1c6d43980SLemover/*************************************************************************************** 2c6d43980SLemover* Copyright (c) 2020-2021 Institute of Computing Technology, Chinese Academy of Sciences 3f320e0f0SYinan Xu* Copyright (c) 2020-2021 Peng Cheng Laboratory 4c6d43980SLemover* 5c6d43980SLemover* XiangShan is licensed under Mulan PSL v2. 6c6d43980SLemover* You can use this software according to the terms and conditions of the Mulan PSL v2. 7c6d43980SLemover* You may obtain a copy of Mulan PSL v2 at: 8c6d43980SLemover* http://license.coscl.org.cn/MulanPSL2 9c6d43980SLemover* 10c6d43980SLemover* THIS SOFTWARE IS PROVIDED ON AN "AS IS" BASIS, WITHOUT WARRANTIES OF ANY KIND, 11c6d43980SLemover* EITHER EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO NON-INFRINGEMENT, 12c6d43980SLemover* MERCHANTABILITY OR FIT FOR A PARTICULAR PURPOSE. 13c6d43980SLemover* 14c6d43980SLemover* See the Mulan PSL v2 for more details. 15c6d43980SLemover***************************************************************************************/ 16c6d43980SLemover 175844fcf0SLinJiaweipackage xiangshan.backend.rename 185844fcf0SLinJiawei 192225d46eSJiawei Linimport chipsalliance.rocketchip.config.Parameters 205844fcf0SLinJiaweiimport chisel3._ 215844fcf0SLinJiaweiimport chisel3.util._ 225844fcf0SLinJiaweiimport xiangshan._ 237cef916fSYinan Xuimport utils._ 24a0db5a4bSYinan Xuimport xiangshan.backend.decode.{FusionDecodeInfo, Imm_I, Imm_LUI_LOAD, Imm_U} 259aca92b9SYinan Xuimport xiangshan.backend.rob.RobPtr 2670224bf6SYinan Xuimport xiangshan.backend.rename.freelist._ 27980c1bc3SWilliam Wangimport xiangshan.mem.mdp._ 2899b8dc2cSYinan Xu 291ca0e4f3SYinan Xuclass Rename(implicit p: Parameters) extends XSModule with HasPerfEvents { 305844fcf0SLinJiawei val io = IO(new Bundle() { 315844fcf0SLinJiawei val redirect = Flipped(ValidIO(new Redirect)) 329aca92b9SYinan Xu val robCommits = Flipped(new RobCommitIO) 337fa2c198SYinan Xu // from decode 349a2e6b8aSLinJiawei val in = Vec(RenameWidth, Flipped(DecoupledIO(new CfCtrl))) 35a0db5a4bSYinan Xu val fusionInfo = Vec(DecodeWidth - 1, Flipped(new FusionDecodeInfo)) 36980c1bc3SWilliam Wang // ssit read result 37980c1bc3SWilliam Wang val ssit = Flipped(Vec(RenameWidth, Output(new SSITEntry))) 38980c1bc3SWilliam Wang // waittable read result 39980c1bc3SWilliam Wang val waittable = Flipped(Vec(RenameWidth, Output(Bool()))) 407fa2c198SYinan Xu // to rename table 417fa2c198SYinan Xu val intReadPorts = Vec(RenameWidth, Vec(3, Input(UInt(PhyRegIdxWidth.W)))) 427fa2c198SYinan Xu val fpReadPorts = Vec(RenameWidth, Vec(4, Input(UInt(PhyRegIdxWidth.W)))) 437fa2c198SYinan Xu val intRenamePorts = Vec(RenameWidth, Output(new RatWritePort)) 447fa2c198SYinan Xu val fpRenamePorts = Vec(RenameWidth, Output(new RatWritePort)) 4557c4f8d6SLinJiawei // to dispatch1 469a2e6b8aSLinJiawei val out = Vec(RenameWidth, DecoupledIO(new MicroOp)) 475844fcf0SLinJiawei }) 48b034d3b9SLinJiawei 498b8e745dSYikeZhou // create free list and rat 50459d1caeSYinan Xu val intFreeList = Module(new MEFreeList(NRPhyRegs)) 51459d1caeSYinan Xu val intRefCounter = Module(new RefCounter(NRPhyRegs)) 52459d1caeSYinan Xu val fpFreeList = Module(new StdFreeList(NRPhyRegs - 32)) 538b8e745dSYikeZhou 549aca92b9SYinan Xu // decide if given instruction needs allocating a new physical register (CfCtrl: from decode; RobCommitInfo: from rob) 55b034d3b9SLinJiawei def needDestReg[T <: CfCtrl](fp: Boolean, x: T): Bool = { 56b034d3b9SLinJiawei {if(fp) x.ctrl.fpWen else x.ctrl.rfWen && (x.ctrl.ldest =/= 0.U)} 57b034d3b9SLinJiawei } 589aca92b9SYinan Xu def needDestRegCommit[T <: RobCommitInfo](fp: Boolean, x: T): Bool = { 59c3abb8b6SYinan Xu if(fp) x.fpWen else x.rfWen 60fe6452fcSYinan Xu } 618b8e745dSYikeZhou 62f4b2089aSYinan Xu // connect [redirect + walk] ports for __float point__ & __integer__ free list 635eb4af5bSYikeZhou Seq((fpFreeList, true), (intFreeList, false)).foreach{ case (fl, isFp) => 6470224bf6SYinan Xu fl.io.redirect := io.redirect.valid 6570224bf6SYinan Xu fl.io.walk := io.robCommits.isWalk 665eb4af5bSYikeZhou // when isWalk, use stepBack to restore head pointer of free list 675eb4af5bSYikeZhou // (if ME enabled, stepBack of intFreeList should be useless thus optimized out) 68c51eab43SYinan Xu fl.io.stepBack := PopCount(io.robCommits.walkValid.zip(io.robCommits.info).map{case (v, i) => v && needDestRegCommit(isFp, i)}) 694efb89cbSYikeZhou } 705eb4af5bSYikeZhou // walk has higher priority than allocation and thus we don't use isWalk here 715eb4af5bSYikeZhou // only when both fp and int free list and dispatch1 has enough space can we do allocation 7270224bf6SYinan Xu intFreeList.io.doAllocate := fpFreeList.io.canAllocate && io.out(0).ready 7370224bf6SYinan Xu fpFreeList.io.doAllocate := intFreeList.io.canAllocate && io.out(0).ready 745eb4af5bSYikeZhou 755eb4af5bSYikeZhou // dispatch1 ready ++ float point free list ready ++ int free list ready ++ not walk 7670224bf6SYinan Xu val canOut = io.out(0).ready && fpFreeList.io.canAllocate && intFreeList.io.canAllocate && !io.robCommits.isWalk 775eb4af5bSYikeZhou 78b034d3b9SLinJiawei 799aca92b9SYinan Xu // speculatively assign the instruction with an robIdx 809aca92b9SYinan Xu val validCount = PopCount(io.in.map(_.valid)) // number of instructions waiting to enter rob (from decode) 819aca92b9SYinan Xu val robIdxHead = RegInit(0.U.asTypeOf(new RobPtr)) 828f77f081SYinan Xu val lastCycleMisprediction = RegNext(io.redirect.valid && !io.redirect.bits.flushItself()) 83f4b2089aSYinan Xu val robIdxHeadNext = Mux(io.redirect.valid, io.redirect.bits.robIdx, // redirect: move ptr to given rob index 849aca92b9SYinan Xu Mux(lastCycleMisprediction, robIdxHead + 1.U, // mis-predict: not flush robIdx itself 859aca92b9SYinan Xu