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@@ -0,0 +1,591 @@
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+// -*- C++ -*-
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+//===----------------------------------------------------------------------===//
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+//
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+// The LLVM Compiler Infrastructure
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+//
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+// This file is dual licensed under the MIT and the University of Illinois Open
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+// Source Licenses. See LICENSE.TXT for details.
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+//
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+//===----------------------------------------------------------------------===//
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+
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+// UNSUPPORTED: c++98, c++03, c++11, c++14
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+
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+// <variant>
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+
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+// template <class ...Types> class variant;
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+
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+// void swap(variant& rhs) noexcept(see below)
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+
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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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+
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+#include "test_convertible.hpp"
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+#include "test_macros.h"
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+#include "variant_test_helpers.hpp"
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+
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+struct NotSwappable {};
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+void swap(NotSwappable &, NotSwappable &) = delete;
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+
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+struct NotCopyable {
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+ NotCopyable() = default;
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+ NotCopyable(NotCopyable const &) = delete;
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+ NotCopyable &operator=(NotCopyable const &) = delete;
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+};
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+
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+struct NotCopyableWithSwap {
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+ NotCopyableWithSwap() = default;
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+ NotCopyableWithSwap(NotCopyableWithSwap const &) = delete;
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+ NotCopyableWithSwap &operator=(NotCopyableWithSwap const &) = delete;
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+};
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+void swap(NotCopyableWithSwap &, NotCopyableWithSwap) {}
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+
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+struct NotMoveAssignable {
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+ NotMoveAssignable() = default;
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+ NotMoveAssignable(NotMoveAssignable &&) = default;
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+ NotMoveAssignable &operator=(NotMoveAssignable &&) = delete;
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+};
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+
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+struct NotMoveAssignableWithSwap {
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+ NotMoveAssignableWithSwap() = default;
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+ NotMoveAssignableWithSwap(NotMoveAssignableWithSwap &&) = default;
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+ NotMoveAssignableWithSwap &operator=(NotMoveAssignableWithSwap &&) = delete;
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+};
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+void swap(NotMoveAssignableWithSwap &, NotMoveAssignableWithSwap &) noexcept {}
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+
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+template <bool Throws> void do_throw() {}
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+
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+template <> void do_throw<true>() {
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+#ifndef TEST_HAS_NO_EXCEPTIONS
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+ throw 42;
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+#else
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+ std::abort();
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+#endif
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+}
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+
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+template <bool NT_Copy, bool NT_Move, bool NT_CopyAssign, bool NT_MoveAssign,
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+ bool NT_Swap, bool EnableSwap = true>
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+struct NothrowTypeImp {
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+ static int move_called;
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+ static int move_assign_called;
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+ static int swap_called;
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+ static void reset() { move_called = move_assign_called = swap_called = 0; }
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+ NothrowTypeImp() = default;
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+ explicit NothrowTypeImp(int v) : value(v) {}
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+ NothrowTypeImp(NothrowTypeImp const &o) noexcept(NT_Copy) : value(o.value) {
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+ assert(false);
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+ } // never called by test
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+ NothrowTypeImp(NothrowTypeImp &&o) noexcept(NT_Move) : value(o.value) {
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+ ++move_called;
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+ do_throw<!NT_Move>();
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+ o.value = -1;
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+ }
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+ NothrowTypeImp &operator=(NothrowTypeImp const &) noexcept(NT_CopyAssign) {
