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// Copyright (c) 1998-2009 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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// f32test\server\t_resize.cpp
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// This program is designed to test the CFatFileCB::ResizeIndex() method,
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// especially wrt defect EDNMDON-4J2EWK, which occured when the index was
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// resized by an extreme amount.
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// This program must be run on a FAT formatted disk with at least 10Mb free.
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// RFile::SetSize(TInt aSize)
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//
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//
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#include <e32test.h>
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#include <f32file.h>
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#include <hal.h>
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#include "t_server.h"
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GLDEF_D RTest test(_L("T_RESIZE"));
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// const TInt KBrutusUidValue=0x09080001; /* Never used */
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// const TInt KWinsUidValue=0x00000001; /* Never used */
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const TInt K1K = 1 << 10; // 1K
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const TInt K4K = 4 * K1K;
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const TInt K1Mb = 1 << 20;
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const TInt KBigFileSize = 10 * K1Mb; // 10Mb
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const TInt KSmallFileSize = 10 * K1K;
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const TInt KFillBufLength = K1K;
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const TInt KNumberLength = 8;
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const TInt KNumbersPerFillBuf = KFillBufLength / KNumberLength;
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LOCAL_C TBool IsDiskValid(TInt aDrive);
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LOCAL_C void FillBuf(TDes8 &aBuf, TInt aStart);
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GLDEF_C void CallTestsL()
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{
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//
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// Test with drive nearly full
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//
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CTrapCleanup* cleanup; // create cleanup stack
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cleanup = CTrapCleanup::New();
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__UHEAP_MARK;
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test.Title();
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test.Start(_L("Starting tests"));
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test.Next(_L("Connecting to file server."));
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TInt r;
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r = TheFs.Connect();
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test(r == KErrNone);
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if ( !gDriveToTest.IsLower() )
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{
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gDriveToTest.LowerCase();
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}
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TInt gDriveNumber; // current drive number
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test((r = RFs::CharToDrive(gDriveToTest, gDriveNumber)) == KErrNone);
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if (IsDiskValid(gDriveNumber))
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{
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// Overflows occur because iSeekIndex is 128 elements long.
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// ASSUMES CLUSTER SIZE IS 512 BYTES
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// 1: Create a 10Mb file and resize it to 10k.
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// A 10Mb file will create force each member of CFatFileCB::iSeekIndex to
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// mark the start of 2^8 blocks (512 * 128 * 2^8 = 2^9 * 2^7 * 2^8 = 2^24 = 16777216)
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// A 10K file has an iSeekIndex with granularity 2^0 = 1 cluster.
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// skip half-words = (1<<(iSeekIndexSize-aNewMult))-1 = (1 << (8 - 0)) - 1 = 255.
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test.Next(_L("Creating file."));
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test.Printf(_L("Writing %08x file.\n"), KBigFileSize);
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RFile f;
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TFileName fn;
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fn.Format(_L("%c:\\resize.tst"), TUint(gDriveToTest));
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test((r = f.Create(TheFs, fn, EFileShareExclusive | EFileStream | EFileWrite)) == KErrNone);
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TInt i; // bad for scope under VC
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TBuf8<KFillBufLength> buf; // don't reconstruct for each iteration
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for (i = 0; i < KBigFileSize / KNumberLength; i += KNumbersPerFillBuf)
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{
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if (((i * KNumberLength) % (KBigFileSize / 32)) == 0)
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test.Printf(_L("writing to file posn %08x.\n"), i * 8);
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FillBuf(buf, i);
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test(f.Write(buf) == KErrNone);
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}
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// Resize the file to 10k. This should cause CFatFileCB::iSeekIndex to be filled
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// with zeroes and not cause a Des16PanicDesIndexOutOfRange.
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test.Next(_L("Resizing file downwards.\n"));
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test.Printf(_L("Resizing %08x file to %08x.\n"), KBigFileSize, KSmallFileSize);
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f.SetSize(KSmallFileSize);
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// Re-read the file up to 10k to make sure it is navigated properly.
