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.frontend 18 19import chipsalliance.rocketchip.config.Parameters 20import chisel3._ 21import chisel3.experimental.chiselName 22import chisel3.util._ 23import xiangshan._ 24import utils._ 25 26import scala.math.min 27 28trait HasBPUConst extends HasXSParameter { 29 val MaxMetaLength = 512 // TODO: Reduce meta length 30 val MaxBasicBlockSize = 32 31 val LHistoryLength = 32 32 // val numBr = 2 33 val useBPD = true 34 val useLHist = true 35 val numBrSlot = numBr-1 36 val totalSlot = numBrSlot + 1 37 38 def BP_STAGES = (0 until 2).map(_.U(2.W)) 39 def BP_S1 = BP_STAGES(0) 40 def BP_S2 = BP_STAGES(1) 41 // def BP_S3 = BP_STAGES(2) 42 val numBpStages = BP_STAGES.length 43 44 val debug = true 45 val resetVector = 0x10000000L 46 // TODO: Replace log2Up by log2Ceil 47} 48 49trait HasBPUParameter extends HasXSParameter with HasBPUConst { 50 val BPUDebug = true && !env.FPGAPlatform && env.EnablePerfDebug 51 val EnableCFICommitLog = true 52 val EnbaleCFIPredLog = true 53 val EnableBPUTimeRecord = (EnableCFICommitLog || EnbaleCFIPredLog) && !env.FPGAPlatform 54 val EnableCommit = false 55} 56 57class BPUCtrl(implicit p: Parameters) extends XSBundle { 58 val ubtb_enable = Bool() 59 val btb_enable = Bool() 60 val bim_enable = Bool() 61 val tage_enable = Bool() 62 val sc_enable = Bool() 63 val ras_enable = Bool() 64 val loop_enable = Bool() 65} 66 67trait BPUUtils extends HasXSParameter { 68 // circular shifting 69 def circularShiftLeft(source: UInt, len: Int, shamt: UInt): UInt = { 70 val res = Wire(UInt(len.W)) 71 val higher = source << shamt 72 val lower = source >> (len.U - shamt) 73 res := higher | lower 74 res 75 } 76 77 def circularShiftRight(source: UInt, len: Int, shamt: UInt): UInt = { 78 val res = Wire(UInt(len.W)) 79 val higher = source << (len.U - shamt) 80 val lower = source >> shamt 81 res := higher | lower 82 res 83 } 84 85 // To be verified 86 def satUpdate(old: UInt, len: Int, taken: Bool): UInt = { 87 val oldSatTaken = old === ((1 << len)-1).U 88 val oldSatNotTaken = old === 0.U 89 Mux(oldSatTaken && taken, ((1 << len)-1).U, 90 Mux(oldSatNotTaken && !taken, 0.U, 91 Mux(taken, old + 1.U, old - 1.U))) 92 } 93 94 def signedSatUpdate(old: SInt, len: Int, taken: Bool): SInt = { 95 val oldSatTaken = old === ((1 << (len-1))-1).S 96 val oldSatNotTaken = old === (-(1 << (len-1))).S 97 Mux(oldSatTaken && taken, ((1 << (len-1))-1).S, 98 Mux(oldSatNotTaken && !taken, (-(1 << (len-1))).S, 99 Mux(taken, old + 1.S, old - 1.S))) 100 } 101 102 def getFallThroughAddr(start: UInt, carry: Bool, pft: UInt) = { 103 val higher = start.head(VAddrBits-log2Ceil(PredictWidth)-instOffsetBits-1) 104 Cat(Mux(carry, higher+1.U, higher), pft, 0.U(instOffsetBits.W)) 105 } 106 107 def foldTag(tag: UInt, l: Int): UInt = { 108 val nChunks = (tag.getWidth + l - 1) / l 109 val chunks = (0 until nChunks).map { i => 110 tag(min((i+1)*l, tag.getWidth)-1, i*l) 111 } 112 ParallelXOR(chunks) 113 } 114} 115 116// class BranchPredictionUpdate(implicit p: Parameters) extends XSBundle with HasBPUConst { 117// val pc = UInt(VAddrBits.W) 118// val br_offset = Vec(num_br, UInt(log2Up(MaxBasicBlockSize).W)) 119// val br_mask = Vec(MaxBasicBlockSize, Bool()) 120// 121// val jmp_valid = Bool() 122// val jmp_type = UInt(3.W) 123// 124// val is_NextMask = Vec(FetchWidth*2, Bool()) 125// 126// val cfi_idx = Valid(UInt(log2Ceil(MaxBasicBlockSize).W)) 127// val cfi_mispredict = Bool() 128// val cfi_is_br = Bool() 129// val cfi_is_jal = Bool() 130// val cfi_is_jalr = Bool() 131// 132// val ghist = new ShiftingGlobalHistory() 133// 134// val target = UInt(VAddrBits.W) 135// 136// val meta = UInt(MaxMetaLength.W) 137// val spec_meta = UInt(MaxMetaLength.W) 138// 139// def taken = cfi_idx.valid 140// } 141 142class AllFoldedHistories(val gen: Seq[Tuple2[Int, Int]])(implicit p: Parameters) extends XSBundle with HasBPUConst { 143 val hist = MixedVec(gen.map{case (l, cl) => new FoldedHistory(l, cl, numBr)}) 144 // println(gen.mkString) 145 require(gen.toSet.toList.equals(gen)) 146 def getHistWithInfo(info: Tuple2[Int, Int]) = { 147 val selected = hist.filter(_.info.equals(info)) 148 require(selected.length == 1) 149 selected(0) 150 } 151 def autoConnectFrom(that: AllFoldedHistories) = { 152 require(this.hist.length <= that.hist.length) 153 for (h <- this.hist) { 154 h := that.getHistWithInfo(h.info) 155 } 156 } 157 def update(ghv: Vec[Bool], ptr: CGHPtr, shift: Int, taken: Bool): AllFoldedHistories = { 158 val res = WireInit(this) 159 for (i <- 0 until this.hist.length) { 160 res.hist(i) := this.hist(i).update(ghv, ptr, shift, taken) 161 } 162 res 163 } 164 165 def display(cond: Bool) = { 166 for (h <- hist) { 167 XSDebug(cond, p"hist len ${h.len}, folded len ${h.compLen}, value ${Binary(h.folded_hist)}\n") 168 } 169 } 170} 171 172class BasePredictorInput (implicit p: Parameters) extends XSBundle with HasBPUConst { 173 def nInputs = 1 174 175 val s0_pc = UInt(VAddrBits.W) 176 177 val folded_hist = new AllFoldedHistories(foldedGHistInfos) 178 179 val resp_in = Vec(nInputs, new BranchPredictionResp) 180 181 // val final_preds = Vec(numBpStages, new) 182 // val toFtq_fire = Bool() 183 184 // val s0_all_ready = Bool() 185} 186 187class BasePredictorOutput (implicit p: Parameters) extends XSBundle with HasBPUConst { 188 val last_stage_meta = UInt(MaxMetaLength.W) // This is use by composer 189 val resp = new BranchPredictionResp 190 191 // These store in meta, extract in composer 192 // val rasSp = UInt(log2Ceil(RasSize).W) 193 // val rasTop = new RASEntry 194 // val specCnt = Vec(PredictWidth, UInt(10.W)) 195} 196 197class BasePredictorIO (implicit p: Parameters) extends XSBundle with HasBPUConst { 198 val in = Flipped(DecoupledIO(new BasePredictorInput)) // TODO: Remove DecoupledIO 199 // val out = DecoupledIO(new BasePredictorOutput) 200 val out = Output(new BasePredictorOutput) 201 // val flush_out = Valid(UInt(VAddrBits.W)) 202 203 // val ctrl = Input(new BPUCtrl()) 204 205 val s0_fire = Input(Bool()) 206 val s1_fire = Input(Bool()) 207 val s2_fire = Input(Bool()) 208 209 val s1_ready = Output(Bool()) 210 val s2_ready = Output(Bool()) 211 212 val update = Flipped(Valid(new BranchPredictionUpdate)) 213 val redirect = Flipped(Valid(new BranchPredictionRedirect)) 214} 215 216abstract class BasePredictor(implicit p: Parameters) extends XSModule with HasBPUConst with BPUUtils { 217 val meta_size = 0 218 val spec_meta_size = 0 219 val io = IO(new BasePredictorIO()) 220 221 io.out.resp := io.in.bits.resp_in(0) 222 223 io.out.last_stage_meta := 0.U 224 225 io.in.ready := !io.redirect.valid 226 227 io.s1_ready := true.B 228 io.s2_ready := true.B 229 230 val s0_pc = WireInit(io.in.bits.s0_pc) // fetchIdx(io.f0_pc) 231 val s1_pc = RegEnable(s0_pc, resetVector.U, io.s0_fire) 232 val s2_pc = RegEnable(s1_pc, io.s1_fire) 233 234 io.out.resp.s1.pc := s1_pc 235 io.out.resp.s2.pc := s2_pc 236 237 238 def getFoldedHistoryInfo: Option[Set[FoldedHistoryInfo]] = None 239} 240 241class FakePredictor(implicit p: Parameters) extends BasePredictor { 242 io.in.ready := true.B 243 io.out.last_stage_meta := 0.U 244 io.out.resp := io.in.bits.resp_in(0) 245} 246 247class BpuToFtqIO(implicit p: Parameters) extends XSBundle { 248 val resp = DecoupledIO(new BpuToFtqBundle()) 249} 250 251class PredictorIO(implicit p: Parameters) extends XSBundle { 252 val bpu_to_ftq = new BpuToFtqIO() 253 val ftq_to_bpu = Flipped(new FtqToBpuIO()) 254} 255 256@chiselName 257class Predictor(implicit p: Parameters) extends XSModule with HasBPUConst with HasPerfEvents { 258 val io = IO(new PredictorIO) 259 260 val predictors = Module(if (useBPD) new Composer else new FakePredictor) 261 262 val folded_hist_infos = predictors.getFoldedHistoryInfo.getOrElse(Set()).toList 263 for ((len, compLen) <- folded_hist_infos) { 264 println(f"folded hist info: len $len, compLen $compLen") 265 } 266 267 val s0_fire, s1_fire, s2_fire = Wire(Bool()) 268 val s1_valid, s2_valid = RegInit(false.B) 269 val s1_ready, s2_ready = Wire(Bool()) 270 val s1_components_ready, s2_components_ready = Wire(Bool()) 271 272 val s0_pc = WireInit(resetVector.U) 273 val s0_pc_reg = RegNext(s0_pc, init=resetVector.U) 274 val s1_pc = RegEnable(s0_pc, s0_fire) 275 val s2_pc = RegEnable(s1_pc, s1_fire) 276 277 val s0_folded_gh = Wire(new AllFoldedHistories(foldedGHistInfos)) 278 val s0_folded_gh_reg = RegNext(s0_folded_gh, init=0.U.asTypeOf(s0_folded_gh)) 279 val s1_folded_gh = RegEnable(s0_folded_gh, 