A Discrete-Event Network Simulator
API
lte-ue-mac.cc
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1/*
2 * Copyright (c) 2011 Centre Tecnologic de Telecomunicacions de Catalunya (CTTC)
3 *
4 * This program is free software; you can redistribute it and/or modify
5 * it under the terms of the GNU General Public License version 2 as
6 * published by the Free Software Foundation;
7 *
8 * This program is distributed in the hope that it will be useful,
9 * but WITHOUT ANY WARRANTY; without even the implied warranty of
10 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
11 * GNU General Public License for more details.
12 *
13 * You should have received a copy of the GNU General Public License
14 * along with this program; if not, write to the Free Software
15 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
16 *
17 * Author: Nicola Baldo <nbaldo@cttc.es>
18 * Author: Marco Miozzo <mmiozzo@cttc.es>
19 */
20
21#include "lte-ue-mac.h"
22
24#include "lte-ue-net-device.h"
25
26#include <ns3/ff-mac-common.h>
27#include <ns3/log.h>
28#include <ns3/lte-common.h>
29#include <ns3/lte-control-messages.h>
30#include <ns3/packet-burst.h>
31#include <ns3/packet.h>
32#include <ns3/pointer.h>
33#include <ns3/random-variable-stream.h>
34#include <ns3/simulator.h>
35
36namespace ns3
37{
38
39NS_LOG_COMPONENT_DEFINE("LteUeMac");
40
42
44// SAP forwarders
46
49{
50 public:
57
58 // inherited from LteUeCmacSapProvider
59 void ConfigureRach(RachConfig rc) override;
62 uint8_t preambleId,
63 uint8_t prachMask) override;
64 void SetRnti(uint16_t rnti) override;
65 void AddLc(uint8_t lcId,
67 LteMacSapUser* msu) override;
68 void RemoveLc(uint8_t lcId) override;
69 void Reset() override;
70 void NotifyConnectionSuccessful() override;
71 void SetImsi(uint64_t imsi) override;
72
73 private:
75};
76
78 : m_mac(mac)
79{
80}
81
82void
84{
86}
87
88void
90{
92}
93
94void
96 uint8_t preambleId,
97 uint8_t prachMask)
98{
99 m_mac->DoStartNonContentionBasedRandomAccessProcedure(rnti, preambleId, prachMask);
100}
101
102void
104{
105 m_mac->DoSetRnti(rnti);
106}
107
108void
110{
111 m_mac->DoAddLc(lcId, lcConfig, msu);
112}
113
114void
116{
117 m_mac->DoRemoveLc(lcid);
118}
119
120void
122{
123 m_mac->DoReset();
124}
125
126void
128{
130}
131
132void
134{
135 m_mac->DoSetImsi(imsi);
136}
137
140{
141 public:
148
149 // inherited from LteMacSapProvider
150 void TransmitPdu(TransmitPduParameters params) override;
152
153 private:
155};
156
158 : m_mac(mac)
159{
160}
161
162void
164{
165 m_mac->DoTransmitPdu(params);
166}
167
168void
170{
172}
173
178{
179 public:
186
187 // inherited from LtePhySapUser
188 void ReceivePhyPdu(Ptr<Packet> p) override;
189 void SubframeIndication(uint32_t frameNo, uint32_t subframeNo) override;
191
192 private:
194};
195
197 : m_mac(mac)
198{
199}
200
201void
203{
205}
206
207void
209{
210 m_mac->DoSubframeIndication(frameNo, subframeNo);
211}
212
213void
215{
217}
218
220// LteUeMac methods
222
223TypeId
225{
226 static TypeId tid =
227 TypeId("ns3::LteUeMac")
228 .SetParent<Object>()
229 .SetGroupName("Lte")
230 .AddConstructor<LteUeMac>()
231 .AddTraceSource("RaResponseTimeout",
232 "trace fired upon RA response timeout",
234 "ns3::LteUeMac::RaResponseTimeoutTracedCallback")
235
236 ;
237 return tid;
238}
239
241 : m_bsrPeriodicity(MilliSeconds(1)), // ideal behavior
242 m_bsrLast(MilliSeconds(0)),
243 m_freshUlBsr(false),
244 m_harqProcessId(0),
245 m_rnti(0),
246 m_imsi(0),
247 m_rachConfigured(false),
248 m_waitingForRaResponse(false)
249
250{
251 NS_LOG_FUNCTION(this);
253 for (std::size_t i = 0; i < m_miUlHarqProcessesPacket.size(); i++)
254 {
255 Ptr<PacketBurst> pb = CreateObject<PacketBurst>();
256 m_miUlHarqProcessesPacket.at(i) = pb;
257 }
259
263 m_raPreambleUniformVariable = CreateObject<UniformRandomVariable>();
265}
266
268{
269 NS_LOG_FUNCTION(this);
270}
271
272void
274{
275 NS_LOG_FUNCTION(this);
277 delete m_macSapProvider;
278 delete m_cmacSapProvider;
279 delete m_uePhySapUser;
281}
282
285{
286 return m_uePhySapUser;
287}
288
289void
291{
293}
294
297{
298 return m_macSapProvider;
299}
300
301void
303{
304 m_cmacSapUser = s;
305}
306
309{
310 return m_cmacSapProvider;
311}
312
313void
315{
316 m_componentCarrierId = index;
317}
318
319void
321{
322 NS_LOG_FUNCTION(this);
