1package xiangshan 2 3import chisel3._ 4import chisel3.util._ 5import xiangshan.backend.SelImm 6import xiangshan.backend.roq.RoqPtr 7import xiangshan.backend.decode.{ImmUnion, XDecode} 8import xiangshan.mem.{LqPtr, SqPtr} 9import xiangshan.frontend.PreDecodeInfo 10import xiangshan.frontend.HasBPUParameter 11import xiangshan.frontend.HasTageParameter 12import xiangshan.frontend.HasSCParameter 13import xiangshan.frontend.HasIFUConst 14import xiangshan.frontend.GlobalHistory 15import xiangshan.frontend.RASEntry 16import utils._ 17 18import scala.math.max 19import Chisel.experimental.chiselName 20import xiangshan.backend.ftq.FtqPtr 21 22// Fetch FetchWidth x 32-bit insts from Icache 23class FetchPacket extends XSBundle { 24 val instrs = Vec(PredictWidth, UInt(32.W)) 25 val mask = UInt(PredictWidth.W) 26 val pdmask = UInt(PredictWidth.W) 27 // val pc = UInt(VAddrBits.W) 28 val pc = Vec(PredictWidth, UInt(VAddrBits.W)) 29 val pd = Vec(PredictWidth, new PreDecodeInfo) 30 val ipf = Bool() 31 val acf = Bool() 32 val crossPageIPFFix = Bool() 33 val pred_taken = UInt(PredictWidth.W) 34 val ftqPtr = new FtqPtr 35} 36 37class ValidUndirectioned[T <: Data](gen: T) extends Bundle { 38 val valid = Bool() 39 val bits = gen.cloneType.asInstanceOf[T] 40 41 override def cloneType = new ValidUndirectioned(gen).asInstanceOf[this.type] 42} 43 44object ValidUndirectioned { 45 def apply[T <: Data](gen: T) = { 46 new ValidUndirectioned[T](gen) 47 } 48} 49 50class SCMeta(val useSC: Boolean) extends XSBundle with HasSCParameter { 51 def maxVal = 8 * ((1 << TageCtrBits) - 1) + SCTableInfo.map { case (_, cb, _) => (1 << cb) - 1 }.reduce(_ + _) 52 53 def minVal = -(8 * (1 << TageCtrBits) + SCTableInfo.map { case (_, cb, _) => 1 << cb }.reduce(_ + _)) 54 55 def sumCtrBits = max(log2Ceil(-minVal), log2Ceil(maxVal + 1)) + 1 56 57 val tageTaken = if (useSC) Bool() else UInt(0.W) 58 val scUsed = if (useSC) Bool() else UInt(0.W) 59 val scPred = if (useSC) Bool() else UInt(0.W) 60 // Suppose ctrbits of all tables are identical 61 val ctrs = if (useSC) Vec(SCNTables, SInt(SCCtrBits.W)) else Vec(SCNTables, SInt(0.W)) 62 val sumAbs = if (useSC) UInt(sumCtrBits.W) else UInt(0.W) 63} 64 65class TageMeta extends XSBundle with HasTageParameter { 66 val provider = ValidUndirectioned(UInt(log2Ceil(TageNTables).W)) 67 val altDiffers = Bool() 68 val providerU = UInt(2.W) 69 val providerCtr = UInt(3.W) 70 val allocate = ValidUndirectioned(UInt(log2Ceil(TageNTables).W)) 71 val taken = Bool() 72 val scMeta = new SCMeta(EnableSC) 73} 74 75@chiselName 76class BranchPrediction extends XSBundle with HasIFUConst { 77 // val redirect = Bool() 78 val takens = UInt(PredictWidth.W) 79 // val jmpIdx = UInt(log2Up(PredictWidth).W) 80 val brMask = UInt(PredictWidth.W) 81 val jalMask = UInt(PredictWidth.W) 82 val targets = Vec(PredictWidth, UInt(VAddrBits.W)) 83 84 // half RVI could only start at the end of a packet 85 val hasHalfRVI = Bool() 86 87 def brNotTakens = (~takens & brMask) 88 89 def sawNotTakenBr = VecInit((0 until PredictWidth).map(i => 90 (if (i == 0) false.B else ParallelORR(brNotTakens(i - 1, 0))))) 91 92 // if not taken before the half RVI inst 93 def saveHalfRVI = hasHalfRVI && !