gfortran.texi: Add link to GFortran apps
[gcc.git] / gcc / fortran / symbol.c
1 /* Maintain binary trees of symbols.
2 Copyright (C) 2000, 2001, 2002, 2003, 2004, 2005, 2006 Free Software
3 Foundation, Inc.
4 Contributed by Andy Vaught
5
6 This file is part of GCC.
7
8 GCC is free software; you can redistribute it and/or modify it under
9 the terms of the GNU General Public License as published by the Free
10 Software Foundation; either version 2, or (at your option) any later
11 version.
12
13 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
14 WARRANTY; without even the implied warranty of MERCHANTABILITY or
15 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
16 for more details.
17
18 You should have received a copy of the GNU General Public License
19 along with GCC; 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
24 #include "config.h"
25 #include "system.h"
26 #include "flags.h"
27 #include "gfortran.h"
28 #include "parse.h"
29
30 /* Strings for all symbol attributes. We use these for dumping the
31 parse tree, in error messages, and also when reading and writing
32 modules. */
33
34 const mstring flavors[] =
35 {
36 minit ("UNKNOWN-FL", FL_UNKNOWN), minit ("PROGRAM", FL_PROGRAM),
37 minit ("BLOCK-DATA", FL_BLOCK_DATA), minit ("MODULE", FL_MODULE),
38 minit ("VARIABLE", FL_VARIABLE), minit ("PARAMETER", FL_PARAMETER),
39 minit ("LABEL", FL_LABEL), minit ("PROCEDURE", FL_PROCEDURE),
40 minit ("DERIVED", FL_DERIVED), minit ("NAMELIST", FL_NAMELIST),
41 minit (NULL, -1)
42 };
43
44 const mstring procedures[] =
45 {
46 minit ("UNKNOWN-PROC", PROC_UNKNOWN),
47 minit ("MODULE-PROC", PROC_MODULE),
48 minit ("INTERNAL-PROC", PROC_INTERNAL),
49 minit ("DUMMY-PROC", PROC_DUMMY),
50 minit ("INTRINSIC-PROC", PROC_INTRINSIC),
51 minit ("EXTERNAL-PROC", PROC_EXTERNAL),
52 minit ("STATEMENT-PROC", PROC_ST_FUNCTION),
53 minit (NULL, -1)
54 };
55
56 const mstring intents[] =
57 {
58 minit ("UNKNOWN-INTENT", INTENT_UNKNOWN),
59 minit ("IN", INTENT_IN),
60 minit ("OUT", INTENT_OUT),
61 minit ("INOUT", INTENT_INOUT),
62 minit (NULL, -1)
63 };
64
65 const mstring access_types[] =
66 {
67 minit ("UNKNOWN-ACCESS", ACCESS_UNKNOWN),
68 minit ("PUBLIC", ACCESS_PUBLIC),
69 minit ("PRIVATE", ACCESS_PRIVATE),
70 minit (NULL, -1)
71 };
72
73 const mstring ifsrc_types[] =
74 {
75 minit ("UNKNOWN", IFSRC_UNKNOWN),
76 minit ("DECL", IFSRC_DECL),
77 minit ("BODY", IFSRC_IFBODY),
78 minit ("USAGE", IFSRC_USAGE)
79 };
80
81
82 /* This is to make sure the backend generates setup code in the correct
83 order. */
84
85 static int next_dummy_order = 1;
86
87
88 gfc_namespace *gfc_current_ns;
89
90 gfc_gsymbol *gfc_gsym_root = NULL;
91
92 static gfc_symbol *changed_syms = NULL;
93
94
95 /*********** IMPLICIT NONE and IMPLICIT statement handlers ***********/
96
97 /* The following static variable indicates whether a particular element has
98 been explicitly set or not. */
99
100 static int new_flag[GFC_LETTERS];
101
102
103 /* Handle a correctly parsed IMPLICIT NONE. */
104
105 void
106 gfc_set_implicit_none (void)
107 {
108 int i;
109
110 if (gfc_current_ns->seen_implicit_none)
111 {
112 gfc_error ("Duplicate IMPLICIT NONE statement at %C");
113 return;
114 }
115
116 gfc_current_ns->seen_implicit_none = 1;
117
118 for (i = 0; i < GFC_LETTERS; i++)
119 {
120 gfc_clear_ts (&gfc_current_ns->default_type[i]);
121 gfc_current_ns->set_flag[i] = 1;
122 }
123 }
124
125
126 /* Reset the implicit range flags. */
127
128 void
129 gfc_clear_new_implicit (void)
130 {
131 int i;
132
133 for (i = 0; i < GFC_LETTERS; i++)
134 new_flag[i] = 0;
135 }
136
137
138 /* Prepare for a new implicit range. Sets flags in new_flag[]. */
139
140 try
141 gfc_add_new_implicit_range (int c1, int c2)
142 {
143 int i;
144
145 c1 -= 'a';
146 c2 -= 'a';
147
148 for (i = c1; i <= c2; i++)
149 {
150 if (new_flag[i])
151 {
152 gfc_error ("Letter '%c' already set in IMPLICIT statement at %C",
153 i + 'A');
154 return FAILURE;
155 }
156
157 new_flag[i] = 1;
158 }
159
160 return SUCCESS;
161 }
162
163
164 /* Add a matched implicit range for gfc_set_implicit(). Check if merging
165 the new implicit types back into the existing types will work. */
166
167 try
168 gfc_merge_new_implicit (gfc_typespec * ts)
169 {
170 int i;
171
172 if (gfc_current_ns->seen_implicit_none)
173 {
174 gfc_error ("Cannot specify IMPLICIT at %C after IMPLICIT NONE");
175 return FAILURE;
176 }
177
178 for (i = 0; i < GFC_LETTERS; i++)
179 {
180 if (new_flag[i])
181 {
182
183 if (gfc_current_ns->set_flag[i])
184 {
185 gfc_error ("Letter %c already has an IMPLICIT type at %C",
186 i + 'A');
187 return FAILURE;
188 }
189 gfc_current_ns->default_type[i] = *ts;
190 gfc_current_ns->set_flag[i] = 1;
191 }
192 }
193 return SUCCESS;
194 }
195
196
197 /* Given a symbol, return a pointer to the typespec for its default type. */
198
199 gfc_typespec *
200 gfc_get_default_type (gfc_symbol * sym, gfc_namespace * ns)
201 {
202 char letter;
203
204 letter = sym->name[0];
205 if (letter < 'a' || letter > 'z')
206 gfc_internal_error ("gfc_get_default_type(): Bad symbol");
207
208 if (ns == NULL)
209 ns = gfc_current_ns;
210
211 return &ns->default_type[letter - 'a'];
212 }
213
214
215 /* Given a pointer to a symbol, set its type according to the first
216 letter of its name. Fails if the letter in question has no default
217 type. */
218
219 try
220 gfc_set_default_type (gfc_symbol * sym, int error_flag, gfc_namespace * ns)
221 {
222 gfc_typespec *ts;
223
224 if (sym->ts.type != BT_UNKNOWN)
225 gfc_internal_error ("gfc_set_default_type(): symbol already has a type");
226
227 ts = gfc_get_default_type (sym, ns);
228
229 if (ts->type == BT_UNKNOWN)
230 {
231 if (error_flag && !sym->attr.untyped)
232 {
233 gfc_error ("Symbol '%s' at %L has no IMPLICIT type",
234 sym->name, &sym->declared_at);
235 sym->attr.untyped = 1; /* Ensure we only give an error once. */
236 }
237
238 return FAILURE;
239 }
240
241 sym->ts = *ts;
242 sym->attr.implicit_type = 1;
243
244 return SUCCESS;
245 }
246
247
248 /******************** Symbol attribute stuff *********************/
249
250 /* This is a generic conflict-checker. We do this to avoid having a
251 single conflict in two places. */
252
253 #define conf(a, b) if (attr->a && attr->b) { a1 = a; a2 = b; goto conflict; }
254 #define conf2(a) if (attr->a) { a2 = a; goto conflict; }
255 #define conf_std(a, b, std) if (attr->a && attr->b)\
256 {\
257 a1 = a;\
258 a2 = b;\
259 standard = std;\
260 goto conflict_std;\
261 }
262
263 static try
264 check_conflict (symbol_attribute * attr, const char * name, locus * where)
265 {
266 static const char *dummy = "DUMMY", *save = "SAVE", *pointer = "POINTER",
267 *target = "TARGET", *external = "EXTERNAL", *intent = "INTENT",
268 *intrinsic = "INTRINSIC", *allocatable = "ALLOCATABLE",
269 *elemental = "ELEMENTAL", *private = "PRIVATE", *recursive = "RECURSIVE",
270 *in_common = "COMMON", *result = "RESULT", *in_namelist = "NAMELIST",
271 *public = "PUBLIC", *optional = "OPTIONAL", *entry = "ENTRY",
272 *function = "FUNCTION", *subroutine = "SUBROUTINE",
273 *dimension = "DIMENSION", *in_equivalence = "EQUIVALENCE",
274 *use_assoc = "USE ASSOCIATED", *cray_pointer = "CRAY POINTER",
275 *cray_pointee = "CRAY POINTEE", *data = "DATA";
276 static const char *threadprivate = "THREADPRIVATE";
277
278 const char *a1, *a2;
279 int standard;
280
281 if (where == NULL)
282 where = &gfc_current_locus;
283
284 if (attr->pointer && attr->intent != INTENT_UNKNOWN)
285 {
286 a1 = pointer;
287 a2 = intent;
288 goto conflict;
289 }
290
291 /* Check for attributes not allowed in a BLOCK DATA. */
292 if (gfc_current_state () == COMP_BLOCK_DATA)
293 {
294 a1 = NULL;
295
296 if (attr->in_namelist)
297 a1 = in_namelist;
298 if (attr->allocatable)
299 a1 = allocatable;
300 if (attr->external)
301 a1 = external;
302 if (attr->optional)
303 a1 = optional;
304 if (attr->access == ACCESS_PRIVATE)
305 a1 = private;
306 if (attr->access == ACCESS_PUBLIC)
307 a1 = public;
308 if (attr->intent != INTENT_UNKNOWN)
309 a1 = intent;
310
311 if (a1 != NULL)
312 {
313 gfc_error
314 ("%s attribute not allowed in BLOCK DATA program unit at %L", a1,
315 where);
316 return FAILURE;
317 }
318 }
319
320 conf (dummy, save);
321 conf (dummy, threadprivate);
322 conf (pointer, target);
323 conf (pointer, external);
324 conf (pointer, intrinsic);
325 conf (pointer, elemental);
326 conf (allocatable, elemental);
327
328 conf (target, external);
329 conf (target, intrinsic);
330 conf (external, dimension); /* See Fortran 95's R504. */
331
332 conf (external, intrinsic);
333
