]> git.ipfire.org Git - thirdparty/binutils-gdb.git/blob - ld/ldlang.c
Add octets vs bytes functionality to LD.
[thirdparty/binutils-gdb.git] / ld / ldlang.c
1 /* Linker command language support.
2 Copyright (C) 1991, 92, 93, 94, 95, 96, 97, 98, 99, 2000
3 Free Software Foundation, Inc.
4
5 This file is part of GLD, the Gnu Linker.
6
7 GLD 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, or (at your option)
10 any later version.
11
12 GLD 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 GLD; see the file COPYING. If not, write to the Free
19 Software Foundation, 59 Temple Place - Suite 330, Boston, MA
20 02111-1307, USA. */
21
22 #include "bfd.h"
23 #include "sysdep.h"
24 #include "libiberty.h"
25 #include "obstack.h"
26 #include "bfdlink.h"
27
28 #include "ld.h"
29 #include "ldmain.h"
30 #include "ldgram.h"
31 #include "ldexp.h"
32 #include "ldlang.h"
33 #include "ldemul.h"
34 #include "ldlex.h"
35 #include "ldmisc.h"
36 #include "ldctor.h"
37 #include "ldfile.h"
38 #include "fnmatch.h"
39 #include "demangle.h"
40
41 #include <ctype.h>
42
43 /* FORWARDS */
44 static lang_statement_union_type *new_statement PARAMS ((enum statement_enum,
45 size_t,
46 lang_statement_list_type*));
47
48
49 /* LOCALS */
50 static struct obstack stat_obstack;
51
52 #define obstack_chunk_alloc xmalloc
53 #define obstack_chunk_free free
54 static CONST char *startup_file;
55 static lang_statement_list_type input_file_chain;
56 static boolean placed_commons = false;
57 static lang_output_section_statement_type *default_common_section;
58 static boolean map_option_f;
59 static bfd_vma print_dot;
60 static lang_input_statement_type *first_file;
61 static lang_statement_list_type lang_output_section_statement;
62 static CONST char *current_target;
63 static CONST char *output_target;
64 static lang_statement_list_type statement_list;
65 static struct lang_phdr *lang_phdr_list;
66
67 static void lang_for_each_statement_worker
68 PARAMS ((void (*func) (lang_statement_union_type *),
69 lang_statement_union_type *s));
70 static lang_input_statement_type *new_afile
71 PARAMS ((const char *name, lang_input_file_enum_type file_type,
72 const char *target, boolean add_to_list));
73 static void init_os PARAMS ((lang_output_section_statement_type *s));
74 static void exp_init_os PARAMS ((etree_type *));
75 static void section_already_linked PARAMS ((bfd *, asection *, PTR));
76 static struct bfd_hash_entry *already_linked_newfunc
77 PARAMS ((struct bfd_hash_entry *, struct bfd_hash_table *,
78 const char *string));
79 static void already_linked_table_init PARAMS ((void));
80 static void already_linked_table_free PARAMS ((void));
81 static boolean wildcardp PARAMS ((const char *));
82 static lang_statement_union_type *wild_sort
83 PARAMS ((lang_wild_statement_type *, lang_input_statement_type *,
84 asection *));
85 static lang_input_statement_type *lookup_name PARAMS ((const char *name));
86 static void load_symbols PARAMS ((lang_input_statement_type *entry,
87 lang_statement_list_type *));
88 static void wild PARAMS ((lang_wild_statement_type *s,
89 const char *section, const char *file,
90 const char *target,
91 lang_output_section_statement_type *output));
92 static bfd *open_output PARAMS ((const char *name));
93 static void ldlang_open_output PARAMS ((lang_statement_union_type *statement));
94 static void open_input_bfds
95 PARAMS ((lang_statement_union_type *statement, boolean));
96 static void lang_reasonable_defaults PARAMS ((void));
97 static void lang_place_undefineds PARAMS ((void));
98 static void map_input_to_output_sections
99 PARAMS ((lang_statement_union_type *s,
100 const char *target,
101 lang_output_section_statement_type *output_section_statement));
102 static void print_output_section_statement
103 PARAMS ((lang_output_section_statement_type *output_section_statement));
104 static void print_assignment
105 PARAMS ((lang_assignment_statement_type *assignment,
106 lang_output_section_statement_type *output_section));
107 static void print_input_statement PARAMS ((lang_input_statement_type *statm));
108 static boolean print_one_symbol PARAMS ((struct bfd_link_hash_entry *, PTR));
109 static void print_input_section PARAMS ((lang_input_section_type *in));
110 static void print_fill_statement PARAMS ((lang_fill_statement_type *fill));
111 static void print_data_statement PARAMS ((lang_data_statement_type *data));
112 static void print_address_statement PARAMS ((lang_address_statement_type *));
113 static void print_reloc_statement PARAMS ((lang_reloc_statement_type *reloc));
114 static void print_padding_statement PARAMS ((lang_padding_statement_type *s));
115 static void print_wild_statement
116 PARAMS ((lang_wild_statement_type *w,
117 lang_output_section_statement_type *os));
118 static void print_group
119 PARAMS ((lang_group_statement_type *, lang_output_section_statement_type *));
120 static void print_statement PARAMS ((lang_statement_union_type *s,
121 lang_output_section_statement_type *os));
122 static void print_statement_list PARAMS ((lang_statement_union_type *s,
123 lang_output_section_statement_type *os));
124 static void print_statements PARAMS ((void));
125 static bfd_vma insert_pad PARAMS ((lang_statement_union_type **this_ptr,
126 fill_type fill, unsigned int power,
127 asection *output_section_statement,
128 bfd_vma dot));
129 static bfd_vma size_input_section
130 PARAMS ((lang_statement_union_type **this_ptr,
131 lang_output_section_statement_type *output_section_statement,
132 fill_type fill, bfd_vma dot, boolean relax));
133 static void lang_finish PARAMS ((void));
134 static void ignore_bfd_errors PARAMS ((const char *, ...));
135 static void lang_check PARAMS ((void));
136 static void lang_common PARAMS ((void));
137 static boolean lang_one_common PARAMS ((struct bfd_link_hash_entry *, PTR));
138 static void lang_place_orphans PARAMS ((void));
139 static int topower PARAMS ((int));
140 static void lang_set_startof PARAMS ((void));
141 static void reset_memory_regions PARAMS ((void));
142 static void lang_record_phdrs PARAMS ((void));
143 static void lang_gc_wild
144 PARAMS ((lang_wild_statement_type *, const char *, const char *));
145 static void lang_gc_sections_1 PARAMS ((lang_statement_union_type *));
146 static void lang_gc_sections PARAMS ((void));
147 static void lang_do_version_exports_section PARAMS ((void));
148 static void lang_check_section_addresses PARAMS ((void));
149
150 typedef void (*callback_t) PARAMS ((lang_wild_statement_type *,
151 asection *, lang_input_statement_type *,
152 void *));
153 static void walk_wild_section
154 PARAMS ((lang_wild_statement_type *, const char *,
155 lang_input_statement_type *, callback_t, void *));
156 static void walk_wild_file
157 PARAMS ((lang_wild_statement_type *, const char *,
158 lang_input_statement_type *, callback_t, void *));
159
160 static int get_target PARAMS ((const bfd_target *, void *));
161 static void stricpy PARAMS ((char *, char *));
162 static void strcut PARAMS ((char *, char *));
163 static int name_compare PARAMS ((char *, char *));
164 static int closest_target_match PARAMS ((const bfd_target *, void *));
165 static char * get_first_input_target PARAMS ((void));
166
167 /* EXPORTS */
168 lang_output_section_statement_type *abs_output_section;
169 lang_statement_list_type *stat_ptr = &statement_list;
170 lang_statement_list_type file_chain = { NULL, NULL };
171 const char *entry_symbol = NULL;
172 boolean entry_from_cmdline;
173 boolean lang_has_input_file = false;
174 boolean had_output_filename = false;
175 boolean lang_float_flag = false;
176 boolean delete_output_file_on_failure = false;
177 struct lang_nocrossrefs *nocrossref_list;
178
179 etree_type *base; /* Relocation base - or null */
180
181
182 #if defined(__STDC__) || defined(ALMOST_STDC)
183 #define cat(a,b) a##b
184 #else
185 #define cat(a,b) a/**/b
186 #endif
187
188 #define new_stat(x,y) (cat(x,_type)*) new_statement(cat(x,_enum), sizeof(cat(x,_type)),y)
189
190 #define outside_section_address(q) ( (q)->output_offset + (q)->output_section->vma)
191
192 #define outside_symbol_address(q) ((q)->value + outside_section_address(q->section))
193
194 #define SECTION_NAME_MAP_LENGTH (16)
195
196 PTR
197 stat_alloc (size)
198 size_t size;
199 {
200 return obstack_alloc (&stat_obstack, size);
201 }
202
203 /*----------------------------------------------------------------------
204 Generic traversal routines for finding matching sections.
205 */
206
207 static void
208 walk_wild_section (ptr, section, file, callback, data)
209 lang_wild_statement_type *ptr;
210 const char *section;
211 lang_input_statement_type *file;
212 callback_t callback;
213 void *data;
214 {
215 /* Don't process sections from files which were excluded. */
216 if (ptr->exclude_filename_list != NULL)
217 {
218 struct name_list *list_tmp;
219 for (list_tmp = ptr->exclude_filename_list; list_tmp; list_tmp = list_tmp->next)
220 {
221 boolean match;
222
223 if (wildcardp (list_tmp->name))
224 match = fnmatch (list_tmp->name, file->filename, 0) == 0 ? true : false;
225 else
226 match = strcmp (list_tmp->name, file->filename) == 0 ? true : false;
227
228 if (match)
229 return;
230 }
231 }
232
233 if (file->just_syms_flag == false)
234 {
235 register asection *s;
236 boolean wildcard;
237
238 if (section == NULL)
239 wildcard = false;
240 else
241 wildcard = wildcardp (section);
242
243 for (s = file->the_bfd->sections; s != NULL; s = s->next)
244 {
245 boolean match;
246
247 if (section == NULL)
248 match = true;
249 else
250 {
251 const char *name;
252
253 name = bfd_get_section_name (file->the_bfd, s);
254 if (wildcard)
255 match = fnmatch (section, name, 0) == 0 ? true : false;
256 else
257 match = strcmp (section, name) == 0 ? true : false;
258 }
259
260 if (match)
261 (*callback) (ptr, s, file, data);
262 }
263 }
264 }
265
266 /* Handle a wild statement for a single file F. */
267
268 static void
269 walk_wild_file (s, section, f, callback, data)
270 lang_wild_statement_type *s;
271 const char *section;
272 lang_input_statement_type *f;
273 callback_t callback;
274 void *data;
275 {
276 if (f->the_bfd == NULL
277 || ! bfd_check_format (f->the_bfd, bfd_archive))
278 walk_wild_section (s, section, f, callback, data);
279 else
280 {
281 bfd *member;
282
283 /* This is an archive file. We must map each member of the
284 archive separately. */
285 member = bfd_openr_next_archived_file (f->the_bfd, (bfd *) NULL);
286 while (member != NULL)
287 {
288 /* When lookup_name is called, it will call the add_symbols
289 entry point for the archive. For each element of the
290 archive which is included, BFD will call ldlang_add_file,
291 which will set the usrdata field of the member to the
292 lang_input_statement. */
293 if (member->usrdata != NULL)
294 {
295 walk_wild_section (s, section,
296 (lang_input_statement_type *) member->usrdata,
297 callback, data);
298 }
299
300 member = bfd_openr_next_archived_file (f->the_bfd, member);
301 }
302 }
303 }
304
305 static void
306 walk_wild (s, section, file, callback, data)
307 lang_wild_statement_type *s;
308 const char *section;
309 const char *file;
310 callback_t callback;
311 void *data;
312 {
313 if (file == (char *) NULL)
314 {
315 /* Perform the iteration over all files in the list. */
316 LANG_FOR_EACH_INPUT_STATEMENT (f)
317 {
318 walk_wild_file (s, section, f, callback, data);
319 }
320 }
321 else if (wildcardp (file))
322 {
323 LANG_FOR_EACH_INPUT_STATEMENT (f)
324 {
325 if (fnmatch (file, f->filename, FNM_FILE_NAME) == 0)
326 walk_wild_file (s, section, f, callback, data);
327 }
328 }
329 else
330 {
331 lang_input_statement_type *f;
332
333 /* Perform the iteration over a single file. */
334 f = lookup_name (file);
335 walk_wild_file (s, section, f, callback, data);
336 }
337 }
338
339 /*----------------------------------------------------------------------
340 lang_for_each_statement walks the parse tree and calls the provided
341 function for each node
342 */
343
344 static void
345 lang_for_each_statement_worker (func, s)
346 void (*func) PARAMS ((lang_statement_union_type *));
347 lang_statement_union_type *s;
348 {
349 for (; s != (lang_statement_union_type *) NULL; s = s->next)
350 {
351 func (s);
352
353 switch (s->header.type)
354 {
355 case lang_constructors_statement_enum:
356 lang_for_each_statement_worker (func, constructor_list.head);
357 break;
358 case lang_output_section_statement_enum:
359 lang_for_each_statement_worker
360 (func,
361 s->output_section_statement.children.head);
362 break;
363 case lang_wild_statement_enum:
364 lang_for_each_statement_worker
365 (func,
366 s->wild_statement.children.head);
367 break;
368 case lang_group_statement_enum:
369 lang_for_each_statement_worker (func,
370 s->group_statement.children.head);
371 break;
372 case lang_data_statement_enum:
373 case lang_reloc_statement_enum:
374 case lang_object_symbols_statement_enum:
375 case lang_output_statement_enum:
376 case lang_target_statement_enum:
377 case lang_input_section_enum:
378 case lang_input_statement_enum:
379 case lang_assignment_statement_enum:
380 case lang_padding_statement_enum:
381 case lang_address_statement_enum:
382 case lang_fill_statement_enum:
383 break;
384 default:
385 FAIL ();
386 break;
387 }
388 }
389 }
390
391 void
392 lang_for_each_statement (func)
393 void (*func) PARAMS ((lang_statement_union_type *));
394 {
395 lang_for_each_statement_worker (func,
396 statement_list.head);
397 }
398
399 /*----------------------------------------------------------------------*/
400 void
401 lang_list_init (list)
402 lang_statement_list_type *list;
403 {
404 list->head = (lang_statement_union_type *) NULL;
405 list->tail = &list->head;
406 }
407
408 /*----------------------------------------------------------------------
409
410 build a new statement node for the parse tree
411
412 */
413
414 static
415 lang_statement_union_type *
416 new_statement (type, size, list)
417 enum statement_enum type;
418 size_t size;
419 lang_statement_list_type * list;
420 {
421 lang_statement_union_type *new = (lang_statement_union_type *)
422 stat_alloc (size);
423
424 new->header.type = type;
425 new->header.next = (lang_statement_union_type *) NULL;
426 lang_statement_append (list, new, &new->header.next);
427 return new;
428 }
429
430 /*
431 Build a new input file node for the language. There are several ways
432 in which we treat an input file, eg, we only look at symbols, or
433 prefix it with a -l etc.
434
435 We can be supplied with requests for input files more than once;
436 they may, for example be split over serveral lines like foo.o(.text)
437 foo.o(.data) etc, so when asked for a file we check that we havn't
438 got it already so we don't duplicate the bfd.
439
440 */
441 static lang_input_statement_type *
442 new_afile (name, file_type, target, add_to_list)
443 CONST char *name;
444 lang_input_file_enum_type file_type;
445 CONST char *target;
446 boolean add_to_list;
447 {
448 lang_input_statement_type *p;
449
450 if (add_to_list)
451 p = new_stat (lang_input_statement, stat_ptr);
452 else
453 {
454 p = ((lang_input_statement_type *)
455 stat_alloc (sizeof (lang_input_statement_type)));
456 p->header.next = NULL;
457 }
458
459 lang_has_input_file = true;
460 p->target = target;
461 switch (file_type)
462 {
463 case lang_input_file_is_symbols_only_enum:
464 p->filename = name;
465 p->is_archive = false;
466 p->real = true;
467 p->local_sym_name = name;
468 p->just_syms_flag = true;
469 p->search_dirs_flag = false;
470 break;
471 case lang_input_file_is_fake_enum:
472 p->filename = name;
473 p->is_archive = false;
474 p->real = false;
475 p->local_sym_name = name;
476 p->just_syms_flag = false;
477 p->search_dirs_flag = false;
478 break;
479 case lang_input_file_is_l_enum:
480 p->is_archive = true;
481 p->filename = name;
482 p->real = true;
483 p->local_sym_name = concat ("-l", name, (const char *) NULL);
484 p->just_syms_flag = false;
485 p->search_dirs_flag = true;
486 break;
487 case lang_input_file_is_marker_enum:
488 p->filename = name;
489 p->is_archive = false;
490 p->real = false;
491 p->local_sym_name = name;
492 p->just_syms_flag = false;
493 p->search_dirs_flag = true;
494 break;
495 case lang_input_file_is_search_file_enum:
496 p->filename = name;
497 p->is_archive = false;
498 p->real = true;
499 p->local_sym_name = name;
500 p->just_syms_flag = false;
501 p->search_dirs_flag = true;
502 break;
503 case lang_input_file_is_file_enum:
504 p->filename = name;
505 p->is_archive = false;
506 p->real = true;
507 p->local_sym_name = name;
508 p->just_syms_flag = false;
509 p->search_dirs_flag = false;
510 break;
511 default:
512 FAIL ();
513 }
514 p->the_bfd = (bfd *) NULL;
515 p->asymbols = (asymbol **) NULL;
516 p->next_real_file = (lang_statement_union_type *) NULL;
517 p->next = (lang_statement_union_type *) NULL;
518 p->symbol_count = 0;
519 p->dynamic = config.dynamic_link;
520 p->whole_archive = whole_archive;
521 p->loaded = false;
522 lang_statement_append (&input_file_chain,
523 (lang_statement_union_type *) p,
524 &p->next_real_file);
525 return p;
526 }
527
528 lang_input_statement_type *
529 lang_add_input_file (name, file_type, target)
530 CONST char *name;
531 lang_input_file_enum_type file_type;
532 CONST char *target;
533 {
534 lang_has_input_file = true;
535 return new_afile (name, file_type, target, true);
536 }
537
538 /* Build enough state so that the parser can build its tree */
539 void
540 lang_init ()
541 {
542 obstack_begin (&stat_obstack, 1000);
543
544 stat_ptr = &statement_list;
545
546 lang_list_init (stat_ptr);
547
548 lang_list_init (&input_file_chain);
549 lang_list_init (&lang_output_section_statement);
550 lang_list_init (&file_chain);
551 first_file = lang_add_input_file ((char *) NULL,
552 lang_input_file_is_marker_enum,
553 (char *) NULL);
554 abs_output_section = lang_output_section_statement_lookup (BFD_ABS_SECTION_NAME);
555
556 abs_output_section->bfd_section = bfd_abs_section_ptr;
557
558 }
559
560 /*----------------------------------------------------------------------
561 A region is an area of memory declared with the
562 MEMORY { name:org=exp, len=exp ... }
563 syntax.
