1 m4_divert(-1) -*- C
-*-
3 # GLR skeleton for Bison
4 # Copyright (C) 2002, 2003 Free Software Foundation, Inc.
6 # This program is free software; you can redistribute it and/or modify
7 # it under the terms of the GNU General Public License as published by
8 # the Free Software Foundation; either version 2 of the License, or
9 # (at your option) any later version.
11 # This program is distributed in the hope that it will be useful,
12 # but WITHOUT ANY WARRANTY; without even the implied warranty of
13 # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 # GNU General Public License for more details.
16 # You should have received a copy of the GNU General Public License
17 # along with this program; if not, write to the Free Software
18 # Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA
22 ## ---------------- ##
24 ## ---------------- ##
27 m4_define_default([b4_stack_depth_max
], [10000])
28 m4_define_default([b4_stack_depth_init
], [200])
32 ## ------------------------ ##
33 ## Pure/impure interfaces. ##
34 ## ------------------------ ##
39 # Accumule in b4_lex_param all the yylex arguments.
40 # Yes, this is quite ugly...
41 m4_define([b4_lex_param
],
42 m4_dquote(b4_pure_if([[[[YYSTYPE
*]], [[yylvalp]]][]dnl
43 b4_location_if([, [[YYLTYPE
*], [yyllocp
]]])])dnl
44 m4_ifdef([b4_lex_param
], [, ]b4_lex_param
)))
49 m4_define([b4_user_formals
],
50 [m4_ifset([b4_parse_param
], [, b4_c_ansi_formals(b4_parse_param
)])])
55 # Arguments passed to yyerror: user args plus yylloc.
56 m4_define([b4_yyerror_args
],
57 [b4_pure_if([b4_location_if([yylocp
, ])])dnl
58 m4_ifset([b4_parse_param
], [b4_c_args(b4_parse_param
), ])])
63 # Same as above, but on the lookahead, hence yyllocp instead of yylocp.
64 m4_define([b4_lyyerror_args
],
65 [b4_pure_if([b4_location_if([yyllocp
, ])])dnl
66 m4_ifset([b4_parse_param
], [b4_c_args(b4_parse_param
), ])])
71 # Arguments needed by yyerror: user args plus yylloc.
72 m4_define([b4_pure_args
],
73 [b4_pure_if([b4_location_if([, yylocp
])])[]b4_user_args
])
78 # Arguments passed to yyerror: user formals plus yyllocp.
79 m4_define([b4_pure_formals
],
80 [b4_pure_if([b4_location_if([, YYLTYPE
*yylocp
])])[]b4_user_formals
])
85 # Same as above, but on the lookahead, hence yyllocp instead of yylocp.
86 m4_define([b4_lpure_args
],
87 [b4_pure_if([b4_location_if([, yyllocp
])])[]b4_user_args
])
92 # Same as above, but on the lookahead, hence yyllocp instead of yylocp.
93 m4_define([b4_lpure_formals
],
94 [b4_pure_if([b4_location_if([YYLTYPE
*yyllocp
])])[]b4_user_formals
])
97 ## ----------------- ##
98 ## Semantic Values. ##
99 ## ----------------- ##
102 # b4_lhs_value([TYPE])
103 # --------------------
104 # Expansion of $<TYPE>$.
105 m4_define([b4_lhs_value
],
106 [(*yyvalp
)[]m4_ifval([$
1], [.$
1])])
109 # b4_rhs_value(RULE-LENGTH, NUM, [TYPE])
110 # --------------------------------------
111 # Expansion of $<TYPE>NUM, where the current rule has RULE-LENGTH
113 m4_define([b4_rhs_value
],
114 [yyvsp@
{YYFILL (m4_eval([$
2 - $
1]))@
}.yystate
.yysemantics
.yysval
[]m4_ifval([$
3], [.$
3])])
125 m4_define([b4_lhs_location
],
129 # b4_rhs_location(RULE-LENGTH, NUM)
130 # ---------------------------------
131 # Expansion of @NUM, where the current rule has RULE-LENGTH symbols
133 m4_define([b4_rhs_location
],
134 [yyvsp@
{YYFILL (m4_eval([$
2 - $
1]))@
}.yystate
.yyloc
])
136 # We do want M4 expansion after # for CPP macros.
139 @output @output_parser_name@
140 b4_copyright([Skeleton parser
for GLR parsing with Bison
], [2002, 2003])
142 /* This is the parser code for GLR (Generalized LR) parser. */
151 m4_if(b4_prefix
[], [yy
], [],
152 [/* If NAME_PREFIX is specified substitute the variables and functions
154 #define yyparse b4_prefix[]parse
155 #define yylex b4_prefix[]lex
156 #define yyerror b4_prefix[]error
157 #define yylval b4_prefix[]lval
158 #define yychar b4_prefix[]char
159 #define yydebug b4_prefix[]debug
160 #define yynerrs b4_prefix[]nerrs
161 b4_location_if([#define yylloc b4_prefix[]lloc])])
163 b4_token_defines(b4_tokens
)
165 /* Copy the first part of user declarations. */
168 /* Enabling traces. */
170 # define YYDEBUG ]b4_debug[
173 /* Enabling verbose error messages. */
174 #ifdef YYERROR_VERBOSE
175 # undef YYERROR_VERBOSE
176 # define YYERROR_VERBOSE 1
178 # define YYERROR_VERBOSE ]b4_error_verbose[
181 #if ! defined (YYSTYPE) && ! defined (YYSTYPE_IS_DECLARED)
182 ]m4_ifdef([b4_stype
],
183 [b4_syncline([b4_stype_line
], [b4_filename
])
184 typedef union m4_bregexp(b4_stype
, [^{], [YYSTYPE
])b4_stype YYSTYPE
;
185 /* Line __line__ of glr.c. */
186 b4_syncline([@oline@
], [@ofile@
])],
187 [typedef int YYSTYPE
;])[
188 # define YYSTYPE_IS_DECLARED 1
189 # define YYSTYPE_IS_TRIVIAL 1
192 #if ! defined (YYLTYPE) && ! defined (YYLTYPE_IS_DECLARED)
193 typedef struct YYLTYPE
200 # define YYLTYPE_IS_DECLARED 1
201 # define YYLTYPE_IS_TRIVIAL 1
204 /* Default (constant) values used for initialization for null
205 right-hand sides. Unlike the standard yacc.c template,
206 here we set the default values of $$ and $@@ to zeroed-out
207 values. Since the default value of these quantities is undefined,
208 this behavior is technically correct. */
209 static YYSTYPE yyval_default
;
210 static YYLTYPE yyloc_default
;
212 /* Copy the second part of user declarations. */
215 ]/* Line __line__ of glr.c. */
216 b4_syncline([@oline@
], [@ofile@
])
221 typedef unsigned char yybool
;
230 #ifndef __attribute__
231 /* This feature is available in gcc versions 2.5 and later. */
232 # if !defined (__GNUC__) || __GNUC__ < 2 || \
233 (__GNUC__ == 2 && __GNUC_MINOR__ < 5) || __STRICT_ANSI__
234 # define __attribute__(Spec) /* empty */
238 #ifndef ATTRIBUTE_UNUSED
239 # define ATTRIBUTE_UNUSED __attribute__ ((__unused__))
242 /* YYFINAL -- State number of the termination state. */
243 #define YYFINAL ]b4_final_state_number[
244 /* YYLAST -- Last index in YYTABLE. */
245 #define YYLAST ]b4_last[
247 /* YYNTOKENS -- Number of terminals. */
248 #define YYNTOKENS ]b4_tokens_number[
249 /* YYNNTS -- Number of nonterminals. */
250 #define YYNNTS ]b4_nterms_number[
251 /* YYNRULES -- Number of rules. */
252 #define YYNRULES ]b4_rules_number[
253 /* YYNRULES -- Number of states. */
254 #define YYNSTATES ]b4_states_number[
255 /* YYMAXRHS -- Maximum number of symbols on right-hand side of rule. */
256 #define YYMAXRHS ]b4_r2_max[
258 /* YYTRANSLATE(X) -- Bison symbol number corresponding to X. */
259 #define YYUNDEFTOK ]b4_undef_token_number[
260 #define YYMAXUTOK ]b4_user_token_number_max[
262 #define YYTRANSLATE(YYX) \
263 ((YYX <= 0) ? YYEOF : \
264 (unsigned)(YYX) <= YYMAXUTOK ? yytranslate[YYX] : YYUNDEFTOK)
266 /* YYTRANSLATE[YYLEX] -- Bison symbol number corresponding to YYLEX. */
267 static const ]b4_int_type_for([b4_translate
])[ yytranslate
[] =
273 /* YYPRHS[YYN] -- Index of the first RHS symbol of rule number YYN in
275 static const ]b4_int_type_for([b4_prhs
])[ yyprhs
[] =
280 /* YYRHS -- A `-1'-separated list of the rules' RHS. */
281 static const ]b4_int_type_for([b4_rhs
])[ yyrhs
[] =
286 /* YYRLINE[YYN] -- source line where rule number YYN was defined. */
287 static const ]b4_int_type_for([b4_rline
])[ yyrline
[] =
293 #if (YYDEBUG) || YYERROR_VERBOSE
294 /* YYTNME[SYMBOL-NUM] -- String name of the symbol SYMBOL-NUM.
