25 #include <ns3/string.h> 27 #include <ns3/abort.h> 28 #include <ns3/pointer.h> 29 #include <ns3/lte-enb-rrc.h> 30 #include <ns3/epc-ue-nas.h> 31 #include <ns3/epc-enb-application.h> 32 #include <ns3/lte-ue-rrc.h> 33 #include <ns3/lte-ue-mac.h> 34 #include <ns3/lte-enb-mac.h> 35 #include <ns3/lte-enb-net-device.h> 36 #include <ns3/lte-enb-phy.h> 37 #include <ns3/lte-ue-phy.h> 38 #include <ns3/lte-spectrum-phy.h> 39 #include <ns3/lte-chunk-processor.h> 40 #include <ns3/multi-model-spectrum-channel.h> 41 #include <ns3/friis-spectrum-propagation-loss.h> 42 #include <ns3/trace-fading-loss-model.h> 43 #include <ns3/isotropic-antenna-model.h> 44 #include <ns3/lte-ue-net-device.h> 45 #include <ns3/ff-mac-scheduler.h> 46 #include <ns3/lte-ffr-algorithm.h> 47 #include <ns3/lte-handover-algorithm.h> 48 #include <ns3/lte-enb-component-carrier-manager.h> 49 #include <ns3/lte-ue-component-carrier-manager.h> 50 #include <ns3/lte-anr.h> 51 #include <ns3/lte-rlc.h> 52 #include <ns3/lte-rlc-um.h> 53 #include <ns3/lte-rlc-am.h> 54 #include <ns3/epc-enb-s1-sap.h> 55 #include <ns3/lte-rrc-protocol-ideal.h> 56 #include <ns3/lte-rrc-protocol-real.h> 57 #include <ns3/mac-stats-calculator.h> 58 #include <ns3/phy-stats-calculator.h> 59 #include <ns3/phy-tx-stats-calculator.h> 60 #include <ns3/phy-rx-stats-calculator.h> 61 #include <ns3/epc-helper.h> 63 #include <ns3/buildings-propagation-loss-model.h> 64 #include <ns3/lte-spectrum-value-helper.h> 65 #include <ns3/epc-x2.h> 66 #include <ns3/object-map.h> 67 #include <ns3/object-factory.h> 76 : m_fadingStreamsAssigned (false),
93 m_phyStats = CreateObject<PhyStatsCalculator> ();
96 m_macStats = CreateObject<MacStatsCalculator> ();
112 .AddConstructor<LteHelper> ()
113 .AddAttribute (
"Scheduler",
114 "The type of scheduler to be used for eNBs. " 115 "The allowed values for this attributes are the type names " 116 "of any class inheriting from ns3::FfMacScheduler.",
121 .AddAttribute (
"FfrAlgorithm",
122 "The type of FFR algorithm to be used for eNBs. " 123 "The allowed values for this attributes are the type names " 124 "of any class inheriting from ns3::LteFfrAlgorithm.",
129 .AddAttribute (
"HandoverAlgorithm",
130 "The type of handover algorithm to be used for eNBs. " 131 "The allowed values for this attributes are the type names " 132 "of any class inheriting from ns3::LteHandoverAlgorithm.",
137 .AddAttribute (
"PathlossModel",
138 "The type of pathloss model to be used. " 139 "The allowed values for this attributes are the type names " 140 "of any class inheriting from ns3::PropagationLossModel.",
144 .AddAttribute (
"FadingModel",
145 "The type of fading model to be used." 146 "The allowed values for this attributes are the type names " 147 "of any class inheriting from ns3::SpectrumPropagationLossModel." 148 "If the type is set to an empty string, no fading model is used.",
152 .AddAttribute (
"UseIdealRrc",
153 "If true, LteRrcProtocolIdeal will be used for RRC signaling. " 154 "If false, LteRrcProtocolReal will be used.",
158 .AddAttribute (
"AnrEnabled",
159 "Activate or deactivate Automatic Neighbour Relation function",
163 .AddAttribute (
"UsePdschForCqiGeneration",
164 "If true, DL-CQI will be calculated from PDCCH as signal and PDSCH as interference " 165 "If false, DL-CQI will be calculated from PDCCH as signal and PDCCH as interference ",
169 .AddAttribute (
"EnbComponentCarrierManager",
170 "The type of Component Carrier Manager to be used for eNBs. " 171 "The allowed values for this attributes are the type names " 172 "of any class inheriting ns3::LteEnbComponentCarrierManager.",
177 .AddAttribute (
"UeComponentCarrierManager",
178 "The type of Component Carrier Manager to be used for UEs. " 179 "The allowed values for this attributes are the type names " 180 "of any class inheriting ns3::LteUeComponentCarrierManager.",
181 StringValue (
"ns3::SimpleUeComponentCarrierManager"),
185 .AddAttribute (
"UseCa",
186 "If true, Carrier Aggregation feature is enabled and a valid Component Carrier Map is expected." 187 "If false, single carrier simulation.",
191 .AddAttribute (
"NumberOfComponentCarriers",
192 "Set the number of Component carrier to use " 193 "If it is more than one and m_useCa is false, it will raise an error ",
237 NS_LOG_LOGIC (
this <<
" using a SpectrumPropagationLossModel in DL");
242 NS_LOG_LOGIC (
this <<
" using a PropagationLossModel in DL");
252 NS_LOG_LOGIC (
this <<
" using a SpectrumPropagationLossModel in UL");
257 NS_LOG_LOGIC (
this <<
" using a PropagationLossModel in UL");
517 ") must be equal to number of carriers (" <<
521 std::map<uint8_t,Ptr<ComponentCarrierBaseStation> > ccMap;
527 cc->SetUlBandwidth (it->second.GetUlBandwidth ());
