A Discrete-Event Network Simulator
API
lr-wpan-net-device.cc
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1 /*
2  * Copyright (c) 2011 The Boeing Company
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:
18  * Tom Henderson <thomas.r.henderson@boeing.com>
19  * Tommaso Pecorella <tommaso.pecorella@unifi.it>
20  * Margherita Filippetti <morag87@gmail.com>
21  */
22 #include "lr-wpan-net-device.h"
23 
24 #include "lr-wpan-csmaca.h"
25 #include "lr-wpan-error-model.h"
26 #include "lr-wpan-phy.h"
27 
28 #include <ns3/abort.h>
29 #include <ns3/boolean.h>
30 #include <ns3/log.h>
31 #include <ns3/node.h>
32 #include <ns3/packet.h>
33 #include <ns3/pointer.h>
34 #include <ns3/spectrum-channel.h>
35 
36 namespace ns3
37 {
38 
39 NS_LOG_COMPONENT_DEFINE("LrWpanNetDevice");
40 
41 NS_OBJECT_ENSURE_REGISTERED(LrWpanNetDevice);
42 
43 TypeId
45 {
46  static TypeId tid =
47  TypeId("ns3::LrWpanNetDevice")
49  .SetGroupName("LrWpan")
50  .AddConstructor<LrWpanNetDevice>()
51  .AddAttribute("Channel",
52  "The channel attached to this device",
53  PointerValue(),
55  MakePointerChecker<SpectrumChannel>())
56  .AddAttribute("Phy",
57  "The PHY layer attached to this device.",
58  PointerValue(),
60  MakePointerChecker<LrWpanPhy>())
61  .AddAttribute("Mac",
62  "The MAC layer attached to this device.",
63  PointerValue(),
65  MakePointerChecker<LrWpanMac>())
66  .AddAttribute("UseAcks",
67  "Request acknowledgments for data frames.",
68  BooleanValue(true),
71  .AddAttribute("PseudoMacAddressMode",
72  "Build the pseudo-MAC Address according to RFC 4944 or RFC 6282 "
73  "(default: RFC 6282).",
77  "RFC 6282 (don't use PanId)",
79  "RFC 4944 (use PanId)"));
80  return tid;
81 }
82 
84  : m_configComplete(false)
85 {
86  NS_LOG_FUNCTION(this);
87  m_mac = CreateObject<LrWpanMac>();
88  m_phy = CreateObject<LrWpanPhy>();
89  m_csmaca = CreateObject<LrWpanCsmaCa>();
91 }
92 
94 {
95  NS_LOG_FUNCTION(this);
96 }
97 
98 void
100 {
101  NS_LOG_FUNCTION(this);
102  m_mac->Dispose();
103  m_phy->Dispose();
104  m_csmaca->Dispose();
105  m_phy = nullptr;
106  m_mac = nullptr;
107  m_csmaca = nullptr;
108  m_node = nullptr;
109  // chain up.
111 }
112 
113 void
115 {
116  NS_LOG_FUNCTION(this);
117  m_phy->Initialize();
118  m_mac->Initialize();
120 }
121 
122 void
124 {
125  NS_LOG_FUNCTION(this);
126  if (!m_mac || !m_phy || !m_csmaca || !m_node || m_configComplete)
127  {
128  return;
129  }
130  m_mac->SetPhy(m_phy);
131  m_mac->SetCsmaCa(m_csmaca);
132  m_mac->SetMcpsDataIndicationCallback(MakeCallback(&LrWpanNetDevice::McpsDataIndication, this));
133  m_csmaca->SetMac(m_mac);
134 
135  Ptr<LrWpanErrorModel> model = CreateObject<LrWpanErrorModel>();
136  m_phy->SetErrorModel(model);
137  m_phy->SetDevice(this);
138 
139  m_phy->SetPdDataIndicationCallback(MakeCallback(&LrWpanMac::PdDataIndication, m_mac));
140  m_phy->SetPdDataConfirmCallback(MakeCallback(&LrWpanMac::PdDataConfirm, m_mac));
141  m_phy->SetPlmeEdConfirmCallback(MakeCallback(&LrWpanMac::PlmeEdConfirm, m_mac));
142  m_phy->SetPlmeGetAttributeConfirmCallback(
144  m_phy->SetPlmeSetTRXStateConfirmCallback(