295 First, the terminals, then, starting at YYNTOKENS, nonterminals. */
296 static const char *const yytname
[] =
302 /* YYR1[YYN] -- Symbol number of symbol that rule YYN derives. */
303 static const ]b4_int_type_for([b4_r1
])[ yyr1
[] =
308 /* YYR2[YYN] -- Number of symbols composing right hand side of rule YYN. */
309 static const ]b4_int_type_for([b4_r2
])[ yyr2
[] =
314 /* YYDPREC[RULE-NUM] -- Dynamic precedence of rule #RULE-NUM (0 if none). */
315 static const ]b4_int_type_for([b4_dprec
])[ yydprec
[] =
320 /* YYMERGER[RULE-NUM] -- Index of merging function for rule #RULE-NUM. */
321 static const ]b4_int_type_for([b4_merger
])[ yymerger
[] =
326 /* YYDEFACT[S] -- default rule to reduce with in state S when YYTABLE
327 doesn't specify something else to do. Zero means the default is an
329 static const ]b4_int_type_for([b4_defact
])[ yydefact
[] =
334 /* YYPDEFGOTO[NTERM-NUM]. */
335 static const ]b4_int_type_for([b4_defgoto
])[ yydefgoto
[] =
340 /* YYPACT[STATE-NUM] -- Index in YYTABLE of the portion describing
342 #define YYPACT_NINF ]b4_pact_ninf[
343 static const ]b4_int_type_for([b4_pact
])[ yypact
[] =
348 /* YYPGOTO[NTERM-NUM]. */
349 static const ]b4_int_type_for([b4_pgoto
])[ yypgoto
[] =
354 /* YYTABLE[YYPACT[STATE-NUM]]. What to do in state STATE-NUM. If
355 positive, shift that token. If negative, reduce the rule which
356 number is the opposite. If zero, do what YYDEFACT says.
357 If YYTABLE_NINF, syntax error. */
358 #define YYTABLE_NINF ]b4_table_ninf[
359 static const ]b4_int_type_for([b4_table
])[ yytable
[] =
364 /* YYCONFLP[YYPACT[STATE-NUM]] -- Pointer into YYCONFL of start of
365 list of conflicting reductions corresponding to action entry for
366 state STATE-NUM in yytable. 0 means no conflicts. The list in
367 yyconfl is terminated by a rule number of 0. */
368 static const ]b4_int_type_for([b4_conflict_list_heads
])[ yyconflp
[] =
370 ]b4_conflict_list_heads
[
373 /* YYCONFL[I] -- lists of conflicting rule numbers, each terminated by
374 0, pointed into by YYCONFLP. */
375 ]dnl Do
not use b4_int_type_for here
, since there are places where
376 dnl pointers onto yyconfl are taken
, which type is
"short *".
377 dnl We probably ought to introduce a type
for confl
.
378 [static const short yyconfl
[] =
380 ]b4_conflicting_rules
[
383 static const ]b4_int_type_for([b4_check
])[ yycheck
[] =
388 /* YYSTOS[STATE-NUM] -- The (internal number of the) accessing
389 symbol of state STATE-NUM. */
390 static const ]b4_int_type_for([b4_stos
])[ yystos
[] =
396 /* Prevent warning if -Wmissing-prototypes. */
397 ]b4_c_ansi_function_decl([yyparse
], [int], b4_parse_param
)[
399 /* Error token number */
402 /* YYLLOC_DEFAULT -- Compute the default location (before the actions
405 #define YYRHSLOC(yyRhs,YYK) (yyRhs[YYK].yystate.yyloc)
407 #ifndef YYLLOC_DEFAULT
408 # define YYLLOC_DEFAULT(yyCurrent, yyRhs, YYN) \
409 yyCurrent.first_line = YYRHSLOC(yyRhs,1).first_line; \
410 yyCurrent.first_column = YYRHSLOC(yyRhs,1).first_column; \
411 yyCurrent.last_line = YYRHSLOC(yyRhs,YYN).last_line; \
412 yyCurrent.last_column = YYRHSLOC(yyRhs,YYN).last_column;
415 /* YYLEX -- calling `yylex' with the right arguments. */
416 #define YYLEX ]b4_c_function_call([yylex], [int], b4_lex_param)[
421 #define yynerrs (yystack->yyerrcnt)
423 #define yychar (yystack->yyrawchar)],
431 static const int YYEOF
= 0;
432 static const int YYEMPTY
= -2;
434 typedef enum { yyok
, yyaccept
, yyabort
, yyerr
} YYRESULTTAG
;
437 do { YYRESULTTAG yyflag = YYE; if (yyflag != yyok) return yyflag; } \
442 #if ! defined (YYFPRINTF)
443 # define YYFPRINTF fprintf
446 # define YYDPRINTF(Args) \
452 ]b4_yysymprint_generate([b4_c_ansi_function_def
])[
454 # define YYDSYMPRINT(Args) \
460 # define YYDSYMPRINTF(Title, Token, Value, Location) \
464 YYFPRINTF (stderr, "%s ", Title); \
465 yysymprint (stderr, \
466 Token, Value]b4_location_if([, Location])[); \
467 YYFPRINTF (stderr, "\n"); \
471 /* Nonzero means print parse trace. It is left uninitialized so that
472 multiple parsers can coexist. */
477 /* Avoid empty `if' bodies. */
478 # define YYDPRINTF(Args)
479 # define YYDSYMPRINT(Args)
480 # define YYDSYMPRINTF(Title, Token, Value, Location)
482 #endif /* !YYDEBUG */
484 /* YYINITDEPTH -- initial size of the parser's stacks. */
486 # define YYINITDEPTH ]b4_stack_depth_init[
489 /* YYMAXDEPTH -- maximum size the stacks can grow to (effective only
490 if the built-in stack extension method is used).
492 Do not make this value too large; the results are undefined if
493 SIZE_MAX < YYMAXDEPTH * sizeof (GLRStackItem)
494 evaluated with infinite-precision integer arithmetic. */
501 # define YYMAXDEPTH ]b4_stack_depth_max[
504 /* Minimum number of free items on the stack allowed after an
505 allocation. This is to allow allocation and initialization
506 to be completed by functions that call expandGLRStack before the
507 stack is expanded, thus insuring that all necessary pointers get
508 properly redirected to new data. */
511 #if (! defined (YYSTACKEXPANDABLE) \
512 && (! defined (__cplusplus) \
513 || (]b4_location_if([[defined (YYLTYPE_IS_TRIVIAL) && YYLTYPE_IS_TRIVIAL \
514 && ]])[defined (YYSTYPE_IS_TRIVIAL) && YYSTYPE_IS_TRIVIAL)))
515 #define YYSTACKEXPANDABLE 1
517 #define YYSTACKEXPANDABLE 0
520 /** State numbers, as in LALR(1) machine */
521 typedef int yyStateNum
;
523 /** Rule numbers, as in LALR(1) machine */
524 typedef int yyRuleNum
;
526 /** Grammar symbol */
527 typedef short yySymbol
;
529 /** Item references, as in LALR(1) machine */
530 typedef short yyItemNum
;
532 typedef struct yyGLRState yyGLRState
;
533 typedef struct yySemanticOption yySemanticOption
;
534 typedef union yyGLRStackItem yyGLRStackItem
;
535 typedef struct yyGLRStack yyGLRStack
;
536 typedef struct yyGLRStateSet yyGLRStateSet
;
541 yyStateNum yylrState
;
545 yySemanticOption
* yyfirstVal
;
551 struct yyGLRStateSet
{
552 yyGLRState
** yystates
;
553 size_t yysize
, yycapacity
;
556 struct yySemanticOption
{
560 yySemanticOption
* yynext
;
563 union yyGLRStackItem
{
565 yySemanticOption yyoption
;
577 jmp_buf yyexception_buffer
;
578 yyGLRStackItem
* yyitems
;
579 yyGLRStackItem
* yynextFree
;
581 yyGLRState
* yysplitPoint
;
582 yyGLRState
* yylastDeleted
;
583 yyGLRStateSet yytops
;
586 static void yyinitGLRStack (yyGLRStack
* yystack
, size_t yysize
);
587 static void yyexpandGLRStack (yyGLRStack
* yystack
]b4_pure_formals
[);
588 static void yyfreeGLRStack (yyGLRStack
* yystack
);
591 yyFail (yyGLRStack
* yystack
]b4_pure_formals
[, const char* yyformat
, ...)