Mux(canOut, robIdxHead + validCount, // instructions successfully entered next stage: increase robIdx 86f4b2089aSYinan Xu /* default */ robIdxHead))) // no instructions passed by this cycle: stick to old value 879aca92b9SYinan Xu robIdxHead := robIdxHeadNext 88588ceab5SYinan Xu 8900ad41d0SYinan Xu /** 9000ad41d0SYinan Xu * Rename: allocate free physical register and update rename table 9100ad41d0SYinan Xu */ 92b034d3b9SLinJiawei val uops = Wire(Vec(RenameWidth, new MicroOp)) 93b034d3b9SLinJiawei uops.foreach( uop => { 9420e31bd1SYinan Xu uop.srcState(0) := DontCare 9520e31bd1SYinan Xu uop.srcState(1) := DontCare 9620e31bd1SYinan Xu uop.srcState(2) := DontCare 979aca92b9SYinan Xu uop.robIdx := DontCare 987cef916fSYinan Xu uop.debugInfo := DontCare 99bc86598fSWilliam Wang uop.lqIdx := DontCare 100bc86598fSWilliam Wang uop.sqIdx := DontCare 101b034d3b9SLinJiawei }) 102b034d3b9SLinJiawei 10399b8dc2cSYinan Xu val needFpDest = Wire(Vec(RenameWidth, Bool())) 10499b8dc2cSYinan Xu val needIntDest = Wire(Vec(RenameWidth, Bool())) 105b424051cSYinan Xu val hasValid = Cat(io.in.map(_.valid)).orR 1068b8e745dSYikeZhou 1078b8e745dSYikeZhou val isMove = io.in.map(_.bits.ctrl.isMove) 1088b8e745dSYikeZhou 1098b8e745dSYikeZhou val intSpecWen = Wire(Vec(RenameWidth, Bool())) 1108b8e745dSYikeZhou val fpSpecWen = Wire(Vec(RenameWidth, Bool())) 1118b8e745dSYikeZhou 1128b8e745dSYikeZhou // uop calculation 113b034d3b9SLinJiawei for (i <- 0 until RenameWidth) { 114b034d3b9SLinJiawei uops(i).cf := io.in(i).bits.cf 115b034d3b9SLinJiawei uops(i).ctrl := io.in(i).bits.ctrl 116b034d3b9SLinJiawei 117980c1bc3SWilliam Wang // update cf according to ssit result 118980c1bc3SWilliam Wang uops(i).cf.storeSetHit := io.ssit(i).valid 119980c1bc3SWilliam Wang uops(i).cf.loadWaitStrict := io.ssit(i).strict && io.ssit(i).valid 120980c1bc3SWilliam Wang uops(i).cf.ssid := io.ssit(i).ssid 121980c1bc3SWilliam Wang 122980c1bc3SWilliam Wang // update cf according to waittable result 123980c1bc3SWilliam Wang uops(i).cf.loadWaitBit := io.waittable(i) 124980c1bc3SWilliam Wang 125b034d3b9SLinJiawei // alloc a new phy reg 1260febc381SYinan Xu needFpDest(i) := io.in(i).valid && needDestReg(fp = true, io.in(i).bits) 1270febc381SYinan Xu needIntDest(i) := io.in(i).valid && needDestReg(fp = false, io.in(i).bits) 12870224bf6SYinan Xu fpFreeList.io.allocateReq(i) := needFpDest(i) 12970224bf6SYinan Xu intFreeList.io.allocateReq(i) := needIntDest(i) && !isMove(i) 1302438f9ebSYinan Xu 1318b8e745dSYikeZhou // no valid instruction from decode stage || all resources (dispatch1 + both free lists) ready 132b424051cSYinan Xu io.in(i).ready := !hasValid || canOut 13358e06390SLinJiawei 1349aca92b9SYinan Xu uops(i).robIdx := robIdxHead + PopCount(io.in.take(i).map(_.valid)) 135588ceab5SYinan Xu 136a0db5a4bSYinan Xu uops(i).psrc(0) := Mux(uops(i).ctrl.srcType(0) === SrcType.reg, io.intReadPorts(i)(0), io.fpReadPorts(i)(0)) 