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// Copyright (c) 2002-2009 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 "MmfUtilities.h"
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#include "mmfutilitiespriv.h"
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#include "mmf/utils/rateconvert.h"
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const TInt KMaxInt16Bit = 65536 ; //Maximum for a 16bit int
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EXPORT_C CMMFChannelAndSampleRateConverterFactory::~CMMFChannelAndSampleRateConverterFactory()
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{
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delete iConverter;
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}
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EXPORT_C CMMFChannelAndSampleRateConverter* CMMFChannelAndSampleRateConverterFactory::CreateConverterL(TInt aFromRate,TInt aFromChannels,
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TInt aToRate,TInt aToChannels)
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{
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if(aFromRate<0 || aFromChannels<0 || aToRate<0 || aToChannels<0)
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{
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User::Leave(KErrArgument);
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}
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iFromRate=aFromRate;
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iToRate=aToRate;
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iFromChannels=aFromChannels;
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iToChannels=aToChannels;
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return CreateConverterL();
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}
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EXPORT_C CMMFChannelAndSampleRateConverter* CMMFChannelAndSampleRateConverterFactory::CreateConverterL()
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{
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if (iConverter
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&&(iFromRate==iConverter->iFromRate)
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&&(iToRate==iConverter->iToRate)
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&&(iFromChannels==iConverter->iFromChannels)
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&&(iToChannels==iConverter->iToChannels))
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return iConverter;
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delete iConverter;
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iConverter=NULL;
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iConverter = CMMFForwardingChannelAndSampleRateConverter::NewL(iFromRate, iFromChannels, iToRate, iToChannels);
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return iConverter;
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}
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// SetRates kept for BC reasons - populates publically visible properties
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void CMMFChannelAndSampleRateConverter::SetRates(TInt aFromRate,TInt aFromChannels,
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TInt aToRate,TInt aToChannels)
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{
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iFromRate=aFromRate;
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iToRate=aToRate;
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iFromChannels=aFromChannels;
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iToChannels=aToChannels;
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iRatio = (TReal)aFromRate / (TReal)aToRate;
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TInt quotient = (TInt)iRatio;
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TReal remainder = iRatio - (TReal)quotient;
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iFraction = quotient * KMaxInt16Bit + (TInt32)(remainder * KMaxInt16Bit);
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Reset();
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}
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//
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// Forwarding converter - adapt to the implementation in audioutils.
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//
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CMMFForwardingChannelAndSampleRateConverter* CMMFForwardingChannelAndSampleRateConverter::NewL(TInt aFromRate,
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TInt aFromChannels,
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TInt aToRate,
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TInt aToChannels)
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{
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CMMFForwardingChannelAndSampleRateConverter* self = new (ELeave) CMMFForwardingChannelAndSampleRateConverter;
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CleanupStack::PushL(self);
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self->ConstructL(aFromRate,aFromChannels,aToRate,aToChannels);
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CleanupStack::Pop(self);
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return self;
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}
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CMMFForwardingChannelAndSampleRateConverter::CMMFForwardingChannelAndSampleRateConverter()
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{
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}
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void CMMFForwardingChannelAndSampleRateConverter::ConstructL(TInt aFromRate,
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TInt aFromChannels,
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TInt aToRate,
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TInt aToChannels)
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{
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SetRates(aFromRate, aFromChannels, aToRate, aToChannels);
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// delib called before iRealConverter created. Reset() will be no-op.
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// this is preserved solely to keep BC with original API that exposes too much
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iRealConverter = CChannelAndSampleRateConverter::CreateL(aFromRate,aFromChannels,aToRate,aToChannels);
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}
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CMMFForwardingChannelAndSampleRateConverter::~CMMFForwardingChannelAndSampleRateConverter()
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{
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delete iRealConverter;
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}
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TInt CMMFForwardingChannelAndSampleRateConverter::Convert(const CMMFDataBuffer& aSrcBuffer, CMMFDataBuffer& aDstBuffer)
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{
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TInt ignore = iRealConverter->Convert(aSrcBuffer.Data(), aDstBuffer.Data());
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// CChannelAndSampleRateConverter returns the source length converted
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// while the old API wants the destination generated, so change.
