* target-descriptions.c (tdesc_named_type): Move code_ptr and data_ptr
[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, 2006
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_fatal ("bfd_make_empty_symbol: %s", bfd_errmsg (bfd_get_error ()));
148 S_SET_NAME (symbolP, preserved_copy_of_name);
149
150 S_SET_SEGMENT (symbolP, segment);
151 S_SET_VALUE (symbolP, valu);
152 symbol_clear_list_pointers (symbolP);
153
154 symbolP->sy_frag = frag;
155
156 obj_symbol_new_hook (symbolP);
157
158 #ifdef tc_symbol_new_hook
159 tc_symbol_new_hook (symbolP);
160 #endif
161
162 return symbolP;
163 }
164 \f
165
166 /* Local symbol support. If we can get away with it, we keep only a
167 small amount of information for local symbols. */
168
169 static symbolS *local_symbol_convert (struct local_symbol *);
170
171 /* Used for statistics. */
172
173 static unsigned long local_symbol_count;
174 static unsigned long local_symbol_conversion_count;
175
176 /* This macro is called with a symbol argument passed by reference.
177 It returns whether this is a local symbol. If necessary, it
178 changes its argument to the real symbol. */
179
180 #define LOCAL_SYMBOL_CHECK(s) \
181 (s->bsym == NULL \
182 ? (local_symbol_converted_p ((struct local_symbol *) s) \
183 ? (s = local_symbol_get_real_symbol ((struct local_symbol *) s), \
184 0) \
185 : 1) \
186 : 0)
187
188 /* Create a local symbol and insert it into the local hash table. */
189
190 static struct local_symbol *
191 local_symbol_make (const char *name, segT section, valueT value, fragS *frag)
192 {
193 char *name_copy;
194 struct local_symbol *ret;
195
196 ++local_symbol_count;
197
198 name_copy = save_symbol_name (name);
199
200 ret = (struct local_symbol *) obstack_alloc (&notes, sizeof *ret);
201 ret->lsy_marker = NULL;
202 ret->lsy_name = name_copy;
203 ret->lsy_section = section;
204 local_symbol_set_frag (ret, frag);
205 ret->lsy_value = value;
206
207 hash_jam (local_hash, name_copy, (PTR) ret);
208
209 return ret;
210 }
211
212 /* Convert a local symbol into a real symbol. Note that we do not
213 reclaim the space used by the local symbol. */
214
215 static symbolS *
216 local_symbol_convert (struct local_symbol *locsym)
217 {
218 symbolS *ret;
219
220 assert (locsym->lsy_marker == NULL);
221 if (local_symbol_converted_p (locsym))
222 return local_symbol_get_real_symbol (locsym);
223
224 ++local_symbol_conversion_count;
225
226 ret = symbol_new (locsym->lsy_name, locsym->lsy_section, locsym->lsy_value,
227 local_symbol_get_frag (locsym));
228
229 if (local_symbol_resolved_p (locsym))
230 ret->sy_resolved = 1;
231
232 /* Local symbols are always either defined or used. */
233 ret->sy_used = 1;
234
235 #ifdef TC_LOCAL_SYMFIELD_CONVERT
236 TC_LOCAL_SYMFIELD_CONVERT (locsym, ret);
237 #endif
238
239 symbol_table_insert (ret);
240
241 local_symbol_mark_converted (locsym);
242 local_symbol_set_real_symbol (locsym, ret);
243
244 hash_jam (local_hash, locsym->lsy_name, NULL);
245
246 return ret;
247 }
248 \f
249 /* We have just seen "<name>:".
250 Creates a struct symbol unless it already exists.
251
252 Gripes if we are redefining a symbol incompatibly (and ignores it). */
253
254 symbolS *
255 colon (/* Just seen "x:" - rattle symbols & frags. */
256 const char *sym_name /* Symbol name, as a cannonical string. */
257 /* We copy this string: OK to alter later. */)
258 {
259 register symbolS *symbolP; /* Symbol we are working with. */
260
261 /* Sun local labels go out of scope whenever a non-local symbol is
262 defined. */
263 if (LOCAL_LABELS_DOLLAR
264 && !bfd_is_local_label_name (stdoutput, sym_name))
265 dollar_label_clear ();
266
267 #ifndef WORKING_DOT_WORD
268 if (new_broken_words)
269 {
270 struct broken_word *a;
271 int possible_bytes;
272 fragS *frag_tmp;
273 char *frag_opcode;
274
275 if (now_seg == absolute_section)
276 {
277 as_bad (_("cannot define symbol `%s' in absolute section"), sym_name);
278 return NULL;
279 }
280
281 possible_bytes = (md_short_jump_size
282 + new_broken_words * md_long_jump_size);
283
284 frag_tmp = frag_now;
285 frag_opcode = frag_var (rs_broken_word,
286 possible_bytes,
287 possible_bytes,
288 (relax_substateT) 0,
289 (symbolS *) broken_words,
290 (offsetT) 0,
291 NULL);
292
293 /* We want to store the pointer to where to insert the jump
294 table in the fr_opcode of the rs_broken_word frag. This
295 requires a little hackery. */
296 while (frag_tmp
297 && (frag_tmp->fr_type != rs_broken_word
298 || frag_tmp->fr_opcode))
299 frag_tmp = frag_tmp->fr_next;
300 know (frag_tmp);
301 frag_tmp->fr_opcode = frag_opcode;
302 new_broken_words = 0;
303
304 for (a = broken_words; a && a->dispfrag == 0; a = a->next_broken_word)
305 a->dispfrag = frag_tmp;
306 }
307 #endif /* WORKING_DOT_WORD */
308
309 if ((symbolP = symbol_find (sym_name)) != 0)
310 {
311 S_CLEAR_WEAKREFR (symbolP);
312 #ifdef RESOLVE_SYMBOL_REDEFINITION
313 if (RESOLVE_SYMBOL_REDEFINITION (symbolP))
314 return symbolP;
315 #endif
316 /* Now check for undefined symbols. */
317 if (LOCAL_SYMBOL_CHECK (symbolP))
318 {
319 struct local_symbol *locsym = (struct local_symbol *) symbolP;
320
321 if (locsym->lsy_section != undefined_section
322 && (local_symbol_get_frag (locsym) != frag_now
323 || locsym->lsy_section != now_seg
324 || locsym->lsy_value != frag_now_fix ()))
325 {
326 as_bad (_("symbol `%s' is already defined"), sym_name);
327 return symbolP;
328 }
329
330 locsym->lsy_section = now_seg;
331 local_symbol_set_frag (locsym, frag_now);
332 locsym->lsy_value = frag_now_fix ();
333 }
334 else if (!(S_IS_DEFINED (symbolP) || symbol_equated_p (symbolP))
335 || S_IS_COMMON (symbolP)
336 || S_IS_VOLATILE (symbolP))
337 {
338 if (S_IS_VOLATILE (symbolP))
339 {
340 symbolP = symbol_clone (symbolP, 1);
341 S_SET_VALUE (symbolP, 0);
342 S_CLEAR_VOLATILE (symbolP);
343 }
344 if (S_GET_VALUE (symbolP) == 0)
345 {
346 symbolP->sy_frag = frag_now;
347 #ifdef OBJ_VMS
348 S_SET_OTHER (symbolP, const_flag);
349 #endif
350 S_SET_VALUE (symbolP, (valueT) frag_now_fix ());
351 S_SET_SEGMENT (symbolP, now_seg);
352 #ifdef N_UNDF
353 know (N_UNDF == 0);
354 #endif /* if we have one, it better be zero. */
355
356 }
357 else
358 {
359 /* There are still several cases to check:
360
361 A .comm/.lcomm symbol being redefined as initialized
362 data is OK
363
364 A .comm/.lcomm symbol being redefined with a larger
365 size is also OK
366
367 This only used to be allowed on VMS gas, but Sun cc
368 on the sparc also depends on it. */
369
370 if (((!S_IS_DEBUG (symbolP)
371 && (!S_IS_DEFINED (symbolP) || S_IS_COMMON (symbolP))
372 && S_IS_EXTERNAL (symbolP))
373 || S_GET_SEGMENT (symbolP) == bss_section)
374 && (now_seg == data_section
375 || now_seg == bss_section
376 || now_seg == S_GET_SEGMENT (symbolP)))
377 {
378 /* Select which of the 2 cases this is. */
379 if (now_seg != data_section)
380 {
381 /* New .comm for prev .comm symbol.
382
383 If the new size is larger we just change its
384 value. If the new size is smaller, we ignore
385 this symbol. */
386 if (S_GET_VALUE (symbolP)
387 < ((unsigned) frag_now_fix ()))
388 {
389 S_SET_VALUE (symbolP, (valueT) frag_now_fix ());
390 }
391 }
392 else
393 {
394 /* It is a .comm/.lcomm being converted to initialized
395 data. */
396 symbolP->sy_frag = frag_now;
397 #ifdef OBJ_VMS
398 S_SET_OTHER (symbolP, const_flag);
399 #endif
400 S_SET_VALUE (symbolP, (valueT) frag_now_fix ());
401 S_SET_SEGMENT (symbolP, now_seg); /* Keep N_EXT bit. */
402 }
403 }
404 else
405 {
406 #if (!defined (OBJ_AOUT) && !defined (OBJ_MAYBE_AOUT) \
407 && !defined (OBJ_BOUT) && !defined (OBJ_MAYBE_BOUT))
408 static const char *od_buf = "";
409 #else
410 char od_buf[100];
411 od_buf[0] = '\0';
412 if (OUTPUT_FLAVOR == bfd_target_aout_flavour)
413 sprintf (od_buf, "%d.%d.",
414 S_GET_OTHER (symbolP),
415 S_GET_DESC (symbolP));
416 #endif
417 as_bad (_("symbol `%s' is already defined as \"%s\"/%s%ld"),
418 sym_name,
419 segment_name (S_GET_SEGMENT (symbolP)),
420 od_buf,
421 (long) S_GET_VALUE (symbolP));
422 }
423 } /* if the undefined symbol has no value */
424 }
425 else
426 {
427 /* Don't blow up if the definition is the same. */
428 if (!(frag_now == symbolP->sy_frag
429 && S_GET_VALUE (symbolP) == frag_now_fix ()
430 && S_GET_SEGMENT (symbolP) == now_seg))
431 {
432 as_bad (_("symbol `%s' is already defined"), sym_name);
433 symbolP = symbol_clone (symbolP, 0);
434 }
435 }
436
437 }
438 else if (! flag_keep_locals && bfd_is_local_label_name (stdoutput, sym_name))
439 {
440 symbolP = (symbolS *) local_symbol_make (sym_name, now_seg,
441 (valueT) frag_now_fix (),
442 frag_now);
443 }
444 else
445 {
446 symbolP = symbol_new (sym_name, now_seg, (valueT) frag_now_fix (),
447 frag_now);
448 #ifdef OBJ_VMS
449 S_SET_OTHER (symbolP, const_flag);
450 #endif /* OBJ_VMS */
451
452 symbol_table_insert (symbolP);
453 }
454
455 if (mri_common_symbol != NULL)
456 {
457 /* This symbol is actually being defined within an MRI common
458 section. This requires special handling. */
459 if (LOCAL_SYMBOL_CHECK (symbolP))
460 symbolP = local_symbol_convert ((struct local_symbol *) symbolP);
461 symbolP->sy_value.X_op = O_symbol;
462 symbolP->sy_value.X_add_symbol = mri_common_symbol;
463 symbolP->sy_value.X_add_number = S_GET_VALUE (mri_common_symbol);
464 symbolP->sy_frag = &zero_address_frag;
465 S_SET_SEGMENT (symbolP, expr_section);
466 symbolP->sy_mri_common = 1;
467 }
468
469 #ifdef tc_frob_label
470 tc_frob_label (symbolP);
471 #endif
472 #ifdef obj_frob_label
473 obj_frob_label (symbolP);
474 #endif
475
476 return symbolP;
477 }
478 \f
479 /* Die if we can't insert the symbol. */
480
481 void
482 symbol_table_insert (symbolS *symbolP)
483 {
484 register const char *error_string;
485
486 know (symbolP);
487 know (S_GET_NAME (symbolP));
488
489 if (LOCAL_SYMBOL_CHECK (symbolP))
490 {
491 error_string = hash_jam (local_hash, S_GET_NAME (symbolP),
492 (PTR) symbolP);
493 if (error_string != NULL)
494 as_fatal (_("inserting \"%s\" into symbol table failed: %s"),
495 S_GET_NAME (symbolP), error_string);
496 return;
497 }
498
499 if ((error_string = hash_jam (sy_hash, S_GET_NAME (symbolP), (PTR) symbolP)))
500 {
501 as_fatal (_("inserting \"%s\" into symbol table failed: %s"),
502 S_GET_NAME (symbolP), error_string);
503 } /* on error */
504 }
505 \f
506 /* If a symbol name does not exist, create it as undefined, and insert
507 it into the symbol table. Return a pointer to it. */
508
509 symbolS *
510 symbol_find_or_make (const char *name)
511 {
512 register symbolS *symbolP;
513
514 symbolP = symbol_find (name);
515
516 if (symbolP == NULL)
517 {
518 if (! flag_keep_locals && bfd_is_local_label_name (stdoutput, name))