323 NS_ASSERT_MSG(m_rnti == params.rnti, "RNTI mismatch between RLC and MAC");
324 LteRadioBearerTag tag(params.rnti, params.lcid, 0 /* UE works in SISO mode*/);
325 params.pdu->AddPacketTag(tag);
326 // store pdu in HARQ buffer
327 m_miUlHarqProcessesPacket.at(m_harqProcessId)->AddPacket(params.pdu);
330}
331
332void
334{
335 NS_LOG_FUNCTION(this << (uint32_t)params.lcid);
336
337 std::map<uint8_t, LteMacSapProvider::ReportBufferStatusParameters>::iterator it;
338
339 it = m_ulBsrReceived.find(params.lcid);
340 if (it != m_ulBsrReceived.end())
341 {
342 // update entry
343 (*it).second = params;
344 }
345 else
346 {
347 m_ulBsrReceived.insert(
348 std::pair<uint8_t, LteMacSapProvider::ReportBufferStatusParameters>(params.lcid,
349 params));
350 }
351 m_freshUlBsr = true;
352}
353
354void
356{
357 NS_LOG_FUNCTION(this);
358
359 if (m_rnti == 0)
360 {
361 NS_LOG_INFO("MAC not initialized, BSR deferred");
362 return;
363 }
364
365 if (m_ulBsrReceived.size() == 0)
366 {
367 NS_LOG_INFO("No BSR report to transmit");
368 return;
369 }
371 bsr.m_rnti = m_rnti;
372 bsr.m_macCeType = MacCeListElement_s::BSR;
373
374 // BSR is reported for each LCG
375 std::map<uint8_t, LteMacSapProvider::ReportBufferStatusParameters>::iterator it;
376 std::vector<uint32_t> queue(4, 0); // one value per each of the 4 LCGs, initialized to 0
377 for (it = m_ulBsrReceived.begin(); it != m_ulBsrReceived.end(); it++)
378 {
379 uint8_t lcid = it->first;
380 std::map<uint8_t, LcInfo>::iterator lcInfoMapIt;
381 lcInfoMapIt = m_lcInfoMap.find(lcid);
382 NS_ASSERT(lcInfoMapIt != m_lcInfoMap.end());
383 NS_ASSERT_MSG((lcid != 0) ||
384 (((*it).second.txQueueSize == 0) && ((*it).second.retxQueueSize == 0) &&
385 ((*it).second.statusPduSize == 0)),
386 "BSR should not be used for LCID 0");
387 uint8_t lcg = lcInfoMapIt->second.lcConfig.logicalChannelGroup;
388 queue.at(lcg) +=
389 ((*it).second.txQueueSize + (*it).second.retxQueueSize + (*it).second.statusPduSize);
390 }
391
392 // FF API says that all 4 LCGs are always present
397
398 // create the feedback to eNB
399 Ptr<BsrLteControlMessage> msg = Create<BsrLteControlMessage>();
400 msg->SetBsr(bsr);
402}
403
404void
406{
407 NS_LOG_FUNCTION(this);
408 // 3GPP 36.321 5.1.1
409 NS_ASSERT_MSG(m_rachConfigured, "RACH not configured");
410 // assume that there is no Random Access Preambles group B
413 bool contention = true;
414 SendRaPreamble(contention);
415}
416
417void
419{
420 NS_LOG_FUNCTION(this << (uint32_t)m_raPreambleId << contention);
421 // Since regular UL LteControlMessages need m_ulConfigured = true in
422 // order to be sent by the UE, the rach preamble needs to be sent
423 // with a dedicated primitive (not
424 // m_uePhySapProvider->SendLteControlMessage (msg)) so that it can
425 // bypass the m_ulConfigured flag. This is reasonable, since In fact
426 // the RACH preamble is sent on 6RB bandwidth so the uplink
427 // bandwidth does not need to be configured.
428 NS_ASSERT(m_subframeNo > 0); // sanity check for subframe starting at 1
431 NS_LOG_INFO(this << " sent preamble id " << (uint32_t)m_raPreambleId << ", RA-RNTI "
432 << (uint32_t)m_raRnti);
433 // 3GPP 36.321 5.1.4
434 Time raWindowBegin = MilliSeconds(3);
438 Simulator::Schedule(raWindowEnd, &LteUeMac::RaResponseTimeout, this, contention);
439}
440
441void
443{
444 NS_LOG_FUNCTION(this);
446}
447
448void
450{
451 NS_LOG_FUNCTION(this);
454 NS_LOG_INFO("got RAR for RAPID " << (uint32_t)m_raPreambleId
455 << ", setting T-C-RNTI = " << raResponse.m_rnti);
456 m_rnti = raResponse.m_rnti;
458 // in principle we should wait for contention resolution,
459 // but in the current LTE model when two or more identical
460 // preambles are sent no one is received, so there is no need
461 // for contention resolution
463 // trigger tx opportunity for Message 3 over LC 0
464 // this is needed since Message 3's UL GRANT is in the RAR, not in UL-DCIs
465 const uint8_t lc0Lcid = 0;
466 std::map<uint8_t, LcInfo>::iterator lc0InfoIt = m_lcInfoMap.find(lc0Lcid);
467 NS_ASSERT(lc0InfoIt != m_lcInfoMap.end());
468 std::map<uint8_t, LteMacSapProvider::ReportBufferStatusParameters>::iterator lc0BsrIt =
469 m_ulBsrReceived.find(lc0Lcid);
470 if ((lc0BsrIt != m_ulBsrReceived.end()) && (lc0BsrIt->second.txQueueSize > 0))
471 {
