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1/* Input parser for bison
2 Copyright (C) 1984, 1986, 1989, 1992, 1998, 2000, 2001, 2002
3 Free Software Foundation, Inc.
4
5 This file is part of Bison, the GNU Compiler Compiler.
6
7 Bison is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2, or (at your option)
10 any later version.
11
12 Bison is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with Bison; see the file COPYING. If not, write to
19 the Free Software Foundation, Inc., 59 Temple Place - Suite 330,
20 Boston, MA 02111-1307, USA. */
21
22
23#include "system.h"
24#include "quotearg.h"
25#include "quote.h"
26#include "getargs.h"
27#include "files.h"
28#include "symtab.h"
29#include "options.h"
30#include "lex.h"
31#include "gram.h"
32#include "complain.h"
33#include "output.h"
34#include "reader.h"
35#include "conflicts.h"
36#include "muscle_tab.h"
37
38typedef struct symbol_list
39{
40 struct symbol_list *next;
41 symbol_t *sym;
42 int line;
43
44 /* The action is attached to the LHS of a rule. */
45 const char *action;
46 int action_line;
47
48 symbol_t *ruleprec;
49} symbol_list;
50
51int lineno;
52static symbol_list *grammar = NULL;
53static int start_flag = 0;
54
55/* Nonzero if %union has been seen. */
56static int typed = 0;
57
58/* Incremented for each %left, %right or %nonassoc seen */
59static int lastprec = 0;
60
61static symbol_list *
62symbol_list_new (symbol_t *sym)
63{
64 symbol_list *res = XMALLOC (symbol_list, 1);
65 res->next = NULL;
66 res->sym = sym;
67 res->line = lineno;
68 res->action = NULL;
69 res->action_line = 0;
70 res->ruleprec = NULL;
71 return res;
72}
73
74/*===================\
75| Low level lexing. |
76\===================*/
77
78static void
79skip_to_char (int target)
80{
81 int c;
82 if (target == '\n')
83 complain (_(" Skipping to next \\n"));
84 else
85 complain (_(" Skipping to next %c"), target);
86
87 do
88 c = skip_white_space ();
89 while (c != target && c != EOF);
90 if (c != EOF)
91 ungetc (c, finput);
92}
93
94
95/*---------------------------------------------------------.
96| Read a signed integer from STREAM and return its value. |
97`---------------------------------------------------------*/
98
99static inline int
100read_signed_integer (FILE *stream)
101{
102 int c = getc (stream);
103 int sign = 1;
104 int n = 0;
105
106 if (c == '-')
107 {
108 c = getc (stream);
109 sign = -1;
110 }
111
112 while (isdigit (c))
113 {
114 n = 10 * n + (c - '0');
115 c = getc (stream);
116 }
117
118 ungetc (c, stream);
119
120 return sign * n;
121}
122\f
123/*--------------------------------------------------------------.
124| Get the data type (alternative in the union) of the value for |
125| symbol N in rule RULE. |
126`--------------------------------------------------------------*/
127
128static char *
129get_type_name (int n, symbol_list *rule)
130{
131 int i;
132 symbol_list *rp;
133
134 if (n < 0)
135 {
136 complain (_("invalid $ value"));
137 return NULL;
138 }
139
140 rp = rule;
141 i = 0;
142
143 while (i < n)
144 {
145 rp = rp->next;
146 if (rp == NULL || rp->sym == NULL)
147 {
148 complain (_("invalid $ value"));
149 return NULL;
150 }
151 ++i;
152 }
153
154 return rp->sym->type_name;
155}
156\f
157/*------------------------------------------------------------------.
158| Copy the character C to OOUT, and insert quadigraphs when needed. |
159`------------------------------------------------------------------*/
160
161static inline void
162copy_character (struct obstack *oout, int c)
163{
164 switch (c)
165 {
166 case '[':
167 obstack_sgrow (oout, "@<:@");
168 break;
169
170 case ']':
171 obstack_sgrow (oout, "@:>@");
172 break;
173
174 default:
175 obstack_1grow (oout, c);
176 }
177}
178
179/*------------------------------------------------------------.
180| Dump the string from FIN to OOUT if non null. MATCH is the |
181| delimiter of the string (either ' or "). |
182`------------------------------------------------------------*/
183
184static inline void
185copy_string2 (FILE *fin, struct obstack *oout, int match, int store)
186{
187 int c;
188
189 if (store)
190 obstack_1grow (oout, match);
191
192 c = getc (fin);
193
194 while (c != match)
195 {
196 if (c == EOF)
197 fatal (_("unterminated string at end of file"));
198 if (c == '\n')
199 {
200 complain (_("unterminated string"));
201 ungetc (c, fin);
202 c = match; /* invent terminator */
203 continue;
204 }
205
206 copy_character (oout, c);
207
208 if (c == '\\')
209 {
210 c = getc (fin);
211 if (c == EOF)
212 fatal (_("unterminated string at end of file"));
213 copy_character (oout, c);
214
215 if (c == '\n')
216 ++lineno;
217 }
218
219 c = getc (fin);
220 }
221
222 if (store)
223 obstack_1grow (oout, c);
224}
225
226/* FIXME. */
227
228static inline void
229copy_string (FILE *fin, struct obstack *oout, int match)
230{
231 copy_string2 (fin, oout, match, 1);
232}
233
234/* FIXME. */
235
236static inline void
237copy_identifier (FILE *fin, struct obstack *oout)
238{
239 int c;
240
241 while (isalnum (c = getc (fin)) || c == '_')
242 obstack_1grow (oout, c);
243
244 ungetc (c, fin);
245}
246
247
248/*------------------------------------------------------------------.
