* ldlang.c (lang_relocate_globals): Skip indirect symbols, which
[binutils-gdb.git] / ld / ldlang.c
1 /* Linker command language support.
2 Copyright 1991, 1992 Free Software Foundation, Inc.
3
4 This file is part of GLD, the Gnu Linker.
5
6 GLD is free software; you can redistribute it and/or modify
7 it under the terms of the GNU General Public License as published by
8 the Free Software Foundation; either version 1, or (at your option)
9 any later version.
10
11 GLD is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 GNU General Public License for more details.
15
16 You should have received a copy of the GNU General Public License
17 along with GLD; see the file COPYING. If not, write to
18 the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA. */
19
20 #include "bfd.h"
21 #include "sysdep.h"
22
23 #include "ld.h"
24 #include "ldmain.h"
25 #include "ldsym.h"
26 #include "ldgram.h"
27 #include "ldwarn.h"
28 #include "ldlang.h"
29 #include "ldexp.h"
30 #include "ldemul.h"
31 #include "ldlex.h"
32 #include "ldmisc.h"
33 #include "ldindr.h"
34 #include "ldctor.h"
35 /* FORWARDS */
36 static void print_statements PARAMS ((void));
37 static void print_statement PARAMS ((lang_statement_union_type *,
38 lang_output_section_statement_type *));
39
40 /* LOCALS */
41 static struct obstack stat_obstack;
42
43 #define obstack_chunk_alloc ldmalloc
44 #define obstack_chunk_free free
45 static CONST char *startup_file;
46 static lang_statement_list_type input_file_chain;
47
48 /* Points to the last statement in the .data section, so we can add
49 stuff to the data section without pain */
50 static lang_statement_list_type end_of_data_section_statement_list;
51
52 /* List of statements needed to handle constructors */
53 extern lang_statement_list_type constructor_list;
54
55 static boolean placed_commons = false;
56 static lang_output_section_statement_type *default_common_section;
57 static boolean map_option_f;
58 static bfd_vma print_dot;
59 static lang_input_statement_type *first_file;
60 static lang_statement_list_type lang_output_section_statement;
61 static CONST char *current_target;
62 static CONST char *output_target;
63 static size_t longest_section_name = 8;
64 static section_userdata_type common_section_userdata;
65 static lang_statement_list_type statement_list;
66
67 /* EXPORTS */
68 boolean relaxing;
69 lang_output_section_statement_type *abs_output_section;
70 lang_statement_list_type *stat_ptr = &statement_list;
71 lang_input_statement_type *script_file = 0;
72 boolean option_longmap = false;
73 lang_statement_list_type file_chain =
74 {0};
75 CONST char *entry_symbol = 0;
76 bfd_size_type largest_section = 0;
77 boolean lang_has_input_file = false;
78 lang_output_section_statement_type *create_object_symbols = 0;
79 boolean had_output_filename = false;
80 boolean lang_float_flag = false;
81
82 /* IMPORTS */
83 extern char *default_target;
84
85 extern unsigned int undefined_global_sym_count;
86 extern char *current_file;
87 extern bfd *output_bfd;
88 extern enum bfd_architecture ldfile_output_architecture;
89 extern unsigned long ldfile_output_machine;
90 extern char *ldfile_output_machine_name;
91 extern ldsym_type *symbol_head;
92 extern unsigned int commons_pending;
93 extern args_type command_line;
94 extern ld_config_type config;
95 extern boolean had_script;
96 extern boolean write_map;
97 extern int g_switch_value;
98
99
100 etree_type *base; /* Relocation base - or null */
101
102
103 #ifdef __STDC__
104 #define cat(a,b) a##b
105 #else
106 #define cat(a,b) a/**/b
107 #endif
108
109 #define new_stat(x,y) (cat(x,_type)*) new_statement(cat(x,_enum), sizeof(cat(x,_type)),y)
110
111 #define outside_section_address(q) ( (q)->output_offset + (q)->output_section->vma)
112
113 #define outside_symbol_address(q) ((q)->value + outside_section_address(q->section))
114
115 void lang_add_data PARAMS ((int type, union etree_union * exp));
116
117 PTR
118 stat_alloc (size)
119 size_t size;
120 {
121 return obstack_alloc (&stat_obstack, size);
122 }
123 static void
124 print_size (value)
125 size_t value;
126 {
127 fprintf (config.map_file, "%5x", (unsigned) value);
128 }
129 static void
130 print_alignment (value)
131 unsigned int value;
132 {
133 fprintf (config.map_file, "2**%1u", value);
134 }
135 static void
136 DEFUN (print_fill, (value),
137 fill_type value)
138 {
139 fprintf (config.map_file, "%04x", (unsigned) value);
140 }
141
142
143 static void
144 print_section (name)
145 CONST char *CONST name;
146 {
147 fprintf (config.map_file, "%*s", -longest_section_name, name);
148 }
149
150 /*----------------------------------------------------------------------
151 lang_for_each_statement walks the parse tree and calls the provided
152 function for each node
153 */
154
155 static void
156 lang_for_each_statement_worker (func, s)
157 void (*func) ();
158 lang_statement_union_type *s;
159 {
160 for (; s != (lang_statement_union_type *) NULL; s = s->next)
161 {
162 func (s);
163
164 switch (s->header.type)
165 {
166 case lang_constructors_statement_enum:
167 lang_for_each_statement_worker (func, constructor_list.head);
168 break;
169 case lang_output_section_statement_enum:
170 lang_for_each_statement_worker
171 (func,
172 s->output_section_statement.children.head);
173 break;
174 case lang_wild_statement_enum:
175 lang_for_each_statement_worker
176 (func,
177 s->wild_statement.children.head);
178 break;
179 case lang_data_statement_enum:
180 case lang_object_symbols_statement_enum:
181 case lang_output_statement_enum:
182 case lang_target_statement_enum:
183 case lang_input_section_enum:
184 case lang_input_statement_enum:
185 case lang_assignment_statement_enum:
186 case lang_padding_statement_enum:
187 case lang_address_statement_enum:
188 break;
189 default:
190 FAIL ();
191 break;
192 }
193 }
194 }
195
196 void
197 lang_for_each_statement (func)
198 void (*func) ();
199 {
200 lang_for_each_statement_worker (func,
201 statement_list.head);
202 }
203
204 /*----------------------------------------------------------------------*/
205 void
206 lang_list_init (list)
207 lang_statement_list_type *list;
208 {
209 list->head = (lang_statement_union_type *) NULL;
210 list->tail = &list->head;
211 }
212
213 /*----------------------------------------------------------------------
214
215 build a new statement node for the parse tree
216
217 */
218
219 static
220 lang_statement_union_type *
221 new_statement (type, size, list)
222 enum statement_enum type;
223 bfd_size_type size;
224 lang_statement_list_type * list;
225 {
226 lang_statement_union_type *new = (lang_statement_union_type *)
227 stat_alloc (size);
228
229 new->header.type = type;
230 new->header.next = (lang_statement_union_type *) NULL;
231 lang_statement_append (list, new, &new->header.next);
232 return new;
233 }
234
235 /*
236 Build a new input file node for the language. There are several ways
237 in which we treat an input file, eg, we only look at symbols, or
238 prefix it with a -l etc.
239
240 We can be supplied with requests for input files more than once;
241 they may, for example be split over serveral lines like foo.o(.text)
242 foo.o(.data) etc, so when asked for a file we check that we havn't
243 got it already so we don't duplicate the bfd.
244
245 */
246 static lang_input_statement_type *
247 new_afile (name, file_type, target)
248 CONST char *CONST name;
249 CONST lang_input_file_enum_type file_type;
250 CONST char *CONST target;
251 {
252
253 lang_input_statement_type *p = new_stat (lang_input_statement,
254 stat_ptr);
255
256 lang_has_input_file = true;
257 p->target = target;
258 p->complained = false;
259 switch (file_type)
260 {
261 case lang_input_file_is_symbols_only_enum:
262 p->filename = name;
263 p->is_archive = false;
264 p->real = true;
265 p->local_sym_name = name;
266 p->just_syms_flag = true;
267 p->search_dirs_flag = false;
268 break;
269 case lang_input_file_is_fake_enum:
270 p->filename = name;
271 p->is_archive = false;
272 p->real = false;
273 p->local_sym_name = name;
274 p->just_syms_flag = false;
275 p->search_dirs_flag = false;
276 break;
277 case lang_input_file_is_l_enum:
278 p->is_archive = true;
279 p->filename = name;
280 p->real = true;
281 p->local_sym_name = concat ("-l", name, "");
282 p->just_syms_flag = false;
283 p->search_dirs_flag = true;
284 break;
285 case lang_input_file_is_search_file_enum:
286 case lang_input_file_is_marker_enum:
287 p->filename = name;
288 p->is_archive = false;
289 p->real = true;
290 p->local_sym_name = name;
291 p->just_syms_flag = false;
292 p->search_dirs_flag = true;
293 break;
294 case lang_input_file_is_file_enum:
295 p->filename = name;
296 p->is_archive = false;
297 p->real = true;
298 p->local_sym_name = name;
299 p->just_syms_flag = false;
300 p->search_dirs_flag = false;
301 break;
302 default:
303 FAIL ();
304 }
305 p->asymbols = (asymbol **) NULL;
306 p->superfile = (lang_input_statement_type *) NULL;
307 p->next_real_file = (lang_statement_union_type *) NULL;
308 p->next = (lang_statement_union_type *) NULL;
309 p->symbol_count = 0;
310 p->common_output_section = (asection *) NULL;
311 lang_statement_append (&input_file_chain,
312 (lang_statement_union_type *) p,
313 &p->next_real_file);
314 return p;
315 }
316
317 lang_input_statement_type *
318 lang_add_input_file (name, file_type, target)
319 CONST char *name;
320 lang_input_file_enum_type file_type;
321 CONST char *target;
322 {
323 /* Look it up or build a new one */
324 lang_has_input_file = true;
325 #if 0
326 lang_input_statement_type *p;
327
328 for (p = (lang_input_statement_type *) input_file_chain.head;
329 p != (lang_input_statement_type *) NULL;
330 p = (lang_input_statement_type *) (p->next_real_file))
331 {
332 /* Sometimes we have incomplete entries in here */
333 if (p->filename != (char *) NULL)
334 {
335 if (strcmp (name, p->filename) == 0)
336 return p;
337 }
338
339 }
340 #endif
341 return new_afile (name, file_type, target);
342 }
343
344 void
345 lang_add_keepsyms_file (filename)
346 CONST char *filename;
347 {
348 extern strip_symbols_type strip_symbols;
349 if (keepsyms_file != 0)
350 info ("%X%P error: duplicated keep-symbols-file value\n");
351 keepsyms_file = filename;
352 if (strip_symbols != STRIP_NONE)
353 info ("%P `-keep-only-symbols-file' overrides `-s' and `-S'\n");
354 strip_symbols = STRIP_SOME;
355 }
356
357 /* Build enough state so that the parser can build its tree */
358 void
359 lang_init ()
360 {
361 obstack_begin (&stat_obstack, 1000);
362
363 stat_ptr = &statement_list;
364
365 lang_list_init (stat_ptr);
366
367 lang_list_init (&input_file_chain);
368 lang_list_init (&lang_output_section_statement);
369 lang_list_init (&file_chain);
370 first_file = lang_add_input_file ((char *) NULL,
371 lang_input_file_is_marker_enum,
372 (char *) NULL);
373 abs_output_section = lang_output_section_statement_lookup (BFD_ABS_SECTION_NAME);
374
375 abs_output_section->bfd_section = &bfd_abs_section;
376
377 }
378
379 /*----------------------------------------------------------------------
380 A region is an area of memory declared with the
381 MEMORY { name:org=exp, len=exp ... }
382 syntax.
