xref: /XiangShan/src/main/scala/xiangshan/cache/dcache/mainpipe/MainPipe.scala (revision dda64e0ca4d1a903f75d6a4a64d66e91dbab8b3f)
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.cache
18
19import org.chipsalliance.cde.config.Parameters
20import chisel3._
21import chisel3.util._
22import freechips.rocketchip.tilelink.ClientStates._
23import freechips.rocketchip.tilelink.MemoryOpCategories._
24import freechips.rocketchip.tilelink.TLPermissions._
25import freechips.rocketchip.tilelink.{ClientMetadata, ClientStates, TLPermissions}
26import utils._
27import utility._
28import xiangshan.{L1CacheErrorInfo, XSCoreParamsKey}
29import xiangshan.mem.prefetch._
30import xiangshan.mem.HasL1PrefetchSourceParameter
31
32class MainPipeReq(implicit p: Parameters) extends DCacheBundle {
33  val miss = Bool() // only amo miss will refill in main pipe
34  val miss_id = UInt(log2Up(cfg.nMissEntries).W)
35  val miss_param = UInt(TLPermissions.bdWidth.W)
36  val miss_dirty = Bool()
37
38  val probe = Bool()
39  val probe_param = UInt(TLPermissions.bdWidth.W)
40  val probe_need_data = Bool()
41
42  // request info
43  // reqs from Store, AMO use this
44  // probe does not use this
45  val source = UInt(sourceTypeWidth.W)
46  val cmd = UInt(M_SZ.W)
47  // if dcache size > 32KB, vaddr is also needed for store
48  // vaddr is used to get extra index bits
49  val vaddr  = UInt(VAddrBits.W)
50  // must be aligned to block
51  val addr   = UInt(PAddrBits.W)
52
53  // store
54  val store_data = UInt((cfg.blockBytes * 8).W)
55  val store_mask = UInt(cfg.blockBytes.W)
56
57  // which word does amo work on?
58  val word_idx = UInt(log2Up(cfg.blockBytes * 8 / DataBits).W)
59  val amo_data   = UInt(QuadWordBits.W)
60  val amo_mask   = UInt(QuadWordBytes.W)
61  val amo_cmp    = UInt(QuadWordBits.W) // data to be compared in AMOCAS
62
63  // error
64  val error = Bool()
65
66  // replace
67  val replace = Bool()
68  val replace_way_en = UInt(DCacheWays.W)
69
70  // prefetch
71  val pf_source = UInt(L1PfSourceBits.W)
72  val access = Bool()
73
74  val id = UInt(reqIdWidth.W)
75
76  def isLoad: Bool = source === LOAD_SOURCE.U
77  def isStore: Bool = source === STORE_SOURCE.U
78  def isAMO: Bool = source === AMO_SOURCE.U
79
80  def quad_word_idx = word_idx >> 1
81
82  def convertStoreReq(store: DCacheLineReq): MainPipeReq = {
83    val req = Wire(new MainPipeReq)
84    req := DontCare
85    req.miss := false.B
86    req.miss_dirty := false.B
87    req.probe := false.B
88    req.probe_need_data := false.B
89    req.source := STORE_SOURCE.U
90    req.cmd := store.cmd
91    req.addr := store.addr
92    req.vaddr := store.vaddr
93    req.store_data := store.data
94    req.store_mask := store.mask
95    req.replace := false.B
96    req.error := false.B
97    req.id := store.id
98    req
99  }
100}
101
102class MainPipeStatus(implicit p: Parameters) extends DCacheBundle {
103  val set = UInt(idxBits.W)
104  val way_en = UInt(nWays.W)
105}
106
107class MainPipeInfoToMQ(implicit p:Parameters) extends DCacheBundle {
108  val s2_valid = Bool()
109  val s2_miss_id = UInt(log2Up(cfg.nMissEntries).W) // For refill data selection
110  val s2_replay_to_mq = Bool()
111  val s3_valid = Bool()
112  val s3_miss_id = UInt(log2Up(cfg.nMissEntries).W) // For mshr release
113  val s3_refill_resp = Bool()
114}
115
116class MainPipe(implicit p: Parameters) extends DCacheModule with HasPerfEvents with HasL1PrefetchSourceParameter {
117  val io = IO(new Bundle() {
118    // probe queue
119    val probe_req = Flipped(DecoupledIO(new MainPipeReq))
120    // store miss go to miss queue
121    val miss_req = DecoupledIO(new MissReq)
122    val miss_resp = Input(new MissResp) // miss resp is used to support plru update
123    val refill_req = Flipped(DecoupledIO(new MainPipeReq))
124    // send miss request to wbq
125    val wbq_conflict_check = Valid(UInt())
126    val wbq_block_miss_req = Input(Bool())
127    // store buffer
128    val store_req = Flipped(DecoupledIO(new DCacheLineReq))
129    val store_replay_resp = ValidIO(new DCacheLineResp)
130    val store_hit_resp = ValidIO(new DCacheLineResp)
131    // atmoics
132    val atomic_req = Flipped(DecoupledIO(new MainPipeReq))
133    val atomic_resp = ValidIO(new MainPipeResp)
134    // find matched refill data in missentry
135    val mainpipe_info = Output(new MainPipeInfoToMQ)
136    // missqueue refill data
137    val refill_info = Flipped(ValidIO(new MissQueueRefillInfo))
138    // write-back queue
139    val wb = DecoupledIO(new WritebackReq)
140    val wb_ready_dup = Vec(nDupWbReady, Input(Bool()))
141
142    // data sram
143    val data_read = Vec(LoadPipelineWidth, Input(Bool()))
144    val data_read_intend = Output(Bool())
145    val data_readline = DecoupledIO(new L1BankedDataReadLineReq)
146    val data_resp = Input(Vec(DCacheBanks, new L1BankedDataReadResult()))
147    val readline_error_delayed = Input(Bool())
148    val data_write = DecoupledIO(new L1BankedDataWriteReq)
149    val data_write_dup = Vec(DCacheBanks, Valid(new L1BankedDataWriteReqCtrl))
150    val data_write_ready_dup = Vec(nDupDataWriteReady, Input(Bool()))
151
152    // meta array
153    val meta_read = DecoupledIO(new MetaReadReq)
154    val meta_resp = Input(Vec(nWays, new Meta))
155    val meta_write = DecoupledIO(new CohMetaWriteReq)
156    val extra_meta_resp = Input(Vec(nWays, new DCacheExtraMeta))
157    val error_flag_write = DecoupledIO(new FlagMetaWriteReq)
158    val prefetch_flag_write = DecoupledIO(new SourceMetaWriteReq)
159    val access_flag_write = DecoupledIO(new FlagMetaWriteReq)
160
161    // tag sram
162    val tag_read = DecoupledIO(new TagReadReq)
163    val tag_resp = Input(Vec(nWays, UInt(encTagBits.W)))
