mirror of
https://github.com/BlackMATov/flat.hpp.git
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638 lines
25 KiB
C++
638 lines
25 KiB
C++
/*******************************************************************************
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* This file is part of the "https://github.com/blackmatov/flat.hpp"
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* For conditions of distribution and use, see copyright notice in LICENSE.md
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* Copyright (C) 2019-2023, by Matvey Cherevko (blackmatov@gmail.com)
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******************************************************************************/
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#include <flat.hpp/flat_multimap.hpp>
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#include "flat_tests.hpp"
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#include <deque>
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#include <string>
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#include <string_view>
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namespace
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{
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using namespace flat_hpp;
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template < typename T >
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class dummy_less {
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public:
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dummy_less() = default;
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dummy_less(int ni) noexcept : i(ni) {}
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bool operator()(const T& l, const T& r) const {
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return l < r;
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}
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int i = 0;
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};
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template < typename T >
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class dummy_less2 {
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dummy_less2() = default;
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dummy_less2(dummy_less2&&) noexcept(false) {}
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bool operator()(const T& l, const T& r) const {
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return l < r;
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}
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};
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template < typename T >
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[[maybe_unused]] void swap(dummy_less2<T>&, dummy_less2<T>&) noexcept {
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}
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template < typename T >
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class dummy_less3 {
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dummy_less3() = default;
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dummy_less3(dummy_less3&&) noexcept(false) {}
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bool operator()(const T& l, const T& r) const {
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return l < r;
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}
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};
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template < typename T >
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constexpr std::add_const_t<T>& my_as_const(T& t) noexcept {
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return t;
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}
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}
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TEST_CASE("flat_multimap") {
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SUBCASE("guides") {
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{
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std::vector<std::pair<int,unsigned>> vs;
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auto s0 = flat_multimap(vs.begin(), vs.end());
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auto s1 = flat_multimap(flat_hpp::sorted_range, vs.begin(), vs.end());
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auto s2 = flat_multimap(flat_hpp::sorted_unique_range, vs.begin(), vs.end());
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auto s3 = flat_multimap(vs.begin(), vs.end(), std::less<int>());
