Update concepts branch to revision 131834
[official-gcc.git] / gcc / fortran / parse.c
blobc35db2d9cf6745d0cfac26de25681e857b9db7cd
1 /* Main parser.
2 Copyright (C) 2000, 2001, 2002, 2003, 2004, 2005, 2006, 2007, 2008
3 Free Software Foundation, Inc.
4 Contributed by Andy Vaught
6 This file is part of GCC.
8 GCC is free software; you can redistribute it and/or modify it under
9 the terms of the GNU General Public License as published by the Free
10 Software Foundation; either version 3, or (at your option) any later
11 version.
13 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
14 WARRANTY; without even the implied warranty of MERCHANTABILITY or
15 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
16 for more details.
18 You should have received a copy of the GNU General Public License
19 along with GCC; see the file COPYING3. If not see
20 <http://www.gnu.org/licenses/>. */
22 #include "config.h"
23 #include "system.h"
24 #include <setjmp.h>
25 #include "gfortran.h"
26 #include "match.h"
27 #include "parse.h"
28 #include "debug.h"
30 /* Current statement label. Zero means no statement label. Because new_st
31 can get wiped during statement matching, we have to keep it separate. */
33 gfc_st_label *gfc_statement_label;
35 static locus label_locus;
36 static jmp_buf eof_buf;
38 gfc_state_data *gfc_state_stack;
40 /* TODO: Re-order functions to kill these forward decls. */
41 static void check_statement_label (gfc_statement);
42 static void undo_new_statement (void);
43 static void reject_statement (void);
46 /* A sort of half-matching function. We try to match the word on the
47 input with the passed string. If this succeeds, we call the
48 keyword-dependent matching function that will match the rest of the
49 statement. For single keywords, the matching subroutine is
50 gfc_match_eos(). */
52 static match
53 match_word (const char *str, match (*subr) (void), locus *old_locus)
55 match m;
57 if (str != NULL)
59 m = gfc_match (str);
60 if (m != MATCH_YES)
61 return m;
64 m = (*subr) ();
66 if (m != MATCH_YES)
68 gfc_current_locus = *old_locus;
69 reject_statement ();
72 return m;
76 /* Figure out what the next statement is, (mostly) regardless of
77 proper ordering. The do...while(0) is there to prevent if/else
78 ambiguity. */
80 #define match(keyword, subr, st) \
81 do { \
82 if (match_word(keyword, subr, &old_locus) == MATCH_YES) \
83 return st; \
84 else \
85 undo_new_statement (); \
86 } while (0);
89 /* This is a specialist version of decode_statement that is used
90 for the specification statements in a function, whose
91 characteristics are deferred into the specification statements.
92 eg.: INTEGER (king = mykind) foo ()
93 USE mymodule, ONLY mykind.....
94 The KIND parameter needs a return after USE or IMPORT, whereas
95 derived type declarations can occur anywhere, up the executable
96 block. ST_GET_FCN_CHARACTERISTICS is returned when we have run
97 out of the correct kind of specification statements. */
98 static gfc_statement
99 decode_specification_statement (void)
101 gfc_statement st;
102 locus old_locus;
103 char c;
105 if (gfc_match_eos () == MATCH_YES)
106 return ST_NONE;
108 old_locus = gfc_current_locus;
110 match ("import", gfc_match_import, ST_IMPORT);
111 match ("use", gfc_match_use, ST_USE);
113 if (gfc_current_block ()->ts.type != BT_DERIVED)
114 goto end_of_block;
116 match (NULL, gfc_match_st_function, ST_STATEMENT_FUNCTION);
117 match (NULL, gfc_match_data_decl, ST_DATA_DECL);
118 match (NULL, gfc_match_enumerator_def, ST_ENUMERATOR);
120 /* General statement matching: Instead of testing every possible
121 statement, we eliminate most possibilities by peeking at the
122 first character. */
124 c = gfc_peek_ascii_char ();
126 switch (c)
128 case 'a':
129 match ("abstract% interface", gfc_match_abstract_interface,
130 ST_INTERFACE);
131 break;
133 case 'b':
134 match (NULL, gfc_match_bind_c_stmt, ST_ATTR_DECL);
135 break;
137 case 'c':
138 break;
140 case 'd':
141 match ("data", gfc_match_data, ST_DATA);
142 match ("dimension", gfc_match_dimension, ST_ATTR_DECL);
143 break;
145 case 'e':
146 match ("enum , bind ( c )", gfc_match_enum, ST_ENUM);
147 match ("entry% ", gfc_match_entry, ST_ENTRY);
148 match ("equivalence", gfc_match_equivalence, ST_EQUIVALENCE);
149 match ("external", gfc_match_external, ST_ATTR_DECL);
150 break;
152 case 'f':
153 match ("format", gfc_match_format, ST_FORMAT);
154 break;
156 case 'g':
157 break;
159 case 'i':
160 match ("implicit", gfc_match_implicit, ST_IMPLICIT);
161 match ("implicit% none", gfc_match_implicit_none, ST_IMPLICIT_NONE);
162 match ("interface", gfc_match_interface, ST_INTERFACE);
163 match ("intent", gfc_match_intent, ST_ATTR_DECL);
164 match ("intrinsic", gfc_match_intrinsic, ST_ATTR_DECL);
165 break;
167 case 'm':
168 break;
170 case 'n':
171 match ("namelist", gfc_match_namelist, ST_NAMELIST);
172 break;
174 case 'o':
175 match ("optional", gfc_match_optional, ST_ATTR_DECL);
176 break;
178 case 'p':
179 match ("parameter", gfc_match_parameter, ST_PARAMETER);
180 match ("pointer", gfc_match_pointer, ST_ATTR_DECL);
181 if (gfc_match_private (&st) == MATCH_YES)
182 return st;
183 match ("procedure", gfc_match_procedure, ST_PROCEDURE);
184 if (gfc_match_public (&st) == MATCH_YES)
185 return st;
186 match ("protected", gfc_match_protected, ST_ATTR_DECL);
187 break;
189 case 'r':
190 break;
192 case 's':
193 match ("save", gfc_match_save, ST_ATTR_DECL);
194 break;
196 case 't':
197 match ("target", gfc_match_target, ST_ATTR_DECL);
198 match ("type", gfc_match_derived_decl, ST_DERIVED_DECL);
199 break;
201 case 'u':
202 break;
204 case 'v':
205 match ("value", gfc_match_value, ST_ATTR_DECL);
206 match ("volatile", gfc_match_volatile, ST_ATTR_DECL);
207 break;
209 case 'w':
210 break;
213 /* This is not a specification statement. See if any of the matchers
214 has stored an error message of some sort. */
216 end_of_block:
217 gfc_clear_error ();
218 gfc_buffer_error (0);
219 gfc_current_locus = old_locus;
221 return ST_GET_FCN_CHARACTERISTICS;
225 /* This is the primary 'decode_statement'. */
226 static gfc_statement
227 decode_statement (void)
229 gfc_statement st;
230 locus old_locus;
231 match m;
232 char c;
234 #ifdef GFC_DEBUG
235 gfc_symbol_state ();
236 #endif
238 gfc_clear_error (); /* Clear any pending errors. */
239 gfc_clear_warning (); /* Clear any pending warnings. */
241 gfc_matching_function = false;
243 if (gfc_match_eos () == MATCH_YES)
244 return ST_NONE;
246 if (gfc_current_state () == COMP_FUNCTION
247 && gfc_current_block ()->result->ts.kind == -1)
248 return decode_specification_statement ();
250 old_locus = gfc_current_locus;
252 /* Try matching a data declaration or function declaration. The
253 input "REALFUNCTIONA(N)" can mean several things in different
254 contexts, so it (and its relatives) get special treatment. */
256 if (gfc_current_state () == COMP_NONE
257 || gfc_current_state () == COMP_INTERFACE
258 || gfc_current_state () == COMP_CONTAINS)
260 gfc_matching_function = true;
261 m = gfc_match_function_decl ();
262 if (m == MATCH_YES)
263 return ST_FUNCTION;
264 else if (m == MATCH_ERROR)
265 reject_statement ();
266 else
267 gfc_undo_symbols ();
268 gfc_current_locus = old_locus;
270 gfc_matching_function = false;
273 /* Match statements whose error messages are meant to be overwritten
274 by something better. */
276 match (NULL, gfc_match_assignment, ST_ASSIGNMENT);
277 match (NULL, gfc_match_pointer_assignment, ST_POINTER_ASSIGNMENT);
278 match (NULL, gfc_match_st_function, ST_STATEMENT_FUNCTION);
280 match (NULL, gfc_match_data_decl, ST_DATA_DECL);
281 match (NULL, gfc_match_enumerator_def, ST_ENUMERATOR);
283 /* Try to match a subroutine statement, which has the same optional
284 prefixes that functions can have. */
286 if (gfc_match_subroutine () == MATCH_YES)
287 return ST_SUBROUTINE;
288 gfc_undo_symbols ();
289 gfc_current_locus = old_locus;
291 /* Check for the IF, DO, SELECT, WHERE and FORALL statements, which
292 might begin with a block label. The match functions for these
293 statements are unusual in that their keyword is not seen before
294 the matcher is called. */
296 if (gfc_match_if (&st) == MATCH_YES)
297 return st;
298 gfc_undo_symbols ();
299 gfc_current_locus = old_locus;
301 if (gfc_match_where (&st) == MATCH_YES)
302 return st;
303 gfc_undo_symbols ();
304 gfc_current_locus = old_locus;
306 if (gfc_match_forall (&st) == MATCH_YES)
307 return st;
308 gfc_undo_symbols ();
309 gfc_current_locus = old_locus;
311 match (NULL, gfc_match_do, ST_DO);
312 match (NULL, gfc_match_select, ST_SELECT_CASE);
314 /* General statement matching: Instead of testing every possible
315 statement, we eliminate most possibilities by peeking at the
316 first character. */
318 c = gfc_peek_ascii_char ();
320 switch (c)
322 case 'a':
323 match ("abstract% interface", gfc_match_abstract_interface,
324 ST_INTERFACE);
325 match ("allocate", gfc_match_allocate, ST_ALLOCATE);
326 match ("allocatable", gfc_match_allocatable, ST_ATTR_DECL);
327 match ("assign", gfc_match_assign, ST_LABEL_ASSIGNMENT);
328 break;
330 case 'b':
331 match ("backspace", gfc_match_backspace, ST_BACKSPACE);
332 match ("block data", gfc_match_block_data, ST_BLOCK_DATA);
333 match (NULL, gfc_match_bind_c_stmt, ST_ATTR_DECL);
334 break;
336 case 'c':
337 match ("call", gfc_match_call, ST_CALL);
338 match ("close", gfc_match_close, ST_CLOSE);
339 match ("continue", gfc_match_continue, ST_CONTINUE);
340 match ("cycle", gfc_match_cycle, ST_CYCLE);
341 match ("case", gfc_match_case, ST_CASE);
342 match ("common", gfc_match_common, ST_COMMON);
343 match ("contains", gfc_match_eos, ST_CONTAINS);
344 break;
346 case 'd':
347 match ("deallocate", gfc_match_deallocate, ST_DEALLOCATE);
348 match ("data", gfc_match_data, ST_DATA);
349 match ("dimension", gfc_match_dimension, ST_ATTR_DECL);
350 break;
352 case 'e':
353 match ("end file", gfc_match_endfile, ST_END_FILE);
354 match ("exit", gfc_match_exit, ST_EXIT);
355 match ("else", gfc_match_else, ST_ELSE);
356 match ("else where", gfc_match_elsewhere, ST_ELSEWHERE);
357 match ("else if", gfc_match_elseif, ST_ELSEIF);
358 match ("enum , bind ( c )", gfc_match_enum, ST_ENUM);
360 if (gfc_match_end (&st) == MATCH_YES)
361 return st;
363 match ("entry% ", gfc_match_entry, ST_ENTRY);
364 match ("equivalence", gfc_match_equivalence, ST_EQUIVALENCE);
365 match ("external", gfc_match_external, ST_ATTR_DECL);
366 break;
368 case 'f':
