//===----------------------------------------------------------------------===// // // 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 // //===----------------------------------------------------------------------===// // // template , class Pred = equal_to, // class Alloc = allocator>> // class unordered_multimap // unordered_multimap(const unordered_multimap& u); #include #include #include #include #include #include #include #include "test_macros.h" #include "../../../check_consecutive.h" #include "../../../test_compare.h" #include "../../../test_hash.h" #include "test_allocator.h" #include "min_allocator.h" int main(int, char**) { { typedef std::unordered_multimap >, test_compare >, test_allocator > > C; typedef std::pair P; P a[] = { P(1, "one"), P(2, "two"), P(3, "three"), P(4, "four"), P(1, "four"), P(2, "four"), }; C c0(a, a + sizeof(a)/sizeof(a[0]), 7, test_hash >(8), test_compare >(9), test_allocator >(10) ); C c = c0; LIBCPP_ASSERT(c.bucket_count() == 7); assert(c.size() == 6); std::multiset s; s.insert("one"); s.insert("four"); CheckConsecutiveKeys(c.find(1), c.end(), 1, s); s.insert("two"); s.insert("four"); CheckConsecutiveKeys(c.find(2), c.end(), 2, s); s.insert("three"); CheckConsecutiveKeys(c.find(3), c.end(), 3, s); s.insert("four"); CheckConsecutiveKeys(c.find(4), c.end(), 4, s); assert(c.hash_function() == test_hash >(8)); assert(c.key_eq() == test_compare >(9)); assert(c.get_allocator() == (test_allocator >(10))); assert(!c.empty()); assert(static_cast(std::distance(c.begin(), c.end())) == c.size()); assert(static_cast(std::distance(c.cbegin(), c.cend())) == c.size()); assert(std::fabs(c.load_factor() - (float)c.size()/c.bucket_count()) < FLT_EPSILON); assert(c.max_load_factor() == 1); } #if TEST_STD_VER >= 11 { typedef std::unordered_multimap >, test_compare >, other_allocator > > C; typedef std::pair P; P a[] = { P(1, "one"), P(2, "two"), P(3, "three"), P(4, "four"), P(1, "four"), P(2, "four"), }; C c0(a, a + sizeof(a)/sizeof(a[0]), 7, test_hash >(8), test_compare >(9), other_allocator >(10) ); C c = c0; LIBCPP_ASSERT(c.bucket_count() == 7); assert(c.size() == 6); std::multiset s; s.insert("one"); s.insert("four"); CheckConsecutiveKeys(c.find(1), c.end(), 1, s); s.insert("two"); s.insert("four"); CheckConsecutiveKeys(c.find(2), c.end(), 2, s); s.insert("three"); CheckConsecutiveKeys(c.find(3), c.end(), 3, s); s.insert("four"); CheckConsecutiveKeys(c.find(4), c.end(), 4, s); assert(c.hash_function() == test_hash >(8)); assert(c.key_eq() == test_compare >(9)); assert(c.get_allocator() == (other_allocator >(-2))); assert(!c.empty()); assert(static_cast(std::distance(c.begin(), c.end())) == c.size()); assert(static_cast(std::distance(c.cbegin(), c.cend())) == c.size()); assert(std::fabs(c.load_factor() - (float)c.size()/c.bucket_count()) < FLT_EPSILON); assert(c.max_load_factor() == 1); } { typedef std::unordered_multimap >, test_compare >, min_allocator > > C; typedef std::pair P; P a[] = { P(1, "one"), P(2, "two"), P(3, "three"), P(4, "four"), P(1, "four"), P(2, "four"), }; C c0(a, a + sizeof(a)/sizeof(a[0]), 7, test_hash >(8), test_compare >(9), min_allocator >() ); C c = c0; LIBCPP_ASSERT(c.bucket_count() == 7); assert(c.size() == 6); std::multiset s; s.insert("one"); s.insert("four"); CheckConsecutiveKeys(c.find(1), c.end(), 1, s); s.insert("two"); s.insert("four"); CheckConsecutiveKeys(c.find(2), c.end(), 2, s); s.insert("three"); CheckConsecutiveKeys(c.find(3), c.end(), 3, s); s.insert("four"); CheckConsecutiveKeys(c.find(4), c.end(), 4, s); assert(c.hash_function() == test_hash >(8)); assert(c.key_eq() == test_compare >(9)); assert(c.get_allocator() == (min_allocator >())); assert(!c.empty()); assert(static_cast(std::distance(c.begin(), c.end())) == c.size()); assert(static_cast(std::distance(c.cbegin(), c.cend())) == c.size()); assert(std::fabs(c.load_factor() - (float)c.size()/c.bucket_count()) < FLT_EPSILON); assert(c.max_load_factor() == 1); } #endif return 0; }