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1 -*- C -*-
2
3 # GLR skeleton for Bison
4 # Copyright (C) 2002, 2003, 2004, 2005, 2006, 2007, 2008, 2009 Free
5 # Software Foundation, Inc.
6
7 # This program 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 3 of the License, or
10 # (at your option) any later version.
11 #
12 # This program 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 this program. If not, see <http://www.gnu.org/licenses/>.
19
20
21 m4_include(b4_pkgdatadir/[c.m4])
22
23 ## ---------------- ##
24 ## Default values. ##
25 ## ---------------- ##
26
27 # Stack parameters.
28 m4_define_default([b4_stack_depth_max], [10000])
29 m4_define_default([b4_stack_depth_init], [200])
30
31
32
33 ## ------------------------ ##
34 ## Pure/impure interfaces. ##
35 ## ------------------------ ##
36
37 b4_define_flag_if([pure])
38 # If glr.cc is including this file and thus has already set b4_pure_flag, don't
39 # change the value of b4_pure_flag, and don't record a use of api.pure.
40 m4_ifndef([b4_pure_flag],
41 [b4_percent_define_default([[api.pure]], [[false]])
42 m4_define([b4_pure_flag],
43 [b4_percent_define_flag_if([[api.pure]], [[1]], [[0]])])])
44
45 # b4_user_formals
46 # ---------------
47 # The possible parse-params formal arguments preceded by a comma.
48 #
49 # This is not shared with yacc.c in c.m4 because GLR relies on ISO C
50 # formal argument declarations.
51 m4_define([b4_user_formals],
52 [m4_ifset([b4_parse_param], [, b4_c_ansi_formals(b4_parse_param)])])
53
54
55 # b4_lex_param
56 # ------------
57 # Accumule in b4_lex_param all the yylex arguments.
58 # Yes, this is quite ugly...
59 m4_define([b4_lex_param],
60 m4_dquote(b4_pure_if([[[[YYSTYPE *]], [[&yylval]]][]dnl
61 b4_locations_if([, [[YYLTYPE *], [&yylloc]]])])dnl
62 m4_ifdef([b4_lex_param], [, ]b4_lex_param)))
63
64
65 # b4_yyerror_args
66 # ---------------
67 # Optional effective arguments passed to yyerror: user args plus yylloc, and
68 # a trailing comma.
69 m4_define([b4_yyerror_args],
70 [b4_pure_if([b4_locations_if([yylocp, ])])dnl
71 m4_ifset([b4_parse_param], [b4_c_args(b4_parse_param), ])])
72
73
74 # b4_lyyerror_args
75 # ----------------
76 # Same as above, but on the lookahead, hence &yylloc instead of yylocp.
77 m4_define([b4_lyyerror_args],
78 [b4_pure_if([b4_locations_if([&yylloc, ])])dnl
79 m4_ifset([b4_parse_param], [b4_c_args(b4_parse_param), ])])
80
81
82 # b4_pure_args
83 # ------------
84 # Same as b4_yyerror_args, but with a leading comma.
85 m4_define([b4_pure_args],
86 [b4_pure_if([b4_locations_if([, yylocp])])[]b4_user_args])
87
88
89 # b4_lpure_args
90 # -------------
91 # Same as above, but on the lookahead, hence &yylloc instead of yylocp.
92 m4_define([b4_lpure_args],
93 [b4_pure_if([b4_locations_if([, &yylloc])])[]b4_user_args])
94
95
96 # b4_pure_formals
97 # ---------------
98 # Arguments passed to yyerror: user formals plus yylocp.
99 m4_define([b4_pure_formals],
100 [b4_pure_if([b4_locations_if([, YYLTYPE *yylocp])])[]b4_user_formals])
101
102
103 ## ----------------- ##
104 ## Semantic Values. ##
105 ## ----------------- ##
106
107
108 # b4_lhs_value([TYPE])
109 # --------------------
110 # Expansion of $<TYPE>$.
111 m4_define([b4_lhs_value],
112 [((*yyvalp)[]m4_ifval([$1], [.$1]))])
113
114
115 # b4_rhs_value(RULE-LENGTH, NUM, [TYPE])
116 # --------------------------------------
117 # Expansion of $<TYPE>NUM, where the current rule has RULE-LENGTH
118 # symbols on RHS.
119 m4_define([b4_rhs_value],
120 [(((yyGLRStackItem const *)yyvsp)@{YYFILL (($2) - ($1))@}.yystate.yysemantics.yysval[]m4_ifval([$3], [.$3]))])
121
122
123
124 ## ----------- ##
125 ## Locations. ##
126 ## ----------- ##
127
128 # b4_lhs_location()
129 # -----------------
130 # Expansion of @$.
131 m4_define([b4_lhs_location],
132 [(*yylocp)])
133
134
135 # b4_rhs_location(RULE-LENGTH, NUM)
136 # ---------------------------------
137 # Expansion of @NUM, where the current rule has RULE-LENGTH symbols
138 # on RHS.
139 m4_define([b4_rhs_location],
140 [(((yyGLRStackItem const *)yyvsp)@{YYFILL (($2) - ($1))@}.yystate.yyloc)])
141
142
143
144 ## -------------- ##
145 ## Output files. ##
146 ## -------------- ##
147
148 # We do want M4 expansion after # for CPP macros.
149 m4_changecom()
150 m4_divert_push(0)dnl
151 @output(b4_parser_file_name@)@
152 b4_copyright([Skeleton implementation for Bison GLR parsers in C],
153 [2002, 2003, 2004, 2005, 2006, 2007, 2008, 2009])
154 [
155 /* C GLR parser skeleton written by Paul Hilfinger. */
156
157 ]b4_identification
158
159 b4_percent_code_get([[top]])[]dnl
160 m4_if(b4_prefix, [yy], [],
161 [/* Substitute the variable and function names. */
162 #define yyparse b4_prefix[]parse
163 #define yylex b4_prefix[]lex
164 #define yyerror b4_prefix[]error
165 #define yylval b4_prefix[]lval
166 #define yychar b4_prefix[]char
167 #define yydebug b4_prefix[]debug
168 #define yynerrs b4_prefix[]nerrs
169 #define yylloc b4_prefix[]lloc])[
170
171 /* Copy the first part of user declarations. */
172 ]b4_user_pre_prologue
173
174 dnl # b4_shared_declarations
175 dnl # ----------------------
176 dnl # Declaration that might either go into the header (if --defines)
177 dnl # or open coded in the parser body.
178 m4_define([b4_shared_declarations],
179 [b4_percent_code_get([[requires]])[]dnl
180
181 b4_token_enums(b4_tokens)
182
183 [#ifndef YYSTYPE
184 ]m4_ifdef([b4_stype],
185 [[typedef union ]b4_union_name[
186 {
187 ]b4_user_stype[
188 } YYSTYPE;
189 # define YYSTYPE_IS_TRIVIAL 1]],
190 [m4_if(b4_tag_seen_flag, 0,
191 [[typedef int YYSTYPE;
192 # define YYSTYPE_IS_TRIVIAL 1]])])[
193 #endif
194
195 #if ! defined YYLTYPE && ! defined YYLTYPE_IS_DECLARED
196 typedef struct YYLTYPE
197 {
198 ]b4_locations_if([
199 int first_line;
200 int first_column;
201 int last_line;
202 int last_column;
203 ],[
204 char yydummy;
205 ])[
206 } YYLTYPE;
207 # define YYLTYPE_IS_DECLARED 1
208 # define YYLTYPE_IS_TRIVIAL 1
209 #endif
210
211 ]b4_percent_code_get([[provides]])[]dnl
212 ])
213
214 b4_defines_if([[#include "@basename(]b4_spec_defines_file[@)"]],
215 [b4_shared_declarations])[
216
217 /* Enabling traces. */
218 #ifndef YYDEBUG
219 # define YYDEBUG ]b4_debug_flag[
220 #endif
221
222 /* Enabling verbose error messages. */
223 #ifdef YYERROR_VERBOSE
224 # undef YYERROR_VERBOSE
225 # define YYERROR_VERBOSE 1
226 #else
227 # define YYERROR_VERBOSE ]b4_error_verbose_flag[
228 #endif
229
230 /* Enabling the token table. */
231 #ifndef YYTOKEN_TABLE
232 # define YYTOKEN_TABLE ]b4_token_table[
233 #endif
234
235 /* Default (constant) value used for initialization for null
236 right-hand sides. Unlike the standard yacc.c template,
237 here we set the default value of $$ to a zeroed-out value.
238 Since the default value is undefined, this behavior is
239 technically correct. */
240 static YYSTYPE yyval_default;
241
242 /* Copy the second part of user declarations. */
243 ]b4_user_post_prologue
244 b4_percent_code_get[]dnl
245
246 [#include <stdio.h>
247 #include <stdlib.h>
248 #include <string.h>
249
250 #ifndef YY_
251 # if YYENABLE_NLS
252 # if ENABLE_NLS
253 # include <libintl.h> /* INFRINGES ON USER NAME SPACE */
254 # define YY_(msgid) dgettext ("bison-runtime", msgid)
255 # endif
256 # endif
257 # ifndef YY_
258 # define YY_(msgid) msgid
259 # endif
260 #endif
261
262 /* Suppress unused-variable warnings by "using" E. */
263 #if ! defined lint || defined __GNUC__
264 # define YYUSE(e) ((void) (e))
265 #else
266 # define YYUSE(e) /* empty */
267 #endif
268
269 /* Identity function, used to suppress warnings about constant conditions. */
270 #ifndef lint
271 # define YYID(n) (n)
272 #else
273 ]b4_c_function_def([YYID], [static int], [[int i], [i]])[
274 {
275 return i;
276 }
277 #endif
278
279 #ifndef YYFREE
280 # define YYFREE free
281 #endif
282 #ifndef YYMALLOC
283 # define YYMALLOC malloc
284 #endif
285 #ifndef YYREALLOC
286 # define YYREALLOC realloc
287 #endif
288
289 #define YYSIZEMAX ((size_t) -1)
290
291 #ifdef __cplusplus
292 typedef bool yybool;
293 #else
294 typedef unsigned char yybool;
295 #endif
296 #define yytrue 1
297 #define yyfalse 0
298
299 #ifndef YYSETJMP
300 # include <setjmp.h>
301 # define YYJMP_BUF jmp_buf
302 # define YYSETJMP(env) setjmp (env)
303 # define YYLONGJMP(env, val) longjmp (env, val)
304 #endif
305
306 /*-----------------.
307 | GCC extensions. |
308 `-----------------*/
309
310 #ifndef __attribute__
311 /* This feature is available in gcc versions 2.5 and later. */
312 # if (! defined __GNUC__ || __GNUC__ < 2 \
313 || (__GNUC__ == 2 && __GNUC_MINOR__ < 5) || __STRICT_ANSI__)
314 # define __attribute__(Spec) /* empty */
315 # endif
316 #endif
317
318 ]b4_locations_if([#define YYOPTIONAL_LOC(Name) Name],[
319 #ifdef __cplusplus
320 # define YYOPTIONAL_LOC(Name) /* empty */
321 #else
322 # define YYOPTIONAL_LOC(Name) Name __attribute__ ((__unused__))
323 #endif])[
324
325 #ifndef YYASSERT
326 # define YYASSERT(condition) ((void) ((condition) || (abort (), 0)))
327 #endif
328
329 /* YYFINAL -- State number of the termination state. */
330 #define YYFINAL ]b4_final_state_number[
331 /* YYLAST -- Last index in YYTABLE. */
332 #define YYLAST ]b4_last[
333
334 /* YYNTOKENS -- Number of terminals. */
335 #define YYNTOKENS ]b4_tokens_number[
336 /* YYNNTS -- Number of nonterminals. */
337 #define YYNNTS ]b4_nterms_number[
338 /* YYNRULES -- Number of rules. */
339 #define YYNRULES ]b4_rules_number[
340 /* YYNRULES -- Number of states. */
341 #define YYNSTATES ]b4_states_number[
342 /* YYMAXRHS -- Maximum number of symbols on right-hand side of rule. */
343 #define YYMAXRHS ]b4_r2_max[
344 /* YYMAXLEFT -- Maximum number of symbols to the left of a handle
345 accessed by $0, $-1, etc., in any rule. */
346 #define YYMAXLEFT ]b4_max_left_semantic_context[
347
348 /* YYTRANSLATE(X) -- Bison symbol number corresponding to X. */
349 #define YYUNDEFTOK ]b4_undef_token_number[
350 #define YYMAXUTOK ]b4_user_token_number_max[
351
352 #define YYTRANSLATE(YYX) \
353 ((unsigned int) (YYX) <= YYMAXUTOK ? yytranslate[YYX] : YYUNDEFTOK)
354
355 /* YYTRANSLATE[YYLEX] -- Bison symbol number corresponding to YYLEX. */
356 static const ]b4_int_type_for([b4_translate])[ yytranslate[] =
357 {
358 ]b4_translate[
359 };
360
361 #if YYDEBUG
362 /* YYPRHS[YYN] -- Index of the first RHS symbol of rule number YYN in
363 YYRHS. */
364 static const ]b4_int_type_for([b4_prhs])[ yyprhs[] =
365 {
366 ]b4_prhs[
367 };
368
369 /* YYRHS -- A `-1'-separated list of the rules' RHS. */
370 static const ]b4_int_type_for([b4_rhs])[ yyrhs[] =
371 {
372 ]b4_rhs[
373 };
374
375 /* YYRLINE[YYN] -- source line where rule number YYN was defined. */
376 static const ]b4_int_type_for([b4_rline])[ yyrline[] =
377 {
378 ]b4_rline[
379 };
380 #endif
381
382 #if YYDEBUG || YYERROR_VERBOSE || YYTOKEN_TABLE
383 /* YYTNAME[SYMBOL-NUM] -- String name of the symbol SYMBOL-NUM.
