1/*************************************************************************************** 2* Copyright (c) 2020-2021 Institute of Computing Technology, Chinese Academy of Sciences 3* Copyright (c) 2020-2021 Peng Cheng Laboratory 4* 5* XiangShan is licensed under Mulan PSL v2. 6* You can use this software according to the terms and conditions of the Mulan PSL v2. 7* You may obtain a copy of Mulan PSL v2 at: 8* http://license.coscl.org.cn/MulanPSL2 9* 10* THIS SOFTWARE IS PROVIDED ON AN "AS IS" BASIS, WITHOUT WARRANTIES OF ANY KIND, 11* EITHER EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO NON-INFRINGEMENT, 12* MERCHANTABILITY OR FIT FOR A PARTICULAR PURPOSE. 13* 14* See the Mulan PSL v2 for more details. 15***************************************************************************************/ 16 17package xiangshan 18 19import org.chipsalliance.cde.config.Parameters 20import chisel3._ 21import chisel3.util.BitPat.bitPatToUInt 22import chisel3.util._ 23import utility._ 24import utils._ 25import xiangshan.backend.decode.{ImmUnion, XDecode} 26import xiangshan.backend.fu.FuType 27import xiangshan.backend.rob.RobPtr 28import xiangshan.frontend._ 29import xiangshan.mem.{LqPtr, SqPtr} 30import xiangshan.backend.Bundles.{DynInst, UopIdx} 31import xiangshan.backend.fu.vector.Bundles.VType 32import xiangshan.frontend.{AllAheadFoldedHistoryOldestBits, AllFoldedHistories, BPUCtrl, CGHPtr, FtqPtr, FtqToCtrlIO} 33import xiangshan.frontend.{Ftq_Redirect_SRAMEntry, HasBPUParameter, IfuToBackendIO, PreDecodeInfo, RASPtr} 34import xiangshan.cache.HasDCacheParameters 35import utility._ 36 37import org.chipsalliance.cde.config.Parameters 38import chisel3.util.BitPat.bitPatToUInt 39import chisel3.util.experimental.decode.EspressoMinimizer 40import xiangshan.backend.CtrlToFtqIO 41import xiangshan.backend.fu.PMPEntry 42import xiangshan.frontend.Ftq_Redirect_SRAMEntry 43import xiangshan.frontend.AllFoldedHistories 44import xiangshan.frontend.AllAheadFoldedHistoryOldestBits 45import xiangshan.frontend.RASPtr 46import xiangshan.backend.rob.RobBundles.RobCommitEntryBundle 47 48class ValidUndirectioned[T <: Data](gen: T) extends Bundle { 49 val valid = Bool() 50 val bits = gen.cloneType.asInstanceOf[T] 51 52} 53 54object ValidUndirectioned { 55 def apply[T <: Data](gen: T) = { 56 new ValidUndirectioned[T](gen) 57 } 58} 59 60object RSFeedbackType { 61 val lrqFull = 0.U(4.W) 62 val tlbMiss = 1.U(4.W) 63 val mshrFull = 2.U(4.W) 64 val dataInvalid = 3.U(4.W) 65 val bankConflict = 4.U(4.W) 66 val ldVioCheckRedo = 5.U(4.W) 67 val feedbackInvalid = 7.U(4.W) 68 val issueSuccess = 8.U(4.W) 69 val rfArbitFail = 9.U(4.W) 70 val fuIdle = 10.U(4.W) 71 val fuBusy = 11.U(4.W) 72 val fuUncertain = 12.U(4.W) 73 74 val allTypes = 16 75 def apply() = UInt(4.W) 76 77 def isStageSuccess(feedbackType: UInt) = { 78 feedbackType === issueSuccess 79 } 80 81 def isBlocked(feedbackType: UInt) = { 82 feedbackType === rfArbitFail || feedbackType === fuBusy || feedbackType >= lrqFull && feedbackType <= feedbackInvalid 83 } 84} 85 86class PredictorAnswer(implicit p: Parameters) extends XSBundle { 87 val hit = if (!env.FPGAPlatform) Bool() else UInt(0.W) 88 val taken = if (!env.FPGAPlatform) Bool() else UInt(0.W) 89 val target = if (!env.FPGAPlatform) UInt(VAddrBits.W) else UInt(0.W) 90} 91 92class CfiUpdateInfo(implicit p: Parameters) extends XSBundle