528 cc->SetDlBandwidth (it->second.GetDlBandwidth ());
529 cc->SetDlEarfcn (it->second.GetDlEarfcn ());
530 cc->SetUlEarfcn (it->second.GetUlEarfcn ());
531 cc->SetAsPrimary (it->second.IsPrimary ());
534 ccMap [it->first] = cc;
539 NS_ABORT_MSG_IF (
m_useCa && ccMap.size()<2,
"You have to either specify carriers or disable carrier aggregation");
542 for (
auto it = ccMap.begin (); it != ccMap.end (); ++it)
544 NS_LOG_DEBUG (
this <<
"component carrier map size " << (uint16_t) ccMap.size ());
550 dlPhy->SetHarqPhyModule (harq);
551 ulPhy->SetHarqPhyModule (harq);
552 phy->SetHarqPhyModule (harq);
556 ulPhy->AddCtrlSinrChunkProcessor (pCtrl);
561 ulPhy->AddDataSinrChunkProcessor (pData);
565 ulPhy->AddInterferenceDataChunkProcessor (pInterf);
571 NS_ASSERT_MSG (mm,
"MobilityModel needs to be set on node before calling LteHelper::InstallEnbDevice ()");
572 dlPhy->SetMobility (mm);
573 ulPhy->SetMobility (mm);
576 NS_ASSERT_MSG (antenna,
"error in creating the AntennaModel object");
577 dlPhy->SetAntenna (antenna);
578 ulPhy->SetAntenna (antenna);
583 DynamicCast<ComponentCarrierEnb> (it->second)->SetMac (
mac);
584 DynamicCast<ComponentCarrierEnb> (it->second)->SetFfMacScheduler (sched);
585 DynamicCast<ComponentCarrierEnb> (it->second)->SetFfrAlgorithm (ffrAlgorithm);
586 DynamicCast<ComponentCarrierEnb> (it->second)->SetPhy (
phy);
593 rrc->SetLteCcmRrcSapProvider (ccmEnbManager->GetLteCcmRrcSapProvider ());
594 ccmEnbManager->SetLteCcmRrcSapUser (rrc->GetLteCcmRrcSapUser ());
597 ccmEnbManager->SetNumberOfComponentCarriers (
m_noOfCcs);
599 rrc->ConfigureCarriers (ccMap);
604 rrcProtocol->SetLteEnbRrcSapProvider (rrc->GetLteEnbRrcSapProvider ());
605 rrc->SetLteEnbRrcSapUser (rrcProtocol->GetLteEnbRrcSapUser ());
606 rrc->AggregateObject (rrcProtocol);
607 rrcProtocol->SetCellId (cellId);
612 rrcProtocol->SetLteEnbRrcSapProvider (rrc->GetLteEnbRrcSapProvider ());
613 rrc->SetLteEnbRrcSapUser (rrcProtocol->GetLteEnbRrcSapUser ());
614 rrc->AggregateObject (rrcProtocol);
615 rrcProtocol->SetCellId (cellId);
621 rrc->GetAttribute (
"EpsBearerToRlcMapping", epsBearerToRlcMapping);
629 rrc->SetLteHandoverManagementSapProvider (handoverAlgorithm->GetLteHandoverManagementSapProvider ());
630 handoverAlgorithm->SetLteHandoverManagementSapUser (rrc->GetLteHandoverManagementSapUser ());
640 rrc->SetLteMacSapProvider (ccmEnbManager->GetLteMacSapProvider ());
643 for (
auto it = ccMap.begin (); it != ccMap.end (); ++it)
645 DynamicCast<ComponentCarrierEnb> (it->second)->GetPhy ()->SetLteEnbCphySapUser (rrc->GetLteEnbCphySapUser (it->first));
646 rrc->SetLteEnbCphySapProvider (DynamicCast<ComponentCarrierEnb> (it->second)->GetPhy ()->GetLteEnbCphySapProvider (), it->first);
648 rrc->SetLteEnbCmacSapProvider (DynamicCast<ComponentCarrierEnb> (it->second)->GetMac ()->GetLteEnbCmacSapProvider (),it->first );
649 DynamicCast<ComponentCarrierEnb> (it->second)->GetMac ()->SetLteEnbCmacSapUser (rrc->GetLteEnbCmacSapUser (it->first));
651 DynamicCast<ComponentCarrierEnb> (it->second)->GetPhy ()->SetComponentCarrierId (it->first);
652 DynamicCast<ComponentCarrierEnb> (it->second)->GetMac ()->SetComponentCarrierId (it->first);
654 DynamicCast<ComponentCarrierEnb> (it->second)->GetFfMacScheduler ()->SetLteFfrSapProvider (DynamicCast<ComponentCarrierEnb> (it->second)->GetFfrAlgorithm ()->GetLteFfrSapProvider ());
655 DynamicCast<ComponentCarrierEnb> (it->second)->GetFfrAlgorithm ()->SetLteFfrSapUser (DynamicCast<ComponentCarrierEnb> (it->second)->GetFfMacScheduler ()->GetLteFfrSapUser ());
656 rrc->SetLteFfrRrcSapProvider (DynamicCast<ComponentCarrierEnb> (it->second)->GetFfrAlgorithm ()->GetLteFfrRrcSapProvider (), it->first);
657 DynamicCast<ComponentCarrierEnb> (it->second)->GetFfrAlgorithm ()->SetLteFfrRrcSapUser (rrc->GetLteFfrRrcSapUser (it->first));
661 DynamicCast<ComponentCarrierEnb> (it->second)->GetPhy ()->SetLteEnbPhySapUser (DynamicCast<ComponentCarrierEnb> (it->second)->GetMac ()->GetLteEnbPhySapUser ());
662 DynamicCast<ComponentCarrierEnb> (it->second)->GetMac ()->SetLteEnbPhySapProvider (DynamicCast<ComponentCarrierEnb> (it->second)->GetPhy ()->GetLteEnbPhySapProvider ());
666 DynamicCast<ComponentCarrierEnb> (it->second)->GetMac ()->SetFfMacSchedSapProvider (DynamicCast<ComponentCarrierEnb> (it->second)->GetFfMacScheduler ()->GetFfMacSchedSapProvider ());
667 DynamicCast<ComponentCarrierEnb> (it->second)->GetMac ()->SetFfMacCschedSapProvider (DynamicCast<ComponentCarrierEnb> (it->second)->GetFfMacScheduler ()->GetFfMacCschedSapProvider ());
669 DynamicCast<ComponentCarrierEnb> (it->second)->GetFfMacScheduler ()->SetFfMacSchedSapUser (DynamicCast<ComponentCarrierEnb> (it->second)->GetMac ()->GetFfMacSchedSapUser ());
