2015-09-25 Vladimir Makarov <vmakarov@redhat.com>
[official-gcc.git] / gcc / fortran / primary.c
blobc8c65816a3369e9bce85f4d4809e84fc9e725cd1
1 /* Primary expression subroutines
2 Copyright (C) 2000-2015 Free Software Foundation, Inc.
3 Contributed by Andy Vaught
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 3, 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 COPYING3. If not see
19 <http://www.gnu.org/licenses/>. */
21 #include "config.h"
22 #include "system.h"
23 #include "coretypes.h"
24 #include "options.h"
25 #include "gfortran.h"
26 #include "arith.h"
27 #include "match.h"
28 #include "parse.h"
29 #include "constructor.h"
31 int matching_actual_arglist = 0;
33 /* Matches a kind-parameter expression, which is either a named
34 symbolic constant or a nonnegative integer constant. If
35 successful, sets the kind value to the correct integer.
36 The argument 'is_iso_c' signals whether the kind is an ISO_C_BINDING
37 symbol like e.g. 'c_int'. */
39 static match
40 match_kind_param (int *kind, int *is_iso_c)
42 char name[GFC_MAX_SYMBOL_LEN + 1];
43 gfc_symbol *sym;
44 const char *p;
45 match m;
47 *is_iso_c = 0;
49 m = gfc_match_small_literal_int (kind, NULL);
50 if (m != MATCH_NO)
51 return m;
53 m = gfc_match_name (name);
54 if (m != MATCH_YES)
55 return m;
57 if (gfc_find_symbol (name, NULL, 1, &sym))
58 return MATCH_ERROR;
60 if (sym == NULL)
61 return MATCH_NO;
63 *is_iso_c = sym->attr.is_iso_c;
65 if (sym->attr.flavor != FL_PARAMETER)
66 return MATCH_NO;
68 if (sym->value == NULL)
69 return MATCH_NO;
71 p = gfc_extract_int (sym->value, kind);
72 if (p != NULL)
73 return MATCH_NO;
75 gfc_set_sym_referenced (sym);
77 if (*kind < 0)
78 return MATCH_NO;
80 return MATCH_YES;
84 /* Get a trailing kind-specification for non-character variables.
85 Returns:
86 * the integer kind value or
87 * -1 if an error was generated,
88 * -2 if no kind was found.
89 The argument 'is_iso_c' signals whether the kind is an ISO_C_BINDING
90 symbol like e.g. 'c_int'. */
92 static int
93 get_kind (int *is_iso_c)
95 int kind;
96 match m;
98 *is_iso_c = 0;
100 if (gfc_match_char ('_') != MATCH_YES)
101 return -2;
103 m = match_kind_param (&kind, is_iso_c);
104 if (m == MATCH_NO)
105 gfc_error ("Missing kind-parameter at %C");
107 return (m == MATCH_YES) ? kind : -1;
111 /* Given a character and a radix, see if the character is a valid
112 digit in that radix. */
115 gfc_check_digit (char c, int radix)
117 int r;
119 switch (radix)
121 case 2:
122 r = ('0' <= c && c <= '1');
123 break;
125 case 8:
126 r = ('0' <= c && c <= '7');
127 break;
129 case 10:
130 r = ('0' <= c && c <= '9');
131 break;
133 case 16:
134 r = ISXDIGIT (c);
135 break;
137 default:
138 gfc_internal_error ("gfc_check_digit(): bad radix");
141 return r;
145 /* Match the digit string part of an integer if signflag is not set,
146 the signed digit string part if signflag is set. If the buffer
147 is NULL, we just count characters for the resolution pass. Returns
148 the number of characters matched, -1 for no match. */
150 static int
151 match_digits (int signflag, int radix, char *buffer)
153 locus old_loc;
154 int length;
155 char c;
157 length = 0;
158 c = gfc_next_ascii_char ();
160 if (signflag && (c == '+' || c == '-'))
162 if (buffer != NULL)
163 *buffer++ = c;
164 gfc_gobble_whitespace ();
165 c = gfc_next_ascii_char ();
166 length++;
169 if (!gfc_check_digit (c, radix))
170 return -1;
172 length++;
173 if (buffer != NULL)
174 *buffer++ = c;
176 for (;;)
178 old_loc = gfc_current_locus;
179 c = gfc_next_ascii_char ();
181 if (!gfc_check_digit (c, radix))
182 break;
184 if (buffer != NULL)
185 *buffer++ = c;
186 length++;
189 gfc_current_locus = old_loc;
191 return length;
195 /* Match an integer (digit string and optional kind).
196 A sign will be accepted if signflag is set. */
198 static match
199 match_integer_constant (gfc_expr **result, int signflag)
201 int length, kind, is_iso_c;
202 locus old_loc;
203 char *buffer;
204 gfc_expr *e;
206 old_loc = gfc_current_locus;
207 gfc_gobble_whitespace ();
209 length = match_digits (signflag, 10, NULL);
210 gfc_current_locus = old_loc;
211 if (length == -1)
212 return MATCH_NO;
214 buffer = (char *) alloca (length + 1);
215 memset (buffer, '\0', length + 1);
217 gfc_gobble_whitespace ();
219 match_digits (signflag, 10, buffer);
221 kind = get_kind (&is_iso_c);
222 if (kind == -2)
223 kind = gfc_default_integer_kind;
224 if (kind == -1)
225 return MATCH_ERROR;
227 if (kind == 4 && flag_integer4_kind == 8)
228 kind = 8;
230 if (gfc_validate_kind (BT_INTEGER, kind, true) < 0)
232 gfc_error ("Integer kind %d at %C not available", kind);
233 return MATCH_ERROR;
236 e = gfc_convert_integer (buffer, kind, 10, &gfc_current_locus);
237 e->ts.is_c_interop = is_iso_c;
239 if (gfc_range_check (e) != ARITH_OK)
241 gfc_error ("Integer too big for its kind at %C. This check can be "
242 "disabled with the option -fno-range-check");
244 gfc_free_expr (e);
245 return MATCH_ERROR;
248 *result = e;
249 return MATCH_YES;
253 /* Match a Hollerith constant. */
255 static match
256 match_hollerith_constant (gfc_expr **result)
258 locus old_loc;
259 gfc_expr *e = NULL;
260 const char *msg;
261 int num, pad;
262 int i;
264 old_loc = gfc_current_locus;
265 gfc_gobble_whitespace ();
267 if (match_integer_constant (&e, 0) == MATCH_YES
268 && gfc_match_char ('h') == MATCH_YES)
270 if (!gfc_notify_std (GFC_STD_LEGACY, "Hollerith constant at %C"))
271 goto cleanup;
273 msg = gfc_extract_int (e, &num);
274 if (msg != NULL)
276 gfc_error (msg);
277 goto cleanup;
279 if (num == 0)
281 gfc_error ("Invalid Hollerith constant: %L must contain at least "
282 "one character", &old_loc);
283 goto cleanup;
285 if (e->ts.kind != gfc_default_integer_kind)
287 gfc_error ("Invalid Hollerith constant: Integer kind at %L "
288 "should be default", &old_loc);
289 goto cleanup;
291 else
293 gfc_free_expr (e);
294 e = gfc_get_constant_expr (BT_HOLLERITH, gfc_default_character_kind,
295 &gfc_current_locus);
297 /* Calculate padding needed to fit default integer memory. */
298 pad = gfc_default_integer_kind - (num % gfc_default_integer_kind);
300 e->representation.string = XCNEWVEC (char, num + pad + 1);
302 for (i = 0; i < num; i++)
304 gfc_char_t c = gfc_next_char_literal (INSTRING_WARN);
305 if (! gfc_wide_fits_in_byte (c))
307 gfc_error ("Invalid Hollerith constant at %L contains a "
308 "wide character", &old_loc);
309 goto cleanup;
312 e->representation.string[i] = (unsigned char) c;
315 /* Now pad with blanks and end with a null char. */
316 for (i = 0; i < pad; i++)
317 e->representation.string[num + i] = ' ';
319 e->representation.string[num + i] = '\0';
320 e->representation.length = num + pad;
321 e->ts.u.pad = pad;
323 *result = e;
324 return MATCH_YES;
328 gfc_free_expr (e);
329 gfc_current_locus = old_loc;
330 return MATCH_NO;
332 cleanup:
333 gfc_free_expr (e);
334 return MATCH_ERROR;
338 /* Match a binary, octal or hexadecimal constant that can be found in
339 a DATA statement. The standard permits b'010...', o'73...', and
340 z'a1...' where b, o, and z can be capital letters. This function
341 also accepts postfixed forms of the constants: '01...'b, '73...'o,
342 and 'a1...'z. An additional extension is the use of x for z. */
344 static match
345 match_boz_constant (gfc_expr **result)
347 int radix, length, x_hex, kind;
348 locus old_loc, start_loc;
349 char *buffer, post, delim;
350 gfc_expr *e;
352 start_loc = old_loc = gfc_current_locus;
353 gfc_gobble_whitespace ();
355 x_hex = 0;
356 switch (post = gfc_next_ascii_char ())
358 case 'b':
359 radix = 2;
360 post = 0;
361 break;
362 case 'o':
363 radix = 8;
364 post = 0;
365 break;
366 case 'x':
367 x_hex = 1;
368 /* Fall through. */
369 case 'z':
370 radix = 16;
371 post = 0;
372 break;
373 case '\'':
374 /* Fall through. */
375 case '\"':
376 delim = post;
377 post = 1;
378 radix = 16; /* Set to accept any valid digit string. */
379 break;
380 default:
381 goto backup;
384 /* No whitespace allowed here. */
386 if (post == 0)
387 delim = gfc_next_ascii_char ();
389 if (delim != '\'' && delim != '\"')
390 goto backup;
392 if (x_hex
393 && (!gfc_notify_std(GFC_STD_GNU, "Hexadecimal "
394 "constant at %C uses non-standard syntax")))
395 return MATCH_ERROR;
397 old_loc = gfc_current_locus;
399 length = match_digits (0, radix, NULL);
400 if (length == -1)
402 gfc_error ("Empty set of digits in BOZ constant at %C");
403 return MATCH_ERROR;
406 if (gfc_next_ascii_char () != delim)
408 gfc_error ("Illegal character in BOZ constant at %C");
409 return MATCH_ERROR;
412 if (post == 1)
414 switch (gfc_next_ascii_char ())
416 case 'b':
417 radix = 2;
418 break;
419 case 'o':
420 radix = 8;
421 break;
422 case 'x':
423 /* Fall through. */
424 case 'z':
425 radix = 16;
426 break;
427 default:
428 goto backup;
431 if (!gfc_notify_std (GFC_STD_GNU, "BOZ constant "
432 "at %C uses non-standard postfix syntax"))
433 return MATCH_ERROR;
436 gfc_current_locus = old_loc;
438 buffer = (char *) alloca (length + 1);
439 memset (buffer, '\0', length + 1);
441 match_digits (0, radix, buffer);
442 gfc_next_ascii_char (); /* Eat delimiter. */
443 if (post == 1)
444 gfc_next_ascii_char (); /* Eat postfixed b, o, z, or x. */
446 /* In section 5.2.5 and following C567 in the Fortran 2003 standard, we find
447 "If a data-stmt-constant is a boz-literal-constant, the corresponding
448 variable shall be of type integer. The boz-literal-constant is treated
449 as if it were an int-literal-constant with a kind-param that specifies
450 the representation method with the largest decimal exponent range
451 supported by the processor." */
453 kind = gfc_max_integer_kind;
454 e = gfc_convert_integer (buffer, kind, radix, &gfc_current_locus);
456 /* Mark as boz variable. */
457 e->is_boz = 1;
459 if (gfc_range_check (e) != ARITH_OK)
461 gfc_error ("Integer too big for integer kind %i at %C", kind);
462 gfc_free_expr (e);
463 return MATCH_ERROR;
466 if (!gfc_in_match_data ()
467 && (!gfc_notify_std(GFC_STD_F2003, "BOZ used outside a DATA "
468 "statement at %C")))
469 return MATCH_ERROR;
471 *result = e;
472 return MATCH_YES;
474 backup:
475 gfc_current_locus = start_loc;
476 return MATCH_NO;
480 /* Match a real constant of some sort. Allow a signed constant if signflag
481 is nonzero. */
483 static match
484 match_real_constant (gfc_expr **result, int signflag)
486 int kind, count, seen_dp, seen_digits, is_iso_c;
487 locus old_loc, temp_loc;
488 char *p, *buffer, c, exp_char;
489 gfc_expr *e;
490 bool negate;
492 old_loc = gfc_current_locus;
493 gfc_gobble_whitespace ();
495 e = NULL;
497 count = 0;
498 seen_dp = 0;
499 seen_digits = 0;
500 exp_char = ' ';
501 negate = FALSE;
503 c = gfc_next_ascii_char ();
504 if (signflag && (c == '+' || c == '-'))
506 if (c == '-')
507 negate = TRUE;
509 gfc_gobble_whitespace ();
510 c = gfc_next_ascii_char ();
513 /* Scan significand. */
514 for (;; c = gfc_next_ascii_char (), count++)
516 if (c == '.')
