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.mem 18 19import org.chipsalliance.cde.config.Parameters 20import chisel3._ 21import chisel3.util._ 22import utils._ 23import utility._ 24import xiangshan._ 25import xiangshan.ExceptionNO._ 26import xiangshan.backend.Bundles.{DynInst, MemExuInput, MemExuOutput} 27import xiangshan.backend.fu.PMPRespBundle 28import xiangshan.backend.fu.FuConfig._ 29import xiangshan.backend.fu.FuType 30import xiangshan.backend.ctrlblock.{DebugLsInfoBundle, LsTopdownInfo} 31import xiangshan.backend.rob.RobPtr 32import xiangshan.backend.ctrlblock.DebugLsInfoBundle 33import xiangshan.backend.fu.NewCSR._ 34import xiangshan.backend.fu.util.SdtrigExt 35import xiangshan.mem.mdp._ 36import xiangshan.mem.Bundles._ 37import xiangshan.cache._ 38import xiangshan.cache.wpu.ReplayCarry 39import xiangshan.cache.mmu._ 40 41class LoadToLsqReplayIO(implicit p: Parameters) extends XSBundle 42 with HasDCacheParameters 43 with HasTlbConst 44{ 45 // mshr refill index 46 val mshr_id = UInt(log2Up(cfg.nMissEntries).W) 47 // get full data from store queue and sbuffer 48 val full_fwd = Bool() 49 // wait for data from store inst's store queue index 50 val data_inv_sq_idx = new SqPtr 51 // wait for address from store queue index 52 val addr_inv_sq_idx = new SqPtr 53 // replay carry 54 val rep_carry = new ReplayCarry(nWays) 55 // data in last beat 56 val last_beat = Bool() 57 // replay cause 58 val cause = Vec(LoadReplayCauses.allCauses, Bool()) 59 // performance debug information 60 val debug = new PerfDebugInfo 61 // tlb hint 62 val tlb_id = UInt(log2Up(loadfiltersize).W) 63 val tlb_full = Bool() 64 65 // alias 66 def mem_amb = cause(LoadReplayCauses.C_MA) 67 def tlb_miss = cause(LoadReplayCauses.C_TM) 68 def fwd_fail = cause(LoadReplayCauses.C_FF) 69 def dcache_rep = cause(LoadReplayCauses.C_DR) 70 def dcache_miss = cause(LoadReplayCauses.C_DM) 71 def wpu_fail = cause(LoadReplayCauses.C_WF) 72 def bank_conflict = cause(LoadReplayCauses.C_BC) 73 def rar_nack = cause(LoadReplayCauses.C_RAR) 74 def raw_nack = cause(LoadReplayCauses.C_RAW) 75 def misalign_nack = cause(LoadReplayCauses.C_MF) 76 def nuke = cause(LoadReplayCauses.C_NK) 77 def need_rep = cause.asUInt.orR 78} 79 80 81class LoadToLsqIO(implicit p: Parameters) extends XSBundle { 82 // ldu -> lsq UncacheBuffer 83 val ldin = DecoupledIO(new LqWriteBundle) 84 // uncache-mmio -> ldu 85 val uncache = Flipped(DecoupledIO(new MemExuOutput)) 86 val ld_raw_data = Input(new LoadDataFromLQBundle) 87 // uncache-nc -> ldu 88 val nc_ldin = Flipped(DecoupledIO(new LsPipelineBundle)) 89 // storequeue -> ldu 90 val forward = new PipeLoadForwardQueryIO 91 // ldu -> lsq LQRAW 92 val stld_nuke_query = new LoadNukeQueryIO 93 // ldu -> lsq LQRAR 94 val ldld_nuke_query = new LoadNukeQueryIO 95} 96 97class LoadToLoadIO(implicit p: Parameters) extends XSBundle { 98 val valid = Bool() 99 val data = UInt(XLEN.W) // load to load fast path is limited to ld (64 bit) used as vaddr src1 only 100 val dly_ld_err = Bool() 101} 102 103class LoadUnitTriggerIO(implicit p: Parameters) extends XSBundle { 104 val tdata2 = Input(UInt(64.W)) 105 val matchType = Input(UInt(2.W)) 106 val tEnable = Input(Bool()) // timing is calculated before this 107 val addrHit = Output(Bool()) 108} 109 110class LoadUnit(implicit p: Parameters) extends XSModule 111 with HasLoadHelper 112 with HasPerfEvents 113 with HasDCacheParameters 114 with HasCircularQueuePtrHelper 115 with HasVLSUParameters 116 with SdtrigExt 117{ 118 val io = IO(new Bundle() { 119 // control 120 val redirect = Flipped(ValidIO(new Redirect)) 121 val csrCtrl = Flipped(new CustomCSRCtrlIO) 122 123 // int issue path 124 val ldin = Flipped(Decoupled(new MemExuInput)) 125 val ldout = Decoupled(new MemExuOutput) 126 127 // vec issue path 128 val vecldin = Flipped(Decoupled(new VecPipeBundle)) 129 val vecldout = Decoupled(new VecPipelineFeedbackIO(isVStore = false)) 130 131 // misalignBuffer issue path 132 val misalign_ldin = Flipped(Decoupled(new LsPipelineBundle)) 133 val misalign_ldout = Valid(new LqWriteBundle) 134 135 // data path 136 val tlb = new TlbRequestIO(2) 137 val pmp = Flipped(new PMPRespBundle()) // arrive same to tlb now 138 val dcache = new DCacheLoadIO 139 val sbuffer = new LoadForwardQueryIO 140 val ubuffer = new LoadForwardQueryIO 141 val lsq = new LoadToLsqIO 142 val tl_d_channel = Input(new DcacheToLduForwardIO) 143 val forward_mshr = Flipped(new LduToMissqueueForwardIO) 144 // val refill = Flipped(ValidIO(new Refill)) 145 val l2_hint = Input(Valid(new L2ToL1Hint)) 146 val tlb_hint = Flipped(new TlbHintReq) 147 // fast wakeup 148 // TODO: implement vector fast wakeup 149 val fast_uop = ValidIO(new DynInst) // early wakeup signal generated in load_s1, send to RS in load_s2 150 151 // trigger 152 val fromCsrTrigger = Input(new CsrTriggerBundle) 153 154 // prefetch 155 val prefetch_train = ValidIO(new LdPrefetchTrainBundle()) // provide prefetch info to sms 156 val prefetch_train_l1 = ValidIO(new LdPrefetchTrainBundle()) // provide prefetch info to stream & stride 157 // speculative for gated control 158 val s1_prefetch_spec = Output(Bool()) 159 val s2_prefetch_spec = Output(Bool()) 160 161 val prefetch_req = Flipped(ValidIO(new L1PrefetchReq)) // hardware prefetch to l1 cache req 162 val canAcceptLowConfPrefetch = Output(Bool()) 163 val canAcceptHighConfPrefetch = Output(Bool()) 164 165 // ifetchPrefetch 166 val ifetchPrefetch = ValidIO(new SoftIfetchPrefetchBundle) 167 168 // load to load fast path 169 val l2l_fwd_in = Input(new LoadToLoadIO) 170 val l2l_fwd_out = Output(new LoadToLoadIO) 171 172 val ld_fast_match = Input(Bool()) 173 val ld_fast_fuOpType = Input(UInt()) 174 val ld_fast_imm = Input(UInt(12.W)) 175 176 // rs feedback 177 val wakeup = ValidIO(new DynInst) 178 val feedback_fast = ValidIO(new RSFeedback) // stage 2 179 val feedback_slow = ValidIO(new RSFeedback) // stage 3 180 val ldCancel = Output(new LoadCancelIO()) // use to cancel the uops waked by this load, and cancel load 181 182 // load ecc error 183 val s3_dly_ld_err = Output(Bool()) // Note that io.s3_dly_ld_err and io.lsq.s3_dly_ld_err is different 184 185 // schedule error query 186 val stld_nuke_query = Flipped(Vec(StorePipelineWidth, Valid(new StoreNukeQueryIO))) 187 188 // queue-based replay 189 val replay = Flipped(Decoupled(new LsPipelineBundle)) 190 val lq_rep_full = Input(Bool()) 191 192 // misc 193 val s2_ptr_chasing = Output(Bool()) // provide right pc for hw prefetch 194 195 // Load fast replay path 196 val fast_rep_in = Flipped(Decoupled(new LqWriteBundle)) 197 val fast_rep_out = Decoupled(new LqWriteBundle) 198 199 // to misalign buffer 200 val misalign_buf = Decoupled(new LqWriteBundle) 201 202 // Load RAR rollback 203 val rollback = Valid(new Redirect) 204 205 // perf 206 val debug_ls = Output(new DebugLsInfoBundle) 207 val lsTopdownInfo = Output(new LsTopdownInfo) 208 val correctMissTrain = Input(Bool()) 209 }) 210 211 val s1_ready, s2_ready, s3_ready = WireInit(false.B) 212 213 // Pipeline 214 // -------------------------------------------------------------------------------- 215 // stage 0 216 // -------------------------------------------------------------------------------- 217 // generate addr, use addr to query DCache and DTLB 218 val s0_valid = Wire(Bool()) 219 val s0_mmio_select = Wire(Bool()) 220 val s0_nc_select = Wire(Bool()) 221 val s0_misalign_select= Wire(Bool()) 222 val s0_kill = Wire(Bool()) 223 val s0_can_go = s1_ready 224 val s0_fire = s0_valid && s0_can_go 225 val s0_mmio_fire = s0_mmio_select && s0_can_go 226 val s0_nc_fire = s0_nc_select && s0_can_go 227 val s0_out = Wire(new LqWriteBundle) 228 val s0_tlb_valid = Wire(Bool()) 229 val s0_tlb_hlv = Wire(Bool()) 230 val s0_tlb_hlvx = Wire(Bool()) 231 val s0_tlb_vaddr = Wire(UInt(VAddrBits.W)) 232 val s0_tlb_fullva = Wire(UInt(XLEN.W)) 233 val s0_dcache_vaddr = Wire(UInt(VAddrBits.W)) 234 val s0_is128bit = Wire(Bool()) 235 val s0_misalign_wakeup_fire = s0_misalign_select && s0_can_go && io.misalign_ldin.bits.misalignNeedWakeUp 236 237 // flow source bundle 238 class FlowSource extends Bundle { 239 val vaddr = UInt(VAddrBits.W) 240 val mask = UInt((VLEN/8).W) 241 val uop = new DynInst 242 val try_l2l = Bool() 243 val has_rob_entry = Bool() 244 val rep_carry = new ReplayCarry(nWays) 245 val mshrid = UInt(log2Up(cfg.nMissEntries).W) 246 val isFirstIssue = Bool() 247 val fast_rep = Bool() 248 val ld_rep = Bool() 249 val l2l_fwd = Bool() 250 val prf = Bool() 251 val prf_rd = Bool() 252 val prf_wr = Bool() 253 val prf_i = Bool() 254 val sched_idx = UInt(log2Up(LoadQueueReplaySize+1).W) 255 // Record the issue port idx of load issue queue. This signal is used by load cancel. 256 val deqPortIdx = UInt(log2Ceil(LoadPipelineWidth).W) 257 val frm_mabuf = Bool() 258 // vec only 259 val isvec = Bool() 260 val is128bit = Bool() 261 val uop_unit_stride_fof = Bool() 262 val reg_offset = UInt(vOffsetBits.W) 263 val vecActive = Bool() // 1: vector active element or scala mem operation, 0: vector not active element 264 val is_first_ele = Bool() 265 // val flowPtr = new VlflowPtr 266 val usSecondInv = Bool() 267 val mbIndex = UInt(vlmBindexBits.W) 268 val elemIdx = UInt(elemIdxBits.W) 269 val elemIdxInsideVd = UInt(elemIdxBits.W) 270 val alignedType = UInt(alignTypeBits.W) 271 val vecBaseVaddr = UInt(VAddrBits.W) 272 //for Svpbmt NC 273 val isnc = Bool() 274 val paddr = UInt(PAddrBits.W) 275 val data = UInt((VLEN+1).W) 276 } 277 val s0_sel_src = Wire(new FlowSource) 278 279 // load flow select/gen 280 // src 0: misalignBuffer load (io.misalign_ldin) 281 // src 1: super load replayed by LSQ (cache miss replay) (io.replay) 282 // src 2: fast load replay (io.fast_rep_in) 283 // src 3: mmio (io.lsq.uncache) 284 // src 4: nc (io.lsq.nc_ldin) 285 // src 5: load replayed by LSQ (io.replay) 286 // src 6: hardware prefetch from prefetchor (high confidence) (io.prefetch) 287 // NOTE: Now vec/int loads are sent from same RS 288 // A vec load will be splited into multiple uops, 289 // so as long as one uop is issued, 290 // the other uops should have higher priority 291 // src 7: vec read from RS (io.vecldin) 292 // src 8: int read / software prefetch first issue from RS (io.in) 293 // src 9: load try pointchaising when no issued or replayed load (io.fastpath) 294 // src10: hardware prefetch from prefetchor (high confidence) (io.prefetch) 295 // priority: high to low 296 val s0_rep_stall = io.ldin.valid && isAfter(io.replay.bits.uop.lqIdx, io.ldin.bits.uop.lqIdx) || 297 io.vecldin.valid && isAfter(io.replay.bits.uop.lqIdx, io.vecldin.bits.uop.lqIdx) 298 private val SRC_NUM = 11 299 private val Seq( 300 mab_idx, super_rep_idx, fast_rep_idx, mmio_idx, nc_idx, lsq_rep_idx, 301 high_pf_idx, vec_iss_idx, int_iss_idx, l2l_fwd_idx, low_pf_idx 302 ) = (0 until SRC_NUM).toSeq 303 // load flow source valid 304 val s0_src_valid_vec = WireInit(VecInit(Seq( 305 io.misalign_ldin.valid, 306 io.replay.valid && io.replay.bits.forward_tlDchannel, 307 io.fast_rep_in.valid, 308 io.lsq.uncache.valid, 309 io.lsq.nc_ldin.valid, 310 io.replay.valid && !io.replay.bits.forward_tlDchannel && !s0_rep_stall, 311 io.prefetch_req.valid && io.prefetch_req.bits.confidence > 0.U, 312 io.vecldin.valid, 313 io.ldin.valid, // int flow first issue or software prefetch 314 io.l2l_fwd_in.valid, 315 io.prefetch_req.valid && io.prefetch_req.bits.confidence === 0.U, 316 ))) 317 // load flow source ready 318 val s0_src_ready_vec = Wire(Vec(SRC_NUM, Bool())) 319 s0_src_ready_vec(0) := true.B 320 for(i <- 1 until SRC_NUM){ 321 s0_src_ready_vec(i) := !s0_src_valid_vec.take(i).reduce(_ || _) 322 } 323 // load flow source select (OH) 324 val s0_src_select_vec = WireInit(VecInit((0 until SRC_NUM).map{i => s0_src_valid_vec(i) && s0_src_ready_vec(i)})) 325 val s0_hw_prf_select = s0_src_select_vec(high_pf_idx) || s0_src_select_vec(low_pf_idx) 326 327 val s0_tlb_no_query = s0_hw_prf_select || s0_sel_src.prf_i || 328 s0_src_select_vec(fast_rep_idx) || s0_src_select_vec(mmio_idx) || 329 s0_src_select_vec(nc_idx) 330 s0_valid := !s0_kill && (s0_src_select_vec(nc_idx) || (( 331 s0_src_valid_vec(mab_idx) || 332 s0_src_valid_vec(super_rep_idx) || 333 s0_src_valid_vec(fast_rep_idx) || 334 s0_src_valid_vec(lsq_rep_idx) || 335 s0_src_valid_vec(high_pf_idx) || 336 s0_src_valid_vec(vec_iss_idx) || 337 s0_src_valid_vec(int_iss_idx) || 338 s0_src_valid_vec(l2l_fwd_idx) || 339 s0_src_valid_vec(low_pf_idx) 340 ) && !s0_src_select_vec(mmio_idx) && io.dcache.req.ready)) 341 342 s0_mmio_select := s0_src_select_vec(mmio_idx) && !s0_kill 343 s0_nc_select := s0_src_select_vec(nc_idx) && !s0_kill 344 //judgment: is NC with data or not. 345 //If true, it's from `io.lsq.nc_ldin` or `io.fast_rep_in` 346 val s0_nc_with_data = s0_sel_src.isnc && !s0_kill 347 s0_misalign_select := s0_src_select_vec(mab_idx) && !s0_kill 348 349 // if is hardware prefetch or fast replay, don't send valid to tlb 350 s0_tlb_valid := ( 351 s0_src_valid_vec(mab_idx) || 352 s0_src_valid_vec(super_rep_idx) || 353 s0_src_valid_vec(lsq_rep_idx) || 354 s0_src_valid_vec(vec_iss_idx) || 355 s0_src_valid_vec(int_iss_idx) || 356 s0_src_valid_vec(l2l_fwd_idx) 357 ) && io.dcache.req.ready 358 359 // which is S0's out is ready and dcache is ready 360 val s0_try_ptr_chasing = s0_src_select_vec(l2l_fwd_idx) 361 val s0_do_try_ptr_chasing = s0_try_ptr_chasing && s0_can_go && io.dcache.req.ready 362 val s0_ptr_chasing_vaddr = io.l2l_fwd_in.data(5, 0) +& io.ld_fast_imm(5, 0) 363 val s0_ptr_chasing_canceled = WireInit(false.B) 364 s0_kill := s0_ptr_chasing_canceled 365 366 // prefetch related ctrl signal 367 io.canAcceptLowConfPrefetch := s0_src_ready_vec(low_pf_idx) && io.dcache.req.ready 368 io.canAcceptHighConfPrefetch := s0_src_ready_vec(high_pf_idx) && io.dcache.req.ready 369 370 // query DTLB 371 io.tlb.req.valid := s0_tlb_valid 372 io.tlb.req.bits.cmd := Mux(s0_sel_src.prf, 373 Mux(s0_sel_src.prf_wr, TlbCmd.write, TlbCmd.read), 374 TlbCmd.read 375 ) 376 io.tlb.req.bits.isPrefetch := s0_sel_src.prf 377 io.tlb.req.bits.vaddr := s0_tlb_vaddr 378 io.tlb.req.bits.fullva := s0_tlb_fullva 379 io.tlb.req.bits.checkfullva := s0_src_select_vec(vec_iss_idx) || s0_src_select_vec(int_iss_idx) 380 io.tlb.req.bits.hyperinst := s0_tlb_hlv 381 io.tlb.req.bits.hlvx := s0_tlb_hlvx 382 io.tlb.req.bits.size := Mux(s0_sel_src.isvec, s0_sel_src.alignedType(2,0), LSUOpType.size(s0_sel_src.uop.fuOpType)) 383 io.tlb.req.bits.kill := s0_kill || s0_tlb_no_query // if does not need to be translated, kill it 384 io.tlb.req.bits.memidx.is_ld := true.B 385 io.tlb.req.bits.memidx.is_st := false.B 386 io.tlb.req.bits.memidx.idx := s0_sel_src.uop.lqIdx.value 387 io.tlb.req.bits.debug.robIdx := s0_sel_src.uop.robIdx 388 io.tlb.req.bits.no_translate := s0_tlb_no_query // hardware prefetch and fast replay does not need to be translated, need this signal for pmp check 389 io.tlb.req.bits.debug.pc := s0_sel_src.uop.pc 390 io.tlb.req.bits.debug.isFirstIssue := s0_sel_src.isFirstIssue 391 392 // query DCache 393 io.dcache.req.valid := s0_valid && !s0_sel_src.prf_i && !s0_nc_with_data 394 io.dcache.req.bits.cmd := Mux(s0_sel_src.prf_rd, 395 MemoryOpConstants.M_PFR, 396 Mux(s0_sel_src.prf_wr, MemoryOpConstants.M_PFW, MemoryOpConstants.M_XRD) 397 ) 398 io.dcache.req.bits.vaddr := s0_dcache_vaddr 399 io.dcache.req.bits.vaddr_dup := s0_dcache_vaddr 400 io.dcache.req.bits.mask := s0_sel_src.mask 401 io.dcache.req.bits.data := DontCare 402 io.dcache.req.bits.isFirstIssue := s0_sel_src.isFirstIssue 403 io.dcache.req.bits.instrtype := Mux(s0_sel_src.prf, DCACHE_PREFETCH_SOURCE.U, LOAD_SOURCE.U) 404 io.dcache.req.bits.debug_robIdx := s0_sel_src.uop.robIdx.value 405 io.dcache.req.bits.replayCarry := s0_sel_src.rep_carry 406 io.dcache.req.bits.id := DontCare // TODO: update cache meta 407 io.dcache.req.bits.lqIdx := s0_sel_src.uop.lqIdx 408 io.dcache.pf_source := Mux(s0_hw_prf_select, io.prefetch_req.bits.pf_source.value, L1_HW_PREFETCH_NULL) 409 io.dcache.is128Req := s0_is128bit 410 411 // load flow priority mux 412 def fromNullSource(): FlowSource = { 413 val out = WireInit(0.U.asTypeOf(new FlowSource)) 414 out 415 } 416 417 def fromMisAlignBufferSource(src: LsPipelineBundle): FlowSource = { 418 val out = WireInit(0.U.asTypeOf(new FlowSource)) 419 out.vaddr := src.vaddr 420 out.mask := src.mask 421 out.uop := src.uop 422 out.try_l2l := false.B 423 out.has_rob_entry := false.B 424 out.rep_carry := src.replayCarry 425 out.mshrid := src.mshrid 426 out.frm_mabuf := true.B 427 out.isFirstIssue := false.B 428 out.fast_rep := false.B 429 out.ld_rep := false.B 430 out.l2l_fwd := false.B 431 out.prf := false.B 432 out.prf_rd := false.B 433 out.prf_wr := false.B 434 out.sched_idx := src.schedIndex 435 out.isvec := src.isvec 436 out.is128bit := src.is128bit 437 out.vecActive := true.B 438 out 439 } 440 441 def fromFastReplaySource(src: LqWriteBundle): FlowSource = { 442 val out = WireInit(0.U.asTypeOf(new FlowSource)) 443 out.vaddr := src.vaddr 444 out.paddr := src.paddr 445 out.mask := src.mask 446 out.uop := src.uop 447 out.try_l2l := false.B 448 out.has_rob_entry := src.hasROBEntry 449 out.rep_carry := src.rep_info.rep_carry 450 out.mshrid := src.rep_info.mshr_id 451 out.frm_mabuf := src.isFrmMisAlignBuf 452 out.isFirstIssue := false.B 453 out.fast_rep := true.B 454 out.ld_rep := src.isLoadReplay 455 out.l2l_fwd := false.B 456 out.prf := LSUOpType.isPrefetch(src.uop.fuOpType) && !src.isvec 457 out.prf_rd := src.uop.fuOpType === LSUOpType.prefetch_r 458 out.prf_wr := src.uop.fuOpType === LSUOpType.prefetch_w 459 out.prf_i := false.B 460 out.sched_idx := src.schedIndex 461 out.isvec := src.isvec 462 out.is128bit := src.is128bit 463 out.uop_unit_stride_fof := src.uop_unit_stride_fof 464 out.reg_offset := src.reg_offset 465 out.vecActive := src.vecActive 466 out.is_first_ele := src.is_first_ele 467 out.usSecondInv := src.usSecondInv 468 out.mbIndex := src.mbIndex 469 out.elemIdx := src.elemIdx 470 out.elemIdxInsideVd := src.elemIdxInsideVd 471 out.alignedType := src.alignedType 472 out.isnc := src.nc 473 out.data := src.data 474 out 475 } 476 477 // TODO: implement vector mmio 478 def fromMmioSource(src: MemExuOutput) = { 479 val out = WireInit(0.U.asTypeOf(new FlowSource)) 480 out.mask := 0.U 481 out.uop := src.uop 482 out.try_l2l := false.B 483 out.has_rob_entry := false.B 484 out.rep_carry := 0.U.asTypeOf(out.rep_carry) 485 out.mshrid := 0.U 486 out.frm_mabuf := false.B 487 out.isFirstIssue := false.B 488 out.fast_rep := false.B 489 out.ld_rep := false.B 490 out.l2l_fwd := false.B 491 out.prf := false.B 492 out.prf_rd := false.B 493 out.prf_wr := false.B 494 out.prf_i := false.B 495 out.sched_idx := 0.U 496 out.vecActive := true.B 497 out 498 } 499 500 def fromNcSource(src: LsPipelineBundle): FlowSource = { 501 val out = WireInit(0.U.asTypeOf(new FlowSource)) 502 out.vaddr := src.vaddr 503 out.paddr := src.paddr 504 out.mask := genVWmask(src.vaddr, src.uop.fuOpType(1,0)) 505 out.uop := src.uop 506 out.has_rob_entry := true.B 507 out.sched_idx := src.schedIndex 508 out.isvec := src.isvec 509 out.is128bit := src.is128bit 510 out.vecActive := src.vecActive 511 out.isnc := true.B 512 out.data := src.data 513 out 514 } 515 516 def fromNormalReplaySource(src: LsPipelineBundle): FlowSource = { 517 val out = WireInit(0.U.asTypeOf(new FlowSource)) 518 out.mask := Mux(src.isvec, src.mask, genVWmask(src.vaddr, src.uop.fuOpType(1, 0))) 519 out.uop := src.uop 520 out.try_l2l := false.B 521 out.has_rob_entry := true.B 522 out.rep_carry := src.replayCarry 523 out.mshrid := src.mshrid 524 out.frm_mabuf := false.B 525 out.isFirstIssue := false.B 526 out.fast_rep := false.B 527 out.ld_rep := true.B 528 out.l2l_fwd := false.B 529 out.prf := LSUOpType.isPrefetch(src.uop.fuOpType) && !src.isvec 530 out.prf_rd := src.uop.fuOpType === LSUOpType.prefetch_r 531 out.prf_wr := src.uop.fuOpType === LSUOpType.prefetch_w 532 out.prf_i := false.B 533 out.sched_idx := src.schedIndex 534 out.isvec := src.isvec 535 out.is128bit := src.is128bit 536 out.uop_unit_stride_fof := src.uop_unit_stride_fof 537 out.reg_offset := src.reg_offset 538 out.vecActive := src.vecActive 539 out.is_first_ele := src.is_first_ele 540 out.usSecondInv := src.usSecondInv 541 out.mbIndex := src.mbIndex 542 out.elemIdx := src.elemIdx 543 out.elemIdxInsideVd := src.elemIdxInsideVd 544 out.alignedType := src.alignedType 545 out 546 } 547 548 // TODO: implement vector prefetch 549 def fromPrefetchSource(src: L1PrefetchReq): FlowSource = { 550 val out = WireInit(0.U.asTypeOf(new FlowSource)) 551 out.mask := 0.U 552 out.uop := DontCare 553 out.try_l2l := false.B 554 out.has_rob_entry := false.B 555 out.rep_carry := 0.U.asTypeOf(out.rep_carry) 556 out.mshrid := 0.U 557 out.frm_mabuf := false.B 558 out.isFirstIssue := false.B 559 out.fast_rep := false.B 560 out.ld_rep := false.B 561 out.l2l_fwd := false.B 562 out.prf := true.B 563 out.prf_rd := !src.is_store 564 out.prf_wr := src.is_store 565 out.prf_i := false.B 566 out.sched_idx := 0.U 567 out 568 } 569 570 def fromVecIssueSource(src: VecPipeBundle): FlowSource = { 571 val out = WireInit(0.U.asTypeOf(new FlowSource)) 572 out.mask := src.mask 573 out.uop := src.uop 574 out.try_l2l := false.B 575 out.has_rob_entry := true.B 576 // TODO: VLSU, implement replay carry 577 out.rep_carry := 0.U.asTypeOf(out.rep_carry) 578 out.mshrid := 0.U 579 out.frm_mabuf := false.B 580 // TODO: VLSU, implement first issue 581// out.isFirstIssue := src.isFirstIssue 582 out.fast_rep := false.B 583 out.ld_rep := false.B 584 out.l2l_fwd := false.B 585 out.prf := false.B 586 out.prf_rd := false.B 587 out.prf_wr := false.B 588 out.prf_i := false.B 589 out.sched_idx := 0.U 590 // Vector load interface 591 out.isvec := true.B 592 // vector loads only access a single element at a time, so 128-bit path is not used for now 593 out.is128bit := is128Bit(src.alignedType) 594 out.uop_unit_stride_fof := src.uop_unit_stride_fof 595 // out.rob_idx_valid := src.rob_idx_valid 596 // out.inner_idx := src.inner_idx 597 // out.rob_idx := src.rob_idx 598 out.reg_offset := src.reg_offset 599 // out.offset := src.offset 600 out.vecActive := src.vecActive 601 out.is_first_ele := src.is_first_ele 602 // out.flowPtr := src.flowPtr 603 out.usSecondInv := src.usSecondInv 604 out.mbIndex := src.mBIndex 605 out.elemIdx := src.elemIdx 606 out.elemIdxInsideVd := src.elemIdxInsideVd 607 out.vecBaseVaddr := src.basevaddr 608 out.alignedType := src.alignedType 609 out 610 } 611 612 def fromIntIssueSource(src: MemExuInput): FlowSource = { 613 val out = WireInit(0.U.asTypeOf(new FlowSource)) 614 val addr = io.ldin.bits.src(0) + SignExt(io.ldin.bits.uop.imm(11, 0), VAddrBits) 615 out.mask := genVWmask(addr, src.uop.fuOpType(1,0)) 616 out.uop := src.uop 617 out.try_l2l := false.B 618 out.has_rob_entry := true.B 619 out.rep_carry := 0.U.asTypeOf(out.rep_carry) 620 out.mshrid := 0.U 621 out.frm_mabuf := false.B 622 out.isFirstIssue := true.B 623 out.fast_rep := false.B 624 out.ld_rep := false.B 625 out.l2l_fwd := false.B 626 out.prf := LSUOpType.isPrefetch(src.uop.fuOpType) 627 out.prf_rd := src.uop.fuOpType === LSUOpType.prefetch_r 628 out.prf_wr := src.uop.fuOpType === LSUOpType.prefetch_w 629 out.prf_i := src.uop.fuOpType === LSUOpType.prefetch_i 630 out.sched_idx := 0.U 631 out.vecActive := true.B // true for scala load 632 out 633 } 634 635 // TODO: implement vector l2l 636 def fromLoadToLoadSource(src: LoadToLoadIO): FlowSource = { 637 val out = WireInit(0.U.asTypeOf(new FlowSource)) 638 out.mask := genVWmask(0.U, LSUOpType.ld) 639 // When there's no valid instruction from RS and LSQ, we try the load-to-load forwarding. 