| 0 |      1 | // Copyright (c) 2008-2009 Nokia Corporation and/or its subsidiary(-ies).
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|  |      2 | // All rights reserved.
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|  |      3 | // This component and the accompanying materials are made available
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|  |      4 | // under the terms of the License "Eclipse Public License v1.0"
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|  |      5 | // which accompanies this distribution, and is available
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|  |      6 | // at the URL "http://www.eclipse.org/legal/epl-v10.html".
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|  |      7 | //
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|  |      8 | // Initial Contributors:
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|  |      9 | // Nokia Corporation - initial contribution.
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|  |     10 | //
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|  |     11 | // Contributors:
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|  |     12 | //
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|  |     13 | // Description:
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|  |     14 | // e32test\demandpaging\t_pagingexample.cpp
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|  |     15 | // Test device driver migration examples
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|  |     16 | // 
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|  |     17 | //
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|  |     18 | 
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|  |     19 | #define __E32TEST_EXTENSION__
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|  |     20 | #include <e32test.h>
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|  |     21 | #include <dptest.h>
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|  |     22 | #include <e32hal.h>
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|  |     23 | #include <u32exec.h>
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|  |     24 | #include <e32svr.h>
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|  |     25 | #include <e32panic.h>
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|  |     26 | #include <e32rom.h>
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|  |     27 | #include <e32kpan.h>
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|  |     28 | #include "../mmu/t_codepaging_dll.h"
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|  |     29 | #include "d_pagingexample.h"
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|  |     30 | 
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|  |     31 | const TInt KBufferSize = KMaxTransferSize;
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|  |     32 | _LIT(KTCodePagingDll4, "t_codepaging_dll4.dll");
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|  |     33 | 
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|  |     34 | struct TTestData
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|  |     35 | 	{
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|  |     36 | 	TRequestStatus iStatus;
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|  |     37 | 	RPagingExample::TConfigData iConfig;
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|  |     38 | 	RPagingExample::TValueStruct iValue;
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|  |     39 | 	TInt iIntValue1;
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|  |     40 | 	TInt iIntValue2;
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|  |     41 | 	TPtr8 iPtr;
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|  |     42 | 	TUint8 iBuffer[KBufferSize];
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|  |     43 | public:
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|  |     44 | 	TTestData() : iPtr(NULL, 0) { }
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|  |     45 | 	};
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|  |     46 | 
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|  |     47 | RTest test(_L("T_PAGINGEXAMPLE"));
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|  |     48 | TInt PageSize = 0;
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|  |     49 | RLibrary PagedLibrary;
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|  |     50 | TTestData* UnpagedInputData = NULL;
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|  |     51 | TTestData* UnpagedOutputData = NULL;
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|  |     52 | TTestData* PagedInputData = NULL;
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|  |     53 | TTestData* PagedOutputData = NULL;
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|  |     54 | 
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|  |     55 | void InitInputData(TTestData* aData)
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|  |     56 | 	{
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|  |     57 | 	aData->iConfig.iParam1 = 2;
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|  |     58 | 	aData->iConfig.iParam2 = 3;
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|  |     59 | 	aData->iConfig.iParam3 = 5;
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|  |     60 | 	aData->iConfig.iParam4 = 7;
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|  |     61 | 	for (TInt i = 0 ; i < KBufferSize ; ++i)
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|  |     62 | 		aData->iBuffer[i] = (TUint8)(i + 123);
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|  |     63 | 	}
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|  |     64 | 
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|  |     65 | void DoTestDriver(const TDesC& aDriverName, const TTestData* aInputData, TTestData* aOutputData)
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|  |     66 | 	{
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|  |     67 | 	test.Start(_L("Load logical device"));
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|  |     68 | 	TInt r = User::LoadLogicalDevice(aDriverName);
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|  |     69 | 	test(r==KErrNone || r==KErrAlreadyExists);
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|  |     70 | 	
