bfd/
[deliverable/binutils-gdb.git] / ld / ldlang.c
CommitLineData
252b5132 1/* Linker command language support.
a2b64bed 2 Copyright 1991, 1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999, 2000,
264b6205 3 2001, 2002, 2003, 2004, 2005, 2006, 2007
252b5132
RH
4 Free Software Foundation, Inc.
5
53b2a62f 6 This file is part of GLD, the Gnu Linker.
252b5132 7
53b2a62f
NC
8 GLD is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
10 the Free Software Foundation; either version 2, or (at your option)
11 any later version.
252b5132 12
53b2a62f
NC
13 GLD is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
252b5132 17
53b2a62f
NC
18 You should have received a copy of the GNU General Public License
19 along with GLD; see the file COPYING. If not, write to the Free
75be928b
NC
20 Software Foundation, 51 Franklin Street - Fifth Floor, Boston, MA
21 02110-1301, USA. */
252b5132
RH
22
23#include "bfd.h"
24#include "sysdep.h"
25#include "libiberty.h"
3882b010 26#include "safe-ctype.h"
252b5132
RH
27#include "obstack.h"
28#include "bfdlink.h"
29
30#include "ld.h"
31#include "ldmain.h"
252b5132
RH
32#include "ldexp.h"
33#include "ldlang.h"
df2a7313 34#include <ldgram.h>
252b5132
RH
35#include "ldlex.h"
36#include "ldmisc.h"
37#include "ldctor.h"
38#include "ldfile.h"
b71e2778 39#include "ldemul.h"
252b5132
RH
40#include "fnmatch.h"
41#include "demangle.h"
108ba305 42#include "hashtab.h"
252b5132 43
7abb6dea 44#ifndef offsetof
cf888e70 45#define offsetof(TYPE, MEMBER) ((size_t) & (((TYPE*) 0)->MEMBER))
7abb6dea
AM
46#endif
47
cf888e70 48/* Locals variables. */
252b5132 49static struct obstack stat_obstack;
35835446 50static struct obstack map_obstack;
252b5132
RH
51
52#define obstack_chunk_alloc xmalloc
53#define obstack_chunk_free free
5f992e62 54static const char *startup_file;
b34976b6 55static bfd_boolean placed_commons = FALSE;
8423293d 56static bfd_boolean stripped_excluded_sections = FALSE;
252b5132 57static lang_output_section_statement_type *default_common_section;
b34976b6 58static bfd_boolean map_option_f;
252b5132
RH
59static bfd_vma print_dot;
60static lang_input_statement_type *first_file;
5f992e62
AM
61static const char *current_target;
62static const char *output_target;
252b5132 63static lang_statement_list_type statement_list;
420e579c 64static struct bfd_hash_table lang_definedness_table;
252b5132 65
cf888e70 66/* Forward declarations. */
1579bae1 67static void exp_init_os (etree_type *);
35835446 68static void init_map_userdata (bfd *, asection *, void *);
1579bae1 69static lang_input_statement_type *lookup_name (const char *);
420e579c
HPN
70static struct bfd_hash_entry *lang_definedness_newfunc
71 (struct bfd_hash_entry *, struct bfd_hash_table *, const char *);
1579bae1 72static void insert_undefined (const char *);
35835446 73static bfd_boolean sort_def_symbol (struct bfd_link_hash_entry *, void *);
1579bae1
AM
74static void print_statement (lang_statement_union_type *,
75 lang_output_section_statement_type *);
76static void print_statement_list (lang_statement_union_type *,
77 lang_output_section_statement_type *);
78static void print_statements (void);
4d4920ec 79static void print_input_section (asection *);
1579bae1
AM
80static bfd_boolean lang_one_common (struct bfd_link_hash_entry *, void *);
81static void lang_record_phdrs (void);
82static void lang_do_version_exports_section (void);
55255dae
L
83static void lang_finalize_version_expr_head
84 (struct bfd_elf_version_expr_head *);
1579bae1 85
cf888e70 86/* Exported variables. */
252b5132 87lang_output_section_statement_type *abs_output_section;
aea4bd9d 88lang_statement_list_type lang_output_section_statement;
252b5132 89lang_statement_list_type *stat_ptr = &statement_list;
87f2a346 90lang_statement_list_type file_chain = { NULL, NULL };
dc27aea4 91lang_statement_list_type input_file_chain;
e3e942e9 92struct bfd_sym_chain entry_symbol = { NULL, NULL };
a359509e 93static const char *entry_symbol_default = "start";
1e281515 94const char *entry_section = ".text";
b34976b6
AM
95bfd_boolean entry_from_cmdline;
96bfd_boolean lang_has_input_file = FALSE;
97bfd_boolean had_output_filename = FALSE;
98bfd_boolean lang_float_flag = FALSE;
99bfd_boolean delete_output_file_on_failure = FALSE;
f5ff60a6 100struct lang_phdr *lang_phdr_list;
252b5132 101struct lang_nocrossrefs *nocrossref_list;
279e75dc 102static struct unique_sections *unique_section_list;
e3f2db7f 103static bfd_boolean ldlang_sysrooted_script = FALSE;
e9ee469a
AM
104
105 /* Functions that traverse the linker script and might evaluate
106 DEFINED() need to increment this. */
420e579c 107int lang_statement_iteration = 0;
252b5132
RH
108
109etree_type *base; /* Relocation base - or null */
110
61f5d054
L
111/* Return TRUE if the PATTERN argument is a wildcard pattern.
112 Although backslashes are treated specially if a pattern contains
113 wildcards, we do not consider the mere presence of a backslash to
114 be enough to cause the pattern to be treated as a wildcard.
115 That lets us handle DOS filenames more naturally. */
116#define wildcardp(pattern) (strpbrk ((pattern), "?*[") != NULL)
117
d1778b88 118#define new_stat(x, y) \
1579bae1 119 (x##_type *) new_statement (x##_enum, sizeof (x##_type), y)
252b5132 120
d1778b88
AM
121#define outside_section_address(q) \
122 ((q)->output_offset + (q)->output_section->vma)
252b5132 123
d1778b88
AM
124#define outside_symbol_address(q) \
125 ((q)->value + outside_section_address (q->section))
252b5132
RH
126
127#define SECTION_NAME_MAP_LENGTH (16)
128
1579bae1
AM
129void *
130stat_alloc (size_t size)
252b5132
RH
131{
132 return obstack_alloc (&stat_obstack, size);
133}
134
b34976b6 135bfd_boolean
d0d6a25b 136unique_section_p (const asection *sec)
577a0623
AM
137{
138 struct unique_sections *unam;
d0d6a25b 139 const char *secnam;
577a0623 140
d0d6a25b
AM
141 if (link_info.relocatable
142 && sec->owner != NULL
143 && bfd_is_group_section (sec->owner, sec))
144 return TRUE;
145
146 secnam = sec->name;
577a0623
AM
147 for (unam = unique_section_list; unam; unam = unam->next)
148 if (wildcardp (unam->name)
149 ? fnmatch (unam->name, secnam, 0) == 0
150 : strcmp (unam->name, secnam) == 0)
151 {
b34976b6 152 return TRUE;
577a0623
AM
153 }
154
b34976b6 155 return FALSE;
577a0623
AM
156}
157
08da4cac 158/* Generic traversal routines for finding matching sections. */
4dec4d4e 159
72223188
JJ
160/* Try processing a section against a wildcard. This just calls
161 the callback unless the filename exclusion list is present
162 and excludes the file. It's hardly ever present so this
163 function is very fast. */
164
4dec4d4e 165static void
72223188
JJ
166walk_wild_consider_section (lang_wild_statement_type *ptr,
167 lang_input_statement_type *file,
168 asection *s,
169 struct wildcard_list *sec,
170 callback_t callback,
171 void *data)
4dec4d4e 172{
72223188
JJ
173 bfd_boolean skip = FALSE;
174 struct name_list *list_tmp;
175
176 /* Don't process sections from files which were
177 excluded. */
178 for (list_tmp = sec->spec.exclude_name_list;
179 list_tmp;
180 list_tmp = list_tmp->next)
181 {
182 bfd_boolean is_wildcard = wildcardp (list_tmp->name);
183 if (is_wildcard)
184 skip = fnmatch (list_tmp->name, file->filename, 0) == 0;
185 else
186 skip = strcmp (list_tmp->name, file->filename) == 0;
b6bf44ba 187
72223188
JJ
188 /* If this file is part of an archive, and the archive is
189 excluded, exclude this file. */
190 if (! skip && file->the_bfd != NULL
191 && file->the_bfd->my_archive != NULL
192 && file->the_bfd->my_archive->filename != NULL)
193 {
194 if (is_wildcard)
195 skip = fnmatch (list_tmp->name,
196 file->the_bfd->my_archive->filename,
197 0) == 0;
198 else
199 skip = strcmp (list_tmp->name,
200 file->the_bfd->my_archive->filename) == 0;
201 }
202
203 if (skip)
204 break;
205 }
206
207 if (!skip)
208 (*callback) (ptr, sec, s, file, data);
209}
210
211/* Lowest common denominator routine that can handle everything correctly,
212 but slowly. */
213
214static void
215walk_wild_section_general (lang_wild_statement_type *ptr,
216 lang_input_statement_type *file,
217 callback_t callback,
218 void *data)
219{
220 asection *s;
221 struct wildcard_list *sec;
b6bf44ba
AM
222
223 for (s = file->the_bfd->sections; s != NULL; s = s->next)
4dec4d4e 224 {
b6bf44ba 225 sec = ptr->section_list;
2181f54f
AM
226 if (sec == NULL)
227 (*callback) (ptr, sec, s, file, data);
228
229 while (sec != NULL)
08da4cac 230 {
b34976b6 231 bfd_boolean skip = FALSE;
2181f54f 232
72223188 233 if (sec->spec.name != NULL)
b6bf44ba 234 {
2181f54f
AM
235 const char *sname = bfd_get_section_name (file->the_bfd, s);
236
237 if (wildcardp (sec->spec.name))
238 skip = fnmatch (sec->spec.name, sname, 0) != 0;
239 else
240 skip = strcmp (sec->spec.name, sname) != 0;
b6bf44ba 241 }
4dec4d4e 242
b6bf44ba 243 if (!skip)
72223188 244 walk_wild_consider_section (ptr, file, s, sec, callback, data);
4dec4d4e 245
2181f54f 246 sec = sec->next;
4dec4d4e
RH
247 }
248 }
249}
250
72223188
JJ
251/* Routines to find a single section given its name. If there's more
252 than one section with that name, we report that. */
253
254typedef struct
255{
256 asection *found_section;
257 bfd_boolean multiple_sections_found;
258} section_iterator_callback_data;
259
260static bfd_boolean
261section_iterator_callback (bfd *bfd ATTRIBUTE_UNUSED, asection *s, void *data)
262{
263 section_iterator_callback_data *d = data;
264
265 if (d->found_section != NULL)
266 {
267 d->multiple_sections_found = TRUE;
268 return TRUE;
269 }
270
271 d->found_section = s;
272 return FALSE;
273}
274
275static asection *
276find_section (lang_input_statement_type *file,
277 struct wildcard_list *sec,
278 bfd_boolean *multiple_sections_found)
279{
280 section_iterator_callback_data cb_data = { NULL, FALSE };
281
329c1c86 282 bfd_get_section_by_name_if (file->the_bfd, sec->spec.name,
72223188
JJ
283 section_iterator_callback, &cb_data);
284 *multiple_sections_found = cb_data.multiple_sections_found;
285 return cb_data.found_section;
286}
287
288/* Code for handling simple wildcards without going through fnmatch,
289 which can be expensive because of charset translations etc. */
290
291/* A simple wild is a literal string followed by a single '*',
292 where the literal part is at least 4 characters long. */
293
294static bfd_boolean
295is_simple_wild (const char *name)
296{
297 size_t len = strcspn (name, "*?[");
298 return len >= 4 && name[len] == '*' && name[len + 1] == '\0';
299}
300
301static bfd_boolean
302match_simple_wild (const char *pattern, const char *name)
303{
304 /* The first four characters of the pattern are guaranteed valid
305 non-wildcard characters. So we can go faster. */
306 if (pattern[0] != name[0] || pattern[1] != name[1]
307 || pattern[2] != name[2] || pattern[3] != name[3])
308 return FALSE;
309
310 pattern += 4;
311 name += 4;
312 while (*pattern != '*')
313 if (*name++ != *pattern++)
314 return FALSE;
315
316 return TRUE;
317}
318
50c77e5d
NC
319/* Compare sections ASEC and BSEC according to SORT. */
320
321static int
322compare_section (sort_type sort, asection *asec, asection *bsec)
323{
324 int ret;
325
326 switch (sort)
327 {
328 default:
329 abort ();
330
331 case by_alignment_name:
332 ret = (bfd_section_alignment (bsec->owner, bsec)
333 - bfd_section_alignment (asec->owner, asec));
334 if (ret)
335 break;
336 /* Fall through. */
337
338 case by_name:
339 ret = strcmp (bfd_get_section_name (asec->owner, asec),
340 bfd_get_section_name (bsec->owner, bsec));
341 break;
342
343 case by_name_alignment:
344 ret = strcmp (bfd_get_section_name (asec->owner, asec),
345 bfd_get_section_name (bsec->owner, bsec));
346 if (ret)
347 break;
348 /* Fall through. */
349
350 case by_alignment:
351 ret = (bfd_section_alignment (bsec->owner, bsec)
352 - bfd_section_alignment (asec->owner, asec));
353 break;
354 }
355
356 return ret;
357}
358
329c1c86 359/* Build a Binary Search Tree to sort sections, unlike insertion sort
50c77e5d
NC
360 used in wild_sort(). BST is considerably faster if the number of
361 of sections are large. */
362
363static lang_section_bst_type **
364wild_sort_fast (lang_wild_statement_type *wild,
329c1c86
AM
365 struct wildcard_list *sec,
366 lang_input_statement_type *file ATTRIBUTE_UNUSED,
367 asection *section)
50c77e5d 368{
329c1c86 369 lang_section_bst_type **tree;
50c77e5d 370
e6f2cbf5 371 tree = &wild->tree;
50c77e5d 372 if (!wild->filenames_sorted
329c1c86 373 && (sec == NULL || sec->spec.sorted == none))
50c77e5d
NC
374 {
375 /* Append at the right end of tree. */
376 while (*tree)
329c1c86 377 tree = &((*tree)->right);
50c77e5d
NC
378 return tree;
379 }
380
329c1c86 381 while (*tree)
50c77e5d
NC
382 {
383 /* Find the correct node to append this section. */
329c1c86
AM
384 if (compare_section (sec->spec.sorted, section, (*tree)->section) < 0)
385 tree = &((*tree)->left);
386 else
387 tree = &((*tree)->right);
50c77e5d
NC
388 }
389
390 return tree;
391}
392
393/* Use wild_sort_fast to build a BST to sort sections. */
394
395static void
396output_section_callback_fast (lang_wild_statement_type *ptr,
329c1c86
AM
397 struct wildcard_list *sec,
398 asection *section,
399 lang_input_statement_type *file,
400 void *output ATTRIBUTE_UNUSED)
50c77e5d
NC
401{
402 lang_section_bst_type *node;
403 lang_section_bst_type **tree;
404
405 if (unique_section_p (section))
406 return;
407
408 node = xmalloc (sizeof (lang_section_bst_type));
409 node->left = 0;
410 node->right = 0;
411 node->section = section;
412
413 tree = wild_sort_fast (ptr, sec, file, section);
414 if (tree != NULL)
415 *tree = node;
416}
417
418/* Convert a sorted sections' BST back to list form. */
419
420static void
329c1c86
AM
421output_section_callback_tree_to_list (lang_wild_statement_type *ptr,
422 lang_section_bst_type *tree,
423 void *output)
50c77e5d
NC
424{
425 if (tree->left)
426 output_section_callback_tree_to_list (ptr, tree->left, output);
427
329c1c86
AM
428 lang_add_section (&ptr->children, tree->section,
429 (lang_output_section_statement_type *) output);
50c77e5d
NC
430
431 if (tree->right)
432 output_section_callback_tree_to_list (ptr, tree->right, output);
433
434 free (tree);
435}
436
72223188
JJ
437/* Specialized, optimized routines for handling different kinds of
438 wildcards */
439
440static void
441walk_wild_section_specs1_wild0 (lang_wild_statement_type *ptr,
442 lang_input_statement_type *file,
443 callback_t callback,
444 void *data)
445{
446 /* We can just do a hash lookup for the section with the right name.
447 But if that lookup discovers more than one section with the name
448 (should be rare), we fall back to the general algorithm because
449 we would otherwise have to sort the sections to make sure they
450 get processed in the bfd's order. */
451 bfd_boolean multiple_sections_found;
452 struct wildcard_list *sec0 = ptr->handler_data[0];
453 asection *s0 = find_section (file, sec0, &multiple_sections_found);
454
455 if (multiple_sections_found)
456 walk_wild_section_general (ptr, file, callback, data);
457 else if (s0)
458 walk_wild_consider_section (ptr, file, s0, sec0, callback, data);
459}
460
461static void
462walk_wild_section_specs1_wild1 (lang_wild_statement_type *ptr,
463 lang_input_statement_type *file,
464 callback_t callback,
465 void *data)
466{
467 asection *s;
468 struct wildcard_list *wildsec0 = ptr->handler_data[0];
469
470 for (s = file->the_bfd->sections; s != NULL; s = s->next)
471 {
472 const char *sname = bfd_get_section_name (file->the_bfd, s);
473 bfd_boolean skip = !match_simple_wild (wildsec0->spec.name, sname);
474
475 if (!skip)
476 walk_wild_consider_section (ptr, file, s, wildsec0, callback, data);
477 }
478}
479
480static void
481walk_wild_section_specs2_wild1 (lang_wild_statement_type *ptr,
482 lang_input_statement_type *file,
483 callback_t callback,
484 void *data)
485{
486 asection *s;
487 struct wildcard_list *sec0 = ptr->handler_data[0];
488 struct wildcard_list *wildsec1 = ptr->handler_data[1];
489 bfd_boolean multiple_sections_found;
490 asection *s0 = find_section (file, sec0, &multiple_sections_found);
491
492 if (multiple_sections_found)
493 {
494 walk_wild_section_general (ptr, file, callback, data);
495 return;
496 }
497
498 /* Note that if the section was not found, s0 is NULL and
499 we'll simply never succeed the s == s0 test below. */
500 for (s = file->the_bfd->sections; s != NULL; s = s->next)
501 {
502 /* Recall that in this code path, a section cannot satisfy more
503 than one spec, so if s == s0 then it cannot match
504 wildspec1. */
505 if (s == s0)
506 walk_wild_consider_section (ptr, file, s, sec0, callback, data);
507 else
508 {
509 const char *sname = bfd_get_section_name (file->the_bfd, s);
510 bfd_boolean skip = !match_simple_wild (wildsec1->spec.name, sname);
511
512 if (!skip)
513 walk_wild_consider_section (ptr, file, s, wildsec1, callback,
514 data);
515 }
516 }
517}
518
519static void
520walk_wild_section_specs3_wild2 (lang_wild_statement_type *ptr,
521 lang_input_statement_type *file,
522 callback_t callback,
523 void *data)
524{
525 asection *s;
526 struct wildcard_list *sec0 = ptr->handler_data[0];
527 struct wildcard_list *wildsec1 = ptr->handler_data[1];
528 struct wildcard_list *wildsec2 = ptr->handler_data[2];
529 bfd_boolean multiple_sections_found;
530 asection *s0 = find_section (file, sec0, &multiple_sections_found);
531
532 if (multiple_sections_found)
533 {
534 walk_wild_section_general (ptr, file, callback, data);
535 return;
536 }
537
538 for (s = file->the_bfd->sections; s != NULL; s = s->next)
539 {
540 if (s == s0)
541 walk_wild_consider_section (ptr, file, s, sec0, callback, data);
542 else
543 {
544 const char *sname = bfd_get_section_name (file->the_bfd, s);
545 bfd_boolean skip = !match_simple_wild (wildsec1->spec.name, sname);
546
547 if (!skip)
548 walk_wild_consider_section (ptr, file, s, wildsec1, callback, data);
549 else
550 {
551 skip = !match_simple_wild (wildsec2->spec.name, sname);
552 if (!skip)
553 walk_wild_consider_section (ptr, file, s, wildsec2, callback,
554 data);
555 }
556 }
557 }
558}
559
560static void
561walk_wild_section_specs4_wild2 (lang_wild_statement_type *ptr,
562 lang_input_statement_type *file,
563 callback_t callback,
564 void *data)
565{
566 asection *s;
567 struct wildcard_list *sec0 = ptr->handler_data[0];
568 struct wildcard_list *sec1 = ptr->handler_data[1];
569 struct wildcard_list *wildsec2 = ptr->handler_data[2];
570 struct wildcard_list *wildsec3 = ptr->handler_data[3];
571 bfd_boolean multiple_sections_found;
572 asection *s0 = find_section (file, sec0, &multiple_sections_found), *s1;
573
574 if (multiple_sections_found)
575 {
576 walk_wild_section_general (ptr, file, callback, data);
577 return;
578 }
579
580 s1 = find_section (file, sec1, &multiple_sections_found);
581 if (multiple_sections_found)
582 {
583 walk_wild_section_general (ptr, file, callback, data);
584 return;
585 }
586
587 for (s = file->the_bfd->sections; s != NULL; s = s->next)
588 {
589 if (s == s0)
590 walk_wild_consider_section (ptr, file, s, sec0, callback, data);
591 else
592 if (s == s1)
593 walk_wild_consider_section (ptr, file, s, sec1, callback, data);
594 else
595 {
596 const char *sname = bfd_get_section_name (file->the_bfd, s);
597 bfd_boolean skip = !match_simple_wild (wildsec2->spec.name,
598 sname);
599
600 if (!skip)
601 walk_wild_consider_section (ptr, file, s, wildsec2, callback,
602 data);
603 else
604 {
605 skip = !match_simple_wild (wildsec3->spec.name, sname);
606 if (!skip)
607 walk_wild_consider_section (ptr, file, s, wildsec3,
608 callback, data);
609 }
610 }
611 }
612}
613
614static void
615walk_wild_section (lang_wild_statement_type *ptr,
616 lang_input_statement_type *file,
617 callback_t callback,
618 void *data)
619{
620 if (file->just_syms_flag)
621 return;
622
623 (*ptr->walk_wild_section_handler) (ptr, file, callback, data);
624}
625
626/* Returns TRUE when name1 is a wildcard spec that might match
627 something name2 can match. We're conservative: we return FALSE
628 only if the prefixes of name1 and name2 are different up to the
629 first wildcard character. */
630
631static bfd_boolean
632wild_spec_can_overlap (const char *name1, const char *name2)
633{
634 size_t prefix1_len = strcspn (name1, "?*[");
635 size_t prefix2_len = strcspn (name2, "?*[");
636 size_t min_prefix_len;
637
638 /* Note that if there is no wildcard character, then we treat the
639 terminating 0 as part of the prefix. Thus ".text" won't match
640 ".text." or ".text.*", for example. */
641 if (name1[prefix1_len] == '\0')
642 prefix1_len++;
643 if (name2[prefix2_len] == '\0')
644 prefix2_len++;
645
646 min_prefix_len = prefix1_len < prefix2_len ? prefix1_len : prefix2_len;
647
648 return memcmp (name1, name2, min_prefix_len) == 0;
649}
650
651/* Select specialized code to handle various kinds of wildcard
652 statements. */
653
654static void
655analyze_walk_wild_section_handler (lang_wild_statement_type *ptr)
656{
657 int sec_count = 0;
658 int wild_name_count = 0;
659 struct wildcard_list *sec;
660 int signature;
661 int data_counter;
662
663 ptr->walk_wild_section_handler = walk_wild_section_general;
7544697a
AM
664 ptr->handler_data[0] = NULL;
665 ptr->handler_data[1] = NULL;
666 ptr->handler_data[2] = NULL;
667 ptr->handler_data[3] = NULL;
e6f2cbf5 668 ptr->tree = NULL;
72223188
JJ
669
670 /* Count how many wildcard_specs there are, and how many of those
671 actually use wildcards in the name. Also, bail out if any of the
672 wildcard names are NULL. (Can this actually happen?
673 walk_wild_section used to test for it.) And bail out if any
674 of the wildcards are more complex than a simple string
675 ending in a single '*'. */
676 for (sec = ptr->section_list; sec != NULL; sec = sec->next)
677 {
678 ++sec_count;
679 if (sec->spec.name == NULL)
680 return;
681 if (wildcardp (sec->spec.name))
682 {
683 ++wild_name_count;
684 if (!is_simple_wild (sec->spec.name))
685 return;
686 }
687 }
688
689 /* The zero-spec case would be easy to optimize but it doesn't
690 happen in practice. Likewise, more than 4 specs doesn't
691 happen in practice. */
692 if (sec_count == 0 || sec_count > 4)
693 return;
694
695 /* Check that no two specs can match the same section. */
696 for (sec = ptr->section_list; sec != NULL; sec = sec->next)
697 {
698 struct wildcard_list *sec2;
699 for (sec2 = sec->next; sec2 != NULL; sec2 = sec2->next)
700 {
701 if (wild_spec_can_overlap (sec->spec.name, sec2->spec.name))
702 return;
703 }
704 }
705
706 signature = (sec_count << 8) + wild_name_count;
707 switch (signature)
708 {
709 case 0x0100:
710 ptr->walk_wild_section_handler = walk_wild_section_specs1_wild0;
711 break;
712 case 0x0101:
713 ptr->walk_wild_section_handler = walk_wild_section_specs1_wild1;
714 break;
715 case 0x0201:
716 ptr->walk_wild_section_handler = walk_wild_section_specs2_wild1;
717 break;
718 case 0x0302:
719 ptr->walk_wild_section_handler = walk_wild_section_specs3_wild2;
720 break;
721 case 0x0402:
722 ptr->walk_wild_section_handler = walk_wild_section_specs4_wild2;
723 break;
724 default:
725 return;
726 }
727
728 /* Now fill the data array with pointers to the specs, first the
729 specs with non-wildcard names, then the specs with wildcard
730 names. It's OK to process the specs in different order from the
731 given order, because we've already determined that no section
732 will match more than one spec. */
733 data_counter = 0;
734 for (sec = ptr->section_list; sec != NULL; sec = sec->next)
735 if (!wildcardp (sec->spec.name))
736 ptr->handler_data[data_counter++] = sec;
737 for (sec = ptr->section_list; sec != NULL; sec = sec->next)
738 if (wildcardp (sec->spec.name))
739 ptr->handler_data[data_counter++] = sec;
740}
741
4dec4d4e
RH
742/* Handle a wild statement for a single file F. */
743
744static void
1579bae1
AM
745walk_wild_file (lang_wild_statement_type *s,
746 lang_input_statement_type *f,
747 callback_t callback,
748 void *data)
4dec4d4e
RH
749{
750 if (f->the_bfd == NULL
751 || ! bfd_check_format (f->the_bfd, bfd_archive))
b6bf44ba 752 walk_wild_section (s, f, callback, data);
4dec4d4e
RH
753 else
754 {
755 bfd *member;
756
757 /* This is an archive file. We must map each member of the
758 archive separately. */
1579bae1 759 member = bfd_openr_next_archived_file (f->the_bfd, NULL);
4dec4d4e
RH
760 while (member != NULL)
761 {
762 /* When lookup_name is called, it will call the add_symbols
763 entry point for the archive. For each element of the
764 archive which is included, BFD will call ldlang_add_file,
765 which will set the usrdata field of the member to the
766 lang_input_statement. */
767 if (member->usrdata != NULL)
768 {
1579bae1 769 walk_wild_section (s, member->usrdata, callback, data);
4dec4d4e
RH
770 }
771
772 member = bfd_openr_next_archived_file (f->the_bfd, member);
773 }
774 }
775}
776
777static void
1579bae1 778walk_wild (lang_wild_statement_type *s, callback_t callback, void *data)
4dec4d4e 779{
b6bf44ba
AM
780 const char *file_spec = s->filename;
781
782 if (file_spec == NULL)
4dec4d4e
RH
783 {
784 /* Perform the iteration over all files in the list. */
e50d8076 785 LANG_FOR_EACH_INPUT_STATEMENT (f)
4dec4d4e 786 {
b6bf44ba 787 walk_wild_file (s, f, callback, data);
4dec4d4e
RH
788 }
789 }
b6bf44ba 790 else if (wildcardp (file_spec))
4dec4d4e 791 {
e50d8076 792 LANG_FOR_EACH_INPUT_STATEMENT (f)
4dec4d4e 793 {
68bbb9f7 794 if (fnmatch (file_spec, f->filename, 0) == 0)
b6bf44ba 795 walk_wild_file (s, f, callback, data);
4dec4d4e
RH
796 }
797 }
798 else
799 {
e50d8076
NC
800 lang_input_statement_type *f;
801
4dec4d4e 802 /* Perform the iteration over a single file. */
b6bf44ba 803 f = lookup_name (file_spec);
6770ec8c 804 if (f)
b6bf44ba 805 walk_wild_file (s, f, callback, data);
4dec4d4e 806 }
5f992e62
AM
807}
808
08da4cac
KH
809/* lang_for_each_statement walks the parse tree and calls the provided
810 function for each node. */
252b5132
RH
811
812static void
1579bae1
AM
813lang_for_each_statement_worker (void (*func) (lang_statement_union_type *),
814 lang_statement_union_type *s)
252b5132 815{
1579bae1 816 for (; s != NULL; s = s->header.next)
252b5132
RH
817 {
818 func (s);
819
820 switch (s->header.type)
821 {
822 case lang_constructors_statement_enum:
823 lang_for_each_statement_worker (func, constructor_list.head);
824 break;
825 case lang_output_section_statement_enum:
826 lang_for_each_statement_worker
6feb9908 827 (func, s->output_section_statement.children.head);
252b5132
RH
828 break;
829 case lang_wild_statement_enum:
6feb9908
AM
830 lang_for_each_statement_worker (func,
831 s->wild_statement.children.head);
252b5132
RH
832 break;
833 case lang_group_statement_enum:
834 lang_for_each_statement_worker (func,
835 s->group_statement.children.head);
836 break;
837 case lang_data_statement_enum:
838 case lang_reloc_statement_enum:
839 case lang_object_symbols_statement_enum:
840 case lang_output_statement_enum:
841 case lang_target_statement_enum:
842 case lang_input_section_enum:
843 case lang_input_statement_enum:
844 case lang_assignment_statement_enum:
845 case lang_padding_statement_enum:
846 case lang_address_statement_enum:
847 case lang_fill_statement_enum:
848 break;
849 default:
850 FAIL ();
851 break;
852 }
853 }
854}
855
856void
1579bae1 857lang_for_each_statement (void (*func) (lang_statement_union_type *))
252b5132 858{
08da4cac 859 lang_for_each_statement_worker (func, statement_list.head);
252b5132
RH
860}
861
862/*----------------------------------------------------------------------*/
08da4cac 863
252b5132 864void
1579bae1 865lang_list_init (lang_statement_list_type *list)
252b5132 866{
1579bae1 867 list->head = NULL;
252b5132
RH
868 list->tail = &list->head;
869}
870
08da4cac 871/* Build a new statement node for the parse tree. */
252b5132 872
08da4cac 873static lang_statement_union_type *
1579bae1
AM
874new_statement (enum statement_enum type,
875 size_t size,
876 lang_statement_list_type *list)
252b5132 877{
1579bae1 878 lang_statement_union_type *new;
252b5132 879
1579bae1 880 new = stat_alloc (size);
252b5132 881 new->header.type = type;
1579bae1 882 new->header.next = NULL;
252b5132
RH
883 lang_statement_append (list, new, &new->header.next);
884 return new;
885}
886
08da4cac
KH
887/* Build a new input file node for the language. There are several
888 ways in which we treat an input file, eg, we only look at symbols,
889 or prefix it with a -l etc.
