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/*
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* Copyright (c) 2007-2008 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: Implementation of the handover trigger
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*
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*/
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#include <e32base.h>
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#include <vccsubscribekeys.h>
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#include "vccuipsproperty.h"
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#include "vcchotrigger.h"
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#include "vccsignallevelhandler.h"
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#include "vccwlansignallevelhandler.h"
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#include "vccgsmsignallevelhandler.h"
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#include "rubydebug.h"
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#include "vcchopolicyreader.h"
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#include "vcccchmonitor.h"
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#include "vccengpsproperty.h"
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#include "cvccperformer.h"
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// Min. signal strength.
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static const TInt32 KStrengthMin = 110;
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// ======== MEMBER FUNCTIONS ========
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// ---------------------------------------------------------------------------
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// Symbian constructor
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// ---------------------------------------------------------------------------
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//
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EXPORT_C CVccHoTrigger* CVccHoTrigger::NewL()
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{
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RUBY_DEBUG_BLOCKL( "CVccHoTrigger::NewL" );
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CVccHoTrigger* self = new ( ELeave ) CVccHoTrigger();
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CleanupStack::PushL( self );
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self->ConstructL();
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CleanupStack::Pop( self );
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return self;
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}
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// ---------------------------------------------------------------------------
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// Destructor
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// ---------------------------------------------------------------------------
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//
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CVccHoTrigger::~CVccHoTrigger()
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{
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RUBY_DEBUG0( "CVccHoTrigger::~CVccHoTrigger() - ENTER" );
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delete iProperty;
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delete iWlanSignalLevelHandler;
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delete iGsmSignalLevelHandler;
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delete iHoPolicyReader;
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delete iCchMonitor;
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delete iEngPsProperty;
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RUBY_DEBUG0( "CVccHoTrigger::~CVccHoTrigger() - EXIT" );
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}
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// -----------------------------------------------------------------------------
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// CVccHoTrigger::CVccHoTrigger()
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// C++ default constructor can NOT contain any code, that might leave.
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// -----------------------------------------------------------------------------
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//
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CVccHoTrigger::CVccHoTrigger() : //: CActive( EPriorityStandard )
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iGsmClass( ESignalClassUndefined ),
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iWlanClass( ESignalClassUndefined ),
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iManualHoDone( EFalse ),
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iHoNotAllowed( EFalse ),
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iHoAllowedIfCsOriginated( ETrue )
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{
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RUBY_DEBUG_BLOCK( "CVccHoTrigger::CVccHoTrigger" );
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}
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// ---------------------------------------------------------------------------
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// 2nd phase constructor
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// ---------------------------------------------------------------------------
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//
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void CVccHoTrigger::ConstructL()
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{
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RUBY_DEBUG_BLOCKL( "CVccHoTrigger::ConstructL" );
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iProperty = CVccUiPsProperty::NewL();
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iHoPolicyReader = CVccHoPolicyReader::NewL();
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iHoPolicyReader->ReadSettingsL();
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iEngPsProperty = CVccEngPsProperty::NewL();
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iPolicy = iHoPolicyReader->HoPolicy();
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TSignalLevelParams gsm = iHoPolicyReader->CsSignalLevelParams();
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TSignalLevelParams wlan = iHoPolicyReader->PsSignalLevelParams();
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iWlanSignalLevelHandler =
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CVccWlanSignalLevelHandler::NewL( *this, wlan, *iEngPsProperty );
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iGsmSignalLevelHandler =
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CVccGsmSignalLevelHandler::NewL( *this, gsm );
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iHoAllowedIfCsOriginated = iPolicy.DtAllowedWhenCsOriginated();
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// Previous signal level class must be undefined
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iPreviousGsmClass = ESignalClassUndefined;
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iPreviousWlanClass = ESignalClassUndefined;
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// In the beginning the VoIP service is not available.
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// This will be changed when the cch monitor calls us
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// when the service is available.
