A Discrete-Event Network Simulator
API
epc-sgw-application.cc
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1/*
2 * Copyright (c) 2017-2018 Centre Tecnologic de Telecomunicacions de Catalunya (CTTC)
3 *
4 * This program is free software; you can redistribute it and/or modify
5 * it under the terms of the GNU General Public License version 2 as
6 * published by the Free Software Foundation;
7 *
8 * This program is distributed in the hope that it will be useful,
9 * but WITHOUT ANY WARRANTY; without even the implied warranty of
10 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
11 * GNU General Public License for more details.
12 *
13 * You should have received a copy of the GNU General Public License
14 * along with this program; if not, write to the Free Software
15 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
16 *
17 * Author: Manuel Requena <manuel.requena@cttc.es>
18 */
19
20#include "ns3/epc-sgw-application.h"
21
22#include "ns3/epc-gtpu-header.h"
23#include "ns3/log.h"
24
25namespace ns3
26{
27
28NS_LOG_COMPONENT_DEFINE("EpcSgwApplication");
29
30NS_OBJECT_ENSURE_REGISTERED(EpcSgwApplication);
31
33 Ipv4Address s5Addr,
34 const Ptr<Socket> s5uSocket,
35 const Ptr<Socket> s5cSocket)
36 : m_s5Addr(s5Addr),
37 m_s5uSocket(s5uSocket),
38 m_s5cSocket(s5cSocket),
39 m_s1uSocket(s1uSocket),
40 m_gtpuUdpPort(2152), // fixed by the standard
41 m_gtpcUdpPort(2123), // fixed by the standard
42 m_teidCount(0)
43{
44 NS_LOG_FUNCTION(this << s1uSocket << s5Addr << s5uSocket << s5cSocket);
48}
49
51{
52 NS_LOG_FUNCTION(this);
53}
54
55void
57{
58 NS_LOG_FUNCTION(this);
60 m_s1uSocket = nullptr;
62 m_s5uSocket = nullptr;
64 m_s5cSocket = nullptr;
65}
66
69{
70 static TypeId tid = TypeId("ns3::EpcSgwApplication").SetParent<Object>().SetGroupName("Lte");
71 return tid;
72}
73
74void
76{
77 NS_LOG_FUNCTION(this << mmeS11Addr << s11Socket);
78 m_mmeS11Addr = mmeS11Addr;
79 m_s11Socket = s11Socket;
81}
82
83void
85{
86 NS_LOG_FUNCTION(this << pgwAddr);
87 m_pgwAddr = pgwAddr;
88}
89
90void
91EpcSgwApplication::AddEnb(uint16_t cellId, Ipv4Address enbAddr, Ipv4Address sgwAddr)
92{
93 NS_LOG_FUNCTION(this << cellId << enbAddr << sgwAddr);
94 EnbInfo enbInfo;
95 enbInfo.enbAddr = enbAddr;
96 enbInfo.sgwAddr = sgwAddr;
97 m_enbInfoByCellId[cellId] = enbInfo;
98}
99
100void
102{
103 NS_LOG_FUNCTION(this << socket);
104 NS_ASSERT(socket == m_s11Socket);
105 Ptr<Packet> packet = socket->Recv();
106 GtpcHeader header;
107 packet->PeekHeader(header);
108 uint16_t msgType = header.GetMessageType();
109
110 switch (msgType)
111 {
114 break;
115
118 break;
119
122 break;
123
126 break;
127
128 default:
129 NS_FATAL_ERROR("GTP-C message not supported");
130 break;
131 }
132}
133
134void
136{
137 NS_LOG_FUNCTION(this << socket);
138 NS_ASSERT(socket == m_s5uSocket);
139 Ptr<Packet> packet = socket->Recv();
140 GtpuHeader gtpu;
141 packet->RemoveHeader(gtpu);
142 uint32_t teid = gtpu.GetTeid();
143
144 Ipv4Address enbAddr = m_enbByTeidMap[teid];
145 NS_LOG_DEBUG("eNB " << enbAddr << " TEID " << teid);