472 NS_ASSERT_MSG(raResponse.m_grant.m_tbSize > lc0BsrIt->second.txQueueSize,
473 "segmentation of Message 3 is not allowed");
474 // this function can be called only from primary carrier
475 if (m_componentCarrierId > 0)
476 {
477 NS_FATAL_ERROR("Function called on wrong componentCarrier");
478 }
480 txOpParams.bytes = raResponse.m_grant.m_tbSize;
481 txOpParams.layer = 0;
482 txOpParams.harqId = 0;
484 txOpParams.rnti = m_rnti;
485 txOpParams.lcid = lc0Lcid;
486 lc0InfoIt->second.macSapUser->NotifyTxOpportunity(txOpParams);
487 lc0BsrIt->second.txQueueSize = 0;
488 }
489}
490
491void
493{
494 NS_LOG_FUNCTION(this << contention);
496 // 3GPP 36.321 5.1.4
498 // fire RA response timeout trace
500 contention,
504 {
505 NS_LOG_INFO("RAR timeout, preambleTransMax reached => giving up");
507 }
508 else
509 {
510 NS_LOG_INFO("RAR timeout, re-send preamble");
511 if (contention)
512 {
514 }
515 else
516 {
517 SendRaPreamble(contention);
518 }
519 }
520}
521
522void
524{
525 NS_LOG_FUNCTION(this);
526 m_rachConfig = rc;
527 m_rachConfigured = true;
528}
529
530void
532{
533 NS_LOG_FUNCTION(this);
534
535 // 3GPP 36.321 5.1.1
536 NS_ASSERT_MSG(m_rachConfigured, "RACH not configured");
540}
541
542void
544{
545 NS_LOG_FUNCTION(this);
546 m_rnti = rnti;
547}
548
549void
551{
552 NS_LOG_FUNCTION(this);
553 m_imsi = imsi;
554}
555
556void
558 uint8_t preambleId,
559 uint8_t prachMask)
560{
561 NS_LOG_FUNCTION(this << rnti << (uint16_t)preambleId << (uint16_t)prachMask);
562 NS_ASSERT_MSG(prachMask == 0,
563 "requested PRACH MASK = " << (uint32_t)prachMask
564 << ", but only PRACH MASK = 0 is supported");
565 m_rnti = rnti;
566 m_raPreambleId = preambleId;
568 bool contention = false;
569 SendRaPreamble(contention);
570}
571
572void
573LteUeMac::DoAddLc(uint8_t lcId,
575 LteMacSapUser* msu)
576{
577 NS_LOG_FUNCTION(this << " lcId" << (uint32_t)lcId);
578 NS_ASSERT_MSG(m_lcInfoMap.find(lcId) == m_lcInfoMap.end(),
579 "cannot add channel because LCID " << (uint16_t)lcId << " is already present");
580
581 LcInfo lcInfo;
582 lcInfo.lcConfig = lcConfig;
583 lcInfo.macSapUser = msu;
584 m_lcInfoMap[lcId] = lcInfo;
585}
586
587void
589{
590 NS_LOG_FUNCTION(this << " lcId" << lcId);
591 NS_ASSERT_MSG(m_lcInfoMap.find(lcId) != m_lcInfoMap.end(), "could not find LCID " << lcId);
592 m_lcInfoMap.erase(lcId);
593 m_ulBsrReceived.erase(lcId); // empty BSR buffer for this lcId
594}
595
596void
598{
599 NS_LOG_FUNCTION(this);
600 std::map<uint8_t, LcInfo>::iterator it = m_lcInfoMap.begin();
601 while (it != m_lcInfoMap.end())
602 {
603 // don't delete CCCH)
604 if (it->first == 0)
605 {
606 ++it;
607 }
608 else
609 {
610 // note: use of postfix operator preserves validity of iterator
611 m_lcInfoMap.erase(it++);
612 }
613 }
614 // note: rnti will be assigned by the eNB using RA response message
615 m_rnti = 0;
617 m_rachConfigured = false;
618 m_freshUlBsr = false;
619 m_ulBsrReceived.clear();
620}
621
622void
624{
625 NS_LOG_FUNCTION(this);
627}
628
629void
631{
633 p->RemovePacketTag(tag);
634 if (tag.GetRnti() == m_rnti)
635 {
636 // packet is for the current user
637 std::map<uint8_t, LcInfo>::const_iterator it = m_lcInfoMap.find(tag.GetLcid());
638 if (it != m_lcInfoMap.end())
639 {
641 rxPduParams.p = p;
642 rxPduParams.rnti = m_rnti;
643 rxPduParams.lcid = tag.GetLcid();
644 it->second.macSapUser->ReceivePdu(rxPduParams);
645 }
646 else
647 {
648 NS_LOG_WARN("received packet with unknown lcid " << (uint32_t)tag.GetLcid());
649 }
650 }
651}
652
653void
655{
656 NS_LOG_FUNCTION(this);
657 if (msg->GetMessageType() == LteControlMessage::UL_DCI)
658 {
659 Ptr<UlDciLteControlMessage> msg2 = DynamicCast<UlDciLteControlMessage>(msg);
660 UlDciListElement_s dci = msg2->GetDci();
661 if (dci.m_ndi == 1)
662 {
663 // New transmission -> empty pkt buffer queue (for deleting eventual pkts not acked )
664 Ptr<PacketBurst> pb = CreateObject<PacketBurst>();
666 // Retrieve data from RLC
667 std::map<uint8_t, LteMacSapProvider::ReportBufferStatusParameters>::iterator itBsr;
668 uint16_t activeLcs = 0;
669 uint32_t statusPduMinSize = 0;
670 for (itBsr = m_ulBsrReceived.begin(); itBsr != m_ulBsrReceived.end(); itBsr++)
671 {
672 if (((*itBsr).second.statusPduSize > 0) || ((*itBsr).second.retxQueueSize > 0) ||
673 ((*itBsr).second.txQueueSize > 0))