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auto s4 = flat_multimap(flat_hpp::sorted_range, vs.begin(), vs.end(), std::less<int>());
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auto s5 = flat_multimap(flat_hpp::sorted_unique_range, vs.begin(), vs.end(), std::less<int>());
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auto s6 = flat_multimap(vs.begin(), vs.end(), std::allocator<int>());
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auto s7 = flat_multimap(flat_hpp::sorted_range, vs.begin(), vs.end(), std::allocator<int>());
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auto s8 = flat_multimap(flat_hpp::sorted_unique_range, vs.begin(), vs.end(), std::allocator<int>());
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auto s9 = flat_multimap(vs.begin(), vs.end(), std::less<int>(), std::allocator<int>());
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auto s10 = flat_multimap(flat_hpp::sorted_range, vs.begin(), vs.end(), std::less<int>(), std::allocator<int>());
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auto s11 = flat_multimap(flat_hpp::sorted_unique_range, vs.begin(), vs.end(), std::less<int>(), std::allocator<int>());
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STATIC_REQUIRE(std::is_same_v<decltype(s0)::key_type, int>);
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STATIC_REQUIRE(std::is_same_v<decltype(s1)::key_type, int>);
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STATIC_REQUIRE(std::is_same_v<decltype(s2)::key_type, int>);
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STATIC_REQUIRE(std::is_same_v<decltype(s3)::key_type, int>);
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STATIC_REQUIRE(std::is_same_v<decltype(s4)::key_type, int>);
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STATIC_REQUIRE(std::is_same_v<decltype(s5)::key_type, int>);
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STATIC_REQUIRE(std::is_same_v<decltype(s6)::key_type, int>);
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STATIC_REQUIRE(std::is_same_v<decltype(s7)::key_type, int>);
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STATIC_REQUIRE(std::is_same_v<decltype(s8)::key_type, int>);
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STATIC_REQUIRE(std::is_same_v<decltype(s9)::key_type, int>);
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STATIC_REQUIRE(std::is_same_v<decltype(s10)::key_type, int>);
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STATIC_REQUIRE(std::is_same_v<decltype(s11)::key_type, int>);
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STATIC_REQUIRE(std::is_same_v<decltype(s0)::mapped_type, unsigned>);
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STATIC_REQUIRE(std::is_same_v<decltype(s1)::mapped_type, unsigned>);
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STATIC_REQUIRE(std::is_same_v<decltype(s2)::mapped_type, unsigned>);
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STATIC_REQUIRE(std::is_same_v<decltype(s3)::mapped_type, unsigned>);
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STATIC_REQUIRE(std::is_same_v<decltype(s4)::mapped_type, unsigned>);
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STATIC_REQUIRE(std::is_same_v<decltype(s5)::mapped_type, unsigned>);
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STATIC_REQUIRE(std::is_same_v<decltype(s6)::mapped_type, unsigned>);
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STATIC_REQUIRE(std::is_same_v<decltype(s7)::mapped_type, unsigned>);
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STATIC_REQUIRE(std::is_same_v<decltype(s8)::mapped_type, unsigned>);
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STATIC_REQUIRE(std::is_same_v<decltype(s9)::mapped_type, unsigned>);
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STATIC_REQUIRE(std::is_same_v<decltype(s10)::mapped_type, unsigned>);
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STATIC_REQUIRE(std::is_same_v<decltype(s11)::mapped_type, unsigned>);
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}
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{
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auto s1 = flat_multimap({std::pair{1,1u}, std::pair{2,2u}});
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auto s2 = flat_multimap(flat_hpp::sorted_range, {std::pair{1,1u}, std::pair{2,2u}});
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auto s3 = flat_multimap(flat_hpp::sorted_unique_range, {std::pair{1,1u}, std::pair{2,2u}});
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STATIC_REQUIRE(std::is_same_v<decltype(s1)::key_type, int>);
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STATIC_REQUIRE(std::is_same_v<decltype(s2)::key_type, int>);
