forked from boostorg/unordered
620 lines
22 KiB
C++
620 lines
22 KiB
C++
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// Copyright 2006-2009 Daniel James.
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// Copyright (C) 2022-2023 Christian Mazakas
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// Distributed under the Boost Software License, Version 1.0. (See accompanying
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// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
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#include "../helpers/unordered.hpp"
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#include "../helpers/equivalent.hpp"
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#include "../helpers/invariants.hpp"
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#include "../helpers/random_values.hpp"
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#include "../helpers/test.hpp"
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#include "../helpers/tracker.hpp"
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#include "../objects/cxx11_allocator.hpp"
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#include "../objects/test.hpp"
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test::seed_t initialize_seed(9063);
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namespace copy_tests {
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template <class T>
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void copy_construct_tests1(T*, test::random_generator const& generator)
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{
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typedef typename T::allocator_type allocator_type;
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typename T::hasher hf;
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typename T::key_equal eq;
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typename T::allocator_type al;
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{
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test::check_instances check_;
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T x;
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T y(x);
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BOOST_TEST(y.empty());
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BOOST_TEST(test::equivalent(y.hash_function(), hf));
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BOOST_TEST(test::equivalent(y.key_eq(), eq));
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BOOST_TEST(test::equivalent(y.get_allocator(), al));
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BOOST_TEST(x.max_load_factor() == y.max_load_factor());
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BOOST_TEST(test::selected_count(y.get_allocator()) ==
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(allocator_type::is_select_on_copy));
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BOOST_TEST(test::detail::tracker.count_allocations == 0);
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test::check_equivalent_keys(y);
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}
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{
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test::check_instances check_;
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T x(0);
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T y(x);
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BOOST_TEST(y.empty());
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BOOST_TEST(test::equivalent(y.hash_function(), hf));
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BOOST_TEST(test::equivalent(y.key_eq(), eq));
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BOOST_TEST(test::equivalent(y.get_allocator(), al));
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BOOST_TEST(x.max_load_factor() == y.max_load_factor());
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BOOST_TEST(test::selected_count(y.get_allocator()) ==
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(allocator_type::is_select_on_copy));
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BOOST_TEST(test::detail::tracker.count_allocations == 0);
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test::check_equivalent_keys(y);
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}
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{
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test::check_instances check_;
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test::random_values<T> v(1000, generator);
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T x(v.begin(), v.end());
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T y(x);
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test::unordered_equivalence_tester<T> equivalent(x);
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BOOST_TEST(equivalent(y));
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BOOST_TEST(test::selected_count(y.get_allocator()) ==
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(allocator_type::is_select_on_copy));
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test::check_equivalent_keys(y);
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}
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{
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test::check_instances check_;
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// In this test I drop the original containers max load factor, so it
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// is much lower than the load factor. The hash table is not allowed
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// to rehash, but the destination container should probably allocate
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// enough buckets to decrease the load factor appropriately.
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test::random_values<T> v(1000, generator);
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T x(v.begin(), v.end());
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x.max_load_factor(x.load_factor() / 4);
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T y(x);
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test::unordered_equivalence_tester<T> equivalent(x);
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BOOST_TEST(equivalent(y));
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// This isn't guaranteed:
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BOOST_TEST(y.load_factor() < y.max_load_factor());
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BOOST_TEST(test::selected_count(y.get_allocator()) ==
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(allocator_type::is_select_on_copy));
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test::check_equivalent_keys(y);
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}