146  m_phy->SetPlmeSetAttributeConfirmCallback(
148 
149  m_csmaca->SetLrWpanMacStateCallback(MakeCallback(&LrWpanMac::SetLrWpanMacState, m_mac));
150  m_phy->SetPlmeCcaConfirmCallback(MakeCallback(&LrWpanCsmaCa::PlmeCcaConfirm, m_csmaca));
151  m_configComplete = true;
152 }
153 
154 void
156 {
157  NS_LOG_FUNCTION(this);
158  m_mac = mac;
159  CompleteConfig();
160 }
161 
162 void
164 {
165  NS_LOG_FUNCTION(this);
166  m_phy = phy;
167  CompleteConfig();
168 }
169 
170 void
172 {
173  NS_LOG_FUNCTION(this);
174  m_csmaca = csmaca;
175  CompleteConfig();
176 }
177 
178 void
180 {
181  NS_LOG_FUNCTION(this << channel);
182  m_phy->SetChannel(channel);
183  channel->AddRx(m_phy);
184  CompleteConfig();
185 }
186 
189 {
190  // NS_LOG_FUNCTION (this);
191  return m_mac;
192 }
193 
196 {
197  NS_LOG_FUNCTION(this);
198  return m_phy;
199 }
200 
203 {
204  NS_LOG_FUNCTION(this);
205  return m_csmaca;
206 }
207 
208 void
209 LrWpanNetDevice::SetIfIndex(const uint32_t index)
210 {
211  NS_LOG_FUNCTION(this << index);
212  m_ifIndex = index;
213 }
214 
215 uint32_t
217 {
218  NS_LOG_FUNCTION(this);
219  return m_ifIndex;
220 }
221 
224 {
225  NS_LOG_FUNCTION(this);
226  return m_phy->GetChannel();
227 }
228 
229 void
231 {
232  NS_LOG_FUNCTION(this);
233  m_linkUp = true;
234  m_linkChanges();
235 }
236 
237 void
239 {
240  NS_LOG_FUNCTION(this);
241  m_linkUp = false;
242  m_linkChanges();
243 }
244 
247 {
248  NS_LOG_FUNCTION(this);
249  return m_phy->GetChannel();
250 }
251 
252 void
254 {
255  NS_LOG_FUNCTION(this);
257  {
258  m_mac->SetShortAddress(Mac16Address::ConvertFrom(address));
259  }
261  {
262  m_mac->SetExtendedAddress(Mac64Address::ConvertFrom(address));
263  }
265  {
266  uint8_t buf[6];
268  addr.CopyTo(buf);
269  Mac16Address addr16;
270  addr16.CopyFrom(buf + 4);
271  m_mac->SetShortAddress(addr16);
272  uint16_t panId;
273  panId = buf[0];
274  panId <<= 8;
275  panId |= buf[1];
276  m_mac->SetPanId(panId);
277  }
278  else
279  {
280  NS_ABORT_MSG("LrWpanNetDevice::SetAddress - address is not of a compatible type");
281  }
282 }
283 
284 Address
286 {
287  NS_LOG_FUNCTION(this);
288 
289  if (m_mac->GetShortAddress() == Mac16Address("00:00"))
290  {
291  return m_mac->GetExtendedAddress();
292  }
293 
294  Mac48Address pseudoAddress = BuildPseudoMacAddress(m_mac->GetPanId(), m_mac->GetShortAddress());
295 
296  return pseudoAddress;
297 }
298 
299 void
301  Mac64Address coordExtAddr,
302  Mac16Address coordShortAddr,
303  Mac16Address assignedShortAddr)
304 {
305  NS_LOG_FUNCTION(this);
306  m_mac->SetPanId(panId);
307  m_mac->SetAssociatedCoor(coordExtAddr);
308  m_mac->SetAssociatedCoor(coordShortAddr);
309  m_mac->SetShortAddress(assignedShortAddr);
310 }
311 
312 bool
313 LrWpanNetDevice::SetMtu(const uint16_t mtu)
314 {
315  NS_ABORT_MSG("Unsupported");
316  return false;
317 }
318 
319 uint16_t
321 {
322  NS_LOG_FUNCTION(this);
323  // Maximum payload size is: max psdu - frame control - seqno - addressing - security - fcs
324  // = 127 - 2 - 1 - (2+2+2+2) - 0 - 2
325  // = 114
326  // assuming no security and addressing with only 16 bit addresses without pan id compression.
