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// Copyright (c) 1995-2009 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_dircache.cpp
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//
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//
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#define __E32TEST_EXTENSION__
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#include <f32file.h>
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#include <f32fsys.h>
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#include <e32test.h>
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#include <f32dbg.h>
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#include "t_server.h"
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#include "t_chlffs.h"
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#include "f32_test_utils.h"
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#include "fat_utils.h"
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#include "d_pagestress.h"
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RTest test(_L("T_DIRCACHE"));
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/*
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* This whole test execute on UDEB mode only.
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*/
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#if defined(_DEBUG) || defined(_DEBUG_RELEASE)
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TInt gDrive=-1;
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const TInt32 KDef_KLeafDirCacheSize = 32; // default leaf dir cache number
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const TInt32 KDef_DynamicDirCacheMinInBytes = 128 << 10; // default minimum fat dir cache size in bytes
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const TInt32 KDef_DynamicDirCacheMaxInBytes = 256 << 10; // default maximum fat dir cache size in bytes
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const TInt32 KDef_MaxDynamicDirCachePageSzLog2 = 14; // default value for directory cache single page
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// maximal size Log2, 2^14 (16K) by default
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const TInt32 KMaxThreadCount = 1; // the maximum number of multiple threads that can
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// access dir cache concurrently.
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const TInt32 KSegmentSize = 1 << 12; // the smallest memory unit that Kernel manages
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template <class C>
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TInt controlIo(RFs &fs, TInt drv, TInt fkn, C &c)
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{
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TPtr8 ptrC((TUint8 *)&c, sizeof(C), sizeof(C));
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TInt r = fs.ControlIo(drv, fkn, ptrC);
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return r;
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}
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// See f32\sfile\sf_memory_man.cpp for the default value settings
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const TInt KDefaultGlobalCacheMemorySize = (8 << 10) << 10;
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const TInt KDefaultLowMemoryThreshold = 10;
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//----------------------------------------------------------------------------------------------
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//@SYMTestCaseID PBASE-XXXX
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//@SYMTestType FT
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//@SYMPREQ PREQ1885
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//@SYMTestCaseDesc Check global cache settings. The global cache should be either:
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// 1. 0 (disabled)
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// 2. no less than the sum of all per-drive settings
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//----------------------------------------------------------------------------------------------
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void TestGlobalSettings()
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{
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test.Next(_L("Test global cache settings"));
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// read global cache settings from estart.txt
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TGlobalCacheConfig globalCacheConfig;
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TInt r = controlIo(TheFs,gDrive, KControlIoGlobalCacheConfig, globalCacheConfig);
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test_KErrNone(r);
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test_Value (globalCacheConfig.iGlobalCacheSizeInBytes,
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globalCacheConfig.iGlobalCacheSizeInBytes > 0 || globalCacheConfig.iGlobalCacheSizeInBytes == KErrNotFound);
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test_Value (globalCacheConfig.iGlobalLowMemoryThreshold,
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globalCacheConfig.iGlobalLowMemoryThreshold >= 0 || globalCacheConfig.iGlobalLowMemoryThreshold == KErrNotFound);
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const TInt32 globalCacheSize = globalCacheConfig.iGlobalCacheSizeInBytes > 0 ?
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globalCacheConfig.iGlobalCacheSizeInBytes : KDefaultGlobalCacheMemorySize;
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// test if global cache is enabled, it is configured in the way that its figure is no less
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// than the sum of per-drive max size settings (taking default values into account).
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TInt32 sumDirCacheMaxSize = 0;
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for (TInt i = 0; i < KMaxDrives; i++)
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{
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TBuf<0x20> fsName;
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r = TheFs.FileSystemName(fsName, i);
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if (r == KErrNone && (F32_Test_Utils::Is_Fat(TheFs, i) || F32_Test_Utils::Is_ExFat(TheFs, i)))
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{
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test.Printf(_L("drive[%C:] file system: (\"%S\")\n"), 'A' + i, &fsName);
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TDirCacheConfig dirCacheConfig;
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r = controlIo(TheFs,gDrive, KControlIoDirCacheConfig, dirCacheConfig);
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test_KErrNone(r);
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if(dirCacheConfig.iDirCacheSizeMax > 0)
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{
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sumDirCacheMaxSize += (dirCacheConfig.iDirCacheSizeMax > KDef_DynamicDirCacheMaxInBytes ? dirCacheConfig.iDirCacheSizeMax : KDef_DynamicDirCacheMaxInBytes);
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}
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else
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{
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sumDirCacheMaxSize += KDef_DynamicDirCacheMaxInBytes;
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}
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test.Printf(_L("++sumDirCacheMaxSize = %d\n"), sumDirCacheMaxSize);
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}
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}
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test_Compare(globalCacheSize, >=, sumDirCacheMaxSize);
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}
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//----------------------------------------------------------------------------------------------
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//@SYMTestCaseID PBASE-XXXX
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//@SYMTestType FT
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//@SYMPREQ PREQ1885
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//@SYMTestCaseDesc Test current drive's dir cache configurations, the current dir cache info should
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// match the configurations read from estart.txt file.
