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    // A Bison parser, made by GNU Bison 3.5.4.
    
    // Skeleton implementation for Bison LALR(1) parsers in C++
    
    // Copyright (C) 2002-2015, 2018-2020 Free Software Foundation, Inc.
    
    // This program is free software: you can redistribute it and/or modify
    // it under the terms of the GNU General Public License as published by
    // the Free Software Foundation, either version 3 of the License, or
    // (at your option) any later version.
    
    // This program is distributed in the hope that it will be useful,
    // but WITHOUT ANY WARRANTY; without even the implied warranty of
    // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
    // GNU General Public License for more details.
    
    // You should have received a copy of the GNU General Public License
    // along with this program.  If not, see <http://www.gnu.org/licenses/>.
    
    // As a special exception, you may create a larger work that contains
    // part or all of the Bison parser skeleton and distribute that work
    // under terms of your choice, so long as that work isn't itself a
    // parser generator using the skeleton or a modified version thereof
    // as a parser skeleton.  Alternatively, if you modify or redistribute
    // the parser skeleton itself, you may (at your option) remove this
    // special exception, which will cause the skeleton and the resulting
    // Bison output files to be licensed under the GNU General Public
    // License without this special exception.
    
    // This special exception was added by the Free Software Foundation in
    // version 2.2 of Bison.
    
    // Undocumented macros, especially those whose name start with YY_,
    // are private implementation details.  Do not rely on them.
    
    
    
    
    
    #include "parser.hh"
    
    
    // Unqualified %code blocks.
    #line 23 "parser.yy"
    
    # include "driver.hh"
    
    #line 49 "parser.cc"
    
    
    #ifndef YY_
    # if defined YYENABLE_NLS && YYENABLE_NLS
    #  if ENABLE_NLS
    #   include <libintl.h> // FIXME: INFRINGES ON USER NAME SPACE.
    #   define YY_(msgid) dgettext ("bison-runtime", msgid)
    #  endif
    # endif
    # ifndef YY_
    #  define YY_(msgid) msgid
    # endif
    #endif
    
    // Whether we are compiled with exception support.
    #ifndef YY_EXCEPTIONS
    # if defined __GNUC__ && !defined __EXCEPTIONS
    #  define YY_EXCEPTIONS 0
    # else
    #  define YY_EXCEPTIONS 1
    # endif
    #endif
    
    #define YYRHSLOC(Rhs, K) ((Rhs)[K].location)
    /* YYLLOC_DEFAULT -- Set CURRENT to span from RHS[1] to RHS[N].
       If N is 0, then set CURRENT to the empty location which ends
       the previous symbol: RHS[0] (always defined).  */
    
    # ifndef YYLLOC_DEFAULT
    #  define YYLLOC_DEFAULT(Current, Rhs, N)                               \
        do                                                                  \
          if (N)                                                            \
            {                                                               \
              (Current).begin  = YYRHSLOC (Rhs, 1).begin;                   \
              (Current).end    = YYRHSLOC (Rhs, N).end;                     \
            }                                                               \
          else                                                              \
            {                                                               \
              (Current).begin = (Current).end = YYRHSLOC (Rhs, 0).end;      \
            }                                                               \
        while (false)
    # endif
    
    
    // Enable debugging if requested.
    #if YYDEBUG
    
    // A pseudo ostream that takes yydebug_ into account.
    # define YYCDEBUG if (yydebug_) (*yycdebug_)
    
    # define YY_SYMBOL_PRINT(Title, Symbol)         \
      do {                                          \
        if (yydebug_)                               \
        {                                           \
          *yycdebug_ << Title << ' ';               \
          yy_print_ (*yycdebug_, Symbol);           \
          *yycdebug_ << '\n';                       \
        }                                           \
      } while (false)
    
    # define YY_REDUCE_PRINT(Rule)          \
      do {                                  \
        if (yydebug_)                       \
          yy_reduce_print_ (Rule);          \
      } while (false)
    
    # define YY_STACK_PRINT()               \
      do {                                  \
        if (yydebug_)                       \
          yystack_print_ ();                \
      } while (false)
    
