gas/
[deliverable/binutils-gdb.git] / gas / symbols.c
1 /* symbols.c -symbol table-
2 Copyright 1987, 1990, 1991, 1992, 1993, 1994, 1995, 1996, 1997, 1998,
3 1999, 2000, 2001, 2002, 2003, 2004, 2005
4 Free Software Foundation, Inc.
5
6 This file is part of GAS, the GNU Assembler.
7
8 GAS 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.
12
13 GAS 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.
17
18 You should have received a copy of the GNU General Public License
19 along with GAS; see the file COPYING. If not, write to the Free
20 Software Foundation, 51 Franklin Street - Fifth Floor, Boston, MA
21 02110-1301, USA. */
22
23 /* #define DEBUG_SYMS / * to debug symbol list maintenance. */
24
25 #include "as.h"
26
27 #include "safe-ctype.h"
28 #include "obstack.h" /* For "symbols.h" */
29 #include "subsegs.h"
30
31 #include "struc-symbol.h"
32
33 /* This is non-zero if symbols are case sensitive, which is the
34 default. */
35 int symbols_case_sensitive = 1;
36
37 #ifndef WORKING_DOT_WORD
38 extern int new_broken_words;
39 #endif
40
41 /* symbol-name => struct symbol pointer */
42 static struct hash_control *sy_hash;
43
44 /* Table of local symbols. */
45 static struct hash_control *local_hash;
46
47 /* Below are commented in "symbols.h". */
48 symbolS *symbol_rootP;
49 symbolS *symbol_lastP;
50 symbolS abs_symbol;
51
52 #ifdef DEBUG_SYMS
53 #define debug_verify_symchain verify_symbol_chain
54 #else
55 #define debug_verify_symchain(root, last) ((void) 0)
56 #endif
57
58 #define DOLLAR_LABEL_CHAR '\001'
59 #define LOCAL_LABEL_CHAR '\002'
60
61 struct obstack notes;
62 #ifdef USE_UNIQUE
63 /* The name of an external symbol which is
64 used to make weak PE symbol names unique. */
65 const char * an_external_name;
66 #endif
67
68 static char *save_symbol_name (const char *);
69 static void fb_label_init (void);
70 static long dollar_label_instance (long);
71 static long fb_label_instance (long);
72
73 static void print_binary (FILE *, const char *, expressionS *);
74 static void report_op_error (symbolS *, symbolS *, symbolS *);
75
76 /* Return a pointer to a new symbol. Die if we can't make a new
77 symbol. Fill in the symbol's values. Add symbol to end of symbol
78 chain.
79
80 This function should be called in the general case of creating a
81 symbol. However, if the output file symbol table has already been
82 set, and you are certain that this symbol won't be wanted in the
83 output file, you can call symbol_create. */
84
85 symbolS *
86 symbol_new (const char *name, segT segment, valueT valu, fragS *frag)
87 {
88 symbolS *symbolP = symbol_create (name, segment, valu, frag);
89
90 /* Link to end of symbol chain. */
91 {
92 extern int symbol_table_frozen;
93 if (symbol_table_frozen)
94 abort ();
95 }
96 symbol_append (symbolP, symbol_lastP, &symbol_rootP, &symbol_lastP);
97
98 return symbolP;
99 }
100
101 /* Save a symbol name on a permanent obstack, and convert it according
102 to the object file format. */
103
104 static char *
105 save_symbol_name (const char *name)
106 {
107 unsigned int name_length;
108 char *ret;
109
110 name_length = strlen (name) + 1; /* +1 for \0. */
111 obstack_grow (&notes, name, name_length);
112 ret = obstack_finish (&notes);
113
114 #ifdef tc_canonicalize_symbol_name
115 ret = tc_canonicalize_symbol_name (ret);
116 #endif
117
118 if (! symbols_case_sensitive)
119 {
120 char *s;
121
122 for (s = ret; *s != '\0'; s++)
123 *s = TOUPPER (*s);
124 }
125
126 return ret;
127 }
128
129 symbolS *
130 symbol_create (const char *name, /* It is copied, the caller can destroy/modify. */
131 segT segment, /* Segment identifier (SEG_<something>). */
132 valueT valu, /* Symbol value. */
133 fragS *frag /* Associated fragment. */)
134 {
135 char *preserved_copy_of_name;
136 symbolS *symbolP;
137
138 preserved_copy_of_name = save_symbol_name (name);
139
140 symbolP = (symbolS *) obstack_alloc (&notes, sizeof (symbolS));
141
142 /* symbol must be born in some fixed state. This seems as good as any. */
143 memset (symbolP, 0, sizeof (symbolS));
144
145 symbolP->bsym = bfd_make_empty_symbol (stdoutput);
146 if (symbolP->bsym == NULL)
147 as_perror ("%s", "bfd_make_empty_symbol");
148 symbolP->bsym->udata.p = (PTR) symbolP;
149 S_SET_NAME (symbolP, preserved_copy_of_name);
150
151 S_SET_SEGMENT (symbolP, segment);
152 S_SET_VALUE (symbolP, valu);
153 symbol_clear_list_pointers (symbolP);
154
155 symbolP->sy_frag = frag;
156
157 obj_symbol_new_hook (symbolP);
158
159 #ifdef tc_symbol_new_hook
160 tc_symbol_new_hook (symbolP);
161 #endif
162
163 return symbolP;
164 }
165 \f
166
167 /* Local symbol support. If we can get away with it, we keep only a
168 small amount of information for local symbols. */
169
170 static symbolS *local_symbol_convert (struct local_symbol *);
171
172 /* Used for statistics. */
173
174 static unsigned long local_symbol_count;
175 static unsigned long local_symbol_conversion_count;
176
177 /* This macro is called with a symbol argument passed by reference.
178 It returns whether this is a local symbol. If necessary, it
179 changes its argument to the real symbol. */
180
181 #define LOCAL_SYMBOL_CHECK(s) \
182 (s->bsym == NULL \
183 ? (local_symbol_converted_p ((struct local_symbol *) s) \
184 ? (s = local_symbol_get_real_symbol ((struct local_symbol *) s), \
185 0) \
186 : 1) \
187 : 0)
188
189 /* Create a local symbol and insert it into the local hash table. */
190
191 static struct local_symbol *
192 local_symbol_make (const char *name, segT section, valueT value, fragS *frag)
193 {
194 char *name_copy;
195 struct local_symbol *ret;
196
197 ++local_symbol_count;
198
199 name_copy = save_symbol_name (name);
200
201 ret = (struct local_symbol *) obstack_alloc (&notes, sizeof *ret);
202 ret->lsy_marker = NULL;
203 ret->lsy_name = name_copy;
204 ret->lsy_section = section;
205 local_symbol_set_frag (ret, frag);
206 ret->lsy_value = value;
207
208 hash_jam (local_hash, name_copy, (PTR) ret);
209
210 return ret;
211 }
212
213 /* Convert a local symbol into a real symbol. Note that we do not
214 reclaim the space used by the local symbol. */
215
216 static symbolS *
217 local_symbol_convert (struct local_symbol *locsym)
218 {
219 symbolS *ret;
220
221 assert (locsym->lsy_marker == NULL);
222 if (local_symbol_converted_p (locsym))
223 return local_symbol_get_real_symbol (locsym);
224
225 ++local_symbol_conversion_count;
226
227 ret = symbol_new (locsym->lsy_name, locsym->lsy_section, locsym->lsy_value,
228 local_symbol_get_frag (locsym));
229
230 if (local_symbol_resolved_p (locsym))
231 ret->sy_resolved = 1;
232
233 /* Local symbols are always either defined or used. */
234 ret->sy_used = 1;
235
236 #ifdef TC_LOCAL_SYMFIELD_CONVERT
237 TC_LOCAL_SYMFIELD_CONVERT (locsym, ret);
238 #endif
239
240 symbol_table_insert (ret);
241
242 local_symbol_mark_converted (locsym);
243 local_symbol_set_real_symbol (locsym, ret);
244
245 hash_jam (local_hash, locsym->lsy_name, NULL);
246
247 return ret;
248 }
249 \f
250 /* We have just seen "<name>:".
251 Creates a struct symbol unless it already exists.
252
253 Gripes if we are redefining a symbol incompatibly (and ignores it). */
254
255 symbolS *
256 colon (/* Just seen "x:" - rattle symbols & frags. */
257 const char *sym_name /* Symbol name, as a cannonical string. */
258 /* We copy this string: OK to alter later. */)
259 {
260 register symbolS *symbolP; /* Symbol we are working with. */
261
262 /* Sun local labels go out of scope whenever a non-local symbol is
263 defined. */
264 if (LOCAL_LABELS_DOLLAR
265 && !bfd_is_local_label_name (stdoutput, sym_name))
266 dollar_label_clear ();
267
268 #ifndef WORKING_DOT_WORD
269 if (new_broken_words)
270 {
271 struct broken_word *a;
272 int possible_bytes;
273 fragS *frag_tmp;
274 char *frag_opcode;
275
276 if (now_seg == absolute_section)
277 {
278 as_bad (_("cannot define symbol `%s' in absolute section"), sym_name);
279 return NULL;
280 }
281
282 possible_bytes = (md_short_jump_size
283 + new_broken_words * md_long_jump_size);
284
285 frag_tmp = frag_now;
286 frag_opcode = frag_var (rs_broken_word,
287 possible_bytes,
288 possible_bytes,
289 (relax_substateT) 0,
290 (symbolS *) broken_words,
291 (offsetT) 0,
292 NULL);
293
294 /* We want to store the pointer to where to insert the jump
295 table in the fr_opcode of the rs_broken_word frag. This
296 requires a little hackery. */
297 while (frag_tmp
298 && (frag_tmp->fr_type != rs_broken_word
299 || frag_tmp->fr_opcode))
300 frag_tmp = frag_tmp->fr_next;
301 know (frag_tmp);
302 frag_tmp->fr_opcode = frag_opcode;
303 new_broken_words = 0;
304
305 for (a = broken_words; a && a->dispfrag == 0; a = a->next_broken_word)
306 a->dispfrag = frag_tmp;
307 }
308 #endif /* WORKING_DOT_WORD */
309
310 if ((symbolP = symbol_find (sym_name)) != 0)
311 {
312 S_CLEAR_WEAKREFR (symbolP);
313 #ifdef RESOLVE_SYMBOL_REDEFINITION
314 if (RESOLVE_SYMBOL_REDEFINITION (symbolP))
315 return symbolP;
316 #endif
317 /* Now check for undefined symbols. */
318 if (LOCAL_SYMBOL_CHECK (symbolP))
319 {
320 struct local_symbol *locsym = (struct local_symbol *) symbolP;
321
322 if (locsym->lsy_section != undefined_section
323 && (local_symbol_get_frag (locsym) != frag_now
324 || locsym->lsy_section != now_seg
325 || locsym->lsy_value != frag_now_fix ()))
326 {
327 as_bad (_("symbol `%s' is already defined"), sym_name);
328 return symbolP;
329 }
330
331 locsym->lsy_section = now_seg;
332 local_symbol_set_frag (locsym, frag_now);
333 locsym->lsy_value = frag_now_fix ();
334 }
335 else if (!(S_IS_DEFINED (symbolP) || symbol_equated_p (symbolP))
336 || S_IS_COMMON (symbolP)
337 || S_IS_VOLATILE (symbolP))
338 {
339 if (S_IS_VOLATILE (symbolP)
340 /* This could be avoided when the symbol wasn't used so far, but
341 the comment in struc-symbol.h says this flag isn't reliable. */
342 && (1 || !symbol_used_p (symbolP)))
343 {
344 symbolP = symbol_clone (symbolP, 1);
345 S_SET_VALUE (symbolP, 0);
346 S_CLEAR_VOLATILE (symbolP);
347 }
348 if (S_GET_VALUE (symbolP) == 0)
349 {
350 symbolP->sy_frag = frag_now;
351 #ifdef OBJ_VMS
352 S_SET_OTHER (symbolP, const_flag);
353 #endif
354 S_SET_VALUE (symbolP, (valueT) frag_now_fix ());
355 S_SET_SEGMENT (symbolP, now_seg);
356 #ifdef N_UNDF
357 know (N_UNDF == 0);
358 #endif /* if we have one, it better be zero. */
359
360 }
361 else
362 {
363 /* There are still several cases to check:
364
365 A .comm/.lcomm symbol being redefined as initialized
366 data is OK
367
368 A .comm/.lcomm symbol being redefined with a larger
369 size is also OK
370
371 This only used to be allowed on VMS gas, but Sun cc
372 on the sparc also depends on it. */
373
374 if (((!S_IS_DEBUG (symbolP)
375 && (!S_IS_DEFINED (symbolP) || S_IS_COMMON (symbolP))
376 && S_IS_EXTERNAL (symbolP))
377 || S_GET_SEGMENT (symbolP) == bss_section)
378 && (now_seg == data_section
379 || now_seg == S_GET_SEGMENT (symbolP)))
380 {
381 /* Select which of the 2 cases this is. */
382 if (now_seg != data_section)
383 {
384 /* New .comm for prev .comm symbol.