383
384 We maintain a list of all the regions here
385
386 If no regions are specified in the script, then the default is used
387 which is created when looked up to be the entire data space
388 */
389
390 static lang_memory_region_type *lang_memory_region_list;
391 static lang_memory_region_type **lang_memory_region_list_tail = &lang_memory_region_list;
392
393 lang_memory_region_type *
394 lang_memory_region_lookup (name)
395 CONST char *CONST name;
396 {
397
398 lang_memory_region_type *p = lang_memory_region_list;
399
400 for (p = lang_memory_region_list;
401 p != (lang_memory_region_type *) NULL;
402 p = p->next)
403 {
404 if (strcmp (p->name, name) == 0)
405 {
406 return p;
407 }
408 }
409 if (strcmp (name, "*default*") == 0)
410 {
411 /* This is the default region, dig out first one on the list */
412 if (lang_memory_region_list != (lang_memory_region_type *) NULL)
413 {
414 return lang_memory_region_list;
415 }
416 }
417 {
418 lang_memory_region_type *new =
419 (lang_memory_region_type *) stat_alloc ((bfd_size_type) (sizeof (lang_memory_region_type)));
420
421 new->name = buystring (name);
422 new->next = (lang_memory_region_type *) NULL;
423
424 *lang_memory_region_list_tail = new;
425 lang_memory_region_list_tail = &new->next;
426 new->origin = 0;
427 new->length = ~(bfd_size_type)0;
428 new->current = 0;
429 new->had_full_message = false;
430
431 return new;
432 }
433 }
434
435
436 lang_output_section_statement_type *
437 lang_output_section_find (name)
438 CONST char *CONST name;
439 {
440 lang_statement_union_type *u;
441 lang_output_section_statement_type *lookup;
442
443 for (u = lang_output_section_statement.head;
444 u != (lang_statement_union_type *) NULL;
445 u = lookup->next)
446 {
447 lookup = &u->output_section_statement;
448 if (strcmp (name, lookup->name) == 0)
449 {
450 return lookup;
451 }
452 }
453 return (lang_output_section_statement_type *) NULL;
454 }
455
456 lang_output_section_statement_type *
457 lang_output_section_statement_lookup (name)
458 CONST char *CONST name;
459 {
460 lang_output_section_statement_type *lookup;
461
462 lookup = lang_output_section_find (name);
463 if (lookup == (lang_output_section_statement_type *) NULL)
464 {
465
466 lookup = (lang_output_section_statement_type *)
467 new_stat (lang_output_section_statement, stat_ptr);
468 lookup->region = (lang_memory_region_type *) NULL;
469 lookup->fill = 0;
470 lookup->block_value = 1;
471 lookup->name = name;
472
473 lookup->next = (lang_statement_union_type *) NULL;
474 lookup->bfd_section = (asection *) NULL;
475 lookup->processed = false;
476 lookup->loadable = 1;
477 lookup->addr_tree = (etree_type *) NULL;
478 lang_list_init (&lookup->children);
479
480 lookup->memspec = (CONST char *) NULL;
481 lookup->flags = 0;
482 lookup->subsection_alignment = -1;
483 lookup->section_alignment = -1;
484 lookup->load_base = (union etree_union *) NULL;
485
486 lang_statement_append (&lang_output_section_statement,
487 (lang_statement_union_type *) lookup,
488 &lookup->next);
489 }
490 return lookup;
491 }
492
493 /*ARGSUSED*/
494 static void
495 print_flags (ignore_flags)
496 int *ignore_flags;
497 {
498 fprintf (config.map_file, "(");
499 #if 0
500 if (flags->flag_read)
501 fprintf (outfile, "R");
502 if (flags->flag_write)
503 fprintf (outfile, "W");
504 if (flags->flag_executable)
505 fprintf (outfile, "X");
506 if (flags->flag_loadable)
507 fprintf (outfile, "L");
508 #endif
509 fprintf (config.map_file, ")");
510 }
511
512 void
513 lang_map ()
514 {
515 lang_memory_region_type *m;
516
517 fprintf (config.map_file, "**MEMORY CONFIGURATION**\n\n");
518 #ifdef HOST_64_BIT
519 fprintf (config.map_file, "name\t\torigin\t\tlength\t\tattributes\n");
520 #else
521 fprintf (config.map_file,
522 "name\t\torigin length r_size c_size is attributes\n");
523
524 #endif
525 for (m = lang_memory_region_list;
526 m != (lang_memory_region_type *) NULL;
527 m = m->next)
528 {
529 fprintf (config.map_file, "%-16s", m->name);
530 print_address (m->origin);
531 print_space ();
532 print_address ((bfd_vma)m->length);
533 print_space ();
534 print_address ((bfd_vma)m->old_length);
535 print_space();
536 print_address (m->current - m->origin);
537 print_space();
538 if (m->old_length)
539 fprintf(config.map_file," %2d%% ", ( m->current - m->origin) * 100 / m->old_length);
540 print_flags (&m->flags);
541 fprintf (config.map_file, "\n");
542 }
543 fprintf (config.map_file, "\n\n**LINK EDITOR MEMORY MAP**\n\n");
544 fprintf (config.map_file, "output input virtual\n");
545 fprintf (config.map_file, "section section address tsize\n\n");
546
547 print_statements ();
548
549 }
550
551 /*
552 *
553 */
554 static void
555 init_os (s)
556 lang_output_section_statement_type * s;
557 {
558 /* asection *section = bfd_get_section_by_name(output_bfd, s->name);*/
559 section_userdata_type *new =
560 (section_userdata_type *)
561 stat_alloc ((bfd_size_type) (sizeof (section_userdata_type)));
562
563 s->bfd_section = bfd_get_section_by_name (output_bfd, s->name);
564 if (s->bfd_section == (asection *) NULL)
565 s->bfd_section = bfd_make_section (output_bfd, s->name);
566 if (s->bfd_section == (asection *) NULL)
567 {
568 einfo ("%P%F output format %s cannot represent section called %s\n",
569 output_bfd->xvec->name, s->name);
570 }
571 s->bfd_section->output_section = s->bfd_section;
572 /* s->bfd_section->flags = s->flags;*/
573
574 /* We initialize an output sections output offset to minus its own */
575 /* vma to allow us to output a section through itself */
576 s->bfd_section->output_offset = 0;
577 get_userdata (s->bfd_section) = (PTR) new;
578
579 }
580
581 /***********************************************************************
582 The wild routines.
583
584 These expand statements like *(.text) and foo.o to a list of
585 explicit actions, like foo.o(.text), bar.o(.text) and
586 foo.o(.text,.data) .
587
588 The toplevel routine, wild, takes a statement, section, file and
589 target. If either the section or file is null it is taken to be the
590 wildcard. Seperate lang_input_section statements are created for
591 each part of the expanstion, and placed after the statement provided.
592
593 */
594
595 static void
596 wild_doit (ptr, section, output, file)
597 lang_statement_list_type * ptr;
598 asection * section;
599 lang_output_section_statement_type * output;
600 lang_input_statement_type * file;
601 {
602 if (output->bfd_section == (asection *) NULL)
603 {
604 init_os (output);
605 /* Initialize the vma and size to the existing section. This will
606 be overriden in lang_size_sections unless SEC_NEVER_LOAD gets
607 set. */
608 if (section != (asection *) NULL)
609 {
610 bfd_set_section_vma (0, output->bfd_section,
611 bfd_section_vma (0, section));
612 output->bfd_section->_raw_size = section->_raw_size;
613 }
614 }
615
616 if (section != (asection *) NULL
617 && section->output_section == (asection *) NULL)
618 {
619 /* Add a section reference to the list */
620 lang_input_section_type *new = new_stat (lang_input_section, ptr);
621
622 new->section = section;
623 new->ifile = file;
624 section->output_section = output->bfd_section;
625
626 /* Be selective about what the output section inherits from the
627 input section */
628
629 if ((section->flags & SEC_SHARED_LIBRARY) != 0)
630 section->output_section->flags |= section->flags;
631 else
632 section->output_section->flags |= section->flags & ~SEC_NEVER_LOAD;
633
634 if (!output->loadable)
635 {
636 /* Turn off load flag */
637 output->bfd_section->flags &= ~SEC_LOAD;
638 output->bfd_section->flags |= SEC_NEVER_LOAD;
639 }
640 if (section->alignment_power > output->bfd_section->alignment_power)
641 {
642 output->bfd_section->alignment_power = section->alignment_power;
643 }
644 /* If supplied an aligmnet, then force it */
645 if (output->section_alignment != -1)
646 {
647 output->bfd_section->alignment_power = output->section_alignment;
648 }
649 }
650 }
651
652 static asection *
653 our_bfd_get_section_by_name (abfd, section)
654 bfd * abfd;
655 CONST char *section;
656 {
657 return bfd_get_section_by_name (abfd, section);
658 }
659
660 static void
661 wild_section (ptr, section, file, output)
662 lang_wild_statement_type * ptr;
663 CONST char *section;
664 lang_input_statement_type * file;
665 lang_output_section_statement_type * output;
666 {
667 asection *s;
668
669 if (file->just_syms_flag == false)
670 {
671 if (section == (char *) NULL)
672 {
673 /* Do the creation to all sections in the file */
674 for (s = file->the_bfd->sections; s != (asection *) NULL; s = s->next)
675 {
676 /* except for bss */
677 if ((s->flags & SEC_IS_COMMON) == 0)
678 {
679 wild_doit (&ptr->children, s, output, file);
680 }
681 }
682 }
683 else
684 {
685 /* Do the creation to the named section only */
686 wild_doit (&ptr->children,
687 our_bfd_get_section_by_name (file->the_bfd, section),
688 output, file);
689 }
690 }
691 }
692
693 /* passed a file name (which must have been seen already and added to
694 the statement tree. We will see if it has been opened already and
695 had its symbols read. If not then we'll read it.
