re PR fortran/22571 (Reject derived types for dummy arguments declared in the subrout...
[gcc.git] / gcc / fortran / decl.c
1 /* Declaration statement matcher
2 Copyright (C) 2002, 2004, 2005, 2006, 2007, 2008
3 Free Software 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 3, 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 COPYING3. If not see
20 <http://www.gnu.org/licenses/>. */
21
22 #include "config.h"
23 #include "system.h"
24 #include "gfortran.h"
25 #include "match.h"
26 #include "parse.h"
27
28
29 /* Macros to access allocate memory for gfc_data_variable,
30 gfc_data_value and gfc_data. */
31 #define gfc_get_data_variable() XCNEW (gfc_data_variable)
32 #define gfc_get_data_value() XCNEW (gfc_data_value)
33 #define gfc_get_data() XCNEW (gfc_data)
34
35
36 /* This flag is set if an old-style length selector is matched
37 during a type-declaration statement. */
38
39 static int old_char_selector;
40
41 /* When variables acquire types and attributes from a declaration
42 statement, they get them from the following static variables. The
43 first part of a declaration sets these variables and the second
44 part copies these into symbol structures. */
45
46 static gfc_typespec current_ts;
47
48 static symbol_attribute current_attr;
49 static gfc_array_spec *current_as;
50 static int colon_seen;
51
52 /* The current binding label (if any). */
53 static char curr_binding_label[GFC_MAX_BINDING_LABEL_LEN + 1];
54 /* Need to know how many identifiers are on the current data declaration
55 line in case we're given the BIND(C) attribute with a NAME= specifier. */
56 static int num_idents_on_line;
57 /* Need to know if a NAME= specifier was found during gfc_match_bind_c so we
58 can supply a name if the curr_binding_label is nil and NAME= was not. */
59 static int has_name_equals = 0;
60
61 /* Initializer of the previous enumerator. */
62
63 static gfc_expr *last_initializer;
64
65 /* History of all the enumerators is maintained, so that
66 kind values of all the enumerators could be updated depending
67 upon the maximum initialized value. */
68
69 typedef struct enumerator_history
70 {
71 gfc_symbol *sym;
72 gfc_expr *initializer;
73 struct enumerator_history *next;
74 }
75 enumerator_history;
76
77 /* Header of enum history chain. */
78
79 static enumerator_history *enum_history = NULL;
80
81 /* Pointer of enum history node containing largest initializer. */
82
83 static enumerator_history *max_enum = NULL;
84
85 /* gfc_new_block points to the symbol of a newly matched block. */
86
87 gfc_symbol *gfc_new_block;
88
89 bool gfc_matching_function;
90
91
92 /********************* DATA statement subroutines *********************/
93
94 static bool in_match_data = false;
95
96 bool
97 gfc_in_match_data (void)
98 {
99 return in_match_data;
100 }
101
102 static void
103 set_in_match_data (bool set_value)
104 {
105 in_match_data = set_value;
106 }
107
108 /* Free a gfc_data_variable structure and everything beneath it. */
109
110 static void
111 free_variable (gfc_data_variable *p)
112 {
113 gfc_data_variable *q;
114
115 for (; p; p = q)
116 {
117 q = p->next;
118 gfc_free_expr (p->expr);
119 gfc_free_iterator (&p->iter, 0);
120 free_variable (p->list);
121 gfc_free (p);
122 }
123 }
124
125
126 /* Free a gfc_data_value structure and everything beneath it. */
127
128 static void
129 free_value (gfc_data_value *p)
130 {
131 gfc_data_value *q;
132
133 for (; p; p = q)
134 {
135 q = p->next;
136 gfc_free_expr (p->expr);
137 gfc_free (p);
138 }
139 }
140
141
142 /* Free a list of gfc_data structures. */
143
144 void
145 gfc_free_data (gfc_data *p)
146 {
147 gfc_data *q;
148
149 for (; p; p = q)
150 {
151 q = p->next;
152 free_variable (p->var);
153 free_value (p->value);
154 gfc_free (p);
155 }
156 }
157
158
159 /* Free all data in a namespace. */
160
161 static void
162 gfc_free_data_all (gfc_namespace *ns)
163 {
164 gfc_data *d;
165
166 for (;ns->data;)
167 {
168 d = ns->data->next;
169 gfc_free (ns->data);
170 ns->data = d;
171 }
172 }
173
174
175 static match var_element (gfc_data_variable *);
176
177 /* Match a list of variables terminated by an iterator and a right
178 parenthesis. */
179
180 static match
181 var_list (gfc_data_variable *parent)
182 {
183 gfc_data_variable *tail, var;
184 match m;
185
186 m = var_element (&var);
187 if (m == MATCH_ERROR)
188 return MATCH_ERROR;
189 if (m == MATCH_NO)
190 goto syntax;
191
192 tail = gfc_get_data_variable ();
193 *tail = var;
194
195 parent->list = tail;
196
197 for (;;)
198 {
199 if (gfc_match_char (',') != MATCH_YES)
200 goto syntax;
201
202 m = gfc_match_iterator (&parent->iter, 1);
203 if (m == MATCH_YES)
204 break;
205 if (m == MATCH_ERROR)
206 return MATCH_ERROR;
207
208 m = var_element (&var);
209 if (m == MATCH_ERROR)
210 return MATCH_ERROR;
211 if (m == MATCH_NO)
212 goto syntax;
213
214 tail->next = gfc_get_data_variable ();
215 tail = tail->next;
216
217 *tail = var;
218 }
219
220 if (gfc_match_char (')') != MATCH_YES)
221 goto syntax;
222 return MATCH_YES;
223
224 syntax:
225 gfc_syntax_error (ST_DATA);
226 return MATCH_ERROR;
227 }
228
229
230 /* Match a single element in a data variable list, which can be a
231 variable-iterator list. */
232
233 static match
234 var_element (gfc_data_variable *new_var)
235 {
236 match m;
237 gfc_symbol *sym;
238
239 memset (new_var, 0, sizeof (gfc_data_variable));
240
241 if (gfc_match_char ('(') == MATCH_YES)
242 return var_list (new_var);
243
244 m = gfc_match_variable (&new_var->expr, 0);
245 if (m != MATCH_YES)
246 return m;
247
248 sym = new_var->expr->symtree->n.sym;
249
250 /* Symbol should already have an associated type. */
251 if (gfc_check_symbol_typed (sym, gfc_current_ns,
252 false, gfc_current_locus) == FAILURE)
253 return MATCH_ERROR;
254
255 if (!sym->attr.function && gfc_current_ns->parent
256 && gfc_current_ns->parent == sym->ns)
257 {
258 gfc_error ("Host associated variable '%s' may not be in the DATA "
259 "statement at %C", sym->name);
260 return MATCH_ERROR;
261 }
262
263 if (gfc_current_state () != COMP_BLOCK_DATA
264 && sym->attr.in_common
265 && gfc_notify_std (GFC_STD_GNU, "Extension: initialization of "
266 "common block variable '%s' in DATA statement at %C",
267 sym->name) == FAILURE)
268 return MATCH_ERROR;
269
270 if (gfc_add_data (&sym->attr, sym->name, &new_var->expr->where) == FAILURE)
271 return MATCH_ERROR;
272
273 return MATCH_YES;
274 }
275
276
277 /* Match the top-level list of data variables. */
278
279 static match
280 top_var_list (gfc_data *d)
281 {
282 gfc_data_variable var, *tail, *new_var;
283 match m;
284
285 tail = NULL;
286
287 for (;;)
288 {
289 m = var_element (&var);
290 if (m == MATCH_NO)
291 goto syntax;
292 if (m == MATCH_ERROR)
293 return MATCH_ERROR;
294
295 new_var = gfc_get_data_variable ();
296 *new_var = var;
297
298 if (tail == NULL)
299 d->var = new_var;
300 else
301 tail->next = new_var;
302
303 tail = new_var;
304
305 if (gfc_match_char ('/') == MATCH_YES)
306 break;
307 if (gfc_match_char (',') != MATCH_YES)
308 goto syntax;
309 }
310
311 return MATCH_YES;
312
313 syntax:
314 gfc_syntax_error (ST_DATA);
315 gfc_free_data_all (gfc_current_ns);
316 return MATCH_ERROR;
317 }
318
319
320 static match
321 match_data_constant (gfc_expr **result)
322 {
323 char name[GFC_MAX_SYMBOL_LEN + 1];
324 gfc_symbol *sym;
325 gfc_expr *expr;
326 match m;
327 locus old_loc;
328
329 m = gfc_match_literal_constant (&expr, 1);
330 if (m == MATCH_YES)
331 {
332 *result = expr;
333 return MATCH_YES;
334 }
335
336 if (m == MATCH_ERROR)
337 return MATCH_ERROR;
338
339 m = gfc_match_null (result);
340 if (m != MATCH_NO)
341 return m;
342
343 old_loc = gfc_current_locus;
344
345 /* Should this be a structure component, try to match it
346 before matching a name. */
347 m = gfc_match_rvalue (result);
348 if (m == MATCH_ERROR)
349 return m;
350
351 if (m == MATCH_YES && (*result)->expr_type == EXPR_STRUCTURE)
352 {
353 if (gfc_simplify_expr (*result, 0) == FAILURE)
354 m = MATCH_ERROR;
355 return m;
356 }
357
358 gfc_current_locus = old_loc;
359
360 m = gfc_match_name (name);
361 if (m != MATCH_YES)
362 return m;
363
364 if (gfc_find_symbol (name, NULL, 1, &sym))
365 return MATCH_ERROR;
366
367 if (sym == NULL
368 || (sym->attr.flavor != FL_PARAMETER && sym->attr.flavor != FL_DERIVED))
369 {
370 gfc_error ("Symbol '%s' must be a PARAMETER in DATA statement at %C",
371 name);
372 return MATCH_ERROR;
373 }
374 else if (sym->attr.flavor == FL_DERIVED)
375 return gfc_match_structure_constructor (sym, result, false);
376
377 /* Check to see if the value is an initialization array expression. */
378 if (sym->value->expr_type == EXPR_ARRAY)
379 {
380 gfc_current_locus = old_loc;
381
382 m = gfc_match_init_expr (result);
383 if (m == MATCH_ERROR)
384 return m;
385
386 if (m == MATCH_YES)
387 {
388 if (gfc_simplify_expr (*result, 0) == FAILURE)
389 m = MATCH_ERROR;
390
391 if ((*result)->expr_type == EXPR_CONSTANT)
392 return m;
393 else
394 {
395 gfc_error ("Invalid initializer %s in Data statement at %C", name);
396 return MATCH_ERROR;
397 }
398 }
399 }
400
401 *result = gfc_copy_expr (sym->value);
402 return MATCH_YES;
403 }
404
405
406 /* Match a list of values in a DATA statement. The leading '/' has
407 already been seen at this point. */
408
409 static match
410 top_val_list (gfc_data *data)
411 {
412 gfc_data_value *new_val, *tail;
413 gfc_expr *expr;
414 match m;
415
416 tail = NULL;
417
418 for (;;)
419 {
420 m = match_data_constant (&expr);
421 if (m == MATCH_NO)
422 goto syntax;
423 if (m == MATCH_ERROR)
424 return MATCH_ERROR;
425
426 new_val = gfc_get_data_value ();
427 mpz_init (new_val->repeat);
428
429 if (tail == NULL)
430 data->value = new_val;
431 else
432 tail->next = new_val;
433
434 tail = new_val;
435
436 if (expr->ts.type != BT_INTEGER || gfc_match_char ('*') != MATCH_YES)
437 {
438 tail->expr = expr;
439 mpz_set_ui (tail->repeat, 1);
440 }
441 else
442 {
443 if (expr->ts.type == BT_INTEGER)
444 mpz_set (tail->repeat, expr->value.integer);
445 gfc_free_expr (expr);
446
447 m = match_data_constant (&tail->expr);
448 if (m == MATCH_NO)
449 goto syntax;
450 if (m == MATCH_ERROR)
451 return MATCH_ERROR;
452 }
453
454 if (gfc_match_char ('/') == MATCH_YES)
455 break;
456 if (gfc_match_char (',') == MATCH_NO)
457 goto syntax;
458 }
459
460 return MATCH_YES;
461
462 syntax:
463 gfc_syntax_error (ST_DATA);
464 gfc_free_data_all (gfc_current_ns);
465 return MATCH_ERROR;
466 }
467
468
469 /* Matches an old style initialization. */
470
471 static match
472 match_old_style_init (const char *name)
473 {
474 match m;
475 gfc_symtree *st;
476 gfc_symbol *sym;
477 gfc_data *newdata;
478
479 /* Set up data structure to hold initializers. */
480 gfc_find_sym_tree (name, NULL, 0, &st);
481 sym = st->n.sym;
482
483 newdata = gfc_get_data ();
484 newdata->var = gfc_get_data_variable ();
485 newdata->var->expr = gfc_get_variable_expr (st);
486 newdata->where = gfc_current_locus;
487
488 /* Match initial value list. This also eats the terminal '/'. */
489 m = top_val_list (newdata);
490 if (m != MATCH_YES)
491 {
492 gfc_free (newdata);
493 return m;
494 }
495
496 if (gfc_pure (NULL))
497 {
498 gfc_error ("Initialization at %C is not allowed in a PURE procedure");
499 gfc_free (newdata);
500 return MATCH_ERROR;
501 }
502
503 /* Mark the variable as having appeared in a data statement. */
504 if (gfc_add_data (&sym->attr, sym->name, &sym->declared_at) == FAILURE)
505 {
506 gfc_free (newdata);
507 return MATCH_ERROR;
508 }
509
510 /* Chain in namespace list of DATA initializers. */
511 newdata->next = gfc_current_ns->data;
512 gfc_current_ns->data = newdata;
513
514 return m;
515 }
516
517
518 /* Match the stuff following a DATA statement. If ERROR_FLAG is set,
519 we are matching a DATA statement and are therefore issuing an error
520 if we encounter something unexpected, if not, we're trying to match
521 an old-style initialization expression of the form INTEGER I /2/. */
522
523 match
524 gfc_match_data (void)
525 {
526 gfc_data *new_data;
527 match m;
528
529 set_in_match_data (true);
530
531 for (;;)
532 {
533 new_data = gfc_get_data ();
534 new_data->where = gfc_current_locus;
535
536 m = top_var_list (new_data);
537 if (m != MATCH_YES)
538 goto cleanup;
539
540 m = top_val_list (new_data);
541 if (m != MATCH_YES)
542 goto cleanup;
543
544 new_data->next = gfc_current_ns->data;
545 gfc_current_ns->data = new_data;
546
547 if (gfc_match_eos () == MATCH_YES)
548 break;
549
550 gfc_match_char (','); /* Optional comma */
551 }
552
553 set_in_match_data (false);
554
555 if (gfc_pure (NULL))
556 {
557 gfc_error ("DATA statement at %C is not allowed in a PURE procedure");
558 return MATCH_ERROR;
559 }
560
561 return MATCH_YES;
562
563 cleanup:
564 set_in_match_data (false);
565 gfc_free_data (new_data);
566 return MATCH_ERROR;
567 }
568
569
570 /************************ Declaration statements *********************/
571
572 /* Match an intent specification. Since this can only happen after an
573 INTENT word, a legal intent-spec must follow. */
574
575 static sym_intent
576 match_intent_spec (void)
577 {
578
579 if (gfc_match (" ( in out )") == MATCH_YES)
580 return INTENT_INOUT;
581 if (gfc_match (" ( in )") == MATCH_YES)
582 return INTENT_IN;
583 if (gfc_match (" ( out )") == MATCH_YES)
584 return INTENT_OUT;
585
586 gfc_error ("Bad INTENT specification at %C");
587 return INTENT_UNKNOWN;
588 }
589
590
591 /* Matches a character length specification, which is either a
592 specification expression or a '*'. */
593
594 static match
595 char_len_param_value (gfc_expr **expr)
596 {
597 match m;
598
599 if (gfc_match_char ('*') == MATCH_YES)
600 {
601 *expr = NULL;
602 return MATCH_YES;
603 }
604
605 m = gfc_match_expr (expr);
606
607 if (m == MATCH_YES
608 && gfc_expr_check_typed (*expr, gfc_current_ns, false) == FAILURE)
609 return MATCH_ERROR;
610
611 if (m == MATCH_YES && (*expr)->expr_type == EXPR_FUNCTION)
612 {
613 if ((*expr)->value.function.actual
614 && (*expr)->value.function.actual->expr->symtree)
615 {
616 gfc_expr *e;
617 e = (*expr)->value.function.actual->expr;
618 if (e->symtree->n.sym->attr.flavor == FL_PROCEDURE
619 && e->expr_type == EXPR_VARIABLE)
620 {
621 if (e->symtree->n.sym->ts.type == BT_UNKNOWN)
622 goto syntax;
623 if (e->symtree->n.sym->ts.type == BT_CHARACTER
624 && e->symtree->n.sym->ts.cl
625 && e->symtree->n.sym->ts.cl->length->ts.type == BT_UNKNOWN)
626 goto syntax;
627 }
628 }
629 }
630 return m;
631
632 syntax:
633 gfc_error ("Conflict in attributes of function argument at %C");
634 return MATCH_ERROR;
635 }
636
637
638 /* A character length is a '*' followed by a literal integer or a
639 char_len_param_value in parenthesis. */
640
641 static match
642 match_char_length (gfc_expr **expr)
643 {
644 int length;
645 match m;
646
647 m = gfc_match_char ('*');
648 if (m != MATCH_YES)
649 return m;
650
651 m = gfc_match_small_literal_int (&length, NULL);
652 if (m == MATCH_ERROR)
653 return m;
654
655 if (m == MATCH_YES)
656 {
657 *expr = gfc_int_expr (length);
658 return m;
659 }
660
661 if (gfc_match_char ('(') == MATCH_NO)
662 goto syntax;
663
664 m = char_len_param_value (expr);
665 if (m != MATCH_YES && gfc_matching_function)
666 {
667 gfc_undo_symbols ();
668 m = MATCH_YES;
669 }
670
671 if (m == MATCH_ERROR)
672 return m;
673 if (m == MATCH_NO)
674 goto syntax;
675
676 if (gfc_match_char (')') == MATCH_NO)
677 {
678 gfc_free_expr (*expr);
679 *expr = NULL;
680 goto syntax;
681 }
682
683 return MATCH_YES;
684
685 syntax:
686 gfc_error ("Syntax error in character length specification at %C");
687 return MATCH_ERROR;
688 }
689
690
691 /* Special subroutine for finding a symbol. Check if the name is found
692 in the current name space. If not, and we're compiling a function or
693 subroutine and the parent compilation unit is an interface, then check
694 to see if the name we've been given is the name of the interface
695 (located in another namespace). */
696
697 static int
698 find_special (const char *name, gfc_symbol **result)
699 {
700 gfc_state_data *s;
701 int i;
702
703 i = gfc_get_symbol (name, NULL, result);
704 if (i == 0)
705 goto end;
706
707 if (gfc_current_state () != COMP_SUBROUTINE
708 && gfc_current_state () != COMP_FUNCTION)
709 goto end;
710
711 s = gfc_state_stack->previous;
712 if (s == NULL)
713 goto end;
714
715 if (s->state != COMP_INTERFACE)
716 goto end;
717 if (s->sym == NULL)
718 goto end; /* Nameless interface. */
719
720 if (strcmp (name, s->sym->name) == 0)
721 {
722 *result = s->sym;
723 return 0;
724 }
725
726 end:
727 return i;
728 }
729
730
731 /* Special subroutine for getting a symbol node associated with a
732 procedure name, used in SUBROUTINE and FUNCTION statements. The
733 symbol is created in the parent using with symtree node in the
734 child unit pointing to the symbol. If the current namespace has no
735 parent, then the symbol is just created in the current unit. */
736
737 static int
738 get_proc_name (const char *name, gfc_symbol **result, bool module_fcn_entry)
739 {
740 gfc_symtree *st;
741 gfc_symbol *sym;
742 int rc = 0;
743
744 /* Module functions have to be left in their own namespace because
745 they have potentially (almost certainly!) already been referenced.
746 In this sense, they are rather like external functions. This is
747 fixed up in resolve.c(resolve_entries), where the symbol name-
748 space is set to point to the master function, so that the fake
749 result mechanism can work. */
750 if (module_fcn_entry)
751 {
752 /* Present if entry is declared to be a module procedure. */
753 rc = gfc_find_symbol (name, gfc_current_ns->parent, 0, result);
754
755 if (*result == NULL)
756 rc = gfc_get_symbol (name, NULL, result);
757 else if (!gfc_get_symbol (name, NULL, &sym) && sym
758 && (*result)->ts.type == BT_UNKNOWN
759 && sym->attr.flavor == FL_UNKNOWN)
760 /* Pick up the typespec for the entry, if declared in the function
761 body. Note that this symbol is FL_UNKNOWN because it will
762 only have appeared in a type declaration. The local symtree
763 is set to point to the module symbol and a unique symtree
764 to the local version. This latter ensures a correct clearing
765 of the symbols. */
766 {
767 /* If the ENTRY proceeds its specification, we need to ensure
768 that this does not raise a "has no IMPLICIT type" error. */
769 if (sym->ts.type == BT_UNKNOWN)
770 sym->attr.untyped = 1;
771
772 (*result)->ts = sym->ts;
773
774 /* Put the symbol in the procedure namespace so that, should
775 the ENTRY precede its specification, the specification
776 can be applied. */
777 (*result)->ns = gfc_current_ns;
778
779 gfc_find_sym_tree (name, gfc_current_ns, 0, &st);
780 st->n.sym = *result;
781 st = gfc_get_unique_symtree (gfc_current_ns);
782 st->n.sym = sym;
783 }
784 }
785 else
786 rc = gfc_get_symbol (name, gfc_current_ns->parent, result);
787
788 if (rc)
789 return rc;
790
791 sym = *result;
792 gfc_current_ns->refs++;
793
794 if (sym && !sym->gfc_new && gfc_current_state () != COMP_INTERFACE)
795 {
796 /* Trap another encompassed procedure with the same name. All
797 these conditions are necessary to avoid picking up an entry
798 whose name clashes with that of the encompassing procedure;
799 this is handled using gsymbols to register unique,globally
800 accessible names. */
801 if (sym->attr.flavor != 0
802 && sym->attr.proc != 0
803 && (sym->attr.subroutine || sym->attr.function)
804 && sym->attr.if_source != IFSRC_UNKNOWN)
805 gfc_error_now ("Procedure '%s' at %C is already defined at %L",
806 name, &sym->declared_at);
807
808 /* Trap a procedure with a name the same as interface in the
809 encompassing scope. */
810 if (sym->attr.generic != 0
811 && (sym->attr.subroutine || sym->attr.function)
812 && !sym->attr.mod_proc)
813 gfc_error_now ("Name '%s' at %C is already defined"
814 " as a generic interface at %L",
815 name, &sym->declared_at);
816
817 /* Trap declarations of attributes in encompassing scope. The
818 signature for this is that ts.kind is set. Legitimate
819 references only set ts.type. */
820 if (sym->ts.kind != 0
821 && !sym->attr.implicit_type
822 && sym->attr.proc == 0
823 && gfc_current_ns->parent != NULL
824 && sym->attr.access == 0
825 && !module_fcn_entry)
826 gfc_error_now ("Procedure '%s' at %C has an explicit interface "
827 "and must not have attributes declared at %L",
828 name, &sym->declared_at);
829 }
830
831 if (gfc_current_ns->parent == NULL || *result == NULL)
832 return rc;
833
834 /* Module function entries will already have a symtree in
835 the current namespace but will need one at module level. */
836 if (module_fcn_entry)
837 {
838 /* Present if entry is declared to be a module procedure. */
839 rc = gfc_find_sym_tree (name, gfc_current_ns->parent, 0, &st);
840 if (st == NULL)
841 st = gfc_new_symtree (&gfc_current_ns->parent->sym_root, name);
842 }
843 else
844 st = gfc_new_symtree (&gfc_current_ns->sym_root, name);
845
846 st->n.sym = sym;
847 sym->refs++;
848
849 /* See if the procedure should be a module procedure. */
850
851 if (((sym->ns->proc_name != NULL
852 && sym->ns->proc_name->attr.flavor == FL_MODULE
853 && sym->attr.proc != PROC_MODULE)
854 || (module_fcn_entry && sym->attr.proc != PROC_MODULE))
855 && gfc_add_procedure (&sym->attr, PROC_MODULE,
856 sym->name, NULL) == FAILURE)
857 rc = 2;
858
859 return rc;
860 }
861
862
863 /* Verify that the given symbol representing a parameter is C
864 interoperable, by checking to see if it was marked as such after
865 its declaration. If the given symbol is not interoperable, a
866 warning is reported, thus removing the need to return the status to
867 the calling function. The standard does not require the user use
868 one of the iso_c_binding named constants to declare an
869 interoperable parameter, but we can't be sure if the param is C
870 interop or not if the user doesn't. For example, integer(4) may be
871 legal Fortran, but doesn't have meaning in C. It may interop with
872 a number of the C types, which causes a problem because the
873 compiler can't know which one. This code is almost certainly not
874 portable, and the user will get what they deserve if the C type
875 across platforms isn't always interoperable with integer(4). If
876 the user had used something like integer(c_int) or integer(c_long),
877 the compiler could have automatically handled the varying sizes
878 across platforms. */
879
880 gfc_try
881 verify_c_interop_param (gfc_symbol *sym)
882 {
883 int is_c_interop = 0;
884 gfc_try retval = SUCCESS;
885
886 /* We check implicitly typed variables in symbol.c:gfc_set_default_type().
