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// Copyright (c) 1997-2009 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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#include <f32file.h>
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#include <e32test.h>
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#include <e32math.h>
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#include "fat_utils.h"
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#include "t_server.h"
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#include "t_chlffs.h"
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using namespace Fat_Test_Utils;
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RTest test(_L("t_falsespace"));
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const TInt KNumberThreads=2;
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const TInt KHeapSize=0x2000;
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static TInt RsrvSpaceThread(TAny* aArg);
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static TInt SessCloseThread(TAny* aArg);
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static void GetFreeDiskSpace(TInt64 &aFree);
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TInt gCount; //count of files used to fill up the disk
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TInt gTestDrive; //drive number of the drive currently being tested
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TChar gCh;
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_LIT(KBasePath,"\\F32-TST\\FILLDIR\\");
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_LIT(KBaseName,"\\F32-TST\\FILLDIR\\FILE");
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_LIT(KTestFile,"?:\\test.txt");
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_LIT8(KTestData, "12345678123456781234567812345678123456781234567812345678123456781234567812345678123456781234567812345678123456781234567812345678");
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_LIT(KDir, "?:\\adodgydir\\");
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_LIT(KDrv,"?:\\");
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_LIT(KNewName,"?:\\newname.txt");
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void FormatDrive()
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{
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TInt nRes;
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#if 0
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//-- FAT32 SPC:1; for the FAT32 testing on the emulator
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TFatFormatParam fp;
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fp.iFatType = EFat32;
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fp.iSecPerCluster = 1;
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nRes = FormatFatDrive(TheFs, gTestDrive, ETrue, &fp);
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#else
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nRes = FormatFatDrive(TheFs, gTestDrive, ETrue);
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#endif
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test(nRes == KErrNone);
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}
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void SynchronousClose(RFs &aSession)
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{
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TRequestStatus s;
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aSession.NotifyDestruction(s);
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test(s.Int()==KRequestPending);
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aSession.Close();
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User::WaitForRequest(s);
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}
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static TInt CreateFileX(const TDesC& aBaseName,TInt aX, TInt aFileSize)
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//
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// Create a large file. Return KErrEof or KErrNone
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//
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{
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TBuf<128> fileName=aBaseName;
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fileName.AppendNum(aX);
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RFile file;
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TInt r=file.Replace(TheFs,fileName,EFileWrite);
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if (r==KErrDiskFull)
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return(r);
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if (r!=KErrNone)
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{
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test.Printf(_L("ERROR:: Replace returned %d\n"),r);
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test(0);
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return(KErrDiskFull);
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}
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if (!IsTestingLFFS())
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r=file.SetSize(aFileSize);
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else
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{
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TBuf8<1024> testdata(1024);
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TInt count=(aFileSize/testdata.Length());
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r=KErrNone;
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while (count-- && r==KErrNone)
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r=file.Write(testdata);
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}
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if (r==KErrDiskFull)
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{
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file.Close();
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return(r);
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}
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if (r!=KErrNone)
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{
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test.Printf(_L("ERROR:: SetSize/Write returned %d\n"),r);