564
565 We maintain a list of all the regions here
566
567 If no regions are specified in the script, then the default is used
568 which is created when looked up to be the entire data space
569 */
570
571 static lang_memory_region_type *lang_memory_region_list;
572 static lang_memory_region_type **lang_memory_region_list_tail = &lang_memory_region_list;
573
574 lang_memory_region_type *
575 lang_memory_region_lookup (name)
576 CONST char *CONST name;
577 {
578 lang_memory_region_type *p;
579
580 for (p = lang_memory_region_list;
581 p != (lang_memory_region_type *) NULL;
582 p = p->next)
583 {
584 if (strcmp (p->name, name) == 0)
585 {
586 return p;
587 }
588 }
589
590 #if 0
591 /* This code used to always use the first region in the list as the
592 default region. I changed it to instead use a region
593 encompassing all of memory as the default region. This permits
594 NOLOAD sections to work reasonably without requiring a region.
595 People should specify what region they mean, if they really want
596 a region. */
597 if (strcmp (name, "*default*") == 0)
598 {
599 if (lang_memory_region_list != (lang_memory_region_type *) NULL)
600 {
601 return lang_memory_region_list;
602 }
603 }
604 #endif
605
606 {
607 lang_memory_region_type *new =
608 (lang_memory_region_type *) stat_alloc (sizeof (lang_memory_region_type));
609
610 new->name = buystring (name);
611 new->next = (lang_memory_region_type *) NULL;
612
613 *lang_memory_region_list_tail = new;
614 lang_memory_region_list_tail = &new->next;
615 new->origin = 0;
616 new->flags = 0;
617 new->not_flags = 0;
618 new->length = ~(bfd_size_type)0;
619 new->current = 0;
620 new->had_full_message = false;
621
622 return new;
623 }
624 }
625
626
627 lang_memory_region_type *
628 lang_memory_default (section)
629 asection *section;
630 {
631 lang_memory_region_type *p;
632
633 flagword sec_flags = section->flags;
634
635 /* Override SEC_DATA to mean a writable section. */
636 if ((sec_flags & (SEC_ALLOC | SEC_READONLY | SEC_CODE)) == SEC_ALLOC)
637 sec_flags |= SEC_DATA;
638
639 for (p = lang_memory_region_list;
640 p != (lang_memory_region_type *) NULL;
641 p = p->next)
642 {
643 if ((p->flags & sec_flags) != 0
644 && (p->not_flags & sec_flags) == 0)
645 {
646 return p;
647 }
648 }
649 return lang_memory_region_lookup ("*default*");
650 }
651
652 lang_output_section_statement_type *
653 lang_output_section_find (name)
654 CONST char *CONST name;
655 {
656 lang_statement_union_type *u;
657 lang_output_section_statement_type *lookup;
658
659 for (u = lang_output_section_statement.head;
660 u != (lang_statement_union_type *) NULL;
661 u = lookup->next)
662 {
663 lookup = &u->output_section_statement;
664 if (strcmp (name, lookup->name) == 0)
665 {
666 return lookup;
667 }
668 }
669 return (lang_output_section_statement_type *) NULL;
670 }
671
672 lang_output_section_statement_type *
673 lang_output_section_statement_lookup (name)
674 CONST char *CONST name;
675 {
676 lang_output_section_statement_type *lookup;
677
678 lookup = lang_output_section_find (name);
679 if (lookup == (lang_output_section_statement_type *) NULL)
680 {
681
682 lookup = (lang_output_section_statement_type *)
683 new_stat (lang_output_section_statement, stat_ptr);
684 lookup->region = (lang_memory_region_type *) NULL;
685 lookup->fill = 0;
686 lookup->block_value = 1;
687 lookup->name = name;
688
689 lookup->next = (lang_statement_union_type *) NULL;
690 lookup->bfd_section = (asection *) NULL;
691 lookup->processed = false;
692 lookup->sectype = normal_section;
693 lookup->addr_tree = (etree_type *) NULL;
694 lang_list_init (&lookup->children);
695
696 lookup->memspec = (CONST char *) NULL;
697 lookup->flags = 0;
698 lookup->subsection_alignment = -1;
699 lookup->section_alignment = -1;
700 lookup->load_base = (union etree_union *) NULL;
701 lookup->phdrs = NULL;
702
703 lang_statement_append (&lang_output_section_statement,
704 (lang_statement_union_type *) lookup,
705 &lookup->next);
706 }
707 return lookup;
708 }
709
710 static void
711 lang_map_flags (flag)
712 flagword flag;
713 {
714 if (flag & SEC_ALLOC)
715 minfo ("a");
716
717 if (flag & SEC_CODE)
718 minfo ("x");
719
720 if (flag & SEC_READONLY)
721 minfo ("r");
722
723 if (flag & SEC_DATA)
724 minfo ("w");
725
726 if (flag & SEC_LOAD)
727 minfo ("l");
728 }
729
730 void
731 lang_map ()
732 {
733 lang_memory_region_type *m;
734
735 minfo (_("\nMemory Configuration\n\n"));
736 fprintf (config.map_file, "%-16s %-18s %-18s %s\n",
737 _("Name"), _("Origin"), _("Length"), _("Attributes"));
738
739 for (m = lang_memory_region_list;
740 m != (lang_memory_region_type *) NULL;
741 m = m->next)
742 {
743 char buf[100];
744 int len;
745
746 fprintf (config.map_file, "%-16s ", m->name);
747
748 sprintf_vma (buf, m->origin);
749 minfo ("0x%s ", buf);
750 len = strlen (buf);
751 while (len < 16)
752 {
753 print_space ();
754 ++len;
755 }
756
757 minfo ("0x%V", m->length);
758 if (m->flags || m->not_flags)
759 {
760 #ifndef BFD64
761 minfo (" ");
762 #endif
763 if (m->flags)
764 {
765 print_space ();
766 lang_map_flags (m->flags);
767 }
768
769 if (m->not_flags)
770 {
771 minfo (" !");
772 lang_map_flags (m->not_flags);
773 }
774 }
775
776 print_nl ();
777 }
778
779 fprintf (config.map_file, _("\nLinker script and memory map\n\n"));
780
781 print_statements ();
782 }
783
784 /* Initialize an output section. */
785
786 static void
787 init_os (s)
788 lang_output_section_statement_type *s;
789 {
790 section_userdata_type *new;
791
792 if (s->bfd_section != NULL)
793 return;
794
795 if (strcmp (s->name, DISCARD_SECTION_NAME) == 0)
796 einfo (_("%P%F: Illegal use of `%s' section"), DISCARD_SECTION_NAME);
797
798 new = ((section_userdata_type *)
799 stat_alloc (sizeof (section_userdata_type)));
800
801 s->bfd_section = bfd_get_section_by_name (output_bfd, s->name);
802 if (s->bfd_section == (asection *) NULL)
803 s->bfd_section = bfd_make_section (output_bfd, s->name);
804 if (s->bfd_section == (asection *) NULL)
805 {
806 einfo (_("%P%F: output format %s cannot represent section called %s\n"),
807 output_bfd->xvec->name, s->name);
808 }
809 s->bfd_section->output_section = s->bfd_section;
810
811 /* We initialize an output sections output offset to minus its own */
812 /* vma to allow us to output a section through itself */
813 s->bfd_section->output_offset = 0;
814 get_userdata (s->bfd_section) = (PTR) new;
815
816 /* If there is a base address, make sure that any sections it might
817 mention are initialized. */
818 if (s->addr_tree != NULL)
819 exp_init_os (s->addr_tree);
820 }
821
822 /* Make sure that all output sections mentioned in an expression are
823 initialized. */
824
825 static void
826 exp_init_os (exp)
827 etree_type *exp;
828 {
829 switch (exp->type.node_class)
830 {
831 case etree_assign:
832 exp_init_os (exp->assign.src);
833 break;
834
835 case etree_binary:
836 exp_init_os (exp->binary.lhs);
837 exp_init_os (exp->binary.rhs);
838 break;
839
840 case etree_trinary:
841 exp_init_os (exp->trinary.cond);
842 exp_init_os (exp->trinary.lhs);
843 exp_init_os (exp->trinary.rhs);
844 break;
845
846 case etree_unary:
847 exp_init_os (exp->unary.child);
848 break;
849
850 case etree_name:
851 switch (exp->type.node_code)
852 {
853 case ADDR:
854 case LOADADDR:
855 case SIZEOF:
856 {
857 lang_output_section_statement_type *os;
858
859 os = lang_output_section_find (exp->name.name);
860 if (os != NULL && os->bfd_section == NULL)
861 init_os (os);
862 }
863 }
864 break;
865
866 default:
867 break;
868 }
869 }
870 \f
871 /* Sections marked with the SEC_LINK_ONCE flag should only be linked
872 once into the output. This routine checks each section, and
873 arrange to discard it if a section of the same name has already
874 been linked. If the section has COMDAT information, then it uses
875 that to decide whether the section should be included. This code
876 assumes that all relevant sections have the SEC_LINK_ONCE flag set;
877 that is, it does not depend solely upon the section name.
878 section_already_linked is called via bfd_map_over_sections. */
879
880 /* This is the shape of the elements inside the already_linked hash
881 table. It maps a name onto a list of already_linked elements with
882 the same name. It's possible to get more than one element in a
883 list if the COMDAT sections have different names. */
884
885 struct already_linked_hash_entry
886 {
887 struct bfd_hash_entry root;
888 struct already_linked *entry;
889 };
890
891 struct already_linked
892 {
893 struct already_linked *next;
894 asection *sec;
895 };
896
897 /* The hash table. */
898
899 static struct bfd_hash_table already_linked_table;
900
901 /*ARGSUSED*/
902 static void
903 section_already_linked (abfd, sec, data)
904 bfd *abfd;
905 asection *sec;
906 PTR data;
907 {
908 lang_input_statement_type *entry = (lang_input_statement_type *) data;
909 flagword flags;
910 const char *name;
911 struct already_linked *l;
912 struct already_linked_hash_entry *already_linked_list;
913
914 /* If we are only reading symbols from this object, then we want to
915 discard all sections. */
916 if (entry->just_syms_flag)
917 {
918 sec->output_section = bfd_abs_section_ptr;
919 sec->output_offset = sec->vma;
920 return;
921 }
922
923 flags = bfd_get_section_flags (abfd, sec);
924
925 if ((flags & SEC_LINK_ONCE) == 0)
926 return;
927
928 /* FIXME: When doing a relocateable link, we may have trouble
929 copying relocations in other sections that refer to local symbols
930 in the section being discarded. Those relocations will have to
931 be converted somehow; as of this writing I'm not sure that any of
932 the backends handle that correctly.
933
934 It is tempting to instead not discard link once sections when
935 doing a relocateable link (technically, they should be discarded
936 whenever we are building constructors). However, that fails,
937 because the linker winds up combining all the link once sections
938 into a single large link once section, which defeats the purpose
939 of having link once sections in the first place.
940
941 Also, not merging link once sections in a relocateable link
942 causes trouble for MIPS ELF, which relies in link once semantics
943 to handle the .reginfo section correctly. */
944
945 name = bfd_get_section_name (abfd, sec);
946
947 already_linked_list =
948 ((struct already_linked_hash_entry *)
949 bfd_hash_lookup (&already_linked_table, name, true, false));
950
951 for (l = already_linked_list->entry; l != NULL; l = l->next)
952 {
953 if (sec->comdat == NULL
954 || l->sec->comdat == NULL
955 || strcmp (sec->comdat->name, l->sec->comdat->name) == 0)
956 {
957 /* The section has already been linked. See if we should
958 issue a warning. */
959 switch (flags & SEC_LINK_DUPLICATES)
960 {
961 default:
962 abort ();
963
964 case SEC_LINK_DUPLICATES_DISCARD:
965 break;
966
967 case SEC_LINK_DUPLICATES_ONE_ONLY:
968 if (sec->comdat == NULL)
969 einfo (_("%P: %B: warning: ignoring duplicate section `%s'\n"),
970 abfd, name);
971 else
972 einfo (_("%P: %B: warning: ignoring duplicate `%s' section symbol `%s'\n"),
973 abfd, name, sec->comdat->name);
974 break;
975
976 case SEC_LINK_DUPLICATES_SAME_CONTENTS:
977 /* FIXME: We should really dig out the contents of both
978 sections and memcmp them. The COFF/PE spec says that
979 the Microsoft linker does not implement this
980 correctly, so I'm not going to bother doing it
981 either. */
982 /* Fall through. */
983 case SEC_LINK_DUPLICATES_SAME_SIZE:
984 if (bfd_section_size (abfd, sec)
985 != bfd_section_size (l->sec->owner, l->sec))
986 einfo (_("%P: %B: warning: duplicate section `%s' has different size\n"),
987 abfd, name);
988 break;
989 }
990
991 /* Set the output_section field so that wild_doit does not
992 create a lang_input_section structure for this section.
993 Since there might be a symbol in the section being
994 discarded, we must retain a pointer to the section which
995 we are really going to use. */
996 sec->output_section = bfd_abs_section_ptr;
997 if (sec->comdat != NULL)
998 sec->comdat->sec = l->sec;
999
1000 return;
1001 }
1002 }
1003
1004 /* This is the first section with this name. Record it. Allocate
1005 the memory from the same obstack as the hash table is kept in. */
1006
1007 l = ((struct already_linked *)
1008 bfd_hash_allocate (&already_linked_table, sizeof *l));
1009
1010 l->sec = sec;
1011 l->next = already_linked_list->entry;
1012 already_linked_list->entry = l;
1013 }
1014
1015 /* Support routines for the hash table used by section_already_linked,
1016 initialize the table, fill in an entry and remove the table. */
1017
1018 static struct bfd_hash_entry *
1019 already_linked_newfunc (entry, table, string)
1020 struct bfd_hash_entry *entry ATTRIBUTE_UNUSED;
1021 struct bfd_hash_table *table;
1022 const char *string ATTRIBUTE_UNUSED;
1023 {
1024 struct already_linked_hash_entry *ret =
1025 bfd_hash_allocate (table, sizeof (struct already_linked_hash_entry));
1026
1027 ret->entry = NULL;
1028
1029 return (struct bfd_hash_entry *) ret;
1030 }
1031
1032 static void
1033 already_linked_table_init ()
1034 {
1035 if (! bfd_hash_table_init_n (&already_linked_table,
1036 already_linked_newfunc,
1037 42))
1038 einfo (_("%P%F: Failed to create hash table\n"));
1039 }
1040
1041 static void
1042 already_linked_table_free ()
1043 {
1044 bfd_hash_table_free (&already_linked_table);
1045 }
1046 \f
1047 /* The wild routines.
1048
1049 These expand statements like *(.text) and foo.o to a list of
1050 explicit actions, like foo.o(.text), bar.o(.text) and
1051 foo.o(.text, .data). */
1052
1053 /* Return true if the PATTERN argument is a wildcard pattern.
1054 Although backslashes are treated specially if a pattern contains
1055 wildcards, we do not consider the mere presence of a backslash to
1056 be enough to cause the the pattern to be treated as a wildcard.
1057 That lets us handle DOS filenames more naturally. */
1058
1059 static boolean
1060 wildcardp (pattern)
1061 const char *pattern;
1062 {
1063 const char *s;
1064
1065 for (s = pattern; *s != '\0'; ++s)
1066 if (*s == '?'
1067 || *s == '*'
1068 || *s == '[')
1069 return true;
1070 return false;
1071 }
1072
1073 /* Add SECTION to the output section OUTPUT. Do this by creating a
1074 lang_input_section statement which is placed at PTR. FILE is the
1075 input file which holds SECTION. */
1076
1077 void
1078 wild_doit (ptr, section, output, file)
1079 lang_statement_list_type *ptr;
1080 asection *section;
1081 lang_output_section_statement_type *output;
1082 lang_input_statement_type *file;
1083 {
1084 flagword flags;
1085 boolean discard;
1086
1087 flags = bfd_get_section_flags (section->owner, section);
1088
1089 discard = false;
1090
1091 /* If we are doing a final link, discard sections marked with
1092 SEC_EXCLUDE. */
1093 if (! link_info.relocateable
1094 && (flags & SEC_EXCLUDE) != 0)
1095 discard = true;
1096
1097 /* Discard input sections which are assigned to a section named
1098 DISCARD_SECTION_NAME. */
1099 if (strcmp (output->name, DISCARD_SECTION_NAME) == 0)
1100 discard = true;
1101
1102 /* Discard debugging sections if we are stripping debugging
1103 information. */
1104 if ((link_info.strip == strip_debugger || link_info.strip == strip_all)
1105 && (flags & SEC_DEBUGGING) != 0)
1106 discard = true;
1107
1108 if (discard)
1109 {
1110 if (section->output_section == NULL)
1111 {
1112 /* This prevents future calls from assigning this section. */
1113 section->output_section = bfd_abs_section_ptr;
1114 }
1115 return;
1116 }
1117
1118 if (section->output_section == NULL)
1119 {
1120 boolean first;
1121 lang_input_section_type *new;
1122 flagword flags;
1123
1124 if (output->bfd_section == NULL)
1125 {
1126 init_os (output);
1127 first = true;
1128 }
1129 else
1130 first = false;
1131
1132 /* Add a section reference to the list */
1133 new = new_stat (lang_input_section, ptr);
1134
1135 new->section = section;
1136 new->ifile = file;
1137 section->output_section = output->bfd_section;
1138
1139 flags = section->flags;
1140
1141 /* We don't copy the SEC_NEVER_LOAD flag from an input section
1142 to an output section, because we want to be able to include a
1143 SEC_NEVER_LOAD section in the middle of an otherwise loaded
1144 section (I don't know why we want to do this, but we do).