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TInt result = aDstBuffer.Data().Length();
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return result;
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}
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void CMMFForwardingChannelAndSampleRateConverter::Reset()
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{
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// need to check iRealConverter created. Won't be true during construction
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if (iRealConverter)
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{
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iRealConverter->Reset();
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}
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}
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TUint CMMFForwardingChannelAndSampleRateConverter::MaxConvertBufferSize(TUint aSrcBufferSize)
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{
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return TUint(iRealConverter->MaxConvertBufferSize(aSrcBufferSize));
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}
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//
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// Old derivatives of CMMFChannelAndSampleRateConverter. These were previously returned by
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// CreateConverterL(). Kept for BC, but no longer used by main code.
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//
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TInt CMMFStereoToStereoRateConverter::Convert(const CMMFDataBuffer& aSrcBuffer, CMMFDataBuffer& aDstBuffer)
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{
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TInt32* aSrc = (TInt32*)aSrcBuffer.Data().Ptr();
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TInt32* aDst = (TInt32*)aDstBuffer.Data().Ptr();
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TUint aSamples = aSrcBuffer.Data().Length()/4;
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TInt32* src = aSrc;
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TInt32* dst = aDst;
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TInt32* limit=src+aSamples;
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// add left over from last buffer
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TUint index = iIndex;
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src = aSrc + (index>>16);
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while(src<limit)
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{
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*dst++ = *src;
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index += iFraction;
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src = aSrc + (index>>16);
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}
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// get amount by which index exceeded end of buffer
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// so that we can add it back to start of next buffer
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iIndex = index - (aSamples << 16);
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// return sample byte count and setup output buffer
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TInt length = (dst-(TInt32*)aDst)*4; //dealing with 32bit values so multiply by 4 for bytes
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aDstBuffer.Data().SetLength(length); //adjust length of destination buffer
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return (length);
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}
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TInt CMMFMonoToStereoRateConverter::Convert(const CMMFDataBuffer& aSrcBuffer, CMMFDataBuffer& aDstBuffer)
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{
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TInt16* aSrc = (TInt16*)aSrcBuffer.Data().Ptr();
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TInt16* aDst = (TInt16*)aDstBuffer.Data().Ptr();
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TUint aSamples = aSrcBuffer.Data().Length()/2;
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TInt16* src = aSrc;
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TInt16* dst = aDst;
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TInt16* limit=aSrc+aSamples;
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// add left over from last buffer
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TUint index = iIndex;
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src = aSrc + (index>>16);
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while(src<limit)
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{
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*dst++ = *src;
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*dst++ = *src;
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index += iFraction;
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src = aSrc + (index>>16);
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}
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// get amount by which index exceeded end of buffer
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// so that we can add it back to start of next buffer
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iIndex = index - (aSamples << 16);
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// return sample byte count and setup output buffer
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TInt length = (dst-aDst) * 2; // size in bytes
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aDstBuffer.Data().SetLength(length); //adjust length of destination buffer
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return (length);
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}
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TUint CMMFMonoToStereoRateConverter::MaxConvertBufferSize(TUint aSrcBufferSize)
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{
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return aSrcBufferSize*2;
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}
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TInt CMMFMonoToMonoRateConverter::Convert(const CMMFDataBuffer& aSrcBuffer, CMMFDataBuffer& aDstBuffer)
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{
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TInt16* aSrc = (TInt16*)aSrcBuffer.Data().Ptr();
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TInt16* aDst = (TInt16*)aDstBuffer.Data().Ptr();
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TUint aSamples = aSrcBuffer.Data().Length()/2;
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TInt16* src = aSrc;
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TInt16* dst = aDst;
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TInt16* limit=aSrc+aSamples; //*2 ???
