xref: /XiangShan/src/main/scala/xiangshan/mem/pipeline/LoadUnit.scala (revision 9477429f7dc92dfd72de3908b8e953de2886a01d)
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.ExceptionNO._
25import xiangshan._
26import xiangshan.backend.Bundles.{DynInst, MemExuInput, MemExuOutput}
27import xiangshan.backend.fu.PMPRespBundle
28import xiangshan.backend.fu.FuConfig._
29import xiangshan.backend.ctrlblock.{DebugLsInfoBundle, LsTopdownInfo}
30import xiangshan.backend.rob.RobPtr
31import xiangshan.backend.ctrlblock.DebugLsInfoBundle
32import xiangshan.backend.fu.util.SdtrigExt
33
34import xiangshan.cache._
35import xiangshan.cache.wpu.ReplayCarry
36import xiangshan.cache.mmu._
37import xiangshan.mem.mdp._
38
39class LoadToLsqReplayIO(implicit p: Parameters) extends XSBundle
40  with HasDCacheParameters
41  with HasTlbConst
42{
43  // mshr refill index
44  val mshr_id         = UInt(log2Up(cfg.nMissEntries).W)
45  // get full data from store queue and sbuffer
46  val full_fwd        = Bool()
47  // wait for data from store inst's store queue index
48  val data_inv_sq_idx = new SqPtr
49  // wait for address from store queue index
50  val addr_inv_sq_idx = new SqPtr
51  // replay carry
52  val rep_carry       = new ReplayCarry(nWays)
53  // data in last beat
54  val last_beat       = Bool()
55  // replay cause
56  val cause           = Vec(LoadReplayCauses.allCauses, Bool())
57  // performance debug information
58  val debug           = new PerfDebugInfo
59  // tlb hint
60  val tlb_id          = UInt(log2Up(loadfiltersize).W)
61  val tlb_full        = Bool()
62
63  // alias
64  def mem_amb       = cause(LoadReplayCauses.C_MA)
65  def tlb_miss      = cause(LoadReplayCauses.C_TM)
66  def fwd_fail      = cause(LoadReplayCauses.C_FF)
67  def dcache_rep    = cause(LoadReplayCauses.C_DR)
68  def dcache_miss   = cause(LoadReplayCauses.C_DM)
69  def wpu_fail      = cause(LoadReplayCauses.C_WF)
70  def bank_conflict = cause(LoadReplayCauses.C_BC)
71  def rar_nack      = cause(LoadReplayCauses.C_RAR)
72  def raw_nack      = cause(LoadReplayCauses.C_RAW)
73  def nuke          = cause(LoadReplayCauses.C_NK)
74  def need_rep      = cause.asUInt.orR
75}
76
77
78class LoadToLsqIO(implicit p: Parameters) extends XSBundle {
79  val ldin            = DecoupledIO(new LqWriteBundle)
80  val uncache         = Flipped(DecoupledIO(new MemExuOutput))
81  val ld_raw_data     = Input(new LoadDataFromLQBundle)
82  val forward         = new PipeLoadForwardQueryIO
83  val stld_nuke_query = new LoadNukeQueryIO
84  val ldld_nuke_query = new LoadNukeQueryIO
85  val trigger         = Flipped(new LqTriggerIO)
86}
87
88class LoadToLoadIO(implicit p: Parameters) extends XSBundle {
89  val valid      = Bool()
90  val data       = UInt(XLEN.W) // load to load fast path is limited to ld (64 bit) used as vaddr src1 only
91  val dly_ld_err = Bool()
92}
93
94class LoadUnitTriggerIO(implicit p: Parameters) extends XSBundle {
95  val tdata2      = Input(UInt(64.W))
96  val matchType   = Input(UInt(2.W))
97  val tEnable     = Input(Bool()) // timing is calculated before this
98  val addrHit     = Output(Bool())
99}
100
101class LoadUnit(implicit p: Parameters) extends XSModule
102  with HasLoadHelper
103  with HasPerfEvents
104  with HasDCacheParameters
105  with HasCircularQueuePtrHelper
106  with HasVLSUParameters
107  with SdtrigExt
108{
109  val io = IO(new Bundle() {
110    // control
111    val redirect      = Flipped(ValidIO(new Redirect))
112    val csrCtrl       = Flipped(new CustomCSRCtrlIO)
113
114    // int issue path
115    val ldin          = Flipped(Decoupled(new MemExuInput))
116    val ldout         = Decoupled(new MemExuOutput)
117
118    // vec issue path
119    val vecldin = Flipped(Decoupled(new VecLoadPipeBundle))
120    val vecldout = Decoupled(new VecExuOutput)
121    val vecReplay = Decoupled(new LsPipelineBundle)
122
123    // data path
124    val tlb           = new TlbRequestIO(2)
125    val pmp           = Flipped(new PMPRespBundle()) // arrive same to tlb now
126    val dcache        = new DCacheLoadIO
127    val sbuffer       = new LoadForwardQueryIO
128    val vec_forward   = new LoadForwardQueryIO // forward from vec store flow queue
129    val lsq           = new LoadToLsqIO
130    val tl_d_channel  = Input(new DcacheToLduForwardIO)
131    val forward_mshr  = Flipped(new LduToMissqueueForwardIO)
132    val refill        = Flipped(ValidIO(new Refill))
133    val l2_hint       = Input(Valid(new L2ToL1Hint))
134    val tlb_hint      = Flipped(new TlbHintReq)
135    // fast wakeup
136    // TODO: implement vector fast wakeup
137    val fast_uop = ValidIO(new DynInst) // early wakeup signal generated in load_s1, send to RS in load_s2
138
139    // trigger
140    val trigger = Vec(TriggerNum, new LoadUnitTriggerIO)
141
142    // prefetch
143    val prefetch_train            = ValidIO(new LdPrefetchTrainBundle()) // provide prefetch info to sms
144    val prefetch_train_l1         = ValidIO(new LdPrefetchTrainBundle()) // provide prefetch info to stream & stride
145    val prefetch_req              = Flipped(ValidIO(new L1PrefetchReq)) // hardware prefetch to l1 cache req
146    val canAcceptLowConfPrefetch  = Output(Bool())
147    val canAcceptHighConfPrefetch = Output(Bool())
148
149    // load to load fast path
150    val l2l_fwd_in    = Input(new LoadToLoadIO)
151    val l2l_fwd_out   = Output(new LoadToLoadIO)
152
153    val ld_fast_match    = Input(Bool())
154    val ld_fast_fuOpType = Input(UInt())
155    val ld_fast_imm      = Input(UInt(12.W))
156
157    // rs feedback
158    val wakeup = ValidIO(new DynInst)
159    val feedback_fast = ValidIO(new RSFeedback) // stage 2
160    val feedback_slow = ValidIO(new RSFeedback) // stage 3
161    val ldCancel = Output(new LoadCancelIO()) // use to cancel the uops waked by this load, and cancel load
162
163    // load ecc error
164    val s3_dly_ld_err = Output(Bool()) // Note that io.s3_dly_ld_err and io.lsq.s3_dly_ld_err is different
165
166    // schedule error query
167    val stld_nuke_query = Flipped(Vec(StorePipelineWidth, Valid(new StoreNukeQueryIO)))
168
169    // queue-based replay
170    val replay       = Flipped(Decoupled(new LsPipelineBundle))
171    val lq_rep_full  = Input(Bool())
172
173    // misc
174    val s2_ptr_chasing = Output(Bool()) // provide right pc for hw prefetch
175
176    // Load fast replay path
177    val fast_rep_in  = Flipped(Decoupled(new LqWriteBundle))
178    val fast_rep_out = Decoupled(new LqWriteBundle)
179
180    // Load RAR rollback
181    val rollback = Valid(new Redirect)
182
183    // perf
184    val debug_ls         = Output(new DebugLsInfoBundle)
185    val lsTopdownInfo    = Output(new LsTopdownInfo)
186    val correctMissTrain = Input(Bool())
187  })
188
189  val s1_ready, s2_ready, s3_ready = WireInit(false.B)
190
191  // Pipeline
192  // --------------------------------------------------------------------------------
193  // stage 0
194  // --------------------------------------------------------------------------------
195  // generate addr, use addr to query DCache and DTLB
196  val s0_valid         = Wire(Bool())
197  val s0_mmio_select   = Wire(Bool())
198  val s0_kill          = Wire(Bool())
199  val s0_can_go        = s1_ready
200  val s0_fire          = s0_valid && s0_can_go
201  val s0_mmio_fire     = s0_mmio_select && s0_can_go
202  val s0_out           = Wire(new LqWriteBundle)
203
204  // flow source bundle
205  class FlowSource extends Bundle {
206    val vaddr         = UInt(VAddrBits.W)
207    val mask          = UInt((VLEN/8).W)
208    val uop           = new DynInst
209    val try_l2l       = Bool()
210    val has_rob_entry = Bool()
211    val rsIdx         = UInt(log2Up(MemIQSizeMax).W)
212    val rep_carry     = new ReplayCarry(nWays)
213    val mshrid        = UInt(log2Up(cfg.nMissEntries).W)
214    val isFirstIssue  = Bool()
215    val fast_rep      = Bool()
216    val ld_rep        = Bool()
217    val l2l_fwd       = Bool()
218    val prf           = Bool()
219    val prf_rd        = Bool()
220    val prf_wr        = Bool()
221    val sched_idx     = UInt(log2Up(LoadQueueReplaySize+1).W)
222    // Record the issue port idx of load issue queue. This signal is used by load cancel.
