A Discrete-Event Network Simulator
API
wave-net-device.cc
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1 /* -*- Mode:C++; c-file-style:"gnu"; indent-tabs-mode:nil; -*- */
2 /*
3  * Copyright (c) 2005,2006 INRIA
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: Mathieu Lacage <mathieu.lacage@sophia.inria.fr>
18  * Junling Bu <linlinjavaer@gmail.com>
19  */
20 #include <algorithm>
21 #include "ns3/wifi-channel.h"
22 #include "ns3/llc-snap-header.h"
23 #include "ns3/uinteger.h"
24 #include "ns3/node.h"
25 #include "ns3/trace-source-accessor.h"
26 #include "ns3/log.h"
27 #include "ns3/socket.h"
28 #include "ns3/object-map.h"
29 #include "ns3/object-vector.h"
30 #include "wave-net-device.h"
31 #include "higher-tx-tag.h"
32 
33 namespace ns3 {
34 
35 NS_LOG_COMPONENT_DEFINE ("WaveNetDevice");
36 
37 NS_OBJECT_ENSURE_REGISTERED (WaveNetDevice);
38 
39 TypeId
41 {
42  static TypeId tid = TypeId ("ns3::WaveNetDevice")
43  .SetParent<NetDevice> ()
44  .SetGroupName ("Wave")
45  .AddConstructor<WaveNetDevice> ()
46  .AddAttribute ("Mtu", "The MAC-level Maximum Transmission Unit",
50  MakeUintegerChecker<uint16_t> (1,MAX_MSDU_SIZE - LLC_SNAP_HEADER_LENGTH))
51  .AddAttribute ("Channel", "The channel attached to this device",
52  PointerValue (),
54  MakePointerChecker<WifiChannel> ())
55  .AddAttribute ("PhyEntities", "The PHY entities attached to this device.",
58  MakeObjectVectorChecker<WifiPhy> ())
59  .AddAttribute ("MacEntities", "The MAC layer attached to this device.",
60  ObjectMapValue (),
62  MakeObjectMapChecker<OcbWifiMac> ())
63  .AddAttribute ("ChannelScheduler", "The channel scheduler attached to this device.",
64  PointerValue (),
67  MakePointerChecker<ChannelScheduler> ())
68  .AddAttribute ("ChannelManager", "The channel manager attached to this device.",
69  PointerValue (),
72  MakePointerChecker<ChannelManager> ())
73  .AddAttribute ("ChannelCoordinator", "The channel coordinator attached to this device.",
74  PointerValue (),
77  MakePointerChecker<ChannelCoordinator> ())
78  .AddAttribute ("VsaManager", "The VSA manager attached to this device.",
79  PointerValue (),
82  MakePointerChecker<VsaManager> ())
83  ;
84  return tid;
85 }
86 
88  : m_txProfile (0)
89 {
90  NS_LOG_FUNCTION (this);
91 }
92 
94 {
95  NS_LOG_FUNCTION (this);
96 }
97 
98 void
100 {
101  NS_LOG_FUNCTION (this);
102  if (m_txProfile != 0)
103  {
104  delete m_txProfile;
105  m_txProfile = 0;
106  }
107  for (PhyEntitiesI i = m_phyEntities.begin (); i != m_phyEntities.end (); ++i)
108  {
109  Ptr<WifiPhy> phy = (*i);
110  phy->Dispose ();
111  }
112  m_phyEntities.clear ();
113  for (MacEntitiesI i = m_macEntities.begin (); i != m_macEntities.end (); ++i)
114  {
115  Ptr<OcbWifiMac> mac = i->second;
117  stationManager->Dispose ();
118  mac->Dispose ();
119  }
120  m_macEntities.clear ();
122  m_channelManager->Dispose ();
123  m_channelScheduler->Dispose ();
124  m_vsaManager->Dispose ();
126  m_channelManager = 0;
127  m_channelScheduler = 0;
128  m_vsaManager = 0;
129  // chain up.