249| Dump the wannabee comment from IN to OOUT. In fact we just saw a |
250| `/', which might or might not be a comment. In any case, copy |
251| what we saw. |
252`------------------------------------------------------------------*/
253
254static inline void
255copy_comment (FILE *fin, struct obstack *oout)
256{
257 int cplus_comment;
258 int ended;
259 int c;
260
261 /* We read a `/', output it. */
262 obstack_1grow (oout, '/');
263
264 switch ((c = getc (fin)))
265 {
266 case '/':
267 cplus_comment = 1;
268 break;
269 case '*':
270 cplus_comment = 0;
271 break;
272 default:
273 ungetc (c, fin);
274 return;
275 }
276
277 obstack_1grow (oout, c);
278 c = getc (fin);
279
280 ended = 0;
281 while (!ended)
282 {
283 if (!cplus_comment && c == '*')
284 {
285 while (c == '*')
286 {
287 obstack_1grow (oout, c);
288 c = getc (fin);
289 }
290
291 if (c == '/')
292 {
293 obstack_1grow (oout, c);
294 ended = 1;
295 }
296 }
297 else if (c == '\n')
298 {
299 ++lineno;
300 obstack_1grow (oout, c);
301 if (cplus_comment)
302 ended = 1;
303 else
304 c = getc (fin);
305 }
306 else if (c == EOF)
307 fatal (_("unterminated comment"));
308 else
309 {
310 copy_character (oout, c);
311 c = getc (fin);
312 }
313 }
314}
315
316
317/*-------------------------------------------------------------------.
318| FIN is pointing to a location (i.e., a `@'). Output to OOUT a |
319| reference to this location. RULE_LENGTH is the number of values in |
320| the current rule so far, which says where to find `$0' with |
321| respect to the top of the stack. |
322`-------------------------------------------------------------------*/
323
324static inline void
325copy_at (FILE *fin, struct obstack *oout, int rule_length)
326{
327 int c = getc (fin);
328 locations_flag = 1;
329
330 if (c == '$')
331 {
332 obstack_sgrow (oout, "]b4_lhs_location[");
333 }
334 else if (isdigit (c) || c == '-')
335 {
336 int n;
337
338 ungetc (c, fin);
339 n = read_signed_integer (fin);
340 if (n > rule_length)
341 complain (_("invalid value: %s%d"), "@", n);
342 else
343 obstack_fgrow2 (oout, "]b4_rhs_location([%d], [%d])[",
344 rule_length, n);
345 }
346 else
347 {
348 char buf[] = "@c";
349 buf[1] = c;
350 complain (_("%s is invalid"), quote (buf));
351 }
352}
353
354
355/*------------------------------------------------------------------.
356| FIN is pointing to a wannabee semantic value (i.e., a `$'). |
357| |
358| Possible inputs: $[<TYPENAME>]($|integer) |
359| |
360| Output to OOUT a reference to this semantic value. RULE_LENGTH is |
361| the number of values in the current rule so far, which says where |
362| to find `$0' with respect to the top of the stack. |
363`------------------------------------------------------------------*/
364
365static inline void
366copy_dollar (FILE *fin, struct obstack *oout,
367 symbol_list *rule, int rule_length)
368{
369 int c = getc (fin);
370 const char *type_name = NULL;
371
372 /* Get the type name if explicit. */
373 if (c == '<')
374 {
375 read_type_name (fin);
376 type_name = token_buffer;
377 c = getc (fin);
378 }
379
380 if (c == '$')
381 {
382 if (!type_name)
383 type_name = get_type_name (0, rule);
384 if (!type_name && typed)
385 complain (_("$$ of `%s' has no declared type"),
386 rule->sym->tag);
387 if (!type_name)
388 type_name = "";
389 obstack_fgrow1 (oout,
390 "]b4_lhs_value([%s])[", type_name);
391 }
392 else if (isdigit (c) || c == '-')
393 {
394 int n;
395 ungetc (c, fin);
396 n = read_signed_integer (fin);
397
398 if (n > rule_length)
399 complain (_("invalid value: %s%d"), "$", n);
400 else
401 {
402 if (!type_name && n > 0)
403 type_name = get_type_name (n, rule);
404 if (!type_name && typed)
405 complain (_("$%d of `%s' has no declared type"),
406 n, rule->sym->tag);
407 if (!type_name)
408 type_name = "";
409 obstack_fgrow3 (oout, "]b4_rhs_value([%d], [%d], [%s])[",
410 rule_length, n, type_name);
411 }
412 }
413 else
414 {
415 char buf[] = "$c";
416 buf[1] = c;
417 complain (_("%s is invalid"), quote (buf));
418 }
419}
420\f
421/*-------------------------------------------------------------------.