252b5132 890
08da4cac 891 We can be supplied with requests for input files more than once;
396a2467 892 they may, for example be split over several lines like foo.o(.text)
d1778b88 893 foo.o(.data) etc, so when asked for a file we check that we haven't
08da4cac 894 got it already so we don't duplicate the bfd. */
252b5132 895
252b5132 896static lang_input_statement_type *
1579bae1
AM
897new_afile (const char *name,
898 lang_input_file_enum_type file_type,
899 const char *target,
900 bfd_boolean add_to_list)
252b5132
RH
901{
902 lang_input_statement_type *p;
903
904 if (add_to_list)
905 p = new_stat (lang_input_statement, stat_ptr);
906 else
907 {
1579bae1 908 p = stat_alloc (sizeof (lang_input_statement_type));
bd4d42c1 909 p->header.type = lang_input_statement_enum;
252b5132
RH
910 p->header.next = NULL;
911 }
912
b34976b6 913 lang_has_input_file = TRUE;
252b5132 914 p->target = target;
e3f2db7f 915 p->sysrooted = FALSE;
bcb674cf
RS
916
917 if (file_type == lang_input_file_is_l_enum
918 && name[0] == ':' && name[1] != '\0')
919 {
920 file_type = lang_input_file_is_search_file_enum;
921 name = name + 1;
922 }
923
252b5132
RH
924 switch (file_type)
925 {
926 case lang_input_file_is_symbols_only_enum:
927 p->filename = name;
b34976b6
AM
928 p->is_archive = FALSE;
929 p->real = TRUE;
252b5132 930 p->local_sym_name = name;
b34976b6
AM
931 p->just_syms_flag = TRUE;
932 p->search_dirs_flag = FALSE;
252b5132
RH
933 break;
934 case lang_input_file_is_fake_enum:
935 p->filename = name;
b34976b6
AM
936 p->is_archive = FALSE;
937 p->real = FALSE;
252b5132 938 p->local_sym_name = name;
b34976b6
AM
939 p->just_syms_flag = FALSE;
940 p->search_dirs_flag = FALSE;
252b5132
RH
941 break;
942 case lang_input_file_is_l_enum:
b34976b6 943 p->is_archive = TRUE;
252b5132 944 p->filename = name;
b34976b6 945 p->real = TRUE;
1579bae1 946 p->local_sym_name = concat ("-l", name, NULL);
b34976b6
AM
947 p->just_syms_flag = FALSE;
948 p->search_dirs_flag = TRUE;
252b5132
RH
949 break;
950 case lang_input_file_is_marker_enum:
951 p->filename = name;
b34976b6
AM
952 p->is_archive = FALSE;
953 p->real = FALSE;
252b5132 954 p->local_sym_name = name;
b34976b6
AM
955 p->just_syms_flag = FALSE;
956 p->search_dirs_flag = TRUE;
252b5132
RH
957 break;
958 case lang_input_file_is_search_file_enum:
e3f2db7f 959 p->sysrooted = ldlang_sysrooted_script;
252b5132 960 p->filename = name;
b34976b6
AM
961 p->is_archive = FALSE;
962 p->real = TRUE;
252b5132 963 p->local_sym_name = name;
b34976b6
AM
964 p->just_syms_flag = FALSE;
965 p->search_dirs_flag = TRUE;
252b5132
RH
966 break;
967 case lang_input_file_is_file_enum:
968 p->filename = name;
b34976b6
AM
969 p->is_archive = FALSE;
970 p->real = TRUE;
252b5132 971 p->local_sym_name = name;
b34976b6
AM
972 p->just_syms_flag = FALSE;
973 p->search_dirs_flag = FALSE;
252b5132
RH
974 break;
975 default:
976 FAIL ();
977 }
1579bae1
AM
978 p->the_bfd = NULL;
979 p->asymbols = NULL;
980 p->next_real_file = NULL;
981 p->next = NULL;
252b5132
RH
982 p->symbol_count = 0;
983 p->dynamic = config.dynamic_link;
e56f61be 984 p->add_needed = add_needed;
4a43e768 985 p->as_needed = as_needed;
252b5132 986 p->whole_archive = whole_archive;
b34976b6 987 p->loaded = FALSE;
252b5132
RH
988 lang_statement_append (&input_file_chain,
989 (lang_statement_union_type *) p,
990 &p->next_real_file);
991 return p;
992}
993
994lang_input_statement_type *
1579bae1
AM
995lang_add_input_file (const char *name,
996 lang_input_file_enum_type file_type,
997 const char *target)
252b5132 998{
b34976b6 999 return new_afile (name, file_type, target, TRUE);
252b5132
RH
1000}
1001
409d7240 1002struct out_section_hash_entry
750877ba
L
1003{
1004 struct bfd_hash_entry root;
409d7240 1005 lang_statement_union_type s;
750877ba
L
1006};
1007
1008/* The hash table. */
1009
409d7240 1010static struct bfd_hash_table output_section_statement_table;
750877ba 1011
384a9dda 1012/* Support routines for the hash table used by lang_output_section_find,
750877ba
L
1013 initialize the table, fill in an entry and remove the table. */
1014
1015static struct bfd_hash_entry *
329c1c86 1016output_section_statement_newfunc (struct bfd_hash_entry *entry,
409d7240
AM
1017 struct bfd_hash_table *table,
1018 const char *string)
750877ba 1019{
384a9dda 1020 lang_output_section_statement_type **nextp;
409d7240 1021 struct out_section_hash_entry *ret;
384a9dda
AM
1022
1023 if (entry == NULL)
1024 {
1025 entry = bfd_hash_allocate (table, sizeof (*ret));
1026 if (entry == NULL)
1027 return entry;
1028 }
1029
1030 entry = bfd_hash_newfunc (entry, table, string);
1031 if (entry == NULL)
1032 return entry;
1033
409d7240
AM
1034 ret = (struct out_section_hash_entry *) entry;
1035 memset (&ret->s, 0, sizeof (ret->s));
1036 ret->s.header.type = lang_output_section_statement_enum;
1037 ret->s.output_section_statement.subsection_alignment = -1;
1038 ret->s.output_section_statement.section_alignment = -1;
1039 ret->s.output_section_statement.block_value = 1;
1040 lang_list_init (&ret->s.output_section_statement.children);
1041 lang_statement_append (stat_ptr, &ret->s, &ret->s.header.next);
384a9dda 1042
218868ba
AM
1043 /* For every output section statement added to the list, except the
1044 first one, lang_output_section_statement.tail points to the "next"
1045 field of the last element of the list. */
1046 if (lang_output_section_statement.head != NULL)
409d7240
AM
1047 ret->s.output_section_statement.prev
1048 = ((lang_output_section_statement_type *)
1049 ((char *) lang_output_section_statement.tail
1050 - offsetof (lang_output_section_statement_type, next)));
218868ba 1051
384a9dda
AM
1052 /* GCC's strict aliasing rules prevent us from just casting the
1053 address, so we store the pointer in a variable and cast that
1054 instead. */
409d7240 1055 nextp = &ret->s.output_section_statement.next;
384a9dda 1056 lang_statement_append (&lang_output_section_statement,
409d7240 1057 &ret->s,
384a9dda
AM
1058 (lang_statement_union_type **) nextp);
1059 return &ret->root;
750877ba
L
1060}
1061
1062static void
409d7240 1063output_section_statement_table_init (void)
750877ba 1064{
409d7240
AM
1065 if (!bfd_hash_table_init_n (&output_section_statement_table,
1066 output_section_statement_newfunc,
1067 sizeof (struct out_section_hash_entry),
66eb6687 1068 61))
384a9dda 1069 einfo (_("%P%F: can not create hash table: %E\n"));
750877ba
L
1070}
1071
1072static void
409d7240 1073output_section_statement_table_free (void)
750877ba 1074{
409d7240 1075 bfd_hash_table_free (&output_section_statement_table);
750877ba
L
1076}
1077
08da4cac
KH
1078/* Build enough state so that the parser can build its tree. */
1079
252b5132 1080void
1579bae1 1081lang_init (void)
252b5132
RH
1082{
1083 obstack_begin (&stat_obstack, 1000);
1084
1085 stat_ptr = &statement_list;
1086
409d7240 1087 output_section_statement_table_init ();
750877ba 1088
252b5132
RH
1089 lang_list_init (stat_ptr);
1090
1091 lang_list_init (&input_file_chain);
1092 lang_list_init (&lang_output_section_statement);
1093 lang_list_init (&file_chain);
1579bae1
AM
1094 first_file = lang_add_input_file (NULL, lang_input_file_is_marker_enum,
1095 NULL);
08da4cac
KH
1096 abs_output_section =
1097 lang_output_section_statement_lookup (BFD_ABS_SECTION_NAME);
252b5132
RH
1098
1099 abs_output_section->bfd_section = bfd_abs_section_ptr;
420e579c
HPN
1100
1101 /* The value "3" is ad-hoc, somewhat related to the expected number of
1102 DEFINED expressions in a linker script. For most default linker
1103 scripts, there are none. Why a hash table then? Well, it's somewhat
1104 simpler to re-use working machinery than using a linked list in terms
1105 of code-complexity here in ld, besides the initialization which just
1106 looks like other code here. */
688c58f3 1107 if (!bfd_hash_table_init_n (&lang_definedness_table,
66eb6687
AM
1108 lang_definedness_newfunc,
1109 sizeof (struct lang_definedness_hash_entry),
1110 3))
384a9dda 1111 einfo (_("%P%F: can not create hash table: %E\n"));
252b5132
RH
1112}
1113
750877ba
L
1114void
1115lang_finish (void)
1116{
409d7240 1117 output_section_statement_table_free ();
750877ba
L
1118}
1119
252b5132 1120/*----------------------------------------------------------------------
08da4cac
KH
1121 A region is an area of memory declared with the
1122 MEMORY { name:org=exp, len=exp ... }
1123 syntax.
252b5132 1124
08da4cac 1125 We maintain a list of all the regions here.
252b5132 1126
08da4cac 1127 If no regions are specified in the script, then the default is used
a747ee4d
NC
1128 which is created when looked up to be the entire data space.
1129
1130 If create is true we are creating a region inside a MEMORY block.
1131 In this case it is probably an error to create a region that has
1132 already been created. If we are not inside a MEMORY block it is
1133 dubious to use an undeclared region name (except DEFAULT_MEMORY_REGION)
1134 and so we issue a warning. */
252b5132
RH
1135
1136static lang_memory_region_type *lang_memory_region_list;
6feb9908
AM
1137static lang_memory_region_type **lang_memory_region_list_tail
1138 = &lang_memory_region_list;
252b5132
RH
1139
1140lang_memory_region_type *
a747ee4d 1141lang_memory_region_lookup (const char *const name, bfd_boolean create)
252b5132
RH
1142{
1143 lang_memory_region_type *p;
1579bae1 1144 lang_memory_region_type *new;
252b5132 1145
9f88b410
RS
1146 /* NAME is NULL for LMA memspecs if no region was specified. */
1147 if (name == NULL)
1148 return NULL;
1149
1579bae1 1150 for (p = lang_memory_region_list; p != NULL; p = p->next)
a747ee4d
NC
1151 if (strcmp (p->name, name) == 0)
1152 {
1153 if (create)
6feb9908
AM
1154 einfo (_("%P:%S: warning: redeclaration of memory region '%s'\n"),
1155 name);
1579bae1 1156 return p;
a747ee4d 1157 }
252b5132 1158
a747ee4d
NC
1159 if (!create && strcmp (name, DEFAULT_MEMORY_REGION))
1160 einfo (_("%P:%S: warning: memory region %s not declared\n"), name);
1161
1579bae1 1162 new = stat_alloc (sizeof (lang_memory_region_type));
252b5132 1163
1579bae1
AM
1164 new->name = xstrdup (name);
1165 new->next = NULL;
1579bae1 1166 new->origin = 0;
1579bae1
AM
1167 new->length = ~(bfd_size_type) 0;
1168 new->current = 0;
66e28d60
AM
1169 new->last_os = NULL;
1170 new->flags = 0;
1171 new->not_flags = 0;
1579bae1 1172 new->had_full_message = FALSE;
252b5132 1173
66e28d60
AM
1174 *lang_memory_region_list_tail = new;
1175 lang_memory_region_list_tail = &new->next;
1176
1579bae1 1177 return new;
252b5132
RH
1178}
1179
5f992e62 1180static lang_memory_region_type *
1579bae1 1181lang_memory_default (asection *section)
252b5132
RH
1182{
1183 lang_memory_region_type *p;
1184
1185 flagword sec_flags = section->flags;
1186
1187 /* Override SEC_DATA to mean a writable section. */
1188 if ((sec_flags & (SEC_ALLOC | SEC_READONLY | SEC_CODE)) == SEC_ALLOC)
1189 sec_flags |= SEC_DATA;
1190
1579bae1 1191 for (p = lang_memory_region_list; p != NULL; p = p->next)
252b5132
RH
1192 {
1193 if ((p->flags & sec_flags) != 0
1194 && (p->not_flags & sec_flags) == 0)
1195 {
1196 return p;
1197 }
1198 }
a747ee4d 1199 return lang_memory_region_lookup (DEFAULT_MEMORY_REGION, FALSE);
252b5132
RH
1200}
1201
384a9dda
AM
1202lang_output_section_statement_type *
1203lang_output_section_find (const char *const name)
252b5132 1204{
409d7240 1205 struct out_section_hash_entry *entry;
750877ba 1206 unsigned long hash;
252b5132 1207
409d7240
AM
1208 entry = ((struct out_section_hash_entry *)
1209 bfd_hash_lookup (&output_section_statement_table, name,
1210 FALSE, FALSE));
384a9dda 1211 if (entry == NULL)
750877ba
L
1212 return NULL;
1213
1214 hash = entry->root.hash;
1215 do
252b5132 1216 {
409d7240
AM
1217 if (entry->s.output_section_statement.constraint != -1)
1218 return &entry->s.output_section_statement;
1219 entry = (struct out_section_hash_entry *) entry->root.next;
252b5132 1220 }
750877ba
L
1221 while (entry != NULL
1222 && entry->root.hash == hash
409d7240 1223 && strcmp (name, entry->s.output_section_statement.name) == 0);
750877ba 1224
1579bae1 1225 return NULL;
252b5132
RH
1226}
1227
0841712e
JJ
1228static lang_output_section_statement_type *
1229lang_output_section_statement_lookup_1 (const char *const name, int constraint)
252b5132 1230{
409d7240
AM
1231 struct out_section_hash_entry *entry;
1232 struct out_section_hash_entry *last_ent;
384a9dda
AM
1233 unsigned long hash;
1234
409d7240
AM
1235 entry = ((struct out_section_hash_entry *)
1236 bfd_hash_lookup (&output_section_statement_table, name,
1237 TRUE, FALSE));
384a9dda
AM
1238 if (entry == NULL)
1239 {
1240 einfo (_("%P%F: failed creating section `%s': %E\n"), name);
1241 return NULL;
1242 }
252b5132 1243
409d7240 1244 if (entry->s.output_section_statement.name != NULL)
252b5132 1245 {
384a9dda
AM
1246 /* We have a section of this name, but it might not have the correct
1247 constraint. */
1248 hash = entry->root.hash;
1249 do
1250 {
409d7240 1251 if (entry->s.output_section_statement.constraint != -1
384a9dda 1252 && (constraint == 0
409d7240 1253 || (constraint == entry->s.output_section_statement.constraint
384a9dda 1254 && constraint != SPECIAL)))
409d7240 1255 return &entry->s.output_section_statement;
384a9dda 1256 last_ent = entry;
409d7240 1257 entry = (struct out_section_hash_entry *) entry->root.next;
384a9dda
AM
1258 }
1259 while (entry != NULL
1260 && entry->root.hash == hash
409d7240 1261 && strcmp (name, entry->s.output_section_statement.name) == 0);
252b5132 1262
409d7240
AM
1263 entry
1264 = ((struct out_section_hash_entry *)
1265 output_section_statement_newfunc (NULL,
1266 &output_section_statement_table,
1267 name));
750877ba 1268 if (entry == NULL)
384a9dda
AM
1269 {
1270 einfo (_("%P%F: failed creating section `%s': %E\n"), name);
1271 return NULL;
1272 }
1273 entry->root = last_ent->root;
1274 last_ent->root.next = &entry->root;
252b5132 1275 }
384a9dda 1276
409d7240
AM
1277 entry->s.output_section_statement.name = name;
1278 entry->s.output_section_statement.constraint = constraint;
1279 return &entry->s.output_section_statement;
252b5132
RH
1280}
1281
0841712e
JJ
1282lang_output_section_statement_type *
1283lang_output_section_statement_lookup (const char *const name)
1284{
1285 return lang_output_section_statement_lookup_1 (name, 0);
1286}
1287
afd7a018
AM
1288/* A variant of lang_output_section_find used by place_orphan.
1289 Returns the output statement that should precede a new output
1290 statement for SEC. If an exact match is found on certain flags,
1291 sets *EXACT too. */
1292
1293lang_output_section_statement_type *
1294lang_output_section_find_by_flags (const asection *sec,
390fbbf1
AM
1295 lang_output_section_statement_type **exact,
1296 lang_match_sec_type_func match_type)
afd7a018
AM
1297{
1298 lang_output_section_statement_type *first, *look, *found;
1299 flagword flags;
1300
1301 /* We know the first statement on this list is *ABS*. May as well
1302 skip it. */
1303 first = &lang_output_section_statement.head->output_section_statement;
1304 first = first->next;
1305
1306 /* First try for an exact match. */
1307 found = NULL;
1308 for (look = first; look; look = look->next)
1309 {
1310 flags = look->flags;
1311 if (look->bfd_section != NULL)
ecca9871
L
1312 {
1313 flags = look->bfd_section->flags;
390fbbf1
AM
1314 if (match_type && !match_type (output_bfd, look->bfd_section,
1315 sec->owner, sec))
ecca9871
L
1316 continue;
1317 }
afd7a018
AM
1318 flags ^= sec->flags;
1319 if (!(flags & (SEC_HAS_CONTENTS | SEC_ALLOC | SEC_LOAD | SEC_READONLY
1320 | SEC_CODE | SEC_SMALL_DATA | SEC_THREAD_LOCAL)))
1321 found = look;
1322 }
1323 if (found != NULL)
1324 {
390fbbf1
AM
1325 if (exact != NULL)
1326 *exact = found;
afd7a018
AM
1327 return found;
1328 }
1329
1330 if (sec->flags & SEC_CODE)
1331 {
1332 /* Try for a rw code section. */
1333 for (look = first; look; look = look->next)
1334 {
1335 flags = look->flags;
1336 if (look->bfd_section != NULL)
ecca9871
L
1337 {
1338 flags = look->bfd_section->flags;
390fbbf1
AM
1339 if (match_type && !match_type (output_bfd, look->bfd_section,
1340 sec->owner, sec))
ecca9871
L
1341 continue;
1342 }
afd7a018
AM
1343 flags ^= sec->flags;
1344 if (!(flags & (SEC_HAS_CONTENTS | SEC_ALLOC | SEC_LOAD
1345 | SEC_CODE | SEC_SMALL_DATA | SEC_THREAD_LOCAL)))
1346 found = look;
1347 }
afd7a018 1348 }
390fbbf1 1349 else if (sec->flags & (SEC_READONLY | SEC_THREAD_LOCAL))
afd7a018
AM
1350 {
1351 /* .rodata can go after .text, .sdata2 after .rodata. */
1352 for (look = first; look; look = look->next)
1353 {
1354 flags = look->flags;
1355 if (look->bfd_section != NULL)
ecca9871
L
1356 {
1357 flags = look->bfd_section->flags;
390fbbf1
AM
1358 if (match_type && !match_type (output_bfd, look->bfd_section,
1359 sec->owner, sec))
ecca9871
L
1360 continue;
1361 }
afd7a018
AM
1362 flags ^= sec->flags;
1363 if (!(flags & (SEC_HAS_CONTENTS | SEC_ALLOC | SEC_LOAD
1364 | SEC_READONLY))
1365 && !(look->flags & (SEC_SMALL_DATA | SEC_THREAD_LOCAL)))
1366 found = look;
1367 }
afd7a018 1368 }
390fbbf1 1369 else if (sec->flags & SEC_SMALL_DATA)
afd7a018
AM
1370 {
1371 /* .sdata goes after .data, .sbss after .sdata. */
1372 for (look = first; look; look = look->next)
1373 {
1374 flags = look->flags;
1375 if (look->bfd_section != NULL)
ecca9871
L
1376 {
1377 flags = look->bfd_section->flags;
390fbbf1
AM
1378 if (match_type && !match_type (output_bfd, look->bfd_section,
1379 sec->owner, sec))
ecca9871
L
1380 continue;
1381 }
afd7a018
AM
1382 flags ^= sec->flags;
1383 if (!(flags & (SEC_HAS_CONTENTS | SEC_ALLOC | SEC_LOAD
1384 | SEC_THREAD_LOCAL))
1385 || ((look->flags & SEC_SMALL_DATA)
1386 && !(sec->flags & SEC_HAS_CONTENTS)))
1387 found = look;
1388 }
afd7a018 1389 }
390fbbf1 1390 else if (sec->flags & SEC_HAS_CONTENTS)
afd7a018
AM
1391 {
1392 /* .data goes after .rodata. */
1393 for (look = first; look; look = look->next)
1394 {
1395 flags = look->flags;
1396 if (look->bfd_section != NULL)
ecca9871
L
1397 {
1398 flags = look->bfd_section->flags;
390fbbf1
AM
1399 if (match_type && !match_type (output_bfd, look->bfd_section,
1400 sec->owner, sec))
ecca9871
L
1401 continue;
1402 }
afd7a018
AM
1403 flags ^= sec->flags;
1404 if (!(flags & (SEC_HAS_CONTENTS | SEC_ALLOC | SEC_LOAD
1405 | SEC_SMALL_DATA | SEC_THREAD_LOCAL)))
1406 found = look;
1407 }
afd7a018 1408 }
390fbbf1 1409 else
afd7a018 1410 {
390fbbf1
AM
1411 /* .bss goes last. */
1412 for (look = first; look; look = look->next)
ecca9871 1413 {
390fbbf1
AM
1414 flags = look->flags;
1415 if (look->bfd_section != NULL)
1416 {
1417 flags = look->bfd_section->flags;
1418 if (match_type && !match_type (output_bfd, look->bfd_section,
1419 sec->owner, sec))
1420 continue;
1421 }
1422 flags ^= sec->flags;
1423 if (!(flags & SEC_ALLOC))
1424 found = look;
ecca9871 1425 }
afd7a018
AM
1426 }
1427
390fbbf1
AM
1428 if (found || !match_type)
1429 return found;
1430
1431 return lang_output_section_find_by_flags (sec, NULL, NULL);
afd7a018
AM
1432}
1433
1434/* Find the last output section before given output statement.
1435 Used by place_orphan. */
1436
1437static asection *
1438output_prev_sec_find (lang_output_section_statement_type *os)
1439{
afd7a018
AM
1440 lang_output_section_statement_type *lookup;
1441
218868ba 1442 for (lookup = os->prev; lookup != NULL; lookup = lookup->prev)
afd7a018
AM
1443 {
1444 if (lookup->constraint == -1)
1445 continue;
afd7a018
AM
1446
1447 if (lookup->bfd_section != NULL && lookup->bfd_section->owner != NULL)
218868ba 1448 return lookup->bfd_section;
afd7a018
AM
1449 }
1450
1451 return NULL;
1452}
1453
1454lang_output_section_statement_type *
7b986e99 1455lang_insert_orphan (asection *s,
afd7a018
AM
1456 const char *secname,
1457 lang_output_section_statement_type *after,
1458 struct orphan_save *place,
1459 etree_type *address,
1460 lang_statement_list_type *add_child)
1461{
1462 lang_statement_list_type *old;
1463 lang_statement_list_type add;
1464 const char *ps;
afd7a018
AM
1465 lang_output_section_statement_type *os;
1466 lang_output_section_statement_type **os_tail;
1467
1468 /* Start building a list of statements for this section.
1469 First save the current statement pointer. */
1470 old = stat_ptr;
1471
1472 /* If we have found an appropriate place for the output section
1473 statements for this orphan, add them to our own private list,
1474 inserting them later into the global statement list. */
1475 if (after != NULL)
1476 {
1477 stat_ptr = &add;
1478 lang_list_init (stat_ptr);
1479 }
1480
1481 ps = NULL;
1482 if (config.build_constructors)
1483 {
1484 /* If the name of the section is representable in C, then create
1485 symbols to mark the start and the end of the section. */
1486 for (ps = secname; *ps != '\0'; ps++)
1487 if (! ISALNUM ((unsigned char) *ps) && *ps != '_')
1488 break;
1489 if (*ps == '\0')
1490 {
1491 char *symname;
1492 etree_type *e_align;
1493
1494 symname = (char *) xmalloc (ps - secname + sizeof "__start_" + 1);
1495 symname[0] = bfd_get_symbol_leading_char (output_bfd);
1496 sprintf (symname + (symname[0] != 0), "__start_%s", secname);
1497 e_align = exp_unop (ALIGN_K,
1498 exp_intop ((bfd_vma) 1 << s->alignment_power));
1499 lang_add_assignment (exp_assop ('=', ".", e_align));
34711ca3
AM
1500 lang_add_assignment (exp_provide (symname,
1501 exp_nameop (NAME, "."),
1502 FALSE));
afd7a018
AM
1503 }
1504 }
1505
1506 if (link_info.relocatable || (s->flags & (SEC_LOAD | SEC_ALLOC)) == 0)
1507 address = exp_intop (0);
1508
afd7a018
AM
1509 os_tail = ((lang_output_section_statement_type **)
1510 lang_output_section_statement.tail);
1511 os = lang_enter_output_section_statement (secname, address, 0, NULL, NULL,
66e28d60 1512 NULL, 0);
afd7a018
AM
1513
1514 if (add_child == NULL)
1515 add_child = &os->children;
7b986e99 1516 lang_add_section (add_child, s, os);
afd7a018
AM
1517
1518 lang_leave_output_section_statement (0, "*default*", NULL, NULL);
1519
1520 if (config.build_constructors && *ps == '\0')
1521 {
1522 char *symname;
1523
1524 /* lang_leave_ouput_section_statement resets stat_ptr.
1525 Put stat_ptr back where we want it. */
1526 if (after != NULL)
1527 stat_ptr = &add;
1528
1529 symname = (char *) xmalloc (ps - secname + sizeof "__stop_" + 1);
1530 symname[0] = bfd_get_symbol_leading_char (output_bfd);
1531 sprintf (symname + (symname[0] != 0), "__stop_%s", secname);
34711ca3
AM
1532 lang_add_assignment (exp_provide (symname,
1533 exp_nameop (NAME, "."),
1534 FALSE));
afd7a018
AM
1535 }
1536
1537 /* Restore the global list pointer. */
1538 if (after != NULL)
1539 stat_ptr = old;
1540
1541 if (after != NULL && os->bfd_section != NULL)
1542 {
5daa8fe7 1543 asection *snew, *as;
afd7a018
AM
1544
1545 snew = os->bfd_section;
1546
1547 /* Shuffle the bfd section list to make the output file look
1548 neater. This is really only cosmetic. */
1549 if (place->section == NULL
1550 && after != (&lang_output_section_statement.head
1551 ->output_section_statement))
1552 {
1553 asection *bfd_section = after->bfd_section;
1554
1555 /* If the output statement hasn't been used to place any input
1556 sections (and thus doesn't have an output bfd_section),
1557 look for the closest prior output statement having an
1558 output section. */
1559 if (bfd_section == NULL)
1560 bfd_section = output_prev_sec_find (after);
1561
1562 if (bfd_section != NULL && bfd_section != snew)
1563 place->section = &bfd_section->next;
1564 }
1565
1566 if (place->section == NULL)
1567 place->section = &output_bfd->sections;
1568
5daa8fe7 1569 as = *place->section;
5e542ba7
MS
1570
1571 if (!as)
329c1c86
AM
1572 {
1573 /* Put the section at the end of the list. */
5e542ba7
MS
1574
1575 /* Unlink the section. */
1576 bfd_section_list_remove (output_bfd, snew);
1577
1578 /* Now tack it back on in the right place. */
1579 bfd_section_list_append (output_bfd, snew);
329c1c86 1580 }
5e542ba7 1581 else if (as != snew && as->prev != snew)
5daa8fe7
L
1582 {
1583 /* Unlink the section. */
1584 bfd_section_list_remove (output_bfd, snew);
afd7a018 1585
5daa8fe7
L
1586 /* Now tack it back on in the right place. */
1587 bfd_section_list_insert_before (output_bfd, as, snew);
1588 }
afd7a018
AM
1589
1590 /* Save the end of this list. Further ophans of this type will
1591 follow the one we've just added. */
1592 place->section = &snew->next;
1593
1594 /* The following is non-cosmetic. We try to put the output
1595 statements in some sort of reasonable order here, because they
1596 determine the final load addresses of the orphan sections.
1597 In addition, placing output statements in the wrong order may
1598 require extra segments. For instance, given a typical
1599 situation of all read-only sections placed in one segment and
1600 following that a segment containing all the read-write
1601 sections, we wouldn't want to place an orphan read/write
1602 section before or amongst the read-only ones. */
1603 if (add.head != NULL)
1604 {
1605 lang_output_section_statement_type *newly_added_os;
1606
1607 if (place->stmt == NULL)
1608 {
1609 lang_statement_union_type **where;
1610 lang_statement_union_type **assign = NULL;
be529132 1611 bfd_boolean ignore_first;
afd7a018
AM
1612
1613 /* Look for a suitable place for the new statement list.
1614 The idea is to skip over anything that might be inside
1615 a SECTIONS {} statement in a script, before we find
1616 another output_section_statement. Assignments to "dot"
1617 before an output section statement are assumed to
be529132
AM
1618 belong to it. An exception to this rule is made for
1619 the first assignment to dot, otherwise we might put an
1620 orphan before . = . + SIZEOF_HEADERS or similar
1621 assignments that set the initial address. */
1622
1623 ignore_first = after == (&lang_output_section_statement.head
1624 ->output_section_statement);
afd7a018
AM
1625 for (where = &after->header.next;
1626 *where != NULL;
1627 where = &(*where)->header.next)
1628 {
1629 switch ((*where)->header.type)
1630 {
1631 case lang_assignment_statement_enum:
1632 if (assign == NULL)
1633 {
1634 lang_assignment_statement_type *ass;
1635 ass = &(*where)->assignment_statement;
1636 if (ass->exp->type.node_class != etree_assert
1637 && ass->exp->assign.dst[0] == '.'
be529132
AM
1638 && ass->exp->assign.dst[1] == 0
1639 && !ignore_first)
afd7a018
AM
1640 assign = where;
1641 }
be529132 1642 ignore_first = FALSE;
afd7a018
AM
1643 continue;
1644 case lang_wild_statement_enum:
1645 case lang_input_section_enum:
1646 case lang_object_symbols_statement_enum:
1647 case lang_fill_statement_enum:
1648 case lang_data_statement_enum:
1649 case lang_reloc_statement_enum:
1650 case lang_padding_statement_enum:
1651 case lang_constructors_statement_enum:
1652 assign = NULL;
1653 continue;
1654 case lang_output_section_statement_enum:
1655 if (assign != NULL)
1656 where = assign;
1657 case lang_input_statement_enum:
1658 case lang_address_statement_enum:
1659 case lang_target_statement_enum:
1660 case lang_output_statement_enum:
1661 case lang_group_statement_enum:
1662 case lang_afile_asection_pair_statement_enum:
1663 break;
1664 }
1665 break;
1666 }
1667
1668 *add.tail = *where;
1669 *where = add.head;
1670
1671 place->os_tail = &after->next;
1672 }
1673 else
1674 {
1675 /* Put it after the last orphan statement we added. */
1676 *add.tail = *place->stmt;
1677 *place->stmt = add.head;
1678 }
1679
1680 /* Fix the global list pointer if we happened to tack our
1681 new list at the tail. */
1682 if (*old->tail == add.head)
1683 old->tail = add.tail;
1684
1685 /* Save the end of this list. */
1686 place->stmt = add.tail;
1687
1688 /* Do the same for the list of output section statements. */
1689 newly_added_os = *os_tail;
1690 *os_tail = NULL;
218868ba
AM
1691 newly_added_os->prev = (lang_output_section_statement_type *)
1692 ((char *) place->os_tail
1693 - offsetof (lang_output_section_statement_type, next));
afd7a018 1694 newly_added_os->next = *place->os_tail;
218868ba
AM
1695 if (newly_added_os->next != NULL)
1696 newly_added_os->next->prev = newly_added_os;
afd7a018
AM
1697 *place->os_tail = newly_added_os;
1698 place->os_tail = &newly_added_os->next;
1699
1700 /* Fixing the global list pointer here is a little different.