223    val deqPortIdx    = UInt(log2Ceil(LoadPipelineWidth).W)
224    // vec only
225    val isvec         = Bool()
226    val is128bit      = Bool()
227    val uop_unit_stride_fof = Bool()
228    val reg_offset    = UInt(vOffsetBits.W)
229    val vecActive     = Bool() // 1: vector active element or scala mem operation, 0: vector not active element
230    val is_first_ele  = Bool()
231    val flowPtr       = new VlflowPtr
232  }
233  val s0_sel_src = Wire(new FlowSource)
234
235  // load flow select/gen
236  // src0: super load replayed by LSQ (cache miss replay) (io.replay)
237  // src1: fast load replay (io.fast_rep_in)
238  // src2: mmio (io.lsq.uncache)
239  // src3: load replayed by LSQ (io.replay)
240  // src4: hardware prefetch from prefetchor (high confidence) (io.prefetch)
241  // src5: int read / software prefetch first issue from RS (io.in)
242  // src6: vec read from RS (io.vecldin)
243  // src7: load try pointchaising when no issued or replayed load (io.fastpath)
244  // src8: hardware prefetch from prefetchor (high confidence) (io.prefetch)
245  // priority: high to low
246  val s0_rep_stall           = io.ldin.valid && isAfter(io.replay.bits.uop.robIdx, io.ldin.bits.uop.robIdx)
247  val s0_super_ld_rep_valid  = io.replay.valid && io.replay.bits.forward_tlDchannel
248  val s0_ld_fast_rep_valid   = io.fast_rep_in.valid
249  val s0_ld_mmio_valid       = io.lsq.uncache.valid
250  val s0_ld_rep_valid        = io.replay.valid && !io.replay.bits.forward_tlDchannel && !s0_rep_stall
251  val s0_high_conf_prf_valid = io.prefetch_req.valid && io.prefetch_req.bits.confidence > 0.U
252  val s0_int_iss_valid       = io.ldin.valid // int flow first issue or software prefetch
253  val s0_vec_iss_valid       = io.vecldin.valid
254  val s0_l2l_fwd_valid       = io.l2l_fwd_in.valid
255  val s0_low_conf_prf_valid  = io.prefetch_req.valid && io.prefetch_req.bits.confidence === 0.U
256  dontTouch(s0_super_ld_rep_valid)
257  dontTouch(s0_ld_fast_rep_valid)
258  dontTouch(s0_ld_mmio_valid)
259  dontTouch(s0_ld_rep_valid)
260  dontTouch(s0_high_conf_prf_valid)
261  dontTouch(s0_int_iss_valid)
262  dontTouch(s0_vec_iss_valid)
263  dontTouch(s0_l2l_fwd_valid)
264  dontTouch(s0_low_conf_prf_valid)
265
266  // load flow source ready
267  val s0_super_ld_rep_ready  = WireInit(true.B)
268  val s0_ld_fast_rep_ready   = !s0_super_ld_rep_valid
269  val s0_ld_mmio_ready       = !s0_super_ld_rep_valid &&
270                               !s0_ld_fast_rep_valid
271  val s0_ld_rep_ready        = !s0_super_ld_rep_valid &&
272                               !s0_ld_fast_rep_valid &&
273                               !s0_ld_mmio_valid
274  val s0_high_conf_prf_ready = !s0_super_ld_rep_valid &&
275                               !s0_ld_fast_rep_valid &&
276                               !s0_ld_mmio_valid &&
277                               !s0_ld_rep_valid
278
279  val s0_int_iss_ready       = !s0_super_ld_rep_valid &&
280                               !s0_ld_fast_rep_valid &&
281                               !s0_ld_mmio_valid &&
282                               !s0_ld_rep_valid &&
283                               !s0_high_conf_prf_valid
284
285  val s0_vec_iss_ready       = !s0_super_ld_rep_valid &&
286                               !s0_ld_fast_rep_valid &&
287                               !s0_ld_mmio_valid &&
288                               !s0_ld_rep_valid &&
289                               !s0_high_conf_prf_valid &&
290                               !s0_int_iss_valid
291
292  val s0_l2l_fwd_ready       = !s0_super_ld_rep_valid &&
293                               !s0_ld_fast_rep_valid &&
294                               !s0_ld_mmio_valid &&
295                               !s0_ld_rep_valid &&
296                               !s0_high_conf_prf_valid &&
297                               !s0_int_iss_valid &&
298                               !s0_vec_iss_valid
299
300  val s0_low_conf_prf_ready  = !s0_super_ld_rep_valid &&
301                               !s0_ld_fast_rep_valid &&
302                               !s0_ld_mmio_valid &&
303                               !s0_ld_rep_valid &&
304                               !s0_high_conf_prf_valid &&
305                               !s0_int_iss_valid &&
306                               !s0_vec_iss_valid &&
307                               !s0_l2l_fwd_valid
308  dontTouch(s0_super_ld_rep_ready)
309  dontTouch(s0_ld_fast_rep_ready)
310  dontTouch(s0_ld_mmio_ready)
311  dontTouch(s0_ld_rep_ready)
312  dontTouch(s0_high_conf_prf_ready)
313  dontTouch(s0_int_iss_ready)
314  dontTouch(s0_vec_iss_ready)
315  dontTouch(s0_l2l_fwd_ready)
316  dontTouch(s0_low_conf_prf_ready)
317
318  // load flow source select (OH)
319  val s0_super_ld_rep_select = s0_super_ld_rep_valid && s0_super_ld_rep_ready
320  val s0_ld_fast_rep_select  = s0_ld_fast_rep_valid && s0_ld_fast_rep_ready
321  val s0_ld_mmio_select      = s0_ld_mmio_valid && s0_ld_mmio_ready
322  val s0_ld_rep_select       = s0_ld_rep_valid && s0_ld_rep_ready
323  val s0_hw_prf_select       = s0_high_conf_prf_ready && s0_high_conf_prf_valid ||
324                               s0_low_conf_prf_ready && s0_low_conf_prf_valid
325  val s0_int_iss_select      = s0_int_iss_ready && s0_int_iss_valid
326  val s0_vec_iss_select      = s0_vec_iss_ready && s0_vec_iss_valid
327  val s0_l2l_fwd_select      = s0_l2l_fwd_ready && s0_l2l_fwd_valid
328  dontTouch(s0_super_ld_rep_select)
329  dontTouch(s0_ld_fast_rep_select)
330  dontTouch(s0_ld_mmio_select)
331  dontTouch(s0_ld_rep_select)
332  dontTouch(s0_hw_prf_select)
333  dontTouch(s0_int_iss_select)
334  dontTouch(s0_vec_iss_select)
335  dontTouch(s0_l2l_fwd_select)
336
337  s0_valid := (s0_super_ld_rep_valid ||
338               s0_ld_fast_rep_valid ||
339               s0_ld_rep_valid ||
340               s0_high_conf_prf_valid ||
341               s0_int_iss_valid ||
342               s0_vec_iss_valid ||
343               s0_l2l_fwd_valid ||
344               s0_low_conf_prf_valid) && !s0_ld_mmio_select && io.dcache.req.ready && !s0_kill
345
346  s0_mmio_select := s0_ld_mmio_select && !s0_kill
347
348  // which is S0's out is ready and dcache is ready
349  val s0_try_ptr_chasing      = s0_l2l_fwd_select
350  val s0_do_try_ptr_chasing   = s0_try_ptr_chasing && s0_can_go && io.dcache.req.ready
351  val s0_ptr_chasing_vaddr    = io.l2l_fwd_in.data(5, 0) +& io.ld_fast_imm(5, 0)
352  val s0_ptr_chasing_canceled = WireInit(false.B)
353  s0_kill := s0_ptr_chasing_canceled
354
355  // prefetch related ctrl signal
356  io.canAcceptLowConfPrefetch  := s0_low_conf_prf_ready
357  io.canAcceptHighConfPrefetch := s0_high_conf_prf_ready
358
359  // query DTLB
360  io.tlb.req.valid                   := s0_valid
361  io.tlb.req.bits.cmd                := Mux(s0_sel_src.prf,
362                                         Mux(s0_sel_src.prf_wr, TlbCmd.write, TlbCmd.read),
363                                         TlbCmd.read
364                                       )
365  io.tlb.req.bits.vaddr              := Mux(s0_hw_prf_select, io.prefetch_req.bits.paddr, s0_sel_src.vaddr)
366  io.tlb.req.bits.size               := Mux(s0_sel_src.isvec, io.vecldin.bits.alignedType, LSUOpType.size(s0_sel_src.uop.fuOpType))
367  io.tlb.req.bits.kill               := s0_kill
368  io.tlb.req.bits.memidx.is_ld       := true.B
369  io.tlb.req.bits.memidx.is_st       := false.B
370  io.tlb.req.bits.memidx.idx         := s0_sel_src.uop.lqIdx.value
371  io.tlb.req.bits.debug.robIdx       := s0_sel_src.uop.robIdx
372  io.tlb.req.bits.no_translate       := s0_hw_prf_select  // hw b.reqetch addr does not need to be translated
373  io.tlb.req.bits.debug.pc           := s0_sel_src.uop.pc
374  io.tlb.req.bits.debug.isFirstIssue := s0_sel_src.isFirstIssue
375
376  // query DCache
377  io.dcache.req.valid             := s0_valid
378  io.dcache.req.bits.cmd          := Mux(s0_sel_src.prf_rd,
379                                      MemoryOpConstants.M_PFR,
380                                      Mux(s0_sel_src.prf_wr, MemoryOpConstants.M_PFW, MemoryOpConstants.M_XRD)
381                                    )
382  io.dcache.req.bits.vaddr        := s0_sel_src.vaddr
383  io.dcache.req.bits.mask         := s0_sel_src.mask
384  io.dcache.req.bits.data         := DontCare
385  io.dcache.req.bits.isFirstIssue := s0_sel_src.isFirstIssue
386  io.dcache.req.bits.instrtype    := Mux(s0_sel_src.prf, DCACHE_PREFETCH_SOURCE.U, LOAD_SOURCE.U)
387  io.dcache.req.bits.debug_robIdx := s0_sel_src.uop.robIdx.value
388  io.dcache.req.bits.replayCarry  := s0_sel_src.rep_carry
389  io.dcache.req.bits.id           := DontCare // TODO: update cache meta
390  io.dcache.pf_source             := Mux(s0_hw_prf_select, io.prefetch_req.bits.pf_source.value, L1_HW_PREFETCH_NULL)
391
392  // load flow priority mux
393  def fromNullSource(): FlowSource = {
394    val out = WireInit(0.U.asTypeOf(new FlowSource))
395    out
396  }
397
398  def fromFastReplaySource(src: LqWriteBundle): FlowSource = {
399    val out = WireInit(0.U.asTypeOf(new FlowSource))
400    out.vaddr         := src.vaddr
401    out.mask          := src.mask
402    out.uop           := src.uop
403    out.try_l2l       := false.B
404    out.has_rob_entry := src.hasROBEntry
405    out.rep_carry     := src.rep_info.rep_carry
406    out.mshrid        := src.rep_info.mshr_id
407    out.rsIdx         := src.rsIdx
408    out.isFirstIssue  := false.B
409    out.fast_rep      := true.B
410    out.ld_rep        := src.isLoadReplay
411    out.l2l_fwd       := false.B
412    out.prf           := LSUOpType.isPrefetch(src.uop.fuOpType)
413    out.prf_rd        := src.uop.fuOpType === LSUOpType.prefetch_r
414    out.prf_wr        := src.uop.fuOpType === LSUOpType.prefetch_w
415    out.sched_idx     := src.schedIndex
416    out.vecActive     := true.B // true for scala load
417    out
418  }
419
420  def fromMmioSource(src: MemExuOutput) = {
421    val out = WireInit(0.U.asTypeOf(new FlowSource))
422    out.vaddr        := 0.U
423    out.mask          := 0.U
424    out.uop           := src.uop
425    out.try_l2l       := false.B
426    out.has_rob_entry := false.B
427    out.rsIdx         := 0.U
428    out.rep_carry     := 0.U.asTypeOf(out.rep_carry)
429    out.mshrid        := 0.U
430    out.isFirstIssue  := false.B
431    out.fast_rep      := false.B
432    out.ld_rep        := false.B
433    out.l2l_fwd       := false.B
434    out.prf           := false.B
435    out.prf_rd        := false.B
436    out.prf_wr        := false.B
437    out.sched_idx     := 0.U
438    out.vecActive     := true.B
439    out
440  }
441
442  def fromNormalReplaySource(src: LsPipelineBundle): FlowSource = {
443    val out = WireInit(0.U.asTypeOf(new FlowSource))
444    out.vaddr         := src.vaddr
445    out.mask          := genVWmask(src.vaddr, src.uop.fuOpType(1, 0))
446    out.uop           := src.uop
447    out.try_l2l       := false.B
448    out.has_rob_entry := true.B
449    out.rsIdx         := src.rsIdx
450    out.rep_carry     := src.replayCarry
451    out.mshrid        := src.mshrid
452    out.isFirstIssue  := false.B
453    out.fast_rep      := false.B
454    out.ld_rep        := true.B
