard during a link. This is irrelevant
35 if strip_all is used. */
36 enum bfd_link_discard
38 discard_sec_merge, /* Discard local temporary symbols in SEC_MERGE
39 sections. */
40 discard_none, /* Don't discard any locals. */
41 discard_l, /* Discard local temporary symbols. */
42 discard_all /* Discard all locals. */
45 /* Describes the type of hash table entry structure being used.
46 Different hash table structure have different fields and so
47 support different linking features. */
48 enum bfd_link_hash_table_type
50 bfd_link_generic_hash_table,
51 bfd_link_elf_hash_table
54 /* These are the possible types of an entry in the BFD link hash
55 table. */
57 enum bfd_link_hash_type
59 bfd_link_hash_new, /* Symbol is new. */
60 bfd_link_hash_undefined, /* Symbol seen before, but undefined. */
61 bfd_link_hash_undefweak, /* Symbol is weak and undefined. */
62 bfd_link_hash_defined, /* Symbol is defined. */
63 bfd_link_hash_defweak, /* Symbol is weak and defined. */
64 bfd_link_hash_common, /* Symbol is common. */
65 bfd_link_hash_indirect, /* Symbol is an indirect link. */
66 bfd_link_hash_warning /* Like indirect, but warn if referenced. */
69 enum bfd_link_common_skip_ar_aymbols
71 bfd_link_common_skip_none,
72 bfd_link_common_skip_text,
73 bfd_link_common_skip_data,
74 bfd_link_common_skip_all
77 /* The linking routines use a hash table which uses this structure for
78 its elements. */
80 struct bfd_link_hash_entry
82 /* Base hash table entry structure. */
83 struct bfd_hash_entry root;
85 /* Type of this entry. */
86 enum bfd_link_hash_type type;
88 /* A union of information depending upon the type. */
89 union
91 /* Nothing is kept for bfd_hash_new. */
92 /* bfd_link_hash_undefined, bfd_link_hash_undefweak. */
93 struct
95 /* Undefined and common symbols are kept in a linked list through
96 this field. This field is present in all of the union element
97 so that we don't need to remove entries from the list when we
98 change their type. Removing entries would either require the
99 list to be doubly linked, which would waste more memory, or
100 require a traversal. When an undefined or common symbol is
101 created, it should be added to this list, the head of which is in
102 the link hash table itself. As symbols are defined, they need
103 not be removed from the list; anything which reads the list must
104 doublecheck the symbol type.
106 Weak symbols are not kept on this list.
108 Defined and defweak symbols use this field as a reference marker.
109 If the field is not NULL, or this structure is the tail of the
110 undefined symbol list, the symbol has been referenced. If the
111 symbol is undefined and becomes defined, this field will
112 automatically be non-NULL since the symbol will have been on the
113 undefined symbol list. */
114 struct bfd_link_hash_entry *next;
115 bfd *abfd; /* BFD symbol was found in. */
116 bfd *weak; /* BFD weak symbol was found in. */
117 } undef;
118 /* bfd_link_hash_defined, bfd_link_hash_defweak. */
119 struct
121 struct bfd_link_hash_entry *next;
122 asection *section; /* Symbol section. */
123 bfd_vma value; /* Symbol value. */
124 } def;
125 /* bfd_link_hash_indirect, bfd_link_hash_warning. */
126 struct
128 struct bfd_link_hash_entry *next;
129 struct bfd_link_hash_entry *link; /* Real symbol. */
130 const char *warning; /* Warning (bfd_link_hash_warning only). */
131 } i;
132 /* bfd_link_hash_common. */
133 struct
135 struct bfd_link_hash_entry *next;
136 /* The linker needs to know three things about common
137 symbols: the size, the alignment, and the section in
138 which the symbol should be placed. We store the size
139 here, and we allocate a small structure to hold the
140 section and the alignment. The alignment is stored as a
141 power of two. We don't store all the information
142 directly because we don't want to increase the size of
143 the union; this structure is a major space user in the
144 linker. */
145 struct bfd_link_hash_common_entry
147 unsigned int alignment_power; /* Alignment. */
148 asection *section; /* Symbol section. */
149 } *p;
150 bfd_size_type size; /* Common symbol size. */
151 } c;
152 } u;
155 /* This is the link hash table. It is a derived class of
156 bfd_hash_table. */
158 struct bfd_link_hash_table
160 /* The hash table itself. */
161 struct bfd_hash_table table;
162 /* The back end which created this hash table. This indicates the
