This should make CI consistent on all the compilers we support. Most of this patch is working around various warnings emitted by GCC in our code base, which are now being shown when we compile the tests. After this patch, the whole test suite should be warning free on all compilers we support and test, except for a few warnings on GCC that we silence explicitly until we figure out the proper fix for them. Differential Revision: https://reviews.llvm.org/D120684
310 lines
7.6 KiB
C++
310 lines
7.6 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
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// Throwing bad_variant_access is supported starting in macosx10.13
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// XFAIL: use_system_cxx_lib && target={{.+}}-apple-macosx10.{{9|10|11|12}} && !no-exceptions
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// <variant>
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// template <class ...Types> class variant;
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// template <class T>
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// variant& operator=(T&&) noexcept(see below);
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#include <cassert>
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#include <string>
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#include <type_traits>
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#include <variant>
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#include <memory>
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#include "test_macros.h"
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#include "variant_test_helpers.h"
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namespace MetaHelpers {
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struct Dummy {
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Dummy() = default;
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};
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struct ThrowsCtorT {
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ThrowsCtorT(int) noexcept(false) {}
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ThrowsCtorT &operator=(int) noexcept { return *this; }
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};
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struct ThrowsAssignT {
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ThrowsAssignT(int) noexcept {}
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ThrowsAssignT &operator=(int) noexcept(false) { return *this; }
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};
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struct NoThrowT {
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NoThrowT(int) noexcept {}
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NoThrowT &operator=(int) noexcept { return *this; }
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};
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} // namespace MetaHelpers
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namespace RuntimeHelpers {
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#ifndef TEST_HAS_NO_EXCEPTIONS
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struct ThrowsCtorT {
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int value;
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ThrowsCtorT() : value(0) {}
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ThrowsCtorT(int) noexcept(false) { throw 42; }
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ThrowsCtorT &operator=(int v) noexcept {
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value = v;
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return *this;
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}
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};
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struct MoveCrashes {
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int value;
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MoveCrashes(int v = 0) noexcept : value{v} {}
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MoveCrashes(MoveCrashes &&) noexcept { assert(false); }
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MoveCrashes &operator=(MoveCrashes &&) noexcept { assert(false); return *this; }
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MoveCrashes &operator=(int v) noexcept {
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value = v;
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return *this;
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}
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};
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struct ThrowsCtorTandMove {
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int value;
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ThrowsCtorTandMove() : value(0) {}
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ThrowsCtorTandMove(int) noexcept(false) { throw 42; }
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ThrowsCtorTandMove(ThrowsCtorTandMove &&) noexcept(false) { assert(false); }
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ThrowsCtorTandMove &operator=(int v) noexcept {
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value = v;
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return *this;
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}
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};
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struct ThrowsAssignT {
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int value;
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ThrowsAssignT() : value(0) {}
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ThrowsAssignT(int v) noexcept : value(v) {}
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ThrowsAssignT &operator=(int) noexcept(false) { throw 42; }
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};
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struct NoThrowT {
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int value;
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NoThrowT() : value(0) {}
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NoThrowT(int v) noexcept : value(v) {}
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NoThrowT &operator=(int v) noexcept {
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value = v;
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return *this;
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}
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};
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#endif // !defined(TEST_HAS_NO_EXCEPTIONS)
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} // namespace RuntimeHelpers
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void test_T_assignment_noexcept() {
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using namespace MetaHelpers;
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{
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using V = std::variant<Dummy, NoThrowT>;
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static_assert(std::is_nothrow_assignable<V, int>::value, "");
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}
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{
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using V = std::variant<Dummy, ThrowsCtorT>;
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static_assert(!std::is_nothrow_assignable<V, int>::value, "");
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}
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{
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using V = std::variant<Dummy, ThrowsAssignT>;
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static_assert(!std::is_nothrow_assignable<V, int>::value, "");
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}
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}
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void test_T_assignment_sfinae() {
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{
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using V = std::variant<long, long long>;
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static_assert(!std::is_assignable<V, int>::value, "ambiguous");
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}
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{
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using V = std::variant<std::string, std::string>;
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static_assert(!std::is_assignable<V, const char *>::value, "ambiguous");
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}
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{
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using V = std::variant<std::string, void *>;
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static_assert(!std::is_assignable<V, int>::value, "no matching operator=");
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}
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{
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using V = std::variant<std::string, float>;
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static_assert(std::is_assignable<V, int>::value == VariantAllowsNarrowingConversions,
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"no matching operator=");
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}
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{
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using V = std::variant<std::unique_ptr<int>, bool>;
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static_assert(!std::is_assignable<V, std::unique_ptr<char>>::value,
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"no explicit bool in operator=");
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struct X {
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operator void*();
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};
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static_assert(!std::is_assignable<V, X>::value,
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"no boolean conversion in operator=");
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static_assert(!std::is_assignable<V, std::false_type>::value,
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"no converted to bool in operator=");
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}
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{
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struct X {};
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struct Y {
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operator X();
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};
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using V = std::variant<X>;