422| Copy the contents of a `%{ ... %}' into the definitions file. The |
423| `%{' has already been read. Return after reading the `%}'. |
424`-------------------------------------------------------------------*/
425
426static void
427copy_definition (struct obstack *oout)
428{
429 int c;
430 /* -1 while reading a character if prev char was %. */
431 int after_percent;
432
433 if (!no_lines_flag)
434 {
435 obstack_fgrow2 (oout, muscle_find ("linef"),
436 lineno, quotearg_style (c_quoting_style,
437 muscle_find ("filename")));
438 }
439
440 after_percent = 0;
441
442 c = getc (finput);
443
444 for (;;)
445 {
446 switch (c)
447 {
448 case '\n':
449 obstack_1grow (oout, c);
450 ++lineno;
451 break;
452
453 case '%':
454 after_percent = -1;
455 break;
456
457 case '\'':
458 case '"':
459 copy_string (finput, oout, c);
460 break;
461
462 case '/':
463 copy_comment (finput, oout);
464 break;
465
466 case EOF:
467 fatal ("%s", _("unterminated `%{' definition"));
468
469 default:
470 copy_character (oout, c);
471 }
472
473 c = getc (finput);
474
475 if (after_percent)
476 {
477 if (c == '}')
478 return;
479 obstack_1grow (oout, '%');
480 }
481 after_percent = 0;
482 }
483}
484
485
486/*------------------------------------------.
487| Parse what comes after %token or %nterm. |
488`------------------------------------------*/
489
490static void
491parse_token_decl (symbol_class class)
492{
493 token_t token = tok_undef;
494 char *typename = NULL;
495
496 /* The symbol being defined. */
497 symbol_t *symbol = NULL;
498
499 /* After `%token' and `%nterm', any number of symbols maybe be
500 defined. */
501 for (;;)
502 {
503 int tmp_char = ungetc (skip_white_space (), finput);
504
505 /* `%' (for instance from `%token', or from `%%' etc.) is the
506 only valid means to end this declaration. */
507 if (tmp_char == '%')
508 return;
509 if (tmp_char == EOF)
510 fatal (_("Premature EOF after %s"), token_buffer);
511
512 token = lex ();
513 switch (token)
514 {
515 case tok_comma:
516 symbol = NULL;
517 break;
518
519 case tok_typename:
520 typename = xstrdup (token_buffer);
521 symbol = NULL;
522 break;
523
524 case tok_identifier:
525 if (*symval->tag == '\"' && symbol)
526 {
527 symbol_make_alias (symbol, symval, typename);
528 symbol = NULL;
529 }
530 else
531 {
532 symbol = symval;
533 symbol_class_set (symbol, class);
534 if (typename)
535 symbol_type_set (symbol, typename);
536 }
537 break;
538
539 case tok_number:
540 symbol_user_token_number_set (symbol, numval);
541 break;
542
543 default:
544 complain (_("`%s' is invalid in %s"),
545 token_buffer,
546 (class == token_sym) ? "%token" : "%nterm");
547 skip_to_char ('%');
548 }
549 }
550
551}
552
553
554/*------------------------------.
555| Parse what comes after %start |
556`------------------------------*/
557
558static void
559parse_start_decl (void)
560{
561 if (start_flag)
562 complain (_("multiple %s declarations"), "%start");
563 if (lex () != tok_identifier)
564 complain (_("invalid %s declaration"), "%start");
565 else
566 {
567 start_flag = 1;
568 startsymbol = symval;
569 }
570}
571
572/*-----------------------------------------------------------.
573| read in a %type declaration and record its information for |
574| get_type_name to access |
575`-----------------------------------------------------------*/
576
577static void
578parse_type_decl (void)
579{
580 char *name;
581
582 if (lex () != tok_typename)
583 {
584 complain ("%s", _("%type declaration has no <typename>"));
585 skip_to_char ('%');
586 return;
587 }
588
589 name = xstrdup (token_buffer);
590
591 for (;;)
592 {
593 token_t t;
594 int tmp_char = ungetc (skip_white_space (), finput);
595
596 if (tmp_char == '%')
597 return;
598 if (tmp_char == EOF)
599 fatal (_("Premature EOF after %s"), token_buffer);
600
601 t = lex ();
602
603 switch (t)
604 {
605 case tok_comma:
606 case tok_semicolon:
607 break;
608
609 case tok_identifier:
610 symbol_type_set (symval, name);
611 break;
612
613 default:
614 complain (_("invalid %%type declaration due to item: %s"),
615 token_buffer);
616 skip_to_char ('%');
617 }
618 }
619}
620
621
622
623/*----------------------------------------------------------------.