1701 We added to the list in lang_enter_output_section_statement,
1702 trimmed off the new output_section_statment above when
1703 assigning *os_tail = NULL, but possibly added it back in
1704 the same place when assigning *place->os_tail. */
1705 if (*os_tail == NULL)
1706 lang_output_section_statement.tail
1707 = (lang_statement_union_type **) os_tail;
1708 }
1709 }
1710 return os;
1711}
1712
252b5132 1713static void
1579bae1 1714lang_map_flags (flagword flag)
252b5132
RH
1715{
1716 if (flag & SEC_ALLOC)
1717 minfo ("a");
1718
1719 if (flag & SEC_CODE)
1720 minfo ("x");
1721
1722 if (flag & SEC_READONLY)
1723 minfo ("r");
1724
1725 if (flag & SEC_DATA)
1726 minfo ("w");
1727
1728 if (flag & SEC_LOAD)
1729 minfo ("l");
1730}
1731
1732void
1579bae1 1733lang_map (void)
252b5132
RH
1734{
1735 lang_memory_region_type *m;
4d4920ec 1736 bfd_boolean dis_header_printed = FALSE;
35835446 1737 bfd *p;
252b5132 1738
4d4920ec
EB
1739 LANG_FOR_EACH_INPUT_STATEMENT (file)
1740 {
1741 asection *s;
1742
1743 if ((file->the_bfd->flags & (BFD_LINKER_CREATED | DYNAMIC)) != 0
1744 || file->just_syms_flag)
1745 continue;
1746
1747 for (s = file->the_bfd->sections; s != NULL; s = s->next)
a14a5de3
AM
1748 if ((s->output_section == NULL
1749 || s->output_section->owner != output_bfd)
1750 && (s->flags & (SEC_LINKER_CREATED | SEC_KEEP)) == 0)
4d4920ec
EB
1751 {
1752 if (! dis_header_printed)
1753 {
1754 fprintf (config.map_file, _("\nDiscarded input sections\n\n"));
1755 dis_header_printed = TRUE;
1756 }
1757
1758 print_input_section (s);
1759 }
1760 }
1761
252b5132
RH
1762 minfo (_("\nMemory Configuration\n\n"));
1763 fprintf (config.map_file, "%-16s %-18s %-18s %s\n",
1764 _("Name"), _("Origin"), _("Length"), _("Attributes"));
1765
1579bae1 1766 for (m = lang_memory_region_list; m != NULL; m = m->next)
252b5132
RH
1767 {
1768 char buf[100];
1769 int len;
1770
1771 fprintf (config.map_file, "%-16s ", m->name);
1772
1773 sprintf_vma (buf, m->origin);
1774 minfo ("0x%s ", buf);
1775 len = strlen (buf);
1776 while (len < 16)
1777 {
1778 print_space ();
1779 ++len;
1780 }
1781
1782 minfo ("0x%V", m->length);
1783 if (m->flags || m->not_flags)
1784 {
1785#ifndef BFD64
1786 minfo (" ");
1787#endif
1788 if (m->flags)
1789 {
1790 print_space ();
1791 lang_map_flags (m->flags);
1792 }
1793
1794 if (m->not_flags)
1795 {
1796 minfo (" !");
1797 lang_map_flags (m->not_flags);
1798 }
1799 }
1800
1801 print_nl ();
1802 }
1803
1804 fprintf (config.map_file, _("\nLinker script and memory map\n\n"));
1805
c0f00686 1806 if (! link_info.reduce_memory_overheads)
35835446
JR
1807 {
1808 obstack_begin (&map_obstack, 1000);
1809 for (p = link_info.input_bfds; p != (bfd *) NULL; p = p->link_next)
1810 bfd_map_over_sections (p, init_map_userdata, 0);
1811 bfd_link_hash_traverse (link_info.hash, sort_def_symbol, 0);
1812 }
252b5132
RH
1813 print_statements ();
1814}
1815
35835446
JR
1816static void
1817init_map_userdata (abfd, sec, data)
1818 bfd *abfd ATTRIBUTE_UNUSED;
1819 asection *sec;
1820 void *data ATTRIBUTE_UNUSED;
1821{
1822 fat_section_userdata_type *new_data
1823 = ((fat_section_userdata_type *) (stat_alloc
1824 (sizeof (fat_section_userdata_type))));
1825
1826 ASSERT (get_userdata (sec) == NULL);
1827 get_userdata (sec) = new_data;
1828 new_data->map_symbol_def_tail = &new_data->map_symbol_def_head;
1829}
1830
1831static bfd_boolean
1832sort_def_symbol (hash_entry, info)
1833 struct bfd_link_hash_entry *hash_entry;
1834 void *info ATTRIBUTE_UNUSED;
1835{
1836 if (hash_entry->type == bfd_link_hash_defined
1837 || hash_entry->type == bfd_link_hash_defweak)
1838 {
1839 struct fat_user_section_struct *ud;
1840 struct map_symbol_def *def;
1841
1842 ud = get_userdata (hash_entry->u.def.section);
1843 if (! ud)
1844 {
1845 /* ??? What do we have to do to initialize this beforehand? */
1846 /* The first time we get here is bfd_abs_section... */
1847 init_map_userdata (0, hash_entry->u.def.section, 0);
1848 ud = get_userdata (hash_entry->u.def.section);
1849 }
1850 else if (!ud->map_symbol_def_tail)
1851 ud->map_symbol_def_tail = &ud->map_symbol_def_head;
afd7a018 1852
6feb9908 1853 def = obstack_alloc (&map_obstack, sizeof *def);
35835446 1854 def->entry = hash_entry;
76d7af2d 1855 *(ud->map_symbol_def_tail) = def;
35835446
JR
1856 ud->map_symbol_def_tail = &def->next;
1857 }
1858 return TRUE;
1859}
1860
252b5132
RH
1861/* Initialize an output section. */
1862
1863static void
12d814e1
L
1864init_os (lang_output_section_statement_type *s, asection *isec,
1865 flagword flags)
252b5132 1866{
252b5132
RH
1867 if (s->bfd_section != NULL)
1868 return;
1869
1870 if (strcmp (s->name, DISCARD_SECTION_NAME) == 0)
6f9efd97 1871 einfo (_("%P%F: Illegal use of `%s' section\n"), DISCARD_SECTION_NAME);
252b5132 1872
252b5132 1873 s->bfd_section = bfd_get_section_by_name (output_bfd, s->name);
1579bae1 1874 if (s->bfd_section == NULL)
12d814e1
L
1875 s->bfd_section = bfd_make_section_with_flags (output_bfd, s->name,
1876 flags);
1579bae1 1877 if (s->bfd_section == NULL)
252b5132
RH
1878 {
1879 einfo (_("%P%F: output format %s cannot represent section called %s\n"),
1880 output_bfd->xvec->name, s->name);
1881 }
1882 s->bfd_section->output_section = s->bfd_section;
252b5132 1883 s->bfd_section->output_offset = 0;
e0f6802f 1884
c0f00686 1885 if (!link_info.reduce_memory_overheads)
72223188
JJ
1886 {
1887 fat_section_userdata_type *new
1888 = stat_alloc (sizeof (fat_section_userdata_type));
1889 memset (new, 0, sizeof (fat_section_userdata_type));
1890 get_userdata (s->bfd_section) = new;
1891 }
1892
252b5132
RH
1893 /* If there is a base address, make sure that any sections it might
1894 mention are initialized. */
1895 if (s->addr_tree != NULL)
1896 exp_init_os (s->addr_tree);
18794b0c
AM
1897
1898 if (s->load_base != NULL)
1899 exp_init_os (s->load_base);
ccd2ec6a 1900
7270c5ed
AM
1901 /* If supplied an alignment, set it. */
1902 if (s->section_alignment != -1)
1903 s->bfd_section->alignment_power = s->section_alignment;
1904
ccd2ec6a
L
1905 if (isec)
1906 bfd_init_private_section_data (isec->owner, isec,
1907 output_bfd, s->bfd_section,
1908 &link_info);
252b5132
RH
1909}
1910
1911/* Make sure that all output sections mentioned in an expression are
1912 initialized. */
1913
1914static void
1579bae1 1915exp_init_os (etree_type *exp)
252b5132
RH
1916{
1917 switch (exp->type.node_class)
1918 {
1919 case etree_assign:
9f4fb502 1920 case etree_provide:
252b5132
RH
1921 exp_init_os (exp->assign.src);
1922 break;
1923
1924 case etree_binary:
1925 exp_init_os (exp->binary.lhs);
1926 exp_init_os (exp->binary.rhs);
1927 break;
1928
1929 case etree_trinary:
1930 exp_init_os (exp->trinary.cond);
1931 exp_init_os (exp->trinary.lhs);
1932 exp_init_os (exp->trinary.rhs);
1933 break;
1934
b6ca8815
NS
1935 case etree_assert:
1936 exp_init_os (exp->assert_s.child);
1937 break;
afd7a018 1938
252b5132
RH
1939 case etree_unary:
1940 exp_init_os (exp->unary.child);
1941 break;
1942
1943 case etree_name:
1944 switch (exp->type.node_code)
1945 {
1946 case ADDR:
1947 case LOADADDR:
1948 case SIZEOF:
1949 {
1950 lang_output_section_statement_type *os;
1951
1952 os = lang_output_section_find (exp->name.name);
1953 if (os != NULL && os->bfd_section == NULL)
12d814e1 1954 init_os (os, NULL, 0);
252b5132
RH
1955 }
1956 }
1957 break;
1958
1959 default:
1960 break;
1961 }
1962}
9503fd87 1963\f
252b5132 1964static void
1579bae1 1965section_already_linked (bfd *abfd, asection *sec, void *data)
252b5132 1966{
1579bae1 1967 lang_input_statement_type *entry = data;
252b5132
RH
1968
1969 /* If we are only reading symbols from this object, then we want to
1970 discard all sections. */
1971 if (entry->just_syms_flag)
1972 {
1449d79b 1973 bfd_link_just_syms (abfd, sec, &link_info);
252b5132
RH
1974 return;
1975 }
1976
ace66bb2 1977 if (!(abfd->flags & DYNAMIC))
c0f00686 1978 bfd_section_already_linked (abfd, sec, &link_info);
252b5132
RH
1979}
1980\f
1981/* The wild routines.
1982
1983 These expand statements like *(.text) and foo.o to a list of
1984 explicit actions, like foo.o(.text), bar.o(.text) and
1985 foo.o(.text, .data). */
1986
252b5132
RH
1987/* Add SECTION to the output section OUTPUT. Do this by creating a
1988 lang_input_section statement which is placed at PTR. FILE is the
1989 input file which holds SECTION. */
1990
1991void
1579bae1
AM
1992lang_add_section (lang_statement_list_type *ptr,
1993 asection *section,
7b986e99 1994 lang_output_section_statement_type *output)
252b5132 1995{
164e712d 1996 flagword flags = section->flags;
b34976b6 1997 bfd_boolean discard;
252b5132 1998
e49f5022 1999 /* Discard sections marked with SEC_EXCLUDE. */
b3096250 2000 discard = (flags & SEC_EXCLUDE) != 0;
252b5132
RH
2001
2002 /* Discard input sections which are assigned to a section named
2003 DISCARD_SECTION_NAME. */
2004 if (strcmp (output->name, DISCARD_SECTION_NAME) == 0)
b34976b6 2005 discard = TRUE;
252b5132
RH
2006
2007 /* Discard debugging sections if we are stripping debugging
2008 information. */
2009 if ((link_info.strip == strip_debugger || link_info.strip == strip_all)
2010 && (flags & SEC_DEBUGGING) != 0)
b34976b6 2011 discard = TRUE;
252b5132
RH
2012
2013 if (discard)
2014 {
2015 if (section->output_section == NULL)
2016 {
2017 /* This prevents future calls from assigning this section. */
2018 section->output_section = bfd_abs_section_ptr;
2019 }
2020 return;
2021 }
2022
2023 if (section->output_section == NULL)
2024 {
b34976b6 2025 bfd_boolean first;
252b5132
RH
2026 lang_input_section_type *new;
2027 flagword flags;
2028
12d814e1
L
2029 flags = section->flags;
2030
2031 /* We don't copy the SEC_NEVER_LOAD flag from an input section
2032 to an output section, because we want to be able to include a
2033 SEC_NEVER_LOAD section in the middle of an otherwise loaded
2034 section (I don't know why we want to do this, but we do).
2035 build_link_order in ldwrite.c handles this case by turning
2036 the embedded SEC_NEVER_LOAD section into a fill. */
2037
2038 flags &= ~ SEC_NEVER_LOAD;
2039
2040 switch (output->sectype)
2041 {
2042 case normal_section:
2043 break;
2044 case noalloc_section:
2045 flags &= ~SEC_ALLOC;
2046 break;
2047 case noload_section:
2048 flags &= ~SEC_LOAD;
2049 flags |= SEC_NEVER_LOAD;
2050 break;
2051 }
2052
252b5132 2053 if (output->bfd_section == NULL)
12d814e1 2054 init_os (output, section, flags);
d1778b88
AM
2055
2056 first = ! output->bfd_section->linker_has_input;
2057 output->bfd_section->linker_has_input = 1;
252b5132 2058
8423293d
AM
2059 if (!link_info.relocatable
2060 && !stripped_excluded_sections)
2061 {
2062 asection *s = output->bfd_section->map_tail.s;
2063 output->bfd_section->map_tail.s = section;
2064 section->map_head.s = NULL;
2065 section->map_tail.s = s;
2066 if (s != NULL)
2067 s->map_head.s = section;
2068 else
2069 output->bfd_section->map_head.s = section;
2070 }
2071
08da4cac 2072 /* Add a section reference to the list. */
252b5132
RH
2073 new = new_stat (lang_input_section, ptr);
2074
2075 new->section = section;
252b5132
RH
2076 section->output_section = output->bfd_section;
2077
252b5132
RH
2078 /* If final link, don't copy the SEC_LINK_ONCE flags, they've
2079 already been processed. One reason to do this is that on pe
2080 format targets, .text$foo sections go into .text and it's odd
2081 to see .text with SEC_LINK_ONCE set. */
2082
1049f94e 2083 if (! link_info.relocatable)
252b5132
RH
2084 flags &= ~ (SEC_LINK_ONCE | SEC_LINK_DUPLICATES);
2085
2086 /* If this is not the first input section, and the SEC_READONLY
afd7a018
AM
2087 flag is not currently set, then don't set it just because the
2088 input section has it set. */
252b5132 2089
afd7a018 2090 if (! first && (output->bfd_section->flags & SEC_READONLY) == 0)
252b5132
RH
2091 flags &= ~ SEC_READONLY;
2092
f5fa8ca2
JJ
2093 /* Keep SEC_MERGE and SEC_STRINGS only if they are the same. */
2094 if (! first
afd7a018 2095 && ((output->bfd_section->flags & (SEC_MERGE | SEC_STRINGS))
f5fa8ca2
JJ
2096 != (flags & (SEC_MERGE | SEC_STRINGS))
2097 || ((flags & SEC_MERGE)
afd7a018 2098 && output->bfd_section->entsize != section->entsize)))
f5fa8ca2 2099 {
afd7a018 2100 output->bfd_section->flags &= ~ (SEC_MERGE | SEC_STRINGS);
f5fa8ca2
JJ
2101 flags &= ~ (SEC_MERGE | SEC_STRINGS);
2102 }
2103
afd7a018 2104 output->bfd_section->flags |= flags;
252b5132 2105
f5fa8ca2 2106 if (flags & SEC_MERGE)
afd7a018 2107 output->bfd_section->entsize = section->entsize;
f5fa8ca2 2108
252b5132 2109 /* If SEC_READONLY is not set in the input section, then clear
afd7a018 2110 it from the output section. */
252b5132 2111 if ((section->flags & SEC_READONLY) == 0)
afd7a018 2112 output->bfd_section->flags &= ~SEC_READONLY;
252b5132 2113
667f5177
ILT
2114 /* Copy over SEC_SMALL_DATA. */
2115 if (section->flags & SEC_SMALL_DATA)
afd7a018 2116 output->bfd_section->flags |= SEC_SMALL_DATA;
9e41f973 2117
252b5132
RH
2118 if (section->alignment_power > output->bfd_section->alignment_power)
2119 output->bfd_section->alignment_power = section->alignment_power;
2120
ebe372c1
L
2121 if (bfd_get_arch (section->owner) == bfd_arch_tic54x
2122 && (section->flags & SEC_TIC54X_BLOCK) != 0)
08da4cac 2123 {
ebe372c1 2124 output->bfd_section->flags |= SEC_TIC54X_BLOCK;
08da4cac
KH
2125 /* FIXME: This value should really be obtained from the bfd... */
2126 output->block_value = 128;
2127 }
252b5132
RH
2128 }
2129}
2130
2131/* Handle wildcard sorting. This returns the lang_input_section which
2132 should follow the one we are going to create for SECTION and FILE,
2133 based on the sorting requirements of WILD. It returns NULL if the
2134 new section should just go at the end of the current list. */
2135
2136static lang_statement_union_type *
1579bae1
AM
2137wild_sort (lang_wild_statement_type *wild,
2138 struct wildcard_list *sec,
2139 lang_input_statement_type *file,
2140 asection *section)
252b5132
RH
2141{
2142 const char *section_name;
2143 lang_statement_union_type *l;
2144
bcaa7b3e
L
2145 if (!wild->filenames_sorted
2146 && (sec == NULL || sec->spec.sorted == none))
252b5132
RH
2147 return NULL;
2148
2149 section_name = bfd_get_section_name (file->the_bfd, section);
bba1a0c0 2150 for (l = wild->children.head; l != NULL; l = l->header.next)
252b5132
RH
2151 {
2152 lang_input_section_type *ls;
2153
2154 if (l->header.type != lang_input_section_enum)
2155 continue;
2156 ls = &l->input_section;
2157
2158 /* Sorting by filename takes precedence over sorting by section
afd7a018 2159 name. */
252b5132
RH
2160
2161 if (wild->filenames_sorted)
2162 {
2163 const char *fn, *ln;
b34976b6 2164 bfd_boolean fa, la;
252b5132
RH
2165 int i;
2166
2167 /* The PE support for the .idata section as generated by
afd7a018
AM
2168 dlltool assumes that files will be sorted by the name of
2169 the archive and then the name of the file within the
2170 archive. */
252b5132
RH
2171
2172 if (file->the_bfd != NULL
2173 && bfd_my_archive (file->the_bfd) != NULL)
2174 {
2175 fn = bfd_get_filename (bfd_my_archive (file->the_bfd));
b34976b6 2176 fa = TRUE;
252b5132
RH
2177 }
2178 else
2179 {
2180 fn = file->filename;
b34976b6 2181 fa = FALSE;
252b5132
RH
2182 }
2183
7b986e99 2184 if (bfd_my_archive (ls->section->owner) != NULL)
252b5132 2185 {
7b986e99 2186 ln = bfd_get_filename (bfd_my_archive (ls->section->owner));
b34976b6 2187 la = TRUE;
252b5132
RH
2188 }
2189 else
2190 {
7b986e99 2191 ln = ls->section->owner->filename;
b34976b6 2192 la = FALSE;
252b5132
RH
2193 }
2194
2195 i = strcmp (fn, ln);
2196 if (i > 0)
2197 continue;
2198 else if (i < 0)
2199 break;
2200
2201 if (fa || la)
2202 {
2203 if (fa)
2204 fn = file->filename;
2205 if (la)
7b986e99 2206 ln = ls->section->owner->filename;
252b5132
RH
2207
2208 i = strcmp (fn, ln);
2209 if (i > 0)
2210 continue;
2211 else if (i < 0)
2212 break;
2213 }
2214 }
2215
2216 /* Here either the files are not sorted by name, or we are
afd7a018 2217 looking at the sections for this file. */
252b5132 2218
bcaa7b3e 2219 if (sec != NULL && sec->spec.sorted != none)
32124d5b
AM
2220 if (compare_section (sec->spec.sorted, section, ls->section) < 0)
2221 break;
252b5132
RH
2222 }
2223
2224 return l;
2225}
2226
2227/* Expand a wild statement for a particular FILE. SECTION may be
2228 NULL, in which case it is a wild card. */
2229
2230static void
1579bae1
AM
2231output_section_callback (lang_wild_statement_type *ptr,
2232 struct wildcard_list *sec,
2233 asection *section,
2234 lang_input_statement_type *file,
2235 void *output)
4dec4d4e
RH
2236{
2237 lang_statement_union_type *before;
5f992e62 2238
b6bf44ba 2239 /* Exclude sections that match UNIQUE_SECTION_LIST. */
d0d6a25b 2240 if (unique_section_p (section))
b6bf44ba
AM
2241 return;
2242
b6bf44ba 2243 before = wild_sort (ptr, sec, file, section);
5f992e62 2244
4dec4d4e
RH
2245 /* Here BEFORE points to the lang_input_section which
2246 should follow the one we are about to add. If BEFORE
2247 is NULL, then the section should just go at the end
2248 of the current list. */
5f992e62 2249
4dec4d4e 2250 if (before == NULL)
39dcfe18 2251 lang_add_section (&ptr->children, section,
7b986e99 2252 (lang_output_section_statement_type *) output);
4dec4d4e 2253 else
252b5132 2254 {
4dec4d4e
RH
2255 lang_statement_list_type list;
2256 lang_statement_union_type **pp;
5f992e62 2257
4dec4d4e 2258 lang_list_init (&list);
39dcfe18 2259 lang_add_section (&list, section,
7b986e99 2260 (lang_output_section_statement_type *) output);
5f992e62 2261
4dec4d4e
RH
2262 /* If we are discarding the section, LIST.HEAD will
2263 be NULL. */
2264 if (list.head != NULL)
252b5132 2265 {
bba1a0c0 2266 ASSERT (list.head->header.next == NULL);
5f992e62 2267
4dec4d4e
RH
2268 for (pp = &ptr->children.head;
2269 *pp != before;
bba1a0c0 2270 pp = &(*pp)->header.next)
4dec4d4e 2271 ASSERT (*pp != NULL);
5f992e62 2272
bba1a0c0 2273 list.head->header.next = *pp;
4dec4d4e 2274 *pp = list.head;
252b5132
RH
2275 }
2276 }
2277}
2278
0841712e
JJ
2279/* Check if all sections in a wild statement for a particular FILE
2280 are readonly. */
2281
2282static void
2283check_section_callback (lang_wild_statement_type *ptr ATTRIBUTE_UNUSED,
2284 struct wildcard_list *sec ATTRIBUTE_UNUSED,
2285 asection *section,
2286 lang_input_statement_type *file ATTRIBUTE_UNUSED,
6feb9908 2287 void *data)
0841712e
JJ
2288{
2289 /* Exclude sections that match UNIQUE_SECTION_LIST. */
2290 if (unique_section_p (section))
2291 return;
2292
6feb9908
AM
2293 if (section->output_section == NULL && (section->flags & SEC_READONLY) == 0)
2294 ((lang_output_section_statement_type *) data)->all_input_readonly = FALSE;
0841712e
JJ
2295}
2296
252b5132
RH
2297/* This is passed a file name which must have been seen already and
2298 added to the statement tree. We will see if it has been opened
2299 already and had its symbols read. If not then we'll read it. */
2300
2301static lang_input_statement_type *
1579bae1 2302lookup_name (const char *name)
252b5132
RH
2303{
2304 lang_input_statement_type *search;
2305
2306 for (search = (lang_input_statement_type *) input_file_chain.head;
1579bae1 2307 search != NULL;
252b5132
RH
2308 search = (lang_input_statement_type *) search->next_real_file)
2309 {
0013291d
NC
2310 /* Use the local_sym_name as the name of the file that has
2311 already been loaded as filename might have been transformed
2312 via the search directory lookup mechanism. */
87aa7f19 2313 const char *filename = search->local_sym_name;
0013291d 2314
0013291d 2315 if (filename != NULL
0013291d 2316 && strcmp (filename, name) == 0)
252b5132
RH
2317 break;
2318 }
2319
1579bae1 2320 if (search == NULL)
6feb9908
AM
2321 search = new_afile (name, lang_input_file_is_search_file_enum,
2322 default_target, FALSE);
252b5132
RH
2323
2324 /* If we have already added this file, or this file is not real
87aa7f19
AM
2325 don't add this file. */
2326 if (search->loaded || !search->real)
252b5132
RH
2327 return search;
2328
1579bae1 2329 if (! load_symbols (search, NULL))
6770ec8c 2330 return NULL;
252b5132
RH
2331
2332 return search;
2333}
2334
b58f81ae
DJ
2335/* Save LIST as a list of libraries whose symbols should not be exported. */
2336
2337struct excluded_lib
2338{
2339 char *name;
2340 struct excluded_lib *next;
2341};
2342static struct excluded_lib *excluded_libs;
2343
2344void
2345add_excluded_libs (const char *list)
2346{
2347 const char *p = list, *end;
2348
2349 while (*p != '\0')
2350 {
2351 struct excluded_lib *entry;
2352 end = strpbrk (p, ",:");
2353 if (end == NULL)
2354 end = p + strlen (p);
2355 entry = xmalloc (sizeof (*entry));
2356 entry->next = excluded_libs;
2357 entry->name = xmalloc (end - p + 1);
2358 memcpy (entry->name, p, end - p);
2359 entry->name[end - p] = '\0';
2360 excluded_libs = entry;
2361 if (*end == '\0')
329c1c86 2362 break;
b58f81ae
DJ
2363 p = end + 1;
2364 }
2365}
2366
2367static void
2368check_excluded_libs (bfd *abfd)
2369{
2370 struct excluded_lib *lib = excluded_libs;
2371
2372 while (lib)
2373 {
2374 int len = strlen (lib->name);
2375 const char *filename = lbasename (abfd->filename);
2376
2377 if (strcmp (lib->name, "ALL") == 0)
2378 {
2379 abfd->no_export = TRUE;
2380 return;
2381 }
2382
2383 if (strncmp (lib->name, filename, len) == 0
2384 && (filename[len] == '\0'
2385 || (filename[len] == '.' && filename[len + 1] == 'a'
2386 && filename[len + 2] == '\0')))
2387 {
2388 abfd->no_export = TRUE;
2389 return;
2390 }
2391
2392 lib = lib->next;
2393 }
2394}
2395
252b5132
RH
2396/* Get the symbols for an input file. */
2397
e9f53129 2398bfd_boolean
1579bae1
AM
2399load_symbols (lang_input_statement_type *entry,
2400 lang_statement_list_type *place)
252b5132
RH
2401{
2402 char **matching;
2403
2404 if (entry->loaded)
b34976b6 2405 return TRUE;
252b5132
RH
2406
2407 ldfile_open_file (entry);
2408
2409 if (! bfd_check_format (entry->the_bfd, bfd_archive)
2410 && ! bfd_check_format_matches (entry->the_bfd, bfd_object, &matching))
2411 {
2412 bfd_error_type err;
2413 lang_statement_list_type *hold;
b34976b6 2414 bfd_boolean bad_load = TRUE;
e3f2db7f 2415 bfd_boolean save_ldlang_sysrooted_script;
f2e349f9 2416 bfd_boolean save_as_needed, save_add_needed;
b7a26f91 2417
252b5132 2418 err = bfd_get_error ();
884fb58e
NC
2419
2420 /* See if the emulation has some special knowledge. */
2421 if (ldemul_unrecognized_file (entry))
b34976b6 2422 return TRUE;
884fb58e 2423
252b5132
RH
2424 if (err == bfd_error_file_ambiguously_recognized)
2425 {
2426 char **p;
2427
2428 einfo (_("%B: file not recognized: %E\n"), entry->the_bfd);
2429 einfo (_("%B: matching formats:"), entry->the_bfd);
2430 for (p = matching; *p != NULL; p++)
2431 einfo (" %s", *p);
2432 einfo ("%F\n");
2433 }
2434 else if (err != bfd_error_file_not_recognized
2435 || place == NULL)
6770ec8c
NC
2436 einfo (_("%F%B: file not recognized: %E\n"), entry->the_bfd);
2437 else
b34976b6 2438 bad_load = FALSE;
b7a26f91 2439
252b5132
RH
2440 bfd_close (entry->the_bfd);
2441 entry->the_bfd = NULL;
2442
252b5132 2443 /* Try to interpret the file as a linker script. */
252b5132
RH
2444 ldfile_open_command_file (entry->filename);
2445
2446 hold = stat_ptr;
2447 stat_ptr = place;
e3f2db7f
AO
2448 save_ldlang_sysrooted_script = ldlang_sysrooted_script;
2449 ldlang_sysrooted_script = entry->sysrooted;
f2e349f9
KK
2450 save_as_needed = as_needed;
2451 as_needed = entry->as_needed;
2452 save_add_needed = add_needed;
2453 add_needed = entry->add_needed;
252b5132 2454
b34976b6 2455 ldfile_assumed_script = TRUE;
252b5132 2456 parser_input = input_script;
532345f2
L
2457 /* We want to use the same -Bdynamic/-Bstatic as the one for
2458 ENTRY. */
2459 config.dynamic_link = entry->dynamic;
252b5132 2460 yyparse ();
b34976b6 2461 ldfile_assumed_script = FALSE;
252b5132 2462
e3f2db7f 2463 ldlang_sysrooted_script = save_ldlang_sysrooted_script;
f2e349f9
KK
2464 as_needed = save_as_needed;
2465 add_needed = save_add_needed;
252b5132
RH
2466 stat_ptr = hold;
2467
6770ec8c 2468 return ! bad_load;
252b5132
RH
2469 }
2470
2471 if (ldemul_recognized_file (entry))
b34976b6 2472 return TRUE;
252b5132
RH
2473
2474 /* We don't call ldlang_add_file for an archive. Instead, the
2475 add_symbols entry point will call ldlang_add_file, via the
2476 add_archive_element callback, for each element of the archive
2477 which is used. */
2478 switch (bfd_get_format (entry->the_bfd))
2479 {
2480 default:
2481 break;
2482
2483 case bfd_object:
2484 ldlang_add_file (entry);
2485 if (trace_files || trace_file_tries)
2486 info_msg ("%I\n", entry);
2487 break;
2488
2489 case bfd_archive:
b58f81ae
DJ
2490 check_excluded_libs (entry->the_bfd);
2491
252b5132
RH
2492 if (entry->whole_archive)
2493 {
b7a26f91 2494 bfd *member = NULL;
b34976b6 2495 bfd_boolean loaded = TRUE;
6770ec8c
NC
2496
2497 for (;;)
252b5132 2498 {
6770ec8c
NC
2499 member = bfd_openr_next_archived_file (entry->the_bfd, member);
2500
2501 if (member == NULL)
2502 break;
b7a26f91 2503
252b5132 2504 if (! bfd_check_format (member, bfd_object))
6770ec8c
NC
2505 {
2506 einfo (_("%F%B: member %B in archive is not an object\n"),
2507 entry->the_bfd, member);
b34976b6 2508 loaded = FALSE;
6770ec8c
NC
2509 }
2510
252b5132
RH
2511 if (! ((*link_info.callbacks->add_archive_element)
2512 (&link_info, member, "--whole-archive")))
2513 abort ();
6770ec8c 2514
252b5132 2515 if (! bfd_link_add_symbols (member, &link_info))
6770ec8c
NC
2516 {
2517 einfo (_("%F%B: could not read symbols: %E\n"), member);
b34976b6 2518 loaded = FALSE;
6770ec8c 2519 }
252b5132
RH
2520 }
2521
6770ec8c
NC
2522 entry->loaded = loaded;
2523 return loaded;
252b5132 2524 }
6770ec8c 2525 break;
252b5132
RH
2526 }
2527
03bdc404 2528 if (bfd_link_add_symbols (entry->the_bfd, &link_info))
b34976b6 2529 entry->loaded = TRUE;
6770ec8c 2530 else
252b5132
RH
2531 einfo (_("%F%B: could not read symbols: %E\n"), entry->the_bfd);
2532
6770ec8c 2533 return entry->loaded;
252b5132
RH
2534}
2535
b6bf44ba
AM
2536/* Handle a wild statement. S->FILENAME or S->SECTION_LIST or both
2537 may be NULL, indicating that it is a wildcard. Separate
2538 lang_input_section statements are created for each part of the
2539 expansion; they are added after the wild statement S. OUTPUT is
2540 the output section. */
252b5132
RH
2541
2542static void
1579bae1
AM
2543wild (lang_wild_statement_type *s,
2544 const char *target ATTRIBUTE_UNUSED,
2545 lang_output_section_statement_type *output)
252b5132 2546{
b6bf44ba 2547 struct wildcard_list *sec;
252b5132 2548
50c77e5d 2549 if (s->handler_data[0]
329c1c86 2550 && s->handler_data[0]->spec.sorted == by_name
50c77e5d
NC
2551 && !s->filenames_sorted)
2552 {
329c1c86
AM
2553 lang_section_bst_type *tree;
2554
50c77e5d
NC
2555 walk_wild (s, output_section_callback_fast, output);
2556
e6f2cbf5 2557 tree = s->tree;
329c1c86 2558 if (tree)
e6f2cbf5
L
2559 {
2560 output_section_callback_tree_to_list (s, tree, output);
2561 s->tree = NULL;
2562 }
50c77e5d 2563 }
329c1c86 2564 else
50c77e5d 2565 walk_wild (s, output_section_callback, output);
b6bf44ba 2566
abe6ac95
AM
2567 if (default_common_section == NULL)
2568 for (sec = s->section_list; sec != NULL; sec = sec->next)
b6bf44ba
AM
2569 if (sec->spec.name != NULL && strcmp (sec->spec.name, "COMMON") == 0)
2570 {
2571 /* Remember the section that common is going to in case we
b7a26f91 2572 later get something which doesn't know where to put it. */
b6bf44ba 2573 default_common_section = output;
abe6ac95 2574 break;
b6bf44ba 2575 }
252b5132
RH
2576}
2577
b34976b6 2578/* Return TRUE iff target is the sought target. */
08da4cac 2579
e50d8076 2580static int
1579bae1 2581get_target (const bfd_target *target, void *data)
e50d8076 2582{
1579bae1 2583 const char *sought = data;
5f992e62 2584
e50d8076
NC
2585 return strcmp (target->name, sought) == 0;
2586}
2587
2588/* Like strcpy() but convert to lower case as well. */
08da4cac 2589
e50d8076 2590static void
1579bae1 2591stricpy (char *dest, char *src)
e50d8076
NC
2592{
2593 char c;
5f992e62 2594
08da4cac 2595 while ((c = *src++) != 0)
3882b010 2596 *dest++ = TOLOWER (c);
e50d8076 2597
08da4cac 2598 *dest = 0;
e50d8076
NC
2599}
2600
396a2467 2601/* Remove the first occurrence of needle (if any) in haystack
e50d8076 2602 from haystack. */
08da4cac 2603
e50d8076 2604static void
1579bae1 2605strcut (char *haystack, char *needle)
e50d8076
NC
2606{
2607 haystack = strstr (haystack, needle);
5f992e62 2608
e50d8076
NC
2609 if (haystack)
2610 {
08da4cac 2611 char *src;
e50d8076 2612
08da4cac
KH
2613 for (src = haystack + strlen (needle); *src;)
2614 *haystack++ = *src++;
5f992e62 2615
08da4cac 2616 *haystack = 0;
e50d8076
NC
2617 }
2618}
2619
2620/* Compare two target format name strings.
2621 Return a value indicating how "similar" they are. */
08da4cac 2622
e50d8076 2623static int
1579bae1 2624name_compare (char *first, char *second)
e50d8076 2625{
08da4cac
KH
2626 char *copy1;
2627 char *copy2;
2628 int result;
5f992e62 2629
e50d8076
NC
2630 copy1 = xmalloc (strlen (first) + 1);
2631 copy2 = xmalloc (strlen (second) + 1);
2632
2633 /* Convert the names to lower case. */
2634 stricpy (copy1, first);
2635 stricpy (copy2, second);
2636
1579bae1 2637 /* Remove size and endian strings from the name. */
e50d8076
NC
2638 strcut (copy1, "big");
2639 strcut (copy1, "little");
2640 strcut (copy2, "big");
2641 strcut (copy2, "little");
2642
2643 /* Return a value based on how many characters match,
2644 starting from the beginning. If both strings are
2645 the same then return 10 * their length. */
08da4cac
KH
2646 for (result = 0; copy1[result] == copy2[result]; result++)
2647 if (copy1[result] == 0)
e50d8076
NC
2648 {
2649 result *= 10;
2650 break;
2651 }
5f992e62 2652
e50d8076
NC
2653 free (copy1);
2654 free (copy2);
2655
2656 return result;
2657}
2658
2659/* Set by closest_target_match() below. */
08da4cac 2660static const bfd_target *winner;
e50d8076
NC
2661
2662/* Scan all the valid bfd targets looking for one that has the endianness
2663 requirement that was specified on the command line, and is the nearest
2664 match to the original output target. */
08da4cac 2665
e50d8076 2666static int
1579bae1 2667closest_target_match (const bfd_target *target, void *data)
e50d8076 2668{
1579bae1 2669 const bfd_target *original = data;
5f992e62 2670
08da4cac
KH
2671 if (command_line.endian == ENDIAN_BIG
2672 && target->byteorder != BFD_ENDIAN_BIG)
e50d8076 2673 return 0;
5f992e62 2674
08da4cac
KH
2675 if (command_line.endian == ENDIAN_LITTLE
2676 && target->byteorder != BFD_ENDIAN_LITTLE)
e50d8076
NC
2677 return 0;
2678
2679 /* Must be the same flavour. */
2680 if (target->flavour != original->flavour)
2681 return 0;
2682
2683 /* If we have not found a potential winner yet, then record this one. */
2684 if (winner == NULL)
2685 {
2686 winner = target;
2687 return 0;
2688 }
2689
2690 /* Oh dear, we now have two potential candidates for a successful match.
