11#include "ns3/config.h"
12#include "ns3/eht-configuration.h"
13#include "ns3/ht-frame-exchange-manager.h"
15#include "ns3/mgt-action-headers.h"
16#include "ns3/mgt-headers.h"
17#include "ns3/mobility-helper.h"
18#include "ns3/multi-link-element.h"
19#include "ns3/node-list.h"
20#include "ns3/packet-socket-helper.h"
21#include "ns3/packet.h"
22#include "ns3/pointer.h"
23#include "ns3/rng-seed-manager.h"
24#include "ns3/rr-multi-user-scheduler.h"
25#include "ns3/spectrum-wifi-phy.h"
26#include "ns3/string.h"
27#include "ns3/vht-configuration.h"
28#include "ns3/wifi-acknowledgment.h"
29#include "ns3/wifi-assoc-manager.h"
30#include "ns3/wifi-mac-header.h"
31#include "ns3/wifi-mac-queue.h"
32#include "ns3/wifi-net-device.h"
33#include "ns3/wifi-protection.h"
46 :
TestCase(
"Check the implementation of WifiAssocManager::GetNextAffiliatedAp()")
120 "Unexpected neighbor ID of the second reported AP");
123 "Unexpected tbtt ID of the second reported AP");
129 "Did not expect to find a third suitable reported AP");
136 auto apIt = allAps.begin();
139 "Unexpected neighbor ID of the first reported AP");
142 "Unexpected tbtt ID of the first reported AP");
147 "Unexpected neighbor ID of the second reported AP");
150 "Unexpected tbtt ID of the second reported AP");
158 .SetGroupName(
"Wifi")
164 :
TestCase(
"Test the WifiMac::SwapLinks() method")
171 const std::map<uint8_t, uint8_t>& links,
172 const std::map<uint8_t, uint8_t>& expected)
179 std::vector<Ptr<WifiPhy>> phys;
180 std::vector<Ptr<FrameExchangeManager>> feManagers;
181 std::vector<Ptr<WifiRemoteStationManager>> rsManagers;
183 for (std::size_t i = 0; i < nLinks; ++i)
187 phys.emplace_back(phy);
191 mac->SetWifiPhys(phys);
192 mac->SetFrameExchangeManagers(feManagers);
193 mac->SetWifiRemoteStationManagers(rsManagers);
194 mac->GetTxop()->SetWifiMac(mac);
197 for (std::size_t
id = 0;
id < nLinks; ++id)
199 mac->GetTxop()->SetMinCw(
id,
id);
202 mac->SwapLinks(links);
206 for (
const auto& [linkId, phyId] : expected)
210 "Link ID " << +linkId <<
" does not exist");
217 text <<
": Link " << +phyId <<
" has not been moved to link "
224 text <<
": Link ID stored by FrameExchangeManager has not been updated");
230 text <<
": Link ID stored by RemoteStationManager has not been updated");
234 text <<
": Txop Link entity " << +phyId
235 <<
" has not been moved to link " << +linkId);
244 RunOne(
"No change needed", 3, {{0, 0}, {1, 1}, {2, 2}}, {{0, 0}, {1, 1}, {2, 2}});
245 RunOne(
"Circular swapping", 3, {{0, 2}, {1, 0}, {2, 1}}, {{0, 1}, {1, 2}, {2, 0}});
246 RunOne(
"Swapping two links, one unchanged", 3, {{0, 2}, {2, 0}}, {{0, 2}, {1, 1}, {2, 0}});
247 RunOne(
"Non-circular swapping, autodetect how to close the loop",
250 {{0, 1}, {1, 2}, {2, 0}});
251 RunOne(
"A different non-circular swapping, same result",
254 {{0, 1}, {1, 2}, {2, 0}});
255 RunOne(
"One move only, autodetect how to complete the swapping",
258 {{0, 2}, {1, 1}, {2, 0}});
259 RunOne(
"Create a new link ID (2), remove the unused one (0)",
263 RunOne(
"One move only that creates a new link ID (2)", 2, {{0, 2}}, {{1, 1}, {2, 0}});
264 RunOne(
"Move all links to a new set of IDs", 2, {{0, 2}, {1, 3}}, {{2, 0}, {3, 1}});
269 :
TestCase(
"Test the assignment of AIDs"),
270 m_linkChannels({
"{36, 0, BAND_5GHZ, 0}",
"{1, 0, BAND_6GHZ, 0}",
"{2, 0, BAND_2_4GHZ, 0}"}),
272 m_assocType(assocType),
282 int64_t streamNumber{1};
285 wifiApNode.Create(1);
290 wifi.SetRemoteStationManager(
"ns3::ConstantRateWifiManager",
310 mac.SetType(
"ns3::ApWifiMac",
316 auto apDevice = wifi.Install(phyHelper, mac, wifiApNode);
325 for (
const auto&
id : links)
333 mac.SetType(
"ns3::StaWifiMac",
342 auto staDevice = wifi.Install(phyHelper, mac, staNode);
343 wifiStaNodes.Add(staNode);
352 positionAlloc->Add(Vector(0.0, 0.0, 0.0));
354 mobility.SetPositionAllocator(positionAlloc);
355 mobility.SetMobilityModel(
"ns3::ConstantPositionMobilityModel");
356 mobility.Install(wifiApNode);
357 mobility.Install(wifiStaNodes);
362 mac->TraceConnectWithoutContext(
371 const auto aid = staMac->GetAssociationId();
373 std::stringstream linksStr;
374 const auto setupLinks = staMac->GetSetupLinkIds();
375 std::copy(setupLinks.cbegin(), setupLinks.cend(), std::ostream_iterator<int>(linksStr,
" "));
377 NS_LOG_INFO(
"STA " << staMac->GetAddress() <<
" associated with AID " << aid <<
" links "
384 const auto expectedLinks =
390 "Unexpected set of setup links " << linksStr.str());
397 ->SetSsid(
Ssid(
"ns-3-ssid"));
417 mac->TraceDisconnectWithoutContext(
429 m_staChannels(baseParams.staChannels),
430 m_apChannels(baseParams.apChannels),
431 m_fixedPhyBands(baseParams.fixedPhyBands),
432 m_assocType(baseParams.assocType),
433 m_staMacs(nStations),
434 m_nStations(nStations),
436 m_rxPkts(nStations + 1)
442 std::optional<Direction> direction)
444 std::optional<Mac48Address> apAddr;
445 std::optional<Mac48Address> staAddr;
448 if (psdu->GetHeader(0).IsQosData())
450 direction = (!psdu->GetHeader(0).IsToDs() && psdu->GetHeader(0).IsFromDs()) ?
DL :
UL;
456 if (!psdu->GetAddr1().IsGroup())
458 staAddr = psdu->GetAddr1();
460 apAddr = psdu->GetAddr2();
464 if (!psdu->GetAddr1().IsGroup())
466 apAddr = psdu->GetAddr1();
468 staAddr = psdu->GetAddr2();
474 for (uint8_t linkId = 0; linkId <
m_apMac->GetNLinks(); linkId++)
476 if (
m_apMac->GetFrameExchangeManager(linkId)->GetAddress() == *apAddr)
484 "Address " << *apAddr <<
" is not an AP device address. "
485 <<
"PSDU: " << *psdu);
493 for (
const auto& linkId :
m_staMacs[i]->GetLinkIds())
495 if (
m_staMacs[i]->GetFrameExchangeManager(linkId)->GetAddress() == *staAddr)
508 "Address " << *staAddr <<
" is not a STA device address. "
509 <<
"PSDU: " << *psdu);
520 auto linkId = mac->GetLinkForPhy(phyId);
524 for (
const auto& [aid, psdu] : psduMap)
526 std::stringstream ss;
527 ss << std::setprecision(10) <<
"PSDU #" <<
m_txPsdus.size() <<
" Link ID "
528 << +linkId.value() <<
" Phy ID " << +phyId <<
" #MPDUs " << psdu->GetNMpdus();
529 for (
auto it = psdu->begin(); it != psdu->end(); ++it)
543 auto band = mac->GetDevice()->GetPhy(phyId)->GetPhyBand();
544 bool hasHtCapabilities;
545 bool hasVhtCapabilities;
546 bool hasHeCapabilities;
547 bool hasHe6GhzCapabilities;
548 bool hasEhtCapabilities;
550 auto findCapabilities = [&](
auto&& frame) {
551 hasHtCapabilities = frame.template Get<HtCapabilities>().has_value();
552 hasVhtCapabilities = frame.template Get<VhtCapabilities>().has_value();
553 hasHeCapabilities = frame.template Get<HeCapabilities>().has_value();
554 hasHe6GhzCapabilities = frame.template Get<He6GhzBandCapabilities>().has_value();
555 hasEhtCapabilities = frame.template Get<EhtCapabilities>().has_value();
558 switch (mpdu->GetHeader().GetType())
562 mpdu->GetPacket()->PeekHeader(beacon);
563 findCapabilities(beacon);
569 mpdu->GetPacket()->PeekHeader(probeReq);
570 findCapabilities(probeReq);
576 mpdu->GetPacket()->PeekHeader(probeResp);
577 findCapabilities(probeResp);
583 mpdu->GetPacket()->PeekHeader(assocReq);
584 findCapabilities(assocReq);
590 mpdu->GetPacket()->PeekHeader(assocResp);
591 findCapabilities(assocResp);
602 "HT Capabilities should not be present in a mgt frame sent in 6 GHz band");
606 "VHT Capabilities should only be present in a mgt frame sent in 5 GHz band");
609 "HE Capabilities should always be present in a mgt frame");
611 hasHe6GhzCapabilities,
613 "HE 6GHz Band Capabilities should only be present in a mgt frame sent in 6 GHz band");
616 "EHT Capabilities should always be present in a mgt frame");
622 NS_LOG_INFO(
"Packet received by NODE " << +nodeId <<
"\n");
628 const std::vector<std::string>& channels,
636 for (
const auto& str : channels)
643 for (
const auto& [band, channel] : channelMap)
654 int64_t streamNumber = 30;
657 wifiApNode.Create(1);
665 wifi.SetRemoteStationManager(
"ns3::ConstantRateWifiManager",
686 mac.SetType(
"ns3::StaWifiMac",
696 mac.SetType(
"ns3::ApWifiMac",
715 positionAlloc->Add(Vector(0.0, 0.0, 0.0));
716 positionAlloc->Add(Vector(1.0, 0.0, 0.0));
717 mobility.SetPositionAllocator(positionAlloc);
719 mobility.SetMobilityModel(
"ns3::ConstantPositionMobilityModel");
720 mobility.Install(wifiApNode);
721 mobility.Install(wifiStaNodes);
731 for (uint8_t phyId = 0; phyId <
m_apMac->GetDevice()->GetNPhys(); phyId++)
734 "/NodeList/0/DeviceList/*/$ns3::WifiNetDevice/Phys/" + std::to_string(phyId) +
740 for (uint8_t phyId = 0; phyId <
m_staMacs[i]->GetDevice()->GetNPhys(); phyId++)
743 "/DeviceList/*/$ns3::WifiNetDevice/Phys/" +
744 std::to_string(phyId) +
"/PhyTxPsduBegin",
752 packetSocket.
