1package xiangshan.mem 2 3import chisel3._ 4import chisel3.util._ 5import freechips.rocketchip.tile.HasFPUParameters 6import utils._ 7import xiangshan._ 8import xiangshan.cache._ 9import xiangshan.cache.{DCacheLineIO, DCacheWordIO, MemoryOpConstants, TlbRequestIO} 10import xiangshan.backend.LSUOpType 11import xiangshan.mem._ 12import xiangshan.backend.roq.RoqPtr 13 14 15class LqPtr extends CircularQueuePtr(LqPtr.LoadQueueSize) { } 16 17object LqPtr extends HasXSParameter { 18 def apply(f: Bool, v: UInt): LqPtr = { 19 val ptr = Wire(new LqPtr) 20 ptr.flag := f 21 ptr.value := v 22 ptr 23 } 24} 25 26trait HasLoadHelper { this: XSModule => 27 def rdataHelper(uop: MicroOp, rdata: UInt): UInt = { 28 val fpWen = uop.ctrl.fpWen 29 LookupTree(uop.ctrl.fuOpType, List( 30 LSUOpType.lb -> SignExt(rdata(7, 0) , XLEN), 31 LSUOpType.lh -> SignExt(rdata(15, 0), XLEN), 32 LSUOpType.lw -> Mux(fpWen, rdata, SignExt(rdata(31, 0), XLEN)), 33 LSUOpType.ld -> Mux(fpWen, rdata, SignExt(rdata(63, 0), XLEN)), 34 LSUOpType.lbu -> ZeroExt(rdata(7, 0) , XLEN), 35 LSUOpType.lhu -> ZeroExt(rdata(15, 0), XLEN), 36 LSUOpType.lwu -> ZeroExt(rdata(31, 0), XLEN), 37 )) 38 } 39 40 def fpRdataHelper(uop: MicroOp, rdata: UInt): UInt = { 41 LookupTree(uop.ctrl.fuOpType, List( 42 LSUOpType.lw -> recode(rdata(31, 0), S), 43 LSUOpType.ld -> recode(rdata(63, 0), D) 44 )) 45 } 46} 47 48class LqEnqIO extends XSBundle { 49 val canAccept = Output(Bool()) 50 val sqCanAccept = Input(Bool()) 51 val needAlloc = Vec(RenameWidth, Input(Bool())) 52 val req = Vec(RenameWidth, Flipped(ValidIO(new MicroOp))) 53 val resp = Vec(RenameWidth, Output(new LqPtr)) 54} 55 56// Load Queue 57class LoadQueue extends XSModule 58 with HasDCacheParameters 59 with HasCircularQueuePtrHelper 60 with HasLoadHelper 61{ 62 val io = IO(new Bundle() { 63 val enq = new LqEnqIO 64 val brqRedirect = Input(Valid(new Redirect)) 65 val loadIn = Vec(LoadPipelineWidth, Flipped(Valid(new LsPipelineBundle))) 66 val storeIn = Vec(StorePipelineWidth, Flipped(Valid(new LsPipelineBundle))) 67 val ldout = Vec(2, DecoupledIO(new ExuOutput)) // writeback int load 68 val load_s1 = Vec(LoadPipelineWidth, Flipped(new LoadForwardQueryIO)) 69 val commits = Flipped(new RoqCommitIO) 70 val rollback = Output(Valid(new Redirect)) // replay now starts from load instead of store 71 val dcache = Flipped(ValidIO(new Refill)) 72 val uncache = new DCacheWordIO 73 val roqDeqPtr = Input(new RoqPtr) 74 val exceptionAddr = new ExceptionAddrIO 75 }) 76 77 val uop = Reg(Vec(LoadQueueSize, new MicroOp)) 78 // val data = Reg(Vec(LoadQueueSize, new LsRoqEntry)) 79 val dataModule = Module(new LoadQueueData(LoadQueueSize, wbNumRead = LoadPipelineWidth, wbNumWrite = LoadPipelineWidth)) 80 dataModule.io := DontCare 81 val vaddrModule = Module(new AsyncDataModuleTemplate(UInt(VAddrBits.W), LoadQueueSize, numRead = 1, numWrite = LoadPipelineWidth)) 82 vaddrModule.io := DontCare 83 val allocated = RegInit(VecInit(List.fill(LoadQueueSize)(false.B))) // lq entry has been allocated 84 val datavalid = RegInit(VecInit(List.fill(LoadQueueSize)(false.B))) // data is valid 85 val writebacked = RegInit(VecInit(List.fill(LoadQueueSize)(false.B))) // inst has been writebacked to CDB 86 val commited = Reg(Vec(LoadQueueSize, Bool())) // inst has been writebacked to CDB 87 val miss = Reg(Vec(LoadQueueSize, Bool())) // load inst