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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 "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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//
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#include "char_a3f_devsound_testbase.h"
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#include "char_a3f_devsound_playrecordclients.h"
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#include "char_a3f_devsound_toneclient.h"
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const TUint KRateLookup[] =
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{
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EMMFSampleRate8000Hz,
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EMMFSampleRate11025Hz,
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EMMFSampleRate16000Hz,
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EMMFSampleRate22050Hz,
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EMMFSampleRate32000Hz,
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EMMFSampleRate44100Hz,
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EMMFSampleRate48000Hz,
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EMMFSampleRate88200Hz,
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EMMFSampleRate96000Hz,
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EMMFSampleRate12000Hz,
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EMMFSampleRate24000Hz,
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EMMFSampleRate64000Hz
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};
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const TUint KChannelsLookup[] =
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{
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EMMFMono,
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EMMFStereo
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};
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RA3FDevSoundTestBase::RA3FDevSoundTestBase(const TDesC& aTestName)
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: iFourCCString(KNullDesC),
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iFourCCCode(KMMFFourCCCodeNULL),
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iDevSoundState(EStateInitial),
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iDevsoundToneClient(NULL),
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iDevsoundPlayClient(NULL),
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iDevsoundRecordClient(NULL),
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iMMFDevSound(NULL),
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iTimer(NULL), iBuffer(NULL)
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{
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iTestStepName = aTestName;
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}
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void RA3FDevSoundTestBase::KickoffTestL()
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{
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INFO_PRINTF1(_L("__________ Creating DevSound object ___________"));
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// Create devsound object
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TRAPD(err, iMMFDevSound = CMMFDevSound::NewL());
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if (err != KErrNone)
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{
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ERR_PRINTF2(_L("Could not create DevSound object. Error = %d"), err);
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StopTest(err);
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return;
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}
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INFO_PRINTF1(_L("DevSound State: EStateCreated"));
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iDevSoundState = EStateCreated;
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// Connect RFs
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err = iFs.Connect();
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if (err != KErrNone)
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{
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ERR_PRINTF2(_L("Could not connect to Filesystem. Error = %d"), err);
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StopTest(err);
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return;
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}
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DoKickoffTestL();
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INFO_PRINTF1(_L("DevSound Event: EEventInitialize"));
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Fsm(EEventInitialize, KErrNone);
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}
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void RA3FDevSoundTestBase::CloseTest()
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{
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if (iMMFDevSound)
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{
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INFO_PRINTF1(KMsgDeleteDevsound);
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delete iMMFDevSound;
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}
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if(iTimer)
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{
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delete iTimer;
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}
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if(iDevsoundToneClient)
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{
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delete iDevsoundToneClient;
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}
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if(iDevsoundPlayClient)
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{
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delete iDevsoundPlayClient;
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}
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if(iDevsoundRecordClient)
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{
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delete iDevsoundRecordClient;
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}
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if (iAsyncWriteBTFAO)
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{
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delete iAsyncWriteBTFAO;
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iAsyncWriteBTFAO = NULL;
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}
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iFile.Close();
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iFs.Close();
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}
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/*
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*
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* CallStopTest
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*
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*/
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void RA3FDevSoundTestBase::CallStopTest(TInt aError)
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{
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StopTest(aError);
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}
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void RA3FDevSoundTestBase::StartTimer(TTimeIntervalMicroSeconds32 aWaitTime)