624| Read in a %left, %right or %nonassoc declaration and record its |
625| information. |
626`----------------------------------------------------------------*/
627
628static void
629parse_assoc_decl (associativity assoc)
630{
631 char *name = NULL;
632 int prev = 0;
633
634 /* Assign a new precedence level, never 0. */
635 ++lastprec;
636
637 for (;;)
638 {
639 token_t t;
640 int tmp_char = ungetc (skip_white_space (), finput);
641
642 if (tmp_char == '%')
643 return;
644 if (tmp_char == EOF)
645 fatal (_("Premature EOF after %s"), token_buffer);
646
647 t = lex ();
648
649 switch (t)
650 {
651 case tok_typename:
652 name = xstrdup (token_buffer);
653 break;
654
655 case tok_comma:
656 break;
657
658 case tok_identifier:
659 symbol_class_set (symval, token_sym);
660 symbol_precedence_set (symval, lastprec, assoc);
661 if (name)
662 symbol_type_set (symval, name);
663 break;
664
665 case tok_number:
666 if (prev == tok_identifier)
667 {
668 symbol_user_token_number_set (symval, numval);
669 }
670 else
671 {
672 complain
673 (_("invalid text (%s) - number should be after identifier"),
674 token_buffer);
675 skip_to_char ('%');
676 }
677 break;
678
679 case tok_semicolon:
680 return;
681
682 default:
683 complain (_("unexpected item: %s"), token_buffer);
684 skip_to_char ('%');
685 }
686
687 prev = t;
688 }
689}
690
691
692
693/*--------------------------------------------------------------.
694| Copy the union declaration into the stype muscle |
695| (and fdefines), where it is made into the definition of |
696| YYSTYPE, the type of elements of the parser value stack. |
697`--------------------------------------------------------------*/
698
699static void
700parse_union_decl (void)
701{
702 int c;
703 int count = 0;
704 bool done = FALSE;
705 struct obstack union_obstack;
706 if (typed)
707 complain (_("multiple %s declarations"), "%union");
708
709 typed = 1;
710
711 MUSCLE_INSERT_INT ("stype_line", lineno);
712 obstack_init (&union_obstack);
713 obstack_sgrow (&union_obstack, "union");
714
715 while (!done)
716 {
717 c = xgetc (finput);
718
719 /* If C contains '/', it is output by copy_comment (). */
720 if (c != '/')
721 obstack_1grow (&union_obstack, c);
722
723 switch (c)
724 {
725 case '\n':
726 ++lineno;
727 break;
728
729 case '/':
730 copy_comment (finput, &union_obstack);
731 break;
732
733 case '{':
734 ++count;
735 break;
736
737 case '}':
738 /* FIXME: Errr. How could this happen???. --akim */
739 if (count == 0)
740 complain (_("unmatched %s"), "`}'");
741 count--;
742 if (!count)
743 done = TRUE;
744 break;
745 }
746 }
747
748 /* JF don't choke on trailing semi */
749 c = skip_white_space ();
750 if (c != ';')
751 ungetc (c, finput);
752 obstack_1grow (&union_obstack, 0);
753 muscle_insert ("stype", obstack_finish (&union_obstack));
754}
755
756
757/*-------------------------------------------------------.
758| Parse the declaration %expect N which says to expect N |
759| shift-reduce conflicts. |
760`-------------------------------------------------------*/
761
762static void
763parse_expect_decl (void)
764{
765 int c = skip_white_space ();
766 ungetc (c, finput);
767
768 if (!isdigit (c))
769 complain (_("argument of %%expect is not an integer"));
770 else
771 expected_conflicts = read_signed_integer (finput);
772}
773
774
775static void
776parse_muscle_decl (void)
777{
778 int ch = ungetc (skip_white_space (), finput);
779 char *muscle_key;
780 char *muscle_value;
781
782 /* Read key. */
783 if (!isalpha (ch) && ch != '_')
784 {
785 complain (_("invalid %s declaration"), "%define");
786 skip_to_char ('%');
787 return;
788 }
789 copy_identifier (finput, &muscle_obstack);
790 obstack_1grow (&muscle_obstack, 0);
791 muscle_key = obstack_finish (&muscle_obstack);
792
793 /* Read value. */
794 ch = skip_white_space ();
795 if (ch != '"')
796 {
797 ungetc (ch, finput);
798 if (ch != EOF)
799 {
800 complain (_("invalid %s declaration"), "%define");
801 skip_to_char ('%');
802 return;
803 }
804 else
805 fatal (_("Premature EOF after %s"), "\"");
806 }
807 copy_string2 (finput, &muscle_obstack, '"', 0);
808 obstack_1grow (&muscle_obstack, 0);
809 muscle_value = obstack_finish (&muscle_obstack);
810
811 /* Store the (key, value) pair in the environment. */
812 muscle_insert (muscle_key, muscle_value);
813}
814
815
816
817/*---------------------------------.
818| Parse a double quoted parameter. |
819`---------------------------------*/
820
821static const char *
822parse_dquoted_param (const char *from)
823{
824 struct obstack param_obstack;
825 const char *param = NULL;
826 int c;
827
828 obstack_init (&param_obstack);
829 c = skip_white_space ();
830
831 if (c != '"')
832 {
833 complain (_("invalid %s declaration"), from);
834 ungetc (c, finput);
835 skip_to_char ('%');
836 return NULL;
837 }
838
839 while ((c = literalchar ()) != '"')
840 obstack_1grow (&param_obstack, c);
841
842 obstack_1grow (&param_obstack, '\0');
843 param = obstack_finish (&param_obstack);
844
845 if (c != '"' || strlen (param) == 0)
846 {
847 complain (_("invalid %s declaration"), from);
848 if (c != '"')
849 ungetc (c, finput);
850 skip_to_char ('%');
851 return NULL;
852 }
853
854 return param;
855}
856
857/*----------------------------------.