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+ assert(false);
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+ return *this;
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+ } // never called by the tests
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+ NothrowTypeImp &operator=(NothrowTypeImp &&o) noexcept(NT_MoveAssign) {
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+ ++move_assign_called;
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+ do_throw<!NT_MoveAssign>();
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+ value = o.value;
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+ o.value = -1;
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+ return *this;
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+ }
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+ int value;
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+};
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+template <bool NT_Copy, bool NT_Move, bool NT_CopyAssign, bool NT_MoveAssign,
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+ bool NT_Swap, bool EnableSwap>
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+int NothrowTypeImp<NT_Copy, NT_Move, NT_CopyAssign, NT_MoveAssign, NT_Swap,
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+ EnableSwap>::move_called = 0;
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+template <bool NT_Copy, bool NT_Move, bool NT_CopyAssign, bool NT_MoveAssign,
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+ bool NT_Swap, bool EnableSwap>
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+int NothrowTypeImp<NT_Copy, NT_Move, NT_CopyAssign, NT_MoveAssign, NT_Swap,
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+ EnableSwap>::move_assign_called = 0;
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+template <bool NT_Copy, bool NT_Move, bool NT_CopyAssign, bool NT_MoveAssign,
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+ bool NT_Swap, bool EnableSwap>
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+int NothrowTypeImp<NT_Copy, NT_Move, NT_CopyAssign, NT_MoveAssign, NT_Swap,
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+ EnableSwap>::swap_called = 0;
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+
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+template <bool NT_Copy, bool NT_Move, bool NT_CopyAssign, bool NT_MoveAssign,
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+ bool NT_Swap>
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+void swap(NothrowTypeImp<NT_Copy, NT_Move, NT_CopyAssign, NT_MoveAssign,
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+ NT_Swap, true> &lhs,
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+ NothrowTypeImp<NT_Copy, NT_Move, NT_CopyAssign, NT_MoveAssign,
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+ NT_Swap, true> &rhs) noexcept(NT_Swap) {
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+ lhs.swap_called++;
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+ do_throw<!NT_Swap>();
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+ int tmp = lhs.value;
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+ lhs.value = rhs.value;
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+ rhs.value = tmp;
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+}
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+
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+// throwing copy, nothrow move ctor/assign, no swap provided
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+using NothrowMoveable = NothrowTypeImp<false, true, false, true, false, false>;
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+// throwing copy and move assign, nothrow move ctor, no swap provided
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+using NothrowMoveCtor = NothrowTypeImp<false, true, false, false, false, false>;
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+// nothrow move ctor, throwing move assignment, swap provided
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+using NothrowMoveCtorWithThrowingSwap =
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+ NothrowTypeImp<false, true, false, false, false, true>;
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+// throwing move ctor, nothrow move assignment, no swap provided
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+using ThrowingMoveCtor =
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+ NothrowTypeImp<false, false, false, true, false, false>;
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+// throwing special members, nothrowing swap
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+using ThrowingTypeWithNothrowSwap =
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+ NothrowTypeImp<false, false, false, false, true, true>;
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+using NothrowTypeWithThrowingSwap =
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+ NothrowTypeImp<true, true, true, true, false, true>;
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+// throwing move assign with nothrow move and nothrow swap
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+using ThrowingMoveAssignNothrowMoveCtorWithSwap =
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+ NothrowTypeImp<false, true, false, false, true, true>;
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+// throwing move assign with nothrow move but no swap.
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+using ThrowingMoveAssignNothrowMoveCtor =
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+ NothrowTypeImp<false, true, false, false, false, false>;
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+
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+struct NonThrowingNonNoexceptType {
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+ static int move_called;
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+ static void reset() { move_called = 0; }
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+ NonThrowingNonNoexceptType() = default;
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+ NonThrowingNonNoexceptType(int v) : value(v) {}
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+ NonThrowingNonNoexceptType(NonThrowingNonNoexceptType &&o) noexcept(false)
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+ : value(o.value) {
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+ ++move_called;
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+ o.value = -1;
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+ }
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+ NonThrowingNonNoexceptType &
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+ operator=(NonThrowingNonNoexceptType &&) noexcept(false) {
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+ assert(false); // never called by the tests.