640 // Assume the pointer chasing is always ld. 641 out.uop.fuOpType := LSUOpType.ld 642 out.try_l2l := true.B 643 // we dont care out.isFirstIssue and out.rsIdx and s0_sqIdx in S0 when trying pointchasing 644 // because these signals will be updated in S1 645 out.has_rob_entry := false.B 646 out.mshrid := 0.U 647 out.frm_mabuf := false.B 648 out.rep_carry := 0.U.asTypeOf(out.rep_carry) 649 out.isFirstIssue := true.B 650 out.fast_rep := false.B 651 out.ld_rep := false.B 652 out.l2l_fwd := true.B 653 out.prf := false.B 654 out.prf_rd := false.B 655 out.prf_wr := false.B 656 out.prf_i := false.B 657 out.sched_idx := 0.U 658 out 659 } 660 661 // set default 662 val s0_src_selector = WireInit(s0_src_valid_vec) 663 if (!EnableLoadToLoadForward) { s0_src_selector(l2l_fwd_idx) := false.B } 664 val s0_src_format = Seq( 665 fromMisAlignBufferSource(io.misalign_ldin.bits), 666 fromNormalReplaySource(io.replay.bits), 667 fromFastReplaySource(io.fast_rep_in.bits), 668 fromMmioSource(io.lsq.uncache.bits), 669 fromNcSource(io.lsq.nc_ldin.bits), 670 fromNormalReplaySource(io.replay.bits), 671 fromPrefetchSource(io.prefetch_req.bits), 672 fromVecIssueSource(io.vecldin.bits), 673 fromIntIssueSource(io.ldin.bits), 674 (if (EnableLoadToLoadForward) fromLoadToLoadSource(io.l2l_fwd_in) else fromNullSource()), 675 fromPrefetchSource(io.prefetch_req.bits) 676 ) 677 s0_sel_src := ParallelPriorityMux(s0_src_selector, s0_src_format) 678 679 // fast replay and hardware prefetch don't need to query tlb 680 val int_issue_vaddr = io.ldin.bits.src(0) + SignExt(io.ldin.bits.uop.imm(11, 0), VAddrBits) 681 val int_vec_vaddr = Mux(s0_src_valid_vec(vec_iss_idx), io.vecldin.bits.vaddr(VAddrBits - 1, 0), int_issue_vaddr) 682 s0_tlb_vaddr := Mux( 683 s0_src_valid_vec(mab_idx), 684 io.misalign_ldin.bits.vaddr, 685 Mux( 686 s0_src_valid_vec(super_rep_idx) || s0_src_valid_vec(lsq_rep_idx), 687 io.replay.bits.vaddr, 688 int_vec_vaddr 689 ) 690 ) 691 s0_dcache_vaddr := Mux( 692 s0_src_select_vec(fast_rep_idx), io.fast_rep_in.bits.vaddr, 693 Mux(s0_hw_prf_select, io.prefetch_req.bits.getVaddr(), 694 Mux(s0_src_select_vec(nc_idx), io.lsq.nc_ldin.bits.vaddr, // not for dcache access, but for address alignment check 695 s0_tlb_vaddr)) 696 ) 697 698 val s0_alignType = Mux(s0_sel_src.isvec, s0_sel_src.alignedType(1,0), s0_sel_src.uop.fuOpType(1, 0)) 699 700 val s0_addr_aligned = LookupTree(s0_alignType, List( 701 "b00".U -> true.B, //b 702 "b01".U -> (s0_dcache_vaddr(0) === 0.U), //h 703 "b10".U -> (s0_dcache_vaddr(1, 0) === 0.U), //w 704 "b11".U -> (s0_dcache_vaddr(2, 0) === 0.U) //d 705 )) 706 // address align check 707 XSError(s0_sel_src.isvec && s0_dcache_vaddr(3, 0) =/= 0.U && s0_sel_src.alignedType(2), "unit-stride 128 bit element is not aligned!") 708 709 val s0_check_vaddr_low = s0_dcache_vaddr(4, 0) 710 val s0_check_vaddr_Up_low = LookupTree(s0_alignType, List( 711 "b00".U -> 0.U, 712 "b01".U -> 1.U, 713 "b10".U -> 3.U, 714 "b11".U -> 7.U 715 )) + s0_check_vaddr_low 716 //TODO vec? 717 val s0_rs_cross16Bytes = s0_check_vaddr_Up_low(4) =/= s0_check_vaddr_low(4) 718 val s0_misalignWith16Byte = !s0_rs_cross16Bytes && !s0_addr_aligned && !s0_hw_prf_select 719 val s0_misalignNeedWakeUp = s0_sel_src.frm_mabuf && io.misalign_ldin.bits.misalignNeedWakeUp 720 val s0_finalSplit = s0_sel_src.frm_mabuf && io.misalign_ldin.bits.isFinalSplit 721 s0_is128bit := s0_sel_src.is128bit || s0_misalignWith16Byte 722 723 // only first issue of int / vec load intructions need to check full vaddr 724 s0_tlb_fullva := Mux(s0_src_valid_vec(mab_idx), 725 io.misalign_ldin.bits.fullva, 726 Mux(s0_src_select_vec(vec_iss_idx), 727 io.vecldin.bits.vaddr, 728 Mux( 729 s0_src_select_vec(int_iss_idx), 730 io.ldin.bits.src(0) + SignExt(io.ldin.bits.uop.imm(11, 0), XLEN), 731 s0_dcache_vaddr 732 ) 733 ) 734 ) 735 736 s0_tlb_hlv := Mux( 737 s0_src_valid_vec(mab_idx), 738 LSUOpType.isHlv(io.misalign_ldin.bits.uop.fuOpType), 739 Mux( 740 s0_src_valid_vec(super_rep_idx) || s0_src_valid_vec(lsq_rep_idx), 741 LSUOpType.isHlv(io.replay.bits.uop.fuOpType), 742 Mux( 743 s0_src_valid_vec(int_iss_idx), 744 LSUOpType.isHlv(io.ldin.bits.uop.fuOpType), 745 false.B 746 ) 747 ) 748 ) 749 s0_tlb_hlvx := Mux( 750 s0_src_valid_vec(mab_idx), 751 LSUOpType.isHlvx(io.misalign_ldin.bits.uop.fuOpType), 752 Mux( 753 s0_src_valid_vec(super_rep_idx) || s0_src_valid_vec(lsq_rep_idx), 754 LSUOpType.isHlvx(io.replay.bits.uop.fuOpType), 755 Mux( 756 s0_src_valid_vec(int_iss_idx), 757 LSUOpType.isHlvx(io.ldin.bits.uop.fuOpType), 758 false.B 759 ) 760 ) 761 ) 762 763 // accept load flow if dcache ready (tlb is always ready) 764 // TODO: prefetch need writeback to loadQueueFlag 765 s0_out := DontCare 766 s0_out.vaddr := Mux(s0_nc_with_data, s0_sel_src.vaddr, s0_dcache_vaddr) 767 s0_out.fullva := s0_tlb_fullva 768 s0_out.mask := s0_sel_src.mask 769 s0_out.uop := s0_sel_src.uop 770 s0_out.isFirstIssue := s0_sel_src.isFirstIssue 771 s0_out.hasROBEntry := s0_sel_src.has_rob_entry 772 s0_out.isPrefetch := s0_sel_src.prf 773 s0_out.isHWPrefetch := s0_hw_prf_select 774 s0_out.isFastReplay := s0_sel_src.fast_rep 775 s0_out.isLoadReplay := s0_sel_src.ld_rep 776 s0_out.isFastPath := s0_sel_src.l2l_fwd 777 s0_out.mshrid := s0_sel_src.mshrid 778 s0_out.isvec := s0_sel_src.isvec 779 s0_out.is128bit := s0_is128bit 780 s0_out.isFrmMisAlignBuf := s0_sel_src.frm_mabuf 781 s0_out.uop_unit_stride_fof := s0_sel_src.uop_unit_stride_fof 782 s0_out.paddr := 783 Mux(s0_src_valid_vec(nc_idx), io.lsq.nc_ldin.bits.paddr, 784 Mux(s0_src_valid_vec(fast_rep_idx), io.fast_rep_in.bits.paddr, 785 Mux(s0_src_select_vec(int_iss_idx) && s0_sel_src.prf_i, 0.U, 786 io.prefetch_req.bits.paddr))) // only for nc, fast_rep, prefetch 787 s0_out.tlbNoQuery := s0_tlb_no_query 788 // s0_out.rob_idx_valid := s0_rob_idx_valid 789 // s0_out.inner_idx := s0_inner_idx 790 // s0_out.rob_idx := s0_rob_idx 791 s0_out.reg_offset := s0_sel_src.reg_offset 792 // s0_out.offset := s0_offset 793 s0_out.vecActive := s0_sel_src.vecActive 794 s0_out.usSecondInv := s0_sel_src.usSecondInv 795 s0_out.is_first_ele := s0_sel_src.is_first_ele 796 s0_out.elemIdx := s0_sel_src.elemIdx 797 s0_out.elemIdxInsideVd := s0_sel_src.elemIdxInsideVd 798 s0_out.alignedType := s0_sel_src.alignedType 799 s0_out.mbIndex := s0_sel_src.mbIndex 800 s0_out.vecBaseVaddr := s0_sel_src.vecBaseVaddr 801 // s0_out.flowPtr := s0_sel_src.flowPtr 802 s0_out.uop.exceptionVec(loadAddrMisaligned) := (!s0_addr_aligned || s0_sel_src.uop.exceptionVec(loadAddrMisaligned)) && s0_sel_src.vecActive && !s0_misalignWith16Byte 803 s0_out.isMisalign := (!s0_addr_aligned || s0_sel_src.uop.exceptionVec(loadAddrMisaligned)) && s0_sel_src.vecActive 804 s0_out.forward_tlDchannel := s0_src_select_vec(super_rep_idx) 805 when(io.tlb.req.valid && s0_sel_src.isFirstIssue) { 806 s0_out.uop.debugInfo.tlbFirstReqTime := GTimer() 807 }.otherwise{ 808 s0_out.uop.debugInfo.tlbFirstReqTime := s0_sel_src.uop.debugInfo.tlbFirstReqTime 809 } 810 s0_out.schedIndex := s0_sel_src.sched_idx 811 //for Svpbmt Nc 812 s0_out.nc := s0_sel_src.isnc 813 s0_out.data := s0_sel_src.data 814 s0_out.misalignWith16Byte := s0_misalignWith16Byte 815 s0_out.misalignNeedWakeUp := s0_misalignNeedWakeUp 816 s0_out.isFinalSplit := s0_finalSplit 817 818 // load fast replay 819 io.fast_rep_in.ready := (s0_can_go && io.dcache.req.ready && s0_src_ready_vec(fast_rep_idx)) 820 821 // mmio 822 io.lsq.uncache.ready := s0_mmio_fire 823 io.lsq.nc_ldin.ready := s0_src_ready_vec(nc_idx) && s0_can_go 824 825 // load flow source ready 826 // cache missed load has highest priority 827 // always accept cache missed load flow from load replay queue 828 io.replay.ready := (s0_can_go && io.dcache.req.ready && (s0_src_ready_vec(lsq_rep_idx) && !s0_rep_stall || s0_src_select_vec(super_rep_idx))) 829 830 // accept load flow from rs when: 831 // 1) there is no lsq-replayed load 832 // 2) there is no fast replayed load 833 // 3) there is no high confidence prefetch request 834 io.vecldin.ready := s0_can_go && io.dcache.req.ready && s0_src_ready_vec(vec_iss_idx) 835 io.ldin.ready := s0_can_go && io.dcache.req.ready && s0_src_ready_vec(int_iss_idx) 836 io.misalign_ldin.ready := s0_can_go && io.dcache.req.ready && s0_src_ready_vec(mab_idx) 837 838 // for hw prefetch load flow feedback, to be added later 839 // io.prefetch_in.ready := s0_hw_prf_select 840 841 // dcache replacement extra info 842 // TODO: should prefetch load update replacement? 843 io.dcache.replacementUpdated := Mux(s0_src_select_vec(lsq_rep_idx) || s0_src_select_vec(super_rep_idx), io.replay.bits.replacementUpdated, false.B) 844 845 // load wakeup 846 // TODO: vector load wakeup? frm_mabuf wakeup? 847 val s0_wakeup_selector = Seq( 848 s0_misalign_wakeup_fire, 849 s0_src_valid_vec(super_rep_idx), 850 s0_src_valid_vec(fast_rep_idx), 851 s0_mmio_fire, 852 s0_nc_fire, 853 s0_src_valid_vec(lsq_rep_idx), 854 s0_src_valid_vec(int_iss_idx) 855 ) 856 val s0_wakeup_format = Seq( 857 io.misalign_ldin.bits.uop, 858 io.replay.bits.uop, 859 io.fast_rep_in.bits.uop, 860 io.lsq.uncache.bits.uop, 861 io.lsq.nc_ldin.bits.uop, 862 io.replay.bits.uop, 863 io.ldin.bits.uop, 864 ) 865 val s0_wakeup_uop = ParallelPriorityMux(s0_wakeup_selector, s0_wakeup_format) 866 io.wakeup.valid := s0_fire && !s0_sel_src.isvec && !s0_sel_src.frm_mabuf && ( 867 s0_src_valid_vec(super_rep_idx) || 868 s0_src_valid_vec(fast_rep_idx) || 869 s0_src_valid_vec(lsq_rep_idx) || 870 (s0_src_valid_vec(int_iss_idx) && !s0_sel_src.prf && 871 !s0_src_valid_vec(vec_iss_idx) && !s0_src_valid_vec(high_pf_idx)) 872 ) || s0_mmio_fire || s0_nc_fire || s0_misalign_wakeup_fire 873 io.wakeup.bits := s0_wakeup_uop 874 875 // prefetch.i(Zicbop) 876 io.ifetchPrefetch.valid := RegNext(s0_src_select_vec(int_iss_idx) && s0_sel_src.prf_i) 877 io.ifetchPrefetch.bits.vaddr := RegEnable(s0_out.vaddr, 0.U, s0_src_select_vec(int_iss_idx) && s0_sel_src.prf_i) 878 879 XSDebug(io.dcache.req.fire, 880 p"[DCACHE LOAD REQ] pc ${Hexadecimal(s0_sel_src.uop.pc)}, vaddr ${Hexadecimal(s0_dcache_vaddr)}\n" 881 ) 882 XSDebug(s0_valid, 883 p"S0: pc ${Hexadecimal(s0_out.uop.pc)}, lId ${Hexadecimal(s0_out.uop.lqIdx.asUInt)}, " + 884 p"vaddr ${Hexadecimal(s0_out.vaddr)}, mask ${Hexadecimal(s0_out.mask)}\n") 885 886 // Pipeline 887 // -------------------------------------------------------------------------------- 888 // stage 1 889 // -------------------------------------------------------------------------------- 890 // TLB resp (send paddr to dcache) 891 val s1_valid = RegInit(false.B) 892 val s1_in = Wire(new LqWriteBundle) 893 val s1_out = Wire(new LqWriteBundle) 894 val s1_kill = Wire(Bool()) 895 val s1_can_go = s2_ready 896 val s1_fire = s1_valid && !s1_kill && s1_can_go 897 val s1_vecActive = RegEnable(s0_out.vecActive, true.B, s0_fire) 898 val s1_nc_with_data = RegNext(s0_nc_with_data) 899 900 s1_ready := !s1_valid || s1_kill || s2_ready 901 when (s0_fire) { s1_valid := true.B } 902 .elsewhen (s1_fire) { s1_valid := false.B } 903 .elsewhen (s1_kill) { s1_valid := false.B } 904 s1_in := RegEnable(s0_out, s0_fire) 905 906 val s1_fast_rep_dly_kill = RegEnable(io.fast_rep_in.bits.lateKill, io.fast_rep_in.valid) && s1_in.isFastReplay 907 val s1_fast_rep_dly_err = RegEnable(io.fast_rep_in.bits.delayedLoadError, io.fast_rep_in.valid) && s1_in.isFastReplay 908 val s1_l2l_fwd_dly_err = RegEnable(io.l2l_fwd_in.dly_ld_err, io.l2l_fwd_in.valid) && s1_in.isFastPath 909 val s1_dly_err = s1_fast_rep_dly_err || s1_l2l_fwd_dly_err 910 val s1_vaddr_hi = Wire(UInt()) 911 val s1_vaddr_lo = Wire(UInt()) 912 val s1_vaddr = Wire(UInt()) 913 val s1_paddr_dup_lsu = Wire(UInt()) 914 val s1_gpaddr_dup_lsu = Wire(UInt()) 915 val s1_paddr_dup_dcache = Wire(UInt()) 916 val s1_exception = ExceptionNO.selectByFu(s1_out.uop.exceptionVec, LduCfg).asUInt.orR // af & pf exception were modified below. 