mirror of
https://git.savannah.gnu.org/git/bison.git
synced 2026-03-09 12:23:04 +00:00
524 lines
10 KiB
C++
524 lines
10 KiB
C++
%%{section} %%{output-prefix} %%{output-infix} %%".hh"
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/* -*- C++ -*- */
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/* A Bison parser, made from %%filename,
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by GNU bison %%version. */
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/* Skeleton output parser for bison,
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Copyright 1984, 1989, 1990, 2000, 2001 Free Software Foundation, Inc.
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2, or (at your option)
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any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 59 Temple Place - Suite 330,
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Boston, MA 02111-1307, USA. */
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/* As a special exception, when this file is copied by Bison into a
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Bison output file, you may use that output file without restriction.
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This special exception was added by the Free Software Foundation
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in version 1.24 of Bison. */
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#include "stack.hh"
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/* #include "parser.hh" */
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#include "location.hh"
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namespace yy
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{
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class %%{name};
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template < typename P >
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struct Traits
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{
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};
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template < >
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struct Traits< %%{name} >
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{
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typedef int StateType;
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typedef %%{stype} SemanticType;
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typedef Location LocationType;
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};
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}
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%%{prologue}
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namespace yy
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{
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class %%{name}
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{
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public:
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typedef Traits< %%{name} >::StateType StateType;
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typedef Traits< %%{name} >::SemanticType SemanticType;
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typedef Traits< %%{name} >::LocationType LocationType;
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typedef Stack< StateType > StateStack;
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typedef Stack< SemanticType > SemanticStack;
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typedef Stack< LocationType > LocationStack;
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%%{name} () : debug (1)
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{
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looka = empty;
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}
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virtual int parse ();
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private:
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/* Call to lexical analyser. */
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virtual
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void
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lex ()
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{
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looka = yylex (&value);
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}
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/* Stacks. */
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StateStack state_stack;
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SemanticStack semantic_stack;
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LocationStack location_stack;
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/* Tables. */
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static const short pact_[];
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static const short defact_[];
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static const short pgoto_[];
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static const short defgoto_[];
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static const short table_[];
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static const short check_[];
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static const short line_[];
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static const short r1_[];
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static const short r2_[];
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static const char* const name_[];
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/* More tables, for debugging. */
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/* FIXME: These tables should not be printed when not in debug
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mode. %%ifdef? */
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static const short rhs_[];
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static const short prhs_[];
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static const short rline_[];
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/* Even more tables. */
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static inline char translate (int token);
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/* Eof and empty. */
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static const int eof;
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static const int empty;
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/* State. */
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int n;
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int len;
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int debug;
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int state;
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/* Lookahead. */
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int looka;
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int ilooka;
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/* @$ and $$. */
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SemanticType value;
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LocationType location;
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};
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}
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%%{section} %%{output-prefix} %%{output-infix} %%".cc"
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#include "%%{output-prefix}%%{output-infix}.hh"
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/* Enable debugging if requested. */
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#if %%{debug}
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# include <cstdio>
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# define YYFPRINTF std::fprintf
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# define YYDPRINTF(Args) \
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do { \
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if (debug) \
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YYFPRINTF Args; \
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} while (0)
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/* Nonzero means print parse trace. [The following comment makes no
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sense to me. Could someone clarify it? --akim] Since this is
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uninitialized, it does not stop multiple parsers from coexisting.
