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boost_unordered/test/unordered/assign_tests.cpp

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// Copyright 2006-2007 Daniel James.
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#include <boost/unordered_set.hpp>
#include <boost/unordered_map.hpp>
#include <boost/detail/lightweight_test.hpp>
#include "../objects/test.hpp"
#include "../helpers/random_values.hpp"
#include "../helpers/tracker.hpp"
#include "../helpers/equivalent.hpp"
#include <iostream>
template <class T>
void assign_tests1(T* = 0)
{
typename T::hasher hf;
typename T::key_equal eq;
std::cerr<<"assign_tests1.1\n";
{
T x;
x = x;
BOOST_TEST(x.empty());
BOOST_TEST(test::equivalent(x.hash_function(), hf));
BOOST_TEST(test::equivalent(x.key_eq(), eq));
}
std::cerr<<"assign_tests1.2\n";
{
test::random_values<T> v(1000);
T x(v.begin(), v.end());
test::ordered<T> tracker = test::create_ordered(x);
tracker.insert_range(v.begin(), v.end());
x = x;
tracker.compare(x);
T y;
y.max_load_factor(x.max_load_factor() / 20);
y = x;
tracker.compare(y);
BOOST_TEST(x.max_load_factor() == y.max_load_factor());
}
}
template <class T>
void assign_tests2(T* = 0)
{
typename T::hasher hf1(1);
typename T::hasher hf2(2);
typename T::key_equal eq1(1);
typename T::key_equal eq2(2);
typename T::allocator_type al1(1);
typename T::allocator_type al2(2);
std::cerr<<"assign_tests2.1\n";
{
test::random_values<T> v(1000);
T x1(v.begin(), v.end(), 0, hf1, eq1);
T x2(0, hf2, eq2);
x2 = x1;
BOOST_TEST(test::equivalent(x2.hash_function(), hf1));
BOOST_TEST(test::equivalent(x2.key_eq(), eq1));
test::check_container(x2, v);
}
std::cerr<<"assign_tests2.2\n";
{
test::random_values<T> v1(100), v2(100);
T x1(v1.begin(), v1.end(), 0, hf1, eq1, al1);
T x2(v2.begin(), v2.end(), 0, hf2, eq2, al2);
x2 = x1;
BOOST_TEST(test::equivalent(x2.hash_function(), hf1));
BOOST_TEST(test::equivalent(x2.key_eq(), eq1));
BOOST_TEST(test::equivalent(x2.get_allocator(), al2));
test::check_container(x2, v1);
}
}
int main()
{
assign_tests1((boost::unordered_set<int>*) 0);
assign_tests1((boost::unordered_multiset<int>*) 0);
assign_tests1((boost::unordered_map<int, int>*) 0);
assign_tests1((boost::unordered_multimap<int, int>*) 0);
assign_tests1((boost::unordered_set<test::object, test::hash, test::equal_to, test::allocator<test::object> >*) 0);
assign_tests1((boost::unordered_multiset<test::object, test::hash, test::equal_to, test::allocator<test::object> >*) 0);
assign_tests1((boost::unordered_map<test::object, test::object, test::hash, test::equal_to, test::allocator<test::object> >*) 0);
assign_tests1((boost::unordered_multimap<test::object, test::object, test::hash, test::equal_to, test::allocator<test::object> >*) 0);
assign_tests1((boost::unordered_set<test::equivalent_object, test::hash, test::equal_to, test::allocator<test::equivalent_object> >*) 0);
assign_tests1((boost::unordered_multiset<test::equivalent_object, test::hash, test::equal_to, test::allocator<test::equivalent_object> >*) 0);
assign_tests1((boost::unordered_map<test::equivalent_object, test::equivalent_object, test::hash, test::equal_to, test::allocator<test::equivalent_object> >*) 0);
assign_tests1((boost::unordered_multimap<test::equivalent_object, test::equivalent_object, test::hash, test::equal_to, test::allocator<test::equivalent_object> >*) 0);
assign_tests2((boost::unordered_set<test::object, test::hash, test::equal_to, test::allocator<test::object> >*) 0);
assign_tests2((boost::unordered_multiset<test::equivalent_object, test::hash, test::equal_to, test::allocator<test::equivalent_object> >*) 0);
assign_tests2((boost::unordered_map<test::equivalent_object, test::equivalent_object, test::hash, test::equal_to, test::allocator<test::equivalent_object> >*) 0);
assign_tests2((boost::unordered_multimap<test::object, test::object, test::hash, test::equal_to, test::allocator<test::object> >*) 0);
return boost::report_errors();
}