593 yystack
->yyerrflag
= 1;
594 if (yyformat
!= NULL
)
598 va_start (yyap
, yyformat
);
599 vsprintf (yymsg
, yyformat
, yyap
);
600 yyerror (]b4_yyerror_args
[yymsg
);
602 longjmp (yystack
->yyexception_buffer
, 1);
605 #if YYDEBUG || YYERROR_VERBOSE
606 /** A printable representation of TOKEN. Valid until next call to
608 static inline const char*
609 yytokenName (yySymbol yytoken
)
611 return yytname
[yytoken
];
615 /** Fill in YYVSP[YYLOW1 .. YYLOW0-1] from the chain of states starting
616 * at YYVSP[YYLOW0].yystate.yypred. Leaves YYVSP[YYLOW1].yystate.yypred
617 * containing the pointer to the next state in the chain. Assumes
618 * YYLOW1 < YYLOW0. */
619 static void yyfillin (yyGLRStackItem
*, int, int) ATTRIBUTE_UNUSED
;
621 yyfillin (yyGLRStackItem
*yyvsp
, int yylow0
, int yylow1
)
625 s
= yyvsp
[yylow0
].yystate
.yypred
;
626 for (i
= yylow0
-1; i
>= yylow1
; i
-= 1)
630 yyvsp
[i
].yystate
.yyresolved
= yytrue
;
631 yyvsp
[i
].yystate
.yysemantics
.yysval
= s
->yysemantics
.yysval
;
632 yyvsp
[i
].yystate
.yyloc
= s
->yyloc
;
633 s
= yyvsp
[i
].yystate
.yypred
= s
->yypred
;
637 /* Do nothing if YYNORMAL or if *YYLOW <= YYLOW1. Otherwise, fill in
638 YYVSP[YYLOW1 .. *YYLOW-1] as in yyfillin and set *YYLOW = YYLOW1.
639 For convenience, always return YYLOW1. */
640 static inline int yyfill (yyGLRStackItem
*, int *, int, yybool
)
643 yyfill (yyGLRStackItem
*yyvsp
, int *yylow
, int yylow1
, yybool yynormal
)
645 if (!yynormal
&& yylow1
< *yylow
)
647 yyfillin (yyvsp
, *yylow
, yylow1
);
653 /** Perform user action for rule number YYN, with RHS length YYRHSLEN,
654 * and top stack item YYVSP. YYLVALP points to place to put semantic
655 * value ($$), and yylocp points to place for location information
656 * (@@$). Returns yyok for normal return, yyaccept for YYACCEPT,
657 * yyerr for YYERROR, yyabort for YYABORT. */
659 yyuserAction (yyRuleNum yyn
, int yyrhslen
, yyGLRStackItem
* yyvsp
,
660 YYSTYPE
* yyvalp
, YYLTYPE
* yylocp
, yyGLRStack
* yystack
663 yybool yynormal ATTRIBUTE_UNUSED
= (yystack
->yysplitPoint
== NULL
);
668 *yyvalp
= yyval_default
;
669 *yylocp
= yyloc_default
;
673 *yyvalp
= yyvsp
[1-yyrhslen
].yystate
.yysemantics
.yysval
;
674 *yylocp
= yyvsp
[1-yyrhslen
].yystate
.yyloc
;
677 # define yyerrok (yystack->yyerrState = 0)
679 # define YYACCEPT return yyaccept
681 # define YYABORT return yyabort
683 # define YYERROR return yyerr
685 # define YYRECOVERING (yystack->yyerrState != 0)
687 # define yyclearin (yychar = *(yystack->yytokenp) = YYEMPTY)
689 # define YYFILL(N) yyfill (yyvsp, &yylow, N, yynormal)
691 # define YYBACKUP(Token, Value) \
693 yyerror (]b4_yyerror_args["syntax error: cannot back up"); \
712 /* Line __line__ of glr.c. */
713 b4_syncline([@oline@
], [@ofile@
])
718 yyuserMerge (int yyn
, YYSTYPE
* yy0
, YYSTYPE
* yy1
)
720 YYSTYPE yyval
= *yy0
;
721 /* `Use' the arguments. */
732 /* Bison grammar-table manipulation. */
734 ]b4_yydestruct_generate([b4_c_ansi_function_def
])[
736 /** Number of symbols composing the right hand side of rule #RULE. */
738 yyrhsLength (yyRuleNum yyrule
)
743 /** Left-hand-side symbol for rule #RULE. */
744 static inline yySymbol
745 yylhsNonterm (yyRuleNum yyrule
)
750 #define yyis_pact_ninf(yystate) \
751 ]m4_if(m4_eval(b4_pact_ninf < b4_pact_min), 1,
753 ((yystate
) == YYPACT_NINF
))[
755 /** True iff LR state STATE has only a default reduction (regardless
758 yyisDefaultedState (yyStateNum yystate
)
760 return yyis_pact_ninf (yypact
[yystate
]);
763 /** The default reduction for STATE, assuming it has one. */
764 static inline yyRuleNum
765 yydefaultAction (yyStateNum yystate
)
767 return yydefact
[yystate
];
770 #define yyis_table_ninf(yytable_value) \
771 ]m4_if(m4_eval(b4_table_ninf < b4_table_min), 1,
773 ((yytable_value
) == YYTABLE_NINF
))[
775 /** Set *YYACTION to the action to take in YYSTATE on seeing YYTOKEN.
777 * R < 0: Reduce on rule -R.
779 * R > 0: Shift to state R.
780 * Set *CONFLICTS to a pointer into yyconfl to 0-terminated list of
781 * conflicting reductions.
784 yygetLRActions (yyStateNum yystate
, int yytoken
,
785 int* yyaction
, const short** yyconflicts
)
787 int yyindex
= yypact
[yystate
] + yytoken
;
788 if (yyindex
< 0 || YYLAST
< yyindex
|| yycheck
[yyindex
] != yytoken
)
790 *yyaction
= -yydefact
[yystate
];
791 *yyconflicts
= yyconfl
;
793 else if (! yyis_table_ninf (yytable
[yyindex
]))
795 *yyaction
= yytable
[yyindex
];
796 *yyconflicts
= yyconfl
+ yyconflp
[yyindex
];
801 *yyconflicts
= yyconfl
+ yyconflp
[yyindex
];
805 static inline yyStateNum
806 yyLRgotoState (yyStateNum yystate
, yySymbol yylhs
)
809 yyr
= yypgoto
[yylhs
- YYNTOKENS
] + yystate
;
810 if (0 <= yyr
&& yyr
<= YYLAST
&& yycheck
[yyr
] == yystate
)
813 return yydefgoto
[yylhs
- YYNTOKENS
];
817 yyisShiftAction (int yyaction
)
823 yyisErrorAction (int yyaction
)
825 return yyaction
== 0;
831 yyaddDeferredAction (yyGLRStack
* yystack
, yyGLRState
* yystate
,
832 yyGLRState
* rhs
, yyRuleNum yyrule
]b4_pure_formals
[)
834 yySemanticOption
* yynewItem
;
835 yynewItem
= &yystack
->yynextFree
->yyoption
;
836 yystack
->yyspaceLeft
-= 1;
837 yystack
->yynextFree
+= 1;
838 yynewItem
->yyisState
= yyfalse
;
839 yynewItem
->yystate
= rhs
;
840 yynewItem
->yyrule
= yyrule
;
841 yynewItem
->yynext
= yystate
->yysemantics
.yyfirstVal
;
842 yystate
->yysemantics
.yyfirstVal
= yynewItem
;
843 if (yystack
->yyspaceLeft
< YYHEADROOM
)
844 yyexpandGLRStack (yystack
]b4_pure_args
[);
849 /** Initialize SET to a singleton set containing an empty stack. */
851 yyinitStateSet (yyGLRStateSet
* yyset
)
854 yyset
->yycapacity
= 16;
855 yyset
->yystates
= (yyGLRState
**) malloc (16 * sizeof (yyset
->yystates
[0]));
856 yyset
->yystates
[0] = NULL
;
859 static void yyfreeStateSet (yyGLRStateSet
* yyset
)
861 free (yyset
->yystates
);
864 /** Initialize STACK to a single empty stack, with total maximum
865 * capacity for all stacks of SIZE. */
867 yyinitGLRStack (yyGLRStack
* yystack
, size_t yysize
)
869 yystack
->yyerrflag
= 0;
870 yystack
->yyerrState
= 0;
872 yystack
->yyspaceLeft
= yysize
;
873 yystack
->yynextFree
= yystack
->yyitems
=
874 (yyGLRStackItem
*) malloc (yysize
* sizeof (yystack
->yynextFree
[0]));
875 yystack
->yysplitPoint
= NULL
;
876 yystack
->yylastDeleted
= NULL
;
877 yyinitStateSet (&yystack
->yytops
);
880 #define YYRELOC(YYFROMITEMS,YYTOITEMS,YYX,YYTYPE) \
881 &((YYTOITEMS) - ((YYFROMITEMS) - (yyGLRStackItem*) (YYX)))->YYTYPE
883 /** If STACK is expandable, extend it. WARNING: Pointers into the
884 stack from outside should be considered invalid after this call.
