/usr/include/Ice/Functional.h is in libzeroc-ice35-dev 3.5.1-6.4ubuntu1.
This file is owned by root:root, with mode 0o644.
The actual contents of the file can be viewed below.
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//
// Copyright (c) 2003-2013 ZeroC, Inc. All rights reserved.
//
// This copy of Ice is licensed to you under the terms described in the
// ICE_LICENSE file included in this distribution.
//
// **********************************************************************
#ifndef ICE_FUNCTIONAL_H
#define ICE_FUNCTIONAL_H
#include <IceUtil/Functional.h>
#include <Ice/Handle.h>
// ----------------------------------------------------------------------
// Inline functions that return function objects that work with
// IceInternal::Handle
// ----------------------------------------------------------------------
namespace Ice
{
template<class R, class T>
inline ::IceUtilInternal::MemFun<R, T, ::IceInternal::Handle<T> >
memFun(R (T::*p)(void))
{
return ::IceUtilInternal::MemFun<R, T, ::IceInternal::Handle<T> >(p);
}
template<class R, class T, class A>
inline ::IceUtilInternal::MemFun1<R, T, ::IceInternal::Handle<T>, A>
memFun1(R (T::*p)(A))
{
return ::IceUtilInternal::MemFun1<R, T, ::IceInternal::Handle<T>, A>(p);
}
template<class T>
inline ::IceUtilInternal::VoidMemFun<T, ::IceInternal::Handle<T> >
voidMemFun(void (T::*p)(void))
{
return ::IceUtilInternal::VoidMemFun<T, ::IceInternal::Handle<T> >(p);
}
template<class T, class A>
inline ::IceUtilInternal::VoidMemFun1<T, ::IceInternal::Handle<T>, A>
voidMemFun1(void (T::*p)(A))
{
return ::IceUtilInternal::VoidMemFun1<T, ::IceInternal::Handle<T>, A>(p);
}
template<class R, class K, class T>
inline ::IceUtilInternal::SecondMemFun<R, K, T, ::IceInternal::Handle<T> >
secondMemFun(R (T::*p)(void))
{
return ::IceUtilInternal::SecondMemFun<R, K, T, ::IceInternal::Handle<T> >(p);
}
template<class R, class K, class T, class A>
inline ::IceUtilInternal::SecondMemFun1<R, K, T, ::IceInternal::Handle<T>, A>
secondMemFun1(R (T::*p)(A))
{
return ::IceUtilInternal::SecondMemFun1<R, K, T, ::IceInternal::Handle<T>, A>(p);
}
template<class K, class T>
inline ::IceUtilInternal::SecondVoidMemFun<K, T, ::IceInternal::Handle<T> >
secondVoidMemFun(void (T::*p)(void))
{
return ::IceUtilInternal::SecondVoidMemFun<K, T, ::IceInternal::Handle<T> >(p);
}
template<class K, class T, class A>
inline ::IceUtilInternal::SecondVoidMemFun1<K, T, ::IceInternal::Handle<T>, A>
secondVoidMemFun1(void (T::*p)(A))
{
return ::IceUtilInternal::SecondVoidMemFun1<K, T, ::IceInternal::Handle<T>, A>(p);
}
template<class R, class T>
inline ::IceUtilInternal::ConstMemFun<R, T, ::IceInternal::Handle<T> >
constMemFun(R (T::*p)(void) const)
{
return ::IceUtilInternal::ConstMemFun<R, T, ::IceInternal::Handle<T> >(p);
}
template<class R, class T, class A>
inline ::IceUtilInternal::ConstMemFun1<R, T, ::IceInternal::Handle<T>, A>
constMemFun1(R (T::*p)(A) const)
{
return ::IceUtilInternal::ConstMemFun1<R, T, ::IceInternal::Handle<T>, A>(p);
}
template<class T>
inline ::IceUtilInternal::ConstVoidMemFun<T, ::IceInternal::Handle<T> >
constVoidMemFun(void (T::*p)(void) const)
{
return ::IceUtilInternal::ConstVoidMemFun<T, ::IceInternal::Handle<T> >(p);
}
template<class T, class A>
inline ::IceUtilInternal::ConstVoidMemFun1<T, ::IceInternal::Handle<T>, A>
constVoidMemFun1(void (T::*p)(A) const)
{
return ::IceUtilInternal::ConstVoidMemFun1<T, ::IceInternal::Handle<T>, A>(p);
}
template<class R, class K, class T>
inline ::IceUtilInternal::SecondConstMemFun<R, K, T, ::IceInternal::Handle<T> >
secondConstMemFun(R (T::*p)(void) const)
{
return ::IceUtilInternal::SecondConstMemFun<R, K, T, ::IceInternal::Handle<T> >(p);
}
template<class R, class K, class T, class A>
inline ::IceUtilInternal::SecondConstMemFun1<R, K, T, ::IceInternal::Handle<T>, A>
secondConstMemFun1(R (T::*p)(A) const)
{
return ::IceUtilInternal::SecondConstMemFun1<R, K, T, ::IceInternal::Handle<T>, A>(p);
}
template<class K, class T>
inline ::IceUtilInternal::SecondConstVoidMemFun<K, T, ::IceInternal::Handle<T> >
secondConstVoidMemFun(void (T::*p)(void) const)
{
return ::IceUtilInternal::SecondConstVoidMemFun<K, T, ::IceInternal::Handle<T> >(p);
}
template<class K, class T, class A>
inline ::IceUtilInternal::SecondConstVoidMemFun1<K, T, ::IceInternal::Handle<T>, A>
secondConstVoidMemFun1(void (T::*p)(A) const)
{
return ::IceUtilInternal::SecondConstVoidMemFun1<K, T, ::IceInternal::Handle<T>, A>(p);
}
}
#endif
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