1145 build_link_order in ldwrite.c handles this case by turning
1146 the embedded SEC_NEVER_LOAD section into a fill. */
1147
1148 flags &= ~ SEC_NEVER_LOAD;
1149
1150 /* If final link, don't copy the SEC_LINK_ONCE flags, they've
1151 already been processed. One reason to do this is that on pe
1152 format targets, .text$foo sections go into .text and it's odd
1153 to see .text with SEC_LINK_ONCE set. */
1154
1155 if (! link_info.relocateable)
1156 flags &= ~ (SEC_LINK_ONCE | SEC_LINK_DUPLICATES);
1157
1158 /* If this is not the first input section, and the SEC_READONLY
1159 flag is not currently set, then don't set it just because the
1160 input section has it set. */
1161
1162 if (! first && (section->output_section->flags & SEC_READONLY) == 0)
1163 flags &= ~ SEC_READONLY;
1164
1165 section->output_section->flags |= flags;
1166
1167 /* If SEC_READONLY is not set in the input section, then clear
1168 it from the output section. */
1169 if ((section->flags & SEC_READONLY) == 0)
1170 section->output_section->flags &= ~SEC_READONLY;
1171
1172 switch (output->sectype)
1173 {
1174 case normal_section:
1175 break;
1176 case dsect_section:
1177 case copy_section:
1178 case info_section:
1179 case overlay_section:
1180 output->bfd_section->flags &= ~SEC_ALLOC;
1181 break;
1182 case noload_section:
1183 output->bfd_section->flags &= ~SEC_LOAD;
1184 output->bfd_section->flags |= SEC_NEVER_LOAD;
1185 break;
1186 }
1187
1188 /* Copy over SEC_SMALL_DATA. */
1189 if (section->flags & SEC_SMALL_DATA)
1190 section->output_section->flags |= SEC_SMALL_DATA;
1191
1192 if (section->alignment_power > output->bfd_section->alignment_power)
1193 output->bfd_section->alignment_power = section->alignment_power;
1194
1195 /* If supplied an aligment, then force it. */
1196 if (output->section_alignment != -1)
1197 output->bfd_section->alignment_power = output->section_alignment;
1198 }
1199 }
1200
1201 /* Handle wildcard sorting. This returns the lang_input_section which
1202 should follow the one we are going to create for SECTION and FILE,
1203 based on the sorting requirements of WILD. It returns NULL if the
1204 new section should just go at the end of the current list. */
1205
1206 static lang_statement_union_type *
1207 wild_sort (wild, file, section)
1208 lang_wild_statement_type *wild;
1209 lang_input_statement_type *file;
1210 asection *section;
1211 {
1212 const char *section_name;
1213 lang_statement_union_type *l;
1214
1215 if (! wild->filenames_sorted && ! wild->sections_sorted)
1216 return NULL;
1217
1218 section_name = bfd_get_section_name (file->the_bfd, section);
1219 for (l = wild->children.head; l != NULL; l = l->next)
1220 {
1221 lang_input_section_type *ls;
1222
1223 if (l->header.type != lang_input_section_enum)
1224 continue;
1225 ls = &l->input_section;
1226
1227 /* Sorting by filename takes precedence over sorting by section
1228 name. */
1229
1230 if (wild->filenames_sorted)
1231 {
1232 const char *fn, *ln;
1233 boolean fa, la;
1234 int i;
1235
1236 /* The PE support for the .idata section as generated by
1237 dlltool assumes that files will be sorted by the name of
1238 the archive and then the name of the file within the
1239 archive. */
1240
1241 if (file->the_bfd != NULL
1242 && bfd_my_archive (file->the_bfd) != NULL)
1243 {
1244 fn = bfd_get_filename (bfd_my_archive (file->the_bfd));
1245 fa = true;
1246 }
1247 else
1248 {
1249 fn = file->filename;
1250 fa = false;
1251 }
1252
1253 if (ls->ifile->the_bfd != NULL
1254 && bfd_my_archive (ls->ifile->the_bfd) != NULL)
1255 {
1256 ln = bfd_get_filename (bfd_my_archive (ls->ifile->the_bfd));
1257 la = true;
1258 }
1259 else
1260 {
1261 ln = ls->ifile->filename;
1262 la = false;
1263 }
1264
1265 i = strcmp (fn, ln);
1266 if (i > 0)
1267 continue;
1268 else if (i < 0)
1269 break;
1270
1271 if (fa || la)
1272 {
1273 if (fa)
1274 fn = file->filename;
1275 if (la)
1276 ln = ls->ifile->filename;
1277
1278 i = strcmp (fn, ln);
1279 if (i > 0)
1280 continue;
1281 else if (i < 0)
1282 break;
1283 }
1284 }
1285
1286 /* Here either the files are not sorted by name, or we are
1287 looking at the sections for this file. */
1288
1289 if (wild->sections_sorted)
1290 {
1291 if (strcmp (section_name,
1292 bfd_get_section_name (ls->ifile->the_bfd,
1293 ls->section))
1294 < 0)
1295 break;
1296 }
1297 }
1298
1299 return l;
1300 }
1301
1302 /* Expand a wild statement for a particular FILE. SECTION may be
1303 NULL, in which case it is a wild card. */
1304
1305 static void
1306 output_section_callback (ptr, section, file, output)
1307 lang_wild_statement_type *ptr;
1308 asection *section;
1309 lang_input_statement_type *file;
1310 void *output;
1311 {
1312 lang_statement_union_type *before;
1313
1314 /* If the wild pattern was marked KEEP, the member sections
1315 should be as well. */
1316 if (ptr->keep_sections)
1317 section->flags |= SEC_KEEP;
1318
1319 before = wild_sort (ptr, file, section);
1320
1321 /* Here BEFORE points to the lang_input_section which
1322 should follow the one we are about to add. If BEFORE
1323 is NULL, then the section should just go at the end
1324 of the current list. */
1325
1326 if (before == NULL)
1327 wild_doit (&ptr->children, section,
1328 (lang_output_section_statement_type *) output,
1329 file);
1330 else
1331 {
1332 lang_statement_list_type list;
1333 lang_statement_union_type **pp;
1334
1335 lang_list_init (&list);
1336 wild_doit (&list, section,
1337 (lang_output_section_statement_type *) output,
1338 file);
1339
1340 /* If we are discarding the section, LIST.HEAD will
1341 be NULL. */
1342 if (list.head != NULL)
1343 {
1344 ASSERT (list.head->next == NULL);
1345
1346 for (pp = &ptr->children.head;
1347 *pp != before;
1348 pp = &(*pp)->next)
1349 ASSERT (*pp != NULL);
1350
1351 list.head->next = *pp;
1352 *pp = list.head;
1353 }
1354 }
1355 }
1356
1357 /* This is passed a file name which must have been seen already and
1358 added to the statement tree. We will see if it has been opened
1359 already and had its symbols read. If not then we'll read it. */
1360
1361 static lang_input_statement_type *
1362 lookup_name (name)
1363 const char *name;
1364 {
1365 lang_input_statement_type *search;
1366
1367 for (search = (lang_input_statement_type *) input_file_chain.head;
1368 search != (lang_input_statement_type *) NULL;
1369 search = (lang_input_statement_type *) search->next_real_file)
1370 {
1371 if (search->filename == (char *) NULL && name == (char *) NULL)
1372 return search;
1373 if (search->filename != (char *) NULL
1374 && name != (char *) NULL
1375 && strcmp (search->filename, name) == 0)
1376 break;
1377 }
1378
1379 if (search == (lang_input_statement_type *) NULL)
1380 search = new_afile (name, lang_input_file_is_file_enum, default_target,
1381 false);
1382
1383 /* If we have already added this file, or this file is not real
1384 (FIXME: can that ever actually happen?) or the name is NULL
1385 (FIXME: can that ever actually happen?) don't add this file. */
1386 if (search->loaded
1387 || ! search->real
1388 || search->filename == (const char *) NULL)
1389 return search;
1390
1391 load_symbols (search, (lang_statement_list_type *) NULL);
1392
1393 return search;
1394 }
1395
1396 /* Get the symbols for an input file. */
1397
1398 static void
1399 load_symbols (entry, place)
1400 lang_input_statement_type *entry;
1401 lang_statement_list_type *place;
1402 {
1403 char **matching;
1404
1405 if (entry->loaded)
1406 return;
1407
1408 ldfile_open_file (entry);
1409
1410 if (! bfd_check_format (entry->the_bfd, bfd_archive)
1411 && ! bfd_check_format_matches (entry->the_bfd, bfd_object, &matching))
1412 {
1413 bfd_error_type err;
1414 lang_statement_list_type *hold;
1415
1416 err = bfd_get_error ();
1417 if (err == bfd_error_file_ambiguously_recognized)
1418 {
1419 char **p;
1420
1421 einfo (_("%B: file not recognized: %E\n"), entry->the_bfd);
1422 einfo (_("%B: matching formats:"), entry->the_bfd);
1423 for (p = matching; *p != NULL; p++)
1424 einfo (" %s", *p);
1425 einfo ("%F\n");
1426 }
1427 else if (err != bfd_error_file_not_recognized
1428 || place == NULL)
1429 einfo (_("%F%B: file not recognized: %E\n"), entry->the_bfd);
1430
1431 bfd_close (entry->the_bfd);
1432 entry->the_bfd = NULL;
1433
1434 /* See if the emulation has some special knowledge. */
1435
1436 if (ldemul_unrecognized_file (entry))
1437 return;
1438
1439 /* Try to interpret the file as a linker script. */
1440
1441 ldfile_open_command_file (entry->filename);
1442
1443 hold = stat_ptr;
1444 stat_ptr = place;
1445
1446 ldfile_assumed_script = true;
1447 parser_input = input_script;
1448 yyparse ();
1449 ldfile_assumed_script = false;
1450
1451 stat_ptr = hold;
1452
1453 return;
1454 }
1455
1456 if (ldemul_recognized_file (entry))
1457 return;
1458
1459 /* We don't call ldlang_add_file for an archive. Instead, the
1460 add_symbols entry point will call ldlang_add_file, via the
1461 add_archive_element callback, for each element of the archive
1462 which is used. */
1463 switch (bfd_get_format (entry->the_bfd))
1464 {
1465 default:
1466 break;
1467
1468 case bfd_object:
1469 ldlang_add_file (entry);
1470 if (trace_files || trace_file_tries)
1471 info_msg ("%I\n", entry);
1472 break;
1473
1474 case bfd_archive:
1475 if (entry->whole_archive)
1476 {
1477 bfd *member = bfd_openr_next_archived_file (entry->the_bfd,
1478 (bfd *) NULL);
1479 while (member != NULL)
1480 {
1481 if (! bfd_check_format (member, bfd_object))
1482 einfo (_("%F%B: object %B in archive is not object\n"),
1483 entry->the_bfd, member);
1484 if (! ((*link_info.callbacks->add_archive_element)
1485 (&link_info, member, "--whole-archive")))
1486 abort ();
1487 if (! bfd_link_add_symbols (member, &link_info))
1488 einfo (_("%F%B: could not read symbols: %E\n"), member);
1489 member = bfd_openr_next_archived_file (entry->the_bfd,
1490 member);
1491 }
1492
1493 entry->loaded = true;
1494
1495 return;
1496 }
1497 }
1498
1499 if (! bfd_link_add_symbols (entry->the_bfd, &link_info))
1500 einfo (_("%F%B: could not read symbols: %E\n"), entry->the_bfd);
1501
1502 entry->loaded = true;
1503 }
1504
1505
1506
1507 /* Handle a wild statement. SECTION or FILE or both may be NULL,
1508 indicating that it is a wildcard. Separate lang_input_section
1509 statements are created for each part of the expansion; they are
1510 added after the wild statement S. OUTPUT is the output section. */
1511
1512 static void
1513 wild (s, section, file, target, output)
1514 lang_wild_statement_type *s;
1515 const char *section;
1516 const char *file;
1517 const char *target ATTRIBUTE_UNUSED;
1518 lang_output_section_statement_type *output;
1519 {
1520 walk_wild (s, section, file, output_section_callback, (void *) output);
1521
1522 if (section != (char *) NULL
1523 && strcmp (section, "COMMON") == 0
1524 && default_common_section == NULL)
1525 {
1526 /* Remember the section that common is going to in case we later
1527 get something which doesn't know where to put it. */
1528 default_common_section = output;
1529 }
1530 }
1531
1532 /* Return true iff target is the sought target. */
1533 static int
1534 get_target (target, data)
1535 const bfd_target * target;
1536 void * data;
1537 {
1538 const char * sought = (const char *) data;
1539
1540 return strcmp (target->name, sought) == 0;
1541 }
1542
1543 /* Like strcpy() but convert to lower case as well. */
1544 static void
1545 stricpy (dest, src)
1546 char * dest;
1547 char * src;
1548 {
1549 char c;
1550
1551 while ((c = * src ++) != 0)
1552 {
1553 if (isupper ((unsigned char) c))
1554 c = tolower (c);
1555
1556 * dest ++ = c;
1557 }
1558
1559 * dest = 0;
1560 }
1561
1562 /* Remove the first occurance of needle (if any) in haystack
1563 from haystack. */
1564 static void
1565 strcut (haystack, needle)
1566 char * haystack;
1567 char * needle;
1568 {
1569 haystack = strstr (haystack, needle);
1570
1571 if (haystack)
1572 {
1573 char * src;
1574
1575 for (src = haystack + strlen (needle); * src;)
1576 * haystack ++ = * src ++;
1577
1578 * haystack = 0;
1579 }
1580 }
1581
1582 /* Compare two target format name strings.
1583 Return a value indicating how "similar" they are. */
1584 static int
1585 name_compare (first, second)
1586 char * first;
1587 char * second;
1588 {
1589 char * copy1;
1590 char * copy2;
1591 int result;
1592
1593 copy1 = xmalloc (strlen (first) + 1);
1594 copy2 = xmalloc (strlen (second) + 1);
1595
1596 /* Convert the names to lower case. */
1597 stricpy (copy1, first);
1598 stricpy (copy2, second);
1599
1600 /* Remove and endian strings from the name. */
1601 strcut (copy1, "big");
1602 strcut (copy1, "little");
1603 strcut (copy2, "big");
1604 strcut (copy2, "little");
1605
1606 /* Return a value based on how many characters match,
1607 starting from the beginning. If both strings are
1608 the same then return 10 * their length. */
1609 for (result = 0; copy1 [result] == copy2 [result]; result ++)
1610 if (copy1 [result] == 0)
1611 {
1612 result *= 10;
1613 break;
1614 }
1615
1616 free (copy1);
1617 free (copy2);
1618
1619 return result;
1620 }
1621
1622 /* Set by closest_target_match() below. */
1623 static const bfd_target * winner;
1624
1625 /* Scan all the valid bfd targets looking for one that has the endianness
1626 requirement that was specified on the command line, and is the nearest
1627 match to the original output target. */
1628 static int
1629 closest_target_match (target, data)
1630 const bfd_target * target;
1631 void * data;
1632 {
1633 const bfd_target * original = (const bfd_target *) data;
1634
1635 if (command_line.endian == ENDIAN_BIG && target->byteorder != BFD_ENDIAN_BIG)
1636 return 0;
1637
1638 if (command_line.endian == ENDIAN_LITTLE && target->byteorder != BFD_ENDIAN_LITTLE)
1639 return 0;
1640
1641 /* Must be the same flavour. */
1642 if (target->flavour != original->flavour)
1643 return 0;
1644
1645 /* If we have not found a potential winner yet, then record this one. */
1646 if (winner == NULL)
1647 {
1648 winner = target;
1649 return 0;
1650 }
1651
1652 /* Oh dear, we now have two potential candidates for a successful match.
1653 Compare their names and choose the better one. */
1654 if (name_compare (target->name, original->name) > name_compare (winner->name, original->name))
1655 winner = target;
1656
1657 /* Keep on searching until wqe have checked them all. */
1658 return 0;
1659 }
1660
1661 /* Return the BFD target format of the first input file. */
1662 static char *
1663 get_first_input_target ()
1664 {
1665 char * target = NULL;
1666
1667 LANG_FOR_EACH_INPUT_STATEMENT (s)
1668 {
1669 if (s->header.type == lang_input_statement_enum
1670 && s->real)
1671 {
1672 ldfile_open_file (s);
1673
1674 if (s->the_bfd != NULL
1675 && bfd_check_format (s->the_bfd, bfd_object))
1676 {
1677 target = bfd_get_target (s->the_bfd);
1678
1679 if (target != NULL)
1680 break;
1681 }
1682 }
1683 }
1684
1685 return target;
1686 }
1687
1688 /* Open the output file. */
1689
1690 static bfd *
1691 open_output (name)
1692 const char * name;
1693 {
1694 bfd * output;
1695
1696 /* Has the user told us which output format to use ? */
1697 if (output_target == (char *) NULL)
1698 {
1699 /* No - has the current target been set to something other than the default ? */
1700 if (current_target != default_target)
1701 output_target = current_target;
1702
1703 /* No - can we determine the format of the first input file ? */
1704 else
1705 {
1706 output_target = get_first_input_target ();
1707
1708 /* Failed - use the default output target. */
1709 if (output_target == NULL)
1710 output_target = default_target;
1711 }
1712 }
1713
1714 /* Has the user requested a particular endianness on the command line ? */
1715 if (command_line.endian != ENDIAN_UNSET)
1716 {
1717 const bfd_target * target;
1718 enum bfd_endian desired_endian;
1719
1720 /* Get the chosen target. */
1721 target = bfd_search_for_target (get_target, (void *) output_target);
1722
1723 if (command_line.endian == ENDIAN_BIG)
1724 desired_endian = BFD_ENDIAN_BIG;
1725 else
1726 desired_endian = BFD_ENDIAN_LITTLE;
1727
1728 /* See if the target has the wrong endianness. This should not happen
1729 if the linker script has provided big and little endian alternatives,
1730 but some scrips don't do this. */
1731 if (target->byteorder != desired_endian)
1732 {
1733 /* If it does, then see if the target provides
1734 an alternative with the correct endianness. */
1735 if (target->alternative_target != NULL
1736 && (target->alternative_target->byteorder == desired_endian))
1737 output_target = target->alternative_target->name;
1738 else
1739 {
1740 /* Try to find a target as similar as possible to the default
1741 target, but which has the desired endian characteristic. */
1742 (void) bfd_search_for_target (closest_target_match, (void *) target);
1743
1744 /* Oh dear - we could not find any targets that satisfy our requirements. */
1745 if (winner == NULL)
1746 einfo (_("%P: warning: could not find any targets that match endianness requirement\n"));
1747 else
1748 output_target = winner->name;
1749 }
1750 }
1751 }
1752
1753 output = bfd_openw (name, output_target);
1754
1755 if (output == (bfd *) NULL)
1756 {
1757 if (bfd_get_error () == bfd_error_invalid_target)
1758 einfo (_("%P%F: target %s not found\n"), output_target);
1759
1760 einfo (_("%P%F: cannot open output file %s: %E\n"), name);
1761 }
1762
1763 delete_output_file_on_failure = true;
1764
1765 /* output->flags |= D_PAGED;*/
1766
1767 if (! bfd_set_format (output, bfd_object))
1768 einfo (_("%P%F:%s: can not make object file: %E\n"), name);
1769 if (! bfd_set_arch_mach (output,
1770 ldfile_output_architecture,
1771 ldfile_output_machine))
1772 einfo (_("%P%F:%s: can not set architecture: %E\n"), name);
1773
1774 link_info.hash = bfd_link_hash_table_create (output);
1775 if (link_info.hash == (struct bfd_link_hash_table *) NULL)
1776 einfo (_("%P%F: can not create link hash table: %E\n"));
1777
1778 bfd_set_gp_size (output, g_switch_value);
1779 return output;
1780 }
1781
1782 static void
1783 ldlang_open_output (statement)
1784 lang_statement_union_type * statement;
1785 {
1786 switch (statement->header.type)
1787 {
1788 case lang_output_statement_enum:
1789 ASSERT (output_bfd == (bfd *) NULL);
1790 output_bfd = open_output (statement->output_statement.name);
1791 ldemul_set_output_arch ();
1792 if (config.magic_demand_paged && !link_info.relocateable)
1793 output_bfd->flags |= D_PAGED;
1794 else
1795 output_bfd->flags &= ~D_PAGED;
1796 if (config.text_read_only)
1797 output_bfd->flags |= WP_TEXT;
1798 else
1799 output_bfd->flags &= ~WP_TEXT;
1800 if (link_info.traditional_format)
1801 output_bfd->flags |= BFD_TRADITIONAL_FORMAT;
1802 else
1803 output_bfd->flags &= ~BFD_TRADITIONAL_FORMAT;
1804 break;
1805
1806 case lang_target_statement_enum:
1807 current_target = statement->target_statement.target;
1808 break;
1809 default:
1810 break;
1811 }
1812 }
1813
1814 /* Open all the input files. */
1815
1816 static void
1817 open_input_bfds (s, force)
1818 lang_statement_union_type *s;
1819 boolean force;
1820 {
1821 for (; s != (lang_statement_union_type *) NULL; s = s->next)
1822 {
1823 switch (s->header.type)
1824 {
1825 case lang_constructors_statement_enum:
1826 open_input_bfds (constructor_list.head, force);
1827 break;
1828 case lang_output_section_statement_enum:
1829 open_input_bfds (s->output_section_statement.children.head, force);
1830 break;
1831 case lang_wild_statement_enum:
1832 /* Maybe we should load the file's symbols */
1833 if (s->wild_statement.filename
1834 && ! wildcardp (s->wild_statement.filename))
1835 (void) lookup_name (s->wild_statement.filename);
1836 open_input_bfds (s->wild_statement.children.head, force);
1837 break;
1838 case lang_group_statement_enum:
1839 {
1840 struct bfd_link_hash_entry *undefs;
1841
1842 /* We must continually search the entries in the group
1843 until no new symbols are added to the list of undefined
1844 symbols. */
1845
1846 do
1847 {
1848 undefs = link_info.hash->undefs_tail;
1849 open_input_bfds (s->group_statement.children.head, true);
1850 }
1851 while (undefs != link_info.hash->undefs_tail);
1852 }
1853 break;
1854 case lang_target_statement_enum:
1855 current_target = s->target_statement.target;
1856 break;
1857 case lang_input_statement_enum:
1858 if (s->input_statement.real)
1859 {
1860 lang_statement_list_type add;
1861
1862 s->input_statement.target = current_target;
1863
1864 /* If we are being called from within a group, and this
1865 is an archive which has already been searched, then
1866 force it to be researched. */
1867 if (force
1868 && s->input_statement.loaded
1869 && bfd_check_format (s->input_statement.the_bfd,
1870 bfd_archive))
1871 s->input_statement.loaded = false;
1872
1873 lang_list_init (&add);
1874
1875 load_symbols (&s->input_statement, &add);
1876
1877 if (add.head != NULL)
1878 {
1879 *add.tail = s->next;
1880 s->next = add.head;
1881 }
1882 }
1883 break;
1884 default:
1885 break;
1886 }
1887 }
1888 }
1889
1890 /* If there are [COMMONS] statements, put a wild one into the bss section */
1891
1892 static void
1893 lang_reasonable_defaults ()
1894 {
1895 #if 0
1896 lang_output_section_statement_lookup (".text");
1897 lang_output_section_statement_lookup (".data");
1898
1899 default_common_section =
1900 lang_output_section_statement_lookup (".bss");
1901
1902
1903 if (placed_commons == false)
1904 {
1905 lang_wild_statement_type *new =
1906 new_stat (lang_wild_statement,
1907 &default_common_section->children);
1908
1909 new->section_name = "COMMON";
1910 new->filename = (char *) NULL;
1911 lang_list_init (&new->children);
1912 }
1913 #endif
1914
1915 }
1916
1917 /*
1918 Add the supplied name to the symbol table as an undefined reference.
1919 Remove items from the chain as we open input bfds
1920 */
1921 typedef struct ldlang_undef_chain_list
1922 {
1923 struct ldlang_undef_chain_list *next;
1924 char *name;
1925 } ldlang_undef_chain_list_type;
1926
1927 static ldlang_undef_chain_list_type *ldlang_undef_chain_list_head;
1928
1929 void
1930 ldlang_add_undef (name)
1931 CONST char *CONST name;
1932 {
1933 ldlang_undef_chain_list_type *new =
1934 ((ldlang_undef_chain_list_type *)
1935 stat_alloc (sizeof (ldlang_undef_chain_list_type)));
1936
1937 new->next = ldlang_undef_chain_list_head;
1938 ldlang_undef_chain_list_head = new;
1939
1940 new->name = buystring (name);
1941 }
1942
1943 /* Run through the list of undefineds created above and place them
1944 into the linker hash table as undefined symbols belonging to the
1945 script file.
