27 #include <ns3/pointer.h>
30 #include <ns3/simulator.h>
31 #include <ns3/lte-amc.h>
32 #include <ns3/cqa-ff-mac-scheduler.h>
33 #include <ns3/ff-mac-common.h>
34 #include <ns3/lte-vendor-specific-parameters.h>
35 #include <ns3/boolean.h>
39 #include <ns3/integer.h>
40 #include <ns3/string.h>
78 typedef std::map<CQI_value,LteFlowId_t,bool(*)(uint8_t,uint8_t)>
t_map_CQIToUE;
82 typedef std::map<CQI_value,LteFlowId_t,bool(*)(uint8_t,uint8_t)>::iterator
t_it_CQIToUE;
190 : m_scheduler (scheduler)
265 : m_cschedSapUser (0),
270 m_amc = CreateObject <LteAmc> ();
303 .AddConstructor<CqaFfMacScheduler>()
304 .AddAttribute (
"CqiTimerThreshold",
305 "The number of TTIs a CQI is valid (default 1000 - 1 sec.)",
308 MakeUintegerChecker<uint32_t> ())
309 .AddAttribute (
"CqaMetric",
310 "CqaFfMacScheduler metric type that can be: CqaFf, CqaPf",
314 .AddAttribute (
"HarqEnabled",
315 "Activate/Deactivate the HARQ [by default is active].",
319 .AddAttribute (
"UlGrantMcs",
320 "The MCS of the UL grant, must be [0..15] (default 0)",
323 MakeUintegerChecker<uint8_t> ())
390 dlHarqPrcStatus.resize (8,0);
393 dlHarqProcessesTimer.resize (8,0);
396 dlHarqdci.resize (8);
399 dlHarqRlcPdu.resize (2);
400 dlHarqRlcPdu.at (0).resize (8);
401 dlHarqRlcPdu.at (1).resize (8);
405 ulHarqPrcStatus.resize (8,0);
408 ulHarqdci.resize (8);
428 std::vector <struct LogicalChannelConfigListElement_s>::const_iterator lcit;
436 NS_LOG_ERROR (
"UE logical channels can not be reconfigured because it was not configured before.");
447 std::vector <struct LogicalChannelConfigListElement_s>::const_iterator lcit;
457 std::map <uint16_t, CqasFlowPerf_t>::iterator it;
503 std::vector <uint8_t>::const_iterator it;
516 NS_FATAL_ERROR (
"Logical channels cannot be released because it can not be found in the list of active LCs");
522 std::map<LteFlowId_t, FfMacSchedSapProvider::SchedDlRlcBufferReqParameters>::iterator it =
m_rlcBufferReq.begin ();
523 std::map<LteFlowId_t, FfMacSchedSapProvider::SchedDlRlcBufferReqParameters>::iterator temp;
568 std::map<LteFlowId_t, FfMacSchedSapProvider::SchedDlRlcBufferReqParameters>::iterator it =
m_rlcBufferReq.begin ();
569 std::map<LteFlowId_t, FfMacSchedSapProvider::SchedDlRlcBufferReqParameters>::iterator temp;
572 if ((*it).first.m_rnti == params.
m_rnti)
598 std::map <LteFlowId_t, FfMacSchedSapProvider::SchedDlRlcBufferReqParameters>::iterator it;
606 m_rlcBufferReq.insert (std::pair <LteFlowId_t, FfMacSchedSapProvider::SchedDlRlcBufferReqParameters> (flow, params));
610 (*it).second = params;
635 for (
int i = 0; i < 4; i++)
637 if (dlbandwidth < CqaType0AllocationRbg[i])
650 std::map <LteFlowId_t, FfMacSchedSapProvider::SchedDlRlcBufferReqParameters>::iterator it;
654 if (((*it).first.m_rnti == rnti) && (((*it).second.m_rlcTransmissionQueueSize > 0)
655 || ((*it).second.m_rlcRetransmissionQueueSize > 0)
656 || ((*it).second.m_rlcStatusPduSize > 0) ))
660 if ((*it).first.m_rnti > rnti)
683 NS_FATAL_ERROR (
"No Process Id Statusfound for this RNTI " << rnti);
685 uint8_t i = (*it).second;
690 while ( ((*itStat).second.at (i) != 0)&&(i != (*it).second));
691 if ((*itStat).second.at (i) == 0)
722 NS_FATAL_ERROR (
"No Process Id Statusfound for this RNTI " << rnti);
724 uint8_t i = (*it).second;
729 while ( ((*itStat).second.at (i) != 0)&&(i != (*it).second));
730 if ((*itStat).second.at (i) == 0)
733 (*itStat).second.at (i) = 1;
737 NS_FATAL_ERROR (
"No HARQ process available for RNTI " << rnti <<
" check before update with HarqProcessAvailability");
740 return ((*it).second);
749 std::map <uint16_t, DlHarqProcessesTimer_t>::iterator itTimers;
758 NS_LOG_DEBUG (
this <<
" Reset HARQ proc " << i <<
" for RNTI " << (*itTimers).first);
759 std::map <uint16_t, DlHarqProcessesStatus_t>::iterator itStat =
m_dlHarqProcessesStatus.find ((*itTimers).first);
762 NS_FATAL_ERROR (
"No Process Id Status found for this RNTI " << (*itTimers).first);
764 (*itStat).second.at (i) = 0;
765 (*itTimers).second.at (i) = 0;
769 (*itTimers).second.at (i)++;
790 std::map <uint16_t, std::multimap <uint8_t, qos_rb_and_CQI_assigned_to_lc> > allocationMapPerRntiPerLCId;
791 std::map <uint16_t, std::multimap <uint8_t, qos_rb_and_CQI_assigned_to_lc> >::iterator itMap;
792 allocationMapPerRntiPerLCId.clear ();
796 int grouping_parameter = 1000;
797 double tolerance = 1.1;
798 std::map<LteFlowId_t,int> UEtoHOL;
799 std::vector <bool> rbgMap;
800 uint16_t rbgAllocatedNum = 0;
801 std::set <uint16_t> rntiAllocated;
805 for (std::vector<bool>::iterator it = rbgMap.begin (); it != rbgMap.end (); it++)
816 std::map <uint16_t, uint8_t>::iterator itProcId;
819 (*itProcId).second = ((*itProcId).second + 1) %
HARQ_PROC_NUM;
824 uint16_t rbAllocatedNum = 0;
825 std::vector <bool> ulRbMap;
828 uint8_t maxContinuousUlBandwidth = 0;
829 uint8_t tmpMinBandwidth = 0;
830 uint16_t ffrRbStartOffset = 0;
831 uint16_t tmpFfrRbStartOffset = 0;
834 for (std::vector<bool>::iterator it = ulRbMap.begin (); it != ulRbMap.end (); it++)
839 if (tmpMinBandwidth > maxContinuousUlBandwidth)
841 maxContinuousUlBandwidth = tmpMinBandwidth;
842 ffrRbStartOffset = tmpFfrRbStartOffset;
848 if (tmpMinBandwidth == 0)
850 tmpFfrRbStartOffset = index;
857 if (tmpMinBandwidth > maxContinuousUlBandwidth)
859 maxContinuousUlBandwidth = tmpMinBandwidth;
860 ffrRbStartOffset = tmpFfrRbStartOffset;
864 uint16_t rbStart = 0;
865 rbStart = ffrRbStartOffset;
866 std::vector <struct RachListElement_s>::iterator itRach;
871 newRar.