670 DynamicCast<ComponentCarrierEnb> (it->second)->GetFfMacScheduler ()->SetFfMacCschedSapUser (DynamicCast<ComponentCarrierEnb> (it->second)->GetMac ()->GetFfMacCschedSapUser ());
673 DynamicCast<ComponentCarrierEnb> (it->second)->GetMac ()->SetLteCcmMacSapUser (ccmEnbManager->GetLteCcmMacSapUser ());
674 ccmEnbManager->SetCcmMacSapProviders (it->first, DynamicCast<ComponentCarrierEnb> (it->second)->GetMac ()->GetLteCcmMacSapProvider ());
677 ccmTest = ccmEnbManager->SetMacSapProvider (it->first, DynamicCast<ComponentCarrierEnb> (it->second)->GetMac ()->GetLteMacSapProvider());
679 if (ccmTest ==
false)
691 std::map<uint8_t,Ptr<ComponentCarrierBaseStation> >::iterator it = ccMap.begin ();
694 dev->
SetAttribute (
"LteFfrAlgorithm",
PointerValue (DynamicCast<ComponentCarrierEnb> (it->second)->GetFfrAlgorithm ()));
699 rrc->SetLteAnrSapProvider (anr->GetLteAnrSapProvider ());
700 anr->SetLteAnrSapUser (rrc->GetLteAnrSapUser ());
704 for (it = ccMap.begin (); it != ccMap.end (); ++it)
706 Ptr<LteEnbPhy> ccPhy = DynamicCast<ComponentCarrierEnb> (it->second)->GetPhy ();
707 ccPhy->SetDevice (dev);
708 ccPhy->GetUlSpectrumPhy ()->SetDevice (dev);
709 ccPhy->GetDlSpectrumPhy ()->SetDevice (dev);
719 NS_LOG_WARN (
"DL propagation model does not have a Frequency attribute");
728 NS_LOG_WARN (
"UL propagation model does not have a Frequency attribute");
735 for (it = ccMap.begin (); it != ccMap.end (); ++it)
737 m_uplinkChannel->AddRx (DynamicCast<ComponentCarrierEnb>(it->second)->GetPhy ()->GetUlSpectrumPhy ());
745 NS_ASSERT_MSG (enbApp != 0,
"cannot retrieve EpcEnbApplication");
748 rrc->SetS1SapProvider (enbApp->GetS1SapProvider ());
749 enbApp->SetS1SapUser (rrc->GetS1SapUser ());
753 x2->SetEpcX2SapUser (rrc->GetEpcX2SapUser ());
754 rrc->SetEpcX2SapProvider (x2->GetEpcX2SapProvider ());
775 ") must be equal to number of carriers (" <<
778 std::map<uint8_t, Ptr<ComponentCarrierUe> > ueCcMap;
785 cc->SetUlBandwidth (it->second.GetUlBandwidth ());
786 cc->SetDlBandwidth (it->second.GetDlBandwidth ());
787 cc->SetDlEarfcn (it->second.GetDlEarfcn ());
788 cc->SetUlEarfcn (it->second.GetUlEarfcn ());
789 cc->SetAsPrimary (it->second.IsPrimary ());
806 dlPhy->SetHarqPhyModule (harq);
807 ulPhy->SetHarqPhyModule (harq);
808 phy->SetHarqPhyModule (harq);
812 dlPhy->AddRsPowerChunkProcessor (pRs);
816 dlPhy->AddInterferenceCtrlChunkProcessor (pInterf);
820 dlPhy->AddCtrlSinrChunkProcessor (pCtrl);
824 dlPhy->AddDataSinrChunkProcessor (pData);
834 dlPhy->AddInterferenceDataChunkProcessor (pDataInterf);
846 NS_ASSERT_MSG (mm,
"MobilityModel needs to be set on node before calling LteHelper::InstallUeDevice ()");
847 dlPhy->SetMobility (mm);
848 ulPhy->SetMobility (mm);
851 NS_ASSERT_MSG (antenna,
"error in creating the AntennaModel object");
852 dlPhy->SetAntenna (antenna);
853 ulPhy->SetAntenna (antenna);
855 it->second->SetPhy(
phy);
860 rrc->SetLteMacSapProvider (ccmUe->GetLteMacSapProvider ());
862 rrc->SetLteCcmRrcSapProvider (ccmUe->GetLteCcmRrcSapProvider ());
863 ccmUe->SetLteCcmRrcSapUser (rrc->GetLteCcmRrcSapUser ());
866 ccmUe->SetNumberOfComponentCarriers (
m_noOfCcs);
869 rrc->InitializeSap();
874 rrcProtocol->SetUeRrc (rrc);
875 rrc->AggregateObject (rrcProtocol);
876 rrcProtocol->SetLteUeRrcSapProvider (rrc->GetLteUeRrcSapProvider ());
877 rrc->SetLteUeRrcSapUser (rrcProtocol->GetLteUeRrcSapUser ());
882 rrcProtocol->SetUeRrc (rrc);
883 rrc->AggregateObject (rrcProtocol);
884 rrcProtocol->SetLteUeRrcSapProvider (rrc->GetLteUeRrcSapProvider ());
885 rrc->SetLteUeRrcSapUser (rrcProtocol->GetLteUeRrcSapUser ());
890 rrc->SetUseRlcSm (
false);
894 nas->SetAsSapProvider (rrc->GetAsSapProvider ());
895 rrc->SetAsSapUser (nas->GetAsSapUser ());
899 rrc->SetLteUeCmacSapProvider (it->second->GetMac ()->GetLteUeCmacSapProvider (), it->first);
900 it->second->GetMac ()->SetLteUeCmacSapUser (rrc->GetLteUeCmacSapUser (it->first));
901 it->second->GetMac ()->SetComponentCarrierId (it->first);
903 it->second->GetPhy ()->SetLteUeCphySapUser (rrc->GetLteUeCphySapUser (it->first));
904 rrc->SetLteUeCphySapProvider (it->second->GetPhy ()->GetLteUeCphySapProvider (), it->first);
905 it->second->GetPhy ()->SetComponentCarrierId (it->first);
906 it->second->GetPhy ()->SetLteUePhySapUser (it->second->GetMac ()->GetLteUePhySapUser ());
907 it->second->GetMac ()->SetLteUePhySapProvider (it->second->GetPhy ()->GetLteUePhySapProvider ());
909 bool ccmTest = ccmUe->SetComponentCarrierMacSapProviders (it->first, it->second->GetMac ()->GetLteMacSapProvider());
911 if (ccmTest ==
false)
923 dev->SetCcMap (ueCcMap);
926 dev->SetAttribute (
"LteUeComponentCarrierManager",