518 if (seen_dp)
519 goto done;
521 /* Check to see if "." goes with a following operator like
522 ".eq.". */
523 temp_loc = gfc_current_locus;
524 c = gfc_next_ascii_char ();
526 if (c == 'e' || c == 'd' || c == 'q')
528 c = gfc_next_ascii_char ();
529 if (c == '.')
530 goto done; /* Operator named .e. or .d. */
533 if (ISALPHA (c))
534 goto done; /* Distinguish 1.e9 from 1.eq.2 */
536 gfc_current_locus = temp_loc;
537 seen_dp = 1;
538 continue;
541 if (ISDIGIT (c))
543 seen_digits = 1;
544 continue;
547 break;
550 if (!seen_digits || (c != 'e' && c != 'd' && c != 'q'))
551 goto done;
552 exp_char = c;
555 if (c == 'q')
557 if (!gfc_notify_std (GFC_STD_GNU, "exponent-letter 'q' in "
558 "real-literal-constant at %C"))
559 return MATCH_ERROR;
560 else if (warn_real_q_constant)
561 gfc_warning (OPT_Wreal_q_constant,
562 "Extension: exponent-letter %<q%> in real-literal-constant "
563 "at %C");
566 /* Scan exponent. */
567 c = gfc_next_ascii_char ();
568 count++;
570 if (c == '+' || c == '-')
571 { /* optional sign */
572 c = gfc_next_ascii_char ();
573 count++;
576 if (!ISDIGIT (c))
578 gfc_error ("Missing exponent in real number at %C");
579 return MATCH_ERROR;
582 while (ISDIGIT (c))
584 c = gfc_next_ascii_char ();
585 count++;
588 done:
589 /* Check that we have a numeric constant. */
590 if (!seen_digits || (!seen_dp && exp_char == ' '))
592 gfc_current_locus = old_loc;
593 return MATCH_NO;
596 /* Convert the number. */
597 gfc_current_locus = old_loc;
598 gfc_gobble_whitespace ();
600 buffer = (char *) alloca (count + 1);
601 memset (buffer, '\0', count + 1);
603 p = buffer;
604 c = gfc_next_ascii_char ();
605 if (c == '+' || c == '-')
607 gfc_gobble_whitespace ();
608 c = gfc_next_ascii_char ();
611 /* Hack for mpfr_set_str(). */
612 for (;;)
614 if (c == 'd' || c == 'q')
615 *p = 'e';
616 else
617 *p = c;
618 p++;
619 if (--count == 0)
620 break;
622 c = gfc_next_ascii_char ();
625 kind = get_kind (&is_iso_c);
626 if (kind == -1)
627 goto cleanup;
629 switch (exp_char)
631 case 'd':
632 if (kind != -2)
634 gfc_error ("Real number at %C has a %<d%> exponent and an explicit "
635 "kind");
636 goto cleanup;
638 kind = gfc_default_double_kind;
640 if (kind == 4)
642 if (flag_real4_kind == 8)
643 kind = 8;
644 if (flag_real4_kind == 10)
645 kind = 10;
646 if (flag_real4_kind == 16)
647 kind = 16;
650 if (kind == 8)
652 if (flag_real8_kind == 4)
653 kind = 4;
654 if (flag_real8_kind == 10)
655 kind = 10;
656 if (flag_real8_kind == 16)
657 kind = 16;
659 break;
661 case 'q':
662 if (kind != -2)
664 gfc_error ("Real number at %C has a %<q%> exponent and an explicit "
665 "kind");
666 goto cleanup;
669 /* The maximum possible real kind type parameter is 16. First, try
670 that for the kind, then fallback to trying kind=10 (Intel 80 bit)
671 extended precision. If neither value works, just given up. */
672 kind = 16;
673 if (gfc_validate_kind (BT_REAL, kind, true) < 0)
675 kind = 10;
676 if (gfc_validate_kind (BT_REAL, kind, true) < 0)
678 gfc_error ("Invalid exponent-letter %<q%> in "
679 "real-literal-constant at %C");
680 goto cleanup;
683 break;
685 default:
686 if (kind == -2)
687 kind = gfc_default_real_kind;
689 if (kind == 4)
691 if (flag_real4_kind == 8)
692 kind = 8;
693 if (flag_real4_kind == 10)
694 kind = 10;
695 if (flag_real4_kind == 16)
696 kind = 16;
699 if (kind == 8)
701 if (flag_real8_kind == 4)
702 kind = 4;
703 if (flag_real8_kind == 10)
704 kind = 10;
705 if (flag_real8_kind == 16)
706 kind = 16;
709 if (gfc_validate_kind (BT_REAL, kind, true) < 0)
711 gfc_error ("Invalid real kind %d at %C", kind);
712 goto cleanup;
716 e = gfc_convert_real (buffer, kind, &gfc_current_locus);
717 if (negate)
718 mpfr_neg (e->value.real, e->value.real, GFC_RND_MODE);
719 e->ts.is_c_interop = is_iso_c;
721 switch (gfc_range_check (e))
723 case ARITH_OK:
724 break;
725 case ARITH_OVERFLOW:
726 gfc_error ("Real constant overflows its kind at %C");
727 goto cleanup;
729 case ARITH_UNDERFLOW:
730 if (warn_underflow)
731 gfc_warning (OPT_Wunderflow, "Real constant underflows its kind at %C");
732 mpfr_set_ui (e->value.real, 0, GFC_RND_MODE);
733 break;
735 default:
736 gfc_internal_error ("gfc_range_check() returned bad value");
739 /* Warn about trailing digits which suggest the user added too many
740 trailing digits, which may cause the appearance of higher pecision
741 than the kind kan support.
743 This is done by replacing the rightmost non-zero digit with zero
744 and comparing with the original value. If these are equal, we
745 assume the user supplied more digits than intended (or forgot to
746 convert to the correct kind).
749 if (warn_conversion_extra)
751 mpfr_t r;
752 char *c, *p;
753 bool did_break;
755 c = strchr (buffer, 'e');
756 if (c == NULL)
757 c = buffer + strlen(buffer);
759 did_break = false;
760 for (p = c - 1; p >= buffer; p--)
762 if (*p == '.')
763 continue;
765 if (*p != '0')
767 *p = '0';
768 did_break = true;
769 break;
773 if (did_break)
775 mpfr_init (r);
776 mpfr_set_str (r, buffer, 10, GFC_RND_MODE);
777 if (negate)
778 mpfr_neg (r, r, GFC_RND_MODE);
780 mpfr_sub (r, r, e->value.real, GFC_RND_MODE);
782 if (mpfr_cmp_ui (r, 0) == 0)
783 gfc_warning (OPT_Wconversion_extra, "Non-significant digits "
784 "in %qs number at %C, maybe incorrect KIND",
785 gfc_typename (&e->ts));
787 mpfr_clear (r);
791 *result = e;
792 return MATCH_YES;
794 cleanup:
795 gfc_free_expr (e);
796 return MATCH_ERROR;
800 /* Match a substring reference. */
802 static match
803 match_substring (gfc_charlen *cl, int init, gfc_ref **result)
805 gfc_expr *start, *end;
806 locus old_loc;
807 gfc_ref *ref;
808 match m;
810 start = NULL;
811 end = NULL;
813 old_loc = gfc_current_locus;
815 m = gfc_match_char ('(');
816 if (m != MATCH_YES)
817 return MATCH_NO;
819 if (gfc_match_char (':') != MATCH_YES)
821 if (init)
822 m = gfc_match_init_expr (&start);
823 else
824 m = gfc_match_expr (&start);
826 if (m != MATCH_YES)
828 m = MATCH_NO;
829 goto cleanup;
832 m = gfc_match_char (':');
833 if (m != MATCH_YES)
834 goto cleanup;
837 if (gfc_match_char (')') != MATCH_YES)
839 if (init)
840 m = gfc_match_init_expr (&end);
841 else
842 m = gfc_match_expr (&end);
844 if (m == MATCH_NO)
845 goto syntax;
846 if (m == MATCH_ERROR)
847 goto cleanup;
849 m = gfc_match_char (')');
850 if (m == MATCH_NO)
851 goto syntax;
854 /* Optimize away the (:) reference. */
855 if (start == NULL && end == NULL)
856 ref = NULL;
857 else
859 ref = gfc_get_ref ();
861 ref->type = REF_SUBSTRING;
862 if (start == NULL)
863 start = gfc_get_int_expr (gfc_default_integer_kind, NULL, 1);
864 ref->u.ss.start = start;
865 if (end == NULL && cl)
866 end = gfc_copy_expr (cl->length);
867 ref->u.ss.end = end;
868 ref->u.ss.length = cl;
871 *result = ref;
872 return MATCH_YES;
874 syntax:
875 gfc_error ("Syntax error in SUBSTRING specification at %C");
876 m = MATCH_ERROR;
878 cleanup:
879 gfc_free_expr (start);
880 gfc_free_expr (end);
882 gfc_current_locus = old_loc;
883 return m;
887 /* Reads the next character of a string constant, taking care to
888 return doubled delimiters on the input as a single instance of
889 the delimiter.