334 if (attr->if_source || attr->contained)
335 {
336 conf (external, subroutine);
337 conf (external, function);
338 }
339
340 conf (allocatable, pointer);
341 conf_std (allocatable, dummy, GFC_STD_F2003);
342 conf_std (allocatable, function, GFC_STD_F2003);
343 conf_std (allocatable, result, GFC_STD_F2003);
344 conf (elemental, recursive);
345
346 conf (in_common, dummy);
347 conf (in_common, allocatable);
348 conf (in_common, result);
349 conf (in_common, save);
350 conf (result, save);
351
352 conf (dummy, result);
353
354 conf (in_equivalence, use_assoc);
355 conf (in_equivalence, dummy);
356 conf (in_equivalence, target);
357 conf (in_equivalence, pointer);
358 conf (in_equivalence, function);
359 conf (in_equivalence, result);
360 conf (in_equivalence, entry);
361 conf (in_equivalence, allocatable);
362 conf (in_equivalence, threadprivate);
363
364 conf (in_namelist, pointer);
365 conf (in_namelist, allocatable);
366
367 conf (entry, result);
368
369 conf (function, subroutine);
370
371 /* Cray pointer/pointee conflicts. */
372 conf (cray_pointer, cray_pointee);
373 conf (cray_pointer, dimension);
374 conf (cray_pointer, pointer);
375 conf (cray_pointer, target);
376 conf (cray_pointer, allocatable);
377 conf (cray_pointer, external);
378 conf (cray_pointer, intrinsic);
379 conf (cray_pointer, in_namelist);
380 conf (cray_pointer, function);
381 conf (cray_pointer, subroutine);
382 conf (cray_pointer, entry);
383
384 conf (cray_pointee, allocatable);
385 conf (cray_pointee, intent);
386 conf (cray_pointee, optional);
387 conf (cray_pointee, dummy);
388 conf (cray_pointee, target);
389 conf (cray_pointee, intrinsic);
390 conf (cray_pointee, pointer);
391 conf (cray_pointee, entry);
392 conf (cray_pointee, in_common);
393 conf (cray_pointee, in_equivalence);
394 conf (cray_pointee, threadprivate);
395
396 conf (data, dummy);
397 conf (data, function);
398 conf (data, result);
399 conf (data, allocatable);
400 conf (data, use_assoc);
401
402 a1 = gfc_code2string (flavors, attr->flavor);
403
404 if (attr->in_namelist
405 && attr->flavor != FL_VARIABLE
406 && attr->flavor != FL_UNKNOWN)
407 {
408
409 a2 = in_namelist;
410 goto conflict;
411 }
412
413 switch (attr->flavor)
414 {
415 case FL_PROGRAM:
416 case FL_BLOCK_DATA:
417 case FL_MODULE:
418 case FL_LABEL:
419 conf2 (dummy);
420 conf2 (save);
421 conf2 (pointer);
422 conf2 (target);
423 conf2 (external);
424 conf2 (intrinsic);
425 conf2 (allocatable);
426 conf2 (result);
427 conf2 (in_namelist);
428 conf2 (optional);
429 conf2 (function);
430 conf2 (subroutine);
431 conf2 (threadprivate);
432 break;
433
434 case FL_VARIABLE:
435 case FL_NAMELIST:
436 break;
437
438 case FL_PROCEDURE:
439 conf2 (intent);
440
441 if (attr->subroutine)
442 {
443 conf2(save);
444 conf2(pointer);
445 conf2(target);
446 conf2(allocatable);
447 conf2(result);
448 conf2(in_namelist);
449 conf2(function);
450 conf2(threadprivate);
451 }
452
453 switch (attr->proc)
454 {
455 case PROC_ST_FUNCTION:
456 conf2 (in_common);
457 conf2 (dummy);
458 break;
459
460 case PROC_MODULE:
461 conf2 (dummy);
462 break;
463
464 case PROC_DUMMY:
465 conf2 (result);
466 conf2 (in_common);
467 conf2 (save);
468 conf2 (threadprivate);
469 break;
470
471 default:
472 break;
473 }
474
475 break;
476
477 case FL_DERIVED:
478 conf2 (dummy);
479 conf2 (save);
480 conf2 (pointer);
481 conf2 (target);
482 conf2 (external);
483 conf2 (intrinsic);
484 conf2 (allocatable);
485 conf2 (optional);
486 conf2 (entry);
487 conf2 (function);
488 conf2 (subroutine);
489 conf2 (threadprivate);
490
491 if (attr->intent != INTENT_UNKNOWN)
492 {
493 a2 = intent;
494 goto conflict;
495 }
496 break;
497
498 case FL_PARAMETER:
499 conf2 (external);
500 conf2 (intrinsic);
501 conf2 (optional);
502 conf2 (allocatable);
503 conf2 (function);
504 conf2 (subroutine);
505 conf2 (entry);
506 conf2 (pointer);
507 conf2 (target);
508 conf2 (dummy);
509 conf2 (in_common);
510 conf2 (save);
511 conf2 (threadprivate);
512 break;
513
514 default:
515 break;
516 }
517
518 return SUCCESS;
519
520 conflict:
521 if (name == NULL)
522 gfc_error ("%s attribute conflicts with %s attribute at %L",
523 a1, a2, where);
524 else
525 gfc_error ("%s attribute conflicts with %s attribute in '%s' at %L",
526 a1, a2, name, where);
527
528 return FAILURE;
529
530 conflict_std:
531 if (name == NULL)
532 {
533 return gfc_notify_std (standard, "In the selected standard, %s attribute "
534 "conflicts with %s attribute at %L", a1, a2,
535 where);
536 }
537 else
538 {
539 return gfc_notify_std (standard, "In the selected standard, %s attribute "
540 "conflicts with %s attribute in '%s' at %L",
541 a1, a2, name, where);
542 }
543 }
544
545 #undef conf
546 #undef conf2
547 #undef conf_std
548
549
550 /* Mark a symbol as referenced. */
551
552 void
553 gfc_set_sym_referenced (gfc_symbol * sym)
554 {
555 if (sym->attr.referenced)
556 return;
557
558 sym->attr.referenced = 1;
559
560 /* Remember which order dummy variables are accessed in. */
561 if (sym->attr.dummy)
562 sym->dummy_order = next_dummy_order++;
563 }
564
565
566 /* Common subroutine called by attribute changing subroutines in order
567 to prevent them from changing a symbol that has been
568 use-associated. Returns zero if it is OK to change the symbol,
569 nonzero if not. */
570
571 static int
572 check_used (symbol_attribute * attr, const char * name, locus * where)
573 {
574
575 if (attr->use_assoc == 0)
576 return 0;
577
578 if (where == NULL)
579 where = &gfc_current_locus;
580
581 if (name == NULL)
582 gfc_error ("Cannot change attributes of USE-associated symbol at %L",
583 where);
584 else
585 gfc_error ("Cannot change attributes of USE-associated symbol %s at %L",
586 name, where);
587
588 return 1;
589 }
590
591
592 /* Used to prevent changing the attributes of a symbol after it has been
593 used. This check is only done for dummy variables as only these can be
594 used in specification expressions. Applying this to all symbols causes
595 an error when we reach the body of a contained function. */
596
597 static int
598 check_done (symbol_attribute * attr, locus * where)
599 {
600
601 if (!(attr->dummy && attr->referenced))
602 return 0;
603
604 if (where == NULL)
605 where = &gfc_current_locus;
606
607 gfc_error ("Cannot change attributes of symbol at %L"
608 " after it has been used", where);
609
610 return 1;
611 }
612
613
614 /* Generate an error because of a duplicate attribute. */
615
616 static void
617 duplicate_attr (const char *attr, locus * where)
618 {
619
620 if (where == NULL)
621 where = &gfc_current_locus;
622
623 gfc_error ("Duplicate %s attribute specified at %L", attr, where);
624 }
625
626 /* Called from decl.c (attr_decl1) to check attributes, when declared separately. */
627
628 try
629 gfc_add_attribute (symbol_attribute * attr, locus * where,
630 unsigned int attr_intent)
631 {
632
633 if (check_used (attr, NULL, where)
634 || (attr_intent == 0 && check_done (attr, where)))
635 return FAILURE;
636
637 return check_conflict (attr, NULL, where);
638 }
639
640 try
641 gfc_add_allocatable (symbol_attribute * attr, locus * where)
642 {
643
644 if (check_used (attr, NULL, where) || check_done (attr, where))
645 return FAILURE;
646
647 if (attr->allocatable)
648 {
649 duplicate_attr ("ALLOCATABLE", where);
650 return FAILURE;
651 }
652
653 attr->allocatable = 1;
654 return check_conflict (attr, NULL, where);
655 }
656
657
658 try
659 gfc_add_dimension (symbol_attribute * attr, const char *name, locus * where)
660 {
661
662 if (check_used (attr, name, where) || check_done (attr, where))
663 return FAILURE;
664
665 if (attr->dimension)
666 {
667 duplicate_attr ("DIMENSION", where);
668 return FAILURE;
669 }
670
671 attr->dimension = 1;
672 return check_conflict (attr, name, where);
673 }
674
675
676 try
677 gfc_add_external (symbol_attribute * attr, locus * where)
678 {
679
680 if (check_used (attr, NULL, where) || check_done (attr, where))
681 return FAILURE;
682
683 if (attr->external)
684 {
685 duplicate_attr ("EXTERNAL", where);
686 return FAILURE;
687 }
688
689 attr->external = 1;
690
691 return check_conflict (attr, NULL, where);
692 }
693
694
695 try
696 gfc_add_intrinsic (symbol_attribute * attr, locus * where)
697 {
698
699 if (check_used (attr, NULL, where) || check_done (attr, where))
700 return FAILURE;
701
702 if (attr->intrinsic)
703 {
704 duplicate_attr ("INTRINSIC", where);
705 return FAILURE;
706 }
707
708 attr->intrinsic = 1;
709
710 return check_conflict (attr, NULL, where);
711 }
712
713
714 try
715 gfc_add_optional (symbol_attribute * attr, locus * where)
716 {
717