PointerValue (ccmUe));
934 ccPhy->SetDevice (dev);
935 ccPhy->GetUlSpectrumPhy ()->SetDevice (dev);
936 ccPhy->GetDlSpectrumPhy ()->SetDevice (dev);
943 nas->SetDevice (dev);
977 NS_FATAL_ERROR (
"This function is not valid without properly configured EPC");
981 if (ueLteDevice == 0)
983 NS_FATAL_ERROR (
"The passed NetDevice must be an LteUeNetDevice");
989 uint32_t dlEarfcn = ueLteDevice->GetDlEarfcn ();
990 ueNas->StartCellSelection (dlEarfcn);
996 m_epcHelper->ActivateEpsBearer (ueDevice, ueLteDevice->GetImsi (),
1021 ueNas->Connect (enbLteDevice->GetCellId (), enbLteDevice->GetDlEarfcn ());
1052 double minDistance = std::numeric_limits<double>::infinity ();
1058 if (distance < minDistance)
1060 minDistance = distance;
1061 closestEnbDevice = *i;
1065 Attach (ueDevice, closestEnbDevice);
1088 uint64_t imsi = ueDevice->GetObject<
LteUeNetDevice> ()->GetImsi ();
1089 uint8_t bearerId =
m_epcHelper->ActivateEpsBearer (ueDevice, imsi, tft, bearer);
1135 void ActivateDrb (uint64_t imsi, uint16_t cellId, uint16_t rnti);
1159 m_ueDevice (ueDevice),
1169 a->ActivateDrb (imsi, cellId, rnti);
1180 uint16_t rnti = ueRrc->GetRnti ();
1190 params.bearerId = 0;
1192 enbRrc->GetS1SapUser ()->DataRadioBearerSetupRequest (params);
1212 std::ostringstream path;
1213 path <<
"/NodeList/" << enbLteDevice->
GetNode ()->
GetId ()
1214 <<
"/DeviceList/" << enbLteDevice->
GetIfIndex ()
1215 <<
"/LteEnbRrc/ConnectionEstablished";
1249 NS_ASSERT_MSG (
m_epcHelper,
"Handover requires the use of the EPC - did you forget to call LteHelper::SetEpcHelper () ?");
1250 uint16_t targetCellId = targetEnbDev->GetObject<
LteEnbNetDevice> ()->GetCellId ();
1258 NS_ASSERT_MSG (
m_epcHelper,
"Handover requires the use of the EPC - did you forget to call LteHelper::SetEpcHelper () ?");
1268 uint16_t rnti = ueDev->GetObject<
LteUeNetDevice> ()->GetRrc ()->GetRnti ();
1269 sourceRrc->SendHandoverRequest (rnti, targetCellId);
1277 NS_ASSERT_MSG (bearerId != 1,
"Default bearer cannot be de-activated until and unless and UE is released");
1288 uint64_t imsi = ueDevice->GetObject<
LteUeNetDevice> ()->GetImsi ();
1289 uint16_t rnti = ueDevice->GetObject<
LteUeNetDevice> ()->GetRrc ()->GetRnti ();
1294 enbRrc->DoSendReleaseDataRadioBearer (imsi,rnti,bearerId);
1304 ccHelper->SetNumberOfComponentCarriers (
m_noOfCcs);
1305 ccHelper->SetUlEarfcn (ulEarfcn);
1306 ccHelper->SetDlEarfcn (dlEarfcn);
1307 ccHelper->SetDlBandwidth (dlbw);
1308 ccHelper->SetUlBandwidth (ulbw);
1439 m_rlcStats = CreateObject<RadioBearerStatsCalculator> (
"RLC");
1446 int64_t currentStream = stream;
1452 currentStream += tflm->AssignStreams (currentStream);
1463 std::map< uint8_t, Ptr <ComponentCarrierBaseStation> > tmpMap = lteEnb->
GetCcMap ();
1464 std::map< uint8_t, Ptr <ComponentCarrierBaseStation> >::iterator it;
1465 it = tmpMap.begin ();
1466 Ptr<LteSpectrumPhy> dlPhy = DynamicCast<ComponentCarrierEnb> (it->second)->GetPhy ()->GetDownlinkSpectrumPhy ();
1467 Ptr<LteSpectrumPhy> ulPhy = DynamicCast<ComponentCarrierEnb> (it->second)->GetPhy ()->GetUplinkSpectrumPhy ();
1468 currentStream += dlPhy->AssignStreams (currentStream);
1469 currentStream += ulPhy->AssignStreams (currentStream);
1474 std::map< uint8_t, Ptr <ComponentCarrierUe> > tmpMap = lteUe->GetCcMap ();
1475 std::map< uint8_t, Ptr <ComponentCarrierUe> >::iterator it;
1476 it = tmpMap.begin ();
1480 currentStream += dlPhy->AssignStreams (currentStream);
1481 currentStream += ulPhy->AssignStreams (currentStream);
1482 currentStream += ueMac->AssignStreams (currentStream);
1485 return (currentStream - stream);
1503 Config::Connect (
"/NodeList/*/DeviceList/*/ComponentCarrierMap/*/LteEnbPhy/DlPhyTransmission",
1510 Config::Connect (
"/NodeList/*/DeviceList/*/ComponentCarrierMapUe/*/LteUePhy/UlPhyTransmission",
1517 Config::Connect (
"/NodeList/*/DeviceList/*/ComponentCarrierMapUe/*/LteUePhy/DlSpectrumPhy/DlPhyReception",
1524 Config::Connect (
"/NodeList/*/DeviceList/*/ComponentCarrierMap/*/LteEnbPhy/UlSpectrumPhy/UlPhyReception",
1541 Config::Connect (
"/NodeList/*/DeviceList/*/ComponentCarrierMap/*/LteEnbMac/DlScheduling",
1549 Config::Connect (
"/NodeList/*/DeviceList/*/ComponentCarrierMap/*/LteEnbMac/UlScheduling",
1557 Config::Connect (
"/NodeList/*/DeviceList/*/ComponentCarrierMapUe/*/LteUePhy/ReportCurrentCellRsrpSinr",
1565 Config::Connect (
"/NodeList/*/DeviceList/*/ComponentCarrierMap/*/LteEnbPhy/ReportUeSinr",
1567 Config::Connect (
"/NodeList/*/DeviceList/*/ComponentCarrierMap/*/LteEnbPhy/ReportInterference",
1582 m_pdcpStats = CreateObject<RadioBearerStatsCalculator> (
"PDCP");
void SetFadingModel(std::string type)
Set the type of fading model to be used in both DL and UL.