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STATIC_REQUIRE(std::is_same_v<decltype(s3)::key_type, int>);
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STATIC_REQUIRE(std::is_same_v<decltype(s1)::mapped_type, unsigned>);
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STATIC_REQUIRE(std::is_same_v<decltype(s2)::mapped_type, unsigned>);
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STATIC_REQUIRE(std::is_same_v<decltype(s3)::mapped_type, unsigned>);
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}
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{
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auto s1 = flat_multimap({std::pair{1,1u}, std::pair{2,2u}}, std::less<int>());
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auto s2 = flat_multimap(flat_hpp::sorted_range, {std::pair{1,1u}, std::pair{2,2u}}, std::less<int>());
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auto s3 = flat_multimap(flat_hpp::sorted_unique_range, {std::pair{1,1u}, std::pair{2,2u}}, std::less<int>());
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STATIC_REQUIRE(std::is_same_v<decltype(s1)::key_type, int>);
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STATIC_REQUIRE(std::is_same_v<decltype(s2)::key_type, int>);
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STATIC_REQUIRE(std::is_same_v<decltype(s3)::key_type, int>);
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STATIC_REQUIRE(std::is_same_v<decltype(s1)::mapped_type, unsigned>);
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STATIC_REQUIRE(std::is_same_v<decltype(s2)::mapped_type, unsigned>);
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STATIC_REQUIRE(std::is_same_v<decltype(s3)::mapped_type, unsigned>);
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}
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{
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auto s1 = flat_multimap({std::pair{1,1u}, std::pair{2,2u}}, std::allocator<int>());
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auto s2 = flat_multimap(flat_hpp::sorted_range, {std::pair{1,1u}, std::pair{2,2u}}, std::allocator<int>());
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auto s3 = flat_multimap(flat_hpp::sorted_unique_range, {std::pair{1,1u}, std::pair{2,2u}}, std::allocator<int>());
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STATIC_REQUIRE(std::is_same_v<decltype(s1)::key_type, int>);
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STATIC_REQUIRE(std::is_same_v<decltype(s2)::key_type, int>);
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STATIC_REQUIRE(std::is_same_v<decltype(s3)::key_type, int>);
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STATIC_REQUIRE(std::is_same_v<decltype(s1)::mapped_type, unsigned>);
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STATIC_REQUIRE(std::is_same_v<decltype(s2)::mapped_type, unsigned>);
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STATIC_REQUIRE(std::is_same_v<decltype(s3)::mapped_type, unsigned>);
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}
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{
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auto s1 = flat_multimap({std::pair{1,1u}, std::pair{2,2u}}, std::less<int>(), std::allocator<int>());
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auto s2 = flat_multimap(flat_hpp::sorted_range, {std::pair{1,1u}, std::pair{2,2u}}, std::less<int>(), std::allocator<int>());
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auto s3 = flat_multimap(flat_hpp::sorted_unique_range, {std::pair{1,1u}, std::pair{2,2u}}, std::less<int>(), std::allocator<int>());
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STATIC_REQUIRE(std::is_same_v<decltype(s1)::key_type, int>);
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STATIC_REQUIRE(std::is_same_v<decltype(s2)::key_type, int>);
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STATIC_REQUIRE(std::is_same_v<decltype(s3)::key_type, int>);
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STATIC_REQUIRE(std::is_same_v<decltype(s1)::mapped_type, unsigned>);
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STATIC_REQUIRE(std::is_same_v<decltype(s2)::mapped_type, unsigned>);
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STATIC_REQUIRE(std::is_same_v<decltype(s3)::mapped_type, unsigned>);
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}
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}
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SUBCASE("detail") {
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STATIC_REQUIRE(detail::is_transparent<std::less<>, int>::value);
