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// Copyright (c) 2008-2009 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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// Other possible inputs to thrashing detection:
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// - cache size and free ram
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// - pin failures
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//
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#include <kernel/kern_priv.h>
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#include "mthrash.h"
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const TInt KUpdatePeriod = 1000; // Update every second
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DThrashMonitor TheThrashMonitor;
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DThrashMonitor::DThrashMonitor() :
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iRunning(EFalse),
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iUpdateTimer(NULL, this),
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iUpdateDfc(UpdateDfcFunc, this, 0),
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iThrashLevel(0),
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iThresholdThrashing(200),
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iThresholdGood(150)
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{
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}
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void DThrashMonitor::Start()
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{
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TBool alreadyRunning = __e32_atomic_swp_ord32(&iRunning, ETrue);
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if (alreadyRunning)
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return;
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// reset
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memclr(&iCount[0], sizeof(iCount));
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iLastUpdateTime = NKern::TickCount();
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iUpdateDfc.SetDfcQ(Kern::DfcQue0());
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TInt r = iUpdateTimer.OneShot(KUpdatePeriod, iUpdateDfc);
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__NK_ASSERT_ALWAYS(r == KErrNone);
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}
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TInt DThrashMonitor::ThrashLevel()
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{
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return iThrashLevel;
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}
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TInt DThrashMonitor::SetThresholds(TUint aThrashing, TUint aGood)
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{
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if (aThrashing < aGood || aThrashing > 255)
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return KErrArgument;
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iThresholdThrashing = aThrashing;
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iThresholdGood = aGood;
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return KErrNone;
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}
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void DThrashMonitor::UpdateCount(TCount aCount, TInt aDelta)
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{
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TCountData& c = iCount[aCount];
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NKern::FMWait(&iMutex);
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TUint32 currentTime = NKern::TickCount();
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c.iTotal += (TInt64)c.iCount * (currentTime - c.iLastUpdateTime);
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c.iCount += aDelta;
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c.iLastUpdateTime = currentTime;
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NKern::FMSignal(&iMutex);
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__NK_ASSERT_DEBUG(c.iCount >= 0);
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}
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void DThrashMonitor::NotifyStartPaging()
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{
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UpdateCount(ECountThreadsPaging, 1);
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}
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void DThrashMonitor::NotifyEndPaging()
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{
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UpdateCount(ECountThreadsPaging, -1);
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}
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void DThrashMonitor::UpdateDfcFunc(TAny* aPtr)
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{
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DThrashMonitor* self = (DThrashMonitor*)aPtr;
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self->RecalculateThrashLevel();
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}
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void DThrashMonitor::RecalculateThrashLevel()
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{
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TInt currentTime = NKern::TickCount();
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TInt elapsedTicks = currentTime - iLastUpdateTime;
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NKern::FMWait(&iMutex);
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for (TInt i = 0 ; i < EMaxCount ; ++i)
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{
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TCountData& c = iCount[i];
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c.iTotal += (TInt64)c.iCount * (currentTime - c.iLastUpdateTime);
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c.iAverage = (TInt)((256 * c.iTotal) / elapsedTicks);
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c.iTotal = 0;
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c.iLastUpdateTime = currentTime;
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}
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NKern::FMSignal(&iMutex);
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TInt pagingActivity = Min(iCount[ECountThreadsPaging].iAverage, 255);
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// Base thrash level entirely on the average number of threads paging
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TInt newThrashLevel = pagingActivity;
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TInt oldThrashLevel = iThrashLevel;
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// Make thrash level increase slowly over time, but decrease quickly
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if (newThrashLevel > oldThrashLevel)
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newThrashLevel = (3 * oldThrashLevel + pagingActivity) >> 2;
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iThrashLevel = newThrashLevel;
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// Notify user-side if thrashing thresholds passed
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TBool notifyChange = EFalse;
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if (oldThrashLevel < iThresholdThrashing && newThrashLevel >= iThresholdThrashing)
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{
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iIsThrashing = ETrue;
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notifyChange = ETrue;
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}
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else if (iIsThrashing && oldThrashLevel >= iThresholdGood && newThrashLevel < iThresholdGood)
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{
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iIsThrashing = EFalse;
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notifyChange = ETrue;
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}
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if (notifyChange)
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{
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NKern::ThreadEnterCS();
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Kern::AsyncNotifyChanges(EChangesThrashLevel);
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NKern::ThreadLeaveCS();
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}
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iLastUpdateTime = currentTime;
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TInt r = iUpdateTimer.Again(KUpdatePeriod);
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if (r == KErrArgument)
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r = iUpdateTimer.OneShot(KUpdatePeriod, iUpdateDfc);
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__NK_ASSERT_ALWAYS(r == KErrNone);
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}
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