xref: /XiangShan/src/main/scala/xiangshan/mem/pipeline/LoadUnit.scala (revision 31ebfb1dd00f6473404eca1f5d9153cc53e133a7)
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 chipsalliance.rocketchip.config.Parameters
20import chisel3._
21import chisel3.util._
22import utils._
23import xiangshan._
24import xiangshan.backend.decode.ImmUnion
25import xiangshan.cache._
26import xiangshan.cache.mmu.{TlbPtwIO, TlbReq, TlbResp, TlbCmd, TlbRequestIO, TLB}
27
28class LoadToLsqIO(implicit p: Parameters) extends XSBundle {
29  val loadIn = ValidIO(new LsPipelineBundle)
30  val ldout = Flipped(DecoupledIO(new ExuOutput))
31  val loadDataForwarded = Output(Bool())
32  val needReplayFromRS = Output(Bool())
33  val forward = new PipeLoadForwardQueryIO
34}
35
36class LoadToLoadIO(implicit p: Parameters) extends XSBundle {
37  // load to load fast path is limited to ld (64 bit) used as vaddr src1 only
38  val data = UInt(XLEN.W)
39  val valid = Bool()
40}
41
42// Load Pipeline Stage 0
43// Generate addr, use addr to query DCache and DTLB
44class LoadUnit_S0(implicit p: Parameters) extends XSModule {
45  val io = IO(new Bundle() {
46    val in = Flipped(Decoupled(new ExuInput))
47    val out = Decoupled(new LsPipelineBundle)
48    val fastpath = Input(Vec(LoadPipelineWidth, new LoadToLoadIO))
49    val dtlbReq = DecoupledIO(new TlbReq)
50    val dcacheReq = DecoupledIO(new DCacheWordReq)
51    val rsIdx = Input(UInt(log2Up(IssQueSize).W))
52    val isFirstIssue = Input(Bool())
53    val loadFastMatch = Input(UInt(exuParameters.LduCnt.W))
54  })
55  require(LoadPipelineWidth == exuParameters.LduCnt)
56
57  val s0_uop = io.in.bits.uop
58  val imm12 = WireInit(s0_uop.ctrl.imm(11,0))
59
60  // slow vaddr from non-load insts
61  val slowpath_vaddr = io.in.bits.src(0) + SignExt(s0_uop.ctrl.imm(11,0), VAddrBits)
62  val slowpath_mask = genWmask(slowpath_vaddr, s0_uop.ctrl.fuOpType(1,0))
63
64  // fast vaddr from load insts
65  val fastpath_vaddrs = WireInit(VecInit(List.tabulate(LoadPipelineWidth)(i => {
66     io.fastpath(i).data + SignExt(s0_uop.ctrl.imm(11,0), VAddrBits)
67  })))
68  val fastpath_masks = WireInit(VecInit(List.tabulate(LoadPipelineWidth)(i => {
69     genWmask(fastpath_vaddrs(i), s0_uop.ctrl.fuOpType(1,0))
70  })))
71  val fastpath_vaddr = Mux1H(io.loadFastMatch, fastpath_vaddrs)
72  val fastpath_mask  = Mux1H(io.loadFastMatch, fastpath_masks)
73
74  // select vaddr from 2 alus
75  val s0_vaddr = Mux(io.loadFastMatch.orR, fastpath_vaddr, slowpath_vaddr)
76  val s0_mask  = Mux(io.loadFastMatch.orR, fastpath_mask, slowpath_mask)
77  XSPerfAccumulate("load_to_load_forward", io.loadFastMatch.orR && io.in.fire())
78
79  // query DTLB
80  io.dtlbReq.valid := io.in.valid
81  io.dtlbReq.bits.vaddr := s0_vaddr
82  io.dtlbReq.bits.cmd := TlbCmd.read
83  io.dtlbReq.bits.roqIdx := s0_uop.roqIdx
84  io.dtlbReq.bits.debug.pc := s0_uop.cf.pc
85  io.dtlbReq.bits.debug.isFirstIssue := io.isFirstIssue
86
87  // query DCache
88  io.dcacheReq.valid := io.in.valid
89  io.dcacheReq.bits.cmd  := MemoryOpConstants.M_XRD
90  io.dcacheReq.bits.addr := s0_vaddr
91  io.dcacheReq.bits.mask := s0_mask
92  io.dcacheReq.bits.data := DontCare
93
94  // TODO: update cache meta
