Merge from mainline (gomp-merge-2005-02-26).
[official-gcc.git] / gcc / fortran / check.c
blob7a971f20038d1f3aff7551e7fd6838d6fd536f31
1 /* Check functions
2 Copyright (C) 2002, 2003, 2004, 2005 Free Software Foundation, Inc.
3 Contributed by Andy Vaught & Katherine Holcomb
5 This file is part of GCC.
7 GCC is free software; you can redistribute it and/or modify it under
8 the terms of the GNU General Public License as published by the Free
9 Software Foundation; either version 2, or (at your option) any later
10 version.
12 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
13 WARRANTY; without even the implied warranty of MERCHANTABILITY or
14 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
15 for more details.
17 You should have received a copy of the GNU General Public License
18 along with GCC; see the file COPYING. If not, write to the Free
19 Software Foundation, 59 Temple Place - Suite 330, Boston, MA
20 02111-1307, USA. */
23 /* These functions check to see if an argument list is compatible with
24 a particular intrinsic function or subroutine. Presence of
25 required arguments has already been established, the argument list
26 has been sorted into the right order and has NULL arguments in the
27 correct places for missing optional arguments. */
29 #include "config.h"
30 #include "system.h"
31 #include "flags.h"
32 #include "gfortran.h"
33 #include "intrinsic.h"
36 /* The fundamental complaint function of this source file. This
37 function can be called in all kinds of ways. */
39 static void
40 must_be (gfc_expr * e, int n, const char *thing)
42 gfc_error ("'%s' argument of '%s' intrinsic at %L must be %s",
43 gfc_current_intrinsic_arg[n], gfc_current_intrinsic, &e->where,
44 thing);
48 /* Check the type of an expression. */
50 static try
51 type_check (gfc_expr * e, int n, bt type)
53 if (e->ts.type == type)
54 return SUCCESS;
56 must_be (e, n, gfc_basic_typename (type));
58 return FAILURE;
62 /* Check that the expression is a numeric type. */
64 static try
65 numeric_check (gfc_expr * e, int n)
67 if (gfc_numeric_ts (&e->ts))
68 return SUCCESS;
70 must_be (e, n, "a numeric type");
72 return FAILURE;
76 /* Check that an expression is integer or real. */
78 static try
79 int_or_real_check (gfc_expr * e, int n)
81 if (e->ts.type != BT_INTEGER && e->ts.type != BT_REAL)
83 must_be (e, n, "INTEGER or REAL");
84 return FAILURE;
87 return SUCCESS;
91 /* Check that an expression is real or complex. */
93 static try
94 real_or_complex_check (gfc_expr * e, int n)
96 if (e->ts.type != BT_REAL && e->ts.type != BT_COMPLEX)
98 must_be (e, n, "REAL or COMPLEX");
99 return FAILURE;
102 return SUCCESS;
106 /* Check that the expression is an optional constant integer
107 and that it specifies a valid kind for that type. */
109 static try
110 kind_check (gfc_expr * k, int n, bt type)
112 int kind;
114 if (k == NULL)
115 return SUCCESS;
117 if (type_check (k, n, BT_INTEGER) == FAILURE)
118 return FAILURE;
120 if (k->expr_type != EXPR_CONSTANT)
122 must_be (k, n, "a constant");
123 return FAILURE;
126 if (gfc_extract_int (k, &kind) != NULL
127 || gfc_validate_kind (type, kind, true) < 0)
129 gfc_error ("Invalid kind for %s at %L", gfc_basic_typename (type),
130 &k->where);
131 return FAILURE;
134 return SUCCESS;
138 /* Make sure the expression is a double precision real. */
140 static try
141 double_check (gfc_expr * d, int n)
143 if (type_check (d, n, BT_REAL) == FAILURE)
144 return FAILURE;
146 if (d->ts.kind != gfc_default_double_kind)
148 must_be (d, n, "double precision");
149 return FAILURE;
152 return SUCCESS;
156 /* Make sure the expression is a logical array. */
158 static try
159 logical_array_check (gfc_expr * array, int n)
161 if (array->ts.type != BT_LOGICAL || array->rank == 0)
163 must_be (array, n, "a logical array");
164 return FAILURE;
167 return SUCCESS;
171 /* Make sure an expression is an array. */
173 static try
174 array_check (gfc_expr * e, int n)
176 if (e->rank != 0)
177 return SUCCESS;
179 must_be (e, n, "an array");
181 return FAILURE;
185 /* Make sure an expression is a scalar. */
187 static try
188 scalar_check (gfc_expr * e, int n)
190 if (e->rank == 0)
191 return SUCCESS;
193 must_be (e, n, "a scalar");
195 return FAILURE;
199 /* Make sure two expression have the same type. */
201 static try
202 same_type_check (gfc_expr * e, int n, gfc_expr * f, int m)
204 char message[100];
206 if (gfc_compare_types (&e->ts, &f->ts))
207 return SUCCESS;
209 sprintf (message, "the same type and kind as '%s'",
210 gfc_current_intrinsic_arg[n]);
212 must_be (f, m, message);
214 return FAILURE;
218 /* Make sure that an expression has a certain (nonzero) rank. */
220 static try
221 rank_check (gfc_expr * e, int n, int rank)
223 char message[100];
225 if (e->rank == rank)
226 return SUCCESS;
228 sprintf (message, "of rank %d", rank);
230 must_be (e, n, message);
232 return FAILURE;
236 /* Make sure a variable expression is not an optional dummy argument. */
238 static try
239 nonoptional_check (gfc_expr * e, int n)
241 if (e->expr_type == EXPR_VARIABLE && e->symtree->n.sym->attr.optional)
243 gfc_error ("'%s' argument of '%s' intrinsic at %L must not be OPTIONAL",
244 gfc_current_intrinsic_arg[n], gfc_current_intrinsic,
245 &e->where);
249 /* TODO: Recursive check on nonoptional variables? */
251 return SUCCESS;
255 /* Check that an expression has a particular kind. */
257 static try
258 kind_value_check (gfc_expr * e, int n, int k)
260 char message[100];
262 if (e->ts.kind == k)
263 return SUCCESS;
265 sprintf (message, "of kind %d", k);
267 must_be (e, n, message);
268 return FAILURE;
272 /* Make sure an expression is a variable. */
274 static try
275 variable_check (gfc_expr * e, int n)
277 if ((e->expr_type == EXPR_VARIABLE
278 && e->symtree->n.sym->attr.flavor != FL_PARAMETER)
279 || (e->expr_type == EXPR_FUNCTION
