A Discrete-Event Network Simulator
API
ocb-wifi-mac.cc
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1/*
2 * Copyright (c) 2008 INRIA
3 * Copyright (c) 2013 Dalian University of Technology
4 *
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License version 2 as
7 * published by the Free Software Foundation;
8 *
9 * This program is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12 * GNU General Public License for more details.
13 *
14 * You should have received a copy of the GNU General Public License
15 * along with this program; if not, write to the Free Software
16 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
17 *
18 * Author: Mathieu Lacage <mathieu.lacage@sophia.inria.fr>
19 * Junling Bu <linlinjavaer@gmail.com>
20 */
21
22#include "ocb-wifi-mac.h"
23
24#include "higher-tx-tag.h"
27
28#include "ns3/channel-access-manager.h"
29#include "ns3/event-id.h"
30#include "ns3/ht-capabilities.h"
31#include "ns3/log.h"
32#include "ns3/mac-rx-middle.h"
33#include "ns3/pointer.h"
34#include "ns3/string.h"
35#include "ns3/vht-capabilities.h"
36
37namespace ns3
38{
39
40NS_LOG_COMPONENT_DEFINE("OcbWifiMac");
41
43
46
49{
50 static TypeId tid = TypeId("ns3::OcbWifiMac")
52 .SetGroupName("Wave")
53 .AddConstructor<OcbWifiMac>();
54 return tid;
55}
56
58{
59 NS_LOG_FUNCTION(this);
60 // Let the lower layers know that we are acting as an OCB node
62}
63
65{
66 NS_LOG_FUNCTION(this);
67}
68
69void
71{
72 NS_LOG_FUNCTION(this << vsc << peer << oi);
73 WifiMacHeader hdr;
75 hdr.SetAddr1(peer);
76 hdr.SetAddr2(GetAddress());
78 hdr.SetDsNotFrom();
79 hdr.SetDsNotTo();
82 vsc->AddHeader(vsa);
83
84 if (GetQosSupported())
85 {
86 uint8_t tid = QosUtilsGetTidForPacket(vsc);
87 tid = tid > 7 ? 0 : tid;
88 GetQosTxop(tid)->Queue(vsc, hdr);
89 }
90 else
91 {
92 GetTxop()->Queue(vsc, hdr);
93 }
94}
95
96void
98{
99 NS_LOG_FUNCTION(this << oi << &cb);
101}
102
103void
105{
106 NS_LOG_FUNCTION(this << oi);
108}
109
110void
112{
113 NS_LOG_WARN("in OCB mode we should not call SetSsid");
114}
115
116Ssid
118{
119 NS_LOG_WARN("in OCB mode we should not call GetSsid");
120 // we really do not want to return ssid, however we have to provide
121 return WifiMac::GetSsid();
122}
123
124void
126{
127 NS_LOG_WARN("in OCB mode we should not call SetBsid");
128}
129
131OcbWifiMac::GetBssid(uint8_t /* linkId */) const
132{
133 NS_LOG_WARN("in OCB mode we should not call GetBssid");
134 return WILDCARD_BSSID;
135}
136
137void
139{
140 NS_LOG_FUNCTION(this << &linkUp);
142
143 // The approach taken here is that, from the point of view of a STA
144 // in OCB mode, the link is always up, so we immediately invoke the
145 // callback if one is set
146 linkUp();
147}
148
149void
151{
152 NS_LOG_FUNCTION(this << &linkDown);
154 NS_LOG_WARN("in OCB mode the like will never down, so linkDown will never be called");
155}
156
157bool
159{
160 return true;
161}
162
163void
165{
166 NS_LOG_FUNCTION(this << packet << to);
167 if (GetWifiRemoteStationManager()->IsBrandNew(to))
168 {
169 // In ad hoc mode, we assume that every destination supports all
170 // the rates we support.
172 {
175 to,
177 }
179 {
181 to,
183 }
186 }
187
188 WifiMacHeader hdr;
189
190 // If we are not a QoS STA then we definitely want to use AC_BE to
191 // transmit the packet. A TID of zero will map to AC_BE (through \c
192 // QosUtilsMapTidToAc()), so we use that as our default here.