with HasBPUParameter { 93 // from backend 94 val pc = UInt(VAddrBits.W) 95 // frontend -> backend -> frontend 96 val pd = new PreDecodeInfo 97 val ssp = UInt(log2Up(RasSize).W) 98 val sctr = UInt(log2Up(RasCtrSize).W) 99 val TOSW = new RASPtr 100 val TOSR = new RASPtr 101 val NOS = new RASPtr 102 val topAddr = UInt(VAddrBits.W) 103 // val hist = new ShiftingGlobalHistory 104 val folded_hist = new AllFoldedHistories(foldedGHistInfos) 105 val afhob = new AllAheadFoldedHistoryOldestBits(foldedGHistInfos) 106 val lastBrNumOH = UInt((numBr+1).W) 107 val ghr = UInt(UbtbGHRLength.W) 108 val histPtr = new CGHPtr 109 val specCnt = Vec(numBr, UInt(10.W)) 110 // need pipeline update 111 val br_hit = Bool() // if in ftb entry 112 val jr_hit = Bool() // if in ftb entry 113 val sc_hit = Bool() // if used in ftb entry, invalid if !br_hit 114 val predTaken = Bool() 115 val target = UInt(VAddrBits.W) 116 val taken = Bool() 117 val isMisPred = Bool() 118 val shift = UInt((log2Ceil(numBr)+1).W) 119 val addIntoHist = Bool() 120 121 def fromFtqRedirectSram(entry: Ftq_Redirect_SRAMEntry) = { 122 // this.hist := entry.ghist 123 this.folded_hist := entry.folded_hist 124 this.lastBrNumOH := entry.lastBrNumOH 125 this.afhob := entry.afhob 126 this.histPtr := entry.histPtr 127 this.ssp := entry.ssp 128 this.sctr := entry.sctr 129 this.TOSW := entry.TOSW 130 this.TOSR := entry.TOSR 131 this.NOS := entry.NOS 132 this.topAddr := entry.topAddr 133 this 134 } 135} 136 137// Dequeue DecodeWidth insts from Ibuffer 138class CtrlFlow(implicit p: Parameters) extends XSBundle { 139 val instr = UInt(32.W) 140 val pc = UInt(VAddrBits.W) 141 val foldpc = UInt(MemPredPCWidth.W) 142 val exceptionVec = ExceptionVec() 143 val trigger = new TriggerCf 144 val pd = new PreDecodeInfo 145 val pred_taken = Bool() 146 val crossPageIPFFix = Bool() 147 val storeSetHit = Bool() // inst has been allocated an store set 148 val waitForRobIdx = new RobPtr // store set predicted previous store robIdx 149 // Load wait is needed 150 // load inst will not be executed until former store (predicted by mdp) addr calcuated 151 val loadWaitBit = Bool() 152 // If (loadWaitBit && loadWaitStrict), strict load wait is needed 153 // load inst will not be executed until ALL former store addr calcuated 154 val loadWaitStrict = Bool() 155 val ssid = UInt(SSIDWidth.W) 156 val ftqPtr = new FtqPtr 157 val ftqOffset = UInt(log2Up(PredictWidth).W) 158} 159 160 161class FPUCtrlSignals(implicit p: Parameters) extends XSBundle { 162 val isAddSub = Bool() // swap23 163 val typeTagIn = UInt(1.W) 164 val typeTagOut = UInt(1.W) 165 val fromInt = Bool() 166 val wflags = Bool() 167 val fpWen = Bool() 168 val fmaCmd = UInt(2.W) 169 val div = Bool() 170 val sqrt = Bool() 171 val fcvt = Bool() 172 val typ = UInt(2.W) 173 val fmt = UInt(2.W) 174 val ren3 = Bool() //TODO: remove SrcType.fp 175 val rm = UInt(3.W) 176} 177 178// Decode DecodeWidth insts at Decode Stage 179class CtrlSignals(implicit p: Parameters) extends XSBundle { 180 val debug_globalID = UInt(XLEN.W) 181 val srcType = Vec(4, SrcType()) 182 val lsrc = Vec(4, UInt(6.W)) 183 val ldest = UInt(6.W) 184 val fuType = FuType() 185 val fuOpType = FuOpType() 186 val rfWen = Bool() 187 val fpWen = Bool() 188 val vecWen = Bool() 189 val isXSTrap = Bool() 190 val noSpecExec = Bool() // wait forward 191 val blockBackward = Bool() // block backward 