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//----------------------------------------------------------------------------------------------
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void TestDirCacheSettings()
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{
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test.Next(_L("Test current drive's dir cache settings"));
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// test global cache config is ON
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TGlobalCacheConfig globalCacheConfig;
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TInt r = controlIo(TheFs,gDrive, KControlIoGlobalCacheConfig, globalCacheConfig);
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test_KErrNone(r);
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test_Value (globalCacheConfig.iGlobalCacheSizeInBytes,
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globalCacheConfig.iGlobalCacheSizeInBytes > 0 || globalCacheConfig.iGlobalCacheSizeInBytes == KErrNotFound);
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test_Value (globalCacheConfig.iGlobalLowMemoryThreshold,
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globalCacheConfig.iGlobalLowMemoryThreshold >= 0 || globalCacheConfig.iGlobalLowMemoryThreshold == KErrNotFound);
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// test global cache info is corresponding to the configurations
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TGlobalCacheInfo globalCacheInfo;
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r = controlIo(TheFs,gDrive, KControlIoGlobalCacheInfo, globalCacheInfo);
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test_KErrNone(r);
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if (globalCacheConfig.iGlobalCacheSizeInBytes == KErrNotFound)
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{
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test_Equal(KDefaultGlobalCacheMemorySize, globalCacheInfo.iGlobalCacheSizeInBytes);
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}
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else
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{
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test_Equal(globalCacheConfig.iGlobalCacheSizeInBytes, globalCacheInfo.iGlobalCacheSizeInBytes);
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}
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if (globalCacheConfig.iGlobalLowMemoryThreshold == KErrNotFound)
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{
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test_Equal(KDefaultLowMemoryThreshold, globalCacheInfo.iGlobalLowMemoryThreshold);
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}
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else
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{
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test_Equal(globalCacheConfig.iGlobalLowMemoryThreshold, globalCacheInfo.iGlobalLowMemoryThreshold);
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}
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// read per-drive settings from estart.txt
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TDirCacheConfig dirCacheConfig;
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r = controlIo(TheFs,gDrive, KControlIoDirCacheConfig, dirCacheConfig);
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test_KErrNone(r);
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test_Value (dirCacheConfig.iLeafDirCacheSize,
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dirCacheConfig.iLeafDirCacheSize >= 0 || dirCacheConfig.iLeafDirCacheSize == KErrNotFound);
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test_Value (dirCacheConfig.iDirCacheSizeMin,
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dirCacheConfig.iDirCacheSizeMin >= 0 || dirCacheConfig.iDirCacheSizeMin == KErrNotFound);
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test_Value (dirCacheConfig.iDirCacheSizeMax,
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dirCacheConfig.iDirCacheSizeMax >= 0 || dirCacheConfig.iDirCacheSizeMax == KErrNotFound);
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// caculate expected settings according to the readings from estart.txt
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if (dirCacheConfig.iLeafDirCacheSize == 0)
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dirCacheConfig.iLeafDirCacheSize = 1;
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if (dirCacheConfig.iLeafDirCacheSize == KErrNotFound)
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dirCacheConfig.iLeafDirCacheSize = KDef_KLeafDirCacheSize;
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if (dirCacheConfig.iDirCacheSizeMin < KDef_DynamicDirCacheMinInBytes)
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dirCacheConfig.iDirCacheSizeMin = KDef_DynamicDirCacheMinInBytes;
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if (dirCacheConfig.iDirCacheSizeMax < KDef_DynamicDirCacheMaxInBytes)
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dirCacheConfig.iDirCacheSizeMax = KDef_DynamicDirCacheMaxInBytes;
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TVolumeIOParamInfo ioParam;
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r = TheFs.VolumeIOParam(gDrive, ioParam);
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test_KErrNone(r);
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const TInt32 KClusterSize = ioParam.iClusterSize;