385
386 If the new size is larger we just change its
387 value. If the new size is smaller, we ignore
388 this symbol. */
389 if (S_GET_VALUE (symbolP)
390 < ((unsigned) frag_now_fix ()))
391 {
392 S_SET_VALUE (symbolP, (valueT) frag_now_fix ());
393 }
394 }
395 else
396 {
397 /* It is a .comm/.lcomm being converted to initialized
398 data. */
399 symbolP->sy_frag = frag_now;
400 #ifdef OBJ_VMS
401 S_SET_OTHER (symbolP, const_flag);
402 #endif
403 S_SET_VALUE (symbolP, (valueT) frag_now_fix ());
404 S_SET_SEGMENT (symbolP, now_seg); /* Keep N_EXT bit. */
405 }
406 }
407 else
408 {
409 #if (!defined (OBJ_AOUT) && !defined (OBJ_MAYBE_AOUT) \
410 && !defined (OBJ_BOUT) && !defined (OBJ_MAYBE_BOUT))
411 static const char *od_buf = "";
412 #else
413 char od_buf[100];
414 od_buf[0] = '\0';
415 if (OUTPUT_FLAVOR == bfd_target_aout_flavour)
416 sprintf (od_buf, "%d.%d.",
417 S_GET_OTHER (symbolP),
418 S_GET_DESC (symbolP));
419 #endif
420 as_bad (_("symbol `%s' is already defined as \"%s\"/%s%ld"),
421 sym_name,
422 segment_name (S_GET_SEGMENT (symbolP)),
423 od_buf,
424 (long) S_GET_VALUE (symbolP));
425 }
426 } /* if the undefined symbol has no value */
427 }
428 else
429 {
430 /* Don't blow up if the definition is the same. */
431 if (!(frag_now == symbolP->sy_frag
432 && S_GET_VALUE (symbolP) == frag_now_fix ()
433 && S_GET_SEGMENT (symbolP) == now_seg))
434 {
435 as_bad (_("symbol `%s' is already defined"), sym_name);
436 symbolP = symbol_clone (symbolP, 0);
437 }
438 }
439
440 }
441 else if (! flag_keep_locals && bfd_is_local_label_name (stdoutput, sym_name))
442 {
443 symbolP = (symbolS *) local_symbol_make (sym_name, now_seg,
444 (valueT) frag_now_fix (),
445 frag_now);
446 }
447 else
448 {
449 symbolP = symbol_new (sym_name, now_seg, (valueT) frag_now_fix (),
450 frag_now);
451 #ifdef OBJ_VMS
452 S_SET_OTHER (symbolP, const_flag);
453 #endif /* OBJ_VMS */
454
455 symbol_table_insert (symbolP);
456 }
457
458 if (mri_common_symbol != NULL)
459 {
460 /* This symbol is actually being defined within an MRI common
461 section. This requires special handling. */
462 if (LOCAL_SYMBOL_CHECK (symbolP))
463 symbolP = local_symbol_convert ((struct local_symbol *) symbolP);
464 symbolP->sy_value.X_op = O_symbol;
465 symbolP->sy_value.X_add_symbol = mri_common_symbol;
466 symbolP->sy_value.X_add_number = S_GET_VALUE (mri_common_symbol);
467 symbolP->sy_frag = &zero_address_frag;
468 S_SET_SEGMENT (symbolP, expr_section);
469 symbolP->sy_mri_common = 1;
470 }
471
472 #ifdef tc_frob_label
473 tc_frob_label (symbolP);
474 #endif
475 #ifdef obj_frob_label
476 obj_frob_label (symbolP);
477 #endif
478
479 return symbolP;
480 }
481 \f
482 /* Die if we can't insert the symbol. */
483
484 void
485 symbol_table_insert (symbolS *symbolP)
486 {
487 register const char *error_string;
488
489 know (symbolP);
490 know (S_GET_NAME (symbolP));
491
492 if (LOCAL_SYMBOL_CHECK (symbolP))
493 {
494 error_string = hash_jam (local_hash, S_GET_NAME (symbolP),
495 (PTR) symbolP);
496 if (error_string != NULL)
497 as_fatal (_("inserting \"%s\" into symbol table failed: %s"),
498 S_GET_NAME (symbolP), error_string);
499 return;
500 }
501
502 if ((error_string = hash_jam (sy_hash, S_GET_NAME (symbolP), (PTR) symbolP)))
503 {
504 as_fatal (_("inserting \"%s\" into symbol table failed: %s"),
505 S_GET_NAME (symbolP), error_string);
506 } /* on error */
507 }
508 \f
509 /* If a symbol name does not exist, create it as undefined, and insert
510 it into the symbol table. Return a pointer to it. */
511
512 symbolS *
513 symbol_find_or_make (const char *name)
514 {
515 register symbolS *symbolP;
516
517 symbolP = symbol_find (name);
518
519 if (symbolP == NULL)
520 {
521 if (! flag_keep_locals && bfd_is_local_label_name (stdoutput, name))
522 {
523 symbolP = md_undefined_symbol ((char *) name);
524 if (symbolP != NULL)
525 return symbolP;
526
527 symbolP = (symbolS *) local_symbol_make (name, undefined_section,
528 (valueT) 0,
529 &zero_address_frag);
530 return symbolP;
531 }
532
533 symbolP = symbol_make (name);
534
535 symbol_table_insert (symbolP);
536 } /* if symbol wasn't found */
537
538 return (symbolP);
539 }
540
541 symbolS *
542 symbol_make (const char *name)
543 {
544 symbolS *symbolP;
545
546 /* Let the machine description default it, e.g. for register names. */
547 symbolP = md_undefined_symbol ((char *) name);
548
549 if (!symbolP)
550 symbolP = symbol_new (name, undefined_section, (valueT) 0, &zero_address_frag);
551
552 return (symbolP);
553 }
554
555 symbolS *
556 symbol_clone (symbolS *orgsymP, int replace)
557 {
558 symbolS *newsymP;
559 asymbol *bsymorg, *bsymnew;
560
561 /* Running local_symbol_convert on a clone that's not the one currently
562 in local_hash would incorrectly replace the hash entry. Thus the
563 symbol must be converted here. Note that the rest of the function
564 depends on not encountering an unconverted symbol. */
565 if (LOCAL_SYMBOL_CHECK (orgsymP))
566 orgsymP = local_symbol_convert ((struct local_symbol *) orgsymP);
567 bsymorg = orgsymP->bsym;
568
569 know (S_IS_DEFINED (orgsymP));
570
571 newsymP = obstack_alloc (&notes, sizeof (*newsymP));
572 *newsymP = *orgsymP;
573 bsymnew = bfd_make_empty_symbol (bfd_asymbol_bfd (bsymorg));
574 if (bsymnew == NULL)
575 as_perror ("%s", "bfd_make_empty_symbol");
576 newsymP->bsym = bsymnew;
577 bsymnew->name = bsymorg->name;
578 bsymnew->flags = bsymorg->flags;
579 bsymnew->section = bsymorg->section;
580 bsymnew->udata.p = (PTR) newsymP;
581 bfd_copy_private_symbol_data (bfd_asymbol_bfd (bsymorg), bsymorg,
582 bfd_asymbol_bfd (bsymnew), bsymnew);
583
584 #ifdef obj_symbol_clone_hook
585 obj_symbol_clone_hook (newsymP, orgsymP);
586 #endif
587
588 #ifdef tc_symbol_clone_hook
589 tc_symbol_clone_hook (newsymP, orgsymP);
590 #endif
591
592 if (replace)
593 {
594 if (symbol_rootP == orgsymP)
595 symbol_rootP = newsymP;
596 else if (orgsymP->sy_previous)
597 {
598 orgsymP->sy_previous->sy_next = newsymP;
599 orgsymP->sy_previous = NULL;
600 }
601 if (symbol_lastP == orgsymP)
602 symbol_lastP = newsymP;
603 else if (orgsymP->sy_next)
604 orgsymP->sy_next->sy_previous = newsymP;
605 orgsymP->sy_next = NULL;
606 debug_verify_symchain (symbol_rootP, symbol_lastP);
607
608 symbol_table_insert (newsymP);
609 }
610
611 return newsymP;
612 }
613
614 /* Referenced symbols, if they are forward references, need to be cloned
615 (without replacing the original) so that the value of the referenced
616 symbols at the point of use . */
617
618 #undef symbol_clone_if_forward_ref
619 symbolS *
620 symbol_clone_if_forward_ref (symbolS *symbolP, int is_forward)
621 {
622 if (symbolP && !LOCAL_SYMBOL_CHECK (symbolP))
623 {
624 symbolS *add_symbol = symbolP->sy_value.X_add_symbol;
625 symbolS *op_symbol = symbolP->sy_value.X_op_symbol;
626
627 if (symbolP->sy_forward_ref)
628 is_forward = 1;
629
630 if (is_forward)
631 {
632 /* assign_symbol() clones volatile symbols; pre-existing expressions
633 hold references to the original instance, but want the current
634 value. Just repeat the lookup. */
635 if (add_symbol && S_IS_VOLATILE (add_symbol))
636 add_symbol = symbol_find_exact (S_GET_NAME (add_symbol));
637 if (op_symbol && S_IS_VOLATILE (op_symbol))
638 op_symbol = symbol_find_exact (S_GET_NAME (op_symbol));
639 }
640
641 /* Re-using sy_resolving here, as this routine cannot get called from
642 symbol resolution code. */
643 if (symbolP->bsym->section == expr_section && !symbolP->sy_resolving)
644 {
645 symbolP->sy_resolving = 1;
646 add_symbol = symbol_clone_if_forward_ref (add_symbol, is_forward);
647 op_symbol = symbol_clone_if_forward_ref (op_symbol, is_forward);
648 symbolP->sy_resolving = 0;
649 }
650
651 if (symbolP->sy_forward_ref
652 || add_symbol != symbolP->sy_value.X_add_symbol
653 || op_symbol != symbolP->sy_value.X_op_symbol)
654 symbolP = symbol_clone (symbolP, 0);
655
656 symbolP->sy_value.X_add_symbol = add_symbol;
657 symbolP->sy_value.X_op_symbol = op_symbol;
658 }
659
660 return symbolP;
661 }
662
663 symbolS *
664 symbol_temp_new (segT seg, valueT ofs, fragS *frag)
665 {
666 return symbol_new (FAKE_LABEL_NAME, seg, ofs, frag);
667 }
668
669 symbolS *
670 symbol_temp_new_now (void)
671 {
672 return symbol_temp_new (now_seg, frag_now_fix (), frag_now);
673 }
674
675 symbolS *
676 symbol_temp_make (void)
677 {
678 return symbol_make (FAKE_LABEL_NAME);
679 }
680
681 /* Implement symbol table lookup.