455    out.l2l_fwd       := false.B
456    out.prf           := LSUOpType.isPrefetch(src.uop.fuOpType)
457    out.prf_rd        := src.uop.fuOpType === LSUOpType.prefetch_r
458    out.prf_wr        := src.uop.fuOpType === LSUOpType.prefetch_w
459    out.sched_idx     := src.schedIndex
460    out.vecActive     := true.B // true for scala load
461    out
462  }
463
464  def fromPrefetchSource(src: L1PrefetchReq): FlowSource = {
465    val out = WireInit(0.U.asTypeOf(new FlowSource))
466    out.vaddr         := src.getVaddr()
467    out.mask          := 0.U
468    out.uop           := DontCare
469    out.try_l2l       := false.B
470    out.has_rob_entry := false.B
471    out.rsIdx         := 0.U
472    out.rep_carry     := 0.U.asTypeOf(out.rep_carry)
473    out.mshrid        := 0.U
474    out.isFirstIssue  := false.B
475    out.fast_rep      := false.B
476    out.ld_rep        := false.B
477    out.l2l_fwd       := false.B
478    out.prf           := true.B
479    out.prf_rd        := !src.is_store
480    out.prf_wr        := src.is_store
481    out.sched_idx     := 0.U
482    out.vecActive     := true.B // true for scala load
483    out
484  }
485
486  def fromIntIssueSource(src: MemExuInput): FlowSource = {
487    val out = WireInit(0.U.asTypeOf(new FlowSource))
488    out.vaddr         := src.src(0) + SignExt(src.uop.imm(11, 0), VAddrBits)
489    out.mask          := genVWmask(out.vaddr, src.uop.fuOpType(1,0))
490    out.uop           := src.uop
491    out.try_l2l       := false.B
492    out.has_rob_entry := true.B
493    out.rsIdx         := src.iqIdx
494    out.rep_carry     := 0.U.asTypeOf(out.rep_carry)
495    out.mshrid        := 0.U
496    out.isFirstIssue  := true.B
497    out.fast_rep      := false.B
498    out.ld_rep        := false.B
499    out.l2l_fwd       := false.B
500    out.prf           := LSUOpType.isPrefetch(src.uop.fuOpType)
501    out.prf_rd        := src.uop.fuOpType === LSUOpType.prefetch_r
502    out.prf_wr        := src.uop.fuOpType === LSUOpType.prefetch_w
503    out.sched_idx     := 0.U
504    out.vecActive     := true.B // true for scala load
505    out
506  }
507
508  def fromVecIssueSource(src: VecLoadPipeBundle): FlowSource = {
509    val out = WireInit(0.U.asTypeOf(new FlowSource))
510    out.vaddr         := src.vaddr
511    out.mask          := src.mask
512    out.uop           := src.uop
513    out.try_l2l       := false.B
514    out.has_rob_entry := true.B
515    // TODO: VLSU, implement vector feedback
516    out.rsIdx         := 0.U
517    // TODO: VLSU, implement replay carry
518    out.rep_carry     := 0.U.asTypeOf(out.rep_carry)
519    out.mshrid        := 0.U
520    // TODO: VLSU, implement first issue
521    out.isFirstIssue  := src.isFirstIssue
522    out.fast_rep      := false.B
523    out.ld_rep        := false.B
524    out.l2l_fwd       := false.B
525    out.prf           := false.B
526    out.prf_rd        := false.B
527    out.prf_wr        := false.B
528    out.sched_idx     := 0.U
529    // Vector load interface
530    out.isvec               := true.B
531    // vector loads only access a single element at a time, so 128-bit path is not used for now
532    out.is128bit            := false.B
533    out.uop_unit_stride_fof := src.uop_unit_stride_fof
534    // out.rob_idx_valid       := src.rob_idx_valid
535    // out.inner_idx           := src.inner_idx
536    // out.rob_idx             := src.rob_idx
537    out.reg_offset          := src.reg_offset
538    // out.offset              := src.offset
539    out.vecActive           := src.vecActive
540    out.is_first_ele        := src.is_first_ele
541    out.flowPtr             := src.flowPtr
542    out
543  }
544
545  def fromLoadToLoadSource(src: LoadToLoadIO): FlowSource = {
546    val out = WireInit(0.U.asTypeOf(new FlowSource))
547    out.vaddr              := Cat(src.data(XLEN-1, 6), s0_ptr_chasing_vaddr(5,0))
548    out.mask               := genVWmask(0.U, LSUOpType.ld)
549    // When there's no valid instruction from RS and LSQ, we try the load-to-load forwarding.
550    // Assume the pointer chasing is always ld.
551    out.uop.fuOpType       := LSUOpType.ld
552    out.try_l2l            := true.B
553    // we dont care out.isFirstIssue and out.rsIdx and s0_sqIdx in S0 when trying pointchasing
554    // because these signals will be updated in S1
555    out.has_rob_entry      := false.B
556    out.rsIdx              := 0.U
557    out.mshrid             := 0.U
558    out.rep_carry          := 0.U.asTypeOf(out.rep_carry)
559    out.isFirstIssue       := true.B
560    out.fast_rep           := false.B
561    out.ld_rep             := false.B
562    out.l2l_fwd            := true.B
563    out.prf                := false.B
564    out.prf_rd             := false.B
565    out.prf_wr             := false.B
566    out.sched_idx          := 0.U
567    out.vecActive          := true.B // true for scala load
568    out
569  }
570
571  // set default
572  val s0_src_selector = Seq(
573    s0_super_ld_rep_select,
574    s0_ld_fast_rep_select,
575    s0_ld_mmio_select,
576    s0_ld_rep_select,
577    s0_hw_prf_select,
578    s0_int_iss_select,
579    s0_vec_iss_select,
580    (if (EnableLoadToLoadForward) s0_l2l_fwd_select else true.B)
581  )
582  val s0_src_format = Seq(
583    fromNormalReplaySource(io.replay.bits),
584    fromFastReplaySource(io.fast_rep_in.bits),
585    fromMmioSource(io.lsq.uncache.bits),
586    fromNormalReplaySource(io.replay.bits),
587    fromPrefetchSource(io.prefetch_req.bits),
588    fromIntIssueSource(io.ldin.bits),
589    fromVecIssueSource(io.vecldin.bits),
590    (if (EnableLoadToLoadForward) fromLoadToLoadSource(io.l2l_fwd_in) else fromNullSource())
591  )
592  s0_sel_src := ParallelPriorityMux(s0_src_selector, s0_src_format)
593
594  // address align check
595  val s0_addr_aligned = LookupTree(Mux(s0_sel_src.isvec, io.vecldin.bits.alignedType, s0_sel_src.uop.fuOpType(1, 0)), List(
596    "b00".U   -> true.B,                   //b
597    "b01".U   -> (s0_sel_src.vaddr(0)    === 0.U), //h
598    "b10".U   -> (s0_sel_src.vaddr(1, 0) === 0.U), //w
599    "b11".U   -> (s0_sel_src.vaddr(2, 0) === 0.U)  //d
600  ))
601
602  // accept load flow if dcache ready (tlb is always ready)
603  // TODO: prefetch need writeback to loadQueueFlag
604  s0_out               := DontCare
605  s0_out.rsIdx         := s0_sel_src.rsIdx
606  s0_out.vaddr         := s0_sel_src.vaddr
607  s0_out.mask          := s0_sel_src.mask
608  s0_out.uop           := s0_sel_src.uop
609  s0_out.isFirstIssue  := s0_sel_src.isFirstIssue
610  s0_out.hasROBEntry   := s0_sel_src.has_rob_entry
611  s0_out.isPrefetch    := s0_sel_src.prf
612  s0_out.isHWPrefetch  := s0_hw_prf_select
613  s0_out.isFastReplay  := s0_sel_src.fast_rep
614  s0_out.isLoadReplay  := s0_sel_src.ld_rep
615  s0_out.isFastPath    := s0_sel_src.l2l_fwd
616  s0_out.mshrid        := s0_sel_src.mshrid
617  s0_out.isvec           := s0_sel_src.isvec
618  s0_out.is128bit        := s0_sel_src.is128bit
619  s0_out.uop_unit_stride_fof := s0_sel_src.uop_unit_stride_fof
620  // s0_out.rob_idx_valid   := s0_rob_idx_valid
621  // s0_out.inner_idx       := s0_inner_idx
622  // s0_out.rob_idx         := s0_rob_idx
623  s0_out.reg_offset      := s0_sel_src.reg_offset
624  // s0_out.offset          := s0_offset
625  s0_out.vecActive             := s0_sel_src.vecActive
626  s0_out.is_first_ele    := s0_sel_src.is_first_ele
627  s0_out.flowPtr         := s0_sel_src.flowPtr
628  s0_out.uop.exceptionVec(loadAddrMisaligned) := !s0_addr_aligned && s0_sel_src.vecActive
629  s0_out.forward_tlDchannel := s0_super_ld_rep_select
630  when(io.tlb.req.valid && s0_sel_src.isFirstIssue) {
631    s0_out.uop.debugInfo.tlbFirstReqTime := GTimer()
632  }.otherwise{
633    s0_out.uop.debugInfo.tlbFirstReqTime := s0_sel_src.uop.debugInfo.tlbFirstReqTime
634  }
635  s0_out.schedIndex     := s0_sel_src.sched_idx
636
637  // load fast replay
638  io.fast_rep_in.ready := (s0_can_go && io.dcache.req.ready && s0_ld_fast_rep_ready)
639
640  // mmio
641  io.lsq.uncache.ready := s0_mmio_fire
642
643  // load flow source ready
644  // cache missed load has highest priority
645  // always accept cache missed load flow from load replay queue
646  io.replay.ready := (s0_can_go && io.dcache.req.ready && (s0_ld_rep_ready && !s0_rep_stall || s0_super_ld_rep_select))
647
648  // accept load flow from rs when:
649  // 1) there is no lsq-replayed load
650  // 2) there is no fast replayed load
651  // 3) there is no high confidence prefetch request
652  io.ldin.ready := s0_can_go && io.dcache.req.ready && s0_int_iss_ready
653  io.vecldin.ready := s0_can_go && io.dcache.req.ready && s0_vec_iss_ready
654
655  // for hw prefetch load flow feedback, to be added later
656  // io.prefetch_in.ready := s0_hw_prf_select
657
658  // dcache replacement extra info
659  // TODO: should prefetch load update replacement?
660  io.dcache.replacementUpdated := Mux(s0_ld_rep_select || s0_super_ld_rep_select, io.replay.bits.replacementUpdated, false.B)
661
662  // load wakeup
663  io.wakeup.valid := s0_fire && (s0_super_ld_rep_select || s0_ld_fast_rep_select || s0_ld_rep_select || s0_int_iss_select) || s0_mmio_fire
664  io.wakeup.bits := s0_out.uop
665
666  XSDebug(io.dcache.req.fire,
667    p"[DCACHE LOAD REQ] pc ${Hexadecimal(s0_sel_src.uop.pc)}, vaddr ${Hexadecimal(s0_sel_src.vaddr)}\n"
668  )
669  XSDebug(s0_valid,
670    p"S0: pc ${Hexadecimal(s0_out.uop.pc)}, lId ${Hexadecimal(s0_out.uop.lqIdx.asUInt)}, " +
671    p"vaddr ${Hexadecimal(s0_out.vaddr)}, mask ${Hexadecimal(s0_out.mask)}\n")
672
673  // Pipeline
674  // --------------------------------------------------------------------------------
675  // stage 1
676  // --------------------------------------------------------------------------------
677  // TLB resp (send paddr to dcache)
678  val s1_valid      = RegInit(false.B)
679  val s1_in         = Wire(new LqWriteBundle)
680  val s1_out        = Wire(new LqWriteBundle)
681  val s1_kill       = Wire(Bool())
682  val s1_can_go     = s2_ready
683  val s1_fire       = s1_valid && !s1_kill && s1_can_go
684  val s1_vecActive        = RegEnable(s0_out.vecActive, true.B, s0_fire)
685  val s1_vec_alignedType = RegEnable(io.vecldin.bits.alignedType, s0_fire)
686
687  s1_ready := !s1_valid || s1_kill || s2_ready
688  when (s0_fire) { s1_valid := true.B }
689  .elsewhen (s1_fire) { s1_valid := false.B }
690  .elsewhen (s1_kill) { s1_valid := false.B }
691  s1_in   := RegEnable(s0_out, s0_fire)
692
693  val s1_fast_rep_dly_kill = RegNext(io.fast_rep_in.bits.lateKill) && s1_in.isFastReplay
694  val s1_fast_rep_dly_err =  RegNext(io.fast_rep_in.bits.delayedLoadError) && s1_in.isFastReplay
695  val s1_l2l_fwd_dly_err  = RegNext(io.l2l_fwd_in.dly_ld_err) && s1_in.isFastPath
696  val s1_dly_err          = s1_fast_rep_dly_err || s1_l2l_fwd_dly_err
697  val s1_vaddr_hi         = Wire(UInt())
698  val s1_vaddr_lo         = Wire(UInt())
699  val s1_vaddr            = Wire(UInt())
700  val s1_paddr_dup_lsu    = Wire(UInt())
701  val s1_paddr_dup_dcache = Wire(UInt())
702  val s1_exception        = ExceptionNO.selectByFu(s1_out.uop.exceptionVec, LduCfg).asUInt.orR   // af & pf exception were modified below.