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*/
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int yydebug;
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#else /* !YYDEBUG */
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# define YYDPRINTF(Args)
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#endif /* !YYDEBUG */
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/* Tokens. */
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%%{tokendef}
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int
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yy::%%{name}::parse ()
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{
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/* Initialize stack. */
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state_stack = StateStack (0);
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semantic_stack = SemanticStack (1);
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location_stack = LocationStack (1);
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/* Reserve initial space. The C parser needed that, but is it really
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useful here? */
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state_stack.reserve (%%{initdepth});
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semantic_stack.reserve (%%{initdepth});
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location_stack.reserve (%%{initdepth});
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/* Start. */
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state = 0;
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YYDPRINTF ((stderr, "Starting parse\n"));
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/* New state. */
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yynewstate:
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state_stack.push (state);
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YYDPRINTF ((stderr, "Entering state %d\n", state));
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/* Backup. */
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yybackup:
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/* Try to take a decision without lookahead. */
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n = pact_[state];
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if (n == %%{flag})
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goto yydefault;
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/* Read a lookahead token. */
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if (looka == empty)
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{
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YYDPRINTF ((stderr, "Reading a token: "));
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lex ();
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}
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/* Convert token to internal form. */
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if (looka <= 0)
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{
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looka = eof;
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ilooka = 0;
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YYDPRINTF ((stderr, "Now at end of input.\n"));
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}
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else
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{
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ilooka = translate (looka);
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#if %%{debug}
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YYFPRINTF (stderr, "Next token is %d (%s", looka, name_[ilooka]);
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YYFPRINTF (stderr, ")\n");
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#endif
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}
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n += ilooka;
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if (n < 0 || n > %%{last} || check_[n] != ilooka)
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goto yydefault;
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/* Reduce or error. */
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n = table_[n];
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if (n < 0)
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{
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if (n == %%{flag})
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goto yyerrlab;
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else
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{
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n = -n;
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goto yyreduce;
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}
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}
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else if (n == 0)
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goto yyerrlab;
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/* Accept? */
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if (n == %%{final})
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goto yyacceptlab;
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/* Shift the lookahead token. */
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YYDPRINTF ((stderr, "Shifting token %d (%s), ", looka, name_[ilooka]));
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/* Discard the token being shifted unless it is eof. */
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if (looka != eof)
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looka = empty;
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semantic_stack.push (value);
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location_stack.push (location);
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state = n;
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goto yynewstate;
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/* Default action. */
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yydefault:
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n = defact_[state];
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if (n == 0)
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goto yyerrlab;
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/* Reduce. */
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yyreduce:
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len = r2_[n];
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value = semantic_stack[1 - len];
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location = location_stack[1 - len];
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#if %%{debug}
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if (debug)
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{
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YYFPRINTF (stderr, "Reducing via rule %d (line %d), ", n - 1, rline_[n]);
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for (unsigned i = prhs_[n];
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rhs_[i] >= 0; ++i)
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YYFPRINTF (stderr, "%s ", name_[rhs_[i]]);
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YYFPRINTF (stderr, "-> %s\n", name_[r1_[n]]);
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}
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#endif
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{
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SemanticType& yyval (value);
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SemanticStack& yyvsp (semantic_stack);
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switch (n)
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{
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%%{actions}
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}
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}
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state_stack.pop (len);
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semantic_stack.pop (len);
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location_stack.pop (len);
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#if %%{debug}
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if (debug)
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{
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YYFPRINTF (stderr, "state stack now");
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for (StateStack::ConstIterator i = state_stack.begin ();
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i != state_stack.end (); ++i)
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YYFPRINTF (stderr, " %d", *i);
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YYFPRINTF (stderr, "\n");
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}
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#endif
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semantic_stack.push (value);
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location_stack.push (location);
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/* Shift the result of the reduction. */
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n = r1_[n];
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state = pgoto_[n - %%{ntokens}] + state_stack[0];
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if (state >= 0 && state <= %%{last} && check_[state] == state_stack[0])
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state = table_[state];
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else
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state = defgoto_[n - %%{ntokens}];
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goto yynewstate;
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/* Report and recover from errors. This is very incomplete. */
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yyerrlab:
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std::cerr << "Parse error." << std::endl; // FIXME: Need something like yyerror?