885 We always expand when there are 1 or fewer items left AFTER an
886 allocation, so that we can avoid having external pointers exist
887 across an allocation. */
889 yyexpandGLRStack (yyGLRStack
* yystack
]b4_pure_formals
[)
891 #if YYSTACKEXPANDABLE
892 yyGLRStack yynewStack
;
893 yyGLRStackItem
* yyp0
, *yyp1
;
894 size_t yysize
, yynewSize
;
896 yysize
= yystack
->yynextFree
- yystack
->yyitems
;
897 if (YYMAXDEPTH
<= yysize
)
898 yyFail (yystack
][]b4_pure_args
[, "parser stack overflow");
899 yynewSize
= 2*yysize
;
900 if (YYMAXDEPTH
< yynewSize
)
901 yynewSize
= YYMAXDEPTH
;
902 yyinitGLRStack (&yynewStack
, yynewSize
);
903 for (yyp0
= yystack
->yyitems
, yyp1
= yynewStack
.yyitems
, yyn
= yysize
;
905 yyn
-= 1, yyp0
+= 1, yyp1
+= 1)
908 if (*(yybool
*) yyp0
)
910 yyGLRState
* yys0
= &yyp0
->yystate
;
911 yyGLRState
* yys1
= &yyp1
->yystate
;
912 if (yys0
->yypred
!= NULL
)
914 YYRELOC (yyp0
, yyp1
, yys0
->yypred
, yystate
);
915 if (! yys0
->yyresolved
&& yys0
->yysemantics
.yyfirstVal
!= NULL
)
916 yys1
->yysemantics
.yyfirstVal
=
917 YYRELOC(yyp0
, yyp1
, yys0
->yysemantics
.yyfirstVal
, yyoption
);
921 yySemanticOption
* yyv0
= &yyp0
->yyoption
;
922 yySemanticOption
* yyv1
= &yyp1
->yyoption
;
923 if (yyv0
->yystate
!= NULL
)
924 yyv1
->yystate
= YYRELOC (yyp0
, yyp1
, yyv0
->yystate
, yystate
);
925 if (yyv0
->yynext
!= NULL
)
926 yyv1
->yynext
= YYRELOC (yyp0
, yyp1
, yyv0
->yynext
, yyoption
);
929 if (yystack
->yysplitPoint
!= NULL
)
930 yystack
->yysplitPoint
= YYRELOC (yystack
->yyitems
, yynewStack
.yyitems
,
931 yystack
->yysplitPoint
, yystate
);
933 for (yyn
= 0; yyn
< yystack
->yytops
.yysize
; yyn
+= 1)
934 if (yystack
->yytops
.yystates
[yyn
] != NULL
)
935 yystack
->yytops
.yystates
[yyn
] =
936 YYRELOC (yystack
->yyitems
, yynewStack
.yyitems
,
937 yystack
->yytops
.yystates
[yyn
], yystate
);
938 free (yystack
->yyitems
);
939 yystack
->yyitems
= yynewStack
.yyitems
;
940 yystack
->yynextFree
= yynewStack
.yynextFree
+ yysize
;
941 yystack
->yyspaceLeft
= yynewStack
.yyspaceLeft
- yysize
;
945 yyFail (yystack
][]b4_pure_args
[, "parser stack overflow");
950 yyfreeGLRStack (yyGLRStack
* yystack
)
952 free (yystack
->yyitems
);
953 yyfreeStateSet (&yystack
->yytops
);
956 /** Assuming that S is a GLRState somewhere on STACK, update the
957 * splitpoint of STACK, if needed, so that it is at least as deep as
960 yyupdateSplit (yyGLRStack
* yystack
, yyGLRState
* yys
)
962 if (yystack
->yysplitPoint
!= NULL
&& yystack
->yysplitPoint
> yys
)
963 yystack
->yysplitPoint
= yys
;
966 /** Invalidate stack #K in STACK. */
968 yymarkStackDeleted (yyGLRStack
* yystack
, int yyk
)
970 if (yystack
->yytops
.yystates
[yyk
] != NULL
)
971 yystack
->yylastDeleted
= yystack
->yytops
.yystates
[yyk
];
972 yystack
->yytops
.yystates
[yyk
] = NULL
;
975 /** Undelete the last stack that was marked as deleted. Can only be
976 done once after a deletion, and only when all other stacks have
979 yyundeleteLastStack (yyGLRStack
* yystack
)
981 if (yystack
->yylastDeleted
== NULL
|| yystack
->yytops
.yysize
!= 0)
983 yystack
->yytops
.yystates
[0] = yystack
->yylastDeleted
;
984 yystack
->yytops
.yysize
= 1;
985 YYDPRINTF ((stderr
, "Restoring last deleted stack as stack #0.\n"));
986 yystack
->yylastDeleted
= NULL
;
990 yyremoveDeletes (yyGLRStack
* yystack
)
994 while (yyj
< yystack
->yytops
.yysize
)
996 if (yystack
->yytops
.yystates
[yyi
] == NULL
)
1000 YYDPRINTF ((stderr
, "Removing dead stacks.\n"));
1002 yystack
->yytops
.yysize
-= 1;
1006 yystack
->yytops
.yystates
[yyj
] = yystack
->yytops
.yystates
[yyi
];
1009 YYDPRINTF ((stderr
, "Rename stack %d -> %d.\n", yyi
, yyj
));
1017 /** Shift to a new state on stack #K of STACK, corresponding to LR state
1018 * LRSTATE, at input position POSN, with (resolved) semantic value SVAL. */
1020 yyglrShift (yyGLRStack
* yystack
, int yyk
, yyStateNum yylrState
, size_t yyposn
,
1021 YYSTYPE yysval
, YYLTYPE
* yylocp
]b4_user_formals
[)
1023 yyGLRStackItem
* yynewItem
;
1025 yynewItem
= yystack
->yynextFree
;
1026 yystack
->yynextFree
+= 1;
1027 yystack
->yyspaceLeft
-= 1;
1028 yynewItem
->yystate
.yyisState
= yytrue
;
1029 yynewItem
->yystate
.yylrState
= yylrState
;
1030 yynewItem
->yystate
.yyposn
= yyposn
;
1031 yynewItem
->yystate
.yyresolved
= yytrue
;
1032 yynewItem
->yystate
.yypred
= yystack
->yytops
.yystates
[yyk
];
1033 yystack
->yytops
.yystates
[yyk
] = &yynewItem
->yystate
;
1034 yynewItem
->yystate
.yysemantics
.yysval
= yysval
;
1035 yynewItem
->yystate
.yyloc
= *yylocp
;
1036 if (yystack
->yyspaceLeft
< YYHEADROOM
)
1037 yyexpandGLRStack (yystack
]b4_pure_args
[);
1040 /** Shift stack #K of YYSTACK, to a new state corresponding to LR
1041 * state YYLRSTATE, at input position YYPOSN, with the (unresolved)
1042 * semantic value of YYRHS under the action for YYRULE. */
1044 yyglrShiftDefer (yyGLRStack
* yystack
, int yyk
, yyStateNum yylrState
,
1045 size_t yyposn
, yyGLRState
* rhs
, yyRuleNum yyrule
]b4_pure_formals
[)
1047 yyGLRStackItem
* yynewItem
;
1049 yynewItem
= yystack
->yynextFree
;
1050 yynewItem
->yystate
.yyisState
= yytrue
;
1051 yynewItem
->yystate
.yylrState
= yylrState
;
1052 yynewItem
->yystate
.yyposn
= yyposn
;
1053 yynewItem
->yystate
.yyresolved
= yyfalse
;
1054 yynewItem
->yystate
.yypred
= yystack
->yytops
.yystates
[yyk
];
1055 yynewItem
->yystate
.yysemantics
.yyfirstVal
= NULL
;
1056 yystack
->yytops
.yystates
[yyk
] = &yynewItem
->yystate
;
1057 yystack
->yynextFree
+= 1;
1058 yystack
->yyspaceLeft
-= 1;
1059 yyaddDeferredAction (yystack
, &yynewItem
->yystate
, rhs
, yyrule
]b4_pure_args
[);
1062 /** Pop the symbols consumed by reduction #RULE from the top of stack
1063 * #K of STACK, and perform the appropriate semantic action on their
1064 * semantic values. Assumes that all ambiguities in semantic values
1065 * have been previously resolved. Set *VALP to the resulting value,
1066 * and *LOCP to the computed location (if any). Return value is as
1067 * for userAction. */
1068 static inline YYRESULTTAG
1069 yydoAction (yyGLRStack
* yystack
, int yyk
, yyRuleNum yyrule
,
1070 YYSTYPE
* yyvalp
, YYLTYPE
* yylocp
]b4_user_formals
[)
1072 int yynrhs
= yyrhsLength (yyrule
);
1074 if (yystack
->yysplitPoint
== NULL
)
1076 /* Standard special case: single stack. */
1077 yyGLRStackItem
* rhs
= (yyGLRStackItem
*) yystack
->yytops
.yystates
[yyk
];
1080 yystack
->yynextFree
-= yynrhs
;
1081 yystack
->yyspaceLeft
+= yynrhs
;
1082 yystack
->yytops
.yystates
[0] = & yystack
->yynextFree
[-1].yystate
;
1085 *yyvalp
= yyval_default
;
1086 *yylocp
= yyloc_default
;
1090 *yyvalp
= rhs
[1-yynrhs
].yystate
.yysemantics
.yysval
;
1091 *yylocp
= rhs
[1-yynrhs
].yystate
.yyloc
;
1093 return yyuserAction (yyrule
, yynrhs
, rhs
,
1094 yyvalp
, yylocp
, yystack
]b4_user_args
[);
1100 yyGLRStackItem yyrhsVals
[YYMAXRHS
+1];
1101 yys
= yyrhsVals
[YYMAXRHS
].yystate
.yypred
= yystack
->yytops
.yystates
[yyk
];
1102 for (yyi
= 0; yyi
< yynrhs
; yyi
+= 1)
1108 yyupdateSplit (yystack
, yys
);
1109 yystack
->yytops
.yystates
[yyk
] = yys
;
1112 *yyvalp
= yyval_default
;
1113 *yylocp
= yyloc_default
;
1117 *yyvalp
= yyrhsVals
[1].yystate
.yysemantics
.yysval
;
1118 *yylocp
= yyrhsVals
[1].yystate
.yyloc
;
1120 return yyuserAction (yyrule
, yynrhs
, yyrhsVals
+ YYMAXRHS
- 1,
1121 yyvalp
, yylocp
, yystack
]b4_user_args
[);
1126 # define YY_REDUCE_PRINT(K, Rule)
1128 # define YY_REDUCE_PRINT(K, Rule) \
1131 yy_reduce_print (K, Rule); \
1134 /*----------------------------------------------------------.