384 First, the terminals, then, starting at YYNTOKENS, nonterminals. */
385 static const char *const yytname[] =
386 {
387 ]b4_tname[
388 };
389 #endif
390
391 /* YYR1[YYN] -- Symbol number of symbol that rule YYN derives. */
392 static const ]b4_int_type_for([b4_r1])[ yyr1[] =
393 {
394 ]b4_r1[
395 };
396
397 /* YYR2[YYN] -- Number of symbols composing right hand side of rule YYN. */
398 static const ]b4_int_type_for([b4_r2])[ yyr2[] =
399 {
400 ]b4_r2[
401 };
402
403 /* YYDPREC[RULE-NUM] -- Dynamic precedence of rule #RULE-NUM (0 if none). */
404 static const ]b4_int_type_for([b4_dprec])[ yydprec[] =
405 {
406 ]b4_dprec[
407 };
408
409 /* YYMERGER[RULE-NUM] -- Index of merging function for rule #RULE-NUM. */
410 static const ]b4_int_type_for([b4_merger])[ yymerger[] =
411 {
412 ]b4_merger[
413 };
414
415 /* YYDEFACT[S] -- default reduction number in state S. Performed when
416 YYTABLE doesn't specify something else to do. Zero means the default
417 is an error. */
418 static const ]b4_int_type_for([b4_defact])[ yydefact[] =
419 {
420 ]b4_defact[
421 };
422
423 /* YYPDEFGOTO[NTERM-NUM]. */
424 static const ]b4_int_type_for([b4_defgoto])[ yydefgoto[] =
425 {
426 ]b4_defgoto[
427 };
428
429 /* YYPACT[STATE-NUM] -- Index in YYTABLE of the portion describing
430 STATE-NUM. */
431 #define YYPACT_NINF ]b4_pact_ninf[
432 static const ]b4_int_type_for([b4_pact])[ yypact[] =
433 {
434 ]b4_pact[
435 };
436
437 /* YYPGOTO[NTERM-NUM]. */
438 static const ]b4_int_type_for([b4_pgoto])[ yypgoto[] =
439 {
440 ]b4_pgoto[
441 };
442
443 /* YYTABLE[YYPACT[STATE-NUM]]. What to do in state STATE-NUM. If
444 positive, shift that token. If negative, reduce the rule which
445 number is the opposite. If zero, do what YYDEFACT says.
446 If YYTABLE_NINF, syntax error. */
447 #define YYTABLE_NINF ]b4_table_ninf[
448 static const ]b4_int_type_for([b4_table])[ yytable[] =
449 {
450 ]b4_table[
451 };
452
453 /* YYCONFLP[YYPACT[STATE-NUM]] -- Pointer into YYCONFL of start of
454 list of conflicting reductions corresponding to action entry for
455 state STATE-NUM in yytable. 0 means no conflicts. The list in
456 yyconfl is terminated by a rule number of 0. */
457 static const ]b4_int_type_for([b4_conflict_list_heads])[ yyconflp[] =
458 {
459 ]b4_conflict_list_heads[
460 };
461
462 /* YYCONFL[I] -- lists of conflicting rule numbers, each terminated by
463 0, pointed into by YYCONFLP. */
464 ]dnl Do not use b4_int_type_for here, since there are places where
465 dnl pointers onto yyconfl are taken, which type is "short int *".
466 dnl We probably ought to introduce a type for confl.
467 [static const short int yyconfl[] =
468 {
469 ]b4_conflicting_rules[
470 };
471
472 static const ]b4_int_type_for([b4_check])[ yycheck[] =
473 {
474 ]b4_check[
475 };
476
477 /* YYSTOS[STATE-NUM] -- The (internal number of the) accessing
478 symbol of state STATE-NUM. */
479 static const ]b4_int_type_for([b4_stos])[ yystos[] =
480 {
481 ]b4_stos[
482 };
483
484 \f
485 /* Prevent warning if -Wmissing-prototypes. */
486 ]b4_c_ansi_function_decl([yyparse], [int], b4_parse_param)[
487
488 /* Error token number */
489 #define YYTERROR 1
490
491 /* YYLLOC_DEFAULT -- Set CURRENT to span from RHS[1] to RHS[N].
492 If N is 0, then set CURRENT to the empty location which ends
493 the previous symbol: RHS[0] (always defined). */
494
495 ]b4_locations_if([[
496 #define YYRHSLOC(Rhs, K) ((Rhs)[K].yystate.yyloc)
497 #ifndef YYLLOC_DEFAULT
498 # define YYLLOC_DEFAULT(Current, Rhs, N) \
499 do \
500 if (YYID (N)) \
501 { \
502 (Current).first_line = YYRHSLOC (Rhs, 1).first_line; \
503 (Current).first_column = YYRHSLOC (Rhs, 1).first_column; \
504 (Current).last_line = YYRHSLOC (Rhs, N).last_line; \
505 (Current).last_column = YYRHSLOC (Rhs, N).last_column; \
506 } \
507 else \
508 { \
509 (Current).first_line = (Current).last_line = \
510 YYRHSLOC (Rhs, 0).last_line; \
511 (Current).first_column = (Current).last_column = \
512 YYRHSLOC (Rhs, 0).last_column; \
513 } \
514 while (YYID (0))
515
516 /* YY_LOCATION_PRINT -- Print the location on the stream.
517 This macro was not mandated originally: define only if we know
518 we won't break user code: when these are the locations we know. */
519
520 # define YY_LOCATION_PRINT(File, Loc) \
521 fprintf (File, "%d.%d-%d.%d", \
522 (Loc).first_line, (Loc).first_column, \
523 (Loc).last_line, (Loc).last_column)
524 #endif
525 ]],[
526 #ifndef YYLLOC_DEFAULT
527 # define YYLLOC_DEFAULT(Current, Rhs, N) ((void) 0)
528 #endif
529 ])[
530
531 #ifndef YY_LOCATION_PRINT
532 # define YY_LOCATION_PRINT(File, Loc) ((void) 0)
533 #endif
534
535
536 /* YYLEX -- calling `yylex' with the right arguments. */
537 #define YYLEX ]b4_c_function_call([yylex], [int], b4_lex_param)[
538
539 ]b4_pure_if(
540 [
541 #undef yynerrs
542 #define yynerrs (yystackp->yyerrcnt)
543 #undef yychar
544 #define yychar (yystackp->yyrawchar)
545 #undef yylval
546 #define yylval (yystackp->yyval)
547 #undef yylloc
548 #define yylloc (yystackp->yyloc)
549 m4_if(b4_prefix[], [yy], [],
550 [#define b4_prefix[]nerrs yynerrs
551 #define b4_prefix[]char yychar
552 #define b4_prefix[]lval yylval
553 #define b4_prefix[]lloc yylloc])],
554 [YYSTYPE yylval;
555
556 YYLTYPE yylloc;
557
558 int yynerrs;
559 int yychar;])[
560
561 static const int YYEOF = 0;
562 static const int YYEMPTY = -2;
563
564 typedef enum { yyok, yyaccept, yyabort, yyerr } YYRESULTTAG;
565
566 #define YYCHK(YYE) \
567 do { YYRESULTTAG yyflag = YYE; if (yyflag != yyok) return yyflag; } \
568 while (YYID (0))
569
570 #if YYDEBUG
571
572 # ifndef YYFPRINTF
573 # define YYFPRINTF fprintf
574 # endif
575
576 # define YYDPRINTF(Args) \
577 do { \
578 if (yydebug) \
579 YYFPRINTF Args; \
580 } while (YYID (0))
581
582 ]b4_yy_symbol_print_generate([b4_c_ansi_function_def])[
583
584 # define YY_SYMBOL_PRINT(Title, Type, Value, Location) \
585 do { \
586 if (yydebug) \
587 { \
588 YYFPRINTF (stderr, "%s ", Title); \
589 yy_symbol_print (stderr, Type, \
590 Value]b4_locations_if([, Location])[]b4_user_args[); \
591 YYFPRINTF (stderr, "\n"); \
592 } \
593 } while (YYID (0))
594
595 /* Nonzero means print parse trace. It is left uninitialized so that
596 multiple parsers can coexist. */
597 int yydebug;
598
599 #else /* !YYDEBUG */
600
601 # define YYDPRINTF(Args)
602 # define YY_SYMBOL_PRINT(Title, Type, Value, Location)
603
604 #endif /* !YYDEBUG */
605
606 /* YYINITDEPTH -- initial size of the parser's stacks. */
607 #ifndef YYINITDEPTH
608 # define YYINITDEPTH ]b4_stack_depth_init[
609 #endif
610
611 /* YYMAXDEPTH -- maximum size the stacks can grow to (effective only
612 if the built-in stack extension method is used).
613
614 Do not make this value too large; the results are undefined if
615 SIZE_MAX < YYMAXDEPTH * sizeof (GLRStackItem)
616 evaluated with infinite-precision integer arithmetic. */
617
618 #ifndef YYMAXDEPTH
619 # define YYMAXDEPTH ]b4_stack_depth_max[
620 #endif
621
622 /* Minimum number of free items on the stack allowed after an
623 allocation. This is to allow allocation and initialization
624 to be completed by functions that call yyexpandGLRStack before the
625 stack is expanded, thus insuring that all necessary pointers get
626 properly redirected to new data. */
627 #define YYHEADROOM 2
628
629 #ifndef YYSTACKEXPANDABLE
630 # if (! defined __cplusplus \
631 || (]b4_locations_if([[defined YYLTYPE_IS_TRIVIAL && YYLTYPE_IS_TRIVIAL \
632 && ]])[defined YYSTYPE_IS_TRIVIAL && YYSTYPE_IS_TRIVIAL))
633 # define YYSTACKEXPANDABLE 1
634 # else
635 # define YYSTACKEXPANDABLE 0
636 # endif
637 #endif
638
639 #if YYSTACKEXPANDABLE
640 # define YY_RESERVE_GLRSTACK(Yystack) \
641 do { \
642 if (Yystack->yyspaceLeft < YYHEADROOM) \
643 yyexpandGLRStack (Yystack); \
644 } while (YYID (0))
645 #else
646 # define YY_RESERVE_GLRSTACK(Yystack) \
647 do { \
648 if (Yystack->yyspaceLeft < YYHEADROOM) \
649 yyMemoryExhausted (Yystack); \
650 } while (YYID (0))
651 #endif
652
653
654 #if YYERROR_VERBOSE
655
656 # ifndef yystpcpy
657 # if defined __GLIBC__ && defined _STRING_H && defined _GNU_SOURCE
658 # define yystpcpy stpcpy
659 # else
660 /* Copy YYSRC to YYDEST, returning the address of the terminating '\0' in
661 YYDEST. */
662 static char *
663 yystpcpy (char *yydest, const char *yysrc)
664 {
665 char *yyd = yydest;
666 const char *yys = yysrc;
667
668 while ((*yyd++ = *yys++) != '\0')
669 continue;
670
671 return yyd - 1;
672 }
673 # endif
674 # endif
675
676 # ifndef yytnamerr
677 /* Copy to YYRES the contents of YYSTR after stripping away unnecessary
678 quotes and backslashes, so that it's suitable for yyerror. The
679 heuristic is that double-quoting is unnecessary unless the string
680 contains an apostrophe, a comma, or backslash (other than
681 backslash-backslash). YYSTR is taken from yytname. If YYRES is
682 null, do not copy; instead, return the length of what the result
683 would have been. */
684 static size_t
685 yytnamerr (char *yyres, const char *yystr)
686 {
687 if (*yystr == '"')
688 {
689 size_t yyn = 0;
690 char const *yyp = yystr;
691
692 for (;;)
693 switch (*++yyp)
694 {
695 case '\'':
696 case ',':
697 goto do_not_strip_quotes;
698
699 case '\\':
700 if (*++yyp != '\\')
701 goto do_not_strip_quotes;
702 /* Fall through. */
703 default:
704 if (yyres)
705 yyres[yyn] = *yyp;
706 yyn++;
707 break;
708
709 case '"':
710 if (yyres)
711 yyres[yyn] = '\0';
712 return yyn;
713 }
714 do_not_strip_quotes: ;
715 }
716
717 if (! yyres)
718 return strlen (yystr);
719
720 return yystpcpy (yyres, yystr) - yyres;
721 }
722 # endif
723