163 type of the entries in the hash table, which is sometimes
164 important information when linking object files of different
165 types together. */
166 const bfd_target *creator;
167 /* A linked list of undefined and common symbols, linked through the
168 next field in the bfd_link_hash_entry structure. */
169 struct bfd_link_hash_entry *undefs;
170 /* Entries are added to the tail of the undefs list. */
171 struct bfd_link_hash_entry *undefs_tail;
172 /* The type of the link hash table. */
173 enum bfd_link_hash_table_type type;
176 /* Look up an entry in a link hash table. If FOLLOW is TRUE, this
177 follows bfd_link_hash_indirect and bfd_link_hash_warning links to
178 the real symbol. */
179 extern struct bfd_link_hash_entry *bfd_link_hash_lookup
180 (struct bfd_link_hash_table *, const char *, bfd_boolean create,
181 bfd_boolean copy, bfd_boolean follow);
183 /* Look up an entry in the main linker hash table if the symbol might
184 be wrapped. This should only be used for references to an
185 undefined symbol, not for definitions of a symbol. */
187 extern struct bfd_link_hash_entry *bfd_wrapped_link_hash_lookup
188 (bfd *, struct bfd_link_info *, const char *, bfd_boolean,
189 bfd_boolean, bfd_boolean);
191 /* Traverse a link hash table. */
192 extern void bfd_link_hash_traverse
193 (struct bfd_link_hash_table *,
194 bfd_boolean (*) (struct bfd_link_hash_entry *, void *),
195 void *);
197 /* Add an entry to the undefs list. */
198 extern void bfd_link_add_undef
199 (struct bfd_link_hash_table *, struct bfd_link_hash_entry *);
201 /* Remove symbols from the undefs list that don't belong there. */
202 extern void bfd_link_repair_undef_list
203 (struct bfd_link_hash_table *table);
205 struct bfd_sym_chain
207 struct bfd_sym_chain *next;
208 const char *name;
211 /* How to handle unresolved symbols.
212 There are four possibilities which are enumerated below: */
213 enum report_method
215 /* This is the initial value when then link_info structure is created.
216 It allows the various stages of the linker to determine whether they
217 allowed to set the value. */
218 RM_NOT_YET_SET = 0,
219 RM_IGNORE,
220 RM_GENERATE_WARNING,
221 RM_GENERATE_ERROR
224 /* This structure holds all the information needed to communicate
225 between BFD and the linker when doing a link. */
227 struct bfd_link_info
229 /* TRUE if BFD should generate a relocatable object file. */
230 unsigned int relocatable: 1;
232 /* TRUE if BFD should generate relocation information in the final
233 executable. */
234 unsigned int emitrelocations: 1;
236 /* TRUE if BFD should generate a "task linked" object file,
237 similar to relocatable but also with globals converted to
238 statics. */
239 unsigned int task_link: 1;
241 /* TRUE if BFD should generate a shared object. */
242 unsigned int shared: 1;
244 /* TRUE if BFD should pre-bind symbols in a shared object. */
245 unsigned int symbolic: 1;
247 /* TRUE if BFD should export all symbols in the dynamic symbol table
248 of an executable, rather than only those used. */
249 unsigned int export_dynamic: 1;
251 /* TRUE if shared objects should be linked directly, not shared. */
252 unsigned int static_link: 1;
254 /* TRUE if the output file should be in a traditional format. This
255 is equivalent to the setting of the BFD_TRADITIONAL_FORMAT flag
256 on the output file, but may be checked when reading the input
257 files. */
258 unsigned int traditional_format: 1;
260 /* TRUE if we want to produced optimized output files. This might
261 need much more time and therefore must be explicitly selected. */
262 unsigned int optimize: 1;
264 /* TRUE if ok to have multiple definition. */
265 unsigned int allow_multiple_definition: 1;
267 /* TRUE if ok to have version with no definition. */
268 unsigned int allow_undefined_version: 1;
270 /* TRUE if a default symbol version should be created and used for
271 exported symbols. */
272 unsigned int create_default_symver: 1;
274 /* TRUE if a default symbol version should be created and used for
275 imported symbols. */
276 unsigned int default_imported_symver: 1;
278 /* TRUE if symbols should be retained in memory, FALSE if they
279 should be freed and reread. */
280 unsigned int keep_memory: 1;
282 /* TRUE if every symbol should be reported back via the notice
283 callback. */
284 unsigned int notice_all: 1;
286 /* TRUE if executable should not contain copy relocs.