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// add left over from last buffer
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TUint index = iIndex;
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src = aSrc + (index>>16);
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while(src<limit)
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{
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*dst++ = *src;
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index += iFraction;
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src = aSrc + (index>>16);
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}
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// get amount by which index exceeded end of buffer
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// so that we can add it back to start of next buffer
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iIndex = index - (aSamples << 16);
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// return sample byte count and setup output buffer
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TInt length = (dst-aDst)*2; // size in bytes
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aDstBuffer.Data().SetLength(length); //adjust length of destination buffer
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return (length);
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}
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//This method takes the left and right sample of interleaved PCM and sums it, then divides by 2
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TInt CMMFStereoToMonoRateConverter::Convert(const CMMFDataBuffer& aSrcBuffer, CMMFDataBuffer& aDstBuffer)
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{
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TInt16* aSrc = (TInt16*)aSrcBuffer.Data().Ptr();
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TInt16* aDst = (TInt16*)aDstBuffer.Data().Ptr();
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TUint aSamples = aSrcBuffer.Data().Length()/4;
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TInt16* src = aSrc;
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TInt16* limit=aSrc+aSamples*2; //because 1 sample = two TInt16s
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// add left over from last buffer
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TUint index = iIndex;
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src = aSrc + (index>>16)*2;
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TInt length = 0;
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while(src<limit)
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{
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*aDst++ = (TInt16)((src[0] + (src[1])) / 2);
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index += iFraction;
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src = aSrc + (index>>16)*2;
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length++;
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}
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// get amount by which index exceeded end of buffer
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// so that we can add it back to start of next buffer
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iIndex = index - (aSamples << 16);
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// return sample byte count and setup output buffer
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aDstBuffer.Data().SetLength(length * 2); //adjust length of destination buffer
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return (length);
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}
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TUint CMMFStereoToMonoRateConverter::MaxConvertBufferSize(TUint aSrcBufferSize)
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{
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TUint size = aSrcBufferSize/2;
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size += aSrcBufferSize & 1; //avoid round down error
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return size;
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}
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//This method takes the left and right sample of interleaved PCM and sums it, then divides by 2
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TInt CMMFStereoToMonoConverter::Convert(const CMMFDataBuffer& aSrcBuffer, CMMFDataBuffer& aDstBuffer)
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{
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TInt16* aSrc = (TInt16*)aSrcBuffer.Data().Ptr();
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TInt16* aDst = (TInt16*)aDstBuffer.Data().Ptr();
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TUint aSamples = aSrcBuffer.Data().Length()/4;
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for (TUint i=0;i<aSamples;i++)
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{
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*aDst++ = (TInt16)((aSrc[0] + (aSrc[1])) / 2);
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aSrc+=2;
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}
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aDstBuffer.Data().SetLength(aSamples*2); //adjust length of destination buffer
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return aSamples*2;
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}
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TUint CMMFStereoToMonoConverter::MaxConvertBufferSize(TUint aSrcBufferSize)
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{
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TUint size = aSrcBufferSize/2;
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size += aSrcBufferSize & 1; //avoid round down error
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return size;
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}
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TInt CMMFMonoToStereoConverter::Convert(const CMMFDataBuffer& aSrcBuffer, CMMFDataBuffer& aDstBuffer)
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{
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TInt16* aSrc = (TInt16*)aSrcBuffer.Data().Ptr();
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TInt16* aDst = (TInt16*)aDstBuffer.Data().Ptr();
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TUint aSamples = aSrcBuffer.Data().Length()/2;
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for (TUint i=0;i<aSamples;i++)
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{
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*aDst++ = *aSrc;
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*aDst++ = *aSrc++;
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}
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aDstBuffer.Data().SetLength(aSamples*4); //adjust length of destination buffer
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return aSamples*4;
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}
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TUint CMMFMonoToStereoConverter::MaxConvertBufferSize(TUint aSrcBufferSize)
|
sl@0
|
324 |
{
|
sl@0
|
325 |
return aSrcBufferSize*2;
|
sl@0
|
326 |
}
|
sl@0
|
327 |
|
sl@0
|
328 |
|
sl@0
|
329 |
|
sl@0
|
330 |
|
sl@0
|
331 |
|