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Implement LWG 2905 changes to constrain unique_ptr constructors
LWG DR 2905 says that is_constructible_v<unique_ptr<P, D>, P, D const &> should be false when D is not copy constructible. This commit implements the changes from the DR and simplifies the signatures as per https://github.com/cplusplus/draft/issues/1530 * include/bits/unique_ptr.h (__uniq_ptr_impl): Add assertions to check deleter type. (unique_ptr::unique_ptr(pointer, const deleter_type&)): Add copy constructible constraint. (unique_ptr::unique_ptr(pointer, deleter_type&&)): Disable for deleters of reference type and add move constructible constraint. (unique_ptr::unique_ptr(pointer, remove_reference_t<deleter_type>&&)): Disable for deleters of non-reference type. Define as deleted. (unique_ptr<T[], D>): Likewise. * testsuite/20_util/unique_ptr/assign/48635_neg.cc: Replace dg-error directives with unstable line numbers with dg-prune-output. * testsuite/20_util/unique_ptr/cons/cv_qual_neg.cc: Likewise. * testsuite/20_util/unique_ptr/cons/lwg2905.cc: New test. * testsuite/20_util/unique_ptr/specialized_algorithms/swap_cxx17.cc: Make deleter types invocable. From-SVN: r264206
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@ -1,3 +1,22 @@
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2018-09-11 Jonathan Wakely <jwakely@redhat.com>
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Implement LWG 2905 changes to constrain unique_ptr constructors
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* include/bits/unique_ptr.h (__uniq_ptr_impl): Add assertions to
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check deleter type.
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(unique_ptr::unique_ptr(pointer, const deleter_type&)): Add copy
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constructible constraint.
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(unique_ptr::unique_ptr(pointer, deleter_type&&)): Disable for
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deleters of reference type and add move constructible constraint.
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(unique_ptr::unique_ptr(pointer, remove_reference_t<deleter_type>&&)):
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Disable for deleters of non-reference type. Define as deleted.
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(unique_ptr<T[], D>): Likewise.
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* testsuite/20_util/unique_ptr/assign/48635_neg.cc: Replace dg-error
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directives with unstable line numbers with dg-prune-output.
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* testsuite/20_util/unique_ptr/cons/cv_qual_neg.cc: Likewise.
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* testsuite/20_util/unique_ptr/cons/lwg2905.cc: New test.
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* testsuite/20_util/unique_ptr/specialized_algorithms/swap_cxx17.cc:
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Make deleter types invocable.
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2018-09-05 Jonathan Wakely <jwakely@redhat.com>
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* libsupc++/cxxabi.h (__cxa_demangle): Clarify doxygen comment.
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@ -139,6 +139,12 @@ _GLIBCXX_BEGIN_NAMESPACE_VERSION
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using pointer = typename _Ptr<_Tp, _Dp>::type;
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static_assert( !is_rvalue_reference<_Dp>::value,
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"unique_ptr's deleter type must be a function object type"
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" or an lvalue reference type" );
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static_assert( __is_invocable<_Dp&, pointer&>::value,
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"unique_ptr's deleter must be invocable with a pointer" );
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__uniq_ptr_impl() = default;
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__uniq_ptr_impl(pointer __p) : _M_t() { _M_ptr() = __p; }
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@ -159,9 +165,9 @@ _GLIBCXX_BEGIN_NAMESPACE_VERSION
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template <typename _Tp, typename _Dp = default_delete<_Tp>>
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class unique_ptr
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{
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template <class _Up>
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using _DeleterConstraint =
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typename __uniq_ptr_impl<_Tp, _Up>::_DeleterConstraint::type;
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template <typename _Up>
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using _DeleterConstraint =
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typename __uniq_ptr_impl<_Tp, _Up>::_DeleterConstraint::type;
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__uniq_ptr_impl<_Tp, _Dp> _M_t;
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@ -170,6 +176,7 @@ _GLIBCXX_BEGIN_NAMESPACE_VERSION
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using element_type = _Tp;
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using deleter_type = _Dp;
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private:
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// helper template for detecting a safe conversion from another
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// unique_ptr
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template<typename _Up, typename _Ep>
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@ -183,11 +190,11 @@ _GLIBCXX_BEGIN_NAMESPACE_VERSION
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>
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>;
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public:
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// Constructors.