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test(0);
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//test.Getch();
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file.Close();
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return(KErrDiskFull);
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}
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file.Close();
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test.Printf(_L("Created file %d size %d\n"),aX,aFileSize);
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return(KErrNone);
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}
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LOCAL_C TInt DeleteFileX(const TDesC& aBaseName,TInt aX)
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//
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// Delete a large file
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//
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{
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TBuf<128> fileName=aBaseName;
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fileName.AppendNum(aX);
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return TheFs.Delete(fileName);
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}
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static void FillUpDisk()
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//
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// Test that a full disk is ok
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//
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{
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test.Start(_L("Fill disk to capacity"));
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TInt r=TheFs.MkDirAll(KBasePath);
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test(r==KErrNone || r==KErrAlreadyExists);
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gCount=0;
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TFileName sessionPath;
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r=TheFs.SessionPath(sessionPath);
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test(r==KErrNone);
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TBuf<128> fileName=KBaseName();
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TInt64 freespace=0;
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TInt64 freespaceBeforeScanDrive = 0;
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TInt64 freespaceAfterScanDrive = 0;
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do
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{
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GetFreeDiskSpace(freespace);
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TInt fillfilesize=0;
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if (I64HIGH(freespace))
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fillfilesize=KMaxTInt;
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else
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fillfilesize=I64LOW(freespace)* 7/8;
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FOREVER
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{
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TInt r=CreateFileX(fileName,gCount,fillfilesize);
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if (r==KErrDiskFull)
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{
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if(fillfilesize <= 2)
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break;
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else
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fillfilesize=fillfilesize/2;
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}
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test(r==KErrNone || r==KErrDiskFull);
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if(r==KErrNone)
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gCount++;
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}
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r=TheFs.CheckDisk(fileName);
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if (r!=KErrNone && r!=KErrNotSupported)
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{
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test.Printf(_L("ERROR:: CheckDisk returned %d\n"),r);
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test(0);
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}
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// Test that scan drive passes on a full disk
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// DEF071696 - KErrCorrupt on Scan Drive
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GetFreeDiskSpace(freespaceBeforeScanDrive);
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test.Printf(_L("Before ScanDrive freeSpace = %08X:%08X\n"),
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I64HIGH(freespaceBeforeScanDrive), I64LOW(freespaceBeforeScanDrive));
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r = TheFs.ScanDrive(fileName);
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if (r!=KErrNone && r!=KErrNotSupported)
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{
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test.Printf(_L("ScanDrive returned %d\n"), r);
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test(0);
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}
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GetFreeDiskSpace(freespaceAfterScanDrive);
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test.Printf(_L("After ScanDrive freeSpace = %08X:%08X\n"),
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I64HIGH(freespaceAfterScanDrive), I64LOW(freespaceAfterScanDrive));
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}
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while (freespaceBeforeScanDrive != freespaceAfterScanDrive );
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gCount--;
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test.End();
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}
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static void GetFreeDiskSpace(TInt64 &aFree)
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//