146 SendToS1uSocket(packet, enbAddr, teid);
147}
148
149void
151{
152 NS_LOG_FUNCTION(this << socket);
153 NS_ASSERT(socket == m_s5cSocket);
154 Ptr<Packet> packet = socket->Recv();
155 GtpcHeader header;
156 packet->PeekHeader(header);
157 uint16_t msgType = header.GetMessageType();
158
159 switch (msgType)
160 {
163 break;
164
167 break;
168
171 break;
172
173 default:
174 NS_FATAL_ERROR("GTP-C message not supported");
175 break;
176 }
177}
178
179void
181{
182 NS_LOG_FUNCTION(this << socket);
183 NS_ASSERT(socket == m_s1uSocket);
184 Ptr<Packet> packet = socket->Recv();
185 GtpuHeader gtpu;
186 packet->RemoveHeader(gtpu);
187 uint32_t teid = gtpu.GetTeid();
188
189 SendToS5uSocket(packet, m_pgwAddr, teid);
190}
191
192void
194{
195 NS_LOG_FUNCTION(this << packet << enbAddr << teid);
196
197 GtpuHeader gtpu;
198 gtpu.SetTeid(teid);
199 // From 3GPP TS 29.281 v10.0.0 Section 5.1
200 // Length of the payload + the non obligatory GTP-U header
201 gtpu.SetLength(packet->GetSize() + gtpu.GetSerializedSize() - 8);
202 packet->AddHeader(gtpu);
203 m_s1uSocket->SendTo(packet, 0, InetSocketAddress(enbAddr, m_gtpuUdpPort));
204}
205
206void
208{
209 NS_LOG_FUNCTION(this << packet << pgwAddr << teid);
210
211 GtpuHeader gtpu;
212 gtpu.SetTeid(teid);
213 // From 3GPP TS 29.281 v10.0.0 Section 5.1
214 // Length of the payload + the non obligatory GTP-U header
215 gtpu.SetLength(packet->GetSize() + gtpu.GetSerializedSize() - 8);
216 packet->AddHeader(gtpu);
217 m_s5uSocket->SendTo(packet, 0, InetSocketAddress(pgwAddr, m_gtpuUdpPort));
218}
219
221// Process messages from the MME
223
224void
226{
227 NS_LOG_FUNCTION(this);
228
230 packet->RemoveHeader(msg);
231 uint64_t imsi = msg.GetImsi();
232 uint16_t cellId = msg.GetUliEcgi();
233 NS_LOG_DEBUG("cellId " << cellId << " IMSI " << imsi);
234
235 std::map<uint16_t, EnbInfo>::iterator enbit = m_enbInfoByCellId.find(cellId);
236 NS_ASSERT_MSG(enbit != m_enbInfoByCellId.end(), "unknown CellId " << cellId);
237 Ipv4Address enbAddr = enbit->second.enbAddr;
238 NS_LOG_DEBUG("eNB " << enbAddr);
239
240 GtpcHeader::Fteid_t mmeS11Fteid = msg.GetSenderCpFteid();
241 NS_ASSERT_MSG(mmeS11Fteid.interfaceType == GtpcHeader::S11_MME_GTPC, "wrong interface type");
242
244 msgOut.SetImsi(imsi);
245 msgOut.SetUliEcgi(cellId);
246
247 GtpcHeader::Fteid_t sgwS5cFteid;
249 sgwS5cFteid.teid = imsi;
250 m_mmeS11FteidBySgwS5cTeid[sgwS5cFteid.teid] = mmeS11Fteid;
251 sgwS5cFteid.addr = m_s5Addr;
252 msgOut.SetSenderCpFteid(sgwS5cFteid); // S5 SGW GTP-C TEID
253
254 std::list<GtpcCreateSessionRequestMessage::BearerContextToBeCreated> bearerContexts =
256 NS_LOG_DEBUG("BearerContextToBeCreated size = " << bearerContexts.size());
257 std::list<GtpcCreateSessionRequestMessage::BearerContextToBeCreated> bearerContextsOut;
258 for (auto& bearerContext : bearerContexts)
259 {
260 // simple sanity check. If you ever need more than 4M teids
261 // throughout your simulation, you'll need to implement a smarter teid
262 // management algorithm.