280 && e->symtree->n.sym->result == e->symtree->n.sym))
281 return SUCCESS;
283 if (e->expr_type == EXPR_VARIABLE
284 && e->symtree->n.sym->attr.intent == INTENT_IN)
286 gfc_error ("'%s' argument of '%s' intrinsic at %L cannot be INTENT(IN)",
287 gfc_current_intrinsic_arg[n], gfc_current_intrinsic,
288 &e->where);
289 return FAILURE;
292 must_be (e, n, "a variable");
294 return FAILURE;
298 /* Check the common DIM parameter for correctness. */
300 static try
301 dim_check (gfc_expr * dim, int n, int optional)
303 if (optional)
305 if (dim == NULL)
306 return SUCCESS;
308 if (nonoptional_check (dim, n) == FAILURE)
309 return FAILURE;
311 return SUCCESS;
314 if (dim == NULL)
316 gfc_error ("Missing DIM parameter in intrinsic '%s' at %L",
317 gfc_current_intrinsic, gfc_current_intrinsic_where);
318 return FAILURE;
321 if (type_check (dim, n, BT_INTEGER) == FAILURE)
322 return FAILURE;
324 if (scalar_check (dim, n) == FAILURE)
325 return FAILURE;
327 return SUCCESS;
331 /* If a DIM parameter is a constant, make sure that it is greater than
332 zero and less than or equal to the rank of the given array. If
333 allow_assumed is zero then dim must be less than the rank of the array
334 for assumed size arrays. */
336 static try
337 dim_rank_check (gfc_expr * dim, gfc_expr * array, int allow_assumed)
339 gfc_array_ref *ar;
340 int rank;
342 if (dim->expr_type != EXPR_CONSTANT || array->expr_type != EXPR_VARIABLE)
343 return SUCCESS;
345 ar = gfc_find_array_ref (array);
346 rank = array->rank;
347 if (ar->as->type == AS_ASSUMED_SIZE && !allow_assumed)
348 rank--;
350 if (mpz_cmp_ui (dim->value.integer, 1) < 0
351 || mpz_cmp_ui (dim->value.integer, rank) > 0)
353 gfc_error ("'dim' argument of '%s' intrinsic at %L is not a valid "
354 "dimension index", gfc_current_intrinsic, &dim->where);
356 return FAILURE;
359 return SUCCESS;
363 /***** Check functions *****/
365 /* Check subroutine suitable for intrinsics taking a real argument and
366 a kind argument for the result. */
368 static try
369 check_a_kind (gfc_expr * a, gfc_expr * kind, bt type)
371 if (type_check (a, 0, BT_REAL) == FAILURE)
372 return FAILURE;
373 if (kind_check (kind, 1, type) == FAILURE)
374 return FAILURE;
376 return SUCCESS;
379 /* Check subroutine suitable for ceiling, floor and nint. */
382 gfc_check_a_ikind (gfc_expr * a, gfc_expr * kind)
384 return check_a_kind (a, kind, BT_INTEGER);
387 /* Check subroutine suitable for aint, anint. */
390 gfc_check_a_xkind (gfc_expr * a, gfc_expr * kind)
392 return check_a_kind (a, kind, BT_REAL);
396 gfc_check_abs (gfc_expr * a)
398 if (numeric_check (a, 0) == FAILURE)
399 return FAILURE;
401 return SUCCESS;
405 gfc_check_achar (gfc_expr * a)
408 if (type_check (a, 0, BT_INTEGER) == FAILURE)
409 return FAILURE;
411 return SUCCESS;
416 gfc_check_all_any (gfc_expr * mask, gfc_expr * dim)
418 if (logical_array_check (mask, 0) == FAILURE)
419 return FAILURE;
421 if (dim_check (dim, 1, 1) == FAILURE)
422 return FAILURE;
424 return SUCCESS;
429 gfc_check_allocated (gfc_expr * array)
431 if (variable_check (array, 0) == FAILURE)
432 return FAILURE;
434 if (array_check (array, 0) == FAILURE)
435 return FAILURE;
437 if (!array->symtree->n.sym->attr.allocatable)
439 must_be (array, 0, "ALLOCATABLE");
440 return FAILURE;
443 return SUCCESS;
447 /* Common check function where the first argument must be real or
448 integer and the second argument must be the same as the first. */
451 gfc_check_a_p (gfc_expr * a, gfc_expr * p)
453 if (int_or_real_check (a, 0) == FAILURE)
454 return FAILURE;
456 if (same_type_check (a, 0, p, 1) == FAILURE)
457 return FAILURE;
459 return SUCCESS;
464 gfc_check_associated (gfc_expr * pointer, gfc_expr * target)
466 symbol_attribute attr;
467 int i;
468 try t;
470 if (variable_check (pointer, 0) == FAILURE)
471 return FAILURE;
473 attr = gfc_variable_attr (pointer, NULL);
474 if (!attr.pointer)
476 must_be (pointer, 0, "a POINTER");
477 return FAILURE;
480 if (target == NULL)
481 return SUCCESS;
483 /* Target argument is optional. */
484 if (target->expr_type == EXPR_NULL)
486 gfc_error ("NULL pointer at %L is not permitted as actual argument "
487 "of '%s' intrinsic function",
488 &target->where, gfc_current_intrinsic);
489 return FAILURE;
492 attr = gfc_variable_attr (target, NULL);
493 if (!attr.pointer && !attr.target)
495 must_be (target, 1, "a POINTER or a TARGET");
496 return FAILURE;
499 t = SUCCESS;
500 if (same_type_check (pointer, 0, target, 1) == FAILURE)
501 t = FAILURE;
502 if (rank_check (target, 0, pointer->rank) == FAILURE)
503 t = FAILURE;
504 if (target->rank > 0)
506 for (i = 0; i < target->rank; i++)
507 if (target->ref->u.ar.dimen_type[i] == DIMEN_VECTOR)
509 gfc_error ("Array section with a vector subscript at %L shall not "
510 "be the target of an pointer",
511 &target->where);
512 t = FAILURE;
513 break;
516 return t;
521 gfc_check_atan2 (gfc_expr * y, gfc_expr * x)
523 if (type_check (y, 0, BT_REAL) == FAILURE)
524 return FAILURE;
525 if (same_type_check (y, 0, x, 1) == FAILURE)
526 return FAILURE;
528 return SUCCESS;
532 /* BESJN and BESYN functions. */
535 gfc_check_besn (gfc_expr * n, gfc_expr * x)
537 if (scalar_check (n, 0) == FAILURE)
538 return FAILURE;
540 if (type_check (n, 0, BT_INTEGER) == FAILURE)
541 return FAILURE;
543 if (scalar_check (x, 1) == FAILURE)
544 return FAILURE;
546 if (type_check (x, 1, BT_REAL) == FAILURE)
547 return FAILURE;
549 return SUCCESS;
554 gfc_check_btest (gfc_expr * i, gfc_expr * pos)
556 if (type_check (i, 0, BT_INTEGER) == FAILURE)
557 return FAILURE;
558 if (type_check (pos, 1, BT_INTEGER) == FAILURE)
559 return FAILURE;
561 return SUCCESS;
566 gfc_check_char (gfc_expr * i, gfc_expr * kind)
568 if (type_check (i, 0, BT_INTEGER) == FAILURE)
569 return FAILURE;
570 if (kind_check (kind, 1, BT_CHARACTER) == FAILURE)
571 return FAILURE;
573 return SUCCESS;
