15#include "ns3/boolean.h"
16#include "ns3/integer.h"
19#include "ns3/pointer.h"
20#include "ns3/simulator.h"
78 TypeId(
"ns3::FdTbfqFfMacScheduler")
82 .AddAttribute(
"CqiTimerThreshold",
83 "The number of TTIs a CQI is valid (default 1000 - 1 sec.)",
87 .AddAttribute(
"DebtLimit",
88 "Flow debt limit (default -625000 bytes)",
92 .AddAttribute(
"CreditLimit",
93 "Flow credit limit (default 625000 bytes)",
97 .AddAttribute(
"TokenPoolSize",
98 "The maximum value of flow token pool (default 1 bytes)",
102 .AddAttribute(
"CreditableThreshold",
103 "Threshold of flow credit (default 0 bytes)",
108 .AddAttribute(
"HarqEnabled",
109 "Activate/Deactivate the HARQ [by default is active].",
113 .AddAttribute(
"UlGrantMcs",
114 "The MCS of the UL grant, must be [0..15] (default 0)",
175 << (uint16_t)params.m_transmissionMode);
179 m_uesTxMode.insert(std::pair<uint16_t, double>(params.m_rnti, params.m_transmissionMode));
183 dlHarqPrcStatus.resize(8, 0);
186 dlHarqProcessesTimer.resize(8, 0);
192 dlHarqRlcPdu.resize(2);
193 dlHarqRlcPdu.at(0).resize(8);
194 dlHarqRlcPdu.at(1).resize(8);
198 ulHarqPrcStatus.resize(8, 0);
206 (*it).second = params.m_transmissionMode;
216 for (std::size_t i = 0; i < params.m_logicalChannelConfigList.size(); i++)
222 uint64_t mbrDlInBytes =
223 params.m_logicalChannelConfigList.at(i).m_eRabMaximulBitrateDl / 8;
224 uint64_t mbrUlInBytes =
225 params.m_logicalChannelConfigList.at(i).m_eRabMaximulBitrateUl / 8;
226 NS_LOG_DEBUG(
"mbrDlInBytes: " << mbrDlInBytes <<
" mbrUlInBytes: " << mbrUlInBytes);
239 std::pair<uint16_t, fdtbfqsFlowPerf_t>(params.m_rnti, flowStatsDl));
251 std::pair<uint16_t, fdtbfqsFlowPerf_t>(params.m_rnti, flowStatsUl));
256 uint64_t mbrDlInBytes =
257 params.m_logicalChannelConfigList.at(i).m_eRabMaximulBitrateDl / 8;
258 uint64_t mbrUlInBytes =
259 params.m_logicalChannelConfigList.at(i).m_eRabMaximulBitrateUl / 8;
260 NS_LOG_DEBUG(
"mbrDlInBytes: " << mbrDlInBytes <<
" mbrUlInBytes: " << mbrUlInBytes);
261 m_flowStatsDl[(*it).first].tokenGenerationRate = mbrDlInBytes;
262 m_flowStatsUl[(*it).first].tokenGenerationRate = mbrUlInBytes;
272 for (std::size_t i = 0; i < params.m_logicalChannelIdentity.size(); i++)
277 if (((*it).first.m_rnti == params.m_rnti) &&
278 ((*it).first.m_lcId == params.m_logicalChannelIdentity.at(i)))
313 if ((*it).first.m_rnti == params.m_rnti)
337 LteFlowId_t flow(params.m_rnti, params.m_logicalChannelIdentity);
347 (*it).second = params;
370 for (
int i = 0; i < 4; i++)
384 unsigned int lcActive = 0;
387 if (((*it).first.m_rnti == rnti) && (((*it).second.m_rlcTransmissionQueueSize > 0) ||
388 ((*it).second.m_rlcRetransmissionQueueSize > 0) ||
389 ((*it).second.m_rlcStatusPduSize > 0)))
393 if ((*it).first.m_rnti > rnti)
414 NS_FATAL_ERROR(
"No Process Id Statusfound for this RNTI " << rnti);
416 uint8_t i = (*it).second;
420 }
while (((*itStat).second.at(i) != 0) && (i != (*it).second));
422 return (*itStat).second.at(i) == 0;
443 NS_FATAL_ERROR(
"No Process Id Statusfound for this RNTI " << rnti);
445 uint8_t i = (*it).second;
449 }
while (((*itStat).second.at(i) != 0) && (i != (*it).second));
450 if ((*itStat).second.at(i) == 0)
453 (*itStat).second.at(i) = 1;
458 << rnti <<
" check before update with HarqProcessAvailability");
478 NS_LOG_DEBUG(
this <<
" Reset HARQ proc " << i <<
" for RNTI " << (*itTimers).first);
483 << (*itTimers).first);
485 (*itStat).second.at(i) = 0;
486 (*itTimers).second.at(i) = 0;
490 (*itTimers).second.at(i)++;
500 NS_LOG_FUNCTION(
this <<
" Frame no. " << (params.m_sfnSf >> 4) <<
" subframe no. "
501 << (0xF & params.m_sfnSf));
512 std::map<uint16_t, std::vector<uint16_t>> allocationMap;
513 std::vector<bool> rbgMap;
514 uint16_t rbgAllocatedNum = 0;
515 std::set<uint16_t> rntiAllocated;
519 for (
auto it = rbgMap.begin(); it != rbgMap.end(); it++)
534 (*itProcId).second = ((*itProcId).second + 1) %
HARQ_PROC_NUM;
538 std::vector<bool> ulRbMap;
541 uint8_t maxContinuousUlBandwidth = 0;
542 uint8_t tmpMinBandwidth = 0;
543 uint16_t ffrRbStartOffset = 0;
544 uint16_t tmpFfrRbStartOffset = 0;
547 for (
auto it = ulRbMap.begin(); it != ulRbMap.end(); it++)
551 if (tmpMinBandwidth > maxContinuousUlBandwidth)
553 maxContinuousUlBandwidth = tmpMinBandwidth;
554 ffrRbStartOffset = tmpFfrRbStartOffset;
560 if (tmpMinBandwidth == 0)
562 tmpFfrRbStartOffset = index;
569 if (tmpMinBandwidth > maxContinuousUlBandwidth)
571 maxContinuousUlBandwidth = tmpMinBandwidth;
572 ffrRbStartOffset = tmpFfrRbStartOffset;
576 uint16_t rbStart = 0;
577 rbStart = ffrRbStartOffset;
581 (*itRach).m_estimatedSize,
582 " Default UL Grant MCS does not allow to send RACH messages");
584 newRar.