327  return 114;
328 }
329 
330 bool
332 {
333  NS_LOG_FUNCTION(this);
334  return m_phy && m_linkUp;
335 }
336 
337 void
339 {
340  NS_LOG_FUNCTION(this);
342 }
343 
344 bool
346 {
347  NS_LOG_FUNCTION(this);
348  return true;
349 }
350 
351 Address
353 {
354  NS_LOG_FUNCTION(this);
355 
356  Mac48Address pseudoAddress =
358 
359  return pseudoAddress;
360 }
361 
362 bool
364 {
365  NS_LOG_FUNCTION(this);
366  return true;
367 }
368 
369 Address
371 {
372  NS_ABORT_MSG("Unsupported");
373  return Address();
374 }
375 
376 Address
378 {
379  NS_LOG_FUNCTION(this << addr);
380 
381  Mac48Address pseudoAddress =
383 
384  return pseudoAddress;
385 }
386 
387 bool
389 {
390  NS_LOG_FUNCTION(this);
391  return false;
392 }
393 
394 bool
396 {
397  NS_LOG_FUNCTION(this);
398  return false;
399 }
400 
401 bool
402 LrWpanNetDevice::Send(Ptr<Packet> packet, const Address& dest, uint16_t protocolNumber)
403 {
404  // This method basically assumes an 802.3-compliant device, but a raw
405  // 802.15.4 device does not have an ethertype, and requires specific
406  // McpsDataRequest parameters.
407  // For further study: how to support these methods somehow, such as
408  // inventing a fake ethertype and packet tag for McpsDataRequest
409  NS_LOG_FUNCTION(this << packet << dest << protocolNumber);
410 
411  if (packet->GetSize() > GetMtu())
412  {
413  NS_LOG_ERROR("Fragmentation is needed for this packet, drop the packet ");
414  return false;
415  }
416 
417  McpsDataRequestParams m_mcpsDataRequestParams;
418 
419  Mac16Address dst16;
421  {
422  uint8_t buf[6];
423  dest.CopyTo(buf);
424  dst16.CopyFrom(buf + 4);
425  }
426  else
427  {
428  dst16 = Mac16Address::ConvertFrom(dest);
429  }
430  m_mcpsDataRequestParams.m_dstAddr = dst16;
431  m_mcpsDataRequestParams.m_dstAddrMode = SHORT_ADDR;
432  m_mcpsDataRequestParams.m_dstPanId = m_mac->GetPanId();
433  m_mcpsDataRequestParams.m_srcAddrMode = SHORT_ADDR;
434  // Using ACK requests for broadcast destinations is ok here. They are disabled
435  // by the MAC.
436  if (m_useAcks)
437  {
438  m_mcpsDataRequestParams.m_txOptions = TX_OPTION_ACK;
439  }
440  m_mcpsDataRequestParams.m_msduHandle = 0;
441  m_mac->McpsDataRequest(m_mcpsDataRequestParams, packet);
442  return true;
443 }
444 
445 bool
447  const Address& source,
448  const Address& dest,
449  uint16_t protocolNumber)
450 {
451  NS_ABORT_MSG("Unsupported");
452  // TODO: To support SendFrom, the MACs McpsDataRequest has to use the provided source address,
453  // instead of to local one.
454  return false;
455 }
456 
457 Ptr<Node>
459 {
460  NS_LOG_FUNCTION(this);
461  return m_node;
462 }
463 
464 void
466 {
467  NS_LOG_FUNCTION(this);
468  m_node = node;
469  CompleteConfig();
470 }
471 
472 bool
474 {
475  NS_LOG_FUNCTION(this);
476  return true;
477 }
478 
479 void
481 {
482  NS_LOG_FUNCTION(this);
483  m_receiveCallback = cb;
484 }
485 
486 void
488 {
489  // This method basically assumes an 802.3-compliant device, but a raw
490  // 802.15.4 device does not have an ethertype, and requires specific
491  // McpsDataIndication parameters.
492  // For further study: how to support these methods somehow, such as
493  // inventing a fake ethertype and packet tag for McpsDataRequest
494  NS_LOG_WARN("Unsupported; use LrWpan MAC APIs instead");
495 }
496 
497 void
499 {
500  NS_LOG_FUNCTION(this);
501  // TODO: Use the PromiscReceiveCallback if the MAC is in promiscuous mode.