1946 */
1947 static void
1948 lang_place_undefineds ()
1949 {
1950 ldlang_undef_chain_list_type *ptr;
1951
1952 for (ptr = ldlang_undef_chain_list_head;
1953 ptr != (ldlang_undef_chain_list_type *) NULL;
1954 ptr = ptr->next)
1955 {
1956 struct bfd_link_hash_entry *h;
1957
1958 h = bfd_link_hash_lookup (link_info.hash, ptr->name, true, false, true);
1959 if (h == (struct bfd_link_hash_entry *) NULL)
1960 einfo (_("%P%F: bfd_link_hash_lookup failed: %E\n"));
1961 if (h->type == bfd_link_hash_new)
1962 {
1963 h->type = bfd_link_hash_undefined;
1964 h->u.undef.abfd = NULL;
1965 bfd_link_add_undef (link_info.hash, h);
1966 }
1967 }
1968 }
1969
1970 /* Open input files and attatch to output sections */
1971 static void
1972 map_input_to_output_sections (s, target, output_section_statement)
1973 lang_statement_union_type * s;
1974 CONST char *target;
1975 lang_output_section_statement_type * output_section_statement;
1976 {
1977 for (; s != (lang_statement_union_type *) NULL; s = s->next)
1978 {
1979 switch (s->header.type)
1980 {
1981
1982
1983 case lang_wild_statement_enum:
1984 wild (&s->wild_statement, s->wild_statement.section_name,
1985 s->wild_statement.filename, target,
1986 output_section_statement);
1987
1988 break;
1989 case lang_constructors_statement_enum:
1990 map_input_to_output_sections (constructor_list.head,
1991 target,
1992 output_section_statement);
1993 break;
1994 case lang_output_section_statement_enum:
1995 map_input_to_output_sections (s->output_section_statement.children.head,
1996 target,
1997 &s->output_section_statement);
1998 break;
1999 case lang_output_statement_enum:
2000 break;
2001 case lang_target_statement_enum:
2002 target = s->target_statement.target;
2003 break;
2004 case lang_group_statement_enum:
2005 map_input_to_output_sections (s->group_statement.children.head,
2006 target,
2007 output_section_statement);
2008 break;
2009 case lang_fill_statement_enum:
2010 case lang_input_section_enum:
2011 case lang_object_symbols_statement_enum:
2012 case lang_data_statement_enum:
2013 case lang_reloc_statement_enum:
2014 case lang_padding_statement_enum:
2015 case lang_input_statement_enum:
2016 if (output_section_statement != NULL
2017 && output_section_statement->bfd_section == NULL)
2018 init_os (output_section_statement);
2019 break;
2020 case lang_assignment_statement_enum:
2021 if (output_section_statement != NULL
2022 && output_section_statement->bfd_section == NULL)
2023 init_os (output_section_statement);
2024
2025 /* Make sure that any sections mentioned in the assignment
2026 are initialized. */
2027 exp_init_os (s->assignment_statement.exp);
2028 break;
2029 case lang_afile_asection_pair_statement_enum:
2030 FAIL ();
2031 break;
2032 case lang_address_statement_enum:
2033 /* Mark the specified section with the supplied address */
2034 {
2035 lang_output_section_statement_type *os =
2036 lang_output_section_statement_lookup
2037 (s->address_statement.section_name);
2038
2039 if (os->bfd_section == NULL)
2040 init_os (os);
2041 os->addr_tree = s->address_statement.address;
2042 }
2043 break;
2044 }
2045 }
2046 }
2047
2048 static void
2049 print_output_section_statement (output_section_statement)
2050 lang_output_section_statement_type * output_section_statement;
2051 {
2052 asection *section = output_section_statement->bfd_section;
2053 int len;
2054
2055 if (output_section_statement != abs_output_section)
2056 {
2057 minfo ("\n%s", output_section_statement->name);
2058
2059 if (section != NULL)
2060 {
2061 print_dot = section->vma;
2062
2063 len = strlen (output_section_statement->name);
2064 if (len >= SECTION_NAME_MAP_LENGTH - 1)
2065 {
2066 print_nl ();
2067 len = 0;
2068 }
2069 while (len < SECTION_NAME_MAP_LENGTH)
2070 {
2071 print_space ();
2072 ++len;
2073 }
2074
2075 minfo ("0x%V %W", section->vma, section->_raw_size);
2076
2077 if (output_section_statement->load_base != NULL)
2078 {
2079 bfd_vma addr;
2080
2081 addr = exp_get_abs_int (output_section_statement->load_base, 0,
2082 "load base", lang_final_phase_enum);
2083 minfo (_(" load address 0x%V"), addr);
2084 }
2085 }
2086
2087 print_nl ();
2088 }
2089
2090 print_statement_list (output_section_statement->children.head,
2091 output_section_statement);
2092 }
2093
2094 static void
2095 print_assignment (assignment, output_section)
2096 lang_assignment_statement_type * assignment;
2097 lang_output_section_statement_type * output_section;
2098 {
2099 int i;
2100 etree_value_type result;
2101
2102 for (i = 0; i < SECTION_NAME_MAP_LENGTH; i++)
2103 print_space ();
2104
2105 result = exp_fold_tree (assignment->exp->assign.src, output_section,
2106 lang_final_phase_enum, print_dot, &print_dot);
2107 if (result.valid_p)
2108 minfo ("0x%V", result.value + result.section->bfd_section->vma);
2109 else
2110 {
2111 minfo ("*undef* ");
2112 #ifdef BFD64
2113 minfo (" ");
2114 #endif
2115 }
2116
2117 minfo (" ");
2118
2119 exp_print_tree (assignment->exp);
2120
2121 print_nl ();
2122 }
2123
2124 static void
2125 print_input_statement (statm)
2126 lang_input_statement_type * statm;
2127 {
2128 if (statm->filename != (char *) NULL)
2129 {
2130 fprintf (config.map_file, "LOAD %s\n", statm->filename);
2131 }
2132 }
2133
2134 /* Print all symbols defined in a particular section. This is called
2135 via bfd_link_hash_traverse. */
2136
2137 static boolean
2138 print_one_symbol (hash_entry, ptr)
2139 struct bfd_link_hash_entry *hash_entry;
2140 PTR ptr;
2141 {
2142 asection *sec = (asection *) ptr;
2143
2144 if ((hash_entry->type == bfd_link_hash_defined
2145 || hash_entry->type == bfd_link_hash_defweak)
2146 && sec == hash_entry->u.def.section)
2147 {
2148 int i;
2149
2150 for (i = 0; i < SECTION_NAME_MAP_LENGTH; i++)
2151 print_space ();
2152 minfo ("0x%V ",
2153 (hash_entry->u.def.value
2154 + hash_entry->u.def.section->output_offset
2155 + hash_entry->u.def.section->output_section->vma));
2156
2157 minfo (" %T\n", hash_entry->root.string);
2158 }
2159
2160 return true;
2161 }
2162
2163 /* Print information about an input section to the map file. */
2164
2165 static void
2166 print_input_section (in)
2167 lang_input_section_type * in;
2168 {
2169 asection *i = in->section;
2170 bfd_size_type size = i->_cooked_size != 0 ? i->_cooked_size : i->_raw_size;
2171 int opb = bfd_arch_mach_octets_per_byte (ldfile_output_architecture,
2172 ldfile_output_machine);
2173 if (size != 0)
2174 {
2175 print_space ();
2176
2177 minfo ("%s", i->name);
2178
2179 if (i->output_section != NULL)
2180 {
2181 int len;
2182
2183 len = 1 + strlen (i->name);
2184 if (len >= SECTION_NAME_MAP_LENGTH - 1)
2185 {
2186 print_nl ();
2187 len = 0;
2188 }
2189 while (len < SECTION_NAME_MAP_LENGTH)
2190 {
2191 print_space ();
2192 ++len;
2193 }
2194
2195 minfo ("0x%V %W %B\n",
2196 i->output_section->vma + i->output_offset, size / opb,
2197 i->owner);
2198
2199 if (i->_cooked_size != 0 && i->_cooked_size != i->_raw_size)
2200 {
2201 len = SECTION_NAME_MAP_LENGTH + 3;
2202 #ifdef BFD64
2203 len += 16;
2204 #else
2205 len += 8;
2206 #endif
2207 while (len > 0)
2208 {
2209 print_space ();
2210 --len;
2211 }
2212
2213 minfo (_("%W (size before relaxing)\n"), i->_raw_size);
2214 }
2215
2216 bfd_link_hash_traverse (link_info.hash, print_one_symbol, (PTR) i);
2217
2218 print_dot = i->output_section->vma + i->output_offset + size / opb;
2219 }
2220 }
2221 }
2222
2223 static void
2224 print_fill_statement (fill)
2225 lang_fill_statement_type * fill;
2226 {
2227 fprintf (config.map_file, " FILL mask 0x%x\n", fill->fill);
2228 }
2229
2230 static void
2231 print_data_statement (data)
2232 lang_data_statement_type * data;
2233 {
2234 int i;
2235 bfd_vma addr;
2236 bfd_size_type size;
2237 const char *name;
2238 int opb = bfd_arch_mach_octets_per_byte (ldfile_output_architecture,
2239 ldfile_output_machine);
2240
2241 for (i = 0; i < SECTION_NAME_MAP_LENGTH; i++)
2242 print_space ();
2243
2244 addr = data->output_vma;
2245 if (data->output_section != NULL)
2246 addr += data->output_section->vma;
2247
2248 switch (data->type)
2249 {
2250 default:
2251 abort ();
2252 case BYTE:
2253 size = BYTE_SIZE;
2254 name = "BYTE";
2255 break;
2256 case SHORT:
2257 size = SHORT_SIZE;
2258 name = "SHORT";
2259 break;
2260 case LONG:
2261 size = LONG_SIZE;
2262 name = "LONG";
2263 break;
2264 case QUAD:
2265 size = QUAD_SIZE;
2266 name = "QUAD";
2267 break;
2268 case SQUAD:
2269 size = QUAD_SIZE;
2270 name = "SQUAD";
2271 break;
2272 }
2273
2274 minfo ("0x%V %W %s 0x%v", addr, size, name, data->value);
2275
2276 if (data->exp->type.node_class != etree_value)
2277 {
2278 print_space ();
2279 exp_print_tree (data->exp);
2280 }
2281
2282 print_nl ();
2283
2284 print_dot = addr + size / opb;
2285
2286 }
2287
2288 /* Print an address statement. These are generated by options like
2289 -Ttext. */
2290
2291 static void
2292 print_address_statement (address)
2293 lang_address_statement_type *address;
2294 {
2295 minfo (_("Address of section %s set to "), address->section_name);
2296 exp_print_tree (address->address);
2297 print_nl ();
2298 }
2299
2300 /* Print a reloc statement. */
2301
2302 static void
2303 print_reloc_statement (reloc)
2304 lang_reloc_statement_type *reloc;
2305 {
2306 int i;
2307 bfd_vma addr;
2308 bfd_size_type size;
2309 int opb = bfd_arch_mach_octets_per_byte (ldfile_output_architecture,
2310 ldfile_output_machine);
2311
2312 for (i = 0; i < SECTION_NAME_MAP_LENGTH; i++)
2313 print_space ();
2314
2315 addr = reloc->output_vma;
2316 if (reloc->output_section != NULL)
2317 addr += reloc->output_section->vma;
2318
2319 size = bfd_get_reloc_size (reloc->howto);
2320
2321 minfo ("0x%V %W RELOC %s ", addr, size, reloc->howto->name);
2322
2323 if (reloc->name != NULL)
2324 minfo ("%s+", reloc->name);
2325 else
2326 minfo ("%s+", reloc->section->name);
2327
2328 exp_print_tree (reloc->addend_exp);
2329
2330 print_nl ();
2331
2332 print_dot = addr + size / opb;
2333 }
2334
2335 static void
2336 print_padding_statement (s)
2337 lang_padding_statement_type *s;
2338 {
2339 int len;
2340 bfd_vma addr;
2341 int opb = bfd_arch_mach_octets_per_byte (ldfile_output_architecture,
2342 ldfile_output_machine);
2343
2344 minfo (" *fill*");
2345
2346 len = sizeof " *fill*" - 1;
2347 while (len < SECTION_NAME_MAP_LENGTH)
2348 {
2349 print_space ();
2350 ++len;
2351 }
2352
2353 addr = s->output_offset;
2354 if (s->output_section != NULL)
2355 addr += s->output_section->vma;
2356 minfo ("0x%V %W", addr, s->size);
2357
2358 if (s->fill != 0)
2359 minfo (" %u", s->fill);
2360
2361 print_nl ();
2362
2363 print_dot = addr + s->size / opb;
2364 }
2365
2366 static void
2367 print_wild_statement (w, os)
2368 lang_wild_statement_type * w;
2369 lang_output_section_statement_type * os;
2370 {
2371 print_space ();
2372
2373 if (w->filenames_sorted)
2374 minfo ("SORT(");
2375 if (w->exclude_filename_list != NULL)
2376 {
2377 name_list *tmp;
2378 minfo ("EXCLUDE_FILE ( %s", w->exclude_filename_list->name);
2379 for (tmp=w->exclude_filename_list->next; tmp; tmp = tmp->next)
2380 minfo (", %s", tmp->name);
2381 minfo (")");
2382 }
2383 if (w->filename != NULL)
2384 minfo ("%s", w->filename);
2385 else
2386 minfo ("*");
2387 if (w->filenames_sorted)
2388 minfo (")");
2389
2390 minfo ("(");
2391 if (w->sections_sorted)
2392 minfo ("SORT(");
2393 if (w->section_name != NULL)
2394 minfo ("%s", w->section_name);
2395 else
2396 minfo ("*");
2397 if (w->sections_sorted)
2398 minfo (")");
2399 minfo (")");
2400
2401 print_nl ();
2402
2403 print_statement_list (w->children.head, os);
2404 }
2405
2406 /* Print a group statement. */
2407
2408 static void
2409 print_group (s, os)
2410 lang_group_statement_type *s;
2411 lang_output_section_statement_type *os;
2412 {
2413 fprintf (config.map_file, "START GROUP\n");
2414 print_statement_list (s->children.head, os);
2415 fprintf (config.map_file, "END GROUP\n");
2416 }
2417
2418 /* Print the list of statements in S.
2419 This can be called for any statement type. */
2420
2421 static void
2422 print_statement_list (s, os)
2423 lang_statement_union_type *s;
2424 lang_output_section_statement_type *os;
2425 {
2426 while (s != NULL)
2427 {
2428 print_statement (s, os);
2429 s = s->next;
2430 }
2431 }
2432
2433 /* Print the first statement in statement list S.
2434 This can be called for any statement type. */
2435
2436 static void
2437 print_statement (s, os)
2438 lang_statement_union_type *s;
2439 lang_output_section_statement_type *os;
2440 {
2441 switch (s->header.type)
2442 {
2443 default:
2444 fprintf (config.map_file, _("Fail with %d\n"), s->header.type);
2445 FAIL ();
2446 break;
2447 case lang_constructors_statement_enum:
2448 if (constructor_list.head != NULL)
2449 {
2450 if (constructors_sorted)
2451 minfo (" SORT (CONSTRUCTORS)\n");
2452 else
2453 minfo (" CONSTRUCTORS\n");
2454 print_statement_list (constructor_list.head, os);
2455 }
2456 break;
2457 case lang_wild_statement_enum:
2458 print_wild_statement (&s->wild_statement, os);
2459 break;
2460 case lang_address_statement_enum:
2461 print_address_statement (&s->address_statement);
2462 break;
2463 case lang_object_symbols_statement_enum:
2464 minfo (" CREATE_OBJECT_SYMBOLS\n");
2465 break;
2466 case lang_fill_statement_enum:
2467 print_fill_statement (&s->fill_statement);
2468 break;
2469 case lang_data_statement_enum:
2470 print_data_statement (&s->data_statement);
2471 break;
2472 case lang_reloc_statement_enum:
2473 print_reloc_statement (&s->reloc_statement);
2474 break;
2475 case lang_input_section_enum:
2476 print_input_section (&s->input_section);
2477 break;
2478 case lang_padding_statement_enum:
2479 print_padding_statement (&s->padding_statement);
2480 break;
2481 case lang_output_section_statement_enum:
2482 print_output_section_statement (&s->output_section_statement);
2483 break;
2484 case lang_assignment_statement_enum:
2485 print_assignment (&s->assignment_statement, os);
2486 break;
2487 case lang_target_statement_enum:
2488 fprintf (config.map_file, "TARGET(%s)\n", s->target_statement.target);
2489 break;
2490 case lang_output_statement_enum:
2491 minfo ("OUTPUT(%s", s->output_statement.name);
2492 if (output_target != NULL)
2493 minfo (" %s", output_target);
2494 minfo (")\n");
2495 break;
2496 case lang_input_statement_enum:
2497 print_input_statement (&s->input_statement);
2498 break;
2499 case lang_group_statement_enum:
2500 print_group (&s->group_statement, os);
2501 break;
2502 case lang_afile_asection_pair_statement_enum:
2503 FAIL ();
2504 break;
2505 }
2506 }
2507
2508 static void
2509 print_statements ()
2510 {
2511 print_statement_list (statement_list.head, abs_output_section);
2512 }
2513
2514 /* Print the first N statements in statement list S to STDERR.