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iCchServiceStatus = EServiceUnavailable;
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// CS network has signal level zero if the service is not
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// available.
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iCsSignalLevel = KStrengthMin;
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// We are not stared yet.
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iStarted = EFalse;
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// Update P&S keys to tell if we can do ho or not.
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UpdatePsKeysL();
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// Create the CCH monitor. We are the observer to be
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// notified when the status changes.
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iCchMonitor = CVccCchMonitor::NewL( *this );
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}
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// -----------------------------------------------------------------------------
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// Stop monitoring
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// -----------------------------------------------------------------------------
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//
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EXPORT_C void CVccHoTrigger::Stop()
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{
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RUBY_DEBUG_BLOCK( "CVccHoTrigger::Stop" );
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Stop( *iWhoStartedMe );
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}
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// -----------------------------------------------------------------------------
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// Stop monitoring
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// -----------------------------------------------------------------------------
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//
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EXPORT_C void CVccHoTrigger::Stop( CVccPerformer& aStopper )
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{
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RUBY_DEBUG_BLOCK( "CVccHoTrigger::Stop" );
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// If someone else that the one who started us tries
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// to stop us, we do not allow it.
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// There may be several performers that are in differnet state
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// and in those state they do not need trigger and thus try
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// to stop us.
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if ( iWhoStartedMe == &aStopper )
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{
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iWhoStartedMe = NULL;
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iStarted = EFalse;
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TRAP_IGNORE( UpdatePsKeysL() );
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TRAP_IGNORE( iProperty->NotifySubscriberL( EVccNoRequestOngoing ) );
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iWlanSignalLevelHandler->Stop();
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iGsmSignalLevelHandler->Stop();
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iGsmClass = ESignalClassUndefined;
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iWlanClass = ESignalClassUndefined;
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// Reset CS signal strength to min
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iCsSignalLevel = KStrengthMin;
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// Disable (do not send notifications).
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// The service is not actually disabled.
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// It will be disabled (if needed) when the monitor
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// is deleted.
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iCchMonitor->DisableService();
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RUBY_DEBUG0( " -Trigger stopped");
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}
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}
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// -----------------------------------------------------------------------------
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// Start monitoring
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// We must not leave.
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// -----------------------------------------------------------------------------
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//
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EXPORT_C void CVccHoTrigger::Start( CVccPerformer& aWhoStartedMe,
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TBool aCsOriginated )
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{
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RUBY_DEBUG_BLOCK( "CVccHoTrigger::Start" );
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if( iHoAllowedIfCsOriginated == EFalse && aCsOriginated )
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{
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RUBY_DEBUG0( "HO not allowed for CS originated calls" );
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Stop();
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return;
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}
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//anyone can start, but only the last one who started can stop the trigger
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iWhoStartedMe = &aWhoStartedMe;
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if( !iStarted )
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{
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// Previous signal level class must be undefined
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iPreviousGsmClass = ESignalClassUndefined;
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iPreviousWlanClass = ESignalClassUndefined;
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// read signal high/low levels, timers etc.
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TRAPD( err, iHoPolicyReader->ReadSettingsL() );
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RUBY_DEBUG1( "reading ho settings, err = %d", err );
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if ( !err )
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{
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TSignalLevelParams gsm = iHoPolicyReader->CsSignalLevelParams();
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TSignalLevelParams wlan = iHoPolicyReader->PsSignalLevelParams();
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iPolicy = iHoPolicyReader->HoPolicy();
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iWlanSignalLevelHandler->SetParams( wlan );
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iGsmSignalLevelHandler->SetParams( gsm );
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TRAPD( err_wlan, iWlanSignalLevelHandler->StartL() );
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RUBY_DEBUG1( "starting wlan signal level handler, err = %d", err_wlan );
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TRAPD( err_gsm, iGsmSignalLevelHandler->StartL() );
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RUBY_DEBUG1( "starting gsm signal level handler, err = %d", err_gsm );
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if ( !err_wlan && !err_gsm )
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{
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// Enable the VoIP service to be able to do VoIP calls.