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+ return *this;
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+ }
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+ int value;
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+};
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+int NonThrowingNonNoexceptType::move_called = 0;
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+
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+struct ThrowsOnSecondMove {
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+ int value;
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+ int move_count;
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+ ThrowsOnSecondMove(int v) : value(v), move_count(0) {}
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+ ThrowsOnSecondMove(ThrowsOnSecondMove &&o) noexcept(false)
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+ : value(o.value), move_count(o.move_count + 1) {
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+ if (move_count == 2)
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+ do_throw<true>();
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+ o.value = -1;
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+ }
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+ ThrowsOnSecondMove &operator=(ThrowsOnSecondMove &&) {
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+ assert(false); // not called by test
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+ return *this;
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+ }
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+};
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+
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+void test_swap_valueless_by_exception() {
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+#ifndef TEST_HAS_NO_EXCEPTIONS
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+ using V = std::variant<int, MakeEmptyT>;
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+ { // both empty
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+ V v1;
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+ makeEmpty(v1);
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+ V v2;
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+ makeEmpty(v2);
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+ assert(MakeEmptyT::alive == 0);
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+ { // member swap
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+ v1.swap(v2);
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+ assert(v1.valueless_by_exception());
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+ assert(v2.valueless_by_exception());
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+ assert(MakeEmptyT::alive == 0);
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+ }
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+ { // non-member swap
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+ swap(v1, v2);
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+ assert(v1.valueless_by_exception());
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+ assert(v2.valueless_by_exception());
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+ assert(MakeEmptyT::alive == 0);
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+ }
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+ }
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+ { // only one empty
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+ V v1(42);
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+ V v2;
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+ makeEmpty(v2);
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+ { // member swap
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+ v1.swap(v2);
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+ assert(v1.valueless_by_exception());
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+ assert(std::get<0>(v2) == 42);
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+ // swap again
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+ v2.swap(v1);
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+ assert(v2.valueless_by_exception());
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+ assert(std::get<0>(v1) == 42);
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+ }
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+ { // non-member swap
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+ swap(v1, v2);
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+ assert(v1.valueless_by_exception());
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+ assert(std::get<0>(v2) == 42);
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+ // swap again
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+ swap(v1, v2);
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+ assert(v2.valueless_by_exception());
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+ assert(std::get<0>(v1) == 42);
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+ }
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+ }
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+#endif
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+}
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+
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+void test_swap_same_alternative() {
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+ {
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+ using T = ThrowingTypeWithNothrowSwap;
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+ using V = std::variant<T, int>;
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+ T::reset();
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+ V v1(std::in_place_index<0>, 42);
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+ V v2(std::in_place_index<0>, 100);
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+ v1.swap(v2);
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+ assert(T::swap_called == 1);
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+ assert(std::get<0>(v1).value == 100);
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+ assert(std::get<0>(v2).value == 42);
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+ swap(v1, v2);
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+ assert(T::swap_called == 2);
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+ assert(std::get<0>(v1).value == 42);
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+ assert(std::get<0>(v2).value == 100);
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+ }
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+ {
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+ using T = NothrowMoveable;
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+ using V = std::variant<T, int>;
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+ T::reset();
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+ V v1(std::in_place_index<0>, 42);
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+ V v2(std::in_place_index<0>, 100);
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+ v1.swap(v2);
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+ assert(T::swap_called == 0);
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+ assert(T::move_called == 1);
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+ assert(T::move_assign_called == 2);
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+ assert(std::get<0>(v1).value == 100);
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+ assert(std::get<0>(v2).value == 42);
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+ T::reset();
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+ swap(v1, v2);
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+ assert(T::swap_called == 0);
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+ assert(T::move_called == 1);
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+ assert(T::move_assign_called == 2);
