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// Copyright (c) 2002-2009 Nokia Corporation and/or its subsidiary(-ies).
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// All rights reserved.
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// This component and the accompanying materials are made available
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// under the terms of the License "Eclipse Public License v1.0"
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// which accompanies this distribution, and is available
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// at the URL "http://www.eclipse.org/legal/epl-v10.html".
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//
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// Initial Contributors:
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// Nokia Corporation - initial contribution.
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//
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// Contributors:
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//
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// Description:
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//
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#include <e32test.h>
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#include "t_property.h"
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TSecureId TestSecureId;
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TVendorId TestVendorId;
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TCapability TestCaps[ECapability_Limit];
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TCapability TestMissingCaps[ECapability_Limit];
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TSecurityPolicy CorrectCapPolicy;
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TSecurityPolicy IncorrectCapPolicy;
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TUint TestPolicyCount=0;
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#include <e32svr.h>
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TBool MakeTestSecurityPolicy()
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{
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TCapability* c =TestCaps;
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TCapability* m =TestMissingCaps;
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TUint t=++TestPolicyCount;
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RDebug::Print(_L("Test policy %d\n"),t);
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if(t==1)
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{
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_LIT_SECURITY_POLICY_PASS(KSecurityPolicyPass);
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CorrectCapPolicy = KSecurityPolicyPass;
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_LIT_SECURITY_POLICY_FAIL(KSecurityPolicyFail);
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IncorrectCapPolicy = KSecurityPolicyFail;
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return ETrue;
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}
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t -= 1;
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if(t<7)
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{
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switch(t)
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{
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case 0:
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CorrectCapPolicy = TSecurityPolicy(c[0]);
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IncorrectCapPolicy = TSecurityPolicy(m[0]);
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break;
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case 1:
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CorrectCapPolicy = TSecurityPolicy(c[0],c[1]);
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IncorrectCapPolicy = TSecurityPolicy(m[0],c[1]);
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break;
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case 2:
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CorrectCapPolicy = TSecurityPolicy(c[0],c[1],c[2]);
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IncorrectCapPolicy = TSecurityPolicy(c[0],m[1],c[2]);
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break;
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case 3:
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CorrectCapPolicy = TSecurityPolicy(c[0],c[1],c[2],c[3]);
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IncorrectCapPolicy = TSecurityPolicy(c[0],c[1],m[2],c[3]);
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break;
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case 4:
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CorrectCapPolicy = TSecurityPolicy(c[0],c[1],c[2],c[3],c[4]);
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IncorrectCapPolicy = TSecurityPolicy(c[0],c[1],c[2],m[3],c[4]);
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break;
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case 5:
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CorrectCapPolicy = TSecurityPolicy(c[0],c[1],c[2],c[3],c[4],c[5]);
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IncorrectCapPolicy = TSecurityPolicy(c[0],c[1],c[2],c[3],m[4],c[5]);
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break;
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case 6:
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CorrectCapPolicy = TSecurityPolicy(c[0],c[1],c[2],c[3],c[4],c[5],c[6]);
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IncorrectCapPolicy = TSecurityPolicy(c[0],c[1],c[2],c[3],c[4],m[5],c[6]);
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break;
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}
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return ETrue;
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}
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t -= 7;
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if(t<4)
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{
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TSecureId id = TestSecureId;
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TSecureId id2 = TSecureId((TUint32)TestVendorId);
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switch(t)
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{
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case 0:
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CorrectCapPolicy = TSecurityPolicy(id);
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IncorrectCapPolicy = TSecurityPolicy(id2);
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break;
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case 1:
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CorrectCapPolicy = TSecurityPolicy(id,c[0]);
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IncorrectCapPolicy = TSecurityPolicy(id2,c[0]);
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break;
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case 2:
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CorrectCapPolicy = TSecurityPolicy(id,c[0],c[1]);