missed, waiting for miss queue to accept miss request 88 // val listening = Reg(Vec(LoadQueueSize, Bool())) // waiting for refill result 89 val pending = Reg(Vec(LoadQueueSize, Bool())) // mmio pending: inst is an mmio inst, it will not be executed until it reachs the end of roq 90 91 val debug_mmio = Reg(Vec(LoadQueueSize, Bool())) // mmio: inst is an mmio inst 92 93 val enqPtrExt = RegInit(VecInit((0 until RenameWidth).map(_.U.asTypeOf(new LqPtr)))) 94 val deqPtrExt = RegInit(0.U.asTypeOf(new LqPtr)) 95 val validCounter = RegInit(0.U(log2Ceil(LoadQueueSize + 1).W)) 96 val allowEnqueue = RegInit(true.B) 97 98 val enqPtr = enqPtrExt(0).value 99 val deqPtr = deqPtrExt.value 100 val sameFlag = enqPtrExt(0).flag === deqPtrExt.flag 101 val isEmpty = enqPtr === deqPtr && sameFlag 102 val isFull = enqPtr === deqPtr && !sameFlag 103 val allowIn = !isFull 104 105 val loadCommit = (0 until CommitWidth).map(i => io.commits.valid(i) && !io.commits.isWalk && io.commits.info(i).commitType === CommitType.LOAD) 106 val mcommitIdx = (0 until CommitWidth).map(i => io.commits.info(i).lqIdx.value) 107 108 val deqMask = UIntToMask(deqPtr, LoadQueueSize) 109 val enqMask = UIntToMask(enqPtr, LoadQueueSize) 110 111 /** 112 * Enqueue at dispatch 113 * 114 * Currently, LoadQueue only allows enqueue when #emptyEntries > RenameWidth(EnqWidth) 115 */ 116 io.enq.canAccept := allowEnqueue 117 118 for (i <- 0 until RenameWidth) { 119 val offset = if (i == 0) 0.U else PopCount(io.enq.needAlloc.take(i)) 120 val lqIdx = enqPtrExt(offset) 121 val index = lqIdx.value 122 when (io.enq.req(i).valid && io.enq.canAccept && io.enq.sqCanAccept && !io.brqRedirect.valid) { 123 uop(index) := io.enq.req(i).bits 124 allocated(index) := true.B 125 datavalid(index) := false.B 126 writebacked(index) := false.B 127 commited(index) := false.B 128 miss(index) := false.B 129 // listening(index) := false.B 130 pending(index) := false.B 131 } 132 io.enq.resp(i) := lqIdx 133 } 134 XSDebug(p"(ready, valid): ${io.enq.canAccept}, ${Binary(Cat(io.enq.req.map(_.valid)))}\n") 135 136 /** 137 * Writeback load from load units 138 * 139 * Most load instructions writeback to regfile at the same time. 140 * However, 141 * (1) For an mmio instruction with exceptions, it writes back to ROB immediately. 142 * (2) For an mmio instruction without exceptions, it does not write back. 143 * The mmio instruction will be sent to lower level when it reaches ROB's head. 144 * After uncache response, it will write back through arbiter with loadUnit. 145 * (3) For cache misses, it is marked miss and sent to dcache later. 146 * After cache refills, it will write back through arbiter with loadUnit. 147 */ 148 for (i <- 0 until LoadPipelineWidth) { 149 dataModule.io.wb.wen(i) := false.B 150 vaddrModule.io.wen(i) := false.B 151 when(io.loadIn(i).fire()) { 152 when(io.loadIn(i).bits.miss) { 153 XSInfo(io.loadIn(i).valid, "load miss write to lq idx %d pc 0x%x vaddr %x paddr %x data %x mask %x forwardData %x forwardMask: %x mmio %x roll %x exc %x\n", 154 io.loadIn(i).bits.uop.lqIdx.asUInt, 155 io.loadIn(i).bits.uop.cf.pc, 156 io.loadIn(i).bits.vaddr, 157 io.loadIn(i).bits.paddr, 158 io.loadIn(i).bits.data, 159 io.loadIn(i).bits.mask, 160 io.loadIn(i).bits.forwardData.asUInt, 161 io.loadIn(i).bits.forwardMask.asUInt, 162 io.loadIn(i).bits.mmio, 163 io.loadIn(i).bits.rollback, 164 