131 }
132 
133 void
135 {
136  NS_LOG_FUNCTION (this);
137  if (m_phyEntities.size () == 0)
138  {
139  NS_FATAL_ERROR ("there is no PHY entity in this WAVE device");
140  }
141  for (PhyEntitiesI i = m_phyEntities.begin (); i != m_phyEntities.end (); ++i)
142  {
143  Ptr<WifiPhy> phy = (*i);
144  phy->Initialize ();
145  }
146  if (m_macEntities.size () == 0)
147  {
148  NS_FATAL_ERROR ("there is no MAC entity in this WAVE device");
149  }
150  for (MacEntitiesI i = m_macEntities.begin (); i != m_macEntities.end (); ++i)
151  {
152  Ptr<OcbWifiMac> mac = i->second;
154  // Make each MAC entity in sleep mode.
155  mac->Suspend ();
156  mac->Initialize ();
157 
159  // Currently PHY is not attached to MAC and will be dynamically attached and unattached to MAC latter,
160  // however WifiRemoteStationManager in the MAC shall know something in the PHY such as supported data rates.
161  // Since these information can be treated as same when same PHY devices are added, here we force
162  // all of WifiRemoteStationManagers in multiple MAC entities only associate with single PHY device even there may
163  // be multiple PHY entities. This approach may be strange but can work fine.
164  stationManager->SetupPhy (m_phyEntities[0]);
165  stationManager->Initialize ();
166  }
167  m_channelScheduler->SetWaveNetDevice (this);
168  m_vsaManager->SetWaveNetDevice (this);
169  m_channelScheduler->Initialize ();
171  m_channelManager->Initialize ();
172  m_vsaManager->Initialize ();
174 }
175 
176 void
177 WaveNetDevice::AddMac (uint32_t channelNumber, Ptr<OcbWifiMac> mac)
178 {
179  NS_LOG_FUNCTION (this << channelNumber << mac);
180  if (!ChannelManager::IsWaveChannel (channelNumber))
181  {
182  NS_FATAL_ERROR ("The channel " << channelNumber << " is not a valid WAVE channel number");
183  }
184  if (m_macEntities.find (channelNumber) != m_macEntities.end ())
185  {
186  NS_FATAL_ERROR ("The MAC entity for channel " << channelNumber << " already exists.");
187  }
188  m_macEntities.insert (std::make_pair (channelNumber, mac));
189 }
191 WaveNetDevice::GetMac (uint32_t channelNumber) const
192 {
193  NS_LOG_FUNCTION (this << channelNumber);
194  MacEntitiesI i = m_macEntities.find (channelNumber);
195  if (i == m_macEntities.end ())
196  {
197  NS_FATAL_ERROR ("there is no available MAC entity for channel " << channelNumber);
198  }
199  return i->second;
200 }
201 
202 std::map<uint32_t, Ptr<OcbWifiMac> >
204 {
205  NS_LOG_FUNCTION (this);
206  return m_macEntities;
207 }
208 
209 void
211 {
212  NS_LOG_FUNCTION (this << phy);
213  if (std::find (m_phyEntities.begin (), m_phyEntities.end (), phy) != m_phyEntities.end ())
214  {
215  NS_FATAL_ERROR ("This PHY entity is already inserted");
216  }
217  m_phyEntities.push_back (phy);
218 }
220 WaveNetDevice::GetPhy (uint32_t index) const
221 {
222  NS_LOG_FUNCTION (this << index);
223  return m_phyEntities.at (index);
224 }
225 
226 std::vector<Ptr<WifiPhy> >
228 {
229  NS_LOG_FUNCTION (this);
230  return m_phyEntities;
231 }
232 
233 bool
235 {
236  NS_LOG_FUNCTION (this << &vsaInfo);
237  if (!IsAvailableChannel ( vsaInfo.channelNumber))
238  {
239  return false;
240  }
241  if (!m_channelScheduler->IsChannelAccessAssigned (vsaInfo.channelNumber))
242  {
243  NS_LOG_DEBUG ("there is no channel access assigned for channel " << vsaInfo.channelNumber);
244  return false;
245  }
246  if (vsaInfo.vsc == 0)
247  {
248  NS_LOG_DEBUG ("vendor specific information shall not be null");
249  return false;
250  }
251  if (vsaInfo.oi.IsNull () && vsaInfo.managementId >= 16)
252  {
253  NS_LOG_DEBUG ("when organization identifier is not set, management ID "