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IncorrectCapPolicy = TSecurityPolicy(id2,c[0],c[1]);
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break;
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case 3:
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CorrectCapPolicy = TSecurityPolicy(id,c[0],c[1],c[2]);
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IncorrectCapPolicy = TSecurityPolicy(id2,c[0],c[1],c[2]);
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break;
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}
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return ETrue;
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}
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t -= 4;
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if(t<4)
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{
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TVendorId id = TestVendorId;
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TVendorId id2 = TVendorId((TUint32)TestSecureId);
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switch(t)
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{
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case 0:
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CorrectCapPolicy = TSecurityPolicy(id);
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IncorrectCapPolicy = TSecurityPolicy(id2);
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break;
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case 1:
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CorrectCapPolicy = TSecurityPolicy(id,c[0]);
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IncorrectCapPolicy = TSecurityPolicy(id2,c[0]);
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break;
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case 2:
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CorrectCapPolicy = TSecurityPolicy(id,c[0],c[1]);
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IncorrectCapPolicy = TSecurityPolicy(id2,c[0],c[1]);
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break;
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case 3:
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CorrectCapPolicy = TSecurityPolicy(id,c[0],c[1],c[2]);
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IncorrectCapPolicy = TSecurityPolicy(id2,c[0],c[1],c[2]);
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break;
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}
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return ETrue;
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}
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t -= 4;
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TestPolicyCount = 0;
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return EFalse;
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}
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_LIT(KSecurityReadCapabilityName, "RProperty Security: Read Capability Basics");
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class CPropSecurityReadCapability : public CTestProgram
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{
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public:
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CPropSecurityReadCapability(TUid aCategory, TUint aKey1, TUint aKey2, RProperty::TType aType) :
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CTestProgram(KSecurityReadCapabilityName), iCategory(aCategory), iKey1(aKey1), iKey2(aKey2), iType(aType)
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{
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}
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void Run(TUint aCount);
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private:
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TUid iCategory;
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TUint iKey1;
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TUint iKey2;
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RProperty::TType iType;
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};
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void CPropSecurityReadCapability::Run(TUint aCount)
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{
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while(MakeTestSecurityPolicy())
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for (TUint i = 0; i < aCount; ++i)
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{
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RProperty prop1;
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RProperty prop2;
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TInt r = prop1.Attach(iCategory, iKey1);
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TF_ERROR(r, r == KErrNone);
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r = prop2.Attach(iCategory, iKey2);
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TF_ERROR(r, r == KErrNone);
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// If the property has not been defined, the request will not complete until the property
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// is defined and published.
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// When defined if the caller does not have read capabilities the request completes
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// with KErrPermissionDenied.
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TRequestStatus status1;
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prop1.Subscribe(status1);
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TF_ERROR(status1.Int(), status1.Int() == KRequestPending);
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r = prop1.Define(iCategory, iKey1, iType, IncorrectCapPolicy, CorrectCapPolicy);
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TF_ERROR(r, r == KErrNone);
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User::WaitForRequest(status1);
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TF_ERROR(status1.Int(), status1.Int() == KErrPermissionDenied);
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TRequestStatus status2;
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prop2.Subscribe(status2);
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TF_ERROR(status2.Int(), status2.Int() == KRequestPending);
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r = prop2.Define(iCategory, iKey2, iType, CorrectCapPolicy, IncorrectCapPolicy);
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TF_ERROR(r, r == KErrNone);
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TF_ERROR(status2.Int(), status2.Int() == KRequestPending);
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prop2.Cancel();
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User::WaitForRequest(status2);
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TF_ERROR(status2.Int(), status2.Int() == KErrCancel);
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// If the Subscribe() caller does not have the read capabilities the request completes immediately
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// with KErrPermissionDenied.