    #else // !YYDEBUG
    
    # define YYCDEBUG if (false) std::cerr
    # define YY_SYMBOL_PRINT(Title, Symbol)  YYUSE (Symbol)
    # define YY_REDUCE_PRINT(Rule)           static_cast<void> (0)
    # define YY_STACK_PRINT()                static_cast<void> (0)
    
    #endif // !YYDEBUG
    
    #define yyerrok         (yyerrstatus_ = 0)
    #define yyclearin       (yyla.clear ())
    
    #define YYACCEPT        goto yyacceptlab
    #define YYABORT         goto yyabortlab
    #define YYERROR         goto yyerrorlab
    #define YYRECOVERING()  (!!yyerrstatus_)
    
    namespace yy {
    #line 140 "parser.cc"
    
    
      /* Return YYSTR after stripping away unnecessary quotes and
         backslashes, so that it's suitable for yyerror.  The heuristic is
         that double-quoting is unnecessary unless the string contains an
         apostrophe, a comma, or backslash (other than backslash-backslash).
         YYSTR is taken from yytname.  */
      std::string
      parser::yytnamerr_ (const char *yystr)
      {
        if (*yystr == '"')
          {
            std::string yyr;
            char const *yyp = yystr;
    
            for (;;)
              switch (*++yyp)
                {
                case '\'':
                case ',':
                  goto do_not_strip_quotes;
    
                case '\\':
                  if (*++yyp != '\\')
                    goto do_not_strip_quotes;
                  else
                    goto append;
    
                append:
                default:
                  yyr += *yyp;
                  break;
    
                case '"':
                  return yyr;
                }
          do_not_strip_quotes: ;
          }
    
        return yystr;
      }
    
    
      /// Build a parser object.
      parser::parser (driver& drv_yyarg)
    #if YYDEBUG
        : yydebug_ (false),
          yycdebug_ (&std::cerr),
    #else
        :
    #endif
          drv (drv_yyarg)
      {}
    
      parser::~parser ()
      {}
    
      parser::syntax_error::~syntax_error () YY_NOEXCEPT YY_NOTHROW
      {}
    
      /*---------------.
      | Symbol types.  |
      `---------------*/
    
    
    
      // by_state.
      parser::by_state::by_state () YY_NOEXCEPT
        : state (empty_state)
      {}
    
      parser::by_state::by_state (const by_state& that) YY_NOEXCEPT
        : state (that.state)
      {}
    
      void
      parser::by_state::clear () YY_NOEXCEPT
      {
        state = empty_state;
      }
    
      void
      parser::by_state::move (by_state& that)
      {
        state = that.state;
        that.clear ();
      }
    
      parser::by_state::by_state (state_type s) YY_NOEXCEPT
        : state (s)
      {}
    
      parser::symbol_number_type
      parser::by_state::type_get () const YY_NOEXCEPT
      {
        if (state == empty_state)
          return empty_symbol;
        else
          return yystos_[+state];
      }
    
      parser::stack_symbol_type::stack_symbol_type ()
      {}
    
      parser::stack_symbol_type::stack_symbol_type (YY_RVREF (stack_symbol_type) that)
        : super_type (YY_MOVE (that.state), YY_MOVE (that.location))
      {
        switch (that.type_get ())
        {
          case 11: // "number"
          case 13: // exp
            value.YY_MOVE_OR_COPY< int > (YY_MOVE (that.value));
            break;
    
          case 10: // "identifier"
            value.YY_MOVE_OR_COPY< std::string > (YY_MOVE (that.value));
            break;
    
          default:
            break;
        }
    
    #if 201103L <= YY_CPLUSPLUS
        // that is emptied.
        that.state = empty_state;
    #endif
      }
    
      parser::stack_symbol_type::stack_symbol_type (state_type s, YY_MOVE_REF (symbol_type) that)
        : super_type (s, YY_MOVE (that.location))
      {
        switch (that.type_get ())
        {
          case 11: // "number"
          case 13: // exp
            value.move< int > (YY_MOVE (that.value));
            break;
    
          case 10: // "identifier"
            value.move< std::string > (YY_MOVE (that.value));
            break;
    