254  "shall be in range from 0 to 15");
255  return false;
256  }
257 
258  m_vsaManager->SendVsa (vsaInfo);
259  return true;
260 }
261 
262 
263 bool
264 WaveNetDevice::StopVsa (uint32_t channelNumber)
265 {
266  NS_LOG_FUNCTION (this << channelNumber);
267  if (!IsAvailableChannel (channelNumber))
268  {
269  return false;
270  }
271  m_vsaManager->RemoveByChannel (channelNumber);
272  return true;
273 }
274 
275 void
277 {
278  NS_LOG_FUNCTION (this);
279  m_vsaManager->SetWaveVsaCallback (vsaCallback);
280 }
281 
282 bool
284 {
285  NS_LOG_FUNCTION (this << &schInfo);
286  if (!IsAvailableChannel (schInfo.channelNumber))
287  {
288  return false;
289  }
290  return m_channelScheduler->StartSch (schInfo);
291 }
292 
293 bool
294 WaveNetDevice::StopSch (uint32_t channelNumber)
295 {
296  NS_LOG_FUNCTION (this << channelNumber);
297  if (!IsAvailableChannel (channelNumber))
298  {
299  return false;
300  }
301  return m_channelScheduler->StopSch (channelNumber);
302 }
303 
304 bool
306 {
307  NS_LOG_FUNCTION (this << &txprofile);
308  if (m_txProfile != 0)
309  {
310  return false;
311  }
312  if (!IsAvailableChannel (txprofile.channelNumber))
313  {
314  return false;
315  }
316  if (txprofile.txPowerLevel > 8)
317  {
318  return false;
319  }
320  // IP-based packets is not allowed to send in the CCH.
321  if (txprofile.channelNumber == CCH)
322  {
323  NS_LOG_DEBUG ("IP-based packets shall not be transmitted on the CCH");
324  return false;
325  }
326  if (txprofile.dataRate == WifiMode () || txprofile.txPowerLevel == 8)
327  {
328  // let MAC layer itself determine tx parameters.
329  NS_LOG_DEBUG ("High layer does not want to control tx parameters.");
330  }
331  else
332  {
333  // if current PHY devices do not support data rate of the tx profile
334  for (PhyEntitiesI i = m_phyEntities.begin (); i != m_phyEntities.end (); ++i)
335  {
336  if (!((*i)->IsModeSupported (txprofile.dataRate)))
337  {
338  NS_LOG_DEBUG ("This data rate " << txprofile.dataRate.GetUniqueName () << " is not supported by current PHY device");
339  return false;
340  }
341  }
342  }
343 
344  m_txProfile = new TxProfile ();
345  *m_txProfile = txprofile;
346  return true;
347 }
348 
349 bool
350 WaveNetDevice::DeleteTxProfile (uint32_t channelNumber)
351 {
352  NS_LOG_FUNCTION (this << channelNumber);
353  if (!IsAvailableChannel (channelNumber))
354  {
355  return false;
356  }
357  if (m_txProfile == 0)
358  {
359  return false;
360  }
361  if (m_txProfile->channelNumber != channelNumber)
362  {
363  return false;
364  }
365 
366  delete m_txProfile;
367  m_txProfile = 0;
368  return true;
369 }
370 
371 bool
372 WaveNetDevice::SendX (Ptr<Packet> packet, const Address & dest, uint32_t protocol, const TxInfo & txInfo)
373 {
374  NS_LOG_FUNCTION (this << packet << dest << protocol << &txInfo);
375  if (!IsAvailableChannel (txInfo.channelNumber))
376  {
377  return false;
378  }
379  if (!m_channelScheduler->IsChannelAccessAssigned (txInfo.channelNumber))
380  {
381  NS_LOG_DEBUG ("there is no channel access assigned for channel " << txInfo.channelNumber);
382  return false;
383  }
384  if ((txInfo.channelNumber == CCH) && (protocol == IPv4_PROT_NUMBER || protocol == IPv6_PROT_NUMBER))
385  {
386  NS_LOG_DEBUG ("IP-based packets shall not be transmitted on the CCH");
387  return false;
388  }
389  if ((txInfo.priority > 7) || txInfo.txPowerLevel > 8)
390  {
391  NS_LOG_DEBUG ("invalid transmit parameters.");
392  return false;
393  }
394 
395  if ((txInfo.dataRate == WifiMode ()) || (txInfo.txPowerLevel == 8))
396  {
397  // let MAC layer itself determine tx parameters.