287 Setting this true may result in a non-sharable text segment. */
288 unsigned int nocopyreloc: 1;
290 /* TRUE if the new ELF dynamic tags are enabled. */
291 unsigned int new_dtags: 1;
293 /* TRUE if non-PLT relocs should be merged into one reloc section
294 and sorted so that relocs against the same symbol come together. */
295 unsigned int combreloc: 1;
297 /* TRUE if .eh_frame_hdr section and PT_GNU_EH_FRAME ELF segment
298 should be created. */
299 unsigned int eh_frame_hdr: 1;
301 /* TRUE if global symbols in discarded sections should be stripped. */
302 unsigned int strip_discarded: 1;
304 /* TRUE if generating a position independent executable. */
305 unsigned int pie: 1;
307 /* TRUE if generating an executable, position independent or not. */
308 unsigned int executable : 1;
310 /* TRUE if PT_GNU_STACK segment should be created with PF_R|PF_W|PF_X
311 flags. */
312 unsigned int execstack: 1;
314 /* TRUE if PT_GNU_STACK segment should be created with PF_R|PF_W
315 flags. */
316 unsigned int noexecstack: 1;
318 /* TRUE if PT_GNU_RELRO segment should be created. */
319 unsigned int relro: 1;
321 /* TRUE if we should warn when adding a DT_TEXTREL to a shared object. */
322 unsigned int warn_shared_textrel: 1;
324 /* TRUE if unreferenced sections should be removed. */
325 unsigned int gc_sections: 1;
327 /* TRUE if .hash section should be created. */
328 unsigned int emit_hash: 1;
330 /* TRUE if .gnu.hash section should be created. */
331 unsigned int emit_gnu_hash: 1;
333 /* What to do with unresolved symbols in an object file.
334 When producing executables the default is GENERATE_ERROR.
335 When producing shared libraries the default is IGNORE. The
336 assumption with shared libraries is that the reference will be
337 resolved at load/execution time. */
338 enum report_method unresolved_syms_in_objects;
340 /* What to do with unresolved symbols in a shared library.
341 The same defaults apply. */
342 enum report_method unresolved_syms_in_shared_libs;
344 /* Which symbols to strip. */
345 enum bfd_link_strip strip;
347 /* Which local symbols to discard. */
348 enum bfd_link_discard discard;
350 /* Criteria for skipping symbols when detemining
351 whether to include an object from an archive. */
352 enum bfd_link_common_skip_ar_aymbols common_skip_ar_aymbols;
354 /* Char that may appear as the first char of a symbol, but should be
355 skipped (like symbol_leading_char) when looking up symbols in
356 wrap_hash. Used by PowerPC Linux for 'dot' symbols. */
357 char wrap_char;
359 /* Function callbacks. */
360 const struct bfd_link_callbacks *callbacks;
362 /* Hash table handled by BFD. */
363 struct bfd_link_hash_table *hash;
365 /* Hash table of symbols to keep. This is NULL unless strip is
366 strip_some. */
367 struct bfd_hash_table *keep_hash;
369 /* Hash table of symbols to report back via the notice callback. If
370 this is NULL, and notice_all is FALSE, then no symbols are
371 reported back. */
372 struct bfd_hash_table *notice_hash;
374 /* Hash table of symbols which are being wrapped (the --wrap linker
375 option). If this is NULL, no symbols are being wrapped. */
376 struct bfd_hash_table *wrap_hash;
378 /* The list of input BFD's involved in the link. These are chained
379 together via the link_next field. */
380 bfd *input_bfds;
382 /* If a symbol should be created for each input BFD, this is section
383 where those symbols should be placed. It must be a section in
384 the output BFD. It may be NULL, in which case no such symbols
385 will be created. This is to support CREATE_OBJECT_SYMBOLS in the
386 linker command language. */
387 asection *create_object_symbols_section;
389 /* List of global symbol names that are starting points for marking
390 sections against garbage collection. */
391 struct bfd_sym_chain *gc_sym_list;
393 /* If a base output file is wanted, then this points to it */
394 void *base_file;
396 /* The function to call when the executable or shared object is
397 loaded. */
398 const char *init_function;
400 /* The function to call when the executable or shared object is
401 unloaded. */
402 const char *fini_function;
404 /* Number of relaxation passes. Usually only one relaxation pass
405 is needed. But a backend can have as many relaxation passes as
406 necessary. During bfd_relax_section call, it is set to the
407 current pass, starting from 0. */
408 int relax_pass;
410 /* Non-zero if auto-import thunks for DATA items in pei386 DLLs
411 should be generated/linked against. Set to 1 if this feature
412 is explicitly requested by the user, -1 if enabled by default. */