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|  |     71 | 	test.Next(_L("Open logical device"));
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|  |     72 | 	RPagingExample ldd;
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|  |     73 | 	test_KErrNone(ldd.Open(aDriverName));
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|  |     74 | 	
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|  |     75 | 	test.Next(_L("Set config"));
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|  |     76 | 	DPTest::FlushCache();
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|  |     77 | 	test_KErrNone(ldd.SetConfig(aInputData->iConfig));
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|  |     78 | 
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|  |     79 | 	test.Next(_L("Get config"));
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|  |     80 | 	Mem::FillZ(&aOutputData->iConfig, sizeof(RPagingExample::TConfigData));
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|  |     81 | 	DPTest::FlushCache();
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|  |     82 | 	test_KErrNone(ldd.GetConfig(aOutputData->iConfig));
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|  |     83 | 	test_Equal(0, Mem::Compare((TUint8*)&aInputData->iConfig, sizeof(RPagingExample::TConfigData),
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|  |     84 | 							   (TUint8*)&aOutputData->iConfig, sizeof(RPagingExample::TConfigData)));
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|  |     85 | 	
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|  |     86 | 	TRequestStatus& status = aOutputData->iStatus;
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|  |     87 | 
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|  |     88 | 	test.Next(_L("Notify"));
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|  |     89 | 	DPTest::FlushCache();
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|  |     90 | 	ldd.Notify(status);
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|  |     91 | 	DPTest::FlushCache();
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|  |     92 | 	User::WaitForRequest(status);
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|  |     93 | 	test_Equal(KErrNone, status.Int());
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|  |     94 | 
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|  |     95 | 	test.Next(_L("Async get value"));
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|  |     96 | 	memclr(&aOutputData->iValue, sizeof(RPagingExample::TValueStruct));
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|  |     97 | 	DPTest::FlushCache();
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|  |     98 | 	ldd.AsyncGetValue(status, aOutputData->iValue);
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|  |     99 | 	DPTest::FlushCache();
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|  |    100 | 	User::WaitForRequest(status);
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|  |    101 | 	test_Equal(KErrNone, status.Int());
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|  |    102 | 	test_Equal(1, aOutputData->iValue.iValue1);
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|  |    103 | 	test(aOutputData->iValue.iValue2 == _L8("shrt"));
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|  |    104 | 
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|  |    105 | 	test.Next(_L("Cancel async get value"));
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|  |    106 | 	ldd.AsyncGetValue(status, aOutputData->iValue);
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|  |    107 | 	ldd.Cancel();
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|  |    108 | 	User::WaitForRequest(status);
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|  |    109 | 	test_Equal(KErrCancel, status.Int());
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|  |    110 | 
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|  |    111 | 	test.Next(_L("Async get value 2"));
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|  |    112 | 	aOutputData->iIntValue1 = 0;
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|  |    113 | 	aOutputData->iIntValue2 = 0;
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|  |    114 | 	DPTest::FlushCache();
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|  |    115 | 	ldd.AsyncGetValue2(status, aOutputData->iIntValue1, aOutputData->iIntValue2);
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|  |    116 | 	DPTest::FlushCache();
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|  |    117 | 	User::WaitForRequest(status);
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|  |    118 | 	test_Equal(KErrNone, status.Int());
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|  |    119 | 	test_Equal(1, aOutputData->iIntValue1);
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|  |    120 | 	test_Equal(2, aOutputData->iIntValue2);
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|  |    121 | 
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|  |    122 | 	test.Next(_L("Cancel async get value 2"));
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|  |    123 | 	ldd.AsyncGetValue2(status, aOutputData->iIntValue1, aOutputData->iIntValue2);
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|  |    124 | 	ldd.Cancel();
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|  |    125 | 	User::WaitForRequest(status);
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|  |    126 | 	test_Equal(KErrCancel, status.Int());
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|  |    127 | 
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|  |    128 | 	test.Next(_L("Write buffer too short"));
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|  |    129 | 	ldd.Write(status, NULL, 0);
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|  |    130 | 	User::WaitForRequest(status);
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|  |    131 | 	test_Equal(KErrArgument, status.Int());
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|  |    132 | 
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|  |    133 | 	test.Next(_L("Write buffer too long"));
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|  |    134 | 	ldd.Write(status, NULL, KMaxTransferSize + 1);