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}
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template <class T>
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void copy_construct_tests2(T*, test::random_generator const& generator)
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{
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typename T::hasher hf(1);
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typename T::key_equal eq(1);
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typename T::allocator_type al(1);
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typename T::allocator_type al2(2);
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typedef typename T::allocator_type allocator_type;
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{
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test::check_instances check_;
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T x(0, hf, eq, al);
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T y(x);
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BOOST_TEST(y.empty());
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BOOST_TEST(test::equivalent(y.hash_function(), hf));
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BOOST_TEST(test::equivalent(y.key_eq(), eq));
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BOOST_TEST(test::equivalent(y.get_allocator(), al));
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BOOST_TEST(x.max_load_factor() == y.max_load_factor());
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BOOST_TEST(test::selected_count(y.get_allocator()) ==
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(allocator_type::is_select_on_copy));
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BOOST_TEST(test::detail::tracker.count_allocations == 0);
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test::check_equivalent_keys(y);
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}
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{
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test::check_instances check_;
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T x(10000, hf, eq, al);
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T y(x);
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BOOST_TEST(y.empty());
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BOOST_TEST(test::equivalent(y.hash_function(), hf));
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BOOST_TEST(test::equivalent(y.key_eq(), eq));
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BOOST_TEST(test::equivalent(y.get_allocator(), al));
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BOOST_TEST(x.max_load_factor() == y.max_load_factor());
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BOOST_TEST(test::selected_count(y.get_allocator()) ==
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(allocator_type::is_select_on_copy));
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test::check_equivalent_keys(y);
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}
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{
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test::check_instances check_;
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T x(0, hf, eq, al);
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T y(x, al2);
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BOOST_TEST(y.empty());
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BOOST_TEST(test::equivalent(y.hash_function(), hf));
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BOOST_TEST(test::equivalent(y.key_eq(), eq));
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BOOST_TEST(test::equivalent(y.get_allocator(), al2));
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BOOST_TEST(x.max_load_factor() == y.max_load_factor());
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BOOST_TEST(test::selected_count(y.get_allocator()) == 0);
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BOOST_TEST(test::detail::tracker.count_allocations == 0);
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test::check_equivalent_keys(y);
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}
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{
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test::check_instances check_;
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T x(1000, hf, eq, al);
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T y(x, al2);
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BOOST_TEST(y.empty());
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BOOST_TEST(test::equivalent(y.hash_function(), hf));
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BOOST_TEST(test::equivalent(y.key_eq(), eq));
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BOOST_TEST(test::equivalent(y.get_allocator(), al2));
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BOOST_TEST(x.max_load_factor() == y.max_load_factor());
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BOOST_TEST(test::selected_count(y.get_allocator()) == 0);
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test::check_equivalent_keys(y);
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}
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{
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test::check_instances check_;
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test::random_values<T> v;
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T x(v.begin(), v.end(), 0, hf, eq, al);
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T y(x);
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test::unordered_equivalence_tester<T> equivalent(x);
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BOOST_TEST(equivalent(y));
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test::check_equivalent_keys(y);
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BOOST_TEST(test::selected_count(y.get_allocator()) ==
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(allocator_type::is_select_on_copy));
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BOOST_TEST(test::equivalent(y.get_allocator(), al));
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BOOST_TEST(test::detail::tracker.count_allocations == 0);
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}
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{
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test::check_instances check_;
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test::random_values<T> v(1000, generator);
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T x(v.begin(), v.end(), 0, hf, eq, al);
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T y(x);
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test::unordered_equivalence_tester<T> equivalent(x);
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BOOST_TEST(equivalent(y));