718 if (check_used (attr, NULL, where) || check_done (attr, where))
719 return FAILURE;
720
721 if (attr->optional)
722 {
723 duplicate_attr ("OPTIONAL", where);
724 return FAILURE;
725 }
726
727 attr->optional = 1;
728 return check_conflict (attr, NULL, where);
729 }
730
731
732 try
733 gfc_add_pointer (symbol_attribute * attr, locus * where)
734 {
735
736 if (check_used (attr, NULL, where) || check_done (attr, where))
737 return FAILURE;
738
739 attr->pointer = 1;
740 return check_conflict (attr, NULL, where);
741 }
742
743
744 try
745 gfc_add_cray_pointer (symbol_attribute * attr, locus * where)
746 {
747
748 if (check_used (attr, NULL, where) || check_done (attr, where))
749 return FAILURE;
750
751 attr->cray_pointer = 1;
752 return check_conflict (attr, NULL, where);
753 }
754
755
756 try
757 gfc_add_cray_pointee (symbol_attribute * attr, locus * where)
758 {
759
760 if (check_used (attr, NULL, where) || check_done (attr, where))
761 return FAILURE;
762
763 if (attr->cray_pointee)
764 {
765 gfc_error ("Cray Pointee at %L appears in multiple pointer()"
766 " statements.", where);
767 return FAILURE;
768 }
769
770 attr->cray_pointee = 1;
771 return check_conflict (attr, NULL, where);
772 }
773
774
775 try
776 gfc_add_result (symbol_attribute * attr, const char *name, locus * where)
777 {
778
779 if (check_used (attr, name, where) || check_done (attr, where))
780 return FAILURE;
781
782 attr->result = 1;
783 return check_conflict (attr, name, where);
784 }
785
786
787 try
788 gfc_add_save (symbol_attribute * attr, const char *name, locus * where)
789 {
790
791 if (check_used (attr, name, where))
792 return FAILURE;
793
794 if (gfc_pure (NULL))
795 {
796 gfc_error
797 ("SAVE attribute at %L cannot be specified in a PURE procedure",
798 where);
799 return FAILURE;
800 }
801
802 if (attr->save)
803 {
804 if (gfc_notify_std (GFC_STD_LEGACY,
805 "Duplicate SAVE attribute specified at %L",
806 where)
807 == FAILURE)
808 return FAILURE;
809 }
810
811 attr->save = 1;
812 return check_conflict (attr, name, where);
813 }
814
815
816 try
817 gfc_add_threadprivate (symbol_attribute * attr, const char *name, locus * where)
818 {
819 if (check_used (attr, name, where))
820 return FAILURE;
821
822 if (attr->threadprivate)
823 {
824 duplicate_attr ("THREADPRIVATE", where);
825 return FAILURE;
826 }
827
828 attr->threadprivate = 1;
829 return check_conflict (attr, name, where);
830 }
831
832
833 try
834 gfc_add_target (symbol_attribute * attr, locus * where)
835 {
836
837 if (check_used (attr, NULL, where) || check_done (attr, where))
838 return FAILURE;
839
840 if (attr->target)
841 {
842 duplicate_attr ("TARGET", where);
843 return FAILURE;
844 }
845
846 attr->target = 1;
847 return check_conflict (attr, NULL, where);
848 }
849
850
851 try
852 gfc_add_dummy (symbol_attribute * attr, const char *name, locus * where)
853 {
854
855 if (check_used (attr, name, where))
856 return FAILURE;
857
858 /* Duplicate dummy arguments are allowed due to ENTRY statements. */
859 attr->dummy = 1;
860 return check_conflict (attr, name, where);
861 }
862
863
864 try
865 gfc_add_in_common (symbol_attribute * attr, const char *name, locus * where)
866 {
867
868 if (check_used (attr, name, where) || check_done (attr, where))
869 return FAILURE;
870
871 /* Duplicate attribute already checked for. */
872 attr->in_common = 1;
873 if (check_conflict (attr, name, where) == FAILURE)
874 return FAILURE;
875
876 if (attr->flavor == FL_VARIABLE)
877 return SUCCESS;
878
879 return gfc_add_flavor (attr, FL_VARIABLE, name, where);
880 }
881
882 try
883 gfc_add_in_equivalence (symbol_attribute * attr, const char *name, locus * where)
884 {
885
886 /* Duplicate attribute already checked for. */
887 attr->in_equivalence = 1;
888 if (check_conflict (attr, name, where) == FAILURE)
889 return FAILURE;
890
891 if (attr->flavor == FL_VARIABLE)
892 return SUCCESS;
893
894 return gfc_add_flavor (attr, FL_VARIABLE, name, where);
895 }
896
897
898 try
899 gfc_add_data (symbol_attribute *attr, const char *name, locus *where)
900 {
901
902 if (check_used (attr, name, where))
903 return FAILURE;
904
905 attr->data = 1;
906 return check_conflict (attr, name, where);
907 }
908
909
910 try
911 gfc_add_in_namelist (symbol_attribute * attr, const char *name,
912 locus * where)
913 {
914
915 attr->in_namelist = 1;
916 return check_conflict (attr, name, where);
917 }
918
919
920 try
921 gfc_add_sequence (symbol_attribute * attr, const char *name, locus * where)
922 {
923
924 if (check_used (attr, name, where))
925 return FAILURE;
926
927 attr->sequence = 1;
928 return check_conflict (attr, name, where);
929 }
930
931
932 try
933 gfc_add_elemental (symbol_attribute * attr, locus * where)
934 {
935
936 if (check_used (attr, NULL, where) || check_done (attr, where))
937 return FAILURE;
938
939 attr->elemental = 1;
940 return check_conflict (attr, NULL, where);
941 }
942
943
944 try
945 gfc_add_pure (symbol_attribute * attr, locus * where)
946 {
947
948 if (check_used (attr, NULL, where) || check_done (attr, where))
949 return FAILURE;
950
951 attr->pure = 1;
952 return check_conflict (attr, NULL, where);
953 }
954
955
956 try
957 gfc_add_recursive (symbol_attribute * attr, locus * where)
958 {
959
960 if (check_used (attr, NULL, where) || check_done (attr, where))
961 return FAILURE;
962
963 attr->recursive = 1;
964 return check_conflict (attr, NULL, where);
965 }
966
967
968 try
969 gfc_add_entry (symbol_attribute * attr, const char *name, locus * where)
970 {
971
972 if (check_used (attr, name, where))
973 return FAILURE;
974
975 if (attr->entry)
976 {
977 duplicate_attr ("ENTRY", where);
978 return FAILURE;
979 }
980
981 attr->entry = 1;
982 return check_conflict (attr, name, where);
983 }
984
985
986 try
987 gfc_add_function (symbol_attribute * attr, const char *name, locus * where)
988 {
989
990 if (attr->flavor != FL_PROCEDURE
991 && gfc_add_flavor (attr, FL_PROCEDURE, name, where) == FAILURE)
992 return FAILURE;
993
994 attr->function = 1;
995 return check_conflict (attr, name, where);
996 }
997
998
999 try
1000 gfc_add_subroutine (symbol_attribute * attr, const char *name, locus * where)
1001 {
1002
1003 if (attr->flavor != FL_PROCEDURE
1004 && gfc_add_flavor (attr, FL_PROCEDURE, name, where) == FAILURE)
1005 return FAILURE;
1006
1007 attr->subroutine = 1;
1008 return check_conflict (attr, name, where);
1009 }
1010
1011
1012 try
1013 gfc_add_generic (symbol_attribute * attr, const char *name, locus * where)
1014 {
1015
1016 if (attr->flavor != FL_PROCEDURE
1017 && gfc_add_flavor (attr, FL_PROCEDURE, name, where) == FAILURE)
1018 return FAILURE;
1019
1020 attr->generic = 1;
1021 return check_conflict (attr, name, where);
1022 }
1023
1024
1025 /* Flavors are special because some flavors are not what Fortran
1026 considers attributes and can be reaffirmed multiple times. */
1027
1028 try
1029 gfc_add_flavor (symbol_attribute * attr, sym_flavor f, const char *name,
1030 locus * where)
1031 {
1032
1033 if ((f == FL_PROGRAM || f == FL_BLOCK_DATA || f == FL_MODULE
1034 || f == FL_PARAMETER || f == FL_LABEL || f == FL_DERIVED
1035 || f == FL_NAMELIST) && check_used (attr, name, where))
1036 return FAILURE;
1037
1038 if (attr->flavor == f && f == FL_VARIABLE)
1039 return SUCCESS;
1040
1041 if (attr->flavor != FL_UNKNOWN)
1042 {
1043 if (where == NULL)
1044 where = &gfc_current_locus;
1045
1046 gfc_error ("%s attribute conflicts with %s attribute at %L",
1047 gfc_code2string (flavors, attr->flavor),
1048 gfc_code2string (flavors, f), where);
1049
1050 return FAILURE;
1051 }
1052
1053 attr->flavor = f;
1054
1055 return check_conflict (attr, name, where);
1056 }
1057
1058
1059 try
1060 gfc_add_procedure (symbol_attribute * attr, procedure_type t,
1061 const char *name, locus * where)
1062 {
1063
1064 if (check_used (attr, name, where) || check_done (attr, where))
1065 return FAILURE;
1066
1067 if (attr->flavor != FL_PROCEDURE
1068 && gfc_add_flavor (attr, FL_PROCEDURE, name, where) == FAILURE)
1069 return FAILURE;
1070
1071 if (where == NULL)
1072 where = &gfc_current_locus;
1073
1074 if (attr->proc != PROC_UNKNOWN)
1075 {
1076 gfc_error ("%s procedure at %L is already declared as %s procedure",
1077 gfc_code2string (procedures, t), where,
1078 gfc_code2string (procedures, attr->proc));
1079
1080 return FAILURE;
1081 }
1082
1083 attr->proc = t;
1084
1085 /* Statement functions are always scalar and functions. */
1086 if (t == PROC_ST_FUNCTION
1087 && ((!attr->function && gfc_add_function (attr, name, where) == FAILURE)
1088 || attr->dimension))
1089 return FAILURE;
1090
