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unreliable -- especially when they're hidden inside another macro. * data/bison.m4, data/c++-skel.m4, data/c++.m4, data/c-skel.m4, data/c.m4: Remove m4_divert(-1). * data/glr.c, data/glr.cc, data/lalr1.cc, data/location.cc, data/push.c, data/yacc.c: Likewise, and replace m4_divert(0) with m4_divert_push(0) and m4_divert_pop(0). * data/output.c (output_skeleton): Don't add an m4_divert_push(0) and an m4_wrap([m4_divert_pop(0)]) to the M4. Diversion -1, which is pushed and popped by m4sugar, should be first on the stack. Provide warn, complain, and fatal function callbacks to the skeletons. This provides more flexibility than m4_fatal, improves the error message format, and captures messages for translation. Discussed starting at <http://lists.gnu.org/archive/html/bison-patches/2006-12/msg00063.html>. * data/bison.m4 (b4_error): New, invoked by... (b4_warn, b4_complain, b4_fatal): ... these new macros to wrap the skeleton scanner's new @warn(...@), @complain(...@), and @fatal(...@) directives. Because these M4 macros might be called when the current diversion is -1 or 0, m4_divert_push and m4_divert_pop is used; thus the previous removal of uses of m4_divert, which caused trouble. (b4_check_percent_code_qualifiers): Use b4_complain instead of m4_fatal to report unrecognized %code qualifiers. * data/c++-skel.m4: Use b4_complain instead of m4_fatal to report C++ push parser requests. * data/glr.c: Use b4_complain instead of m4_fatal to report non-deterministic push parser requests. Update @output usage to @output(...@) form. * data/glr.cc, data/lalr1.cc: Use b4_fatal instead of m4_fatal to report missing %defines. Update @output usage to @output(...@) form. * data/location.cc, data/push.c, data/yacc.c: Update @output usage to @output(...@) form. * src/main.c (main): Invoke skel_scanner_free. * src/scan-skel.h (skel_scanner_free): Prototype new function. * src/scan-skel.l (FLEX_NO_OBSTACK): Don't define; we now need the obstack_for_string from flex-scanner.h. (YY_DECL): Use to declare skel_lex static. (decode_at_digraphs): Remove; now handled in the new SC_AT_DIRECTIVE_ARG start condition. (fail_for_at_directive_too_many_args, fail_for_invalid_at): New static functions. (at_directive_name, AT_DIRECTIVE_ARGC_MAX, at_directive_argc, at_directive_argv): New static globals. (INITIAL): Use fail_for_invalid_at. Don't parse `@output file_name\n' or `@basename(...@)'. Instead, recognize the start of a generalized `@directive(...@)' form and start... (SC_AT_DIRECTIVE_ARG): ... this new start condition to parse the directive args (using the new obstack_for_string), to decode the contained @ diagraphs, and to perform the directive. It recognizes @basename(...@), @warn(...@), @complain(...@), @fatal(...@), and @output(...@). (SC_AT_DIRECTIVE_SKIP_WS): New start condition started by SC_AT_DIRECTIVE_ARG to skip whitespace after the argument delimiter, `@,'. (scan_skel): Initialize obstack_for_string on the first call. (skel_scanner_free): New function to free obstack_for_string. * tests/input.at (Reject bad %code qualifiers): Update test output.
383 lines
10 KiB
C++
383 lines
10 KiB
C++
-*- C -*-
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# C++ GLR skeleton for Bison
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# Copyright (C) 2002, 2003, 2004, 2005, 2006 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 of the License, or
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# (at your option) 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., 51 Franklin Street, Fifth Floor, Boston, MA
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# 02110-1301 USA
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# This skeleton produces a C++ class that encapsulates a C glr parser.
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# This is in order to reduce the maintenance burden. The glr.c
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# skeleton is clean and pure enough so that there are no real
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# problems. The C++ interface is the same as that of lalr1.cc. In
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# fact, glr.c can replace yacc.c without the user noticing any
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# difference, and similarly for glr.cc replacing lalr1.cc.
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#
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# The passing of parse-params
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#
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# The additional arguments are stored as members of the parser
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# object, yyparser. The C routines need to carry yyparser
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# throughout the C parser; that easy: just let yyparser become an
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# additional parse-param. But because the C++ skeleton needs to
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# know the "real" original parse-param, we save them
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# (b4_parse_param_orig). Note that b4_parse_param is overquoted
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# (and c.m4 strips one level of quotes). This is a PITA, and
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# explains why there are so many levels of quotes.
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#
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# The locations
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#
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# We use location.cc just like lalr1.cc, but because glr.c stores
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# the locations in a (C++) union, the position and location classes
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# must not have a constructor. Therefore, contrary to lalr1.cc, we
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# must not define "b4_location_constructors". As a consequence the
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# user must initialize the first positions (in particular the
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# filename member).
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# We require a pure interface using locations.
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m4_define([b4_locations_flag], [1])
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m4_define([b4_pure_flag], [1])
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# The header is mandatory.