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STATIC_REQUIRE_FALSE(detail::is_transparent<std::less<int>, int>::value);
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}
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SUBCASE("sizeof") {
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REQUIRE(sizeof(flat_multimap<int, unsigned>) == sizeof(std::vector<std::pair<int, unsigned>>));
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struct vc : flat_multimap<int, unsigned>::value_compare {
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int i;
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};
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REQUIRE(sizeof(vc) == sizeof(int));
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}
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SUBCASE("noexcept") {
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using alloc_t = std::allocator<std::pair<int,unsigned>>;
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using map_t = flat_multimap<int, unsigned, dummy_less<int>, std::vector<std::pair<int,unsigned>, alloc_t>>;
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using map2_t = flat_multimap<int, unsigned, dummy_less2<int>>;
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using map3_t = flat_multimap<int, unsigned, dummy_less3<int>>;
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STATIC_REQUIRE(std::is_nothrow_default_constructible_v<map_t>);
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STATIC_REQUIRE(std::is_nothrow_move_constructible_v<map_t>);
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STATIC_REQUIRE(std::is_nothrow_move_assignable_v<map_t>);
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STATIC_REQUIRE(std::is_nothrow_swappable_v<map_t>);
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STATIC_REQUIRE(std::is_nothrow_swappable_v<map2_t>);
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STATIC_REQUIRE(!std::is_nothrow_swappable_v<map3_t>);
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STATIC_REQUIRE(noexcept(std::declval<map_t&>().begin()));
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STATIC_REQUIRE(noexcept(std::declval<const map_t&>().begin()));
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STATIC_REQUIRE(noexcept(std::declval<const map_t&>().cbegin()));
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STATIC_REQUIRE(noexcept(std::declval<map_t&>().end()));
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STATIC_REQUIRE(noexcept(std::declval<const map_t&>().end()));
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STATIC_REQUIRE(noexcept(std::declval<const map_t&>().cend()));
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STATIC_REQUIRE(noexcept(std::declval<map_t&>().rbegin()));
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STATIC_REQUIRE(noexcept(std::declval<const map_t&>().rbegin()));
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STATIC_REQUIRE(noexcept(std::declval<const map_t&>().crbegin()));
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STATIC_REQUIRE(noexcept(std::declval<map_t&>().rend()));
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STATIC_REQUIRE(noexcept(std::declval<const map_t&>().rend()));
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STATIC_REQUIRE(noexcept(std::declval<const map_t&>().crend()));
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STATIC_REQUIRE(noexcept(std::declval<const map_t&>().empty()));
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STATIC_REQUIRE(noexcept(std::declval<const map_t&>().size()));
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STATIC_REQUIRE(noexcept(std::declval<const map_t&>().max_size()));
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STATIC_REQUIRE(noexcept(std::declval<const map_t&>().capacity()));
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STATIC_REQUIRE(noexcept(std::declval<map_t&>().clear()));
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}
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SUBCASE("types") {
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using map_t = flat_multimap<int, unsigned>;
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STATIC_REQUIRE(std::is_same_v<map_t::key_type, int>);
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STATIC_REQUIRE(std::is_same_v<map_t::mapped_type, unsigned>);
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STATIC_REQUIRE(std::is_same_v<map_t::value_type, std::pair<int, unsigned>>);
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STATIC_REQUIRE(std::is_same_v<map_t::size_type, std::size_t>);
