* section.c (SEC_LINKER_MARK): Define.
[binutils-gdb.git] / bfd / cofflink.c
1 /* COFF specific linker code.
2 Copyright 1994, 1995, 1996 Free Software Foundation, Inc.
3 Written by Ian Lance Taylor, Cygnus Support.
4
5 This file is part of BFD, the Binary File Descriptor library.
6
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2 of the License, or
10 (at your option) any later version.
11
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with this program; if not, write to the Free Software
19 Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. */
20
21 /* This file contains the COFF backend linker code. */
22
23 #include "bfd.h"
24 #include "sysdep.h"
25 #include "bfdlink.h"
26 #include "libbfd.h"
27 #include "coff/internal.h"
28 #include "libcoff.h"
29
30 static boolean coff_link_add_object_symbols
31 PARAMS ((bfd *, struct bfd_link_info *));
32 static boolean coff_link_check_archive_element
33 PARAMS ((bfd *, struct bfd_link_info *, boolean *));
34 static boolean coff_link_check_ar_symbols
35 PARAMS ((bfd *, struct bfd_link_info *, boolean *));
36 static boolean coff_link_add_symbols PARAMS ((bfd *, struct bfd_link_info *));
37
38 /* Create an entry in a COFF linker hash table. */
39
40 struct bfd_hash_entry *
41 _bfd_coff_link_hash_newfunc (entry, table, string)
42 struct bfd_hash_entry *entry;
43 struct bfd_hash_table *table;
44 const char *string;
45 {
46 struct coff_link_hash_entry *ret = (struct coff_link_hash_entry *) entry;
47
48 /* Allocate the structure if it has not already been allocated by a
49 subclass. */
50 if (ret == (struct coff_link_hash_entry *) NULL)
51 ret = ((struct coff_link_hash_entry *)
52 bfd_hash_allocate (table, sizeof (struct coff_link_hash_entry)));
53 if (ret == (struct coff_link_hash_entry *) NULL)
54 return (struct bfd_hash_entry *) ret;
55
56 /* Call the allocation method of the superclass. */
57 ret = ((struct coff_link_hash_entry *)
58 _bfd_link_hash_newfunc ((struct bfd_hash_entry *) ret,
59 table, string));
60 if (ret != (struct coff_link_hash_entry *) NULL)
61 {
62 /* Set local fields. */
63 ret->indx = -1;
64 ret->type = T_NULL;
65 ret->class = C_NULL;
66 ret->numaux = 0;
67 ret->auxbfd = NULL;
68 ret->aux = NULL;
69 }
70
71 return (struct bfd_hash_entry *) ret;
72 }
73
74 /* Initialize a COFF linker hash table. */
75
76 boolean
77 _bfd_coff_link_hash_table_init (table, abfd, newfunc)
78 struct coff_link_hash_table *table;
79 bfd *abfd;
80 struct bfd_hash_entry *(*newfunc) PARAMS ((struct bfd_hash_entry *,
81 struct bfd_hash_table *,
82 const char *));
83 {
84 return _bfd_link_hash_table_init (&table->root, abfd, newfunc);
85 }
86
87 /* Create a COFF linker hash table. */
88
89 struct bfd_link_hash_table *
90 _bfd_coff_link_hash_table_create (abfd)
91 bfd *abfd;
92 {
93 struct coff_link_hash_table *ret;
94
95 ret = ((struct coff_link_hash_table *)
96 bfd_alloc (abfd, sizeof (struct coff_link_hash_table)));
97 if (ret == NULL)
98 return NULL;
99 if (! _bfd_coff_link_hash_table_init (ret, abfd,
100 _bfd_coff_link_hash_newfunc))
101 {
102 bfd_release (abfd, ret);
103 return (struct bfd_link_hash_table *) NULL;
104 }
105 return &ret->root;
106 }
107
108 /* Create an entry in a COFF debug merge hash table. */
109
110 struct bfd_hash_entry *
111 _bfd_coff_debug_merge_hash_newfunc (entry, table, string)
112 struct bfd_hash_entry *entry;
113 struct bfd_hash_table *table;
114 const char *string;
115 {
116 struct coff_debug_merge_hash_entry *ret =
117 (struct coff_debug_merge_hash_entry *) entry;
118
119 /* Allocate the structure if it has not already been allocated by a
120 subclass. */
121 if (ret == (struct coff_debug_merge_hash_entry *) NULL)
122 ret = ((struct coff_debug_merge_hash_entry *)
123 bfd_hash_allocate (table,
124 sizeof (struct coff_debug_merge_hash_entry)));
125 if (ret == (struct coff_debug_merge_hash_entry *) NULL)
126 return (struct bfd_hash_entry *) ret;
127
128 /* Call the allocation method of the superclass. */
129 ret = ((struct coff_debug_merge_hash_entry *)
130 bfd_hash_newfunc ((struct bfd_hash_entry *) ret, table, string));
131 if (ret != (struct coff_debug_merge_hash_entry *) NULL)
132 {
133 /* Set local fields. */
134 ret->types = NULL;
135 }
136
137 return (struct bfd_hash_entry *) ret;
138 }
139
140 /* Given a COFF BFD, add symbols to the global hash table as
141 appropriate. */
142
143 boolean
144 _bfd_coff_link_add_symbols (abfd, info)
145 bfd *abfd;
146 struct bfd_link_info *info;
147 {
148 switch (bfd_get_format (abfd))
149 {
150 case bfd_object:
151 return coff_link_add_object_symbols (abfd, info);
152 case bfd_archive:
153 return (_bfd_generic_link_add_archive_symbols
154 (abfd, info, coff_link_check_archive_element));
155 default:
156 bfd_set_error (bfd_error_wrong_format);
157 return false;
158 }
159 }
160
161 /* Add symbols from a COFF object file. */
162
163 static boolean
164 coff_link_add_object_symbols (abfd, info)
165 bfd *abfd;
166 struct bfd_link_info *info;
167 {
168 if (! _bfd_coff_get_external_symbols (abfd))
169 return false;
170 if (! coff_link_add_symbols (abfd, info))
171 return false;
172
173 if (! info->keep_memory)
174 {
175 if (! _bfd_coff_free_symbols (abfd))
176 return false;
177 }
178 return true;
179 }
180
181 /* Check a single archive element to see if we need to include it in
182 the link. *PNEEDED is set according to whether this element is
183 needed in the link or not. This is called via
184 _bfd_generic_link_add_archive_symbols. */
185
186 static boolean
187 coff_link_check_archive_element (abfd, info, pneeded)
188 bfd *abfd;
189 struct bfd_link_info *info;
190 boolean *pneeded;
191 {
192 if (! _bfd_coff_get_external_symbols (abfd))
193 return false;
194
195 if (! coff_link_check_ar_symbols (abfd, info, pneeded))
196 return false;
197
198 if (*pneeded)
199 {
200 if (! coff_link_add_symbols (abfd, info))
201 return false;
202 }
203
204 if (! info->keep_memory || ! *pneeded)
205 {
206 if (! _bfd_coff_free_symbols (abfd))
207 return false;
208 }
209
210 return true;
211 }
212
213 /* Look through the symbols to see if this object file should be
214 included in the link. */
215
216 static boolean
217 coff_link_check_ar_symbols (abfd, info, pneeded)
218 bfd *abfd;
219 struct bfd_link_info *info;
220 boolean *pneeded;
221 {
222 boolean (*sym_is_global) PARAMS ((bfd *, struct internal_syment *));
223 bfd_size_type symesz;
224 bfd_byte *esym;
225 bfd_byte *esym_end;
226
227 *pneeded = false;
228
229 sym_is_global = coff_backend_info (abfd)->_bfd_coff_sym_is_global;
230
231 symesz = bfd_coff_symesz (abfd);
232 esym = (bfd_byte *) obj_coff_external_syms (abfd);
233 esym_end = esym + obj_raw_syment_count (abfd) * symesz;
234 while (esym < esym_end)
235 {
236 struct internal_syment sym;
237
238 bfd_coff_swap_sym_in (abfd, (PTR) esym, (PTR) &sym);
239
240 if ((sym.n_sclass == C_EXT
241 || (sym_is_global && (*sym_is_global) (abfd, &sym)))
242 && (sym.n_scnum != 0 || sym.n_value != 0))
243 {
244 const char *name;
245 char buf[SYMNMLEN + 1];
246 struct bfd_link_hash_entry *h;
247
248 /* This symbol is externally visible, and is defined by this
249 object file. */
250
251 name = _bfd_coff_internal_syment_name (abfd, &sym, buf);
252 if (name == NULL)
253 return false;
254 h = bfd_link_hash_lookup (info->hash, name, false, false, true);
255
256 /* We are only interested in symbols that are currently
257 undefined. If a symbol is currently known to be common,
258 COFF linkers do not bring in an object file which defines
259 it. */
260 if (h != (struct bfd_link_hash_entry *) NULL
261 && h->type == bfd_link_hash_undefined)
262 {
263 if (! (*info->callbacks->add_archive_element) (info, abfd, name))
264 return false;
265 *pneeded = true;
266 return true;
267 }
268 }
269
270 esym += (sym.n_numaux + 1) * symesz;
271 }
272
273 /* We do not need this object file. */
274 return true;
275 }
276
277 /* Add all the symbols from an object file to the hash table. */
278
279 static boolean
280 coff_link_add_symbols (abfd, info)
281 bfd *abfd;
282 struct bfd_link_info *info;
283 {
284 boolean (*sym_is_global) PARAMS ((bfd *, struct internal_syment *));