502 
503  if (params.m_dstAddrMode == SHORT_ADDR)
504  {
505  m_receiveCallback(this, pkt, 0, BuildPseudoMacAddress(params.m_srcPanId, params.m_srcAddr));
506  }
507  else
508  {
509  m_receiveCallback(this, pkt, 0, params.m_srcExtAddr);
510  }
511 }
512 
513 bool
515 {
517  return false;
518 }
519 
521 LrWpanNetDevice::BuildPseudoMacAddress(uint16_t panId, Mac16Address shortAddr) const
522 {
523  NS_LOG_FUNCTION(this);
524 
525  uint8_t buf[6];
526 
527  if (m_pseudoMacMode == RFC4944)
528  {
529  buf[0] = panId >> 8;
530  // Make sure the U/L bit is set
531  buf[0] |= 0x02;
532  buf[1] = panId & 0xff;
533  }
534  else
535  {
536  // Make sure the U/L bit is set
537  buf[0] = 0x02;
538  buf[1] = 0x00;
539  }
540  buf[2] = 0;
541  buf[3] = 0;
542  shortAddr.CopyTo(buf + 4);
543 
544  Mac48Address pseudoAddress;
545  pseudoAddress.CopyFrom(buf);
546 
547  return pseudoAddress;
548 }
549 
550 int64_t
552 {
553  NS_LOG_FUNCTION(stream);
554  int64_t streamIndex = stream;
555  streamIndex += m_csmaca->AssignStreams(stream);
556  streamIndex += m_phy->AssignStreams(stream);
557  NS_LOG_DEBUG("Number of assigned RV streams: " << (streamIndex - stream));
558  return (streamIndex - stream);
559 }
560 
561 } // namespace ns3
a polymophic address class
Definition: address.h:100
uint32_t CopyTo(uint8_t buffer[MAX_SIZE]) const
Copy the address bytes into a buffer.
Definition: address.cc:86
AttributeValue implementation for Boolean.
Definition: boolean.h:37
Hold variables of type enum.
Definition: enum.h:56
Ipv4 addresses are stored in host order in this class.
Definition: ipv4-address.h:43
Describes an IPv6 address.
Definition: ipv6-address.h:50
void PlmeCcaConfirm(LrWpanPhyEnumeration status)
IEEE 802.15.4-2006 section 6.2.2.2 PLME-CCA.confirm status.
void PlmeSetTRXStateConfirm(LrWpanPhyEnumeration status)
IEEE 802.15.4-2006 section 6.2.2.8 PLME-SET-TRX-STATE.confirm Set PHY state.
void PlmeEdConfirm(LrWpanPhyEnumeration status, uint8_t energyLevel)
IEEE 802.15.4-2006 section 6.2.2.4 PLME-ED.confirm status and energy level.
void SetLrWpanMacState(LrWpanMacState macState)
CSMA-CA algorithm calls back the MAC after executing channel assessment.
void PdDataIndication(uint32_t psduLength, Ptr< Packet > p, uint8_t lqi)
IEEE 802.15.4-2006 section 6.2.1.3 PD-DATA.indication Indicates the transfer of an MPDU from PHY to M...
void PlmeGetAttributeConfirm(LrWpanPhyEnumeration status, LrWpanPibAttributeIdentifier id, LrWpanPhyPibAttributes *attribute)
IEEE 802.15.4-2006 section 6.2.2.6 PLME-GET.confirm Get attributes per definition from Table 23 in se...
void PlmeSetAttributeConfirm(LrWpanPhyEnumeration status, LrWpanPibAttributeIdentifier id)
IEEE 802.15.4-2006 section 6.2.2.10 PLME-SET.confirm Set attributes per definition from Table 23 in s...
void PdDataConfirm(LrWpanPhyEnumeration status)
IEEE 802.15.4-2006 section 6.2.1.2 Confirm the end of transmission of an MPDU to MAC.
Network layer to device interface.
void SetReceiveCallback(NetDevice::ReceiveCallback cb) override
void SetPromiscReceiveCallback(PromiscReceiveCallback cb) override
bool Send(Ptr< Packet > packet, const Address &dest, uint16_t protocolNumber) override
static TypeId GetTypeId()
Get the type ID.