192 val flushPipe = Bool() // This inst will flush all the pipe when commit, like exception but can commit 193 val uopSplitType = UopSplitType() 194 val selImm = SelImm() 195 val imm = UInt(32.W) 196 val commitType = CommitType() 197 val fpu = new FPUCtrlSignals 198 val uopIdx = UopIdx() 199 val isMove = Bool() 200 val vm = Bool() 201 val singleStep = Bool() 202 // This inst will flush all the pipe when it is the oldest inst in ROB, 203 // then replay from this inst itself 204 val replayInst = Bool() 205 val canRobCompress = Bool() 206 207 private def allSignals = srcType.take(3) ++ Seq(fuType, fuOpType, rfWen, fpWen, vecWen, 208 isXSTrap, noSpecExec, blockBackward, flushPipe, canRobCompress, uopSplitType, selImm) 209 210 def decode(inst: UInt, table: Iterable[(BitPat, List[BitPat])]): CtrlSignals = { 211 val decoder = freechips.rocketchip.rocket.DecodeLogic(inst, XDecode.decodeDefault, table, EspressoMinimizer) 212 allSignals zip decoder foreach { case (s, d) => s := d } 213 commitType := DontCare 214 this 215 } 216 217 def decode(bit: List[BitPat]): CtrlSignals = { 218 allSignals.zip(bit.map(bitPatToUInt(_))).foreach{ case (s, d) => s := d } 219 this 220 } 221 222 def isWFI: Bool = fuType === FuType.csr.U && fuOpType === CSROpType.wfi 223 def isSoftPrefetch: Bool = { 224 fuType === FuType.alu.U && fuOpType === ALUOpType.or && selImm === SelImm.IMM_I && ldest === 0.U 225 } 226 def needWriteRf: Bool = (rfWen && ldest =/= 0.U) || fpWen || vecWen 227 def isHyperInst: Bool = { 228 fuType === FuType.ldu.U && LSUOpType.isHlv(fuOpType) || fuType === FuType.stu.U && LSUOpType.isHsv(fuOpType) 229 } 230} 231 232class CfCtrl(implicit p: Parameters) extends XSBundle { 233 val cf = new CtrlFlow 234 val ctrl = new CtrlSignals 235} 236 237class PerfDebugInfo(implicit p: Parameters) extends XSBundle { 238 val eliminatedMove = Bool() 239 // val fetchTime = UInt(XLEN.W) 240 val renameTime = UInt(XLEN.W) 241 val dispatchTime = UInt(XLEN.W) 242 val enqRsTime = UInt(XLEN.W) 243 val selectTime = UInt(XLEN.W) 244 val issueTime = UInt(XLEN.W) 245 val writebackTime = UInt(XLEN.W) 246 // val commitTime = UInt(XLEN.W) 247 val runahead_checkpoint_id = UInt(XLEN.W) 248 val tlbFirstReqTime = UInt(XLEN.W) 249 val tlbRespTime = UInt(XLEN.W) // when getting hit result (including delay in L2TLB hit) 250} 251 252// Separate LSQ 253class LSIdx(implicit p: Parameters) extends XSBundle { 254 val lqIdx = new LqPtr 255 val sqIdx = new SqPtr 256} 257 258// CfCtrl -> MicroOp at Rename Stage 259class MicroOp(implicit p: Parameters) extends CfCtrl { 260 val srcState = Vec(4, SrcState()) 261 val psrc = Vec(4, UInt(PhyRegIdxWidth.W)) 262 val pdest = UInt(PhyRegIdxWidth.W) 263 val robIdx = new RobPtr 264 val instrSize = UInt(log2Ceil(RenameWidth + 1).W) 265 val lqIdx = new LqPtr 266 val sqIdx = new SqPtr 267 val eliminatedMove = Bool() 268 val snapshot = Bool() 269 val debugInfo = new PerfDebugInfo 270 def needRfRPort(index: Int, isFp: Boolean, ignoreState: Boolean = true) : Bool = { 271 val stateReady = srcState(index) === SrcState.rdy || ignoreState.B 272 val readReg = if (isFp) { 273 ctrl.srcType(index) === SrcType.fp 274 } else { 275 ctrl.srcType(index) === SrcType.reg && ctrl.lsrc(index) =/= 0.U 276 } 277 readReg && stateReady 278 } 279 def srcIsReady: Vec[Bool] = { 280 VecInit(ctrl.srcType.zip(srcState).map{ case (t, s) => SrcType.isPcOrImm(t) || s === SrcState.rdy }) 281 } 282 def clearExceptions( 283 exceptionBits: Seq[Int] = Seq(), 284 flushPipe: Boolean = false, 285 replayInst: Boolean = false 286 ): MicroOp = { 287 cf.exceptionVec.zipWithIndex.filterNot(x => exceptionBits.contains(x._2)).foreach(_._1 := false.B) 288 if (!flushPipe) { ctrl.flushPipe := false.B } 289 if (!replayInst) { ctrl.replayInst := false.B } 290 this 291 } 292} 293 294class XSBundleWithMicroOp(implicit p: Parameters) extends XSBundle { 295 val uop = new DynInst 296} 297 298class MicroOpRbExt(implicit p: Parameters) extends XSBundleWithMicroOp { 299 val flag = UInt(1.W) 300} 301 302class Redirect(implicit p: Parameters) extends XSBundle { 303 val isRVC = Bool() 304 val robIdx = new RobPtr 305 val ftqIdx = new FtqPtr 306 val ftqOffset = UInt(log2Up(PredictWidth).W) 307 val level = RedirectLevel() 308 val interrupt = Bool() 309 val cfiUpdate = new CfiUpdateInfo 310 311 val stFtqIdx = new FtqPtr // for load violation predict 312 val stFtqOffset = UInt(log2Up(PredictWidth).W) 313 314 val debug_runahead_checkpoint_id = UInt(64.W) 315 val debugIsCtrl = Bool() 316 val debugIsMemVio = Bool() 317 318 def flushItself() = RedirectLevel.flushItself(level) 319} 320 321class ResetPregStateReq(implicit p: Parameters) extends XSBundle { 322 // NOTE: set isInt and isFp both to 'false' when invalid 323 val isInt = Bool() 324 val isFp = Bool() 325 val isVec = Bool() 326 val preg = UInt(PhyRegIdxWidth.W) 327} 328 329class DebugBundle(implicit p: Parameters) extends XSBundle { 330 val isMMIO = Bool() 331 val isPerfCnt = Bool() 332 val paddr = UInt(PAddrBits.W) 333 val vaddr = UInt(VAddrBits.W) 334 /* add L/S inst info in EXU */ 335 // val L1toL2TlbLatency = UInt(XLEN.W) 336 // val levelTlbHit = UInt(2.W) 337} 338 339class ExternalInterruptIO(implicit p: Parameters) extends XSBundle { 340 val mtip = Input(Bool()) 341 val msip = Input(Bool()) 342 val meip = Input(Bool()) 343 val seip = Input(Bool()) 344 val debug = Input(Bool()) 345} 346 347class CSRSpecialIO(implicit p: Parameters) extends XSBundle { 348 val exception = Flipped(ValidIO(new DynInst)) 349 val isInterrupt = Input(Bool()) 350 val memExceptionVAddr = Input(UInt(VAddrBits.W)) 351 val trapTarget = Output(UInt(VAddrBits.W)) 352 val externalInterrupt = new ExternalInterruptIO 353 val interrupt = Output(Bool()) 354} 355 356class DiffCommitIO(implicit p: Parameters) extends XSBundle { 357 val isCommit = Bool() 358 val commitValid = Vec(CommitWidth * MaxUopSize, Bool()) 359 360 val info = Vec(CommitWidth * MaxUopSize, new RabCommitInfo) 361} 362 363class RobCommitInfo(implicit p: Parameters) extends RobCommitEntryBundle 364 365class RobCommitIO(implicit p: Parameters) extends XSBundle { 366 val isCommit = Bool() 367 val commitValid = Vec(CommitWidth, Bool()) 368 369 val isWalk = Bool() 370 // valid bits optimized for walk 371 val walkValid = Vec(CommitWidth, Bool()) 372 373 val info = Vec(CommitWidth, new RobCommitInfo) 374 val robIdx = Vec(CommitWidth, new RobPtr) 375 376 def hasWalkInstr: Bool = isWalk && walkValid.asUInt.orR 377 def hasCommitInstr: Bool = isCommit && commitValid.asUInt.orR 378} 379 380class RabCommitInfo(implicit p: Parameters) extends XSBundle { 381 val ldest = UInt(6.W) 382 val pdest = UInt(PhyRegIdxWidth.W) 383 val rfWen = Bool() 384 val fpWen = Bool() 385 val vecWen = Bool() 386 val isMove = Bool() 387} 388 