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parser.hh
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// A Bison parser, made by GNU Bison 3.5.1.
// Skeleton interface 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.
/**
** \file parser.hh
** Define the yy::parser class.
*/
// C++ LALR(1) parser skeleton written by Akim Demaille.
// Undocumented macros, especially those whose name start with YY_,
// are private implementation details. Do not rely on them.
#ifndef YY_YY_PARSER_HH_INCLUDED
# define YY_YY_PARSER_HH_INCLUDED
// "%code requires" blocks.
#line 10 "parser.yy"
class driver;
#include "constructs.hh"
#line 53 "parser.hh"
# include <cstdlib> // std::abort
# include <iostream>
# include <stdexcept>
# include <string>
# include <vector>
#if defined __cplusplus
# define YY_CPLUSPLUS __cplusplus
#else
# define YY_CPLUSPLUS 199711L
#endif
// Support move semantics when possible.
#if 201103L <= YY_CPLUSPLUS
# define YY_MOVE std::move
# define YY_MOVE_OR_COPY move
# define YY_MOVE_REF(Type) Type&&
# define YY_RVREF(Type) Type&&
# define YY_COPY(Type) Type
#else
# define YY_MOVE
# define YY_MOVE_OR_COPY copy
# define YY_MOVE_REF(Type) Type&
# define YY_RVREF(Type) const Type&
# define YY_COPY(Type) const Type&
#endif
// Support noexcept when possible.
#if 201103L <= YY_CPLUSPLUS
# define YY_NOEXCEPT noexcept
# define YY_NOTHROW
#else
# define YY_NOEXCEPT
# define YY_NOTHROW throw ()
#endif
// Support constexpr when possible.
#if 201703 <= YY_CPLUSPLUS
# define YY_CONSTEXPR constexpr
#else
# define YY_CONSTEXPR
#endif
#ifndef YY_ASSERT
# include <cassert>
# define YY_ASSERT assert
#endif
#ifndef YY_ATTRIBUTE_PURE
# if defined __GNUC__ && 2 < __GNUC__ + (96 <= __GNUC_MINOR__)
# define YY_ATTRIBUTE_PURE __attribute__ ((__pure__))
# else
# define YY_ATTRIBUTE_PURE
# endif
#endif
#ifndef YY_ATTRIBUTE_UNUSED
# if defined __GNUC__ && 2 < __GNUC__ + (7 <= __GNUC_MINOR__)
# define YY_ATTRIBUTE_UNUSED __attribute__ ((__unused__))
# else
# define YY_ATTRIBUTE_UNUSED
# endif
#endif
/* Suppress unused-variable warnings by "using" E. */
#if ! defined lint || defined __GNUC__
# define YYUSE(E) ((void) (E))
#else
# define YYUSE(E) /* empty */
#endif
#if defined __GNUC__ && ! defined __ICC && 407 <= __GNUC__ * 100 + __GNUC_MINOR__
/* Suppress an incorrect diagnostic about yylval being uninitialized. */
# define YY_IGNORE_MAYBE_UNINITIALIZED_BEGIN \
_Pragma ("GCC diagnostic push") \
_Pragma ("GCC diagnostic ignored \"-Wuninitialized\"") \
_Pragma ("GCC diagnostic ignored \"-Wmaybe-uninitialized\"")
# define YY_IGNORE_MAYBE_UNINITIALIZED_END \
_Pragma ("GCC diagnostic pop")
#else
# define YY_INITIAL_VALUE(Value) Value
#endif
#ifndef YY_IGNORE_MAYBE_UNINITIALIZED_BEGIN
# define YY_IGNORE_MAYBE_UNINITIALIZED_BEGIN
# define YY_IGNORE_MAYBE_UNINITIALIZED_END
#endif
#ifndef YY_INITIAL_VALUE
# define YY_INITIAL_VALUE(Value) /* Nothing. */
#endif
#if defined __cplusplus && defined __GNUC__ && ! defined __ICC && 6 <= __GNUC__
# define YY_IGNORE_USELESS_CAST_BEGIN \
_Pragma ("GCC diagnostic push") \
_Pragma ("GCC diagnostic ignored \"-Wuseless-cast\"")
# define YY_IGNORE_USELESS_CAST_END \
_Pragma ("GCC diagnostic pop")
#endif
#ifndef YY_IGNORE_USELESS_CAST_BEGIN
# define YY_IGNORE_USELESS_CAST_BEGIN
# define YY_IGNORE_USELESS_CAST_END
#endif
# ifndef YY_CAST
# ifdef __cplusplus
# define YY_CAST(Type, Val) static_cast<Type> (Val)
# define YY_REINTERPRET_CAST(Type, Val) reinterpret_cast<Type> (Val)
# else
# define YY_CAST(Type, Val) ((Type) (Val))
# define YY_REINTERPRET_CAST(Type, Val) ((Type) (Val))
# endif
# endif
# ifndef YY_NULLPTR
# if defined __cplusplus
# if 201103L <= __cplusplus
# define YY_NULLPTR nullptr
# else
# define YY_NULLPTR 0
# endif
# else
# define YY_NULLPTR ((void*)0)
# endif
# endif
/* Debug traces. */
#ifndef YYDEBUG
# define YYDEBUG 1
#endif
namespace yy {
#line 187 "parser.hh"
/// A Bison parser.