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/// Default constructor, creates a unique_ptr that owns nothing.
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template <typename _Up = _Dp,
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typename = _DeleterConstraint<_Up>>
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template<typename _Del = _Dp, typename = _DeleterConstraint<_Del>>
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constexpr unique_ptr() noexcept
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: _M_t()
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{ }
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@ -198,8 +205,7 @@ _GLIBCXX_BEGIN_NAMESPACE_VERSION
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*
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* The deleter will be value-initialized.
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*/
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template <typename _Up = _Dp,
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typename = _DeleterConstraint<_Up>>
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template<typename _Del = _Dp, typename = _DeleterConstraint<_Del>>
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explicit
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unique_ptr(pointer __p) noexcept
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: _M_t(__p)
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@ -212,27 +218,34 @@ _GLIBCXX_BEGIN_NAMESPACE_VERSION
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*
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* The deleter will be initialized with @p __d
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*/
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unique_ptr(pointer __p,
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typename conditional<is_reference<deleter_type>::value,
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deleter_type, const deleter_type&>::type __d) noexcept
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: _M_t(__p, __d) { }
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template<typename _Del = deleter_type,
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typename = _Require<is_copy_constructible<_Del>>>
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unique_ptr(pointer __p, const deleter_type& __d) noexcept
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: _M_t(__p, __d) { }
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/** Takes ownership of a pointer.
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*
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* @param __p A pointer to an object of @c element_type
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* @param __d An rvalue reference to a deleter.
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* @param __d An rvalue reference to a (non-reference) deleter.
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*
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* The deleter will be initialized with @p std::move(__d)
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*/
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unique_ptr(pointer __p,
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typename remove_reference<deleter_type>::type&& __d) noexcept
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: _M_t(std::move(__p), std::move(__d))
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{ static_assert(!std::is_reference<deleter_type>::value,
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"rvalue deleter bound to reference"); }
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template<typename _Del = deleter_type,
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typename = _Require<is_move_constructible<_Del>>>
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unique_ptr(pointer __p,
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__enable_if_t<!is_lvalue_reference<_Del>::value,
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_Del&&> __d) noexcept
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: _M_t(__p, std::move(__d))
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{ }
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template<typename _Del = deleter_type,
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typename _DelUnref = typename remove_reference<_Del>::type>
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unique_ptr(pointer,
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__enable_if_t<is_lvalue_reference<_Del>::value,
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_DelUnref&&>) = delete;
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/// Creates a unique_ptr that owns nothing.
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template <typename _Up = _Dp,
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typename = _DeleterConstraint<_Up>>
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template<typename _Del = _Dp, typename = _DeleterConstraint<_Del>>
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constexpr unique_ptr(nullptr_t) noexcept : unique_ptr() { }
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// Move constructors.
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@ -454,8 +467,7 @@ _GLIBCXX_BEGIN_NAMESPACE_VERSION
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// Constructors.
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/// Default constructor, creates a unique_ptr that owns nothing.
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template <typename _Up = _Dp,
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typename = _DeleterConstraint<_Up>>
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template<typename _Del = _Dp, typename = _DeleterConstraint<_Del>>
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constexpr unique_ptr() noexcept
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: _M_t()
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{ }
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@ -485,12 +497,10 @@ _GLIBCXX_BEGIN_NAMESPACE_VERSION
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*
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* The deleter will be initialized with @p __d
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*/
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template<typename _Up,
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typename = typename enable_if<
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__safe_conversion_raw<_Up>::value, bool>::type>
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unique_ptr(_Up __p,
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typename conditional<is_reference<deleter_type>::value,
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deleter_type, const deleter_type&>::type __d) noexcept
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template<typename _Up, typename _Del = deleter_type,
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typename = _Require<__safe_conversion_raw<_Up>,
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is_copy_constructible<_Del>>>
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unique_ptr(_Up __p, const deleter_type& __d) noexcept
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: _M_t(__p, __d) { }
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/** Takes ownership of a pointer.
