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// Copyright (c) 1995-2009 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\active\t_ctimer.cpp
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// Overview:
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// Test timer functionality.
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// API Information:
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// CTimer
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// Details:
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// - Create some timer active objects, install an active scheduler, and the
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// active objects, request event after an interval and verify that:
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// - Absolute timer set with time less than current time return KErrUnderflow.
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// - Relative timer set with 0 goes off immediately.
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// - Absolute timer set to a time of now returns KErrUnderflow.
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// - Absolute timer set with time more than the current time returns KErrNone.
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// - Repeated timer is cancelled as expected.
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// - Call relative timer's After function without adding it to the active scheduler
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// and check for panic.
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// - Call absolute timer's At function without adding it to the active scheduler and
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// check for panic.
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// - Check if heap has been corrupted by the tests.
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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 <e32test.h>
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#include <e32panic.h>
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enum TDirective {ERelInvalidTime,ERelNotAdded,EAbNotAdded,EHighResNotAdded};
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LOCAL_D RTest test(_L("T_CTIMER"));
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LOCAL_D const TInt KRepeatID=999;
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LOCAL_D const TInt ID1=101;
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LOCAL_D const TInt ID2=102;
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LOCAL_D const TInt ID3=103;
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LOCAL_D TInt A[5]; //When a timer expires its identifier is placed in here
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class TestCTimer
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{
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public:
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void Test1();
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void Test2();
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void Test3();
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};
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class myScheduler : public CActiveScheduler
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{
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public:
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virtual void Error(TInt anError)const{User::Leave(anError);}
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};
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class myTimer : public CTimer
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{
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public:
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myTimer(const TInt aPriority, const TInt anId):CTimer(aPriority){iIdentifier=anId; iCount=0;}
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void RunL(void);
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void Start(void);
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static void SetNum(const TInt aNum) {iNum=aNum; iTotalCount=0;}
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private:
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TInt iIdentifier;
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TInt iCount;
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static TInt iNum;
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static TInt iTotalCount;
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};
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TInt myTimer::iTotalCount;
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TInt myTimer::iNum;
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void myTimer::RunL(void)
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//
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// Timer has completed
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//
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{
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A[iTotalCount++]=iIdentifier;
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if (iIdentifier==KRepeatID)
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{
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if(++iCount>2)
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Cancel();
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else
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After(100000);
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}
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if (iTotalCount>=iNum)
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CActiveScheduler::Stop();
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}
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void myTimer::Start(void)
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//
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// Start a timer going.
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//
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{
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ConstructL();
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CActiveScheduler::Add(this);
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}
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LOCAL_D TInt ThreadEntry(TAny* aDirective)
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//
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// Test thread
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//
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{
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myTimer* pTimer=new myTimer(0,ID1);
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TTime time;
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switch((TUint)aDirective)
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{
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case ERelInvalidTime: // Setting a relative timer with a negative time panics
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CActiveScheduler::Install(new myScheduler);
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pTimer->Start();
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pTimer->After(-100000);
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break;
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case ERelNotAdded: // Requesting an un-added relative timer panics
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pTimer->After(100000);
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break;
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case EAbNotAdded: // Requesting an un-added absolute timer panics
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time.HomeTime();
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pTimer->At(time);
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break;
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case EHighResNotAdded: // Requesting an un-added HighRes timer panics
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pTimer->HighRes(100000);
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break;
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}
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return(KErrNone);
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}
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void TestCTimer::Test1()
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//
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// Test timer active objects.
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//
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{
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test.Start(_L("Create objects"));
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myTimer* pTimer1=new myTimer(0, ID1);
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myTimer* pTimer2=new myTimer(0, ID2);
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myTimer* pTimer3=new myTimer(0, ID3);
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TTime time;
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pTimer1->Start();
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pTimer2->Start();
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pTimer3->Start();
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//
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test.Next(_L("Abs timer with time less than now set KErrUnderflow"));
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myTimer::SetNum(1);
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time.HomeTime();
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pTimer1->At(time+TTimeIntervalSeconds(-1));
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CActiveScheduler::Start();
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test(pTimer1->iStatus==KErrUnderflow);
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//
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test.Next(_L("Rel timer with 0 goes off immediately"));
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myTimer::SetNum(2);
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pTimer1->After(0);
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pTimer2->After(1000000);
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CActiveScheduler::Start();
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test(A[0]==ID1 && A[1]==ID2);
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//
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test.Next(_L("Abs timer to a time of now sets KErrUnderflow"));
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myTimer::SetNum(1);
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time.UniversalTime();
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pTimer1->AtUTC(time);
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CActiveScheduler::Start();
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test(pTimer1->iStatus==KErrUnderflow);
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//
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test.Next(_L("Abs timer set to future"));