891 Special return values for "ret" argument are:
892 -1 End of the string, as determined by the delimiter
893 -2 Unterminated string detected
895 Backslash codes are also expanded at this time. */
897 static gfc_char_t
898 next_string_char (gfc_char_t delimiter, int *ret)
900 locus old_locus;
901 gfc_char_t c;
903 c = gfc_next_char_literal (INSTRING_WARN);
904 *ret = 0;
906 if (c == '\n')
908 *ret = -2;
909 return 0;
912 if (flag_backslash && c == '\\')
914 old_locus = gfc_current_locus;
916 if (gfc_match_special_char (&c) == MATCH_NO)
917 gfc_current_locus = old_locus;
919 if (!(gfc_option.allow_std & GFC_STD_GNU) && !inhibit_warnings)
920 gfc_warning (0, "Extension: backslash character at %C");
923 if (c != delimiter)
924 return c;
926 old_locus = gfc_current_locus;
927 c = gfc_next_char_literal (NONSTRING);
929 if (c == delimiter)
930 return c;
931 gfc_current_locus = old_locus;
933 *ret = -1;
934 return 0;
938 /* Special case of gfc_match_name() that matches a parameter kind name
939 before a string constant. This takes case of the weird but legal
940 case of:
942 kind_____'string'
944 where kind____ is a parameter. gfc_match_name() will happily slurp
945 up all the underscores, which leads to problems. If we return
946 MATCH_YES, the parse pointer points to the final underscore, which
947 is not part of the name. We never return MATCH_ERROR-- errors in
948 the name will be detected later. */
950 static match
951 match_charkind_name (char *name)
953 locus old_loc;
954 char c, peek;
955 int len;
957 gfc_gobble_whitespace ();
958 c = gfc_next_ascii_char ();
959 if (!ISALPHA (c))
960 return MATCH_NO;
962 *name++ = c;
963 len = 1;
965 for (;;)
967 old_loc = gfc_current_locus;
968 c = gfc_next_ascii_char ();
970 if (c == '_')
972 peek = gfc_peek_ascii_char ();
974 if (peek == '\'' || peek == '\"')
976 gfc_current_locus = old_loc;
977 *name = '\0';
978 return MATCH_YES;
982 if (!ISALNUM (c)
983 && c != '_'
984 && (c != '$' || !flag_dollar_ok))
985 break;
987 *name++ = c;
988 if (++len > GFC_MAX_SYMBOL_LEN)
989 break;
992 return MATCH_NO;
996 /* See if the current input matches a character constant. Lots of
997 contortions have to be done to match the kind parameter which comes
998 before the actual string. The main consideration is that we don't
999 want to error out too quickly. For example, we don't actually do
1000 any validation of the kinds until we have actually seen a legal
1001 delimiter. Using match_kind_param() generates errors too quickly. */
1003 static match
1004 match_string_constant (gfc_expr **result)
1006 char name[GFC_MAX_SYMBOL_LEN + 1], peek;
1007 int i, kind, length, save_warn_ampersand, ret;
1008 locus old_locus, start_locus;
1009 gfc_symbol *sym;
1010 gfc_expr *e;
1011 const char *q;
1012 match m;
1013 gfc_char_t c, delimiter, *p;
1015 old_locus = gfc_current_locus;
1017 gfc_gobble_whitespace ();
1019 c = gfc_next_char ();
1020 if (c == '\'' || c == '"')
1022 kind = gfc_default_character_kind;
1023 start_locus = gfc_current_locus;
1024 goto got_delim;
1027 if (gfc_wide_is_digit (c))
1029 kind = 0;
1031 while (gfc_wide_is_digit (c))
1033 kind = kind * 10 + c - '0';
1034 if (kind > 9999999)
1035 goto no_match;
1036 c = gfc_next_char ();
1040 else
1042 gfc_current_locus = old_locus;
1044 m = match_charkind_name (name);
1045 if (m != MATCH_YES)
1046 goto no_match;
1048 if (gfc_find_symbol (name, NULL, 1, &sym)
1049 || sym == NULL
1050 || sym->attr.flavor != FL_PARAMETER)
1051 goto no_match;
1053 kind = -1;
1054 c = gfc_next_char ();
1057 if (c == ' ')
1059 gfc_gobble_whitespace ();
1060 c = gfc_next_char ();
1063 if (c != '_')
1064 goto no_match;
1066 gfc_gobble_whitespace ();
1068 c = gfc_next_char ();
1069 if (c != '\'' && c != '"')
1070 goto no_match;
1072 start_locus = gfc_current_locus;
1074 if (kind == -1)
1076 q = gfc_extract_int (sym->value, &kind);
1077 if (q != NULL)
1079 gfc_error (q);
1080 return MATCH_ERROR;
1082 gfc_set_sym_referenced (sym);
1085 if (gfc_validate_kind (BT_CHARACTER, kind, true) < 0)
1087 gfc_error ("Invalid kind %d for CHARACTER constant at %C", kind);
1088 return MATCH_ERROR;
1091 got_delim:
1092 /* Scan the string into a block of memory by first figuring out how
1093 long it is, allocating the structure, then re-reading it. This
1094 isn't particularly efficient, but string constants aren't that
1095 common in most code. TODO: Use obstacks? */
1097 delimiter = c;
1098 length = 0;
1100 for (;;)
1102 c = next_string_char (delimiter, &ret);
1103 if (ret == -1)
1104 break;
1105 if (ret == -2)
1107 gfc_current_locus = start_locus;
1108 gfc_error ("Unterminated character constant beginning at %C");
1109 return MATCH_ERROR;
1112 length++;
1115 /* Peek at the next character to see if it is a b, o, z, or x for the
1116 postfixed BOZ literal constants. */
1117 peek = gfc_peek_ascii_char ();
1118 if (peek == 'b' || peek == 'o' || peek =='z' || peek == 'x')
1119 goto no_match;
1121 e = gfc_get_character_expr (kind, &start_locus, NULL, length);
1123 gfc_current_locus = start_locus;
1125 /* We disable the warning for the following loop as the warning has already
1126 been printed in the loop above. */
1127 save_warn_ampersand = warn_ampersand;
1128 warn_ampersand = false;
1130 p = e->value.character.string;
1131 for (i = 0; i < length; i++)
1133 c = next_string_char (delimiter, &ret);
1135 if (!gfc_check_character_range (c, kind))
1137 gfc_free_expr (e);
1138 gfc_error ("Character %qs in string at %C is not representable "
1139 "in character kind %d", gfc_print_wide_char (c), kind);
1140 return MATCH_ERROR;
1143 *p++ = c;
1146 *p = '\0'; /* TODO: C-style string is for development/debug purposes. */
1147 warn_ampersand = save_warn_ampersand;
1149 next_string_char (delimiter, &ret);
1150 if (ret != -1)
1151 gfc_internal_error ("match_string_constant(): Delimiter not found");
1153 if (match_substring (NULL, 0, &e->ref) != MATCH_NO)
1154 e->expr_type = EXPR_SUBSTRING;
1156 *result = e;
1158 return MATCH_YES;
1160 no_match:
1161 gfc_current_locus = old_locus;
1162 return MATCH_NO;
1166 /* Match a .true. or .false. Returns 1 if a .true. was found,
1167 0 if a .false. was found, and -1 otherwise. */
1168 static int
1169 match_logical_constant_string (void)
1171 locus orig_loc = gfc_current_locus;
1173 gfc_gobble_whitespace ();
1174 if (gfc_next_ascii_char () == '.')
1176 char ch = gfc_next_ascii_char ();
1177 if (ch == 'f')
1179 if (gfc_next_ascii_char () == 'a'
1180 && gfc_next_ascii_char () == 'l'
1181 && gfc_next_ascii_char () == 's'
1182 && gfc_next_ascii_char () == 'e'
1183 && gfc_next_ascii_char () == '.')
1184 /* Matched ".false.". */
1185 return 0;
1187 else if (ch == 't')
1189 if (gfc_next_ascii_char () == 'r'
1190 && gfc_next_ascii_char () == 'u'
1191 && gfc_next_ascii_char () == 'e'
1192 && gfc_next_ascii_char () == '.')
1193 /* Matched ".true.". */
1194 return 1;
1197 gfc_current_locus = orig_loc;
1198 return -1;
1201 /* Match a .true. or .false. */
1203 static match
1204 match_logical_constant (gfc_expr **result)
1206 gfc_expr *e;
1207 int i, kind, is_iso_c;
1209 i = match_logical_constant_string ();
1210 if (i == -1)
1211 return MATCH_NO;
1213 kind = get_kind (&is_iso_c);
1214 if (kind == -1)
1215 return MATCH_ERROR;
1216 if (kind == -2)
1217 kind = gfc_default_logical_kind;
1219 if (gfc_validate_kind (BT_LOGICAL, kind, true) < 0)
1221 gfc_error ("Bad kind for logical constant at %C");
1222 return MATCH_ERROR;
1225 e = gfc_get_logical_expr (kind, &gfc_current_locus, i);
1226 e->ts.is_c_interop = is_iso_c;
1228 *result = e;
1229 return MATCH_YES;
1233 /* Match a real or imaginary part of a complex constant that is a
1234 symbolic constant. */
1236 static match
1237 match_sym_complex_part (gfc_expr **result)
1239 char name[GFC_MAX_SYMBOL_LEN + 1];
1240 gfc_symbol *sym;
1241 gfc_expr *e;
1242 match m;
1244 m = gfc_match_name (name);
1245 if (m != MATCH_YES)
1246 return m;
1248 if (gfc_find_symbol (name, NULL, 1, &sym) || sym == NULL)
1249 return MATCH_NO;
1251 if (sym->attr.flavor != FL_PARAMETER)
1253 gfc_error ("Expected PARAMETER symbol in complex constant at %C");
1254 return MATCH_ERROR;
1257 if (!sym->value)
1258 goto error;
1260 if (!gfc_numeric_ts (&sym->value->ts))
1262 gfc_error ("Numeric PARAMETER required in complex constant at %C");
1263 return MATCH_ERROR;
1266 if (sym->value->rank != 0)
1268 gfc_error ("Scalar PARAMETER required in complex constant at %C");
1269 return MATCH_ERROR;
1272 if (!gfc_notify_std (GFC_STD_F2003, "PARAMETER symbol in "
1273 "complex constant at %C"))
1274 return MATCH_ERROR;
1276 switch (sym->value->ts.type)
1278 case BT_REAL:
1279 e = gfc_copy_expr (sym->value);
1280 break;
1282 case BT_COMPLEX:
1283 e = gfc_complex2real (sym->value, sym->value->ts.kind);
1284 if (e == NULL)
1285 goto error;
1286 break;
1288 case BT_INTEGER:
1289 e = gfc_int2real (sym->value, gfc_default_real_kind);
1290 if (e == NULL)
1291 goto error;
1292 break;
1294 default:
1295 gfc_internal_error ("gfc_match_sym_complex_part(): Bad type");
1298 *result = e; /* e is a scalar, real, constant expression. */
1299 return MATCH_YES;
1301 error:
1302 gfc_error ("Error converting PARAMETER constant in complex constant at %C");
1303 return MATCH_ERROR;
1307 /* Match a real or imaginary part of a complex number. */
1309 static match
1310 match_complex_part (gfc_expr **result)
1312 match m;
1314 m = match_sym_complex_part (result);
1315 if (m != MATCH_NO)
1316 return m;
1318 m = match_real_constant (result, 1);
1319 if (m != MATCH_NO)
1320 return m;
1322 return match_integer_constant (result, 1);
1326 /* Try to match a complex constant. */
1328 static match
1329 match_complex_constant (gfc_expr **result)
1331 gfc_expr *e, *real, *imag;
1332 gfc_error_buffer old_error;
1333 gfc_typespec target;
1334 locus old_loc;
1335 int kind;
1336 match m;
1338 old_loc = gfc_current_locus;
1339 real = imag = e = NULL;
1341 m = gfc_match_char ('(');
1342 if (m != MATCH_YES)
1343 return m;
1345 gfc_push_error (&old_error);
1347 m = match_complex_part (&real);
1348 if (m == MATCH_NO)
1350 gfc_free_error (&old_error);
1351 goto cleanup;
1354 if (gfc_match_char (',') == MATCH_NO)
1356 gfc_pop_error (&old_error);
1357 m = MATCH_NO;
1358 goto cleanup;
1361 /* If m is error, then something was wrong with the real part and we
1362 assume we have a complex constant because we've seen the ','. An
1363 ambiguous case here is the start of an iterator list of some
1364 sort. These sort of lists are matched prior to coming here. */
1366 if (m == MATCH_ERROR)
1368 gfc_free_error (&old_error);
1369 goto cleanup;
1371 gfc_pop_error (&old_error);
1373 m = match_complex_part (&imag);
1374 if (m == MATCH_NO)
1375 goto syntax;
1376 if (m == MATCH_ERROR)
1377 goto cleanup;
1379 m = gfc_match_char (')');
1380 if (m == MATCH_NO)
1382 /* Give the matcher for implied do-loops a chance to run. This
1383 yields a much saner error message for (/ (i, 4=i, 6) /). */
1384 if (gfc_peek_ascii_char () == '=')
1386 m = MATCH_ERROR;
1387 goto cleanup;
1389 else
1390 goto syntax;
1393 if (m == MATCH_ERROR)
1394 goto cleanup;
1396 /* Decide on the kind of this complex number. */
1397 if (real->ts.type == BT_REAL)
1399 if (imag->ts.type == BT_REAL)
1400 kind = gfc_kind_max (real, imag);
1401 else
1402 kind = real->ts.kind;
1404 else
1406 if (imag->ts.type == BT_REAL)
1407 kind = imag->ts.kind;
1408 else
1409 kind = gfc_default_real_kind;
1411 gfc_clear_ts (&target);
1412 target.type = BT_REAL;
1413 target.kind = kind;
1415 if (real->ts.type != BT_REAL || kind != real->ts.kind)
1416 gfc_convert_type (real, &target, 2);
1417 if (imag->ts.type != BT_REAL || kind != imag->ts.kind)
1418 gfc_convert_type (imag, &target, 2);
1420 e = gfc_convert_complex (real, imag, kind);
1421 e->where = gfc_current_locus;
1423 gfc_free_expr (real);
1424 gfc_free_expr (imag);
1426 *result = e;
1427 return MATCH_YES;
1429 syntax:
1430 gfc_error ("Syntax error in COMPLEX constant at %C");
1431 m = MATCH_ERROR;
1433 cleanup:
1434 gfc_free_expr (e);
1435 gfc_free_expr (real);
1436 gfc_free_expr (imag);
1437 gfc_current_locus = old_loc;
1439 return m;
1443 /* Match constants in any of several forms. Returns nonzero for a
1444 match, zero for no match. */
1446 match
1447 gfc_match_literal_constant (gfc_expr **result, int signflag)
1449 match m;
1451 m = match_complex_constant (result);
1452 if (m != MATCH_NO)
1453 return m;
1455 m = match_string_constant (result);
1456 if (m != MATCH_NO)
1457 return m;
1459 m = match_boz_constant (result);
1460 if (m != MATCH_NO)
1461 return m;
1463 m = match_real_constant (result, signflag);
1464 if (m != MATCH_NO)
1465 return m;
1467 m = match_hollerith_constant (result);
1468 if (m != MATCH_NO)
1469 return m;
1471 m = match_integer_constant (result, signflag);
1472 if (m != MATCH_NO)
1473 return m;
1475 m = match_logical_constant (result);
1476 if (m != MATCH_NO)
1477 return m;
1479 return MATCH_NO;
1483 /* This checks if a symbol is the return value of an encompassing function.