887 Don't repeat the checks here. */
888 if (sym->attr.implicit_type)
889 return SUCCESS;
890
891 /* For subroutines or functions that are passed to a BIND(C) procedure,
892 they're interoperable if they're BIND(C) and their params are all
893 interoperable. */
894 if (sym->attr.flavor == FL_PROCEDURE)
895 {
896 if (sym->attr.is_bind_c == 0)
897 {
898 gfc_error_now ("Procedure '%s' at %L must have the BIND(C) "
899 "attribute to be C interoperable", sym->name,
900 &(sym->declared_at));
901
902 return FAILURE;
903 }
904 else
905 {
906 if (sym->attr.is_c_interop == 1)
907 /* We've already checked this procedure; don't check it again. */
908 return SUCCESS;
909 else
910 return verify_bind_c_sym (sym, &(sym->ts), sym->attr.in_common,
911 sym->common_block);
912 }
913 }
914
915 /* See if we've stored a reference to a procedure that owns sym. */
916 if (sym->ns != NULL && sym->ns->proc_name != NULL)
917 {
918 if (sym->ns->proc_name->attr.is_bind_c == 1)
919 {
920 is_c_interop =
921 (verify_c_interop (&(sym->ts))
922 == SUCCESS ? 1 : 0);
923
924 if (is_c_interop != 1)
925 {
926 /* Make personalized messages to give better feedback. */
927 if (sym->ts.type == BT_DERIVED)
928 gfc_error ("Type '%s' at %L is a parameter to the BIND(C) "
929 " procedure '%s' but is not C interoperable "
930 "because derived type '%s' is not C interoperable",
931 sym->name, &(sym->declared_at),
932 sym->ns->proc_name->name,
933 sym->ts.derived->name);
934 else
935 gfc_warning ("Variable '%s' at %L is a parameter to the "
936 "BIND(C) procedure '%s' but may not be C "
937 "interoperable",
938 sym->name, &(sym->declared_at),
939 sym->ns->proc_name->name);
940 }
941
942 /* Character strings are only C interoperable if they have a
943 length of 1. */
944 if (sym->ts.type == BT_CHARACTER)
945 {
946 gfc_charlen *cl = sym->ts.cl;
947 if (!cl || !cl->length || cl->length->expr_type != EXPR_CONSTANT
948 || mpz_cmp_si (cl->length->value.integer, 1) != 0)
949 {
950 gfc_error ("Character argument '%s' at %L "
951 "must be length 1 because "
952 "procedure '%s' is BIND(C)",
953 sym->name, &sym->declared_at,
954 sym->ns->proc_name->name);
955 retval = FAILURE;
956 }
957 }
958
959 /* We have to make sure that any param to a bind(c) routine does
960 not have the allocatable, pointer, or optional attributes,
961 according to J3/04-007, section 5.1. */
962 if (sym->attr.allocatable == 1)
963 {
964 gfc_error ("Variable '%s' at %L cannot have the "
965 "ALLOCATABLE attribute because procedure '%s'"
966 " is BIND(C)", sym->name, &(sym->declared_at),
967 sym->ns->proc_name->name);
968 retval = FAILURE;
969 }
970
971 if (sym->attr.pointer == 1)
972 {
973 gfc_error ("Variable '%s' at %L cannot have the "
974 "POINTER attribute because procedure '%s'"
975 " is BIND(C)", sym->name, &(sym->declared_at),
976 sym->ns->proc_name->name);
977 retval = FAILURE;
978 }
979
980 if (sym->attr.optional == 1)
981 {
982 gfc_error ("Variable '%s' at %L cannot have the "
983 "OPTIONAL attribute because procedure '%s'"
984 " is BIND(C)", sym->name, &(sym->declared_at),
985 sym->ns->proc_name->name);
986 retval = FAILURE;
987 }
988
989 /* Make sure that if it has the dimension attribute, that it is
990 either assumed size or explicit shape. */
991 if (sym->as != NULL)
992 {
993 if (sym->as->type == AS_ASSUMED_SHAPE)
994 {
995 gfc_error ("Assumed-shape array '%s' at %L cannot be an "
996 "argument to the procedure '%s' at %L because "
997 "the procedure is BIND(C)", sym->name,
998 &(sym->declared_at), sym->ns->proc_name->name,
999 &(sym->ns->proc_name->declared_at));
1000 retval = FAILURE;
1001 }
1002
1003 if (sym->as->type == AS_DEFERRED)
1004 {
1005 gfc_error ("Deferred-shape array '%s' at %L cannot be an "
1006 "argument to the procedure '%s' at %L because "
1007 "the procedure is BIND(C)", sym->name,
1008 &(sym->declared_at), sym->ns->proc_name->name,
1009 &(sym->ns->proc_name->declared_at));
1010 retval = FAILURE;
1011 }
1012 }
1013 }
1014 }
1015
1016 return retval;
1017 }
1018
1019
1020 /* Function called by variable_decl() that adds a name to the symbol table. */
1021
1022 static gfc_try
1023 build_sym (const char *name, gfc_charlen *cl,
1024 gfc_array_spec **as, locus *var_locus)
1025 {
1026 symbol_attribute attr;
1027 gfc_symbol *sym;
1028
1029 if (gfc_get_symbol (name, NULL, &sym))
1030 return FAILURE;
1031
1032 /* Start updating the symbol table. Add basic type attribute if present. */
1033 if (current_ts.type != BT_UNKNOWN
1034 && (sym->attr.implicit_type == 0
1035 || !gfc_compare_types (&sym->ts, &current_ts))
1036 && gfc_add_type (sym, &current_ts, var_locus) == FAILURE)
1037 return FAILURE;
1038
1039 if (sym->ts.type == BT_CHARACTER)
1040 sym->ts.cl = cl;
1041
1042 /* Add dimension attribute if present. */
1043 if (gfc_set_array_spec (sym, *as, var_locus) == FAILURE)
1044 return FAILURE;
1045 *as = NULL;
1046
1047 /* Add attribute to symbol. The copy is so that we can reset the
1048 dimension attribute. */
1049 attr = current_attr;
1050 attr.dimension = 0;
1051
1052 if (gfc_copy_attr (&sym->attr, &attr, var_locus) == FAILURE)
1053 return FAILURE;
1054
1055 /* Finish any work that may need to be done for the binding label,
1056 if it's a bind(c). The bind(c) attr is found before the symbol
1057 is made, and before the symbol name (for data decls), so the
1058 current_ts is holding the binding label, or nothing if the
1059 name= attr wasn't given. Therefore, test here if we're dealing
1060 with a bind(c) and make sure the binding label is set correctly. */
1061 if (sym->attr.is_bind_c == 1)
1062 {
1063 if (sym->binding_label[0] == '\0')
1064 {
1065 /* Set the binding label and verify that if a NAME= was specified
1066 then only one identifier was in the entity-decl-list. */
1067 if (set_binding_label (sym->binding_label, sym->name,
1068 num_idents_on_line) == FAILURE)
1069 return FAILURE;
1070 }
1071 }
1072
1073 /* See if we know we're in a common block, and if it's a bind(c)
1074 common then we need to make sure we're an interoperable type. */
1075 if (sym->attr.in_common == 1)
1076 {
1077 /* Test the common block object. */
1078 if (sym->common_block != NULL && sym->common_block->is_bind_c == 1
1079 && sym->ts.is_c_interop != 1)
1080 {
1081 gfc_error_now ("Variable '%s' in common block '%s' at %C "
1082 "must be declared with a C interoperable "
1083 "kind since common block '%s' is BIND(C)",
1084 sym->name, sym->common_block->name,
1085 sym->common_block->name);
1086 gfc_clear_error ();
1087 }
1088 }
1089
1090 sym->attr.implied_index = 0;
1091
1092 return SUCCESS;
1093 }
1094
1095
1096 /* Set character constant to the given length. The constant will be padded or
1097 truncated. If we're inside an array constructor without a typespec, we
1098 additionally check that all elements have the same length; check_len -1
1099 means no checking. */
1100
1101 void
1102 gfc_set_constant_character_len (int len, gfc_expr *expr, int check_len)
1103 {
1104 gfc_char_t *s;
1105 int slen;
1106
1107 gcc_assert (expr->expr_type == EXPR_CONSTANT);
1108 gcc_assert (expr->ts.type == BT_CHARACTER);
1109
1110 slen = expr->value.character.length;
1111 if (len != slen)
1112 {
1113 s = gfc_get_wide_string (len + 1);
1114 memcpy (s, expr->value.character.string,
1115 MIN (len, slen) * sizeof (gfc_char_t));
1116 if (len > slen)
1117 gfc_wide_memset (&s[slen], ' ', len - slen);
1118
1119 if (gfc_option.warn_character_truncation && slen > len)
1120 gfc_warning_now ("CHARACTER expression at %L is being truncated "
1121 "(%d/%d)", &expr->where, slen, len);
1122
1123 /* Apply the standard by 'hand' otherwise it gets cleared for
1124 initializers. */
1125 if (check_len != -1 && slen != check_len
1126 && !(gfc_option.allow_std & GFC_STD_GNU))
1127 gfc_error_now ("The CHARACTER elements of the array constructor "
1128 "at %L must have the same length (%d/%d)",
1129 &expr->where, slen, check_len);
1130
1131 s[len] = '\0';
1132 gfc_free (expr->value.character.string);
1133 expr->value.character.string = s;
1134 expr->value.character.length = len;
1135 }
1136 }
1137
1138
1139 /* Function to create and update the enumerator history
1140 using the information passed as arguments.
1141 Pointer "max_enum" is also updated, to point to
1142 enum history node containing largest initializer.
1143
1144 SYM points to the symbol node of enumerator.
1145 INIT points to its enumerator value. */
1146
1147 static void
1148 create_enum_history (gfc_symbol *sym, gfc_expr *init)
1149 {
1150 enumerator_history *new_enum_history;
1151 gcc_assert (sym != NULL && init != NULL);
1152
1153 new_enum_history = XCNEW (enumerator_history);
1154
1155 new_enum_history->sym = sym;
1156 new_enum_history->initializer = init;
1157 new_enum_history->next = NULL;
1158
1159 if (enum_history == NULL)
1160 {
1161 enum_history = new_enum_history;
1162 max_enum = enum_history;
1163 }
1164 else
1165 {
1166 new_enum_history->next = enum_history;
1167 enum_history = new_enum_history;
1168
1169 if (mpz_cmp (max_enum->initializer->value.integer,
1170 new_enum_history->initializer->value.integer) < 0)
1171 max_enum = new_enum_history;
1172 }
1173 }
1174
1175
1176 /* Function to free enum kind history. */
1177
1178 void
1179 gfc_free_enum_history (void)
1180 {
1181 enumerator_history *current = enum_history;
1182 enumerator_history *next;
1183
1184 while (current != NULL)
1185 {
1186 next = current->next;
1187 gfc_free (current);
1188 current = next;
1189 }
1190 max_enum = NULL;
1191 enum_history = NULL;
1192 }
1193
1194
1195 /* Function called by variable_decl() that adds an initialization
1196 expression to a symbol. */
1197
1198 static gfc_try
1199 add_init_expr_to_sym (const char *name, gfc_expr **initp, locus *var_locus)
1200 {
1201 symbol_attribute attr;
1202 gfc_symbol *sym;
1203 gfc_expr *init;
1204
1205 init = *initp;
1206 if (find_special (name, &sym))
1207 return FAILURE;
1208
1209 attr = sym->attr;
1210
1211 /* If this symbol is confirming an implicit parameter type,
1212 then an initialization expression is not allowed. */
1213 if (attr.flavor == FL_PARAMETER
1214 && sym->value != NULL
1215 && *initp != NULL)
1216 {
1217 gfc_error ("Initializer not allowed for PARAMETER '%s' at %C",
1218 sym->name);
1219 return FAILURE;
1220 }
1221
1222 if (init == NULL)
1223 {
1224 /* An initializer is required for PARAMETER declarations. */
1225 if (attr.flavor == FL_PARAMETER)
1226 {
1227 gfc_error ("PARAMETER at %L is missing an initializer", var_locus);
1228 return FAILURE;
1229 }
1230 }
1231 else
1232 {
1233 /* If a variable appears in a DATA block, it cannot have an
1234 initializer. */
1235 if (sym->attr.data)
1236 {
1237 gfc_error ("Variable '%s' at %C with an initializer already "
1238 "appears in a DATA statement", sym->name);
1239 return FAILURE;
1240 }
1241
1242 /* Check if the assignment can happen. This has to be put off
1243 until later for a derived type variable. */
1244 if (sym->ts.type != BT_DERIVED && init->ts.type != BT_DERIVED
1245 && gfc_check_assign_symbol (sym, init) == FAILURE)
1246 return FAILURE;
1247
1248 if (sym->ts.type == BT_CHARACTER && sym->ts.cl)
1249 {
1250 /* Update symbol character length according initializer. */
1251 if (sym->ts.cl->length == NULL)
1252 {
1253 int clen;
1254 /* If there are multiple CHARACTER variables declared on the
1255 same line, we don't want them to share the same length. */
1256 sym->ts.cl = gfc_get_charlen ();
1257 sym->ts.cl->next = gfc_current_ns->cl_list;
1258 gfc_current_ns->cl_list = sym->ts.cl;
1259
1260 if (sym->attr.flavor == FL_PARAMETER)
1261 {
1262 if (init->expr_type == EXPR_CONSTANT)
1263 {
1264 clen = init->value.character.length;
1265 sym->ts.cl->length = gfc_int_expr (clen);
1266 }
1267 else if (init->expr_type == EXPR_ARRAY)
1268 {
1269 gfc_expr *p = init->value.constructor->expr;
1270 clen = p->value.character.length;
1271 sym->ts.cl->length = gfc_int_expr (clen);
1272 }
1273 else if (init->ts.cl && init->ts.cl->length)
1274 sym->ts.cl->length =
1275 gfc_copy_expr (sym->value->ts.cl->length);
1276 }
1277 }
1278 /* Update initializer character length according symbol. */
1279 else if (sym->ts.cl->length->expr_type == EXPR_CONSTANT)
1280 {
1281 int len = mpz_get_si (sym->ts.cl->length->value.integer);
1282 gfc_constructor * p;
1283
1284 if (init->expr_type == EXPR_CONSTANT)
1285 gfc_set_constant_character_len (len, init, -1);
1286 else if (init->expr_type == EXPR_ARRAY)
1287 {
1288 /* Build a new charlen to prevent simplification from
1289 deleting the length before it is resolved. */
1290 init->ts.cl = gfc_get_charlen ();
1291 init->ts.cl->next = gfc_current_ns->cl_list;
1292 gfc_current_ns->cl_list = sym->ts.cl;
1293 init->ts.cl->length = gfc_copy_expr (sym->ts.cl->length);
1294
1295 for (p = init->value.constructor; p; p = p->next)
1296 gfc_set_constant_character_len (len, p->expr, -1);
1297 }
1298 }
1299 }
1300
1301 /* Need to check if the expression we initialized this
1302 to was one of the iso_c_binding named constants. If so,
1303 and we're a parameter (constant), let it be iso_c.
1304 For example:
1305 integer(c_int), parameter :: my_int = c_int
1306 integer(my_int) :: my_int_2
1307 If we mark my_int as iso_c (since we can see it's value
1308 is equal to one of the named constants), then my_int_2
1309 will be considered C interoperable. */
1310 if (sym->ts.type != BT_CHARACTER && sym->ts.type != BT_DERIVED)
1311 {
1312 sym->ts.is_iso_c |= init->ts.is_iso_c;
1313 sym->ts.is_c_interop |= init->ts.is_c_interop;
1314 /* attr bits needed for module files. */
1315 sym->attr.is_iso_c |= init->ts.is_iso_c;
1316 sym->attr.is_c_interop |= init->ts.is_c_interop;
1317 if (init->ts.is_iso_c)
1318 sym->ts.f90_type = init->ts.f90_type;
1319 }
1320
1321 /* Add initializer. Make sure we keep the ranks sane. */
1322 if (sym->attr.dimension && init->rank == 0)
1323 {
1324 mpz_t size;
1325 gfc_expr *array;
1326 gfc_constructor *c;
1327 int n;
1328 if (sym->attr.flavor == FL_PARAMETER
1329 && init->expr_type == EXPR_CONSTANT
1330 && spec_size (sym->as, &size) == SUCCESS
1331 && mpz_cmp_si (size, 0) > 0)
1332 {
1333 array = gfc_start_constructor (init->ts.type, init->ts.kind,
1334 &init->where);
1335
1336 array->value.constructor = c = NULL;
1337 for (n = 0; n < (int)mpz_get_si (size); n++)
1338 {
1339 if (array->value.constructor == NULL)
1340 {
1341 array->value.constructor = c = gfc_get_constructor ();
1342 c->expr = init;
1343 }
1344 else
1345 {
1346 c->next = gfc_get_constructor ();
1347 c = c->next;
1348 c->expr = gfc_copy_expr (init);
1349 }
1350 }
1351
1352 array->shape = gfc_get_shape (sym->as->rank);
1353 for (n = 0; n < sym->as->rank; n++)
1354 spec_dimen_size (sym->as, n, &array->shape[n]);
1355
1356 init = array;
1357 mpz_clear (size);
1358 }
1359 init->rank = sym->as->rank;
1360 }
1361
1362 sym->value = init;
1363 if (sym->attr.save == SAVE_NONE)
1364 sym->attr.save = SAVE_IMPLICIT;
1365 *initp = NULL;
1366 }
1367
1368 return SUCCESS;
1369 }
1370
1371
1372 /* Function called by variable_decl() that adds a name to a structure
1373 being built. */
1374
1375 static gfc_try
1376 build_struct (const char *name, gfc_charlen *cl, gfc_expr **init,
1377 gfc_array_spec **as)
1378 {
1379 gfc_component *c;
1380
1381 /* If the current symbol is of the same derived type that we're
1382 constructing, it must have the pointer attribute. */
1383 if (current_ts.type == BT_DERIVED
1384 && current_ts.derived == gfc_current_block ()
1385 && current_attr.pointer == 0)
1386 {
1387 gfc_error ("Component at %C must have the POINTER attribute");
1388 return FAILURE;
1389 }
1390
1391 if (gfc_current_block ()->attr.pointer && (*as)->rank != 0)
1392 {
1393 if ((*as)->type != AS_DEFERRED && (*as)->type != AS_EXPLICIT)
1394 {
1395 gfc_error ("Array component of structure at %C must have explicit "
1396 "or deferred shape");
1397 return FAILURE;
1398 }
1399 }
1400
1401 if (gfc_add_component (gfc_current_block (), name, &c) == FAILURE)
1402 return FAILURE;
1403
1404 c->ts = current_ts;
1405 c->ts.cl = cl;
1406 c->attr = current_attr;
1407
1408 c->initializer = *init;
1409 *init = NULL;
1410
1411 c->as = *as;
1412 if (c->as != NULL)
1413 c->attr.dimension = 1;
1414 *as = NULL;
1415
1416 /* Should this ever get more complicated, combine with similar section
1417 in add_init_expr_to_sym into a separate function. */
1418 if (c->ts.type == BT_CHARACTER && !c->attr.pointer && c->initializer && c->ts.cl
1419 && c->ts.cl->length && c->ts.cl->length->expr_type == EXPR_CONSTANT)
1420 {
1421 int len;
1422
1423 gcc_assert (c->ts.cl && c->ts.cl->length);
1424 gcc_assert (c->ts.cl->length->expr_type == EXPR_CONSTANT);
1425 gcc_assert (c->ts.cl->length->ts.type == BT_INTEGER);
1426
1427 len = mpz_get_si (c->ts.cl->length->value.integer);
1428
1429 if (c->initializer->expr_type == EXPR_CONSTANT)
1430 gfc_set_constant_character_len (len, c->initializer, -1);
1431 else if (mpz_cmp (c->ts.cl->length->value.integer,
1432 c->initializer->ts.cl->length->value.integer))
1433 {
1434 bool has_ts;
1435 gfc_constructor *ctor = c->initializer->value.constructor;
1436
1437 bool first = true;
1438 int first_len;
1439
1440 has_ts = (c->initializer->ts.cl
1441 && c->initializer->ts.cl->length_from_typespec);
1442
1443 for (; ctor; ctor = ctor->next)
1444 {
1445 /* Remember the length of the first element for checking that
1446 all elements *in the constructor* have the same length. This
1447 need not be the length of the LHS! */
1448 if (first)
1449 {
1450 gcc_assert (ctor->expr->expr_type == EXPR_CONSTANT);
1451 gcc_assert (ctor->expr->ts.type == BT_CHARACTER);
1452 first_len = ctor->expr->value.character.length;
1453 first = false;
1454 }
1455
1456 if (ctor->expr->expr_type == EXPR_CONSTANT)
1457 gfc_set_constant_character_len (len, ctor->expr,
1458 has_ts ? -1 : first_len);
1459 }
1460 }
1461 }
1462
1463 /* Check array components. */
1464 if (!c->attr.dimension)
1465 {
1466 if (c->attr.allocatable)
1467 {
1468 gfc_error ("Allocatable component at %C must be an array");
1469 return FAILURE;
1470 }
1471 else
1472 return SUCCESS;
1473 }
1474
1475 if (c->attr.pointer)
1476 {
1477 if (c->as->type != AS_DEFERRED)
1478 {
1479 gfc_error ("Pointer array component of structure at %C must have a "
1480 "deferred shape");
1481 return FAILURE;
1482 }
1483 }
1484 else if (c->attr.allocatable)
1485 {
1486 if (c->as->type != AS_DEFERRED)
1487 {
1488 gfc_error ("Allocatable component of structure at %C must have a "
1489 "deferred shape");
1490 return FAILURE;
1491 }
1492 }
1493 else
1494 {
1495 if (c->as->type != AS_EXPLICIT)
1496 {
1497 gfc_error ("Array component of structure at %C must have an "
1498 "explicit shape");
1499 return FAILURE;
1500 }
1501 }
1502
1503 return SUCCESS;
1504 }
1505
1506
1507 /* Match a 'NULL()', and possibly take care of some side effects. */
1508
1509 match
1510 gfc_match_null (gfc_expr **result)
1511 {
1512 gfc_symbol *sym;
1513 gfc_expr *e;
1514 match m;
1515
1516 m = gfc_match (" null ( )");
1517 if (m != MATCH_YES)
1518 return m;
1519
1520 /* The NULL symbol now has to be/become an intrinsic function. */
1521 if (gfc_get_symbol ("null", NULL, &sym))
1522 {
1523 gfc_error ("NULL() initialization at %C is ambiguous");
1524 return MATCH_ERROR;
1525 }
1526
1527 gfc_intrinsic_symbol (sym);
1528
1529 if (sym->attr.proc != PROC_INTRINSIC
1530 && (gfc_add_procedure (&sym->attr, PROC_INTRINSIC,
1531 sym->name, NULL) == FAILURE
1532 || gfc_add_function (&sym->attr, sym->name, NULL) == FAILURE))
1533 return MATCH_ERROR;
1534
1535 e = gfc_get_expr ();
1536 e->where = gfc_current_locus;
1537 e->expr_type = EXPR_NULL;
1538 e->ts.type = BT_UNKNOWN;
1539
1540 *result = e;
1541
1542 return MATCH_YES;
1543 }
1544
1545
1546 /* Match a variable name with an optional initializer. When this
1547 subroutine is called, a variable is expected to be parsed next.
1548 Depending on what is happening at the moment, updates either the
1549 symbol table or the current interface. */
1550
1551 static match
1552 variable_decl (int elem)
1553 {
1554 char name[GFC_MAX_SYMBOL_LEN + 1];
1555 gfc_expr *initializer, *char_len;
1556 gfc_array_spec *as;
1557 gfc_array_spec *cp_as; /* Extra copy for Cray Pointees. */
1558 gfc_charlen *cl;
1559 locus var_locus;
1560 match m;
1561 gfc_try t;
1562 gfc_symbol *sym;
1563 locus old_locus;
1564
1565 initializer = NULL;
1566 as = NULL;
1567 cp_as = NULL;
1568 old_locus = gfc_current_locus;
1569
1570 /* When we get here, we've just matched a list of attributes and
1571 maybe a type and a double colon. The next thing we expect to see
1572 is the name of the symbol. */
1573 m = gfc_match_name (name);
1574 if (m != MATCH_YES)
1575 goto cleanup;
1576
1577 var_locus = gfc_current_locus;
1578
1579 /* Now we could see the optional array spec. or character length. */
1580 m = gfc_match_array_spec (&as);
1581 if (gfc_option.flag_cray_pointer && m == MATCH_YES)
1582 cp_as = gfc_copy_array_spec (as);
1583 else if (m == MATCH_ERROR)
1584 goto cleanup;
1585
1586 if (m == MATCH_NO)
1587 as = gfc_copy_array_spec (current_as);
1588
1589 char_len = NULL;
1590 cl = NULL;
1591
1592 if (current_ts.type == BT_CHARACTER)
1593 {
1594 switch (match_char_length (&char_len))
1595 {
1596 case MATCH_YES:
1597 cl = gfc_get_charlen ();
1598 cl->next = gfc_current_ns->cl_list;
1599 gfc_current_ns->cl_list = cl;
1600
1601 cl->length = char_len;
1602 break;
1603
1604 /* Non-constant lengths need to be copied after the first
1605 element. Also copy assumed lengths. */
1606 case MATCH_NO:
1607 if (elem > 1
1608 && (current_ts.cl->length == NULL
1609 || current_ts.cl->length->expr_type != EXPR_CONSTANT))
1610 {
1611 cl = gfc_get_charlen ();
1612 cl->next = gfc_current_ns->cl_list;
1613 gfc_current_ns->cl_list = cl;
1614 cl->length = gfc_copy_expr (current_ts.cl->length);
1615 }
1616 else
1617 cl = current_ts.cl;
1618
1619 break;
1620
1621 case MATCH_ERROR:
1622 goto cleanup;
1623 }
1624 }
1625
1626 /* If this symbol has already shown up in a Cray Pointer declaration,
1627 then we want to set the type & bail out. */
1628 if (gfc_option.flag_cray_pointer)
1629 {
1630 gfc_find_symbol (name, gfc_current_ns, 1, &sym);
1631 if (sym != NULL && sym->attr.cray_pointee)
1632 {
1633 sym->ts.type = current_ts.type;
1634 sym->ts.kind = current_ts.kind;
1635 sym->ts.cl = cl;
1636 sym->ts.derived = current_ts.derived;
1637 sym->ts.is_c_interop = current_ts.is_c_interop;
1638 sym->ts.is_iso_c = current_ts.is_iso_c;
1639 m = MATCH_YES;
1640
1641 /* Check to see if we have an array specification. */
1642 if (cp_as != NULL)
1643 {
1644 if (sym->as != NULL)
1645 {
1646 gfc_error ("Duplicate array spec for Cray pointee at %C");
1647 gfc_free_array_spec (cp_as);
1648 m = MATCH_ERROR;
1649 goto cleanup;
1650 }
1651 else
1652 {
1653 if (gfc_set_array_spec (sym, cp_as, &var_locus) == FAILURE)
1654 gfc_internal_error ("Couldn't set pointee array spec.");
1655
1656 /* Fix the array spec. */
1657 m = gfc_mod_pointee_as (sym->as);
1658 if (m == MATCH_ERROR)
1659 goto cleanup;
1660 }
1661 }
1662 goto cleanup;
1663 }
1664 else
1665 {
1666 gfc_free_array_spec (cp_as);
1667 }
1668 }
1669
1670
1671 /* OK, we've successfully matched the declaration. Now put the
1672 symbol in the current namespace, because it might be used in the
1673 optional initialization expression for this symbol, e.g. this is
1674 perfectly legal:
1675
1676 integer, parameter :: i = huge(i)
1677
1678 This is only true for parameters or variables of a basic type.
1679 For components of derived types, it is not true, so we don't
1680 create a symbol for those yet. If we fail to create the symbol,
1681 bail out. */
1682 if (gfc_current_state () != COMP_DERIVED
1683 && build_sym (name, cl, &as, &var_locus) == FAILURE)
1684 {
1685 m = MATCH_ERROR;
1686 goto cleanup;
1687 }
1688
1689 /* An interface body specifies all of the procedure's
1690 characteristics and these shall be consistent with those
1691 specified in the procedure definition, except that the interface
1692 may specify a procedure that is not pure if the procedure is
1693 defined to be pure(12.3.2). */
1694 if (current_ts.type == BT_DERIVED
1695 && gfc_current_ns->proc_name
1696 && gfc_current_ns->proc_name->attr.if_source == IFSRC_IFBODY
1697 && current_ts.derived->ns != gfc_current_ns)
1698 {
1699 gfc_symtree *st;
1700 st = gfc_find_symtree (gfc_current_ns->sym_root, current_ts.derived->name);
1701 if (!(current_ts.derived->attr.imported
1702 && st != NULL
1703 && st->n.sym == current_ts.derived)
1704 && !gfc_current_ns->has_import_set)
1705 {
1706 gfc_error ("the type of '%s' at %C has not been declared within the "
1707 "interface", name);
1708 m = MATCH_ERROR;
1709 goto cleanup;
1710 }
1711 }
1712
1713 /* In functions that have a RESULT variable defined, the function
1714 name always refers to function calls. Therefore, the name is
1715 not allowed to appear in specification statements. */
1716 if (gfc_current_state () == COMP_FUNCTION
1717 && gfc_current_block () != NULL
1718 && gfc_current_block ()->result != NULL
1719 && gfc_current_block ()->result != gfc_current_block ()
1720 && strcmp (gfc_current_block ()->name, name) == 0)
1721 {
1722 gfc_error ("Function name '%s' not allowed at %C", name);
1723 m = MATCH_ERROR;
1724 goto cleanup;
1725 }
1726
1727 /* We allow old-style initializations of the form
1728 integer i /2/, j(4) /3*3, 1/
1729 (if no colon has been seen). These are different from data
1730 statements in that initializers are only allowed to apply to the
1731 variable immediately preceding, i.e.
1732 integer i, j /1, 2/
1733 is not allowed. Therefore we have to do some work manually, that
1734 could otherwise be left to the matchers for DATA statements. */
1735
1736 if (!colon_seen && gfc_match (" /") == MATCH_YES)
1737 {
1738 if (gfc_notify_std (GFC_STD_GNU, "Extension: Old-style "
1739 "initialization at %C") == FAILURE)
1740 return MATCH_ERROR;
1741
1742 return match_old_style_init (name);
1743 }
1744
1745 /* The double colon must be present in order to have initializers.
1746 Otherwise the statement is ambiguous with an assignment statement. */
1747 if (colon_seen)
1748 {
1749 if (gfc_match (" =>") == MATCH_YES)
1750 {
1751 if (!current_attr.pointer)
1752 {
1753 gfc_error ("Initialization at %C isn't for a pointer variable");
1754 m = MATCH_ERROR;
1755 goto cleanup;
1756 }
1757
1758 m = gfc_match_null (&initializer);
1759 if (m == MATCH_NO)
1760 {
1761 gfc_error ("Pointer initialization requires a NULL() at %C");
1762 m = MATCH_ERROR;
1763 }
1764
1765 if (gfc_pure (NULL))
1766 {
1767 gfc_error ("Initialization of pointer at %C is not allowed in "
1768 "a PURE procedure");
1769 m = MATCH_ERROR;
1770 }
1771
1772 if (m != MATCH_YES)
1773 goto cleanup;
1774
1775 }
1776 else if (gfc_match_char ('=') == MATCH_YES)
1777 {
1778 if (current_attr.pointer)
1779 {
1780 gfc_error ("Pointer initialization at %C requires '=>', "
1781 "not '='");
1782 m = MATCH_ERROR;
1783 goto cleanup;
1784 }
1785
1786 m = gfc_match_init_expr (&initializer);
1787 if (m == MATCH_NO)
1788 {
1789 gfc_error ("Expected an initialization expression at %C");
1790 m = MATCH_ERROR;
1791 }
1792
1793 if (current_attr.flavor != FL_PARAMETER && gfc_pure (NULL))
1794 {
1795 gfc_error ("Initialization of variable at %C is not allowed in "
1796 "a PURE procedure");
1797 m = MATCH_ERROR;
1798 }
1799
1800 if (m != MATCH_YES)
1801 goto cleanup;
1802 }
1803 }
1804
1805 if (initializer != NULL && current_attr.allocatable
1806 && gfc_current_state () == COMP_DERIVED)
1807 {
1808 gfc_error ("Initialization of allocatable component at %C is not "
1809 "allowed");
1810 m = MATCH_ERROR;
1811 goto cleanup;
1812 }
1813
1814 /* Add the initializer. Note that it is fine if initializer is
1815 NULL here, because we sometimes also need to check if a
1816 declaration *must* have an initialization expression. */
1817 if (gfc_current_state () != COMP_DERIVED)
1818 t = add_init_expr_to_sym (name, &initializer, &var_locus);
1819 else
1820 {
1821 if (current_ts.type == BT_DERIVED
1822 && !current_attr.pointer && !initializer)
1823 initializer = gfc_default_initializer (&current_ts);
1824 t = build_struct (name, cl, &initializer, &as);
1825 }
1826
1827 m = (t == SUCCESS) ? MATCH_YES : MATCH_ERROR;
1828
1829 cleanup:
1830 /* Free stuff up and return. */
1831 gfc_free_expr (initializer);
1832 gfc_free_array_spec (as);
1833
1834 return m;
1835 }
1836
1837
1838 /* Match an extended-f77 "TYPESPEC*bytesize"-style kind specification.