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+ assert(std::get<0>(v1).value == 42);
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+ assert(std::get<0>(v2).value == 100);
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+ }
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+#ifndef TEST_HAS_NO_EXCEPTIONS
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+ {
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+ using T = NothrowTypeWithThrowingSwap;
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+ using V = std::variant<T, int>;
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+ T::reset();
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+ V v1(std::in_place_index<0>, 42);
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+ V v2(std::in_place_index<0>, 100);
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+ try {
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+ v1.swap(v2);
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+ assert(false);
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+ } catch (int) {
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+ }
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+ assert(T::swap_called == 1);
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+ assert(T::move_called == 0);
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+ assert(T::move_assign_called == 0);
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+ assert(std::get<0>(v1).value == 42);
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+ assert(std::get<0>(v2).value == 100);
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+ }
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+ {
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+ using T = ThrowingMoveCtor;
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+ using V = std::variant<T, int>;
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+ T::reset();
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+ V v1(std::in_place_index<0>, 42);
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+ V v2(std::in_place_index<0>, 100);
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+ try {
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+ v1.swap(v2);
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+ assert(false);
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+ } catch (int) {
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+ }
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+ assert(T::move_called == 1); // call threw
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+ assert(T::move_assign_called == 0);
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+ assert(std::get<0>(v1).value ==
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+ 42); // throw happened before v1 was moved from
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+ assert(std::get<0>(v2).value == 100);
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+ }
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+ {
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+ using T = ThrowingMoveAssignNothrowMoveCtor;
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+ using V = std::variant<T, int>;
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+ T::reset();
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+ V v1(std::in_place_index<0>, 42);
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+ V v2(std::in_place_index<0>, 100);
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+ try {
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+ v1.swap(v2);
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+ assert(false);
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+ } catch (int) {
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+ }
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+ assert(T::move_called == 1);
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+ assert(T::move_assign_called == 1); // call threw and didn't complete
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+ assert(std::get<0>(v1).value == -1); // v1 was moved from
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+ assert(std::get<0>(v2).value == 100);
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+ }
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+#endif
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+}
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+
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+void test_swap_different_alternatives() {
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+ {
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+ using T = NothrowMoveCtorWithThrowingSwap;
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+ using V = std::variant<T, int>;
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+ T::reset();
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+ V v1(std::in_place_index<0>, 42);
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+ V v2(std::in_place_index<1>, 100);
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+ v1.swap(v2);
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+ assert(T::swap_called == 0);
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+ // The libc++ implementation double copies the argument, and not
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+ // the variant swap is called on.
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+ LIBCPP_ASSERT(T::move_called == 1);
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+ assert(T::move_called <= 2);
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+ assert(T::move_assign_called == 0);
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+ assert(std::get<1>(v1) == 100);
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+ assert(std::get<0>(v2).value == 42);
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+ T::reset();
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+ swap(v1, v2);
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+ assert(T::swap_called == 0);
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+ LIBCPP_ASSERT(T::move_called == 2);
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+ assert(T::move_called <= 2);
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+ assert(T::move_assign_called == 0);
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+ assert(std::get<0>(v1).value == 42);
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+ assert(std::get<1>(v2) == 100);
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+ }
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+#ifndef TEST_HAS_NO_EXCEPTIONS
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+ {
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+ using T1 = ThrowingTypeWithNothrowSwap;
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+ using T2 = NonThrowingNonNoexceptType;
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+ using V = std::variant<T1, T2>;
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+ T1::reset();
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+ T2::reset();
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+ V v1(std::in_place_index<0>, 42);
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+ V v2(std::in_place_index<1>, 100);
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+ try {
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+ v1.swap(v2);
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+ assert(false);
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+ } catch (int) {
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+ }
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+ assert(T1::swap_called == 0);
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+ assert(T1::move_called == 1); // throws
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+ assert(T1::move_assign_called == 0);
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+ // FIXME: libc++ shouldn't move from T2 here.