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|  |    135 | 	User::WaitForRequest(status);
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|  |    136 | 	test_Equal(KErrArgument, status.Int());
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|  |    137 | 
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|  |    138 | 	test.Next(_L("Write"));
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|  |    139 | 	DPTest::FlushCache();
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|  |    140 | 	ldd.Write(status, aInputData->iBuffer, KBufferSize);
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|  |    141 | 	DPTest::FlushCache();
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|  |    142 | 	User::WaitForRequest(status);
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|  |    143 | 	test_KErrNone(status.Int());
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|  |    144 | 
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|  |    145 | 	test.Next(_L("Cancel write"));
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|  |    146 | 	ldd.Write(status, aInputData->iBuffer, KBufferSize);
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|  |    147 | 	ldd.Cancel();
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|  |    148 | 	User::WaitForRequest(status);
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|  |    149 | 	test_Equal(KErrCancel, status.Int());
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|  |    150 | 
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|  |    151 | 	test.Next(_L("Read buffer too short"));
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|  |    152 | 	ldd.Read(status, NULL, 0);
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|  |    153 | 	User::WaitForRequest(status);
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|  |    154 | 	test_Equal(KErrArgument, status.Int());
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|  |    155 | 	
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|  |    156 | 	test.Next(_L("Read buffer too long"));
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|  |    157 | 	ldd.Read(status, NULL, KMaxTransferSize + 1);
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|  |    158 | 	User::WaitForRequest(status);
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|  |    159 | 	test_Equal(KErrArgument, status.Int());
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|  |    160 | 	
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|  |    161 | 	test.Next(_L("Read"));
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|  |    162 | 	Mem::FillZ(aOutputData->iBuffer, KBufferSize);
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|  |    163 | 	DPTest::FlushCache();
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|  |    164 | 	ldd.Read(status, aOutputData->iBuffer, KBufferSize);
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|  |    165 | 	DPTest::FlushCache();
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|  |    166 | 	User::WaitForRequest(status);
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|  |    167 | 	test_KErrNone(status.Int());
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|  |    168 | 	test_Equal(0, Mem::Compare(aInputData->iBuffer, KBufferSize,
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|  |    169 | 							   aOutputData->iBuffer, KBufferSize));
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|  |    170 | 
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|  |    171 | 	test.Next(_L("Cancel read"));
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|  |    172 | 	ldd.Read(status, aOutputData->iBuffer, KBufferSize);
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|  |    173 | 	ldd.Cancel();
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|  |    174 | 	User::WaitForRequest(status);
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|  |    175 | 	test_Equal(KErrCancel, status.Int());
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|  |    176 | 
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|  |    177 | 	test.Next(_L("Cancel nothing"));
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|  |    178 | 	ldd.Cancel();
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|  |    179 | 	
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|  |    180 | 	test.Next(_L("Write while write pending"));
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|  |    181 | 	TRequestStatus status2;
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|  |    182 | 	ldd.Write(status, aInputData->iBuffer, KBufferSize);
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|  |    183 | 	ldd.Write(status2, aInputData->iBuffer, KBufferSize);
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|  |    184 | 	User::WaitForRequest(status);
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|  |    185 | 	test_KErrNone(status.Int());
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|  |    186 | 	User::WaitForRequest(status2);
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|  |    187 | 	test_Equal(KErrInUse, status2.Int());
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|  |    188 | 
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|  |    189 | 	test.Next(_L("Read while read pending"));
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|  |    190 | 	ldd.Read(status, aOutputData->iBuffer, KBufferSize);
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|  |    191 | 	ldd.Read(status2, aOutputData->iBuffer, KBufferSize);
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|  |    192 | 	User::WaitForRequest(status);
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|  |    193 | 	test_KErrNone(status.Int());
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|  |    194 | 	User::WaitForRequest(status2);
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|  |    195 | 	test_Equal(KErrInUse, status2.Int());	
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|  |    196 | 
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|  |    197 | 	test.Next(_L("Write des"));
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|  |    198 | 	TPtrC8 writeDes(aInputData->iBuffer + 1, KBufferSize - 1);
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|  |    199 | 	DPTest::FlushCache();
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|  |    200 | 	ldd.WriteDes(status, writeDes);
