lbstest/lbstestproduct/lbshybridmtlr/src/ctlbshybridueassistedmtlrnw.cpp
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     1 // Copyright (c) 2007-2009 Nokia Corporation and/or its subsidiary(-ies).
       
     2 // All rights reserved.
       
     3 // This component and the accompanying materials are made available
       
     4 // under the terms of "Eclipse Public License v1.0"
       
     5 // which accompanies this distribution, and is available
       
     6 // at the URL "http://www.eclipse.org/legal/epl-v10.html".
       
     7 //
       
     8 // Initial Contributors:
       
     9 // Nokia Corporation - initial contribution.
       
    10 //
       
    11 // Contributors:
       
    12 //
       
    13 // Description:
       
    14 //
       
    15 
       
    16 // LBS includes. 
       
    17 #include <lbs/test/lbsnetprotocolproxy.h>
       
    18 #include <lbs/lbsnetprotocolbase.h>
       
    19 #include <lbs/lbsassistancedatabuilderset.h>
       
    20 
       
    21 // LBS test includes.
       
    22 #include "ctlbshybridueassistedmtlrnw.h"
       
    23 #include <lbs/test/tlbsutils.h>
       
    24 #include "argutils.h"
       
    25 #include <lbs/test/activeyield.h>
       
    26 
       
    27 /**
       
    28 Static Constructor
       
    29 */
       
    30 CT_LbsHybridUEAssistedMTLRNW* CT_LbsHybridUEAssistedMTLRNW::New(CT_LbsHybridMTLRServer& aParent)
       
    31 	{
       
    32 	// Note the lack of ELeave.
       
    33 	// This means that having insufficient memory will return NULL;
       
    34 	CT_LbsHybridUEAssistedMTLRNW* testStep = new CT_LbsHybridUEAssistedMTLRNW(aParent);
       
    35 	if (testStep)
       
    36 		{
       
    37 		TInt err = KErrNone;
       
    38 
       
    39 		TRAP(err, testStep->ConstructL());
       
    40 		if (err)
       
    41 			{
       
    42 			delete testStep;
       
    43 			testStep = NULL;
       
    44 			}
       
    45 		}
       
    46 	return testStep;
       
    47 	}
       
    48 
       
    49 
       
    50 /**
       
    51  * Constructor
       
    52  */
       
    53 CT_LbsHybridUEAssistedMTLRNW::CT_LbsHybridUEAssistedMTLRNW(CT_LbsHybridMTLRServer& aParent) : CT_LbsHybridMTLRStep(aParent)
       
    54 	{
       
    55 	SetTestStepName(KLbsHybridUEAssitedMTLRNW);
       
    56 	iState = EInitializing;
       
    57 	iSessionId.SetSessionOwner(KRequestUid);
       
    58 	iSessionId.SetSessionNum(0x0004);
       
    59 	}
       
    60 
       
    61 
       
    62 void CT_LbsHybridUEAssistedMTLRNW::ConstructL()
       
    63 	{
       
    64 	// Create the base class objects.
       
    65 	CT_LbsHybridMTLRStep::ConstructL();
       
    66 	iController = CLbsPrivacyController::NewL(*this);
       
    67 	iProxy = CNetProtocolProxy::NewL();
       
    68 	}
       
    69 
       
    70 
       
    71 /**
       
    72  * Destructor
       
    73  */
       
    74 CT_LbsHybridUEAssistedMTLRNW::~CT_LbsHybridUEAssistedMTLRNW()
       
    75 	{
       
    76 	delete iController;
       
    77 	delete iProxy;
       
    78 	}
       
    79 
       
    80 TVerdict CT_LbsHybridUEAssistedMTLRNW::doTestStepL()
       
    81 	{
       
    82 	INFO_PRINTF1(_L("CT_LbsHybridUEAssistedMTLRNW::doTestStepL()"));	
       
    83 	// Stop the test if the preable failed
       
    84 	TESTL(TestStepResult() == EPass);
       
    85 
       
    86 	const TInt KTimeOut = 60*1000*1000;
       
    87 	const TInt KAdviceSystemStatusTimeout = 40*1000*1000;
       