263 NS_ABORT_IF(m_teidCount == 0xFFFFFFFF);
264 uint32_t teid = ++m_teidCount;
265
266 NS_LOG_DEBUG(" TEID " << teid);
267 m_enbByTeidMap[teid] = enbAddr;
268
271 bearerContextOut.sgwS5uFteid.teid = teid; // S5U SGW FTEID
272 bearerContextOut.sgwS5uFteid.addr = enbit->second.sgwAddr;
273 bearerContextOut.epsBearerId = bearerContext.epsBearerId;
274 bearerContextOut.bearerLevelQos = bearerContext.bearerLevelQos;
275 bearerContextOut.tft = bearerContext.tft;
276 bearerContextsOut.push_back(bearerContextOut);
277 }
278
279 msgOut.SetBearerContextsToBeCreated(bearerContextsOut);
280
281 msgOut.SetTeid(0);
282 msgOut.ComputeMessageLength();
283
284 Ptr<Packet> packetOut = Create<Packet>();
285 packetOut->AddHeader(msgOut);
286 NS_LOG_DEBUG("Send CreateSessionRequest to PGW " << m_pgwAddr);
288}
289
290void
292{
293 NS_LOG_FUNCTION(this);
294
296 packet->RemoveHeader(msg);
297 uint64_t imsi = msg.GetImsi();
298 uint16_t cellId = msg.GetUliEcgi();
299 NS_LOG_DEBUG("cellId " << cellId << " IMSI " << imsi);
300
301 std::map<uint16_t, EnbInfo>::iterator enbit = m_enbInfoByCellId.find(cellId);
302 NS_ASSERT_MSG(enbit != m_enbInfoByCellId.end(), "unknown CellId " << cellId);
303 Ipv4Address enbAddr = enbit->second.enbAddr;
304 NS_LOG_DEBUG("eNB " << enbAddr);
305
307 msgOut.SetImsi(imsi);
308 msgOut.SetUliEcgi(cellId);
309
310 std::list<GtpcModifyBearerRequestMessage::BearerContextToBeModified> bearerContextsOut;
311 std::list<GtpcModifyBearerRequestMessage::BearerContextToBeModified> bearerContexts =
313 NS_LOG_DEBUG("BearerContextsToBeModified size = " << bearerContexts.size());
314 for (auto& bearerContext : bearerContexts)
315 {
316 NS_ASSERT_MSG(bearerContext.fteid.interfaceType == GtpcHeader::S1U_ENB_GTPU,
317 "Wrong FTEID in ModifyBearerRequest msg");
318 uint32_t teid = bearerContext.fteid.teid;
319 Ipv4Address enbAddr = bearerContext.fteid.addr;
320 NS_LOG_DEBUG("bearerId " << (uint16_t)bearerContext.epsBearerId << " TEID " << teid);
321 std::map<uint32_t, Ipv4Address>::iterator addrit = m_enbByTeidMap.find(teid);
322 NS_ASSERT_MSG(addrit != m_enbByTeidMap.end(), "unknown TEID " << teid);
323 addrit->second = enbAddr;
325 bearerContextOut.epsBearerId = bearerContext.epsBearerId;
327 bearerContextOut.fteid.addr = m_s5Addr;
328 bearerContextOut.fteid.teid = bearerContext.fteid.teid;
329
330 bearerContextsOut.push_back(bearerContextOut);
331 }
332
333 msgOut.SetTeid(imsi);
334 msgOut.ComputeMessageLength();
335
336 Ptr<Packet> packetOut = Create<Packet>();
337 packetOut->AddHeader(msgOut);
338 NS_LOG_DEBUG("Send ModifyBearerRequest to PGW " << m_pgwAddr);
340}
341
342void
344{
345 NS_LOG_FUNCTION(this);
346
348 packet->RemoveHeader(msg);
349
350 std::list<GtpcDeleteBearerCommandMessage::BearerContext> bearerContextsOut;
351 for (auto& bearerContext : msg.GetBearerContexts())
352 {
353 NS_LOG_DEBUG("ebid " << (uint16_t)bearerContext.m_epsBearerId);
355 bearerContextOut.m_epsBearerId = bearerContext.m_epsBearerId;
356 bearerContextsOut.push_back(bearerContextOut);
357 }
358
360 msgOut.SetBearerContexts(bearerContextsOut);
361 msgOut.SetTeid(msg.GetTeid());
362 msgOut.ComputeMessageLength();
363