682 In: A symbol's name as a string: '\0' can't be part of a symbol name.
683 Out: NULL if the name was not in the symbol table, else the address
684 of a struct symbol associated with that name. */
685
686 symbolS *
687 symbol_find_exact (const char *name)
688 {
689 return symbol_find_exact_noref (name, 0);
690 }
691
692 symbolS *
693 symbol_find_exact_noref (const char *name, int noref)
694 {
695 struct local_symbol *locsym;
696 symbolS* sym;
697
698 locsym = (struct local_symbol *) hash_find (local_hash, name);
699 if (locsym != NULL)
700 return (symbolS *) locsym;
701
702 sym = ((symbolS *) hash_find (sy_hash, name));
703
704 /* Any references to the symbol, except for the reference in
705 .weakref, must clear this flag, such that the symbol does not
706 turn into a weak symbol. Note that we don't have to handle the
707 local_symbol case, since a weakrefd is always promoted out of the
708 local_symbol table when it is turned into a weak symbol. */
709 if (sym && ! noref)
710 S_CLEAR_WEAKREFD (sym);
711
712 return sym;
713 }
714
715 symbolS *
716 symbol_find (const char *name)
717 {
718 return symbol_find_noref (name, 0);
719 }
720
721 symbolS *
722 symbol_find_noref (const char *name, int noref)
723 {
724 #ifdef tc_canonicalize_symbol_name
725 {
726 char *copy;
727 size_t len = strlen (name) + 1;
728
729 copy = (char *) alloca (len);
730 memcpy (copy, name, len);
731 name = tc_canonicalize_symbol_name (copy);
732 }
733 #endif
734
735 if (! symbols_case_sensitive)
736 {
737 char *copy;
738 const char *orig;
739 unsigned char c;
740
741 orig = name;
742 name = copy = (char *) alloca (strlen (name) + 1);
743
744 while ((c = *orig++) != '\0')
745 {
746 *copy++ = TOUPPER (c);
747 }
748 *copy = '\0';
749 }
750
751 return symbol_find_exact_noref (name, noref);
752 }
753
754 /* Once upon a time, symbols were kept in a singly linked list. At
755 least coff needs to be able to rearrange them from time to time, for
756 which a doubly linked list is much more convenient. Loic did these
757 as macros which seemed dangerous to me so they're now functions.
758 xoxorich. */
759
760 /* Link symbol ADDME after symbol TARGET in the chain. */
761
762 void
763 symbol_append (symbolS *addme, symbolS *target,
764 symbolS **rootPP, symbolS **lastPP)
765 {
766 if (LOCAL_SYMBOL_CHECK (addme))
767 abort ();
768 if (target != NULL && LOCAL_SYMBOL_CHECK (target))
769 abort ();
770
771 if (target == NULL)
772 {
773 know (*rootPP == NULL);
774 know (*lastPP == NULL);
775 addme->sy_next = NULL;
776 addme->sy_previous = NULL;
777 *rootPP = addme;
778 *lastPP = addme;
779 return;
780 } /* if the list is empty */
781
782 if (target->sy_next != NULL)
783 {
784 target->sy_next->sy_previous = addme;
785 }
786 else
787 {
788 know (*lastPP == target);
789 *lastPP = addme;
790 } /* if we have a next */
791
792 addme->sy_next = target->sy_next;
793 target->sy_next = addme;
794 addme->sy_previous = target;
795
796 debug_verify_symchain (symbol_rootP, symbol_lastP);
797 }
798
799 /* Set the chain pointers of SYMBOL to null. */
800
801 void
802 symbol_clear_list_pointers (symbolS *symbolP)
803 {
804 if (LOCAL_SYMBOL_CHECK (symbolP))
805 abort ();
806 symbolP->sy_next = NULL;
807 symbolP->sy_previous = NULL;
808 }
809
810 /* Remove SYMBOLP from the list. */
811
812 void
813 symbol_remove (symbolS *symbolP, symbolS **rootPP, symbolS **lastPP)
814 {
815 if (LOCAL_SYMBOL_CHECK (symbolP))
816 abort ();
817
818 if (symbolP == *rootPP)
819 {
820 *rootPP = symbolP->sy_next;
821 } /* if it was the root */
822
823 if (symbolP == *lastPP)
824 {
825 *lastPP = symbolP->sy_previous;
826 } /* if it was the tail */
827
828 if (symbolP->sy_next != NULL)
829 {
830 symbolP->sy_next->sy_previous = symbolP->sy_previous;
831 } /* if not last */
832
833 if (symbolP->sy_previous != NULL)
834 {
835 symbolP->sy_previous->sy_next = symbolP->sy_next;
836 } /* if not first */
837
838 debug_verify_symchain (*rootPP, *lastPP);
839 }
840
841 /* Link symbol ADDME before symbol TARGET in the chain. */
842
843 void
844 symbol_insert (symbolS *addme, symbolS *target,
845 symbolS **rootPP, symbolS **lastPP ATTRIBUTE_UNUSED)
846 {
847 if (LOCAL_SYMBOL_CHECK (addme))
848 abort ();
849 if (LOCAL_SYMBOL_CHECK (target))
850 abort ();
851
852 if (target->sy_previous != NULL)
853 {
854 target->sy_previous->sy_next = addme;
855 }
856 else
857 {
858 know (*rootPP == target);
859 *rootPP = addme;
860 } /* if not first */
861
862 addme->sy_previous = target->sy_previous;
863 target->sy_previous = addme;
864 addme->sy_next = target;
865
866 debug_verify_symchain (*rootPP, *lastPP);
867 }
868
869 void
870 verify_symbol_chain (symbolS *rootP, symbolS *lastP)
871 {
872 symbolS *symbolP = rootP;
873
874 if (symbolP == NULL)
875 return;
876
877 for (; symbol_next (symbolP) != NULL; symbolP = symbol_next (symbolP))
878 {
879 assert (symbolP->bsym != NULL);
880 assert (symbolP->sy_next->sy_previous == symbolP);
881 }
882
883 assert (lastP == symbolP);
884 }
885
886 static void
887 report_op_error (symbolS *symp, symbolS *left, symbolS *right)
888 {
889 char *file;
890 unsigned int line;
891 segT seg_left = S_GET_SEGMENT (left);
892 segT seg_right = right ? S_GET_SEGMENT (right) : 0;
893
894 if (expr_symbol_where (symp, &file, &line))
895 {
896 if (seg_left == undefined_section)
897 as_bad_where (file, line,
898 _("undefined symbol `%s' in operation"),
899 S_GET_NAME (left));
900 if (seg_right == undefined_section)
901 as_bad_where (file, line,
902 _("undefined symbol `%s' in operation"),
903 S_GET_NAME (right));
904 if (seg_left != undefined_section
905 && seg_right != undefined_section)
906 {
907 if (right)
908 as_bad_where (file, line,
909 _("invalid sections for operation on `%s' and `%s'"),
910 S_GET_NAME (left), S_GET_NAME (right));
911 else
912 as_bad_where (file, line,
913 _("invalid section for operation on `%s'"),
914 S_GET_NAME (left));
915 }
916
917 }
918 else
919 {
920 if (seg_left == undefined_section)
921 as_bad (_("undefined symbol `%s' in operation setting `%s'"),
922 S_GET_NAME (left), S_GET_NAME (symp));
923 if (seg_right == undefined_section)
924 as_bad (_("undefined symbol `%s' in operation setting `%s'"),
925 S_GET_NAME (right), S_GET_NAME (symp));
926 if (seg_left != undefined_section
927 && seg_right != undefined_section)
928 {
929 if (right)
930 as_bad_where (file, line,
931 _("invalid sections for operation on `%s' and `%s' setting `%s'"),
932 S_GET_NAME (left), S_GET_NAME (right), S_GET_NAME (symp));
933 else
934 as_bad_where (file, line,
935 _("invalid section for operation on `%s' setting `%s'"),
936 S_GET_NAME (left), S_GET_NAME (symp));
937 }
938 }
939 }
940
941 /* Resolve the value of a symbol. This is called during the final
942 pass over the symbol table to resolve any symbols with complex
943 values. */
944
945 valueT
946 resolve_symbol_value (symbolS *symp)
947 {
948 int resolved;
949 valueT final_val = 0;
950 segT final_seg;
951
952 if (LOCAL_SYMBOL_CHECK (symp))
953 {
954 struct local_symbol *locsym = (struct local_symbol *) symp;
955
956 final_val = locsym->lsy_value;
957 if (local_symbol_resolved_p (locsym))
958 return final_val;
959
960 final_val += local_symbol_get_frag (locsym)->fr_address / OCTETS_PER_BYTE;
961
962 if (finalize_syms)
963 {
964 locsym->lsy_value = final_val;
965 local_symbol_mark_resolved (locsym);
966 }
967
968 return final_val;
969 }
970
971 if (symp->sy_resolved)
972 {
973 if (symp->sy_value.X_op == O_constant)
974 return (valueT) symp->sy_value.X_add_number;
975 else
976 return 0;
977 }
978
979 resolved = 0;
980 final_seg = S_GET_SEGMENT (symp);
981
982 if (symp->sy_resolving)
983 {
984 if (finalize_syms)
985 as_bad (_("symbol definition loop encountered at `%s'"),
986 S_GET_NAME (symp));
987 final_val = 0;
988 resolved = 1;
989 }
990 else
991 {
992 symbolS *add_symbol, *op_symbol;
993 offsetT left, right;
994 segT seg_left, seg_right;
995 operatorT op;
996 int move_seg_ok;
997
998 symp->sy_resolving = 1;
999
1000 /* Help out with CSE. */
1001 add_symbol = symp->sy_value.X_add_symbol;
1002 op_symbol = symp->sy_value.X_op_symbol;
1003 final_val = symp->sy_value.X_add_number;
1004 op = symp->sy_value.X_op;
1005
1006 switch (op)
1007 {
1008 default:
1009 BAD_CASE (op);
1010 break;
1011
1012 case O_absent:
1013 final_val = 0;
1014 /* Fall through. */
1015
1016 case O_constant:
1017 final_val += symp->sy_frag->fr_address / OCTETS_PER_BYTE;
1018 if (final_seg == expr_section)
1019 final_seg = absolute_section;
1020 resolved = 1;
1021 break;
1022
1023 case O_symbol:
1024 case O_symbol_rva:
1025 left = resolve_symbol_value (add_symbol);
1026 seg_left = S_GET_SEGMENT (add_symbol);
1027 if (finalize_syms)
1028 symp->sy_value.X_op_symbol = NULL;
1029
1030 do_symbol:
1031 if (S_IS_WEAKREFR (symp))
1032 {
1033 assert (final_val == 0);
1034 if (S_IS_WEAKREFR (add_symbol))
1035 {
1036 assert (add_symbol->sy_value.X_op == O_symbol
1037 && add_symbol->sy_value.X_add_number == 0);
1038 add_symbol = add_symbol->sy_value.X_add_symbol;
1039 assert (! S_IS_WEAKREFR (add_symbol));
1040 symp->sy_value.X_add_symbol = add_symbol;
1041 }
1042 }
1043
1044 if (symp->sy_mri_common)
1045 {
1046 /* This is a symbol inside an MRI common section. The
1047 relocation routines are going to handle it specially.