95  io.dcacheReq.bits.id   := DontCare
96
97  val addrAligned = LookupTree(s0_uop.ctrl.fuOpType(1, 0), List(
98    "b00".U   -> true.B,                   //b
99    "b01".U   -> (s0_vaddr(0)    === 0.U), //h
100    "b10".U   -> (s0_vaddr(1, 0) === 0.U), //w
101    "b11".U   -> (s0_vaddr(2, 0) === 0.U)  //d
102  ))
103
104  io.out.valid := io.in.valid && io.dcacheReq.ready
105
106  io.out.bits := DontCare
107  io.out.bits.vaddr := s0_vaddr
108  io.out.bits.mask := s0_mask
109  io.out.bits.uop := s0_uop
110  io.out.bits.uop.cf.exceptionVec(loadAddrMisaligned) := !addrAligned
111  io.out.bits.rsIdx := io.rsIdx
112
113  io.in.ready := !io.in.valid || (io.out.ready && io.dcacheReq.ready)
114
115  XSDebug(io.dcacheReq.fire(),
116    p"[DCACHE LOAD REQ] pc ${Hexadecimal(s0_uop.cf.pc)}, vaddr ${Hexadecimal(s0_vaddr)}\n"
117  )
118  XSPerfAccumulate("in", io.in.valid)
119  XSPerfAccumulate("stall_out", io.out.valid && !io.out.ready && io.dcacheReq.ready)
120  XSPerfAccumulate("stall_dcache", io.out.valid && io.out.ready && !io.dcacheReq.ready)
121  XSPerfAccumulate("addr_spec_success", io.out.fire() && s0_vaddr(VAddrBits-1, 12) === io.in.bits.src(0)(VAddrBits-1, 12))
122  XSPerfAccumulate("addr_spec_failed", io.out.fire() && s0_vaddr(VAddrBits-1, 12) =/= io.in.bits.src(0)(VAddrBits-1, 12))
123  XSPerfAccumulate("addr_spec_success_once", io.out.fire() && s0_vaddr(VAddrBits-1, 12) === io.in.bits.src(0)(VAddrBits-1, 12) && io.isFirstIssue)
124  XSPerfAccumulate("addr_spec_failed_once", io.out.fire() && s0_vaddr(VAddrBits-1, 12) =/= io.in.bits.src(0)(VAddrBits-1, 12) && io.isFirstIssue)
125}
126
127
128// Load Pipeline Stage 1
129// TLB resp (send paddr to dcache)
130class LoadUnit_S1(implicit p: Parameters) extends XSModule {
131  val io = IO(new Bundle() {
132    val in = Flipped(Decoupled(new LsPipelineBundle))
133    val out = Decoupled(new LsPipelineBundle)
134    val dtlbResp = Flipped(DecoupledIO(new TlbResp))
135    val dcachePAddr = Output(UInt(PAddrBits.W))
136    val dcacheKill = Output(Bool())
137    val fullForwardFast = Output(Bool())
138    val sbuffer = new LoadForwardQueryIO
139    val lsq = new PipeLoadForwardQueryIO
140  })
141
142  val s1_uop = io.in.bits.uop
143  val s1_paddr = io.dtlbResp.bits.paddr
144  val s1_exception = selectLoad(io.out.bits.uop.cf.exceptionVec, false).asUInt.orR
145  val s1_tlb_miss = io.dtlbResp.bits.miss
146  val s1_mmio = !s1_tlb_miss && io.dtlbResp.bits.mmio
147  val s1_mask = io.in.bits.mask
148
149  io.out.bits := io.in.bits // forwardXX field will be updated in s1
150
151  io.dtlbResp.ready := true.B
152
153  // TOOD: PMA check
154  io.dcachePAddr := s1_paddr
155  io.dcacheKill := s1_tlb_miss || s1_exception || s1_mmio
156
157  // load forward query datapath
158  io.sbuffer.valid := io.in.valid && !(s1_exception || s1_tlb_miss)
159  io.sbuffer.vaddr := io.in.bits.vaddr
160  io.sbuffer.paddr := s1_paddr
161  io.sbuffer.uop := s1_uop
162  io.sbuffer.sqIdx := s1_uop.sqIdx
163  io.sbuffer.mask := s1_mask
164  io.sbuffer.pc := s1_uop.cf.pc // FIXME: remove it
165
166  io.lsq.valid := io.in.valid && !(s1_exception || s1_tlb_miss)
167  io.lsq.vaddr := io.in.bits.vaddr
168  io.lsq.paddr := s1_paddr
