--- /dev/null Thu Jan 01 00:00:00 1970 +0000
+++ b/lbstest/lbstestproduct/lbshybridmolr/src/ctlbsptamolrpartialearlycomplete.cpp Tue Feb 02 01:50:39 2010 +0200
@@ -0,0 +1,290 @@
+// Copyright (c) 2007-2009 Nokia Corporation and/or its subsidiary(-ies).
+// All rights reserved.
+// This component and the accompanying materials are made available
+// under the terms of "Eclipse Public License v1.0"
+// which accompanies this distribution, and is available
+// at the URL "http://www.eclipse.org/legal/epl-v10.html".
+//
+// Initial Contributors:
+// Nokia Corporation - initial contribution.
+//
+// Contributors:
+//
+// Description:
+// ctlbsptamolrpartialearlycomplete..cpp
+// This is the class implementation for the MO-LR - Accurate GPS Result scenario Tests
+//
+//
+
+// LBS includes.
+#include <lbs/test/lbsnetprotocolproxy.h>
+#include <lbs/lbsnetprotocolbase.h>
+#include <lbs/lbsassistancedatabuilderset.h>
+
+// LBS test includes.
+#include "ctlbsptamolrpartialearlycomplete.h"
+#include <lbs/test/tlbsutils.h>
+#include "argutils.h"
+#include <lbs/test/activeyield.h>
+
+
+/**
+Static Constructor
+*/
+CT_LbsPTAMOLRPartialEarlyComplete* CT_LbsPTAMOLRPartialEarlyComplete::New(CT_LbsHybridMOLRServer& aParent)
+ {
+ // Note that we do not use ELeave.
+ // This means that having insufficient memory will return NULL;
+ CT_LbsPTAMOLRPartialEarlyComplete* testStep = new CT_LbsPTAMOLRPartialEarlyComplete(aParent);
+ if (testStep)
+ {
+ TInt err = KErrNone;
+
+ TRAP(err, testStep->ConstructL());
+ if (err)
+ {
+ delete testStep;
+ testStep = NULL;
+ }
+ }
+ return testStep;
+ }
+
+
+/**
+ * Constructor
+ */
+CT_LbsPTAMOLRPartialEarlyComplete::CT_LbsPTAMOLRPartialEarlyComplete(CT_LbsHybridMOLRServer& aParent) : CT_LbsHybridMOLRStep(aParent)
+ {
+ SetTestStepName(KLbsPTAMOLRPartialEarlyComplete);
+ iSessionId.SetSessionOwner(KRequestUid);
+ iSessionId.SetSessionNum(0x0005);
+ }
+
+
+void CT_LbsPTAMOLRPartialEarlyComplete::ConstructL()
+ {
+ // Create the base class objects.
+ CT_LbsHybridMOLRStep::ConstructL();
+ }
+
+
+/**
+ * Destructor
+ */
+CT_LbsPTAMOLRPartialEarlyComplete::~CT_LbsPTAMOLRPartialEarlyComplete()
+ {
+ }
+
+
+TVerdict CT_LbsPTAMOLRPartialEarlyComplete::doTestStepL()
+ {
+ INFO_PRINTF1(_L("CT_LbsPTAMOLRPartialEarlyComplete::doTestStepL()"));
+ // Stop the test if the preable failed
+ TESTL(TestStepResult() == EPass);
+
+ const TInt KTimeOut = 60*1000*1000;
+
+ // Create Network Protocol Proxy
+ CNetProtocolProxy* proxy = CNetProtocolProxy::NewL();
+ CleanupStack::PushL(proxy);
+
+ // >> AdviceSystemStatus(0) - GetCurrentCapabilitiesResponse
+ TESTL(proxy->WaitForResponse(KTimeOut) == ENetMsgGetCurrentCapabilitiesResponse);
+ CLbsNetworkProtocolBase::TLbsSystemStatus status;
+ TInt cleanupCnt;
+ cleanupCnt = proxy->GetArgsLC(ENetMsgGetCurrentCapabilitiesResponse, &status);
+ TESTL(status == CLbsNetworkProtocolBase::ESystemStatusNone);
+ CleanupStack::PopAndDestroy(cleanupCnt);
+
+
+ // Start Actual Test Step
+ RPositionServer server;
+ TESTL(KErrNone == server.Connect());
+ CleanupClosePushL(server);
+
+ RPositioner pos;
+ TESTL(KErrNone == pos.Open(server));
+ CleanupClosePushL(pos);
+
+ // Set the max fix time for the client request to ensure the location server does not complete the request too soon during the test.