858| Parse what comes after %skeleton. |
859`----------------------------------*/
860
861static void
862parse_skel_decl (void)
863{
864 skeleton = parse_dquoted_param ("%skeleton");
865}
866
867/*----------------------------------------------------------------.
868| Read from finput until `%%' is seen. Discard the `%%'. Handle |
869| any `%' declarations, and copy the contents of any `%{ ... %}' |
870| groups to PRE_PROLOGUE_OBSTACK or POST_PROLOGUE_OBSTACK. |
871`----------------------------------------------------------------*/
872
873static void
874read_declarations (void)
875{
876 for (;;)
877 {
878 int c = skip_white_space ();
879
880 if (c == '%')
881 {
882 token_t tok = parse_percent_token ();
883
884 switch (tok)
885 {
886 case tok_two_percents:
887 return;
888
889 case tok_percent_left_curly:
890 if (!typed)
891 copy_definition (&pre_prologue_obstack);
892 else
893 copy_definition (&post_prologue_obstack);
894 break;
895
896 case tok_token:
897 parse_token_decl (token_sym);
898 break;
899
900 case tok_nterm:
901 parse_token_decl (nterm_sym);
902 break;
903
904 case tok_type:
905 parse_type_decl ();
906 break;
907
908 case tok_start:
909 parse_start_decl ();
910 break;
911
912 case tok_union:
913 parse_union_decl ();
914 break;
915
916 case tok_expect:
917 parse_expect_decl ();
918 break;
919
920 case tok_left:
921 parse_assoc_decl (left_assoc);
922 break;
923
924 case tok_right:
925 parse_assoc_decl (right_assoc);
926 break;
927
928 case tok_nonassoc:
929 parse_assoc_decl (non_assoc);
930 break;
931
932 case tok_define:
933 parse_muscle_decl ();
934 break;
935
936 case tok_skel:
937 parse_skel_decl ();
938 break;
939
940 case tok_noop:
941 break;
942
943 case tok_stropt:
944 case tok_intopt:
945 case tok_obsolete:
946 assert (0);
947 break;
948
949 case tok_illegal:
950 default:
951 complain (_("unrecognized: %s"), token_buffer);
952 skip_to_char ('%');
953 }
954 }
955 else if (c == EOF)
956 fatal (_("no input grammar"));
957 else
958 {
959 char buf[] = "c";
960 buf[0] = c;
961 complain (_("unknown character: %s"), quote (buf));
962 skip_to_char ('%');
963 }
964 }
965}
966\f
967/*------------------------------------------------------------------.
968| Assuming that a `{' has just been seen, copy everything up to the |
969| matching `}' into ACTION_OBSTACK. |
970| |
971| RULE_LENGTH is the number of values in the current rule so far, |
972| which says where to find `$0' with respect to the top of the |
973| stack. It is not the same as the rule->length in the case of mid |
974| rule actions. |
975| |
976| This routine is used for actions. |
977`------------------------------------------------------------------*/
978
979static void
980parse_action (symbol_list *rule, int rule_length)
981{
982 int count = 1;
983 rule->action_line = lineno;
984 while (count > 0)
985 {
986 int c;
987 while ((c = getc (finput)) != '}')
988 switch (c)
989 {
990 case '\n':
991 copy_character (&action_obstack, c);
992 ++lineno;
993 break;
994
995 case '{':
996 copy_character (&action_obstack, c);
997 ++count;
998 break;
999
1000 case '\'':
1001 case '"':
1002 copy_string (finput, &action_obstack, c);
1003 break;
1004
1005 case '/':
1006 copy_comment (finput, &action_obstack);
1007 break;
1008
1009 case '$':
1010 copy_dollar (finput, &action_obstack, rule, rule_length);
1011 break;
1012
1013 case '@':
1014 copy_at (finput, &action_obstack, rule_length);
1015 break;
1016
1017 case EOF:
1018 fatal (_("unmatched %s"), "`{'");
1019
1020 default:
1021 copy_character (&action_obstack, c);
1022 }
1023
1024 /* Above loop exits when C is '}'. */
1025 if (--count)
1026 copy_character (&action_obstack, c);
1027 }
1028
1029 obstack_1grow (&action_obstack, '\0');
1030 rule->action = obstack_finish (&action_obstack);
1031}
1032
1033\f
1034
1035/*-------------------------------------------------------------------.
1036| Generate a dummy symbol, a nonterminal, whose name cannot conflict |
1037| with the user's names. |
1038`-------------------------------------------------------------------*/
1039
1040static symbol_t *
1041gensym (void)
1042{
1043 /* Incremented for each generated symbol */
1044 static int gensym_count = 0;
1045 static char buf[256];
1046
1047 symbol_t *sym;
1048
1049 sprintf (buf, "@%d", ++gensym_count);
1050 token_buffer = buf;
1051 sym = getsym (token_buffer);
1052 sym->class = nterm_sym;
1053 sym->number = nvars++;
1054 return sym;
1055}
1056\f
1057/*-------------------------------------------------------------------.
