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// Copyright (c) 2007-2009 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 "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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// @file CTLbsHybridMTLRServer.cpp
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// This is the class implementation for the LBS Hybrid MOLR Test Server
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//
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//
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// System includes
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#include <e32std.h>
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#include <rsshared.h>
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// User includes
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#include "ctlbshybridmolrserver.h"
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#include "ctlbsstepsetuproamselflocate.h"
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#include "ctlbsstepconfighybridmodule.h"
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#include "ctlbsuebasedmolrself.h"
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#include "ctlbsueassistedmolrselfgpslate.h"
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#include "ctlbsueassistedmolrselfgpsinaccurate.h"
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#include "ctlbsstepsetupprotocolstub.h"
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#include "ctlbshybridueassistedmolrgpsok.h"
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#include "ctlbsueassistedmolrselfgpsinaccuratetimeout.h"
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#include "ctlbsueassistedmolrselfgpslatefacilitytimeout.h"
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#include "ctlbsautonomousmolrfutile.h"
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#include "ctlbshybridmolrfutile.h"
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#include "ctlbshybriduebasedmolrpartial.h"
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#include "ctlbshybridueassistedmolrpartial.h"
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#include "ctlbshybridueassistedmolrclienttimeout.h"
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#include "ctlbshybridueassistedmolrtimeout.h"
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#include "ctlbsmolrgpsoptions.h"
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#include "ctlbshybridueassistedmolrnogpsupdate.h"
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#include "ctlbsptamolrpartialearlycomplete.h"
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#include "ctlbsmolrtracking.h"
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#include "ctlbsmolrresetassistance.h"
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#include "ctlbsuebasedmolrselfinternalvaluestest.h"
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#include "ctlbssuplmolrtbfutilesp.h"
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#include "ctlbsuebasedmolronesl.h"
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#include "ctlbsmolrerrorassistance.h"
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#include "ctlbshybridueassistednpudposstatus.h"
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/**
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NewL()
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Constructs a CT_LbsHybridMOLRServer object.
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Uses two phase construction and leaves nothing on the CleanupStack.
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@internalTechnology
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@param none
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@return Created object of type CT_LbsClientServer
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@pre None
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@post None
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*/
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CT_LbsHybridMOLRServer* CT_LbsHybridMOLRServer::NewL()
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{
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CT_LbsHybridMOLRServer*server = new(ELeave) CT_LbsHybridMOLRServer();
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CleanupStack::PushL(server);
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server->ConstructL(KLbsHybridMOLRTestServer);
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CleanupStack::Pop(server);
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return server;
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}
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/**
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MainL()
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Description : This is the main function which installs the
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active scheduler and creates a server
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@internalTechnology
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@param none
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@return none
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@pre None
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@post None
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*/
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LOCAL_C void MainL()
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{
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CActiveScheduler* sched = new (ELeave) CActiveScheduler;
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CleanupStack::PushL(sched);
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CActiveScheduler::Install(sched);
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__UHEAP_MARK;
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// this registers the server with the active scheduler and calls SetActive
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CT_LbsHybridMOLRServer* server = CT_LbsHybridMOLRServer::NewL();
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// signal to the client that we are ready by
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// rendevousing process
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RProcess::Rendezvous(KErrNone);
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// run the active scheduler
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sched->Start();
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// clean up
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delete server;
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__UHEAP_MARKEND;
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CleanupStack::PopAndDestroy(sched);
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}
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/**
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E32Main()
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Description : It is the entry point
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@internalTechnology
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@param none
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@return Returns the error code
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@pre None
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@post None
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*/
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GLDEF_C TInt E32Main()
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{
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__UHEAP_MARK;
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CTrapCleanup* cleanup = CTrapCleanup::New();
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if(cleanup == NULL)
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{
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return KErrNoMemory;
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}
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TRAPD(err, MainL());
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delete cleanup;
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__UHEAP_MARKEND;
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return err;
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}
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CT_LbsHybridMOLRServer::~CT_LbsHybridMOLRServer()
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{
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}
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/**
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Function : CT_LbsHybridMOLRServer
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Description : Constructor
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@internalTechnology
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@param :
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@return : N/A
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@precondition : none
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@postcondition : none
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*/
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CT_LbsHybridMOLRServer::CT_LbsHybridMOLRServer()
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{
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}
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/**
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Function : ConstructL
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Description :
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@internalTechnology
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@param :
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@return : N/A
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@precondition : none
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@postcondition : none
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*/
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void CT_LbsHybridMOLRServer::ConstructL(const TDesC& aName)
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{
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CT_LbsServer::ConstructL(aName);
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iSharedData = CT_LbsHybridMOLRSharedData::NewL();
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}
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/**
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Function : CreateTestStep
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Description : Creates a test step based on the step name read from the script file
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@internalTechnology
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@param : aStepName The step name which needs to be created
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@return : Created object of type CTestStep
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@precondition : none
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@postcondition : none
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*/
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CTestStep* CT_LbsHybridMOLRServer::CreateTestStep(const TDesC& aStepName)
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{
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// NULL if insufficient memory. This suits the API.