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@ -501,22 +511,28 @@ _GLIBCXX_BEGIN_NAMESPACE_VERSION
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*
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* The deleter will be initialized with @p std::move(__d)
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*/
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template<typename _Up,
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typename = typename enable_if<
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__safe_conversion_raw<_Up>::value, bool>::type>
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unique_ptr(_Up __p, typename
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remove_reference<deleter_type>::type&& __d) noexcept
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: _M_t(std::move(__p), std::move(__d))
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{ static_assert(!is_reference<deleter_type>::value,
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"rvalue deleter bound to reference"); }
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template<typename _Up, typename _Del = deleter_type,
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typename = _Require<__safe_conversion_raw<_Up>,
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is_move_constructible<_Del>>>
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unique_ptr(_Up __p,
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__enable_if_t<!is_lvalue_reference<_Del>::value,
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_Del&&> __d) noexcept
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: _M_t(std::move(__p), std::move(__d))
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{ }
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template<typename _Up, typename _Del = deleter_type,
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typename _DelUnref = typename remove_reference<_Del>::type,
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typename = _Require<__safe_conversion_raw<_Up>>>
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unique_ptr(_Up,
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__enable_if_t<is_lvalue_reference<_Del>::value,
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_DelUnref&&>) = delete;
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/// Move constructor.
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unique_ptr(unique_ptr&& __u) noexcept
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: _M_t(__u.release(), std::forward<deleter_type>(__u.get_deleter())) { }
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/// Creates a unique_ptr that owns nothing.
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template <typename _Up = _Dp,
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typename = _DeleterConstraint<_Up>>
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template<typename _Del = _Dp, typename = _DeleterConstraint<_Del>>
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constexpr unique_ptr(nullptr_t) noexcept : unique_ptr() { }
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template<typename _Up, typename _Ep,
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@ -42,10 +42,10 @@ void f()
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std::unique_ptr<int, D&> ud(nullptr, d);
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ub = std::move(ud); // { dg-error "no match" }
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ub2 = ud; // { dg-error "no match" }
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// { dg-error "no type" "" { target *-*-* } 307 }
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std::unique_ptr<int[], B&> uba(nullptr, b);
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std::unique_ptr<int[], D&> uda(nullptr, d);
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uba = std::move(uda); // { dg-error "no match" }
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// { dg-error "no type" "" { target *-*-* } 566 }
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}
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// { dg-prune-output "no type" }
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@ -39,7 +39,7 @@ test07()
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std::unique_ptr<const A[]> cA3(p); // { dg-error "no matching function" }
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std::unique_ptr<volatile A[]> vA3(p); // { dg-error "no matching function" }
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std::unique_ptr<const volatile A[]> cvA3(p); // { dg-error "no matching function" }
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// { dg-error "no type" "" { target *-*-* } 473 }
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// { dg-prune-output "no type" }
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}
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template<typename T>
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78
libstdc++-v3/testsuite/20_util/unique_ptr/cons/lwg2905.cc
Normal file
78
libstdc++-v3/testsuite/20_util/unique_ptr/cons/lwg2905.cc
Normal file
@ -0,0 +1,78 @@
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// Copyright (C) 2017 Free Software Foundation, Inc.
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//
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// This file is part of the GNU ISO C++ Library. This library is free
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// software; you can redistribute it and/or modify it under the
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// terms of the GNU General Public License as published by the
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// Free Software Foundation; either version 3, or (at your option)
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// any later version.
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// This library is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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// You should have received a copy of the GNU General Public License along
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// with this library; see the file COPYING3. If not see
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// <http://www.gnu.org/licenses/>.