Install(wifiApNode);
753 packetSocket.
Install(wifiStaNodes);
765 server->SetLocal(srvAddr);
766 (*nodeIt)->AddApplication(server);
767 server->SetStartTime(
Seconds(0));
774 "/NodeList/" + std::to_string(nodeId) +
775 "/ApplicationList/*/$ns3::PacketSocketServer/Rx",
780 m_apMac->TraceConnectWithoutContext(
"AssociatedSta",
790 uint8_t priority)
const
797 client->SetRemote(sockAddr);
798 client->SetStartTime(delay);
829 const std::vector<uint8_t>& setupLinks,
830 const std::vector<uint8_t>& staSetupLinks,
832 const std::string& dlTidToLinkMapping,
833 const std::string& ulTidToLinkMapping,
834 bool support160MHzOp)
836 m_setupLinks(setupLinks),
837 m_staSetupLinks(staSetupLinks.empty() ? setupLinks : staSetupLinks),
838 m_scanType(scanType),
840 m_apNegSupport(apNegSupport),
841 m_dlTidLinkMappingStr(dlTidToLinkMapping),
842 m_ulTidLinkMappingStr(ulTidToLinkMapping),
843 m_support160MHzOp(support160MHzOp)
847 "Number of setup links must be the same for AP and non-AP device");
859 auto staEhtConfig =
m_staMacs[0]->GetEhtConfiguration();
860 staEhtConfig->m_tidLinkMappingSupport = WifiTidToLinkMappingNegSupport::ANY_LINK_SET;
871 if (
m_apNegSupport == WifiTidToLinkMappingNegSupport::NOT_SUPPORTED ||
872 (
m_apNegSupport == WifiTidToLinkMappingNegSupport::SAME_LINK_SET &&
880 using TupleRefs = std::tuple<std::reference_wrapper<const WifiTidLinkMapping>,
881 std::reference_wrapper<uint8_t>,
882 std::reference_wrapper<std::optional<uint8_t>>,
884 for (
auto& [mappingRef, tid1Ref, tid2Ref, mac] :
889 for (uint8_t tid1 = 0; tid1 < 8; tid1++)
891 if (
auto it1 = mappingRef.get().find(tid1);
892 it1 != mappingRef.get().cend() && it1->second.size() !=
m_setupLinks.size())
895 for (uint8_t tid2 = tid1 + 1; tid2 < 8; tid2++)
897 if (
auto it2 = mappingRef.get().find(tid2);
898 it2 != mappingRef.get().cend() && it2->second.size() !=
m_setupLinks.size())
900 std::list<uint8_t> intersection;
901 std::set_intersection(it1->second.cbegin(),
903 it2->second.cbegin(),
905 std::back_inserter(intersection));
906 if (intersection.empty())
909 tid2Ref.get() = tid2;
914 tid1Ref.get() = tid1;
919 std::list<uint8_t> tids = {tid1Ref.get()};
922 tids.emplace_back(*tid2Ref.get());
926 for (
auto tid : tids)
928 std::string attrName;
932 attrName =
"VI_MaxAmpduSize";
935 attrName =
"VO_MaxAmpduSize";
938 attrName =
"BE_MaxAmpduSize";
941 attrName =
"BK_MaxAmpduSize";
959 staMac->GetWifiPhy(linkId++)->SetAttribute(
"ChannelSettings",
StringValue(str));
974 m_apMac->GetDevice()->GetNode()->AddApplication(
978 m_apMac->GetDevice()->GetNode()->AddApplication(
990 m_staMacs[0]->GetDevice()->GetNode()->AddApplication(
994 m_staMacs[0]->GetDevice()->GetNode()->AddApplication(
1011 std::size_t index = 0;
1015 const auto& mpdu = *frameInfo.psduMap.begin()->second->begin();
1016 const auto& linkId = frameInfo.linkId;
1018 switch (mpdu->GetHeader().GetType())
1050 std::size_t expectedProbeResp = 0;
1059 if (staChannel == apChannel)
1061 expectedProbeResp++;
1073 expectedRxDlPkts *= 2;
1077 "Unexpected number of DL packets received");
1082 expectedRxUlPkts *= 2;
1086 "Unexpected number of UL packets received");
1099 mpdu->GetHeader().GetAddr2(),
1100 "TA of Beacon frame is not the address of the link it is transmitted on");
1102 mpdu->GetPacket()->PeekHeader(beacon);
1106 if (
m_apMac->GetNLinks() == 1)
1110 "RNR Element in Beacon frame from single link AP");
1113 "Multi-Link Element in Beacon frame from single link AP");
1121 static_cast<std::size_t
>(
m_apMac->GetNLinks() - 1),
1122 "Unexpected number of Neighbor AP Info fields in RNR");
1123 for (std::size_t nbrApInfoId = 0; nbrApInfoId < rnr->GetNNbrApInfoFields(); nbrApInfoId++)
1127 "MLD Parameters not present");
1130 "Expected only one TBTT Info subfield per Neighbor AP Info");
1131 uint8_t nbrLinkId = rnr->GetMldParameters(nbrApInfoId, 0).linkId;
1133 m_apMac->GetFrameExchangeManager(nbrLinkId)->GetAddress(),
1134 "BSSID advertised in Neighbor AP Info field "
1136 <<
" does not match the address configured on the link "
1137 "advertised in the same field");
1143 "Incorrect MLD address advertised in Multi-Link Element");
1146 "Incorrect Link ID advertised in Multi-Link Element");
1157 m_apMac->GetFrameExchangeManager(linkId)->GetAddress(),
1158 mpdu->GetHeader().GetAddr2(),
1159 "TA of Probe Response is not the address of the link it is transmitted on");
1161 mpdu->GetPacket()->PeekHeader(probeResp);
1165 if (
m_apMac->GetNLinks() == 1)
1169 "RNR Element in Probe Response frame from single link AP");
1172 "Multi-Link Element in Probe Response frame from single link AP");
1180 static_cast<std::size_t
>(
m_apMac->GetNLinks() - 1),
1181 "Unexpected number of Neighbor AP Info fields in RNR");
1182 for (std::size_t nbrApInfoId = 0; nbrApInfoId < rnr->GetNNbrApInfoFields(); nbrApInfoId++)
1186 "MLD Parameters not present");
1189 "Expected only one TBTT Info subfield per Neighbor AP Info");
1190 uint8_t nbrLinkId = rnr->GetMldParameters(nbrApInfoId, 0).linkId;
1192 m_apMac->GetFrameExchangeManager(nbrLinkId)->GetAddress(),
1193 "BSSID advertised in Neighbor AP Info field "
1195 <<
" does not match the address configured on the link "
1196 "advertised in the same field");
1202 "Incorrect MLD address advertised in Multi-Link Element");
1205 "Incorrect Link ID advertised in Multi-Link Element");
1216 m_staMacs[0]->GetFrameExchangeManager(linkId)->GetAddress(),
1217 mpdu->GetHeader().GetAddr2(),
1218 "TA of Assoc Request frame is not the address of the link it is transmitted on");
1220 mpdu->GetPacket()->PeekHeader(assoc);
1223 if (
m_apMac->GetNLinks() == 1)
1227 "Multi-Link Element in Assoc Request frame to single link AP");
1229 else if (
m_staMacs[0]->GetAssocType() == WifiAssocType::LEGACY)
1234 "Multi-Link Element in Assoc Request frame from non-AP using legacy association");
1240 "No Multi-Link Element in Assoc Request frame");
1243 "Incorrect MLD Address advertised in Multi-Link Element");
1245 mle->GetNPerStaProfileSubelements(),
1247 "Incorrect number of Per-STA Profile subelements in Multi-Link Element");
1248 for (std::size_t i = 0; i < mle->GetNPerStaProfileSubelements(); i++)
1250 auto& perStaProfile = mle->GetPerStaProfile(i);
1253 "Per-STA Profile must contain STA MAC address");
1255 auto staLinkId =
m_staMacs[0]->GetLinkIdByAddress(perStaProfile.GetStaMacAddress());
1257 staLinkId.has_value(),
1259 "No link found with the STA MAC address advertised in Per-STA Profile");
1263 "The STA that sent the Assoc Request should not be included in a Per-STA Profile");
1267 "Not expecting to setup STA link ID " << +staLinkId.value());
1270 +perStaProfile.GetLinkId(),
1271 "Not expecting to request association to AP Link ID in Per-STA Profile");
1274 "Missing Association Request in Per-STA Profile");
1283 if (
m_apMac->GetNLinks() == 1 ||
m_staMacs[0]->GetAssocType() == WifiAssocType::LEGACY ||
1288 "Didn't expect a TID-to-Link Mapping IE in Assoc Request frame");
1296 "Unexpected number of TID-to-Link Mapping IE in Assoc Request");
1301 +
static_cast<uint8_t
>(
dir),
1302 "Unexpected direction in TID-to-Link Mapping IE " << tlmId);
1303 auto& expectedMapping =
1307 expectedMapping.empty(),
1308 "Default Link Mapping bit not set correctly");
1310 expectedMapping.size(),
1311 "Unexpected number of Link Mapping Of TID n fields");
1312 for (uint8_t tid = 0; tid < 8; tid++)
1314 if (
auto it = expectedMapping.find(tid); it != expectedMapping.cend())
1318 "Unexpected link mapping for TID "
1319 << +tid <<
" direction " <<
dir);
1325 "Expecting no Link Mapping Of TID n field for TID "
1326 << +tid <<
" direction " <<
dir);
1331 if (tlm.size() == 1)
1333 checkTlm(0, WifiDirection::BOTH_DIRECTIONS);
1337 std::size_t dlId = (tlm[0].m_control.direction == WifiDirection::DOWNLINK ? 0 : 1);