1839 This assumes that the byte size is equal to the kind number for
1840 non-COMPLEX types, and equal to twice the kind number for COMPLEX. */
1841
1842 match
1843 gfc_match_old_kind_spec (gfc_typespec *ts)
1844 {
1845 match m;
1846 int original_kind;
1847
1848 if (gfc_match_char ('*') != MATCH_YES)
1849 return MATCH_NO;
1850
1851 m = gfc_match_small_literal_int (&ts->kind, NULL);
1852 if (m != MATCH_YES)
1853 return MATCH_ERROR;
1854
1855 original_kind = ts->kind;
1856
1857 /* Massage the kind numbers for complex types. */
1858 if (ts->type == BT_COMPLEX)
1859 {
1860 if (ts->kind % 2)
1861 {
1862 gfc_error ("Old-style type declaration %s*%d not supported at %C",
1863 gfc_basic_typename (ts->type), original_kind);
1864 return MATCH_ERROR;
1865 }
1866 ts->kind /= 2;
1867 }
1868
1869 if (gfc_validate_kind (ts->type, ts->kind, true) < 0)
1870 {
1871 gfc_error ("Old-style type declaration %s*%d not supported at %C",
1872 gfc_basic_typename (ts->type), original_kind);
1873 return MATCH_ERROR;
1874 }
1875
1876 if (gfc_notify_std (GFC_STD_GNU, "Nonstandard type declaration %s*%d at %C",
1877 gfc_basic_typename (ts->type), original_kind) == FAILURE)
1878 return MATCH_ERROR;
1879
1880 return MATCH_YES;
1881 }
1882
1883
1884 /* Match a kind specification. Since kinds are generally optional, we
1885 usually return MATCH_NO if something goes wrong. If a "kind="
1886 string is found, then we know we have an error. */
1887
1888 match
1889 gfc_match_kind_spec (gfc_typespec *ts, bool kind_expr_only)
1890 {
1891 locus where, loc;
1892 gfc_expr *e;
1893 match m, n;
1894 char c;
1895 const char *msg;
1896
1897 m = MATCH_NO;
1898 n = MATCH_YES;
1899 e = NULL;
1900
1901 where = loc = gfc_current_locus;
1902
1903 if (kind_expr_only)
1904 goto kind_expr;
1905
1906 if (gfc_match_char ('(') == MATCH_NO)
1907 return MATCH_NO;
1908
1909 /* Also gobbles optional text. */
1910 if (gfc_match (" kind = ") == MATCH_YES)
1911 m = MATCH_ERROR;
1912
1913 loc = gfc_current_locus;
1914
1915 kind_expr:
1916 n = gfc_match_init_expr (&e);
1917
1918 if (n != MATCH_YES)
1919 {
1920 if (gfc_matching_function)
1921 {
1922 /* The function kind expression might include use associated or
1923 imported parameters and try again after the specification
1924 expressions..... */
1925 if (gfc_match_char (')') != MATCH_YES)
1926 {
1927 gfc_error ("Missing right parenthesis at %C");
1928 m = MATCH_ERROR;
1929 goto no_match;
1930 }
1931
1932 gfc_free_expr (e);
1933 gfc_undo_symbols ();
1934 return MATCH_YES;
1935 }
1936 else
1937 {
1938 /* ....or else, the match is real. */
1939 if (n == MATCH_NO)
1940 gfc_error ("Expected initialization expression at %C");
1941 if (n != MATCH_YES)
1942 return MATCH_ERROR;
1943 }
1944 }
1945
1946 if (e->rank != 0)
1947 {
1948 gfc_error ("Expected scalar initialization expression at %C");
1949 m = MATCH_ERROR;
1950 goto no_match;
1951 }
1952
1953 msg = gfc_extract_int (e, &ts->kind);
1954
1955 if (msg != NULL)
1956 {
1957 gfc_error (msg);
1958 m = MATCH_ERROR;
1959 goto no_match;
1960 }
1961
1962 /* Before throwing away the expression, let's see if we had a
1963 C interoperable kind (and store the fact). */
1964 if (e->ts.is_c_interop == 1)
1965 {
1966 /* Mark this as c interoperable if being declared with one
1967 of the named constants from iso_c_binding. */
1968 ts->is_c_interop = e->ts.is_iso_c;
1969 ts->f90_type = e->ts.f90_type;
1970 }
1971
1972 gfc_free_expr (e);
1973 e = NULL;
1974
1975 /* Ignore errors to this point, if we've gotten here. This means
1976 we ignore the m=MATCH_ERROR from above. */
1977 if (gfc_validate_kind (ts->type, ts->kind, true) < 0)
1978 {
1979 gfc_error ("Kind %d not supported for type %s at %C", ts->kind,
1980 gfc_basic_typename (ts->type));
1981 gfc_current_locus = where;
1982 return MATCH_ERROR;
1983 }
1984
1985 /* Warn if, e.g., c_int is used for a REAL variable, but not
1986 if, e.g., c_double is used for COMPLEX as the standard
1987 explicitly says that the kind type parameter for complex and real
1988 variable is the same, i.e. c_float == c_float_complex. */
1989 if (ts->f90_type != BT_UNKNOWN && ts->f90_type != ts->type
1990 && !((ts->f90_type == BT_REAL && ts->type == BT_COMPLEX)
1991 || (ts->f90_type == BT_COMPLEX && ts->type == BT_REAL)))
1992 gfc_error_now ("C kind type parameter is for type %s but type at %L "
1993 "is %s", gfc_basic_typename (ts->f90_type), &where,
1994 gfc_basic_typename (ts->type));
1995
1996 gfc_gobble_whitespace ();
1997 if ((c = gfc_next_ascii_char ()) != ')'
1998 && (ts->type != BT_CHARACTER || c != ','))
1999 {
2000 if (ts->type == BT_CHARACTER)
2001 gfc_error ("Missing right parenthesis or comma at %C");
2002 else
2003 gfc_error ("Missing right parenthesis at %C");
2004 m = MATCH_ERROR;
2005 }
2006 else
2007 /* All tests passed. */
2008 m = MATCH_YES;
2009
2010 if(m == MATCH_ERROR)
2011 gfc_current_locus = where;
2012
2013 /* Return what we know from the test(s). */
2014 return m;
2015
2016 no_match:
2017 gfc_free_expr (e);
2018 gfc_current_locus = where;
2019 return m;
2020 }
2021
2022
2023 static match
2024 match_char_kind (int * kind, int * is_iso_c)
2025 {
2026 locus where;
2027 gfc_expr *e;
2028 match m, n;
2029 const char *msg;
2030
2031 m = MATCH_NO;
2032 e = NULL;
2033 where = gfc_current_locus;
2034
2035 n = gfc_match_init_expr (&e);
2036
2037 if (n != MATCH_YES && gfc_matching_function)
2038 {
2039 /* The expression might include use-associated or imported
2040 parameters and try again after the specification
2041 expressions. */
2042 gfc_free_expr (e);
2043 gfc_undo_symbols ();
2044 return MATCH_YES;
2045 }
2046
2047 if (n == MATCH_NO)
2048 gfc_error ("Expected initialization expression at %C");
2049 if (n != MATCH_YES)
2050 return MATCH_ERROR;
2051
2052 if (e->rank != 0)
2053 {
2054 gfc_error ("Expected scalar initialization expression at %C");
2055 m = MATCH_ERROR;
2056 goto no_match;
2057 }
2058
2059 msg = gfc_extract_int (e, kind);
2060 *is_iso_c = e->ts.is_iso_c;
2061 if (msg != NULL)
2062 {
2063 gfc_error (msg);
2064 m = MATCH_ERROR;
2065 goto no_match;
2066 }
2067
2068 gfc_free_expr (e);
2069
2070 /* Ignore errors to this point, if we've gotten here. This means
2071 we ignore the m=MATCH_ERROR from above. */
2072 if (gfc_validate_kind (BT_CHARACTER, *kind, true) < 0)
2073 {
2074 gfc_error ("Kind %d is not supported for CHARACTER at %C", *kind);
2075 m = MATCH_ERROR;
2076 }
2077 else
2078 /* All tests passed. */
2079 m = MATCH_YES;
2080
2081 if (m == MATCH_ERROR)
2082 gfc_current_locus = where;
2083
2084 /* Return what we know from the test(s). */
2085 return m;
2086
2087 no_match:
2088 gfc_free_expr (e);
2089 gfc_current_locus = where;
2090 return m;
2091 }
2092
2093 /* Match the various kind/length specifications in a CHARACTER
2094 declaration. We don't return MATCH_NO. */
2095
2096 static match
2097 match_char_spec (gfc_typespec *ts)
2098 {
2099 int kind, seen_length, is_iso_c;
2100 gfc_charlen *cl;
2101 gfc_expr *len;
2102 match m;
2103
2104 len = NULL;
2105 seen_length = 0;
2106 kind = 0;
2107 is_iso_c = 0;
2108
2109 /* Try the old-style specification first. */
2110 old_char_selector = 0;
2111
2112 m = match_char_length (&len);
2113 if (m != MATCH_NO)
2114 {
2115 if (m == MATCH_YES)
2116 old_char_selector = 1;
2117 seen_length = 1;
2118 goto done;
2119 }
2120
2121 m = gfc_match_char ('(');
2122 if (m != MATCH_YES)
2123 {
2124 m = MATCH_YES; /* Character without length is a single char. */
2125 goto done;
2126 }
2127
2128 /* Try the weird case: ( KIND = <int> [ , LEN = <len-param> ] ). */
2129 if (gfc_match (" kind =") == MATCH_YES)
2130 {
2131 m = match_char_kind (&kind, &is_iso_c);
2132
2133 if (m == MATCH_ERROR)
2134 goto done;
2135 if (m == MATCH_NO)
2136 goto syntax;
2137
2138 if (gfc_match (" , len =") == MATCH_NO)
2139 goto rparen;
2140
2141 m = char_len_param_value (&len);
2142 if (m == MATCH_NO)
2143 goto syntax;
2144 if (m == MATCH_ERROR)
2145 goto done;
2146 seen_length = 1;
2147
2148 goto rparen;
2149 }
2150
2151 /* Try to match "LEN = <len-param>" or "LEN = <len-param>, KIND = <int>". */
2152 if (gfc_match (" len =") == MATCH_YES)
2153 {
2154 m = char_len_param_value (&len);
2155 if (m == MATCH_NO)
2156 goto syntax;
2157 if (m == MATCH_ERROR)
2158 goto done;
2159 seen_length = 1;
2160
2161 if (gfc_match_char (')') == MATCH_YES)
2162 goto done;
2163
2164 if (gfc_match (" , kind =") != MATCH_YES)
2165 goto syntax;
2166
2167 if (match_char_kind (&kind, &is_iso_c) == MATCH_ERROR)
2168 goto done;
2169
2170 goto rparen;
2171 }
2172
2173 /* Try to match ( <len-param> ) or ( <len-param> , [ KIND = ] <int> ). */
2174 m = char_len_param_value (&len);
2175 if (m == MATCH_NO)
2176 goto syntax;
2177 if (m == MATCH_ERROR)
2178 goto done;
2179 seen_length = 1;
2180
2181 m = gfc_match_char (')');
2182 if (m == MATCH_YES)
2183 goto done;
2184
2185 if (gfc_match_char (',') != MATCH_YES)
2186 goto syntax;
2187
2188 gfc_match (" kind ="); /* Gobble optional text. */
2189
2190 m = match_char_kind (&kind, &is_iso_c);
2191 if (m == MATCH_ERROR)
2192 goto done;
2193 if (m == MATCH_NO)
2194 goto syntax;
2195
2196 rparen:
2197 /* Require a right-paren at this point. */
2198 m = gfc_match_char (')');
2199 if (m == MATCH_YES)
2200 goto done;
2201
2202 syntax:
2203 gfc_error ("Syntax error in CHARACTER declaration at %C");
2204 m = MATCH_ERROR;
2205 gfc_free_expr (len);
2206 return m;
2207
2208 done:
2209 /* Deal with character functions after USE and IMPORT statements. */
2210 if (gfc_matching_function)
2211 {
2212 gfc_free_expr (len);
2213 gfc_undo_symbols ();
2214 return MATCH_YES;
2215 }
2216
2217 if (m != MATCH_YES)
2218 {
2219 gfc_free_expr (len);
2220 return m;
2221 }
2222
2223 /* Do some final massaging of the length values. */
2224 cl = gfc_get_charlen ();
2225 cl->next = gfc_current_ns->cl_list;
2226 gfc_current_ns->cl_list = cl;
2227
2228 if (seen_length == 0)
2229 cl->length = gfc_int_expr (1);
2230 else
2231 cl->length = len;
2232
2233 ts->cl = cl;
2234 ts->kind = kind == 0 ? gfc_default_character_kind : kind;
2235
2236 /* We have to know if it was a c interoperable kind so we can
2237 do accurate type checking of bind(c) procs, etc. */
2238 if (kind != 0)
2239 /* Mark this as c interoperable if being declared with one
2240 of the named constants from iso_c_binding. */
2241 ts->is_c_interop = is_iso_c;
2242 else if (len != NULL)
2243 /* Here, we might have parsed something such as: character(c_char)
2244 In this case, the parsing code above grabs the c_char when
2245 looking for the length (line 1690, roughly). it's the last
2246 testcase for parsing the kind params of a character variable.
2247 However, it's not actually the length. this seems like it
2248 could be an error.
2249 To see if the user used a C interop kind, test the expr
2250 of the so called length, and see if it's C interoperable. */
2251 ts->is_c_interop = len->ts.is_iso_c;
2252
2253 return MATCH_YES;
2254 }
2255
2256
2257 /* Matches a type specification. If successful, sets the ts structure
2258 to the matched specification. This is necessary for FUNCTION and
2259 IMPLICIT statements.
2260
2261 If implicit_flag is nonzero, then we don't check for the optional
2262 kind specification. Not doing so is needed for matching an IMPLICIT
2263 statement correctly. */
2264
2265 match
2266 gfc_match_type_spec (gfc_typespec *ts, int implicit_flag)
2267 {
2268 char name[GFC_MAX_SYMBOL_LEN + 1];
2269 gfc_symbol *sym;
2270 match m;
2271 char c;
2272 bool seen_deferred_kind;
2273
2274 /* A belt and braces check that the typespec is correctly being treated
2275 as a deferred characteristic association. */
2276 seen_deferred_kind = (gfc_current_state () == COMP_FUNCTION)
2277 && (gfc_current_block ()->result->ts.kind == -1)
2278 && (ts->kind == -1);
2279 gfc_clear_ts (ts);
2280 if (seen_deferred_kind)
2281 ts->kind = -1;
2282
2283 /* Clear the current binding label, in case one is given. */
2284 curr_binding_label[0] = '\0';
2285
2286 if (gfc_match (" byte") == MATCH_YES)
2287 {
2288 if (gfc_notify_std(GFC_STD_GNU, "Extension: BYTE type at %C")
2289 == FAILURE)
2290 return MATCH_ERROR;
2291
2292 if (gfc_validate_kind (BT_INTEGER, 1, true) < 0)
2293 {
2294 gfc_error ("BYTE type used at %C "
2295 "is not available on the target machine");
2296 return MATCH_ERROR;
2297 }
2298
2299 ts->type = BT_INTEGER;
2300 ts->kind = 1;
2301 return MATCH_YES;
2302 }
2303
2304 if (gfc_match (" integer") == MATCH_YES)
2305 {
2306 ts->type = BT_INTEGER;
2307 ts->kind = gfc_default_integer_kind;
2308 goto get_kind;
2309 }
2310
2311 if (gfc_match (" character") == MATCH_YES)
2312 {
2313 ts->type = BT_CHARACTER;
2314 if (implicit_flag == 0)
2315 return match_char_spec (ts);
2316 else
2317 return MATCH_YES;
2318 }
2319
2320 if (gfc_match (" real") == MATCH_YES)
2321 {
2322 ts->type = BT_REAL;
2323 ts->kind = gfc_default_real_kind;
2324 goto get_kind;
2325 }
2326
2327 if (gfc_match (" double precision") == MATCH_YES)
2328 {
2329 ts->type = BT_REAL;
2330 ts->kind = gfc_default_double_kind;
2331 return MATCH_YES;
2332 }
2333
2334 if (gfc_match (" complex") == MATCH_YES)
2335 {
2336 ts->type = BT_COMPLEX;
2337 ts->kind = gfc_default_complex_kind;
2338 goto get_kind;
2339 }
2340
2341 if (gfc_match (" double complex") == MATCH_YES)
2342 {
2343 if (gfc_notify_std (GFC_STD_GNU, "DOUBLE COMPLEX at %C does not "
2344 "conform to the Fortran 95 standard") == FAILURE)
2345 return MATCH_ERROR;
2346
2347 ts->type = BT_COMPLEX;
2348 ts->kind = gfc_default_double_kind;
2349 return MATCH_YES;
2350 }
2351
2352 if (gfc_match (" logical") == MATCH_YES)
2353 {
2354 ts->type = BT_LOGICAL;
2355 ts->kind = gfc_default_logical_kind;
2356 goto get_kind;
2357 }
2358
2359 m = gfc_match (" type ( %n )", name);
2360 if (m != MATCH_YES)
2361 return m;
2362
2363 ts->type = BT_DERIVED;
2364
2365 /* Defer association of the derived type until the end of the
2366 specification block. However, if the derived type can be
2367 found, add it to the typespec. */
2368 if (gfc_matching_function)
2369 {
2370 ts->derived = NULL;
2371 if (gfc_current_state () != COMP_INTERFACE
2372 && !gfc_find_symbol (name, NULL, 1, &sym) && sym)
2373 ts->derived = sym;
2374 return MATCH_YES;
2375 }
2376
2377 /* Search for the name but allow the components to be defined later. If
2378 type = -1, this typespec has been seen in a function declaration but
2379 the type could not be accessed at that point. */
2380 sym = NULL;
2381 if (ts->kind != -1 && gfc_get_ha_symbol (name, &sym))
2382 {
2383 gfc_error ("Type name '%s' at %C is ambiguous", name);
2384 return MATCH_ERROR;
2385 }
2386 else if (ts->kind == -1)
2387 {
2388 int iface = gfc_state_stack->previous->state != COMP_INTERFACE
2389 || gfc_current_ns->has_import_set;
2390 if (gfc_find_symbol (name, NULL, iface, &sym))
2391 {
2392 gfc_error ("Type name '%s' at %C is ambiguous", name);
2393 return MATCH_ERROR;
2394 }
2395
2396 ts->kind = 0;
2397 if (sym == NULL)
2398 return MATCH_NO;
2399 }
2400
2401 if (sym->attr.flavor != FL_DERIVED
2402 && gfc_add_flavor (&sym->attr, FL_DERIVED, sym->name, NULL) == FAILURE)
2403 return MATCH_ERROR;
2404
2405 gfc_set_sym_referenced (sym);
2406 ts->derived = sym;
2407
2408 return MATCH_YES;
2409
2410 get_kind:
2411 /* For all types except double, derived and character, look for an
2412 optional kind specifier. MATCH_NO is actually OK at this point. */
2413 if (implicit_flag == 1)
2414 return MATCH_YES;
2415
2416 if (gfc_current_form == FORM_FREE)
2417 {
2418 c = gfc_peek_ascii_char();
2419 if (!gfc_is_whitespace(c) && c != '*' && c != '('
2420 && c != ':' && c != ',')
2421 return MATCH_NO;
2422 }
2423
2424 m = gfc_match_kind_spec (ts, false);
2425 if (m == MATCH_NO && ts->type != BT_CHARACTER)
2426 m = gfc_match_old_kind_spec (ts);
2427
2428 /* Defer association of the KIND expression of function results
2429 until after USE and IMPORT statements. */
2430 if ((gfc_current_state () == COMP_NONE && gfc_error_flag_test ())
2431 || gfc_matching_function)
2432 return MATCH_YES;
2433
2434 if (m == MATCH_NO)
2435 m = MATCH_YES; /* No kind specifier found. */
2436
2437 return m;
2438 }
2439
2440
2441 /* Match an IMPLICIT NONE statement. Actually, this statement is
2442 already matched in parse.c, or we would not end up here in the
2443 first place. So the only thing we need to check, is if there is
2444 trailing garbage. If not, the match is successful. */
2445
2446 match
2447 gfc_match_implicit_none (void)
2448 {
2449 return (gfc_match_eos () == MATCH_YES) ? MATCH_YES : MATCH_NO;
2450 }
2451
2452
2453 /* Match the letter range(s) of an IMPLICIT statement. */
2454
2455 static match
2456 match_implicit_range (void)
2457 {
2458 char c, c1, c2;
2459 int inner;
2460 locus cur_loc;
2461
2462 cur_loc = gfc_current_locus;
2463
2464 gfc_gobble_whitespace ();
2465 c = gfc_next_ascii_char ();
2466 if (c != '(')
2467 {
2468 gfc_error ("Missing character range in IMPLICIT at %C");
2469 goto bad;
2470 }
2471
2472 inner = 1;
2473 while (inner)
2474 {
2475 gfc_gobble_whitespace ();
2476 c1 = gfc_next_ascii_char ();
2477 if (!ISALPHA (c1))
2478 goto bad;
2479
2480 gfc_gobble_whitespace ();
2481 c = gfc_next_ascii_char ();
2482
2483 switch (c)
2484 {
2485 case ')':
2486 inner = 0; /* Fall through. */
2487
2488 case ',':
2489 c2 = c1;
2490 break;
2491
2492 case '-':
2493 gfc_gobble_whitespace ();
2494 c2 = gfc_next_ascii_char ();
2495 if (!ISALPHA (c2))
2496 goto bad;
2497
2498 gfc_gobble_whitespace ();
2499 c = gfc_next_ascii_char ();
2500
2501 if ((c != ',') && (c != ')'))
2502 goto bad;
2503 if (c == ')')
2504 inner = 0;
2505
2506 break;
2507
2508 default:
2509 goto bad;
2510 }
2511
2512 if (c1 > c2)
2513 {
2514 gfc_error ("Letters must be in alphabetic order in "
2515 "IMPLICIT statement at %C");
2516 goto bad;
2517 }
2518
2519 /* See if we can add the newly matched range to the pending
2520 implicits from this IMPLICIT statement. We do not check for
2521 conflicts with whatever earlier IMPLICIT statements may have
2522 set. This is done when we've successfully finished matching
2523 the current one. */
2524 if (gfc_add_new_implicit_range (c1, c2) != SUCCESS)
2525 goto bad;
2526 }
2527
2528 return MATCH_YES;
2529
2530 bad:
2531 gfc_syntax_error (ST_IMPLICIT);
2532
2533 gfc_current_locus = cur_loc;
2534 return MATCH_ERROR;
2535 }
2536
2537
2538 /* Match an IMPLICIT statement, storing the types for
2539 gfc_set_implicit() if the statement is accepted by the parser.
2540 There is a strange looking, but legal syntactic construction
2541 possible. It looks like:
2542
2543 IMPLICIT INTEGER (a-b) (c-d)
2544
2545 This is legal if "a-b" is a constant expression that happens to
2546 equal one of the legal kinds for integers. The real problem
2547 happens with an implicit specification that looks like:
2548
2549 IMPLICIT INTEGER (a-b)
2550
2551 In this case, a typespec matcher that is "greedy" (as most of the
2552 matchers are) gobbles the character range as a kindspec, leaving
2553 nothing left. We therefore have to go a bit more slowly in the
2554 matching process by inhibiting the kindspec checking during
2555 typespec matching and checking for a kind later. */
2556
2557 match
2558 gfc_match_implicit (void)
2559 {
2560 gfc_typespec ts;
2561 locus cur_loc;
2562 char c;
2563 match m;
2564
2565 gfc_clear_ts (&ts);
2566
2567 /* We don't allow empty implicit statements. */
2568 if (gfc_match_eos () == MATCH_YES)
2569 {
2570 gfc_error ("Empty IMPLICIT statement at %C");
2571 return MATCH_ERROR;
2572 }
2573
2574 do
2575 {
2576 /* First cleanup. */
2577 gfc_clear_new_implicit ();
2578
2579 /* A basic type is mandatory here. */
2580 m = gfc_match_type_spec (&ts, 1);
2581 if (m == MATCH_ERROR)
2582 goto error;
2583 if (m == MATCH_NO)
2584 goto syntax;
2585
2586 cur_loc = gfc_current_locus;
2587 m = match_implicit_range ();
2588
2589 if (m == MATCH_YES)
2590 {
2591 /* We may have <TYPE> (<RANGE>). */
2592 gfc_gobble_whitespace ();
2593 c = gfc_next_ascii_char ();
2594 if ((c == '\n') || (c == ','))
2595 {
2596 /* Check for CHARACTER with no length parameter. */
2597 if (ts.type == BT_CHARACTER && !ts.cl)
2598 {
2599 ts.kind = gfc_default_character_kind;
2600 ts.cl = gfc_get_charlen ();
2601 ts.cl->next = gfc_current_ns->cl_list;
2602 gfc_current_ns->cl_list = ts.cl;
2603 ts.cl->length = gfc_int_expr (1);
2604 }
2605
2606 /* Record the Successful match. */
2607 if (gfc_merge_new_implicit (&ts) != SUCCESS)
2608 return MATCH_ERROR;
2609 continue;
2610 }
2611
2612 gfc_current_locus = cur_loc;
2613 }
2614
2615 /* Discard the (incorrectly) matched range. */
2616 gfc_clear_new_implicit ();
2617
2618 /* Last chance -- check <TYPE> <SELECTOR> (<RANGE>). */
2619 if (ts.type == BT_CHARACTER)
2620 m = match_char_spec (&ts);
2621 else
2622 {
2623 m = gfc_match_kind_spec (&ts, false);
2624 if (m == MATCH_NO)
2625 {
2626 m = gfc_match_old_kind_spec (&ts);
2627 if (m == MATCH_ERROR)
2628 goto error;
2629 if (m == MATCH_NO)
2630 goto syntax;
2631 }
2632 }
2633 if (m == MATCH_ERROR)
2634 goto error;
2635
2636 m = match_implicit_range ();
2637 if (m == MATCH_ERROR)
2638 goto error;
2639 if (m == MATCH_NO)
2640 goto syntax;
2641
2642 gfc_gobble_whitespace ();
2643 c = gfc_next_ascii_char ();
2644 if ((c != '\n') && (c != ','))
2645 goto syntax;
2646
2647 if (gfc_merge_new_implicit (&ts) != SUCCESS)
2648 return MATCH_ERROR;
2649 }
2650 while (c == ',');
2651
2652 return MATCH_YES;
2653
2654 syntax:
2655 gfc_syntax_error (ST_IMPLICIT);
2656
2657 error:
2658 return MATCH_ERROR;
2659 }
2660
2661
2662 match
2663 gfc_match_import (void)
2664 {
2665 char name[GFC_MAX_SYMBOL_LEN + 1];
2666 match m;
2667 gfc_symbol *sym;
2668 gfc_symtree *st;
2669
2670 if (gfc_current_ns->proc_name == NULL
2671 || gfc_current_ns->proc_name->attr.if_source != IFSRC_IFBODY)
2672 {
2673 gfc_error ("IMPORT statement at %C only permitted in "
2674 "an INTERFACE body");
2675 return MATCH_ERROR;
2676 }
2677
2678 if (gfc_notify_std (GFC_STD_F2003, "Fortran 2003: IMPORT statement at %C")
2679 == FAILURE)
2680 return MATCH_ERROR;
2681
2682 if (gfc_match_eos () == MATCH_YES)
2683 {
2684 /* All host variables should be imported. */
2685 gfc_current_ns->has_import_set = 1;
2686 return MATCH_YES;
2687 }
2688
2689 if (gfc_match (" ::") == MATCH_YES)
2690 {
2691 if (gfc_match_eos () == MATCH_YES)
2692 {
2693 gfc_error ("Expecting list of named entities at %C");
2694 return MATCH_ERROR;
2695 }
2696 }
2697
2698 for(;;)
2699 {
2700 m = gfc_match (" %n", name);
2701 switch (m)
2702 {
2703 case MATCH_YES:
2704 if (gfc_current_ns->parent != NULL
2705 && gfc_find_symbol (name, gfc_current_ns->parent, 1, &sym))
2706 {
2707 gfc_error ("Type name '%s' at %C is ambiguous", name);
2708 return MATCH_ERROR;
2709 }
2710 else if (gfc_current_ns->proc_name->ns->parent != NULL
2711 && gfc_find_symbol (name,
2712 gfc_current_ns->proc_name->ns->parent,
2713 1, &sym))
2714 {
2715 gfc_error ("Type name '%s' at %C is ambiguous", name);
2716 return MATCH_ERROR;
2717 }
2718
2719 if (sym == NULL)
2720 {
2721 gfc_error ("Cannot IMPORT '%s' from host scoping unit "
2722 "at %C - does not exist.", name);
2723 return MATCH_ERROR;
2724 }
2725
2726 if (gfc_find_symtree (gfc_current_ns->sym_root,name))
2727 {
2728 gfc_warning ("'%s' is already IMPORTed from host scoping unit "
2729 "at %C.", name);
2730 goto next_item;
2731 }
2732
2733 st = gfc_new_symtree (&gfc_current_ns->sym_root, name);
2734 st->n.sym = sym;
2735 sym->refs++;
2736 sym->attr.imported = 1;
2737
2738 goto next_item;
2739
2740 case MATCH_NO:
2741 break;
2742
2743 case MATCH_ERROR:
2744 return MATCH_ERROR;
2745 }
2746
2747 next_item:
2748 if (gfc_match_eos () == MATCH_YES)
2749 break;
2750 if (gfc_match_char (',') != MATCH_YES)
2751 goto syntax;
2752 }
2753
2754 return MATCH_YES;
2755
2756 syntax:
2757 gfc_error ("Syntax error in IMPORT statement at %C");
2758 return MATCH_ERROR;
2759 }
2760
2761
2762 /* A minimal implementation of gfc_match without whitespace, escape
2763 characters or variable arguments. Returns true if the next
2764 characters match the TARGET template exactly. */
2765
2766 static bool
2767 match_string_p (const char *target)
2768 {
2769 const char *p;
2770
2771 for (p = target; *p; p++)
2772 if ((char) gfc_next_ascii_char () != *p)
2773 return false;
2774 return true;
2775 }
2776
2777 /* Matches an attribute specification including array specs. If
2778 successful, leaves the variables current_attr and current_as
2779 holding the specification. Also sets the colon_seen variable for
2780 later use by matchers associated with initializations.
