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/*
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* Copyright (c) 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: Implmentation of DMAv2 test code, common
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* to both user and kernel side
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*
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*/
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#ifdef __KERNEL_MODE__
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#include <platform.h>
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#endif
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#include "d_dma2.h"
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TInt Log2(TInt aNum)
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{
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TInt res = -1;
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while(aNum)
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{
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res++;
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aNum >>= 1;
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}
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return res;
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}
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TCallbackRecord::TCallbackRecord(
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TCbContext aContext,
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TInt aReq,
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TInt aReqSrc,
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TInt aReqDst,
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TInt aDes,
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TInt aDesSrc,
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TInt aDesDst,
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TInt aFrame,
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TInt aFrameSrc,
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TInt aFrameDst,
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TInt aPause,
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TInt aPauseSrc,
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TInt aPauseDst,
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TDmaResult aResult
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)
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//Default iIsrRedoRequestResult is 1 as this is an invalid error code
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:iResult(aResult), iContext(aContext), iIsrRedoRequestResult(1)
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{
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SetCount(EDmaCallbackRequestCompletion, aReq);
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SetCount(EDmaCallbackRequestCompletion_Src, aReqSrc);
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SetCount(EDmaCallbackRequestCompletion_Dst, aReqDst);
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SetCount(EDmaCallbackDescriptorCompletion, aDes);
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SetCount(EDmaCallbackDescriptorCompletion_Src, aDesSrc);
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SetCount(EDmaCallbackDescriptorCompletion_Dst, aDesDst);
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SetCount(EDmaCallbackFrameCompletion, aFrame);
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SetCount(EDmaCallbackFrameCompletion_Src, aFrameSrc);
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SetCount(EDmaCallbackFrameCompletion_Dst, aFrameDst);
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SetCount(EDmaCallbackLinkedListPaused, aPause);
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SetCount(EDmaCallbackLinkedListPaused_Src, aPauseSrc);
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SetCount(EDmaCallbackLinkedListPaused_Dst, aPauseDst);
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}
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TCallbackRecord TCallbackRecord::Empty()
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{
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return TCallbackRecord(EInvalid,0,0,0,0,0,0,0,0,0,0,0,0,EDmaResultError);
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}
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void TCallbackRecord::Reset()
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{
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new (this) TCallbackRecord();
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}
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TBool TCallbackRecord::operator == (const TCallbackRecord aOther) const
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{
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return (memcompare((TUint8*)this, sizeof(*this), (TUint8*)&aOther, sizeof(aOther)) == 0);
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}
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TInt TCallbackRecord::GetCount(TDmaCallbackType aCbType) const
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{
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const TInt index = BitToIndex(aCbType);
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return iCallbackLog[index];
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}
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void TCallbackRecord::SetCount(TDmaCallbackType aCbType, TInt aCount)
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{
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const TInt index = BitToIndex(aCbType);
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iCallbackLog[index] = aCount;
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}
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TInt TCallbackRecord::BitToIndex(TDmaCallbackType aCbType) const
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{
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const TInt index = Log2(aCbType);
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TEST_ASSERT(index >=0 && index < KNumberOfCallbacks);
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return index;
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}
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void TCallbackRecord::ProcessCallback(TUint aCallbackMask, TDmaResult aResult)
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{
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// This function may be called several
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// times and will accumulate the number of each callback
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// received. However, it will only ever remember the last
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// result and context value,
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iResult = aResult;
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iContext = CurrentContext();
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TEST_ASSERT(iContext != EInvalid);
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for(TInt i=0; i < KNumberOfCallbacks; i++)
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{
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if(aCallbackMask & 1)
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{
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iCallbackLog[i]++;
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}
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aCallbackMask >>= 1;
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}
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// Assert that we have handled all bits
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// if not then maybe KNumberOfCallbacks is too small
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// or there is a spurious bit in aCallbackMask
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TEST_ASSERT(aCallbackMask == 0);
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}
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TCallbackRecord::TCbContext TCallbackRecord::CurrentContext() const
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{
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#ifdef __KERNEL_MODE__
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switch(NKern::CurrentContext())
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{
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case NKern::EThread:
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return EThread;
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case NKern::EInterrupt:
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return EIsr;
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case NKern::EIDFC: //fall-through
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case NKern::EEscaped:
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default:
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return EInvalid;
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}
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#else
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//for the benefit of user-mode testing
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return EThread;
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#endif
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}
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void TCallbackRecord::Print() const
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{
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PRINT(GetCount(EDmaCallbackRequestCompletion));
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PRINT(GetCount(EDmaCallbackRequestCompletion_Src));
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PRINT(GetCount(EDmaCallbackRequestCompletion_Dst));
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PRINT(GetCount(EDmaCallbackDescriptorCompletion));
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PRINT(GetCount(EDmaCallbackDescriptorCompletion_Src));
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PRINT(GetCount(EDmaCallbackDescriptorCompletion_Dst));
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PRINT(GetCount(EDmaCallbackFrameCompletion));
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PRINT(GetCount(EDmaCallbackFrameCompletion_Src));
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PRINT(GetCount(EDmaCallbackFrameCompletion_Dst));
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PRINT(GetCount(EDmaCallbackLinkedListPaused));
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PRINT(GetCount(EDmaCallbackLinkedListPaused_Src));
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PRINT(GetCount(EDmaCallbackLinkedListPaused_Dst));
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PRINT(iResult);
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PRINT(iContext);
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PRINT(iIsrRedoRequestResult);
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}
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TDmacTestCaps::TDmacTestCaps()
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:iPILVersion(1)
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{
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}
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TDmacTestCaps::TDmacTestCaps(const SDmacCaps& aDmacCaps, TInt aVersion)
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:SDmacCaps(aDmacCaps), iPILVersion(aVersion)
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{}
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TAddrRange::TAddrRange(TUint aStart, TUint aLength)
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:iStart(aStart), iLength(aLength)
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{
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TEST_ASSERT(iLength > 0);
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}
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TBool TAddrRange::Contains(TAddrRange aRange) const
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{
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return Contains(aRange.Start()) && Contains(aRange.End());
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}
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TBool TAddrRange::Overlaps(const TAddrRange& aRange) const
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{
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return (aRange.Contains(iStart) || aRange.Contains(End()) ||
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Contains(aRange.Start()) || Contains(aRange.End()));
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}
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/**
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If addresses have been left as KPhysAddrInvalid or the count as 0
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(ie. the default values used for IsrRedoRequest)
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then substitute the values from aTransferArgs.