1091 return check_conflict (attr, name, where);
1092 }
1093
1094
1095 try
1096 gfc_add_intent (symbol_attribute * attr, sym_intent intent, locus * where)
1097 {
1098
1099 if (check_used (attr, NULL, where))
1100 return FAILURE;
1101
1102 if (attr->intent == INTENT_UNKNOWN)
1103 {
1104 attr->intent = intent;
1105 return check_conflict (attr, NULL, where);
1106 }
1107
1108 if (where == NULL)
1109 where = &gfc_current_locus;
1110
1111 gfc_error ("INTENT (%s) conflicts with INTENT(%s) at %L",
1112 gfc_intent_string (attr->intent),
1113 gfc_intent_string (intent), where);
1114
1115 return FAILURE;
1116 }
1117
1118
1119 /* No checks for use-association in public and private statements. */
1120
1121 try
1122 gfc_add_access (symbol_attribute * attr, gfc_access access,
1123 const char *name, locus * where)
1124 {
1125
1126 if (attr->access == ACCESS_UNKNOWN)
1127 {
1128 attr->access = access;
1129 return check_conflict (attr, name, where);
1130 }
1131
1132 if (where == NULL)
1133 where = &gfc_current_locus;
1134 gfc_error ("ACCESS specification at %L was already specified", where);
1135
1136 return FAILURE;
1137 }
1138
1139
1140 try
1141 gfc_add_explicit_interface (gfc_symbol * sym, ifsrc source,
1142 gfc_formal_arglist * formal, locus * where)
1143 {
1144
1145 if (check_used (&sym->attr, sym->name, where))
1146 return FAILURE;
1147
1148 if (where == NULL)
1149 where = &gfc_current_locus;
1150
1151 if (sym->attr.if_source != IFSRC_UNKNOWN
1152 && sym->attr.if_source != IFSRC_DECL)
1153 {
1154 gfc_error ("Symbol '%s' at %L already has an explicit interface",
1155 sym->name, where);
1156 return FAILURE;
1157 }
1158
1159 sym->formal = formal;
1160 sym->attr.if_source = source;
1161
1162 return SUCCESS;
1163 }
1164
1165
1166 /* Add a type to a symbol. */
1167
1168 try
1169 gfc_add_type (gfc_symbol * sym, gfc_typespec * ts, locus * where)
1170 {
1171 sym_flavor flavor;
1172
1173 /* TODO: This is legal if it is reaffirming an implicit type.
1174 if (check_done (&sym->attr, where))
1175 return FAILURE;*/
1176
1177 if (where == NULL)
1178 where = &gfc_current_locus;
1179
1180 if (sym->ts.type != BT_UNKNOWN)
1181 {
1182 const char *msg = "Symbol '%s' at %L already has basic type of %s";
1183 if (!(sym->ts.type == ts->type
1184 && (sym->attr.flavor == FL_PROCEDURE || sym->attr.result))
1185 || gfc_notification_std (GFC_STD_GNU) == ERROR
1186 || pedantic)
1187 {
1188 gfc_error (msg, sym->name, where, gfc_basic_typename (sym->ts.type));
1189 return FAILURE;
1190 }
1191 else if (gfc_notify_std (GFC_STD_GNU, msg, sym->name, where,
1192 gfc_basic_typename (sym->ts.type)) == FAILURE)
1193 return FAILURE;
1194 }
1195
1196 flavor = sym->attr.flavor;
1197
1198 if (flavor == FL_PROGRAM || flavor == FL_BLOCK_DATA || flavor == FL_MODULE
1199 || flavor == FL_LABEL || (flavor == FL_PROCEDURE
1200 && sym->attr.subroutine)
1201 || flavor == FL_DERIVED || flavor == FL_NAMELIST)
1202 {
1203 gfc_error ("Symbol '%s' at %L cannot have a type", sym->name, where);
1204 return FAILURE;
1205 }
1206
1207 sym->ts = *ts;
1208 return SUCCESS;
1209 }
1210
1211
1212 /* Clears all attributes. */
1213
1214 void
1215 gfc_clear_attr (symbol_attribute * attr)
1216 {
1217 memset (attr, 0, sizeof(symbol_attribute));
1218 }
1219
1220
1221 /* Check for missing attributes in the new symbol. Currently does
1222 nothing, but it's not clear that it is unnecessary yet. */
1223
1224 try
1225 gfc_missing_attr (symbol_attribute * attr ATTRIBUTE_UNUSED,
1226 locus * where ATTRIBUTE_UNUSED)
1227 {
1228
1229 return SUCCESS;
1230 }
1231
1232
1233 /* Copy an attribute to a symbol attribute, bit by bit. Some
1234 attributes have a lot of side-effects but cannot be present given
1235 where we are called from, so we ignore some bits. */
1236
1237 try
1238 gfc_copy_attr (symbol_attribute * dest, symbol_attribute * src, locus * where)
1239 {
1240
1241 if (src->allocatable && gfc_add_allocatable (dest, where) == FAILURE)
1242 goto fail;
1243
1244 if (src->dimension && gfc_add_dimension (dest, NULL, where) == FAILURE)
1245 goto fail;
1246 if (src->optional && gfc_add_optional (dest, where) == FAILURE)
1247 goto fail;
1248 if (src->pointer && gfc_add_pointer (dest, where) == FAILURE)
1249 goto fail;
1250 if (src->save && gfc_add_save (dest, NULL, where) == FAILURE)
1251 goto fail;
1252 if (src->threadprivate && gfc_add_threadprivate (dest, NULL, where) == FAILURE)
1253 goto fail;
1254 if (src->target && gfc_add_target (dest, where) == FAILURE)
1255 goto fail;
1256 if (src->dummy && gfc_add_dummy (dest, NULL, where) == FAILURE)
1257 goto fail;
1258 if (src->result && gfc_add_result (dest, NULL, where) == FAILURE)
1259 goto fail;
1260 if (src->entry)
1261 dest->entry = 1;
1262
1263 if (src->in_namelist && gfc_add_in_namelist (dest, NULL, where) == FAILURE)
1264 goto fail;
1265
1266 if (src->in_common && gfc_add_in_common (dest, NULL, where) == FAILURE)
1267 goto fail;
1268
1269 if (src->generic && gfc_add_generic (dest, NULL, where) == FAILURE)
1270 goto fail;
1271 if (src->function && gfc_add_function (dest, NULL, where) == FAILURE)
1272 goto fail;
1273 if (src->subroutine && gfc_add_subroutine (dest, NULL, where) == FAILURE)
1274 goto fail;
1275
1276 if (src->sequence && gfc_add_sequence (dest, NULL, where) == FAILURE)
1277 goto fail;
1278 if (src->elemental && gfc_add_elemental (dest, where) == FAILURE)
1279 goto fail;
1280 if (src->pure && gfc_add_pure (dest, where) == FAILURE)
1281 goto fail;
1282 if (src->recursive && gfc_add_recursive (dest, where) == FAILURE)
1283 goto fail;
1284
1285 if (src->flavor != FL_UNKNOWN
1286 && gfc_add_flavor (dest, src->flavor, NULL, where) == FAILURE)
1287 goto fail;
1288
1289 if (src->intent != INTENT_UNKNOWN
1290 && gfc_add_intent (dest, src->intent, where) == FAILURE)
1291 goto fail;
1292
1293 if (src->access != ACCESS_UNKNOWN
1294 && gfc_add_access (dest, src->access, NULL, where) == FAILURE)
1295 goto fail;
1296
1297 if (gfc_missing_attr (dest, where) == FAILURE)
1298 goto fail;
1299
1300 if (src->cray_pointer && gfc_add_cray_pointer (dest, where) == FAILURE)
1301 goto fail;
1302 if (src->cray_pointee && gfc_add_cray_pointee (dest, where) == FAILURE)
1303 goto fail;
1304
1305 /* The subroutines that set these bits also cause flavors to be set,
1306 and that has already happened in the original, so don't let it
1307 happen again. */
1308 if (src->external)
1309 dest->external = 1;
1310 if (src->intrinsic)
1311 dest->intrinsic = 1;
1312
1313 return SUCCESS;
1314
1315 fail:
1316 return FAILURE;
1317 }
1318
1319
1320 /************** Component name management ************/
1321
1322 /* Component names of a derived type form their own little namespaces
1323 that are separate from all other spaces. The space is composed of
1324 a singly linked list of gfc_component structures whose head is
1325 located in the parent symbol. */
1326
1327
1328 /* Add a component name to a symbol. The call fails if the name is
1329 already present. On success, the component pointer is modified to
1330 point to the additional component structure. */
1331
1332 try
1333 gfc_add_component (gfc_symbol * sym, const char *name, gfc_component ** component)
1334 {
1335 gfc_component *p, *tail;
1336
1337 tail = NULL;
1338
1339 for (p = sym->components; p; p = p->next)
1340 {
1341 if (strcmp (p->name, name) == 0)
1342 {
1343 gfc_error ("Component '%s' at %C already declared at %L",
1344 name, &p->loc);
1345 return FAILURE;
1346 }
1347
1348 tail = p;
1349 }
1350
1351 /* Allocate a new component. */
1352 p = gfc_get_component ();
1353
1354 if (tail == NULL)
1355 sym->components = p;
1356 else
1357 tail->next = p;
1358
1359 p->name = gfc_get_string (name);
1360 p->loc = gfc_current_locus;
1361
1362 *component = p;
1363 return SUCCESS;
1364 }
1365
1366
1367 /* Recursive function to switch derived types of all symbol in a
1368 namespace. */
1369
1370 static void
1371 switch_types (gfc_symtree * st, gfc_symbol * from, gfc_symbol * to)
1372 {
1373 gfc_symbol *sym;
1374
1375 if (st == NULL)
1376 return;
1377
1378 sym = st->n.sym;
1379 if (sym->ts.type == BT_DERIVED && sym->ts.derived == from)
1380 sym->ts.derived = to;
1381
1382 switch_types (st->left, from, to);
1383 switch_types (st->right, from, to);
1384 }
1385
1386
1387 /* This subroutine is called when a derived type is used in order to
1388 make the final determination about which version to use. The
1389 standard requires that a type be defined before it is 'used', but
1390 such types can appear in IMPLICIT statements before the actual
1391 definition. 'Using' in this context means declaring a variable to
1392 be that type or using the type constructor.