369 match ("final", gfc_match_final_decl, ST_FINAL);
370 match ("flush", gfc_match_flush, ST_FLUSH);
371 match ("format", gfc_match_format, ST_FORMAT);
372 break;
374 case 'g':
375 match ("go to", gfc_match_goto, ST_GOTO);
376 break;
378 case 'i':
379 match ("inquire", gfc_match_inquire, ST_INQUIRE);
380 match ("implicit", gfc_match_implicit, ST_IMPLICIT);
381 match ("implicit% none", gfc_match_implicit_none, ST_IMPLICIT_NONE);
382 match ("import", gfc_match_import, ST_IMPORT);
383 match ("interface", gfc_match_interface, ST_INTERFACE);
384 match ("intent", gfc_match_intent, ST_ATTR_DECL);
385 match ("intrinsic", gfc_match_intrinsic, ST_ATTR_DECL);
386 break;
388 case 'm':
389 match ("module% procedure% ", gfc_match_modproc, ST_MODULE_PROC);
390 match ("module", gfc_match_module, ST_MODULE);
391 break;
393 case 'n':
394 match ("nullify", gfc_match_nullify, ST_NULLIFY);
395 match ("namelist", gfc_match_namelist, ST_NAMELIST);
396 break;
398 case 'o':
399 match ("open", gfc_match_open, ST_OPEN);
400 match ("optional", gfc_match_optional, ST_ATTR_DECL);
401 break;
403 case 'p':
404 match ("print", gfc_match_print, ST_WRITE);
405 match ("parameter", gfc_match_parameter, ST_PARAMETER);
406 match ("pause", gfc_match_pause, ST_PAUSE);
407 match ("pointer", gfc_match_pointer, ST_ATTR_DECL);
408 if (gfc_match_private (&st) == MATCH_YES)
409 return st;
410 match ("procedure", gfc_match_procedure, ST_PROCEDURE);
411 match ("program", gfc_match_program, ST_PROGRAM);
412 if (gfc_match_public (&st) == MATCH_YES)
413 return st;
414 match ("protected", gfc_match_protected, ST_ATTR_DECL);
415 break;
417 case 'r':
418 match ("read", gfc_match_read, ST_READ);
419 match ("return", gfc_match_return, ST_RETURN);
420 match ("rewind", gfc_match_rewind, ST_REWIND);
421 break;
423 case 's':
424 match ("sequence", gfc_match_eos, ST_SEQUENCE);
425 match ("stop", gfc_match_stop, ST_STOP);
426 match ("save", gfc_match_save, ST_ATTR_DECL);
427 break;
429 case 't':
430 match ("target", gfc_match_target, ST_ATTR_DECL);
431 match ("type", gfc_match_derived_decl, ST_DERIVED_DECL);
432 break;
434 case 'u':
435 match ("use", gfc_match_use, ST_USE);
436 break;
438 case 'v':
439 match ("value", gfc_match_value, ST_ATTR_DECL);
440 match ("volatile", gfc_match_volatile, ST_ATTR_DECL);
441 break;
443 case 'w':
444 match ("wait", gfc_match_wait, ST_WAIT);
445 match ("write", gfc_match_write, ST_WRITE);
446 break;
449 /* All else has failed, so give up. See if any of the matchers has
450 stored an error message of some sort. */
452 if (gfc_error_check () == 0)
453 gfc_error_now ("Unclassifiable statement at %C");
455 reject_statement ();
457 gfc_error_recovery ();
459 return ST_NONE;
462 static gfc_statement
463 decode_omp_directive (void)
465 locus old_locus;
466 char c;
468 #ifdef GFC_DEBUG
469 gfc_symbol_state ();
470 #endif
472 gfc_clear_error (); /* Clear any pending errors. */
473 gfc_clear_warning (); /* Clear any pending warnings. */
475 if (gfc_pure (NULL))
477 gfc_error_now ("OpenMP directives at %C may not appear in PURE "
478 "or ELEMENTAL procedures");
479 gfc_error_recovery ();
480 return ST_NONE;
483 old_locus = gfc_current_locus;
485 /* General OpenMP directive matching: Instead of testing every possible
486 statement, we eliminate most possibilities by peeking at the
487 first character. */
489 c = gfc_peek_ascii_char ();
491 switch (c)
493 case 'a':
494 match ("atomic", gfc_match_omp_atomic, ST_OMP_ATOMIC);
495 break;
496 case 'b':
497 match ("barrier", gfc_match_omp_barrier, ST_OMP_BARRIER);
498 break;
499 case 'c':
500 match ("critical", gfc_match_omp_critical, ST_OMP_CRITICAL);
501 break;
502 case 'd':
503 match ("do", gfc_match_omp_do, ST_OMP_DO);
504 break;
505 case 'e':
506 match ("end critical", gfc_match_omp_critical, ST_OMP_END_CRITICAL);
507 match ("end do", gfc_match_omp_end_nowait, ST_OMP_END_DO);
508 match ("end master", gfc_match_omp_eos, ST_OMP_END_MASTER);
509 match ("end ordered", gfc_match_omp_eos, ST_OMP_END_ORDERED);
510 match ("end parallel do", gfc_match_omp_eos, ST_OMP_END_PARALLEL_DO);
511 match ("end parallel sections", gfc_match_omp_eos,
512 ST_OMP_END_PARALLEL_SECTIONS);
513 match ("end parallel workshare", gfc_match_omp_eos,
514 ST_OMP_END_PARALLEL_WORKSHARE);
515 match ("end parallel", gfc_match_omp_eos, ST_OMP_END_PARALLEL);
516 match ("end sections", gfc_match_omp_end_nowait, ST_OMP_END_SECTIONS);
517 match ("end single", gfc_match_omp_end_single, ST_OMP_END_SINGLE);
518 match ("end task", gfc_match_omp_eos, ST_OMP_END_TASK);
519 match ("end workshare", gfc_match_omp_end_nowait,
520 ST_OMP_END_WORKSHARE);
521 break;
522 case 'f':
523 match ("flush", gfc_match_omp_flush, ST_OMP_FLUSH);
524 break;
525 case 'm':
526 match ("master", gfc_match_omp_master, ST_OMP_MASTER);
527 break;
528 case 'o':
529 match ("ordered", gfc_match_omp_ordered, ST_OMP_ORDERED);
530 break;
531 case 'p':
532 match ("parallel do", gfc_match_omp_parallel_do, ST_OMP_PARALLEL_DO);
533 match ("parallel sections", gfc_match_omp_parallel_sections,
534 ST_OMP_PARALLEL_SECTIONS);
535 match ("parallel workshare", gfc_match_omp_parallel_workshare,
536 ST_OMP_PARALLEL_WORKSHARE);
537 match ("parallel", gfc_match_omp_parallel, ST_OMP_PARALLEL);
538 break;
539 case 's':
540 match ("sections", gfc_match_omp_sections, ST_OMP_SECTIONS);
541 match ("section", gfc_match_omp_eos, ST_OMP_SECTION);
542 match ("single", gfc_match_omp_single, ST_OMP_SINGLE);
543 break;
544 case 't':
545 match ("task", gfc_match_omp_task, ST_OMP_TASK);
546 match ("taskwait", gfc_match_omp_taskwait, ST_OMP_TASKWAIT);
547 match ("threadprivate", gfc_match_omp_threadprivate,
548 ST_OMP_THREADPRIVATE);
549 case 'w':
550 match ("workshare", gfc_match_omp_workshare, ST_OMP_WORKSHARE);
551 break;
554 /* All else has failed, so give up. See if any of the matchers has
555 stored an error message of some sort. */
557 if (gfc_error_check () == 0)
558 gfc_error_now ("Unclassifiable OpenMP directive at %C");
560 reject_statement ();
562 gfc_error_recovery ();
564 return ST_NONE;
567 #undef match
570 /* Get the next statement in free form source. */
572 static gfc_statement
573 next_free (void)
575 match m;
576 int i, cnt, at_bol;
577 char c;
579 at_bol = gfc_at_bol ();
580 gfc_gobble_whitespace ();
582 c = gfc_peek_ascii_char ();
584 if (ISDIGIT (c))
586 char d;
588 /* Found a statement label? */
589 m = gfc_match_st_label (&gfc_statement_label);
591 d = gfc_peek_ascii_char ();
592 if (m != MATCH_YES || !gfc_is_whitespace (d))
594 gfc_match_small_literal_int (&i, &cnt);
596 if (cnt > 5)
597 gfc_error_now ("Too many digits in statement label at %C");
599 if (i == 0)
600 gfc_error_now ("Zero is not a valid statement label at %C");
603 c = gfc_next_ascii_char ();
604 while (ISDIGIT(c));
606 if (!gfc_is_whitespace (c))
607 gfc_error_now ("Non-numeric character in statement label at %C");
609 return ST_NONE;
611 else
613 label_locus = gfc_current_locus;
615 gfc_gobble_whitespace ();
617 if (at_bol && gfc_peek_ascii_char () == ';')
619 gfc_error_now ("Semicolon at %C needs to be preceded by "
620 "statement");
621 gfc_next_ascii_char (); /* Eat up the semicolon. */
622 return ST_NONE;
625 if (gfc_match_eos () == MATCH_YES)
627 gfc_warning_now ("Ignoring statement label in empty statement "
628 "at %C");
629 gfc_free_st_label (gfc_statement_label);
630 gfc_statement_label = NULL;
631 return ST_NONE;
635 else if (c == '!')
637 /* Comments have already been skipped by the time we get here,
638 except for OpenMP directives. */
639 if (gfc_option.flag_openmp)
641 int i;
643 c = gfc_next_ascii_char ();
644 for (i = 0; i < 5; i++, c = gfc_next_ascii_char ())
645 gcc_assert (c == "!$omp"[i]);
647 gcc_assert (c == ' ' || c == '\t');
648 gfc_gobble_whitespace ();
649 return decode_omp_directive ();
653 if (at_bol && c == ';')
655 gfc_error_now ("Semicolon at %C needs to be preceded by statement");
656 gfc_next_ascii_char (); /* Eat up the semicolon. */
657 return ST_NONE;
660 return decode_statement ();
664 /* Get the next statement in fixed-form source. */
666 static gfc_statement
667 next_fixed (void)
669 int label, digit_flag, i;
670 locus loc;
671 gfc_char_t c;
673 if (!gfc_at_bol ())
674 return decode_statement ();
676 /* Skip past the current label field, parsing a statement label if
677 one is there. This is a weird number parser, since the number is
678 contained within five columns and can have any kind of embedded
679 spaces. We also check for characters that make the rest of the
680 line a comment. */
682 label = 0;
683 digit_flag = 0;
685 for (i = 0; i < 5; i++)
687 c = gfc_next_char_literal (0);
689 switch (c)
691 case ' ':
692 break;
694 case '0':
695 case '1':
696 case '2':
697 case '3':
698 case '4':
699 case '5':
700 case '6':
701 case '7':
702 case '8':
703 case '9':
704 label = label * 10 + ((unsigned char) c - '0');
705 label_locus = gfc_current_locus;
706 digit_flag = 1;
707 break;
709 /* Comments have already been skipped by the time we get
710 here, except for OpenMP directives. */
711 case '*':
712 if (gfc_option.flag_openmp)
714 for (i = 0; i < 5; i++, c = gfc_next_char_literal (0))
715 gcc_assert ((char) gfc_wide_tolower (c) == "*$omp"[i]);
717 if (c != ' ' && c != '0')
719 gfc_buffer_error (0);
720 gfc_error ("Bad continuation line at %C");
721 return ST_NONE;
724 return decode_omp_directive ();
726 /* FALLTHROUGH */
728 /* Comments have already been skipped by the time we get
729 here so don't bother checking for them. */
731 default:
732 gfc_buffer_error (0);
733 gfc_error ("Non-numeric character in statement label at %C");
734 return ST_NONE;
738 if (digit_flag)
740 if (label == 0)
741 gfc_warning_now ("Zero is not a valid statement label at %C");
742 else
744 /* We've found a valid statement label. */
745 gfc_statement_label = gfc_get_st_label (label);
749 /* Since this line starts a statement, it cannot be a continuation
750 of a previous statement. If we see something here besides a
751 space or zero, it must be a bad continuation line. */
753 c = gfc_next_char_literal (0);
754 if (c == '\n')
755 goto blank_line;
757 if (c != ' ' && c != '0')
759 gfc_buffer_error (0);
760 gfc_error ("Bad continuation line at %C");
761 return ST_NONE;
764 /* Now that we've taken care of the statement label columns, we have
765 to make sure that the first nonblank character is not a '!'. If
766 it is, the rest of the line is a comment. */
770 loc = gfc_current_locus;
771 c = gfc_next_char_literal (0);
773 while (gfc_is_whitespace (c));
775 if (c == '!')