2781
2782 This subroutine is a little tricky in the sense that we don't know
2783 if we really have an attr-spec until we hit the double colon.
2784 Until that time, we can only return MATCH_NO. This forces us to
2785 check for duplicate specification at this level. */
2786
2787 static match
2788 match_attr_spec (void)
2789 {
2790 /* Modifiers that can exist in a type statement. */
2791 typedef enum
2792 { GFC_DECL_BEGIN = 0,
2793 DECL_ALLOCATABLE = GFC_DECL_BEGIN, DECL_DIMENSION, DECL_EXTERNAL,
2794 DECL_IN, DECL_OUT, DECL_INOUT, DECL_INTRINSIC, DECL_OPTIONAL,
2795 DECL_PARAMETER, DECL_POINTER, DECL_PROTECTED, DECL_PRIVATE,
2796 DECL_PUBLIC, DECL_SAVE, DECL_TARGET, DECL_VALUE, DECL_VOLATILE,
2797 DECL_IS_BIND_C, DECL_NONE,
2798 GFC_DECL_END /* Sentinel */
2799 }
2800 decl_types;
2801
2802 /* GFC_DECL_END is the sentinel, index starts at 0. */
2803 #define NUM_DECL GFC_DECL_END
2804
2805 locus start, seen_at[NUM_DECL];
2806 int seen[NUM_DECL];
2807 decl_types d;
2808 const char *attr;
2809 match m;
2810 gfc_try t;
2811
2812 gfc_clear_attr (&current_attr);
2813 start = gfc_current_locus;
2814
2815 current_as = NULL;
2816 colon_seen = 0;
2817
2818 /* See if we get all of the keywords up to the final double colon. */
2819 for (d = GFC_DECL_BEGIN; d != GFC_DECL_END; d++)
2820 seen[d] = 0;
2821
2822 for (;;)
2823 {
2824 char ch;
2825
2826 d = DECL_NONE;
2827 gfc_gobble_whitespace ();
2828
2829 ch = gfc_next_ascii_char ();
2830 if (ch == ':')
2831 {
2832 /* This is the successful exit condition for the loop. */
2833 if (gfc_next_ascii_char () == ':')
2834 break;
2835 }
2836 else if (ch == ',')
2837 {
2838 gfc_gobble_whitespace ();
2839 switch (gfc_peek_ascii_char ())
2840 {
2841 case 'a':
2842 if (match_string_p ("allocatable"))
2843 d = DECL_ALLOCATABLE;
2844 break;
2845
2846 case 'b':
2847 /* Try and match the bind(c). */
2848 m = gfc_match_bind_c (NULL, true);
2849 if (m == MATCH_YES)
2850 d = DECL_IS_BIND_C;
2851 else if (m == MATCH_ERROR)
2852 goto cleanup;
2853 break;
2854
2855 case 'd':
2856 if (match_string_p ("dimension"))
2857 d = DECL_DIMENSION;
2858 break;
2859
2860 case 'e':
2861 if (match_string_p ("external"))
2862 d = DECL_EXTERNAL;
2863 break;
2864
2865 case 'i':
2866 if (match_string_p ("int"))
2867 {
2868 ch = gfc_next_ascii_char ();
2869 if (ch == 'e')
2870 {
2871 if (match_string_p ("nt"))
2872 {
2873 /* Matched "intent". */
2874 /* TODO: Call match_intent_spec from here. */
2875 if (gfc_match (" ( in out )") == MATCH_YES)
2876 d = DECL_INOUT;
2877 else if (gfc_match (" ( in )") == MATCH_YES)
2878 d = DECL_IN;
2879 else if (gfc_match (" ( out )") == MATCH_YES)
2880 d = DECL_OUT;
2881 }
2882 }
2883 else if (ch == 'r')
2884 {
2885 if (match_string_p ("insic"))
2886 {
2887 /* Matched "intrinsic". */
2888 d = DECL_INTRINSIC;
2889 }
2890 }
2891 }
2892 break;
2893
2894 case 'o':
2895 if (match_string_p ("optional"))
2896 d = DECL_OPTIONAL;
2897 break;
2898
2899 case 'p':
2900 gfc_next_ascii_char ();
2901 switch (gfc_next_ascii_char ())
2902 {
2903 case 'a':
2904 if (match_string_p ("rameter"))
2905 {
2906 /* Matched "parameter". */
2907 d = DECL_PARAMETER;
2908 }
2909 break;
2910
2911 case 'o':
2912 if (match_string_p ("inter"))
2913 {
2914 /* Matched "pointer". */
2915 d = DECL_POINTER;
2916 }
2917 break;
2918
2919 case 'r':
2920 ch = gfc_next_ascii_char ();
2921 if (ch == 'i')
2922 {
2923 if (match_string_p ("vate"))
2924 {
2925 /* Matched "private". */
2926 d = DECL_PRIVATE;
2927 }
2928 }
2929 else if (ch == 'o')
2930 {
2931 if (match_string_p ("tected"))
2932 {
2933 /* Matched "protected". */
2934 d = DECL_PROTECTED;
2935 }
2936 }
2937 break;
2938
2939 case 'u':
2940 if (match_string_p ("blic"))
2941 {
2942 /* Matched "public". */
2943 d = DECL_PUBLIC;
2944 }
2945 break;
2946 }
2947 break;
2948
2949 case 's':
2950 if (match_string_p ("save"))
2951 d = DECL_SAVE;
2952 break;
2953
2954 case 't':
2955 if (match_string_p ("target"))
2956 d = DECL_TARGET;
2957 break;
2958
2959 case 'v':
2960 gfc_next_ascii_char ();
2961 ch = gfc_next_ascii_char ();
2962 if (ch == 'a')
2963 {
2964 if (match_string_p ("lue"))
2965 {
2966 /* Matched "value". */
2967 d = DECL_VALUE;
2968 }
2969 }
2970 else if (ch == 'o')
2971 {
2972 if (match_string_p ("latile"))
2973 {
2974 /* Matched "volatile". */
2975 d = DECL_VOLATILE;
2976 }
2977 }
2978 break;
2979 }
2980 }
2981
2982 /* No double colon and no recognizable decl_type, so assume that
2983 we've been looking at something else the whole time. */
2984 if (d == DECL_NONE)
2985 {
2986 m = MATCH_NO;
2987 goto cleanup;
2988 }
2989
2990 /* Check to make sure any parens are paired up correctly. */
2991 if (gfc_match_parens () == MATCH_ERROR)
2992 {
2993 m = MATCH_ERROR;
2994 goto cleanup;
2995 }
2996
2997 seen[d]++;
2998 seen_at[d] = gfc_current_locus;
2999
3000 if (d == DECL_DIMENSION)
3001 {
3002 m = gfc_match_array_spec (&current_as);
3003
3004 if (m == MATCH_NO)
3005 {
3006 gfc_error ("Missing dimension specification at %C");
3007 m = MATCH_ERROR;
3008 }
3009
3010 if (m == MATCH_ERROR)
3011 goto cleanup;
3012 }
3013 }
3014
3015 /* Since we've seen a double colon, we have to be looking at an
3016 attr-spec. This means that we can now issue errors. */
3017 for (d = GFC_DECL_BEGIN; d != GFC_DECL_END; d++)
3018 if (seen[d] > 1)
3019 {
3020 switch (d)
3021 {
3022 case DECL_ALLOCATABLE:
3023 attr = "ALLOCATABLE";
3024 break;
3025 case DECL_DIMENSION:
3026 attr = "DIMENSION";
3027 break;
3028 case DECL_EXTERNAL:
3029 attr = "EXTERNAL";
3030 break;
3031 case DECL_IN:
3032 attr = "INTENT (IN)";
3033 break;
3034 case DECL_OUT:
3035 attr = "INTENT (OUT)";
3036 break;
3037 case DECL_INOUT:
3038 attr = "INTENT (IN OUT)";
3039 break;
3040 case DECL_INTRINSIC:
3041 attr = "INTRINSIC";
3042 break;
3043 case DECL_OPTIONAL:
3044 attr = "OPTIONAL";
3045 break;
3046 case DECL_PARAMETER:
3047 attr = "PARAMETER";
3048 break;
3049 case DECL_POINTER:
3050 attr = "POINTER";
3051 break;
3052 case DECL_PROTECTED:
3053 attr = "PROTECTED";
3054 break;
3055 case DECL_PRIVATE:
3056 attr = "PRIVATE";
3057 break;
3058 case DECL_PUBLIC:
3059 attr = "PUBLIC";
3060 break;
3061 case DECL_SAVE:
3062 attr = "SAVE";
3063 break;
3064 case DECL_TARGET:
3065 attr = "TARGET";
3066 break;
3067 case DECL_IS_BIND_C:
3068 attr = "IS_BIND_C";
3069 break;
3070 case DECL_VALUE:
3071 attr = "VALUE";
3072 break;
3073 case DECL_VOLATILE:
3074 attr = "VOLATILE";
3075 break;
3076 default:
3077 attr = NULL; /* This shouldn't happen. */
3078 }
3079
3080 gfc_error ("Duplicate %s attribute at %L", attr, &seen_at[d]);
3081 m = MATCH_ERROR;
3082 goto cleanup;
3083 }
3084
3085 /* Now that we've dealt with duplicate attributes, add the attributes
3086 to the current attribute. */
3087 for (d = GFC_DECL_BEGIN; d != GFC_DECL_END; d++)
3088 {
3089 if (seen[d] == 0)
3090 continue;
3091
3092 if (gfc_current_state () == COMP_DERIVED
3093 && d != DECL_DIMENSION && d != DECL_POINTER
3094 && d != DECL_PRIVATE && d != DECL_PUBLIC
3095 && d != DECL_NONE)
3096 {
3097 if (d == DECL_ALLOCATABLE)
3098 {
3099 if (gfc_notify_std (GFC_STD_F2003, "Fortran 2003: ALLOCATABLE "
3100 "attribute at %C in a TYPE definition")
3101 == FAILURE)
3102 {
3103 m = MATCH_ERROR;
3104 goto cleanup;
3105 }
3106 }
3107 else
3108 {
3109 gfc_error ("Attribute at %L is not allowed in a TYPE definition",
3110 &seen_at[d]);
3111 m = MATCH_ERROR;
3112 goto cleanup;
3113 }
3114 }
3115
3116 if ((d == DECL_PRIVATE || d == DECL_PUBLIC)
3117 && gfc_current_state () != COMP_MODULE)
3118 {
3119 if (d == DECL_PRIVATE)
3120 attr = "PRIVATE";
3121 else
3122 attr = "PUBLIC";
3123 if (gfc_current_state () == COMP_DERIVED
3124 && gfc_state_stack->previous
3125 && gfc_state_stack->previous->state == COMP_MODULE)
3126 {
3127 if (gfc_notify_std (GFC_STD_F2003, "Fortran 2003: Attribute %s "
3128 "at %L in a TYPE definition", attr,
3129 &seen_at[d])
3130 == FAILURE)
3131 {
3132 m = MATCH_ERROR;
3133 goto cleanup;
3134 }
3135 }
3136 else
3137 {
3138 gfc_error ("%s attribute at %L is not allowed outside of the "
3139 "specification part of a module", attr, &seen_at[d]);
3140 m = MATCH_ERROR;
3141 goto cleanup;
3142 }
3143 }
3144
3145 switch (d)
3146 {
3147 case DECL_ALLOCATABLE:
3148 t = gfc_add_allocatable (&current_attr, &seen_at[d]);
3149 break;
3150
3151 case DECL_DIMENSION:
3152 t = gfc_add_dimension (&current_attr, NULL, &seen_at[d]);
3153 break;
3154
3155 case DECL_EXTERNAL:
3156 t = gfc_add_external (&current_attr, &seen_at[d]);
3157 break;
3158
3159 case DECL_IN:
3160 t = gfc_add_intent (&current_attr, INTENT_IN, &seen_at[d]);
3161 break;
3162
3163 case DECL_OUT:
3164 t = gfc_add_intent (&current_attr, INTENT_OUT, &seen_at[d]);
3165 break;
3166
3167 case DECL_INOUT:
3168 t = gfc_add_intent (&current_attr, INTENT_INOUT, &seen_at[d]);
3169 break;
3170
3171 case DECL_INTRINSIC:
3172 t = gfc_add_intrinsic (&current_attr, &seen_at[d]);
3173 break;
3174
3175 case DECL_OPTIONAL:
3176 t = gfc_add_optional (&current_attr, &seen_at[d]);
3177 break;
3178
3179 case DECL_PARAMETER:
3180 t = gfc_add_flavor (&current_attr, FL_PARAMETER, NULL, &seen_at[d]);
3181 break;
3182
3183 case DECL_POINTER:
3184 t = gfc_add_pointer (&current_attr, &seen_at[d]);
3185 break;
3186
3187 case DECL_PROTECTED:
3188 if (gfc_current_ns->proc_name->attr.flavor != FL_MODULE)
3189 {
3190 gfc_error ("PROTECTED at %C only allowed in specification "
3191 "part of a module");
3192 t = FAILURE;
3193 break;
3194 }
3195
3196 if (gfc_notify_std (GFC_STD_F2003, "Fortran 2003: PROTECTED "
3197 "attribute at %C")
3198 == FAILURE)
3199 t = FAILURE;
3200 else
3201 t = gfc_add_protected (&current_attr, NULL, &seen_at[d]);
3202 break;
3203
3204 case DECL_PRIVATE:
3205 t = gfc_add_access (&current_attr, ACCESS_PRIVATE, NULL,
3206 &seen_at[d]);
3207 break;
3208
3209 case DECL_PUBLIC:
3210 t = gfc_add_access (&current_attr, ACCESS_PUBLIC, NULL,
3211 &seen_at[d]);
3212 break;
3213
3214 case DECL_SAVE:
3215 t = gfc_add_save (&current_attr, NULL, &seen_at[d]);
3216 break;
3217
3218 case DECL_TARGET:
3219 t = gfc_add_target (&current_attr, &seen_at[d]);
3220 break;
3221
3222 case DECL_IS_BIND_C:
3223 t = gfc_add_is_bind_c(&current_attr, NULL, &seen_at[d], 0);
3224 break;
3225
3226 case DECL_VALUE:
3227 if (gfc_notify_std (GFC_STD_F2003, "Fortran 2003: VALUE attribute "
3228 "at %C")
3229 == FAILURE)
3230 t = FAILURE;
3231 else
3232 t = gfc_add_value (&current_attr, NULL, &seen_at[d]);
3233 break;
3234
3235 case DECL_VOLATILE:
3236 if (gfc_notify_std (GFC_STD_F2003,
3237 "Fortran 2003: VOLATILE attribute at %C")
3238 == FAILURE)
3239 t = FAILURE;
3240 else
3241 t = gfc_add_volatile (&current_attr, NULL, &seen_at[d]);
3242 break;
3243
3244 default:
3245 gfc_internal_error ("match_attr_spec(): Bad attribute");
3246 }
3247
3248 if (t == FAILURE)
3249 {
3250 m = MATCH_ERROR;
3251 goto cleanup;
3252 }
3253 }
3254
3255 colon_seen = 1;
3256 return MATCH_YES;
3257
3258 cleanup:
3259 gfc_current_locus = start;
3260 gfc_free_array_spec (current_as);
3261 current_as = NULL;
3262 return m;
3263 }
3264
3265
3266 /* Set the binding label, dest_label, either with the binding label
3267 stored in the given gfc_typespec, ts, or if none was provided, it
3268 will be the symbol name in all lower case, as required by the draft
3269 (J3/04-007, section 15.4.1). If a binding label was given and
3270 there is more than one argument (num_idents), it is an error. */
3271
3272 gfc_try
3273 set_binding_label (char *dest_label, const char *sym_name, int num_idents)
3274 {
3275 if (num_idents > 1 && has_name_equals)
3276 {
3277 gfc_error ("Multiple identifiers provided with "
3278 "single NAME= specifier at %C");
3279 return FAILURE;
3280 }
3281
3282 if (curr_binding_label[0] != '\0')
3283 {
3284 /* Binding label given; store in temp holder til have sym. */
3285 strcpy (dest_label, curr_binding_label);
3286 }
3287 else
3288 {
3289 /* No binding label given, and the NAME= specifier did not exist,
3290 which means there was no NAME="". */
3291 if (sym_name != NULL && has_name_equals == 0)
3292 strcpy (dest_label, sym_name);
3293 }
3294
3295 return SUCCESS;
3296 }
3297
3298
3299 /* Set the status of the given common block as being BIND(C) or not,
3300 depending on the given parameter, is_bind_c. */
3301
3302 void
3303 set_com_block_bind_c (gfc_common_head *com_block, int is_bind_c)
3304 {
3305 com_block->is_bind_c = is_bind_c;
3306 return;
3307 }
3308
3309
3310 /* Verify that the given gfc_typespec is for a C interoperable type. */
3311
3312 gfc_try
3313 verify_c_interop (gfc_typespec *ts)
3314 {
3315 if (ts->type == BT_DERIVED && ts->derived != NULL)
3316 return (ts->derived->ts.is_c_interop ? SUCCESS : FAILURE);
3317 else if (ts->is_c_interop != 1)
3318 return FAILURE;
3319
3320 return SUCCESS;
3321 }
3322
3323
3324 /* Verify that the variables of a given common block, which has been
3325 defined with the attribute specifier bind(c), to be of a C
3326 interoperable type. Errors will be reported here, if
3327 encountered. */
3328
3329 gfc_try
3330 verify_com_block_vars_c_interop (gfc_common_head *com_block)
3331 {
3332 gfc_symbol *curr_sym = NULL;
3333 gfc_try retval = SUCCESS;
3334
3335 curr_sym = com_block->head;
3336
3337 /* Make sure we have at least one symbol. */
3338 if (curr_sym == NULL)
3339 return retval;
3340
3341 /* Here we know we have a symbol, so we'll execute this loop
3342 at least once. */
3343 do
3344 {
3345 /* The second to last param, 1, says this is in a common block. */
3346 retval = verify_bind_c_sym (curr_sym, &(curr_sym->ts), 1, com_block);
3347 curr_sym = curr_sym->common_next;
3348 } while (curr_sym != NULL);
3349
3350 return retval;
3351 }
3352
3353
3354 /* Verify that a given BIND(C) symbol is C interoperable. If it is not,
3355 an appropriate error message is reported. */
3356
3357 gfc_try
3358 verify_bind_c_sym (gfc_symbol *tmp_sym, gfc_typespec *ts,
3359 int is_in_common, gfc_common_head *com_block)
3360 {
3361 bool bind_c_function = false;
3362 gfc_try retval = SUCCESS;
3363
3364 if (tmp_sym->attr.function && tmp_sym->attr.is_bind_c)
3365 bind_c_function = true;
3366
3367 if (tmp_sym->attr.function && tmp_sym->result != NULL)
3368 {
3369 tmp_sym = tmp_sym->result;
3370 /* Make sure it wasn't an implicitly typed result. */
3371 if (tmp_sym->attr.implicit_type)
3372 {
3373 gfc_warning ("Implicitly declared BIND(C) function '%s' at "
3374 "%L may not be C interoperable", tmp_sym->name,
3375 &tmp_sym->declared_at);
3376 tmp_sym->ts.f90_type = tmp_sym->ts.type;
3377 /* Mark it as C interoperable to prevent duplicate warnings. */
3378 tmp_sym->ts.is_c_interop = 1;
3379 tmp_sym->attr.is_c_interop = 1;
3380 }
3381 }
3382
3383 /* Here, we know we have the bind(c) attribute, so if we have
3384 enough type info, then verify that it's a C interop kind.
3385 The info could be in the symbol already, or possibly still in
3386 the given ts (current_ts), so look in both. */
3387 if (tmp_sym->ts.type != BT_UNKNOWN || ts->type != BT_UNKNOWN)
3388 {
3389 if (verify_c_interop (&(tmp_sym->ts)) != SUCCESS)
3390 {
3391 /* See if we're dealing with a sym in a common block or not. */
3392 if (is_in_common == 1)
3393 {
3394 gfc_warning ("Variable '%s' in common block '%s' at %L "
3395 "may not be a C interoperable "
3396 "kind though common block '%s' is BIND(C)",
3397 tmp_sym->name, com_block->name,
3398 &(tmp_sym->declared_at), com_block->name);
3399 }
3400 else
3401 {
3402 if (tmp_sym->ts.type == BT_DERIVED || ts->type == BT_DERIVED)
3403 gfc_error ("Type declaration '%s' at %L is not C "
3404 "interoperable but it is BIND(C)",
3405 tmp_sym->name, &(tmp_sym->declared_at));
3406 else
3407 gfc_warning ("Variable '%s' at %L "
3408 "may not be a C interoperable "
3409 "kind but it is bind(c)",
3410 tmp_sym->name, &(tmp_sym->declared_at));
3411 }
3412 }
3413
3414 /* Variables declared w/in a common block can't be bind(c)
3415 since there's no way for C to see these variables, so there's
3416 semantically no reason for the attribute. */
3417 if (is_in_common == 1 && tmp_sym->attr.is_bind_c == 1)
3418 {
3419 gfc_error ("Variable '%s' in common block '%s' at "
3420 "%L cannot be declared with BIND(C) "
3421 "since it is not a global",
3422 tmp_sym->name, com_block->name,
3423 &(tmp_sym->declared_at));
3424 retval = FAILURE;
3425 }
3426
3427 /* Scalar variables that are bind(c) can not have the pointer
3428 or allocatable attributes. */
3429 if (tmp_sym->attr.is_bind_c == 1)
3430 {
3431 if (tmp_sym->attr.pointer == 1)
3432 {
3433 gfc_error ("Variable '%s' at %L cannot have both the "
3434 "POINTER and BIND(C) attributes",
3435 tmp_sym->name, &(tmp_sym->declared_at));
3436 retval = FAILURE;
3437 }
3438
3439 if (tmp_sym->attr.allocatable == 1)
3440 {
3441 gfc_error ("Variable '%s' at %L cannot have both the "
3442 "ALLOCATABLE and BIND(C) attributes",
3443 tmp_sym->name, &(tmp_sym->declared_at));
3444 retval = FAILURE;
3445 }
3446
3447 }
3448
3449 /* If it is a BIND(C) function, make sure the return value is a
3450 scalar value. The previous tests in this function made sure
3451 the type is interoperable. */
3452 if (bind_c_function && tmp_sym->as != NULL)
3453 gfc_error ("Return type of BIND(C) function '%s' at %L cannot "
3454 "be an array", tmp_sym->name, &(tmp_sym->declared_at));
3455
3456 /* BIND(C) functions can not return a character string. */
3457 if (bind_c_function && tmp_sym->ts.type == BT_CHARACTER)
3458 if (tmp_sym->ts.cl == NULL || tmp_sym->ts.cl->length == NULL
3459 || tmp_sym->ts.cl->length->expr_type != EXPR_CONSTANT
3460 || mpz_cmp_si (tmp_sym->ts.cl->length->value.integer, 1) != 0)
3461 gfc_error ("Return type of BIND(C) function '%s' at %L cannot "
3462 "be a character string", tmp_sym->name,
3463 &(tmp_sym->declared_at));
3464 }
3465
3466 /* See if the symbol has been marked as private. If it has, make sure
3467 there is no binding label and warn the user if there is one. */
3468 if (tmp_sym->attr.access == ACCESS_PRIVATE
3469 && tmp_sym->binding_label[0] != '\0')
3470 /* Use gfc_warning_now because we won't say that the symbol fails
3471 just because of this. */
3472 gfc_warning_now ("Symbol '%s' at %L is marked PRIVATE but has been "
3473 "given the binding label '%s'", tmp_sym->name,
3474 &(tmp_sym->declared_at), tmp_sym->binding_label);
3475
3476 return retval;
3477 }
3478
3479
3480 /* Set the appropriate fields for a symbol that's been declared as
3481 BIND(C) (the is_bind_c flag and the binding label), and verify that
3482 the type is C interoperable. Errors are reported by the functions
3483 used to set/test these fields. */
3484
3485 gfc_try
3486 set_verify_bind_c_sym (gfc_symbol *tmp_sym, int num_idents)
3487 {
3488 gfc_try retval = SUCCESS;
3489
3490 /* TODO: Do we need to make sure the vars aren't marked private? */
3491
3492 /* Set the is_bind_c bit in symbol_attribute. */
3493 gfc_add_is_bind_c (&(tmp_sym->attr), tmp_sym->name, &gfc_current_locus, 0);
3494
3495 if (set_binding_label (tmp_sym->binding_label, tmp_sym->name,
3496 num_idents) != SUCCESS)
3497 return FAILURE;
3498
3499 return retval;
3500 }
3501
3502
3503 /* Set the fields marking the given common block as BIND(C), including
3504 a binding label, and report any errors encountered. */
3505
3506 gfc_try
3507 set_verify_bind_c_com_block (gfc_common_head *com_block, int num_idents)
3508 {
3509 gfc_try retval = SUCCESS;
3510
3511 /* destLabel, common name, typespec (which may have binding label). */
3512 if (set_binding_label (com_block->binding_label, com_block->name, num_idents)
3513 != SUCCESS)
3514 return FAILURE;
3515
3516 /* Set the given common block (com_block) to being bind(c) (1). */
3517 set_com_block_bind_c (com_block, 1);
3518
3519 return retval;
3520 }
3521
3522
3523 /* Retrieve the list of one or more identifiers that the given bind(c)
3524 attribute applies to. */
3525
3526 gfc_try
3527 get_bind_c_idents (void)
3528 {
3529 char name[GFC_MAX_SYMBOL_LEN + 1];
3530 int num_idents = 0;
3531 gfc_symbol *tmp_sym = NULL;
3532 match found_id;
3533 gfc_common_head *com_block = NULL;
3534
3535 if (gfc_match_name (name) == MATCH_YES)
3536 {
3537 found_id = MATCH_YES;
3538 gfc_get_ha_symbol (name, &tmp_sym);
3539 }
3540 else if (match_common_name (name) == MATCH_YES)
3541 {
3542 found_id = MATCH_YES;
3543 com_block = gfc_get_common (name, 0);
3544 }
3545 else
3546 {
3547 gfc_error ("Need either entity or common block name for "
3548 "attribute specification statement at %C");
3549 return FAILURE;
3550 }
3551
3552 /* Save the current identifier and look for more. */
3553 do
3554 {
3555 /* Increment the number of identifiers found for this spec stmt. */
3556 num_idents++;
3557
3558 /* Make sure we have a sym or com block, and verify that it can
3559 be bind(c). Set the appropriate field(s) and look for more
3560 identifiers. */
3561 if (tmp_sym != NULL || com_block != NULL)
3562 {
3563 if (tmp_sym != NULL)
3564 {
3565 if (set_verify_bind_c_sym (tmp_sym, num_idents)
3566 != SUCCESS)
3567 return FAILURE;
3568 }
3569 else
3570 {
3571 if (set_verify_bind_c_com_block(com_block, num_idents)
3572 != SUCCESS)
3573 return FAILURE;
3574 }
3575
3576 /* Look to see if we have another identifier. */
3577 tmp_sym = NULL;
3578 if (gfc_match_eos () == MATCH_YES)
3579 found_id = MATCH_NO;
3580 else if (gfc_match_char (',') != MATCH_YES)
3581 found_id = MATCH_NO;
3582 else if (gfc_match_name (name) == MATCH_YES)
3583 {
3584 found_id = MATCH_YES;
3585 gfc_get_ha_symbol (name, &tmp_sym);
3586 }
3587 else if (match_common_name (name) == MATCH_YES)
3588 {
3589 found_id = MATCH_YES;
3590 com_block = gfc_get_common (name, 0);
3591 }
3592 else
3593 {
3594 gfc_error ("Missing entity or common block name for "
3595 "attribute specification statement at %C");
3596 return FAILURE;
3597 }
3598 }
3599 else
3600 {
3601 gfc_internal_error ("Missing symbol");
3602 }
3603 } while (found_id == MATCH_YES);
3604
3605 /* if we get here we were successful */
3606 return SUCCESS;
3607 }
3608
3609
3610 /* Try and match a BIND(C) attribute specification statement. */
3611
3612 match
3613 gfc_match_bind_c_stmt (void)
3614 {
3615 match found_match = MATCH_NO;
3616 gfc_typespec *ts;
3617
3618 ts = &current_ts;
3619
3620 /* This may not be necessary. */
3621 gfc_clear_ts (ts);
3622 /* Clear the temporary binding label holder. */
3623 curr_binding_label[0] = '\0';
3624
3625 /* Look for the bind(c). */
3626 found_match = gfc_match_bind_c (NULL, true);
3627
3628 if (found_match == MATCH_YES)
3629 {
3630 /* Look for the :: now, but it is not required. */
3631 gfc_match (" :: ");
3632
3633 /* Get the identifier(s) that needs to be updated. This may need to
3634 change to hand the flag(s) for the attr specified so all identifiers
3635 found can have all appropriate parts updated (assuming that the same
3636 spec stmt can have multiple attrs, such as both bind(c) and
3637 allocatable...). */
3638 if (get_bind_c_idents () != SUCCESS)
3639 /* Error message should have printed already. */
3640 return MATCH_ERROR;
3641 }
3642
3643 return found_match;
3644 }
3645
3646
3647 /* Match a data declaration statement. */
3648
3649 match
3650 gfc_match_data_decl (void)
3651 {
3652 gfc_symbol *sym;
3653 match m;
3654 int elem;
3655
3656 num_idents_on_line = 0;
3657
3658 m = gfc_match_type_spec (&current_ts, 0);
3659 if (m != MATCH_YES)
3660 return m;
3661
3662 if (current_ts.type == BT_DERIVED && gfc_current_state () != COMP_DERIVED)
3663 {
3664 sym = gfc_use_derived (current_ts.derived);
3665
3666 if (sym == NULL)
3667 {
3668 m = MATCH_ERROR;
3669 goto cleanup;
3670 }
3671
3672 current_ts.derived = sym;
3673 }
3674
3675 m = match_attr_spec ();
3676 if (m == MATCH_ERROR)
3677 {
3678 m = MATCH_NO;
3679 goto cleanup;
3680 }
3681
3682 if (current_ts.type == BT_DERIVED && current_ts.derived->components == NULL
3683 && !current_ts.derived->attr.zero_comp)
3684 {
3685
3686 if (current_attr.pointer && gfc_current_state () == COMP_DERIVED)
3687 goto ok;
3688
3689 gfc_find_symbol (current_ts.derived->name,
3690 current_ts.derived->ns->parent, 1, &sym);
3691
3692 /* Any symbol that we find had better be a type definition
3693 which has its components defined. */
3694 if (sym != NULL && sym->attr.flavor == FL_DERIVED
3695 && (current_ts.derived->components != NULL
3696 || current_ts.derived->attr.zero_comp))
3697 goto ok;
3698
3699 /* Now we have an error, which we signal, and then fix up
3700 because the knock-on is plain and simple confusing. */
3701 gfc_error_now ("Derived type at %C has not been previously defined "
3702 "and so cannot appear in a derived type definition");
3703 current_attr.pointer = 1;
3704 goto ok;
3705 }
3706
3707 ok:
3708 /* If we have an old-style character declaration, and no new-style
3709 attribute specifications, then there a comma is optional between
3710 the type specification and the variable list. */
3711 if (m == MATCH_NO && current_ts.type == BT_CHARACTER && old_char_selector)
3712 gfc_match_char (',');
3713
3714 /* Give the types/attributes to symbols that follow. Give the element
3715 a number so that repeat character length expressions can be copied. */
3716 elem = 1;
3717 for (;;)
3718 {
3719 num_idents_on_line++;
3720 m = variable_decl (elem++);
3721 if (m == MATCH_ERROR)
3722 goto cleanup;
3723 if (m == MATCH_NO)
3724 break;
3725
3726 if (gfc_match_eos () == MATCH_YES)
3727 goto cleanup;
3728 if (gfc_match_char (',') != MATCH_YES)
3729 break;
3730 }
3731
3732 if (gfc_error_flag_test () == 0)
3733 gfc_error ("Syntax error in data declaration at %C");
3734 m = MATCH_ERROR;
3735
3736 gfc_free_data_all (gfc_current_ns);
3737
3738 cleanup:
3739 gfc_free_array_spec (current_as);