703  val s1_tlb_miss         = io.tlb.resp.bits.miss
704  val s1_prf              = s1_in.isPrefetch
705  val s1_hw_prf           = s1_in.isHWPrefetch
706  val s1_sw_prf           = s1_prf && !s1_hw_prf
707  val s1_tlb_memidx       = io.tlb.resp.bits.memidx
708
709  s1_vaddr_hi         := s1_in.vaddr(VAddrBits - 1, 6)
710  s1_vaddr_lo         := s1_in.vaddr(5, 0)
711  s1_vaddr            := Cat(s1_vaddr_hi, s1_vaddr_lo)
712  s1_paddr_dup_lsu    := io.tlb.resp.bits.paddr(0)
713  s1_paddr_dup_dcache := io.tlb.resp.bits.paddr(1)
714
715  when (s1_tlb_memidx.is_ld && io.tlb.resp.valid && !s1_tlb_miss && s1_tlb_memidx.idx === s1_in.uop.lqIdx.value) {
716    // printf("load idx = %d\n", s1_tlb_memidx.idx)
717    s1_out.uop.debugInfo.tlbRespTime := GTimer()
718  }
719
720  io.tlb.req_kill   := s1_kill || s1_dly_err
721  io.tlb.resp.ready := true.B
722
723  io.dcache.s1_paddr_dup_lsu    <> s1_paddr_dup_lsu
724  io.dcache.s1_paddr_dup_dcache <> s1_paddr_dup_dcache
725  io.dcache.s1_kill             := s1_kill || s1_dly_err || s1_tlb_miss || s1_exception
726
727  // store to load forwarding
728  io.sbuffer.valid := s1_valid && !(s1_exception || s1_tlb_miss || s1_kill || s1_dly_err || s1_prf)
729  io.sbuffer.vaddr := s1_vaddr
730  io.sbuffer.paddr := s1_paddr_dup_lsu
731  io.sbuffer.uop   := s1_in.uop
732  io.sbuffer.sqIdx := s1_in.uop.sqIdx
733  io.sbuffer.mask  := s1_in.mask
734  io.sbuffer.pc    := s1_in.uop.pc // FIXME: remove it
735
736  io.vec_forward.valid := s1_valid && !(s1_exception || s1_tlb_miss || s1_kill || s1_prf)
737  io.vec_forward.vaddr := s1_vaddr
738  io.vec_forward.paddr := s1_paddr_dup_lsu
739  io.vec_forward.uop   := s1_in.uop
740  io.vec_forward.sqIdx := s1_in.uop.sqIdx
741  io.vec_forward.mask  := s1_in.mask
742  io.vec_forward.pc    := s1_in.uop.pc // FIXME: remove it
743
744  io.lsq.forward.valid     := s1_valid && !(s1_exception || s1_tlb_miss || s1_kill || s1_dly_err || s1_prf)
745  io.lsq.forward.vaddr     := s1_vaddr
746  io.lsq.forward.paddr     := s1_paddr_dup_lsu
747  io.lsq.forward.uop       := s1_in.uop
748  io.lsq.forward.sqIdx     := s1_in.uop.sqIdx
749  io.lsq.forward.sqIdxMask := 0.U
750  io.lsq.forward.mask      := s1_in.mask
751  io.lsq.forward.pc        := s1_in.uop.pc // FIXME: remove it
752
753  // st-ld violation query
754  // val s1_nuke_paddr_match = VecInit((0 until StorePipelineWidth).map(w => {Mux(s1_isvec && s1_in.is128bit,
755  //   s1_paddr_dup_lsu(PAddrBits-1, 4) === io.stld_nuke_query(w).bits.paddr(PAddrBits-1, 4),
756  //   s1_paddr_dup_lsu(PAddrBits-1, 3) === io.stld_nuke_query(w).bits.paddr(PAddrBits-1, 3))}))
757  val s1_nuke = VecInit((0 until StorePipelineWidth).map(w => {
758                       io.stld_nuke_query(w).valid && // query valid
759                       isAfter(s1_in.uop.robIdx, io.stld_nuke_query(w).bits.robIdx) && // older store
760                       (s1_paddr_dup_lsu(PAddrBits-1, 3) === io.stld_nuke_query(w).bits.paddr(PAddrBits-1, 3)) && // paddr match
761                       (s1_in.mask & io.stld_nuke_query(w).bits.mask).orR // data mask contain
762                      })).asUInt.orR && !s1_tlb_miss
763
764  s1_out                   := s1_in
765  s1_out.vaddr             := s1_vaddr
766  s1_out.paddr             := s1_paddr_dup_lsu
767  s1_out.tlbMiss           := s1_tlb_miss
768  s1_out.ptwBack           := io.tlb.resp.bits.ptwBack
769  s1_out.rsIdx             := s1_in.rsIdx
770  s1_out.rep_info.debug    := s1_in.uop.debugInfo
771  s1_out.rep_info.nuke     := s1_nuke && !s1_sw_prf
772  s1_out.delayedLoadError  := s1_dly_err
773
774  when (!s1_dly_err) {
775    // current ori test will cause the case of ldest == 0, below will be modifeid in the future.
776    // af & pf exception were modified
777    s1_out.uop.exceptionVec(loadPageFault)   := io.tlb.resp.bits.excp(0).pf.ld && s1_vecActive && !s1_tlb_miss
778    s1_out.uop.exceptionVec(loadAccessFault) := io.tlb.resp.bits.excp(0).af.ld && s1_vecActive && !s1_tlb_miss
779  } .otherwise {
780    s1_out.uop.exceptionVec(loadPageFault)      := false.B
781    s1_out.uop.exceptionVec(loadAddrMisaligned) := false.B
782    s1_out.uop.exceptionVec(loadAccessFault)    := s1_dly_err && s1_vecActive
783  }
784
785  // pointer chasing
786  val s1_try_ptr_chasing       = RegNext(s0_do_try_ptr_chasing, false.B)
787  val s1_ptr_chasing_vaddr     = RegEnable(s0_ptr_chasing_vaddr, s0_do_try_ptr_chasing)
788  val s1_fu_op_type_not_ld     = WireInit(false.B)
789  val s1_not_fast_match        = WireInit(false.B)
790  val s1_addr_mismatch         = WireInit(false.B)
791  val s1_addr_misaligned       = WireInit(false.B)
792  val s1_fast_mismatch         = WireInit(false.B)
793  val s1_ptr_chasing_canceled  = WireInit(false.B)
794  val s1_cancel_ptr_chasing    = WireInit(false.B)
795
796  s1_kill := s1_fast_rep_dly_kill ||
797             s1_cancel_ptr_chasing ||
798             s1_in.uop.robIdx.needFlush(io.redirect) ||
799            (s1_in.uop.robIdx.needFlush(RegNext(io.redirect)) && !RegNext(s0_try_ptr_chasing)) ||
800             RegEnable(s0_kill, false.B, io.ldin.valid || io.replay.valid || io.l2l_fwd_in.valid || io.fast_rep_in.valid || io.vecldin.valid)
801
802  if (EnableLoadToLoadForward) {
803    // Sometimes, we need to cancel the load-load forwarding.
804    // These can be put at S0 if timing is bad at S1.
805    // Case 0: CACHE_SET(base + offset) != CACHE_SET(base) (lowest 6-bit addition has an overflow)
806    s1_addr_mismatch     := s1_ptr_chasing_vaddr(6) ||
807                             RegEnable(io.ld_fast_imm(11, 6).orR, s0_do_try_ptr_chasing)
808    // Case 1: the address is not 64-bit aligned or the fuOpType is not LD
809    s1_addr_misaligned := s1_ptr_chasing_vaddr(2, 0).orR
810    s1_fu_op_type_not_ld := io.ldin.bits.uop.fuOpType =/= LSUOpType.ld
811    // Case 2: this load-load uop is cancelled
812    s1_ptr_chasing_canceled := !io.ldin.valid
813    // Case 3: fast mismatch
814    s1_fast_mismatch := RegEnable(!io.ld_fast_match, s0_do_try_ptr_chasing)
815
816    when (s1_try_ptr_chasing) {
817      s1_cancel_ptr_chasing := s1_addr_mismatch ||
818                               s1_addr_misaligned ||
819                               s1_fu_op_type_not_ld ||
820                               s1_ptr_chasing_canceled ||
821                               s1_fast_mismatch
822
823      s1_in.uop           := io.ldin.bits.uop
824      s1_in.rsIdx         := io.ldin.bits.iqIdx
825      s1_in.isFirstIssue  := io.ldin.bits.isFirstIssue
826      s1_vaddr_lo         := s1_ptr_chasing_vaddr(5, 0)
827      s1_paddr_dup_lsu    := Cat(io.tlb.resp.bits.paddr(0)(PAddrBits - 1, 6), s1_vaddr_lo)
828      s1_paddr_dup_dcache := Cat(io.tlb.resp.bits.paddr(0)(PAddrBits - 1, 6), s1_vaddr_lo)
829
830      // 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)
831      s1_in.uop.debugInfo.tlbFirstReqTime := GTimer()
832      s1_in.uop.debugInfo.tlbRespTime     := GTimer()
833    }
834    when (!s1_cancel_ptr_chasing) {
835      s0_ptr_chasing_canceled := s1_try_ptr_chasing && !io.replay.fire && !io.fast_rep_in.fire
836      when (s1_try_ptr_chasing) {
837        io.ldin.ready := true.B
838      }
839    }
840  }
841
842  // pre-calcuate sqIdx mask in s0, then send it to lsq in s1 for forwarding
843  val s1_sqIdx_mask = RegNext(UIntToMask(s0_out.uop.sqIdx.value, StoreQueueSize))
844  // to enable load-load, sqIdxMask must be calculated based on ldin.uop
845  // If the timing here is not OK, load-load forwarding has to be disabled.
846  // Or we calculate sqIdxMask at RS??