m_rnti = (*itRach).m_rnti;
875 newRar.m_grant.m_rnti = newRar.m_rnti;
878 uint16_t tbSizeBits = 0;
880 while ((tbSizeBits < (*itRach).m_estimatedSize) && (rbStart + rbLen < (ffrRbStartOffset + maxContinuousUlBandwidth)))
885 if (tbSizeBits < (*itRach).m_estimatedSize)
890 newRar.m_grant.m_rbStart = rbStart;
891 newRar.m_grant.m_rbLen = rbLen;
892 newRar.m_grant.m_tbSize = tbSizeBits / 8;
893 newRar.m_grant.m_hopping =
false;
894 newRar.m_grant.m_tpc = 0;
895 newRar.m_grant.m_cqiRequest =
false;
896 newRar.m_grant.m_ulDelay =
false;
897 NS_LOG_INFO (
this <<
" UL grant allocated to RNTI " << (*itRach).m_rnti <<
" rbStart " << rbStart <<
" rbLen " << rbLen <<
" MCS " <<
m_ulGrantMcs <<
" tbSize " << newRar.m_grant.m_tbSize);
898 for (uint16_t i = rbStart; i < rbStart + rbLen; i++)
907 uldci.
m_rnti = newRar.m_rnti;
926 std::map <uint16_t, uint8_t>::iterator itProcId;
932 harqId = (*itProcId).second;
938 (*itDci).second.at (harqId) = uldci;
941 rbStart = rbStart + rbLen;
954 NS_LOG_INFO (
this <<
" Received DL-HARQ feedback");
970 std::vector <struct DlInfoListElement_s> dlInfoListUntxed;
974 if (itRnti != rntiAllocated.end ())
980 std::vector <bool> retx;
981 NS_LOG_INFO (
this <<
" Processing DLHARQ feedback");
985 retx.push_back (
false);
992 if (retx.at (0) || retx.at (1))
997 NS_LOG_INFO (
this <<
" HARQ retx RNTI " << rnti <<
" harqId " << (uint16_t)harqId);
1006 if (dci.
m_rv.size () == 1)
1008 rv = dci.
m_rv.at (0);
1012 rv = (dci.
m_rv.at (0) > dci.
m_rv.at (1) ? dci.
m_rv.at (0) : dci.
m_rv.at (1));
1018 NS_LOG_INFO (
"Maximum number of retransmissions reached -> drop process");
1024 (*it).second.at (harqId) = 0;
1030 for (uint16_t k = 0; k < (*itRlcPdu).second.size (); k++)
1032 (*itRlcPdu).second.at (k).at (harqId).clear ();
1038 std::vector <int> dciRbg;
1039 uint32_t mask = 0x1;
1041 for (
int j = 0; j < 32; j++)
1045 dciRbg.push_back (j);
1051 for (uint8_t j = 0; j < dciRbg.size (); j++)
1053 if (rbgMap.at (dciRbg.at (j)) ==
true)
1063 for (uint8_t j = 0; j < dciRbg.size (); j++)
1065 rbgMap.at (dciRbg.at (j)) =
true;
1066 NS_LOG_INFO (
"RBG " << dciRbg.at (j) <<
" assigned");
1070 NS_LOG_INFO (
this <<
" Send retx in the same RBGs");
1076 uint8_t rbgId = (dciRbg.at (dciRbg.size () - 1) + 1) % numberOfRBGs;
1077 uint8_t startRbg = dciRbg.at (dciRbg.size () - 1);
1078 std::vector <bool> rbgMapCopy = rbgMap;
1079 while ((j < dciRbg.size ())&&(startRbg != rbgId))
1081 if (rbgMapCopy.at (rbgId) ==
false)
1083 rbgMapCopy.at (rbgId) =
true;
1084 dciRbg.at (j) = rbgId;
1087 rbgId = (rbgId + 1) % numberOfRBGs;
1089 if (j == dciRbg.size ())
1092 uint32_t rbgMask = 0;
1093 for (uint16_t k = 0; k < dciRbg.size (); k++)
1095 rbgMask = rbgMask + (0x1 << dciRbg.at (k));
1099 rbgMap = rbgMapCopy;
1100 NS_LOG_INFO (
this <<
" Move retx in RBGs " << dciRbg.size ());
1106 NS_LOG_INFO (
this <<
" No resource for this retx -> buffer it");
1114 NS_FATAL_ERROR (
"Unable to find RlcPdcList in HARQ buffer for RNTI " << rnti);
1116 for (uint8_t j = 0; j < nLayers; j++)
1120 if (j >= dci.
m_ndi.size ())
1123 dci.
m_ndi.push_back (0);
1124 dci.
m_rv.push_back (0);
1125 dci.
m_mcs.push_back (0);
1127 NS_LOG_INFO (
this <<
" layer " << (uint16_t)j <<
" no txed (MIMO transition)");
1131 dci.
m_ndi.at (j) = 0;
1133 (*itHarq).second.at (harqId).m_rv.at (j)++;
1134 NS_LOG_INFO (
this <<
" layer " << (uint16_t)j <<
" RV " << (uint16_t)dci.
m_rv.at (j));
1140 dci.
m_ndi.at (j) = 0;
1141 dci.
m_rv.at (j) = 0;
1142 dci.
m_mcs.at (j) = 0;
1144 NS_LOG_INFO (
this <<
" layer " << (uint16_t)j <<
" no retx");
1147 for (uint16_t k = 0; k < (*itRlcPdu).second.at (0).at (dci.
m_harqProcess).size (); k++)
1149 std::vector <struct RlcPduListElement_s> rlcPduListPerLc;
1150 for (uint8_t j = 0; j < nLayers; j++)
1154 if (j < dci.
m_ndi.size ())
1156 rlcPduListPerLc.push_back ((*itRlcPdu).second.at (j).at (dci.
m_harqProcess).at (k));
1161 if (rlcPduListPerLc.size () > 0)
1168 (*itHarq).second.at (harqId).
m_rv = dci.