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myTimer::SetNum(2);
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pTimer1->After(2000000);
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time.HomeTime();
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pTimer2->At(time+TTimeIntervalSeconds(1));
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CActiveScheduler::Start();
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test(A[0]==ID2 && A[1]==ID1&& pTimer1->iStatus==KErrNone && pTimer2->iStatus==KErrNone);
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//
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test.Next(_L("Cancel a repeating timer after 3"));
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myTimer::SetNum(4);
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myTimer* pRepeater=new myTimer(0,KRepeatID);
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pRepeater->Start();
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pTimer1->After(1000000);
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pRepeater->After(100000);
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CActiveScheduler::Start();
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test(A[0]==KRepeatID && A[1]==KRepeatID && A[2]==KRepeatID && A[3]==ID1);
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//
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test.Next(_L("HighRes timer"));
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myTimer::SetNum(1);
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pTimer1->HighRes(1000000);
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CActiveScheduler::Start();
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test(A[0]==ID1 && pTimer1->iStatus==KErrNone);
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//
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test.Next(_L("Destroy objects"));
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delete pTimer1;
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delete pTimer2;
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delete pTimer3;
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delete pRepeater;
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//
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test.End();
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}
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void TestCTimer::Test2()
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//
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// Test the panics
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//
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{
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RThread thread;
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TRequestStatus stat;
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//
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// Calling At or After or HighRes of an object not added to the queue panics
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//
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test.Start(_L("Queue rel when not added"));
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test(thread.Create(_L("myThread"),ThreadEntry,KDefaultStackSize,0x2000,0x2000,(TAny*)ERelNotAdded)==KErrNone);
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thread.Logon(stat);
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thread.Resume();
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User::WaitForRequest(stat);
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test(thread.ExitCategory().Compare(_L("E32USER-CBase"))==0);
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test(thread.ExitReason()==ETimNotAdded);
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test(thread.ExitType()==EExitPanic);
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CLOSE_AND_WAIT(thread);
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//
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test.Next(_L("Queue abs when not added"));
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test(thread.Create(_L("myThread"),ThreadEntry,KDefaultStackSize,0x2000,0x2000,(TAny*)EAbNotAdded)==KErrNone);
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thread.Logon(stat);
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thread.Resume();
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User::WaitForRequest(stat);
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test(thread.ExitCategory().Compare(_L("E32USER-CBase"))==0);
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test(thread.ExitReason()==ETimNotAdded);
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test(thread.ExitType()==EExitPanic);
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CLOSE_AND_WAIT(thread);
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//
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test.Next(_L("Queue HighRes when not added"));
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test(thread.Create(_L("myThread"),ThreadEntry,KDefaultStackSize,0x2000,0x2000,(TAny*)EHighResNotAdded)==KErrNone);
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thread.Logon(stat);
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thread.Resume();
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User::WaitForRequest(stat);
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test(thread.ExitCategory().Compare(_L("E32USER-CBase"))==0);
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test(thread.ExitReason()==ETimNotAdded);
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test(thread.ExitType()==EExitPanic);
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CLOSE_AND_WAIT(thread);
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//
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test.End();
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}
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LOCAL_D TInt Test3ThreadEntry(TAny* aArg)
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//
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// Test thread for RTimer::HighRes
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//
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{
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TRequestStatus status;
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RTimer timer;
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TInt r = timer.CreateLocal();
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if (r != KErrNone)
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return r;
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timer.HighRes(status, (TInt) aArg);
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timer.Cancel();
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User::WaitForRequest(status);
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timer.Close();
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if (status != KErrNone && status != KErrCancel)
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return status.Int();
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return KErrNone;
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}
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void TestRTimerHighRes(TInt aInterval, TExitType aExpectedExitType)
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{
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RThread thread;
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TRequestStatus stat;
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test(thread.Create(_L("myThread"),Test3ThreadEntry,KDefaultStackSize,0x2000,0x2000,(TAny*)aInterval)==KErrNone);
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thread.Logon(stat);
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thread.Resume();
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User::WaitForRequest(stat);
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test(thread.ExitType()==aExpectedExitType);
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if (thread.ExitType()==EExitKill)
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test(thread.ExitReason()==KErrNone);
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CLOSE_AND_WAIT(thread);
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}
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void TestCTimer::Test3()
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//
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// Test RTimer::HighRes argument checking
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//
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{
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test.Start(_L("Test RTimer::HighRes argument checking"));
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TestRTimerHighRes(0, EExitKill);
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TestRTimerHighRes(0x7FFFEC79, EExitKill);
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TestRTimerHighRes(0x7FFFFFFF, EExitKill);
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TestRTimerHighRes(0x80000000, EExitPanic);
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test.End();
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}
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GLDEF_C TInt E32Main()
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//
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// Test the CTimer class
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//
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{
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// don't want just in time debugging as we trap panics
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TBool justInTime=User::JustInTime();
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User::SetJustInTime(EFalse);
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test.Title();
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__UHEAP_MARK;
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TestCTimer T;
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myScheduler* pScheduler=new myScheduler;
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CActiveScheduler::Install(pScheduler);
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test.Start(_L("Test1"));
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T.Test1();
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test.Next(_L("Test2"));
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T.Test2();
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CActiveScheduler::Install(NULL);
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delete pScheduler;
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T.Test3();
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test.End();
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__UHEAP_MARKEND;
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User::SetJustInTime(justInTime);
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return(KErrNone);
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}
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