137a0db5a4bSYinan Xu uops(i).psrc(1) := Mux(uops(i).ctrl.srcType(1) === SrcType.reg, io.intReadPorts(i)(1), io.fpReadPorts(i)(1)) 138a0db5a4bSYinan Xu // int psrc2 should be bypassed from next instruction if it is fused 139a0db5a4bSYinan Xu if (i < RenameWidth - 1) { 140a0db5a4bSYinan Xu when (io.fusionInfo(i).rs2FromRs2 || io.fusionInfo(i).rs2FromRs1) { 141a0db5a4bSYinan Xu uops(i).psrc(1) := Mux(io.fusionInfo(i).rs2FromRs2, io.intReadPorts(i + 1)(1), io.intReadPorts(i + 1)(0)) 142a0db5a4bSYinan Xu }.elsewhen(io.fusionInfo(i).rs2FromZero) { 143a0db5a4bSYinan Xu uops(i).psrc(1) := 0.U 144a0db5a4bSYinan Xu } 145a0db5a4bSYinan Xu } 146a0db5a4bSYinan Xu uops(i).psrc(2) := io.fpReadPorts(i)(2) 147a0db5a4bSYinan Xu uops(i).old_pdest := Mux(uops(i).ctrl.rfWen, io.intReadPorts(i).last, io.fpReadPorts(i).last) 14870224bf6SYinan Xu uops(i).eliminatedMove := isMove(i) 1498b8e745dSYikeZhou 1508b8e745dSYikeZhou // update pdest 15170224bf6SYinan Xu uops(i).pdest := Mux(needIntDest(i), intFreeList.io.allocatePhyReg(i), // normal int inst 15270224bf6SYinan Xu // normal fp inst 15370224bf6SYinan Xu Mux(needFpDest(i), fpFreeList.io.allocatePhyReg(i), 15470224bf6SYinan Xu /* default */0.U)) 1558b8e745dSYikeZhou 156ebb8ebf8SYinan Xu // Assign performance counters 157ebb8ebf8SYinan Xu uops(i).debugInfo.renameTime := GTimer() 158ebb8ebf8SYinan Xu 15970224bf6SYinan Xu io.out(i).valid := io.in(i).valid && intFreeList.io.canAllocate && fpFreeList.io.canAllocate && !io.robCommits.isWalk 160ebb8ebf8SYinan Xu io.out(i).bits := uops(i) 161f025d715SYinan Xu // dirty code for fence. The lsrc is passed by imm. 162a020ce37SYinan Xu when (io.out(i).bits.ctrl.fuType === FuType.fence) { 163a020ce37SYinan Xu io.out(i).bits.ctrl.imm := Cat(io.in(i).bits.ctrl.lsrc(1), io.in(i).bits.ctrl.lsrc(0)) 164a020ce37SYinan Xu } 165f025d715SYinan Xu // dirty code for SoftPrefetch (prefetch.r/prefetch.w) 166f025d715SYinan Xu when (io.in(i).bits.ctrl.isSoftPrefetch) { 167f025d715SYinan Xu io.out(i).bits.ctrl.fuType := FuType.ldu 168f025d715SYinan Xu io.out(i).bits.ctrl.fuOpType := Mux(io.in(i).bits.ctrl.lsrc(1) === 1.U, LSUOpType.prefetch_r, LSUOpType.prefetch_w) 169f025d715SYinan Xu io.out(i).bits.ctrl.selImm := SelImm.IMM_S 170f025d715SYinan Xu io.out(i).bits.ctrl.imm := Cat(io.in(i).bits.ctrl.imm(io.in(i).bits.ctrl.imm.getWidth - 1, 5), 0.U(5.W)) 171f025d715SYinan Xu } 172ebb8ebf8SYinan Xu 1738b8e745dSYikeZhou // write speculative rename table 17439d3280eSYikeZhou // we update rat later inside commit code 17570224bf6SYinan Xu intSpecWen(i) := needIntDest(i) && intFreeList.io.canAllocate && intFreeList.io.doAllocate && !io.robCommits.isWalk && !io.redirect.valid 17670224bf6SYinan Xu fpSpecWen(i) := needFpDest(i) && fpFreeList.io.canAllocate && fpFreeList.io.doAllocate && !io.robCommits.isWalk && !io.redirect.valid 17770224bf6SYinan