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.frontend 18 19import org.chipsalliance.cde.config.Parameters 20import chisel3._ 21import chisel3.util._ 22import freechips.rocketchip.rocket.RVCDecoder 23import xiangshan._ 24import xiangshan.cache.mmu._ 25import xiangshan.frontend.icache._ 26import utils._ 27import utility._ 28import xiangshan.backend.fu.{PMPReqBundle, PMPRespBundle} 29import utility.ChiselDB 30 31trait HasInstrMMIOConst extends HasXSParameter with HasIFUConst{ 32 def mmioBusWidth = 64 33 def mmioBusBytes = mmioBusWidth / 8 34 def maxInstrLen = 32 35} 36 37trait HasIFUConst extends HasXSParameter{ 38 def addrAlign(addr: UInt, bytes: Int, highest: Int): UInt = Cat(addr(highest-1, log2Ceil(bytes)), 0.U(log2Ceil(bytes).W)) 39 def fetchQueueSize = 2 40 41 def getBasicBlockIdx( pc: UInt, start: UInt ): UInt = { 42 val byteOffset = pc - start 43 (byteOffset - instBytes.U)(log2Ceil(PredictWidth),instOffsetBits) 44 } 45} 46 47class IfuToFtqIO(implicit p:Parameters) extends XSBundle { 48 val pdWb = Valid(new PredecodeWritebackBundle) 49} 50 51class FtqInterface(implicit p: Parameters) extends XSBundle { 52 val fromFtq = Flipped(new FtqToIfuIO) 53 val toFtq = new IfuToFtqIO 54} 55 56class UncacheInterface(implicit p: Parameters) extends XSBundle { 57 val fromUncache = Flipped(DecoupledIO(new InsUncacheResp)) 58 val toUncache = DecoupledIO( new InsUncacheReq ) 59} 60 61class NewIFUIO(implicit p: Parameters) extends XSBundle { 62 val ftqInter = new FtqInterface 63 val icacheInter = Flipped(new IFUICacheIO) 64 val icacheStop = Output(Bool()) 65 val icachePerfInfo = Input(new ICachePerfInfo) 66 val toIbuffer = Decoupled(new FetchToIBuffer) 67 val uncacheInter = new UncacheInterface 68 val frontendTrigger = Flipped(new FrontendTdataDistributeIO) 69 val csrTriggerEnable = Input(Vec(4, Bool())) 70 val rob_commits = Flipped(Vec(CommitWidth, Valid(new RobCommitInfo))) 71 val iTLBInter = new TlbRequestIO 72 val pmp = new ICachePMPBundle 73 val mmioCommitRead = new mmioCommitRead 74} 75 76// record the situation in which fallThruAddr falls into 77// the middle of an RVI inst 78class LastHalfInfo(implicit p: Parameters) extends XSBundle { 79 val valid = Bool() 80 val middlePC = UInt(VAddrBits.W) 81 def matchThisBlock(startAddr: UInt) = valid && middlePC === startAddr 82} 83 84class IfuToPreDecode(implicit p: Parameters) extends XSBundle { 85 val data = if(HasCExtension) Vec(PredictWidth + 1, UInt(16.W)) else Vec(PredictWidth, UInt(32.W)) 86 val frontendTrigger = new FrontendTdataDistributeIO 87 val csrTriggerEnable = Vec(4, Bool()) 88 val pc = Vec(PredictWidth, UInt(VAddrBits.W)) 89} 90 91 92class IfuToPredChecker(implicit p: Parameters) extends XSBundle { 93 val ftqOffset = Valid(UInt(log2Ceil(PredictWidth).W)) 94 val jumpOffset = Vec(PredictWidth, UInt(XLEN.W)) 95 val target = UInt(VAddrBits.W) 96 val instrRange = Vec(PredictWidth, Bool()) 97 val instrValid = Vec(PredictWidth, Bool()) 98 val pds = Vec(PredictWidth, new PreDecodeInfo) 99 val pc = Vec(PredictWidth, UInt(VAddrBits.W)) 100} 101 102class FetchToIBufferDB extends Bundle { 103 val start_addr = UInt(39.W) 104 val instr_count = UInt(32.W) 105 val exception = Bool() 106 val is_cache_hit = Bool() 107} 108 109class IfuWbToFtqDB extends Bundle { 110 val start_addr = UInt(39.W) 111 val is_miss_pred = Bool() 112 val miss_pred_offset = UInt(32.W) 113 val checkJalFault = Bool() 114 val checkRetFault = Bool() 115 val checkTargetFault = Bool() 116 val checkNotCFIFault = Bool() 117 val checkInvalidTaken = Bool() 118} 119 120class NewIFU(implicit p: Parameters) extends XSModule 121 with HasICacheParameters 122 with HasIFUConst 123 with HasPdConst 124 with HasCircularQueuePtrHelper 