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STATIC_REQUIRE(std::is_same_v<map_t::difference_type, std::ptrdiff_t>);
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STATIC_REQUIRE(std::is_same_v<map_t::reference, std::pair<int, unsigned>&>);
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STATIC_REQUIRE(std::is_same_v<map_t::const_reference, const std::pair<int, unsigned>&>);
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STATIC_REQUIRE(std::is_same_v<map_t::pointer, std::pair<int, unsigned>*>);
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STATIC_REQUIRE(std::is_same_v<map_t::const_pointer, const std::pair<int, unsigned>*>);
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}
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SUBCASE("ctors") {
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using alloc_t = std::allocator<
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std::pair<int,unsigned>>;
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using map_t = flat_multimap<
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int,
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unsigned,
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std::less<int>,
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std::vector<std::pair<int,unsigned>, alloc_t>>;
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using map2_t = flat_multimap<
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int,
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unsigned,
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std::greater<int>,
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std::vector<std::pair<int,unsigned>, alloc_t>>;
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using vec_t = std::vector<
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std::pair<int,unsigned>, alloc_t>;
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{
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auto s0 = map_t();
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auto s1 = map2_t(alloc_t());
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auto s2 = map_t(std::less<int>());
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auto s3 = map2_t(std::greater<int>(), alloc_t());
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}
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{
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vec_t v{{1,30},{2,20},{3,10}};
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auto s0 = map_t(v.cbegin(), v.cend());
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auto s1 = map2_t(v.cbegin(), v.cend(), alloc_t());
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auto s2 = map_t(v.cbegin(), v.cend(), std::less<int>());
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auto s3 = map2_t(v.cbegin(), v.cend(), std::greater<int>(), alloc_t());
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REQUIRE(vec_t(s0.begin(), s0.end()) == vec_t({{1,30},{2,20},{3,10}}));
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REQUIRE(vec_t(s1.begin(), s1.end()) == vec_t({{3,10},{2,20},{1,30}}));
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REQUIRE(vec_t(s2.begin(), s2.end()) == vec_t({{1,30},{2,20},{3,10}}));
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REQUIRE(vec_t(s3.begin(), s3.end()) == vec_t({{3,10},{2,20},{1,30}}));
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}
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{
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auto s0 = map_t({{0,1}, {1,2}});
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auto s1 = map_t({{0,1}, {1,2}}, alloc_t());
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auto s2 = map_t({{0,1}, {1,2}}, std::less<int>());
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auto s3 = map_t({{0,1}, {1,2}}, std::less<int>(), alloc_t());
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REQUIRE(vec_t(s0.begin(), s0.end()) == vec_t({{0,1},{1,2}}));
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REQUIRE(vec_t(s1.begin(), s1.end()) == vec_t({{0,1},{1,2}}));
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REQUIRE(vec_t(s2.begin(), s2.end()) == vec_t({{0,1},{1,2}}));
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REQUIRE(vec_t(s3.begin(), s3.end()) == vec_t({{0,1},{1,2}}));
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}
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{
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auto s0 = map_t{{0,1}, {1,2}};
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auto s1 = s0;
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REQUIRE(s0 == map_t{{0,1}, {1,2}});