m_rnti = (*itRach).m_rnti;
591 uint16_t tbSizeBits = 0;
593 while ((tbSizeBits < (*itRach).m_estimatedSize) &&
594 (rbStart + rbLen < (ffrRbStartOffset + maxContinuousUlBandwidth)))
599 if (tbSizeBits < (*itRach).m_estimatedSize)
611 NS_LOG_INFO(
this <<
" UL grant allocated to RNTI " << (*itRach).m_rnti <<
" rbStart "
612 << rbStart <<
" rbLen " << rbLen <<
" MCS " << (uint16_t)
m_ulGrantMcs
614 for (uint16_t i = rbStart; i < rbStart + rbLen; i++)
647 harqId = (*itProcId).second;
651 NS_FATAL_ERROR(
"Unable to find RNTI entry in UL DCI HARQ buffer for RNTI "
654 (*itDci).second.at(harqId) = uldci;
657 rbStart = rbStart + rbLen;
667 if (!params.m_dlInfoList.empty())
671 params.m_dlInfoList.begin(),
672 params.m_dlInfoList.end());
677 if (!params.m_dlInfoList.empty())
687 std::vector<DlInfoListElement_s> dlInfoListUntxed;
691 if (itRnti != rntiAllocated.end())
697 std::vector<bool> retx;
699 NS_LOG_INFO(
this <<
" Processing DLHARQ feedback");
704 retx.push_back(
false);
713 if (retx.at(0) || retx.at(1))
718 NS_LOG_INFO(
this <<
" HARQ retx RNTI " << rnti <<
" harqId " << (uint16_t)harqId);
727 if (dci.
m_rv.size() == 1)
739 NS_LOG_INFO(
"Maximum number of retransmissions reached -> drop process");
743 NS_LOG_ERROR(
"No info find in HARQ buffer for UE (might change eNB) "
746 (*it).second.at(harqId) = 0;
750 NS_FATAL_ERROR(
"Unable to find RlcPdcList in HARQ buffer for RNTI "
753 for (std::size_t k = 0; k < (*itRlcPdu).second.size(); k++)
755 (*itRlcPdu).second.at(k).at(harqId).clear();
761 std::vector<int> dciRbg;
764 for (
int j = 0; j < 32; j++)
774 for (std::size_t j = 0; j < dciRbg.size(); j++)
776 if (rbgMap.at(dciRbg.at(j)))
786 for (std::size_t j = 0; j < dciRbg.size(); j++)
788 rbgMap.at(dciRbg.at(j)) =
true;
789 NS_LOG_INFO(
"RBG " << dciRbg.at(j) <<
" assigned");
793 NS_LOG_INFO(
this <<
" Send retx in the same RBGs");
799 uint8_t rbgId = (dciRbg.at(dciRbg.size() - 1) + 1) % rbgNum;
800 uint8_t startRbg = dciRbg.at(dciRbg.size() - 1);
801 std::vector<bool> rbgMapCopy = rbgMap;
802 while ((j < dciRbg.size()) && (startRbg != rbgId))
804 if (!rbgMapCopy.at(rbgId))
806 rbgMapCopy.at(rbgId) =
true;
807 dciRbg.at(j) = rbgId;
810 rbgId = (rbgId + 1) % rbgNum;
812 if (j == dciRbg.size())
816 for (std::size_t k = 0; k < dciRbg.size(); k++)
818 rbgMask = rbgMask + (0x1 << dciRbg.at(k));
823 NS_LOG_INFO(
this <<
" Move retx in RBGs " << dciRbg.size());
829 NS_LOG_INFO(
this <<
" No resource for this retx -> buffer it");
837 NS_FATAL_ERROR(
"Unable to find RlcPdcList in HARQ buffer for RNTI " << rnti);
839 for (std::size_t j = 0; j < nLayers; j++)
843 if (j >= dci.
m_ndi.size())
846 dci.
m_ndi.push_back(0);
847 dci.
m_rv.push_back(0);
848 dci.
m_mcs.push_back(0);
851 <<
" no txed (MIMO transition)");
857 (*itHarq).second.at(harqId).m_rv.at(j)++;
858 NS_LOG_INFO(
this <<
" layer " << (uint16_t)j <<
" RV "
859 << (uint16_t)dci.
m_rv.at(j));
869 NS_LOG_INFO(
this <<
" layer " << (uint16_t)j <<
" no retx");
872 for (std::size_t k = 0; k < (*itRlcPdu).second.at(0).at(dci.
m_harqProcess).size(); k++)
874 std::vector<RlcPduListElement_s> rlcPduListPerLc;
875 for (std::size_t j = 0; j < nLayers; j++)
879 if (j < dci.
m_ndi.size())
881 NS_LOG_INFO(
" layer " << (uint16_t)j <<
" tb size "
883 rlcPduListPerLc.push_back(
896 .m_logicalChannelIdentity;
898 rlcPduListPerLc.push_back(emptyElement);
902 if (!rlcPduListPerLc.empty())
909 (*itHarq).second.at(harqId).
m_rv = dci.