0.U.asTypeOf(s0_folded_gh), s0_fire) 280 val s2_folded_gh = RegEnable(s1_folded_gh, 0.U.asTypeOf(s0_folded_gh), s1_fire) 281 282 val npcGen = new PhyPriorityMuxGenerator[UInt] 283 val foldedGhGen = new PhyPriorityMuxGenerator[AllFoldedHistories] 284 val ghistPtrGen = new PhyPriorityMuxGenerator[CGHPtr] 285 val ghvBitWriteGens = Seq.tabulate(HistoryLength)(n => new PhyPriorityMuxGenerator[Bool]) 286 287 val ghv = RegInit(0.U.asTypeOf(Vec(HistoryLength, Bool()))) 288 val ghv_wire = WireInit(ghv) 289 290 val ghv_write_datas = Wire(Vec(HistoryLength, Bool())) 291 val ghv_wens = Wire(Vec(HistoryLength, Bool())) 292 293 val s0_ghist_ptr = Wire(new CGHPtr) 294 val s0_ghist_ptr_reg = RegNext(s0_ghist_ptr, init=0.U.asTypeOf(new CGHPtr)) 295 val s1_ghist_ptr = RegEnable(s0_ghist_ptr, 0.U.asTypeOf(new CGHPtr), s0_fire) 296 val s2_ghist_ptr = RegEnable(s1_ghist_ptr, 0.U.asTypeOf(new CGHPtr), s1_fire) 297 298 val resp = predictors.io.out.resp 299 300 301 val toFtq_fire = io.bpu_to_ftq.resp.valid && io.bpu_to_ftq.resp.ready 302 303 val s1_flush, s2_flush = Wire(Bool()) 304 val s2_redirect = Wire(Bool()) 305 306 // predictors.io := DontCare 307 predictors.io.in.valid := s0_fire 308 predictors.io.in.bits.s0_pc := s0_pc 309 predictors.io.in.bits.folded_hist := s0_folded_gh 310 predictors.io.in.bits.resp_in(0) := (0.U).asTypeOf(new BranchPredictionResp) 311 // predictors.io.in.bits.resp_in(0).s1.pc := s0_pc 312 // predictors.io.in.bits.toFtq_fire := toFtq_fire 313 314 // predictors.io.out.ready := io.bpu_to_ftq.resp.ready 315 316 // Pipeline logic 317 s2_redirect := false.B 318 319 s2_flush := io.ftq_to_bpu.redirect.valid 320 s1_flush := s2_flush || s2_redirect 321 322 s1_components_ready := predictors.io.s1_ready 323 s1_ready := s1_fire || !s1_valid 324 s0_fire := !reset.asBool && s1_components_ready && s1_ready 325 predictors.io.s0_fire := s0_fire 326 327 s2_components_ready := predictors.io.s2_ready 328 s2_ready := s2_fire || !s2_valid 329 s1_fire := s1_valid && s2_components_ready && s2_ready && io.bpu_to_ftq.resp.ready 330 331 when(s0_fire) { s1_valid := true.B } 332 .elsewhen(s1_flush) { s1_valid := false.B } 333 .elsewhen(s1_fire) { s1_valid := false.B } 334 335 predictors.io.s1_fire := s1_fire 336 337 s2_fire := s2_valid 338 339 when(s2_flush) { s2_valid := false.B } 340 .elsewhen(s1_fire) { s2_valid := !s1_flush } 341 .elsewhen(s2_fire) { s2_valid := false.B } 342 343 predictors.io.s2_fire := s2_fire 344 345 346 io.bpu_to_ftq.resp.valid := 347 s1_valid && s2_components_ready && s2_ready || 348 s2_fire && s2_redirect 349 io.bpu_to_ftq.resp.bits := BpuToFtqBundle(predictors.io.out.resp) 350 io.bpu_to_ftq.resp.bits.meta := predictors.io.out.last_stage_meta // TODO: change to lastStageMeta 351 io.bpu_to_ftq.resp.bits.s2.folded_hist := s2_folded_gh 352 io.bpu_to_ftq.resp.bits.s2.histPtr := s2_ghist_ptr 353 354 npcGen.register(true.B, s0_pc_reg, Some("stallPC"), 0) 355 foldedGhGen.register(true.B, s0_folded_gh_reg, Some("stallFGH"), 0) 356 ghistPtrGen.register(true.B, s0_ghist_ptr_reg, Some("stallGHPtr"), 0) 357 358 // History manage 359 // s1 360 val s1_possible_predicted_ghist_ptrs = (0 to numBr).map(s1_ghist_ptr - _.U) 361 val s1_predicted_ghist_ptr = Mux1H(resp.s1.lastBrPosOH, s1_possible_predicted_ghist_ptrs) 362 363 val s1_possible_predicted_fhs = (0 to numBr).map(i => 364 s1_folded_gh.update(ghv, s1_ghist_ptr, i, if (i > 0) resp.s1.taken && resp.s1.lastBrPosOH(i-1) else false.B)) 365 val s1_predicted_fh = Mux1H(resp.s1.lastBrPosOH, s1_possible_predicted_fhs) 366 367 require(isPow2(HistoryLength)) 368 val s1_ghv_wens = (0 until HistoryLength).map(n => 369 (0 until numBr).map(b => (s1_ghist_ptr).value === n.U(log2Ceil(HistoryLength).W) + b.U && resp.s1.shouldShiftVec(b) && s1_valid)) 370 val s1_ghv_wdatas = (0 until HistoryLength).map(n => 371 Mux1H( 372 (0 until numBr).map(b => ( 373 (s1_ghist_ptr).value === n.U(log2Ceil(HistoryLength).W) + b.U && resp.s1.shouldShiftVec(b), 374 resp.s1.brTaken && resp.s1.lastBrPosOH(b+1) 375 )) 376 ) 377 ) 378 379 380 npcGen.register(s1_valid, resp.s1.getTarget, Some("s1_target"), 5) 381 foldedGhGen.register(s1_valid, s1_predicted_fh, Some("s1_FGH"), 5) 382 ghistPtrGen.register(s1_valid, s1_predicted_ghist_ptr, Some("s1_GHPtr"), 5) 383 ghvBitWriteGens.zip(s1_ghv_wens).zipWithIndex.map{case ((b, w), i) => 384 b.register(w.reduce(_||_), s1_ghv_wdatas(i), Some(s"s1_new_bit_$i"), 5) 385 } 386 387 def preds_needs_redirect_vec(x: BranchPredictionBundle, y: BranchPredictionBundle) = { 388 VecInit( 389 x.getTarget =/= y.getTarget, 390 x.lastBrPosOH.asUInt =/= y.lastBrPosOH.asUInt, 391 x.taken =/= y.taken, 392 (x.taken && y.taken) && x.cfiIndex.bits =/= y.cfiIndex.bits 393 ) 394 } 395 396 // s2 397 val s2_possible_predicted_ghist_ptrs = (0 to numBr).map(s2_ghist_ptr - _.U) 398 val s2_predicted_ghist_ptr = Mux1H(resp.s2.lastBrPosOH, s2_possible_predicted_ghist_ptrs) 399 400 val s2_possible_predicted_fhs = (0 to numBr).map(i => 401 s2_folded_gh.update(ghv, s2_ghist_ptr, i, if (i > 0) resp.s2.full_pred.br_taken_mask(i-1) else false.B)) 402 val s2_predicted_fh = Mux1H(resp.s2.lastBrPosOH, s2_possible_predicted_fhs) 403 404 val s2_ghv_wens = (0 until HistoryLength).map(n => 405 (0 until numBr).map(b => (s2_ghist_ptr).value === n.U(log2Ceil(HistoryLength).W) + b.U && resp.s2.shouldShiftVec(b) && s2_redirect)) 406 val s2_ghv_wdatas = (0 until HistoryLength).map(n => 407 Mux1H( 408 (0 until numBr).map(b => ( 409 (s2_ghist_ptr).value === n.U(log2Ceil(HistoryLength).W) + b.U && resp.s2.shouldShiftVec(b), 410 resp.s2.brTaken && resp.s2.lastBrPosOH(b+1) 411 )) 412 ) 413 ) 414 415 val previous_s1_pred = RegEnable(resp.s1, init=0.U.asTypeOf(resp.s1), s1_fire) 