578 gfc_check_cmplx (gfc_expr * x, gfc_expr * y, gfc_expr * kind)
580 if (numeric_check (x, 0) == FAILURE)
581 return FAILURE;
583 if (y != NULL)
585 if (numeric_check (y, 1) == FAILURE)
586 return FAILURE;
588 if (x->ts.type == BT_COMPLEX)
590 must_be (y, 1, "not be present if 'x' is COMPLEX");
591 return FAILURE;
595 if (kind_check (kind, 2, BT_COMPLEX) == FAILURE)
596 return FAILURE;
598 return SUCCESS;
603 gfc_check_count (gfc_expr * mask, gfc_expr * dim)
605 if (logical_array_check (mask, 0) == FAILURE)
606 return FAILURE;
607 if (dim_check (dim, 1, 1) == FAILURE)
608 return FAILURE;
610 return SUCCESS;
615 gfc_check_cshift (gfc_expr * array, gfc_expr * shift, gfc_expr * dim)
617 if (array_check (array, 0) == FAILURE)
618 return FAILURE;
620 if (array->rank == 1)
622 if (scalar_check (shift, 1) == FAILURE)
623 return FAILURE;
625 else
627 /* TODO: more requirements on shift parameter. */
630 if (dim_check (dim, 2, 1) == FAILURE)
631 return FAILURE;
633 return SUCCESS;
638 gfc_check_dcmplx (gfc_expr * x, gfc_expr * y)
640 if (numeric_check (x, 0) == FAILURE)
641 return FAILURE;
643 if (y != NULL)
645 if (numeric_check (y, 1) == FAILURE)
646 return FAILURE;
648 if (x->ts.type == BT_COMPLEX)
650 must_be (y, 1, "not be present if 'x' is COMPLEX");
651 return FAILURE;
655 return SUCCESS;
660 gfc_check_dble (gfc_expr * x)
662 if (numeric_check (x, 0) == FAILURE)
663 return FAILURE;
665 return SUCCESS;
670 gfc_check_digits (gfc_expr * x)
672 if (int_or_real_check (x, 0) == FAILURE)
673 return FAILURE;
675 return SUCCESS;
680 gfc_check_dot_product (gfc_expr * vector_a, gfc_expr * vector_b)
682 switch (vector_a->ts.type)
684 case BT_LOGICAL:
685 if (type_check (vector_b, 1, BT_LOGICAL) == FAILURE)
686 return FAILURE;
687 break;
689 case BT_INTEGER:
690 case BT_REAL:
691 case BT_COMPLEX:
692 if (numeric_check (vector_b, 1) == FAILURE)
693 return FAILURE;
694 break;
696 default:
697 must_be (vector_a, 0, "numeric or LOGICAL");
698 return FAILURE;
701 if (rank_check (vector_a, 0, 1) == FAILURE)
702 return FAILURE;
704 if (rank_check (vector_b, 1, 1) == FAILURE)
705 return FAILURE;
707 return SUCCESS;
712 gfc_check_eoshift (gfc_expr * array, gfc_expr * shift, gfc_expr * boundary,
713 gfc_expr * dim)
715 if (array_check (array, 0) == FAILURE)
716 return FAILURE;
718 if (type_check (shift, 1, BT_INTEGER) == FAILURE)
719 return FAILURE;
721 if (array->rank == 1)
723 if (scalar_check (shift, 2) == FAILURE)
724 return FAILURE;
726 else
728 /* TODO: more weird restrictions on shift. */
731 if (boundary != NULL)
733 if (same_type_check (array, 0, boundary, 2) == FAILURE)
734 return FAILURE;
736 /* TODO: more restrictions on boundary. */
739 if (dim_check (dim, 1, 1) == FAILURE)
740 return FAILURE;
742 return SUCCESS;
746 /* A single complex argument. */
749 gfc_check_fn_c (gfc_expr * a)
751 if (type_check (a, 0, BT_COMPLEX) == FAILURE)
752 return FAILURE;
754 return SUCCESS;
758 /* A single real argument. */
761 gfc_check_fn_r (gfc_expr * a)
763 if (type_check (a, 0, BT_REAL) == FAILURE)
764 return FAILURE;
766 return SUCCESS;
770 /* A single real or complex argument. */
773 gfc_check_fn_rc (gfc_expr * a)
775 if (real_or_complex_check (a, 0) == FAILURE)
776 return FAILURE;
778 return SUCCESS;
783 gfc_check_fnum (gfc_expr * unit)
785 if (type_check (unit, 0, BT_INTEGER) == FAILURE)
786 return FAILURE;
788 if (scalar_check (unit, 0) == FAILURE)
789 return FAILURE;
791 return SUCCESS;
795 /* This is used for the g77 one-argument Bessel functions, and the
796 error function. */
799 gfc_check_g77_math1 (gfc_expr * x)
801 if (scalar_check (x, 0) == FAILURE)
802 return FAILURE;
804 if (type_check (x, 0, BT_REAL) == FAILURE)
805 return FAILURE;
807 return SUCCESS;
812 gfc_check_huge (gfc_expr * x)
814 if (int_or_real_check (x, 0) == FAILURE)
815 return FAILURE;
817 return SUCCESS;
821 /* Check that the single argument is an integer. */
824 gfc_check_i (gfc_expr * i)
826 if (type_check (i, 0, BT_INTEGER) == FAILURE)
827 return FAILURE;
829 return SUCCESS;
834 gfc_check_iand (gfc_expr * i, gfc_expr * j)
836 if (type_check (i, 0, BT_INTEGER) == FAILURE)
837 return FAILURE;
839 if (type_check (j, 1, BT_INTEGER) == FAILURE)
840 return FAILURE;
842 if (i->ts.kind != j->ts.kind)
844 if (gfc_notify_std (GFC_STD_GNU, "Extension: Different type kinds at %L",
845 &i->where) == FAILURE)
846 return FAILURE;
849 return SUCCESS;
854 gfc_check_ibclr (gfc_expr * i, gfc_expr * pos)
856 if (type_check (i, 0, BT_INTEGER) == FAILURE)
857 return FAILURE;
859 if (type_check (pos, 1, BT_INTEGER) == FAILURE)
860 return FAILURE;
862 return SUCCESS;
867 gfc_check_ibits (gfc_expr * i, gfc_expr * pos, gfc_expr * len)
869 if (type_check (i, 0, BT_INTEGER) == FAILURE)
870 return FAILURE;
872 if (type_check (pos, 1, BT_INTEGER) == FAILURE)
873 return FAILURE;
875 if (type_check (len, 2, BT_INTEGER) == FAILURE)
876 return FAILURE;
878 return SUCCESS;
883 gfc_check_ibset (gfc_expr * i, gfc_expr * pos)
885 if (type_check (i, 0, BT_INTEGER) == FAILURE)
886 return FAILURE;
888 if (type_check (pos, 1, BT_INTEGER) == FAILURE)
889 return FAILURE;
891 return SUCCESS;
896 gfc_check_idnint (gfc_expr * a)
898 if (double_check (a, 0) == FAILURE)
899 return FAILURE;
901 return SUCCESS;
906 gfc_check_ieor (gfc_expr * i, gfc_expr * j)
908 if (type_check (i, 0, BT_INTEGER) == FAILURE)
909 return FAILURE;
911 if (type_check (j, 1, BT_INTEGER) == FAILURE)
912 return FAILURE;
914 if (i->ts.kind != j->ts.kind)
916 if (gfc_notify_std (GFC_STD_GNU, "Extension: Different type kinds at %L",
917 &i->where) == FAILURE)
918 return FAILURE;
921 return SUCCESS;
926 gfc_check_index (gfc_expr * string, gfc_expr * substring, gfc_expr * back)
928 if (type_check (string, 0, BT_CHARACTER) == FAILURE
929 || type_check (substring, 1, BT_CHARACTER) == FAILURE)
930 return FAILURE;