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b4_defines_if([],
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[b4_fatal([b4_skeleton[: using %%defines is mandatory]])])
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m4_include(b4_pkgdatadir/[c++.m4])
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m4_include(b4_pkgdatadir/[location.cc])
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# Save the parse parameters.
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m4_define([b4_parse_param_orig], m4_defn([b4_parse_param]))
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# b4_yy_symbol_print_generate
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# ---------------------------
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# Bypass the default implementation to generate the "yy_symbol_print"
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# and "yy_symbol_value_print" functions.
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m4_define([b4_yy_symbol_print_generate],
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[[
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/*--------------------.
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| Print this symbol. |
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`--------------------*/
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]b4_c_ansi_function_def([yy_symbol_print],
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[static void],
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[[FILE *], []],
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[[int yytype], [yytype]],
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[[const b4_namespace::b4_parser_class_name::semantic_type *yyvaluep],
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[yyvaluep]],
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[[const b4_namespace::b4_parser_class_name::location_type *yylocationp],
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[yylocationp]],
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b4_parse_param)[
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{
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]b4_parse_param_use[]dnl
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[ yyparser.yy_symbol_print_ (yytype, yyvaluep]b4_locations_if([, yylocationp])[);
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}
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]])
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# Declare yyerror.
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m4_append([b4_post_prologue],
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[b4_syncline([@oline@], [@ofile@])
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b4_c_ansi_function_decl([yyerror],
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[static void],
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[[b4_namespace::b4_parser_class_name::location_type *yylocationp], [yylocationp]],
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b4_parse_param,
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[[const char* msg], [msg]])])
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# Define yyerror.
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m4_append([b4_epilogue],
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[b4_syncline([@oline@], [@ofile@])[
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/*------------------.
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| Report an error. |
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`------------------*/
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]b4_c_ansi_function_def([yyerror],
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[static void],
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[[b4_namespace::b4_parser_class_name::location_type *yylocationp], [yylocationp]],
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b4_parse_param,
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[[const char* msg], [msg]])[
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{
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]b4_parse_param_use[]dnl
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[ yyparser.error (*yylocationp, msg);
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}
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namespace ]b4_namespace[
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{
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]dnl In this section, the parse param are the original parse_params.
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m4_pushdef([b4_parse_param], m4_defn([b4_parse_param_orig]))dnl
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[ /// Build a parser object.
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]b4_parser_class_name::b4_parser_class_name[ (]b4_parse_param_decl[)]m4_ifset([b4_parse_param], [
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:])[
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#if YYDEBUG
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]m4_ifset([b4_parse_param], [ ], [ :])[yydebug_ (false),
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yycdebug_ (&std::cerr)]m4_ifset([b4_parse_param], [,])[
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#endif]b4_parse_param_cons[
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{
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}
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]b4_parser_class_name::~b4_parser_class_name[ ()
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{
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}
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int
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]b4_parser_class_name[::parse ()
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{
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return ::yyparse (*this]b4_user_args[);
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}
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#if YYDEBUG
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/*--------------------.
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| Print this symbol. |
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`--------------------*/
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inline void
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]b4_parser_class_name[::yy_symbol_value_print_ (int yytype,
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const semantic_type* yyvaluep, const location_type* yylocationp)
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{
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/* Pacify ``unused variable'' warnings. */
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YYUSE (yyvaluep);
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YYUSE (yylocationp);
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switch (yytype)
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{
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]m4_map([b4_symbol_actions], m4_defn([b4_symbol_printers]))dnl
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[ default:
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break;
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}
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}
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void
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]b4_parser_class_name[::yy_symbol_print_ (int yytype,
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const semantic_type* yyvaluep, const location_type* yylocationp)
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{
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*yycdebug_ << (yytype < YYNTOKENS ? "token" : "nterm")
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<< ' ' << yytname[yytype] << " ("
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<< *yylocationp << ": ";
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yy_symbol_value_print_ (yytype, yyvaluep, yylocationp);
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*yycdebug_ << ')';
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}
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std::ostream&
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]b4_parser_class_name[::debug_stream () const
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{
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return *yycdebug_;
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}
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void
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]b4_parser_class_name[::set_debug_stream (std::ostream& o)
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{
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yycdebug_ = &o;
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}
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]b4_parser_class_name[::debug_level_type
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]b4_parser_class_name[::debug_level () const
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{
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return yydebug_;
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}
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void
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]b4_parser_class_name[::set_debug_level (debug_level_type l)
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{
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yydebug_ = l;
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}
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#endif
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]m4_popdef([b4_parse_param])dnl
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[} // namespace ]b4_namespace[
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]])
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# Let glr.c believe that the user arguments include the parser itself.