(ParallelORR(takens(PredictWidth - 2, 0))) 94 95 // could get PredictWidth-1 when only the first bank is valid 96 def jmpIdx = ParallelPriorityEncoder(takens) 97 98 // only used when taken 99 def target = { 100 val generator = new PriorityMuxGenerator[UInt] 101 generator.register(takens.asBools, targets, List.fill(PredictWidth)(None)) 102 generator() 103 } 104 105 def taken = ParallelORR(takens) 106 107 def takenOnBr = taken && ParallelPriorityMux(takens, brMask.asBools) 108 109 def hasNotTakenBrs = Mux(taken, ParallelPriorityMux(takens, sawNotTakenBr), ParallelORR(brNotTakens)) 110} 111 112class PredictorAnswer extends XSBundle { 113 val hit = if (!env.FPGAPlatform) Bool() else UInt(0.W) 114 val taken = if (!env.FPGAPlatform) Bool() else UInt(0.W) 115 val target = if (!env.FPGAPlatform) UInt(VAddrBits.W) else UInt(0.W) 116} 117 118class BpuMeta extends XSBundle with HasBPUParameter { 119 val ubtbWriteWay = UInt(log2Up(UBtbWays).W) 120 val ubtbHits = Bool() 121 val btbWriteWay = UInt(log2Up(BtbWays).W) 122 val bimCtr = UInt(2.W) 123 val tageMeta = new TageMeta 124 // for global history 125 126 val debug_ubtb_cycle = if (EnableBPUTimeRecord) UInt(64.W) else UInt(0.W) 127 val debug_btb_cycle = if (EnableBPUTimeRecord) UInt(64.W) else UInt(0.W) 128 val debug_tage_cycle = if (EnableBPUTimeRecord) UInt(64.W) else UInt(0.W) 129 130 val predictor = if (BPUDebug) UInt(log2Up(4).W) else UInt(0.W) // Mark which component this prediction comes from {ubtb, btb, tage, loopPredictor} 131 132 val ubtbAns = new PredictorAnswer 133 val btbAns = new PredictorAnswer 134 val tageAns = new PredictorAnswer 135 val rasAns = new PredictorAnswer 136 val loopAns = new PredictorAnswer 137 138 // def apply(histPtr: UInt, tageMeta: TageMeta, rasSp: UInt, rasTopCtr: UInt) = { 139 // this.histPtr := histPtr 140 // this.tageMeta := tageMeta 141 // this.rasSp := rasSp 142 // this.rasTopCtr := rasTopCtr 143 // this.asUInt 144 // } 145 def size = 0.U.asTypeOf(this).getWidth 146 147 def fromUInt(x: UInt) = x.asTypeOf(this) 148} 149 150class Predecode extends XSBundle with HasIFUConst { 151 val hasLastHalfRVI = Bool() 152 val mask = UInt(PredictWidth.W) 153 val lastHalf = Bool() 154 val pd = Vec(PredictWidth, (new PreDecodeInfo)) 155} 156 157class CfiUpdateInfo extends XSBundle with HasBPUParameter { 158 // from backend 159 val pc = UInt(VAddrBits.W) 160 // frontend -> backend -> frontend 161 val pd = new PreDecodeInfo 162 val rasSp = UInt(log2Up(RasSize).W) 163 val rasEntry = new RASEntry 164 val