fixes https://github.com/llvm/llvm-project/issues/105190 --------- Co-authored-by: Hui Xie <huixie@Mac.broadband> Co-authored-by: Hui Xie <huixie@Huis-MacBook-Pro.local>
134 lines
5.2 KiB
C++
134 lines
5.2 KiB
C++
//===----------------------------------------------------------------------===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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// UNSUPPORTED: c++03, c++11, c++14, c++17, c++20
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// <flat_map>
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// class flat_multimap
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// friend bool operator==(const flat_multimap& x, const flat_multimap& y);
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// friend synth-three-way-result<value_type>
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// operator<=>(const flat_multimap& x, const flat_multimap& y);
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#include <algorithm>
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#include <cassert>
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#include <deque>
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#include <compare>
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#include <flat_map>
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#include <functional>
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#include <limits>
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#include <vector>
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#include "MinSequenceContainer.h"
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#include "test_macros.h"
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#include "min_allocator.h"
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#include "test_allocator.h"
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#include "test_comparisons.h"
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#include "test_container_comparisons.h"
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template <class KeyContainer, class ValueContainer>
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void test() {
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using Key = typename KeyContainer::value_type;
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using Value = typename ValueContainer::value_type;
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{
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using C = std::flat_multimap<Key, Value>;
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C s1 = {{1, 1}};
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C s2 = {{2, 0}}; // {{1,1}} versus {{2,0}}
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ASSERT_SAME_TYPE(decltype(s1 <=> s2), std::strong_ordering);
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AssertComparisonsReturnBool<C>();
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assert(testComparisons(s1, s2, false, true));
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s2 = {{1, 1}}; // {{1,1}} versus {{1,1}}
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assert(testComparisons(s1, s2, true, false));
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s2 = {{1, 1}, {2, 0}}; // {{1,1}} versus {{1,1},{2,0}}
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assert(testComparisons(s1, s2, false, true));
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s1 = {{0, 0}, {1, 1}, {2, 2}}; // {{0,0},{1,1},{2,2}} versus {{1,1},{2,0}}
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assert(testComparisons(s1, s2, false, true));
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s2 = {{0, 0}, {1, 1}, {2, 3}}; // {{0,0},{1,1},{2,2}} versus {{0,0},{1,1},{2,3}}
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assert(testComparisons(s1, s2, false, true));
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s1 = {{1, 1}, {1, 1}};
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s2 = {{1, 1}, {1, 1}};
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assert(testComparisons(s1, s2, true, false));
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s2 = {{1, 1}, {1, 1}, {2, 2}};
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assert(testComparisons(s1, s2, false, true));
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s2 = {{1, 1}, {2, 2}, {2, 2}};
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assert(testComparisons(s1, s2, false, true));
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s2 = {{0, 0}, {1, 1}, {1, 1}};
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assert(testComparisons(s1, s2, false, false));
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}
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{
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// Comparisons use value_type's native operators, not the comparator
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using C = std::flat_multimap<Key, Value, std::greater<Key>>;
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C s1 = {{1, 1}};
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C s2 = {{2, 0}}; // {{1,1}} versus {{2,0}}
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ASSERT_SAME_TYPE(decltype(s1 <=> s2), std::strong_ordering);
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AssertComparisonsReturnBool<C>();
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assert(testComparisons(s1, s2, false, true));
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s2 = {{1, 1}}; // {{1,1}} versus {{1,1}}
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assert(testComparisons(s1, s2, true, false));
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s2 = {{1, 1}, {2, 0}}; // {{1,1}} versus {{2,0},{1,1}}
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assert(testComparisons(s1, s2, false, true));
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s1 = {{0, 0}, {1, 1}, {2, 2}}; // {{2,2},{1,1},{0,0}} versus {2,0},{1,1}}
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assert(testComparisons(s1, s2, false, false));
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s2 = {{0, 0}, {1, 1}, {2, 3}}; // {{2,2},{1,1},{0,0}} versus {{2,3},{1,1},{0,0}}
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assert(testComparisons(s1, s2, false, true));
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}
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}
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int main(int, char**) {
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test<std::vector<int>, std::vector<int>>();
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test<std::deque<int>, std::deque<int>>();
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test<MinSequenceContainer<int>, MinSequenceContainer<int>>();
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test<std::vector<int, min_allocator<int>>, std::vector<int, min_allocator<int>>>();
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test<std::vector<int, min_allocator<int>>, std::vector<int, min_allocator<int>>>();
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{
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using C = std::flat_multimap<double, int>;
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C s1 = {{1, 1}};
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C s2 = C(std::sorted_equivalent, {{std::numeric_limits<double>::quiet_NaN(), 2}});
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ASSERT_SAME_TYPE(decltype(s1 <=> s2), std::partial_ordering);
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AssertComparisonsReturnBool<C>();
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assert(testComparisonsComplete(s1, s2, false, false, false));
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}
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{
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using C = std::flat_multimap<int, double>;
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C s1 = {{1, 1}};
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C s2 = C(std::sorted_equivalent, {{2, std::numeric_limits<double>::quiet_NaN()}});
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ASSERT_SAME_TYPE(decltype(s1 <=> s2), std::partial_ordering);
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AssertComparisonsReturnBool<C>();
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assert(testComparisonsComplete(s1, s2, false, true, false));
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s2 = C(std::sorted_equivalent, {{1, std::numeric_limits<double>::quiet_NaN()}});
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assert(testComparisonsComplete(s1, s2, false, false, false));
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}
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{
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// Comparisons use value_type's native operators, not the comparator
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struct StrongComp {
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bool operator()(double a, double b) const { return std::strong_order(a, b) < 0; }
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};
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using C = std::flat_multimap<double, double, StrongComp>;
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C s1 = {{1, 1}};
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C s2 = {{std::numeric_limits<double>::quiet_NaN(), std::numeric_limits<double>::quiet_NaN()}};
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ASSERT_SAME_TYPE(decltype(s1 <=> s2), std::partial_ordering);
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AssertComparisonsReturnBool<C>();
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assert(testComparisonsComplete(s1, s2, false, false, false));
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s1 = {{{1, 1}, {std::numeric_limits<double>::quiet_NaN(), 1}}};
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s2 = {{{std::numeric_limits<double>::quiet_NaN(), 1}, {1, 1}}};
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assert(std::lexicographical_compare_three_way(
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s1.keys().begin(), s1.keys().end(), s2.keys().begin(), s2.keys().end(), std::strong_order) ==
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std::strong_ordering::equal);
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assert(s1 != s2);
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assert((s1 <=> s2) == std::partial_ordering::unordered);
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}
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return 0;
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}
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