2515 If N == 0, nothing is printed.
2516 If N < 0, the entire list is printed.
2517 Intended to be called from GDB. */
2518
2519 void
2520 dprint_statement (s, n)
2521 lang_statement_union_type * s;
2522 int n;
2523 {
2524 FILE *map_save = config.map_file;
2525
2526 config.map_file = stderr;
2527
2528 if (n < 0)
2529 print_statement_list (s, abs_output_section);
2530 else
2531 {
2532 while (s && --n >= 0)
2533 {
2534 print_statement (s, abs_output_section);
2535 s = s->next;
2536 }
2537 }
2538
2539 config.map_file = map_save;
2540 }
2541
2542 static bfd_vma
2543 insert_pad (this_ptr, fill, power, output_section_statement, dot)
2544 lang_statement_union_type ** this_ptr;
2545 fill_type fill;
2546 unsigned int power;
2547 asection * output_section_statement;
2548 bfd_vma dot;
2549 {
2550 /* Align this section first to the
2551 input sections requirement, then
2552 to the output section's requirement.
2553 If this alignment is > than any seen before,
2554 then record it too. Perform the alignment by
2555 inserting a magic 'padding' statement.
2556 */
2557
2558 int opb = bfd_arch_mach_octets_per_byte (ldfile_output_architecture,
2559 ldfile_output_machine);
2560 unsigned int alignment_needed = align_power (dot, power) - dot;
2561
2562 if (alignment_needed != 0)
2563 {
2564 lang_statement_union_type *new =
2565 ((lang_statement_union_type *)
2566 stat_alloc (sizeof (lang_padding_statement_type)));
2567
2568 /* Link into existing chain */
2569 new->header.next = *this_ptr;
2570 *this_ptr = new;
2571 new->header.type = lang_padding_statement_enum;
2572 new->padding_statement.output_section = output_section_statement;
2573 new->padding_statement.output_offset =
2574 dot - output_section_statement->vma;
2575 new->padding_statement.fill = fill;
2576 new->padding_statement.size = alignment_needed * opb;
2577 }
2578
2579
2580 /* Remember the most restrictive alignment */
2581 if (power > output_section_statement->alignment_power)
2582 {
2583 output_section_statement->alignment_power = power;
2584 }
2585 output_section_statement->_raw_size += alignment_needed * opb;
2586
2587 return dot + alignment_needed;
2588 }
2589
2590 /* Work out how much this section will move the dot point */
2591 static bfd_vma
2592 size_input_section (this_ptr, output_section_statement, fill, dot, relax)
2593 lang_statement_union_type ** this_ptr;
2594 lang_output_section_statement_type * output_section_statement;
2595 fill_type fill;
2596 bfd_vma dot;
2597 boolean relax ATTRIBUTE_UNUSED;
2598 {
2599 lang_input_section_type *is = &((*this_ptr)->input_section);
2600 asection *i = is->section;
2601 int opb = bfd_arch_mach_octets_per_byte (ldfile_output_architecture,
2602 ldfile_output_machine);
2603
2604 if (is->ifile->just_syms_flag == false)
2605 {
2606 if (output_section_statement->subsection_alignment != -1)
2607 i->alignment_power =
2608 output_section_statement->subsection_alignment;
2609
2610 dot = insert_pad (this_ptr, fill, i->alignment_power,
2611 output_section_statement->bfd_section, dot);
2612
2613 /* Remember where in the output section this input section goes */
2614
2615 i->output_offset = dot - output_section_statement->bfd_section->vma;
2616
2617 /* Mark how big the output section must be to contain this now
2618 */
2619 if (i->_cooked_size != 0)
2620 dot += i->_cooked_size / opb;
2621 else
2622 dot += i->_raw_size / opb;
2623 output_section_statement->bfd_section->_raw_size =
2624 (dot - output_section_statement->bfd_section->vma) * opb;
2625 }
2626 else
2627 {
2628 i->output_offset = i->vma - output_section_statement->bfd_section->vma;
2629 }
2630
2631 return dot;
2632 }
2633
2634 #define IGNORE_SECTION(bfd, s) \
2635 (((bfd_get_section_flags (bfd, s) & (SEC_ALLOC | SEC_LOAD)) != (SEC_ALLOC | SEC_LOAD)) \
2636 || bfd_section_size (bfd, s) == 0)
2637
2638 /* Check to see if any allocated sections overlap with other allocated
2639 sections. This can happen when the linker script specifically specifies
2640 the output section addresses of the two sections. */
2641 static void
2642 lang_check_section_addresses ()
2643 {
2644 asection * s;
2645 int opb = bfd_octets_per_byte (output_bfd);
2646
2647 /* Scan all sections in the output list. */
2648 for (s = output_bfd->sections; s != NULL; s = s->next)
2649 {
2650 asection * os;
2651
2652 /* Ignore sections which are not loaded or which have no contents. */
2653 if (IGNORE_SECTION (output_bfd, s))
2654 continue;
2655
2656 /* Once we reach section 's' stop our seach. This prevents two
2657 warning messages from being produced, one for 'section A overlaps
2658 section B' and one for 'section B overlaps section A'. */
2659 for (os = output_bfd->sections; os != s; os = os->next)
2660 {
2661 bfd_vma s_start;
2662 bfd_vma s_end;
2663 bfd_vma os_start;
2664 bfd_vma os_end;
2665
2666 /* Only consider loadable sections with real contents. */
2667 if (IGNORE_SECTION (output_bfd, os))
2668 continue;
2669
2670 /* We must check the sections' LMA addresses not their
2671 VMA addresses because overlay sections can have
2672 overlapping VMAs but they must have distinct LMAs. */
2673 s_start = bfd_section_lma (output_bfd, s);
2674 os_start = bfd_section_lma (output_bfd, os);
2675 s_end = s_start + bfd_section_size (output_bfd, s) - 1;
2676 os_end = os_start + bfd_section_size (output_bfd, os) - 1;
2677
2678 /* Look for an overlap. */
2679 if ((s_end < os_start) || (s_start > os_end))
2680 continue;
2681
2682 einfo (
2683 _("%X%P: section %s [%V -> %V] overlaps section %s [%V -> %V]\n"),
2684 s->name, s_start, s_end, os->name, os_start, os_end);
2685
2686 /* Once we have found one overlap for this section,
2687 stop looking for others. */
2688 break;
2689 }
2690 }
2691 }
2692
2693 /* This variable indicates whether bfd_relax_section should be called
2694 again. */
2695
2696 static boolean relax_again;
2697
2698 /* Set the sizes for all the output sections. */
2699
2700 bfd_vma
2701 lang_size_sections (s, output_section_statement, prev, fill, dot, relax)
2702 lang_statement_union_type * s;
2703 lang_output_section_statement_type * output_section_statement;
2704 lang_statement_union_type ** prev;
2705 fill_type fill;
2706 bfd_vma dot;
2707 boolean relax;
2708 {
2709 int opb = bfd_arch_mach_octets_per_byte (ldfile_output_architecture,
2710 ldfile_output_machine);
2711
2712 /* Size up the sections from their constituent parts. */
2713 for (; s != (lang_statement_union_type *) NULL; s = s->next)
2714 {
2715 switch (s->header.type)
2716 {
2717 case lang_output_section_statement_enum:
2718 {
2719 bfd_vma after;
2720 lang_output_section_statement_type *os = &s->output_section_statement;
2721
2722 if (os->bfd_section == NULL)
2723 /* This section was never actually created. */
2724 break;
2725
2726 /* If this is a COFF shared library section, use the size and
2727 address from the input section. FIXME: This is COFF
2728 specific; it would be cleaner if there were some other way
2729 to do this, but nothing simple comes to mind. */
2730 if ((os->bfd_section->flags & SEC_COFF_SHARED_LIBRARY) != 0)
2731 {
2732 asection * input;
2733
2734 if (os->children.head == NULL
2735 || os->children.head->next != NULL
2736 || os->children.head->header.type != lang_input_section_enum)
2737 einfo (_("%P%X: Internal error on COFF shared library section %s\n"),
2738 os->name);
2739
2740 input = os->children.head->input_section.section;
2741 bfd_set_section_vma (os->bfd_section->owner,
2742 os->bfd_section,
2743 bfd_section_vma (input->owner, input));
2744 os->bfd_section->_raw_size = input->_raw_size;
2745 break;
2746 }
2747
2748 if (bfd_is_abs_section (os->bfd_section))
2749 {
2750 /* No matter what happens, an abs section starts at zero. */
2751 ASSERT (os->bfd_section->vma == 0);
2752 }
2753 else
2754 {
2755 if (os->addr_tree == (etree_type *) NULL)
2756 {
2757 /* No address specified for this section, get one
2758 from the region specification. */
2759 if (os->region == (lang_memory_region_type *) NULL
2760 || (((bfd_get_section_flags (output_bfd, os->bfd_section)
2761 & (SEC_ALLOC | SEC_LOAD)) != 0)
2762 && os->region->name[0] == '*'
2763 && strcmp (os->region->name, "*default*") == 0))
2764 {
2765 os->region = lang_memory_default (os->bfd_section);
2766 }
2767
2768 /* If a loadable section is using the default memory
2769 region, and some non default memory regions were
2770 defined, issue a warning. */
2771 if ((bfd_get_section_flags (output_bfd, os->bfd_section)
2772 & (SEC_ALLOC | SEC_LOAD)) != 0
2773 && ! link_info.relocateable
2774 && strcmp (os->region->name, "*default*") == 0
2775 && lang_memory_region_list != NULL
2776 && (strcmp (lang_memory_region_list->name, "*default*") != 0
2777 || lang_memory_region_list->next != NULL))
2778 einfo (_("%P: warning: no memory region specified for section `%s'\n"),
2779 bfd_get_section_name (output_bfd, os->bfd_section));
2780
2781 dot = os->region->current;
2782
2783 if (os->section_alignment == -1)
2784 {
2785 bfd_vma olddot;
2786
2787 olddot = dot;
2788 dot = align_power (dot, os->bfd_section->alignment_power);
2789
2790 if (dot != olddot && config.warn_section_align)
2791 einfo (_("%P: warning: changing start of section %s by %u bytes\n"),
2792 os->name, (unsigned int) (dot - olddot));
2793 }
2794 }
2795 else
2796 {
2797 etree_value_type r;
2798
2799 r = exp_fold_tree (os->addr_tree,
2800 abs_output_section,
2801 lang_allocating_phase_enum,
2802 dot, &dot);
2803 if (r.valid_p == false)
2804 {
2805 einfo (_("%F%S: non constant address expression for section %s\n"),
2806 os->name);
2807 }
2808 dot = r.value + r.section->bfd_section->vma;
2809 }
2810
2811 /* The section starts here.
2812 First, align to what the section needs. */
2813
2814 if (os->section_alignment != -1)
2815 dot = align_power (dot, os->section_alignment);
2816
2817 bfd_set_section_vma (0, os->bfd_section, dot);
2818
2819 os->bfd_section->output_offset = 0;
2820 }
2821
2822 (void) lang_size_sections (os->children.head, os, &os->children.head,
2823 os->fill, dot, relax);
2824
2825 /* put the section within the requested block size, or align at
2826 the block boundary */
2827 after = ALIGN_N (os->bfd_section->vma,
2828 os->bfd_section->_raw_size / opb,
2829 /* The coercion here is important, see ld.h. */
2830 (bfd_vma) os->block_value);
2831
2832 if (bfd_is_abs_section (os->bfd_section))
2833 ASSERT (after == os->bfd_section->vma);
2834 else
2835 os->bfd_section->_raw_size =
2836 (after - os->bfd_section->vma) * opb;
2837 dot = os->bfd_section->vma + os->bfd_section->_raw_size / opb;
2838 os->processed = true;
2839
2840 /* Update dot in the region ?
2841 We only do this if the section is going to be allocated,
2842 since unallocated sections do not contribute to the region's
2843 overall size in memory.
2844
2845 If the SEC_NEVER_LOAD bit is not set, it will affect the
2846 addresses of sections after it. We have to update
2847 dot. */
2848 if (os->region != (lang_memory_region_type *) NULL
2849 && ((bfd_get_section_flags (output_bfd, os->bfd_section)
2850 & SEC_NEVER_LOAD) == 0
2851 || (bfd_get_section_flags (output_bfd, os->bfd_section)
2852 & (SEC_ALLOC | SEC_LOAD))))
2853 {
2854 os->region->current = dot;
2855
2856 /* Make sure the new address is within the region. We
2857 explicitly permit the current address to be at the
2858 exact end of the region when the VMA is non-zero,
2859 in case the region is at the end of addressable
2860 memory and the calculation wraps around. */
2861 if ((os->region->current < os->region->origin
2862 || (os->region->current - os->region->origin
2863 > os->region->length))
2864 && ((os->region->current
2865 != os->region->origin + os->region->length)
2866 || os->bfd_section->vma == 0))
2867
2868 {
2869 if (os->addr_tree != (etree_type *) NULL)
2870 {
2871 einfo (_("%X%P: address 0x%v of %B section %s is not within region %s\n"),
2872 os->region->current,
2873 os->bfd_section->owner,
2874 os->bfd_section->name,
2875 os->region->name);
2876 }
2877 else
2878 {
2879 einfo (_("%X%P: region %s is full (%B section %s)\n"),
2880 os->region->name,
2881 os->bfd_section->owner,
2882 os->bfd_section->name);
2883 }
2884 /* Reset the region pointer. */
2885 os->region->current = os->region->origin;
2886 }
2887 }
2888 }
2889 break;
2890
2891 case lang_constructors_statement_enum:
2892 dot = lang_size_sections (constructor_list.head,
2893 output_section_statement,
2894 &s->wild_statement.children.head,
2895 fill,
2896 dot, relax);
2897 break;
2898
2899 case lang_data_statement_enum:
2900 {
2901 unsigned int size = 0;
2902
2903 s->data_statement.output_vma = dot - output_section_statement->bfd_section->vma;
2904 s->data_statement.output_section =
2905 output_section_statement->bfd_section;
2906
2907 switch (s->data_statement.type)
2908 {
2909 case QUAD:
2910 case SQUAD:
2911 size = QUAD_SIZE;
2912 break;
2913 case LONG:
2914 size = LONG_SIZE;
2915 break;
2916 case SHORT:
2917 size = SHORT_SIZE;
2918 break;
2919 case BYTE:
2920 size = BYTE_SIZE;
2921 break;
2922 }
2923 if (size < opb)
2924 size = opb;
2925 dot += size / opb;
2926 output_section_statement->bfd_section->_raw_size += size;
2927 /* The output section gets contents, and then we inspect for
2928 any flags set in the input script which override any ALLOC. */
2929 output_section_statement->bfd_section->flags |= SEC_HAS_CONTENTS;
2930 if (!(output_section_statement->flags & SEC_NEVER_LOAD)) {
2931 output_section_statement->bfd_section->flags |= SEC_ALLOC | SEC_LOAD;
2932 }
2933 }
2934 break;
2935
2936 case lang_reloc_statement_enum:
2937 {
2938 int size;
2939
2940 s->reloc_statement.output_vma =
2941 dot - output_section_statement->bfd_section->vma;
2942 s->reloc_statement.output_section =
2943 output_section_statement->bfd_section;
2944 size = bfd_get_reloc_size (s->reloc_statement.howto);
2945 dot += size / opb;
2946 output_section_statement->bfd_section->_raw_size += size;
2947 }
2948 break;
2949
2950 case lang_wild_statement_enum:
2951
2952 dot = lang_size_sections (s->wild_statement.children.head,
2953 output_section_statement,
2954 &s->wild_statement.children.head,
2955
2956 fill, dot, relax);
2957
2958 break;
2959
2960 case lang_object_symbols_statement_enum:
2961 link_info.create_object_symbols_section =
2962 output_section_statement->bfd_section;
2963 break;
2964 case lang_output_statement_enum:
2965 case lang_target_statement_enum:
2966 break;
2967 case lang_input_section_enum:
2968 {
2969 asection *i;
2970
2971 i = (*prev)->input_section.section;
2972 if (! relax)
2973 {
2974 if (i->_cooked_size == 0)
2975 i->_cooked_size = i->_raw_size;
2976 }
2977 else
2978 {
2979 boolean again;
2980
2981 if (! bfd_relax_section (i->owner, i, &link_info, &again))
2982 einfo (_("%P%F: can't relax section: %E\n"));
2983 if (again)
2984 relax_again = true;
2985 }
2986 dot = size_input_section (prev,
2987 output_section_statement,
2988 output_section_statement->fill,
2989 dot, relax);
2990 }
2991 break;
2992 case lang_input_statement_enum:
2993 break;
2994 case lang_fill_statement_enum:
2995 s->fill_statement.output_section = output_section_statement->bfd_section;