1048 Don't change the value. */
1049 resolved = symbol_resolved_p (add_symbol);
1050 break;
1051 }
1052
1053 if (finalize_syms && final_val == 0)
1054 {
1055 if (LOCAL_SYMBOL_CHECK (add_symbol))
1056 add_symbol = local_symbol_convert ((struct local_symbol *)
1057 add_symbol);
1058 copy_symbol_attributes (symp, add_symbol);
1059 }
1060
1061 /* If we have equated this symbol to an undefined or common
1062 symbol, keep X_op set to O_symbol, and don't change
1063 X_add_number. This permits the routine which writes out
1064 relocation to detect this case, and convert the
1065 relocation to be against the symbol to which this symbol
1066 is equated. */
1067 if (! S_IS_DEFINED (add_symbol)
1068 #if defined (OBJ_COFF) && defined (TE_PE)
1069 || S_IS_WEAK (add_symbol)
1070 #endif
1071 || S_IS_COMMON (add_symbol))
1072 {
1073 if (finalize_syms)
1074 {
1075 symp->sy_value.X_op = O_symbol;
1076 symp->sy_value.X_add_symbol = add_symbol;
1077 symp->sy_value.X_add_number = final_val;
1078 /* Use X_op_symbol as a flag. */
1079 symp->sy_value.X_op_symbol = add_symbol;
1080 final_seg = seg_left;
1081 }
1082 final_val = 0;
1083 resolved = symbol_resolved_p (add_symbol);
1084 symp->sy_resolving = 0;
1085 goto exit_dont_set_value;
1086 }
1087 else if (finalize_syms && final_seg == expr_section
1088 && seg_left != expr_section)
1089 {
1090 /* If the symbol is an expression symbol, do similarly
1091 as for undefined and common syms above. Handles
1092 "sym +/- expr" where "expr" cannot be evaluated
1093 immediately, and we want relocations to be against
1094 "sym", eg. because it is weak. */
1095 symp->sy_value.X_op = O_symbol;
1096 symp->sy_value.X_add_symbol = add_symbol;
1097 symp->sy_value.X_add_number = final_val;
1098 symp->sy_value.X_op_symbol = add_symbol;
1099 final_seg = seg_left;
1100 final_val += symp->sy_frag->fr_address + left;
1101 resolved = symbol_resolved_p (add_symbol);
1102 symp->sy_resolving = 0;
1103 goto exit_dont_set_value;
1104 }
1105 else
1106 {
1107 final_val += symp->sy_frag->fr_address + left;
1108 if (final_seg == expr_section || final_seg == undefined_section)
1109 final_seg = seg_left;
1110 }
1111
1112 resolved = symbol_resolved_p (add_symbol);
1113 if (S_IS_WEAKREFR (symp))
1114 goto exit_dont_set_value;
1115 break;
1116
1117 case O_uminus:
1118 case O_bit_not:
1119 case O_logical_not:
1120 left = resolve_symbol_value (add_symbol);
1121 seg_left = S_GET_SEGMENT (add_symbol);
1122
1123 /* By reducing these to the relevant dyadic operator, we get
1124 !S -> S == 0 permitted on anything,
1125 -S -> 0 - S only permitted on absolute
1126 ~S -> S ^ ~0 only permitted on absolute */
1127 if (op != O_logical_not && seg_left != absolute_section
1128 && finalize_syms)
1129 report_op_error (symp, add_symbol, NULL);
1130
1131 if (final_seg == expr_section || final_seg == undefined_section)
1132 final_seg = absolute_section;
1133
1134 if (op == O_uminus)
1135 left = -left;
1136 else if (op == O_logical_not)
1137 left = !left;
1138 else
1139 left = ~left;
1140
1141 final_val += left + symp->sy_frag->fr_address;
1142
1143 resolved = symbol_resolved_p (add_symbol);
1144 break;
1145
1146 case O_multiply:
1147 case O_divide:
1148 case O_modulus:
1149 case O_left_shift:
1150 case O_right_shift:
1151 case O_bit_inclusive_or:
1152 case O_bit_or_not:
1153 case O_bit_exclusive_or:
1154 case O_bit_and:
1155 case O_add:
1156 case O_subtract:
1157 case O_eq:
1158 case O_ne:
1159 case O_lt:
1160 case O_le:
1161 case O_ge:
1162 case O_gt:
1163 case O_logical_and:
1164 case O_logical_or:
1165 left = resolve_symbol_value (add_symbol);
1166 right = resolve_symbol_value (op_symbol);
1167 seg_left = S_GET_SEGMENT (add_symbol);
1168 seg_right = S_GET_SEGMENT (op_symbol);
1169
1170 /* Simplify addition or subtraction of a constant by folding the
1171 constant into X_add_number. */
1172 if (op == O_add)
1173 {
1174 if (seg_right == absolute_section)
1175 {
1176 final_val += right;
1177 goto do_symbol;
1178 }
1179 else if (seg_left == absolute_section)
1180 {
1181 final_val += left;
1182 add_symbol = op_symbol;
1183 left = right;
1184 seg_left = seg_right;
1185 goto do_symbol;
1186 }
1187 }
1188 else if (op == O_subtract)
1189 {
1190 if (seg_right == absolute_section)
1191 {
1192 final_val -= right;
1193 goto do_symbol;
1194 }
1195 }
1196
1197 move_seg_ok = 1;
1198 /* Equality and non-equality tests are permitted on anything.
1199 Subtraction, and other comparison operators are permitted if
1200 both operands are in the same section. Otherwise, both
1201 operands must be absolute. We already handled the case of
1202 addition or subtraction of a constant above. This will
1203 probably need to be changed for an object file format which
1204 supports arbitrary expressions, such as IEEE-695. */
1205 if (!(seg_left == absolute_section
1206 && seg_right == absolute_section)
1207 && !(op == O_eq || op == O_ne)
1208 && !((op == O_subtract
1209 || op == O_lt || op == O_le || op == O_ge || op == O_gt)
1210 && seg_left == seg_right
1211 && (seg_left != undefined_section
1212 || add_symbol == op_symbol)))
1213 {
1214 /* Don't emit messages unless we're finalizing the symbol value,
1215 otherwise we may get the same message multiple times. */
1216 if (finalize_syms)
1217 report_op_error (symp, add_symbol, op_symbol);
1218 /* However do not move the symbol into the absolute section
1219 if it cannot currently be resolved - this would confuse
1220 other parts of the assembler into believing that the
1221 expression had been evaluated to zero. */
1222 else
1223 move_seg_ok = 0;
1224 }
1225
1226 if (move_seg_ok
1227 && (final_seg == expr_section || final_seg == undefined_section))
1228 final_seg = absolute_section;
1229
1230 /* Check for division by zero. */
1231 if ((op == O_divide || op == O_modulus) && right == 0)
1232 {
1233 /* If seg_right is not absolute_section, then we've
1234 already issued a warning about using a bad symbol. */
1235 if (seg_right == absolute_section && finalize_syms)
1236 {
1237 char *file;
1238 unsigned int line;
1239
1240 if (expr_symbol_where (symp, &file, &line))
1241 as_bad_where (file, line, _("division by zero"));
1242 else
1243 as_bad (_("division by zero when setting `%s'"),
1244 S_GET_NAME (symp));
1245 }
1246
1247 right = 1;
1248 }
1249
1250 switch (symp->sy_value.X_op)
1251 {
1252 case O_multiply: left *= right; break;
1253 case O_divide: left /= right; break;
1254 case O_modulus: left %= right; break;
1255 case O_left_shift: left <<= right; break;
1256 case O_right_shift: left >>= right; break;
1257 case O_bit_inclusive_or: left |= right; break;
1258 case O_bit_or_not: left |= ~right; break;
1259 case O_bit_exclusive_or: left ^= right; break;
1260 case O_bit_and: left &= right; break;
1261 case O_add: left += right; break;
1262 case O_subtract: left -= right; break;
1263 case O_eq:
1264 case O_ne:
1265 left = (left == right && seg_left == seg_right
1266 && (seg_left != undefined_section
1267 || add_symbol == op_symbol)
1268 ? ~ (offsetT) 0 : 0);
1269 if (symp->sy_value.X_op == O_ne)
1270 left = ~left;
1271 break;
1272 case O_lt: left = left < right ? ~ (offsetT) 0 : 0; break;
1273 case O_le: left = left <= right ? ~ (offsetT) 0 : 0; break;
1274 case O_ge: left = left >= right ? ~ (offsetT) 0 : 0; break;
1275 case O_gt: left = left > right ? ~ (offsetT) 0 : 0; break;
1276 case O_logical_and: left = left && right; break;
1277 case O_logical_or: left = left || right; break;
1278 default: abort ();
1279 }
1280
1281 final_val += symp->sy_frag->fr_address + left;
1282 if (final_seg == expr_section || final_seg == undefined_section)
1283 {
1284 if (seg_left == undefined_section
1285 || seg_right == undefined_section)
1286 final_seg = undefined_section;
1287 else if (seg_left == absolute_section)
1288 final_seg = seg_right;
1289 else
1290 final_seg = seg_left;
1291 }
1292 resolved = (symbol_resolved_p (add_symbol)
1293 && symbol_resolved_p (op_symbol));
1294 break;
1295
1296 case O_register:
1297 case O_big:
1298 case O_illegal:
1299 /* Give an error (below) if not in expr_section. We don't
1300 want to worry about expr_section symbols, because they
1301 are fictional (they are created as part of expression
1302 resolution), and any problems may not actually mean
1303 anything. */
1304 break;
1305 }
1306
1307 symp->sy_resolving = 0;
1308 }
1309
1310 if (finalize_syms)
1311 S_SET_VALUE (symp, final_val);
1312
1313 exit_dont_set_value:
1314 /* Always set the segment, even if not finalizing the value.
1315 The segment is used to determine whether a symbol is defined. */
1316 S_SET_SEGMENT (symp, final_seg);
1317
1318 /* Don't worry if we can't resolve an expr_section symbol. */
1319 if (finalize_syms)
1320 {
1321 if (resolved)
1322 symp->sy_resolved = 1;
1323 else if (S_GET_SEGMENT (symp) != expr_section)
1324 {
1325 as_bad (_("can't resolve value for symbol `%s'"),
1326 S_GET_NAME (symp));
1327 symp->sy_resolved = 1;
1328 }
1329 }
1330
1331 return final_val;
1332 }
1333
1334 static void resolve_local_symbol (const char *, PTR);
1335
1336 /* A static function passed to hash_traverse. */
1337
1338 static void
1339 resolve_local_symbol (const char *key ATTRIBUTE_UNUSED, PTR value)
1340 {
1341 if (value != NULL)
1342 resolve_symbol_value (value);
1343 }
1344
1345 /* Resolve all local symbols. */
1346
1347 void
1348 resolve_local_symbol_values (void)
1349 {
1350 hash_traverse (local_hash, resolve_local_symbol);
1351 }
1352
1353 /* Obtain the current value of a symbol without changing any
1354 sub-expressions used. */
1355
1356 int
1357 snapshot_symbol (symbolS *symbolP, valueT *valueP, segT *segP, fragS **fragPP)
1358 {
1359 if (LOCAL_SYMBOL_CHECK (symbolP))
1360 {
1361 struct local_symbol *locsym = (struct local_symbol *) symbolP;
1362
1363 *valueP = locsym->lsy_value;
1364 *segP = locsym->lsy_section;
1365 *fragPP = local_symbol_get_frag (locsym);
1366 }
1367 else
1368 {
1369 expressionS expr = symbolP->sy_value;
1370
1371 if (!symbolP->sy_resolved && expr.X_op != O_illegal)
1372 {
1373 int resolved;
1374
1375 if (symbolP->sy_resolving)
1376 return 0;
1377 symbolP->sy_resolving = 1;
1378 resolved = resolve_expression (&expr);
1379 symbolP->sy_resolving = 0;
1380 if (!resolved)
1381 return 0;
1382
1383 switch (expr.X_op)
1384 {
1385 case O_constant:
1386 case O_register:
1387 /* This check wouldn't be needed if pseudo_set() didn't set
1388 symbols equated to bare symbols to undefined_section. */
1389 if (symbolP->bsym->section != undefined_section
1390 || symbolP->sy_value.X_op != O_symbol)
1391 break;
1392 /* Fall thru. */
1393 case O_symbol:
1394 case O_symbol_rva:
1395 symbolP = expr.X_add_symbol;
1396 break;
1397 default:
1398 return 0;
1399 }
1400 }
1401
1402 *valueP = expr.X_add_number;
1403 *segP = symbolP->bsym->section;
1404 *fragPP = symbolP->sy_frag;
1405
1406 if (*segP == expr_section)
1407 switch (expr.X_op)
1408 {
1409 case O_constant: *segP = absolute_section; break;
1410 case O_register: *segP = reg_section; break;
1411 default: break;
1412 }
1413 }
1414
1415 return 1;
1416 }
1417
1418 /* Dollar labels look like a number followed by a dollar sign. Eg, "42$".