class parser
{
public:
#ifndef YYSTYPE
/// A buffer to store and retrieve objects.
///
/// Sort of a variant, but does not keep track of the nature
/// of the stored data, since that knowledge is available
/// via the current parser state.
class semantic_type
{
public:
/// Type of *this.
typedef semantic_type self_type;
/// Empty construction.
semantic_type () YY_NOEXCEPT
: yybuffer_ ()
{}
/// Construct and fill.
template <typename T>
semantic_type (YY_RVREF (T) t)
{
YY_ASSERT (sizeof (T) <= size);
new (yyas_<T> ()) T (YY_MOVE (t));
}
/// Destruction, allowed only if empty.
~semantic_type () YY_NOEXCEPT
{}
# if 201103L <= YY_CPLUSPLUS
/// Instantiate a \a T in here from \a t.
template <typename T, typename... U>
T&
emplace (U&&... u)
{
return *new (yyas_<T> ()) T (std::forward <U>(u)...);
}
# else
/// Instantiate an empty \a T in here.
template <typename T>
T&
emplace ()
{
return *new (yyas_<T> ()) T ();
}
/// Instantiate a \a T in here from \a t.
template <typename T>
T&
emplace (const T& t)
{
return *new (yyas_<T> ()) T (t);
}
# endif
/// Instantiate an empty \a T in here.
/// Obsolete, use emplace.
template <typename T>
T&
build ()
{
return emplace<T> ();
}
/// Instantiate a \a T in here from \a t.
/// Obsolete, use emplace.
template <typename T>
T&
build (const T& t)
{
return emplace<T> (t);
}
/// Accessor to a built \a T.
template <typename T>
T&
as () YY_NOEXCEPT
{
return *yyas_<T> ();
}
/// Const accessor to a built \a T (for %printer).
template <typename T>
const T&
as () const YY_NOEXCEPT
{
return *yyas_<T> ();
}
/// Swap the content with \a that, of same type.
///
/// Both variants must be built beforehand, because swapping the actual
/// data requires reading it (with as()), and this is not possible on
/// unconstructed variants: it would require some dynamic testing, which
/// should not be the variant's responsibility.
/// Swapping between built and (possibly) non-built is done with
/// self_type::move ().
template <typename T>
void
swap (self_type& that) YY_NOEXCEPT
{
std::swap (as<T> (), that.as<T> ());
}
/// Move the content of \a that to this.
///
/// Destroys \a that.
template <typename T>
void
move (self_type& that)
{
# if 201103L <= YY_CPLUSPLUS
emplace<T> (std::move (that.as<T> ()));
# else
emplace<T> ();
swap<T> (that);
# endif
that.destroy<T> ();
}
# if 201103L <= YY_CPLUSPLUS
/// Move the content of \a that to this.
template <typename T>
void
move (self_type&& that)
{
emplace<T> (std::move (that.as<T> ()));
that.destroy<T> ();
}
#endif
/// Copy the content of \a that to this.
template <typename T>
void
copy (const self_type& that)
{
emplace<T> (that.as<T> ());
}
/// Destroy the stored \a T.
template <typename T>
void
destroy ()
{
as<T> ().~T ();
}
private:
/// Prohibit blind copies.
self_type& operator= (const self_type&);
semantic_type (const self_type&);
/// Accessor to raw memory as \a T.
template <typename T>
T*
yyas_ () YY_NOEXCEPT
{
void *yyp = yybuffer_.yyraw;
return static_cast<T*> (yyp);
}
/// Const accessor to raw memory as \a T.