4de2d33d 2691 Compare their names and choose the better one. */
d1778b88
AM
2692 if (name_compare (target->name, original->name)
2693 > name_compare (winner->name, original->name))
e50d8076
NC
2694 winner = target;
2695
2696 /* Keep on searching until wqe have checked them all. */
2697 return 0;
2698}
2699
2700/* Return the BFD target format of the first input file. */
08da4cac 2701
e50d8076 2702static char *
1579bae1 2703get_first_input_target (void)
e50d8076 2704{
08da4cac 2705 char *target = NULL;
e50d8076
NC
2706
2707 LANG_FOR_EACH_INPUT_STATEMENT (s)
2708 {
2709 if (s->header.type == lang_input_statement_enum
2710 && s->real)
2711 {
2712 ldfile_open_file (s);
5f992e62 2713
e50d8076
NC
2714 if (s->the_bfd != NULL
2715 && bfd_check_format (s->the_bfd, bfd_object))
2716 {
2717 target = bfd_get_target (s->the_bfd);
5f992e62 2718
e50d8076
NC
2719 if (target != NULL)
2720 break;
2721 }
2722 }
2723 }
5f992e62 2724
e50d8076
NC
2725 return target;
2726}
2727
599917b8 2728const char *
1579bae1 2729lang_get_output_target (void)
599917b8
JJ
2730{
2731 const char *target;
2732
2733 /* Has the user told us which output format to use? */
1579bae1 2734 if (output_target != NULL)
599917b8
JJ
2735 return output_target;
2736
2737 /* No - has the current target been set to something other than
2738 the default? */
2739 if (current_target != default_target)
2740 return current_target;
2741
2742 /* No - can we determine the format of the first input file? */
2743 target = get_first_input_target ();
2744 if (target != NULL)
2745 return target;
2746
2747 /* Failed - use the default output target. */
2748 return default_target;
2749}
2750
252b5132
RH
2751/* Open the output file. */
2752
2753static bfd *
1579bae1 2754open_output (const char *name)
252b5132 2755{
08da4cac 2756 bfd *output;
252b5132 2757
599917b8 2758 output_target = lang_get_output_target ();
5f992e62 2759
08da4cac
KH
2760 /* Has the user requested a particular endianness on the command
2761 line? */
e50d8076
NC
2762 if (command_line.endian != ENDIAN_UNSET)
2763 {
08da4cac 2764 const bfd_target *target;
1b69a0bf 2765 enum bfd_endian desired_endian;
e50d8076
NC
2766
2767 /* Get the chosen target. */
1579bae1 2768 target = bfd_search_for_target (get_target, (void *) output_target);
e50d8076 2769
c13b1b77
NC
2770 /* If the target is not supported, we cannot do anything. */
2771 if (target != NULL)
e50d8076 2772 {
c13b1b77
NC
2773 if (command_line.endian == ENDIAN_BIG)
2774 desired_endian = BFD_ENDIAN_BIG;
e50d8076 2775 else
c13b1b77 2776 desired_endian = BFD_ENDIAN_LITTLE;
5f992e62
AM
2777
2778 /* See if the target has the wrong endianness. This should
2779 not happen if the linker script has provided big and
2780 little endian alternatives, but some scrips don't do
2781 this. */
c13b1b77 2782 if (target->byteorder != desired_endian)
e50d8076 2783 {
c13b1b77
NC
2784 /* If it does, then see if the target provides
2785 an alternative with the correct endianness. */
2786 if (target->alternative_target != NULL
2787 && (target->alternative_target->byteorder == desired_endian))
2788 output_target = target->alternative_target->name;
e50d8076 2789 else
c13b1b77 2790 {
5f992e62
AM
2791 /* Try to find a target as similar as possible to
2792 the default target, but which has the desired
2793 endian characteristic. */
1579bae1
AM
2794 bfd_search_for_target (closest_target_match,
2795 (void *) target);
5f992e62
AM
2796
2797 /* Oh dear - we could not find any targets that
2798 satisfy our requirements. */
c13b1b77 2799 if (winner == NULL)
6feb9908
AM
2800 einfo (_("%P: warning: could not find any targets"
2801 " that match endianness requirement\n"));
c13b1b77
NC
2802 else
2803 output_target = winner->name;
2804 }
e50d8076
NC
2805 }
2806 }
252b5132 2807 }
5f992e62 2808
252b5132
RH
2809 output = bfd_openw (name, output_target);
2810
1579bae1 2811 if (output == NULL)
252b5132
RH
2812 {
2813 if (bfd_get_error () == bfd_error_invalid_target)
e50d8076
NC
2814 einfo (_("%P%F: target %s not found\n"), output_target);
2815
252b5132
RH
2816 einfo (_("%P%F: cannot open output file %s: %E\n"), name);
2817 }
2818
b34976b6 2819 delete_output_file_on_failure = TRUE;
252b5132 2820
252b5132
RH
2821 if (! bfd_set_format (output, bfd_object))
2822 einfo (_("%P%F:%s: can not make object file: %E\n"), name);
2823 if (! bfd_set_arch_mach (output,
2824 ldfile_output_architecture,
2825 ldfile_output_machine))
2826 einfo (_("%P%F:%s: can not set architecture: %E\n"), name);
2827
2828 link_info.hash = bfd_link_hash_table_create (output);
1579bae1 2829 if (link_info.hash == NULL)
384a9dda 2830 einfo (_("%P%F: can not create hash table: %E\n"));
252b5132
RH
2831
2832 bfd_set_gp_size (output, g_switch_value);
2833 return output;
2834}
2835
252b5132 2836static void
1579bae1 2837ldlang_open_output (lang_statement_union_type *statement)
252b5132
RH
2838{
2839 switch (statement->header.type)
2840 {
2841 case lang_output_statement_enum:
1579bae1 2842 ASSERT (output_bfd == NULL);
252b5132
RH
2843 output_bfd = open_output (statement->output_statement.name);
2844 ldemul_set_output_arch ();
1049f94e 2845 if (config.magic_demand_paged && !link_info.relocatable)
252b5132
RH
2846 output_bfd->flags |= D_PAGED;
2847 else
2848 output_bfd->flags &= ~D_PAGED;
2849 if (config.text_read_only)
2850 output_bfd->flags |= WP_TEXT;
2851 else
2852 output_bfd->flags &= ~WP_TEXT;
2853 if (link_info.traditional_format)
2854 output_bfd->flags |= BFD_TRADITIONAL_FORMAT;
2855 else
2856 output_bfd->flags &= ~BFD_TRADITIONAL_FORMAT;
2857 break;
2858
2859 case lang_target_statement_enum:
2860 current_target = statement->target_statement.target;
2861 break;
2862 default:
2863 break;
2864 }
2865}
2866
e5caa5e0
AM
2867/* Convert between addresses in bytes and sizes in octets.
2868 For currently supported targets, octets_per_byte is always a power
2869 of two, so we can use shifts. */
2870#define TO_ADDR(X) ((X) >> opb_shift)
2871#define TO_SIZE(X) ((X) << opb_shift)
2872
2873/* Support the above. */
2874static unsigned int opb_shift = 0;
2875
2876static void
2877init_opb (void)
2878{
2879 unsigned x = bfd_arch_mach_octets_per_byte (ldfile_output_architecture,
2880 ldfile_output_machine);
2881 opb_shift = 0;
2882 if (x > 1)
2883 while ((x & 1) == 0)
2884 {
2885 x >>= 1;
2886 ++opb_shift;
2887 }
2888 ASSERT (x == 1);
2889}
2890
252b5132
RH
2891/* Open all the input files. */
2892
2893static void
1579bae1 2894open_input_bfds (lang_statement_union_type *s, bfd_boolean force)
252b5132 2895{
1579bae1 2896 for (; s != NULL; s = s->header.next)
252b5132
RH
2897 {
2898 switch (s->header.type)
2899 {
2900 case lang_constructors_statement_enum:
2901 open_input_bfds (constructor_list.head, force);
2902 break;
2903 case lang_output_section_statement_enum:
2904 open_input_bfds (s->output_section_statement.children.head, force);
2905 break;
2906 case lang_wild_statement_enum:
08da4cac 2907 /* Maybe we should load the file's symbols. */
252b5132
RH
2908 if (s->wild_statement.filename
2909 && ! wildcardp (s->wild_statement.filename))
4a43e768 2910 lookup_name (s->wild_statement.filename);
252b5132
RH
2911 open_input_bfds (s->wild_statement.children.head, force);
2912 break;
2913 case lang_group_statement_enum:
2914 {
2915 struct bfd_link_hash_entry *undefs;
2916
2917 /* We must continually search the entries in the group
08da4cac
KH
2918 until no new symbols are added to the list of undefined
2919 symbols. */
252b5132
RH
2920
2921 do
2922 {
2923 undefs = link_info.hash->undefs_tail;
b34976b6 2924 open_input_bfds (s->group_statement.children.head, TRUE);
252b5132
RH
2925 }
2926 while (undefs != link_info.hash->undefs_tail);
2927 }
2928 break;
2929 case lang_target_statement_enum:
2930 current_target = s->target_statement.target;
2931 break;
2932 case lang_input_statement_enum:
e50d8076 2933 if (s->input_statement.real)
252b5132
RH
2934 {
2935 lang_statement_list_type add;
2936
2937 s->input_statement.target = current_target;
2938
2939 /* If we are being called from within a group, and this
afd7a018
AM
2940 is an archive which has already been searched, then
2941 force it to be researched unless the whole archive
cd4c806a 2942 has been loaded already. */
252b5132 2943 if (force
cd4c806a 2944 && !s->input_statement.whole_archive
252b5132
RH
2945 && s->input_statement.loaded
2946 && bfd_check_format (s->input_statement.the_bfd,
2947 bfd_archive))
b34976b6 2948 s->input_statement.loaded = FALSE;
252b5132 2949
d1778b88 2950 lang_list_init (&add);
1276aefa 2951
6770ec8c 2952 if (! load_symbols (&s->input_statement, &add))
b34976b6 2953 config.make_executable = FALSE;
252b5132
RH
2954
2955 if (add.head != NULL)
2956 {
bba1a0c0
AM
2957 *add.tail = s->header.next;
2958 s->header.next = add.head;
252b5132
RH
2959 }
2960 }
2961 break;
2962 default:
2963 break;
2964 }
2965 }
2966}
2967
420e579c
HPN
2968/* Add a symbol to a hash of symbols used in DEFINED (NAME) expressions. */
2969
2970void
2971lang_track_definedness (const char *name)
2972{
2973 if (bfd_hash_lookup (&lang_definedness_table, name, TRUE, FALSE) == NULL)
2974 einfo (_("%P%F: bfd_hash_lookup failed creating symbol %s\n"), name);
2975}
2976
2977/* New-function for the definedness hash table. */
2978
2979static struct bfd_hash_entry *
2980lang_definedness_newfunc (struct bfd_hash_entry *entry,
2981 struct bfd_hash_table *table ATTRIBUTE_UNUSED,
2982 const char *name ATTRIBUTE_UNUSED)
2983{
2984 struct lang_definedness_hash_entry *ret
2985 = (struct lang_definedness_hash_entry *) entry;
2986
2987 if (ret == NULL)
2988 ret = (struct lang_definedness_hash_entry *)
2989 bfd_hash_allocate (table, sizeof (struct lang_definedness_hash_entry));
2990
2991 if (ret == NULL)
2992 einfo (_("%P%F: bfd_hash_allocate failed creating symbol %s\n"), name);
2993
2994 ret->iteration = -1;
2995 return &ret->root;
2996}
2997
2998/* Return the iteration when the definition of NAME was last updated. A
2999 value of -1 means that the symbol is not defined in the linker script
3000 or the command line, but may be defined in the linker symbol table. */
3001
3002int
3003lang_symbol_definition_iteration (const char *name)
3004{
3005 struct lang_definedness_hash_entry *defentry
3006 = (struct lang_definedness_hash_entry *)
3007 bfd_hash_lookup (&lang_definedness_table, name, FALSE, FALSE);
3008
3009 /* We've already created this one on the presence of DEFINED in the
3010 script, so it can't be NULL unless something is borked elsewhere in
3011 the code. */
3012 if (defentry == NULL)
3013 FAIL ();
3014
3015 return defentry->iteration;
3016}
3017
3018/* Update the definedness state of NAME. */
3019
3020void
3021lang_update_definedness (const char *name, struct bfd_link_hash_entry *h)
3022{
3023 struct lang_definedness_hash_entry *defentry
3024 = (struct lang_definedness_hash_entry *)
3025 bfd_hash_lookup (&lang_definedness_table, name, FALSE, FALSE);
3026
3027 /* We don't keep track of symbols not tested with DEFINED. */
3028 if (defentry == NULL)
3029 return;
3030
3031 /* If the symbol was already defined, and not from an earlier statement
3032 iteration, don't update the definedness iteration, because that'd
3033 make the symbol seem defined in the linker script at this point, and
3034 it wasn't; it was defined in some object. If we do anyway, DEFINED
3035 would start to yield false before this point and the construct "sym =
3036 DEFINED (sym) ? sym : X;" would change sym to X despite being defined
3037 in an object. */
3038 if (h->type != bfd_link_hash_undefined
3039 && h->type != bfd_link_hash_common
3040 && h->type != bfd_link_hash_new
3041 && defentry->iteration == -1)
3042 return;
3043
3044 defentry->iteration = lang_statement_iteration;
3045}
3046
08da4cac 3047/* Add the supplied name to the symbol table as an undefined reference.
fcf0e35b
AM
3048 This is a two step process as the symbol table doesn't even exist at
3049 the time the ld command line is processed. First we put the name
3050 on a list, then, once the output file has been opened, transfer the
3051 name to the symbol table. */
3052
e3e942e9 3053typedef struct bfd_sym_chain ldlang_undef_chain_list_type;
252b5132 3054
e3e942e9 3055#define ldlang_undef_chain_list_head entry_symbol.next
252b5132
RH
3056
3057void
1579bae1 3058ldlang_add_undef (const char *const name)
252b5132
RH
3059{
3060 ldlang_undef_chain_list_type *new =
1579bae1 3061 stat_alloc (sizeof (ldlang_undef_chain_list_type));
252b5132
RH
3062
3063 new->next = ldlang_undef_chain_list_head;
3064 ldlang_undef_chain_list_head = new;
3065
d1b2b2dc 3066 new->name = xstrdup (name);
fcf0e35b
AM
3067
3068 if (output_bfd != NULL)
3069 insert_undefined (new->name);
3070}
3071
3072/* Insert NAME as undefined in the symbol table. */
3073
3074static void
1579bae1 3075insert_undefined (const char *name)
fcf0e35b
AM
3076{
3077 struct bfd_link_hash_entry *h;
3078
b34976b6 3079 h = bfd_link_hash_lookup (link_info.hash, name, TRUE, FALSE, TRUE);
1579bae1 3080 if (h == NULL)
fcf0e35b
AM
3081 einfo (_("%P%F: bfd_link_hash_lookup failed: %E\n"));
3082 if (h->type == bfd_link_hash_new)
3083 {
3084 h->type = bfd_link_hash_undefined;
3085 h->u.undef.abfd = NULL;
3086 bfd_link_add_undef (link_info.hash, h);
3087 }
252b5132
RH
3088}
3089
3090/* Run through the list of undefineds created above and place them
3091 into the linker hash table as undefined symbols belonging to the
08da4cac
KH
3092 script file. */
3093
252b5132 3094static void
1579bae1 3095lang_place_undefineds (void)
252b5132
RH
3096{
3097 ldlang_undef_chain_list_type *ptr;
3098
1579bae1
AM
3099 for (ptr = ldlang_undef_chain_list_head; ptr != NULL; ptr = ptr->next)
3100 insert_undefined (ptr->name);
252b5132
RH
3101}
3102
0841712e
JJ
3103/* Check for all readonly or some readwrite sections. */
3104
3105static void
6feb9908
AM
3106check_input_sections
3107 (lang_statement_union_type *s,
3108 lang_output_section_statement_type *output_section_statement)
0841712e
JJ
3109{
3110 for (; s != (lang_statement_union_type *) NULL; s = s->header.next)
3111 {
3112 switch (s->header.type)
3113 {
3114 case lang_wild_statement_enum:
3115 walk_wild (&s->wild_statement, check_section_callback,
3116 output_section_statement);
3117 if (! output_section_statement->all_input_readonly)
3118 return;
3119 break;
3120 case lang_constructors_statement_enum:
3121 check_input_sections (constructor_list.head,
3122 output_section_statement);
3123 if (! output_section_statement->all_input_readonly)
3124 return;
3125 break;
3126 case lang_group_statement_enum:
3127 check_input_sections (s->group_statement.children.head,
3128 output_section_statement);
3129 if (! output_section_statement->all_input_readonly)
3130 return;
3131 break;
3132 default:
3133 break;
3134 }
3135 }
3136}
3137
bcaa7b3e
L
3138/* Update wildcard statements if needed. */
3139
3140static void
3141update_wild_statements (lang_statement_union_type *s)
3142{
3143 struct wildcard_list *sec;
3144
3145 switch (sort_section)
3146 {
3147 default:
3148 FAIL ();
3149
3150 case none:
3151 break;
3152
3153 case by_name:
3154 case by_alignment:
3155 for (; s != NULL; s = s->header.next)
3156 {
3157 switch (s->header.type)
3158 {
3159 default:
3160 break;
3161
3162 case lang_wild_statement_enum:
3163 sec = s->wild_statement.section_list;
0d0999db
L
3164 for (sec = s->wild_statement.section_list; sec != NULL;
3165 sec = sec->next)
bcaa7b3e
L
3166 {
3167 switch (sec->spec.sorted)
3168 {
3169 case none:
3170 sec->spec.sorted = sort_section;
3171 break;
3172 case by_name:
3173 if (sort_section == by_alignment)
3174 sec->spec.sorted = by_name_alignment;
3175 break;
3176 case by_alignment:
3177 if (sort_section == by_name)
3178 sec->spec.sorted = by_alignment_name;
3179 break;
3180 default:
3181 break;
3182 }
3183 }
3184 break;
3185
3186 case lang_constructors_statement_enum:
3187 update_wild_statements (constructor_list.head);
3188 break;
3189
3190 case lang_output_section_statement_enum:
3191 update_wild_statements
3192 (s->output_section_statement.children.head);
3193 break;
3194
3195 case lang_group_statement_enum:
3196 update_wild_statements (s->group_statement.children.head);
3197 break;
3198 }
3199 }
3200 break;
3201 }
3202}
3203
396a2467 3204/* Open input files and attach to output sections. */
08da4cac 3205
252b5132 3206static void
1579bae1
AM
3207map_input_to_output_sections
3208 (lang_statement_union_type *s, const char *target,
afd7a018 3209 lang_output_section_statement_type *os)
252b5132 3210{
12d814e1
L
3211 flagword flags;
3212
1579bae1 3213 for (; s != NULL; s = s->header.next)
252b5132
RH
3214 {
3215 switch (s->header.type)
3216 {
252b5132 3217 case lang_wild_statement_enum:
afd7a018 3218 wild (&s->wild_statement, target, os);
abc6ab0a 3219 break;
252b5132
RH
3220 case lang_constructors_statement_enum:
3221 map_input_to_output_sections (constructor_list.head,
3222 target,
afd7a018 3223 os);
252b5132
RH
3224 break;
3225 case lang_output_section_statement_enum:
0841712e
JJ
3226 if (s->output_section_statement.constraint)
3227 {
0cf7d72c
AM
3228 if (s->output_section_statement.constraint != ONLY_IF_RW
3229 && s->output_section_statement.constraint != ONLY_IF_RO)
0841712e
JJ
3230 break;
3231 s->output_section_statement.all_input_readonly = TRUE;
3232 check_input_sections (s->output_section_statement.children.head,
3233 &s->output_section_statement);
3234 if ((s->output_section_statement.all_input_readonly
3235 && s->output_section_statement.constraint == ONLY_IF_RW)
3236 || (!s->output_section_statement.all_input_readonly
3237 && s->output_section_statement.constraint == ONLY_IF_RO))
3238 {
3239 s->output_section_statement.constraint = -1;
3240 break;
3241 }
3242 }
3243
252b5132
RH
3244 map_input_to_output_sections (s->output_section_statement.children.head,
3245 target,
3246 &s->output_section_statement);
3247 break;
3248 case lang_output_statement_enum:
3249 break;
3250 case lang_target_statement_enum:
3251 target = s->target_statement.target;
3252 break;
3253 case lang_group_statement_enum:
3254 map_input_to_output_sections (s->group_statement.children.head,
3255 target,
afd7a018 3256 os);
252b5132 3257 break;
384d938f
NS
3258 case lang_data_statement_enum:
3259 /* Make sure that any sections mentioned in the expression
3260 are initialized. */
3261 exp_init_os (s->data_statement.exp);
12d814e1 3262 flags = SEC_HAS_CONTENTS;
afd7a018
AM
3263 /* The output section gets contents, and then we inspect for
3264 any flags set in the input script which override any ALLOC. */
afd7a018 3265 if (!(os->flags & SEC_NEVER_LOAD))
12d814e1
L
3266 flags |= SEC_ALLOC | SEC_LOAD;
3267 if (os->bfd_section == NULL)
3268 init_os (os, NULL, flags);
3269 else
3270 os->bfd_section->flags |= flags;
afd7a018 3271 break;
252b5132 3272 case lang_input_section_enum:
e0f6802f
AM
3273 break;
3274 case lang_fill_statement_enum:
252b5132 3275 case lang_object_symbols_statement_enum:
252b5132
RH
3276 case lang_reloc_statement_enum:
3277 case lang_padding_statement_enum:
3278 case lang_input_statement_enum:
afd7a018 3279 if (os != NULL && os->bfd_section == NULL)
12d814e1 3280 init_os (os, NULL, 0);
252b5132
RH
3281 break;
3282 case lang_assignment_statement_enum:
afd7a018 3283 if (os != NULL && os->bfd_section == NULL)
12d814e1 3284 init_os (os, NULL, 0);
252b5132
RH
3285
3286 /* Make sure that any sections mentioned in the assignment
08da4cac 3287 are initialized. */
252b5132
RH
3288 exp_init_os (s->assignment_statement.exp);
3289 break;
3290 case lang_afile_asection_pair_statement_enum:
3291 FAIL ();
3292 break;
3293 case lang_address_statement_enum:
329c1c86 3294 /* Mark the specified section with the supplied address.
ba916c8a
MM
3295
3296 If this section was actually a segment marker, then the
3297 directive is ignored if the linker script explicitly
3298 processed the segment marker. Originally, the linker
3299 treated segment directives (like -Ttext on the
3300 command-line) as section directives. We honor the
3301 section directive semantics for backwards compatibilty;
3302 linker scripts that do not specifically check for
3303 SEGMENT_START automatically get the old semantics. */
329c1c86 3304 if (!s->address_statement.segment
ba916c8a
MM
3305 || !s->address_statement.segment->used)
3306 {
3307 lang_output_section_statement_type *aos
3308 = (lang_output_section_statement_lookup
3309 (s->address_statement.section_name));
329c1c86 3310
ba916c8a 3311 if (aos->bfd_section == NULL)
12d814e1 3312 init_os (aos, NULL, 0);
ba916c8a
MM
3313 aos->addr_tree = s->address_statement.address;
3314 }
252b5132
RH
3315 break;
3316 }
3317 }
3318}
3319
4bd5a393
AM
3320/* An output section might have been removed after its statement was
3321 added. For example, ldemul_before_allocation can remove dynamic
3322 sections if they turn out to be not needed. Clean them up here. */
3323
8423293d 3324void
1579bae1 3325strip_excluded_output_sections (void)
4bd5a393 3326{
afd7a018 3327 lang_output_section_statement_type *os;
4bd5a393 3328
046183de 3329 /* Run lang_size_sections (if not already done). */
e9ee469a
AM
3330 if (expld.phase != lang_mark_phase_enum)
3331 {
3332 expld.phase = lang_mark_phase_enum;
3333 expld.dataseg.phase = exp_dataseg_none;
3334 one_lang_size_sections_pass (NULL, FALSE);
3335 lang_reset_memory_regions ();
3336 }
3337
afd7a018
AM
3338 for (os = &lang_output_section_statement.head->output_section_statement;
3339 os != NULL;
3340 os = os->next)
4bd5a393 3341 {
75ff4589
L
3342 asection *output_section;
3343 bfd_boolean exclude;
4bd5a393 3344
0841712e
JJ
3345 if (os->constraint == -1)
3346 continue;
8423293d 3347
75ff4589
L
3348 output_section = os->bfd_section;
3349 if (output_section == NULL)
8423293d
AM
3350 continue;
3351
32124d5b
AM
3352 exclude = (output_section->rawsize == 0
3353 && (output_section->flags & SEC_KEEP) == 0
3354 && !bfd_section_removed_from_list (output_bfd,
3355 output_section));
3356
3357 /* Some sections have not yet been sized, notably .gnu.version,
3358 .dynsym, .dynstr and .hash. These all have SEC_LINKER_CREATED
3359 input sections, so don't drop output sections that have such
3360 input sections unless they are also marked SEC_EXCLUDE. */
3361 if (exclude && output_section->map_head.s != NULL)
75ff4589
L
3362 {
3363 asection *s;
8423293d 3364
32124d5b
AM
3365 for (s = output_section->map_head.s; s != NULL; s = s->map_head.s)
3366 if ((s->flags & SEC_LINKER_CREATED) != 0
3367 && (s->flags & SEC_EXCLUDE) == 0)
e9ee469a
AM
3368 {
3369 exclude = FALSE;
3370 break;
3371 }
75ff4589 3372 }
8423293d 3373
32124d5b
AM
3374 /* TODO: Don't just junk map_head.s, turn them into link_orders. */
3375 output_section->map_head.link_order = NULL;
3376 output_section->map_tail.link_order = NULL;
3377
3378 if (exclude)
4bd5a393 3379 {
e9ee469a
AM
3380 /* We don't set bfd_section to NULL since bfd_section of the
3381 removed output section statement may still be used. */
74541ad4
AM
3382 if (!os->section_relative_symbol)
3383 os->ignored = TRUE;
e9ee469a 3384 output_section->flags |= SEC_EXCLUDE;
32124d5b
AM
3385 bfd_section_list_remove (output_bfd, output_section);
3386 output_bfd->section_count--;
4bd5a393
AM
3387 }
3388 }
8423293d
AM
3389
3390 /* Stop future calls to lang_add_section from messing with map_head
3391 and map_tail link_order fields. */
3392 stripped_excluded_sections = TRUE;
4bd5a393
AM
3393}
3394
252b5132 3395static void
1579bae1
AM
3396print_output_section_statement
3397 (lang_output_section_statement_type *output_section_statement)
252b5132
RH
3398{
3399 asection *section = output_section_statement->bfd_section;
3400 int len;
3401
3402 if (output_section_statement != abs_output_section)
3403 {
3404 minfo ("\n%s", output_section_statement->name);
3405
3406 if (section != NULL)
3407 {
3408 print_dot = section->vma;
3409
3410 len = strlen (output_section_statement->name);
3411 if (len >= SECTION_NAME_MAP_LENGTH - 1)
3412 {
3413 print_nl ();
3414 len = 0;
3415 }
3416 while (len < SECTION_NAME_MAP_LENGTH)
3417 {
3418 print_space ();
3419 ++len;
3420 }
3421
eea6121a 3422 minfo ("0x%V %W", section->vma, section->size);
252b5132 3423
67f744f3
AM
3424 if (section->vma != section->lma)
3425 minfo (_(" load address 0x%V"), section->lma);
252b5132
RH
3426 }
3427
3428 print_nl ();
3429 }
3430
3431 print_statement_list (output_section_statement->children.head,
3432 output_section_statement);
3433}
3434
3b83e13a
NC
3435/* Scan for the use of the destination in the right hand side
3436 of an expression. In such cases we will not compute the
3437 correct expression, since the value of DST that is used on
3438 the right hand side will be its final value, not its value
3439 just before this expression is evaluated. */
329c1c86 3440
3b83e13a
NC
3441static bfd_boolean
3442scan_for_self_assignment (const char * dst, etree_type * rhs)
3443{
3444 if (rhs == NULL || dst == NULL)
3445 return FALSE;
3446
3447 switch (rhs->type.node_class)
3448 {
3449 case etree_binary:
3450 return scan_for_self_assignment (dst, rhs->binary.lhs)
3451 || scan_for_self_assignment (dst, rhs->binary.rhs);
3452
3453 case etree_trinary:
3454 return scan_for_self_assignment (dst, rhs->trinary.lhs)
3455 || scan_for_self_assignment (dst, rhs->trinary.rhs);
3456
3457 case etree_assign:
3458 case etree_provided:
3459 case etree_provide:
3460 if (strcmp (dst, rhs->assign.dst) == 0)
3461 return TRUE;
3462 return scan_for_self_assignment (dst, rhs->assign.src);
3463
3464 case etree_unary:
3465 return scan_for_self_assignment (dst, rhs->unary.child);
3466
3467 case etree_value:
3468 if (rhs->value.str)
3469 return strcmp (dst, rhs->value.str) == 0;
3470 return FALSE;
3471
3472 case etree_name:
3473 if (rhs->name.name)
3474 return strcmp (dst, rhs->name.name) == 0;
3475 return FALSE;
3476
3477 default:
3478 break;
3479 }
3480
3481 return FALSE;
3482}
3483
3484
252b5132 3485static void
1579bae1
AM
3486print_assignment (lang_assignment_statement_type *assignment,
3487 lang_output_section_statement_type *output_section)
252b5132 3488{
3b83e13a
NC
3489 unsigned int i;
3490 bfd_boolean is_dot;
3491 bfd_boolean computation_is_valid = TRUE;
afd7a018 3492 etree_type *tree;
252b5132
RH
3493
3494 for (i = 0; i < SECTION_NAME_MAP_LENGTH; i++)
3495 print_space ();
3496
afd7a018
AM
3497 if (assignment->exp->type.node_class == etree_assert)
3498 {
3b83e13a 3499 is_dot = FALSE;
afd7a018 3500 tree = assignment->exp->assert_s.child;
3b83e13a 3501 computation_is_valid = TRUE;
afd7a018
AM
3502 }
3503 else
3504 {
3505 const char *dst = assignment->exp->assign.dst;
3b83e13a
NC
3506
3507 is_dot = (dst[0] == '.' && dst[1] == 0);
afd7a018 3508 tree = assignment->exp->assign.src;
3b83e13a 3509 computation_is_valid = is_dot || (scan_for_self_assignment (dst, tree) == FALSE);
afd7a018
AM
3510 }
3511
e9ee469a
AM
3512 exp_fold_tree (tree, output_section->bfd_section, &print_dot);
3513 if (expld.result.valid_p)
7b17f854 3514 {
7b17f854
RS
3515 bfd_vma value;
3516
3b83e13a
NC
3517 if (computation_is_valid)
3518 {
e9ee469a 3519 value = expld.result.value;
10dbd1f3 3520
e9ee469a
AM
3521 if (expld.result.section)
3522 value += expld.result.section->vma;
7b17f854 3523
3b83e13a
NC
3524 minfo ("0x%V", value);
3525 if (is_dot)
3526 print_dot = value;
3527 }
3528 else
3529 {
3530 struct bfd_link_hash_entry *h;
3531
3532 h = bfd_link_hash_lookup (link_info.hash, assignment->exp->assign.dst,
3533 FALSE, FALSE, TRUE);
3534 if (h)
3535 {
10dbd1f3
NC
3536 value = h->u.def.value;
3537
e9ee469a
AM
3538 if (expld.result.section)
3539 value += expld.result.section->vma;
3b83e13a
NC
3540
3541 minfo ("[0x%V]", value);
3542 }
3543 else
3544 minfo ("[unresolved]");
3545 }
7b17f854 3546 }
252b5132
RH
3547 else
3548 {
3549 minfo ("*undef* ");
3550#ifdef BFD64
3551 minfo (" ");
3552#endif
3553 }
3554
3555 minfo (" ");
252b5132 3556 exp_print_tree (assignment->exp);
252b5132
RH
3557 print_nl ();
3558}
3559
3560static void
1579bae1 3561print_input_statement (lang_input_statement_type *statm)
252b5132 3562{
1579bae1 3563 if (statm->filename != NULL)
252b5132
RH
3564 {
3565 fprintf (config.map_file, "LOAD %s\n", statm->filename);
3566 }
3567}
3568
3569/* Print all symbols defined in a particular section. This is called
35835446 3570 via bfd_link_hash_traverse, or by print_all_symbols. */
252b5132 3571
b34976b6 3572static bfd_boolean
1579bae1 3573print_one_symbol (struct bfd_link_hash_entry *hash_entry, void *ptr)
252b5132 3574{
1579bae1 3575 asection *sec = ptr;
252b5132
RH
3576
3577 if ((hash_entry->type == bfd_link_hash_defined
3578 || hash_entry->type == bfd_link_hash_defweak)
3579 && sec == hash_entry->u.def.section)
3580 {
3581 int i;
3582
3583 for (i = 0; i < SECTION_NAME_MAP_LENGTH; i++)
3584 print_space ();
3585 minfo ("0x%V ",
3586 (hash_entry->u.def.value
3587 + hash_entry->u.def.section->output_offset
3588 + hash_entry->u.def.section->output_section->vma));
3589
3590 minfo (" %T\n", hash_entry->root.string);
3591 }
3592
b34976b6 3593 return TRUE;
252b5132
RH
3594}
3595
35835446 3596static void
e0f6802f 3597print_all_symbols (asection *sec)
35835446
JR
3598{
3599 struct fat_user_section_struct *ud = get_userdata (sec);
3600 struct map_symbol_def *def;
3601
afd7a018
AM
3602 if (!ud)
3603 return;
3604
35835446
JR
3605 *ud->map_symbol_def_tail = 0;
3606 for (def = ud->map_symbol_def_head; def; def = def->next)
3607 print_one_symbol (def->entry, sec);
3608}
3609
252b5132
RH
3610/* Print information about an input section to the map file. */
3611
3612static void
4d4920ec 3613print_input_section (asection *i)
252b5132 3614{
eea6121a 3615 bfd_size_type size = i->size;
abe6ac95
AM
3616 int len;
3617 bfd_vma addr;
e5caa5e0
AM
3618
3619 init_opb ();
4d4920ec 3620
abe6ac95
AM
3621 print_space ();
3622 minfo ("%s", i->name);
252b5132 3623
abe6ac95
AM
3624 len = 1 + strlen (i->name);
3625 if (len >= SECTION_NAME_MAP_LENGTH - 1)
3626 {
3627 print_nl ();
3628 len = 0;
3629 }
3630 while (len < SECTION_NAME_MAP_LENGTH)
3631 {
57ceae94 3632 print_space ();
abe6ac95
AM
3633 ++len;
3634 }
252b5132 3635
abe6ac95
AM
3636 if (i->output_section != NULL && i->output_section->owner == output_bfd)
3637 addr = i->output_section->vma + i->output_offset;
3638 else
3639 {
3640 addr = print_dot;
3641 size = 0;
3642 }
252b5132 3643
abe6ac95 3644 minfo ("0x%V %W %B\n", addr, TO_ADDR (size), i->owner);
252b5132 3645
abe6ac95
AM
3646 if (size != i->rawsize && i->rawsize != 0)
3647 {
3648 len = SECTION_NAME_MAP_LENGTH + 3;
252b5132 3649#ifdef BFD64
abe6ac95 3650 len += 16;
252b5132 3651#else
abe6ac95 3652 len += 8;
252b5132 3653#endif
abe6ac95
AM
3654 while (len > 0)
3655 {
3656 print_space ();
3657 --len;
57ceae94
AM
3658 }
3659
abe6ac95
AM
3660 minfo (_("%W (size before relaxing)\n"), i->rawsize);
3661 }
252b5132 3662
abe6ac95
AM
3663 if (i->output_section != NULL && i->output_section->owner == output_bfd)
3664 {
c0f00686 3665 if (link_info.reduce_memory_overheads)
abe6ac95
AM
3666 bfd_link_hash_traverse (link_info.hash, print_one_symbol, i);
3667 else
3668 print_all_symbols (i);
3669
3670 print_dot = addr + TO_ADDR (size);
252b5132
RH
3671 }
3672}
3673
3674static void
1579bae1 3675print_fill_statement (lang_fill_statement_type *fill)
252b5132 3676{
2c382fb6
AM
3677 size_t size;
3678 unsigned char *p;
3679 fputs (" FILL mask 0x", config.map_file);
3680 for (p = fill->fill->data, size = fill->fill->size; size != 0; p++, size--)
3681 fprintf (config.map_file, "%02x", *p);
3682 fputs ("\n", config.map_file);
252b5132
RH
3683}
3684
3685static void
1579bae1 3686print_data_statement (lang_data_statement_type *data)
252b5132
RH
3687{
3688 int i;
3689 bfd_vma addr;
3690 bfd_size_type size;
3691 const char *name;
3692
e5caa5e0 3693 init_opb ();
252b5132
RH
3694 for (i = 0; i < SECTION_NAME_MAP_LENGTH; i++)
3695 print_space ();
3696
7fabd029 3697 addr = data->output_offset;
252b5132
RH
3698 if (data->output_section != NULL)
3699 addr += data->output_section->vma;
3700
3701 switch (data->type)
3702 {
3703 default:
3704 abort ();
3705 case BYTE:
3706 size = BYTE_SIZE;
3707 name = "BYTE";
3708 break;
3709 case SHORT:
3710 size = SHORT_SIZE;
3711 name = "SHORT";
3712 break;
3713 case LONG:
3714 size = LONG_SIZE;
3715 name = "LONG";
3716 break;
3717 case QUAD:
3718 size = QUAD_SIZE;
3719 name = "QUAD";
3720 break;
3721 case SQUAD:
3722 size = QUAD_SIZE;
3723 name = "SQUAD";
3724 break;
3725 }
3726
3727 minfo ("0x%V %W %s 0x%v", addr, size, name, data->value);
3728
3729 if (data->exp->type.node_class != etree_value)
3730 {
3731 print_space ();
3732 exp_print_tree (data->exp);
3733 }
3734
3735 print_nl ();
3736
e5caa5e0 3737 print_dot = addr + TO_ADDR (size);
252b5132
RH
3738}
3739
3740/* Print an address statement. These are generated by options like
3741 -Ttext. */
3742
3743static void
1579bae1 3744print_address_statement (lang_address_statement_type *address)
252b5132
RH
3745{
3746 minfo (_("Address of section %s set to "), address->section_name);
3747 exp_print_tree (address->address);
3748 print_nl ();
3749}
3750
3751/* Print a reloc statement. */
3752
3753static void
1579bae1 3754print_reloc_statement (lang_reloc_statement_type *reloc)
252b5132
RH
3755{
3756 int i;
3757 bfd_vma addr;
3758 bfd_size_type size;
3759
e5caa5e0 3760 init_opb ();
252b5132
RH
3761 for (i = 0; i < SECTION_NAME_MAP_LENGTH; i++)
3762 print_space ();
3763
7fabd029 3764 addr = reloc->output_offset;
252b5132
RH
3765 if (reloc->output_section != NULL)
3766 addr += reloc->output_section->vma;
3767
3768 size = bfd_get_reloc_size (reloc->howto);
3769
3770 minfo ("0x%V %W RELOC %s ", addr, size, reloc->howto->name);
3771
3772 if (reloc->name != NULL)
3773 minfo ("%s+", reloc->name);
3774 else
3775 minfo ("%s+", reloc->section->name);
3776
3777 exp_print_tree (reloc->addend_exp);
3778
3779 print_nl ();
3780
e5caa5e0 3781 print_dot = addr + TO_ADDR (size);
5f992e62 3782}
252b5132
RH
3783
3784static void
1579bae1 3785print_padding_statement (lang_padding_statement_type *s)
252b5132
RH
3786{
3787 int len;
3788 bfd_vma addr;
3789
e5caa5e0 3790 init_opb ();
252b5132
RH
3791 minfo (" *fill*");
3792
3793 len = sizeof " *fill*" - 1;
3794 while (len < SECTION_NAME_MAP_LENGTH)
3795 {
3796 print_space ();
3797 ++len;
3798 }
3799
3800 addr = s->output_offset;
3801 if (s->output_section != NULL)
3802 addr += s->output_section->vma;
5f9b8920 3803 minfo ("0x%V %W ", addr, (bfd_vma) s->size);
252b5132 3804
2c382fb6
AM
3805 if (s->fill->size != 0)
3806 {
3807 size_t size;
3808 unsigned char *p;
3809 for (p = s->fill->data, size = s->fill->size; size != 0; p++, size--)
3810 fprintf (config.map_file, "%02x", *p);
3811 }
252b5132
RH
3812
3813 print_nl ();
3814
e5caa5e0 3815 print_dot = addr + TO_ADDR (s->size);
252b5132
RH
3816}
3817
3818static void
1579bae1
AM
3819print_wild_statement (lang_wild_statement_type *w,
3820 lang_output_section_statement_type *os)
252b5132 3821{
b6bf44ba
AM
3822 struct wildcard_list *sec;
3823
252b5132
RH
3824 print_space ();
3825
3826 if (w->filenames_sorted)
3827 minfo ("SORT(");
08da4cac 3828 if (w->filename != NULL)
252b5132
RH
3829 minfo ("%s", w->filename);
3830 else
3831 minfo ("*");
3832 if (w->filenames_sorted)
3833 minfo (")");
3834
3835 minfo ("(");
b6bf44ba
AM
3836 for (sec = w->section_list; sec; sec = sec->next)
3837 {
3838 if (sec->spec.sorted)
3839 minfo ("SORT(");
3840 if (sec->spec.exclude_name_list != NULL)
3841 {
3842 name_list *tmp;
34786259 3843 minfo ("EXCLUDE_FILE(%s", sec->spec.exclude_name_list->name);
b6bf44ba 3844 for (tmp = sec->spec.exclude_name_list->next; tmp; tmp = tmp->next)
34786259
AM
3845 minfo (" %s", tmp->name);
3846 minfo (") ");
b6bf44ba
AM
3847 }
3848 if (sec->spec.name != NULL)
3849 minfo ("%s", sec->spec.name);
3850 else
3851 minfo ("*");
3852 if (sec->spec.sorted)
3853 minfo (")");
34786259
AM
3854 if (sec->next)
3855 minfo (" ");
b6bf44ba 3856 }
252b5132
RH
3857 minfo (")");
3858
3859 print_nl ();
3860
3861 print_statement_list (w->children.head, os);
3862}
3863
3864/* Print a group statement. */
3865
3866static void
1579bae1
AM
3867print_group (lang_group_statement_type *s,
3868 lang_output_section_statement_type *os)
252b5132
RH
3869{
3870 fprintf (config.map_file, "START GROUP\n");
3871 print_statement_list (s->children.head, os);
3872 fprintf (config.map_file, "END GROUP\n");
3873}
3874
3875/* Print the list of statements in S.