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REQUIRE(s1 == map_t{{0,1}, {1,2}});
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auto s2 = std::move(s1);
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REQUIRE(s1.empty());
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REQUIRE(s2 == map_t{{0,1}, {1,2}});
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auto s3 = map_t(s2, alloc_t());
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REQUIRE(s2 == s3);
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auto s4 = map_t(std::move(s3), alloc_t());
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REQUIRE(s3.empty());
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REQUIRE(s4 == map_t{{0,1}, {1,2}});
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}
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{
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auto s0 = map_t{{0,1}, {1,2}};
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map_t s1;
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s1 = s0;
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REQUIRE(s0 == map_t{{0,1}, {1,2}});
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REQUIRE(s1 == map_t{{0,1}, {1,2}});
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map_t s2;
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s2 = std::move(s1);
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REQUIRE(s0 == map_t{{0,1}, {1,2}});
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REQUIRE(s1.empty());
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REQUIRE(s2 == map_t{{0,1}, {1,2}});
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map_t s3;
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s3 = {{0,1}, {1,2}};
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REQUIRE(s3 == map_t{{0,1}, {1,2}});
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}
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{
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auto s0 = map_t(sorted_range, {{1,4},{2,3},{2,2},{3,1}});
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REQUIRE(s0 == map_t{{1,4},{2,3},{2,2},{3,1}});
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vec_t v1({{1,4},{2,3},{2,2},{3,1}});
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auto s1 = map_t(sorted_range, v1.begin(), v1.end());
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REQUIRE(s1 == map_t{{1,4},{2,3},{2,2},{3,1}});
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}
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}
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SUBCASE("capacity") {
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using map_t = flat_multimap<int, unsigned>;
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{
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map_t s0;
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REQUIRE(s0.empty());
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REQUIRE_FALSE(s0.size());
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REQUIRE(s0.max_size() == std::vector<std::pair<int,unsigned>>().max_size());
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s0.insert({2,42});
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REQUIRE_FALSE(s0.empty());
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REQUIRE(s0.size() == 1u);
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REQUIRE(s0.max_size() == std::vector<std::pair<int,unsigned>>().max_size());
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s0.insert({2,84});
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REQUIRE(s0.size() == 2u);
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s0.insert({3,84});
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REQUIRE(s0.size() == 3u);
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s0.clear();
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REQUIRE(s0.empty());
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REQUIRE_FALSE(s0.size());
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REQUIRE(s0.max_size() == std::vector<std::pair<int,unsigned>>().max_size());
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}
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{
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map_t s0;
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REQUIRE(s0.capacity() == 0);
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s0.reserve(42);
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REQUIRE(s0.capacity() == 42);
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s0.insert({{1,2},{2,3},{3,4}});
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REQUIRE(s0.capacity() == 42);