1338 std::size_t ulId = (dlId == 0 ? 1 : 0);
1340 checkTlm(dlId, WifiDirection::DOWNLINK);
1341 checkTlm(ulId, WifiDirection::UPLINK);
1354 m_apMac->GetFrameExchangeManager(linkId)->GetAddress(),
1355 mpdu->GetHeader().GetAddr2(),
1356 "TA of Assoc Response frame is not the address of the link it is transmitted on");
1358 mpdu->GetPacket()->PeekHeader(assoc);
1361 if (
m_apMac->GetNLinks() == 1)
1365 "Multi-Link Element in Assoc Response frame with single link AP");
1369 if (
m_staMacs[0]->GetAssocType() == WifiAssocType::LEGACY)
1374 "Multi-Link Element in Assoc Response frame with non-AP using legacy association");
1381 "Incorrect MLD Address advertised in Multi-Link Element");
1384 "Incorrect number of Per-STA Profile subelements in Multi-Link Element");
1385 for (std::size_t i = 0; i < mle->GetNPerStaProfileSubelements(); i++)
1387 auto& perStaProfile = mle->GetPerStaProfile(i);
1390 "Per-STA Profile must contain STA MAC address");
1392 auto apLinkId =
m_apMac->GetLinkIdByAddress(perStaProfile.GetStaMacAddress());
1394 apLinkId.has_value(),
1396 "No link found with the STA MAC address advertised in Per-STA Profile");
1398 +perStaProfile.GetLinkId(),
1399 "Link ID and MAC address advertised in Per-STA Profile do not match");
1403 "The AP that sent the Assoc Response should not be included in a Per-STA Profile");
1407 "Not expecting to setup AP link ID " << +apLinkId.value());
1410 "Missing Association Response in Per-STA Profile");
1417 "Didn't expect to find a TID-to-Link Mapping IE in Association Response");
1430 ++linkIdIter, ++staLinkIdIter)
1432 auto staLinkId = *staLinkIdIter;
1433 auto apLinkId = *linkIdIter;
1435 auto staAddr =
m_staMacs[0]->GetFrameExchangeManager(staLinkId)->GetAddress();
1436 auto apAddr =
m_apMac->GetFrameExchangeManager(apLinkId)->GetAddress();
1438 auto staRemoteMgr =
m_staMacs[0]->GetWifiRemoteStationManager(staLinkId);
1439 auto apRemoteMgr =
m_apMac->GetWifiRemoteStationManager(apLinkId);
1444 "Unexpected BSSID for STA link ID " << +staLinkId);
1449 "Incorrect MLD address stored by STA on link ID " << +staLinkId);
1451 (staRemoteMgr->GetAffiliatedStaAddress(
m_apMac->GetAddress()) == apAddr),
1453 "Incorrect affiliated address stored by STA on link ID " << +staLinkId);
1459 "Expecting STA " << staAddr <<
" to be associated on link "
1464 (apRemoteMgr->GetMldAddress(staAddr) ==
m_staMacs[0]->GetAddress()),
1466 "Incorrect MLD address stored by AP on link ID " << +apLinkId);
1468 (apRemoteMgr->GetAffiliatedStaAddress(
m_staMacs[0]->GetAddress()) == staAddr),
1470 "Incorrect affiliated address stored by AP on link ID " << +apLinkId);
1472 auto aid =
m_apMac->GetAssociationId(staAddr, apLinkId);
1473 const auto& staList =
m_apMac->GetStaList(apLinkId);
1476 "STA " << staAddr <<
" not found in list of associated STAs");
1480 const auto& staChannel =
m_staMacs[0]->GetWifiPhy(staLinkId)->GetOperatingChannel();
1481 const auto& apChannel =
m_apMac->GetWifiPhy(apLinkId)->GetOperatingChannel();
1483 auto width = apChannel.GetTotalWidth();
1484 auto primary20 = apChannel.GetPrimaryChannelIndex(
MHz_u{20});
1489 primary20 -= apChannel.GetPrimaryChannelIndex(
MHz_u{80}) * 4;
1494 "Incorrect operating channel number for STA on link " << +staLinkId);
1496 apChannel.GetPrimaryChannelCenterFrequency(width),
1497 "Incorrect operating channel frequency for STA on link "
1501 "Incorrect operating channel width for STA on link " << +staLinkId);
1503 +apChannel.GetPhyBand(),
1504 "Incorrect operating PHY band for STA on link " << +staLinkId);
1507 "Incorrect operating primary channel index for STA on link "
1512 auto checkStoredMapping =
1516 "Link mapping stored by "
1517 << (mac->GetTypeOfStation() ==
AP ?
"AP" :
"non-AP")
1518 <<
" MLD for " <<
dir <<
" direction "
1519 << (present ?
"expected" :
"not expected"));
1522 const auto& mapping =
1525 (mac->GetTidToLinkMapping(dest->GetAddress(),
dir)->get() == mapping),
1527 "Incorrect link mapping stored by "
1528 << (mac->GetTypeOfStation() ==
AP ?
"AP" :
"non-AP") <<
" MLD for " <<
dir
1533 for (uint8_t tid = 0; tid < 8; ++tid)
1535 const auto& linkSet = mapping.contains(tid) ? mapping.at(tid) : setupLinks;
1537 for (
const auto linkId : setupLinks)
1540 mac->TidMappedOnLink(dest->GetAddress(),
dir, tid, linkId),
1541 linkSet.contains(linkId),
1542 "Incorrect return value on " << (mac ==
m_apMac ?
"AP" :
"STA")
1543 <<
" direction " <<
dir <<
" TID " << +tid
1544 <<
" linkID " << +linkId);
1550 auto storedMapping = (
m_apMac->GetNLinks() > 1) &&
1551 (
m_staMacs[0]->GetAssocType() == WifiAssocType::ML_SETUP) &&
1552 (
m_apNegSupport > WifiTidToLinkMappingNegSupport::NOT_SUPPORTED);
1553 checkStoredMapping(
m_apMac,
m_staMacs[0], WifiDirection::DOWNLINK, storedMapping);
1554 checkStoredMapping(
m_apMac,
m_staMacs[0], WifiDirection::UPLINK, storedMapping);
1555 checkStoredMapping(
m_staMacs[0],
m_apMac, WifiDirection::DOWNLINK, storedMapping);
1556 checkStoredMapping(
m_staMacs[0],
m_apMac, WifiDirection::UPLINK, storedMapping);
1562 const auto legacyAssoc = (
m_assocType == WifiAssocType::LEGACY ||
m_apMac->GetNLinks() == 1);
1568 "One link is expected to be setup with legacy association");
1571 for (uint8_t linkId = 0; linkId <
m_apMac->GetNLinks(); ++linkId)
1581 auto mask =
m_apMac->GetMacQueueScheduler()->GetQueueLinkMask(
AC_BE, queueId, linkId);
1584 "Unexpected presence/absence of mask on link " << +linkId);
1587 for (
const auto& linkId :
m_staMacs[0]->GetLinkIds())
1595 "Link " << +linkId <<
" has not been setup but is not disabled");
1602 "Expecting link " << +linkId <<
" to be active");
1613 const auto& hdr = mpdu->GetHeader();
1622 if (!hdr.IsToDs() && hdr.IsFromDs())
1624 dir = WifiDirection::DOWNLINK;
1625 width =
m_apMac->GetWifiPhy(linkId)->GetOperatingChannel().GetTotalWidth();
1627 else if (hdr.IsToDs() && !hdr.IsFromDs())
1629 dir = WifiDirection::UPLINK;
1630 width =
m_staMacs[0]->GetWifiPhy(linkId)->GetOperatingChannel().GetTotalWidth();
1634 NS_ABORT_MSG(
"Invalid combination for QoS data frame: ToDS(" << hdr.IsToDs() <<
") FromDS("
1635 << hdr.IsFromDs() <<
")");
1646 uint8_t tid = hdr.GetQosTid();
1649 (tid2.has_value() && tid == *tid2),
1650 "QoS frame with unexpected TID " << +tid);
1653 auto findLinkSet = [
this,
dir](uint8_t tid) -> std::set<uint8_t> {
1658 if (
auto it = mappingOptRef->get().find(tid); it != mappingOptRef->get().cend())
1660 linkSet = it->second;
1661 NS_ASSERT_MSG(!linkSet.empty(),
"TID " << +tid <<
" mapped to no link");
1667 auto linkSet = findLinkSet(tid);
1674 std::size_t nConcurFrames = std::min(qosFrames.size(), linkSet.size());
1677 for (std::size_t i = 0; i < nConcurFrames; i++)
1679 auto prev = qosFrames[i];
1689 if (qosFrames.size() < linkSet.size())
1694 "The " <<
dir <<
" QoS frame number " << qosFrames.size()
1695 <<
" was not sent concurrently with others on link "
1696 << +linkId <<
" which TID " << +tid <<
" is mapped to");
1703 "The " <<
dir <<
" QoS frame number " << qosFrames.size()
1704 <<
" was sent concurrently with others on a link "
1705 << +linkId <<
" which TID " << +tid <<
" is mapped to");
1713 "QoS frame sent on Link ID "
1714 << +linkId <<
" that does not belong to the link set of TID "
1721 auto otherTid = (tid == tid1) ? *tid2 : tid1;
1723 auto otherLinkSet = findLinkSet(otherTid);
1726 std::size_t nOtherConcurFrames = std::min(otherQosFrames.size(), otherLinkSet.size());
1729 for (std::size_t i = 0; i < nOtherConcurFrames; i++)
1731 auto prev = otherQosFrames[i];
1741 if (qosFrames.size() < linkSet.size())
1746 "The " <<
dir <<
" QoS frame number " << qosFrames.size()
1747 <<
" was not sent concurrently with others with TID "
1754 qosFrames.emplace_back(index);
1766 uint8_t nMaxInflight)
1768 std::string(
"Check data transmission between MLDs ") +
1771 ?
