1 /*******************************************************************************
2 ################################################################################
3 # Copyright (c) [2017-2019] [Radisys] #
5 # Licensed under the Apache License, Version 2.0 (the "License"); #
6 # you may not use this file except in compliance with the License. #
7 # You may obtain a copy of the License at #
9 # http://www.apache.org/licenses/LICENSE-2.0 #
11 # Unless required by applicable law or agreed to in writing, software #
12 # distributed under the License is distributed on an "AS IS" BASIS, #
13 # WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. #
14 # See the License for the specific language governing permissions and #
15 # limitations under the License. #
16 ################################################################################
17 *******************************************************************************/
19 /************************************************************************
25 Desc: C source code for rach handling functions
29 **********************************************************************/
32 @brief This file implements the rach handling.
34 #include "common_def.h"
40 #include "du_app_mac_inf.h"
41 #include "mac_sch_interface.h"
43 #include "sch_utils.h"
45 extern SchCb schCb[SCH_MAX_INST];
46 extern uint8_t puschDeltaTable[MAX_MU_PUSCH];
49 * @brief calculate ra-rnti function.
53 * Function : calculateRaRnti
55 * This function calculates ra-rnti
57 * @param[in] symbol index
58 * @param[in] slot index
59 * @param[in] frequency index
62 uint16_t calculateRaRnti(uint8_t symbolIdx, uint8_t slotIdx, uint8_t freqIdx)
65 uint8_t ulCarrierIdx = 0; /* configured to 0 */
66 raRnti = (1+symbolIdx+(14*slotIdx)+(14*80*freqIdx)+(14*80*8*ulCarrierIdx));
71 * @brief create raCb function.
75 * Function : createSchRaCb
77 * This function create raCb
80 * @param[in] shed instance
83 void createSchRaCb(uint16_t tcrnti, Inst schInst)
85 schCb[schInst].cells[schInst]->raCb[0].tcrnti = tcrnti;
89 * @brief resource allocation for msg3 PUSCH
93 * Function : schAllocMsg3Pusch
95 * This function handles msg3 PUSCH allocation
97 * @param[in] Inst schInst, SCH instance
98 * @param[in] slot, current slot
99 * @param[out] msg3StartRb
100 * @param[out] msg3NumRb
103 uint8_t schAllocMsg3Pusch(Inst schInst, uint16_t slot, uint16_t *msg3StartRb,
106 SchCellCb *cell = NULLP;
107 SchUlSlotInfo *schUlSlotInfo = NULLP;
109 uint8_t msg3SlotAlloc = 0;
112 uint8_t startSymb = 0;
119 cell = schCb[schInst].cells[schInst];
120 // puschMu = cell->cellCfg.puschMu;
121 delta = puschDeltaTable[puschMu];
122 k2 = cell->cellCfg.schInitialUlBwp.puschCommon.k2;
123 startSymb = cell->cellCfg.schInitialUlBwp.puschCommon.startSymbol;
124 symbLen = cell->cellCfg.schInitialUlBwp.puschCommon.lengthSymbol;
126 /* Slot allocation for msg3 based on 38.214 section 6.1.2.1 */
127 msg3SlotAlloc = slot + k2 + delta;
128 msg3SlotAlloc = msg3SlotAlloc % SCH_NUM_SLOTS;
130 startRb = PUSCH_START_RB;
132 /* formula used for calculation of rbSize, 38.214 section 6.1.4.2
133 * Ninfo = S.Nre.R.Qm.v
134 * Nre' = Nsc.NsymPdsch-NdmrsSymb-Noh
135 * Nre = min(156,Nre').nPrb */
136 numRb = 1; /* based on above calculation */
138 /* allocating 1 extra RB for now */
141 for(idx=startSymb; idx<symbLen; idx++)
143 cell->schUlSlotInfo[msg3SlotAlloc]->assignedPrb[idx] = startRb + numRb;
145 schUlSlotInfo = cell->schUlSlotInfo[msg3SlotAlloc];
147 SCH_ALLOC(schUlSlotInfo->schPuschInfo, sizeof(SchPuschInfo));
148 if(!schUlSlotInfo->schPuschInfo)
150 DU_LOG("SCH: Memory allocation failed in schAllocMsg3Pusch");
153 schUlSlotInfo->schPuschInfo->harqProcId = SCH_HARQ_PROC_ID;
154 schUlSlotInfo->schPuschInfo->resAllocType = SCH_ALLOC_TYPE_1;
155 schUlSlotInfo->schPuschInfo->fdAlloc.startPrb = startRb;
156 schUlSlotInfo->schPuschInfo->fdAlloc.numPrb = numRb;
157 schUlSlotInfo->schPuschInfo->tdAlloc.startSymb = startSymb;
158 schUlSlotInfo->schPuschInfo->tdAlloc.numSymb = symbLen;
159 schUlSlotInfo->schPuschInfo->tbInfo.mcs = 4;
160 schUlSlotInfo->schPuschInfo->tbInfo.ndi = 1; /* new transmission */
161 schUlSlotInfo->schPuschInfo->tbInfo.rv = 0;
162 schUlSlotInfo->schPuschInfo->tbInfo.tbSize = 24; /*Considering 2 PRBs */
163 schUlSlotInfo->schPuschInfo->dmrsMappingType = DMRS_MAP_TYPE_A; /* Setting Type-A */
164 schUlSlotInfo->schPuschInfo->nrOfDmrsSymbols = NUM_DMRS_SYMBOLS;
165 schUlSlotInfo->schPuschInfo->dmrsAddPos = DMRS_ADDITIONAL_POS;
167 *msg3StartRb = startRb;
176 * @brief process rach indication function.