413 int pei386_auto_import;
415 /* Non-zero if runtime relocs for DATA items with non-zero addends
416 in pei386 DLLs should be generated. Set to 1 if this feature
417 is explicitly requested by the user, -1 if enabled by default. */
418 int pei386_runtime_pseudo_reloc;
420 /* How many spare .dynamic DT_NULL entries should be added? */
421 unsigned int spare_dynamic_tags;
423 /* May be used to set DT_FLAGS for ELF. */
424 bfd_vma flags;
426 /* May be used to set DT_FLAGS_1 for ELF. */
427 bfd_vma flags_1;
429 /* Start and end of RELRO region. */
430 bfd_vma relro_start, relro_end;
433 /* This structures holds a set of callback functions. These are
434 called by the BFD linker routines. Except for einfo, the first
435 argument to each callback function is the bfd_link_info structure
436 being used and each function returns a boolean value. If the
437 function returns FALSE, then the BFD function which called it should
438 return with a failure indication. */
440 struct bfd_link_callbacks
442 /* A function which is called when an object is added from an
443 archive. ABFD is the archive element being added. NAME is the
444 name of the symbol which caused the archive element to be pulled
445 in. */
446 bfd_boolean (*add_archive_element)
447 (struct bfd_link_info *, bfd *abfd, const char *name);
448 /* A function which is called when a symbol is found with multiple
449 definitions. NAME is the symbol which is defined multiple times.
450 OBFD is the old BFD, OSEC is the old section, OVAL is the old
451 value, NBFD is the new BFD, NSEC is the new section, and NVAL is
452 the new value. OBFD may be NULL. OSEC and NSEC may be
453 bfd_com_section or bfd_ind_section. */
454 bfd_boolean (*multiple_definition)
455 (struct bfd_link_info *, const char *name,
456 bfd *obfd, asection *osec, bfd_vma oval,
457 bfd *nbfd, asection *nsec, bfd_vma nval);
458 /* A function which is called when a common symbol is defined
459 multiple times. NAME is the symbol appearing multiple times.
460 OBFD is the BFD of the existing symbol; it may be NULL if this is
461 not known. OTYPE is the type of the existing symbol, which may
462 be bfd_link_hash_defined, bfd_link_hash_defweak,
463 bfd_link_hash_common, or bfd_link_hash_indirect. If OTYPE is
464 bfd_link_hash_common, OSIZE is the size of the existing symbol.
465 NBFD is the BFD of the new symbol. NTYPE is the type of the new
466 symbol, one of bfd_link_hash_defined, bfd_link_hash_common, or
467 bfd_link_hash_indirect. If NTYPE is bfd_link_hash_common, NSIZE
468 is the size of the new symbol. */
469 bfd_boolean (*multiple_common)
470 (struct bfd_link_info *, const char *name,
471 bfd *obfd, enum bfd_link_hash_type otype, bfd_vma osize,
472 bfd *nbfd, enum bfd_link_hash_type ntype, bfd_vma nsize);
473 /* A function which is called to add a symbol to a set. ENTRY is
474 the link hash table entry for the set itself (e.g.,
475 __CTOR_LIST__). RELOC is the relocation to use for an entry in
476 the set when generating a relocatable file, and is also used to
477 get the size of the entry when generating an executable file.
478 ABFD, SEC and VALUE identify the value to add to the set. */
479 bfd_boolean (*add_to_set)
480 (struct bfd_link_info *, struct bfd_link_hash_entry *entry,
481 bfd_reloc_code_real_type reloc, bfd *abfd, asection *sec, bfd_vma value);
482 /* A function which is called when the name of a g++ constructor or
483 destructor is found. This is only called by some object file
484 formats. CONSTRUCTOR is TRUE for a constructor, FALSE for a
485 destructor. This will use BFD_RELOC_CTOR when generating a
486 relocatable file. NAME is the name of the symbol found. ABFD,
487 SECTION and VALUE are the value of the symbol. */
488 bfd_boolean (*constructor)
489 (struct bfd_link_info *, bfd_boolean constructor, const char *name,
490 bfd *abfd, asection *sec, bfd_vma value);
491 /* A function which is called to issue a linker warning. For
492 example, this is called when there is a reference to a warning
493 symbol. WARNING is the warning to be issued. SYMBOL is the name
494 of the symbol which triggered the warning; it may be NULL if
495 there is none. ABFD, SECTION and ADDRESS identify the location
496 which trigerred the warning; either ABFD or SECTION or both may
497 be NULL if the location is not known. */
498 bfd_boolean (*warning)
499 (struct bfd_link_info *, const char *warning, const char *symbol,
500 bfd *abfd, asection *section, bfd_vma address);
501 /* A function which is called when a relocation is attempted against
502 an undefined symbol. NAME is the symbol which is undefined.