398  NS_LOG_DEBUG ("High layer does not want to control tx parameters.");
399  }
400  else
401  {
402  // if current PHY devices do not support data rate of the tx profile
403  for (PhyEntitiesI i = m_phyEntities.begin (); i != m_phyEntities.end (); ++i)
404  {
405  if ( !((*i)->IsModeSupported (txInfo.dataRate)))
406  {
407  return false;
408  }
409  }
410  WifiTxVector txVector;
411  txVector.SetChannelWidth (10);
412  txVector.SetTxPowerLevel (txInfo.txPowerLevel);
413  txVector.SetMode (txInfo.dataRate);
414  HigherLayerTxVectorTag tag = HigherLayerTxVectorTag (txVector, false);
415  packet->AddPacketTag (tag);
416  }
417 
418  LlcSnapHeader llc;
419  llc.SetType (protocol);
420  packet->AddHeader (llc);
421 
422  // according to channel number and priority,
423  // route the packet to a proper queue.
424  SocketPriorityTag prio;
425  prio.SetPriority (txInfo.priority);
426  packet->ReplacePacketTag (prio);
428  Mac48Address realTo = Mac48Address::ConvertFrom (dest);
429  mac->NotifyTx (packet);
430  mac->Enqueue (packet, realTo);
431  return true;
432 }
433 
434 void
436 {
437  NS_LOG_FUNCTION (this << newAddress);
438  Address oldAddress = GetAddress ();
439  if (newAddress == oldAddress)
440  {
441  return;
442  }
443  SetAddress (newAddress);
444  // Since MAC address is changed, the MAC layer including multiple MAC entities should be reset
445  // and internal MAC queues will be flushed.
446  for (MacEntitiesI i = m_macEntities.begin (); i != m_macEntities.end (); ++i)
447  {
448  i->second->Reset ();
449  }
450  m_addressChange (oldAddress, newAddress);
451 }
452 
453 void
454 WaveNetDevice::CancelTx (uint32_t channelNumber, enum AcIndex ac)
455 {
456  if (IsAvailableChannel (channelNumber))
457  {
458  return;
459  }
460  Ptr<OcbWifiMac> mac = GetMac (channelNumber);
461  mac->CancleTx (ac);
462 }
463 
464 void
466 {
467  m_channelManager = channelManager;
468 }
471 {
472  return m_channelManager;
473 }
474 void
476 {
477  m_channelScheduler = channelScheduler;
478 }
481 {
482  return m_channelScheduler;
483 }
484 void
486 {
487  m_channelCoordinator = channelCoordinator;
488 }
491 {
492  return m_channelCoordinator;
493 }
494 void
496 {
497  m_vsaManager = vsaManager;
498 }
501 {
502  return m_vsaManager;
503 }
504 
505 void
506 WaveNetDevice::SetIfIndex (const uint32_t index)
507 {
508  m_ifIndex = index;
509 }
510 uint32_t
512 {
513  return m_ifIndex;
514 }
517 {
518  NS_ASSERT (!m_phyEntities.empty ());
519  return GetPhy (0)->GetChannel ();
520 }
521 void
523 {
524  for (MacEntitiesI i = m_macEntities.begin (); i != m_macEntities.end (); ++i)
525  {
526  i->second->SetAddress (Mac48Address::ConvertFrom (address));
527  }
528 }
529 Address
531 {
532  return (GetMac (CCH))->GetAddress ();
533 }
534 bool
535 WaveNetDevice::SetMtu (const uint16_t mtu)
536 {
538  {
539  return false;
540  }
541  m_mtu = mtu;
542  return true;
543 }
544 uint16_t
546 {
547  return m_mtu;
548 }
549 bool
551 {
552  // Different from WifiNetDevice::IsLinkUp, a WaveNetDevice device
553  // is always link up so the m_linkup variable is true forever.
