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162 lines
4.0 KiB
C++
162 lines
4.0 KiB
C++
//===----------------------------------------------------------------------===//
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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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// XFAIL: availability=macosx10.13
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// XFAIL: availability=macosx10.12
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// XFAIL: availability=macosx10.11
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// XFAIL: availability=macosx10.10
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// XFAIL: availability=macosx10.9
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// XFAIL: availability=macosx10.8
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// XFAIL: availability=macosx10.7
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// <optional>
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// constexpr optional(T&& v);
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#include <optional>
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#include <type_traits>
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#include <cassert>
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#include "test_macros.h"
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#include "archetypes.hpp"
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using std::optional;
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class Z
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{
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public:
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Z(int) {}
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Z(Z&&) {TEST_THROW(6);}
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};
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int main()
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{
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{
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typedef int T;
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constexpr optional<T> opt(T(5));
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static_assert(static_cast<bool>(opt) == true, "");
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static_assert(*opt == 5, "");
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struct test_constexpr_ctor
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: public optional<T>
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{
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constexpr test_constexpr_ctor(T&&) {}
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};
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}
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{
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typedef double T;
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constexpr optional<T> opt(T(3));
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static_assert(static_cast<bool>(opt) == true, "");
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static_assert(*opt == 3, "");
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struct test_constexpr_ctor
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: public optional<T>
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{
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constexpr test_constexpr_ctor(T&&) {}
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};
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}
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{
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const int x = 42;
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optional<const int> o(std::move(x));
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assert(*o == 42);
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}
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{
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typedef TestTypes::TestType T;
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T::reset();
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optional<T> opt = T{3};
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assert(T::alive == 1);
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assert(T::move_constructed == 1);
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assert(static_cast<bool>(opt) == true);
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assert(opt.value().value == 3);
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}
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{
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typedef ExplicitTestTypes::TestType T;
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static_assert(!std::is_convertible<T&&, optional<T>>::value, "");
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T::reset();
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optional<T> opt(T{3});
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assert(T::alive == 1);
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assert(T::move_constructed == 1);
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assert(static_cast<bool>(opt) == true);
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assert(opt.value().value == 3);
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}
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{
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typedef TestTypes::TestType T;
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T::reset();
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optional<T> opt = {3};
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assert(T::alive == 1);
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assert(T::value_constructed == 1);
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assert(T::copy_constructed == 0);
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assert(T::move_constructed == 0);
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assert(static_cast<bool>(opt) == true);
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assert(opt.value().value == 3);
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}
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{
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typedef ConstexprTestTypes::TestType T;
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constexpr optional<T> opt = {T(3)};
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static_assert(static_cast<bool>(opt) == true, "");
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static_assert(opt.value().value == 3, "");
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struct test_constexpr_ctor
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: public optional<T>
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{
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constexpr test_constexpr_ctor(const T&) {}
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};
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}
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{
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typedef ConstexprTestTypes::TestType T;
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constexpr optional<T> opt = {3};
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static_assert(static_cast<bool>(opt) == true, "");
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static_assert(opt.value().value == 3, "");
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struct test_constexpr_ctor
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: public optional<T>
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{
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constexpr test_constexpr_ctor(const T&) {}
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};
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}
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{
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typedef ExplicitConstexprTestTypes::TestType T;
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static_assert(!std::is_convertible<T&&, optional<T>>::value, "");
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constexpr optional<T> opt(T{3});
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static_assert(static_cast<bool>(opt) == true, "");
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static_assert(opt.value().value == 3, "");
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struct test_constexpr_ctor
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: public optional<T>
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{
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constexpr test_constexpr_ctor(T&&) {}
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};
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}
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#ifndef TEST_HAS_NO_EXCEPTIONS
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{
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struct Z {
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Z(int) {}
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Z(Z&&) {throw 6;}
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};
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typedef Z T;
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try
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{
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T t(3);
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optional<T> opt(std::move(t));
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assert(false);
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}
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catch (int i)
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{
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assert(i == 6);
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}
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}
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#endif
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}
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