389class RabCommitIO(implicit p: Parameters) extends XSBundle { 390 val isCommit = Bool() 391 val commitValid = Vec(RabCommitWidth, Bool()) 392 393 val isWalk = Bool() 394 // valid bits optimized for walk 395 val walkValid = Vec(RabCommitWidth, Bool()) 396 397 val info = Vec(RabCommitWidth, new RabCommitInfo) 398 val robIdx = OptionWrapper(!env.FPGAPlatform, Vec(RabCommitWidth, new RobPtr)) 399 400 def hasWalkInstr: Bool = isWalk && walkValid.asUInt.orR 401 def hasCommitInstr: Bool = isCommit && commitValid.asUInt.orR 402} 403 404class SnapshotPort(implicit p: Parameters) extends XSBundle { 405 val snptEnq = Bool() 406 val snptDeq = Bool() 407 val useSnpt = Bool() 408 val snptSelect = UInt(log2Ceil(RenameSnapshotNum).W) 409 val flushVec = Vec(RenameSnapshotNum, Bool()) 410} 411 412class RSFeedback(implicit p: Parameters) extends XSBundle { 413 val robIdx = new RobPtr 414 val hit = Bool() 415 val flushState = Bool() 416 val sourceType = RSFeedbackType() 417 val dataInvalidSqIdx = new SqPtr 418} 419 420class MemRSFeedbackIO(implicit p: Parameters) extends XSBundle { 421 // Note: you need to update in implicit Parameters p before imp MemRSFeedbackIO 422 // for instance: MemRSFeedbackIO()(updateP) 423 val feedbackSlow = ValidIO(new RSFeedback()) // dcache miss queue full, dtlb miss 424 val feedbackFast = ValidIO(new RSFeedback()) // bank conflict 425} 426 427class LoadCancelIO(implicit p: Parameters) extends XSBundle { 428 val ld1Cancel = Bool() 429 val ld2Cancel = Bool() 430} 431 432class FrontendToCtrlIO(implicit p: Parameters) extends XSBundle { 433 // to backend end 434 val cfVec = Vec(DecodeWidth, DecoupledIO(new CtrlFlow)) 435 val stallReason = new StallReasonIO(DecodeWidth) 436 val fromFtq = new FtqToCtrlIO 437 val fromIfu = new IfuToBackendIO 438 // from backend 439 val toFtq = Flipped(new CtrlToFtqIO) 440 val canAccept = Input(Bool()) 441} 442 443class SatpStruct(implicit p: Parameters) extends XSBundle { 444 val mode = UInt(4.W) 445 val asid = UInt(16.W) 446 val ppn = UInt(44.W) 447} 448 449class TlbSatpBundle(implicit p: Parameters) extends SatpStruct { 450 val changed = Bool() 451 452 def apply(satp_value: UInt): Unit = { 453 require(satp_value.getWidth == XLEN) 454 val sa = satp_value.asTypeOf(new SatpStruct) 455 mode := sa.mode 456 asid := sa.asid 457 ppn := Cat(0.U((44-PAddrBits).W), sa.ppn(PAddrBits-1, 0)).asUInt 458 changed := DataChanged(sa.asid) // when ppn is changed, software need do the flush 459 } 460} 461 462class TlbCsrBundle(implicit p: Parameters) extends XSBundle { 463 val satp = new TlbSatpBundle() 464 val vsatp = new TlbSatpBundle() 465 val hgatp = new TlbSatpBundle() 466 val priv = new Bundle { 467 val mxr = Bool() 468 val sum = Bool() 469 val vmxr = Bool() 470 val vsum = Bool() 471 val virt = Bool() 472 val spvp = UInt(1.W) 473 val imode = UInt(2.W) 474 val dmode = UInt(2.W) 475 } 476 477 override def toPrintable: Printable = { 478 p"Satp mode:0x${Hexadecimal(satp.mode)} asid:0x${Hexadecimal(satp.asid)} ppn:0x${Hexadecimal(satp.ppn)} " + 479 p"Priv mxr:${priv.mxr} sum:${priv.sum} imode:${priv.imode} dmode:${priv.dmode}" 480 } 481} 482 483class SfenceBundle(implicit p: Parameters) extends XSBundle { 484 val valid = Bool() 485 val bits = new Bundle { 486 val rs1 = Bool() 487 val rs2 = Bool() 488 val addr = UInt(VAddrBits.W) 489 val id = UInt((AsidLength).W) // asid or vmid 490 