#ifndef BOOST_SERIALIZATION_STD_VARIANT_HPP
#define BOOST_SERIALIZATION_STD_VARIANT_HPP
#if defined(_MSC_VER)
# pragma once
#endif
#include <boost/serialization/throw_exception.hpp>
#include <variant>
#include <boost/archive/archive_exception.hpp>
#include <boost/serialization/split_free.hpp>
#include <boost/serialization/serialization.hpp>
#include <boost/serialization/nvp.hpp>
namespace boost {
namespace serialization {
template<class Archive>
struct std_variant_save_visitor
{
std_variant_save_visitor(Archive& ar) :
m_ar(ar)
{}
template<class T>
void operator()(T const & value) const
{
m_ar << BOOST_SERIALIZATION_NVP(value);
}
private:
Archive & m_ar;
};
template<class Archive>
struct std_variant_load_visitor
{
std_variant_load_visitor(Archive& ar) :
m_ar(ar)
{}
template<class T>
void operator()(T & value) const
{
m_ar >> BOOST_SERIALIZATION_NVP(value);
}
private:
Archive & m_ar;
};
template<class Archive, class ...Types>
void save(
Archive & ar,
std::variant<Types...> const & v,
unsigned int
){
const std::size_t which = v.index();
ar << BOOST_SERIALIZATION_NVP(which);
std_variant_save_visitor<Archive> visitor(ar);
std::visit(visitor, v);
}
namespace mp {
namespace detail {
template <typename Seq>
struct front_impl;
template <template <typename...> class Seq, typename T, typename... Ts>
struct front_impl<Seq<T, Ts...>> {
using type = T;
};
template <typename Seq>
struct pop_front_impl;
template <template <typename...> class Seq, typename T, typename... Ts>
struct pop_front_impl<Seq<T, Ts...>> {
using type = Seq<Ts...>;
};
}
template <typename... Ts>
struct typelist {};
template <typename Seq>
using front = typename detail::front_impl<Seq>::type;
template <typename Seq>
using pop_front = typename detail::pop_front_impl<Seq>::type;
}
template<std::size_t N, class Seq>
struct variant_impl
{
template<class Archive, class V>
static void load (
Archive & ar,
std::size_t which,
V & v,
const unsigned int version
){
if(which == 0){
using type = mp::front<Seq>;
type value;
ar >> BOOST_SERIALIZATION_NVP(value);
v = std::move(value);
type * new_address = & std::get<type>(v);
ar.reset_object_address(new_address, & value);
return;
}
using types = mp::pop_front<Seq>;
variant_impl<N - 1, types>::load(ar, which - 1, v, version);
}
};
template<class Seq>
struct variant_impl<0, Seq>
{
template<class Archive, class V>
static void load (
Archive & ,
std::size_t ,
V & ,
const unsigned int
){}
};
template<class Archive, class... Types>
void load(
Archive & ar,
std::variant<Types...>& v,
const unsigned int version
){
std::size_t which;
ar >> BOOST_SERIALIZATION_NVP(which);
if(which >= sizeof...(Types))
boost::serialization::throw_exception(
boost::archive::archive_exception(
boost::archive::archive_exception::unsupported_version
)
);
variant_impl<sizeof...(Types), mp::typelist<Types...>>::load(ar, which, v, version);
}
template<class Archive,class... Types>
inline void serialize(
Archive & ar,
std::variant<Types...> & v,
const unsigned int file_version
){
split_free(ar,v,file_version);
}
template<class Archive>
void serialize(Archive &, std::monostate &, const unsigned int )
{}
} }
#include <boost/serialization/tracking.hpp>
namespace boost {
namespace serialization {
template<class... Types>
struct tracking_level<
std::variant<Types...>
>{
typedef mpl::integral_c_tag tag;
typedef mpl::int_< ::boost::serialization::track_always> type;
BOOST_STATIC_CONSTANT(int, value = type::value);
};
} }
#endif