164    val tag_write = DecoupledIO(new TagWriteReq)
165    val tag_write_ready_dup = Vec(nDupTagWriteReady, Input(Bool()))
166    val tag_write_intend = Output(new Bool())
167
168    // update state vec in replacement algo
169    val replace_access = ValidIO(new ReplacementAccessBundle)
170    // find the way to be replaced
171    val replace_way = new ReplacementWayReqIO
172
173    // writeback addr to be replaced
174    val replace_addr = ValidIO(UInt(PAddrBits.W))
175    val replace_block = Input(Bool())
176
177    // sms prefetch
178    val sms_agt_evict_req = DecoupledIO(new AGTEvictReq)
179
180    val status = new Bundle() {
181      val s0_set = ValidIO(UInt(idxBits.W))
182      val s1, s2, s3 = ValidIO(new MainPipeStatus)
183    }
184    val status_dup = Vec(nDupStatus, new Bundle() {
185      val s1, s2, s3 = ValidIO(new MainPipeStatus)
186    })
187
188    // lrsc locked block should block probe
189    val lrsc_locked_block = Output(Valid(UInt(PAddrBits.W)))
190    val invalid_resv_set = Input(Bool())
191    val update_resv_set = Output(Bool())
192    val block_lr = Output(Bool())
193
194    // ecc error
195    val error = Output(ValidIO(new L1CacheErrorInfo))
196    val pseudo_error = Flipped(DecoupledIO(Vec(DCacheBanks, new CtrlUnitSignalingBundle)))
197    val pseudo_tag_error_inj_done = Output(Bool())
198    val pseudo_data_error_inj_done = Output(Bool())
199    // force write
200    val force_write = Input(Bool())
201
202    val bloom_filter_query = new Bundle {
203      val set = ValidIO(new BloomQueryBundle(BLOOM_FILTER_ENTRY_NUM))
204      val clr = ValidIO(new BloomQueryBundle(BLOOM_FILTER_ENTRY_NUM))
205    }
206  })
207
208  // meta array is made of regs, so meta write or read should always be ready
209  assert(RegNext(io.meta_read.ready))
210  assert(RegNext(io.meta_write.ready))
211
212  val s1_s0_set_conflict, s2_s0_set_conlict, s3_s0_set_conflict = Wire(Bool())
213  val set_conflict = s1_s0_set_conflict || s2_s0_set_conlict || s3_s0_set_conflict
214  // check sbuffer store req set_conflict in parallel with req arbiter
215  // it will speed up the generation of store_req.ready, which is in crit. path
216  val s1_s0_set_conflict_store, s2_s0_set_conlict_store, s3_s0_set_conflict_store = Wire(Bool())
217  val store_set_conflict = s1_s0_set_conflict_store || s2_s0_set_conlict_store || s3_s0_set_conflict_store
218  val s1_ready, s2_ready, s3_ready = Wire(Bool())
219
220  // convert store req to main pipe req, and select a req from store and probe
221  val storeWaitCycles = RegInit(0.U(4.W))
222  val StoreWaitThreshold = Wire(UInt(4.W))
223  StoreWaitThreshold := Constantin.createRecord(s"StoreWaitThreshold_${p(XSCoreParamsKey).HartId}", initValue = 0)
224  val storeWaitTooLong = storeWaitCycles >= StoreWaitThreshold
225  val loadsAreComing = io.data_read.asUInt.orR
226  val storeCanAccept = storeWaitTooLong || !loadsAreComing || io.force_write
227
228  val store_req = Wire(DecoupledIO(new MainPipeReq))
229  store_req.bits := (new MainPipeReq).convertStoreReq(io.store_req.bits)
230  store_req.valid := io.store_req.valid && storeCanAccept
231  io.store_req.ready := store_req.ready && storeCanAccept
232
233
234  when (store_req.fire) { // if wait too long and write success, reset counter.
235    storeWaitCycles := 0.U
236  } .elsewhen (storeWaitCycles < StoreWaitThreshold && io.store_req.valid && !store_req.ready) { // if block store, increase counter.
237    storeWaitCycles := storeWaitCycles + 1.U
238  }
239
240  // s0: read meta and tag
241  val req = Wire(DecoupledIO(new MainPipeReq))
242  arbiter(
243    in = Seq(
244      io.probe_req,
245      io.refill_req,
246      store_req, // Note: store_req.ready is now manually assigned for better timing
247      io.atomic_req,
248    ),
249    out = req,
250    name = Some("main_pipe_req")
251  )
252
253  val store_idx = get_idx(io.store_req.bits.vaddr)
254  // manually assign store_req.ready for better timing
255  // now store_req set conflict check is done in parallel with req arbiter
256  store_req.ready := io.meta_read.ready && io.tag_read.ready && s1_ready && !store_set_conflict &&
257    !io.probe_req.valid && !io.refill_req.valid && !io.atomic_req.valid
258  val s0_req = req.bits
259  val s0_idx = get_idx(s0_req.vaddr)
260  val s0_need_tag = io.tag_read.valid
261  val s0_can_go = io.meta_read.ready && io.tag_read.ready && s1_ready && !set_conflict
262  val s0_fire = req.valid && s0_can_go
263
264  req.ready := s0_can_go
265
266  val bank_write = VecInit((0 until DCacheBanks).map(i => get_mask_of_bank(i, s0_req.store_mask).orR)).asUInt
267  val bank_full_write = VecInit((0 until DCacheBanks).map(i => get_mask_of_bank(i, s0_req.store_mask).andR)).asUInt
268  val banks_full_overwrite = bank_full_write.andR
269
270  val banked_store_rmask = bank_write & ~bank_full_write
271  val banked_full_rmask = ~0.U(DCacheBanks.W)
272  val banked_none_rmask = 0.U(DCacheBanks.W)
273
274  val store_need_data = !s0_req.probe && s0_req.isStore && banked_store_rmask.orR
275  val probe_need_data = s0_req.probe
276  val amo_need_data = !s0_req.probe && s0_req.isAMO
277  val miss_need_data = s0_req.miss
278  val replace_need_data = s0_req.replace
279
280  val banked_need_data = store_need_data || probe_need_data || amo_need_data || miss_need_data || replace_need_data
281
282  val s0_banked_rmask = Mux(store_need_data, banked_store_rmask,
283    Mux(probe_need_data || amo_need_data || miss_need_data || replace_need_data,
284      banked_full_rmask,
285      banked_none_rmask
286    ))
287
288  // generate wmask here and use it in stage 2
289  val banked_store_wmask = bank_write
290  val banked_full_wmask = ~0.U(DCacheBanks.W)