val flushPipe = Bool() 491 val hv = Bool() 492 val hg = Bool() 493 } 494 495 override def toPrintable: Printable = { 496 p"valid:0x${Hexadecimal(valid)} rs1:${bits.rs1} rs2:${bits.rs2} addr:${Hexadecimal(bits.addr)}, flushPipe:${bits.flushPipe}" 497 } 498} 499 500// Bundle for load violation predictor updating 501class MemPredUpdateReq(implicit p: Parameters) extends XSBundle { 502 val valid = Bool() 503 504 // wait table update 505 val waddr = UInt(MemPredPCWidth.W) 506 val wdata = Bool() // true.B by default 507 508 // store set update 509 // by default, ldpc/stpc should be xor folded 510 val ldpc = UInt(MemPredPCWidth.W) 511 val stpc = UInt(MemPredPCWidth.W) 512} 513 514class CustomCSRCtrlIO(implicit p: Parameters) extends XSBundle { 515 // Prefetcher 516 val l1I_pf_enable = Output(Bool()) 517 val l2_pf_enable = Output(Bool()) 518 val l1D_pf_enable = Output(Bool()) 519 val l1D_pf_train_on_hit = Output(Bool()) 520 val l1D_pf_enable_agt = Output(Bool()) 521 val l1D_pf_enable_pht = Output(Bool()) 522 val l1D_pf_active_threshold = Output(UInt(4.W)) 523 val l1D_pf_active_stride = Output(UInt(6.W)) 524 val l1D_pf_enable_stride = Output(Bool()) 525 val l2_pf_store_only = Output(Bool()) 526 // ICache 527 val icache_parity_enable = Output(Bool()) 528 // Labeled XiangShan 529 val dsid = Output(UInt(8.W)) // TODO: DsidWidth as parameter 530 // Load violation predictor 531 val lvpred_disable = Output(Bool()) 532 val no_spec_load = Output(Bool()) 533 val storeset_wait_store = Output(Bool()) 534 val storeset_no_fast_wakeup = Output(Bool()) 535 val lvpred_timeout = Output(UInt(5.W)) 536 // Branch predictor 537 val bp_ctrl = Output(new BPUCtrl) 538 // Memory Block 539 val sbuffer_threshold = Output(UInt(4.W)) 540 val ldld_vio_check_enable = Output(Bool()) 541 val soft_prefetch_enable = Output(Bool()) 542 val cache_error_enable = Output(Bool()) 543 val uncache_write_outstanding_enable = Output(Bool()) 544 // Rename 545 val fusion_enable = Output(Bool()) 546 val wfi_enable = Output(Bool()) 547 // Decode 548 val svinval_enable = Output(Bool()) 549 550 // distribute csr write signal 551 val distribute_csr = new DistributedCSRIO() 552 // TODO: move it to a new bundle, since single step is not a custom control signal 553 val singlestep = Output(Bool()) 554 val frontend_trigger = new FrontendTdataDistributeIO() 555 val mem_trigger = new MemTdataDistributeIO() 556 // Virtualization Mode 557 val virtMode = Output(Bool()) 558} 559 560class DistributedCSRIO(implicit p: Parameters) extends XSBundle { 561 // CSR has been written by csr inst, copies of csr should be updated 562 val w = ValidIO(new Bundle { 563 val addr = Output(UInt(12.W)) 564 val data = Output(UInt(XLEN.W)) 565 }) 566} 567 568class DistributedCSRUpdateReq(implicit p: Parameters) extends XSBundle { 569 // Request csr to be updated 570 // 571 // Note that this request will ONLY update CSR Module it self, 572 // copies of csr will NOT be updated, use it with care! 573 // 574 // For each cycle, no more than 1 DistributedCSRUpdateReq is valid 575 val w = ValidIO(new Bundle { 576 val addr = Output(UInt(12.W)) 577 val data = Output(UInt(XLEN.W)) 578 }) 579 def apply(valid: Bool, addr: UInt, data: UInt, src_description: String) = { 580 when(valid){ 581 w.bits.addr := addr 582 w.bits.data := data 583 } 584 println("Distributed CSR update req registered for " + src_description) 