776 goto blank_line;
777 gfc_current_locus = loc;
779 if (c == ';')
781 gfc_error_now ("Semicolon at %C needs to be preceded by statement");
782 return ST_NONE;
785 if (gfc_match_eos () == MATCH_YES)
786 goto blank_line;
788 /* At this point, we've got a nonblank statement to parse. */
789 return decode_statement ();
791 blank_line:
792 if (digit_flag)
793 gfc_warning ("Ignoring statement label in empty statement at %C");
794 gfc_advance_line ();
795 return ST_NONE;
799 /* Return the next non-ST_NONE statement to the caller. We also worry
800 about including files and the ends of include files at this stage. */
802 static gfc_statement
803 next_statement (void)
805 gfc_statement st;
806 locus old_locus;
807 gfc_new_block = NULL;
809 for (;;)
811 gfc_statement_label = NULL;
812 gfc_buffer_error (1);
814 if (gfc_at_eol ())
816 if ((gfc_option.warn_line_truncation || gfc_current_form == FORM_FREE)
817 && gfc_current_locus.lb
818 && gfc_current_locus.lb->truncated)
819 gfc_warning_now ("Line truncated at %C");
821 gfc_advance_line ();
824 gfc_skip_comments ();
826 if (gfc_at_end ())
828 st = ST_NONE;
829 break;
832 if (gfc_define_undef_line ())
833 continue;
835 old_locus = gfc_current_locus;
837 st = (gfc_current_form == FORM_FIXED) ? next_fixed () : next_free ();
839 if (st != ST_NONE)
840 break;
843 gfc_buffer_error (0);
845 if (st == ST_GET_FCN_CHARACTERISTICS && gfc_statement_label != NULL)
847 gfc_free_st_label (gfc_statement_label);
848 gfc_statement_label = NULL;
849 gfc_current_locus = old_locus;
852 if (st != ST_NONE)
853 check_statement_label (st);
855 return st;
859 /****************************** Parser ***********************************/
861 /* The parser subroutines are of type 'try' that fail if the file ends
862 unexpectedly. */
864 /* Macros that expand to case-labels for various classes of
865 statements. Start with executable statements that directly do
866 things. */
868 #define case_executable case ST_ALLOCATE: case ST_BACKSPACE: case ST_CALL: \
869 case ST_CLOSE: case ST_CONTINUE: case ST_DEALLOCATE: case ST_END_FILE: \
870 case ST_GOTO: case ST_INQUIRE: case ST_NULLIFY: case ST_OPEN: \
871 case ST_READ: case ST_RETURN: case ST_REWIND: case ST_SIMPLE_IF: \
872 case ST_PAUSE: case ST_STOP: case ST_WAIT: case ST_WRITE: \
873 case ST_POINTER_ASSIGNMENT: case ST_EXIT: case ST_CYCLE: \
874 case ST_ASSIGNMENT: case ST_ARITHMETIC_IF: case ST_WHERE: case ST_FORALL: \
875 case ST_LABEL_ASSIGNMENT: case ST_FLUSH: case ST_OMP_FLUSH: \
876 case ST_OMP_BARRIER: case ST_OMP_TASKWAIT
878 /* Statements that mark other executable statements. */
880 #define case_exec_markers case ST_DO: case ST_FORALL_BLOCK: case ST_IF_BLOCK: \
881 case ST_WHERE_BLOCK: case ST_SELECT_CASE: case ST_OMP_PARALLEL: \
882 case ST_OMP_PARALLEL_SECTIONS: case ST_OMP_SECTIONS: case ST_OMP_ORDERED: \
883 case ST_OMP_CRITICAL: case ST_OMP_MASTER: case ST_OMP_SINGLE: \
884 case ST_OMP_DO: case ST_OMP_PARALLEL_DO: case ST_OMP_ATOMIC: \
885 case ST_OMP_WORKSHARE: case ST_OMP_PARALLEL_WORKSHARE: \
886 case ST_OMP_TASK
888 /* Declaration statements */
890 #define case_decl case ST_ATTR_DECL: case ST_COMMON: case ST_DATA_DECL: \
891 case ST_EQUIVALENCE: case ST_NAMELIST: case ST_STATEMENT_FUNCTION: \
892 case ST_TYPE: case ST_INTERFACE: case ST_OMP_THREADPRIVATE: \
893 case ST_PROCEDURE
895 /* Block end statements. Errors associated with interchanging these
896 are detected in gfc_match_end(). */
898 #define case_end case ST_END_BLOCK_DATA: case ST_END_FUNCTION: \
899 case ST_END_PROGRAM: case ST_END_SUBROUTINE
902 /* Push a new state onto the stack. */
904 static void
905 push_state (gfc_state_data *p, gfc_compile_state new_state, gfc_symbol *sym)
907 p->state = new_state;
908 p->previous = gfc_state_stack;
909 p->sym = sym;
910 p->head = p->tail = NULL;
911 p->do_variable = NULL;
912 gfc_state_stack = p;
916 /* Pop the current state. */
917 static void
918 pop_state (void)
920 gfc_state_stack = gfc_state_stack->previous;
924 /* Try to find the given state in the state stack. */
927 gfc_find_state (gfc_compile_state state)
929 gfc_state_data *p;
931 for (p = gfc_state_stack; p; p = p->previous)
932 if (p->state == state)
933 break;
935 return (p == NULL) ? FAILURE : SUCCESS;
939 /* Starts a new level in the statement list. */
941 static gfc_code *
942 new_level (gfc_code *q)
944 gfc_code *p;
946 p = q->block = gfc_get_code ();
948 gfc_state_stack->head = gfc_state_stack->tail = p;
950 return p;
954 /* Add the current new_st code structure and adds it to the current
955 program unit. As a side-effect, it zeroes the new_st. */
957 static gfc_code *
958 add_statement (void)
960 gfc_code *p;
962 p = gfc_get_code ();
963 *p = new_st;
965 p->loc = gfc_current_locus;
967 if (gfc_state_stack->head == NULL)
968 gfc_state_stack->head = p;
969 else
970 gfc_state_stack->tail->next = p;
972 while (p->next != NULL)
973 p = p->next;
975 gfc_state_stack->tail = p;
977 gfc_clear_new_st ();
979 return p;
983 /* Frees everything associated with the current statement. */
985 static void
986 undo_new_statement (void)
988 gfc_free_statements (new_st.block);
989 gfc_free_statements (new_st.next);
990 gfc_free_statement (&new_st);
991 gfc_clear_new_st ();
995 /* If the current statement has a statement label, make sure that it
996 is allowed to, or should have one. */
998 static void
999 check_statement_label (gfc_statement st)
1001 gfc_sl_type type;
1003 if (gfc_statement_label == NULL)
1005 if (st == ST_FORMAT)
1006 gfc_error ("FORMAT statement at %L does not have a statement label",
1007 &new_st.loc);
1008 return;
1011 switch (st)
1013 case ST_END_PROGRAM:
1014 case ST_END_FUNCTION:
1015 case ST_END_SUBROUTINE:
1016 case ST_ENDDO:
1017 case ST_ENDIF:
1018 case ST_END_SELECT:
1019 case_executable:
1020 case_exec_markers:
1021 type = ST_LABEL_TARGET;
1022 break;
1024 case ST_FORMAT:
1025 type = ST_LABEL_FORMAT;
1026 break;
1028 /* Statement labels are not restricted from appearing on a
1029 particular line. However, there are plenty of situations
1030 where the resulting label can't be referenced. */
1032 default:
1033 type = ST_LABEL_BAD_TARGET;
1034 break;
1037 gfc_define_st_label (gfc_statement_label, type, &label_locus);
1039 new_st.here = gfc_statement_label;
1043 /* Figures out what the enclosing program unit is. This will be a
1044 function, subroutine, program, block data or module. */
1046 gfc_state_data *
1047 gfc_enclosing_unit (gfc_compile_state * result)
1049 gfc_state_data *p;
1051 for (p = gfc_state_stack; p; p = p->previous)
1052 if (p->state == COMP_FUNCTION || p->state == COMP_SUBROUTINE
1053 || p->state == COMP_MODULE || p->state == COMP_BLOCK_DATA
1054 || p->state == COMP_PROGRAM)
1057 if (result != NULL)
1058 *result = p->state;
1059 return p;
1062 if (result != NULL)
1063 *result = COMP_PROGRAM;
1064 return NULL;
1068 /* Translate a statement enum to a string. */
1070 const char *
1071 gfc_ascii_statement (gfc_statement st)
1073 const char *p;
1075 switch (st)
1077 case ST_ARITHMETIC_IF:
1078 p = _("arithmetic IF");
1079 break;
1080 case ST_ALLOCATE:
1081 p = "ALLOCATE";
1082 break;
1083 case ST_ATTR_DECL:
1084 p = _("attribute declaration");
1085 break;
1086 case ST_BACKSPACE:
1087 p = "BACKSPACE";
1088 break;
1089 case ST_BLOCK_DATA:
1090 p = "BLOCK DATA";
1091 break;
1092 case ST_CALL:
1093 p = "CALL";
1094 break;
1095 case ST_CASE:
1096 p = "CASE";
1097 break;
1098 case ST_CLOSE:
1099 p = "CLOSE";
1100 break;
1101 case ST_COMMON:
1102 p = "COMMON";
1103 break;
1104 case ST_CONTINUE:
1105 p = "CONTINUE";
1106 break;
1107 case ST_CONTAINS:
1108 p = "CONTAINS";
1109 break;
1110 case ST_CYCLE:
1111 p = "CYCLE";
1112 break;
1113 case ST_DATA_DECL:
1114 p = _("data declaration");
1115 break;
1116 case ST_DATA:
1117 p = "DATA";
1118 break;
1119 case ST_DEALLOCATE:
1120 p = "DEALLOCATE";
1121 break;
1122 case ST_DERIVED_DECL:
1123 p = _("derived type declaration");
1124 break;
1125 case ST_DO:
1126 p = "DO";
1127 break;
1128 case ST_ELSE:
1129 p = "ELSE";
1130 break;
1131 case ST_ELSEIF:
1132 p = "ELSE IF";
1133 break;
1134 case ST_ELSEWHERE:
1135 p = "ELSEWHERE";
1136 break;
1137 case ST_END_BLOCK_DATA:
1138 p = "END BLOCK DATA";
1139 break;
1140 case ST_ENDDO:
1141 p = "END DO";
1142 break;
1143 case ST_END_FILE:
1144 p = "END FILE";
1145 break;
1146 case ST_END_FORALL:
1147 p = "END FORALL";
1148 break;
1149 case ST_END_FUNCTION:
1150 p = "END FUNCTION";
1151 break;
1152 case ST_ENDIF:
1153 p = "END IF";
1154 break;
1155 case ST_END_INTERFACE:
1156 p = "END INTERFACE";
1157 break;
1158 case ST_END_MODULE:
1159 p = "END MODULE";
1160 break;
1161 case ST_END_PROGRAM:
1162 p = "END PROGRAM";
1163 break;
1164 case ST_END_SELECT:
1165 p = "END SELECT";
1166 break;
1167 case ST_END_SUBROUTINE:
1168 p = "END SUBROUTINE";
1169 break;
1170 case ST_END_WHERE:
1171 p = "END WHERE";
1172 break;
1173 case ST_END_TYPE:
1174 p = "END TYPE";
1175 break;
1176 case ST_ENTRY:
1177 p = "ENTRY";
1178 break;
1179 case ST_EQUIVALENCE:
1180 p = "EQUIVALENCE";
1181 break;
1182 case ST_EXIT:
1183 p = "EXIT";
1184 break;
1185 case ST_FLUSH:
1186 p = "FLUSH";
1187 break;
1188 case ST_FORALL_BLOCK: /* Fall through */
1189 case ST_FORALL:
1190 p = "FORALL";
1191 break;
1192 case ST_FORMAT:
1193 p = "FORMAT";
1194 break;
1195 case ST_FUNCTION:
1196 p = "FUNCTION";
1197 break;
1198 case ST_GOTO:
1199 p = "GOTO";
1200 break;
1201 case ST_IF_BLOCK:
1202 p = _("block IF");
1203 break;
1204 case ST_IMPLICIT:
1205 p = "IMPLICIT";
1206 break;
1207 case ST_IMPLICIT_NONE:
1208 p = "IMPLICIT NONE";
1209 break;
1210 case ST_IMPLIED_ENDDO:
1211 p = _("implied END DO");
1212 break;
1213 case ST_IMPORT:
1214 p = "IMPORT";
1215 break;
1216 case ST_INQUIRE:
1217 p = "INQUIRE";
1218 break;
1219 case ST_INTERFACE:
1220 p = "INTERFACE";
1221 break;
1222 case ST_PARAMETER:
1223 p = "PARAMETER";
1224 break;
1225 case ST_PRIVATE:
1226 p = "PRIVATE";
1227 break;
1228 case ST_PUBLIC:
1229 p = "PUBLIC";
1230 break;
1231 case ST_MODULE:
1232 p = "MODULE";
1233 break;
1234 case ST_PAUSE:
1235 p = "PAUSE";
1236 break;
1237 case ST_MODULE_PROC:
1238 p = "MODULE PROCEDURE";
1239 break;
1240 case ST_NAMELIST:
1241 p = "NAMELIST";
1242 break;
1243 case ST_NULLIFY:
1244 p = "NULLIFY";
1245 break;
1246 case ST_OPEN:
1247 p = "OPEN";
1248 break;
1249 case ST_PROGRAM:
1250 p = "PROGRAM";
1251 break;
1252 case ST_PROCEDURE:
1253 p = "PROCEDURE";
1254 break;
1255 case ST_READ:
1256 p = "READ";
1257 break;
1258 case ST_RETURN:
1259 p = "RETURN";
1260 break;
1261 case ST_REWIND:
1262 p = "REWIND";
1263 break;
1264 case ST_STOP:
1265 p = "STOP";