1484 Function nesting can be maximally two levels deep, but we may have
1485 additional local namespaces like BLOCK etc. */
1487 bool
1488 gfc_is_function_return_value (gfc_symbol *sym, gfc_namespace *ns)
1490 if (!sym->attr.function || (sym->result != sym))
1491 return false;
1492 while (ns)
1494 if (ns->proc_name == sym)
1495 return true;
1496 ns = ns->parent;
1498 return false;
1502 /* Match a single actual argument value. An actual argument is
1503 usually an expression, but can also be a procedure name. If the
1504 argument is a single name, it is not always possible to tell
1505 whether the name is a dummy procedure or not. We treat these cases
1506 by creating an argument that looks like a dummy procedure and
1507 fixing things later during resolution. */
1509 static match
1510 match_actual_arg (gfc_expr **result)
1512 char name[GFC_MAX_SYMBOL_LEN + 1];
1513 gfc_symtree *symtree;
1514 locus where, w;
1515 gfc_expr *e;
1516 char c;
1518 gfc_gobble_whitespace ();
1519 where = gfc_current_locus;
1521 switch (gfc_match_name (name))
1523 case MATCH_ERROR:
1524 return MATCH_ERROR;
1526 case MATCH_NO:
1527 break;
1529 case MATCH_YES:
1530 w = gfc_current_locus;
1531 gfc_gobble_whitespace ();
1532 c = gfc_next_ascii_char ();
1533 gfc_current_locus = w;
1535 if (c != ',' && c != ')')
1536 break;
1538 if (gfc_find_sym_tree (name, NULL, 1, &symtree))
1539 break;
1540 /* Handle error elsewhere. */
1542 /* Eliminate a couple of common cases where we know we don't
1543 have a function argument. */
1544 if (symtree == NULL)
1546 gfc_get_sym_tree (name, NULL, &symtree, false);
1547 gfc_set_sym_referenced (symtree->n.sym);
1549 else
1551 gfc_symbol *sym;
1553 sym = symtree->n.sym;
1554 gfc_set_sym_referenced (sym);
1555 if (sym->attr.flavor != FL_PROCEDURE
1556 && sym->attr.flavor != FL_UNKNOWN)
1557 break;
1559 if (sym->attr.in_common && !sym->attr.proc_pointer)
1561 if (!gfc_add_flavor (&sym->attr, FL_VARIABLE,
1562 sym->name, &sym->declared_at))
1563 return MATCH_ERROR;
1564 break;
1567 /* If the symbol is a function with itself as the result and
1568 is being defined, then we have a variable. */
1569 if (sym->attr.function && sym->result == sym)
1571 if (gfc_is_function_return_value (sym, gfc_current_ns))
1572 break;
1574 if (sym->attr.entry
1575 && (sym->ns == gfc_current_ns
1576 || sym->ns == gfc_current_ns->parent))
1578 gfc_entry_list *el = NULL;
1580 for (el = sym->ns->entries; el; el = el->next)
1581 if (sym == el->sym)
1582 break;
1584 if (el)
1585 break;
1590 e = gfc_get_expr (); /* Leave it unknown for now */
1591 e->symtree = symtree;
1592 e->expr_type = EXPR_VARIABLE;
1593 e->ts.type = BT_PROCEDURE;
1594 e->where = where;
1596 *result = e;
1597 return MATCH_YES;
1600 gfc_current_locus = where;
1601 return gfc_match_expr (result);
1605 /* Match a keyword argument. */
1607 static match
1608 match_keyword_arg (gfc_actual_arglist *actual, gfc_actual_arglist *base)
1610 char name[GFC_MAX_SYMBOL_LEN + 1];
1611 gfc_actual_arglist *a;
1612 locus name_locus;
1613 match m;
1615 name_locus = gfc_current_locus;
1616 m = gfc_match_name (name);
1618 if (m != MATCH_YES)
1619 goto cleanup;
1620 if (gfc_match_char ('=') != MATCH_YES)
1622 m = MATCH_NO;
1623 goto cleanup;
1626 m = match_actual_arg (&actual->expr);
1627 if (m != MATCH_YES)
1628 goto cleanup;
1630 /* Make sure this name has not appeared yet. */
1632 if (name[0] != '\0')
1634 for (a = base; a; a = a->next)
1635 if (a->name != NULL && strcmp (a->name, name) == 0)
1637 gfc_error ("Keyword %qs at %C has already appeared in the "
1638 "current argument list", name);
1639 return MATCH_ERROR;
1643 actual->name = gfc_get_string (name);
1644 return MATCH_YES;
1646 cleanup:
1647 gfc_current_locus = name_locus;
1648 return m;
1652 /* Match an argument list function, such as %VAL. */
1654 static match
1655 match_arg_list_function (gfc_actual_arglist *result)
1657 char name[GFC_MAX_SYMBOL_LEN + 1];
1658 locus old_locus;
1659 match m;
1661 old_locus = gfc_current_locus;
1663 if (gfc_match_char ('%') != MATCH_YES)
1665 m = MATCH_NO;
1666 goto cleanup;
1669 m = gfc_match ("%n (", name);
1670 if (m != MATCH_YES)
1671 goto cleanup;
1673 if (name[0] != '\0')
1675 switch (name[0])
1677 case 'l':
1678 if (strncmp (name, "loc", 3) == 0)
1680 result->name = "%LOC";
1681 break;
1683 case 'r':
1684 if (strncmp (name, "ref", 3) == 0)
1686 result->name = "%REF";
1687 break;
1689 case 'v':
1690 if (strncmp (name, "val", 3) == 0)
1692 result->name = "%VAL";
1693 break;
1695 default:
1696 m = MATCH_ERROR;
1697 goto cleanup;
1701 if (!gfc_notify_std (GFC_STD_GNU, "argument list function at %C"))
1703 m = MATCH_ERROR;
1704 goto cleanup;
1707 m = match_actual_arg (&result->expr);
1708 if (m != MATCH_YES)
1709 goto cleanup;
1711 if (gfc_match_char (')') != MATCH_YES)
1713 m = MATCH_NO;
1714 goto cleanup;
1717 return MATCH_YES;
1719 cleanup:
1720 gfc_current_locus = old_locus;
1721 return m;
1725 /* Matches an actual argument list of a function or subroutine, from
1726 the opening parenthesis to the closing parenthesis. The argument
1727 list is assumed to allow keyword arguments because we don't know if
1728 the symbol associated with the procedure has an implicit interface
1729 or not. We make sure keywords are unique. If sub_flag is set,
1730 we're matching the argument list of a subroutine. */
1732 match
1733 gfc_match_actual_arglist (int sub_flag, gfc_actual_arglist **argp)
1735 gfc_actual_arglist *head, *tail;
1736 int seen_keyword;
1737 gfc_st_label *label;
1738 locus old_loc;
1739 match m;
1741 *argp = tail = NULL;
1742 old_loc = gfc_current_locus;
1744 seen_keyword = 0;
1746 if (gfc_match_char ('(') == MATCH_NO)
1747 return (sub_flag) ? MATCH_YES : MATCH_NO;
1749 if (gfc_match_char (')') == MATCH_YES)
1750 return MATCH_YES;
1751 head = NULL;
1753 matching_actual_arglist++;
1755 for (;;)
1757 if (head == NULL)
1758 head = tail = gfc_get_actual_arglist ();
1759 else
1761 tail->next = gfc_get_actual_arglist ();
1762 tail = tail->next;
1765 if (sub_flag && gfc_match_char ('*') == MATCH_YES)
1767 m = gfc_match_st_label (&label);
1768 if (m == MATCH_NO)
1769 gfc_error ("Expected alternate return label at %C");
1770 if (m != MATCH_YES)
1771 goto cleanup;
1773 if (!gfc_notify_std (GFC_STD_F95_OBS, "Alternate-return argument "
1774 "at %C"))
1775 goto cleanup;
1777 tail->label = label;
1778 goto next;
1781 /* After the first keyword argument is seen, the following
1782 arguments must also have keywords. */
1783 if (seen_keyword)
1785 m = match_keyword_arg (tail, head);
1787 if (m == MATCH_ERROR)
1788 goto cleanup;
1789 if (m == MATCH_NO)
1791 gfc_error ("Missing keyword name in actual argument list at %C");
1792 goto cleanup;
1796 else
1798 /* Try an argument list function, like %VAL. */
1799 m = match_arg_list_function (tail);
1800 if (m == MATCH_ERROR)
1801 goto cleanup;
1803 /* See if we have the first keyword argument. */
1804 if (m == MATCH_NO)
1806 m = match_keyword_arg (tail, head);
1807 if (m == MATCH_YES)
1808 seen_keyword = 1;
1809 if (m == MATCH_ERROR)
1810 goto cleanup;
1813 if (m == MATCH_NO)
1815 /* Try for a non-keyword argument. */
1816 m = match_actual_arg (&tail->expr);
1817 if (m == MATCH_ERROR)
1818 goto cleanup;
1819 if (m == MATCH_NO)
1820 goto syntax;
1825 next:
1826 if (gfc_match_char (')') == MATCH_YES)
1827 break;
1828 if (gfc_match_char (',') != MATCH_YES)
1829 goto syntax;
1832 *argp = head;
1833 matching_actual_arglist--;
1834 return MATCH_YES;
1836 syntax:
1837 gfc_error ("Syntax error in argument list at %C");
1839 cleanup:
1840 gfc_free_actual_arglist (head);
1841 gfc_current_locus = old_loc;
1842 matching_actual_arglist--;
1843 return MATCH_ERROR;
1847 /* Used by gfc_match_varspec() to extend the reference list by one
1848 element. */
1850 static gfc_ref *
1851 extend_ref (gfc_expr *primary, gfc_ref *tail)
1853 if (primary->ref == NULL)
1854 primary->ref = tail = gfc_get_ref ();
1855 else
1857 if (tail == NULL)
1858 gfc_internal_error ("extend_ref(): Bad tail");
1859 tail->next = gfc_get_ref ();
1860 tail = tail->next;
1863 return tail;
1867 /* Match any additional specifications associated with the current
1868 variable like member references or substrings. If equiv_flag is
1869 set we only match stuff that is allowed inside an EQUIVALENCE
1870 statement. sub_flag tells whether we expect a type-bound procedure found
1871 to be a subroutine as part of CALL or a FUNCTION. For procedure pointer
1872 components, 'ppc_arg' determines whether the PPC may be called (with an
1873 argument list), or whether it may just be referred to as a pointer. */
1875 match
1876 gfc_match_varspec (gfc_expr *primary, int equiv_flag, bool sub_flag,
1877 bool ppc_arg)
1879 char name[GFC_MAX_SYMBOL_LEN + 1];
1880 gfc_ref *substring, *tail;
1881 gfc_component *component;
1882 gfc_symbol *sym = primary->symtree->n.sym;
1883 match m;
1884 bool unknown;
1886 tail = NULL;
1888 gfc_gobble_whitespace ();
1890 if (gfc_peek_ascii_char () == '[')
1892 if ((sym->ts.type != BT_CLASS && sym->attr.dimension)
1893 || (sym->ts.type == BT_CLASS && CLASS_DATA (sym)
1894 && CLASS_DATA (sym)->attr.dimension))
1896 gfc_error ("Array section designator, e.g. '(:)', is required "
1897 "besides the coarray designator '[...]' at %C");
1898 return MATCH_ERROR;
1900 if ((sym->ts.type != BT_CLASS && !sym->attr.codimension)
1901 || (sym->ts.type == BT_CLASS && CLASS_DATA (sym)
1902 && !CLASS_DATA (sym)->attr.codimension))
1904 gfc_error ("Coarray designator at %C but %qs is not a coarray",
1905 sym->name);
1906 return MATCH_ERROR;
1910 /* For associate names, we may not yet know whether they are arrays or not.