169  io.lsq.uop := s1_uop
170  io.lsq.sqIdx := s1_uop.sqIdx
171  io.lsq.sqIdxMask := DontCare // will be overwritten by sqIdxMask pre-generated in s0
172  io.lsq.mask := s1_mask
173  io.lsq.pc := s1_uop.cf.pc // FIXME: remove it
174
175  // Generate forwardMaskFast to wake up insts earlier
176  val forwardMaskFast = io.lsq.forwardMaskFast.asUInt | io.sbuffer.forwardMaskFast.asUInt
177  io.fullForwardFast := (~forwardMaskFast & s1_mask) === 0.U
178
179
180  io.out.valid := io.in.valid// && !s1_tlb_miss
181  io.out.bits.paddr := s1_paddr
182  io.out.bits.mmio := s1_mmio && !s1_exception
183  io.out.bits.tlbMiss := s1_tlb_miss
184  io.out.bits.uop.cf.exceptionVec(loadPageFault) := io.dtlbResp.bits.excp.pf.ld
185  io.out.bits.uop.cf.exceptionVec(loadAccessFault) := io.dtlbResp.bits.excp.af.ld
186  io.out.bits.ptwBack := io.dtlbResp.bits.ptwBack
187  io.out.bits.rsIdx := io.in.bits.rsIdx
188
189  io.in.ready := !io.in.valid || io.out.ready
190
191  XSPerfAccumulate("in", io.in.valid)
192  XSPerfAccumulate("tlb_miss", io.in.valid && s1_tlb_miss)
193  XSPerfAccumulate("stall_out", io.out.valid && !io.out.ready)
194}
195
196
197// Load Pipeline Stage 2
198// DCache resp
199class LoadUnit_S2(implicit p: Parameters) extends XSModule with HasLoadHelper {
200  val io = IO(new Bundle() {
201    val in = Flipped(Decoupled(new LsPipelineBundle))
202    val out = Decoupled(new LsPipelineBundle)
203    val rsFeedback = ValidIO(new RSFeedback)
204    val dcacheResp = Flipped(DecoupledIO(new DCacheWordResp))
205    val lsq = new LoadForwardQueryIO
206    val sbuffer = new LoadForwardQueryIO
207    val dataForwarded = Output(Bool())
208    val needReplayFromRS = Output(Bool())
209    val fastpath = Output(new LoadToLoadIO)
210  })
211
212  val s2_uop = io.in.bits.uop
213  val s2_mask = io.in.bits.mask
214  val s2_paddr = io.in.bits.paddr
215  val s2_tlb_miss = io.in.bits.tlbMiss
216  val s2_data_invalid = io.lsq.dataInvalid
217  val s2_exception = selectLoad(io.in.bits.uop.cf.exceptionVec, false).asUInt.orR
218  val s2_mmio = io.in.bits.mmio && !s2_exception
219  val s2_cache_miss = io.dcacheResp.bits.miss
220  val s2_cache_replay = io.dcacheResp.bits.replay
221
222  // val cnt = RegInit(127.U)
223  // cnt := cnt + io.in.valid.asUInt
224  // val s2_forward_fail = io.lsq.matchInvalid || io.sbuffer.matchInvalid || cnt === 0.U
225
226  val s2_forward_fail = io.lsq.matchInvalid || io.sbuffer.matchInvalid
227
228  // assert(!s2_forward_fail)
229
230  io.dcacheResp.ready := true.B
231  val dcacheShouldResp = !(s2_tlb_miss || s2_exception || s2_mmio)
232  assert(!(io.in.valid && dcacheShouldResp && !io.dcacheResp.valid), "DCache response got lost")
233
234  // merge forward result
235  // lsq has higher priority than sbuffer
236  val forwardMask = Wire(Vec(8, Bool()))
237  val forwardData = Wire(Vec(8, UInt(8.W)))
238
239  val fullForward = (~forwardMask.asUInt & s2_mask) === 0.U && !io.lsq.dataInvalid
240  io.lsq := DontCare
241  io.sbuffer := DontCare
242
243  // generate XLEN/8 Muxs
244  for (i <- 0 until XLEN / 8) {
245    forwardMask(i) := io.lsq.forwardMask(i) || io.sbuffer.forwardMask(i)
246    forwardData(i) := Mux(io.lsq.forwardMask(i), io.lsq.forwardData(i), io.sbuffer.forwardData(i))