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test.Printf(_L("DRV[%C:] cluster = %d\n"), gDrive + 'A', ioParam.iClusterSize);
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const TInt32 KDefMaxCachePageSize = 1 << KDef_MaxDynamicDirCachePageSzLog2;
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const TInt32 KPageSizeInData = KClusterSize < KDefMaxCachePageSize ? KClusterSize : KDefMaxCachePageSize;
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const TInt32 KPageSizeInMem = KPageSizeInData < KSegmentSize ? KSegmentSize : KPageSizeInData;
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const TInt32 KCacheSizeMinInPages = dirCacheConfig.iDirCacheSizeMin / KPageSizeInMem;
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const TInt32 KCacheSizeMaxInPages = dirCacheConfig.iDirCacheSizeMax / KPageSizeInMem;
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const TInt32 KUnlockedPageNum = 0;
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// remount drive, get current dir cache info and test
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r = F32_Test_Utils::RemountFS (TheFs, CurrentDrive(), NULL);
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test_KErrNone(r);
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TDirCacheInfo dirCacheInfo;
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r = controlIo(TheFs,gDrive, KControlIoDirCacheInfo, dirCacheInfo);
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test_KErrNone(r);
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test_Equal(KSegmentSize, dirCacheInfo.iMemorySegmentSize);
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test_Equal(KPageSizeInMem, dirCacheInfo.iPageSizeInMemory);
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test_Equal(KPageSizeInData, dirCacheInfo.iPageSizeInData);
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test_Equal(KCacheSizeMinInPages, dirCacheInfo.iMinCacheSizeInPages);
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test_Equal(KCacheSizeMaxInPages, dirCacheInfo.iMaxCacheSizeInPages);
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test_Equal(KMaxThreadCount, dirCacheInfo.iLockedPageNumber);
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test_Equal(KUnlockedPageNum, dirCacheInfo.iUnlockedPageNumber);
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}
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//----------------------------------------------------------------------------------------------
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//@SYMTestCaseID PBASE-XXXX
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//@SYMTestType FT
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//@SYMPREQ PREQ1885
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//@SYMTestCaseDesc Test populating dir cache under normal memory conditions.
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//----------------------------------------------------------------------------------------------
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void TestPopulateCache()
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{
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test.Next(_L("Test populating dir cache under normal memory conditions"));
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CFileMan* fileMan = CFileMan::NewL(TheFs);
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test_NotNull(fileMan);
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TInt r = fileMan->RmDir(_L("\\TEST_DIRCACHE\\"));
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test_Value(r, r==KErrNone || r==KErrPathNotFound);
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// remount drive, get current dir cache info
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r = F32_Test_Utils::RemountFS (TheFs, CurrentDrive(), NULL);
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test_KErrNone(r);
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/*
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* Test populating dir cache
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*/
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TVolumeIOParamInfo ioParam;
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r = TheFs.VolumeIOParam(gDrive, ioParam);
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test_KErrNone(r);
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const TInt32 KClusterSize = ioParam.iClusterSize;
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TFileName dirPath = _L("\\TEST_DIRCACHE\\");
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r = TheFs.MkDirAll(dirPath);
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test_KErrNone(r);
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TDirCacheInfo dirCacheInfo;
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r = controlIo(TheFs,gDrive, KControlIoDirCacheInfo, dirCacheInfo);
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test_KErrNone(r);
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// this calculation is for volumes that have a large cluster size, larger than the allowed maximum
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// page size. on this case, creating a new directory will generate two or more new pages in the
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// dir cache
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const TUint pagesPerDir = KClusterSize > dirCacheInfo.iPageSizeInMemory ?