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// Get free disk space
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//
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{
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TVolumeInfo v;
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TInt r=TheFs.Volume(v,gTestDrive);
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test(r==KErrNone);
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aFree=v.iFree;
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}
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static void Test1()
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//
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// Test the API fundamentaly works for one session
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//
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{
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test.Next(_L("Test Disk Space reserve APIs"));
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TInt r=0;
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FormatDrive();
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TInt64 free2;
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TInt64 free1;
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TInt64 diff;
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r=TheFs.GetReserveAccess(gTestDrive);
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test(r==KErrPermissionDenied);
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//make sure nothing odd happens if we didnt already have access
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r=TheFs.ReleaseReserveAccess(gTestDrive);
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test(r==KErrNone);
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GetFreeDiskSpace(free2);
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r=TheFs.ReserveDriveSpace(gTestDrive,0x1000);
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test(r==KErrNone);
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GetFreeDiskSpace(free1);
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diff = free2 - free1;
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test(I64INT(diff) > 0xfe0 && I64INT(diff) < 0x1100);
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r=TheFs.GetReserveAccess(gTestDrive);
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test(r==KErrNone);
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GetFreeDiskSpace(free1);
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TInt64 temp = free2-free1;
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test(I64INT(temp)>(-0x90) && I64INT(temp)<0x90);
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r=TheFs.ReleaseReserveAccess(gTestDrive);
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test(r==KErrNone);
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GetFreeDiskSpace(free1);
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diff = free2 - free1;
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test(I64INT(diff) > 0xfe0 && I64INT(diff) < 0x1100);
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//test reallocation of reserved space is possible
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r=TheFs.ReserveDriveSpace(gTestDrive,0x2000);
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test(r==KErrNone);
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//test upper limit of reserved space
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r=TheFs.ReserveDriveSpace(gTestDrive,0x2000000);
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test(r==KErrArgument);
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r=TheFs.ReserveDriveSpace(gTestDrive,0);
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test(r==KErrNone);
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r=TheFs.GetReserveAccess(gTestDrive);
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test(r==KErrPermissionDenied);
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//make sure nothing odd happens if we didnt already have access
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r=TheFs.ReleaseReserveAccess(gTestDrive);
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test(r==KErrNone);
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r=TheFs.ReserveDriveSpace(gTestDrive,-45);
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test(r==KErrArgument);
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}
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static void Test2()
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//
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// Test multiple sessions, ensure the drive limit is not exceeded
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//
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{
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test.Next(_L("Test Session and total reserve limits"));
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FormatDrive();
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TInt i=0;
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TInt r=0;
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RFs sessions[17];
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TVolumeInfo v;
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//Connect Sessions
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for(i=0; i<17; i++)
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{
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r = sessions[i].Connect();
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test(r==KErrNone);
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}
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test.Next(_L("Test breaching sesson reserve limit"));
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r=sessions[0].ReserveDriveSpace(gTestDrive,0x10001);
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test(r==KErrArgument);
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//Get Volume Free Space
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r = sessions[0].Volume(v, gTestDrive);
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if(v.iFree > 0x100000)
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{