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return 1;
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/* Accept. */
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yyacceptlab:
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return 0;
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}
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/* YYPACT[STATE-NUM] -- Index in YYTABLE of the portion describing
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STATE-NUM. */
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const short
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yy::%%{name}::pact_[] =
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{
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%%{pact}
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};
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/* YYDEFACT[S] -- default rule to reduce with in state S when YYTABLE
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doesn't specify something else to do. Zero means the default is an
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error. */
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const short
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yy::%%{name}::defact_[] =
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{
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%%{defact}
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};
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/* YYPGOTO[NTERM-NUM]. */
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const short
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yy::%%{name}::pgoto_[] =
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{
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%%{pgoto}
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};
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/* YYDEFGOTO[NTERM-NUM]. */
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const short
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yy::%%{name}::defgoto_[] =
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{
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%%{defgoto}
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};
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/* YYTABLE[YYPACT[STATE-NUM]]. What to do in state STATE-NUM. If
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positive, shift that token. If negative, reduce the rule which
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number is the opposite. If zero, do what YYDEFACT says. */
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const short
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yy::%%{name}::table_[] =
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{
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%%{table}
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};
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/* YYCHECK. */
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const short
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yy::%%{name}::check_[] =
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{
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%%{check}
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};
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/* YYRLINE[YYN] -- source line where rule number YYN was defined. */
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const short
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yy::%%{name}::line_[] =
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{
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%%{line}
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};
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/*YYR1[YYN] -- Symbol number of symbol that rule YYN derives. */
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const short
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yy::%%{name}::r1_[] =
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{
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%%{r1}
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};
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/* YYR2[YYN] -- Number of symbols composing right hand side of rule YYN. */
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const short
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yy::%%{name}::r2_[] =
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{
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%%{r2}
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};
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/* YYTNAME[SYMBOL-NUM] -- String name of the symbol SYMBOL-NUM.
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First, the terminals, then, starting at YYNTOKENS, nonterminals. */
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const char*
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const yy::%%{name}::name_[] =
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{
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%%{tname}
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};
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/* YYRHS -- A `-1'-separated list of the rules' RHS. */
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const short
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yy::%%{name}::rhs_[] =
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{
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%%{rhs}
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};
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/* YYPRHS[YYN] -- Index of the first RHS symbol of rule number YYN in
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YYRHS. */
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const short
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yy::%%{name}::prhs_[] =
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{
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%%{prhs}
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};
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/* YYRLINE[YYN] -- Source line where rule number YYN was defined. */
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const short
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yy::%%{name}::rline_[] =
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{
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%%{rline}
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};
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/* YYTRANSLATE(YYLEX) -- Bison symbol number corresponding to YYLEX. */
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char
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yy::%%{name}::translate (int token)
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{
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static
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const char
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translate_[] =
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{
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%%{translate}
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};
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return ((unsigned)(token) <= %%{maxtok} ? translate_[token] : %%{nsym});
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}
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const int yy::%%{name}::eof = 0;
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const int yy::%%{name}::empty = -2;
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%%{epilogue}
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%%{section} %%"stack.hh"
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#ifndef BISON_STACK_HH
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# define BISON_STACK_HH
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#include <vector>
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namespace yy
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{
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template < class T, class S = std::vector< T > >
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class Stack
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{
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public:
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typedef typename S::iterator Iterator;
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typedef typename S::const_iterator ConstIterator;
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Stack () : seq_ ()
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{
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}
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Stack (unsigned n) : seq_ (n)
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{
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}
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inline
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T&
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operator [] (int index)
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{
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return seq_[seq_.size () - 1 + index];
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}
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inline
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const T&
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operator [] (int index) const
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{
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return seq_[seq_.size () - 1 + index];
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}
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inline
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void
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push (const T& t)
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{
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seq_.push_back (t);
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}
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inline
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void
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pop (unsigned n = 1)
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{
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for (; n; --n)
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seq_.pop_back ();
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}
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inline
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void
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reserve (unsigned n)
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{
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seq_.reserve (n);
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}
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inline ConstIterator begin () const { return seq_.begin (); }
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inline ConstIterator end () const { return seq_.end (); }
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private:
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S seq_;
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};
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}
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#endif // not BISON_STACK_HH
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%%{section} %%"location.hh"
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#ifndef BISON_LOCATION_HH
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# define BISON_LOCATION_HH
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namespace yy
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{
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struct Position
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{
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int line;
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int column;
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};
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struct Location
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{
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Position first;
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Position last;
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};
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}
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#endif // not BISON_LOCATION_HH
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