"with BA agreement, send BAR after BlockAck timeout"
1772 :
"with BA agreement, send Data frames after BlockAck timeout")
1773 :
"without BA agreement") +
1774 " (Traffic pattern: " +
std::to_string(static_cast<uint8_t>(trafficPattern)) +
1780 m_trafficPattern(trafficPattern),
1783 m_nMaxInflight(nMaxInflight),
1801 auto psdu = psduMap.begin()->second;
1803 switch (psdu->GetHeader(0).GetType())
1808 psdu->GetHeader(0).GetAddr2() == psdu->GetHeader(0).GetAddr3() ?
DL :
UL);
1813 m_uidList.push_front(psdu->GetPacket()->GetUid());
1821 for (
const auto& mpdu : *psdu)
1826 m_sourceMac->GetFrameExchangeManager(linkId)->GetAddress() ==
1827 mpdu->GetHeader().GetAddr2() &&
1828 !mpdu->GetHeader().GetAddr1().IsGroup())
1830 auto seqNo = mpdu->GetHeader().GetSequenceNumber();
1831 auto [it, success] =
1835 it->second = std::max(it->second, mpdu->GetInFlightLinkIds().size());
1839 for (std::size_t i = 0; i < psdu->GetNMpdus(); i++)
1845 if (psdu->GetHeader(i).GetSequenceNumber() != 1 ||
1852 auto uid = psdu->GetPayload(i)->GetUid();
1875 if (!
m_sourceMac->GetLinkIdByAddress(psdu->GetHeader(0).GetAddr1()))
1889 m_uidList.push_front(psdu->GetPacket()->GetUid());
1896 if (
m_sourceMac->GetLinkIdByAddress(psdu->GetHeader(0).GetAddr2()))
1914 "No BlockAck expected in AP to broadcast traffic pattern");
1928 auto mpdu = *psdu->begin();
1930 mpdu->GetPacket()->PeekHeader(blockAck);
1939 "MPDU 0 expected to be successfully received");
1943 "MPDU 1 expected to be received only in STA_TO_STA/STA_TO_BCAST scenarios");
1946 if (
m_staMacs[0]->GetSetupLinkIds().size() > 1)
1951 auto item = queue->PeekByTidAndAddress(0, rcvMac->GetAddress());
1952 std::size_t nQueuedPkt = 0;
1955 rcvMac->GetWifiPhy(linkId)->GetPhyBand()) +
1960 auto seqNo = item->GetHeader().GetSequenceNumber();
1963 "MPDU with seqNo=" << seqNo <<
" is not in flight");
1964 auto linkIds = item->GetInFlightLinkIds();
1967 "MPDU with seqNo=" << seqNo
1968 <<
" is in flight on multiple links");
1972 auto srcLinkId =
m_sourceMac->GetLinkIdByAddress(mpdu->GetHeader().GetAddr1());
1975 "Addr1 of BlockAck is not an originator's link address");
1978 "MPDU with seqNo=" << seqNo
1979 <<
" in flight on unexpected link");
1984 bool isQueued = (seqNo > (isMpdu1corrupted ? 0 : 1));
1988 bool isRetry = isQueued && seqNo <= 1;
1994 << item->GetHeader().GetSequenceNumber() <<
" should "
1995 << (isQueued ?
"" :
"not") <<
" be queued");
1997 item->GetHeader().IsRetry(),
1999 "Unexpected value for the Retry subfield of the MPDU with seqNo="
2000 << item->GetHeader().GetSequenceNumber());
2004 item = queue->PeekByTidAndAddress(0, rcvMac->GetAddress(), item);
2015 "Did not expect to receive a second BlockAck");
2017 std::pair<uint16_t, uint16_t> seqNos;
2022 if (
m_staMacs[0]->GetSetupLinkIds().size() > 1)
2032 "MPDU " << seqNos.first <<
" expected to be successfully received");
2035 "MPDU " << seqNos.second <<
" expected to be successfully received");
2051 mac->GetQosTxop(
AC_BE)->SetAttribute(
"UseExplicitBarAfterMissedBlockAck",
2058 for (std::size_t linkId = 0; linkId <
m_apMac->GetNLinks(); linkId++)
2062 m_apMac->GetWifiPhy(linkId)->SetPostReceptionErrorModel(errorModel);
2064 for (std::size_t i : {0, 1})
2066 for (
const auto linkId :
m_staMacs[i]->GetLinkIds())
2070 m_staMacs[i]->GetWifiPhy(linkId)->SetPostReceptionErrorModel(errorModel);
2084 destAddr =
m_staMacs[1]->GetDevice()->GetAddress();
2088 destAddr =
m_apMac->GetDevice()->GetAddress();
2092 destAddr =
m_staMacs[1]->GetDevice()->GetAddress();
2110 m_sourceMac->GetDevice()->GetNode()->AddApplication(
2117 m_sourceMac->GetDevice()->GetNode()->AddApplication(
2130 std::array<std::size_t, 3> expectedRxPkts{};
2159 "Unexpected number of packets received by the AP");
2162 "Unexpected number of packets received by STA 0");
2165 "Unexpected number of packets received by STA 1");
2170 std::size_t expectedBaCount = 0;
2171 std::size_t expectedBarCount = 0;
2178 expectedBaCount = 3;
2185 expectedBaCount = 1;
2191 "Unexpected number of BlockAck frames");
2194 "Unexpected number of BlockAckReq frames");
2205 "Did not collect number of simultaneous transmissions for all data frames");
2208 std::size_t maxCount = 0;
2214 "MPDU with seqNo=" << seqNo
2215 <<
" transmitted simultaneously more times than allowed");
2216 maxCount = std::max(maxCount, count);
2222 "Expected that at least one data frame was transmitted simultaneously a number of "
2223 "times equal to the NMaxInflights attribute");
2232 uint8_t nMaxInflight)
2234 std::string(
"Check MU data transmission between MLDs ") +
2236 ?