          default:
            break;
        }
    
        // that is emptied.
        that.type = empty_symbol;
      }
    
    #if YY_CPLUSPLUS < 201103L
      parser::stack_symbol_type&
      parser::stack_symbol_type::operator= (const stack_symbol_type& that)
      {
        state = that.state;
        switch (that.type_get ())
        {
          case 11: // "number"
          case 13: // exp
            value.copy< int > (that.value);
            break;
    
          case 10: // "identifier"
            value.copy< std::string > (that.value);
            break;
    
          default:
            break;
        }
    
        location = that.location;
        return *this;
      }
    
      parser::stack_symbol_type&
      parser::stack_symbol_type::operator= (stack_symbol_type& that)
      {
        state = that.state;
        switch (that.type_get ())
        {
          case 11: // "number"
          case 13: // exp
            value.move< int > (that.value);
            break;
    
          case 10: // "identifier"
            value.move< std::string > (that.value);
            break;
    
          default:
            break;
        }
    
        location = that.location;
        // that is emptied.
        that.state = empty_state;
        return *this;
      }
    #endif
    
      template <typename Base>
      void
      parser::yy_destroy_ (const char* yymsg, basic_symbol<Base>& yysym) const
      {
        if (yymsg)
          YY_SYMBOL_PRINT (yymsg, yysym);
      }
    
    #if YYDEBUG
      template <typename Base>
      void
      parser::yy_print_ (std::ostream& yyo,
                                         const basic_symbol<Base>& yysym) const
      {
        std::ostream& yyoutput = yyo;
        YYUSE (yyoutput);
        symbol_number_type yytype = yysym.type_get ();
    #if defined __GNUC__ && ! defined __clang__ && ! defined __ICC && __GNUC__ * 100 + __GNUC_MINOR__ <= 408
        // Avoid a (spurious) G++ 4.8 warning about "array subscript is
        // below array bounds".
        if (yysym.empty ())
          std::abort ();
    #endif
        yyo << (yytype < yyntokens_ ? "token" : "nterm")
            << ' ' << yytname_[yytype] << " ("
            << yysym.location << ": ";
        switch (yytype)
        {
          case 10: // "identifier"
    #line 43 "parser.yy"
                     { yyo << yysym.value.template as < std::string > (); }
    #line 372 "parser.cc"
            break;
    
          case 11: // "number"
    #line 43 "parser.yy"
                     { yyo << yysym.value.template as < int > (); }
    #line 378 "parser.cc"
            break;
    
          case 13: // exp
    #line 43 "parser.yy"
                     { yyo << yysym.value.template as < int > (); }
    #line 384 "parser.cc"
            break;
    
          default:
            break;
        }
        yyo << ')';
      }
    #endif
    
      void
      parser::yypush_ (const char* m, YY_MOVE_REF (stack_symbol_type) sym)
      {
        if (m)
          YY_SYMBOL_PRINT (m, sym);
        yystack_.push (YY_MOVE (sym));
      }
    
      void
      parser::yypush_ (const char* m, state_type s, YY_MOVE_REF (symbol_type) sym)
      {
    #if 201103L <= YY_CPLUSPLUS
        yypush_ (m, stack_symbol_type (s, std::move (sym)));
    #else
        stack_symbol_type ss (s, sym);
        yypush_ (m, ss);
    #endif
      }
    
      void
      parser::yypop_ (int n)
      {
        yystack_.pop (n);
      }
    
    #if YYDEBUG
      std::ostream&
      parser::debug_stream () const
      {
        return *yycdebug_;
      }
    
      void
      parser::set_debug_stream (std::ostream& o)
      {
        yycdebug_ = &o;
      }
    
    
      parser::debug_level_type
      parser::debug_level () const
      {
        return yydebug_;
      }
    
      void
      parser::set_debug_level (debug_level_type l)
      {
        yydebug_ = l;
      }
    #endif // YYDEBUG
    
      parser::state_type
      parser::yy_lr_goto_state_ (state_type yystate, int yysym)
      {
        int yyr = yypgoto_[yysym - yyntokens_] + yystate;
        if (0 <= yyr && yyr <= yylast_ && yycheck_[yyr] == yystate)
          return yytable_[yyr];
        else
          return yydefgoto_[yysym - yyntokens_];
      }
    
      bool
      parser::yy_pact_value_is_default_ (int yyvalue)
      {
        return yyvalue == yypact_ninf_;
      }
    
      bool
      parser::yy_table_value_is_error_ (int yyvalue)
      {
        return yyvalue == yytable_ninf_;
      }
    
      int
      parser::operator() ()
      {
        return parse ();
      }
    
      int
      parser::parse ()
      {
        int yyn;
        /// Length of the RHS of the rule being reduced.
        int yylen = 0;
    