554  // Even the device is in channel switch state, packets can still be queued.
555  return true;
556 }
557 void
559 {
560  NS_LOG_WARN ("WaveNetDevice is linkup forever, so this callback will be never called");
561 }
562 bool
564 {
565  return true;
566 }
567 Address
569 {
570  return Mac48Address::GetBroadcast ();
571 }
572 bool
574 {
575  return true;
576 }
577 Address
579 {
580  return Mac48Address::GetMulticast (multicastGroup);
581 }
583 {
584  return Mac48Address::GetMulticast (addr);
585 }
586 bool
588 {
589  return false;
590 }
591 bool
593 {
594  return false;
595 }
596 
597 bool
598 WaveNetDevice::Send (Ptr<Packet> packet, const Address& dest, uint16_t protocol)
599 {
600  NS_LOG_FUNCTION (this << packet << dest << protocol);
601  if (m_txProfile == 0)
602  {
603  NS_LOG_DEBUG ("there is no tx profile registered for transmission");
604  return false;
605  }
606  if (!m_channelScheduler->IsChannelAccessAssigned (m_txProfile->channelNumber))
607  {
608  NS_LOG_DEBUG ("there is no channel access assigned for channel " << m_txProfile->channelNumber);
609  return false;
610  }
612  {
613  // let MAC layer itself determine tx parameters.
614  NS_LOG_DEBUG ("High layer does not want to control tx parameters.");
615  }
616  else
617  {
618  WifiTxVector txVector;
620  txVector.SetMode (m_txProfile->dataRate);
622  packet->AddPacketTag (tag);
623  }
624 
625  LlcSnapHeader llc;
626  llc.SetType (protocol);
627  packet->AddHeader (llc);
628 
629  // qos tag is already inserted into the packet by high layer or with default value 7 if high layer forget it.
631  Mac48Address realTo = Mac48Address::ConvertFrom (dest);
632  mac->NotifyTx (packet);
633  mac->Enqueue (packet, realTo);
634  return true;
635 }
636 
637 Ptr<Node>
639 {
640  return m_node;
641 }
642 void
644 {
645  m_node = node;
646 }
647 bool
649 {
650  // Whether NeedsArp or not?
651  // For IP-based packets , yes; For WSMP packets, no;
652  // so return true always.
653  return true;
654 }
655 void
657 {
658  m_forwardUp = cb;
659 }
660 
661 bool
662 WaveNetDevice::IsAvailableChannel (uint32_t channelNumber) const
663 {
664  if (!ChannelManager::IsWaveChannel (channelNumber))
665  {
666  NS_LOG_DEBUG ("this is no a valid WAVE channel for channel " << channelNumber);
667  return false;
668  }
669  if (m_macEntities.find (channelNumber) == m_macEntities.end ())
670  {
671  NS_LOG_DEBUG ("this is no available WAVE entity for channel " << channelNumber);
672  return false;
673  }
674  return true;
675 }
676 
677 void
679 {
680  NS_LOG_FUNCTION (this << packet << from << to);
681  LlcSnapHeader llc;
682  packet->RemoveHeader (llc);
683  enum NetDevice::PacketType type;
684  if (to.IsBroadcast ())
685  {
687  }
688  else if (to.IsGroup ())
689  {
691  }
692  else if (to == GetAddress ())
693  {
694  type = NetDevice::PACKET_HOST;
695  }
696  else
697  {
699  }
700 
701  if (type != NetDevice::PACKET_OTHERHOST)
702  {
703  // currently we cannot know from which MAC entity the packet is received,
704  // so we use the MAC entity for CCH as it receives this packet.