247  }
248
249  XSDebug(io.out.fire(), "[FWD LOAD RESP] pc %x fwd %x(%b) + %x(%b)\n",
250    s2_uop.cf.pc,
251    io.lsq.forwardData.asUInt, io.lsq.forwardMask.asUInt,
252    io.in.bits.forwardData.asUInt, io.in.bits.forwardMask.asUInt
253  )
254
255  // data merge
256  val rdataVec = VecInit((0 until XLEN / 8).map(j =>
257    Mux(forwardMask(j), forwardData(j), io.dcacheResp.bits.data(8*(j+1)-1, 8*j))))
258  val rdata = rdataVec.asUInt
259  val rdataSel = LookupTree(s2_paddr(2, 0), List(
260    "b000".U -> rdata(63, 0),
261    "b001".U -> rdata(63, 8),
262    "b010".U -> rdata(63, 16),
263    "b011".U -> rdata(63, 24),
264    "b100".U -> rdata(63, 32),
265    "b101".U -> rdata(63, 40),
266    "b110".U -> rdata(63, 48),
267    "b111".U -> rdata(63, 56)
268  ))
269  val rdataPartialLoad = rdataHelper(s2_uop, rdataSel)
270
271  io.out.valid := io.in.valid && !s2_tlb_miss && !s2_data_invalid
272  // Inst will be canceled in store queue / lsq,
273  // so we do not need to care about flush in load / store unit's out.valid
274  io.out.bits := io.in.bits
275  io.out.bits.data := rdataPartialLoad
276  // when exception occurs, set it to not miss and let it write back to roq (via int port)
277  if (EnableFastForward) {
278    io.out.bits.miss := s2_cache_miss && !s2_exception && !s2_forward_fail && !fullForward
279  } else {
280    io.out.bits.miss := s2_cache_miss && !s2_exception && !s2_forward_fail
281  }
282  io.out.bits.uop.ctrl.fpWen := io.in.bits.uop.ctrl.fpWen && !s2_exception
283  io.out.bits.uop.cf.replayInst := s2_forward_fail && !s2_mmio // if forward fail, repaly this inst
284  io.out.bits.mmio := s2_mmio
285
286  // For timing reasons, sometimes we can not let
287  // io.out.bits.miss := s2_cache_miss && !s2_exception && !fullForward
288  // We use io.dataForwarded instead. It means forward logic have prepared all data needed,
289  // and dcache query is no longer needed.
290  // Such inst will be writebacked from load queue.
291  io.dataForwarded := s2_cache_miss && fullForward && !s2_exception && !s2_forward_fail
292  // io.out.bits.forwardX will be send to lq
293  io.out.bits.forwardMask := forwardMask
294  // data retbrived from dcache is also included in io.out.bits.forwardData
295  io.out.bits.forwardData := rdataVec
296
297  io.in.ready := io.out.ready || !io.in.valid
298
299
300  // feedback tlb result to RS
301  io.rsFeedback.valid := io.in.valid
302  io.rsFeedback.bits.hit := !s2_tlb_miss && (!s2_cache_replay || s2_mmio || s2_exception || fullForward) && !s2_data_invalid
303  io.rsFeedback.bits.rsIdx := io.in.bits.rsIdx
304  io.rsFeedback.bits.flushState := io.in.bits.ptwBack
305  io.rsFeedback.bits.sourceType := Mux(s2_tlb_miss, RSFeedbackType.tlbMiss,
306    Mux(io.lsq.dataInvalid,
307      RSFeedbackType.dataInvalid,
308      RSFeedbackType.mshrFull
309    )
310  )
311
312  // s2_cache_replay is quite slow to generate, send it separately to LQ
313  io.needReplayFromRS := s2_cache_replay && !fullForward
314
315  // fast load to load forward
316  io.fastpath.valid := io.in.valid // for debug only
317  io.fastpath.data := rdata // raw data
318
319
320  XSDebug(io.out.fire(), "[DCACHE LOAD RESP] pc %x rdata %x <- D$ %x + fwd %x(%b)\n",
