#include <algorithm>
#include <array>
#include <cassert>
#include <climits>
#include <functional>
#include <map>
#include <type_traits>
#include "deduction_guides_sfinae_checks.h"
#include "test_allocator.h"
using P = std::pair<int, long>;
using PC = std::pair<const int, long>;
int main(int, char**)
{
{
const P arr[] = { {1,1L}, {2,2L}, {1,1L}, {INT_MAX,1L}, {3,1L} };
std::multimap m(std::begin(arr), std::end(arr));
ASSERT_SAME_TYPE(decltype(m), std::multimap<int, long>);
const PC expected_m[] = { {1,1L}, {1,1L}, {2,2L}, {3,1L}, {INT_MAX,1L} };
assert(std::equal(m.begin(), m.end(), std::begin(expected_m), std::end(expected_m)));
}
{
const P arr[] = { {1,1L}, {2,2L}, {1,1L}, {INT_MAX,1L}, {3,1L} };
std::multimap m(std::begin(arr), std::end(arr), std::greater<int>());
ASSERT_SAME_TYPE(decltype(m), std::multimap<int, long, std::greater<int>>);
const PC expected_m[] = { {INT_MAX,1L}, {3,1L}, {2,2L}, {1,1L}, {1,1L} };
assert(std::equal(m.begin(), m.end(), std::begin(expected_m), std::end(expected_m)));
}
{
const P arr[] = { {1,1L}, {2,2L}, {1,1L}, {INT_MAX,1L}, {3,1L} };
std::multimap m(std::begin(arr), std::end(arr), std::greater<int>(), test_allocator<PC>(0, 42));
ASSERT_SAME_TYPE(decltype(m), std::multimap<int, long, std::greater<int>, test_allocator<PC>>);
const PC expected_m[] = { {INT_MAX,1L}, {3,1L}, {2,2L}, {1,1L}, {1,1L} };
assert(std::equal(m.begin(), m.end(), std::begin(expected_m), std::end(expected_m)));
assert(m.get_allocator().get_id() == 42);
}
{
std::multimap<int, long> source;
std::multimap m(source);
ASSERT_SAME_TYPE(decltype(m), decltype(source));
assert(m.size() == 0);
}
{
std::multimap<int, long> source;
std::multimap m{source};
ASSERT_SAME_TYPE(decltype(m), decltype(source));
assert(m.size() == 0);
}
{
std::multimap<int, long> source;
std::multimap m(source, std::map<int, long>::allocator_type());
ASSERT_SAME_TYPE(decltype(m), decltype(source));
assert(m.size() == 0);
}
{
std::multimap m{ P{1,1L}, P{2,2L}, P{1,1L}, P{INT_MAX,1L}, P{3,1L} };
ASSERT_SAME_TYPE(decltype(m), std::multimap<int, long>);
const PC expected_m[] = { {1,1L}, {1,1L}, {2,2L}, {3,1L}, {INT_MAX,1L} };
assert(std::equal(m.begin(), m.end(), std::begin(expected_m), std::end(expected_m)));
}
{
std::multimap m({ P{1,1L}, P{2,2L}, P{1,1L}, P{INT_MAX,1L}, P{3,1L} }, std::greater<int>());
ASSERT_SAME_TYPE(decltype(m), std::multimap<int, long, std::greater<int>>);
const PC expected_m[] = { {INT_MAX,1L}, {3,1L}, {2,2L}, {1,1L}, {1,1L} };
assert(std::equal(m.begin(), m.end(), std::begin(expected_m), std::end(expected_m)));
}
{
std::multimap m({ P{1,1L}, P{2,2L}, P{1,1L}, P{INT_MAX,1L}, P{3,1L} }, std::greater<int>(), test_allocator<PC>(0, 43));
ASSERT_SAME_TYPE(decltype(m), std::multimap<int, long, std::greater<int>, test_allocator<PC>>);
const PC expected_m[] = { {INT_MAX,1L}, {3,1L}, {2,2L}, {1,1L}, {1,1L} };
assert(std::equal(m.begin(), m.end(), std::begin(expected_m), std::end(expected_m)));
assert(m.get_allocator().get_id() == 43);
}
{
const P arr[] = { {1,1L}, {2,2L}, {1,1L}, {INT_MAX,1L}, {3,1L} };
std::multimap m(std::begin(arr), std::end(arr), test_allocator<PC>(0, 44));
ASSERT_SAME_TYPE(decltype(m), std::multimap<int, long, std::less<int>, test_allocator<PC>>);
const PC expected_m[] = { {1,1L}, {1,1L}, {2,2L}, {3,1L}, {INT_MAX,1L} };
assert(std::equal(m.begin(), m.end(), std::begin(expected_m), std::end(expected_m)));
assert(m.get_allocator().get_id() == 44);
}
{
std::multimap m({ P{1,1L}, P{2,2L}, P{1,1L}, P{INT_MAX,1L}, P{3,1L} }, test_allocator<PC>(0, 45));
ASSERT_SAME_TYPE(decltype(m), std::multimap<int, long, std::less<int>, test_allocator<PC>>);
const PC expected_m[] = { {1,1L}, {1,1L}, {2,2L}, {3,1L}, {INT_MAX,1L} };
assert(std::equal(m.begin(), m.end(), std::begin(expected_m), std::end(expected_m)));
assert(m.get_allocator().get_id() == 45);
}
{
std::multimap m{std::pair{1, 1}, {2, 2}, {3, 3}};
ASSERT_SAME_TYPE(decltype(m), std::multimap<int, int>);
std::multimap m2{m.begin(), m.end()};
ASSERT_SAME_TYPE(decltype(m2), std::multimap<int, int>);
}
{
std::multimap m1{{std::pair{1, 2}, {3, 4}}, std::less<int>()};
ASSERT_SAME_TYPE(decltype(m1), std::multimap<int, int>);
using value_type = std::pair<const int, int>;
std::multimap m2{{value_type{1, 2}, {3, 4}}, std::less<int>()};
ASSERT_SAME_TYPE(decltype(m2), std::multimap<int, int>);
}
#if TEST_STD_VER >= 23
{
using Range = std::array<P, 0>;
using Comp = std::greater<int>;
using DefaultComp = std::less<int>;
using Alloc = test_allocator<PC>;
{
std::multimap c(std::from_range, Range());
static_assert(std::is_same_v<decltype(c), std::multimap<int, long>>);
}
{
std::multimap c(std::from_range, Range(), Comp());
static_assert(std::is_same_v<decltype(c), std::multimap<int, long, Comp>>);
}
{
std::multimap c(std::from_range, Range(), Comp(), Alloc());
static_assert(std::is_same_v<decltype(c), std::multimap<int, long, Comp, Alloc>>);
}
{
std::multimap c(std::from_range, Range(), Alloc());
static_assert(std::is_same_v<decltype(c), std::multimap<int, long, DefaultComp, Alloc>>);
}
}
#endif
AssociativeContainerDeductionGuidesSfinaeAway<std::multimap, std::multimap<int, long>>();
return 0;
}