416 417 val s2_redirect_s1_last_pred_vec = preds_needs_redirect_vec(previous_s1_pred, resp.s2) 418 419 s2_redirect := s2_fire && (s2_redirect_s1_last_pred_vec.reduce(_||_) || resp.s2.fallThruError) 420 421 // when(s2_redirect) { ghist_update(s2_ghist_ptr, resp.s2) } 422 npcGen.register(s2_redirect, resp.s2.getTarget, Some("s2_target"), 4) 423 foldedGhGen.register(s2_redirect, s2_predicted_fh, Some("s2_FGH"), 4) 424 ghistPtrGen.register(s2_redirect, s2_predicted_ghist_ptr, Some("s2_GHPtr"), 4) 425 ghvBitWriteGens.zip(s2_ghv_wens).zipWithIndex.map{case ((b, w), i) => 426 b.register(w.reduce(_||_), s2_ghv_wdatas(i), Some(s"s2_new_bit_$i"), 4) 427 } 428 429 XSPerfAccumulate("s2_redirect_because_target_diff", s2_fire && s2_redirect_s1_last_pred_vec(0)) 430 XSPerfAccumulate("s2_redirect_because_branch_num_diff", s2_fire && s2_redirect_s1_last_pred_vec(1)) 431 XSPerfAccumulate("s2_redirect_because_direction_diff", s2_fire && s2_redirect_s1_last_pred_vec(2)) 432 XSPerfAccumulate("s2_redirect_because_cfi_idx_diff", s2_fire && s2_redirect_s1_last_pred_vec(3)) 433 434 435 // Send signal tell Ftq override 436 val s2_ftq_idx = RegEnable(io.ftq_to_bpu.enq_ptr, s1_fire) 437 438 io.bpu_to_ftq.resp.bits.s1.valid := s1_fire && !s1_flush 439 io.bpu_to_ftq.resp.bits.s1.hasRedirect := false.B 440 io.bpu_to_ftq.resp.bits.s1.ftq_idx := DontCare 441 io.bpu_to_ftq.resp.bits.s2.valid := s2_fire && !s2_flush 442 io.bpu_to_ftq.resp.bits.s2.hasRedirect := s2_redirect 443 io.bpu_to_ftq.resp.bits.s2.ftq_idx := s2_ftq_idx 444 445 val redirect = io.ftq_to_bpu.redirect.bits 446 447 predictors.io.update := io.ftq_to_bpu.update 448 predictors.io.redirect := io.ftq_to_bpu.redirect 449 450 // Redirect logic 451 val shift = redirect.cfiUpdate.shift 452 val addIntoHist = redirect.cfiUpdate.addIntoHist 453 // TODO: remove these below 454 val shouldShiftVec = Mux(shift === 0.U, VecInit(0.U((1 << (log2Ceil(numBr) + 1)).W).asBools), VecInit((LowerMask(1.U << (shift-1.U))).asBools())) 455 // TODO end 456 457 val isBr = redirect.cfiUpdate.pd.isBr 458 val taken = redirect.cfiUpdate.taken 459 val real_br_taken_mask = (0 until numBr).map(i => shift === (i+1).U && taken && addIntoHist ) 460 461 val oldPtr = redirect.cfiUpdate.histPtr 462 val oldFh = redirect.cfiUpdate.folded_hist 463 val updated_ptr = oldPtr - shift 464 val updated_fh = VecInit((0 to numBr).map(i => oldFh.update(ghv, oldPtr, i, taken && addIntoHist)))(shift) 465 val redirect_ghv_wens = (0 until HistoryLength).map(n => 466 (0 until numBr).map(b => oldPtr.value === (n.U(log2Ceil(HistoryLength).W) + b.U) && shouldShiftVec(b) && io.ftq_to_bpu.redirect.valid)) 467 val redirect_ghv_wdatas = (0 until HistoryLength).map(n => 468 Mux1H( 469 (0 until numBr).map(b => oldPtr.value === (n.U(log2Ceil(HistoryLength).W) + b.U) && shouldShiftVec(b)), 