1393
1394 If a type is used and the components haven't been defined, then we
1395 have to have a derived type in a parent unit. We find the node in
1396 the other namespace and point the symtree node in this namespace to
1397 that node. Further reference to this name point to the correct
1398 node. If we can't find the node in a parent namespace, then we have
1399 an error.
1400
1401 This subroutine takes a pointer to a symbol node and returns a
1402 pointer to the translated node or NULL for an error. Usually there
1403 is no translation and we return the node we were passed. */
1404
1405 gfc_symbol *
1406 gfc_use_derived (gfc_symbol * sym)
1407 {
1408 gfc_symbol *s;
1409 gfc_typespec *t;
1410 gfc_symtree *st;
1411 int i;
1412
1413 if (sym->components != NULL)
1414 return sym; /* Already defined. */
1415
1416 if (sym->ns->parent == NULL)
1417 goto bad;
1418
1419 if (gfc_find_symbol (sym->name, sym->ns->parent, 1, &s))
1420 {
1421 gfc_error ("Symbol '%s' at %C is ambiguous", sym->name);
1422 return NULL;
1423 }
1424
1425 if (s == NULL || s->attr.flavor != FL_DERIVED)
1426 goto bad;
1427
1428 /* Get rid of symbol sym, translating all references to s. */
1429 for (i = 0; i < GFC_LETTERS; i++)
1430 {
1431 t = &sym->ns->default_type[i];
1432 if (t->derived == sym)
1433 t->derived = s;
1434 }
1435
1436 st = gfc_find_symtree (sym->ns->sym_root, sym->name);
1437 st->n.sym = s;
1438
1439 s->refs++;
1440
1441 /* Unlink from list of modified symbols. */
1442 gfc_commit_symbol (sym);
1443
1444 switch_types (sym->ns->sym_root, sym, s);
1445
1446 /* TODO: Also have to replace sym -> s in other lists like
1447 namelists, common lists and interface lists. */
1448 gfc_free_symbol (sym);
1449
1450 return s;
1451
1452 bad:
1453 gfc_error ("Derived type '%s' at %C is being used before it is defined",
1454 sym->name);
1455 return NULL;
1456 }
1457
1458
1459 /* Given a derived type node and a component name, try to locate the
1460 component structure. Returns the NULL pointer if the component is
1461 not found or the components are private. */
1462
1463 gfc_component *
1464 gfc_find_component (gfc_symbol * sym, const char *name)
1465 {
1466 gfc_component *p;
1467
1468 if (name == NULL)
1469 return NULL;
1470
1471 sym = gfc_use_derived (sym);
1472
1473 if (sym == NULL)
1474 return NULL;
1475
1476 for (p = sym->components; p; p = p->next)
1477 if (strcmp (p->name, name) == 0)
1478 break;
1479
1480 if (p == NULL)
1481 gfc_error ("'%s' at %C is not a member of the '%s' structure",
1482 name, sym->name);
1483 else
1484 {
1485 if (sym->attr.use_assoc && sym->component_access == ACCESS_PRIVATE)
1486 {
1487 gfc_error ("Component '%s' at %C is a PRIVATE component of '%s'",
1488 name, sym->name);
1489 p = NULL;
1490 }
1491 }
1492
1493 return p;
1494 }
1495
1496
1497 /* Given a symbol, free all of the component structures and everything
1498 they point to. */
1499
1500 static void
1501 free_components (gfc_component * p)
1502 {
1503 gfc_component *q;
1504
1505 for (; p; p = q)
1506 {
1507 q = p->next;
1508
1509 gfc_free_array_spec (p->as);
1510 gfc_free_expr (p->initializer);
1511
1512 gfc_free (p);
1513 }
1514 }
1515
1516
1517 /* Set component attributes from a standard symbol attribute
1518 structure. */
1519
1520 void
1521 gfc_set_component_attr (gfc_component * c, symbol_attribute * attr)
1522 {
1523
1524 c->dimension = attr->dimension;
1525 c->pointer = attr->pointer;
1526 c->allocatable = attr->allocatable;
1527 }
1528
1529
1530 /* Get a standard symbol attribute structure given the component
1531 structure. */
1532
1533 void
1534 gfc_get_component_attr (symbol_attribute * attr, gfc_component * c)
1535 {
1536
1537 gfc_clear_attr (attr);
1538 attr->dimension = c->dimension;
1539 attr->pointer = c->pointer;
1540 attr->allocatable = c->allocatable;
1541 }
1542
1543
1544 /******************** Statement label management ********************/
1545
1546 /* Comparison function for statement labels, used for managing the
1547 binary tree. */
1548
1549 static int
1550 compare_st_labels (void * a1, void * b1)
1551 {
1552 int a = ((gfc_st_label *)a1)->value;
1553 int b = ((gfc_st_label *)b1)->value;
1554
1555 return (b - a);
1556 }
1557
1558
1559 /* Free a single gfc_st_label structure, making sure the tree is not
1560 messed up. This function is called only when some parse error
1561 occurs. */
1562
1563 void
1564 gfc_free_st_label (gfc_st_label * label)
1565 {
1566 if (label == NULL)
1567 return;
1568
1569 gfc_delete_bbt (&gfc_current_ns->st_labels, label, compare_st_labels);
1570
1571 if (label->format != NULL)
1572 gfc_free_expr (label->format);
1573
1574 gfc_free (label);
1575 }
1576
1577 /* Free a whole tree of gfc_st_label structures. */
1578
1579 static void
1580 free_st_labels (gfc_st_label * label)
1581 {
1582 if (label == NULL)
1583 return;
1584
1585 free_st_labels (label->left);
1586 free_st_labels (label->right);
1587
1588 if (label->format != NULL)
1589 gfc_free_expr (label->format);
1590 gfc_free (label);
1591 }
1592
1593
1594 /* Given a label number, search for and return a pointer to the label
1595 structure, creating it if it does not exist. */
1596
1597 gfc_st_label *
1598 gfc_get_st_label (int labelno)
1599 {
1600 gfc_st_label *lp;
1601
1602 /* First see if the label is already in this namespace. */
1603 lp = gfc_current_ns->st_labels;
1604 while (lp)
1605 {
1606 if (lp->value == labelno)
1607 return lp;
1608
1609 if (lp->value < labelno)
1610 lp = lp->left;
1611 else
1612 lp = lp->right;
1613 }
1614
1615 lp = gfc_getmem (sizeof (gfc_st_label));
1616
1617 lp->value = labelno;
1618 lp->defined = ST_LABEL_UNKNOWN;
1619 lp->referenced = ST_LABEL_UNKNOWN;
1620
1621 gfc_insert_bbt (&gfc_current_ns->st_labels, lp, compare_st_labels);
1622
1623 return lp;
1624 }
1625
1626
1627 /* Called when a statement with a statement label is about to be
1628 accepted. We add the label to the list of the current namespace,
1629 making sure it hasn't been defined previously and referenced
1630 correctly. */
1631
1632 void
1633 gfc_define_st_label (gfc_st_label * lp, gfc_sl_type type, locus * label_locus)
1634 {
1635 int labelno;
1636
1637 labelno = lp->value;
1638
1639 if (lp->defined != ST_LABEL_UNKNOWN)
1640 gfc_error ("Duplicate statement label %d at %L and %L", labelno,
1641 &lp->where, label_locus);
1642 else
1643 {
1644 lp->where = *label_locus;
1645
1646 switch (type)
1647 {
1648 case ST_LABEL_FORMAT:
1649 if (lp->referenced == ST_LABEL_TARGET)
1650 gfc_error ("Label %d at %C already referenced as branch target",
1651 labelno);
1652 else
1653 lp->defined = ST_LABEL_FORMAT;
1654
1655 break;
1656
1657 case ST_LABEL_TARGET:
1658 if (lp->referenced == ST_LABEL_FORMAT)
1659 gfc_error ("Label %d at %C already referenced as a format label",
1660 labelno);
1661 else
1662 lp->defined = ST_LABEL_TARGET;
1663
1664 break;
1665
1666 default:
1667 lp->defined = ST_LABEL_BAD_TARGET;
1668 lp->referenced = ST_LABEL_BAD_TARGET;
1669 }
1670 }
1671 }
1672
1673
1674 /* Reference a label. Given a label and its type, see if that
1675 reference is consistent with what is known about that label,
1676 updating the unknown state. Returns FAILURE if something goes
1677 wrong. */
1678
1679 try
1680 gfc_reference_st_label (gfc_st_label * lp, gfc_sl_type type)
1681 {
1682 gfc_sl_type label_type;
1683 int labelno;
1684 try rc;
1685
1686 if (lp == NULL)
1687 return SUCCESS;
1688
1689 labelno = lp->value;
1690
1691 if (lp->defined != ST_LABEL_UNKNOWN)
1692 label_type = lp->defined;
1693 else
1694 {
1695 label_type = lp->referenced;
1696 lp->where = gfc_current_locus;
1697 }
1698
1699 if (label_type == ST_LABEL_FORMAT && type == ST_LABEL_TARGET)
1700 {
1701 gfc_error ("Label %d at %C previously used as a FORMAT label", labelno);
1702 rc = FAILURE;
1703 goto done;
1704 }
1705
1706 if ((label_type == ST_LABEL_TARGET || label_type == ST_LABEL_BAD_TARGET)
1707 && type == ST_LABEL_FORMAT)
1708 {
1709 gfc_error ("Label %d at %C previously used as branch target", labelno);
1710 rc = FAILURE;
1711 goto done;
1712 }
1713
1714 lp->referenced = type;
1715 rc = SUCCESS;
1716
1717 done:
1718 return rc;
1719 }
1720
1721
1722 /************** Symbol table management subroutines ****************/
1723
1724 /* Basic details: Fortran 95 requires a potentially unlimited number
1725 of distinct namespaces when compiling a program unit. This case
1726 occurs during a compilation of internal subprograms because all of
1727 the internal subprograms must be read before we can start
1728 generating code for the host.