1911 Thus if we have one and parentheses follow, we have to assume that it
1912 actually is one for now. The final decision will be made at
1913 resolution time, of course. */
1914 if (sym->assoc && gfc_peek_ascii_char () == '('
1915 && !(sym->assoc->dangling && sym->assoc->st
1916 && sym->assoc->st->n.sym
1917 && sym->assoc->st->n.sym->attr.dimension == 0)
1918 && sym->ts.type != BT_CLASS)
1919 sym->attr.dimension = 1;
1921 if ((equiv_flag && gfc_peek_ascii_char () == '(')
1922 || gfc_peek_ascii_char () == '[' || sym->attr.codimension
1923 || (sym->attr.dimension && sym->ts.type != BT_CLASS
1924 && !sym->attr.proc_pointer && !gfc_is_proc_ptr_comp (primary)
1925 && !(gfc_matching_procptr_assignment
1926 && sym->attr.flavor == FL_PROCEDURE))
1927 || (sym->ts.type == BT_CLASS && sym->attr.class_ok
1928 && (CLASS_DATA (sym)->attr.dimension
1929 || CLASS_DATA (sym)->attr.codimension)))
1931 gfc_array_spec *as;
1933 tail = extend_ref (primary, tail);
1934 tail->type = REF_ARRAY;
1936 /* In EQUIVALENCE, we don't know yet whether we are seeing
1937 an array, character variable or array of character
1938 variables. We'll leave the decision till resolve time. */
1940 if (equiv_flag)
1941 as = NULL;
1942 else if (sym->ts.type == BT_CLASS && CLASS_DATA (sym))
1943 as = CLASS_DATA (sym)->as;
1944 else
1945 as = sym->as;
1947 m = gfc_match_array_ref (&tail->u.ar, as, equiv_flag,
1948 as ? as->corank : 0);
1949 if (m != MATCH_YES)
1950 return m;
1952 gfc_gobble_whitespace ();
1953 if (equiv_flag && gfc_peek_ascii_char () == '(')
1955 tail = extend_ref (primary, tail);
1956 tail->type = REF_ARRAY;
1958 m = gfc_match_array_ref (&tail->u.ar, NULL, equiv_flag, 0);
1959 if (m != MATCH_YES)
1960 return m;
1964 primary->ts = sym->ts;
1966 if (equiv_flag)
1967 return MATCH_YES;
1969 if (sym->ts.type == BT_UNKNOWN && gfc_peek_ascii_char () == '%'
1970 && gfc_get_default_type (sym->name, sym->ns)->type == BT_DERIVED)
1971 gfc_set_default_type (sym, 0, sym->ns);
1973 if (sym->ts.type == BT_UNKNOWN && gfc_match_char ('%') == MATCH_YES)
1975 gfc_error ("Symbol %qs at %C has no IMPLICIT type", sym->name);
1976 return MATCH_ERROR;
1978 else if ((sym->ts.type != BT_DERIVED && sym->ts.type != BT_CLASS)
1979 && gfc_match_char ('%') == MATCH_YES)
1981 gfc_error ("Unexpected %<%%%> for nonderived-type variable %qs at %C",
1982 sym->name);
1983 return MATCH_ERROR;
1986 if ((sym->ts.type != BT_DERIVED && sym->ts.type != BT_CLASS)
1987 || gfc_match_char ('%') != MATCH_YES)
1988 goto check_substring;
1990 sym = sym->ts.u.derived;
1992 for (;;)
1994 bool t;
1995 gfc_symtree *tbp;
1997 m = gfc_match_name (name);
1998 if (m == MATCH_NO)
1999 gfc_error ("Expected structure component name at %C");
2000 if (m != MATCH_YES)
2001 return MATCH_ERROR;
2003 if (sym->f2k_derived)
2004 tbp = gfc_find_typebound_proc (sym, &t, name, false, &gfc_current_locus);
2005 else
2006 tbp = NULL;
2008 if (tbp)
2010 gfc_symbol* tbp_sym;
2012 if (!t)
2013 return MATCH_ERROR;
2015 gcc_assert (!tail || !tail->next);
2017 if (!(primary->expr_type == EXPR_VARIABLE
2018 || (primary->expr_type == EXPR_STRUCTURE
2019 && primary->symtree && primary->symtree->n.sym
2020 && primary->symtree->n.sym->attr.flavor)))
2021 return MATCH_ERROR;
2023 if (tbp->n.tb->is_generic)
2024 tbp_sym = NULL;
2025 else
2026 tbp_sym = tbp->n.tb->u.specific->n.sym;
2028 primary->expr_type = EXPR_COMPCALL;
2029 primary->value.compcall.tbp = tbp->n.tb;
2030 primary->value.compcall.name = tbp->name;
2031 primary->value.compcall.ignore_pass = 0;
2032 primary->value.compcall.assign = 0;
2033 primary->value.compcall.base_object = NULL;
2034 gcc_assert (primary->symtree->n.sym->attr.referenced);
2035 if (tbp_sym)
2036 primary->ts = tbp_sym->ts;
2037 else
2038 gfc_clear_ts (&primary->ts);
2040 m = gfc_match_actual_arglist (tbp->n.tb->subroutine,
2041 &primary->value.compcall.actual);
2042 if (m == MATCH_ERROR)
2043 return MATCH_ERROR;
2044 if (m == MATCH_NO)
2046 if (sub_flag)
2047 primary->value.compcall.actual = NULL;
2048 else
2050 gfc_error ("Expected argument list at %C");
2051 return MATCH_ERROR;
2055 break;
2058 component = gfc_find_component (sym, name, false, false);
2059 if (component == NULL)
2060 return MATCH_ERROR;
2062 tail = extend_ref (primary, tail);
2063 tail->type = REF_COMPONENT;
2065 tail->u.c.component = component;
2066 tail->u.c.sym = sym;
2068 primary->ts = component->ts;
2070 if (component->attr.proc_pointer && ppc_arg)
2072 /* Procedure pointer component call: Look for argument list. */
2073 m = gfc_match_actual_arglist (sub_flag,
2074 &primary->value.compcall.actual);
2075 if (m == MATCH_ERROR)
2076 return MATCH_ERROR;
2078 if (m == MATCH_NO && !gfc_matching_ptr_assignment
2079 && !gfc_matching_procptr_assignment && !matching_actual_arglist)
2081 gfc_error ("Procedure pointer component %qs requires an "
2082 "argument list at %C", component->name);
2083 return MATCH_ERROR;
2086 if (m == MATCH_YES)
2087 primary->expr_type = EXPR_PPC;
2089 break;
2092 if (component->as != NULL && !component->attr.proc_pointer)
2094 tail = extend_ref (primary, tail);
2095 tail->type = REF_ARRAY;
2097 m = gfc_match_array_ref (&tail->u.ar, component->as, equiv_flag,
2098 component->as->corank);
2099 if (m != MATCH_YES)
2100 return m;
2102 else if (component->ts.type == BT_CLASS && component->attr.class_ok
2103 && CLASS_DATA (component)->as && !component->attr.proc_pointer)
2105 tail = extend_ref (primary, tail);
2106 tail->type = REF_ARRAY;
2108 m = gfc_match_array_ref (&tail->u.ar, CLASS_DATA (component)->as,
2109 equiv_flag,
2110 CLASS_DATA (component)->as->corank);
2111 if (m != MATCH_YES)
2112 return m;
2115 if ((component->ts.type != BT_DERIVED && component->ts.type != BT_CLASS)
2116 || gfc_match_char ('%') != MATCH_YES)
2117 break;
2119 sym = component->ts.u.derived;
2122 check_substring:
2123 unknown = false;
2124 if (primary->ts.type == BT_UNKNOWN && sym->attr.flavor != FL_DERIVED)
2126 if (gfc_get_default_type (sym->name, sym->ns)->type == BT_CHARACTER)
2128 gfc_set_default_type (sym, 0, sym->ns);
2129 primary->ts = sym->ts;
2130 unknown = true;
2134 if (primary->ts.type == BT_CHARACTER)
2136 switch (match_substring (primary->ts.u.cl, equiv_flag, &substring))
2138 case MATCH_YES:
2139 if (tail == NULL)
2140 primary->ref = substring;
2141 else
2142 tail->next = substring;
2144 if (primary->expr_type == EXPR_CONSTANT)
2145 primary->expr_type = EXPR_SUBSTRING;
2147 if (substring)
2148 primary->ts.u.cl = NULL;
2150 break;
2152 case MATCH_NO:
2153 if (unknown)
2155 gfc_clear_ts (&primary->ts);
2156 gfc_clear_ts (&sym->ts);
2158 break;
2160 case MATCH_ERROR:
2161 return MATCH_ERROR;
2165 /* F2008, C727. */
2166 if (primary->expr_type == EXPR_PPC && gfc_is_coindexed (primary))
2168 gfc_error ("Coindexed procedure-pointer component at %C");
2169 return MATCH_ERROR;
2172 return MATCH_YES;
2176 /* Given an expression that is a variable, figure out what the
2177 ultimate variable's type and attribute is, traversing the reference
2178 structures if necessary.
2180 This subroutine is trickier than it looks. We start at the base
2181 symbol and store the attribute. Component references load a
2182 completely new attribute.
2184 A couple of rules come into play. Subobjects of targets are always
2185 targets themselves. If we see a component that goes through a
2186 pointer, then the expression must also be a target, since the
2187 pointer is associated with something (if it isn't core will soon be
2188 dumped). If we see a full part or section of an array, the
2189 expression is also an array.