503 ABFD, SECTION and ADDRESS identify the location from which the
504 reference is made. FATAL indicates whether an undefined symbol is
505 a fatal error or not. In some cases SECTION may be NULL. */
506 bfd_boolean (*undefined_symbol)
507 (struct bfd_link_info *, const char *name, bfd *abfd,
508 asection *section, bfd_vma address, bfd_boolean fatal);
509 /* A function which is called when a reloc overflow occurs. ENTRY is
510 the link hash table entry for the symbol the reloc is against.
511 NAME is the name of the local symbol or section the reloc is
512 against, RELOC_NAME is the name of the relocation, and ADDEND is
513 any addend that is used. ABFD, SECTION and ADDRESS identify the
514 location at which the overflow occurs; if this is the result of a
515 bfd_section_reloc_link_order or bfd_symbol_reloc_link_order, then
516 ABFD will be NULL. */
517 bfd_boolean (*reloc_overflow)
518 (struct bfd_link_info *, struct bfd_link_hash_entry *entry,
519 const char *name, const char *reloc_name, bfd_vma addend,
520 bfd *abfd, asection *section, bfd_vma address);
521 /* A function which is called when a dangerous reloc is performed.
522 MESSAGE is an appropriate message.
523 ABFD, SECTION and ADDRESS identify the location at which the
524 problem occurred; if this is the result of a
525 bfd_section_reloc_link_order or bfd_symbol_reloc_link_order, then
526 ABFD will be NULL. */
527 bfd_boolean (*reloc_dangerous)
528 (struct bfd_link_info *, const char *message,
529 bfd *abfd, asection *section, bfd_vma address);
530 /* A function which is called when a reloc is found to be attached
531 to a symbol which is not being written out. NAME is the name of
532 the symbol. ABFD, SECTION and ADDRESS identify the location of
533 the reloc; if this is the result of a
534 bfd_section_reloc_link_order or bfd_symbol_reloc_link_order, then
535 ABFD will be NULL. */
536 bfd_boolean (*unattached_reloc)
537 (struct bfd_link_info *, const char *name,
538 bfd *abfd, asection *section, bfd_vma address);
539 /* A function which is called when a symbol in notice_hash is
540 defined or referenced. NAME is the symbol. ABFD, SECTION and
541 ADDRESS are the value of the symbol. If SECTION is
542 bfd_und_section, this is a reference. */
543 bfd_boolean (*notice)
544 (struct bfd_link_info *, const char *name,
545 bfd *abfd, asection *section, bfd_vma address);
546 /* General link info message. */
547 void (*einfo)
548 (const char *fmt, ...);
551 /* The linker builds link_order structures which tell the code how to
552 include input data in the output file. */
554 /* These are the types of link_order structures. */
556 enum bfd_link_order_type
558 bfd_undefined_link_order, /* Undefined. */
559 bfd_indirect_link_order, /* Built from a section. */
560 bfd_data_link_order, /* Set to explicit data. */
561 bfd_section_reloc_link_order, /* Relocate against a section. */
562 bfd_symbol_reloc_link_order /* Relocate against a symbol. */
565 /* This is the link_order structure itself. These form a chain
566 attached to the output section whose contents they are describing. */
568 struct bfd_link_order
570 /* Next link_order in chain. */
571 struct bfd_link_order *next;
572 /* Type of link_order. */
573 enum bfd_link_order_type type;
574 /* Offset within output section. */
575 bfd_vma offset;
576 /* Size within output section. */
577 bfd_size_type size;
578 /* Type specific information. */
579 union
581 struct
583 /* Section to include. If this is used, then
584 section->output_section must be the section the
585 link_order is attached to, section->output_offset must
586 equal the link_order offset field, and section->size
587 must equal the link_order size field. Maybe these
588 restrictions should be relaxed someday. */
589 asection *section;
590 } indirect;
591 struct
593 /* Size of contents, or zero when contents size == size
594 within output section.