Xu 17870224bf6SYinan Xu intRefCounter.io.allocate(i).valid := intSpecWen(i) 17970224bf6SYinan Xu intRefCounter.io.allocate(i).bits := io.out(i).bits.pdest 180b034d3b9SLinJiawei } 181b034d3b9SLinJiawei 18270224bf6SYinan Xu /** 18370224bf6SYinan Xu * How to set psrc: 18470224bf6SYinan Xu * - bypass the pdest to psrc if previous instructions write to the same ldest as lsrc 18570224bf6SYinan Xu * - default: psrc from RAT 18670224bf6SYinan Xu * How to set pdest: 18770224bf6SYinan Xu * - Mux(isMove, psrc, pdest_from_freelist). 18870224bf6SYinan Xu * 18970224bf6SYinan Xu * The critical path of rename lies here: 19070224bf6SYinan Xu * When move elimination is enabled, we need to update the rat with psrc. 19170224bf6SYinan Xu * However, psrc maybe comes from previous instructions' pdest, which comes from freelist. 19270224bf6SYinan Xu * 19370224bf6SYinan Xu * If we expand these logic for pdest(N): 19470224bf6SYinan Xu * pdest(N) = Mux(isMove(N), psrc(N), freelist_out(N)) 19570224bf6SYinan Xu * = Mux(isMove(N), Mux(bypass(N, N - 1), pdest(N - 1), 19670224bf6SYinan Xu * Mux(bypass(N, N - 2), pdest(N - 2), 19770224bf6SYinan Xu * ... 19870224bf6SYinan Xu * Mux(bypass(N, 0), pdest(0), 19970224bf6SYinan Xu * rat_out(N))...)), 20070224bf6SYinan Xu * freelist_out(N)) 20170224bf6SYinan Xu */ 20270224bf6SYinan Xu // a simple functional model for now 20370224bf6SYinan Xu io.out(0).bits.pdest := Mux(isMove(0), uops(0).psrc.head, uops(0).pdest) 20470224bf6SYinan Xu val bypassCond = Wire(Vec(4, MixedVec(List.tabulate(RenameWidth-1)(i => UInt((i+1).W))))) 20599b8dc2cSYinan Xu for (i <- 1 until RenameWidth) { 20670224bf6SYinan Xu val fpCond = io.in(i).bits.ctrl.srcType.map(_ === SrcType.fp) :+ needFpDest(i) 20770224bf6SYinan Xu val intCond = io.in(i).bits.ctrl.srcType.map(_ === SrcType.reg) :+ needIntDest(i) 20870224bf6SYinan Xu val target = io.in(i).bits.ctrl.lsrc :+ io.in(i).bits.ctrl.ldest 20970224bf6SYinan Xu for ((((cond1, cond2), t), j) <- fpCond.zip(intCond).zip(target).zipWithIndex) { 21070224bf6SYinan Xu val destToSrc = io.in.take(i).zipWithIndex.map { case (in, j) => 21170224bf6SYinan Xu val indexMatch = in.bits.ctrl.ldest === t 21270224bf6SYinan Xu val writeMatch = cond2 && needIntDest(j) || cond1 && needFpDest(j) 21370224bf6SYinan Xu indexMatch && writeMatch 21470224bf6SYinan Xu } 21570224bf6SYinan Xu bypassCond(j)(i - 1) := VecInit(destToSrc).asUInt 21670224bf6SYinan Xu } 21770224bf6SYinan Xu io.out(i).bits.psrc(0) := io.out.take(i).map(_.bits.pdest).zip(bypassCond(0)(i-1).asBools).foldLeft(uops(i).psrc(0)) { 21870224bf6SYinan Xu (z, next) => Mux(next._2, next._1, z) 21970224bf6SYinan Xu } 22070224bf6SYinan Xu io.out(i).bits.psrc(1) := io.out.take(i).map(_.bits.pdest).zip(bypassCond(1)(i-1).asBools).foldLeft(uops(i).psrc(1)) { 22170224bf6SYinan Xu (z, next) => Mux(next._2, next._1, z) 22270224bf6SYinan Xu } 22370224bf6SYinan Xu