847  io.lsq.forward.sqIdxMask := s1_sqIdx_mask
848  if (EnableLoadToLoadForward) {
849    when (s1_try_ptr_chasing) {
850      io.lsq.forward.sqIdxMask := UIntToMask(io.ldin.bits.uop.sqIdx.value, StoreQueueSize)
851    }
852  }
853
854  io.forward_mshr.valid  := s1_valid && s1_out.forward_tlDchannel
855  io.forward_mshr.mshrid := s1_out.mshrid
856  io.forward_mshr.paddr  := s1_out.paddr
857
858  XSDebug(s1_valid,
859    p"S1: pc ${Hexadecimal(s1_out.uop.pc)}, lId ${Hexadecimal(s1_out.uop.lqIdx.asUInt)}, tlb_miss ${io.tlb.resp.bits.miss}, " +
860    p"paddr ${Hexadecimal(s1_out.paddr)}, mmio ${s1_out.mmio}\n")
861
862  // Pipeline
863  // --------------------------------------------------------------------------------
864  // stage 2
865  // --------------------------------------------------------------------------------
866  // s2: DCache resp
867  val s2_valid  = RegInit(false.B)
868  val s2_in     = Wire(new LqWriteBundle)
869  val s2_out    = Wire(new LqWriteBundle)
870  val s2_kill   = Wire(Bool())
871  val s2_can_go = s3_ready
872  val s2_fire   = s2_valid && !s2_kill && s2_can_go
873  val s2_vecActive = RegEnable(s1_out.vecActive, true.B, s1_fire)
874  val s2_isvec  = RegEnable(s1_out.isvec, false.B, s1_fire)
875  val s2_vec_alignedType = RegEnable(s1_vec_alignedType, s1_fire)
876
877  s2_kill := s2_in.uop.robIdx.needFlush(io.redirect)
878  s2_ready := !s2_valid || s2_kill || s3_ready
879  when (s1_fire) { s2_valid := true.B }
880  .elsewhen (s2_fire) { s2_valid := false.B }
881  .elsewhen (s2_kill) { s2_valid := false.B }
882  s2_in := RegEnable(s1_out, s1_fire)
883
884  val s2_pmp = WireInit(io.pmp)
885
886  val s2_prf    = s2_in.isPrefetch
887  val s2_hw_prf = s2_in.isHWPrefetch
888
889  // exception that may cause load addr to be invalid / illegal
890  // if such exception happen, that inst and its exception info
891  // will be force writebacked to rob
892  val s2_exception_vec = WireInit(s2_in.uop.exceptionVec)
893  when (!s2_in.delayedLoadError) {
894    s2_exception_vec(loadAccessFault) := (s2_in.uop.exceptionVec(loadAccessFault) || s2_pmp.ld ||
895                                       (io.dcache.resp.bits.tag_error && RegNext(io.csrCtrl.cache_error_enable))) && s2_vecActive
896  }
897
898  // soft prefetch will not trigger any exception (but ecc error interrupt may
899  // be triggered)
900  when (!s2_in.delayedLoadError && (s2_prf || s2_in.tlbMiss)) {
901    s2_exception_vec := 0.U.asTypeOf(s2_exception_vec.cloneType)
902  }
903  val s2_exception = ExceptionNO.selectByFu(s2_exception_vec, LduCfg).asUInt.orR && s2_vecActive
904
905  val (s2_fwd_frm_d_chan, s2_fwd_data_frm_d_chan) = io.tl_d_channel.forward(s1_valid && s1_out.forward_tlDchannel, s1_out.mshrid, s1_out.paddr)
906  val (s2_fwd_data_valid, s2_fwd_frm_mshr, s2_fwd_data_frm_mshr) = io.forward_mshr.forward()
907  val s2_fwd_frm_d_chan_or_mshr = s2_fwd_data_valid && (s2_fwd_frm_d_chan || s2_fwd_frm_mshr)
908
909  // writeback access fault caused by ecc error / bus error
910  // * ecc data error is slow to generate, so we will not use it until load stage 3
911  // * in load stage 3, an extra signal io.load_error will be used to
912  val s2_actually_mmio = s2_pmp.mmio
913  val s2_mmio          = !s2_prf &&
914                          s2_actually_mmio &&
915                         !s2_exception &&
916                         !s2_in.tlbMiss
917
918  val s2_full_fwd      = Wire(Bool())
919  val s2_mem_amb       = s2_in.uop.storeSetHit &&
920                         io.lsq.forward.addrInvalid
921
922  val s2_tlb_miss      = s2_in.tlbMiss
923  val s2_fwd_fail      = io.lsq.forward.dataInvalid || io.vec_forward.dataInvalid
924  val s2_dcache_miss   = io.dcache.resp.bits.miss &&
925                         !s2_fwd_frm_d_chan_or_mshr &&
926                         !s2_full_fwd
927
928  val s2_mq_nack       = io.dcache.s2_mq_nack &&
929                         !s2_fwd_frm_d_chan_or_mshr &&
930                         !s2_full_fwd
931
932  val s2_bank_conflict = io.dcache.s2_bank_conflict &&
933                         !s2_fwd_frm_d_chan_or_mshr &&
934                         !s2_full_fwd
935
936  val s2_wpu_pred_fail = io.dcache.s2_wpu_pred_fail &&
937                        !s2_fwd_frm_d_chan_or_mshr &&
938                        !s2_full_fwd
939
940  val s2_rar_nack      = io.lsq.ldld_nuke_query.req.valid &&
941                         !io.lsq.ldld_nuke_query.req.ready
942
943  val s2_raw_nack      = io.lsq.stld_nuke_query.req.valid &&
944                         !io.lsq.stld_nuke_query.req.ready
945  // st-ld violation query
946  //  NeedFastRecovery Valid when
947  //  1. Fast recovery query request Valid.
948  //  2. Load instruction is younger than requestors(store instructions).
949  //  3. Physical address match.
950  //  4. Data contains.
951  val s2_nuke          = VecInit((0 until StorePipelineWidth).map(w => {
952                          io.stld_nuke_query(w).valid && // query valid
953                          isAfter(s2_in.uop.robIdx, io.stld_nuke_query(w).bits.robIdx) && // older store
954                          // TODO: Fix me when vector instruction
955                          (s2_in.paddr(PAddrBits-1, 3) === io.stld_nuke_query(w).bits.paddr(PAddrBits-1, 3)) && // paddr match
956                          (s2_in.mask & io.stld_nuke_query(w).bits.mask).orR // data mask contain
957                        })).asUInt.orR && !s2_tlb_miss || s2_in.rep_info.nuke
958
959  val s2_cache_handled   = io.dcache.resp.bits.handled
960  val s2_cache_tag_error = RegNext(io.csrCtrl.cache_error_enable) &&
961                           io.dcache.resp.bits.tag_error
962
963  val s2_troublem        = !s2_exception &&
964                           !s2_mmio &&
965                           !s2_prf &&
966                           !s2_in.delayedLoadError
967
968  io.dcache.resp.ready  := true.B
969  val s2_dcache_should_resp = !(s2_in.tlbMiss || s2_exception || s2_in.delayedLoadError || s2_mmio || s2_prf)
970  assert(!(s2_valid && (s2_dcache_should_resp && !io.dcache.resp.valid)), "DCache response got lost")
971
972  // fast replay require
973  val s2_dcache_fast_rep = (s2_mq_nack || !s2_dcache_miss && (s2_bank_conflict || s2_wpu_pred_fail))
974  val s2_nuke_fast_rep   = !s2_mq_nack &&
975                           !s2_dcache_miss &&
976                           !s2_bank_conflict &&
977                           !s2_wpu_pred_fail &&
978                           !s2_rar_nack &&
979                           !s2_raw_nack &&
980                           s2_nuke
981
982  val s2_fast_rep = !s2_mem_amb &&
983                    !s2_tlb_miss &&
984                    !s2_fwd_fail &&
985                    (s2_dcache_fast_rep || s2_nuke_fast_rep) &&
986                    s2_troublem
987
988  // need allocate new entry
989  val s2_can_query = !s2_mem_amb &&
990                     !s2_tlb_miss &&
991                     !s2_fwd_fail &&
992                     s2_troublem
993
994  val s2_data_fwded = s2_dcache_miss && (s2_full_fwd || s2_cache_tag_error)
995
996  // ld-ld violation require
997  io.lsq.ldld_nuke_query.req.valid           := s2_valid && s2_can_query
998  io.lsq.ldld_nuke_query.req.bits.uop        := s2_in.uop
999  io.lsq.ldld_nuke_query.req.bits.mask       := s2_in.mask
1000  io.lsq.ldld_nuke_query.req.bits.paddr      := s2_in.paddr
1001  io.lsq.ldld_nuke_query.req.bits.data_valid := Mux(s2_full_fwd || s2_fwd_data_valid, true.B, !s2_dcache_miss)
1002
1003  // st-ld violation require
1004  io.lsq.stld_nuke_query.req.valid           := s2_valid && s2_can_query
1005  io.lsq.stld_nuke_query.req.bits.uop        := s2_in.uop
1006  io.lsq.stld_nuke_query.req.bits.mask       := s2_in.mask
1007  io.lsq.stld_nuke_query.req.bits.paddr      := s2_in.paddr
1008  io.lsq.stld_nuke_query.req.bits.data_valid := Mux(s2_full_fwd || s2_fwd_data_valid, true.B, !s2_dcache_miss)
1009
1010  // merge forward result
1011  // lsq has higher priority than sbuffer
1012  val s2_fwd_mask = Wire(Vec((VLEN/8), Bool()))
1013  val s2_fwd_data = Wire(Vec((VLEN/8), UInt(8.W)))
1014  s2_full_fwd := ((~s2_fwd_mask.asUInt).asUInt & s2_in.mask) === 0.U && !io.lsq.forward.dataInvalid && !io.vec_forward.dataInvalid
1015  // generate XLEN/8 Muxs
1016  for (i <- 0 until VLEN / 8) {