1135 | Report that the RULE is going to be reduced on stack #K. |
1136 `----------------------------------------------------------*/
1139 yy_reduce_print (size_t yyk
, yyRuleNum yyrule
)
1142 unsigned int yylno
= yyrline
[yyrule
];
1143 YYFPRINTF (stderr
, "Reducing stack %d by rule %d (line %u), ",
1144 yyk
, yyrule
- 1, yylno
);
1145 /* Print the symbols being reduced, and their result. */
1146 for (yyi
= yyprhs
[yyrule
]; 0 <= yyrhs
[yyi
]; yyi
++)
1147 YYFPRINTF (stderr
, "%s ", yytokenName (yyrhs
[yyi
]));
1148 YYFPRINTF (stderr
, "-> %s\n", yytokenName (yyr1
[yyrule
]));
1152 /** Pop items off stack #K of STACK according to grammar rule RULE,
1153 * and push back on the resulting nonterminal symbol. Perform the
1154 * semantic action associated with RULE and store its value with the
1155 * newly pushed state, if FORCEEVAL or if STACK is currently
1156 * unambiguous. Otherwise, store the deferred semantic action with
1157 * the new state. If the new state would have an identical input
1158 * position, LR state, and predecessor to an existing state on the stack,
1159 * it is identified with that existing state, eliminating stack #K from
1160 * the STACK. In this case, the (necessarily deferred) semantic value is
1161 * added to the options for the existing state's semantic value.
1163 static inline YYRESULTTAG
1164 yyglrReduce (yyGLRStack
* yystack
, size_t yyk
, yyRuleNum yyrule
,
1165 yybool yyforceEval
]b4_pure_formals
[)
1167 size_t yyposn
= yystack
->yytops
.yystates
[yyk
]->yyposn
;
1169 if (yyforceEval
|| yystack
->yysplitPoint
== NULL
)
1174 YY_REDUCE_PRINT (yyk
, yyrule
);
1175 YYCHK (yydoAction (yystack
, yyk
, yyrule
, &yysval
, &yyloc
]b4_user_args
[));
1176 yyglrShift (yystack
, yyk
,
1177 yyLRgotoState (yystack
->yytops
.yystates
[yyk
]->yylrState
,
1178 yylhsNonterm (yyrule
)),
1179 yyposn
, yysval
, &yyloc
]b4_user_args
[);
1185 yyGLRState
* yys
, *yys0
= yystack
->yytops
.yystates
[yyk
];
1186 yyStateNum yynewLRState
;
1188 for (yys
= yystack
->yytops
.yystates
[yyk
], yyn
= yyrhsLength (yyrule
);
1195 yyupdateSplit (yystack
, yys
);
1196 yynewLRState
= yyLRgotoState (yys
->yylrState
, yylhsNonterm (yyrule
));
1198 "Reduced stack %d by rule #%d; action deferred. "
1199 "Now in state %d.\n",
1200 yyk
, yyrule
-1, yynewLRState
));
1201 for (yyi
= 0; yyi
< yystack
->yytops
.yysize
; yyi
+= 1)
1202 if (yyi
!= yyk
&& yystack
->yytops
.yystates
[yyi
] != NULL
)
1204 yyGLRState
* yyp
, *yysplit
= yystack
->yysplitPoint
;
1205 yyp
= yystack
->yytops
.yystates
[yyi
];
1206 while (yyp
!= yys
&& yyp
!= yysplit
&& yyp
->yyposn
>= yyposn
)
1208 if (yyp
->yylrState
== yynewLRState
&& yyp
->yypred
== yys
)
1210 yyaddDeferredAction (yystack
, yyp
, yys0
, yyrule
]b4_pure_args
[);
1211 yymarkStackDeleted (yystack
, yyk
);
1212 YYDPRINTF ((stderr
, "Merging stack %d into stack %d.\n",
1219 yystack
->yytops
.yystates
[yyk
] = yys
;
1220 yyglrShiftDefer (yystack
, yyk
, yynewLRState
, yyposn
, yys0
, yyrule
]b4_pure_args
[);
1226 yysplitStack (yyGLRStack
* yystack
, int yyk
)
1228 if (yystack
->yysplitPoint
== NULL
)
1232 yystack
->yysplitPoint
= yystack
->yytops
.yystates
[yyk
];
1234 if (yystack
->yytops
.yysize
>= yystack
->yytops
.yycapacity
)
1236 yystack
->yytops
.yycapacity
*= 2;
1237 yystack
->yytops
.yystates
=
1238 (yyGLRState
**) realloc (yystack
->yytops
.yystates
,
1239 yystack
->yytops
.yycapacity
1240 * sizeof (yyGLRState
*));
1242 yystack
->yytops
.yystates
[yystack
->yytops
.yysize
]
1243 = yystack
->yytops
.yystates
[yyk
];
1244 yystack
->yytops
.yysize
+= 1;
1245 return yystack
->yytops
.yysize
-1;
1248 /** True iff Y0 and Y1 represent identical options at the top level.