3876 This can be called for any statement type. */
3877
3878static void
1579bae1
AM
3879print_statement_list (lang_statement_union_type *s,
3880 lang_output_section_statement_type *os)
252b5132
RH
3881{
3882 while (s != NULL)
3883 {
3884 print_statement (s, os);
bba1a0c0 3885 s = s->header.next;
252b5132
RH
3886 }
3887}
3888
3889/* Print the first statement in statement list S.
3890 This can be called for any statement type. */
3891
3892static void
1579bae1
AM
3893print_statement (lang_statement_union_type *s,
3894 lang_output_section_statement_type *os)
252b5132
RH
3895{
3896 switch (s->header.type)
3897 {
3898 default:
3899 fprintf (config.map_file, _("Fail with %d\n"), s->header.type);
3900 FAIL ();
3901 break;
3902 case lang_constructors_statement_enum:
3903 if (constructor_list.head != NULL)
3904 {
3905 if (constructors_sorted)
3906 minfo (" SORT (CONSTRUCTORS)\n");
3907 else
3908 minfo (" CONSTRUCTORS\n");
3909 print_statement_list (constructor_list.head, os);
3910 }
3911 break;
3912 case lang_wild_statement_enum:
3913 print_wild_statement (&s->wild_statement, os);
3914 break;
3915 case lang_address_statement_enum:
3916 print_address_statement (&s->address_statement);
3917 break;
3918 case lang_object_symbols_statement_enum:
3919 minfo (" CREATE_OBJECT_SYMBOLS\n");
3920 break;
3921 case lang_fill_statement_enum:
3922 print_fill_statement (&s->fill_statement);
3923 break;
3924 case lang_data_statement_enum:
3925 print_data_statement (&s->data_statement);
3926 break;
3927 case lang_reloc_statement_enum:
3928 print_reloc_statement (&s->reloc_statement);
3929 break;
3930 case lang_input_section_enum:
4d4920ec 3931 print_input_section (s->input_section.section);
252b5132
RH
3932 break;
3933 case lang_padding_statement_enum:
3934 print_padding_statement (&s->padding_statement);
3935 break;
3936 case lang_output_section_statement_enum:
3937 print_output_section_statement (&s->output_section_statement);
3938 break;
3939 case lang_assignment_statement_enum:
3940 print_assignment (&s->assignment_statement, os);
3941 break;
3942 case lang_target_statement_enum:
3943 fprintf (config.map_file, "TARGET(%s)\n", s->target_statement.target);
3944 break;
3945 case lang_output_statement_enum:
3946 minfo ("OUTPUT(%s", s->output_statement.name);
3947 if (output_target != NULL)
3948 minfo (" %s", output_target);
3949 minfo (")\n");
3950 break;
3951 case lang_input_statement_enum:
3952 print_input_statement (&s->input_statement);
3953 break;
3954 case lang_group_statement_enum:
3955 print_group (&s->group_statement, os);
3956 break;
3957 case lang_afile_asection_pair_statement_enum:
3958 FAIL ();
3959 break;
3960 }
3961}
3962
3963static void
1579bae1 3964print_statements (void)
252b5132
RH
3965{
3966 print_statement_list (statement_list.head, abs_output_section);
3967}
3968
3969/* Print the first N statements in statement list S to STDERR.
3970 If N == 0, nothing is printed.
3971 If N < 0, the entire list is printed.
3972 Intended to be called from GDB. */
3973
3974void
1579bae1 3975dprint_statement (lang_statement_union_type *s, int n)
252b5132
RH
3976{
3977 FILE *map_save = config.map_file;
3978
3979 config.map_file = stderr;
3980
3981 if (n < 0)
3982 print_statement_list (s, abs_output_section);
3983 else
3984 {
3985 while (s && --n >= 0)
3986 {
3987 print_statement (s, abs_output_section);
bba1a0c0 3988 s = s->header.next;
252b5132
RH
3989 }
3990 }
3991
3992 config.map_file = map_save;
3993}
3994
b3327aad 3995static void
1579bae1
AM
3996insert_pad (lang_statement_union_type **ptr,
3997 fill_type *fill,
3998 unsigned int alignment_needed,
3999 asection *output_section,
4000 bfd_vma dot)
252b5132 4001{
2c382fb6 4002 static fill_type zero_fill = { 1, { 0 } };
e9ee469a 4003 lang_statement_union_type *pad = NULL;
b3327aad 4004
e9ee469a
AM
4005 if (ptr != &statement_list.head)
4006 pad = ((lang_statement_union_type *)
4007 ((char *) ptr - offsetof (lang_statement_union_type, header.next)));
4008 if (pad != NULL
4009 && pad->header.type == lang_padding_statement_enum
4010 && pad->padding_statement.output_section == output_section)
4011 {
4012 /* Use the existing pad statement. */
4013 }
4014 else if ((pad = *ptr) != NULL
2af02257 4015 && pad->header.type == lang_padding_statement_enum
b3327aad 4016 && pad->padding_statement.output_section == output_section)
252b5132 4017 {
e9ee469a 4018 /* Use the existing pad statement. */
252b5132 4019 }
b3327aad 4020 else
252b5132 4021 {
b3327aad 4022 /* Make a new padding statement, linked into existing chain. */
1579bae1 4023 pad = stat_alloc (sizeof (lang_padding_statement_type));
b3327aad
AM
4024 pad->header.next = *ptr;
4025 *ptr = pad;
4026 pad->header.type = lang_padding_statement_enum;
4027 pad->padding_statement.output_section = output_section;
1579bae1 4028 if (fill == NULL)
2c382fb6 4029 fill = &zero_fill;
b3327aad 4030 pad->padding_statement.fill = fill;
252b5132 4031 }
b3327aad
AM
4032 pad->padding_statement.output_offset = dot - output_section->vma;
4033 pad->padding_statement.size = alignment_needed;
eea6121a 4034 output_section->size += alignment_needed;
252b5132
RH
4035}
4036
08da4cac
KH
4037/* Work out how much this section will move the dot point. */
4038
252b5132 4039static bfd_vma
6feb9908
AM
4040size_input_section
4041 (lang_statement_union_type **this_ptr,
4042 lang_output_section_statement_type *output_section_statement,
4043 fill_type *fill,
4044 bfd_vma dot)
252b5132
RH
4045{
4046 lang_input_section_type *is = &((*this_ptr)->input_section);
4047 asection *i = is->section;
4048
7b986e99
AM
4049 if (!((lang_input_statement_type *) i->owner->usrdata)->just_syms_flag
4050 && (i->flags & SEC_EXCLUDE) == 0)
252b5132 4051 {
b3327aad
AM
4052 unsigned int alignment_needed;
4053 asection *o;
4054
4055 /* Align this section first to the input sections requirement,
4056 then to the output section's requirement. If this alignment
4057 is greater than any seen before, then record it too. Perform
4058 the alignment by inserting a magic 'padding' statement. */
4059
252b5132 4060 if (output_section_statement->subsection_alignment != -1)
b3327aad
AM
4061 i->alignment_power = output_section_statement->subsection_alignment;
4062
4063 o = output_section_statement->bfd_section;
4064 if (o->alignment_power < i->alignment_power)
4065 o->alignment_power = i->alignment_power;
252b5132 4066
b3327aad
AM
4067 alignment_needed = align_power (dot, i->alignment_power) - dot;
4068
4069 if (alignment_needed != 0)
4070 {
e5caa5e0 4071 insert_pad (this_ptr, fill, TO_SIZE (alignment_needed), o, dot);
b3327aad
AM
4072 dot += alignment_needed;
4073 }
252b5132 4074
08da4cac 4075 /* Remember where in the output section this input section goes. */
252b5132 4076
b3327aad 4077 i->output_offset = dot - o->vma;
252b5132 4078
08da4cac 4079 /* Mark how big the output section must be to contain this now. */
eea6121a
AM
4080 dot += TO_ADDR (i->size);
4081 o->size = TO_SIZE (dot - o->vma);
252b5132
RH
4082 }
4083 else
4084 {
4085 i->output_offset = i->vma - output_section_statement->bfd_section->vma;
4086 }
4087
4088 return dot;
4089}
4090
5daa8fe7
L
4091static int
4092sort_sections_by_lma (const void *arg1, const void *arg2)
4093{
4094 const asection *sec1 = *(const asection **) arg1;
4095 const asection *sec2 = *(const asection **) arg2;
4096
4097 if (bfd_section_lma (sec1->owner, sec1)
4098 < bfd_section_lma (sec2->owner, sec2))
4099 return -1;
4100 else if (bfd_section_lma (sec1->owner, sec1)
4101 > bfd_section_lma (sec2->owner, sec2))
4102 return 1;
4103
4104 return 0;
4105}
4106
eea6121a 4107#define IGNORE_SECTION(s) \
afd7a018
AM
4108 ((s->flags & SEC_NEVER_LOAD) != 0 \
4109 || (s->flags & SEC_ALLOC) == 0 \
4110 || ((s->flags & SEC_THREAD_LOCAL) != 0 \
de7f8cc8 4111 && (s->flags & SEC_LOAD) == 0))
d1778b88 4112
252b5132 4113/* Check to see if any allocated sections overlap with other allocated
afd7a018
AM
4114 sections. This can happen if a linker script specifies the output
4115 section addresses of the two sections. */
08da4cac 4116
252b5132 4117static void
1579bae1 4118lang_check_section_addresses (void)
252b5132 4119{
5daa8fe7
L
4120 asection *s, *os;
4121 asection **sections, **spp;
4122 unsigned int count;
4123 bfd_vma s_start;
4124 bfd_vma s_end;
4125 bfd_vma os_start;
4126 bfd_vma os_end;
4127 bfd_size_type amt;
4128
4129 if (bfd_count_sections (output_bfd) <= 1)
4130 return;
4131
4132 amt = bfd_count_sections (output_bfd) * sizeof (asection *);
4133 sections = xmalloc (amt);
252b5132
RH
4134
4135 /* Scan all sections in the output list. */
5daa8fe7 4136 count = 0;
252b5132 4137 for (s = output_bfd->sections; s != NULL; s = s->next)
33275c22 4138 {
5daa8fe7 4139 /* Only consider loadable sections with real contents. */
de7f8cc8 4140 if (IGNORE_SECTION (s) || s->size == 0)
33275c22 4141 continue;
5f992e62 4142
5daa8fe7
L
4143 sections[count] = s;
4144 count++;
4145 }
329c1c86 4146
5daa8fe7
L
4147 if (count <= 1)
4148 return;
5f992e62 4149
5daa8fe7
L
4150 qsort (sections, (size_t) count, sizeof (asection *),
4151 sort_sections_by_lma);
5f992e62 4152
5daa8fe7
L
4153 spp = sections;
4154 s = *spp++;
4155 s_start = bfd_section_lma (output_bfd, s);
4156 s_end = s_start + TO_ADDR (s->size) - 1;
4157 for (count--; count; count--)
4158 {
4159 /* We must check the sections' LMA addresses not their VMA
4160 addresses because overlay sections can have overlapping VMAs
4161 but they must have distinct LMAs. */
4162 os = s;
329c1c86 4163 os_start = s_start;
5daa8fe7
L
4164 os_end = s_end;
4165 s = *spp++;
4166 s_start = bfd_section_lma (output_bfd, s);
4167 s_end = s_start + TO_ADDR (s->size) - 1;
5f992e62 4168
5daa8fe7
L
4169 /* Look for an overlap. */
4170 if (s_end >= os_start && s_start <= os_end)
4171 einfo (_("%X%P: section %s [%V -> %V] overlaps section %s [%V -> %V]\n"),
4172 s->name, s_start, s_end, os->name, os_start, os_end);
33275c22 4173 }
5daa8fe7
L
4174
4175 free (sections);
252b5132
RH
4176}
4177
562d3460
TW
4178/* Make sure the new address is within the region. We explicitly permit the
4179 current address to be at the exact end of the region when the address is
4180 non-zero, in case the region is at the end of addressable memory and the
5f992e62 4181 calculation wraps around. */
562d3460
TW
4182
4183static void
1579bae1 4184os_region_check (lang_output_section_statement_type *os,
6bdafbeb 4185 lang_memory_region_type *region,
1579bae1
AM
4186 etree_type *tree,
4187 bfd_vma base)
562d3460
TW
4188{
4189 if ((region->current < region->origin
4190 || (region->current - region->origin > region->length))
4191 && ((region->current != region->origin + region->length)
b7a26f91 4192 || base == 0))
562d3460 4193 {
1579bae1 4194 if (tree != NULL)
b7a26f91 4195 {
6feb9908
AM
4196 einfo (_("%X%P: address 0x%v of %B section %s"
4197 " is not within region %s\n"),
b7a26f91
KH
4198 region->current,
4199 os->bfd_section->owner,
4200 os->bfd_section->name,
4201 region->name);
4202 }
562d3460 4203 else
b7a26f91
KH
4204 {
4205 einfo (_("%X%P: region %s is full (%B section %s)\n"),
4206 region->name,
4207 os->bfd_section->owner,
4208 os->bfd_section->name);
4209 }
562d3460
TW
4210 /* Reset the region pointer. */
4211 region->current = region->origin;
4212 }
4213}
4214
252b5132
RH
4215/* Set the sizes for all the output sections. */
4216
2d20f7bf 4217static bfd_vma
1579bae1
AM
4218lang_size_sections_1
4219 (lang_statement_union_type *s,
4220 lang_output_section_statement_type *output_section_statement,
4221 lang_statement_union_type **prev,
4222 fill_type *fill,
4223 bfd_vma dot,
4224 bfd_boolean *relax,
4225 bfd_boolean check_regions)
252b5132
RH
4226{
4227 /* Size up the sections from their constituent parts. */
1579bae1 4228 for (; s != NULL; s = s->header.next)
252b5132
RH
4229 {
4230 switch (s->header.type)
4231 {
4232 case lang_output_section_statement_enum:
4233 {
e9ee469a 4234 bfd_vma newdot, after;
d1778b88 4235 lang_output_section_statement_type *os;
cde9e0be 4236 lang_memory_region_type *r;
252b5132 4237
d1778b88 4238 os = &s->output_section_statement;
a5df8c84
AM
4239 if (os->addr_tree != NULL)
4240 {
cde9e0be 4241 os->processed_vma = FALSE;
a5df8c84 4242 exp_fold_tree (os->addr_tree, bfd_abs_section_ptr, &dot);
a5df8c84
AM
4243
4244 if (!expld.result.valid_p
4245 && expld.phase != lang_mark_phase_enum)
4246 einfo (_("%F%S: non constant or forward reference"
4247 " address expression for section %s\n"),
4248 os->name);
4249
4250 dot = expld.result.value + expld.result.section->vma;
4251 }
4252
e9ee469a 4253 if (os->bfd_section == NULL)
75ff4589 4254 /* This section was removed or never actually created. */
252b5132
RH
4255 break;
4256
4257 /* If this is a COFF shared library section, use the size and
4258 address from the input section. FIXME: This is COFF
4259 specific; it would be cleaner if there were some other way
4260 to do this, but nothing simple comes to mind. */
ebe372c1
L
4261 if ((bfd_get_flavour (output_bfd) == bfd_target_ecoff_flavour
4262 || bfd_get_flavour (output_bfd) == bfd_target_coff_flavour)
4263 && (os->bfd_section->flags & SEC_COFF_SHARED_LIBRARY) != 0)
252b5132 4264 {
08da4cac 4265 asection *input;
252b5132
RH
4266
4267 if (os->children.head == NULL
bba1a0c0 4268 || os->children.head->header.next != NULL
6feb9908
AM
4269 || (os->children.head->header.type
4270 != lang_input_section_enum))
4271 einfo (_("%P%X: Internal error on COFF shared library"
4272 " section %s\n"), os->name);
252b5132
RH
4273
4274 input = os->children.head->input_section.section;
4275 bfd_set_section_vma (os->bfd_section->owner,
4276 os->bfd_section,
4277 bfd_section_vma (input->owner, input));
eea6121a 4278 os->bfd_section->size = input->size;
252b5132
RH
4279 break;
4280 }
4281
a5df8c84 4282 newdot = dot;
252b5132
RH
4283 if (bfd_is_abs_section (os->bfd_section))
4284 {
4285 /* No matter what happens, an abs section starts at zero. */
4286 ASSERT (os->bfd_section->vma == 0);
4287 }
4288 else
4289 {
94b50910 4290 int align;
7270c5ed 4291
1579bae1 4292 if (os->addr_tree == NULL)
252b5132
RH
4293 {
4294 /* No address specified for this section, get one
4295 from the region specification. */
1579bae1 4296 if (os->region == NULL
6feb9908 4297 || ((os->bfd_section->flags & (SEC_ALLOC | SEC_LOAD))
252b5132 4298 && os->region->name[0] == '*'
6feb9908
AM
4299 && strcmp (os->region->name,
4300 DEFAULT_MEMORY_REGION) == 0))
252b5132
RH
4301 {
4302 os->region = lang_memory_default (os->bfd_section);
4303 }
4304
4305 /* If a loadable section is using the default memory
4306 region, and some non default memory regions were
66184979 4307 defined, issue an error message. */
f0636a44
AM
4308 if (!os->ignored
4309 && !IGNORE_SECTION (os->bfd_section)
1049f94e 4310 && ! link_info.relocatable
cf888e70 4311 && check_regions
6feb9908
AM
4312 && strcmp (os->region->name,
4313 DEFAULT_MEMORY_REGION) == 0
252b5132 4314 && lang_memory_region_list != NULL
d1778b88 4315 && (strcmp (lang_memory_region_list->name,
a747ee4d 4316 DEFAULT_MEMORY_REGION) != 0
e9ee469a
AM
4317 || lang_memory_region_list->next != NULL)
4318 && expld.phase != lang_mark_phase_enum)
66184979
NC
4319 {
4320 /* By default this is an error rather than just a
4321 warning because if we allocate the section to the
4322 default memory region we can end up creating an
07f3b6ad
KH
4323 excessively large binary, or even seg faulting when
4324 attempting to perform a negative seek. See
6feb9908 4325 sources.redhat.com/ml/binutils/2003-04/msg00423.html
66184979
NC
4326 for an example of this. This behaviour can be
4327 overridden by the using the --no-check-sections
4328 switch. */
4329 if (command_line.check_section_addresses)
6feb9908
AM
4330 einfo (_("%P%F: error: no memory region specified"
4331 " for loadable section `%s'\n"),
66184979
NC
4332 bfd_get_section_name (output_bfd,
4333 os->bfd_section));
4334 else
6feb9908
AM
4335 einfo (_("%P: warning: no memory region specified"
4336 " for loadable section `%s'\n"),
66184979
NC
4337 bfd_get_section_name (output_bfd,
4338 os->bfd_section));
4339 }
252b5132 4340
e9ee469a 4341 newdot = os->region->current;
94b50910 4342 align = os->bfd_section->alignment_power;
252b5132 4343 }
94b50910
AM
4344 else
4345 align = os->section_alignment;
5f992e62 4346
7270c5ed 4347 /* Align to what the section needs. */
94b50910
AM
4348 if (align > 0)
4349 {
4350 bfd_vma savedot = newdot;
4351 newdot = align_power (newdot, align);
252b5132 4352
94b50910
AM
4353 if (newdot != savedot
4354 && (config.warn_section_align
4355 || os->addr_tree != NULL)
4356 && expld.phase != lang_mark_phase_enum)
4357 einfo (_("%P: warning: changing start of section"
4358 " %s by %lu bytes\n"),
4359 os->name, (unsigned long) (newdot - savedot));
4360 }
252b5132 4361
e9ee469a 4362 bfd_set_section_vma (0, os->bfd_section, newdot);
5f992e62 4363
252b5132
RH
4364 os->bfd_section->output_offset = 0;
4365 }
4366
2d20f7bf 4367 lang_size_sections_1 (os->children.head, os, &os->children.head,
e9ee469a
AM
4368 os->fill, newdot, relax, check_regions);
4369
cde9e0be 4370 os->processed_vma = TRUE;
e9ee469a
AM
4371
4372 if (bfd_is_abs_section (os->bfd_section) || os->ignored)
2f475487
AM
4373 /* Except for some special linker created sections,
4374 no output section should change from zero size
4375 after strip_excluded_output_sections. A non-zero
4376 size on an ignored section indicates that some
4377 input section was not sized early enough. */
4378 ASSERT (os->bfd_section->size == 0);
cde9e0be 4379 else
e9ee469a 4380 {
cde9e0be
AM
4381 dot = os->bfd_section->vma;
4382
4383 /* Put the section within the requested block size, or
4384 align at the block boundary. */
4385 after = ((dot
4386 + TO_ADDR (os->bfd_section->size)
4387 + os->block_value - 1)
4388 & - (bfd_vma) os->block_value);
4389
4390 os->bfd_section->size = TO_SIZE (after - os->bfd_section->vma);
4391 }
4392
4393 /* Set section lma. */
4394 r = os->region;
4395 if (r == NULL)
4396 r = lang_memory_region_lookup (DEFAULT_MEMORY_REGION, FALSE);
4397
4398 if (os->load_base)
4399 {
4400 bfd_vma lma = exp_get_abs_int (os->load_base, 0, "load base");
4401 os->bfd_section->lma = lma;
e9ee469a 4402 }
cde9e0be
AM
4403 else if (os->region != NULL
4404 && os->lma_region != NULL
4405 && os->lma_region != os->region)
4406 {
4407 bfd_vma lma = os->lma_region->current;
e9ee469a 4408
cde9e0be
AM
4409 if (os->section_alignment != -1)
4410 lma = align_power (lma, os->section_alignment);
4411 os->bfd_section->lma = lma;
4412 }
dc0b6aa0
AM
4413 else if (r->last_os != NULL
4414 && (os->bfd_section->flags & SEC_ALLOC) != 0)
cde9e0be
AM
4415 {
4416 bfd_vma lma;
4417 asection *last;
4418
4419 last = r->last_os->output_section_statement.bfd_section;
dc0b6aa0
AM
4420
4421 /* A backwards move of dot should be accompanied by
4422 an explicit assignment to the section LMA (ie.
91eb6c46 4423 os->load_base set) because backwards moves can
dc0b6aa0 4424 create overlapping LMAs. */
264b6205 4425 if (dot < last->vma
91eb6c46
AM
4426 && os->bfd_section->size != 0
4427 && dot + os->bfd_section->size <= last->vma)
dc0b6aa0 4428 {
dc0b6aa0
AM
4429 /* If dot moved backwards then leave lma equal to
4430 vma. This is the old default lma, which might
4431 just happen to work when the backwards move is
91eb6c46
AM
4432 sufficiently large. Nag if this changes anything,
4433 so people can fix their linker scripts. */
4434
4435 if (last->vma != last->lma)
4436 einfo (_("%P: warning: dot moved backwards before `%s'\n"),
4437 os->name);
dc0b6aa0
AM
4438 }
4439 else
cde9e0be
AM
4440 {
4441 /* If the current vma overlaps the previous section,
4442 then set the current lma to that at the end of
4443 the previous section. The previous section was
4444 probably an overlay. */
4445 if ((dot >= last->vma
4446 && dot < last->vma + last->size)
4447 || (last->vma >= dot
4448 && last->vma < dot + os->bfd_section->size))
4449 lma = last->lma + last->size;
4450
4451 /* Otherwise, keep the same lma to vma relationship
4452 as the previous section. */
4453 else
4454 lma = dot + last->lma - last->vma;
4455
4456 if (os->section_alignment != -1)
4457 lma = align_power (lma, os->section_alignment);
4458 os->bfd_section->lma = lma;
4459 }
4460 }
4461 os->processed_lma = TRUE;
5f992e62 4462
cde9e0be
AM
4463 if (bfd_is_abs_section (os->bfd_section) || os->ignored)
4464 break;
252b5132 4465
cde9e0be
AM
4466 /* Keep track of normal sections using the default
4467 lma region. We use this to set the lma for
4468 following sections. Overlays or other linker
4469 script assignment to lma might mean that the
dc0b6aa0
AM
4470 default lma == vma is incorrect.
