xref: /XiangShan/src/main/scala/xiangshan/Bundle.scala (revision 7ad02651eaa1ad5e238afd6978a727fb17c1d5c5)
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 chisel3._
20import chisel3.util._
21import xiangshan.backend.rob.RobPtr
22import xiangshan.backend.CtrlToFtqIO
23import xiangshan.backend.decode.{ImmUnion, XDecode}
24import xiangshan.mem.{LqPtr, SqPtr}
25import xiangshan.frontend.PreDecodeInfo
26import xiangshan.frontend.HasBPUParameter
27import xiangshan.frontend.{AllFoldedHistories, CircularGlobalHistory, GlobalHistory, ShiftingGlobalHistory}
28import xiangshan.frontend.RASEntry
29import xiangshan.frontend.BPUCtrl
30import xiangshan.frontend.FtqPtr
31import xiangshan.frontend.CGHPtr
32import xiangshan.frontend.FtqRead
33import xiangshan.frontend.FtqToCtrlIO
34import utils._
35
36import scala.math.max
37import Chisel.experimental.chiselName
38import chipsalliance.rocketchip.config.Parameters
39import chisel3.util.BitPat.bitPatToUInt
40import xiangshan.backend.exu.ExuConfig
41import xiangshan.backend.fu.PMPEntry
42import xiangshan.frontend.Ftq_Redirect_SRAMEntry
43import xiangshan.frontend.AllFoldedHistories
44import xiangshan.frontend.AllAheadFoldedHistoryOldestBits
45
46class ValidUndirectioned[T <: Data](gen: T) extends Bundle {
47  val valid = Bool()
48  val bits = gen.cloneType.asInstanceOf[T]
49
50}
51
52object ValidUndirectioned {
53  def apply[T <: Data](gen: T) = {
54    new ValidUndirectioned[T](gen)
55  }
56}
57
58object RSFeedbackType {
59  val tlbMiss = 0.U(3.W)
60  val mshrFull = 1.U(3.W)
61  val dataInvalid = 2.U(3.W)
62  val bankConflict = 3.U(3.W)
63  val ldVioCheckRedo = 4.U(3.W)
64
65  def apply() = UInt(3.W)
66}
67
68class PredictorAnswer(implicit p: Parameters) extends XSBundle {
69  val hit    = if (!env.FPGAPlatform) Bool() else UInt(0.W)
70  val taken  = if (!env.FPGAPlatform) Bool() else UInt(0.W)
71  val target = if (!env.FPGAPlatform) UInt(VAddrBits.W) else UInt(0.W)
72}
73
74class CfiUpdateInfo(implicit p: Parameters) extends XSBundle with HasBPUParameter {
75  // from backend
76  val pc = UInt(VAddrBits.W)
77  // frontend -> backend -> frontend
78  val pd = new PreDecodeInfo
79  val rasSp = UInt(log2Up(RasSize).W)
80  val rasEntry = new RASEntry
81  // val hist = new ShiftingGlobalHistory
82  val folded_hist = new AllFoldedHistories(foldedGHistInfos)
83  val afhob = new AllAheadFoldedHistoryOldestBits(foldedGHistInfos)
84  val lastBrNumOH = UInt((numBr+1).W)
85  val ghr = UInt(UbtbGHRLength.W)
86  val histPtr = new CGHPtr
87  val specCnt = Vec(numBr, UInt(10.W))
88  // need pipeline update
89  val br_hit = Bool()
90  val predTaken = Bool()
91  val target = UInt(VAddrBits.W)
92  val taken = Bool()
93  val isMisPred = Bool()
94  val shift = UInt((log2Ceil(numBr)+1).W)
95  val addIntoHist = Bool()
96
97  def fromFtqRedirectSram(entry: Ftq_Redirect_SRAMEntry) = {
98    // this.hist := entry.ghist
99    this.folded_hist := entry.folded_hist
100    this.lastBrNumOH := entry.lastBrNumOH
101    this.afhob := entry.afhob
102    this.histPtr := entry.histPtr
103    this.rasSp := entry.rasSp
104    this.rasEntry := entry.rasTop