519 {
520 symbolP = md_undefined_symbol ((char *) name);
521 if (symbolP != NULL)
522 return symbolP;
523
524 symbolP = (symbolS *) local_symbol_make (name, undefined_section,
525 (valueT) 0,
526 &zero_address_frag);
527 return symbolP;
528 }
529
530 symbolP = symbol_make (name);
531
532 symbol_table_insert (symbolP);
533 } /* if symbol wasn't found */
534
535 return (symbolP);
536 }
537
538 symbolS *
539 symbol_make (const char *name)
540 {
541 symbolS *symbolP;
542
543 /* Let the machine description default it, e.g. for register names. */
544 symbolP = md_undefined_symbol ((char *) name);
545
546 if (!symbolP)
547 symbolP = symbol_new (name, undefined_section, (valueT) 0, &zero_address_frag);
548
549 return (symbolP);
550 }
551
552 symbolS *
553 symbol_clone (symbolS *orgsymP, int replace)
554 {
555 symbolS *newsymP;
556 asymbol *bsymorg, *bsymnew;
557
558 /* Running local_symbol_convert on a clone that's not the one currently
559 in local_hash would incorrectly replace the hash entry. Thus the
560 symbol must be converted here. Note that the rest of the function
561 depends on not encountering an unconverted symbol. */
562 if (LOCAL_SYMBOL_CHECK (orgsymP))
563 orgsymP = local_symbol_convert ((struct local_symbol *) orgsymP);
564 bsymorg = orgsymP->bsym;
565
566 know (S_IS_DEFINED (orgsymP));
567
568 newsymP = obstack_alloc (&notes, sizeof (*newsymP));
569 *newsymP = *orgsymP;
570 bsymnew = bfd_make_empty_symbol (bfd_asymbol_bfd (bsymorg));
571 if (bsymnew == NULL)
572 as_fatal ("bfd_make_empty_symbol: %s", bfd_errmsg (bfd_get_error ()));
573 newsymP->bsym = bsymnew;
574 bsymnew->name = bsymorg->name;
575 bsymnew->flags = bsymorg->flags;
576 bsymnew->section = bsymorg->section;
577 bfd_copy_private_symbol_data (bfd_asymbol_bfd (bsymorg), bsymorg,
578 bfd_asymbol_bfd (bsymnew), bsymnew);
579
580 #ifdef obj_symbol_clone_hook
581 obj_symbol_clone_hook (newsymP, orgsymP);
582 #endif
583
584 #ifdef tc_symbol_clone_hook
585 tc_symbol_clone_hook (newsymP, orgsymP);
586 #endif
587
588 if (replace)
589 {
590 if (symbol_rootP == orgsymP)
591 symbol_rootP = newsymP;
592 else if (orgsymP->sy_previous)
593 {
594 orgsymP->sy_previous->sy_next = newsymP;
595 orgsymP->sy_previous = NULL;
596 }
597 if (symbol_lastP == orgsymP)
598 symbol_lastP = newsymP;
599 else if (orgsymP->sy_next)
600 orgsymP->sy_next->sy_previous = newsymP;
601 orgsymP->sy_previous = orgsymP->sy_next = orgsymP;
602 debug_verify_symchain (symbol_rootP, symbol_lastP);
603
604 symbol_table_insert (newsymP);
605 }
606 else
607 newsymP->sy_previous = newsymP->sy_next = newsymP;
608
609 return newsymP;
610 }
611
612 /* Referenced symbols, if they are forward references, need to be cloned
613 (without replacing the original) so that the value of the referenced
614 symbols at the point of use . */
615
616 #undef symbol_clone_if_forward_ref
617 symbolS *
618 symbol_clone_if_forward_ref (symbolS *symbolP, int is_forward)
619 {
620 if (symbolP && !LOCAL_SYMBOL_CHECK (symbolP))
621 {
622 symbolS *add_symbol = symbolP->sy_value.X_add_symbol;
623 symbolS *op_symbol = symbolP->sy_value.X_op_symbol;
624
625 if (symbolP->sy_forward_ref)
626 is_forward = 1;
627
628 if (is_forward)
629 {
630 /* assign_symbol() clones volatile symbols; pre-existing expressions
631 hold references to the original instance, but want the current
632 value. Just repeat the lookup. */
633 if (add_symbol && S_IS_VOLATILE (add_symbol))
634 add_symbol = symbol_find_exact (S_GET_NAME (add_symbol));
635 if (op_symbol && S_IS_VOLATILE (op_symbol))
636 op_symbol = symbol_find_exact (S_GET_NAME (op_symbol));
637 }
638
639 /* Re-using sy_resolving here, as this routine cannot get called from
640 symbol resolution code. */
641 if (symbolP->bsym->section == expr_section && !symbolP->sy_resolving)
642 {
643 symbolP->sy_resolving = 1;
644 add_symbol = symbol_clone_if_forward_ref (add_symbol, is_forward);
645 op_symbol = symbol_clone_if_forward_ref (op_symbol, is_forward);
646 symbolP->sy_resolving = 0;
647 }
648
649 if (symbolP->sy_forward_ref
650 || add_symbol != symbolP->sy_value.X_add_symbol
651 || op_symbol != symbolP->sy_value.X_op_symbol)
652 symbolP = symbol_clone (symbolP, 0);
653
654 symbolP->sy_value.X_add_symbol = add_symbol;
655 symbolP->sy_value.X_op_symbol = op_symbol;
656 }
657
658 return symbolP;
659 }
660
661 symbolS *
662 symbol_temp_new (segT seg, valueT ofs, fragS *frag)
663 {
664 return symbol_new (FAKE_LABEL_NAME, seg, ofs, frag);
665 }
666
667 symbolS *
668 symbol_temp_new_now (void)
669 {
670 return symbol_temp_new (now_seg, frag_now_fix (), frag_now);
671 }
672
673 symbolS *
674 symbol_temp_make (void)
675 {
676 return symbol_make (FAKE_LABEL_NAME);
677 }
678
679 /* Implement symbol table lookup.
680 In: A symbol's name as a string: '\0' can't be part of a symbol name.
681 Out: NULL if the name was not in the symbol table, else the address
682 of a struct symbol associated with that name. */
683
684 symbolS *
685 symbol_find_exact (const char *name)
686 {
687 return symbol_find_exact_noref (name, 0);
688 }
689
690 symbolS *
691 symbol_find_exact_noref (const char *name, int noref)
692 {
693 struct local_symbol *locsym;
694 symbolS* sym;
695
696 locsym = (struct local_symbol *) hash_find (local_hash, name);
697 if (locsym != NULL)
698 return (symbolS *) locsym;
699
700 sym = ((symbolS *) hash_find (sy_hash, name));
701
702 /* Any references to the symbol, except for the reference in
703 .weakref, must clear this flag, such that the symbol does not
704 turn into a weak symbol. Note that we don't have to handle the
705 local_symbol case, since a weakrefd is always promoted out of the
706 local_symbol table when it is turned into a weak symbol. */
707 if (sym && ! noref)
708 S_CLEAR_WEAKREFD (sym);
709
710 return sym;
711 }
712
713 symbolS *
714 symbol_find (const char *name)
715 {
716 return symbol_find_noref (name, 0);
717 }
718
719 symbolS *
720 symbol_find_noref (const char *name, int noref)
721 {
722 #ifdef tc_canonicalize_symbol_name
723 {
724 char *copy;
725 size_t len = strlen (name) + 1;
726
727 copy = (char *) alloca (len);
728 memcpy (copy, name, len);
729 name = tc_canonicalize_symbol_name (copy);
730 }
731 #endif
732
733 if (! symbols_case_sensitive)
734 {
735 char *copy;
736 const char *orig;
737 unsigned char c;
738
739 orig = name;
740 name = copy = (char *) alloca (strlen (name) + 1);
741
742 while ((c = *orig++) != '\0')
743 {
744 *copy++ = TOUPPER (c);
745 }
746 *copy = '\0';
747 }
748
749 return symbol_find_exact_noref (name, noref);
750 }
751
752 /* Once upon a time, symbols were kept in a singly linked list. At
753 least coff needs to be able to rearrange them from time to time, for
754 which a doubly linked list is much more convenient. Loic did these
755 as macros which seemed dangerous to me so they're now functions.
756 xoxorich. */
757
758 /* Link symbol ADDME after symbol TARGET in the chain. */
759
760 void
761 symbol_append (symbolS *addme, symbolS *target,
762 symbolS **rootPP, symbolS **lastPP)
763 {
764 if (LOCAL_SYMBOL_CHECK (addme))
765 abort ();
766 if (target != NULL && LOCAL_SYMBOL_CHECK (target))
767 abort ();
768
769 if (target == NULL)
770 {
771 know (*rootPP == NULL);
772 know (*lastPP == NULL);
773 addme->sy_next = NULL;
774 addme->sy_previous = NULL;
775 *rootPP = addme;
776 *lastPP = addme;
777 return;
778 } /* if the list is empty */
779
780 if (target->sy_next != NULL)
781 {
782 target->sy_next->sy_previous = addme;
783 }
784 else
785 {
786 know (*lastPP == target);
787 *lastPP = addme;
788 } /* if we have a next */
789
790 addme->sy_next = target->sy_next;
791 target->sy_next = addme;
792 addme->sy_previous = target;
793
794 debug_verify_symchain (symbol_rootP, symbol_lastP);
795 }
796
797 /* Set the chain pointers of SYMBOL to null. */
798
799 void
800 symbol_clear_list_pointers (symbolS *symbolP)
801 {
802 if (LOCAL_SYMBOL_CHECK (symbolP))
803 abort ();
804 symbolP->sy_next = NULL;
805 symbolP->sy_previous = NULL;
806 }
807
808 /* Remove SYMBOLP from the list. */
809
810 void
811 symbol_remove (symbolS *symbolP, symbolS **rootPP, symbolS **lastPP)
812 {
813 if (LOCAL_SYMBOL_CHECK (symbolP))
814 abort ();
815
816 if (symbolP == *rootPP)
817 {
818 *rootPP = symbolP->sy_next;
819 } /* if it was the root */
820
821 if (symbolP == *lastPP)
822 {
823 *lastPP = symbolP->sy_previous;
824 } /* if it was the tail */
825
826 if (symbolP->sy_next != NULL)
827 {
828 symbolP->sy_next->sy_previous = symbolP->sy_previous;
829 } /* if not last */
830
831 if (symbolP->sy_previous != NULL)
832 {
833 symbolP->sy_previous->sy_next = symbolP->sy_next;
834 } /* if not first */
835
836 debug_verify_symchain (*rootPP, *lastPP);
837 }
838
839 /* Link symbol ADDME before symbol TARGET in the chain. */
840
841 void
842 symbol_insert (symbolS *addme, symbolS *target,
843 symbolS **rootPP, symbolS **lastPP ATTRIBUTE_UNUSED)
844 {
845 if (LOCAL_SYMBOL_CHECK (addme))
846 abort ();
847 if (LOCAL_SYMBOL_CHECK (target))
848 abort ();
849
850 if (target->sy_previous != NULL)
851 {
852 target->sy_previous->sy_next = addme;
853 }
854 else
855 {
856 know (*rootPP == target);
857 *rootPP = addme;
858 } /* if not first */
859
860 addme->sy_previous = target->sy_previous;
861 target->sy_previous = addme;
862 addme->sy_next = target;
863
864 debug_verify_symchain (*rootPP, *lastPP);
865 }
866
867 void
868 verify_symbol_chain (symbolS *rootP, symbolS *lastP)
869 {
870 symbolS *symbolP = rootP;
871
872 if (symbolP == NULL)
873 return;
874
875 for (; symbol_next (symbolP) != NULL; symbolP = symbol_next (symbolP))
876 {
877 assert (symbolP->bsym != NULL);
878 assert (symbolP->sy_next->sy_previous == symbolP);
879 }
880
881 assert (lastP == symbolP);
882 }
883
884 #ifdef OBJ_COMPLEX_RELC
885
886 static int
887 use_complex_relocs_for (symbolS * symp)
888 {
889 switch (symp->sy_value.X_op)
890 {
891 case O_constant:
892 return 0;
893
894 case O_symbol:
895 case O_symbol_rva:
896 case O_uminus:
897 case O_bit_not:
898 case O_logical_not:
899 if ( (S_IS_COMMON (symp->sy_value.X_add_symbol)
900 || S_IS_LOCAL (symp->sy_value.X_add_symbol))
901 &&
902 (S_IS_DEFINED (symp->sy_value.X_add_symbol)
903 && S_GET_SEGMENT (symp->sy_value.X_add_symbol) != expr_section))
904 return 0;
905 break;
906
907 case O_multiply:
908 case O_divide:
909 case O_modulus:
910 case O_left_shift:
911 case O_right_shift:
912 case O_bit_inclusive_or:
913 case O_bit_or_not:
914 case O_bit_exclusive_or:
915 case O_bit_and:
916 case O_add:
917 case O_subtract:
918 case O_eq:
919 case O_ne:
920 case O_lt:
921 case O_le:
922 case O_ge:
923 case O_gt:
924 case O_logical_and:
925 case O_logical_or:
926
927 if ( (S_IS_COMMON (symp->sy_value.X_add_symbol)
928 || S_IS_LOCAL (symp->sy_value.X_add_symbol))
929 &&
930 (S_IS_COMMON (symp->sy_value.X_op_symbol)
931 || S_IS_LOCAL (symp->sy_value.X_op_symbol))
932
933 && S_IS_DEFINED (symp->sy_value.X_add_symbol)
934 && S_IS_DEFINED (symp->sy_value.X_op_symbol)
935 && S_GET_SEGMENT (symp->sy_value.X_add_symbol) != expr_section
936 && S_GET_SEGMENT (symp->sy_value.X_op_symbol) != expr_section)
937 return 0;
938 break;
939
940 default:
941 break;
942 }
943 return 1;
944 }
945 #endif
946
947 static void
948 report_op_error (symbolS *symp, symbolS *left, symbolS *right)
949 {
950 char *file;
951 unsigned int line;
952 segT seg_left = S_GET_SEGMENT (left);
953 segT seg_right = right ? S_GET_SEGMENT (right) : 0;
954
955 if (expr_symbol_where (symp, &file, &line))
956 {
957 if (seg_left == undefined_section)
958 as_bad_where (file, line,
959 _("undefined symbol `%s' in operation"),
960 S_GET_NAME (left));
961 if (seg_right == undefined_section)
962 as_bad_where (file, line,
963 _("undefined symbol `%s' in operation"),
964 S_GET_NAME (right));
965 if (seg_left != undefined_section
966 && seg_right != undefined_section)
967 {
968 if (right)
969 as_bad_where (file, line,
970 _("invalid sections for operation on `%s' and `%s'"),
971 S_GET_NAME (left), S_GET_NAME (right));
972 else
973 as_bad_where (file, line,
974 _("invalid section for operation on `%s'"),
975 S_GET_NAME (left));
976 }
977
978 }
979 else
980 {
981 if (seg_left == undefined_section)
982 as_bad (_("undefined symbol `%s' in operation setting `%s'"),
983 S_GET_NAME (left), S_GET_NAME (symp));
984 if (seg_right == undefined_section)
985 as_bad (_("undefined symbol `%s' in operation setting `%s'"),
986 S_GET_NAME (right), S_GET_NAME (symp));
987 if (seg_left != undefined_section
988 && seg_right != undefined_section)
989 {
990 if (right)
991 as_bad (_("invalid sections for operation on `%s' and `%s' setting `%s'"),
992 S_GET_NAME (left), S_GET_NAME (right), S_GET_NAME (symp));
993 else
994 as_bad (_("invalid section for operation on `%s' setting `%s'"),
995 S_GET_NAME (left), S_GET_NAME (symp));
996 }
997 }
998 }
999
1000 /* Resolve the value of a symbol. This is called during the final
1001 pass over the symbol table to resolve any symbols with complex
1002 values. */
1003
1004 valueT
1005 resolve_symbol_value (symbolS *symp)
1006 {
1007 int resolved;
1008 valueT final_val = 0;
1009 segT final_seg;
1010
1011 if (LOCAL_SYMBOL_CHECK (symp))
1012 {
1013 struct local_symbol *locsym = (struct local_symbol *) symp;
1014
1015 final_val = locsym->lsy_value;
1016 if (local_symbol_resolved_p (locsym))
1017 return final_val;
1018
1019 final_val += local_symbol_get_frag (locsym)->fr_address / OCTETS_PER_BYTE;
1020
1021 if (finalize_syms)
1022 {
1023 locsym->lsy_value = final_val;
1024 local_symbol_mark_resolved (locsym);
1025 }
1026
1027 return final_val;
1028 }
1029
1030 if (symp->sy_resolved)
1031 {
1032 if (symp->sy_value.X_op == O_constant)
1033 return (valueT) symp->sy_value.X_add_number;
1034 else
1035 return 0;
1036 }
1037
1038 resolved = 0;
1039 final_seg = S_GET_SEGMENT (symp);
1040
1041 if (symp->sy_resolving)
1042 {
1043 if (finalize_syms)
1044 as_bad (_("symbol definition loop encountered at `%s'"),
1045 S_GET_NAME (symp));
1046 final_val = 0;
1047 resolved = 1;
1048 }
1049 #ifdef OBJ_COMPLEX_RELC
1050 else if (final_seg == expr_section
1051 && use_complex_relocs_for (symp))
1052 {
1053 symbolS * relc_symbol = NULL;
1054 char * relc_symbol_name = NULL;
1055
1056 relc_symbol_name = symbol_relc_make_expr (& symp->sy_value);
1057
1058 /* For debugging, print out conversion input & output. */
1059 #ifdef DEBUG_SYMS
1060 print_expr (& symp->sy_value);
1061 if (relc_symbol_name)
1062 fprintf (stderr, "-> relc symbol: %s\n", relc_symbol_name);
1063 #endif
1064
1065 if (relc_symbol_name != NULL)
1066 relc_symbol = symbol_new (relc_symbol_name, undefined_section,
1067 0, & zero_address_frag);
1068
1069 if (relc_symbol == NULL)
1070 {
1071 as_bad (_("cannot convert expression symbol %s to complex relocation"),
1072 S_GET_NAME (symp));
1073 resolved = 0;
1074 }
1075 else
1076 {
1077 symbol_table_insert (relc_symbol);
1078
1079 /* S_CLEAR_EXTERNAL (relc_symbol); */
1080 if (symp->bsym->flags & BSF_SRELC)
1081 relc_symbol->bsym->flags |= BSF_SRELC;
1082 else
1083 relc_symbol->bsym->flags |= BSF_RELC;
1084 /* symp->bsym->flags |= BSF_RELC; */
1085 copy_symbol_attributes (symp, relc_symbol);
1086 symp->sy_value.X_op = O_symbol;
1087 symp->sy_value.X_add_symbol = relc_symbol;
1088 symp->sy_value.X_add_number = 0;
1089 resolved = 1;
1090 }
1091
1092 final_seg = undefined_section;
1093 goto exit_dont_set_value;
1094 }
1095 #endif
1096 else
1097 {
1098 symbolS *add_symbol, *op_symbol;
1099 offsetT left, right;
1100 segT seg_left, seg_right;
1101 operatorT op;
1102 int move_seg_ok;
1103
1104 symp->sy_resolving = 1;
1105
1106 /* Help out with CSE. */
1107 add_symbol = symp->sy_value.X_add_symbol;
1108 op_symbol = symp->sy_value.X_op_symbol;
1109 final_val = symp->sy_value.X_add_number;
1110 op = symp->sy_value.X_op;
1111
1112 switch (op)
1113 {
1114 default:
1115 BAD_CASE (op);
1116 break;
1117
1118 case O_absent:
1119 final_val = 0;
1120 /* Fall through. */
1121
1122 case O_constant:
1123 final_val += symp->sy_frag->fr_address / OCTETS_PER_BYTE;
1124 if (final_seg == expr_section)
1125 final_seg = absolute_section;
1126 resolved = 1;
1127 break;
1128
1129 case O_symbol:
1130 case O_symbol_rva:
1131 left = resolve_symbol_value (add_symbol);
1132 seg_left = S_GET_SEGMENT (add_symbol);
1133 if (finalize_syms)
1134 symp->sy_value.X_op_symbol = NULL;
1135
1136 do_symbol:
1137 if (S_IS_WEAKREFR (symp))
1138 {
1139 assert (final_val == 0);
1140 if (S_IS_WEAKREFR (add_symbol))
1141 {
1142 assert (add_symbol->sy_value.X_op == O_symbol
1143 && add_symbol->sy_value.X_add_number == 0);
1144 add_symbol = add_symbol->sy_value.X_add_symbol;
1145 assert (! S_IS_WEAKREFR (add_symbol));
1146 symp->sy_value.X_add_symbol = add_symbol;
1147 }
1148 }
1149
1150 if (symp->sy_mri_common)
1151 {
1152 /* This is a symbol inside an MRI common section. The
1153 relocation routines are going to handle it specially.
1154 Don't change the value. */
1155 resolved = symbol_resolved_p (add_symbol);
1156 break;
1157 }
1158
1159 if (finalize_syms && final_val == 0)
1160 {
1161 if (LOCAL_SYMBOL_CHECK (add_symbol))
1162 add_symbol = local_symbol_convert ((struct local_symbol *)
1163 add_symbol);
1164 copy_symbol_attributes (symp, add_symbol);
1165 }
1166
1167 /* If we have equated this symbol to an undefined or common
1168 symbol, keep X_op set to O_symbol, and don't change
1169 X_add_number. This permits the routine which writes out
1170 relocation to detect this case, and convert the
1171 relocation to be against the symbol to which this symbol
1172 is equated. */
1173 if (! S_IS_DEFINED (add_symbol)
1174 #if defined (OBJ_COFF) && defined (TE_PE)
1175 || S_IS_WEAK (add_symbol)
1176 #endif
1177 || S_IS_COMMON (add_symbol))
1178 {
1179 if (finalize_syms)
1180 {
1181 symp->sy_value.X_op = O_symbol;
1182 symp->sy_value.X_add_symbol = add_symbol;
1183 symp->sy_value.X_add_number = final_val;
1184 /* Use X_op_symbol as a flag. */
1185 symp->sy_value.X_op_symbol = add_symbol;
1186 final_seg = seg_left;
1187 }
1188 final_val = 0;
1189 resolved = symbol_resolved_p (add_symbol);
1190 symp->sy_resolving = 0;
1191 goto exit_dont_set_value;
1192 }
1193 else if (finalize_syms
1194 && ((final_seg == expr_section && seg_left != expr_section)
1195 || symbol_shadow_p (symp)))
1196 {
1197 /* If the symbol is an expression symbol, do similarly
1198 as for undefined and common syms above. Handles
1199 "sym +/- expr" where "expr" cannot be evaluated
1200 immediately, and we want relocations to be against
1201 "sym", eg. because it is weak. */
1202 symp->sy_value.X_op = O_symbol;
1203 symp->sy_value.X_add_symbol = add_symbol;
1204 symp->sy_value.X_add_number = final_val;
1205 symp->sy_value.X_op_symbol = add_symbol;
1206 final_seg = seg_left;
1207 final_val += symp->sy_frag->fr_address + left;
1208 resolved = symbol_resolved_p (add_symbol);
1209 symp->sy_resolving = 0;
1210 goto exit_dont_set_value;
1211 }
1212 else
1213 {
1214 final_val += symp->sy_frag->fr_address + left;
1215 if (final_seg == expr_section || final_seg == undefined_section)
1216 final_seg = seg_left;
1217 }
1218
1219 resolved = symbol_resolved_p (add_symbol);
1220 if (S_IS_WEAKREFR (symp))
1221 goto exit_dont_set_value;
1222 break;
1223
1224 case O_uminus:
1225 case O_bit_not:
1226 case O_logical_not:
1227 left = resolve_symbol_value (add_symbol);
1228 seg_left = S_GET_SEGMENT (add_symbol);
1229
1230 /* By reducing these to the relevant dyadic operator, we get
1231 !S -> S == 0 permitted on anything,
1232 -S -> 0 - S only permitted on absolute
1233 ~S -> S ^ ~0 only permitted on absolute */
1234 if (op != O_logical_not && seg_left != absolute_section
1235 && finalize_syms)
1236 report_op_error (symp, add_symbol, NULL);
1237
1238 if (final_seg == expr_section || final_seg == undefined_section)
1239 final_seg = absolute_section;
1240
1241 if (op == O_uminus)
1242 left = -left;
1243 else if (op == O_logical_not)
1244 left = !left;
1245 else
1246 left = ~left;
1247
1248 final_val += left + symp->sy_frag->fr_address;
1249
1250 resolved = symbol_resolved_p (add_symbol);
1251 break;
1252
1253 case O_multiply:
1254 case O_divide:
1255 case O_modulus:
1256 case O_left_shift:
1257 case O_right_shift:
1258 case O_bit_inclusive_or:
1259 case O_bit_or_not:
1260 case O_bit_exclusive_or:
1261 case O_bit_and:
1262 case O_add:
1263 case O_subtract:
1264 case O_eq:
1265 case O_ne:
1266 case O_lt:
1267 case O_le:
1268 case O_ge:
1269 case O_gt:
1270 case O_logical_and:
1271 case O_logical_or:
1272 left = resolve_symbol_value (add_symbol);
1273 right = resolve_symbol_value (op_symbol);
1274 seg_left = S_GET_SEGMENT (add_symbol);
1275 seg_right = S_GET_SEGMENT (op_symbol);
1276
1277 /* Simplify addition or subtraction of a constant by folding the
1278 constant into X_add_number. */
1279 if (op == O_add)
1280 {
1281 if (seg_right == absolute_section)
1282 {
1283 final_val += right;
1284 goto do_symbol;
1285 }
1286 else if (seg_left == absolute_section)
1287 {
1288 final_val += left;
1289 add_symbol = op_symbol;
1290 left = right;
1291 seg_left = seg_right;
1292 goto do_symbol;
1293 }
1294 }
1295 else if (op == O_subtract)
1296 {
1297 if (seg_right == absolute_section)
1298 {
1299 final_val -= right;
1300 goto do_symbol;
1301 }
1302 }
1303
1304 move_seg_ok = 1;
1305 /* Equality and non-equality tests are permitted on anything.