Parameters passed to DataRadioBearerSetupRequest ()
static EventId Schedule(Time const &delay, FUNC f, Ts &&... args)
Schedule an event to expire after delay.
uint32_t GetDlEarfcn() const
std::string GetName(void) const
Get the name.
Ptr< Object > m_uplinkPathlossModel
The path loss model used in the uplink channel.
virtual void DoInitialize(void)
Initialize() implementation.
Simulation virtual time values and global simulation resolution.
void SetPathlossModelAttribute(std::string n, const AttributeValue &v)
Set an attribute for the path loss models to be created.
Prefix all trace prints with simulation node.
void EnableDlRxPhyTraces(void)
Enable trace sinks for DL reception PHY layer.
Smart pointer class similar to boost::intrusive_ptr.
RadioBearerStatsConnector m_radioBearerStatsConnector
Connects RLC and PDCP statistics containers to appropriate trace sources.
#define NS_LOG_FUNCTION(parameters)
If log level LOG_FUNCTION is enabled, this macro will output all input parameters separated by "...
Ptr< NetDevice > InstallSingleEnbDevice(Ptr< Node > n)
Create an eNodeB device (LteEnbNetDevice) on the given node.
The abstract base class of a handover algorithm that operates using the Handover Management SAP inter...
static TypeId GetTypeId(void)
Register this type.
AttributeValue implementation for Boolean.
NetDeviceContainer InstallEnbDevice(NodeContainer c)
Create a set of eNodeB devices.
virtual void GenerateMixedCqiReport(const SpectrumValue &sinr)
Create the mixed CQI report.
uint32_t GetId(void) const
#define NS_OBJECT_ENSURE_REGISTERED(type)
Register an Object subclass with the TypeId system.
std::vector< Ptr< Node > >::const_iterator Iterator
Node container iterator.
Iterator End(void) const
Get an iterator which indicates past-the-last NetDevice in the container.
NS_ASSERT_MSG(false, "Ipv4AddressGenerator::MaskToIndex(): Impossible")
void EnableLogComponents(void)
Enables full-blown logging for major components of the LENA architecture.
Hold variables of type string.
void HandoverRequest(Time hoTime, Ptr< NetDevice > ueDev, Ptr< NetDevice > sourceEnbDev, Ptr< NetDevice > targetEnbDev)
Manually trigger an X2-based handover.
bool m_fadingStreamsAssigned
True if a random variable stream number has been assigned for the fading model.
ObjectFactory m_fadingModelFactory
Factory of fading model object for both the downlink and uplink channels.
static void ActivateCallback(Ptr< DrbActivator > a, std::string context, uint64_t imsi, uint16_t cellId, uint16_t rnti)
Function hooked to the Enb RRC Connection Established trace source Fired upon successful RRC connecti...
virtual void SetNode(Ptr< Node > node)
Hold a value for an Attribute.
void EnableDlPhyTraces(void)
Enable trace sinks for DL PHY layer.
uint16_t rnti
the RNTI identifying the UE for which the DataRadioBearer is to be created
virtual void GenerateCtrlCqiReport(const SpectrumValue &sinr)
generate a CQI report based on the given SINR of Ctrl frame
virtual void ReceiveLteControlMessageList(std::list< Ptr< LteControlMessage > >)
PhySpectrum received a new list of LteControlMessage.
Ptr< const AttributeAccessor > MakeBooleanAccessor(T1 a1)
Create an AttributeAccessor for a class data member, or a lone class get functor or set method...
std::string GetEnbComponentCarrierManagerType() const
Callback< R > MakeBoundCallback(R(*fnPtr)(TX), ARG a1)
Make Callbacks with one bound argument.
DrbActivator(Ptr< NetDevice > ueDevice, EpsBearer bearer)
DrbActivator Constructor.
void SetUeAntennaModelAttribute(std::string n, const AttributeValue &v)
Set an attribute for the UE antenna model to be created.
static Ptr< EpcTft > Default()
creates a TFT matching any traffic
#define NS_ASSERT(condition)
At runtime, in debugging builds, if this condition is not true, the program prints the source file...
std::map< uint8_t, ComponentCarrier > m_componentCarrierPhyParams
This contains all the information about each component carrier.
void Attach(NetDeviceContainer ueDevices)
Enables automatic attachment of a set of UE devices to a suitable cell using Idle mode initial cell s...
#define NS_LOG_COMPONENT_DEFINE(name)
Define a Log component with a specific name.
void SetEnbComponentCarrierManagerAttribute(std::string n, const AttributeValue &v)
Set an attribute for the enb component carrier manager to be created.
void EnableRlcTraces(void)
Enable trace sinks for RLC layer.
bool m_usePdschForCqiGeneration
The UsePdschForCqiGeneration attribute.
void SetTypeId(TypeId tid)
Set the TypeId of the Objects to be created by this factory.
virtual uint32_t GetIfIndex(void) const
Ptr< PhyStatsCalculator > m_phyStats
Container of PHY layer statistics.
void EnablePdcpStats(Ptr< RadioBearerStatsCalculator > pdcpStats)
Enables trace sinks for PDCP layer.