"(send BAR after BlockAck timeout,"
2237 :
"(send Data frames after BlockAck timeout,") +
2238 " MU Traffic pattern: " +
std::to_string(static_cast<uint8_t>(muTrafficPattern)) +
2239 ", nMaxInflight=" +
std::to_string(nMaxInflight) +
")",
2242 m_muTrafficPattern(muTrafficPattern),
2244 m_nMaxInflight(nMaxInflight),
2245 m_sockets(m_nStations),
2262 for (
const auto& [staId, psdu] : psduMap)
2264 switch (psdu->GetHeader(0).GetType())
2268 if (psdu->GetHeader(0).HasData())
2270 bool isDl = psdu->GetHeader(0).IsFromDs();
2272 isDl ? psdu->GetHeader(0).GetAddr1() : psdu->GetHeader(0).GetAddr2();
2273 auto address =
m_apMac->GetMldAddress(linkAddress).value_or(linkAddress);
2275 for (
const auto& mpdu : *psdu)
2278 auto seqNo = mpdu->GetHeader().GetSequenceNumber();
2280 {{address, seqNo}, mpdu->GetInFlightLinkIds().size()});
2283 it->second = std::max(it->second, mpdu->GetInFlightLinkIds().size());
2286 for (std::size_t i = 0; i < psdu->GetNMpdus(); i++)
2289 if (psdu->GetHeader(i).GetSequenceNumber() == 2)
2295 "MPDU " << **std::next(psdu->begin(), i)
2296 <<
" not transmitted in a TB PPDU");
2302 "MPDU " << **std::next(psdu->begin(), i)
2303 <<
" not transmitted in a DL MU PPDU");
2307 if (psdu->GetHeader(i).GetSequenceNumber() != 3)
2311 auto uid = psdu->GetPayload(i)->GetUid();
2348 m_uidList.push_front(psdu->GetPacket()->GetUid());
2354 psdu->GetPayload(0)->PeekHeader(trigger);
2363 auto band = mac->GetWifiPhy(linkId)->GetPhyBand();
2367 m_staMacs[i]->GetDevice()->GetNode()->AddApplication(
2376 muScheduler->SetAttribute(
"EnableUlOfdma",
BooleanValue(
false));
2423 auto mpdu = *psdu->begin();
2425 mpdu->GetPacket()->PeekHeader(blockAck);
2426 bool isMpdu3corrupted;
2441 auto index = indices.front();
2444 "Expected that a QoS data frame was corrupted");
2446 m_staMacs[i]->GetLinkIdByAddress(*m_dataCorruptedSta).has_value();
2449 "MPDU 2 expected to be successfully received");
2452 "Unexpected reception status for MPDU 3");
2462 "MPDU 2 expected to be successfully received");
2465 "Unexpected reception status for MPDU 3");
2469 m_staMacs[0]->GetSetupLinkIds().size() > 1)
2473 if (
m_staMacs[0]->GetFrameExchangeManager(linkId)->GetAddress() ==
2474 mpdu->GetHeader().GetAddr2())
2478 else if (
m_staMacs[1]->GetFrameExchangeManager(linkId)->GetAddress() ==
2479 mpdu->GetHeader().GetAddr2())
2485 NS_ABORT_MSG(
"BlockAck frame not sent by a station in DL scenario");
2487 auto item = queue->PeekByTidAndAddress(0, rcvMac->GetAddress());
2488 std::size_t nQueuedPkt = 0;
2491 rcvMac->GetWifiPhy(linkId)->GetPhyBand()) +
2496 auto seqNo = item->GetHeader().GetSequenceNumber();
2499 "MPDU with seqNo=" << seqNo <<
" is not in flight");
2500 auto linkIds = item->GetInFlightLinkIds();
2503 "MPDU with seqNo=" << seqNo
2504 <<
" is in flight on multiple links");
2508 auto srcLinkId =
m_apMac->GetLinkIdByAddress(mpdu->GetHeader().GetAddr1());
2511 "Addr1 of BlockAck is not an originator's link address");
2514 "MPDU with seqNo=" << seqNo
2515 <<
" in flight on unexpected link");
2520 bool isQueued = (seqNo > (isMpdu3corrupted ? 2 : 3));
2524 bool isRetry = isQueued && seqNo <= 3;
2530 << item->GetHeader().GetSequenceNumber() <<
" should "
2531 << (isQueued ?
"" :
"not") <<
" be queued");
2533 item->GetHeader().IsRetry(),
2535 "Unexpected value for the Retry subfield of the MPDU with seqNo="
2536 << item->GetHeader().GetSequenceNumber());
2540 item = queue->PeekByTidAndAddress(0, rcvMac->GetAddress(), item);
2575 mac->GetQosTxop(
AC_BE)->SetAttribute(
"UseExplicitBarAfterMissedBlockAck",
2580 mac->GetQosTxop(
AC_VI)->SetAttribute(
"UseExplicitBarAfterMissedBlockAck",
2592 m_apMac->AggregateObject(muScheduler);
2595 for (std::size_t linkId = 0; linkId <
m_apMac->GetNLinks(); linkId++)
2599 m_apMac->GetWifiPhy(linkId)->SetPostReceptionErrorModel(errorModel);
2601 for (std::size_t i : {0, 1})
2603 for (
const auto linkId :
m_staMacs[i]->GetLinkIds())
2607 m_staMacs[i]->GetWifiPhy(linkId)->SetPostReceptionErrorModel(errorModel);
2627 m_apMac->GetDevice()->GetNode()->AddApplication(
2633 m_apMac->GetDevice()->GetNode()->AddApplication(
2639 m_apMac->GetDevice()->GetNode()->AddApplication(
2657 m_staMacs[i]->GetDevice()->GetNode()->AddApplication(
2668 muScheduler->SetAttribute(
"EnableUlOfdma",
BooleanValue(
true));
2671 muScheduler->SetAccessReqInterval(
Seconds(0));
2684 std::array<std::size_t, 3> expectedRxPkts{};
2703 "Unexpected number of packets received by the AP");
2706 "Unexpected number of packets received by STA 0");
2709 "Unexpected number of packets received by STA 1");
2717 "Did not collect number of simultaneous transmissions for all data frames");
2720 std::size_t maxCount = 0;
2726 << txSeqNoPair.second
2727 <<
" transmitted simultaneously more times than allowed");
2728 maxCount = std::max(maxCount, count);
2734 "Expected that at least one data frame was transmitted simultaneously a number of "
2735 "times equal to the NMaxInflights attribute");
2742 "Check sequence numbers after CTS timeout",
2744 BaseParams{{
"{36, 0, BAND_5GHZ, 0}",
"{2, 0, BAND_2_4GHZ, 0}",
"{1, 0, BAND_6GHZ, 0}"},
2745 {
"{36, 0, BAND_5GHZ, 0}",
"{2, 0, BAND_2_4GHZ, 0}",
"{1, 0, BAND_6GHZ, 0}"},
2747 WifiAssocType::ML_SETUP}),
2748 m_nQosDataFrames(0),
2750 m_rtsCorrupted(
false)
2763 for (
const auto linkId :
m_staMacs[0]->GetLinkIds())
2789 auto psdu = psduMap.begin()->second;
2798 else if (psdu->GetHeader(0).IsQosData())
2818 std::size_t count{};
2822 auto psdu = txPsdu.psduMap.begin()->second;
2824 if (!psdu->GetHeader(0).IsQosData())
2832 uint16_t expectedSeqNo{};
2851 "Unexpected sequence number");
2860 "Check starting sequence number update after ADDBA Response timeout",
2862 BaseParams{{
"{36, 0, BAND_5GHZ, 0}",
"{1, 0, BAND_6GHZ, 0}"},
2863 {
"{36, 0, BAND_5GHZ, 0}",
"{1, 0, BAND_6GHZ, 0}"},
2865 WifiAssocType::ML_SETUP}),
2880 for (
const auto linkId :
m_staMacs[0]->GetLinkIds())
2904 auto psdu = psduMap.begin()->second;
2905 const auto& hdr = psdu->GetHeader(0);
2911 auto prevPsdu =
m_txPsdus.back().psduMap.begin()->second;
2913 if (prevPsdu->GetHeader(0).IsAction())
2916 (*prevPsdu->begin())->GetPacket()->PeekHeader(actionHdr);
2926 m_staMacs[0]->BlockUnicastTxOnLinks(WifiQueueBlockedReason::TID_NOT_MAPPED,
2939 ackDuration +
m_apMac->GetQosTxop(
AC_BE)->GetAddBaResponseTimeout(),
2941 m_apMac->BlockUnicastTxOnLinks(WifiQueueBlockedReason::TID_NOT_MAPPED,
2942 m_staMacs[0]->GetAddress(),
2945 WifiQueueBlockedReason::TID_NOT_MAPPED,
2958 (*psdu->begin())->GetPacket()->PeekHeader(actionHdr);
2962 auto band = m_staMacs[0]->GetDevice()->GetPhy(phyId)->GetPhyBand();
2968 auto mpdu = m_apMac->GetTxopQueue(
AC_BE)->Peek();
2972 "Expected a QoS data frame");
2976 "Expected the data frame to be inflight when ADDBA RESP is received");
2981 m_apMac->GetQosTxop(
AC_BE)->GetBaStartingSequence(m_staMacs[0]->GetAddress(),
2983 mpdu->GetHeader().GetSequenceNumber(),
2984 "Unexpected BA Starting Sequence Number");
2988 else if (hdr.IsQosData())
2991 if (m_nQosDataCount++ == 0)
2993 m_staErrorModel->SetList({psdu->GetPacket()->GetUid()});
2997 m_staErrorModel->SetList({});