724 #endif /* !YYERROR_VERBOSE */
725
726 /** State numbers, as in LALR(1) machine */
727 typedef int yyStateNum;
728
729 /** Rule numbers, as in LALR(1) machine */
730 typedef int yyRuleNum;
731
732 /** Grammar symbol */
733 typedef short int yySymbol;
734
735 /** Item references, as in LALR(1) machine */
736 typedef short int yyItemNum;
737
738 typedef struct yyGLRState yyGLRState;
739 typedef struct yyGLRStateSet yyGLRStateSet;
740 typedef struct yySemanticOption yySemanticOption;
741 typedef union yyGLRStackItem yyGLRStackItem;
742 typedef struct yyGLRStack yyGLRStack;
743
744 struct yyGLRState {
745 /** Type tag: always true. */
746 yybool yyisState;
747 /** Type tag for yysemantics. If true, yysval applies, otherwise
748 * yyfirstVal applies. */
749 yybool yyresolved;
750 /** Number of corresponding LALR(1) machine state. */
751 yyStateNum yylrState;
752 /** Preceding state in this stack */
753 yyGLRState* yypred;
754 /** Source position of the first token produced by my symbol */
755 size_t yyposn;
756 union {
757 /** First in a chain of alternative reductions producing the
758 * non-terminal corresponding to this state, threaded through
759 * yynext. */
760 yySemanticOption* yyfirstVal;
761 /** Semantic value for this state. */
762 YYSTYPE yysval;
763 } yysemantics;
764 /** Source location for this state. */
765 YYLTYPE yyloc;
766 };
767
768 struct yyGLRStateSet {
769 yyGLRState** yystates;
770 /** During nondeterministic operation, yylookaheadNeeds tracks which
771 * stacks have actually needed the current lookahead. During deterministic
772 * operation, yylookaheadNeeds[0] is not maintained since it would merely
773 * duplicate yychar != YYEMPTY. */
774 yybool* yylookaheadNeeds;
775 size_t yysize, yycapacity;
776 };
777
778 struct yySemanticOption {
779 /** Type tag: always false. */
780 yybool yyisState;
781 /** Rule number for this reduction */
782 yyRuleNum yyrule;
783 /** The last RHS state in the list of states to be reduced. */
784 yyGLRState* yystate;
785 /** The lookahead for this reduction. */
786 int yyrawchar;
787 YYSTYPE yyval;
788 YYLTYPE yyloc;
789 /** Next sibling in chain of options. To facilitate merging,
790 * options are chained in decreasing order by address. */
791 yySemanticOption* yynext;
792 };
793
794 /** Type of the items in the GLR stack. The yyisState field
795 * indicates which item of the union is valid. */
796 union yyGLRStackItem {
797 yyGLRState yystate;
798 yySemanticOption yyoption;
799 };
800
801 struct yyGLRStack {
802 int yyerrState;
803 ]b4_locations_if([[ /* To compute the location of the error token. */
804 yyGLRStackItem yyerror_range[3];]])[
805 ]b4_pure_if(
806 [
807 int yyerrcnt;
808 int yyrawchar;
809 YYSTYPE yyval;
810 YYLTYPE yyloc;
811 ])[
812 YYJMP_BUF yyexception_buffer;
813 yyGLRStackItem* yyitems;
814 yyGLRStackItem* yynextFree;
815 size_t yyspaceLeft;
816 yyGLRState* yysplitPoint;
817 yyGLRState* yylastDeleted;
818 yyGLRStateSet yytops;
819 };
820
821 #if YYSTACKEXPANDABLE
822 static void yyexpandGLRStack (yyGLRStack* yystackp);
823 #endif
824
825 static void yyFail (yyGLRStack* yystackp]b4_pure_formals[, const char* yymsg)
826 __attribute__ ((__noreturn__));
827 static void
828 yyFail (yyGLRStack* yystackp]b4_pure_formals[, const char* yymsg)
829 {
830 if (yymsg != NULL)
831 yyerror (]b4_yyerror_args[yymsg);
832 YYLONGJMP (yystackp->yyexception_buffer, 1);
833 }
834
835 static void yyMemoryExhausted (yyGLRStack* yystackp)
836 __attribute__ ((__noreturn__));
837 static void
838 yyMemoryExhausted (yyGLRStack* yystackp)
839 {
840 YYLONGJMP (yystackp->yyexception_buffer, 2);
841 }
842
843 #if YYDEBUG || YYERROR_VERBOSE
844 /** A printable representation of TOKEN. */
845 static inline const char*
846 yytokenName (yySymbol yytoken)
847 {
848 if (yytoken == YYEMPTY)
849 return "";
850
851 return yytname[yytoken];
852 }
853 #endif
854
855 /** Fill in YYVSP[YYLOW1 .. YYLOW0-1] from the chain of states starting
856 * at YYVSP[YYLOW0].yystate.yypred. Leaves YYVSP[YYLOW1].yystate.yypred
857 * containing the pointer to the next state in the chain. */
858 static void yyfillin (yyGLRStackItem *, int, int) __attribute__ ((__unused__));
859 static void
860 yyfillin (yyGLRStackItem *yyvsp, int yylow0, int yylow1)
861 {
862 yyGLRState* s;
863 int i;
864 s = yyvsp[yylow0].yystate.yypred;
865 for (i = yylow0-1; i >= yylow1; i -= 1)
866 {
867 YYASSERT (s->yyresolved);
868 yyvsp[i].yystate.yyresolved = yytrue;
869 yyvsp[i].yystate.yysemantics.yysval = s->yysemantics.yysval;
870 yyvsp[i].yystate.yyloc = s->yyloc;
871 s = yyvsp[i].yystate.yypred = s->yypred;
872 }
873 }
874
875 /* Do nothing if YYNORMAL or if *YYLOW <= YYLOW1. Otherwise, fill in
876 * YYVSP[YYLOW1 .. *YYLOW-1] as in yyfillin and set *YYLOW = YYLOW1.
877 * For convenience, always return YYLOW1. */
878 static inline int yyfill (yyGLRStackItem *, int *, int, yybool)
879 __attribute__ ((__unused__));
880 static inline int
881 yyfill (yyGLRStackItem *yyvsp, int *yylow, int yylow1, yybool yynormal)
882 {
883 if (!yynormal && yylow1 < *yylow)
884 {
885 yyfillin (yyvsp, *yylow, yylow1);
886 *yylow = yylow1;
887 }
888 return yylow1;
889 }
890
891 /** Perform user action for rule number YYN, with RHS length YYRHSLEN,
892 * and top stack item YYVSP. YYLVALP points to place to put semantic
893 * value ($$), and yylocp points to place for location information
894 * (@@$). Returns yyok for normal return, yyaccept for YYACCEPT,
895 * yyerr for YYERROR, yyabort for YYABORT. */
896 /*ARGSUSED*/ static YYRESULTTAG
897 yyuserAction (yyRuleNum yyn, int yyrhslen, yyGLRStackItem* yyvsp,
898 YYSTYPE* yyvalp,
899 YYLTYPE* YYOPTIONAL_LOC (yylocp),
900 yyGLRStack* yystackp
901 ]b4_user_formals[)
902 {
903 yybool yynormal __attribute__ ((__unused__)) =
904 (yystackp->yysplitPoint == NULL);
905 int yylow;
906 ]b4_parse_param_use[]dnl
907 [# undef yyerrok
908 # define yyerrok (yystackp->yyerrState = 0)
909 # undef YYACCEPT
910 # define YYACCEPT return yyaccept
911 # undef YYABORT
912 # define YYABORT return yyabort
913 # undef YYERROR
914 # define YYERROR return yyerrok, yyerr
915 # undef YYRECOVERING
916 # define YYRECOVERING() (yystackp->yyerrState != 0)
917 # undef yyclearin
918 # define yyclearin (yychar = YYEMPTY)
919 # undef YYFILL
920 # define YYFILL(N) yyfill (yyvsp, &yylow, N, yynormal)
921 # undef YYBACKUP
922 # define YYBACKUP(Token, Value) \
923 return yyerror (]b4_yyerror_args[YY_("syntax error: cannot back up")), \
924 yyerrok, yyerr
925
926 yylow = 1;
927 if (yyrhslen == 0)
928 *yyvalp = yyval_default;
929 else
930 *yyvalp = yyvsp[YYFILL (1-yyrhslen)].yystate.yysemantics.yysval;
931 YYLLOC_DEFAULT ((*yylocp), (yyvsp - yyrhslen), yyrhslen);
932 ]b4_locations_if([[ yystackp->yyerror_range[1].yystate.yyloc = *yylocp;
933 ]])[
934 switch (yyn)
935 {
936 ]b4_user_actions[
937 default: break;
938 }
939
940 return yyok;
941 # undef yyerrok
942 # undef YYABORT
943 # undef YYACCEPT
944 # undef YYERROR
945 # undef YYBACKUP
946 # undef yyclearin
947 # undef YYRECOVERING
948 }
949 \f
950
951 /*ARGSUSED*/ static void
952 yyuserMerge (int yyn, YYSTYPE* yy0, YYSTYPE* yy1)
953 {
954 YYUSE (yy0);
955 YYUSE (yy1);
956
957 switch (yyn)
958 {
959 ]b4_mergers[
960 default: break;
961 }
962 }
963
964 /* Bison grammar-table manipulation. */
965
966 ]b4_yydestruct_generate([b4_c_ansi_function_def])[
967
968 /** Number of symbols composing the right hand side of rule #RULE. */
969 static inline int
970 yyrhsLength (yyRuleNum yyrule)
971 {
972 return yyr2[yyrule];
973 }
974
975 static void
976 yydestroyGLRState (char const *yymsg, yyGLRState *yys]b4_user_formals[)
977 {
978 if (yys->yyresolved)
979 yydestruct (yymsg, yystos[yys->yylrState],
980 &yys->yysemantics.yysval]b4_locations_if([, &yys->yyloc])[]b4_user_args[);
981 else
982 {
983 #if YYDEBUG
984 if (yydebug)
985 {
986 if (yys->yysemantics.yyfirstVal)
987 YYFPRINTF (stderr, "%s unresolved ", yymsg);
988 else
989 YYFPRINTF (stderr, "%s incomplete ", yymsg);
990 yy_symbol_print (stderr, yystos[yys->yylrState],
991 NULL]b4_locations_if([, &yys->yyloc])[]b4_user_args[);
992 YYFPRINTF (stderr, "\n");
993 }
994 #endif
995
996 if (yys->yysemantics.yyfirstVal)
997 {
998 yySemanticOption *yyoption = yys->yysemantics.yyfirstVal;
999 yyGLRState *yyrh;
1000 int yyn;
1001 for (yyrh = yyoption->yystate, yyn = yyrhsLength (yyoption->yyrule);
1002 yyn > 0;
1003 yyrh = yyrh->yypred, yyn -= 1)
1004 yydestroyGLRState (yymsg, yyrh]b4_user_args[);
1005 }
1006 }
1007 }
1008
1009 /** Left-hand-side symbol for rule #RULE. */
1010 static inline yySymbol
1011 yylhsNonterm (yyRuleNum yyrule)
1012 {
1013 return yyr1[yyrule];
1014 }
1015
1016 #define yyis_pact_ninf(yystate) \
1017 ]b4_table_value_equals([[pact]], [[yystate]], [b4_pact_ninf])[
1018
1019 /** True iff LR state STATE has only a default reduction (regardless
1020 * of token). */
1021 static inline yybool
1022 yyisDefaultedState (yyStateNum yystate)
1023 {
1024 return yyis_pact_ninf (yypact[yystate]);
1025 }
1026
1027 /** The default reduction for STATE, assuming it has one. */
1028 static inline yyRuleNum
1029 yydefaultAction (yyStateNum yystate)
1030 {
1031 return yydefact[yystate];
1032 }
1033
1034 #define yyis_table_ninf(yytable_value) \
1035 ]b4_table_value_equals([[table]], [[yytable_value]], [b4_table_ninf])[
1036
1037 /** Set *YYACTION to the action to take in YYSTATE on seeing YYTOKEN.
1038 * Result R means
1039 * R < 0: Reduce on rule -R.
1040 * R = 0: Error.
1041 * R > 0: Shift to state R.
1042 * Set *CONFLICTS to a pointer into yyconfl to 0-terminated list of
1043 * conflicting reductions.