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+ LIBCPP_ASSERT(T2::move_called == 1);
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+ assert(T2::move_called <= 1);
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+ assert(std::get<0>(v1).value == 42);
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+ if (T2::move_called != 0)
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+ assert(v2.valueless_by_exception());
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+ else
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+ assert(std::get<1>(v2).value == 100);
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+ }
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+ {
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+ using T1 = NonThrowingNonNoexceptType;
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+ using T2 = ThrowingTypeWithNothrowSwap;
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+ using V = std::variant<T1, T2>;
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+ T1::reset();
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+ T2::reset();
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+ V v1(std::in_place_index<0>, 42);
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+ V v2(std::in_place_index<1>, 100);
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+ try {
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+ v1.swap(v2);
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+ assert(false);
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+ } catch (int) {
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+ }
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+ LIBCPP_ASSERT(T1::move_called == 0);
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+ assert(T1::move_called <= 1);
|
|
|
+ assert(T2::swap_called == 0);
|
|
|
+ assert(T2::move_called == 1); // throws
|
|
|
+ assert(T2::move_assign_called == 0);
|
|
|
+ if (T1::move_called != 0)
|
|
|
+ assert(v1.valueless_by_exception());
|
|
|
+ else
|
|
|
+ assert(std::get<0>(v1).value == 42);
|
|
|
+ assert(std::get<1>(v2).value == 100);
|
|
|
+ }
|
|
|
+// FIXME: The tests below are just very libc++ specific
|
|
|
+#ifdef _LIBCPP_VERSION
|
|
|
+ {
|
|
|
+ using T1 = ThrowsOnSecondMove;
|
|
|
+ using T2 = NonThrowingNonNoexceptType;
|
|
|
+ using V = std::variant<T1, T2>;
|
|
|
+ T2::reset();
|
|
|
+ V v1(std::in_place_index<0>, 42);
|
|
|
+ V v2(std::in_place_index<1>, 100);
|
|
|
+ v1.swap(v2);
|
|
|
+ assert(T2::move_called == 2);
|
|
|
+ assert(std::get<1>(v1).value == 100);
|
|
|
+ assert(std::get<0>(v2).value == 42);
|
|
|
+ assert(std::get<0>(v2).move_count == 1);
|
|
|
+ }
|
|
|
+ {
|
|
|
+ using T1 = NonThrowingNonNoexceptType;
|
|
|
+ using T2 = ThrowsOnSecondMove;
|
|
|
+ using V = std::variant<T1, T2>;
|
|
|
+ T1::reset();
|
|
|
+ V v1(std::in_place_index<0>, 42);
|
|
|
+ V v2(std::in_place_index<1>, 100);
|
|
|
+ try {
|
|
|
+ v1.swap(v2);
|
|
|
+ assert(false);
|
|
|
+ } catch (int) {
|
|
|
+ }
|
|
|
+ assert(T1::move_called == 1);
|
|
|
+ assert(v1.valueless_by_exception());
|
|
|
+ assert(std::get<0>(v2).value == 42);
|
|
|
+ }
|
|
|
+#endif
|
|
|
+// testing libc++ extension. If either variant stores a nothrow move
|
|
|
+// constructible type v1.swap(v2) provides the strong exception safety
|
|
|
+// guarantee.
|
|
|
+#ifdef _LIBCPP_VERSION
|
|
|
+ {
|
|
|
+
|
|
|
+ using T1 = ThrowingTypeWithNothrowSwap;
|
|
|
+ using T2 = NothrowMoveable;
|
|
|
+ using V = std::variant<T1, T2>;
|
|
|
+ T1::reset();
|
|
|
+ T2::reset();
|
|
|
+ V v1(std::in_place_index<0>, 42);
|
|
|
+ V v2(std::in_place_index<1>, 100);
|
|
|
+ try {
|
|
|
+ v1.swap(v2);
|
|
|
+ assert(false);
|
|
|
+ } catch (int) {
|
|
|
+ }
|
|
|
+ assert(T1::swap_called == 0);
|
|
|
+ assert(T1::move_called == 1);
|
|
|
+ assert(T1::move_assign_called == 0);
|
|
|
+ assert(T2::swap_called == 0);
|
|
|
+ assert(T2::move_called == 2);
|
|
|
+ assert(T2::move_assign_called == 0);
|
|
|
+ assert(std::get<0>(v1).value == 42);
|
|
|
+ assert(std::get<1>(v2).value == 100);
|
|
|
+ // swap again, but call v2's swap.
