//===----------------------------------------------------------------------===// // // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. // See https://llvm.org/LICENSE.txt for license information. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception // //===----------------------------------------------------------------------===// // UNSUPPORTED: c++03, c++11, c++14, c++17, c++20 // constexpr expected& operator=(expected&& rhs) noexcept(see below); // // Effects: // - If this->has_value() && rhs.has_value() is true, no effects. // - Otherwise, if this->has_value() is true, equivalent to: // construct_at(addressof(unex), std::move(rhs.unex)); // has_val = false; // - Otherwise, if rhs.has_value() is true, destroys unex and sets has_val to true. // - Otherwise, equivalent to unex = std::move(rhs.error()). // // Returns: *this. // // Remarks: The exception specification is equivalent to is_nothrow_move_constructible_v && is_nothrow_move_assignable_v. // // This operator is defined as deleted unless is_move_constructible_v is true and is_move_assignable_v is true. #include #include #include #include #include #include "../../types.h" #include "test_macros.h" struct NotMoveConstructible { NotMoveConstructible(NotMoveConstructible&&) = delete; NotMoveConstructible& operator=(NotMoveConstructible&&) = default; }; struct NotMoveAssignable { NotMoveAssignable(NotMoveAssignable&&) = default; NotMoveAssignable& operator=(NotMoveAssignable&&) = delete; }; // Test constraints static_assert(std::is_move_assignable_v>); // !is_move_assignable_v static_assert(!std::is_move_assignable_v>); // !is_move_constructible_v static_assert(!std::is_move_assignable_v>); // Test noexcept struct MoveCtorMayThrow { MoveCtorMayThrow(MoveCtorMayThrow&&) noexcept(false) {} MoveCtorMayThrow& operator=(MoveCtorMayThrow&&) noexcept = default; }; struct MoveAssignMayThrow { MoveAssignMayThrow(MoveAssignMayThrow&&) noexcept = default; MoveAssignMayThrow& operator=(MoveAssignMayThrow&&) noexcept(false) { return *this; } }; // Test noexcept static_assert(std::is_nothrow_move_assignable_v>); // !is_nothrow_move_assignable_v static_assert(!std::is_nothrow_move_assignable_v>); // !is_nothrow_move_constructible_v static_assert(!std::is_nothrow_move_assignable_v>); constexpr bool test() { // If this->has_value() && rhs.has_value() is true, no effects. { std::expected e1; std::expected e2; decltype(auto) x = (e1 = std::move(e2)); static_assert(std::same_as&>); assert(&x == &e1); assert(e1.has_value()); } // Otherwise, if this->has_value() is true, equivalent to: // construct_at(addressof(unex), std::move(rhs.unex)); // has_val = false; { Traced::state state{}; std::expected e1; std::expected e2(std::unexpect, state, 5); decltype(auto) x = (e1 = std::move(e2)); static_assert(std::same_as&>); assert(&x == &e1); assert(!e1.has_value()); assert(e1.error().data_ == 5); assert(state.moveCtorCalled); } // Otherwise, if rhs.has_value() is true, destroys unex and sets has_val to true. { Traced::state state{}; std::expected e1(std::unexpect, state, 5); std::expected e2; decltype(auto) x = (e1 = std::move(e2)); static_assert(std::same_as&>); assert(&x == &e1); assert(e1.has_value()); assert(state.dtorCalled); } // Otherwise, equivalent to unex = rhs.error(). { Traced::state state{}; std::expected e1(std::unexpect, state, 5); std::expected e2(std::unexpect, state, 10); decltype(auto) x = (e1 = std::move(e2)); static_assert(std::same_as&>); assert(&x == &e1); assert(!e1.has_value()); assert(e1.error().data_ == 10); assert(state.moveAssignCalled); } // CheckForInvalidWrites { { CheckForInvalidWrites e1; CheckForInvalidWrites e2(std::unexpect); e1 = std::move(e2); assert(e1.check()); assert(e2.check()); } { CheckForInvalidWrites e1; CheckForInvalidWrites e2(std::unexpect); e1 = std::move(e2); assert(e1.check()); assert(e2.check()); } } return true; } void testException() { #ifndef TEST_HAS_NO_EXCEPTIONS std::expected e1(std::in_place); std::expected e2(std::unexpect); try { e1 = std::move(e2); assert(false); } catch (Except) { assert(e1.has_value()); } #endif // TEST_HAS_NO_EXCEPTIONS } int main(int, char**) { test(); static_assert(test()); testException(); return 0; }