1419 They are *really* local. That is, they go out of scope whenever we see a
1420 label that isn't local. Also, like fb labels, there can be multiple
1421 instances of a dollar label. Therefor, we name encode each instance with
1422 the instance number, keep a list of defined symbols separate from the real
1423 symbol table, and we treat these buggers as a sparse array. */
1424
1425 static long *dollar_labels;
1426 static long *dollar_label_instances;
1427 static char *dollar_label_defines;
1428 static unsigned long dollar_label_count;
1429 static unsigned long dollar_label_max;
1430
1431 int
1432 dollar_label_defined (long label)
1433 {
1434 long *i;
1435
1436 know ((dollar_labels != NULL) || (dollar_label_count == 0));
1437
1438 for (i = dollar_labels; i < dollar_labels + dollar_label_count; ++i)
1439 if (*i == label)
1440 return dollar_label_defines[i - dollar_labels];
1441
1442 /* If we get here, label isn't defined. */
1443 return 0;
1444 }
1445
1446 static long
1447 dollar_label_instance (long label)
1448 {
1449 long *i;
1450
1451 know ((dollar_labels != NULL) || (dollar_label_count == 0));
1452
1453 for (i = dollar_labels; i < dollar_labels + dollar_label_count; ++i)
1454 if (*i == label)
1455 return (dollar_label_instances[i - dollar_labels]);
1456
1457 /* If we get here, we haven't seen the label before.
1458 Therefore its instance count is zero. */
1459 return 0;
1460 }
1461
1462 void
1463 dollar_label_clear (void)
1464 {
1465 memset (dollar_label_defines, '\0', (unsigned int) dollar_label_count);
1466 }
1467
1468 #define DOLLAR_LABEL_BUMP_BY 10
1469
1470 void
1471 define_dollar_label (long label)
1472 {
1473 long *i;
1474
1475 for (i = dollar_labels; i < dollar_labels + dollar_label_count; ++i)
1476 if (*i == label)
1477 {
1478 ++dollar_label_instances[i - dollar_labels];
1479 dollar_label_defines[i - dollar_labels] = 1;
1480 return;
1481 }
1482
1483 /* If we get to here, we don't have label listed yet. */
1484
1485 if (dollar_labels == NULL)
1486 {
1487 dollar_labels = (long *) xmalloc (DOLLAR_LABEL_BUMP_BY * sizeof (long));
1488 dollar_label_instances = (long *) xmalloc (DOLLAR_LABEL_BUMP_BY * sizeof (long));
1489 dollar_label_defines = xmalloc (DOLLAR_LABEL_BUMP_BY);
1490 dollar_label_max = DOLLAR_LABEL_BUMP_BY;
1491 dollar_label_count = 0;
1492 }
1493 else if (dollar_label_count == dollar_label_max)
1494 {
1495 dollar_label_max += DOLLAR_LABEL_BUMP_BY;
1496 dollar_labels = (long *) xrealloc ((char *) dollar_labels,
1497 dollar_label_max * sizeof (long));
1498 dollar_label_instances = (long *) xrealloc ((char *) dollar_label_instances,
1499 dollar_label_max * sizeof (long));
1500 dollar_label_defines = xrealloc (dollar_label_defines, dollar_label_max);
1501 } /* if we needed to grow */
1502
1503 dollar_labels[dollar_label_count] = label;
1504 dollar_label_instances[dollar_label_count] = 1;
1505 dollar_label_defines[dollar_label_count] = 1;
1506 ++dollar_label_count;
1507 }
1508
1509 /* Caller must copy returned name: we re-use the area for the next name.
1510
1511 The mth occurence of label n: is turned into the symbol "Ln^Am"
1512 where n is the label number and m is the instance number. "L" makes
1513 it a label discarded unless debugging and "^A"('\1') ensures no
1514 ordinary symbol SHOULD get the same name as a local label
1515 symbol. The first "4:" is "L4^A1" - the m numbers begin at 1.
1516
1517 fb labels get the same treatment, except that ^B is used in place
1518 of ^A. */
1519
1520 char * /* Return local label name. */
1521 dollar_label_name (register long n, /* we just saw "n$:" : n a number. */
1522 register int augend /* 0 for current instance, 1 for new instance. */)
1523 {
1524 long i;
1525 /* Returned to caller, then copied. Used for created names ("4f"). */
1526 static char symbol_name_build[24];
1527 register char *p;
1528 register char *q;
1529 char symbol_name_temporary[20]; /* Build up a number, BACKWARDS. */
1530
1531 know (n >= 0);
1532 know (augend == 0 || augend == 1);
1533 p = symbol_name_build;
1534 #ifdef LOCAL_LABEL_PREFIX
1535 *p++ = LOCAL_LABEL_PREFIX;
1536 #endif
1537 *p++ = 'L';
1538
1539 /* Next code just does sprintf( {}, "%d", n); */
1540 /* Label number. */
1541 q = symbol_name_temporary;
1542 for (*q++ = 0, i = n; i; ++q)
1543 {
1544 *q = i % 10 + '0';
1545 i /= 10;
1546 }
1547 while ((*p = *--q) != '\0')
1548 ++p;
1549
1550 *p++ = DOLLAR_LABEL_CHAR; /* ^A */
1551
1552 /* Instance number. */
1553 q = symbol_name_temporary;
1554 for (*q++ = 0, i = dollar_label_instance (n) + augend; i; ++q)
1555 {
1556 *q = i % 10 + '0';
1557 i /= 10;
1558 }
1559 while ((*p++ = *--q) != '\0');;
1560
1561 /* The label, as a '\0' ended string, starts at symbol_name_build. */
1562 return symbol_name_build;
1563 }
1564
1565 /* Somebody else's idea of local labels. They are made by "n:" where n
1566 is any decimal digit. Refer to them with
1567 "nb" for previous (backward) n:
1568 or "nf" for next (forward) n:.
1569
1570 We do a little better and let n be any number, not just a single digit, but
1571 since the other guy's assembler only does ten, we treat the first ten
1572 specially.
1573
1574 Like someone else's assembler, we have one set of local label counters for
1575 entire assembly, not one set per (sub)segment like in most assemblers. This
1576 implies that one can refer to a label in another segment, and indeed some
1577 crufty compilers have done just that.
1578
1579 Since there could be a LOT of these things, treat them as a sparse
1580 array. */
1581
1582 #define FB_LABEL_SPECIAL (10)
1583
1584 static long fb_low_counter[FB_LABEL_SPECIAL];
1585 static long *fb_labels;
1586 static long *fb_label_instances;
1587 static long fb_label_count;
1588 static long fb_label_max;
1589
1590 /* This must be more than FB_LABEL_SPECIAL. */
1591 #define FB_LABEL_BUMP_BY (FB_LABEL_SPECIAL + 6)
1592
1593 static void
1594 fb_label_init (void)
1595 {
1596 memset ((void *) fb_low_counter, '\0', sizeof (fb_low_counter));
1597 }
1598
1599 /* Add one to the instance number of this fb label. */
1600
1601 void
1602 fb_label_instance_inc (long label)
1603 {
1604 long *i;
1605
1606 if (label < FB_LABEL_SPECIAL)
1607 {
1608 ++fb_low_counter[label];
1609 return;
1610 }
1611
1612 if (fb_labels != NULL)
1613 {
1614 for (i = fb_labels + FB_LABEL_SPECIAL;
1615 i < fb_labels + fb_label_count; ++i)
1616 {
1617 if (*i == label)
1618 {
1619 ++fb_label_instances[i - fb_labels];
1620 return;
1621 } /* if we find it */
1622 } /* for each existing label */
1623 }
1624
1625 /* If we get to here, we don't have label listed yet. */
1626
1627 if (fb_labels == NULL)
1628 {
1629 fb_labels = (long *) xmalloc (FB_LABEL_BUMP_BY * sizeof (long));
1630 fb_label_instances = (long *) xmalloc (FB_LABEL_BUMP_BY * sizeof (long));
1631 fb_label_max = FB_LABEL_BUMP_BY;
1632 fb_label_count = FB_LABEL_SPECIAL;
1633
1634 }
1635 else if (fb_label_count == fb_label_max)
1636 {
1637 fb_label_max += FB_LABEL_BUMP_BY;
1638 fb_labels = (long *) xrealloc ((char *) fb_labels,
1639 fb_label_max * sizeof (long));
1640 fb_label_instances = (long *) xrealloc ((char *) fb_label_instances,
1641 fb_label_max * sizeof (long));
1642 } /* if we needed to grow */
1643
1644 fb_labels[fb_label_count] = label;
1645 fb_label_instances[fb_label_count] = 1;
1646 ++fb_label_count;
1647 }
1648
1649 static long
1650 fb_label_instance (long label)
1651 {
1652 long *i;
1653
1654 if (label < FB_LABEL_SPECIAL)
1655 {
1656 return (fb_low_counter[label]);
1657 }
1658
1659 if (fb_labels != NULL)
1660 {
1661 for (i = fb_labels + FB_LABEL_SPECIAL;
1662 i < fb_labels + fb_label_count; ++i)
1663 {
1664 if (*i == label)
1665 {
1666 return (fb_label_instances[i - fb_labels]);
1667 } /* if we find it */
1668 } /* for each existing label */
1669 }
1670
1671 /* We didn't find the label, so this must be a reference to the
1672 first instance. */
1673 return 0;
1674 }
1675
1676 /* Caller must copy returned name: we re-use the area for the next name.
1677
1678 The mth occurence of label n: is turned into the symbol "Ln^Bm"
1679 where n is the label number and m is the instance number. "L" makes
1680 it a label discarded unless debugging and "^B"('\2') ensures no
1681 ordinary symbol SHOULD get the same name as a local label
1682 symbol. The first "4:" is "L4^B1" - the m numbers begin at 1.
1683
1684 dollar labels get the same treatment, except that ^A is used in
1685 place of ^B. */
1686
1687 char * /* Return local label name. */
1688 fb_label_name (long n, /* We just saw "n:", "nf" or "nb" : n a number. */
1689 long augend /* 0 for nb, 1 for n:, nf. */)
1690 {
1691 long i;
1692 /* Returned to caller, then copied. Used for created names ("4f"). */
1693 static char symbol_name_build[24];
1694 register char *p;
1695 register char *q;
1696 char symbol_name_temporary[20]; /* Build up a number, BACKWARDS. */
1697
1698 know (n >= 0);
1699 #ifdef TC_MMIX
1700 know ((unsigned long) augend <= 2 /* See mmix_fb_label. */);
1701 #else
1702 know ((unsigned long) augend <= 1);
1703 #endif
1704 p = symbol_name_build;
1705 #ifdef LOCAL_LABEL_PREFIX
1706 *p++ = LOCAL_LABEL_PREFIX;
1707 #endif
1708 *p++ = 'L';
1709
1710 /* Next code just does sprintf( {}, "%d", n); */
1711 /* Label number. */
1712 q = symbol_name_temporary;
1713 for (*q++ = 0, i = n; i; ++q)
1714 {
1715 *q = i % 10 + '0';
1716 i /= 10;
1717 }
1718 while ((*p = *--q) != '\0')
1719 ++p;
1720
1721 *p++ = LOCAL_LABEL_CHAR; /* ^B */
1722
1723 /* Instance number. */
1724 q = symbol_name_temporary;
1725 for (*q++ = 0, i = fb_label_instance (n) + augend; i; ++q)
1726 {
1727 *q = i % 10 + '0';
1728 i /= 10;
1729 }
1730 while ((*p++ = *--q) != '\0');;
1731
1732 /* The label, as a '\0' ended string, starts at symbol_name_build. */
1733 return (symbol_name_build);
1734 }
1735
1736 /* Decode name that may have been generated by foo_label_name() above.
