10d29c390d
Change-Id: I076f16d0536b534abf0ced4d76051eadb4c0e033 Reviewed-on: https://gerrit.libreoffice.org/c/core/+/114949 Tested-by: Jenkins Reviewed-by: Stephan Bergmann <sbergman@redhat.com>
539 lines
14 KiB
C++
539 lines
14 KiB
C++
/* -*- Mode: C++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4 -*- */
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/*
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* This file is part of the LibreOffice project.
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*
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* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/.
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*
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* This file incorporates work covered by the following license notice:
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*
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* Licensed to the Apache Software Foundation (ASF) under one or more
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* contributor license agreements. See the NOTICE file distributed
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* with this work for additional information regarding copyright
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* ownership. The ASF licenses this file to you under the Apache
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* License, Version 2.0 (the "License"); you may not use this file
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* except in compliance with the License. You may obtain a copy of
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* the License at http://www.apache.org/licenses/LICENSE-2.0 .
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*/
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#include <sal/config.h>
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#include <sal/log.hxx>
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#include <osl/diagnose.h>
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#include <osl/mutex.hxx>
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#include <cppuhelper/weakagg.hxx>
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#include <cppuhelper/exc_hlp.hxx>
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#include <cppuhelper/queryinterface.hxx>
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#include <com/sun/star/lang/DisposedException.hpp>
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#include <algorithm>
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#include <vector>
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using namespace osl;
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using namespace com::sun::star::uno;
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/** */ //for docpp
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namespace cppu
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{
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// due to static Reflection destruction from usr, there must be a mutex leak (#73272#)
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// this is used to lock all instances of OWeakConnectionPoint and OWeakRefListener as well as OWeakObject::m_pWeakConnectionPoint
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static Mutex & getWeakMutex()
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{
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static Mutex * s_pMutex = new Mutex();
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return *s_pMutex;
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}
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//-- OWeakConnectionPoint ----------------------------------------------------
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class OWeakConnectionPoint: public XAdapter
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{
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public:
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/**
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Hold the weak object without an acquire (only the pointer).
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*/
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explicit OWeakConnectionPoint( OWeakObject* pObj )
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: m_aRefCount( 0 )
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, m_pObject(pObj)
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{}
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// noncopyable
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OWeakConnectionPoint(const OWeakConnectionPoint&) = delete;
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const OWeakConnectionPoint& operator=(const OWeakConnectionPoint&) = delete;
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// XInterface
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Any SAL_CALL queryInterface( const Type & rType ) override;
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void SAL_CALL acquire() noexcept override;
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void SAL_CALL release() noexcept override;
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// XAdapter
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css::uno::Reference< css::uno::XInterface > SAL_CALL queryAdapted() override;
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void SAL_CALL addReference( const css::uno::Reference< css::uno::XReference >& xRef ) override;
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void SAL_CALL removeReference( const css::uno::Reference< css::uno::XReference >& xRef ) override;
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/// Called from the weak object if the reference count goes to zero.
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///
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/// @throws css::uno::RuntimeException
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void dispose();
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private:
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virtual ~OWeakConnectionPoint() {}
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/// The reference counter.