105    this
106  }
107}
108
109// Dequeue DecodeWidth insts from Ibuffer
110class CtrlFlow(implicit p: Parameters) extends XSBundle {
111  val instr = UInt(32.W)
112  val pc = UInt(VAddrBits.W)
113  val foldpc = UInt(MemPredPCWidth.W)
114  val exceptionVec = ExceptionVec()
115  val trigger = new TriggerCf
116  val pd = new PreDecodeInfo
117  val pred_taken = Bool()
118  val crossPageIPFFix = Bool()
119  val storeSetHit = Bool() // inst has been allocated an store set
120  val waitForRobIdx = new RobPtr // store set predicted previous store robIdx
121  // Load wait is needed
122  // load inst will not be executed until former store (predicted by mdp) addr calcuated
123  val loadWaitBit = Bool()
124  // If (loadWaitBit && loadWaitStrict), strict load wait is needed
125  // load inst will not be executed until ALL former store addr calcuated
126  val loadWaitStrict = Bool()
127  val ssid = UInt(SSIDWidth.W)
128  val ftqPtr = new FtqPtr
129  val ftqOffset = UInt(log2Up(PredictWidth).W)
130}
131
132
133class FPUCtrlSignals(implicit p: Parameters) extends XSBundle {
134  val isAddSub = Bool() // swap23
135  val typeTagIn = UInt(1.W)
136  val typeTagOut = UInt(1.W)
137  val fromInt = Bool()
138  val wflags = Bool()
139  val fpWen = Bool()
140  val fmaCmd = UInt(2.W)
141  val div = Bool()
142  val sqrt = Bool()
143  val fcvt = Bool()
144  val typ = UInt(2.W)
145  val fmt = UInt(2.W)
146  val ren3 = Bool() //TODO: remove SrcType.fp
147  val rm = UInt(3.W)
148}
149
150// Decode DecodeWidth insts at Decode Stage
151class CtrlSignals(implicit p: Parameters) extends XSBundle {
152  val srcType = Vec(3, SrcType())
153  val lsrc = Vec(3, UInt(5.W))
154  val ldest = UInt(5.W)
155  val fuType = FuType()
156  val fuOpType = FuOpType()
157  val rfWen = Bool()
158  val fpWen = Bool()
159  val isXSTrap = Bool()
160  val noSpecExec = Bool() // wait forward
161  val blockBackward = Bool() // block backward
162  val flushPipe = Bool() // This inst will flush all the pipe when commit, like exception but can commit
163  val selImm = SelImm()
164  val imm = UInt(ImmUnion.maxLen.W)
165  val commitType = CommitType()
166  val fpu = new FPUCtrlSignals
167  val isMove = Bool()
168  val singleStep = Bool()
169  // This inst will flush all the pipe when it is the oldest inst in ROB,
170  // then replay from this inst itself
171  val replayInst = Bool()
172
173  private def allSignals = srcType ++ Seq(fuType, fuOpType, rfWen, fpWen,
174    isXSTrap, noSpecExec, blockBackward, flushPipe, selImm)
175
176  def decode(inst: UInt, table: Iterable[(BitPat, List[BitPat])]): CtrlSignals = {
177    val decoder = freechips.rocketchip.rocket.DecodeLogic(inst, XDecode.decodeDefault, table)
178    allSignals zip decoder foreach { case (s, d) => s := d }
179    commitType := DontCare
180    this
181  }
182
183  def decode(bit: List[BitPat]): CtrlSignals = {
184    allSignals.zip(bit.map(bitPatToUInt(_))).foreach{ case (s, d) => s := d }
185    this
186  }
187
188  def isWFI: Bool = fuType === FuType.csr && fuOpType === CSROpType.wfi
189  def isSoftPrefetch: Bool = {