io.out(i).bits.psrc(2) := io.out.take(i).map(_.bits.pdest).zip(bypassCond(2)(i-1).asBools).foldLeft(uops(i).psrc(2)) { 22470224bf6SYinan Xu (z, next) => Mux(next._2, next._1, z) 22570224bf6SYinan Xu } 22670224bf6SYinan Xu io.out(i).bits.old_pdest := io.out.take(i).map(_.bits.pdest).zip(bypassCond(3)(i-1).asBools).foldLeft(uops(i).old_pdest) { 22770224bf6SYinan Xu (z, next) => Mux(next._2, next._1, z) 22870224bf6SYinan Xu } 22970224bf6SYinan Xu io.out(i).bits.pdest := Mux(isMove(i), io.out(i).bits.psrc(0), uops(i).pdest) 230fd7603d9SYinan Xu 231fd7603d9SYinan Xu // For fused-lui-load, load.src(0) is replaced by the imm. 232fd7603d9SYinan Xu val last_is_lui = io.in(i - 1).bits.ctrl.selImm === SelImm.IMM_U && io.in(i - 1).bits.ctrl.srcType(0) =/= SrcType.pc 233f025d715SYinan Xu val this_is_load = io.in(i).bits.ctrl.fuType === FuType.ldu 23489c0fb0aSYinan Xu val lui_to_load = io.in(i - 1).valid && io.in(i - 1).bits.ctrl.ldest === io.in(i).bits.ctrl.lsrc(0) 235fd7603d9SYinan Xu val fused_lui_load = last_is_lui && this_is_load && lui_to_load 236fd7603d9SYinan Xu when (fused_lui_load) { 237fd7603d9SYinan Xu // The first LOAD operand (base address) is replaced by LUI-imm and stored in {psrc, imm} 238fd7603d9SYinan Xu val lui_imm = io.in(i - 1).bits.ctrl.imm 239fd7603d9SYinan Xu val ld_imm = io.in(i).bits.ctrl.imm 240fd7603d9SYinan Xu io.out(i).bits.ctrl.srcType(0) := SrcType.imm 241fd7603d9SYinan Xu io.out(i).bits.ctrl.imm := Imm_LUI_LOAD().immFromLuiLoad(lui_imm, ld_imm) 242fd7603d9SYinan Xu val psrcWidth = uops(i).psrc.head.getWidth 243fd7603d9SYinan Xu val lui_imm_in_imm = uops(i).ctrl.imm.getWidth - Imm_I().len 244fd7603d9SYinan Xu val left_lui_imm = Imm_U().len - lui_imm_in_imm 245fd7603d9SYinan Xu require(2 * psrcWidth >= left_lui_imm, "cannot fused lui and load with psrc") 246fd7603d9SYinan Xu io.out(i).bits.psrc(0) := lui_imm(lui_imm_in_imm + psrcWidth - 1, lui_imm_in_imm) 247fd7603d9SYinan Xu io.out(i).bits.psrc(1) := lui_imm(lui_imm.getWidth - 1, lui_imm_in_imm + psrcWidth) 248fd7603d9SYinan Xu } 249fd7603d9SYinan Xu 250b034d3b9SLinJiawei } 25100ad41d0SYinan Xu 25200ad41d0SYinan Xu /** 25300ad41d0SYinan Xu * Instructions commit: update freelist and rename table 25400ad41d0SYinan Xu */ 25500ad41d0SYinan Xu for (i <- 0 until CommitWidth) { 256*6474c47fSYinan Xu val commitValid = io.robCommits.isCommit && io.robCommits.commitValid(i) 257*6474c47fSYinan Xu val walkValid = io.robCommits.isWalk && io.robCommits.walkValid(i) 25800ad41d0SYinan Xu 2597fa2c198SYinan Xu Seq((io.intRenamePorts, false), (io.fpRenamePorts, true)) foreach { case (rat, fp) => 2608b8e745dSYikeZhou /* 2618b8e745dSYikeZhou I. RAT Update 2628b8e745dSYikeZhou */ 2638b8e745dSYikeZhou 2648b8e745dSYikeZhou // walk back write - restore spec state : ldest => old_pdest 2658b8e745dSYikeZhou if (fp && i < RenameWidth) { 2667fa2c198SYinan Xu // When redirect