3740 current_as = NULL;
3741 return m;
3742 }
3743
3744
3745 /* Match a prefix associated with a function or subroutine
3746 declaration. If the typespec pointer is nonnull, then a typespec
3747 can be matched. Note that if nothing matches, MATCH_YES is
3748 returned (the null string was matched). */
3749
3750 match
3751 gfc_match_prefix (gfc_typespec *ts)
3752 {
3753 bool seen_type;
3754
3755 gfc_clear_attr (&current_attr);
3756 seen_type = 0;
3757
3758 gcc_assert (!gfc_matching_prefix);
3759 gfc_matching_prefix = true;
3760
3761 loop:
3762 if (!seen_type && ts != NULL
3763 && gfc_match_type_spec (ts, 0) == MATCH_YES
3764 && gfc_match_space () == MATCH_YES)
3765 {
3766
3767 seen_type = 1;
3768 goto loop;
3769 }
3770
3771 if (gfc_match ("elemental% ") == MATCH_YES)
3772 {
3773 if (gfc_add_elemental (&current_attr, NULL) == FAILURE)
3774 goto error;
3775
3776 goto loop;
3777 }
3778
3779 if (gfc_match ("pure% ") == MATCH_YES)
3780 {
3781 if (gfc_add_pure (&current_attr, NULL) == FAILURE)
3782 goto error;
3783
3784 goto loop;
3785 }
3786
3787 if (gfc_match ("recursive% ") == MATCH_YES)
3788 {
3789 if (gfc_add_recursive (&current_attr, NULL) == FAILURE)
3790 goto error;
3791
3792 goto loop;
3793 }
3794
3795 /* At this point, the next item is not a prefix. */
3796 gcc_assert (gfc_matching_prefix);
3797 gfc_matching_prefix = false;
3798 return MATCH_YES;
3799
3800 error:
3801 gcc_assert (gfc_matching_prefix);
3802 gfc_matching_prefix = false;
3803 return MATCH_ERROR;
3804 }
3805
3806
3807 /* Copy attributes matched by gfc_match_prefix() to attributes on a symbol. */
3808
3809 static gfc_try
3810 copy_prefix (symbol_attribute *dest, locus *where)
3811 {
3812 if (current_attr.pure && gfc_add_pure (dest, where) == FAILURE)
3813 return FAILURE;
3814
3815 if (current_attr.elemental && gfc_add_elemental (dest, where) == FAILURE)
3816 return FAILURE;
3817
3818 if (current_attr.recursive && gfc_add_recursive (dest, where) == FAILURE)
3819 return FAILURE;
3820
3821 return SUCCESS;
3822 }
3823
3824
3825 /* Match a formal argument list. */
3826
3827 match
3828 gfc_match_formal_arglist (gfc_symbol *progname, int st_flag, int null_flag)
3829 {
3830 gfc_formal_arglist *head, *tail, *p, *q;
3831 char name[GFC_MAX_SYMBOL_LEN + 1];
3832 gfc_symbol *sym;
3833 match m;
3834
3835 head = tail = NULL;
3836
3837 if (gfc_match_char ('(') != MATCH_YES)
3838 {
3839 if (null_flag)
3840 goto ok;
3841 return MATCH_NO;
3842 }
3843
3844 if (gfc_match_char (')') == MATCH_YES)
3845 goto ok;
3846
3847 for (;;)
3848 {
3849 if (gfc_match_char ('*') == MATCH_YES)
3850 sym = NULL;
3851 else
3852 {
3853 m = gfc_match_name (name);
3854 if (m != MATCH_YES)
3855 goto cleanup;
3856
3857 if (gfc_get_symbol (name, NULL, &sym))
3858 goto cleanup;
3859 }
3860
3861 p = gfc_get_formal_arglist ();
3862
3863 if (head == NULL)
3864 head = tail = p;
3865 else
3866 {
3867 tail->next = p;
3868 tail = p;
3869 }
3870
3871 tail->sym = sym;
3872
3873 /* We don't add the VARIABLE flavor because the name could be a
3874 dummy procedure. We don't apply these attributes to formal
3875 arguments of statement functions. */
3876 if (sym != NULL && !st_flag
3877 && (gfc_add_dummy (&sym->attr, sym->name, NULL) == FAILURE
3878 || gfc_missing_attr (&sym->attr, NULL) == FAILURE))
3879 {
3880 m = MATCH_ERROR;
3881 goto cleanup;
3882 }
3883
3884 /* The name of a program unit can be in a different namespace,
3885 so check for it explicitly. After the statement is accepted,
3886 the name is checked for especially in gfc_get_symbol(). */
3887 if (gfc_new_block != NULL && sym != NULL
3888 && strcmp (sym->name, gfc_new_block->name) == 0)
3889 {
3890 gfc_error ("Name '%s' at %C is the name of the procedure",
3891 sym->name);
3892 m = MATCH_ERROR;
3893 goto cleanup;
3894 }
3895
3896 if (gfc_match_char (')') == MATCH_YES)
3897 goto ok;
3898
3899 m = gfc_match_char (',');
3900 if (m != MATCH_YES)
3901 {
3902 gfc_error ("Unexpected junk in formal argument list at %C");
3903 goto cleanup;
3904 }
3905 }
3906
3907 ok:
3908 /* Check for duplicate symbols in the formal argument list. */
3909 if (head != NULL)
3910 {
3911 for (p = head; p->next; p = p->next)
3912 {
3913 if (p->sym == NULL)
3914 continue;
3915
3916 for (q = p->next; q; q = q->next)
3917 if (p->sym == q->sym)
3918 {
3919 gfc_error ("Duplicate symbol '%s' in formal argument list "
3920 "at %C", p->sym->name);
3921
3922 m = MATCH_ERROR;
3923 goto cleanup;
3924 }
3925 }
3926 }
3927
3928 if (gfc_add_explicit_interface (progname, IFSRC_DECL, head, NULL)
3929 == FAILURE)
3930 {
3931 m = MATCH_ERROR;
3932 goto cleanup;
3933 }
3934
3935 return MATCH_YES;
3936
3937 cleanup:
3938 gfc_free_formal_arglist (head);
3939 return m;
3940 }
3941
3942
3943 /* Match a RESULT specification following a function declaration or
3944 ENTRY statement. Also matches the end-of-statement. */
3945
3946 static match
3947 match_result (gfc_symbol *function, gfc_symbol **result)
3948 {
3949 char name[GFC_MAX_SYMBOL_LEN + 1];
3950 gfc_symbol *r;
3951 match m;
3952
3953 if (gfc_match (" result (") != MATCH_YES)
3954 return MATCH_NO;
3955
3956 m = gfc_match_name (name);
3957 if (m != MATCH_YES)
3958 return m;
3959
3960 /* Get the right paren, and that's it because there could be the
3961 bind(c) attribute after the result clause. */
3962 if (gfc_match_char(')') != MATCH_YES)
3963 {
3964 /* TODO: should report the missing right paren here. */
3965 return MATCH_ERROR;
3966 }
3967
3968 if (strcmp (function->name, name) == 0)
3969 {
3970 gfc_error ("RESULT variable at %C must be different than function name");
3971 return MATCH_ERROR;
3972 }
3973
3974 if (gfc_get_symbol (name, NULL, &r))
3975 return MATCH_ERROR;
3976
3977 if (gfc_add_result (&r->attr, r->name, NULL) == FAILURE)
3978 return MATCH_ERROR;
3979
3980 *result = r;
3981
3982 return MATCH_YES;
3983 }
3984
3985
3986 /* Match a function suffix, which could be a combination of a result
3987 clause and BIND(C), either one, or neither. The draft does not
3988 require them to come in a specific order. */
3989
3990 match
3991 gfc_match_suffix (gfc_symbol *sym, gfc_symbol **result)
3992 {
3993 match is_bind_c; /* Found bind(c). */
3994 match is_result; /* Found result clause. */
3995 match found_match; /* Status of whether we've found a good match. */
3996 char peek_char; /* Character we're going to peek at. */
3997 bool allow_binding_name;
3998
3999 /* Initialize to having found nothing. */
4000 found_match = MATCH_NO;
4001 is_bind_c = MATCH_NO;
4002 is_result = MATCH_NO;
4003
4004 /* Get the next char to narrow between result and bind(c). */
4005 gfc_gobble_whitespace ();
4006 peek_char = gfc_peek_ascii_char ();
4007
4008 /* C binding names are not allowed for internal procedures. */
4009 if (gfc_current_state () == COMP_CONTAINS
4010 && sym->ns->proc_name->attr.flavor != FL_MODULE)
4011 allow_binding_name = false;
4012 else
4013 allow_binding_name = true;
4014
4015 switch (peek_char)
4016 {
4017 case 'r':
4018 /* Look for result clause. */
4019 is_result = match_result (sym, result);
4020 if (is_result == MATCH_YES)
4021 {
4022 /* Now see if there is a bind(c) after it. */
4023 is_bind_c = gfc_match_bind_c (sym, allow_binding_name);
4024 /* We've found the result clause and possibly bind(c). */
4025 found_match = MATCH_YES;
4026 }
4027 else
4028 /* This should only be MATCH_ERROR. */
4029 found_match = is_result;
4030 break;
4031 case 'b':
4032 /* Look for bind(c) first. */
4033 is_bind_c = gfc_match_bind_c (sym, allow_binding_name);
4034 if (is_bind_c == MATCH_YES)
4035 {
4036 /* Now see if a result clause followed it. */
4037 is_result = match_result (sym, result);
4038 found_match = MATCH_YES;
4039 }
4040 else
4041 {
4042 /* Should only be a MATCH_ERROR if we get here after seeing 'b'. */
4043 found_match = MATCH_ERROR;
4044 }
4045 break;
4046 default:
4047 gfc_error ("Unexpected junk after function declaration at %C");
4048 found_match = MATCH_ERROR;
4049 break;
4050 }
4051
4052 if (is_bind_c == MATCH_YES)
4053 {
4054 /* Fortran 2008 draft allows BIND(C) for internal procedures. */
4055 if (gfc_current_state () == COMP_CONTAINS
4056 && sym->ns->proc_name->attr.flavor != FL_MODULE
4057 && gfc_notify_std (GFC_STD_F2008, "Fortran 2008: BIND(C) attribute "
4058 "at %L may not be specified for an internal "
4059 "procedure", &gfc_current_locus)
4060 == FAILURE)
4061 return MATCH_ERROR;
4062
4063 if (gfc_add_is_bind_c (&(sym->attr), sym->name, &gfc_current_locus, 1)
4064 == FAILURE)
4065 return MATCH_ERROR;
4066 }
4067
4068 return found_match;
4069 }
4070
4071
4072 /* Match a PROCEDURE declaration (R1211). */
4073
4074 static match
4075 match_procedure_decl (void)
4076 {
4077 match m;
4078 locus old_loc, entry_loc;
4079 gfc_symbol *sym, *proc_if = NULL;
4080 int num;
4081 gfc_expr *initializer = NULL;
4082
4083 old_loc = entry_loc = gfc_current_locus;
4084
4085 gfc_clear_ts (&current_ts);
4086
4087 if (gfc_match (" (") != MATCH_YES)
4088 {
4089 gfc_current_locus = entry_loc;
4090 return MATCH_NO;
4091 }
4092
4093 /* Get the type spec. for the procedure interface. */
4094 old_loc = gfc_current_locus;
4095 m = gfc_match_type_spec (&current_ts, 0);
4096 gfc_gobble_whitespace ();
4097 if (m == MATCH_YES || (m == MATCH_NO && gfc_peek_ascii_char () == ')'))
4098 goto got_ts;
4099
4100 if (m == MATCH_ERROR)
4101 return m;
4102
4103 gfc_current_locus = old_loc;
4104
4105 /* Get the name of the procedure or abstract interface
4106 to inherit the interface from. */
4107 m = gfc_match_symbol (&proc_if, 1);
4108
4109 if (m == MATCH_NO)
4110 goto syntax;
4111 else if (m == MATCH_ERROR)
4112 return m;
4113
4114 /* Various interface checks. */
4115 if (proc_if)
4116 {
4117 proc_if->refs++;
4118 /* Resolve interface if possible. That way, attr.procedure is only set
4119 if it is declared by a later procedure-declaration-stmt, which is
4120 invalid per C1212. */
4121 while (proc_if->ts.interface)
4122 proc_if = proc_if->ts.interface;
4123
4124 if (proc_if->generic)
4125 {
4126 gfc_error ("Interface '%s' at %C may not be generic", proc_if->name);
4127 return MATCH_ERROR;
4128 }
4129 if (proc_if->attr.proc == PROC_ST_FUNCTION)
4130 {
4131 gfc_error ("Interface '%s' at %C may not be a statement function",
4132 proc_if->name);
4133 return MATCH_ERROR;
4134 }
4135 /* Handle intrinsic procedures. */
4136 if (!(proc_if->attr.external || proc_if->attr.use_assoc
4137 || proc_if->attr.if_source == IFSRC_IFBODY)
4138 && (gfc_is_intrinsic (proc_if, 0, gfc_current_locus)
4139 || gfc_is_intrinsic (proc_if, 1, gfc_current_locus)))
4140 proc_if->attr.intrinsic = 1;
4141 if (proc_if->attr.intrinsic
4142 && !gfc_intrinsic_actual_ok (proc_if->name, 0))
4143 {
4144 gfc_error ("Intrinsic procedure '%s' not allowed "
4145 "in PROCEDURE statement at %C", proc_if->name);
4146 return MATCH_ERROR;
4147 }
4148 }
4149
4150 got_ts:
4151 if (gfc_match (" )") != MATCH_YES)
4152 {
4153 gfc_current_locus = entry_loc;
4154 return MATCH_NO;
4155 }
4156
4157 /* Parse attributes. */
4158 m = match_attr_spec();
4159 if (m == MATCH_ERROR)
4160 return MATCH_ERROR;
4161
4162 /* Get procedure symbols. */
4163 for(num=1;;num++)
4164 {
4165 m = gfc_match_symbol (&sym, 0);
4166 if (m == MATCH_NO)
4167 goto syntax;
4168 else if (m == MATCH_ERROR)
4169 return m;
4170
4171 /* Add current_attr to the symbol attributes. */
4172 if (gfc_copy_attr (&sym->attr, &current_attr, NULL) == FAILURE)
4173 return MATCH_ERROR;
4174
4175 if (sym->attr.is_bind_c)
4176 {
4177 /* Check for C1218. */
4178 if (!proc_if || !proc_if->attr.is_bind_c)
4179 {
4180 gfc_error ("BIND(C) attribute at %C requires "
4181 "an interface with BIND(C)");
4182 return MATCH_ERROR;
4183 }
4184 /* Check for C1217. */
4185 if (has_name_equals && sym->attr.pointer)
4186 {
4187 gfc_error ("BIND(C) procedure with NAME may not have "
4188 "POINTER attribute at %C");
4189 return MATCH_ERROR;
4190 }
4191 if (has_name_equals && sym->attr.dummy)
4192 {
4193 gfc_error ("Dummy procedure at %C may not have "
4194 "BIND(C) attribute with NAME");
4195 return MATCH_ERROR;
4196 }
4197 /* Set binding label for BIND(C). */
4198 if (set_binding_label (sym->binding_label, sym->name, num) != SUCCESS)
4199 return MATCH_ERROR;
4200 }
4201
4202 if (gfc_add_external (&sym->attr, NULL) == FAILURE)
4203 return MATCH_ERROR;
4204 if (gfc_add_proc (&sym->attr, sym->name, NULL) == FAILURE)
4205 return MATCH_ERROR;
4206
4207 /* Set interface. */
4208 if (proc_if != NULL)
4209 {
4210 sym->ts.interface = proc_if;
4211 sym->attr.untyped = 1;
4212 }
4213 else if (current_ts.type != BT_UNKNOWN)
4214 {
4215 sym->ts = current_ts;
4216 sym->ts.interface = gfc_new_symbol ("", gfc_current_ns);
4217 sym->ts.interface->ts = current_ts;
4218 sym->ts.interface->attr.function = 1;
4219 sym->attr.function = sym->ts.interface->attr.function;
4220 }
4221
4222 if (gfc_match (" =>") == MATCH_YES)
4223 {
4224 if (!current_attr.pointer)
4225 {
4226 gfc_error ("Initialization at %C isn't for a pointer variable");
4227 m = MATCH_ERROR;
4228 goto cleanup;
4229 }
4230
4231 m = gfc_match_null (&initializer);
4232 if (m == MATCH_NO)
4233 {
4234 gfc_error ("Pointer initialization requires a NULL() at %C");
4235 m = MATCH_ERROR;
4236 }
4237
4238 if (gfc_pure (NULL))
4239 {
4240 gfc_error ("Initialization of pointer at %C is not allowed in "
4241 "a PURE procedure");
4242 m = MATCH_ERROR;
4243 }
4244
4245 if (m != MATCH_YES)
4246 goto cleanup;
4247
4248 if (add_init_expr_to_sym (sym->name, &initializer, &gfc_current_locus)
4249 != SUCCESS)
4250 goto cleanup;
4251
4252 }
4253
4254 gfc_set_sym_referenced (sym);
4255
4256 if (gfc_match_eos () == MATCH_YES)
4257 return MATCH_YES;
4258 if (gfc_match_char (',') != MATCH_YES)
4259 goto syntax;
4260 }
4261
4262 syntax:
4263 gfc_error ("Syntax error in PROCEDURE statement at %C");
4264 return MATCH_ERROR;
4265
4266 cleanup:
4267 /* Free stuff up and return. */
4268 gfc_free_expr (initializer);
4269 return m;
4270 }
4271
4272
4273 /* Match a PROCEDURE declaration inside an interface (R1206). */
4274
4275 static match
4276 match_procedure_in_interface (void)
4277 {
4278 match m;
4279 gfc_symbol *sym;
4280 char name[GFC_MAX_SYMBOL_LEN + 1];
4281
4282 if (current_interface.type == INTERFACE_NAMELESS
4283 || current_interface.type == INTERFACE_ABSTRACT)
4284 {
4285 gfc_error ("PROCEDURE at %C must be in a generic interface");
4286 return MATCH_ERROR;
4287 }
4288
4289 for(;;)
4290 {
4291 m = gfc_match_name (name);
4292 if (m == MATCH_NO)
4293 goto syntax;
4294 else if (m == MATCH_ERROR)
4295 return m;
4296 if (gfc_get_symbol (name, gfc_current_ns->parent, &sym))
4297 return MATCH_ERROR;
4298
4299 if (gfc_add_interface (sym) == FAILURE)
4300 return MATCH_ERROR;
4301
4302 if (gfc_match_eos () == MATCH_YES)
4303 break;
4304 if (gfc_match_char (',') != MATCH_YES)
4305 goto syntax;
4306 }
4307
4308 return MATCH_YES;
4309
4310 syntax:
4311 gfc_error ("Syntax error in PROCEDURE statement at %C");
4312 return MATCH_ERROR;
4313 }
4314
4315
4316 /* General matcher for PROCEDURE declarations. */
4317
4318 static match match_procedure_in_type (void);
4319
4320 match
4321 gfc_match_procedure (void)
4322 {
4323 match m;
4324
4325 switch (gfc_current_state ())
4326 {
4327 case COMP_NONE:
4328 case COMP_PROGRAM:
4329 case COMP_MODULE:
4330 case COMP_SUBROUTINE:
4331 case COMP_FUNCTION:
4332 m = match_procedure_decl ();
4333 break;
4334 case COMP_INTERFACE:
4335 m = match_procedure_in_interface ();
4336 break;
4337 case COMP_DERIVED:
4338 gfc_error ("Fortran 2003: Procedure components at %C are not yet"
4339 " implemented in gfortran");
4340 return MATCH_ERROR;
4341 case COMP_DERIVED_CONTAINS:
4342 m = match_procedure_in_type ();
4343 break;
4344 default:
4345 return MATCH_NO;
4346 }
4347
4348 if (m != MATCH_YES)
4349 return m;
4350
4351 if (gfc_notify_std (GFC_STD_F2003, "Fortran 2003: PROCEDURE statement at %C")
4352 == FAILURE)
4353 return MATCH_ERROR;
4354
4355 return m;
4356 }
4357
4358
4359 /* Warn if a matched procedure has the same name as an intrinsic; this is
4360 simply a wrapper around gfc_warn_intrinsic_shadow that interprets the current
4361 parser-state-stack to find out whether we're in a module. */
4362
4363 static void
4364 warn_intrinsic_shadow (const gfc_symbol* sym, bool func)
4365 {
4366 bool in_module;
4367
4368 in_module = (gfc_state_stack->previous
4369 && gfc_state_stack->previous->state == COMP_MODULE);
4370
4371 gfc_warn_intrinsic_shadow (sym, in_module, func);
4372 }
4373
4374
4375 /* Match a function declaration. */
4376
4377 match
4378 gfc_match_function_decl (void)
4379 {
4380 char name[GFC_MAX_SYMBOL_LEN + 1];
4381 gfc_symbol *sym, *result;
4382 locus old_loc;
4383 match m;
4384 match suffix_match;
4385 match found_match; /* Status returned by match func. */
4386
4387 if (gfc_current_state () != COMP_NONE
4388 && gfc_current_state () != COMP_INTERFACE
4389 && gfc_current_state () != COMP_CONTAINS)
4390 return MATCH_NO;
4391
4392 gfc_clear_ts (&current_ts);
4393
4394 old_loc = gfc_current_locus;
4395
4396 m = gfc_match_prefix (&current_ts);
4397 if (m != MATCH_YES)
4398 {
4399 gfc_current_locus = old_loc;
4400 return m;
4401 }
4402
4403 if (gfc_match ("function% %n", name) != MATCH_YES)
4404 {
4405 gfc_current_locus = old_loc;
4406 return MATCH_NO;
4407 }
4408 if (get_proc_name (name, &sym, false))
4409 return MATCH_ERROR;
4410 gfc_new_block = sym;
4411
4412 m = gfc_match_formal_arglist (sym, 0, 0);
4413 if (m == MATCH_NO)
4414 {
4415 gfc_error ("Expected formal argument list in function "
4416 "definition at %C");
4417 m = MATCH_ERROR;
4418 goto cleanup;
4419 }
4420 else if (m == MATCH_ERROR)
4421 goto cleanup;
4422
4423 result = NULL;
4424
4425 /* According to the draft, the bind(c) and result clause can
4426 come in either order after the formal_arg_list (i.e., either
4427 can be first, both can exist together or by themselves or neither
4428 one). Therefore, the match_result can't match the end of the
4429 string, and check for the bind(c) or result clause in either order. */
4430 found_match = gfc_match_eos ();
4431
4432 /* Make sure that it isn't already declared as BIND(C). If it is, it
4433 must have been marked BIND(C) with a BIND(C) attribute and that is
4434 not allowed for procedures. */
4435 if (sym->attr.is_bind_c == 1)
4436 {
4437 sym->attr.is_bind_c = 0;
4438 if (sym->old_symbol != NULL)
4439 gfc_error_now ("BIND(C) attribute at %L can only be used for "
4440 "variables or common blocks",
4441 &(sym->old_symbol->declared_at));
4442 else
4443 gfc_error_now ("BIND(C) attribute at %L can only be used for "
4444 "variables or common blocks", &gfc_current_locus);
4445 }
4446
4447 if (found_match != MATCH_YES)
4448 {
4449 /* If we haven't found the end-of-statement, look for a suffix. */
4450 suffix_match = gfc_match_suffix (sym, &result);
4451 if (suffix_match == MATCH_YES)
4452 /* Need to get the eos now. */
4453 found_match = gfc_match_eos ();
4454 else
4455 found_match = suffix_match;
4456 }
4457
4458 if(found_match != MATCH_YES)
4459 m = MATCH_ERROR;
4460 else
4461 {
4462 /* Make changes to the symbol. */
4463 m = MATCH_ERROR;
4464
4465 if (gfc_add_function (&sym->attr, sym->name, NULL) == FAILURE)
4466 goto cleanup;
4467
4468 if (gfc_missing_attr (&sym->attr, NULL) == FAILURE
4469 || copy_prefix (&sym->attr, &sym->declared_at) == FAILURE)
4470 goto cleanup;
4471
4472 if (current_ts.type != BT_UNKNOWN && sym->ts.type != BT_UNKNOWN
4473 && !sym->attr.implicit_type)
4474 {
4475 gfc_error ("Function '%s' at %C already has a type of %s", name,
4476 gfc_basic_typename (sym->ts.type));
4477 goto cleanup;
4478 }
4479
4480 /* Delay matching the function characteristics until after the
4481 specification block by signalling kind=-1. */
4482 sym->declared_at = old_loc;
4483 if (current_ts.type != BT_UNKNOWN)
4484 current_ts.kind = -1;
4485 else
4486 current_ts.kind = 0;
4487
4488 if (result == NULL)
4489 {
4490 sym->ts = current_ts;
4491 sym->result = sym;
4492 }
4493 else
4494 {
4495 result->ts = current_ts;
4496 sym->result = result;
4497 }
4498
4499 /* Warn if this procedure has the same name as an intrinsic. */
4500 warn_intrinsic_shadow (sym, true);
4501
4502 return MATCH_YES;
4503 }
4504
4505 cleanup:
4506 gfc_current_locus = old_loc;
4507 return m;
4508 }
4509
4510
4511 /* This is mostly a copy of parse.c(add_global_procedure) but modified to
4512 pass the name of the entry, rather than the gfc_current_block name, and
4513 to return false upon finding an existing global entry. */
4514
4515 static bool
4516 add_global_entry (const char *name, int sub)
4517 {
4518 gfc_gsymbol *s;
4519 unsigned int type;
4520
4521 s = gfc_get_gsymbol(name);
4522 type = sub ? GSYM_SUBROUTINE : GSYM_FUNCTION;
4523
4524 if (s->defined
4525 || (s->type != GSYM_UNKNOWN
4526 && s->type != type))
4527 gfc_global_used(s, NULL);
4528 else
4529 {
4530 s->type = type;
4531 s->where = gfc_current_locus;
4532 s->defined = 1;
4533 s->ns = gfc_current_ns;
4534 return true;
4535 }
4536 return false;
4537 }
4538
4539
4540 /* Match an ENTRY statement. */
4541
4542 match
4543 gfc_match_entry (void)
4544 {
4545 gfc_symbol *proc;
4546 gfc_symbol *result;
4547 gfc_symbol *entry;
4548 char name[GFC_MAX_SYMBOL_LEN + 1];
4549 gfc_compile_state state;
4550 match m;
4551 gfc_entry_list *el;
4552 locus old_loc;
4553 bool module_procedure;
4554 char peek_char;
4555 match is_bind_c;
4556
4557 m = gfc_match_name (name);
4558 if (m != MATCH_YES)
4559 return m;
4560
4561 state = gfc_current_state ();
4562 if (state != COMP_SUBROUTINE && state != COMP_FUNCTION)
4563 {
4564 switch (state)
4565 {
4566 case COMP_PROGRAM:
4567 gfc_error ("ENTRY statement at %C cannot appear within a PROGRAM");
4568 break;
4569 case COMP_MODULE:
4570 gfc_error ("ENTRY statement at %C cannot appear within a MODULE");
4571 break;
4572 case COMP_BLOCK_DATA:
4573 gfc_error ("ENTRY statement at %C cannot appear within "
4574 "a BLOCK DATA");
4575 break;
4576 case COMP_INTERFACE:
4577 gfc_error ("ENTRY statement at %C cannot appear within "
4578 "an INTERFACE");
4579 break;
4580 case COMP_DERIVED:
4581 gfc_error ("ENTRY statement at %C cannot appear within "
4582 "a DERIVED TYPE block");
4583 break;
4584 case COMP_IF:
4585 gfc_error ("ENTRY statement at %C cannot appear within "
4586 "an IF-THEN block");
4587 break;
4588 case COMP_DO:
4589 gfc_error ("ENTRY statement at %C cannot appear within "
4590 "a DO block");
4591 break;
4592 case COMP_SELECT:
4593 gfc_error ("ENTRY statement at %C cannot appear within "
4594 "a SELECT block");
4595 break;
4596 case COMP_FORALL:
4597 gfc_error ("ENTRY statement at %C cannot appear within "
4598 "a FORALL block");
4599 break;
4600 case COMP_WHERE:
4601 gfc_error ("ENTRY statement at %C cannot appear within "
4602 "a WHERE block");
4603 break;
4604 case COMP_CONTAINS:
4605 gfc_error ("ENTRY statement at %C cannot appear within "
4606 "a contained subprogram");
4607 break;
4608 default:
4609 gfc_internal_error ("gfc_match_entry(): Bad state");
4610 }
4611 return MATCH_ERROR;
4612 }
4613
4614 module_procedure = gfc_current_ns->parent != NULL
4615 && gfc_current_ns->parent->proc_name
4616 && gfc_current_ns->parent->proc_name->attr.flavor
4617 == FL_MODULE;
4618
4619 if (gfc_current_ns->parent != NULL
4620 && gfc_current_ns->parent->proc_name
4621 && !module_procedure)
4622 {
4623 gfc_error("ENTRY statement at %C cannot appear in a "
4624 "contained procedure");
4625 return MATCH_ERROR;
4626 }
4627
4628 /* Module function entries need special care in get_proc_name
4629 because previous references within the function will have
4630 created symbols attached to the current namespace. */
4631 if (get_proc_name (name, &entry,
4632 gfc_current_ns->parent != NULL
4633 && module_procedure))
4634 return MATCH_ERROR;
4635
4636 proc = gfc_current_block ();
4637
4638 /* Make sure that it isn't already declared as BIND(C). If it is, it
4639 must have been marked BIND(C) with a BIND(C) attribute and that is
4640 not allowed for procedures. */
4641 if (entry->attr.is_bind_c == 1)
4642 {
4643 entry->attr.is_bind_c = 0;
4644 if (entry->old_symbol != NULL)
4645 gfc_error_now ("BIND(C) attribute at %L can only be used for "
4646 "variables or common blocks",
4647 &(entry->old_symbol->declared_at));
4648 else
4649 gfc_error_now ("BIND(C) attribute at %L can only be used for "
4650 "variables or common blocks", &gfc_current_locus);
4651 }
4652
4653 /* Check what next non-whitespace character is so we can tell if there
4654 is the required parens if we have a BIND(C). */
4655 gfc_gobble_whitespace ();
4656 peek_char = gfc_peek_ascii_char ();
4657
4658 if (state == COMP_SUBROUTINE)
4659 {
4660 /* An entry in a subroutine. */
4661 if (!gfc_current_ns->parent && !add_global_entry (name, 1))
4662 return MATCH_ERROR;
4663
4664 m = gfc_match_formal_arglist (entry, 0, 1);
4665 if (m != MATCH_YES)
4666 return MATCH_ERROR;
4667
4668 /* Call gfc_match_bind_c with allow_binding_name = true as ENTRY can
4669 never be an internal procedure. */
4670 is_bind_c = gfc_match_bind_c (entry, true);
4671 if (is_bind_c == MATCH_ERROR)
4672 return MATCH_ERROR;
4673 if (is_bind_c == MATCH_YES)
4674 {
4675 if (peek_char != '(')
4676 {
4677 gfc_error ("Missing required parentheses before BIND(C) at %C");
4678 return MATCH_ERROR;
4679 }
4680 if (gfc_add_is_bind_c (&(entry->attr), entry->name, &(entry->declared_at), 1)
4681 == FAILURE)
4682 return MATCH_ERROR;
4683 }
4684
4685 if (gfc_add_entry (&entry->attr, entry->name, NULL) == FAILURE
4686 || gfc_add_subroutine (&entry->attr, entry->name, NULL) == FAILURE)
4687 return MATCH_ERROR;
4688 }
4689 else
4690 {
4691 /* An entry in a function.
