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libreoffice/chart2/source/tools/LifeTime.cxx

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/* -*- Mode: C++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4 -*- */
/*
* This file is part of the LibreOffice project.
*
* This Source Code Form is subject to the terms of the Mozilla Public
* License, v. 2.0. If a copy of the MPL was not distributed with this
* file, You can obtain one at http://mozilla.org/MPL/2.0/.
*
* This file incorporates work covered by the following license notice:
*
* Licensed to the Apache Software Foundation (ASF) under one or more
* contributor license agreements. See the NOTICE file distributed
* with this work for additional information regarding copyright
* ownership. The ASF licenses this file to you under the Apache
* License, Version 2.0 (the "License"); you may not use this file
* except in compliance with the License. You may obtain a copy of
* the License at http://www.apache.org/licenses/LICENSE-2.0 .
*/
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#include "LifeTime.hxx"
#include "macros.hxx"
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#include <osl/diagnose.h>
#include <com/sun/star/util/XModifyListener.hpp>
#include <com/sun/star/util/XCloseListener.hpp>
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using namespace ::com::sun::star;
namespace apphelper
{
LifeTimeManager::LifeTimeManager( lang::XComponent* pComponent, bool bLongLastingCallsCancelable )
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: m_aListenerContainer( m_aAccessMutex )
, m_pComponent(pComponent)
, m_bLongLastingCallsCancelable(bLongLastingCallsCancelable)
{
impl_init();
}
void LifeTimeManager::impl_init()
{
m_bDisposed = false;
m_bInDispose = false;
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m_nAccessCount = 0;
m_nLongLastingCallCount = 0;
m_aNoAccessCountCondition.set();
m_aNoLongLastingCallCountCondition.set();
}
LifeTimeManager::~LifeTimeManager()
{
}
bool LifeTimeManager::impl_isDisposed( bool bAssert )
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{
if( m_bDisposed || m_bInDispose )
{
if( bAssert )
{
OSL_FAIL( "This component is already disposed " );
(void)(bAssert);
}
return true;
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}
return false;
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}
bool LifeTimeManager
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::impl_canStartApiCall()
{
if( impl_isDisposed() )
return false; //behave passive if already disposed
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//mutex is acquired
return true;
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}
void LifeTimeManager
::impl_registerApiCall(bool bLongLastingCall)
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{
//only allowed if not disposed
//do not acquire the mutex here because it will be acquired already
m_nAccessCount++;
if(m_nAccessCount==1)
//@todo? is it ok to wake some threads here while we have acquired the mutex?
m_aNoAccessCountCondition.reset();
if(bLongLastingCall)
m_nLongLastingCallCount++;
if(m_nLongLastingCallCount==1)
m_aNoLongLastingCallCountCondition.reset();
}
void LifeTimeManager
::impl_unregisterApiCall(bool bLongLastingCall)
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{
//Mutex needs to be acquired exactly ones
//mutex may be released inbetween in special case of impl_apiCallCountReachedNull()
OSL_ENSURE( m_nAccessCount>0, "access count mismatch" );
m_nAccessCount--;
if(bLongLastingCall)
m_nLongLastingCallCount--;
if( m_nLongLastingCallCount==0 )
{
m_aNoLongLastingCallCountCondition.set();
}
if( m_nAccessCount== 0)
{
m_aNoAccessCountCondition.set();
impl_apiCallCountReachedNull();
}
}
bool LifeTimeManager
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::dispose() throw(uno::RuntimeException)
{
//hold no mutex
{
osl::Guard< osl::Mutex > aGuard( m_aAccessMutex );
if( m_bDisposed || m_bInDispose )
{
OSL_TRACE( "This component is already disposed " );
return false; //behave passive if already disposed
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}
m_bInDispose = true;
//adding any listener is not allowed anymore
//new calls will not be accepted
//still running calls have the freedom to finish their work without crash
}
//no mutex is acquired
//--do the disposing of listeners after calling this method
{
uno::Reference< lang::XComponent > xComponent =
uno::Reference< lang::XComponent >(m_pComponent);;
if(xComponent.is())
{
// notify XCLoseListeners
lang::EventObject aEvent( xComponent );
m_aListenerContainer.disposeAndClear( aEvent );
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}
}
//no mutex is acquired
{
osl::ClearableGuard< osl::Mutex > aGuard( m_aAccessMutex );
OSL_ENSURE( !m_bDisposed, "dispose was called already" );
m_bDisposed = true;
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aGuard.clear();
}
//no mutex is acquired