933 if (back != NULL && type_check (back, 2, BT_LOGICAL) == FAILURE)
934 return FAILURE;
936 if (string->ts.kind != substring->ts.kind)
938 must_be (substring, 1, "the same kind as 'string'");
939 return FAILURE;
942 return SUCCESS;
947 gfc_check_int (gfc_expr * x, gfc_expr * kind)
949 if (numeric_check (x, 0) == FAILURE)
950 return FAILURE;
952 if (kind != NULL)
954 if (type_check (kind, 1, BT_INTEGER) == FAILURE)
955 return FAILURE;
957 if (scalar_check (kind, 1) == FAILURE)
958 return FAILURE;
961 return SUCCESS;
966 gfc_check_ior (gfc_expr * i, gfc_expr * j)
968 if (type_check (i, 0, BT_INTEGER) == FAILURE)
969 return FAILURE;
971 if (type_check (j, 1, BT_INTEGER) == FAILURE)
972 return FAILURE;
974 if (i->ts.kind != j->ts.kind)
976 if (gfc_notify_std (GFC_STD_GNU, "Extension: Different type kinds at %L",
977 &i->where) == FAILURE)
978 return FAILURE;
981 return SUCCESS;
986 gfc_check_ishft (gfc_expr * i, gfc_expr * shift)
988 if (type_check (i, 0, BT_INTEGER) == FAILURE
989 || type_check (shift, 1, BT_INTEGER) == FAILURE)
990 return FAILURE;
992 return SUCCESS;
997 gfc_check_ishftc (gfc_expr * i, gfc_expr * shift, gfc_expr * size)
999 if (type_check (i, 0, BT_INTEGER) == FAILURE
1000 || type_check (shift, 1, BT_INTEGER) == FAILURE)
1001 return FAILURE;
1003 if (size != NULL && type_check (size, 2, BT_INTEGER) == FAILURE)
1004 return FAILURE;
1006 return SUCCESS;
1011 gfc_check_kind (gfc_expr * x)
1013 if (x->ts.type == BT_DERIVED)
1015 must_be (x, 0, "a non-derived type");
1016 return FAILURE;
1019 return SUCCESS;
1024 gfc_check_lbound (gfc_expr * array, gfc_expr * dim)
1026 if (array_check (array, 0) == FAILURE)
1027 return FAILURE;
1029 if (dim != NULL)
1031 if (dim_check (dim, 1, 1) == FAILURE)
1032 return FAILURE;
1034 if (dim_rank_check (dim, array, 1) == FAILURE)
1035 return FAILURE;
1037 return SUCCESS;
1042 gfc_check_logical (gfc_expr * a, gfc_expr * kind)
1044 if (type_check (a, 0, BT_LOGICAL) == FAILURE)
1045 return FAILURE;
1046 if (kind_check (kind, 1, BT_LOGICAL) == FAILURE)
1047 return FAILURE;
1049 return SUCCESS;
1053 /* Min/max family. */
1055 static try
1056 min_max_args (gfc_actual_arglist * arg)
1058 if (arg == NULL || arg->next == NULL)
1060 gfc_error ("Intrinsic '%s' at %L must have at least two arguments",
1061 gfc_current_intrinsic, gfc_current_intrinsic_where);
1062 return FAILURE;
1065 return SUCCESS;
1069 static try
1070 check_rest (bt type, int kind, gfc_actual_arglist * arg)
1072 gfc_expr *x;
1073 int n;
1075 if (min_max_args (arg) == FAILURE)
1076 return FAILURE;
1078 n = 1;
1080 for (; arg; arg = arg->next, n++)
1082 x = arg->expr;
1083 if (x->ts.type != type || x->ts.kind != kind)
1085 if (x->ts.type == type)
1087 if (gfc_notify_std (GFC_STD_GNU,
1088 "Extension: Different type kinds at %L", &x->where)
1089 == FAILURE)
1090 return FAILURE;
1092 else
1094 gfc_error ("'a%d' argument of '%s' intrinsic at %L must be %s(%d)",
1095 n, gfc_current_intrinsic, &x->where,
1096 gfc_basic_typename (type), kind);
1097 return FAILURE;
1102 return SUCCESS;
1107 gfc_check_min_max (gfc_actual_arglist * arg)
1109 gfc_expr *x;
1111 if (min_max_args (arg) == FAILURE)
1112 return FAILURE;
1114 x = arg->expr;
1116 if (x->ts.type != BT_INTEGER && x->ts.type != BT_REAL)
1118 gfc_error
1119 ("'a1' argument of '%s' intrinsic at %L must be INTEGER or REAL",
1120 gfc_current_intrinsic, &x->where);
1121 return FAILURE;
1124 return check_rest (x->ts.type, x->ts.kind, arg);
1129 gfc_check_min_max_integer (gfc_actual_arglist * arg)
1131 return check_rest (BT_INTEGER, gfc_default_integer_kind, arg);
1136 gfc_check_min_max_real (gfc_actual_arglist * arg)
1138 return check_rest (BT_REAL, gfc_default_real_kind, arg);
1143 gfc_check_min_max_double (gfc_actual_arglist * arg)
1145 return check_rest (BT_REAL, gfc_default_double_kind, arg);
1148 /* End of min/max family. */
1152 gfc_check_matmul (gfc_expr * matrix_a, gfc_expr * matrix_b)
1154 if ((matrix_a->ts.type != BT_LOGICAL) && !gfc_numeric_ts (&matrix_b->ts))
1156 must_be (matrix_a, 0, "numeric or LOGICAL");
1157 return FAILURE;
1160 if ((matrix_b->ts.type != BT_LOGICAL) && !gfc_numeric_ts (&matrix_a->ts))
1162 must_be (matrix_b, 0, "numeric or LOGICAL");
1163 return FAILURE;
1166 switch (matrix_a->rank)
1168 case 1:
1169 if (rank_check (matrix_b, 1, 2) == FAILURE)
1170 return FAILURE;
1171 break;
1173 case 2:
1174 if (matrix_b->rank == 2)
1175 break;
1176 if (rank_check (matrix_b, 1, 1) == FAILURE)
1177 return FAILURE;
1178 break;
1180 default:
1181 must_be (matrix_a, 0, "of rank 1 or 2");
1182 return FAILURE;
1185 return SUCCESS;
1189 /* Whoever came up with this interface was probably on something.
1190 The possibilities for the occupation of the second and third
1191 parameters are:
1193 Arg #2 Arg #3
1194 NULL NULL
1195 DIM NULL
1196 MASK NULL
1197 NULL MASK minloc(array, mask=m)
1198 DIM MASK
1200 I.e. in the case of minloc(array,mask), mask will be in the second
1201 position of the argument list and we'll have to fix that up. */
1204 gfc_check_minloc_maxloc (gfc_actual_arglist * ap)
1206 gfc_expr *a, *m, *d;
1208 a = ap->expr;
1209 if (int_or_real_check (a, 0) == FAILURE
1210 || array_check (a, 0) == FAILURE)
1211 return FAILURE;
1213 d = ap->next->expr;
1214 m = ap->next->next->expr;
1216 if (m == NULL && d != NULL && d->ts.type == BT_LOGICAL
1217 && ap->next->name == NULL)
1219 m = d;
1220 d = NULL;
1222 ap->next->expr = NULL;
1223 ap->next->next->expr = m;
1226 if (d != NULL
1227 && (scalar_check (d, 1) == FAILURE
1228 || type_check (d, 1, BT_INTEGER) == FAILURE))
1229 return FAILURE;
1231 if (m != NULL && type_check (m, 2, BT_LOGICAL) == FAILURE)
1232 return FAILURE;
1234 return SUCCESS;
1238 /* Similar to minloc/maxloc, the argument list might need to be
1239 reordered for the MINVAL, MAXVAL, PRODUCT, and SUM intrinsics. The
1240 difference is that MINLOC/MAXLOC take an additional KIND argument.