470 real_br_taken_mask 471 ) 472 ) 473 474 475 // val updatedGh = oldGh.update(shift, taken && addIntoHist) 476 477 // when(io.ftq_to_bpu.redirect.valid) { ghist_update(oldPtr, shift, taken && addIntoHist) } 478 npcGen.register(io.ftq_to_bpu.redirect.valid, redirect.cfiUpdate.target, Some("redirect_target"), 2) 479 foldedGhGen.register(io.ftq_to_bpu.redirect.valid, updated_fh, Some("redirect_FGHT"), 2) 480 ghistPtrGen.register(io.ftq_to_bpu.redirect.valid, updated_ptr, Some("redirect_GHPtr"), 2) 481 ghvBitWriteGens.zip(redirect_ghv_wens).zipWithIndex.map{case ((b, w), i) => 482 b.register(w.reduce(_||_), redirect_ghv_wdatas(i), Some(s"redirect_new_bit_$i"), 2) 483 } 484 // no need to assign s0_last_pred 485 486 val need_reset = RegNext(reset.asBool) && !reset.asBool 487 488 // Reset 489 npcGen.register(need_reset, resetVector.U, Some("reset_pc"), 1) 490 foldedGhGen.register(need_reset, 0.U.asTypeOf(s0_folded_gh), Some("reset_FGH"), 1) 491 ghistPtrGen.register(need_reset, 0.U.asTypeOf(new CGHPtr), Some("reset_GHPtr"), 1) 492 493 s0_pc := npcGen() 494 s0_pc_reg := s0_pc 495 s0_folded_gh := foldedGhGen() 496 s0_ghist_ptr := ghistPtrGen() 497 (ghv_write_datas zip ghvBitWriteGens).map{case (wd, d) => wd := d()} 498 for (i <- 0 until HistoryLength) { 499 ghv_wens(i) := Seq(s1_ghv_wens, s2_ghv_wens, redirect_ghv_wens).map(_(i).reduce(_||_)).reduce(_||_) 500 when (ghv_wens(i)) { 501 ghv(i) := ghv_write_datas(i) 502 } 503 } 504 505 XSDebug(RegNext(reset.asBool) && !reset.asBool, "Reseting...\n") 506 XSDebug(io.ftq_to_bpu.update.valid, p"Update from ftq\n") 507 XSDebug(io.ftq_to_bpu.redirect.valid, p"Redirect from ftq\n") 508 509 XSDebug("[BP0] fire=%d pc=%x\n", s0_fire, s0_pc) 510 XSDebug("[BP1] v=%d r=%d cr=%d fire=%d flush=%d pc=%x\n", 511 s1_valid, s1_ready, s1_components_ready, s1_fire, s1_flush, s1_pc) 512 XSDebug("[BP2] v=%d r=%d cr=%d fire=%d redirect=%d flush=%d pc=%x\n", 513 s2_valid, s2_ready, s2_components_ready, s2_fire, s2_redirect, s2_flush, s2_pc) 514 XSDebug("[FTQ] ready=%d\n", io.bpu_to_ftq.resp.ready) 515 XSDebug("resp.s1.target=%x\n", resp.s1.getTarget) 516 XSDebug("resp.s2.target=%x\n", resp.s2.getTarget) 517 // XSDebug("s0_ghist: %b\n", s0_ghist.predHist) 518 // XSDebug("s1_ghist: %b\n", s1_ghist.predHist) 519 // XSDebug("s2_ghist: %b\n", s2_ghist.predHist) 520 // XSDebug("s2_predicted_ghist: %b\n", s2_predicted_ghist.predHist) 521 XSDebug(p"s0_ghist_ptr: $s0_ghist_ptr\n") 522 XSDebug(p"s1_ghist_ptr: $s1_ghist_ptr\n") 523 XSDebug(p"s2_ghist_ptr: $s2_ghist_ptr\n") 524 525 io.ftq_to_bpu.update.bits.display(io.ftq_to_bpu.update.valid) 526 io.ftq_to_bpu.redirect.bits.display(io.ftq_to_bpu.redirect.valid) 527 528 529 XSPerfAccumulate("s2_redirect", s2_redirect) 530 531 val perfEvents = predictors.asInstanceOf[Composer].getPerfEvents 532 generatePerfEvent() 533} 534