1017    s2_fwd_mask(i) := io.lsq.forward.forwardMask(i) || io.sbuffer.forwardMask(i) || io.vec_forward.forwardMask(i)
1018    s2_fwd_data(i) := Mux(
1019      io.lsq.forward.forwardMask(i),
1020      io.lsq.forward.forwardData(i),
1021      Mux(
1022        io.vec_forward.forwardMask(i),
1023        io.vec_forward.forwardData(i),
1024        io.sbuffer.forwardData(i)
1025      )
1026    )
1027  }
1028
1029  XSDebug(s2_fire, "[FWD LOAD RESP] pc %x fwd %x(%b) + %x(%b)\n",
1030    s2_in.uop.pc,
1031    io.lsq.forward.forwardData.asUInt, io.lsq.forward.forwardMask.asUInt,
1032    s2_in.forwardData.asUInt, s2_in.forwardMask.asUInt
1033  )
1034
1035  //
1036  s2_out                     := s2_in
1037  s2_out.data                := 0.U // data will be generated in load s3
1038  s2_out.uop.fpWen           := s2_in.uop.fpWen && !s2_exception
1039  s2_out.mmio                := s2_mmio
1040  s2_out.uop.flushPipe       := false.B
1041  s2_out.uop.exceptionVec    := s2_exception_vec
1042  s2_out.forwardMask         := s2_fwd_mask
1043  s2_out.forwardData         := s2_fwd_data
1044  s2_out.handledByMSHR       := s2_cache_handled
1045  s2_out.miss                := s2_dcache_miss && s2_troublem
1046  s2_out.feedbacked          := io.feedback_fast.valid
1047
1048  // Generate replay signal caused by:
1049  // * st-ld violation check
1050  // * tlb miss
1051  // * dcache replay
1052  // * forward data invalid
1053  // * dcache miss
1054  s2_out.rep_info.mem_amb         := s2_mem_amb && s2_troublem
1055  s2_out.rep_info.tlb_miss        := s2_tlb_miss && s2_troublem
1056  s2_out.rep_info.fwd_fail        := s2_fwd_fail && s2_troublem
1057  s2_out.rep_info.dcache_rep      := s2_mq_nack && s2_troublem
1058  s2_out.rep_info.dcache_miss     := s2_dcache_miss && s2_troublem
1059  s2_out.rep_info.bank_conflict   := s2_bank_conflict && s2_troublem
1060  s2_out.rep_info.wpu_fail        := s2_wpu_pred_fail && s2_troublem
1061  s2_out.rep_info.rar_nack        := s2_rar_nack && s2_troublem
1062  s2_out.rep_info.raw_nack        := s2_raw_nack && s2_troublem
1063  s2_out.rep_info.nuke            := s2_nuke && s2_troublem
1064  s2_out.rep_info.full_fwd        := s2_data_fwded
1065  s2_out.rep_info.data_inv_sq_idx := Mux(io.vec_forward.dataInvalid, s2_out.uop.sqIdx, io.lsq.forward.dataInvalidSqIdx)
1066  s2_out.rep_info.addr_inv_sq_idx := Mux(io.vec_forward.addrInvalid, s2_out.uop.sqIdx, io.lsq.forward.addrInvalidSqIdx)
1067  s2_out.rep_info.rep_carry       := io.dcache.resp.bits.replayCarry
1068  s2_out.rep_info.mshr_id         := io.dcache.resp.bits.mshr_id
1069  s2_out.rep_info.last_beat       := s2_in.paddr(log2Up(refillBytes))
1070  s2_out.rep_info.debug           := s2_in.uop.debugInfo
1071  s2_out.rep_info.tlb_id          := io.tlb_hint.id
1072  s2_out.rep_info.tlb_full        := io.tlb_hint.full
1073
1074  // if forward fail, replay this inst from fetch
1075  val debug_fwd_fail_rep = s2_fwd_fail && !s2_troublem && !s2_in.tlbMiss
1076  // if ld-ld violation is detected, replay from this inst from fetch
1077  val debug_ldld_nuke_rep = false.B // s2_ldld_violation && !s2_mmio && !s2_is_prefetch && !s2_in.tlbMiss
1078
1079  // to be removed
1080  io.feedback_fast.valid                 := false.B
1081  io.feedback_fast.bits.hit              := false.B
1082  io.feedback_fast.bits.flushState       := s2_in.ptwBack
1083  io.feedback_fast.bits.robIdx           := s2_in.uop.robIdx
1084  io.feedback_fast.bits.sourceType       := RSFeedbackType.lrqFull
1085  io.feedback_fast.bits.dataInvalidSqIdx := DontCare
1086
1087  io.ldCancel.ld1Cancel := false.B
1088
1089  // fast wakeup
1090  io.fast_uop.valid := RegNext(
1091    !io.dcache.s1_disable_fast_wakeup &&
1092    s1_valid &&
1093    !s1_kill &&
1094    !io.tlb.resp.bits.miss &&
1095    !io.lsq.forward.dataInvalidFast
1096  ) && (s2_valid && !s2_out.rep_info.need_rep && !s2_mmio) && !s2_isvec
1097  io.fast_uop.bits := RegNext(s1_out.uop)
1098
1099  //
1100  io.s2_ptr_chasing                    := RegEnable(s1_try_ptr_chasing && !s1_cancel_ptr_chasing, false.B, s1_fire)
1101
1102  // RegNext prefetch train for better timing
1103  // ** Now, prefetch train is valid at load s3 **
1104  io.prefetch_train.valid              := RegNext(s2_valid && !s2_actually_mmio && !s2_in.tlbMiss)
1105  io.prefetch_train.bits.fromLsPipelineBundle(s2_in, latch = true)
1106  io.prefetch_train.bits.miss          := RegNext(io.dcache.resp.bits.miss) // TODO: use trace with bank conflict?
1107  io.prefetch_train.bits.meta_prefetch := RegNext(io.dcache.resp.bits.meta_prefetch)
1108  io.prefetch_train.bits.meta_access   := RegNext(io.dcache.resp.bits.meta_access)
1109
1110  io.prefetch_train_l1.valid              := RegNext(s2_valid && !s2_actually_mmio)
1111  io.prefetch_train_l1.bits.fromLsPipelineBundle(s2_in, latch = true)
1112  io.prefetch_train_l1.bits.miss          := RegNext(io.dcache.resp.bits.miss)
1113  io.prefetch_train_l1.bits.meta_prefetch := RegNext(io.dcache.resp.bits.meta_prefetch)
1114  io.prefetch_train_l1.bits.meta_access   := RegNext(io.dcache.resp.bits.meta_access)
1115  if (env.FPGAPlatform){
1116    io.dcache.s0_pc := DontCare
1117    io.dcache.s1_pc := DontCare
1118    io.dcache.s2_pc := DontCare
1119  }else{
1120    io.dcache.s0_pc := s0_out.uop.pc
1121    io.dcache.s1_pc := s1_out.uop.pc
1122    io.dcache.s2_pc := s2_out.uop.pc
1123  }
1124  io.dcache.s2_kill := s2_pmp.ld || s2_actually_mmio || s2_kill
1125
1126  val s1_ld_left_fire = s1_valid && !s1_kill && s2_ready
1127  val s2_ld_valid_dup = RegInit(0.U(6.W))
1128  s2_ld_valid_dup := 0x0.U(6.W)
1129  when (s1_ld_left_fire && !s1_out.isHWPrefetch) { s2_ld_valid_dup := 0x3f.U(6.W) }
1130  when (s1_kill || s1_out.isHWPrefetch) { s2_ld_valid_dup := 0x0.U(6.W) }
1131  assert(RegNext((s2_valid === s2_ld_valid_dup(0)) || RegNext(s1_out.isHWPrefetch)))
1132
1133  // Pipeline
1134  // --------------------------------------------------------------------------------
1135  // stage 3
1136  // --------------------------------------------------------------------------------
1137  // writeback and update load queue
1138  val s3_valid        = RegNext(s2_valid && !s2_out.isHWPrefetch && !s2_out.uop.robIdx.needFlush(io.redirect))
1139  val s3_in           = RegEnable(s2_out, s2_fire)
1140  val s3_out          = Wire(Valid(new MemExuOutput))
1141  val s3_dcache_rep   = RegEnable(s2_dcache_fast_rep && s2_troublem, false.B, s2_fire)
1142  val s3_ld_valid_dup = RegEnable(s2_ld_valid_dup, s2_fire)
1143  val s3_fast_rep     = Wire(Bool())
1144  val s3_troublem     = RegNext(s2_troublem)
1145  val s3_kill         = s3_in.uop.robIdx.needFlush(io.redirect)
1146  val s3_vecout       = Wire(new OnlyVecExuOutput)
1147  val s3_vecActive    = RegEnable(s2_out.vecActive, true.B, s2_fire)
1148  val s3_isvec        = RegEnable(s2_out.isvec, false.B, s2_fire)
1149  val s3_vec_alignedType = RegEnable(s2_vec_alignedType, s2_fire)
1150  val s3_mmio         = Wire(chiselTypeOf(io.lsq.uncache))
1151  s3_ready := !s3_valid || s3_kill || io.ldout.ready
1152  s3_mmio.valid := RegNextN(io.lsq.uncache.valid, 3, Some(false.B))
1153  s3_mmio.ready := RegNextN(io.lsq.uncache.ready, 3, Some(false.B))
1154  s3_mmio.bits  := RegNextN(io.lsq.uncache.bits, 3)
1155
1156  // forwrad last beat
1157  val (s3_fwd_frm_d_chan, s3_fwd_data_frm_d_chan) = io.tl_d_channel.forward(s2_valid && s2_out.forward_tlDchannel, s2_out.mshrid, s2_out.paddr)
1158  val s3_fwd_data_valid = RegEnable(s2_fwd_data_valid, false.B, s2_valid)
1159  val s3_fwd_frm_d_chan_valid = (s3_fwd_frm_d_chan && s3_fwd_data_valid && s3_in.handledByMSHR)
1160  val s3_fast_rep_canceled = io.replay.valid && io.replay.bits.forward_tlDchannel || !io.dcache.req.ready && !s3_isvec
1161
1162  // s3 load fast replay
1163  io.fast_rep_out.valid := s3_valid && s3_fast_rep && !s3_in.uop.robIdx.needFlush(io.redirect) && !s3_isvec
1164  io.fast_rep_out.bits := s3_in
1165
1166  io.lsq.ldin.valid := s3_valid && (!s3_fast_rep || s3_fast_rep_canceled) && !s3_in.feedbacked
1167  // TODO: check this --by hx
1168  // io.lsq.ldin.valid := s3_valid && (!s3_fast_rep || !io.fast_rep_out.ready) && !s3_in.feedbacked && !s3_in.lateKill
1169  io.lsq.ldin.bits := s3_in
1170  io.lsq.ldin.bits.miss := s3_in.miss && !s3_fwd_frm_d_chan_valid
1171
1172  /* <------- DANGEROUS: Don't change sequence here ! -------> */
1173  io.lsq.ldin.bits.data_wen_dup := s3_ld_valid_dup.asBools