706  mac->NotifyRx (packet);
707  m_forwardUp (this, packet, llc.GetType (), from);
708  }
709 
710  if (!m_promiscRx.IsNull ())
711  {
712  // currently we cannot know from which MAC entity the packet is received,
713  // so we use the MAC entity for CCH as it receives this packet.
715  mac->NotifyPromiscRx (packet);
716  m_promiscRx (this, packet, llc.GetType (), from, to, type);
717  }
718 }
719 
720 bool
721 WaveNetDevice::SendFrom (Ptr<Packet> packet, const Address& source, const Address& dest, uint16_t protocol)
722 {
723  NS_LOG_FUNCTION (this << packet << source << dest << protocol);
724  return false;
725 }
726 
727 void
729 {
730  m_promiscRx = cb;
731  for (MacEntitiesI i = m_macEntities.begin (); i != m_macEntities.end (); ++i)
732  {
733  i->second->SetPromisc ();
734  }
735 }
736 
737 bool
739 {
740  return (GetMac (CCH))->SupportsSendFrom ();
741 }
742 
743 } // namespace ns3
virtual Address GetAddress(void) const
uint32_t RemoveHeader(Header &header)
Deserialize and remove the header from the internal buffer.
Definition: packet.cc:268
Ptr< WifiPhy > GetPhy(uint32_t index) const
void Dispose(void)
Dispose of this Object.
Definition: object.cc:214
bool StopVsa(uint32_t channelNumber)
virtual Ptr< WifiChannel > GetChannel(void) const =0
Return the WifiChannel this WifiPhy is connected to.
virtual void DoInitialize(void)
Initialize() implementation.
Definition: object.cc:353
static const uint16_t IPv4_PROT_NUMBER
#define NS_LOG_FUNCTION(parameters)
If log level LOG_FUNCTION is enabled, this macro will output all input parameters separated by "...
Callback template class.
Definition: callback.h:1176
bool StartSch(const SchInfo &schInfo)
This class mimics the TXVECTOR which is to be passed to the PHY in order to define the parameters whi...
void SetWaveVsaCallback(WaveVsaCallback vsaCallback)
#define NS_OBJECT_ENSURE_REGISTERED(type)
Register an Object subclass with the TypeId system.
Definition: object-base.h:44
uint32_t priority
WifiMode dataRate
Ptr< ChannelCoordinator > m_channelCoordinator
void AddPacketTag(const Tag &tag) const
Add a packet tag.
Definition: packet.cc:824
bool IsNull(void) const
Check for null implementation.
Definition: callback.h:1270
Ptr< const AttributeAccessor > MakeObjectVectorAccessor(U T::*memberVariable)
MakeAccessorHelper implementation for ObjectVector.
Definition: object-vector.h:81
void CancleTx(enum AcIndex ac)
#define NS_ASSERT(condition)
At runtime, in debugging builds, if this condition is not true, the program prints the source file...
Definition: assert.h:67
PacketType
Packet types are used as they are in Linux.
Definition: net-device.h:606
bool SendX(Ptr< Packet > packet, const Address &dest, uint32_t protocol, const TxInfo &txInfo)
#define NS_LOG_COMPONENT_DEFINE(name)
Define a Log component with a specific name.
Definition: log.h:201
virtual bool SupportsSendFrom(void) const
static bool IsWaveChannel(uint32_t channelNumber)
bool IsBroadcast(void) const
virtual bool SendFrom(Ptr< Packet > packet, const Address &source, const Address &dest, uint16_t protocolNumber)
std::map< uint32_t, Ptr< OcbWifiMac > >::const_iterator MacEntitiesI
This class holds together multiple, ns3::WifiPhy, and ns3::OcbWifiMac (including ns3::WifiRemoteStati...
#define NS_FATAL_ERROR(msg)
Report a fatal error with a message and terminate.
Definition: fatal-error.h:162
Packet addressed to multicast group.
Definition: net-device.h:612
virtual void DoDispose(void)
Destructor implementation.