1058| Parse the input grammar into a one symbol_list structure. Each |
1059| rule is represented by a sequence of symbols: the left hand side |
1060| followed by the contents of the right hand side, followed by a |
1061| null pointer instead of a symbol to terminate the rule. The next |
1062| symbol is the lhs of the following rule. |
1063| |
1064| All actions are copied out, labelled by the rule number they apply |
1065| to. |
1066| |
1067| Bison used to allow some %directives in the rules sections, but |
1068| this is no longer consider appropriate: (i) the documented grammar |
1069| doesn't claim it, (ii), it would promote bad style, (iii), error |
1070| recovery for %directives consists in skipping the junk until a `%' |
1071| is seen and helrp synchronizing. This scheme is definitely wrong |
1072| in the rules section. |
1073`-------------------------------------------------------------------*/
1074
1075/* The (currently) last symbol of GRAMMAR. */
1076symbol_list *grammar_end = NULL;
1077
1078/* Append S to the GRAMMAR. */
1079static void
1080grammar_symbol_append (symbol_t *s)
1081{
1082 symbol_list *p = symbol_list_new (s);
1083
1084 if (grammar_end)
1085 grammar_end->next = p;
1086 else
1087 grammar = p;
1088
1089 grammar_end = p;
1090}
1091
1092/* The rule currently being defined, and the previous rule. Point to
1093 the first symbol of each list: their lhs. */
1094symbol_list *current_rule = NULL;
1095symbol_list *previous_rule = NULL;
1096
1097
1098/* Create a new rule for LHS in to the GRAMMAR. */
1099
1100static void
1101grammar_rule_begin (symbol_t *lhs)
1102{
1103 if (!start_flag)
1104 {
1105 startsymbol = lhs;
1106 start_flag = 1;
1107 }
1108
1109 /* Start a new rule and record its lhs. */
1110 ++nrules;
1111 ++nritems;
1112
1113 previous_rule = grammar_end;
1114 grammar_symbol_append (lhs);
1115 current_rule = grammar_end;
1116
1117 /* Mark the rule's lhs as a nonterminal if not already so. */
1118
1119 if (lhs->class == unknown_sym)
1120 {
1121 lhs->class = nterm_sym;
1122 lhs->number = nvars;
1123 ++nvars;
1124 }
1125 else if (lhs->class == token_sym)
1126 complain (_("rule given for %s, which is a token"), lhs->tag);
1127}
1128
1129/* The previous action turns out the be a mid-rule action. Attach it
1130 to the current rule, i.e., create a dummy symbol, attach it this
1131 mid-rule action, and append this dummy nonterminal to the current
1132 rule. */
1133
1134static void
1135grammar_midrule_action (void)
1136{
1137 /* Since the action was written out with this rule's number, we must
1138 give the new rule this number by inserting the new rule before
1139 it. */
1140
1141 /* Make a dummy nonterminal, a gensym. */
1142 symbol_t *sdummy = gensym ();
1143 symbol_list *midrule_action = symbol_list_new (sdummy);
1144
1145 /* Make a new rule, whose body is empty, before the current one, so
1146 that the action just read can belong to it. */
1147 ++nrules;
1148 ++nritems;
1149 /* Attach its lineno to that of the host rule. */
1150 midrule_action->line = current_rule->line;
1151 /* Move the action from the host rule to this one. */
1152 midrule_action->action = current_rule->action;
1153 midrule_action->action_line = current_rule->action_line;
1154 current_rule->action = NULL;
1155
1156 if (previous_rule)
1157 previous_rule->next = midrule_action;
1158 else
1159 grammar = midrule_action;
1160
1161 /* End of the rule. */
1162 previous_rule = symbol_list_new (NULL);
1163 previous_rule->next = current_rule;
1164
1165 midrule_action->next = previous_rule;
1166
1167 /* Insert the dummy generated by that rule into this rule. */
1168 ++nritems;
1169 grammar_symbol_append (sdummy);
1170}
1171
1172
1173static void
1174readgram (void)
1175{
1176 token_t t;
1177 symbol_t *lhs = NULL;
1178
1179 t = lex ();
1180
1181 while (t != tok_two_percents && t != tok_eof)
1182 if (t == tok_identifier || t == tok_bar)
1183 {
1184 int action_flag = 0;
1185 /* Number of symbols in rhs of this rule so far */
1186 int rulelength = 0;
1187 int xactions = 0; /* JF for error checking */
1188 symbol_t *first_rhs = 0;
1189
1190 if (t == tok_identifier)
1191 {
1192 lhs = symval;
1193
1194 t = lex ();
1195 if (t != tok_colon)
1196 {
1197 complain (_("ill-formed rule: initial symbol not followed by colon"));
1198 unlex (t);
1199 }
1200 }
1201 if (nrules == 0 && t == tok_bar)
1202 {
1203 complain (_("grammar starts with vertical bar"));
1204 lhs = symval; /* BOGUS: use a random symval */
1205 }
1206
1207 grammar_rule_begin (lhs);
1208 /* read the rhs of the rule. */
1209
1210 for (;;)
1211 {
1212 t = lex ();
1213 if (t == tok_prec)
1214 {
1215 t = lex ();
1216 current_rule->ruleprec = symval;
1217 t = lex ();
1218 }
1219
1220 if (!(t == tok_identifier || t == tok_left_curly))
1221 break;
1222
1223 /* If next token is an identifier, see if a colon follows it.