template <typename T>
const T*
yyas_ () const YY_NOEXCEPT
{
const void *yyp = yybuffer_.yyraw;
return static_cast<const T*> (yyp);
}
/// An auxiliary type to compute the largest semantic type.
union union_type
{
// "integer"
char dummy1[sizeof (long long)];
// block_elements
char dummy2[sizeof (ptr_list_of<block_item_t>)];
// const_array_elements
// real_const_array_elements
char dummy3[sizeof (ptr_list_of<const_init_val_t>)];
// array_dims
// array_dims_func_param
// array_dims_func_param_real
// array_indices
// func_r_params_elements
char dummy4[sizeof (ptr_list_of<expr>)];
// init_array_elements
// real_init_array_elements
char dummy5[sizeof (ptr_list_of<init_val_t>)];
// var_def_list
char dummy6[sizeof (ptr_list_of<var_def_t>)];
// b_type
char dummy7[sizeof (std::shared_ptr<b_type_t>)];
// block_item
char dummy8[sizeof (std::shared_ptr<block_item_t>)];
// block
char dummy9[sizeof (std::shared_ptr<block_t>)];
// comp_unit_item
char dummy10[sizeof (std::shared_ptr<comp_unit_item_t>)];
// start_symbol
// comp_unit
char dummy11[sizeof (std::shared_ptr<comp_unit_t>)];
// const_decl
// const_decl_stmt
char dummy12[sizeof (std::shared_ptr<const_decl_t>)];
// const_def
char dummy13[sizeof (std::shared_ptr<const_def_t>)];
// const_init_val
char dummy14[sizeof (std::shared_ptr<const_init_val_t>)];
// decl
char dummy15[sizeof (std::shared_ptr<decl_t>)];
// exp
// cond
// primary_exp
// unary_exp
// mul_exp
// add_exp
// rel_exp
// eq_exp
// l_and_exp
// l_or_exp
// const_exp
char dummy16[sizeof (std::shared_ptr<expr>)];
// func_def
char dummy17[sizeof (std::shared_ptr<func_def_t>)];
// func_f_param
char dummy18[sizeof (std::shared_ptr<func_f_param_t>)];
// func_f_params
// real_func_f_params
char dummy19[sizeof (std::shared_ptr<func_f_params_t>)];
// func_r_params
char dummy20[sizeof (std::shared_ptr<func_r_params_t>)];
// init_val
char dummy21[sizeof (std::shared_ptr<init_val_t>)];
// l_val
char dummy22[sizeof (std::shared_ptr<l_val_t>)];
// number
char dummy23[sizeof (std::shared_ptr<number_literal_t>)];
// stmt
char dummy24[sizeof (std::shared_ptr<stmt_t>)];
// var_decl
char dummy25[sizeof (std::shared_ptr<var_decl_t>)];
// var_def
char dummy26[sizeof (std::shared_ptr<var_def_t>)];
// "identifier"
// ident
char dummy27[sizeof (std::string)];
};
/// The size of the largest semantic type.
enum { size = sizeof (union_type) };
/// A buffer to store semantic values.
union
{
/// Strongest alignment constraints.
long double yyalign_me;
/// A buffer large enough to store any of the semantic values.
char yyraw[size];
} yybuffer_;
};
#else
typedef YYSTYPE semantic_type;
#endif
/// Syntax errors thrown from user actions.
struct syntax_error : std::runtime_error
{
syntax_error (const std::string& m)
: std::runtime_error (m)
{}
syntax_error (const syntax_error& s)
: std::runtime_error (s.what ())
{}
~syntax_error () YY_NOEXCEPT YY_NOTHROW;
};
/// Tokens.
struct token
{
enum yytokentype
{
YYEOF = 0,
INT_CONST = 258,
IDENT = 259,
VOID = 260,
INT = 261,
CONST = 262,
IF = 263,
ELSE = 264,
WHILE = 265,
BREAK = 266,
CONTINUE = 267,
RETURN = 268,
GE = 269,
LE = 270,
EQ = 271,
NE = 272,
AND = 273,
OR = 274,
GT = 275,
LT = 276,
ASSIGN = 277,
NOT = 278,
ADD = 279,
SUB = 280,
MUL = 281,
DIV = 282,
MOD = 283,
COMMA = 284,
SEMI = 285,
LEFT_PAREN = 286,
RIGHT_PAREN = 287,
LEFT_BRACKET = 288,
RIGHT_BRACKET = 289,
LEFT_BRACE = 290,
RIGHT_BRACE = 291
};
};
/// (External) token type, as returned by yylex.
typedef token::yytokentype token_type;
/// Symbol type: an internal symbol number.
typedef int symbol_number_type;
/// The symbol type number to denote an empty symbol.
enum { empty_symbol = -2 };
/// Internal symbol number for tokens (subsumed by symbol_number_type).
typedef signed char token_number_type;
/// A complete symbol.