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oslInterlockedCount m_aRefCount;
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/// The weak object
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OWeakObject* m_pObject;
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/// The container to hold the weak references
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std::vector<Reference<XReference>> m_aReferences;
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};
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// XInterface
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Any SAL_CALL OWeakConnectionPoint::queryInterface( const Type & rType )
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{
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return ::cppu::queryInterface(
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rType, static_cast< XAdapter * >( this ), static_cast< XInterface * >( this ) );
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}
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// XInterface
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void SAL_CALL OWeakConnectionPoint::acquire() noexcept
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{
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#ifdef DBG_UTIL
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// catch things early which have been deleted and then re-acquired
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assert(m_aRefCount != -1);
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#endif
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osl_atomic_increment( &m_aRefCount );
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}
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// XInterface
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void SAL_CALL OWeakConnectionPoint::release() noexcept
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{
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if (! osl_atomic_decrement( &m_aRefCount ))
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{
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#ifdef DBG_UTIL
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m_aRefCount = -1;
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#endif
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delete this;
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}
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}
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void OWeakConnectionPoint::dispose()
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{
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std::vector<Reference<XReference>> aCopy;
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{ // only hold the mutex while we access the field
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MutexGuard aGuard(getWeakMutex());
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// OWeakObject is not the only owner of this, so clear m_pObject
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// so that queryAdapted() won't use it now that it's dead
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m_pObject = nullptr;
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// other code is going to call removeReference while we are doing this, so we need a
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// copy, but since we are disposing and going away, we can just take the original data
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aCopy.swap(m_aReferences);
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}
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Any ex;
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for (const Reference<XReference> & i : aCopy )
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{
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try
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{
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i->dispose();
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}
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catch (css::lang::DisposedException &) {}
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catch (RuntimeException &)
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{
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ex = cppu::getCaughtException();
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}
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}
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if (ex.hasValue())
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{
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cppu::throwException(ex);
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}
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}
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// XInterface
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Reference< XInterface > SAL_CALL OWeakConnectionPoint::queryAdapted()
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{
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Reference< XInterface > ret;
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ClearableMutexGuard guard(getWeakMutex());
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if (m_pObject)
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{
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oslInterlockedCount n = osl_atomic_increment( &m_pObject->m_refCount );
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if (n > 1)
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{
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// The reference is incremented. The object cannot be destroyed.
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// Release the guard at the earliest point.
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guard.clear();
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// WeakObject has a (XInterface *) cast operator
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ret = *m_pObject;
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osl_atomic_decrement( &m_pObject->m_refCount );
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}
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else
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// Another thread wait in the dispose method at the guard
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osl_atomic_decrement( &m_pObject->m_refCount );
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}
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return ret;
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}
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// XInterface
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void SAL_CALL OWeakConnectionPoint::addReference(const Reference< XReference >& rRef)
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{
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MutexGuard aGuard(getWeakMutex());
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m_aReferences.push_back( rRef );
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}
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// XInterface
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void SAL_CALL OWeakConnectionPoint::removeReference(const Reference< XReference >& rRef)
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{
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MutexGuard aGuard(getWeakMutex());
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// Search from end because the thing that last added a ref is most likely to be the
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// first to remove a ref.
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// It's not really valid to compare the pointer directly, but it's faster.
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auto it = std::find_if(m_aReferences.rbegin(), m_aReferences.rend(),
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[&rRef](const Reference<XReference>& rxRef) { return rxRef.get() == rRef.get(); });
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if (it != m_aReferences.rend()) {
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m_aReferences.erase( it.base()-1 );
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return;
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}
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// interface not found, use the correct compare method
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it = std::find(m_aReferences.rbegin(), m_aReferences.rend(), rRef);
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if ( it != m_aReferences.rend() )
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m_aReferences.erase( it.base()-1 );
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}
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//-- OWeakObject -------------------------------------------------------
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#ifdef _MSC_VER
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// Accidentally occurs in msvc mapfile = > had to be outlined.