674 {
675 activeLcs++;
676 if (((*itBsr).second.statusPduSize != 0) &&
677 ((*itBsr).second.statusPduSize < statusPduMinSize))
678 {
679 statusPduMinSize = (*itBsr).second.statusPduSize;
680 }
681 if (((*itBsr).second.statusPduSize != 0) && (statusPduMinSize == 0))
682 {
683 statusPduMinSize = (*itBsr).second.statusPduSize;
684 }
685 }
686 }
687 if (activeLcs == 0)
688 {
689 NS_LOG_ERROR(this << " No active flows for this UL-DCI");
690 return;
691 }
692 std::map<uint8_t, LcInfo>::iterator it;
693 uint32_t bytesPerActiveLc = dci.m_tbSize / activeLcs;
694 bool statusPduPriority = false;
695 if ((statusPduMinSize != 0) && (bytesPerActiveLc < statusPduMinSize))
696 {
697 // send only the status PDU which has highest priority
698 statusPduPriority = true;
699 NS_LOG_DEBUG(this << " Reduced resource -> send only Status, b ytes "
700 << statusPduMinSize);
701 if (dci.m_tbSize < statusPduMinSize)
702 {
703 NS_FATAL_ERROR("Insufficient Tx Opportunity for sending a status message");
704 }
705 }
706 NS_LOG_LOGIC(this << " UE " << m_rnti << ": UL-CQI notified TxOpportunity of "
707 << dci.m_tbSize << " => " << bytesPerActiveLc
708 << " bytes per active LC"
709 << " statusPduMinSize " << statusPduMinSize);
710
712
713 for (it = m_lcInfoMap.begin(); it != m_lcInfoMap.end(); it++)
714 {
715 itBsr = m_ulBsrReceived.find((*it).first);
716 NS_LOG_DEBUG(this << " Processing LC " << (uint32_t)(*it).first
717 << " bytesPerActiveLc " << bytesPerActiveLc);
718 if ((itBsr != m_ulBsrReceived.end()) &&
719 (((*itBsr).second.statusPduSize > 0) || ((*itBsr).second.retxQueueSize > 0) ||
720 ((*itBsr).second.txQueueSize > 0)))
721 {
722 if ((statusPduPriority) && ((*itBsr).second.statusPduSize == statusPduMinSize))
723 {
724 txOpParams.bytes = (*itBsr).second.statusPduSize;
725 txOpParams.layer = 0;
726 txOpParams.harqId = 0;
728 txOpParams.rnti = m_rnti;
729 txOpParams.lcid = (*it).first;
730 (*it).second.macSapUser->NotifyTxOpportunity(txOpParams);
731 NS_LOG_LOGIC(this << "\t" << bytesPerActiveLc << " send "
732 << (*itBsr).second.statusPduSize << " status bytes to LC "
733 << (uint32_t)(*it).first << " statusQueue "
734 << (*itBsr).second.statusPduSize << " retxQueue"
735 << (*itBsr).second.retxQueueSize << " txQueue"
736 << (*itBsr).second.txQueueSize);
737 (*itBsr).second.statusPduSize = 0;
738 break;
739 }
740 else
741 {
742 uint32_t bytesForThisLc = bytesPerActiveLc;
743 NS_LOG_LOGIC(this << "\t" << bytesPerActiveLc << " bytes to LC "
744 << (uint32_t)(*it).first << " statusQueue "
745 << (*itBsr).second.statusPduSize << " retxQueue"
746 << (*itBsr).second.retxQueueSize << " txQueue"
747 << (*itBsr).second.txQueueSize);
748 if (((*itBsr).second.statusPduSize > 0) &&
749 (bytesForThisLc > (*itBsr).second.statusPduSize))
750 {
751 txOpParams.bytes = (*itBsr).second.statusPduSize;
752 txOpParams.layer = 0;
753 txOpParams.harqId = 0;
755 txOpParams.rnti = m_rnti;
756 txOpParams.lcid = (*it).first;
757 (*it).second.macSapUser->NotifyTxOpportunity(txOpParams);
758 bytesForThisLc -= (*itBsr).second.statusPduSize;
759 NS_LOG_DEBUG(this << " serve STATUS " << (*itBsr).second.statusPduSize);
760 (*itBsr).second.statusPduSize = 0;
761 }
762 else
763 {
764 if ((*itBsr).second.statusPduSize > bytesForThisLc)
765 {
767 "Insufficient Tx Opportunity for sending a status message");
768 }
769 }
770
771 if ((bytesForThisLc > 7) // 7 is the min TxOpportunity useful for Rlc
772 && (((*itBsr).second.retxQueueSize > 0) ||
773 ((*itBsr).second.txQueueSize > 0)))
774 {
775 if ((*itBsr).second.retxQueueSize > 0)
776 {
777 NS_LOG_DEBUG(this << " serve retx DATA, bytes " << bytesForThisLc);
778 txOpParams.bytes = bytesForThisLc;
779 txOpParams.layer = 0;
780 txOpParams.harqId = 0;
782 txOpParams.rnti = m_rnti;
783 txOpParams.lcid = (*it).first;
784 (*it).second.macSapUser->NotifyTxOpportunity(txOpParams);
785 if ((*itBsr).second.retxQueueSize >= bytesForThisLc)
786 {
787 (*itBsr).second.retxQueueSize -= bytesForThisLc;
788 }
789 else
790 {
791 (*itBsr).second.retxQueueSize = 0;
792 }
793 }
794 else if ((*itBsr).second.txQueueSize > 0)
795 {
796 uint16_t lcid = (*it).first;
797 uint32_t rlcOverhead;
798 if (lcid == 1)
799 {
800 // for SRB1 (using RLC AM) it's better to
801 // overestimate RLC overhead rather than