4692 We need to take special care because writing
4693 ENTRY f()
4694 as
4695 ENTRY f
4696 is allowed, whereas
4697 ENTRY f() RESULT (r)
4698 can't be written as
4699 ENTRY f RESULT (r). */
4700 if (!gfc_current_ns->parent && !add_global_entry (name, 0))
4701 return MATCH_ERROR;
4702
4703 old_loc = gfc_current_locus;
4704 if (gfc_match_eos () == MATCH_YES)
4705 {
4706 gfc_current_locus = old_loc;
4707 /* Match the empty argument list, and add the interface to
4708 the symbol. */
4709 m = gfc_match_formal_arglist (entry, 0, 1);
4710 }
4711 else
4712 m = gfc_match_formal_arglist (entry, 0, 0);
4713
4714 if (m != MATCH_YES)
4715 return MATCH_ERROR;
4716
4717 result = NULL;
4718
4719 if (gfc_match_eos () == MATCH_YES)
4720 {
4721 if (gfc_add_entry (&entry->attr, entry->name, NULL) == FAILURE
4722 || gfc_add_function (&entry->attr, entry->name, NULL) == FAILURE)
4723 return MATCH_ERROR;
4724
4725 entry->result = entry;
4726 }
4727 else
4728 {
4729 m = gfc_match_suffix (entry, &result);
4730 if (m == MATCH_NO)
4731 gfc_syntax_error (ST_ENTRY);
4732 if (m != MATCH_YES)
4733 return MATCH_ERROR;
4734
4735 if (result)
4736 {
4737 if (gfc_add_result (&result->attr, result->name, NULL) == FAILURE
4738 || gfc_add_entry (&entry->attr, result->name, NULL) == FAILURE
4739 || gfc_add_function (&entry->attr, result->name, NULL)
4740 == FAILURE)
4741 return MATCH_ERROR;
4742 entry->result = result;
4743 }
4744 else
4745 {
4746 if (gfc_add_entry (&entry->attr, entry->name, NULL) == FAILURE
4747 || gfc_add_function (&entry->attr, entry->name, NULL) == FAILURE)
4748 return MATCH_ERROR;
4749 entry->result = entry;
4750 }
4751 }
4752 }
4753
4754 if (gfc_match_eos () != MATCH_YES)
4755 {
4756 gfc_syntax_error (ST_ENTRY);
4757 return MATCH_ERROR;
4758 }
4759
4760 entry->attr.recursive = proc->attr.recursive;
4761 entry->attr.elemental = proc->attr.elemental;
4762 entry->attr.pure = proc->attr.pure;
4763
4764 el = gfc_get_entry_list ();
4765 el->sym = entry;
4766 el->next = gfc_current_ns->entries;
4767 gfc_current_ns->entries = el;
4768 if (el->next)
4769 el->id = el->next->id + 1;
4770 else
4771 el->id = 1;
4772
4773 new_st.op = EXEC_ENTRY;
4774 new_st.ext.entry = el;
4775
4776 return MATCH_YES;
4777 }
4778
4779
4780 /* Match a subroutine statement, including optional prefixes. */
4781
4782 match
4783 gfc_match_subroutine (void)
4784 {
4785 char name[GFC_MAX_SYMBOL_LEN + 1];
4786 gfc_symbol *sym;
4787 match m;
4788 match is_bind_c;
4789 char peek_char;
4790 bool allow_binding_name;
4791
4792 if (gfc_current_state () != COMP_NONE
4793 && gfc_current_state () != COMP_INTERFACE
4794 && gfc_current_state () != COMP_CONTAINS)
4795 return MATCH_NO;
4796
4797 m = gfc_match_prefix (NULL);
4798 if (m != MATCH_YES)
4799 return m;
4800
4801 m = gfc_match ("subroutine% %n", name);
4802 if (m != MATCH_YES)
4803 return m;
4804
4805 if (get_proc_name (name, &sym, false))
4806 return MATCH_ERROR;
4807 gfc_new_block = sym;
4808
4809 /* Check what next non-whitespace character is so we can tell if there
4810 is the required parens if we have a BIND(C). */
4811 gfc_gobble_whitespace ();
4812 peek_char = gfc_peek_ascii_char ();
4813
4814 if (gfc_add_subroutine (&sym->attr, sym->name, NULL) == FAILURE)
4815 return MATCH_ERROR;
4816
4817 if (gfc_match_formal_arglist (sym, 0, 1) != MATCH_YES)
4818 return MATCH_ERROR;
4819
4820 /* Make sure that it isn't already declared as BIND(C). If it is, it
4821 must have been marked BIND(C) with a BIND(C) attribute and that is
4822 not allowed for procedures. */
4823 if (sym->attr.is_bind_c == 1)
4824 {
4825 sym->attr.is_bind_c = 0;
4826 if (sym->old_symbol != NULL)
4827 gfc_error_now ("BIND(C) attribute at %L can only be used for "
4828 "variables or common blocks",
4829 &(sym->old_symbol->declared_at));
4830 else
4831 gfc_error_now ("BIND(C) attribute at %L can only be used for "
4832 "variables or common blocks", &gfc_current_locus);
4833 }
4834
4835 /* C binding names are not allowed for internal procedures. */
4836 if (gfc_current_state () == COMP_CONTAINS
4837 && sym->ns->proc_name->attr.flavor != FL_MODULE)
4838 allow_binding_name = false;
4839 else
4840 allow_binding_name = true;
4841
4842 /* Here, we are just checking if it has the bind(c) attribute, and if
4843 so, then we need to make sure it's all correct. If it doesn't,
4844 we still need to continue matching the rest of the subroutine line. */
4845 is_bind_c = gfc_match_bind_c (sym, allow_binding_name);
4846 if (is_bind_c == MATCH_ERROR)
4847 {
4848 /* There was an attempt at the bind(c), but it was wrong. An
4849 error message should have been printed w/in the gfc_match_bind_c
4850 so here we'll just return the MATCH_ERROR. */
4851 return MATCH_ERROR;
4852 }
4853
4854 if (is_bind_c == MATCH_YES)
4855 {
4856 /* The following is allowed in the Fortran 2008 draft. */
4857 if (gfc_current_state () == COMP_CONTAINS
4858 && sym->ns->proc_name->attr.flavor != FL_MODULE
4859 && gfc_notify_std (GFC_STD_F2008, "Fortran 2008: BIND(C) attribute "
4860 "at %L may not be specified for an internal "
4861 "procedure", &gfc_current_locus)
4862 == FAILURE)
4863 return MATCH_ERROR;
4864
4865 if (peek_char != '(')
4866 {
4867 gfc_error ("Missing required parentheses before BIND(C) at %C");
4868 return MATCH_ERROR;
4869 }
4870 if (gfc_add_is_bind_c (&(sym->attr), sym->name, &(sym->declared_at), 1)
4871 == FAILURE)
4872 return MATCH_ERROR;
4873 }
4874
4875 if (gfc_match_eos () != MATCH_YES)
4876 {
4877 gfc_syntax_error (ST_SUBROUTINE);
4878 return MATCH_ERROR;
4879 }
4880
4881 if (copy_prefix (&sym->attr, &sym->declared_at) == FAILURE)
4882 return MATCH_ERROR;
4883
4884 /* Warn if it has the same name as an intrinsic. */
4885 warn_intrinsic_shadow (sym, false);
4886
4887 return MATCH_YES;
4888 }
4889
4890
4891 /* Match a BIND(C) specifier, with the optional 'name=' specifier if
4892 given, and set the binding label in either the given symbol (if not
4893 NULL), or in the current_ts. The symbol may be NULL because we may
4894 encounter the BIND(C) before the declaration itself. Return
4895 MATCH_NO if what we're looking at isn't a BIND(C) specifier,
4896 MATCH_ERROR if it is a BIND(C) clause but an error was encountered,
4897 or MATCH_YES if the specifier was correct and the binding label and
4898 bind(c) fields were set correctly for the given symbol or the
4899 current_ts. If allow_binding_name is false, no binding name may be
4900 given. */
4901
4902 match
4903 gfc_match_bind_c (gfc_symbol *sym, bool allow_binding_name)
4904 {
4905 /* binding label, if exists */
4906 char binding_label[GFC_MAX_SYMBOL_LEN + 1];
4907 match double_quote;
4908 match single_quote;
4909
4910 /* Initialize the flag that specifies whether we encountered a NAME=
4911 specifier or not. */
4912 has_name_equals = 0;
4913
4914 /* Init the first char to nil so we can catch if we don't have
4915 the label (name attr) or the symbol name yet. */
4916 binding_label[0] = '\0';
4917
4918 /* This much we have to be able to match, in this order, if
4919 there is a bind(c) label. */
4920 if (gfc_match (" bind ( c ") != MATCH_YES)
4921 return MATCH_NO;
4922
4923 /* Now see if there is a binding label, or if we've reached the
4924 end of the bind(c) attribute without one. */
4925 if (gfc_match_char (',') == MATCH_YES)
4926 {
4927 if (gfc_match (" name = ") != MATCH_YES)
4928 {
4929 gfc_error ("Syntax error in NAME= specifier for binding label "
4930 "at %C");
4931 /* should give an error message here */
4932 return MATCH_ERROR;
4933 }
4934
4935 has_name_equals = 1;
4936
4937 /* Get the opening quote. */
4938 double_quote = MATCH_YES;
4939 single_quote = MATCH_YES;
4940 double_quote = gfc_match_char ('"');
4941 if (double_quote != MATCH_YES)
4942 single_quote = gfc_match_char ('\'');
4943 if (double_quote != MATCH_YES && single_quote != MATCH_YES)
4944 {
4945 gfc_error ("Syntax error in NAME= specifier for binding label "
4946 "at %C");
4947 return MATCH_ERROR;
4948 }
4949
4950 /* Grab the binding label, using functions that will not lower
4951 case the names automatically. */
4952 if (gfc_match_name_C (binding_label) != MATCH_YES)
4953 return MATCH_ERROR;
4954
4955 /* Get the closing quotation. */
4956 if (double_quote == MATCH_YES)
4957 {
4958 if (gfc_match_char ('"') != MATCH_YES)
4959 {
4960 gfc_error ("Missing closing quote '\"' for binding label at %C");
4961 /* User started string with '"' so looked to match it. */
4962 return MATCH_ERROR;
4963 }
4964 }
4965 else
4966 {
4967 if (gfc_match_char ('\'') != MATCH_YES)
4968 {
4969 gfc_error ("Missing closing quote '\'' for binding label at %C");
4970 /* User started string with "'" char. */
4971 return MATCH_ERROR;
4972 }
4973 }
4974 }
4975
4976 /* Get the required right paren. */
4977 if (gfc_match_char (')') != MATCH_YES)
4978 {
4979 gfc_error ("Missing closing paren for binding label at %C");
4980 return MATCH_ERROR;
4981 }
4982
4983 if (has_name_equals && !allow_binding_name)
4984 {
4985 gfc_error ("No binding name is allowed in BIND(C) at %C");
4986 return MATCH_ERROR;
4987 }
4988
4989 if (has_name_equals && sym != NULL && sym->attr.dummy)
4990 {
4991 gfc_error ("For dummy procedure %s, no binding name is "
4992 "allowed in BIND(C) at %C", sym->name);
4993 return MATCH_ERROR;
4994 }
4995
4996
4997 /* Save the binding label to the symbol. If sym is null, we're
4998 probably matching the typespec attributes of a declaration and
4999 haven't gotten the name yet, and therefore, no symbol yet. */
5000 if (binding_label[0] != '\0')
5001 {
5002 if (sym != NULL)
5003 {
5004 strcpy (sym->binding_label, binding_label);
5005 }
5006 else
5007 strcpy (curr_binding_label, binding_label);
5008 }
5009 else if (allow_binding_name)
5010 {
5011 /* No binding label, but if symbol isn't null, we
5012 can set the label for it here.
5013 If name="" or allow_binding_name is false, no C binding name is
5014 created. */
5015 if (sym != NULL && sym->name != NULL && has_name_equals == 0)
5016 strncpy (sym->binding_label, sym->name, strlen (sym->name) + 1);
5017 }
5018
5019 if (has_name_equals && gfc_current_state () == COMP_INTERFACE
5020 && current_interface.type == INTERFACE_ABSTRACT)
5021 {
5022 gfc_error ("NAME not allowed on BIND(C) for ABSTRACT INTERFACE at %C");
5023 return MATCH_ERROR;
5024 }
5025
5026 return MATCH_YES;
5027 }
5028
5029
5030 /* Return nonzero if we're currently compiling a contained procedure. */
5031
5032 static int
5033 contained_procedure (void)
5034 {
5035 gfc_state_data *s = gfc_state_stack;
5036
5037 if ((s->state == COMP_SUBROUTINE || s->state == COMP_FUNCTION)
5038 && s->previous != NULL && s->previous->state == COMP_CONTAINS)
5039 return 1;
5040
5041 return 0;
5042 }
5043
5044 /* Set the kind of each enumerator. The kind is selected such that it is
5045 interoperable with the corresponding C enumeration type, making
5046 sure that -fshort-enums is honored. */
5047
5048 static void
5049 set_enum_kind(void)
5050 {
5051 enumerator_history *current_history = NULL;
5052 int kind;
5053 int i;
5054
5055 if (max_enum == NULL || enum_history == NULL)
5056 return;
5057
5058 if (!gfc_option.fshort_enums)
5059 return;
5060
5061 i = 0;
5062 do
5063 {
5064 kind = gfc_integer_kinds[i++].kind;
5065 }
5066 while (kind < gfc_c_int_kind
5067 && gfc_check_integer_range (max_enum->initializer->value.integer,
5068 kind) != ARITH_OK);
5069
5070 current_history = enum_history;
5071 while (current_history != NULL)
5072 {
5073 current_history->sym->ts.kind = kind;
5074 current_history = current_history->next;
5075 }
5076 }
5077
5078
5079 /* Match any of the various end-block statements. Returns the type of
5080 END to the caller. The END INTERFACE, END IF, END DO and END
5081 SELECT statements cannot be replaced by a single END statement. */
5082
5083 match
5084 gfc_match_end (gfc_statement *st)
5085 {
5086 char name[GFC_MAX_SYMBOL_LEN + 1];
5087 gfc_compile_state state;
5088 locus old_loc;
5089 const char *block_name;
5090 const char *target;
5091 int eos_ok;
5092 match m;
5093
5094 old_loc = gfc_current_locus;
5095 if (gfc_match ("end") != MATCH_YES)
5096 return MATCH_NO;
5097
5098 state = gfc_current_state ();
5099 block_name = gfc_current_block () == NULL
5100 ? NULL : gfc_current_block ()->name;
5101
5102 if (state == COMP_CONTAINS || state == COMP_DERIVED_CONTAINS)
5103 {
5104 state = gfc_state_stack->previous->state;
5105 block_name = gfc_state_stack->previous->sym == NULL
5106 ? NULL : gfc_state_stack->previous->sym->name;
5107 }
5108
5109 switch (state)
5110 {
5111 case COMP_NONE:
5112 case COMP_PROGRAM:
5113 *st = ST_END_PROGRAM;
5114 target = " program";
5115 eos_ok = 1;
5116 break;
5117
5118 case COMP_SUBROUTINE:
5119 *st = ST_END_SUBROUTINE;
5120 target = " subroutine";
5121 eos_ok = !contained_procedure ();
5122 break;
5123
5124 case COMP_FUNCTION:
5125 *st = ST_END_FUNCTION;
5126 target = " function";
5127 eos_ok = !contained_procedure ();
5128 break;
5129
5130 case COMP_BLOCK_DATA:
5131 *st = ST_END_BLOCK_DATA;
5132 target = " block data";
5133 eos_ok = 1;
5134 break;
5135
5136 case COMP_MODULE:
5137 *st = ST_END_MODULE;
5138 target = " module";
5139 eos_ok = 1;
5140 break;
5141
5142 case COMP_INTERFACE:
5143 *st = ST_END_INTERFACE;
5144 target = " interface";
5145 eos_ok = 0;
5146 break;
5147
5148 case COMP_DERIVED:
5149 case COMP_DERIVED_CONTAINS:
5150 *st = ST_END_TYPE;
5151 target = " type";
5152 eos_ok = 0;
5153 break;
5154
5155 case COMP_IF:
5156 *st = ST_ENDIF;
5157 target = " if";
5158 eos_ok = 0;
5159 break;
5160
5161 case COMP_DO:
5162 *st = ST_ENDDO;
5163 target = " do";
5164 eos_ok = 0;
5165 break;
5166
5167 case COMP_SELECT:
5168 *st = ST_END_SELECT;
5169 target = " select";
5170 eos_ok = 0;
5171 break;
5172
5173 case COMP_FORALL:
5174 *st = ST_END_FORALL;
5175 target = " forall";
5176 eos_ok = 0;
5177 break;
5178
5179 case COMP_WHERE:
5180 *st = ST_END_WHERE;
5181 target = " where";
5182 eos_ok = 0;
5183 break;
5184
5185 case COMP_ENUM:
5186 *st = ST_END_ENUM;
5187 target = " enum";
5188 eos_ok = 0;
5189 last_initializer = NULL;
5190 set_enum_kind ();
5191 gfc_free_enum_history ();
5192 break;
5193
5194 default:
5195 gfc_error ("Unexpected END statement at %C");
5196 goto cleanup;
5197 }
5198
5199 if (gfc_match_eos () == MATCH_YES)
5200 {
5201 if (!eos_ok)
5202 {
5203 /* We would have required END [something]. */
5204 gfc_error ("%s statement expected at %L",
5205 gfc_ascii_statement (*st), &old_loc);
5206 goto cleanup;
5207 }
5208
5209 return MATCH_YES;
5210 }
5211
5212 /* Verify that we've got the sort of end-block that we're expecting. */
5213 if (gfc_match (target) != MATCH_YES)
5214 {
5215 gfc_error ("Expecting %s statement at %C", gfc_ascii_statement (*st));
5216 goto cleanup;
5217 }
5218
5219 /* If we're at the end, make sure a block name wasn't required. */
5220 if (gfc_match_eos () == MATCH_YES)
5221 {
5222
5223 if (*st != ST_ENDDO && *st != ST_ENDIF && *st != ST_END_SELECT
5224 && *st != ST_END_FORALL && *st != ST_END_WHERE)
5225 return MATCH_YES;
5226
5227 if (gfc_current_block () == NULL)
5228 return MATCH_YES;
5229
5230 gfc_error ("Expected block name of '%s' in %s statement at %C",
5231 block_name, gfc_ascii_statement (*st));
5232
5233 return MATCH_ERROR;
5234 }
5235
5236 /* END INTERFACE has a special handler for its several possible endings. */
5237 if (*st == ST_END_INTERFACE)
5238 return gfc_match_end_interface ();
5239
5240 /* We haven't hit the end of statement, so what is left must be an
5241 end-name. */
5242 m = gfc_match_space ();
5243 if (m == MATCH_YES)
5244 m = gfc_match_name (name);
5245
5246 if (m == MATCH_NO)
5247 gfc_error ("Expected terminating name at %C");
5248 if (m != MATCH_YES)
5249 goto cleanup;
5250
5251 if (block_name == NULL)
5252 goto syntax;
5253
5254 if (strcmp (name, block_name) != 0)
5255 {
5256 gfc_error ("Expected label '%s' for %s statement at %C", block_name,
5257 gfc_ascii_statement (*st));
5258 goto cleanup;
5259 }
5260
5261 if (gfc_match_eos () == MATCH_YES)
5262 return MATCH_YES;
5263
5264 syntax:
5265 gfc_syntax_error (*st);
5266
5267 cleanup:
5268 gfc_current_locus = old_loc;
5269 return MATCH_ERROR;
5270 }
5271
5272
5273
5274 /***************** Attribute declaration statements ****************/
5275
5276 /* Set the attribute of a single variable. */
5277
5278 static match
5279 attr_decl1 (void)
5280 {
5281 char name[GFC_MAX_SYMBOL_LEN + 1];
5282 gfc_array_spec *as;
5283 gfc_symbol *sym;
5284 locus var_locus;
5285 match m;
5286
5287 as = NULL;
5288
5289 m = gfc_match_name (name);
5290 if (m != MATCH_YES)
5291 goto cleanup;
5292
5293 if (find_special (name, &sym))
5294 return MATCH_ERROR;
5295
5296 var_locus = gfc_current_locus;
5297
5298 /* Deal with possible array specification for certain attributes. */
5299 if (current_attr.dimension
5300 || current_attr.allocatable
5301 || current_attr.pointer
5302 || current_attr.target)
5303 {
5304 m = gfc_match_array_spec (&as);
5305 if (m == MATCH_ERROR)
5306 goto cleanup;
5307
5308 if (current_attr.dimension && m == MATCH_NO)
5309 {
5310 gfc_error ("Missing array specification at %L in DIMENSION "
5311 "statement", &var_locus);
5312 m = MATCH_ERROR;
5313 goto cleanup;
5314 }
5315
5316 if (current_attr.dimension && sym->value)
5317 {
5318 gfc_error ("Dimensions specified for %s at %L after its "
5319 "initialisation", sym->name, &var_locus);
5320 m = MATCH_ERROR;
5321 goto cleanup;
5322 }
5323
5324 if ((current_attr.allocatable || current_attr.pointer)
5325 && (m == MATCH_YES) && (as->type != AS_DEFERRED))
5326 {
5327 gfc_error ("Array specification must be deferred at %L", &var_locus);
5328 m = MATCH_ERROR;
5329 goto cleanup;
5330 }
5331 }
5332
5333 /* Update symbol table. DIMENSION attribute is set
5334 in gfc_set_array_spec(). */
5335 if (current_attr.dimension == 0
5336 && gfc_copy_attr (&sym->attr, &current_attr, &var_locus) == FAILURE)
5337 {
5338 m = MATCH_ERROR;
5339 goto cleanup;
5340 }
5341
5342 if (gfc_set_array_spec (sym, as, &var_locus) == FAILURE)
5343 {
5344 m = MATCH_ERROR;
5345 goto cleanup;
5346 }
5347
5348 if (sym->attr.cray_pointee && sym->as != NULL)
5349 {
5350 /* Fix the array spec. */
5351 m = gfc_mod_pointee_as (sym->as);
5352 if (m == MATCH_ERROR)
5353 goto cleanup;
5354 }
5355
5356 if (gfc_add_attribute (&sym->attr, &var_locus) == FAILURE)
5357 {
5358 m = MATCH_ERROR;
5359 goto cleanup;
5360 }
5361
5362 if ((current_attr.external || current_attr.intrinsic)
5363 && sym->attr.flavor != FL_PROCEDURE
5364 && gfc_add_flavor (&sym->attr, FL_PROCEDURE, sym->name, NULL) == FAILURE)
5365 {
5366 m = MATCH_ERROR;
5367 goto cleanup;
5368 }
5369
5370 return MATCH_YES;
5371
5372 cleanup:
5373 gfc_free_array_spec (as);
5374 return m;
5375 }
5376
5377
5378 /* Generic attribute declaration subroutine. Used for attributes that
5379 just have a list of names. */
5380
5381 static match
5382 attr_decl (void)
5383 {
5384 match m;
5385
5386 /* Gobble the optional double colon, by simply ignoring the result
5387 of gfc_match(). */
5388 gfc_match (" ::");
5389
5390 for (;;)
5391 {
5392 m = attr_decl1 ();
5393 if (m != MATCH_YES)
5394 break;
5395
5396 if (gfc_match_eos () == MATCH_YES)
5397 {
5398 m = MATCH_YES;
5399 break;
5400 }
5401
5402 if (gfc_match_char (',') != MATCH_YES)
5403 {
5404 gfc_error ("Unexpected character in variable list at %C");
5405 m = MATCH_ERROR;
5406 break;
5407 }
5408 }
5409
5410 return m;
5411 }
5412
5413
5414 /* This routine matches Cray Pointer declarations of the form:
5415 pointer ( <pointer>, <pointee> )
5416 or
5417 pointer ( <pointer1>, <pointee1> ), ( <pointer2>, <pointee2> ), ...