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TRAPD( err_cch, iCchMonitor->EnableServiceL() );
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RUBY_DEBUG1( "enabling service, err = %d", err_cch );
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if ( !err_cch )
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{
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// Everything was started ok
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iStarted = ETrue;
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}
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}
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else
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{
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// Stop the handlers just in case either one was started
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iWlanSignalLevelHandler->Stop();
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iGsmSignalLevelHandler->Stop();
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}
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}
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TRAP_IGNORE( UpdatePsKeysL() );
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}
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}
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// -----------------------------------------------------------------------------
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// Set the domain type of the current call
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// -----------------------------------------------------------------------------
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//
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EXPORT_C void CVccHoTrigger::SetCurrentDomainType( TCallDomainType aDomainType )
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{
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RUBY_DEBUG_BLOCK( "CVccHoTrigger::SetCurrentDomainType" );
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iDomainType = aDomainType;
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}
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// -----------------------------------------------------------------------------
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// Set the preferred domain type
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// -----------------------------------------------------------------------------
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//
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EXPORT_C void CVccHoTrigger::SetPreferredDomainType(
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TVccHoPolicyPreferredDomain aDomainType )
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{
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RUBY_DEBUG1( "CVccHoTrigger::SetPreferredDomainType(%d)", aDomainType );
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iPolicy.SetPreferredDomain( aDomainType );
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}
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// -----------------------------------------------------------------------------
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// Set Immediate Domain Transfer on/off
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// -----------------------------------------------------------------------------
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//
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EXPORT_C void CVccHoTrigger::SetImmediateDomainTransfer( TBool aImmediateDT )
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{
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RUBY_DEBUG1( "CVccHoTrigger::SetImmediateDomainTransfer(%d)", aImmediateDT );
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iPolicy.SetDoImmediateHo( aImmediateDT );
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}
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// -----------------------------------------------------------------------------
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// Handles wlan signal change notifications
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// -----------------------------------------------------------------------------
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//
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void CVccHoTrigger::WlanSignalChanged(
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TInt32 /*aSignalStrength*/,
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TSignalStrengthClass aClass )
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{
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RUBY_DEBUG_BLOCK( "CVccHoTrigger::WlanSignalChanged" );
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//Store signal strength class to that we know later what is the strength
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iWlanClass = aClass;
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RUBY_DEBUG1( " -iWlanClass=%x ", iWlanClass );
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RUBY_DEBUG1( " -iDomainType=%x ", iDomainType );
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RUBY_DEBUG1( " -iGsmClass=%x ", iGsmClass );
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RUBY_DEBUG1( " -DoImmediateHO=%x ", iPolicy.DoImmediateHo() );
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RUBY_DEBUG1( " -PreferredDomain=%x ", iPolicy.PreferredDomain() );
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RUBY_DEBUG1( " -iGsmClass=%x ", iGsmClass );
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RUBY_DEBUG1( " -DoHoInHeldWaitingCalls=%x ", iPolicy.DoHoInHeldWaitingCalls() );
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RUBY_DEBUG0( "0 = GOOD, 1 = WEAK, 2 = UNDEFINED" );
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// If the previous class is the same as the new one
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// - do nothing.
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if ( iPreviousWlanClass == iWlanClass )
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{
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if (iWlanClass == ESignalClassWeak)
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{
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RUBY_DEBUG0( "Signal is still weak try again to do HO" );
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}
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else
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{
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RUBY_DEBUG0( "No change in WLAN signal class -> return" );
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return;
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}
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}
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else
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{
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iPreviousWlanClass = iWlanClass;
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}
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TriggerHo();
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}
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// -----------------------------------------------------------------------------
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// Handles GSM singnal change notifications
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// -----------------------------------------------------------------------------
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//
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void CVccHoTrigger::GsmSignalChanged(
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TInt32 aSignalStrength,
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TSignalStrengthClass aClass )
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{
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RUBY_DEBUG_BLOCK( "VccHoTrigger::GsmSignalChanged" );
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RUBY_DEBUG1( " -iCsSignalLevel=%d ", aSignalStrength );
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//Store signal strength class to that we know later what is the strength
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iGsmClass = aClass;
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// Save the signal strength as "status".