1224 If one does, exit this rule now. */
1225 if (t == tok_identifier)
1226 {
1227 symbol_t *ssave;
1228 token_t t1;
1229
1230 ssave = symval;
1231 t1 = lex ();
1232 unlex (t1);
1233 symval = ssave;
1234 if (t1 == tok_colon)
1235 {
1236 warn (_("previous rule lacks an ending `;'"));
1237 break;
1238 }
1239
1240 if (!first_rhs) /* JF */
1241 first_rhs = symval;
1242 /* Not followed by colon =>
1243 process as part of this rule's rhs. */
1244 }
1245
1246 /* If we just passed an action, that action was in the middle
1247 of a rule, so make a dummy rule to reduce it to a
1248 non-terminal. */
1249 if (action_flag)
1250 {
1251 grammar_midrule_action ();
1252 action_flag = 0;
1253 }
1254
1255 if (t == tok_identifier)
1256 {
1257 ++nritems;
1258 grammar_symbol_append (symval);
1259 }
1260 else /* handle an action. */
1261 {
1262 parse_action (current_rule, rulelength);
1263 action_flag = 1;
1264 ++xactions; /* JF */
1265 }
1266 ++rulelength;
1267 } /* end of read rhs of rule */
1268
1269 /* Put an empty link in the list to mark the end of this rule */
1270 grammar_symbol_append (NULL);
1271
1272 if (t == tok_prec)
1273 {
1274 complain (_("two @prec's in a row"));
1275 t = lex ();
1276 current_rule->ruleprec = symval;
1277 t = lex ();
1278 }
1279
1280 if (t == tok_left_curly)
1281 {
1282 /* This case never occurs -wjh */
1283 if (action_flag)
1284 complain (_("two actions at end of one rule"));
1285 parse_action (current_rule, rulelength);
1286 action_flag = 1;
1287 ++xactions; /* -wjh */
1288 t = lex ();
1289 }
1290 /* If $$ is being set in default way, report if any type
1291 mismatch. */
1292 else if (!xactions
1293 && first_rhs && lhs->type_name != first_rhs->type_name)
1294 {
1295 if (lhs->type_name == 0
1296 || first_rhs->type_name == 0
1297 || strcmp (lhs->type_name, first_rhs->type_name))
1298 complain (_("type clash (`%s' `%s') on default action"),
1299 lhs->type_name ? lhs->type_name : "",
1300 first_rhs->type_name ? first_rhs->type_name : "");
1301 }
1302 /* Warn if there is no default for $$ but we need one. */
1303 else if (!xactions && !first_rhs && lhs->type_name != 0)
1304 complain (_("empty rule for typed nonterminal, and no action"));
1305 if (t == tok_two_percents || t == tok_eof)
1306 warn (_("previous rule lacks an ending `;'"));
1307 if (t == tok_semicolon)
1308 t = lex ();
1309 }
1310 else
1311 {
1312 complain (_("invalid input: %s"), quote (token_buffer));
1313 t = lex ();
1314 }
1315
1316 /* grammar has been read. Do some checking */
1317
1318 if (nrules == 0)
1319 fatal (_("no rules in the input grammar"));
1320
1321 /* Report any undefined symbols and consider them nonterminals. */
1322 symbols_check_defined ();
1323
1324 /* Insert the initial rule, which line is that of the first rule
1325 (not that of the start symbol):
1326
1327 axiom: %start EOF. */
1328 {
1329 symbol_list *p = symbol_list_new (axiom);
1330 p->line = grammar->line;
1331 p->next = symbol_list_new (startsymbol);
1332 p->next->next = symbol_list_new (eoftoken);
1333 p->next->next->next = symbol_list_new (NULL);
1334 p->next->next->next->next = grammar;
1335 nrules += 1;
1336 nritems += 3;
1337 grammar = p;
1338 }
1339
1340 if (nsyms > SHRT_MAX)
1341 fatal (_("too many symbols (tokens plus nonterminals); maximum %d"),
1342 SHRT_MAX);
1343
1344 assert (nsyms == ntokens + nvars);
1345}
1346
1347/* At the end of the grammar file, some C source code must
1348 be stored. It is going to be associated to the epilogue
1349 directive. */
1350static void
1351read_additionnal_code (void)
1352{
1353 int c;
1354 struct obstack el_obstack;
1355
1356 obstack_init (&el_obstack);
1357
1358 if (!no_lines_flag)
1359 {
1360 obstack_fgrow2 (&el_obstack, muscle_find ("linef"),
1361 lineno, quotearg_style (c_quoting_style,
1362 muscle_find ("filename")));
1363 }
1364
1365 while ((c = getc (finput)) != EOF)
1366 copy_character (&el_obstack, c);
1367
1368 obstack_1grow (&el_obstack, 0);
1369 muscle_insert ("epilogue", obstack_finish (&el_obstack));
1370}
1371
1372\f
1373/*---------------------------------------------------------------.