125 with HasPerfEvents 126{ 127 val io = IO(new NewIFUIO) 128 val (toFtq, fromFtq) = (io.ftqInter.toFtq, io.ftqInter.fromFtq) 129 val fromICache = io.icacheInter.resp 130 val (toUncache, fromUncache) = (io.uncacheInter.toUncache , io.uncacheInter.fromUncache) 131 132 def isCrossLineReq(start: UInt, end: UInt): Bool = start(blockOffBits) ^ end(blockOffBits) 133 134 def isLastInCacheline(addr: UInt): Bool = addr(blockOffBits - 1, 1) === 0.U 135 136 def numOfStage = 3 137 require(numOfStage > 1, "BPU numOfStage must be greater than 1") 138 val topdown_stages = RegInit(VecInit(Seq.fill(numOfStage)(0.U.asTypeOf(new FrontendTopDownBundle)))) 139 // bubble events in IFU, only happen in stage 1 140 val icacheMissBubble = Wire(Bool()) 141 val itlbMissBubble =Wire(Bool()) 142 143 // only driven by clock, not valid-ready 144 topdown_stages(0) := fromFtq.req.bits.topdown_info 145 for (i <- 1 until numOfStage) { 146 topdown_stages(i) := topdown_stages(i - 1) 147 } 148 when (icacheMissBubble) { 149 topdown_stages(1).reasons(TopDownCounters.ICacheMissBubble.id) := true.B 150 } 151 when (itlbMissBubble) { 152 topdown_stages(1).reasons(TopDownCounters.ITLBMissBubble.id) := true.B 153 } 154 io.toIbuffer.bits.topdown_info := topdown_stages(numOfStage - 1) 155 when (fromFtq.topdown_redirect.valid) { 156 // only redirect from backend, IFU redirect itself is handled elsewhere 157 when (fromFtq.topdown_redirect.bits.debugIsCtrl) { 158 /* 159 for (i <- 0 until numOfStage) { 160 topdown_stages(i).reasons(TopDownCounters.ControlRedirectBubble.id) := true.B 161 } 162 io.toIbuffer.bits.topdown_info.reasons(TopDownCounters.ControlRedirectBubble.id) := true.B 163 */ 164 when (fromFtq.topdown_redirect.bits.ControlBTBMissBubble) { 165 for (i <- 0 until numOfStage) { 166 topdown_stages(i).reasons(TopDownCounters.BTBMissBubble.id) := true.B 167 } 168 io.toIbuffer.bits.topdown_info.reasons(TopDownCounters.BTBMissBubble.id) := true.B 169 } .elsewhen (fromFtq.topdown_redirect.bits.TAGEMissBubble) { 170 for (i <- 0 until numOfStage) { 171 topdown_stages(i).reasons(TopDownCounters.TAGEMissBubble.id) := true.B 172 } 173 io.toIbuffer.bits.topdown_info.reasons(TopDownCounters.TAGEMissBubble.id) := true.B 174 } .elsewhen (fromFtq.topdown_redirect.bits.SCMissBubble) { 175 for (i <- 0 until numOfStage) { 176 topdown_stages(i).reasons(TopDownCounters.SCMissBubble.id) := true.B 177 } 178 io.toIbuffer.bits.topdown_info.reasons(TopDownCounters.SCMissBubble.id) := true.B 179 } .elsewhen (fromFtq.topdown_redirect.bits.ITTAGEMissBubble) { 180 for (i <- 0 until numOfStage) { 181 topdown_stages(i).reasons(TopDownCounters.ITTAGEMissBubble.id) := true.B 182 } 183 io.toIbuffer.bits.topdown_info.reasons(TopDownCounters.ITTAGEMissBubble.id) := true.B 184 } .elsewhen (fromFtq.topdown_redirect.bits.RASMissBubble) { 185 for (i <- 0 until numOfStage) { 186 topdown_stages(i).reasons(TopDownCounters.RASMissBubble.id) := true.B 187 } 188 io.toIbuffer.bits.topdown_info.reasons(TopDownCounters.RASMissBubble.id) := true.B 189 } 190 } .elsewhen (fromFtq.topdown_redirect.bits.debugIsMemVio) { 191 for (i <- 0 until numOfStage) { 192 topdown_stages(i).reasons(TopDownCounters.MemVioRedirectBubble.id) := true.B 193 } 194 io.toIbuffer.bits.topdown_info.reasons(TopDownCounters.MemVioRedirectBubble.id) := true.B 195 } .otherwise { 196 for (i <- 0 until numOfStage) { 197 topdown_stages(i).reasons(TopDownCounters.OtherRedirectBubble.id) := true.B 198 } 199 io.toIbuffer.bits.topdown_info.reasons(TopDownCounters.OtherRedirectBubble.id) := true.B 200 } 201 } 202 203 class TlbExept(implicit p: Parameters) extends XSBundle{ 204 val pageFault = Bool() 205 val accessFault = Bool() 206 val