4471 To avoid warnings about dot moving backwards when using
4472 -Ttext, don't start tracking sections until we find one
4473 of non-zero size or with lma set differently to vma. */
cde9e0be
AM
4474 if (((os->bfd_section->flags & SEC_HAS_CONTENTS) != 0
4475 || (os->bfd_section->flags & SEC_THREAD_LOCAL) == 0)
dc0b6aa0
AM
4476 && (os->bfd_section->flags & SEC_ALLOC) != 0
4477 && (os->bfd_section->size != 0
264b6205
AM
4478 || (r->last_os == NULL
4479 && os->bfd_section->vma != os->bfd_section->lma)
4480 || (r->last_os != NULL
4481 && dot >= (r->last_os->output_section_statement
ea0c3cd5 4482 .bfd_section->vma)))
cde9e0be
AM
4483 && os->lma_region == NULL
4484 && !link_info.relocatable)
4485 r->last_os = s;
9f88b410 4486
e5caec89
NS
4487 /* .tbss sections effectively have zero size. */
4488 if ((os->bfd_section->flags & SEC_HAS_CONTENTS) != 0
4489 || (os->bfd_section->flags & SEC_THREAD_LOCAL) == 0
4490 || link_info.relocatable)
eea6121a 4491 dot += TO_ADDR (os->bfd_section->size);
e5caec89 4492
9f88b410 4493 if (os->update_dot_tree != 0)
e9ee469a 4494 exp_fold_tree (os->update_dot_tree, bfd_abs_section_ptr, &dot);
9f88b410 4495
252b5132
RH
4496 /* Update dot in the region ?
4497 We only do this if the section is going to be allocated,
4498 since unallocated sections do not contribute to the region's
13392b77 4499 overall size in memory.
5f992e62 4500
cce4c4c5
NC
4501 If the SEC_NEVER_LOAD bit is not set, it will affect the
4502 addresses of sections after it. We have to update
4503 dot. */
1579bae1 4504 if (os->region != NULL
6feb9908
AM
4505 && ((os->bfd_section->flags & SEC_NEVER_LOAD) == 0
4506 || (os->bfd_section->flags & (SEC_ALLOC | SEC_LOAD))))
252b5132
RH
4507 {
4508 os->region->current = dot;
5f992e62 4509
cf888e70
NC
4510 if (check_regions)
4511 /* Make sure the new address is within the region. */
4512 os_region_check (os, os->region, os->addr_tree,
4513 os->bfd_section->vma);
08da4cac 4514
ee3cc2e2 4515 if (os->lma_region != NULL && os->lma_region != os->region)
08da4cac 4516 {
cde9e0be
AM
4517 os->lma_region->current
4518 = os->bfd_section->lma + TO_ADDR (os->bfd_section->size);
66e28d60 4519
cf888e70
NC
4520 if (check_regions)
4521 os_region_check (os, os->lma_region, NULL,
cde9e0be 4522 os->bfd_section->lma);
08da4cac 4523 }
252b5132
RH
4524 }
4525 }
4526 break;
4527
4528 case lang_constructors_statement_enum:
2d20f7bf
JJ
4529 dot = lang_size_sections_1 (constructor_list.head,
4530 output_section_statement,
4531 &s->wild_statement.children.head,
cf888e70 4532 fill, dot, relax, check_regions);
252b5132
RH
4533 break;
4534
4535 case lang_data_statement_enum:
4536 {
4537 unsigned int size = 0;
4538
7fabd029 4539 s->data_statement.output_offset =
08da4cac 4540 dot - output_section_statement->bfd_section->vma;
252b5132
RH
4541 s->data_statement.output_section =
4542 output_section_statement->bfd_section;
4543
1b493742
NS
4544 /* We might refer to provided symbols in the expression, and
4545 need to mark them as needed. */
e9ee469a 4546 exp_fold_tree (s->data_statement.exp, bfd_abs_section_ptr, &dot);
1b493742 4547
252b5132
RH
4548 switch (s->data_statement.type)
4549 {
08da4cac
KH
4550 default:
4551 abort ();
252b5132
RH
4552 case QUAD:
4553 case SQUAD:
4554 size = QUAD_SIZE;
4555 break;
4556 case LONG:
4557 size = LONG_SIZE;
4558 break;
4559 case SHORT:
4560 size = SHORT_SIZE;
4561 break;
4562 case BYTE:
4563 size = BYTE_SIZE;
4564 break;
4565 }
e5caa5e0
AM
4566 if (size < TO_SIZE ((unsigned) 1))
4567 size = TO_SIZE ((unsigned) 1);
4568 dot += TO_ADDR (size);
eea6121a 4569 output_section_statement->bfd_section->size += size;
252b5132
RH
4570 }
4571 break;
4572
4573 case lang_reloc_statement_enum:
4574 {
4575 int size;
4576
7fabd029 4577 s->reloc_statement.output_offset =
252b5132
RH
4578 dot - output_section_statement->bfd_section->vma;
4579 s->reloc_statement.output_section =
4580 output_section_statement->bfd_section;
4581 size = bfd_get_reloc_size (s->reloc_statement.howto);
e5caa5e0 4582 dot += TO_ADDR (size);
eea6121a 4583 output_section_statement->bfd_section->size += size;
252b5132
RH
4584 }
4585 break;
5f992e62 4586
252b5132 4587 case lang_wild_statement_enum:
2d20f7bf
JJ
4588 dot = lang_size_sections_1 (s->wild_statement.children.head,
4589 output_section_statement,
4590 &s->wild_statement.children.head,
cf888e70 4591 fill, dot, relax, check_regions);
252b5132
RH
4592 break;
4593
4594 case lang_object_symbols_statement_enum:
4595 link_info.create_object_symbols_section =
4596 output_section_statement->bfd_section;
4597 break;
e9ee469a 4598
252b5132
RH
4599 case lang_output_statement_enum:
4600 case lang_target_statement_enum:
4601 break;
e9ee469a 4602
252b5132
RH
4603 case lang_input_section_enum:
4604 {
4605 asection *i;
4606
4607 i = (*prev)->input_section.section;
eea6121a 4608 if (relax)
252b5132 4609 {
b34976b6 4610 bfd_boolean again;
252b5132
RH
4611
4612 if (! bfd_relax_section (i->owner, i, &link_info, &again))
4613 einfo (_("%P%F: can't relax section: %E\n"));
4614 if (again)
b34976b6 4615 *relax = TRUE;
252b5132 4616 }
b3327aad
AM
4617 dot = size_input_section (prev, output_section_statement,
4618 output_section_statement->fill, dot);
252b5132
RH
4619 }
4620 break;
e9ee469a 4621
252b5132
RH
4622 case lang_input_statement_enum:
4623 break;
e9ee469a 4624
252b5132 4625 case lang_fill_statement_enum:
08da4cac
KH
4626 s->fill_statement.output_section =
4627 output_section_statement->bfd_section;
252b5132
RH
4628
4629 fill = s->fill_statement.fill;
4630 break;
e9ee469a 4631
252b5132
RH
4632 case lang_assignment_statement_enum:
4633 {
4634 bfd_vma newdot = dot;
49c13adb 4635 etree_type *tree = s->assignment_statement.exp;
252b5132 4636
49c13adb 4637 exp_fold_tree (tree,
408082ec 4638 output_section_statement->bfd_section,
252b5132
RH
4639 &newdot);
4640
49c13adb 4641 /* This symbol is relative to this section. */
a14a5de3 4642 if ((tree->type.node_class == etree_provided
49c13adb
L
4643 || tree->type.node_class == etree_assign)
4644 && (tree->assign.dst [0] != '.'
4645 || tree->assign.dst [1] != '\0'))
4646 output_section_statement->section_relative_symbol = 1;
4647
85852e36 4648 if (!output_section_statement->ignored)
252b5132 4649 {
252b5132
RH
4650 if (output_section_statement == abs_output_section)
4651 {
4652 /* If we don't have an output section, then just adjust
4653 the default memory address. */
6feb9908
AM
4654 lang_memory_region_lookup (DEFAULT_MEMORY_REGION,
4655 FALSE)->current = newdot;
252b5132 4656 }
85852e36 4657 else if (newdot != dot)
252b5132 4658 {
b3327aad
AM
4659 /* Insert a pad after this statement. We can't
4660 put the pad before when relaxing, in case the
4661 assignment references dot. */
e5caa5e0 4662 insert_pad (&s->header.next, fill, TO_SIZE (newdot - dot),
b3327aad
AM
4663 output_section_statement->bfd_section, dot);
4664
4665 /* Don't neuter the pad below when relaxing. */
4666 s = s->header.next;
9dfc8ab2 4667
e9ee469a
AM
4668 /* If dot is advanced, this implies that the section
4669 should have space allocated to it, unless the
4670 user has explicitly stated that the section
4671 should never be loaded. */
4672 if (!(output_section_statement->flags
4673 & (SEC_NEVER_LOAD | SEC_ALLOC)))
4674 output_section_statement->bfd_section->flags |= SEC_ALLOC;
4675 }
252b5132
RH
4676 dot = newdot;
4677 }
4678 }
4679 break;
4680
4681 case lang_padding_statement_enum:
c0c330a7
AM
4682 /* If this is the first time lang_size_sections is called,
4683 we won't have any padding statements. If this is the
4684 second or later passes when relaxing, we should allow
4685 padding to shrink. If padding is needed on this pass, it
4686 will be added back in. */
4687 s->padding_statement.size = 0;
6e814ff8
AM
4688
4689 /* Make sure output_offset is valid. If relaxation shrinks
4690 the section and this pad isn't needed, it's possible to
4691 have output_offset larger than the final size of the
4692 section. bfd_set_section_contents will complain even for
4693 a pad size of zero. */
4694 s->padding_statement.output_offset
4695 = dot - output_section_statement->bfd_section->vma;
252b5132
RH
4696 break;
4697
4698 case lang_group_statement_enum:
2d20f7bf
JJ
4699 dot = lang_size_sections_1 (s->group_statement.children.head,
4700 output_section_statement,
4701 &s->group_statement.children.head,
cf888e70 4702 fill, dot, relax, check_regions);
252b5132
RH
4703 break;
4704
4705 default:
4706 FAIL ();
4707 break;
4708
c0c330a7 4709 /* We can only get here when relaxing is turned on. */
252b5132
RH
4710 case lang_address_statement_enum:
4711 break;
4712 }
4713 prev = &s->header.next;
4714 }
4715 return dot;
4716}
4717
591a748a
NC
4718/* Callback routine that is used in _bfd_elf_map_sections_to_segments.
4719 The BFD library has set NEW_SEGMENT to TRUE iff it thinks that
4720 CURRENT_SECTION and PREVIOUS_SECTION ought to be placed into different
4721 segments. We are allowed an opportunity to override this decision. */
2889e75b
NC
4722
4723bfd_boolean
4724ldlang_override_segment_assignment (struct bfd_link_info * info ATTRIBUTE_UNUSED,
4725 bfd * abfd ATTRIBUTE_UNUSED,
4726 asection * current_section,
4727 asection * previous_section,
4728 bfd_boolean new_segment)
4729{
4730 lang_output_section_statement_type * cur;
4731 lang_output_section_statement_type * prev;
591a748a
NC
4732
4733 /* The checks below are only necessary when the BFD library has decided
4734 that the two sections ought to be placed into the same segment. */
2889e75b
NC
4735 if (new_segment)
4736 return TRUE;
4737
4738 /* Paranoia checks. */
4739 if (current_section == NULL || previous_section == NULL)
4740 return new_segment;
4741
4742 /* Find the memory regions associated with the two sections.
4743 We call lang_output_section_find() here rather than scanning the list
4744 of output sections looking for a matching section pointer because if
591a748a 4745 we have a large number of sections then a hash lookup is faster. */
2889e75b
NC
4746 cur = lang_output_section_find (current_section->name);
4747 prev = lang_output_section_find (previous_section->name);
4748
591a748a 4749 /* More paranoia. */
2889e75b
NC
4750 if (cur == NULL || prev == NULL)
4751 return new_segment;
4752
4753 /* If the regions are different then force the sections to live in
591a748a
NC
4754 different segments. See the email thread starting at the following
4755 URL for the reasons why this is necessary:
2889e75b
NC
4756 http://sourceware.org/ml/binutils/2007-02/msg00216.html */
4757 return cur->region != prev->region;
4758}
4759
e9ee469a
AM
4760void
4761one_lang_size_sections_pass (bfd_boolean *relax, bfd_boolean check_regions)
2d20f7bf 4762{
420e579c 4763 lang_statement_iteration++;
e9ee469a
AM
4764 lang_size_sections_1 (statement_list.head, abs_output_section,
4765 &statement_list.head, 0, 0, relax, check_regions);
4766}
420e579c 4767
e9ee469a
AM
4768void
4769lang_size_sections (bfd_boolean *relax, bfd_boolean check_regions)
4770{
4771 expld.phase = lang_allocating_phase_enum;
4772 expld.dataseg.phase = exp_dataseg_none;
4773
4774 one_lang_size_sections_pass (relax, check_regions);
4775 if (expld.dataseg.phase == exp_dataseg_end_seen
4776 && link_info.relro && expld.dataseg.relro_end)
8c37241b
JJ
4777 {
4778 /* If DATA_SEGMENT_ALIGN DATA_SEGMENT_RELRO_END pair was seen, try
e9ee469a 4779 to put expld.dataseg.relro on a (common) page boundary. */
e3070fef 4780 bfd_vma old_min_base, relro_end, maxpage;
8c37241b 4781
e9ee469a
AM
4782 expld.dataseg.phase = exp_dataseg_relro_adjust;
4783 old_min_base = expld.dataseg.min_base;
4784 maxpage = expld.dataseg.maxpagesize;
4785 expld.dataseg.base += (-expld.dataseg.relro_end
4786 & (expld.dataseg.pagesize - 1));
a4f5ad88 4787 /* Compute the expected PT_GNU_RELRO segment end. */
e9ee469a
AM
4788 relro_end = (expld.dataseg.relro_end + expld.dataseg.pagesize - 1)
4789 & ~(expld.dataseg.pagesize - 1);
4790 if (old_min_base + maxpage < expld.dataseg.base)
e3070fef 4791 {
e9ee469a 4792 expld.dataseg.base -= maxpage;
e3070fef
JJ
4793 relro_end -= maxpage;
4794 }
f86a8756 4795 lang_reset_memory_regions ();
e9ee469a
AM
4796 one_lang_size_sections_pass (relax, check_regions);
4797 if (expld.dataseg.relro_end > relro_end)
a4f5ad88
JJ
4798 {
4799 /* The alignment of sections between DATA_SEGMENT_ALIGN
4800 and DATA_SEGMENT_RELRO_END caused huge padding to be
4801 inserted at DATA_SEGMENT_RELRO_END. Try some other base. */
4802 asection *sec;
4803 unsigned int max_alignment_power = 0;
4804
4805 /* Find maximum alignment power of sections between
4806 DATA_SEGMENT_ALIGN and DATA_SEGMENT_RELRO_END. */
4807 for (sec = output_bfd->sections; sec; sec = sec->next)
e9ee469a
AM
4808 if (sec->vma >= expld.dataseg.base
4809 && sec->vma < expld.dataseg.relro_end
a4f5ad88
JJ
4810 && sec->alignment_power > max_alignment_power)
4811 max_alignment_power = sec->alignment_power;
4812
e9ee469a 4813 if (((bfd_vma) 1 << max_alignment_power) < expld.dataseg.pagesize)
a4f5ad88 4814 {
e9ee469a 4815 if (expld.dataseg.base - (1 << max_alignment_power)
e3070fef 4816 < old_min_base)
e9ee469a
AM
4817 expld.dataseg.base += expld.dataseg.pagesize;
4818 expld.dataseg.base -= (1 << max_alignment_power);
f86a8756 4819 lang_reset_memory_regions ();
e9ee469a 4820 one_lang_size_sections_pass (relax, check_regions);
a4f5ad88
JJ
4821 }
4822 }
e9ee469a
AM
4823 link_info.relro_start = expld.dataseg.base;
4824 link_info.relro_end = expld.dataseg.relro_end;
8c37241b 4825 }
e9ee469a 4826 else if (expld.dataseg.phase == exp_dataseg_end_seen)
2d20f7bf
JJ
4827 {
4828 /* If DATA_SEGMENT_ALIGN DATA_SEGMENT_END pair was seen, check whether
4829 a page could be saved in the data segment. */
4830 bfd_vma first, last;
4831
e9ee469a
AM
4832 first = -expld.dataseg.base & (expld.dataseg.pagesize - 1);
4833 last = expld.dataseg.end & (expld.dataseg.pagesize - 1);
2d20f7bf 4834 if (first && last
e9ee469a
AM
4835 && ((expld.dataseg.base & ~(expld.dataseg.pagesize - 1))
4836 != (expld.dataseg.end & ~(expld.dataseg.pagesize - 1)))
4837 && first + last <= expld.dataseg.pagesize)
2d20f7bf 4838 {
e9ee469a 4839 expld.dataseg.phase = exp_dataseg_adjust;
f86a8756 4840 lang_reset_memory_regions ();
e9ee469a 4841 one_lang_size_sections_pass (relax, check_regions);
2d20f7bf
JJ
4842 }
4843 }
4844
e9ee469a 4845 expld.phase = lang_final_phase_enum;
2d20f7bf
JJ
4846}
4847
420e579c
HPN
4848/* Worker function for lang_do_assignments. Recursiveness goes here. */
4849
4850static bfd_vma
66e28d60
AM
4851lang_do_assignments_1 (lang_statement_union_type *s,
4852 lang_output_section_statement_type *current_os,
4853 fill_type *fill,
4854 bfd_vma dot)
252b5132 4855{
1579bae1 4856 for (; s != NULL; s = s->header.next)
252b5132
RH
4857 {
4858 switch (s->header.type)
4859 {
4860 case lang_constructors_statement_enum:
420e579c 4861 dot = lang_do_assignments_1 (constructor_list.head,
66e28d60 4862 current_os, fill, dot);
252b5132
RH
4863 break;
4864
4865 case lang_output_section_statement_enum:
4866 {
d1778b88 4867 lang_output_section_statement_type *os;
252b5132 4868
d1778b88 4869 os = &(s->output_section_statement);
75ff4589 4870 if (os->bfd_section != NULL && !os->ignored)
252b5132
RH
4871 {
4872 dot = os->bfd_section->vma;
66e28d60 4873
cde9e0be 4874 lang_do_assignments_1 (os->children.head, os, os->fill, dot);
66e28d60 4875
3737f867
JJ
4876 /* .tbss sections effectively have zero size. */
4877 if ((os->bfd_section->flags & SEC_HAS_CONTENTS) != 0
4878 || (os->bfd_section->flags & SEC_THREAD_LOCAL) == 0
4879 || link_info.relocatable)
cde9e0be 4880 dot += TO_ADDR (os->bfd_section->size);
252b5132
RH
4881 }
4882 }
4883 break;
e9ee469a 4884
252b5132
RH
4885 case lang_wild_statement_enum:
4886
420e579c 4887 dot = lang_do_assignments_1 (s->wild_statement.children.head,
66e28d60 4888 current_os, fill, dot);
252b5132
RH
4889 break;
4890
4891 case lang_object_symbols_statement_enum:
4892 case lang_output_statement_enum:
4893 case lang_target_statement_enum:
252b5132 4894 break;
e9ee469a 4895
252b5132 4896 case lang_data_statement_enum:
e9ee469a
AM
4897 exp_fold_tree (s->data_statement.exp, bfd_abs_section_ptr, &dot);
4898 if (expld.result.valid_p)
4899 s->data_statement.value = (expld.result.value
4900 + expld.result.section->vma);
4901 else
4902 einfo (_("%F%P: invalid data statement\n"));
b7a26f91
KH
4903 {
4904 unsigned int size;
08da4cac
KH
4905 switch (s->data_statement.type)
4906 {
4907 default:
4908 abort ();
4909 case QUAD:
4910 case SQUAD:
4911 size = QUAD_SIZE;
4912 break;
4913 case LONG:
4914 size = LONG_SIZE;
4915 break;
4916 case SHORT:
4917 size = SHORT_SIZE;
4918 break;
4919 case BYTE:
4920 size = BYTE_SIZE;
4921 break;
4922 }
e5caa5e0
AM
4923 if (size < TO_SIZE ((unsigned) 1))
4924 size = TO_SIZE ((unsigned) 1);
4925 dot += TO_ADDR (size);
08da4cac 4926 }
252b5132
RH
4927 break;
4928
4929 case lang_reloc_statement_enum:
e9ee469a
AM
4930 exp_fold_tree (s->reloc_statement.addend_exp,
4931 bfd_abs_section_ptr, &dot);
4932 if (expld.result.valid_p)
4933 s->reloc_statement.addend_value = expld.result.value;
4934 else
4935 einfo (_("%F%P: invalid reloc statement\n"));
e5caa5e0 4936 dot += TO_ADDR (bfd_get_reloc_size (s->reloc_statement.howto));
252b5132
RH
4937 break;
4938
4939 case lang_input_section_enum:
4940 {
4941 asection *in = s->input_section.section;
4942
57ceae94 4943 if ((in->flags & SEC_EXCLUDE) == 0)
eea6121a 4944 dot += TO_ADDR (in->size);
252b5132
RH
4945 }
4946 break;
4947
4948 case lang_input_statement_enum:
4949 break;
e9ee469a 4950
252b5132
RH
4951 case lang_fill_statement_enum:
4952 fill = s->fill_statement.fill;
4953 break;
252b5132 4954
e9ee469a
AM
4955 case lang_assignment_statement_enum:
4956 exp_fold_tree (s->assignment_statement.exp,
66e28d60 4957 current_os->bfd_section,
e9ee469a 4958 &dot);
252b5132 4959 break;
e9ee469a 4960
252b5132 4961 case lang_padding_statement_enum:
e5caa5e0 4962 dot += TO_ADDR (s->padding_statement.size);
252b5132
RH
4963 break;
4964
4965 case lang_group_statement_enum:
420e579c 4966 dot = lang_do_assignments_1 (s->group_statement.children.head,
66e28d60 4967 current_os, fill, dot);
252b5132
RH
4968 break;
4969
4970 default:
4971 FAIL ();
4972 break;
e9ee469a 4973
252b5132
RH
4974 case lang_address_statement_enum:
4975 break;
4976 }
252b5132
RH
4977 }
4978 return dot;
4979}
4980
f2241121 4981void
e9ee469a 4982lang_do_assignments (void)
420e579c 4983{
420e579c 4984 lang_statement_iteration++;
e9ee469a 4985 lang_do_assignments_1 (statement_list.head, abs_output_section, NULL, 0);
420e579c
HPN
4986}
4987
252b5132
RH
4988/* Fix any .startof. or .sizeof. symbols. When the assemblers see the
4989 operator .startof. (section_name), it produces an undefined symbol
4990 .startof.section_name. Similarly, when it sees
4991 .sizeof. (section_name), it produces an undefined symbol
4992 .sizeof.section_name. For all the output sections, we look for
4993 such symbols, and set them to the correct value. */
4994
4995static void
1579bae1 4996lang_set_startof (void)
252b5132
RH
4997{
4998 asection *s;
4999
1049f94e 5000 if (link_info.relocatable)
252b5132
RH
5001 return;
5002
5003 for (s = output_bfd->sections; s != NULL; s = s->next)
5004 {
5005 const char *secname;
5006 char *buf;
5007 struct bfd_link_hash_entry *h;
5008
5009 secname = bfd_get_section_name (output_bfd, s);
5010 buf = xmalloc (10 + strlen (secname));
5011
5012 sprintf (buf, ".startof.%s", secname);
b34976b6 5013 h = bfd_link_hash_lookup (link_info.hash, buf, FALSE, FALSE, TRUE);
252b5132
RH
5014 if (h != NULL && h->type == bfd_link_hash_undefined)
5015 {
5016 h->type = bfd_link_hash_defined;
5017 h->u.def.value = bfd_get_section_vma (output_bfd, s);
5018 h->u.def.section = bfd_abs_section_ptr;
5019 }
5020
5021 sprintf (buf, ".sizeof.%s", secname);
b34976b6 5022 h = bfd_link_hash_lookup (link_info.hash, buf, FALSE, FALSE, TRUE);
252b5132
RH
5023 if (h != NULL && h->type == bfd_link_hash_undefined)
5024 {
5025 h->type = bfd_link_hash_defined;
eea6121a 5026 h->u.def.value = TO_ADDR (s->size);
252b5132
RH
5027 h->u.def.section = bfd_abs_section_ptr;
5028 }
5029
5030 free (buf);
5031 }
5032}
5033
5034static void
750877ba 5035lang_end (void)
252b5132
RH
5036{
5037 struct bfd_link_hash_entry *h;
b34976b6 5038 bfd_boolean warn;
252b5132 5039
1049f94e 5040 if (link_info.relocatable || link_info.shared)
b34976b6 5041 warn = FALSE;
252b5132 5042 else
b34976b6 5043 warn = TRUE;
252b5132 5044
1579bae1 5045 if (entry_symbol.name == NULL)
252b5132 5046 {
a359509e
ZW
5047 /* No entry has been specified. Look for the default entry, but
5048 don't warn if we don't find it. */
5049 entry_symbol.name = entry_symbol_default;
b34976b6 5050 warn = FALSE;
252b5132
RH
5051 }
5052
e3e942e9 5053 h = bfd_link_hash_lookup (link_info.hash, entry_symbol.name,
b34976b6 5054 FALSE, FALSE, TRUE);
1579bae1 5055 if (h != NULL
252b5132
RH
5056 && (h->type == bfd_link_hash_defined
5057 || h->type == bfd_link_hash_defweak)
5058 && h->u.def.section->output_section != NULL)
5059 {
5060 bfd_vma val;
5061
5062 val = (h->u.def.value
5063 + bfd_get_section_vma (output_bfd,
5064 h->u.def.section->output_section)
5065 + h->u.def.section->output_offset);
5066 if (! bfd_set_start_address (output_bfd, val))
e3e942e9 5067 einfo (_("%P%F:%s: can't set start address\n"), entry_symbol.name);
252b5132
RH
5068 }
5069 else
5070 {
5071 bfd_vma val;
5f992e62 5072 const char *send;
252b5132
RH
5073
5074 /* We couldn't find the entry symbol. Try parsing it as a
afd7a018 5075 number. */
e3e942e9 5076 val = bfd_scan_vma (entry_symbol.name, &send, 0);
252b5132
RH
5077 if (*send == '\0')
5078 {
5079 if (! bfd_set_start_address (output_bfd, val))
5080 einfo (_("%P%F: can't set start address\n"));
5081 }
5082 else
5083 {
5084 asection *ts;
5085
5086 /* Can't find the entry symbol, and it's not a number. Use
5087 the first address in the text section. */
1e281515 5088 ts = bfd_get_section_by_name (output_bfd, entry_section);
1579bae1 5089 if (ts != NULL)
252b5132
RH
5090 {
5091 if (warn)
6feb9908
AM
5092 einfo (_("%P: warning: cannot find entry symbol %s;"
5093 " defaulting to %V\n"),
e3e942e9
AM
5094 entry_symbol.name,
5095 bfd_get_section_vma (output_bfd, ts));
252b5132
RH
5096 if (! bfd_set_start_address (output_bfd,
5097 bfd_get_section_vma (output_bfd,
5098 ts)))
5099 einfo (_("%P%F: can't set start address\n"));
5100 }
5101 else
5102 {
5103 if (warn)
6feb9908
AM
5104 einfo (_("%P: warning: cannot find entry symbol %s;"
5105 " not setting start address\n"),
e3e942e9 5106 entry_symbol.name);
252b5132
RH
5107 }
5108 }
5109 }
420e579c 5110
7115639b
AM
5111 /* Don't bfd_hash_table_free (&lang_definedness_table);
5112 map file output may result in a call of lang_track_definedness. */
252b5132
RH
5113}
5114
5115/* This is a small function used when we want to ignore errors from
5116 BFD. */
5117
5118static void
87f2a346 5119ignore_bfd_errors (const char *s ATTRIBUTE_UNUSED, ...)