1306 Subtraction, and other comparison operators are permitted if
1307 both operands are in the same section. Otherwise, both
1308 operands must be absolute. We already handled the case of
1309 addition or subtraction of a constant above. This will
1310 probably need to be changed for an object file format which
1311 supports arbitrary expressions, such as IEEE-695. */
1312 if (!(seg_left == absolute_section
1313 && seg_right == absolute_section)
1314 && !(op == O_eq || op == O_ne)
1315 && !((op == O_subtract
1316 || op == O_lt || op == O_le || op == O_ge || op == O_gt)
1317 && seg_left == seg_right
1318 && (seg_left != undefined_section
1319 || add_symbol == op_symbol)))
1320 {
1321 /* Don't emit messages unless we're finalizing the symbol value,
1322 otherwise we may get the same message multiple times. */
1323 if (finalize_syms)
1324 report_op_error (symp, add_symbol, op_symbol);
1325 /* However do not move the symbol into the absolute section
1326 if it cannot currently be resolved - this would confuse
1327 other parts of the assembler into believing that the
1328 expression had been evaluated to zero. */
1329 else
1330 move_seg_ok = 0;
1331 }
1332
1333 if (move_seg_ok
1334 && (final_seg == expr_section || final_seg == undefined_section))
1335 final_seg = absolute_section;
1336
1337 /* Check for division by zero. */
1338 if ((op == O_divide || op == O_modulus) && right == 0)
1339 {
1340 /* If seg_right is not absolute_section, then we've
1341 already issued a warning about using a bad symbol. */
1342 if (seg_right == absolute_section && finalize_syms)
1343 {
1344 char *file;
1345 unsigned int line;
1346
1347 if (expr_symbol_where (symp, &file, &line))
1348 as_bad_where (file, line, _("division by zero"));
1349 else
1350 as_bad (_("division by zero when setting `%s'"),
1351 S_GET_NAME (symp));
1352 }
1353
1354 right = 1;
1355 }
1356
1357 switch (symp->sy_value.X_op)
1358 {
1359 case O_multiply: left *= right; break;
1360 case O_divide: left /= right; break;
1361 case O_modulus: left %= right; break;
1362 case O_left_shift: left <<= right; break;
1363 case O_right_shift: left >>= right; break;
1364 case O_bit_inclusive_or: left |= right; break;
1365 case O_bit_or_not: left |= ~right; break;
1366 case O_bit_exclusive_or: left ^= right; break;
1367 case O_bit_and: left &= right; break;
1368 case O_add: left += right; break;
1369 case O_subtract: left -= right; break;
1370 case O_eq:
1371 case O_ne:
1372 left = (left == right && seg_left == seg_right
1373 && (seg_left != undefined_section
1374 || add_symbol == op_symbol)
1375 ? ~ (offsetT) 0 : 0);
1376 if (symp->sy_value.X_op == O_ne)
1377 left = ~left;
1378 break;
1379 case O_lt: left = left < right ? ~ (offsetT) 0 : 0; break;
1380 case O_le: left = left <= right ? ~ (offsetT) 0 : 0; break;
1381 case O_ge: left = left >= right ? ~ (offsetT) 0 : 0; break;
1382 case O_gt: left = left > right ? ~ (offsetT) 0 : 0; break;
1383 case O_logical_and: left = left && right; break;
1384 case O_logical_or: left = left || right; break;
1385 default: abort ();
1386 }
1387
1388 final_val += symp->sy_frag->fr_address + left;
1389 if (final_seg == expr_section || final_seg == undefined_section)
1390 {
1391 if (seg_left == undefined_section
1392 || seg_right == undefined_section)
1393 final_seg = undefined_section;
1394 else if (seg_left == absolute_section)
1395 final_seg = seg_right;
1396 else
1397 final_seg = seg_left;
1398 }
1399 resolved = (symbol_resolved_p (add_symbol)
1400 && symbol_resolved_p (op_symbol));
1401 break;
1402
1403 case O_register:
1404 case O_big:
1405 case O_illegal:
1406 /* Give an error (below) if not in expr_section. We don't
1407 want to worry about expr_section symbols, because they
1408 are fictional (they are created as part of expression
1409 resolution), and any problems may not actually mean
1410 anything. */
1411 break;
1412 }
1413
1414 symp->sy_resolving = 0;
1415 }
1416
1417 if (finalize_syms)
1418 S_SET_VALUE (symp, final_val);
1419
1420 exit_dont_set_value:
1421 /* Always set the segment, even if not finalizing the value.
1422 The segment is used to determine whether a symbol is defined. */
1423 S_SET_SEGMENT (symp, final_seg);
1424
1425 /* Don't worry if we can't resolve an expr_section symbol. */
1426 if (finalize_syms)
1427 {
1428 if (resolved)
1429 symp->sy_resolved = 1;
1430 else if (S_GET_SEGMENT (symp) != expr_section)
1431 {
1432 as_bad (_("can't resolve value for symbol `%s'"),
1433 S_GET_NAME (symp));
1434 symp->sy_resolved = 1;
1435 }
1436 }
1437
1438 return final_val;
1439 }
1440
1441 static void resolve_local_symbol (const char *, PTR);
1442
1443 /* A static function passed to hash_traverse. */
1444
1445 static void
1446 resolve_local_symbol (const char *key ATTRIBUTE_UNUSED, PTR value)
1447 {
1448 if (value != NULL)
1449 resolve_symbol_value (value);
1450 }
1451
1452 /* Resolve all local symbols. */
1453
1454 void
1455 resolve_local_symbol_values (void)
1456 {
1457 hash_traverse (local_hash, resolve_local_symbol);
1458 }
1459
1460 /* Obtain the current value of a symbol without changing any
1461 sub-expressions used. */
1462
1463 int
1464 snapshot_symbol (symbolS **symbolPP, valueT *valueP, segT *segP, fragS **fragPP)
1465 {
1466 symbolS *symbolP = *symbolPP;
1467
1468 if (LOCAL_SYMBOL_CHECK (symbolP))
1469 {
1470 struct local_symbol *locsym = (struct local_symbol *) symbolP;
1471
1472 *valueP = locsym->lsy_value;
1473 *segP = locsym->lsy_section;
1474 *fragPP = local_symbol_get_frag (locsym);
1475 }
1476 else
1477 {
1478 expressionS expr = symbolP->sy_value;
1479
1480 if (!symbolP->sy_resolved && expr.X_op != O_illegal)
1481 {
1482 int resolved;
1483
1484 if (symbolP->sy_resolving)
1485 return 0;
1486 symbolP->sy_resolving = 1;
1487 resolved = resolve_expression (&expr);
1488 symbolP->sy_resolving = 0;
1489 if (!resolved)
1490 return 0;
1491
1492 switch (expr.X_op)
1493 {
1494 case O_constant:
1495 case O_register:
1496 if (!symbol_equated_p (symbolP))
1497 break;
1498 /* Fall thru. */
1499 case O_symbol:
1500 case O_symbol_rva:
1501 symbolP = expr.X_add_symbol;
1502 break;
1503 default:
1504 return 0;
1505 }
1506 }
1507
1508 /* Never change a defined symbol. */
1509 if (symbolP->bsym->section == undefined_section
1510 || symbolP->bsym->section == expr_section)
1511 *symbolPP = symbolP;
1512 *valueP = expr.X_add_number;
1513 *segP = symbolP->bsym->section;
1514 *fragPP = symbolP->sy_frag;
1515
1516 if (*segP == expr_section)
1517 switch (expr.X_op)
1518 {
1519 case O_constant: *segP = absolute_section; break;
1520 case O_register: *segP = reg_section; break;
1521 default: break;
1522 }
1523 }
1524
1525 return 1;
1526 }
1527
1528 /* Dollar labels look like a number followed by a dollar sign. Eg, "42$".
1529 They are *really* local. That is, they go out of scope whenever we see a
1530 label that isn't local. Also, like fb labels, there can be multiple
1531 instances of a dollar label. Therefor, we name encode each instance with
1532 the instance number, keep a list of defined symbols separate from the real
1533 symbol table, and we treat these buggers as a sparse array. */
1534
1535 static long *dollar_labels;
1536 static long *dollar_label_instances;
1537 static char *dollar_label_defines;
1538 static unsigned long dollar_label_count;
1539 static unsigned long dollar_label_max;
1540
1541 int
1542 dollar_label_defined (long label)
1543 {
1544 long *i;
1545
1546 know ((dollar_labels != NULL) || (dollar_label_count == 0));
1547
1548 for (i = dollar_labels; i < dollar_labels + dollar_label_count; ++i)
1549 if (*i == label)
1550 return dollar_label_defines[i - dollar_labels];
1551
1552 /* If we get here, label isn't defined. */
1553 return 0;
1554 }
1555
1556 static long
1557 dollar_label_instance (long label)
1558 {
1559 long *i;
1560
1561 know ((dollar_labels != NULL) || (dollar_label_count == 0));
1562
1563 for (i = dollar_labels; i < dollar_labels + dollar_label_count; ++i)
1564 if (*i == label)
1565 return (dollar_label_instances[i - dollar_labels]);
1566
1567 /* If we get here, we haven't seen the label before.
1568 Therefore its instance count is zero. */
1569 return 0;
1570 }
1571
1572 void
1573 dollar_label_clear (void)
1574 {
1575 memset (dollar_label_defines, '\0', (unsigned int) dollar_label_count);
1576 }
1577
1578 #define DOLLAR_LABEL_BUMP_BY 10
1579
1580 void
1581 define_dollar_label (long label)
1582 {
1583 long *i;
1584
1585 for (i = dollar_labels; i < dollar_labels + dollar_label_count; ++i)
1586 if (*i == label)
1587 {
1588 ++dollar_label_instances[i - dollar_labels];
1589 dollar_label_defines[i - dollar_labels] = 1;
1590 return;
1591 }
1592
1593 /* If we get to here, we don't have label listed yet. */
1594
1595 if (dollar_labels == NULL)
1596 {
1597 dollar_labels = (long *) xmalloc (DOLLAR_LABEL_BUMP_BY * sizeof (long));
1598 dollar_label_instances = (long *) xmalloc (DOLLAR_LABEL_BUMP_BY * sizeof (long));
1599 dollar_label_defines = xmalloc (DOLLAR_LABEL_BUMP_BY);
1600 dollar_label_max = DOLLAR_LABEL_BUMP_BY;
1601 dollar_label_count = 0;
1602 }
1603 else if (dollar_label_count == dollar_label_max)
1604 {
1605 dollar_label_max += DOLLAR_LABEL_BUMP_BY;
1606 dollar_labels = (long *) xrealloc ((char *) dollar_labels,
1607 dollar_label_max * sizeof (long));
1608 dollar_label_instances = (long *) xrealloc ((char *) dollar_label_instances,
1609 dollar_label_max * sizeof (long));
1610 dollar_label_defines = xrealloc (dollar_label_defines, dollar_label_max);
1611 } /* if we needed to grow */
1612
1613 dollar_labels[dollar_label_count] = label;
1614 dollar_label_instances[dollar_label_count] = 1;
1615 dollar_label_defines[dollar_label_count] = 1;
1616 ++dollar_label_count;
1617 }
1618
1619 /* Caller must copy returned name: we re-use the area for the next name.
1620
1621 The mth occurence of label n: is turned into the symbol "Ln^Am"
1622 where n is the label number and m is the instance number. "L" makes
1623 it a label discarded unless debugging and "^A"('\1') ensures no
1624 ordinary symbol SHOULD get the same name as a local label
1625 symbol. The first "4:" is "L4^A1" - the m numbers begin at 1.
1626
1627 fb labels get the same treatment, except that ^B is used in place
1628 of ^A. */
1629
1630 char * /* Return local label name. */
1631 dollar_label_name (register long n, /* we just saw "n$:" : n a number. */
1632 register int augend /* 0 for current instance, 1 for new instance. */)
1633 {
1634 long i;
1635 /* Returned to caller, then copied. Used for created names ("4f"). */
1636 static char symbol_name_build[24];
1637 register char *p;
1638 register char *q;
1639 char symbol_name_temporary[20]; /* Build up a number, BACKWARDS. */
1640
1641 know (n >= 0);
1642 know (augend == 0 || augend == 1);
1643 p = symbol_name_build;
1644 #ifdef LOCAL_LABEL_PREFIX
1645 *p++ = LOCAL_LABEL_PREFIX;
1646 #endif
1647 *p++ = 'L';
1648
1649 /* Next code just does sprintf( {}, "%d", n); */
1650 /* Label number. */
1651 q = symbol_name_temporary;
1652 for (*q++ = 0, i = n; i; ++q)
1653 {
1654 *q = i % 10 + '0';
1655 i /= 10;
1656 }
1657 while ((*p = *--q) != '\0')
1658 ++p;
1659
1660 *p++ = DOLLAR_LABEL_CHAR; /* ^A */
1661
1662 /* Instance number. */
1663 q = symbol_name_temporary;
1664 for (*q++ = 0, i = dollar_label_instance (n) + augend; i; ++q)
1665 {
1666 *q = i % 10 + '0';
1667 i /= 10;
1668 }
1669 while ((*p++ = *--q) != '\0');;
1670
1671 /* The label, as a '\0' ended string, starts at symbol_name_build. */
1672 return symbol_name_build;
1673 }
1674
1675 /* Somebody else's idea of local labels. They are made by "n:" where n
1676 is any decimal digit. Refer to them with
1677 "nb" for previous (backward) n:
1678 or "nf" for next (forward) n:.