696
697 Archives are pecuilar here. We may open them once, but if they do
698 not define anything we need at the time, they won't have all their
699 symbols read. If we need them later, we'll have to redo it.
700 */
701 static
702 lang_input_statement_type *
703 lookup_name (name)
704 CONST char *CONST name;
705 {
706 lang_input_statement_type *search;
707
708 for (search = (lang_input_statement_type *) input_file_chain.head;
709 search != (lang_input_statement_type *) NULL;
710 search = (lang_input_statement_type *) search->next_real_file)
711 {
712 if (search->filename == (char *) NULL && name == (char *) NULL)
713 {
714 return search;
715 }
716 if (search->filename != (char *) NULL && name != (char *) NULL)
717 {
718 if (strcmp (search->filename, name) == 0)
719 {
720 ldmain_open_file_read_symbol (search);
721 return search;
722 }
723 }
724 }
725
726 /* There isn't an afile entry for this file yet, this must be
727 because the name has only appeared inside a load script and not
728 on the command line */
729 search = new_afile (name, lang_input_file_is_file_enum, default_target);
730 ldmain_open_file_read_symbol (search);
731 return search;
732
733
734 }
735
736 static void
737 wild (s, section, file, target, output)
738 lang_wild_statement_type * s;
739 CONST char *CONST section;
740 CONST char *CONST file;
741 CONST char *CONST target;
742 lang_output_section_statement_type * output;
743 {
744 lang_input_statement_type *f;
745
746 if (file == (char *) NULL)
747 {
748 /* Perform the iteration over all files in the list */
749 for (f = (lang_input_statement_type *) file_chain.head;
750 f != (lang_input_statement_type *) NULL;
751 f = (lang_input_statement_type *) f->next)
752 {
753 wild_section (s, section, f, output);
754 }
755 /* Once more for the script file */
756 wild_section(s, section, script_file, output);
757 }
758 else
759 {
760 /* Perform the iteration over a single file */
761 wild_section (s, section, lookup_name (file), output);
762 }
763 if (section != (char *) NULL
764 && strcmp (section, "COMMON") == 0
765 && default_common_section == (lang_output_section_statement_type *) NULL)
766 {
767 /* Remember the section that common is going to incase we later
768 get something which doesn't know where to put it */
769 default_common_section = output;
770 }
771 }
772
773 /*
774 read in all the files
775 */
776 static bfd *
777 open_output (name)
778 CONST char *CONST name;
779 {
780 extern unsigned long ldfile_output_machine;
781 extern enum bfd_architecture ldfile_output_architecture;
782
783 extern CONST char *output_filename;
784 bfd *output;
785
786 if (output_target == (char *) NULL)
787 {
788 if (current_target != (char *) NULL)
789 output_target = current_target;
790 else
791 output_target = default_target;
792 }
793 output = bfd_openw (name, output_target);
794 output_filename = name;
795
796 if (output == (bfd *) NULL)
797 {
798 if (bfd_error == invalid_target)
799 {
800 einfo ("%P%F target %s not found\n", output_target);
801 }
802 einfo ("%P%F problem opening output file %s, %E\n", name);
803 }
804
805 /* output->flags |= D_PAGED;*/
806
807 bfd_set_format (output, bfd_object);
808 bfd_set_arch_mach (output,
809 ldfile_output_architecture,
810 ldfile_output_machine);
811 bfd_set_gp_size (output, g_switch_value);
812 return output;
813 }
814
815
816
817
818 static void
819 ldlang_open_output (statement)
820 lang_statement_union_type * statement;
821 {
822 switch (statement->header.type)
823 {
824 case lang_output_statement_enum:
825 output_bfd = open_output (statement->output_statement.name);
826 ldemul_set_output_arch ();
827 if (config.magic_demand_paged && !config.relocateable_output)
828 output_bfd->flags |= D_PAGED;
829 else
830 output_bfd->flags &= ~D_PAGED;
831 if (config.text_read_only)
832 output_bfd->flags |= WP_TEXT;
833 else
834 output_bfd->flags &= ~WP_TEXT;
835 break;
836
837 case lang_target_statement_enum:
838 current_target = statement->target_statement.target;
839 break;
840 default:
841 break;
842 }
843 }
844
845 static void
846 open_input_bfds (statement)
847 lang_statement_union_type * statement;
848 {
849 switch (statement->header.type)
850 {
851 case lang_target_statement_enum:
852 current_target = statement->target_statement.target;
853 break;
854 case lang_wild_statement_enum:
855 /* Maybe we should load the file's symbols */
856 if (statement->wild_statement.filename)
857 {
858 (void) lookup_name (statement->wild_statement.filename);
859 }
860 break;
861 case lang_input_statement_enum:
862 if (statement->input_statement.real == true)
863 {
864 statement->input_statement.target = current_target;
865 lookup_name (statement->input_statement.filename);
866 }
867 break;
868 default:
869 break;
870 }
871 }
872
873 /* If there are [COMMONS] statements, put a wild one into the bss section */
874
875 static void
876 lang_reasonable_defaults ()
877 {
878
879
880
881 #if 0
882 lang_output_section_statement_lookup (".text");
883 lang_output_section_statement_lookup (".data");
884
885 default_common_section =
886 lang_output_section_statement_lookup (".bss");
887
888
889 if (placed_commons == false)
890 {
891 lang_wild_statement_type *new =
892 new_stat (lang_wild_statement,
893 &default_common_section->children);
894
895 new->section_name = "COMMON";
896 new->filename = (char *) NULL;
897 lang_list_init (&new->children);
898 }
899 #endif
900
901 }
902
903 /*
904 Add the supplied name to the symbol table as an undefined reference.
905 Remove items from the chain as we open input bfds
906 */
907 typedef struct ldlang_undef_chain_list
908 {
909 struct ldlang_undef_chain_list *next;
910 char *name;
911 } ldlang_undef_chain_list_type;
912
913 static ldlang_undef_chain_list_type *ldlang_undef_chain_list_head;
914
915 void
916 ldlang_add_undef (name)
917 CONST char *CONST name;
918 {
919 ldlang_undef_chain_list_type *new =
920 (ldlang_undef_chain_list_type
921 *) stat_alloc ((bfd_size_type) (sizeof (ldlang_undef_chain_list_type)));
922
923 new->next = ldlang_undef_chain_list_head;
924 ldlang_undef_chain_list_head = new;
925
926 new->name = buystring (name);
927 }
928
929 /* Run through the list of undefineds created above and place them
930 into the linker hash table as undefined symbols belonging to the
931 script file.