1174  io.lsq.ldin.bits.replacementUpdated := io.dcache.resp.bits.replacementUpdated
1175  io.lsq.ldin.bits.missDbUpdated := RegNext(s2_fire && s2_in.hasROBEntry && !s2_in.tlbMiss && !s2_in.missDbUpdated)
1176
1177  val s3_dly_ld_err =
1178    if (EnableAccurateLoadError) {
1179      io.dcache.resp.bits.error_delayed && RegNext(io.csrCtrl.cache_error_enable) && s3_troublem
1180    } else {
1181      WireInit(false.B)
1182    }
1183  io.s3_dly_ld_err := false.B // s3_dly_ld_err && s3_valid
1184  io.lsq.ldin.bits.dcacheRequireReplay  := s3_dcache_rep
1185  io.fast_rep_out.bits.delayedLoadError := s3_dly_ld_err
1186
1187  val s3_vp_match_fail = RegNext(io.lsq.forward.matchInvalid || io.sbuffer.matchInvalid) && s3_troublem
1188  val s3_rep_frm_fetch = s3_vp_match_fail
1189  val s3_ldld_rep_inst =
1190      io.lsq.ldld_nuke_query.resp.valid &&
1191      io.lsq.ldld_nuke_query.resp.bits.rep_frm_fetch &&
1192      RegNext(io.csrCtrl.ldld_vio_check_enable)
1193  val s3_flushPipe = s3_ldld_rep_inst
1194
1195  val s3_rep_info = WireInit(s3_in.rep_info)
1196  s3_rep_info.dcache_miss   := s3_in.rep_info.dcache_miss && !s3_fwd_frm_d_chan_valid
1197  val s3_sel_rep_cause = PriorityEncoderOH(s3_rep_info.cause.asUInt)
1198
1199  val s3_exception = ExceptionNO.selectByFu(s3_in.uop.exceptionVec, LduCfg).asUInt.orR && s3_vecActive
1200  when (s3_exception || s3_dly_ld_err || s3_rep_frm_fetch) {
1201    io.lsq.ldin.bits.rep_info.cause := 0.U.asTypeOf(s3_rep_info.cause.cloneType)
1202  } .otherwise {
1203    io.lsq.ldin.bits.rep_info.cause := VecInit(s3_sel_rep_cause.asBools)
1204  }
1205
1206  // Int load, if hit, will be writebacked at s3
1207  s3_out.valid                := s3_valid && !io.lsq.ldin.bits.rep_info.need_rep && !s3_in.mmio
1208  s3_out.bits.uop             := s3_in.uop
1209  s3_out.bits.uop.exceptionVec(loadAccessFault) := (s3_dly_ld_err || s3_in.uop.exceptionVec(loadAccessFault)) && s3_vecActive
1210  s3_out.bits.uop.flushPipe   := false.B
1211  s3_out.bits.uop.replayInst  := s3_rep_frm_fetch || s3_flushPipe
1212  s3_out.bits.data            := s3_in.data
1213  s3_out.bits.debug.isMMIO    := s3_in.mmio
1214  s3_out.bits.debug.isPerfCnt := false.B
1215  s3_out.bits.debug.paddr     := s3_in.paddr
1216  s3_out.bits.debug.vaddr     := s3_in.vaddr
1217  // Vector load
1218  s3_vecout.isvec             := s3_isvec
1219  s3_vecout.vecdata           := 0.U // Data will be assigned later
1220  s3_vecout.mask              := s3_in.mask
1221  // s3_vecout.rob_idx_valid     := s3_in.rob_idx_valid
1222  // s3_vecout.inner_idx         := s3_in.inner_idx
1223  // s3_vecout.rob_idx           := s3_in.rob_idx
1224  // s3_vecout.offset            := s3_in.offset
1225  s3_vecout.reg_offset        := s3_in.reg_offset
1226  s3_vecout.vecActive         := s3_vecActive
1227  s3_vecout.is_first_ele      := s3_in.is_first_ele
1228  s3_vecout.uopQueuePtr       := DontCare // uopQueuePtr is already saved in flow queue
1229  s3_vecout.flowPtr           := s3_in.flowPtr
1230  s3_vecout.elemIdx           := DontCare // elemIdx is already saved in flow queue
1231  s3_vecout.elemIdxInsideVd   := DontCare
1232
1233  io.rollback.valid := s3_valid && (s3_rep_frm_fetch || s3_flushPipe) && !s3_exception
1234  io.rollback.bits             := DontCare
1235  io.rollback.bits.isRVC       := s3_out.bits.uop.preDecodeInfo.isRVC
1236  io.rollback.bits.robIdx      := s3_out.bits.uop.robIdx
1237  io.rollback.bits.ftqIdx      := s3_out.bits.uop.ftqPtr
1238  io.rollback.bits.ftqOffset   := s3_out.bits.uop.ftqOffset
1239  io.rollback.bits.level       := Mux(s3_rep_frm_fetch, RedirectLevel.flush, RedirectLevel.flushAfter)
1240  io.rollback.bits.cfiUpdate.target := s3_out.bits.uop.pc
1241  io.rollback.bits.debug_runahead_checkpoint_id := s3_out.bits.uop.debugInfo.runahead_checkpoint_id
1242  /* <------- DANGEROUS: Don't change sequence here ! -------> */
1243
1244  io.lsq.ldin.bits.uop := s3_out.bits.uop
1245
1246  val s3_revoke = s3_exception || io.lsq.ldin.bits.rep_info.need_rep
1247  io.lsq.ldld_nuke_query.revoke := s3_revoke
1248  io.lsq.stld_nuke_query.revoke := s3_revoke
1249
1250  // feedback slow
1251  s3_fast_rep := RegNext(s2_fast_rep)
1252
1253  val s3_fb_no_waiting = !s3_in.isLoadReplay &&
1254                        (!(s3_fast_rep && !s3_fast_rep_canceled)) &&
1255                        !s3_in.feedbacked
1256
1257  //
1258  io.feedback_slow.valid                 := s3_valid && s3_fb_no_waiting
1259  io.feedback_slow.bits.hit              := !s3_rep_info.need_rep || io.lsq.ldin.ready
1260  io.feedback_slow.bits.flushState       := s3_in.ptwBack
1261  io.feedback_slow.bits.robIdx           := s3_in.uop.robIdx
1262  io.feedback_slow.bits.sourceType       := RSFeedbackType.lrqFull
1263  io.feedback_slow.bits.dataInvalidSqIdx := DontCare
1264
1265  io.ldCancel.ld2Cancel := s3_valid && (
1266    io.lsq.ldin.bits.rep_info.need_rep ||                       // exe fail or
1267    s3_in.mmio                                                  // is mmio
1268  )
1269
1270  val s3_ld_wb_meta = Mux(s3_valid, s3_out.bits, s3_mmio.bits)
1271
1272  // data from load queue refill
1273  val s3_ld_raw_data_frm_uncache = RegNextN(io.lsq.ld_raw_data, 3)
1274  val s3_merged_data_frm_uncache = s3_ld_raw_data_frm_uncache.mergedData()
1275  val s3_picked_data_frm_uncache = LookupTree(s3_ld_raw_data_frm_uncache.addrOffset, List(
1276    "b000".U -> s3_merged_data_frm_uncache(63,  0),
1277    "b001".U -> s3_merged_data_frm_uncache(63,  8),
1278    "b010".U -> s3_merged_data_frm_uncache(63, 16),
1279    "b011".U -> s3_merged_data_frm_uncache(63, 24),
1280    "b100".U -> s3_merged_data_frm_uncache(63, 32),
1281    "b101".U -> s3_merged_data_frm_uncache(63, 40),
1282    "b110".U -> s3_merged_data_frm_uncache(63, 48),
1283    "b111".U -> s3_merged_data_frm_uncache(63, 56)
1284  ))
1285  val s3_ld_data_frm_uncache = rdataHelper(s3_ld_raw_data_frm_uncache.uop, s3_picked_data_frm_uncache)
1286
1287  // data from dcache hit
1288  val s3_ld_raw_data_frm_cache = Wire(new LoadDataFromDcacheBundle)
1289  s3_ld_raw_data_frm_cache.respDcacheData       := io.dcache.resp.bits.data_delayed
1290  s3_ld_raw_data_frm_cache.forwardMask          := RegEnable(s2_fwd_mask, s2_valid)
1291  s3_ld_raw_data_frm_cache.forwardData          := RegEnable(s2_fwd_data, s2_valid)
1292  s3_ld_raw_data_frm_cache.uop                  := RegEnable(s2_out.uop, s2_valid)
1293  s3_ld_raw_data_frm_cache.addrOffset           := RegEnable(s2_out.paddr(3, 0), s2_valid)
1294  s3_ld_raw_data_frm_cache.forward_D            := RegEnable(s2_fwd_frm_d_chan, false.B, s2_valid) || s3_fwd_frm_d_chan_valid
1295  s3_ld_raw_data_frm_cache.forwardData_D        := Mux(s3_fwd_frm_d_chan_valid, s3_fwd_data_frm_d_chan, RegEnable(s2_fwd_data_frm_d_chan, s2_valid))
1296  s3_ld_raw_data_frm_cache.forward_mshr         := RegEnable(s2_fwd_frm_mshr, false.B, s2_valid)
1297  s3_ld_raw_data_frm_cache.forwardData_mshr     := RegEnable(s2_fwd_data_frm_mshr, s2_valid)
1298  s3_ld_raw_data_frm_cache.forward_result_valid := RegEnable(s2_fwd_data_valid, false.B, s2_valid)
1299
1300  val s3_merged_data_frm_cache = s3_ld_raw_data_frm_cache.mergedData()
1301  val s3_picked_data_frm_cache = LookupTree(s3_ld_raw_data_frm_cache.addrOffset, List(
1302    "b0000".U -> s3_merged_data_frm_cache(63,    0),
1303    "b0001".U -> s3_merged_data_frm_cache(63,    8),
1304    "b0010".U -> s3_merged_data_frm_cache(63,   16),
1305    "b0011".U -> s3_merged_data_frm_cache(63,   24),
1306    "b0100".U -> s3_merged_data_frm_cache(63,   32),
1307    "b0101".U -> s3_merged_data_frm_cache(63,   40),
1308    "b0110".U -> s3_merged_data_frm_cache(63,   48),
1309    "b0111".U -> s3_merged_data_frm_cache(63,   56),
1310    "b1000".U -> s3_merged_data_frm_cache(127,  64),
1311    "b1001".U -> s3_merged_data_frm_cache(127,  72),
1312    "b1010".U -> s3_merged_data_frm_cache(127,  80),
1313    "b1011".U -> s3_merged_data_frm_cache(127,  88),
1314    "b1100".U -> s3_merged_data_frm_cache(127,  96),
1315    "b1101".U -> s3_merged_data_frm_cache(127, 104),
1316    "b1110".U -> s3_merged_data_frm_cache(127, 112),
1317    "b1111".U -> s3_merged_data_frm_cache(127, 120)
1318  ))
1319  val s3_ld_data_frm_cache = rdataHelper(s3_ld_raw_data_frm_cache.uop, s3_picked_data_frm_cache)
1320
1321  // FIXME: add 1 cycle delay ?