190    fuType === FuType.alu && fuOpType === ALUOpType.or && selImm === SelImm.IMM_I && ldest === 0.U
191  }
192}
193
194class CfCtrl(implicit p: Parameters) extends XSBundle {
195  val cf = new CtrlFlow
196  val ctrl = new CtrlSignals
197}
198
199class PerfDebugInfo(implicit p: Parameters) extends XSBundle {
200  val eliminatedMove = Bool()
201  // val fetchTime = UInt(64.W)
202  val renameTime = UInt(XLEN.W)
203  val dispatchTime = UInt(XLEN.W)
204  val enqRsTime = UInt(XLEN.W)
205  val selectTime = UInt(XLEN.W)
206  val issueTime = UInt(XLEN.W)
207  val writebackTime = UInt(XLEN.W)
208  // val commitTime = UInt(64.W)
209  val runahead_checkpoint_id = UInt(64.W)
210}
211
212// Separate LSQ
213class LSIdx(implicit p: Parameters) extends XSBundle {
214  val lqIdx = new LqPtr
215  val sqIdx = new SqPtr
216}
217
218// CfCtrl -> MicroOp at Rename Stage
219class MicroOp(implicit p: Parameters) extends CfCtrl {
220  val srcState = Vec(3, SrcState())
221  val psrc = Vec(3, UInt(PhyRegIdxWidth.W))
222  val pdest = UInt(PhyRegIdxWidth.W)
223  val old_pdest = UInt(PhyRegIdxWidth.W)
224  val robIdx = new RobPtr
225  val lqIdx = new LqPtr
226  val sqIdx = new SqPtr
227  val eliminatedMove = Bool()
228  val debugInfo = new PerfDebugInfo
229  def needRfRPort(index: Int, isFp: Boolean, ignoreState: Boolean = true) : Bool = {
230    val stateReady = srcState(index) === SrcState.rdy || ignoreState.B
231    val readReg = if (isFp) {
232      ctrl.srcType(index) === SrcType.fp
233    } else {
234      ctrl.srcType(index) === SrcType.reg && ctrl.lsrc(index) =/= 0.U
235    }
236    readReg && stateReady
237  }
238  def srcIsReady: Vec[Bool] = {
239    VecInit(ctrl.srcType.zip(srcState).map{ case (t, s) => SrcType.isPcOrImm(t) || s === SrcState.rdy })
240  }
241  def clearExceptions(
242    exceptionBits: Seq[Int] = Seq(),
243    flushPipe: Boolean = false,
244    replayInst: Boolean = false
245  ): MicroOp = {
246    cf.exceptionVec.zipWithIndex.filterNot(x => exceptionBits.contains(x._2)).foreach(_._1 := false.B)
247    if (!flushPipe) { ctrl.flushPipe := false.B }
248    if (!replayInst) { ctrl.replayInst := false.B }
249    this
250  }
251  // Assume only the LUI instruction is decoded with IMM_U in ALU.
252  def isLUI: Bool = ctrl.selImm === SelImm.IMM_U && ctrl.fuType === FuType.alu
253  // This MicroOp is used to wakeup another uop (the successor: (psrc, srcType).
254  def wakeup(successor: Seq[(UInt, UInt)], exuCfg: ExuConfig): Seq[(Bool, Bool)] = {
255    successor.map{ case (src, srcType) =>
256      val pdestMatch = pdest === src
257      // For state: no need to check whether src is x0/imm/pc because they are always ready.
258      val rfStateMatch = if (exuCfg.readIntRf) ctrl.rfWen else false.B
259      val fpMatch = if (exuCfg.readFpRf) ctrl.fpWen else false.B
260      val bothIntFp = exuCfg.readIntRf && exuCfg.readFpRf
261      val bothStateMatch = Mux(SrcType.regIsFp(srcType), fpMatch, rfStateMatch)
262      val stateCond = pdestMatch && (if (bothIntFp) bothStateMatch else rfStateMatch || fpMatch)
263      // For data: types are matched and int pdest is not $zero.