932 */
933 static void
934 lang_place_undefineds ()
935 {
936 ldlang_undef_chain_list_type *ptr = ldlang_undef_chain_list_head;
937
938 while (ptr != (ldlang_undef_chain_list_type *) NULL)
939 {
940 asymbol *def;
941 asymbol **def_ptr = (asymbol **) stat_alloc ((bfd_size_type) (sizeof (asymbol **)));
942
943 def = (asymbol *) bfd_make_empty_symbol (script_file->the_bfd);
944 *def_ptr = def;
945 def->name = ptr->name;
946 def->section = &bfd_und_section;
947 Q_enter_global_ref (def_ptr, ptr->name);
948 ptr = ptr->next;
949 }
950 }
951
952 /* Copy important data from out internal form to the bfd way. Also
953 create a section for the dummy file
954 */
955
956 static void
957 lang_create_output_section_statements ()
958 {
959 lang_statement_union_type *os;
960
961 for (os = lang_output_section_statement.head;
962 os != (lang_statement_union_type *) NULL;
963 os = os->output_section_statement.next)
964 {
965 lang_output_section_statement_type *s =
966 &os->output_section_statement;
967
968 init_os (s);
969 }
970
971 }
972
973 static void
974 lang_init_script_file ()
975 {
976 script_file = lang_add_input_file ("command line",
977 lang_input_file_is_fake_enum,
978 (char *) NULL);
979 script_file->the_bfd = bfd_create ("command line", output_bfd);
980 script_file->symbol_count = 0;
981 script_file->the_bfd->sections = 0;
982
983 /* The user data of a bfd points to the input statement attatched */
984 script_file->the_bfd->usrdata = (void *)script_file;
985 script_file->common_section =
986 bfd_make_section(script_file->the_bfd,"COMMON");
987
988 abs_output_section =
989 lang_output_section_statement_lookup (BFD_ABS_SECTION_NAME);
990
991 abs_output_section->bfd_section = &bfd_abs_section;
992
993 }
994
995 /* Open input files and attatch to output sections */
996 static void
997 map_input_to_output_sections (s, target, output_section_statement)
998 lang_statement_union_type * s;
999 CONST char *target;
1000 lang_output_section_statement_type * output_section_statement;
1001 {
1002 for (; s != (lang_statement_union_type *) NULL; s = s->next)
1003 {
1004 switch (s->header.type)
1005 {
1006
1007
1008 case lang_wild_statement_enum:
1009 wild (&s->wild_statement, s->wild_statement.section_name,
1010 s->wild_statement.filename, target,
1011 output_section_statement);
1012
1013 break;
1014 case lang_constructors_statement_enum:
1015 map_input_to_output_sections (constructor_list.head,
1016 target,
1017 output_section_statement);
1018 break;
1019 case lang_output_section_statement_enum:
1020 map_input_to_output_sections (s->output_section_statement.children.head,
1021 target,
1022 &s->output_section_statement);
1023 break;
1024 case lang_output_statement_enum:
1025 break;
1026 case lang_target_statement_enum:
1027 target = s->target_statement.target;
1028 break;
1029 case lang_fill_statement_enum:
1030 case lang_input_section_enum:
1031 case lang_object_symbols_statement_enum:
1032 case lang_data_statement_enum:
1033 case lang_assignment_statement_enum:
1034 case lang_padding_statement_enum:
1035 break;
1036 case lang_afile_asection_pair_statement_enum:
1037 FAIL ();
1038 break;
1039 case lang_address_statement_enum:
1040 /* Mark the specified section with the supplied address */
1041 {
1042 lang_output_section_statement_type *os =
1043 lang_output_section_statement_lookup
1044 (s->address_statement.section_name);
1045
1046 os->addr_tree = s->address_statement.address;
1047 if (os->bfd_section == (asection *) NULL)
1048 {
1049 einfo ("%P%F can't set the address of undefined section %s\n",
1050 s->address_statement.section_name);
1051 }
1052 }
1053 break;
1054 case lang_input_statement_enum:
1055 /* A standard input statement, has no wildcards */
1056 /* ldmain_open_file_read_symbol(&s->input_statement);*/
1057 break;
1058 }
1059 }
1060 }
1061
1062
1063
1064
1065
1066 static void
1067 print_output_section_statement (output_section_statement)
1068 lang_output_section_statement_type * output_section_statement;
1069 {
1070 asection *section = output_section_statement->bfd_section;
1071
1072 print_nl ();
1073 print_section (output_section_statement->name);
1074
1075
1076 if (section)
1077 {
1078 print_dot = section->vma;
1079 print_space ();
1080 print_section ("");
1081 print_space ();
1082 print_address (section->vma);
1083 print_space ();
1084 print_size (section->_raw_size);
1085 print_space();
1086 print_size(section->_cooked_size);
1087 print_space ();
1088 print_alignment (section->alignment_power);
1089 print_space ();
1090 #if 0
1091 fprintf (config.map_file, "%s flags", output_section_statement->region->name);
1092 print_flags (stdout, &output_section_statement->flags);
1093 #endif
1094 if (section->flags & SEC_LOAD)
1095 fprintf (config.map_file, "load ");
1096 if (section->flags & SEC_ALLOC)
1097 fprintf (config.map_file, "alloc ");
1098 if (section->flags & SEC_RELOC)
1099 fprintf (config.map_file, "reloc ");
1100 if (section->flags & SEC_HAS_CONTENTS)
1101 fprintf (config.map_file, "contents ");
1102
1103 }
1104 else
1105 {
1106 fprintf (config.map_file, "No attached output section");
1107 }
1108 print_nl ();
1109 if (output_section_statement->load_base)
1110 {
1111 int b = exp_get_value_int(output_section_statement->load_base,
1112 0, "output base", lang_final_phase_enum);
1113 printf("Output address %08x\n", b);
1114 }
1115 if (output_section_statement->section_alignment >= 0
1116 || output_section_statement->section_alignment >= 0)
1117 {
1118 printf("\t\t\t\t\tforced alignment ");
1119 if ( output_section_statement->section_alignment >= 0)
1120 {
1121 printf("section 2**%d ",output_section_statement->section_alignment );
1122 }
1123 if ( output_section_statement->subsection_alignment >= 0)
1124 {
1125 printf("subsection 2**%d ",output_section_statement->subsection_alignment );
1126 }
1127
1128 print_nl ();
1129 }
1130 print_statement (output_section_statement->children.head,
1131 output_section_statement);
1132
1133 }
1134
1135 static void
1136 print_assignment (assignment, output_section)
1137 lang_assignment_statement_type * assignment;
1138 lang_output_section_statement_type * output_section;
1139 {
1140 etree_value_type result;
1141
1142 print_section ("");
1143 print_space ();
1144 print_section ("");
1145 print_space ();
1146 print_address (print_dot);
1147 print_space ();
1148 result = exp_fold_tree (assignment->exp->assign.src,
1149 output_section,
1150 lang_final_phase_enum,
1151 print_dot,
1152 &print_dot);
1153
1154 if (result.valid)
1155 {
1156 print_address (result.value);
1157 }
1158 else
1159 {
1160 fprintf (config.map_file, "*undefined*");
1161 }
1162 print_space ();
1163 exp_print_tree (assignment->exp);
1164
1165 fprintf (config.map_file, "\n");
1166 }
1167
1168 static void
1169 print_input_statement (statm)
1170 lang_input_statement_type * statm;
1171 {
1172 if (statm->filename != (char *) NULL)
1173 {
1174 fprintf (config.map_file, "LOAD %s\n", statm->filename);
1175 }
1176 }
1177
1178 static void
1179 print_symbol (q)
1180 asymbol * q;
1181 {
1182 print_section ("");
1183 fprintf (config.map_file, " ");
1184 print_section ("");
1185 fprintf (config.map_file, " ");
1186 print_address (outside_symbol_address (q));
1187 fprintf (config.map_file, " %s", q->name ? q->name : " ");
1188 print_nl ();
1189 }
1190
1191 static void
1192 print_input_section (in)
1193 lang_input_section_type * in;
1194 {
1195 asection *i = in->section;
1196 int size = i->reloc_done ?
1197 bfd_get_section_size_after_reloc (i) :
1198 bfd_get_section_size_before_reloc (i);
1199
1200 if (size != 0)
1201 {
1202 print_section ("");
1203 fprintf (config.map_file, " ");
1204 print_section (i->name);
1205 fprintf (config.map_file, " ");
1206 if (i->output_section)
1207 {
1208 print_address (i->output_section->vma + i->output_offset);
1209 fprintf (config.map_file, " ");
1210 print_size (i->_raw_size);
1211 fprintf (config.map_file, " ");
1212 print_size(i->_cooked_size);
1213 fprintf (config.map_file, " ");
1214 print_alignment (i->alignment_power);
1215 fprintf (config.map_file, " ");
1216 if (in->ifile)
1217 {
1218
1219 bfd *abfd = in->ifile->the_bfd;
1220
1221 if (in->ifile->just_syms_flag == true)
1222 {
1223 fprintf (config.map_file, "symbols only ");
1224 }
1225
1226 fprintf (config.map_file, " %s ", abfd->xvec->name);
1227 if (abfd->my_archive != (bfd *) NULL)
1228 {
1229 fprintf (config.map_file, "[%s]%s", abfd->my_archive->filename,
1230 abfd->filename);
1231 }
1232 else
1233 {
1234 fprintf (config.map_file, "%s", abfd->filename);
1235 }
1236 fprintf (config.map_file, "(overhead %d bytes)", (int) bfd_alloc_size (abfd));
1237 print_nl ();
1238
1239 /* Find all the symbols in this file defined in this section */
1240
1241 if (in->ifile->symbol_count)
1242 {
1243 asymbol **p;
1244
1245 for (p = in->ifile->asymbols; *p; p++)
1246 {
1247 asymbol *q = *p;
1248
1249 if (bfd_get_section (q) == i && q->flags & BSF_GLOBAL)
1250 {
1251 print_symbol (q);
1252 }
1253 }
1254 }
1255 }
1256 else
1257 {
1258 print_nl ();
1259 }
1260
1261
1262 print_dot = outside_section_address (i) + size;
1263 }
1264 else
1265 {
1266 fprintf (config.map_file, "No output section allocated\n");
1267 }
1268 }
1269 }
1270
1271 static void
1272 print_fill_statement (fill)
1273 lang_fill_statement_type * fill;
1274 {
1275 fprintf (config.map_file, "FILL mask ");
1276 print_fill (fill->fill);
1277 }
1278
1279 static void
1280 print_data_statement (data)
1281 lang_data_statement_type * data;
1282 {
1283 /* bfd_vma value; */
1284 print_section ("");
1285 print_space ();
1286 print_section ("");
1287 print_space ();
1288 /* ASSERT(print_dot == data->output_vma);*/
1289
1290 print_address (data->output_vma + data->output_section->vma);
1291 print_space ();
1292 print_address (data->value);
1293 print_space ();
1294 switch (data->type)
1295 {
1296 case BYTE:
1297 fprintf (config.map_file, "BYTE ");
1298 print_dot += BYTE_SIZE;
1299 break;
1300 case SHORT:
1301 fprintf (config.map_file, "SHORT ");
1302 print_dot += SHORT_SIZE;
1303 break;
1304 case LONG:
1305 fprintf (config.map_file, "LONG ");
1306 print_dot += LONG_SIZE;
1307 break;
1308 }
1309
1310 exp_print_tree (data->exp);
1311
1312 fprintf (config.map_file, "\n");
1313 }
1314
1315
1316 static void
1317 print_padding_statement (s)
1318 lang_padding_statement_type * s;
1319 {
1320 print_section ("");
1321 print_space ();
1322 print_section ("*fill*");
1323 print_space ();
1324 print_address (s->output_offset + s->output_section->vma);
1325 print_space ();
1326 print_size (s->size);
1327 print_space ();
1328 print_fill (s->fill);
1329 print_nl ();
1330
1331 print_dot = s->output_offset + s->output_section->vma + s->size;
1332
1333 }
1334
1335 static void
1336 print_wild_statement (w, os)
1337 lang_wild_statement_type * w;
1338 lang_output_section_statement_type * os;
1339 {
1340 fprintf (config.map_file, " from ");
1341 if (w->filename != (char *) NULL)
1342 {
1343 fprintf (config.map_file, "%s", w->filename);
1344 }
1345 else
1346 {
1347 fprintf (config.map_file, "*");
1348 }
1349 if (w->section_name != (char *) NULL)
1350 {
1351 fprintf (config.map_file, "(%s)", w->section_name);
1352 }
1353 else
1354 {
1355 fprintf (config.map_file, "(*)");
1356 }
1357 print_nl ();
1358 print_statement (w->children.head, os);
1359
1360 }
1361 static void
1362 print_statement (s, os)
1363 lang_statement_union_type * s;
1364 lang_output_section_statement_type * os;
1365 {
1366 while (s)
1367 {
1368 switch (s->header.type)
1369 {
1370 case lang_constructors_statement_enum:
1371 fprintf (config.map_file, "constructors:\n");
1372 print_statement (constructor_list.head, os);
1373 break;
1374 case lang_wild_statement_enum:
1375 print_wild_statement (&s->wild_statement, os);
1376 break;
1377 default:
1378 fprintf (config.map_file, "Fail with %d\n", s->header.type);
1379 FAIL ();
1380 break;
1381 case lang_address_statement_enum:
1382 fprintf (config.map_file, "address\n");
1383 break;
1384 case lang_object_symbols_statement_enum:
1385 fprintf (config.map_file, "object symbols\n");
1386 break;
1387 case lang_fill_statement_enum:
1388 print_fill_statement (&s->fill_statement);
1389 break;
1390 case lang_data_statement_enum:
1391 print_data_statement (&s->data_statement);
1392 break;
1393 case lang_input_section_enum:
1394 print_input_section (&s->input_section);
1395 break;
1396 case lang_padding_statement_enum:
1397 print_padding_statement (&s->padding_statement);
1398 break;
1399 case lang_output_section_statement_enum:
1400 print_output_section_statement (&s->output_section_statement);
1401 break;
1402 case lang_assignment_statement_enum:
1403 print_assignment (&s->assignment_statement,
1404 os);
1405 break;
1406 case lang_target_statement_enum:
1407 fprintf (config.map_file, "TARGET(%s)\n", s->target_statement.target);
1408 break;
1409 case lang_output_statement_enum:
1410 fprintf (config.map_file, "OUTPUT(%s %s)\n",
1411 s->output_statement.name,
1412 output_target ? output_target : "");
1413 break;
1414 case lang_input_statement_enum:
1415 print_input_statement (&s->input_statement);
1416 break;
1417 case lang_afile_asection_pair_statement_enum:
1418 FAIL ();
1419 break;
1420 }
1421 s = s->next;
1422 }
1423 }
1424
1425
1426 static void
1427 print_statements ()
1428 {
1429 print_statement (statement_list.head,
1430 abs_output_section);
1431
1432 }
1433
1434 static bfd_vma
1435 DEFUN (insert_pad, (this_ptr, fill, power, output_section_statement, dot),
1436 lang_statement_union_type ** this_ptr AND
1437 fill_type fill AND
1438 unsigned int power AND
1439 asection * output_section_statement AND
1440 bfd_vma dot)
1441 {
1442 /* Align this section first to the
1443 input sections requirement, then
1444 to the output section's requirement.