m_rv;
1173 NS_FATAL_ERROR (
"Unable to find HARQ timer for RNTI " << (uint16_t)rnti);
1175 (*itHarqTimer).second.at (harqId) = 0;
1177 rntiAllocated.insert (rnti);
1194 for (uint16_t k = 0; k < (*itRlcPdu).second.size (); k++)
1204 std::map <LteFlowId_t,struct LogicalChannelConfigListElement_s>::iterator itLogicalChannels;
1208 std::set <uint16_t>::iterator itRnti = rntiAllocated.find (itLogicalChannels->first.m_rnti);
1212 if (itRnti != rntiAllocated.end ())
1214 NS_LOG_DEBUG (
this <<
" RNTI discared for HARQ tx" << (uint16_t)(itLogicalChannels->first.m_rnti));
1218 NS_LOG_DEBUG (
this <<
" RNTI discared for HARQ id" << (uint16_t)(itLogicalChannels->first.m_rnti));
1224 std::map <LteFlowId_t, FfMacSchedSapProvider::SchedDlRlcBufferReqParameters>::iterator itRlcBufferReq =
m_rlcBufferReq.find (itLogicalChannels->first);
1231 if (itRlcBufferReq->second.m_rlcRetransmissionQueueSize > 0)
1233 delay = itRlcBufferReq->second.m_rlcRetransmissionHolDelay;
1234 group = delay/grouping_parameter;
1236 else if (itRlcBufferReq->second.m_rlcTransmissionQueueSize > 0)
1238 delay = itRlcBufferReq->second.m_rlcTransmissionQueueHolDelay;
1239 group = delay/grouping_parameter;
1246 UEtoHOL.insert (std::pair<LteFlowId_t,int>(itLogicalChannels->first,delay));
1248 if (itLogicalChannels->second.m_qosBearerType == itLogicalChannels->second.QBT_NON_GBR )
1250 if (map_nonGBRHOLgroupToUE.count (group)==0)
1252 std::set<LteFlowId_t> v;
1253 v.insert (itRlcBufferReq->first);
1254 map_nonGBRHOLgroupToUE.insert (std::pair<
int,std::set<LteFlowId_t> >(group,v));
1258 map_nonGBRHOLgroupToUE.find (group)->second.insert (itRlcBufferReq->first);
1261 else if (itLogicalChannels->second.m_qosBearerType == itLogicalChannels->second.QBT_GBR) {
1262 if (map_GBRHOLgroupToUE.count (group)==0)
1264 std::set<LteFlowId_t> v;
1265 v.insert (itRlcBufferReq->first);
1266 map_GBRHOLgroupToUE.insert (std::pair<
int,std::set<LteFlowId_t> >(group,v));
1270 map_GBRHOLgroupToUE.find (group)->second.insert (itRlcBufferReq->first);
1278 std::map<LteFlowId_t, int> UeToAmountOfDataToTransfer;
1280 std::map<LteFlowId_t, int> UeToAmountOfAssignedResources;
1282 std::map < uint16_t, uint8_t > sbCqiSum;
1284 for( std::map <LteFlowId_t, FfMacSchedSapProvider::SchedDlRlcBufferReqParameters>::iterator itrbr =
m_rlcBufferReq.begin ();
1290 int amountOfDataToTransfer = 8*((int)
m_rlcBufferReq.find (flowId)->second.m_rlcRetransmissionQueueSize +
1291 (int)
m_rlcBufferReq.find (flowId)->second.m_rlcTransmissionQueueSize);
1293 UeToAmountOfDataToTransfer.insert (std::pair<LteFlowId_t,int>(flowId,amountOfDataToTransfer));
1294 UeToAmountOfAssignedResources.insert (std::pair<LteFlowId_t,int>(flowId,0));
1297 for (
int i = 0; i < numberOfRBGs; i++)
1299 std::map <uint16_t,SbMeasResult_s>::iterator itCqi;
1301 std::map <uint16_t,uint8_t>::iterator itTxMode;
1302 itTxMode =
m_uesTxMode.find ((*itrbr).first.m_rnti);
1305 NS_FATAL_ERROR (
"No Transmission Mode info on user " << (*itrbr).first.m_rnti);
1308 std::vector <uint8_t> sbCqis;
1311 for (uint8_t k = 0; k < nLayer; k++)
1313 sbCqis.push_back (1);
1318 sbCqis = (*itCqi).second.m_higherLayerSelected.at (i).m_sbCqi;
1321 uint8_t cqi1 = sbCqis.at (0);
1323 if (sbCqis.size () > 1)
1325 cqi2 = sbCqis.at (1);
1329 if ((cqi1 > 0)||(cqi2 > 0))
1331 for (uint8_t k = 0; k < nLayer; k++)
1333 if (sbCqis.size () > k)
1335 sbCqi = sbCqis.at (k);
1347 sbCqiSum.insert (std::pair<uint16_t, uint8_t> ((*itrbr).first.m_rnti, sum));
1351 std::set<int> availableRBGs;
1352 for (
int i = 0; i < numberOfRBGs; i++)
1354 if (rbgMap.at (i) ==
false)
1356 availableRBGs.insert (i);
1360 t_it_HOLgroupToUEs itGBRgroups = map_GBRHOLgroupToUE.begin ();
1361 t_it_HOLgroupToUEs itnonGBRgroups = map_nonGBRHOLgroupToUE.begin ();
1366 while (availableRBGs.size ()>0)
1368 std::set<LteFlowId_t> vUEs;
1369 t_it_HOLgroupToUEs itCurrentGroup;
1371 if (itGBRgroups!=map_GBRHOLgroupToUE.end ())
1373 itCurrentGroup=itGBRgroups;
1376 else if (itnonGBRgroups!=map_nonGBRHOLgroupToUE.end ())
1378 itCurrentGroup=itnonGBRgroups;
1383 NS_LOG_INFO (
"Available RBGs:"<< availableRBGs.size ()<<
"but no users");
1387 while (availableRBGs.size ()>0 and itCurrentGroup->second.size ()>0)
1389 bool currentRBchecked =
false;
1390 int currentRB = *(availableRBGs.begin ());
1391 std::map<LteFlowId_t, CQI_value> UeToCQIValue;
1392 std::map<LteFlowId_t, double > UeToCoitaMetric;
1393 std::map<LteFlowId_t, bool> UeHasReachedGBR;
1394 double maximumValueMetric = 0;
1396 UeToCQIValue.clear ();
1397 UeToCoitaMetric.clear ();
1400 for (std::set<LteFlowId_t>::iterator it=itCurrentGroup->second.begin (); it!=itCurrentGroup->second.end (); it++)
1403 uint8_t cqi_value = 1;
1404 double coita_metric = 1;
1405 double coita_sum = 0;
1407 uint8_t worstCQIAmongRBGsAllocatedForThisUser = 15;
1408 int numberOfRBGAllocatedForThisUser = 0;
1410 std::map <uint16_t,SbMeasResult_s>::iterator itRntiCQIsMap =
m_a30CqiRxed.find (flowId.
m_rnti);
1412 std::map <uint16_t, CqasFlowPerf_t>::iterator itStats;
1423 currentRBchecked =
true;
1426 double tbr_weight = (*itStats).second.targetThroughput / (*itStats).second.lastAveragedThroughput;
1427 if (tbr_weight < 1.0)
1432 for(std::set<int>::iterator it=availableRBGs.begin (); it!=availableRBGs.end (); it++)
1436 int val = (itRntiCQIsMap->second.m_higherLayerSelected.at (*it).m_sbCqi.at (0));
1439 if (*it == currentRB)
1444 catch(std::out_of_range&)
1451 coita_metric =cqi_value/coita_sum;
1452 UeToCQIValue.insert (std::pair<LteFlowId_t,CQI_value>(flowId,cqi_value));
1453 UeToCoitaMetric.insert (std::pair<LteFlowId_t, double>(flowId,coita_metric));
1456 if (allocationMapPerRntiPerLCId.find (flowId.
m_rnti)==allocationMapPerRntiPerLCId.end ())
1458 worstCQIAmongRBGsAllocatedForThisUser=cqi_value;
1462 numberOfRBGAllocatedForThisUser = (allocationMapPerRntiPerLCId.find (flowId.
m_rnti)->second.size ());
1464 for (std::multimap <uint8_t, qos_rb_and_CQI_assigned_to_lc>::iterator itRBG = allocationMapPerRntiPerLCId.find (flowId.
m_rnti)->second.begin ();
1465 itRBG!=allocationMapPerRntiPerLCId.find (flowId.
m_rnti)->second.end (); itRBG++)
1472 if (cqi_value < worstCQIAmongRBGsAllocatedForThisUser)
1474 worstCQIAmongRBGsAllocatedForThisUser=cqi_value;
1478 int mcsForThisUser =
m_amc->GetMcsFromCqi (worstCQIAmongRBGsAllocatedForThisUser);
1479 int tbSize =
m_amc->GetTbSizeFromMcs (mcsForThisUser, (numberOfRBGAllocatedForThisUser+1) * rbgSize)/8;
1482 double achievableRate = ((
m_amc->GetTbSizeFromMcs (mcsForThisUser, rbgSize)/ 8) / 0.001);
1483 double pf_weight = achievableRate / (*itStats).second.secondLastAveragedThroughput;
1485 UeToAmountOfAssignedResources.find (flowId)->second = tbSize;
1488 if (UeToAmountOfDataToTransfer.find (flowId)->second - UeToAmountOfAssignedResources.find (flowId)->second < 0)
1490 UeHasReachedGBR.insert (std::pair<LteFlowId_t,bool>(flowId,
false));
1493 double bitRateWithNewRBG = 0;
1501 bitRateWithNewRBG = (1.0 /
m_timeWindow) * (
double)(tbSize*1000);
1506 UeHasReachedGBR.insert (std::pair<LteFlowId_t,bool>(flowId,
true));
1510 UeHasReachedGBR.insert (std::pair<LteFlowId_t,bool>(flowId,
false));
1513 int hol = UEtoHOL.find (flowId)->second;
1520 metric = coita_metric*tbr_weight*hol;
1524 metric = tbr_weight*pf_weight*hol;
1531 if (metric >= maximumValueMetric)
1533 maximumValueMetric = metric;
1534 userWithMaximumMetric = flowId;
1538 if (!currentRBchecked)
1541 availableRBGs.erase (currentRB);
1549 itMap = allocationMapPerRntiPerLCId.find (userWithMaximumMetric.