802 // underestimate it and risk unneeded
803 // segmentation which increases delay
804 rlcOverhead = 4;
805 }
806 else
807 {
808 // minimum RLC overhead due to header
809 rlcOverhead = 2;
810 }
811 NS_LOG_DEBUG(this << " serve tx DATA, bytes " << bytesForThisLc
812 << ", RLC overhead " << rlcOverhead);
813 txOpParams.bytes = bytesForThisLc;
814 txOpParams.layer = 0;
815 txOpParams.harqId = 0;
817 txOpParams.rnti = m_rnti;
818 txOpParams.lcid = (*it).first;
819 (*it).second.macSapUser->NotifyTxOpportunity(txOpParams);
820 if ((*itBsr).second.txQueueSize >= bytesForThisLc - rlcOverhead)
821 {
822 (*itBsr).second.txQueueSize -= bytesForThisLc - rlcOverhead;
823 }
824 else
825 {
826 (*itBsr).second.txQueueSize = 0;
827 }
828 }
829 }
830 else
831 {
832 if (((*itBsr).second.retxQueueSize > 0) ||
833 ((*itBsr).second.txQueueSize > 0))
834 {
835 // resend BSR info for updating eNB peer MAC
836 m_freshUlBsr = true;
837 }
838 }
839 NS_LOG_LOGIC(this << "\t" << bytesPerActiveLc << "\t new queues "
840 << (uint32_t)(*it).first << " statusQueue "
841 << (*itBsr).second.statusPduSize << " retxQueue"
842 << (*itBsr).second.retxQueueSize << " txQueue"
843 << (*itBsr).second.txQueueSize);
844 }
845 }
846 }
847 }
848 else
849 {
850 // HARQ retransmission -> retrieve data from HARQ buffer
851 NS_LOG_DEBUG(this << " UE MAC RETX HARQ " << (uint16_t)m_harqProcessId);
853 for (std::list<Ptr<Packet>>::const_iterator j = pb->Begin(); j != pb->End(); ++j)
854 {
855 Ptr<Packet> pkt = (*j)->Copy();
857 }
859 }
860 }
861 else if (msg->GetMessageType() == LteControlMessage::RAR)
862 {
864 {
865 Ptr<RarLteControlMessage> rarMsg = DynamicCast<RarLteControlMessage>(msg);
866 uint16_t raRnti = rarMsg->GetRaRnti();
867 NS_LOG_LOGIC(this << "got RAR with RA-RNTI " << (uint32_t)raRnti << ", expecting "
868 << (uint32_t)m_raRnti);
869 if (raRnti == m_raRnti) // RAR corresponds to TX subframe of preamble
870 {
871 for (std::list<RarLteControlMessage::Rar>::const_iterator it =
872 rarMsg->RarListBegin();
873 it != rarMsg->RarListEnd();
874 ++it)
875 {
876 if (it->rapId == m_raPreambleId) // RAR is for me
877 {
878 RecvRaResponse(it->rarPayload);
882 }
883 }
884 }
885 }
886 }
887 else
888 {
889 NS_LOG_WARN(this << " LteControlMessage not recognized");
890 }
891}
892
893void
895{
896 NS_LOG_FUNCTION(this);
897
898 for (std::size_t i = 0; i < m_miUlHarqProcessesPacketTimer.size(); i++)
899 {
900 if (m_miUlHarqProcessesPacketTimer.at(i) == 0)
901 {
902 if (m_miUlHarqProcessesPacket.at(i)->GetSize() > 0)
903 {
904 // timer expired: drop packets in buffer for this process
905 NS_LOG_INFO(this << " HARQ Proc Id " << i << " packets buffer expired");
906 Ptr<PacketBurst> emptyPb = CreateObject<PacketBurst>();
907 m_miUlHarqProcessesPacket.at(i) = emptyPb;
908 }
909 }
910 else
911 {
913 }
914 }
915}
916
917void
919{
920 NS_LOG_FUNCTION(this);
921 m_frameNo = frameNo;
922 m_subframeNo = subframeNo;
924 if ((Simulator::Now() >= m_bsrLast + m_bsrPeriodicity) && (m_freshUlBsr == true))
925 {
926 if (m_componentCarrierId == 0)
927 {
928 // Send BSR through primary carrier
930 }
932 m_freshUlBsr = false;
933 }
935}
936
937int64_t
939{
940 NS_LOG_FUNCTION(this << stream);
942 return 1;
943}
944
945} // namespace ns3
static uint8_t BufferSize2BsrId(uint32_t val)
Convert Buffer size to BSR ID.
Definition: lte-common.cc:185
void Cancel()
This method is syntactic sugar for the ns3::Simulator::Cancel method.
Definition: event-id.cc:55
Service Access Point (SAP) offered by the MAC to the RLC See Femto Forum MAC Scheduler Interface Spec...
Definition: lte-mac-sap.h:36
Service Access Point (SAP) offered by the MAC to the RLC See Femto Forum MAC Scheduler Interface Spec...
Definition: lte-mac-sap.h:96
Tag used to define the RNTI and LC id for each MAC packet trasmitted.
uint16_t GetRnti() const
Get RNTI function.
uint8_t GetLcid() const
Get LCID function.
Service Access Point (SAP) offered by the UE MAC to the UE RRC.
Service Access Point (SAP) offered by the UE MAC to the UE RRC.
virtual void NotifyRandomAccessFailed()=0
Notify the RRC that the MAC Random Access procedure failed.
virtual void NotifyRandomAccessSuccessful()=0
Notify the RRC that the MAC Random Access procedure completed successfully.
virtual void SetTemporaryCellRnti(uint16_t rnti)=0
uint8_t m_raRnti
RA RNTI.