252b5132
RH
5120{
5121 /* Don't do anything. */
5122}
5123
5124/* Check that the architecture of all the input files is compatible
5125 with the output file. Also call the backend to let it do any
5126 other checking that is needed. */
5127
5128static void
1579bae1 5129lang_check (void)
252b5132
RH
5130{
5131 lang_statement_union_type *file;
5132 bfd *input_bfd;
5f992e62 5133 const bfd_arch_info_type *compatible;
252b5132 5134
1579bae1 5135 for (file = file_chain.head; file != NULL; file = file->input_statement.next)
252b5132
RH
5136 {
5137 input_bfd = file->input_statement.the_bfd;
6feb9908
AM
5138 compatible
5139 = bfd_arch_get_compatible (input_bfd, output_bfd,
5140 command_line.accept_unknown_input_arch);
30cba025
AM
5141
5142 /* In general it is not possible to perform a relocatable
5143 link between differing object formats when the input
5144 file has relocations, because the relocations in the
5145 input format may not have equivalent representations in
5146 the output format (and besides BFD does not translate
5147 relocs for other link purposes than a final link). */
1049f94e 5148 if ((link_info.relocatable || link_info.emitrelocations)
30cba025 5149 && (compatible == NULL
d35a52e2 5150 || bfd_get_flavour (input_bfd) != bfd_get_flavour (output_bfd))
30cba025
AM
5151 && (bfd_get_file_flags (input_bfd) & HAS_RELOC) != 0)
5152 {
6feb9908
AM
5153 einfo (_("%P%F: Relocatable linking with relocations from"
5154 " format %s (%B) to format %s (%B) is not supported\n"),
30cba025
AM
5155 bfd_get_target (input_bfd), input_bfd,
5156 bfd_get_target (output_bfd), output_bfd);
5157 /* einfo with %F exits. */
5158 }
5159
252b5132
RH
5160 if (compatible == NULL)
5161 {
5162 if (command_line.warn_mismatch)
6feb9908
AM
5163 einfo (_("%P: warning: %s architecture of input file `%B'"
5164 " is incompatible with %s output\n"),
252b5132
RH
5165 bfd_printable_name (input_bfd), input_bfd,
5166 bfd_printable_name (output_bfd));
5167 }
b9247304 5168 else if (bfd_count_sections (input_bfd))
252b5132 5169 {
b9247304 5170 /* If the input bfd has no contents, it shouldn't set the
b7a26f91 5171 private data of the output bfd. */
b9247304 5172
252b5132
RH
5173 bfd_error_handler_type pfn = NULL;
5174
5175 /* If we aren't supposed to warn about mismatched input
afd7a018
AM
5176 files, temporarily set the BFD error handler to a
5177 function which will do nothing. We still want to call
5178 bfd_merge_private_bfd_data, since it may set up
5179 information which is needed in the output file. */
252b5132
RH
5180 if (! command_line.warn_mismatch)
5181 pfn = bfd_set_error_handler (ignore_bfd_errors);
5182 if (! bfd_merge_private_bfd_data (input_bfd, output_bfd))
5183 {
5184 if (command_line.warn_mismatch)
6feb9908
AM
5185 einfo (_("%P%X: failed to merge target specific data"
5186 " of file %B\n"), input_bfd);
252b5132
RH
5187 }
5188 if (! command_line.warn_mismatch)
5189 bfd_set_error_handler (pfn);
5190 }
5191 }
5192}
5193
5194/* Look through all the global common symbols and attach them to the
5195 correct section. The -sort-common command line switch may be used
5196 to roughly sort the entries by size. */
5197
5198static void
1579bae1 5199lang_common (void)
252b5132 5200{
4818e05f
AM
5201 if (command_line.inhibit_common_definition)
5202 return;
1049f94e 5203 if (link_info.relocatable
252b5132
RH
5204 && ! command_line.force_common_definition)
5205 return;
5206
5207 if (! config.sort_common)
1579bae1 5208 bfd_link_hash_traverse (link_info.hash, lang_one_common, NULL);
252b5132
RH
5209 else
5210 {
5211 int power;
5212
5213 for (power = 4; power >= 0; power--)
1579bae1 5214 bfd_link_hash_traverse (link_info.hash, lang_one_common, &power);
252b5132
RH
5215 }
5216}
5217
5218/* Place one common symbol in the correct section. */
5219
b34976b6 5220static bfd_boolean
1579bae1 5221lang_one_common (struct bfd_link_hash_entry *h, void *info)
252b5132
RH
5222{
5223 unsigned int power_of_two;
5224 bfd_vma size;
5225 asection *section;
5226
5227 if (h->type != bfd_link_hash_common)
b34976b6 5228 return TRUE;
252b5132
RH
5229
5230 size = h->u.c.size;
5231 power_of_two = h->u.c.p->alignment_power;
5232
5233 if (config.sort_common
5234 && power_of_two < (unsigned int) *(int *) info)
b34976b6 5235 return TRUE;
252b5132
RH
5236
5237 section = h->u.c.p->section;
5238
e5caa5e0 5239 /* Increase the size of the section to align the common sym. */
eea6121a
AM
5240 section->size += ((bfd_vma) 1 << (power_of_two + opb_shift)) - 1;
5241 section->size &= (- (bfd_vma) 1 << (power_of_two + opb_shift));
252b5132
RH
5242
5243 /* Adjust the alignment if necessary. */
5244 if (power_of_two > section->alignment_power)
5245 section->alignment_power = power_of_two;
5246
5247 /* Change the symbol from common to defined. */
5248 h->type = bfd_link_hash_defined;
5249 h->u.def.section = section;
eea6121a 5250 h->u.def.value = section->size;
252b5132
RH
5251
5252 /* Increase the size of the section. */
eea6121a 5253 section->size += size;
252b5132
RH
5254
5255 /* Make sure the section is allocated in memory, and make sure that
5256 it is no longer a common section. */
5257 section->flags |= SEC_ALLOC;
08da4cac 5258 section->flags &= ~SEC_IS_COMMON;
252b5132
RH
5259
5260 if (config.map_file != NULL)
5261 {
b34976b6 5262 static bfd_boolean header_printed;
252b5132
RH
5263 int len;
5264 char *name;
5265 char buf[50];
5266
5267 if (! header_printed)
5268 {
5269 minfo (_("\nAllocating common symbols\n"));
5270 minfo (_("Common symbol size file\n\n"));
b34976b6 5271 header_printed = TRUE;
252b5132
RH
5272 }
5273
5274 name = demangle (h->root.string);
5275 minfo ("%s", name);
5276 len = strlen (name);
5277 free (name);
5278
5279 if (len >= 19)
5280 {
5281 print_nl ();
5282 len = 0;
5283 }
5284 while (len < 20)
5285 {
5286 print_space ();
5287 ++len;
5288 }
5289
5290 minfo ("0x");
5291 if (size <= 0xffffffff)
5292 sprintf (buf, "%lx", (unsigned long) size);
5293 else
5294 sprintf_vma (buf, size);
5295 minfo ("%s", buf);
5296 len = strlen (buf);
5297
5298 while (len < 16)
5299 {
5300 print_space ();
5301 ++len;
5302 }
5303
5304 minfo ("%B\n", section->owner);
5305 }
5306
b34976b6 5307 return TRUE;
252b5132
RH
5308}
5309
08da4cac
KH
5310/* Run through the input files and ensure that every input section has
5311 somewhere to go. If one is found without a destination then create
5312 an input request and place it into the statement tree. */
252b5132
RH
5313
5314static void
1579bae1 5315lang_place_orphans (void)
252b5132 5316{
e50d8076 5317 LANG_FOR_EACH_INPUT_STATEMENT (file)
252b5132
RH
5318 {
5319 asection *s;
5320
1579bae1 5321 for (s = file->the_bfd->sections; s != NULL; s = s->next)
252b5132 5322 {
1579bae1 5323 if (s->output_section == NULL)
252b5132 5324 {
396a2467 5325 /* This section of the file is not attached, root
afd7a018 5326 around for a sensible place for it to go. */
252b5132
RH
5327
5328 if (file->just_syms_flag)
1449d79b
AM
5329 bfd_link_just_syms (file->the_bfd, s, &link_info);
5330 else if ((s->flags & SEC_EXCLUDE) != 0)
164e712d 5331 s->output_section = bfd_abs_section_ptr;
252b5132
RH
5332 else if (strcmp (s->name, "COMMON") == 0)
5333 {
5334 /* This is a lonely common section which must have
5335 come from an archive. We attach to the section
5336 with the wildcard. */
1049f94e 5337 if (! link_info.relocatable
252b5132
RH
5338 || command_line.force_common_definition)
5339 {
5340 if (default_common_section == NULL)
5341 {
252b5132
RH
5342 default_common_section =
5343 lang_output_section_statement_lookup (".bss");
5344
5345 }
39dcfe18 5346 lang_add_section (&default_common_section->children, s,
7b986e99 5347 default_common_section);
252b5132
RH
5348 }
5349 }
7b986e99 5350 else if (ldemul_place_orphan (s))
252b5132
RH
5351 ;
5352 else
5353 {
39dcfe18 5354 lang_output_section_statement_type *os;
252b5132 5355
39dcfe18 5356 os = lang_output_section_statement_lookup (s->name);
7b986e99 5357 lang_add_section (&os->children, s, os);
252b5132
RH
5358 }
5359 }
5360 }
5361 }
5362}
5363
252b5132 5364void
1579bae1 5365lang_set_flags (lang_memory_region_type *ptr, const char *flags, int invert)
252b5132 5366{
aa8804e4 5367 flagword *ptr_flags;
252b5132 5368
aa8804e4 5369 ptr_flags = invert ? &ptr->not_flags : &ptr->flags;
252b5132
RH
5370 while (*flags)
5371 {
5372 switch (*flags)
5373 {
252b5132
RH
5374 case 'A': case 'a':
5375 *ptr_flags |= SEC_ALLOC;
5376 break;
5377
5378 case 'R': case 'r':
5379 *ptr_flags |= SEC_READONLY;
5380 break;
5381
5382 case 'W': case 'w':
5383 *ptr_flags |= SEC_DATA;
5384 break;
5385
5386 case 'X': case 'x':
5387 *ptr_flags |= SEC_CODE;
5388 break;
5389
5390 case 'L': case 'l':
5391 case 'I': case 'i':
5392 *ptr_flags |= SEC_LOAD;
5393 break;
5394
5395 default:
5396 einfo (_("%P%F: invalid syntax in flags\n"));
5397 break;
5398 }
5399 flags++;
5400 }
5401}
5402
5403/* Call a function on each input file. This function will be called
5404 on an archive, but not on the elements. */
5405
5406void
1579bae1 5407lang_for_each_input_file (void (*func) (lang_input_statement_type *))
252b5132
RH
5408{
5409 lang_input_statement_type *f;
5410
5411 for (f = (lang_input_statement_type *) input_file_chain.head;
5412 f != NULL;
5413 f = (lang_input_statement_type *) f->next_real_file)
5414 func (f);
5415}
5416
5417/* Call a function on each file. The function will be called on all
5418 the elements of an archive which are included in the link, but will
5419 not be called on the archive file itself. */
5420
5421void
1579bae1 5422lang_for_each_file (void (*func) (lang_input_statement_type *))
252b5132 5423{
e50d8076 5424 LANG_FOR_EACH_INPUT_STATEMENT (f)
252b5132
RH
5425 {
5426 func (f);
5427 }
5428}
5429
252b5132 5430void
1579bae1 5431ldlang_add_file (lang_input_statement_type *entry)
252b5132
RH
5432{
5433 bfd **pp;
5434
5435 lang_statement_append (&file_chain,
5436 (lang_statement_union_type *) entry,
5437 &entry->next);
5438
5439 /* The BFD linker needs to have a list of all input BFDs involved in
5440 a link. */
1579bae1 5441 ASSERT (entry->the_bfd->link_next == NULL);
252b5132 5442 ASSERT (entry->the_bfd != output_bfd);
1579bae1 5443 for (pp = &link_info.input_bfds; *pp != NULL; pp = &(*pp)->link_next)
252b5132
RH
5444 ;
5445 *pp = entry->the_bfd;
1579bae1 5446 entry->the_bfd->usrdata = entry;
252b5132
RH
5447 bfd_set_gp_size (entry->the_bfd, g_switch_value);
5448
5449 /* Look through the sections and check for any which should not be
5450 included in the link. We need to do this now, so that we can
5451 notice when the backend linker tries to report multiple
5452 definition errors for symbols which are in sections we aren't
5453 going to link. FIXME: It might be better to entirely ignore
5454 symbols which are defined in sections which are going to be
5455 discarded. This would require modifying the backend linker for
5456 each backend which might set the SEC_LINK_ONCE flag. If we do
5457 this, we should probably handle SEC_EXCLUDE in the same way. */
5458
1579bae1 5459 bfd_map_over_sections (entry->the_bfd, section_already_linked, entry);
252b5132
RH
5460}
5461
5462void
1579bae1 5463lang_add_output (const char *name, int from_script)
252b5132
RH
5464{
5465 /* Make -o on command line override OUTPUT in script. */
7c519c12 5466 if (!had_output_filename || !from_script)
252b5132
RH
5467 {
5468 output_filename = name;
b34976b6 5469 had_output_filename = TRUE;
252b5132
RH
5470 }
5471}
5472
252b5132
RH
5473static lang_output_section_statement_type *current_section;
5474
5475static int
1579bae1 5476topower (int x)
252b5132
RH
5477{
5478 unsigned int i = 1;
5479 int l;
5480
5481 if (x < 0)
5482 return -1;
5483
5f992e62 5484 for (l = 0; l < 32; l++)
252b5132
RH
5485 {
5486 if (i >= (unsigned int) x)
5487 return l;
5488 i <<= 1;
5489 }
5490
5491 return 0;
5492}
5493
aea4bd9d 5494lang_output_section_statement_type *
1579bae1
AM
5495lang_enter_output_section_statement (const char *output_section_statement_name,
5496 etree_type *address_exp,
5497 enum section_type sectype,
1579bae1
AM
5498 etree_type *align,
5499 etree_type *subalign,
0841712e
JJ
5500 etree_type *ebase,
5501 int constraint)
252b5132
RH
5502{
5503 lang_output_section_statement_type *os;
5504
bd4d42c1
AM
5505 os = lang_output_section_statement_lookup_1 (output_section_statement_name,
5506 constraint);
5507 current_section = os;
252b5132 5508
08da4cac 5509 /* Make next things chain into subchain of this. */
252b5132 5510
1579bae1 5511 if (os->addr_tree == NULL)
08da4cac
KH
5512 {
5513 os->addr_tree = address_exp;
5514 }
252b5132
RH
5515 os->sectype = sectype;
5516 if (sectype != noload_section)
5517 os->flags = SEC_NO_FLAGS;
5518 else
5519 os->flags = SEC_NEVER_LOAD;
e5caa5e0 5520 os->block_value = 1;
252b5132
RH
5521 stat_ptr = &os->children;
5522
08da4cac 5523 os->subsection_alignment =
e9ee469a 5524 topower (exp_get_value_int (subalign, -1, "subsection alignment"));
08da4cac 5525 os->section_alignment =
e9ee469a 5526 topower (exp_get_value_int (align, -1, "section alignment"));
252b5132
RH
5527
5528 os->load_base = ebase;
aea4bd9d 5529 return os;
252b5132
RH
5530}
5531
252b5132 5532void
1579bae1 5533lang_final (void)
252b5132 5534{
bd4d42c1 5535 lang_output_statement_type *new;
252b5132 5536
bd4d42c1 5537 new = new_stat (lang_output_statement, stat_ptr);
252b5132
RH
5538 new->name = output_filename;
5539}
5540
08da4cac
KH
5541/* Reset the current counters in the regions. */
5542
e3dc8847 5543void
1579bae1 5544lang_reset_memory_regions (void)
252b5132
RH
5545{
5546 lang_memory_region_type *p = lang_memory_region_list;
b3327aad 5547 asection *o;
e9ee469a 5548 lang_output_section_statement_type *os;
252b5132 5549
1579bae1 5550 for (p = lang_memory_region_list; p != NULL; p = p->next)
252b5132 5551 {
252b5132 5552 p->current = p->origin;
66e28d60 5553 p->last_os = NULL;
252b5132 5554 }
b3327aad 5555
e9ee469a
AM
5556 for (os = &lang_output_section_statement.head->output_section_statement;
5557 os != NULL;
5558 os = os->next)
cde9e0be
AM
5559 {
5560 os->processed_vma = FALSE;
5561 os->processed_lma = FALSE;
5562 }
e9ee469a 5563
b3327aad 5564 for (o = output_bfd->sections; o != NULL; o = o->next)
1a23a9e6
AM
5565 {
5566 /* Save the last size for possible use by bfd_relax_section. */
5567 o->rawsize = o->size;
5568 o->size = 0;
5569 }
252b5132
RH
5570}
5571
164e712d 5572/* Worker for lang_gc_sections_1. */
252b5132
RH
5573
5574static void
1579bae1
AM
5575gc_section_callback (lang_wild_statement_type *ptr,
5576 struct wildcard_list *sec ATTRIBUTE_UNUSED,
5577 asection *section,
5578 lang_input_statement_type *file ATTRIBUTE_UNUSED,
5579 void *data ATTRIBUTE_UNUSED)
252b5132 5580{
164e712d
AM
5581 /* If the wild pattern was marked KEEP, the member sections
5582 should be as well. */
4dec4d4e
RH
5583 if (ptr->keep_sections)
5584 section->flags |= SEC_KEEP;
252b5132
RH
5585}
5586
252b5132
RH
5587/* Iterate over sections marking them against GC. */
5588
5589static void
1579bae1 5590lang_gc_sections_1 (lang_statement_union_type *s)
252b5132 5591{
1579bae1 5592 for (; s != NULL; s = s->header.next)
252b5132
RH
5593 {
5594 switch (s->header.type)
5595 {
5596 case lang_wild_statement_enum:
164e712d 5597 walk_wild (&s->wild_statement, gc_section_callback, NULL);
abc6ab0a 5598 break;
252b5132
RH
5599 case lang_constructors_statement_enum:
5600 lang_gc_sections_1 (constructor_list.head);
5601 break;
5602 case lang_output_section_statement_enum:
5603 lang_gc_sections_1 (s->output_section_statement.children.head);
5604 break;
5605 case lang_group_statement_enum:
5606 lang_gc_sections_1 (s->group_statement.children.head);
5607 break;
5608 default:
5609 break;
5610 }
5611 }
5612}
5613
5614static void
1579bae1 5615lang_gc_sections (void)
252b5132
RH
5616{
5617 struct bfd_link_hash_entry *h;
e3e942e9 5618 ldlang_undef_chain_list_type *ulist;
252b5132
RH
5619
5620 /* Keep all sections so marked in the link script. */
5621
5622 lang_gc_sections_1 (statement_list.head);
5623
e3e942e9
AM
5624 /* Keep all sections containing symbols undefined on the command-line,
5625 and the section containing the entry symbol. */
252b5132 5626
e3e942e9 5627 for (ulist = link_info.gc_sym_list; ulist; ulist = ulist->next)
252b5132 5628 {
5f992e62 5629 h = bfd_link_hash_lookup (link_info.hash, ulist->name,
b34976b6 5630 FALSE, FALSE, FALSE);
252b5132 5631
1579bae1 5632 if (h != NULL
08da4cac
KH
5633 && (h->type == bfd_link_hash_defined
5634 || h->type == bfd_link_hash_defweak)
252b5132
RH
5635 && ! bfd_is_abs_section (h->u.def.section))
5636 {
5637 h->u.def.section->flags |= SEC_KEEP;
5638 }
5639 }
5640
9ca57817
AM
5641 /* SEC_EXCLUDE is ignored when doing a relocatable link, except in
5642 the special case of debug info. (See bfd/stabs.c)
5643 Twiddle the flag here, to simplify later linker code. */
5644 if (link_info.relocatable)
5645 {
5646 LANG_FOR_EACH_INPUT_STATEMENT (f)
5647 {
5648 asection *sec;
5649 for (sec = f->the_bfd->sections; sec != NULL; sec = sec->next)
5650 if ((sec->flags & SEC_DEBUGGING) == 0)
5651 sec->flags &= ~SEC_EXCLUDE;
5652 }
5653 }
5654
57316bff 5655 if (link_info.gc_sections)
164e712d 5656 bfd_gc_sections (output_bfd, &link_info);
252b5132
RH
5657}
5658
fbbc3759
L
5659/* Relax all sections until bfd_relax_section gives up. */
5660
5661static void
5662relax_sections (void)
5663{
5664 /* Keep relaxing until bfd_relax_section gives up. */
5665 bfd_boolean relax_again;
5666
4a828aab 5667 link_info.relax_trip = -1;
fbbc3759
L
5668 do
5669 {
329c1c86 5670 relax_again = FALSE;
4a828aab 5671 link_info.relax_trip++;
fbbc3759
L
5672
5673 /* Note: pe-dll.c does something like this also. If you find
5674 you need to change this code, you probably need to change
5675 pe-dll.c also. DJ */
5676
5677 /* Do all the assignments with our current guesses as to
5678 section sizes. */
5679 lang_do_assignments ();
5680
5681 /* We must do this after lang_do_assignments, because it uses
5682 size. */
5683 lang_reset_memory_regions ();
5684
5685 /* Perform another relax pass - this time we know where the
5686 globals are, so can make a better guess. */
5687 lang_size_sections (&relax_again, FALSE);
5688 }
5689 while (relax_again);
5690}
5691
252b5132 5692void
1579bae1 5693lang_process (void)
252b5132 5694{
55255dae 5695 /* Finalize dynamic list. */
40b36307
L
5696 if (link_info.dynamic_list)
5697 lang_finalize_version_expr_head (&link_info.dynamic_list->head);
55255dae 5698
252b5132
RH
5699 current_target = default_target;
5700
08da4cac
KH
5701 /* Open the output file. */
5702 lang_for_each_statement (ldlang_open_output);
e5caa5e0 5703 init_opb ();
252b5132
RH
5704
5705 ldemul_create_output_section_statements ();
5706
08da4cac 5707 /* Add to the hash table all undefineds on the command line. */
252b5132
RH
5708 lang_place_undefineds ();
5709
082b7297
L
5710 if (!bfd_section_already_linked_table_init ())
5711 einfo (_("%P%F: Failed to create hash table\n"));
9503fd87 5712
08da4cac 5713 /* Create a bfd for each input file. */
252b5132 5714 current_target = default_target;
b34976b6 5715 open_input_bfds (statement_list.head, FALSE);
252b5132 5716
e3e942e9
AM
5717 link_info.gc_sym_list = &entry_symbol;
5718 if (entry_symbol.name == NULL)
5719 link_info.gc_sym_list = ldlang_undef_chain_list_head;
5720
252b5132
RH
5721 ldemul_after_open ();
5722
082b7297 5723 bfd_section_already_linked_table_free ();
9503fd87 5724
252b5132
RH
5725 /* Make sure that we're not mixing architectures. We call this
5726 after all the input files have been opened, but before we do any
5727 other processing, so that any operations merge_private_bfd_data
5728 does on the output file will be known during the rest of the
5729 link. */
5730 lang_check ();
5731
5732 /* Handle .exports instead of a version script if we're told to do so. */
5733 if (command_line.version_exports_section)
5734 lang_do_version_exports_section ();
5735
5736 /* Build all sets based on the information gathered from the input
5737 files. */
5738 ldctor_build_sets ();
5739
5740 /* Remove unreferenced sections if asked to. */
164e712d 5741 lang_gc_sections ();
252b5132 5742
08da4cac 5743 /* Size up the common data. */
252b5132
RH
5744 lang_common ();
5745
bcaa7b3e
L
5746 /* Update wild statements. */
5747 update_wild_statements (statement_list.head);
5748
252b5132 5749 /* Run through the contours of the script and attach input sections
08da4cac 5750 to the correct output sections. */
1579bae1 5751 map_input_to_output_sections (statement_list.head, NULL, NULL);
252b5132 5752
08da4cac 5753 /* Find any sections not attached explicitly and handle them. */
252b5132
RH
5754 lang_place_orphans ();
5755
1049f94e 5756 if (! link_info.relocatable)
862120bd 5757 {
57ceae94
AM
5758 asection *found;
5759
5760 /* Merge SEC_MERGE sections. This has to be done after GC of
5761 sections, so that GCed sections are not merged, but before
5762 assigning dynamic symbols, since removing whole input sections
5763 is hard then. */
5764 bfd_merge_sections (output_bfd, &link_info);
5765
862120bd 5766 /* Look for a text section and set the readonly attribute in it. */
57ceae94 5767 found = bfd_get_section_by_name (output_bfd, ".text");
862120bd 5768
1579bae1 5769 if (found != NULL)
862120bd
AM
5770 {
5771 if (config.text_read_only)
5772 found->flags |= SEC_READONLY;
5773 else
5774 found->flags &= ~SEC_READONLY;
5775 }
5776 }
5777
5778 /* Do anything special before sizing sections. This is where ELF
5779 and other back-ends size dynamic sections. */
252b5132
RH
5780 ldemul_before_allocation ();
5781
5782 /* We must record the program headers before we try to fix the
5783 section positions, since they will affect SIZEOF_HEADERS. */
5784 lang_record_phdrs ();
5785
b3327aad 5786 /* Size up the sections. */
e9ee469a 5787 lang_size_sections (NULL, !command_line.relax);
b3327aad 5788
08da4cac 5789 /* Now run around and relax if we can. */
252b5132
RH
5790 if (command_line.relax)
5791 {
fbbc3759
L
5792 /* We may need more than one relaxation pass. */
5793 int i = link_info.relax_pass;
252b5132 5794
fbbc3759
L
5795 /* The backend can use it to determine the current pass. */
5796 link_info.relax_pass = 0;
252b5132 5797
fbbc3759
L
5798 while (i--)
5799 {
5800 relax_sections ();
5801 link_info.relax_pass++;
252b5132 5802 }
cf888e70
NC
5803
5804 /* Final extra sizing to report errors. */
e9ee469a 5805 lang_do_assignments ();
5a46fe39 5806 lang_reset_memory_regions ();
e9ee469a 5807 lang_size_sections (NULL, TRUE);
252b5132 5808 }
252b5132
RH
5809
5810 /* See if anything special should be done now we know how big
5811 everything is. */
5812 ldemul_after_allocation ();
5813
5814 /* Fix any .startof. or .sizeof. symbols. */
5815 lang_set_startof ();
5816
08da4cac
KH
5817 /* Do all the assignments, now that we know the final resting places
5818 of all the symbols. */
252b5132 5819
e9ee469a 5820 lang_do_assignments ();
252b5132 5821
8ded5a0f
AM
5822 ldemul_finish ();
5823
252b5132 5824 /* Make sure that the section addresses make sense. */
1049f94e 5825 if (! link_info.relocatable
252b5132
RH
5826 && command_line.check_section_addresses)
5827 lang_check_section_addresses ();
5f992e62 5828
750877ba 5829 lang_end ();
252b5132
RH
5830}
5831
5832/* EXPORTED TO YACC */
5833
5834void
1579bae1
AM
5835lang_add_wild (struct wildcard_spec *filespec,
5836 struct wildcard_list *section_list,
5837 bfd_boolean keep_sections)
252b5132 5838{
b6bf44ba
AM
5839 struct wildcard_list *curr, *next;
5840 lang_wild_statement_type *new;
5841
5842 /* Reverse the list as the parser puts it back to front. */
5843 for (curr = section_list, section_list = NULL;
5844 curr != NULL;
5845 section_list = curr, curr = next)
5846 {
5847 if (curr->spec.name != NULL && strcmp (curr->spec.name, "COMMON") == 0)
b34976b6 5848 placed_commons = TRUE;
252b5132 5849
b6bf44ba
AM
5850 next = curr->next;
5851 curr->next = section_list;
5852 }
5853
5854 if (filespec != NULL && filespec->name != NULL)
252b5132 5855 {
b6bf44ba
AM
5856 if (strcmp (filespec->name, "*") == 0)
5857 filespec->name = NULL;
5858 else if (! wildcardp (filespec->name))
b34976b6 5859 lang_has_input_file = TRUE;
252b5132 5860 }
b6bf44ba
AM
5861
5862 new = new_stat (lang_wild_statement, stat_ptr);
5863 new->filename = NULL;
b34976b6 5864 new->filenames_sorted = FALSE;
b6bf44ba 5865 if (filespec != NULL)
252b5132 5866 {
b6bf44ba 5867 new->filename = filespec->name;
bcaa7b3e 5868 new->filenames_sorted = filespec->sorted == by_name;
252b5132 5869 }
b6bf44ba 5870 new->section_list = section_list;
252b5132 5871 new->keep_sections = keep_sections;
252b5132 5872 lang_list_init (&new->children);
72223188 5873 analyze_walk_wild_section_handler (new);
252b5132
RH
5874}
5875
5876void
ba916c8a
MM
5877lang_section_start (const char *name, etree_type *address,
5878 const segment_type *segment)
252b5132 5879{
d1778b88 5880 lang_address_statement_type *ad;
252b5132 5881
d1778b88 5882 ad = new_stat (lang_address_statement, stat_ptr);
252b5132
RH
5883 ad->section_name = name;
5884 ad->address = address;
ba916c8a 5885 ad->segment = segment;
252b5132
RH
5886}
5887
5888/* Set the start symbol to NAME. CMDLINE is nonzero if this is called
5889 because of a -e argument on the command line, or zero if this is
5890 called by ENTRY in a linker script. Command line arguments take
5891 precedence. */
5892
5893void
1579bae1 5894lang_add_entry (const char *name, bfd_boolean cmdline)
252b5132 5895{
e3e942e9 5896 if (entry_symbol.name == NULL
252b5132
RH
5897 || cmdline
5898 || ! entry_from_cmdline)
5899 {
e3e942e9 5900 entry_symbol.name = name;
252b5132
RH
5901 entry_from_cmdline = cmdline;
5902 }
5903}
5904
a359509e
ZW
5905/* Set the default start symbol to NAME. .em files should use this,
5906 not lang_add_entry, to override the use of "start" if neither the
5907 linker script nor the command line specifies an entry point. NAME
5908 must be permanently allocated. */
5909void
5910lang_default_entry (const char *name)
5911{
5912 entry_symbol_default = name;
5913}
5914
252b5132 5915void
1579bae1 5916lang_add_target (const char *name)
252b5132 5917{
bd4d42c1 5918 lang_target_statement_type *new;
252b5132 5919
bd4d42c1 5920 new = new_stat (lang_target_statement, stat_ptr);
252b5132 5921 new->target = name;
252b5132
RH
5922}
5923
5924void
1579bae1 5925lang_add_map (const char *name)
252b5132
RH
5926{
5927 while (*name)
5928 {
5929 switch (*name)
5930 {
08da4cac 5931 case 'F':
b34976b6 5932 map_option_f = TRUE;
252b5132
RH
5933 break;
5934 }
5935 name++;
5936 }
5937}
5938
5939void
1579bae1 5940lang_add_fill (fill_type *fill)
252b5132 5941{
bd4d42c1 5942 lang_fill_statement_type *new;
252b5132 5943
bd4d42c1 5944 new = new_stat (lang_fill_statement, stat_ptr);
2c382fb6 5945 new->fill = fill;
252b5132
RH
5946}
5947
5948void
1579bae1 5949lang_add_data (int type, union etree_union *exp)
252b5132 5950{
bd4d42c1 5951 lang_data_statement_type *new;
252b5132 5952
bd4d42c1 5953 new = new_stat (lang_data_statement, stat_ptr);
252b5132
RH
5954 new->exp = exp;
5955 new->type = type;
252b5132
RH
5956}
5957
5958/* Create a new reloc statement. RELOC is the BFD relocation type to
5959 generate. HOWTO is the corresponding howto structure (we could
5960 look this up, but the caller has already done so). SECTION is the
5961 section to generate a reloc against, or NAME is the name of the
5962 symbol to generate a reloc against. Exactly one of SECTION and
5963 NAME must be NULL. ADDEND is an expression for the addend. */
5964
5965void
1579bae1
AM
5966lang_add_reloc (bfd_reloc_code_real_type reloc,
5967 reloc_howto_type *howto,
5968 asection *section,
5969 const char *name,
5970 union etree_union *addend)
252b5132
RH
5971{
5972 lang_reloc_statement_type *p = new_stat (lang_reloc_statement, stat_ptr);
5f992e62 5973
252b5132
RH
5974 p->reloc = reloc;
5975 p->howto = howto;
5976 p->section = section;
5977 p->name = name;
5978 p->addend_exp = addend;
5979
5980 p->addend_value = 0;
5981 p->output_section = NULL;
7fabd029 5982 p->output_offset = 0;
252b5132
RH
5983}
5984
5985lang_assignment_statement_type *
1579bae1 5986lang_add_assignment (etree_type *exp)
252b5132 5987{
bd4d42c1 5988 lang_assignment_statement_type *new;
252b5132 5989
bd4d42c1 5990 new = new_stat (lang_assignment_statement, stat_ptr);
252b5132
RH
5991 new->exp = exp;
5992 return new;
5993}
5994
5995void
1579bae1 5996lang_add_attribute (enum statement_enum attribute)
252b5132 5997{
bd4d42c1 5998 new_statement (attribute, sizeof (lang_statement_header_type), stat_ptr);
252b5132
RH
5999}
6000
6001void
1579bae1 6002lang_startup (const char *name)
252b5132 6003{
1579bae1 6004 if (startup_file != NULL)
252b5132 6005 {
4520f868 6006 einfo (_("%P%F: multiple STARTUP files\n"));
252b5132
RH
6007 }
6008 first_file->filename = name;
6009 first_file->local_sym_name = name;
b34976b6 6010 first_file->real = TRUE;
252b5132
RH
6011
6012 startup_file = name;
6013}
6014
6015void
1579bae1 6016lang_float (bfd_boolean maybe)
252b5132
RH
6017{
6018 lang_float_flag = maybe;
6019}
6020
ee3cc2e2
RS
6021
6022/* Work out the load- and run-time regions from a script statement, and
6023 store them in *LMA_REGION and *REGION respectively.
6024
a747ee4d
NC
6025 MEMSPEC is the name of the run-time region, or the value of
6026 DEFAULT_MEMORY_REGION if the statement didn't specify one.
6027 LMA_MEMSPEC is the name of the load-time region, or null if the
6028 statement didn't specify one.HAVE_LMA_P is TRUE if the statement
6029 had an explicit load address.
ee3cc2e2
RS
6030
6031 It is an error to specify both a load region and a load address. */
6032
6033static void
6bdafbeb
NC
6034lang_get_regions (lang_memory_region_type **region,
6035 lang_memory_region_type **lma_region,
1579bae1
AM
6036 const char *memspec,
6037 const char *lma_memspec,
6bdafbeb
NC
6038 bfd_boolean have_lma,
6039 bfd_boolean have_vma)
ee3cc2e2 6040{
a747ee4d 6041 *lma_region = lang_memory_region_lookup (lma_memspec, FALSE);
ee3cc2e2 6042
6feb9908
AM
6043 /* If no runtime region or VMA has been specified, but the load region
6044 has been specified, then use the load region for the runtime region
6045 as well. */
6bdafbeb
NC
6046 if (lma_memspec != NULL
6047 && ! have_vma
6048 && strcmp (memspec, DEFAULT_MEMORY_REGION) == 0)
ee3cc2e2
RS
6049 *region = *lma_region;
6050 else
a747ee4d 6051 *region = lang_memory_region_lookup (memspec, FALSE);
ee3cc2e2 6052
6bdafbeb 6053 if (have_lma && lma_memspec != 0)
ee3cc2e2
RS
6054 einfo (_("%X%P:%S: section has both a load address and a load region\n"));
6055}
6056
252b5132 6057void
6bdafbeb
NC
6058lang_leave_output_section_statement (fill_type *fill, const char *memspec,
6059 lang_output_section_phdr_list *phdrs,
6060 const char *lma_memspec)
252b5132 6061{
ee3cc2e2
RS
6062 lang_get_regions (&current_section->region,
6063 &current_section->lma_region,
6064 memspec, lma_memspec,
6bdafbeb
NC
6065 current_section->load_base != NULL,
6066 current_section->addr_tree != NULL);
252b5132 6067 current_section->fill = fill;
252b5132
RH
6068 current_section->phdrs = phdrs;
6069 stat_ptr = &statement_list;
6070}
6071
08da4cac
KH
6072/* Create an absolute symbol with the given name with the value of the
6073 address of first byte of the section named.
6074
6075 If the symbol already exists, then do nothing. */
252b5132 6076
252b5132 6077void
1579bae1 6078lang_abs_symbol_at_beginning_of (const char *secname, const char *name)
252b5132
RH
6079{
6080 struct bfd_link_hash_entry *h;
6081
b34976b6 6082 h = bfd_link_hash_lookup (link_info.hash, name, TRUE, TRUE, TRUE);
1579bae1 6083 if (h == NULL)
252b5132
RH
6084 einfo (_("%P%F: bfd_link_hash_lookup failed: %E\n"));
6085
6086 if (h->type == bfd_link_hash_new
6087 || h->type == bfd_link_hash_undefined)
6088 {
6089 asection *sec;
6090
6091 h->type = bfd_link_hash_defined;
6092
6093 sec = bfd_get_section_by_name (output_bfd, secname);
1579bae1 6094 if (sec == NULL)
252b5132
RH
6095 h->u.def.value = 0;
6096 else
6097 h->u.def.value = bfd_get_section_vma (output_bfd, sec);
6098
6099 h->u.def.section = bfd_abs_section_ptr;
6100 }
6101}
6102
08da4cac
KH
6103/* Create an absolute symbol with the given name with the value of the
6104 address of the first byte after the end of the section named.