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// Zero (0) means that the service is not available.
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iCsSignalLevel = aSignalStrength;
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// Update P&S keys to tell if we can do ho or not.
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// If the signal level has gone to zero, we are unable to
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// do hondover.
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TVccHoStatus hoStatus( EVccHoStateUnknown );
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iEngPsProperty->GetCurrentHoStatus( hoStatus );
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if( hoStatus != EVccCsToPsHoStarted || hoStatus != EVccCsToPsHoInprogress
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|| hoStatus != EVccPsToCsHoStarted || hoStatus != EVccPsToCsHoInprogress )
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{
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RUBY_DEBUG0( "HO not in progress, updating keys" );
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TRAP_IGNORE( UpdatePsKeysL() );
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}
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RUBY_DEBUG1( " -iWlanClass=%x ", iWlanClass );
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RUBY_DEBUG1( " -iDomainType=%x ", iDomainType );
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RUBY_DEBUG1( " -iGsmClass=%x ", iGsmClass );
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RUBY_DEBUG1( " -DoImmediateHO=%x ", iPolicy.DoImmediateHo() );
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RUBY_DEBUG1( " -PreferredDomain=%x ", iPolicy.PreferredDomain() );
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RUBY_DEBUG1( " -DoHoInHeldWaitingCalls=%x ", iPolicy.DoHoInHeldWaitingCalls() );
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RUBY_DEBUG0( "0 = GOOD, 1 = WEAK, 2 = UNDEFINED" );
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// If the previous class is the same as the new one
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// - do nothing.
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if ( iPreviousGsmClass == iGsmClass && iWlanClass != ESignalClassWeak )
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{
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RUBY_DEBUG0( "No change in GSM signal class -> return" );
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return;
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}
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else
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{
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iPreviousGsmClass = iGsmClass;
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}
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TriggerHo();
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}
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// -----------------------------------------------------------------------------
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// Handles CCH monitor notifications
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// -----------------------------------------------------------------------------
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//
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void CVccHoTrigger::CchServiceStatusChanged( TServiceStatus aStatus )
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{
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RUBY_DEBUG_BLOCK( "VccHoTrigger::CchServiceStateChanged" );
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RUBY_DEBUG1( " -Service status = %d", aStatus );
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// Save the status
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iCchServiceStatus = aStatus;
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TRAP_IGNORE( UpdatePsKeysL() );
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TriggerHo();
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}
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// -----------------------------------------------------------------------------
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// Check if the CS or PS services are available or not
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// -----------------------------------------------------------------------------
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//
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TBool CVccHoTrigger::ServicesAvailable()
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{
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RUBY_DEBUG_BLOCK( "CVccHoTrigger::AreServicesAvailable" );
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TBool retVal( ETrue );
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// If PS service (VoIP service) is unavailable or
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// the CS service == 0 (i.e. signal level),
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// we cannot do handover.
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if ( iCchServiceStatus == EServiceUnavailable ||
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iCsSignalLevel == KStrengthMin )
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{
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RUBY_DEBUG0( " -VoIP/CS service(s) not available" );
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retVal = EFalse;
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}
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return retVal;
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}
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// -----------------------------------------------------------------------------
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// Update (write) service status state to P&S.