1737 If the name wasn't generated by foo_label_name(), then return it
1738 unaltered. This is used for error messages. */
1739
1740 char *
1741 decode_local_label_name (char *s)
1742 {
1743 char *p;
1744 char *symbol_decode;
1745 int label_number;
1746 int instance_number;
1747 char *type;
1748 const char *message_format;
1749 int index = 0;
1750
1751 #ifdef LOCAL_LABEL_PREFIX
1752 if (s[index] == LOCAL_LABEL_PREFIX)
1753 ++index;
1754 #endif
1755
1756 if (s[index] != 'L')
1757 return s;
1758
1759 for (label_number = 0, p = s + index + 1; ISDIGIT (*p); ++p)
1760 label_number = (10 * label_number) + *p - '0';
1761
1762 if (*p == DOLLAR_LABEL_CHAR)
1763 type = "dollar";
1764 else if (*p == LOCAL_LABEL_CHAR)
1765 type = "fb";
1766 else
1767 return s;
1768
1769 for (instance_number = 0, p++; ISDIGIT (*p); ++p)
1770 instance_number = (10 * instance_number) + *p - '0';
1771
1772 message_format = _("\"%d\" (instance number %d of a %s label)");
1773 symbol_decode = obstack_alloc (&notes, strlen (message_format) + 30);
1774 sprintf (symbol_decode, message_format, label_number, instance_number, type);
1775
1776 return symbol_decode;
1777 }
1778
1779 /* Get the value of a symbol. */
1780
1781 valueT
1782 S_GET_VALUE (symbolS *s)
1783 {
1784 if (LOCAL_SYMBOL_CHECK (s))
1785 return resolve_symbol_value (s);
1786
1787 if (!s->sy_resolved)
1788 {
1789 valueT val = resolve_symbol_value (s);
1790 if (!finalize_syms)
1791 return val;
1792 }
1793 if (S_IS_WEAKREFR (s))
1794 return S_GET_VALUE (s->sy_value.X_add_symbol);
1795
1796 if (s->sy_value.X_op != O_constant)
1797 {
1798 if (! s->sy_resolved
1799 || s->sy_value.X_op != O_symbol
1800 || (S_IS_DEFINED (s) && ! S_IS_COMMON (s)))
1801 as_bad (_("attempt to get value of unresolved symbol `%s'"),
1802 S_GET_NAME (s));
1803 }
1804 return (valueT) s->sy_value.X_add_number;
1805 }
1806
1807 /* Set the value of a symbol. */
1808
1809 void
1810 S_SET_VALUE (symbolS *s, valueT val)
1811 {
1812 if (LOCAL_SYMBOL_CHECK (s))
1813 {
1814 ((struct local_symbol *) s)->lsy_value = val;
1815 return;
1816 }
1817
1818 s->sy_value.X_op = O_constant;
1819 s->sy_value.X_add_number = (offsetT) val;
1820 s->sy_value.X_unsigned = 0;
1821 S_CLEAR_WEAKREFR (s);
1822 }
1823
1824 void
1825 copy_symbol_attributes (symbolS *dest, symbolS *src)
1826 {
1827 if (LOCAL_SYMBOL_CHECK (dest))
1828 dest = local_symbol_convert ((struct local_symbol *) dest);
1829 if (LOCAL_SYMBOL_CHECK (src))
1830 src = local_symbol_convert ((struct local_symbol *) src);
1831
1832 /* In an expression, transfer the settings of these flags.
1833 The user can override later, of course. */
1834 #define COPIED_SYMFLAGS (BSF_FUNCTION | BSF_OBJECT)
1835 dest->bsym->flags |= src->bsym->flags & COPIED_SYMFLAGS;
1836
1837 #ifdef OBJ_COPY_SYMBOL_ATTRIBUTES
1838 OBJ_COPY_SYMBOL_ATTRIBUTES (dest, src);
1839 #endif
1840 }
1841
1842 int
1843 S_IS_FUNCTION (symbolS *s)
1844 {
1845 flagword flags;
1846
1847 if (LOCAL_SYMBOL_CHECK (s))
1848 return 0;
1849
1850 flags = s->bsym->flags;
1851
1852 return (flags & BSF_FUNCTION) != 0;
1853 }
1854
1855 int
1856 S_IS_EXTERNAL (symbolS *s)
1857 {
1858 flagword flags;
1859
1860 if (LOCAL_SYMBOL_CHECK (s))
1861 return 0;
1862
1863 flags = s->bsym->flags;
1864
1865 /* Sanity check. */
1866 if ((flags & BSF_LOCAL) && (flags & BSF_GLOBAL))
1867 abort ();
1868
1869 return (flags & BSF_GLOBAL) != 0;
1870 }
1871
1872 int
1873 S_IS_WEAK (symbolS *s)
1874 {
1875 if (LOCAL_SYMBOL_CHECK (s))
1876 return 0;
1877 /* Conceptually, a weakrefr is weak if the referenced symbol is. We
1878 could probably handle a WEAKREFR as always weak though. E.g., if
1879 the referenced symbol has lost its weak status, there's no reason
1880 to keep handling the weakrefr as if it was weak. */
1881 if (S_IS_WEAKREFR (s))
1882 return S_IS_WEAK (s->sy_value.X_add_symbol);
1883 return (s->bsym->flags & BSF_WEAK) != 0;
1884 }
1885
1886 int
1887 S_IS_WEAKREFR (symbolS *s)
1888 {
1889 if (LOCAL_SYMBOL_CHECK (s))
1890 return 0;
1891 return s->sy_weakrefr != 0;
1892 }
1893
1894 int
1895 S_IS_WEAKREFD (symbolS *s)
1896 {
1897 if (LOCAL_SYMBOL_CHECK (s))
1898 return 0;
1899 return s->sy_weakrefd != 0;
1900 }
1901
1902 int
1903 S_IS_COMMON (symbolS *s)
1904 {
1905 if (LOCAL_SYMBOL_CHECK (s))
1906 return 0;
1907 return bfd_is_com_section (s->bsym->section);
1908 }
1909
1910 int
1911 S_IS_DEFINED (symbolS *s)
1912 {
1913 if (LOCAL_SYMBOL_CHECK (s))
1914 return ((struct local_symbol *) s)->lsy_section != undefined_section;
1915 return s->bsym->section != undefined_section;
1916 }
1917
1918
1919 #ifndef EXTERN_FORCE_RELOC
1920 #define EXTERN_FORCE_RELOC IS_ELF
1921 #endif
1922
1923 /* Return true for symbols that should not be reduced to section
1924 symbols or eliminated from expressions, because they may be
1925 overridden by the linker. */
1926 int
1927 S_FORCE_RELOC (symbolS *s, int strict)
1928 {
1929 if (LOCAL_SYMBOL_CHECK (s))
1930 return ((struct local_symbol *) s)->lsy_section == undefined_section;
1931
1932 return ((strict
1933 && ((s->bsym->flags & BSF_WEAK) != 0
1934 || (EXTERN_FORCE_RELOC
1935 && (s->bsym->flags & BSF_GLOBAL) != 0)))
1936 || s->bsym->section == undefined_section
1937 || bfd_is_com_section (s->bsym->section));
1938 }
1939
1940 int
1941 S_IS_DEBUG (symbolS *s)
1942 {
1943 if (LOCAL_SYMBOL_CHECK (s))
1944 return 0;
1945 if (s->bsym->flags & BSF_DEBUGGING)
1946 return 1;
1947 return 0;
1948 }
1949
1950 int
1951 S_IS_LOCAL (symbolS *s)
1952 {
1953 flagword flags;
1954 const char *name;
1955
1956 if (LOCAL_SYMBOL_CHECK (s))
1957 return 1;
1958
1959 flags = s->bsym->flags;
1960
1961 /* Sanity check. */
1962 if ((flags & BSF_LOCAL) && (flags & BSF_GLOBAL))
1963 abort ();
1964
1965 if (bfd_get_section (s->bsym) == reg_section)
1966 return 1;
1967
1968 if (flag_strip_local_absolute
1969 /* Keep BSF_FILE symbols in order to allow debuggers to identify
1970 the source file even when the object file is stripped. */
1971 && (flags & (BSF_GLOBAL | BSF_FILE)) == 0
1972 && bfd_get_section (s->bsym) == absolute_section)
1973 return 1;
1974
1975 name = S_GET_NAME (s);
1976 return (name != NULL
1977 && ! S_IS_DEBUG (s)
1978 && (strchr (name, DOLLAR_LABEL_CHAR)
1979 || strchr (name, LOCAL_LABEL_CHAR)
1980 || (! flag_keep_locals
1981 && (bfd_is_local_label (stdoutput, s->bsym)
1982 || (flag_mri
1983 && name[0] == '?'
1984 && name[1] == '?')))));
1985 }
1986
1987 int
1988 S_IS_STABD (symbolS *s)
1989 {
1990 return S_GET_NAME (s) == 0;
1991 }
1992
1993 int
1994 S_IS_VOLATILE (const symbolS *s)
1995 {
1996 if (LOCAL_SYMBOL_CHECK (s))
1997 return 0;
1998 return s->sy_volatile;
1999 }
2000
2001 int
2002 S_IS_FORWARD_REF (const symbolS *s)
2003 {
2004 if (LOCAL_SYMBOL_CHECK (s))
2005 return 0;
2006 return s->sy_forward_ref;
2007 }
2008
2009 const char *
2010 S_GET_NAME (symbolS *s)
2011 {
2012 if (LOCAL_SYMBOL_CHECK (s))
2013 return ((struct local_symbol *) s)->lsy_name;
2014 return s->bsym->name;
2015 }
2016
2017 segT
2018 S_GET_SEGMENT (symbolS *s)
2019 {
2020 if (LOCAL_SYMBOL_CHECK (s))
2021 return ((struct local_symbol *) s)->lsy_section;
2022 return s->bsym->section;
2023 }
2024
2025 void
2026 S_SET_SEGMENT (symbolS *s, segT seg)
2027 {
2028 /* Don't reassign section symbols. The direct reason is to prevent seg
2029 faults assigning back to const global symbols such as *ABS*, but it
2030 shouldn't happen anyway. */
2031
2032 if (LOCAL_SYMBOL_CHECK (s))
2033 {
2034 if (seg == reg_section)
2035 s = local_symbol_convert ((struct local_symbol *) s);
2036 else
2037 {
2038 ((struct local_symbol *) s)->lsy_section = seg;
2039 return;
2040 }
2041 }
2042
2043 if (s->bsym->flags & BSF_SECTION_SYM)
2044 {
2045 if (s->bsym->section != seg)
2046 abort ();
2047 }
2048 else
2049 s->bsym->section = seg;
2050 }
2051
2052 void
2053 S_SET_EXTERNAL (symbolS *s)
2054 {
2055 if (LOCAL_SYMBOL_CHECK (s))
2056 s = local_symbol_convert ((struct local_symbol *) s);
2057 if ((s->bsym->flags & BSF_WEAK) != 0)
2058 {
2059 /* Let .weak override .global. */
2060 return;
2061 }
2062 if (s->bsym->flags & BSF_SECTION_SYM)
2063 {
2064 char * file;
2065 unsigned int line;
2066
2067 /* Do not reassign section symbols. */
2068 as_where (& file, & line);
2069 as_warn_where (file, line,
2070 _("section symbols are already global"));
2071 return;
2072 }
2073 s->bsym->flags |= BSF_GLOBAL;
2074 s->bsym->flags &= ~(BSF_LOCAL | BSF_WEAK);
2075
2076 #ifdef USE_UNIQUE
2077 if (! an_external_name && S_GET_NAME(s)[0] != '.')