180 * Function : schProcessRachInd
182 * This function process rach indication
184 * @param[in] rachInd parameters
185 * @param[in] shed instance
188 uint8_t schProcessRachInd(RachIndInfo *rachInd, Inst schInst)
190 SchCellCb *cell = schCb[schInst].cells[schInst];
191 RarInfo *rarInfo = NULLP;
193 uint16_t rarSlot = 0;
194 uint16_t msg3StartRb;
198 /* RAR will sent with a delay of RAR_DELAY */
199 rarSlot = (rachInd->timingInfo.slot+RAR_DELAY+PHY_DELTA)%SCH_NUM_SLOTS;
201 SchDlSlotInfo *schDlSlotInfo = cell->schDlSlotInfo[rarSlot]; /* RAR will sent in the next slot */
203 /* Allocate the rarInfo, this pointer will be checked at schProcessSlotInd function */
204 SCH_ALLOC(rarInfo, sizeof(RarInfo));
207 DU_LOG("\nMAC: Memory Allocation failed for rarInfo");
211 schDlSlotInfo->rarInfo = rarInfo;
213 /* calculate the ra-rnti value */
214 raRnti = calculateRaRnti(rachInd->symbolIdx,rachInd->slotIdx,rachInd->freqIdx);
216 /* create raCb at SCH */
217 createSchRaCb(rachInd->crnti,schInst);
219 /* allocate resources for msg3 */
220 ret = schAllocMsg3Pusch(schInst, rarSlot, &msg3StartRb, &msg3NumRb);
224 rarInfo->raRnti = raRnti;
225 rarInfo->tcrnti = rachInd->crnti;
226 rarInfo->RAPID = rachInd->preambleIdx;
227 rarInfo->ta = rachInd->timingAdv;
228 rarInfo->msg3FreqAlloc.startPrb = msg3StartRb;
229 rarInfo->msg3FreqAlloc.numPrb = msg3NumRb;
235 * @brief fill RAR info function.
239 * Function : calculateRaRnti
241 * This function fills pdcch and pdsch info for RAR
243 * @param[in] rar Allocation info
246 * @param[in] offset to pointA to determine freq alloc
249 uint8_t schFillRar(RarAlloc *rarAlloc, uint16_t raRnti, uint16_t pci, uint8_t offsetPointA)
252 uint8_t coreset0Idx = 0;
254 uint8_t firstSymbol = 0;
255 uint8_t numSymbols = 0;
257 uint8_t FreqDomainResource[6] = {0};
259 uint8_t numPdschSymbols = 12; /* considering pdsch region from 2 to 13 */
260 uint8_t mcs = 4; /* MCS fixed to 4 */
262 SchBwpDlCfg *initialBwp = &schCb[inst].cells[inst]->cellCfg.schInitialDlBwp;
264 PdcchCfg *pdcch = &rarAlloc->rarPdcchCfg;
265 PdschCfg *pdsch = &rarAlloc->rarPdschCfg;
266 BwpCfg *bwp = &rarAlloc->bwp;
268 coreset0Idx = initialBwp->pdcchCommon.commonSearchSpace.coresetId;
270 /* derive the sib1 coreset0 params from table 13-1 spec 38.213 */
271 numRbs = coresetIdxTable[coreset0Idx][1];
272 numSymbols = coresetIdxTable[coreset0Idx][2];
273 offset = coresetIdxTable[coreset0Idx][3];
275 /* calculate time domain parameters */
276 // note: since slot value is made sl1, RAR can be sent at all slots
277 uint16_t mask = 0x2000;
278 for(firstSymbol=0; firstSymbol<14;firstSymbol++)
280 if(initialBwp->pdcchCommon.commonSearchSpace.monitoringSymbol & mask)
286 /* calculate the PRBs */
287 schAllocFreqDomRscType0(((offsetPointA-offset)/6), (numRbs/6), FreqDomainResource);
290 bwp->freqAlloc.numPrb = initialBwp->bwp.freqAlloc.numPrb;
291 bwp->freqAlloc.startPrb = initialBwp->bwp.freqAlloc.startPrb;
292 bwp->subcarrierSpacing = initialBwp->bwp.scs;
293 bwp->cyclicPrefix = initialBwp->bwp.cyclicPrefix;
295 /* fill the PDCCH PDU */
296 pdcch->coreset0Cfg.startSymbolIndex = firstSymbol;
297 pdcch->coreset0Cfg.durationSymbols = numSymbols;