Definition: lte-ue-mac.h:291
std::vector< Ptr< PacketBurst > > m_miUlHarqProcessesPacket
Packets under transmission of the UL HARQ processes.
Definition: lte-ue-mac.h:275
LteUePhySapUser * m_uePhySapUser
UE Phy SAP user.
Definition: lte-ue-mac.h:263
uint8_t m_componentCarrierId
component carrier Id --> used to address sap
Definition: lte-ue-mac.h:245
void RaResponseTimeout(bool contention)
RA response timeout function.
Definition: lte-ue-mac.cc:492
LteUeCmacSapProvider::RachConfig m_rachConfig
RACH configuration.
Definition: lte-ue-mac.h:282
uint32_t m_frameNo
frame number
Definition: lte-ue-mac.h:289
void DoSubframeIndication(uint32_t frameNo, uint32_t subframeNo)
Forwarded from LteUePhySapUser: trigger the start from a new frame.
Definition: lte-ue-mac.cc:918
void SendReportBufferStatus()
Send report buffer status.
Definition: lte-ue-mac.cc:355
void DoReportBufferStatus(LteMacSapProvider::ReportBufferStatusParameters params)
Report buffers status function.
Definition: lte-ue-mac.cc:333
TracedCallback< uint64_t, bool, uint8_t, uint8_t > m_raResponseTimeoutTrace
The RaResponseTimeout trace source.
Definition: lte-ue-mac.h:299
LteUePhySapProvider * m_uePhySapProvider
UE Phy SAP provider.
Definition: lte-ue-mac.h:262
void SetLteUePhySapProvider(LteUePhySapProvider *s)
Set the PHY SAP Provider.
Definition: lte-ue-mac.cc:290
Time m_bsrPeriodicity
BSR periodicity.
Definition: lte-ue-mac.h:268
void RefreshHarqProcessesPacketBuffer()
Refresh HARQ processes packet buffer function.
Definition: lte-ue-mac.cc:894
uint16_t m_imsi
IMSI.
Definition: lte-ue-mac.h:279
EventId m_noRaResponseReceivedEvent
no RA response received event ID
Definition: lte-ue-mac.h:286
LteUeCmacSapProvider * m_cmacSapProvider
CMAC SAP provider.
Definition: lte-ue-mac.h:260
uint8_t m_preambleTransmissionCounter
preamble tranamission counter
Definition: lte-ue-mac.h:284
Ptr< UniformRandomVariable > m_raPreambleUniformVariable
RA preamble random variable.
Definition: lte-ue-mac.h:287
void SetComponentCarrierId(uint8_t index)
Set the component carried ID.
Definition: lte-ue-mac.cc:314
int64_t AssignStreams(int64_t stream)
Assign a fixed random variable stream number to the random variables used by this model.
Definition: lte-ue-mac.cc:938
void DoConfigureRach(LteUeCmacSapProvider::RachConfig rc)
Configure RACH function.
Definition: lte-ue-mac.cc:523
LteUePhySapUser * GetLteUePhySapUser()
Get the PHY SAP user.
Definition: lte-ue-mac.cc:284
friend class UeMemberLteUePhySapUser
allow UeMemberLteUePhySapUser class friend access
Definition: lte-ue-mac.h:48
bool m_rachConfigured
is RACH configured?
Definition: lte-ue-mac.h:281
void DoRemoveLc(uint8_t lcId)
Remove LC function.
Definition: lte-ue-mac.cc:588
void RecvRaResponse(BuildRarListElement_s raResponse)
Receive the RA response function.
Definition: lte-ue-mac.cc:449
void DoReceivePhyPdu(Ptr< Packet > p)
Receive Phy PDU function.
Definition: lte-ue-mac.cc:630
uint8_t m_raPreambleId
RA preamble ID.
Definition: lte-ue-mac.h:283
void DoNotifyConnectionSuccessful()
Notify MAC about the successful RRC connection establishment.
Definition: lte-ue-mac.cc:623
Time m_bsrLast
BSR last.
Definition: lte-ue-mac.h:269
friend class UeMemberLteUeCmacSapProvider
allow UeMemberLteUeCmacSapProvider class friend access
Definition: lte-ue-mac.h:44
std::vector< uint8_t > m_miUlHarqProcessesPacketTimer
timer for packet life in the buffer
Definition: lte-ue-mac.h:276
void DoReceiveLteControlMessage(Ptr< LteControlMessage > msg)
Receive LTE control message function.
Definition: lte-ue-mac.cc:654
uint16_t m_rnti
RNTI.
Definition: lte-ue-mac.h:278
static TypeId GetTypeId()
Get the type ID.
Definition: lte-ue-mac.cc:224
void DoTransmitPdu(LteMacSapProvider::TransmitPduParameters params)
Transmit PDU function.
Definition: lte-ue-mac.cc:320
uint32_t m_subframeNo
subframe number
Definition: lte-ue-mac.h:290
std::map< uint8_t, LteMacSapProvider::ReportBufferStatusParameters > m_ulBsrReceived
BSR received from RLC (the last one)
Definition: lte-ue-mac.h:266
void DoDispose() override
Destructor implementation.
Definition: lte-ue-mac.cc:273
void DoReset()
Reset function.
Definition: lte-ue-mac.cc:597
~LteUeMac() override
Definition: lte-ue-mac.cc:267
LteUeCmacSapUser * m_cmacSapUser
CMAC SAP user.
Definition: lte-ue-mac.h:259
bool m_freshUlBsr
true when a BSR has been received in the last TTI
Definition: lte-ue-mac.h:271
LteMacSapProvider * GetLteMacSapProvider()
Get the LTE MAC SAP provider.