Definition: object.cc:346
void SetType(uint16_t type)
Set the Ethertype.
virtual void SetAddress(Address address)
Set the address of this interface.
Packet addressed oo us.
Definition: net-device.h:608
#define CCH
virtual void SetupPhy(Ptr< WifiPhy > phy)
Set up PHY associated with this device since it is the object that knows the full set of transmit rat...
represent a single transmission modeA WifiMode is implemented by a single integer which is used to lo...
Definition: wifi-mode.h:99
Ptr< VsaManager > GetVsaManager(void) const
uint32_t txPowerLevel
Ptr< Packet > vsc
Definition: vsa-manager.h:64
virtual bool NeedsArp(void) const
virtual void SetReceiveCallback(NetDevice::ReceiveCallback cb)
void ForwardUp(Ptr< Packet > packet, Mac48Address from, Mac48Address to)
Receive a packet from the lower layer and pass the packet up the stack.
This tag will be used to support higher layer control DataRate and TxPwr_Level for transmission...
Definition: higher-tx-tag.h:45
void SetChannelWidth(uint32_t channelWidth)
Sets the selected channelWidth (in MHz)
uint32_t channelNumber
a polymophic address class
Definition: address.h:90
Ptr< ChannelCoordinator > GetChannelCoordinator(void) const
static const uint16_t IPv6_PROT_NUMBER
uint8_t managementId
Definition: vsa-manager.h:63
virtual void SetForwardUpCallback(ForwardUpCallback upCallback)
tuple phy
Definition: third.py:86
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:220
static Mac48Address GetMulticast(Ipv4Address address)
uint16_t GetType(void)
Return the Ethertype.
bool DeleteTxProfile(uint32_t channelNumber)
Ptr< ChannelManager > m_channelManager
virtual ~WaveNetDevice(void)
Hold an unsigned integer type.
Definition: uinteger.h:44
void SetChannelScheduler(Ptr< ChannelScheduler > channelScheduler)
Ptr< ChannelScheduler > m_channelScheduler
void SetChannelManager(Ptr< ChannelManager > channelManager)
void ChangeAddress(Address newAddress)
bool ReplacePacketTag(Tag &tag)
Replace the value of a packet tag.
Definition: packet.cc:838
indicates whether the socket has a priority set.
Definition: socket.h:1304
void Suspend(void)
To support MAC extension for multiple channel operation, Suspend the activity in current MAC entity...
uint32_t channelNumber
NetDevice::ReceiveCallback m_forwardUp
virtual void DoDispose(void)
Destructor implementation.
virtual Address GetMulticast(Ipv4Address multicastGroup) const
Make and return a MAC multicast address using the provided multicast group.
std::string GetUniqueName(void) const
Definition: wifi-mode.cc:342
static Mac48Address GetBroadcast(void)
Ptr< VsaManager > m_vsaManager
void NotifyPromiscRx(Ptr< const Packet > packet)
Definition: wifi-mac.cc:278
Callback< R > MakeCallback(R(T::*memPtr)(void), OBJ objPtr)
Definition: callback.h:1489
tuple mac
Definition: third.py:92
uint32_t txPowerLevel
static Mac48Address ConvertFrom(const Address &address)
virtual void SetIfIndex(const uint32_t index)
bool StopSch(uint32_t channelNumber)
static const uint16_t LLC_SNAP_HEADER_LENGTH
The length in octects of the LLC/SNAP header.
virtual uint16_t GetMtu(void) const
TxProfile * m_txProfile
bool IsAvailableChannel(uint32_t channelNumber) const
std::map< uint32_t, Ptr< OcbWifiMac > > GetMacs(void) const
Every class exported by the ns3 library is enclosed in the ns3 namespace.
Hold objects of type Ptr.
Definition: pointer.h:36
uint32_t channelNumber
Definition: vsa-manager.h:65
bool IsGroup(void) const
Packet addressed to someone else.
Definition: net-device.h:614
virtual void DoInitialize(void)
Initialize() implementation.