happens (mis-prediction), don't update the rename table 26770224bf6SYinan Xu rat(i).wen := fpSpecWen(i) 2687fa2c198SYinan Xu rat(i).addr := uops(i).ctrl.ldest 26970224bf6SYinan Xu rat(i).data := fpFreeList.io.allocatePhyReg(i) 2708b8e745dSYikeZhou } else if (!fp && i < RenameWidth) { 27170224bf6SYinan Xu rat(i).wen := intSpecWen(i) 2727fa2c198SYinan Xu rat(i).addr := uops(i).ctrl.ldest 27370224bf6SYinan Xu rat(i).data := io.out(i).bits.pdest 27439d3280eSYikeZhou } 2758b8e745dSYikeZhou 2768b8e745dSYikeZhou /* 2778b8e745dSYikeZhou II. Free List Update 2788b8e745dSYikeZhou */ 2798b8e745dSYikeZhou if (fp) { // Float Point free list 280*6474c47fSYinan Xu fpFreeList.io.freeReq(i) := commitValid && needDestRegCommit(fp, io.robCommits.info(i)) 28170224bf6SYinan Xu fpFreeList.io.freePhyReg(i) := io.robCommits.info(i).old_pdest 2827fa2c198SYinan Xu } else { // Integer free list 28370224bf6SYinan Xu intFreeList.io.freeReq(i) := intRefCounter.io.freeRegs(i).valid 28470224bf6SYinan Xu intFreeList.io.freePhyReg(i) := intRefCounter.io.freeRegs(i).bits 28500ad41d0SYinan Xu } 28600ad41d0SYinan Xu } 287*6474c47fSYinan Xu 288*6474c47fSYinan Xu intRefCounter.io.deallocate(i).valid := (commitValid || walkValid) && needDestRegCommit(false, io.robCommits.info(i)) 28970224bf6SYinan Xu intRefCounter.io.deallocate(i).bits := Mux(io.robCommits.isWalk, io.robCommits.info(i).pdest, io.robCommits.info(i).old_pdest) 2908b8e745dSYikeZhou } 2918b8e745dSYikeZhou 2928b8e745dSYikeZhou /* 29370224bf6SYinan Xu Debug and performance counters 2948b8e745dSYikeZhou */ 2958b8e745dSYikeZhou def printRenameInfo(in: DecoupledIO[CfCtrl], out: DecoupledIO[MicroOp]) = { 29670224bf6SYinan Xu XSInfo(out.fire, p"pc:${Hexadecimal(in.bits.cf.pc)} in(${in.valid},${in.ready}) " + 2978b8e745dSYikeZhou p"lsrc(0):${in.bits.ctrl.lsrc(0)} -> psrc(0):${out.bits.psrc(0)} " + 2988b8e745dSYikeZhou p"lsrc(1):${in.bits.ctrl.lsrc(1)} -> psrc(1):${out.bits.psrc(1)} " + 2998b8e745dSYikeZhou p"lsrc(2):${in.bits.ctrl.lsrc(2)} -> psrc(2):${out.bits.psrc(2)} " + 3008b8e745dSYikeZhou p"ldest:${in.bits.ctrl.ldest} -> pdest:${out.bits.pdest} " + 30170224bf6SYinan Xu p"old_pdest:${out.bits.old_pdest}\n" 3028b8e745dSYikeZhou ) 3038b8e745dSYikeZhou } 3048b8e745dSYikeZhou 3058b8e745dSYikeZhou for((x,y) <- io.in.zip(io.out)){ 3068b8e745dSYikeZhou printRenameInfo(x, y) 3078b8e745dSYikeZhou } 3088b8e745dSYikeZhou 3099aca92b9SYinan Xu XSDebug(io.robCommits.isWalk, p"Walk Recovery Enabled\n") 310*6474c47fSYinan Xu XSDebug(io.robCommits.isWalk, p"validVec:${Binary(io.robCommits.walkValid.asUInt)}\n") 3118b8e745dSYikeZhou for (i <- 0 until CommitWidth) { 3129aca92b9SYinan Xu val info = io.robCommits.info(i) 313*6474c47fSYinan Xu XSDebug(io.robCommits.isWalk && io.robCommits.walkValid(i), p"[#$i walk info] pc:${Hexadecimal(info.pc)} " + 314cbe9a847SYinan Xu p"ldest:${info.ldest} rfWen:${info.rfWen} fpWen:${info.fpWen} " + 