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test::check_equivalent_keys(y);
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BOOST_TEST(test::selected_count(y.get_allocator()) ==
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(allocator_type::is_select_on_copy));
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BOOST_TEST(test::equivalent(y.get_allocator(), al));
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}
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{
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test::check_instances check_;
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test::random_values<T> v;
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T x(v.begin(), v.end(), 0, hf, eq, al);
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T y(x, al2);
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test::unordered_equivalence_tester<T> equivalent(x);
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BOOST_TEST(equivalent(y));
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test::check_equivalent_keys(y);
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BOOST_TEST(test::selected_count(y.get_allocator()) == 0);
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BOOST_TEST(test::equivalent(y.get_allocator(), al2));
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BOOST_TEST(test::detail::tracker.count_allocations == 0);
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}
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{
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test::check_instances check_;
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test::random_values<T> v(500, generator);
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T x(v.begin(), v.end(), 0, hf, eq, al);
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T y(x, al2);
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test::unordered_equivalence_tester<T> equivalent(x);
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BOOST_TEST(equivalent(y));
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test::check_equivalent_keys(y);
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BOOST_TEST(test::selected_count(y.get_allocator()) == 0);
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BOOST_TEST(test::equivalent(y.get_allocator(), al2));
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}
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}
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template <class T>
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void copy_construct_tests_std_allocator1(
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T*, test::random_generator const& generator)
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{
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typename T::hasher hf;
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typename T::key_equal eq;
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typename T::allocator_type al;
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{
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test::check_instances check_;
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T x;
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T y(x);
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BOOST_TEST(y.empty());
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BOOST_TEST(test::equivalent(y.hash_function(), hf));
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BOOST_TEST(test::equivalent(y.key_eq(), eq));
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BOOST_TEST(test::equivalent(y.get_allocator(), al));
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BOOST_TEST(x.max_load_factor() == y.max_load_factor());
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BOOST_TEST(test::detail::tracker.count_allocations == 0);
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test::check_equivalent_keys(y);
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}
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{
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test::check_instances check_;
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T x(0);
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T y(x);
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BOOST_TEST(y.empty());
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BOOST_TEST(test::equivalent(y.hash_function(), hf));
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BOOST_TEST(test::equivalent(y.key_eq(), eq));
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BOOST_TEST(test::equivalent(y.get_allocator(), al));
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BOOST_TEST(x.max_load_factor() == y.max_load_factor());
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BOOST_TEST(test::detail::tracker.count_allocations == 0);
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test::check_equivalent_keys(y);
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}
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{
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test::check_instances check_;
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test::random_values<T> v(1000, generator);
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T x(v.begin(), v.end());
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T y(x);
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test::unordered_equivalence_tester<T> equivalent(x);
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BOOST_TEST(equivalent(y));
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test::check_equivalent_keys(y);
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}
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{
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test::check_instances check_;
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// In this test I drop the original containers max load factor, so it
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// is much lower than the load factor. The hash table is not allowed
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// to rehash, but the destination container should probably allocate
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// enough buckets to decrease the load factor appropriately.
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test::random_values<T> v(1000, generator);
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T x(v.begin(), v.end());
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x.max_load_factor(x.load_factor() / 4);
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T y(x);
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test::unordered_equivalence_tester<T> equivalent(x);
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BOOST_TEST(equivalent(y));