        // Error handling.
        int yynerrs_ = 0;
        int yyerrstatus_ = 0;
    
        /// The lookahead symbol.
        symbol_type yyla;
    
        /// The locations where the error started and ended.
        stack_symbol_type yyerror_range[3];
    
        /// The return value of parse ().
        int yyresult;
    
    #if YY_EXCEPTIONS
        try
    #endif // YY_EXCEPTIONS
          {
        YYCDEBUG << "Starting parse\n";
    
    
        /* Initialize the stack.  The initial state will be set in
           yynewstate, since the latter expects the semantical and the
           location values to have been already stored, initialize these
           stacks with a primary value.  */
        yystack_.clear ();
        yypush_ (YY_NULLPTR, 0, YY_MOVE (yyla));
    
      /*-----------------------------------------------.
      | yynewstate -- push a new symbol on the stack.  |
      `-----------------------------------------------*/
      yynewstate:
        YYCDEBUG << "Entering state " << int (yystack_[0].state) << '\n';
    
        // Accept?
        if (yystack_[0].state == yyfinal_)
          YYACCEPT;
    
        goto yybackup;
    
    
      /*-----------.
      | yybackup.  |
      `-----------*/
      yybackup:
        // Try to take a decision without lookahead.
        yyn = yypact_[+yystack_[0].state];
        if (yy_pact_value_is_default_ (yyn))
          goto yydefault;
    
        // Read a lookahead token.
        if (yyla.empty ())
          {
            YYCDEBUG << "Reading a token: ";
    #if YY_EXCEPTIONS
            try
    #endif // YY_EXCEPTIONS
              {
                symbol_type yylookahead (yylex (drv));
                yyla.move (yylookahead);
              }
    #if YY_EXCEPTIONS
            catch (const syntax_error& yyexc)
              {
                YYCDEBUG << "Caught exception: " << yyexc.what() << '\n';
                error (yyexc);
                goto yyerrlab1;
              }
    #endif // YY_EXCEPTIONS
          }
        YY_SYMBOL_PRINT ("Next token is", yyla);
    
        /* If the proper action on seeing token YYLA.TYPE is to reduce or
           to detect an error, take that action.  */
        yyn += yyla.type_get ();
        if (yyn < 0 || yylast_ < yyn || yycheck_[yyn] != yyla.type_get ())
          {
            goto yydefault;
          }
    
        // Reduce or error.
        yyn = yytable_[yyn];
        if (yyn <= 0)
          {
            if (yy_table_value_is_error_ (yyn))
              goto yyerrlab;
            yyn = -yyn;
            goto yyreduce;
          }
    
        // Count tokens shifted since error; after three, turn off error status.
        if (yyerrstatus_)
          --yyerrstatus_;
    
        // Shift the lookahead token.
        yypush_ ("Shifting", state_type (yyn), YY_MOVE (yyla));
        goto yynewstate;
    
    
      /*-----------------------------------------------------------.
      | yydefault -- do the default action for the current state.  |
      `-----------------------------------------------------------*/
      yydefault:
        yyn = yydefact_[+yystack_[0].state];
        if (yyn == 0)
          goto yyerrlab;
        goto yyreduce;
    
    
      /*-----------------------------.
      | yyreduce -- do a reduction.  |
      `-----------------------------*/
      yyreduce:
        yylen = yyr2_[yyn];
        {
          stack_symbol_type yylhs;
          yylhs.state = yy_lr_goto_state_ (yystack_[yylen].state, yyr1_[yyn]);
          /* Variants are always initialized to an empty instance of the
             correct type. The default '$$ = $1' action is NOT applied
             when using variants.  */
          switch (yyr1_[yyn])
        {
          case 11: // "number"
          case 13: // exp
            yylhs.value.emplace< int > ();
            break;
    
          case 10: // "identifier"
            yylhs.value.emplace< std::string > ();
            break;
    
          default:
            break;
        }
    
    
          // Default location.
          {
            stack_type::slice range (yystack_, yylen);
            YYLLOC_DEFAULT (yylhs.location, range, yylen);
            yyerror_range[1].location = yylhs.location;
          }
    
