/* -*- 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 . */ #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include using namespace ::test; using namespace ::rtl; using namespace ::osl; using namespace ::cppu; using namespace ::com::sun::star::uno; using namespace ::com::sun::star::lang; using namespace ::com::sun::star::bridge; using namespace ::com::sun::star::connection; #include "testcomp.h" #ifdef SAL_W32 #include #endif /********* * ********/ class MyThread : public Thread { public: MyThread( const Reference< XAcceptor > &r , const Reference< XBridgeFactory > &rFactory, const Reference< XMultiServiceFactory > &rSMgr, const OUString &sConnectionDescription, const OUString &sProtocol, sal_Bool bReverse, sal_Bool bLatency ) : m_rAcceptor( r ), m_rBridgeFactory ( rFactory ), m_rSMgr( rSMgr ), m_sConnectionDescription( sConnectionDescription ), m_sProtocol( sProtocol ), m_bReverse( bReverse ), m_bLatency( bLatency ) {} virtual void SAL_CALL run(); void latencyTest( const Reference< XConnection > &r ); private: Reference < XAcceptor > m_rAcceptor; Reference < XBridgeFactory > m_rBridgeFactory; Reference < XMultiServiceFactory > m_rSMgr; OUString m_sConnectionDescription; OUString m_sProtocol; sal_Bool m_bReverse; sal_Bool m_bLatency; }; void MyThread::latencyTest( const Reference< XConnection > &r ) { Sequence < sal_Int8 > s; while( 12 == r->read( s , 12 ) ) { r->read( s , 188 ); s = Sequence < sal_Int8 >(60); r->write( s ); } } void MyThread::run() { while ( true ) { try { Reference < XConnection > rConnection = m_rAcceptor->accept( m_sConnectionDescription ); if( ! rConnection.is() ) { break; } if( m_bLatency ) { latencyTest( rConnection ); } else { Reference < XBridge > rBridge = m_rBridgeFactory->createBridge( OUString() , m_sProtocol, rConnection , (XInstanceProvider * ) new OInstanceProvider(m_rSMgr) ); if( m_bReverse ) { printf( "doing reverse callme test (test is ok, when on each line a +- appears\n" ); Reference < XInterface > r = rBridge->getInstance( OUString("blubber" )); Reference < XTestFactory > rFactory( r , UNO_QUERY ); Reference < XCallMe > rCallMe = rFactory->createCallMe(); for( sal_Int32 i = 0 ; i < 1 ; i ++ ) { rCallMe->callOneway( OUString("my test string") , 2 ); } printf( "all oneway are send\n" ); rCallMe->call( OUString( "reverse call me test finished" ) , 0 ); printf( "revers callme test finished\n" ); } } } catch ( Exception & e ) { printf( "Exception was thrown by acceptor \n" ); OString o = OUStringToOString( e.Message , RTL_TEXTENCODING_ASCII_US ); printf( "%s\n" , o.getStr() ); break; } catch ( ... ) { printf( "Exception was thrown by acceptor thread\n" ); break; } } } int main( int argc, char *argv[] ) { // testserver(); if( argc < 2 ) { printf( "usage : testserver [-r] connectionstring\n" " -r does a reverse test (server calls client)\n" ); return 0; } OUString sConnectionString; OUString sProtocol; sal_Bool bReverse = sal_False; sal_Bool bLatency = sal_False; parseCommandLine( argv , &sConnectionString , &sProtocol , &bLatency , &bReverse ); { Reference< XMultiServiceFactory > rSMgr = createRegistryServiceFactory( OUString( "server.rdb" ) ); Reference < XBridgeFactory > rBridgeFactory ( createComponent( OUString("com.sun.star.bridge.BridgeFactory"), OUString( "bridgefac.uno" SAL_DLLEXTENSION ), rSMgr ), UNO_QUERY ); createComponent( OUString("com.sun.star.bridge.Bridge.iiop"), OUString( "remotebridge.uno" SAL_DLLEXTENSION), rSMgr ); Reference < XAcceptor > rAcceptor( createComponent( OUString("com.sun.star.connection.Acceptor"), OUString( "acceptor.uno" SAL_DLLEXTENSION), rSMgr ) , UNO_QUERY ); MyThread thread( rAcceptor , rBridgeFactory, rSMgr, sConnectionString, sProtocol, bReverse, bLatency); thread.create(); #ifdef SAL_W32 _getch(); #elif SOLARIS getchar(); #elif LINUX TimeValue value={360,0}; osl_waitThread( &value ); #endif printf( "Closing...\n" ); rAcceptor->stopAccepting(); thread.join(); printf( "Closed\n" ); Reference < XComponent > rComp2( rBridgeFactory , UNO_QUERY ); rComp2->dispose(); Reference < XComponent > rComp( rSMgr, UNO_QUERY ); rComp->dispose(); } return 0; } /* vim:set shiftwidth=4 softtabstop=4 expandtab: */