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{
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TTimeIntervalMicroSeconds32 timeInterval;
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if(aWaitTime <= TTimeIntervalMicroSeconds32(0))
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{
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timeInterval = KMicroSecsInOneSec;
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}
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else
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{
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timeInterval = aWaitTime;
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}
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TCallBack callback (TimerCallback, this);
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iTimer->Start(timeInterval, timeInterval, callback);
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INFO_PRINTF1(_L("Timer has been started"));
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}
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TInt RA3FDevSoundTestBase::TimerCallback(TAny* aPtr)
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{
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static_cast<RA3FDevSoundTestBase*>(aPtr)->DoTimerCallback();
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return KErrNone;
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}
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void RA3FDevSoundTestBase::DoTimerCallback()
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{
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__ASSERT_ALWAYS(0, Panic(_L("RA3FDevSoundTestBase"), EInvalidCallbackCall));
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}
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void RA3FDevSoundTestBase::EncodingFromStringToTFourCC(const TDesC& aFourCCString)
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{
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iFourCCString.Copy(aFourCCString);
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if(aFourCCString.Length() <= KTFourCC)
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{
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while( iFourCCString.Length() < KTFourCC )
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{
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iFourCCString.Insert(0, _L(" "));
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}
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iFourCCCode = TFourCC(iFourCCString[3] << 24 | iFourCCString[2] << 16 | iFourCCString[1] << 8 | iFourCCString[0]);
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}
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else
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{
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ERR_PRINTF2(KMsgErrorFourccLength,iFourCCString.Length());
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StopTest(KErrUnknown);
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}
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}
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void RA3FDevSoundTestBase::InitializeComplete(TInt aError)
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{
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INFO_PRINTF1(_L("========== DevSound InitializeComplete() callback =========="));
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INFO_PRINTF3(KMsgErrorDevSoundCallback, &KInitializeCompleteText, aError);
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if(iDevSoundState == EStateInitializing)
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{
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INFO_PRINTF1(_L("DevSound Event: EEventInitComplete"));
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Fsm(EEventInitComplete, aError);
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}
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}
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void RA3FDevSoundTestBase::ToneFinished(TInt aError)
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{
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INFO_PRINTF1(_L("========== DevSound ToneFinished() callback =========="));
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if (aError == KErrUnderflow)
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{
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INFO_PRINTF2(_L("DevSound called CMMFDevSound::ToneFinished with error = %d as expected"), aError);
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StopTest(aError,EPass);
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}
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else
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{
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ERR_PRINTF2(_L("DevSound called CMMFDevSound::ToneFinished with error = %d"), aError);
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ERR_PRINTF2(_L("Expected error = %d"), KErrUnderflow);
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StopTest(aError);
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}
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}
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void RA3FDevSoundTestBase::BufferToBeFilled(CMMFBuffer* aBuffer)
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{
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INFO_PRINTF1(_L("========== DevSound BufferToBeFilled() callback =========="));
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if (!aBuffer)
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{
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ERR_PRINTF1(_L("BufferToBeFilled callback received a NULL CMMFBuffer!"));
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StopTest(KErrGeneral);
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}
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else
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{
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iBuffer = aBuffer;
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INFO_PRINTF1(_L("DevSound Event: EEventBTBF"));
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Fsm(EEventBTBF, KErrNone);
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}
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}
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void RA3FDevSoundTestBase::PlayError(TInt aError)
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{
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INFO_PRINTF1(_L("========== DevSound PlayError() callback =========="));
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INFO_PRINTF3(KMsgErrorDevSoundCallback, &KPlayErrorText, aError);
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if(iBuffer->LastBuffer() && (aError == KErrUnderflow))
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{
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INFO_PRINTF1(_L("Playback completed normally"));
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StopTest();
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}
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else
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{
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INFO_PRINTF1(_L("Playback completed with error"));
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StopTest(aError, EFail);
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}
