D4451: Fix copy/move issues casude by __tuple_leafs's converting constructor
git-svn-id: https://llvm.org/svn/llvm-project/libcxx/trunk@213888 91177308-0d34-0410-b5e6-96231b3b80d8
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@@ -27,6 +27,32 @@
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_LIBCPP_BEGIN_NAMESPACE_STD
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// __lazy_and
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template <bool _Last, class ..._Preds>
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struct __lazy_and_impl;
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template <class ..._Preds>
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struct __lazy_and_impl<false, _Preds...> : false_type {};
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template <>
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struct __lazy_and_impl<true> : true_type {};
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template <class _Pred>
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struct __lazy_and_impl<true, _Pred> : integral_constant<bool, _Pred::type::value> {};
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template <class _Hp, class ..._Tp>
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struct __lazy_and_impl<true, _Hp, _Tp...> : __lazy_and_impl<_Hp::type::value, _Tp...> {};
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template <class _P1, class ..._Pr>
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struct __lazy_and : __lazy_and_impl<_P1::type::value, _Pr...> {};
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// __lazy_not
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template <class _Pred>
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struct __lazy_not : integral_constant<bool, !_Pred::type::value> {};
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template <class _Tp> class _LIBCPP_TYPE_VIS_ONLY tuple_size;
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template <class _Tp>
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@@ -210,7 +210,13 @@ public:
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"Attempted to default construct a reference element in a tuple");}
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template <class _Tp,
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class = typename enable_if<is_constructible<_Hp, _Tp>::value>::type>
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class = typename enable_if<
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__lazy_and<
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__lazy_not<is_same<typename decay<_Tp>::type, __tuple_leaf>>
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, is_constructible<_Hp, _Tp>
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>::value
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>::type
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>
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_LIBCPP_INLINE_VISIBILITY _LIBCPP_CONSTEXPR_AFTER_CXX11
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explicit __tuple_leaf(_Tp&& __t) _NOEXCEPT_((is_nothrow_constructible<_Hp, _Tp>::value))
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: value(_VSTD::forward<_Tp>(__t))
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@@ -316,7 +322,13 @@ public:
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: _Hp(__a) {}
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template <class _Tp,
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class = typename enable_if<is_constructible<_Hp, _Tp>::value>::type>
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class = typename enable_if<
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__lazy_and<
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__lazy_not<is_same<typename decay<_Tp>::type, __tuple_leaf>>
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, is_constructible<_Hp, _Tp>
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>::value
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>::type
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>
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_LIBCPP_INLINE_VISIBILITY _LIBCPP_CONSTEXPR_AFTER_CXX11
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explicit __tuple_leaf(_Tp&& __t) _NOEXCEPT_((is_nothrow_constructible<_Hp, _Tp>::value))
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: _Hp(_VSTD::forward<_Tp>(__t)) {}
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@@ -336,6 +348,9 @@ public:
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explicit __tuple_leaf(integral_constant<int, 2>, const _Alloc& __a, _Tp&& __t)
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: _Hp(_VSTD::forward<_Tp>(__t), __a) {}
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__tuple_leaf(__tuple_leaf const &) = default;
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__tuple_leaf(__tuple_leaf &&) = default;
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template <class _Tp>
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_LIBCPP_INLINE_VISIBILITY
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__tuple_leaf&
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@@ -17,6 +17,40 @@
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#include <string>
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#include <cassert>
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template <class ...>
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struct never {
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enum { value = 0 };
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};
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struct NoValueCtor
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{
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NoValueCtor() : id(++count) {}
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NoValueCtor(NoValueCtor const & other) : id(other.id) { ++count; }
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// The constexpr is required to make is_constructible instantiate this template.
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// The explicit is needed to test-around a similar bug with is_convertible.
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template <class T>
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constexpr explicit NoValueCtor(T)
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{ static_assert(never<T>::value, "This should not be instantiated"); }
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static int count;
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int id;
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};
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int NoValueCtor::count = 0;
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struct NoValueCtorEmpty
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{
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NoValueCtorEmpty() {}
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NoValueCtorEmpty(NoValueCtorEmpty const &) {}
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template <class T>
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constexpr explicit NoValueCtorEmpty(T)
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{ static_assert(never<T>::value, "This should not be instantiated"); }
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};
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int main()
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{
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{
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@@ -56,6 +90,23 @@ int main()
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assert(std::get<1>(t) == nullptr);
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assert(std::get<2>(t) == "text");
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}
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// __tuple_leaf<T> uses is_constructible<T, U> to disable its explicit converting
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// constructor overload __tuple_leaf(U &&). Evaluating is_constructible can cause a compile error.
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// This overload is evaluated when __tuple_leafs copy or move ctor is called.
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// This checks that is_constructible is not evaluated when U == __tuple_leaf.
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{
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std::tuple<int, NoValueCtor, int, int> t(1, NoValueCtor(), 2, 3);
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assert(std::get<0>(t) == 1);
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assert(std::get<1>(t).id == 1);
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assert(std::get<2>(t) == 2);
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assert(std::get<3>(t) == 3);
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}
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{
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std::tuple<int, NoValueCtorEmpty, int, int> t(1, NoValueCtorEmpty(), 2, 3);
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assert(std::get<0>(t) == 1);
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assert(std::get<2>(t) == 2);
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assert(std::get<3>(t) == 3);
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}
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// extensions
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{
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std::tuple<int, char*, std::string> t(2);
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@@ -18,6 +18,18 @@
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#include "../MoveOnly.h"
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struct ConstructsWithTupleLeaf
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{
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ConstructsWithTupleLeaf() {}
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ConstructsWithTupleLeaf(ConstructsWithTupleLeaf const &) { assert(false); }
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ConstructsWithTupleLeaf(ConstructsWithTupleLeaf &&) {}
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template <class T>
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ConstructsWithTupleLeaf(T t)
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{ assert(false); }
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};
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int main()
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{
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{
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@@ -46,4 +58,12 @@ int main()
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assert(std::get<1>(t) == 1);
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assert(std::get<2>(t) == 2);
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}
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// A bug in tuple caused __tuple_leaf to use its explicit converting constructor
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// as its move constructor. This tests that ConstructsWithTupleLeaf is not called
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// (w/ __tuple_leaf)
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{
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typedef std::tuple<ConstructsWithTupleLeaf> d_t;
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d_t d((ConstructsWithTupleLeaf()));
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d_t d2(static_cast<d_t &&>(d));
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}
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}
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@@ -18,7 +18,7 @@ int main()
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#if _LIBCPP_STD_VER > 11
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typedef std::complex<float> cf;
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auto t1 = std::make_tuple<int, std::string> ( 42, "Hi" );
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assert ( std::get<cf>(t1) == cf {1,2} ); // no such type
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assert (( std::get<cf>(t1) == cf {1,2} )); // no such type
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#else
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#error
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#endif
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@@ -17,7 +17,7 @@ int main()
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#if _LIBCPP_STD_VER > 11
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typedef std::complex<float> cf;
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auto t1 = std::make_pair<int, double> ( 42, 3.4 );
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assert ( std::get<cf>(t1) == cf {1,2} ); // no such type
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assert (( std::get<cf>(t1) == cf {1,2} )); // no such type
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#else
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#error
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#endif
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