1241 The possibilities are:
1243 Arg #2 Arg #3
1244 NULL NULL
1245 DIM NULL
1246 MASK NULL
1247 NULL MASK minval(array, mask=m)
1248 DIM MASK
1250 I.e. in the case of minval(array,mask), mask will be in the second
1251 position of the argument list and we'll have to fix that up. */
1253 static try
1254 check_reduction (gfc_actual_arglist * ap)
1256 gfc_expr *m, *d;
1258 d = ap->next->expr;
1259 m = ap->next->next->expr;
1261 if (m == NULL && d != NULL && d->ts.type == BT_LOGICAL
1262 && ap->next->name == NULL)
1264 m = d;
1265 d = NULL;
1267 ap->next->expr = NULL;
1268 ap->next->next->expr = m;
1271 if (d != NULL
1272 && (scalar_check (d, 1) == FAILURE
1273 || type_check (d, 1, BT_INTEGER) == FAILURE))
1274 return FAILURE;
1276 if (m != NULL && type_check (m, 2, BT_LOGICAL) == FAILURE)
1277 return FAILURE;
1279 return SUCCESS;
1284 gfc_check_minval_maxval (gfc_actual_arglist * ap)
1286 if (int_or_real_check (ap->expr, 0) == FAILURE
1287 || array_check (ap->expr, 0) == FAILURE)
1288 return FAILURE;
1290 return check_reduction (ap);
1295 gfc_check_product_sum (gfc_actual_arglist * ap)
1297 if (numeric_check (ap->expr, 0) == FAILURE
1298 || array_check (ap->expr, 0) == FAILURE)
1299 return FAILURE;
1301 return check_reduction (ap);
1306 gfc_check_merge (gfc_expr * tsource, gfc_expr * fsource, gfc_expr * mask)
1308 if (same_type_check (tsource, 0, fsource, 1) == FAILURE)
1309 return FAILURE;
1311 if (type_check (mask, 2, BT_LOGICAL) == FAILURE)
1312 return FAILURE;
1314 return SUCCESS;
1319 gfc_check_nearest (gfc_expr * x, gfc_expr * s)
1321 if (type_check (x, 0, BT_REAL) == FAILURE)
1322 return FAILURE;
1324 if (type_check (s, 1, BT_REAL) == FAILURE)
1325 return FAILURE;
1327 return SUCCESS;
1332 gfc_check_null (gfc_expr * mold)
1334 symbol_attribute attr;
1336 if (mold == NULL)
1337 return SUCCESS;
1339 if (variable_check (mold, 0) == FAILURE)
1340 return FAILURE;
1342 attr = gfc_variable_attr (mold, NULL);
1344 if (!attr.pointer)
1346 must_be (mold, 0, "a POINTER");
1347 return FAILURE;
1350 return SUCCESS;
1355 gfc_check_pack (gfc_expr * array, gfc_expr * mask, gfc_expr * vector)
1357 if (array_check (array, 0) == FAILURE)
1358 return FAILURE;
1360 if (type_check (mask, 1, BT_LOGICAL) == FAILURE)
1361 return FAILURE;
1363 if (mask->rank != 0 && mask->rank != array->rank)
1365 must_be (array, 0, "conformable with 'mask' argument");
1366 return FAILURE;
1369 if (vector != NULL)
1371 if (same_type_check (array, 0, vector, 2) == FAILURE)
1372 return FAILURE;
1374 if (rank_check (vector, 2, 1) == FAILURE)
1375 return FAILURE;
1377 /* TODO: More constraints here. */
1380 return SUCCESS;
1385 gfc_check_precision (gfc_expr * x)
1387 if (x->ts.type != BT_REAL && x->ts.type != BT_COMPLEX)
1389 must_be (x, 0, "of type REAL or COMPLEX");
1390 return FAILURE;
1393 return SUCCESS;
1398 gfc_check_present (gfc_expr * a)
1400 gfc_symbol *sym;
1402 if (variable_check (a, 0) == FAILURE)
1403 return FAILURE;
1405 sym = a->symtree->n.sym;
1406 if (!sym->attr.dummy)
1408 must_be (a, 0, "a dummy variable");
1409 return FAILURE;
1412 if (!sym->attr.optional)
1414 must_be (a, 0, "an OPTIONAL dummy variable");
1415 return FAILURE;
1418 return SUCCESS;
1423 gfc_check_radix (gfc_expr * x)
1425 if (int_or_real_check (x, 0) == FAILURE)
1426 return FAILURE;
1428 return SUCCESS;
1433 gfc_check_range (gfc_expr * x)
1435 if (numeric_check (x, 0) == FAILURE)
1436 return FAILURE;
1438 return SUCCESS;
1442 /* real, float, sngl. */
1444 gfc_check_real (gfc_expr * a, gfc_expr * kind)
1446 if (numeric_check (a, 0) == FAILURE)
1447 return FAILURE;
1449 if (kind_check (kind, 1, BT_REAL) == FAILURE)
1450 return FAILURE;
1452 return SUCCESS;
1457 gfc_check_repeat (gfc_expr * x, gfc_expr * y)
1459 if (type_check (x, 0, BT_CHARACTER) == FAILURE)
1460 return FAILURE;
1462 if (scalar_check (x, 0) == FAILURE)
1463 return FAILURE;
1465 if (type_check (y, 0, BT_INTEGER) == FAILURE)
1466 return FAILURE;
1468 if (scalar_check (y, 1) == FAILURE)
1469 return FAILURE;
1471 return SUCCESS;
1476 gfc_check_reshape (gfc_expr * source, gfc_expr * shape,
1477 gfc_expr * pad, gfc_expr * order)
1479 mpz_t size;
1480 int m;
1482 if (array_check (source, 0) == FAILURE)
1483 return FAILURE;
1485 if (rank_check (shape, 1, 1) == FAILURE)
1486 return FAILURE;
1488 if (type_check (shape, 1, BT_INTEGER) == FAILURE)
1489 return FAILURE;
1491 if (gfc_array_size (shape, &size) != SUCCESS)
1493 gfc_error ("'shape' argument of 'reshape' intrinsic at %L must be an "
1494 "array of constant size", &shape->where);
1495 return FAILURE;
1498 m = mpz_cmp_ui (size, GFC_MAX_DIMENSIONS);
1499 mpz_clear (size);
1501 if (m > 0)
1503 gfc_error
1504 ("'shape' argument of 'reshape' intrinsic at %L has more than "
1505 stringize (GFC_MAX_DIMENSIONS) " elements", &shape->where);
1506 return FAILURE;
1509 if (pad != NULL)
1511 if (same_type_check (source, 0, pad, 2) == FAILURE)
1512 return FAILURE;
1513 if (array_check (pad, 2) == FAILURE)
1514 return FAILURE;
1517 if (order != NULL && array_check (order, 3) == FAILURE)
1518 return FAILURE;
1520 return SUCCESS;
1525 gfc_check_scale (gfc_expr * x, gfc_expr * i)
1527 if (type_check (x, 0, BT_REAL) == FAILURE)
1528 return FAILURE;
1530 if (type_check (i, 1, BT_INTEGER) == FAILURE)
1531 return FAILURE;
1533 return SUCCESS;
1538 gfc_check_scan (gfc_expr * x, gfc_expr * y, gfc_expr * z)
1540 if (type_check (x, 0, BT_CHARACTER) == FAILURE)