193 uint8_t tid = 0;
194
195 if (GetQosSupported())
196 {
199 hdr.SetQosNoEosp();
200 hdr.SetQosNoAmsdu();
201 // About transmission of multiple frames,
202 // in Ad-hoc mode TXOP is not supported for now, so TxopLimit=0;
203 // however in OCB mode, 802.11p do not allow transmit multiple frames
204 // so TxopLimit must equal 0
205 hdr.SetQosTxopLimit(0);
206
207 // Fill in the QoS control field in the MAC header
208 tid = QosUtilsGetTidForPacket(packet);
209 // Any value greater than 7 is invalid and likely indicates that
210 // the packet had no QoS tag, so we revert to zero, which'll
211 // mean that AC_BE is used.
212 if (tid > 7)
213 {
214 tid = 0;
215 }
216 hdr.SetQosTid(tid);
217 }
218 else
219 {
221 }
222
224 {
225 hdr.SetNoOrder(); // explicitly set to 0 for the time being since HT/VHT/HE control field is
226 // not yet implemented (set it to 1 when implemented)
227 }
228 hdr.SetAddr1(to);
229 hdr.SetAddr2(GetAddress());
231 hdr.SetDsNotFrom();
232 hdr.SetDsNotTo();
233
234 if (GetQosSupported())
235 {
236 // Sanity check that the TID is valid
237 NS_ASSERT(tid < 8);
238 GetQosTxop(tid)->Queue(packet, hdr);
239 }
240 else
241 {
242 GetTxop()->Queue(packet, hdr);
243 }
244}
245
246/*
247 * see 802.11p-2010 chapter 11.19
248 * here we only care about data packet and vsa management frame
249 */
250void
252{
253 NS_LOG_FUNCTION(this << *mpdu << +linkId);
254 const WifiMacHeader* hdr = &mpdu->GetHeader();
255 // Create a copy of the MPDU payload because non-const operations like RemovePacketTag
256 // and RemoveHeader may need to be performed.
257 Ptr<Packet> packet = mpdu->GetPacket()->Copy();
258 NS_ASSERT(!hdr->IsCtl());
260
261 Mac48Address from = hdr->GetAddr2();
262 Mac48Address to = hdr->GetAddr1();
263
264 if (GetWifiRemoteStationManager()->IsBrandNew(from))
265 {
266 // In ad hoc mode, we assume that every destination supports all
267 // the rates we support.
269 {
272 from,
274 }
276 {
278 from,
280 }
283 }
284
285 if (hdr->IsData())
286 {
287 if (hdr->IsQosData() && hdr->IsQosAmsdu())
288 {
289 NS_LOG_DEBUG("Received A-MSDU from" << from);
291 }
292 else
293 {
294 ForwardUp(packet, from, to);
295 }
296 return;
297 }
298
299 // why put check here, not before "if (hdr->IsData ())" ?
300 // because WifiNetDevice::ForwardUp needs to m_promiscRx data packet
301 // and will filter data packet for itself
302 // so we need to filter management frame
303 if (to != GetAddress() && !to.IsGroup())
304 {
305 NS_LOG_LOGIC("the management frame is not for us");
306 NotifyRxDrop(packet);
307 return;
308 }
309
310 if (hdr->IsMgt() && hdr->IsAction())
311 {
312 // yes, we only care about VendorSpecificAction frame in OCB mode
313 // other management frames will be handled by WifiMac::Receive
315 packet->PeekHeader(vsaHdr);
316 if (vsaHdr.GetCategory() == CATEGORY_OF_VSA)
317 {
319 packet->RemoveHeader(vsa);
322
323 if (cb.IsNull())
324 {
325 NS_LOG_DEBUG("cannot find VscCallback for OrganizationIdentifier=" << oi);
326 return;
327 }
328 bool succeed = cb(this, oi, packet, from);
329
330 if (!succeed)
331 {
332 NS_LOG_DEBUG("vsc callback could not handle the packet successfully");
333 }
334
335 return;
336 }
337 }
338 // Invoke the receive handler of our parent class to deal with any
339 // other frames. Specifically, this will handle Block Ack-related
340 // Management Action frames.
