我正在寻找一种方法来创建一个Boost.Fusion序列包装器,它本身就是一个Fusion序列,并将所有'调用'转发到它的包装序列.有些东西
template< typename Sequence >
struct sequence_wrapper
{
explicit sequence_wrapper( Sequence const& s ) : seq( s ){}
Sequence seq;
};
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这里sequence_wrapper< Sequence >是一个融合序列以及和作品一样Sequence会.我需要这个的原因是我有几个函数在Fusion序列上运行(所有元素都满足一些特殊要求),我想添加一些语法糖,我需要一个自定义类型来添加重载运算符.我不需要sequence_wrapper上的操作结果来返回sequence_wrapper,只有语法糖相关的调用才会返回(手动)包装的序列.例如,使用逗号运算符将元素附加到序列(有点像Boost.Assign for Fusion序列):
template< typename Sequence, typename T >
sequence_wrapper<
typename boost::fusion::result_of::push_back<
Sequence const&
, T
>::type
> operator ,( Sequence const& seq, T const& v )
{
return
sequence_wrapper<
typename boost::fusion::result_of::push_back<
Sequence const&
, T
>::type
>( boost::fusion::push_back( seq, v ) )
;
}
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实现这一目标的最佳方法是什么(如果它确实得到了图书馆的支持)?我特别想避免从头开始创建Fusion序列,因为我想使用Fusion操作返回的任何序列.将继承+特化tag_of返回包装序列的标签只是工作吗?或者我是否需要定义自己的标签并实现所有必需的功能才能转发呼叫?
这就是我最终所做的:
template<
typename Derived
, typename Sequence
, typename TraversalTag =
typename boost::fusion::traits::category_of< Sequence >::type
, typename IsView =
typename boost::fusion::traits::is_view< Sequence >::type
>
class fusion_sequence_wrapper
: public boost::fusion::sequence_facade< Derived, TraversalTag, IsView >
{
typedef Sequence base_sequence_type;
public:
explicit fusion_sequence_wrapper( base_sequence_type const& sequence )
: _seq( sequence )
{}
base_sequence_type const& base() const
{
return _seq;
}
base_sequence_type& base()
{
return _seq;
}
public:
template< typename Seq >
struct begin
{
typedef
typename boost::fusion::result_of::begin<
typename boost::mpl::if_<
boost::is_const< Seq >
, base_sequence_type const
, base_sequence_type
>::type
>::type type;
static type call( Seq& s ){ return boost::fusion::begin( s._seq ); }
};
template< typename Seq >
struct end
{
typedef
typename boost::fusion::result_of::end<
typename boost::mpl::if_<
boost::is_const< Seq >
, base_sequence_type const
, base_sequence_type
>::type
>::type type;
static type call( Seq& s ){ return boost::fusion::end( s._seq ); }
};
template< typename Seq >
struct size
{
typedef
typename boost::fusion::result_of::size<
typename boost::mpl::if_<
boost::is_const< Seq >
, base_sequence_type const
, base_sequence_type
>::type
>::type type;
static type call( Seq& s ){ return boost::fusion::size( s._seq ); }
};
template< typename Seq >
struct empty
{
typedef
typename boost::fusion::result_of::empty<
typename boost::mpl::if_<
boost::is_const< Seq >
, base_sequence_type const
, base_sequence_type
>::type
>::type type;
static type call( Seq& s ){ return boost::fusion::empty( s._seq ); }
};
template< typename Seq, typename N >
struct at
{
typedef
typename boost::fusion::result_of::at<
typename boost::mpl::if_<
boost::is_const< Seq >
, base_sequence_type const
, base_sequence_type
>::type
, N
>::type type;
static type call( Seq& s ){ return boost::fusion::at( s._seq ); }
};
template< typename Seq, typename N >
struct value_at
{
typedef
typename boost::fusion::result_of::value_at<
typename boost::mpl::if_<
boost::is_const< Seq >
, base_sequence_type const
, base_sequence_type
>::type
, N
>::type type;
};
private:
base_sequence_type _seq;
};
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