m_rnti);
1551 if (itMap == allocationMapPerRntiPerLCId.end ())
1553 std::multimap <uint8_t, qos_rb_and_CQI_assigned_to_lc> tempMap;
1554 tempMap.insert (std::pair<uint8_t, qos_rb_and_CQI_assigned_to_lc> (userWithMaximumMetric.
m_lcId,s));
1555 allocationMapPerRntiPerLCId.insert (std::pair <uint16_t, std::multimap <uint8_t,qos_rb_and_CQI_assigned_to_lc> > (userWithMaximumMetric.
m_rnti, tempMap));
1559 itMap->second.insert (std::pair<uint8_t,qos_rb_and_CQI_assigned_to_lc> (userWithMaximumMetric.
m_lcId,s));
1563 availableRBGs.erase (currentRB);
1565 if (UeToAmountOfDataToTransfer.find (userWithMaximumMetric)->second <= UeToAmountOfAssignedResources.find (userWithMaximumMetric)->second*tolerance)
1568 itCurrentGroup->second.erase (userWithMaximumMetric);
1576 std::map <uint16_t, CqasFlowPerf_t>::iterator itStats;
1579 (*itStats).second.lastTtiBytesTransmitted = 0;
1584 itMap = allocationMapPerRntiPerLCId.begin ();
1586 std::map<uint16_t, double> m_rnti_per_ratio;
1588 while (itMap != allocationMapPerRntiPerLCId.end ())
1592 newEl.
m_rnti = (*itMap).first;
1596 std::vector <struct RlcPduListElement_s> newRlcPduLe;
1597 newDci.
m_rnti = (*itMap).first;
1603 uint16_t RgbPerRnti = (*itMap).second.size ();
1604 double doubleRBgPerRnti = RgbPerRnti;
1605 double doubleRbgNum = numberOfRBGs;
1606 double rrRatio = doubleRBgPerRnti/doubleRbgNum;
1607 m_rnti_per_ratio.insert (std::pair<uint16_t,double>((*itMap).first,rrRatio));
1608 std::map <uint16_t,SbMeasResult_s>::iterator itCqi;
1610 uint8_t worstCqi = 15;
1613 for ( std::multimap <uint8_t, qos_rb_and_CQI_assigned_to_lc> ::iterator it = (*itMap).second.begin (); it != (*itMap).second.end (); it++)
1615 if (it->second.cqi_value_for_lc<worstCqi)
1617 worstCqi = it->second.cqi_value_for_lc;
1622 newDci.
m_mcs.push_back (
m_amc->GetMcsFromCqi (worstCqi));
1623 int tbSize = (
m_amc->GetTbSizeFromMcs (newDci.
m_mcs.at (0), RgbPerRnti * rbgSize) / 8);
1627 uint32_t rbgMask = 0;
1628 std::multimap <uint8_t, qos_rb_and_CQI_assigned_to_lc> ::iterator itRBGsPerRNTI;
1629 for ( itRBGsPerRNTI = (*itMap).second.begin (); itRBGsPerRNTI != (*itMap).second.end (); itRBGsPerRNTI++)
1631 rbgMask = rbgMask + (0x1 << itRBGsPerRNTI->second.resource_block_index);
1636 std::map <LteFlowId_t, FfMacSchedSapProvider::SchedDlRlcBufferReqParameters>::iterator itBufReq;
1639 if (((*itBufReq).first.m_rnti == (*itMap).first)
1640 && (((*itBufReq).second.m_rlcTransmissionQueueSize > 0)
1641 || ((*itBufReq).second.m_rlcRetransmissionQueueSize > 0)
1642 || ((*itBufReq).second.m_rlcStatusPduSize > 0) ))
1644 std::vector <struct RlcPduListElement_s> newRlcPduLe;
1650 newRlcEl.
m_size = tbSize / lcActives;
1652 newRlcPduLe.push_back (newRlcEl);
1660 NS_FATAL_ERROR (
"Unable to find RlcPdcList in HARQ buffer for RNTI " << (*itMap).first);
1663 (*itRlcPdu).second.at (j).at (newDci.
m_harqProcess).push_back (newRlcEl);
1668 if ((*itBufReq).first.m_rnti > (*itMap).first)
1675 newDci.
m_ndi.push_back (1);
1676 newDci.
m_rv.push_back (0);
1681 newEl.
m_dci = newDci;
1705 std::map <uint16_t, CqasFlowPerf_t>::iterator it;
1709 (*it).second.lastTtiBytesTransmitted = tbSize;
1724 if (allocationMapPerRntiPerLCId.find (itStats->first)!= allocationMapPerRntiPerLCId.end ())
1726 (*itStats).second.secondLastAveragedThroughput = ((1.0 - (1 /
m_timeWindow)) * (*itStats).second.secondLastAveragedThroughput) + ((1 /
m_timeWindow) * (double)((*itStats).second.lastTtiBytesTransmitted / 0.001));
1729 (*itStats).second.totalBytesTransmitted += (*itStats).second.lastTtiBytesTransmitted;
1731 (*itStats).second.lastAveragedThroughput = ((1.0 - (1.0 /
m_timeWindow)) * (*itStats).second.lastAveragedThroughput) + ((1.0 /
m_timeWindow) * (double)((*itStats).second.lastTtiBytesTransmitted / 0.001));
1732 NS_LOG_INFO (
this <<
" UE total bytes " << (*itStats).second.totalBytesTransmitted);
1733 NS_LOG_INFO (
this <<
" UE average throughput " << (*itStats).second.lastAveragedThroughput);
1734 (*itStats).second.lastTtiBytesTransmitted = 0;
1739 int count_allocated_resource_blocks = 0;
1740 for (std::map <uint16_t, std::multimap <uint8_t, qos_rb_and_CQI_assigned_to_lc> >::iterator itMap = allocationMapPerRntiPerLCId.begin (); itMap!=allocationMapPerRntiPerLCId.end (); itMap++)
1742 count_allocated_resource_blocks+=itMap->second.size ();
1744 NS_LOG_INFO (
this <<
" Allocated RBs:" << count_allocated_resource_blocks);
1765 for (
unsigned int i = 0; i < params.
m_cqiList.size (); i++)
1770 std::map <uint16_t,uint8_t>::iterator it;
1771 uint16_t rnti = params.
m_cqiList.at (i).m_rnti;
1776 m_p10CqiRxed.insert ( std::pair<uint16_t, uint8_t > (rnti, params.
m_cqiList.at (i).m_wbCqi.at (0)) );
1783 (*it).second = params.
m_cqiList.at (i).m_wbCqi.at (0);
1785 std::map <uint16_t,uint32_t>::iterator itTimers;
1793 std::map <uint16_t,SbMeasResult_s>::iterator it;
1794 uint16_t rnti = params.