Definition: lte-ue-mac.cc:296
void DoStartNonContentionBasedRandomAccessProcedure(uint16_t rnti, uint8_t rapId, uint8_t prachMask)
Start non contention based random access procedure function.
Definition: lte-ue-mac.cc:557
LteUeCmacSapProvider * GetLteUeCmacSapProvider()
Get the LTE CMAC SAP provider.
Definition: lte-ue-mac.cc:308
bool m_waitingForRaResponse
waiting for RA response
Definition: lte-ue-mac.h:292
void DoAddLc(uint8_t lcId, LteUeCmacSapProvider::LogicalChannelConfig lcConfig, LteMacSapUser *msu)
Add LC function.
Definition: lte-ue-mac.cc:573
uint8_t m_harqProcessId
HARQ process ID.
Definition: lte-ue-mac.h:273
friend class UeMemberLteMacSapProvider
allow UeMemberLteMacSapProvider class friend access
Definition: lte-ue-mac.h:46
LteMacSapProvider * m_macSapProvider
MAC SAP provider.
Definition: lte-ue-mac.h:257
void RandomlySelectAndSendRaPreamble()
Randomly select and send RA preamble function.
Definition: lte-ue-mac.cc:405
void DoStartContentionBasedRandomAccessProcedure()
Start contention based random access procedure function.
Definition: lte-ue-mac.cc:531
uint16_t m_backoffParameter
backoff parameter
Definition: lte-ue-mac.h:285
void StartWaitingForRaResponse()
Start waiting for RA response function.
Definition: lte-ue-mac.cc:442
void DoSetRnti(uint16_t rnti)
Set RNTI.
Definition: lte-ue-mac.cc:543
void DoSetImsi(uint64_t imsi)
Set IMSI.
Definition: lte-ue-mac.cc:550
void SendRaPreamble(bool contention)
Send RA preamble function.
Definition: lte-ue-mac.cc:418
void SetLteUeCmacSapUser(LteUeCmacSapUser *s)
Set the LTE UE CMAC SAP user.
Definition: lte-ue-mac.cc:302
std::map< uint8_t, LcInfo > m_lcInfoMap
logical channel info map
Definition: lte-ue-mac.h:255
Service Access Point (SAP) offered by the UE-PHY to the UE-MAC.
virtual void SendLteControlMessage(Ptr< LteControlMessage > msg)=0
Send SendLteControlMessage (PDCCH map, CQI feedbacks) using the ideal control channel.
virtual void SendRachPreamble(uint32_t prachId, uint32_t raRnti)=0
Send a preamble on the PRACH.
virtual void NotifyConnectionSuccessful()=0
Notify PHY about the successful RRC connection establishment.
virtual void SendMacPdu(Ptr< Packet > p)=0
Send the MAC PDU to the channel.
Service Access Point (SAP) offered by the PHY to the MAC.
A base class which provides memory management and object aggregation.
Definition: object.h:89
virtual void DoDispose()
Destructor implementation.
Definition: object.cc:353
bool RemovePacketTag(Tag &tag)
Remove a packet tag.
Definition: packet.cc:986
Ptr< Packet > Copy() const
performs a COW copy of the packet.
Definition: packet.cc:131
void AddPacketTag(const Tag &tag) const
Add a packet tag.
Definition: packet.cc:979
void SetStream(int64_t stream)
Specifies the stream number for the RngStream.
static EventId Schedule(const Time &delay, FUNC f, Ts &&... args)
Schedule an event to expire after delay.
Definition: simulator.h:568
static Time Now()
Return the current simulation virtual time.
Definition: simulator.cc:199
Simulation virtual time values and global simulation resolution.
Definition: nstime.h:105
a unique identifier for an interface.
Definition: type-id.h:60
TypeId SetParent(TypeId tid)
Set the parent TypeId.
Definition: type-id.cc:935
UeMemberLteMacSapProvider class.
Definition: lte-ue-mac.cc:140
LteUeMac * m_mac
the UE MAC
Definition: lte-ue-mac.cc:154
void TransmitPdu(TransmitPduParameters params) override
send an RLC PDU to the MAC for transmission.
Definition: lte-ue-mac.cc:163
void ReportBufferStatus(ReportBufferStatusParameters params) override
Report the RLC buffer status to the MAC.
Definition: lte-ue-mac.cc:169
UeMemberLteMacSapProvider(LteUeMac *mac)
Constructor.
Definition: lte-ue-mac.cc:157
UeMemberLteUeCmacSapProvider class.
Definition: lte-ue-mac.cc:49
void StartNonContentionBasedRandomAccessProcedure(uint16_t rnti, uint8_t preambleId, uint8_t prachMask) override
tell the MAC to start a non-contention-based random access procedure, e.g., as a consequence of hando...
Definition: lte-ue-mac.cc:95
LteUeMac * m_mac
the UE MAC
Definition: lte-ue-mac.cc:74
void SetImsi(uint64_t imsi) override
A method call by UE RRC to communicate the IMSI to the UE MAC.
Definition: lte-ue-mac.cc:133
void Reset() override
reset the MAC
Definition: lte-ue-mac.cc:121
void StartContentionBasedRandomAccessProcedure() override
tell the MAC to start a contention-based random access procedure, e.g., to perform RRC connection est...
Definition: lte-ue-mac.cc:89
void AddLc(uint8_t lcId, LteUeCmacSapProvider::LogicalChannelConfig lcConfig, LteMacSapUser *msu) override
add a new Logical Channel (LC)
Definition: lte-ue-mac.cc:109
void RemoveLc(uint8_t lcId) override
remove an existing LC
Definition: lte-ue-mac.cc:115
void SetRnti(uint16_t rnti) override
Definition: lte-ue-mac.cc:103
void ConfigureRach(RachConfig rc) override
Configure RACH function.