917 val s1_tlb_miss = io.tlb.resp.bits.miss && io.tlb.resp.valid && s1_valid 918 val s1_tlb_fast_miss = io.tlb.resp.bits.fastMiss && io.tlb.resp.valid && s1_valid 919 val s1_pbmt = Mux(!s1_tlb_miss, io.tlb.resp.bits.pbmt.head, 0.U(Pbmt.width.W)) 920 val s1_nc = s1_in.nc 921 val s1_prf = s1_in.isPrefetch 922 val s1_hw_prf = s1_in.isHWPrefetch 923 val s1_sw_prf = s1_prf && !s1_hw_prf 924 val s1_tlb_memidx = io.tlb.resp.bits.memidx 925 926 s1_vaddr_hi := s1_in.vaddr(VAddrBits - 1, 6) 927 s1_vaddr_lo := s1_in.vaddr(5, 0) 928 s1_vaddr := Cat(s1_vaddr_hi, s1_vaddr_lo) 929 s1_paddr_dup_lsu := Mux(s1_in.tlbNoQuery, s1_in.paddr, io.tlb.resp.bits.paddr(0)) 930 s1_paddr_dup_dcache := Mux(s1_in.tlbNoQuery, s1_in.paddr, io.tlb.resp.bits.paddr(1)) 931 s1_gpaddr_dup_lsu := Mux(s1_in.isFastReplay, s1_in.paddr, io.tlb.resp.bits.gpaddr(0)) 932 933 when (s1_tlb_memidx.is_ld && io.tlb.resp.valid && !s1_tlb_miss && s1_tlb_memidx.idx === s1_in.uop.lqIdx.value) { 934 // printf("load idx = %d\n", s1_tlb_memidx.idx) 935 s1_out.uop.debugInfo.tlbRespTime := GTimer() 936 } 937 938 io.tlb.req_kill := s1_kill || s1_dly_err 939 io.tlb.req.bits.pmp_addr := s1_in.paddr 940 io.tlb.resp.ready := true.B 941 942 io.dcache.s1_paddr_dup_lsu <> s1_paddr_dup_lsu 943 io.dcache.s1_paddr_dup_dcache <> s1_paddr_dup_dcache 944 io.dcache.s1_kill := s1_kill || s1_dly_err || s1_tlb_miss || s1_exception 945 io.dcache.s1_kill_data_read := s1_kill || s1_dly_err || s1_tlb_fast_miss 946 947 // store to load forwarding 948 io.sbuffer.valid := s1_valid && !(s1_exception || s1_tlb_miss || s1_kill || s1_dly_err || s1_prf) 949 io.sbuffer.vaddr := s1_vaddr 950 io.sbuffer.paddr := s1_paddr_dup_lsu 951 io.sbuffer.uop := s1_in.uop 952 io.sbuffer.sqIdx := s1_in.uop.sqIdx 953 io.sbuffer.mask := s1_in.mask 954 io.sbuffer.pc := s1_in.uop.pc // FIXME: remove it 955 956 io.ubuffer.valid := s1_valid && s1_nc_with_data && !(s1_exception || s1_tlb_miss || s1_kill || s1_dly_err || s1_prf) 957 io.ubuffer.vaddr := s1_vaddr 958 io.ubuffer.paddr := s1_paddr_dup_lsu 959 io.ubuffer.uop := s1_in.uop 960 io.ubuffer.sqIdx := s1_in.uop.sqIdx 961 io.ubuffer.mask := s1_in.mask 962 io.ubuffer.pc := s1_in.uop.pc // FIXME: remove it 963 964 io.lsq.forward.valid := s1_valid && !(s1_exception || s1_tlb_miss || s1_kill || s1_dly_err || s1_prf) 965 io.lsq.forward.vaddr := s1_vaddr 966 io.lsq.forward.paddr := s1_paddr_dup_lsu 967 io.lsq.forward.uop := s1_in.uop 968 io.lsq.forward.sqIdx := s1_in.uop.sqIdx 969 io.lsq.forward.sqIdxMask := 0.U 970 io.lsq.forward.mask := s1_in.mask 971 io.lsq.forward.pc := s1_in.uop.pc // FIXME: remove it 972 973 // st-ld violation query 974 // if store unit is 128-bits memory access, need match 128-bit 975 private val s1_isMatch128 = io.stld_nuke_query.map(x => (x.bits.matchLine || ((s1_in.isvec || s1_in.misalignWith16Byte) && s1_in.is128bit))) 976 val s1_nuke_paddr_match = VecInit((0 until StorePipelineWidth).zip(s1_isMatch128).map{case (w, s) => {Mux(s, 977 s1_paddr_dup_lsu(PAddrBits-1, 4) === io.stld_nuke_query(w).bits.paddr(PAddrBits-1, 4), 978 s1_paddr_dup_lsu(PAddrBits-1, 3) === io.stld_nuke_query(w).bits.paddr(PAddrBits-1, 3))}}) 979 val s1_nuke = VecInit((0 until StorePipelineWidth).map(w => { 980 io.stld_nuke_query(w).valid && // query valid 981 isAfter(s1_in.uop.robIdx, io.stld_nuke_query(w).bits.robIdx) && // older store 982 s1_nuke_paddr_match(w) && // paddr match 983 (s1_in.mask & io.stld_nuke_query(w).bits.mask).orR // data mask contain 984 })).asUInt.orR && !s1_tlb_miss 985 986 s1_out := s1_in 987 s1_out.vaddr := s1_vaddr 988 s1_out.fullva := io.tlb.resp.bits.fullva 989 s1_out.vaNeedExt := io.tlb.resp.bits.excp(0).vaNeedExt 990 s1_out.isHyper := io.tlb.resp.bits.excp(0).isHyper 991 s1_out.paddr := s1_paddr_dup_lsu 992 s1_out.gpaddr := s1_gpaddr_dup_lsu 993 s1_out.isForVSnonLeafPTE := io.tlb.resp.bits.isForVSnonLeafPTE 994 s1_out.tlbMiss := s1_tlb_miss 995 s1_out.ptwBack := io.tlb.resp.bits.ptwBack 996 s1_out.rep_info.debug := s1_in.uop.debugInfo 997 s1_out.rep_info.nuke := s1_nuke && !s1_sw_prf 998 s1_out.delayedLoadError := s1_dly_err 999 s1_out.nc := s1_nc || Pbmt.isNC(s1_pbmt) 1000 s1_out.mmio := Pbmt.isIO(s1_pbmt) 1001 1002 when (!s1_dly_err) { 1003 // current ori test will cause the case of ldest == 0, below will be modifeid in the future. 1004 // af & pf exception were modified 1005 // if is tlbNoQuery request, don't trigger exception from tlb resp 1006 s1_out.uop.exceptionVec(loadPageFault) := io.tlb.resp.bits.excp(0).pf.ld && s1_vecActive && !s1_tlb_miss && !s1_in.tlbNoQuery 1007 s1_out.uop.exceptionVec(loadGuestPageFault) := io.tlb.resp.bits.excp(0).gpf.ld && !s1_tlb_miss && !s1_in.tlbNoQuery 1008 s1_out.uop.exceptionVec(loadAccessFault) := io.tlb.resp.bits.excp(0).af.ld && s1_vecActive && !s1_tlb_miss && !s1_in.tlbNoQuery 1009 when (RegNext(io.tlb.req.bits.checkfullva) && 1010 (s1_out.uop.exceptionVec(loadPageFault) || 1011 s1_out.uop.exceptionVec(loadGuestPageFault) || 1012 s1_out.uop.exceptionVec(loadAccessFault))) { 1013 s1_out.uop.exceptionVec(loadAddrMisaligned) := false.B 1014 s1_out.isMisalign := false.B 1015 } 1016 } .otherwise { 1017 s1_out.uop.exceptionVec(loadPageFault) := false.B 1018 s1_out.uop.exceptionVec(loadGuestPageFault) := false.B 1019 s1_out.uop.exceptionVec(loadAddrMisaligned) := false.B 1020 s1_out.isMisalign := false.B 1021 s1_out.uop.exceptionVec(loadAccessFault) := s1_dly_err && s1_vecActive 1022 } 1023 1024 // pointer chasing 1025 val s1_try_ptr_chasing = GatedValidRegNext(s0_do_try_ptr_chasing, false.B) 1026 val s1_ptr_chasing_vaddr = RegEnable(s0_ptr_chasing_vaddr, s0_do_try_ptr_chasing) 1027 val s1_fu_op_type_not_ld = WireInit(false.B) 1028 val s1_not_fast_match = WireInit(false.B) 1029 val s1_addr_mismatch = WireInit(false.B) 1030 val s1_addr_misaligned = WireInit(false.B) 1031 val s1_fast_mismatch = WireInit(false.B) 1032 val s1_ptr_chasing_canceled = WireInit(false.B) 1033 val s1_cancel_ptr_chasing = WireInit(false.B) 1034 1035 val s1_redirect_reg = Wire(Valid(new Redirect)) 1036 s1_redirect_reg.bits := RegEnable(io.redirect.bits, io.redirect.valid) 1037 s1_redirect_reg.valid := GatedValidRegNext(io.redirect.valid) 1038 1039 s1_kill := s1_fast_rep_dly_kill || 1040 s1_cancel_ptr_chasing || 1041 s1_in.uop.robIdx.needFlush(io.redirect) || 1042 (s1_in.uop.robIdx.needFlush(s1_redirect_reg) && !GatedValidRegNext(s0_try_ptr_chasing)) || 1043 RegEnable(s0_kill, false.B, io.ldin.valid || 1044 io.vecldin.valid || io.replay.valid || 1045 io.l2l_fwd_in.valid || io.fast_rep_in.valid || 1046 io.misalign_ldin.valid || io.lsq.nc_ldin.valid 1047 ) 1048 1049 if (EnableLoadToLoadForward) { 1050 // Sometimes, we need to cancel the load-load forwarding. 1051 // These can be put at S0 if timing is bad at S1. 1052 // Case 0: CACHE_SET(base + offset) != CACHE_SET(base) (lowest 6-bit addition has an overflow) 1053 s1_addr_mismatch := s1_ptr_chasing_vaddr(6) || 1054 RegEnable(io.ld_fast_imm(11, 6).orR, s0_do_try_ptr_chasing) 1055 // Case 1: the address is not 64-bit aligned or the fuOpType is not LD 1056 s1_addr_misaligned := s1_ptr_chasing_vaddr(2, 0).orR 1057 s1_fu_op_type_not_ld := io.ldin.bits.uop.fuOpType =/= LSUOpType.ld 1058 // Case 2: this load-load uop is cancelled 1059 s1_ptr_chasing_canceled := !io.ldin.valid 1060 // Case 3: fast mismatch 1061 s1_fast_mismatch := RegEnable(!io.ld_fast_match, s0_do_try_ptr_chasing) 1062 1063 when (s1_try_ptr_chasing) { 1064 s1_cancel_ptr_chasing := s1_addr_mismatch || 1065 s1_addr_misaligned || 1066 s1_fu_op_type_not_ld || 1067 s1_ptr_chasing_canceled || 1068 s1_fast_mismatch 1069 1070 s1_in.uop := io.ldin.bits.uop 1071 s1_in.isFirstIssue := io.ldin.bits.isFirstIssue 1072 s1_vaddr_lo := s1_ptr_chasing_vaddr(5, 0) 1073 s1_paddr_dup_lsu := Cat(io.tlb.resp.bits.paddr(0)(PAddrBits - 1, 6), s1_vaddr_lo) 1074 s1_paddr_dup_dcache := Cat(io.tlb.resp.bits.paddr(0)(PAddrBits - 1, 6), s1_vaddr_lo) 1075 1076 // recored tlb time when get the data to ensure the correctness of the latency calculation (although it should not record in here, because it does not use tlb) 1077 s1_in.uop.debugInfo.tlbFirstReqTime := GTimer() 1078 s1_in.uop.debugInfo.tlbRespTime := GTimer() 1079 } 1080 when (!s1_cancel_ptr_chasing) { 1081 s0_ptr_chasing_canceled := s1_try_ptr_chasing && 1082 !io.replay.fire && !io.fast_rep_in.fire && 1083 !(s0_src_valid_vec(high_pf_idx) && io.canAcceptHighConfPrefetch) && 1084 !io.misalign_ldin.fire && 1085 !io.lsq.nc_ldin.valid 1086 when (s1_try_ptr_chasing) { 1087 io.ldin.ready := true.B 1088 } 1089 } 1090 } 1091 1092 // pre-calcuate sqIdx mask in s0, then send it to lsq in s1 for forwarding 1093 val s1_sqIdx_mask = RegEnable(UIntToMask(s0_out.uop.sqIdx.value, StoreQueueSize), s0_fire) 1094 // to enable load-load, sqIdxMask must be calculated based on ldin.uop 1095 // If the timing here is not OK, load-load forwarding has to be disabled. 