Ptr< PhyRxStatsCalculator > m_phyRxStats
Container of PHY layer statistics related to reception.
std::string m_fadingModelType
Name of fading model type, e.g., "ns3::TraceFadingLossModel".
bool SetAttributeFailSafe(std::string name, const AttributeValue &value)
Set a single attribute without raising errors.
void SetUeDeviceAttribute(std::string n, const AttributeValue &v)
Set an attribute for the UE devices (LteUeNetDevice) to be created.
#define NS_LOG_INFO(msg)
Use NS_LOG to output a message of level LOG_INFO.
#define NS_FATAL_ERROR(msg)
Report a fatal error with a message and terminate.
void SetUeAntennaModelType(std::string type)
Set the type of antenna model to be used by UE devices.
ObjectFactory m_enbComponentCarrierManagerFactory
Factory of enb component carrier manager object.
virtual void DoDispose(void)
Destructor implementation.
#define NS_LOG_FUNCTION_NOARGS()
Output the name of the function.
virtual void ReportUlHarqFeedback(UlInfoListElement_s mes)
Report the uplink HARQ feedback generated by LteSpectrumPhy to MAC.
Ptr< MacStatsCalculator > m_macStats
Container of MAC layer statistics.
Iterator End(void) const
Get an iterator which indicates past-the-last Node in the container.
std::string GetHandoverAlgorithmType() const
int64_t AssignStreams(NetDeviceContainer c, int64_t stream)
Assign a fixed random variable stream number to the random variables used.
void ActivateDataRadioBearer(NetDeviceContainer ueDevices, EpsBearer bearer)
Activate a Data Radio Bearer on a given UE devices (for LTE-only simulation).
void SetEnbComponentCarrierManagerType(std::string type)
Set the type of carrier component algorithm to be used by eNodeB devices.
ObjectFactory m_channelFactory
Factory of both the downlink and uplink LTE channels.
uint8_t ActivateDedicatedEpsBearer(NetDeviceContainer ueDevices, EpsBearer bearer, Ptr< EpcTft > tft)
Activate a dedicated EPS bearer on a given set of UE devices.
void ChannelModelInitialization(void)
Function that performs a channel model initialization of all component carriers.
static Vector GetPosition(Ptr< Node > node)
Ptr< SpectrumChannel > GetDownlinkSpectrumChannel(void) const
void SetHandoverAlgorithmType(std::string type)
Set the type of handover algorithm to be used by eNodeB devices.
void EnableUlRxPhyTraces(void)
Enable trace sinks for UL reception PHY layer.
void SetFfrAlgorithmType(std::string type)
Set the type of FFR algorithm to be used by eNodeB devices.
static TypeId GetTypeId(void)
Get the type ID.
void SetSchedulerType(std::string type)
Set the type of scheduler to be used by eNodeB devices.
Ptr< RadioBearerStatsCalculator > m_rlcStats
Container of RLC layer statistics.
void EnablePdcpTraces(void)
Enable trace sinks for PDCP layer.
void AttachToClosestEnb(NetDeviceContainer ueDevices, NetDeviceContainer enbDevices)
Manual attachment of a set of UE devices to the network via the closest eNodeB (with respect to dista...
Ptr< const AttributeChecker > MakeStringChecker(void)
static void UlSchedulingCallback(Ptr< MacStatsCalculator > macStats, std::string path, uint32_t frameNo, uint32_t subframeNo, uint16_t rnti, uint8_t mcs, uint16_t size, uint8_t componentCarrierId)
Trace sink for the ns3::LteEnbMac::UlScheduling trace source.
Keep track of the current position and velocity of an object.
virtual void GenerateCtrlCqiReport(const SpectrumValue &sinr)
generate a CQI report based on the given SINR of Ctrl frame
Ptr< Object > m_downlinkPathlossModel
The path loss model used in the downlink channel.
ObjectFactory m_pathlossModelFactory
Factory of path loss model object.
void DeActivateDedicatedEpsBearer(Ptr< NetDevice > ueDevice, Ptr< NetDevice > enbDevice, uint8_t bearerId)
Manually trigger dedicated bearer de-activation at specific simulation time.
void LogComponentEnable(char const *name, enum LogLevel level)
Enable the logging output associated with that log component.
Ptr< NetDevice > m_ueDevice
UeNetDevice for which bearer will be activated.
void SetHandoverAlgorithmAttribute(std::string n, const AttributeValue &v)
Set an attribute for the handover algorithm to be created.
Hold variables of type enum.
void SetUeComponentCarrierManagerAttribute(std::string n, const AttributeValue &v)
Set an attribute for the ue component carrier manager to be created.
virtual void GenerateDataCqiReport(const SpectrumValue &sinr)
generate a CQI report based on the given SINR of Data frame (used for PUSCH CQIs) ...
Ptr< Object > Create(void) const
Create an Object instance of the configured TypeId.
uint16_t GetCellId() const
double CalculateDistance(const Vector3D &a, const Vector3D &b)
Iterator Begin(void) const
Get an iterator which refers to the first NetDevice in the container.
ObjectFactory m_ueComponentCarrierManagerFactory
Factory of ue component carrier manager object.
uint64_t m_imsi
imsi the unique UE identifier
void EnableRlcStats(Ptr< RadioBearerStatsCalculator > rlcStats)
Enables trace sinks for RLC layer.
void EnableTraces(void)
Enables trace sinks for PHY, MAC, RLC and PDCP.
Hold an unsigned integer type.
void SetSchedulerAttribute(std::string n, const AttributeValue &v)
Set an attribute for the scheduler to be created.
Ptr< NetDevice > InstallSingleUeDevice(Ptr< Node > n)
Create a UE device (LteUeNetDevice) on the given node.
static TypeId GetTypeId(void)
Get the type ID.
uint64_t m_imsiCounter
Keep track of the number of IMSI allocated.