364 Ptr<Packet> packetOut = Create<Packet>();
365 packetOut->AddHeader(msgOut);
366 NS_LOG_DEBUG("Send DeleteBearerCommand to PGW " << m_pgwAddr);
368}
369
370void
372{
373 NS_LOG_FUNCTION(this);
374
376 packet->RemoveHeader(msg);
378 msgOut.SetEpsBearerIds(msg.GetEpsBearerIds());
379 msgOut.SetTeid(msg.GetTeid());
380 msgOut.ComputeMessageLength();
381
382 Ptr<Packet> packetOut = Create<Packet>();
383 packetOut->AddHeader(msgOut);
384 NS_LOG_DEBUG("Send DeleteBearerResponse to PGW " << m_pgwAddr);
386}
387
389// Process messages received from the PGW
391
392void
394{
395 NS_LOG_FUNCTION(this);
396
398 packet->RemoveHeader(msg);
399
400 GtpcHeader::Fteid_t pgwS5cFteid = msg.GetSenderCpFteid();
401 NS_ASSERT_MSG(pgwS5cFteid.interfaceType == GtpcHeader::S5_PGW_GTPC, "wrong interface type");
402
405
406 uint32_t teid = msg.GetTeid();
408
409 std::list<GtpcCreateSessionResponseMessage::BearerContextCreated> bearerContexts =
411 NS_LOG_DEBUG("BearerContextsCreated size = " << bearerContexts.size());
412 std::list<GtpcCreateSessionResponseMessage::BearerContextCreated> bearerContextsOut;
413 for (auto& bearerContext : bearerContexts)
414 {
417 bearerContextOut.fteid.teid = bearerContext.fteid.teid;
418 bearerContextOut.fteid.addr = m_s5Addr;
419 bearerContextOut.epsBearerId = bearerContext.epsBearerId;
420 bearerContextOut.bearerLevelQos = bearerContext.bearerLevelQos;
421 bearerContextOut.tft = bearerContext.tft;
422 bearerContextsOut.push_back(bearerContext);
423 }
424 msgOut.SetBearerContextsCreated(bearerContextsOut);
425
426 msgOut.SetTeid(mmeS11Fteid.teid);
427 msgOut.ComputeMessageLength();
428
429 Ptr<Packet> packetOut = Create<Packet>();
430 packetOut->AddHeader(msgOut);
431 NS_LOG_DEBUG("Send CreateSessionResponse to MME " << mmeS11Fteid.addr);
432 m_s11Socket->SendTo(packetOut, 0, InetSocketAddress(mmeS11Fteid.addr, m_gtpcUdpPort));
433}
434
435void
437{
438 NS_LOG_FUNCTION(this);
439
441 packet->RemoveHeader(msg);
442
445 msgOut.SetTeid(msg.GetTeid());
446 msgOut.ComputeMessageLength();
447
448 Ptr<Packet> packetOut = Create<Packet>();
449 packetOut->AddHeader(msgOut);
450 NS_LOG_DEBUG("Send ModifyBearerResponse to MME " << m_mmeS11Addr);
452}
453
454void
456{
457 NS_LOG_FUNCTION(this);
458
460 packet->RemoveHeader(msg);
461
463 msgOut.SetEpsBearerIds(msg.GetEpsBearerIds());
464 msgOut.SetTeid(msg.GetTeid());
465 msgOut.ComputeMessageLength();
466
467 Ptr<Packet> packetOut = Create<Packet>();
468 packetOut->AddHeader(msgOut);
469 NS_LOG_DEBUG("Send DeleteBearerRequest to MME " << m_mmeS11Addr);
471}
472
473} // namespace ns3
Ptr< Socket > m_s5cSocket
UDP socket to send/receive GTP-C packets to/from the S5 interface.
void SendToS1uSocket(Ptr< Packet > packet, Ipv4Address enbS1uAddress, uint32_t teid)
Send a data packet to an eNB via the S1-U interface.
uint16_t m_gtpuUdpPort
UDP port to be used for GTP-U.
std::map< uint32_t, GtpcHeader::Fteid_t > m_mmeS11FteidBySgwS5cTeid
MME S11 FTEID by SGW S5C TEID.
void DoRecvModifyBearerRequest(Ptr< Packet > packet)
Process GTP-C Modify Bearer Request message.
void DoRecvCreateSessionResponse(Ptr< Packet > packet)
Process GTP-C Create Session Response message.