//wait until all still running calls have finished
//the accessCount cannot grow anymore, because all calls will return after checking m_bDisposed
m_aNoAccessCountCondition.wait();
//we are the only ones working on our data now
return true;
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//--release all resources and references after calling this method successful
}
CloseableLifeTimeManager::CloseableLifeTimeManager( ::com::sun::star::util::XCloseable* pCloseable
, ::com::sun::star::lang::XComponent* pComponent
, bool bLongLastingCallsCancelable )
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: LifeTimeManager( pComponent, bLongLastingCallsCancelable )
, m_pCloseable(pCloseable)
{
impl_init();
}
CloseableLifeTimeManager::~CloseableLifeTimeManager()
{
}
bool CloseableLifeTimeManager::impl_isDisposedOrClosed( bool bAssert )
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{
if( impl_isDisposed( bAssert ) )
return true;
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if( m_bClosed )
{
if( bAssert )
{
OSL_FAIL( "This object is already closed" );
(void)(bAssert);//avoid warnings
}
return true;
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}
return false;
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}
bool CloseableLifeTimeManager
::g_close_startTryClose(bool bDeliverOwnership)
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throw ( uno::Exception )
{
//no mutex is allowed to be acquired
{
osl::ResettableGuard< osl::Mutex > aGuard( m_aAccessMutex );
if( impl_isDisposedOrClosed(false) )
return false;
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//Mutex needs to be acquired exactly ones; will be released inbetween
if( !impl_canStartApiCall() )
return false;
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//mutex is acquired
//not closed already -> we try to close again
m_bInTryClose = true;
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m_aEndTryClosingCondition.reset();
impl_registerApiCall(false);
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}
//no mutex is acquired
//only remove listener calls will be worked on until end of tryclose
//all other new calls will wait till end of try close // @todo? is that really ok
//?? still running calls have the freedom to finish their work without crash
try
{
uno::Reference< util::XCloseable > xCloseable =
uno::Reference< util::XCloseable >(m_pCloseable);;
if(xCloseable.is())
{
//--call queryClosing on all registered close listeners
::cppu::OInterfaceContainerHelper* pIC = m_aListenerContainer.getContainer(
cppu::UnoType<util::XCloseListener>::get());;
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if( pIC )
{
lang::EventObject aEvent( xCloseable );
::cppu::OInterfaceIteratorHelper aIt( *pIC );
while( aIt.hasMoreElements() )
{
uno::Reference< util::XCloseListener > xCloseListener( aIt.next(), uno::UNO_QUERY );
if(xCloseListener.is())
xCloseListener->queryClosing( aEvent, bDeliverOwnership );
}
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}
}
}
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catch( const uno::Exception& )
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{
//no mutex is acquired
g_close_endTryClose(bDeliverOwnership, false);
throw;
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}
return true;
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}
void CloseableLifeTimeManager
::g_close_endTryClose(bool bDeliverOwnership, bool /* bMyVeto */ )
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{
//this method is called, if the try to close was not successful
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osl::Guard< osl::Mutex > aGuard( m_aAccessMutex );
impl_setOwnership( bDeliverOwnership, false );
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m_bInTryClose = false;
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m_aEndTryClosingCondition.set();
//Mutex needs to be acquired exactly ones
//mutex may be released inbetween in special case of impl_apiCallCountReachedNull()
impl_unregisterApiCall(false);
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}
bool CloseableLifeTimeManager
::g_close_isNeedToCancelLongLastingCalls( bool bDeliverOwnership, util::CloseVetoException& ex )
throw ( util::CloseVetoException )
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{
//this method is called when no closelistener has had a veto during queryclosing
//the method returns false, if nothing stands against closing anymore
//it returns true, if some longlasting calls are running, which might be cancelled
//it throws the given exception, if long calls are running but not cancelable
osl::Guard< osl::Mutex > aGuard( m_aAccessMutex );
//this count cannot grow after try of close has started, because we wait in all those methods for end of try closing
if( !m_nLongLastingCallCount )
return false;
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if(m_bLongLastingCallsCancelable)
return true;