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prop1.Subscribe(status1);
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User::WaitForRequest(status1);
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TF_ERROR(status1.Int(), status1.Int() == KErrPermissionDenied);
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prop2.Subscribe(status2);
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TF_ERROR(status2.Int(), status2.Int() == KRequestPending);
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prop2.Cancel();
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User::WaitForRequest(status2);
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TF_ERROR(status2.Int(), status2.Int() == KErrCancel);
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// If the caller does not have the read capabilities Get() fails with KErrPermissionDenied.
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if (iType == RProperty::EInt)
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{
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TInt value;
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r = prop1.Get(iCategory, iKey1, value);
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TF_ERROR(r, r == KErrPermissionDenied);
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r = prop2.Get(iCategory, iKey2, value);
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TF_ERROR(r, r == KErrNone);
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r = prop1.Get(value);
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TF_ERROR(r, r == KErrPermissionDenied);
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r = prop2.Get(value);
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TF_ERROR(r, r == KErrNone);
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}
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else
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{
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TBuf<16> buf;
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TBuf8<16> buf8;
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r = prop1.Get(iCategory, iKey1, buf);
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TF_ERROR(r, r == KErrPermissionDenied);
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r = prop2.Get(iCategory, iKey2, buf);
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TF_ERROR(r, r == KErrNone);
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r = prop1.Get(iCategory, iKey1, buf8);
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TF_ERROR(r, r == KErrPermissionDenied);
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r = prop2.Get(iCategory, iKey2, buf8);
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TF_ERROR(r, r == KErrNone);
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r = prop1.Get(buf);
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TF_ERROR(r, r == KErrPermissionDenied);
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r = prop2.Get(buf);
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TF_ERROR(r, r == KErrNone);
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r = prop1.Get(buf8);
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TF_ERROR(r, r == KErrPermissionDenied);
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r = prop2.Get(buf8);
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TF_ERROR(r, r == KErrNone);
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}
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r = prop1.Delete(iCategory, iKey1);
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TF_ERROR(r, r == KErrNone);
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r = prop2.Delete(iCategory, iKey2);
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TF_ERROR(r, r == KErrNone);
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prop1.Close();
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prop2.Close();
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}
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}
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_LIT(KSecurityWriteCapabilityName, "RProperty Security: Write Cpability Basics");
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class CPropSecurityWriteCapability : public CTestProgram
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{
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public:
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CPropSecurityWriteCapability(TUid aCategory, TUint aKey1, TUint aKey2, RProperty::TType aType) :
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CTestProgram(KSecurityWriteCapabilityName), iCategory(aCategory), iKey1(aKey1), iKey2(aKey2), iType(aType)
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{
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}
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void Run(TUint aCount);
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private:
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TUid iCategory;
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TUint iKey1;
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TUint iKey2;
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RProperty::TType iType;
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};
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void CPropSecurityWriteCapability::Run(TUint aCount)
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{
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while(MakeTestSecurityPolicy())
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for (TUint i = 0; i < aCount; ++i)
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{
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RProperty prop1;
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RProperty prop2;
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TInt r = prop1.Attach(iCategory, iKey1);
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TF_ERROR(r, r == KErrNone);
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r = prop2.Attach(iCategory, iKey2);
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TF_ERROR(r, r == KErrNone);
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r = prop1.Define(iCategory, iKey1, iType, CorrectCapPolicy, IncorrectCapPolicy);
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TF_ERROR(r, r == KErrNone);
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r = prop2.Define(iCategory, iKey2, iType, IncorrectCapPolicy, CorrectCapPolicy);
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TF_ERROR(r, r == KErrNone);
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// If the caller does not have the write capabilities Set() fails with KErrPermissionDenied.