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OWeakObject::OWeakObject()
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: m_refCount( 0 ),
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m_pWeakConnectionPoint( nullptr )
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{
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}
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#endif
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// XInterface
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Any SAL_CALL OWeakObject::queryInterface( const Type & rType )
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{
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return ::cppu::queryInterface(
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rType,
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static_cast< XWeak * >( this ), static_cast< XInterface * >( this ) );
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}
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// XInterface
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void SAL_CALL OWeakObject::acquire() noexcept
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{
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osl_atomic_increment( &m_refCount );
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}
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// XInterface
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void SAL_CALL OWeakObject::release() noexcept
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{
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if (osl_atomic_decrement( &m_refCount ) == 0) {
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// notify/clear all weak-refs before object's dtor is executed
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// (which may check weak-refs to this object):
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disposeWeakConnectionPoint();
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// destroy object:
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delete this;
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}
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}
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void OWeakObject::disposeWeakConnectionPoint()
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{
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OSL_PRECOND( m_refCount == 0, "OWeakObject::disposeWeakConnectionPoint: only to be called with a ref count of 0!" );
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if (m_pWeakConnectionPoint != nullptr) {
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OWeakConnectionPoint * const p = m_pWeakConnectionPoint;
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m_pWeakConnectionPoint = nullptr;
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try {
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p->dispose();
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}
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catch (RuntimeException const& exc) {
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SAL_WARN( "cppuhelper", exc );
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}
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p->release();
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}
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}
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OWeakObject::~OWeakObject() COVERITY_NOEXCEPT_FALSE
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{
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}
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// XWeak
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Reference< XAdapter > SAL_CALL OWeakObject::queryAdapter()
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{
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if (!m_pWeakConnectionPoint)
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{
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// only acquire mutex if member is not created
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MutexGuard aGuard( getWeakMutex() );
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if( !m_pWeakConnectionPoint )
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{
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OWeakConnectionPoint * p = new OWeakConnectionPoint(this);
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p->acquire();
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m_pWeakConnectionPoint = p;
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}
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}
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return m_pWeakConnectionPoint;
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}
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//-- OWeakAggObject ----------------------------------------------------
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OWeakAggObject::~OWeakAggObject()
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{
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}
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// XInterface
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void OWeakAggObject::acquire() noexcept
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{
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Reference<XInterface > x( xDelegator );
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if (x.is())
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x->acquire();
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else
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OWeakObject::acquire();
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}
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// XInterface
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void OWeakAggObject::release() noexcept
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{
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Reference<XInterface > x( xDelegator );
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if (x.is())
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x->release();
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else
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OWeakObject::release();
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}
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// XInterface
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Any OWeakAggObject::queryInterface( const Type & rType )
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{
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Reference< XInterface > x( xDelegator ); // harden ref
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return (x.is() ? x->queryInterface( rType ) : queryAggregation( rType ));
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}
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// XAggregation
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Any OWeakAggObject::queryAggregation( const Type & rType )
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{
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return ::cppu::queryInterface(
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rType,
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static_cast< XInterface * >( static_cast< OWeakObject * >( this ) ),
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static_cast< XAggregation * >( this ),
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static_cast< XWeak * >( this ) );
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}
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// XAggregation
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void OWeakAggObject::setDelegator( const Reference<XInterface > & rDelegator )
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{
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xDelegator = rDelegator;
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}
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}
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/** */ //for docpp
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namespace com::sun::star::uno
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{
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//-- OWeakRefListener -----------------------------------------------------
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class OWeakRefListener final : public XReference
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{
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public:
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explicit OWeakRefListener(const Reference< XInterface >& xInt);
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virtual ~OWeakRefListener();
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// noncopyable
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OWeakRefListener(const OWeakRefListener&) = delete;
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const OWeakRefListener& operator=(const OWeakRefListener&) = delete;
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// XInterface
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Any SAL_CALL queryInterface( const Type & rType ) override;
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void SAL_CALL acquire() noexcept override;
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void SAL_CALL release() noexcept override;
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// XReference
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void SAL_CALL dispose() override;
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/// The reference counter.