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|  |    201 | 	DPTest::FlushCache();
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|  |    202 | 	User::WaitForRequest(status);
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|  |    203 | 	test_KErrNone(status.Int());
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|  |    204 | 
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|  |    205 | 	test.Next(_L("Cancel write des"));
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|  |    206 | 	ldd.WriteDes(status, writeDes);
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|  |    207 | 	ldd.Cancel();
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|  |    208 | 	User::WaitForRequest(status);
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|  |    209 | 	test_Equal(KErrCancel, status.Int());
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|  |    210 | 	
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|  |    211 | 	test.Next(_L("Read des"));
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|  |    212 | 	TPtr8 readDes(aOutputData->iBuffer, KBufferSize - 1);
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|  |    213 | 	Mem::FillZ(aOutputData->iBuffer, KBufferSize);
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|  |    214 | 	DPTest::FlushCache();
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|  |    215 | 	ldd.ReadDes(status, readDes);
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|  |    216 | 	DPTest::FlushCache();
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|  |    217 | 	User::WaitForRequest(status);
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|  |    218 | 	test_KErrNone(status.Int());
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|  |    219 | 	test(readDes == writeDes);
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|  |    220 | 		
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|  |    221 | 	test.Next(_L("Read des 2"));  // has paged header but unpaged contnet, if output data is paged
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|  |    222 | 	aOutputData->iPtr.Set(UnpagedOutputData->iBuffer, 0, KBufferSize - 1);
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|  |    223 | 	Mem::FillZ(UnpagedOutputData->iBuffer, KBufferSize);
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|  |    224 | 	DPTest::FlushCache();
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|  |    225 | 	ldd.ReadDes(status, aOutputData->iPtr);
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|  |    226 | 	DPTest::FlushCache();
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|  |    227 | 	User::WaitForRequest(status);
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|  |    228 | 	test_KErrNone(status.Int());
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|  |    229 | 	test(aOutputData->iPtr == writeDes);
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|  |    230 | 		
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|  |    231 | 	test.Next(_L("Cancel read des"));
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|  |    232 | 	ldd.ReadDes(status, readDes);
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|  |    233 | 	ldd.Cancel();
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|  |    234 | 	User::WaitForRequest(status);
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|  |    235 | 	test_Equal(KErrCancel, status.Int());
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|  |    236 | 		
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|  |    237 | 	test.Next(_L("Read and write at the same time"));
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|  |    238 | 	ldd.Write(status, aInputData->iBuffer, KBufferSize);
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|  |    239 | 	ldd.Read(status2, aOutputData->iBuffer, KBufferSize);
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|  |    240 | 	DPTest::FlushCache();
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|  |    241 | 	User::WaitForRequest(status);
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|  |    242 | 	test_KErrNone(status.Int());
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|  |    243 | 	User::WaitForRequest(status2);
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|  |    244 | 	test_KErrNone(status2.Int());
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|  |    245 | 		
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|  |    246 | 	test.Next(_L("Cancel read and write"));
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|  |    247 | 	ldd.Write(status, aInputData->iBuffer, KBufferSize);
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|  |    248 | 	ldd.Read(status2, aOutputData->iBuffer, KBufferSize);
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|  |    249 | 	ldd.Cancel();
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|  |    250 | 	User::WaitForRequest(status);
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|  |    251 | 	test_Equal(KErrCancel, status.Int());
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|  |    252 | 	User::WaitForRequest(status2);
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|  |    253 | 	test_Equal(KErrCancel, status2.Int());
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|  |    254 | 	
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|  |    255 | 	test.Next(_L("Close and free logical device"));
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|  |    256 | 	ldd.Close();
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|  |    257 | 	test_KErrNone(User::FreeLogicalDevice(aDriverName));
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|  |    258 | 	
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|  |    259 | 	test.End();
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|  |    260 | 	}
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|  |    261 | 
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|  |    262 | void TestDriver(const TDesC& aDriverName, TBool aMigrated)
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|  |    263 | 	{
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|  |    264 | 	TBuf<64> string;
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|  |    265 | 	string.Format(_L("Testing driver %S"), &aDriverName);
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|  |    266 | 	test.Next(string);
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|  |    267 | 