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// -----------------------------------------------------------------------------
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427 |
//
|
|
428 |
void CVccHoTrigger::UpdatePsKeysL()
|
|
429 |
{
|
|
430 |
RUBY_DEBUG_BLOCK( "CVccHoTrigger::UpdatePsKeysL" );
|
|
431 |
|
|
432 |
// If we are started and both services are available,
|
|
433 |
// handover can be done.
|
|
434 |
// Services available in CS means that we have
|
|
435 |
// signal strength != KStrengthMin (which is 110, returned
|
|
436 |
// from the CS signal level monitor).
|
|
437 |
|
|
438 |
RUBY_DEBUG1( " -iStarted = %d", iStarted );
|
|
439 |
RUBY_DEBUG1( " -iHoNotAllowed = %d", iHoNotAllowed );
|
|
440 |
RUBY_DEBUG1( " -Service status = %d (0=unavailable, 1=available)", iCchServiceStatus );
|
|
441 |
RUBY_DEBUG1( " -CS signal min level = 110, current level = %d", iCsSignalLevel );
|
|
442 |
|
|
443 |
if ( iStarted &&
|
|
444 |
( iCchServiceStatus == EServiceAvailable ) &&
|
|
445 |
( iCsSignalLevel != KStrengthMin ) &&
|
|
446 |
( !iHoNotAllowed ) )
|
|
447 |
{
|
|
448 |
RUBY_DEBUG0( " -We are started and both services are available" );
|
|
449 |
// Check HO direction restrictions
|
|
450 |
if ( ( iPolicy.AllowedDirection() & ECsToPsAllowed ) &&
|
|
451 |
( iPolicy.AllowedDirection() & EPsToCsAllowed ) )
|
|
452 |
{
|
|
453 |
if( iPolicy.DoHoInHeldWaitingCalls() )
|
|
454 |
{
|
|
455 |
RUBY_DEBUG0( " -Services available and ho allowed to both \
|
|
456 |
directions, also in multicall" );
|
|
457 |
iEngPsProperty->NotifySubscriberL( EVccHoStateIdle, KErrNone );
|
|
458 |
}
|
|
459 |
else
|
|
460 |
{
|
|
461 |
RUBY_DEBUG0( " -Services available and ho allowed to both \
|
|
462 |
directions but not in multicall" );
|
|
463 |
iEngPsProperty->NotifySubscriberL( EVccHoStateIdleIfSingleCall, KErrNone );
|
|
464 |
}
|
|
465 |
}
|
|
466 |
else if ( !( iPolicy.AllowedDirection() & ECsToPsAllowed ) &&
|
|
467 |
( iPolicy.AllowedDirection() & EPsToCsAllowed ) )
|
|
468 |
{
|
|
469 |
if( iPolicy.DoHoInHeldWaitingCalls() )
|
|
470 |
{
|
|
471 |
RUBY_DEBUG0( " -HO allowed only to CS" );
|
|
472 |
iEngPsProperty->NotifySubscriberL( EVccCsToPsNotAllowed, KErrNone );
|
|
473 |
}
|
|
474 |
else
|
|
475 |
{
|
|
476 |
RUBY_DEBUG0( " -HO allowed only to CS, in single call situation" );
|
|
477 |
iEngPsProperty->NotifySubscriberL( EVccHoAllowedToCsIfSingleCall, KErrNone );
|
|
478 |
}
|
|
479 |
}
|
|
480 |
else if ( !( iPolicy.AllowedDirection() & EPsToCsAllowed ) &&
|
|
481 |
( iPolicy.AllowedDirection() & ECsToPsAllowed ) )
|
|
482 |
{
|
|
483 |
if( iPolicy.DoHoInHeldWaitingCalls() )
|
|
484 |
{
|
|
485 |
RUBY_DEBUG0( " -HO allowed only to PS" );
|
|
486 |
iEngPsProperty->NotifySubscriberL( EVccPsToCsNotAllowed, KErrNone );
|
|
487 |
}
|
|
488 |
else
|
|
489 |
{
|
|
490 |
RUBY_DEBUG0( " -HO allowed only to PS, in single call situation" );
|
|
491 |
iEngPsProperty->NotifySubscriberL( EVccHoAllowedToPsIfSingleCall, KErrNone );
|
|
492 |
}
|
|
493 |
}
|
|
494 |
}
|
|
495 |
else
|
|
496 |
{
|
|
497 |
RUBY_DEBUG0( " -We are stopped or services are unavailable:" );
|
|
498 |
iEngPsProperty->NotifySubscriberL( EVccHoUnavailable, KErrNotReady );
|
|
499 |
}
|
|
500 |
}
|
|
501 |
|
|
502 |
// -----------------------------------------------------------------------------
|
|
503 |
// If manual HO is done, no automatic should be made.