1266 break;
1267 case ST_SUBROUTINE:
1268 p = "SUBROUTINE";
1269 break;
1270 case ST_TYPE:
1271 p = "TYPE";
1272 break;
1273 case ST_USE:
1274 p = "USE";
1275 break;
1276 case ST_WHERE_BLOCK: /* Fall through */
1277 case ST_WHERE:
1278 p = "WHERE";
1279 break;
1280 case ST_WAIT:
1281 p = "WAIT";
1282 break;
1283 case ST_WRITE:
1284 p = "WRITE";
1285 break;
1286 case ST_ASSIGNMENT:
1287 p = _("assignment");
1288 break;
1289 case ST_POINTER_ASSIGNMENT:
1290 p = _("pointer assignment");
1291 break;
1292 case ST_SELECT_CASE:
1293 p = "SELECT CASE";
1294 break;
1295 case ST_SEQUENCE:
1296 p = "SEQUENCE";
1297 break;
1298 case ST_SIMPLE_IF:
1299 p = _("simple IF");
1300 break;
1301 case ST_STATEMENT_FUNCTION:
1302 p = "STATEMENT FUNCTION";
1303 break;
1304 case ST_LABEL_ASSIGNMENT:
1305 p = "LABEL ASSIGNMENT";
1306 break;
1307 case ST_ENUM:
1308 p = "ENUM DEFINITION";
1309 break;
1310 case ST_ENUMERATOR:
1311 p = "ENUMERATOR DEFINITION";
1312 break;
1313 case ST_END_ENUM:
1314 p = "END ENUM";
1315 break;
1316 case ST_OMP_ATOMIC:
1317 p = "!$OMP ATOMIC";
1318 break;
1319 case ST_OMP_BARRIER:
1320 p = "!$OMP BARRIER";
1321 break;
1322 case ST_OMP_CRITICAL:
1323 p = "!$OMP CRITICAL";
1324 break;
1325 case ST_OMP_DO:
1326 p = "!$OMP DO";
1327 break;
1328 case ST_OMP_END_CRITICAL:
1329 p = "!$OMP END CRITICAL";
1330 break;
1331 case ST_OMP_END_DO:
1332 p = "!$OMP END DO";
1333 break;
1334 case ST_OMP_END_MASTER:
1335 p = "!$OMP END MASTER";
1336 break;
1337 case ST_OMP_END_ORDERED:
1338 p = "!$OMP END ORDERED";
1339 break;
1340 case ST_OMP_END_PARALLEL:
1341 p = "!$OMP END PARALLEL";
1342 break;
1343 case ST_OMP_END_PARALLEL_DO:
1344 p = "!$OMP END PARALLEL DO";
1345 break;
1346 case ST_OMP_END_PARALLEL_SECTIONS:
1347 p = "!$OMP END PARALLEL SECTIONS";
1348 break;
1349 case ST_OMP_END_PARALLEL_WORKSHARE:
1350 p = "!$OMP END PARALLEL WORKSHARE";
1351 break;
1352 case ST_OMP_END_SECTIONS:
1353 p = "!$OMP END SECTIONS";
1354 break;
1355 case ST_OMP_END_SINGLE:
1356 p = "!$OMP END SINGLE";
1357 break;
1358 case ST_OMP_END_TASK:
1359 p = "!$OMP END TASK";
1360 break;
1361 case ST_OMP_END_WORKSHARE:
1362 p = "!$OMP END WORKSHARE";
1363 break;
1364 case ST_OMP_FLUSH:
1365 p = "!$OMP FLUSH";
1366 break;
1367 case ST_OMP_MASTER:
1368 p = "!$OMP MASTER";
1369 break;
1370 case ST_OMP_ORDERED:
1371 p = "!$OMP ORDERED";
1372 break;
1373 case ST_OMP_PARALLEL:
1374 p = "!$OMP PARALLEL";
1375 break;
1376 case ST_OMP_PARALLEL_DO:
1377 p = "!$OMP PARALLEL DO";
1378 break;
1379 case ST_OMP_PARALLEL_SECTIONS:
1380 p = "!$OMP PARALLEL SECTIONS";
1381 break;
1382 case ST_OMP_PARALLEL_WORKSHARE:
1383 p = "!$OMP PARALLEL WORKSHARE";
1384 break;
1385 case ST_OMP_SECTIONS:
1386 p = "!$OMP SECTIONS";
1387 break;
1388 case ST_OMP_SECTION:
1389 p = "!$OMP SECTION";
1390 break;
1391 case ST_OMP_SINGLE:
1392 p = "!$OMP SINGLE";
1393 break;
1394 case ST_OMP_TASK:
1395 p = "!$OMP TASK";
1396 break;
1397 case ST_OMP_TASKWAIT:
1398 p = "!$OMP TASKWAIT";
1399 break;
1400 case ST_OMP_THREADPRIVATE:
1401 p = "!$OMP THREADPRIVATE";
1402 break;
1403 case ST_OMP_WORKSHARE:
1404 p = "!$OMP WORKSHARE";
1405 break;
1406 default:
1407 gfc_internal_error ("gfc_ascii_statement(): Bad statement code");
1410 return p;
1414 /* Create a symbol for the main program and assign it to ns->proc_name. */
1416 static void
1417 main_program_symbol (gfc_namespace *ns, const char *name)
1419 gfc_symbol *main_program;
1420 symbol_attribute attr;
1422 gfc_get_symbol (name, ns, &main_program);
1423 gfc_clear_attr (&attr);
1424 attr.flavor = FL_PROGRAM;
1425 attr.proc = PROC_UNKNOWN;
1426 attr.subroutine = 1;
1427 attr.access = ACCESS_PUBLIC;
1428 attr.is_main_program = 1;
1429 main_program->attr = attr;
1430 main_program->declared_at = gfc_current_locus;
1431 ns->proc_name = main_program;
1432 gfc_commit_symbols ();
1436 /* Do whatever is necessary to accept the last statement. */
1438 static void
1439 accept_statement (gfc_statement st)
1441 switch (st)
1443 case ST_USE:
1444 gfc_use_module ();
1445 break;
1447 case ST_IMPLICIT_NONE:
1448 gfc_set_implicit_none ();
1449 break;
1451 case ST_IMPLICIT:
1452 break;
1454 case ST_FUNCTION:
1455 case ST_SUBROUTINE:
1456 case ST_MODULE:
1457 gfc_current_ns->proc_name = gfc_new_block;
1458 break;
1460 /* If the statement is the end of a block, lay down a special code
1461 that allows a branch to the end of the block from within the
1462 construct. */
1464 case ST_ENDIF:
1465 case ST_END_SELECT:
1466 if (gfc_statement_label != NULL)
1468 new_st.op = EXEC_NOP;
1469 add_statement ();
1472 break;
1474 /* The end-of-program unit statements do not get the special
1475 marker and require a statement of some sort if they are a
1476 branch target. */
1478 case ST_END_PROGRAM:
1479 case ST_END_FUNCTION:
1480 case ST_END_SUBROUTINE:
1481 if (gfc_statement_label != NULL)
1483 new_st.op = EXEC_RETURN;
1484 add_statement ();
1487 break;
1489 case ST_ENTRY:
1490 case_executable:
1491 case_exec_markers:
1492 add_statement ();
1493 break;
1495 default:
1496 break;
1499 gfc_commit_symbols ();
1500 gfc_warning_check ();
1501 gfc_clear_new_st ();
1505 /* Undo anything tentative that has been built for the current
1506 statement. */
1508 static void
1509 reject_statement (void)
1511 gfc_new_block = NULL;
1512 gfc_undo_symbols ();
1513 gfc_clear_warning ();
1514 undo_new_statement ();
1518 /* Generic complaint about an out of order statement. We also do
1519 whatever is necessary to clean up. */
1521 static void
1522 unexpected_statement (gfc_statement st)
1524 gfc_error ("Unexpected %s statement at %C", gfc_ascii_statement (st));
1526 reject_statement ();
1530 /* Given the next statement seen by the matcher, make sure that it is
1531 in proper order with the last. This subroutine is initialized by
1532 calling it with an argument of ST_NONE. If there is a problem, we
1533 issue an error and return FAILURE. Otherwise we return SUCCESS.
1535 Individual parsers need to verify that the statements seen are
1536 valid before calling here, ie ENTRY statements are not allowed in
1537 INTERFACE blocks. The following diagram is taken from the standard:
1539 +---------------------------------------+
1540 | program subroutine function module |
1541 +---------------------------------------+
1542 | use |
1543 +---------------------------------------+
1544 | import |
1545 +---------------------------------------+
1546 | | implicit none |
1547 | +-----------+------------------+
1548 | | parameter | implicit |
1549 | +-----------+------------------+
1550 | format | | derived type |
1551 | entry | parameter | interface |
1552 | | data | specification |
1553 | | | statement func |
1554 | +-----------+------------------+
1555 | | data | executable |
1556 +--------+-----------+------------------+
1557 | contains |
1558 +---------------------------------------+
1559 | internal module/subprogram |
1560 +---------------------------------------+
1561 | end |
1562 +---------------------------------------+
1566 typedef struct
1568 enum
1569 { ORDER_START, ORDER_USE, ORDER_IMPORT, ORDER_IMPLICIT_NONE,
1570 ORDER_IMPLICIT, ORDER_SPEC, ORDER_EXEC
1572 state;
1573 gfc_statement last_statement;
1574 locus where;
1576 st_state;
1578 static try
1579 verify_st_order (st_state *p, gfc_statement st)
1582 switch (st)
1584 case ST_NONE:
1585 p->state = ORDER_START;
1586 break;
1588 case ST_USE:
1589 if (p->state > ORDER_USE)
1590 goto order;
1591 p->state = ORDER_USE;
1592 break;
1594 case ST_IMPORT:
1595 if (p->state > ORDER_IMPORT)
1596 goto order;
1597 p->state = ORDER_IMPORT;
1598 break;
1600 case ST_IMPLICIT_NONE:
1601 if (p->state > ORDER_IMPLICIT_NONE)
1602 goto order;
1604 /* The '>' sign cannot be a '>=', because a FORMAT or ENTRY
1605 statement disqualifies a USE but not an IMPLICIT NONE.
1606 Duplicate IMPLICIT NONEs are caught when the implicit types
1607 are set. */
1609 p->state = ORDER_IMPLICIT_NONE;
1610 break;
1612 case ST_IMPLICIT:
1613 if (p->state > ORDER_IMPLICIT)
1614 goto order;
1615 p->state = ORDER_IMPLICIT;
1616 break;
1618 case ST_FORMAT:
1619 case ST_ENTRY:
1620 if (p->state < ORDER_IMPLICIT_NONE)
1621 p->state = ORDER_IMPLICIT_NONE;
1622 break;
1624 case ST_PARAMETER:
1625 if (p->state >= ORDER_EXEC)
1626 goto order;
1627 if (p->state < ORDER_IMPLICIT)
1628 p->state = ORDER_IMPLICIT;
1629 break;
1631 case ST_DATA:
1632 if (p->state < ORDER_SPEC)
1633 p->state = ORDER_SPEC;
1634 break;
1636 case ST_PUBLIC:
1637 case ST_PRIVATE:
1638 case ST_DERIVED_DECL:
1639 case_decl:
1640 if (p->state >= ORDER_EXEC)
1641 goto order;
1642 if (p->state < ORDER_SPEC)
1643 p->state = ORDER_SPEC;
1644 break;
1646 case_executable:
1647 case_exec_markers:
1648 if (p->state < ORDER_EXEC)
1649 p->state = ORDER_EXEC;
1650 break;
1652 default:
1653 gfc_internal_error ("Unexpected %s statement in verify_st_order() at %C",
1654 gfc_ascii_statement (st));
1657 /* All is well, record the statement in case we need it next time. */
1658 p->where = gfc_current_locus;
1659 p->last_statement = st;
1660 return SUCCESS;
1662 order:
1663 gfc_error ("%s statement at %C cannot follow %s statement at %L",
1664 gfc_ascii_statement (st),
1665 gfc_ascii_statement (p->last_statement), &p->where);
1667 return FAILURE;
1671 /* Handle an unexpected end of file. This is a show-stopper... */
1673 static void unexpected_eof (void) ATTRIBUTE_NORETURN;
1675 static void
1676 unexpected_eof (void)
1678 gfc_state_data *p;
1680 gfc_error ("Unexpected end of file in '%s'", gfc_source_file);
1682 /* Memory cleanup. Move to "second to last". */
1683 for (p = gfc_state_stack; p && p->previous && p->previous->previous;
1684 p = p->previous);
1686 gfc_current_ns->code = (p && p->previous) ? p->head : NULL;
1687 gfc_done_2 ();
1689 longjmp (eof_buf, 1);
1693 /* Parse a derived type. */
1695 static void
1696 parse_derived (void)
1698 int compiling_type, seen_private, seen_sequence, seen_component, error_flag;
1699 int seen_contains, seen_contains_comp;
1700 gfc_statement st;
1701 gfc_state_data s;
1702 gfc_symbol *derived_sym = NULL;
1703 gfc_symbol *sym;
1704 gfc_component *c;
1706 error_flag = 0;
1708 accept_statement (ST_DERIVED_DECL);
1709 push_state (&s, COMP_DERIVED, gfc_new_block);
1711 gfc_new_block->component_access = ACCESS_PUBLIC;
1712 seen_private = 0;
1713 seen_sequence = 0;
1714 seen_component = 0;
1715 seen_contains = 0;
1716 seen_contains_comp = 0;
1718 compiling_type = 1;
1720 while (compiling_type)
1722 st = next_statement ();
1723 switch (st)
1725 case ST_NONE:
1726 unexpected_eof ();
1728 case ST_DATA_DECL:
1729 case ST_PROCEDURE:
1730 if (seen_contains)