291  val banked_none_wmask = 0.U(DCacheBanks.W)
292
293  // s1: read data
294  val s1_valid = RegInit(false.B)
295  val s1_need_data = RegEnable(banked_need_data, s0_fire)
296  val s1_req = RegEnable(s0_req, s0_fire)
297  val s1_banked_rmask = RegEnable(s0_banked_rmask, s0_fire)
298  val s1_banked_store_wmask = RegEnable(banked_store_wmask, s0_fire)
299  val s1_need_tag = RegEnable(s0_need_tag, s0_fire)
300  val s1_can_go = s2_ready && (io.data_readline.ready || !s1_need_data)
301  val s1_fire = s1_valid && s1_can_go
302  val s1_idx = get_idx(s1_req.vaddr)
303  val s1_dmWay = RegEnable(get_direct_map_way(s0_req.vaddr), s0_fire)
304
305  when (s0_fire) {
306    s1_valid := true.B
307  }.elsewhen (s1_fire) {
308    s1_valid := false.B
309  }
310  s1_ready := !s1_valid || s1_can_go
311  s1_s0_set_conflict := s1_valid && s0_idx === s1_idx
312  s1_s0_set_conflict_store := s1_valid && store_idx === s1_idx
313
314  def wayMap[T <: Data](f: Int => T) = VecInit((0 until nWays).map(f))
315  val meta_resp = Wire(Vec(nWays, (new Meta).asUInt))
316  meta_resp := Mux(GatedValidRegNext(s0_fire), VecInit(io.meta_resp.map(_.asUInt)), RegEnable(meta_resp, s1_valid))
317  // pseudo ecc enc tag
318  val pseudo_tag_toggle_mask = Mux(
319                                  io.pseudo_error.valid && io.pseudo_error.bits(0).valid,
320                                  io.pseudo_error.bits(0).mask(tagBits - 1, 0),
321                                  0.U(tagBits.W)
322                              )
323  val pseudo_encTag_resp = io.tag_resp.map {
324    case real_enc =>
325      if (cacheCtrlParamsOpt.nonEmpty && EnableTagEcc) {
326        val ecc = real_enc(encTagBits - 1, tagBits)
327        val toggleTag = real_enc(tagBits - 1, 0) ^ pseudo_tag_toggle_mask
328        Cat(ecc, toggleTag)
329      } else {
330        real_enc
331      }
332  }
333  val encTag_resp = Wire(io.tag_resp.cloneType)
334  encTag_resp := Mux(GatedValidRegNext(s0_fire), VecInit(pseudo_encTag_resp), RegEnable(encTag_resp, s1_valid))
335  val tag_resp = encTag_resp.map(encTag => encTag(tagBits - 1, 0))
336  val s1_meta_valids = wayMap((w: Int) => Meta(meta_resp(w)).coh.isValid()).asUInt
337  val s1_tag_errors = wayMap((w: Int) => s1_meta_valids(w) && dcacheParameters.tagCode.decode(encTag_resp(w)).error).asUInt
338  val s1_tag_eq_way = wayMap((w: Int) => tag_resp(w) === get_tag(s1_req.addr)).asUInt
339  val s1_tag_ecc_eq_way = wayMap((w: Int) => s1_tag_eq_way(w) && !s1_tag_errors(w)).asUInt
340  val s1_tag_match_way = wayMap((w: Int) => s1_tag_eq_way(w) && s1_meta_valids(w)).asUInt
341  val s1_tag_ecc_match_way = wayMap((w: Int) => s1_tag_ecc_eq_way(w) && s1_meta_valids(w)).asUInt
342  val s1_tag_match = ParallelORR(s1_tag_ecc_match_way)
343
344  val s1_hit_tag = get_tag(s1_req.addr)
345  val s1_hit_coh = ClientMetadata(ParallelMux(s1_tag_ecc_match_way.asBools, (0 until nWays).map(w => meta_resp(w))))
346  val s1_flag_error = ParallelMux(s1_tag_ecc_match_way.asBools, (0 until nWays).map(w => io.extra_meta_resp(w).error))
347  val s1_extra_meta = ParallelMux(s1_tag_ecc_match_way.asBools, (0 until nWays).map(w => io.extra_meta_resp(w)))
348  io.pseudo_tag_error_inj_done := s1_fire && s1_meta_valids.orR
349
350  XSPerfAccumulate("probe_unused_prefetch", s1_req.probe && isFromL1Prefetch(s1_extra_meta.prefetch) && !s1_extra_meta.access) // may not be accurate
351  XSPerfAccumulate("replace_unused_prefetch", s1_req.replace && isFromL1Prefetch(s1_extra_meta.prefetch) && !s1_extra_meta.access) // may not be accurate
352
353  // replacement policy
354  val s1_invalid_vec = wayMap(w => !meta_resp(w).asTypeOf(new Meta).coh.isValid())
355  val s1_have_invalid_way = s1_invalid_vec.asUInt.orR
356  val s1_invalid_way_en = ParallelPriorityMux(s1_invalid_vec.zipWithIndex.map(x => x._1 -> UIntToOH(x._2.U(nWays.W))))
357  val s1_repl_way_en = WireInit(0.U(nWays.W))
358  s1_repl_way_en := Mux(
359    GatedValidRegNext(s0_fire),
360    UIntToOH(io.replace_way.way),
361    RegEnable(s1_repl_way_en, s1_valid)
362  )
363  val s1_repl_tag = ParallelMux(s1_repl_way_en.asBools, (0 until nWays).map(w => tag_resp(w)))
364  val s1_repl_coh = ParallelMux(s1_repl_way_en.asBools, (0 until nWays).map(w => meta_resp(w))).asTypeOf(new ClientMetadata)
365  val s1_repl_pf  = ParallelMux(s1_repl_way_en.asBools, (0 until nWays).map(w => io.extra_meta_resp(w).prefetch))
366
367  val s1_repl_way_raw = WireInit(0.U(log2Up(nWays).W))
368  s1_repl_way_raw := Mux(GatedValidRegNext(s0_fire), io.replace_way.way, RegEnable(s1_repl_way_raw, s1_valid))
369
370  val s1_need_replacement = s1_req.miss && !s1_tag_match
371  val s1_need_eviction = s1_req.miss && !s1_tag_match && s1_repl_coh.state =/= ClientStates.Nothing
372
373  val s1_way_en = Mux(
374    RegEnable(!io.pseudo_error.valid, false.B, s0_fire),
375    Mux(s1_need_replacement, s1_repl_way_en, s1_tag_match_way),
376    Mux(ParallelORR(s1_tag_match_way), s1_tag_match_way, s1_repl_way_en)
377  )
378  assert(!RegNext(s1_fire && PopCount(s1_way_en) > 1.U))
379
380  val s1_tag = s1_hit_tag
381  val s1_coh = s1_hit_coh
382
383  XSPerfAccumulate("store_has_invalid_way_but_select_valid_way", io.replace_way.set.valid && wayMap(w => !meta_resp(w).asTypeOf(new Meta).coh.isValid()).asUInt.orR && s1_need_replacement && s1_repl_coh.isValid())
384  XSPerfAccumulate("store_using_replacement", io.replace_way.set.valid && s1_need_replacement)
385
386  val s1_has_permission = s1_hit_coh.onAccess(s1_req.cmd)._1
387  val s1_hit = s1_tag_match && s1_has_permission
388  val s1_pregen_can_go_to_mq = !s1_req.replace && !s1_req.probe && !s1_req.miss && (s1_req.isStore || s1_req.isAMO) && !s1_hit
389
390  // s2: select data, return resp if this is a store miss