hist = new GlobalHistory 165 val predHist = new GlobalHistory 166 val specCnt = Vec(PredictWidth, UInt(10.W)) 167 // need pipeline update 168 val sawNotTakenBranch = Bool() 169 val predTaken = Bool() 170 val target = UInt(VAddrBits.W) 171 val taken = Bool() 172 val isMisPred = Bool() 173} 174 175// Dequeue DecodeWidth insts from Ibuffer 176class CtrlFlow extends XSBundle { 177 val instr = UInt(32.W) 178 val pc = UInt(VAddrBits.W) 179 val exceptionVec = ExceptionVec() 180 val intrVec = Vec(12, Bool()) 181 val pd = new PreDecodeInfo 182 val pred_taken = Bool() 183 val crossPageIPFFix = Bool() 184 val ftqPtr = new FtqPtr 185 val ftqOffset = UInt(log2Up(PredictWidth).W) 186} 187 188class FtqEntry extends XSBundle { 189 // fetch pc, pc of each inst could be generated by concatenation 190 val ftqPC = UInt(VAddrBits.W) 191 val lastPacketPC = ValidUndirectioned(UInt(VAddrBits.W)) 192 // prediction metas 193 val hist = new GlobalHistory 194 val predHist = new GlobalHistory 195 val rasSp = UInt(log2Ceil(RasSize).W) 196 val rasTop = new RASEntry() 197 val specCnt = Vec(PredictWidth, UInt(10.W)) 198 val metas = Vec(PredictWidth, new BpuMeta) 199 200 val cfiIsCall, cfiIsRet, cfiIsRVC = Bool() 201 val rvc_mask = Vec(PredictWidth, Bool()) 202 val br_mask = Vec(PredictWidth, Bool()) 203 val cfiIndex = ValidUndirectioned(UInt(log2Up(PredictWidth).W)) 204 val valids = Vec(PredictWidth, Bool()) 205 206 // backend update 207 val mispred = Vec(PredictWidth, Bool()) 208 val target = UInt(VAddrBits.W) 209 210 def takens = VecInit((0 until PredictWidth).map(i => cfiIndex.valid && cfiIndex.bits === i.U)) 211 def hasLastPrev = lastPacketPC.valid 212 213 override def toPrintable: Printable = { 214 p"ftqPC: ${Hexadecimal(ftqPC)} lastPacketPC: ${Hexadecimal(lastPacketPC.bits)} hasLastPrev:$hasLastPrev " + 215 p"rasSp:$rasSp specCnt:$specCnt brmask:${Binary(Cat(br_mask))} rvcmask:${Binary(Cat(rvc_mask))} " + 216 p"valids:${Binary(valids.asUInt())} cfi valid: ${cfiIndex.valid} " + 217 p"cfi index: ${cfiIndex.bits} isCall:$cfiIsCall isRet:$cfiIsRet isRvc:$cfiIsRVC " + 218 p"mispred:${Binary(Cat(mispred))} target:${Hexadecimal(target)}\n" 219 } 220 221} 222 223 224class FPUCtrlSignals extends XSBundle { 225 val isAddSub = Bool() // swap23 226 val typeTagIn = UInt(2.W) 227 val typeTagOut = UInt(2.W) 228 val fromInt = Bool() 229 val wflags = Bool() 230 val fpWen = Bool() 231 val fmaCmd = UInt(2.W) 232 val div = Bool() 233 val sqrt = Bool() 234 val fcvt = Bool() 235 val typ = UInt(2.W) 236 val fmt = UInt(2.W) 237 val ren3 = Bool() //TODO: remove SrcType.fp 238 val rm = UInt(3.W) 239} 240 241// Decode DecodeWidth insts at Decode Stage 242class CtrlSignals extends XSBundle { 243 val src1Type, src2Type, src3Type = SrcType() 244 val lsrc1, lsrc2, lsrc3 = UInt(5.W) 245 val ldest = UInt(5.W) 246 val fuType = FuType() 247 val fuOpType = FuOpType() 248 val rfWen = Bool() 249 val fpWen = Bool() 250 val isXSTrap = Bool() 251 val noSpecExec = Bool() // wait forward 252 val blockBackward = Bool() // block backward 253 val flushPipe = Bool() // This inst will flush all the pipe when commit, like exception but can commit 254 val isRVF = Bool() 255 val selImm = SelImm() 256 val imm = UInt(ImmUnion.maxLen.W) 257 val commitType = CommitType() 258 val fpu = new FPUCtrlSignals 259 260 def decode(inst: UInt, table: Iterable[(BitPat, List[BitPat])]) = { 261 val decoder = freechips.rocketchip.rocket.DecodeLogic(inst, XDecode.decodeDefault, table) 262 val signals = 263 Seq(src1Type, src2Type, src3Type, fuType, fuOpType, rfWen, fpWen, 264 isXSTrap, noSpecExec, blockBackward, flushPipe, isRVF, selImm) 265 signals zip decoder map { case (s, d) => s := d } 266 commitType := DontCare 267 this 268 } 269} 270 271class CfCtrl extends XSBundle { 272 val cf = new CtrlFlow 273 val ctrl = new CtrlSignals 274} 275 276class PerfDebugInfo extends XSBundle { 277 // val fetchTime = UInt(64.W) 278 val renameTime = UInt(64.W) 279 val dispatchTime = UInt(64.W) 280 val issueTime = UInt(64.W) 281 val writebackTime = UInt(64.W) 282 // val commitTime = UInt(64.W) 283} 284 285// Separate LSQ 286class LSIdx extends XSBundle { 287 val lqIdx = new LqPtr 288 val sqIdx = new SqPtr 289} 290 291// CfCtrl -> MicroOp at Rename Stage 292class MicroOp extends CfCtrl { 293 val psrc1, psrc2, psrc3, pdest, old_pdest = UInt(PhyRegIdxWidth.W) 294 val src1State, src2State, src3State = SrcState() 295 val roqIdx = new RoqPtr 296 val lqIdx = new LqPtr 297 val sqIdx = new SqPtr 298 val diffTestDebugLrScValid = Bool() 299 val debugInfo = new PerfDebugInfo 300} 301 302class Redirect extends XSBundle { 303 val roqIdx = new RoqPtr 304 val ftqIdx = new FtqPtr 305 val ftqOffset = UInt(log2Up(PredictWidth).W) 306 val level = RedirectLevel() 307 val interrupt = Bool() 308 val cfiUpdate = new CfiUpdateInfo 309 310 311 // def isUnconditional() = RedirectLevel.isUnconditional(level) 312 def flushItself() = RedirectLevel.flushItself(level) 313 // def isException() = RedirectLevel.isException(level) 314} 315 316class Dp1ToDp2IO extends XSBundle { 317 val intDqToDp2 = Vec(dpParams.IntDqDeqWidth, DecoupledIO(new MicroOp)) 318 val fpDqToDp2 = Vec(dpParams.FpDqDeqWidth, DecoupledIO(new MicroOp)) 319 val lsDqToDp2 = Vec(dpParams.LsDqDeqWidth, DecoupledIO(new MicroOp)) 320} 321 322class ReplayPregReq extends XSBundle { 323 // NOTE: set isInt and isFp both to 'false' when invalid 324 val isInt = Bool() 325 val isFp = Bool() 326 val preg = UInt(PhyRegIdxWidth.W) 327} 328 329class DebugBundle extends XSBundle { 330 val isMMIO = Bool() 331 val isPerfCnt = Bool() 332 val paddr = UInt(PAddrBits.W) 333} 334 335class ExuInput extends XSBundle { 336 val uop = new MicroOp 337 val src1, src2, src3 = UInt((XLEN + 1).W) 338} 