264      val rfDataMatch = if (exuCfg.readIntRf) ctrl.rfWen && src =/= 0.U else false.B
265      val dataCond = pdestMatch && (rfDataMatch && SrcType.isReg(srcType) || fpMatch && SrcType.isFp(srcType))
266      (stateCond, dataCond)
267    }
268  }
269  // This MicroOp is used to wakeup another uop (the successor: MicroOp).
270  def wakeup(successor: MicroOp, exuCfg: ExuConfig): Seq[(Bool, Bool)] = {
271    wakeup(successor.psrc.zip(successor.ctrl.srcType), exuCfg)
272  }
273  def isJump: Bool = FuType.isJumpExu(ctrl.fuType)
274}
275
276class XSBundleWithMicroOp(implicit p: Parameters) extends XSBundle {
277  val uop = new MicroOp
278}
279
280class MicroOpRbExt(implicit p: Parameters) extends XSBundleWithMicroOp {
281  val flag = UInt(1.W)
282}
283
284class Redirect(implicit p: Parameters) extends XSBundle {
285  val robIdx = new RobPtr
286  val ftqIdx = new FtqPtr
287  val ftqOffset = UInt(log2Up(PredictWidth).W)
288  val level = RedirectLevel()
289  val interrupt = Bool()
290  val cfiUpdate = new CfiUpdateInfo
291
292  val stFtqIdx = new FtqPtr // for load violation predict
293  val stFtqOffset = UInt(log2Up(PredictWidth).W)
294
295  val debug_runahead_checkpoint_id = UInt(64.W)
296
297  // def isUnconditional() = RedirectLevel.isUnconditional(level)
298  def flushItself() = RedirectLevel.flushItself(level)
299  // def isException() = RedirectLevel.isException(level)
300}
301
302class Dp1ToDp2IO(implicit p: Parameters) extends XSBundle {
303  val intDqToDp2 = Vec(dpParams.IntDqDeqWidth, DecoupledIO(new MicroOp))
304  val fpDqToDp2 = Vec(dpParams.FpDqDeqWidth, DecoupledIO(new MicroOp))
305  val lsDqToDp2 = Vec(dpParams.LsDqDeqWidth, DecoupledIO(new MicroOp))
306}
307
308class ResetPregStateReq(implicit p: Parameters) extends XSBundle {
309  // NOTE: set isInt and isFp both to 'false' when invalid
310  val isInt = Bool()
311  val isFp = Bool()
312  val preg = UInt(PhyRegIdxWidth.W)
313}
314
315class DebugBundle(implicit p: Parameters) extends XSBundle {
316  val isMMIO = Bool()
317  val isPerfCnt = Bool()
318  val paddr = UInt(PAddrBits.W)
319  val vaddr = UInt(VAddrBits.W)
320}
321
322class ExuInput(implicit p: Parameters) extends XSBundleWithMicroOp {
323  val src = Vec(3, UInt(XLEN.W))
324}
325
326class ExuOutput(implicit p: Parameters) extends XSBundleWithMicroOp {
327  val data = UInt(XLEN.W)
328  val fflags = UInt(5.W)
329  val redirectValid = Bool()
330  val redirect = new Redirect
331  val debug = new DebugBundle
332}
333
334class ExternalInterruptIO(implicit p: Parameters) extends XSBundle {
335  val mtip = Input(Bool())
336  val msip = Input(Bool())
337  val meip = Input(Bool())
338  val seip = Input(Bool())
339  val debug = Input(Bool())
340}
341
342class CSRSpecialIO(implicit p: Parameters) extends XSBundle {
343  val exception = Flipped(ValidIO(new MicroOp))
344  val isInterrupt = Input(Bool())
345  val memExceptionVAddr = Input(UInt(VAddrBits.W))
346  val trapTarget = Output(UInt(VAddrBits.W))
347  val externalInterrupt = new ExternalInterruptIO
348  val interrupt = Output(Bool())
349}
350
351class ExceptionInfo(implicit p: Parameters) extends XSBundleWithMicroOp {
352  val isInterrupt = Bool()
353}
354
355class RobCommitInfo(implicit p: Parameters) extends XSBundle {
356  val ldest = UInt(5.W)
357  val rfWen = Bool()
358  val fpWen = Bool()
359  val wflags = Bool()
360  val commitType = CommitType()
361  val pdest = UInt(PhyRegIdxWidth.W)
362  val old_pdest = UInt(PhyRegIdxWidth.W)
363  val ftqIdx = new FtqPtr