m_rv;
914 NS_FATAL_ERROR(
"Unable to find HARQ timer for RNTI " << (uint16_t)rnti);
916 (*itHarqTimer).second.at(harqId) = 0;
918 rntiAllocated.insert(rnti);
935 NS_FATAL_ERROR(
"Unable to find RlcPdcList in HARQ buffer for RNTI "
938 for (std::size_t k = 0; k < (*itRlcPdu).second.size(); k++)
947 if (rbgAllocatedNum == rbgNum)
960 if ((*itStats).second.tokenGenerationRate / 1000 + (*itStats).second.tokenPoolSize >
961 (*itStats).second.maxTokenPoolSize)
963 (*itStats).second.counter +=
964 (*itStats).second.tokenGenerationRate / 1000 -
965 ((*itStats).second.maxTokenPoolSize - (*itStats).second.tokenPoolSize);
966 (*itStats).second.tokenPoolSize = (*itStats).second.maxTokenPoolSize;
967 bankSize += (*itStats).second.tokenGenerationRate / 1000 -
968 ((*itStats).second.maxTokenPoolSize - (*itStats).second.tokenPoolSize);
972 (*itStats).second.tokenPoolSize += (*itStats).second.tokenGenerationRate / 1000;
976 std::set<uint16_t> allocatedRnti;
977 std::set<uint8_t> allocatedRbg;
980 while (totalRbg < rbgNum)
983 std::map<uint16_t, fdtbfqsFlowPerf_t>::iterator it;
985 double metricMax = 0.0;
986 bool firstRnti =
true;
989 auto itRnti = rntiAllocated.find((*it).first);
993 if (itRnti != rntiAllocated.end())
995 NS_LOG_DEBUG(
this <<
" RNTI discarded for HARQ tx" << (uint16_t)(*it).first);
999 NS_LOG_DEBUG(
this <<
" RNTI discarded for HARQ id" << (uint16_t)(*it).first);
1008 NS_FATAL_ERROR(
"No Transmission Mode info on user " << (*it).first);
1013 for (
int k = 0; k < rbgNum; k++)
1015 for (uint8_t j = 0; j < nLayer; j++)
1023 cqiSum += (*itCqi).second.m_higherLayerSelected.at(k).m_sbCqi.at(j);
1030 NS_LOG_INFO(
"Skip this flow, CQI==0, rnti:" << (*it).first);
1039 auto rnti = allocatedRnti.find((*it).first);
1040 if (rnti != allocatedRnti.end())
1046 (((
double)(*it).second.counter) / ((
double)(*it).second.tokenGenerationRate));
1055 if (metric > metricMax)
1070 allocatedRnti.insert((*itMax).first);
1076 budget = (*itMax).second.counter - (*itMax).second.debtLimit;
1077 if (budget > (*itMax).second.burstCredit)
1079 budget = (*itMax).second.burstCredit;
1086 budget = budget + (*itMax).second.tokenPoolSize;
1102 if ((*itRlcBuf).first.m_rnti == (*itMax).first)
1104 lcid = (*itRlcBuf).first.m_lcId;
1111 rlcBufSize = (*itRlcBuf).second.m_rlcTransmissionQueueSize +
1112 (*itRlcBuf).second.m_rlcRetransmissionQueueSize +
1113 (*itRlcBuf).second.m_rlcStatusPduSize;
1115 if (budget > rlcBufSize)
1117 budget = rlcBufSize;
1119 <<
" RLC buffer size: " << rlcBufSize);
1127 while (bytesTxed <= budget)
1135 NS_FATAL_ERROR(
"No Transmission Mode info on user " << (*it).first);
1140 double achievableRateMax = 0.0;
1142 for (
int k = 0; k < rbgNum; k++)
1144 auto rbg = allocatedRbg.find(k);
1145 if (rbg != allocatedRbg.end())
1160 std::vector<uint8_t> sbCqi;
1163 sbCqi = std::vector<uint8_t>(nLayer, 1);
1167 sbCqi = (*itCqi).second.m_higherLayerSelected.at(k).m_sbCqi;
1169 uint8_t cqi1 = sbCqi.at(0);
1171 if (sbCqi.size() > 1)
1182 double achievableRate = 0.0;
1183 for (uint8_t j = 0; j < nLayer; j++)
1186 if (sbCqi.size() > j)
1188 mcs =
m_amc->GetMcsFromCqi(sbCqi.at(j));
1195 achievableRate += ((
m_amc->GetDlTbSizeFromMcs(mcs, rbgSize) / 8) /
1199 if (achievableRate > achievableRateMax)
1201 achievableRateMax = achievableRate;
1208 if (rbgIndex == rbgNum)
1217 allocatedRbg.insert(rbgIndex);
1221 auto itMap = allocationMap.find((*itMax).first);
1222 uint16_t RbgPerRnti;
1223 if (itMap == allocationMap.end())
1226 std::vector<uint16_t> tempMap;
1227 tempMap.push_back(rbgIndex);
1228 allocationMap[(*itMax).first] = tempMap;
1229 itMap = allocationMap.find(
1234 (*itMap).second.push_back(rbgIndex);
1236 rbgMap.at(rbgIndex) =
true;
1238 RbgPerRnti = (*itMap).second.size();
1241 std::vector<uint8_t> worstCqi(2, 15);
1244 for (std::size_t k = 0; k < (*itMap).second.size(); k++)
1246 if ((*itCqi).second.m_higherLayerSelected.size() > (*itMap).second.at(k))
1248 for (uint8_t j = 0; j < nLayer; j++)
1251 .
second.m_higherLayerSelected.at((*itMap).second.at(k))
1252 .m_sbCqi.size() > j)
1255 .
second.m_higherLayerSelected.at((*itMap).second.at(k))
1256 .m_sbCqi.at(j)) < worstCqi.at(j))
1260 .second.m_higherLayerSelected.at((*itMap).second.at(k))
1273 for (uint8_t j = 0; j < nLayer; j++)
1283 for (uint8_t j = 0; j < nLayer; j++)
1289 bytesTxedTmp = bytesTxed;
1291 for (uint8_t j = 0; j < nLayer; j++)
1293 int tbSize = (
m_amc->GetDlTbSizeFromMcs(
m_amc->GetMcsFromCqi(worstCqi.at(j)),
1294 RbgPerRnti * rbgSize) /
1296 bytesTxed += tbSize;
1301 if (bytesTxed > budget)
1303 NS_LOG_DEBUG(
"budget: " << budget <<
" bytesTxed: " << bytesTxed <<
" at "
1305 auto itMap = allocationMap.find((*itMax).first);
1306 (*itMap).second.pop_back();
1307 allocatedRbg.erase(rbgIndex);
1308 bytesTxed = bytesTxedTmp;
1310 rbgMap.at(rbgIndex) =
false;
1313 if ((*itMap).second.empty())
1315 itMap = allocationMap.erase(itMap);
1320 if (allocationMap.find((*itMax).first) != allocationMap.end())
1323 if (bytesTxed <= (*itMax).second.tokenPoolSize)
1325 (*itMax).second.tokenPoolSize -= bytesTxed;
1329 (*itMax).second.counter =
1330 (*itMax).second.counter - (bytesTxed - (*itMax).second.tokenPoolSize);
1331 (*itMax).second.tokenPoolSize = 0;
1332 if (
bankSize <= (bytesTxed - (*itMax).second.tokenPoolSize))
1346 auto itMap = allocationMap.begin();
1347 while (itMap != allocationMap.end())
1349 NS_LOG_DEBUG(
"Preparing DCI for RNTI " << (*itMap).first);
1352 newEl.