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test.Printf(_L("Checking first %08x bytes are maintained.\n"), KSmallFileSize);
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TInt startPos = 0;
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f.Seek(ESeekStart, startPos);
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TBuf8<KFillBufLength> buf2; // don't reconstruct for each iteration
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for (i = 0; i < KSmallFileSize / KNumberLength; i += KNumbersPerFillBuf)
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{
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test(f.Read(buf) == KErrNone);
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test(buf.Length() == KFillBufLength);
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FillBuf(buf2, i);
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test(buf2.Compare(buf) == 0);
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}
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// 2: Resize the 10K file to 10Mb.
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//
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// iSeekIndex will be cleared because the resize loop is never executed.
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// TUint16* newVal=(TUint16*)ptr;
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// TInt step=1<<(aNewMult-iSeekIndexSize); // 256
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// ptr+=step-1; // ptr := &(*iSeekIndex[255])
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// while(ptr<ptrEnd && newVal<newValEnd) // ptr > ptrEnd on first iteration
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// {
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// *newVal=*ptr;
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// newVal++;
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// ptr+=step;
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// }
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// while(newVal<ptrEnd) // newVal == ptr on first iteration
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// *newVal++=0; // just zero entire array
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test.Next(_L("Resizing file upwards.\n"));
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test.Printf(_L("Resizing %08x file to %08x."), KSmallFileSize, KBigFileSize);
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test(f.SetSize(KBigFileSize) == KErrNone);
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f.Seek(ESeekStart, startPos);
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for (i = 0; i < KBigFileSize / KNumberLength; i += KNumbersPerFillBuf)
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{
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if (((i * KNumberLength) % (KBigFileSize / 32)) == 0)
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test.Printf(_L("reading from file posn %08x.\n"), i * 8);
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test(f.Read(buf) == KErrNone);
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test(buf.Length() == KFillBufLength);
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if (i < (K4K / KNumberLength))
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{
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FillBuf(buf2, i);
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test(buf.Compare(buf2) == 0);
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}
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}
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f.Close();
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test( TheFs.Delete(fn) == KErrNone );
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} // if (IsDiskValid(gDriveNumber))
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// TheFs.Close(); /* TheFs is being accessed by t_main's E32MAIN() after the test is complete. */
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test.End();
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test.Close();
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__UHEAP_MARKEND;
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delete cleanup;
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}
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LOCAL_C TBool IsDiskValid(TInt aDrive)
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// Returns ETrue if aDrive is a FAT formatted disk with KBigFileSize bytes free,
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// EFalse otherwise.
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{
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TInt r;
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TInt isFat, isValid;
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TInt machUid;
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r=HAL::Get(HAL::EMachineUid,machUid);
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test(r==KErrNone);
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// test.Printf(_L("machUid = %08x.\n"), machUid);
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TBuf<16> fsName; // _?_ length
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r = TheFs.FileSystemName(fsName, aDrive);
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test(r == KErrNone || r == KErrNotFound);
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test.Printf(_L("fsName = \"%S\".\n"), &fsName);
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if (machUid == HAL::EMachineUid_Brutus)
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{
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isFat = (fsName.CompareF(_L("Local")) == 0);
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}
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else
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{
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isFat = (fsName.CompareF(_L("Fat")) == 0);
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}
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test.Printf(_L("isFat = %x.\n"), isFat);
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if (! isFat)
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{
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isValid = EFalse;
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}
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else
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{
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TVolumeInfo vi;
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test((r = TheFs.Volume(vi, aDrive)) == KErrNone);
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test.Printf(_L("vi.iFree = %ld\n"), vi.iFree);
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isValid = (vi.iFree >= TInt64(KBigFileSize));
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}
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if (! isValid)
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{
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test.Printf(_L("IsDiskValid: Skipped because drive %d is not a valid FAT volume (with 10Mb free).\n"), aDrive);
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}
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return isValid;
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}
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LOCAL_C void FillBuf(TDes8 &aBuf, TInt aStart)
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// Fills aBuf with a list of ascending 8 digit numbers.
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// Assumes aBuf.MaxLength() is divisible by 8.
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{
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aBuf.Zero();
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while (aBuf.Length() < aBuf.MaxLength())
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{
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aBuf.AppendFormat(_L8("%08x"), aStart++);
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}
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}
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