364  val ftqOffset = UInt(log2Up(PredictWidth).W)
365  val isMove = Bool()
366
367  // these should be optimized for synthesis verilog
368  val pc = UInt(VAddrBits.W)
369}
370
371class RobCommitIO(implicit p: Parameters) extends XSBundle {
372  val isCommit = Bool()
373  val commitValid = Vec(CommitWidth, Bool())
374
375  val isWalk = Bool()
376  // valid bits optimized for walk
377  val walkValid = Vec(CommitWidth, Bool())
378
379  val info = Vec(CommitWidth, new RobCommitInfo)
380
381  def hasWalkInstr: Bool = isWalk && walkValid.asUInt.orR
382  def hasCommitInstr: Bool = isCommit && commitValid.asUInt.orR
383}
384
385class RSFeedback(implicit p: Parameters) extends XSBundle {
386  val rsIdx = UInt(log2Up(IssQueSize).W)
387  val hit = Bool()
388  val flushState = Bool()
389  val sourceType = RSFeedbackType()
390  val dataInvalidSqIdx = new SqPtr
391}
392
393class MemRSFeedbackIO(implicit p: Parameters) extends XSBundle {
394  // Note: you need to update in implicit Parameters p before imp MemRSFeedbackIO
395  // for instance: MemRSFeedbackIO()(updateP)
396  val feedbackSlow = ValidIO(new RSFeedback()) // dcache miss queue full, dtlb miss
397  val feedbackFast = ValidIO(new RSFeedback()) // bank conflict
398  val rsIdx = Input(UInt(log2Up(IssQueSize).W))
399  val isFirstIssue = Input(Bool())
400}
401
402class FrontendToCtrlIO(implicit p: Parameters) extends XSBundle {
403  // to backend end
404  val cfVec = Vec(DecodeWidth, DecoupledIO(new CtrlFlow))
405  val fromFtq = new FtqToCtrlIO
406  // from backend
407  val toFtq = Flipped(new CtrlToFtqIO)
408}
409
410class SatpStruct(implicit p: Parameters) extends XSBundle {
411  val mode = UInt(4.W)
412  val asid = UInt(16.W)
413  val ppn  = UInt(44.W)
414}
415
416class TlbSatpBundle(implicit p: Parameters) extends SatpStruct {
417  val changed = Bool()
418
419  def apply(satp_value: UInt): Unit = {
420    require(satp_value.getWidth == XLEN)
421    val sa = satp_value.asTypeOf(new SatpStruct)
422    mode := sa.mode
423    asid := sa.asid
424    ppn := Cat(0.U(44-PAddrBits), sa.ppn(PAddrBits-1, 0)).asUInt()
425    changed := DataChanged(sa.asid) // when ppn is changed, software need do the flush
426  }
427}
428
429class TlbCsrBundle(implicit p: Parameters) extends XSBundle {
430  val satp = new TlbSatpBundle()
431  val priv = new Bundle {
432    val mxr = Bool()
433    val sum = Bool()
434    val imode = UInt(2.W)
435    val dmode = UInt(2.W)
436  }
437
438  override def toPrintable: Printable = {
439    p"Satp mode:0x${Hexadecimal(satp.mode)} asid:0x${Hexadecimal(satp.asid)} ppn:0x${Hexadecimal(satp.ppn)} " +
440      p"Priv mxr:${priv.mxr} sum:${priv.sum} imode:${priv.imode} dmode:${priv.dmode}"
441  }
442}
443
444class SfenceBundle(implicit p: Parameters) extends XSBundle {
445  val valid = Bool()
446  val bits = new Bundle {
447    val rs1 = Bool()
448    val rs2 = Bool()
449    val addr = UInt(VAddrBits.W)
450    val asid = UInt(AsidLength.W)
451    val flushPipe = Bool()
452  }
453
454  override def toPrintable: Printable = {
455    p"valid:0x${Hexadecimal(valid)} rs1:${bits.rs1} rs2:${bits.rs2} addr:${Hexadecimal(bits.addr)}, flushPipe:${bits.flushPipe}"
456  }
457}
458
459// Bundle for load violation predictor updating
460class MemPredUpdateReq(implicit p: Parameters) extends XSBundle  {
461  val valid = Bool()
462
463  // wait table update
464  val waddr = UInt(MemPredPCWidth.W)
465  val wdata = Bool() // true.B by default
466
467  // store set update