3158b8e745dSYikeZhou p"pdest:${info.pdest} old_pdest:${info.old_pdest}\n") 3168b8e745dSYikeZhou } 3178b8e745dSYikeZhou 3188b8e745dSYikeZhou XSDebug(p"inValidVec: ${Binary(Cat(io.in.map(_.valid)))}\n") 3198b8e745dSYikeZhou 320408a32b7SAllen XSPerfAccumulate("in", Mux(RegNext(io.in(0).ready), PopCount(io.in.map(_.valid)), 0.U)) 321408a32b7SAllen XSPerfAccumulate("utilization", PopCount(io.in.map(_.valid))) 322408a32b7SAllen XSPerfAccumulate("waitInstr", PopCount((0 until RenameWidth).map(i => io.in(i).valid && !io.in(i).ready))) 32370224bf6SYinan Xu XSPerfAccumulate("stall_cycle_dispatch", hasValid && !io.out(0).ready && fpFreeList.io.canAllocate && intFreeList.io.canAllocate && !io.robCommits.isWalk) 32470224bf6SYinan Xu XSPerfAccumulate("stall_cycle_fp", hasValid && io.out(0).ready && !fpFreeList.io.canAllocate && intFreeList.io.canAllocate && !io.robCommits.isWalk) 32570224bf6SYinan Xu XSPerfAccumulate("stall_cycle_int", hasValid && io.out(0).ready && fpFreeList.io.canAllocate && !intFreeList.io.canAllocate && !io.robCommits.isWalk) 32670224bf6SYinan Xu XSPerfAccumulate("stall_cycle_walk", hasValid && io.out(0).ready && fpFreeList.io.canAllocate && intFreeList.io.canAllocate && io.robCommits.isWalk) 3275eb4af5bSYikeZhou 328f025d715SYinan Xu XSPerfAccumulate("move_instr_count", PopCount(io.out.map(out => out.fire && out.bits.ctrl.isMove))) 329f025d715SYinan Xu val is_fused_lui_load = io.out.map(o => o.fire && o.bits.ctrl.fuType === FuType.ldu && o.bits.ctrl.srcType(0) === SrcType.imm) 330fd7603d9SYinan Xu XSPerfAccumulate("fused_lui_load_instr_count", PopCount(is_fused_lui_load)) 331cd365d4cSrvcoresjw 332cd365d4cSrvcoresjw 3331ca0e4f3SYinan Xu val renamePerf = Seq( 334cd365d4cSrvcoresjw ("rename_in ", PopCount(io.in.map(_.valid & io.in(0).ready )) ), 335cd365d4cSrvcoresjw ("rename_waitinstr ", PopCount((0 until RenameWidth).map(i => io.in(i).valid && !io.in(i).ready)) ), 336cd365d4cSrvcoresjw ("rename_stall_cycle_dispatch", hasValid && !io.out(0).ready && fpFreeList.io.canAllocate && intFreeList.io.canAllocate && !io.robCommits.isWalk), 337cd365d4cSrvcoresjw ("rename_stall_cycle_fp ", hasValid && io.out(0).ready && !fpFreeList.io.canAllocate && intFreeList.io.canAllocate && !io.robCommits.isWalk), 338cd365d4cSrvcoresjw ("rename_stall_cycle_int ", hasValid && io.out(0).ready && fpFreeList.io.canAllocate && !intFreeList.io.canAllocate && !io.robCommits.isWalk), 3391ca0e4f3SYinan Xu ("rename_stall_cycle_walk ", hasValid && io.out(0).ready && fpFreeList.io.canAllocate && intFreeList.io.canAllocate && io.robCommits.isWalk) 340cd365d4cSrvcoresjw ) 3411ca0e4f3SYinan Xu val intFlPerf = intFreeList.getPerfEvents 3421ca0e4f3SYinan Xu val fpFlPerf = fpFreeList.getPerfEvents 3431ca0e4f3SYinan Xu val perfEvents = renamePerf ++ intFlPerf ++ fpFlPerf 3441ca0e4f3SYinan Xu generatePerfEvent() 3455eb4af5bSYikeZhou} 346