m_rnti = (*itMap).first;
1355 newDci.
m_rnti = (*itMap).first;
1363 lcActives = (uint16_t)65535;
1365 uint16_t RbgPerRnti = (*itMap).second.size();
1370 NS_FATAL_ERROR(
"No Transmission Mode info on user " << (*itMap).first);
1373 std::vector<uint8_t> worstCqi(2, 15);
1376 for (std::size_t k = 0; k < (*itMap).second.size(); k++)
1378 if ((*itCqi).second.m_higherLayerSelected.size() > (*itMap).second.at(k))
1380 NS_LOG_INFO(
this <<
" RBG " << (*itMap).second.at(k) <<
" CQI "
1381 << (uint16_t)((*itCqi)
1382 .second.m_higherLayerSelected
1383 .at((*itMap).second.at(k))
1385 for (uint8_t j = 0; j < nLayer; j++)
1388 .
second.m_higherLayerSelected.at((*itMap).second.at(k))
1389 .m_sbCqi.size() > j)
1392 .
second.m_higherLayerSelected.at((*itMap).second.at(k))
1393 .m_sbCqi.at(j)) < worstCqi.at(j))
1397 .second.m_higherLayerSelected.at((*itMap).second.at(k))
1410 for (uint8_t j = 0; j < nLayer; j++)
1419 for (uint8_t j = 0; j < nLayer; j++)
1424 for (uint8_t j = 0; j < nLayer; j++)
1426 NS_LOG_INFO(
this <<
" Layer " << (uint16_t)j <<
" CQI selected "
1427 << (uint16_t)worstCqi.at(j));
1429 for (uint8_t j = 0; j < nLayer; j++)
1431 newDci.
m_mcs.push_back(
m_amc->GetMcsFromCqi(worstCqi.at(j)));
1432 int tbSize = (
m_amc->GetDlTbSizeFromMcs(newDci.
m_mcs.at(j), RbgPerRnti * rbgSize) /
1435 NS_LOG_INFO(
this <<
" Layer " << (uint16_t)j <<
" MCS selected"
1436 << (uint16_t)
m_amc->GetMcsFromCqi(worstCqi.at(j)));
1442 for (std::size_t k = 0; k < (*itMap).second.size(); k++)
1444 rbgMask = rbgMask + (0x1 << (*itMap).second.at(k));
1445 NS_LOG_INFO(
this <<
" Allocated RBG " << (*itMap).second.at(k));
1452 if (((*itBufReq).first.m_rnti == (*itMap).first) &&
1453 (((*itBufReq).second.m_rlcTransmissionQueueSize > 0) ||
1454 ((*itBufReq).second.m_rlcRetransmissionQueueSize > 0) ||
1455 ((*itBufReq).second.m_rlcStatusPduSize > 0)))
1457 std::vector<RlcPduListElement_s> newRlcPduLe;
1458 for (uint8_t j = 0; j < nLayer; j++)
1464 <<
" size " << newRlcEl.
m_size <<
" layer " << (uint16_t)j);
1465 newRlcPduLe.push_back(newRlcEl);
1475 NS_FATAL_ERROR(
"Unable to find RlcPdcList in HARQ buffer for RNTI "
1478 (*itRlcPdu).second.at(j).at(newDci.
m_harqProcess).push_back(newRlcEl);
1483 if ((*itBufReq).first.m_rnti > (*itMap).first)
1488 for (uint8_t j = 0; j < nLayer; j++)
1490 newDci.
m_ndi.push_back(1);
1491 newDci.
m_rv.push_back(0);
1496 newEl.
m_dci = newDci;
1504 NS_FATAL_ERROR(
"Unable to find RNTI entry in DCI HARQ buffer for RNTI "
1544 for (
unsigned int i = 0; i < params.m_cqiList.size(); i++)
1550 uint16_t rnti = params.m_cqiList.at(i).m_rnti;
1556 params.m_cqiList.at(i).m_wbCqi.at(0);
1563 (*it).second = params.m_cqiList.at(i).m_wbCqi.at(0);
1572 uint16_t rnti = params.m_cqiList.at(i).m_rnti;
1577 m_a30CqiRxed[rnti] = params.m_cqiList.at(i).m_sbMeasResult;
1583 (*it).second = params.m_cqiList.at(i).m_sbMeasResult;
1598 auto itCqi =
m_ueCqi.find(rnti);
1608 unsigned int sinrNum = 0;
1611 double sinr = (*itCqi).second.at(i);
1618 double estimatedSinr = (sinrNum > 0) ? (sinrSum / sinrNum) : DBL_MAX;
1620 (*itCqi).second.at(rb) = estimatedSinr;
1621 return estimatedSinr;
1629 NS_LOG_FUNCTION(
this <<
" UL - Frame no. " << (params.m_sfnSf >> 4) <<
" subframe no. "
1630 << (0xF & params.m_sfnSf) <<
" size " << params.m_ulInfoList.size());
1637 std::vector<bool> rbMap;
1638 uint16_t rbAllocatedNum = 0;
1639 std::set<uint16_t> rntiAllocated;
1640 std::vector<uint16_t> rbgAllocationMap;
1651 for (
auto it = rbMap.begin(); it != rbMap.end(); it++)
1659 uint8_t minContinuousUlBandwidth =
m_ffrSapProvider->GetMinContinuousUlBandwidth();
1665 if (rbgAllocationMap.at(i) != 0)
1675 for (std::size_t i = 0; i < params.m_ulInfoList.size(); i++)
1680 uint16_t rnti = params.m_ulInfoList.at(i).m_rnti;
1684 NS_LOG_ERROR(
"No info find in HARQ buffer for UE (might change eNB) " << rnti);
1687 NS_LOG_INFO(
this <<
" UL-HARQ retx RNTI " << rnti <<
" harqId " << (uint16_t)harqId
1688 <<
" i " << i <<
" size " << params.m_ulInfoList.size());
1692 NS_LOG_ERROR(
"No info find in HARQ buffer for UE (might change eNB) " << rnti);
1699 NS_LOG_ERROR(
"No info find in HARQ buffer for UE (might change eNB) " << rnti);
1701 if ((*itStat).second.at(harqId) >= 3)
1703 NS_LOG_INFO(
"Max number of retransmissions reached (UL)-> drop process");
1721 rbgAllocationMap.at(j) = dci.