1044 */
1045 static inline void
1046 yygetLRActions (yyStateNum yystate, int yytoken,
1047 int* yyaction, const short int** yyconflicts)
1048 {
1049 int yyindex = yypact[yystate] + yytoken;
1050 if (yyindex < 0 || YYLAST < yyindex || yycheck[yyindex] != yytoken)
1051 {
1052 *yyaction = -yydefact[yystate];
1053 *yyconflicts = yyconfl;
1054 }
1055 else if (! yyis_table_ninf (yytable[yyindex]))
1056 {
1057 *yyaction = yytable[yyindex];
1058 *yyconflicts = yyconfl + yyconflp[yyindex];
1059 }
1060 else
1061 {
1062 *yyaction = 0;
1063 *yyconflicts = yyconfl + yyconflp[yyindex];
1064 }
1065 }
1066
1067 static inline yyStateNum
1068 yyLRgotoState (yyStateNum yystate, yySymbol yylhs)
1069 {
1070 int yyr;
1071 yyr = yypgoto[yylhs - YYNTOKENS] + yystate;
1072 if (0 <= yyr && yyr <= YYLAST && yycheck[yyr] == yystate)
1073 return yytable[yyr];
1074 else
1075 return yydefgoto[yylhs - YYNTOKENS];
1076 }
1077
1078 static inline yybool
1079 yyisShiftAction (int yyaction)
1080 {
1081 return 0 < yyaction;
1082 }
1083
1084 static inline yybool
1085 yyisErrorAction (int yyaction)
1086 {
1087 return yyaction == 0;
1088 }
1089
1090 /* GLRStates */
1091
1092 /** Return a fresh GLRStackItem. Callers should call
1093 * YY_RESERVE_GLRSTACK afterwards to make sure there is sufficient
1094 * headroom. */
1095
1096 static inline yyGLRStackItem*
1097 yynewGLRStackItem (yyGLRStack* yystackp, yybool yyisState)
1098 {
1099 yyGLRStackItem* yynewItem = yystackp->yynextFree;
1100 yystackp->yyspaceLeft -= 1;
1101 yystackp->yynextFree += 1;
1102 yynewItem->yystate.yyisState = yyisState;
1103 return yynewItem;
1104 }
1105
1106 /** Add a new semantic action that will execute the action for rule
1107 * RULENUM on the semantic values in RHS to the list of
1108 * alternative actions for STATE. Assumes that RHS comes from
1109 * stack #K of *STACKP. */
1110 static void
1111 yyaddDeferredAction (yyGLRStack* yystackp, size_t yyk, yyGLRState* yystate,
1112 yyGLRState* rhs, yyRuleNum yyrule)
1113 {
1114 yySemanticOption* yynewOption =
1115 &yynewGLRStackItem (yystackp, yyfalse)->yyoption;
1116 yynewOption->yystate = rhs;
1117 yynewOption->yyrule = yyrule;
1118 if (yystackp->yytops.yylookaheadNeeds[yyk])
1119 {
1120 yynewOption->yyrawchar = yychar;
1121 yynewOption->yyval = yylval;
1122 yynewOption->yyloc = yylloc;
1123 }
1124 else
1125 yynewOption->yyrawchar = YYEMPTY;
1126 yynewOption->yynext = yystate->yysemantics.yyfirstVal;
1127 yystate->yysemantics.yyfirstVal = yynewOption;
1128
1129 YY_RESERVE_GLRSTACK (yystackp);
1130 }
1131
1132 /* GLRStacks */
1133
1134 /** Initialize SET to a singleton set containing an empty stack. */
1135 static yybool
1136 yyinitStateSet (yyGLRStateSet* yyset)
1137 {
1138 yyset->yysize = 1;
1139 yyset->yycapacity = 16;
1140 yyset->yystates = (yyGLRState**) YYMALLOC (16 * sizeof yyset->yystates[0]);
1141 if (! yyset->yystates)
1142 return yyfalse;
1143 yyset->yystates[0] = NULL;
1144 yyset->yylookaheadNeeds =
1145 (yybool*) YYMALLOC (16 * sizeof yyset->yylookaheadNeeds[0]);
1146 if (! yyset->yylookaheadNeeds)
1147 {
1148 YYFREE (yyset->yystates);
1149 return yyfalse;
1150 }
1151 return yytrue;
1152 }
1153
1154 static void yyfreeStateSet (yyGLRStateSet* yyset)
1155 {
1156 YYFREE (yyset->yystates);
1157 YYFREE (yyset->yylookaheadNeeds);
1158 }
1159
1160 /** Initialize STACK to a single empty stack, with total maximum
1161 * capacity for all stacks of SIZE. */
1162 static yybool
1163 yyinitGLRStack (yyGLRStack* yystackp, size_t yysize)
1164 {
1165 yystackp->yyerrState = 0;
1166 yynerrs = 0;
1167 yystackp->yyspaceLeft = yysize;
1168 yystackp->yyitems =
1169 (yyGLRStackItem*) YYMALLOC (yysize * sizeof yystackp->yynextFree[0]);
1170 if (!yystackp->yyitems)
1171 return yyfalse;
1172 yystackp->yynextFree = yystackp->yyitems;
1173 yystackp->yysplitPoint = NULL;
1174 yystackp->yylastDeleted = NULL;
1175 return yyinitStateSet (&yystackp->yytops);
1176 }
1177
1178
1179 #if YYSTACKEXPANDABLE
1180 # define YYRELOC(YYFROMITEMS,YYTOITEMS,YYX,YYTYPE) \
1181 &((YYTOITEMS) - ((YYFROMITEMS) - (yyGLRStackItem*) (YYX)))->YYTYPE
1182
1183 /** If STACK is expandable, extend it. WARNING: Pointers into the
1184 stack from outside should be considered invalid after this call.
1185 We always expand when there are 1 or fewer items left AFTER an
1186 allocation, so that we can avoid having external pointers exist
1187 across an allocation. */
1188 static void
1189 yyexpandGLRStack (yyGLRStack* yystackp)
1190 {
1191 yyGLRStackItem* yynewItems;
1192 yyGLRStackItem* yyp0, *yyp1;
1193 size_t yysize, yynewSize;
1194 size_t yyn;
1195 yysize = yystackp->yynextFree - yystackp->yyitems;
1196 if (YYMAXDEPTH - YYHEADROOM < yysize)
1197 yyMemoryExhausted (yystackp);
1198 yynewSize = 2*yysize;
1199 if (YYMAXDEPTH < yynewSize)
1200 yynewSize = YYMAXDEPTH;
1201 yynewItems = (yyGLRStackItem*) YYMALLOC (yynewSize * sizeof yynewItems[0]);
1202 if (! yynewItems)
1203 yyMemoryExhausted (yystackp);
1204 for (yyp0 = yystackp->yyitems, yyp1 = yynewItems, yyn = yysize;
1205 0 < yyn;
1206 yyn -= 1, yyp0 += 1, yyp1 += 1)
1207 {
1208 *yyp1 = *yyp0;
1209 if (*(yybool *) yyp0)
1210 {
1211 yyGLRState* yys0 = &yyp0->yystate;
1212 yyGLRState* yys1 = &yyp1->yystate;
1213 if (yys0->yypred != NULL)
1214 yys1->yypred =
1215 YYRELOC (yyp0, yyp1, yys0->yypred, yystate);
1216 if (! yys0->yyresolved && yys0->yysemantics.yyfirstVal != NULL)
1217 yys1->yysemantics.yyfirstVal =
1218 YYRELOC(yyp0, yyp1, yys0->yysemantics.yyfirstVal, yyoption);
1219 }
1220 else
1221 {
1222 yySemanticOption* yyv0 = &yyp0->yyoption;
1223 yySemanticOption* yyv1 = &yyp1->yyoption;
1224 if (yyv0->yystate != NULL)
1225 yyv1->yystate = YYRELOC (yyp0, yyp1, yyv0->yystate, yystate);
1226 if (yyv0->yynext != NULL)
1227 yyv1->yynext = YYRELOC (yyp0, yyp1, yyv0->yynext, yyoption);
1228 }
1229 }
1230 if (yystackp->yysplitPoint != NULL)
1231 yystackp->yysplitPoint = YYRELOC (yystackp->yyitems, yynewItems,
1232 yystackp->yysplitPoint, yystate);
1233
1234 for (yyn = 0; yyn < yystackp->yytops.yysize; yyn += 1)
1235 if (yystackp->yytops.yystates[yyn] != NULL)
1236 yystackp->yytops.yystates[yyn] =
1237 YYRELOC (yystackp->yyitems, yynewItems,
1238 yystackp->yytops.yystates[yyn], yystate);
1239 YYFREE (yystackp->yyitems);
1240 yystackp->yyitems = yynewItems;
1241 yystackp->yynextFree = yynewItems + yysize;
1242 yystackp->yyspaceLeft = yynewSize - yysize;
1243 }
1244 #endif
1245
1246 static void
1247 yyfreeGLRStack (yyGLRStack* yystackp)
1248 {
1249 YYFREE (yystackp->yyitems);
1250 yyfreeStateSet (&yystackp->yytops);
1251 }
1252
1253 /** Assuming that S is a GLRState somewhere on STACK, update the
1254 * splitpoint of STACK, if needed, so that it is at least as deep as
1255 * S. */
1256 static inline void
1257 yyupdateSplit (yyGLRStack* yystackp, yyGLRState* yys)
1258 {
1259 if (yystackp->yysplitPoint != NULL && yystackp->yysplitPoint > yys)
1260 yystackp->yysplitPoint = yys;
1261 }
1262
1263 /** Invalidate stack #K in STACK. */
1264 static inline void
1265 yymarkStackDeleted (yyGLRStack* yystackp, size_t yyk)
1266 {
1267 if (yystackp->yytops.yystates[yyk] != NULL)
1268 yystackp->yylastDeleted = yystackp->yytops.yystates[yyk];
1269 yystackp->yytops.yystates[yyk] = NULL;
1270 }
1271
1272 /** Undelete the last stack that was marked as deleted. Can only be
1273 done once after a deletion, and only when all other stacks have
1274 been deleted. */
1275 static void
1276 yyundeleteLastStack (yyGLRStack* yystackp)
1277 {
1278 if (yystackp->yylastDeleted == NULL || yystackp->yytops.yysize != 0)
1279 return;
1280 yystackp->yytops.yystates[0] = yystackp->yylastDeleted;
1281 yystackp->yytops.yysize = 1;
1282 YYDPRINTF ((stderr, "Restoring last deleted stack as stack #0.\n"));
1283 yystackp->yylastDeleted = NULL;
1284 }
1285
1286 static inline void
1287 yyremoveDeletes (yyGLRStack* yystackp)
1288 {
1289 size_t yyi, yyj;
1290 yyi = yyj = 0;
1291 while (yyj < yystackp->yytops.yysize)
1292 {
1293 if (yystackp->yytops.yystates[yyi] == NULL)
1294 {
1295 if (yyi == yyj)
1296 {
1297 YYDPRINTF ((stderr, "Removing dead stacks.\n"));
1298 }
1299 yystackp->yytops.yysize -= 1;
1300 }
1301 else
1302 {
1303 yystackp->yytops.yystates[yyj] = yystackp->yytops.yystates[yyi];
1304 /* In the current implementation, it's unnecessary to copy
1305 yystackp->yytops.yylookaheadNeeds[yyi] since, after
1306 yyremoveDeletes returns, the parser immediately either enters
1307 deterministic operation or shifts a token. However, it doesn't
1308 hurt, and the code might evolve to need it. */
1309 yystackp->yytops.yylookaheadNeeds[yyj] =
1310 yystackp->yytops.yylookaheadNeeds[yyi];
1311 if (yyj != yyi)
1312 {
1313 YYDPRINTF ((stderr, "Rename stack %lu -> %lu.\n",
1314 (unsigned long int) yyi, (unsigned long int) yyj));
1315 }
1316 yyj += 1;
1317 }
1318 yyi += 1;
1319 }
1320 }
1321
1322 /** Shift to a new state on stack #K of STACK, corresponding to LR state
1323 * LRSTATE, at input position POSN, with (resolved) semantic value SVAL. */
1324 static inline void
1325 yyglrShift (yyGLRStack* yystackp, size_t yyk, yyStateNum yylrState,
1326 size_t yyposn,
1327 YYSTYPE* yyvalp, YYLTYPE* yylocp)
1328 {
1329 yyGLRState* yynewState = &yynewGLRStackItem (yystackp, yytrue)->yystate;
1330
1331 yynewState->yylrState = yylrState;
1332 yynewState->yyposn = yyposn;
1333 yynewState->yyresolved = yytrue;
1334 yynewState->yypred = yystackp->yytops.yystates[yyk];
1335 yynewState->yysemantics.yysval = *yyvalp;
1336 yynewState->yyloc = *yylocp;
1337 yystackp->yytops.yystates[yyk] = yynewState;
1338
1339 YY_RESERVE_GLRSTACK (yystackp);
1340 }
1341
1342 /** Shift stack #K of YYSTACK, to a new state corresponding to LR
1343 * state YYLRSTATE, at input position YYPOSN, with the (unresolved)
1344 * semantic value of YYRHS under the action for YYRULE. */
1345 static inline void
1346 yyglrShiftDefer (yyGLRStack* yystackp, size_t yyk, yyStateNum yylrState,
1347 size_t yyposn, yyGLRState* rhs, yyRuleNum yyrule)
1348 {
1349 yyGLRState* yynewState = &yynewGLRStackItem (yystackp, yytrue)->yystate;
1350
1351 yynewState->yylrState = yylrState;
1352 yynewState->yyposn = yyposn;
1353 yynewState->yyresolved = yyfalse;
1354 yynewState->yypred = yystackp->yytops.yystates[yyk];
1355 yynewState->yysemantics.yyfirstVal = NULL;
1356 yystackp->yytops.yystates[yyk] = yynewState;
1357
1358 /* Invokes YY_RESERVE_GLRSTACK. */
1359 yyaddDeferredAction (yystackp, yyk, yynewState, rhs, yyrule);
1360 }
1361
1362 /** Pop the symbols consumed by reduction #RULE from the top of stack
1363 * #K of STACK, and perform the appropriate semantic action on their
1364 * semantic values. Assumes that all ambiguities in semantic values
1365 * have been previously resolved. Set *VALP to the resulting value,
1366 * and *LOCP to the computed location (if any). Return value is as
1367 * for userAction. */
1368 static inline YYRESULTTAG
1369 yydoAction (yyGLRStack* yystackp, size_t yyk, yyRuleNum yyrule,
1370 YYSTYPE* yyvalp, YYLTYPE* yylocp]b4_user_formals[)
1371 {
1372 int yynrhs = yyrhsLength (yyrule);
1373
1374 if (yystackp->yysplitPoint == NULL)
1375 {
1376 /* Standard special case: single stack. */
1377 yyGLRStackItem* rhs = (yyGLRStackItem*) yystackp->yytops.yystates[yyk];
1378 YYASSERT (yyk == 0);
1379 yystackp->yynextFree -= yynrhs;
1380 yystackp->yyspaceLeft += yynrhs;
1381 yystackp->yytops.yystates[0] = & yystackp->yynextFree[-1].yystate;
1382 return yyuserAction (yyrule, yynrhs, rhs,
1383 yyvalp, yylocp, yystackp]b4_user_args[);
1384 }
1385 else
1386 {
1387 /* At present, doAction is never called in nondeterministic
1388 * mode, so this branch is never taken. It is here in
1389 * anticipation of a future feature that will allow immediate
1390 * evaluation of selected actions in nondeterministic mode. */
1391 int yyi;
1392 yyGLRState* yys;
1393 yyGLRStackItem yyrhsVals[YYMAXRHS + YYMAXLEFT + 1];
1394 yys = yyrhsVals[YYMAXRHS + YYMAXLEFT].yystate.yypred
1395 = yystackp->yytops.yystates[yyk];]b4_locations_if([[
1396 if (yynrhs == 0)
1397 /* Set default location. */
1398 yyrhsVals[YYMAXRHS + YYMAXLEFT - 1].yystate.yyloc = yys->yyloc;]])[
1399 for (yyi = 0; yyi < yynrhs; yyi += 1)
1400 {
1401 yys = yys->yypred;
1402 YYASSERT (yys);
1403 }
1404 yyupdateSplit (yystackp, yys);
1405 yystackp->yytops.yystates[yyk] = yys;
1406 return yyuserAction (yyrule, yynrhs, yyrhsVals + YYMAXRHS + YYMAXLEFT - 1,
1407 yyvalp, yylocp, yystackp]b4_user_args[);
1408 }
1409 }
1410
1411 #if !YYDEBUG
1412 # define YY_REDUCE_PRINT(Args)
1413 #else
1414 # define YY_REDUCE_PRINT(Args) \
1415 do { \
1416 if (yydebug) \
1417 yy_reduce_print Args; \
1418 } while (YYID (0))
1419
1420 /*----------------------------------------------------------.