1322  // io.lsq.uncache.ready := !s3_valid
1323  io.ldout.bits        := s3_ld_wb_meta
1324  io.ldout.bits.data   := Mux(s3_valid, s3_ld_data_frm_cache, s3_ld_data_frm_uncache)
1325  io.ldout.valid       := (s3_out.valid || (s3_mmio.valid && !s3_valid)) && !s3_vecout.isvec
1326
1327  // TODO: check this --hx
1328  // io.ldout.valid       := s3_out.valid && !s3_out.bits.uop.robIdx.needFlush(io.redirect) && !s3_vecout.isvec ||
1329  //   io.lsq.uncache.valid && !io.lsq.uncache.bits.uop.robIdx.needFlush(io.redirect) && !s3_out.valid && !io.lsq.uncache.bits.isVls
1330  //  io.ldout.bits.data   := Mux(s3_out.valid, s3_ld_data_frm_cache, s3_ld_data_frm_uncache)
1331  //  io.ldout.valid       := s3_out.valid && !s3_out.bits.uop.robIdx.needFlush(io.redirect) ||
1332  //                         s3_mmio.valid && !s3_mmio.bits.uop.robIdx.needFlush(io.redirect) && !s3_out.valid
1333
1334  // s3 load fast replay
1335  io.fast_rep_out.valid := s3_valid && s3_fast_rep && !s3_isvec
1336  io.fast_rep_out.bits := s3_in
1337  io.fast_rep_out.bits.lateKill := s3_rep_frm_fetch
1338
1339  // vector output
1340  io.vecldout.bits.vec := s3_vecout
1341  // FIXME
1342  io.vecldout.bits.isPackage := DontCare
1343  io.vecldout.bits.packageNum := DontCare
1344  io.vecldout.bits.originAlignedType := DontCare
1345  io.vecldout.bits.alignedType := DontCare
1346  // TODO: VLSU, uncache data logic
1347  val vecdata = rdataVecHelper(s3_vec_alignedType, s3_picked_data_frm_cache)
1348  io.vecldout.bits.vec.vecdata := vecdata
1349  io.vecldout.bits.data := 0.U
1350  // io.vecldout.bits.fflags := s3_out.bits.fflags
1351  // io.vecldout.bits.redirectValid := s3_out.bits.redirectValid
1352  // io.vecldout.bits.redirect := s3_out.bits.redirect
1353  io.vecldout.bits.debug := s3_out.bits.debug
1354  io.vecldout.bits.uop := s3_out.bits.uop
1355  io.vecldout.valid := s3_out.valid && !s3_out.bits.uop.robIdx.needFlush(io.redirect) && s3_vecout.isvec ||
1356    io.lsq.uncache.valid && !io.lsq.uncache.bits.uop.robIdx.needFlush(io.redirect) && !s3_out.valid && !io.lsq.uncache.bits.isVls
1357
1358  io.vecReplay.valid := s3_vecout.isvec && s3_valid && !s3_out.bits.uop.robIdx.needFlush(io.redirect) &&
1359    io.lsq.ldin.bits.rep_info.need_rep
1360  io.vecReplay.bits := DontCare
1361  io.vecReplay.bits.uop := s3_in.uop
1362  io.vecReplay.bits.vaddr := s3_in.vaddr
1363  io.vecReplay.bits.paddr := s3_in.paddr
1364  io.vecReplay.bits.mask := s3_in.mask
1365  io.vecReplay.bits.isvec := true.B
1366  io.vecReplay.bits.uop_unit_stride_fof := s3_in.uop_unit_stride_fof
1367  io.vecReplay.bits.reg_offset := s3_in.reg_offset
1368  io.vecReplay.bits.vecActive := s3_in.vecActive
1369  io.vecReplay.bits.is_first_ele := s3_in.is_first_ele
1370  io.vecReplay.bits.flowPtr := s3_in.flowPtr
1371
1372  // fast load to load forward
1373  if (EnableLoadToLoadForward) {
1374    io.l2l_fwd_out.valid      := s3_valid && !s3_in.mmio && !s3_rep_info.need_rep
1375    io.l2l_fwd_out.data       := Mux(s3_in.vaddr(3), s3_merged_data_frm_cache(127, 64), s3_merged_data_frm_cache(63, 0))
1376    io.l2l_fwd_out.dly_ld_err := s3_dly_ld_err || // ecc delayed error
1377                                 s3_ldld_rep_inst ||
1378                                 s3_rep_frm_fetch
1379  } else {
1380    io.l2l_fwd_out.valid := false.B
1381    io.l2l_fwd_out.data := DontCare
1382    io.l2l_fwd_out.dly_ld_err := DontCare
1383  }
1384
1385   // trigger
1386  val last_valid_data = RegNext(RegEnable(io.ldout.bits.data, io.ldout.fire))
1387  val hit_ld_addr_trig_hit_vec = Wire(Vec(TriggerNum, Bool()))
1388  val lq_ld_addr_trig_hit_vec = io.lsq.trigger.lqLoadAddrTriggerHitVec
1389  (0 until TriggerNum).map{i => {
1390    val tdata2    = RegNext(io.trigger(i).tdata2)
1391    val matchType = RegNext(io.trigger(i).matchType)
1392    val tEnable   = RegNext(io.trigger(i).tEnable)
1393
1394    hit_ld_addr_trig_hit_vec(i) := TriggerCmp(RegNext(s2_out.vaddr), tdata2, matchType, tEnable)
1395    io.trigger(i).addrHit       := Mux(s3_out.valid, hit_ld_addr_trig_hit_vec(i), lq_ld_addr_trig_hit_vec(i))
1396  }}
1397  io.lsq.trigger.hitLoadAddrTriggerHitVec := hit_ld_addr_trig_hit_vec
1398
1399  // FIXME: please move this part to LoadQueueReplay
1400  io.debug_ls := DontCare
1401
1402  // Topdown
1403  io.lsTopdownInfo.s1.robIdx          := s1_in.uop.robIdx.value
1404  io.lsTopdownInfo.s1.vaddr_valid     := s1_valid && s1_in.hasROBEntry
1405  io.lsTopdownInfo.s1.vaddr_bits      := s1_vaddr
1406  io.lsTopdownInfo.s2.robIdx          := s2_in.uop.robIdx.value
1407  io.lsTopdownInfo.s2.paddr_valid     := s2_fire && s2_in.hasROBEntry && !s2_in.tlbMiss
1408  io.lsTopdownInfo.s2.paddr_bits      := s2_in.paddr
1409  io.lsTopdownInfo.s2.first_real_miss := io.dcache.resp.bits.real_miss
1410  io.lsTopdownInfo.s2.cache_miss_en   := s2_fire && s2_in.hasROBEntry && !s2_in.tlbMiss && !s2_in.missDbUpdated
1411
1412  // perf cnt
1413  XSPerfAccumulate("s0_in_valid",                  io.ldin.valid)
1414  XSPerfAccumulate("s0_in_block",                  io.ldin.valid && !io.ldin.fire)
1415  XSPerfAccumulate("s0_in_fire_first_issue",       s0_valid && s0_sel_src.isFirstIssue)
1416  XSPerfAccumulate("s0_lsq_fire_first_issue",      io.replay.fire)
1417  XSPerfAccumulate("s0_ldu_fire_first_issue",      io.ldin.fire && s0_sel_src.isFirstIssue)
1418  XSPerfAccumulate("s0_fast_replay_issue",         io.fast_rep_in.fire)
1419  XSPerfAccumulate("s0_stall_out",                 s0_valid && !s0_can_go)
1420  XSPerfAccumulate("s0_stall_dcache",              s0_valid && !io.dcache.req.ready)
1421  XSPerfAccumulate("s0_addr_spec_success",         s0_fire && s0_sel_src.vaddr(VAddrBits-1, 12) === io.ldin.bits.src(0)(VAddrBits-1, 12))
1422  XSPerfAccumulate("s0_addr_spec_failed",          s0_fire && s0_sel_src.vaddr(VAddrBits-1, 12) =/= io.ldin.bits.src(0)(VAddrBits-1, 12))
1423  XSPerfAccumulate("s0_addr_spec_success_once",    s0_fire && s0_sel_src.vaddr(VAddrBits-1, 12) === io.ldin.bits.src(0)(VAddrBits-1, 12) && s0_sel_src.isFirstIssue)
1424  XSPerfAccumulate("s0_addr_spec_failed_once",     s0_fire && s0_sel_src.vaddr(VAddrBits-1, 12) =/= io.ldin.bits.src(0)(VAddrBits-1, 12) && s0_sel_src.isFirstIssue)
1425  XSPerfAccumulate("s0_forward_tl_d_channel",      s0_out.forward_tlDchannel)
1426  XSPerfAccumulate("s0_hardware_prefetch_fire",    s0_fire && s0_hw_prf_select)
1427  XSPerfAccumulate("s0_software_prefetch_fire",    s0_fire && s0_sel_src.prf && s0_int_iss_select)
1428  XSPerfAccumulate("s0_hardware_prefetch_blocked", io.prefetch_req.valid && !s0_hw_prf_select)
1429  XSPerfAccumulate("s0_hardware_prefetch_total",   io.prefetch_req.valid)
1430
1431  XSPerfAccumulate("s1_in_valid",                  s1_valid)
1432  XSPerfAccumulate("s1_in_fire",                   s1_fire)
1433  XSPerfAccumulate("s1_in_fire_first_issue",       s1_fire && s1_in.isFirstIssue)
1434  XSPerfAccumulate("s1_tlb_miss",                  s1_fire && s1_tlb_miss)
1435  XSPerfAccumulate("s1_tlb_miss_first_issue",      s1_fire && s1_tlb_miss && s1_in.isFirstIssue)
1436  XSPerfAccumulate("s1_stall_out",                 s1_valid && !s1_can_go)
1437  XSPerfAccumulate("s1_dly_err",                   s1_valid && s1_fast_rep_dly_err)
1438
1439  XSPerfAccumulate("s2_in_valid",                  s2_valid)
1440  XSPerfAccumulate("s2_in_fire",                   s2_fire)
1441  XSPerfAccumulate("s2_in_fire_first_issue",       s2_fire && s2_in.isFirstIssue)
1442  XSPerfAccumulate("s2_dcache_miss",               s2_fire && io.dcache.resp.bits.miss)
1443  XSPerfAccumulate("s2_dcache_miss_first_issue",   s2_fire && io.dcache.resp.bits.miss && s2_in.isFirstIssue)
1444  XSPerfAccumulate("s2_dcache_real_miss_first_issue",   s2_fire && io.dcache.resp.bits.miss && s2_in.isFirstIssue)
1445  XSPerfAccumulate("s2_full_forward",              s2_fire && s2_full_fwd)
1446  XSPerfAccumulate("s2_dcache_miss_full_forward",  s2_fire && s2_dcache_miss)
1447  XSPerfAccumulate("s2_fwd_frm_d_can",             s2_valid && s2_fwd_frm_d_chan)
1448  XSPerfAccumulate("s2_fwd_frm_d_chan_or_mshr",    s2_valid && s2_fwd_frm_d_chan_or_mshr)
1449  XSPerfAccumulate("s2_stall_out",                 s2_fire && !s2_can_go)
1450  XSPerfAccumulate("s2_prefetch",                  s2_fire && s2_prf)
1451  XSPerfAccumulate("s2_prefetch_ignored",          s2_fire && s2_prf && s2_mq_nack) // ignore prefetch for mshr full / miss req port conflict
1452  XSPerfAccumulate("s2_prefetch_miss",             s2_fire && s2_prf && io.dcache.resp.bits.miss) // prefetch req miss in l1
1453  XSPerfAccumulate("s2_prefetch_hit",              s2_fire && s2_prf && !io.dcache.resp.bits.miss) // prefetch req hit in l1
1454  XSPerfAccumulate("s2_prefetch_accept",           s2_fire && s2_prf && io.dcache.resp.bits.miss && !s2_mq_nack) // prefetch a missed line in l1, and l1 accepted it
1455  XSPerfAccumulate("s2_forward_req",               s2_fire && s2_in.forward_tlDchannel)
1456  XSPerfAccumulate("s2_successfully_forward_channel_D", s2_fire && s2_fwd_frm_d_chan && s2_fwd_data_valid)
1457  XSPerfAccumulate("s2_successfully_forward_mshr",      s2_fire && s2_fwd_frm_mshr && s2_fwd_data_valid)
1458
1459  XSPerfAccumulate("s3_fwd_frm_d_chan",            s3_valid && s3_fwd_frm_d_chan_valid)
1460
1461  XSPerfAccumulate("load_to_load_forward",                      s1_try_ptr_chasing && !s1_ptr_chasing_canceled)
1462  XSPerfAccumulate("load_to_load_forward_try",                  s1_try_ptr_chasing)
1463  XSPerfAccumulate("load_to_load_forward_fail",                 s1_cancel_ptr_chasing)
1464  XSPerfAccumulate("load_to_load_forward_fail_cancelled",       s1_cancel_ptr_chasing && s1_ptr_chasing_canceled)
1465  XSPerfAccumulate("load_to_load_forward_fail_wakeup_mismatch", s1_cancel_ptr_chasing && !s1_ptr_chasing_canceled && s1_not_fast_match)
1466  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)
1467  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)
1468  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)
1469
1470  // bug lyq: some signals in perfEvents are no longer suitable for the current MemBlock design
1471  // hardware performance counter
1472  val perfEvents = Seq(
1473    ("load_s0_in_fire         ", s0_fire                                                        ),
1474    ("load_to_load_forward    ", s1_fire && s1_try_ptr_chasing && !s1_ptr_chasing_canceled      ),
1475    ("stall_dcache            ", s0_valid && s0_can_go && !io.dcache.req.ready                  ),
1476    ("load_s1_in_fire         ", s0_fire                                                        ),
1477    ("load_s1_tlb_miss        ", s1_fire && io.tlb.resp.bits.miss                               ),
1478    ("load_s2_in_fire         ", s1_fire                                                        ),
1479    ("load_s2_dcache_miss     ", s2_fire && io.dcache.resp.bits.miss                            ),
1480  )
1481  generatePerfEvent()
1482
1483  when(io.ldout.fire){
1484    XSDebug("ldout %x\n", io.ldout.bits.uop.pc)
1485  }
1486  // end
1487}