285 boolean default_copy;
286 bfd_size_type symcount;
287 struct coff_link_hash_entry **sym_hash;
288 bfd_size_type symesz;
289 bfd_byte *esym;
290 bfd_byte *esym_end;
291
292 sym_is_global = coff_backend_info (abfd)->_bfd_coff_sym_is_global;
293
294 if (info->keep_memory)
295 default_copy = false;
296 else
297 default_copy = true;
298
299 symcount = obj_raw_syment_count (abfd);
300
301 /* We keep a list of the linker hash table entries that correspond
302 to particular symbols. */
303 sym_hash = ((struct coff_link_hash_entry **)
304 bfd_alloc (abfd,
305 ((size_t) symcount
306 * sizeof (struct coff_link_hash_entry *))));
307 if (sym_hash == NULL && symcount != 0)
308 return false;
309 obj_coff_sym_hashes (abfd) = sym_hash;
310 memset (sym_hash, 0,
311 (size_t) symcount * sizeof (struct coff_link_hash_entry *));
312
313 symesz = bfd_coff_symesz (abfd);
314 BFD_ASSERT (symesz == bfd_coff_auxesz (abfd));
315 esym = (bfd_byte *) obj_coff_external_syms (abfd);
316 esym_end = esym + symcount * symesz;
317 while (esym < esym_end)
318 {
319 struct internal_syment sym;
320 boolean copy;
321
322 bfd_coff_swap_sym_in (abfd, (PTR) esym, (PTR) &sym);
323
324 if (sym.n_sclass == C_EXT
325 || (sym_is_global && (*sym_is_global) (abfd, &sym)))
326 {
327 const char *name;
328 char buf[SYMNMLEN + 1];
329 flagword flags;
330 asection *section;
331 bfd_vma value;
332
333 /* This symbol is externally visible. */
334
335 name = _bfd_coff_internal_syment_name (abfd, &sym, buf);
336 if (name == NULL)
337 return false;
338
339 /* We must copy the name into memory if we got it from the
340 syment itself, rather than the string table. */
341 copy = default_copy;
342 if (sym._n._n_n._n_zeroes != 0
343 || sym._n._n_n._n_offset == 0)
344 copy = true;
345
346 value = sym.n_value;
347
348 if (sym.n_scnum == 0)
349 {
350 if (value == 0)
351 {
352 flags = 0;
353 section = bfd_und_section_ptr;
354 }
355 else
356 {
357 flags = BSF_GLOBAL;
358 section = bfd_com_section_ptr;
359 }
360 }
361 else
362 {
363 flags = BSF_EXPORT | BSF_GLOBAL;
364 section = coff_section_from_bfd_index (abfd, sym.n_scnum);
365 value -= section->vma;
366 }
367
368 if (! (bfd_coff_link_add_one_symbol
369 (info, abfd, name, flags, section, value,
370 (const char *) NULL, copy, false,
371 (struct bfd_link_hash_entry **) sym_hash)))
372 return false;
373
374 if (info->hash->creator->flavour == bfd_get_flavour (abfd))
375 {
376 if (((*sym_hash)->class == C_NULL
377 && (*sym_hash)->type == T_NULL)
378 || sym.n_scnum != 0
379 || (sym.n_value != 0
380 && (*sym_hash)->root.type != bfd_link_hash_defined))
381 {
382 (*sym_hash)->class = sym.n_sclass;
383 (*sym_hash)->type = sym.n_type;
384 (*sym_hash)->numaux = sym.n_numaux;
385 (*sym_hash)->auxbfd = abfd;
386 if (sym.n_numaux != 0)
387 {
388 union internal_auxent *alloc;
389 unsigned int i;
390 bfd_byte *eaux;
391 union internal_auxent *iaux;
392
393 alloc = ((union internal_auxent *)
394 bfd_hash_allocate (&info->hash->table,
395 (sym.n_numaux
396 * sizeof (*alloc))));
397 if (alloc == NULL)
398 return false;
399 for (i = 0, eaux = esym + symesz, iaux = alloc;
400 i < sym.n_numaux;
401 i++, eaux += symesz, iaux++)
402 bfd_coff_swap_aux_in (abfd, (PTR) eaux, sym.n_type,
403 sym.n_sclass, i, sym.n_numaux,
404 (PTR) iaux);
405 (*sym_hash)->aux = alloc;
406 }
407 }
408 }
409 }
410
411 esym += (sym.n_numaux + 1) * symesz;
412 sym_hash += sym.n_numaux + 1;
413 }
414
415 return true;
416 }
417 \f
418 /* Do the final link step. */
419
420 boolean
421 _bfd_coff_final_link (abfd, info)
422 bfd *abfd;
423 struct bfd_link_info *info;
424 {
425 bfd_size_type symesz;
426 struct coff_final_link_info finfo;
427 boolean debug_merge_allocated;
428 asection *o;
429 struct bfd_link_order *p;
430 size_t max_sym_count;
431 size_t max_lineno_count;
432 size_t max_reloc_count;
433 size_t max_output_reloc_count;
434 size_t max_contents_size;
435 file_ptr rel_filepos;
436 unsigned int relsz;
437 file_ptr line_filepos;
438 unsigned int linesz;
439 bfd *sub;
440 bfd_byte *external_relocs = NULL;
441 char strbuf[STRING_SIZE_SIZE];
442
443 symesz = bfd_coff_symesz (abfd);
444
445 finfo.info = info;
446 finfo.output_bfd = abfd;
447 finfo.strtab = NULL;
448 finfo.section_info = NULL;
449 finfo.last_file_index = -1;
450 finfo.internal_syms = NULL;
451 finfo.sec_ptrs = NULL;
452 finfo.sym_indices = NULL;
453 finfo.outsyms = NULL;
454 finfo.linenos = NULL;
455 finfo.contents = NULL;
456 finfo.external_relocs = NULL;
457 finfo.internal_relocs = NULL;
458 debug_merge_allocated = false;
459
460 coff_data (abfd)->link_info = info;
461
462 finfo.strtab = _bfd_stringtab_init ();
463 if (finfo.strtab == NULL)
464 goto error_return;
465
466 if (! coff_debug_merge_hash_table_init (&finfo.debug_merge))
467 goto error_return;
468 debug_merge_allocated = true;
469
470 /* Compute the file positions for all the sections. */
471 if (! abfd->output_has_begun)
472 bfd_coff_compute_section_file_positions (abfd);
473
474 /* Count the line numbers and relocation entries required for the
475 output file. Set the file positions for the relocs. */
476 rel_filepos = obj_relocbase (abfd);
477 relsz = bfd_coff_relsz (abfd);
478 max_contents_size = 0;
479 max_lineno_count = 0;
480 max_reloc_count = 0;
481
482 for (o = abfd->sections; o != NULL; o = o->next)
483 {
484 o->reloc_count = 0;
485 o->lineno_count = 0;
486 for (p = o->link_order_head; p != NULL; p = p->next)
487 {
488 if (p->type == bfd_indirect_link_order)
489 {
490 asection *sec;
491
492 sec = p->u.indirect.section;
493
494 /* Mark all sections which are to be included in the
495 link. This will normally be every section. We need
496 to do this so that we can identify any sections which
497 the linker has decided to not include. */
498 sec->flags |= SEC_LINKER_MARK;
499
500 if (info->strip == strip_none
501 || info->strip == strip_some)
502 o->lineno_count += sec->lineno_count;
503
504 if (info->relocateable)
505 o->reloc_count += sec->reloc_count;
506
507 if (sec->_raw_size > max_contents_size)
508 max_contents_size = sec->_raw_size;
509 if (sec->lineno_count > max_lineno_count)
510 max_lineno_count = sec->lineno_count;
511 if (sec->reloc_count > max_reloc_count)
512 max_reloc_count = sec->reloc_count;
513 }
514 else if (info->relocateable
515 && (p->type == bfd_section_reloc_link_order
516 || p->type == bfd_symbol_reloc_link_order))
517 ++o->reloc_count;
518 }
519 if (o->reloc_count == 0)
520 o->rel_filepos = 0;
521 else
522 {
523 o->flags |= SEC_RELOC;
524 o->rel_filepos = rel_filepos;
525 rel_filepos += o->reloc_count * relsz;
526 }
527 }
528
529 /* If doing a relocateable link, allocate space for the pointers we
530 need to keep. */
531 if (info->relocateable)
532 {
533 unsigned int i;
534
535 /* We use section_count + 1, rather than section_count, because
536 the target_index fields are 1 based. */
537 finfo.section_info =
538 ((struct coff_link_section_info *)
539 bfd_malloc ((abfd->section_count + 1)
540 * sizeof (struct coff_link_section_info)));
541 if (finfo.section_info == NULL)
542 goto error_return;
543 for (i = 0; i <= abfd->section_count; i++)
544 {
545 finfo.section_info[i].relocs = NULL;
546 finfo.section_info[i].rel_hashes = NULL;
547 }
548 }
549
550 /* We now know the size of the relocs, so we can determine the file
551 positions of the line numbers. */
552 line_filepos = rel_filepos;
553 linesz = bfd_coff_linesz (abfd);
554 max_output_reloc_count = 0;
555 for (o = abfd->sections; o != NULL; o = o->next)
556 {
557 if (o->lineno_count == 0)
558 o->line_filepos = 0;
559 else
560 {
561 o->line_filepos = line_filepos;
562 line_filepos += o->lineno_count * linesz;
563 }
564
565 if (o->reloc_count != 0)
566 {
567 /* We don't know the indices of global symbols until we have
568 written out all the local symbols. For each section in
569 the output file, we keep an array of pointers to hash
570 table entries. Each entry in the array corresponds to a
571 reloc. When we find a reloc against a global symbol, we
572 set the corresponding entry in this array so that we can
573 fix up the symbol index after we have written out all the
574 local symbols.