1679
1680 We do a little better and let n be any number, not just a single digit, but
1681 since the other guy's assembler only does ten, we treat the first ten
1682 specially.
1683
1684 Like someone else's assembler, we have one set of local label counters for
1685 entire assembly, not one set per (sub)segment like in most assemblers. This
1686 implies that one can refer to a label in another segment, and indeed some
1687 crufty compilers have done just that.
1688
1689 Since there could be a LOT of these things, treat them as a sparse
1690 array. */
1691
1692 #define FB_LABEL_SPECIAL (10)
1693
1694 static long fb_low_counter[FB_LABEL_SPECIAL];
1695 static long *fb_labels;
1696 static long *fb_label_instances;
1697 static long fb_label_count;
1698 static long fb_label_max;
1699
1700 /* This must be more than FB_LABEL_SPECIAL. */
1701 #define FB_LABEL_BUMP_BY (FB_LABEL_SPECIAL + 6)
1702
1703 static void
1704 fb_label_init (void)
1705 {
1706 memset ((void *) fb_low_counter, '\0', sizeof (fb_low_counter));
1707 }
1708
1709 /* Add one to the instance number of this fb label. */
1710
1711 void
1712 fb_label_instance_inc (long label)
1713 {
1714 long *i;
1715
1716 if (label < FB_LABEL_SPECIAL)
1717 {
1718 ++fb_low_counter[label];
1719 return;
1720 }
1721
1722 if (fb_labels != NULL)
1723 {
1724 for (i = fb_labels + FB_LABEL_SPECIAL;
1725 i < fb_labels + fb_label_count; ++i)
1726 {
1727 if (*i == label)
1728 {
1729 ++fb_label_instances[i - fb_labels];
1730 return;
1731 } /* if we find it */
1732 } /* for each existing label */
1733 }
1734
1735 /* If we get to here, we don't have label listed yet. */
1736
1737 if (fb_labels == NULL)
1738 {
1739 fb_labels = (long *) xmalloc (FB_LABEL_BUMP_BY * sizeof (long));
1740 fb_label_instances = (long *) xmalloc (FB_LABEL_BUMP_BY * sizeof (long));
1741 fb_label_max = FB_LABEL_BUMP_BY;
1742 fb_label_count = FB_LABEL_SPECIAL;
1743
1744 }
1745 else if (fb_label_count == fb_label_max)
1746 {
1747 fb_label_max += FB_LABEL_BUMP_BY;
1748 fb_labels = (long *) xrealloc ((char *) fb_labels,
1749 fb_label_max * sizeof (long));
1750 fb_label_instances = (long *) xrealloc ((char *) fb_label_instances,
1751 fb_label_max * sizeof (long));
1752 } /* if we needed to grow */
1753
1754 fb_labels[fb_label_count] = label;
1755 fb_label_instances[fb_label_count] = 1;
1756 ++fb_label_count;
1757 }
1758
1759 static long
1760 fb_label_instance (long label)
1761 {
1762 long *i;
1763
1764 if (label < FB_LABEL_SPECIAL)
1765 {
1766 return (fb_low_counter[label]);
1767 }
1768
1769 if (fb_labels != NULL)
1770 {
1771 for (i = fb_labels + FB_LABEL_SPECIAL;
1772 i < fb_labels + fb_label_count; ++i)
1773 {
1774 if (*i == label)
1775 {
1776 return (fb_label_instances[i - fb_labels]);
1777 } /* if we find it */
1778 } /* for each existing label */
1779 }
1780
1781 /* We didn't find the label, so this must be a reference to the
1782 first instance. */
1783 return 0;
1784 }
1785
1786 /* Caller must copy returned name: we re-use the area for the next name.
1787
1788 The mth occurence of label n: is turned into the symbol "Ln^Bm"
1789 where n is the label number and m is the instance number. "L" makes
1790 it a label discarded unless debugging and "^B"('\2') ensures no
1791 ordinary symbol SHOULD get the same name as a local label
1792 symbol. The first "4:" is "L4^B1" - the m numbers begin at 1.
1793
1794 dollar labels get the same treatment, except that ^A is used in
1795 place of ^B. */
1796
1797 char * /* Return local label name. */
1798 fb_label_name (long n, /* We just saw "n:", "nf" or "nb" : n a number. */
1799 long augend /* 0 for nb, 1 for n:, nf. */)
1800 {
1801 long i;
1802 /* Returned to caller, then copied. Used for created names ("4f"). */
1803 static char symbol_name_build[24];
1804 register char *p;
1805 register char *q;
1806 char symbol_name_temporary[20]; /* Build up a number, BACKWARDS. */
1807
1808 know (n >= 0);
1809 #ifdef TC_MMIX
1810 know ((unsigned long) augend <= 2 /* See mmix_fb_label. */);
1811 #else
1812 know ((unsigned long) augend <= 1);
1813 #endif
1814 p = symbol_name_build;
1815 #ifdef LOCAL_LABEL_PREFIX
1816 *p++ = LOCAL_LABEL_PREFIX;
1817 #endif
1818 *p++ = 'L';
1819
1820 /* Next code just does sprintf( {}, "%d", n); */
1821 /* Label number. */
1822 q = symbol_name_temporary;
1823 for (*q++ = 0, i = n; i; ++q)
1824 {
1825 *q = i % 10 + '0';
1826 i /= 10;
1827 }
1828 while ((*p = *--q) != '\0')
1829 ++p;
1830
1831 *p++ = LOCAL_LABEL_CHAR; /* ^B */
1832
1833 /* Instance number. */
1834 q = symbol_name_temporary;
1835 for (*q++ = 0, i = fb_label_instance (n) + augend; i; ++q)
1836 {
1837 *q = i % 10 + '0';
1838 i /= 10;
1839 }
1840 while ((*p++ = *--q) != '\0');;
1841
1842 /* The label, as a '\0' ended string, starts at symbol_name_build. */
1843 return (symbol_name_build);
1844 }
1845
1846 /* Decode name that may have been generated by foo_label_name() above.
1847 If the name wasn't generated by foo_label_name(), then return it
1848 unaltered. This is used for error messages. */
1849
1850 char *
1851 decode_local_label_name (char *s)
1852 {
1853 char *p;
1854 char *symbol_decode;
1855 int label_number;
1856 int instance_number;
1857 char *type;
1858 const char *message_format;
1859 int index = 0;
1860
1861 #ifdef LOCAL_LABEL_PREFIX
1862 if (s[index] == LOCAL_LABEL_PREFIX)
1863 ++index;
1864 #endif
1865
1866 if (s[index] != 'L')
1867 return s;
1868
1869 for (label_number = 0, p = s + index + 1; ISDIGIT (*p); ++p)
1870 label_number = (10 * label_number) + *p - '0';
1871
1872 if (*p == DOLLAR_LABEL_CHAR)
1873 type = "dollar";
1874 else if (*p == LOCAL_LABEL_CHAR)
1875 type = "fb";
1876 else
1877 return s;
1878
1879 for (instance_number = 0, p++; ISDIGIT (*p); ++p)
1880 instance_number = (10 * instance_number) + *p - '0';
1881
1882 message_format = _("\"%d\" (instance number %d of a %s label)");
1883 symbol_decode = obstack_alloc (&notes, strlen (message_format) + 30);
1884 sprintf (symbol_decode, message_format, label_number, instance_number, type);
1885
1886 return symbol_decode;
1887 }
1888
1889 /* Get the value of a symbol. */
1890
1891 valueT
1892 S_GET_VALUE (symbolS *s)
1893 {
1894 if (LOCAL_SYMBOL_CHECK (s))
1895 return resolve_symbol_value (s);
1896
1897 if (!s->sy_resolved)
1898 {
1899 valueT val = resolve_symbol_value (s);
1900 if (!finalize_syms)
1901 return val;
1902 }
1903 if (S_IS_WEAKREFR (s))
1904 return S_GET_VALUE (s->sy_value.X_add_symbol);
1905
1906 if (s->sy_value.X_op != O_constant)
1907 {
1908 if (! s->sy_resolved
1909 || s->sy_value.X_op != O_symbol
1910 || (S_IS_DEFINED (s) && ! S_IS_COMMON (s)))
1911 as_bad (_("attempt to get value of unresolved symbol `%s'"),
1912 S_GET_NAME (s));
1913 }
1914 return (valueT) s->sy_value.X_add_number;
1915 }
1916
1917 /* Set the value of a symbol. */
1918
1919 void
1920 S_SET_VALUE (symbolS *s, valueT val)
1921 {
1922 if (LOCAL_SYMBOL_CHECK (s))
1923 {
1924 ((struct local_symbol *) s)->lsy_value = val;
1925 return;
1926 }
1927
1928 s->sy_value.X_op = O_constant;
1929 s->sy_value.X_add_number = (offsetT) val;
1930 s->sy_value.X_unsigned = 0;
1931 S_CLEAR_WEAKREFR (s);
1932 }
1933
1934 void
1935 copy_symbol_attributes (symbolS *dest, symbolS *src)
1936 {
1937 if (LOCAL_SYMBOL_CHECK (dest))
1938 dest = local_symbol_convert ((struct local_symbol *) dest);
1939 if (LOCAL_SYMBOL_CHECK (src))
1940 src = local_symbol_convert ((struct local_symbol *) src);
1941
1942 /* In an expression, transfer the settings of these flags.
1943 The user can override later, of course. */
1944 #define COPIED_SYMFLAGS (BSF_FUNCTION | BSF_OBJECT)
1945 dest->bsym->flags |= src->bsym->flags & COPIED_SYMFLAGS;
1946
1947 #ifdef OBJ_COPY_SYMBOL_ATTRIBUTES
1948 OBJ_COPY_SYMBOL_ATTRIBUTES (dest, src);
1949 #endif
1950 }
1951
1952 int
1953 S_IS_FUNCTION (symbolS *s)
1954 {
1955 flagword flags;
1956
1957 if (LOCAL_SYMBOL_CHECK (s))
1958 return 0;
1959
1960 flags = s->bsym->flags;
1961
1962 return (flags & BSF_FUNCTION) != 0;
1963 }
1964
1965 int
1966 S_IS_EXTERNAL (symbolS *s)
1967 {
1968 flagword flags;
1969
1970 if (LOCAL_SYMBOL_CHECK (s))
1971 return 0;
1972
1973 flags = s->bsym->flags;
1974
1975 /* Sanity check. */
1976 if ((flags & BSF_LOCAL) && (flags & BSF_GLOBAL))
1977 abort ();
1978
1979 return (flags & BSF_GLOBAL) != 0;
1980 }
1981
1982 int
1983 S_IS_WEAK (symbolS *s)
1984 {
1985 if (LOCAL_SYMBOL_CHECK (s))
1986 return 0;
1987 /* Conceptually, a weakrefr is weak if the referenced symbol is. We
1988 could probably handle a WEAKREFR as always weak though. E.g., if
1989 the referenced symbol has lost its weak status, there's no reason
1990 to keep handling the weakrefr as if it was weak. */
1991 if (S_IS_WEAKREFR (s))
1992 return S_IS_WEAK (s->sy_value.X_add_symbol);
1993 return (s->bsym->flags & BSF_WEAK) != 0;
1994 }
1995
1996 int
1997 S_IS_WEAKREFR (symbolS *s)
1998 {
1999 if (LOCAL_SYMBOL_CHECK (s))
2000 return 0;
2001 return s->sy_weakrefr != 0;
2002 }
2003
2004 int
2005 S_IS_WEAKREFD (symbolS *s)
2006 {
2007 if (LOCAL_SYMBOL_CHECK (s))
2008 return 0;
2009 return s->sy_weakrefd != 0;
2010 }
2011
2012 int
2013 S_IS_COMMON (symbolS *s)
2014 {
2015 if (LOCAL_SYMBOL_CHECK (s))
2016 return 0;
2017 return bfd_is_com_section (s->bsym->section);
2018 }
2019
2020 int
2021 S_IS_DEFINED (symbolS *s)
2022 {
2023 if (LOCAL_SYMBOL_CHECK (s))
2024 return ((struct local_symbol *) s)->lsy_section != undefined_section;
2025 return s->bsym->section != undefined_section;
2026 }
2027
2028
2029 #ifndef EXTERN_FORCE_RELOC
2030 #define EXTERN_FORCE_RELOC IS_ELF
2031 #endif
2032
2033 /* Return true for symbols that should not be reduced to section
2034 symbols or eliminated from expressions, because they may be
2035 overridden by the linker. */
2036 int
2037 S_FORCE_RELOC (symbolS *s, int strict)
2038 {
2039 if (LOCAL_SYMBOL_CHECK (s))
2040 return ((struct local_symbol *) s)->lsy_section == undefined_section;
2041
2042 return ((strict
2043 && ((s->bsym->flags & BSF_WEAK) != 0
2044 || (EXTERN_FORCE_RELOC
2045 && (s->bsym->flags & BSF_GLOBAL) != 0)))
2046 || s->bsym->section == undefined_section
2047 || bfd_is_com_section (s->bsym->section));
2048 }
2049
2050 int
2051 S_IS_DEBUG (symbolS *s)
2052 {
2053 if (LOCAL_SYMBOL_CHECK (s))
2054 return 0;
2055 if (s->bsym->flags & BSF_DEBUGGING)
2056 return 1;
2057 return 0;
2058 }
2059
2060 int
2061 S_IS_LOCAL (symbolS *s)
2062 {
2063 flagword flags;
2064 const char *name;
2065
2066 if (LOCAL_SYMBOL_CHECK (s))
2067 return 1;
2068
2069 flags = s->bsym->flags;
2070
2071 /* Sanity check. */
2072 if ((flags & BSF_LOCAL) && (flags & BSF_GLOBAL))
2073 abort ();
2074
2075 if (bfd_get_section (s->bsym) == reg_section)
2076 return 1;
2077
2078 if (flag_strip_local_absolute
2079 /* Keep BSF_FILE symbols in order to allow debuggers to identify
2080 the source file even when the object file is stripped. */
2081 && (flags & (BSF_GLOBAL | BSF_FILE)) == 0
2082 && bfd_get_section (s->bsym) == absolute_section)
2083 return 1;
2084
2085 name = S_GET_NAME (s);
2086 return (name != NULL
2087 && ! S_IS_DEBUG (s)
2088 && (strchr (name, DOLLAR_LABEL_CHAR)
2089 || strchr (name, LOCAL_LABEL_CHAR)
2090 || (! flag_keep_locals
2091 && (bfd_is_local_label (stdoutput, s->bsym)
2092 || (flag_mri
2093 && name[0] == '?'