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test.Next(_L("Test breaching drive reserve limit"));
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for (i=0; i<16; i++)
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{
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r=sessions[i].ReserveDriveSpace(gTestDrive,0x10000);
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test(r==KErrNone);
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}
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//The straw
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r=sessions[16].ReserveDriveSpace(gTestDrive,0x10);
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test(r==KErrTooBig);
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}
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else
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{
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test.Printf(_L("Drive too small: breaching drive reserve limit test skipped\n"));
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test.Next(_L("Testing exhausting available drive free space instead"));
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for(i=0; (v.iFree -= 0x10000) >= 0; i++)
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{
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r=sessions[i].ReserveDriveSpace(gTestDrive,0x10000);
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test(r==KErrNone);
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}
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//The straw
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r=sessions[i].ReserveDriveSpace(gTestDrive,0x10000);
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test(r==KErrDiskFull);
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}
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//Close Sessions
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for(i=0; i<17; i++)
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{
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SynchronousClose(sessions[i]);
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}
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}
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static void Test3()
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//
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// Test session cleanup
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//
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{
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test.Next(_L("Test session close and clean up of resrved space"));
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FormatDrive();
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RFs fs1;
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RFs fs2;
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TInt64 free2(0);
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TInt64 free1(0);
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TInt64 diff(0);
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TInt r=0;
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r = fs1.Connect();
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test(r==KErrNone);
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r = fs2.Connect();
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test(r==KErrNone);
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GetFreeDiskSpace(free1);
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r=fs1.ReserveDriveSpace(gTestDrive,0x10000);
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test(r==KErrNone);
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r=fs2.ReserveDriveSpace(gTestDrive,0x10000);
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test(r==KErrNone);
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GetFreeDiskSpace(free2);
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diff = free1 - free2;
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test(I64INT(diff)>0x1FBD0 && I64INT(diff)<0x21000);
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SynchronousClose(fs1);
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GetFreeDiskSpace(free2);
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diff = free1-free2;
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test(I64INT(diff)>0xFA00 && I64INT(diff)<0x103C4);
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r = fs1.Connect();
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test(r==KErrNone);
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GetFreeDiskSpace(free1);
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diff= free1-free2;
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test(I64INT(diff)== 0 || I64INT(diff)<0xFA0 );
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r=fs1.ReserveDriveSpace(gTestDrive,0x10000);
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test(r==KErrNone);
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GetFreeDiskSpace(free2);
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diff = free1 - free2;
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test(I64INT(diff)>0xFA00 && I64INT(diff)<0x103C4);
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// Make sure no reserve space is allocated
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r=fs1.ReserveDriveSpace(gTestDrive,0);
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test(r==KErrNone);
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r=fs2.ReserveDriveSpace(gTestDrive,0);
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test(r==KErrNone);
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// Now fill up the disk
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FillUpDisk();
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// Should fail as there is no space
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r=fs1.ReserveDriveSpace(gTestDrive,0x10000);
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test(r==KErrDiskFull);
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SynchronousClose(fs1);
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SynchronousClose(fs2);
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}
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static void Test4()
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//