///
/// Expects its Base type to provide access to the symbol type
/// via type_get ().
///
/// Provide access to semantic value.
template <typename Base>
struct basic_symbol : Base
{
/// Alias to Base.
typedef Base super_type;
/// Default constructor.
basic_symbol ()
: value ()
{}
#if 201103L <= YY_CPLUSPLUS
/// Move constructor.
basic_symbol (basic_symbol&& that);
#endif
/// Copy constructor.
basic_symbol (const basic_symbol& that);
/// Constructor for valueless symbols, and symbols from each type.
#if 201103L <= YY_CPLUSPLUS
basic_symbol (typename Base::kind_type t)
: Base (t)
{}
#else
basic_symbol (typename Base::kind_type t)
: Base (t)
{}
#endif
#if 201103L <= YY_CPLUSPLUS
basic_symbol (typename Base::kind_type t, long long&& v)
: Base (t)
, value (std::move (v))
{}
#else
basic_symbol (typename Base::kind_type t, const long long& v)
: Base (t)
, value (v)
{}
#endif
#if 201103L <= YY_CPLUSPLUS
basic_symbol (typename Base::kind_type t, ptr_list_of<block_item_t>&& v)
: Base (t)
, value (std::move (v))
{}
#else
basic_symbol (typename Base::kind_type t, const ptr_list_of<block_item_t>& v)
: Base (t)
, value (v)
{}
#endif
#if 201103L <= YY_CPLUSPLUS
basic_symbol (typename Base::kind_type t, ptr_list_of<const_init_val_t>&& v)
: Base (t)
, value (std::move (v))
{}
#else
basic_symbol (typename Base::kind_type t, const ptr_list_of<const_init_val_t>& v)
: Base (t)
, value (v)
{}
#endif
#if 201103L <= YY_CPLUSPLUS
basic_symbol (typename Base::kind_type t, ptr_list_of<expr>&& v)
: Base (t)
, value (std::move (v))
{}
#else
basic_symbol (typename Base::kind_type t, const ptr_list_of<expr>& v)
: Base (t)
, value (v)
{}
#endif
#if 201103L <= YY_CPLUSPLUS
basic_symbol (typename Base::kind_type t, ptr_list_of<init_val_t>&& v)
: Base (t)
, value (std::move (v))
{}
#else
basic_symbol (typename Base::kind_type t, const ptr_list_of<init_val_t>& v)
: Base (t)
, value (v)
{}
#endif
#if 201103L <= YY_CPLUSPLUS
basic_symbol (typename Base::kind_type t, ptr_list_of<var_def_t>&& v)
: Base (t)
, value (std::move (v))
{}
#else
basic_symbol (typename Base::kind_type t, const ptr_list_of<var_def_t>& v)
: Base (t)
, value (v)
{}
#endif
#if 201103L <= YY_CPLUSPLUS
basic_symbol (typename Base::kind_type t, std::shared_ptr<b_type_t>&& v)
: Base (t)
, value (std::move (v))
{}
#else
basic_symbol (typename Base::kind_type t, const std::shared_ptr<b_type_t>& v)
: Base (t)
, value (v)
{}
#endif
#if 201103L <= YY_CPLUSPLUS
basic_symbol (typename Base::kind_type t, std::shared_ptr<block_item_t>&& v)
: Base (t)
, value (std::move (v))
{}
#else
basic_symbol (typename Base::kind_type t, const std::shared_ptr<block_item_t>& v)
: Base (t)
, value (v)
{}
#endif
#if 201103L <= YY_CPLUSPLUS
basic_symbol (typename Base::kind_type t, std::shared_ptr<block_t>&& v)
: Base (t)
, value (std::move (v))
{}
#else
basic_symbol (typename Base::kind_type t, const std::shared_ptr<block_t>& v)
: Base (t)
, value (v)
{}
#endif
#if 201103L <= YY_CPLUSPLUS
basic_symbol (typename Base::kind_type t, std::shared_ptr<comp_unit_item_t>&& v)
: Base (t)
, value (std::move (v))
{}
#else
basic_symbol (typename Base::kind_type t, const std::shared_ptr<comp_unit_item_t>& v)
: Base (t)
, value (v)
{}
#endif
#if 201103L <= YY_CPLUSPLUS
basic_symbol (typename Base::kind_type t, std::shared_ptr<comp_unit_t>&& v)
: Base (t)