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|  |    268 | 	test.Start(_L("Test reading from unpaged memory and writing to unpaged memory"));
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|  |    269 | 	DoTestDriver(aDriverName, UnpagedInputData, UnpagedOutputData);
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|  |    270 | 	
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|  |    271 | 	if (aMigrated && PagedInputData)
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|  |    272 | 		{
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|  |    273 | 		if (PagedOutputData)
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|  |    274 | 			{
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|  |    275 | 			test.Next(_L("Test reading from paged memory and writing to paged memory"));
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|  |    276 | 			DoTestDriver(aDriverName, PagedInputData, PagedOutputData);
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|  |    277 | 			}
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|  |    278 | 		else
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|  |    279 | 			{
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|  |    280 | 			test.Next(_L("Test reading from paged memory and writing to unpaged memory"));
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|  |    281 | 			DoTestDriver(aDriverName, PagedInputData, UnpagedOutputData);
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|  |    282 | 			}
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|  |    283 | 		}
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|  |    284 | 	
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|  |    285 | 	// todo: test pinning failures
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|  |    286 | 
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|  |    287 | 	test.End();
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|  |    288 | 	}
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|  |    289 | 
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|  |    290 | enum TTestAction
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|  |    291 | 	{
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|  |    292 | 	ETestRequestComplete,
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|  |    293 | 	ETestRawRead,
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|  |    294 | 	ETestRawWrite,
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|  |    295 | 	ETestDesRead,
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|  |    296 | 	ETestDesWrite
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|  |    297 | 	};
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|  |    298 | 
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|  |    299 | enum TTestAccess
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|  |    300 | 	{
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|  |    301 | 	EAccessUnpaged,
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|  |    302 | 	EAccessPaged
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|  |    303 | 	};
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|  |    304 | 
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|  |    305 | enum TTestOutcome
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|  |    306 | 	{
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|  |    307 | 	EOutcomeSuccess,
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|  |    308 | 	EOutcomeRealtimePanic
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|  |    309 | 	};
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|  |    310 | 
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|  |    311 | TInt RealtimeTestFunc(TAny* aArg)
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|  |    312 | 	{
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|  |    313 | 	TTestAction action = (TTestAction)((TUint)aArg & 255);
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|  |    314 | 	TTestAccess access = (TTestAccess)((TUint)aArg >> 8);
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|  |    315 | 
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|  |    316 | 	TTestData* inputData = access == EAccessPaged ? PagedInputData : UnpagedInputData;
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|  |    317 | 	TTestData* outputData = access == EAccessPaged ? PagedOutputData : UnpagedOutputData;
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|  |    318 | 		
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|  |    319 | 	RPagingExample ldd;
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|  |    320 | 	TInt r = ldd.Open(KPagingExample1PreLdd);
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|  |    321 | 	if (r != KErrNone)
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|  |    322 | 		return r;
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|  |    323 | 	ldd.SetDfcThreadRealtimeState(ETrue);
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|  |    324 | 	
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|  |    325 | 	TRequestStatus unpagedStatus;
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|  |    326 | 	TRequestStatus* status = &unpagedStatus;
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|  |    327 | 	
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|  |    328 | 	switch(action)
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|  |    329 | 		{
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|  |    330 | 		case ETestRequestComplete:
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|  |    331 | 			{
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|  |    332 | 			RDebug::Printf("Test RequestComplete");
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|  |    333 | 			status = &outputData->iStatus;
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|  |    334 | 			RPagingExample::TValueStruct value;
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|  |    335 | 			DPTest::FlushCache();
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|  |    336 | 			ldd.AsyncGetValue(*status, value);
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|  |    337 | 			DPTest::FlushCache();
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|  |    338 | 			}
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|  |    339 | 			break;