341 WifiMac::Receive(Create<WifiMpdu>(packet, *hdr), linkId);
342}
343
344void
346{
347 NS_LOG_FUNCTION(this << cwmin << cwmax << aifsn << ac);
348 Ptr<Txop> dcf;
349 switch (ac)
350 {
351 case AC_VO:
352 dcf = WifiMac::GetVOQueue();
353 dcf->SetWifiMac(this);
354 dcf->SetMinCw((cwmin + 1) / 4 - 1);
355 dcf->SetMaxCw((cwmin + 1) / 2 - 1);
356 dcf->SetAifsn(aifsn);
357 break;
358 case AC_VI:
359 dcf = WifiMac::GetVIQueue();
360 dcf->SetWifiMac(this);
361 dcf->SetMinCw((cwmin + 1) / 2 - 1);
362 dcf->SetMaxCw(cwmin);
363 dcf->SetAifsn(aifsn);
364 break;
365 case AC_BE:
366 dcf = WifiMac::GetBEQueue();
367 dcf->SetWifiMac(this);
368 dcf->SetMinCw(cwmin);
369 dcf->SetMaxCw(cwmax);
370 dcf->SetAifsn(aifsn);
371 break;
372 case AC_BK:
373 dcf = WifiMac::GetBKQueue();
374 dcf->SetWifiMac(this);
375 dcf->SetMinCw(cwmin);
376 dcf->SetMaxCw(cwmax);
377 dcf->SetAifsn(aifsn);
378 break;
379 case AC_BE_NQOS:
380 dcf = WifiMac::GetTxop();
381 dcf->SetWifiMac(this);
382 dcf->SetMinCw(cwmin);
383 dcf->SetMaxCw(cwmax);
384 dcf->SetAifsn(aifsn);
385 break;
386 case AC_BEACON:
387 // done by ApWifiMac
388 break;
389 case AC_UNDEF:
390 NS_FATAL_ERROR("I don't know what to do with this");
391 break;
392 }
393
395}
396
397void
399{
400 NS_LOG_FUNCTION(this << phy);
402 NS_ABORT_MSG_IF(!phy->GetOperatingChannel().IsSet(),
403 "PHY operating channel must have been set");
404 auto& link = GetLink(SINGLE_LINK_OP_ID);
405 if (link.channelAccessManager != nullptr)
406 {
407 link.channelAccessManager->SetupPhyListener(phy);
408 }
409 if (link.feManager != nullptr)
410 {
411 link.feManager->SetWifiPhy(phy);
412 }
413}
414
415void
417{
418 NS_LOG_FUNCTION(this << standard);
419 NS_ASSERT(standard == WIFI_STANDARD_80211p);
420
421 if (GetNLinks() == 0)
422 {
423 WifiMac::SetWifiPhys({nullptr}); // for the purpose of adding a link
424 }
425
426 auto& link = GetLink(SINGLE_LINK_OP_ID);
427
428 // Setup ChannelAccessManager
429 link.channelAccessManager = CreateObject<ChannelAccessManager>();
430
431 uint32_t cwmin = 15;
432 uint32_t cwmax = 1023;
433
434 if (!GetQosSupported())
435 {
436 // The special value of AC_BE_NQOS which exists in the Access
437 // Category enumeration allows us to configure plain old DCF.