, value (std::move (v))
{}
#else
basic_symbol (typename Base::kind_type t, const std::shared_ptr<comp_unit_t>& v)
: Base (t)
, value (v)
{}
#endif
#if 201103L <= YY_CPLUSPLUS
basic_symbol (typename Base::kind_type t, std::shared_ptr<const_decl_t>&& v)
: Base (t)
, value (std::move (v))
{}
#else
basic_symbol (typename Base::kind_type t, const std::shared_ptr<const_decl_t>& v)
: Base (t)
, value (v)
{}
#endif
#if 201103L <= YY_CPLUSPLUS
basic_symbol (typename Base::kind_type t, std::shared_ptr<const_def_t>&& v)
: Base (t)
, value (std::move (v))
{}
#else
basic_symbol (typename Base::kind_type t, const std::shared_ptr<const_def_t>& v)
: Base (t)
, value (v)
{}
#endif
#if 201103L <= YY_CPLUSPLUS
basic_symbol (typename Base::kind_type t, std::shared_ptr<const_init_val_t>&& v)
: Base (t)
, value (std::move (v))
{}
#else
basic_symbol (typename Base::kind_type t, const std::shared_ptr<const_init_val_t>& v)
: Base (t)
, value (v)
{}
#endif
#if 201103L <= YY_CPLUSPLUS
basic_symbol (typename Base::kind_type t, std::shared_ptr<decl_t>&& v)
: Base (t)
, value (std::move (v))
{}
#else
basic_symbol (typename Base::kind_type t, const std::shared_ptr<decl_t>& v)
: Base (t)
, value (v)
{}
#endif
#if 201103L <= YY_CPLUSPLUS
basic_symbol (typename Base::kind_type t, std::shared_ptr<expr>&& v)
: Base (t)
, value (std::move (v))
{}
#else
basic_symbol (typename Base::kind_type t, const std::shared_ptr<expr>& v)
: Base (t)
, value (v)
{}
#endif
#if 201103L <= YY_CPLUSPLUS
basic_symbol (typename Base::kind_type t, std::shared_ptr<func_def_t>&& v)
: Base (t)
, value (std::move (v))
{}
#else
basic_symbol (typename Base::kind_type t, const std::shared_ptr<func_def_t>& v)
: Base (t)
, value (v)
{}
#endif
#if 201103L <= YY_CPLUSPLUS
basic_symbol (typename Base::kind_type t, std::shared_ptr<func_f_param_t>&& v)
: Base (t)
, value (std::move (v))
{}
#else
basic_symbol (typename Base::kind_type t, const std::shared_ptr<func_f_param_t>& v)
: Base (t)
, value (v)
{}
#endif
#if 201103L <= YY_CPLUSPLUS
basic_symbol (typename Base::kind_type t, std::shared_ptr<func_f_params_t>&& v)
: Base (t)
, value (std::move (v))
{}
#else
basic_symbol (typename Base::kind_type t, const std::shared_ptr<func_f_params_t>& v)
: Base (t)
, value (v)
{}
#endif
#if 201103L <= YY_CPLUSPLUS
basic_symbol (typename Base::kind_type t, std::shared_ptr<func_r_params_t>&& v)
: Base (t)
, value (std::move (v))
{}
#else
basic_symbol (typename Base::kind_type t, const std::shared_ptr<func_r_params_t>& v)
: Base (t)
, value (v)
{}
#endif
#if 201103L <= YY_CPLUSPLUS
basic_symbol (typename Base::kind_type t, std::shared_ptr<init_val_t>&& v)
: Base (t)
, value (std::move (v))
{}
#else
basic_symbol (typename Base::kind_type t, const std::shared_ptr<init_val_t>& v)
: Base (t)
, value (v)
{}
#endif
#if 201103L <= YY_CPLUSPLUS
basic_symbol (typename Base::kind_type t, std::shared_ptr<l_val_t>&& v)
: Base (t)
, value (std::move (v))
{}
#else
basic_symbol (typename Base::kind_type t, const std::shared_ptr<l_val_t>& v)
: Base (t)
, value (v)
{}
#endif
#if 201103L <= YY_CPLUSPLUS
basic_symbol (typename Base::kind_type t, std::shared_ptr<number_literal_t>&& v)
: Base (t)
, value (std::move (v))
{}
#else
basic_symbol (typename Base::kind_type t, const std::shared_ptr<number_literal_t>& v)
: Base (t)
, value (v)
{}
#endif
#if 201103L <= YY_CPLUSPLUS