585 } 586} 587 588class L1CacheErrorInfo(implicit p: Parameters) extends XSBundle { 589 // L1CacheErrorInfo is also used to encode customized CACHE_ERROR CSR 590 val source = Output(new Bundle() { 591 val tag = Bool() // l1 tag array 592 val data = Bool() // l1 data array 593 val l2 = Bool() 594 }) 595 val opType = Output(new Bundle() { 596 val fetch = Bool() 597 val load = Bool() 598 val store = Bool() 599 val probe = Bool() 600 val release = Bool() 601 val atom = Bool() 602 }) 603 val paddr = Output(UInt(PAddrBits.W)) 604 605 // report error and paddr to beu 606 // bus error unit will receive error info iff ecc_error.valid 607 val report_to_beu = Output(Bool()) 608 609 // there is an valid error 610 // l1 cache error will always be report to CACHE_ERROR csr 611 val valid = Output(Bool()) 612 613 def toL1BusErrorUnitInfo(): L1BusErrorUnitInfo = { 614 val beu_info = Wire(new L1BusErrorUnitInfo) 615 beu_info.ecc_error.valid := report_to_beu 616 beu_info.ecc_error.bits := paddr 617 beu_info 618 } 619} 620 621class TriggerCf(implicit p: Parameters) extends XSBundle { 622 // frontend 623 val frontendHit = Vec(TriggerNum, Bool()) // en && hit 624 val frontendCanFire = Vec(TriggerNum, Bool()) 625 // backend 626 val backendHit = Vec(TriggerNum, Bool()) 627 val backendCanFire = Vec(TriggerNum, Bool()) 628 629 // Two situations not allowed: 630 // 1. load data comparison 631 // 2. store chaining with store 632 def getFrontendCanFire = frontendCanFire.reduce(_ || _) 633 def getBackendCanFire = backendCanFire.reduce(_ || _) 634 def canFire = getFrontendCanFire || getBackendCanFire 635 def clear(): Unit = { 636 frontendHit.foreach(_ := false.B) 637 frontendCanFire.foreach(_ := false.B) 638 backendHit.foreach(_ := false.B) 639 backendCanFire.foreach(_ := false.B) 640 } 641} 642 643// these 3 bundles help distribute trigger control signals from CSR 644// to Frontend, Load and Store. 645class FrontendTdataDistributeIO(implicit p: Parameters) extends XSBundle { 646 val tUpdate = ValidIO(new Bundle { 647 val addr = Output(UInt(log2Up(TriggerNum).W)) 648 val tdata = new MatchTriggerIO 649 }) 650 val tEnableVec: Vec[Bool] = Output(Vec(TriggerNum, Bool())) 651} 652 653class MemTdataDistributeIO(implicit p: Parameters) extends XSBundle { 654 val tUpdate = ValidIO(new Bundle { 655 val addr = Output(UInt(log2Up(TriggerNum).W)) 656 val tdata = new MatchTriggerIO 657 }) 658 val tEnableVec: Vec[Bool] = Output(Vec(TriggerNum, Bool())) 659} 660 661class MatchTriggerIO(implicit p: Parameters) extends XSBundle { 662 val matchType = Output(UInt(2.W)) 663 val select = Output(Bool()) 664 val timing = Output(Bool()) 665 val action = Output(Bool()) 666 val chain = Output(Bool()) 667 val execute = Output(Bool()) 668 val store = Output(Bool()) 669 val load = Output(Bool()) 670 val tdata2 = Output(UInt(64.W)) 671} 672 673class StallReasonIO(width: Int) extends Bundle { 674 val reason = Output(Vec(width, UInt(log2Ceil(TopDownCounters.NumStallReasons.id).W))) 675 val backReason = Flipped(Valid(UInt(log2Ceil(TopDownCounters.NumStallReasons.id).W))) 676} 677 678// custom l2 - l1 interface 679class L2ToL1Hint(implicit p: Parameters) extends XSBundle with HasDCacheParameters { 680 val sourceId = UInt(log2Up(cfg.nMissEntries).W) // tilelink sourceID -> mshr id 681 val isKeyword = Bool() // miss entry keyword -> L1 load queue replay 682} 683 684