1729
1730 Given the tricky nature of the Fortran grammar, we must be able to
1731 undo changes made to a symbol table if the current interpretation
1732 of a statement is found to be incorrect. Whenever a symbol is
1733 looked up, we make a copy of it and link to it. All of these
1734 symbols are kept in a singly linked list so that we can commit or
1735 undo the changes at a later time.
1736
1737 A symtree may point to a symbol node outside of its namespace. In
1738 this case, that symbol has been used as a host associated variable
1739 at some previous time. */
1740
1741 /* Allocate a new namespace structure. Copies the implicit types from
1742 PARENT if PARENT_TYPES is set. */
1743
1744 gfc_namespace *
1745 gfc_get_namespace (gfc_namespace * parent, int parent_types)
1746 {
1747 gfc_namespace *ns;
1748 gfc_typespec *ts;
1749 gfc_intrinsic_op in;
1750 int i;
1751
1752 ns = gfc_getmem (sizeof (gfc_namespace));
1753 ns->sym_root = NULL;
1754 ns->uop_root = NULL;
1755 ns->default_access = ACCESS_UNKNOWN;
1756 ns->parent = parent;
1757
1758 for (in = GFC_INTRINSIC_BEGIN; in != GFC_INTRINSIC_END; in++)
1759 ns->operator_access[in] = ACCESS_UNKNOWN;
1760
1761 /* Initialize default implicit types. */
1762 for (i = 'a'; i <= 'z'; i++)
1763 {
1764 ns->set_flag[i - 'a'] = 0;
1765 ts = &ns->default_type[i - 'a'];
1766
1767 if (parent_types && ns->parent != NULL)
1768 {
1769 /* Copy parent settings */
1770 *ts = ns->parent->default_type[i - 'a'];
1771 continue;
1772 }
1773
1774 if (gfc_option.flag_implicit_none != 0)
1775 {
1776 gfc_clear_ts (ts);
1777 continue;
1778 }
1779
1780 if ('i' <= i && i <= 'n')
1781 {
1782 ts->type = BT_INTEGER;
1783 ts->kind = gfc_default_integer_kind;
1784 }
1785 else
1786 {
1787 ts->type = BT_REAL;
1788 ts->kind = gfc_default_real_kind;
1789 }
1790 }
1791
1792 ns->refs = 1;
1793
1794 return ns;
1795 }
1796
1797
1798 /* Comparison function for symtree nodes. */
1799
1800 static int
1801 compare_symtree (void * _st1, void * _st2)
1802 {
1803 gfc_symtree *st1, *st2;
1804
1805 st1 = (gfc_symtree *) _st1;
1806 st2 = (gfc_symtree *) _st2;
1807
1808 return strcmp (st1->name, st2->name);
1809 }
1810
1811
1812 /* Allocate a new symtree node and associate it with the new symbol. */
1813
1814 gfc_symtree *
1815 gfc_new_symtree (gfc_symtree ** root, const char *name)
1816 {
1817 gfc_symtree *st;
1818
1819 st = gfc_getmem (sizeof (gfc_symtree));
1820 st->name = gfc_get_string (name);
1821
1822 gfc_insert_bbt (root, st, compare_symtree);
1823 return st;
1824 }
1825
1826
1827 /* Delete a symbol from the tree. Does not free the symbol itself! */
1828
1829 static void
1830 delete_symtree (gfc_symtree ** root, const char *name)
1831 {
1832 gfc_symtree st, *st0;
1833
1834 st0 = gfc_find_symtree (*root, name);
1835
1836 st.name = gfc_get_string (name);
1837 gfc_delete_bbt (root, &st, compare_symtree);
1838
1839 gfc_free (st0);
1840 }
1841
1842
1843 /* Given a root symtree node and a name, try to find the symbol within
1844 the namespace. Returns NULL if the symbol is not found. */
1845
1846 gfc_symtree *
1847 gfc_find_symtree (gfc_symtree * st, const char *name)
1848 {
1849 int c;
1850
1851 while (st != NULL)
1852 {
1853 c = strcmp (name, st->name);
1854 if (c == 0)
1855 return st;
1856
1857 st = (c < 0) ? st->left : st->right;
1858 }
1859
1860 return NULL;
1861 }
1862
1863
1864 /* Given a name find a user operator node, creating it if it doesn't
1865 exist. These are much simpler than symbols because they can't be
1866 ambiguous with one another. */
1867
1868 gfc_user_op *
1869 gfc_get_uop (const char *name)
1870 {
1871 gfc_user_op *uop;
1872 gfc_symtree *st;
1873
1874 st = gfc_find_symtree (gfc_current_ns->uop_root, name);
1875 if (st != NULL)
1876 return st->n.uop;
1877
1878 st = gfc_new_symtree (&gfc_current_ns->uop_root, name);
1879
1880 uop = st->n.uop = gfc_getmem (sizeof (gfc_user_op));
1881 uop->name = gfc_get_string (name);
1882 uop->access = ACCESS_UNKNOWN;
1883 uop->ns = gfc_current_ns;
1884
1885 return uop;
1886 }
1887
1888
1889 /* Given a name find the user operator node. Returns NULL if it does
1890 not exist. */
1891
1892 gfc_user_op *
1893 gfc_find_uop (const char *name, gfc_namespace * ns)
1894 {
1895 gfc_symtree *st;
1896
1897 if (ns == NULL)
1898 ns = gfc_current_ns;
1899
1900 st = gfc_find_symtree (ns->uop_root, name);
1901 return (st == NULL) ? NULL : st->n.uop;
1902 }
1903
1904
1905 /* Remove a gfc_symbol structure and everything it points to. */
1906
1907 void
1908 gfc_free_symbol (gfc_symbol * sym)
1909 {
1910
1911 if (sym == NULL)
1912 return;
1913
1914 gfc_free_array_spec (sym->as);
1915
1916 free_components (sym->components);
1917
1918 gfc_free_expr (sym->value);
1919
1920 gfc_free_namelist (sym->namelist);
1921
1922 gfc_free_namespace (sym->formal_ns);
1923
1924 gfc_free_interface (sym->generic);
1925
1926 gfc_free_formal_arglist (sym->formal);
1927
1928 gfc_free (sym);
1929 }
1930
1931
1932 /* Allocate and initialize a new symbol node. */
1933
1934 gfc_symbol *
1935 gfc_new_symbol (const char *name, gfc_namespace * ns)
1936 {
1937 gfc_symbol *p;
1938
1939 p = gfc_getmem (sizeof (gfc_symbol));
1940
1941 gfc_clear_ts (&p->ts);
1942 gfc_clear_attr (&p->attr);
1943 p->ns = ns;
1944
1945 p->declared_at = gfc_current_locus;
1946
1947 if (strlen (name) > GFC_MAX_SYMBOL_LEN)
1948 gfc_internal_error ("new_symbol(): Symbol name too long");
1949
1950 p->name = gfc_get_string (name);
1951 return p;
1952 }
1953
1954
1955 /* Generate an error if a symbol is ambiguous. */
1956
1957 static void
1958 ambiguous_symbol (const char *name, gfc_symtree * st)
1959 {
1960
1961 if (st->n.sym->module)
1962 gfc_error ("Name '%s' at %C is an ambiguous reference to '%s' "
1963 "from module '%s'", name, st->n.sym->name, st->n.sym->module);
1964 else
1965 gfc_error ("Name '%s' at %C is an ambiguous reference to '%s' "
1966 "from current program unit", name, st->n.sym->name);
1967 }
1968
1969
1970 /* Search for a symtree starting in the current namespace, resorting to
1971 any parent namespaces if requested by a nonzero parent_flag.
1972 Returns nonzero if the name is ambiguous. */
1973
1974 int
1975 gfc_find_sym_tree (const char *name, gfc_namespace * ns, int parent_flag,
1976 gfc_symtree ** result)
1977 {
1978 gfc_symtree *st;
1979
1980 if (ns == NULL)
1981 ns = gfc_current_ns;
1982
1983 do
1984 {
1985 st = gfc_find_symtree (ns->sym_root, name);
1986 if (st != NULL)
1987 {
1988 *result = st;
1989 if (st->ambiguous)
1990 {
1991 ambiguous_symbol (name, st);
1992 return 1;
1993 }
1994
1995 return 0;
1996 }
1997
1998 if (!parent_flag)
1999 break;
2000
2001 ns = ns->parent;
2002 }
2003 while (ns != NULL);
2004
2005 *result = NULL;
2006 return 0;
2007 }
2008
2009
2010 /* Same, but returns the symbol instead. */
2011
2012 int
2013 gfc_find_symbol (const char *name, gfc_namespace * ns, int parent_flag,
2014 gfc_symbol ** result)
2015 {
2016 gfc_symtree *st;
2017 int i;
2018
2019 i = gfc_find_sym_tree (name, ns, parent_flag, &st);
2020
2021 if (st == NULL)
2022 *result = NULL;
2023 else
2024 *result = st->n.sym;
2025
2026 return i;
2027 }
2028
2029
2030 /* Save symbol with the information necessary to back it out. */
2031
2032 static void
2033 save_symbol_data (gfc_symbol * sym)
2034 {
2035
2036 if (sym->new || sym->old_symbol != NULL)
2037 return;
2038
2039 sym->old_symbol = gfc_getmem (sizeof (gfc_symbol));
2040 *(sym->old_symbol) = *sym;
2041
2042 sym->tlink = changed_syms;
2043 changed_syms = sym;
2044 }
2045
2046
2047 /* Given a name, find a symbol, or create it if it does not exist yet
2048 in the current namespace. If the symbol is found we make sure that
2049 it's OK.