Ipv4Address m_mmeS11Addr
MME address in the S11 interface.
void DoRecvDeleteBearerRequest(Ptr< Packet > packet)
Process GTP-C Delete Bearer Request message.
void AddMme(Ipv4Address mmeS11Addr, Ptr< Socket > s11Socket)
Let the SGW be aware of an MME.
void DoRecvDeleteBearerCommand(Ptr< Packet > packet)
Process GTP-C Delete Bearer Command message.
void RecvFromS5cSocket(Ptr< Socket > socket)
Method to be assigned to the recv callback of the S5-C socket.
~EpcSgwApplication() override
Destructor.
void SendToS5uSocket(Ptr< Packet > packet, Ipv4Address pgwAddr, uint32_t teid)
Send a data packet to the PGW via the S5 interface.
void DoRecvCreateSessionRequest(Ptr< Packet > packet)
Process GTP-C Create Session Request message.
EpcSgwApplication(const Ptr< Socket > s1uSocket, Ipv4Address s5Addr, const Ptr< Socket > s5uSocket, const Ptr< Socket > s5cSocket)
Constructor that binds callback methods of sockets.
void AddPgw(Ipv4Address pgwAddr)
Let the SGW be aware of a PGW.
void RecvFromS5uSocket(Ptr< Socket > socket)
Method to be assigned to the recv callback of the S5-U socket.
std::map< uint32_t, Ipv4Address > m_enbByTeidMap
Map for eNB address by TEID.
Ptr< Socket > m_s1uSocket
UDP socket to send/receive GTP-U packets to/from the S1-U interface.
Ptr< Socket > m_s11Socket
UDP socket to send/receive control messages to/from the S11 interface.
std::map< uint16_t, EnbInfo > m_enbInfoByCellId
Map for eNB info by cell ID.
uint32_t m_teidCount
TEID count.
void RecvFromS11Socket(Ptr< Socket > socket)
Method to be assigned to the recv callback of the S11 socket.
Ipv4Address m_s5Addr
SGW address in the S5 interface.
uint16_t m_gtpcUdpPort
UDP port to be used for GTP-C.
void RecvFromS1uSocket(Ptr< Socket > socket)
Method to be assigned to the recv callback of the S1-U socket.
void DoDispose() override
Destructor implementation.
void DoRecvDeleteBearerResponse(Ptr< Packet > packet)
Process GTP-C Delete Bearer Response message.
Ptr< Socket > m_s5uSocket
UDP socket to send/receive GTP-U packets to/from the S5 interface.
Ipv4Address m_pgwAddr
PGW address in the S5 interface.
void DoRecvModifyBearerResponse(Ptr< Packet > packet)
Process GTP-C Modify Bearer Response message.
void AddEnb(uint16_t cellId, Ipv4Address enbAddr, Ipv4Address sgwAddr)
Let the SGW be aware of a new eNB.
static TypeId GetTypeId()
Get the type ID.
GTP-C Create Session Request Message.
uint64_t GetImsi() const
Get the IMSI.
void SetUliEcgi(uint32_t uliEcgi)
Set the UliEcgi.
GtpcHeader::Fteid_t GetSenderCpFteid() const
Get the Sender CpFteid.
uint32_t GetUliEcgi() const
Get the UliEcgi.
void SetBearerContextsToBeCreated(std::list< BearerContextToBeCreated > bearerContexts)
Set the Bearer Contexts.
std::list< BearerContextToBeCreated > GetBearerContextsToBeCreated() const
Get the Bearer Contexts.
void SetImsi(uint64_t imsi)
Set the IMSI.
void SetSenderCpFteid(GtpcHeader::Fteid_t fteid)
Set the Sender CpFteid.
GTP-C Create Session Response Message.
void SetCause(Cause_t cause)
Set the Cause.
void SetBearerContextsCreated(std::list< BearerContextCreated > bearerContexts)
Set the Bearer Contexts.
std::list< BearerContextCreated > GetBearerContextsCreated() const
Get the Container of Bearer Contexts.
GtpcHeader::Fteid_t GetSenderCpFteid() const
Get the Sender CpFteid.
GTP-C Delete Bearer Command Message.
std::list< BearerContext > GetBearerContexts() const
Get the Bearer contexts.
void SetBearerContexts(std::list< BearerContext > bearerContexts)
Set the Bearer contexts.
GTP-C Delete Bearer Request Message.
std::list< uint8_t > GetEpsBearerIds() const
Get the Bearers IDs.
void SetEpsBearerIds(std::list< uint8_t > epsBearerIds)
Set the Bearers IDs.
