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//===----------------------------------------------------------------------===//
//
// The LLVM Compiler Infrastructure
//
// This file is dual licensed under the MIT and the University of Illinois Open
// Source Licenses. See LICENSE.TXT for details.
//
//===----------------------------------------------------------------------===//
// <unordered_set>
// template <class Value, class Hash = hash<Value>, class Pred = equal_to<Value>,
// class Alloc = allocator<Value>>
// class unordered_multiset
// unordered_multiset(size_type n, const hasher& hf, const key_equal& eql, const allocator_type& a);
#include <unordered_set>
#include <cassert>
#include "../../../NotConstructible.h"
#include "../../../test_compare.h"
#include "../../../test_hash.h"
#include "test_allocator.h"
#include "min_allocator.h"
int main()
{
{
typedef std::unordered_multiset<NotConstructible,
test_hash<std::hash<NotConstructible> >,
test_compare<std::equal_to<NotConstructible> >,
test_allocator<NotConstructible>
> C;
C c(7,
test_hash<std::hash<NotConstructible> >(8),
test_compare<std::equal_to<NotConstructible> >(9),
test_allocator<std::pair<const NotConstructible, NotConstructible> >(10)
);
assert(c.bucket_count() == 7);
assert(c.hash_function() == test_hash<std::hash<NotConstructible> >(8));
assert(c.key_eq() == test_compare<std::equal_to<NotConstructible> >(9));
assert(c.get_allocator() == (test_allocator<NotConstructible>(10)));
assert(c.size() == 0);
assert(c.empty());
assert(std::distance(c.begin(), c.end()) == 0);
assert(c.load_factor() == 0);
assert(c.max_load_factor() == 1);
}
#if __cplusplus >= 201103L
{
typedef std::unordered_multiset<NotConstructible,
test_hash<std::hash<NotConstructible> >,
test_compare<std::equal_to<NotConstructible> >,
min_allocator<NotConstructible>
> C;
C c(7,
test_hash<std::hash<NotConstructible> >(8),
test_compare<std::equal_to<NotConstructible> >(9),
min_allocator<std::pair<const NotConstructible, NotConstructible> >()
);
assert(c.bucket_count() == 7);
assert(c.hash_function() == test_hash<std::hash<NotConstructible> >(8));
assert(c.key_eq() == test_compare<std::equal_to<NotConstructible> >(9));
assert(c.get_allocator() == (min_allocator<NotConstructible>()));
assert(c.size() == 0);
assert(c.empty());
assert(std::distance(c.begin(), c.end()) == 0);
assert(c.load_factor() == 0);
assert(c.max_load_factor() == 1);
}
#endif
}