PseudoMacAddressMode_e m_pseudoMacMode
How the pseudo MAC address is created.
@ RFC4944
YYYY:0000:XXXX (with U/L bit set to local)
@ RFC6282
0200:0000:XXXX
Ptr< LrWpanMac > m_mac
The MAC for this NetDevice.
Address GetAddress() const override
This method indirects to LrWpanMac::SetShortAddress ()
Ptr< Node > GetNode() const override
bool m_useAcks
Configure the NetDevice to request MAC layer acknowledgments when sending packets using the Send() AP...
void SetCsmaCa(Ptr< LrWpanCsmaCa > csmaca)
Set the CSMA/CA implementation to be used by the MAC and this NetDevice.
void SetChannel(Ptr< SpectrumChannel > channel)
Set the channel to which the NetDevice, and therefore the PHY, should be attached to.
Ptr< SpectrumChannel > DoGetChannel() const
Attribute accessor method for the "Channel" attribute.
Ptr< LrWpanMac > GetMac() const
Get the MAC used by this NetDevice.
bool SupportsSendFrom() const override
Address GetMulticast(Ipv4Address multicastGroup) const override
Make and return a MAC multicast address using the provided multicast group.
void AddLinkChangeCallback(Callback< void > callback) override
void SetNode(Ptr< Node > node) override
Ptr< Node > m_node
The node associated with this NetDevice.
void SetPhy(Ptr< LrWpanPhy > phy)
Set the PHY to be used by the MAC and this NetDevice.
int64_t AssignStreams(int64_t stream)
Assign a fixed random variable stream number to the random variables used by this model.
bool IsBroadcast() const override
bool SetMtu(const uint16_t mtu) override
uint16_t GetMtu() const override
bool IsMulticast() const override
void McpsDataIndication(McpsDataIndicationParams params, Ptr< Packet > pkt)
The callback used by the MAC to hand over incoming packets to the NetDevice.
ReceiveCallback m_receiveCallback
Upper layer callback used for notification of new data packet arrivals.
bool m_linkUp
Is the link/device currently up and running?
Ptr< LrWpanPhy > GetPhy() const
Get the PHY used by this NetDevice.
uint32_t GetIfIndex() const override
bool IsLinkUp() const override
Ptr< LrWpanPhy > m_phy
The PHY for this NetDevice.
void SetAddress(Address address) override
This method indirects to LrWpanMac::SetShortAddress ()
void SetPanAssociation(uint16_t panId, Mac64Address coordExtAddr, Mac16Address coordShortAddr, Mac16Address assignedShortAddr)
This method is use to manually configure the coordinator through which the device or coordinator is a...
Ptr< LrWpanCsmaCa > GetCsmaCa() const
Get the CSMA/CA implementation used by this NetDevice.
Address GetBroadcast() const override
void SetMac(Ptr< LrWpanMac > mac)
Set the MAC to be used by this NetDevice.
bool IsBridge() const override
Return true if the net device is acting as a bridge.
void SetIfIndex(const uint32_t index) override
bool IsPointToPoint() const override
Return true if the net device is on a point-to-point link.
bool m_configComplete
True if MAC, PHY and CSMA/CA where successfully configured and the NetDevice is ready for being used.
bool NeedsArp() const override
bool SendFrom(Ptr< Packet > packet, const Address &source, const Address &dest, uint16_t protocolNumber) override
Mac48Address BuildPseudoMacAddress(uint16_t panId, Mac16Address shortAddr) const
Builds a "pseudo 48-bit address" from the PanId and Short Address The form is PanId : 0x0 : 0x0 : Sho...
Ptr< LrWpanCsmaCa > m_csmaca
The CSMA/CA implementation for this NetDevice.
TracedCallback m_linkChanges
Trace source for link up/down changes.
void CompleteConfig()
Configure PHY, MAC and CSMA/CA.
void DoDispose() override
Destructor implementation.
void LinkUp()
Mark NetDevice link as up.
Ptr< Channel > GetChannel() const override
void DoInitialize() override
Initialize() implementation.
void LinkDown()
Mark NetDevice link as down.
uint32_t m_ifIndex
The interface index of this NetDevice.
This class can contain 16 bit addresses.