3019 std::vector<uint8_t>,
3020 std::vector<uint8_t>,
3029 std::vector<std::set<uint8_t>>{{0, 1, 2}, {1, 2}, {0, 1}, {0, 2}, {0}, {1}, {2}},
3030 WifiAssocType::ML_SETUP),
3031 TestCase::Duration::QUICK);
3034 std::vector<std::set<uint8_t>>{{0, 1, 2}, {1, 2}, {0, 1}, {0, 2}, {0}, {1}, {2}},
3035 WifiAssocType::LEGACY),
3036 TestCase::Duration::QUICK);
3043 {
"{42, 80, BAND_5GHZ, 2}",
"{5, 40, BAND_2_4GHZ, 0}",
"{7, 80, BAND_6GHZ, 0}"},
3044 {
"{3, 40, BAND_2_4GHZ, 0}",
"{15, 160, BAND_6GHZ, 7}",
"{50, 160, BAND_5GHZ, 2}"},
3046 WifiAssocType::ML_SETUP},
3047 WifiScanType::PASSIVE,
3050 WifiTidToLinkMappingNegSupport::ANY_LINK_SET,
3054 TestCase::Duration::QUICK);
3056 for (
const auto& [baseParams,
3064 {{
"{36, 0, BAND_5GHZ, 0}",
"{2, 0, BAND_2_4GHZ, 0}",
"{1, 0, BAND_6GHZ, 0}"},
3065 {
"{36, 0, BAND_5GHZ, 0}",
"{2, 0, BAND_2_4GHZ, 0}",
"{1, 0, BAND_6GHZ, 0}"},
3067 WifiAssocType::ML_SETUP},
3070 WifiTidToLinkMappingNegSupport::NOT_SUPPORTED,
3072 "0,1,2,3 0,1,2; 4,5 0,1",
3073 "0,1,2,3 1,2; 6,7 0,1"
3076 ParamsTuple({{
"{108, 0, BAND_5GHZ, 0}",
"{36, 0, BAND_5GHZ, 0}",
"{1, 0, BAND_6GHZ, 0}"},
3077 {
"{36, 0, BAND_5GHZ, 0}",
"{120, 0, BAND_5GHZ, 0}",
"{5, 0, BAND_6GHZ, 0}"},
3079 WifiAssocType::ML_SETUP},
3082 WifiTidToLinkMappingNegSupport::SAME_LINK_SET,
3084 "0,1,2,3 0,1,2; 4,5 0,1",
3087 ParamsTuple({{
"{2, 0, BAND_2_4GHZ, 0}",
"{1, 0, BAND_6GHZ, 0}",
"{36, 0, BAND_5GHZ, 0}"},
3088 {
"{36, 0, BAND_5GHZ, 0}",
"{9, 0, BAND_6GHZ, 0}",
"{120, 0, BAND_5GHZ, 0}"},
3090 WifiAssocType::ML_SETUP},
3093 WifiTidToLinkMappingNegSupport::ANY_LINK_SET,
3094 "0,1,2,3 0; 4,5,6,7 1,2",
3095 "0,2,3 1,2; 1,4,5,6,7 0"
3100 {{
"{2, 0, BAND_2_4GHZ, 0}",
"{36, 0, BAND_5GHZ, 0}",
"{8, 20, BAND_2_4GHZ, 0}"},
3101 {
"{36, 0, BAND_5GHZ, 0}",
"{1, 0, BAND_6GHZ, 0}",
"{120, 0, BAND_5GHZ, 0}"},
3103 WifiAssocType::ML_SETUP},
3106 WifiTidToLinkMappingNegSupport::SAME_LINK_SET,
3108 "0,1,2,3,4,5,6,7 0",
3109 "0,1,2,3,4,5,6,7 0"),
3114 {{
"{2, 0, BAND_2_4GHZ, 0}",
"{36, 0, BAND_5GHZ, 0}",
"{8, 20, BAND_2_4GHZ, 0}"},
3115 {
"{36, 0, BAND_5GHZ, 0}",
"{1, 0, BAND_6GHZ, 0}",
"{120, 0, BAND_5GHZ, 0}"},
3117 WifiAssocType::ML_SETUP},
3120 WifiTidToLinkMappingNegSupport::ANY_LINK_SET,
3128 ParamsTuple({{
"{2, 0, BAND_2_4GHZ, 0}",
"{36, 0, BAND_5GHZ, 0}",
"{60, 0, BAND_5GHZ, 0}"},
3129 {
"{36, 0, BAND_5GHZ, 0}",
"{1, 0, BAND_6GHZ, 0}",
"{120, 0, BAND_5GHZ, 0}"},
3131 WifiAssocType::ML_SETUP},
3134 WifiTidToLinkMappingNegSupport::ANY_LINK_SET,
3140 ParamsTuple({{
"{2, 0, BAND_2_4GHZ, 0}",
"{120, 0, BAND_5GHZ, 0}"},
3141 {
"{36, 0, BAND_5GHZ, 0}",
"{1, 0, BAND_6GHZ, 0}",
"{120, 0, BAND_5GHZ, 0}"},
3143 WifiAssocType::ML_SETUP},
3146 WifiTidToLinkMappingNegSupport::ANY_LINK_SET,
3150 ParamsTuple({{
"{2, 0, BAND_2_4GHZ, 0}",
"{36, 0, BAND_5GHZ, 0}"},
3151 {
"{36, 0, BAND_5GHZ, 0}",
"{1, 0, BAND_6GHZ, 0}",
"{120, 0, BAND_5GHZ, 0}"},
3153 WifiAssocType::ML_SETUP},
3156 WifiTidToLinkMappingNegSupport::ANY_LINK_SET,
3160 ParamsTuple({{
"{2, 0, BAND_2_4GHZ, 0}",
"{36, 0, BAND_5GHZ, 0}",
"{60, 0, BAND_5GHZ, 0}"},
3161 {
"{120, 0, BAND_5GHZ, 0}",
"{1, 0, BAND_6GHZ, 0}",
"{36, 0, BAND_5GHZ, 0}"},
3163 WifiAssocType::LEGACY},
3166 WifiTidToLinkMappingNegSupport::ANY_LINK_SET,
3170 ParamsTuple({{
"{120, 0, BAND_5GHZ, 0}"},
3171 {
"{36, 0, BAND_5GHZ, 0}",
"{1, 0, BAND_6GHZ, 0}",
"{120, 0, BAND_5GHZ, 0}"},
3173 WifiAssocType::LEGACY},
3176 WifiTidToLinkMappingNegSupport::ANY_LINK_SET,
3180 ParamsTuple({{
"{120, 0, BAND_5GHZ, 0}"},
3181 {
"{36, 0, BAND_5GHZ, 0}",
"{1, 0, BAND_6GHZ, 0}",
"{120, 0, BAND_5GHZ, 0}"},
3183 WifiAssocType::ML_SETUP},
3186 WifiTidToLinkMappingNegSupport::ANY_LINK_SET,
3190 ParamsTuple({{
"{36, 0, BAND_5GHZ, 0}",
"{1, 0, BAND_6GHZ, 0}",
"{120, 0, BAND_5GHZ, 0}"},
3191 {
"{120, 0, BAND_5GHZ, 0}"},
3193 WifiAssocType::LEGACY},
3196 WifiTidToLinkMappingNegSupport::NOT_SUPPORTED,
3197 "0,1,2,3 0,1; 4,5,6,7 0,1",
3200 ParamsTuple({{
"{36, 0, BAND_5GHZ, 0}",
"{1, 0, BAND_6GHZ, 0}",
"{120, 0, BAND_5GHZ, 0}"},
3201 {
"{120, 0, BAND_5GHZ, 0}"},
3203 WifiAssocType::ML_SETUP},
3206 WifiTidToLinkMappingNegSupport::NOT_SUPPORTED,
3207 "0,1,2,3 0,1; 4,5,6,7 0,1",
3211 WifiScanType::PASSIVE,
3217 TestCase::Duration::QUICK);
3219 WifiScanType::ACTIVE,
3225 TestCase::Duration::QUICK);
3239 TestCase::Duration::QUICK);
3240 for (
const auto& useBarAfterMissedBa :
3247 useBarAfterMissedBa,
3249 TestCase::Duration::QUICK);
3254 useBarAfterMissedBa,
3256 TestCase::Duration::QUICK);
3265 for (
const auto& useBarAfterMissedBa :
3271 TestCase::Duration::QUICK);
3275 TestCase::Duration::QUICK);
Test that the AIDs that an AP MLD assigns to SLDs and MLDs are all unique.
WifiAssocType m_assocType
association type
AidAssignmentTest(const std::vector< std::set< uint8_t > > &linkIds, WifiAssocType assocType)
Constructor.
const std::vector< std::set< uint8_t > > m_linkIds
link IDs for all non-AP STAs/MLDs
void DoSetup() override
Implementation to do any local setup required for this TestCase.
void SetSsid(Ptr< StaWifiMac > staMac, Mac48Address)
Set the SSID on the next station that needs to start the association procedure.
void DoRun() override
Implementation to actually run this TestCase.
uint16_t m_expectedAid
expected AID for current non-AP STA/MLD
const std::vector< std::string > m_linkChannels
channels for all AP links
NetDeviceContainer m_staDevices
non-AP STAs/MLDs devices
Test the implementation of WifiAssocManager::GetNextAffiliatedAp(), which searches a given RNR elemen...
GetRnrLinkInfoTest()
Constructor.
void DoRun() override
Implementation to actually run this TestCase.
Test WifiMac subclass used to access the SwapLinks method.
static TypeId GetTypeId()
Test the WifiMac::SwapLinks() method.
void DoRun() override
Implementation to actually run this TestCase.
void RunOne(std::string text, std::size_t nLinks, const std::map< uint8_t, uint8_t > &links, const std::map< uint8_t, uint8_t > &expected)
Run a single test case.
Test data transmission between MLDs using OFDMA MU transmissions.
std::optional< Mac48Address > m_dataCorruptedSta
MAC address of the station that received MPDU with SeqNo=2 corrupted.
void CheckBlockAck(Ptr< const WifiPsdu > psdu, const WifiTxVector &txVector, uint8_t linkId)
Check the content of a received BlockAck frame when the max number of links on which an MPDU can be i...
std::vector< PacketSocketAddress > m_sockets
packet socket addresses for STAs
void Transmit(Ptr< WifiMac > mac, uint8_t phyId, WifiConstPsduMap psduMap, WifiTxVector txVector, double txPowerW) override
Callback invoked when a FEM passes PSDUs to the PHY.
std::size_t m_nPackets
number of application packets to generate
void DoRun() override
Implementation to actually run this TestCase.
MultiLinkMuTxTest(const BaseParams &baseParams, WifiMuTrafficPattern muTrafficPattern, WifiUseBarAfterMissedBa useBarAfterMissedBa, uint8_t nMaxInflight)
Constructor.
std::list< uint64_t > m_uidList
list of UIDs of packets to corrupt
std::size_t m_blockAckCount
transmitted BlockAck counter
void DoSetup() override
Implementation to do any local setup required for this TestCase.