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s0.shrink_to_fit();
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REQUIRE(s0.size() == 3);
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REQUIRE(s0.capacity() == 3);
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REQUIRE(s0 == map_t{{1,2},{2,3},{3,4}});
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using alloc2_t = std::allocator<
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std::pair<int, unsigned>>;
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using map2_t = flat_multimap<
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int,
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unsigned,
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std::less<int>,
|
|
std::deque<std::pair<int, unsigned>, alloc2_t>>;
|
|
|
|
map2_t s1;
|
|
s1.insert({{1,2},{2,3},{3,4}});
|
|
REQUIRE(s1 == map2_t{{1,2},{2,3},{3,4}});
|
|
}
|
|
}
|
|
SUBCASE("access") {
|
|
struct obj_t {
|
|
obj_t(int ni) : i(ni) {}
|
|
int i;
|
|
|
|
[[maybe_unused]]
|
|
bool operator<(const obj_t& o) const {
|
|
return i < o.i;
|
|
}
|
|
|
|
[[maybe_unused]]
|
|
bool operator==(const obj_t& o) const {
|
|
return i == o.i;
|
|
}
|
|
};
|
|
|
|
using map_t = flat_multimap<obj_t, unsigned>;
|
|
map_t s0;
|
|
|
|
obj_t k1(1);
|
|
|
|
s0[k1] = 42;
|
|
REQUIRE(s0[k1] == 42);
|
|
REQUIRE(s0 == map_t{{1,42}});
|
|
|
|
s0[1] = 84;
|
|
REQUIRE(s0[1] == 84);
|
|
REQUIRE(s0 == map_t{{1,84}});
|
|
|
|
s0[2] = 21;
|
|
REQUIRE(s0[2] == 21);
|
|
REQUIRE(s0 == map_t{{1,84},{2,21}});
|
|
|
|
REQUIRE(s0.at(1) == 84);
|
|
REQUIRE(my_as_const(s0).at(k1) == 84);
|
|
REQUIRE_THROWS_AS(s0.at(0), std::out_of_range);
|
|
REQUIRE_THROWS_AS(my_as_const(s0).at(0), std::out_of_range);
|
|
}
|
|
SUBCASE("inserts") {
|
|
struct obj_t {
|
|
obj_t(int ni) : i(ni) {}
|
|
int i;
|
|
|
|
[[maybe_unused]]
|
|
bool operator<(const obj_t& o) const {
|
|
return i < o.i;
|
|
}
|
|
|
|
[[maybe_unused]]
|
|
bool operator==(const obj_t& o) const {
|
|
return i == o.i;
|
|
}
|
|
};
|
|
|
|
using map_t = flat_multimap<obj_t, obj_t>;
|
|
|
|
{
|
|
map_t s0;
|
|
|
|
auto k1_42 = std::make_pair(1, 42);
|
|
auto k3_84 = std::make_pair(3, 84);
|
|
|
|
auto i0 = s0.insert(k1_42);
|
|
REQUIRE(s0 == map_t{{1,42}});
|
|
REQUIRE(i0 == s0.begin());
|
|
|
|
auto i1 = s0.insert(std::make_pair(1, obj_t(21)));
|
|
REQUIRE(s0 == map_t{{1,42},{1,21}});
|
|
REQUIRE(i1 == s0.begin() + 1);
|
|
|
|
auto i2 = s0.insert(std::make_pair(2, obj_t(42)));
|
|
REQUIRE(s0 == map_t{{1,42},{1,21},{2,42}});
|
|
REQUIRE(i2 == s0.begin() + 2);
|
|
|
|
auto i3 = s0.insert(s0.cend(), k3_84);
|
|
REQUIRE(i3 == s0.begin() + 3);
|
|
|
|
s0.insert(s0.cend(), std::make_pair(4, obj_t(84)));
|
|
auto i4 = s0.insert(s0.cend(), std::make_pair(0, obj_t(21)));
|
|
REQUIRE(i4 == s0.begin());
|
|
|
|
auto i5 = s0.emplace(5, 100500);
|
|
REQUIRE(i5 == s0.end() - 1);
|
|
REQUIRE(s0 == map_t{{0,21},{1,42},{1,21},{2,42},{3,84},{4,84},{5,100500}});
|
|
|
|
auto i6 = s0.emplace_hint(s0.cend(), 6, 100500);
|
|
REQUIRE(i6 == s0.end() - 1);
|
|
REQUIRE(s0 == map_t{{0,21},{1,42},{1,21},{2,42},{3,84},{4,84},{5,100500},{6,100500}});
|
|
}
|
|
|
|
{
|
|
map_t s0;
|
|
s0.insert({{6,2},{4,6},{2,4},{4,2}});
|
|
REQUIRE(s0 == map_t{{2,4},{4,6},{4,2},{6,2}});
|
|
s0.insert({{9,3},{7,5},{3,9},{5,3},{5,3}});
|
|
REQUIRE(s0 == map_t{{2,4},{3,9},{4,6},{4,2},{5,3},{5,3},{6,2},{7,5},{9,3}});
|
|
}
|
|
|
|
{
|
|
map_t s0;
|
|
s0.insert(sorted_unique_range, {{1,3},{2,2},{3,1}});
|
|
REQUIRE(s0 == map_t{{1,3},{2,2},{3,1}});
|
|
|
|
map_t s1;
|
|
s1.insert(sorted_range, {{1,3},{2,2},{2,2},{3,1}});
|
|
REQUIRE(s1 == map_t{{1,3},{2,2},{2,2},{3,1}});
|
|
}
|
|
}
|
|
SUBCASE("erasers") {
|
|
using map_t = flat_multimap<int, unsigned>;
|
|
{
|
|
map_t s0{{1,2},{2,3},{3,4}};
|
|
s0.clear();
|
|
REQUIRE(s0.empty());
|
|
}
|
|
{
|
|
map_t s0{{1,2},{2,3},{3,4}};
|
|
auto i = s0.erase(s0.find(2));
|
|
REQUIRE(i == s0.begin() + 1);
|
|
REQUIRE(s0 == map_t{{1,2},{3,4}});
|
|
}
|
|
{
|
|
map_t s0{{1,2},{2,3},{3,4}};
|
|
auto i = s0.erase(s0.begin() + 1, s0.end());
|
|
REQUIRE(i == s0.end());
|
|
REQUIRE(s0 == map_t{{1,2}});
|
|
}
|
|
{
|
|
map_t s0{{1,2},{2,3},{2,1},{3,4}};
|
|
REQUIRE(s0.erase(1) == 1);
|
|
REQUIRE(s0.erase(2) == 2);
|
|
REQUIRE(s0.erase(6) == 0);
|
|
REQUIRE(s0 == map_t{{3,4}});
|
|
}
|
|
{
|
|
map_t s0{{1,2},{2,3},{3,4}};
|
|
map_t s1{{2,3},{3,4},{5,6}};
|
|
s0.swap(s1);
|
|
REQUIRE(s0 == map_t{{2,3},{3,4},{5,6}});
|
|
REQUIRE(s1 == map_t{{1,2},{2,3},{3,4}});
|
|
swap(s1, s0);
|
|
REQUIRE(s0 == map_t{{1,2},{2,3},{3,4}});
|
|
REQUIRE(s1 == map_t{{2,3},{3,4},{5,6}});
|
|
}
|
|
}
|
|
SUBCASE("lookup") {
|
|
using map_t = flat_multimap<int, unsigned>;
|
|
{
|
|