1541 return FAILURE;
1543 if (type_check (y, 1, BT_CHARACTER) == FAILURE)
1544 return FAILURE;
1546 if (z != NULL && type_check (z, 2, BT_LOGICAL) == FAILURE)
1547 return FAILURE;
1549 if (same_type_check (x, 0, y, 1) == FAILURE)
1550 return FAILURE;
1552 return SUCCESS;
1557 gfc_check_selected_int_kind (gfc_expr * r)
1560 if (type_check (r, 0, BT_INTEGER) == FAILURE)
1561 return FAILURE;
1563 if (scalar_check (r, 0) == FAILURE)
1564 return FAILURE;
1566 return SUCCESS;
1571 gfc_check_selected_real_kind (gfc_expr * p, gfc_expr * r)
1573 if (p == NULL && r == NULL)
1575 gfc_error ("Missing arguments to %s intrinsic at %L",
1576 gfc_current_intrinsic, gfc_current_intrinsic_where);
1578 return FAILURE;
1581 if (p != NULL && type_check (p, 0, BT_INTEGER) == FAILURE)
1582 return FAILURE;
1584 if (r != NULL && type_check (r, 1, BT_INTEGER) == FAILURE)
1585 return FAILURE;
1587 return SUCCESS;
1592 gfc_check_set_exponent (gfc_expr * x, gfc_expr * i)
1594 if (type_check (x, 0, BT_REAL) == FAILURE)
1595 return FAILURE;
1597 if (type_check (i, 1, BT_INTEGER) == FAILURE)
1598 return FAILURE;
1600 return SUCCESS;
1605 gfc_check_shape (gfc_expr * source)
1607 gfc_array_ref *ar;
1609 if (source->rank == 0 || source->expr_type != EXPR_VARIABLE)
1610 return SUCCESS;
1612 ar = gfc_find_array_ref (source);
1614 if (ar->as && ar->as->type == AS_ASSUMED_SIZE)
1616 gfc_error ("'source' argument of 'shape' intrinsic at %L must not be "
1617 "an assumed size array", &source->where);
1618 return FAILURE;
1621 return SUCCESS;
1626 gfc_check_sign (gfc_expr * a, gfc_expr * b)
1628 if (int_or_real_check (a, 0) == FAILURE)
1629 return FAILURE;
1631 if (same_type_check (a, 0, b, 1) == FAILURE)
1632 return FAILURE;
1634 return SUCCESS;
1639 gfc_check_size (gfc_expr * array, gfc_expr * dim)
1641 if (array_check (array, 0) == FAILURE)
1642 return FAILURE;
1644 if (dim != NULL)
1646 if (type_check (dim, 1, BT_INTEGER) == FAILURE)
1647 return FAILURE;
1649 if (kind_value_check (dim, 1, gfc_default_integer_kind) == FAILURE)
1650 return FAILURE;
1652 if (dim_rank_check (dim, array, 0) == FAILURE)
1653 return FAILURE;
1656 return SUCCESS;
1661 gfc_check_spread (gfc_expr * source, gfc_expr * dim, gfc_expr * ncopies)
1663 if (source->rank >= GFC_MAX_DIMENSIONS)
1665 must_be (source, 0, "less than rank " stringize (GFC_MAX_DIMENSIONS));
1666 return FAILURE;
1669 if (dim_check (dim, 1, 0) == FAILURE)
1670 return FAILURE;
1672 if (type_check (ncopies, 2, BT_INTEGER) == FAILURE)
1673 return FAILURE;
1675 if (scalar_check (ncopies, 2) == FAILURE)
1676 return FAILURE;
1678 return SUCCESS;
1683 gfc_check_fstat (gfc_expr * unit, gfc_expr * array)
1685 if (type_check (unit, 0, BT_INTEGER) == FAILURE)
1686 return FAILURE;
1688 if (scalar_check (unit, 0) == FAILURE)
1689 return FAILURE;
1691 if (type_check (array, 1, BT_INTEGER) == FAILURE
1692 || kind_value_check (unit, 0, gfc_default_integer_kind) == FAILURE)
1693 return FAILURE;
1695 if (array_check (array, 1) == FAILURE)
1696 return FAILURE;
1698 return SUCCESS;
1703 gfc_check_fstat_sub (gfc_expr * unit, gfc_expr * array, gfc_expr * status)
1705 if (type_check (unit, 0, BT_INTEGER) == FAILURE)
1706 return FAILURE;
1708 if (scalar_check (unit, 0) == FAILURE)
1709 return FAILURE;
1711 if (type_check (array, 1, BT_INTEGER) == FAILURE
1712 || kind_value_check (array, 1, gfc_default_integer_kind) == FAILURE)
1713 return FAILURE;
1715 if (array_check (array, 1) == FAILURE)
1716 return FAILURE;
1718 if (status == NULL)
1719 return SUCCESS;
1721 if (type_check (status, 2, BT_INTEGER) == FAILURE
1722 || kind_value_check (status, 2, gfc_default_integer_kind) == FAILURE)
1723 return FAILURE;
1725 if (scalar_check (status, 2) == FAILURE)
1726 return FAILURE;
1728 return SUCCESS;
1733 gfc_check_stat (gfc_expr * name, gfc_expr * array)
1735 if (type_check (name, 0, BT_CHARACTER) == FAILURE)
1736 return FAILURE;
1738 if (type_check (array, 1, BT_INTEGER) == FAILURE
1739 || kind_value_check (array, 1, gfc_default_integer_kind) == FAILURE)
1740 return FAILURE;
1742 if (array_check (array, 1) == FAILURE)
1743 return FAILURE;
1745 return SUCCESS;
1750 gfc_check_stat_sub (gfc_expr * name, gfc_expr * array, gfc_expr * status)
1752 if (type_check (name, 0, BT_CHARACTER) == FAILURE)
1753 return FAILURE;
1755 if (type_check (array, 1, BT_INTEGER) == FAILURE
1756 || kind_value_check (array, 1, gfc_default_integer_kind) == FAILURE)
1757 return FAILURE;
1759 if (array_check (array, 1) == FAILURE)
1760 return FAILURE;
1762 if (status == NULL)
1763 return SUCCESS;
1765 if (type_check (status, 2, BT_INTEGER) == FAILURE
1766 || kind_value_check (array, 1, gfc_default_integer_kind) == FAILURE)
1767 return FAILURE;
1769 if (scalar_check (status, 2) == FAILURE)
1770 return FAILURE;
1772 return SUCCESS;
1777 gfc_check_transfer (gfc_expr * source ATTRIBUTE_UNUSED,
1778 gfc_expr * mold ATTRIBUTE_UNUSED,
1779 gfc_expr * size)
1781 if (size != NULL)
1783 if (type_check (size, 2, BT_INTEGER) == FAILURE)
1784 return FAILURE;
1786 if (scalar_check (size, 2) == FAILURE)
1787 return FAILURE;
1789 if (nonoptional_check (size, 2) == FAILURE)
1790 return FAILURE;
1793 return SUCCESS;
1798 gfc_check_transpose (gfc_expr * matrix)
1800 if (rank_check (matrix, 0, 2) == FAILURE)
1801 return FAILURE;
1803 return SUCCESS;
1808 gfc_check_ubound (gfc_expr * array, gfc_expr * dim)
1810 if (array_check (array, 0) == FAILURE)