2191 We can have at most one full array reference. */
2193 symbol_attribute
2194 gfc_variable_attr (gfc_expr *expr, gfc_typespec *ts)
2196 int dimension, codimension, pointer, allocatable, target, n;
2197 symbol_attribute attr;
2198 gfc_ref *ref;
2199 gfc_symbol *sym;
2200 gfc_component *comp;
2202 if (expr->expr_type != EXPR_VARIABLE && expr->expr_type != EXPR_FUNCTION)
2203 gfc_internal_error ("gfc_variable_attr(): Expression isn't a variable");
2205 sym = expr->symtree->n.sym;
2206 attr = sym->attr;
2208 if (sym->ts.type == BT_CLASS && sym->attr.class_ok)
2210 dimension = CLASS_DATA (sym)->attr.dimension;
2211 codimension = CLASS_DATA (sym)->attr.codimension;
2212 pointer = CLASS_DATA (sym)->attr.class_pointer;
2213 allocatable = CLASS_DATA (sym)->attr.allocatable;
2215 else
2217 dimension = attr.dimension;
2218 codimension = attr.codimension;
2219 pointer = attr.pointer;
2220 allocatable = attr.allocatable;
2223 target = attr.target;
2224 if (pointer || attr.proc_pointer)
2225 target = 1;
2227 if (ts != NULL && expr->ts.type == BT_UNKNOWN)
2228 *ts = sym->ts;
2230 for (ref = expr->ref; ref; ref = ref->next)
2231 switch (ref->type)
2233 case REF_ARRAY:
2235 switch (ref->u.ar.type)
2237 case AR_FULL:
2238 dimension = 1;
2239 break;
2241 case AR_SECTION:
2242 allocatable = pointer = 0;
2243 dimension = 1;
2244 break;
2246 case AR_ELEMENT:
2247 /* Handle coarrays. */
2248 if (ref->u.ar.dimen > 0)
2249 allocatable = pointer = 0;
2250 break;
2252 case AR_UNKNOWN:
2253 /* If any of start, end or stride is not integer, there will
2254 already have been an error issued. */
2255 for (n = 0; n < ref->u.ar.as->rank; n++)
2257 int errors;
2258 gfc_get_errors (NULL, &errors);
2259 if (((ref->u.ar.start[n]
2260 && ref->u.ar.start[n]->ts.type == BT_UNKNOWN)
2262 (ref->u.ar.end[n]
2263 && ref->u.ar.end[n]->ts.type == BT_UNKNOWN)
2265 (ref->u.ar.stride[n]
2266 && ref->u.ar.stride[n]->ts.type == BT_UNKNOWN))
2267 && errors > 0)
2268 break;
2270 if (n == ref->u.ar.as->rank)
2271 gfc_internal_error ("gfc_variable_attr(): Bad array reference");
2274 break;
2276 case REF_COMPONENT:
2277 comp = ref->u.c.component;
2278 attr = comp->attr;
2279 if (ts != NULL)
2281 *ts = comp->ts;
2282 /* Don't set the string length if a substring reference
2283 follows. */
2284 if (ts->type == BT_CHARACTER
2285 && ref->next && ref->next->type == REF_SUBSTRING)
2286 ts->u.cl = NULL;
2289 if (comp->ts.type == BT_CLASS)
2291 codimension = CLASS_DATA (comp)->attr.codimension;
2292 pointer = CLASS_DATA (comp)->attr.class_pointer;
2293 allocatable = CLASS_DATA (comp)->attr.allocatable;
2295 else
2297 codimension = comp->attr.codimension;
2298 pointer = comp->attr.pointer;
2299 allocatable = comp->attr.allocatable;
2301 if (pointer || attr.proc_pointer)
2302 target = 1;
2304 break;
2306 case REF_SUBSTRING:
2307 allocatable = pointer = 0;
2308 break;
2311 attr.dimension = dimension;
2312 attr.codimension = codimension;
2313 attr.pointer = pointer;
2314 attr.allocatable = allocatable;
2315 attr.target = target;
2316 attr.save = sym->attr.save;
2318 return attr;
2322 /* Return the attribute from a general expression. */
2324 symbol_attribute
2325 gfc_expr_attr (gfc_expr *e)
2327 symbol_attribute attr;
2329 switch (e->expr_type)
2331 case EXPR_VARIABLE:
2332 attr = gfc_variable_attr (e, NULL);
2333 break;
2335 case EXPR_FUNCTION:
2336 gfc_clear_attr (&attr);
2338 if (e->value.function.esym && e->value.function.esym->result)
2340 gfc_symbol *sym = e->value.function.esym->result;
2341 attr = sym->attr;
2342 if (sym->ts.type == BT_CLASS)
2344 attr.dimension = CLASS_DATA (sym)->attr.dimension;
2345 attr.pointer = CLASS_DATA (sym)->attr.class_pointer;
2346 attr.allocatable = CLASS_DATA (sym)->attr.allocatable;
2349 else
2350 attr = gfc_variable_attr (e, NULL);
2352 /* TODO: NULL() returns pointers. May have to take care of this
2353 here. */
2355 break;
2357 default:
2358 gfc_clear_attr (&attr);
2359 break;
2362 return attr;
2366 /* Match a structure constructor. The initial symbol has already been
2367 seen. */
2369 typedef struct gfc_structure_ctor_component
2371 char* name;
2372 gfc_expr* val;
2373 locus where;
2374 struct gfc_structure_ctor_component* next;
2376 gfc_structure_ctor_component;
2378 #define gfc_get_structure_ctor_component() XCNEW (gfc_structure_ctor_component)
2380 static void
2381 gfc_free_structure_ctor_component (gfc_structure_ctor_component *comp)
2383 free (comp->name);
2384 gfc_free_expr (comp->val);
2385 free (comp);
2389 /* Translate the component list into the actual constructor by sorting it in
2390 the order required; this also checks along the way that each and every
2391 component actually has an initializer and handles default initializers
2392 for components without explicit value given. */
2393 static bool
2394 build_actual_constructor (gfc_structure_ctor_component **comp_head,
2395 gfc_constructor_base *ctor_head, gfc_symbol *sym)
2397 gfc_structure_ctor_component *comp_iter;
2398 gfc_component *comp;
2400 for (comp = sym->components; comp; comp = comp->next)
2402 gfc_structure_ctor_component **next_ptr;
2403 gfc_expr *value = NULL;
2405 /* Try to find the initializer for the current component by name. */
2406 next_ptr = comp_head;
2407 for (comp_iter = *comp_head; comp_iter; comp_iter = comp_iter->next)
2409 if (!strcmp (comp_iter->name, comp->name))
2410 break;
2411 next_ptr = &comp_iter->next;
2414 /* If an extension, try building the parent derived type by building
2415 a value expression for the parent derived type and calling self. */
2416 if (!comp_iter && comp == sym->components && sym->attr.extension)
2418 value = gfc_get_structure_constructor_expr (comp->ts.type,
2419 comp->ts.kind,
2420 &gfc_current_locus);
2421 value->ts = comp->ts;
2423 if (!build_actual_constructor (comp_head,
2424 &value->value.constructor,
2425 comp->ts.u.derived))
2427 gfc_free_expr (value);
2428 return false;
2431 gfc_constructor_append_expr (ctor_head, value, NULL);
2432 continue;
2435 /* If it was not found, try the default initializer if there's any;
2436 otherwise, it's an error unless this is a deferred parameter. */
2437 if (!comp_iter)
2439 if (comp->initializer)
2441 if (!gfc_notify_std (GFC_STD_F2003, "Structure constructor "
2442 "with missing optional arguments at %C"))
2443 return false;
2444 value = gfc_copy_expr (comp->initializer);
2446 else if (comp->attr.allocatable
2447 || (comp->ts.type == BT_CLASS
2448 && CLASS_DATA (comp)->attr.allocatable))
2450 if (!gfc_notify_std (GFC_STD_F2008, "No initializer for "
2451 "allocatable component '%qs' given in the "
2452 "structure constructor at %C", comp->name))
2453 return false;
2455 else if (!comp->attr.artificial)
2457 gfc_error ("No initializer for component %qs given in the"
2458 " structure constructor at %C!", comp->name);
2459 return false;
2462 else
2463 value = comp_iter->val;
2465 /* Add the value to the constructor chain built. */
2466 gfc_constructor_append_expr (ctor_head, value, NULL);
2468 /* Remove the entry from the component list. We don't want the expression
2469 value to be free'd, so set it to NULL. */
2470 if (comp_iter)
2472 *next_ptr = comp_iter->next;
2473 comp_iter->val = NULL;
2474 gfc_free_structure_ctor_component (comp_iter);
2477 return true;
2481 bool
2482 gfc_convert_to_structure_constructor (gfc_expr *e, gfc_symbol *sym, gfc_expr **cexpr,
2483 gfc_actual_arglist **arglist,
2484 bool parent)
2486 gfc_actual_arglist *actual;
2487 gfc_structure_ctor_component *comp_tail, *comp_head, *comp_iter;
2488 gfc_constructor_base ctor_head = NULL;
2489 gfc_component *comp; /* Is set NULL when named component is first seen */
2490 const char* last_name = NULL;
2491 locus old_locus;
2492 gfc_expr *expr;
2494 expr = parent ? *cexpr : e;
2495 old_locus = gfc_current_locus;
2496 if (parent)
2497 ; /* gfc_current_locus = *arglist->expr ? ->where;*/
2498 else
2499 gfc_current_locus = expr->where;
2501 comp_tail = comp_head = NULL;
2503 if (!parent && sym->attr.abstract)
2505 gfc_error ("Can't construct ABSTRACT type %qs at %L",
2506 sym->name, &expr->where);
2507 goto cleanup;
2510 comp = sym->components;
2511 actual = parent ? *arglist : expr->value.function.actual;
2512 for ( ; actual; )
2514 gfc_component *this_comp = NULL;
2516 if (!comp_head)
2517 comp_tail = comp_head = gfc_get_structure_ctor_component ();
2518 else
2520 comp_tail->next = gfc_get_structure_ctor_component ();
2521 comp_tail = comp_tail->next;
2523 if (actual->name)
2525 if (!gfc_notify_std (GFC_STD_F2003, "Structure"
2526 " constructor with named arguments at %C"))
2527 goto cleanup;
2529 comp_tail->name = xstrdup (actual->name);
2530 last_name = comp_tail->name;
2531 comp = NULL;
2533 else
2535 /* Components without name are not allowed after the first named
2536 component initializer! */
2537 if (!comp || comp->attr.artificial)
2539 if (last_name)
2540 gfc_error ("Component initializer without name after component"
2541 " named %s at %L!", last_name,
2542 actual->expr ? &actual->expr->where
2543 : &gfc_current_locus);
2544 else
2545 gfc_error ("Too many components in structure constructor at "
2546 "%L!", actual->expr ? &actual->expr->where
2547 : &gfc_current_locus);
2548 goto cleanup;
2551 comp_tail->name = xstrdup (comp->name);
2554 /* Find the current component in the structure definition and check
2555 its access is not private. */
2556 if (comp)
2557 this_comp = gfc_find_component (sym, comp->name, false, false);
2558 else
2560 this_comp = gfc_find_component (sym, (const char *)comp_tail->name,
2561 false, false);
2562 comp = NULL; /* Reset needed! */
2565 /* Here we can check if a component name is given which does not
2566 correspond to any component of the defined structure. */
2567 if (!this_comp)
2568 goto cleanup;
2570 comp_tail->val = actual->expr;
2571 if (actual->expr != NULL)
2572 comp_tail->where = actual->expr->where;
2573 actual->expr = NULL;