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|  |    340 | 			
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|  |    341 | 		case ETestRawRead:
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|  |    342 | 			RDebug::Printf("Test ThreadRawRead");
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|  |    343 | 			ldd.Write(*status, inputData->iBuffer, KBufferSize);
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|  |    344 | 			DPTest::FlushCache();
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|  |    345 | 			break;
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|  |    346 | 			
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|  |    347 | 		case ETestRawWrite:
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|  |    348 | 			RDebug::Printf("Test ThreadRawWrite");
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|  |    349 | 			ldd.Read(*status, outputData->iBuffer, KBufferSize);
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|  |    350 | 			DPTest::FlushCache();
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|  |    351 | 			break;
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|  |    352 | 			
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|  |    353 | 		case ETestDesRead:
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|  |    354 | 			{
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|  |    355 | 			RDebug::Printf("Test ThreadDesRead");
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|  |    356 | 			TPtrC8 writeDes(inputData->iBuffer, KBufferSize);
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|  |    357 | 			ldd.WriteDes(*status, writeDes);
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|  |    358 | 			DPTest::FlushCache();
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|  |    359 | 			}
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|  |    360 | 			break;
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|  |    361 | 			
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|  |    362 | 		case ETestDesWrite:
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|  |    363 | 			{
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|  |    364 | 			RDebug::Printf("Test ThreadDesWrite");
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|  |    365 | 			TPtr8 readDes(outputData->iBuffer, KBufferSize);
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|  |    366 | 			ldd.ReadDes(*status, readDes);
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|  |    367 | 			DPTest::FlushCache();
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|  |    368 | 			}
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|  |    369 | 			break;
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|  |    370 | 		default:
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|  |    371 | 			return KErrArgument;
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|  |    372 | 		}
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|  |    373 | 	User::WaitForAnyRequest();
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|  |    374 | 	r = status->Int();
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|  |    375 | 	ldd.Close();
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|  |    376 | 	return r;
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|  |    377 | 	}
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|  |    378 | 
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|  |    379 | void RunRealtimeTestThread(TTestAction aTestAction, TTestAccess aAccess, TTestOutcome aExpectedOutcome)
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|  |    380 | 	{
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|  |    381 | 	RThread thread;
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|  |    382 | 	TUint arg = aTestAction | (aAccess << 8);
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|  |    383 | 	test_KErrNone(thread.Create(KNullDesC, RealtimeTestFunc, 4096, NULL, (TAny*)arg));
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|  |    384 | 	TRequestStatus status;
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|  |    385 | 	thread.Logon(status);
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|  |    386 | 	thread.Resume();
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|  |    387 | 	User::WaitForRequest(status);
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|  |    388 | 	switch (aExpectedOutcome)
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|  |    389 | 		{
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|  |    390 | 		case EOutcomeSuccess:
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|  |    391 | 			test_Equal(EExitKill, thread.ExitType());
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|  |    392 | 			test_Equal(KErrNone, thread.ExitReason());
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|  |    393 | 			break;
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|  |    394 | 
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|  |    395 | 		case EOutcomeRealtimePanic:
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|  |    396 | 			test_Equal(EExitPanic, thread.ExitType());
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|  |    397 | 			test_Equal(EIllegalFunctionForRealtimeThread, thread.ExitReason());
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|  |    398 | 			break;
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|  |    399 | 
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|  |    400 | 		default:
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|  |    401 | 			test(EFalse);	
 | 
|  |    402 | 		}
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|  |    403 | 	CLOSE_AND_WAIT(thread);
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|  |    404 | 	}
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|  |    405 | 
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|  |    406 | void TestPagedAccessInRealtimeThread()
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|  |    407 | 	{
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|  |    408 | 	// Test driver access to paged memory from realtime DFC thread.  This can happen if a client
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|  |    409 | 	// passes paged memory to a driver that doesn't expect it, and has set its realtime state to
 | 
|  |    410 | 	// enfore this.  The client should be panicked in this case.