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// This isn't guaranteed:
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BOOST_TEST(y.load_factor() < y.max_load_factor());
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test::check_equivalent_keys(y);
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}
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}
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template <class T>
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void copy_construct_tests_std_allocator2(
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T*, test::random_generator const& generator)
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{
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typename T::hasher hf(1);
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typename T::key_equal eq(1);
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typename T::allocator_type al;
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{
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test::check_instances check_;
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T x(0, hf, eq, al);
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T y(x);
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BOOST_TEST(y.empty());
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BOOST_TEST(test::equivalent(y.hash_function(), hf));
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BOOST_TEST(test::equivalent(y.key_eq(), eq));
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BOOST_TEST(test::equivalent(y.get_allocator(), al));
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BOOST_TEST(x.max_load_factor() == y.max_load_factor());
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BOOST_TEST(test::detail::tracker.count_allocations == 0);
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test::check_equivalent_keys(y);
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}
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{
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test::check_instances check_;
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T x(10000, hf, eq, al);
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T y(x);
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BOOST_TEST(y.empty());
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BOOST_TEST(test::equivalent(y.hash_function(), hf));
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BOOST_TEST(test::equivalent(y.key_eq(), eq));
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BOOST_TEST(test::equivalent(y.get_allocator(), al));
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BOOST_TEST(x.max_load_factor() == y.max_load_factor());
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test::check_equivalent_keys(y);
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}
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{
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test::check_instances check_;
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T x(0, hf, eq, al);
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T y(x, al);
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BOOST_TEST(y.empty());
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BOOST_TEST(test::equivalent(y.hash_function(), hf));
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BOOST_TEST(test::equivalent(y.key_eq(), eq));
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BOOST_TEST(test::equivalent(y.get_allocator(), al));
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BOOST_TEST(x.max_load_factor() == y.max_load_factor());
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BOOST_TEST(test::selected_count(y.get_allocator()) == 0);
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BOOST_TEST(test::detail::tracker.count_allocations == 0);
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test::check_equivalent_keys(y);
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}
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{
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test::check_instances check_;
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T x(1000, hf, eq, al);
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T y(x, al);
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BOOST_TEST(y.empty());
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BOOST_TEST(test::equivalent(y.hash_function(), hf));
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BOOST_TEST(test::equivalent(y.key_eq(), eq));
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BOOST_TEST(test::equivalent(y.get_allocator(), al));
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BOOST_TEST(x.max_load_factor() == y.max_load_factor());
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BOOST_TEST(test::selected_count(y.get_allocator()) == 0);
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test::check_equivalent_keys(y);
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}
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{
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test::check_instances check_;
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test::random_values<T> v;
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T x(v.begin(), v.end(), 0, hf, eq, al);
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T y(x);
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test::unordered_equivalence_tester<T> equivalent(x);
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BOOST_TEST(equivalent(y));
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test::check_equivalent_keys(y);
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BOOST_TEST(test::equivalent(y.get_allocator(), al));
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BOOST_TEST(test::detail::tracker.count_allocations == 0);
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}
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{
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test::check_instances check_;
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test::random_values<T> v(1000, generator);
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T x(v.begin(), v.end(), 0, hf, eq, al);
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T y(x);
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test::unordered_equivalence_tester<T> equivalent(x);
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BOOST_TEST(equivalent(y));
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test::check_equivalent_keys(y);
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BOOST_TEST(test::equivalent(y.get_allocator(), al));
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}
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{
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test::check_instances check_;