391  val s2_valid = RegInit(false.B)
392  val s2_req = RegEnable(s1_req, s1_fire)
393  val s2_tag_errors = RegEnable(s1_tag_errors, s1_fire)
394  val s2_tag_match = RegEnable(s1_tag_match, s1_fire)
395  val s2_tag_match_way = RegEnable(s1_tag_match_way, s1_fire)
396  val s2_hit_coh = RegEnable(s1_hit_coh, s1_fire)
397  val (s2_has_permission, _, s2_new_hit_coh) = s2_hit_coh.onAccess(s2_req.cmd)
398
399  val s2_repl_tag = RegEnable(s1_repl_tag, s1_fire)
400  val s2_repl_coh = RegEnable(s1_repl_coh, s1_fire)
401  val s2_repl_pf  = RegEnable(s1_repl_pf, s1_fire)
402  val s2_need_replacement = RegEnable(s1_need_replacement, s1_fire)
403  val s2_need_eviction = RegEnable(s1_need_eviction, s1_fire)
404  val s2_need_data = RegEnable(s1_need_data, s1_fire)
405  val s2_need_tag = RegEnable(s1_need_tag, s1_fire)
406  val s2_idx = get_idx(s2_req.vaddr)
407
408
409  val s2_way_en = RegEnable(s1_way_en, s1_fire)
410  val s2_tag = Mux(s2_need_replacement, s2_repl_tag, RegEnable(s1_tag, s1_fire))
411  val s2_coh = Mux(s2_need_replacement, s2_repl_coh, RegEnable(s1_coh, s1_fire))
412  val s2_banked_store_wmask = RegEnable(s1_banked_store_wmask, s1_fire)
413  val s2_flag_error = RegEnable(s1_flag_error, s1_fire)
414  val s2_tag_error = WireInit(false.B)
415  val s2_l2_error = Mux(io.refill_info.valid, io.refill_info.bits.error, s2_req.error)
416  val s2_error = s2_flag_error || s2_tag_error || s2_l2_error // data_error not included
417
418  val s2_may_report_data_error = s2_need_data && s2_coh.state =/= ClientStates.Nothing
419
420  val s2_hit = s2_tag_match && s2_has_permission
421  val s2_amo_hit = s2_hit && !s2_req.probe && !s2_req.miss && s2_req.isAMO
422  val s2_store_hit = s2_hit && !s2_req.probe && !s2_req.miss && s2_req.isStore
423
424  if(EnableTagEcc) {
425    s2_tag_error := s2_tag_errors.orR && s2_need_tag
426  }
427
428  s2_s0_set_conlict := s2_valid && s0_idx === s2_idx
429  s2_s0_set_conlict_store := s2_valid && store_idx === s2_idx
430
431  // For a store req, it either hits and goes to s3, or miss and enter miss queue immediately
432  val s2_req_miss_without_data = Mux(s2_valid, s2_req.miss && !io.refill_info.valid, false.B)
433  val s2_can_go_to_mq_replay = (s2_req_miss_without_data && RegEnable(s2_req_miss_without_data && !io.mainpipe_info.s2_replay_to_mq, false.B, s2_valid)) || io.replace_block // miss_req in s2 but refill data is invalid, can block 1 cycle
434  val s2_can_go_to_mq = RegEnable(s1_pregen_can_go_to_mq, s1_fire)
435  val s2_can_go_to_s3 = (s2_req.replace || s2_req.probe || (s2_req.miss && io.refill_info.valid && !io.replace_block) || (s2_req.isStore || s2_req.isAMO) && s2_hit) && s3_ready
436  assert(RegNext(!(s2_valid && s2_can_go_to_s3 && s2_can_go_to_mq && s2_can_go_to_mq_replay)))
437  val s2_can_go = s2_can_go_to_s3 || s2_can_go_to_mq || s2_can_go_to_mq_replay
438  val s2_fire = s2_valid && s2_can_go
439  val s2_fire_to_s3 = s2_valid && s2_can_go_to_s3
440  when (s1_fire) {
441    s2_valid := true.B
442  }.elsewhen (s2_fire) {
443    s2_valid := false.B
444  }
445  s2_ready := !s2_valid || s2_can_go
446  val replay = !io.miss_req.ready || io.wbq_block_miss_req
447
448  val data_resp = Wire(io.data_resp.cloneType)
449  data_resp := Mux(GatedValidRegNext(s1_fire), io.data_resp, RegEnable(data_resp, s2_valid))
450  val s2_store_data_merged = Wire(Vec(DCacheBanks, UInt(DCacheSRAMRowBits.W)))
451
452  def mergePutData(old_data: UInt, new_data: UInt, wmask: UInt): UInt = {
453    val full_wmask = FillInterleaved(8, wmask)
454    ((~full_wmask & old_data) | (full_wmask & new_data))
455  }
456
457  val s2_data = WireInit(VecInit((0 until DCacheBanks).map(i => {
458    data_resp(i).raw_data
459  })))
460
461  for (i <- 0 until DCacheBanks) {
462    val old_data = s2_data(i)
463    val new_data = get_data_of_bank(i, Mux(s2_req.miss, io.refill_info.bits.store_data, s2_req.store_data))
464    // for amo hit, we should use read out SRAM data
465    // do not merge with store data
466    val wmask = Mux(s2_amo_hit, 0.U(wordBytes.W), get_mask_of_bank(i, Mux(s2_req.miss, io.refill_info.bits.store_mask, s2_req.store_mask)))
467    s2_store_data_merged(i) := mergePutData(old_data, new_data, wmask)
468  }
469
470  val s2_data_word = s2_store_data_merged(s2_req.word_idx)
471  val s2_data_quad_word = VecInit((0 until DCacheBanks).map(i => {
472    if (i == (DCacheBanks - 1)) s2_store_data_merged(i)
473    else Cat(s2_store_data_merged(i + 1), s2_store_data_merged(i))
474  }))(s2_req.word_idx)
475
476  io.pseudo_data_error_inj_done := s2_fire_to_s3 && (s2_tag_error || s2_hit) && s2_may_report_data_error
477  io.pseudo_error.ready := false.B
478  XSError(s2_valid && s2_can_go_to_s3 && s2_req.miss && !io.refill_info.valid, "MainPipe req can go to s3 but no refill data")
479
480  // s3: write data, meta and tag
481  val s3_valid = RegInit(false.B)
482  val s3_req = RegEnable(s2_req, s2_fire_to_s3)
483  val s3_miss_param = RegEnable(io.refill_info.bits.miss_param, s2_fire_to_s3)
484  val s3_miss_dirty = RegEnable(io.refill_info.bits.miss_dirty, s2_fire_to_s3)
485  val s3_tag = RegEnable(s2_tag, s2_fire_to_s3)
486  val s3_tag_error = RegEnable(s2_tag_error, s2_fire_to_s3)
487  val s3_tag_match = RegEnable(s2_tag_match, s2_fire_to_s3)
488  val s3_flag_error = RegEnable(s2_flag_error, s2_fire_to_s3)
489  val s3_coh = RegEnable(s2_coh, s2_fire_to_s3)
490  val s3_hit = RegEnable(s2_hit, s2_fire_to_s3)
491  val s3_amo_hit = RegEnable(s2_amo_hit, s2_fire_to_s3)
492  val s3_store_hit = RegEnable(s2_store_hit, s2_fire_to_s3)
493  val s3_hit_coh = RegEnable(s2_hit_coh, s2_fire_to_s3)
494  val s3_new_hit_coh = RegEnable(s2_new_hit_coh, s2_fire_to_s3)
495  val s3_way_en = RegEnable(s2_way_en, s2_fire_to_s3)