          // Perform the reduction.
          YY_REDUCE_PRINT (yyn);
    #if YY_EXCEPTIONS
          try
    #endif // YY_EXCEPTIONS
            {
              switch (yyn)
                {
      case 2:
    #line 47 "parser.yy"
                           { drv.result = yystack_[0].value.as < int > (); }
    #line 634 "parser.cc"
        break;
    
      case 3:
    #line 50 "parser.yy"
                             {}
    #line 640 "parser.cc"
        break;
    
      case 4:
    #line 51 "parser.yy"
                             {}
    #line 646 "parser.cc"
        break;
    
      case 5:
    #line 54 "parser.yy"
                            { drv.variables[yystack_[2].value.as < std::string > ()] = yystack_[0].value.as < int > (); }
    #line 652 "parser.cc"
        break;
    
      case 6:
    #line 59 "parser.yy"
      { yylhs.value.as < int > () = yystack_[0].value.as < int > (); }
    #line 658 "parser.cc"
        break;
    
      case 7:
    #line 60 "parser.yy"
                    { yylhs.value.as < int > () = drv.variables[yystack_[0].value.as < std::string > ()]; }
    #line 664 "parser.cc"
        break;
    
      case 8:
    #line 61 "parser.yy"
                    { yylhs.value.as < int > () = yystack_[2].value.as < int > () + yystack_[0].value.as < int > (); }
    #line 670 "parser.cc"
        break;
    
      case 9:
    #line 62 "parser.yy"
                    { yylhs.value.as < int > () = yystack_[2].value.as < int > () - yystack_[0].value.as < int > (); }
    #line 676 "parser.cc"
        break;
    
      case 10:
    #line 63 "parser.yy"
                    { yylhs.value.as < int > () = yystack_[2].value.as < int > () * yystack_[0].value.as < int > (); }
    #line 682 "parser.cc"
        break;
    
      case 11:
    #line 64 "parser.yy"
                    { yylhs.value.as < int > () = yystack_[2].value.as < int > () / yystack_[0].value.as < int > (); }
    #line 688 "parser.cc"
        break;
    
      case 12:
    #line 65 "parser.yy"
                    { yylhs.value.as < int > () = yystack_[1].value.as < int > (); }
    #line 694 "parser.cc"
        break;
    
    
    #line 698 "parser.cc"
    
                default:
                  break;
                }
            }
    #if YY_EXCEPTIONS
          catch (const syntax_error& yyexc)
            {
              YYCDEBUG << "Caught exception: " << yyexc.what() << '\n';
              error (yyexc);
              YYERROR;
            }
    #endif // YY_EXCEPTIONS
          YY_SYMBOL_PRINT ("-> $$ =", yylhs);
          yypop_ (yylen);
          yylen = 0;
          YY_STACK_PRINT ();
    
          // Shift the result of the reduction.
          yypush_ (YY_NULLPTR, YY_MOVE (yylhs));
        }
        goto yynewstate;
    
    
      /*--------------------------------------.
      | yyerrlab -- here on detecting error.  |
      `--------------------------------------*/
      yyerrlab:
        // If not already recovering from an error, report this error.
        if (!yyerrstatus_)
          {
            ++yynerrs_;
            error (yyla.location, yysyntax_error_ (yystack_[0].state, yyla));
          }
    
    
        yyerror_range[1].location = yyla.location;
        if (yyerrstatus_ == 3)
          {
            /* If just tried and failed to reuse lookahead token after an
               error, discard it.  */
    
            // Return failure if at end of input.
            if (yyla.type_get () == yyeof_)
              YYABORT;
            else if (!yyla.empty ())
              {
                yy_destroy_ ("Error: discarding", yyla);
                yyla.clear ();
              }
          }
    
        // Else will try to reuse lookahead token after shifting the error token.
        goto yyerrlab1;
    