2575 /* Check if this component is already given a value. */
2576 for (comp_iter = comp_head; comp_iter != comp_tail;
2577 comp_iter = comp_iter->next)
2579 gcc_assert (comp_iter);
2580 if (!strcmp (comp_iter->name, comp_tail->name))
2582 gfc_error ("Component %qs is initialized twice in the structure"
2583 " constructor at %L!", comp_tail->name,
2584 comp_tail->val ? &comp_tail->where
2585 : &gfc_current_locus);
2586 goto cleanup;
2590 /* F2008, R457/C725, for PURE C1283. */
2591 if (this_comp->attr.pointer && comp_tail->val
2592 && gfc_is_coindexed (comp_tail->val))
2594 gfc_error ("Coindexed expression to pointer component %qs in "
2595 "structure constructor at %L!", comp_tail->name,
2596 &comp_tail->where);
2597 goto cleanup;
2600 /* If not explicitly a parent constructor, gather up the components
2601 and build one. */
2602 if (comp && comp == sym->components
2603 && sym->attr.extension
2604 && comp_tail->val
2605 && (comp_tail->val->ts.type != BT_DERIVED
2607 comp_tail->val->ts.u.derived != this_comp->ts.u.derived))
2609 bool m;
2610 gfc_actual_arglist *arg_null = NULL;
2612 actual->expr = comp_tail->val;
2613 comp_tail->val = NULL;
2615 m = gfc_convert_to_structure_constructor (NULL,
2616 comp->ts.u.derived, &comp_tail->val,
2617 comp->ts.u.derived->attr.zero_comp
2618 ? &arg_null : &actual, true);
2619 if (!m)
2620 goto cleanup;
2622 if (comp->ts.u.derived->attr.zero_comp)
2624 comp = comp->next;
2625 continue;
2629 if (comp)
2630 comp = comp->next;
2631 if (parent && !comp)
2632 break;
2634 if (actual)
2635 actual = actual->next;
2638 if (!build_actual_constructor (&comp_head, &ctor_head, sym))
2639 goto cleanup;
2641 /* No component should be left, as this should have caused an error in the
2642 loop constructing the component-list (name that does not correspond to any
2643 component in the structure definition). */
2644 if (comp_head && sym->attr.extension)
2646 for (comp_iter = comp_head; comp_iter; comp_iter = comp_iter->next)
2648 gfc_error ("component %qs at %L has already been set by a "
2649 "parent derived type constructor", comp_iter->name,
2650 &comp_iter->where);
2652 goto cleanup;
2654 else
2655 gcc_assert (!comp_head);
2657 if (parent)
2659 expr = gfc_get_structure_constructor_expr (BT_DERIVED, 0, &gfc_current_locus);
2660 expr->ts.u.derived = sym;
2661 expr->value.constructor = ctor_head;
2662 *cexpr = expr;
2664 else
2666 expr->ts.u.derived = sym;
2667 expr->ts.kind = 0;
2668 expr->ts.type = BT_DERIVED;
2669 expr->value.constructor = ctor_head;
2670 expr->expr_type = EXPR_STRUCTURE;
2673 gfc_current_locus = old_locus;
2674 if (parent)
2675 *arglist = actual;
2676 return true;
2678 cleanup:
2679 gfc_current_locus = old_locus;
2681 for (comp_iter = comp_head; comp_iter; )
2683 gfc_structure_ctor_component *next = comp_iter->next;
2684 gfc_free_structure_ctor_component (comp_iter);
2685 comp_iter = next;
2687 gfc_constructor_free (ctor_head);
2689 return false;
2693 match
2694 gfc_match_structure_constructor (gfc_symbol *sym, gfc_expr **result)
2696 match m;
2697 gfc_expr *e;
2698 gfc_symtree *symtree;
2700 gfc_get_sym_tree (sym->name, NULL, &symtree, false); /* Can't fail */
2702 e = gfc_get_expr ();
2703 e->symtree = symtree;
2704 e->expr_type = EXPR_FUNCTION;
2706 gcc_assert (sym->attr.flavor == FL_DERIVED
2707 && symtree->n.sym->attr.flavor == FL_PROCEDURE);
2708 e->value.function.esym = sym;
2709 e->symtree->n.sym->attr.generic = 1;
2711 m = gfc_match_actual_arglist (0, &e->value.function.actual);
2712 if (m != MATCH_YES)
2714 gfc_free_expr (e);
2715 return m;
2718 if (!gfc_convert_to_structure_constructor (e, sym, NULL, NULL, false))
2720 gfc_free_expr (e);
2721 return MATCH_ERROR;
2724 *result = e;
2725 return MATCH_YES;
2729 /* If the symbol is an implicit do loop index and implicitly typed,
2730 it should not be host associated. Provide a symtree from the
2731 current namespace. */
2732 static match
2733 check_for_implicit_index (gfc_symtree **st, gfc_symbol **sym)
2735 if ((*sym)->attr.flavor == FL_VARIABLE
2736 && (*sym)->ns != gfc_current_ns
2737 && (*sym)->attr.implied_index
2738 && (*sym)->attr.implicit_type
2739 && !(*sym)->attr.use_assoc)
2741 int i;
2742 i = gfc_get_sym_tree ((*sym)->name, NULL, st, false);
2743 if (i)
2744 return MATCH_ERROR;
2745 *sym = (*st)->n.sym;
2747 return MATCH_YES;
2751 /* Procedure pointer as function result: Replace the function symbol by the
2752 auto-generated hidden result variable named "ppr@". */
2754 static bool
2755 replace_hidden_procptr_result (gfc_symbol **sym, gfc_symtree **st)
2757 /* Check for procedure pointer result variable. */
2758 if ((*sym)->attr.function && !(*sym)->attr.external
2759 && (*sym)->result && (*sym)->result != *sym
2760 && (*sym)->result->attr.proc_pointer
2761 && (*sym) == gfc_current_ns->proc_name
2762 && (*sym) == (*sym)->result->ns->proc_name
2763 && strcmp ("ppr@", (*sym)->result->name) == 0)
2765 /* Automatic replacement with "hidden" result variable. */
2766 (*sym)->result->attr.referenced = (*sym)->attr.referenced;
2767 *sym = (*sym)->result;
2768 *st = gfc_find_symtree ((*sym)->ns->sym_root, (*sym)->name);
2769 return true;
2771 return false;
2775 /* Matches a variable name followed by anything that might follow it--
2776 array reference, argument list of a function, etc. */
2778 match
2779 gfc_match_rvalue (gfc_expr **result)
2781 gfc_actual_arglist *actual_arglist;
2782 char name[GFC_MAX_SYMBOL_LEN + 1], argname[GFC_MAX_SYMBOL_LEN + 1];
2783 gfc_state_data *st;
2784 gfc_symbol *sym;
2785 gfc_symtree *symtree;
2786 locus where, old_loc;
2787 gfc_expr *e;
2788 match m, m2;
2789 int i;
2790 gfc_typespec *ts;
2791 bool implicit_char;
2792 gfc_ref *ref;
2794 m = gfc_match_name (name);
2795 if (m != MATCH_YES)
2796 return m;
2798 if (gfc_find_state (COMP_INTERFACE)
2799 && !gfc_current_ns->has_import_set)
2800 i = gfc_get_sym_tree (name, NULL, &symtree, false);
2801 else
2802 i = gfc_get_ha_sym_tree (name, &symtree);
2804 if (i)
2805 return MATCH_ERROR;
2807 sym = symtree->n.sym;
2808 e = NULL;
2809 where = gfc_current_locus;
2811 replace_hidden_procptr_result (&sym, &symtree);
2813 /* If this is an implicit do loop index and implicitly typed,
2814 it should not be host associated. */
2815 m = check_for_implicit_index (&symtree, &sym);
2816 if (m != MATCH_YES)
2817 return m;
2819 gfc_set_sym_referenced (sym);
2820 sym->attr.implied_index = 0;
2822 if (sym->attr.function && sym->result == sym)
2824 /* See if this is a directly recursive function call. */
2825 gfc_gobble_whitespace ();
2826 if (sym->attr.recursive
2827 && gfc_peek_ascii_char () == '('
2828 && gfc_current_ns->proc_name == sym
2829 && !sym->attr.dimension)
2831 gfc_error ("%qs at %C is the name of a recursive function "
2832 "and so refers to the result variable. Use an "
2833 "explicit RESULT variable for direct recursion "
2834 "(12.5.2.1)", sym->name);
2835 return MATCH_ERROR;
2838 if (gfc_is_function_return_value (sym, gfc_current_ns))
2839 goto variable;
2841 if (sym->attr.entry
2842 && (sym->ns == gfc_current_ns
2843 || sym->ns == gfc_current_ns->parent))
2845 gfc_entry_list *el = NULL;
2847 for (el = sym->ns->entries; el; el = el->next)
2848 if (sym == el->sym)
2849 goto variable;
2853 if (gfc_matching_procptr_assignment)
2854 goto procptr0;
2856 if (sym->attr.function || sym->attr.external || sym->attr.intrinsic)
2857 goto function0;
2859 if (sym->attr.generic)
2860 goto generic_function;
2862 switch (sym->attr.flavor)
2864 case FL_VARIABLE:
2865 variable:
2866 e = gfc_get_expr ();
2868 e->expr_type = EXPR_VARIABLE;
2869 e->symtree = symtree;
2871 m = gfc_match_varspec (e, 0, false, true);
2872 break;
2874 case FL_PARAMETER:
2875 /* A statement of the form "REAL, parameter :: a(0:10) = 1" will
2876 end up here. Unfortunately, sym->value->expr_type is set to
2877 EXPR_CONSTANT, and so the if () branch would be followed without
2878 the !sym->as check. */
2879 if (sym->value && sym->value->expr_type != EXPR_ARRAY && !sym->as)
2880 e = gfc_copy_expr (sym->value);
2881 else
2883 e = gfc_get_expr ();
2884 e->expr_type = EXPR_VARIABLE;
2887 e->symtree = symtree;
2888 m = gfc_match_varspec (e, 0, false, true);
2890 if (sym->ts.is_c_interop || sym->ts.is_iso_c)
2891 break;
2893 /* Variable array references to derived type parameters cause
2894 all sorts of headaches in simplification. Treating such
2895 expressions as variable works just fine for all array
2896 references. */
2897 if (sym->value && sym->ts.type == BT_DERIVED && e->ref)
2899 for (ref = e->ref; ref; ref = ref->next)
2900 if (ref->type == REF_ARRAY)
2901 break;
2903 if (ref == NULL || ref->u.ar.type == AR_FULL)
2904 break;
2906 ref = e->ref;
2907 e->ref = NULL;
2908 gfc_free_expr (e);
2909 e = gfc_get_expr ();
2910 e->expr_type = EXPR_VARIABLE;
2911 e->symtree = symtree;
2912 e->ref = ref;
2915 break;
2917 case FL_DERIVED:
2918 sym = gfc_use_derived (sym);
2919 if (sym == NULL)
2920 m = MATCH_ERROR;
2921 else
2922 goto generic_function;
2923 break;
2925 /* If we're here, then the name is known to be the name of a
2926 procedure, yet it is not sure to be the name of a function. */
2927 case FL_PROCEDURE:
2929 /* Procedure Pointer Assignments. */
2930 procptr0:
2931 if (gfc_matching_procptr_assignment)
2933 gfc_gobble_whitespace ();
2934 if (!sym->attr.dimension && gfc_peek_ascii_char () == '(')
2935 /* Parse functions returning a procptr. */
2936 goto function0;
2938 e = gfc_get_expr ();
2939 e->expr_type = EXPR_VARIABLE;
2940 e->symtree = symtree;
2941 m = gfc_match_varspec (e, 0, false, true);
2942 if (!e->ref && sym->attr.flavor == FL_UNKNOWN
2943 && sym->ts.type == BT_UNKNOWN
2944 && !gfc_add_flavor (&sym->attr, FL_PROCEDURE, sym->name, NULL))
2946 m = MATCH_ERROR;
2947 break;
2949 break;
2952 if (sym->attr.subroutine)
2954 gfc_error ("Unexpected use of subroutine name %qs at %C",
2955 sym->name);
2956 m = MATCH_ERROR;
2957 break;
2960 /* At this point, the name has to be a non-statement function.