2996
2997 fill = s->fill_statement.fill;
2998 break;
2999 case lang_assignment_statement_enum:
3000 {
3001 bfd_vma newdot = dot;
3002
3003 exp_fold_tree (s->assignment_statement.exp,
3004 output_section_statement,
3005 lang_allocating_phase_enum,
3006 dot,
3007 &newdot);
3008
3009 if (newdot != dot)
3010 {
3011 /* The assignment changed dot. Insert a pad. */
3012 if (output_section_statement == abs_output_section)
3013 {
3014 /* If we don't have an output section, then just adjust
3015 the default memory address. */
3016 lang_memory_region_lookup ("*default*")->current = newdot;
3017 }
3018 else if (!relax)
3019 {
3020 lang_statement_union_type *new =
3021 ((lang_statement_union_type *)
3022 stat_alloc (sizeof (lang_padding_statement_type)));
3023
3024 /* Link into existing chain. */
3025 new->header.next = *prev;
3026 *prev = new;
3027 new->header.type = lang_padding_statement_enum;
3028 new->padding_statement.output_section =
3029 output_section_statement->bfd_section;
3030 new->padding_statement.output_offset =
3031 dot - output_section_statement->bfd_section->vma;
3032 new->padding_statement.fill = fill;
3033 new->padding_statement.size = (newdot - dot) * opb;
3034 output_section_statement->bfd_section->_raw_size +=
3035 new->padding_statement.size;
3036 }
3037
3038 dot = newdot;
3039 }
3040 }
3041 break;
3042
3043 case lang_padding_statement_enum:
3044 /* If we are relaxing, and this is not the first pass, some
3045 padding statements may have been inserted during previous
3046 passes. We may have to move the padding statement to a new
3047 location if dot has a different value at this point in this
3048 pass than it did at this point in the previous pass. */
3049 s->padding_statement.output_offset =
3050 dot - output_section_statement->bfd_section->vma;
3051 dot += s->padding_statement.size / opb;
3052 output_section_statement->bfd_section->_raw_size +=
3053 s->padding_statement.size;
3054 break;
3055
3056 case lang_group_statement_enum:
3057 dot = lang_size_sections (s->group_statement.children.head,
3058 output_section_statement,
3059 &s->group_statement.children.head,
3060 fill, dot, relax);
3061 break;
3062
3063 default:
3064 FAIL ();
3065 break;
3066
3067 /* This can only get here when relaxing is turned on. */
3068
3069 case lang_address_statement_enum:
3070 break;
3071 }
3072 prev = &s->header.next;
3073 }
3074 return dot;
3075 }
3076
3077 bfd_vma
3078 lang_do_assignments (s, output_section_statement, fill, dot)
3079 lang_statement_union_type * s;
3080 lang_output_section_statement_type * output_section_statement;
3081 fill_type fill;
3082 bfd_vma dot;
3083 {
3084 int opb = bfd_arch_mach_octets_per_byte (ldfile_output_architecture,
3085 ldfile_output_machine);
3086
3087 for (; s != (lang_statement_union_type *) NULL; s = s->next)
3088 {
3089 switch (s->header.type)
3090 {
3091 case lang_constructors_statement_enum:
3092 dot = lang_do_assignments (constructor_list.head,
3093 output_section_statement,
3094 fill,
3095 dot);
3096 break;
3097
3098 case lang_output_section_statement_enum:
3099 {
3100 lang_output_section_statement_type *os =
3101 &(s->output_section_statement);
3102
3103 if (os->bfd_section != NULL)
3104 {
3105 dot = os->bfd_section->vma;
3106 (void) lang_do_assignments (os->children.head, os,
3107 os->fill, dot);
3108 dot = os->bfd_section->vma + os->bfd_section->_raw_size / opb;
3109
3110 }
3111 if (os->load_base)
3112 {
3113 /* If nothing has been placed into the output section then
3114 it won't have a bfd_section. */
3115 if (os->bfd_section)
3116 {
3117 os->bfd_section->lma
3118 = exp_get_abs_int(os->load_base, 0,"load base", lang_final_phase_enum);
3119 }
3120 }
3121 }
3122 break;
3123 case lang_wild_statement_enum:
3124
3125 dot = lang_do_assignments (s->wild_statement.children.head,
3126 output_section_statement,
3127 fill, dot);
3128
3129 break;
3130
3131 case lang_object_symbols_statement_enum:
3132 case lang_output_statement_enum:
3133 case lang_target_statement_enum:
3134 #if 0
3135 case lang_common_statement_enum:
3136 #endif
3137 break;
3138 case lang_data_statement_enum:
3139 {
3140 etree_value_type value;
3141
3142 value = exp_fold_tree (s->data_statement.exp,
3143 abs_output_section,
3144 lang_final_phase_enum, dot, &dot);
3145 s->data_statement.value = value.value;
3146 if (value.valid_p == false)
3147 einfo (_("%F%P: invalid data statement\n"));
3148 }
3149 {
3150 int size;
3151 switch (s->data_statement.type)
3152 {
3153 case QUAD:
3154 case SQUAD:
3155 size = QUAD_SIZE;
3156 break;
3157 case LONG:
3158 size = LONG_SIZE;
3159 break;
3160 case SHORT:
3161 size = SHORT_SIZE;
3162 break;
3163 case BYTE:
3164 size = BYTE_SIZE;
3165 break;
3166 }
3167 if (size < opb)
3168 size = opb;
3169 dot += size / opb;
3170 }
3171 break;
3172
3173 case lang_reloc_statement_enum:
3174 {
3175 etree_value_type value;
3176
3177 value = exp_fold_tree (s->reloc_statement.addend_exp,
3178 abs_output_section,
3179 lang_final_phase_enum, dot, &dot);
3180 s->reloc_statement.addend_value = value.value;
3181 if (value.valid_p == false)
3182 einfo (_("%F%P: invalid reloc statement\n"));
3183 }
3184 dot += bfd_get_reloc_size (s->reloc_statement.howto) / opb;
3185 break;
3186
3187 case lang_input_section_enum:
3188 {
3189 asection *in = s->input_section.section;
3190
3191 if (in->_cooked_size != 0)
3192 dot += in->_cooked_size / opb;
3193 else
3194 dot += in->_raw_size / opb;
3195 }
3196 break;
3197
3198 case lang_input_statement_enum:
3199 break;
3200 case lang_fill_statement_enum:
3201 fill = s->fill_statement.fill;
3202 break;
3203 case lang_assignment_statement_enum:
3204 {
3205 exp_fold_tree (s->assignment_statement.exp,
3206 output_section_statement,
3207 lang_final_phase_enum,
3208 dot,
3209 &dot);
3210 }
3211
3212 break;
3213 case lang_padding_statement_enum:
3214 dot += s->padding_statement.size / opb;
3215 break;
3216
3217 case lang_group_statement_enum:
3218 dot = lang_do_assignments (s->group_statement.children.head,
3219 output_section_statement,
3220 fill, dot);
3221
3222 break;
3223
3224 default:
3225 FAIL ();
3226 break;
3227 case lang_address_statement_enum:
3228 break;
3229 }
3230
3231 }
3232 return dot;
3233 }
3234
3235 /* Fix any .startof. or .sizeof. symbols. When the assemblers see the
3236 operator .startof. (section_name), it produces an undefined symbol
3237 .startof.section_name. Similarly, when it sees
3238 .sizeof. (section_name), it produces an undefined symbol
3239 .sizeof.section_name. For all the output sections, we look for
3240 such symbols, and set them to the correct value. */
3241
3242 static void
3243 lang_set_startof ()
3244 {
3245 asection *s;
3246
3247 if (link_info.relocateable)
3248 return;
3249
3250 for (s = output_bfd->sections; s != NULL; s = s->next)
3251 {
3252 const char *secname;
3253 char *buf;
3254 struct bfd_link_hash_entry *h;
3255
3256 secname = bfd_get_section_name (output_bfd, s);
3257 buf = xmalloc (10 + strlen (secname));
3258
3259 sprintf (buf, ".startof.%s", secname);
3260 h = bfd_link_hash_lookup (link_info.hash, buf, false, false, true);
3261 if (h != NULL && h->type == bfd_link_hash_undefined)
3262 {
3263 h->type = bfd_link_hash_defined;
3264 h->u.def.value = bfd_get_section_vma (output_bfd, s);
3265 h->u.def.section = bfd_abs_section_ptr;
3266 }
3267
3268 sprintf (buf, ".sizeof.%s", secname);
3269 h = bfd_link_hash_lookup (link_info.hash, buf, false, false, true);
3270 if (h != NULL && h->type == bfd_link_hash_undefined)
3271 {
3272 int opb = bfd_arch_mach_octets_per_byte (ldfile_output_architecture,
3273 ldfile_output_machine);
3274 h->type = bfd_link_hash_defined;
3275 if (s->_cooked_size != 0)
3276 h->u.def.value = s->_cooked_size / opb;
3277 else
3278 h->u.def.value = s->_raw_size / opb;
3279 h->u.def.section = bfd_abs_section_ptr;
3280 }
3281
3282 free (buf);
3283 }
3284 }
3285
3286 static void
3287 lang_finish ()
3288 {
3289 struct bfd_link_hash_entry *h;
3290 boolean warn;
3291
3292 if (link_info.relocateable || link_info.shared)
3293 warn = false;
3294 else
3295 warn = true;
3296
3297 if (entry_symbol == (char *) NULL)
3298 {
3299 /* No entry has been specified. Look for start, but don't warn
3300 if we don't find it. */
3301 entry_symbol = "start";
3302 warn = false;
3303 }
3304
3305 h = bfd_link_hash_lookup (link_info.hash, entry_symbol, false, false, true);
3306 if (h != (struct bfd_link_hash_entry *) NULL
3307 && (h->type == bfd_link_hash_defined
3308 || h->type == bfd_link_hash_defweak)
3309 && h->u.def.section->output_section != NULL)
3310 {
3311 bfd_vma val;
3312
3313 val = (h->u.def.value
3314 + bfd_get_section_vma (output_bfd,
3315 h->u.def.section->output_section)
3316 + h->u.def.section->output_offset);
3317 if (! bfd_set_start_address (output_bfd, val))
3318 einfo (_("%P%F:%s: can't set start address\n"), entry_symbol);
3319 }
3320 else
3321 {
3322 bfd_vma val;
3323 CONST char *send;
3324
3325 /* We couldn't find the entry symbol. Try parsing it as a
3326 number. */
3327 val = bfd_scan_vma (entry_symbol, &send, 0);
3328 if (*send == '\0')
3329 {
3330 if (! bfd_set_start_address (output_bfd, val))
3331 einfo (_("%P%F: can't set start address\n"));
3332 }
3333 else
3334 {
3335 asection *ts;
3336
3337 /* Can't find the entry symbol, and it's not a number. Use
3338 the first address in the text section. */
3339 ts = bfd_get_section_by_name (output_bfd, ".text");
3340 if (ts != (asection *) NULL)
3341 {
3342 if (warn)
3343 einfo (_("%P: warning: cannot find entry symbol %s; defaulting to %V\n"),
3344 entry_symbol, bfd_get_section_vma (output_bfd, ts));
3345 if (! bfd_set_start_address (output_bfd,
3346 bfd_get_section_vma (output_bfd,
3347 ts)))
3348 einfo (_("%P%F: can't set start address\n"));
3349 }
3350 else
3351 {
3352 if (warn)
3353 einfo (_("%P: warning: cannot find entry symbol %s; not setting start address\n"),
3354 entry_symbol);
3355 }
3356 }
3357 }
3358 }
3359
3360 /* This is a small function used when we want to ignore errors from
3361 BFD. */
3362
3363 static void
3364 #ifdef ANSI_PROTOTYPES
3365 ignore_bfd_errors (const char *s ATTRIBUTE_UNUSED, ...)
3366 #else
3367 ignore_bfd_errors (s)
3368 const char *s ATTRIBUTE_UNUSED;
3369 #endif
3370 {
3371 /* Don't do anything. */
3372 }
3373
3374 /* Check that the architecture of all the input files is compatible
3375 with the output file. Also call the backend to let it do any
3376 other checking that is needed. */
3377
3378 static void
3379 lang_check ()
3380 {
3381 lang_statement_union_type *file;
3382 bfd *input_bfd;
3383 CONST bfd_arch_info_type *compatible;
3384
3385 for (file = file_chain.head;
3386 file != (lang_statement_union_type *) NULL;
3387 file = file->input_statement.next)
3388 {
3389 input_bfd = file->input_statement.the_bfd;
3390 compatible = bfd_arch_get_compatible (input_bfd,
3391 output_bfd);
3392 if (compatible == NULL)
3393 {
3394 if (command_line.warn_mismatch)
3395 einfo (_("%P: warning: %s architecture of input file `%B' is incompatible with %s output\n"),
3396 bfd_printable_name (input_bfd), input_bfd,
3397 bfd_printable_name (output_bfd));
3398 }
3399 else
3400 {
3401 bfd_error_handler_type pfn = NULL;
3402
3403 /* If we aren't supposed to warn about mismatched input
3404 files, temporarily set the BFD error handler to a
3405 function which will do nothing. We still want to call
3406 bfd_merge_private_bfd_data, since it may set up
3407 information which is needed in the output file. */
3408 if (! command_line.warn_mismatch)
3409 pfn = bfd_set_error_handler (ignore_bfd_errors);
3410 if (! bfd_merge_private_bfd_data (input_bfd, output_bfd))
3411 {
3412 if (command_line.warn_mismatch)
3413 einfo (_("%E%X: failed to merge target specific data of file %B\n"),
3414 input_bfd);
3415 }
3416 if (! command_line.warn_mismatch)
3417 bfd_set_error_handler (pfn);
3418 }
3419 }
3420 }
3421
3422 /* Look through all the global common symbols and attach them to the
3423 correct section. The -sort-common command line switch may be used
3424 to roughly sort the entries by size. */
3425
3426 static void
3427 lang_common ()
3428 {
3429 if (link_info.relocateable
3430 && ! command_line.force_common_definition)
3431 return;
3432
3433 if (! config.sort_common)
3434 bfd_link_hash_traverse (link_info.hash, lang_one_common, (PTR) NULL);
3435 else
3436 {
3437 int power;
3438
3439 for (power = 4; power >= 0; power--)
3440 bfd_link_hash_traverse (link_info.hash, lang_one_common,
3441 (PTR) &power);
3442 }
3443 }
3444
3445 /* Place one common symbol in the correct section. */
3446
3447 static boolean
3448 lang_one_common (h, info)
3449 struct bfd_link_hash_entry *h;
3450 PTR info;
3451 {
3452 unsigned int power_of_two;
3453 bfd_vma size;
3454 asection *section;
3455 int opb = bfd_arch_mach_octets_per_byte (ldfile_output_architecture,
3456 ldfile_output_machine);
3457
3458 if (h->type != bfd_link_hash_common)
3459 return true;
3460
3461 size = h->u.c.size;
3462 power_of_two = h->u.c.p->alignment_power;
3463
3464 if (config.sort_common
3465 && power_of_two < (unsigned int) *(int *) info)
3466 return true;
3467
3468 section = h->u.c.p->section;
3469
3470 /* Increase the size of the section. */
3471 section->_cooked_size = ALIGN_N ((section->_cooked_size + opb - 1) / opb,
3472 (bfd_size_type) (1 << power_of_two)) * opb;
3473
3474 /* Adjust the alignment if necessary. */
3475 if (power_of_two > section->alignment_power)
3476 section->alignment_power = power_of_two;
3477
3478 /* Change the symbol from common to defined. */
3479 h->type = bfd_link_hash_defined;
3480 h->u.def.section = section;
3481 h->u.def.value = section->_cooked_size;
3482
3483 /* Increase the size of the section. */
3484 section->_cooked_size += size;
3485
3486 /* Make sure the section is allocated in memory, and make sure that
3487 it is no longer a common section. */
3488 section->flags |= SEC_ALLOC;
3489 section->flags &= ~ SEC_IS_COMMON;
3490
3491 if (config.map_file != NULL)
3492 {
3493 static boolean header_printed;
3494 int len;
3495 char *name;
3496 char buf[50];
3497
3498 if (! header_printed)
3499 {
3500 minfo (_("\nAllocating common symbols\n"));
3501 minfo (_("Common symbol size file\n\n"));
3502 header_printed = true;
3503 }
3504
3505 name = demangle (h->root.string);
3506 minfo ("%s", name);
3507 len = strlen (name);
3508 free (name);
3509
3510 if (len >= 19)
3511 {
3512 print_nl ();
3513 len = 0;
3514 }
3515 while (len < 20)
3516 {
3517 print_space ();
3518 ++len;
3519 }
3520
3521 minfo ("0x");
3522 if (size <= 0xffffffff)
3523 sprintf (buf, "%lx", (unsigned long) size);
3524 else
3525 sprintf_vma (buf, size);
3526 minfo ("%s", buf);
3527 len = strlen (buf);
3528
3529 while (len < 16)
3530 {
3531 print_space ();
3532 ++len;
3533 }
3534
3535 minfo ("%B\n", section->owner);
3536 }
3537
3538 return true;
3539 }
3540
3541 /*
3542 run through the input files and ensure that every input
3543 section has somewhere to go. If one is found without
3544 a destination then create an input request and place it
3545 into the statement tree.
