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/*
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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 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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*
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*/
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#include <e32std.h>
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#include <random.h>
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#include <pbencryptor.h>
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#include "pbesymmetricfactory.h"
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#ifdef SYMBIAN_ENABLE_SPLIT_HEADERS
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/** The maximum block size supported (in bytes) */
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const TUint KMaxBlockSizeSupported = 32;
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#endif
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EXPORT_C CPBEncryptorSet* CPBEncryptorSet::NewL(
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const TPBECipher aCipher, const TDesC8& aKey)
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{
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CPBEncryptorSet* self = NewLC(aCipher, aKey);
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CleanupStack::Pop();
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return self;
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}
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EXPORT_C CPBEncryptorSet* CPBEncryptorSet::NewLC(
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const TPBECipher aCipher, const TDesC8& aKey)
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{
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CPBEncryptorSet* self = new(ELeave) CPBEncryptorSet;
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CleanupStack::PushL(self);
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self->ConstructL(aCipher, aKey);
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return self;
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}
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void CPBEncryptorSet::ConstructL(const TPBECipher aCipher,const TDesC8& aKey)
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{
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TInt blocksize = PBE::GetBlockBytes(aCipher);
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iIV = HBufC8::NewMaxL(blocksize);
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TPtr8 iv = iIV->Des();
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TRandom::RandomL(iv);
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iCipher = PBE::MakeEncryptorL(aCipher, aKey, iv);
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}
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void CPBEncryptorSet::Process(const TDesC8& aInput, TDes8& aOutput)
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{
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if(!iIVSent)
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{
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aOutput.Append(*iIV);
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iIVSent = ETrue;
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}
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iCipher->Process(aInput, aOutput);
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}
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void CPBEncryptorSet::ProcessFinalL(const TDesC8& aInput,
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TDes8& aOutput)
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{
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if(!iIVSent)
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{
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aOutput.Append(*iIV);
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iIVSent = ETrue;
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}
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iCipher->ProcessFinalL(aInput, aOutput);
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}
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CPBEncryptorSet::CPBEncryptorSet() : iIVSent(EFalse)
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{
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}
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CPBEncryptorSet::~CPBEncryptorSet()
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{
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delete iIV;
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delete iCipher; // Don't delete iCBCDecryptor, this belongs to iCipher
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}
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TInt CPBEncryptorSet::MaxOutputLength(TUint aMaxInputLength) const
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{
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if(iIVSent)
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{
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return (iCipher->MaxOutputLength(aMaxInputLength));
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}
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else
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{// If we've not sent the iv yet then its the length
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// from the cipher plus a blocksize for the iv
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return (iCipher->MaxOutputLength(aMaxInputLength + iCipher->BlockSize()));
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}
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}
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TInt CPBEncryptorSet::MaxFinalOutputLength(TUint aMaxInputLength) const
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{
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if(iIVSent)
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{
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return (iCipher->MaxFinalOutputLength(aMaxInputLength));
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}
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else
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{// If we've not sent the iv yet then its the length
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// from the cipher plus a blocksize for the iv
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return (iCipher->MaxFinalOutputLength(aMaxInputLength + iCipher->BlockSize()));
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}
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}
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EXPORT_C CPBDecryptorSet* CPBDecryptorSet::NewL(const TPBECipher aCipher,
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const TDesC8& aKey)
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{
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CPBDecryptorSet* self = NewLC(aCipher, aKey);
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CleanupStack::Pop();
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return self;
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}
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EXPORT_C CPBDecryptorSet* CPBDecryptorSet::NewLC(const TPBECipher aCipher,
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const TDesC8& aKey)
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{
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CPBDecryptorSet* self = new(ELeave) CPBDecryptorSet;
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CleanupStack::PushL(self);
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TBuf8<KMaxBlockSizeSupported> fakeIV;
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fakeIV.SetLength(PBE::GetBlockBytes(aCipher));
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self->ConstructL(aCipher, aKey, fakeIV);
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return self;
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}
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void CPBDecryptorSet::ConstructL(const TPBECipher aCipher,
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const TDesC8& aKey, const TDesC8& aIV)
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{
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iCipher = PBE::MakeDecryptorL(aCipher, aKey, aIV);
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iIVBuf = HBufC8::NewL(PBE::GetBlockBytes(aCipher));
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}
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void CPBDecryptorSet::Process(const TDesC8& aInput, TDes8& aOutput)
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{
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TPtrC8 input = ProcessIV(aInput);
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iCipher->Process(input, aOutput);
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}
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void CPBDecryptorSet::ProcessFinalL(const TDesC8& aInput, TDes8& aOutput)
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{
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TPtrC8 input = ProcessIV(aInput);
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iCipher->ProcessFinalL(input, aOutput);
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}
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TPtrC8 CPBDecryptorSet::ProcessIV(const TDesC8& aInput)
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{
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if(!iIVSent)
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{
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TPtr8 iIVBufPtr(iIVBuf->Des());
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if(aInput.Length() + iIVBufPtr.Length() < iCipher->BlockSize())
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{
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iIVBufPtr.Append(aInput);
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return TPtrC8();
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}
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else
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{
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TInt rem = iCipher->BlockSize() - iIVBufPtr.Length();
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iIVBufPtr.Append(aInput.Mid(0, rem));
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CBufferedDecryptor* blockDecryptor = static_cast<CBufferedDecryptor*>(iCipher);
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static_cast<CModeCBCDecryptor*>(blockDecryptor->BlockTransformer())->SetIV(iIVBufPtr);
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iIVSent = ETrue;
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return aInput.Mid(rem);
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}
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}
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else
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{
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return aInput;
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}
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}
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CPBDecryptorSet::CPBDecryptorSet() : iIVSent(EFalse)
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{
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}
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CPBDecryptorSet::~CPBDecryptorSet()
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{
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delete iCipher;
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//iCipher owns iCBCDecryptor we _don't_ need to delete it
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delete iIVBuf;
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}
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TInt CPBDecryptorSet::MaxOutputLength(TUint aMaxInputLength) const
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{
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if(iIVSent)
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{
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return (iCipher->MaxOutputLength(aMaxInputLength));
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}
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else // if we haven't sent the iv yet, then the length the max length of the
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{ // cipher minus a BlockSize where the IV was sitting (as the iv would be part
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// of the length they've sent us)
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return (iCipher->MaxOutputLength(aMaxInputLength - iCipher->BlockSize()));
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}
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}
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TInt CPBDecryptorSet::MaxFinalOutputLength(TUint aMaxInputLength) const
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{
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if(iIVSent)
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{
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return (iCipher->MaxFinalOutputLength(aMaxInputLength));
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}
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else // if we haven't sent the iv yet, then the length the max length of the
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{ // cipher minus a BlockSize where the IV was sitting (as the iv would be part
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// of the length they've sent us)
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return (iCipher->MaxFinalOutputLength(aMaxInputLength - iCipher->BlockSize()));
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}
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}
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