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|  |    411 | 
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|  |    412 | 	test.Start(_L("Test memory access from realtime threads"));
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|  |    413 | 	test.Next(_L("Load logical device"));
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|  |    414 | 	TInt r = User::LoadLogicalDevice(KPagingExample1PreLdd);
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|  |    415 | 	test(r==KErrNone || r==KErrAlreadyExists);
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|  |    416 | 
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|  |    417 | 	test.Next(_L("Test access to unpaged memory from realtime thread"));
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|  |    418 | 	RunRealtimeTestThread(ETestRequestComplete, EAccessUnpaged, EOutcomeSuccess);
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|  |    419 | 	RunRealtimeTestThread(ETestRawRead, 		EAccessUnpaged, EOutcomeSuccess);
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|  |    420 | 	RunRealtimeTestThread(ETestRawWrite, 		EAccessUnpaged, EOutcomeSuccess);
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|  |    421 | 	RunRealtimeTestThread(ETestDesRead, 		EAccessUnpaged, EOutcomeSuccess);
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|  |    422 | 	RunRealtimeTestThread(ETestDesWrite, 		EAccessUnpaged, EOutcomeSuccess);
 | 
|  |    423 | 
 | 
|  |    424 | 	test.Next(_L("Test access to paged memory from realtime thread"));
 | 
|  |    425 | 	if (PagedInputData)
 | 
|  |    426 | 		{
 | 
|  |    427 | 		RunRealtimeTestThread(ETestRawRead, 		EAccessPaged, EOutcomeRealtimePanic);
 | 
|  |    428 | 		RunRealtimeTestThread(ETestDesRead, 		EAccessPaged, EOutcomeRealtimePanic);
 | 
|  |    429 | 		}
 | 
|  |    430 | 	if (PagedOutputData)
 | 
|  |    431 | 		{
 | 
|  |    432 | 		RunRealtimeTestThread(ETestRequestComplete, EAccessPaged, EOutcomeRealtimePanic);
 | 
|  |    433 | 		RunRealtimeTestThread(ETestRawWrite, 		EAccessPaged, EOutcomeRealtimePanic);
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|  |    434 | 		RunRealtimeTestThread(ETestDesWrite, 		EAccessPaged, EOutcomeRealtimePanic);
 | 
|  |    435 | 		}
 | 
|  |    436 | 	
 | 
|  |    437 | 	test.Next(_L("Close and free logical device"));
 | 
|  |    438 | 	test_KErrNone(User::FreeLogicalDevice(KPagingExample1PreLdd));
 | 
|  |    439 | 	
 | 
|  |    440 | 	test.End();
 | 
|  |    441 | 	}
 | 
|  |    442 | 
 | 
|  |    443 | TInt E32Main()
 | 
|  |    444 | 	{
 | 
|  |    445 | 	test.Title();
 | 
|  |    446 | 
 | 
|  |    447 | 	test.Start(_L("Test device driver migration examples"));
 | 
|  |    448 | 	
 | 
|  |    449 | 	UnpagedInputData = (TTestData*)User::Alloc(sizeof(TTestData));
 | 
|  |    450 | 	test_NotNull(UnpagedInputData);
 | 
|  |    451 | 	UnpagedOutputData = (TTestData*)User::Alloc(sizeof(TTestData));
 | 
|  |    452 | 	test_NotNull(UnpagedOutputData);
 | 
|  |    453 | 
 | 