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oslInterlockedCount m_aRefCount;
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/// The connection point of the weak object, guarded by getWeakMutex()
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Reference< XAdapter > m_XWeakConnectionPoint;
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};
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OWeakRefListener::OWeakRefListener(const Reference< XInterface >& xInt)
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: m_aRefCount( 1 )
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{
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try
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{
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Reference< XWeak > xWeak( Reference< XWeak >::query( xInt ) );
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if (xWeak.is())
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{
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m_XWeakConnectionPoint = xWeak->queryAdapter();
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if (m_XWeakConnectionPoint.is())
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{
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m_XWeakConnectionPoint->addReference(static_cast<XReference*>(this));
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}
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}
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}
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catch (RuntimeException &) { OSL_ASSERT( false ); } // assert here, but no unexpected()
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osl_atomic_decrement( &m_aRefCount );
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}
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OWeakRefListener::~OWeakRefListener()
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{
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try
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{
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if (m_XWeakConnectionPoint.is())
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{
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acquire(); // don't die again
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m_XWeakConnectionPoint->removeReference(static_cast<XReference*>(this));
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}
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}
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catch (RuntimeException &) { OSL_ASSERT( false ); } // assert here, but no unexpected()
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}
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// XInterface
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Any SAL_CALL OWeakRefListener::queryInterface( const Type & rType )
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{
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return ::cppu::queryInterface(
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rType, static_cast< XReference * >( this ), static_cast< XInterface * >( this ) );
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}
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// XInterface
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void SAL_CALL OWeakRefListener::acquire() noexcept
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{
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osl_atomic_increment( &m_aRefCount );
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}
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// XInterface
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void SAL_CALL OWeakRefListener::release() noexcept
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{
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if( ! osl_atomic_decrement( &m_aRefCount ) )
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delete this;
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}
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void SAL_CALL OWeakRefListener::dispose()
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{
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Reference< XAdapter > xAdp;
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{
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MutexGuard guard(cppu::getWeakMutex());
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if( m_XWeakConnectionPoint.is() )
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{
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xAdp = m_XWeakConnectionPoint;
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m_XWeakConnectionPoint.clear();
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}
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}
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if( xAdp.is() )
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xAdp->removeReference(static_cast<XReference*>(this));
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}
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//-- WeakReferenceHelper ----------------------------------------------------------
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WeakReferenceHelper::WeakReferenceHelper(const Reference< XInterface >& xInt)
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: m_pImpl( nullptr )
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{
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if (xInt.is())
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{
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m_pImpl = new OWeakRefListener(xInt);
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m_pImpl->acquire();
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}
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}
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WeakReferenceHelper::WeakReferenceHelper(const WeakReferenceHelper& rWeakRef)
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: m_pImpl( nullptr )
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{
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Reference< XInterface > xInt( rWeakRef.get() );
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if (xInt.is())
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{
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m_pImpl = new OWeakRefListener(xInt);
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m_pImpl->acquire();
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}
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}
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void WeakReferenceHelper::clear()
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{
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try
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{
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if (m_pImpl)
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{
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m_pImpl->dispose();
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m_pImpl->release();
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m_pImpl = nullptr;
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}
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}
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catch (RuntimeException &) { OSL_ASSERT( false ); } // assert here, but no unexpected()
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}
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WeakReferenceHelper& WeakReferenceHelper::operator=(const WeakReferenceHelper& rWeakRef)
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{
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if (this == &rWeakRef)
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{
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return *this;
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}
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Reference< XInterface > xInt( rWeakRef.get() );
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return operator = ( xInt );
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}
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WeakReferenceHelper & WeakReferenceHelper::operator =(
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WeakReferenceHelper && other)
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{
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clear();
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std::swap(m_pImpl, other.m_pImpl);
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return *this;
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}
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WeakReferenceHelper & SAL_CALL
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WeakReferenceHelper::operator= (const Reference< XInterface > & xInt)
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{
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try
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{
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clear();
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if (xInt.is())
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{
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m_pImpl = new OWeakRefListener(xInt);
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m_pImpl->acquire();
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}
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}
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catch (RuntimeException &) { OSL_ASSERT( false ); } // assert here, but no unexpected()
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return *this;
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}
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WeakReferenceHelper::~WeakReferenceHelper()
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{
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clear();
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}
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Reference< XInterface > WeakReferenceHelper::get() const
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{
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try
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{
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Reference< XAdapter > xAdp;
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{
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// must lock to access m_XWeakConnectionPoint
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MutexGuard guard(cppu::getWeakMutex());
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if( m_pImpl && m_pImpl->m_XWeakConnectionPoint.is() )
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xAdp = m_pImpl->m_XWeakConnectionPoint;
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}
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if (xAdp.is())
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return xAdp->queryAdapted();
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}
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catch (RuntimeException &)
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{
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OSL_ASSERT( false );
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} // assert here, but no unexpected()
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return Reference< XInterface >();
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}
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}
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/* vim:set shiftwidth=4 softtabstop=4 expandtab: */
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