m_rnti;
1727 << (*itStat).second.at(harqId) + 1);
1731 NS_LOG_INFO(
"Cannot allocate retx due to RACH allocations for UE " << rnti);
1736 (*itStat).second.at((*itProcId).second) = (*itStat).second.at(harqId) + 1;
1737 (*itStat).second.at(harqId) = 0;
1738 (*itHarq).second.at((*itProcId).second) = dci;
1740 rntiAllocated.insert(dci.
m_rnti);
1744 NS_LOG_INFO(
this <<
" HARQ-ACK feedback from RNTI "
1745 << params.m_ulInfoList.at(i).m_rnti);
1750 std::map<uint16_t, uint32_t>::iterator it;
1755 auto itRnti = rntiAllocated.find((*it).first);
1757 if (((*it).second > 0) && (itRnti == rntiAllocated.end()))
1776 uint16_t tempRbPerFlow = (ffrUlBandwidth) / (nflows + rntiAllocated.size());
1777 uint16_t rbPerFlow =
1778 (minContinuousUlBandwidth < tempRbPerFlow) ? minContinuousUlBandwidth : tempRbPerFlow;
1785 int rbAllocated = 0;
1808 auto itRnti = rntiAllocated.find((*it).first);
1809 if ((itRnti != rntiAllocated.end()) || ((*it).second == 0))
1812 NS_LOG_DEBUG(
this <<
" UE already allocated in HARQ -> discarded, RNTI "
1836 uldci.
m_rnti = (*it).first;
1838 bool allocated =
false;
1839 NS_LOG_INFO(
this <<
" RB Allocated " << rbAllocated <<
" rbPerFlow " << rbPerFlow
1840 <<
" flows " << nflows);
1841 while ((!allocated) && ((rbAllocated + rbPerFlow -
m_cschedCellConfig.m_ulBandwidth) < 1) &&
1846 for (
int j = rbAllocated; j < rbAllocated + rbPerFlow; j++)
1861 NS_LOG_INFO(
this <<
"RNTI: " << (*it).first <<
" RB Allocated " << rbAllocated
1862 <<
" rbPerFlow " << rbPerFlow <<
" flows " << nflows);
1865 for (
int j = rbAllocated; j < rbAllocated + rbPerFlow; j++)
1869 rbgAllocationMap.at(j) = (*it).first;
1871 rbAllocated += rbPerFlow;
1900 auto itCqi =
m_ueCqi.find((*it).first);
1911 "CQI of RNTI = " << (*it).first <<
" has expired");
1912 double minSinr = (*itCqi).second.at(uldci.
m_rbStart);
1919 double sinr = (*itCqi).second.at(i);
1931 double s = log2(1 + (std::pow(10, minSinr / 10) / ((-std::log(5.0 * 0.00005)) / 1.5)));
1932 cqi =
m_amc->GetCqiFromSpectralEfficiency(s);
1945 rbgAllocationMap.at(i) = 0;
1976 harqId = (*itProcId).second;
1980 NS_FATAL_ERROR(
"Unable to find RNTI entry in UL DCI HARQ buffer for RNTI "
1983 (*itDci).second.at(harqId) = uldci;
1988 NS_LOG_ERROR(
"No info find in HARQ buffer for UE (might change eNB) "
1991 (*itStat).second.at(harqId) = 0;
1994 NS_LOG_INFO(
this <<
" UE Allocation RNTI " << (*it).first <<
" startPRB "
1996 <<
" CQI " << cqi <<
" MCS " << (
uint32_t)uldci.
m_mcs <<
" TBsize "
1997 << uldci.
m_tbSize <<
" RbAlloc " << rbAllocated <<
" harqId "
1998 << (uint16_t)harqId);
2012 }
while (((*it).first !=
m_nextRntiUl) && (rbPerFlow != 0));
2038 for (
unsigned int i = 0; i < params.m_macCeList.size(); i++)
2050 for (uint8_t lcg = 0; lcg < 4; ++lcg)
2052 uint8_t bsrId = params.m_macCeList.at(i).m_macCeValue.m_bufferStatus.at(lcg);
2056 uint16_t rnti = params.m_macCeList.at(i).m_rnti;
2057 NS_LOG_LOGIC(
this <<
"RNTI=" << rnti <<
" buffer=" << buffer);
2062 m_ceBsrRxed.insert(std::pair<uint16_t, uint32_t>(rnti, buffer));
2067 (*it).second = buffer;
2101 switch (params.m_ulCqi.m_type)
2104 NS_LOG_DEBUG(
this <<
" Collect PUSCH CQIs of Frame no. " << (params.m_sfnSf >> 4)
2105 <<
" subframe no. " << (0xF & params.m_sfnSf));
2111 for (
uint32_t i = 0; i < (*itMap).second.size(); i++)
2115 auto itCqi =
m_ueCqi.find((*itMap).second.at(i));
2119 std::vector<double> newCqi;
2124 newCqi.push_back(sinr);
2132 m_ueCqi[(*itMap).second.at(i)] = newCqi;
2139 (*itCqi).second.at(i) = sinr;
2140 NS_LOG_DEBUG(
this <<
" RNTI " << (*itMap).second.at(i) <<
" RB " << i <<
" SINR "
2154 NS_ASSERT(!params.m_vendorSpecificList.empty());
2155 for (std::size_t i = 0; i < params.m_vendorSpecificList.size(); i++)
2161 rnti = vsp->GetRnti();
2164 auto itCqi =
m_ueCqi.find(rnti);
2168 std::vector<double> newCqi;
2172 newCqi.push_back(sinr);
2173 NS_LOG_INFO(
this <<
" RNTI " << rnti <<
" new SRS-CQI for RB " << j <<
" value "
2176 m_ueCqi.insert(std::pair<uint16_t, std::vector<double>>(rnti, newCqi));
2186 (*itCqi).second.at(j) = sinr;
2187 NS_LOG_INFO(
this <<
" RNTI " << rnti <<
" update SRS-CQI for RB " << j <<
" value "
2199 NS_FATAL_ERROR(
"FdTbfqFfMacScheduler supports only PUSCH and SRS UL-CQIs");
2214 NS_LOG_INFO(
this <<
" P10-CQI for user " << (*itP10).first <<
" is "
2216 if ((*itP10).second == 0)
2221 " Does not find CQI report for user " << (*itP10).first);
2222 NS_LOG_INFO(
this <<
" P10-CQI expired for user " << (*itP10).first);
2239 NS_LOG_INFO(
this <<
" A30-CQI for user " << (*itA30).first <<
" is "
2241 if ((*itA30).second == 0)
2246 " Does not find CQI report for user " << (*itA30).first);
2247 NS_LOG_INFO(
this <<
" A30-CQI expired for user " << (*itA30).first);
2268 NS_LOG_INFO(
this <<
" UL-CQI for user " << (*itUl).first <<
" is "
2270 if ((*itUl).second == 0)
2273 auto itMap =