1811 return FAILURE;
1813 if (dim != NULL)
1815 if (dim_check (dim, 1, 1) == FAILURE)
1816 return FAILURE;
1818 if (dim_rank_check (dim, array, 0) == FAILURE)
1819 return FAILURE;
1822 return SUCCESS;
1827 gfc_check_unpack (gfc_expr * vector, gfc_expr * mask, gfc_expr * field)
1829 if (rank_check (vector, 0, 1) == FAILURE)
1830 return FAILURE;
1832 if (array_check (mask, 1) == FAILURE)
1833 return FAILURE;
1835 if (type_check (mask, 1, BT_LOGICAL) == FAILURE)
1836 return FAILURE;
1838 if (same_type_check (vector, 0, field, 2) == FAILURE)
1839 return FAILURE;
1841 return SUCCESS;
1846 gfc_check_verify (gfc_expr * x, gfc_expr * y, gfc_expr * z)
1848 if (type_check (x, 0, BT_CHARACTER) == FAILURE)
1849 return FAILURE;
1851 if (same_type_check (x, 0, y, 1) == FAILURE)
1852 return FAILURE;
1854 if (z != NULL && type_check (z, 2, BT_LOGICAL) == FAILURE)
1855 return FAILURE;
1857 return SUCCESS;
1862 gfc_check_trim (gfc_expr * x)
1864 if (type_check (x, 0, BT_CHARACTER) == FAILURE)
1865 return FAILURE;
1867 if (scalar_check (x, 0) == FAILURE)
1868 return FAILURE;
1870 return SUCCESS;
1874 /* Common check function for the half a dozen intrinsics that have a
1875 single real argument. */
1878 gfc_check_x (gfc_expr * x)
1880 if (type_check (x, 0, BT_REAL) == FAILURE)
1881 return FAILURE;
1883 return SUCCESS;
1887 /************* Check functions for intrinsic subroutines *************/
1890 gfc_check_cpu_time (gfc_expr * time)
1892 if (scalar_check (time, 0) == FAILURE)
1893 return FAILURE;
1895 if (type_check (time, 0, BT_REAL) == FAILURE)
1896 return FAILURE;
1898 if (variable_check (time, 0) == FAILURE)
1899 return FAILURE;
1901 return SUCCESS;
1906 gfc_check_date_and_time (gfc_expr * date, gfc_expr * time,
1907 gfc_expr * zone, gfc_expr * values)
1909 if (date != NULL)
1911 if (type_check (date, 0, BT_CHARACTER) == FAILURE)
1912 return FAILURE;
1913 if (scalar_check (date, 0) == FAILURE)
1914 return FAILURE;
1915 if (variable_check (date, 0) == FAILURE)
1916 return FAILURE;
1919 if (time != NULL)
1921 if (type_check (time, 1, BT_CHARACTER) == FAILURE)
1922 return FAILURE;
1923 if (scalar_check (time, 1) == FAILURE)
1924 return FAILURE;
1925 if (variable_check (time, 1) == FAILURE)
1926 return FAILURE;
1929 if (zone != NULL)
1931 if (type_check (zone, 2, BT_CHARACTER) == FAILURE)
1932 return FAILURE;
1933 if (scalar_check (zone, 2) == FAILURE)
1934 return FAILURE;
1935 if (variable_check (zone, 2) == FAILURE)
1936 return FAILURE;
1939 if (values != NULL)
1941 if (type_check (values, 3, BT_INTEGER) == FAILURE)
1942 return FAILURE;
1943 if (array_check (values, 3) == FAILURE)
1944 return FAILURE;
1945 if (rank_check (values, 3, 1) == FAILURE)
1946 return FAILURE;
1947 if (variable_check (values, 3) == FAILURE)
1948 return FAILURE;
1951 return SUCCESS;
1956 gfc_check_mvbits (gfc_expr * from, gfc_expr * frompos, gfc_expr * len,
1957 gfc_expr * to, gfc_expr * topos)
1959 if (type_check (from, 0, BT_INTEGER) == FAILURE)
1960 return FAILURE;
1962 if (type_check (frompos, 1, BT_INTEGER) == FAILURE)
1963 return FAILURE;
1965 if (type_check (len, 2, BT_INTEGER) == FAILURE)
1966 return FAILURE;
1968 if (same_type_check (from, 0, to, 3) == FAILURE)
1969 return FAILURE;
1971 if (variable_check (to, 3) == FAILURE)
1972 return FAILURE;
1974 if (type_check (topos, 4, BT_INTEGER) == FAILURE)
1975 return FAILURE;
1977 return SUCCESS;
1982 gfc_check_random_number (gfc_expr * harvest)
1984 if (type_check (harvest, 0, BT_REAL) == FAILURE)
1985 return FAILURE;
1987 if (variable_check (harvest, 0) == FAILURE)
1988 return FAILURE;
1990 return SUCCESS;
1995 gfc_check_random_seed (gfc_expr * size, gfc_expr * put, gfc_expr * get)
1997 if (size != NULL)
1999 if (scalar_check (size, 0) == FAILURE)
2000 return FAILURE;
2002 if (type_check (size, 0, BT_INTEGER) == FAILURE)
2003 return FAILURE;
2005 if (variable_check (size, 0) == FAILURE)
2006 return FAILURE;
2008 if (kind_value_check (size, 0, gfc_default_integer_kind) == FAILURE)
2009 return FAILURE;
2012 if (put != NULL)
2015 if (size != NULL)
2016 gfc_error ("Too many arguments to %s at %L", gfc_current_intrinsic,
2017 &put->where);
2019 if (array_check (put, 1) == FAILURE)
2020 return FAILURE;
2022 if (rank_check (put, 1, 1) == FAILURE)
2023 return FAILURE;
2025 if (type_check (put, 1, BT_INTEGER) == FAILURE)
2026 return FAILURE;
2028 if (kind_value_check (put, 1, gfc_default_integer_kind) == FAILURE)
2029 return FAILURE;
2032 if (get != NULL)
2035 if (size != NULL || put != NULL)
2036 gfc_error ("Too many arguments to %s at %L", gfc_current_intrinsic,
2037 &get->where);
2039 if (array_check (get, 2) == FAILURE)
2040 return FAILURE;
2042 if (rank_check (get, 2, 1) == FAILURE)
2043 return FAILURE;
2045 if (type_check (get, 2, BT_INTEGER) == FAILURE)
2046 return FAILURE;
2048 if (variable_check (get, 2) == FAILURE)
2049 return FAILURE;
2051 if (kind_value_check (get, 2, gfc_default_integer_kind) == FAILURE)
2052 return FAILURE;
2055 return SUCCESS;
2059 gfc_check_second_sub (gfc_expr * time)
2061 if (scalar_check (time, 0) == FAILURE)
2062 return FAILURE;
2064 if (type_check (time, 0, BT_REAL) == FAILURE)
2065 return FAILURE;
2067 if (kind_value_check(time, 0, 4) == FAILURE)
2068 return FAILURE;
2070 return SUCCESS;
2074 /* The arguments of SYSTEM_CLOCK are scalar, integer variables. Note,
2075 count, count_rate, and count_max are all optional arguments */