|
|
504 |
// -----------------------------------------------------------------------------
|
|
505 |
//
|
|
506 |
EXPORT_C void CVccHoTrigger::ManualHoCallStarted()
|
|
507 |
{
|
|
508 |
RUBY_DEBUG_BLOCK( "CVccHoTrigger::ManualHoCallStarted" );
|
|
509 |
iManualHoDone = ETrue;
|
|
510 |
//notify Wlan Signal Level Handler so it can stop polling WLAN signal
|
|
511 |
iWlanSignalLevelHandler->SetManualHoDone( ETrue );
|
|
512 |
}
|
|
513 |
|
|
514 |
// -----------------------------------------------------------------------------
|
|
515 |
// After manual HO call has been released automatic HOs can be made again.
|
|
516 |
// -----------------------------------------------------------------------------
|
|
517 |
//
|
|
518 |
EXPORT_C void CVccHoTrigger::ManualHoCallReleased()
|
|
519 |
{
|
|
520 |
RUBY_DEBUG_BLOCK( "CVccHoTrigger::ManualHoCallReleased" );
|
|
521 |
iManualHoDone = EFalse;
|
|
522 |
|
|
523 |
iWlanSignalLevelHandler->SetManualHoDone( EFalse );
|
|
524 |
}
|
|
525 |
|
|
526 |
// -----------------------------------------------------------------------------
|
|
527 |
// During conference HO is not allowed
|
|
528 |
// -----------------------------------------------------------------------------
|
|
529 |
//
|
|
530 |
EXPORT_C void CVccHoTrigger::HoNotAllowedL()
|
|
531 |
{
|
|
532 |
RUBY_DEBUG_BLOCK( "CVccHoTrigger::HoNotAllowedL" );
|
|
533 |
iHoNotAllowed = ETrue;
|
|
534 |
UpdatePsKeysL();
|
|
535 |
}
|
|
536 |
|
|
537 |
// -----------------------------------------------------------------------------
|
|
538 |
// After conference HO is allowed again
|
|
539 |
// -----------------------------------------------------------------------------
|
|
540 |
//
|
|
541 |
EXPORT_C void CVccHoTrigger::HoAllowed()
|
|
542 |
{
|
|
543 |
RUBY_DEBUG_BLOCK( "CVccHoTrigger::HoAllowed" );
|
|
544 |
iHoNotAllowed = EFalse;
|
|
545 |
TRAP_IGNORE( UpdatePsKeysL() );
|
|
546 |
}
|
|
547 |
|
|
548 |
// -----------------------------------------------------------------------------
|
|
549 |
// Read settings
|
|
550 |
// -----------------------------------------------------------------------------
|
|
551 |
//
|
|
552 |
EXPORT_C void CVccHoTrigger::ReadHoAllowedWhenCsOriginatedSettingL()
|
|
553 |
{
|
|
554 |
iHoPolicyReader->ReadSettingsL();
|
|
555 |
iPolicy = iHoPolicyReader->HoPolicy();
|
|
556 |
iHoAllowedIfCsOriginated = iPolicy.DtAllowedWhenCsOriginated();
|
|
557 |
}
|
|
558 |
|
|
559 |
// -----------------------------------------------------------------------------
|
|
560 |
// Initiate the actual ho when its ok
|
|
561 |
// -----------------------------------------------------------------------------
|
|
562 |
//
|
|
563 |
void CVccHoTrigger::TriggerHo()
|
|
564 |
{
|
|
565 |
RUBY_DEBUG_BLOCK( "CVccHoTrigger::TriggerHo" );
|
|
566 |
|
|
567 |
RUBY_DEBUG1("Current domain is: %d", iDomainType);
|
|
568 |
//Check if manual ho is already made during this call and the
|
|
569 |
//service availability.