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KClusterSize / dirCacheInfo.iPageSizeInMemory : 1;
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// should be KMaxThreadCount + root dir (1 page) + "\\TEST_DIRCACHE\\" (number of pages that are
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// needed for new directories, i.e. pagesPerDir)
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test_Equal(KMaxThreadCount + 1 + pagesPerDir, dirCacheInfo.iLockedPageNumber);
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const TInt initialUnlockedPage = dirCacheInfo.iUnlockedPageNumber;
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const TInt createdNewDirs = dirCacheInfo.iMinCacheSizeInPages - dirCacheInfo.iLockedPageNumber;
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// create directories so that it grows to KCacheSizeMinInPages
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for (TInt i = 1; i <= createdNewDirs; i++)
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{
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dirPath = _L("\\TEST_DIRCACHE\\");
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TFileName dirName;
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dirName.Format(_L("DIR%d\\"), i);
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dirPath += dirName;
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r = TheFs.MkDirAll(dirPath);
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test_KErrNone(r);
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}
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const TInt KFatDirEntrySize = 32;
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const TInt subDirNum = dirCacheInfo.iMinCacheSizeInPages - dirCacheInfo.iLockedPageNumber;
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// calculate the extra pages needed for the newly created sub dir entries (plus the original
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// "." and ".." entries)
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TInt extraPagesForLeafdir = ((subDirNum + 2) * KFatDirEntrySize / dirCacheInfo.iPageSizeInData) - 1;
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if (((subDirNum + 2) * KFatDirEntrySize) % dirCacheInfo.iPageSizeInData > 0)
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extraPagesForLeafdir++;
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test.Printf(_L("!!Extra pages needed for leafdir = %d\n"), extraPagesForLeafdir); //kk
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r = controlIo(TheFs,gDrive, KControlIoDirCacheInfo, dirCacheInfo);
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test_KErrNone(r);
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r = controlIo(TheFs,gDrive, 15, dirCacheInfo);
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test_KErrNone(r);
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test_Equal(dirCacheInfo.iMinCacheSizeInPages, dirCacheInfo.iLockedPageNumber);
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const TInt maxUnlockedPage = dirCacheInfo.iMaxCacheSizeInPages - dirCacheInfo.iMinCacheSizeInPages;
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// calculating the expected unlocked page number here.
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TInt newUnlockedPage = initialUnlockedPage;
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newUnlockedPage += extraPagesForLeafdir; // if any extra pages are created for the leafdir
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newUnlockedPage += createdNewDirs * (pagesPerDir - 1); // if more than one page is needed for each dir creation
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test_Equal((newUnlockedPage > maxUnlockedPage ? maxUnlockedPage : newUnlockedPage), dirCacheInfo.iUnlockedPageNumber);
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// create directories so that it grows to KCacheSizeMinInPages + KCacheSizeMaxInPages
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if (dirCacheInfo.iMaxCacheSizeInPages > dirCacheInfo.iMinCacheSizeInPages)
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{
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for (TInt i = 1; i <= dirCacheInfo.iMaxCacheSizeInPages - dirCacheInfo.iMinCacheSizeInPages; i++)
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{
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dirPath = _L("\\TEST_DIRCACHE\\");
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TFileName dirName;
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dirName.Format(_L("DIR_UNLOCKED%d\\"), i);
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dirPath += dirName;
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r = TheFs.MkDirAll(dirPath);
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test_KErrNone(r);
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}
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r = controlIo(TheFs,gDrive, KControlIoDirCacheInfo, dirCacheInfo);
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test_KErrNone(r);
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r = controlIo(TheFs,gDrive, 15, dirCacheInfo);
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test_KErrNone(r);
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test_Equal(dirCacheInfo.iMinCacheSizeInPages, dirCacheInfo.iLockedPageNumber);
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test_Equal(dirCacheInfo.iMaxCacheSizeInPages - dirCacheInfo.iMinCacheSizeInPages, dirCacheInfo.iUnlockedPageNumber);
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}
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// create more directories and check that dir cache doesn't grow beyond KCacheSizeMaxInPages
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for (TInt j = 1; j <= dirCacheInfo.iMinCacheSizeInPages; j++)
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{
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dirPath = _L("\\TEST_DIRCACHE\\");
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TFileName dirName;
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dirName.Format(_L("DIR_MORE%d\\"), j);
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dirPath += dirName;
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r = TheFs.MkDirAll(dirPath);
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test_KErrNone(r);
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}
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r = controlIo(TheFs,gDrive, KControlIoDirCacheInfo, dirCacheInfo);
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test_KErrNone(r);
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r = controlIo(TheFs,gDrive, 15, dirCacheInfo);
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test_KErrNone(r);
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test_Equal(dirCacheInfo.iMinCacheSizeInPages, dirCacheInfo.iLockedPageNumber);
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test_Equal(dirCacheInfo.iMaxCacheSizeInPages - dirCacheInfo.iMinCacheSizeInPages, dirCacheInfo.iUnlockedPageNumber);
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r = controlIo(TheFs,gDrive, KControlIoDirCacheInfo, dirCacheInfo);
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test_KErrNone(r);
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r = fileMan->RmDir(_L("\\TEST_DIRCACHE\\"));
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test_KErrNone(r);
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delete fileMan;
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}
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//----------------------------------------------------------------------------------------------
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//@SYMTestCaseID PBASE-XXXX
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//@SYMTestType FT
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//@SYMPREQ PREQ1885
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//@SYMTestCaseDesc Test simulating low memory condition.