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m4_ifset([b4_parse_param],
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[m4_pushdef([b4_parse_param],
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m4_dquote([[[b4_namespace::b4_parser_class_name& yyparser], [[yyparser]]],]
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m4_defn([b4_parse_param])))],
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[m4_pushdef([b4_parse_param],
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[[[[b4_namespace::b4_parser_class_name& yyparser], [[yyparser]]]]])
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])
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m4_include(b4_pkgdatadir/[glr.c])
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m4_popdef([b4_parse_param])
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m4_divert_push(0)
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@output(b4_spec_defines_file@)
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b4_copyright([Skeleton interface for Bison GLR parsers in C++],
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[2002, 2003, 2004, 2005, 2006])[
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/* C++ GLR parser skeleton written by Akim Demaille. */
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#ifndef PARSER_HEADER_H
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# define PARSER_HEADER_H
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]m4_ifdef([b4_percent_code_requires],
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[[/* Copy the %code "requires" blocks. */
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]b4_user_code([b4_percent_code_requires])])[
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#include <string>
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#include <iostream>
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/* Using locations. */
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#define YYLSP_NEEDED ]b4_locations_flag[
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namespace ]b4_namespace[
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{
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class position;
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class location;
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}
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#include "location.hh"
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/* Enabling traces. */
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#ifndef YYDEBUG
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# define YYDEBUG ]b4_debug_flag[
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#endif
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/* YYLLOC_DEFAULT -- Set CURRENT to span from RHS[1] to RHS[N].
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If N is 0, then set CURRENT to the empty location which ends
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the previous symbol: RHS[0] (always defined). */
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#ifndef YYLLOC_DEFAULT
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# define YYLLOC_DEFAULT(Current, Rhs, N) \
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do \
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if (N) \
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{ \
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(Current).begin = YYRHSLOC (Rhs, 1).begin; \
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(Current).end = YYRHSLOC (Rhs, N).end; \
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} \
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else \
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{ \
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(Current).begin = (Current).end = YYRHSLOC (Rhs, 0).end; \
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} \
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while (/*CONSTCOND*/ 0)
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#endif
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namespace ]b4_namespace[
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{
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/// A Bison parser.
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class ]b4_parser_class_name[
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{
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public:
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/// Symbol semantic values.
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#ifndef YYSTYPE
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]m4_ifdef([b4_stype],
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[ union semantic_type
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b4_user_stype
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;],
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[m4_if(b4_tag_seen_flag, 0,
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[[ typedef int semantic_type;]],
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[[ typedef YYSTYPE semantic_type;]])])[
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#else
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typedef YYSTYPE semantic_type;
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#endif
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/// Symbol locations.
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typedef ]b4_location_type[ location_type;
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/// Tokens.
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struct token
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{
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]b4_token_enums(b4_tokens)[
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};
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/// Token type.
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typedef token::yytokentype token_type;
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/// Build a parser object.
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]b4_parser_class_name[ (]b4_parse_param_decl[);
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virtual ~]b4_parser_class_name[ ();
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/// Parse.
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/// \returns 0 iff parsing succeeded.
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virtual int parse ();
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/// The current debugging stream.
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std::ostream& debug_stream () const;
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/// Set the current debugging stream.
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void set_debug_stream (std::ostream &);
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/// Type for debugging levels.
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typedef int debug_level_type;
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/// The current debugging level.
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debug_level_type debug_level () const;
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/// Set the current debugging level.
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void set_debug_level (debug_level_type l);
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private:
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public:
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/// Report a syntax error.
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/// \param loc where the syntax error is found.
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/// \param msg a description of the syntax error.
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virtual void error (const location_type& loc, const std::string& msg);
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private:
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#if YYDEBUG
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public:
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/// \brief Report a symbol value on the debug stream.
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/// \param yytype The token type.
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/// \param yyvaluep Its semantic value.
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/// \param yylocationp Its location.
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virtual void yy_symbol_value_print_ (int yytype,
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const semantic_type* yyvaluep,
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const location_type* yylocationp);
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/// \brief Report a symbol on the debug stream.
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/// \param yytype The token type.
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/// \param yyvaluep Its semantic value.
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/// \param yylocationp Its location.
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virtual void yy_symbol_print_ (int yytype,
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const semantic_type* yyvaluep,
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const location_type* yylocationp);
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private:
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/* Debugging. */
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int yydebug_;
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std::ostream* yycdebug_;
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#endif
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/// \brief Reclaim the memory associated to a symbol.
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/// \param yymsg Why this token is reclaimed.
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/// \param yytype The symbol type.
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/// \param yyvaluep Its semantic value.
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/// \param yylocationp Its location.
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inline void yydestruct_ (const char* yymsg,
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int yytype,
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semantic_type* yyvaluep,
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location_type* yylocationp);
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]b4_parse_param_vars[
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};
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]dnl Redirections for glr.c.
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m4_ifset([b4_global_tokens_and_yystype],
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[b4_token_defines(b4_tokens)])
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[
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#ifndef YYSTYPE
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# define YYSTYPE ]b4_namespace[::]b4_parser_class_name[::semantic_type
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#endif
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#ifndef YYLTYPE
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# define YYLTYPE ]b4_namespace[::]b4_parser_class_name[::location_type
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#endif
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}
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]m4_ifdef([b4_percent_code_provides],
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[[/* Copy the %code "provides" blocks. */
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]b4_user_code([b4_percent_code_provides])])[]dnl
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[#endif /* ! defined PARSER_HEADER_H */]
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m4_divert_pop(0)
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