496  val s3_banked_store_wmask = RegEnable(s2_banked_store_wmask, s2_fire_to_s3)
497  val s3_store_data_merged = RegEnable(s2_store_data_merged, s2_fire_to_s3)
498  val s3_data_word = RegEnable(s2_data_word, s2_fire_to_s3)
499  val s3_data_quad_word = RegEnable(s2_data_quad_word, s2_fire_to_s3)
500  val s3_data = RegEnable(s2_data, s2_fire_to_s3)
501  val s3_l2_error = RegEnable(s2_l2_error, s2_fire_to_s3)
502  val s3_idx = RegEnable(s2_idx, s2_fire_to_s3)
503  // data_error will be reported by data array 1 cycle after data read resp
504  val s3_data_error = Wire(Bool())
505  s3_data_error := Mux(GatedValidRegNextN(s1_fire,2), // ecc check result is generated 2 cycle after read req
506    io.readline_error_delayed && RegNext(s2_may_report_data_error),
507    RegNext(s3_data_error) // do not update s3_data_error if !s1_fire
508  )
509  // error signal for amo inst
510  // s3_error = s3_flag_error || s3_tag_error || s3_l2_error || s3_data_error
511  val s3_error = RegEnable(s2_error, 0.U.asTypeOf(s2_error), s2_fire_to_s3) || s3_data_error
512  val (_, probe_shrink_param, probe_new_coh) = s3_coh.onProbe(s3_req.probe_param)
513  val (_, miss_shrink_param, _) = s3_coh.onCacheControl(M_FLUSH)
514  val s3_need_replacement = RegEnable(s2_need_replacement, s2_fire_to_s3)
515
516  val miss_update_meta = s3_req.miss
517  val probe_update_meta = s3_req.probe && s3_tag_match && s3_coh =/= probe_new_coh
518  val store_update_meta = s3_req.isStore && !s3_req.probe && s3_hit_coh =/= s3_new_hit_coh
519  val amo_update_meta = s3_req.isAMO && !s3_req.probe && s3_hit_coh =/= s3_new_hit_coh
520  val amo_wait_amoalu = s3_req.isAMO && s3_req.cmd =/= M_XLR && s3_req.cmd =/= M_XSC && !isAMOCAS(s3_req.cmd)
521  val update_meta = (miss_update_meta || probe_update_meta || store_update_meta || amo_update_meta) && !s3_req.replace
522
523  def missCohGen(cmd: UInt, param: UInt, dirty: Bool) = {
524    val c = categorize(cmd)
525    MuxLookup(Cat(c, param, dirty), Nothing)(Seq(
526      //(effect param) -> (next)
527      Cat(rd, toB, false.B)  -> Branch,
528      Cat(rd, toB, true.B)   -> Branch,
529      Cat(rd, toT, false.B)  -> Trunk,
530      Cat(rd, toT, true.B)   -> Dirty,
531      Cat(wi, toT, false.B)  -> Trunk,
532      Cat(wi, toT, true.B)   -> Dirty,
533      Cat(wr, toT, false.B)  -> Dirty,
534      Cat(wr, toT, true.B)   -> Dirty))
535  }
536
537  val miss_new_coh = ClientMetadata(missCohGen(s3_req.cmd, s3_miss_param, s3_miss_dirty))
538
539  // LR, SC and AMO
540  val debug_sc_fail_addr = RegInit(0.U)
541  val debug_sc_fail_cnt  = RegInit(0.U(8.W))
542  val debug_sc_addr_match_fail_cnt  = RegInit(0.U(8.W))
543
544  val lrsc_count = RegInit(0.U(log2Ceil(LRSCCycles).W))
545  val lrsc_valid = lrsc_count > LRSCBackOff.U
546  val lrsc_addr = Reg(UInt())
547
548  val s3_s_amoalu = RegInit(false.B)
549  val s3_lr = !s3_req.probe && s3_req.isAMO && s3_req.cmd === M_XLR
550  val s3_sc = !s3_req.probe && s3_req.isAMO && s3_req.cmd === M_XSC
551  val s3_cas = !s3_req.probe && s3_req.isAMO && isAMOCAS(s3_req.cmd)
552  val s3_lrsc_addr_match = lrsc_valid && lrsc_addr === get_block_addr(s3_req.addr)
553  val s3_sc_fail = s3_sc && !s3_lrsc_addr_match
554  val debug_s3_sc_fail_addr_match = s3_sc && lrsc_addr === get_block_addr(s3_req.addr) && !lrsc_valid
555
556  val s3_cas_fail = s3_cas && (FillInterleaved(8, s3_req.amo_mask) & (s3_req.amo_cmp ^ s3_data_quad_word)) =/= 0.U
557
558  val s3_can_do_amo = (s3_req.miss && !s3_req.probe && s3_req.isAMO) || s3_amo_hit
559  val s3_can_do_amo_write = s3_can_do_amo && isWrite(s3_req.cmd) && !s3_sc_fail && !s3_cas_fail
560
561  when (s3_valid && (s3_lr || s3_sc)) {
562    when (s3_can_do_amo && s3_lr) {
563      lrsc_count := (LRSCCycles - 1).U
564      lrsc_addr := get_block_addr(s3_req.addr)
565    } .otherwise {
566      lrsc_count := 0.U
567    }
568  }.elsewhen (io.invalid_resv_set) {
569    // when we release this block,
570    // we invalidate this reservation set
571    lrsc_count := 0.U
572  }.elsewhen (lrsc_valid) {
573    lrsc_count := lrsc_count - 1.U
574  }
575
576
577  io.lrsc_locked_block.valid := lrsc_valid
578  io.lrsc_locked_block.bits  := lrsc_addr
579  io.block_lr := GatedValidRegNext(lrsc_valid)
580
581  // When we update update_resv_set, block all probe req in the next cycle
582  // It should give Probe reservation set addr compare an independent cycle,
583  // which will lead to better timing
584  io.update_resv_set := s3_valid && s3_lr && s3_can_do_amo
585
586  when (s3_valid) {
587    when (s3_req.addr === debug_sc_fail_addr) {
588      when (s3_sc_fail) {
589        debug_sc_fail_cnt := debug_sc_fail_cnt + 1.U
590      } .elsewhen (s3_sc) {
591        debug_sc_fail_cnt := 0.U
592      }
593    } .otherwise {
594      when (s3_sc_fail) {
595        debug_sc_fail_addr := s3_req.addr
596        debug_sc_fail_cnt  := 1.U
597      }
598    }
599  }
600  XSWarn(debug_sc_fail_cnt > 100.U, "L1DCache failed too many SCs in a row")
601
602  when (s3_valid) {
603    when (s3_req.addr === debug_sc_fail_addr) {
604      when (debug_s3_sc_fail_addr_match) {
605        debug_sc_addr_match_fail_cnt := debug_sc_addr_match_fail_cnt + 1.U
606      } .elsewhen (s3_sc) {
607        debug_sc_addr_match_fail_cnt := 0.U
608      }
609    } .otherwise {
610      when (s3_sc_fail) {
611        debug_sc_addr_match_fail_cnt  := 1.U
612      }
613    }
614  }
615  XSError(debug_sc_addr_match_fail_cnt > 100.U, "L1DCache failed too many SCs in a row, resv set addr always match")
616
617
618  val banked_amo_wmask = UIntToOH(s3_req.word_idx)
619  val update_data = s3_req.miss || s3_store_hit || s3_can_do_amo_write
620
621  // generate write data
622  // AMO hits