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// 1. The cache should stop growing when it is at its minimum cache size in pages
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// 2. The cache should function properly when it stops simulating low memory condition
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//----------------------------------------------------------------------------------------------
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void TestSimulatingLowMemory()
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{
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// remount drive, get current dir cache info and test
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test.Next(_L("Test dir cache growth when simulating low memory condition"));
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CFileMan* fileMan = CFileMan::NewL(TheFs);
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test(fileMan != NULL);
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TInt r = fileMan->RmDir(_L("\\TEST_DIRCACHE\\"));
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test_Value(r, r==KErrNone || r==KErrPathNotFound);
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r = F32_Test_Utils::RemountFS (TheFs, CurrentDrive(), NULL);
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353 |
test_KErrNone(r);
|
|
354 |
|
|
355 |
r = TheFs.ControlIo(gDrive, KControlIoSimulateMemoryLow);
|
|
356 |
test_KErrNone(r);
|
|
357 |
|
|
358 |
/*
|
|
359 |
* Test populating dir cache
|
|
360 |
*/
|
|
361 |
TFileName dirPath = _L("\\TEST_DIRCACHE\\");
|
|
362 |
r = TheFs.MkDirAll(dirPath);
|
|
363 |
test_KErrNone(r);
|
|
364 |
|
|
365 |
TDirCacheInfo dirCacheInfo;
|
|
366 |
r = controlIo(TheFs,gDrive, KControlIoDirCacheInfo, dirCacheInfo);
|
|
367 |
test_KErrNone(r);
|
|
368 |
|
|
369 |
// create directories so that it grows to KCacheSizeMaxInPages
|
|
370 |
for (TInt i = 1; i <= dirCacheInfo.iMaxCacheSizeInPages; i++)
|
|
371 |
{
|
|
372 |
dirPath = _L("\\TEST_DIRCACHE\\");
|
|
373 |
TFileName dirName;
|
|
374 |
dirName.Format(_L("DIR%d\\"), i);
|
|
375 |
dirPath += dirName;
|
|
376 |
r = TheFs.MkDirAll(dirPath);
|
|
377 |
test_KErrNone(r);
|
|
378 |
}
|
|
379 |
|
|
380 |
r = controlIo(TheFs,gDrive, KControlIoDirCacheInfo, dirCacheInfo);
|
|
381 |
test_KErrNone(r);
|
|
382 |
|
|
383 |
test_Equal(dirCacheInfo.iMinCacheSizeInPages, dirCacheInfo.iLockedPageNumber);
|
|
384 |
test_Equal(0, dirCacheInfo.iUnlockedPageNumber);
|
|
385 |
|
|
386 |
r = fileMan->RmDir(_L("\\TEST_DIRCACHE\\"));
|
|
387 |
test_KErrNone(r);
|
|
388 |
|
|
389 |
// test when stop simulating the low memory condition, cache grows normally
|
|
390 |
test.Next(_L("Test dir cache growth when stop simulating low memory condition"));
|
|
391 |
r = TheFs.ControlIo(gDrive, KControlIoStopSimulateMemoryLow);
|
|
392 |
test_KErrNone(r);
|
|
393 |
|
|
394 |
r = F32_Test_Utils::RemountFS (TheFs, CurrentDrive(), NULL);