2078 an_external_name = S_GET_NAME (s);
2079 #endif
2080 }
2081
2082 void
2083 S_CLEAR_EXTERNAL (symbolS *s)
2084 {
2085 if (LOCAL_SYMBOL_CHECK (s))
2086 return;
2087 if ((s->bsym->flags & BSF_WEAK) != 0)
2088 {
2089 /* Let .weak override. */
2090 return;
2091 }
2092 s->bsym->flags |= BSF_LOCAL;
2093 s->bsym->flags &= ~(BSF_GLOBAL | BSF_WEAK);
2094 }
2095
2096 void
2097 S_SET_WEAK (symbolS *s)
2098 {
2099 if (LOCAL_SYMBOL_CHECK (s))
2100 s = local_symbol_convert ((struct local_symbol *) s);
2101 #ifdef obj_set_weak_hook
2102 obj_set_weak_hook (s);
2103 #endif
2104 s->bsym->flags |= BSF_WEAK;
2105 s->bsym->flags &= ~(BSF_GLOBAL | BSF_LOCAL);
2106 }
2107
2108 void
2109 S_SET_WEAKREFR (symbolS *s)
2110 {
2111 if (LOCAL_SYMBOL_CHECK (s))
2112 s = local_symbol_convert ((struct local_symbol *) s);
2113 s->sy_weakrefr = 1;
2114 /* If the alias was already used, make sure we mark the target as
2115 used as well, otherwise it might be dropped from the symbol
2116 table. This may have unintended side effects if the alias is
2117 later redirected to another symbol, such as keeping the unused
2118 previous target in the symbol table. Since it will be weak, it's
2119 not a big deal. */
2120 if (s->sy_used)
2121 symbol_mark_used (s->sy_value.X_add_symbol);
2122 }
2123
2124 void
2125 S_CLEAR_WEAKREFR (symbolS *s)
2126 {
2127 if (LOCAL_SYMBOL_CHECK (s))
2128 return;
2129 s->sy_weakrefr = 0;
2130 }
2131
2132 void
2133 S_SET_WEAKREFD (symbolS *s)
2134 {
2135 if (LOCAL_SYMBOL_CHECK (s))
2136 s = local_symbol_convert ((struct local_symbol *) s);
2137 s->sy_weakrefd = 1;
2138 S_SET_WEAK (s);
2139 }
2140
2141 void
2142 S_CLEAR_WEAKREFD (symbolS *s)
2143 {
2144 if (LOCAL_SYMBOL_CHECK (s))
2145 return;
2146 if (s->sy_weakrefd)
2147 {
2148 s->sy_weakrefd = 0;
2149 /* If a weakref target symbol is weak, then it was never
2150 referenced directly before, not even in a .global directive,
2151 so decay it to local. If it remains undefined, it will be
2152 later turned into a global, like any other undefined
2153 symbol. */
2154 if (s->bsym->flags & BSF_WEAK)
2155 {
2156 #ifdef obj_clear_weak_hook
2157 obj_clear_weak_hook (s);
2158 #endif
2159 s->bsym->flags &= ~BSF_WEAK;
2160 s->bsym->flags |= BSF_LOCAL;
2161 }
2162 }
2163 }
2164
2165 void
2166 S_SET_THREAD_LOCAL (symbolS *s)
2167 {
2168 if (LOCAL_SYMBOL_CHECK (s))
2169 s = local_symbol_convert ((struct local_symbol *) s);
2170 if (bfd_is_com_section (s->bsym->section)
2171 && (s->bsym->flags & BSF_THREAD_LOCAL) != 0)
2172 return;
2173 s->bsym->flags |= BSF_THREAD_LOCAL;
2174 if ((s->bsym->flags & BSF_FUNCTION) != 0)
2175 as_bad (_("Accessing function `%s' as thread-local object"),
2176 S_GET_NAME (s));
2177 else if (! bfd_is_und_section (s->bsym->section)
2178 && (s->bsym->section->flags & SEC_THREAD_LOCAL) == 0)
2179 as_bad (_("Accessing `%s' as thread-local object"),
2180 S_GET_NAME (s));
2181 }
2182
2183 void
2184 S_SET_NAME (symbolS *s, const char *name)
2185 {
2186 if (LOCAL_SYMBOL_CHECK (s))
2187 {
2188 ((struct local_symbol *) s)->lsy_name = name;
2189 return;
2190 }
2191 s->bsym->name = name;
2192 }
2193
2194 void
2195 S_SET_VOLATILE (symbolS *s)
2196 {
2197 if (LOCAL_SYMBOL_CHECK (s))
2198 s = local_symbol_convert ((struct local_symbol *) s);
2199 s->sy_volatile = 1;
2200 }
2201
2202 void
2203 S_CLEAR_VOLATILE (symbolS *s)
2204 {
2205 if (!LOCAL_SYMBOL_CHECK (s))
2206 s->sy_volatile = 0;
2207 }
2208
2209 void
2210 S_SET_FORWARD_REF (symbolS *s)
2211 {
2212 if (LOCAL_SYMBOL_CHECK (s))
2213 s = local_symbol_convert ((struct local_symbol *) s);
2214 s->sy_forward_ref = 1;
2215 }
2216
2217 /* Return the previous symbol in a chain. */
2218
2219 symbolS *
2220 symbol_previous (symbolS *s)
2221 {
2222 if (LOCAL_SYMBOL_CHECK (s))
2223 abort ();
2224 return s->sy_previous;
2225 }
2226
2227 /* Return the next symbol in a chain. */
2228
2229 symbolS *
2230 symbol_next (symbolS *s)
2231 {
2232 if (LOCAL_SYMBOL_CHECK (s))
2233 abort ();
2234 return s->sy_next;
2235 }
2236
2237 /* Return a pointer to the value of a symbol as an expression. */
2238
2239 expressionS *
2240 symbol_get_value_expression (symbolS *s)
2241 {
2242 if (LOCAL_SYMBOL_CHECK (s))
2243 s = local_symbol_convert ((struct local_symbol *) s);
2244 return &s->sy_value;
2245 }
2246
2247 /* Set the value of a symbol to an expression. */
2248
2249 void
2250 symbol_set_value_expression (symbolS *s, const expressionS *exp)
2251 {
2252 if (LOCAL_SYMBOL_CHECK (s))
2253 s = local_symbol_convert ((struct local_symbol *) s);
2254 s->sy_value = *exp;
2255 S_CLEAR_WEAKREFR (s);
2256 }
2257
2258 /* Return a pointer to the X_add_number component of a symbol. */
2259
2260 offsetT *
2261 symbol_X_add_number (symbolS *s)
2262 {
2263 if (LOCAL_SYMBOL_CHECK (s))
2264 return (offsetT *) &((struct local_symbol *) s)->lsy_value;
2265
2266 return &s->sy_value.X_add_number;
2267 }
2268
2269 /* Set the value of SYM to the current position in the current segment. */
2270
2271 void
2272 symbol_set_value_now (symbolS *sym)
2273 {
2274 S_SET_SEGMENT (sym, now_seg);
2275 S_SET_VALUE (sym, frag_now_fix ());
2276 symbol_set_frag (sym, frag_now);
2277 }
2278
2279 /* Set the frag of a symbol. */
2280
2281 void
2282 symbol_set_frag (symbolS *s, fragS *f)
2283 {
2284 if (LOCAL_SYMBOL_CHECK (s))
2285 {
2286 local_symbol_set_frag ((struct local_symbol *) s, f);
2287 return;
2288 }
2289 s->sy_frag = f;
2290 S_CLEAR_WEAKREFR (s);
2291 }
2292
2293 /* Return the frag of a symbol. */
2294
2295 fragS *
2296 symbol_get_frag (symbolS *s)
2297 {
2298 if (LOCAL_SYMBOL_CHECK (s))
2299 return local_symbol_get_frag ((struct local_symbol *) s);
2300 return s->sy_frag;
2301 }
2302
2303 /* Mark a symbol as having been used. */
2304
2305 void
2306 symbol_mark_used (symbolS *s)
2307 {
2308 if (LOCAL_SYMBOL_CHECK (s))
2309 return;
2310 s->sy_used = 1;
2311 if (S_IS_WEAKREFR (s))
2312 symbol_mark_used (s->sy_value.X_add_symbol);
2313 }
2314
2315 /* Clear the mark of whether a symbol has been used. */
2316
2317 void
2318 symbol_clear_used (symbolS *s)
2319 {
2320 if (LOCAL_SYMBOL_CHECK (s))
2321 s = local_symbol_convert ((struct local_symbol *) s);
2322 s->sy_used = 0;
2323 }
2324
2325 /* Return whether a symbol has been used. */
2326
2327 int
2328 symbol_used_p (symbolS *s)
2329 {
2330 if (LOCAL_SYMBOL_CHECK (s))
2331 return 1;
2332 return s->sy_used;
2333 }
2334
2335 /* Mark a symbol as having been used in a reloc. */
2336
2337 void
2338 symbol_mark_used_in_reloc (symbolS *s)
2339 {
2340 if (LOCAL_SYMBOL_CHECK (s))
2341 s = local_symbol_convert ((struct local_symbol *) s);
2342 s->sy_used_in_reloc = 1;
2343 }
2344
2345 /* Clear the mark of whether a symbol has been used in a reloc. */
2346
2347 void
2348 symbol_clear_used_in_reloc (symbolS *s)
2349 {
2350 if (LOCAL_SYMBOL_CHECK (s))
2351 return;
2352 s->sy_used_in_reloc = 0;
2353 }
2354
2355 /* Return whether a symbol has been used in a reloc. */
2356
2357 int
2358 symbol_used_in_reloc_p (symbolS *s)
2359 {
2360 if (LOCAL_SYMBOL_CHECK (s))
2361 return 0;
2362 return s->sy_used_in_reloc;
2363 }
2364
2365 /* Mark a symbol as an MRI common symbol. */
2366
2367 void
2368 symbol_mark_mri_common (symbolS *s)
2369 {
2370 if (LOCAL_SYMBOL_CHECK (s))
2371 s = local_symbol_convert ((struct local_symbol *) s);
2372 s->sy_mri_common = 1;
2373 }
2374
2375 /* Clear the mark of whether a symbol is an MRI common symbol. */
2376
2377 void
2378 symbol_clear_mri_common (symbolS *s)
2379 {
2380 if (LOCAL_SYMBOL_CHECK (s))
2381 return;
2382 s->sy_mri_common = 0;
2383 }
2384
2385 /* Return whether a symbol is an MRI common symbol. */
2386
2387 int
2388 symbol_mri_common_p (symbolS *s)
2389 {
2390 if (LOCAL_SYMBOL_CHECK (s))
2391 return 0;
2392 return s->sy_mri_common;
2393 }
2394
2395 /* Mark a symbol as having been written. */
2396
2397 void
2398 symbol_mark_written (symbolS *s)
2399 {
2400 if (LOCAL_SYMBOL_CHECK (s))
2401 return;
2402 s->written = 1;
2403 }
2404
2405 /* Clear the mark of whether a symbol has been written. */
2406
2407 void
2408 symbol_clear_written (symbolS *s)
2409 {
2410 if (LOCAL_SYMBOL_CHECK (s))
2411 return;
2412 s->written = 0;
2413 }
2414
2415 /* Return whether a symbol has been written. */
2416
2417 int
2418 symbol_written_p (symbolS *s)
2419 {
2420 if (LOCAL_SYMBOL_CHECK (s))
2421 return 0;
2422 return s->written;
2423 }
2424
2425 /* Mark a symbol has having been resolved. */
2426
2427 void
2428 symbol_mark_resolved (symbolS *s)
2429 {
2430 if (LOCAL_SYMBOL_CHECK (s))
2431 {
2432 local_symbol_mark_resolved ((struct local_symbol *) s);
2433 return;
2434 }
2435 s->sy_resolved = 1;
2436 }
2437
2438 /* Return whether a symbol has been resolved. */
2439
2440 int
2441 symbol_resolved_p (symbolS *s)
2442 {
2443 if (LOCAL_SYMBOL_CHECK (s))
2444 return local_symbol_resolved_p ((struct local_symbol *) s);
2445 return s->sy_resolved;
2446 }
2447
2448 /* Return whether a symbol is a section symbol. */
2449
2450 int
2451 symbol_section_p (symbolS *s ATTRIBUTE_UNUSED)
2452 {
2453 if (LOCAL_SYMBOL_CHECK (s))
2454 return 0;
2455 return (s->bsym->flags & BSF_SECTION_SYM) != 0;
2456 }
2457
2458 /* Return whether a symbol is equated to another symbol. */
2459
2460 int
2461 symbol_equated_p (symbolS *s)
2462 {
2463 if (LOCAL_SYMBOL_CHECK (s))
2464 return 0;
2465 return s->sy_value.X_op == O_symbol;
2466 }
2467
2468 /* Return whether a symbol is equated to another symbol, and should be
2469 treated specially when writing out relocs. */
2470
2471 int
2472 symbol_equated_reloc_p (symbolS *s)
2473 {
2474 if (LOCAL_SYMBOL_CHECK (s))
2475 return 0;
2476 /* X_op_symbol, normally not used for O_symbol, is set by
2477 resolve_symbol_value to flag expression syms that have been
2478 equated. */
2479 return (s->sy_value.X_op == O_symbol