1421 | Report that the RULE is going to be reduced on stack #K. |
1422 `----------------------------------------------------------*/
1423
1424 /*ARGSUSED*/ static inline void
1425 yy_reduce_print (yyGLRStack* yystackp, size_t yyk, yyRuleNum yyrule,
1426 YYSTYPE* yyvalp, YYLTYPE* yylocp]b4_user_formals[)
1427 {
1428 int yynrhs = yyrhsLength (yyrule);
1429 yybool yynormal __attribute__ ((__unused__)) =
1430 (yystackp->yysplitPoint == NULL);
1431 yyGLRStackItem* yyvsp = (yyGLRStackItem*) yystackp->yytops.yystates[yyk];
1432 int yylow = 1;
1433 int yyi;
1434 YYUSE (yyvalp);
1435 YYUSE (yylocp);
1436 ]b4_parse_param_use[]dnl
1437 [ YYFPRINTF (stderr, "Reducing stack %lu by rule %d (line %lu):\n",
1438 (unsigned long int) yyk, yyrule - 1,
1439 (unsigned long int) yyrline[yyrule]);
1440 /* The symbols being reduced. */
1441 for (yyi = 0; yyi < yynrhs; yyi++)
1442 {
1443 YYFPRINTF (stderr, " $%d = ", yyi + 1);
1444 yy_symbol_print (stderr, yyrhs[yyprhs[yyrule] + yyi],
1445 &]b4_rhs_value(yynrhs, yyi + 1)[
1446 ]b4_locations_if([, &]b4_rhs_location(yynrhs, yyi + 1))[]dnl
1447 b4_user_args[);
1448 YYFPRINTF (stderr, "\n");
1449 }
1450 }
1451 #endif
1452
1453 /** Pop items off stack #K of STACK according to grammar rule RULE,
1454 * and push back on the resulting nonterminal symbol. Perform the
1455 * semantic action associated with RULE and store its value with the
1456 * newly pushed state, if FORCEEVAL or if STACK is currently
1457 * unambiguous. Otherwise, store the deferred semantic action with
1458 * the new state. If the new state would have an identical input
1459 * position, LR state, and predecessor to an existing state on the stack,
1460 * it is identified with that existing state, eliminating stack #K from
1461 * the STACK. In this case, the (necessarily deferred) semantic value is
1462 * added to the options for the existing state's semantic value.
1463 */
1464 static inline YYRESULTTAG
1465 yyglrReduce (yyGLRStack* yystackp, size_t yyk, yyRuleNum yyrule,
1466 yybool yyforceEval]b4_user_formals[)
1467 {
1468 size_t yyposn = yystackp->yytops.yystates[yyk]->yyposn;
1469
1470 if (yyforceEval || yystackp->yysplitPoint == NULL)
1471 {
1472 YYSTYPE yysval;
1473 YYLTYPE yyloc;
1474
1475 YY_REDUCE_PRINT ((yystackp, yyk, yyrule, &yysval, &yyloc]b4_user_args[));
1476 YYCHK (yydoAction (yystackp, yyk, yyrule, &yysval,
1477 &yyloc]b4_user_args[));
1478 YY_SYMBOL_PRINT ("-> $$ =", yyr1[yyrule], &yysval, &yyloc);
1479 yyglrShift (yystackp, yyk,
1480 yyLRgotoState (yystackp->yytops.yystates[yyk]->yylrState,
1481 yylhsNonterm (yyrule)),
1482 yyposn, &yysval, &yyloc);
1483 }
1484 else
1485 {
1486 size_t yyi;
1487 int yyn;
1488 yyGLRState* yys, *yys0 = yystackp->yytops.yystates[yyk];
1489 yyStateNum yynewLRState;
1490
1491 for (yys = yystackp->yytops.yystates[yyk], yyn = yyrhsLength (yyrule);
1492 0 < yyn; yyn -= 1)
1493 {
1494 yys = yys->yypred;
1495 YYASSERT (yys);
1496 }
1497 yyupdateSplit (yystackp, yys);
1498 yynewLRState = yyLRgotoState (yys->yylrState, yylhsNonterm (yyrule));
1499 YYDPRINTF ((stderr,
1500 "Reduced stack %lu by rule #%d; action deferred. Now in state %d.\n",
1501 (unsigned long int) yyk, yyrule - 1, yynewLRState));
1502 for (yyi = 0; yyi < yystackp->yytops.yysize; yyi += 1)
1503 if (yyi != yyk && yystackp->yytops.yystates[yyi] != NULL)
1504 {
1505 yyGLRState* yyp, *yysplit = yystackp->yysplitPoint;
1506 yyp = yystackp->yytops.yystates[yyi];
1507 while (yyp != yys && yyp != yysplit && yyp->yyposn >= yyposn)
1508 {
1509 if (yyp->yylrState == yynewLRState && yyp->yypred == yys)
1510 {
1511 yyaddDeferredAction (yystackp, yyk, yyp, yys0, yyrule);
1512 yymarkStackDeleted (yystackp, yyk);
1513 YYDPRINTF ((stderr, "Merging stack %lu into stack %lu.\n",
1514 (unsigned long int) yyk,
1515 (unsigned long int) yyi));
1516 return yyok;
1517 }
1518 yyp = yyp->yypred;
1519 }
1520 }
1521 yystackp->yytops.yystates[yyk] = yys;
1522 yyglrShiftDefer (yystackp, yyk, yynewLRState, yyposn, yys0, yyrule);
1523 }
1524 return yyok;
1525 }
1526
1527 static size_t
1528 yysplitStack (yyGLRStack* yystackp, size_t yyk)
1529 {
1530 if (yystackp->yysplitPoint == NULL)
1531 {
1532 YYASSERT (yyk == 0);
1533 yystackp->yysplitPoint = yystackp->yytops.yystates[yyk];
1534 }
1535 if (yystackp->yytops.yysize >= yystackp->yytops.yycapacity)
1536 {
1537 yyGLRState** yynewStates;
1538 yybool* yynewLookaheadNeeds;
1539
1540 yynewStates = NULL;
1541
1542 if (yystackp->yytops.yycapacity
1543 > (YYSIZEMAX / (2 * sizeof yynewStates[0])))
1544 yyMemoryExhausted (yystackp);
1545 yystackp->yytops.yycapacity *= 2;
1546
1547 yynewStates =
1548 (yyGLRState**) YYREALLOC (yystackp->yytops.yystates,
1549 (yystackp->yytops.yycapacity
1550 * sizeof yynewStates[0]));
1551 if (yynewStates == NULL)
1552 yyMemoryExhausted (yystackp);
1553 yystackp->yytops.yystates = yynewStates;
1554
1555 yynewLookaheadNeeds =
1556 (yybool*) YYREALLOC (yystackp->yytops.yylookaheadNeeds,
1557 (yystackp->yytops.yycapacity
1558 * sizeof yynewLookaheadNeeds[0]));
1559 if (yynewLookaheadNeeds == NULL)
1560 yyMemoryExhausted (yystackp);
1561 yystackp->yytops.yylookaheadNeeds = yynewLookaheadNeeds;
1562 }
1563 yystackp->yytops.yystates[yystackp->yytops.yysize]
1564 = yystackp->yytops.yystates[yyk];
1565 yystackp->yytops.yylookaheadNeeds[yystackp->yytops.yysize]
1566 = yystackp->yytops.yylookaheadNeeds[yyk];
1567 yystackp->yytops.yysize += 1;
1568 return yystackp->yytops.yysize-1;
1569 }
1570
1571 /** True iff Y0 and Y1 represent identical options at the top level.
1572 * That is, they represent the same rule applied to RHS symbols
1573 * that produce the same terminal symbols. */
1574 static yybool
1575 yyidenticalOptions (yySemanticOption* yyy0, yySemanticOption* yyy1)
1576 {
1577 if (yyy0->yyrule == yyy1->yyrule)
1578 {
1579 yyGLRState *yys0, *yys1;
1580 int yyn;
1581 for (yys0 = yyy0->yystate, yys1 = yyy1->yystate,
1582 yyn = yyrhsLength (yyy0->yyrule);
1583 yyn > 0;
1584 yys0 = yys0->yypred, yys1 = yys1->yypred, yyn -= 1)
1585 if (yys0->yyposn != yys1->yyposn)
1586 return yyfalse;
1587 return yytrue;
1588 }
1589 else
1590 return yyfalse;
1591 }
1592
1593 /** Assuming identicalOptions (Y0,Y1), destructively merge the
1594 * alternative semantic values for the RHS-symbols of Y1 and Y0. */
1595 static void
1596 yymergeOptionSets (yySemanticOption* yyy0, yySemanticOption* yyy1)
1597 {
1598 yyGLRState *yys0, *yys1;
1599 int yyn;
1600 for (yys0 = yyy0->yystate, yys1 = yyy1->yystate,
1601 yyn = yyrhsLength (yyy0->yyrule);
1602 yyn > 0;
1603 yys0 = yys0->yypred, yys1 = yys1->yypred, yyn -= 1)
1604 {
1605 if (yys0 == yys1)
1606 break;
1607 else if (yys0->yyresolved)
1608 {
1609 yys1->yyresolved = yytrue;
1610 yys1->yysemantics.yysval = yys0->yysemantics.yysval;
1611 }
1612 else if (yys1->yyresolved)
1613 {
1614 yys0->yyresolved = yytrue;
1615 yys0->yysemantics.yysval = yys1->yysemantics.yysval;
1616 }
1617 else
1618 {
1619 yySemanticOption** yyz0p;
1620 yySemanticOption* yyz1;
1621 yyz0p = &yys0->yysemantics.yyfirstVal;
1622 yyz1 = yys1->yysemantics.yyfirstVal;
1623 while (YYID (yytrue))
1624 {
1625 if (yyz1 == *yyz0p || yyz1 == NULL)
1626 break;
1627 else if (*yyz0p == NULL)
1628 {
1629 *yyz0p = yyz1;
1630 break;
1631 }
1632 else if (*yyz0p < yyz1)
1633 {
1634 yySemanticOption* yyz = *yyz0p;
1635 *yyz0p = yyz1;
1636 yyz1 = yyz1->yynext;
1637 (*yyz0p)->yynext = yyz;
1638 }
1639 yyz0p = &(*yyz0p)->yynext;
1640 }
1641 yys1->yysemantics.yyfirstVal = yys0->yysemantics.yyfirstVal;
1642 }
1643 }
1644 }
1645
1646 /** Y0 and Y1 represent two possible actions to take in a given
1647 * parsing state; return 0 if no combination is possible,
1648 * 1 if user-mergeable, 2 if Y0 is preferred, 3 if Y1 is preferred. */
1649 static int
1650 yypreference (yySemanticOption* y0, yySemanticOption* y1)
1651 {
1652 yyRuleNum r0 = y0->yyrule, r1 = y1->yyrule;
1653 int p0 = yydprec[r0], p1 = yydprec[r1];
1654
1655 if (p0 == p1)
1656 {
1657 if (yymerger[r0] == 0 || yymerger[r0] != yymerger[r1])
1658 return 0;
1659 else
1660 return 1;
1661 }
1662 if (p0 == 0 || p1 == 0)
1663 return 0;
1664 if (p0 < p1)
1665 return 3;
1666 if (p1 < p0)
1667 return 2;
1668 return 0;
1669 }
1670
1671 static YYRESULTTAG yyresolveValue (yyGLRState* yys,
1672 yyGLRStack* yystackp]b4_user_formals[);
1673
1674
1675 /** Resolve the previous N states starting at and including state S. If result
1676 * != yyok, some states may have been left unresolved possibly with empty
1677 * semantic option chains. Regardless of whether result = yyok, each state
1678 * has been left with consistent data so that yydestroyGLRState can be invoked
1679 * if necessary. */
1680 static YYRESULTTAG
1681 yyresolveStates (yyGLRState* yys, int yyn,
1682 yyGLRStack* yystackp]b4_user_formals[)
1683 {
1684 if (0 < yyn)
1685 {
1686 YYASSERT (yys->yypred);
1687 YYCHK (yyresolveStates (yys->yypred, yyn-1, yystackp]b4_user_args[));
1688 if (! yys->yyresolved)
1689 YYCHK (yyresolveValue (yys, yystackp]b4_user_args[));
1690 }
1691 return yyok;
1692 }
1693
1694 /** Resolve the states for the RHS of OPT, perform its user action, and return
1695 * the semantic value and location. Regardless of whether result = yyok, all
1696 * RHS states have been destroyed (assuming the user action destroys all RHS
1697 * semantic values if invoked). */