1096 // Or we calculate sqIdxMask at RS?? 1097 io.lsq.forward.sqIdxMask := s1_sqIdx_mask 1098 if (EnableLoadToLoadForward) { 1099 when (s1_try_ptr_chasing) { 1100 io.lsq.forward.sqIdxMask := UIntToMask(io.ldin.bits.uop.sqIdx.value, StoreQueueSize) 1101 } 1102 } 1103 1104 io.forward_mshr.valid := s1_valid && s1_out.forward_tlDchannel 1105 io.forward_mshr.mshrid := s1_out.mshrid 1106 io.forward_mshr.paddr := s1_out.paddr 1107 1108 val loadTrigger = Module(new MemTrigger(MemType.LOAD)) 1109 loadTrigger.io.fromCsrTrigger.tdataVec := io.fromCsrTrigger.tdataVec 1110 loadTrigger.io.fromCsrTrigger.tEnableVec := io.fromCsrTrigger.tEnableVec 1111 loadTrigger.io.fromCsrTrigger.triggerCanRaiseBpExp := io.fromCsrTrigger.triggerCanRaiseBpExp 1112 loadTrigger.io.fromCsrTrigger.debugMode := io.fromCsrTrigger.debugMode 1113 loadTrigger.io.fromLoadStore.vaddr := s1_vaddr 1114 loadTrigger.io.fromLoadStore.isVectorUnitStride := s1_in.isvec && s1_in.is128bit 1115 loadTrigger.io.fromLoadStore.mask := s1_in.mask 1116 1117 val s1_trigger_action = loadTrigger.io.toLoadStore.triggerAction 1118 val s1_trigger_debug_mode = TriggerAction.isDmode(s1_trigger_action) 1119 val s1_trigger_breakpoint = TriggerAction.isExp(s1_trigger_action) 1120 s1_out.uop.trigger := s1_trigger_action 1121 s1_out.uop.exceptionVec(breakPoint) := s1_trigger_breakpoint 1122 s1_out.vecVaddrOffset := Mux( 1123 s1_trigger_debug_mode || s1_trigger_breakpoint, 1124 loadTrigger.io.toLoadStore.triggerVaddr - s1_in.vecBaseVaddr, 1125 s1_in.vaddr + genVFirstUnmask(s1_in.mask).asUInt - s1_in.vecBaseVaddr 1126 ) 1127 s1_out.vecTriggerMask := Mux(s1_trigger_debug_mode || s1_trigger_breakpoint, loadTrigger.io.toLoadStore.triggerMask, 0.U) 1128 1129 XSDebug(s1_valid, 1130 p"S1: pc ${Hexadecimal(s1_out.uop.pc)}, lId ${Hexadecimal(s1_out.uop.lqIdx.asUInt)}, tlb_miss ${io.tlb.resp.bits.miss}, " + 1131 p"paddr ${Hexadecimal(s1_out.paddr)}, mmio ${s1_out.mmio}\n") 1132 1133 // Pipeline 1134 // -------------------------------------------------------------------------------- 1135 // stage 2 1136 // -------------------------------------------------------------------------------- 1137 // s2: DCache resp 1138 val s2_valid = RegInit(false.B) 1139 val s2_in = Wire(new LqWriteBundle) 1140 val s2_out = Wire(new LqWriteBundle) 1141 val s2_kill = Wire(Bool()) 1142 val s2_can_go = s3_ready 1143 val s2_fire = s2_valid && !s2_kill && s2_can_go 1144 val s2_vecActive = RegEnable(s1_out.vecActive, true.B, s1_fire) 1145 val s2_isvec = RegEnable(s1_out.isvec, false.B, s1_fire) 1146 val s2_data_select = genRdataOH(s2_out.uop) 1147 val s2_data_select_by_offset = genDataSelectByOffset(s2_out.paddr(3, 0)) 1148 val s2_frm_mabuf = s2_in.isFrmMisAlignBuf 1149 val s2_pbmt = RegEnable(s1_pbmt, s1_fire) 1150 val s2_trigger_debug_mode = RegEnable(s1_trigger_debug_mode, false.B, s1_fire) 1151 val s2_nc_with_data = RegNext(s1_nc_with_data) 1152 val s2_mmio_req = Wire(Valid(new MemExuOutput)) 1153 s2_mmio_req.valid := RegNextN(io.lsq.uncache.fire, 2, Some(false.B)) 1154 s2_mmio_req.bits := RegNextN(io.lsq.uncache.bits, 2) 1155 1156 s2_kill := s2_in.uop.robIdx.needFlush(io.redirect) 1157 s2_ready := !s2_valid || s2_kill || s3_ready 1158 when (s1_fire) { s2_valid := true.B } 1159 .elsewhen (s2_fire) { s2_valid := false.B } 1160 .elsewhen (s2_kill) { s2_valid := false.B } 1161 s2_in := RegEnable(s1_out, s1_fire) 1162 1163 val s2_pmp = WireInit(io.pmp) 1164 val s2_isMisalign = WireInit(s2_in.isMisalign) 1165 1166 val s2_prf = s2_in.isPrefetch 1167 val s2_hw_prf = s2_in.isHWPrefetch 1168 val s2_exception_vec = WireInit(s2_in.uop.exceptionVec) 1169 val s2_un_misalign_exception = s2_vecActive && 1170 (s2_trigger_debug_mode || ExceptionNO.selectByFuAndUnSelect(s2_exception_vec, LduCfg, Seq(loadAddrMisaligned)).asUInt.orR) 1171 val s2_check_mmio = !s2_prf && !s2_in.tlbMiss && Mux(Pbmt.isUncache(s2_pbmt), s2_in.mmio, s2_pmp.mmio) && !s2_un_misalign_exception 1172 // exception that may cause load addr to be invalid / illegal 1173 // if such exception happen, that inst and its exception info 1174 // will be force writebacked to rob 1175 val s2_actually_uncache = Pbmt.isPMA(s2_pbmt) && s2_pmp.mmio || s2_in.nc || s2_in.mmio 1176 val s2_memBackTypeMM = !s2_pmp.mmio 1177 when (!s2_in.delayedLoadError) { 1178 s2_exception_vec(loadAccessFault) := s2_vecActive && ( 1179 s2_in.uop.exceptionVec(loadAccessFault) || 1180 s2_pmp.ld || 1181 (s2_isvec || s2_frm_mabuf) && s2_actually_uncache && !s2_prf && !s2_in.tlbMiss || 1182 io.dcache.resp.bits.tag_error && GatedValidRegNext(io.csrCtrl.cache_error_enable) 1183 ) 1184 } 1185 1186 // soft prefetch will not trigger any exception (but ecc error interrupt may 1187 // be triggered) 1188 val s2_tlb_unrelated_exceps = s2_in.uop.exceptionVec(loadAddrMisaligned) || 1189 s2_in.uop.exceptionVec(breakPoint) 1190 when (!s2_in.delayedLoadError && (s2_prf || s2_in.tlbMiss && !s2_tlb_unrelated_exceps)) { 1191 s2_exception_vec := 0.U.asTypeOf(s2_exception_vec.cloneType) 1192 s2_isMisalign := false.B 1193 } 1194 val s2_exception = s2_vecActive && 1195 (s2_trigger_debug_mode || ExceptionNO.selectByFu(s2_exception_vec, LduCfg).asUInt.orR) 1196 val s2_mis_align = s2_valid && GatedValidRegNext(io.csrCtrl.hd_misalign_ld_enable) && 1197 s2_out.isMisalign && !s2_in.misalignWith16Byte && !s2_exception_vec(breakPoint) && !s2_trigger_debug_mode && !s2_check_mmio 1198 val (s2_fwd_frm_d_chan, s2_fwd_data_frm_d_chan, s2_d_corrupt) = io.tl_d_channel.forward(s1_valid && s1_out.forward_tlDchannel, s1_out.mshrid, s1_out.paddr) 1199 val (s2_fwd_data_valid, s2_fwd_frm_mshr, s2_fwd_data_frm_mshr, s2_mshr_corrupt) = io.forward_mshr.forward() 1200 val s2_fwd_frm_d_chan_or_mshr = s2_fwd_data_valid && (s2_fwd_frm_d_chan || s2_fwd_frm_mshr) 1201 1202 // writeback access fault caused by ecc error / bus error 1203 // * ecc data error is slow to generate, so we will not use it until load stage 3 1204 // * in load stage 3, an extra signal io.load_error will be used to 1205 // * if pbmt =/= 0, mmio is up to pbmt; otherwise, it's up to pmp 1206 val s2_tlb_hit = RegNext(!io.tlb.resp.bits.miss && io.tlb.resp.valid && s1_valid) 1207 val s2_mmio = !s2_prf && 1208 !s2_exception && !s2_in.tlbMiss && 1209 Mux(Pbmt.isUncache(s2_pbmt), s2_in.mmio, s2_tlb_hit && s2_pmp.mmio) 1210 val s2_uncache = !s2_prf && !s2_exception && !s2_in.tlbMiss && s2_actually_uncache 1211 1212 val s2_full_fwd = Wire(Bool()) 1213 val s2_mem_amb = s2_in.uop.storeSetHit && 1214 io.lsq.forward.addrInvalid && RegNext(io.lsq.forward.valid) 1215 1216 val s2_tlb_miss = s2_in.tlbMiss 1217 val s2_fwd_fail = io.lsq.forward.dataInvalid && RegNext(io.lsq.forward.valid) 1218 val s2_dcache_miss = io.dcache.resp.bits.miss && 1219 !s2_fwd_frm_d_chan_or_mshr && 1220 !s2_full_fwd && !s2_in.nc 1221 1222 val s2_mq_nack = io.dcache.s2_mq_nack && 1223 !s2_fwd_frm_d_chan_or_mshr && 1224 !s2_full_fwd && !s2_in.nc 1225 1226 val s2_bank_conflict = io.dcache.s2_bank_conflict && 1227 !s2_fwd_frm_d_chan_or_mshr && 1228 !s2_full_fwd && !s2_in.nc 1229 1230 val s2_wpu_pred_fail = io.dcache.s2_wpu_pred_fail && 1231 !s2_fwd_frm_d_chan_or_mshr && 1232 !s2_full_fwd && !s2_in.nc 1233 1234 val s2_rar_nack = io.lsq.ldld_nuke_query.req.valid && 1235 !io.lsq.ldld_nuke_query.req.ready 1236 1237 val s2_raw_nack = io.lsq.stld_nuke_query.req.valid && 1238 !io.lsq.stld_nuke_query.req.ready 1239 // st-ld violation query 1240 // NeedFastRecovery Valid when 1241 // 1. Fast recovery query request Valid. 1242 // 2. Load instruction is younger than requestors(store instructions). 1243 // 3. Physical address match. 1244 // 4. Data contains. 1245 private val s2_isMatch128 = io.stld_nuke_query.map(x => (x.bits.matchLine || ((s2_in.isvec || s2_in.misalignWith16Byte) && s2_in.is128bit))) 1246 val s2_nuke_paddr_match = VecInit((0 until StorePipelineWidth).zip(s2_isMatch128).map{case (w, s) => {Mux(s, 1247 s2_in.paddr(PAddrBits-1, 4) === io.stld_nuke_query(w).bits.paddr(PAddrBits-1, 4), 1248 s2_in.paddr(PAddrBits-1, 3) === io.stld_nuke_query(w).bits.paddr(PAddrBits-1, 3))}}) 1249 val s2_nuke = VecInit((0 until StorePipelineWidth).map(w => { 1250 io.stld_nuke_query(w).valid && // query valid 1251 isAfter(s2_in.uop.robIdx, io.stld_nuke_query(w).bits.robIdx) && // older store 1252 s2_nuke_paddr_match(w) && // paddr match 1253 (s2_in.mask & io.stld_nuke_query(w).bits.mask).orR // data mask contain 1254 })).asUInt.orR && !s2_tlb_miss || s2_in.rep_info.nuke 1255 1256 val s2_cache_handled = io.dcache.resp.bits.handled 1257 1258 //if it is NC with data, it should handle the replayed situation. 1259 //else s2_uncache will enter uncache buffer. 1260 val s2_troublem = !s2_exception && 1261 (!s2_uncache || s2_nc_with_data) && 1262 !s2_prf && 1263 !s2_in.delayedLoadError 1264 1265 io.dcache.resp.ready := true.B 1266 val s2_dcache_should_resp = !(s2_in.tlbMiss || s2_exception || s2_in.delayedLoadError || s2_uncache || s2_prf) 1267 assert(!(s2_valid && (s2_dcache_should_resp && !io.dcache.resp.valid)), "DCache response got lost") 1268 1269 // fast replay require 1270 val s2_dcache_fast_rep = (s2_mq_nack || !s2_dcache_miss && (s2_bank_conflict || s2_wpu_pred_fail)) 1271 val s2_nuke_fast_rep = !s2_mq_nack && 1272 !s2_dcache_miss && 1273 !s2_bank_conflict && 1274 !s2_wpu_pred_fail && 1275 s2_nuke 1276 1277 val s2_fast_rep = !s2_in.isFastReplay && 1278 !s2_mem_amb && 1279 !s2_tlb_miss && 1280 !s2_fwd_fail && 1281 (s2_dcache_fast_rep || s2_nuke_fast_rep) && 1282 s2_troublem && 1283 !s2_in.misalignNeedWakeUp 1284 1285 // need allocate new entry 1286 val s2_can_query = !s2_mem_amb && 1287 !s2_tlb_miss && 1288 !s2_fwd_fail && 1289 !s2_frm_mabuf && 1290 !s2_fast_rep && 1291 s2_troublem 1292 1293 val s2_data_fwded = s2_dcache_miss && s2_full_fwd 1294 1295 // For misaligned, we will keep the misaligned exception at S2 and before. 1296 // Here a judgement is made as to whether a misaligned exception needs to actually be generated. 1297 // We will generate misaligned exceptions at mmio. 1298 val s2_real_exceptionVec = WireInit(s2_exception_vec) 1299 s2_real_exceptionVec(loadAddrMisaligned) := s2_out.isMisalign && s2_check_mmio 1300 s2_real_exceptionVec(loadAccessFault) := s2_exception_vec(loadAccessFault) || 1301 s2_fwd_frm_d_chan && s2_d_corrupt || 1302 s2_fwd_frm_mshr && s2_mshr_corrupt 1303 val s2_real_exception = s2_vecActive && 1304 (s2_trigger_debug_mode || ExceptionNO.selectByFu(s2_real_exceptionVec, LduCfg).asUInt.orR) 1305 1306 val s2_fwd_vp_match_invalid = io.lsq.forward.matchInvalid || io.sbuffer.matchInvalid || io.ubuffer.matchInvalid 1307 val s2_vp_match_fail = s2_fwd_vp_match_invalid && s2_troublem 1308 val s2_safe_wakeup = !s2_out.rep_info.need_rep && !s2_mmio && (!s2_in.nc || s2_nc_with_data) && !s2_mis_align && !s2_real_exception || s2_in.misalignNeedWakeUp // don't need to replay and is not a mmio\misalign no data 1309 val s2_safe_writeback = s2_real_exception || s2_safe_wakeup || s2_vp_match_fail || s2_in.misalignNeedWakeUp 1310 1311 // ld-ld violation require 1312 io.lsq.ldld_nuke_query.req.valid := s2_valid && s2_can_query 1313 io.lsq.ldld_nuke_query.req.bits.uop := s2_in.uop 1314 io.lsq.ldld_nuke_query.req.bits.mask := s2_in.mask 1315 io.lsq.ldld_nuke_query.req.bits.paddr := s2_in.paddr 1316 io.lsq.ldld_nuke_query.req.bits.data_valid := Mux(s2_full_fwd || s2_fwd_data_valid || s2_nc_with_data, true.B, !s2_dcache_miss) 1317 io.lsq.ldld_nuke_query.req.bits.is_nc := s2_nc_with_data 1318 1319 // st-ld violation require 1320 io.lsq.stld_nuke_query.req.valid := s2_valid && s2_can_query 1321 io.lsq.stld_nuke_query.req.bits.uop := s2_in.uop 1322 io.lsq.stld_nuke_query.req.bits.mask := s2_in.mask 1323 io.lsq.stld_nuke_query.req.bits.paddr := s2_in.paddr 1324 io.lsq.stld_nuke_query.req.bits.data_valid := Mux(s2_full_fwd || s2_fwd_data_valid || s2_nc_with_data, true.B, !s2_dcache_miss) 1325 io.lsq.stld_nuke_query.req.bits.is_nc := s2_nc_with_data 1326 1327 // merge forward result 1328 // lsq has higher priority than sbuffer 1329 val s2_fwd_mask = Wire(Vec((VLEN/8), Bool())) 1330 val s2_fwd_data = Wire(Vec((VLEN/8), UInt(8.W))) 1331 s2_full_fwd := ((~s2_fwd_mask.asUInt).asUInt & s2_in.mask) === 0.U && !io.lsq.forward.dataInvalid 1332 // generate XLEN/8 Muxs 1333 for (i <- 0 until VLEN / 8) { 1334 s2_fwd_mask(i) := io.lsq.forward.forwardMask(i) || io.sbuffer.forwardMask(i) || io.ubuffer.forwardMask(i) 1335 s2_fwd_data(i) := 1336 Mux(io.lsq.forward.forwardMask(i), io.lsq.forward.forwardData(i), 1337 Mux(s2_nc_with_data, io.ubuffer.forwardData(i), 