2050
2051 The integer return code indicates
2052 0 All OK
2053 1 The symbol name was ambiguous
2054 2 The name meant to be established was already host associated.
2055
2056 So if the return value is nonzero, then an error was issued. */
2057
2058 int
2059 gfc_get_sym_tree (const char *name, gfc_namespace * ns, gfc_symtree ** result)
2060 {
2061 gfc_symtree *st;
2062 gfc_symbol *p;
2063
2064 /* This doesn't usually happen during resolution. */
2065 if (ns == NULL)
2066 ns = gfc_current_ns;
2067
2068 /* Try to find the symbol in ns. */
2069 st = gfc_find_symtree (ns->sym_root, name);
2070
2071 if (st == NULL)
2072 {
2073 /* If not there, create a new symbol. */
2074 p = gfc_new_symbol (name, ns);
2075
2076 /* Add to the list of tentative symbols. */
2077 p->old_symbol = NULL;
2078 p->tlink = changed_syms;
2079 p->mark = 1;
2080 p->new = 1;
2081 changed_syms = p;
2082
2083 st = gfc_new_symtree (&ns->sym_root, name);
2084 st->n.sym = p;
2085 p->refs++;
2086
2087 }
2088 else
2089 {
2090 /* Make sure the existing symbol is OK. */
2091 if (st->ambiguous)
2092 {
2093 ambiguous_symbol (name, st);
2094 return 1;
2095 }
2096
2097 p = st->n.sym;
2098
2099 if (p->ns != ns && (!p->attr.function || ns->proc_name != p))
2100 {
2101 /* Symbol is from another namespace. */
2102 gfc_error ("Symbol '%s' at %C has already been host associated",
2103 name);
2104 return 2;
2105 }
2106
2107 p->mark = 1;
2108
2109 /* Copy in case this symbol is changed. */
2110 save_symbol_data (p);
2111 }
2112
2113 *result = st;
2114 return 0;
2115 }
2116
2117
2118 int
2119 gfc_get_symbol (const char *name, gfc_namespace * ns, gfc_symbol ** result)
2120 {
2121 gfc_symtree *st;
2122 int i;
2123
2124
2125 i = gfc_get_sym_tree (name, ns, &st);
2126 if (i != 0)
2127 return i;
2128
2129 if (st)
2130 *result = st->n.sym;
2131 else
2132 *result = NULL;
2133 return i;
2134 }
2135
2136
2137 /* Subroutine that searches for a symbol, creating it if it doesn't
2138 exist, but tries to host-associate the symbol if possible. */
2139
2140 int
2141 gfc_get_ha_sym_tree (const char *name, gfc_symtree ** result)
2142 {
2143 gfc_symtree *st;
2144 int i;
2145
2146 i = gfc_find_sym_tree (name, gfc_current_ns, 0, &st);
2147 if (st != NULL)
2148 {
2149 save_symbol_data (st->n.sym);
2150
2151 *result = st;
2152 return i;
2153 }
2154
2155 if (gfc_current_ns->parent != NULL)
2156 {
2157 i = gfc_find_sym_tree (name, gfc_current_ns->parent, 1, &st);
2158 if (i)
2159 return i;
2160
2161 if (st != NULL)
2162 {
2163 *result = st;
2164 return 0;
2165 }
2166 }
2167
2168 return gfc_get_sym_tree (name, gfc_current_ns, result);
2169 }
2170
2171
2172 int
2173 gfc_get_ha_symbol (const char *name, gfc_symbol ** result)
2174 {
2175 int i;
2176 gfc_symtree *st;
2177
2178 i = gfc_get_ha_sym_tree (name, &st);
2179
2180 if (st)
2181 *result = st->n.sym;
2182 else
2183 *result = NULL;
2184
2185 return i;
2186 }
2187
2188 /* Return true if both symbols could refer to the same data object. Does
2189 not take account of aliasing due to equivalence statements. */
2190
2191 int
2192 gfc_symbols_could_alias (gfc_symbol * lsym, gfc_symbol * rsym)
2193 {
2194 /* Aliasing isn't possible if the symbols have different base types. */
2195 if (gfc_compare_types (&lsym->ts, &rsym->ts) == 0)
2196 return 0;
2197
2198 /* Pointers can point to other pointers, target objects and allocatable
2199 objects. Two allocatable objects cannot share the same storage. */
2200 if (lsym->attr.pointer
2201 && (rsym->attr.pointer || rsym->attr.allocatable || rsym->attr.target))
2202 return 1;
2203 if (lsym->attr.target && rsym->attr.pointer)
2204 return 1;
2205 if (lsym->attr.allocatable && rsym->attr.pointer)
2206 return 1;
2207
2208 return 0;
2209 }
2210
2211
2212 /* Undoes all the changes made to symbols in the current statement.
2213 This subroutine is made simpler due to the fact that attributes are
2214 never removed once added. */
2215
2216 void
2217 gfc_undo_symbols (void)
2218 {
2219 gfc_symbol *p, *q, *old;
2220
2221 for (p = changed_syms; p; p = q)
2222 {
2223 q = p->tlink;
2224
2225 if (p->new)
2226 {
2227 /* Symbol was new. */
2228 delete_symtree (&p->ns->sym_root, p->name);
2229
2230 p->refs--;
2231 if (p->refs < 0)
2232 gfc_internal_error ("gfc_undo_symbols(): Negative refs");
2233 if (p->refs == 0)
2234 gfc_free_symbol (p);
2235 continue;
2236 }
2237
2238 /* Restore previous state of symbol. Just copy simple stuff. */
2239 p->mark = 0;
2240 old = p->old_symbol;
2241
2242 p->ts.type = old->ts.type;
2243 p->ts.kind = old->ts.kind;
2244
2245 p->attr = old->attr;
2246
2247 if (p->value != old->value)
2248 {
2249 gfc_free_expr (old->value);
2250 p->value = NULL;
2251 }
2252
2253 if (p->as != old->as)
2254 {
2255 if (p->as)
2256 gfc_free_array_spec (p->as);
2257 p->as = old->as;
2258 }
2259
2260 p->generic = old->generic;
2261 p->component_access = old->component_access;
2262
2263 if (p->namelist != NULL && old->namelist == NULL)
2264 {
2265 gfc_free_namelist (p->namelist);
2266 p->namelist = NULL;
2267 }
2268 else
2269 {
2270
2271 if (p->namelist_tail != old->namelist_tail)
2272 {
2273 gfc_free_namelist (old->namelist_tail);
2274 old->namelist_tail->next = NULL;
2275 }
2276 }
2277
2278 p->namelist_tail = old->namelist_tail;
2279
2280 if (p->formal != old->formal)
2281 {
2282 gfc_free_formal_arglist (p->formal);
2283 p->formal = old->formal;
2284 }
2285
2286 gfc_free (p->old_symbol);
2287 p->old_symbol = NULL;
2288 p->tlink = NULL;
2289 }
2290
2291 changed_syms = NULL;
2292 }
2293
2294
2295 /* Free sym->old_symbol. sym->old_symbol is mostly a shallow copy of sym; the
2296 components of old_symbol that might need deallocation are the "allocatables"
2297 that are restored in gfc_undo_symbols(), with two exceptions: namelist and
2298 namelist_tail. In case these differ between old_symbol and sym, it's just
2299 because sym->namelist has gotten a few more items. */
2300
2301 static void
2302 free_old_symbol (gfc_symbol * sym)
2303 {
2304 if (sym->old_symbol == NULL)
2305 return;
2306
2307 if (sym->old_symbol->as != sym->as)
2308 gfc_free_array_spec (sym->old_symbol->as);
2309
2310 if (sym->old_symbol->value != sym->value)
2311 gfc_free_expr (sym->old_symbol->value);
2312
2313 if (sym->old_symbol->formal != sym->formal)
2314 gfc_free_formal_arglist (sym->old_symbol->formal);
2315
2316 gfc_free (sym->old_symbol);
2317 sym->old_symbol = NULL;
2318 }
2319
2320
2321 /* Makes the changes made in the current statement permanent-- gets
2322 rid of undo information. */
2323
2324 void
2325 gfc_commit_symbols (void)
2326 {
2327 gfc_symbol *p, *q;
2328
2329 for (p = changed_syms; p; p = q)
2330 {
2331 q = p->tlink;
2332 p->tlink = NULL;
2333 p->mark = 0;
2334 p->new = 0;
2335
2336 free_old_symbol (p);
2337 }
2338 changed_syms = NULL;
2339 }
2340
2341
2342 /* Makes the changes made in one symbol permanent -- gets rid of undo
2343 information. */
2344
2345 void
2346 gfc_commit_symbol (gfc_symbol * sym)
2347 {
2348 gfc_symbol *p;
2349
2350 if (changed_syms == sym)
2351 changed_syms = sym->tlink;
2352 else
2353 {
2354 for (p = changed_syms; p; p = p->tlink)
2355 if (p->tlink == sym)
2356 {
2357 p->tlink = sym->tlink;
2358 break;
2359 }
2360 }
2361
2362 sym->tlink = NULL;
2363 sym->mark = 0;
2364 sym->new = 0;
2365
2366 free_old_symbol (sym);
2367 }
2368
2369
2370 /* Recursive function that deletes an entire tree and all the common
2371 head structures it points to. */
2372
2373 static void
2374 free_common_tree (gfc_symtree * common_tree)
2375 {
2376 if (common_tree == NULL)
2377 return;
2378
2379 free_common_tree (common_tree->left);
2380 free_common_tree (common_tree->right);
2381
2382 gfc_free (common_tree);
2383 }
2384
2385