GTP-C Delete Bearer Response Message.
std::list< uint8_t > GetEpsBearerIds() const
Get the Bearers IDs.
void SetEpsBearerIds(std::list< uint8_t > epsBearerIds)
Set the Bearers IDs.
Header of the GTPv2-C protocol.
uint8_t GetMessageType() const
Get message type.
void ComputeMessageLength()
Compute the message length according to the message type.
void SetTeid(uint32_t teid)
Set TEID.
uint32_t GetTeid() const
Get TEID.
GTP-C Modify Bearer Request Message.
uint64_t GetImsi() const
Get the IMSI.
uint32_t GetUliEcgi() const
Get the UliEcgi.
void SetUliEcgi(uint32_t uliEcgi)
Set the UliEcgi.
std::list< BearerContextToBeModified > GetBearerContextsToBeModified() const
Get the Bearer Contexts.
void SetImsi(uint64_t imsi)
Set the IMSI.
GTP-C Modify Bearer Response Message.
void SetCause(Cause_t cause)
Set the Cause.
Implementation of the GPRS Tunnelling Protocol header according to GTPv1-U Release 10 as per 3Gpp TS ...
void SetTeid(uint32_t teid)
Set TEID function.
uint32_t GetSerializedSize() const override
uint32_t GetTeid() const
Get a tunnel endpoint identificator (TEID)
void SetLength(uint16_t length)
Set the length in octets of the payload.
an Inet address class
Ipv4 addresses are stored in host order in this class.
Definition: ipv4-address.h:43
A base class which provides memory management and object aggregation.
Definition: object.h:89
uint32_t RemoveHeader(Header &header)
Deserialize and remove the header from the internal buffer.
Definition: packet.cc:294
void AddHeader(const Header &header)
Add header to this packet.
Definition: packet.cc:268
uint32_t GetSize() const
Returns the the size in bytes of the packet (including the zero-filled initial payload).
Definition: packet.h:863
uint32_t PeekHeader(Header &header) const
Deserialize but does not remove the header from the internal buffer.
Definition: packet.cc:305
void SetRecvCallback(Callback< void, Ptr< Socket > > receivedData)
Notify application when new data is available to be read.
Definition: socket.cc:126
virtual Ptr< Packet > Recv(uint32_t maxSize, uint32_t flags)=0
Read data from the socket.
virtual int SendTo(Ptr< Packet > p, uint32_t flags, const Address &toAddress)=0
Send data to a specified peer.
a unique identifier for an interface.
Definition: type-id.h:60
TypeId SetParent(TypeId tid)
Set the parent TypeId.
Definition: type-id.cc:935
#define NS_ASSERT(condition)
At runtime, in debugging builds, if this condition is not true, the program prints the source file,...
Definition: assert.h:66
#define NS_ASSERT_MSG(condition, message)
At runtime, in debugging builds, if this condition is not true, the program prints the message to out...
Definition: assert.h:86
Callback< R, Args... > MakeNullCallback()
Definition: callback.h:734
#define NS_FATAL_ERROR(msg)
Report a fatal error with a message and terminate.
Definition: fatal-error.h:160
#define NS_ABORT_IF(cond)
Abnormal program termination if a condition is true.
Definition: abort.h:76
#define NS_LOG_COMPONENT_DEFINE(name)
Define a Log component with a specific name.
Definition: log.h:202
#define NS_LOG_DEBUG(msg)
Use NS_LOG to output a message of level LOG_DEBUG.
Definition: log.h:268
#define NS_LOG_FUNCTION(parameters)
If log level LOG_FUNCTION is enabled, this macro will output all input parameters separated by ",...
#define NS_OBJECT_ENSURE_REGISTERED(type)
Register an Object subclass with the TypeId system.
Definition: object-base.h:45
Every class exported by the ns3 library is enclosed in the ns3 namespace.
Callback< R, Args... > MakeCallback(R(T::*memPtr)(Args...), OBJ objPtr)
Build Callbacks for class method members which take varying numbers of arguments and potentially retu...
Definition: callback.h:691
Ptr< EpcTft > tft
Bearer traffic flow template.
Ipv4Address addr
IPv4 address.
InterfaceType_t interfaceType
Interface type.