2480 #if defined (OBJ_COFF) && defined (TE_PE)
2481 && ! S_IS_WEAK (s)
2482 #endif
2483 && ((s->sy_resolved && s->sy_value.X_op_symbol != NULL)
2484 || ! S_IS_DEFINED (s)
2485 || S_IS_COMMON (s)));
2486 }
2487
2488 /* Return whether a symbol has a constant value. */
2489
2490 int
2491 symbol_constant_p (symbolS *s)
2492 {
2493 if (LOCAL_SYMBOL_CHECK (s))
2494 return 1;
2495 return s->sy_value.X_op == O_constant;
2496 }
2497
2498 /* Return the BFD symbol for a symbol. */
2499
2500 asymbol *
2501 symbol_get_bfdsym (symbolS *s)
2502 {
2503 if (LOCAL_SYMBOL_CHECK (s))
2504 s = local_symbol_convert ((struct local_symbol *) s);
2505 return s->bsym;
2506 }
2507
2508 /* Set the BFD symbol for a symbol. */
2509
2510 void
2511 symbol_set_bfdsym (symbolS *s, asymbol *bsym)
2512 {
2513 if (LOCAL_SYMBOL_CHECK (s))
2514 s = local_symbol_convert ((struct local_symbol *) s);
2515 /* Usually, it is harmless to reset a symbol to a BFD section
2516 symbol. For example, obj_elf_change_section sets the BFD symbol
2517 of an old symbol with the newly created section symbol. But when
2518 we have multiple sections with the same name, the newly created
2519 section may have the same name as an old section. We check if the
2520 old symbol has been already marked as a section symbol before
2521 resetting it. */
2522 if ((s->bsym->flags & BSF_SECTION_SYM) == 0)
2523 s->bsym = bsym;
2524 /* else XXX - What do we do now ? */
2525 }
2526
2527 #ifdef OBJ_SYMFIELD_TYPE
2528
2529 /* Get a pointer to the object format information for a symbol. */
2530
2531 OBJ_SYMFIELD_TYPE *
2532 symbol_get_obj (symbolS *s)
2533 {
2534 if (LOCAL_SYMBOL_CHECK (s))
2535 s = local_symbol_convert ((struct local_symbol *) s);
2536 return &s->sy_obj;
2537 }
2538
2539 /* Set the object format information for a symbol. */
2540
2541 void
2542 symbol_set_obj (symbolS *s, OBJ_SYMFIELD_TYPE *o)
2543 {
2544 if (LOCAL_SYMBOL_CHECK (s))
2545 s = local_symbol_convert ((struct local_symbol *) s);
2546 s->sy_obj = *o;
2547 }
2548
2549 #endif /* OBJ_SYMFIELD_TYPE */
2550
2551 #ifdef TC_SYMFIELD_TYPE
2552
2553 /* Get a pointer to the processor information for a symbol. */
2554
2555 TC_SYMFIELD_TYPE *
2556 symbol_get_tc (symbolS *s)
2557 {
2558 if (LOCAL_SYMBOL_CHECK (s))
2559 s = local_symbol_convert ((struct local_symbol *) s);
2560 return &s->sy_tc;
2561 }
2562
2563 /* Set the processor information for a symbol. */
2564
2565 void
2566 symbol_set_tc (symbolS *s, TC_SYMFIELD_TYPE *o)
2567 {
2568 if (LOCAL_SYMBOL_CHECK (s))
2569 s = local_symbol_convert ((struct local_symbol *) s);
2570 s->sy_tc = *o;
2571 }
2572
2573 #endif /* TC_SYMFIELD_TYPE */
2574
2575 void
2576 symbol_begin (void)
2577 {
2578 symbol_lastP = NULL;
2579 symbol_rootP = NULL; /* In case we have 0 symbols (!!) */
2580 sy_hash = hash_new ();
2581 local_hash = hash_new ();
2582
2583 memset ((char *) (&abs_symbol), '\0', sizeof (abs_symbol));
2584 #if defined (EMIT_SECTION_SYMBOLS) || !defined (RELOC_REQUIRES_SYMBOL)
2585 abs_symbol.bsym = bfd_abs_section.symbol;
2586 #endif
2587 abs_symbol.sy_value.X_op = O_constant;
2588 abs_symbol.sy_frag = &zero_address_frag;
2589
2590 if (LOCAL_LABELS_FB)
2591 fb_label_init ();
2592 }
2593 \f
2594 int indent_level;
2595
2596 /* Maximum indent level.
2597 Available for modification inside a gdb session. */
2598 static int max_indent_level = 8;
2599
2600 void
2601 print_symbol_value_1 (FILE *file, symbolS *sym)
2602 {
2603 const char *name = S_GET_NAME (sym);
2604 if (!name || !name[0])
2605 name = "(unnamed)";
2606 fprintf (file, "sym %lx %s", (unsigned long) sym, name);
2607
2608 if (LOCAL_SYMBOL_CHECK (sym))
2609 {
2610 struct local_symbol *locsym = (struct local_symbol *) sym;
2611 if (local_symbol_get_frag (locsym) != &zero_address_frag
2612 && local_symbol_get_frag (locsym) != NULL)
2613 fprintf (file, " frag %lx", (long) local_symbol_get_frag (locsym));
2614 if (local_symbol_resolved_p (locsym))
2615 fprintf (file, " resolved");
2616 fprintf (file, " local");
2617 }
2618 else
2619 {
2620 if (sym->sy_frag != &zero_address_frag)
2621 fprintf (file, " frag %lx", (long) sym->sy_frag);
2622 if (sym->written)
2623 fprintf (file, " written");
2624 if (sym->sy_resolved)
2625 fprintf (file, " resolved");
2626 else if (sym->sy_resolving)
2627 fprintf (file, " resolving");
2628 if (sym->sy_used_in_reloc)
2629 fprintf (file, " used-in-reloc");
2630 if (sym->sy_used)
2631 fprintf (file, " used");
2632 if (S_IS_LOCAL (sym))
2633 fprintf (file, " local");
2634 if (S_IS_EXTERNAL (sym))
2635 fprintf (file, " extern");
2636 if (S_IS_WEAK (sym))
2637 fprintf (file, " weak");
2638 if (S_IS_DEBUG (sym))
2639 fprintf (file, " debug");
2640 if (S_IS_DEFINED (sym))
2641 fprintf (file, " defined");
2642 }
2643 if (S_IS_WEAKREFR (sym))
2644 fprintf (file, " weakrefr");
2645 if (S_IS_WEAKREFD (sym))
2646 fprintf (file, " weakrefd");
2647 fprintf (file, " %s", segment_name (S_GET_SEGMENT (sym)));
2648 if (symbol_resolved_p (sym))
2649 {
2650 segT s = S_GET_SEGMENT (sym);
2651
2652 if (s != undefined_section
2653 && s != expr_section)
2654 fprintf (file, " %lx", (long) S_GET_VALUE (sym));
2655 }
2656 else if (indent_level < max_indent_level
2657 && S_GET_SEGMENT (sym) != undefined_section)
2658 {
2659 indent_level++;
2660 fprintf (file, "\n%*s<", indent_level * 4, "");
2661 if (LOCAL_SYMBOL_CHECK (sym))
2662 fprintf (file, "constant %lx",
2663 (long) ((struct local_symbol *) sym)->lsy_value);
2664 else
2665 print_expr_1 (file, &sym->sy_value);
2666 fprintf (file, ">");
2667 indent_level--;
2668 }
2669 fflush (file);
2670 }
2671
2672 void
2673 print_symbol_value (symbolS *sym)
2674 {
2675 indent_level = 0;
2676 print_symbol_value_1 (stderr, sym);
2677 fprintf (stderr, "\n");
2678 }
2679
2680 static void
2681 print_binary (FILE *file, const char *name, expressionS *exp)
2682 {
2683 indent_level++;
2684 fprintf (file, "%s\n%*s<", name, indent_level * 4, "");
2685 print_symbol_value_1 (file, exp->X_add_symbol);
2686 fprintf (file, ">\n%*s<", indent_level * 4, "");
2687 print_symbol_value_1 (file, exp->X_op_symbol);
2688 fprintf (file, ">");
2689 indent_level--;
2690 }
2691
2692 void
2693 print_expr_1 (FILE *file, expressionS *exp)
2694 {
2695 fprintf (file, "expr %lx ", (long) exp);
2696 switch (exp->X_op)
2697 {
2698 case O_illegal:
2699 fprintf (file, "illegal");
2700 break;
2701 case O_absent:
2702 fprintf (file, "absent");
2703 break;
2704 case O_constant:
2705 fprintf (file, "constant %lx", (long) exp->X_add_number);
2706 break;
2707 case O_symbol:
2708 indent_level++;
2709 fprintf (file, "symbol\n%*s<", indent_level * 4, "");
2710 print_symbol_value_1 (file, exp->X_add_symbol);
2711 fprintf (file, ">");
2712 maybe_print_addnum:
2713 if (exp->X_add_number)
2714 fprintf (file, "\n%*s%lx", indent_level * 4, "",
2715 (long) exp->X_add_number);
2716 indent_level--;
2717 break;
2718 case O_register:
2719 fprintf (file, "register #%d", (int) exp->X_add_number);
2720 break;
2721 case O_big:
2722 fprintf (file, "big");
2723 break;
2724 case O_uminus:
2725 fprintf (file, "uminus -<");
2726 indent_level++;
2727 print_symbol_value_1 (file, exp->X_add_symbol);
2728 fprintf (file, ">");
2729 goto maybe_print_addnum;
2730 case O_bit_not:
2731 fprintf (file, "bit_not");
2732 break;
2733 case O_multiply:
2734 print_binary (file, "multiply", exp);
2735 break;
2736 case O_divide:
2737 print_binary (file, "divide", exp);
2738 break;
2739 case O_modulus:
2740 print_binary (file, "modulus", exp);
2741 break;
2742 case O_left_shift:
2743 print_binary (file, "lshift", exp);
2744 break;
2745 case O_right_shift:
2746 print_binary (file, "rshift", exp);
2747 break;
2748 case O_bit_inclusive_or:
2749 print_binary (file, "bit_ior", exp);
2750 break;
2751 case O_bit_exclusive_or:
2752 print_binary (file, "bit_xor", exp);
2753 break;
2754 case O_bit_and:
2755 print_binary (file, "bit_and", exp);
2756 break;
2757 case O_eq:
2758 print_binary (file, "eq", exp);
2759 break;
2760 case O_ne:
2761 print_binary (file, "ne", exp);
2762 break;
2763 case O_lt:
2764 print_binary (file, "lt", exp);
2765 break;
2766 case O_le:
2767 print_binary (file, "le", exp);
2768 break;
2769 case O_ge:
2770 print_binary (file, "ge", exp);
2771 break;
2772 case O_gt:
2773 print_binary (file, "gt", exp);
2774 break;
2775 case O_logical_and:
2776 print_binary (file, "logical_and", exp);
2777 break;
2778 case O_logical_or:
2779 print_binary (file, "logical_or", exp);
2780 break;
2781 case O_add:
2782 indent_level++;
2783 fprintf (file, "add\n%*s<", indent_level * 4, "");
2784 print_symbol_value_1 (file, exp->X_add_symbol);
2785 fprintf (file, ">\n%*s<", indent_level * 4, "");
2786 print_symbol_value_1 (file, exp->X_op_symbol);
2787 fprintf (file, ">");
2788 goto maybe_print_addnum;
2789 case O_subtract:
2790 indent_level++;
2791 fprintf (file, "subtract\n%*s<", indent_level * 4, "");
2792 print_symbol_value_1 (file, exp->X_add_symbol);
2793 fprintf (file, ">\n%*s<", indent_level * 4, "");
2794 print_symbol_value_1 (file, exp->X_op_symbol);
2795 fprintf (file, ">");
2796 goto maybe_print_addnum;
2797 default:
2798 fprintf (file, "{unknown opcode %d}", (int) exp->X_op);
2799 break;
2800 }
2801 fflush (stdout);
2802 }
2803
2804 void
2805 print_expr (expressionS *exp)
2806 {
2807 print_expr_1 (stderr, exp);
2808 fprintf (stderr, "\n");
2809 }
2810
2811 void
2812 symbol_print_statistics (FILE *file)
2813 {
2814 hash_print_statistics (file, "symbol table", sy_hash);
2815 hash_print_statistics (file, "mini local symbol table", local_hash);
2816 fprintf (file, "%lu mini local symbols created, %lu converted\n",
2817 local_symbol_count, local_symbol_conversion_count);
2818 }
This page took 0.115916 seconds and 5 git commands to generate.