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// Test real out of disk space conditions i.e. properly run out of disk space and try to
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// reserve an area etc
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//
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{
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test.Next(_L("Test Filling disk and using APIs"));
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if(IsTestingLFFS())
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{
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//-- This test is not valid for LFFS, because free space on this FS can change itself because of some
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//-- internal FS activities
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|
446 |
test.Printf(_L("This test is inconsistent on LFFS\n"));
|
|
447 |
return;
|
|
448 |
}
|
|
449 |
|
|
450 |
FormatDrive();
|
|
451 |
|
|
452 |
RFs fs;
|
|
453 |
TInt r=fs.Connect();
|
|
454 |
test(r==KErrNone);
|
|
455 |
TInt64 freeA(0);
|
|
456 |
TInt64 freeB(0);
|
|
457 |
RFile file;
|
|
458 |
|
|
459 |
//start with known amount of space
|
|
460 |
|
|
461 |
//create a single file to use for futher tests
|
|
462 |
TBuf<20> buf;
|
|
463 |
buf=KTestFile;
|
|
464 |
buf[0]=(TUint16)gCh;
|
|
465 |
|
|
466 |
r=file.Replace(fs, buf, EFileWrite);
|
|
467 |
test(r==KErrNone);
|
|
468 |
|
|
469 |
r=file.Write(KTestData());
|
|
470 |
test(r==KErrNone);
|
|
471 |
|
|
472 |
file.Close();
|
|
473 |
|
|
474 |
r=fs.ReserveDriveSpace(gTestDrive,0x10000); //reserve some disk space
|
|
475 |
test(r==KErrNone);
|
|
476 |
|
|
477 |
FillUpDisk(); //fill up the disk
|
|
478 |
|
|
479 |
TVolumeInfo v; //get disk space
|
|
480 |
r=fs.Volume(v,gTestDrive);
|
|
481 |
test(r==KErrNone);
|
|
482 |
freeA=v.iFree;
|
|
483 |
|
|
484 |
r=fs.GetReserveAccess(gTestDrive); //get access to reserve space
|
|
485 |
test(r==KErrNone);
|
|
486 |
|
|
487 |
r=fs.Volume(v,gTestDrive); //get disk space
|
|
488 |
test(r==KErrNone);
|
|
489 |
freeB=v.iFree;
|
|
490 |
|
|
491 |
r=fs.ReleaseReserveAccess(gTestDrive); //release reserve space
|
|
492 |
test(r==KErrNone);
|
|
493 |
|
|
494 |
test(freeA == (freeB - 0x10000)); //test difference in space is equal to the amount reserved
|
|
495 |
|
|
496 |
r=fs.Volume(v,gTestDrive); //get disk space
|
|
497 |
test(r==KErrNone);
|
|
498 |
freeB=v.iFree;
|
|
499 |
test(freeA == freeB); //check reading is still correct
|
|
500 |
|
|
501 |
TBuf <20> dir = KDir();
|
|
502 |
dir[0]=(TUint16)gCh;
|
|
503 |
r=fs.MkDir(dir);
|
|
504 |
test(r==KErrDiskFull);
|
|
505 |
|
|
506 |
r=fs.MkDirAll(dir);
|
|
507 |
test(r==KErrDiskFull);
|
|
508 |
|
|
509 |
TFileName temp;
|
|
510 |
TBuf<5> drv = KDrv();
|
|
511 |
drv[0]=(TUint16)gCh;
|
|
512 |
r=file.Temp(fs, drv, temp, EFileWrite);
|
|
513 |
test(r==KErrDiskFull);
|
|
514 |
|
|
515 |
r=file.Replace(fs, buf, EFileWrite);
|
|
516 |
test(r==KErrDiskFull);
|
|
517 |
|
|
518 |
r=file.Create(fs, buf, EFileWrite);
|
|
519 |
test(r==KErrDiskFull);
|
|
520 |
|
|
521 |
r=file.Open(fs, buf, EFileWrite);
|
|
522 |
test(r==KErrNone);
|
|
523 |
|
|
524 |
r=file.Write(128, KTestData());
|
|
525 |
|
|
526 |
if ((gDriveCacheFlags & EFileCacheWriteOn) && (r == KErrNone))
|
|
527 |
r = file.Flush();
|
|
528 |
|
|
529 |
test(r==KErrDiskFull);
|
|
530 |
|
|
531 |
r=file.SetSize(0x1000);
|
|
532 |
test(r==KErrDiskFull);
|
|
533 |
|
|
534 |
r=file.SetAtt(KEntryAttHidden,0);
|
|
535 |
test(r==KErrDiskFull);
|
|
536 |
|
|
537 |
TTime dtime;
|
|
538 |
r=file.SetModified(dtime);
|
|
539 |
test(r==KErrDiskFull);
|
|
540 |
|
|
541 |
r=file.Set(dtime,KEntryAttHidden,0);
|
|
542 |
test(r==KErrDiskFull);
|
|
543 |
|
|
544 |
r=file.Rename(buf);
|
|
545 |
test(r==KErrDiskFull);
|
|
546 |
|
|
547 |
file.Close();
|
|
548 |
|
|
549 |
|
|
550 |
// Test that we can create a temporary file & write to it after acquiring reserved access,
|
|
551 |
r=fs.GetReserveAccess(gTestDrive); //get access to reserve space
|
|
552 |
test(r==KErrNone);
|
|
553 |
|
|
554 |
r=fs.Volume(v,gTestDrive); //get disk space
|
|
555 |
test(r==KErrNone);
|
|
556 |
freeA = v.iFree;
|
|
557 |
|
|
558 |
r=file.Temp(fs, drv, temp, EFileWrite);
|
|
559 |
test(r==KErrNone);
|
|
560 |
|
|
561 |
r = file.Write(KTestData());
|
|
562 |
test (r == KErrNone);
|
|
563 |
|
|
564 |
// If write caching is enabled, call RFs::Entry() to flush the file "anonymously"
|
|
565 |
if ((gDriveCacheFlags & EFileCacheWriteOn) && (r == KErrNone))
|
|
566 |
{
|
|
567 |
r = file.Flush();
|
|
568 |
test (r == KErrNone);
|
|
569 |
}
|
|
570 |
|
|
571 |
r=fs.Volume(v,gTestDrive); //get disk space
|
|
572 |
test(r==KErrNone);
|
|
573 |
freeB = v.iFree;
|
|
574 |
test (freeB < freeA);
|
|
575 |
|
|
576 |
file.Close();
|
|
577 |
|
|
578 |
r=fs.ReleaseReserveAccess(gTestDrive); //release reserve space
|
|
579 |
test(r==KErrNone);
|
|
580 |
|
|
581 |
|
|
582 |
TBuf<20> newname =KNewName();
|
|
583 |
newname[0]=(TUint16)gCh;
|
|
584 |
r=fs.Rename(buf, newname);
|
|
585 |
test(r==KErrDiskFull);
|
|
586 |
|
|
587 |
r=fs.Replace(buf, newname);
|
|
588 |
test(r==KErrDiskFull);
|
|
589 |
|
|
590 |
r=fs.SetEntry(buf, dtime, KEntryAttHidden, 0);
|
|
591 |
test(r==KErrDiskFull);
|
|
592 |
|
|
593 |
r=fs.CreatePrivatePath(gTestDrive);
|
|
594 |
test(r==KErrDiskFull);
|
|
595 |
|
|
596 |
r=fs.SetVolumeLabel(_L("Moooo"), gTestDrive);
|
|
597 |
test(r==KErrDiskFull);
|
|
598 |
|
|
599 |
r=fs.SetModified(buf, dtime);
|
|
600 |
test(r==KErrDiskFull);
|
|
601 |
|
|
602 |
SynchronousClose(fs);
|
|
603 |
}
|
|
604 |
|
|
605 |
|
|
606 |
|
|
607 |
static void Test5()
|
|
608 |
//
|
|
609 |
//
|
|
610 |
//
|
|
611 |
{
|
|
612 |
test.Next(_L("Test Session limits"));
|
|
613 |
|
|
614 |
if(IsTestingLFFS())
|
|
615 |
{
|
|
616 |
//-- This test is not valid for LFFS, because free space on this FS can change itself because of some
|
|
617 |
//-- internal FS activities
|
|
618 |
test.Printf(_L("This test is inconsistent on LFFS\n"));
|
|
619 |
return;
|
|
620 |
}
|
|
621 |
|
|
622 |
|
|
623 |
RFs fs1;
|
|
624 |
RFs fs2;
|
|
625 |
TInt r=KErrNone;
|
|
626 |
|
|
627 |
r=fs1.Connect();
|
|
628 |
test(r==KErrNone);
|
|
629 |
r=fs2.Connect();
|
|
630 |
test(r==KErrNone);
|
|
631 |
|
|
632 |
FormatDrive();
|
|
633 |
|
|
634 |
r=fs1.ReserveDriveSpace(gTestDrive,0x10000);
|
|
635 |
test(r==KErrNone);