321    s2_uop.cf.pc, rdataPartialLoad, io.dcacheResp.bits.data,
322    forwardData.asUInt, forwardMask.asUInt
323  )
324
325  XSPerfAccumulate("in", io.in.valid)
326  XSPerfAccumulate("dcache_miss", io.in.valid && s2_cache_miss)
327  XSPerfAccumulate("full_forward", io.in.valid && fullForward)
328  XSPerfAccumulate("dcache_miss_full_forward", io.in.valid && s2_cache_miss && fullForward)
329  XSPerfAccumulate("replay",  io.rsFeedback.valid && !io.rsFeedback.bits.hit)
330  XSPerfAccumulate("replay_tlb_miss", io.rsFeedback.valid && !io.rsFeedback.bits.hit && s2_tlb_miss)
331  XSPerfAccumulate("replay_cache", io.rsFeedback.valid && !io.rsFeedback.bits.hit && !s2_tlb_miss && s2_cache_replay)
332  XSPerfAccumulate("stall_out", io.out.valid && !io.out.ready)
333}
334
335class LoadUnit(implicit p: Parameters) extends XSModule with HasLoadHelper {
336  val io = IO(new Bundle() {
337    val ldin = Flipped(Decoupled(new ExuInput))
338    val ldout = Decoupled(new ExuOutput)
339    val redirect = Flipped(ValidIO(new Redirect))
340    val flush = Input(Bool())
341    val rsFeedback = ValidIO(new RSFeedback)
342    val rsIdx = Input(UInt(log2Up(IssQueSize).W))
343    val isFirstIssue = Input(Bool())
344    val dcache = new DCacheLoadIO
345    val sbuffer = new LoadForwardQueryIO
346    val lsq = new LoadToLsqIO
347    val fastUop = ValidIO(new MicroOp) // early wakeup signal generated in load_s1
348
349    val tlb = new TlbRequestIO
350    val fastpathOut = Output(new LoadToLoadIO)
351    val fastpathIn = Input(Vec(LoadPipelineWidth, new LoadToLoadIO))
352    val loadFastMatch = Input(UInt(exuParameters.LduCnt.W))
353  })
354
355  val load_s0 = Module(new LoadUnit_S0)
356  val load_s1 = Module(new LoadUnit_S1)
357  val load_s2 = Module(new LoadUnit_S2)
358
359  load_s0.io.in <> io.ldin
360  load_s0.io.dtlbReq <> io.tlb.req
361  load_s0.io.dcacheReq <> io.dcache.req
362  load_s0.io.rsIdx := io.rsIdx
363  load_s0.io.isFirstIssue := io.isFirstIssue
364  load_s0.io.fastpath := io.fastpathIn
365  load_s0.io.loadFastMatch := io.loadFastMatch
366
367  PipelineConnect(load_s0.io.out, load_s1.io.in, true.B, load_s0.io.out.bits.uop.roqIdx.needFlush(io.redirect, io.flush))
368
369  load_s1.io.dtlbResp <> io.tlb.resp
370  io.dcache.s1_paddr <> load_s1.io.dcachePAddr
371  io.dcache.s1_kill <> load_s1.io.dcacheKill
372  load_s1.io.sbuffer <> io.sbuffer
373  load_s1.io.lsq <> io.lsq.forward
374
375  PipelineConnect(load_s1.io.out, load_s2.io.in, true.B, load_s1.io.out.bits.uop.roqIdx.needFlush(io.redirect, io.flush))
376
377  load_s2.io.dcacheResp <> io.dcache.resp
378  load_s2.io.lsq.forwardData <> io.lsq.forward.forwardData
379  load_s2.io.lsq.forwardMask <> io.lsq.forward.forwardMask
380  load_s2.io.lsq.forwardMaskFast <> io.lsq.forward.forwardMaskFast // should not be used in load_s2
381  load_s2.io.lsq.dataInvalid <> io.lsq.forward.dataInvalid
382  load_s2.io.lsq.matchInvalid <> io.lsq.forward.matchInvalid
383  load_s2.io.sbuffer.forwardData <> io.sbuffer.forwardData
384  load_s2.io.sbuffer.forwardMask <> io.sbuffer.forwardMask
385  load_s2.io.sbuffer.forwardMaskFast <> io.sbuffer.forwardMaskFast // should not be used in load_s2