1249 * That is, they represent the same rule applied to RHS symbols
1250 * that produce the same terminal symbols. */
1252 yyidenticalOptions (yySemanticOption
* yyy0
, yySemanticOption
* yyy1
)
1254 if (yyy0
->yyrule
== yyy1
->yyrule
)
1256 yyGLRState
*yys0
, *yys1
;
1258 for (yys0
= yyy0
->yystate
, yys1
= yyy1
->yystate
,
1259 yyn
= yyrhsLength (yyy0
->yyrule
);
1261 yys0
= yys0
->yypred
, yys1
= yys1
->yypred
, yyn
-= 1)
1262 if (yys0
->yyposn
!= yys1
->yyposn
)
1270 /** Assuming identicalOptions (Y0,Y1), (destructively) merge the
1271 * alternative semantic values for the RHS-symbols of Y1 into the
1272 * corresponding semantic value sets of the symbols of Y0. */
1274 yymergeOptionSets (yySemanticOption
* yyy0
, yySemanticOption
* yyy1
)
1276 yyGLRState
*yys0
, *yys1
;
1278 for (yys0
= yyy0
->yystate
, yys1
= yyy1
->yystate
,
1279 yyn
= yyrhsLength (yyy0
->yyrule
);
1281 yys0
= yys0
->yypred
, yys1
= yys1
->yypred
, yyn
-= 1)
1284 else if (! yys0
->yyresolved
&& ! yys1
->yyresolved
)
1286 yySemanticOption
* yyz
;
1287 for (yyz
= yys0
->yysemantics
.yyfirstVal
; yyz
->yynext
!= NULL
;
1290 yyz
->yynext
= yys1
->yysemantics
.yyfirstVal
;
1294 /** Y0 and Y1 represent two possible actions to take in a given
1295 * parsing state; return 0 if no combination is possible,
1296 * 1 if user-mergeable, 2 if Y0 is preferred, 3 if Y1 is preferred. */
1298 yypreference (yySemanticOption
* y0
, yySemanticOption
* y1
)
1300 yyRuleNum r0
= y0
->yyrule
, r1
= y1
->yyrule
;
1301 int p0
= yydprec
[r0
], p1
= yydprec
[r1
];
1305 if (yymerger
[r0
] == 0 || yymerger
[r0
] != yymerger
[r1
])
1310 if (p0
== 0 || p1
== 0)
1319 static YYRESULTTAG
yyresolveValue (yySemanticOption
* yyoptionList
,
1320 yyGLRStack
* yystack
, YYSTYPE
* yyvalp
,
1321 YYLTYPE
* yylocp
]b4_user_formals
[);
1324 yyresolveStates (yyGLRState
* yys
, int yyn
, yyGLRStack
* yystack
]b4_user_formals
[)
1329 if (yys
->yypred
== NULL
)
1331 yyflag
= yyresolveStates (yys
->yypred
, yyn
-1, yystack
]b4_user_args
[);
1334 if (! yys
->yyresolved
)
1336 yyflag
= yyresolveValue (yys
->yysemantics
.yyfirstVal
, yystack
,
1337 &yys
->yysemantics
.yysval
, &yys
->yyloc
1341 yys
->yyresolved
= yytrue
;
1348 yyresolveAction (yySemanticOption
* yyopt
, yyGLRStack
* yystack
,
1349 YYSTYPE
* yyvalp
, YYLTYPE
* yylocp
]b4_user_formals
[)
1351 yyGLRStackItem yyrhsVals
[YYMAXRHS
+1];
1354 yynrhs
= yyrhsLength (yyopt
->yyrule
);
1355 YYCHK (yyresolveStates (yyopt
->yystate
, yynrhs
, yystack
]b4_user_args
[));
1356 yyrhsVals
[YYMAXRHS
].yystate
.yypred
= yyopt
->yystate
;
1357 return yyuserAction (yyopt
->yyrule
, yynrhs
, yyrhsVals
+ YYMAXRHS
- 1,
1358 yyvalp
, yylocp
, yystack
]b4_user_args
[);
1363 yyreportTree (yySemanticOption
* yyx
, int yyindent
)
1365 int yynrhs
= yyrhsLength (yyx
->yyrule
);
1368 yyGLRState
* yystates
[YYMAXRHS
];
1369 yyGLRState yyleftmost_state
;
1371 for (yyi
= yynrhs
, yys
= yyx
->yystate
; 0 < yyi
; yyi
-= 1, yys
= yys
->yypred
)
1372 yystates
[yyi
] = yys
;
1375 yyleftmost_state
.yyposn
= 0;
1376 yystates
[0] = &yyleftmost_state
;
1381 if (yyx
->yystate
->yyposn
< yys
->yyposn
+ 1)
1382 YYFPRINTF (stderr
, "%*s%s -> <Rule %d, empty>\n",
1383 yyindent
, "", yytokenName (yylhsNonterm (yyx
->yyrule
)),
1386 YYFPRINTF (stderr
, "%*s%s -> <Rule %d, tokens %d .. %d>\n",
1387 yyindent
, "", yytokenName (yylhsNonterm (yyx
->yyrule
)),
1388 yyx
->yyrule
, yys
->yyposn
+1, yyx
->yystate
->yyposn
);
1389 for (yyi
= 1; yyi
<= yynrhs
; yyi
+= 1)
1391 if (yystates
[yyi
]->yyresolved
)
1393 if (yystates
[yyi
-1]->yyposn
+1 > yystates
[yyi
]->yyposn
)
1394 YYFPRINTF (stderr
, "%*s%s <empty>\n", yyindent
+2, "",
1395 yytokenName (yyrhs
[yyprhs
[yyx
->yyrule
]+yyi
-1]));
1397 YYFPRINTF (stderr
, "%*s%s <tokens %d .. %d>\n", yyindent
+2, "",
1398 yytokenName (yyrhs
[yyprhs
[yyx
->yyrule
]+yyi
-1]),
1399 yystates
[yyi
-1]->yyposn
+1, yystates
[yyi
]->yyposn
);
1402 yyreportTree (yystates
[yyi
]->yysemantics
.yyfirstVal
, yyindent
+2);
1408 yyreportAmbiguity (yySemanticOption
* yyx0
, yySemanticOption
* yyx1
,
1409 yyGLRStack
* yystack
]b4_pure_formals
[)
1411 /* `Unused' warnings. */
1416 YYFPRINTF (stderr
, "Ambiguity detected.\n");
1417 YYFPRINTF (stderr
, "Option 1,\n");
1418 yyreportTree (yyx0
, 2);
1419 YYFPRINTF (stderr
, "\nOption 2,\n");
1420 yyreportTree (yyx1
, 2);
1421 YYFPRINTF (stderr
, "\n");
1423 yyFail (yystack
][]b4_pure_args
[, "ambiguity detected");
1427 /** Resolve the ambiguity represented by OPTIONLIST, perform the indicated
1428 * actions, and return the result. */
1430 yyresolveValue (yySemanticOption
* yyoptionList
, yyGLRStack
* yystack
,
1431 YYSTYPE
* yyvalp
, YYLTYPE
* yylocp
]b4_user_formals
[)
1433 yySemanticOption
* yybest
;
1434 yySemanticOption
* yyp
;
1437 yybest
= yyoptionList
;
1439 for (yyp
= yyoptionList
->yynext
; yyp
!= NULL
; yyp
= yyp
->yynext
)
1441 if (yyidenticalOptions (yybest
, yyp
))
1442 yymergeOptionSets (yybest
, yyp
);
1444 switch (yypreference (yybest
, yyp
))
1447 yyreportAmbiguity (yybest
, yyp
, yystack
]b4_pure_args
[);
1463 int yyprec
= yydprec
[yybest
->yyrule
];
1464 YYCHK (yyresolveAction (yybest
, yystack
, yyvalp
, yylocp
]b4_user_args
[));
1465 for (yyp
= yybest
->yynext
; yyp
!= NULL
; yyp
= yyp
->yynext
)
1467 if (yyprec
== yydprec
[yyp
->yyrule
])
1471 YYCHK (yyresolveAction (yyp
, yystack
, &yyval1
, &yydummy
]b4_user_args
[));
1472 *yyvalp
= yyuserMerge (yymerger
[yyp
->yyrule
], yyvalp
, &yyval1
);
1478 return yyresolveAction (yybest
, yystack
, yyvalp
, yylocp
]b4_user_args
[);
1482 yyresolveStack (yyGLRStack
* yystack
]b4_user_formals
[)
1484 if (yystack
->yysplitPoint
!= NULL
)
1489 for (yyn
= 0, yys
= yystack
->yytops
.yystates
[0];
1490 yys
!= yystack
->yysplitPoint
;
1491 yys
= yys
->yypred
, yyn
+= 1)
1493 YYCHK (yyresolveStates (yystack
->yytops
.yystates
[0], yyn
, yystack
1500 yycompressStack (yyGLRStack
* yystack
)
1502 yyGLRState
* yyp
, *yyq
, *yyr
;
1504 if (yystack
->yytops
.yysize
!= 1 || yystack
->yysplitPoint
== NULL
)
1507 for (yyp
= yystack
->yytops
.yystates
[0], yyq
= yyp
->yypred
, yyr
= NULL
;
1508 yyp
!= yystack
->yysplitPoint
;
1509 yyr
= yyp
, yyp
= yyq
, yyq
= yyp
->yypred
)
1512 yystack
->yyspaceLeft
+= yystack
->yynextFree
- yystack
->yyitems
;
1513 yystack
->yynextFree
= ((yyGLRStackItem
*) yystack
->yysplitPoint
) + 1;
1514 yystack