m_ueCqi.find((*itUl).first);
2275 " Does not find CQI report for user " << (*itUl).first);
2276 NS_LOG_INFO(
this <<
" UL-CQI exired for user " << (*itUl).first);
2277 (*itMap).second.clear();
2298 NS_LOG_INFO(
this <<
" UE " << rnti <<
" LC " << (uint16_t)lcid <<
" txqueue "
2299 << (*it).second.m_rlcTransmissionQueueSize <<
" retxqueue "
2300 << (*it).second.m_rlcRetransmissionQueueSize <<
" status "
2301 << (*it).second.m_rlcStatusPduSize <<
" decrease " << size);
2304 if (((*it).second.m_rlcStatusPduSize > 0) && (size >= (*it).second.m_rlcStatusPduSize))
2306 (*it).second.m_rlcStatusPduSize = 0;
2308 else if (((*it).second.m_rlcRetransmissionQueueSize > 0) &&
2309 (size >= (*it).second.m_rlcRetransmissionQueueSize))
2311 (*it).second.m_rlcRetransmissionQueueSize = 0;
2313 else if ((*it).second.m_rlcTransmissionQueueSize > 0)
2330 if ((*it).second.m_rlcTransmissionQueueSize <= size - rlcOverhead)
2332 (*it).second.m_rlcTransmissionQueueSize = 0;
2336 (*it).second.m_rlcTransmissionQueueSize -= size - rlcOverhead;
2342 NS_LOG_ERROR(
this <<
" Does not find DL RLC Buffer Report of UE " << rnti);
2353 NS_LOG_INFO(
this <<
" UE " << rnti <<
" size " << size <<
" BSR " << (*it).second);
2354 if ((*it).second >= size)
2356 (*it).second -= size;
2365 NS_LOG_ERROR(
this <<
" Does not find BSR report info of UE " << rnti);
2372 NS_LOG_FUNCTION(
this <<
" RNTI " << rnti <<
" txMode " << (uint16_t)txMode);
2374 params.m_rnti = rnti;
2375 params.m_transmissionMode = txMode;
AttributeValue implementation for Boolean.
static uint32_t BsrId2BufferSize(uint8_t val)
Convert BSR ID to buffer size.
std::vector< uint16_t > m_rachAllocationMap
RACH allocation map.
uint32_t m_tokenPoolSize
maximum size of token pool (byte)
std::map< uint16_t, fdtbfqsFlowPerf_t > m_flowStatsUl
Map of UE statistics (per RNTI basis).
LteFfrSapProvider * m_ffrSapProvider
FFR SAP provider.
std::map< uint16_t, uint32_t > m_ceBsrRxed
Map of UE's buffer status reports received.
std::map< LteFlowId_t, FfMacSchedSapProvider::SchedDlRlcBufferReqParameters > m_rlcBufferReq
Vectors of UE's LC info.
std::map< uint16_t, std::vector< double > > m_ueCqi
Map of UEs' UL-CQI per RBG.
void DoSchedDlPagingBufferReq(const FfMacSchedSapProvider::SchedDlPagingBufferReqParameters ¶ms)
Sched DL paging buffer request function.
static TypeId GetTypeId()
Get the type ID.
bool HarqProcessAvailability(uint16_t rnti)
Return the availability of free process for the RNTI specified.
uint64_t bankSize
the number of bytes in token bank
uint8_t UpdateHarqProcessId(uint16_t rnti)
Update and return a new process Id for the RNTI specified.
LteFfrSapUser * m_ffrSapUser
FFR SAP user.
std::map< uint16_t, uint8_t > m_ulHarqCurrentProcessId
UL HARQ current process ID.
void SetFfMacCschedSapUser(FfMacCschedSapUser *s) override
Set FF MAC Csched SAP user function.
std::map< uint16_t, DlHarqProcessesDciBuffer_t > m_dlHarqProcessesDciBuffer
DL HARQ process DCI buffer.
friend class MemberSchedSapProvider< FdTbfqFfMacScheduler >
allow MemberSchedSapProvider<FdTbfqFfMacScheduler> claass friend access
void RefreshHarqProcesses()
Refresh HARQ processes according to the timers.
LteFfrSapUser * GetLteFfrSapUser() override
Get FFR SAP user function.
~FdTbfqFfMacScheduler() override
Destructor.
void DoCschedLcConfigReq(const FfMacCschedSapProvider::CschedLcConfigReqParameters ¶ms)
CSched LC config request function.
void DoSchedDlMacBufferReq(const FfMacSchedSapProvider::SchedDlMacBufferReqParameters ¶ms)
Sched DL MAC buffer request function.
uint32_t m_cqiTimersThreshold
uint32_t m_creditableThreshold
threshold of flow credit
void UpdateDlRlcBufferInfo(uint16_t rnti, uint8_t lcid, uint16_t size)
Update DL RLC buffer info function.
void SetFfMacSchedSapUser(FfMacSchedSapUser *s) override
Set FF MAC sched SAP user function.
std::map< uint16_t, uint8_t > m_dlHarqCurrentProcessId
DL HARQ current process ID.
std::map< uint16_t, uint8_t > m_p10CqiRxed
Map of UE's DL CQI P01 received.
std::vector< DlInfoListElement_s > m_dlInfoListBuffered
HARQ retx buffered.
FfMacCschedSapProvider::CschedCellConfigReqParameters m_cschedCellConfig
Csched cell config.
void RefreshDlCqiMaps()
Refresh DL CQI maps function.
void DoDispose() override
Destructor implementation.
double EstimateUlSinr(uint16_t rnti, uint16_t rb)
Estimate UL SNR function.
std::vector< RachListElement_s > m_rachList
RACH list.
std::map< uint16_t, SbMeasResult_s > m_a30CqiRxed
Map of UE's DL CQI A30 received.
std::map< uint16_t, UlHarqProcessesDciBuffer_t > m_ulHarqProcessesDciBuffer
UL HARQ process DCI buffer.
std::map< uint16_t, uint32_t > m_ueCqiTimers
Map of UEs' timers on UL-CQI per RBG.
std::map< uint16_t, uint32_t > m_p10CqiTimers
Map of UE's timers on DL CQI P01 received.
void SetLteFfrSapProvider(LteFfrSapProvider *s) override
Set FFR SAP provider function.