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test::random_values<T> v;
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T x(v.begin(), v.end(), 0, hf, eq, al);
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T y(x, al);
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test::unordered_equivalence_tester<T> equivalent(x);
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BOOST_TEST(equivalent(y));
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test::check_equivalent_keys(y);
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BOOST_TEST(test::selected_count(y.get_allocator()) == 0);
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BOOST_TEST(test::equivalent(y.get_allocator(), al));
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BOOST_TEST(test::detail::tracker.count_allocations == 0);
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}
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{
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test::check_instances check_;
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test::random_values<T> v(500, generator);
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T x(v.begin(), v.end(), 0, hf, eq, al);
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T y(x, al);
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test::unordered_equivalence_tester<T> equivalent(x);
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BOOST_TEST(equivalent(y));
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test::check_equivalent_keys(y);
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BOOST_TEST(test::selected_count(y.get_allocator()) == 0);
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BOOST_TEST(test::equivalent(y.get_allocator(), al));
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}
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}
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using test::default_generator;
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using test::generate_collisions;
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using test::limited_range;
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#ifdef BOOST_UNORDERED_FOA_TESTS
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template <class T> struct allocator
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{
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using value_type = T;
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allocator() = default;
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allocator(allocator const&) = default;
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allocator(allocator&&) = default;
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template <class U> allocator(allocator<U> const&) {}
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T* allocate(std::size_t n)
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{
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return static_cast<T*>(::operator new(sizeof(value_type) * n));
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}
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void deallocate(T* p, std::size_t) { ::operator delete(p); }
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friend inline bool operator==(allocator const&, allocator const&)
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{
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return true;
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}
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friend inline bool operator!=(allocator const&, allocator const&)
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{
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return false;
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}
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};
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boost::unordered_flat_set<test::object, test::hash, test::equal_to,
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test::allocator1<test::object> >* test_set;
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boost::unordered_flat_map<test::object, test::object, test::hash,
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test::equal_to, test::allocator1<test::object> >* test_map;
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boost::unordered_flat_set<test::object, test::hash, test::equal_to,
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test::cxx11_allocator<test::object, test::select_copy> >*
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test_set_select_copy;
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boost::unordered_flat_map<test::object, test::object, test::hash,
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test::equal_to, test::cxx11_allocator<test::object, test::select_copy> >*
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test_map_select_copy;
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boost::unordered_flat_set<test::object, test::hash, test::equal_to,
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test::cxx11_allocator<test::object, test::no_select_copy> >*
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test_set_no_select_copy;
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boost::unordered_flat_map<test::object, test::object, test::hash,
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test::equal_to, test::cxx11_allocator<test::object, test::no_select_copy> >*
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test_map_no_select_copy;
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boost::unordered_flat_set<int, test::hash, test::equal_to,
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test::allocator1<int> >* test_set_trivially_copyable;
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boost::unordered_flat_map<int, int, test::hash, test::equal_to,
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test::allocator1<std::pair<int const, int> > >* test_map_trivially_copyable;
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boost::unordered_flat_set<int, test::hash, test::equal_to,
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std::allocator<int> >* test_set_trivially_copyable_std_allocator;
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boost::unordered_flat_map<int, int, test::hash, test::equal_to,
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std::allocator<std::pair<int const, int> > >*
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test_map_trivially_copyable_std_allocator;
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boost::unordered_flat_set<int, test::hash, test::equal_to, allocator<int> >*
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test_set_trivially_copyable_no_construct;
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boost::unordered_flat_map<int, int, test::hash, test::equal_to,