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static_assert(std::is_assignable<V, Y>::value,
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"regression on user-defined conversions in operator=");
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}
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#if !defined(TEST_VARIANT_HAS_NO_REFERENCES)
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{
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using V = std::variant<int, int &&>;
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static_assert(!std::is_assignable<V, int>::value, "ambiguous");
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}
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{
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using V = std::variant<int, const int &>;
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static_assert(!std::is_assignable<V, int>::value, "ambiguous");
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}
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#endif // TEST_VARIANT_HAS_NO_REFERENCES
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}
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void test_T_assignment_basic() {
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{
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std::variant<int> v(43);
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v = 42;
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assert(v.index() == 0);
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assert(std::get<0>(v) == 42);
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}
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{
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std::variant<int, long> v(43l);
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v = 42;
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assert(v.index() == 0);
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assert(std::get<0>(v) == 42);
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v = 43l;
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assert(v.index() == 1);
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assert(std::get<1>(v) == 43);
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}
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#ifndef TEST_VARIANT_ALLOWS_NARROWING_CONVERSIONS
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{
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std::variant<unsigned, long> v;
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v = 42;
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assert(v.index() == 1);
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assert(std::get<1>(v) == 42);
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v = 43u;
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assert(v.index() == 0);
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assert(std::get<0>(v) == 43);
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}
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#endif
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{
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std::variant<std::string, bool> v = true;
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v = "bar";
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assert(v.index() == 0);
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assert(std::get<0>(v) == "bar");
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}
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{
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std::variant<bool, std::unique_ptr<int>> v;
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v = nullptr;
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assert(v.index() == 1);
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assert(std::get<1>(v) == nullptr);
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}
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#if !defined(TEST_VARIANT_HAS_NO_REFERENCES)
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{
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using V = std::variant<int &, int &&, long>;
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int x = 42;
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V v(43l);
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v = x;
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assert(v.index() == 0);
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assert(&std::get<0>(v) == &x);
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v = std::move(x);
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assert(v.index() == 1);
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assert(&std::get<1>(v) == &x);
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// 'long' is selected by FUN(const int &) since 'const int &' cannot bind
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// to 'int&'.
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const int &cx = x;
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v = cx;
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assert(v.index() == 2);
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assert(std::get<2>(v) == 42);
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}
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#endif // TEST_VARIANT_HAS_NO_REFERENCES
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}
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void test_T_assignment_performs_construction() {
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using namespace RuntimeHelpers;
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#ifndef TEST_HAS_NO_EXCEPTIONS
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{
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using V = std::variant<std::string, ThrowsCtorT>;
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V v(std::in_place_type<std::string>, "hello");
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try {
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v = 42;
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assert(false);
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} catch (...) { /* ... */
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}
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assert(v.index() == 0);
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assert(std::get<0>(v) == "hello");
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}
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{
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using V = std::variant<ThrowsAssignT, std::string>;
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V v(std::in_place_type<std::string>, "hello");
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v = 42;
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assert(v.index() == 0);
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assert(std::get<0>(v).value == 42);
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}
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#endif // TEST_HAS_NO_EXCEPTIONS
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}
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void test_T_assignment_performs_assignment() {
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using namespace RuntimeHelpers;
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#ifndef TEST_HAS_NO_EXCEPTIONS
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{
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using V = std::variant<ThrowsCtorT>;
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V v;
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v = 42;
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assert(v.index() == 0);
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assert(std::get<0>(v).value == 42);
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}
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{
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using V = std::variant<ThrowsCtorT, std::string>;
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V v;
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v = 42;
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assert(v.index() == 0);
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assert(std::get<0>(v).value == 42);
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}
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{
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using V = std::variant<ThrowsAssignT>;
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V v(100);
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try {
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v = 42;
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assert(false);
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} catch (...) { /* ... */
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}
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assert(v.index() == 0);
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assert(std::get<0>(v).value == 100);
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}
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{
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using V = std::variant<std::string, ThrowsAssignT>;
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V v(100);
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try {
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v = 42;
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assert(false);
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} catch (...) { /* ... */
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}
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assert(v.index() == 1);
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assert(std::get<1>(v).value == 100);
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}
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#endif // TEST_HAS_NO_EXCEPTIONS
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}
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int main(int, char**) {
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test_T_assignment_basic();
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test_T_assignment_performs_construction();
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test_T_assignment_performs_assignment();
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test_T_assignment_noexcept();
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test_T_assignment_sfinae();
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return 0;
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}
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