FfMacCschedSapProvider * GetFfMacCschedSapProvider() override
Get FF MAC CSched SAP provider function.
void TransmissionModeConfigurationUpdate(uint16_t rnti, uint8_t txMode)
Transmission mode config update function.
std::map< uint16_t, UlHarqProcessesStatus_t > m_ulHarqProcessesStatus
UL HARQ process status.
uint32_t m_creditLimit
flow credit limit (byte)
void DoSchedDlRlcBufferReq(const FfMacSchedSapProvider::SchedDlRlcBufferReqParameters ¶ms)
Sched DL RLC buffer request function.
int m_debtLimit
flow debt limit (byte)
std::map< uint16_t, uint32_t > m_a30CqiTimers
Map of UE's timers on DL CQI A30 received.
uint8_t m_ulGrantMcs
MCS for UL grant (default 0).
void DoSchedUlNoiseInterferenceReq(const FfMacSchedSapProvider::SchedUlNoiseInterferenceReqParameters ¶ms)
Sched UL noise interference request function.
void RefreshUlCqiMaps()
Refresh UL CQI maps function.
FfMacCschedSapProvider * m_cschedSapProvider
CSched SAP provider.
std::map< uint16_t, DlHarqProcessesStatus_t > m_dlHarqProcessesStatus
DL HARQ process status.
void DoSchedDlRachInfoReq(const FfMacSchedSapProvider::SchedDlRachInfoReqParameters ¶ms)
Sched DL RACH info request function.
FfMacSchedSapProvider * m_schedSapProvider
sched SAP provider
FdTbfqFfMacScheduler()
Constructor.
std::map< uint16_t, DlHarqRlcPduListBuffer_t > m_dlHarqProcessesRlcPduListBuffer
DL HARQ process RLC PDU list buffer.
void DoSchedUlMacCtrlInfoReq(const FfMacSchedSapProvider::SchedUlMacCtrlInfoReqParameters ¶ms)
Sched UL MAC control info request function.
void DoSchedUlCqiInfoReq(const FfMacSchedSapProvider::SchedUlCqiInfoReqParameters ¶ms)
Sched UL CQI info request function.
void DoCschedLcReleaseReq(const FfMacCschedSapProvider::CschedLcReleaseReqParameters ¶ms)
CSched LC release request function.
std::map< uint16_t, uint8_t > m_uesTxMode
txMode of the UEs
void DoSchedDlCqiInfoReq(const FfMacSchedSapProvider::SchedDlCqiInfoReqParameters ¶ms)
Sched DL CQI info request function.
std::map< uint16_t, fdtbfqsFlowPerf_t > m_flowStatsDl
Map of UE statistics (per RNTI basis) in downlink.
FfMacSchedSapProvider * GetFfMacSchedSapProvider() override
Get FF MAC sched SAP provider function.
void DoCschedUeConfigReq(const FfMacCschedSapProvider::CschedUeConfigReqParameters ¶ms)
CSched UE config request function.
FfMacSchedSapUser * m_schedSapUser
sched SAP user
void DoCschedCellConfigReq(const FfMacCschedSapProvider::CschedCellConfigReqParameters ¶ms)
Csched cell config request function.
uint16_t m_nextRntiUl
RNTI of the next user to be served next scheduling in UL.
std::map< uint16_t, std::vector< uint16_t > > m_allocationMaps
Map of previous allocated UE per RBG (used to retrieve info from UL-CQI).
unsigned int LcActivePerFlow(uint16_t rnti)
LC Active per flow function.
void DoCschedUeReleaseReq(const FfMacCschedSapProvider::CschedUeReleaseReqParameters ¶ms)
CSched UE release request function.
void DoSchedUlSrInfoReq(const FfMacSchedSapProvider::SchedUlSrInfoReqParameters ¶ms)
Sched UL SR info request function.
std::map< uint16_t, DlHarqProcessesTimer_t > m_dlHarqProcessesTimer
DL HARQ process timer.
FfMacCschedSapUser * m_cschedSapUser
Csched SAP user.
friend class MemberCschedSapProvider< FdTbfqFfMacScheduler >
allow MemberCschedSapProvider<FdTbfqFfMacScheduler> class friend access
void UpdateUlRlcBufferInfo(uint16_t rnti, uint16_t size)
Update UL RLC buffer info function.
int GetRbgSize(int dlbandwidth)
Get RBG size function.
void DoSchedUlTriggerReq(const FfMacSchedSapProvider::SchedUlTriggerReqParameters ¶ms)
Sched UL trigger request function.
void DoSchedDlTriggerReq(const FfMacSchedSapProvider::SchedDlTriggerReqParameters ¶ms)
Sched DL trigger request function.
bool m_harqOn
m_harqOn when false inhibit the HARQ mechanisms (by default active)
FfMacCschedSapUser class.
FfMacScheduler()
constructor
UlCqiFilter_t m_ulCqiFilter
UL CQI filter.
Hold a signed integer type.
static double fpS11dot3toDouble(uint16_t val)
Convert from fixed point S11.3 notation to double.
Service Access Point (SAP) offered by the Frequency Reuse algorithm instance to the MAC Scheduler ins...
Service Access Point (SAP) offered by the eNodeB RRC instance to the Frequency Reuse algorithm instan...
Template for the implementation of the LteFfrSapUser as a member of an owner class of type C to which...
Smart pointer class similar to boost::intrusive_ptr.
static Time Now()
Return the current simulation virtual time.
static uint8_t TxMode2LayerNum(uint8_t txMode)
Transmit mode 2 layer number.
a unique identifier for an interface.
TypeId SetParent(TypeId tid)
Set the parent TypeId.
Hold an unsigned integer type.
#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...
Ptr< const AttributeChecker > MakeBooleanChecker()
Ptr< const AttributeAccessor > MakeBooleanAccessor(T1 a1)
Create an AttributeAccessor for a class data member, or a lone class get functor or set method.