io.loadIn(i).bits.uop.cf.exceptionVec.asUInt 165 ) 166 }.otherwise { 167 XSInfo(io.loadIn(i).valid, "load hit write to cbd lqidx %d pc 0x%x vaddr %x paddr %x data %x mask %x forwardData %x forwardMask: %x mmio %x roll %x exc %x\n", 168 io.loadIn(i).bits.uop.lqIdx.asUInt, 169 io.loadIn(i).bits.uop.cf.pc, 170 io.loadIn(i).bits.vaddr, 171 io.loadIn(i).bits.paddr, 172 io.loadIn(i).bits.data, 173 io.loadIn(i).bits.mask, 174 io.loadIn(i).bits.forwardData.asUInt, 175 io.loadIn(i).bits.forwardMask.asUInt, 176 io.loadIn(i).bits.mmio, 177 io.loadIn(i).bits.rollback, 178 io.loadIn(i).bits.uop.cf.exceptionVec.asUInt 179 ) 180 } 181 val loadWbIndex = io.loadIn(i).bits.uop.lqIdx.value 182 datavalid(loadWbIndex) := !io.loadIn(i).bits.miss && !io.loadIn(i).bits.mmio 183 writebacked(loadWbIndex) := !io.loadIn(i).bits.miss && !io.loadIn(i).bits.mmio 184 185 val loadWbData = Wire(new LQDataEntry) 186 loadWbData.paddr := io.loadIn(i).bits.paddr 187 loadWbData.mask := io.loadIn(i).bits.mask 188 loadWbData.data := io.loadIn(i).bits.data // fwd data 189 loadWbData.fwdMask := io.loadIn(i).bits.forwardMask 190 loadWbData.exception := io.loadIn(i).bits.uop.cf.exceptionVec.asUInt 191 dataModule.io.wbWrite(i, loadWbIndex, loadWbData) 192 dataModule.io.wb.wen(i) := true.B 193 194 vaddrModule.io.waddr(i) := loadWbIndex 195 vaddrModule.io.wdata(i) := io.loadIn(i).bits.vaddr 196 vaddrModule.io.wen(i) := true.B 197 198 debug_mmio(loadWbIndex) := io.loadIn(i).bits.mmio 199 200 val dcacheMissed = io.loadIn(i).bits.miss && !io.loadIn(i).bits.mmio 201 miss(loadWbIndex) := dcacheMissed && !io.loadIn(i).bits.uop.cf.exceptionVec.asUInt.orR 202 // listening(loadWbIndex) := dcacheMissed 203 pending(loadWbIndex) := io.loadIn(i).bits.mmio && !io.loadIn(i).bits.uop.cf.exceptionVec.asUInt.orR 204 } 205 } 206 207 /** 208 * Cache miss request 209 * 210 * (1) writeback: miss 211 * (2) send to dcache: listing 212 * (3) dcache response: datavalid 213 * (4) writeback to ROB: writeback 214 */ 215 // val inflightReqs = RegInit(VecInit(Seq.fill(cfg.nLoadMissEntries)(0.U.asTypeOf(new InflightBlockInfo)))) 216 // val inflightReqFull = inflightReqs.map(req => req.valid).reduce(_&&_) 217 // val reqBlockIndex = PriorityEncoder(~VecInit(inflightReqs.map(req => req.valid)).asUInt) 218 219 // val missRefillSelVec = VecInit( 220 // (0 until LoadQueueSize).map{ i => 221 // val inflight = inflightReqs.map(req => req.valid && req.block_addr === get_block_addr(dataModule.io.rdata(i).paddr)).reduce(_||_) 222 // allocated(i) && miss(i) && !inflight 223 // }) 224 225 // val missRefillSel = getFirstOne(missRefillSelVec, deqMask) 226 // val missRefillBlockAddr = get_block_addr(dataModule.io.rdata(missRefillSel).paddr) 227 // io.dcache.req.valid := missRefillSelVec.asUInt.orR 228 // io.dcache.req.bits.cmd := MemoryOpConstants.M_XRD 229 // io.dcache.req.bits.addr := missRefillBlockAddr 230 // io.dcache.req.bits.data := DontCare 231 // io.dcache.req.bits.mask := DontCare 232 233 // io.dcache.req.bits.meta.id := DontCare 234 // io.dcache.req.bits.meta.vaddr := DontCare // dataModule.io.rdata(missRefillSel).vaddr 235 // io.dcache.req.bits.meta.paddr := missRefillBlockAddr 236 // io.dcache.req.bits.meta.uop := uop(missRefillSel) 237 // io.dcache.req.bits.meta.mmio := false.B // dataModule.io.rdata(missRefillSel).mmio 238 // io.dcache.req.bits.meta.tlb_miss := false.B 239 // io.dcache.req.bits.meta.mask := DontCare 240 // io.dcache.req.bits.meta.replay := false.B 241 242 // assert(!