623  val do_amoalu = amo_wait_amoalu && s3_valid && !s3_s_amoalu
624  val amoalu   = Module(new AMOALU(wordBits))
625  amoalu.io.mask := s3_req.amo_mask
626  amoalu.io.cmd  := s3_req.cmd
627  amoalu.io.lhs  := s3_data_word
628  amoalu.io.rhs  := s3_req.amo_data
629
630  // merge amo write data
631  val s3_amo_data_merged = Wire(Vec(DCacheBanks, UInt(DCacheSRAMRowBits.W))) // exclude AMOCAS
632  val s3_sc_data_merged = Wire(Vec(DCacheBanks, UInt(DCacheSRAMRowBits.W)))
633  val s3_cas_data_merged = Wire(Vec(DCacheBanks, UInt(DCacheSRAMRowBits.W)))
634  for (i <- 0 until DCacheBanks) {
635    val old_data = s3_store_data_merged(i)
636    val new_data = amoalu.io.out
637    val wmask = Mux(
638      s3_req.word_idx === i.U,
639      ~0.U(wordBytes.W),
640      0.U(wordBytes.W)
641    )
642    s3_amo_data_merged(i) := mergePutData(old_data, new_data, wmask)
643    s3_sc_data_merged(i) := mergePutData(old_data, s3_req.amo_data,
644      Mux(s3_req.word_idx === i.U && !s3_sc_fail, s3_req.amo_mask, 0.U(wordBytes.W))
645    )
646    val l_select = !s3_cas_fail && s3_req.word_idx === i.U
647    val h_select = !s3_cas_fail && s3_req.cmd === M_XA_CASQ &&
648      (if (i % 2 == 1) s3_req.word_idx === (i - 1).U else false.B)
649    s3_cas_data_merged(i) := mergePutData(
650      old_data = old_data,
651      new_data = Mux(h_select, s3_req.amo_data >> DataBits, s3_req.amo_data.take(DataBits)),
652      wmask = Mux(
653        h_select,
654        s3_req.amo_mask >> wordBytes,
655        Mux(
656          l_select,
657          s3_req.amo_mask.take(wordBytes),
658          0.U(wordBytes.W)
659        )
660      )
661    )
662  }
663  val s3_amo_data_merged_reg = RegEnable(s3_amo_data_merged, do_amoalu)
664  val miss_wb = s3_req.miss && s3_need_replacement && s3_coh.state =/= ClientStates.Nothing
665  val probe_wb = s3_req.probe
666  val replace_wb = s3_req.replace
667  val need_wb = miss_wb || probe_wb || replace_wb
668
669  val writeback_param = Mux(probe_wb, probe_shrink_param, miss_shrink_param)
670  val writeback_data = if (dcacheParameters.alwaysReleaseData) {
671    s3_tag_match && s3_req.probe && s3_req.probe_need_data ||
672      s3_coh === ClientStates.Dirty || (miss_wb || replace_wb) && s3_coh.state =/= ClientStates.Nothing
673  } else {
674    s3_tag_match && s3_req.probe && s3_req.probe_need_data || s3_coh === ClientStates.Dirty
675  }
676
677  val s3_probe_can_go = s3_req.probe && io.wb.ready && (io.meta_write.ready || !probe_update_meta)
678  val s3_store_can_go = s3_req.source === STORE_SOURCE.U && !s3_req.probe && (io.meta_write.ready || !store_update_meta) && (io.data_write.ready || !update_data) && !s3_req.miss
679  val s3_amo_can_go = s3_amo_hit && (io.meta_write.ready || !amo_update_meta) && (io.data_write.ready || !update_data) && (s3_s_amoalu || !amo_wait_amoalu)
680  val s3_miss_can_go = s3_req.miss &&
681    (io.meta_write.ready || !amo_update_meta) &&
682    (io.data_write.ready || !update_data) &&
683    (s3_s_amoalu || !amo_wait_amoalu) &&
684    io.tag_write.ready &&
685    io.wb.ready
686  val s3_replace_nothing = s3_req.replace && s3_coh.state === ClientStates.Nothing
687  val s3_replace_can_go = s3_req.replace && (s3_replace_nothing || io.wb.ready)
688  val s3_can_go = s3_probe_can_go || s3_store_can_go || s3_amo_can_go || s3_miss_can_go || s3_replace_can_go
689  val s3_update_data_cango = s3_store_can_go || s3_amo_can_go || s3_miss_can_go // used to speed up data_write gen
690  val s3_fire = s3_valid && s3_can_go
691  when (s2_fire_to_s3) {
692    s3_valid := true.B
693  }.elsewhen (s3_fire) {
694    s3_valid := false.B
695  }
696  when (do_amoalu) { s3_s_amoalu := true.B }
697  when (s3_fire) { s3_s_amoalu := false.B }
698
699  val s3_probe_new_coh = probe_new_coh
700  val new_coh = Mux(
701    miss_update_meta,
702    miss_new_coh,
703    Mux(
704      probe_update_meta,
705      s3_probe_new_coh,
706      Mux(
707        store_update_meta || amo_update_meta,
708        s3_new_hit_coh,
709        ClientMetadata.onReset
710      )
711    )
712  )
713  val banked_wmask = Mux(
714    s3_req.miss,
715    banked_full_wmask,
716    Mux(
717      s3_store_hit,
718      s3_banked_store_wmask,
719      Mux(
720        s3_can_do_amo_write,
721        Mux(
722          isAMOCASQ(s3_req.cmd),
723          FillInterleaved(2, UIntToOH(s3_req.quad_word_idx)),
724          UIntToOH(s3_req.word_idx)
725        ),
726        banked_none_wmask
727      )
728    )
729  )
730  assert(!(s3_valid && banked_wmask.orR && !update_data))
731
732  for (i <- 0 until DCacheBanks) {
733    val old_data = s3_store_data_merged(i)
734    s3_sc_data_merged(i) := mergePutData(old_data, s3_req.amo_data,
735      Mux(
736        s3_req.word_idx === i.U && !s3_sc_fail,
737        s3_req.amo_mask,
738        0.U(wordBytes.W)
739      )
740    )
741  }
742  for (i <- 0 until DCacheBanks) {
743    io.data_write_dup(i).valid := s3_valid && s3_update_data_cango && update_data
744    io.data_write_dup(i).bits.way_en := s3_way_en
745    io.data_write_dup(i).bits.addr := s3_req.vaddr
746  }
747
748  s3_ready := !s3_valid || s3_can_go
749  s3_s0_set_conflict := s3_valid && s3_idx === s0_idx
750  s3_s0_set_conflict_store := s3_valid && s3_idx === store_idx
751  //assert(RegNext(!s3_valid || !(s3_req.source === STORE_SOURCE.U && !s3_req.probe) || s3_hit)) // miss store should never come to s3 ,fixed(reserve)
752
753  io.meta_read.valid := req.valid && !set_conflict
754  io.meta_read.bits.idx := get_idx(s0_req.vaddr)
755  io.meta_read.bits.way_en := Mux(s0_req.replace, s0_req.replace_way_en, ~0.U(nWays.W))
756
757  io.tag_read.valid := req.valid && !set_conflict && !s0_req.replace
758  io.tag_read.bits.idx := get_idx(s0_req.vaddr)