|
|
|
+ T1::reset();
|
|
|
+ T2::reset();
|
|
|
+ try {
|
|
|
+ v2.swap(v1);
|
|
|
+ assert(false);
|
|
|
+ } catch (int) {
|
|
|
+ }
|
|
|
+ assert(T1::swap_called == 0);
|
|
|
+ assert(T1::move_called == 1);
|
|
|
+ assert(T1::move_assign_called == 0);
|
|
|
+ assert(T2::swap_called == 0);
|
|
|
+ assert(T2::move_called == 2);
|
|
|
+ assert(T2::move_assign_called == 0);
|
|
|
+ assert(std::get<0>(v1).value == 42);
|
|
|
+ assert(std::get<1>(v2).value == 100);
|
|
|
+ }
|
|
|
+#endif // _LIBCPP_VERSION
|
|
|
+#endif
|
|
|
+}
|
|
|
+
|
|
|
+template <class Var>
|
|
|
+constexpr auto has_swap_member_imp(int)
|
|
|
+ -> decltype(std::declval<Var &>().swap(std::declval<Var &>()), true) {
|
|
|
+ return true;
|
|
|
+}
|
|
|
+
|
|
|
+template <class Var> constexpr auto has_swap_member_imp(long) -> bool {
|
|
|
+ return false;
|
|
|
+}
|
|
|
+
|
|
|
+template <class Var> constexpr bool has_swap_member() {
|
|
|
+ return has_swap_member_imp<Var>(0);
|
|
|
+}
|
|
|
+
|
|
|
+void test_swap_sfinae() {
|
|
|
+ {
|
|
|
+ // This variant type does not provide either a member or non-member swap
|
|
|
+ // but is still swappable via the generic swap algorithm, since the
|
|
|
+ // variant is move constructible and move assignable.
|
|
|
+ using V = std::variant<int, NotSwappable>;
|
|
|
+ LIBCPP_STATIC_ASSERT(!has_swap_member<V>());
|
|
|
+ static_assert(std::is_swappable_v<V>, "");
|
|
|
+ }
|
|
|
+ {
|
|
|
+ using V = std::variant<int, NotCopyable>;
|
|
|
+ LIBCPP_STATIC_ASSERT(!has_swap_member<V>(), "");
|
|
|
+ static_assert(!std::is_swappable_v<V>, "");
|
|
|
+ }
|
|
|
+ {
|
|
|
+ using V = std::variant<int, NotCopyableWithSwap>;
|
|
|
+ LIBCPP_STATIC_ASSERT(!has_swap_member<V>(), "");
|
|
|
+ static_assert(!std::is_swappable_v<V>, "");
|
|
|
+ }
|
|
|
+ {
|
|
|
+ using V = std::variant<int, NotMoveAssignable>;
|
|
|
+ LIBCPP_STATIC_ASSERT(!has_swap_member<V>(), "");
|
|
|
+ static_assert(!std::is_swappable_v<V>, "");
|
|
|
+ }
|
|
|
+}
|
|
|
+
|
|
|
+void test_swap_noexcept() {
|
|
|
+ {
|
|
|
+ using V = std::variant<int, NothrowMoveable>;
|
|
|
+ static_assert(std::is_swappable_v<V> && has_swap_member<V>(), "");
|
|
|
+ static_assert(std::is_nothrow_swappable_v<V>, "");
|
|
|
+ // instantiate swap
|
|
|
+ V v1, v2;
|
|
|
+ v1.swap(v2);
|
|
|
+ swap(v1, v2);
|
|
|
+ }
|
|
|
+ {
|
|
|
+ using V = std::variant<int, NothrowMoveCtor>;