Definition: mac16-address.h:44
static Mac16Address GetMulticast(Ipv6Address address)
Returns the multicast address associated with an IPv6 address according to RFC 4944 Section 9.
static bool IsMatchingType(const Address &address)
static Mac16Address ConvertFrom(const Address &address)
void CopyTo(uint8_t buffer[2]) const
void CopyFrom(const uint8_t buffer[2])
static Mac16Address GetBroadcast()
an EUI-48 address
Definition: mac48-address.h:46
static bool IsMatchingType(const Address &address)
void CopyFrom(const uint8_t buffer[6])
static Mac48Address ConvertFrom(const Address &address)
void CopyTo(uint8_t buffer[6]) const
an EUI-64 address
Definition: mac64-address.h:46
static bool IsMatchingType(const Address &address)
static Mac64Address ConvertFrom(const Address &address)
Network layer to device interface.
Definition: net-device.h:98
virtual void DoInitialize()
Initialize() implementation.
Definition: object.cc:360
virtual void DoDispose()
Destructor implementation.
Definition: object.cc:353
uint32_t GetSize() const
Returns the the size in bytes of the packet (including the zero-filled initial payload).
Definition: packet.h:863
Hold objects of type Ptr<T>.
Definition: pointer.h:37
Smart pointer class similar to boost::intrusive_ptr.
Definition: ptr.h:78
void ConnectWithoutContext(const CallbackBase &callback)
Append a Callback to the chain (without a context).
a unique identifier for an interface.
Definition: type-id.h:60
TypeId SetParent(TypeId tid)
Set the parent TypeId.
Definition: type-id.cc:935
Ptr< const AttributeAccessor > MakeBooleanAccessor(T1 a1)
Create an AttributeAccessor for a class data member, or a lone class get functor or set method.
Definition: boolean.h:86
Ptr< const AttributeChecker > MakeBooleanChecker()
Definition: boolean.cc:124
Ptr< const AttributeAccessor > MakeEnumAccessor(T1 a1)
Create an AttributeAccessor for a class data member, or a lone class get functor or set method.
Definition: enum.h:205
Ptr< const AttributeAccessor > MakePointerAccessor(T1 a1)
Create an AttributeAccessor for a class data member, or a lone class get functor or set method.
Definition: pointer.h:231
#define NS_ABORT_MSG(msg)
Unconditional abnormal program termination with a message.
Definition: abort.h:49
#define NS_LOG_ERROR(msg)
Use NS_LOG to output a message of level LOG_ERROR.
Definition: log.h:254
#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_NOARGS()
Output the name of the function.
#define NS_LOG_FUNCTION(parameters)
If log level LOG_FUNCTION is enabled, this macro will output all input parameters separated by ",...
#define NS_LOG_WARN(msg)
Use NS_LOG to output a message of level LOG_WARN.
Definition: log.h:261
@ TX_OPTION_ACK
TX_OPTION_ACK.
Definition: lr-wpan-mac.h:62
@ SHORT_ADDR
Definition: lr-wpan-mac.h:156
#define NS_OBJECT_ENSURE_REGISTERED(type)
Register an Object subclass with the TypeId system.
Definition: object-base.h:46
address
Definition: first.py:40
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:707
Ptr< const AttributeChecker > MakeEnumChecker(int v, std::string n, Ts... args)
Make an EnumChecker pre-configured with a set of allowed values by name.
Definition: enum.h:163
channel
Definition: third.py:81
mac
Definition: third.py:85
phy
Definition: third.py:82
params
Fit Fluctuating Two Ray model to the 3GPP TR 38.901 using the Anderson-Darling goodness-of-fit ##.
MCPS-DATA.indication params.
Definition: lr-wpan-mac.h:412
MCPS-DATA.request params.
Definition: lr-wpan-mac.h:384
LrWpanAddressMode m_srcAddrMode
Source address mode.
Definition: lr-wpan-mac.h:385
LrWpanAddressMode m_dstAddrMode
Destination address mode.
Definition: lr-wpan-mac.h:386
uint16_t m_dstPanId
Destination PAN identifier.
Definition: lr-wpan-mac.h:387
Mac16Address m_dstAddr
Destination address.
Definition: lr-wpan-mac.h:388
uint8_t m_msduHandle
MSDU handle.
Definition: lr-wpan-mac.h:390
uint8_t m_txOptions
Tx Options (bitfield)
Definition: lr-wpan-mac.h:391