1732 gfc_error ("Components in TYPE at %C must precede CONTAINS");
1733 error_flag = 1;
1736 accept_statement (st);
1737 seen_component = 1;
1738 break;
1740 case ST_FINAL:
1741 if (!seen_contains)
1743 gfc_error ("FINAL declaration at %C must be inside CONTAINS");
1744 error_flag = 1;
1747 if (gfc_notify_std (GFC_STD_F2003,
1748 "Fortran 2003: FINAL procedure declaration"
1749 " at %C") == FAILURE)
1750 error_flag = 1;
1752 accept_statement (ST_FINAL);
1753 seen_contains_comp = 1;
1754 break;
1756 case ST_END_TYPE:
1757 compiling_type = 0;
1759 if (!seen_component
1760 && (gfc_notify_std (GFC_STD_F2003, "Fortran 2003: Derived type "
1761 "definition at %C without components")
1762 == FAILURE))
1763 error_flag = 1;
1765 if (seen_contains && !seen_contains_comp
1766 && (gfc_notify_std (GFC_STD_F2008, "Fortran 2008: Derived type "
1767 "definition at %C with empty CONTAINS "
1768 "section") == FAILURE))
1769 error_flag = 1;
1771 accept_statement (ST_END_TYPE);
1772 break;
1774 case ST_PRIVATE:
1775 if (seen_contains)
1777 gfc_error ("PRIVATE statement at %C must precede CONTAINS");
1778 error_flag = 1;
1781 if (gfc_find_state (COMP_MODULE) == FAILURE)
1783 gfc_error ("PRIVATE statement in TYPE at %C must be inside "
1784 "a MODULE");
1785 error_flag = 1;
1786 break;
1789 if (seen_component)
1791 gfc_error ("PRIVATE statement at %C must precede "
1792 "structure components");
1793 error_flag = 1;
1794 break;
1797 if (seen_private)
1799 gfc_error ("Duplicate PRIVATE statement at %C");
1800 error_flag = 1;
1803 s.sym->component_access = ACCESS_PRIVATE;
1804 accept_statement (ST_PRIVATE);
1805 seen_private = 1;
1806 break;
1808 case ST_SEQUENCE:
1809 if (seen_contains)
1811 gfc_error ("SEQUENCE statement at %C must precede CONTAINS");
1812 error_flag = 1;
1815 if (seen_component)
1817 gfc_error ("SEQUENCE statement at %C must precede "
1818 "structure components");
1819 error_flag = 1;
1820 break;
1823 if (gfc_current_block ()->attr.sequence)
1824 gfc_warning ("SEQUENCE attribute at %C already specified in "
1825 "TYPE statement");
1827 if (seen_sequence)
1829 gfc_error ("Duplicate SEQUENCE statement at %C");
1830 error_flag = 1;
1833 seen_sequence = 1;
1834 gfc_add_sequence (&gfc_current_block ()->attr,
1835 gfc_current_block ()->name, NULL);
1836 break;
1838 case ST_CONTAINS:
1839 if (gfc_notify_std (GFC_STD_F2003,
1840 "Fortran 2003: CONTAINS block in derived type"
1841 " definition at %C") == FAILURE)
1842 error_flag = 1;
1844 if (seen_contains)
1846 gfc_error ("Already inside a CONTAINS block at %C");
1847 error_flag = 1;
1850 seen_contains = 1;
1851 accept_statement (ST_CONTAINS);
1852 break;
1854 default:
1855 unexpected_statement (st);
1856 break;
1860 /* need to verify that all fields of the derived type are
1861 * interoperable with C if the type is declared to be bind(c)
1863 derived_sym = gfc_current_block();
1865 sym = gfc_current_block ();
1866 for (c = sym->components; c; c = c->next)
1868 /* Look for allocatable components. */
1869 if (c->allocatable
1870 || (c->ts.type == BT_DERIVED && c->ts.derived->attr.alloc_comp))
1872 sym->attr.alloc_comp = 1;
1873 break;
1876 /* Look for pointer components. */
1877 if (c->pointer
1878 || (c->ts.type == BT_DERIVED && c->ts.derived->attr.pointer_comp))
1880 sym->attr.pointer_comp = 1;
1881 break;
1884 /* Look for private components. */
1885 if (sym->component_access == ACCESS_PRIVATE
1886 || c->access == ACCESS_PRIVATE
1887 || (c->ts.type == BT_DERIVED && c->ts.derived->attr.private_comp))
1889 sym->attr.private_comp = 1;
1890 break;
1894 if (!seen_component)
1895 sym->attr.zero_comp = 1;
1897 pop_state ();
1901 /* Parse an ENUM. */
1903 static void
1904 parse_enum (void)
1906 int error_flag;
1907 gfc_statement st;
1908 int compiling_enum;
1909 gfc_state_data s;
1910 int seen_enumerator = 0;
1912 error_flag = 0;
1914 push_state (&s, COMP_ENUM, gfc_new_block);
1916 compiling_enum = 1;
1918 while (compiling_enum)
1920 st = next_statement ();
1921 switch (st)
1923 case ST_NONE:
1924 unexpected_eof ();
1925 break;
1927 case ST_ENUMERATOR:
1928 seen_enumerator = 1;
1929 accept_statement (st);
1930 break;
1932 case ST_END_ENUM:
1933 compiling_enum = 0;
1934 if (!seen_enumerator)
1936 gfc_error ("ENUM declaration at %C has no ENUMERATORS");
1937 error_flag = 1;
1939 accept_statement (st);
1940 break;
1942 default:
1943 gfc_free_enum_history ();
1944 unexpected_statement (st);
1945 break;
1948 pop_state ();
1952 /* Parse an interface. We must be able to deal with the possibility
1953 of recursive interfaces. The parse_spec() subroutine is mutually
1954 recursive with parse_interface(). */
1956 static gfc_statement parse_spec (gfc_statement);
1958 static void
1959 parse_interface (void)
1961 gfc_compile_state new_state, current_state;
1962 gfc_symbol *prog_unit, *sym;
1963 gfc_interface_info save;
1964 gfc_state_data s1, s2;
1965 gfc_statement st;
1966 locus proc_locus;
1968 accept_statement (ST_INTERFACE);
1970 current_interface.ns = gfc_current_ns;
1971 save = current_interface;
1973 sym = (current_interface.type == INTERFACE_GENERIC
1974 || current_interface.type == INTERFACE_USER_OP)
1975 ? gfc_new_block : NULL;
1977 push_state (&s1, COMP_INTERFACE, sym);
1978 current_state = COMP_NONE;
1980 loop:
1981 gfc_current_ns = gfc_get_namespace (current_interface.ns, 0);
1983 st = next_statement ();
1984 switch (st)
1986 case ST_NONE:
1987 unexpected_eof ();
1989 case ST_SUBROUTINE:
1990 case ST_FUNCTION:
1991 if (st == ST_SUBROUTINE)
1992 new_state = COMP_SUBROUTINE;
1993 else if (st == ST_FUNCTION)
1994 new_state = COMP_FUNCTION;
1995 if (gfc_add_explicit_interface (gfc_new_block, IFSRC_IFBODY,
1996 gfc_new_block->formal, NULL) == FAILURE)
1998 reject_statement ();
1999 gfc_free_namespace (gfc_current_ns);
2000 goto loop;
2002 if (current_interface.type != INTERFACE_ABSTRACT &&
2003 !gfc_new_block->attr.dummy &&
2004 gfc_add_external (&gfc_new_block->attr, &gfc_current_locus) == FAILURE)
2006 reject_statement ();
2007 gfc_free_namespace (gfc_current_ns);
2008 goto loop;
2010 break;
2012 case ST_PROCEDURE:
2013 case ST_MODULE_PROC: /* The module procedure matcher makes
2014 sure the context is correct. */
2015 accept_statement (st);
2016 gfc_free_namespace (gfc_current_ns);
2017 goto loop;
2019 case ST_END_INTERFACE:
2020 gfc_free_namespace (gfc_current_ns);
2021 gfc_current_ns = current_interface.ns;
2022 goto done;
2024 default:
2025 gfc_error ("Unexpected %s statement in INTERFACE block at %C",
2026 gfc_ascii_statement (st));
2027 reject_statement ();
2028 gfc_free_namespace (gfc_current_ns);
2029 goto loop;
2033 /* Make sure that a generic interface has only subroutines or
2034 functions and that the generic name has the right attribute. */
2035 if (current_interface.type == INTERFACE_GENERIC)
2037 if (current_state == COMP_NONE)
2039 if (new_state == COMP_FUNCTION)
2040 gfc_add_function (&sym->attr, sym->name, NULL);
2041 else if (new_state == COMP_SUBROUTINE)
2042 gfc_add_subroutine (&sym->attr, sym->name, NULL);
2044 current_state = new_state;
2046 else
2048 if (new_state != current_state)
2050 if (new_state == COMP_SUBROUTINE)
2051 gfc_error ("SUBROUTINE at %C does not belong in a "
2052 "generic function interface");
2054 if (new_state == COMP_FUNCTION)
2055 gfc_error ("FUNCTION at %C does not belong in a "
2056 "generic subroutine interface");
2061 if (current_interface.type == INTERFACE_ABSTRACT)
2063 gfc_new_block->attr.abstract = 1;
2064 if (gfc_is_intrinsic_typename (gfc_new_block->name))
2065 gfc_error ("Name '%s' of ABSTRACT INTERFACE at %C "
2066 "cannot be the same as an intrinsic type",
2067 gfc_new_block->name);
2070 push_state (&s2, new_state, gfc_new_block);
2071 accept_statement (st);
2072 prog_unit = gfc_new_block;
2073 prog_unit->formal_ns = gfc_current_ns;
2074 proc_locus = gfc_current_locus;
2076 decl:
2077 /* Read data declaration statements. */
2078 st = parse_spec (ST_NONE);
2080 /* Since the interface block does not permit an IMPLICIT statement,
2081 the default type for the function or the result must be taken
2082 from the formal namespace. */
2083 if (new_state == COMP_FUNCTION)
2085 if (prog_unit->result == prog_unit
2086 && prog_unit->ts.type == BT_UNKNOWN)
2087 gfc_set_default_type (prog_unit, 1, prog_unit->formal_ns);
2088 else if (prog_unit->result != prog_unit
2089 && prog_unit->result->ts.type == BT_UNKNOWN)
2090 gfc_set_default_type (prog_unit->result, 1,
2091 prog_unit->formal_ns);
2094 if (st != ST_END_SUBROUTINE && st != ST_END_FUNCTION)
2096 gfc_error ("Unexpected %s statement at %C in INTERFACE body",
2097 gfc_ascii_statement (st));
2098 reject_statement ();
2099 goto decl;
2102 current_interface = save;
2103 gfc_add_interface (prog_unit);
2104 pop_state ();
2106 if (current_interface.ns
2107 && current_interface.ns->proc_name
2108 && strcmp (current_interface.ns->proc_name->name,
2109 prog_unit->name) == 0)
2110 gfc_error ("INTERFACE procedure '%s' at %L has the same name as the "
2111 "enclosing procedure", prog_unit->name, &proc_locus);
2113 goto loop;
2115 done:
2116 pop_state ();
2120 /* Associate function characteristics by going back to the function
2121 declaration and rematching the prefix. */
2123 static match
2124 match_deferred_characteristics (gfc_typespec * ts)
2126 locus loc;
2127 match m = MATCH_ERROR;
2128 char name[GFC_MAX_SYMBOL_LEN + 1];
2130 loc = gfc_current_locus;
2132 gfc_current_locus = gfc_current_block ()->declared_at;
2134 gfc_clear_error ();
2135 gfc_buffer_error (1);
2136 m = gfc_match_prefix (ts);
2137 gfc_buffer_error (0);
2139 if (ts->type == BT_DERIVED)
2141 ts->kind = 0;
2143 if (!ts->derived || !ts->derived->components)
2144 m = MATCH_ERROR;
2147 /* Only permit one go at the characteristic association. */
2148 if (ts->kind == -1)
2149 ts->kind = 0;
2151 /* Set the function locus correctly. If we have not found the
2152 function name, there is an error. */
2153 gfc_match ("function% %n", name);
2154 if (m == MATCH_YES && strcmp (name, gfc_current_block ()->name) == 0)
2156 gfc_current_block ()->declared_at = gfc_current_locus;
2157 gfc_commit_symbols ();
2159 else
2160 gfc_error_check ();
2162 gfc_current_locus =loc;
2163 return m;
2167 /* Parse a set of specification statements. Returns the statement
2168 that doesn't fit. */
2170 static gfc_statement
2171 parse_spec (gfc_statement st)
2173 st_state ss;
2174 bool bad_characteristic = false;
2175 gfc_typespec *ts;
2177 verify_st_order (&ss, ST_NONE);
2178 if (st == ST_NONE)
2179 st = next_statement ();
2181 loop:
2182 switch (st)
2184 case ST_NONE:
2185 unexpected_eof ();
