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Fetch smaller parcels from the I$

This commit is contained in:
Andrew Waterman 2017-04-18 17:55:04 -07:00 committed by Andrew Waterman
parent c72b15f2a0
commit 061a0adceb
2 changed files with 27 additions and 14 deletions

View File

@ -68,7 +68,6 @@ class FrontendModule(outer: Frontend) extends LazyModuleImp(outer)
val s1_pc_ = Reg(UInt(width=vaddrBitsExtended)) val s1_pc_ = Reg(UInt(width=vaddrBitsExtended))
val s1_pc = ~(~s1_pc_ | (coreInstBytes-1)) // discard PC LSBS (this propagates down the pipeline) val s1_pc = ~(~s1_pc_ | (coreInstBytes-1)) // discard PC LSBS (this propagates down the pipeline)
val s1_speculative = Reg(Bool()) val s1_speculative = Reg(Bool())
val s1_same_block = Reg(Bool())
val s2_valid = Reg(init=Bool(true)) val s2_valid = Reg(init=Bool(true))
val s2_pc = Reg(init=io.resetVector) val s2_pc = Reg(init=io.resetVector)
val s2_btb_resp_valid = Reg(init=Bool(false)) val s2_btb_resp_valid = Reg(init=Bool(false))
@ -83,16 +82,13 @@ class FrontendModule(outer: Frontend) extends LazyModuleImp(outer)
val s2_cacheable = Reg(init=Bool(false)) val s2_cacheable = Reg(init=Bool(false))
val ntpc = ~(~s1_pc | (coreInstBytes*fetchWidth-1)) + UInt(coreInstBytes*fetchWidth) val ntpc = ~(~s1_pc | (coreInstBytes*fetchWidth-1)) + UInt(coreInstBytes*fetchWidth)
val ntpc_same_block = (ntpc & rowBytes) === (s1_pc & rowBytes)
val predicted_npc = Wire(init = ntpc) val predicted_npc = Wire(init = ntpc)
val predicted_taken = Wire(init = Bool(false)) val predicted_taken = Wire(init = Bool(false))
val icmiss = s2_valid && !icache.io.resp.valid val icmiss = s2_valid && !icache.io.resp.valid
val npc = Mux(icmiss, s2_pc, predicted_npc) val npc = Mux(icmiss, s2_pc, predicted_npc)
val s0_same_block = !predicted_taken && !icmiss && !io.cpu.req.valid && ntpc_same_block
val stall = io.cpu.resp.valid && !io.cpu.resp.ready val stall = io.cpu.resp.valid && !io.cpu.resp.ready
when (!stall) { when (!stall) {
s1_same_block := s0_same_block && !tlb.io.resp.miss
s1_pc_ := io.cpu.npc s1_pc_ := io.cpu.npc
// consider RVC fetches across blocks to be non-speculative if the first // consider RVC fetches across blocks to be non-speculative if the first
// part was non-speculative // part was non-speculative
@ -111,7 +107,6 @@ class FrontendModule(outer: Frontend) extends LazyModuleImp(outer)
} }
} }
when (io.cpu.req.valid) { when (io.cpu.req.valid) {