298 memcpy(pdcch->coreset0Cfg.freqDomainResource,FreqDomainResource,6);
299 pdcch->coreset0Cfg.cceRegMappingType = 1; /* coreset0 is always interleaved */
300 pdcch->coreset0Cfg.regBundleSize = 6; /* spec-38.211 sec 7.3.2.2 */
301 pdcch->coreset0Cfg.interleaverSize = 2; /* spec-38.211 sec 7.3.2.2 */
302 pdcch->coreset0Cfg.coreSetType = 0;
303 pdcch->coreset0Cfg.shiftIndex = pci;
304 pdcch->coreset0Cfg.precoderGranularity = 0; /* sameAsRegBundle */
306 pdcch->dci.rnti = raRnti; /* RA-RNTI */
307 pdcch->dci.scramblingId = pci;
308 pdcch->dci.scramblingRnti = 0;
309 pdcch->dci.cceIndex = 4; /* considering SIB1 is sent at cce 0-1-2-3 */
310 pdcch->dci.aggregLevel = 4;
311 pdcch->dci.beamPdcchInfo.numPrgs = 1;
312 pdcch->dci.beamPdcchInfo.prgSize = 1;
313 pdcch->dci.beamPdcchInfo.digBfInterfaces = 0;
314 pdcch->dci.beamPdcchInfo.prg[0].pmIdx = 0;
315 pdcch->dci.beamPdcchInfo.prg[0].beamIdx[0] = 0;
316 pdcch->dci.txPdcchPower.powerValue = 0;
317 pdcch->dci.txPdcchPower.powerControlOffsetSS = 0;
318 pdcch->dci.pdschCfg = pdsch;
320 /* fill the PDSCH PDU */
322 pdsch->pduBitmap = 0; /* PTRS and CBG params are excluded */
323 pdsch->rnti = raRnti; /* RA-RNTI */
325 pdsch->numCodewords = 1;
326 for(cwCount = 0; cwCount < pdsch->numCodewords; cwCount++)
328 pdsch->codeword[cwCount].targetCodeRate = 308;
329 pdsch->codeword[cwCount].qamModOrder = 2;
330 pdsch->codeword[cwCount].mcsIndex = mcs; /* mcs configured to 4 */
331 pdsch->codeword[cwCount].mcsTable = 0; /* notqam256 */
332 pdsch->codeword[cwCount].rvIndex = 0;
333 tbSize = schCalcTbSize(10); /* 8 bytes RAR and 2 bytes padding */
334 pdsch->codeword[cwCount].tbSize = tbSize;
336 pdsch->dataScramblingId = pci;
337 pdsch->numLayers = 1;
338 pdsch->transmissionScheme = 0;
340 pdsch->dmrs.dlDmrsSymbPos = 2;
341 pdsch->dmrs.dmrsConfigType = 0; /* type-1 */
342 pdsch->dmrs.dlDmrsScramblingId = pci;
343 pdsch->dmrs.scid = 0;
344 pdsch->dmrs.numDmrsCdmGrpsNoData = 1;
345 pdsch->dmrs.dmrsPorts = 0;
346 pdsch->dmrs.mappingType = DMRS_MAP_TYPE_A; /* Type-A */
347 pdsch->dmrs.nrOfDmrsSymbols = NUM_DMRS_SYMBOLS;
348 pdsch->dmrs.dmrsAddPos = DMRS_ADDITIONAL_POS;
349 pdsch->pdschFreqAlloc.resourceAllocType = 1; /* RAT type-1 RIV format */
350 pdsch->pdschFreqAlloc.freqAlloc.startPrb = offset + SCH_SSB_NUM_PRB; /* the RB numbering starts from coreset0, and PDSCH is always above SSB */
351 pdsch->pdschFreqAlloc.freqAlloc.numPrb = schCalcNumPrb(tbSize,mcs,numPdschSymbols);
352 pdsch->pdschFreqAlloc.vrbPrbMapping = 0; /* non-interleaved */
353 pdsch->pdschTimeAlloc.timeAlloc.startSymb = initialBwp->pdschCommon.startSymbol;
354 pdsch->pdschTimeAlloc.timeAlloc.numSymb = initialBwp->pdschCommon.lengthSymbol;
355 pdsch->beamPdschInfo.numPrgs = 1;
356 pdsch->beamPdschInfo.prgSize = 1;
357 pdsch->beamPdschInfo.digBfInterfaces = 0;
358 pdsch->beamPdschInfo.prg[0].pmIdx = 0;
359 pdsch->beamPdschInfo.prg[0].beamIdx[0] = 0;
360 pdsch->txPdschPower.powerControlOffset = 0;
361 pdsch->txPdschPower.powerControlOffsetSS = 0;
366 /**********************************************************************
368 **********************************************************************/