575
576 Because of this problem, we also keep the relocs in
577 memory until the end of the link. This wastes memory,
578 but only when doing a relocateable link, which is not the
579 common case. */
580 BFD_ASSERT (info->relocateable);
581 finfo.section_info[o->target_index].relocs =
582 ((struct internal_reloc *)
583 bfd_malloc (o->reloc_count * sizeof (struct internal_reloc)));
584 finfo.section_info[o->target_index].rel_hashes =
585 ((struct coff_link_hash_entry **)
586 bfd_malloc (o->reloc_count
587 * sizeof (struct coff_link_hash_entry *)));
588 if (finfo.section_info[o->target_index].relocs == NULL
589 || finfo.section_info[o->target_index].rel_hashes == NULL)
590 goto error_return;
591
592 if (o->reloc_count > max_output_reloc_count)
593 max_output_reloc_count = o->reloc_count;
594 }
595
596 /* Reset the reloc and lineno counts, so that we can use them to
597 count the number of entries we have output so far. */
598 o->reloc_count = 0;
599 o->lineno_count = 0;
600 }
601
602 obj_sym_filepos (abfd) = line_filepos;
603
604 /* Figure out the largest number of symbols in an input BFD. Take
605 the opportunity to clear the output_has_begun fields of all the
606 input BFD's. */
607 max_sym_count = 0;
608 for (sub = info->input_bfds; sub != NULL; sub = sub->link_next)
609 {
610 size_t sz;
611
612 sub->output_has_begun = false;
613 sz = obj_raw_syment_count (sub);
614 if (sz > max_sym_count)
615 max_sym_count = sz;
616 }
617
618 /* Allocate some buffers used while linking. */
619 finfo.internal_syms = ((struct internal_syment *)
620 bfd_malloc (max_sym_count
621 * sizeof (struct internal_syment)));
622 finfo.sec_ptrs = (asection **) bfd_malloc (max_sym_count
623 * sizeof (asection *));
624 finfo.sym_indices = (long *) bfd_malloc (max_sym_count * sizeof (long));
625 finfo.outsyms = ((bfd_byte *)
626 bfd_malloc ((size_t) ((max_sym_count + 1) * symesz)));
627 finfo.linenos = (bfd_byte *) bfd_malloc (max_lineno_count
628 * bfd_coff_linesz (abfd));
629 finfo.contents = (bfd_byte *) bfd_malloc (max_contents_size);
630 finfo.external_relocs = (bfd_byte *) bfd_malloc (max_reloc_count * relsz);
631 if (! info->relocateable)
632 finfo.internal_relocs = ((struct internal_reloc *)
633 bfd_malloc (max_reloc_count
634 * sizeof (struct internal_reloc)));
635 if ((finfo.internal_syms == NULL && max_sym_count > 0)
636 || (finfo.sec_ptrs == NULL && max_sym_count > 0)
637 || (finfo.sym_indices == NULL && max_sym_count > 0)
638 || finfo.outsyms == NULL
639 || (finfo.linenos == NULL && max_lineno_count > 0)
640 || (finfo.contents == NULL && max_contents_size > 0)
641 || (finfo.external_relocs == NULL && max_reloc_count > 0)
642 || (! info->relocateable
643 && finfo.internal_relocs == NULL
644 && max_reloc_count > 0))
645 goto error_return;
646
647 /* We now know the position of everything in the file, except that
648 we don't know the size of the symbol table and therefore we don't
649 know where the string table starts. We just build the string
650 table in memory as we go along. We process all the relocations
651 for a single input file at once. */
652 obj_raw_syment_count (abfd) = 0;
653
654 if (coff_backend_info (abfd)->_bfd_coff_start_final_link)
655 {
656 if (! bfd_coff_start_final_link (abfd, info))
657 goto error_return;
658 }
659
660 for (o = abfd->sections; o != NULL; o = o->next)
661 {
662 for (p = o->link_order_head; p != NULL; p = p->next)
663 {
664 if (p->type == bfd_indirect_link_order
665 && (bfd_get_flavour (p->u.indirect.section->owner)
666 == bfd_target_coff_flavour))
667 {
668 sub = p->u.indirect.section->owner;
669 if (! sub->output_has_begun)
670 {
671 if (! _bfd_coff_link_input_bfd (&finfo, sub))
672 goto error_return;
673 sub->output_has_begun = true;
674 }
675 }
676 else if (p->type == bfd_section_reloc_link_order
677 || p->type == bfd_symbol_reloc_link_order)
678 {
679 if (! _bfd_coff_reloc_link_order (abfd, &finfo, o, p))
680 goto error_return;
681 }
682 else
683 {
684 if (! _bfd_default_link_order (abfd, info, o, p))
685 goto error_return;
686 }
687 }
688 }
689
690 /* Free up the buffers used by _bfd_coff_link_input_bfd. */
691
692 coff_debug_merge_hash_table_free (&finfo.debug_merge);
693 debug_merge_allocated = false;
694
695 if (finfo.internal_syms != NULL)
696 {
697 free (finfo.internal_syms);
698 finfo.internal_syms = NULL;
699 }
700 if (finfo.sec_ptrs != NULL)
701 {
702 free (finfo.sec_ptrs);
703 finfo.sec_ptrs = NULL;
704 }
705 if (finfo.sym_indices != NULL)
706 {
707 free (finfo.sym_indices);
708 finfo.sym_indices = NULL;
709 }
710 if (finfo.linenos != NULL)
711 {
712 free (finfo.linenos);
713 finfo.linenos = NULL;
714 }
715 if (finfo.contents != NULL)
716 {
717 free (finfo.contents);
718 finfo.contents = NULL;
719 }
720 if (finfo.external_relocs != NULL)
721 {
722 free (finfo.external_relocs);
723 finfo.external_relocs = NULL;
724 }
725 if (finfo.internal_relocs != NULL)
726 {
727 free (finfo.internal_relocs);
728 finfo.internal_relocs = NULL;
729 }
730
731 /* The value of the last C_FILE symbol is supposed to be the symbol
732 index of the first external symbol. Write it out again if
733 necessary. */
734 if (finfo.last_file_index != -1
735 && (unsigned int) finfo.last_file.n_value != obj_raw_syment_count (abfd))
736 {
737 finfo.last_file.n_value = obj_raw_syment_count (abfd);
738 bfd_coff_swap_sym_out (abfd, (PTR) &finfo.last_file,
739 (PTR) finfo.outsyms);
740 if (bfd_seek (abfd,
741 (obj_sym_filepos (abfd)
742 + finfo.last_file_index * symesz),
743 SEEK_SET) != 0
744 || bfd_write (finfo.outsyms, symesz, 1, abfd) != symesz)
745 return false;
746 }
747
748 /* Write out the global symbols. */
749 finfo.failed = false;
750 coff_link_hash_traverse (coff_hash_table (info), _bfd_coff_write_global_sym,
751 (PTR) &finfo);
752 if (finfo.failed)
753 goto error_return;
754
755 /* The outsyms buffer is used by _bfd_coff_write_global_sym. */
756 if (finfo.outsyms != NULL)
757 {
758 free (finfo.outsyms);
759 finfo.outsyms = NULL;
760 }
761
762 if (info->relocateable)
763 {
764 /* Now that we have written out all the global symbols, we know
765 the symbol indices to use for relocs against them, and we can
766 finally write out the relocs. */
767 external_relocs = ((bfd_byte *)
768 bfd_malloc (max_output_reloc_count * relsz));
769 if (external_relocs == NULL)
770 goto error_return;
771
772 for (o = abfd->sections; o != NULL; o = o->next)
773 {
774 struct internal_reloc *irel;
775 struct internal_reloc *irelend;
776 struct coff_link_hash_entry **rel_hash;
777 bfd_byte *erel;
778
779 if (o->reloc_count == 0)
780 continue;
781
782 irel = finfo.section_info[o->target_index].relocs;
783 irelend = irel + o->reloc_count;
784 rel_hash = finfo.section_info[o->target_index].rel_hashes;
785 erel = external_relocs;
786 for (; irel < irelend; irel++, rel_hash++, erel += relsz)
787 {
788 if (*rel_hash != NULL)
789 {
790 BFD_ASSERT ((*rel_hash)->indx >= 0);
791 irel->r_symndx = (*rel_hash)->indx;
792 }
793 bfd_coff_swap_reloc_out (abfd, (PTR) irel, (PTR) erel);
794 }
795
796 if (bfd_seek (abfd, o->rel_filepos, SEEK_SET) != 0
797 || bfd_write ((PTR) external_relocs, relsz, o->reloc_count,
798 abfd) != relsz * o->reloc_count)
799 goto error_return;
800 }
801
802 free (external_relocs);
803 external_relocs = NULL;
804 }
805
806 /* Free up the section information. */
807 if (finfo.section_info != NULL)
808 {
809 unsigned int i;
810
811 for (i = 0; i < abfd->section_count; i++)
812 {
813 if (finfo.section_info[i].relocs != NULL)
814 free (finfo.section_info[i].relocs);
815 if (finfo.section_info[i].rel_hashes != NULL)
816 free (finfo.section_info[i].rel_hashes);
817 }
818 free (finfo.section_info);
819 finfo.section_info = NULL;
820 }
821
822 /* Write out the string table. */
823 if (obj_raw_syment_count (abfd) != 0)
824 {
825 if (bfd_seek (abfd,
826 (obj_sym_filepos (abfd)
