#ifndef BOOST_SERIALIZATION_TEST_B_HPP
#define BOOST_SERIALIZATION_TEST_B_HPP
#if defined(_MSC_VER)
# pragma once
#endif
#include <cstdlib>
#include <boost/config.hpp>
#if defined(BOOST_NO_STDC_NAMESPACE)
namespace std{
using ::rand;
}
#endif
#include <boost/serialization/version.hpp>
#include <boost/serialization/split_member.hpp>
#include <boost/serialization/base_object.hpp>
#include "A.hpp"
class B : public A
{
private:
friend class boost::serialization::access;
template<class Archive>
void save(Archive &ar, const unsigned int ) const
{
ar << BOOST_SERIALIZATION_BASE_OBJECT_NVP(A);
ar << BOOST_SERIALIZATION_NVP(s);
ar << BOOST_SERIALIZATION_NVP(t);
ar << BOOST_SERIALIZATION_NVP(u);
ar << BOOST_SERIALIZATION_NVP(v);
ar << BOOST_SERIALIZATION_NVP(w);
ar << BOOST_SERIALIZATION_NVP(x);
}
template<class Archive>
void load(Archive & ar, const unsigned int file_version)
{
ar >> BOOST_SERIALIZATION_BASE_OBJECT_NVP(A);
switch(file_version){
case 1:
case 2:
ar >> BOOST_SERIALIZATION_NVP(s);
ar >> BOOST_SERIALIZATION_NVP(t);
ar >> BOOST_SERIALIZATION_NVP(u);
ar >> BOOST_SERIALIZATION_NVP(v);
ar >> BOOST_SERIALIZATION_NVP(w);
ar >> BOOST_SERIALIZATION_NVP(x);
default:
break;
}
}
BOOST_SERIALIZATION_SPLIT_MEMBER()
signed char s;
unsigned char t;
signed int u;
unsigned int v;
float w;
double x;
public:
B();
virtual ~B(){};
bool operator==(const B &rhs) const;
};
B::B() :
s(std::rand()),
t(std::rand()),
u(std::rand()),
v(std::rand()),
w((float)std::rand() / std::rand()),
x((double)std::rand() / std::rand())
{
}
BOOST_CLASS_VERSION(B, 2)
inline bool B::operator==(const B &rhs) const
{
return
A::operator==(rhs)
&& s == rhs.s
&& t == rhs.t
&& u == rhs.u
&& v == rhs.v
&& std::abs( boost::math::float_distance(w, rhs.w)) < 2
&& std::abs( boost::math::float_distance(x, rhs.x)) < 2
;
}
#endif