|
|
636 |
|
|
637 |
r=fs2.ReserveDriveSpace(gTestDrive,0x10000);
|
|
638 |
test(r==KErrNone);
|
|
639 |
|
|
640 |
FillUpDisk();
|
|
641 |
|
|
642 |
r=fs1.GetReserveAccess(gTestDrive);
|
|
643 |
test(r==KErrNone);
|
|
644 |
|
|
645 |
TBuf<20> dir = KDir();
|
|
646 |
dir[0]=(TUint16)gCh;
|
|
647 |
|
|
648 |
|
|
649 |
r=fs2.MkDir(dir);
|
|
650 |
test(r==KErrDiskFull);
|
|
651 |
|
|
652 |
r=fs1.ReserveDriveSpace(gTestDrive,0); //can not release reserve space while you have reserve access
|
|
653 |
test(r==KErrInUse);
|
|
654 |
|
|
655 |
r=fs1.ReleaseReserveAccess(gTestDrive);
|
|
656 |
test(r==KErrNone);
|
|
657 |
|
|
658 |
r=fs1.ReserveDriveSpace(gTestDrive,0);
|
|
659 |
test(r==KErrNone);
|
|
660 |
|
|
661 |
r=fs2.MkDir(dir);
|
|
662 |
test(r==KErrNone);
|
|
663 |
|
|
664 |
SynchronousClose(fs1);
|
|
665 |
SynchronousClose(fs2);
|
|
666 |
}
|
|
667 |
|
|
668 |
static TInt RsrvSpaceThread(TAny* aArg)
|
|
669 |
{
|
|
670 |
TInt r=KErrNone;
|
|
671 |
TInt64 fr1;
|
|
672 |
TInt64 fr2;
|
|
673 |
TInt64 diff;
|
|
674 |
|
|
675 |
TVolumeInfo v;
|
|
676 |
r=((RFs*)aArg)->Volume(v,gTestDrive);
|
|
677 |
if(r!=KErrNone)
|
|
678 |
return(r);
|
|
679 |
|
|
680 |
fr1=v.iFree;
|
|
681 |
|
|
682 |
r=((RFs*)aArg)->ReserveDriveSpace(gTestDrive,0x10000);
|
|
683 |
if(r!=KErrNone)
|
|
684 |
return(r);
|
|
685 |
|
|
686 |
r=((RFs*)aArg)->Volume(v,gTestDrive);
|
|
687 |
if(r!=KErrNone)
|
|
688 |
return(r);
|
|
689 |
fr2=v.iFree;
|
|
690 |
|
|
691 |
diff=fr1-fr2;
|
|
692 |
if(!(I64INT(diff)> 0xef38 && I64INT(diff)<0xf100))
|
|
693 |
return(KErrGeneral);
|
|
694 |
return r;
|
|
695 |
}
|
|
696 |
|
|
697 |
static TInt SessCloseThread(TAny* aArg)
|
|
698 |
{
|
|
699 |
TInt r=KErrNone;
|
|
700 |
TInt64 fr1;
|
|
701 |
TInt64 fr2;
|
|
702 |
TInt64 diff;
|
|
703 |
|
|
704 |
TVolumeInfo v;
|
|
705 |
r=((RFs*)aArg)->Volume(v,gTestDrive);
|
|
706 |
if(r!=KErrNone)
|
|
707 |
return(r);
|
|
708 |
fr1=v.iFree;
|
|
709 |
|
|
710 |
((RFs*)aArg)->ReserveDriveSpace(gTestDrive,0x1000);
|
|
711 |
|
|
712 |
r=((RFs*)aArg)->Volume(v,gTestDrive);
|
|
713 |
if(r!=KErrNone)
|
|
714 |
return(r);
|
|
715 |
fr2=v.iFree;
|
|
716 |
|
|
717 |
diff=fr2-fr1;
|
|
718 |
if(!(I64INT(diff)> 0xef38 && I64INT(diff)<0xf100))
|
|
719 |
return(KErrGeneral);
|
|
720 |
|
|
721 |
SynchronousClose(*((RFs*)aArg));
|
|
722 |
|
|
723 |
return r;
|
|
724 |
}
|
|
725 |
|
|
726 |
static void Test6()
|
|
727 |
//
|
|
728 |
// Test sharabale session
|
|
729 |
//
|
|
730 |
{
|
|
731 |
|
|
732 |
test.Next(_L("Test sharable session"));
|
|
733 |
|
|
734 |
RFs fsess;
|
|
735 |
TInt r=KErrNone;
|
|
736 |
TInt64 free1(0);
|
|
737 |
TInt64 free2(0);
|
|
738 |
TInt64 diff(0);
|
|
739 |
RThread t[KNumberThreads];
|
|
740 |
TRequestStatus tStat[KNumberThreads];
|
|
741 |
|
|
742 |
r=fsess.Connect();
|
|
743 |
test(r==KErrNone);
|
|
744 |
|
|
745 |
FormatDrive();
|
|
746 |
|
|
747 |
r= fsess.ShareAuto();
|
|
748 |
test(r==KErrNone);
|
|
749 |
|
|
750 |
GetFreeDiskSpace(free1);
|
|
751 |
|
|
752 |
fsess.ReserveDriveSpace(gTestDrive,0x1000);
|
|
753 |
|
|
754 |
r = t[0].Create(_L("Sub_Thread1"),RsrvSpaceThread,KDefaultStackSize,KHeapSize,KHeapSize,&fsess);
|
|
755 |
test(r==KErrNone);
|
|
756 |
|
|
757 |
t[0].Rendezvous(tStat[0]);
|
|
758 |
t[0].Resume();
|
|
759 |
|
|
760 |
User::WaitForRequest(tStat[0]);
|
|
761 |
|
|
762 |
t[0].Close();
|
|
763 |
test(tStat[0]==KErrNone);
|
|
764 |
|
|
765 |
r = t[1].Create(_L("Sub_Thread2"),SessCloseThread,KDefaultStackSize,KHeapSize,KHeapSize,&fsess);
|
|
766 |
test(r==KErrNone);
|
|
767 |
|
|
768 |
t[1].Rendezvous(tStat[1]);
|
|
769 |
t[1].Resume();
|
|
770 |
|
|
771 |
User::WaitForRequest(tStat[1]);
|
|
772 |
|
|
773 |
t[1].Close();
|
|
774 |
test(tStat[1]==KErrNone);
|
|
775 |
|
|
776 |
GetFreeDiskSpace(free2);
|
|
777 |
|
|
778 |
diff = free1-free2;
|
|
779 |
test(I64INT(diff)== 0 || I64INT(diff)<0xFA0 );
|
|
780 |
}
|
|
781 |
|
|
782 |
|
|
783 |
static void Test7()
|
|
784 |
//
|
|
785 |
// Tests notifier events for sessions with and without reserved access
|
|
786 |
//
|
|
787 |
{
|
|
788 |
if(IsTestingLFFS())
|
|
789 |
{
|
|
790 |
// This test is not valid for LFFS...
|
|
791 |
test.Printf(_L("Test reserved access notification not run for LFFS\n"));
|
|
792 |
return;
|
|
793 |
}
|
|
794 |
|
|
795 |
|
|
796 |
test.Next(_L("Test reserved access notification"));
|
|
797 |
|
|
798 |
FormatDrive();
|
|
799 |
|
|
800 |
RFs theNrm;
|
|
801 |
RFs theRes;
|
|
802 |
|
|
803 |
TInt err = theNrm.Connect();
|
|
804 |
test(KErrNone == err);
|
|
805 |
|
|
806 |
err = theRes.Connect();
|
|
807 |
test(KErrNone == err);
|
|
808 |
|
|
809 |
|
|
810 |
TInt64 freeSpace(0);
|
|
811 |
GetFreeDiskSpace(freeSpace);
|
|
812 |
|
|
813 |
RFs theTestSession;
|
|
814 |
theTestSession.Connect();
|
|
815 |
|
|
816 |
_LIT(KFileFiller, "?:\\t_falseSpaceFiller");
|
|
817 |
TBuf<25> fileName;
|
|
818 |
fileName = KFileFiller;
|
|
819 |
fileName[0] = (TUint16)gCh;
|
|
820 |
|
|
821 |
err = theTestSession.Connect();
|
|
822 |
test(err == KErrNone);
|
|
823 |
|
|
824 |
// determine the cluster size
|
|
825 |
RFile theFile;
|
|
826 |
err=theFile.Replace(theTestSession, fileName, EFileShareAny | EFileWrite);
|
|
827 |
test(err==KErrNone);
|
|
828 |
|
|
829 |
// Neither notifier should be triggered here
|
|
830 |
err = theFile.SetSize(1);
|
|
831 |
test(KErrNone == err);
|
|
832 |
theFile.Close();
|
|
833 |
|
|
834 |
TInt64 newFreeSpace;
|
|
835 |
GetFreeDiskSpace(newFreeSpace);
|
|
836 |
TInt clusterSize = TInt(freeSpace - newFreeSpace);
|
|
837 |
theTestSession.Delete(fileName);
|
|
838 |
GetFreeDiskSpace(newFreeSpace);
|
|
839 |
test (newFreeSpace == freeSpace);
|
|
840 |
|
|
841 |
TInt resSpace = Max(0x1000, clusterSize);
|
|
842 |
|
|
843 |
TVolumeInfo volInfo;
|
|
844 |
theNrm.Volume(volInfo, gTestDrive);
|
|
845 |
test(volInfo.iFree == freeSpace);
|
|
846 |
|
|
847 |
err = theRes.ReserveDriveSpace(gTestDrive, resSpace);
|
|
848 |
test(KErrNone == err);
|
|
849 |
err = theRes.GetReserveAccess(gTestDrive);
|
|
850 |
test(KErrNone == err);
|
|
851 |
|
|
852 |
theRes.Volume(volInfo, gTestDrive);
|
|
853 |
test(volInfo.iFree == freeSpace);
|
|
854 |
|
|
855 |
theNrm.Volume(volInfo, gTestDrive);
|
|
856 |
test(volInfo.iFree == freeSpace - resSpace);
|
|
857 |
|
|
858 |
|
|
859 |
//
|
|
860 |
// Register the notifiers and verify that the only the "Normal"
|
|
861 |
// and not the "Reserved" session is triggered.
