office-gobmx/sal/inc/rtl/ref.hxx
Stephan Bergmann 6e67c03dc0 Enable -Wnon-virtual-dtor for GCC 4.6
...which has the necessary features to support it.

Change a lot of classes to either contain a protected non-virtual dtor
(which is backwards compatible, so even works for cppumaker-generated
UNO headers) or a public virtual one.

cppuhelper/propertysetmixin.hxx still needs to disable the warning, as
the relevant class has a non-virtual dtor but friends, which would still
cause GCC to warn.

Includes a patch for libcmis, intended to be upstreamed.
2012-03-14 13:32:02 +01:00

250 lines
6 KiB
C++

/* -*- Mode: C++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4 -*- */
/*************************************************************************
*
* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
*
* Copyright 2000, 2010 Oracle and/or its affiliates.
*
* OpenOffice.org - a multi-platform office productivity suite
*
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* it under the terms of the GNU Lesser General Public License version 3
* only, as published by the Free Software Foundation.
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU Lesser General Public License version 3 for more details
* (a copy is included in the LICENSE file that accompanied this code).
*
* You should have received a copy of the GNU Lesser General Public License
* version 3 along with OpenOffice.org. If not, see
* <http://www.openoffice.org/license.html>
* for a copy of the LGPLv3 License.
*
************************************************************************/
#ifndef _RTL_REF_HXX_
#define _RTL_REF_HXX_
#include <sal/types.h>
#include <osl/diagnose.h>
#include <osl/interlck.h>
namespace rtl
{
/** Interface for a reference type.
*/
class IReference
{
public:
/** @see osl_incrementInterlockedCount.
*/
virtual oslInterlockedCount SAL_CALL acquire() = 0;
/** @see osl_decrementInterlockedCount.
*/
virtual oslInterlockedCount SAL_CALL release() = 0;
protected:
~IReference() {}
// avoid warnings about virtual members and non-virtual dtor
};
/** Template reference class for reference type derived from IReference.
*/
template <class reference_type>
class Reference
{
/** The <b>reference_type</b> body pointer.
*/
reference_type * m_pBody;
public:
/** Constructor...
*/
inline Reference()
: m_pBody (0)
{}
/** Constructor...
*/
inline Reference (reference_type * pBody)
: m_pBody (pBody)
{
if (m_pBody)
m_pBody->acquire();
}
/** Copy constructor...
*/
inline Reference (const Reference<reference_type> & handle)
: m_pBody (handle.m_pBody)
{
if (m_pBody)
m_pBody->acquire();
}
/** Destructor...
*/
inline ~Reference()
{
if (m_pBody)
m_pBody->release();
}
/** Set...
Similar to assignment.
*/
inline Reference<reference_type> &
SAL_CALL set (reference_type * pBody)
{
if (pBody)
pBody->acquire();
reference_type * const pOld = m_pBody;
m_pBody = pBody;
if (pOld)
pOld->release();
return *this;
}
/** Assignment.
Unbinds this instance from its body (if bound) and
bind it to the body represented by the handle.
*/
inline Reference<reference_type> &
SAL_CALL operator= (const Reference<reference_type> & handle)
{
return set( handle.m_pBody );
}
/** Assignment...
*/
inline Reference<reference_type> &
SAL_CALL operator= (reference_type * pBody)
{
return set( pBody );
}
/** Unbind the body from this handle.
Note that for a handle representing a large body,
"handle.clear().set(new body());" _might_
perform a little bit better than "handle.set(new body());",
since in the second case two large objects exist in memory
(the old body and the new body).
*/
inline Reference<reference_type> & SAL_CALL clear()
{
if (m_pBody)
{
reference_type * const pOld = m_pBody;
m_pBody = 0;
pOld->release();
}
return *this;
}
/** Get the body. Can be used instead of operator->().
I.e. handle->someBodyOp() and handle.get()->someBodyOp()
are the same.
*/
inline reference_type * SAL_CALL get() const
{
return m_pBody;
}
/** Probably most common used: handle->someBodyOp().
*/
inline reference_type * SAL_CALL operator->() const
{
OSL_PRECOND(m_pBody, "Reference::operator->() : null body");
return m_pBody;
}
/** Allows (*handle).someBodyOp().
*/
inline reference_type & SAL_CALL operator*() const
{
OSL_PRECOND(m_pBody, "Reference::operator*() : null body");
return *m_pBody;
}
/** Returns True if the handle does point to a valid body.
*/
inline sal_Bool SAL_CALL is() const
{
return (m_pBody != 0);
}
/** Returns True if this points to pBody.
*/
inline sal_Bool SAL_CALL operator== (const reference_type * pBody) const
{
return (m_pBody == pBody);
}
/** Returns True if handle points to the same body.
*/
inline sal_Bool
SAL_CALL operator== (const Reference<reference_type> & handle) const
{
return (m_pBody == handle.m_pBody);
}
/** Needed to place References into STL collection.
*/
inline sal_Bool
SAL_CALL operator!= (const Reference<reference_type> & handle) const
{
return (m_pBody != handle.m_pBody);
}
/** Needed to place References into STL collection.
*/
inline sal_Bool
SAL_CALL operator< (const Reference<reference_type> & handle) const
{
return (m_pBody < handle.m_pBody);
}
/** Needed to place References into STL collection.
*/
inline sal_Bool
SAL_CALL operator> (const Reference<reference_type> & handle) const
{
return (m_pBody > handle.m_pBody);
}
};
/// @cond INTERNAL
/** Enables boost::mem_fn and boost::bind to recognize Reference.
*/
template <typename T>
inline T * get_pointer( Reference<T> const& r )
{
return r.get();
}
/// @endcond
} // namespace rtl
#endif /* !_RTL_REF_HXX_ */
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