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*/
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void TAddressParms::Substitute(const TDmaTransferArgs& aTransferArgs)
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{
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if(iSrcAddr == KPhysAddrInvalidUser)
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iSrcAddr = aTransferArgs.iSrcConfig.iAddr;
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if(iDstAddr == KPhysAddrInvalidUser)
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iDstAddr = aTransferArgs.iDstConfig.iAddr;
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if(iTransferCount == 0)
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iTransferCount = aTransferArgs.iTransferCount;
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}
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/**
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Addresses are converted into absolute,
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addresses (virtual in user mode, physical in kernel)
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unless they are KPhysAddrInvalid
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*/
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void TAddressParms::Fixup(TLinAddr aChunkBase)
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{
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if(iSrcAddr != KPhysAddrInvalidUser)
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{
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iSrcAddr += aChunkBase;
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#ifdef __KERNEL_MODE__
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iSrcAddr = Epoc::LinearToPhysical(iSrcAddr);
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TEST_ASSERT(iSrcAddr != KPhysAddrInvalid);
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#endif
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}
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#ifndef __KERNEL_MODE__
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else
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{
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// Substitute must be called before
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// Fixup on user side
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TEST_FAULT;
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}
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#endif
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if(iDstAddr != KPhysAddrInvalidUser)
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{
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iDstAddr += aChunkBase;
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#ifdef __KERNEL_MODE__
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iDstAddr = Epoc::LinearToPhysical(iDstAddr);
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TEST_ASSERT(iDstAddr != KPhysAddrInvalid);
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#endif
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}
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#ifndef __KERNEL_MODE__
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else
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{
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// Substitute must be called before
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// Fixup on user side
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TEST_FAULT;
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}
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#endif
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}
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TBool TAddressParms::CheckRange(TLinAddr aStart, TUint aSize)
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{
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TAddrRange chunk(aStart, aSize);
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return chunk.Contains(SourceRange()) && chunk.Contains(DestRange());
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}
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/**
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@return ETrue if the source or destination range of this object
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overlaps with aRange
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*/
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TBool TAddressParms::Overlaps(const TAddrRange aRange) const
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{
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return SourceRange().Overlaps(aRange) || DestRange().Overlaps(aRange);
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}
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/**
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@return ETrue if either the source or dest range of this
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overlap with either of those of aParm
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*/
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TBool TAddressParms::Overlaps(const TAddressParms aParm) const
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{
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return Overlaps(aParm.SourceRange()) || Overlaps(aParm.DestRange());
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}
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TBool TAddressParms::operator==(const TAddressParms& aOther) const
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{
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return iSrcAddr == aOther.iSrcAddr &&
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iDstAddr == aOther.iDstAddr &&
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iTransferCount == aOther.iTransferCount;
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}
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TAddressParms GetAddrParms(const TDmaTransferArgs& aArgs)
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{
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return TAddressParms(aArgs);
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}
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TAddrRange TAddressParms::SourceRange() const
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{
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return TAddrRange(iSrcAddr, iTransferCount);
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}
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TAddrRange TAddressParms::DestRange() const
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{
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return TAddrRange(iDstAddr, iTransferCount);
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}
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void SetAddrParms(TDmaTransferArgs& aTransferArgs, const TAddressParms& aAddrParams)
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{
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aTransferArgs.iSrcConfig.iAddr = aAddrParams.iSrcAddr;
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aTransferArgs.iDstConfig.iAddr = aAddrParams.iDstAddr;
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aTransferArgs.iTransferCount = aAddrParams.iTransferCount;
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}
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TIsrRequeArgs TIsrRequeArgsSet::GetArgs()
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{
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TEST_ASSERT(!IsEmpty());
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const TIsrRequeArgs args(iRequeArgs[iIndex]);
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iIndex++;
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iCount--;
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return args;
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}
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void TIsrRequeArgsSet::Substitute(const TDmaTransferArgs& aTransferArgs)
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{
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for(TInt i=0; i<iCount; i++)
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{
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iRequeArgs[i].Substitute(aTransferArgs);
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}
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}
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void TIsrRequeArgsSet::Fixup(TLinAddr aChunkBase)
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{
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for(TInt i=0; i<iCount; i++)
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{
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iRequeArgs[i].Fixup(aChunkBase);
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}
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}
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