339 340class ExuOutput extends XSBundle { 341 val uop = new MicroOp 342 val data = UInt((XLEN + 1).W) 343 val fflags = UInt(5.W) 344 val redirectValid = Bool() 345 val redirect = new Redirect 346 val debug = new DebugBundle 347} 348 349class ExternalInterruptIO extends XSBundle { 350 val mtip = Input(Bool()) 351 val msip = Input(Bool()) 352 val meip = Input(Bool()) 353} 354 355class CSRSpecialIO extends XSBundle { 356 val exception = Flipped(ValidIO(new MicroOp)) 357 val isInterrupt = Input(Bool()) 358 val memExceptionVAddr = Input(UInt(VAddrBits.W)) 359 val trapTarget = Output(UInt(VAddrBits.W)) 360 val externalInterrupt = new ExternalInterruptIO 361 val interrupt = Output(Bool()) 362} 363 364class ExceptionInfo extends XSBundle { 365 val uop = new MicroOp 366 val isInterrupt = Bool() 367} 368 369class RoqCommitInfo extends XSBundle { 370 val ldest = UInt(5.W) 371 val rfWen = Bool() 372 val fpWen = Bool() 373 val wflags = Bool() 374 val commitType = CommitType() 375 val pdest = UInt(PhyRegIdxWidth.W) 376 val old_pdest = UInt(PhyRegIdxWidth.W) 377 val ftqIdx = new FtqPtr 378 val ftqOffset = UInt(log2Up(PredictWidth).W) 379 380 // these should be optimized for synthesis verilog 381 val pc = UInt(VAddrBits.W) 382} 383 384class RoqCommitIO extends XSBundle { 385 val isWalk = Output(Bool()) 386 val valid = Vec(CommitWidth, Output(Bool())) 387 val info = Vec(CommitWidth, Output(new RoqCommitInfo)) 388 389 def hasWalkInstr = isWalk && valid.asUInt.orR 390 391 def hasCommitInstr = !isWalk && valid.asUInt.orR 392} 393 394class TlbFeedback extends XSBundle { 395 val rsIdx = UInt(log2Up(IssQueSize).W) 396 val hit = Bool() 397} 398 399class RSFeedback extends TlbFeedback 400 401class FrontendToBackendIO extends XSBundle { 402 // to backend end 403 val cfVec = Vec(DecodeWidth, DecoupledIO(new CtrlFlow)) 404 val fetchInfo = DecoupledIO(new FtqEntry) 405 // from backend 406 val redirect_cfiUpdate = Flipped(ValidIO(new Redirect)) 407 val commit_cfiUpdate = Flipped(ValidIO(new FtqEntry)) 408 val ftqEnqPtr = Input(new FtqPtr) 409 val ftqLeftOne = Input(Bool()) 410} 411 412class TlbCsrBundle extends XSBundle { 413 val satp = new Bundle { 414 val mode = UInt(4.W) // TODO: may change number to parameter 415 val asid = UInt(16.W) 416 val ppn = UInt(44.W) // just use PAddrBits - 3 - vpnnLen 417 } 418 val priv = new Bundle { 419 val mxr = Bool() 420 val sum = Bool() 421 val imode = UInt(2.W) 422 val dmode = UInt(2.W) 423 } 424 425 override def toPrintable: Printable = { 426 p"Satp mode:0x${Hexadecimal(satp.mode)} asid:0x${Hexadecimal(satp.asid)} ppn:0x${Hexadecimal(satp.ppn)} " + 427 p"Priv mxr:${priv.mxr} sum:${priv.sum} imode:${priv.imode} dmode:${priv.dmode}" 428 } 429} 430 431class SfenceBundle extends XSBundle { 432 val valid = Bool() 433 val bits = new Bundle { 434 val rs1 = Bool() 435 val rs2 = Bool() 436 val addr = UInt(VAddrBits.W) 437 } 438 439 override def toPrintable: Printable = { 440 p"valid:0x${Hexadecimal(valid)} rs1:${bits.rs1} rs2:${bits.rs2} addr:${Hexadecimal(bits.addr)}" 441 } 442} 443 444class DifftestBundle extends XSBundle { 445 val fromSbuffer = new Bundle() { 446 val sbufferResp = Output(Bool()) 447 val sbufferAddr = Output(UInt(64.W)) 448 val sbufferData = Output(Vec(64, UInt(8.W))) 449 val sbufferMask = Output(UInt(64.W)) 450 } 451 val fromSQ = new Bundle() { 452 val storeCommit = Output(UInt(2.W)) 453 val storeAddr = Output(Vec(2, UInt(64.W))) 454 val storeData = Output(Vec(2, UInt(64.W))) 455 val storeMask = Output(Vec(2, UInt(8.W))) 456 } 457 val fromXSCore = new Bundle() { 458 val r = Output(Vec(64, UInt(XLEN.W))) 459 } 460 val fromCSR = new Bundle() { 461 val intrNO = Output(UInt(64.W)) 462 val cause = Output(UInt(64.W)) 463 val priviledgeMode = Output(UInt(2.W)) 464 val mstatus = Output(UInt(64.W)) 465 val sstatus = Output(UInt(64.W)) 466 val mepc = Output(UInt(64.W)) 467 val sepc = Output(UInt(64.W)) 468 val mtval = Output(UInt(64.W)) 469 val stval = Output(UInt(64.W)) 470 val mtvec = Output(UInt(64.W)) 471 val stvec = Output(UInt(64.W)) 472 val mcause = Output(UInt(64.W)) 473 val scause = Output(UInt(64.W)) 474 val satp = Output(UInt(64.W)) 475 val mip = Output(UInt(64.W)) 476 val mie = Output(UInt(64.W)) 477 val mscratch = Output(UInt(64.W)) 478 val sscratch = Output(UInt(64.W)) 479 val mideleg = Output(UInt(64.W)) 480 val medeleg = Output(UInt(64.W)) 481 } 482 val fromRoq = new Bundle() { 483 val commit = Output(UInt(32.W)) 484 val thisPC = Output(UInt(XLEN.W)) 485 val thisINST = Output(UInt(32.W)) 486 val skip = Output(UInt(32.W)) 487 val wen = Output(UInt(32.W)) 488 val wdata = Output(Vec(CommitWidth, UInt(XLEN.W))) // set difftest width to 6 489 val wdst = Output(Vec(CommitWidth, UInt(32.W))) // set difftest width to 6 490 val wpc = Output(Vec(CommitWidth, UInt(XLEN.W))) // set difftest width to 6 491 val lpaddr = Output(Vec(CommitWidth, UInt(64.W))) 492 val ltype = Output(Vec(CommitWidth, UInt(32.W))) 493 val lfu = Output(Vec(CommitWidth, UInt(4.W))) 494 val isRVC = Output(UInt(32.W)) 495 val scFailed = Output(Bool()) 496 } 497 val fromAtomic = new Bundle() { 498 val atomicResp = Output(Bool()) 499 val atomicAddr = Output(UInt(64.W)) 500 val atomicData = Output(UInt(64.W)) 501 val atomicMask = Output(UInt(8.W)) 502 val atomicFuop = Output(UInt(8.W)) 503 val atomicOut = Output(UInt(64.W)) 504 } 505 val fromPtw = new Bundle() { 506 val ptwResp = Output(Bool()) 507 val ptwAddr = Output(UInt(64.W)) 508 val ptwData = Output(Vec(4, UInt(64.W))) 509 } 510} 511 512class TrapIO extends XSBundle { 513 val valid = Output(Bool()) 514 val code = Output(UInt(3.W)) 515 val pc = Output(UInt(VAddrBits.W)) 516 val cycleCnt = Output(UInt(XLEN.W)) 517 val instrCnt = Output(UInt(XLEN.W)) 518}