2094 && name[1] == '?')))));
2095 }
2096
2097 int
2098 S_IS_STABD (symbolS *s)
2099 {
2100 return S_GET_NAME (s) == 0;
2101 }
2102
2103 int
2104 S_IS_VOLATILE (const symbolS *s)
2105 {
2106 if (LOCAL_SYMBOL_CHECK (s))
2107 return 0;
2108 return s->sy_volatile;
2109 }
2110
2111 int
2112 S_IS_FORWARD_REF (const symbolS *s)
2113 {
2114 if (LOCAL_SYMBOL_CHECK (s))
2115 return 0;
2116 return s->sy_forward_ref;
2117 }
2118
2119 const char *
2120 S_GET_NAME (symbolS *s)
2121 {
2122 if (LOCAL_SYMBOL_CHECK (s))
2123 return ((struct local_symbol *) s)->lsy_name;
2124 return s->bsym->name;
2125 }
2126
2127 segT
2128 S_GET_SEGMENT (symbolS *s)
2129 {
2130 if (LOCAL_SYMBOL_CHECK (s))
2131 return ((struct local_symbol *) s)->lsy_section;
2132 return s->bsym->section;
2133 }
2134
2135 void
2136 S_SET_SEGMENT (symbolS *s, segT seg)
2137 {
2138 /* Don't reassign section symbols. The direct reason is to prevent seg
2139 faults assigning back to const global symbols such as *ABS*, but it
2140 shouldn't happen anyway. */
2141
2142 if (LOCAL_SYMBOL_CHECK (s))
2143 {
2144 if (seg == reg_section)
2145 s = local_symbol_convert ((struct local_symbol *) s);
2146 else
2147 {
2148 ((struct local_symbol *) s)->lsy_section = seg;
2149 return;
2150 }
2151 }
2152
2153 if (s->bsym->flags & BSF_SECTION_SYM)
2154 {
2155 if (s->bsym->section != seg)
2156 abort ();
2157 }
2158 else
2159 s->bsym->section = seg;
2160 }
2161
2162 void
2163 S_SET_EXTERNAL (symbolS *s)
2164 {
2165 if (LOCAL_SYMBOL_CHECK (s))
2166 s = local_symbol_convert ((struct local_symbol *) s);
2167 if ((s->bsym->flags & BSF_WEAK) != 0)
2168 {
2169 /* Let .weak override .global. */
2170 return;
2171 }
2172 if (s->bsym->flags & BSF_SECTION_SYM)
2173 {
2174 char * file;
2175 unsigned int line;
2176
2177 /* Do not reassign section symbols. */
2178 as_where (& file, & line);
2179 as_warn_where (file, line,
2180 _("section symbols are already global"));
2181 return;
2182 }
2183 s->bsym->flags |= BSF_GLOBAL;
2184 s->bsym->flags &= ~(BSF_LOCAL | BSF_WEAK);
2185
2186 #ifdef USE_UNIQUE
2187 if (! an_external_name && S_GET_NAME(s)[0] != '.')
2188 an_external_name = S_GET_NAME (s);
2189 #endif
2190 }
2191
2192 void
2193 S_CLEAR_EXTERNAL (symbolS *s)
2194 {
2195 if (LOCAL_SYMBOL_CHECK (s))
2196 return;
2197 if ((s->bsym->flags & BSF_WEAK) != 0)
2198 {
2199 /* Let .weak override. */
2200 return;
2201 }
2202 s->bsym->flags |= BSF_LOCAL;
2203 s->bsym->flags &= ~(BSF_GLOBAL | BSF_WEAK);
2204 }
2205
2206 void
2207 S_SET_WEAK (symbolS *s)
2208 {
2209 if (LOCAL_SYMBOL_CHECK (s))
2210 s = local_symbol_convert ((struct local_symbol *) s);
2211 #ifdef obj_set_weak_hook
2212 obj_set_weak_hook (s);
2213 #endif
2214 s->bsym->flags |= BSF_WEAK;
2215 s->bsym->flags &= ~(BSF_GLOBAL | BSF_LOCAL);
2216 }
2217
2218 void
2219 S_SET_WEAKREFR (symbolS *s)
2220 {
2221 if (LOCAL_SYMBOL_CHECK (s))
2222 s = local_symbol_convert ((struct local_symbol *) s);
2223 s->sy_weakrefr = 1;
2224 /* If the alias was already used, make sure we mark the target as
2225 used as well, otherwise it might be dropped from the symbol
2226 table. This may have unintended side effects if the alias is
2227 later redirected to another symbol, such as keeping the unused
2228 previous target in the symbol table. Since it will be weak, it's
2229 not a big deal. */
2230 if (s->sy_used)
2231 symbol_mark_used (s->sy_value.X_add_symbol);
2232 }
2233
2234 void
2235 S_CLEAR_WEAKREFR (symbolS *s)
2236 {
2237 if (LOCAL_SYMBOL_CHECK (s))
2238 return;
2239 s->sy_weakrefr = 0;
2240 }
2241
2242 void
2243 S_SET_WEAKREFD (symbolS *s)
2244 {
2245 if (LOCAL_SYMBOL_CHECK (s))
2246 s = local_symbol_convert ((struct local_symbol *) s);
2247 s->sy_weakrefd = 1;
2248 S_SET_WEAK (s);
2249 }
2250
2251 void
2252 S_CLEAR_WEAKREFD (symbolS *s)
2253 {
2254 if (LOCAL_SYMBOL_CHECK (s))
2255 return;
2256 if (s->sy_weakrefd)
2257 {
2258 s->sy_weakrefd = 0;
2259 /* If a weakref target symbol is weak, then it was never
2260 referenced directly before, not even in a .global directive,
2261 so decay it to local. If it remains undefined, it will be
2262 later turned into a global, like any other undefined
2263 symbol. */
2264 if (s->bsym->flags & BSF_WEAK)
2265 {
2266 #ifdef obj_clear_weak_hook
2267 obj_clear_weak_hook (s);
2268 #endif
2269 s->bsym->flags &= ~BSF_WEAK;
2270 s->bsym->flags |= BSF_LOCAL;
2271 }
2272 }
2273 }
2274
2275 void
2276 S_SET_THREAD_LOCAL (symbolS *s)
2277 {
2278 if (LOCAL_SYMBOL_CHECK (s))
2279 s = local_symbol_convert ((struct local_symbol *) s);
2280 if (bfd_is_com_section (s->bsym->section)
2281 && (s->bsym->flags & BSF_THREAD_LOCAL) != 0)
2282 return;
2283 s->bsym->flags |= BSF_THREAD_LOCAL;
2284 if ((s->bsym->flags & BSF_FUNCTION) != 0)
2285 as_bad (_("Accessing function `%s' as thread-local object"),
2286 S_GET_NAME (s));
2287 else if (! bfd_is_und_section (s->bsym->section)
2288 && (s->bsym->section->flags & SEC_THREAD_LOCAL) == 0)
2289 as_bad (_("Accessing `%s' as thread-local object"),
2290 S_GET_NAME (s));
2291 }
2292
2293 void
2294 S_SET_NAME (symbolS *s, const char *name)
2295 {
2296 if (LOCAL_SYMBOL_CHECK (s))
2297 {
2298 ((struct local_symbol *) s)->lsy_name = name;
2299 return;
2300 }
2301 s->bsym->name = name;
2302 }
2303
2304 void
2305 S_SET_VOLATILE (symbolS *s)
2306 {
2307 if (LOCAL_SYMBOL_CHECK (s))
2308 s = local_symbol_convert ((struct local_symbol *) s);
2309 s->sy_volatile = 1;
2310 }
2311
2312 void
2313 S_CLEAR_VOLATILE (symbolS *s)
2314 {
2315 if (!LOCAL_SYMBOL_CHECK (s))
2316 s->sy_volatile = 0;
2317 }
2318
2319 void
2320 S_SET_FORWARD_REF (symbolS *s)
2321 {
2322 if (LOCAL_SYMBOL_CHECK (s))
2323 s = local_symbol_convert ((struct local_symbol *) s);
2324 s->sy_forward_ref = 1;
2325 }
2326
2327 /* Return the previous symbol in a chain. */
2328
2329 symbolS *
2330 symbol_previous (symbolS *s)
2331 {
2332 if (LOCAL_SYMBOL_CHECK (s))
2333 abort ();
2334 return s->sy_previous;
2335 }
2336
2337 /* Return the next symbol in a chain. */
2338
2339 symbolS *
2340 symbol_next (symbolS *s)
2341 {
2342 if (LOCAL_SYMBOL_CHECK (s))
2343 abort ();
2344 return s->sy_next;
2345 }
2346
2347 /* Return a pointer to the value of a symbol as an expression. */
2348
2349 expressionS *
2350 symbol_get_value_expression (symbolS *s)
2351 {
2352 if (LOCAL_SYMBOL_CHECK (s))
2353 s = local_symbol_convert ((struct local_symbol *) s);
2354 return &s->sy_value;
2355 }
2356
2357 /* Set the value of a symbol to an expression. */
2358
2359 void
2360 symbol_set_value_expression (symbolS *s, const expressionS *exp)
2361 {
2362 if (LOCAL_SYMBOL_CHECK (s))
2363 s = local_symbol_convert ((struct local_symbol *) s);
2364 s->sy_value = *exp;
2365 S_CLEAR_WEAKREFR (s);
2366 }
2367
2368 /* Return a pointer to the X_add_number component of a symbol. */
2369
2370 offsetT *
2371 symbol_X_add_number (symbolS *s)
2372 {
2373 if (LOCAL_SYMBOL_CHECK (s))
2374 return (offsetT *) &((struct local_symbol *) s)->lsy_value;
2375
2376 return &s->sy_value.X_add_number;
2377 }
2378
2379 /* Set the value of SYM to the current position in the current segment. */
2380
2381 void
2382 symbol_set_value_now (symbolS *sym)
2383 {
2384 S_SET_SEGMENT (sym, now_seg);
2385 S_SET_VALUE (sym, frag_now_fix ());
2386 symbol_set_frag (sym, frag_now);
2387 }
2388
2389 /* Set the frag of a symbol. */
2390
2391 void
2392 symbol_set_frag (symbolS *s, fragS *f)
2393 {
2394 if (LOCAL_SYMBOL_CHECK (s))
2395 {
2396 local_symbol_set_frag ((struct local_symbol *) s, f);
2397 return;
2398 }
2399 s->sy_frag = f;
2400 S_CLEAR_WEAKREFR (s);
2401 }
2402
2403 /* Return the frag of a symbol. */
2404
2405 fragS *
2406 symbol_get_frag (symbolS *s)
2407 {
2408 if (LOCAL_SYMBOL_CHECK (s))