5418 The pointer, if already declared, should be an integer. Otherwise, we
5419 set it as BT_INTEGER with kind gfc_index_integer_kind. The pointee may
5420 be either a scalar, or an array declaration. No space is allocated for
5421 the pointee. For the statement
5422 pointer (ipt, ar(10))
5423 any subsequent uses of ar will be translated (in C-notation) as
5424 ar(i) => ((<type> *) ipt)(i)
5425 After gimplification, pointee variable will disappear in the code. */
5426
5427 static match
5428 cray_pointer_decl (void)
5429 {
5430 match m;
5431 gfc_array_spec *as;
5432 gfc_symbol *cptr; /* Pointer symbol. */
5433 gfc_symbol *cpte; /* Pointee symbol. */
5434 locus var_locus;
5435 bool done = false;
5436
5437 while (!done)
5438 {
5439 if (gfc_match_char ('(') != MATCH_YES)
5440 {
5441 gfc_error ("Expected '(' at %C");
5442 return MATCH_ERROR;
5443 }
5444
5445 /* Match pointer. */
5446 var_locus = gfc_current_locus;
5447 gfc_clear_attr (&current_attr);
5448 gfc_add_cray_pointer (&current_attr, &var_locus);
5449 current_ts.type = BT_INTEGER;
5450 current_ts.kind = gfc_index_integer_kind;
5451
5452 m = gfc_match_symbol (&cptr, 0);
5453 if (m != MATCH_YES)
5454 {
5455 gfc_error ("Expected variable name at %C");
5456 return m;
5457 }
5458
5459 if (gfc_add_cray_pointer (&cptr->attr, &var_locus) == FAILURE)
5460 return MATCH_ERROR;
5461
5462 gfc_set_sym_referenced (cptr);
5463
5464 if (cptr->ts.type == BT_UNKNOWN) /* Override the type, if necessary. */
5465 {
5466 cptr->ts.type = BT_INTEGER;
5467 cptr->ts.kind = gfc_index_integer_kind;
5468 }
5469 else if (cptr->ts.type != BT_INTEGER)
5470 {
5471 gfc_error ("Cray pointer at %C must be an integer");
5472 return MATCH_ERROR;
5473 }
5474 else if (cptr->ts.kind < gfc_index_integer_kind)
5475 gfc_warning ("Cray pointer at %C has %d bytes of precision;"
5476 " memory addresses require %d bytes",
5477 cptr->ts.kind, gfc_index_integer_kind);
5478
5479 if (gfc_match_char (',') != MATCH_YES)
5480 {
5481 gfc_error ("Expected \",\" at %C");
5482 return MATCH_ERROR;
5483 }
5484
5485 /* Match Pointee. */
5486 var_locus = gfc_current_locus;
5487 gfc_clear_attr (&current_attr);
5488 gfc_add_cray_pointee (&current_attr, &var_locus);
5489 current_ts.type = BT_UNKNOWN;
5490 current_ts.kind = 0;
5491
5492 m = gfc_match_symbol (&cpte, 0);
5493 if (m != MATCH_YES)
5494 {
5495 gfc_error ("Expected variable name at %C");
5496 return m;
5497 }
5498
5499 /* Check for an optional array spec. */
5500 m = gfc_match_array_spec (&as);
5501 if (m == MATCH_ERROR)
5502 {
5503 gfc_free_array_spec (as);
5504 return m;
5505 }
5506 else if (m == MATCH_NO)
5507 {
5508 gfc_free_array_spec (as);
5509 as = NULL;
5510 }
5511
5512 if (gfc_add_cray_pointee (&cpte->attr, &var_locus) == FAILURE)
5513 return MATCH_ERROR;
5514
5515 gfc_set_sym_referenced (cpte);
5516
5517 if (cpte->as == NULL)
5518 {
5519 if (gfc_set_array_spec (cpte, as, &var_locus) == FAILURE)
5520 gfc_internal_error ("Couldn't set Cray pointee array spec.");
5521 }
5522 else if (as != NULL)
5523 {
5524 gfc_error ("Duplicate array spec for Cray pointee at %C");
5525 gfc_free_array_spec (as);
5526 return MATCH_ERROR;
5527 }
5528
5529 as = NULL;
5530
5531 if (cpte->as != NULL)
5532 {
5533 /* Fix array spec. */
5534 m = gfc_mod_pointee_as (cpte->as);
5535 if (m == MATCH_ERROR)
5536 return m;
5537 }
5538
5539 /* Point the Pointee at the Pointer. */
5540 cpte->cp_pointer = cptr;
5541
5542 if (gfc_match_char (')') != MATCH_YES)
5543 {
5544 gfc_error ("Expected \")\" at %C");
5545 return MATCH_ERROR;
5546 }
5547 m = gfc_match_char (',');
5548 if (m != MATCH_YES)
5549 done = true; /* Stop searching for more declarations. */
5550
5551 }
5552
5553 if (m == MATCH_ERROR /* Failed when trying to find ',' above. */
5554 || gfc_match_eos () != MATCH_YES)
5555 {
5556 gfc_error ("Expected \",\" or end of statement at %C");
5557 return MATCH_ERROR;
5558 }
5559 return MATCH_YES;
5560 }
5561
5562
5563 match
5564 gfc_match_external (void)
5565 {
5566
5567 gfc_clear_attr (&current_attr);
5568 current_attr.external = 1;
5569
5570 return attr_decl ();
5571 }
5572
5573
5574 match
5575 gfc_match_intent (void)
5576 {
5577 sym_intent intent;
5578
5579 intent = match_intent_spec ();
5580 if (intent == INTENT_UNKNOWN)
5581 return MATCH_ERROR;
5582
5583 gfc_clear_attr (&current_attr);
5584 current_attr.intent = intent;
5585
5586 return attr_decl ();
5587 }
5588
5589
5590 match
5591 gfc_match_intrinsic (void)
5592 {
5593
5594 gfc_clear_attr (&current_attr);
5595 current_attr.intrinsic = 1;
5596
5597 return attr_decl ();
5598 }
5599
5600
5601 match
5602 gfc_match_optional (void)
5603 {
5604
5605 gfc_clear_attr (&current_attr);
5606 current_attr.optional = 1;
5607
5608 return attr_decl ();
5609 }
5610
5611
5612 match
5613 gfc_match_pointer (void)
5614 {
5615 gfc_gobble_whitespace ();
5616 if (gfc_peek_ascii_char () == '(')
5617 {
5618 if (!gfc_option.flag_cray_pointer)
5619 {
5620 gfc_error ("Cray pointer declaration at %C requires -fcray-pointer "
5621 "flag");
5622 return MATCH_ERROR;
5623 }
5624 return cray_pointer_decl ();
5625 }
5626 else
5627 {
5628 gfc_clear_attr (&current_attr);
5629 current_attr.pointer = 1;
5630
5631 return attr_decl ();
5632 }
5633 }
5634
5635
5636 match
5637 gfc_match_allocatable (void)
5638 {
5639 gfc_clear_attr (&current_attr);
5640 current_attr.allocatable = 1;
5641
5642 return attr_decl ();
5643 }
5644
5645
5646 match
5647 gfc_match_dimension (void)
5648 {
5649 gfc_clear_attr (&current_attr);
5650 current_attr.dimension = 1;
5651
5652 return attr_decl ();
5653 }
5654
5655
5656 match
5657 gfc_match_target (void)
5658 {
5659 gfc_clear_attr (&current_attr);
5660 current_attr.target = 1;
5661
5662 return attr_decl ();
5663 }
5664
5665
5666 /* Match the list of entities being specified in a PUBLIC or PRIVATE
5667 statement. */
5668
5669 static match
5670 access_attr_decl (gfc_statement st)
5671 {
5672 char name[GFC_MAX_SYMBOL_LEN + 1];
5673 interface_type type;
5674 gfc_user_op *uop;
5675 gfc_symbol *sym;
5676 gfc_intrinsic_op op;
5677 match m;
5678
5679 if (gfc_match (" ::") == MATCH_NO && gfc_match_space () == MATCH_NO)
5680 goto done;
5681
5682 for (;;)
5683 {
5684 m = gfc_match_generic_spec (&type, name, &op);
5685 if (m == MATCH_NO)
5686 goto syntax;
5687 if (m == MATCH_ERROR)
5688 return MATCH_ERROR;
5689
5690 switch (type)
5691 {
5692 case INTERFACE_NAMELESS:
5693 case INTERFACE_ABSTRACT:
5694 goto syntax;
5695
5696 case INTERFACE_GENERIC:
5697 if (gfc_get_symbol (name, NULL, &sym))
5698 goto done;
5699
5700 if (gfc_add_access (&sym->attr, (st == ST_PUBLIC)
5701 ? ACCESS_PUBLIC : ACCESS_PRIVATE,
5702 sym->name, NULL) == FAILURE)
5703 return MATCH_ERROR;
5704
5705 break;
5706
5707 case INTERFACE_INTRINSIC_OP:
5708 if (gfc_current_ns->operator_access[op] == ACCESS_UNKNOWN)
5709 {
5710 gfc_current_ns->operator_access[op] =
5711 (st == ST_PUBLIC) ? ACCESS_PUBLIC : ACCESS_PRIVATE;
5712 }
5713 else
5714 {
5715 gfc_error ("Access specification of the %s operator at %C has "
5716 "already been specified", gfc_op2string (op));
5717 goto done;
5718 }
5719
5720 break;
5721
5722 case INTERFACE_USER_OP:
5723 uop = gfc_get_uop (name);
5724
5725 if (uop->access == ACCESS_UNKNOWN)
5726 {
5727 uop->access = (st == ST_PUBLIC)
5728 ? ACCESS_PUBLIC : ACCESS_PRIVATE;
5729 }
5730 else
5731 {
5732 gfc_error ("Access specification of the .%s. operator at %C "
5733 "has already been specified", sym->name);
5734 goto done;
5735 }
5736
5737 break;
5738 }
5739
5740 if (gfc_match_char (',') == MATCH_NO)
5741 break;
5742 }
5743
5744 if (gfc_match_eos () != MATCH_YES)
5745 goto syntax;
5746 return MATCH_YES;
5747
5748 syntax:
5749 gfc_syntax_error (st);
5750
5751 done:
5752 return MATCH_ERROR;
5753 }
5754
5755
5756 match
5757 gfc_match_protected (void)
5758 {
5759 gfc_symbol *sym;
5760 match m;
5761
5762 if (gfc_current_ns->proc_name->attr.flavor != FL_MODULE)
5763 {
5764 gfc_error ("PROTECTED at %C only allowed in specification "
5765 "part of a module");
5766 return MATCH_ERROR;
5767
5768 }
5769
5770 if (gfc_notify_std (GFC_STD_F2003, "Fortran 2003: PROTECTED statement at %C")
5771 == FAILURE)
5772 return MATCH_ERROR;
5773
5774 if (gfc_match (" ::") == MATCH_NO && gfc_match_space () == MATCH_NO)
5775 {
5776 return MATCH_ERROR;
5777 }
5778
5779 if (gfc_match_eos () == MATCH_YES)
5780 goto syntax;
5781
5782 for(;;)
5783 {
5784 m = gfc_match_symbol (&sym, 0);
5785 switch (m)
5786 {
5787 case MATCH_YES:
5788 if (gfc_add_protected (&sym->attr, sym->name, &gfc_current_locus)
5789 == FAILURE)
5790 return MATCH_ERROR;
5791 goto next_item;
5792
5793 case MATCH_NO:
5794 break;
5795
5796 case MATCH_ERROR:
5797 return MATCH_ERROR;
5798 }
5799
5800 next_item:
5801 if (gfc_match_eos () == MATCH_YES)
5802 break;
5803 if (gfc_match_char (',') != MATCH_YES)
5804 goto syntax;
5805 }
5806
5807 return MATCH_YES;
5808
5809 syntax:
5810 gfc_error ("Syntax error in PROTECTED statement at %C");
5811 return MATCH_ERROR;
5812 }
5813
5814
5815 /* The PRIVATE statement is a bit weird in that it can be an attribute
5816 declaration, but also works as a standalone statement inside of a
5817 type declaration or a module. */
5818
5819 match
5820 gfc_match_private (gfc_statement *st)
5821 {
5822
5823 if (gfc_match ("private") != MATCH_YES)
5824 return MATCH_NO;
5825
5826 if (gfc_current_state () != COMP_MODULE
5827 && !(gfc_current_state () == COMP_DERIVED
5828 && gfc_state_stack->previous
5829 && gfc_state_stack->previous->state == COMP_MODULE)
5830 && !(gfc_current_state () == COMP_DERIVED_CONTAINS
5831 && gfc_state_stack->previous && gfc_state_stack->previous->previous
5832 && gfc_state_stack->previous->previous->state == COMP_MODULE))
5833 {
5834 gfc_error ("PRIVATE statement at %C is only allowed in the "
5835 "specification part of a module");
5836 return MATCH_ERROR;
5837 }
5838
5839 if (gfc_current_state () == COMP_DERIVED)
5840 {
5841 if (gfc_match_eos () == MATCH_YES)
5842 {
5843 *st = ST_PRIVATE;
5844 return MATCH_YES;
5845 }
5846
5847 gfc_syntax_error (ST_PRIVATE);
5848 return MATCH_ERROR;
5849 }
5850
5851 if (gfc_match_eos () == MATCH_YES)
5852 {
5853 *st = ST_PRIVATE;
5854 return MATCH_YES;
5855 }
5856
5857 *st = ST_ATTR_DECL;
5858 return access_attr_decl (ST_PRIVATE);
5859 }
5860
5861
5862 match
5863 gfc_match_public (gfc_statement *st)
5864 {
5865
5866 if (gfc_match ("public") != MATCH_YES)
5867 return MATCH_NO;
5868
5869 if (gfc_current_state () != COMP_MODULE)
5870 {
5871 gfc_error ("PUBLIC statement at %C is only allowed in the "
5872 "specification part of a module");
5873 return MATCH_ERROR;
5874 }
5875
5876 if (gfc_match_eos () == MATCH_YES)
5877 {
5878 *st = ST_PUBLIC;
5879 return MATCH_YES;
5880 }
5881
5882 *st = ST_ATTR_DECL;
5883 return access_attr_decl (ST_PUBLIC);
5884 }
5885
5886
5887 /* Workhorse for gfc_match_parameter. */
5888
5889 static match
5890 do_parm (void)
5891 {
5892 gfc_symbol *sym;
5893 gfc_expr *init;
5894 match m;
5895
5896 m = gfc_match_symbol (&sym, 0);
5897 if (m == MATCH_NO)
5898 gfc_error ("Expected variable name at %C in PARAMETER statement");
5899
5900 if (m != MATCH_YES)
5901 return m;
5902
5903 if (gfc_match_char ('=') == MATCH_NO)
5904 {
5905 gfc_error ("Expected = sign in PARAMETER statement at %C");
5906 return MATCH_ERROR;
5907 }
5908
5909 m = gfc_match_init_expr (&init);
5910 if (m == MATCH_NO)
5911 gfc_error ("Expected expression at %C in PARAMETER statement");
5912 if (m != MATCH_YES)
5913 return m;
5914
5915 if (sym->ts.type == BT_UNKNOWN
5916 && gfc_set_default_type (sym, 1, NULL) == FAILURE)
5917 {
5918 m = MATCH_ERROR;
5919 goto cleanup;
5920 }
5921
5922 if (gfc_check_assign_symbol (sym, init) == FAILURE
5923 || gfc_add_flavor (&sym->attr, FL_PARAMETER, sym->name, NULL) == FAILURE)
5924 {
5925 m = MATCH_ERROR;
5926 goto cleanup;
5927 }
5928
5929 if (sym->value)
5930 {
5931 gfc_error ("Initializing already initialized variable at %C");
5932 m = MATCH_ERROR;
5933 goto cleanup;
5934 }
5935
5936 if (sym->ts.type == BT_CHARACTER
5937 && sym->ts.cl != NULL
5938 && sym->ts.cl->length != NULL
5939 && sym->ts.cl->length->expr_type == EXPR_CONSTANT
5940 && init->expr_type == EXPR_CONSTANT
5941 && init->ts.type == BT_CHARACTER)
5942 gfc_set_constant_character_len (
5943 mpz_get_si (sym->ts.cl->length->value.integer), init, -1);
5944 else if (sym->ts.type == BT_CHARACTER && sym->ts.cl != NULL
5945 && sym->ts.cl->length == NULL)
5946 {
5947 int clen;
5948 if (init->expr_type == EXPR_CONSTANT)
5949 {
5950 clen = init->value.character.length;
5951 sym->ts.cl->length = gfc_int_expr (clen);
5952 }
5953 else if (init->expr_type == EXPR_ARRAY)
5954 {
5955 gfc_expr *p = init->value.constructor->expr;
5956 clen = p->value.character.length;
5957 sym->ts.cl->length = gfc_int_expr (clen);
5958 }
5959 else if (init->ts.cl && init->ts.cl->length)
5960 sym->ts.cl->length = gfc_copy_expr (sym->value->ts.cl->length);
5961 }
5962
5963 sym->value = init;
5964 return MATCH_YES;
5965
5966 cleanup:
5967 gfc_free_expr (init);
5968 return m;
5969 }
5970
5971
5972 /* Match a parameter statement, with the weird syntax that these have. */
5973
5974 match
5975 gfc_match_parameter (void)
5976 {
5977 match m;
5978
5979 if (gfc_match_char ('(') == MATCH_NO)
5980 return MATCH_NO;
5981
5982 for (;;)
5983 {
5984 m = do_parm ();
5985 if (m != MATCH_YES)
5986 break;
5987
5988 if (gfc_match (" )%t") == MATCH_YES)
5989 break;
5990
5991 if (gfc_match_char (',') != MATCH_YES)
5992 {
5993 gfc_error ("Unexpected characters in PARAMETER statement at %C");
5994 m = MATCH_ERROR;
5995 break;
5996 }
5997 }
5998
5999 return m;
6000 }
6001
6002
6003 /* Save statements have a special syntax. */
6004
6005 match
6006 gfc_match_save (void)
6007 {
6008 char n[GFC_MAX_SYMBOL_LEN+1];
6009 gfc_common_head *c;
6010 gfc_symbol *sym;
6011 match m;
6012
6013 if (gfc_match_eos () == MATCH_YES)
6014 {
6015 if (gfc_current_ns->seen_save)
6016 {
6017 if (gfc_notify_std (GFC_STD_LEGACY, "Blanket SAVE statement at %C "
6018 "follows previous SAVE statement")
6019 == FAILURE)
6020 return MATCH_ERROR;
6021 }
6022
6023 gfc_current_ns->save_all = gfc_current_ns->seen_save = 1;
6024 return MATCH_YES;
6025 }
6026
6027 if (gfc_current_ns->save_all)
6028 {
6029 if (gfc_notify_std (GFC_STD_LEGACY, "SAVE statement at %C follows "
6030 "blanket SAVE statement")
6031 == FAILURE)
6032 return MATCH_ERROR;
6033 }
6034
6035 gfc_match (" ::");
6036
6037 for (;;)
6038 {
6039 m = gfc_match_symbol (&sym, 0);
6040 switch (m)
6041 {
6042 case MATCH_YES:
6043 if (gfc_add_save (&sym->attr, sym->name, &gfc_current_locus)
6044 == FAILURE)
6045 return MATCH_ERROR;
6046 goto next_item;
6047
6048 case MATCH_NO:
6049 break;
6050
6051 case MATCH_ERROR:
6052 return MATCH_ERROR;
6053 }
6054
6055 m = gfc_match (" / %n /", &n);
6056 if (m == MATCH_ERROR)
6057 return MATCH_ERROR;
6058 if (m == MATCH_NO)
6059 goto syntax;
6060
6061 c = gfc_get_common (n, 0);
6062 c->saved = 1;
6063
6064 gfc_current_ns->seen_save = 1;
6065
6066 next_item:
6067 if (gfc_match_eos () == MATCH_YES)
6068 break;
6069 if (gfc_match_char (',') != MATCH_YES)
6070 goto syntax;
6071 }
6072
6073 return MATCH_YES;
6074
6075 syntax:
6076 gfc_error ("Syntax error in SAVE statement at %C");
6077 return MATCH_ERROR;
6078 }
6079
6080
6081 match
6082 gfc_match_value (void)
6083 {
6084 gfc_symbol *sym;
6085 match m;
6086
6087 if (gfc_notify_std (GFC_STD_F2003, "Fortran 2003: VALUE statement at %C")
6088 == FAILURE)
6089 return MATCH_ERROR;
6090
6091 if (gfc_match (" ::") == MATCH_NO && gfc_match_space () == MATCH_NO)
6092 {
6093 return MATCH_ERROR;
6094 }
6095
6096 if (gfc_match_eos () == MATCH_YES)
6097 goto syntax;
6098
6099 for(;;)
6100 {
6101 m = gfc_match_symbol (&sym, 0);
6102 switch (m)
6103 {
6104 case MATCH_YES:
6105 if (gfc_add_value (&sym->attr, sym->name, &gfc_current_locus)
6106 == FAILURE)
6107 return MATCH_ERROR;
6108 goto next_item;
6109
6110 case MATCH_NO:
6111 break;
6112
6113 case MATCH_ERROR:
6114 return MATCH_ERROR;
6115 }
6116
6117 next_item:
6118 if (gfc_match_eos () == MATCH_YES)
6119 break;
6120 if (gfc_match_char (',') != MATCH_YES)
6121 goto syntax;
6122 }
6123
6124 return MATCH_YES;
6125
6126 syntax:
6127 gfc_error ("Syntax error in VALUE statement at %C");
6128 return MATCH_ERROR;
6129 }
6130
6131
6132 match
6133 gfc_match_volatile (void)
6134 {
6135 gfc_symbol *sym;
6136 match m;
6137
6138 if (gfc_notify_std (GFC_STD_F2003, "Fortran 2003: VOLATILE statement at %C")
6139 == FAILURE)
6140 return MATCH_ERROR;
6141
6142 if (gfc_match (" ::") == MATCH_NO && gfc_match_space () == MATCH_NO)
6143 {
6144 return MATCH_ERROR;
6145 }
6146
6147 if (gfc_match_eos () == MATCH_YES)
6148 goto syntax;
6149
6150 for(;;)
6151 {
6152 /* VOLATILE is special because it can be added to host-associated
6153 symbols locally. */
6154 m = gfc_match_symbol (&sym, 1);
6155 switch (m)
6156 {
6157 case MATCH_YES:
6158 if (gfc_add_volatile (&sym->attr, sym->name, &gfc_current_locus)
6159 == FAILURE)
6160 return MATCH_ERROR;
6161 goto next_item;
6162
6163 case MATCH_NO:
6164 break;
6165
6166 case MATCH_ERROR:
6167 return MATCH_ERROR;
6168 }
6169
6170 next_item:
6171 if (gfc_match_eos () == MATCH_YES)
6172 break;
6173 if (gfc_match_char (',') != MATCH_YES)
6174 goto syntax;
6175 }
6176
6177 return MATCH_YES;
6178
6179 syntax:
6180 gfc_error ("Syntax error in VOLATILE statement at %C");
6181 return MATCH_ERROR;
6182 }
6183
6184
6185 /* Match a module procedure statement. Note that we have to modify
6186 symbols in the parent's namespace because the current one was there
6187 to receive symbols that are in an interface's formal argument list. */
6188
6189 match
6190 gfc_match_modproc (void)
6191 {
6192 char name[GFC_MAX_SYMBOL_LEN + 1];
6193 gfc_symbol *sym;
6194 match m;
6195 gfc_namespace *module_ns;
6196 gfc_interface *old_interface_head, *interface;
6197
6198 if (gfc_state_stack->state != COMP_INTERFACE
6199 || gfc_state_stack->previous == NULL
6200 || current_interface.type == INTERFACE_NAMELESS
6201 || current_interface.type == INTERFACE_ABSTRACT)
6202 {
6203 gfc_error ("MODULE PROCEDURE at %C must be in a generic module "
6204 "interface");
6205 return MATCH_ERROR;
6206 }
6207
6208 module_ns = gfc_current_ns->parent;
6209 for (; module_ns; module_ns = module_ns->parent)
6210 if (module_ns->proc_name->attr.flavor == FL_MODULE)
6211 break;
6212
6213 if (module_ns == NULL)
6214 return MATCH_ERROR;
6215
6216 /* Store the current state of the interface. We will need it if we
6217 end up with a syntax error and need to recover. */
6218 old_interface_head = gfc_current_interface_head ();
6219
6220 for (;;)
6221 {
6222 bool last = false;
6223
6224 m = gfc_match_name (name);
6225 if (m == MATCH_NO)
6226 goto syntax;
6227 if (m != MATCH_YES)
6228 return MATCH_ERROR;
6229
6230 /* Check for syntax error before starting to add symbols to the
6231 current namespace. */
6232 if (gfc_match_eos () == MATCH_YES)
6233 last = true;
6234 if (!last && gfc_match_char (',') != MATCH_YES)
6235 goto syntax;
6236
6237 /* Now we're sure the syntax is valid, we process this item
6238 further. */
6239 if (gfc_get_symbol (name, module_ns, &sym))
6240 return MATCH_ERROR;
6241
6242 if (sym->attr.proc != PROC_MODULE
6243 && gfc_add_procedure (&sym->attr, PROC_MODULE,
6244 sym->name, NULL) == FAILURE)
6245 return MATCH_ERROR;
6246
6247 if (gfc_add_interface (sym) == FAILURE)
6248 return MATCH_ERROR;
6249
6250 sym->attr.mod_proc = 1;
6251
6252 if (last)
6253 break;
6254 }
6255
6256 return MATCH_YES;
6257
6258 syntax:
6259 /* Restore the previous state of the interface. */
6260 interface = gfc_current_interface_head ();
6261 gfc_set_current_interface_head (old_interface_head);
6262
6263 /* Free the new interfaces. */
6264 while (interface != old_interface_head)
6265 {
6266 gfc_interface *i = interface->next;
6267 gfc_free (interface);
6268 interface = i;
6269 }
6270
6271 /* And issue a syntax error. */
6272 gfc_syntax_error (ST_MODULE_PROC);
6273 return MATCH_ERROR;
6274 }
6275
6276
6277 /* Check a derived type that is being extended. */
6278 static gfc_symbol*
6279 check_extended_derived_type (char *name)
6280 {
6281 gfc_symbol *extended;
6282
6283 if (gfc_find_symbol (name, gfc_current_ns, 1, &extended))
6284 {
6285 gfc_error ("Ambiguous symbol in TYPE definition at %C");
6286 return NULL;
6287 }
6288
6289 if (!extended)
6290 {
6291 gfc_error ("No such symbol in TYPE definition at %C");
6292 return NULL;
6293 }
6294
6295 if (extended->attr.flavor != FL_DERIVED)
6296 {
6297 gfc_error ("'%s' in EXTENDS expression at %C is not a "
6298 "derived type", name);
6299 return NULL;
6300 }
6301
6302 if (extended->attr.is_bind_c)
6303 {
6304 gfc_error ("'%s' cannot be extended at %C because it "
6305 "is BIND(C)", extended->name);
6306 return NULL;
6307 }
6308
6309 if (extended->attr.sequence)
6310 {
6311 gfc_error ("'%s' cannot be extended at %C because it "
6312 "is a SEQUENCE type", extended->name);
6313 return NULL;
6314 }
6315
6316 return extended;
6317 }
6318
6319
6320 /* Match the optional attribute specifiers for a type declaration.
6321 Return MATCH_ERROR if an error is encountered in one of the handled
6322 attributes (public, private, bind(c)), MATCH_NO if what's found is
6323 not a handled attribute, and MATCH_YES otherwise. TODO: More error
6324 checking on attribute conflicts needs to be done. */
6325
6326 match
6327 gfc_get_type_attr_spec (symbol_attribute *attr, char *name)
6328 {
6329 /* See if the derived type is marked as private. */
6330 if (gfc_match (" , private") == MATCH_YES)
6331 {
6332 if (gfc_current_state () != COMP_MODULE)
6333 {
6334 gfc_error ("Derived type at %C can only be PRIVATE in the "
6335 "specification part of a module");
6336 return MATCH_ERROR;
6337 }
6338
6339 if (gfc_add_access (attr, ACCESS_PRIVATE, NULL, NULL) == FAILURE)
6340 return MATCH_ERROR;
6341 }
6342 else if (gfc_match (" , public") == MATCH_YES)
6343 {
6344 if (gfc_current_state () != COMP_MODULE)
6345 {
6346 gfc_error ("Derived type at %C can only be PUBLIC in the "
6347 "specification part of a module");
6348 return MATCH_ERROR;
6349 }
6350
6351 if (gfc_add_access (attr, ACCESS_PUBLIC, NULL, NULL) == FAILURE)
6352 return MATCH_ERROR;
6353 }
6354 else if (gfc_match (" , bind ( c )") == MATCH_YES)
6355 {
6356 /* If the type is defined to be bind(c) it then needs to make
6357 sure that all fields are interoperable. This will
6358 need to be a semantic check on the finished derived type.