1698 static YYRESULTTAG
1699 yyresolveAction (yySemanticOption* yyopt, yyGLRStack* yystackp,
1700 YYSTYPE* yyvalp, YYLTYPE* yylocp]b4_user_formals[)
1701 {
1702 yyGLRStackItem yyrhsVals[YYMAXRHS + YYMAXLEFT + 1];
1703 int yynrhs;
1704 int yychar_current;
1705 YYSTYPE yylval_current;
1706 YYLTYPE yylloc_current;
1707 YYRESULTTAG yyflag;
1708
1709 yynrhs = yyrhsLength (yyopt->yyrule);
1710 yyflag = yyresolveStates (yyopt->yystate, yynrhs, yystackp]b4_user_args[);
1711 if (yyflag != yyok)
1712 {
1713 yyGLRState *yys;
1714 for (yys = yyopt->yystate; yynrhs > 0; yys = yys->yypred, yynrhs -= 1)
1715 yydestroyGLRState ("Cleanup: popping", yys]b4_user_args[);
1716 return yyflag;
1717 }
1718
1719 yyrhsVals[YYMAXRHS + YYMAXLEFT].yystate.yypred = yyopt->yystate;]b4_locations_if([[
1720 if (yynrhs == 0)
1721 /* Set default location. */
1722 yyrhsVals[YYMAXRHS + YYMAXLEFT - 1].yystate.yyloc = yyopt->yystate->yyloc;]])[
1723 yychar_current = yychar;
1724 yylval_current = yylval;
1725 yylloc_current = yylloc;
1726 yychar = yyopt->yyrawchar;
1727 yylval = yyopt->yyval;
1728 yylloc = yyopt->yyloc;
1729 yyflag = yyuserAction (yyopt->yyrule, yynrhs,
1730 yyrhsVals + YYMAXRHS + YYMAXLEFT - 1,
1731 yyvalp, yylocp, yystackp]b4_user_args[);
1732 yychar = yychar_current;
1733 yylval = yylval_current;
1734 yylloc = yylloc_current;
1735 return yyflag;
1736 }
1737
1738 #if YYDEBUG
1739 static void
1740 yyreportTree (yySemanticOption* yyx, int yyindent)
1741 {
1742 int yynrhs = yyrhsLength (yyx->yyrule);
1743 int yyi;
1744 yyGLRState* yys;
1745 yyGLRState* yystates[1 + YYMAXRHS];
1746 yyGLRState yyleftmost_state;
1747
1748 for (yyi = yynrhs, yys = yyx->yystate; 0 < yyi; yyi -= 1, yys = yys->yypred)
1749 yystates[yyi] = yys;
1750 if (yys == NULL)
1751 {
1752 yyleftmost_state.yyposn = 0;
1753 yystates[0] = &yyleftmost_state;
1754 }
1755 else
1756 yystates[0] = yys;
1757
1758 if (yyx->yystate->yyposn < yys->yyposn + 1)
1759 YYFPRINTF (stderr, "%*s%s -> <Rule %d, empty>\n",
1760 yyindent, "", yytokenName (yylhsNonterm (yyx->yyrule)),
1761 yyx->yyrule - 1);
1762 else
1763 YYFPRINTF (stderr, "%*s%s -> <Rule %d, tokens %lu .. %lu>\n",
1764 yyindent, "", yytokenName (yylhsNonterm (yyx->yyrule)),
1765 yyx->yyrule - 1, (unsigned long int) (yys->yyposn + 1),
1766 (unsigned long int) yyx->yystate->yyposn);
1767 for (yyi = 1; yyi <= yynrhs; yyi += 1)
1768 {
1769 if (yystates[yyi]->yyresolved)
1770 {
1771 if (yystates[yyi-1]->yyposn+1 > yystates[yyi]->yyposn)
1772 YYFPRINTF (stderr, "%*s%s <empty>\n", yyindent+2, "",
1773 yytokenName (yyrhs[yyprhs[yyx->yyrule]+yyi-1]));
1774 else
1775 YYFPRINTF (stderr, "%*s%s <tokens %lu .. %lu>\n", yyindent+2, "",
1776 yytokenName (yyrhs[yyprhs[yyx->yyrule]+yyi-1]),
1777 (unsigned long int) (yystates[yyi - 1]->yyposn + 1),
1778 (unsigned long int) yystates[yyi]->yyposn);
1779 }
1780 else
1781 yyreportTree (yystates[yyi]->yysemantics.yyfirstVal, yyindent+2);
1782 }
1783 }
1784 #endif
1785
1786 /*ARGSUSED*/ static YYRESULTTAG
1787 yyreportAmbiguity (yySemanticOption* yyx0,
1788 yySemanticOption* yyx1]b4_pure_formals[)
1789 {
1790 YYUSE (yyx0);
1791 YYUSE (yyx1);
1792
1793 #if YYDEBUG
1794 YYFPRINTF (stderr, "Ambiguity detected.\n");
1795 YYFPRINTF (stderr, "Option 1,\n");
1796 yyreportTree (yyx0, 2);
1797 YYFPRINTF (stderr, "\nOption 2,\n");
1798 yyreportTree (yyx1, 2);
1799 YYFPRINTF (stderr, "\n");
1800 #endif
1801
1802 yyerror (]b4_yyerror_args[YY_("syntax is ambiguous"));
1803 return yyabort;
1804 }
1805
1806 /** Starting at and including state S1, resolve the location for each of the
1807 * previous N1 states that is unresolved. The first semantic option of a state
1808 * is always chosen. */
1809 static void
1810 yyresolveLocations (yyGLRState* yys1, int yyn1,
1811 yyGLRStack *yystackp]b4_user_formals[)
1812 {
1813 if (0 < yyn1)
1814 {
1815 yyresolveLocations (yys1->yypred, yyn1 - 1, yystackp]b4_user_args[);
1816 if (!yys1->yyresolved)
1817 {
1818 yySemanticOption *yyoption;
1819 yyGLRStackItem yyrhsloc[1 + YYMAXRHS];
1820 int yynrhs;
1821 int yychar_current;
1822 YYSTYPE yylval_current;
1823 YYLTYPE yylloc_current;
1824 yyoption = yys1->yysemantics.yyfirstVal;
1825 YYASSERT (yyoption != NULL);
1826 yynrhs = yyrhsLength (yyoption->yyrule);
1827 if (yynrhs > 0)
1828 {
1829 yyGLRState *yys;
1830 int yyn;
1831 yyresolveLocations (yyoption->yystate, yynrhs,
1832 yystackp]b4_user_args[);
1833 for (yys = yyoption->yystate, yyn = yynrhs;
1834 yyn > 0;
1835 yys = yys->yypred, yyn -= 1)
1836 yyrhsloc[yyn].yystate.yyloc = yys->yyloc;
1837 }
1838 else
1839 {
1840 /* Both yyresolveAction and yyresolveLocations traverse the GSS
1841 in reverse rightmost order. It is only necessary to invoke
1842 yyresolveLocations on a subforest for which yyresolveAction
1843 would have been invoked next had an ambiguity not been
1844 detected. Thus the location of the previous state (but not
1845 necessarily the previous state itself) is guaranteed to be
1846 resolved already. */
1847 yyGLRState *yyprevious = yyoption->yystate;
1848 yyrhsloc[0].yystate.yyloc = yyprevious->yyloc;
1849 }
1850 yychar_current = yychar;
1851 yylval_current = yylval;
1852 yylloc_current = yylloc;
1853 yychar = yyoption->yyrawchar;
1854 yylval = yyoption->yyval;
1855 yylloc = yyoption->yyloc;
1856 YYLLOC_DEFAULT ((yys1->yyloc), yyrhsloc, yynrhs);
1857 yychar = yychar_current;
1858 yylval = yylval_current;
1859 yylloc = yylloc_current;
1860 }
1861 }
1862 }
1863
1864 /** Resolve the ambiguity represented in state S, perform the indicated
1865 * actions, and set the semantic value of S. If result != yyok, the chain of
1866 * semantic options in S has been cleared instead or it has been left
1867 * unmodified except that redundant options may have been removed. Regardless
1868 * of whether result = yyok, S has been left with consistent data so that
1869 * yydestroyGLRState can be invoked if necessary. */
1870 static YYRESULTTAG
1871 yyresolveValue (yyGLRState* yys, yyGLRStack* yystackp]b4_user_formals[)
1872 {
1873 yySemanticOption* yyoptionList = yys->yysemantics.yyfirstVal;
1874 yySemanticOption* yybest;
1875 yySemanticOption** yypp;
1876 yybool yymerge;
1877 YYSTYPE yysval;
1878 YYRESULTTAG yyflag;
1879 YYLTYPE *yylocp = &yys->yyloc;
1880
1881 yybest = yyoptionList;
1882 yymerge = yyfalse;
1883 for (yypp = &yyoptionList->yynext; *yypp != NULL; )
1884 {
1885 yySemanticOption* yyp = *yypp;
1886
1887 if (yyidenticalOptions (yybest, yyp))
1888 {
1889 yymergeOptionSets (yybest, yyp);
1890 *yypp = yyp->yynext;
1891 }
1892 else
1893 {
1894 switch (yypreference (yybest, yyp))
1895 {
1896 case 0:
1897 yyresolveLocations (yys, 1, yystackp]b4_user_args[);
1898 return yyreportAmbiguity (yybest, yyp]b4_pure_args[);
1899 break;
1900 case 1:
1901 yymerge = yytrue;
1902 break;
1903 case 2:
1904 break;
1905 case 3:
1906 yybest = yyp;
1907 yymerge = yyfalse;
1908 break;
1909 default:
1910 /* This cannot happen so it is not worth a YYASSERT (yyfalse),
1911 but some compilers complain if the default case is
1912 omitted. */
1913 break;
1914 }
1915 yypp = &yyp->yynext;
1916 }
1917 }
1918
1919 if (yymerge)
1920 {
1921 yySemanticOption* yyp;
1922 int yyprec = yydprec[yybest->yyrule];
1923 yyflag = yyresolveAction (yybest, yystackp, &yysval,
1924 yylocp]b4_user_args[);
1925 if (yyflag == yyok)
1926 for (yyp = yybest->yynext; yyp != NULL; yyp = yyp->yynext)
1927 {
1928 if (yyprec == yydprec[yyp->yyrule])
1929 {
1930 YYSTYPE yysval_other;
1931 YYLTYPE yydummy;
1932 yyflag = yyresolveAction (yyp, yystackp, &yysval_other,
1933 &yydummy]b4_user_args[);
1934 if (yyflag != yyok)
1935 {
1936 yydestruct ("Cleanup: discarding incompletely merged value for",
1937 yystos[yys->yylrState],
1938 &yysval]b4_locations_if([, yylocp])[]b4_user_args[);
1939 break;
1940 }
1941 yyuserMerge (yymerger[yyp->yyrule], &yysval, &yysval_other);
1942 }
1943 }
1944 }
1945 else
1946 yyflag = yyresolveAction (yybest, yystackp, &yysval, yylocp]b4_user_args[);
1947
1948 if (yyflag == yyok)
1949 {
1950 yys->yyresolved = yytrue;
1951 yys->yysemantics.yysval = yysval;
1952 }
1953 else
1954 yys->yysemantics.yyfirstVal = NULL;
1955 return yyflag;
1956 }
1957
1958 static YYRESULTTAG
1959 yyresolveStack (yyGLRStack* yystackp]b4_user_formals[)
1960 {
1961 if (yystackp->yysplitPoint != NULL)
1962 {
1963 yyGLRState* yys;
1964 int yyn;
1965
1966 for (yyn = 0, yys = yystackp->yytops.yystates[0];
1967 yys != yystackp->yysplitPoint;
1968 yys = yys->yypred, yyn += 1)
1969 continue;
1970 YYCHK (yyresolveStates (yystackp->yytops.yystates[0], yyn, yystackp
1971 ]b4_user_args[));
1972 }
1973 return yyok;
1974 }
1975
1976 static void
1977 yycompressStack (yyGLRStack* yystackp)
1978 {
1979 yyGLRState* yyp, *yyq, *yyr;
1980
1981 if (yystackp->yytops.yysize != 1 || yystackp->yysplitPoint == NULL)
1982 return;
1983
1984 for (yyp = yystackp->yytops.yystates[0], yyq = yyp->yypred, yyr = NULL;
1985 yyp != yystackp->yysplitPoint;
1986 yyr = yyp, yyp = yyq, yyq = yyp->yypred)
1987 yyp->yypred = yyr;
1988
1989 yystackp->yyspaceLeft += yystackp->yynextFree - yystackp->yyitems;
1990 yystackp->yynextFree = ((yyGLRStackItem*) yystackp->yysplitPoint) + 1;
1991 yystackp->yyspaceLeft -= yystackp->yynextFree - yystackp->yyitems;
1992 yystackp->yysplitPoint = NULL;
1993 yystackp->yylastDeleted = NULL;
1994
1995 while (yyr != NULL)