->yyspaceLeft
-= yystack
->yynextFree
- yystack
->yyitems
;
1515 yystack
->yysplitPoint
= NULL
;
1516 yystack
->yylastDeleted
= NULL
;
1520 yystack
->yynextFree
->yystate
= *yyr
;
1522 yystack
->yynextFree
->yystate
.yypred
= & yystack
->yynextFree
[-1].yystate
;
1523 yystack
->yytops
.yystates
[0] = &yystack
->yynextFree
->yystate
;
1524 yystack
->yynextFree
+= 1;
1525 yystack
->yyspaceLeft
-= 1;
1530 yyprocessOneStack (yyGLRStack
* yystack
, int yyk
,
1531 size_t yyposn
, YYSTYPE
* yylvalp
, YYLTYPE
* yyllocp
1535 const short* yyconflicts
;
1537 yySymbol
* const yytokenp
= yystack
->yytokenp
;
1539 while (yystack
->yytops
.yystates
[yyk
] != NULL
)
1541 yyStateNum yystate
= yystack
->yytops
.yystates
[yyk
]->yylrState
;
1542 YYDPRINTF ((stderr
, "Stack %d Entering state %d\n", yyk
, yystate
));
1544 if (yystate
== YYFINAL
)
1546 if (yyisDefaultedState (yystate
))
1548 yyrule
= yydefaultAction (yystate
);
1551 YYDPRINTF ((stderr
, "Stack %d dies.\n", yyk
));
1552 yymarkStackDeleted (yystack
, yyk
);
1555 YYCHK (yyglrReduce (yystack
, yyk
, yyrule
, yyfalse
]b4_lpure_args
[));
1559 if (*yytokenp
== YYEMPTY
)
1561 YYDPRINTF ((stderr
, "Reading a token: "));
1563 *yytokenp
= YYTRANSLATE (yychar
);
1564 YYDSYMPRINTF ("Next token is", *yytokenp
, yylvalp
, yyllocp
);
1566 yygetLRActions (yystate
, *yytokenp
, &yyaction
, &yyconflicts
);
1568 while (*yyconflicts
!= 0)
1570 int yynewStack
= yysplitStack (yystack
, yyk
);
1571 YYDPRINTF ((stderr
, "Splitting off stack %d from %d.\n",
1573 YYCHK (yyglrReduce (yystack
, yynewStack
,
1574 *yyconflicts
, yyfalse
]b4_lpure_args
[));
1575 YYCHK (yyprocessOneStack (yystack
, yynewStack
, yyposn
,
1576 yylvalp
, yyllocp
]b4_user_args
[));
1580 if (yyisShiftAction (yyaction
))
1582 YYDPRINTF ((stderr
, "Shifting token %s on stack %d, ",
1583 yytokenName (*yytokenp
), yyk
));
1584 yyglrShift (yystack
, yyk
, yyaction
, yyposn
+1,
1585 *yylvalp
, yyllocp
]b4_user_args
[);
1586 YYDPRINTF ((stderr
, "which is now in state #%d\n",
1587 yystack
->yytops
.yystates
[yyk
]->yylrState
));
1590 else if (yyisErrorAction (yyaction
))
1592 YYDPRINTF ((stderr
, "Stack %d dies.\n", yyk
));
1593 yymarkStackDeleted (yystack
, yyk
);
1597 YYCHK (yyglrReduce (yystack
, yyk
, -yyaction
, yyfalse
]b4_lpure_args
[));
1604 yyreportSyntaxError (yyGLRStack
* yystack
,
1605 YYSTYPE
* yylvalp
, YYLTYPE
* yyllocp
]b4_user_formals
[)
1607 /* `Unused' warnings. */
1611 if (yystack
->yyerrState
== 0)
1614 yySymbol
* const yytokenp
= yystack
->yytokenp
;
1616 yyn
= yypact
[yystack
->yytops
.yystates
[0]->yylrState
];
1617 if (YYPACT_NINF
< yyn
&& yyn
< YYLAST
)
1620 const char* yyprefix
;
1624 /* Start YYX at -YYN if negative to avoid negative indexes in
1626 int yyxbegin
= yyn
< 0 ? -yyn
: 0;
1628 /* Stay within bounds of both yycheck and yytname. */
1629 int yychecklim
= YYLAST
- yyn
;
1630 int yyxend
= yychecklim
< YYNTOKENS
? yychecklim
: YYNTOKENS
;
1633 yyprefix
= ", expecting ";
1634 for (yyx
= yyxbegin
; yyx
< yyxend
; ++yyx
)
1635 if (yycheck
[yyx
+ yyn
] == yyx
&& yyx
!= YYTERROR
)
1637 yysize
+= strlen (yyprefix
) + strlen (yytokenName (yyx
));
1646 yysize
+= (sizeof ("syntax error, unexpected ")
1647 + strlen (yytokenName (*yytokenp
)));
1648 yymsg
= (char*) malloc (yysize
);
1652 sprintf (yyp
, "syntax error, unexpected %s",
1653 yytokenName (*yytokenp
));
1654 yyp
+= strlen (yyp
);
1657 yyprefix
= ", expecting ";
1658 for (yyx
= yyxbegin
; yyx
< yyxend
; ++yyx
)
1659 if (yycheck
[yyx
+ yyn
] == yyx
&& yyx
!= YYTERROR
)
1661 sprintf (yyp
, "%s%s", yyprefix
, yytokenName (yyx
));
1662 yyp
+= strlen (yyp
);
1666 yyerror (]b4_lyyerror_args
[yymsg
);
1670 yyerror (]b4_lyyerror_args
["syntax error; also virtual memory exhausted");
1673 #endif /* YYERROR_VERBOSE */
1674 yyerror (]b4_lyyerror_args
["syntax error");
1679 /* Recover from a syntax error on YYSTACK, assuming that YYTOKENP,
1680 YYLVALP, and YYLLOCP point to the syntactic category, semantic
1681 value, and location of the lookahead. */
1683 yyrecoverSyntaxError (yyGLRStack
* yystack
,
1684 YYSTYPE
* yylvalp
, YYLTYPE
* yyllocp
]b4_user_formals
[)
1686 yySymbol
* const yytokenp
= yystack
->yytokenp
;
1690 if (yystack
->yyerrState
== 0)
1691 yystack
->yyerrState
= 3;
1692 else if (yystack
->yyerrState
== 3)
1693 /* We just shifted the error token and (perhaps) took some
1694 reductions. Skip tokens until we can proceed. */
1697 if (*yytokenp
== YYEOF
)
1699 /* Now pop stack until we find a state that shifts the
1701 while (yystack
->yytops
.yystates
[0] != NULL
)
1703 yyGLRState
*yys
= yystack
->yytops
.yystates
[0];
1704 YYDSYMPRINTF ("Error: popping",
1705 yystos
[yys
->yylrState
],
1706 &yys
->yysemantics
.yysval
, &yys
->yyloc
);
1707 yydestruct (yystos
[yys
->yylrState
],
1708 &yys
->yysemantics
.yysval
]b4_location_if([, &yys
->yyloc
])[);
1709 yystack
->yytops
.yystates
[0] = yys
->yypred
;
1710 yystack
->yynextFree
-= 1;
1711 yystack
->yyspaceLeft
+= 1;
1713 yyFail (yystack
][]b4_lpure_args
[, NULL
);
1715 if (*yytokenp
!= YYEMPTY
)
1717 YYDSYMPRINTF ("Error: discarding", *yytokenp
, yylvalp
, yyllocp
);
1718 yydestruct (*yytokenp
, yylvalp
]b4_location_if([, yyllocp
])[);
1720 YYDPRINTF ((stderr
, "Reading a token: "));
1722 *yytokenp
= YYTRANSLATE (yychar
);
1723 YYDSYMPRINTF ("Next token is", *yytokenp
, yylvalp
, yyllocp
);
1724 yyj
= yypact
[yystack
->yytops
.yystates
[0]->yylrState
];
1725 if (yyis_pact_ninf (yyj
))
1726 /* Something's not right; we shouldn't be here. */
1727 yyFail (yystack
][]b4_lpure_args
[, NULL
);
1729 if (yyj
< 0 || YYLAST
< yyj
|| yycheck
[yyj
] != *yytokenp
)
1731 if (yydefact
[yystack
->yytops
.yystates
[0]->yylrState
] != 0)
1734 else if (yytable
[yyj
] != 0 && ! yyis_table_ninf (yytable
[yyj
]))
1738 /* Reduce to one stack. */
1739 for (yyk
= 0; yyk
< yystack
->yytops
.yysize
; yyk
+= 1)
1740 if (yystack
->yytops
.yystates
[yyk
] != NULL
)
1742 if (yyk
>= yystack
->yytops
.yysize
)
1743 yyFail (yystack
][]b4_lpure_args
[, NULL
);
1744 for (yyk
+= 1; yyk
< yystack
->yytops
.yysize
; yyk
+= 1)
1745 yymarkStackDeleted (yystack
, yyk
);
1746 yyremoveDeletes (yystack
);
1747 yycompressStack (yystack
);
1749 /* Now pop stack until we find a state that shifts the error token. */
1750 while (yystack
->yytops
.yystates
[0] != NULL
)
1752 yyGLRState
*yys
= yystack
->yytops