1338 io.sbuffer.forwardData(i))) 1339 } 1340 1341 XSDebug(s2_fire, "[FWD LOAD RESP] pc %x fwd %x(%b) + %x(%b)\n", 1342 s2_in.uop.pc, 1343 io.lsq.forward.forwardData.asUInt, io.lsq.forward.forwardMask.asUInt, 1344 s2_in.forwardData.asUInt, s2_in.forwardMask.asUInt 1345 ) 1346 1347 // 1348 s2_out := s2_in 1349 s2_out.uop.fpWen := s2_in.uop.fpWen 1350 s2_out.nc := s2_in.nc 1351 s2_out.mmio := s2_mmio 1352 s2_out.memBackTypeMM := s2_memBackTypeMM 1353 s2_out.isMisalign := s2_isMisalign 1354 s2_out.uop.flushPipe := false.B 1355 s2_out.uop.exceptionVec := s2_real_exceptionVec 1356 s2_out.forwardMask := s2_fwd_mask 1357 s2_out.forwardData := s2_fwd_data 1358 s2_out.handledByMSHR := s2_cache_handled 1359 s2_out.miss := s2_dcache_miss && s2_troublem 1360 s2_out.feedbacked := io.feedback_fast.valid 1361 s2_out.uop.vpu.vstart := Mux(s2_in.isLoadReplay || s2_in.isFastReplay, s2_in.uop.vpu.vstart, s2_in.vecVaddrOffset >> s2_in.uop.vpu.veew) 1362 1363 // Generate replay signal caused by: 1364 // * st-ld violation check 1365 // * tlb miss 1366 // * dcache replay 1367 // * forward data invalid 1368 // * dcache miss 1369 s2_out.rep_info.mem_amb := s2_mem_amb && s2_troublem 1370 s2_out.rep_info.tlb_miss := s2_tlb_miss && s2_troublem 1371 s2_out.rep_info.fwd_fail := s2_fwd_fail && s2_troublem 1372 s2_out.rep_info.dcache_rep := s2_mq_nack && s2_troublem 1373 s2_out.rep_info.dcache_miss := s2_dcache_miss && s2_troublem 1374 s2_out.rep_info.bank_conflict := s2_bank_conflict && s2_troublem 1375 s2_out.rep_info.wpu_fail := s2_wpu_pred_fail && s2_troublem 1376 s2_out.rep_info.rar_nack := s2_rar_nack && s2_troublem 1377 s2_out.rep_info.raw_nack := s2_raw_nack && s2_troublem 1378 s2_out.rep_info.nuke := s2_nuke && s2_troublem 1379 s2_out.rep_info.full_fwd := s2_data_fwded 1380 s2_out.rep_info.data_inv_sq_idx := io.lsq.forward.dataInvalidSqIdx 1381 s2_out.rep_info.addr_inv_sq_idx := io.lsq.forward.addrInvalidSqIdx 1382 s2_out.rep_info.rep_carry := io.dcache.resp.bits.replayCarry 1383 s2_out.rep_info.mshr_id := io.dcache.resp.bits.mshr_id 1384 s2_out.rep_info.last_beat := s2_in.paddr(log2Up(refillBytes)) 1385 s2_out.rep_info.debug := s2_in.uop.debugInfo 1386 s2_out.rep_info.tlb_id := io.tlb_hint.id 1387 s2_out.rep_info.tlb_full := io.tlb_hint.full 1388 1389 // if forward fail, replay this inst from fetch 1390 val debug_fwd_fail_rep = s2_fwd_fail && !s2_troublem && !s2_in.tlbMiss 1391 // if ld-ld violation is detected, replay from this inst from fetch 1392 val debug_ldld_nuke_rep = false.B // s2_ldld_violation && !s2_mmio && !s2_is_prefetch && !s2_in.tlbMiss 1393 1394 // to be removed 1395 io.feedback_fast.valid := false.B 1396 io.feedback_fast.bits.hit := false.B 1397 io.feedback_fast.bits.flushState := s2_in.ptwBack 1398 io.feedback_fast.bits.robIdx := s2_in.uop.robIdx 1399 io.feedback_fast.bits.sqIdx := s2_in.uop.sqIdx 1400 io.feedback_fast.bits.lqIdx := s2_in.uop.lqIdx 1401 io.feedback_fast.bits.sourceType := RSFeedbackType.lrqFull 1402 io.feedback_fast.bits.dataInvalidSqIdx := DontCare 1403 1404 io.ldCancel.ld1Cancel := false.B 1405 1406 // fast wakeup 1407 val s1_fast_uop_valid = WireInit(false.B) 1408 s1_fast_uop_valid := 1409 !io.dcache.s1_disable_fast_wakeup && 1410 s1_valid && 1411 !s1_kill && 1412 !io.tlb.resp.bits.miss && 1413 !io.lsq.forward.dataInvalidFast 1414 io.fast_uop.valid := GatedValidRegNext(s1_fast_uop_valid) && (s2_valid && !s2_out.rep_info.need_rep && !s2_uncache && !(s2_prf && !s2_hw_prf)) && !s2_isvec && !s2_frm_mabuf 1415 io.fast_uop.bits := RegEnable(s1_out.uop, s1_fast_uop_valid) 1416 1417 // 1418 io.s2_ptr_chasing := RegEnable(s1_try_ptr_chasing && !s1_cancel_ptr_chasing, false.B, s1_fire) 1419 1420 // RegNext prefetch train for better timing 1421 // ** Now, prefetch train is valid at load s3 ** 1422 val s2_prefetch_train_valid = WireInit(false.B) 1423 s2_prefetch_train_valid := s2_valid && !s2_actually_uncache && (!s2_in.tlbMiss || s2_hw_prf) 1424 io.prefetch_train.valid := GatedValidRegNext(s2_prefetch_train_valid) 1425 io.prefetch_train.bits.fromLsPipelineBundle(s2_in, latch = true, enable = s2_prefetch_train_valid) 1426 io.prefetch_train.bits.miss := RegEnable(io.dcache.resp.bits.miss, s2_prefetch_train_valid) // TODO: use trace with bank conflict? 1427 io.prefetch_train.bits.meta_prefetch := RegEnable(io.dcache.resp.bits.meta_prefetch, s2_prefetch_train_valid) 1428 io.prefetch_train.bits.meta_access := RegEnable(io.dcache.resp.bits.meta_access, s2_prefetch_train_valid) 1429 io.prefetch_train.bits.isFinalSplit := false.B 1430 io.prefetch_train.bits.misalignWith16Byte := false.B 1431 io.prefetch_train.bits.misalignNeedWakeUp := false.B 1432 io.prefetch_train.bits.updateAddrValid := false.B 1433 io.prefetch_train.bits.isMisalign := false.B 1434 io.prefetch_train.bits.hasException := false.B 1435 io.s1_prefetch_spec := s1_fire 1436 io.s2_prefetch_spec := s2_prefetch_train_valid 1437 1438 val s2_prefetch_train_l1_valid = WireInit(false.B) 1439 s2_prefetch_train_l1_valid := s2_valid && !s2_actually_uncache 1440 io.prefetch_train_l1.valid := GatedValidRegNext(s2_prefetch_train_l1_valid) 1441 io.prefetch_train_l1.bits.fromLsPipelineBundle(s2_in, latch = true, enable = s2_prefetch_train_l1_valid) 1442 io.prefetch_train_l1.bits.miss := RegEnable(io.dcache.resp.bits.miss, s2_prefetch_train_l1_valid) 1443 io.prefetch_train_l1.bits.meta_prefetch := RegEnable(io.dcache.resp.bits.meta_prefetch, s2_prefetch_train_l1_valid) 1444 io.prefetch_train_l1.bits.meta_access := RegEnable(io.dcache.resp.bits.meta_access, s2_prefetch_train_l1_valid) 1445 io.prefetch_train_l1.bits.isFinalSplit := false.B 1446 io.prefetch_train_l1.bits.misalignWith16Byte := false.B 1447 io.prefetch_train_l1.bits.misalignNeedWakeUp := false.B 1448 io.prefetch_train_l1.bits.updateAddrValid := false.B 1449 io.prefetch_train_l1.bits.hasException := false.B 1450 io.prefetch_train_l1.bits.isMisalign := false.B 1451 if (env.FPGAPlatform){ 1452 io.dcache.s0_pc := DontCare 1453 io.dcache.s1_pc := DontCare 1454 io.dcache.s2_pc := DontCare 1455 }else{ 1456 io.dcache.s0_pc := s0_out.uop.pc 1457 io.dcache.s1_pc := s1_out.uop.pc 1458 io.dcache.s2_pc := s2_out.uop.pc 1459 } 1460 io.dcache.s2_kill := s2_pmp.ld || s2_pmp.st || s2_actually_uncache || s2_kill 1461 1462 val s1_ld_left_fire = s1_valid && !s1_kill && s2_ready 1463 val s2_ld_valid_dup = RegInit(0.U(6.W)) 1464 s2_ld_valid_dup := 0x0.U(6.W) 1465 when (s1_ld_left_fire && !s1_out.isHWPrefetch) { s2_ld_valid_dup := 0x3f.U(6.W) } 1466 when (s1_kill || s1_out.isHWPrefetch) { s2_ld_valid_dup := 0x0.U(6.W) } 1467 assert(RegNext((s2_valid === s2_ld_valid_dup(0)) || RegNext(s1_out.isHWPrefetch))) 1468 1469 // Pipeline 1470 // -------------------------------------------------------------------------------- 1471 // stage 3 1472 // -------------------------------------------------------------------------------- 1473 // writeback and update load queue 1474 val s3_valid = GatedValidRegNext(s2_valid && !s2_out.isHWPrefetch && !s2_out.uop.robIdx.needFlush(io.redirect)) 1475 val s3_in = RegEnable(s2_out, s2_fire) 1476 val s3_out = Wire(Valid(new MemExuOutput)) 1477 val s3_dcache_rep = RegEnable(s2_dcache_fast_rep && s2_troublem, false.B, s2_fire) 1478 val s3_ld_valid_dup = RegEnable(s2_ld_valid_dup, s2_fire) 1479 val s3_fast_rep = Wire(Bool()) 1480 val s3_nc_with_data = RegNext(s2_nc_with_data) 1481 val s3_troublem = GatedValidRegNext(s2_troublem) 1482 val s3_kill = s3_in.uop.robIdx.needFlush(io.redirect) 1483 val s3_vecout = Wire(new OnlyVecExuOutput) 1484 val s3_vecActive = RegEnable(s2_out.vecActive, true.B, s2_fire) 1485 val s3_isvec = RegEnable(s2_out.isvec, false.B, s2_fire) 1486 val s3_vec_alignedType = RegEnable(s2_out.alignedType, s2_fire) 1487 val s3_vec_mBIndex = RegEnable(s2_out.mbIndex, s2_fire) 1488 val s3_frm_mabuf = s3_in.isFrmMisAlignBuf 1489 val s3_mmio_req = RegNext(s2_mmio_req) 1490 val s3_pdest = RegNext(Mux(s2_valid, s2_out.uop.pdest, s2_mmio_req.bits.uop.pdest)) 1491 val s3_rfWen = RegEnable(Mux(s2_valid, s2_out.uop.rfWen, s2_mmio_req.bits.uop.rfWen), s2_valid || s2_mmio_req.valid) 1492 val s3_fpWen = RegEnable(Mux(s2_valid, s2_out.uop.fpWen, s2_mmio_req.bits.uop.fpWen), s2_valid || s2_mmio_req.valid) 1493 val s3_data_select = RegEnable(s2_data_select, 0.U(s2_data_select.getWidth.W), s2_fire) 1494 val s3_data_select_by_offset = RegEnable(s2_data_select_by_offset, 0.U.asTypeOf(s2_data_select_by_offset), s2_fire) 1495 val s3_hw_err = 1496 if (EnableAccurateLoadError) { 1497 io.dcache.resp.bits.error_delayed && GatedValidRegNext(io.csrCtrl.cache_error_enable) && s3_troublem 1498 } else { 1499 WireInit(false.B) 1500 } 1501 val s3_safe_wakeup = RegEnable(s2_safe_wakeup, s2_fire) 1502 val s3_safe_writeback = RegEnable(s2_safe_writeback, s2_fire) || s3_hw_err 1503 val s3_exception = RegEnable(s2_real_exception, s2_fire) 1504 val s3_mis_align = RegEnable(s2_mis_align, s2_fire) 1505 val s3_trigger_debug_mode = RegEnable(s2_trigger_debug_mode, false.B, s2_fire) 1506 1507 // TODO: Fix vector load merge buffer nack 1508 val s3_vec_mb_nack = Wire(Bool()) 1509 s3_vec_mb_nack := false.B 1510 XSError(s3_valid && s3_vec_mb_nack, "Merge buffer should always accept vector loads!") 1511 1512 s3_ready := !s3_valid || s3_kill || io.ldout.ready 1513 1514 1515 // forwrad last beat 1516 val s3_fast_rep_canceled = io.replay.valid && io.replay.bits.forward_tlDchannel || io.misalign_ldin.valid || !io.dcache.req.ready 1517 1518 val s3_can_enter_lsq_valid = s3_valid && (!s3_fast_rep || s3_fast_rep_canceled) && !s3_in.feedbacked && !s3_nc_with_data && !s3_in.misalignNeedWakeUp 1519 io.lsq.ldin.valid := s3_can_enter_lsq_valid 1520 // TODO: check this --by hx 1521 // io.lsq.ldin.valid := s3_valid && (!s3_fast_rep || !io.fast_rep_out.ready) && !s3_in.feedbacked && !s3_in.lateKill 1522 io.lsq.ldin.bits := s3_in 1523 io.lsq.ldin.bits.miss := s3_in.miss 1524 1525 // connect to misalignBuffer 1526 val toMisalignBufferValid = s3_can_enter_lsq_valid && s3_mis_align && !s3_frm_mabuf 1527 io.misalign_buf.valid := toMisalignBufferValid 1528 io.misalign_buf.bits := s3_in 1529 1530 /* <------- DANGEROUS: Don't change sequence here ! -------> */ 1531 io.lsq.ldin.bits.data_wen_dup := s3_ld_valid_dup.asBools 1532 io.lsq.ldin.bits.replacementUpdated := io.dcache.resp.bits.replacementUpdated 1533 io.lsq.ldin.bits.missDbUpdated := GatedValidRegNext(s2_fire && s2_in.hasROBEntry && !s2_in.tlbMiss && !s2_in.missDbUpdated) 1534 io.lsq.ldin.bits.updateAddrValid := !s3_mis_align && (!s3_frm_mabuf || s3_in.isFinalSplit) || s3_exception 1535 io.lsq.ldin.bits.hasException := false.B 1536 1537 io.s3_dly_ld_err := false.B // s3_dly_ld_err && s3_valid 1538 io.lsq.ldin.bits.dcacheRequireReplay := s3_dcache_rep 1539 1540 val s3_vp_match_fail = GatedValidRegNext(s2_fwd_vp_match_invalid) && s3_troublem 1541 val s3_rep_frm_fetch = s3_vp_match_fail 1542 val s3_ldld_rep_inst = 1543 io.lsq.ldld_nuke_query.resp.valid && 1544 io.lsq.ldld_nuke_query.resp.bits.rep_frm_fetch && 1545 GatedValidRegNext(io.csrCtrl.ldld_vio_check_enable) 1546 val s3_flushPipe = s3_ldld_rep_inst 1547 1548 val s3_lrq_rep_info = WireInit(s3_in.rep_info) 1549 s3_lrq_rep_info.misalign_nack := toMisalignBufferValid && !io.misalign_buf.ready 1550 val s3_lrq_sel_rep_cause = PriorityEncoderOH(s3_lrq_rep_info.cause.asUInt) 1551 val s3_replayqueue_rep_cause = WireInit(0.U.asTypeOf(s3_in.rep_info.cause)) 