+ TPositionUpdateOptions posOpts(TTimeIntervalMicroSeconds(0), TTimeIntervalMicroSeconds(KMOLRFixTime), 0 , ETrue);
+ pos.SetUpdateOptions(posOpts);
+
+ CPosServerWatcher *pWatch = CPosServerWatcher::NewLC(pos, *this);
+
+
+ // Client Send: Request a self-locate MoLr.
+ pWatch->IssueNotifyPositionUpdate();
+
+
+ //Recv: RequestSelfLocation()
+ TESTL(proxy->WaitForResponse(KTimeOut) == ENetMsgRequestSelfLocation);
+
+ // Process the response.
+ TLbsNetSessionId* sessionId = NULL;
+ TLbsNetPosRequestOptionsAssistance* opts = NULL;
+
+ cleanupCnt = proxy->GetArgsLC(ENetMsgRequestSelfLocation, &sessionId, &opts);
+
+ TBool qualitycheck = ArgUtils::CompareQuality( opts,
+ ETrue,
+ KMinHorizontalAcc, /* as read from quality profile on z: */
+ KMinVerticalAcc,
+ KMOLRFixTime,
+ 0,
+ EAssistanceDataReferenceTime,
+ (TPositionModuleInfo::ETechnologyNetwork
+ | TPositionModuleInfo::ETechnologyAssisted)
+ );
+ TESTL(qualitycheck);
+
+ iSessionId.SetSessionNum(sessionId->SessionNum());
+ iSessionId.SetSessionOwner(sessionId->SessionOwner());
+
+ CleanupStack::PopAndDestroy(cleanupCnt);
+
+
+ //Send: ProcessStatusUpdate(EServiceSelfLocation)
+ MLbsNetworkProtocolObserver::TLbsNetProtocolServiceMask activeServiceMask = MLbsNetworkProtocolObserver::EServiceSelfLocation;
+ proxy->CallL(ENetMsgProcessStatusUpdate, &activeServiceMask);
+
+
+ // Client Recv: (KPositionPartialUpdate, GPS Info)
+// in TAP mode dont get any AGPS psotions! CheckForObserverEventTestsL(KTimeOut, *this);
+// TESTL(iState == EGpsPartialInitReceived);
+//Client Send: Notify Position Update
+// pWatch->IssueNotifyPositionUpdate();
+
+
+ //Recv: RequestAssistanceData(Mask=0) - as result of the second client noitfy update request.
+ TLbsAsistanceDataGroup dataMask;
+ TESTL(proxy->WaitForResponse(KTimeOut) == ENetMsgRequestAssistanceData);
+ cleanupCnt = proxy->GetArgsLC(ENetMsgRequestAssistanceData, &dataMask);
+ TESTL(dataMask == EAssistanceDataNone);
+ CleanupStack::PopAndDestroy(cleanupCnt);
+
+
+ //Client Send: CompleteRequest
+ TESTL(pos.CompleteRequest(EPositionerNotifyPositionUpdate) == KErrNone);
+
+ // Client Recv: Second Partial update position - This should return with KPositionEarlyComplete
+ CheckForObserverEventTestsL(KTimeOut, *this);
+ TESTL(iState == EGpsPartialEarlyReceived);
+
+
+ //Send: ProcessLocationUpdate(SessionId, RefPosition)
+ TPositionInfo refPosInfo = ArgUtils::MolrReferencePositionInfo();
+ proxy->CallL(ENetMsgProcessLocationUpdate, &iSessionId, &refPosInfo);
+
+
+ //Send: ProcessAssistanceData()
+ dataMask = EAssistanceDataReferenceTime;
+ RLbsAssistanceDataBuilderSet assistanceData;
+ ArgUtils::PopulateLC(assistanceData);
+ TInt reason = KErrNone;
+ proxy->CallL(ENetMsgProcessAssistanceData, &dataMask, &assistanceData, &reason);
+ CleanupStack::PopAndDestroy();
+
+
+ //Send: ProcessLocationRequest(SessionId, HybridMode, alpha2)
+ TBool emergency = EFalse;
+ MLbsNetworkProtocolObserver::TLbsNetProtocolService service = MLbsNetworkProtocolObserver::EServiceSelfLocation;
+ TLbsNetPosRequestQuality quality = ArgUtils::Quality();
+ quality.SetMaxFixTime(ArgUtils::Alpha2());
+ TLbsNetPosRequestMethod method = ArgUtils::RequestHybridMethod();
+ proxy->CallL(ENetMsgProcessLocationRequest, &iSessionId, &emergency, &service, &quality, &method);
+
+