2187 case ST_FORMAT:
2188 case ST_ENTRY:
2189 case ST_DATA: /* Not allowed in interfaces */
2190 if (gfc_current_state () == COMP_INTERFACE)
2191 break;
2193 /* Fall through */
2195 case ST_USE:
2196 case ST_IMPORT:
2197 case ST_IMPLICIT_NONE:
2198 case ST_IMPLICIT:
2199 case ST_PARAMETER:
2200 case ST_PUBLIC:
2201 case ST_PRIVATE:
2202 case ST_DERIVED_DECL:
2203 case_decl:
2204 if (verify_st_order (&ss, st) == FAILURE)
2206 reject_statement ();
2207 st = next_statement ();
2208 goto loop;
2211 switch (st)
2213 case ST_INTERFACE:
2214 parse_interface ();
2215 break;
2217 case ST_DERIVED_DECL:
2218 parse_derived ();
2219 break;
2221 case ST_PUBLIC:
2222 case ST_PRIVATE:
2223 if (gfc_current_state () != COMP_MODULE)
2225 gfc_error ("%s statement must appear in a MODULE",
2226 gfc_ascii_statement (st));
2227 break;
2230 if (gfc_current_ns->default_access != ACCESS_UNKNOWN)
2232 gfc_error ("%s statement at %C follows another accessibility "
2233 "specification", gfc_ascii_statement (st));
2234 break;
2237 gfc_current_ns->default_access = (st == ST_PUBLIC)
2238 ? ACCESS_PUBLIC : ACCESS_PRIVATE;
2240 break;
2242 case ST_STATEMENT_FUNCTION:
2243 if (gfc_current_state () == COMP_MODULE)
2245 unexpected_statement (st);
2246 break;
2249 default:
2250 break;
2253 accept_statement (st);
2254 st = next_statement ();
2255 goto loop;
2257 case ST_ENUM:
2258 accept_statement (st);
2259 parse_enum();
2260 st = next_statement ();
2261 goto loop;
2263 case ST_GET_FCN_CHARACTERISTICS:
2264 /* This statement triggers the association of a function's result
2265 characteristics. */
2266 ts = &gfc_current_block ()->result->ts;
2267 if (match_deferred_characteristics (ts) != MATCH_YES)
2268 bad_characteristic = true;
2270 st = next_statement ();
2271 goto loop;
2273 default:
2274 break;
2277 /* If match_deferred_characteristics failed, then there is an error. */
2278 if (bad_characteristic)
2280 ts = &gfc_current_block ()->result->ts;
2281 if (ts->type != BT_DERIVED)
2282 gfc_error ("Bad kind expression for function '%s' at %L",
2283 gfc_current_block ()->name,
2284 &gfc_current_block ()->declared_at);
2285 else
2286 gfc_error ("The type for function '%s' at %L is not accessible",
2287 gfc_current_block ()->name,
2288 &gfc_current_block ()->declared_at);
2290 gfc_current_block ()->ts.kind = 0;
2291 /* Keep the derived type; if it's bad, it will be discovered later. */
2292 if (!(ts->type == BT_DERIVED && ts->derived))
2293 ts->type = BT_UNKNOWN;
2296 return st;
2300 /* Parse a WHERE block, (not a simple WHERE statement). */
2302 static void
2303 parse_where_block (void)
2305 int seen_empty_else;
2306 gfc_code *top, *d;
2307 gfc_state_data s;
2308 gfc_statement st;
2310 accept_statement (ST_WHERE_BLOCK);
2311 top = gfc_state_stack->tail;
2313 push_state (&s, COMP_WHERE, gfc_new_block);
2315 d = add_statement ();
2316 d->expr = top->expr;
2317 d->op = EXEC_WHERE;
2319 top->expr = NULL;
2320 top->block = d;
2322 seen_empty_else = 0;
2326 st = next_statement ();
2327 switch (st)
2329 case ST_NONE:
2330 unexpected_eof ();
2332 case ST_WHERE_BLOCK:
2333 parse_where_block ();
2334 break;
2336 case ST_ASSIGNMENT:
2337 case ST_WHERE:
2338 accept_statement (st);
2339 break;
2341 case ST_ELSEWHERE:
2342 if (seen_empty_else)
2344 gfc_error ("ELSEWHERE statement at %C follows previous "
2345 "unmasked ELSEWHERE");
2346 break;
2349 if (new_st.expr == NULL)
2350 seen_empty_else = 1;
2352 d = new_level (gfc_state_stack->head);
2353 d->op = EXEC_WHERE;
2354 d->expr = new_st.expr;
2356 accept_statement (st);
2358 break;
2360 case ST_END_WHERE:
2361 accept_statement (st);
2362 break;
2364 default:
2365 gfc_error ("Unexpected %s statement in WHERE block at %C",
2366 gfc_ascii_statement (st));
2367 reject_statement ();
2368 break;
2371 while (st != ST_END_WHERE);
2373 pop_state ();
2377 /* Parse a FORALL block (not a simple FORALL statement). */
2379 static void
2380 parse_forall_block (void)
2382 gfc_code *top, *d;
2383 gfc_state_data s;
2384 gfc_statement st;
2386 accept_statement (ST_FORALL_BLOCK);
2387 top = gfc_state_stack->tail;
2389 push_state (&s, COMP_FORALL, gfc_new_block);
2391 d = add_statement ();
2392 d->op = EXEC_FORALL;
2393 top->block = d;
2397 st = next_statement ();
2398 switch (st)
2401 case ST_ASSIGNMENT:
2402 case ST_POINTER_ASSIGNMENT:
2403 case ST_WHERE:
2404 case ST_FORALL:
2405 accept_statement (st);
2406 break;
2408 case ST_WHERE_BLOCK:
2409 parse_where_block ();
2410 break;
2412 case ST_FORALL_BLOCK:
2413 parse_forall_block ();
2414 break;
2416 case ST_END_FORALL:
2417 accept_statement (st);
2418 break;
2420 case ST_NONE:
2421 unexpected_eof ();
2423 default:
2424 gfc_error ("Unexpected %s statement in FORALL block at %C",
2425 gfc_ascii_statement (st));
2427 reject_statement ();
2428 break;
2431 while (st != ST_END_FORALL);
2433 pop_state ();
2437 static gfc_statement parse_executable (gfc_statement);
2439 /* parse the statements of an IF-THEN-ELSEIF-ELSE-ENDIF block. */
2441 static void
2442 parse_if_block (void)
2444 gfc_code *top, *d;
2445 gfc_statement st;
2446 locus else_locus;
2447 gfc_state_data s;
2448 int seen_else;
2450 seen_else = 0;
2451 accept_statement (ST_IF_BLOCK);
2453 top = gfc_state_stack->tail;
2454 push_state (&s, COMP_IF, gfc_new_block);
2456 new_st.op = EXEC_IF;
2457 d = add_statement ();
2459 d->expr = top->expr;
2460 top->expr = NULL;
2461 top->block = d;
2465 st = parse_executable (ST_NONE);
2467 switch (st)
2469 case ST_NONE:
2470 unexpected_eof ();
2472 case ST_ELSEIF:
2473 if (seen_else)
2475 gfc_error ("ELSE IF statement at %C cannot follow ELSE "
2476 "statement at %L", &else_locus);
2478 reject_statement ();
2479 break;
2482 d = new_level (gfc_state_stack->head);
2483 d->op = EXEC_IF;
2484 d->expr = new_st.expr;
2486 accept_statement (st);
2488 break;
2490 case ST_ELSE:
2491 if (seen_else)
2493 gfc_error ("Duplicate ELSE statements at %L and %C",
2494 &else_locus);
2495 reject_statement ();
2496 break;
2499 seen_else = 1;
2500 else_locus = gfc_current_locus;
2502 d = new_level (gfc_state_stack->head);
2503 d->op = EXEC_IF;
2505 accept_statement (st);
2507 break;
2509 case ST_ENDIF:
2510 break;
2512 default:
2513 unexpected_statement (st);
2514 break;
2517 while (st != ST_ENDIF);
2519 pop_state ();
2520 accept_statement (st);
2524 /* Parse a SELECT block. */
2526 static void
2527 parse_select_block (void)
2529 gfc_statement st;
2530 gfc_code *cp;
2531 gfc_state_data s;
2533 accept_statement (ST_SELECT_CASE);
2535 cp = gfc_state_stack->tail;
2536 push_state (&s, COMP_SELECT, gfc_new_block);
2538 /* Make sure that the next statement is a CASE or END SELECT. */
2539 for (;;)
2541 st = next_statement ();
2542 if (st == ST_NONE)
2543 unexpected_eof ();
2544 if (st == ST_END_SELECT)
2546 /* Empty SELECT CASE is OK. */
2547 accept_statement (st);
2548 pop_state ();
2549 return;
2551 if (st == ST_CASE)
2552 break;
2554 gfc_error ("Expected a CASE or END SELECT statement following SELECT "
2555 "CASE at %C");
2557 reject_statement ();
2560 /* At this point, we're got a nonempty select block. */
2561 cp = new_level (cp);
2562 *cp = new_st;
2564 accept_statement (st);
2568 st = parse_executable (ST_NONE);
2569 switch (st)
2571 case ST_NONE:
2572 unexpected_eof ();
2574 case ST_CASE:
2575 cp = new_level (gfc_state_stack->head);
2576 *cp = new_st;
2577 gfc_clear_new_st ();
2579 accept_statement (st);
2580 /* Fall through */
2582 case ST_END_SELECT:
2583 break;
2585 /* Can't have an executable statement because of
2586 parse_executable(). */
2587 default:
2588 unexpected_statement (st);
2589 break;
2592 while (st != ST_END_SELECT);
2594 pop_state ();
2595 accept_statement (st);
2599 /* Given a symbol, make sure it is not an iteration variable for a DO
2600 statement. This subroutine is called when the symbol is seen in a
2601 context that causes it to become redefined. If the symbol is an
2602 iterator, we generate an error message and return nonzero. */
2604 int
2605 gfc_check_do_variable (gfc_symtree *st)
2607 gfc_state_data *s;
2609 for (s=gfc_state_stack; s; s = s->previous)
2610 if (s->do_variable == st)
2612 gfc_error_now("Variable '%s' at %C cannot be redefined inside "
2613 "loop beginning at %L", st->name, &s->head->loc);
2614 return 1;
2617 return 0;
2621 /* Checks to see if the current statement label closes an enddo.
2622 Returns 0 if not, 1 if closes an ENDDO correctly, or 2 (and issues
2623 an error) if it incorrectly closes an ENDDO. */
2625 static int
2626 check_do_closure (void)
2628 gfc_state_data *p;
2630 if (gfc_statement_label == NULL)
2631 return 0;
2633 for (p = gfc_state_stack; p; p = p->previous)
2634 if (p->state == COMP_DO)
2635 break;
2637 if (p == NULL)
2638 return 0; /* No loops to close */
2640 if (p->ext.end_do_label == gfc_statement_label)
2643 if (p == gfc_state_stack)
2644 return 1;
2646 gfc_error ("End of nonblock DO statement at %C is within another block");
2647 return 2;
2650 /* At this point, the label doesn't terminate the innermost loop.
2651 Make sure it doesn't terminate another one. */
2652 for (; p; p = p->previous)
2653 if (p->state == COMP_DO && p->ext.end_do_label == gfc_statement_label)
2655 gfc_error ("End of nonblock DO statement at %C is interwoven "
2656 "with another DO loop");
2657 return 2;
2660 return 0;
2664 /* Parse a DO loop. Note that the ST_CYCLE and ST_EXIT statements are
2665 handled inside of parse_executable(), because they aren't really
2666 loop statements. */
2668 static void
2669 parse_do_block (void)
2671 gfc_statement st;
2672 gfc_code *top;
2673 gfc_state_data s;
2674 gfc_symtree *stree;
2676 s.ext.end_do_label = new_st.label;
2678 if (new_st.ext.iterator != NULL)
2679 stree = new_st.ext.iterator->var->symtree;
2680 else
2681 stree = NULL;
2683 accept_statement (ST_DO);
2685 top = gfc_state_stack->tail;
2686 push_state (&s, COMP_DO, gfc_new_block);
2688 s.do_variable = stree;
2690 top->block = new_level (top);
2691 top->block->op = EXEC_DO;
2693 loop:
2694 st = parse_executable (ST_NONE);
2696 switch (st)
2698 case ST_NONE:
2699 unexpected_eof ();
2701 case ST_ENDDO:
2702 if (s.ext.end_do_label != NULL
2703 && s.ext.end_do_label != gfc_statement_label)
2704 gfc_error_now ("Statement label in ENDDO at %C doesn't match "
2705 "DO label");
2707 if (gfc_statement_label != NULL)
2709 new_st.op = EXEC_NOP;
2710 add_statement ();
2712 break;
2714 case ST_IMPLIED_ENDDO:
2715 /* If the do-stmt of this DO construct has a do-construct-name,
2716 the corresponding end-do must be an end-do-stmt (with a matching
2717 name, but in that case we must have seen ST_ENDDO first).