1445 If this alignment is > than any seen before,
1446 then record it too. Perform the alignment by
1447 inserting a magic 'padding' statement.
1448 */
1449
1450 unsigned int alignment_needed = align_power (dot, power) - dot;
1451
1452 if (alignment_needed != 0)
1453 {
1454 lang_statement_union_type *new =
1455 (lang_statement_union_type *)
1456 stat_alloc ((bfd_size_type) (sizeof (lang_padding_statement_type)));
1457
1458 /* Link into existing chain */
1459 new->header.next = *this_ptr;
1460 *this_ptr = new;
1461 new->header.type = lang_padding_statement_enum;
1462 new->padding_statement.output_section = output_section_statement;
1463 new->padding_statement.output_offset =
1464 dot - output_section_statement->vma;
1465 new->padding_statement.fill = fill;
1466 new->padding_statement.size = alignment_needed;
1467 }
1468
1469
1470 /* Remember the most restrictive alignment */
1471 if (power > output_section_statement->alignment_power)
1472 {
1473 output_section_statement->alignment_power = power;
1474 }
1475 output_section_statement->_raw_size += alignment_needed;
1476 return alignment_needed + dot;
1477
1478 }
1479
1480 /* Work out how much this section will move the dot point */
1481 static bfd_vma
1482 DEFUN (size_input_section, (this_ptr, output_section_statement, fill, dot, relax),
1483 lang_statement_union_type ** this_ptr AND
1484 lang_output_section_statement_type * output_section_statement AND
1485 unsigned short fill AND
1486 bfd_vma dot AND
1487 boolean relax)
1488 {
1489 lang_input_section_type *is = &((*this_ptr)->input_section);
1490 asection *i = is->section;
1491
1492 if (is->ifile->just_syms_flag == false)
1493 {
1494 if (output_section_statement->subsection_alignment != -1)
1495 i->alignment_power =
1496 output_section_statement->subsection_alignment;
1497
1498 dot = insert_pad (this_ptr, fill, i->alignment_power,
1499 output_section_statement->bfd_section, dot);
1500
1501 /* remember the largest size so we can malloc the largest area
1502 needed for the output stage. Only remember the size of sections
1503 which we will actually allocate */
1504 if ((i->flags & SEC_HAS_CONTENTS) != 0
1505 && (bfd_get_section_size_before_reloc (i) > largest_section))
1506 {
1507 largest_section = bfd_get_section_size_before_reloc (i);
1508 }
1509
1510 /* Remember where in the output section this input section goes */
1511
1512 i->output_offset = dot - output_section_statement->bfd_section->vma;
1513
1514 /* Mark how big the output section must be to contain this now
1515 */
1516 if (relax)
1517 {
1518 dot += i->_cooked_size;
1519 }
1520 else
1521 {
1522 dot += i->_raw_size;
1523 }
1524 output_section_statement->bfd_section->_raw_size = dot - output_section_statement->bfd_section->vma;
1525 }
1526 else
1527 {
1528 i->output_offset = i->vma - output_section_statement->bfd_section->vma;
1529 }
1530
1531 return dot;
1532 }
1533
1534 /* Sizing happens in two passes, first pass we allocate worst case
1535 stuff. The second pass (if relaxing), we use what we learnt to
1536 change the size of some relocs from worst case to better
1537 */
1538 static boolean had_relax;
1539
1540 static bfd_vma
1541 DEFUN (lang_size_sections, (s, output_section_statement, prev, fill, dot, relax),
1542 lang_statement_union_type * s AND
1543 lang_output_section_statement_type * output_section_statement AND
1544 lang_statement_union_type ** prev AND
1545 unsigned short fill AND
1546 bfd_vma dot AND
1547 boolean relax)
1548 {
1549 /* Size up the sections from their constituent parts */
1550 for (; s != (lang_statement_union_type *) NULL; s = s->next)
1551 {
1552 switch (s->header.type)
1553 {
1554
1555 case lang_output_section_statement_enum:
1556 {
1557 bfd_vma after;
1558 lang_output_section_statement_type *os = &s->output_section_statement;
1559
1560 /* If this is a shared library section, don't change the size
1561 and address. */
1562 if (os->bfd_section->flags & SEC_SHARED_LIBRARY)
1563 break;
1564
1565 if (os->bfd_section == &bfd_abs_section)
1566 {
1567 /* No matter what happens, an abs section starts at zero */
1568 bfd_set_section_vma (0, os->bfd_section, 0);
1569 }
1570 else
1571 {
1572 if (os->addr_tree == (etree_type *) NULL)
1573 {
1574 /* No address specified for this section, get one
1575 from the region specification
1576 */
1577 if (os->region == (lang_memory_region_type *) NULL)
1578 {
1579 os->region = lang_memory_region_lookup ("*default*");
1580 }
1581 dot = os->region->current;
1582 }
1583 else
1584 {
1585 etree_value_type r;
1586
1587 r = exp_fold_tree (os->addr_tree,
1588 abs_output_section,
1589 lang_allocating_phase_enum,
1590 dot, &dot);
1591 if (r.valid == false)
1592 {
1593 einfo ("%F%S: non constant address expression for section %s\n",
1594 os->name);
1595 }
1596 dot = r.value;
1597 }
1598 /* The section starts here */
1599 /* First, align to what the section needs */
1600
1601
1602 dot = align_power (dot, os->bfd_section->alignment_power);
1603 bfd_set_section_vma (0, os->bfd_section, dot);
1604
1605 if (os->load_base) {
1606 os->bfd_section->lma
1607 = exp_get_value_int(os->load_base, 0,"load base", lang_final_phase_enum);
1608 }
1609 }
1610
1611
1612 os->bfd_section->output_offset = 0;
1613
1614 (void) lang_size_sections (os->children.head, os, &os->children.head,
1615 os->fill, dot, relax);
1616 /* Ignore the size of the input sections, use the vma and size to */
1617 /* align against */
1618
1619
1620 after = ALIGN_N (os->bfd_section->vma +
1621 os->bfd_section->_raw_size,
1622 os->block_value);
1623
1624
1625 os->bfd_section->_raw_size = after - os->bfd_section->vma;
1626 dot = os->bfd_section->vma + os->bfd_section->_raw_size;
1627 os->processed = true;
1628
1629 /* Replace into region ? */
1630 if (os->addr_tree == (etree_type *) NULL
1631 && os->region != (lang_memory_region_type *) NULL)
1632 {
1633 os->region->current = dot;
1634 /* Make sure this isn't silly */
1635 if (( os->region->current
1636 > os->region->origin + os->region->length)
1637 || ( os->region->origin > os->region->current ))
1638 {
1639 einfo ("%X%P: Region %s is full (%B section %s)\n",
1640 os->region->name,
1641 os->bfd_section->owner,
1642 os->bfd_section->name);
1643 /* Reset the region pointer */
1644 os->region->current = 0;
1645
1646 }
1647
1648 }
1649 }
1650
1651 break;
1652 case lang_constructors_statement_enum:
1653 dot = lang_size_sections (constructor_list.head,
1654 output_section_statement,
1655 &s->wild_statement.children.head,
1656 fill,
1657 dot, relax);
1658 break;
1659
1660 case lang_data_statement_enum:
1661 {
1662 unsigned int size = 0;
1663
1664 s->data_statement.output_vma = dot - output_section_statement->bfd_section->vma;
1665 s->data_statement.output_section =
1666 output_section_statement->bfd_section;
1667
1668 switch (s->data_statement.type)
1669 {
1670 case LONG:
1671 size = LONG_SIZE;
1672 break;
1673 case SHORT:
1674 size = SHORT_SIZE;
1675 break;
1676 case BYTE:
1677 size = BYTE_SIZE;
1678 break;
1679
1680 }
1681 dot += size;
1682 output_section_statement->bfd_section->_raw_size += size;
1683 }
1684 break;
1685
1686 case lang_wild_statement_enum:
1687
1688 dot = lang_size_sections (s->wild_statement.children.head,
1689 output_section_statement,
1690 &s->wild_statement.children.head,
1691
1692 fill, dot, relax);
1693
1694 break;
1695
1696 case lang_object_symbols_statement_enum:
1697 create_object_symbols = output_section_statement;
1698 break;
1699 case lang_output_statement_enum:
1700 case lang_target_statement_enum:
1701 break;
1702 case lang_input_section_enum:
1703 if (relax)
1704 {
1705 relaxing = true;
1706
1707 if( relax_section (prev))
1708 had_relax = true;
1709 relaxing = false;
1710
1711 }
1712 else {
1713 (*prev)->input_section.section->_cooked_size =
1714 (*prev)->input_section.section->_raw_size ;
1715
1716 }
1717 dot = size_input_section (prev,
1718 output_section_statement,