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impl_setOwnership( bDeliverOwnership, true );
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m_bInTryClose = false;
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m_aEndTryClosingCondition.set();
//Mutex needs to be acquired exactly ones
//mutex may be released inbetween in special case of impl_apiCallCountReachedNull()
impl_unregisterApiCall(false);
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throw ex;
}
void CloseableLifeTimeManager
::g_close_endTryClose_doClose()
{
//this method is called, if the try to close was successful
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osl::ResettableGuard< osl::Mutex > aGuard( m_aAccessMutex );
m_bInTryClose = false;
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m_aEndTryClosingCondition.set();
//Mutex needs to be acquired exactly ones
//mutex may be released inbetween in special case of impl_apiCallCountReachedNull()
impl_unregisterApiCall(false);
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impl_doClose();
}
void CloseableLifeTimeManager::impl_setOwnership( bool bDeliverOwnership, bool bMyVeto )
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{
m_bOwnership = bDeliverOwnership && bMyVeto;
}
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void CloseableLifeTimeManager
::impl_apiCallCountReachedNull()
{
//Mutex needs to be acquired exactly ones
//mutex will be released inbetween in impl_doClose()
if( m_pCloseable && impl_shouldCloseAtNextChance() )
impl_doClose();
}
void CloseableLifeTimeManager
::impl_doClose()
{
//Mutex needs to be acquired exactly ones before calling impl_doClose()
if(m_bClosed)
return; //behave as passive as possible, if disposed or closed already
if( m_bDisposed || m_bInDispose )
return; //behave as passive as possible, if disposed or closed already
m_bClosed = true;
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NegativeGuard< osl::Mutex > aNegativeGuard( m_aAccessMutex );
//mutex is not acquired, mutex will be reacquired at the end of this method automatically
uno::Reference< util::XCloseable > xCloseable=NULL;
try
{
xCloseable = uno::Reference< util::XCloseable >(m_pCloseable);;
if(xCloseable.is())
{
//--call notifyClosing on all registered close listeners
::cppu::OInterfaceContainerHelper* pIC = m_aListenerContainer.getContainer(
cppu::UnoType<util::XCloseListener>::get());;
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if( pIC )
{
lang::EventObject aEvent( xCloseable );
::cppu::OInterfaceIteratorHelper aIt( *pIC );
while( aIt.hasMoreElements() )
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{
uno::Reference< util::XCloseListener > xListener( aIt.next(), uno::UNO_QUERY );
if( xListener.is() )
xListener->notifyClosing( aEvent );
}
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}
}
}
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catch( const uno::Exception& ex )
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{
ASSERT_EXCEPTION( ex );
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}
if(xCloseable.is())
{
uno::Reference< lang::XComponent > xComponent =
uno::Reference< lang::XComponent >( xCloseable, uno::UNO_QUERY );
if(xComponent.is())
{
OSL_ENSURE( m_bClosed, "a not closed component will be disposed " );
xComponent->dispose();
}
}
//mutex will be reacquired in destructor of aNegativeGuard
}
bool CloseableLifeTimeManager
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::g_addCloseListener( const uno::Reference< util::XCloseListener > & xListener )
throw(uno::RuntimeException)
{
osl::Guard< osl::Mutex > aGuard( m_aAccessMutex );
//Mutex needs to be acquired exactly ones; will be released inbetween
if( !impl_canStartApiCall() )
return false;
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//mutex is acquired
m_aListenerContainer.addInterface( cppu::UnoType<util::XCloseListener>::get(),xListener );
m_bOwnership = false;
return true;
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}
bool CloseableLifeTimeManager
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::impl_canStartApiCall()
{
//Mutex needs to be acquired exactly ones before calling this method
//the mutex will be released inbetween and reacquired
if( impl_isDisposed() )
return false; //behave passive if already disposed
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if( m_bClosed )
return false; //behave passive if closing is already done
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//during try-close most calls need to wait for the decision
while( m_bInTryClose )
{
//if someone tries to close this object at the moment
//we need to wait for his end because the result of the preceding call
//is relevant for our behaviour here
m_aAccessMutex.release();
m_aEndTryClosingCondition.wait(); //@todo??? this may block??? try closing
m_aAccessMutex.acquire();
if( m_bDisposed || m_bInDispose || m_bClosed )
return false; //return if closed already
