//===----------------------------------------------------------------------===// // // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. // See https://llvm.org/LICENSE.txt for license information. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception // //===----------------------------------------------------------------------===// // UNSUPPORTED: c++03, c++11, c++14, c++17, c++20 // // template size_type count(const K& x) const; #include #include #include #include #include #include #include "MinSequenceContainer.h" #include "../helpers.h" #include "test_macros.h" #include "min_allocator.h" // Constraints: The qualified-id Compare::is_transparent is valid and denotes a type. template concept CanCount = requires(M m, Transparent k) { m.count(k); }; using TransparentMap = std::flat_map; using NonTransparentMap = std::flat_map; static_assert(CanCount); static_assert(CanCount); static_assert(!CanCount); static_assert(!CanCount); template constexpr void test() { using Key = typename KeyContainer::value_type; using Value = typename ValueContainer::value_type; using M = std::flat_map; M m = {{"alpha", 1}, {"beta", 2}, {"epsilon", 3}, {"eta", 4}, {"gamma", 5}}; ASSERT_SAME_TYPE(decltype(m.count(Transparent{"abc"})), typename M::size_type); ASSERT_SAME_TYPE(decltype(std::as_const(m).count(Transparent{"b"})), typename M::size_type); assert(m.count(Transparent{"alpha"}) == 1); assert(m.count(Transparent{"beta"}) == 1); assert(m.count(Transparent{"epsilon"}) == 1); assert(m.count(Transparent{"eta"}) == 1); assert(m.count(Transparent{"gamma"}) == 1); assert(m.count(Transparent{"al"}) == 0); assert(m.count(Transparent{""}) == 0); assert(m.count(Transparent{"g"}) == 0); } constexpr bool test() { test, std::vector>(); #ifndef __cpp_lib_constexpr_deque if (!TEST_IS_CONSTANT_EVALUATED) #endif { test, std::vector>(); } test, MinSequenceContainer>(); test>, std::vector>>(); { bool transparent_used = false; TransparentComparator c(transparent_used); std::flat_map m(std::sorted_unique, {{1, 1}, {2, 2}, {3, 3}}, c); assert(!transparent_used); auto n = m.count(Transparent{3}); assert(n == 1); assert(transparent_used); } { // LWG4239 std::string and C string literal using M = std::flat_map>; M m{{"alpha", 1}, {"beta", 2}, {"epsilon", 1}, {"eta", 3}, {"gamma", 3}}; assert(m.count("alpha") == 1); assert(m.count("charlie") == 0); } return true; } int main(int, char**) { test(); #if TEST_STD_VER >= 26 static_assert(test()); #endif return 0; }