|
|
395 |
test_KErrNone(r);
|
|
396 |
|
|
397 |
/*
|
|
398 |
* Test populating dir cache
|
|
399 |
*/
|
|
400 |
dirPath = _L("\\TEST_DIRCACHE\\");
|
|
401 |
r = TheFs.MkDirAll(dirPath);
|
|
402 |
test_KErrNone(r);
|
|
403 |
|
|
404 |
// create directories so that it grows to KCacheSizeMaxInPages
|
|
405 |
for (TInt j = 1; j <= dirCacheInfo.iMaxCacheSizeInPages; j++)
|
|
406 |
{
|
|
407 |
dirPath = _L("\\TEST_DIRCACHE\\");
|
|
408 |
TFileName dirName;
|
|
409 |
dirName.Format(_L("DIR%d\\"), j);
|
|
410 |
dirPath += dirName;
|
|
411 |
r = TheFs.MkDirAll(dirPath);
|
|
412 |
test_KErrNone(r);
|
|
413 |
}
|
|
414 |
|
|
415 |
r = controlIo(TheFs,gDrive, KControlIoDirCacheInfo, dirCacheInfo);
|
|
416 |
test_KErrNone(r);
|
|
417 |
|
|
418 |
test_Equal(dirCacheInfo.iMinCacheSizeInPages, dirCacheInfo.iLockedPageNumber);
|
|
419 |
test_Equal(dirCacheInfo.iMaxCacheSizeInPages - dirCacheInfo.iMinCacheSizeInPages, dirCacheInfo.iUnlockedPageNumber);
|
|
420 |
|
|
421 |
r = fileMan->RmDir(_L("\\TEST_DIRCACHE\\"));
|
|
422 |
test_KErrNone(r);
|
|
423 |
|
|
424 |
delete fileMan;
|
|
425 |
}
|
|
426 |
|
|
427 |
//----------------------------------------------------------------------------------------------
|
|
428 |
//@SYMTestCaseID PBASE-XXXX
|
|
429 |
//@SYMTestType FT
|
|
430 |
//@SYMPREQ PREQ1885
|
|
431 |
//@SYMTestCaseDesc Test low memory threshold on hardware platforms
|
|
432 |
// 1. Stress the system memory to below the low memory threshold configured
|
|
433 |
// 2. The cache should stop growing when it is at its minimum cache size in pages
|
|
434 |
// 3. Resume the system memory before step 1.
|
|
435 |
// 2. The cache should function properly when it stops simulating low memory condition
|
|
436 |
//----------------------------------------------------------------------------------------------
|
|
437 |
void TestLowMemoryHW()
|
|
438 |
{
|
|
439 |
test.Next(_L("Test low memory threshold on hardware"));
|
|
440 |
#if !defined(__WINS__)
|
|
441 |
|
|
442 |
CFileMan* fileMan = CFileMan::NewL(TheFs);
|
|
443 |
test_NotNull(fileMan);
|
|
444 |
TInt r = fileMan->RmDir(_L("\\TEST_DIRCACHE\\"));
|
|
445 |
test_Value(r, r==KErrNone || r==KErrPathNotFound);
|
|
446 |
|
|
447 |
r = F32_Test_Utils::RemountFS (TheFs, CurrentDrive(), NULL);
|
|
448 |
test_KErrNone(r);
|
|
449 |
|
|
450 |
RPageStressTestLdd PagestressLdd;
|
|
451 |
TMemoryInfoV1Buf memInfo;
|
|
452 |
r = UserHal::MemoryInfo(memInfo);
|
|
453 |
test_KErrNone(r);
|
|
454 |
|
|
455 |
TGlobalCacheInfo globalCacheInfo;
|
|
456 |
r = controlIo(TheFs,gDrive, KControlIoGlobalCacheInfo, globalCacheInfo);
|
|
457 |
test_KErrNone(r);
|
|
458 |
|
|
459 |
test.Printf(_L("Free RAM before setup %d\n"), memInfo().iFreeRamInBytes);
|
|
460 |
const TReal lowMemThreshold = globalCacheInfo.iGlobalLowMemoryThreshold / 200.00;
|
|
461 |
test.Printf(_L("Low memory threshold = %d%%\n"), globalCacheInfo.iGlobalLowMemoryThreshold);
