os/kernelhwsrv/kerneltest/e32test/bench/t_svr2.cpp
author sl
Tue, 10 Jun 2014 14:32:02 +0200
changeset 1 260cb5ec6c19
permissions -rw-r--r--
Update contrib.
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// Copyright (c) 1996-2009 Nokia Corporation and/or its subsidiary(-ies).
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// All rights reserved.
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// This component and the accompanying materials are made available
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// under the terms of the License "Eclipse Public License v1.0"
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// which accompanies this distribution, and is available
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// at the URL "http://www.eclipse.org/legal/epl-v10.html".
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//
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// Initial Contributors:
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// Nokia Corporation - initial contribution.
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//
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// Contributors:
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//
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// Description:
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// e32test\bench\t_svr2.cpp
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// Overview:
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// Tests the Client/Server architecture of the Symbian platform. 
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// Tests that messages are completed when a server terminates.
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// API Information:
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// CSession2, CServer2, RSessionBase.
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// Details:
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// - Create and start a server thread. Verify results are as expected.
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// - Create and close client sessions to enforce granularity expansion.
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// - Open and close a session and verify that the heap is OK.
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// - Open a connection specifying 0 message slots for the session and verify
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// that the server returns KErrNone.
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// - Create lot of timers to eliminate kernel granularities.
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// - Create a client session and validate kernel heap is ok if client is killed.
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// - Create a client session and validate kernel heap is ok if server is killed
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// when client has outstanding request to server.
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// Platforms/Drives/Compatibility:
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// All 
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// Assumptions/Requirement/Pre-requisites:
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// Failures and causes:
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// Base Port information:
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// 
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//
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#include <e32base.h>
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#include <e32base_private.h>
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#include <e32test.h>
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#include <e32def.h>
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#include <e32def_private.h>
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const TInt KHeapSize=0x4000;
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const TInt KMajorVersionNumber=1;
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const TInt KMinorVersionNumber=0;
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const TInt KBuildVersionNumber=1;
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_LIT(KServerName,"MyServer");
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class CMySession : public CSession2
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	{
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public:
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	enum {ETest, ENeverComplete};
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public:
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	CMySession();
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	virtual void ServiceL(const RMessage2& aMessage);//Overloading pure virtual
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	};
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class CMyServer : public CServer2
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	{
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public:
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	CMyServer(TInt aPriority);
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	static CMyServer *New(TInt aPriority);
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	virtual CSession2* NewSessionL(const TVersion& aVersion,const RMessage2& aMessage) const ;
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};
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class CMyActiveScheduler : public CActiveScheduler
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	{
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public:
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	virtual void Error(TInt anError) const;	 //Overloading pure virtual
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	};
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class RMySessionBase : public RSessionBase
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	{
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public:
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	TInt Open();
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	TInt Test();
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	TInt NeverComplete();
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	TVersion Version();
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	};
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_LIT(KSvrSemName, "svrSem");
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_LIT(KSvrSem2Name, "svrSem2");
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_LIT(KClientSemName, "clientSem");
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CMySession::CMySession()
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	{}
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void CMySession::ServiceL(const RMessage2& aMessage)
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//
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// Handle messages for this server.
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//
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	{
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	RSemaphore svrSem;
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	//CMySession &c=(CMySession &)aClient;// passed as CSession2 since fn overloads pure virtual fn
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	TInt r=KErrNone;
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	switch (aMessage.Function())
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		{
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	case ETest:
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		break;
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	case ENeverComplete:
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		r = svrSem.OpenGlobal(KSvrSemName);
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		if (r != KErrNone)
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			break;
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		svrSem.Signal(); // all ready for the server to be killed
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		svrSem.Close();
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		return;
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	default:
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		r=KErrNotSupported;
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		}
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	aMessage.Complete(r);
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	}
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CMyServer* CMyServer::New(TInt aPriority)
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//
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// Create a new CMyServer.
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//
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	{
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	return new CMyServer(aPriority);
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	}
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CMyServer::CMyServer(TInt aPriority)
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//
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// Constructor.
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//
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	: CServer2(aPriority)
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	{}
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CSession2* CMyServer::NewSessionL(const TVersion&, const RMessage2&) const
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//
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// Create a new client for this server.
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//
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	{
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	return new(ELeave) CMySession();
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	}
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void CMyActiveScheduler::Error(TInt anError) const
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//
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// Called if any Run() method leaves.
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//
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	{
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	RTest testSvr(_L("Server"));
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	testSvr.Panic(anError,_L("CMyActiveScheduler::Error"));
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	}
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TInt RMySessionBase::Open()
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//
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// Open the server.
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//
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	{
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	return CreateSession(KServerName,Version(),0);
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	}
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TInt RMySessionBase::Test()
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//
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// Send a message and wait for completion.
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//
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	{
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	return SendReceive(CMySession::ETest, TIpcArgs());
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	}
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TInt RMySessionBase::NeverComplete()
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//
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// Send a message and wait for completion.
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//
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	{
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	return SendReceive(CMySession::ENeverComplete, TIpcArgs());
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	}
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TVersion RMySessionBase::Version()
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//
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// Return the current version.
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//
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	{
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	TVersion v(KMajorVersionNumber,KMinorVersionNumber,KBuildVersionNumber);
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	return v;
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	}
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LOCAL_C TInt serverThreadEntryPoint(TAny*)
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//
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// The entry point for the server thread.