2386 /* Recursive function that deletes an entire tree and all the user
2387 operator nodes that it contains. */
2388
2389 static void
2390 free_uop_tree (gfc_symtree * uop_tree)
2391 {
2392
2393 if (uop_tree == NULL)
2394 return;
2395
2396 free_uop_tree (uop_tree->left);
2397 free_uop_tree (uop_tree->right);
2398
2399 gfc_free_interface (uop_tree->n.uop->operator);
2400
2401 gfc_free (uop_tree->n.uop);
2402 gfc_free (uop_tree);
2403 }
2404
2405
2406 /* Recursive function that deletes an entire tree and all the symbols
2407 that it contains. */
2408
2409 static void
2410 free_sym_tree (gfc_symtree * sym_tree)
2411 {
2412 gfc_namespace *ns;
2413 gfc_symbol *sym;
2414
2415 if (sym_tree == NULL)
2416 return;
2417
2418 free_sym_tree (sym_tree->left);
2419 free_sym_tree (sym_tree->right);
2420
2421 sym = sym_tree->n.sym;
2422
2423 sym->refs--;
2424 if (sym->refs < 0)
2425 gfc_internal_error ("free_sym_tree(): Negative refs");
2426
2427 if (sym->formal_ns != NULL && sym->refs == 1)
2428 {
2429 /* As formal_ns contains a reference to sym, delete formal_ns just
2430 before the deletion of sym. */
2431 ns = sym->formal_ns;
2432 sym->formal_ns = NULL;
2433 gfc_free_namespace (ns);
2434 }
2435 else if (sym->refs == 0)
2436 {
2437 /* Go ahead and delete the symbol. */
2438 gfc_free_symbol (sym);
2439 }
2440
2441 gfc_free (sym_tree);
2442 }
2443
2444
2445 /* Free a derived type list. */
2446
2447 static void
2448 gfc_free_dt_list (gfc_dt_list * dt)
2449 {
2450 gfc_dt_list *n;
2451
2452 for (; dt; dt = n)
2453 {
2454 n = dt->next;
2455 gfc_free (dt);
2456 }
2457 }
2458
2459
2460 /* Free the gfc_equiv_info's. */
2461
2462 static void
2463 gfc_free_equiv_infos (gfc_equiv_info * s)
2464 {
2465 if (s == NULL)
2466 return;
2467 gfc_free_equiv_infos (s->next);
2468 gfc_free (s);
2469 }
2470
2471
2472 /* Free the gfc_equiv_lists. */
2473
2474 static void
2475 gfc_free_equiv_lists (gfc_equiv_list * l)
2476 {
2477 if (l == NULL)
2478 return;
2479 gfc_free_equiv_lists (l->next);
2480 gfc_free_equiv_infos (l->equiv);
2481 gfc_free (l);
2482 }
2483
2484
2485 /* Free a namespace structure and everything below it. Interface
2486 lists associated with intrinsic operators are not freed. These are
2487 taken care of when a specific name is freed. */
2488
2489 void
2490 gfc_free_namespace (gfc_namespace * ns)
2491 {
2492 gfc_charlen *cl, *cl2;
2493 gfc_namespace *p, *q;
2494 gfc_intrinsic_op i;
2495
2496 if (ns == NULL)
2497 return;
2498
2499 ns->refs--;
2500 if (ns->refs > 0)
2501 return;
2502 gcc_assert (ns->refs == 0);
2503
2504 gfc_free_statements (ns->code);
2505
2506 free_sym_tree (ns->sym_root);
2507 free_uop_tree (ns->uop_root);
2508 free_common_tree (ns->common_root);
2509
2510 for (cl = ns->cl_list; cl; cl = cl2)
2511 {
2512 cl2 = cl->next;
2513 gfc_free_expr (cl->length);
2514 gfc_free (cl);
2515 }
2516
2517 free_st_labels (ns->st_labels);
2518
2519 gfc_free_equiv (ns->equiv);
2520 gfc_free_equiv_lists (ns->equiv_lists);
2521
2522 gfc_free_dt_list (ns->derived_types);
2523
2524 for (i = GFC_INTRINSIC_BEGIN; i != GFC_INTRINSIC_END; i++)
2525 gfc_free_interface (ns->operator[i]);
2526
2527 gfc_free_data (ns->data);
2528 p = ns->contained;
2529 gfc_free (ns);
2530
2531 /* Recursively free any contained namespaces. */
2532 while (p != NULL)
2533 {
2534 q = p;
2535 p = p->sibling;
2536
2537 gfc_free_namespace (q);
2538 }
2539 }
2540
2541
2542 void
2543 gfc_symbol_init_2 (void)
2544 {
2545
2546 gfc_current_ns = gfc_get_namespace (NULL, 0);
2547 }
2548
2549
2550 void
2551 gfc_symbol_done_2 (void)
2552 {
2553
2554 gfc_free_namespace (gfc_current_ns);
2555 gfc_current_ns = NULL;
2556 }
2557
2558
2559 /* Clear mark bits from symbol nodes associated with a symtree node. */
2560
2561 static void
2562 clear_sym_mark (gfc_symtree * st)
2563 {
2564
2565 st->n.sym->mark = 0;
2566 }
2567
2568
2569 /* Recursively traverse the symtree nodes. */
2570
2571 void
2572 gfc_traverse_symtree (gfc_symtree * st, void (*func) (gfc_symtree *))
2573 {
2574 if (st != NULL)
2575 {
2576 (*func) (st);
2577
2578 gfc_traverse_symtree (st->left, func);
2579 gfc_traverse_symtree (st->right, func);
2580 }
2581 }
2582
2583
2584 /* Recursive namespace traversal function. */
2585
2586 static void
2587 traverse_ns (gfc_symtree * st, void (*func) (gfc_symbol *))
2588 {
2589
2590 if (st == NULL)
2591 return;
2592
2593 if (st->n.sym->mark == 0)
2594 (*func) (st->n.sym);
2595 st->n.sym->mark = 1;
2596
2597 traverse_ns (st->left, func);
2598 traverse_ns (st->right, func);
2599 }
2600
2601
2602 /* Call a given function for all symbols in the namespace. We take
2603 care that each gfc_symbol node is called exactly once. */
2604
2605 void
2606 gfc_traverse_ns (gfc_namespace * ns, void (*func) (gfc_symbol *))
2607 {
2608
2609 gfc_traverse_symtree (ns->sym_root, clear_sym_mark);
2610
2611 traverse_ns (ns->sym_root, func);
2612 }
2613
2614
2615 /* Return TRUE if the symbol is an automatic variable. */
2616 static bool
2617 gfc_is_var_automatic (gfc_symbol * sym)
2618 {
2619 /* Pointer and allocatable variables are never automatic. */
2620 if (sym->attr.pointer || sym->attr.allocatable)
2621 return false;
2622 /* Check for arrays with non-constant size. */
2623 if (sym->attr.dimension && sym->as
2624 && !gfc_is_compile_time_shape (sym->as))
2625 return true;
2626 /* Check for non-constant length character variables. */
2627 if (sym->ts.type == BT_CHARACTER
2628 && sym->ts.cl
2629 && !gfc_is_constant_expr (sym->ts.cl->length))
2630 return true;
2631 return false;
2632 }
2633
2634 /* Given a symbol, mark it as SAVEd if it is allowed. */
2635
2636 static void
2637 save_symbol (gfc_symbol * sym)
2638 {
2639
2640 if (sym->attr.use_assoc)
2641 return;
2642
2643 if (sym->attr.in_common
2644 || sym->attr.dummy
2645 || sym->attr.flavor != FL_VARIABLE)
2646 return;
2647 /* Automatic objects are not saved. */
2648 if (gfc_is_var_automatic (sym))
2649 return;
2650 gfc_add_save (&sym->attr, sym->name, &sym->declared_at);
2651 }
2652
2653
2654 /* Mark those symbols which can be SAVEd as such. */
2655
2656 void
2657 gfc_save_all (gfc_namespace * ns)
2658 {
2659
2660 gfc_traverse_ns (ns, save_symbol);
2661 }
2662
2663
2664 #ifdef GFC_DEBUG
2665 /* Make sure that no changes to symbols are pending. */
2666
2667 void
2668 gfc_symbol_state(void) {
2669
2670 if (changed_syms != NULL)
2671 gfc_internal_error("Symbol changes still pending!");
2672 }
2673 #endif
2674
2675
2676 /************** Global symbol handling ************/
2677
2678
2679 /* Search a tree for the global symbol. */
2680
2681 gfc_gsymbol *
2682 gfc_find_gsymbol (gfc_gsymbol *symbol, const char *name)
2683 {
2684 gfc_gsymbol *s;
2685
2686 if (symbol == NULL)
2687 return NULL;
2688 if (strcmp (symbol->name, name) == 0)
2689 return symbol;
2690
2691 s = gfc_find_gsymbol (symbol->left, name);
2692 if (s != NULL)
2693 return s;
2694
2695 s = gfc_find_gsymbol (symbol->right, name);
2696 if (s != NULL)
2697 return s;
2698
2699 return NULL;
2700 }
2701
2702
2703 /* Compare two global symbols. Used for managing the BB tree. */
2704
2705 static int
2706 gsym_compare (void * _s1, void * _s2)
2707 {
2708 gfc_gsymbol *s1, *s2;
2709
2710 s1 = (gfc_gsymbol *)_s1;
2711 s2 = (gfc_gsymbol *)_s2;
2712 return strcmp(s1->name, s2->name);
2713 }
2714
2715
2716 /* Get a global symbol, creating it if it doesn't exist. */
2717
2718 gfc_gsymbol *
2719 gfc_get_gsymbol (const char *name)
2720 {
2721 gfc_gsymbol *s;
2722
2723 s = gfc_find_gsymbol (gfc_gsym_root, name);
2724 if (s != NULL)
2725 return s;
2726
2727 s = gfc_getmem (sizeof (gfc_gsymbol));
2728 s->type = GSYM_UNKNOWN;
2729 s->name = gfc_get_string (name);
2730
2731 gfc_insert_bbt (&gfc_gsym_root, s, gsym_compare);
2732
2733 return s;
2734 }