(dataModule.io.rdata(missRefillSel).mmio && io.dcache.req.valid)) 243 244 // when(io.dcache.req.fire()) { 245 // miss(missRefillSel) := false.B 246 // listening(missRefillSel) := true.B 247 248 // mark this block as inflight 249 // inflightReqs(reqBlockIndex).valid := true.B 250 // inflightReqs(reqBlockIndex).block_addr := missRefillBlockAddr 251 // assert(!inflightReqs(reqBlockIndex).valid) 252 // } 253 254 // when(io.dcache.resp.fire()) { 255 // val inflight = inflightReqs.map(req => req.valid && req.block_addr === get_block_addr(io.dcache.resp.bits.meta.paddr)).reduce(_||_) 256 // assert(inflight) 257 // for (i <- 0 until cfg.nLoadMissEntries) { 258 // when (inflightReqs(i).valid && inflightReqs(i).block_addr === get_block_addr(io.dcache.resp.bits.meta.paddr)) { 259 // inflightReqs(i).valid := false.B 260 // } 261 // } 262 // } 263 264 265 // when(io.dcache.req.fire()){ 266 // XSDebug("miss req: pc:0x%x roqIdx:%d lqIdx:%d (p)addr:0x%x vaddr:0x%x\n", 267 // io.dcache.req.bits.meta.uop.cf.pc, io.dcache.req.bits.meta.uop.roqIdx.asUInt, io.dcache.req.bits.meta.uop.lqIdx.asUInt, 268 // io.dcache.req.bits.addr, io.dcache.req.bits.meta.vaddr 269 // ) 270 // } 271 272 when(io.dcache.valid) { 273 XSDebug("miss resp: paddr:0x%x data %x\n", io.dcache.bits.addr, io.dcache.bits.data) 274 } 275 276 // Refill 64 bit in a cycle 277 // Refill data comes back from io.dcache.resp 278 dataModule.io.refill.valid := io.dcache.valid 279 dataModule.io.refill.paddr := io.dcache.bits.addr 280 dataModule.io.refill.data := io.dcache.bits.data 281 282 (0 until LoadQueueSize).map(i => { 283 dataModule.io.refill.refillMask(i) := allocated(i) && miss(i) 284 when(dataModule.io.refill.valid && dataModule.io.refill.refillMask(i) && dataModule.io.refill.matchMask(i)) { 285 datavalid(i) := true.B 286 miss(i) := false.B 287 } 288 }) 289 290 // Writeback up to 2 missed load insts to CDB 291 // 292 // Pick 2 missed load (data refilled), write them back to cdb 293 // 2 refilled load will be selected from even/odd entry, separately 294 295 // Stage 0 296 // Generate writeback indexes 297 val loadWbSelVec = VecInit((0 until LoadQueueSize).map(i => { 298 allocated(i) && !writebacked(i) && datavalid(i) 299 })).asUInt() // use uint instead vec to reduce verilog lines 300 val loadEvenSelVec = VecInit((0 until LoadQueueSize/2).map(i => {loadWbSelVec(2*i)})) 301 val loadOddSelVec = VecInit((0 until LoadQueueSize/2).map(i => {loadWbSelVec(2*i+1)})) 302 val evenDeqMask = VecInit((0 until LoadQueueSize/2).map(i => {deqMask(2*i)})).asUInt 303 val oddDeqMask = VecInit((0 until LoadQueueSize/2).map(i => {deqMask(2*i+1)})).asUInt 304 305 val loadWbSelGen = Wire(Vec(LoadPipelineWidth, UInt(log2Up(LoadQueueSize).W))) 306 val loadWbSelVGen = Wire(Vec(LoadPipelineWidth, Bool())) 307 loadWbSelGen(0) := Cat(getFirstOne(loadEvenSelVec, evenDeqMask), 0.U(1.W)) 308 loadWbSelVGen(0):= loadEvenSelVec.asUInt.orR 309 loadWbSelGen(1) := Cat(getFirstOne(loadOddSelVec, oddDeqMask), 1.U(1.W)) 310 loadWbSelVGen(1) := loadOddSelVec.asUInt.orR 311 312 val loadWbSel = Wire(Vec(LoadPipelineWidth, UInt(log2Up(LoadQueueSize).W))) 313 val loadWbSelV = RegInit(VecInit(List.fill(LoadPipelineWidth)(false.B))) 314 (0 until LoadPipelineWidth).map(i => { 315 val canGo = io.ldout(i).fire() || !loadWbSelV(i) 316 val valid = loadWbSelVGen(i) 317 // store selected index in pipeline reg 318 loadWbSel(i) := RegEnable(loadWbSelGen(i), valid && canGo) 319 // Mark them as writebacked, so they will not be selected in the next cycle 320 when(valid && canGo){ 321 writebacked(loadWbSelGen(i)) := true.B 322 } 323 // update loadWbSelValidReg 324 when(io.ldout(i).fire()){ 325 loadWbSelV(i) := false.B 326 } 327 when(valid && canGo){ 328 loadWbSelV(i) := true.B 329 } 330 }) 331 332 // Stage 1 333 // Use indexes generated in cycle 0 to read data 334 // writeback data to cdb 335 (0 until LoadPipelineWidth).map(i => { 336 // data select 337 dataModule.io.wb.raddr(i) := loadWbSel(i) 338 val rdata = dataModule.io.wb.rdata(i).data 339 val seluop = uop(loadWbSel(i)) 340 val func = seluop.ctrl.fuOpType 341 val raddr = dataModule.io.wb.rdata(i).paddr 342 val rdataSel = LookupTree(raddr(2, 0), List( 343 "b000".U -> rdata(63, 0), 344 "b001".U -> rdata(63, 8), 345 "b010".U -> rdata(63, 16), 346 "b011".U -> rdata(63, 24), 347 "b100".U -> rdata(63, 32), 348 "b101".U -> rdata(63, 40), 349 "b110".U -> rdata(63, 48), 350 "b111".U -> rdata(63, 56) 351 )) 352 val rdataPartialLoad = rdataHelper(seluop, rdataSel) 353 354 // writeback missed int/fp load 355 // 356 // Int load writeback will finish (if not blocked) in one cycle 357 io.ldout(i).bits.uop := seluop 358 io.ldout(i).bits.uop.cf.exceptionVec := dataModule.io.wb.rdata(i).exception.asBools 359 io.ldout(i).bits.uop.lqIdx := loadWbSel(i).asTypeOf(new LqPtr) 360 io.ldout(i).bits.data := rdataPartialLoad 361 io.ldout(i).bits.redirectValid := false.B 362 io.ldout(i).bits.redirect := DontCare 363 io.ldout(i).bits.brUpdate := DontCare 364 io.ldout(i).bits.debug.isMMIO := debug_mmio(loadWbSel(i)) 365 io.ldout(i).bits.debug.isPerfCnt := false.B 366 io.ldout(i).bits.fflags := DontCare 367 io.ldout(i).valid := loadWbSelV(i) 368 369 when(io.ldout(i).fire()) { 370 XSInfo("int load miss write to cbd roqidx %d lqidx %d pc 0x%x paddr %x data %x mmio %x\n", 371 io.ldout(i).bits.uop.roqIdx.asUInt, 372 io.ldout(i).bits.uop.lqIdx.asUInt, 373 io.ldout(i).bits.uop.cf.pc, 374 dataModule.io.debug(loadWbSel(i)).paddr, 375 dataModule.io.debug(loadWbSel(i)).data, 376 debug_mmio(loadWbSel(i)) 377 ) 378 } 379 380 }) 381 382 /** 383 * Load commits 384 * 385 * When load commited, mark it as !allocated and move deqPtrExt forward. 386 */ 387 (0 until CommitWidth).map(i => { 388 when(loadCommit(i)) { 389 allocated(mcommitIdx(i)) := false.B 390 XSDebug("load commit %d: idx %d %x\n", i.U, mcommitIdx(i), uop(mcommitIdx(i)).cf.pc) 391 } 392 }) 393 394 def getFirstOne(mask: Vec[Bool], startMask: UInt) = { 395 val length = mask.length 396 val highBits = (0 until length).map(i => mask(i) & ~startMask(i)) 397 val highBitsUint = Cat(highBits.reverse) 398 PriorityEncoder(Mux(highBitsUint.orR(), highBitsUint, mask.asUInt)) 399 } 400 401 def getOldestInTwo(valid: Seq[Bool], uop: Seq[MicroOp]) = { 402 assert(valid.length == uop.length) 403 assert(valid.length == 2) 404 Mux(valid(0) && valid(1), 405 Mux(isAfter(uop(0).roqIdx, uop(1).roqIdx), uop(1), uop(0)), 406 Mux(valid(0) && !valid(1), uop(0), uop(1))) 407 } 408 409 def getAfterMask(valid: Seq[Bool], uop: Seq[MicroOp]) = { 410 assert(valid.length == uop.length) 411 val length = valid.length 412 (0 until length).map(i => { 413 (0 until length).map(j => { 414 Mux(valid(i) && valid(j), 415 isAfter(uop(i).roqIdx, uop(j).roqIdx), 416 Mux(!valid(i), true.B, false.B)) 417 }) 418 }) 419 } 420 421 /** 422 * Memory violation detection 423 * 424 * When store writes back, it searches LoadQueue for younger load instructions 425 * with the same load physical address. They loaded wrong data and need re-execution. 