map_t s0{{1,2},{2,3},{2,1},{3,4},{4,5},{5,6}};
|
|
REQUIRE(s0.count(3) == 1);
|
|
REQUIRE(s0.count(2) == 2);
|
|
REQUIRE_FALSE(s0.count(6));
|
|
REQUIRE(my_as_const(s0).count(5));
|
|
REQUIRE_FALSE(my_as_const(s0).count(0));
|
|
}
|
|
{
|
|
map_t s0{{1,2},{2,3},{3,4},{4,5},{5,6}};
|
|
REQUIRE(s0.find(2) == s0.begin() + 1);
|
|
REQUIRE(my_as_const(s0).find(3) == s0.cbegin() + 2);
|
|
REQUIRE(s0.find(6) == s0.end());
|
|
REQUIRE(my_as_const(s0).find(0) == s0.cend());
|
|
REQUIRE(my_as_const(s0).contains(1));
|
|
REQUIRE(my_as_const(s0).contains(3));
|
|
REQUIRE_FALSE(my_as_const(s0).contains(0));
|
|
}
|
|
{
|
|
map_t s0{{1,2},{2,3},{2,1},{3,4},{4,5},{5,6}};
|
|
REQUIRE(s0.equal_range(2) == std::make_pair(s0.begin() + 1, s0.begin() + 3));
|
|
REQUIRE(s0.equal_range(6) == std::make_pair(s0.end(), s0.end()));
|
|
REQUIRE(my_as_const(s0).equal_range(2) == std::make_pair(s0.cbegin() + 1, s0.cbegin() + 3));
|
|
REQUIRE(my_as_const(s0).equal_range(0) == std::make_pair(s0.cbegin(), s0.cbegin()));
|
|
}
|
|
{
|
|
map_t s0{{0,1},{0,0},{3,2},{6,3}};
|
|
REQUIRE(s0.lower_bound(0) == s0.begin());
|
|
REQUIRE(s0.lower_bound(1) == s0.begin() + 2);
|
|
REQUIRE(s0.lower_bound(10) == s0.end());
|
|
REQUIRE(my_as_const(s0).lower_bound(-1) == s0.cbegin());
|
|
REQUIRE(my_as_const(s0).lower_bound(7) == s0.cbegin() + 4);
|
|
}
|
|
}
|
|
SUBCASE("heterogeneous") {
|
|
flat_multimap<std::string, int, std::less<>> s0{{"hello", 42}, {"world", 84}};
|
|
REQUIRE(s0.find(std::string_view("hello")) == s0.begin());
|
|
REQUIRE(my_as_const(s0).find(std::string_view("world")) == s0.begin() + 1);
|
|
REQUIRE(s0.find(std::string_view("42")) == s0.end());
|
|
REQUIRE(my_as_const(s0).find(std::string_view("42")) == s0.cend());
|
|
|
|
REQUIRE(my_as_const(s0).contains(std::string_view("hello")));
|
|
REQUIRE_FALSE(my_as_const(s0).contains(std::string_view("42")));
|
|
|
|
REQUIRE(my_as_const(s0).count(std::string_view("hello")) == 1);
|
|
REQUIRE(my_as_const(s0).count(std::string_view("hello_42")) == 0);
|
|
|
|
REQUIRE(s0.upper_bound(std::string_view("hello")) == s0.begin() + 1);
|
|
REQUIRE(my_as_const(s0).upper_bound(std::string_view("hello")) == s0.begin() + 1);
|
|
|
|
REQUIRE(s0.at(std::string_view("world")) == 84);
|
|
REQUIRE(my_as_const(s0).at(std::string_view("world")) == 84);
|
|
}
|
|
SUBCASE("observers") {
|
|
struct my_less {
|
|
int i;
|
|
my_less(int ni) : i(ni) {}
|
|
|
|
[[maybe_unused]]
|
|
bool operator()(int l, int r) const {
|
|
return l < r;
|
|
}
|
|
};
|
|
using map_t = flat_multimap<int, unsigned, my_less>;
|
|
map_t s0(my_less(42));
|
|
REQUIRE(my_as_const(s0).key_comp().i == 42);
|
|
REQUIRE(my_as_const(s0).value_comp()({2,50},{4,20}));
|
|
}
|
|
SUBCASE("custom_less") {
|
|
using map_t = flat_multimap<int, unsigned, dummy_less<int>>;
|
|
auto s0 = map_t(dummy_less<int>(42));
|
|
auto s1 = map_t(dummy_less<int>(21));
|
|
REQUIRE(s0.key_comp().i == 42);
|
|
REQUIRE(s1.key_comp().i == 21);
|
|
s0.swap(s1);
|
|
REQUIRE(s0.key_comp().i == 21);
|
|
REQUIRE(s1.key_comp().i == 42);
|
|
}
|
|
SUBCASE("operators") {
|
|
using map_t = flat_multimap<int, unsigned>;
|
|
|
|
REQUIRE(map_t{{1,2},{3,4}} == map_t{{3,4},{1,2}});
|
|
REQUIRE_FALSE(map_t{{1,2},{3,4}} == map_t{{2,4},{1,2}});
|
|
REQUIRE_FALSE(map_t{{1,2},{3,4}} == map_t{{1,3},{1,2}});
|
|
REQUIRE_FALSE(map_t{{1,2},{3,4}} == map_t{{3,4},{1,2},{0,0}});
|
|
|
|
REQUIRE_FALSE(map_t{{1,2},{3,4}} != map_t{{3,4},{1,2}});
|
|
REQUIRE(map_t{{1,2},{3,4}} != map_t{{2,4},{1,2}});
|
|
REQUIRE(map_t{{1,2},{3,4}} != map_t{{1,3},{1,2}});
|
|
REQUIRE(map_t{{1,2},{3,4}} != map_t{{3,4},{1,2},{0,0}});
|
|
|
|
REQUIRE(map_t{{0,2},{3,4}} < map_t{{1,2},{3,4}});
|
|
REQUIRE(map_t{{1,1},{3,4}} < map_t{{1,2},{3,4}});
|
|
REQUIRE(map_t{{1,2},{3,4}} < map_t{{1,2},{3,4},{5,6}});
|
|
|
|
REQUIRE(map_t{{0,2},{3,4}} <= map_t{{1,2},{3,4}});
|
|
REQUIRE(map_t{{1,1},{3,4}} <= map_t{{1,2},{3,4}});
|
|
REQUIRE(map_t{{1,2},{3,4}} <= map_t{{1,2},{3,4},{5,6}});
|
|
|
|
REQUIRE(map_t{{1,2},{3,4}} > map_t{{0,2},{3,4}});
|
|
REQUIRE(map_t{{1,2},{3,4}} > map_t{{1,1},{3,4}});
|
|
REQUIRE(map_t{{1,2},{3,4},{5,6}} > map_t{{1,2},{3,4}});
|
|
|
|
REQUIRE(map_t{{1,2},{3,4}} >= map_t{{0,2},{3,4}});
|
|
REQUIRE(map_t{{1,2},{3,4}} >= map_t{{1,1},{3,4}});
|
|
REQUIRE(map_t{{1,2},{3,4},{5,6}} >= map_t{{1,2},{3,4}});
|
|
|
|
REQUIRE_FALSE(map_t{{1,2},{3,4}} < map_t{{1,2},{3,4}});
|
|
REQUIRE(map_t{{1,2},{3,4}} <= map_t{{1,2},{3,4}});
|
|
REQUIRE_FALSE(map_t{{1,2},{3,4}} > map_t{{1,2},{3,4}});
|
|
REQUIRE(map_t{{1,2},{3,4}} >= map_t{{1,2},{3,4}});
|
|
|
|
const map_t s0;
|
|
REQUIRE(s0 == s0);
|
|
REQUIRE_FALSE(s0 != s0);
|
|
REQUIRE_FALSE(s0 < s0);
|
|
REQUIRE_FALSE(s0 > s0);
|
|
REQUIRE(s0 <= s0);
|
|
REQUIRE(s0 >= s0);
|
|
}
|
|
}
|