1719 output_section_statement->fill,
1720 dot, relax);
1721 break;
1722 case lang_input_statement_enum:
1723 break;
1724 case lang_fill_statement_enum:
1725 s->fill_statement.output_section = output_section_statement->bfd_section;
1726
1727 fill = s->fill_statement.fill;
1728 break;
1729 case lang_assignment_statement_enum:
1730 {
1731 bfd_vma newdot = dot;
1732
1733 exp_fold_tree (s->assignment_statement.exp,
1734 output_section_statement,
1735 lang_allocating_phase_enum,
1736 dot,
1737 &newdot);
1738
1739 if (newdot != dot && !relax)
1740 /* We've been moved ! so insert a pad */
1741 {
1742 lang_statement_union_type *new =
1743 (lang_statement_union_type *)
1744 stat_alloc ((bfd_size_type) (sizeof (lang_padding_statement_type)));
1745
1746 /* Link into existing chain */
1747 new->header.next = *prev;
1748 *prev = new;
1749 new->header.type = lang_padding_statement_enum;
1750 new->padding_statement.output_section =
1751 output_section_statement->bfd_section;
1752 new->padding_statement.output_offset =
1753 dot - output_section_statement->bfd_section->vma;
1754 new->padding_statement.fill = fill;
1755 new->padding_statement.size = newdot - dot;
1756 output_section_statement->bfd_section->_raw_size +=
1757 new->padding_statement.size;
1758 dot = newdot;
1759 }
1760 }
1761
1762 break;
1763 default:
1764 FAIL ();
1765 break;
1766 /* This can only get here when relaxing is turned on */
1767 case lang_padding_statement_enum:
1768
1769 case lang_address_statement_enum:
1770 break;
1771 }
1772 prev = &s->header.next;
1773 }
1774 return dot;
1775 }
1776
1777 static bfd_vma
1778 DEFUN (lang_do_assignments, (s, output_section_statement, fill, dot),
1779 lang_statement_union_type * s AND
1780 lang_output_section_statement_type * output_section_statement AND
1781 unsigned short fill AND
1782 bfd_vma dot)
1783 {
1784
1785 for (; s != (lang_statement_union_type *) NULL; s = s->next)
1786 {
1787 switch (s->header.type)
1788 {
1789 case lang_constructors_statement_enum:
1790 dot = lang_do_assignments (constructor_list.head,
1791 output_section_statement,
1792 fill,
1793 dot);
1794 break;
1795
1796 case lang_output_section_statement_enum:
1797 {
1798 lang_output_section_statement_type *os =
1799 &(s->output_section_statement);
1800
1801 dot = os->bfd_section->vma;
1802 (void) lang_do_assignments (os->children.head, os, os->fill, dot);
1803 dot = os->bfd_section->vma + os->bfd_section->_raw_size;
1804 }
1805 break;
1806 case lang_wild_statement_enum:
1807
1808 dot = lang_do_assignments (s->wild_statement.children.head,
1809 output_section_statement,
1810 fill, dot);
1811
1812 break;
1813
1814 case lang_object_symbols_statement_enum:
1815 case lang_output_statement_enum:
1816 case lang_target_statement_enum:
1817 #if 0
1818 case lang_common_statement_enum:
1819 #endif
1820 break;
1821 case lang_data_statement_enum:
1822 {
1823 etree_value_type value;
1824
1825 value = exp_fold_tree (s->data_statement.exp,
1826 abs_output_section,
1827 lang_final_phase_enum, dot, &dot);
1828 s->data_statement.value = value.value;
1829 if (value.valid == false)
1830 einfo ("%F%P: Invalid data statement\n");
1831 }
1832 switch (s->data_statement.type)
1833 {
1834 case LONG:
1835 dot += LONG_SIZE;
1836 break;
1837 case SHORT:
1838 dot += SHORT_SIZE;
1839 break;
1840 case BYTE:
1841 dot += BYTE_SIZE;
1842 break;
1843 }
1844 break;
1845 case lang_input_section_enum:
1846 {
1847 asection *in = s->input_section.section;
1848
1849 dot += bfd_get_section_size_before_reloc (in);
1850 }
1851 break;
1852
1853 case lang_input_statement_enum:
1854 break;
1855 case lang_fill_statement_enum:
1856 fill = s->fill_statement.fill;
1857 break;
1858 case lang_assignment_statement_enum:
1859 {
1860 exp_fold_tree (s->assignment_statement.exp,
1861 output_section_statement,
1862 lang_final_phase_enum,
1863 dot,
1864 &dot);
1865 }
1866
1867 break;
1868 case lang_padding_statement_enum:
1869 dot += s->padding_statement.size;
1870 break;
1871 default:
1872 FAIL ();
1873 break;
1874 case lang_address_statement_enum:
1875 break;
1876 }
1877
1878 }
1879 return dot;
1880 }
1881
1882
1883
1884 static void
1885 lang_relocate_globals ()
1886 {
1887 /*
1888 Each ldsym_type maintains a chain of pointers to asymbols which
1889 references the definition. Replace each pointer to the referenence
1890 with a pointer to only one place, preferably the definition. If
1891 the defintion isn't available then the common symbol, and if
1892 there isn't one of them then choose one reference.
1893 */
1894
1895 FOR_EACH_LDSYM (lgs)
1896 {
1897 asymbol *it;
1898
1899 /* Skip indirect symbols. */
1900 if (lgs->flags & SYM_INDIRECT)
1901 continue;
1902
1903 if (lgs->sdefs_chain)
1904 {
1905 it = *(lgs->sdefs_chain);
1906 }
1907 else if (lgs->scoms_chain != (asymbol **) NULL)
1908 {
1909 it = *(lgs->scoms_chain);
1910 }
1911 else if (lgs->srefs_chain != (asymbol **) NULL)
1912 {
1913 it = *(lgs->srefs_chain);
1914 }
1915 else
1916 {
1917 /* This can happen when the command line asked for a symbol to
1918 be -u */
1919 it = (asymbol *) NULL;
1920 }
1921 if (it != (asymbol *) NULL)
1922 {
1923 asymbol **prev = 0;
1924 asymbol **ptr = lgs->srefs_chain;;
1925 if (lgs->flags & SYM_WARNING)
1926 {
1927 produce_warnings (lgs, it);
1928 }
1929
1930 while (ptr != (asymbol **) NULL
1931 && ptr != prev)
1932 {
1933 asymbol *ref = *ptr;
1934 prev = ptr;
1935 *ptr = it;
1936 ptr = (asymbol **) (ref->udata);
1937 }
1938 }
1939 }
1940 }
1941
1942
1943
1944 static void
1945 lang_finish ()
1946 {
1947 ldsym_type *lgs;
1948 int warn = config.relocateable_output != true;
1949 if (entry_symbol == (char *) NULL)
1950 {
1951 /* No entry has been specified, look for start, but don't warn */
1952 entry_symbol = "start";
1953 warn =0;
1954 }
1955 lgs = ldsym_get_soft (entry_symbol);
1956 if (lgs && lgs->sdefs_chain)
1957 {
1958 asymbol *sy = *(lgs->sdefs_chain);
1959
1960 /* We can set the entry address*/
1961 bfd_set_start_address (output_bfd,
1962 outside_symbol_address (sy));
1963
1964 }
1965 else
1966 {
1967 /* Can't find anything reasonable,
1968 use the first address in the text section
1969 */
1970 asection *ts = bfd_get_section_by_name (output_bfd, ".text");
1971 if (ts)
1972 {
1973 if (warn)
1974 einfo ("%P: Warning, can't find entry symbol %s, defaulting to %V\n",
1975 entry_symbol, ts->vma);
1976
1977 bfd_set_start_address (output_bfd, ts->vma);
1978 }
1979 else
1980 {
1981 if (warn)
1982 einfo ("%P: Warning, can't find entry symbol %s, not setting start address\n",
1983 entry_symbol);
1984 }
1985 }
1986 }
1987
1988 /* By now we know the target architecture, and we may have an */
1989 /* ldfile_output_machine_name */
1990 static void
1991 lang_check ()
1992 {
1993 lang_statement_union_type *file;
1994 bfd *input_bfd;
1995 unsigned long input_machine;
1996 enum bfd_architecture input_architecture;
1997 CONST bfd_arch_info_type *compatible;
1998
1999 for (file = file_chain.head;
2000 file != (lang_statement_union_type *) NULL;
2001 file = file->input_statement.next)
2002 {
2003 input_bfd = file->input_statement.the_bfd;
2004
2005 input_machine = bfd_get_mach (input_bfd);
2006 input_architecture = bfd_get_arch (input_bfd);
2007
2008
2009 /* Inspect the architecture and ensure we're linking like with
2010 like */
2011
2012 compatible = bfd_arch_get_compatible (input_bfd,
2013 output_bfd);
2014
2015 if (compatible)
2016 {
2017 ldfile_output_machine = compatible->mach;
2018 ldfile_output_architecture = compatible->arch;
2019 }
2020 else
2021 {
2022
2023 info ("%P: warning, %s architecture of input file `%B' incompatible with %s output\n",
2024 bfd_printable_name (input_bfd), input_bfd,
2025 bfd_printable_name (output_bfd));
2026
2027 bfd_set_arch_mach (output_bfd,
2028 input_architecture,
2029 input_machine);
2030 }
2031
2032 }
2033 }
2034
2035 /*
2036 * run through all the global common symbols and tie them
2037 * to the output section requested.