1374| Convert the rules into the representation using RRHS, RLHS and |
1375| RITEM. |
1376`---------------------------------------------------------------*/
1377
1378static void
1379packgram (void)
1380{
1381 unsigned int itemno;
1382 int ruleno;
1383 symbol_list *p;
1384
1385 ritem = XCALLOC (item_number_t, nritems);
1386 rules = XCALLOC (rule_t, nrules) - 1;
1387
1388 itemno = 0;
1389 ruleno = 1;
1390
1391 p = grammar;
1392 while (p)
1393 {
1394 symbol_t *ruleprec = p->ruleprec;
1395 rules[ruleno].user_number = ruleno;
1396 rules[ruleno].number = ruleno;
1397 rules[ruleno].lhs = p->sym;
1398 rules[ruleno].rhs = ritem + itemno;
1399 rules[ruleno].line = p->line;
1400 rules[ruleno].useful = TRUE;
1401 rules[ruleno].action = p->action;
1402 rules[ruleno].action_line = p->action_line;
1403
1404 p = p->next;
1405 while (p && p->sym)
1406 {
1407 /* item_number_t = symbol_number_t.
1408 But the former needs to contain more: negative rule numbers. */
1409 ritem[itemno++] = symbol_number_as_item_number (p->sym->number);
1410 /* A rule gets by default the precedence and associativity
1411 of the last token in it. */
1412 if (p->sym->class == token_sym)
1413 rules[ruleno].prec = p->sym;
1414 if (p)
1415 p = p->next;
1416 }
1417
1418 /* If this rule has a %prec,
1419 the specified symbol's precedence replaces the default. */
1420 if (ruleprec)
1421 {
1422 rules[ruleno].precsym = ruleprec;
1423 rules[ruleno].prec = ruleprec;
1424 }
1425 ritem[itemno++] = -ruleno;
1426 ++ruleno;
1427
1428 if (p)
1429 p = p->next;
1430 }
1431
1432 assert (itemno == nritems);
1433
1434 if (trace_flag)
1435 ritem_print (stderr);
1436}
1437\f
1438/*------------------------------------------------------------------.
1439| Read in the grammar specification and record it in the format |
1440| described in gram.h. All actions are copied into ACTION_OBSTACK, |
1441| in each case forming the body of a C function (YYACTION) which |
1442| contains a switch statement to decide which action to execute. |
1443`------------------------------------------------------------------*/
1444
1445void
1446reader (void)
1447{
1448 lex_init ();
1449 lineno = 1;
1450
1451 /* Initialize the muscle obstack. */
1452 obstack_init (&muscle_obstack);
1453
1454 /* Initialize the symbol table. */
1455 symbols_new ();
1456
1457 /* Construct the axiom symbol. */
1458 axiom = getsym ("$axiom");
1459 axiom->class = nterm_sym;
1460 axiom->number = nvars++;
1461
1462 /* Construct the error token */
1463 errtoken = getsym ("error");
1464 errtoken->class = token_sym;
1465 errtoken->number = ntokens++;
1466
1467 /* Construct a token that represents all undefined literal tokens.
1468 It is always token number 2. */
1469 undeftoken = getsym ("$undefined.");
1470 undeftoken->class = token_sym;
1471 undeftoken->number = ntokens++;
1472
1473 /* Initialize the obstacks. */
1474 obstack_init (&action_obstack);
1475 obstack_init (&output_obstack);
1476 obstack_init (&pre_prologue_obstack);
1477 obstack_init (&post_prologue_obstack);
1478
1479 finput = xfopen (infile, "r");
1480
1481 /* Read the declaration section. Copy %{ ... %} groups to
1482 TABLE_OBSTACK and FDEFINES file. Also notice any %token, %left,
1483 etc. found there. */
1484 read_declarations ();
1485
1486 /* If the user did not define her EOFTOKEN, do it now. */
1487 if (!eoftoken)
1488 {
1489 eoftoken = getsym ("$");
1490 eoftoken->class = token_sym;
1491 eoftoken->number = 0;
1492 /* Value specified by POSIX. */
1493 eoftoken->user_token_number = 0;
1494 }
1495
1496 /* Read in the grammar, build grammar in list form. Write out
1497 actions. */
1498 readgram ();
1499 /* Some C code is given at the end of the grammar file. */
1500 read_additionnal_code ();
1501
1502 lex_free ();
1503 xfclose (finput);
1504
1505 /* Assign the symbols their symbol numbers. Write #defines for the
1506 token symbols into FDEFINES if requested. */
1507 symbols_pack ();
1508
1509 /* Convert the grammar into the format described in gram.h. */
1510 packgram ();
1511
1512 /* The grammar as a symbol_list is no longer needed. */
1513 LIST_FREE (symbol_list, grammar);
1514}