.yystates
[0];
1753 yyj
= yypact
[yys
->yylrState
];
1754 if (! yyis_pact_ninf (yyj
))
1757 if (0 <= yyj
&& yyj
<= YYLAST
&& yycheck
[yyj
] == YYTERROR
1758 && yyisShiftAction (yytable
[yyj
]))
1760 YYDPRINTF ((stderr
, "Shifting error token, "));
1761 yyglrShift (yystack
, 0, yytable
[yyj
],
1762 yys
->yyposn
, *yylvalp
, yyllocp
]b4_user_args
[);
1766 YYDSYMPRINTF ("Error: popping",
1767 yystos
[yys
->yylrState
],
1768 &yys
->yysemantics
.yysval
, &yys
->yyloc
);
1769 yydestruct (yystos
[yys
->yylrState
],
1770 &yys
->yysemantics
.yysval
]b4_location_if([, &yys
->yyloc
])[);
1771 yystack
->yytops
.yystates
[0] = yys
->yypred
;
1772 yystack
->yynextFree
-= 1;
1773 yystack
->yyspaceLeft
+= 1;
1775 if (yystack
->yytops
.yystates
[0] == NULL
)
1776 yyFail (yystack
][]b4_lpure_args
[, NULL
);
1779 #define YYCHK1(YYE) \
1785 yystack.yyerrflag = 1; \
1788 yystack.yyerrflag = 0; \
1791 goto yyuser_error; \
1800 ]b4_c_ansi_function_def([yyparse
], [int], b4_parse_param
)[
1810 #define yychar (yystack.yyrawchar)
1813 YYSTYPE
* const yylvalp
= &yylval
;
1814 YYLTYPE
* const yyllocp
= &yylloc
;
1816 yyinitGLRStack (&yystack
, YYINITDEPTH
);
1817 yystack
.yytokenp
= &yytoken
;
1819 YYDPRINTF ((stderr
, "Starting parse\n"));
1821 if (setjmp (yystack
.yyexception_buffer
) != 0)
1824 yyglrShift (&yystack
, 0, 0, 0, yyval_default
, &yyloc_default
]b4_user_args
[);
1830 /* For efficiency, we have two loops, the first of which is
1831 specialized to deterministic operation (single stack, no
1832 potential ambiguity). */
1838 const short* yyconflicts
;
1840 yyStateNum yystate
= yystack
.yytops
.yystates
[0]->yylrState
;
1841 YYDPRINTF ((stderr
, "Entering state %d\n", yystate
));
1842 if (yystate
== YYFINAL
)
1844 if (yyisDefaultedState (yystate
))
1846 yyrule
= yydefaultAction (yystate
);
1849 yyreportSyntaxError (&yystack
, yylvalp
, yyllocp
]b4_user_args
[);
1852 YYCHK1 (yyglrReduce (&yystack
, 0, yyrule
, yytrue
]b4_lpure_args
[));
1856 if (yytoken
== YYEMPTY
)
1858 YYDPRINTF ((stderr
, "Reading a token: "));
1860 yytoken
= YYTRANSLATE (yychar
);
1861 YYDSYMPRINTF ("Next token is", yytoken
, yylvalp
, yyllocp
);
1863 yygetLRActions (yystate
, yytoken
, &yyaction
, &yyconflicts
);
1864 if (*yyconflicts
!= 0)
1866 if (yyisShiftAction (yyaction
))
1868 YYDPRINTF ((stderr
, "Shifting token %s, ",
1869 yytokenName (yytoken
)));
1870 if (yytoken
!= YYEOF
)
1873 yyglrShift (&yystack
, 0, yyaction
, yyposn
,
1874 yylval
, yyllocp
]b4_user_args
[);
1875 if (0 < yystack
.yyerrState
)
1876 yystack
.yyerrState
-= 1;
1878 else if (yyisErrorAction (yyaction
))
1880 yyreportSyntaxError (&yystack
, yylvalp
, yyllocp
]b4_user_args
[);
1884 YYCHK1 (yyglrReduce (&yystack
, 0, -yyaction
, yytrue
]b4_lpure_args
[));
1891 int yyn
= yystack
.yytops
.yysize
;
1892 for (yys
= 0; yys
< yyn
; yys
+= 1)
1893 YYCHK1 (yyprocessOneStack (&yystack
, yys
, yyposn
,
1894 yylvalp
, yyllocp
]b4_user_args
[));
1897 yyremoveDeletes (&yystack
);
1898 if (yystack
.yytops
.yysize
== 0)
1900 yyundeleteLastStack (&yystack
);
1901 if (yystack
.yytops
.yysize
== 0)
1902 yyFail (&yystack
][]b4_lpure_args
[, "syntax error");
1903 YYCHK1 (yyresolveStack (&yystack
]b4_user_args
[));
1904 YYDPRINTF ((stderr
, "Returning to deterministic operation.\n"));
1905 yyreportSyntaxError (&yystack
, yylvalp
, yyllocp
]b4_user_args
[);
1908 else if (yystack
.yytops
.yysize
== 1)
1910 YYCHK1 (yyresolveStack (&yystack
]b4_user_args
[));
1911 YYDPRINTF ((stderr
, "Returning to deterministic operation.\n"));
1912 yycompressStack (&yystack
);
1918 yyrecoverSyntaxError (&yystack
, yylvalp
, yyllocp
]b4_user_args
[);
1919 yyposn
= yystack
.yytops
.yystates
[0]->yyposn
;
1924 yyfreeGLRStack (&yystack
);
1925 return yystack
.yyerrflag
;
1928 /* DEBUGGING ONLY */
1929 static void yypstack (yyGLRStack
* yystack
, int yyk
) ATTRIBUTE_UNUSED
;
1930 static void yypdumpstack (yyGLRStack
* yystack
) ATTRIBUTE_UNUSED
;
1933 yy_yypstack (yyGLRState
* yys
)
1937 yy_yypstack (yys
->yypred
);
1938 fprintf (stderr
, " -> ");
1940 fprintf (stderr
, "%d@@%lu", yys
->yylrState
, (unsigned long) yys
->yyposn
);
1944 yypstates (yyGLRState
* yyst
)
1947 fprintf (stderr
, "<null>");
1950 fprintf (stderr
, "\n");
1954 yypstack (yyGLRStack
* yystack
, int yyk
)
1956 yypstates (yystack
->yytops
.yystates
[yyk
]);
1959 #define YYINDEX(YYX) \
1960 ((YYX) == NULL ? -1 : (yyGLRStackItem*) (YYX) - yystack->yyitems)
1964 yypdumpstack (yyGLRStack
* yystack
)
1966 yyGLRStackItem
* yyp
;
1968 for (yyp
= yystack
->yyitems
; yyp
< yystack
->yynextFree
; yyp
+= 1)
1970 fprintf (stderr
, "%3lu. ", (unsigned long) (yyp
- yystack
->yyitems
));
1971 if (*(yybool
*) yyp
)
1973 fprintf (stderr
, "Res: %d, LR State: %d, posn: %lu, pred: %ld",
1974 yyp
->yystate
.yyresolved
, yyp
->yystate
.yylrState
,
1975 (unsigned long) yyp
->yystate
.yyposn
,
1976 (long) YYINDEX (yyp
->yystate
.yypred
));
1977 if (! yyp
->yystate
.yyresolved
)
1978 fprintf (stderr
, ", firstVal: %ld",
1979 (long) YYINDEX (yyp
->yystate
.yysemantics
.yyfirstVal
));
1983 fprintf (stderr
, "Option. rule: %d, state: %ld, next: %ld",
1984 yyp
->yyoption
.yyrule
,
1985 (long) YYINDEX (yyp
->yyoption
.yystate
),
1986 (long) YYINDEX (yyp
->yyoption
.yynext
));
1988 fprintf (stderr
, "\n");
1990 fprintf (stderr
, "Tops:");
1991 for (yyi
= 0; yyi
< yystack
->yytops
.yysize
; yyi
+= 1)
1992 fprintf (stderr
, "%lu: %ld; ", (unsigned long) yyi
,
1993 (long) YYINDEX (yystack
->yytops
.yystates
[yyi
]));
1994 fprintf (stderr
, "\n");
1999 m4_if(b4_defines_flag
, 0, [],
2000 [@output @output_header_name@
2001 b4_copyright([Skeleton parser
for GLR parsing with Bison
], [2002, 2003])
2003 b4_token_defines(b4_tokens
)
2005 #if ! defined (YYSTYPE) && ! defined (YYSTYPE_IS_DECLARED)
2006 m4_ifdef([b4_stype
],
2007 [b4_syncline([b4_stype_line
], [b4_filename
])
2008 typedef union m4_bregexp(b4_stype
, [^{], [YYSTYPE
])b4_stype YYSTYPE
;
2009 /* Line __line__ of glr.c. */
2010 b4_syncline([@oline@
], [@ofile@
])],
2011 [typedef int YYSTYPE
;])
2012 # define YYSTYPE_IS_DECLARED 1
2013 # define YYSTYPE_IS_TRIVIAL 1
2017 [extern YYSTYPE b4_prefix
[]lval
;])
2020 [#if ! defined (YYLTYPE) && ! defined (YYLTYPE_IS_DECLARED)
2021 typedef struct YYLTYPE
2028 # define YYLTYPE_IS_DECLARED 1
2029 # define YYLTYPE_IS_TRIVIAL 1
2033 [extern YYLTYPE b4_prefix
[]lloc
;])