|
|
570 |
if( iManualHoDone || !ServicesAvailable() || iHoNotAllowed )
|
|
571 |
{
|
|
572 |
return;
|
|
573 |
}
|
|
574 |
|
|
575 |
//If immediate ho is "ON" do it first and then return.
|
|
576 |
if( iPolicy.DoImmediateHo() )
|
|
577 |
{
|
|
578 |
if ( DoImmediateHo() )
|
|
579 |
{
|
|
580 |
RUBY_DEBUG0( "VccHoTrigger::TriggerHo - immediate HO was initiated" );
|
|
581 |
return;
|
|
582 |
}
|
|
583 |
RUBY_DEBUG0( "VccHoTrigger::TriggerHo - no immediate HO" );
|
|
584 |
}
|
|
585 |
|
|
586 |
if ( ( iWlanClass == ESignalClassWeak || iCchServiceStatus == EServiceUnavailable )&&
|
|
587 |
iGsmClass == ESignalClassNormal &&
|
|
588 |
( iPolicy.AllowedDirection() & EPsToCsAllowed ) && iDomainType == ECallDomainTypePS )
|
|
589 |
{
|
|
590 |
RUBY_DEBUG0( "VccHoTrigger::WlanSignalChanged - NotifySubscriberL" );
|
|
591 |
|
|
592 |
// First empty the key, so that director
|
|
593 |
// gets notified about all changes
|
|
594 |
|
|
595 |
TRAP_IGNORE( iProperty->NotifySubscriberL( EVccNoRequestOngoing ) );
|
|
596 |
// Check whether HO is allowed in multicall situation
|
|
597 |
if( iPolicy.DoHoInHeldWaitingCalls() )
|
|
598 |
{
|
|
599 |
TRAP_IGNORE( iProperty->NotifySubscriberL(
|
|
600 |
EVccAutomaticStartPsToCsHoRequest ) );
|
|
601 |
}
|
|
602 |
else
|
|
603 |
{
|
|
604 |
TRAP_IGNORE( iProperty->NotifySubscriberL(
|
|
605 |
EVccAutomaticStartPsToCsHoRequestIfSingleCall ) );
|
|
606 |
}
|
|
607 |
|
|
608 |
}
|
|
609 |
|
|
610 |
else if ( iGsmClass == ESignalClassWeak &&
|
|
611 |
iWlanClass == ESignalClassNormal &&
|
|
612 |
( iPolicy.AllowedDirection() & ECsToPsAllowed ))
|
|
613 |
{
|
|
614 |
RUBY_DEBUG0( "VccHoTrigger::GsmSignalChanged - NotifySubscriberL" );
|
|
615 |
|
|
616 |
// First empty the key, so that director
|
|
617 |
// gets notified about all changes
|
|
618 |
|
|
619 |
TRAP_IGNORE( iProperty->NotifySubscriberL( EVccNoRequestOngoing ) );
|
|
620 |
// Check whether HO is allowed in multicall situation
|
|
621 |
if( iPolicy.DoHoInHeldWaitingCalls() )
|
|
622 |
{
|
|
623 |
TRAP_IGNORE( iProperty->NotifySubscriberL(
|
|
624 |
EVccAutomaticStartCsToPsHoRequest ) );
|
|
625 |
}
|
|
626 |
else
|
|
627 |
{
|
|
628 |
TRAP_IGNORE( iProperty->NotifySubscriberL(
|
|
629 |
EVccAutomaticStartCsToPsHoRequestIfSingleCall ) );
|
|
630 |
}
|
|
631 |
}
|
|
632 |
}
|
|
633 |
|
|
634 |
// -----------------------------------------------------------------------------
|
|
635 |
// Initiate immediate ho
|
|
636 |
// -----------------------------------------------------------------------------