468  // by default, ldpc/stpc should be xor folded
469  val ldpc = UInt(MemPredPCWidth.W)
470  val stpc = UInt(MemPredPCWidth.W)
471}
472
473class CustomCSRCtrlIO(implicit p: Parameters) extends XSBundle {
474  // Prefetcher
475  val l1I_pf_enable = Output(Bool())
476  val l2_pf_enable = Output(Bool())
477  // ICache
478  val icache_parity_enable = Output(Bool())
479  // Labeled XiangShan
480  val dsid = Output(UInt(8.W)) // TODO: DsidWidth as parameter
481  // Load violation predictor
482  val lvpred_disable = Output(Bool())
483  val no_spec_load = Output(Bool())
484  val storeset_wait_store = Output(Bool())
485  val storeset_no_fast_wakeup = Output(Bool())
486  val lvpred_timeout = Output(UInt(5.W))
487  // Branch predictor
488  val bp_ctrl = Output(new BPUCtrl)
489  // Memory Block
490  val sbuffer_threshold = Output(UInt(4.W))
491  val ldld_vio_check_enable = Output(Bool())
492  val soft_prefetch_enable = Output(Bool())
493  val cache_error_enable = Output(Bool())
494  // Rename
495  val move_elim_enable = Output(Bool())
496  // Decode
497  val svinval_enable = Output(Bool())
498
499  // distribute csr write signal
500  val distribute_csr = new DistributedCSRIO()
501
502  val singlestep = Output(Bool())
503  val frontend_trigger = new FrontendTdataDistributeIO()
504  val mem_trigger = new MemTdataDistributeIO()
505  val trigger_enable = Output(Vec(10, Bool()))
506}
507
508class DistributedCSRIO(implicit p: Parameters) extends XSBundle {
509  // CSR has been written by csr inst, copies of csr should be updated
510  val w = ValidIO(new Bundle {
511    val addr = Output(UInt(12.W))
512    val data = Output(UInt(XLEN.W))
513  })
514}
515
516class DistributedCSRUpdateReq(implicit p: Parameters) extends XSBundle {
517  // Request csr to be updated
518  //
519  // Note that this request will ONLY update CSR Module it self,
520  // copies of csr will NOT be updated, use it with care!
521  //
522  // For each cycle, no more than 1 DistributedCSRUpdateReq is valid
523  val w = ValidIO(new Bundle {
524    val addr = Output(UInt(12.W))
525    val data = Output(UInt(XLEN.W))
526  })
527  def apply(valid: Bool, addr: UInt, data: UInt, src_description: String) = {
528    when(valid){
529      w.bits.addr := addr
530      w.bits.data := data
531    }
532    println("Distributed CSR update req registered for " + src_description)
533  }
534}
535
536class L1CacheErrorInfo(implicit p: Parameters) extends XSBundle {
537  // L1CacheErrorInfo is also used to encode customized CACHE_ERROR CSR
538  val source = Output(new Bundle() {
539    val tag = Bool() // l1 tag array
540    val data = Bool() // l1 data array
541    val l2 = Bool()
542  })
543  val opType = Output(new Bundle() {
544    val fetch = Bool()
545    val load = Bool()
546    val store = Bool()
547    val probe = Bool()
548    val release = Bool()
549    val atom = Bool()
550  })
551  val paddr = Output(UInt(PAddrBits.W))
552
553  // report error and paddr to beu
554  // bus error unit will receive error info iff ecc_error.valid
555  val report_to_beu = Output(Bool())
556
557  // there is an valid error
558  // l1 cache error will always be report to CACHE_ERROR csr
559  val valid = Output(Bool())
560
561  def toL1BusErrorUnitInfo(): L1BusErrorUnitInfo = {
562    val beu_info = Wire(new L1BusErrorUnitInfo)
563    beu_info.ecc_error.valid := report_to_beu
564    beu_info.ecc_error.bits := paddr
565    beu_info
566  }
567}
568
569/* TODO how to trigger on next inst?