m_cqiList.at (i).m_rnti;
1799 m_a30CqiRxed.insert ( std::pair<uint16_t, SbMeasResult_s > (rnti, params.
m_cqiList.at (i).m_sbMeasResult) );
1805 (*it).second = params.
m_cqiList.at (i).m_sbMeasResult;
1806 std::map <uint16_t,uint32_t>::iterator itTimers;
1824 std::map <uint16_t, std::vector <double> >::iterator itCqi =
m_ueCqi.find (rnti);
1838 double sinr = (*itCqi).second.at (i);
1845 double estimatedSinr = (sinrNum > 0) ? (sinrSum / sinrNum) : DBL_MAX;
1847 (*itCqi).second.at (rb) = estimatedSinr;
1848 return (estimatedSinr);
1862 std::vector <bool> rbMap;
1863 uint16_t rbAllocatedNum = 0;
1864 std::set <uint16_t> rntiAllocated;
1865 std::vector <uint16_t> rbgAllocationMap;
1876 for (std::vector<bool>::iterator it = rbMap.begin (); it != rbMap.end (); it++)
1890 if (rbgAllocationMap.at (i) != 0)
1892 rbMap.at (i) =
true;
1901 for (uint16_t i = 0; i < params.
m_ulInfoList.size (); i++)
1910 NS_LOG_ERROR (
"No info find in HARQ buffer for UE (might change eNB) " << rnti);
1913 NS_LOG_INFO (
this <<
" UL-HARQ retx RNTI " << rnti <<
" harqId " << (uint16_t)harqId <<
" i " << i <<
" size " << params.
m_ulInfoList.size ());
1917 NS_LOG_ERROR (
"No info find in HARQ buffer for UE (might change eNB) " << rnti);
1924 NS_LOG_ERROR (
"No info find in HARQ buffer for UE (might change eNB) " << rnti);
1926 if ((*itStat).second.at (harqId) >= 3)
1928 NS_LOG_INFO (
"Max number of retransmissions reached (UL)-> drop process");
1935 if (rbMap.at (j) ==
true)
1946 rbMap.at (j) =
true;
1947 rbgAllocationMap.at (j) = dci.
m_rnti;
1955 NS_LOG_INFO (
"Cannot allocate retx due to RACH allocations for UE " << rnti);
1960 (*itStat).second.at ((*itProcId).second) = (*itStat).second.at (harqId) + 1;
1961 (*itStat).second.at (harqId) = 0;
1962 (*itHarq).second.at ((*itProcId).second) = dci;
1964 rntiAllocated.insert (dci.
m_rnti);
1973 std::map <uint16_t,uint32_t>::iterator it;
1978 std::set <uint16_t>::iterator itRnti = rntiAllocated.find ((*it).first);
1980 if (((*it).second > 0)&&(itRnti == rntiAllocated.end ()))
1999 uint16_t tempRbPerFlow = (ffrUlBandwidth) / (nflows + rntiAllocated.size ());
2000 uint16_t rbPerFlow = (minContinuousUlBandwidth < tempRbPerFlow) ? minContinuousUlBandwidth : tempRbPerFlow;
2006 int rbAllocated = 0;
2008 std::map <uint16_t, CqasFlowPerf_t>::iterator itStats;
2030 std::set <uint16_t>::iterator itRnti = rntiAllocated.find ((*it).first);
2031 if ((itRnti != rntiAllocated.end ())||((*it).second == 0))
2034 NS_LOG_DEBUG (
this <<
" UE already allocated in HARQ -> discared, RNTI " << (*it).first);
2057 uldci.
m_rnti = (*it).first;
2059 bool allocated =
false;
2060 NS_LOG_INFO (
this <<
" RB Allocated " << rbAllocated <<
" rbPerFlow " << rbPerFlow <<
" flows " << nflows);
2065 for (uint16_t j = rbAllocated; j < rbAllocated + rbPerFlow; j++)
2067 if (rbMap.at (j) ==
true)
2080 NS_LOG_INFO (
this <<
"RNTI: "<< (*it).first<<
" RB Allocated " << rbAllocated <<
" rbPerFlow " << rbPerFlow <<
" flows " << nflows);
2083 for (uint16_t j = rbAllocated; j < rbAllocated + rbPerFlow; j++)
2085 rbMap.at (j) =
true;
2087 rbgAllocationMap.at (j) = (*it).first;
2089 rbAllocated += rbPerFlow;
2121 std::map <uint16_t, std::vector <double> >::iterator itCqi =
m_ueCqi.find ((*it).first);
2131 double minSinr = (*itCqi).second.at (uldci.
m_rbStart);
2138 double sinr = (*itCqi).second.at (i);
2143 if ((*itCqi).second.at (i) < minSinr)
2145 minSinr = (*itCqi).second.at (i);
2150 double s = log2 ( 1 + (
2151 std::pow (10, minSinr / 10 ) /
2152 ( (-std::log (5.0 * 0.00005 )) / 1.5) ));
2153 cqi =
m_amc->GetCqiFromSpectralEfficiency (s);
2166 rbgAllocationMap.at (i) = 0;
2192 std::map <uint16_t, uint8_t>::iterator itProcId;
2198 harqId = (*itProcId).second;
2204 (*itDci).second.at (harqId) = uldci;
2209 NS_LOG_ERROR (
"No info find in HARQ buffer for UE (might change eNB) " << uldci.
m_rnti);
2211 (*itStat).second.at (harqId) = 0;
2214 NS_LOG_INFO (
this <<
" UE Allocation RNTI " << (*it).first <<
" startPRB " << (uint32_t)uldci.
m_rbStart <<
" nPRB " << (uint32_t)uldci.
m_rbLen <<
" CQI " << cqi <<
" MCS " << (uint32_t)uldci.
m_mcs <<
" TBsize " << uldci.
m_tbSize <<
" RbAlloc " << rbAllocated <<
" harqId " << (uint16_t)harqId);
2220 (*itStats).second.lastTtiBytesTransmitted = uldci.
m_tbSize;
2224 NS_LOG_DEBUG (
this <<
" No Stats for this allocated UE");
2248 (*itStats).second.totalBytesTransmitted += (*itStats).second.lastTtiBytesTransmitted;
2250 (*itStats).second.lastAveragedThroughput = ((1.0 - (1.0 /
m_timeWindow)) * (*itStats).second.lastAveragedThroughput) + ((1.0 /
m_timeWindow) * (double)((*itStats).second.lastTtiBytesTransmitted / 0.001));
2251 NS_LOG_INFO (
this <<
" UE total bytes " << (*itStats).second.totalBytesTransmitted);
2252 NS_LOG_INFO (
this <<
" UE average throughput " << (*itStats).second.lastAveragedThroughput);
2253 (*itStats).second.lastTtiBytesTransmitted = 0;
2280 std::map <uint16_t,uint32_t>::iterator it;
2282 for (
unsigned int i = 0; i < params.
m_macCeList.size (); i++)
2293 uint32_t buffer = 0;
2294 for (uint8_t lcg = 0; lcg < 4; ++lcg)
2296 uint8_t bsrId = params.
m_macCeList.at (i).m_macCeValue.m_bufferStatus.at (lcg);
2301 NS_LOG_LOGIC (
this <<
"RNTI=" << rnti <<
" buffer=" << buffer);
2306 m_ceBsrRxed.insert ( std::pair<uint16_t, uint32_t > (rnti, buffer));
2311 (*it).second = buffer;
2354 std::map <uint16_t, std::vector <uint16_t> >::iterator itMap;
2355 std::map <uint16_t, std::vector <double> >::iterator itCqi;
2356 NS_LOG_DEBUG (
this <<
" Collect PUSCH CQIs of Frame no. " << (params.