6359 See 15.2.3 (lines 9-12) of F2003 draft. */
6360 if (gfc_add_is_bind_c (attr, NULL, &gfc_current_locus, 0) != SUCCESS)
6361 return MATCH_ERROR;
6362
6363 /* TODO: attr conflicts need to be checked, probably in symbol.c. */
6364 }
6365 else if (gfc_match (" , abstract") == MATCH_YES)
6366 {
6367 if (gfc_notify_std (GFC_STD_F2003, "Fortran 2003: ABSTRACT type at %C")
6368 == FAILURE)
6369 return MATCH_ERROR;
6370
6371 if (gfc_add_abstract (attr, &gfc_current_locus) == FAILURE)
6372 return MATCH_ERROR;
6373 }
6374 else if (name && gfc_match(" , extends ( %n )", name) == MATCH_YES)
6375 {
6376 if (gfc_add_extension (attr, &gfc_current_locus) == FAILURE)
6377 return MATCH_ERROR;
6378 }
6379 else
6380 return MATCH_NO;
6381
6382 /* If we get here, something matched. */
6383 return MATCH_YES;
6384 }
6385
6386
6387 /* Match the beginning of a derived type declaration. If a type name
6388 was the result of a function, then it is possible to have a symbol
6389 already to be known as a derived type yet have no components. */
6390
6391 match
6392 gfc_match_derived_decl (void)
6393 {
6394 char name[GFC_MAX_SYMBOL_LEN + 1];
6395 char parent[GFC_MAX_SYMBOL_LEN + 1];
6396 symbol_attribute attr;
6397 gfc_symbol *sym;
6398 gfc_symbol *extended;
6399 match m;
6400 match is_type_attr_spec = MATCH_NO;
6401 bool seen_attr = false;
6402
6403 if (gfc_current_state () == COMP_DERIVED)
6404 return MATCH_NO;
6405
6406 name[0] = '\0';
6407 parent[0] = '\0';
6408 gfc_clear_attr (&attr);
6409 extended = NULL;
6410
6411 do
6412 {
6413 is_type_attr_spec = gfc_get_type_attr_spec (&attr, parent);
6414 if (is_type_attr_spec == MATCH_ERROR)
6415 return MATCH_ERROR;
6416 if (is_type_attr_spec == MATCH_YES)
6417 seen_attr = true;
6418 } while (is_type_attr_spec == MATCH_YES);
6419
6420 /* Deal with derived type extensions. The extension attribute has
6421 been added to 'attr' but now the parent type must be found and
6422 checked. */
6423 if (parent[0])
6424 extended = check_extended_derived_type (parent);
6425
6426 if (parent[0] && !extended)
6427 return MATCH_ERROR;
6428
6429 if (gfc_match (" ::") != MATCH_YES && seen_attr)
6430 {
6431 gfc_error ("Expected :: in TYPE definition at %C");
6432 return MATCH_ERROR;
6433 }
6434
6435 m = gfc_match (" %n%t", name);
6436 if (m != MATCH_YES)
6437 return m;
6438
6439 /* Make sure the name is not the name of an intrinsic type. */
6440 if (gfc_is_intrinsic_typename (name))
6441 {
6442 gfc_error ("Type name '%s' at %C cannot be the same as an intrinsic "
6443 "type", name);
6444 return MATCH_ERROR;
6445 }
6446
6447 if (gfc_get_symbol (name, NULL, &sym))
6448 return MATCH_ERROR;
6449
6450 if (sym->ts.type != BT_UNKNOWN)
6451 {
6452 gfc_error ("Derived type name '%s' at %C already has a basic type "
6453 "of %s", sym->name, gfc_typename (&sym->ts));
6454 return MATCH_ERROR;
6455 }
6456
6457 /* The symbol may already have the derived attribute without the
6458 components. The ways this can happen is via a function
6459 definition, an INTRINSIC statement or a subtype in another
6460 derived type that is a pointer. The first part of the AND clause
6461 is true if the symbol is not the return value of a function. */
6462 if (sym->attr.flavor != FL_DERIVED
6463 && gfc_add_flavor (&sym->attr, FL_DERIVED, sym->name, NULL) == FAILURE)
6464 return MATCH_ERROR;
6465
6466 if (sym->components != NULL || sym->attr.zero_comp)
6467 {
6468 gfc_error ("Derived type definition of '%s' at %C has already been "
6469 "defined", sym->name);
6470 return MATCH_ERROR;
6471 }
6472
6473 if (attr.access != ACCESS_UNKNOWN
6474 && gfc_add_access (&sym->attr, attr.access, sym->name, NULL) == FAILURE)
6475 return MATCH_ERROR;
6476
6477 /* See if the derived type was labeled as bind(c). */
6478 if (attr.is_bind_c != 0)
6479 sym->attr.is_bind_c = attr.is_bind_c;
6480
6481 /* Construct the f2k_derived namespace if it is not yet there. */
6482 if (!sym->f2k_derived)
6483 sym->f2k_derived = gfc_get_namespace (NULL, 0);
6484
6485 if (extended && !sym->components)
6486 {
6487 gfc_component *p;
6488 gfc_symtree *st;
6489
6490 /* Add the extended derived type as the first component. */
6491 gfc_add_component (sym, parent, &p);
6492 sym->attr.extension = attr.extension;
6493 extended->refs++;
6494 gfc_set_sym_referenced (extended);
6495
6496 p->ts.type = BT_DERIVED;
6497 p->ts.derived = extended;
6498 p->initializer = gfc_default_initializer (&p->ts);
6499
6500 /* Provide the links between the extended type and its extension. */
6501 if (!extended->f2k_derived)
6502 extended->f2k_derived = gfc_get_namespace (NULL, 0);
6503 st = gfc_new_symtree (&extended->f2k_derived->sym_root, sym->name);
6504 st->n.sym = sym;
6505 }
6506
6507 /* Take over the ABSTRACT attribute. */
6508 sym->attr.abstract = attr.abstract;
6509
6510 gfc_new_block = sym;
6511
6512 return MATCH_YES;
6513 }
6514
6515
6516 /* Cray Pointees can be declared as:
6517 pointer (ipt, a (n,m,...,*))
6518 By default, this is treated as an AS_ASSUMED_SIZE array. We'll
6519 cheat and set a constant bound of 1 for the last dimension, if this
6520 is the case. Since there is no bounds-checking for Cray Pointees,
6521 this will be okay. */
6522
6523 gfc_try
6524 gfc_mod_pointee_as (gfc_array_spec *as)
6525 {
6526 as->cray_pointee = true; /* This will be useful to know later. */
6527 if (as->type == AS_ASSUMED_SIZE)
6528 {
6529 as->type = AS_EXPLICIT;
6530 as->upper[as->rank - 1] = gfc_int_expr (1);
6531 as->cp_was_assumed = true;
6532 }
6533 else if (as->type == AS_ASSUMED_SHAPE)
6534 {
6535 gfc_error ("Cray Pointee at %C cannot be assumed shape array");
6536 return MATCH_ERROR;
6537 }
6538 return MATCH_YES;
6539 }
6540
6541
6542 /* Match the enum definition statement, here we are trying to match
6543 the first line of enum definition statement.
6544 Returns MATCH_YES if match is found. */
6545
6546 match
6547 gfc_match_enum (void)
6548 {
6549 match m;
6550
6551 m = gfc_match_eos ();
6552 if (m != MATCH_YES)
6553 return m;
6554
6555 if (gfc_notify_std (GFC_STD_F2003, "Fortran 2003: ENUM and ENUMERATOR at %C")
6556 == FAILURE)
6557 return MATCH_ERROR;
6558
6559 return MATCH_YES;
6560 }
6561
6562
6563 /* Match a variable name with an optional initializer. When this
6564 subroutine is called, a variable is expected to be parsed next.
6565 Depending on what is happening at the moment, updates either the
6566 symbol table or the current interface. */
6567
6568 static match
6569 enumerator_decl (void)
6570 {
6571 char name[GFC_MAX_SYMBOL_LEN + 1];
6572 gfc_expr *initializer;
6573 gfc_array_spec *as = NULL;
6574 gfc_symbol *sym;
6575 locus var_locus;
6576 match m;
6577 gfc_try t;
6578 locus old_locus;
6579
6580 initializer = NULL;
6581 old_locus = gfc_current_locus;
6582
6583 /* When we get here, we've just matched a list of attributes and
6584 maybe a type and a double colon. The next thing we expect to see
6585 is the name of the symbol. */
6586 m = gfc_match_name (name);
6587 if (m != MATCH_YES)
6588 goto cleanup;
6589
6590 var_locus = gfc_current_locus;
6591
6592 /* OK, we've successfully matched the declaration. Now put the
6593 symbol in the current namespace. If we fail to create the symbol,
6594 bail out. */
6595 if (build_sym (name, NULL, &as, &var_locus) == FAILURE)
6596 {
6597 m = MATCH_ERROR;
6598 goto cleanup;
6599 }
6600
6601 /* The double colon must be present in order to have initializers.
6602 Otherwise the statement is ambiguous with an assignment statement. */
6603 if (colon_seen)
6604 {
6605 if (gfc_match_char ('=') == MATCH_YES)
6606 {
6607 m = gfc_match_init_expr (&initializer);
6608 if (m == MATCH_NO)
6609 {
6610 gfc_error ("Expected an initialization expression at %C");
6611 m = MATCH_ERROR;
6612 }
6613
6614 if (m != MATCH_YES)
6615 goto cleanup;
6616 }
6617 }
6618
6619 /* If we do not have an initializer, the initialization value of the
6620 previous enumerator (stored in last_initializer) is incremented
6621 by 1 and is used to initialize the current enumerator. */
6622 if (initializer == NULL)
6623 initializer = gfc_enum_initializer (last_initializer, old_locus);
6624
6625 if (initializer == NULL || initializer->ts.type != BT_INTEGER)
6626 {
6627 gfc_error("ENUMERATOR %L not initialized with integer expression",
6628 &var_locus);
6629 m = MATCH_ERROR;
6630 gfc_free_enum_history ();
6631 goto cleanup;
6632 }
6633
6634 /* Store this current initializer, for the next enumerator variable
6635 to be parsed. add_init_expr_to_sym() zeros initializer, so we
6636 use last_initializer below. */
6637 last_initializer = initializer;
6638 t = add_init_expr_to_sym (name, &initializer, &var_locus);
6639
6640 /* Maintain enumerator history. */
6641 gfc_find_symbol (name, NULL, 0, &sym);
6642 create_enum_history (sym, last_initializer);
6643
6644 return (t == SUCCESS) ? MATCH_YES : MATCH_ERROR;
6645
6646 cleanup:
6647 /* Free stuff up and return. */
6648 gfc_free_expr (initializer);
6649
6650 return m;
6651 }
6652
6653
6654 /* Match the enumerator definition statement. */
6655
6656 match
6657 gfc_match_enumerator_def (void)
6658 {
6659 match m;
6660 gfc_try t;
6661
6662 gfc_clear_ts (&current_ts);
6663
6664 m = gfc_match (" enumerator");
6665 if (m != MATCH_YES)
6666 return m;
6667
6668 m = gfc_match (" :: ");
6669 if (m == MATCH_ERROR)
6670 return m;
6671
6672 colon_seen = (m == MATCH_YES);
6673
6674 if (gfc_current_state () != COMP_ENUM)
6675 {
6676 gfc_error ("ENUM definition statement expected before %C");
6677 gfc_free_enum_history ();
6678 return MATCH_ERROR;
6679 }
6680
6681 (&current_ts)->type = BT_INTEGER;
6682 (&current_ts)->kind = gfc_c_int_kind;
6683
6684 gfc_clear_attr (&current_attr);
6685 t = gfc_add_flavor (&current_attr, FL_PARAMETER, NULL, NULL);
6686 if (t == FAILURE)
6687 {
6688 m = MATCH_ERROR;
6689 goto cleanup;
6690 }
6691
6692 for (;;)
6693 {
6694 m = enumerator_decl ();
6695 if (m == MATCH_ERROR)
6696 goto cleanup;
6697 if (m == MATCH_NO)
6698 break;
6699
6700 if (gfc_match_eos () == MATCH_YES)
6701 goto cleanup;
6702 if (gfc_match_char (',') != MATCH_YES)
6703 break;
6704 }
6705
6706 if (gfc_current_state () == COMP_ENUM)
6707 {
6708 gfc_free_enum_history ();
6709 gfc_error ("Syntax error in ENUMERATOR definition at %C");
6710 m = MATCH_ERROR;
6711 }
6712
6713 cleanup:
6714 gfc_free_array_spec (current_as);
6715 current_as = NULL;
6716 return m;
6717
6718 }
6719
6720
6721 /* Match binding attributes. */
6722
6723 static match
6724 match_binding_attributes (gfc_typebound_proc* ba, bool generic)
6725 {
6726 bool found_passing = false;
6727 match m;
6728
6729 /* Intialize to defaults. Do so even before the MATCH_NO check so that in
6730 this case the defaults are in there. */
6731 ba->access = ACCESS_UNKNOWN;
6732 ba->pass_arg = NULL;
6733 ba->pass_arg_num = 0;
6734 ba->nopass = 0;
6735 ba->non_overridable = 0;
6736 ba->deferred = 0;
6737
6738 /* If we find a comma, we believe there are binding attributes. */
6739 if (gfc_match_char (',') == MATCH_NO)
6740 {
6741 ba->access = gfc_typebound_default_access;
6742 return MATCH_NO;
6743 }
6744
6745 do
6746 {
6747 /* Access specifier. */
6748
6749 m = gfc_match (" public");
6750 if (m == MATCH_ERROR)
6751 goto error;
6752 if (m == MATCH_YES)
6753 {
6754 if (ba->access != ACCESS_UNKNOWN)
6755 {
6756 gfc_error ("Duplicate access-specifier at %C");
6757 goto error;
6758 }
6759
6760 ba->access = ACCESS_PUBLIC;
6761 continue;
6762 }
6763
6764 m = gfc_match (" private");
6765 if (m == MATCH_ERROR)
6766 goto error;
6767 if (m == MATCH_YES)
6768 {
6769 if (ba->access != ACCESS_UNKNOWN)
6770 {
6771 gfc_error ("Duplicate access-specifier at %C");
6772 goto error;
6773 }
6774
6775 ba->access = ACCESS_PRIVATE;
6776 continue;
6777 }
6778
6779 /* If inside GENERIC, the following is not allowed. */
6780 if (!generic)
6781 {
6782
6783 /* NOPASS flag. */
6784 m = gfc_match (" nopass");
6785 if (m == MATCH_ERROR)
6786 goto error;
6787 if (m == MATCH_YES)
6788 {
6789 if (found_passing)
6790 {
6791 gfc_error ("Binding attributes already specify passing,"
6792 " illegal NOPASS at %C");
6793 goto error;
6794 }
6795
6796 found_passing = true;
6797 ba->nopass = 1;
6798 continue;
6799 }
6800
6801 /* NON_OVERRIDABLE flag. */
6802 m = gfc_match (" non_overridable");
6803 if (m == MATCH_ERROR)
6804 goto error;
6805 if (m == MATCH_YES)
6806 {
6807 if (ba->non_overridable)
6808 {
6809 gfc_error ("Duplicate NON_OVERRIDABLE at %C");
6810 goto error;
6811 }
6812
6813 ba->non_overridable = 1;
6814 continue;
6815 }
6816
6817 /* DEFERRED flag. */
6818 m = gfc_match (" deferred");
6819 if (m == MATCH_ERROR)
6820 goto error;
6821 if (m == MATCH_YES)
6822 {
6823 if (ba->deferred)
6824 {
6825 gfc_error ("Duplicate DEFERRED at %C");
6826 goto error;
6827 }
6828
6829 ba->deferred = 1;
6830 continue;
6831 }
6832
6833 /* PASS possibly including argument. */
6834 m = gfc_match (" pass");
6835 if (m == MATCH_ERROR)
6836 goto error;
6837 if (m == MATCH_YES)
6838 {
6839 char arg[GFC_MAX_SYMBOL_LEN + 1];
6840
6841 if (found_passing)
6842 {
6843 gfc_error ("Binding attributes already specify passing,"
6844 " illegal PASS at %C");
6845 goto error;
6846 }
6847
6848 m = gfc_match (" ( %n )", arg);
6849 if (m == MATCH_ERROR)
6850 goto error;
6851 if (m == MATCH_YES)
6852 ba->pass_arg = xstrdup (arg);
6853 gcc_assert ((m == MATCH_YES) == (ba->pass_arg != NULL));
6854
6855 found_passing = true;
6856 ba->nopass = 0;
6857 continue;
6858 }
6859
6860 }
6861
6862 /* Nothing matching found. */
6863 if (generic)
6864 gfc_error ("Expected access-specifier at %C");
6865 else
6866 gfc_error ("Expected binding attribute at %C");
6867 goto error;
6868 }
6869 while (gfc_match_char (',') == MATCH_YES);
6870
6871 /* NON_OVERRIDABLE and DEFERRED exclude themselves. */
6872 if (ba->non_overridable && ba->deferred)
6873 {
6874 gfc_error ("NON_OVERRIDABLE and DEFERRED can't both appear at %C");
6875 goto error;
6876 }
6877
6878 if (ba->access == ACCESS_UNKNOWN)
6879 ba->access = gfc_typebound_default_access;
6880
6881 return MATCH_YES;
6882
6883 error:
6884 gfc_free (ba->pass_arg);
6885 return MATCH_ERROR;
6886 }
6887
6888
6889 /* Match a PROCEDURE specific binding inside a derived type. */
6890
6891 static match
6892 match_procedure_in_type (void)
6893 {
6894 char name[GFC_MAX_SYMBOL_LEN + 1];
6895 char target_buf[GFC_MAX_SYMBOL_LEN + 1];
6896 char* target = NULL;
6897 gfc_typebound_proc* tb;
6898 bool seen_colons;
6899 bool seen_attrs;
6900 match m;
6901 gfc_symtree* stree;
6902 gfc_namespace* ns;
6903 gfc_symbol* block;
6904
6905 /* Check current state. */
6906 gcc_assert (gfc_state_stack->state == COMP_DERIVED_CONTAINS);
6907 block = gfc_state_stack->previous->sym;
6908 gcc_assert (block);
6909
6910 /* Try to match PROCEDURE(interface). */
6911 if (gfc_match (" (") == MATCH_YES)
6912 {
6913 m = gfc_match_name (target_buf);
6914 if (m == MATCH_ERROR)
6915 return m;
6916 if (m != MATCH_YES)
6917 {
6918 gfc_error ("Interface-name expected after '(' at %C");
6919 return MATCH_ERROR;
6920 }
6921
6922 if (gfc_match (" )") != MATCH_YES)
6923 {
6924 gfc_error ("')' expected at %C");
6925 return MATCH_ERROR;
6926 }
6927
6928 target = target_buf;
6929 }
6930
6931 /* Construct the data structure. */
6932 tb = gfc_get_typebound_proc ();
6933 tb->where = gfc_current_locus;
6934 tb->is_generic = 0;
6935
6936 /* Match binding attributes. */
6937 m = match_binding_attributes (tb, false);
6938 if (m == MATCH_ERROR)
6939 return m;
6940 seen_attrs = (m == MATCH_YES);
6941
6942 /* Check that attribute DEFERRED is given iff an interface is specified, which
6943 means target != NULL. */
6944 if (tb->deferred && !target)
6945 {
6946 gfc_error ("Interface must be specified for DEFERRED binding at %C");
6947 return MATCH_ERROR;
6948 }
6949 if (target && !tb->deferred)
6950 {
6951 gfc_error ("PROCEDURE(interface) at %C should be declared DEFERRED");
6952 return MATCH_ERROR;
6953 }
6954
6955 /* Match the colons. */
6956 m = gfc_match (" ::");
6957 if (m == MATCH_ERROR)
6958 return m;
6959 seen_colons = (m == MATCH_YES);
6960 if (seen_attrs && !seen_colons)
6961 {
6962 gfc_error ("Expected '::' after binding-attributes at %C");
6963 return MATCH_ERROR;
6964 }
6965
6966 /* Match the binding name. */
6967 m = gfc_match_name (name);
6968 if (m == MATCH_ERROR)
6969 return m;
6970 if (m == MATCH_NO)
6971 {
6972 gfc_error ("Expected binding name at %C");
6973 return MATCH_ERROR;
6974 }
6975
6976 /* Try to match the '=> target', if it's there. */
6977 m = gfc_match (" =>");
6978 if (m == MATCH_ERROR)
6979 return m;
6980 if (m == MATCH_YES)
6981 {
6982 if (tb->deferred)
6983 {
6984 gfc_error ("'=> target' is invalid for DEFERRED binding at %C");
6985 return MATCH_ERROR;
6986 }
6987
6988 if (!seen_colons)
6989 {
6990 gfc_error ("'::' needed in PROCEDURE binding with explicit target"
6991 " at %C");
6992 return MATCH_ERROR;
6993 }
6994
6995 m = gfc_match_name (target_buf);
6996 if (m == MATCH_ERROR)
6997 return m;
6998 if (m == MATCH_NO)
6999 {
7000 gfc_error ("Expected binding target after '=>' at %C");
7001 return MATCH_ERROR;
7002 }
7003 target = target_buf;
7004 }
7005
7006 /* Now we should have the end. */
7007 m = gfc_match_eos ();
7008 if (m == MATCH_ERROR)
7009 return m;
7010 if (m == MATCH_NO)
7011 {
7012 gfc_error ("Junk after PROCEDURE declaration at %C");
7013 return MATCH_ERROR;
7014 }
7015
7016 /* If no target was found, it has the same name as the binding. */
7017 if (!target)
7018 target = name;
7019
7020 /* Get the namespace to insert the symbols into. */
7021 ns = block->f2k_derived;
7022 gcc_assert (ns);
7023
7024 /* If the binding is DEFERRED, check that the containing type is ABSTRACT. */
7025 if (tb->deferred && !block->attr.abstract)
7026 {
7027 gfc_error ("Type '%s' containing DEFERRED binding at %C is not ABSTRACT",
7028 block->name);
7029 return MATCH_ERROR;
7030 }
7031
7032 /* See if we already have a binding with this name in the symtree which would
7033 be an error. If a GENERIC already targetted this binding, it may be
7034 already there but then typebound is still NULL. */
7035 stree = gfc_find_symtree (ns->sym_root, name);
7036 if (stree && stree->typebound)
7037 {
7038 gfc_error ("There's already a procedure with binding name '%s' for the"
7039 " derived type '%s' at %C", name, block->name);
7040 return MATCH_ERROR;
7041 }
7042
7043 /* Insert it and set attributes. */
7044 if (gfc_get_sym_tree (name, ns, &stree))
7045 return MATCH_ERROR;
7046 if (gfc_get_sym_tree (target, gfc_current_ns, &tb->u.specific))
7047 return MATCH_ERROR;
7048 gfc_set_sym_referenced (tb->u.specific->n.sym);
7049 stree->typebound = tb;
7050
7051 return MATCH_YES;
7052 }
7053
7054
7055 /* Match a GENERIC procedure binding inside a derived type. */
7056
7057 match
7058 gfc_match_generic (void)
7059 {
7060 char name[GFC_MAX_SYMBOL_LEN + 1];
7061 gfc_symbol* block;
7062 gfc_typebound_proc tbattr; /* Used for match_binding_attributes. */
7063 gfc_typebound_proc* tb;
7064 gfc_symtree* st;
7065 gfc_namespace* ns;
7066 match m;
7067
7068 /* Check current state. */
7069 if (gfc_current_state () == COMP_DERIVED)
7070 {
7071 gfc_error ("GENERIC at %C must be inside a derived-type CONTAINS");
7072 return MATCH_ERROR;
7073 }
7074 if (gfc_current_state () != COMP_DERIVED_CONTAINS)
7075 return MATCH_NO;
7076 block = gfc_state_stack->previous->sym;
7077 ns = block->f2k_derived;
7078 gcc_assert (block && ns);
7079
7080 /* See if we get an access-specifier. */
7081 m = match_binding_attributes (&tbattr, true);
7082 if (m == MATCH_ERROR)
7083 goto error;
7084
7085 /* Now the colons, those are required. */
7086 if (gfc_match (" ::") != MATCH_YES)
7087 {
7088 gfc_error ("Expected '::' at %C");
7089 goto error;
7090 }
7091
7092 /* The binding name and =>. */
7093 m = gfc_match (" %n =>", name);
7094 if (m == MATCH_ERROR)
7095 return MATCH_ERROR;
7096 if (m == MATCH_NO)
7097 {
7098 gfc_error ("Expected generic name at %C");
7099 goto error;
7100 }
7101
7102 /* If there's already something with this name, check that it is another
7103 GENERIC and then extend that rather than build a new node. */
7104 st = gfc_find_symtree (ns->sym_root, name);
7105 if (st)
7106 {
7107 if (!st->typebound || !st->typebound->is_generic)
7108 {
7109 gfc_error ("There's already a non-generic procedure with binding name"
7110 " '%s' for the derived type '%s' at %C",
7111 name, block->name);
7112 goto error;
7113 }
7114
7115 tb = st->typebound;
7116 if (tb->access != tbattr.access)
7117 {
7118 gfc_error ("Binding at %C must have the same access as already"
7119 " defined binding '%s'", name);
7120 goto error;
7121 }
7122 }
7123 else
7124 {
7125 if (gfc_get_sym_tree (name, ns, &st))
7126 return MATCH_ERROR;
7127
7128 st->typebound = tb = gfc_get_typebound_proc ();
7129 tb->where = gfc_current_locus;
7130 tb->access = tbattr.access;
7131 tb->is_generic = 1;
7132 tb->u.generic = NULL;
7133 }
7134
7135 /* Now, match all following names as specific targets. */
7136 do
7137 {
7138 gfc_symtree* target_st;
7139 gfc_tbp_generic* target;
7140
7141 m = gfc_match_name (name);
7142 if (m == MATCH_ERROR)
7143 goto error;
7144 if (m == MATCH_NO)
7145 {
7146 gfc_error ("Expected specific binding name at %C");
7147 goto error;
7148 }
7149
7150 if (gfc_get_sym_tree (name, ns, &target_st))
7151 goto error;
7152
7153 /* See if this is a duplicate specification. */
7154 for (target = tb->u.generic; target; target = target->next)
7155 if (target_st == target->specific_st)
7156 {
7157 gfc_error ("'%s' already defined as specific binding for the"
7158 " generic '%s' at %C", name, st->n.sym->name);
7159 goto error;
7160 }
7161
7162 gfc_set_sym_referenced (target_st->n.sym);
7163
7164 target = gfc_get_tbp_generic ();
7165 target->specific_st = target_st;
7166 target->specific = NULL;
7167 target->next = tb->u.generic;
7168 tb->u.generic = target;
7169 }
7170 while (gfc_match (" ,") == MATCH_YES);
7171
7172 /* Here should be the end. */
7173 if (gfc_match_eos () != MATCH_YES)
7174 {
7175 gfc_error ("Junk after GENERIC binding at %C");
7176 goto error;
7177 }
7178
7179 return MATCH_YES;
7180
7181 error:
7182 return MATCH_ERROR;
7183 }
7184
7185
7186 /* Match a FINAL declaration inside a derived type. */
7187
7188 match
7189 gfc_match_final_decl (void)
7190 {
7191 char name[GFC_MAX_SYMBOL_LEN + 1];
7192 gfc_symbol* sym;
7193 match m;
7194 gfc_namespace* module_ns;
7195 bool first, last;
7196 gfc_symbol* block;
7197
7198 if (gfc_state_stack->state != COMP_DERIVED_CONTAINS)
7199 {
7200 gfc_error ("FINAL declaration at %C must be inside a derived type "
7201 "CONTAINS section");
7202 return MATCH_ERROR;
7203 }
7204
7205 block = gfc_state_stack->previous->sym;
7206 gcc_assert (block);
7207
7208 if (!gfc_state_stack->previous || !gfc_state_stack->previous->previous
7209 || gfc_state_stack->previous->previous->state != COMP_MODULE)
7210 {
7211 gfc_error ("Derived type declaration with FINAL at %C must be in the"
7212 " specification part of a MODULE");
7213 return MATCH_ERROR;
7214 }
7215
7216 module_ns = gfc_current_ns;
7217 gcc_assert (module_ns);
7218 gcc_assert (module_ns->proc_name->attr.flavor == FL_MODULE);
7219
7220 /* Match optional ::, don't care about MATCH_YES or MATCH_NO. */
7221 if (gfc_match (" ::") == MATCH_ERROR)
7222 return MATCH_ERROR;
7223
7224 /* Match the sequence of procedure names. */
7225 first = true;
7226 last = false;
7227 do
7228 {
7229 gfc_finalizer* f;
7230
7231 if (first && gfc_match_eos () == MATCH_YES)
7232 {
7233 gfc_error ("Empty FINAL at %C");
7234 return MATCH_ERROR;
7235 }
7236
7237 m = gfc_match_name (name);
7238 if (m == MATCH_NO)
7239 {
7240 gfc_error ("Expected module procedure name at %C");
7241 return MATCH_ERROR;
7242 }
7243 else if (m != MATCH_YES)
7244 return MATCH_ERROR;
7245
7246 if (gfc_match_eos () == MATCH_YES)
7247 last = true;
7248 if (!last && gfc_match_char (',') != MATCH_YES)
7249 {
7250 gfc_error ("Expected ',' at %C");
7251 return MATCH_ERROR;
7252 }
7253
7254 if (gfc_get_symbol (name, module_ns, &sym))
7255 {
7256 gfc_error ("Unknown procedure name \"%s\" at %C", name);
7257 return MATCH_ERROR;
7258 }
7259
7260 /* Mark the symbol as module procedure. */
7261 if (sym->attr.proc != PROC_MODULE
7262 && gfc_add_procedure (&sym->attr, PROC_MODULE,
7263 sym->name, NULL) == FAILURE)
7264 return MATCH_ERROR;
7265
7266 /* Check if we already have this symbol in the list, this is an error. */
7267 for (f = block->f2k_derived->finalizers; f; f = f->next)
7268 if (f->proc_sym == sym)
7269 {
7270 gfc_error ("'%s' at %C is already defined as FINAL procedure!",
7271 name);
7272 return MATCH_ERROR;
7273 }
7274
7275 /* Add this symbol to the list of finalizers. */
7276 gcc_assert (block->f2k_derived);
7277 ++sym->refs;
7278 f = XCNEW (gfc_finalizer);
7279 f->proc_sym = sym;
7280 f->proc_tree = NULL;
7281 f->where = gfc_current_locus;
7282 f->next = block->f2k_derived->finalizers;
7283 block->f2k_derived->finalizers = f;
7284
7285 first = false;
7286 }
7287 while (!last);
7288
7289 return MATCH_YES;
7290 }