|
|
462 |
test.Printf(_L("Current memory available = %d%%\n"), lowMemThreshold * 100);
|
|
463 |
|
|
464 |
const TInt totalRamInBytes = memInfo().iTotalRamInBytes;
|
|
465 |
const TInt setupFreeRamInBytes = (TInt) (lowMemThreshold * totalRamInBytes);
|
|
466 |
const TInt setupFreeRamInPages = setupFreeRamInBytes / KSegmentSize;
|
|
467 |
|
|
468 |
r = User::LoadLogicalDevice(KPageStressTestLddName);
|
|
469 |
test_Value(r, r==KErrNone || r==KErrAlreadyExists);
|
|
470 |
r = PagestressLdd.Open();
|
|
471 |
test_KErrNone(r);
|
|
472 |
r = PagestressLdd.DoSetDebugFlag((TInt)ETrue);
|
|
473 |
test_KErrNone(r);
|
|
474 |
if (setupFreeRamInPages > 0 && setupFreeRamInBytes < totalRamInBytes)
|
|
475 |
{
|
|
476 |
r = PagestressLdd.DoConsumeRamSetup(setupFreeRamInPages, 1);
|
|
477 |
test_KErrNone(r);
|
|
478 |
r = UserHal::MemoryInfo(memInfo);
|
|
479 |
test_KErrNone(r);
|
|
480 |
test.Printf(_L("Free RAM after setup %d\n"), memInfo().iFreeRamInBytes);
|
|
481 |
}
|
|
482 |
else
|
|
483 |
{
|
|
484 |
test.Printf(_L("Current memory is already low: %d\n"), memInfo().iFreeRamInBytes);
|
|
485 |
}
|
|
486 |
|
|
487 |
/*
|
|
488 |
* Test populating dir cache
|
|
489 |
*/
|
|
490 |
TFileName dirPath = _L("\\TEST_DIRCACHE\\");
|
|
491 |
r = TheFs.MkDirAll(dirPath);
|
|
492 |
test_KErrNone(r);
|
|
493 |
|
|
494 |
TDirCacheInfo dirCacheInfo;
|
|
495 |
r = controlIo(TheFs,gDrive, KControlIoDirCacheInfo, dirCacheInfo);
|
|
496 |
test_KErrNone(r);
|
|
497 |
|
|
498 |
// create directories so that it grows to KCacheSizeMaxInPages
|
|
499 |
for (TInt i = 1; i <= dirCacheInfo.iMaxCacheSizeInPages; i++)
|
|
500 |
{
|
|
501 |
dirPath = _L("\\TEST_DIRCACHE\\");
|
|
502 |
TFileName dirName;
|
|
503 |
dirName.Format(_L("DIR%d\\"), i);
|
|
504 |
dirPath += dirName;
|
|
505 |
r = TheFs.MkDirAll(dirPath);
|
|
506 |
test_KErrNone(r);
|
|
507 |
}
|
|
508 |
|
|
509 |
r = controlIo(TheFs,gDrive, KControlIoDirCacheInfo, dirCacheInfo);
|
|
510 |
test_KErrNone(r);
|
|
511 |
|
|
512 |
test_Equal(dirCacheInfo.iMinCacheSizeInPages, dirCacheInfo.iLockedPageNumber);
|
|
513 |
test_Equal(0, dirCacheInfo.iUnlockedPageNumber);
|
|
514 |
|
|
515 |
// release memory
|
|
516 |
PagestressLdd.DoConsumeRamFinish();
|
|
517 |
PagestressLdd.Close();
|
|
518 |
r = User::FreeLogicalDevice(KPageStressTestLddName);
|
|
519 |
test_KErrNone(r);
|
|
520 |
|
|
521 |
r = UserHal::MemoryInfo(memInfo);
|
|
522 |
test_KErrNone(r);
|
|
523 |
test.Printf(_L("Free RAM after test %d\n"), memInfo().iFreeRamInBytes);
|
|
524 |
|
|
525 |
r = fileMan->RmDir(_L("\\TEST_DIRCACHE\\"));
|
|
526 |
test_KErrNone(r);
|
|
527 |
delete fileMan;
|
|
528 |
#else
|
|
529 |
test.Printf(_L("This test step only runs on hardware!!\n"));
|
|
530 |
#endif //#if !defined(__WINS__)
|
|
531 |
}
|
|
532 |
|
|
533 |
#endif // #if defined(_DEBUG) || defined(_DEBUG_RELEASE)
|
|
534 |
|
|
535 |
GLDEF_C void CallTestsL()
|
|
536 |
//
|
|
537 |
// Test the file server.