s1_same_block := Bool(false)
s1_pc_ := io.cpu.npc s1_pc_ := io.cpu.npc
s1_speculative := io.cpu.req.bits.speculative s1_speculative := io.cpu.req.bits.speculative
s2_valid := Bool(false) s2_valid := Bool(false)
@ -144,21 +139,20 @@ class FrontendModule(outer: Frontend) extends LazyModuleImp(outer)
tlb.io.req.bits.sfence := io.cpu.sfence tlb.io.req.bits.sfence := io.cpu.sfence
tlb.io.req.bits.size := log2Ceil(coreInstBytes*fetchWidth) tlb.io.req.bits.size := log2Ceil(coreInstBytes*fetchWidth)
icache.io.req.valid := !stall && !s0_same_block icache.io.req.valid := !stall
icache.io.req.bits.addr := io.cpu.npc icache.io.req.bits.addr := io.cpu.npc
icache.io.invalidate := io.cpu.flush_icache icache.io.invalidate := io.cpu.flush_icache
icache.io.s1_paddr := tlb.io.resp.paddr icache.io.s1_paddr := tlb.io.resp.paddr
icache.io.s1_kill := io.cpu.req.valid || tlb.io.resp.miss || icmiss || s1_speculative && !tlb.io.resp.cacheable || tlb.io.resp.pf.inst || tlb.io.resp.ae.inst icache.io.s1_kill := io.cpu.req.valid || tlb.io.resp.miss || icmiss || s1_speculative && !tlb.io.resp.cacheable || tlb.io.resp.pf.inst || tlb.io.resp.ae.inst
icache.io.s2_kill := false icache.io.s2_kill := false
icache.io.resp.ready := !stall && !s1_same_block icache.io.resp.ready := !stall
val s2_kill = s2_speculative && !s2_cacheable || s2_xcpt val s2_kill = s2_speculative && !s2_cacheable || s2_xcpt
io.cpu.resp.valid := s2_valid && (icache.io.resp.valid || s2_kill) io.cpu.resp.valid := s2_valid && (icache.io.resp.valid || s2_kill)
io.cpu.resp.bits.pc := s2_pc io.cpu.resp.bits.pc := s2_pc
io.cpu.npc := Mux(io.cpu.req.valid, io.cpu.req.bits.pc, npc) io.cpu.npc := Mux(io.cpu.req.valid, io.cpu.req.bits.pc, npc)
require(fetchWidth * coreInstBytes <= rowBytes && isPow2(fetchWidth)) io.cpu.resp.bits.data := icache.io.resp.bits
io.cpu.resp.bits.data := icache.io.resp.bits.datablock >> (s2_pc.extract(log2Ceil(rowBytes)-1,log2Ceil(fetchWidth*coreInstBytes)) << log2Ceil(fetchWidth*coreInstBits))
io.cpu.resp.bits.mask := UInt((1 << fetchWidth)-1) << s2_pc.extract(log2Ceil(fetchWidth)+log2Ceil(coreInstBytes)-1, log2Ceil(coreInstBytes)) io.cpu.resp.bits.mask := UInt((1 << fetchWidth)-1) << s2_pc.extract(log2Ceil(fetchWidth)+log2Ceil(coreInstBytes)-1, log2Ceil(coreInstBytes))
io.cpu.resp.bits.pf := s2_pf io.cpu.resp.bits.pf := s2_pf
io.cpu.resp.bits.ae := s2_ae io.cpu.resp.bits.ae := s2_ae