827 + obj_raw_syment_count (abfd) * symesz),
828 SEEK_SET) != 0)
829 return false;
830
831 #if STRING_SIZE_SIZE == 4
832 bfd_h_put_32 (abfd,
833 _bfd_stringtab_size (finfo.strtab) + STRING_SIZE_SIZE,
834 (bfd_byte *) strbuf);
835 #else
836 #error Change bfd_h_put_32
837 #endif
838
839 if (bfd_write (strbuf, 1, STRING_SIZE_SIZE, abfd) != STRING_SIZE_SIZE)
840 return false;
841
842 if (! _bfd_stringtab_emit (abfd, finfo.strtab))
843 return false;
844 }
845
846 _bfd_stringtab_free (finfo.strtab);
847
848 /* Setting bfd_get_symcount to 0 will cause write_object_contents to
849 not try to write out the symbols. */
850 bfd_get_symcount (abfd) = 0;
851
852 return true;
853
854 error_return:
855 if (debug_merge_allocated)
856 coff_debug_merge_hash_table_free (&finfo.debug_merge);
857 if (finfo.strtab != NULL)
858 _bfd_stringtab_free (finfo.strtab);
859 if (finfo.section_info != NULL)
860 {
861 unsigned int i;
862
863 for (i = 0; i < abfd->section_count; i++)
864 {
865 if (finfo.section_info[i].relocs != NULL)
866 free (finfo.section_info[i].relocs);
867 if (finfo.section_info[i].rel_hashes != NULL)
868 free (finfo.section_info[i].rel_hashes);
869 }
870 free (finfo.section_info);
871 }
872 if (finfo.internal_syms != NULL)
873 free (finfo.internal_syms);
874 if (finfo.sec_ptrs != NULL)
875 free (finfo.sec_ptrs);
876 if (finfo.sym_indices != NULL)
877 free (finfo.sym_indices);
878 if (finfo.outsyms != NULL)
879 free (finfo.outsyms);
880 if (finfo.linenos != NULL)
881 free (finfo.linenos);
882 if (finfo.contents != NULL)
883 free (finfo.contents);
884 if (finfo.external_relocs != NULL)
885 free (finfo.external_relocs);
886 if (finfo.internal_relocs != NULL)
887 free (finfo.internal_relocs);
888 if (external_relocs != NULL)
889 free (external_relocs);
890 return false;
891 }
892
893 /* parse out a -heap <reserved>,<commit> line */
894
895 static char *
896 dores_com (ptr, output_bfd, heap)
897 char *ptr;
898 bfd *output_bfd;
899 int heap;
900 {
901 if (coff_data(output_bfd)->pe)
902 {
903 int val = strtoul (ptr, &ptr, 0);
904 if (heap)
905 pe_data(output_bfd)->pe_opthdr.SizeOfHeapReserve =val;
906 else
907 pe_data(output_bfd)->pe_opthdr.SizeOfStackReserve =val;
908
909 if (ptr[0] == ',')
910 {
911 int val = strtoul (ptr+1, &ptr, 0);
912 if (heap)
913 pe_data(output_bfd)->pe_opthdr.SizeOfHeapCommit =val;
914 else
915 pe_data(output_bfd)->pe_opthdr.SizeOfStackCommit =val;
916 }
917 }
918 return ptr;
919 }
920
921 static char *get_name(ptr, dst)
922 char *ptr;
923 char **dst;
924 {
925 while (*ptr == ' ')
926 ptr++;
927 *dst = ptr;
928 while (*ptr && *ptr != ' ')
929 ptr++;
930 *ptr = 0;
931 return ptr+1;
932 }
933
934 /* Process any magic embedded commands in a section called .drectve */
935
936 static int
937 process_embedded_commands (output_bfd, info, abfd)
938 bfd *output_bfd;
939 struct bfd_link_info *info;
940 bfd *abfd;
941 {
942 asection *sec = bfd_get_section_by_name (abfd, ".drectve");
943 char *s;
944 char *e;
945 char *copy;
946 if (!sec)
947 return 1;
948
949 copy = bfd_malloc ((size_t) sec->_raw_size);
950 if (!copy)
951 return 0;
952 if (! bfd_get_section_contents(abfd, sec, copy, 0, sec->_raw_size))
953 {
954 free (copy);
955 return 0;
956 }
957 e = copy + sec->_raw_size;
958 for (s = copy; s < e ; )
959 {
960 if (s[0]!= '-') {
961 s++;
962 continue;
963 }
964 if (strncmp (s,"-attr", 5) == 0)
965 {
966 char *name;
967 char *attribs;
968 asection *asec;
969
970 int loop = 1;
971 int had_write = 0;
972 int had_read = 0;
973 int had_exec= 0;
974 int had_shared= 0;
975 s += 5;
976 s = get_name(s, &name);
977 s = get_name(s, &attribs);
978 while (loop) {
979 switch (*attribs++)
980 {
981 case 'W':
982 had_write = 1;
983 break;
984 case 'R':
985 had_read = 1;
986 break;
987 case 'S':
988 had_shared = 1;
989 break;
990 case 'X':
991 had_exec = 1;
992 break;
993 default:
994 loop = 0;
995 }
996 }
997 asec = bfd_get_section_by_name (abfd, name);
998 if (asec) {
999 if (had_exec)
1000 asec->flags |= SEC_CODE;
1001 if (!had_write)
1002 asec->flags |= SEC_READONLY;
1003 }
1004 }
1005 else if (strncmp (s,"-heap", 5) == 0)
1006 {
1007 s = dores_com (s+5, output_bfd, 1);
1008 }
1009 else if (strncmp (s,"-stack", 6) == 0)
1010 {
1011 s = dores_com (s+6, output_bfd, 0);
1012 }
1013 else
1014 s++;
1015 }
1016 free (copy);
1017 return 1;
1018 }
1019
1020 /* Link an input file into the linker output file. This function
1021 handles all the sections and relocations of the input file at once. */
1022
1023 boolean
1024 _bfd_coff_link_input_bfd (finfo, input_bfd)
1025 struct coff_final_link_info *finfo;
1026 bfd *input_bfd;
1027 {
1028 boolean (*sym_is_global) PARAMS ((bfd *, struct internal_syment *));
1029 boolean (*adjust_symndx) PARAMS ((bfd *, struct bfd_link_info *, bfd *,
1030 asection *, struct internal_reloc *,
1031 boolean *));
1032 bfd *output_bfd;
1033 const char *strings;
1034 bfd_size_type syment_base;
1035 unsigned int n_tmask;
1036 unsigned int n_btshft;
1037 boolean copy, hash;
1038 bfd_size_type isymesz;
1039 bfd_size_type osymesz;
1040 bfd_size_type linesz;
1041 bfd_byte *esym;
1042 bfd_byte *esym_end;
1043 struct internal_syment *isymp;
1044 asection **secpp;
1045 long *indexp;
1046 unsigned long output_index;
1047 bfd_byte *outsym;
1048 struct coff_link_hash_entry **sym_hash;
1049 asection *o;
1050
1051 /* Move all the symbols to the output file. */
1052
1053 output_bfd = finfo->output_bfd;
1054 sym_is_global = coff_backend_info (input_bfd)->_bfd_coff_sym_is_global;
1055 strings = NULL;
1056 syment_base = obj_raw_syment_count (output_bfd);
1057 isymesz = bfd_coff_symesz (input_bfd);
1058 osymesz = bfd_coff_symesz (output_bfd);
1059 linesz = bfd_coff_linesz (input_bfd);
1060 BFD_ASSERT (linesz == bfd_coff_linesz (output_bfd));
1061
1062 n_tmask = coff_data (input_bfd)->local_n_tmask;
1063 n_btshft = coff_data (input_bfd)->local_n_btshft;
1064
1065 /* Define macros so that ISFCN, et. al., macros work correctly. */
1066 #define N_TMASK n_tmask
1067 #define N_BTSHFT n_btshft
1068
1069 copy = false;
1070 if (! finfo->info->keep_memory)
1071 copy = true;
1072 hash = true;
1073 if ((output_bfd->flags & BFD_TRADITIONAL_FORMAT) != 0)
1074 hash = false;
1075
1076 if (! _bfd_coff_get_external_symbols (input_bfd))
1077 return false;
1078
1079 esym = (bfd_byte *) obj_coff_external_syms (input_bfd);
1080 esym_end = esym + obj_raw_syment_count (input_bfd) * isymesz;
1081 isymp = finfo->internal_syms;
1082 secpp = finfo->sec_ptrs;
1083 indexp = finfo->sym_indices;
1084 output_index = syment_base;
1085 outsym = finfo->outsyms;
1086
1087 if (coff_data (output_bfd)->pe)
1088 {
1089 if (! process_embedded_commands (output_bfd, finfo->info, input_bfd))
1090 return false;
1091 }
1092
1093 while (esym < esym_end)
1094 {
1095 struct internal_syment isym;
1096 boolean skip;
1097 boolean global;
1098 int add;
1099
1100 bfd_coff_swap_sym_in (input_bfd, (PTR) esym, (PTR) isymp);
1101
1102 /* Make a copy of *isymp so that the relocate_section function
1103 always sees the original values. This is more reliable than
1104 always recomputing the symbol value even if we are stripping
1105 the symbol. */
1106 isym = *isymp;
1107
1108 if (isym.n_scnum != 0)
1109 *secpp = coff_section_from_bfd_index (input_bfd, isym.n_scnum);
1110 else
1111 {
1112 if (isym.n_value == 0)
1113 *secpp = bfd_und_section_ptr;
1114 else
1115 *secpp = bfd_com_section_ptr;
1116 }
1117
1118 *indexp = -1;
1119
1120 skip = false;
1121 global = false;
1122 add = 1 + isym.n_numaux;
1123
1124 /* If we are stripping all symbols, we want to skip this one. */
1125 if (finfo->info->strip == strip_all)
1126 skip = true;
1127
1128 if (! skip)
1129 {
1130 if (isym.n_sclass == C_EXT
1131 || (sym_is_global && (*sym_is_global) (input_bfd, &isym)))
1132 {
1133 /* This is a global symbol. Global symbols come at the
1134 end of the symbol table, so skip them for now.