    
      /*---------------------------------------------------.
      | yyerrorlab -- error raised explicitly by YYERROR.  |
      `---------------------------------------------------*/
      yyerrorlab:
        /* Pacify compilers when the user code never invokes YYERROR and
           the label yyerrorlab therefore never appears in user code.  */
        if (false)
          YYERROR;
    
        /* Do not reclaim the symbols of the rule whose action triggered
           this YYERROR.  */
        yypop_ (yylen);
        yylen = 0;
        goto yyerrlab1;
    
    
      /*-------------------------------------------------------------.
      | yyerrlab1 -- common code for both syntax error and YYERROR.  |
      `-------------------------------------------------------------*/
      yyerrlab1:
        yyerrstatus_ = 3;   // Each real token shifted decrements this.
        {
          stack_symbol_type error_token;
          for (;;)
            {
              yyn = yypact_[+yystack_[0].state];
              if (!yy_pact_value_is_default_ (yyn))
                {
                  yyn += yy_error_token_;
                  if (0 <= yyn && yyn <= yylast_ && yycheck_[yyn] == yy_error_token_)
                    {
                      yyn = yytable_[yyn];
                      if (0 < yyn)
                        break;
                    }
                }
    
              // Pop the current state because it cannot handle the error token.
              if (yystack_.size () == 1)
                YYABORT;
    
              yyerror_range[1].location = yystack_[0].location;
              yy_destroy_ ("Error: popping", yystack_[0]);
              yypop_ ();
              YY_STACK_PRINT ();
            }
    
          yyerror_range[2].location = yyla.location;
          YYLLOC_DEFAULT (error_token.location, yyerror_range, 2);
    
          // Shift the error token.
          error_token.state = state_type (yyn);
          yypush_ ("Shifting", YY_MOVE (error_token));
        }
        goto yynewstate;
    
    
      /*-------------------------------------.
      | yyacceptlab -- YYACCEPT comes here.  |
      `-------------------------------------*/
      yyacceptlab:
        yyresult = 0;
        goto yyreturn;
    
    
      /*-----------------------------------.
      | yyabortlab -- YYABORT comes here.  |
      `-----------------------------------*/
      yyabortlab:
        yyresult = 1;
        goto yyreturn;
    
    
      /*-----------------------------------------------------.
      | yyreturn -- parsing is finished, return the result.  |
      `-----------------------------------------------------*/
      yyreturn:
        if (!yyla.empty ())
          yy_destroy_ ("Cleanup: discarding lookahead", yyla);
    
        /* Do not reclaim the symbols of the rule whose action triggered
           this YYABORT or YYACCEPT.  */
        yypop_ (yylen);
        while (1 < yystack_.size ())
          {
            yy_destroy_ ("Cleanup: popping", yystack_[0]);
            yypop_ ();
          }
    
        return yyresult;
      }
    #if YY_EXCEPTIONS
        catch (...)
          {
            YYCDEBUG << "Exception caught: cleaning lookahead and stack\n";
            // Do not try to display the values of the reclaimed symbols,
            // as their printers might throw an exception.
            if (!yyla.empty ())
              yy_destroy_ (YY_NULLPTR, yyla);
    
            while (1 < yystack_.size ())
              {
                yy_destroy_ (YY_NULLPTR, yystack_[0]);
                yypop_ ();
              }
            throw;
          }
    #endif // YY_EXCEPTIONS
      }
    
      void
      parser::error (const syntax_error& yyexc)
      {
        error (yyexc.location, yyexc.what ());
      }
    
      // Generate an error message.
      std::string
      parser::yysyntax_error_ (state_type yystate, const symbol_type& yyla) const
      {
        // Number of reported tokens (one for the "unexpected", one per
        // "expected").
        std::ptrdiff_t yycount = 0;
        // Its maximum.
        enum { YYERROR_VERBOSE_ARGS_MAXIMUM = 5 };
        // Arguments of yyformat.
        char const *yyarg[YYERROR_VERBOSE_ARGS_MAXIMUM];
    