438 ConfigureEdca(cwmin, cwmax, 2, AC_BE_NQOS);
439 }
440 else
441 {
442 // Now we configure the EDCA functions
443 // see IEEE802.11p-2010 section 7.3.2.29
444 // Wave CCH and SCHs set default 802.11p EDCA
445 ConfigureEdca(cwmin, cwmax, 2, AC_VO);
446 ConfigureEdca(cwmin, cwmax, 3, AC_VI);
447 ConfigureEdca(cwmin, cwmax, 6, AC_BE);
448 ConfigureEdca(cwmin, cwmax, 9, AC_BK);
449 }
450
451 // Setup FrameExchangeManager
452 auto feManager = CreateObject<WaveFrameExchangeManager>();
453 feManager->SetWifiMac(this);
454 feManager->SetMacTxMiddle(m_txMiddle);
455 feManager->SetMacRxMiddle(m_rxMiddle);
456 feManager->SetAddress(GetAddress());
457 link.channelAccessManager->SetupFrameExchangeManager(feManager);
458 if (auto phy = GetWifiPhy(); phy != nullptr)
459 {
460 feManager->SetWifiPhy(phy);
461 link.channelAccessManager->SetupPhyListener(phy);
462 }
463 link.feManager = feManager;
464}
465
466void
468{
469 NS_LOG_FUNCTION(this);
471 GetLink(SINGLE_LINK_OP_ID).feManager->NotifySleepNow();
472}
473
474void
476{
477 NS_LOG_FUNCTION(this);
478 // wake-up operation is not required in m_low object
480}
481
482void
484{
485 NS_LOG_FUNCTION(this << duration);
488}
489
490void
492{
493 NS_LOG_FUNCTION(this << ac);
494 Ptr<QosTxop> queue = GetQosTxop(ac);
495 NS_ASSERT(queue);
496 // reset and flush queue
497 queue->GetWifiMacQueue()->Flush();
498}
499
500void
502{
503 NS_LOG_FUNCTION(this);
504 // The switching event is used to notify MAC entity reset its operation.
506 GetLink(SINGLE_LINK_OP_ID).feManager->NotifySwitchingStartNow(Time(0));
507}
508
509void
511{
512 NS_LOG_FUNCTION(this << device);
513 // To extend current OcbWifiMac for WAVE 1609.4, we shall use WaveFrameExchangeManager
514 StaticCast<WaveFrameExchangeManager>(GetLink(SINGLE_LINK_OP_ID).feManager)
515 ->SetWaveNetDevice(device);
516}
517
518std::optional<uint8_t>
520{
521 return 0;
522}
523
524void
526{
527 NS_LOG_FUNCTION(this);
529}
530
531} // namespace ns3
Callback template class.
Definition: callback.h:443
bool IsNull() const
Check for null implementation.
Definition: callback.h:556
void NotifyWakeupNow()
Notify the Txop that the device has been resumed from sleep mode.
void NotifyCcaBusyStartNow(Time duration, WifiChannelListType channelType, const std::vector< Time > &per20MhzDurations)
void NotifySleepNow()
Notify the Txop that the device has been put in sleep mode.
void NotifySwitchingStartNow(Time duration)
an EUI-48 address
Definition: mac48-address.h:46
bool IsGroup() const
static Mac48Address GetBroadcast()
STAs communicate with each directly outside the context of a BSS.
Definition: ocb-wifi-mac.h:51
std::optional< uint8_t > GetLinkIdByAddress(const Mac48Address &address) const override
Get the ID of the link having the given MAC address, if any.
virtual Ssid GetSsid() const
virtual void SetBssid(Mac48Address bssid)
void CancleTx(enum AcIndex ac)
void SetWifiPhy(Ptr< WifiPhy > phy)
Set the PHY.
VendorSpecificContentManager m_vscManager
VSC manager.