3546 */
3547
3548 static void
3549 lang_place_orphans ()
3550 {
3551 LANG_FOR_EACH_INPUT_STATEMENT (file)
3552 {
3553 asection *s;
3554
3555 for (s = file->the_bfd->sections;
3556 s != (asection *) NULL;
3557 s = s->next)
3558 {
3559 if (s->output_section == (asection *) NULL)
3560 {
3561 /* This section of the file is not attatched, root
3562 around for a sensible place for it to go */
3563
3564 if (file->just_syms_flag)
3565 {
3566 /* We are only retrieving symbol values from this
3567 file. We want the symbols to act as though the
3568 values in the file are absolute. */
3569 s->output_section = bfd_abs_section_ptr;
3570 s->output_offset = s->vma;
3571 }
3572 else if (strcmp (s->name, "COMMON") == 0)
3573 {
3574 /* This is a lonely common section which must have
3575 come from an archive. We attach to the section
3576 with the wildcard. */
3577 if (! link_info.relocateable
3578 || command_line.force_common_definition)
3579 {
3580 if (default_common_section == NULL)
3581 {
3582 #if 0
3583 /* This message happens when using the
3584 svr3.ifile linker script, so I have
3585 disabled it. */
3586 info_msg (_("%P: no [COMMON] command, defaulting to .bss\n"));
3587 #endif
3588 default_common_section =
3589 lang_output_section_statement_lookup (".bss");
3590
3591 }
3592 wild_doit (&default_common_section->children, s,
3593 default_common_section, file);
3594 }
3595 }
3596 else if (ldemul_place_orphan (file, s))
3597 ;
3598 else
3599 {
3600 lang_output_section_statement_type *os =
3601 lang_output_section_statement_lookup (s->name);
3602
3603 wild_doit (&os->children, s, os, file);
3604 }
3605 }
3606 }
3607 }
3608 }
3609
3610
3611 void
3612 lang_set_flags (ptr, flags, invert)
3613 lang_memory_region_type *ptr;
3614 CONST char *flags;
3615 int invert;
3616 {
3617 flagword *ptr_flags;
3618
3619 ptr_flags = invert ? &ptr->not_flags : &ptr->flags;
3620 while (*flags)
3621 {
3622 switch (*flags)
3623 {
3624 case 'A': case 'a':
3625 *ptr_flags |= SEC_ALLOC;
3626 break;
3627
3628 case 'R': case 'r':
3629 *ptr_flags |= SEC_READONLY;
3630 break;
3631
3632 case 'W': case 'w':
3633 *ptr_flags |= SEC_DATA;
3634 break;
3635
3636 case 'X': case 'x':
3637 *ptr_flags |= SEC_CODE;
3638 break;
3639
3640 case 'L': case 'l':
3641 case 'I': case 'i':
3642 *ptr_flags |= SEC_LOAD;
3643 break;
3644
3645 default:
3646 einfo (_("%P%F: invalid syntax in flags\n"));
3647 break;
3648 }
3649 flags++;
3650 }
3651 }
3652
3653 /* Call a function on each input file. This function will be called
3654 on an archive, but not on the elements. */
3655
3656 void
3657 lang_for_each_input_file (func)
3658 void (*func) PARAMS ((lang_input_statement_type *));
3659 {
3660 lang_input_statement_type *f;
3661
3662 for (f = (lang_input_statement_type *) input_file_chain.head;
3663 f != NULL;
3664 f = (lang_input_statement_type *) f->next_real_file)
3665 func (f);
3666 }
3667
3668 /* Call a function on each file. The function will be called on all
3669 the elements of an archive which are included in the link, but will
3670 not be called on the archive file itself. */
3671
3672 void
3673 lang_for_each_file (func)
3674 void (*func) PARAMS ((lang_input_statement_type *));
3675 {
3676 LANG_FOR_EACH_INPUT_STATEMENT (f)
3677 {
3678 func (f);
3679 }
3680 }
3681
3682 #if 0
3683
3684 /* Not used. */
3685
3686 void
3687 lang_for_each_input_section (func)
3688 void (*func) PARAMS ((bfd * ab, asection * as));
3689 {
3690 LANG_FOR_EACH_INPUT_STATEMENT (f)
3691 {
3692 asection * s;
3693
3694 for (s = f->the_bfd->sections;
3695 s != (asection *) NULL;
3696 s = s->next)
3697 {
3698 func (f->the_bfd, s);
3699 }
3700 }
3701 }
3702
3703 #endif
3704
3705 void
3706 ldlang_add_file (entry)
3707 lang_input_statement_type * entry;
3708 {
3709 bfd **pp;
3710
3711 lang_statement_append (&file_chain,
3712 (lang_statement_union_type *) entry,
3713 &entry->next);
3714
3715 /* The BFD linker needs to have a list of all input BFDs involved in
3716 a link. */
3717 ASSERT (entry->the_bfd->link_next == (bfd *) NULL);
3718 ASSERT (entry->the_bfd != output_bfd);
3719 for (pp = &link_info.input_bfds;
3720 *pp != (bfd *) NULL;
3721 pp = &(*pp)->link_next)
3722 ;
3723 *pp = entry->the_bfd;
3724 entry->the_bfd->usrdata = (PTR) entry;
3725 bfd_set_gp_size (entry->the_bfd, g_switch_value);
3726
3727 /* Look through the sections and check for any which should not be
3728 included in the link. We need to do this now, so that we can
3729 notice when the backend linker tries to report multiple
3730 definition errors for symbols which are in sections we aren't
3731 going to link. FIXME: It might be better to entirely ignore
3732 symbols which are defined in sections which are going to be
3733 discarded. This would require modifying the backend linker for
3734 each backend which might set the SEC_LINK_ONCE flag. If we do
3735 this, we should probably handle SEC_EXCLUDE in the same way. */
3736
3737 bfd_map_over_sections (entry->the_bfd, section_already_linked, (PTR) entry);
3738 }
3739
3740 void
3741 lang_add_output (name, from_script)
3742 CONST char *name;
3743 int from_script;
3744 {
3745 /* Make -o on command line override OUTPUT in script. */
3746 if (had_output_filename == false || !from_script)
3747 {
3748 output_filename = name;
3749 had_output_filename = true;
3750 }
3751 }
3752
3753
3754 static lang_output_section_statement_type *current_section;
3755
3756 static int
3757 topower (x)
3758 int x;
3759 {
3760 unsigned int i = 1;
3761 int l;
3762
3763 if (x < 0)
3764 return -1;
3765
3766 for (l = 0; l < 32; l++)
3767 {
3768 if (i >= (unsigned int) x)
3769 return l;
3770 i <<= 1;
3771 }
3772
3773 return 0;
3774 }
3775
3776 void
3777 lang_enter_output_section_statement (output_section_statement_name,
3778 address_exp, sectype, block_value,
3779 align, subalign, ebase)
3780 const char *output_section_statement_name;
3781 etree_type * address_exp;
3782 enum section_type sectype;
3783 bfd_vma block_value;
3784 etree_type *align;
3785 etree_type *subalign;
3786 etree_type *ebase;
3787 {
3788 lang_output_section_statement_type *os;
3789
3790 current_section =
3791 os =
3792 lang_output_section_statement_lookup (output_section_statement_name);
3793
3794
3795
3796 /* Add this statement to tree */
3797 /* add_statement(lang_output_section_statement_enum,
3798 output_section_statement);*/
3799 /* Make next things chain into subchain of this */
3800
3801 if (os->addr_tree ==
3802 (etree_type *) NULL)
3803 {
3804 os->addr_tree =
3805 address_exp;
3806 }
3807 os->sectype = sectype;
3808 if (sectype != noload_section)
3809 os->flags = SEC_NO_FLAGS;
3810 else
3811 os->flags = SEC_NEVER_LOAD;
3812 os->block_value = block_value ? block_value : 1;
3813 stat_ptr = &os->children;
3814
3815 os->subsection_alignment = topower(
3816 exp_get_value_int(subalign, -1,
3817 "subsection alignment",
3818 0));
3819 os->section_alignment = topower(
3820 exp_get_value_int(align, -1,
3821 "section alignment", 0));
3822
3823 os->load_base = ebase;
3824 }
3825
3826
3827 void
3828 lang_final ()
3829 {
3830 lang_output_statement_type *new =
3831 new_stat (lang_output_statement, stat_ptr);
3832
3833 new->name = output_filename;
3834 }
3835
3836 /* Reset the current counters in the regions */
3837 static void
3838 reset_memory_regions ()
3839 {
3840 lang_memory_region_type *p = lang_memory_region_list;
3841
3842 for (p = lang_memory_region_list;
3843 p != (lang_memory_region_type *) NULL;
3844 p = p->next)
3845 {
3846 p->old_length = (bfd_size_type) (p->current - p->origin);
3847 p->current = p->origin;
3848 }
3849 }
3850
3851 /* Expand a wild statement for a particular FILE, marking its sections KEEP
3852 as needed. SECTION may be NULL, in which case it is a wild card. */
3853
3854 static void
3855 gc_section_callback (ptr, section, file, data)
3856 lang_wild_statement_type *ptr;
3857 asection *section;
3858 lang_input_statement_type *file ATTRIBUTE_UNUSED;
3859 void *data ATTRIBUTE_UNUSED;
3860 {
3861 /* If the wild pattern was marked KEEP, the member sections
3862 should be as well. */
3863 if (ptr->keep_sections)
3864 section->flags |= SEC_KEEP;
3865 }
3866
3867 /* Handle a wild statement, marking it against GC. SECTION or FILE or both
3868 may be NULL, indicating that it is a wildcard. */
3869
3870 static void
3871 lang_gc_wild (s, section, file)
3872 lang_wild_statement_type *s;
3873 const char *section;
3874 const char *file;
3875 {
3876 walk_wild (s, section, file, gc_section_callback, NULL);
3877 }
3878
3879 /* Iterate over sections marking them against GC. */
3880
3881 static void
3882 lang_gc_sections_1 (s)
3883 lang_statement_union_type * s;
3884 {
3885 for (; s != (lang_statement_union_type *) NULL; s = s->next)
3886 {
3887 switch (s->header.type)
3888 {
3889 case lang_wild_statement_enum:
3890 lang_gc_wild (&s->wild_statement,
3891 s->wild_statement.section_name,
3892 s->wild_statement.filename);
3893 break;
3894 case lang_constructors_statement_enum:
3895 lang_gc_sections_1 (constructor_list.head);
3896 break;
3897 case lang_output_section_statement_enum:
3898 lang_gc_sections_1 (s->output_section_statement.children.head);
3899 break;
3900 case lang_group_statement_enum:
3901 lang_gc_sections_1 (s->group_statement.children.head);
3902 break;
3903 default:
3904 break;
3905 }
3906 }
3907 }
3908
3909 static void
3910 lang_gc_sections ()
3911 {
3912 struct bfd_link_hash_entry *h;
3913 ldlang_undef_chain_list_type *ulist, fake_list_start;
3914
3915 /* Keep all sections so marked in the link script. */
3916
3917 lang_gc_sections_1 (statement_list.head);
3918
3919 /* Keep all sections containing symbols undefined on the command-line.
3920 Handle the entry symbol at the same time. */
3921
3922 if (entry_symbol != NULL)
3923 {
3924 fake_list_start.next = ldlang_undef_chain_list_head;
3925 fake_list_start.name = (char *) entry_symbol;
3926 ulist = &fake_list_start;
3927 }
3928 else
3929 ulist = ldlang_undef_chain_list_head;
3930
3931 for (; ulist; ulist = ulist->next)
3932 {
3933 h = bfd_link_hash_lookup (link_info.hash, ulist->name,
3934 false, false, false);
3935
3936 if (h != (struct bfd_link_hash_entry *) NULL
3937 && (h->type == bfd_link_hash_defined
3938 || h->type == bfd_link_hash_defweak)
3939 && ! bfd_is_abs_section (h->u.def.section))
3940 {
3941 h->u.def.section->flags |= SEC_KEEP;
3942 }
3943 }
3944
3945 bfd_gc_sections (output_bfd, &link_info);
3946 }
3947
3948 void
3949 lang_process ()
3950 {
3951 lang_reasonable_defaults ();
3952 current_target = default_target;
3953
3954 lang_for_each_statement (ldlang_open_output); /* Open the output file */
3955
3956 ldemul_create_output_section_statements ();
3957
3958 /* Add to the hash table all undefineds on the command line */
3959 lang_place_undefineds ();
3960
3961 already_linked_table_init ();
3962
3963 /* Create a bfd for each input file */
3964 current_target = default_target;
3965 open_input_bfds (statement_list.head, false);
3966
3967 ldemul_after_open ();
3968
3969 already_linked_table_free ();
3970
3971 /* Make sure that we're not mixing architectures. We call this
3972 after all the input files have been opened, but before we do any
3973 other processing, so that any operations merge_private_bfd_data
3974 does on the output file will be known during the rest of the
3975 link. */
3976 lang_check ();
3977
3978 /* Handle .exports instead of a version script if we're told to do so. */
3979 if (command_line.version_exports_section)
3980 lang_do_version_exports_section ();
3981
3982 /* Build all sets based on the information gathered from the input
3983 files. */
3984 ldctor_build_sets ();
3985
3986 /* Remove unreferenced sections if asked to. */
3987 if (command_line.gc_sections)
3988 lang_gc_sections ();
3989
3990 /* Size up the common data */
3991 lang_common ();
3992
3993 /* Run through the contours of the script and attach input sections
3994 to the correct output sections
3995 */
3996 map_input_to_output_sections (statement_list.head, (char *) NULL,
3997 (lang_output_section_statement_type *) NULL);
3998
3999
4000 /* Find any sections not attached explicitly and handle them */
4001 lang_place_orphans ();
4002
4003 ldemul_before_allocation ();
4004
4005 /* We must record the program headers before we try to fix the
4006 section positions, since they will affect SIZEOF_HEADERS. */
4007 lang_record_phdrs ();
4008
4009 /* Now run around and relax if we can */
4010 if (command_line.relax)
4011 {
4012 /* First time round is a trial run to get the 'worst case'
4013 addresses of the objects if there was no relaxing. */
4014 lang_size_sections (statement_list.head,
4015 abs_output_section,
4016 &(statement_list.head), 0, (bfd_vma) 0, false);
4017
4018 /* Keep relaxing until bfd_relax_section gives up. */
4019 do
4020 {
4021 reset_memory_regions ();
4022
4023 relax_again = false;
4024
4025 /* Note: pe-dll.c does something like this also. If you find
4026 you need to change this code, you probably need to change
4027 pe-dll.c also. DJ */
4028
4029 /* Do all the assignments with our current guesses as to
4030 section sizes. */
4031 lang_do_assignments (statement_list.head,
4032 abs_output_section,
4033 (fill_type) 0, (bfd_vma) 0);
4034
4035 /* Perform another relax pass - this time we know where the
4036 globals are, so can make better guess. */
4037 lang_size_sections (statement_list.head,
4038 abs_output_section,
4039 &(statement_list.head), 0, (bfd_vma) 0, true);
4040 }
4041 while (relax_again);
4042 }
4043 else
4044 {
4045 /* Size up the sections. */
4046 lang_size_sections (statement_list.head,
4047 abs_output_section,
4048 &(statement_list.head), 0, (bfd_vma) 0, false);
4049 }
4050
4051 /* See if anything special should be done now we know how big
4052 everything is. */
4053 ldemul_after_allocation ();
4054
4055 /* Fix any .startof. or .sizeof. symbols. */
4056 lang_set_startof ();
4057
4058 /* Do all the assignments, now that we know the final restingplaces
4059 of all the symbols */
4060
4061 lang_do_assignments (statement_list.head,
4062 abs_output_section,
4063 (fill_type) 0, (bfd_vma) 0);
4064
4065 /* Make sure that the section addresses make sense. */
4066 if (! link_info.relocateable
4067 && command_line.check_section_addresses)
4068 lang_check_section_addresses ();
4069
4070 /* Final stuffs */
4071
4072 ldemul_finish ();
4073 lang_finish ();
4074 }
4075
4076 /* EXPORTED TO YACC */
4077
4078 void
4079 lang_add_wild (section_name, sections_sorted, filename, filenames_sorted,
4080 keep_sections, exclude_filename_list)
4081 const char *const section_name;
4082 boolean sections_sorted;
4083 const char *const filename;
4084 boolean filenames_sorted;
4085 boolean keep_sections;
4086 struct name_list *exclude_filename_list;
4087 {
4088 lang_wild_statement_type *new = new_stat (lang_wild_statement,
4089 stat_ptr);
4090
4091 if (section_name != (char *) NULL && strcmp (section_name, "COMMON") == 0)
4092 {
4093 placed_commons = true;
4094 }
4095 if (filename != NULL && ! wildcardp (filename))
4096 {
4097 lang_has_input_file = true;
4098 }
4099 new->section_name = section_name;
4100 new->sections_sorted = sections_sorted;
4101 new->filename = filename;
4102 new->filenames_sorted = filenames_sorted;
4103 new->keep_sections = keep_sections;
4104 new->exclude_filename_list = exclude_filename_list;
4105 lang_list_init (&new->children);
4106 }
4107
4108 void
4109 lang_section_start (name, address)
4110 CONST char *name;
4111 etree_type * address;
4112 {
4113 lang_address_statement_type *ad = new_stat (lang_address_statement, stat_ptr);
4114
4115 ad->section_name = name;
4116 ad->address = address;
4117 }
4118
4119 /* Set the start symbol to NAME. CMDLINE is nonzero if this is called
4120 because of a -e argument on the command line, or zero if this is
4121 called by ENTRY in a linker script. Command line arguments take
4122 precedence. */
4123
4124 void
4125 lang_add_entry (name, cmdline)
4126 CONST char *name;
4127 boolean cmdline;
4128 {
4129 if (entry_symbol == NULL
4130 || cmdline
4131 || ! entry_from_cmdline)
4132 {
4133 entry_symbol = name;
4134 entry_from_cmdline = cmdline;
4135 }
4136 }
4137
4138 void
4139 lang_add_target (name)
4140 CONST char *name;
4141 {
4142 lang_target_statement_type *new = new_stat (lang_target_statement,
4143 stat_ptr);
4144
4145 new->target = name;
4146
4147 }
4148
4149 void
4150 lang_add_map (name)
4151 CONST char *name;
4152 {
4153 while (*name)
4154 {
4155 switch (*name)
4156 {
4157 case 'F':
4158 map_option_f = true;
4159 break;
4160 }
4161 name++;
4162 }
4163 }
4164
4165 void
4166 lang_add_fill (exp)
4167 int exp;
4168 {
4169 lang_fill_statement_type *new = new_stat (lang_fill_statement,
4170 stat_ptr);
4171
4172 new->fill = exp;
4173 }
4174
4175 void
4176 lang_add_data (type, exp)
4177 int type;
4178 union etree_union *exp;
4179 {
4180
4181 lang_data_statement_type *new = new_stat (lang_data_statement,
4182 stat_ptr);
4183
4184 new->exp = exp;
4185 new->type = type;
4186
4187 }
4188
4189 /* Create a new reloc statement. RELOC is the BFD relocation type to
4190 generate. HOWTO is the corresponding howto structure (we could
4191 look this up, but the caller has already done so). SECTION is the
4192 section to generate a reloc against, or NAME is the name of the
4193 symbol to generate a reloc against. Exactly one of SECTION and
4194 NAME must be NULL. ADDEND is an expression for the addend. */
4195
4196 void
4197 lang_add_reloc (reloc, howto, section, name, addend)
4198 bfd_reloc_code_real_type reloc;
4199 reloc_howto_type *howto;
4200 asection *section;
4201 const char *name;
4202 union etree_union *addend;
4203 {
4204 lang_reloc_statement_type *p = new_stat (lang_reloc_statement, stat_ptr);
4205
4206 p->reloc = reloc;
4207 p->howto = howto;
4208 p->section = section;
4209 p->name = name;
4210 p->addend_exp = addend;
4211
4212 p->addend_value = 0;
4213 p->output_section = NULL;
4214 p->output_vma = 0;
4215 }
4216
4217 lang_assignment_statement_type *
4218 lang_add_assignment (exp)
4219 etree_type * exp;
4220 {
4221 lang_assignment_statement_type *new = new_stat (lang_assignment_statement,
4222 stat_ptr);
4223
4224 new->exp = exp;
4225 return new;
4226 }
4227
4228 void
4229 lang_add_attribute (attribute)
4230 enum statement_enum attribute;
4231 {
4232 new_statement (attribute, sizeof (lang_statement_union_type), stat_ptr);
4233 }
4234
4235 void
4236 lang_startup (name)
4237 CONST char *name;
4238 {
4239 if (startup_file != (char *) NULL)
4240 {
4241 einfo (_("%P%Fmultiple STARTUP files\n"));
4242 }
4243 first_file->filename = name;
4244 first_file->local_sym_name = name;
4245 first_file->real = true;
4246
4247 startup_file = name;
4248 }
4249
4250 void
4251 lang_float (maybe)
4252 boolean maybe;
4253 {
4254 lang_float_flag = maybe;
4255 }
4256
4257 void
4258 lang_leave_output_section_statement (fill, memspec, phdrs)
4259 bfd_vma fill;
4260 const char *memspec;
4261 struct lang_output_section_phdr_list *phdrs;
4262 {
4263 current_section->fill = fill;
4264 current_section->region = lang_memory_region_lookup (memspec);
4265 current_section->phdrs = phdrs;
4266 stat_ptr = &statement_list;
4267 }
4268
4269 /*
4270 Create an absolute symbol with the given name with the value of the
4271 address of first byte of the section named.
4272
4273 If the symbol already exists, then do nothing.
4274 */
4275 void
4276 lang_abs_symbol_at_beginning_of (secname, name)
4277 const char *secname;
4278 const char *name;
4279 {
4280 struct bfd_link_hash_entry *h;
4281
4282 h = bfd_link_hash_lookup (link_info.hash, name, true, true, true);
4283 if (h == (struct bfd_link_hash_entry *) NULL)
4284 einfo (_("%P%F: bfd_link_hash_lookup failed: %E\n"));
4285
4286 if (h->type == bfd_link_hash_new
4287 || h->type == bfd_link_hash_undefined)
4288 {
4289 asection *sec;
4290
4291 h->type = bfd_link_hash_defined;
4292
4293 sec = bfd_get_section_by_name (output_bfd, secname);
4294 if (sec == (asection *) NULL)
4295 h->u.def.value = 0;
4296 else
4297 h->u.def.value = bfd_get_section_vma (output_bfd, sec);
4298
4299 h->u.def.section = bfd_abs_section_ptr;
4300 }
4301 }
4302
4303 /*
4304 Create an absolute symbol with the given name with the value of the
4305 address of the first byte after the end of the section named.