m_sfnSf >> 4) <<
" subframe no. " << (0xF & params.
m_sfnSf));
2362 for (uint32_t i = 0; i < (*itMap).second.size (); i++)
2366 itCqi =
m_ueCqi.find ((*itMap).second.at (i));
2370 std::vector <double> newCqi;
2375 newCqi.push_back (sinr);
2384 m_ueCqi.insert (std::pair <uint16_t, std::vector <double> > ((*itMap).second.at (i), newCqi));
2391 (*itCqi).second.at (i) = sinr;
2392 NS_LOG_DEBUG (
this <<
" RNTI " << (*itMap).second.at (i) <<
" RB " << i <<
" SINR " << sinr);
2394 std::map <uint16_t, uint32_t>::iterator itTimers;
2407 NS_LOG_DEBUG (
this <<
" Collect SRS CQIs of Frame no. " << (params.
m_sfnSf >> 4) <<
" subframe no. " << (0xF & params.
m_sfnSf));
2416 rnti = vsp->GetRnti ();
2419 std::map <uint16_t, std::vector <double> >::iterator itCqi;
2424 std::vector <double> newCqi;
2428 newCqi.push_back (sinr);
2429 NS_LOG_INFO (
this <<
" RNTI " << rnti <<
" new SRS-CQI for RB " << j <<
" value " << sinr);
2432 m_ueCqi.insert (std::pair <uint16_t, std::vector <double> > (rnti, newCqi));
2442 (*itCqi).second.at (j) = sinr;
2443 NS_LOG_INFO (
this <<
" RNTI " << rnti <<
" update SRS-CQI for RB " << j <<
" value " << sinr);
2446 std::map <uint16_t, uint32_t>::iterator itTimers;
2459 NS_FATAL_ERROR (
"PfFfMacScheduler supports only PUSCH and SRS UL-CQIs");
2472 std::map <uint16_t,uint32_t>::iterator itP10 =
m_p10CqiTimers.begin ();
2476 if ((*itP10).second == 0)
2479 std::map <uint16_t,uint8_t>::iterator itMap =
m_p10CqiRxed.find ((*itP10).first);
2481 NS_LOG_INFO (
this <<
" P10-CQI expired for user " << (*itP10).first);
2483 std::map <uint16_t,uint32_t>::iterator temp = itP10;
2495 std::map <uint16_t,uint32_t>::iterator itA30 =
m_a30CqiTimers.begin ();
2499 if ((*itA30).second == 0)
2502 std::map <uint16_t,SbMeasResult_s>::iterator itMap =
m_a30CqiRxed.find ((*itA30).first);
2504 NS_LOG_INFO (
this <<
" A30-CQI expired for user " << (*itA30).first);
2506 std::map <uint16_t,uint32_t>::iterator temp = itA30;
2525 std::map <uint16_t,uint32_t>::iterator itUl =
m_ueCqiTimers.begin ();
2529 if ((*itUl).second == 0)
2532 std::map <uint16_t, std::vector <double> >::iterator itMap =
m_ueCqi.find ((*itUl).first);
2533 NS_ASSERT_MSG (itMap !=
m_ueCqi.end (),
" Does not find CQI report for user " << (*itUl).first);
2534 NS_LOG_INFO (
this <<
" UL-CQI exired for user " << (*itUl).first);
2535 (*itMap).second.clear ();
2537 std::map <uint16_t,uint32_t>::iterator temp = itUl;
2554 std::map<LteFlowId_t, FfMacSchedSapProvider::SchedDlRlcBufferReqParameters>::iterator it;
2559 NS_LOG_INFO (
this <<
" UE " << rnti <<
" LC " << (uint16_t)lcid <<
" txqueue " << (*it).second.m_rlcTransmissionQueueSize <<
" retxqueue " << (*it).second.m_rlcRetransmissionQueueSize <<
" status " << (*it).second.m_rlcStatusPduSize <<
" decrease " << size);
2562 if (((*it).second.m_rlcStatusPduSize > 0) && (size >= (*it).second.m_rlcStatusPduSize))
2564 (*it).second.m_rlcStatusPduSize = 0;
2566 else if (((*it).second.m_rlcRetransmissionQueueSize > 0) && (size >= (*it).second.m_rlcRetransmissionQueueSize))
2568 (*it).second.m_rlcRetransmissionQueueSize = 0;
2570 else if ((*it).second.m_rlcTransmissionQueueSize > 0)
2572 uint32_t rlcOverhead;
2587 if ((*it).second.m_rlcTransmissionQueueSize <= size - rlcOverhead)
2589 (*it).second.m_rlcTransmissionQueueSize = 0;
2593 (*it).second.m_rlcTransmissionQueueSize -= size - rlcOverhead;
2599 NS_LOG_ERROR (
this <<
" Does not find DL RLC Buffer Report of UE " << rnti);
2608 std::map <uint16_t,uint32_t>::iterator it =
m_ceBsrRxed.find (rnti);
2611 NS_LOG_INFO (
this <<
" UE " << rnti <<
" size " << size <<
" BSR " << (*it).second);
2612 if ((*it).second >= size)
2614 (*it).second -= size;
2623 NS_LOG_ERROR (
this <<
" Does not find BSR report info of UE " << rnti);
2631 NS_LOG_FUNCTION (
this <<
" RNTI " << rnti <<
" txMode " << (uint16_t)txMode);
double EstimateUlSinr(uint16_t rnti, uint16_t rb)
virtual void SchedDlTriggerReq(const struct SchedDlTriggerReqParameters ¶ms)
std::vector< struct UlInfoListElement_s > m_ulInfoList
See section 4.3.1 dlDciListElement.
void DoSchedUlMacCtrlInfoReq(const struct FfMacSchedSapProvider::SchedUlMacCtrlInfoReqParameters ¶ms)
Ptr< const AttributeChecker > MakeStringChecker(void)
unsigned int lastTtiBytesTransmitted
Total bytes send by eNb for this UE.
uint16_t resource_block_index
int GetRbgSize(int dlbandwidth)
uint8_t UpdateHarqProcessId(uint16_t rnti)
Update and return a new process Id for the RNTI specified.
virtual ~CqaFfMacScheduler()
Destructor.
friend class CqaSchedulerMemberSchedSapProvider
Smart pointer class similar to boost::intrusive_ptr.
Service Access Point (SAP) offered by the eNodeB RRC instance to the Frequency Reuse algorithm instan...
#define NS_LOG_FUNCTION(parameters)
If log level LOG_FUNCTION is enabled, this macro will output all input parameters separated by "...
virtual void SchedUlSrInfoReq(const struct SchedUlSrInfoReqParameters ¶ms)
AttributeValue implementation for Boolean.
std::map< uint16_t, CqasFlowPerf_t > m_flowStatsDl
void UpdateUlRlcBufferInfo(uint16_t rnti, uint16_t size)
#define NS_OBJECT_ENSURE_REGISTERED(type)
Register an Object subclass with the TypeId system.
virtual void ReportUlCqiInfo(const struct FfMacSchedSapProvider::SchedUlCqiInfoReqParameters ¶ms)=0
ReportUlCqiInfo.
virtual FfMacCschedSapProvider * GetFfMacCschedSapProvider()
CqaFfMacScheduler * m_scheduler
Parameters of the CSCHED_UE_CONFIG_CNF primitive.
Hold variables of type string.
Parameters of the CSCHED_UE_RELEASE_REQ primitive.