Definition: ocb-wifi-mac.h:195
void SetLinkUpCallback(Callback< void > linkUp) override
SetLinkUpCallback and SetLinkDownCallback will be overloaded In OCB mode, stations can send packets d...
void Suspend()
To support MAC extension for multiple channel operation, Suspend the activity in current MAC entity.
void AddReceiveVscCallback(OrganizationIdentifier oi, VscCallback cb)
Definition: ocb-wifi-mac.cc:97
virtual Mac48Address GetBssid(uint8_t) const
This method shall not be used in WAVE environment and here it will overloaded to log warn message.
virtual void SetSsid(Ssid ssid)
void EnableForWave(Ptr< WaveNetDevice > device)
void SendVsc(Ptr< Packet > vsc, Mac48Address peer, OrganizationIdentifier oi)
Definition: ocb-wifi-mac.cc:70
void Enqueue(Ptr< Packet > packet, Mac48Address to) override
virtual void SetLinkDownCallback(Callback< void > linkDown)
void Receive(Ptr< const WifiMpdu > mpdu, uint8_t linkId) override
This method acts as the MacRxMiddle receive callback and is invoked to notify us that a frame has bee...
void DoDispose() override
Destructor implementation.
void Resume()
To support MAC extension for multiple channel operation, Resume the activity of suspended MAC entity.
void MakeVirtualBusy(Time duration)
~OcbWifiMac() override
Definition: ocb-wifi-mac.cc:64
void ConfigureEdca(uint32_t cwmin, uint32_t cwmax, uint32_t aifsn, enum AcIndex ac)
void RemoveReceiveVscCallback(OrganizationIdentifier oi)
static TypeId GetTypeId()
Get the type ID.
Definition: ocb-wifi-mac.cc:48
void ConfigureStandard(enum WifiStandard standard) override
bool CanForwardPacketsTo(Mac48Address to) const override
Return true if packets can be forwarded to the given destination, false otherwise.
void Reset()
To support MAC extension for multiple channel operation, Reset current MAC entity and flush its inter...
the organization identifier is a public organizationally unique identifier assigned by the IEEE.
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 PeekHeader(Header &header) const
Deserialize but does not remove the header from the internal buffer.
Definition: packet.cc:305
The IEEE 802.11 SSID Information Element.
Definition: ssid.h:36
Simulation virtual time values and global simulation resolution.
Definition: nstime.h:105
void SetMaxCw(uint32_t maxCw)
Set the maximum contention window size.
Definition: txop.cc:256
Ptr< WifiMacQueue > GetWifiMacQueue() const
Return the packet queue associated with this Txop.
Definition: txop.cc:220
virtual void SetWifiMac(const Ptr< WifiMac > mac)
Set the wifi MAC this Txop is associated to.
Definition: txop.cc:195
void SetAifsn(uint8_t aifsn)
Set the number of slots that make up an AIFS.
Definition: txop.cc:353
void SetMinCw(uint32_t minCw)
Set the minimum contention window size.
Definition: txop.cc:227
virtual void Queue(Ptr< Packet > packet, const WifiMacHeader &hdr)
Definition: txop.cc:505
a unique identifier for an interface.
Definition: type-id.h:60
TypeId SetParent(TypeId tid)
Set the parent TypeId.
Definition: type-id.cc:935
See IEEE 802.11-2007 chapter 7.3.1.11 and 7.4.5 also IEEE 802.11p-2010 chapter 7.4....
void SetOrganizationIdentifier(OrganizationIdentifier oi)
uint8_t GetCategory() const
Get the category field.
OrganizationIdentifier GetOrganizationIdentifier() const
void RegisterVscCallback(OrganizationIdentifier oi, VscCallback cb)
VscCallback FindVscCallback(OrganizationIdentifier &oi)
void DeregisterVscCallback(OrganizationIdentifier &oi)
Implements the IEEE 802.11 MAC header.
void SetQosAckPolicy(QosAckPolicy policy)
Set the QoS Ack policy in the QoS control field.
bool IsQosAmsdu() const
Check if the A-MSDU present bit is set in the QoS control field.
Mac48Address GetAddr3() const
Return the address in the Address 3 field.
Mac48Address GetAddr1() const
Return the address in the Address 1 field.
void SetQosTxopLimit(uint8_t txop)
Set TXOP limit in the QoS control field.
bool IsMgt() const
Return true if the Type is Management.
bool IsCtl() const
Return true if the Type is Control.
void SetNoOrder()
Unset order bit in the frame control field.
void SetDsNotFrom()
Un-set the From DS bit in the Frame Control field.
bool IsAction() const
Return true if the header is an Action header.
void SetAddr1(Mac48Address address)
Fill the Address 1 field with the given address.
void SetQosNoAmsdu()
Set that A-MSDU is not present.
void SetType(WifiMacType type, bool resetToDsFromDs=true)
Set Type/Subtype values with the correct values depending on the given type.