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// Test case test steps, each test step supports one or more test cases.
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if (aStepName == KLbsStep_SetupRoamSelfLocate)
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{
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return CT_LbsStep_SetupRoamSelfLocate::New(*this);
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}
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else if(aStepName == KLbsStep_SetupProtocolStub)
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{
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return CT_LbsStep_SetupProtocolStub::New(*this);
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}
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else if(aStepName == KLbsStep_ConfigHybridModule)
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{
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return CT_LbsStep_ConfigHybridModule::New(*this);
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}
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else if(aStepName == KLbsUEBasedMOLRSelf)
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{
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return CT_LbsUEBasedMOLRSelf::New(*this);
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}
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else if (aStepName == KLbsUEAssistedMOLRSelfGPSLate)
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{
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return CT_LbsUEAssistedMOLRSelfGPSLate::New(*this);
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}
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else if (aStepName == KLbsUEAssistedMOLRSelfGPSInaccurate)
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{
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return CT_LbsUEAssistedMOLRSelfGPSInaccurate::New(*this);
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}
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else if(aStepName == KLbsUEAssistedMOLRSelfGPSInaccurateT)
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{
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return CT_LbsUEAssistedMOLRSelfGPSInaccurateT::New(*this);
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}
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else if(aStepName == KLbsHybridUEAssistedMOLRGPSOk)
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{
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return CT_LbsHybridUEAssistedMOLRGPSOk::New(*this);
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}
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else if (aStepName == KLbsAutonomousMOLRFutile)
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{
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return CT_LbsAutonomousMOLRFutile::New(*this);
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}
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else if (aStepName == KLbsHybridUEBasedMOLRPartial)
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{
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return CT_LbsHybridUEBasedMOLRPartial::New(*this);
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}
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else if (aStepName == KLbsHybridUEAssistedMOLRPartial)
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{
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return CT_LbsHybridUEAssistedMOLRPartial::New(*this);
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}
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else if (aStepName == KLbsUEAssistedMOLRSelfGPSLateFacTimeout)
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{
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return CT_LbsUEAssistedMOLRSelfGPSLateFacTimeout::New(*this);
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}
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else if (aStepName == KLbsHybridMOLRFutile)
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{
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return CT_LbsHybridMOLRFutile::New(*this);
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}
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else if (aStepName == KLbsUEAssistedMOLRClientTimeout)
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{
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return CT_LbsUEAssistedMOLRClientTimeout::New(*this);
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}
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else if (aStepName == KLbsHybridUEAssistedMOLRTimeOut)
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{
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return CT_LbsHybridUEAssistedMOLRTimeOut::New(*this);
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}
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else if (aStepName == KLbsMolrGpsOptions)
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{
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return CT_LbsMolrGpsOptions::New(*this);
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}
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else if (aStepName == KLbsHybridUEAssistedMOLRNoGPSUpdate)
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{
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return CT_LbsHybridUEAssistedMOLRNoGPSUpdate::New(*this);
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}
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else if (aStepName == KLbsPTAMOLRPartialEarlyComplete)
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{
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return CT_LbsPTAMOLRPartialEarlyComplete::New(*this);
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}
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else if (aStepName == KLbsMolrTracking)
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{
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return CT_LbsMolrTracking::New(*this);
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}
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else if (aStepName == KLbsMolrResetAssistance)
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{
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return CT_LbsMolrResetAssistance::New(*this);
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}
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else if (aStepName == KLbsUEBasedMOLRSelfInternalValueTest)
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{
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return CT_LbsUEBasedMOLRSelfInternalValueTest::New(*this);
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}
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else if (aStepName == KLbsSuplMolrTbFutileSp)
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{
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return CT_LbsSuplMolrTbFutileSp::New(*this);
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}
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else if (aStepName == KLbsUEBasedMOLROneSL)
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{
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return CT_LbsUEBasedMOLROneSL::New(*this);
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}
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else if (aStepName == KLbsMOLRErrorAssistance)
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{
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return CT_LbsMolrErrorAssistance::New(*this);
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}
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else if (aStepName == KLbsHybridUEAssistedNpudPosStatus)
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{
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return CT_LbsHybridUEAssistedNpudPosStatus::New(*this);
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}
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// Let base class handle any common test steps - will return NULL if test step is not supported.
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return CT_LbsServer::CreateTestStep(aStepName);
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}
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