4306
4307 If the symbol already exists, then do nothing.
4308 */
4309 void
4310 lang_abs_symbol_at_end_of (secname, name)
4311 const char *secname;
4312 const char *name;
4313 {
4314 struct bfd_link_hash_entry *h;
4315
4316 h = bfd_link_hash_lookup (link_info.hash, name, true, true, true);
4317 if (h == (struct bfd_link_hash_entry *) NULL)
4318 einfo (_("%P%F: bfd_link_hash_lookup failed: %E\n"));
4319
4320 if (h->type == bfd_link_hash_new
4321 || h->type == bfd_link_hash_undefined)
4322 {
4323 asection *sec;
4324
4325 h->type = bfd_link_hash_defined;
4326
4327 sec = bfd_get_section_by_name (output_bfd, secname);
4328 if (sec == (asection *) NULL)
4329 h->u.def.value = 0;
4330 else
4331 h->u.def.value = (bfd_get_section_vma (output_bfd, sec)
4332 + bfd_section_size (output_bfd, sec) /
4333 bfd_octets_per_byte (output_bfd));
4334
4335 h->u.def.section = bfd_abs_section_ptr;
4336 }
4337 }
4338
4339 void
4340 lang_statement_append (list, element, field)
4341 lang_statement_list_type * list;
4342 lang_statement_union_type * element;
4343 lang_statement_union_type ** field;
4344 {
4345 *(list->tail) = element;
4346 list->tail = field;
4347 }
4348
4349 /* Set the output format type. -oformat overrides scripts. */
4350
4351 void
4352 lang_add_output_format (format, big, little, from_script)
4353 const char *format;
4354 const char *big;
4355 const char *little;
4356 int from_script;
4357 {
4358 if (output_target == NULL || !from_script)
4359 {
4360 if (command_line.endian == ENDIAN_BIG
4361 && big != NULL)
4362 format = big;
4363 else if (command_line.endian == ENDIAN_LITTLE
4364 && little != NULL)
4365 format = little;
4366
4367 output_target = format;
4368 }
4369 }
4370
4371 /* Enter a group. This creates a new lang_group_statement, and sets
4372 stat_ptr to build new statements within the group. */
4373
4374 void
4375 lang_enter_group ()
4376 {
4377 lang_group_statement_type *g;
4378
4379 g = new_stat (lang_group_statement, stat_ptr);
4380 lang_list_init (&g->children);
4381 stat_ptr = &g->children;
4382 }
4383
4384 /* Leave a group. This just resets stat_ptr to start writing to the
4385 regular list of statements again. Note that this will not work if
4386 groups can occur inside anything else which can adjust stat_ptr,
4387 but currently they can't. */
4388
4389 void
4390 lang_leave_group ()
4391 {
4392 stat_ptr = &statement_list;
4393 }
4394
4395 /* Add a new program header. This is called for each entry in a PHDRS
4396 command in a linker script. */
4397
4398 void
4399 lang_new_phdr (name, type, filehdr, phdrs, at, flags)
4400 const char *name;
4401 etree_type *type;
4402 boolean filehdr;
4403 boolean phdrs;
4404 etree_type *at;
4405 etree_type *flags;
4406 {
4407 struct lang_phdr *n, **pp;
4408
4409 n = (struct lang_phdr *) stat_alloc (sizeof (struct lang_phdr));
4410 n->next = NULL;
4411 n->name = name;
4412 n->type = exp_get_value_int (type, 0, "program header type",
4413 lang_final_phase_enum);
4414 n->filehdr = filehdr;
4415 n->phdrs = phdrs;
4416 n->at = at;
4417 n->flags = flags;
4418
4419 for (pp = &lang_phdr_list; *pp != NULL; pp = &(*pp)->next)
4420 ;
4421 *pp = n;
4422 }
4423
4424 /* Record the program header information in the output BFD. FIXME: We
4425 should not be calling an ELF specific function here. */
4426
4427 static void
4428 lang_record_phdrs ()
4429 {
4430 unsigned int alc;
4431 asection **secs;
4432 struct lang_output_section_phdr_list *last;
4433 struct lang_phdr *l;
4434 lang_statement_union_type *u;
4435
4436 alc = 10;
4437 secs = (asection **) xmalloc (alc * sizeof (asection *));
4438 last = NULL;
4439 for (l = lang_phdr_list; l != NULL; l = l->next)
4440 {
4441 unsigned int c;
4442 flagword flags;
4443 bfd_vma at;
4444
4445 c = 0;
4446 for (u = lang_output_section_statement.head;
4447 u != NULL;
4448 u = u->output_section_statement.next)
4449 {
4450 lang_output_section_statement_type *os;
4451 struct lang_output_section_phdr_list *pl;
4452
4453 os = &u->output_section_statement;
4454
4455 pl = os->phdrs;
4456 if (pl != NULL)
4457 last = pl;
4458 else
4459 {
4460 if (os->sectype == noload_section
4461 || os->bfd_section == NULL
4462 || (os->bfd_section->flags & SEC_ALLOC) == 0)
4463 continue;
4464 pl = last;
4465 }
4466
4467 if (os->bfd_section == NULL)
4468 continue;
4469
4470 for (; pl != NULL; pl = pl->next)
4471 {
4472 if (strcmp (pl->name, l->name) == 0)
4473 {
4474 if (c >= alc)
4475 {
4476 alc *= 2;
4477 secs = ((asection **)
4478 xrealloc (secs, alc * sizeof (asection *)));
4479 }
4480 secs[c] = os->bfd_section;
4481 ++c;
4482 pl->used = true;
4483 }
4484 }
4485 }
4486
4487 if (l->flags == NULL)
4488 flags = 0;
4489 else
4490 flags = exp_get_vma (l->flags, 0, "phdr flags",
4491 lang_final_phase_enum);
4492
4493 if (l->at == NULL)
4494 at = 0;
4495 else
4496 at = exp_get_vma (l->at, 0, "phdr load address",
4497 lang_final_phase_enum);
4498
4499 if (! bfd_record_phdr (output_bfd, l->type,
4500 l->flags == NULL ? false : true,
4501 flags,
4502 l->at == NULL ? false : true,
4503 at, l->filehdr, l->phdrs, c, secs))
4504 einfo (_("%F%P: bfd_record_phdr failed: %E\n"));
4505 }
4506
4507 free (secs);
4508
4509 /* Make sure all the phdr assignments succeeded. */
4510 for (u = lang_output_section_statement.head;
4511 u != NULL;
4512 u = u->output_section_statement.next)
4513 {
4514 struct lang_output_section_phdr_list *pl;
4515
4516 if (u->output_section_statement.bfd_section == NULL)
4517 continue;
4518
4519 for (pl = u->output_section_statement.phdrs;
4520 pl != NULL;
4521 pl = pl->next)
4522 if (! pl->used && strcmp (pl->name, "NONE") != 0)
4523 einfo (_("%X%P: section `%s' assigned to non-existent phdr `%s'\n"),
4524 u->output_section_statement.name, pl->name);
4525 }
4526 }
4527
4528 /* Record a list of sections which may not be cross referenced. */
4529
4530 void
4531 lang_add_nocrossref (l)
4532 struct lang_nocrossref *l;
4533 {
4534 struct lang_nocrossrefs *n;
4535
4536 n = (struct lang_nocrossrefs *) xmalloc (sizeof *n);
4537 n->next = nocrossref_list;
4538 n->list = l;
4539 nocrossref_list = n;
4540
4541 /* Set notice_all so that we get informed about all symbols. */
4542 link_info.notice_all = true;
4543 }
4544 \f
4545 /* Overlay handling. We handle overlays with some static variables. */
4546
4547 /* The overlay virtual address. */
4548 static etree_type *overlay_vma;
4549
4550 /* The overlay load address. */
4551 static etree_type *overlay_lma;
4552
4553 /* Whether nocrossrefs is set for this overlay. */
4554 static int overlay_nocrossrefs;
4555
4556 /* An expression for the maximum section size seen so far. */
4557 static etree_type *overlay_max;
4558
4559 /* A list of all the sections in this overlay. */
4560
4561 struct overlay_list
4562 {
4563 struct overlay_list *next;
4564 lang_output_section_statement_type *os;
4565 };
4566
4567 static struct overlay_list *overlay_list;
4568
4569 /* Start handling an overlay. */
4570
4571 void
4572 lang_enter_overlay (vma_expr, lma_expr, nocrossrefs)
4573 etree_type *vma_expr;
4574 etree_type *lma_expr;
4575 int nocrossrefs;
4576 {
4577 /* The grammar should prevent nested overlays from occurring. */
4578 ASSERT (overlay_vma == NULL
4579 && overlay_lma == NULL
4580 && overlay_list == NULL
4581 && overlay_max == NULL);
4582
4583 overlay_vma = vma_expr;
4584 overlay_lma = lma_expr;
4585 overlay_nocrossrefs = nocrossrefs;
4586 }
4587
4588 /* Start a section in an overlay. We handle this by calling
4589 lang_enter_output_section_statement with the correct VMA and LMA. */
4590
4591 void
4592 lang_enter_overlay_section (name)
4593 const char *name;
4594 {
4595 struct overlay_list *n;
4596 etree_type *size;
4597
4598 lang_enter_output_section_statement (name, overlay_vma, normal_section,
4599 0, 0, 0, overlay_lma);
4600
4601 /* If this is the first section, then base the VMA and LMA of future
4602 sections on this one. This will work correctly even if `.' is
4603 used in the addresses. */
4604 if (overlay_list == NULL)
4605 {
4606 overlay_vma = exp_nameop (ADDR, name);
4607 overlay_lma = exp_nameop (LOADADDR, name);
4608 }
4609
4610 /* Remember the section. */
4611 n = (struct overlay_list *) xmalloc (sizeof *n);
4612 n->os = current_section;
4613 n->next = overlay_list;
4614 overlay_list = n;
4615
4616 size = exp_nameop (SIZEOF, name);
4617
4618 /* Adjust the LMA for the next section. */
4619 overlay_lma = exp_binop ('+', overlay_lma, size);
4620
4621 /* Arrange to work out the maximum section end address. */
4622 if (overlay_max == NULL)
4623 overlay_max = size;
4624 else
4625 overlay_max = exp_binop (MAX_K, overlay_max, size);
4626 }
4627
4628 /* Finish a section in an overlay. There isn't any special to do
4629 here. */
4630
4631 void
4632 lang_leave_overlay_section (fill, phdrs)
4633 bfd_vma fill;
4634 struct lang_output_section_phdr_list *phdrs;
4635 {
4636 const char *name;
4637 char *clean, *s2;
4638 const char *s1;
4639 char *buf;
4640
4641 name = current_section->name;
4642
4643 lang_leave_output_section_statement (fill, "*default*", phdrs);
4644
4645 /* Define the magic symbols. */
4646
4647 clean = xmalloc (strlen (name) + 1);
4648 s2 = clean;
4649 for (s1 = name; *s1 != '\0'; s1++)
4650 if (isalnum ((unsigned char) *s1) || *s1 == '_')
4651 *s2++ = *s1;
4652 *s2 = '\0';
4653
4654 buf = xmalloc (strlen (clean) + sizeof "__load_start_");
4655 sprintf (buf, "__load_start_%s", clean);
4656 lang_add_assignment (exp_assop ('=', buf,
4657 exp_nameop (LOADADDR, name)));
4658
4659 buf = xmalloc (strlen (clean) + sizeof "__load_stop_");
4660 sprintf (buf, "__load_stop_%s", clean);
4661 lang_add_assignment (exp_assop ('=', buf,
4662 exp_binop ('+',
4663 exp_nameop (LOADADDR, name),
4664 exp_nameop (SIZEOF, name))));
4665
4666 free (clean);
4667 }
4668
4669 /* Finish an overlay. If there are any overlay wide settings, this
4670 looks through all the sections in the overlay and sets them. */
4671
4672 void
4673 lang_leave_overlay (fill, memspec, phdrs)
4674 bfd_vma fill;
4675 const char *memspec;
4676 struct lang_output_section_phdr_list *phdrs;
4677 {
4678 lang_memory_region_type *region;
4679 struct overlay_list *l;
4680 struct lang_nocrossref *nocrossref;
4681
4682 if (memspec == NULL)
4683 region = NULL;
4684 else
4685 region = lang_memory_region_lookup (memspec);
4686
4687 nocrossref = NULL;
4688
4689 l = overlay_list;
4690 while (l != NULL)
4691 {
4692 struct overlay_list *next;
4693
4694 if (fill != 0 && l->os->fill == 0)
4695 l->os->fill = fill;
4696 if (region != NULL && l->os->region == NULL)
4697 l->os->region = region;
4698 if (phdrs != NULL && l->os->phdrs == NULL)
4699 l->os->phdrs = phdrs;
4700
4701 if (overlay_nocrossrefs)
4702 {
4703 struct lang_nocrossref *nc;
4704
4705 nc = (struct lang_nocrossref *) xmalloc (sizeof *nc);
4706 nc->name = l->os->name;
4707 nc->next = nocrossref;
4708 nocrossref = nc;
4709 }
4710
4711 next = l->next;
4712 free (l);
4713 l = next;
4714 }
4715
4716 if (nocrossref != NULL)
4717 lang_add_nocrossref (nocrossref);
4718
4719 /* Update . for the end of the overlay. */
4720 lang_add_assignment (exp_assop ('=', ".",
4721 exp_binop ('+', overlay_vma, overlay_max)));
4722
4723 overlay_vma = NULL;
4724 overlay_lma = NULL;
4725 overlay_nocrossrefs = 0;
4726 overlay_list = NULL;
4727 overlay_max = NULL;
4728 }
4729 \f
4730 /* Version handling. This is only useful for ELF. */
4731
4732 /* This global variable holds the version tree that we build. */
4733
4734 struct bfd_elf_version_tree *lang_elf_version_info;
4735
4736 static int
4737 lang_vers_match_lang_c (expr, sym)
4738 struct bfd_elf_version_expr *expr;
4739 const char *sym;
4740 {
4741 if (expr->pattern[0] == '*' && expr->pattern[1] == '\0')
4742 return 1;
4743 return fnmatch (expr->pattern, sym, 0) == 0;
4744 }
4745
4746 static int
4747 lang_vers_match_lang_cplusplus (expr, sym)
4748 struct bfd_elf_version_expr *expr;
4749 const char *sym;
4750 {
4751 char *alt_sym;
4752 int result;
4753
4754 if (expr->pattern[0] == '*' && expr->pattern[1] == '\0')
4755 return 1;
4756
4757 alt_sym = cplus_demangle(sym, /* DMGL_NO_TPARAMS */ 0);
4758 if (!alt_sym)
4759 {
4760 /* cplus_demangle (also) returns NULL when it is not a C++ symbol.
4761 Should we early out false in this case? */
4762 result = fnmatch (expr->pattern, sym, 0) == 0;
4763 }
4764 else
4765 {
4766 result = fnmatch (expr->pattern, alt_sym, 0) == 0;
4767 free (alt_sym);
4768 }
4769
4770 return result;
4771 }
4772
4773 static int
4774 lang_vers_match_lang_java (expr, sym)
4775 struct bfd_elf_version_expr *expr;
4776 const char *sym;
4777 {
4778 char *alt_sym;
4779 int result;
4780
4781 if (expr->pattern[0] == '*' && expr->pattern[1] == '\0')
4782 return 1;
4783
4784 alt_sym = cplus_demangle(sym, DMGL_JAVA);
4785 if (!alt_sym)
4786 {
4787 /* cplus_demangle (also) returns NULL when it is not a Java symbol.
4788 Should we early out false in this case? */
4789 result = fnmatch (expr->pattern, sym, 0) == 0;
4790 }
4791 else
4792 {
4793 result = fnmatch (expr->pattern, alt_sym, 0) == 0;
4794 free (alt_sym);
4795 }
4796
4797 return result;
4798 }
4799
4800 /* This is called for each variable name or match expression. */
4801
4802 struct bfd_elf_version_expr *
4803 lang_new_vers_regex (orig, new, lang)
4804 struct bfd_elf_version_expr *orig;
4805 const char *new;
4806 const char *lang;
4807 {
4808 struct bfd_elf_version_expr *ret;
4809
4810 ret = (struct bfd_elf_version_expr *) xmalloc (sizeof *ret);
4811 ret->next = orig;
4812 ret->pattern = new;
4813
4814 if (lang == NULL || strcasecmp (lang, "C") == 0)
4815 ret->match = lang_vers_match_lang_c;
4816 else if (strcasecmp (lang, "C++") == 0)
4817 ret->match = lang_vers_match_lang_cplusplus;
4818 else if (strcasecmp (lang, "Java") == 0)
4819 ret->match = lang_vers_match_lang_java;
4820 else
4821 {
4822 einfo (_("%X%P: unknown language `%s' in version information\n"),
4823 lang);
4824 ret->match = lang_vers_match_lang_c;
4825 }
4826
4827 return ret;
4828 }
4829
4830 /* This is called for each set of variable names and match
4831 expressions. */
4832
4833 struct bfd_elf_version_tree *
4834 lang_new_vers_node (globals, locals)
4835 struct bfd_elf_version_expr *globals;
4836 struct bfd_elf_version_expr *locals;
4837 {
4838 struct bfd_elf_version_tree *ret;
4839
4840 ret = (struct bfd_elf_version_tree *) xmalloc (sizeof *ret);
4841 ret->next = NULL;
4842 ret->name = NULL;
4843 ret->vernum = 0;
4844 ret->globals = globals;
4845 ret->locals = locals;
4846 ret->deps = NULL;
4847 ret->name_indx = (unsigned int) -1;
4848 ret->used = 0;
4849 return ret;
4850 }
4851
4852 /* This static variable keeps track of version indices. */
4853
4854 static int version_index;
4855
4856 /* This is called when we know the name and dependencies of the
4857 version. */
4858
4859 void
4860 lang_register_vers_node (name, version, deps)
4861 const char *name;
4862 struct bfd_elf_version_tree *version;
4863 struct bfd_elf_version_deps *deps;
4864 {
4865 struct bfd_elf_version_tree *t, **pp;
4866 struct bfd_elf_version_expr *e1;
4867
4868 /* Make sure this node has a unique name. */
4869 for (t = lang_elf_version_info; t != NULL; t = t->next)
4870 if (strcmp (t->name, name) == 0)
4871 einfo (_("%X%P: duplicate version tag `%s'\n"), name);
4872
4873 /* Check the global and local match names, and make sure there
4874 aren't any duplicates. */
4875
4876 for (e1 = version->globals; e1 != NULL; e1 = e1->next)
4877 {
4878 for (t = lang_elf_version_info; t != NULL; t = t->next)
4879 {
4880 struct bfd_elf_version_expr *e2;
4881
4882 for (e2 = t->locals; e2 != NULL; e2 = e2->next)
4883 if (strcmp (e1->pattern, e2->pattern) == 0)
4884 einfo (_("%X%P: duplicate expression `%s' in version information\n"),
4885 e1->pattern);
4886 }
4887 }
4888
4889 for (e1 = version->locals; e1 != NULL; e1 = e1->next)
4890 {
4891 for (t = lang_elf_version_info; t != NULL; t = t->next)
4892 {
4893 struct bfd_elf_version_expr *e2;
4894
4895 for (e2 = t->globals; e2 != NULL; e2 = e2->next)
4896 if (strcmp (e1->pattern, e2->pattern) == 0)
4897 einfo (_("%X%P: duplicate expression `%s' in version information\n"),
4898 e1->pattern);
4899 }
4900 }
4901
4902 version->deps = deps;
4903 version->name = name;
4904 ++version_index;
4905 version->vernum = version_index;
4906
4907 for (pp = &lang_elf_version_info; *pp != NULL; pp = &(*pp)->next)
4908 ;
4909 *pp = version;
4910 }
4911
4912 /* This is called when we see a version dependency. */
4913
4914 struct bfd_elf_version_deps *
4915 lang_add_vers_depend (list, name)
4916 struct bfd_elf_version_deps *list;
4917 const char *name;
4918 {
4919 struct bfd_elf_version_deps *ret;
4920 struct bfd_elf_version_tree *t;
4921
4922 ret = (struct bfd_elf_version_deps *) xmalloc (sizeof *ret);
4923 ret->next = list;
4924
4925 for (t = lang_elf_version_info; t != NULL; t = t->next)
4926 {
4927 if (strcmp (t->name, name) == 0)
4928 {
4929 ret->version_needed = t;
4930 return ret;
4931 }
4932 }
4933
4934 einfo (_("%X%P: unable to find version dependency `%s'\n"), name);
4935
4936 return ret;
4937 }
4938
4939 static void
4940 lang_do_version_exports_section ()
4941 {
4942 struct bfd_elf_version_expr *greg = NULL, *lreg;
4943
4944 LANG_FOR_EACH_INPUT_STATEMENT (is)
4945 {
4946 asection *sec = bfd_get_section_by_name (is->the_bfd, ".exports");
4947 char *contents, *p;
4948 bfd_size_type len;
4949
4950 if (sec == NULL)
4951 continue;
4952
4953 len = bfd_section_size (is->the_bfd, sec);
4954 contents = xmalloc (len);
4955 if (!bfd_get_section_contents (is->the_bfd, sec, contents, 0, len))
4956 einfo (_("%X%P: unable to read .exports section contents"), sec);
4957
4958 p = contents;
4959 while (p < contents+len)
4960 {
4961 greg = lang_new_vers_regex (greg, p, NULL);
4962 p = strchr (p, '\0') + 1;
4963 }
4964
4965 /* Do not free the contents, as we used them creating the regex. */
4966
4967 /* Do not include this section in the link. */
4968 bfd_set_section_flags (is->the_bfd, sec,
4969 bfd_get_section_flags (is->the_bfd, sec) | SEC_EXCLUDE);
4970 }
4971
4972 lreg = lang_new_vers_regex (NULL, "*", NULL);
4973 lang_register_vers_node (command_line.version_exports_section,
4974 lang_new_vers_node (greg, lreg), NULL);
4975 }