    88 
       
    89 	// >> AdviceSystemStatus(0)
       
    90 	TESTL(iProxy->WaitForResponse(KAdviceSystemStatusTimeout) == ENetMsgGetCurrentCapabilitiesResponse);
       
    91 	CLbsNetworkProtocolBase::TLbsSystemStatus status;
       
    92 	TInt cleanupCnt;
       
    93 	cleanupCnt = iProxy->GetArgsLC(ENetMsgGetCurrentCapabilitiesResponse, &status); 
       
    94 	TESTL(status == CLbsNetworkProtocolBase::ESystemStatusNone);
       
    95 	CleanupStack::PopAndDestroy(cleanupCnt);
       
    96 
       
    97 // Initiate MTLR Start
       
    98 	// << ProcessStatusUpdate()
       
    99 	MLbsNetworkProtocolObserver::TLbsNetProtocolServiceMask activeServiceMask = MLbsNetworkProtocolObserver::EServiceMobileTerminated;
       
   100 	iProxy->CallL(ENetMsgProcessStatusUpdate, &activeServiceMask);
       
   101 
       
   102 	// << ProcessPrivacyRequest()
       
   103 	TBool emergency = ETrue;
       
   104 	TLbsNetPosRequestPrivacy privacy    = ArgUtils::Privacy();
       
   105 	TLbsExternalRequestInfo requestInfo = ArgUtils::RequestInfo();
       
   106 	iProxy->CallL(ENetMsgProcessPrivacyRequest, &iSessionId, &emergency, &privacy, &requestInfo);
       
   107 
       
   108 	// >> Callback from RespondNetworkLocationRequest(ERequestAccepted)
       
   109 	CheckForObserverEventTestsL(KTimeOut, *this);
       
   110 	
       
   111 	// >> Respond Privacy Request
       
   112 	TESTL(iProxy->WaitForResponse(KTimeOut) == ENetMsgRespondPrivacyRequest);
       
   113 	TLbsNetSessionId* getSessionId = NULL;
       
   114 	CLbsNetworkProtocolBase::TLbsPrivacyResponse getPrivacy;
       
   115 	cleanupCnt = iProxy->GetArgsLC(ENetMsgRespondPrivacyRequest, &getSessionId, &getPrivacy);
       
   116 	TESTL(getSessionId->SessionNum()==iSessionId.SessionNum());
       
   117 	TESTL(getPrivacy==CLbsNetworkProtocolBase::EPrivacyResponseAccepted);
       
   118 	CleanupStack::PopAndDestroy(cleanupCnt);
       
   119 // Initiate MTLR End
       
   120 
       
   121 // MTLR Reference Position Notification Start
       
   122 	// << ProcessLocationUpdate()
       
   123 	TPositionInfo positionInfo = ArgUtils::ReferencePositionInfo();
       
   124 	iProxy->CallL(ENetMsgProcessLocationUpdate, &iSessionId, &positionInfo);
       
   125 // MTLR Reference Position Notification Stop
       
   126 
       
   127 // MTLR Assistance Data Notification Start
       
   128 	// << ProcessAssistanceData()
       
   129 	TLbsAsistanceDataGroup dataRequestMask = EAssistanceDataReferenceTime;
       
   130 	RLbsAssistanceDataBuilderSet assistanceData;
       
   131 	ArgUtils::PopulateLC(assistanceData);
       
   132 	TInt reason = KErrNone;
       
   133 	iProxy->CallL(ENetMsgProcessAssistanceData, &dataRequestMask, &assistanceData, &reason);
       
   134 	CleanupStack::PopAndDestroy(); //assistanceData
       
   135 // MTLR Assistance Data Notification Stop
       
   136 
       
   137 // MTLR Network Location Request Start
       
   138 	// << ProcessLocationRequest()
       
   139 	MLbsNetworkProtocolObserver::TLbsNetProtocolService service = MLbsNetworkProtocolObserver::EServiceMobileTerminated;
       