Definition: lte-ue-mac.cc:83
void NotifyConnectionSuccessful() override
Notify MAC about the successful RRC connection establishment.
Definition: lte-ue-mac.cc:127
UeMemberLteUeCmacSapProvider(LteUeMac *mac)
Constructor.
Definition: lte-ue-mac.cc:77
UeMemberLteUePhySapUser.
Definition: lte-ue-mac.cc:178
UeMemberLteUePhySapUser(LteUeMac *mac)
Constructor.
Definition: lte-ue-mac.cc:196
LteUeMac * m_mac
the UE MAC
Definition: lte-ue-mac.cc:193
void ReceiveLteControlMessage(Ptr< LteControlMessage > msg) override
Receive SendLteControlMessage (PDCCH map, CQI feedbacks) using the ideal control channel.
Definition: lte-ue-mac.cc:214
void ReceivePhyPdu(Ptr< Packet > p) override
Receive Phy Pdu funtion.
Definition: lte-ue-mac.cc:202
void SubframeIndication(uint32_t frameNo, uint32_t subframeNo) override
Trigger the start from a new frame (input from Phy layer)
Definition: lte-ue-mac.cc:208
uint32_t GetInteger(uint32_t min, uint32_t max)
Get the next random value, as an unsigned integer in the specified range .
#define NS_ASSERT(condition)
At runtime, in debugging builds, if this condition is not true, the program prints the source file,...
Definition: assert.h:66
#define NS_ASSERT_MSG(condition, message)
At runtime, in debugging builds, if this condition is not true, the program prints the message to out...
Definition: assert.h:86
#define NS_FATAL_ERROR(msg)
Report a fatal error with a message and terminate.
Definition: fatal-error.h:160
#define NS_LOG_ERROR(msg)
Use NS_LOG to output a message of level LOG_ERROR.
Definition: log.h:254
#define NS_LOG_COMPONENT_DEFINE(name)
Define a Log component with a specific name.
Definition: log.h:202
#define NS_LOG_DEBUG(msg)
Use NS_LOG to output a message of level LOG_DEBUG.
Definition: log.h:268
#define NS_LOG_LOGIC(msg)
Use NS_LOG to output a message of level LOG_LOGIC.
Definition: log.h:282
#define NS_LOG_FUNCTION(parameters)
If log level LOG_FUNCTION is enabled, this macro will output all input parameters separated by ",...
#define NS_LOG_WARN(msg)
Use NS_LOG to output a message of level LOG_WARN.
Definition: log.h:261
#define NS_LOG_INFO(msg)
Use NS_LOG to output a message of level LOG_INFO.
Definition: log.h:275
#define NS_OBJECT_ENSURE_REGISTERED(type)
Register an Object subclass with the TypeId system.
Definition: object-base.h:45
Time MilliSeconds(uint64_t value)
Construct a Time in the indicated unit.
Definition: nstime.h:1350
Ptr< const TraceSourceAccessor > MakeTraceSourceAccessor(T a)
Create a TraceSourceAccessor which will control access to the underlying trace source.
#define HARQ_PERIOD
Definition: lte-common.h:30
Every class exported by the ns3 library is enclosed in the ns3 namespace.
mac
Definition: third.py:85
#define list
See section 4.3.10 buildRARListElement.
Parameters for LteMacSapProvider::ReportBufferStatus.
Definition: lte-mac-sap.h:69
uint8_t lcid
the logical channel id corresponding to the sending RLC instance
Definition: lte-mac-sap.h:71
Parameters for LteMacSapProvider::TransmitPdu.
Definition: lte-mac-sap.h:45
uint16_t rnti
the C-RNTI identifying the UE
Definition: lte-mac-sap.h:47
uint8_t lcid
the logical channel id corresponding to the sending RLC instance
Definition: lte-mac-sap.h:48
Parameters for LteMacSapUser::ReceivePdu.
Definition: lte-mac-sap.h:166
Ptr< Packet > p
the RLC PDU to be received
Definition: lte-mac-sap.h:187
uint8_t lcid
the logical channel id
Definition: lte-mac-sap.h:189
uint16_t rnti
the C-RNTI identifying the UE
Definition: lte-mac-sap.h:188
Parameters for LteMacSapUser::NotifyTxOpportunity.
Definition: lte-mac-sap.h:105
uint16_t rnti
the C-RNTI identifying the UE
Definition: lte-mac-sap.h:141
uint32_t bytes
the number of bytes to transmit
Definition: lte-mac-sap.h:137
uint8_t componentCarrierId
the component carrier id
Definition: lte-mac-sap.h:140
uint8_t layer
the layer of transmission (MIMO)
Definition: lte-mac-sap.h:138
uint8_t lcid
the logical channel id
Definition: lte-mac-sap.h:142
uint8_t raResponseWindowSize
RA response window size.
uint8_t preambleTransMax
preamble transmit maximum
uint8_t numberOfRaPreambles
number of RA preambles
LcInfo structure.
Definition: lte-ue-mac.h:250
LteUeCmacSapProvider::LogicalChannelConfig lcConfig
logical channel config
Definition: lte-ue-mac.h:251
LteMacSapUser * macSapUser
MAC SAP user.
Definition: lte-ue-mac.h:252
See section 4.3.14 macCEListElement.
struct MacCeValue_u m_macCeValue
MAC CE value.
std::vector< uint8_t > m_bufferStatus
buffer status
See section 4.3.2 ulDciListElement.
uint16_t m_tbSize
size