6105
6106 If the symbol already exists, then do nothing. */
252b5132 6107
252b5132 6108void
1579bae1 6109lang_abs_symbol_at_end_of (const char *secname, const char *name)
252b5132
RH
6110{
6111 struct bfd_link_hash_entry *h;
6112
b34976b6 6113 h = bfd_link_hash_lookup (link_info.hash, name, TRUE, TRUE, TRUE);
1579bae1 6114 if (h == NULL)
252b5132
RH
6115 einfo (_("%P%F: bfd_link_hash_lookup failed: %E\n"));
6116
6117 if (h->type == bfd_link_hash_new
6118 || h->type == bfd_link_hash_undefined)
6119 {
6120 asection *sec;
6121
6122 h->type = bfd_link_hash_defined;
6123
6124 sec = bfd_get_section_by_name (output_bfd, secname);
1579bae1 6125 if (sec == NULL)
252b5132
RH
6126 h->u.def.value = 0;
6127 else
6128 h->u.def.value = (bfd_get_section_vma (output_bfd, sec)
eea6121a 6129 + TO_ADDR (sec->size));
252b5132
RH
6130
6131 h->u.def.section = bfd_abs_section_ptr;
6132 }
6133}
6134
6135void
1579bae1
AM
6136lang_statement_append (lang_statement_list_type *list,
6137 lang_statement_union_type *element,
6138 lang_statement_union_type **field)
252b5132
RH
6139{
6140 *(list->tail) = element;
6141 list->tail = field;
6142}
6143
6144/* Set the output format type. -oformat overrides scripts. */
6145
6146void
1579bae1
AM
6147lang_add_output_format (const char *format,
6148 const char *big,
6149 const char *little,
6150 int from_script)
252b5132
RH
6151{
6152 if (output_target == NULL || !from_script)
6153 {
6154 if (command_line.endian == ENDIAN_BIG
6155 && big != NULL)
6156 format = big;
6157 else if (command_line.endian == ENDIAN_LITTLE
6158 && little != NULL)
6159 format = little;
6160
6161 output_target = format;
6162 }
6163}
6164
6165/* Enter a group. This creates a new lang_group_statement, and sets
6166 stat_ptr to build new statements within the group. */
6167
6168void
1579bae1 6169lang_enter_group (void)
252b5132
RH
6170{
6171 lang_group_statement_type *g;
6172
6173 g = new_stat (lang_group_statement, stat_ptr);
6174 lang_list_init (&g->children);
6175 stat_ptr = &g->children;
6176}
6177
6178/* Leave a group. This just resets stat_ptr to start writing to the
6179 regular list of statements again. Note that this will not work if
6180 groups can occur inside anything else which can adjust stat_ptr,
6181 but currently they can't. */
6182
6183void
1579bae1 6184lang_leave_group (void)
252b5132
RH
6185{
6186 stat_ptr = &statement_list;
6187}
6188
6189/* Add a new program header. This is called for each entry in a PHDRS
6190 command in a linker script. */
6191
6192void
1579bae1
AM
6193lang_new_phdr (const char *name,
6194 etree_type *type,
6195 bfd_boolean filehdr,
6196 bfd_boolean phdrs,
6197 etree_type *at,
6198 etree_type *flags)
252b5132
RH
6199{
6200 struct lang_phdr *n, **pp;
6201
1579bae1 6202 n = stat_alloc (sizeof (struct lang_phdr));
252b5132
RH
6203 n->next = NULL;
6204 n->name = name;
e9ee469a 6205 n->type = exp_get_value_int (type, 0, "program header type");
252b5132
RH
6206 n->filehdr = filehdr;
6207 n->phdrs = phdrs;
6208 n->at = at;
6209 n->flags = flags;
6210
6211 for (pp = &lang_phdr_list; *pp != NULL; pp = &(*pp)->next)
6212 ;
6213 *pp = n;
6214}
6215
6216/* Record the program header information in the output BFD. FIXME: We
6217 should not be calling an ELF specific function here. */
6218
6219static void
1579bae1 6220lang_record_phdrs (void)
252b5132
RH
6221{
6222 unsigned int alc;
6223 asection **secs;
6bdafbeb 6224 lang_output_section_phdr_list *last;
252b5132 6225 struct lang_phdr *l;
afd7a018 6226 lang_output_section_statement_type *os;
252b5132
RH
6227
6228 alc = 10;
1579bae1 6229 secs = xmalloc (alc * sizeof (asection *));
252b5132 6230 last = NULL;
591a748a 6231
252b5132
RH
6232 for (l = lang_phdr_list; l != NULL; l = l->next)
6233 {
6234 unsigned int c;
6235 flagword flags;
6236 bfd_vma at;
6237
6238 c = 0;
afd7a018
AM
6239 for (os = &lang_output_section_statement.head->output_section_statement;
6240 os != NULL;
6241 os = os->next)
252b5132 6242 {
6bdafbeb 6243 lang_output_section_phdr_list *pl;
252b5132 6244
0841712e
JJ
6245 if (os->constraint == -1)
6246 continue;
252b5132
RH
6247
6248 pl = os->phdrs;
6249 if (pl != NULL)
6250 last = pl;
6251 else
6252 {
6253 if (os->sectype == noload_section
6254 || os->bfd_section == NULL
6255 || (os->bfd_section->flags & SEC_ALLOC) == 0)
6256 continue;
591a748a
NC
6257
6258 if (last)
6259 pl = last;
6260 else
6261 {
6262 lang_output_section_statement_type * tmp_os;
6263
6264 /* If we have not run across a section with a program
6265 header assigned to it yet, then scan forwards to find
6266 one. This prevents inconsistencies in the linker's
6267 behaviour when a script has specified just a single
6268 header and there are sections in that script which are
6269 not assigned to it, and which occur before the first
6270 use of that header. See here for more details:
6271 http://sourceware.org/ml/binutils/2007-02/msg00291.html */
6272 for (tmp_os = os; tmp_os; tmp_os = tmp_os->next)
6273 if (tmp_os->phdrs)
6274 break;
6275 pl = tmp_os->phdrs;
6276 }
252b5132
RH
6277 }
6278
6279 if (os->bfd_section == NULL)
6280 continue;
6281
6282 for (; pl != NULL; pl = pl->next)
6283 {
6284 if (strcmp (pl->name, l->name) == 0)
6285 {
6286 if (c >= alc)
6287 {
6288 alc *= 2;
1579bae1 6289 secs = xrealloc (secs, alc * sizeof (asection *));
252b5132
RH
6290 }
6291 secs[c] = os->bfd_section;
6292 ++c;
b34976b6 6293 pl->used = TRUE;
252b5132
RH
6294 }
6295 }
6296 }
6297
6298 if (l->flags == NULL)
6299 flags = 0;
6300 else
e9ee469a 6301 flags = exp_get_vma (l->flags, 0, "phdr flags");
252b5132
RH
6302
6303 if (l->at == NULL)
6304 at = 0;
6305 else
e9ee469a 6306 at = exp_get_vma (l->at, 0, "phdr load address");
252b5132
RH
6307
6308 if (! bfd_record_phdr (output_bfd, l->type,
d1778b88 6309 l->flags != NULL, flags, l->at != NULL,
252b5132
RH
6310 at, l->filehdr, l->phdrs, c, secs))
6311 einfo (_("%F%P: bfd_record_phdr failed: %E\n"));
6312 }
6313
6314 free (secs);
6315
6316 /* Make sure all the phdr assignments succeeded. */
afd7a018
AM
6317 for (os = &lang_output_section_statement.head->output_section_statement;
6318 os != NULL;
6319 os = os->next)
252b5132 6320 {
6bdafbeb 6321 lang_output_section_phdr_list *pl;
252b5132 6322
afd7a018
AM
6323 if (os->constraint == -1
6324 || os->bfd_section == NULL)
252b5132
RH
6325 continue;
6326
afd7a018 6327 for (pl = os->phdrs;
252b5132
RH
6328 pl != NULL;
6329 pl = pl->next)
6330 if (! pl->used && strcmp (pl->name, "NONE") != 0)
6331 einfo (_("%X%P: section `%s' assigned to non-existent phdr `%s'\n"),
afd7a018 6332 os->name, pl->name);
252b5132
RH
6333 }
6334}
6335
6336/* Record a list of sections which may not be cross referenced. */
6337
6338void
6bdafbeb 6339lang_add_nocrossref (lang_nocrossref_type *l)
252b5132
RH
6340{
6341 struct lang_nocrossrefs *n;
6342
1579bae1 6343 n = xmalloc (sizeof *n);
252b5132
RH
6344 n->next = nocrossref_list;
6345 n->list = l;
6346 nocrossref_list = n;
6347
6348 /* Set notice_all so that we get informed about all symbols. */
b34976b6 6349 link_info.notice_all = TRUE;
252b5132
RH
6350}
6351\f
6352/* Overlay handling. We handle overlays with some static variables. */
6353
6354/* The overlay virtual address. */
6355static etree_type *overlay_vma;
7e7d5768
AM
6356/* And subsection alignment. */
6357static etree_type *overlay_subalign;
252b5132 6358
252b5132
RH
6359/* An expression for the maximum section size seen so far. */
6360static etree_type *overlay_max;
6361
6362/* A list of all the sections in this overlay. */
6363
89cdebba 6364struct overlay_list {
252b5132
RH
6365 struct overlay_list *next;
6366 lang_output_section_statement_type *os;
6367};
6368
6369static struct overlay_list *overlay_list;
6370
6371/* Start handling an overlay. */
6372
6373void
7e7d5768 6374lang_enter_overlay (etree_type *vma_expr, etree_type *subalign)
252b5132
RH
6375{
6376 /* The grammar should prevent nested overlays from occurring. */
7e7d5768
AM
6377 ASSERT (overlay_vma == NULL
6378 && overlay_subalign == NULL
6379 && overlay_max == NULL);
252b5132
RH
6380
6381 overlay_vma = vma_expr;
7e7d5768 6382 overlay_subalign = subalign;
252b5132
RH
6383}
6384
6385/* Start a section in an overlay. We handle this by calling
9f88b410
RS
6386 lang_enter_output_section_statement with the correct VMA.
6387 lang_leave_overlay sets up the LMA and memory regions. */
252b5132
RH
6388
6389void
1579bae1 6390lang_enter_overlay_section (const char *name)
252b5132
RH
6391{
6392 struct overlay_list *n;
6393 etree_type *size;
6394
6395 lang_enter_output_section_statement (name, overlay_vma, normal_section,
0841712e 6396 0, overlay_subalign, 0, 0);
252b5132 6397
9f88b410 6398 /* If this is the first section, then base the VMA of future
252b5132
RH
6399 sections on this one. This will work correctly even if `.' is
6400 used in the addresses. */
6401 if (overlay_list == NULL)
9f88b410 6402 overlay_vma = exp_nameop (ADDR, name);
252b5132
RH
6403
6404 /* Remember the section. */
1579bae1 6405 n = xmalloc (sizeof *n);
252b5132
RH
6406 n->os = current_section;
6407 n->next = overlay_list;
6408 overlay_list = n;
6409
6410 size = exp_nameop (SIZEOF, name);
6411
252b5132
RH
6412 /* Arrange to work out the maximum section end address. */
6413 if (overlay_max == NULL)
6414 overlay_max = size;
6415 else
6416 overlay_max = exp_binop (MAX_K, overlay_max, size);
6417}
6418
6419/* Finish a section in an overlay. There isn't any special to do
6420 here. */
6421
6422void
1579bae1 6423lang_leave_overlay_section (fill_type *fill,
6bdafbeb 6424 lang_output_section_phdr_list *phdrs)
252b5132
RH
6425{
6426 const char *name;
6427 char *clean, *s2;
6428 const char *s1;
6429 char *buf;
6430
6431 name = current_section->name;
6432
a747ee4d
NC
6433 /* For now, assume that DEFAULT_MEMORY_REGION is the run-time memory
6434 region and that no load-time region has been specified. It doesn't
6435 really matter what we say here, since lang_leave_overlay will
6436 override it. */
6437 lang_leave_output_section_statement (fill, DEFAULT_MEMORY_REGION, phdrs, 0);
252b5132
RH
6438
6439 /* Define the magic symbols. */
6440
6441 clean = xmalloc (strlen (name) + 1);
6442 s2 = clean;
6443 for (s1 = name; *s1 != '\0'; s1++)
3882b010 6444 if (ISALNUM (*s1) || *s1 == '_')
252b5132
RH
6445 *s2++ = *s1;
6446 *s2 = '\0';
6447
6448 buf = xmalloc (strlen (clean) + sizeof "__load_start_");
6449 sprintf (buf, "__load_start_%s", clean);
34711ca3
AM
6450 lang_add_assignment (exp_provide (buf,
6451 exp_nameop (LOADADDR, name),
6452 FALSE));
252b5132
RH
6453
6454 buf = xmalloc (strlen (clean) + sizeof "__load_stop_");
6455 sprintf (buf, "__load_stop_%s", clean);
34711ca3
AM
6456 lang_add_assignment (exp_provide (buf,
6457 exp_binop ('+',
6458 exp_nameop (LOADADDR, name),
6459 exp_nameop (SIZEOF, name)),
6460 FALSE));
252b5132
RH
6461
6462 free (clean);
6463}
6464
6465/* Finish an overlay. If there are any overlay wide settings, this
6466 looks through all the sections in the overlay and sets them. */
6467
6468void
1579bae1
AM
6469lang_leave_overlay (etree_type *lma_expr,
6470 int nocrossrefs,
6471 fill_type *fill,
6472 const char *memspec,
6bdafbeb 6473 lang_output_section_phdr_list *phdrs,
1579bae1 6474 const char *lma_memspec)
252b5132
RH
6475{
6476 lang_memory_region_type *region;
562d3460 6477 lang_memory_region_type *lma_region;
252b5132 6478 struct overlay_list *l;
6bdafbeb 6479 lang_nocrossref_type *nocrossref;
252b5132 6480
ee3cc2e2
RS
6481 lang_get_regions (&region, &lma_region,
6482 memspec, lma_memspec,
6bdafbeb 6483 lma_expr != NULL, FALSE);
562d3460 6484
252b5132
RH
6485 nocrossref = NULL;
6486
9f88b410
RS
6487 /* After setting the size of the last section, set '.' to end of the
6488 overlay region. */
6489 if (overlay_list != NULL)
6490 overlay_list->os->update_dot_tree
6491 = exp_assop ('=', ".", exp_binop ('+', overlay_vma, overlay_max));
6492
252b5132
RH
6493 l = overlay_list;
6494 while (l != NULL)
6495 {
6496 struct overlay_list *next;
6497
1579bae1 6498 if (fill != NULL && l->os->fill == NULL)
252b5132 6499 l->os->fill = fill;
1545243b 6500
9f88b410
RS
6501 l->os->region = region;
6502 l->os->lma_region = lma_region;
6503
6504 /* The first section has the load address specified in the
6505 OVERLAY statement. The rest are worked out from that.
6506 The base address is not needed (and should be null) if
6507 an LMA region was specified. */
6508 if (l->next == 0)
6509 l->os->load_base = lma_expr;
252b5132
RH
6510 if (phdrs != NULL && l->os->phdrs == NULL)
6511 l->os->phdrs = phdrs;
6512
9f88b410 6513 if (nocrossrefs)
252b5132 6514 {
6bdafbeb 6515 lang_nocrossref_type *nc;
252b5132 6516
1579bae1 6517 nc = xmalloc (sizeof *nc);
252b5132
RH
6518 nc->name = l->os->name;
6519 nc->next = nocrossref;
6520 nocrossref = nc;
6521 }
6522
6523 next = l->next;
6524 free (l);
6525 l = next;
6526 }
6527
6528 if (nocrossref != NULL)
6529 lang_add_nocrossref (nocrossref);
6530
252b5132 6531 overlay_vma = NULL;
252b5132
RH
6532 overlay_list = NULL;
6533 overlay_max = NULL;
6534}
6535\f
6536/* Version handling. This is only useful for ELF. */
6537
6538/* This global variable holds the version tree that we build. */
6539
6540struct bfd_elf_version_tree *lang_elf_version_info;
6541
108ba305
JJ
6542/* If PREV is NULL, return first version pattern matching particular symbol.
6543 If PREV is non-NULL, return first version pattern matching particular
6544 symbol after PREV (previously returned by lang_vers_match). */
252b5132 6545
108ba305
JJ
6546static struct bfd_elf_version_expr *
6547lang_vers_match (struct bfd_elf_version_expr_head *head,
6548 struct bfd_elf_version_expr *prev,
6549 const char *sym)
252b5132 6550{
108ba305
JJ
6551 const char *cxx_sym = sym;
6552 const char *java_sym = sym;
6553 struct bfd_elf_version_expr *expr = NULL;
252b5132 6554
108ba305 6555 if (head->mask & BFD_ELF_VERSION_CXX_TYPE)
252b5132 6556 {
2f97444a 6557 cxx_sym = cplus_demangle (sym, DMGL_PARAMS | DMGL_ANSI);
108ba305
JJ
6558 if (!cxx_sym)
6559 cxx_sym = sym;
252b5132 6560 }
df816215 6561 if (head->mask & BFD_ELF_VERSION_JAVA_TYPE)
252b5132 6562 {
108ba305
JJ
6563 java_sym = cplus_demangle (sym, DMGL_JAVA);
6564 if (!java_sym)
6565 java_sym = sym;
252b5132
RH
6566 }
6567
5e35cbc2 6568 if (head->htab && (prev == NULL || prev->symbol))
252b5132 6569 {
108ba305
JJ
6570 struct bfd_elf_version_expr e;
6571
6572 switch (prev ? prev->mask : 0)
6573 {
6574 case 0:
6575 if (head->mask & BFD_ELF_VERSION_C_TYPE)
6576 {
5e35cbc2 6577 e.symbol = sym;
108ba305 6578 expr = htab_find (head->htab, &e);
5e35cbc2 6579 while (expr && strcmp (expr->symbol, sym) == 0)
108ba305
JJ
6580 if (expr->mask == BFD_ELF_VERSION_C_TYPE)
6581 goto out_ret;
86043bbb
MM
6582 else
6583 expr = expr->next;
108ba305
JJ
6584 }
6585 /* Fallthrough */
6586 case BFD_ELF_VERSION_C_TYPE:
6587 if (head->mask & BFD_ELF_VERSION_CXX_TYPE)
6588 {
5e35cbc2 6589 e.symbol = cxx_sym;
108ba305 6590 expr = htab_find (head->htab, &e);
7a995eb3 6591 while (expr && strcmp (expr->symbol, cxx_sym) == 0)
108ba305
JJ
6592 if (expr->mask == BFD_ELF_VERSION_CXX_TYPE)
6593 goto out_ret;
86043bbb
MM
6594 else
6595 expr = expr->next;
108ba305
JJ
6596 }
6597 /* Fallthrough */
6598 case BFD_ELF_VERSION_CXX_TYPE:
6599 if (head->mask & BFD_ELF_VERSION_JAVA_TYPE)
6600 {
5e35cbc2 6601 e.symbol = java_sym;
108ba305 6602 expr = htab_find (head->htab, &e);
7a995eb3 6603 while (expr && strcmp (expr->symbol, java_sym) == 0)
108ba305
JJ
6604 if (expr->mask == BFD_ELF_VERSION_JAVA_TYPE)
6605 goto out_ret;
86043bbb
MM
6606 else
6607 expr = expr->next;
108ba305
JJ
6608 }
6609 /* Fallthrough */
6610 default:
6611 break;
6612 }
252b5132 6613 }
108ba305
JJ
6614
6615 /* Finally, try the wildcards. */
5e35cbc2 6616 if (prev == NULL || prev->symbol)
108ba305 6617 expr = head->remaining;
252b5132 6618 else
108ba305 6619 expr = prev->next;
86043bbb 6620 for (; expr; expr = expr->next)
252b5132 6621 {
108ba305
JJ
6622 const char *s;
6623
86043bbb
MM
6624 if (!expr->pattern)
6625 continue;
6626
108ba305
JJ
6627 if (expr->pattern[0] == '*' && expr->pattern[1] == '\0')
6628 break;
6629
6630 if (expr->mask == BFD_ELF_VERSION_JAVA_TYPE)
6631 s = java_sym;
6632 else if (expr->mask == BFD_ELF_VERSION_CXX_TYPE)
6633 s = cxx_sym;
6634 else
6635 s = sym;
5e35cbc2 6636 if (fnmatch (expr->pattern, s, 0) == 0)
108ba305 6637 break;
252b5132
RH
6638 }
6639
108ba305
JJ
6640out_ret:
6641 if (cxx_sym != sym)
6642 free ((char *) cxx_sym);
6643 if (java_sym != sym)
6644 free ((char *) java_sym);
6645 return expr;
252b5132
RH
6646}
6647
5e35cbc2
L
6648/* Return NULL if the PATTERN argument is a glob pattern, otherwise,
6649 return a string pointing to the symbol name. */
6650
6651static const char *
6652realsymbol (const char *pattern)
6653{
6654 const char *p;
6655 bfd_boolean changed = FALSE, backslash = FALSE;
6656 char *s, *symbol = xmalloc (strlen (pattern) + 1);
6657
6658 for (p = pattern, s = symbol; *p != '\0'; ++p)
6659 {
6660 /* It is a glob pattern only if there is no preceding
6661 backslash. */
6662 if (! backslash && (*p == '?' || *p == '*' || *p == '['))
6663 {
6664 free (symbol);
6665 return NULL;
6666 }
6667
6668 if (backslash)
6669 {
6670 /* Remove the preceding backslash. */
6671 *(s - 1) = *p;
6672 changed = TRUE;
6673 }
6674 else
6675 *s++ = *p;
6676
6677 backslash = *p == '\\';
6678 }
6679
6680 if (changed)
6681 {
6682 *s = '\0';
6683 return symbol;
6684 }
6685 else
6686 {
6687 free (symbol);
6688 return pattern;
6689 }
6690}
6691
86043bbb
MM
6692/* This is called for each variable name or match expression. NEW is
6693 the name of the symbol to match, or, if LITERAL_P is FALSE, a glob
6694 pattern to be matched against symbol names. */
252b5132
RH
6695
6696struct bfd_elf_version_expr *
1579bae1
AM
6697lang_new_vers_pattern (struct bfd_elf_version_expr *orig,
6698 const char *new,
86043bbb
MM
6699 const char *lang,
6700 bfd_boolean literal_p)
252b5132
RH
6701{
6702 struct bfd_elf_version_expr *ret;
6703
1579bae1 6704 ret = xmalloc (sizeof *ret);
252b5132 6705 ret->next = orig;
86043bbb 6706 ret->pattern = literal_p ? NULL : new;
31941635
L
6707 ret->symver = 0;
6708 ret->script = 0;
86043bbb 6709 ret->symbol = literal_p ? new : realsymbol (new);
252b5132
RH
6710
6711 if (lang == NULL || strcasecmp (lang, "C") == 0)
108ba305 6712 ret->mask = BFD_ELF_VERSION_C_TYPE;
252b5132 6713 else if (strcasecmp (lang, "C++") == 0)
108ba305 6714 ret->mask = BFD_ELF_VERSION_CXX_TYPE;
252b5132 6715 else if (strcasecmp (lang, "Java") == 0)
108ba305 6716 ret->mask = BFD_ELF_VERSION_JAVA_TYPE;
252b5132
RH
6717 else
6718 {
6719 einfo (_("%X%P: unknown language `%s' in version information\n"),
6720 lang);
108ba305 6721 ret->mask = BFD_ELF_VERSION_C_TYPE;
252b5132
RH
6722 }
6723
fac1652d 6724 return ldemul_new_vers_pattern (ret);
252b5132
RH
6725}
6726
6727/* This is called for each set of variable names and match
6728 expressions. */
6729
6730struct bfd_elf_version_tree *
1579bae1
AM
6731lang_new_vers_node (struct bfd_elf_version_expr *globals,
6732 struct bfd_elf_version_expr *locals)
252b5132
RH
6733{
6734 struct bfd_elf_version_tree *ret;
6735
108ba305
JJ
6736 ret = xcalloc (1, sizeof *ret);
6737 ret->globals.list = globals;
6738 ret->locals.list = locals;
6739 ret->match = lang_vers_match;
252b5132 6740 ret->name_indx = (unsigned int) -1;
252b5132
RH
6741 return ret;
6742}
6743
6744/* This static variable keeps track of version indices. */
6745
6746static int version_index;
6747
108ba305
JJ
6748static hashval_t
6749version_expr_head_hash (const void *p)
6750{
6751 const struct bfd_elf_version_expr *e = p;
6752
5e35cbc2 6753 return htab_hash_string (e->symbol);
108ba305
JJ
6754}
6755
6756static int
6757version_expr_head_eq (const void *p1, const void *p2)
6758{
6759 const struct bfd_elf_version_expr *e1 = p1;
6760 const struct bfd_elf_version_expr *e2 = p2;
6761
5e35cbc2 6762 return strcmp (e1->symbol, e2->symbol) == 0;
108ba305
JJ
6763}
6764
6765static void
6766lang_finalize_version_expr_head (struct bfd_elf_version_expr_head *head)
6767{
6768 size_t count = 0;
6769 struct bfd_elf_version_expr *e, *next;
6770 struct bfd_elf_version_expr **list_loc, **remaining_loc;
6771
6772 for (e = head->list; e; e = e->next)
6773 {
5e35cbc2 6774 if (e->symbol)
108ba305
JJ
6775 count++;
6776 head->mask |= e->mask;
6777 }
6778
6779 if (count)
6780 {
6781 head->htab = htab_create (count * 2, version_expr_head_hash,
6782 version_expr_head_eq, NULL);
6783 list_loc = &head->list;
6784 remaining_loc = &head->remaining;
6785 for (e = head->list; e; e = next)
6786 {
6787 next = e->next;
5e35cbc2 6788 if (!e->symbol)
108ba305
JJ
6789 {
6790 *remaining_loc = e;
6791 remaining_loc = &e->next;
6792 }
6793 else
6794 {
6795 void **loc = htab_find_slot (head->htab, e, INSERT);
6796
6797 if (*loc)
6798 {
6799 struct bfd_elf_version_expr *e1, *last;
6800
6801 e1 = *loc;
6802 last = NULL;
6803 do
6804 {
6805 if (e1->mask == e->mask)
6806 {
6807 last = NULL;
6808 break;
6809 }
6810 last = e1;
6811 e1 = e1->next;
6812 }
5e35cbc2 6813 while (e1 && strcmp (e1->symbol, e->symbol) == 0);
108ba305
JJ
6814
6815 if (last == NULL)
6816 {
6817 /* This is a duplicate. */
6818 /* FIXME: Memory leak. Sometimes pattern is not
6819 xmalloced alone, but in larger chunk of memory. */
5e35cbc2 6820 /* free (e->symbol); */
108ba305
JJ
6821 free (e);
6822 }
6823 else
6824 {
6825 e->next = last->next;
6826 last->next = e;
6827 }
6828 }
6829 else
6830 {
6831 *loc = e;
6832 *list_loc = e;
6833 list_loc = &e->next;
6834 }
6835 }
6836 }
6837 *remaining_loc = NULL;
6838 *list_loc = head->remaining;
6839 }
6840 else
6841 head->remaining = head->list;
6842}
6843
252b5132
RH
6844/* This is called when we know the name and dependencies of the
6845 version. */
6846
6847void
1579bae1
AM
6848lang_register_vers_node (const char *name,
6849 struct bfd_elf_version_tree *version,
6850 struct bfd_elf_version_deps *deps)
252b5132
RH
6851{
6852 struct bfd_elf_version_tree *t, **pp;
6853 struct bfd_elf_version_expr *e1;
6854
6b9b879a
JJ
6855 if (name == NULL)
6856 name = "";
6857
6858 if ((name[0] == '\0' && lang_elf_version_info != NULL)
6859 || (lang_elf_version_info && lang_elf_version_info->name[0] == '\0'))
6860 {
6feb9908
AM
6861 einfo (_("%X%P: anonymous version tag cannot be combined"
6862 " with other version tags\n"));
5ed6aba4 6863 free (version);
6b9b879a
JJ
6864 return;
6865 }
6866
252b5132
RH
6867 /* Make sure this node has a unique name. */
6868 for (t = lang_elf_version_info; t != NULL; t = t->next)
6869 if (strcmp (t->name, name) == 0)
6870 einfo (_("%X%P: duplicate version tag `%s'\n"), name);
6871
108ba305
JJ
6872 lang_finalize_version_expr_head (&version->globals);
6873 lang_finalize_version_expr_head (&version->locals);
6874
252b5132
RH
6875 /* Check the global and local match names, and make sure there
6876 aren't any duplicates. */
6877
108ba305 6878 for (e1 = version->globals.list; e1 != NULL; e1 = e1->next)
252b5132
RH
6879 {
6880 for (t = lang_elf_version_info; t != NULL; t = t->next)
6881 {
6882 struct bfd_elf_version_expr *e2;
6883
5e35cbc2 6884 if (t->locals.htab && e1->symbol)
108ba305
JJ
6885 {
6886 e2 = htab_find (t->locals.htab, e1);
5e35cbc2 6887 while (e2 && strcmp (e1->symbol, e2->symbol) == 0)
108ba305
JJ
6888 {
6889 if (e1->mask == e2->mask)
6feb9908
AM
6890 einfo (_("%X%P: duplicate expression `%s'"
6891 " in version information\n"), e1->symbol);
108ba305
JJ
6892 e2 = e2->next;
6893 }
6894 }
5e35cbc2 6895 else if (!e1->symbol)
108ba305 6896 for (e2 = t->locals.remaining; e2 != NULL; e2 = e2->next)
6feb9908
AM
6897 if (strcmp (e1->pattern, e2->pattern) == 0
6898 && e1->mask == e2->mask)
6899 einfo (_("%X%P: duplicate expression `%s'"
6900 " in version information\n"), e1->pattern);
252b5132
RH
6901 }
6902 }
6903
108ba305 6904 for (e1 = version->locals.list; e1 != NULL; e1 = e1->next)
252b5132
RH
6905 {
6906 for (t = lang_elf_version_info; t != NULL; t = t->next)
6907 {
6908 struct bfd_elf_version_expr *e2;
6909
5e35cbc2 6910 if (t->globals.htab && e1->symbol)
108ba305
JJ
6911 {
6912 e2 = htab_find (t->globals.htab, e1);
5e35cbc2 6913 while (e2 && strcmp (e1->symbol, e2->symbol) == 0)
108ba305
JJ
6914 {
6915 if (e1->mask == e2->mask)
6feb9908
AM
6916 einfo (_("%X%P: duplicate expression `%s'"
6917 " in version information\n"),
5e35cbc2 6918 e1->symbol);
108ba305
JJ
6919 e2 = e2->next;
6920 }
6921 }
5e35cbc2 6922 else if (!e1->symbol)
108ba305 6923 for (e2 = t->globals.remaining; e2 != NULL; e2 = e2->next)
6feb9908
AM
6924 if (strcmp (e1->pattern, e2->pattern) == 0
6925 && e1->mask == e2->mask)
6926 einfo (_("%X%P: duplicate expression `%s'"
6927 " in version information\n"), e1->pattern);
252b5132
RH
6928 }
6929 }
6930
6931 version->deps = deps;
6932 version->name = name;
6b9b879a
JJ
6933 if (name[0] != '\0')
6934 {
6935 ++version_index;
6936 version->vernum = version_index;
6937 }
6938 else
6939 version->vernum = 0;
252b5132
RH
6940
6941 for (pp = &lang_elf_version_info; *pp != NULL; pp = &(*pp)->next)
6942 ;
6943 *pp = version;
6944}
6945
6946/* This is called when we see a version dependency. */
6947
6948struct bfd_elf_version_deps *
1579bae1 6949lang_add_vers_depend (struct bfd_elf_version_deps *list, const char *name)
252b5132
RH
6950{
6951 struct bfd_elf_version_deps *ret;
6952 struct bfd_elf_version_tree *t;
6953
1579bae1 6954 ret = xmalloc (sizeof *ret);
252b5132
RH
6955 ret->next = list;
6956
6957 for (t = lang_elf_version_info; t != NULL; t = t->next)
6958 {
6959 if (strcmp (t->name, name) == 0)
6960 {
6961 ret->version_needed = t;
6962 return ret;
6963 }
6964 }
6965
6966 einfo (_("%X%P: unable to find version dependency `%s'\n"), name);
6967
6968 return ret;
6969}
6970
6971static void
1579bae1 6972lang_do_version_exports_section (void)
252b5132
RH
6973{
6974 struct bfd_elf_version_expr *greg = NULL, *lreg;
6975
6976 LANG_FOR_EACH_INPUT_STATEMENT (is)
6977 {
6978 asection *sec = bfd_get_section_by_name (is->the_bfd, ".exports");
6979 char *contents, *p;
6980 bfd_size_type len;
6981
6982 if (sec == NULL)
b7a26f91 6983 continue;
252b5132 6984
eea6121a 6985 len = sec->size;
252b5132
RH
6986 contents = xmalloc (len);
6987 if (!bfd_get_section_contents (is->the_bfd, sec, contents, 0, len))
6f9efd97 6988 einfo (_("%X%P: unable to read .exports section contents\n"), sec);
252b5132
RH
6989
6990 p = contents;
89cdebba 6991 while (p < contents + len)
252b5132 6992 {
86043bbb 6993 greg = lang_new_vers_pattern (greg, p, NULL, FALSE);
252b5132
RH
6994 p = strchr (p, '\0') + 1;
6995 }
6996
6997 /* Do not free the contents, as we used them creating the regex. */
6998
6999 /* Do not include this section in the link. */
a14a5de3 7000 sec->flags |= SEC_EXCLUDE | SEC_KEEP;
252b5132
RH
7001 }
7002
86043bbb 7003 lreg = lang_new_vers_pattern (NULL, "*", NULL, FALSE);
252b5132
RH
7004 lang_register_vers_node (command_line.version_exports_section,
7005 lang_new_vers_node (greg, lreg), NULL);
7006}
577a0623
AM
7007
7008void
1579bae1 7009lang_add_unique (const char *name)
577a0623
AM
7010{
7011 struct unique_sections *ent;
7012
7013 for (ent = unique_section_list; ent; ent = ent->next)
7014 if (strcmp (ent->name, name) == 0)
7015 return;
7016
1579bae1 7017 ent = xmalloc (sizeof *ent);
577a0623
AM
7018 ent->name = xstrdup (name);
7019 ent->next = unique_section_list;
7020 unique_section_list = ent;
7021}
55255dae
L
7022
7023/* Append the list of dynamic symbols to the existing one. */
7024
7025void
7026lang_append_dynamic_list (struct bfd_elf_version_expr *dynamic)
7027{
40b36307 7028 if (link_info.dynamic_list)
55255dae 7029 {
07806542
JJ
7030 struct bfd_elf_version_expr *tail;
7031 for (tail = dynamic; tail->next != NULL; tail = tail->next)
7032 ;
40b36307
L
7033 tail->next = link_info.dynamic_list->head.list;
7034 link_info.dynamic_list->head.list = dynamic;
55255dae
L
7035 }
7036 else
7037 {
7038 struct bfd_elf_dynamic_list *d;
7039
7040 d = xcalloc (1, sizeof *d);
7041 d->head.list = dynamic;
7042 d->match = lang_vers_match;
40b36307 7043 link_info.dynamic_list = d;
55255dae
L
7044 }
7045}
7046
7047/* Append the list of C++ typeinfo dynamic symbols to the existing
7048 one. */
7049
7050void
7051lang_append_dynamic_list_cpp_typeinfo (void)
7052{
7053 const char * symbols [] =
7054 {
7055 "typeinfo name for*",
7056 "typeinfo for*"
7057 };
7058 struct bfd_elf_version_expr *dynamic = NULL;
7059 unsigned int i;
7060
7061 for (i = 0; i < ARRAY_SIZE (symbols); i++)
7062 dynamic = lang_new_vers_pattern (dynamic, symbols [i], "C++",
7063 FALSE);
7064
7065 lang_append_dynamic_list (dynamic);
7066}
40b36307
L
7067
7068/* Append the list of C++ operator new and delete dynamic symbols to the
7069 existing one. */
7070
7071void
7072lang_append_dynamic_list_cpp_new (void)
7073{
7074 const char * symbols [] =
7075 {
7076 "operator new*",
7077 "operator delete*"
7078 };
7079 struct bfd_elf_version_expr *dynamic = NULL;
7080 unsigned int i;
7081
7082 for (i = 0; i < ARRAY_SIZE (symbols); i++)
7083 dynamic = lang_new_vers_pattern (dynamic, symbols [i], "C++",
7084 FALSE);
7085
7086 lang_append_dynamic_list (dynamic);
7087}
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