|
|
allocator<std::pair<int const, int> > >*
|
|
test_map_trivially_copyable_no_construct;
|
|
|
|
boost::unordered_node_set<test::object, test::hash, test::equal_to,
|
|
test::allocator1<test::object> >* test_node_set;
|
|
boost::unordered_node_map<test::object, test::object, test::hash,
|
|
test::equal_to, test::allocator1<test::object> >* test_node_map;
|
|
|
|
boost::unordered_node_set<test::object, test::hash, test::equal_to,
|
|
test::cxx11_allocator<test::object, test::select_copy> >*
|
|
test_node_set_select_copy;
|
|
boost::unordered_node_map<test::object, test::object, test::hash,
|
|
test::equal_to, test::cxx11_allocator<test::object, test::select_copy> >*
|
|
test_node_map_select_copy;
|
|
|
|
boost::unordered_node_set<test::object, test::hash, test::equal_to,
|
|
test::cxx11_allocator<test::object, test::no_select_copy> >*
|
|
test_node_set_no_select_copy;
|
|
boost::unordered_node_map<test::object, test::object, test::hash,
|
|
test::equal_to, test::cxx11_allocator<test::object, test::no_select_copy> >*
|
|
test_node_map_no_select_copy;
|
|
|
|
boost::unordered_node_set<int, test::hash, test::equal_to,
|
|
test::allocator1<int> >* test_node_set_trivially_copyable;
|
|
boost::unordered_node_map<int, int, test::hash, test::equal_to,
|
|
test::allocator1<std::pair<int const, int> > >*
|
|
test_node_map_trivially_copyable;
|
|
|
|
boost::unordered_node_set<int, test::hash, test::equal_to,
|
|
std::allocator<int> >* test_node_set_trivially_copyable_std_allocator;
|
|
boost::unordered_node_map<int, int, test::hash, test::equal_to,
|
|
std::allocator<std::pair<int const, int> > >*
|
|
test_node_map_trivially_copyable_std_allocator;
|
|
|
|
boost::unordered_node_set<int, test::hash, test::equal_to, allocator<int> >*
|
|
test_node_set_trivially_copyable_no_construct;
|
|
boost::unordered_node_map<int, int, test::hash, test::equal_to,
|
|
allocator<std::pair<int const, int> > >*
|
|
test_node_map_trivially_copyable_no_construct;
|
|
|
|
// clang-format off
|
|
UNORDERED_TEST(copy_construct_tests1,
|
|
((test_set)(test_map)(test_set_select_copy)(test_map_select_copy)
|
|
(test_set_no_select_copy)(test_map_no_select_copy)
|
|
(test_set_trivially_copyable)(test_map_trivially_copyable)
|
|
(test_node_set)(test_node_map)(test_node_set_select_copy)(test_node_map_select_copy)
|
|
(test_node_set_no_select_copy)(test_node_map_no_select_copy)
|
|
(test_node_set_trivially_copyable)(test_node_map_trivially_copyable))
|
|
((default_generator)(generate_collisions)(limited_range)))
|
|
|
|
UNORDERED_TEST(copy_construct_tests2,
|
|
((test_set)(test_map)(test_set_select_copy)(test_map_select_copy)
|
|
(test_set_no_select_copy)(test_map_no_select_copy)
|
|
(test_set_trivially_copyable)(test_map_trivially_copyable)
|
|
(test_node_set)(test_node_map)(test_node_set_select_copy)(test_node_map_select_copy)
|
|
(test_node_set_no_select_copy)(test_node_map_no_select_copy)
|
|
(test_node_set_trivially_copyable)(test_node_map_trivially_copyable))
|
|
((default_generator)(generate_collisions)(limited_range)))
|
|
|
|
UNORDERED_TEST(copy_construct_tests_std_allocator1,
|
|
((test_set_trivially_copyable_std_allocator)
|
|
(test_map_trivially_copyable_std_allocator)
|
|
(test_set_trivially_copyable_no_construct)
|
|
(test_map_trivially_copyable_no_construct)
|
|
(test_node_set_trivially_copyable_std_allocator)
|
|
(test_node_map_trivially_copyable_std_allocator)
|
|
(test_node_set_trivially_copyable_no_construct)
|
|
(test_node_map_trivially_copyable_no_construct))
|
|
((default_generator)(generate_collisions)(limited_range)))
|
|
|
|
UNORDERED_TEST(copy_construct_tests_std_allocator2,
|
|
((test_set_trivially_copyable_std_allocator)
|
|
(test_map_trivially_copyable_std_allocator)
|
|
(test_set_trivially_copyable_no_construct)
|
|
(test_map_trivially_copyable_no_construct)
|
|
(test_node_set_trivially_copyable_std_allocator)
|
|
(test_node_map_trivially_copyable_std_allocator)
|
|
(test_node_set_trivially_copyable_no_construct)
|
|
(test_node_map_trivially_copyable_no_construct))
|
|
((default_generator)(generate_collisions)(limited_range)))
|
|
// clang-format on
|
|
#else
|
|
boost::unordered_set<test::object, test::hash, test::equal_to,
|
|
test::allocator1<test::object> >* test_set;
|
|
boost::unordered_multiset<test::object, test::hash, test::equal_to,
|
|
test::allocator2<test::object> >* test_multiset;
|
|
boost::unordered_map<test::object, test::object, test::hash, test::equal_to,
|
|
test::allocator1<test::object> >* test_map;
|
|
boost::unordered_multimap<test::object, test::object, test::hash,
|
|
test::equal_to, test::allocator2<test::object> >* test_multimap;
|
|
|
|
boost::unordered_set<test::object, test::hash, test::equal_to,
|
|
test::cxx11_allocator<test::object, test::select_copy> >*
|
|
test_set_select_copy;
|
|
boost::unordered_multiset<test::object, test::hash, test::equal_to,
|
|
test::cxx11_allocator<test::object, test::select_copy> >*
|
|
test_multiset_select_copy;
|
|
boost::unordered_map<test::object, test::object, test::hash, test::equal_to,
|
|
test::cxx11_allocator<test::object, test::select_copy> >*
|
|
test_map_select_copy;
|
|
boost::unordered_multimap<test::object, test::object, test::hash,
|
|
test::equal_to, test::cxx11_allocator<test::object, test::select_copy> >*
|
|
test_multimap_select_copy;
|
|
|
|
boost::unordered_set<test::object, test::hash, test::equal_to,
|
|
test::cxx11_allocator<test::object, test::no_select_copy> >*
|
|
test_set_no_select_copy;
|
|
boost::unordered_multiset<test::object, test::hash, test::equal_to,
|
|
test::cxx11_allocator<test::object, test::no_select_copy> >*
|
|
test_multiset_no_select_copy;
|
|
boost::unordered_map<test::object, test::object, test::hash, test::equal_to,
|
|
test::cxx11_allocator<test::object, test::no_select_copy> >*
|
|
test_map_no_select_copy;
|
|
boost::unordered_multimap<test::object, test::object, test::hash,
|
|
test::equal_to, test::cxx11_allocator<test::object, test::no_select_copy> >*
|
|
test_multimap_no_select_copy;
|
|
|
|
// clang-format off
|
|
UNORDERED_TEST(copy_construct_tests1,
|
|
((test_set)(test_multiset)(test_map)(test_multimap)
|
|
(test_set_select_copy)(test_multiset_select_copy)
|
|
(test_map_select_copy)(test_multimap_select_copy)
|
|
(test_set_no_select_copy)(test_multiset_no_select_copy)
|
|
(test_map_no_select_copy)(test_multimap_no_select_copy))(
|
|
(default_generator)(generate_collisions)(limited_range)))
|
|
|
|
UNORDERED_TEST(copy_construct_tests2,
|
|
((test_set)(test_multiset)(test_map)(test_multimap)
|
|
(test_set_select_copy)(test_multiset_select_copy)
|
|
(test_map_select_copy)(test_multimap_select_copy)
|
|
(test_set_no_select_copy)(test_multiset_no_select_copy)
|
|
(test_map_no_select_copy)(test_multimap_no_select_copy))(
|
|
(default_generator)(generate_collisions)(limited_range)))
|
|
// clang-format on
|
|
#endif
|
|
} // namespace copy_tests
|
|
|
|
RUN_TESTS()
|