View File

@ -47,7 +47,7 @@ class ICacheBundle(outer: ICache) extends CoreBundle()(outer.p) {
val s1_kill = Bool(INPUT) // delayed one cycle w.r.t. req val s1_kill = Bool(INPUT) // delayed one cycle w.r.t. req
val s2_kill = Bool(INPUT) // delayed two cycles; prevents I$ miss emission val s2_kill = Bool(INPUT) // delayed two cycles; prevents I$ miss emission
val resp = Decoupled(new ICacheResp) val resp = Decoupled(UInt(width = coreInstBits * fetchWidth))
val invalidate = Bool(INPUT) val invalidate = Bool(INPUT)
val mem = outer.node.bundleOut val mem = outer.node.bundleOut
} }
@ -110,7 +110,8 @@ class ICacheModule(outer: ICache) extends LazyModuleImp(outer)
} }
val s1_tag_disparity = Wire(Vec(nWays, Bool())) val s1_tag_disparity = Wire(Vec(nWays, Bool()))
val s1_dout = Wire(Vec(nWays, UInt(width = code.width(rowBits)))) val wordBits = coreInstBits * fetchWidth
val s1_dout = Wire(Vec(nWays, UInt(width = code.width(wordBits))))
val s1_dout_valid = RegNext(s0_valid) val s1_dout_valid = RegNext(s0_valid)
for (i <- 0 until nWays) { for (i <- 0 until nWays) {
@ -119,7 +120,24 @@ class ICacheModule(outer: ICache) extends LazyModuleImp(outer)
s1_tag_hit(i) := s1_vb && ((code.decode(tag_rdata(i)).uncorrected === s1_tag) holdUnless s1_dout_valid) s1_tag_hit(i) := s1_vb && ((code.decode(tag_rdata(i)).uncorrected === s1_tag) holdUnless s1_dout_valid)
} }
val data_arrays = Seq.fill(nWays) { SeqMem(nSets * refillCycles, Bits(width = code.width(rowBits))) } require(rowBits % wordBits == 0)
val data_arrays = Seq.fill(rowBits / wordBits) { SeqMem(nSets * refillCycles, Vec(nWays, UInt(width = code.width(wordBits)))) }
for ((data_array, i) <- data_arrays zipWithIndex) {
val wen = tl_out.d.valid
when (wen) {
val idx = (refill_idx << log2Ceil(refillCycles)) | refill_cnt
val data = tl_out.d.bits.data(wordBits*(i+1)-1, wordBits*i)
data_array.write(idx, Vec.fill(nWays)(code.encode(data)), (0 until nWays).map(repl_way === _))
}
def wordMatch(addr: UInt) = addr.extract(log2Ceil(rowBytes)-1, log2Ceil(wordBits/8)) === i
val s0_raddr = s0_vaddr(untagBits-1,blockOffBits-log2Ceil(refillCycles))
val dout = data_array.read(s0_raddr, !wen && (s0_valid && wordMatch(s0_vaddr))) holdUnless s1_dout_valid
when (wordMatch(io.s1_paddr)) {
s1_dout := dout
}
}
/*
for ((data_array, i) <- data_arrays zipWithIndex) { for ((data_array, i) <- data_arrays zipWithIndex) {
val wen = tl_out.d.valid && repl_way === UInt(i) val wen = tl_out.d.valid && repl_way === UInt(i)
when (wen) { when (wen) {
@ -129,12 +147,13 @@ class ICacheModule(outer: ICache) extends LazyModuleImp(outer)
val s0_raddr = s0_vaddr(untagBits-1,blockOffBits-log2Ceil(refillCycles)) val s0_raddr = s0_vaddr(untagBits-1,blockOffBits-log2Ceil(refillCycles))
s1_dout(i) := data_array.read(s0_raddr, !wen && s0_valid) holdUnless s1_dout_valid s1_dout(i) := data_array.read(s0_raddr, !wen && s0_valid) holdUnless s1_dout_valid
} }
*/
// output signals // output signals
outer.latency match { outer.latency match {
case 1 => case 1 =>
require(code.width(rowBits) == rowBits) // no ECC require(code.width(rowBits) == rowBits) // no ECC
io.resp.bits.datablock := Mux1H(s1_tag_hit, s1_dout) io.resp.bits := Mux1H(s1_tag_hit, s1_dout)
io.resp.valid := s1_hit io.resp.valid := s1_hit
case 2 => case 2 =>
val s2_valid = RegEnable(out_valid, Bool(false), !stall) val s2_valid = RegEnable(out_valid, Bool(false), !stall)
@ -148,7 +167,7 @@ class ICacheModule(outer: ICache) extends LazyModuleImp(outer)
val s2_disparity = s2_tag_disparity || s2_data_disparity val s2_disparity = s2_tag_disparity || s2_data_disparity
when (s2_valid && s2_disparity) { invalidate := true } when (s2_valid && s2_disparity) { invalidate := true }
io.resp.bits.datablock := code.decode(s2_way_mux).uncorrected io.resp.bits := code.decode(s2_way_mux).uncorrected
io.resp.valid := s2_hit && !s2_disparity io.resp.valid := s2_hit && !s2_disparity
} }
tl_out.a.valid := state === s_request && !io.s2_kill tl_out.a.valid := state === s_request && !io.s2_kill