759  io.tag_read.bits.way_en := ~0.U(nWays.W)
760
761  io.data_read_intend := s1_valid && s1_need_data
762  io.data_readline.valid := s1_valid && s1_need_data
763  io.data_readline.bits.rmask := s1_banked_rmask
764  io.data_readline.bits.way_en := s1_way_en
765  io.data_readline.bits.addr := s1_req.vaddr
766
767  io.miss_req.valid := s2_valid && s2_can_go_to_mq
768  val miss_req = io.miss_req.bits
769  miss_req := DontCare
770  miss_req.source := s2_req.source
771  miss_req.pf_source := L1_HW_PREFETCH_NULL
772  miss_req.cmd := s2_req.cmd
773  miss_req.addr := s2_req.addr
774  miss_req.vaddr := s2_req.vaddr
775  miss_req.store_data := s2_req.store_data
776  miss_req.store_mask := s2_req.store_mask
777  miss_req.word_idx := s2_req.word_idx
778  miss_req.amo_data := s2_req.amo_data
779  miss_req.amo_mask := s2_req.amo_mask
780  miss_req.amo_cmp  := s2_req.amo_cmp
781  miss_req.req_coh := s2_hit_coh
782  miss_req.id := s2_req.id
783  miss_req.cancel := false.B
784  miss_req.pc := DontCare
785  miss_req.full_overwrite := s2_req.isStore && s2_req.store_mask.andR
786
787  io.wbq_conflict_check.valid := s2_valid && s2_can_go_to_mq
788  io.wbq_conflict_check.bits := s2_req.addr
789
790  io.store_replay_resp.valid := s2_valid && s2_can_go_to_mq && replay && s2_req.isStore
791  io.store_replay_resp.bits.data := DontCare
792  io.store_replay_resp.bits.miss := true.B
793  io.store_replay_resp.bits.replay := true.B
794  io.store_replay_resp.bits.id := s2_req.id
795
796  io.store_hit_resp.valid := s3_valid && (s3_store_can_go || (s3_miss_can_go && s3_req.isStore))
797  io.store_hit_resp.bits.data := DontCare
798  io.store_hit_resp.bits.miss := false.B
799  io.store_hit_resp.bits.replay := false.B
800  io.store_hit_resp.bits.id := s3_req.id
801
802  val atomic_hit_resp = Wire(new MainPipeResp)
803  atomic_hit_resp.source := s3_req.source
804  atomic_hit_resp.data := Mux(s3_sc, s3_sc_fail.asUInt, s3_data_quad_word)
805  atomic_hit_resp.miss := false.B
806  atomic_hit_resp.miss_id := s3_req.miss_id
807  atomic_hit_resp.error := s3_error
808  atomic_hit_resp.replay := false.B
809  atomic_hit_resp.ack_miss_queue := s3_req.miss
810  atomic_hit_resp.id := lrsc_valid
811  val atomic_replay_resp = Wire(new MainPipeResp)
812  atomic_replay_resp.source := s2_req.source
813  atomic_replay_resp.data := DontCare
814  atomic_replay_resp.miss := true.B
815  atomic_replay_resp.miss_id := DontCare
816  atomic_replay_resp.error := false.B
817  atomic_replay_resp.replay := true.B
818  atomic_replay_resp.ack_miss_queue := false.B
819  atomic_replay_resp.id := DontCare
820
821  val atomic_replay_resp_valid = s2_valid && s2_can_go_to_mq && replay && s2_req.isAMO
822  val atomic_hit_resp_valid = s3_valid && (s3_amo_can_go || s3_miss_can_go && s3_req.isAMO)
823
824  io.atomic_resp.valid := atomic_replay_resp_valid || atomic_hit_resp_valid
825  io.atomic_resp.bits := Mux(atomic_replay_resp_valid, atomic_replay_resp, atomic_hit_resp)
826
827  // io.replace_resp.valid := s3_fire && s3_req.replace
828  // io.replace_resp.bits := s3_req.miss_id
829
830  io.meta_write.valid := s3_fire && update_meta
831  io.meta_write.bits.idx := s3_idx
832  io.meta_write.bits.way_en := s3_way_en
833  io.meta_write.bits.meta.coh := new_coh
834
835  io.error_flag_write.valid := s3_fire && update_meta && (s3_l2_error || s3_req.miss)
836  io.error_flag_write.bits.idx := s3_idx
837  io.error_flag_write.bits.way_en := s3_way_en
838  io.error_flag_write.bits.flag := s3_l2_error
839
840  // if we use (prefetch_flag && meta =/= ClientStates.Nothing) for prefetch check
841  // prefetch_flag_write can be omited
842  io.prefetch_flag_write.valid := s3_fire && s3_req.miss
843  io.prefetch_flag_write.bits.idx := s3_idx
844  io.prefetch_flag_write.bits.way_en := s3_way_en
845  io.prefetch_flag_write.bits.source := s3_req.pf_source
846
847  // regenerate repl_way & repl_coh
848  io.bloom_filter_query.set.valid := s2_fire_to_s3 && s2_req.miss && !isFromL1Prefetch(s2_repl_pf) && s2_repl_coh.isValid() && isFromL1Prefetch(s2_req.pf_source)
849  io.bloom_filter_query.set.bits.addr := io.bloom_filter_query.set.bits.get_addr(Cat(s2_repl_tag, get_untag(s2_req.vaddr))) // the evict block address
850
851  io.bloom_filter_query.clr.valid := s3_fire && isFromL1Prefetch(s3_req.pf_source)
852  io.bloom_filter_query.clr.bits.addr := io.bloom_filter_query.clr.bits.get_addr(s3_req.addr)
853
854  XSPerfAccumulate("mainpipe_update_prefetchArray", io.prefetch_flag_write.valid)
855  XSPerfAccumulate("mainpipe_s2_miss_req", s2_valid && s2_req.miss)
856  XSPerfAccumulate("mainpipe_s2_block_penalty", s2_valid && s2_req.miss && !io.refill_info.valid)
857  XSPerfAccumulate("mainpipe_s2_missqueue_replay", s2_valid && s2_can_go_to_mq_replay)
858  XSPerfAccumulate("mainpipe_slot_conflict_1_2", (s1_idx === s2_idx && s1_way_en === s2_way_en && s1_req.miss && s2_req.miss && s1_valid && s2_valid ))
859  XSPerfAccumulate("mainpipe_slot_conflict_1_3", (s1_idx === s3_idx && s1_way_en === s3_way_en && s1_req.miss && s3_req.miss && s1_valid && s3_valid))
860  XSPerfAccumulate("mainpipe_slot_conflict_2_3", (s2_idx === s3_idx && s2_way_en === s3_way_en && s2_req.miss && s3_req.miss && s2_valid && s3_valid))
861  // probe / replace will not update access bit
862  io.access_flag_write.valid := s3_fire && !s3_req.probe && !s3_req.replace
863  io.access_flag_write.bits.idx := s3_idx
864  io.access_flag_write.bits.way_en := s3_way_en
865  // io.access_flag_write.bits.flag := true.B
866  io.access_flag_write.bits.flag :=Mux(s3_req.miss, s3_req.access, true.B)
867
868  io.tag_write.valid := s3_fire && s3_req.miss
869  io.tag_write.bits.idx := s3_idx
870  io.tag_write.bits.way_en := s3_way_en