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}
//mutex is acquired
return true;
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}
bool LifeTimeGuard
::startApiCall(bool bLongLastingCall)
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{
//Mutex needs to be acquired exactly ones; will be released inbetween
//mutex is requiered due to constructor of LifeTimeGuard
OSL_ENSURE( !m_bCallRegistered, "this method is only allowed ones" );
if(m_bCallRegistered)
return false;
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//Mutex needs to be acquired exactly ones; will be released inbetween
if( !m_rManager.impl_canStartApiCall() )
return false;
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//mutex is acquired
m_bCallRegistered = true;
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m_bLongLastingCallRegistered = bLongLastingCall;
m_rManager.impl_registerApiCall(bLongLastingCall);
return true;
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}
LifeTimeGuard::~LifeTimeGuard()
{
try
{
//do acquire the mutex if it was cleared before
CWS-TOOLING: integrate CWS sb102 2008-12-11 16:18:12 +0100 sb r265332 : #i95065# cleanup, to make Windows linking work 2008-12-11 16:16:03 +0100 sb r265331 : #i95065# missing SAL_DLLPUBLIC_EXPORT 2008-12-09 17:40:28 +0100 sb r265122 : #i94469# move CJK specific configuration data to brand layer 2008-12-09 16:09:08 +0100 sb r265112 : #i96959# use PTHREAD_MUTEX_RECURSIVE on all platforms 2008-12-09 15:54:31 +0100 sb r265110 : #i95065# do not derive apphelper::LifeTimeGuard from osl::ResettableMutexGuard to avoid problems with VISIBILITY_HIDDEN=TRUE on MSC 2008-12-09 15:40:51 +0100 sb r265104 : #i95065# add VISIBILITY_HIDDEN=TRUE to connectivity/source/drivers/mozab 2008-12-09 15:36:21 +0100 sb r265102 : #i95501# updated SDK_HOME 2008-12-09 15:31:46 +0100 sb r265099 : typo (temppath vs. tmppath) 2008-12-08 11:48:08 +0100 sb r264979 : #i95065# removed spurious ExplicitCategoriesProvider.obj (ExplicitCategoriesProvider.cxx is not in this directory) 2008-12-07 19:41:07 +0100 sb r264960 : #i96994# erroneously doubled backslash caused visibility feature to be disabled for all GCC versions on Mac OS X 2008-12-06 23:54:49 +0100 sb r264948 : changes from trunk that CWS-TOOLING's rebase to DEV300:m37 (r264891) had missed, as files had been moved around on this CWS 2008-12-05 20:29:23 +0100 sb r264919 : #i85508# versions of flex apparently differ in whether input() resp. yyinput() returns zero or EOF upon end of file 2008-12-05 15:37:23 +0100 sb r264908 : #i95315# removed obsolete jut 2008-12-05 15:34:59 +0100 sb r264907 : #i95531# removed empty obsolete directories 2008-12-05 10:09:23 +0100 sb r264891 : CWS-TOOLING: rebase CWS sb102 to trunk@264807 (milestone: DEV300:m37) 2008-12-04 14:50:20 +0100 sb r264845 : #i95065# introduced VISIBILITY_HIDDEN makefile flag to reduce duplications; made additional libraries use VISIBILITY_HIDDEN=TRUE to avoid warnings with recent GCC 4 versions (had to split certain code directories to make changes that would otherwise erroneously affect multiple libraries built in the same makefile); changed connectivity::ORefVector to no longer derive from std::vector, as that caused problems with the MSC implementation of VISIBILITY_HIDDEN=TRUE; replaced uses of JNIEXPORT with SAL_DLLPUBLIC_EXPORT, as the former does not expand to visibility attributes on some platforms where the latter does 2008-12-03 11:29:38 +0100 sb r264759 : #i94583# remove unnecessary (and wrong) assertion check for rtl_getAppCommandArg return value (which is guaranteed to return osl_Process_E_None or not return at all) 2008-12-02 17:18:31 +0100 sb r264724 : #i96809# silenced GCC 4.3.2 warning 2008-12-02 13:29:34 +0100 sb r264695 : #i96797# make get_tmp_dir fail less often 2008-11-28 17:19:24 +0100 sb r264566 : #i95691# inadvertently missing from -c 264564 2008-11-28 17:07:50 +0100 sb r264564 : #i95691# only structs of exactly 1, 2, 4, or 8 bytes are returned through registers 2008-11-25 13:28:08 +0100 sb r264291 : #i96427# support for SAL_EXCEPTION_DLLPUBLIC_EXPORT (patch by np) 2008-11-21 14:45:22 +0100 sb r264140 : #i95428# added SAL_EXCEPTION_DLLPUBLIC_EXPORT and SAL_EXCEPTION_DLLPRIVATE 2008-11-19 13:19:37 +0100 sb r263984 : #i95525# removed erroneous application/octet-stream svn:mime-type properties
2008-12-30 13:32:01 +00:00
osl::MutexGuard g(m_rManager.m_aAccessMutex);
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if(m_bCallRegistered)
{
//Mutex needs to be acquired exactly ones
//mutex may be released inbetween in special case of impl_apiCallCountReachedNull()
m_rManager.impl_unregisterApiCall(m_bLongLastingCallRegistered);
}
}
catch( uno::Exception& ex )
{
//@todo ? allow a uno::RuntimeException from dispose to travel through??
ex.Context.is(); //to avoid compilation warnings
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}
}
}//end namespace apphelper
/* vim:set shiftwidth=4 softtabstop=4 expandtab: */