//===----------------------------------------------------------------------===// // // 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 // // unique_ptr // Test unique_ptr converting move assignment #include #include #include #include "test_macros.h" #include "deleter_types.h" #include "unique_ptr_test_helper.h" template TEST_CONSTEXPR_CXX23 void testAssign(APtr& aptr, BPtr& bptr) { A* p = bptr.get(); if (!TEST_IS_CONSTANT_EVALUATED) assert(A::count == 2); aptr = std::move(bptr); assert(aptr.get() == p); assert(bptr.get() == 0); if (!TEST_IS_CONSTANT_EVALUATED) { assert(A::count == 1); assert(B::count == 1); } } template TEST_CONSTEXPR_CXX23 void checkDeleter(LHS& lhs, RHS& rhs, int LHSState, int RHSState) { assert(lhs.get_deleter().state() == LHSState); assert(rhs.get_deleter().state() == RHSState); } template struct NCConvertingDeleter { TEST_CONSTEXPR_CXX23 NCConvertingDeleter() = default; NCConvertingDeleter(NCConvertingDeleter const&) = delete; TEST_CONSTEXPR_CXX23 NCConvertingDeleter(NCConvertingDeleter&&) = default; template TEST_CONSTEXPR_CXX23 NCConvertingDeleter(NCConvertingDeleter&&) {} TEST_CONSTEXPR_CXX23 void operator()(T*) const {} }; template struct NCConvertingDeleter { TEST_CONSTEXPR_CXX23 NCConvertingDeleter() = default; NCConvertingDeleter(NCConvertingDeleter const&) = delete; TEST_CONSTEXPR_CXX23 NCConvertingDeleter(NCConvertingDeleter&&) = default; template TEST_CONSTEXPR_CXX23 NCConvertingDeleter(NCConvertingDeleter&&) {} TEST_CONSTEXPR_CXX23 void operator()(T*) const {} }; struct NCGenericDeleter { TEST_CONSTEXPR_CXX23 NCGenericDeleter() = default; NCGenericDeleter(NCGenericDeleter const&) = delete; TEST_CONSTEXPR_CXX23 NCGenericDeleter(NCGenericDeleter&&) = default; TEST_CONSTEXPR_CXX23 void operator()(void*) const {} }; TEST_CONSTEXPR_CXX23 void test_sfinae() { using DA = NCConvertingDeleter; // non-copyable deleters using DB = NCConvertingDeleter; using UA = std::unique_ptr; using UB = std::unique_ptr; using UAD = std::unique_ptr; using UBD = std::unique_ptr; { // cannot move from an lvalue static_assert(std::is_assignable::value, ""); static_assert(!std::is_assignable::value, ""); static_assert(!std::is_assignable::value, ""); } { // cannot move if the deleter-types cannot convert static_assert(std::is_assignable::value, ""); static_assert(!std::is_assignable::value, ""); static_assert(!std::is_assignable::value, ""); } { // cannot move-convert with reference deleters of different types using UA1 = std::unique_ptr; using UB1 = std::unique_ptr; static_assert(!std::is_assignable::value, ""); } { // cannot move-convert with reference deleters of different types using UA1 = std::unique_ptr; using UB1 = std::unique_ptr; static_assert(!std::is_assignable::value, ""); } { // cannot move-convert from unique_ptr using UA1 = std::unique_ptr; using UA2 = std::unique_ptr; using UB1 = std::unique_ptr; static_assert(!std::is_assignable::value, ""); static_assert(!std::is_assignable::value, ""); } { // cannot move-convert from unique_ptr using UA1 = std::unique_ptr; using UA2 = std::unique_ptr; using UB1 = std::unique_ptr; static_assert(!std::is_assignable::value, ""); static_assert(!std::is_assignable::value, ""); } } TEST_CONSTEXPR_CXX23 bool test() { test_sfinae(); { std::unique_ptr bptr(new B); std::unique_ptr aptr(new A); testAssign(aptr, bptr); } if (!TEST_IS_CONSTANT_EVALUATED) { assert(A::count == 0); assert(B::count == 0); } { Deleter del(42); std::unique_ptr > bptr(new B, std::move(del)); std::unique_ptr > aptr(new A); testAssign(aptr, bptr); checkDeleter(aptr, bptr, 42, 0); } if (!TEST_IS_CONSTANT_EVALUATED) { assert(A::count == 0); assert(B::count == 0); } { CDeleter adel(6); CDeleter bdel(42); std::unique_ptr&> bptr(new B, bdel); std::unique_ptr&> aptr(new A, adel); testAssign(aptr, bptr); checkDeleter(aptr, bptr, 42, 42); } if (!TEST_IS_CONSTANT_EVALUATED) { assert(A::count == 0); assert(B::count == 0); } return true; } int main(int, char**) { test(); #if TEST_STD_VER >= 23 static_assert(test()); #endif return 0; }