|
|
538 |
//
|
|
539 |
{
|
|
540 |
#if defined(_DEBUG) || defined(_DEBUG_RELEASE)
|
|
541 |
TInt nRes=TheFs.CharToDrive(gDriveToTest, gDrive);
|
|
542 |
test_KErrNone(nRes);
|
|
543 |
|
|
544 |
TDriveInfo driveInfo;
|
|
545 |
nRes = TheFs.Drive(driveInfo, gDrive);
|
|
546 |
test.Printf(_L("MediaType: 0x%x\n"), driveInfo.iType);
|
|
547 |
test_KErrNone(nRes);
|
|
548 |
|
|
549 |
if (F32_Test_Utils::Is_Fat(TheFs, gDrive) && driveInfo.iType != EMediaRam)
|
|
550 |
{
|
|
551 |
nRes = F32_Test_Utils::FormatDrive(TheFs, gDrive, ETrue);
|
|
552 |
test_KErrNone(nRes);
|
|
553 |
|
|
554 |
F32_Test_Utils::PrintDrvInfo(TheFs, gDrive);
|
|
555 |
|
|
556 |
TVolumeInfo v;
|
|
557 |
TInt r=TheFs.Volume(v, CurrentDrive());
|
|
558 |
test_KErrNone(r);
|
|
559 |
|
|
560 |
CreateTestDirectory(_L("\\F32-TST\\TDIRCACHE\\"));
|
|
561 |
|
|
562 |
TestGlobalSettings();
|
|
563 |
TestDirCacheSettings();
|
|
564 |
TestPopulateCache();
|
|
565 |
TestSimulatingLowMemory();
|
|
566 |
TestLowMemoryHW();
|
|
567 |
|
|
568 |
DeleteTestDirectory();
|
|
569 |
}
|
|
570 |
else
|
|
571 |
{
|
|
572 |
test.Printf(_L("This test executes on FAT drives and non-RAM media only!!\n"));
|
|
573 |
}
|
|
574 |
#else
|
|
575 |
test.Printf(_L("This test executes on DEBUG mode only!!\n"));
|
|
576 |
#endif //#if defined(_DEBUG) || defined(_DEBUG_RELEASE)
|
|
577 |
}
|
|
578 |
|
|
579 |
/*
|
|
580 |
void TestReadEstart()
|
|
581 |
{
|
|
582 |
TDirCacheConfig dirCacheConfig;
|
|
583 |
TInt r = controlIo(TheFs,gDrive, KControlIoDirCacheConfig, dirCacheConfig);
|
|
584 |
test_KErrNone(r);
|
|
585 |
test.Printf(_L("Dir cache: \n Drive %C \n iLeafDirCacheSize %d \n iDirCacheSizeMin %d \n iDirCacheSizeMax %d \n iGlobalCacheMemorySize %d \n iLowMemoryThreshold %%%d"),
|
|
586 |
dirCacheConfig.iDrive + 'A',
|
|
587 |
dirCacheConfig.iLeafDirCacheSize,
|
|
588 |
dirCacheConfig.iDirCacheSizeMin,
|
|
589 |
dirCacheConfig.iDirCacheSizeMax);
|
|
590 |
}
|
|
591 |
|
|
592 |
*/
|
|
593 |
|
|
594 |
// const TInt KControlIoGlobalCacheConfig=KMaxTInt-21;
|
|
595 |
// const TInt KControlIoGlobalCacheInfo=KMaxTInt-22;
|
|
596 |
// const TInt KControlIoDirCacheConfig=KMaxTInt-23;
|
|
597 |
// const TInt KControlIoDirCacheInfo=KMaxTInt-24;
|
|
598 |
//
|
|
599 |
//class TGlobalCacheConfig
|
|
600 |
//class TGlobalCacheInfo
|
|
601 |
//class TDirCacheConfig
|
|
602 |
//class TDirCacheInfo
|
|
603 |
|
|
604 |
// this test is for FAT only!!
|
|
605 |
//if (F32_Test_Utils::Is_ExFat(TheFs, gDrive))
|
|
606 |
// {
|
|
607 |
// // test cluster size
|
|
608 |
// TVolumeIOParamInfo ioParam;
|
|
609 |
// TInt r = TheFs.VolumeIOParam(gDrive, ioParam);
|
|
610 |
// test.Printf(_L("TheFs.VolumeIOParam for EXFAT: (cluster = %d) = %d\n"), ioParam.iClusterSize, r);
|
|
611 |
// }
|
|
612 |
//
|