RxErrorModelMap m_errorModels
error rate models to corrupt packets
std::map< AddrSeqNoPair, std::size_t > m_inflightCount
max number of simultaneous transmissions of each data frame
void StartTraffic() override
Start the generation of traffic (needs to be overridden)
bool m_useBarAfterMissedBa
whether to send BAR after missed BlockAck
bool m_waitFirstTf
whether we are waiting for the first Basic Trigger Frame
WifiMuTrafficPattern m_muTrafficPattern
the pattern of traffic to generate
std::size_t m_tfCount
transmitted Trigger Frame counter
std::size_t m_nMaxInflight
max number of links on which an MPDU can be inflight
Base class for Multi-Link Operations tests.
virtual void Transmit(Ptr< WifiMac > mac, uint8_t phyId, WifiConstPsduMap psduMap, WifiTxVector txVector, double txPowerW)
Callback invoked when a FEM passes PSDUs to the PHY.
void SetSsid(uint16_t aid, Mac48Address)
Set the SSID on the next station that needs to start the association procedure.
virtual void StartTraffic()
Start the generation of traffic (needs to be overridden)
std::vector< Ptr< StaWifiMac > > m_staMacs
STA wifi MACs.
const std::vector< std::string > m_staChannels
strings specifying channels for STA
void CheckAddresses(Ptr< const WifiPsdu > psdu, std::optional< Direction > direction=std::nullopt)
Check that the Address 1 and Address 2 fields of the given PSDU contain device MAC addresses.
virtual void L7Receive(uint8_t nodeId, Ptr< const Packet > p, const Address &addr)
Function to trace packets received by the server application.
Ptr< PacketSocketClient > GetApplication(const PacketSocketAddress &sockAddr, std::size_t count, std::size_t pktSize, Time delay=Seconds(0), uint8_t priority=0) const
void CheckCapabilities(Ptr< WifiMpdu > mpdu, Ptr< WifiMac > mac, uint8_t phyId)
Check that the expected Capabilities information elements are present in the given management frame b...
void SetChannels(SpectrumWifiPhyHelper &helper, const std::vector< std::string > &channels, const ChannelMap &channelMap)
Reset the given PHY helper, use the given strings to set the ChannelSettings attribute of the PHY obj...
const std::vector< std::string > m_apChannels
strings specifying channels for AP
WifiAssocType m_assocType
type of the association procedure used by non-AP devices
uint16_t m_lastAid
AID of last associated station.
std::map< FrequencyRange, Ptr< MultiModelSpectrumChannel > > ChannelMap
PHY band-indexed map of spectrum channels.
void DoSetup() override
Implementation to do any local setup required for this TestCase.
std::vector< std::size_t > m_rxPkts
number of packets received at application layer by each node (index is node ID)
uint8_t m_nStations
number of stations to create
Time m_duration
simulation duration
const std::vector< uint8_t > m_fixedPhyBands
links on non-AP MLD with fixed PHY band
std::vector< FrameInfo > m_txPsdus
transmitted PSDUs
Ptr< ApWifiMac > m_apMac
AP wifi MAC.
MultiLinkOperationsTestBase(const std::string &name, uint8_t nStations, const BaseParams &baseParams)
Constructor.
Multi-Link Discovery & Setup test.
const std::vector< uint8_t > m_staSetupLinks
IDs (as seen by the non-AP device) of the expected links to setup.
uint8_t m_dlTid1
the TID of the first set of DL QoS data frames
void CheckAssocRequest(Ptr< WifiMpdu > mpdu, uint8_t linkId)
Check correctness of the given Association Request frame.
void CheckProbeResponse(Ptr< WifiMpdu > mpdu, uint8_t linkId)
Check correctness of the given Probe Response frame.
std::optional< uint8_t > m_ulTid2
the TID of the optional set of UL QoS data frames
WifiScanType m_scanType
the scan type (active or passive)
void CheckMlSetup()
Check correctness of Multi-Link Setup procedure.
std::vector< std::size_t > m_qosFrames1
indices of QoS frames of the first set in the vector of TX PSDUs
void CheckDisabledLinks()
Check that links that are not setup on the non-AP MLD are disabled.
std::size_t m_nProbeResp
number of Probe Responses received by the non-AP MLD
std::string m_dlTidLinkMappingStr
DL TID-to-Link Mapping for non-AP MLD EHT configuration.
bool m_support160MHzOp
whether non-AP MLDs support 160 MHz operations
uint8_t m_ulTid1
the TID of the first set of UL QoS data frames
WifiTidLinkMapping m_ulTidLinkMapping
expected UL TID-to-Link Mapping requested by non-AP MLD and accepted by AP MLD
void StartTraffic() override
Start the generation of traffic (needs to be overridden)
void DoRun() override
Implementation to actually run this TestCase.
WifiTidToLinkMappingNegSupport m_apNegSupport
TID-to-Link Mapping negotiation supported by the AP MLD.
std::optional< uint8_t > m_dlTid2
the TID of the optional set of DL QoS data frames
WifiTidLinkMapping m_dlTidLinkMapping
expected DL TID-to-Link Mapping requested by non-AP MLD and accepted by AP MLD
void CheckAssocResponse(Ptr< WifiMpdu > mpdu, uint8_t linkId)
Check correctness of the given Association Response frame.
void CheckQosData(Ptr< WifiMpdu > mpdu, const WifiTxVector &txvector, uint8_t linkId, std::size_t index)
Check that QoS data frames are sent on links their TID is mapped to and with the correct TX width.
void DoSetup() override
Implementation to do any local setup required for this TestCase.
std::string m_ulTidLinkMappingStr
UL TID-to-Link Mapping for non-AP MLD EHT configuration.
MultiLinkSetupTest(const BaseParams &baseParams, WifiScanType scanType, const std::vector< uint8_t > &setupLinks, const std::vector< uint8_t > &staSetupLinks, WifiTidToLinkMappingNegSupport apNegSupport, const std::string &dlTidToLinkMapping, const std::string &ulTidToLinkMapping, bool support160MHzOp=true)
Constructor.
void CheckBeacon(Ptr< WifiMpdu > mpdu, uint8_t linkId)
Check correctness of the given Beacon frame.
std::vector< std::size_t > m_qosFrames2
indices of QoS frames of the optional set in the vector of TX PSDUs
const std::vector< uint8_t > m_setupLinks
IDs (as seen by the AP device) of the expected links to setup.
Test data transmission between two MLDs.
bool m_dataCorrupted
whether second data frame has been already corrupted
RxErrorModelMap m_errorModels
error rate models to corrupt packets
void Transmit(Ptr< WifiMac > mac, uint8_t phyId, WifiConstPsduMap psduMap, WifiTxVector txVector, double txPowerW) override
Callback invoked when a FEM passes PSDUs to the PHY.
std::list< uint64_t > m_uidList
list of UIDs of packets to corrupt
void DoRun() override
Implementation to actually run this TestCase.
std::size_t m_nPackets
number of application packets to generate
std::size_t m_nMaxInflight
max number of links on which an MPDU can be inflight
bool m_baEnabled
whether BA agreement is enabled or disabled
void StartTraffic() override
Start the generation of traffic (needs to be overridden)
bool m_useBarAfterMissedBa
whether to send BAR after missed BlockAck
std::size_t m_blockAckCount
transmitted BlockAck counter
WifiTrafficPattern m_trafficPattern
the pattern of traffic to generate
std::size_t m_blockAckReqCount
transmitted BlockAckReq counter
std::map< uint16_t, std::size_t > m_inflightCount
seqNo-indexed max number of simultaneous transmissions of a data frame
void DoSetup() override
Implementation to do any local setup required for this TestCase.
Ptr< WifiMac > m_sourceMac
MAC of the node sending application packets.
MultiLinkTxTest(const BaseParams &baseParams, WifiTrafficPattern trafficPattern, WifiBaEnabled baEnabled, WifiUseBarAfterMissedBa useBarAfterMissedBa, uint8_t nMaxInflight)
Constructor.
void CheckBlockAck(Ptr< const WifiPsdu > psdu, const WifiTxVector &txVector, uint8_t linkId)
Check the content of a received BlockAck frame when the max number of links on which an MPDU can be i...
Test release of sequence numbers upon CTS timeout in multi-link operations.
ReleaseSeqNoAfterCtsTimeoutTest()
PacketSocketAddress m_sockAddr
packet socket address
Ptr< ListErrorModel > m_errorModel
error rate model to corrupt first RTS frame
std::size_t m_nQosDataFrames
counter for transmitted QoS data frames
void StartTraffic() override
Start the generation of traffic (needs to be overridden)
bool m_rtsCorrupted
whether the first RTS frame has been corrupted
void DoSetup() override
Implementation to do any local setup required for this TestCase.
void Transmit(Ptr< WifiMac > mac, uint8_t phyId, WifiConstPsduMap psduMap, WifiTxVector txVector, double txPowerW) override
Callback invoked when a FEM passes PSDUs to the PHY.
void DoRun() override
Implementation to actually run this TestCase.
Test update of BA starting sequence number after ADDBA Response timeout in multi-link operations.
void DoSetup() override
Implementation to do any local setup required for this TestCase.
void DoRun() override
Implementation to actually run this TestCase.
PacketSocketAddress m_sockAddr
packet socket address
std::size_t m_nQosDataCount
counter for transmitted QoS data frames
void StartTraffic() override
Start the generation of traffic (needs to be overridden)
StartSeqNoUpdateAfterAddBaTimeoutTest()
void Transmit(Ptr< WifiMac > mac, uint8_t phyId, WifiConstPsduMap psduMap, WifiTxVector txVector, double txPowerW) override
Callback invoked when a FEM passes PSDUs to the PHY.
Ptr< ListErrorModel > m_staErrorModel
error rate model to corrupt frames at the non-AP MLD
WifiMultiLinkOperationsTestSuite()
a polymophic address class
AttributeValue implementation for Boolean.
Hold variables of type enum.
void SetList(const std::list< uint64_t > &packetlist)
static Mac48Address GetBroadcast()
Helper class used to assign positions and mobility models to nodes.