Mac48Address GetAddr2() const
Return the address in the Address 2 field.
void SetQosTid(uint8_t tid)
Set the TID for the QoS header.
bool IsData() const
Return true if the Type is DATA.
void SetQosNoEosp()
Un-set the end of service period (EOSP) bit in the QoS control field.
void SetAddr2(Mac48Address address)
Fill the Address 2 field with the given address.
bool IsQosData() const
Return true if the Type is DATA and Subtype is one of the possible values for QoS Data.
void SetAddr3(Mac48Address address)
Fill the Address 3 field with the given address.
void SetDsNotTo()
Un-set the To DS bit in the Frame Control field.
base class for all MAC-level wifi objects.
Definition: wifi-mac.h:92
Ptr< QosTxop > GetBEQueue() const
Accessor for the AC_BE channel access function.
Definition: wifi-mac.cc:523
Ptr< Txop > GetTxop() const
Accessor for the Txop object.
Definition: wifi-mac.cc:483
VhtCapabilities GetVhtCapabilities(uint8_t linkId) const
Return the VHT capabilities of the device for the given link.
Definition: wifi-mac.cc:1435
bool GetQosSupported() const
Return whether the device supports QoS.
Definition: wifi-mac.cc:1011
uint8_t GetNLinks() const
Get the number of links (can be greater than 1 for 11be devices only).
Definition: wifi-mac.cc:901
Ptr< MacRxMiddle > m_rxMiddle
RX middle (defragmentation etc.)
Definition: wifi-mac.h:638
Ssid GetSsid() const
Definition: wifi-mac.cc:455
bool GetHtSupported() const
Return whether the device supports HT.
Definition: wifi-mac.cc:1262
Ptr< QosTxop > GetVOQueue() const
Accessor for the AC_VO channel access function.
Definition: wifi-mac.cc:511
void SetTypeOfStation(TypeOfStation type)
This method is invoked by a subclass to specify what type of station it is implementing.
Definition: wifi-mac.cc:410
Ptr< WifiPhy > GetWifiPhy(uint8_t linkId=SINGLE_LINK_OP_ID) const
Definition: wifi-mac.cc:949
HtCapabilities GetHtCapabilities(uint8_t linkId) const
Return the HT capabilities of the device for the given link.
Definition: wifi-mac.cc:1378
bool GetVhtSupported(uint8_t linkId) const
Return whether the device supports VHT on the given link.
Definition: wifi-mac.cc:1268
Ptr< MacTxMiddle > m_txMiddle
TX middle (aggregation etc.)
Definition: wifi-mac.h:639
virtual void DeaggregateAmsduAndForward(Ptr< const WifiMpdu > mpdu)
This method can be called to de-aggregate an A-MSDU and forward the constituent packets up the stack.
Definition: wifi-mac.cc:1226
Ptr< QosTxop > GetVIQueue() const
Accessor for the AC_VI channel access function.
Definition: wifi-mac.cc:517
void SetLinkDownCallback(Callback< void > linkDown)
Definition: wifi-mac.cc:1087
Ptr< QosTxop > GetBKQueue() const
Accessor for the AC_BK channel access function.
Definition: wifi-mac.cc:529
void NotifyRxDrop(Ptr< const Packet > packet)
Definition: wifi-mac.cc:594
virtual void SetLinkUpCallback(Callback< void > linkUp)
Definition: wifi-mac.cc:1080
Ptr< WifiRemoteStationManager > GetWifiRemoteStationManager(uint8_t linkId=0) const
Definition: wifi-mac.cc:881
void ForwardUp(Ptr< const Packet > packet, Mac48Address from, Mac48Address to)
Forward the packet up to the device.