1552 s3_replayqueue_rep_cause(LoadReplayCauses.C_MF) := s3_mis_align && s3_lrq_rep_info.misalign_nack 1553 1554 val s3_mab_rep_info = WireInit(s3_in.rep_info) 1555 val s3_mab_sel_rep_cause = PriorityEncoderOH(s3_mab_rep_info.cause.asUInt) 1556 val s3_misalign_rep_cause = WireInit(0.U.asTypeOf(s3_in.rep_info.cause)) 1557 1558 s3_misalign_rep_cause := Mux( 1559 s3_in.misalignNeedWakeUp, 1560 0.U.asTypeOf(s3_mab_rep_info.cause.cloneType), 1561 VecInit(s3_mab_sel_rep_cause.asBools) 1562 ) 1563 1564 when (s3_exception || s3_hw_err || s3_rep_frm_fetch || s3_frm_mabuf) { 1565 s3_replayqueue_rep_cause := 0.U.asTypeOf(s3_lrq_rep_info.cause.cloneType) 1566 } .otherwise { 1567 s3_replayqueue_rep_cause := VecInit(s3_lrq_sel_rep_cause.asBools) 1568 1569 } 1570 io.lsq.ldin.bits.rep_info.cause := s3_replayqueue_rep_cause 1571 1572 1573 // Int load, if hit, will be writebacked at s3 1574 s3_out.valid := s3_valid && s3_safe_writeback && !toMisalignBufferValid 1575 s3_out.bits.uop := s3_in.uop 1576 s3_out.bits.uop.fpWen := s3_in.uop.fpWen 1577 s3_out.bits.uop.exceptionVec(loadAccessFault) := s3_in.uop.exceptionVec(loadAccessFault) && s3_vecActive 1578 s3_out.bits.uop.exceptionVec(hardwareError) := s3_hw_err && s3_vecActive 1579 s3_out.bits.uop.flushPipe := false.B 1580 s3_out.bits.uop.replayInst := false.B 1581 s3_out.bits.data := s3_in.data 1582 s3_out.bits.isFromLoadUnit := true.B 1583 s3_out.bits.debug.isMMIO := s3_in.mmio 1584 s3_out.bits.debug.isNC := s3_in.nc 1585 s3_out.bits.debug.isPerfCnt := false.B 1586 s3_out.bits.debug.paddr := s3_in.paddr 1587 s3_out.bits.debug.vaddr := s3_in.vaddr 1588 1589 // Vector load, writeback to merge buffer 1590 // TODO: Add assertion in merge buffer, merge buffer must accept vec load writeback 1591 s3_vecout.isvec := s3_isvec 1592 s3_vecout.vecdata := 0.U // Data will be assigned later 1593 s3_vecout.mask := s3_in.mask 1594 // s3_vecout.rob_idx_valid := s3_in.rob_idx_valid 1595 // s3_vecout.inner_idx := s3_in.inner_idx 1596 // s3_vecout.rob_idx := s3_in.rob_idx 1597 // s3_vecout.offset := s3_in.offset 1598 s3_vecout.reg_offset := s3_in.reg_offset 1599 s3_vecout.vecActive := s3_vecActive 1600 s3_vecout.is_first_ele := s3_in.is_first_ele 1601 // s3_vecout.uopQueuePtr := DontCare // uopQueuePtr is already saved in flow queue 1602 // s3_vecout.flowPtr := s3_in.flowPtr 1603 s3_vecout.elemIdx := s3_in.elemIdx // elemIdx is already saved in flow queue // TODO: 1604 s3_vecout.elemIdxInsideVd := s3_in.elemIdxInsideVd 1605 s3_vecout.trigger := s3_in.uop.trigger 1606 s3_vecout.vstart := s3_in.uop.vpu.vstart 1607 s3_vecout.vecTriggerMask := s3_in.vecTriggerMask 1608 val s3_usSecondInv = s3_in.usSecondInv 1609 1610 val s3_frm_mis_flush = s3_frm_mabuf && 1611 (io.misalign_ldout.bits.rep_info.fwd_fail || io.misalign_ldout.bits.rep_info.mem_amb || io.misalign_ldout.bits.rep_info.nuke) 1612 1613 io.rollback.valid := s3_valid && (s3_rep_frm_fetch || s3_flushPipe || s3_frm_mis_flush) && !s3_exception 1614 io.rollback.bits := DontCare 1615 io.rollback.bits.isRVC := s3_out.bits.uop.preDecodeInfo.isRVC 1616 io.rollback.bits.robIdx := s3_out.bits.uop.robIdx 1617 io.rollback.bits.ftqIdx := s3_out.bits.uop.ftqPtr 1618 io.rollback.bits.ftqOffset := s3_out.bits.uop.ftqOffset 1619 io.rollback.bits.level := Mux(s3_rep_frm_fetch || s3_frm_mis_flush, RedirectLevel.flush, RedirectLevel.flushAfter) 1620 io.rollback.bits.cfiUpdate.target := s3_out.bits.uop.pc 1621 io.rollback.bits.debug_runahead_checkpoint_id := s3_out.bits.uop.debugInfo.runahead_checkpoint_id 1622 /* <------- DANGEROUS: Don't change sequence here ! -------> */ 1623 1624 io.lsq.ldin.bits.uop := s3_out.bits.uop 1625// io.lsq.ldin.bits.uop.exceptionVec(loadAddrMisaligned) := Mux(s3_in.onlyMisalignException, false.B, s3_in.uop.exceptionVec(loadAddrMisaligned)) 1626 1627 val s3_revoke = s3_exception || io.lsq.ldin.bits.rep_info.need_rep || s3_mis_align 1628 io.lsq.ldld_nuke_query.revoke := s3_revoke 1629 io.lsq.stld_nuke_query.revoke := s3_revoke 1630 1631 // feedback slow 1632 s3_fast_rep := RegNext(s2_fast_rep) 1633 1634 val s3_fb_no_waiting = !s3_in.isLoadReplay && 1635 (!(s3_fast_rep && !s3_fast_rep_canceled)) && 1636 !s3_in.feedbacked 1637 1638 // feedback: scalar load will send feedback to RS 1639 // vector load will send signal to VL Merge Buffer, then send feedback at granularity of uops 1640 io.feedback_slow.valid := s3_valid && s3_fb_no_waiting && !s3_isvec && !s3_frm_mabuf 1641 io.feedback_slow.bits.hit := !s3_lrq_rep_info.need_rep || io.lsq.ldin.ready 1642 io.feedback_slow.bits.flushState := s3_in.ptwBack 1643 io.feedback_slow.bits.robIdx := s3_in.uop.robIdx 1644 io.feedback_slow.bits.sqIdx := s3_in.uop.sqIdx 1645 io.feedback_slow.bits.lqIdx := s3_in.uop.lqIdx 1646 io.feedback_slow.bits.sourceType := RSFeedbackType.lrqFull 1647 io.feedback_slow.bits.dataInvalidSqIdx := DontCare 1648 1649 // TODO: vector wakeup? 1650 io.ldCancel.ld2Cancel := s3_valid && !s3_safe_wakeup && !s3_isvec && (!s3_frm_mabuf || s3_in.misalignNeedWakeUp) 1651 1652 val s3_ld_wb_meta = Mux(s3_valid, s3_out.bits, s3_mmio_req.bits) 1653 1654 // data from load queue refill 1655 val s3_ld_raw_data_frm_mmio = RegNextN(io.lsq.ld_raw_data, 3) 1656 val s3_merged_data_frm_mmio = s3_ld_raw_data_frm_mmio.mergedData() 1657 val s3_picked_data_frm_mmio = LookupTree(s3_ld_raw_data_frm_mmio.addrOffset, List( 1658 "b000".U -> s3_merged_data_frm_mmio(63, 0), 1659 "b001".U -> s3_merged_data_frm_mmio(63, 8), 1660 "b010".U -> s3_merged_data_frm_mmio(63, 16), 1661 "b011".U -> s3_merged_data_frm_mmio(63, 24), 1662 "b100".U -> s3_merged_data_frm_mmio(63, 32), 1663 "b101".U -> s3_merged_data_frm_mmio(63, 40), 1664 "b110".U -> s3_merged_data_frm_mmio(63, 48), 1665 "b111".U -> s3_merged_data_frm_mmio(63, 56) 1666 )) 1667 val s3_ld_data_frm_mmio = rdataHelper(s3_ld_raw_data_frm_mmio.uop, s3_picked_data_frm_mmio) 1668 1669 /* data from pipe, which forward from respectively 1670 * dcache hit: [D channel, mshr, sbuffer, sq] 1671 * nc_with_data: [sq] 1672 */ 1673 1674 val s2_ld_data_frm_nc = shiftDataToHigh(s2_out.paddr, s2_out.data) 1675 val s2_ld_raw_data_frm_pipe = Wire(new LoadDataFromDcacheBundle) 1676 s2_ld_raw_data_frm_pipe.respDcacheData := Mux(s2_nc_with_data, s2_ld_data_frm_nc, io.dcache.resp.bits.data) 1677 s2_ld_raw_data_frm_pipe.forward_D := s2_fwd_frm_d_chan && !s2_nc_with_data 1678 s2_ld_raw_data_frm_pipe.forwardData_D := s2_fwd_data_frm_d_chan 1679 s2_ld_raw_data_frm_pipe.forward_mshr := s2_fwd_frm_mshr && !s2_nc_with_data 1680 s2_ld_raw_data_frm_pipe.forwardData_mshr := s2_fwd_data_frm_mshr 1681 s2_ld_raw_data_frm_pipe.forward_result_valid := s2_fwd_data_valid 1682 1683 s2_ld_raw_data_frm_pipe.forwardMask := s2_fwd_mask 1684 s2_ld_raw_data_frm_pipe.forwardData := s2_fwd_data 1685 s2_ld_raw_data_frm_pipe.uop := s2_out.uop 1686 s2_ld_raw_data_frm_pipe.addrOffset := s2_out.paddr(3, 0) 1687 1688 val s2_ld_raw_data_frm_tlD = s2_ld_raw_data_frm_pipe.mergeTLData() 1689 val s2_merged_data_frm_pipe = s2_ld_raw_data_frm_pipe.mergeLsqFwdData(s2_ld_raw_data_frm_tlD) 1690 val s3_merged_data_frm_pipe = RegEnable(s2_merged_data_frm_pipe, s2_fire) 1691 1692 // duplicate reg for ldout and vecldout 1693 private val LdDataDup = 3 1694 require(LdDataDup >= 2) 1695 1696 val s3_data_frm_pipe = VecInit((0 until LdDataDup).map(i => { 1697 VecInit(Seq( 1698 s3_merged_data_frm_pipe(63, 0), 1699 s3_merged_data_frm_pipe(71, 8), 1700 s3_merged_data_frm_pipe(79, 16), 1701 s3_merged_data_frm_pipe(87, 24), 1702 s3_merged_data_frm_pipe(95, 32), 1703 s3_merged_data_frm_pipe(103, 40), 1704 s3_merged_data_frm_pipe(111, 48), 1705 s3_merged_data_frm_pipe(119, 56), 1706 s3_merged_data_frm_pipe(127, 64), 1707 s3_merged_data_frm_pipe(127, 72), 1708 s3_merged_data_frm_pipe(127, 80), 1709 s3_merged_data_frm_pipe(127, 88), 1710 s3_merged_data_frm_pipe(127, 96), 1711 s3_merged_data_frm_pipe(127, 104), 1712 s3_merged_data_frm_pipe(127, 112), 1713 s3_merged_data_frm_pipe(127, 120), 1714 )) 1715 })) 1716 val s3_picked_data_frm_pipe = VecInit((0 until LdDataDup).map(i => { 1717 Mux1H(s3_data_select_by_offset, s3_data_frm_pipe(i)) 1718 })) 1719 val s3_ld_data_frm_pipe = VecInit((0 until LdDataDup).map(i => { 1720 newRdataHelper(s3_data_select, s3_picked_data_frm_pipe(i)) 1721 })) 1722 1723 // FIXME: add 1 cycle delay ? 1724 // io.lsq.uncache.ready := !s3_valid 1725 val s3_ldout_valid = s3_mmio_req.valid || 1726 s3_out.valid && RegNext(!s2_out.isvec && !s2_out.isFrmMisAlignBuf) 1727 val s3_outexception = ExceptionNO.selectByFu(s3_out.bits.uop.exceptionVec, LduCfg).asUInt.orR && s3_vecActive 1728 io.ldout.valid := s3_ldout_valid 1729 io.ldout.bits := s3_ld_wb_meta 1730 io.ldout.bits.data := Mux(s3_valid, s3_ld_data_frm_pipe(0), s3_ld_data_frm_mmio) 1731 io.ldout.bits.uop.rfWen := s3_rfWen 1732 io.ldout.bits.uop.fpWen := s3_fpWen 1733 io.ldout.bits.uop.pdest := s3_pdest 1734 io.ldout.bits.uop.exceptionVec := ExceptionNO.selectByFu(s3_ld_wb_meta.uop.exceptionVec, LduCfg) 1735 io.ldout.bits.isFromLoadUnit := true.B 1736 io.ldout.bits.uop.fuType := Mux( 1737 s3_valid && s3_isvec, 1738 FuType.vldu.U, 1739 FuType.ldu.U 1740 ) 1741 1742 XSError(s3_valid && s3_in.misalignNeedWakeUp && !s3_frm_mabuf, "Only the needwakeup from the misalignbuffer may be high") 1743 XSError(s3_valid && s3_vecout.isvec && s3_in.vecActive && !s3_vecout.mask.orR, "In vecActive, mask complement should not be 0") 1744 // TODO: check this --hx 1745 // io.ldout.valid := s3_out.valid && !s3_out.bits.uop.robIdx.needFlush(io.redirect) && !s3_vecout.isvec || 1746 // io.lsq.uncache.valid && !io.lsq.uncache.bits.uop.robIdx.needFlush(io.redirect) && !s3_out.valid && !io.lsq.uncache.bits.isVls 1747 // io.ldout.bits.data := Mux(s3_out.valid, s3_ld_data_frm_pipe, s3_ld_data_frm_mmio) 1748 // io.ldout.valid := s3_out.valid && !s3_out.bits.uop.robIdx.needFlush(io.redirect) || 1749 // s3_mmio_req.valid && !s3_mmio_req.bits.uop.robIdx.needFlush(io.redirect) && !s3_out.valid 1750 1751 // s3 load fast replay 1752 io.fast_rep_out.valid := s3_valid && s3_fast_rep 1753 io.fast_rep_out.bits := s3_in 1754 io.fast_rep_out.bits.lateKill := s3_rep_frm_fetch 1755 io.fast_rep_out.bits.delayedLoadError := s3_hw_err 1756 1757 val vecFeedback = s3_valid && s3_fb_no_waiting && s3_lrq_rep_info.need_rep && !io.lsq.ldin.ready && s3_isvec 1758 1759 // vector output 1760 io.vecldout.bits.alignedType := s3_vec_alignedType 1761 // vec feedback 1762 io.vecldout.bits.vecFeedback := vecFeedback 1763 // TODO: VLSU, uncache data logic 1764 val vecdata = rdataVecHelper(s3_vec_alignedType(1,0), s3_picked_data_frm_pipe(1)) 1765 io.vecldout.bits.vecdata.get := Mux( 1766 s3_in.misalignWith16Byte, 1767 s3_picked_data_frm_pipe(1), 1768 Mux( 1769 s3_in.is128bit, 1770 s3_merged_data_frm_pipe, 1771 vecdata 1772 ) 1773 ) 1774 io.vecldout.bits.isvec := s3_vecout.isvec 1775 io.vecldout.bits.elemIdx := s3_vecout.elemIdx 1776 io.vecldout.bits.elemIdxInsideVd.get := s3_vecout.elemIdxInsideVd 1777 io.vecldout.bits.mask := s3_vecout.mask 1778 io.vecldout.bits.hasException := s3_exception 1779 io.vecldout.bits.reg_offset.get := s3_vecout.reg_offset 1780 io.vecldout.bits.usSecondInv := s3_usSecondInv 1781 io.vecldout.bits.mBIndex := s3_vec_mBIndex 1782 io.vecldout.bits.hit := !s3_lrq_rep_info.need_rep || io.lsq.ldin.ready 1783 io.vecldout.bits.sourceType := RSFeedbackType.lrqFull 1784 io.vecldout.bits.trigger := s3_vecout.trigger 1785 io.vecldout.bits.flushState := DontCare 1786 io.vecldout.bits.exceptionVec := ExceptionNO.selectByFu(s3_out.bits.uop.exceptionVec, VlduCfg) 1787 io.vecldout.bits.vaddr := s3_in.fullva 1788 io.vecldout.bits.vaNeedExt := s3_in.vaNeedExt 1789 io.vecldout.bits.gpaddr := s3_in.gpaddr 1790 io.vecldout.bits.isForVSnonLeafPTE := s3_in.isForVSnonLeafPTE 1791 io.vecldout.bits.mmio := DontCare 1792 io.vecldout.bits.vstart := s3_vecout.vstart 1793 io.vecldout.bits.vecTriggerMask := s3_vecout.vecTriggerMask 1794 io.vecldout.bits.nc := DontCare 1795 1796 io.vecldout.valid := s3_out.valid && !s3_out.bits.uop.robIdx.needFlush(io.redirect) && s3_vecout.isvec && !s3_mis_align && !s3_frm_mabuf //|| 1797 // TODO: check this, why !io.lsq.uncache.bits.isVls before? 