1135 Function symbols, however, are an exception, and are
1136 not moved to the end. */
1137 global = true;
1138 if (! ISFCN (isym.n_type))
1139 skip = true;
1140 }
1141 else
1142 {
1143 /* This is a local symbol. Skip it if we are discarding
1144 local symbols. */
1145 if (finfo->info->discard == discard_all)
1146 skip = true;
1147 }
1148 }
1149
1150 /* If we stripping debugging symbols, and this is a debugging
1151 symbol, then skip it. */
1152 if (! skip
1153 && finfo->info->strip == strip_debugger
1154 && isym.n_scnum == N_DEBUG)
1155 skip = true;
1156
1157 /* If some symbols are stripped based on the name, work out the
1158 name and decide whether to skip this symbol. */
1159 if (! skip
1160 && (finfo->info->strip == strip_some
1161 || finfo->info->discard == discard_l))
1162 {
1163 const char *name;
1164 char buf[SYMNMLEN + 1];
1165
1166 name = _bfd_coff_internal_syment_name (input_bfd, &isym, buf);
1167 if (name == NULL)
1168 return false;
1169
1170 if ((finfo->info->strip == strip_some
1171 && (bfd_hash_lookup (finfo->info->keep_hash, name, false,
1172 false) == NULL))
1173 || (! global
1174 && finfo->info->discard == discard_l
1175 && strncmp (name, finfo->info->lprefix,
1176 finfo->info->lprefix_len) == 0))
1177 skip = true;
1178 }
1179
1180 /* If this is an enum, struct, or union tag, see if we have
1181 already output an identical type. */
1182 if (! skip
1183 && (finfo->output_bfd->flags & BFD_TRADITIONAL_FORMAT) == 0
1184 && (isym.n_sclass == C_ENTAG
1185 || isym.n_sclass == C_STRTAG
1186 || isym.n_sclass == C_UNTAG)
1187 && isym.n_numaux == 1)
1188 {
1189 const char *name;
1190 char buf[SYMNMLEN + 1];
1191 struct coff_debug_merge_hash_entry *mh;
1192 struct coff_debug_merge_type *mt;
1193 union internal_auxent aux;
1194 struct coff_debug_merge_element **epp;
1195 bfd_byte *esl, *eslend;
1196 struct internal_syment *islp;
1197
1198 name = _bfd_coff_internal_syment_name (input_bfd, &isym, buf);
1199 if (name == NULL)
1200 return false;
1201
1202 /* Ignore fake names invented by compiler; treat them all as
1203 the same name. */
1204 if (*name == '~' || *name == '.' || *name == '$'
1205 || (*name == bfd_get_symbol_leading_char (input_bfd)
1206 && (name[1] == '~' || name[1] == '.' || name[1] == '$')))
1207 name = "";
1208
1209 mh = coff_debug_merge_hash_lookup (&finfo->debug_merge, name,
1210 true, true);
1211 if (mh == NULL)
1212 return false;
1213
1214 /* Allocate memory to hold type information. If this turns
1215 out to be a duplicate, we pass this address to
1216 bfd_release. */
1217 mt = ((struct coff_debug_merge_type *)
1218 bfd_alloc (input_bfd,
1219 sizeof (struct coff_debug_merge_type)));
1220 if (mt == NULL)
1221 return false;
1222 mt->class = isym.n_sclass;
1223
1224 /* Pick up the aux entry, which points to the end of the tag
1225 entries. */
1226 bfd_coff_swap_aux_in (input_bfd, (PTR) (esym + isymesz),
1227 isym.n_type, isym.n_sclass, 0, isym.n_numaux,
1228 (PTR) &aux);
1229
1230 /* Gather the elements. */
1231 epp = &mt->elements;
1232 mt->elements = NULL;
1233 islp = isymp + 2;
1234 esl = esym + 2 * isymesz;
1235 eslend = ((bfd_byte *) obj_coff_external_syms (input_bfd)
1236 + aux.x_sym.x_fcnary.x_fcn.x_endndx.l * isymesz);
1237 while (esl < eslend)
1238 {
1239 const char *elename;
1240 char elebuf[SYMNMLEN + 1];
1241 char *copy;
1242
1243 bfd_coff_swap_sym_in (input_bfd, (PTR) esl, (PTR) islp);
1244
1245 *epp = ((struct coff_debug_merge_element *)
1246 bfd_alloc (input_bfd,
1247 sizeof (struct coff_debug_merge_element)));
1248 if (*epp == NULL)
1249 return false;
1250
1251 elename = _bfd_coff_internal_syment_name (input_bfd, islp,
1252 elebuf);
1253 if (elename == NULL)
1254 return false;
1255
1256 copy = (char *) bfd_alloc (input_bfd, strlen (elename) + 1);
1257 if (copy == NULL)
1258 return false;
1259 strcpy (copy, elename);
1260
1261 (*epp)->name = copy;
1262 (*epp)->type = islp->n_type;
1263 (*epp)->tagndx = 0;
1264 if (islp->n_numaux >= 1
1265 && islp->n_type != T_NULL
1266 && islp->n_sclass != C_EOS)
1267 {
1268 union internal_auxent eleaux;
1269 long indx;
1270
1271 bfd_coff_swap_aux_in (input_bfd, (PTR) (esl + isymesz),
1272 islp->n_type, islp->n_sclass, 0,
1273 islp->n_numaux, (PTR) &eleaux);
1274 indx = eleaux.x_sym.x_tagndx.l;
1275
1276 /* FIXME: If this tagndx entry refers to a symbol
1277 defined later in this file, we just ignore it.
1278 Handling this correctly would be tedious, and may
1279 not be required. */
1280
1281 if (indx > 0
1282 && (indx
1283 < ((esym -
1284 (bfd_byte *) obj_coff_external_syms (input_bfd))
1285 / (long) isymesz)))
1286 {
1287 (*epp)->tagndx = finfo->sym_indices[indx];
1288 if ((*epp)->tagndx < 0)
1289 (*epp)->tagndx = 0;
1290 }
1291 }
1292 epp = &(*epp)->next;
1293 *epp = NULL;
1294
1295 esl += (islp->n_numaux + 1) * isymesz;
1296 islp += islp->n_numaux + 1;
1297 }
1298
1299 /* See if we already have a definition which matches this
1300 type. We always output the type if it has no elements,
1301 for simplicity. */
1302 if (mt->elements == NULL)
1303 bfd_release (input_bfd, (PTR) mt);
1304 else
1305 {
1306 struct coff_debug_merge_type *mtl;
1307
1308 for (mtl = mh->types; mtl != NULL; mtl = mtl->next)
1309 {
1310 struct coff_debug_merge_element *me, *mel;
1311
1312 if (mtl->class != mt->class)
1313 continue;
1314
1315 for (me = mt->elements, mel = mtl->elements;
1316 me != NULL && mel != NULL;
1317 me = me->next, mel = mel->next)
1318 {
1319 if (strcmp (me->name, mel->name) != 0
1320 || me->type != mel->type
1321 || me->tagndx != mel->tagndx)
1322 break;
1323 }
1324
1325 if (me == NULL && mel == NULL)
1326 break;
1327 }
1328
1329 if (mtl == NULL || (bfd_size_type) mtl->indx >= syment_base)
1330 {
1331 /* This is the first definition of this type. */
1332 mt->indx = output_index;
1333 mt->next = mh->types;
1334 mh->types = mt;
1335 }
1336 else
1337 {
1338 /* This is a redefinition which can be merged. */
1339 bfd_release (input_bfd, (PTR) mt);
1340 *indexp = mtl->indx;
1341 add = (eslend - esym) / isymesz;
1342 skip = true;
1343 }
1344 }
1345 }
1346
1347 /* We now know whether we are to skip this symbol or not. */
1348 if (! skip)
1349 {
1350 /* Adjust the symbol in order to output it. */
1351
1352 if (isym._n._n_n._n_zeroes == 0
1353 && isym._n._n_n._n_offset != 0)
1354 {
1355 const char *name;
1356 bfd_size_type indx;
1357
1358 /* This symbol has a long name. Enter it in the string
1359 table we are building. Note that we do not check
1360 bfd_coff_symname_in_debug. That is only true for
1361 XCOFF, and XCOFF requires different linking code
1362 anyhow. */
1363 name = _bfd_coff_internal_syment_name (input_bfd, &isym,
1364 (char *) NULL);
1365 if (name == NULL)
1366 return false;
1367 indx = _bfd_stringtab_add (finfo->strtab, name, hash, copy);
1368 if (indx == (bfd_size_type) -1)
1369 return false;
1370 isym._n._n_n._n_offset = STRING_SIZE_SIZE + indx;
1371 }
1372
1373 if (isym.n_scnum > 0)
1374 {
1375 isym.n_scnum = (*secpp)->output_section->target_index;
1376 isym.n_value += ((*secpp)->output_section->vma
1377 + (*secpp)->output_offset
1378 - (*secpp)->vma);
1379 }
1380
1381 /* The value of a C_FILE symbol is the symbol index of the
1382 next C_FILE symbol. The value of the last C_FILE symbol
1383 is the symbol index to the first external symbol
1384 (actually, coff_renumber_symbols does not get this
1385 right--it just sets the value of the last C_FILE symbol
1386 to zero--and nobody has ever complained about it). We
1387 try to get this right, below, just before we write the
1388 symbols out, but in the general case we may have to write
1389 the symbol out twice. */
1390 if (isym.n_sclass == C_FILE)
1391 {
1392 if (finfo->last_file_index != -1
1393 && finfo->last_file.n_value != (long) output_index)
1394 {
1395 /* We must correct the value of the last C_FILE entry. */
1396 finfo->last_file.n_value = output_index;
1397 if ((bfd_size_type) finfo->last_file_index >= syment_base)
1398 {
1399 /* The last C_FILE symbol is in this input file. */
1400 bfd_coff_swap_sym_out (output_bfd,
1401 (PTR) &finfo->last_file,
1402 (PTR) (finfo->outsyms
1403 + ((finfo->last_file_index
1404 - syment_base)
1405 * osymesz)));
1406 }
1407 else
1408 {
1409 /* We have already written out the last C_FILE
1410 symbol. We need to write it out again. We
1411 borrow *outsym temporarily. */