5701. If hit is determined at frontend, then set a "next instr" trap at dispatch like singlestep
5712. If it is determined at Load(meaning it must be "hit after", then it must not be a jump. So we can let it commit and set
572xret csr to pc + 4/ + 2
5732.5 The problem is to let it commit. This is the real TODO
5743. If it is load and hit before just treat it as regular load exception
575 */
576
577// This bundle carries trigger hit info along the pipeline
578// Now there are 10 triggers divided into 5 groups of 2
579// These groups are
580// (if if) (store store) (load loid) (if store) (if load)
581
582// Triggers in the same group can chain, meaning that they only
583// fire is both triggers in the group matches (the triggerHitVec bit is asserted)
584// Chaining of trigger No. (2i) and (2i+1) is indicated by triggerChainVec(i)
585// Timing of 0 means trap at current inst, 1 means trap at next inst
586// Chaining and timing and the validness of a trigger is controlled by csr
587// In two chained triggers, if they have different timing, both won't fire
588//class TriggerCf (implicit p: Parameters) extends XSBundle {
589//  val triggerHitVec = Vec(10, Bool())
590//  val triggerTiming = Vec(10, Bool())
591//  val triggerChainVec = Vec(5, Bool())
592//}
593
594class TriggerCf(implicit p: Parameters) extends XSBundle {
595  // frontend
596  val frontendHit = Vec(4, Bool())
597//  val frontendTiming = Vec(4, Bool())
598//  val frontendHitNext = Vec(4, Bool())
599
600//  val frontendException = Bool()
601  // backend
602  val backendEn = Vec(2, Bool()) // Hit(6) && chain(4) , Hit(8) && chain(4)
603  val backendHit = Vec(6, Bool())
604//  val backendTiming = Vec(6, Bool()) // trigger enable fro chain
605
606  // Two situations not allowed:
607  // 1. load data comparison
608  // 2. store chaining with store
609  def getHitFrontend = frontendHit.reduce(_ || _)
610  def getHitBackend = backendHit.reduce(_ || _)
611  def hit = getHitFrontend || getHitBackend
612  def clear(): Unit = {
613    frontendHit.foreach(_ := false.B)
614    backendEn.foreach(_ := false.B)
615    backendHit.foreach(_ := false.B)
616  }
617}
618
619// these 3 bundles help distribute trigger control signals from CSR
620// to Frontend, Load and Store.
621class FrontendTdataDistributeIO(implicit p: Parameters)  extends XSBundle {
622    val t = Valid(new Bundle {
623      val addr = Output(UInt(2.W))
624      val tdata = new MatchTriggerIO
625    })
626  }
627
628class MemTdataDistributeIO(implicit p: Parameters)  extends XSBundle {
629  val t = Valid(new Bundle {
630    val addr = Output(UInt(3.W))
631    val tdata = new MatchTriggerIO
632  })
633}
634
635class MatchTriggerIO(implicit p: Parameters) extends XSBundle {
636  val matchType = Output(UInt(2.W))
637  val select = Output(Bool())
638  val timing = Output(Bool())
639  val action = Output(Bool())
640  val chain = Output(Bool())
641  val tdata2 = Output(UInt(64.W))
642}
643