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}
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void RA3FDevSoundTestBase::BufferToBeEmptied(CMMFBuffer* aBuffer)
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{
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INFO_PRINTF1(_L("DevSound called BufferToBeEmptied."));
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if (!aBuffer)
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{
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INFO_PRINTF1(_L("BufferToBeEmptied callback received a NULL CMMFBuffer"));
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StopTest(KErrGeneral);
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return;
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}
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iBuffer = aBuffer;
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if(aBuffer->LastBuffer())
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{
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if(iDevSoundState == EStatePause)
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{
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// We need to call CMMFDevSound->Stop() here if last buffer flag set
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INFO_PRINTF1(_L("Devsound is in Paused state and CMMFBuffer::LastBuffer is set"));
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INFO_PRINTF1(_L("iMMFDevSound->Stop()"));
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iMMFDevSound->Stop();
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StopTest();
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}
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else
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{
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INFO_PRINTF1(_L("***** Unknown behaviour: Last buffer flag set before calling CMMFDevSound->Pause()"));
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StopTest(KErrUnknown);
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}
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}
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else
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{
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INFO_PRINTF1(_L("DevSound Event: EEventBTBE"));
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Fsm(EEventBTBE, KErrNone);
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}
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}
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void RA3FDevSoundTestBase::RecordError(TInt aError)
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{
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INFO_PRINTF2(_L("DevSound called RecordError with error = %d"), aError);
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if (aError == KErrUnderflow)
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{
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StopTest(aError);
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}
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}
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void RA3FDevSoundTestBase::ConvertError(TInt /*aError*/)
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{
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__ASSERT_ALWAYS(0, Panic(_L("RA3FDevSoundTestBase"), EInvalidCallbackCall));
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}
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void RA3FDevSoundTestBase::DeviceMessage(TUid /*aMessageType*/, const TDesC8& /*aMsg*/)
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{
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__ASSERT_ALWAYS(0, Panic(_L("RA3FDevSoundTestBase"), EInvalidCallbackCall));
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}
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void RA3FDevSoundTestBase::SendEventToClient(const TMMFEvent& aEvent)
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{
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INFO_PRINTF3(_L("RA3FDevSoundTestBase::SendEventToClient type=0x%08x errorCode=%d"),aEvent.iEventType, aEvent.iErrorCode);
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if(aEvent.iEventType == KMMFEventCategoryAudioResourceAvailable)
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{
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INFO_PRINTF1(_L("Received KMMFEventCategoryAudioResourceAvailable"));
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Fsm(EResourceAvailable, aEvent.iErrorCode);
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}
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}
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void RA3FDevSoundTestBase::SampleRateFromTIntToTMMFSampleRate(TInt aSampleRate, TMMFSampleRate &aESampleRate)
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{
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const TSampleRateToTMMFSampleRate SampleRateLookUp [] =
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{
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{8000, EMMFSampleRate8000Hz},
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{11025, EMMFSampleRate11025Hz},
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{16000, EMMFSampleRate16000Hz},
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{22050, EMMFSampleRate22050Hz},
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{32000, EMMFSampleRate32000Hz},
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{44100, EMMFSampleRate44100Hz},
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{48000, EMMFSampleRate48000Hz},
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{88200, EMMFSampleRate88200Hz},
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{96000, EMMFSampleRate96000Hz},
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{12000, EMMFSampleRate12000Hz},
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{24000, EMMFSampleRate24000Hz},
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{64000, EMMFSampleRate64000Hz}
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};
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const TInt length = sizeof SampleRateLookUp / sizeof *SampleRateLookUp;
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for(TInt i = 0; i < length; i++)
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{
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if(aSampleRate == SampleRateLookUp[i].iTIntSampleRate)
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{
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aESampleRate = SampleRateLookUp[i].iTMMFSampleRate;
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return;
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}
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}
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ERR_PRINTF1(_L("User SampleRate doesn't match any of the specified sample rates"));
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StopTest(KErrGeneral);
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}
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void RA3FDevSoundTestBase::SampleRateFromTUintToString(TUint aSampleRate, TDes& aStringSampleRate)
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{
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const TSampleRateToString SampleRateLookUp [] =
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{
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{0x00000001, KEMMFSampleRate8000Hz() },