1412 bfd_coff_swap_sym_out (output_bfd,
1413 (PTR) &finfo->last_file,
1414 (PTR) outsym);
1415 if (bfd_seek (output_bfd,
1416 (obj_sym_filepos (output_bfd)
1417 + finfo->last_file_index * osymesz),
1418 SEEK_SET) != 0
1419 || (bfd_write (outsym, osymesz, 1, output_bfd)
1420 != osymesz))
1421 return false;
1422 }
1423 }
1424
1425 finfo->last_file_index = output_index;
1426 finfo->last_file = isym;
1427 }
1428
1429 /* Output the symbol. */
1430
1431 bfd_coff_swap_sym_out (output_bfd, (PTR) &isym, (PTR) outsym);
1432
1433 *indexp = output_index;
1434
1435 if (global)
1436 {
1437 long indx;
1438 struct coff_link_hash_entry *h;
1439
1440 indx = ((esym - (bfd_byte *) obj_coff_external_syms (input_bfd))
1441 / isymesz);
1442 h = obj_coff_sym_hashes (input_bfd)[indx];
1443 BFD_ASSERT (h != NULL);
1444 h->indx = output_index;
1445 }
1446
1447 output_index += add;
1448 outsym += add * osymesz;
1449 }
1450
1451 esym += add * isymesz;
1452 isymp += add;
1453 ++secpp;
1454 ++indexp;
1455 for (--add; add > 0; --add)
1456 {
1457 *secpp++ = NULL;
1458 *indexp++ = -1;
1459 }
1460 }
1461
1462 /* Fix up the aux entries. This must be done in a separate pass,
1463 because we don't know the correct symbol indices until we have
1464 already decided which symbols we are going to keep. */
1465
1466 esym = (bfd_byte *) obj_coff_external_syms (input_bfd);
1467 esym_end = esym + obj_raw_syment_count (input_bfd) * isymesz;
1468 isymp = finfo->internal_syms;
1469 indexp = finfo->sym_indices;
1470 sym_hash = obj_coff_sym_hashes (input_bfd);
1471 outsym = finfo->outsyms;
1472 while (esym < esym_end)
1473 {
1474 int add;
1475
1476 add = 1 + isymp->n_numaux;
1477
1478 if ((*indexp < 0
1479 || (bfd_size_type) *indexp < syment_base)
1480 && (*sym_hash == NULL
1481 || (*sym_hash)->auxbfd != input_bfd))
1482 esym += add * isymesz;
1483 else
1484 {
1485 struct coff_link_hash_entry *h;
1486 int i;
1487
1488 h = NULL;
1489 if (*indexp < 0)
1490 {
1491 h = *sym_hash;
1492 BFD_ASSERT (h->numaux == isymp->n_numaux);
1493 }
1494
1495 esym += isymesz;
1496
1497 if (h == NULL)
1498 outsym += osymesz;
1499
1500 /* Handle the aux entries. This handling is based on
1501 coff_pointerize_aux. I don't know if it always correct. */
1502 for (i = 0; i < isymp->n_numaux && esym < esym_end; i++)
1503 {
1504 union internal_auxent aux;
1505 union internal_auxent *auxp;
1506
1507 if (h != NULL)
1508 auxp = h->aux + i;
1509 else
1510 {
1511 bfd_coff_swap_aux_in (input_bfd, (PTR) esym, isymp->n_type,
1512 isymp->n_sclass, i, isymp->n_numaux,
1513 (PTR) &aux);
1514 auxp = &aux;
1515 }
1516
1517 if (isymp->n_sclass == C_FILE)
1518 {
1519 /* If this is a long filename, we must put it in the
1520 string table. */
1521 if (auxp->x_file.x_n.x_zeroes == 0
1522 && auxp->x_file.x_n.x_offset != 0)
1523 {
1524 const char *filename;
1525 bfd_size_type indx;
1526
1527 BFD_ASSERT (auxp->x_file.x_n.x_offset
1528 >= STRING_SIZE_SIZE);
1529 if (strings == NULL)
1530 {
1531 strings = _bfd_coff_read_string_table (input_bfd);
1532 if (strings == NULL)
1533 return false;
1534 }
1535 filename = strings + auxp->x_file.x_n.x_offset;
1536 indx = _bfd_stringtab_add (finfo->strtab, filename,
1537 hash, copy);
1538 if (indx == (bfd_size_type) -1)
1539 return false;
1540 auxp->x_file.x_n.x_offset = STRING_SIZE_SIZE + indx;
1541 }
1542 }
1543 else if (isymp->n_sclass != C_STAT || isymp->n_type != T_NULL)
1544 {
1545 unsigned long indx;
1546
1547 if (ISFCN (isymp->n_type)
1548 || ISTAG (isymp->n_sclass)
1549 || isymp->n_sclass == C_BLOCK)
1550 {
1551 indx = auxp->x_sym.x_fcnary.x_fcn.x_endndx.l;
1552 if (indx > 0
1553 && indx < obj_raw_syment_count (input_bfd))
1554 {
1555 /* We look forward through the symbol for
1556 the index of the next symbol we are going
1557 to include. I don't know if this is
1558 entirely right. */
1559 while ((finfo->sym_indices[indx] < 0
1560 || ((bfd_size_type) finfo->sym_indices[indx]
1561 < syment_base))
1562 && indx < obj_raw_syment_count (input_bfd))
1563 ++indx;
1564 if (indx >= obj_raw_syment_count (input_bfd))
1565 indx = output_index;
1566 else
1567 indx = finfo->sym_indices[indx];
1568 auxp->x_sym.x_fcnary.x_fcn.x_endndx.l = indx;
1569 }
1570 }
1571
1572 indx = auxp->x_sym.x_tagndx.l;
1573 if (indx > 0 && indx < obj_raw_syment_count (input_bfd))
1574 {
1575 long symindx;
1576
1577 symindx = finfo->sym_indices[indx];
1578 if (symindx < 0)
1579 auxp->x_sym.x_tagndx.l = 0;
1580 else
1581 auxp->x_sym.x_tagndx.l = symindx;
1582 }
1583 }
1584
1585 if (h == NULL)
1586 {
1587 bfd_coff_swap_aux_out (output_bfd, (PTR) auxp, isymp->n_type,
1588 isymp->n_sclass, i, isymp->n_numaux,
1589 (PTR) outsym);
1590 outsym += osymesz;
1591 }
1592
1593 esym += isymesz;
1594 }
1595 }
1596
1597 indexp += add;
1598 isymp += add;
1599 sym_hash += add;
1600 }
1601
1602 /* Relocate the line numbers, unless we are stripping them. */
1603 if (finfo->info->strip == strip_none
1604 || finfo->info->strip == strip_some)
1605 {
1606 for (o = input_bfd->sections; o != NULL; o = o->next)
1607 {
1608 bfd_vma offset;
1609 bfd_byte *eline;
1610 bfd_byte *elineend;
1611
1612 /* FIXME: If SEC_HAS_CONTENTS is not for the section, then
1613 build_link_order in ldwrite.c will not have created a
1614 link order, which means that we will not have seen this
1615 input section in _bfd_coff_final_link, which means that
1616 we will not have allocated space for the line numbers of
1617 this section. I don't think line numbers can be
1618 meaningful for a section which does not have
1619 SEC_HAS_CONTENTS set, but, if they do, this must be
1620 changed. */
1621 if (o->lineno_count == 0
1622 || (o->output_section->flags & SEC_HAS_CONTENTS) == 0)
1623 continue;
1624
1625 if (bfd_seek (input_bfd, o->line_filepos, SEEK_SET) != 0
1626 || bfd_read (finfo->linenos, linesz, o->lineno_count,
1627 input_bfd) != linesz * o->lineno_count)
1628 return false;
1629
1630 offset = o->output_section->vma + o->output_offset - o->vma;
1631 eline = finfo->linenos;
1632 elineend = eline + linesz * o->lineno_count;
1633 for (; eline < elineend; eline += linesz)
1634 {
1635 struct internal_lineno iline;
1636
1637 bfd_coff_swap_lineno_in (input_bfd, (PTR) eline, (PTR) &iline);
1638
1639 if (iline.l_lnno != 0)
1640 iline.l_addr.l_paddr += offset;
1641 else if (iline.l_addr.l_symndx >= 0
1642 && ((unsigned long) iline.l_addr.l_symndx
1643 < obj_raw_syment_count (input_bfd)))
1644 {
1645 long indx;
1646
1647 indx = finfo->sym_indices[iline.l_addr.l_symndx];
1648
1649 if (indx < 0)
1650 {
1651 /* These line numbers are attached to a symbol
1652 which we are stripping. We should really
1653 just discard the line numbers, but that would
1654 be a pain because we have already counted
1655 them. */
1656 indx = 0;
1657 }
1658 else
1659 {
1660 struct internal_syment is;
1661 union internal_auxent ia;
1662
1663 /* Fix up the lnnoptr field in the aux entry of
1664 the symbol. It turns out that we can't do
1665 this when we modify the symbol aux entries,
1666 because gas sometimes screws up the lnnoptr
1667 field and makes it an offset from the start
1668 of the line numbers rather than an absolute
1669 file index. */
1670 bfd_coff_swap_sym_in (output_bfd,
1671 (PTR) (finfo->outsyms
1672 + ((indx - syment_base)
1673 * osymesz)),
1674 (PTR) &is);
1675 if ((ISFCN (is.n_type)
1676 || is.n_sclass == C_BLOCK)
1677 && is.n_numaux >= 1)
1678 {
1679 PTR auxptr;
1680
1681 auxptr = (PTR) (finfo->outsyms
1682 + ((indx - syment_base + 1)
1683 * osymesz));
1684 bfd_coff_swap_aux_in (output_bfd, auxptr,
1685 is.n_type, is.n_sclass,
1686 0, is.n_numaux, (PTR) &ia);
1687 ia.x_sym.x_fcnary.x_fcn.x_lnnoptr =
1688 (o->output_section->line_filepos
1689 + o->output_section->lineno_count * linesz
1690 + eline - finfo->linenos);
1691 bfd_coff_swap_aux_out (output_bfd, (PTR) &ia,
1692 is.n_type, is.n_sclass, 0,
1693 is.n_numaux, auxptr);
1694 }
1695 }
1696
1697 iline.l_addr.l_symndx = indx;
1698 }
1699
1700 bfd_coff_swap_lineno_out (output_bfd, (PTR) &iline, (PTR) eline);
1701 }
1702
1703 if (bfd_seek (output_bfd,
1704 (o->output_section->line_filepos
1705 + o->output_section->lineno_count * linesz),
1706 SEEK_SET) != 0
1707 || bfd_write (finfo->linenos, linesz, o->lineno_count,
1708 output_bfd) != linesz * o->lineno_count)
1709 return false;
1710
1711 o->output_section->lineno_count += o->lineno_count;
1712 }
1713 }
1714