386  load_s2.io.sbuffer.dataInvalid <> io.sbuffer.dataInvalid // always false
387  load_s2.io.sbuffer.matchInvalid <> io.sbuffer.matchInvalid
388  load_s2.io.dataForwarded <> io.lsq.loadDataForwarded
389  load_s2.io.fastpath <> io.fastpathOut
390  io.rsFeedback.bits := RegNext(load_s2.io.rsFeedback.bits)
391  io.rsFeedback.valid := RegNext(load_s2.io.rsFeedback.valid && !load_s2.io.out.bits.uop.roqIdx.needFlush(io.redirect, io.flush))
392  io.lsq.needReplayFromRS := load_s2.io.needReplayFromRS
393
394  // pre-calcuate sqIdx mask in s0, then send it to lsq in s1 for forwarding
395  val sqIdxMaskReg = RegNext(UIntToMask(load_s0.io.in.bits.uop.sqIdx.value, StoreQueueSize))
396  io.lsq.forward.sqIdxMask := sqIdxMaskReg
397
398  // // use s2_hit_way to select data received in s1
399  // load_s2.io.dcacheResp.bits.data := Mux1H(RegNext(io.dcache.s1_hit_way), RegNext(io.dcache.s1_data))
400  // assert(load_s2.io.dcacheResp.bits.data === io.dcache.resp.bits.data)
401
402  io.fastUop.valid := io.dcache.s1_hit_way.orR && // dcache hit
403    !io.dcache.s1_disable_fast_wakeup &&  // load fast wakeup should be disabled when dcache data read is not ready
404    load_s1.io.in.valid && // valid laod request
405    !load_s1.io.dcacheKill && // not mmio or tlb miss
406    !io.lsq.forward.dataInvalidFast // forward failed
407  io.fastUop.bits := load_s1.io.out.bits.uop
408
409  XSDebug(load_s0.io.out.valid,
410    p"S0: pc ${Hexadecimal(load_s0.io.out.bits.uop.cf.pc)}, lId ${Hexadecimal(load_s0.io.out.bits.uop.lqIdx.asUInt)}, " +
411    p"vaddr ${Hexadecimal(load_s0.io.out.bits.vaddr)}, mask ${Hexadecimal(load_s0.io.out.bits.mask)}\n")
412  XSDebug(load_s1.io.out.valid,
413    p"S1: pc ${Hexadecimal(load_s1.io.out.bits.uop.cf.pc)}, lId ${Hexadecimal(load_s1.io.out.bits.uop.lqIdx.asUInt)}, tlb_miss ${io.tlb.resp.bits.miss}, " +
414    p"paddr ${Hexadecimal(load_s1.io.out.bits.paddr)}, mmio ${load_s1.io.out.bits.mmio}\n")
415
416  // writeback to LSQ
417  // Current dcache use MSHR
418  // Load queue will be updated at s2 for both hit/miss int/fp load
419  io.lsq.loadIn.valid := load_s2.io.out.valid
420  io.lsq.loadIn.bits := load_s2.io.out.bits
421
422  // write to rob and writeback bus
423  val s2_wb_valid = load_s2.io.out.valid && !load_s2.io.out.bits.miss && !load_s2.io.out.bits.mmio
424
425  // Int load, if hit, will be writebacked at s2
426  val hitLoadOut = Wire(Valid(new ExuOutput))
427  hitLoadOut.valid := s2_wb_valid
428  hitLoadOut.bits.uop := load_s2.io.out.bits.uop
429  hitLoadOut.bits.data := load_s2.io.out.bits.data
430  hitLoadOut.bits.redirectValid := false.B
431  hitLoadOut.bits.redirect := DontCare
432  hitLoadOut.bits.debug.isMMIO := load_s2.io.out.bits.mmio
433  hitLoadOut.bits.debug.isPerfCnt := false.B
434  hitLoadOut.bits.debug.paddr := load_s2.io.out.bits.paddr
435  hitLoadOut.bits.fflags := DontCare
436
437  load_s2.io.out.ready := true.B
438
439  io.ldout.bits := Mux(hitLoadOut.valid, hitLoadOut.bits, io.lsq.ldout.bits)
440  io.ldout.valid := hitLoadOut.valid || io.lsq.ldout.valid
441
442  io.lsq.ldout.ready := !hitLoadOut.valid
443
444  when(io.ldout.fire()){
445    XSDebug("ldout %x\n", io.ldout.bits.uop.cf.pc)
446  }
447}
448