//===----------------------------------------------------------------------===// // // The LLVM Compiler Infrastructure // // This file is dual licensed under the MIT and the University of Illinois Open // Source Licenses. See LICENSE.TXT for details. // //===----------------------------------------------------------------------===// // UNSUPPORTED: c++98, c++03 // // unique_ptr // Test unique_ptr move assignment // test move assignment. Should only require a MoveConstructible deleter, or if // deleter is a reference, not even that. #include #include #include #include "deleter_types.h" #include "unique_ptr_test_helper.h" struct GenericDeleter { void operator()(void*) const; }; template void test_basic() { typedef typename std::conditional::type VT; const int expect_alive = IsArray ? 5 : 1; { std::unique_ptr s1(newValue(expect_alive)); A* p = s1.get(); std::unique_ptr s2(newValue(expect_alive)); assert(A::count == (expect_alive * 2)); s2 = std::move(s1); assert(A::count == expect_alive); assert(s2.get() == p); assert(s1.get() == 0); } assert(A::count == 0); { std::unique_ptr > s1(newValue(expect_alive), Deleter(5)); A* p = s1.get(); std::unique_ptr > s2(newValue(expect_alive)); assert(A::count == (expect_alive * 2)); s2 = std::move(s1); assert(s2.get() == p); assert(s1.get() == 0); assert(A::count == expect_alive); assert(s2.get_deleter().state() == 5); assert(s1.get_deleter().state() == 0); } assert(A::count == 0); { CDeleter d1(5); std::unique_ptr&> s1(newValue(expect_alive), d1); A* p = s1.get(); CDeleter d2(6); std::unique_ptr&> s2(newValue(expect_alive), d2); s2 = std::move(s1); assert(s2.get() == p); assert(s1.get() == 0); assert(A::count == expect_alive); assert(d1.state() == 5); assert(d2.state() == 5); } assert(A::count == 0); } template void test_sfinae() { typedef typename std::conditional::type VT; { typedef std::unique_ptr U; static_assert(!std::is_assignable::value, ""); static_assert(!std::is_assignable::value, ""); static_assert(!std::is_assignable::value, ""); static_assert(std::is_nothrow_assignable::value, ""); } { typedef std::unique_ptr U; static_assert(!std::is_assignable::value, ""); static_assert(!std::is_assignable::value, ""); static_assert(!std::is_assignable::value, ""); static_assert(std::is_nothrow_assignable::value, ""); } { typedef std::unique_ptr&> U; static_assert(!std::is_assignable::value, ""); static_assert(!std::is_assignable::value, ""); static_assert(!std::is_assignable::value, ""); static_assert(std::is_nothrow_assignable::value, ""); } { typedef std::unique_ptr&> U; static_assert(!std::is_assignable::value, ""); static_assert(!std::is_assignable::value, ""); static_assert(!std::is_assignable::value, ""); static_assert(std::is_nothrow_assignable::value, ""); } } int main() { { test_basic(); test_sfinae(); } { test_basic(); test_sfinae(); } }