Definition: wifi-mac.cc:1105
virtual void Receive(Ptr< const WifiMpdu > mpdu, uint8_t linkId)
This method acts as the MacRxMiddle receive callback and is invoked to notify us that a frame has bee...
Definition: wifi-mac.cc:1112
Mac48Address GetAddress() const
Definition: wifi-mac.cc:442
LinkEntity & GetLink(uint8_t linkId) const
Get a reference to the link associated with the given ID.
Definition: wifi-mac.cc:893
virtual void SetWifiPhys(const std::vector< Ptr< WifiPhy > > &phys)
Definition: wifi-mac.cc:920
Ptr< QosTxop > GetQosTxop(AcIndex ac) const
Accessor for a specified EDCA object.
Definition: wifi-mac.cc:489
void DoDispose() override
Destructor implementation.
Definition: wifi-mac.cc:368
void AddAllSupportedMcs(Mac48Address address)
Invoked in a STA or AP to store all of the MCS supported by a destination which is also supported loc...
void AddAllSupportedModes(Mac48Address address)
Invoked in a STA or AP to store all of the modes supported by a destination which is also supported l...
void AddStationVhtCapabilities(Mac48Address from, VhtCapabilities vhtCapabilities)
Records VHT capabilities of the remote station.
void RecordDisassociated(Mac48Address address)
Records that the STA was disassociated.
void AddStationHtCapabilities(Mac48Address from, HtCapabilities htCapabilities)
Records HT capabilities of the remote station.
#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_FATAL_ERROR(msg)
Report a fatal error with a message and terminate.
Definition: fatal-error.h:160
#define NS_ABORT_MSG_IF(cond, msg)
Abnormal program termination if a condition is true, with a message.
Definition: abort.h:108
#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_LOGIC(msg)
Use NS_LOG to output a message of level LOG_LOGIC.
Definition: log.h:282
#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
#define NS_OBJECT_ENSURE_REGISTERED(type)
Register an Object subclass with the TypeId system.
Definition: object-base.h:45
WifiStandard
Identifies the IEEE 802.11 specifications that a Wifi device can be configured to use.
uint8_t QosUtilsGetTidForPacket(Ptr< const Packet > packet)
If a QoS tag is attached to the packet, returns a value < 8.
Definition: qos-utils.cc:158
AcIndex
This enumeration defines the Access Categories as an enumeration with values corresponding to the AC ...
Definition: qos-utils.h:74
@ WIFI_STANDARD_80211p
@ WIFI_CHANLIST_PRIMARY
@ AC_BE_NQOS
Non-QoS.
Definition: qos-utils.h:84
@ AC_BE
Best Effort.
Definition: qos-utils.h:76
@ AC_VO
Voice.
Definition: qos-utils.h:82
@ AC_VI
Video.
Definition: qos-utils.h:80
@ AC_BK
Background.
Definition: qos-utils.h:78
@ AC_UNDEF
Total number of ACs.
Definition: qos-utils.h:88
@ AC_BEACON
Beacon queue.
Definition: qos-utils.h:86
address
Definition: first.py:40
void(* Time)(Time oldValue, Time newValue)
TracedValue callback signature for Time.
Definition: nstime.h:850
Every class exported by the ns3 library is enclosed in the ns3 namespace.
@ OCB
Definition: wifi-mac.h:64
static constexpr uint8_t SINGLE_LINK_OP_ID
Link ID for single link operations (helps tracking places where correct link ID is to be used to supp...
Definition: wifi-utils.h:140
@ WIFI_MAC_MGT_ACTION
@ WIFI_MAC_DATA
@ WIFI_MAC_QOSDATA
static const Mac48Address WILDCARD_BSSID
Wildcard BSSID.
Definition: ocb-wifi-mac.cc:45
static const uint8_t CATEGORY_OF_VSA
see IEEE 802.11-2007 chapter 7.3.1.11 Table 7-24—Category values
ssid
Definition: third.py:86
phy
Definition: third.py:82