libraries/extrabtrace/src/sampler.cpp
author Tom Sutcliffe <thomas.sutcliffe@accenture.com>
Sat, 31 Jul 2010 19:07:57 +0100
changeset 23 092bcc217d9d
parent 0 7f656887cf89
permissions -rw-r--r--
Tidied iocli exports, build macro tweaks. Removed 4 overloads of CCommandBase::RunCommand[L] that are no longer used at all, and changed one more to not be exported as it's only used internally to iocli.dll. fixed builds on platforms that don't support btrace or any form of tracing.

// sampler.cpp
// 
// Copyright (c) 2010 Accenture. All rights reserved.
// This component and the accompanying materials are made available
// under the terms of the "Eclipse Public License v1.0"
// which accompanies this distribution, and is available
// at the URL "http://www.eclipse.org/legal/epl-v10.html".
// 
// Initial Contributors:
// Accenture - Initial contribution
//
#include "sampler.h"
#include <fshell/btrace_parser_defs.h>
#include <fshell/common.mmh>

// Please note this code is NOT SMP-safe. The whole mechanism of using an interrupt doesn't work under SMP so there's no point adding TSpinLocks or similar
#ifdef __SMP__
#error "Sampler doesn't work under SMP!"
#endif

TUint IntStackPtr();
TUint IDFCRunning();

DCpuSampler::DCpuSampler()
	: iTimer(NTimer(&Sample, this))
	{
#if defined(__MARM__)
	iIntStackTop=(TUint*)IntStackPtr();
#endif
	}

DCpuSampler::~DCpuSampler()
	{
	iTimer.Cancel();
	}

void DCpuSampler::Sample(TAny* aPtr)
	{
	static_cast<DCpuSampler*>(aPtr)->DoSample();
	}

void DCpuSampler::DoSample()
	{
	TInt err = iTimer.Again(1);
	if (err == KErrArgument)
		{
		// Missed a tick, oh well
		iTimer.OneShot(1);
		}

	NThread* thread = NKern::CurrentThread();
	if (iCpuUsageCallbackFn)
		{
		// Not used by anything in fshell pkg
		(*iCpuUsageCallbackFn)(iContext, thread);
		}

	if (iProfiling)
		{
		Usample(thread);
		}
	iContext = thread;
	}

TBool DCpuSampler::ShouldRun() const
	{
	return iProfiling || iCpuUsageCallbackFn != NULL;
	}

void DCpuSampler::SettingsChanged()
	{
	// Call with interrupts disabled
	if (ShouldRun())
		{
#if FSHELL_PLATFORM_SYMTB >= 92
		if (!iTimer.IsPending())
#else
		if (iTimer.iState == NTimer::EIdle)
#endif
			{
			iContext = NULL;
			iTimerHeartbeat = 0;
			iTimer.OneShot(1);
			}
		}
	else
		{
		iTimer.Cancel();
		}
	}

void DCpuSampler::SetCpuUsageSampling(MExtraBtrace::TCpuUsageCallback aCallbackFn)
	{
	TUint irq = NKern::DisableAllInterrupts();
	iCpuUsageCallbackFn = aCallbackFn;
	SettingsChanged();
	NKern::RestoreInterrupts(irq);
	}


void DCpuSampler::SetProfilingSampling(TBool aEnabled)
	{
	TUint irq = NKern::DisableAllInterrupts();
	iProfiling = aEnabled;
	SettingsChanged();
	NKern::RestoreInterrupts(irq);
	}

void DCpuSampler::Usample(NThread* pN)
	{
	if (Kern::NThreadToDThread(pN)!=NULL)
		{
#if defined(__MARM__)
		TBool idfcRunning = IDFCRunning();
		TLinAddr pC=((iIntStackTop)[-1]) & ~1; //clear LSB bit (in case of Jazelle code)
#else
		// Can't get this info if we don't have the .cia functions
		TBool idfcRunning = EFalse;
		TLinAddr pC = 0;
#endif

		if (idfcRunning)
			{
			//no useful thread context
			BTrace4(BTrace::EProfiling,BTrace::ECpuIdfcSample,pC);
			}
		else
		    {
			if (iContext!=pN)
				{
				BTrace8(BTrace::EProfiling,BTrace::ECpuFullSample,pC,pN);
				}
			else
				{
				//optimisation - context of previous sample is assumed
				BTrace4(BTrace::EProfiling,BTrace::ECpuOptimisedSample,pC);
				}
 		    }
		}
	else
		{
		BTrace0(BTrace::EProfiling,BTrace::ECpuNonSymbianThreadSample);
		}
	}