+ //Recv: RequestAssistanceData(Mask=0)
+ TESTL(proxy->WaitForResponse(KTimeOut) == ENetMsgRequestAssistanceData);
+ cleanupCnt = proxy->GetArgsLC(ENetMsgRequestAssistanceData, &dataMask);
+ TESTL(dataMask == EAssistanceDataNone);
+ CleanupStack::PopAndDestroy(cleanupCnt);
+
+ //Recv: Wait for and process the response (SessionId=1, KErrNone, GpsPos2)
+ TESTL(proxy->WaitForResponse(KTimeOut) == ENetMsgRespondLocationRequest);
+
+ TPositionInfo* positionInfo = NULL;
+ sessionId = NULL;
+ cleanupCnt = proxy->GetArgsLC(ENetMsgRespondLocationRequest, &sessionId, &reason, &positionInfo);
+ TESTL(positionInfo->PositionClassType() == (EPositionInfoClass|EPositionCourseInfoClass|EPositionSatelliteInfoClass));
+ TESTL(sessionId->SessionNum() == iSessionId.SessionNum());
+ TESTL(reason == KErrNone);
+ CleanupStack::PopAndDestroy(cleanupCnt);
+
+
+ //Send: ProcessLocationUpdate(SessionId, FinalNetworkPosition)
+ TPositionInfo networkPosInfo = ArgUtils::MolrNetworkPositionInfo();
+ proxy->CallL(ENetMsgProcessLocationUpdate, &iSessionId, &networkPosInfo);
+
+
+ //Send: ProcessSessionComplete(SessionId, KErrNone)
+ reason = KErrNone;
+ proxy->CallL(ENetMsgProcessSessionComplete, &iSessionId, &reason);
+
+
+ //Send: ENetMsgProcessStatusUpdate()
+ MLbsNetworkProtocolObserver::TLbsNetProtocolServiceMask serviceMask = MLbsNetworkProtocolObserver::EServiceNone;
+ proxy->CallL(ENetMsgProcessStatusUpdate, &serviceMask);
+
+ // Wait for 10 seconds to ensure no additional responses turn up.
+ TInt delta = 10 * 1000 * 1000;
+ TNetProtocolResponseType mType = proxy->WaitForResponse(delta);
+ TESTL(mType == ENetMsgTimeoutExpired);
+
+
+ //Done. Now cleanup...
+ CleanupStack::PopAndDestroy(pWatch);
+ CleanupStack::PopAndDestroy(); // pos
+ CleanupStack::PopAndDestroy(); // server
+ CleanupStack::PopAndDestroy(proxy);
+ return TestStepResult();
+ }
+
+
+// MPosServerObserver
+void CT_LbsPTAMOLRPartialEarlyComplete::OnGetLastKnownPosition(TInt32 /*aErr*/, const TPositionInfoBase& /*aPosInfo*/)
+ {
+ TEST(EFalse); // Shouldn't see this...
+ ReturnToTestStep();
+ }
+
+void CT_LbsPTAMOLRPartialEarlyComplete::OnNotifyPositionUpdate(TInt32 aErr, const TPositionInfoBase& aPosInfo)
+ {
+ // Verify position.
+ TEST(aPosInfo.PositionClassType() == EPositionInfoClass);
+
+ // Expecting first partial update, NaN position.
+ if (iState == EInitializing)
+ {
+ iState = EGpsPartialInitReceived;
+
+ TEST(aErr == KPositionPartialUpdate);
+ TEST(aPosInfo.PositionMode() == (TPositionModuleInfo::ETechnologyTerminal | TPositionModuleInfo::ETechnologyAssisted));
+
+ // check for nan in partial updates
+ const TPositionInfo posInfo = static_cast<const TPositionInfo&>(aPosInfo);
+ TESTL(ArgUtils::ComparePositionInfoToNan(posInfo));
+ }
+
+ // Expecting previous partial update due to CompleteRequest(...)
+ else if (iState == EGpsPartialInitReceived)
+ {
+ iState = EGpsPartialEarlyReceived;
+
+ TEST(aErr == KPositionEarlyComplete);
+ TEST(aPosInfo.PositionMode() == (TPositionModuleInfo::ETechnologyTerminal | TPositionModuleInfo::ETechnologyAssisted));
+
+ const TPositionInfo posInfo = static_cast<const TPositionInfo&>(aPosInfo);
+ TESTL(ArgUtils::ComparePositionInfoToNan(posInfo));
+ }
+
+ // Not expecting anything else.
+ else
+ {
+ TEST(EFalse);
+ }
+
+ ReturnToTestStep();
+ }