basic_symbol (typename Base::kind_type t, std::shared_ptr<stmt_t>&& v)
: Base (t)
, value (std::move (v))
{}
#else
basic_symbol (typename Base::kind_type t, const std::shared_ptr<stmt_t>& v)
: Base (t)
, value (v)
{}
#endif
#if 201103L <= YY_CPLUSPLUS
basic_symbol (typename Base::kind_type t, std::shared_ptr<var_decl_t>&& v)
: Base (t)
, value (std::move (v))
{}
#else
basic_symbol (typename Base::kind_type t, const std::shared_ptr<var_decl_t>& v)
: Base (t)
, value (v)
{}
#endif
#if 201103L <= YY_CPLUSPLUS
basic_symbol (typename Base::kind_type t, std::shared_ptr<var_def_t>&& v)
: Base (t)
, value (std::move (v))
{}
#else
basic_symbol (typename Base::kind_type t, const std::shared_ptr<var_def_t>& v)
: Base (t)
, value (v)
{}
#endif
#if 201103L <= YY_CPLUSPLUS
basic_symbol (typename Base::kind_type t, std::string&& v)
: Base (t)
, value (std::move (v))
{}
#else
basic_symbol (typename Base::kind_type t, const std::string& v)
: Base (t)
, value (v)
{}
#endif
/// Destroy the symbol.
~basic_symbol ()
{
clear ();
}
/// Destroy contents, and record that is empty.
void clear ()
{
// User destructor.
symbol_number_type yytype = this->type_get ();
basic_symbol<Base>& yysym = *this;
(void) yysym;
switch (yytype)
{
default:
break;
}
// Type destructor.
switch (yytype)
{
case 3: // "integer"
value.template destroy< long long > ();
break;
case 63: // block_elements
value.template destroy< ptr_list_of<block_item_t> > ();
break;
case 48: // const_array_elements
case 49: // real_const_array_elements
value.template destroy< ptr_list_of<const_init_val_t> > ();
break;
case 46: // array_dims
case 60: // array_dims_func_param
case 61: // array_dims_func_param_real
case 70: // array_indices
case 75: // func_r_params_elements
value.template destroy< ptr_list_of<expr> > ();
break;
case 54: // init_array_elements
case 55: // real_init_array_elements
value.template destroy< ptr_list_of<init_val_t> > ();
break;
case 51: // var_def_list
value.template destroy< ptr_list_of<var_def_t> > ();
break;
case 44: // b_type
value.template destroy< std::shared_ptr<b_type_t> > ();
break;
case 64: // block_item
value.template destroy< std::shared_ptr<block_item_t> > ();
break;
case 62: // block
value.template destroy< std::shared_ptr<block_t> > ();
break;
case 40: // comp_unit_item
value.template destroy< std::shared_ptr<comp_unit_item_t> > ();
break;
case 38: // start_symbol
case 39: // comp_unit
value.template destroy< std::shared_ptr<comp_unit_t> > ();
break;
case 42: // const_decl
case 43: // const_decl_stmt
value.template destroy< std::shared_ptr<const_decl_t> > ();
break;
case 45: // const_def
value.template destroy< std::shared_ptr<const_def_t> > ();
break;
case 47: // const_init_val
value.template destroy< std::shared_ptr<const_init_val_t> > ();
break;
case 41: // decl
value.template destroy< std::shared_ptr<decl_t> > ();
break;
case 67: // exp
case 68: // cond
case 71: // primary_exp
case 73: // unary_exp
case 76: // mul_exp
case 77: // add_exp
case 78: // rel_exp
case 79: // eq_exp
case 80: // l_and_exp
case 81: // l_or_exp
case 82: // const_exp
value.template destroy< std::shared_ptr<expr> > ();
break;
case 56: // func_def
value.template destroy< std::shared_ptr<func_def_t> > ();
break;
case 59: // func_f_param
value.template destroy< std::shared_ptr<func_f_param_t> > ();
break;