2078 gfc_check_system_clock (gfc_expr * count, gfc_expr * count_rate,
2079 gfc_expr * count_max)
2081 if (count != NULL)
2083 if (scalar_check (count, 0) == FAILURE)
2084 return FAILURE;
2086 if (type_check (count, 0, BT_INTEGER) == FAILURE)
2087 return FAILURE;
2089 if (variable_check (count, 0) == FAILURE)
2090 return FAILURE;
2093 if (count_rate != NULL)
2095 if (scalar_check (count_rate, 1) == FAILURE)
2096 return FAILURE;
2098 if (type_check (count_rate, 1, BT_INTEGER) == FAILURE)
2099 return FAILURE;
2101 if (variable_check (count_rate, 1) == FAILURE)
2102 return FAILURE;
2104 if (count != NULL
2105 && same_type_check (count, 0, count_rate, 1) == FAILURE)
2106 return FAILURE;
2110 if (count_max != NULL)
2112 if (scalar_check (count_max, 2) == FAILURE)
2113 return FAILURE;
2115 if (type_check (count_max, 2, BT_INTEGER) == FAILURE)
2116 return FAILURE;
2118 if (variable_check (count_max, 2) == FAILURE)
2119 return FAILURE;
2121 if (count != NULL
2122 && same_type_check (count, 0, count_max, 2) == FAILURE)
2123 return FAILURE;
2125 if (count_rate != NULL
2126 && same_type_check (count_rate, 1, count_max, 2) == FAILURE)
2127 return FAILURE;
2130 return SUCCESS;
2134 gfc_check_irand (gfc_expr * x)
2136 if (x == NULL)
2137 return SUCCESS;
2139 if (scalar_check (x, 0) == FAILURE)
2140 return FAILURE;
2142 if (type_check (x, 0, BT_INTEGER) == FAILURE)
2143 return FAILURE;
2145 if (kind_value_check(x, 0, 4) == FAILURE)
2146 return FAILURE;
2148 return SUCCESS;
2152 gfc_check_rand (gfc_expr * x)
2154 if (x == NULL)
2155 return SUCCESS;
2157 if (scalar_check (x, 0) == FAILURE)
2158 return FAILURE;
2160 if (type_check (x, 0, BT_INTEGER) == FAILURE)
2161 return FAILURE;
2163 if (kind_value_check(x, 0, 4) == FAILURE)
2164 return FAILURE;
2166 return SUCCESS;
2170 gfc_check_srand (gfc_expr * x)
2172 if (scalar_check (x, 0) == FAILURE)
2173 return FAILURE;
2175 if (type_check (x, 0, BT_INTEGER) == FAILURE)
2176 return FAILURE;
2178 if (kind_value_check(x, 0, 4) == FAILURE)
2179 return FAILURE;
2181 return SUCCESS;
2185 gfc_check_etime (gfc_expr * x)
2187 if (array_check (x, 0) == FAILURE)
2188 return FAILURE;
2190 if (rank_check (x, 0, 1) == FAILURE)
2191 return FAILURE;
2193 if (variable_check (x, 0) == FAILURE)
2194 return FAILURE;
2196 if (type_check (x, 0, BT_REAL) == FAILURE)
2197 return FAILURE;
2199 if (kind_value_check(x, 0, 4) == FAILURE)
2200 return FAILURE;
2202 return SUCCESS;
2206 gfc_check_etime_sub (gfc_expr * values, gfc_expr * time)
2208 if (array_check (values, 0) == FAILURE)
2209 return FAILURE;
2211 if (rank_check (values, 0, 1) == FAILURE)
2212 return FAILURE;
2214 if (variable_check (values, 0) == FAILURE)
2215 return FAILURE;
2217 if (type_check (values, 0, BT_REAL) == FAILURE)
2218 return FAILURE;
2220 if (kind_value_check(values, 0, 4) == FAILURE)
2221 return FAILURE;
2223 if (scalar_check (time, 1) == FAILURE)
2224 return FAILURE;
2226 if (type_check (time, 1, BT_REAL) == FAILURE)
2227 return FAILURE;
2229 if (kind_value_check(time, 1, 4) == FAILURE)
2230 return FAILURE;
2232 return SUCCESS;
2237 gfc_check_getcwd_sub (gfc_expr * cwd, gfc_expr * status)
2239 if (type_check (cwd, 0, BT_CHARACTER) == FAILURE)
2240 return FAILURE;
2242 if (status == NULL)
2243 return SUCCESS;
2245 if (scalar_check (status, 1) == FAILURE)
2246 return FAILURE;
2248 if (type_check (status, 1, BT_INTEGER) == FAILURE)
2249 return FAILURE;
2251 return SUCCESS;
2256 gfc_check_exit (gfc_expr * status)
2258 if (status == NULL)
2259 return SUCCESS;
2261 if (type_check (status, 0, BT_INTEGER) == FAILURE)
2262 return FAILURE;
2264 if (scalar_check (status, 0) == FAILURE)
2265 return FAILURE;
2267 return SUCCESS;
2272 gfc_check_flush (gfc_expr * unit)
2274 if (unit == NULL)
2275 return SUCCESS;
2277 if (type_check (unit, 0, BT_INTEGER) == FAILURE)
2278 return FAILURE;
2280 if (scalar_check (unit, 0) == FAILURE)
2281 return FAILURE;
2283 return SUCCESS;
2288 gfc_check_umask (gfc_expr * mask)
2290 if (type_check (mask, 0, BT_INTEGER) == FAILURE)
2291 return FAILURE;
2293 if (scalar_check (mask, 0) == FAILURE)
2294 return FAILURE;
2296 return SUCCESS;
2301 gfc_check_umask_sub (gfc_expr * mask, gfc_expr * old)
2303 if (type_check (mask, 0, BT_INTEGER) == FAILURE)
2304 return FAILURE;
2306 if (scalar_check (mask, 0) == FAILURE)
2307 return FAILURE;
2309 if (old == NULL)
2310 return SUCCESS;
2312 if (scalar_check (old, 1) == FAILURE)
2313 return FAILURE;
2315 if (type_check (old, 1, BT_INTEGER) == FAILURE)
2316 return FAILURE;
2318 return SUCCESS;
2323 gfc_check_unlink (gfc_expr * name)
2325 if (type_check (name, 0, BT_CHARACTER) == FAILURE)
2326 return FAILURE;
2328 return SUCCESS;
2333 gfc_check_unlink_sub (gfc_expr * name, gfc_expr * status)
2335 if (type_check (name, 0, BT_CHARACTER) == FAILURE)
2336 return FAILURE;
2338 if (status == NULL)
2339 return SUCCESS;
2341 if (scalar_check (status, 1) == FAILURE)
2342 return FAILURE;
2344 if (type_check (status, 1, BT_INTEGER) == FAILURE)
2345 return FAILURE;
2347 return SUCCESS;
2352 gfc_check_system_sub (gfc_expr * cmd, gfc_expr * status)
2354 if (type_check (cmd, 0, BT_CHARACTER) == FAILURE)
2355 return FAILURE;
2357 if (scalar_check (status, 1) == FAILURE)
2358 return FAILURE;
2360 if (type_check (status, 1, BT_INTEGER) == FAILURE)
2361 return FAILURE;
2363 if (kind_value_check (status, 1, gfc_default_integer_kind) == FAILURE)
2364 return FAILURE;
2366 return SUCCESS;