2038 *
2039 As an experiment we do this 4 times, once for all the byte sizes,
2040 then all the two bytes, all the four bytes and then everything else
2041 */
2042
2043 static void
2044 lang_common ()
2045 {
2046 ldsym_type *lgs;
2047 size_t power;
2048
2049 if (config.relocateable_output == false ||
2050 command_line.force_common_definition == true)
2051 {
2052 for (power = 1; (config.sort_common == true && power == 1) || (power <= 16); power <<= 1)
2053 {
2054 for (lgs = symbol_head;
2055 lgs != (ldsym_type *) NULL;
2056 lgs = lgs->next)
2057 {
2058 asymbol *com;
2059 unsigned int power_of_two;
2060 size_t size;
2061 size_t align;
2062
2063 if (lgs->scoms_chain != (asymbol **) NULL)
2064 {
2065 com = *(lgs->scoms_chain);
2066 size = com->value;
2067 switch (size)
2068 {
2069 case 0:
2070 case 1:
2071 align = 1;
2072 power_of_two = 0;
2073 break;
2074 case 2:
2075 power_of_two = 1;
2076 align = 2;
2077 break;
2078 case 3:
2079 case 4:
2080 power_of_two = 2;
2081 align = 4;
2082 break;
2083 case 5:
2084 case 6:
2085 case 7:
2086 case 8:
2087 power_of_two = 3;
2088 align = 8;
2089 break;
2090 default:
2091 power_of_two = 4;
2092 align = 16;
2093 break;
2094 }
2095 if (config.sort_common == false || align == power)
2096 {
2097 bfd *symbfd;
2098
2099 /* Change from a common symbol into a definition of
2100 a symbol */
2101 lgs->sdefs_chain = lgs->scoms_chain;
2102 lgs->scoms_chain = (asymbol **) NULL;
2103 commons_pending--;
2104
2105 /* Point to the correct common section */
2106 symbfd = bfd_asymbol_bfd (com);
2107 if (com->section == &bfd_com_section)
2108 com->section =
2109 ((lang_input_statement_type *) symbfd->usrdata)
2110 ->common_section;
2111 else
2112 {
2113 CONST char *name;
2114 asection *newsec;
2115
2116 name = bfd_get_section_name (symbfd,
2117 com->section);
2118 newsec = bfd_get_section_by_name (symbfd,
2119 name);
2120 /* BFD backend must provide this section. */
2121 if (newsec == (asection *) NULL)
2122 einfo ("%P%F: No output section %s", name);
2123 com->section = newsec;
2124 }
2125
2126 /* Fix the size of the common section */
2127
2128 com->section->_raw_size =
2129 ALIGN_N (com->section->_raw_size, align);
2130
2131 /* Remember if this is the biggest alignment ever seen */
2132 if (power_of_two > com->section->alignment_power)
2133 {
2134 com->section->alignment_power = power_of_two;
2135 }
2136
2137 /* Symbol stops being common and starts being global, but
2138 we remember that it was common once. */
2139
2140 com->flags = BSF_EXPORT | BSF_GLOBAL | BSF_OLD_COMMON;
2141 com->value = com->section->_raw_size;
2142
2143 if (write_map && config.map_file)
2144 {
2145 fprintf (config.map_file, "Allocating common %s: %x at %x %s\n",
2146 lgs->name,
2147 (unsigned) size,
2148 (unsigned) com->value,
2149 bfd_asymbol_bfd(com)->filename);
2150 }
2151
2152 com->section->_raw_size += size;
2153
2154 }
2155 }
2156
2157 }
2158 }
2159 }
2160
2161
2162 }
2163
2164 /*
2165 run through the input files and ensure that every input
2166 section has somewhere to go. If one is found without
2167 a destination then create an input request and place it
2168 into the statement tree.
2169 */
2170
2171 static void
2172 lang_place_orphans ()
2173 {
2174 lang_input_statement_type *file;
2175
2176 for (file = (lang_input_statement_type *) file_chain.head;
2177 file != (lang_input_statement_type *) NULL;
2178 file = (lang_input_statement_type *) file->next)
2179 {
2180 asection *s;
2181
2182 for (s = file->the_bfd->sections;
2183 s != (asection *) NULL;
2184 s = s->next)
2185 {
2186 if (s->output_section == (asection *) NULL)
2187 {
2188 /* This section of the file is not attatched, root
2189 around for a sensible place for it to go */
2190
2191 if (file->common_section == s)
2192 {
2193 /* This is a lonely common section which must
2194 have come from an archive. We attatch to the
2195 section with the wildcard */
2196 if (config.relocateable_output != true
2197 && command_line.force_common_definition == false)
2198 {
2199 if (default_common_section ==
2200 (lang_output_section_statement_type *) NULL)
2201 {
2202 info ("%P: No [COMMON] command, defaulting to .bss\n");
2203
2204 default_common_section =
2205 lang_output_section_statement_lookup (".bss");
2206
2207 }
2208 wild_doit (&default_common_section->children, s,
2209 default_common_section, file);
2210 }
2211 }
2212 else
2213 {
2214 lang_output_section_statement_type *os =
2215 lang_output_section_statement_lookup (s->name);
2216
2217 wild_doit (&os->children, s, os, file);
2218 }
2219 }
2220 }
2221 }
2222 }
2223
2224
2225 void
2226 lang_set_flags (ptr, flags)
2227 int *ptr;
2228 CONST char *flags;
2229 {
2230 boolean state = false;
2231
2232 *ptr = 0;
2233 while (*flags)
2234 {
2235 if (*flags == '!')
2236 {
2237 state = false;
2238 flags++;
2239 }
2240 else
2241 state = true;
2242 switch (*flags)
2243 {
2244 case 'R':
2245 /* ptr->flag_read = state; */
2246 break;
2247 case 'W':
2248 /* ptr->flag_write = state; */
2249 break;
2250 case 'X':
2251 /* ptr->flag_executable= state;*/
2252 break;
2253 case 'L':
2254 case 'I':
2255 /* ptr->flag_loadable= state;*/
2256 break;
2257 default:
2258 einfo ("%P%F illegal syntax in flags\n");
2259 break;
2260 }
2261 flags++;
2262 }
2263 }
2264
2265
2266
2267 void
2268 lang_for_each_file (func)
2269 void (*func) PARAMS ((lang_input_statement_type *));
2270 {
2271 lang_input_statement_type *f;
2272
2273 for (f = (lang_input_statement_type *) file_chain.head;
2274 f != (lang_input_statement_type *) NULL;
2275 f = (lang_input_statement_type *) f->next)
2276 {
2277 func (f);
2278 }
2279 }
2280
2281
2282 void
2283 lang_for_each_input_section (func)
2284 void (*func) PARAMS ((bfd * ab, asection * as));
2285 {
2286 lang_input_statement_type *f;
2287
2288 for (f = (lang_input_statement_type *) file_chain.head;
2289 f != (lang_input_statement_type *) NULL;
2290 f = (lang_input_statement_type *) f->next)
2291 {
2292 asection *s;
2293
2294 for (s = f->the_bfd->sections;
2295 s != (asection *) NULL;
2296 s = s->next)
2297 {
2298 func (f->the_bfd, s);
2299 }
2300 }
2301 }
2302
2303
2304
2305 void
2306 ldlang_add_file (entry)
2307 lang_input_statement_type * entry;
2308 {
2309
2310 lang_statement_append (&file_chain,
2311 (lang_statement_union_type *) entry,
2312 &entry->next);
2313 }
2314
2315 void
2316 lang_add_output (name)
2317 CONST char *name;
2318 {
2319 lang_output_statement_type *new = new_stat (lang_output_statement,
2320 stat_ptr);
2321
2322 new->name = name;
2323 had_output_filename = true;
2324 }
2325
2326
2327 static lang_output_section_statement_type *current_section;
2328
2329 static int topower(x)
2330 int x;
2331 {
2332 unsigned int i = 1;
2333 int l;
2334 if (x < 0) return -1;
2335 for (l = 0; l < 32; l++)
2336 {
2337 if (i >= x) return l;
2338 i<<=1;
2339 }
2340 return 0;
2341 }
2342 void
2343 lang_enter_output_section_statement (output_section_statement_name,
2344 address_exp, flags, block_value,
2345 align, subalign, base)
2346 char *output_section_statement_name;
2347 etree_type * address_exp;
2348 int flags;
2349 bfd_vma block_value;
2350 etree_type *align;
2351 etree_type *subalign;
2352 etree_type *base;
2353 {
2354 lang_output_section_statement_type *os;
2355
2356 current_section =
2357 os =
2358 lang_output_section_statement_lookup (output_section_statement_name);
2359
2360
2361
2362 /* Add this statement to tree */
2363 /* add_statement(lang_output_section_statement_enum,
2364 output_section_statement);*/
2365 /* Make next things chain into subchain of this */
2366
2367 if (os->addr_tree ==
2368 (etree_type *) NULL)
2369 {
2370 os->addr_tree =
2371 address_exp;
2372 }
2373 os->flags = flags;
2374 if (flags & SEC_NEVER_LOAD)
2375 os->loadable = 0;
2376 else
2377 os->loadable = 1;
2378 os->block_value = block_value ? block_value : 1;
2379 stat_ptr = &os->children;
2380
2381 os->subsection_alignment = topower(
2382 exp_get_value_int(subalign, -1,
2383 "subsection alignment",
2384 0));
2385 os->section_alignment = topower(
2386 exp_get_value_int(align, -1,
2387 "section alignment", 0));
2388
2389 os->load_base = base;
2390 }
2391
2392
2393 void
2394 lang_final ()
2395 {
2396 if (had_output_filename == false)
2397 {
2398 extern CONST char *output_filename;
2399
2400 lang_add_output (output_filename);
2401 }
2402 }
2403
2404 /* Reset the current counters in the regions */
2405 static void
2406 reset_memory_regions ()
2407 {
2408 lang_memory_region_type *p = lang_memory_region_list;
2409
2410 for (p = lang_memory_region_list;
2411 p != (lang_memory_region_type *) NULL;
2412 p = p->next)
2413 {
2414 p->old_length = (bfd_size_type) (p->current - p->origin);
2415 p->current = p->origin;
2416 }
2417 }
2418
2419
2420
2421 asymbol *
2422 DEFUN (create_symbol, (name, flags, section),
2423 CONST char *name AND
2424 flagword flags AND
2425 asection * section)
2426 {
2427 extern lang_input_statement_type *script_file;
2428 asymbol **def_ptr = (asymbol **) stat_alloc ((bfd_size_type) (sizeof (asymbol **)));
2429
2430 /* Add this definition to script file */
