[libcxx] Fix PR 22468 - std::function<void()> does not accept non-void-returning functions

Summary:
The bug can be found here: http://llvm.org/bugs/show_bug.cgi?id=22468

`__invoke_void_return_wrapper` is needed to properly handle calling a function that returns a value but where the std::function return type is void. Without this '-Wsystem-headers' will cause `function::operator()(...)` to not compile. 

Reviewers: eugenis, K-ballo, mclow.lists

Reviewed By: mclow.lists

Subscribers: cfe-commits

Differential Revision: http://reviews.llvm.org/D7444

git-svn-id: https://llvm.org/svn/llvm-project/libcxx/trunk@228705 91177308-0d34-0410-b5e6-96231b3b80d8
This commit is contained in:
Eric Fiselier 2015-02-10 16:48:45 +00:00
parent 31cb7fe75e
commit c3231d213a
8 changed files with 169 additions and 6 deletions

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@ -369,7 +369,8 @@ template<class _Fp, class _Alloc, class _Rp>
_Rp
__func<_Fp, _Alloc, _Rp()>::operator()()
{
return __invoke(__f_.first());
typedef __invoke_void_return_wrapper<_Rp> _Invoker;
return _Invoker::__call(__f_.first());
}
#ifndef _LIBCPP_NO_RTTI
@ -452,7 +453,8 @@ template<class _Fp, class _Alloc, class _Rp, class _A0>
_Rp
__func<_Fp, _Alloc, _Rp(_A0)>::operator()(_A0 __a0)
{
return __invoke(__f_.first(), __a0);
typedef __invoke_void_return_wrapper<_Rp> _Invoker;
return _Invoker::__call(__f_.first(), __a0);
}
#ifndef _LIBCPP_NO_RTTI
@ -535,7 +537,8 @@ template<class _Fp, class _Alloc, class _Rp, class _A0, class _A1>
_Rp
__func<_Fp, _Alloc, _Rp(_A0, _A1)>::operator()(_A0 __a0, _A1 __a1)
{
return __invoke(__f_.first(), __a0, __a1);
typedef __invoke_void_return_wrapper<_Rp> _Invoker;
return _Invoker::__call(__f_.first(), __a0, __a1);
}
#ifndef _LIBCPP_NO_RTTI
@ -618,7 +621,8 @@ template<class _Fp, class _Alloc, class _Rp, class _A0, class _A1, class _A2>
_Rp
__func<_Fp, _Alloc, _Rp(_A0, _A1, _A2)>::operator()(_A0 __a0, _A1 __a1, _A2 __a2)
{
return __invoke(__f_.first(), __a0, __a1, __a2);
typedef __invoke_void_return_wrapper<_Rp> _Invoker;
return _Invoker::__call(__f_.first(), __a0, __a1, __a2);
}
#ifndef _LIBCPP_NO_RTTI

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@ -419,6 +419,26 @@ struct __invoke_return
typedef decltype(__invoke(_VSTD::declval<_Tp>(), _VSTD::declval<_Args>()...)) type;
};
template <class _Ret>
struct __invoke_void_return_wrapper
{
template <class ..._Args>
static _Ret __call(_Args&&... __args)
{
return __invoke(_VSTD::forward<_Args>(__args)...);
}
};
template <>
struct __invoke_void_return_wrapper<void>
{
template <class ..._Args>
static void __call(_Args&&... __args)
{
__invoke(_VSTD::forward<_Args>(__args)...);
}
};
template <class _Tp>
class _LIBCPP_TYPE_VIS_ONLY reference_wrapper
: public __weak_result_type<_Tp>