LteFfrSapUser * m_ffrSapUser
virtual bool IsDlRbgAvailableForUe(int i, uint16_t rnti)=0
Check if UE can be served on i-th RB in DL.
void RefreshUlCqiMaps(void)
virtual bool IsUlRbgAvailableForUe(int i, uint16_t rnti)=0
Check if UE can be served on i-th RB in UL.
enum ns3::UlCqi_s::Type_e m_type
Ptr< const AttributeAccessor > MakeBooleanAccessor(T1 a1)
Create an AttributeAccessor for a class data member, or a lone class get functor or set method...
CqaSchedulerMemberCschedSapProvider()
std::vector< UlDciListElement_s > UlHarqProcessesDciBuffer_t
std::vector< struct LogicalChannelConfigListElement_s > m_logicalChannelConfigList
std::vector< uint16_t > m_sinr
std::map< CQI_value, LteFlowId_t, bool(*)(uint8_t, uint8_t)> t_map_CQIToUE
std::map< uint16_t, DlHarqProcessesStatus_t > m_dlHarqProcessesStatus
std::vector< uint8_t > DlHarqProcessesTimer_t
#define NS_ASSERT(condition)
At runtime, in debugging builds, if this condition is not true, the program prints the source file...
#define NS_LOG_COMPONENT_DEFINE(name)
Define a Log component with a specific name.
virtual void SchedDlRlcBufferReq(const struct SchedDlRlcBufferReqParameters ¶ms)
std::vector< uint8_t > m_mcs
std::map< uint16_t, uint32_t > m_a30CqiTimers
See section 4.3.2 ulDciListElement.
void DoSchedDlMacBufferReq(const struct FfMacSchedSapProvider::SchedDlMacBufferReqParameters ¶ms)
std::vector< struct UlDciListElement_s > m_dciList
std::map< HOL_group, t_map_RBGToCQIsSorted > t_map_HOLGroupToRBGs
#define NS_LOG_INFO(msg)
Use NS_LOG to output a message of level LOG_INFO.
#define NS_FATAL_ERROR(msg)
Fatal error handling.
See section 4.3.10 buildRARListElement.
virtual void SetLteFfrSapProvider(LteFfrSapProvider *s)
Set the Provider part of the LteFfrSap that this Scheduler will interact with.
Parameters of the CSCHED_UE_CONFIG_UPDATE_IND primitive.
Parameters of the CSCHED_LC_RELEASE_REQ primitive.
virtual uint8_t GetTpc(uint16_t rnti)=0
GetTpc.
std::vector< std::vector< struct RlcPduListElement_s > > m_rlcPduList
uint8_t m_transmissionMode
virtual void SchedDlMacBufferReq(const struct SchedDlMacBufferReqParameters ¶ms)
std::map< uint16_t, UlHarqProcessesDciBuffer_t > m_ulHarqProcessesDciBuffer
Parameters of the SCHED_DL_TRIGGER_REQ primitive.
uint8_t m_logicalChannelIdentity
void DoSchedDlRachInfoReq(const struct FfMacSchedSapProvider::SchedDlRachInfoReqParameters ¶ms)
uint64_t m_eRabGuaranteedBitrateDl
double lastAveragedThroughput
Total bytes send by eNB in last tti for this UE.
void DoSchedUlNoiseInterferenceReq(const struct FfMacSchedSapProvider::SchedUlNoiseInterferenceReqParameters ¶ms)
void DoSchedUlTriggerReq(const struct FfMacSchedSapProvider::SchedUlTriggerReqParameters ¶ms)
See section 4.3.4 logicalChannelConfigListElement.
std::vector< RlcPduList_t > DlHarqRlcPduListBuffer_t
Parameters of the SCHED_DL_MAC_BUFFER_REQ primitive.
Parameters of the SCHED_DL_PAGING_BUFFER_REQ primitive.
void DoSchedUlCqiInfoReq(const struct FfMacSchedSapProvider::SchedUlCqiInfoReqParameters ¶ms)
virtual void CschedUeConfigUpdateInd(const struct CschedUeConfigUpdateIndParameters ¶ms)=0
std::vector< struct VendorSpecificListElement_s > m_vendorSpecificList
FfMacCschedSapProvider::CschedCellConfigReqParameters m_cschedCellConfig
std::vector< DlInfoListElement_s > m_dlInfoListBuffered
CqaFfMacScheduler * m_scheduler
std::map< uint16_t, uint8_t > m_p10CqiRxed
void DoSchedUlSrInfoReq(const struct FfMacSchedSapProvider::SchedUlSrInfoReqParameters ¶ms)
unsigned long totalBytesTransmitted
Service Access Point (SAP) offered by the Frequency Reuse algorithm instance to the MAC Scheduler ins...
Parameters of the SCHED_UL_TRIGGER_REQ primitive.
Hold an unsigned integer type.
FfMacSchedSapUser * m_schedSapUser
static uint8_t TxMode2LayerNum(uint8_t txMode)
FfMacCschedSapUser * m_cschedSapUser
friend class CqaSchedulerMemberCschedSapProvider
std::map< uint16_t, DlHarqProcessesTimer_t > m_dlHarqProcessesTimer
std::vector< uint8_t > m_ndi
void DoCschedUeReleaseReq(const struct FfMacCschedSapProvider::CschedUeReleaseReqParameters ¶ms)
LteFfrSapProvider * m_ffrSapProvider
virtual void SchedUlCqiInfoReq(const struct SchedUlCqiInfoReqParameters ¶ms)
virtual void CschedUeConfigCnf(const struct CschedUeConfigCnfParameters ¶ms)=0
std::vector< uint8_t > m_logicalChannelIdentity
#define NS_LOG_LOGIC(msg)
Use NS_LOG to output a message of level LOG_LOGIC.
Parameters of the SCHED_UL_NOISE_INTERFERENCE_REQ primitive.
uint8_t m_logicalChannelIdentity
std::vector< struct CqiListElement_s > m_cqiList
std::vector< struct DlInfoListElement_s > m_dlInfoList
virtual void ReportDlCqiInfo(const struct FfMacSchedSapProvider::SchedDlCqiInfoReqParameters ¶ms)=0
ReportDlCqiInfo.
std::map< uint16_t, DlHarqRlcPduListBuffer_t > m_dlHarqProcessesRlcPduListBuffer
virtual void SchedDlCqiInfoReq(const struct SchedDlCqiInfoReqParameters ¶ms)
CqaSchedulerMemberSchedSapProvider()
virtual void SchedDlConfigInd(const struct SchedDlConfigIndParameters ¶ms)=0
bool CQIValueDescComparator(uint8_t key1, uint8_t key2)
Parameters of the API primitives.
int8_t m_pdcchPowerOffset
virtual void SetFfMacCschedSapUser(FfMacCschedSapUser *s)
set the user part of the FfMacCschedSap that this Scheduler will interact with.
CqaFfMacScheduler()
Constructor.
void DoSchedDlPagingBufferReq(const struct FfMacSchedSapProvider::SchedDlPagingBufferReqParameters ¶ms)
void RefreshDlCqiMaps(void)
std::map< CQI_value, LteFlowId_t, bool(*)(uint8_t, uint8_t)>::iterator t_it_CQIToUE
std::map< uint16_t, uint8_t > m_ulHarqCurrentProcessId
std::vector< uint16_t > m_tbsSize
virtual void CschedCellConfigReq(const struct CschedCellConfigReqParameters ¶ms)
CSCHED_CELL_CONFIG_REQ.
See section 4.3.9 rlcPDU_ListElement.