2431 asymbol *def = (asymbol *) bfd_make_empty_symbol (script_file->the_bfd);
2432 def->name = buystring (name);
2433 def->udata = 0;
2434 def->flags = flags;
2435 def->section = section;
2436 *def_ptr = def;
2437 Q_enter_global_ref (def_ptr, name);
2438 return def;
2439 }
2440
2441 void
2442 lang_process ()
2443 {
2444 if (had_script == false)
2445 {
2446 /* Read the emulation's appropriate default script. */
2447 char *scriptname = ldemul_get_script ();
2448 size_t size = strlen (scriptname) + 13;
2449 char *buf = (char *) ldmalloc(size);
2450
2451 sprintf (buf, "-Tldscripts/%s", scriptname);
2452 parse_line (buf, 0);
2453 free (buf);
2454 }
2455
2456 lang_reasonable_defaults ();
2457 current_target = default_target;
2458
2459 lang_for_each_statement (ldlang_open_output); /* Open the output file */
2460 /* For each output section statement, create a section in the output
2461 file */
2462 lang_create_output_section_statements ();
2463
2464 /* Create a dummy bfd for the script */
2465 lang_init_script_file ();
2466
2467 /* Add to the hash table all undefineds on the command line */
2468 lang_place_undefineds ();
2469
2470 /* Create a bfd for each input file */
2471 current_target = default_target;
2472 lang_for_each_statement (open_input_bfds);
2473
2474 /* Run through the contours of the script and attatch input sections
2475 to the correct output sections
2476 */
2477 find_constructors ();
2478 map_input_to_output_sections (statement_list.head, (char *) NULL,
2479 (lang_output_section_statement_type *) NULL);
2480
2481
2482 /* Find any sections not attatched explicitly and handle them */
2483 lang_place_orphans ();
2484
2485 /* Size up the common data */
2486 lang_common ();
2487
2488 ldemul_before_allocation ();
2489
2490
2491 #if 0
2492 had_relax = true;
2493 while (had_relax)
2494 {
2495
2496 had_relax = false;
2497
2498 lang_size_sections (statement_list.head,
2499 (lang_output_section_statement_type *) NULL,
2500 &(statement_list.head), 0, (bfd_vma) 0, true);
2501 /* FIXME. Until the code in relax is fixed so that it only reads in
2502 stuff once, we cant iterate since there is no way for the linker to
2503 know what has been patched and what hasn't */
2504 break;
2505
2506 }
2507 #endif
2508
2509 /* Now run around and relax if we can */
2510 if (command_line.relax)
2511 {
2512 /* First time round is a trial run to get the 'worst case' addresses of the
2513 objects if there was no relaxing */
2514 lang_size_sections (statement_list.head,
2515 (lang_output_section_statement_type *) NULL,
2516 &(statement_list.head), 0, (bfd_vma) 0, false);
2517
2518
2519
2520 /* Move the global symbols around so the second pass of relaxing can
2521 see them */
2522 lang_relocate_globals ();
2523
2524 reset_memory_regions ();
2525
2526 /* Do all the assignments, now that we know the final restingplaces
2527 of all the symbols */
2528
2529 lang_do_assignments (statement_list.head,
2530 abs_output_section,
2531 0, (bfd_vma) 0);
2532
2533
2534 /* Perform another relax pass - this time we know where the
2535 globals are, so can make better guess */
2536 lang_size_sections (statement_list.head,
2537 (lang_output_section_statement_type *) NULL,
2538 &(statement_list.head), 0, (bfd_vma) 0, true);
2539
2540
2541
2542 }
2543
2544 else
2545 {
2546 /* Size up the sections */
2547 lang_size_sections (statement_list.head,
2548 abs_output_section,
2549 &(statement_list.head), 0, (bfd_vma) 0, false);
2550
2551 }
2552
2553
2554 /* See if anything special should be done now we know how big
2555 everything is */
2556 ldemul_after_allocation ();
2557
2558 /* Do all the assignments, now that we know the final restingplaces
2559 of all the symbols */
2560
2561 lang_do_assignments (statement_list.head,
2562 abs_output_section,
2563 0, (bfd_vma) 0);
2564
2565
2566 /* Move the global symbols around */
2567 lang_relocate_globals ();
2568
2569 /* Make sure that we're not mixing architectures */
2570
2571 lang_check ();
2572
2573 /* Final stuffs */
2574 lang_finish ();
2575 }
2576
2577 /* EXPORTED TO YACC */
2578
2579 void
2580 lang_add_wild (section_name, filename)
2581 CONST char *CONST section_name;
2582 CONST char *CONST filename;
2583 {
2584 lang_wild_statement_type *new = new_stat (lang_wild_statement,
2585 stat_ptr);
2586
2587 if (section_name != (char *) NULL && strcmp (section_name, "COMMON") == 0)
2588 {
2589 placed_commons = true;
2590 }
2591 if (filename != (char *) NULL)
2592 {
2593 lang_has_input_file = true;
2594 }
2595 new->section_name = section_name;
2596 new->filename = filename;
2597 lang_list_init (&new->children);
2598 }
2599
2600 void
2601 lang_section_start (name, address)
2602 CONST char *name;
2603 etree_type * address;
2604 {
2605 lang_address_statement_type *ad = new_stat (lang_address_statement, stat_ptr);
2606
2607 ad->section_name = name;
2608 ad->address = address;
2609 }
2610
2611 void
2612 lang_add_entry (name)
2613 CONST char *name;
2614 {
2615 entry_symbol = name;
2616 }
2617
2618 void
2619 lang_add_target (name)
2620 CONST char *name;
2621 {
2622 lang_target_statement_type *new = new_stat (lang_target_statement,
2623 stat_ptr);
2624
2625 new->target = name;
2626
2627 }
2628
2629 void
2630 lang_add_map (name)
2631 CONST char *name;
2632 {
2633 while (*name)
2634 {
2635 switch (*name)
2636 {
2637 case 'F':
2638 map_option_f = true;
2639 break;
2640 }
2641 name++;
2642 }
2643 }
2644
2645 void
2646 lang_add_fill (exp)
2647 int exp;
2648 {
2649 lang_fill_statement_type *new = new_stat (lang_fill_statement,
2650 stat_ptr);
2651
2652 new->fill = exp;
2653 }
2654
2655 void
2656 lang_add_data (type, exp)
2657 int type;
2658 union etree_union *exp;
2659 {
2660
2661 lang_data_statement_type *new = new_stat (lang_data_statement,
2662 stat_ptr);
2663
2664 new->exp = exp;
2665 new->type = type;
2666
2667 }
2668
2669 void
2670 lang_add_assignment (exp)
2671 etree_type * exp;
2672 {
2673 lang_assignment_statement_type *new = new_stat (lang_assignment_statement,
2674 stat_ptr);
2675
2676 new->exp = exp;
2677 }
2678
2679 void
2680 lang_add_attribute (attribute)
2681 enum statement_enum attribute;
2682 {
2683 new_statement (attribute, sizeof (lang_statement_union_type), stat_ptr);
2684 }
2685
2686 void
2687 lang_startup (name)
2688 CONST char *name;
2689 {
2690 if (startup_file != (char *) NULL)
2691 {
2692 einfo ("%P%FMultiple STARTUP files\n");
2693 }
2694 first_file->filename = name;
2695 first_file->local_sym_name = name;
2696
2697 startup_file = name;
2698 }
2699
2700 void
2701 lang_float (maybe)
2702 boolean maybe;
2703 {
2704 lang_float_flag = maybe;
2705 }
2706
2707 void
2708 lang_leave_output_section_statement (fill, memspec)
2709 bfd_vma fill;
2710 CONST char *memspec;
2711 {
2712 current_section->fill = fill;
2713 current_section->region = lang_memory_region_lookup (memspec);
2714 stat_ptr = &statement_list;
2715
2716 /* We remember if we are closing a .data section, since we use it to
2717 store constructors in */
2718 if (strcmp (current_section->name, ".data") == 0)
2719 {
2720 end_of_data_section_statement_list = statement_list;
2721
2722 }
2723 }
2724
2725 /*
2726 Create an absolute symbol with the given name with the value of the
2727 address of first byte of the section named.
2728
2729 If the symbol already exists, then do nothing.
2730 */
2731 void
2732 lang_abs_symbol_at_beginning_of (section, name)
2733 CONST char *section;
2734 CONST char *name;
2735 {
2736 if (ldsym_undefined (name))
2737 {
2738 asection *s = bfd_get_section_by_name (output_bfd, section);
2739 asymbol *def = create_symbol (name,
2740 BSF_GLOBAL | BSF_EXPORT,
2741 &bfd_abs_section);
2742
2743 if (s != (asection *) NULL)
2744 {
2745 def->value = s->vma;
2746 }
2747 else
2748 {
2749 def->value = 0;
2750 }
2751 }
2752 }
2753
2754 /*
2755 Create an absolute symbol with the given name with the value of the
2756 address of the first byte after the end of the section named.
2757
2758 If the symbol already exists, then do nothing.
2759 */
2760 void
2761 lang_abs_symbol_at_end_of (section, name)
2762 CONST char *section;
2763 CONST char *name;
2764 {
2765 if (ldsym_undefined (name))
2766 {
2767 asection *s = bfd_get_section_by_name (output_bfd, section);
2768
2769 /* Add a symbol called _end */
2770 asymbol *def = create_symbol (name,
2771 BSF_GLOBAL | BSF_EXPORT,
2772 &bfd_abs_section);
2773
2774 if (s != (asection *) NULL)
2775 {
2776 def->value = s->vma + s->_raw_size;
2777 }
2778 else
2779 {
2780 def->value = 0;
2781 }
2782 }
2783 }
2784
2785 void
2786 lang_statement_append (list, element, field)
2787 lang_statement_list_type * list;
2788 lang_statement_union_type * element;
2789 lang_statement_union_type ** field;
2790 {
2791 *(list->tail) = element;
2792 list->tail = field;
2793 }
2794
2795 /* Set the output format type. -oformat overrides scripts. */
2796 void
2797 lang_add_output_format (format, from_script)
2798 CONST char *format;
2799 int from_script;
2800 {
2801 if (!from_script || output_target == NULL)
2802 output_target = format;
2803 }