   140 	TLbsNetPosRequestQuality quality = ArgUtils::QualityAlpha2(); 
       
   141 	TLbsNetPosRequestMethod method   = ArgUtils::RequestHybridMethod();
       
   142 	iProxy->CallL(ENetMsgProcessLocationRequest, &iSessionId, &emergency, &service, &quality, &method);
       
   143 // MTLR Network Location Request Stop
       
   144 
       
   145 	//Start the timer
       
   146 	TTime timerStart;
       
   147 	timerStart.HomeTime();
       
   148 	
       
   149 	// >> Callback from ProcessNetworkPostionUpdate(refPosition)
       
   150 	CheckForObserverEventTestsL(KTimeOut, *this);
       
   151 	
       
   152 	// >> RequestAssistanceData(0)
       
   153 	TESTL(iProxy->WaitForResponse(KTimeOut) == ENetMsgRequestAssistanceData); 
       
   154 	TLbsAsistanceDataGroup dataGroup;
       
   155 	cleanupCnt = iProxy->GetArgsLC(ENetMsgRequestAssistanceData, &dataGroup);
       
   156 	TESTL(dataGroup == EAssistanceDataNone);
       
   157 	CleanupStack::PopAndDestroy(cleanupCnt);
       
   158 
       
   159 	//Find the time elapsed from timer
       
   160 	TTimeIntervalMicroSeconds microseconds;
       
   161  	TTime timerStop;
       
   162  	timerStop.HomeTime();
       
   163  	microseconds = timerStop.MicroSecondsFrom(timerStart); 
       
   164 	TInt64 timeElapsed = microseconds.Int64();
       
   165 		
       
   166 	// >> RespondLocationRequest()
       
   167 	//Test that we do not get response before alpha2 has expired
       
   168 	TESTL(iProxy->WaitForResponse(ArgUtils::Alpha2()-timeElapsed-KDelta) == ENetMsgTimeoutExpired); 
       
   169 	TESTL(iProxy->WaitForResponse(2*KDelta) == ENetMsgRespondLocationRequest); 
       
   170 	getSessionId = NULL;
       
   171 	TInt getReason = KErrNone;
       
   172 	TPositionSatelliteInfo* getPositionInfo = NULL;
       
   173 	cleanupCnt = iProxy->GetArgsLC(ENetMsgRespondLocationRequest, &getSessionId, &getReason, &getPositionInfo);
       
   174 	TESTL(getSessionId->SessionNum() == iSessionId.SessionNum());
       
   175 	TESTL(getReason==KErrNone); 
       
   176 	CleanupStack::PopAndDestroy(cleanupCnt);
       
   177 		
       
   178 //NHR's timer alpha2 times out -> Hybrid Positioning Start
       
   179 	quality = ArgUtils::Quality();  // set timeout t = 1s, should eventually be read from ini file?
       
   180 	const TInt KN(2); // TODO number of times to send the measurement from GPS to NW, should eventually be read from ini file?
       
   181 	for(TInt i=0;i<KN;i++)
       
   182 		{
       
   183 		iProxy->CallL(ENetMsgProcessLocationRequest, &iSessionId, &emergency, &service, &quality, &method);
       
   184 		timerStart.HomeTime();
       
   185 	
       
   186 		// >> RequestAssistanceData(0)
       
   187 		TESTL(iProxy->WaitForResponse(KTimeOut) == ENetMsgRequestAssistanceData); 
       
   188 		cleanupCnt = iProxy->GetArgsLC(ENetMsgRequestAssistanceData, &dataGroup);
       
   189 		TESTL(dataGroup == EAssistanceDataNone);
       
   190 		CleanupStack::PopAndDestroy(cleanupCnt);
       
   191 	 	timerStop.HomeTime();
       
   192 	 	microseconds = timerStop.MicroSecondsFrom(timerStart); 
       
   193 		timeElapsed = microseconds.Int64();
       
   194 		
       
   195 		// >> RespondLocationRequest()
       
   196 		//Test that we do not get response before t has expired
       
   197 		TESTL(iProxy->WaitForResponse(KTTimeout-timeElapsed-KDelta) == ENetMsgTimeoutExpired);
       
   198 		TESTL(iProxy->WaitForResponse(2*KDelta) == ENetMsgRespondLocationRequest);
       
   199 		getSessionId = NULL;
       