1996 {
1997 yystackp->yynextFree->yystate = *yyr;
1998 yyr = yyr->yypred;
1999 yystackp->yynextFree->yystate.yypred = &yystackp->yynextFree[-1].yystate;
2000 yystackp->yytops.yystates[0] = &yystackp->yynextFree->yystate;
2001 yystackp->yynextFree += 1;
2002 yystackp->yyspaceLeft -= 1;
2003 }
2004 }
2005
2006 static YYRESULTTAG
2007 yyprocessOneStack (yyGLRStack* yystackp, size_t yyk,
2008 size_t yyposn]b4_pure_formals[)
2009 {
2010 int yyaction;
2011 const short int* yyconflicts;
2012 yyRuleNum yyrule;
2013
2014 while (yystackp->yytops.yystates[yyk] != NULL)
2015 {
2016 yyStateNum yystate = yystackp->yytops.yystates[yyk]->yylrState;
2017 YYDPRINTF ((stderr, "Stack %lu Entering state %d\n",
2018 (unsigned long int) yyk, yystate));
2019
2020 YYASSERT (yystate != YYFINAL);
2021
2022 if (yyisDefaultedState (yystate))
2023 {
2024 yyrule = yydefaultAction (yystate);
2025 if (yyrule == 0)
2026 {
2027 YYDPRINTF ((stderr, "Stack %lu dies.\n",
2028 (unsigned long int) yyk));
2029 yymarkStackDeleted (yystackp, yyk);
2030 return yyok;
2031 }
2032 YYCHK (yyglrReduce (yystackp, yyk, yyrule, yyfalse]b4_user_args[));
2033 }
2034 else
2035 {
2036 yySymbol yytoken;
2037 yystackp->yytops.yylookaheadNeeds[yyk] = yytrue;
2038 if (yychar == YYEMPTY)
2039 {
2040 YYDPRINTF ((stderr, "Reading a token: "));
2041 yychar = YYLEX;
2042 }
2043
2044 if (yychar <= YYEOF)
2045 {
2046 yychar = yytoken = YYEOF;
2047 YYDPRINTF ((stderr, "Now at end of input.\n"));
2048 }
2049 else
2050 {
2051 yytoken = YYTRANSLATE (yychar);
2052 YY_SYMBOL_PRINT ("Next token is", yytoken, &yylval, &yylloc);
2053 }
2054
2055 yygetLRActions (yystate, yytoken, &yyaction, &yyconflicts);
2056
2057 while (*yyconflicts != 0)
2058 {
2059 size_t yynewStack = yysplitStack (yystackp, yyk);
2060 YYDPRINTF ((stderr, "Splitting off stack %lu from %lu.\n",
2061 (unsigned long int) yynewStack,
2062 (unsigned long int) yyk));
2063 YYCHK (yyglrReduce (yystackp, yynewStack,
2064 *yyconflicts, yyfalse]b4_user_args[));
2065 YYCHK (yyprocessOneStack (yystackp, yynewStack,
2066 yyposn]b4_pure_args[));
2067 yyconflicts += 1;
2068 }
2069
2070 if (yyisShiftAction (yyaction))
2071 break;
2072 else if (yyisErrorAction (yyaction))
2073 {
2074 YYDPRINTF ((stderr, "Stack %lu dies.\n",
2075 (unsigned long int) yyk));
2076 yymarkStackDeleted (yystackp, yyk);
2077 break;
2078 }
2079 else
2080 YYCHK (yyglrReduce (yystackp, yyk, -yyaction,
2081 yyfalse]b4_user_args[));
2082 }
2083 }
2084 return yyok;
2085 }
2086
2087 /*ARGSUSED*/ static void
2088 yyreportSyntaxError (yyGLRStack* yystackp]b4_user_formals[)
2089 {
2090 if (yystackp->yyerrState == 0)
2091 {
2092 #if YYERROR_VERBOSE
2093 int yyn;
2094 yyn = yypact[yystackp->yytops.yystates[0]->yylrState];
2095 if (YYPACT_NINF < yyn && yyn <= YYLAST)
2096 {
2097 yySymbol yytoken = YYTRANSLATE (yychar);
2098 size_t yysize0 = yytnamerr (NULL, yytokenName (yytoken));
2099 size_t yysize = yysize0;
2100 size_t yysize1;
2101 yybool yysize_overflow = yyfalse;
2102 char* yymsg = NULL;
2103 enum { YYERROR_VERBOSE_ARGS_MAXIMUM = 5 };
2104 char const *yyarg[YYERROR_VERBOSE_ARGS_MAXIMUM];
2105 int yyx;
2106 char *yyfmt;
2107 char const *yyf;
2108 static char const yyunexpected[] = "syntax error, unexpected %s";
2109 static char const yyexpecting[] = ", expecting %s";
2110 static char const yyor[] = " or %s";
2111 char yyformat[sizeof yyunexpected
2112 + sizeof yyexpecting - 1
2113 + ((YYERROR_VERBOSE_ARGS_MAXIMUM - 2)
2114 * (sizeof yyor - 1))];
2115 char const *yyprefix = yyexpecting;
2116
2117 /* Start YYX at -YYN if negative to avoid negative indexes in
2118 YYCHECK. In other words, skip the first -YYN actions for this
2119 state because they are default actions. */
2120 int yyxbegin = yyn < 0 ? -yyn : 0;
2121
2122 /* Stay within bounds of both yycheck and yytname. */
2123 int yychecklim = YYLAST - yyn + 1;
2124 int yyxend = yychecklim < YYNTOKENS ? yychecklim : YYNTOKENS;
2125 int yycount = 1;
2126
2127 yyarg[0] = yytokenName (yytoken);
2128 yyfmt = yystpcpy (yyformat, yyunexpected);
2129
2130 for (yyx = yyxbegin; yyx < yyxend; ++yyx)
2131 if (yycheck[yyx + yyn] == yyx && yyx != YYTERROR)
2132 {
2133 if (yycount == YYERROR_VERBOSE_ARGS_MAXIMUM)
2134 {
2135 yycount = 1;
2136 yysize = yysize0;
2137 yyformat[sizeof yyunexpected - 1] = '\0';
2138 break;
2139 }
2140 yyarg[yycount++] = yytokenName (yyx);
2141 yysize1 = yysize + yytnamerr (NULL, yytokenName (yyx));
2142 yysize_overflow |= yysize1 < yysize;
2143 yysize = yysize1;
2144 yyfmt = yystpcpy (yyfmt, yyprefix);
2145 yyprefix = yyor;
2146 }
2147
2148 yyf = YY_(yyformat);
2149 yysize1 = yysize + strlen (yyf);
2150 yysize_overflow |= yysize1 < yysize;
2151 yysize = yysize1;
2152
2153 if (!yysize_overflow)
2154 yymsg = (char *) YYMALLOC (yysize);
2155
2156 if (yymsg)
2157 {
2158 char *yyp = yymsg;
2159 int yyi = 0;
2160 while ((*yyp = *yyf))
2161 {
2162 if (*yyp == '%' && yyf[1] == 's' && yyi < yycount)
2163 {
2164 yyp += yytnamerr (yyp, yyarg[yyi++]);
2165 yyf += 2;
2166 }
2167 else
2168 {
2169 yyp++;
2170 yyf++;
2171 }
2172 }
2173 yyerror (]b4_lyyerror_args[yymsg);
2174 YYFREE (yymsg);
2175 }
2176 else
2177 {
2178 yyerror (]b4_lyyerror_args[YY_("syntax error"));
2179 yyMemoryExhausted (yystackp);
2180 }
2181 }
2182 else
2183 #endif /* YYERROR_VERBOSE */
2184 yyerror (]b4_lyyerror_args[YY_("syntax error"));
2185 yynerrs += 1;
2186 }
2187 }
2188
2189 /* Recover from a syntax error on *YYSTACKP, assuming that *YYSTACKP->YYTOKENP,
2190 yylval, and yylloc are the syntactic category, semantic value, and location
2191 of the lookahead. */
2192 /*ARGSUSED*/ static void
2193 yyrecoverSyntaxError (yyGLRStack* yystackp]b4_user_formals[)
2194 {
2195 size_t yyk;
2196 int yyj;
2197
2198 if (yystackp->yyerrState == 3)
2199 /* We just shifted the error token and (perhaps) took some
2200 reductions. Skip tokens until we can proceed. */
2201 while (YYID (yytrue))
2202 {
2203 yySymbol yytoken;
2204 if (yychar == YYEOF)
2205 yyFail (yystackp][]b4_lpure_args[, NULL);
2206 if (yychar != YYEMPTY)
2207 {]b4_locations_if([[
2208 /* We throw away the lookahead, but the error range
2209 of the shifted error token must take it into account. */
2210 yyGLRState *yys = yystackp->yytops.yystates[0];
2211 yyGLRStackItem yyerror_range[3];
2212 yyerror_range[1].yystate.yyloc = yys->yyloc;
2213 yyerror_range[2].yystate.yyloc = yylloc;
2214 YYLLOC_DEFAULT ((yys->yyloc), yyerror_range, 2);]])[
2215 yytoken = YYTRANSLATE (yychar);
2216 yydestruct ("Error: discarding",
2217 yytoken, &yylval]b4_locations_if([, &yylloc])[]b4_user_args[);
2218 }
2219 YYDPRINTF ((stderr, "Reading a token: "));
2220 yychar = YYLEX;
2221 if (yychar <= YYEOF)
2222 {
2223 yychar = yytoken = YYEOF;
2224 YYDPRINTF ((stderr, "Now at end of input.\n"));
2225 }
2226 else
2227 {
2228 yytoken = YYTRANSLATE (yychar);
2229 YY_SYMBOL_PRINT ("Next token is", yytoken, &yylval, &yylloc);
2230 }
2231 yyj = yypact[yystackp->yytops.yystates[0]->yylrState];
2232 if (yyis_pact_ninf (yyj))
2233 return;
2234 yyj += yytoken;
2235 if (yyj < 0 || YYLAST < yyj || yycheck[yyj] != yytoken)
2236 {
2237 if (yydefact[yystackp->yytops.yystates[0]->yylrState] != 0)
2238 return;
2239 }
2240 else if (yytable[yyj] != 0 && ! yyis_table_ninf (yytable[yyj]))
2241 return;
2242 }
2243
2244 /* Reduce to one stack. */
2245 for (yyk = 0; yyk < yystackp->yytops.yysize; yyk += 1)
2246 if (yystackp->yytops.yystates[yyk] != NULL)
2247 break;
2248 if (yyk >= yystackp->yytops.yysize)
2249 yyFail (yystackp][]b4_lpure_args[, NULL);
2250 for (yyk += 1; yyk < yystackp->yytops.yysize; yyk += 1)
2251 yymarkStackDeleted (yystackp, yyk);
2252 yyremoveDeletes (yystackp);
2253 yycompressStack (yystackp);
2254
2255 /* Now pop stack until we find a state that shifts the error token. */
2256 yystackp->yyerrState = 3;
2257 while (yystackp->yytops.yystates[0] != NULL)
2258 {
2259 yyGLRState *yys = yystackp->yytops.yystates[0];
2260 yyj = yypact[yys->yylrState];
2261 if (! yyis_pact_ninf (yyj))
2262 {
2263 yyj += YYTERROR;
2264 if (0 <= yyj && yyj <= YYLAST && yycheck[yyj] == YYTERROR
2265 && yyisShiftAction (yytable[yyj]))
2266 {
2267 /* Shift the error token having adjusted its location. */
2268 YYLTYPE yyerrloc;]b4_locations_if([[
2269 yystackp->yyerror_range[2].yystate.yyloc = yylloc;
2270 YYLLOC_DEFAULT (yyerrloc, (yystackp->yyerror_range), 2);]])[
2271 YY_SYMBOL_PRINT ("Shifting", yystos[yytable[yyj]],
2272 &yylval, &yyerrloc);
2273 yyglrShift (yystackp, 0, yytable[yyj],
2274 yys->yyposn, &yylval, &yyerrloc);
2275 yys = yystackp->yytops.yystates[0];
2276 break;
2277 }
2278 }
2279 ]b4_locations_if([[ yystackp->yyerror_range[1].yystate.yyloc = yys->yyloc;]])[
2280 if (yys->yypred != NULL)
2281 yydestroyGLRState ("Error: popping", yys]b4_user_args[);
2282 yystackp->yytops.yystates[0] = yys->yypred;
2283 yystackp->yynextFree -= 1;
2284 yystackp->yyspaceLeft += 1;
2285 }
2286 if (yystackp->yytops.yystates[0] == NULL)
2287 yyFail (yystackp][]b4_lpure_args[, NULL);
2288 }
2289
2290 #define YYCHK1(YYE) \
2291 do { \
2292 switch (YYE) { \
2293 case yyok: \
2294 break; \
2295 case yyabort: \
2296 goto yyabortlab; \
2297 case yyaccept: \
2298 goto yyacceptlab; \
2299 case yyerr: \
2300 goto yyuser_error; \
2301 default: \
2302 goto yybuglab; \
2303 } \
2304 } while (YYID (0))
2305
2306
2307 /*----------.