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@ -995,6 +995,63 @@ struct __invoke_return2
_VSTD::declval<_A2>())) type;
};
template <class _Ret>
struct __invoke_void_return_wrapper
{
template <class _Fn>
static _Ret __call(_Fn __f)
{
return __invoke(__f);
}
template <class _Fn, class _A0>
static _Ret __call(_Fn __f, _A0& __a0)
{
return __invoke(__f, __a0);
}
template <class _Fn, class _A0, class _A1>
static _Ret __call(_Fn __f, _A0& __a0, _A1& __a1)
{
return __invoke(__f, __a0, __a1);
}
template <class _Fn, class _A0, class _A1, class _A2>
static _Ret __call(_Fn __f, _A0& __a0, _A1& __a1, _A2& __a2)
{
return __invoke(__f, __a0, __a1, __a2);
}
};
template <>
struct __invoke_void_return_wrapper<void>
{
template <class _Fn>
static void __call(_Fn __f)
{
__invoke(__f);
}
template <class _Fn, class _A0>
static void __call(_Fn __f, _A0& __a0)
{
__invoke(__f, __a0);
}
template <class _Fn, class _A0, class _A1>
static void __call(_Fn __f, _A0& __a0, _A1& __a1)
{
__invoke(__f, __a0, __a1);
}
template <class _Fn, class _A0, class _A1, class _A2>
static void __call(_Fn __f, _A0& __a0, _A1& __a1, _A2& __a2)
{
__invoke(__f, __a0, __a1, __a2);
}
};
template <class _Tp>
class _LIBCPP_TYPE_VIS_ONLY reference_wrapper
: public __weak_result_type<_Tp>

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@ -1367,7 +1367,8 @@ template<class _Fp, class _Alloc, class _Rp, class ..._ArgTypes>
_Rp
__func<_Fp, _Alloc, _Rp(_ArgTypes...)>::operator()(_ArgTypes&& ... __arg)
{
return __invoke(__f_.first(), _VSTD::forward<_ArgTypes>(__arg)...);
typedef __invoke_void_return_wrapper<_Rp> _Invoker;
return _Invoker::__call(__f_.first(), _VSTD::forward<_ArgTypes>(__arg)...);
}
#ifndef _LIBCPP_NO_RTTI
@ -1429,7 +1430,7 @@ class _LIBCPP_TYPE_VIS_ONLY function<_Rp(_ArgTypes...)>
template <class _Fp>
struct __callable<_Fp, true>
{
static const bool value =
static const bool value = is_same<void, _Rp>::value ||
is_convertible<typename __invoke_of<_Fp&, _ArgTypes...>::type,
_Rp>::value;
};

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@ -81,4 +81,10 @@ int main()
assert(globalMemCounter.checkOutstandingNewEq(0));
assert(f.target<int (A::*)(int) const>() != 0);
}
{
std::function<void(int)> f(&g);
assert(f);
assert(f.target<int(*)(int)>() != 0);
f(1);
}
}

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@ -88,4 +88,11 @@ int main()
assert(globalMemCounter.checkOutstandingNewEq(0));
assert(f.target<int (A::*)(int) const>() != 0);
}
{
std::function<void(int)> f;
f = &g;
assert(f);
assert(f.target<int(*)(int)>() != 0);
f(1);
}
}

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@ -89,4 +89,12 @@ int main()
fun(10);
}
#endif
{
std::function<void(int)> fun(std::allocator_arg,
test_allocator<int(*)(int)>(),
&g);
assert(fun);
assert(fun.target<int(*)(int)>() != 0);
fun(10);
}
}

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@ -0,0 +1,60 @@
//===----------------------------------------------------------------------===//
//
// 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.
//
//===----------------------------------------------------------------------===//
// <functional>
// class function<R()>
// Test that we properly return both values and void for all non-variadic
// overloads of function::operator()(...)
#define _LIBCPP_HAS_NO_VARIADICS
#include <functional>
#include <cassert>
int foo0() { return 42; }
int foo1(int) { return 42; }
int foo2(int, int) { return 42; }
int foo3(int, int, int) { return 42; }
int main()
{
{
std::function<int()> f(&foo0);
assert(f() == 42);
}
{
std::function<int(int)> f(&foo1);
assert(f(1) == 42);
}
{
std::function<int(int, int)> f(&foo2);
assert(f(1, 1) == 42);
}
{
std::function<int(int, int, int)> f(&foo3);
assert(f(1, 1, 1) == 42);
}
{
std::function<void()> f(&foo0);
f();
}
{
std::function<void(int)> f(&foo1);
f(1);
}
{
std::function<void(int, int)> f(&foo2);
f(1, 1);
}
{
std::function<void(int, int, int)> f(&foo3);
f(1, 1, 1);
}
}