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// { dg-do compile { target c++11 } }
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#include <memory>
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template<typename T, typename D, typename P, typename E>
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constexpr bool check()
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{ return std::is_constructible<std::unique_ptr<T, D>, P, E>::value; }
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struct Del { void operator()(void*) const { } };
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static_assert( ! check<int, Del&, int*, Del>(), "" );
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static_assert( check<int, Del&, int*, Del&>(), "" );
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static_assert( check<int, const Del&, int*, Del&>(), "" );
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static_assert( ! check<int, Del&, int*, const Del&>(), "" );
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static_assert( check<int, Del, int*, const Del&>(), "" );
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static_assert( check<int, Del, int*, Del>(), "" );
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static_assert( ! check<int[], Del&, int*, Del>(), "" );
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static_assert( check<int[], Del&, int*, Del&>(), "" );
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static_assert( check<int[], const Del&, int*, Del&>(), "" );
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static_assert( ! check<int[], Del&, int*, const Del&>(), "" );
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static_assert( check<int[], Del, int*, const Del&>(), "" );
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static_assert( check<int[], Del, int*, Del>(), "" );
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struct DelNoCopy {
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DelNoCopy() = default;
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DelNoCopy(const DelNoCopy&) = delete;
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DelNoCopy(DelNoCopy&&) = default;
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void operator()(void*) const { }
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};
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static_assert( ! check<int, DelNoCopy&, int*, DelNoCopy>(), "" );
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static_assert( check<int, DelNoCopy&, int*, DelNoCopy&>(), "" );
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static_assert( check<int, const DelNoCopy&, int*, DelNoCopy&>(), "" );
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static_assert( ! check<int, DelNoCopy&, int*, const DelNoCopy&>(), "" );
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static_assert( ! check<int, DelNoCopy, int*, const DelNoCopy&>(), "" );
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static_assert( check<int, DelNoCopy, int*, DelNoCopy>(), "" );
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static_assert( ! check<int[], DelNoCopy&, int*, DelNoCopy>(), "" );
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static_assert( check<int[], DelNoCopy&, int*, DelNoCopy&>(), "" );
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static_assert( check<int[], const DelNoCopy&, int*, DelNoCopy&>(), "" );
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static_assert( ! check<int[], DelNoCopy&, int*, const DelNoCopy&>(), "" );
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static_assert( ! check<int[], DelNoCopy, int*, const DelNoCopy&>(), "" );
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static_assert( check<int[], DelNoCopy, int*, DelNoCopy>(), "" );
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struct Base { virtual ~Base() { } };
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struct Derived : Base { };
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static_assert( ! check<Base[], Del&, Base*, Del>(), "" );
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static_assert( check<Base[], Del&, Base*, Del&>(), "" );
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static_assert( check<Base[], const Del&, Base*, Del&>(), "" );
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static_assert( ! check<Base[], Del&, Base*, const Del&>(), "" );
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static_assert( check<Base[], Del, Base*, const Del&>(), "" );
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static_assert( check<Base[], Del, Base*, Del>(), "" );
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static_assert( ! check<Base[], Del&, Derived*, Del>(), "" );
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static_assert( ! check<Base[], Del&, Derived*, Del&>(), "" );
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static_assert( ! check<Base[], const Del&, Derived*, Del&>(), "" );
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static_assert( ! check<Base[], Del&, Derived*, const Del&>(), "" );
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static_assert( ! check<Base[], Del, Derived*, const Del&>(), "" );
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static_assert( ! check<Base[], Del, Derived*, Del>(), "" );
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@ -21,13 +21,18 @@
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#include <memory>
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// Not swappable, and unique_ptr not swappable via the generic std::swap.
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struct C { };
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struct C {
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void operator()(void*) const { }
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};
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void swap(C&, C&) = delete;
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static_assert( !std::is_swappable_v<std::unique_ptr<int, C>> );
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// Not swappable, and unique_ptr not swappable via the generic std::swap.
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struct D { D(D&&) = delete; };
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struct D {
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D(D&&) = delete;
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void operator()(void*) const { }
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};
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static_assert( !std::is_swappable_v<std::unique_ptr<int, D>> );
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