426 * 427 * Cycle 0: Store Writeback 428 * Generate match vector for store address with rangeMask(stPtr, enqPtr). 429 * Besides, load instructions in LoadUnit_S1 and S2 are also checked. 430 * Cycle 1: Redirect Generation 431 * There're three possible types of violations. Choose the oldest load. 432 * Set io.redirect according to the detected violation. 433 */ 434 io.load_s1 := DontCare 435 def detectRollback(i: Int) = { 436 val startIndex = io.storeIn(i).bits.uop.lqIdx.value 437 val lqIdxMask = UIntToMask(startIndex, LoadQueueSize) 438 val xorMask = lqIdxMask ^ enqMask 439 val sameFlag = io.storeIn(i).bits.uop.lqIdx.flag === enqPtrExt(0).flag 440 val toEnqPtrMask = Mux(sameFlag, xorMask, ~xorMask) 441 442 // check if load already in lq needs to be rolledback 443 dataModule.io.violation(i).paddr := io.storeIn(i).bits.paddr 444 dataModule.io.violation(i).mask := io.storeIn(i).bits.mask 445 val addrMaskMatch = RegNext(dataModule.io.violation(i).violationMask) 446 val entryNeedCheck = RegNext(VecInit((0 until LoadQueueSize).map(j => { 447 allocated(j) && toEnqPtrMask(j) && (datavalid(j) || miss(j)) 448 }))) 449 val lqViolationVec = VecInit((0 until LoadQueueSize).map(j => { 450 addrMaskMatch(j) && entryNeedCheck(j) 451 })) 452 val lqViolation = lqViolationVec.asUInt().orR() 453 val lqViolationIndex = getFirstOne(lqViolationVec, RegNext(lqIdxMask)) 454 val lqViolationUop = uop(lqViolationIndex) 455 // lqViolationUop.lqIdx.flag := deqMask(lqViolationIndex) ^ deqPtrExt.flag 456 // lqViolationUop.lqIdx.value := lqViolationIndex 457 XSDebug(lqViolation, p"${Binary(Cat(lqViolationVec))}, $startIndex, $lqViolationIndex\n") 458 459 // when l/s writeback to roq together, check if rollback is needed 460 val wbViolationVec = RegNext(VecInit((0 until LoadPipelineWidth).map(j => { 461 io.loadIn(j).valid && 462 isAfter(io.loadIn(j).bits.uop.roqIdx, io.storeIn(i).bits.uop.roqIdx) && 463 io.storeIn(i).bits.paddr(PAddrBits - 1, 3) === io.loadIn(j).bits.paddr(PAddrBits - 1, 3) && 464 (io.storeIn(i).bits.mask & io.loadIn(j).bits.mask).orR 465 }))) 466 val wbViolation = wbViolationVec.asUInt().orR() 467 val wbViolationUop = getOldestInTwo(wbViolationVec, RegNext(VecInit(io.loadIn.map(_.bits.uop)))) 468 XSDebug(wbViolation, p"${Binary(Cat(wbViolationVec))}, $wbViolationUop\n") 469 470 // check if rollback is needed for load in l1 471 val l1ViolationVec = RegNext(VecInit((0 until LoadPipelineWidth).map(j => { 472 io.load_s1(j).valid && // L1 valid 473 isAfter(io.load_s1(j).uop.roqIdx, io.storeIn(i).bits.uop.roqIdx) && 474 io.storeIn(i).bits.paddr(PAddrBits - 1, 3) === io.load_s1(j).paddr(PAddrBits - 1, 3) && 475 (io.storeIn(i).bits.mask & io.load_s1(j).mask).orR 476 }))) 477 val l1Violation = l1ViolationVec.asUInt().orR() 478 val l1ViolationUop = getOldestInTwo(l1ViolationVec, RegNext(VecInit(io.load_s1.map(_.uop)))) 479 XSDebug(l1Violation, p"${Binary(Cat(l1ViolationVec))}, $l1ViolationUop\n") 480 481 val rollbackValidVec = Seq(lqViolation, wbViolation, l1Violation) 482 