1715 /* If we swapped out a C_FILE symbol, guess that the next C_FILE
1716 symbol will be the first symbol in the next input file. In the
1717 normal case, this will save us from writing out the C_FILE symbol
1718 again. */
1719 if (finfo->last_file_index != -1
1720 && (bfd_size_type) finfo->last_file_index >= syment_base)
1721 {
1722 finfo->last_file.n_value = output_index;
1723 bfd_coff_swap_sym_out (output_bfd, (PTR) &finfo->last_file,
1724 (PTR) (finfo->outsyms
1725 + ((finfo->last_file_index - syment_base)
1726 * osymesz)));
1727 }
1728
1729 /* Write the modified symbols to the output file. */
1730 if (outsym > finfo->outsyms)
1731 {
1732 if (bfd_seek (output_bfd,
1733 obj_sym_filepos (output_bfd) + syment_base * osymesz,
1734 SEEK_SET) != 0
1735 || (bfd_write (finfo->outsyms, outsym - finfo->outsyms, 1,
1736 output_bfd)
1737 != (bfd_size_type) (outsym - finfo->outsyms)))
1738 return false;
1739
1740 BFD_ASSERT ((obj_raw_syment_count (output_bfd)
1741 + (outsym - finfo->outsyms) / osymesz)
1742 == output_index);
1743
1744 obj_raw_syment_count (output_bfd) = output_index;
1745 }
1746
1747 /* Relocate the contents of each section. */
1748 adjust_symndx = coff_backend_info (input_bfd)->_bfd_coff_adjust_symndx;
1749 for (o = input_bfd->sections; o != NULL; o = o->next)
1750 {
1751 bfd_byte *contents;
1752
1753 if ((o->flags & SEC_LINKER_MARK) == 0)
1754 {
1755 /* This section was omitted from the link. */
1756 continue;
1757 }
1758
1759 if ((o->flags & SEC_HAS_CONTENTS) == 0)
1760 {
1761 if ((o->flags & SEC_RELOC) != 0
1762 && o->reloc_count != 0)
1763 {
1764 ((*_bfd_error_handler)
1765 ("%s: relocs in section `%s', but it has no contents",
1766 bfd_get_filename (input_bfd),
1767 bfd_get_section_name (input_bfd, o)));
1768 bfd_set_error (bfd_error_no_contents);
1769 return false;
1770 }
1771
1772 continue;
1773 }
1774
1775 if (coff_section_data (input_bfd, o) != NULL
1776 && coff_section_data (input_bfd, o)->contents != NULL)
1777 contents = coff_section_data (input_bfd, o)->contents;
1778 else
1779 {
1780 if (! bfd_get_section_contents (input_bfd, o, finfo->contents,
1781 (file_ptr) 0, o->_raw_size))
1782 return false;
1783 contents = finfo->contents;
1784 }
1785
1786 if ((o->flags & SEC_RELOC) != 0)
1787 {
1788 int target_index;
1789 struct internal_reloc *internal_relocs;
1790 struct internal_reloc *irel;
1791
1792 /* Read in the relocs. */
1793 target_index = o->output_section->target_index;
1794 internal_relocs = (_bfd_coff_read_internal_relocs
1795 (input_bfd, o, false, finfo->external_relocs,
1796 finfo->info->relocateable,
1797 (finfo->info->relocateable
1798 ? (finfo->section_info[target_index].relocs
1799 + o->output_section->reloc_count)
1800 : finfo->internal_relocs)));
1801 if (internal_relocs == NULL)
1802 return false;
1803
1804 /* Call processor specific code to relocate the section
1805 contents. */
1806 if (! bfd_coff_relocate_section (output_bfd, finfo->info,
1807 input_bfd, o,
1808 contents,
1809 internal_relocs,
1810 finfo->internal_syms,
1811 finfo->sec_ptrs))
1812 return false;
1813
1814 if (finfo->info->relocateable)
1815 {
1816 bfd_vma offset;
1817 struct internal_reloc *irelend;
1818 struct coff_link_hash_entry **rel_hash;
1819
1820 offset = o->output_section->vma + o->output_offset - o->vma;
1821 irel = internal_relocs;
1822 irelend = irel + o->reloc_count;
1823 rel_hash = (finfo->section_info[target_index].rel_hashes
1824 + o->output_section->reloc_count);
1825 for (; irel < irelend; irel++, rel_hash++)
1826 {
1827 struct coff_link_hash_entry *h;
1828 boolean adjusted;
1829
1830 *rel_hash = NULL;
1831
1832 /* Adjust the reloc address and symbol index. */
1833
1834 irel->r_vaddr += offset;
1835
1836 if (irel->r_symndx == -1)
1837 continue;
1838
1839 if (adjust_symndx)
1840 {
1841 if (! (*adjust_symndx) (output_bfd, finfo->info,
1842 input_bfd, o, irel,
1843 &adjusted))
1844 return false;
1845 if (adjusted)
1846 continue;
1847 }
1848
1849 h = obj_coff_sym_hashes (input_bfd)[irel->r_symndx];
1850 if (h != NULL)
1851 {
1852 /* This is a global symbol. */
1853 if (h->indx >= 0)
1854 irel->r_symndx = h->indx;
1855 else
1856 {
1857 /* This symbol is being written at the end
1858 of the file, and we do not yet know the
1859 symbol index. We save the pointer to the
1860 hash table entry in the rel_hash list.
1861 We set the indx field to -2 to indicate
1862 that this symbol must not be stripped. */
1863 *rel_hash = h;
1864 h->indx = -2;
1865 }
1866 }
1867 else
1868 {
1869 long indx;
1870
1871 indx = finfo->sym_indices[irel->r_symndx];
1872 if (indx != -1)
1873 irel->r_symndx = indx;
1874 else
1875 {
1876 struct internal_syment *is;
1877 const char *name;
1878 char buf[SYMNMLEN + 1];
1879
1880 /* This reloc is against a symbol we are
1881 stripping. It would be possible to
1882 handle this case, but I don't think it's
1883 worth it. */
1884 is = finfo->internal_syms + irel->r_symndx;
1885
1886 name = (_bfd_coff_internal_syment_name
1887 (input_bfd, is, buf));
1888 if (name == NULL)
1889 return false;
1890
1891 if (! ((*finfo->info->callbacks->unattached_reloc)
1892 (finfo->info, name, input_bfd, o,
1893 irel->r_vaddr)))
1894 return false;
1895 }
1896 }
1897 }
1898
1899 o->output_section->reloc_count += o->reloc_count;
1900 }
1901 }
1902
1903 /* Write out the modified section contents. */
1904 if (! bfd_set_section_contents (output_bfd, o->output_section,
1905 contents, o->output_offset,
1906 (o->_cooked_size != 0
1907 ? o->_cooked_size
1908 : o->_raw_size)))
1909 return false;
1910 }
1911
1912 if (! finfo->info->keep_memory)
1913 {
1914 if (! _bfd_coff_free_symbols (input_bfd))
1915 return false;
1916 }
1917
1918 return true;
1919 }
1920
1921 /* Write out a global symbol. Called via coff_link_hash_traverse. */
1922
1923 boolean
1924 _bfd_coff_write_global_sym (h, data)
1925 struct coff_link_hash_entry *h;
1926 PTR data;
1927 {
1928 struct coff_final_link_info *finfo = (struct coff_final_link_info *) data;
1929 bfd *output_bfd;
1930 struct internal_syment isym;
1931 bfd_size_type symesz;
1932 unsigned int i;
1933
1934 output_bfd = finfo->output_bfd;
1935
1936 if (h->indx >= 0)
1937 return true;
1938
1939 if (h->indx != -2
1940 && (finfo->info->strip == strip_all
1941 || (finfo->info->strip == strip_some
1942 && (bfd_hash_lookup (finfo->info->keep_hash,
1943 h->root.root.string, false, false)
1944 == NULL))))
1945 return true;
1946
1947 switch (h->root.type)
1948 {
1949 default:
1950 case bfd_link_hash_new:
1951 abort ();
1952 return false;
1953
1954 case bfd_link_hash_undefined:
1955 case bfd_link_hash_undefweak:
1956 isym.n_scnum = N_UNDEF;
1957 isym.n_value = 0;
1958 break;
1959
1960 case bfd_link_hash_defined:
1961 case bfd_link_hash_defweak:
1962 {
1963 asection *sec;
1964
1965 sec = h->root.u.def.section->output_section;
1966 if (bfd_is_abs_section (sec))
1967 isym.n_scnum = N_ABS;
1968 else
1969 isym.n_scnum = sec->target_index;
1970 isym.n_value = (h->root.u.def.value
1971 + sec->vma
1972 + h->root.u.def.section->output_offset);
1973 }
1974 break;
1975
1976 case bfd_link_hash_common:
1977 isym.n_scnum = N_UNDEF;
1978 isym.n_value = h->root.u.c.size;
1979 break;
1980
1981 case bfd_link_hash_indirect:
1982 case bfd_link_hash_warning:
1983 /* Just ignore these. They can't be handled anyhow. */
1984 return true;
1985 }
1986
1987 if (strlen (h->root.root.string) <= SYMNMLEN)
1988 strncpy (isym._n._n_name, h->root.root.string, SYMNMLEN);
1989 else
1990 {
1991 boolean hash;
1992 bfd_size_type indx;
1993
1994 hash = true;
1995 if ((output_bfd->flags & BFD_TRADITIONAL_FORMAT) != 0)
1996 hash = false;
1997 indx = _bfd_stringtab_add (finfo->strtab, h->root.root.string, hash,
1998 false);
1999 if (indx == (bfd_size_type) -1)
2000 {
2001 finfo->failed = true;
2002 return false;
2003 }
2004 isym._n._n_n._n_zeroes = 0;
2005 isym._n._n_n._n_offset = STRING_SIZE_SIZE + indx;
2006 }
2007
2008 isym.n_sclass = h->class;
2009 isym.n_type = h->type;
2010
2011 if (isym.n_sclass == C_NULL)
2012 isym.n_sclass = C_EXT;
2013
2014 isym.n_numaux = h->numaux;
2015
2016 bfd_coff_swap_sym_out (output_bfd, (PTR) &isym, (PTR) finfo->outsyms);
2017
2018 symesz = bfd_coff_symesz (output_bfd);
2019
2020 if (bfd_seek (output_bfd,
2021 (obj_sym_filepos (output_bfd)
2022 + obj_raw_syment_count (output_bfd) * symesz),
2023 SEEK_SET) != 0