ObjectFactory m_enbAntennaModelFactory
Factory of antenna object for eNodeB.
holds a vector of ns3::NetDevice pointers
void SetPathlossModelType(TypeId type)
Set the type of path loss model to be used for both DL and UL channels.
AttributeValue implementation for TypeId.
uint16_t m_cellIdCounter
Keep track of the number of cell ID allocated.
void EnablePhyTraces(void)
Enable trace sinks for PHY layer.
bool m_isAnrEnabled
The AnrEnabled attribute.
void SetUeComponentCarrierManagerType(std::string type)
Set the type of Component Carrier Manager to be used by Ue devices.
ObjectFactory m_handoverAlgorithmFactory
Factory of handover algorithm object.
fading loss model based on precalculated fading traces
DrbActivatior allows user to activate bearers for UEs when EPC is not used.
virtual void EnqueueDlHarqFeedback(DlInfoListElement_s mes)
Enqueue the downlink HARQ feedback generated by LteSpectrumPhy.
void Connect(std::string path, const CallbackBase &cb)
void SetEnbAntennaModelType(std::string type)
Set the type of antenna model to be used by eNodeB devices.
virtual void ReportInterference(const SpectrumValue &interf)
generate a report based on the linear interference and noise power perceived during DATA frame NOTE: ...
static TypeId GetTypeId()
static double GetCarrierFrequency(uint32_t earfcn)
Calculates the carrier frequency from the E-UTRA Absolute Radio Frequency Channel Number (EARFCN) acc...
uint16_t GetUlBandwidth() const
void SetSpectrumChannelType(std::string type)
Set the type of spectrum channel to be used in both DL and UL.
Ptr< T > GetObject(void) const
Get a pointer to the requested aggregated Object.
static TypeId GetTypeId(void)
Get the type ID.
void SetFadingModelAttribute(std::string n, const AttributeValue &v)
Set an attribute for the fading model to be created (both DL and UL).
void EnableDlMacTraces(void)
Enable trace sinks for DL MAC layer.
virtual void ReportDataInterference(const SpectrumValue &interf)
Create the mixed CQI report.
void LogComponentEnableAll(enum LogLevel level)
Enable the logging output for all registered log components.
Prefix all trace prints with simulation time.
Every class exported by the ns3 library is enclosed in the ns3 namespace.
The abstract base class of a Frequency Reuse algorithm.
keep track of a set of node pointers.
Hold objects of type Ptr<T>.
This entity is installed inside an eNB and provides the functionality for the X2 interface.
uint32_t GetUlEarfcn() const
void EnableUlTxPhyTraces(void)
Enable trace sinks for UL transmission PHY layer.
uint16_t m_noOfCcs
Number of component carriers that will be installed by default at eNodeB and UE devices.
void ReportUeSinr(uint16_t cellId, uint64_t imsi, uint16_t rnti, double sinrLinear, uint8_t componentCarrierId)
Notifies the stats calculator that an UE SINR report has occurred.
Ptr< SpectrumChannel > m_uplinkChannel
The uplink LTE channel used in the simulation.
static void DlPhyTransmissionCallback(Ptr< PhyTxStatsCalculator > phyTxStats, std::string path, PhyTransmissionStatParameters params)
trace sink
void SetCcMap(std::map< uint8_t, Ptr< ComponentCarrierBaseStation > > ccm)
Set the ComponentCarrier Map of the Enb.
Ptr< const AttributeChecker > MakeTypeIdChecker(void)
void AddX2Interface(NodeContainer enbNodes)
Create an X2 interface between all the eNBs in a given set.
std::string GetUeComponentCarrierManagerType() const
uint16_t GetDlBandwidth() const
void Set(std::string name, const AttributeValue &value)
Set an attribute to be set during construction.
This class contains the specification of EPS Bearers.
ObjectFactory m_schedulerFactory
Factory of MAC scheduler object.
void EnableUlPhyTraces(void)
Enable trace sinks for UL PHY layer.
void EnableDlTxPhyTraces(void)
Enable trace sinks for DL transmission PHY layer.
friend class ObjectFactory
Friends.
static void DlPhyReceptionCallback(Ptr< PhyRxStatsCalculator > phyRxStats, std::string path, PhyReceptionStatParameters params)
trace sink
void Receive(Ptr< Packet > p)
receive a packet from the lower layers in order to forward it to the upper layers ...
void EnableUlMacTraces(void)
Enable trace sinks for UL MAC layer.
static void UlPhyReceptionCallback(Ptr< PhyRxStatsCalculator > phyRxStats, std::string path, PhyReceptionStatParameters params)
trace sink
NS_LOG_LOGIC("Net device "<< nd<< " is not bridged")
This abstract base class identifies the interface by means of which the helper object can plug on the...
TypeId GetTypeId(void) const
Get the TypeId which will be created by this ObjectFactory.
std::string GetFfrAlgorithmType() const
Ptr< EpcHelper > m_epcHelper
Helper which provides implementation of core network.
Ptr< RadioBearerStatsCalculator > GetRlcStats(void)
NetDeviceContainer InstallUeDevice(NodeContainer c)
Create a set of UE devices.
Ptr< PhyTxStatsCalculator > m_phyTxStats
Container of PHY layer statistics related to transmission.
Ptr< RadioBearerStatsCalculator > GetPdcpStats(void)
static void UlPhyTransmissionCallback(Ptr< PhyTxStatsCalculator > phyTxStats, std::string path, PhyTransmissionStatParameters params)
trace sink
virtual void DoDispose(void)
Destructor implementation.
void DoComponentCarrierConfigure(uint32_t ulEarfcn, uint32_t dlEarfcn, uint16_t ulbw, uint16_t dlbw)
Configure the component carriers.
The abstract base class of a Component Carrier Manager* for UE that operates using the component carr...
std::string GetSchedulerType() const
Ptr< const AttributeAccessor > MakeTypeIdAccessor(T1 a1)
Create an AttributeAccessor for a class data member, or a lone class get functor or set method...
virtual void ReceiveLteControlMessageList(std::list< Ptr< LteControlMessage > > msgList)
Receive LTE control message list function.