|  |    454 | 	test_KErrNone(UserSvr::HalFunction(EHalGroupKernel,EKernelHalPageSizeInBytes,&PageSize,0));
 | 
|  |    455 | 
 | 
|  |    456 | 	RChunk chunk;
 | 
|  |    457 | 	if (DPTest::Attributes() & DPTest::EDataPaging)
 | 
|  |    458 | 		{
 | 
|  |    459 | 		TChunkCreateInfo info;
 | 
|  |    460 | 		TInt size = (sizeof(TTestData) + PageSize - 1) & ~(PageSize - 1);
 | 
|  |    461 | 		info.SetNormal(size, size);
 | 
|  |    462 | 		info.SetPaging(TChunkCreateInfo::EPaged);
 | 
|  |    463 | 		test_KErrNone(chunk.Create(info));
 | 
|  |    464 | 		test(chunk.IsPaged());
 | 
|  |    465 | 		PagedOutputData = (TTestData*)chunk.Base();
 | 
|  |    466 | 		test.Printf(_L("Using data pagd output buffer at %08x\n"), PagedOutputData);
 | 
|  |    467 | 		}
 | 
|  |    468 | 	
 | 
|  |    469 | 	if (DPTest::Attributes() & DPTest::ERomPaging)
 | 
|  |    470 | 		{
 | 
|  |    471 | 		// use paged part of rom for read-only data
 | 
|  |    472 | 		TRomHeader* romHeader = (TRomHeader*)UserSvr::RomHeaderAddress();
 | 
|  |    473 | 		test(romHeader->iPageableRomStart);
 | 
|  |    474 | 		// todo: for some reason the first part of page of paged rom doesn't seem to get paged out
 | 
|  |    475 | 		// when we flush the paging cache, hence PagedInputData starts some way into this
 | 
|  |    476 | 		PagedInputData = (TTestData*)((TUint8*)romHeader + romHeader->iPageableRomStart + 64 * PageSize); 
 | 
|  |    477 | 		TInt romDataSize = romHeader->iPageableRomSize - 64 * PageSize;
 | 
|  |    478 | 		test(romDataSize >= (TInt)sizeof(TTestData));		
 | 
|  |    479 | 		test.Printf(_L("Using rom paged input data at %08x\n"), PagedInputData);
 | 
|  |    480 | 		}
 | 
|  |    481 | 	else if (DPTest::Attributes() & DPTest::ECodePaging)
 | 
|  |    482 | 		{
 | 
|  |    483 | 		// use code paged DLL for read-only buffer
 | 
|  |    484 | 		test_KErrNone(PagedLibrary.Load(KTCodePagingDll4));		
 | 
|  |    485 | 		TGetAddressOfDataFunction func = (TGetAddressOfDataFunction)PagedLibrary.Lookup(KGetAddressOfDataFunctionOrdinal);
 | 
|  |    486 | 		TInt codeDataSize;
 | 
|  |    487 | 		PagedInputData = (TTestData*)func(codeDataSize);
 | 
|  |    488 | 		test_NotNull(PagedInputData);
 | 
|  |    489 | 		test(codeDataSize >= (TInt)sizeof(TTestData));		
 | 
|  |    490 | 		test.Printf(_L("Using code paged input data at %08x\n"), PagedInputData);
 | 
|  |    491 | 		}
 | 
|  |    492 | 
 | 
|  |    493 | 	InitInputData(UnpagedInputData);
 | 
|  |    494 | 	
 | 
|  |    495 | 	TestDriver(KPagingExample1PreLdd, EFalse);
 | 
|  |    496 | 	TestDriver(KPagingExample1PostLdd, ETrue);
 | 
|  |    497 | 	TestDriver(KPagingExample2PreLdd, EFalse);
 | 
|  |    498 | 	TestDriver(KPagingExample2PostLdd, ETrue);
 | 
|  |    499 | 	TestPagedAccessInRealtimeThread();
 | 
|  |    500 | 	
 | 
|  |    501 | 	PagedLibrary.Close();
 | 
|  |    502 | 	User::Free(UnpagedInputData);
 | 
|  |    503 | 	User::Free(UnpagedOutputData);
 | 
|  |    504 | 	
 | 
|  |    505 | 	test.End();
 | 
|  |    506 | 	return 0;
 | 
|  |    507 | 	}
 |