595 A non-zero value allows filling of the output section
596 with an arbitrary repeated pattern. */
597 unsigned int size;
598 /* Data to put into file. */
599 bfd_byte *contents;
600 } data;
601 struct
603 /* Description of reloc to generate. Used for
604 bfd_section_reloc_link_order and
605 bfd_symbol_reloc_link_order. */
606 struct bfd_link_order_reloc *p;
607 } reloc;
608 } u;
611 /* A linker order of type bfd_section_reloc_link_order or
612 bfd_symbol_reloc_link_order means to create a reloc against a
613 section or symbol, respectively. This is used to implement -Ur to
614 generate relocs for the constructor tables. The
615 bfd_link_order_reloc structure describes the reloc that BFD should
616 create. It is similar to a arelent, but I didn't use arelent
617 because the linker does not know anything about most symbols, and
618 any asymbol structure it creates will be partially meaningless.
619 This information could logically be in the bfd_link_order struct,
620 but I didn't want to waste the space since these types of relocs
621 are relatively rare. */
623 struct bfd_link_order_reloc
625 /* Reloc type. */
626 bfd_reloc_code_real_type reloc;
628 union
630 /* For type bfd_section_reloc_link_order, this is the section
631 the reloc should be against. This must be a section in the
632 output BFD, not any of the input BFDs. */
633 asection *section;
634 /* For type bfd_symbol_reloc_link_order, this is the name of the
635 symbol the reloc should be against. */
636 const char *name;
637 } u;
639 /* Addend to use. The object file should contain zero. The BFD
640 backend is responsible for filling in the contents of the object
641 file correctly. For some object file formats (e.g., COFF) the
642 addend must be stored into in the object file, and for some
643 (e.g., SPARC a.out) it is kept in the reloc. */
644 bfd_vma addend;
647 /* Allocate a new link_order for a section. */
648 extern struct bfd_link_order *bfd_new_link_order (bfd *, asection *);
650 /* These structures are used to describe version information for the
651 ELF linker. These structures could be manipulated entirely inside
652 BFD, but it would be a pain. Instead, the regular linker sets up
653 these structures, and then passes them into BFD. */
655 /* Glob pattern for a version. */
657 struct bfd_elf_version_expr
659 /* Next glob pattern for this version. */
660 struct bfd_elf_version_expr *next;
661 /* Glob pattern. */
662 const char *pattern;
663 /* NULL for a glob pattern, otherwise a straight symbol. */
664 const char *symbol;
665 /* Defined by ".symver". */
666 unsigned int symver : 1;
667 /* Defined by version script. */
668 unsigned int script : 1;
669 /* Pattern type. */
670 #define BFD_ELF_VERSION_C_TYPE 1
671 #define BFD_ELF_VERSION_CXX_TYPE 2
672 #define BFD_ELF_VERSION_JAVA_TYPE 4
673 unsigned int mask : 3;
676 struct bfd_elf_version_expr_head
678 /* List of all patterns, both wildcards and non-wildcards. */
679 struct bfd_elf_version_expr *list;
680 /* Hash table for non-wildcards. */
681 void *htab;
682 /* Remaining patterns. */
683 struct bfd_elf_version_expr *remaining;
684 /* What kind of pattern types are present in list (bitmask). */
685 unsigned int mask;
688 /* Version dependencies. */
690 struct bfd_elf_version_deps
692 /* Next dependency for this version. */
693 struct bfd_elf_version_deps *next;
694 /* The version which this version depends upon. */
695 struct bfd_elf_version_tree *version_needed;
698 /* A node in the version tree. */
700 struct bfd_elf_version_tree
702 /* Next version. */
703 struct bfd_elf_version_tree *next;
704 /* Name of this version. */
705 const char *name;
706 /* Version number. */
707 unsigned int vernum;
708 /* Regular expressions for global symbols in this version. */
709 struct bfd_elf_version_expr_head globals;
710 /* Regular expressions for local symbols in this version. */
711 struct bfd_elf_version_expr_head locals;
712 /* List of versions which this version depends upon. */
713 struct bfd_elf_version_deps *deps;
714 /* Index of the version name. This is used within BFD. */
715 unsigned int name_indx;
716 /* Whether this version tree was used. This is used within BFD. */
717 int used;
718 /* Matching hook. */
719 struct bfd_elf_version_expr *(*match)
720 (struct bfd_elf_version_expr_head *head,
721 struct bfd_elf_version_expr *prev, const char *sym);
724 #endif