2961 If the name is the same as the current function being
2962 compiled, then we have a variable reference (to the function
2963 result) if the name is non-recursive. */
2965 st = gfc_enclosing_unit (NULL);
2967 if (st != NULL
2968 && st->state == COMP_FUNCTION
2969 && st->sym == sym
2970 && !sym->attr.recursive)
2972 e = gfc_get_expr ();
2973 e->symtree = symtree;
2974 e->expr_type = EXPR_VARIABLE;
2976 m = gfc_match_varspec (e, 0, false, true);
2977 break;
2980 /* Match a function reference. */
2981 function0:
2982 m = gfc_match_actual_arglist (0, &actual_arglist);
2983 if (m == MATCH_NO)
2985 if (sym->attr.proc == PROC_ST_FUNCTION)
2986 gfc_error ("Statement function %qs requires argument list at %C",
2987 sym->name);
2988 else
2989 gfc_error ("Function %qs requires an argument list at %C",
2990 sym->name);
2992 m = MATCH_ERROR;
2993 break;
2996 if (m != MATCH_YES)
2998 m = MATCH_ERROR;
2999 break;
3002 gfc_get_ha_sym_tree (name, &symtree); /* Can't fail */
3003 sym = symtree->n.sym;
3005 replace_hidden_procptr_result (&sym, &symtree);
3007 e = gfc_get_expr ();
3008 e->symtree = symtree;
3009 e->expr_type = EXPR_FUNCTION;
3010 e->value.function.actual = actual_arglist;
3011 e->where = gfc_current_locus;
3013 if (sym->ts.type == BT_CLASS && sym->attr.class_ok
3014 && CLASS_DATA (sym)->as)
3015 e->rank = CLASS_DATA (sym)->as->rank;
3016 else if (sym->as != NULL)
3017 e->rank = sym->as->rank;
3019 if (!sym->attr.function
3020 && !gfc_add_function (&sym->attr, sym->name, NULL))
3022 m = MATCH_ERROR;
3023 break;
3026 /* Check here for the existence of at least one argument for the
3027 iso_c_binding functions C_LOC, C_FUNLOC, and C_ASSOCIATED. The
3028 argument(s) given will be checked in gfc_iso_c_func_interface,
3029 during resolution of the function call. */
3030 if (sym->attr.is_iso_c == 1
3031 && (sym->from_intmod == INTMOD_ISO_C_BINDING
3032 && (sym->intmod_sym_id == ISOCBINDING_LOC
3033 || sym->intmod_sym_id == ISOCBINDING_FUNLOC
3034 || sym->intmod_sym_id == ISOCBINDING_ASSOCIATED)))
3036 /* make sure we were given a param */
3037 if (actual_arglist == NULL)
3039 gfc_error ("Missing argument to %qs at %C", sym->name);
3040 m = MATCH_ERROR;
3041 break;
3045 if (sym->result == NULL)
3046 sym->result = sym;
3048 m = MATCH_YES;
3049 break;
3051 case FL_UNKNOWN:
3053 /* Special case for derived type variables that get their types
3054 via an IMPLICIT statement. This can't wait for the
3055 resolution phase. */
3057 if (gfc_peek_ascii_char () == '%'
3058 && sym->ts.type == BT_UNKNOWN
3059 && gfc_get_default_type (sym->name, sym->ns)->type == BT_DERIVED)
3060 gfc_set_default_type (sym, 0, sym->ns);
3062 /* If the symbol has a (co)dimension attribute, the expression is a
3063 variable. */
3065 if (sym->attr.dimension || sym->attr.codimension)
3067 if (!gfc_add_flavor (&sym->attr, FL_VARIABLE, sym->name, NULL))
3069 m = MATCH_ERROR;
3070 break;
3073 e = gfc_get_expr ();
3074 e->symtree = symtree;
3075 e->expr_type = EXPR_VARIABLE;
3076 m = gfc_match_varspec (e, 0, false, true);
3077 break;
3080 if (sym->ts.type == BT_CLASS && sym->attr.class_ok
3081 && (CLASS_DATA (sym)->attr.dimension
3082 || CLASS_DATA (sym)->attr.codimension))
3084 if (!gfc_add_flavor (&sym->attr, FL_VARIABLE, sym->name, NULL))
3086 m = MATCH_ERROR;
3087 break;
3090 e = gfc_get_expr ();
3091 e->symtree = symtree;
3092 e->expr_type = EXPR_VARIABLE;
3093 m = gfc_match_varspec (e, 0, false, true);
3094 break;
3097 /* Name is not an array, so we peek to see if a '(' implies a
3098 function call or a substring reference. Otherwise the
3099 variable is just a scalar. */
3101 gfc_gobble_whitespace ();
3102 if (gfc_peek_ascii_char () != '(')
3104 /* Assume a scalar variable */
3105 e = gfc_get_expr ();
3106 e->symtree = symtree;
3107 e->expr_type = EXPR_VARIABLE;
3109 if (!gfc_add_flavor (&sym->attr, FL_VARIABLE, sym->name, NULL))
3111 m = MATCH_ERROR;
3112 break;
3115 /*FIXME:??? gfc_match_varspec does set this for us: */
3116 e->ts = sym->ts;
3117 m = gfc_match_varspec (e, 0, false, true);
3118 break;
3121 /* See if this is a function reference with a keyword argument
3122 as first argument. We do this because otherwise a spurious
3123 symbol would end up in the symbol table. */
3125 old_loc = gfc_current_locus;
3126 m2 = gfc_match (" ( %n =", argname);
3127 gfc_current_locus = old_loc;
3129 e = gfc_get_expr ();
3130 e->symtree = symtree;
3132 if (m2 != MATCH_YES)
3134 /* Try to figure out whether we're dealing with a character type.
3135 We're peeking ahead here, because we don't want to call
3136 match_substring if we're dealing with an implicitly typed
3137 non-character variable. */
3138 implicit_char = false;
3139 if (sym->ts.type == BT_UNKNOWN)
3141 ts = gfc_get_default_type (sym->name, NULL);
3142 if (ts->type == BT_CHARACTER)
3143 implicit_char = true;
3146 /* See if this could possibly be a substring reference of a name
3147 that we're not sure is a variable yet. */
3149 if ((implicit_char || sym->ts.type == BT_CHARACTER)
3150 && match_substring (sym->ts.u.cl, 0, &e->ref) == MATCH_YES)
3153 e->expr_type = EXPR_VARIABLE;
3155 if (sym->attr.flavor != FL_VARIABLE
3156 && !gfc_add_flavor (&sym->attr, FL_VARIABLE,
3157 sym->name, NULL))
3159 m = MATCH_ERROR;
3160 break;
3163 if (sym->ts.type == BT_UNKNOWN
3164 && !gfc_set_default_type (sym, 1, NULL))
3166 m = MATCH_ERROR;
3167 break;
3170 e->ts = sym->ts;
3171 if (e->ref)
3172 e->ts.u.cl = NULL;
3173 m = MATCH_YES;
3174 break;
3178 /* Give up, assume we have a function. */
3180 gfc_get_sym_tree (name, NULL, &symtree, false); /* Can't fail */
3181 sym = symtree->n.sym;
3182 e->expr_type = EXPR_FUNCTION;
3184 if (!sym->attr.function
3185 && !gfc_add_function (&sym->attr, sym->name, NULL))
3187 m = MATCH_ERROR;
3188 break;
3191 sym->result = sym;
3193 m = gfc_match_actual_arglist (0, &e->value.function.actual);
3194 if (m == MATCH_NO)
3195 gfc_error ("Missing argument list in function %qs at %C", sym->name);
3197 if (m != MATCH_YES)
3199 m = MATCH_ERROR;
3200 break;
3203 /* If our new function returns a character, array or structure
3204 type, it might have subsequent references. */
3206 m = gfc_match_varspec (e, 0, false, true);
3207 if (m == MATCH_NO)
3208 m = MATCH_YES;
3210 break;
3212 generic_function:
3213 gfc_get_sym_tree (name, NULL, &symtree, false); /* Can't fail */
3215 e = gfc_get_expr ();
3216 e->symtree = symtree;
3217 e->expr_type = EXPR_FUNCTION;
3219 if (sym->attr.flavor == FL_DERIVED)
3221 e->value.function.esym = sym;
3222 e->symtree->n.sym->attr.generic = 1;
3225 m = gfc_match_actual_arglist (0, &e->value.function.actual);
3226 break;
3228 default:
3229 gfc_error ("Symbol at %C is not appropriate for an expression");
3230 return MATCH_ERROR;
3233 if (m == MATCH_YES)
3235 e->where = where;
3236 *result = e;
3238 else
3239 gfc_free_expr (e);
3241 return m;
3245 /* Match a variable, i.e. something that can be assigned to. This
3246 starts as a symbol, can be a structure component or an array
3247 reference. It can be a function if the function doesn't have a
3248 separate RESULT variable. If the symbol has not been previously
3249 seen, we assume it is a variable.
3251 This function is called by two interface functions:
3252 gfc_match_variable, which has host_flag = 1, and
3253 gfc_match_equiv_variable, with host_flag = 0, to restrict the
3254 match of the symbol to the local scope. */
3256 static match
3257 match_variable (gfc_expr **result, int equiv_flag, int host_flag)
3259 gfc_symbol *sym;
3260 gfc_symtree *st;
3261 gfc_expr *expr;
3262 locus where;
3263 match m;
3265 /* Since nothing has any business being an lvalue in a module
3266 specification block, an interface block or a contains section,
3267 we force the changed_symbols mechanism to work by setting
3268 host_flag to 0. This prevents valid symbols that have the name
3269 of keywords, such as 'end', being turned into variables by
3270 failed matching to assignments for, e.g., END INTERFACE. */
3271 if (gfc_current_state () == COMP_MODULE
3272 || gfc_current_state () == COMP_SUBMODULE
3273 || gfc_current_state () == COMP_INTERFACE
3274 || gfc_current_state () == COMP_CONTAINS)
3275 host_flag = 0;
3277 where = gfc_current_locus;
3278 m = gfc_match_sym_tree (&st, host_flag);
3279 if (m != MATCH_YES)
3280 return m;
3282 sym = st->n.sym;
3284 /* If this is an implicit do loop index and implicitly typed,
3285 it should not be host associated. */
3286 m = check_for_implicit_index (&st, &sym);
3287 if (m != MATCH_YES)
3288 return m;
3290 sym->attr.implied_index = 0;
3292 gfc_set_sym_referenced (sym);
3293 switch (sym->attr.flavor)
3295 case FL_VARIABLE:
3296 /* Everything is alright. */
3297 break;
3299 case FL_UNKNOWN:
3301 sym_flavor flavor = FL_UNKNOWN;
3303 gfc_gobble_whitespace ();
3305 if (sym->attr.external || sym->attr.procedure
3306 || sym->attr.function || sym->attr.subroutine)
3307 flavor = FL_PROCEDURE;
3309 /* If it is not a procedure, is not typed and is host associated,
3310 we cannot give it a flavor yet. */
3311 else if (sym->ns == gfc_current_ns->parent
3312 && sym->ts.type == BT_UNKNOWN)
3313 break;
3315 /* These are definitive indicators that this is a variable. */
3316 else if (gfc_peek_ascii_char () != '(' || sym->ts.type != BT_UNKNOWN
3317 || sym->attr.pointer || sym->as != NULL)
3318 flavor = FL_VARIABLE;
3320 if (flavor != FL_UNKNOWN
3321 && !gfc_add_flavor (&sym->attr, flavor, sym->name, NULL))
3322 return MATCH_ERROR;
3324 break;
3326 case FL_PARAMETER:
3327 if (equiv_flag)
3329 gfc_error ("Named constant at %C in an EQUIVALENCE");
3330 return MATCH_ERROR;
3332 /* Otherwise this is checked for and an error given in the
3333 variable definition context checks. */
3334 break;
3336 case FL_PROCEDURE:
3337 /* Check for a nonrecursive function result variable. */
3338 if (sym->attr.function
3339 && !sym->attr.external
3340 && sym->result == sym
3341 && (gfc_is_function_return_value (sym, gfc_current_ns)
3342 || (sym->attr.entry
3343 && sym->ns == gfc_current_ns)
3344 || (sym->attr.entry
3345 && sym->ns == gfc_current_ns->parent)))
3347 /* If a function result is a derived type, then the derived
3348 type may still have to be resolved. */
3350 if (sym->ts.type == BT_DERIVED
3351 && gfc_use_derived (sym->ts.u.derived) == NULL)
3352 return MATCH_ERROR;
3353 break;
3356 if (sym->attr.proc_pointer
3357 || replace_hidden_procptr_result (&sym, &st))
3358 break;
3360 /* Fall through to error */
3362 default:
3363 gfc_error ("%qs at %C is not a variable", sym->name);
3364 return MATCH_ERROR;
3367 /* Special case for derived type variables that get their types
3368 via an IMPLICIT statement. This can't wait for the
3369 resolution phase. */
3372 gfc_namespace * implicit_ns;
3374 if (gfc_current_ns->proc_name == sym)
3375 implicit_ns = gfc_current_ns;
3376 else
3377 implicit_ns = sym->ns;
3379 if (gfc_peek_ascii_char () == '%'
3380 && sym->ts.type == BT_UNKNOWN
3381 && gfc_get_default_type (sym->name, implicit_ns)->type == BT_DERIVED)
3382 gfc_set_default_type (sym, 0, implicit_ns);
3385 expr = gfc_get_expr ();
3387 expr->expr_type = EXPR_VARIABLE;
3388 expr->symtree = st;
3389 expr->ts = sym->ts;
3390 expr->where = where;
3392 /* Now see if we have to do more. */
3393 m = gfc_match_varspec (expr, equiv_flag, false, false);
3394 if (m != MATCH_YES)
3396 gfc_free_expr (expr);
3397 return m;
3400 *result = expr;
3401 return MATCH_YES;
3405 match
3406 gfc_match_variable (gfc_expr **result, int equiv_flag)
3408 return match_variable (result, equiv_flag, 1);
3412 match
3413 gfc_match_equiv_variable (gfc_expr **result)
3415 return match_variable (result, 1, 0);