|
|
862 |
//
|
|
863 |
TRequestStatus statNrm;
|
|
864 |
TRequestStatus statRes;
|
|
865 |
|
|
866 |
TInt64 threshold(freeSpace - resSpace*2);
|
|
867 |
theNrm.NotifyDiskSpace(threshold, gTestDrive, statNrm);
|
|
868 |
theRes.NotifyDiskSpace(threshold, gTestDrive, statRes);
|
|
869 |
test((statNrm == KRequestPending) && (statRes == KRequestPending));
|
|
870 |
|
|
871 |
|
|
872 |
//
|
|
873 |
// Main part of the test starts here.
|
|
874 |
// First we create a new file, then we increase its size to cause the
|
|
875 |
// "Normal" notifier to trigger but not the "Reserved" notifier
|
|
876 |
//
|
|
877 |
err=theFile.Replace(theTestSession, fileName, EFileShareAny | EFileWrite);
|
|
878 |
test(err==KErrNone);
|
|
879 |
test((statNrm == KRequestPending) && (statRes == KRequestPending));
|
|
880 |
|
|
881 |
// Neither notifier should be triggered here
|
|
882 |
err = theFile.SetSize(resSpace);
|
|
883 |
test(KErrNone == err);
|
|
884 |
test((statNrm == KRequestPending) && (statRes == KRequestPending));
|
|
885 |
|
|
886 |
// This should trigger the "Normal" notifier, but not the "Reserved" one
|
|
887 |
err = theFile.SetSize(2*resSpace);
|
|
888 |
test(KErrNone == err);
|
|
889 |
test((statNrm == KErrNone) && (statRes == KRequestPending));
|
|
890 |
|
|
891 |
|
|
892 |
//
|
|
893 |
// Reset the "Normal" notifier then increase the amount of reserved space
|
|
894 |
// on the drive. This should re-trigger the "Normal" notifier but leave
|
|
895 |
// the "Reserved" notifier untouched.
|
|
896 |
//
|
|
897 |
theNrm.NotifyDiskSpace(threshold - resSpace, gTestDrive, statNrm);
|
|
898 |
test((statNrm == KRequestPending) && (statRes == KRequestPending));
|
|
899 |
|
|
900 |
err = theTestSession.ReserveDriveSpace(gTestDrive, resSpace * 3);
|
|
901 |
if (err != KErrArgument) // will have exceeded limit if resSpace = 32K
|
|
902 |
{
|
|
903 |
test(err == KErrNone);
|
|
904 |
test((statNrm == KErrNone) && (statRes == KRequestPending));
|
|
905 |
}
|
|
906 |
|
|
907 |
//
|
|
908 |
// All done - tidy up.