val rollbackUopVec = Seq(lqViolationUop, wbViolationUop, l1ViolationUop) 483 484 val mask = getAfterMask(rollbackValidVec, rollbackUopVec) 485 val oneAfterZero = mask(1)(0) 486 val rollbackUop = Mux(oneAfterZero && mask(2)(0), 487 rollbackUopVec(0), 488 Mux(!oneAfterZero && mask(2)(1), rollbackUopVec(1), rollbackUopVec(2))) 489 490 XSDebug( 491 l1Violation, 492 "need rollback (l4 load) pc %x roqidx %d target %x\n", 493 io.storeIn(i).bits.uop.cf.pc, io.storeIn(i).bits.uop.roqIdx.asUInt, l1ViolationUop.roqIdx.asUInt 494 ) 495 XSDebug( 496 lqViolation, 497 "need rollback (ld wb before store) pc %x roqidx %d target %x\n", 498 io.storeIn(i).bits.uop.cf.pc, io.storeIn(i).bits.uop.roqIdx.asUInt, lqViolationUop.roqIdx.asUInt 499 ) 500 XSDebug( 501 wbViolation, 502 "need rollback (ld/st wb together) pc %x roqidx %d target %x\n", 503 io.storeIn(i).bits.uop.cf.pc, io.storeIn(i).bits.uop.roqIdx.asUInt, wbViolationUop.roqIdx.asUInt 504 ) 505 506 (RegNext(io.storeIn(i).valid) && Cat(rollbackValidVec).orR, rollbackUop) 507 } 508 509 // rollback check 510 val rollback = Wire(Vec(StorePipelineWidth, Valid(new MicroOp))) 511 for (i <- 0 until StorePipelineWidth) { 512 val detectedRollback = detectRollback(i) 513 rollback(i).valid := detectedRollback._1 514 rollback(i).bits := detectedRollback._2 515 } 516 517 def rollbackSel(a: Valid[MicroOp], b: Valid[MicroOp]): ValidIO[MicroOp] = { 518 Mux( 519 a.valid, 520 Mux( 521 b.valid, 522 Mux(isAfter(a.bits.roqIdx, b.bits.roqIdx), b, a), // a,b both valid, sel oldest 523 a // sel a 524 ), 525 b // sel b 526 ) 527 } 528 529 val rollbackSelected = ParallelOperation(rollback, rollbackSel) 530 val lastCycleRedirect = RegNext(io.brqRedirect) 531 532 // Note that we use roqIdx - 1.U to flush the load instruction itself. 533 // Thus, here if last cycle's roqIdx equals to this cycle's roqIdx, it still triggers the redirect. 534 io.rollback.valid := rollbackSelected.valid && 535 (!lastCycleRedirect.valid || !isAfter(rollbackSelected.bits.roqIdx, lastCycleRedirect.bits.roqIdx)) && 536 !(lastCycleRedirect.valid && lastCycleRedirect.bits.isUnconditional()) 537 538 io.rollback.bits.roqIdx := rollbackSelected.bits.roqIdx 539 io.rollback.bits.level := RedirectLevel.flush 540 io.rollback.bits.interrupt := DontCare 541 io.rollback.bits.pc := DontCare 542 io.rollback.bits.target := rollbackSelected.bits.cf.pc 543 io.rollback.bits.brTag := rollbackSelected.bits.brTag 544 545 when(io.rollback.valid) { 546 XSDebug("Mem rollback: pc %x roqidx %d\n", io.rollback.bits.pc, io.rollback.bits.roqIdx.asUInt) 547 } 548 549 /** 550 * Memory mapped IO / other uncached operations 551 * 552 */ 553 io.uncache.req.valid := pending(deqPtr) && allocated(deqPtr) && 554 io.commits.info(0).commitType === CommitType.LOAD && 555 io.roqDeqPtr === uop(deqPtr).roqIdx && 556 !io.commits.isWalk 557 558 dataModule.io.uncache.raddr := deqPtr 559 560 io.uncache.req.bits.cmd := MemoryOpConstants.M_XRD 561 io.uncache.req.bits.addr := dataModule.io.uncache.rdata.paddr 562 io.uncache.req.bits.data := dataModule.io.uncache.rdata.data 563 io.uncache.req.bits.mask := dataModule.io.uncache.rdata.mask 564 565 io.uncache.req.bits.meta.id := DontCare 566 io.uncache.req.bits.meta.vaddr := DontCare 567 io.uncache.req.bits.meta.paddr := dataModule.io.uncache.rdata.paddr 568 io.uncache.req.bits.meta.uop := uop(deqPtr) 569 