        /* There are many possibilities here to consider:
           - If this state is a consistent state with a default action, then
             the only way this function was invoked is if the default action
             is an error action.  In that case, don't check for expected
             tokens because there are none.
           - The only way there can be no lookahead present (in yyla) is
             if this state is a consistent state with a default action.
             Thus, detecting the absence of a lookahead is sufficient to
             determine that there is no unexpected or expected token to
             report.  In that case, just report a simple "syntax error".
           - Don't assume there isn't a lookahead just because this state is
             a consistent state with a default action.  There might have
             been a previous inconsistent state, consistent state with a
             non-default action, or user semantic action that manipulated
             yyla.  (However, yyla is currently not documented for users.)
           - Of course, the expected token list depends on states to have
             correct lookahead information, and it depends on the parser not
             to perform extra reductions after fetching a lookahead from the
             scanner and before detecting a syntax error.  Thus, state merging
             (from LALR or IELR) and default reductions corrupt the expected
             token list.  However, the list is correct for canonical LR with
             one exception: it will still contain any token that will not be
             accepted due to an error action in a later state.
        */
        if (!yyla.empty ())
          {
            symbol_number_type yytoken = yyla.type_get ();
            yyarg[yycount++] = yytname_[yytoken];
    
            int yyn = yypact_[+yystate];
            if (!yy_pact_value_is_default_ (yyn))
              {
                /* Start YYX at -YYN if negative to avoid negative indexes in
                   YYCHECK.  In other words, skip the first -YYN actions for
                   this state because they are default actions.  */
                int yyxbegin = yyn < 0 ? -yyn : 0;
                // Stay within bounds of both yycheck and yytname.
                int yychecklim = yylast_ - yyn + 1;
                int yyxend = yychecklim < yyntokens_ ? yychecklim : yyntokens_;
                for (int yyx = yyxbegin; yyx < yyxend; ++yyx)
                  if (yycheck_[yyx + yyn] == yyx && yyx != yy_error_token_
                      && !yy_table_value_is_error_ (yytable_[yyx + yyn]))
                    {
                      if (yycount == YYERROR_VERBOSE_ARGS_MAXIMUM)
                        {
                          yycount = 1;
                          break;
                        }
                      else
                        yyarg[yycount++] = yytname_[yyx];
                    }
              }
          }
    
        char const* yyformat = YY_NULLPTR;
        switch (yycount)
          {
    #define YYCASE_(N, S)                         \
            case N:                               \
              yyformat = S;                       \
            break
          default: // Avoid compiler warnings.
            YYCASE_ (0, YY_("syntax error"));
            YYCASE_ (1, YY_("syntax error, unexpected %s"));
            YYCASE_ (2, YY_("syntax error, unexpected %s, expecting %s"));
            YYCASE_ (3, YY_("syntax error, unexpected %s, expecting %s or %s"));
            YYCASE_ (4, YY_("syntax error, unexpected %s, expecting %s or %s or %s"));
            YYCASE_ (5, YY_("syntax error, unexpected %s, expecting %s or %s or %s or %s"));
    #undef YYCASE_
          }
    
        std::string yyres;
        // Argument number.
        std::ptrdiff_t yyi = 0;
        for (char const* yyp = yyformat; *yyp; ++yyp)
          if (yyp[0] == '%' && yyp[1] == 's' && yyi < yycount)
            {
              yyres += yytnamerr_ (yyarg[yyi++]);
              ++yyp;
            }
          else
            yyres += *yyp;
        return yyres;
      }
    
    
      const signed char parser::yypact_ninf_ = -5;
    
      const signed char parser::yytable_ninf_ = -1;
    
      const signed char
      parser::yypact_[] =
      {
          -5,     5,     9,    -5,    13,    15,    -5,     8,    -5,    -5,
          -3,    13,    13,    13,    13,    13,    -5,     8,    19,    19,
          -5,    -5
      };
    
      const signed char
      parser::yydefact_[] =
      {
           3,     0,     0,     1,     0,     7,     6,     2,     4,     7,
           0,     0,     0,     0,     0,     0,    12,     5,     9,     8,
          10,    11
      };
    
      const signed char
      parser::yypgoto_[] =
      {
          -5,    -4,    -5,    -5,    -5
      };
    
      const signed char
      parser::yydefgoto_[] =
      {
          -1,     7,     1,     2,     8
      };
    
      const signed char