2409 return local_symbol_get_frag ((struct local_symbol *) s);
2410 return s->sy_frag;
2411 }
2412
2413 /* Mark a symbol as having been used. */
2414
2415 void
2416 symbol_mark_used (symbolS *s)
2417 {
2418 if (LOCAL_SYMBOL_CHECK (s))
2419 return;
2420 s->sy_used = 1;
2421 if (S_IS_WEAKREFR (s))
2422 symbol_mark_used (s->sy_value.X_add_symbol);
2423 }
2424
2425 /* Clear the mark of whether a symbol has been used. */
2426
2427 void
2428 symbol_clear_used (symbolS *s)
2429 {
2430 if (LOCAL_SYMBOL_CHECK (s))
2431 s = local_symbol_convert ((struct local_symbol *) s);
2432 s->sy_used = 0;
2433 }
2434
2435 /* Return whether a symbol has been used. */
2436
2437 int
2438 symbol_used_p (symbolS *s)
2439 {
2440 if (LOCAL_SYMBOL_CHECK (s))
2441 return 1;
2442 return s->sy_used;
2443 }
2444
2445 /* Mark a symbol as having been used in a reloc. */
2446
2447 void
2448 symbol_mark_used_in_reloc (symbolS *s)
2449 {
2450 if (LOCAL_SYMBOL_CHECK (s))
2451 s = local_symbol_convert ((struct local_symbol *) s);
2452 s->sy_used_in_reloc = 1;
2453 }
2454
2455 /* Clear the mark of whether a symbol has been used in a reloc. */
2456
2457 void
2458 symbol_clear_used_in_reloc (symbolS *s)
2459 {
2460 if (LOCAL_SYMBOL_CHECK (s))
2461 return;
2462 s->sy_used_in_reloc = 0;
2463 }
2464
2465 /* Return whether a symbol has been used in a reloc. */
2466
2467 int
2468 symbol_used_in_reloc_p (symbolS *s)
2469 {
2470 if (LOCAL_SYMBOL_CHECK (s))
2471 return 0;
2472 return s->sy_used_in_reloc;
2473 }
2474
2475 /* Mark a symbol as an MRI common symbol. */
2476
2477 void
2478 symbol_mark_mri_common (symbolS *s)
2479 {
2480 if (LOCAL_SYMBOL_CHECK (s))
2481 s = local_symbol_convert ((struct local_symbol *) s);
2482 s->sy_mri_common = 1;
2483 }
2484
2485 /* Clear the mark of whether a symbol is an MRI common symbol. */
2486
2487 void
2488 symbol_clear_mri_common (symbolS *s)
2489 {
2490 if (LOCAL_SYMBOL_CHECK (s))
2491 return;
2492 s->sy_mri_common = 0;
2493 }
2494
2495 /* Return whether a symbol is an MRI common symbol. */
2496
2497 int
2498 symbol_mri_common_p (symbolS *s)
2499 {
2500 if (LOCAL_SYMBOL_CHECK (s))
2501 return 0;
2502 return s->sy_mri_common;
2503 }
2504
2505 /* Mark a symbol as having been written. */
2506
2507 void
2508 symbol_mark_written (symbolS *s)
2509 {
2510 if (LOCAL_SYMBOL_CHECK (s))
2511 return;
2512 s->written = 1;
2513 }
2514
2515 /* Clear the mark of whether a symbol has been written. */
2516
2517 void
2518 symbol_clear_written (symbolS *s)
2519 {
2520 if (LOCAL_SYMBOL_CHECK (s))
2521 return;
2522 s->written = 0;
2523 }
2524
2525 /* Return whether a symbol has been written. */
2526
2527 int
2528 symbol_written_p (symbolS *s)
2529 {
2530 if (LOCAL_SYMBOL_CHECK (s))
2531 return 0;
2532 return s->written;
2533 }
2534
2535 /* Mark a symbol has having been resolved. */
2536
2537 void
2538 symbol_mark_resolved (symbolS *s)
2539 {
2540 if (LOCAL_SYMBOL_CHECK (s))
2541 {
2542 local_symbol_mark_resolved ((struct local_symbol *) s);
2543 return;
2544 }
2545 s->sy_resolved = 1;
2546 }
2547
2548 /* Return whether a symbol has been resolved. */
2549
2550 int
2551 symbol_resolved_p (symbolS *s)
2552 {
2553 if (LOCAL_SYMBOL_CHECK (s))
2554 return local_symbol_resolved_p ((struct local_symbol *) s);
2555 return s->sy_resolved;
2556 }
2557
2558 /* Return whether a symbol is a section symbol. */
2559
2560 int
2561 symbol_section_p (symbolS *s ATTRIBUTE_UNUSED)
2562 {
2563 if (LOCAL_SYMBOL_CHECK (s))
2564 return 0;
2565 return (s->bsym->flags & BSF_SECTION_SYM) != 0;
2566 }
2567
2568 /* Return whether a symbol is equated to another symbol. */
2569
2570 int
2571 symbol_equated_p (symbolS *s)
2572 {
2573 if (LOCAL_SYMBOL_CHECK (s))
2574 return 0;
2575 return s->sy_value.X_op == O_symbol;
2576 }
2577
2578 /* Return whether a symbol is equated to another symbol, and should be
2579 treated specially when writing out relocs. */
2580
2581 int
2582 symbol_equated_reloc_p (symbolS *s)
2583 {
2584 if (LOCAL_SYMBOL_CHECK (s))
2585 return 0;
2586 /* X_op_symbol, normally not used for O_symbol, is set by
2587 resolve_symbol_value to flag expression syms that have been
2588 equated. */
2589 return (s->sy_value.X_op == O_symbol
2590 #if defined (OBJ_COFF) && defined (TE_PE)
2591 && ! S_IS_WEAK (s)
2592 #endif
2593 && ((s->sy_resolved && s->sy_value.X_op_symbol != NULL)
2594 || ! S_IS_DEFINED (s)
2595 || S_IS_COMMON (s)));
2596 }
2597
2598 /* Return whether a symbol has a constant value. */
2599
2600 int
2601 symbol_constant_p (symbolS *s)
2602 {
2603 if (LOCAL_SYMBOL_CHECK (s))
2604 return 1;
2605 return s->sy_value.X_op == O_constant;
2606 }
2607
2608 /* Return whether a symbol was cloned and thus removed from the global
2609 symbol list. */
2610
2611 int
2612 symbol_shadow_p (symbolS *s)
2613 {
2614 if (LOCAL_SYMBOL_CHECK (s))
2615 return 0;
2616 return s->sy_next == s;
2617 }
2618
2619 /* Return the BFD symbol for a symbol. */
2620
2621 asymbol *
2622 symbol_get_bfdsym (symbolS *s)
2623 {
2624 if (LOCAL_SYMBOL_CHECK (s))
2625 s = local_symbol_convert ((struct local_symbol *) s);
2626 return s->bsym;
2627 }
2628
2629 /* Set the BFD symbol for a symbol. */
2630
2631 void
2632 symbol_set_bfdsym (symbolS *s, asymbol *bsym)
2633 {
2634 if (LOCAL_SYMBOL_CHECK (s))
2635 s = local_symbol_convert ((struct local_symbol *) s);
2636 /* Usually, it is harmless to reset a symbol to a BFD section
2637 symbol. For example, obj_elf_change_section sets the BFD symbol
2638 of an old symbol with the newly created section symbol. But when
2639 we have multiple sections with the same name, the newly created
2640 section may have the same name as an old section. We check if the
2641 old symbol has been already marked as a section symbol before
2642 resetting it. */
2643 if ((s->bsym->flags & BSF_SECTION_SYM) == 0)
2644 s->bsym = bsym;
2645 /* else XXX - What do we do now ? */
2646 }
2647
2648 #ifdef OBJ_SYMFIELD_TYPE
2649
2650 /* Get a pointer to the object format information for a symbol. */
2651
2652 OBJ_SYMFIELD_TYPE *
2653 symbol_get_obj (symbolS *s)
2654 {
2655 if (LOCAL_SYMBOL_CHECK (s))
2656 s = local_symbol_convert ((struct local_symbol *) s);
2657 return &s->sy_obj;
2658 }
2659
2660 /* Set the object format information for a symbol. */
2661
2662 void
2663 symbol_set_obj (symbolS *s, OBJ_SYMFIELD_TYPE *o)
2664 {
2665 if (LOCAL_SYMBOL_CHECK (s))
2666 s = local_symbol_convert ((struct local_symbol *) s);
2667 s->sy_obj = *o;
2668 }
2669
2670 #endif /* OBJ_SYMFIELD_TYPE */
2671
2672 #ifdef TC_SYMFIELD_TYPE
2673
2674 /* Get a pointer to the processor information for a symbol. */
2675
2676 TC_SYMFIELD_TYPE *
2677 symbol_get_tc (symbolS *s)
2678 {
2679 if (LOCAL_SYMBOL_CHECK (s))
2680 s = local_symbol_convert ((struct local_symbol *) s);
2681 return &s->sy_tc;
2682 }
2683
2684 /* Set the processor information for a symbol. */
2685
2686 void
2687 symbol_set_tc (symbolS *s, TC_SYMFIELD_TYPE *o)
2688 {
2689 if (LOCAL_SYMBOL_CHECK (s))
2690 s = local_symbol_convert ((struct local_symbol *) s);
2691 s->sy_tc = *o;
2692 }
2693
2694 #endif /* TC_SYMFIELD_TYPE */
2695
2696 void
2697 symbol_begin (void)
2698 {
2699 symbol_lastP = NULL;
2700 symbol_rootP = NULL; /* In case we have 0 symbols (!!) */
2701 sy_hash = hash_new ();
2702 local_hash = hash_new ();
2703
2704 memset ((char *) (&abs_symbol), '\0', sizeof (abs_symbol));
2705 #if defined (EMIT_SECTION_SYMBOLS) || !defined (RELOC_REQUIRES_SYMBOL)
2706 abs_symbol.bsym = bfd_abs_section.symbol;
2707 #endif
2708 abs_symbol.sy_value.X_op = O_constant;
2709 abs_symbol.sy_frag = &zero_address_frag;
2710
2711 if (LOCAL_LABELS_FB)
2712 fb_label_init ();
2713 }
2714 \f
2715 int indent_level;
2716
2717 /* Maximum indent level.