2024 || bfd_write (finfo->outsyms, symesz, 1, output_bfd) != symesz)
2025 {
2026 finfo->failed = true;
2027 return false;
2028 }
2029
2030 h->indx = obj_raw_syment_count (output_bfd);
2031
2032 ++obj_raw_syment_count (output_bfd);
2033
2034 /* Write out any associated aux entries. There normally will be
2035 none. If there are any, I have no idea how to modify them. */
2036 for (i = 0; i < isym.n_numaux; i++)
2037 {
2038 bfd_coff_swap_aux_out (output_bfd, (PTR) (h->aux + i), isym.n_type,
2039 isym.n_sclass, i, isym.n_numaux,
2040 (PTR) finfo->outsyms);
2041 if (bfd_write (finfo->outsyms, symesz, 1, output_bfd) != symesz)
2042 {
2043 finfo->failed = true;
2044 return false;
2045 }
2046 ++obj_raw_syment_count (output_bfd);
2047 }
2048
2049 return true;
2050 }
2051
2052 /* Handle a link order which is supposed to generate a reloc. */
2053
2054 boolean
2055 _bfd_coff_reloc_link_order (output_bfd, finfo, output_section, link_order)
2056 bfd *output_bfd;
2057 struct coff_final_link_info *finfo;
2058 asection *output_section;
2059 struct bfd_link_order *link_order;
2060 {
2061 reloc_howto_type *howto;
2062 struct internal_reloc *irel;
2063 struct coff_link_hash_entry **rel_hash_ptr;
2064
2065 howto = bfd_reloc_type_lookup (output_bfd, link_order->u.reloc.p->reloc);
2066 if (howto == NULL)
2067 {
2068 bfd_set_error (bfd_error_bad_value);
2069 return false;
2070 }
2071
2072 if (link_order->u.reloc.p->addend != 0)
2073 {
2074 bfd_size_type size;
2075 bfd_byte *buf;
2076 bfd_reloc_status_type rstat;
2077 boolean ok;
2078
2079 size = bfd_get_reloc_size (howto);
2080 buf = (bfd_byte *) bfd_zmalloc (size);
2081 if (buf == NULL)
2082 return false;
2083
2084 rstat = _bfd_relocate_contents (howto, output_bfd,
2085 link_order->u.reloc.p->addend, buf);
2086 switch (rstat)
2087 {
2088 case bfd_reloc_ok:
2089 break;
2090 default:
2091 case bfd_reloc_outofrange:
2092 abort ();
2093 case bfd_reloc_overflow:
2094 if (! ((*finfo->info->callbacks->reloc_overflow)
2095 (finfo->info,
2096 (link_order->type == bfd_section_reloc_link_order
2097 ? bfd_section_name (output_bfd,
2098 link_order->u.reloc.p->u.section)
2099 : link_order->u.reloc.p->u.name),
2100 howto->name, link_order->u.reloc.p->addend,
2101 (bfd *) NULL, (asection *) NULL, (bfd_vma) 0)))
2102 {
2103 free (buf);
2104 return false;
2105 }
2106 break;
2107 }
2108 ok = bfd_set_section_contents (output_bfd, output_section, (PTR) buf,
2109 (file_ptr) link_order->offset, size);
2110 free (buf);
2111 if (! ok)
2112 return false;
2113 }
2114
2115 /* Store the reloc information in the right place. It will get
2116 swapped and written out at the end of the final_link routine. */
2117
2118 irel = (finfo->section_info[output_section->target_index].relocs
2119 + output_section->reloc_count);
2120 rel_hash_ptr = (finfo->section_info[output_section->target_index].rel_hashes
2121 + output_section->reloc_count);
2122
2123 memset (irel, 0, sizeof (struct internal_reloc));
2124 *rel_hash_ptr = NULL;
2125
2126 irel->r_vaddr = output_section->vma + link_order->offset;
2127
2128 if (link_order->type == bfd_section_reloc_link_order)
2129 {
2130 /* We need to somehow locate a symbol in the right section. The
2131 symbol must either have a value of zero, or we must adjust
2132 the addend by the value of the symbol. FIXME: Write this
2133 when we need it. The old linker couldn't handle this anyhow. */
2134 abort ();
2135 *rel_hash_ptr = NULL;
2136 irel->r_symndx = 0;
2137 }
2138 else
2139 {
2140 struct coff_link_hash_entry *h;
2141
2142 h = ((struct coff_link_hash_entry *)
2143 bfd_wrapped_link_hash_lookup (output_bfd, finfo->info,
2144 link_order->u.reloc.p->u.name,
2145 false, false, true));
2146 if (h != NULL)
2147 {
2148 if (h->indx >= 0)
2149 irel->r_symndx = h->indx;
2150 else
2151 {
2152 /* Set the index to -2 to force this symbol to get
2153 written out. */
2154 h->indx = -2;
2155 *rel_hash_ptr = h;
2156 irel->r_symndx = 0;
2157 }
2158 }
2159 else
2160 {
2161 if (! ((*finfo->info->callbacks->unattached_reloc)
2162 (finfo->info, link_order->u.reloc.p->u.name, (bfd *) NULL,
2163 (asection *) NULL, (bfd_vma) 0)))
2164 return false;
2165 irel->r_symndx = 0;
2166 }
2167 }
2168
2169 /* FIXME: Is this always right? */
2170 irel->r_type = howto->type;
2171
2172 /* r_size is only used on the RS/6000, which needs its own linker
2173 routines anyhow. r_extern is only used for ECOFF. */
2174
2175 /* FIXME: What is the right value for r_offset? Is zero OK? */
2176
2177 ++output_section->reloc_count;
2178
2179 return true;
2180 }
2181
2182 /* A basic reloc handling routine which may be used by processors with
2183 simple relocs. */
2184
2185 boolean
2186 _bfd_coff_generic_relocate_section (output_bfd, info, input_bfd,
2187 input_section, contents, relocs, syms,
2188 sections)
2189 bfd *output_bfd;
2190 struct bfd_link_info *info;
2191 bfd *input_bfd;
2192 asection *input_section;
2193 bfd_byte *contents;
2194 struct internal_reloc *relocs;
2195 struct internal_syment *syms;
2196 asection **sections;
2197 {
2198 struct internal_reloc *rel;
2199 struct internal_reloc *relend;
2200
2201 rel = relocs;
2202 relend = rel + input_section->reloc_count;
2203 for (; rel < relend; rel++)
2204 {
2205 long symndx;
2206 struct coff_link_hash_entry *h;
2207 struct internal_syment *sym;
2208 bfd_vma addend;
2209 bfd_vma val;
2210 reloc_howto_type *howto;
2211 bfd_reloc_status_type rstat;
2212
2213 symndx = rel->r_symndx;
2214
2215 if (symndx == -1)
2216 {
2217 h = NULL;
2218 sym = NULL;
2219 }
2220 else
2221 {
2222 h = obj_coff_sym_hashes (input_bfd)[symndx];
2223 sym = syms + symndx;
2224 }
2225
2226 /* COFF treats common symbols in one of two ways. Either the
2227 size of the symbol is included in the section contents, or it
2228 is not. We assume that the size is not included, and force
2229 the rtype_to_howto function to adjust the addend as needed. */
2230
2231 if (sym != NULL && sym->n_scnum != 0)
2232 addend = - sym->n_value;
2233 else
2234 addend = 0;
2235
2236
2237 howto = bfd_coff_rtype_to_howto (input_bfd, input_section, rel, h,
2238 sym, &addend);
2239 if (howto == NULL)
2240 return false;
2241
2242 val = 0;
2243
2244 if (h == NULL)
2245 {
2246 asection *sec;
2247
2248 if (symndx == -1)
2249 {
2250 sec = bfd_abs_section_ptr;
2251 val = 0;
2252 }
2253 else
2254 {
2255 sec = sections[symndx];
2256 val = (sec->output_section->vma
2257 + sec->output_offset
2258 + sym->n_value
2259 - sec->vma);
2260 }
2261 }
2262 else
2263 {
2264 if (h->root.type == bfd_link_hash_defined
2265 || h->root.type == bfd_link_hash_defweak)
2266 {
2267 asection *sec;
2268
2269 sec = h->root.u.def.section;
2270 val = (h->root.u.def.value
2271 + sec->output_section->vma
2272 + sec->output_offset);
2273 }
2274
2275 else if (! info->relocateable)
2276 {
2277 if (! ((*info->callbacks->undefined_symbol)
2278 (info, h->root.root.string, input_bfd, input_section,
2279 rel->r_vaddr - input_section->vma)))
2280 return false;
2281 }
2282 }
2283
2284 if (info->base_file)
2285 {
2286 /* Emit a reloc if the backend thinks it needs it. */
2287 if (sym && pe_data(output_bfd)->in_reloc_p(output_bfd, howto))
2288 {
2289 /* relocation to a symbol in a section which
2290 isn't absolute - we output the address here
2291 to a file */
2292 bfd_vma addr = rel->r_vaddr
2293 - input_section->vma
2294 + input_section->output_offset
2295 + input_section->output_section->vma;
2296 if (coff_data(output_bfd)->pe)
2297 addr -= pe_data(output_bfd)->pe_opthdr.ImageBase;
2298 fwrite (&addr, 1,4, (FILE *) info->base_file);
2299 }
2300 }
2301
2302 rstat = _bfd_final_link_relocate (howto, input_bfd, input_section,
2303 contents,
2304 rel->r_vaddr - input_section->vma,
2305 val, addend);
2306
2307 switch (rstat)
2308 {
2309 default:
2310 abort ();
2311 case bfd_reloc_ok:
2312 break;
2313 case bfd_reloc_overflow:
2314 {
2315 const char *name;
2316 char buf[SYMNMLEN + 1];
2317
2318 if (symndx == -1)
2319 name = "*ABS*";
2320 else if (h != NULL)
2321 name = h->root.root.string;
2322 else
2323 {
2324 name = _bfd_coff_internal_syment_name (input_bfd, sym, buf);
2325 if (name == NULL)
2326 return false;
2327 }
2328
2329 if (! ((*info->callbacks->reloc_overflow)
2330 (info, name, howto->name, (bfd_vma) 0, input_bfd,
2331 input_section, rel->r_vaddr - input_section->vma)))
2332 return false;
2333 }
2334 }
2335 }
2336 return true;
2337 }
2338