|
|
|
+ static_assert(std::is_swappable_v<V> && has_swap_member<V>(), "");
|
|
|
+ static_assert(!std::is_nothrow_swappable_v<V>, "");
|
|
|
+ // instantiate swap
|
|
|
+ V v1, v2;
|
|
|
+ v1.swap(v2);
|
|
|
+ swap(v1, v2);
|
|
|
+ }
|
|
|
+ {
|
|
|
+ using V = std::variant<int, ThrowingTypeWithNothrowSwap>;
|
|
|
+ static_assert(std::is_swappable_v<V> && has_swap_member<V>(), "");
|
|
|
+ static_assert(!std::is_nothrow_swappable_v<V>, "");
|
|
|
+ // instantiate swap
|
|
|
+ V v1, v2;
|
|
|
+ v1.swap(v2);
|
|
|
+ swap(v1, v2);
|
|
|
+ }
|
|
|
+ {
|
|
|
+ using V = std::variant<int, ThrowingMoveAssignNothrowMoveCtor>;
|
|
|
+ static_assert(std::is_swappable_v<V> && has_swap_member<V>(), "");
|
|
|
+ static_assert(!std::is_nothrow_swappable_v<V>, "");
|
|
|
+ // instantiate swap
|
|
|
+ V v1, v2;
|
|
|
+ v1.swap(v2);
|
|
|
+ swap(v1, v2);
|
|
|
+ }
|
|
|
+ {
|
|
|
+ using V = std::variant<int, ThrowingMoveAssignNothrowMoveCtorWithSwap>;
|
|
|
+ static_assert(std::is_swappable_v<V> && has_swap_member<V>(), "");
|
|
|
+ static_assert(std::is_nothrow_swappable_v<V>, "");
|
|
|
+ // instantiate swap
|
|
|
+ V v1, v2;
|
|
|
+ v1.swap(v2);
|
|
|
+ swap(v1, v2);
|
|
|
+ }
|
|
|
+ {
|
|
|
+ using V = std::variant<int, NotMoveAssignableWithSwap>;
|
|
|
+ static_assert(std::is_swappable_v<V> && has_swap_member<V>(), "");
|
|
|
+ static_assert(std::is_nothrow_swappable_v<V>, "");
|
|
|
+ // instantiate swap
|
|
|
+ V v1, v2;
|
|
|
+ v1.swap(v2);
|
|
|
+ swap(v1, v2);
|
|
|
+ }
|
|
|
+ {
|
|
|
+ // This variant type does not provide either a member or non-member swap
|
|
|
+ // but is still swappable via the generic swap algorithm, since the
|
|
|
+ // variant is move constructible and move assignable.
|
|
|
+ using V = std::variant<int, NotSwappable>;
|
|
|
+ LIBCPP_STATIC_ASSERT(!has_swap_member<V>());
|
|
|
+ static_assert(std::is_swappable_v<V>, "");
|
|
|
+ static_assert(std::is_nothrow_swappable_v<V>, "");
|
|
|
+ V v1, v2;
|
|
|
+ swap(v1, v2);
|
|
|
+ }
|
|
|
+}
|
|
|
+
|
|
|
+
|
|
|
+// This is why variant should SFINAE member swap. :-)
|
|
|
+LIBCPP_ONLY(template class std::variant<int, NotSwappable>;)
|
|
|
+
|
|
|
+
|
|
|
+int main() {
|
|
|
+ test_swap_valueless_by_exception();
|
|
|
+ test_swap_same_alternative();
|
|
|
+ test_swap_different_alternatives();
|
|
|
+ test_swap_sfinae();
|
|
|
+ test_swap_noexcept();
|
|
|
+}
|