Ptr< OcbWifiMac > GetMac(uint32_t channelNumber) const
uint32_t channelNumber
virtual Address GetBroadcast(void) const
an EUI-48 address
Definition: mac48-address.h:43
static const uint16_t MAX_MSDU_SIZE
void SetTxPowerLevel(uint8_t powerlevel)
Sets the selected transmission power level.
virtual bool IsMulticast(void) const
virtual Ptr< Channel > GetChannel(void) const
Ptr< ChannelManager > GetChannelManager(void) const
void SetMode(WifiMode mode)
Sets the selected payload transmission mode.
virtual bool IsBroadcast(void) const
std::vector< Ptr< WifiPhy > > GetPhys(void) const
void NotifyRx(Ptr< const Packet > packet)
Definition: wifi-mac.cc:272
void AddPhy(Ptr< WifiPhy > phy)
Describes an IPv6 address.
Definition: ipv6-address.h:48
bool StartVsa(const VsaInfo &vsaInfo)
Ipv4 addresses are stored in host order in this class.
Definition: ipv4-address.h:40
virtual Ptr< Node > GetNode(void) const
TracedCallback< Address, Address > m_addressChange
virtual void AddLinkChangeCallback(Callback< void > callback)
Network layer to device interface.
Definition: net-device.h:405
#define NS_LOG_WARN(msg)
Use NS_LOG to output a message of level LOG_WARN.
Definition: log.h:228
static TypeId GetTypeId(void)
void SetVsaManager(Ptr< VsaManager > vsaManager)
NetDevice::PromiscReceiveCallback m_promiscRx
Packet addressed to all.
Definition: net-device.h:610
#define NS_LOG_DEBUG(msg)
Use NS_LOG to output a message of level LOG_DEBUG.
Definition: log.h:236
PhyEntities m_phyEntities
OrganizationIdentifier oi
Definition: vsa-manager.h:62
std::vector< Ptr< WifiPhy > >::const_iterator PhyEntitiesI
virtual void SetPromiscReceiveCallback(PromiscReceiveCallback cb)
void AddMac(uint32_t channelNumber, Ptr< OcbWifiMac > mac)
virtual bool IsPointToPoint(void) const
Return true if the net device is on a point-to-point link.
virtual bool SetMtu(const uint16_t mtu)
Ptr< const AttributeAccessor > MakeObjectMapAccessor(U T::*memberVariable)
MakeAccessorHelper implementation for ObjectVector.
Definition: object-map.h:80
virtual Ptr< WifiRemoteStationManager > GetWifiRemoteStationManager(void) const
MacEntities m_macEntities
tuple address
Definition: first.py:37
virtual bool IsBridge(void) const
Return true if the net device is acting as a bridge.
Container for a set of ns3::Object pointers.
void SetChannelCoordinator(Ptr< ChannelCoordinator > channelCoordinator)
Ptr< ChannelScheduler > GetChannelScheduler(void) const
void SetPriority(uint8_t priority)
Set the tag's priority.
Definition: socket.cc:848
virtual uint32_t GetIfIndex(void) const
Ptr< const AttributeAccessor > MakeUintegerAccessor(T1 a1)
Create an AttributeAccessor for a class data member, or a lone class get functor or set method...
Definition: uinteger.h:45
virtual bool IsLinkUp(void) const
a unique identifier for an interface.
Definition: type-id.h:58
TypeId SetParent(TypeId tid)
Set the parent TypeId.
Definition: type-id.cc:904
bool RegisterTxProfile(const TxProfile &txprofile)
AcIndex
This enumeration defines the Access Categories as an enumeration with values corresponding to the AC ...
Definition: qos-utils.h:36
void CancelTx(uint32_t channelNumber, enum AcIndex ac)
void Initialize(void)
Invoke DoInitialize on all Objects aggregated to this one.
Definition: object.cc:183
virtual bool Send(Ptr< Packet > packet, const Address &dest, uint16_t protocolNumber)
void AddHeader(const Header &header)
Add header to this packet.
Definition: packet.cc:257
Header for the LLC/SNAP encapsulation.
virtual void SetNode(Ptr< Node > node)