2718 Available for modification inside a gdb session. */
2719 static int max_indent_level = 8;
2720
2721 void
2722 print_symbol_value_1 (FILE *file, symbolS *sym)
2723 {
2724 const char *name = S_GET_NAME (sym);
2725 if (!name || !name[0])
2726 name = "(unnamed)";
2727 fprintf (file, "sym %lx %s", (unsigned long) sym, name);
2728
2729 if (LOCAL_SYMBOL_CHECK (sym))
2730 {
2731 struct local_symbol *locsym = (struct local_symbol *) sym;
2732 if (local_symbol_get_frag (locsym) != &zero_address_frag
2733 && local_symbol_get_frag (locsym) != NULL)
2734 fprintf (file, " frag %lx", (long) local_symbol_get_frag (locsym));
2735 if (local_symbol_resolved_p (locsym))
2736 fprintf (file, " resolved");
2737 fprintf (file, " local");
2738 }
2739 else
2740 {
2741 if (sym->sy_frag != &zero_address_frag)
2742 fprintf (file, " frag %lx", (long) sym->sy_frag);
2743 if (sym->written)
2744 fprintf (file, " written");
2745 if (sym->sy_resolved)
2746 fprintf (file, " resolved");
2747 else if (sym->sy_resolving)
2748 fprintf (file, " resolving");
2749 if (sym->sy_used_in_reloc)
2750 fprintf (file, " used-in-reloc");
2751 if (sym->sy_used)
2752 fprintf (file, " used");
2753 if (S_IS_LOCAL (sym))
2754 fprintf (file, " local");
2755 if (S_IS_EXTERNAL (sym))
2756 fprintf (file, " extern");
2757 if (S_IS_WEAK (sym))
2758 fprintf (file, " weak");
2759 if (S_IS_DEBUG (sym))
2760 fprintf (file, " debug");
2761 if (S_IS_DEFINED (sym))
2762 fprintf (file, " defined");
2763 }
2764 if (S_IS_WEAKREFR (sym))
2765 fprintf (file, " weakrefr");
2766 if (S_IS_WEAKREFD (sym))
2767 fprintf (file, " weakrefd");
2768 fprintf (file, " %s", segment_name (S_GET_SEGMENT (sym)));
2769 if (symbol_resolved_p (sym))
2770 {
2771 segT s = S_GET_SEGMENT (sym);
2772
2773 if (s != undefined_section
2774 && s != expr_section)
2775 fprintf (file, " %lx", (long) S_GET_VALUE (sym));
2776 }
2777 else if (indent_level < max_indent_level
2778 && S_GET_SEGMENT (sym) != undefined_section)
2779 {
2780 indent_level++;
2781 fprintf (file, "\n%*s<", indent_level * 4, "");
2782 if (LOCAL_SYMBOL_CHECK (sym))
2783 fprintf (file, "constant %lx",
2784 (long) ((struct local_symbol *) sym)->lsy_value);
2785 else
2786 print_expr_1 (file, &sym->sy_value);
2787 fprintf (file, ">");
2788 indent_level--;
2789 }
2790 fflush (file);
2791 }
2792
2793 void
2794 print_symbol_value (symbolS *sym)
2795 {
2796 indent_level = 0;
2797 print_symbol_value_1 (stderr, sym);
2798 fprintf (stderr, "\n");
2799 }
2800
2801 static void
2802 print_binary (FILE *file, const char *name, expressionS *exp)
2803 {
2804 indent_level++;
2805 fprintf (file, "%s\n%*s<", name, indent_level * 4, "");
2806 print_symbol_value_1 (file, exp->X_add_symbol);
2807 fprintf (file, ">\n%*s<", indent_level * 4, "");
2808 print_symbol_value_1 (file, exp->X_op_symbol);
2809 fprintf (file, ">");
2810 indent_level--;
2811 }
2812
2813 void
2814 print_expr_1 (FILE *file, expressionS *exp)
2815 {
2816 fprintf (file, "expr %lx ", (long) exp);
2817 switch (exp->X_op)
2818 {
2819 case O_illegal:
2820 fprintf (file, "illegal");
2821 break;
2822 case O_absent:
2823 fprintf (file, "absent");
2824 break;
2825 case O_constant:
2826 fprintf (file, "constant %lx", (long) exp->X_add_number);
2827 break;
2828 case O_symbol:
2829 indent_level++;
2830 fprintf (file, "symbol\n%*s<", indent_level * 4, "");
2831 print_symbol_value_1 (file, exp->X_add_symbol);
2832 fprintf (file, ">");
2833 maybe_print_addnum:
2834 if (exp->X_add_number)
2835 fprintf (file, "\n%*s%lx", indent_level * 4, "",
2836 (long) exp->X_add_number);
2837 indent_level--;
2838 break;
2839 case O_register:
2840 fprintf (file, "register #%d", (int) exp->X_add_number);
2841 break;
2842 case O_big:
2843 fprintf (file, "big");
2844 break;
2845 case O_uminus:
2846 fprintf (file, "uminus -<");
2847 indent_level++;
2848 print_symbol_value_1 (file, exp->X_add_symbol);
2849 fprintf (file, ">");
2850 goto maybe_print_addnum;
2851 case O_bit_not:
2852 fprintf (file, "bit_not");
2853 break;
2854 case O_multiply:
2855 print_binary (file, "multiply", exp);
2856 break;
2857 case O_divide:
2858 print_binary (file, "divide", exp);
2859 break;
2860 case O_modulus:
2861 print_binary (file, "modulus", exp);
2862 break;
2863 case O_left_shift:
2864 print_binary (file, "lshift", exp);
2865 break;
2866 case O_right_shift:
2867 print_binary (file, "rshift", exp);
2868 break;
2869 case O_bit_inclusive_or:
2870 print_binary (file, "bit_ior", exp);
2871 break;
2872 case O_bit_exclusive_or:
2873 print_binary (file, "bit_xor", exp);
2874 break;
2875 case O_bit_and:
2876 print_binary (file, "bit_and", exp);
2877 break;
2878 case O_eq:
2879 print_binary (file, "eq", exp);
2880 break;
2881 case O_ne:
2882 print_binary (file, "ne", exp);
2883 break;
2884 case O_lt:
2885 print_binary (file, "lt", exp);
2886 break;
2887 case O_le:
2888 print_binary (file, "le", exp);
2889 break;
2890 case O_ge:
2891 print_binary (file, "ge", exp);
2892 break;
2893 case O_gt:
2894 print_binary (file, "gt", exp);
2895 break;
2896 case O_logical_and:
2897 print_binary (file, "logical_and", exp);
2898 break;
2899 case O_logical_or:
2900 print_binary (file, "logical_or", exp);
2901 break;
2902 case O_add:
2903 indent_level++;
2904 fprintf (file, "add\n%*s<", indent_level * 4, "");
2905 print_symbol_value_1 (file, exp->X_add_symbol);
2906 fprintf (file, ">\n%*s<", indent_level * 4, "");
2907 print_symbol_value_1 (file, exp->X_op_symbol);
2908 fprintf (file, ">");
2909 goto maybe_print_addnum;
2910 case O_subtract:
2911 indent_level++;
2912 fprintf (file, "subtract\n%*s<", indent_level * 4, "");
2913 print_symbol_value_1 (file, exp->X_add_symbol);
2914 fprintf (file, ">\n%*s<", indent_level * 4, "");
2915 print_symbol_value_1 (file, exp->X_op_symbol);
2916 fprintf (file, ">");
2917 goto maybe_print_addnum;
2918 default:
2919 fprintf (file, "{unknown opcode %d}", (int) exp->X_op);
2920 break;
2921 }
2922 fflush (stdout);
2923 }
2924
2925 void
2926 print_expr (expressionS *exp)
2927 {
2928 print_expr_1 (stderr, exp);
2929 fprintf (stderr, "\n");
2930 }
2931
2932 void
2933 symbol_print_statistics (FILE *file)
2934 {
2935 hash_print_statistics (file, "symbol table", sy_hash);
2936 hash_print_statistics (file, "mini local symbol table", local_hash);
2937 fprintf (file, "%lu mini local symbols created, %lu converted\n",
2938 local_symbol_count, local_symbol_conversion_count);
2939 }
2940
2941 #ifdef OBJ_COMPLEX_RELC
2942
2943 /* Convert given symbol to a new complex-relocation symbol name. This
2944 may bee a recursive function, since it might be called for non-leaf
2945 nodes (plain symbols) in the expression tree. The caller owns the
2946 returning string, so should free() it eventually. Errors are
2947 indicated via as_bad() and a NULL return value. The given symbol
2948 is marked with sy_used_in_reloc. */
2949
2950 char *
2951 symbol_relc_make_sym (symbolS * sym)
2952 {
2953 char * terminal = NULL;
2954 const char * sname;
2955 char typetag;
2956 int sname_len;
2957
2958 assert (sym != NULL);
2959
2960 /* Recurse to symbol_relc_make_expr if this symbol
2961 is defined as an expression or a plain value. */
2962 if ( S_GET_SEGMENT (sym) == expr_section
2963 || S_GET_SEGMENT (sym) == absolute_section)
2964 return symbol_relc_make_expr (& sym->sy_value);
2965
2966 /* This may be a "fake symbol" L0\001, referring to ".".
2967 Write out a special null symbol to refer to this position. */
2968 if (! strcmp (S_GET_NAME (sym), FAKE_LABEL_NAME))
2969 return xstrdup (".");
2970
2971 /* We hope this is a plain leaf symbol. Construct the encoding
2972 as {S,s}II...:CCCCCCC....
2973 where 'S'/'s' means section symbol / plain symbol
2974 III is decimal for the symbol name length
2975 CCC is the symbol name itself. */
2976 symbol_mark_used_in_reloc (sym);
2977
2978 sname = S_GET_NAME (sym);
2979 sname_len = strlen (sname);
2980 typetag = symbol_section_p (sym) ? 'S' : 's';
2981
2982 terminal = xmalloc (1 /* S or s */
2983 + 8 /* sname_len in decimal */
2984 + 1 /* _ spacer */
2985 + sname_len /* name itself */
2986 + 1 /* \0 */ );
2987
2988 sprintf (terminal, "%c%d:%s", typetag, sname_len, sname);
2989 return terminal;
2990 }
2991
2992 /* Convert given value to a new complex-relocation symbol name. This
2993 is a non-recursive function, since it is be called for leaf nodes
2994 (plain values) in the expression tree. The caller owns the
2995 returning string, so should free() it eventually. No errors. */
2996
2997 char *
2998 symbol_relc_make_value (offsetT val)
2999 {
3000 char * terminal = xmalloc (28); /* Enough for long long. */
3001
3002 terminal[0] = '#';
3003 sprintf_vma (& terminal[1], val);
3004 return terminal;
3005 }
3006
3007 /* Convert given expression to a new complex-relocation symbol name.
3008 This is a recursive function, since it traverses the entire given
3009 expression tree. The caller owns the returning string, so should
3010 free() it eventually. Errors are indicated via as_bad() and a NULL
3011 return value. */
3012
3013 char *
3014 symbol_relc_make_expr (expressionS * exp)
3015 {
3016 char * opstr = NULL; /* Operator prefix string. */
3017 int arity = 0; /* Arity of this operator. */
3018 char * operands[3]; /* Up to three operands. */
3019 char * concat_string = NULL;
3020
3021 operands[0] = operands[1] = operands[2] = NULL;
3022
3023 assert (exp != NULL);
3024
3025 /* Match known operators -> fill in opstr, arity, operands[] and fall
3026 through to construct subexpression fragments; may instead return
3027 string directly for leaf nodes. */
3028
3029 /* See expr.h for the meaning of all these enums. Many operators
3030 have an unnatural arity (X_add_number implicitly added). The
3031 conversion logic expands them to explicit "+" subexpressions. */
3032
3033 switch (exp->X_op)
3034 {
3035 default:
3036 as_bad ("Unknown expression operator (enum %d)", exp->X_op);
3037 break;
3038
3039 /* Leaf nodes. */
3040 case O_constant:
3041 return symbol_relc_make_value (exp->X_add_number);
3042
3043 case O_symbol:
3044 if (exp->X_add_number)
3045 {
3046 arity = 2;
3047 opstr = "+";
3048 operands[0] = symbol_relc_make_sym (exp->X_add_symbol);
3049 operands[1] = symbol_relc_make_value (exp->X_add_number);
3050 break;
3051 }
3052 else
3053 return symbol_relc_make_sym (exp->X_add_symbol);
3054
3055 /* Helper macros for nesting nodes. */
3056
3057 #define HANDLE_XADD_OPT1(str_) \
3058 if (exp->X_add_number) \
3059 { \
3060 arity = 2; \
3061 opstr = "+:" str_; \
3062 operands[0] = symbol_relc_make_sym (exp->X_add_symbol); \
3063 operands[1] = symbol_relc_make_value (exp->X_add_number); \
3064 break; \
3065 } \
3066 else \
3067 { \
3068 arity = 1; \
3069 opstr = str_; \
3070 operands[0] = symbol_relc_make_sym (exp->X_add_symbol); \
3071 } \
3072 break
3073
3074 #define HANDLE_XADD_OPT2(str_) \
3075 if (exp->X_add_number) \
3076 { \
3077 arity = 3; \
3078 opstr = "+:" str_; \
3079 operands[0] = symbol_relc_make_sym (exp->X_add_symbol); \
3080 operands[1] = symbol_relc_make_sym (exp->X_op_symbol); \
3081 operands[2] = symbol_relc_make_value (exp->X_add_number); \
3082 } \
3083 else \
3084 { \
3085 arity = 2; \
3086 opstr = str_; \
3087 operands[0] = symbol_relc_make_sym (exp->X_add_symbol); \
3088 operands[1] = symbol_relc_make_sym (exp->X_op_symbol); \
3089 } \
3090 break
3091
3092 /* Nesting nodes. */
3093
3094 case O_uminus: HANDLE_XADD_OPT1 ("0-");
3095 case O_bit_not: HANDLE_XADD_OPT1 ("~");
3096 case O_logical_not: HANDLE_XADD_OPT1 ("!");
3097 case O_multiply: HANDLE_XADD_OPT2 ("*");
3098 case O_divide: HANDLE_XADD_OPT2 ("/");
3099 case O_modulus: HANDLE_XADD_OPT2 ("%");
3100 case O_left_shift: HANDLE_XADD_OPT2 ("<<");
3101 case O_right_shift: HANDLE_XADD_OPT2 (">>");
3102 case O_bit_inclusive_or: HANDLE_XADD_OPT2 ("|");
3103 case O_bit_exclusive_or: HANDLE_XADD_OPT2 ("^");
3104 case O_bit_and: HANDLE_XADD_OPT2 ("&");
3105 case O_add: HANDLE_XADD_OPT2 ("+");
3106 case O_subtract: HANDLE_XADD_OPT2 ("-");
3107 case O_eq: HANDLE_XADD_OPT2 ("==");
3108 case O_ne: HANDLE_XADD_OPT2 ("!=");
3109 case O_lt: HANDLE_XADD_OPT2 ("<");
3110 case O_le: HANDLE_XADD_OPT2 ("<=");
3111 case O_ge: HANDLE_XADD_OPT2 (">=");
3112 case O_gt: HANDLE_XADD_OPT2 (">");
3113 case O_logical_and: HANDLE_XADD_OPT2 ("&&");
3114 case O_logical_or: HANDLE_XADD_OPT2 ("||");
3115 }
3116
3117 /* Validate & reject early. */
3118 if (arity >= 1 && ((operands[0] == NULL) || (strlen (operands[0]) == 0)))
3119 opstr = NULL;
3120 if (arity >= 2 && ((operands[1] == NULL) || (strlen (operands[1]) == 0)))
3121 opstr = NULL;
3122 if (arity >= 3 && ((operands[2] == NULL) || (strlen (operands[2]) == 0)))
3123 opstr = NULL;
3124
3125 if (opstr == NULL)
3126 concat_string = NULL;
3127 else
3128 {
3129 /* Allocate new string; include inter-operand padding gaps etc. */
3130 concat_string = xmalloc (strlen (opstr)
3131 + 1
3132 + (arity >= 1 ? (strlen (operands[0]) + 1 ) : 0)
3133 + (arity >= 2 ? (strlen (operands[1]) + 1 ) : 0)
3134 + (arity >= 3 ? (strlen (operands[2]) + 0 ) : 0)
3135 + 1);
3136 assert (concat_string != NULL);
3137
3138 /* Format the thing. */
3139 sprintf (concat_string,
3140 (arity == 0 ? "%s" :
3141 arity == 1 ? "%s:%s" :
3142 arity == 2 ? "%s:%s:%s" :
3143 /* arity == 3 */ "%s:%s:%s:%s"),
3144 opstr, operands[0], operands[1], operands[2]);
3145 }
3146
3147 /* Free operand strings (not opstr). */
3148 if (arity >= 1) xfree (operands[0]);
3149 if (arity >= 2) xfree (operands[1]);
3150 if (arity >= 3) xfree (operands[2]);
3151
3152 return concat_string;
3153 }
3154
3155 #endif
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