2718 We only complain about this in pedantic mode. */
2719 if (gfc_current_block () != NULL)
2720 gfc_error_now ("named block DO at %L requires matching ENDDO name",
2721 &gfc_current_block()->declared_at);
2723 break;
2725 default:
2726 unexpected_statement (st);
2727 goto loop;
2730 pop_state ();
2731 accept_statement (st);
2735 /* Parse the statements of OpenMP do/parallel do. */
2737 static gfc_statement
2738 parse_omp_do (gfc_statement omp_st)
2740 gfc_statement st;
2741 gfc_code *cp, *np;
2742 gfc_state_data s;
2744 accept_statement (omp_st);
2746 cp = gfc_state_stack->tail;
2747 push_state (&s, COMP_OMP_STRUCTURED_BLOCK, NULL);
2748 np = new_level (cp);
2749 np->op = cp->op;
2750 np->block = NULL;
2752 for (;;)
2754 st = next_statement ();
2755 if (st == ST_NONE)
2756 unexpected_eof ();
2757 else if (st == ST_DO)
2758 break;
2759 else
2760 unexpected_statement (st);
2763 parse_do_block ();
2764 if (gfc_statement_label != NULL
2765 && gfc_state_stack->previous != NULL
2766 && gfc_state_stack->previous->state == COMP_DO
2767 && gfc_state_stack->previous->ext.end_do_label == gfc_statement_label)
2769 /* In
2770 DO 100 I=1,10
2771 !$OMP DO
2772 DO J=1,10
2774 100 CONTINUE
2775 there should be no !$OMP END DO. */
2776 pop_state ();
2777 return ST_IMPLIED_ENDDO;
2780 check_do_closure ();
2781 pop_state ();
2783 st = next_statement ();
2784 if (st == (omp_st == ST_OMP_DO ? ST_OMP_END_DO : ST_OMP_END_PARALLEL_DO))
2786 if (new_st.op == EXEC_OMP_END_NOWAIT)
2787 cp->ext.omp_clauses->nowait |= new_st.ext.omp_bool;
2788 else
2789 gcc_assert (new_st.op == EXEC_NOP);
2790 gfc_clear_new_st ();
2791 gfc_commit_symbols ();
2792 gfc_warning_check ();
2793 st = next_statement ();
2795 return st;
2799 /* Parse the statements of OpenMP atomic directive. */
2801 static void
2802 parse_omp_atomic (void)
2804 gfc_statement st;
2805 gfc_code *cp, *np;
2806 gfc_state_data s;
2808 accept_statement (ST_OMP_ATOMIC);
2810 cp = gfc_state_stack->tail;
2811 push_state (&s, COMP_OMP_STRUCTURED_BLOCK, NULL);
2812 np = new_level (cp);
2813 np->op = cp->op;
2814 np->block = NULL;
2816 for (;;)
2818 st = next_statement ();
2819 if (st == ST_NONE)
2820 unexpected_eof ();
2821 else if (st == ST_ASSIGNMENT)
2822 break;
2823 else
2824 unexpected_statement (st);
2827 accept_statement (st);
2829 pop_state ();
2833 /* Parse the statements of an OpenMP structured block. */
2835 static void
2836 parse_omp_structured_block (gfc_statement omp_st, bool workshare_stmts_only)
2838 gfc_statement st, omp_end_st;
2839 gfc_code *cp, *np;
2840 gfc_state_data s;
2842 accept_statement (omp_st);
2844 cp = gfc_state_stack->tail;
2845 push_state (&s, COMP_OMP_STRUCTURED_BLOCK, NULL);
2846 np = new_level (cp);
2847 np->op = cp->op;
2848 np->block = NULL;
2850 switch (omp_st)
2852 case ST_OMP_PARALLEL:
2853 omp_end_st = ST_OMP_END_PARALLEL;
2854 break;
2855 case ST_OMP_PARALLEL_SECTIONS:
2856 omp_end_st = ST_OMP_END_PARALLEL_SECTIONS;
2857 break;
2858 case ST_OMP_SECTIONS:
2859 omp_end_st = ST_OMP_END_SECTIONS;
2860 break;
2861 case ST_OMP_ORDERED:
2862 omp_end_st = ST_OMP_END_ORDERED;
2863 break;
2864 case ST_OMP_CRITICAL:
2865 omp_end_st = ST_OMP_END_CRITICAL;
2866 break;
2867 case ST_OMP_MASTER:
2868 omp_end_st = ST_OMP_END_MASTER;
2869 break;
2870 case ST_OMP_SINGLE:
2871 omp_end_st = ST_OMP_END_SINGLE;
2872 break;
2873 case ST_OMP_TASK:
2874 omp_end_st = ST_OMP_END_TASK;
2875 break;
2876 case ST_OMP_WORKSHARE:
2877 omp_end_st = ST_OMP_END_WORKSHARE;
2878 break;
2879 case ST_OMP_PARALLEL_WORKSHARE:
2880 omp_end_st = ST_OMP_END_PARALLEL_WORKSHARE;
2881 break;
2882 default:
2883 gcc_unreachable ();
2888 if (workshare_stmts_only)
2890 /* Inside of !$omp workshare, only
2891 scalar assignments
2892 array assignments
2893 where statements and constructs
2894 forall statements and constructs
2895 !$omp atomic
2896 !$omp critical
2897 !$omp parallel
2898 are allowed. For !$omp critical these
2899 restrictions apply recursively. */
2900 bool cycle = true;
2902 st = next_statement ();
2903 for (;;)
2905 switch (st)
2907 case ST_NONE:
2908 unexpected_eof ();
2910 case ST_ASSIGNMENT:
2911 case ST_WHERE:
2912 case ST_FORALL:
2913 accept_statement (st);
2914 break;
2916 case ST_WHERE_BLOCK:
2917 parse_where_block ();
2918 break;
2920 case ST_FORALL_BLOCK:
2921 parse_forall_block ();
2922 break;
2924 case ST_OMP_PARALLEL:
2925 case ST_OMP_PARALLEL_SECTIONS:
2926 parse_omp_structured_block (st, false);
2927 break;
2929 case ST_OMP_PARALLEL_WORKSHARE:
2930 case ST_OMP_CRITICAL:
2931 parse_omp_structured_block (st, true);
2932 break;
2934 case ST_OMP_PARALLEL_DO:
2935 st = parse_omp_do (st);
2936 continue;
2938 case ST_OMP_ATOMIC:
2939 parse_omp_atomic ();
2940 break;
2942 default:
2943 cycle = false;
2944 break;
2947 if (!cycle)
2948 break;
2950 st = next_statement ();
2953 else
2954 st = parse_executable (ST_NONE);
2955 if (st == ST_NONE)
2956 unexpected_eof ();
2957 else if (st == ST_OMP_SECTION
2958 && (omp_st == ST_OMP_SECTIONS
2959 || omp_st == ST_OMP_PARALLEL_SECTIONS))
2961 np = new_level (np);
2962 np->op = cp->op;
2963 np->block = NULL;
2965 else if (st != omp_end_st)
2966 unexpected_statement (st);
2968 while (st != omp_end_st);
2970 switch (new_st.op)
2972 case EXEC_OMP_END_NOWAIT:
2973 cp->ext.omp_clauses->nowait |= new_st.ext.omp_bool;
2974 break;
2975 case EXEC_OMP_CRITICAL:
2976 if (((cp->ext.omp_name == NULL) ^ (new_st.ext.omp_name == NULL))
2977 || (new_st.ext.omp_name != NULL
2978 && strcmp (cp->ext.omp_name, new_st.ext.omp_name) != 0))
2979 gfc_error ("Name after !$omp critical and !$omp end critical does "
2980 "not match at %C");
2981 gfc_free (CONST_CAST (char *, new_st.ext.omp_name));
2982 break;
2983 case EXEC_OMP_END_SINGLE:
2984 cp->ext.omp_clauses->lists[OMP_LIST_COPYPRIVATE]
2985 = new_st.ext.omp_clauses->lists[OMP_LIST_COPYPRIVATE];
2986 new_st.ext.omp_clauses->lists[OMP_LIST_COPYPRIVATE] = NULL;
2987 gfc_free_omp_clauses (new_st.ext.omp_clauses);
2988 break;
2989 case EXEC_NOP:
2990 break;
2991 default:
2992 gcc_unreachable ();
2995 gfc_clear_new_st ();
2996 gfc_commit_symbols ();
2997 gfc_warning_check ();
2998 pop_state ();
3002 /* Accept a series of executable statements. We return the first
3003 statement that doesn't fit to the caller. Any block statements are
3004 passed on to the correct handler, which usually passes the buck
3005 right back here. */
3007 static gfc_statement
3008 parse_executable (gfc_statement st)
3010 int close_flag;
3012 if (st == ST_NONE)
3013 st = next_statement ();
3015 for (;;)
3017 close_flag = check_do_closure ();
3018 if (close_flag)
3019 switch (st)
3021 case ST_GOTO:
3022 case ST_END_PROGRAM:
3023 case ST_RETURN:
3024 case ST_EXIT:
3025 case ST_END_FUNCTION:
3026 case ST_CYCLE:
3027 case ST_PAUSE:
3028 case ST_STOP:
3029 case ST_END_SUBROUTINE:
3031 case ST_DO:
3032 case ST_FORALL:
3033 case ST_WHERE:
3034 case ST_SELECT_CASE:
3035 gfc_error ("%s statement at %C cannot terminate a non-block "
3036 "DO loop", gfc_ascii_statement (st));
3037 break;
3039 default:
3040 break;
3043 switch (st)
3045 case ST_NONE:
3046 unexpected_eof ();
3048 case ST_FORMAT:
3049 case ST_DATA:
3050 case ST_ENTRY:
3051 case_executable:
3052 accept_statement (st);
3053 if (close_flag == 1)
3054 return ST_IMPLIED_ENDDO;
3055 break;
3057 case ST_IF_BLOCK:
3058 parse_if_block ();
3059 break;
3061 case ST_SELECT_CASE:
3062 parse_select_block ();
3063 break;
3065 case ST_DO:
3066 parse_do_block ();
3067 if (check_do_closure () == 1)
3068 return ST_IMPLIED_ENDDO;
3069 break;
3071 case ST_WHERE_BLOCK:
3072 parse_where_block ();
3073 break;
3075 case ST_FORALL_BLOCK:
3076 parse_forall_block ();
3077 break;
3079 case ST_OMP_PARALLEL:
3080 case ST_OMP_PARALLEL_SECTIONS:
3081 case ST_OMP_SECTIONS:
3082 case ST_OMP_ORDERED:
3083 case ST_OMP_CRITICAL:
3084 case ST_OMP_MASTER:
3085 case ST_OMP_SINGLE:
3086 case ST_OMP_TASK:
3087 parse_omp_structured_block (st, false);
3088 break;
3090 case ST_OMP_WORKSHARE:
3091 case ST_OMP_PARALLEL_WORKSHARE:
3092 parse_omp_structured_block (st, true);
3093 break;
3095 case ST_OMP_DO:
3096 case ST_OMP_PARALLEL_DO:
3097 st = parse_omp_do (st);
3098 if (st == ST_IMPLIED_ENDDO)
3099 return st;
3100 continue;
3102 case ST_OMP_ATOMIC:
3103 parse_omp_atomic ();
3104 break;
3106 default:
3107 return st;
3110 st = next_statement ();
3115 /* Parse a series of contained program units. */
3117 static void parse_progunit (gfc_statement);
3120 /* Fix the symbols for sibling functions. These are incorrectly added to
3121 the child namespace as the parser didn't know about this procedure. */
3123 static void
3124 gfc_fixup_sibling_symbols (gfc_symbol *sym, gfc_namespace *siblings)
3126 gfc_namespace *ns;
3127 gfc_symtree *st;
3128 gfc_symbol *old_sym;
3130 sym->attr.referenced = 1;
3131 for (ns = siblings; ns; ns = ns->sibling)
3133 gfc_find_sym_tree (sym->name, ns, 0, &st);
3135 if (!st || (st->n.sym->attr.dummy && ns == st->n.sym->ns))
3136 continue;
3138 old_sym = st->n.sym;
3139 if (old_sym->ns == ns
3140 && !old_sym->attr.contained
3142 /* By 14.6.1.3, host association should be excluded
3143 for the following. */
3144 && !(old_sym->attr.external
3145 || (old_sym->ts.type != BT_UNKNOWN
3146 && !old_sym->attr.implicit_type)
3147 || old_sym->attr.flavor == FL_PARAMETER
3148 || old_sym->attr.in_common
3149 || old_sym->attr.in_equivalence
3150 || old_sym->attr.data
3151 || old_sym->attr.dummy
3152 || old_sym->attr.result
3153 || old_sym->attr.dimension
3154 || old_sym->attr.allocatable
3155 || old_sym->attr.intrinsic
3156 || old_sym->attr.generic
3157 || old_sym->attr.flavor == FL_NAMELIST
3158 || old_sym->attr.proc == PROC_ST_FUNCTION))
3160 /* Replace it with the symbol from the parent namespace. */
3161 st->n.sym = sym;
3162 sym->refs++;
3164 /* Free the old (local) symbol. */
3165 old_sym->refs--;
3166 if (old_sym->refs == 0)
3167 gfc_free_symbol (old_sym);
3170 /* Do the same for any contained procedures. */
3171 gfc_fixup_sibling_symbols (sym, ns->contained);
3175 static void
3176 parse_contained (int module)
3178 gfc_namespace *ns, *parent_ns, *tmp;
3179 gfc_state_data s1, s2;
3180 gfc_statement st;
3181 gfc_symbol *sym;
3182 gfc_entry_list *el;
3183 int contains_statements = 0;
3184 int seen_error = 0;
3186 push_state (&s1, COMP_CONTAINS, NULL);
3187 parent_ns = gfc_current_ns;
3191 gfc_current_ns = gfc_get_namespace (parent_ns, 1);
3193 gfc_current_ns->sibling = parent_ns->contained;
3194 parent_ns->contained = gfc_current_ns;
3196 next:
3197 /* Process the next available statement. We come here if we got an error
3198 and rejected the last statement. */
3199 st = next_statement ();
3201 switch (st)
3203 case ST_NONE:
3204 unexpected_eof ();
3206 case ST_FUNCTION:
3207 case ST_SUBROUTINE:
3208 contains_statements = 1;
3209 accept_statement (st);
3211 push_state (&s2,
3212 (st == ST_FUNCTION) ? COMP_FUNCTION : COMP_SUBROUTINE,
3213 gfc_new_block);
3215 /* For internal procedures, create/update the symbol in the
3216 parent namespace. */
3218 if (!module)
3220 if (gfc_get_symbol (gfc_new_block->name, parent_ns, &sym))
3221 gfc_error ("Contained procedure '%s' at %C is already "
3222 "ambiguous", gfc_new_block->name);
3223 else
3225 if (gfc_add_procedure (&sym->attr, PROC_INTERNAL, sym->name,
3226 &gfc_new_block->declared_at) ==
3227 SUCCESS)
3229 if (st == ST_FUNCTION)
3230 gfc_add_function (&sym->attr, sym->name,
3231 &gfc_new_block->declared_at);
3232 else
3233 gfc_add_subroutine (&sym->attr, sym->name,
3234 &gfc_new_block->declared_at);
3238 gfc_commit_symbols ();
3240 else
3241 sym = gfc_new_block;
3243 /* Mark this as a contained function, so it isn't replaced
3244 by other module functions. */
3245 sym->attr.contained = 1;
3246 sym->attr.referenced = 1;
3248 parse_progunit (ST_NONE);
3250 /* Fix up any sibling functions that refer to this one. */
3251 gfc_fixup_sibling_symbols (sym, gfc_current_ns);
3252 /* Or refer to any of its alternate entry points. */
3253 for (el = gfc_current_ns->entries; el; el = el->next)
3254 gfc_fixup_sibling_symbols (el->sym, gfc_current_ns);
3256 gfc_current_ns->code = s2.head;
3257 gfc_current_ns = parent_ns;
3259 pop_state ();
3260 break;
3262 /* These statements are associated with the end of the host unit. */
3263 case ST_END_FUNCTION:
3264 case ST_END_MODULE:
3265 case ST_END_PROGRAM:
3266 case ST_END_SUBROUTINE:
3267 accept_statement (st);
3268 break;
3270 default:
3271 gfc_error ("Unexpected %s statement in CONTAINS section at %C",
3272 gfc_ascii_statement (st));
3273 reject_statement ();
3274 seen_error = 1;
3275 goto next;
3276 break;
3279 while (st != ST_END_FUNCTION && st != ST_END_SUBROUTINE
3280 && st != ST_END_MODULE && st != ST_END_PROGRAM);
3282 /* The first namespace in the list is guaranteed to not have
3283 anything (worthwhile) in it. */
3284 tmp = gfc_current_ns;
3285 gfc_current_ns = parent_ns;
3286 if (seen_error && tmp->refs > 1)
3287 gfc_free_namespace (tmp);
3289 ns = gfc_current_ns->contained;
3290 gfc_current_ns->contained = ns->sibling;
3291 gfc_free_namespace (ns);
3293 pop_state ();
3294 if (!contains_statements)
3295 gfc_notify_std (GFC_STD_F2008, "Fortran 2008: CONTAINS statement without "
3296 "FUNCTION or SUBROUTINE statement at %C");
3300 /* Parse a PROGRAM, SUBROUTINE or FUNCTION unit. */
3302 static void
3303 parse_progunit (gfc_statement st)
3305 gfc_state_data *p;
3306 int n;
3308 st = parse_spec (st);
3309 switch (st)
3311 case ST_NONE:
3312 unexpected_eof ();
3314 case ST_CONTAINS:
3315 goto contains;
3317 case_end:
3318 accept_statement (st);
3319 goto done;
3321 default:
3322 break;
3325 if (gfc_current_state () == COMP_FUNCTION)
3326 gfc_check_function_type (gfc_current_ns);
3328 loop:
3329 for (;;)
3331 st = parse_executable (st);
3333 switch (st)
3335 case ST_NONE:
3336 unexpected_eof ();
3338 case ST_CONTAINS:
3339 goto contains;
3341 case_end:
3342 accept_statement (st);
3343 goto done;
3345 default:
3346 break;
3349 unexpected_statement (st);
3350 reject_statement ();
3351 st = next_statement ();
3354 contains:
3355 n = 0;
3357 for (p = gfc_state_stack; p; p = p->previous)
3358 if (p->state == COMP_CONTAINS)
3359 n++;
3361 if (gfc_find_state (COMP_MODULE) == SUCCESS)
3362 n--;
3364 if (n > 0)
3366 gfc_error ("CONTAINS statement at %C is already in a contained "
3367 "program unit");
3368 st = next_statement ();
3369 goto loop;
3372 parse_contained (0);
3374 done:
3375 gfc_current_ns->code = gfc_state_stack->head;
3379 /* Come here to complain about a global symbol already in use as
3380 something else. */
3382 void
3383 gfc_global_used (gfc_gsymbol *sym, locus *where)
3385 const char *name;
3387 if (where == NULL)
3388 where = &gfc_current_locus;
3390 switch(sym->type)
3392 case GSYM_PROGRAM:
3393 name = "PROGRAM";
3394 break;
3395 case GSYM_FUNCTION:
3396 name = "FUNCTION";
3397 break;
3398 case GSYM_SUBROUTINE:
3399 name = "SUBROUTINE";
3400 break;
3401 case GSYM_COMMON:
3402 name = "COMMON";
3403 break;
3404 case GSYM_BLOCK_DATA:
3405 name = "BLOCK DATA";
3406 break;
3407 case GSYM_MODULE:
3408 name = "MODULE";
3409 break;
3410 default:
3411 gfc_internal_error ("gfc_gsymbol_type(): Bad type");
3412 name = NULL;
3415 gfc_error("Global name '%s' at %L is already being used as a %s at %L",
3416 sym->name, where, name, &sym->where);
3420 /* Parse a block data program unit. */
3422 static void
3423 parse_block_data (void)
3425 gfc_statement st;
3426 static locus blank_locus;
3427 static int blank_block=0;
3428 gfc_gsymbol *s;
3430 gfc_current_ns->proc_name = gfc_new_block;
3431 gfc_current_ns->is_block_data = 1;
3433 if (gfc_new_block == NULL)
3435 if (blank_block)
3436 gfc_error ("Blank BLOCK DATA at %C conflicts with "
3437 "prior BLOCK DATA at %L", &blank_locus);
3438 else
3440 blank_block = 1;
3441 blank_locus = gfc_current_locus;
3444 else
3446 s = gfc_get_gsymbol (gfc_new_block->name);
3447 if (s->defined
3448 || (s->type != GSYM_UNKNOWN && s->type != GSYM_BLOCK_DATA))
3449 gfc_global_used(s, NULL);
3450 else
3452 s->type = GSYM_BLOCK_DATA;
3453 s->where = gfc_current_locus;
3454 s->defined = 1;
3458 st = parse_spec (ST_NONE);
3460 while (st != ST_END_BLOCK_DATA)
3462 gfc_error ("Unexpected %s statement in BLOCK DATA at %C",
3463 gfc_ascii_statement (st));
3464 reject_statement ();
3465 st = next_statement ();
3470 /* Parse a module subprogram. */
3472 static void
3473 parse_module (void)
3475 gfc_statement st;
3476 gfc_gsymbol *s;
3478 s = gfc_get_gsymbol (gfc_new_block->name);
3479 if (s->defined || (s->type != GSYM_UNKNOWN && s->type != GSYM_MODULE))
3480 gfc_global_used(s, NULL);
3481 else
3483 s->type = GSYM_MODULE;
3484 s->where = gfc_current_locus;
3485 s->defined = 1;
3488 st = parse_spec (ST_NONE);
3490 loop:
3491 switch (st)
3493 case ST_NONE:
3494 unexpected_eof ();
3496 case ST_CONTAINS:
3497 parse_contained (1);
3498 break;
3500 case ST_END_MODULE:
3501 accept_statement (st);
3502 break;
3504 default:
3505 gfc_error ("Unexpected %s statement in MODULE at %C",
3506 gfc_ascii_statement (st));
3508 reject_statement ();
3509 st = next_statement ();
3510 goto loop;
3515 /* Add a procedure name to the global symbol table. */
3517 static void
3518 add_global_procedure (int sub)
3520 gfc_gsymbol *s;
3522 s = gfc_get_gsymbol(gfc_new_block->name);
3524 if (s->defined
3525 || (s->type != GSYM_UNKNOWN
3526 && s->type != (sub ? GSYM_SUBROUTINE : GSYM_FUNCTION)))
3527 gfc_global_used(s, NULL);
3528 else
3530 s->type = sub ? GSYM_SUBROUTINE : GSYM_FUNCTION;
3531 s->where = gfc_current_locus;
3532 s->defined = 1;
3537 /* Add a program to the global symbol table. */
3539 static void
3540 add_global_program (void)
3542 gfc_gsymbol *s;
3544 if (gfc_new_block == NULL)
3545 return;
3546 s = gfc_get_gsymbol (gfc_new_block->name);
3548 if (s->defined || (s->type != GSYM_UNKNOWN && s->type != GSYM_PROGRAM))
3549 gfc_global_used(s, NULL);
3550 else
3552 s->type = GSYM_PROGRAM;
3553 s->where = gfc_current_locus;
3554 s->defined = 1;
3559 /* Top level parser. */
3562 gfc_parse_file (void)
3564 int seen_program, errors_before, errors;
3565 gfc_state_data top, s;
3566 gfc_statement st;
3567 locus prog_locus;
3569 gfc_start_source_files ();
3571 top.state = COMP_NONE;
3572 top.sym = NULL;
3573 top.previous = NULL;
3574 top.head = top.tail = NULL;
3575 top.do_variable = NULL;
3577 gfc_state_stack = &top;
3579 gfc_clear_new_st ();
3581 gfc_statement_label = NULL;
3583 if (setjmp (eof_buf))
3584 return FAILURE; /* Come here on unexpected EOF */
3586 seen_program = 0;
3588 /* Exit early for empty files. */
3589 if (gfc_at_eof ())
3590 goto done;
3592 loop:
3593 gfc_init_2 ();
3594 st = next_statement ();
3595 switch (st)
3597 case ST_NONE:
3598 gfc_done_2 ();
3599 goto done;
3601 case ST_PROGRAM:
3602 if (seen_program)
3603 goto duplicate_main;
3604 seen_program = 1;
3605 prog_locus = gfc_current_locus;
3607 push_state (&s, COMP_PROGRAM, gfc_new_block);
3608 main_program_symbol(gfc_current_ns, gfc_new_block->name);
3609 accept_statement (st);
3610 add_global_program ();
3611 parse_progunit (ST_NONE);
3612 break;
3614 case ST_SUBROUTINE:
3615 add_global_procedure (1);
3616 push_state (&s, COMP_SUBROUTINE, gfc_new_block);
3617 accept_statement (st);
3618 parse_progunit (ST_NONE);
3619 break;
3621 case ST_FUNCTION:
3622 add_global_procedure (0);
3623 push_state (&s, COMP_FUNCTION, gfc_new_block);
3624 accept_statement (st);
3625 parse_progunit (ST_NONE);
3626 break;
3628 case ST_BLOCK_DATA:
3629 push_state (&s, COMP_BLOCK_DATA, gfc_new_block);
3630 accept_statement (st);
3631 parse_block_data ();
3632 break;
3634 case ST_MODULE:
3635 push_state (&s, COMP_MODULE, gfc_new_block);
3636 accept_statement (st);
3638 gfc_get_errors (NULL, &errors_before);
3639 parse_module ();
3640 break;
3642 /* Anything else starts a nameless main program block. */
3643 default:
3644 if (seen_program)
3645 goto duplicate_main;
3646 seen_program = 1;
3647 prog_locus = gfc_current_locus;
3649 push_state (&s, COMP_PROGRAM, gfc_new_block);
3650 main_program_symbol (gfc_current_ns, "MAIN__");
3651 parse_progunit (st);
3652 break;
3655 gfc_current_ns->code = s.head;
3657 gfc_resolve (gfc_current_ns);
3659 /* Dump the parse tree if requested. */
3660 if (gfc_option.dump_parse_tree)
3661 gfc_dump_parse_tree (gfc_current_ns, stdout);
3663 gfc_get_errors (NULL, &errors);
3664 if (s.state == COMP_MODULE)
3666 gfc_dump_module (s.sym->name, errors_before == errors);
3667 if (errors == 0)
3668 gfc_generate_module_code (gfc_current_ns);
3670 else
3672 if (errors == 0)
3673 gfc_generate_code (gfc_current_ns);
3676 pop_state ();
3677 gfc_done_2 ();
3678 goto loop;
3680 done:
3681 gfc_end_source_files ();
3682 return SUCCESS;
3684 duplicate_main:
3685 /* If we see a duplicate main program, shut down. If the second
3686 instance is an implied main program, ie data decls or executable
3687 statements, we're in for lots of errors. */
3688 gfc_error ("Two main PROGRAMs at %L and %C", &prog_locus);
3689 reject_statement ();
3690 gfc_done_2 ();
3691 return SUCCESS;