   200 		getReason = KErrNone;
       
   201 		getPositionInfo = NULL;
       
   202 		cleanupCnt = iProxy->GetArgsLC(ENetMsgRespondLocationRequest, &getSessionId, &getReason, &getPositionInfo);
       
   203 		TESTL(getSessionId->SessionNum() == iSessionId.SessionNum());
       
   204 		TESTL(getReason==KErrNone);
       
   205 		CleanupStack::PopAndDestroy(cleanupCnt);
       
   206 		}
       
   207 //Hybrid Positioning Stop
       
   208 
       
   209 // MTLR Session Completion Start
       
   210 	// << ProcessSessionComplete()
       
   211 	iProxy->CallL(ENetMsgProcessSessionComplete, &iSessionId, &reason);
       
   212 
       
   213 	// << ProcessStatusUpdate()
       
   214 	MLbsNetworkProtocolObserver::TLbsNetProtocolServiceMask activeServiceMask2 = MLbsNetworkProtocolObserver::EServiceNone;	
       
   215 	iProxy->CallL(ENetMsgProcessStatusUpdate, &activeServiceMask2);
       
   216 
       
   217 	// >> Callback from ProcessRequestComplete()
       
   218 	CheckForObserverEventTestsL(KTimeOut, *this);
       
   219 
       
   220 	// Verify that the last callback was to ProcessSessionComplete()
       
   221 	TESTL(iState==ERequestComplete);
       
   222 // MTLR Session Completion Stop
       
   223 
       
   224 	return TestStepResult();
       
   225 	}
       
   226 
       
   227 void CT_LbsHybridUEAssistedMTLRNW::ProcessNetworkLocationRequest(TUint aRequestId, const TLbsExternalRequestInfo& /*aRequestInfo*/, const TNotificationType& /*aNotificationType*/)
       
   228 	{
       
   229 	INFO_PRINTF1(_L("&gt;&gt;CT_LbsHybridUEAssistedMTLRNW::ProcessNetworkLocationRequest()"));
       
   230 	TEST(iState==EInitializing);
       
   231 	iController->RespondNetworkLocationRequest(aRequestId, CLbsPrivacyController::ERequestAccepted);
       
   232 	iState = EPrivacyCheckOk;
       
   233 	ReturnToTestStep();
       
   234 	}
       
   235 
       
   236 void CT_LbsHybridUEAssistedMTLRNW::ProcessNetworkPositionUpdate(TUint /*aRequestId*/, const TPositionInfo& /*aPosInfo*/)
       
   237 	{
       
   238 	if(iState==EPrivacyCheckOk)
       
   239 		{
       
   240 		iState=ERefLocReceived;	
       
   241 		INFO_PRINTF1(_L("&gt;&gt;CT_LbsHybridUEAssistedMTLRNW::ProcessNetworkPositionUpdate(RefPosition)"));
       
   242 		}
       
   243 	else if(iState==ERefLocReceived)
       
   244 		{
       
   245 		WARN_PRINTF1(_L("&gt;&gt;Unexpected call: CT_LbsHybridUEAssistedMTLRNW::ProcessNetworkPositionUpdate(GPSLocation)"));	
       
   246 		// A second call to this callback should never occur - in this test case the GPS module
       
   247 		// is never able to produce a fix of sufficient quality - only positions of
       
   248 		// sufficient quality should cause this function to be called
       
   249 		TEST(EFalse);
       
   250 		}
       
   251 	ReturnToTestStep();
       
   252 	}
       
   253 
       
   254 void CT_LbsHybridUEAssistedMTLRNW::ProcessRequestComplete(TUint /*aRequestId*/, TInt /*aReason*/)
       
   255 	{
       
   256 	INFO_PRINTF1(_L("&gt;&gt;CT_LbsHybridUEAssistedMTLRNW::ProcessRequestComplete()"));
       
   257 	TEST(iState==ERefLocReceived);
       
   258 	iState=ERequestComplete; 
       
   259 	ReturnToTestStep();
       
   260 	}
       
   261 
       
   262 
       
   263 
       
   264