io.uncache.req.bits.meta.mmio := true.B 570 io.uncache.req.bits.meta.tlb_miss := false.B 571 io.uncache.req.bits.meta.mask := dataModule.io.uncache.rdata.mask 572 io.uncache.req.bits.meta.replay := false.B 573 574 io.uncache.resp.ready := true.B 575 576 when (io.uncache.req.fire()) { 577 pending(deqPtr) := false.B 578 579 XSDebug("uncache req: pc %x addr %x data %x op %x mask %x\n", 580 uop(deqPtr).cf.pc, 581 io.uncache.req.bits.addr, 582 io.uncache.req.bits.data, 583 io.uncache.req.bits.cmd, 584 io.uncache.req.bits.mask 585 ) 586 } 587 588 dataModule.io.uncache.wen := false.B 589 when(io.uncache.resp.fire()){ 590 datavalid(deqPtr) := true.B 591 dataModule.io.uncacheWrite(deqPtr, io.uncache.resp.bits.data(XLEN-1, 0)) 592 dataModule.io.uncache.wen := true.B 593 594 XSDebug("uncache resp: data %x\n", io.dcache.bits.data) 595 } 596 597 // Read vaddr for mem exception 598 vaddrModule.io.raddr(0) := io.exceptionAddr.lsIdx.lqIdx.value 599 io.exceptionAddr.vaddr := vaddrModule.io.rdata(0) 600 601 // misprediction recovery / exception redirect 602 // invalidate lq term using robIdx 603 val needCancel = Wire(Vec(LoadQueueSize, Bool())) 604 for (i <- 0 until LoadQueueSize) { 605 needCancel(i) := uop(i).roqIdx.needFlush(io.brqRedirect) && allocated(i) && !commited(i) 606 when (needCancel(i)) { 607 allocated(i) := false.B 608 } 609 } 610 611 /** 612 * update pointers 613 */ 614 val lastCycleCancelCount = PopCount(RegNext(needCancel)) 615 // when io.brqRedirect.valid, we don't allow eneuque even though it may fire. 616 val enqNumber = Mux(io.enq.canAccept && io.enq.sqCanAccept && !io.brqRedirect.valid, PopCount(io.enq.req.map(_.valid)), 0.U) 617 when (lastCycleRedirect.valid) { 618 // we recover the pointers in the next cycle after redirect 619 enqPtrExt := VecInit(enqPtrExt.map(_ - lastCycleCancelCount)) 620 }.otherwise { 621 enqPtrExt := VecInit(enqPtrExt.map(_ + enqNumber)) 622 } 623 624 val commitCount = PopCount(loadCommit) 625 deqPtrExt := deqPtrExt + commitCount 626 627 val lastLastCycleRedirect = RegNext(lastCycleRedirect.valid) 628 val trueValidCounter = distanceBetween(enqPtrExt(0), deqPtrExt) 629 validCounter := Mux(lastLastCycleRedirect, 630 trueValidCounter, 631 validCounter + enqNumber - commitCount 632 ) 633 634 allowEnqueue := Mux(io.brqRedirect.valid, 635 false.B, 636 Mux(lastLastCycleRedirect, 637 trueValidCounter <= (LoadQueueSize - RenameWidth).U, 638 validCounter + enqNumber <= (LoadQueueSize - RenameWidth).U 639 ) 640 ) 641 642 // debug info 643 XSDebug("enqPtrExt %d:%d deqPtrExt %d:%d\n", enqPtrExt(0).flag, enqPtr, deqPtrExt.flag, deqPtr) 644 645 def PrintFlag(flag: Bool, name: String): Unit = { 646 when(flag) { 647 XSDebug(false, true.B, name) 648 }.otherwise { 649 XSDebug(false, true.B, " ") 650 } 651 } 652 653 for (i <- 0 until LoadQueueSize) { 654 if (i % 4 == 0) XSDebug("") 655 XSDebug(false, true.B, "%x [%x] ", uop(i).cf.pc, dataModule.io.debug(i).paddr) 656 PrintFlag(allocated(i), "a") 657 PrintFlag(allocated(i) && datavalid(i), "v") 658 PrintFlag(allocated(i) && writebacked(i), "w") 659 PrintFlag(allocated(i) && commited(i), "c") 660 PrintFlag(allocated(i) && miss(i), "m") 661 // PrintFlag(allocated(i) && listening(i), "l") 662 PrintFlag(allocated(i) && pending(i), "p") 663 XSDebug(false, true.B, " ") 664 if (i % 4 == 3 || i == LoadQueueSize - 1) XSDebug(false, true.B, "\n") 665 } 666 667} 668