|
|
909 |
//
|
|
910 |
theFile.Close();
|
|
911 |
theTestSession.Delete(fileName);
|
|
912 |
theTestSession.Close();
|
|
913 |
theNrm.Close();
|
|
914 |
theRes.Close();
|
|
915 |
}
|
|
916 |
|
|
917 |
|
|
918 |
//-----------------------------------------------------------------------------
|
|
919 |
|
|
920 |
/**
|
|
921 |
test creation of the the file that crosses 4G boundary on the FAT media
|
|
922 |
|
|
923 |
*/
|
|
924 |
static void TestFAT4G_Boundary()
|
|
925 |
{
|
|
926 |
const TInt64 K4Gig = 4*(TInt64)K1GigaByte;
|
|
927 |
|
|
928 |
test.Next(_L("Test files crossing 4G boundary on FAT"));
|
|
929 |
|
|
930 |
if(!Is_Fat32(TheFs, gTestDrive))
|
|
931 |
{
|
|
932 |
test.Printf(_L("This test requires FAT32. Skipping.\n"));
|
|
933 |
return;
|
|
934 |
}
|
|
935 |
|
|
936 |
TVolumeInfo volInfo;
|
|
937 |
|
|
938 |
TInt nRes = TheFs.Volume(volInfo,gTestDrive);
|
|
939 |
test(nRes == KErrNone);
|
|
940 |
|
|
941 |
if(volInfo.iSize < K4Gig+K1MegaByte)
|
|
942 |
{
|
|
943 |
test.Printf(_L("This test requires volume > 4G. Skipping.\n"));
|
|
944 |
return;
|
|
945 |
}
|
|
946 |
|
|
947 |
//-- 1. format the volume
|
|
948 |
FormatDrive();
|
|
949 |
|
|
950 |
//-- find out media position of the data region start
|
|
951 |
TFatBootSector bootSector;
|
|
952 |
nRes = ReadBootSector(TheFs, gTestDrive, 0, bootSector);
|
|
953 |
test(nRes == KErrNone);
|
|
954 |
test(bootSector.IsValid());
|
|
955 |
|
|
956 |
const TInt64 dataStartPos = bootSector.FirstDataSector() << KDefaultSectorLog2;
|
|
957 |
const TInt64 lowRegion = K4Gig - dataStartPos - K1MegaByte;
|
|
958 |
|
|
959 |
|
|
960 |
//-- 2. create several empty files that take a bit less that 4gig
|
|
961 |
//-- the drive is freshly formatted and the files will expand linearry
|
|
962 |
_LIT(KBaseFN, "\\LargeFile");
|
|
963 |
|
|
964 |
const TInt MaxDummyFiles = 5;
|
|
965 |
const TUint32 DummyFileLen = (TUint32)(lowRegion / MaxDummyFiles);
|
|
966 |
TInt i;
|
|
967 |
for(i=0; i<MaxDummyFiles; ++i)
|
|
968 |
{
|
|
969 |
nRes = CreateFileX(KBaseFN, i, DummyFileLen);
|
|
970 |
test(nRes == KErrNone);
|
|
971 |
}
|
|
972 |
|
|
973 |
//-- 3. create a real file that crosses 4G boundary
|
|
974 |
nRes = CreateCheckableStuffedFile(TheFs, KBaseFN, 5*K1MegaByte);
|
|
975 |
test(nRes == KErrNone);
|
|
976 |
|
|
977 |
test.Printf(_L("Verifying the file that crosses 4G boundary.\n"));
|
|
978 |
|
|
979 |
nRes = VerifyCheckableFile(TheFs, KBaseFN);
|
|
980 |
test(nRes == KErrNone);
|
|
981 |
|
|
982 |
|
|
983 |
nRes = TheFs.Delete(KBaseFN);
|
|
984 |
test(nRes == KErrNone);
|
|
985 |
for(i=0; i<MaxDummyFiles; ++i)
|
|
986 |
{
|
|
987 |
nRes = DeleteFileX(KBaseFN, i);
|
|
988 |
test(nRes == KErrNone);
|
|
989 |
}
|
|
990 |
}
|
|
991 |
|
|
992 |
//-----------------------------------------------------------------------------
|
|
993 |
|
|
994 |
GLDEF_C void CallTestsL()
|
|
995 |
//
|
|
996 |
// Do tests relative to session path
|
|
997 |
//
|
|
998 |
{
|
|
999 |
//-- set up console output
|
|
1000 |
Fat_Test_Utils::SetConsole(test.Console());
|
|
1001 |
|
|
1002 |
|
|
1003 |
if (gSessionPath[0]=='C') //only test on non C drives
|
|
1004 |
{
|
|
1005 |
test.Printf(_L("TEST NOT RUN FOR THIS DRIVE"));
|
|
1006 |
return;
|
|
1007 |
}
|
|
1008 |
|
|
1009 |
if (UserSvr::DebugMask(2)&0x00000002) // TESTFAST mode set? (for automated test builds)
|
|
1010 |
if(IsTestingLFFS())
|
|
1011 |
{
|
|
1012 |
// Don't run on LFFS (to increase speed of automated testing)
|
|
1013 |
test.Printf(_L("TEST NOT RUN FOR THIS DRIVE"));
|
|
1014 |
return;
|
|
1015 |
}
|
|
1016 |
|
|
1017 |
//get the number of the drive we are currently testing
|
|
1018 |
TInt r=0;
|
|
1019 |
r=RFs::CharToDrive(gSessionPath[0],gTestDrive);
|
|
1020 |
test(r==KErrNone);
|
|
1021 |
|
|
1022 |
r=RFs::DriveToChar(gTestDrive,gCh);
|
|
1023 |
test(r==KErrNone);
|
|
1024 |
|
|
1025 |
//-- print drive information
|
|
1026 |
PrintDrvInfo(TheFs, gTestDrive);
|
|
1027 |
|
|
1028 |
Test1(); //General test for new APIs
|
|
1029 |
Test2(); //Test to ensure drive and session reserve limits are not exceeded
|
|
1030 |
Test3();
|
|
1031 |
Test4(); //test filling the drive and that each checked API fails
|
|
1032 |
Test5();
|
|
1033 |
Test6();
|
|
1034 |
Test7();
|
|
1035 |
Test2(); //run this test to check reserves are being cleared correctly
|
|
1036 |
|
|
1037 |
TestFAT4G_Boundary();
|
|
1038 |
|
|
1039 |
TurnAllocFailureOff();
|
|
1040 |
}
|
|
1041 |
|
|
1042 |
|
|
1043 |
|
|
1044 |
|