871  io.tag_write.bits.tag := get_tag(s3_req.addr)
872  io.tag_write.bits.ecc := DontCare // generate ecc code in tagArray
873  io.tag_write.bits.vaddr := s3_req.vaddr
874
875  io.tag_write_intend := s3_req.miss && s3_valid
876  XSPerfAccumulate("fake_tag_write_intend", io.tag_write_intend && !io.tag_write.valid)
877  XSPerfAccumulate("mainpipe_tag_write", io.tag_write.valid)
878
879  io.replace_addr.valid := s2_valid && s2_need_eviction
880  io.replace_addr.bits  := get_block_addr(Cat(s2_tag, get_untag(s2_req.vaddr)))
881
882  assert(!RegNext(io.tag_write.valid && !io.tag_write_intend))
883
884  io.data_write.valid := s3_valid && s3_update_data_cango && update_data
885  io.data_write.bits.way_en := s3_way_en
886  io.data_write.bits.addr := s3_req.vaddr
887  io.data_write.bits.wmask := banked_wmask
888  io.data_write.bits.data := Mux(
889    amo_wait_amoalu,
890    s3_amo_data_merged_reg,
891    Mux(
892      s3_sc,
893      s3_sc_data_merged,
894      Mux(
895        s3_cas,
896        s3_cas_data_merged,
897        s3_store_data_merged
898      )
899    )
900  )
901  //assert(RegNext(!io.meta_write.valid || !s3_req.replace))
902  assert(RegNext(!io.tag_write.valid || !s3_req.replace))
903  assert(RegNext(!io.data_write.valid || !s3_req.replace))
904
905  io.wb.valid := s3_valid && (
906    // replace
907    s3_req.replace && !s3_replace_nothing ||
908    // probe can go to wbq
909    s3_req.probe && (io.meta_write.ready || !probe_update_meta) ||
910      // amo miss can go to wbq
911      s3_req.miss &&
912        (io.meta_write.ready || !amo_update_meta) &&
913        (io.data_write.ready || !update_data) &&
914        (s3_s_amoalu || !amo_wait_amoalu) &&
915        io.tag_write.ready
916    ) && need_wb
917
918  io.wb.bits.addr := get_block_addr(Mux(s3_tag_error, s3_req.addr, Cat(s3_tag, get_untag(s3_req.vaddr))))
919  io.wb.bits.param := writeback_param
920  io.wb.bits.voluntary := s3_req.miss || s3_req.replace
921  io.wb.bits.hasData := writeback_data && !s3_tag_error
922  io.wb.bits.dirty := s3_coh === ClientStates.Dirty
923  io.wb.bits.data := s3_data.asUInt
924  io.wb.bits.corrupt := s3_tag_error || s3_data_error
925  io.wb.bits.delay_release := s3_req.replace
926  io.wb.bits.miss_id := s3_req.miss_id
927
928  // update plru in main pipe s3
929  io.replace_access.valid := GatedValidRegNext(s2_fire_to_s3) && !s3_req.probe && (s3_req.miss || ((s3_req.isAMO || s3_req.isStore) && s3_hit))
930  io.replace_access.bits.set := s3_idx
931  io.replace_access.bits.way := OHToUInt(s3_way_en)
932
933  io.replace_way.set.valid := GatedValidRegNext(s0_fire)
934  io.replace_way.set.bits := s1_idx
935  io.replace_way.dmWay := s1_dmWay
936
937  // send evict hint to sms
938  val sms_agt_evict_valid = s2_valid && s2_req.miss && s2_fire_to_s3
939  io.sms_agt_evict_req.valid := GatedValidRegNext(sms_agt_evict_valid)
940  io.sms_agt_evict_req.bits.vaddr := RegEnable(Cat(s2_repl_tag(tagBits - 1, 2), s2_req.vaddr(13,12), 0.U((VAddrBits - tagBits).W)), sms_agt_evict_valid)
941
942  // TODO: consider block policy of a finer granularity
943  io.status.s0_set.valid := req.valid
944  io.status.s0_set.bits := get_idx(s0_req.vaddr)
945  io.status.s1.valid := s1_valid
946  io.status.s1.bits.set := s1_idx
947  io.status.s1.bits.way_en := s1_way_en
948  io.status.s2.valid := s2_valid && !s2_req.replace
949  io.status.s2.bits.set := s2_idx
950  io.status.s2.bits.way_en := s2_way_en
951  io.status.s3.valid := s3_valid && !s3_req.replace
952  io.status.s3.bits.set := s3_idx
953  io.status.s3.bits.way_en := s3_way_en
954
955  for ((s, i) <- io.status_dup.zipWithIndex) {
956    s.s1.valid := s1_valid
957    s.s1.bits.set := RegEnable(get_idx(s0_req.vaddr), s0_fire)
958    s.s1.bits.way_en := s1_way_en
959    s.s2.valid := s2_valid && !RegEnable(s1_req.replace, s1_fire)
960    s.s2.bits.set := RegEnable(get_idx(s1_req.vaddr), s1_fire)
961    s.s2.bits.way_en := RegEnable(s1_way_en, s1_fire)
962    s.s3.valid := s3_valid && !RegEnable(s2_req.replace, s2_fire_to_s3)
963    s.s3.bits.set := RegEnable(get_idx(s2_req.vaddr), s2_fire_to_s3)
964    s.s3.bits.way_en := RegEnable(s2_way_en, s2_fire_to_s3)
965  }
966  dontTouch(io.status_dup)
967
968  io.mainpipe_info.s2_valid := s2_valid && s2_req.miss
969  io.mainpipe_info.s2_miss_id := s2_req.miss_id
970  io.mainpipe_info.s2_replay_to_mq := s2_valid && s2_can_go_to_mq_replay
971  io.mainpipe_info.s3_valid := s3_valid
972  io.mainpipe_info.s3_miss_id := s3_req.miss_id
973  io.mainpipe_info.s3_refill_resp := RegNext(s2_valid && s2_req.miss && s2_fire_to_s3)
974
975  // report error to beu and csr, 1 cycle after read data resp
976  io.error := 0.U.asTypeOf(ValidIO(new L1CacheErrorInfo))
977  // report error, update error csr
978  io.error.valid := s3_error && GatedValidRegNext(s2_fire)
979  // only tag_error and data_error will be reported to beu
980  // l2_error should not be reported (l2 will report that)
981  io.error.bits.report_to_beu := (s3_tag_error || s3_data_error) && RegNext(s2_fire)
982  io.error.bits.paddr := s3_req.addr
983  io.error.bits.source.tag := s3_tag_error
984  io.error.bits.source.data := s3_data_error
985  io.error.bits.source.l2 := s3_flag_error || s3_l2_error
986  io.error.bits.opType.store := s3_req.isStore && !s3_req.probe
987  io.error.bits.opType.probe := s3_req.probe
988  io.error.bits.opType.release := s3_req.replace
989  io.error.bits.opType.atom := s3_req.isAMO && !s3_req.probe
990
991  val perfEvents = Seq(
992    ("dcache_mp_req          ", s0_fire                                                      ),
993    ("dcache_mp_total_penalty", PopCount(VecInit(Seq(s0_fire, s1_valid, s2_valid, s3_valid))))
994  )
995  generatePerfEvent()
996}
997