Every class exported by the ns3 library is enclosed in the ns3 namespace.
std::vector< uint16_t > m_rachAllocationMap
std::map< uint16_t, uint32_t > m_ceBsrRxed
Ptr< const AttributeChecker > MakeBooleanChecker(void)
std::vector< DlDciListElement_s > DlHarqProcessesDciBuffer_t
FfMacSchedSapProvider * m_schedSapProvider
Parameters of the CSCHED_LC_CONFIG_REQ primitive.
std::map< uint16_t, std::vector< double > > m_ueCqi
std::map< uint16_t, UlHarqProcessesStatus_t > m_ulHarqProcessesStatus
std::vector< uint8_t > m_rv
std::map< uint16_t, CqasFlowPerf_t > m_flowStatsUl
virtual std::vector< bool > GetAvailableUlRbg()=0
Get vector of available RB in UL for this Cell.
virtual uint8_t GetMinContinuousUlBandwidth()=0
GetMinContinuousUlBandwidth.
virtual void SchedUlConfigInd(const struct SchedUlConfigIndParameters ¶ms)=0
static Time Now(void)
Return the current simulation virtual time.
virtual void SchedUlNoiseInterferenceReq(const struct SchedUlNoiseInterferenceReqParameters ¶ms)
UlCqiFilter_t m_ulCqiFilter
This abstract base class identifies the interface by means of which the helper object can plug on the...
virtual void CschedUeConfigReq(const struct CschedUeConfigReqParameters ¶ms)
#define NS_ASSERT_MSG(condition, message)
At runtime, in debugging builds, if this condition is not true, the program prints the message to out...
bool m_harqOn
m_harqOn when false inhibit te HARQ mechanisms (by default active)
virtual void CschedUeReleaseReq(const struct CschedUeReleaseReqParameters ¶ms)
uint8_t m_nrOfPdcchOfdmSymbols
Parameters of the SCHED_DL_CQI_INFO_REQ primitive.
std::vector< struct MacCeListElement_s > m_macCeList
Parameters of the API primitives.
std::vector< struct RachListElement_s > m_rachList
std::map< RBG_index, t_map_CQIToUE > t_map_RBGToCQIsSorted
static double fpS11dot3toDouble(uint16_t val)
virtual void CschedLcReleaseReq(const struct CschedLcReleaseReqParameters ¶ms)
static TypeId GetTypeId(void)
bool CqaKeyDescComparator(uint16_t key1, uint16_t key2)
std::map< LteFlowId_t, FfMacSchedSapProvider::SchedDlRlcBufferReqParameters > m_rlcBufferReq
std::vector< uint8_t > UlHarqProcessesStatus_t
virtual void SchedUlTriggerReq(const struct SchedUlTriggerReqParameters ¶ms)
std::map< uint16_t, std::vector< uint16_t > > m_allocationMaps
void DoSchedDlCqiInfoReq(const struct FfMacSchedSapProvider::SchedDlCqiInfoReqParameters ¶ms)
std::vector< uint8_t > DlHarqProcessesStatus_t
Parameters of the SCHED_UL_CQI_INFO_REQ primitive.
static uint32_t BsrId2BufferSize(uint8_t val)
void DoCschedCellConfigReq(const struct FfMacCschedSapProvider::CschedCellConfigReqParameters ¶ms)
std::map< uint16_t, SbMeasResult_s > m_a30CqiRxed
uint8_t m_transmissionMode
void DoCschedUeConfigReq(const struct FfMacCschedSapProvider::CschedUeConfigReqParameters ¶ms)
Template for the implementation of the LteFfrSapUser as a member of an owner class of type C to which...
double secondLastAveragedThroughput
Past average throughput.
Parameters of the API primitives.
Parameters of the SCHED_UL_MAC_CTRL_INFO_REQ primitive.
#define NS_LOG_DEBUG(msg)
Use NS_LOG to output a message of level LOG_DEBUG.
virtual std::vector< bool > GetAvailableDlRbg()=0
Get vector of available RBG in DL for this Cell.
FfMacCschedSapProvider * m_cschedSapProvider
virtual void SetFfMacSchedSapUser(FfMacSchedSapUser *s)
set the user part of the FfMacSchedSap that this Scheduler will interact with.
int LcActivePerFlow(uint16_t rnti)
std::map< LteFlowId_t, struct LogicalChannelConfigListElement_s > m_ueLogicalChannelsConfigList
virtual void SchedUlMacCtrlInfoReq(const struct SchedUlMacCtrlInfoReqParameters ¶ms)
Parameters of the SCHED_UL_SR_INFO_REQ primitive.
void DoSchedDlRlcBufferReq(const struct FfMacSchedSapProvider::SchedDlRlcBufferReqParameters ¶ms)
void DoCschedLcConfigReq(const struct FfMacCschedSapProvider::CschedLcConfigReqParameters ¶ms)
virtual LteFfrSapUser * GetLteFfrSapUser()
void DoCschedLcReleaseReq(const struct FfMacCschedSapProvider::CschedLcReleaseReqParameters ¶ms)
std::map< uint16_t, DlHarqProcessesDciBuffer_t > m_dlHarqProcessesDciBuffer
void UpdateDlRlcBufferInfo(uint16_t rnti, uint8_t lcid, uint16_t size)
#define NS_LOG_ERROR(msg)
Use NS_LOG to output a message of level LOG_ERROR.
std::map< uint16_t, uint8_t > m_dlHarqCurrentProcessId
Parameters of the SCHED_DL_RACH_INFO_REQ primitive.
void TransmissionModeConfigurationUpdate(uint16_t rnti, uint8_t txMode)
std::multimap< HOL_group, std::set< LteFlowId_t >, bool(*)(int, int)> t_map_HOLgroupToUEs
Parameters of the SCHED_UL_CONFIG_IND primitive.
virtual void DoDispose(void)
Destructor implementation.
std::vector< struct RachListElement_s > m_rachList
std::map< HOL_group, t_map_RBGToCQIsSorted >::iterator t_it_HOLGroupToRBGs
Ptr< const AttributeAccessor > MakeStringAccessor(T1 a1)
Create an AttributeAccessor for a class data member, or a lone class get functor or set method...
Parameters of the CSCHED_UE_CONFIG_REQ primitive.
virtual FfMacSchedSapProvider * GetFfMacSchedSapProvider()
virtual void SchedDlRachInfoReq(const struct SchedDlRachInfoReqParameters ¶ms)
virtual void CschedLcConfigReq(const struct CschedLcConfigReqParameters ¶ms)
std::map< uint16_t, uint32_t > m_ueCqiTimers
uint8_t HarqProcessAvailability(uint16_t rnti)
Return the availability of free process for the RNTI specified.
std::map< uint16_t, uint32_t > m_p10CqiTimers
static const int CqaType0AllocationRbg[4]
struct DlDciListElement_s m_dci
std::vector< struct BuildRarListElement_s > m_buildRarList
Ptr< const AttributeAccessor > MakeUintegerAccessor(T1 a1)
Create an AttributeAccessor for a class data member, or a lone class get functor or set method...
bool CqaGroupDescComparator(int key1, int key2)
a unique identifier for an interface.
std::map< HOL_group, std::set< LteFlowId_t > >::iterator t_it_HOLgroupToUEs
Implements the SCHED SAP and CSCHED SAP for the Channel and QoS Aware Scheduler.
TypeId SetParent(TypeId tid)
void DoSchedDlTriggerReq(const struct FfMacSchedSapProvider::SchedDlTriggerReqParameters ¶ms)
void RefreshHarqProcesses()
Refresh HARQ processes according to the timers.
std::map< uint16_t, uint8_t > m_uesTxMode
virtual void SchedDlPagingBufferReq(const struct SchedDlPagingBufferReqParameters ¶ms)
std::map< RBG_index, t_map_CQIToUE >::iterator t_it_RBGToCQIsSorted
std::vector< struct BuildDataListElement_s > m_buildDataList
uint8_t m_ueTxAntennaSelection
See section 4.3.8 builDataListElement.
uint32_t m_cqiTimersThreshold