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if (iType == RProperty::EInt)
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{
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TInt value = 1;
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r = prop1.Set(iCategory, iKey1, value);
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TF_ERROR(r, r == KErrPermissionDenied);
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r = prop2.Set(iCategory, iKey2, value);
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TF_ERROR(r, r == KErrNone);
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r = prop1.Set(value);
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TF_ERROR(r, r == KErrPermissionDenied);
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r = prop2.Set(value);
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TF_ERROR(r, r == KErrNone);
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}
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else
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{
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TBuf<16> buf(_L("Foo"));
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TBuf8<16> buf8((TUint8*) "Foo");
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r = prop1.Set(iCategory, iKey1, buf);
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TF_ERROR(r, r == KErrPermissionDenied);
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r = prop2.Set(iCategory, iKey2, buf);
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TF_ERROR(r, r == KErrNone);
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r = prop1.Set(iCategory, iKey1, buf8);
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TF_ERROR(r, r == KErrPermissionDenied);
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r = prop2.Set(iCategory, iKey2, buf8);
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TF_ERROR(r, r == KErrNone);
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r = prop1.Set(buf);
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TF_ERROR(r, r == KErrPermissionDenied);
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r = prop2.Set(buf);
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TF_ERROR(r, r == KErrNone);
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r = prop1.Set(buf8);
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TF_ERROR(r, r == KErrPermissionDenied);
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r = prop2.Set(buf8);
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TF_ERROR(r, r == KErrNone);
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}
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r = prop1.Delete(iCategory, iKey1);
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TF_ERROR(r, r == KErrNone);
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r = prop2.Delete(iCategory, iKey2);
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TF_ERROR(r, r == KErrNone);
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prop1.Close();
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prop2.Close();
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}
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}
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GLDEF_C TInt E32Main()
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{
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TSecurityInfo info;
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info.Set(RProcess());
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TestSecureId = info.iSecureId;
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TestVendorId = info.iVendorId;
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{
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TInt c=0;
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TInt m=0;
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for(TInt i=0; i<ECapability_Limit; i++)
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{
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if(info.iCaps.HasCapability((TCapability)i))
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TestCaps[c++] = (TCapability)i;
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else
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TestMissingCaps[m++] = (TCapability)i;
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}
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__ASSERT_ALWAYS(c>=7,User::Panic(_L("not enough caps"), 1));
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__ASSERT_ALWAYS(m>=6,User::Panic(_L("missing caps <6"), 1));
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}
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TInt len = User::CommandLineLength();
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__ASSERT_ALWAYS(len, User::Panic(_L("t_prop_sec: bad args"), 0));
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// Get arguments for the command line
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TInt size = len * sizeof(TUint16);
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HBufC8* hb = HBufC8::NewMax(size);
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__ASSERT_ALWAYS(hb, User::Panic(_L("t_prop_sec: no memory"), 0));
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TPtr cmd((TUint16*) hb->Ptr(), len);
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User::CommandLine(cmd);
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CPropSecurity::TArgs* args = (CPropSecurity::TArgs*) hb->Ptr();
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CTestProgram::Start();
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CTestProgram* progs[] =
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{
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new CPropSecurityReadCapability(args->iCategory, args->iSlaveKeySlot + 0, args->iSlaveKeySlot + 1,
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RProperty::EInt),
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new CPropSecurityReadCapability(args->iCategory, args->iSlaveKeySlot + 2, args->iSlaveKeySlot + 3,
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RProperty::EByteArray),
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new CPropSecurityWriteCapability(args->iCategory, args->iSlaveKeySlot + 4, args->iSlaveKeySlot + 5,
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RProperty::EInt),
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new CPropSecurityWriteCapability(args->iCategory, args->iSlaveKeySlot + 6, args->iSlaveKeySlot + 7,
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RProperty::EByteArray),
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NULL
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};
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TInt i;
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TInt n = (sizeof(progs)/sizeof(*progs)) - 1;
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for (i = 0; i < n; ++i)
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{
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__ASSERT_ALWAYS(progs[i], User::Panic(_L("t_property: no memory"), 0));
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}
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CTestProgram::LaunchGroup(progs, 2);
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for (i = 0; i < n; ++i)
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{
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delete progs[i];
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}
|
|
389 |
|
|
390 |
CTestProgram::End();
|
|
391 |
|
|
392 |
return KErrNone;
|
|
393 |
}
|