1798 // Now vector instruction don't support mmio. 1799 // io.lsq.uncache.valid && !io.lsq.uncache.bits.uop.robIdx.needFlush(io.redirect) && !s3_out.valid && io.lsq.uncache.bits.isVls 1800 //io.lsq.uncache.valid && !io.lsq.uncache.bits.uop.robIdx.needFlush(io.redirect) && !s3_out.valid && !io.lsq.uncache.bits.isVls 1801 1802 io.misalign_ldout.valid := s3_valid && (!s3_fast_rep || s3_fast_rep_canceled) && s3_frm_mabuf 1803 io.misalign_ldout.bits := io.lsq.ldin.bits 1804 io.misalign_ldout.bits.data := Mux(s3_in.misalignWith16Byte, s3_merged_data_frm_pipe, s3_picked_data_frm_pipe(2)) 1805 io.misalign_ldout.bits.rep_info.cause := s3_misalign_rep_cause 1806 1807 // fast load to load forward 1808 if (EnableLoadToLoadForward) { 1809 io.l2l_fwd_out.valid := s3_valid && !s3_in.mmio && !s3_in.nc && !s3_lrq_rep_info.need_rep 1810 io.l2l_fwd_out.data := Mux(s3_in.vaddr(3), s3_merged_data_frm_pipe(127, 64), s3_merged_data_frm_pipe(63, 0)) 1811 io.l2l_fwd_out.dly_ld_err := s3_hw_err || // ecc delayed error 1812 s3_ldld_rep_inst || 1813 s3_rep_frm_fetch 1814 } else { 1815 io.l2l_fwd_out.valid := false.B 1816 io.l2l_fwd_out.data := DontCare 1817 io.l2l_fwd_out.dly_ld_err := DontCare 1818 } 1819 1820 // s1 1821 io.debug_ls.s1_robIdx := s1_in.uop.robIdx.value 1822 io.debug_ls.s1_isLoadToLoadForward := s1_fire && s1_try_ptr_chasing && !s1_ptr_chasing_canceled 1823 io.debug_ls.s1_isTlbFirstMiss := s1_fire && s1_tlb_miss && s1_in.isFirstIssue 1824 // s2 1825 io.debug_ls.s2_robIdx := s2_in.uop.robIdx.value 1826 io.debug_ls.s2_isBankConflict := s2_fire && (!s2_kill && s2_bank_conflict) 1827 io.debug_ls.s2_isDcacheFirstMiss := s2_fire && io.dcache.resp.bits.miss && s2_in.isFirstIssue 1828 io.debug_ls.s2_isForwardFail := s2_fire && s2_fwd_fail 1829 // s3 1830 io.debug_ls.s3_robIdx := s3_in.uop.robIdx.value 1831 io.debug_ls.s3_isReplayFast := s3_valid && s3_fast_rep && !s3_fast_rep_canceled 1832 io.debug_ls.s3_isReplayRS := RegNext(io.feedback_fast.valid && !io.feedback_fast.bits.hit) || (io.feedback_slow.valid && !io.feedback_slow.bits.hit) 1833 io.debug_ls.s3_isReplaySlow := io.lsq.ldin.valid && io.lsq.ldin.bits.rep_info.need_rep 1834 io.debug_ls.s3_isReplay := s3_valid && s3_lrq_rep_info.need_rep // include fast+slow+rs replay 1835 io.debug_ls.replayCause := s3_lrq_rep_info.cause 1836 io.debug_ls.replayCnt := 1.U 1837 1838 // Topdown 1839 io.lsTopdownInfo.s1.robIdx := s1_in.uop.robIdx.value 1840 io.lsTopdownInfo.s1.vaddr_valid := s1_valid && s1_in.hasROBEntry 1841 io.lsTopdownInfo.s1.vaddr_bits := s1_vaddr 1842 io.lsTopdownInfo.s2.robIdx := s2_in.uop.robIdx.value 1843 io.lsTopdownInfo.s2.paddr_valid := s2_fire && s2_in.hasROBEntry && !s2_in.tlbMiss 1844 io.lsTopdownInfo.s2.paddr_bits := s2_in.paddr 1845 io.lsTopdownInfo.s2.first_real_miss := io.dcache.resp.bits.real_miss 1846 io.lsTopdownInfo.s2.cache_miss_en := s2_fire && s2_in.hasROBEntry && !s2_in.tlbMiss && !s2_in.missDbUpdated 1847 1848 // perf cnt 1849 XSPerfAccumulate("s0_in_valid", io.ldin.valid) 1850 XSPerfAccumulate("s0_in_block", io.ldin.valid && !io.ldin.fire) 1851 XSPerfAccumulate("s0_vecin_valid", io.vecldin.valid) 1852 XSPerfAccumulate("s0_vecin_block", io.vecldin.valid && !io.vecldin.fire) 1853 XSPerfAccumulate("s0_in_fire_first_issue", s0_valid && s0_sel_src.isFirstIssue) 1854 XSPerfAccumulate("s0_lsq_replay_issue", io.replay.fire) 1855 XSPerfAccumulate("s0_lsq_replay_vecissue", io.replay.fire && io.replay.bits.isvec) 1856 XSPerfAccumulate("s0_ldu_fire_first_issue", io.ldin.fire && s0_sel_src.isFirstIssue) 1857 XSPerfAccumulate("s0_fast_replay_issue", io.fast_rep_in.fire) 1858 XSPerfAccumulate("s0_fast_replay_vecissue", io.fast_rep_in.fire && io.fast_rep_in.bits.isvec) 1859 XSPerfAccumulate("s0_stall_out", s0_valid && !s0_can_go) 1860 XSPerfAccumulate("s0_stall_dcache", s0_valid && !io.dcache.req.ready) 1861 XSPerfAccumulate("s0_addr_spec_success", s0_fire && s0_dcache_vaddr(VAddrBits-1, 12) === io.ldin.bits.src(0)(VAddrBits-1, 12)) 1862 XSPerfAccumulate("s0_addr_spec_failed", s0_fire && s0_dcache_vaddr(VAddrBits-1, 12) =/= io.ldin.bits.src(0)(VAddrBits-1, 12)) 1863 XSPerfAccumulate("s0_addr_spec_success_once", s0_fire && s0_dcache_vaddr(VAddrBits-1, 12) === io.ldin.bits.src(0)(VAddrBits-1, 12) && s0_sel_src.isFirstIssue) 1864 XSPerfAccumulate("s0_addr_spec_failed_once", s0_fire && s0_dcache_vaddr(VAddrBits-1, 12) =/= io.ldin.bits.src(0)(VAddrBits-1, 12) && s0_sel_src.isFirstIssue) 1865 XSPerfAccumulate("s0_vec_addr_vlen_aligned", s0_fire && s0_sel_src.isvec && s0_dcache_vaddr(3, 0) === 0.U) 1866 XSPerfAccumulate("s0_vec_addr_vlen_unaligned", s0_fire && s0_sel_src.isvec && s0_dcache_vaddr(3, 0) =/= 0.U) 1867 XSPerfAccumulate("s0_forward_tl_d_channel", s0_out.forward_tlDchannel) 1868 XSPerfAccumulate("s0_hardware_prefetch_fire", s0_fire && s0_hw_prf_select) 1869 XSPerfAccumulate("s0_software_prefetch_fire", s0_fire && s0_sel_src.prf && s0_src_select_vec(int_iss_idx)) 1870 XSPerfAccumulate("s0_hardware_prefetch_blocked", io.prefetch_req.valid && !s0_hw_prf_select) 1871 XSPerfAccumulate("s0_hardware_prefetch_total", io.prefetch_req.valid) 1872 1873 XSPerfAccumulate("s3_rollback_total", io.rollback.valid) 1874 XSPerfAccumulate("s3_rep_frm_fetch_rollback", io.rollback.valid && s3_rep_frm_fetch) 1875 XSPerfAccumulate("s3_flushPipe_rollback", io.rollback.valid && s3_flushPipe) 1876 XSPerfAccumulate("s3_frm_mis_flush_rollback", io.rollback.valid && s3_frm_mis_flush) 1877 1878 XSPerfAccumulate("s1_in_valid", s1_valid) 1879 XSPerfAccumulate("s1_in_fire", s1_fire) 1880 XSPerfAccumulate("s1_in_fire_first_issue", s1_fire && s1_in.isFirstIssue) 1881 XSPerfAccumulate("s1_tlb_miss", s1_fire && s1_tlb_miss) 1882 XSPerfAccumulate("s1_tlb_miss_first_issue", s1_fire && s1_tlb_miss && s1_in.isFirstIssue) 1883 XSPerfAccumulate("s1_stall_out", s1_valid && !s1_can_go) 1884 XSPerfAccumulate("s1_dly_err", s1_valid && s1_fast_rep_dly_err) 1885 1886 XSPerfAccumulate("s2_in_valid", s2_valid) 1887 XSPerfAccumulate("s2_in_fire", s2_fire) 1888 XSPerfAccumulate("s2_in_fire_first_issue", s2_fire && s2_in.isFirstIssue) 1889 XSPerfAccumulate("s2_dcache_miss", s2_fire && io.dcache.resp.bits.miss) 1890 XSPerfAccumulate("s2_dcache_miss_first_issue", s2_fire && io.dcache.resp.bits.miss && s2_in.isFirstIssue) 1891 XSPerfAccumulate("s2_dcache_real_miss_first_issue", s2_fire && io.dcache.resp.bits.miss && s2_in.isFirstIssue) 1892 XSPerfAccumulate("s2_full_forward", s2_fire && s2_full_fwd) 1893 XSPerfAccumulate("s2_dcache_miss_full_forward", s2_fire && s2_dcache_miss) 1894 XSPerfAccumulate("s2_fwd_frm_d_can", s2_valid && s2_fwd_frm_d_chan) 1895 XSPerfAccumulate("s2_fwd_frm_d_chan_or_mshr", s2_valid && s2_fwd_frm_d_chan_or_mshr) 1896 XSPerfAccumulate("s2_stall_out", s2_fire && !s2_can_go) 1897 XSPerfAccumulate("s2_prefetch", s2_fire && s2_prf) 1898 XSPerfAccumulate("s2_prefetch_ignored", s2_fire && s2_prf && io.dcache.s2_mq_nack) // ignore prefetch for mshr full / miss req port conflict 1899 XSPerfAccumulate("s2_prefetch_miss", s2_fire && s2_prf && io.dcache.resp.bits.miss) // prefetch req miss in l1 1900 XSPerfAccumulate("s2_prefetch_hit", s2_fire && s2_prf && !io.dcache.resp.bits.miss) // prefetch req hit in l1 1901 XSPerfAccumulate("s2_prefetch_accept", s2_fire && s2_prf && io.dcache.resp.bits.miss && !io.dcache.s2_mq_nack) // prefetch a missed line in l1, and l1 accepted it 1902 XSPerfAccumulate("s2_forward_req", s2_fire && s2_in.forward_tlDchannel) 1903 XSPerfAccumulate("s2_successfully_forward_channel_D", s2_fire && s2_fwd_frm_d_chan && s2_fwd_data_valid) 1904 XSPerfAccumulate("s2_successfully_forward_mshr", s2_fire && s2_fwd_frm_mshr && s2_fwd_data_valid) 1905 1906 XSPerfAccumulate("load_to_load_forward", s1_try_ptr_chasing && !s1_ptr_chasing_canceled) 1907 XSPerfAccumulate("load_to_load_forward_try", s1_try_ptr_chasing) 1908 XSPerfAccumulate("load_to_load_forward_fail", s1_cancel_ptr_chasing) 1909 XSPerfAccumulate("load_to_load_forward_fail_cancelled", s1_cancel_ptr_chasing && s1_ptr_chasing_canceled) 1910 XSPerfAccumulate("load_to_load_forward_fail_wakeup_mismatch", s1_cancel_ptr_chasing && !s1_ptr_chasing_canceled && s1_not_fast_match) 1911 XSPerfAccumulate("load_to_load_forward_fail_op_not_ld", s1_cancel_ptr_chasing && !s1_ptr_chasing_canceled && !s1_not_fast_match && s1_fu_op_type_not_ld) 1912 XSPerfAccumulate("load_to_load_forward_fail_addr_align", s1_cancel_ptr_chasing && !s1_ptr_chasing_canceled && !s1_not_fast_match && !s1_fu_op_type_not_ld && s1_addr_misaligned) 1913 XSPerfAccumulate("load_to_load_forward_fail_set_mismatch", s1_cancel_ptr_chasing && !s1_ptr_chasing_canceled && !s1_not_fast_match && !s1_fu_op_type_not_ld && !s1_addr_misaligned && s1_addr_mismatch) 1914 1915 XSPerfAccumulate("nc_ld_writeback", io.ldout.valid && s3_nc_with_data) 1916 XSPerfAccumulate("nc_ld_exception", s3_valid && s3_nc_with_data && s3_in.uop.exceptionVec.reduce(_ || _)) 1917 XSPerfAccumulate("nc_ldld_vio", s3_valid && s3_nc_with_data && s3_ldld_rep_inst) 1918 XSPerfAccumulate("nc_stld_vio", s3_valid && s3_nc_with_data && s3_in.rep_info.nuke) 1919 XSPerfAccumulate("nc_ldld_vioNack", s3_valid && s3_nc_with_data && s3_in.rep_info.rar_nack) 1920 XSPerfAccumulate("nc_stld_vioNack", s3_valid && s3_nc_with_data && s3_in.rep_info.raw_nack) 1921 XSPerfAccumulate("nc_stld_fwd", s3_valid && s3_nc_with_data && RegNext(s2_full_fwd)) 1922 XSPerfAccumulate("nc_stld_fwdNotReady", s3_valid && s3_nc_with_data && RegNext(s2_mem_amb || s2_fwd_fail)) 1923 XSPerfAccumulate("nc_stld_fwdAddrMismatch", s3_valid && s3_nc_with_data && s3_vp_match_fail) 1924 1925 // bug lyq: some signals in perfEvents are no longer suitable for the current MemBlock design 1926 // hardware performance counter 1927 val perfEvents = Seq( 1928 ("load_s0_in_fire ", s0_fire ), 1929 ("load_to_load_forward ", s1_fire && s1_try_ptr_chasing && !s1_ptr_chasing_canceled ), 1930 ("stall_dcache ", s0_valid && s0_can_go && !io.dcache.req.ready ), 1931 ("load_s1_in_fire ", s0_fire ), 1932 ("load_s1_tlb_miss ", s1_fire && io.tlb.resp.bits.miss ), 1933 ("load_s2_in_fire ", s1_fire ), 1934 ("load_s2_dcache_miss ", s2_fire && io.dcache.resp.bits.miss ), 1935 ) 1936 generatePerfEvent() 1937 1938 if (backendParams.debugEn){ 1939 dontTouch(s0_src_valid_vec) 1940 dontTouch(s0_src_ready_vec) 1941 dontTouch(s0_src_select_vec) 1942 dontTouch(s3_ld_data_frm_pipe) 1943 s3_data_select_by_offset.map(x=> dontTouch(x)) 1944 s3_data_frm_pipe.map(x=> dontTouch(x)) 1945 s3_picked_data_frm_pipe.map(x=> dontTouch(x)) 1946 } 1947 1948 XSDebug(io.ldout.fire, "ldout %x\n", io.ldout.bits.uop.pc) 1949 // end 1950} 1951