|
|
637 |
//
|
|
638 |
TBool CVccHoTrigger::DoImmediateHo()
|
|
639 |
{
|
|
640 |
RUBY_DEBUG_BLOCK( "CVccHoTrigger::DoImmediateHo" );
|
|
641 |
TBool ret( EFalse );
|
|
642 |
if( ( iPolicy.PreferredDomain() == ECsPreferred ) &&
|
|
643 |
iGsmClass == ESignalClassNormal &&
|
|
644 |
( iPolicy.AllowedDirection() & EPsToCsAllowed ) )
|
|
645 |
{
|
|
646 |
// Current call is PS, CS signal is ok, preferred domain is CS
|
|
647 |
// and immediate HO is requested -> HANDOVER to CS
|
|
648 |
|
|
649 |
RUBY_DEBUG0( "VccHoTrigger::GsmSignalChanged - NotifySubscriberL ->\
|
|
650 |
IMMEDIATE HO to CS" );
|
|
651 |
|
|
652 |
// First empty the key, so that director gets
|
|
653 |
// notified about all changes
|
|
654 |
|
|
655 |
TRAP_IGNORE( iProperty->NotifySubscriberL( EVccNoRequestOngoing ) );
|
|
656 |
|
|
657 |
// Check whether HO is allowed in multicall situation
|
|
658 |
if( iPolicy.DoHoInHeldWaitingCalls() )
|
|
659 |
{
|
|
660 |
TRAP_IGNORE( iProperty->NotifySubscriberL(
|
|
661 |
EVccAutomaticStartPsToCsHoRequest ) );
|
|
662 |
ret = ETrue;
|
|
663 |
}
|
|
664 |
else
|
|
665 |
{
|
|
666 |
TRAP_IGNORE( iProperty->NotifySubscriberL(
|
|
667 |
EVccAutomaticStartPsToCsHoRequestIfSingleCall ) );
|
|
668 |
ret = ETrue;
|
|
669 |
}
|
|
670 |
}
|
|
671 |
|
|
672 |
else if ( (iPolicy.PreferredDomain() == EPsPreferred) &&
|
|
673 |
iWlanClass == ESignalClassNormal && iCchServiceStatus != EServiceUnavailable &&
|
|
674 |
( iPolicy.AllowedDirection() & ECsToPsAllowed ) && iDomainType != ECallDomainTypePS )
|
|
675 |
{
|
|
676 |
// Current call is CS, PS signal is ok, preferred domain is PS and
|
|
677 |
// immediate HO is requested -> HANDOVER to PS
|
|
678 |
|
|
679 |
RUBY_DEBUG0( "VccHoTrigger::WlanSignalChanged - NotifySubscriberL ->\
|
|
680 |
IMMEDIATE HO to PS" );
|
|
681 |
|
|
682 |
// First empty the key, so that director gets
|
|
683 |
// notified about all changes
|
|
684 |
|
|
685 |
TRAP_IGNORE( iProperty->NotifySubscriberL( EVccNoRequestOngoing ) );
|
|
686 |
|
|
687 |
// Check whether HO is allowed in multicall situation
|
|
688 |
if( iPolicy.DoHoInHeldWaitingCalls() )
|
|
689 |
{
|
|
690 |
TRAP_IGNORE( iProperty->NotifySubscriberL(
|
|
691 |
EVccAutomaticStartCsToPsHoRequest ) );
|
|
692 |
ret = ETrue;
|
|
693 |
}
|
|
694 |
else
|
|
695 |
{
|
|
696 |
TRAP_IGNORE( iProperty->NotifySubscriberL(
|
|
697 |
EVccAutomaticStartCsToPsHoRequestIfSingleCall ) );
|
|
698 |
ret = ETrue;
|
|
699 |
}
|
|
700 |
}
|
|
701 |
return ret;
|
|
702 |
}
|