2308 | yyparse. |
2309 `----------*/
2310
2311 ]b4_c_ansi_function_def([yyparse], [int], b4_parse_param)[
2312 {
2313 int yyresult;
2314 yyGLRStack yystack;
2315 yyGLRStack* const yystackp = &yystack;
2316 size_t yyposn;
2317
2318 YYDPRINTF ((stderr, "Starting parse\n"));
2319
2320 yychar = YYEMPTY;
2321 yylval = yyval_default;
2322 ]b4_locations_if([
2323 #if YYLTYPE_IS_TRIVIAL
2324 yylloc.first_line = yylloc.last_line = ]b4_location_initial_line[;
2325 yylloc.first_column = yylloc.last_column = ]b4_location_initial_column[;
2326 #endif
2327 ])
2328 m4_ifdef([b4_initial_action], [
2329 m4_pushdef([b4_at_dollar], [yylloc])dnl
2330 m4_pushdef([b4_dollar_dollar], [yylval])dnl
2331 /* User initialization code. */
2332 b4_user_initial_action
2333 m4_popdef([b4_dollar_dollar])dnl
2334 m4_popdef([b4_at_dollar])])dnl
2335 [
2336 if (! yyinitGLRStack (yystackp, YYINITDEPTH))
2337 goto yyexhaustedlab;
2338 switch (YYSETJMP (yystack.yyexception_buffer))
2339 {
2340 case 0: break;
2341 case 1: goto yyabortlab;
2342 case 2: goto yyexhaustedlab;
2343 default: goto yybuglab;
2344 }
2345 yyglrShift (&yystack, 0, 0, 0, &yylval, &yylloc);
2346 yyposn = 0;
2347
2348 while (YYID (yytrue))
2349 {
2350 /* For efficiency, we have two loops, the first of which is
2351 specialized to deterministic operation (single stack, no
2352 potential ambiguity). */
2353 /* Standard mode */
2354 while (YYID (yytrue))
2355 {
2356 yyRuleNum yyrule;
2357 int yyaction;
2358 const short int* yyconflicts;
2359
2360 yyStateNum yystate = yystack.yytops.yystates[0]->yylrState;
2361 YYDPRINTF ((stderr, "Entering state %d\n", yystate));
2362 if (yystate == YYFINAL)
2363 goto yyacceptlab;
2364 if (yyisDefaultedState (yystate))
2365 {
2366 yyrule = yydefaultAction (yystate);
2367 if (yyrule == 0)
2368 {
2369 ]b4_locations_if([[ yystack.yyerror_range[1].yystate.yyloc = yylloc;]])[
2370 yyreportSyntaxError (&yystack]b4_user_args[);
2371 goto yyuser_error;
2372 }
2373 YYCHK1 (yyglrReduce (&yystack, 0, yyrule, yytrue]b4_user_args[));
2374 }
2375 else
2376 {
2377 yySymbol yytoken;
2378 if (yychar == YYEMPTY)
2379 {
2380 YYDPRINTF ((stderr, "Reading a token: "));
2381 yychar = YYLEX;
2382 }
2383
2384 if (yychar <= YYEOF)
2385 {
2386 yychar = yytoken = YYEOF;
2387 YYDPRINTF ((stderr, "Now at end of input.\n"));
2388 }
2389 else
2390 {
2391 yytoken = YYTRANSLATE (yychar);
2392 YY_SYMBOL_PRINT ("Next token is", yytoken, &yylval, &yylloc);
2393 }
2394
2395 yygetLRActions (yystate, yytoken, &yyaction, &yyconflicts);
2396 if (*yyconflicts != 0)
2397 break;
2398 if (yyisShiftAction (yyaction))
2399 {
2400 YY_SYMBOL_PRINT ("Shifting", yytoken, &yylval, &yylloc);
2401 yychar = YYEMPTY;
2402 yyposn += 1;
2403 yyglrShift (&yystack, 0, yyaction, yyposn, &yylval, &yylloc);
2404 if (0 < yystack.yyerrState)
2405 yystack.yyerrState -= 1;
2406 }
2407 else if (yyisErrorAction (yyaction))
2408 {
2409 ]b4_locations_if([[ yystack.yyerror_range[1].yystate.yyloc = yylloc;]])[
2410 yyreportSyntaxError (&yystack]b4_user_args[);
2411 goto yyuser_error;
2412 }
2413 else
2414 YYCHK1 (yyglrReduce (&yystack, 0, -yyaction, yytrue]b4_user_args[));
2415 }
2416 }
2417
2418 while (YYID (yytrue))
2419 {
2420 yySymbol yytoken_to_shift;
2421 size_t yys;
2422
2423 for (yys = 0; yys < yystack.yytops.yysize; yys += 1)
2424 yystackp->yytops.yylookaheadNeeds[yys] = yychar != YYEMPTY;
2425
2426 /* yyprocessOneStack returns one of three things:
2427
2428 - An error flag. If the caller is yyprocessOneStack, it
2429 immediately returns as well. When the caller is finally
2430 yyparse, it jumps to an error label via YYCHK1.
2431
2432 - yyok, but yyprocessOneStack has invoked yymarkStackDeleted
2433 (&yystack, yys), which sets the top state of yys to NULL. Thus,
2434 yyparse's following invocation of yyremoveDeletes will remove
2435 the stack.
2436
2437 - yyok, when ready to shift a token.
2438
2439 Except in the first case, yyparse will invoke yyremoveDeletes and
2440 then shift the next token onto all remaining stacks. This
2441 synchronization of the shift (that is, after all preceding
2442 reductions on all stacks) helps prevent double destructor calls
2443 on yylval in the event of memory exhaustion. */
2444
2445 for (yys = 0; yys < yystack.yytops.yysize; yys += 1)
2446 YYCHK1 (yyprocessOneStack (&yystack, yys, yyposn]b4_lpure_args[));
2447 yyremoveDeletes (&yystack);
2448 if (yystack.yytops.yysize == 0)
2449 {
2450 yyundeleteLastStack (&yystack);
2451 if (yystack.yytops.yysize == 0)
2452 yyFail (&yystack][]b4_lpure_args[, YY_("syntax error"));
2453 YYCHK1 (yyresolveStack (&yystack]b4_user_args[));
2454 YYDPRINTF ((stderr, "Returning to deterministic operation.\n"));
2455 ]b4_locations_if([[ yystack.yyerror_range[1].yystate.yyloc = yylloc;]])[
2456 yyreportSyntaxError (&yystack]b4_user_args[);
2457 goto yyuser_error;
2458 }
2459
2460 /* If any yyglrShift call fails, it will fail after shifting. Thus,
2461 a copy of yylval will already be on stack 0 in the event of a
2462 failure in the following loop. Thus, yychar is set to YYEMPTY
2463 before the loop to make sure the user destructor for yylval isn't
2464 called twice. */
2465 yytoken_to_shift = YYTRANSLATE (yychar);
2466 yychar = YYEMPTY;
2467 yyposn += 1;
2468 for (yys = 0; yys < yystack.yytops.yysize; yys += 1)
2469 {
2470 int yyaction;
2471 const short int* yyconflicts;
2472 yyStateNum yystate = yystack.yytops.yystates[yys]->yylrState;
2473 yygetLRActions (yystate, yytoken_to_shift, &yyaction,
2474 &yyconflicts);
2475 /* Note that yyconflicts were handled by yyprocessOneStack. */
2476 YYDPRINTF ((stderr, "On stack %lu, ", (unsigned long int) yys));
2477 YY_SYMBOL_PRINT ("shifting", yytoken_to_shift, &yylval, &yylloc);
2478 yyglrShift (&yystack, yys, yyaction, yyposn,
2479 &yylval, &yylloc);
2480 YYDPRINTF ((stderr, "Stack %lu now in state #%d\n",
2481 (unsigned long int) yys,
2482 yystack.yytops.yystates[yys]->yylrState));
2483 }
2484
2485 if (yystack.yytops.yysize == 1)
2486 {
2487 YYCHK1 (yyresolveStack (&yystack]b4_user_args[));
2488 YYDPRINTF ((stderr, "Returning to deterministic operation.\n"));
2489 yycompressStack (&yystack);
2490 break;
2491 }
2492 }
2493 continue;
2494 yyuser_error:
2495 yyrecoverSyntaxError (&yystack]b4_user_args[);
2496 yyposn = yystack.yytops.yystates[0]->yyposn;
2497 }
2498
2499 yyacceptlab:
2500 yyresult = 0;
2501 goto yyreturn;
2502
2503 yybuglab:
2504 YYASSERT (yyfalse);
2505 goto yyabortlab;
2506
2507 yyabortlab:
2508 yyresult = 1;
2509 goto yyreturn;
2510
2511 yyexhaustedlab:
2512 yyerror (]b4_lyyerror_args[YY_("memory exhausted"));
2513 yyresult = 2;
2514 goto yyreturn;
2515
2516 yyreturn:
2517 if (yychar != YYEMPTY)
2518 yydestruct ("Cleanup: discarding lookahead",
2519 YYTRANSLATE (yychar),
2520 &yylval]b4_locations_if([, &yylloc])[]b4_user_args[);
2521
2522 /* If the stack is well-formed, pop the stack until it is empty,
2523 destroying its entries as we go. But free the stack regardless
2524 of whether it is well-formed. */
2525 if (yystack.yyitems)
2526 {
2527 yyGLRState** yystates = yystack.yytops.yystates;
2528 if (yystates)
2529 {
2530 size_t yysize = yystack.yytops.yysize;
2531 size_t yyk;
2532 for (yyk = 0; yyk < yysize; yyk += 1)
2533 if (yystates[yyk])
2534 {
2535 while (yystates[yyk])
2536 {
2537 yyGLRState *yys = yystates[yyk];
2538 ]b4_locations_if([[ yystack.yyerror_range[1].yystate.yyloc = yys->yyloc;]]
2539 )[ if (yys->yypred != NULL)
2540 yydestroyGLRState ("Cleanup: popping", yys]b4_user_args[);
2541 yystates[yyk] = yys->yypred;
2542 yystack.yynextFree -= 1;
2543 yystack.yyspaceLeft += 1;
2544 }
2545 break;
2546 }
2547 }
2548 yyfreeGLRStack (&yystack);
2549 }
2550
2551 /* Make sure YYID is used. */
2552 return YYID (yyresult);
2553 }
2554
2555 /* DEBUGGING ONLY */
2556 #if YYDEBUG
2557 static void yypstack (yyGLRStack* yystackp, size_t yyk)
2558 __attribute__ ((__unused__));
2559 static void yypdumpstack (yyGLRStack* yystackp) __attribute__ ((__unused__));
2560
2561 static void
2562 yy_yypstack (yyGLRState* yys)
2563 {
2564 if (yys->yypred)
2565 {
2566 yy_yypstack (yys->yypred);
2567 YYFPRINTF (stderr, " -> ");
2568 }
2569 YYFPRINTF (stderr, "%d@@%lu", yys->yylrState,
2570 (unsigned long int) yys->yyposn);
2571 }
2572
2573 static void
2574 yypstates (yyGLRState* yyst)
2575 {
2576 if (yyst == NULL)
2577 YYFPRINTF (stderr, "<null>");
2578 else
2579 yy_yypstack (yyst);
2580 YYFPRINTF (stderr, "\n");
2581 }
2582
2583 static void
2584 yypstack (yyGLRStack* yystackp, size_t yyk)
2585 {
2586 yypstates (yystackp->yytops.yystates[yyk]);
2587 }
2588
2589 #define YYINDEX(YYX) \
2590 ((YYX) == NULL ? -1 : (yyGLRStackItem*) (YYX) - yystackp->yyitems)
2591
2592
2593 static void
2594 yypdumpstack (yyGLRStack* yystackp)
2595 {
2596 yyGLRStackItem* yyp;
2597 size_t yyi;
2598 for (yyp = yystackp->yyitems; yyp < yystackp->yynextFree; yyp += 1)
2599 {
2600 YYFPRINTF (stderr, "%3lu. ",
2601 (unsigned long int) (yyp - yystackp->yyitems));
2602 if (*(yybool *) yyp)
2603 {
2604 YYFPRINTF (stderr, "Res: %d, LR State: %d, posn: %lu, pred: %ld",
2605 yyp->yystate.yyresolved, yyp->yystate.yylrState,
2606 (unsigned long int) yyp->yystate.yyposn,
2607 (long int) YYINDEX (yyp->yystate.yypred));
2608 if (! yyp->yystate.yyresolved)
2609 YYFPRINTF (stderr, ", firstVal: %ld",
2610 (long int) YYINDEX (yyp->yystate
2611 .yysemantics.yyfirstVal));
2612 }
2613 else
2614 {
2615 YYFPRINTF (stderr, "Option. rule: %d, state: %ld, next: %ld",
2616 yyp->yyoption.yyrule - 1,
2617 (long int) YYINDEX (yyp->yyoption.yystate),
2618 (long int) YYINDEX (yyp->yyoption.yynext));
2619 }
2620 YYFPRINTF (stderr, "\n");
2621 }
2622 YYFPRINTF (stderr, "Tops:");
2623 for (yyi = 0; yyi < yystackp->yytops.yysize; yyi += 1)
2624 YYFPRINTF (stderr, "%lu: %ld; ", (unsigned long int) yyi,
2625 (long int) YYINDEX (yystackp->yytops.yystates[yyi]));
2626 YYFPRINTF (stderr, "\n");
2627 }
2628 #endif
2629 ]
2630
2631 b4_epilogue
2632 dnl
2633 dnl glr.cc produces its own header.
2634 dnl
2635 m4_if(b4_skeleton, ["glr.c"],
2636 [b4_defines_if(
2637 [@output(b4_spec_defines_file@)@
2638 b4_copyright([Skeleton interface for Bison GLR parsers in C],
2639 [2002, 2003, 2004, 2005, 2006, 2007, 2008, 2009])
2640
2641 b4_shared_declarations
2642
2643 b4_pure_if([],
2644 [[extern YYSTYPE ]b4_prefix[lval;]])
2645
2646 b4_locations_if([b4_pure_if([],
2647 [extern YYLTYPE ]b4_prefix[lloc;])
2648 ])
2649 ])])
2650 m4_divert_pop(0)