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{0x00000002, KEMMFSampleRate11025Hz()},
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{0x00000004, KEMMFSampleRate16000Hz()},
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{0x00000008, KEMMFSampleRate22050Hz()},
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{0x00000010, KEMMFSampleRate32000Hz()},
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{0x00000020, KEMMFSampleRate44100Hz()},
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{0x00000040, KEMMFSampleRate48000Hz()},
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{0x00000080, KEMMFSampleRate88200Hz()},
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{0x00000100, KEMMFSampleRate96000Hz()},
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{0x00000200, KEMMFSampleRate12000Hz()},
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{0x00000400, KEMMFSampleRate24000Hz()},
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{0x00000800, KEMMFSampleRate64000Hz()}
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};
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const TInt length = sizeof SampleRateLookUp / sizeof *SampleRateLookUp;
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for (TInt i =0; i < length; i++)
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{
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if(aSampleRate == SampleRateLookUp[i].iTUIntSampleRate)
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{
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aStringSampleRate.Copy(SampleRateLookUp[i].iTPtrSampleRate);
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return;
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}
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}
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ERR_PRINTF1(_L("SampleRate doesn't match any of the specified sample rates"));
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StopTest(KErrGeneral);
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}
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void RA3FDevSoundTestBase::ChannelsFromTUintToString(TUint aChannels,TDes& aStringChannels)
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{
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const TChannelsToString ChannelsLookUp [] =
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{
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{0x00000001, KEMMFMono() },
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{0x00000002, KEMMFStereo()},
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};
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const TInt length = sizeof ChannelsLookUp / sizeof *ChannelsLookUp;
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for (TInt i =0; i < length; i++)
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{
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if(aChannels == ChannelsLookUp[i].iTUIntChannels)
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{
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aStringChannels.Copy(ChannelsLookUp[i].iTPtrChannels);
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return;
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}
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}
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ERR_PRINTF1(_L("Channels doesn't match any of the specified channels"));
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StopTest(KErrGeneral);
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}
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void RA3FDevSoundTestBase::PrintSupportedCapabilities(TUint aSampleRate,TUint aChannel)
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{
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TInt length = sizeof KRateLookup / sizeof *KRateLookup;
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TBuf<KMaxSampleRateStringLength> stringSampleRate;
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TBuf<KMaxChannelsStringLength> channels;
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for(TInt i = 0; i < length ; i++)
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{
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if(aSampleRate & KRateLookup[i])
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{
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SampleRateFromTUintToString(KRateLookup[i],stringSampleRate);
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INFO_PRINTF3(_L("Supported Sample rate 0x%08x %S"),KRateLookup[i],&stringSampleRate);
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}
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}
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length = sizeof KChannelsLookup / sizeof *KChannelsLookup;
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for(TInt i = 0; i < length ; i++)
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{
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if(aChannel & KChannelsLookup[i])
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{
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ChannelsFromTUintToString(KChannelsLookup[i],channels);
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INFO_PRINTF3(_L("Supported channels 0x%08x %S"),KChannelsLookup[i],&channels);
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}
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}
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}
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//
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// CAsyncWriteBufferToFile
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//
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CAsyncWriteBufferToFile::CAsyncWriteBufferToFile(RFile& aFile, CMMFDevSound* aDevSound, RA3FDevSoundTestBase& aTestStep)
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:CActive(EPriorityStandard),
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412 |
iFile(aFile),
|
|
413 |
iDevSound(aDevSound),
|
|
414 |
iTestStep(aTestStep)
|
|
415 |
{
|
|
416 |
CActiveScheduler::Add(this);
|
|
417 |
}
|
|
418 |
|
|
419 |
CAsyncWriteBufferToFile::~CAsyncWriteBufferToFile()
|
|
420 |
{
|
|
421 |
Cancel();
|
|
422 |
}
|
|
423 |
|
|
424 |
CAsyncWriteBufferToFile* CAsyncWriteBufferToFile::NewL(RFile& aFile, CMMFDevSound* aDevSound, RA3FDevSoundTestBase& aTestStep)
|
|
425 |
{
|
|
426 |
CAsyncWriteBufferToFile* self = new(ELeave) CAsyncWriteBufferToFile(aFile, aDevSound, aTestStep);
|
|
427 |
CleanupStack::PushL(self);
|
|
428 |
self->ConstructL();
|
|
429 |
CleanupStack::Pop(self);
|
|
430 |
return self;
|
|
431 |
}
|
|
432 |
|
|
433 |
void CAsyncWriteBufferToFile::ConstructL()
|
|
434 |
{
|
|
435 |
// Nothing to do here
|
|
436 |
}
|
|
437 |
|
|
438 |
void CAsyncWriteBufferToFile::RunL()
|
|
439 |
{
|
|
440 |
//If error occurs then deal with problem in RunError()
|
|
441 |
User::LeaveIfError(iStatus.Int());
|
|
442 |
// Continue recording data to a buffer
|
|
443 |
iDevSound->RecordData();
|
|
444 |
|
|
445 |
}
|
|
446 |
|
|
447 |
void CAsyncWriteBufferToFile::Start(CMMFDataBuffer* aBuffer)
|
|
448 |
{
|
|
449 |
iFile.Write(aBuffer->Data(), iStatus);
|
|
450 |
SetActive();
|
|
451 |
}
|
|
452 |
|
|
453 |
void CAsyncWriteBufferToFile::DoCancel()
|
|
454 |
{
|
|
455 |
// Can't cancel an async write request
|
|
456 |
}
|
|
457 |
|
|
458 |
TInt CAsyncWriteBufferToFile::RunError(TInt aError)
|
|
459 |
{
|
|
460 |
iTestStep.CallStopTest(aError);
|
|
461 |
return KErrNone;
|
|
462 |
}
|