Ptr< const AttributeChecker > MakeIntegerChecker()
Ptr< const AttributeAccessor > MakeIntegerAccessor(T1 a1)
Create an AttributeAccessor for a class data member, or a lone class get functor or set method.
Ptr< const AttributeChecker > MakeUintegerChecker()
Ptr< const AttributeAccessor > MakeUintegerAccessor(T1 a1)
Create an AttributeAccessor for a class data member, or a lone class get functor or set method.
#define NS_FATAL_ERROR(msg)
Report a fatal error with a message and terminate.
#define NS_ABORT_MSG_IF(cond, msg)
Abnormal program termination if a condition is true, with a message.
#define NS_LOG_ERROR(msg)
Use NS_LOG to output a message of level LOG_ERROR.
#define NS_LOG_COMPONENT_DEFINE(name)
Define a Log component with a specific name.
#define NS_LOG_DEBUG(msg)
Use NS_LOG to output a message of level LOG_DEBUG.
#define NS_LOG_LOGIC(msg)
Use NS_LOG to output a message of level LOG_LOGIC.
#define NS_LOG_FUNCTION(parameters)
If log level LOG_FUNCTION is enabled, this macro will output all input parameters separated by ",...
#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.
#define NS_OBJECT_ENSURE_REGISTERED(type)
Register an Object subclass with the TypeId system.
Every class exported by the ns3 library is enclosed in the ns3 namespace.
std::vector< uint8_t > DlHarqProcessesTimer_t
DL HARQ process timer vector.
constexpr double NO_SINR
Value for SINR outside the range defined by FF-API, used to indicate that there is no CQI for this el...
std::vector< uint8_t > UlHarqProcessesStatus_t
UL HARQ process status vector.
std::vector< uint8_t > DlHarqProcessesStatus_t
DL HARQ process status vector.
Ptr< T1 > DynamicCast(const Ptr< T2 > &p)
Cast a Ptr.
std::vector< DlDciListElement_s > DlHarqProcessesDciBuffer_t
DL HARQ process DCI buffer vector.
constexpr uint32_t HARQ_DL_TIMEOUT
HARQ DL timeout.
constexpr uint32_t HARQ_PROC_NUM
Number of HARQ processes.
std::vector< RlcPduList_t > DlHarqRlcPduListBuffer_t
Vector of the 8 HARQ processes per UE.
std::vector< UlDciListElement_s > UlHarqProcessesDciBuffer_t
UL HARQ process DCI buffer vector.
static const int FdTbfqType0AllocationRbg[4]
FdTbfqType0AllocationRbg value array (see table 7.1.6.1-1 of 36.213).
See section 4.3.8 buildDataListElement.
std::vector< std::vector< struct RlcPduListElement_s > > m_rlcPduList
RLC PDU list.
struct DlDciListElement_s m_dci
DCI.
See section 4.3.10 buildRARListElement.
See section 4.3.1 dlDciListElement.
std::vector< uint8_t > m_ndi
New data indicator.
uint8_t m_harqProcess
HARQ process.
uint32_t m_rbBitmap
RB bitmap.
std::vector< uint8_t > m_mcs
MCS.
uint8_t m_resAlloc
The type of resource allocation.
std::vector< uint16_t > m_tbsSize
The TBs size.
std::vector< uint8_t > m_rv
Redundancy version.
uint8_t m_tpc
Tx power control command.
Parameters of the API primitives.
Parameters of the CSCHED_LC_CONFIG_REQ primitive.
Parameters of the CSCHED_LC_RELEASE_REQ primitive.
Parameters of the CSCHED_UE_CONFIG_REQ primitive.
Parameters of the CSCHED_UE_RELEASE_REQ primitive.
Parameters of the CSCHED_UE_CONFIG_CNF primitive.
Parameters of the CSCHED_UE_CONFIG_UPDATE_IND primitive.
Parameters of the SCHED_DL_CQI_INFO_REQ primitive.
Parameters of the SCHED_DL_MAC_BUFFER_REQ primitive.
Parameters of the SCHED_DL_PAGING_BUFFER_REQ primitive.
Parameters of the SCHED_DL_RACH_INFO_REQ primitive.
Parameters of the API primitives.
Parameters of the SCHED_DL_TRIGGER_REQ primitive.
Parameters of the SCHED_UL_CQI_INFO_REQ primitive.
Parameters of the SCHED_UL_MAC_CTRL_INFO_REQ primitive.
Parameters of the SCHED_UL_NOISE_INTERFERENCE_REQ primitive.
Parameters of the SCHED_UL_SR_INFO_REQ primitive.
Parameters of the SCHED_UL_TRIGGER_REQ primitive.
Parameters of the API primitives.
std::vector< BuildDataListElement_s > m_buildDataList
build data list
std::vector< BuildRarListElement_s > m_buildRarList
build rar list
uint8_t m_nrOfPdcchOfdmSymbols
number of PDCCH OFDM symbols
Parameters of the SCHED_UL_CONFIG_IND primitive.
std::vector< UlDciListElement_s > m_dciList
DCI list.
See section 4.3.9 rlcPDU_ListElement.
uint8_t m_logicalChannelIdentity
logical channel identity
See section 4.3.2 ulDciListElement.
int8_t m_pdcchPowerOffset
CCH power offset.
int8_t m_tpc
Tx power control command.
uint8_t m_dai
DL assignment index.
uint8_t m_cceIndex
Control Channel Element index.
uint8_t m_ulIndex
UL index.
uint8_t m_ueTxAntennaSelection
UE antenna selection.
bool m_cqiRequest
CQI request.
uint8_t m_freqHopping
freq hopping
uint8_t m_aggrLevel
The aggregation level.
int8_t m_tpc
Tx power control command.
bool m_cqiRequest
CQI request?
Time flowStart
flow start time
int counter
the number of token borrow or given to token bank
uint32_t burstCredit
the maximum number of tokens connection i can borrow from the bank each time
int debtLimit
counter threshold that the flow cannot further borrow tokens from bank
uint32_t creditableThreshold
the flow cannot borrow token from bank until the number of token it has deposited to bank reaches thi...
uint64_t packetArrivalRate
packet arrival rate( byte/s)
uint32_t tokenPoolSize
current size of token pool (byte)
uint32_t maxTokenPoolSize
maximum size of token pool (byte)
uint64_t tokenGenerationRate
token generation rate ( byte/s )