ObjectFactory m_ffrAlgorithmFactory
Factory of FFR (frequency reuse) algorithm object.
This application is installed inside eNBs and provides the bridge functionality for user data plane p...
void DoHandoverRequest(Ptr< NetDevice > ueDev, Ptr< NetDevice > sourceEnbDev, uint16_t targetCellId)
The actual function to trigger a manual handover.
Models the propagation loss through a transmission medium.
static TypeId GetTypeId(void)
Get the type ID.
void SetEpcHelper(Ptr< EpcHelper > h)
Set the EpcHelper to be used to setup the EPC network in conjunction with the setup of the LTE radio ...
#define NS_ABORT_MSG_IF(cond, msg)
Abnormal program termination if a condition is true, with a message.
EpsBearer m_bearer
Configuration of bearer which will be activated.
#define NS_LOG_WARN(msg)
Use NS_LOG to output a message of level LOG_WARN.
Prefix all trace prints with function.
The class implements Component Carrier Manager (CCM) that operates using the Component Carrier Manage...
std::vector< Ptr< NetDevice > >::const_iterator Iterator
NetDevice container iterator.
#define NS_LOG_DEBUG(msg)
Use NS_LOG to output a message of level LOG_DEBUG.
virtual Ptr< Node > GetNode(void) const
uint32_t GetN(void) const
Get the number of Ptr<NetDevice> stored in this container.
Ptr< const AttributeChecker > MakeBooleanChecker(void)
void ActivateDrb(uint64_t imsi, uint16_t cellId, uint16_t rnti)
Procedure firstly checks if bearer was not activated, if IMSI from trace source equals configured one...
virtual void ReceivePss(uint16_t cellId, Ptr< SpectrumValue > p)
Receive PSS function.
void SetEnbAntennaModelAttribute(std::string n, const AttributeValue &v)
Set an attribute for the eNodeB antenna model to be created.
ObjectFactory m_ueNetDeviceFactory
Factory for LteUeNetDevice objects.
void SetSpectrumChannelAttribute(std::string n, const AttributeValue &v)
Set an attribute for the spectrum channel to be created (both DL and UL).
static void ReportCurrentCellRsrpSinrCallback(Ptr< PhyStatsCalculator > phyStats, std::string path, uint16_t cellId, uint16_t rnti, double rsrp, double sinr, uint8_t componentCarrierId)
trace sink
Defines the interface for spectrum-aware channel implementations.
void PhyPduReceived(Ptr< Packet > p)
PhySpectrum received a new PHY-PDU.
static void DlSchedulingCallback(Ptr< MacStatsCalculator > macStats, std::string path, DlSchedulingCallbackInfo dlSchedulingCallbackInfo)
Trace sink for the ns3::LteEnbMac::DlScheduling trace source.
void ReportInterference(uint16_t cellId, Ptr< SpectrumValue > interference)
Notifies the stats calculator that an interference report has occurred.
virtual void DoInitialize(void)
Initialize() implementation.
bool m_useCa
The UseCa attribute.
spectrum-aware propagation loss model
void EnableMacTraces(void)
Enable trace sinks for MAC layer.
A base class which provides memory management and object aggregation.
bool m_active
Bearer can be activated only once.
Ptr< SpectrumChannel > GetUplinkSpectrumChannel(void) const
Ptr< const AttributeAccessor > MakeStringAccessor(T1 a1)
Create an AttributeAccessor for a class data member, or a lone class get functor or set method...
std::map< uint8_t, Ptr< ComponentCarrierBaseStation > > GetCcMap(void) const
virtual void ReportRsReceivedPower(const SpectrumValue &power)
generate a report based on the linear RS power perceived during CTRL frame NOTE: used only by UE for ...
void DoDeActivateDedicatedEpsBearer(Ptr< NetDevice > ueDevice, Ptr< NetDevice > enbDevice, uint8_t bearerId)
The actual function to trigger a manual bearer de-activation.
Ptr< RadioBearerStatsCalculator > m_pdcpStats
Container of PDCP layer statistics.
This class can be used to hold variables of floating point type such as 'double' or 'float'...
Non-GBR TCP-based Video (Buffered Streaming, e.g., www, e-mail...)
ObjectFactory m_ueAntennaModelFactory
Factory of antenna object for UE.
void SetAttribute(std::string name, const AttributeValue &value)
Set a single attribute, raising fatal errors if unsuccessful.
The eNodeB device implementation.
Ptr< const AttributeAccessor > MakeUintegerAccessor(T1 a1)
Create an AttributeAccessor for a class data member, or a lone class get functor or set method...
A template-based reference counting class.
void PhyPduReceived(Ptr< Packet > p)
PhySpectrum received a new PHY-PDU.
a unique identifier for an interface.
void SetFfrAlgorithmAttribute(std::string n, const AttributeValue &v)
Set an attribute for the FFR algorithm to be created.
ObjectFactory m_enbNetDeviceFactory
Factory of LteEnbNetDevice objects.
void UpdateSinrPerceived(const SpectrumValue &sinr)
Ptr< SpectrumChannel > m_downlinkChannel
This function create the component carrier based on provided configuration parameters.
TypeId SetParent(TypeId tid)
Set the parent TypeId.
Ptr< SpectrumPropagationLossModel > m_fadingModel
The fading model used in both the downlink and uplink channels.
Callback< R, Ts... > MakeCallback(R(T::*memPtr)(Ts...), OBJ objPtr)
Build Callbacks for class method members which take varying numbers of arguments and potentially retu...
static Mac64Address Allocate(void)
Allocate a new Mac64Address.
void Initialize(void)
Invoke DoInitialize on all Objects aggregated to this one.
Iterator Begin(void) const
Get an iterator which refers to the first Node in the container.
virtual void ReportInterference(const SpectrumValue &interf)
generate a report based on the linear interference and noise power perceived during DATA frame NOTE: ...
void SetEnbDeviceAttribute(std::string n, const AttributeValue &v)
Set an attribute for the eNodeB devices (LteEnbNetDevice) to be created.
bool m_useIdealRrc
The UseIdealRrc attribute.
The LteUeNetDevice class implements the UE net device.