#ifndef BOOST_COMPUTE_ITERATOR_DISCARD_ITERATOR_HPP
#define BOOST_COMPUTE_ITERATOR_DISCARD_ITERATOR_HPP
#include <string>
#include <cstddef>
#include <iterator>
#include <boost/config.hpp>
#include <boost/iterator/iterator_facade.hpp>
#include <boost/compute/detail/meta_kernel.hpp>
#include <boost/compute/type_traits/is_device_iterator.hpp>
namespace boost {
namespace compute {
class discard_iterator;
namespace detail {
struct discard_iterator_base
{
typedef ::boost::iterator_facade<
::boost::compute::discard_iterator,
void,
::std::random_access_iterator_tag,
void *
> type;
};
template<class IndexExpr>
struct discard_iterator_index_expr
{
typedef void result_type;
discard_iterator_index_expr(const IndexExpr &expr)
: m_expr(expr)
{
}
IndexExpr m_expr;
};
template<class IndexExpr>
inline meta_kernel& operator<<(meta_kernel &kernel,
const discard_iterator_index_expr<IndexExpr> &expr)
{
(void) expr;
return kernel;
}
}
class discard_iterator : public detail::discard_iterator_base::type
{
public:
typedef detail::discard_iterator_base::type super_type;
typedef super_type::reference reference;
typedef super_type::difference_type difference_type;
discard_iterator(size_t index = 0)
: m_index(index)
{
}
discard_iterator(const discard_iterator &other)
: m_index(other.m_index)
{
}
discard_iterator& operator=(const discard_iterator &other)
{
if(this != &other){
m_index = other.m_index;
}
return *this;
}
~discard_iterator()
{
}
template<class Expr>
detail::discard_iterator_index_expr<Expr>
operator[](const Expr &expr) const
{
return detail::discard_iterator_index_expr<Expr>(expr);
}
private:
friend class ::boost::iterator_core_access;
reference dereference() const
{
return 0;
}
bool equal(const discard_iterator &other) const
{
return m_index == other.m_index;
}
void increment()
{
m_index++;
}
void decrement()
{
m_index--;
}
void advance(difference_type n)
{
m_index = static_cast<size_t>(static_cast<difference_type>(m_index) + n);
}
difference_type distance_to(const discard_iterator &other) const
{
return static_cast<difference_type>(other.m_index - m_index);
}
private:
size_t m_index;
};
inline discard_iterator make_discard_iterator(size_t index = 0)
{
return discard_iterator(index);
}
template<>
struct is_device_iterator<discard_iterator> : boost::true_type {};
} }
#endif