MultiUserScheduler is an abstract base class defining the API that APs supporting at least VHT can us...
holds a vector of ns3::NetDevice pointers
uint32_t GetN() const
Get the number of Ptr<NetDevice> stored in this container.
void Add(NetDeviceContainer other)
Append the contents of another NetDeviceContainer to the end of this container.
Ptr< NetDevice > Get(uint32_t i) const
Get the Ptr<NetDevice> stored in this container at a given index.
keep track of a set of node pointers.
static uint32_t GetNNodes()
an address for a packet socket
void SetProtocol(uint16_t protocol)
Set the protocol.
void SetPhysicalAddress(const Address address)
Set the destination address.
void SetSingleDevice(uint32_t device)
Set the address to match only a specified NetDevice.
Give ns3::PacketSocket powers to ns3::Node.
void Install(Ptr< Node > node) const
Aggregate an instance of a ns3::PacketSocketFactory onto the provided node.
AttributeValue implementation for Pointer.
Smart pointer class similar to boost::intrusive_ptr.
The Reduced Neighbor Report element.
std::size_t GetNNbrApInfoFields() const
Get the number of Neighbor AP Information fields.
std::size_t GetNTbttInformationFields(std::size_t nbrApInfoId) const
Get the number of TBTT Information fields included in the TBTT Information Set field of the given Nei...
void AddNbrApInfoField()
Add a Neighbor AP Information field.
void SetMldParameters(std::size_t nbrApInfoId, std::size_t index, const MldParameters &mldParams)
Set the MLD Parameters subfield of the i-th TBTT Information field of the given Neighbor AP Informati...
void AddTbttInformationField(std::size_t nbrApInfoId)
Add a TBTT Information fields to the TBTT Information Set field of the given Neighbor AP Information ...
static void SetRun(uint64_t run)
Set the run number of simulation.
static void SetSeed(uint32_t seed)
Set the seed.
static EventId Schedule(const Time &delay, FUNC f, Ts &&... args)
Schedule an event to expire after delay.
static void Destroy()
Execute the events scheduled with ScheduleDestroy().
static Time Now()
Return the current simulation virtual time.
static void Run()
Run the simulation.
static void Stop()
Tell the Simulator the calling event should be the last one executed.
Make it easy to create and manage PHY objects for the spectrum model.
void AddChannel(const Ptr< SpectrumChannel > channel, const FrequencyRange &freqRange=WHOLE_WIFI_SPECTRUM)
void SetChannel(const Ptr< SpectrumChannel > channel)
The IEEE 802.11 SSID Information Element.
AttributeValue implementation for Ssid.
Hold variables of type string.
void AddTestCase(TestCase *testCase, Duration duration=Duration::QUICK)
Add an individual child TestCase to this test suite.
TID-to-Link Mapping Information Element.
Simulation virtual time values and global simulation resolution.
AttributeValue implementation for Time.
a unique identifier for an interface.
TypeId SetParent(TypeId tid)
Set the parent TypeId.
Hold an unsigned integer type.
static std::optional< WifiAssocManager::RnrLinkInfo > GetNextAffiliatedAp(const ReducedNeighborReport &rnr, std::size_t nbrApInfoId)
Search the given RNR element for APs affiliated to the same AP MLD as the reporting AP.
static std::list< WifiAssocManager::RnrLinkInfo > GetAllAffiliatedAps(const ReducedNeighborReport &rnr)
Find all the APs affiliated to the same AP MLD as the reporting AP that sent the given RNR element.
helps to create WifiNetDevice objects
static int64_t AssignStreams(NetDeviceContainer c, int64_t stream)
Assign a fixed random variable stream number to the random variables used by the PHY and MAC aspects ...
create MAC layers for a ns3::WifiNetDevice.
base class for all MAC-level wifi objects.
void SetPcapCaptureType(PcapCaptureType type)
Set the PCAP capture type to be used.
void SetPcapDataLinkType(SupportedPcapDataLinkTypes dlt)
Set the data link type of PCAP traces to be used.
void Set(std::string name, const AttributeValue &v)
@ DLT_IEEE802_11_RADIO
Include Radiotap link layer information.
static Time CalculateTxDuration(uint32_t size, const WifiTxVector &txVector, WifiPhyBand band, uint16_t staId=SU_STA_ID)
This class mimics the TXVECTOR which is to be passed to the PHY in order to define the parameters whi...
const HeMuUserInfoMap & GetHeMuUserInfoMap() const
Get a const reference to the map HE MU user-specific transmission information indexed by STA-ID.
MHz_u GetChannelWidth() const
#define NS_ASSERT(condition)
At runtime, in debugging builds, if this condition is not true, the program prints the source file,...
#define NS_ASSERT_MSG(condition, message)
At runtime, in debugging builds, if this condition is not true, the program prints the message to out...
void SetDefault(std::string name, const AttributeValue &value)
void ConnectWithoutContext(std::string path, const CallbackBase &cb)
#define NS_FATAL_ERROR(msg)
Report a fatal error with a message and terminate.
#define NS_ABORT_MSG(msg)
Unconditional abnormal program termination with a message.
#define NS_ABORT_IF(cond)
Abnormal program termination if a condition is true.
#define NS_LOG_COMPONENT_DEFINE(name)
Define a Log component with a specific name.
#define NS_LOG_INFO(msg)
Use NS_LOG to output a message of level LOG_INFO.
Ptr< T > CreateObject(Args &&... args)
Create an object by type, with varying number of constructor parameters.
Ptr< T > CreateObjectWithAttributes(Args... args)
Allocate an Object on the heap and initialize with a set of attributes.
Ptr< T > Create(Ts &&... args)
Create class instances by constructors with varying numbers of arguments and return them by Ptr.
#define NS_TEST_ASSERT_MSG_LT(actual, limit, msg)
Test that an actual value is less than a limit and report and abort if not.
#define NS_TEST_ASSERT_MSG_EQ(actual, limit, msg)
Test that an actual and expected (limit) value are equal and report and abort if not.
#define NS_TEST_EXPECT_MSG_LT_OR_EQ(actual, limit, msg)
Test that an actual value is less than or equal to a limit and report if not.
#define NS_TEST_EXPECT_MSG_LT(actual, limit, msg)
Test that an actual value is less than a limit and report if not.
#define NS_TEST_EXPECT_MSG_GT(actual, limit, msg)
Test that an actual value is greater than a limit and report if not.
#define NS_TEST_EXPECT_MSG_NE(actual, limit, msg)
Test that an actual and expected (limit) value are not equal and report if not.
#define NS_TEST_EXPECT_MSG_EQ(actual, limit, msg)
Test that an actual and expected (limit) value are equal and report if not.
#define NS_TEST_ASSERT_MSG_NE(actual, limit, msg)
Test that an actual and expected (limit) value are not equal and report and abort if not.
Time MicroSeconds(uint64_t value)
Construct a Time in the indicated unit.
Time Seconds(double value)
Construct a Time in the indicated unit.
Time MilliSeconds(uint64_t value)
Construct a Time in the indicated unit.
WifiScanType
Scan type (active or passive)
AcIndex QosUtilsMapTidToAc(uint8_t tid)
Maps TID (Traffic ID) to Access classes.
WifiAssocType
Type of association performed by this device (provided that it is supported by the standard configure...
@ WIFI_PHY_BAND_6GHZ
The 6 GHz band.
@ WIFI_PHY_BAND_5GHZ
The 5 GHz band.
Every class exported by the ns3 library is enclosed in the ns3 namespace.
constexpr FrequencyRange WIFI_SPECTRUM_6_GHZ
Identifier for the frequency range covering the wifi spectrum in the 6 GHz band.
U * PeekPointer(const Ptr< U > &p)
std:: tuple< WifiContainerQueueType, WifiReceiverAddressType, Mac48Address, std::optional< uint8_t > > WifiContainerQueueId
Tuple (queue type, receiver address type, Address, TID) identifying a container queue.
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...
WifiTidToLinkMappingNegSupport
TID-to-Link Mapping Negotiation Support.
Ptr< T1 > DynamicCast(const Ptr< T2 > &p)
Cast a Ptr.
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...
constexpr FrequencyRange WIFI_SPECTRUM_5_GHZ
Identifier for the frequency range covering the wifi spectrum in the 5 GHz band.
@ WIFI_MAC_MGT_PROBE_REQUEST
@ WIFI_MAC_MGT_ASSOCIATION_RESPONSE
@ WIFI_MAC_MGT_ASSOCIATION_REQUEST
@ WIFI_MAC_MGT_PROBE_RESPONSE
WifiDirection
Wifi direction.
bool TidToLinkMappingValidForNegType1(const WifiTidLinkMapping &dlLinkMapping, const WifiTidLinkMapping &ulLinkMapping)
Check if the given TID-to-Link Mappings are valid for a negotiation type of 1.
Ptr< T1 > StaticCast(const Ptr< T2 > &p)
Cast a Ptr.
std::unordered_map< uint16_t, Ptr< const WifiPsdu > > WifiConstPsduMap
Map of const PSDUs indexed by STA-ID.
constexpr FrequencyRange WIFI_SPECTRUM_2_4_GHZ
Identifier for the frequency range covering the wifi spectrum in the 2.4 GHz band.
Configuration parameters common to all subclasses.
uint32_t pktSize
packet size used for the simulation (in bytes)
static WifiMultiLinkOperationsTestSuite g_wifiMultiLinkOperationsTestSuite
the test suite
WifiMuTrafficPattern
Tested MU traffic patterns.
WifiTrafficPattern
Tested traffic patterns.
WifiUseBarAfterMissedBa
Whether to send a BlockAckReq after a missed BlockAck.
WifiBaEnabled
Block Ack agreement enabled/disabled.