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//
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	{
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	CMyActiveScheduler *pR = new CMyActiveScheduler;
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	if (pR == NULL)
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		return KErrNoMemory;
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	CActiveScheduler::Install(pR);
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	CMyServer* pS = CMyServer::New(0);
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	if (pS == NULL)
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		return KErrNoMemory;
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	TInt r = pS->Start(KServerName);
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	if (r != KErrNone)
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		return r;
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	RSemaphore svrSem2;
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	r = svrSem2.OpenGlobal(KSvrSem2Name);
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	if (r != KErrNone)
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		return r;
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	svrSem2.Signal();
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	svrSem2.Close();
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	CActiveScheduler::Start();
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	return KErrNone;
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	}
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LOCAL_C TInt clientThreadEntryPoint(TAny *param)
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//
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// The entry point for the client thread.
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//
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	{
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	RSemaphore svrSem2;
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	RSemaphore clientSem;
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	TInt r = clientSem.OpenGlobal(KClientSemName);
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	if (r != KErrNone)
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		return r;
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	RMySessionBase t;
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	RMySessionBase t2;
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//	RTimer rt[40];
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//	TUint c;
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	switch ((TUint32)param)
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		{
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	case 1:
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		r=t.Open();
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		if (r != KErrNone)
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			break;
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		clientSem.Signal();
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		clientSem.Close();
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		FOREVER
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			;
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	case 2:
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		// Now create a lot of timers to eliminate kernel granularities
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/*		for (c=0;c<40;c++)
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			{
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			TInt r=rt[c].CreateLocal();
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			test(r==KErrNone);
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			}
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		for (c=0;c<39;c++)
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			rt[c].Close();
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*/
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		r=svrSem2.OpenGlobal(KSvrSem2Name);
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		if (r != KErrNone)
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			break;
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		clientSem.Signal();
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		svrSem2.Wait();
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		svrSem2.Close();
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		User::After(2000000);
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		r=t2.Open();
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		if (r != KErrNone)
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			break;
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		r=t2.NeverComplete(); // r should be KErrServerTerminated
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		if (r != KErrServerTerminated)
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			break;
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		t2.Close();
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		clientSem.Signal();
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		clientSem.Close();
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		FOREVER
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			;
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	default:
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		break;
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		}
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	return r;
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	}
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GLDEF_C TInt E32Main()
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//
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// Test server & session cleanup.
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//
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    {
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	RSemaphore svrSem;
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	RSemaphore svrSem2;
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	RSemaphore clientSem;
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	RTest test(_L("T_SVR2"));
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	test.Title();
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	__KHEAP_MARK;
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	test.Start(_L("Creating server semaphore"));
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	TInt r=svrSem.CreateGlobal(KSvrSemName, 0);
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	test(r==KErrNone);
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	test.Next(_L("Creating server semaphore 2"));
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	r=svrSem2.CreateGlobal(KSvrSem2Name, 0);
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	test(r==KErrNone);
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	test.Next(_L("Creating client semaphore"));
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	r=clientSem.CreateGlobal(KClientSemName, 0);
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	test(r==KErrNone);
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	test.Next(_L("Creating server"));
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	RThread server;
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	r=server.Create(_L("MyServer"),serverThreadEntryPoint,KDefaultStackSize,KHeapSize,KHeapSize,(TAny*)1);
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	test(r==KErrNone);
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	server.Resume();
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	svrSem2.Wait(); // server up & running
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	test.Next(_L("Forcing granularity expansion"));
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	const TInt KNumberOfSessions=10;
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	TInt i;
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	RMySessionBase ts[KNumberOfSessions];
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	for (i=0; i<KNumberOfSessions; i++)
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		ts[i].Open();
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	for (i=0; i<KNumberOfSessions; i++)
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		ts[i].Close(); 
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	test.Next(_L("Opening a session and closing it"));
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	RMySessionBase t;
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	r=t.Open();
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	test(r==KErrNone);
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	t.Close();
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	RThread clientx;
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	r=clientx.Create(_L("MyClientx"),clientThreadEntryPoint,KDefaultStackSize,KHeapSize,KHeapSize,(TAny*)1);
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	test(r==KErrNone);
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	clientx.Resume();
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	clientSem.Wait(); // client connected
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	test.Next(_L("Creating client & killing it"));
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	RThread client;
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	r=client.Create(_L("MyClient"),clientThreadEntryPoint,KDefaultStackSize,KHeapSize,KHeapSize,(TAny*)1);
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	test(r==KErrNone);
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	client.Resume();
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	clientSem.Wait(); // client connected
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	User::After(1000000);
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	client.Kill(666); // kill the client
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	clientx.Kill(666); // kill the client
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	CLOSE_AND_WAIT(clientx);
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	CLOSE_AND_WAIT(client);
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	test.Next(_L("Creating client and killing server"));
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	server.Kill(0);	// first kill the existing server 
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	CLOSE_AND_WAIT(server);
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	RThread client2;	// and create the client so the heap is in a good state for the mark
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	r=client2.Create(_L("MyClient"),clientThreadEntryPoint,KDefaultStackSize,KHeapSize,KHeapSize,(TAny*)2);
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	test(r==KErrNone);
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	client2.Resume();
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	clientSem.Wait(); // client running but not connected
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	RThread server2;
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	r=server2.Create(_L("MyServer"),serverThreadEntryPoint,KDefaultStackSize,KHeapSize,KHeapSize,(TAny*)2);
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	test(r==KErrNone);
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	server2.Resume();
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	svrSem.Wait(); // client has request outstanding to server
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	server2.Kill(666); // kill the server
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	clientSem.Wait(); // client's request has completed & client has closed session
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	User::After(1000000);
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	client2.Kill(666);
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	CLOSE_AND_WAIT(client2);
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	CLOSE_AND_WAIT(server2);
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	svrSem.Close();
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	svrSem2.Close();
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	clientSem.Close();
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	__KHEAP_MARKEND; // and check the kernel's heap is OK
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	test.End();
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 	return(KErrNone);
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    }
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