mmio = Bool() 207 } 208 209 val preDecoder = Module(new PreDecode) 210 211 val predChecker = Module(new PredChecker) 212 val frontendTrigger = Module(new FrontendTrigger) 213 val (checkerIn, checkerOutStage1, checkerOutStage2) = (predChecker.io.in, predChecker.io.out.stage1Out,predChecker.io.out.stage2Out) 214 215 io.iTLBInter.req_kill := false.B 216 io.iTLBInter.resp.ready := true.B 217 218 /** 219 ****************************************************************************** 220 * IFU Stage 0 221 * - send cacheline fetch request to ICacheMainPipe 222 ****************************************************************************** 223 */ 224 225 val f0_valid = fromFtq.req.valid 226 val f0_ftq_req = fromFtq.req.bits 227 val f0_doubleLine = fromFtq.req.bits.crossCacheline 228 val f0_vSetIdx = VecInit(get_idx((f0_ftq_req.startAddr)), get_idx(f0_ftq_req.nextlineStart)) 229 val f0_fire = fromFtq.req.fire 230 231 val f0_flush, f1_flush, f2_flush, f3_flush = WireInit(false.B) 232 val from_bpu_f0_flush, from_bpu_f1_flush, from_bpu_f2_flush, from_bpu_f3_flush = WireInit(false.B) 233 234 from_bpu_f0_flush := fromFtq.flushFromBpu.shouldFlushByStage2(f0_ftq_req.ftqIdx) || 235 fromFtq.flushFromBpu.shouldFlushByStage3(f0_ftq_req.ftqIdx) 236 237 val wb_redirect , mmio_redirect, backend_redirect= WireInit(false.B) 238 val f3_wb_not_flush = WireInit(false.B) 239 240 backend_redirect := fromFtq.redirect.valid 241 f3_flush := backend_redirect || (wb_redirect && !f3_wb_not_flush) 242 f2_flush := backend_redirect || mmio_redirect || wb_redirect 243 f1_flush := f2_flush || from_bpu_f1_flush 244 f0_flush := f1_flush || from_bpu_f0_flush 245 246 val f1_ready, f2_ready, f3_ready = WireInit(false.B) 247 248 fromFtq.req.ready := f1_ready && io.icacheInter.icacheReady 249 250 251 when (wb_redirect) { 252 when (f3_wb_not_flush) { 253 topdown_stages(2).reasons(TopDownCounters.BTBMissBubble.id) := true.B 254 } 255 for (i <- 0 until numOfStage - 1) { 256 topdown_stages(i).reasons(TopDownCounters.BTBMissBubble.id) := true.B 257 } 258 } 259 260 /** <PERF> f0 fetch bubble */ 261 262 XSPerfAccumulate("fetch_bubble_ftq_not_valid", !fromFtq.req.valid && fromFtq.req.ready ) 263 // XSPerfAccumulate("fetch_bubble_pipe_stall", f0_valid && toICache(0).ready && toICache(1).ready && !f1_ready ) 264 // XSPerfAccumulate("fetch_bubble_icache_0_busy", f0_valid && !toICache(0).ready ) 265 // XSPerfAccumulate("fetch_bubble_icache_1_busy", f0_valid && !toICache(1).ready ) 266 XSPerfAccumulate("fetch_flush_backend_redirect", backend_redirect ) 267 XSPerfAccumulate("fetch_flush_wb_redirect", wb_redirect ) 268 XSPerfAccumulate("fetch_flush_bpu_f1_flush", from_bpu_f1_flush ) 269 XSPerfAccumulate("fetch_flush_bpu_f0_flush", from_bpu_f0_flush ) 270 271 272 /** 273 ****************************************************************************** 274 * IFU Stage 1 275 * - calculate pc/half_pc/cut_ptr for every instruction 276 ****************************************************************************** 277 */ 278 279 val f1_valid = RegInit(false.B) 280 val f1_ftq_req = RegEnable(f0_ftq_req, f0_fire) 281 // val f1_situation = RegEnable(f0_situation, f0_fire) 282 val f1_doubleLine = RegEnable(f0_doubleLine, f0_fire) 283 val f1_vSetIdx = RegEnable(f0_vSetIdx, f0_fire) 284 val f1_fire = f1_valid && f2_ready 285 286 f1_ready := f1_fire || !f1_valid 287 288 from_bpu_f1_flush := fromFtq.flushFromBpu.shouldFlushByStage3(f1_ftq_req.ftqIdx) && f1_valid 289 // from_bpu_f1_flush := false.B 290 291 when(f1_flush) {f1_valid := false.B} 292 .elsewhen(f0_fire && !f0_flush) {f1_valid := true.B} 293 .elsewhen(f1_fire) {f1_valid := false.B} 294 295 val f1_pc_adder_cut_point = (VAddrBits/2) - 1 // equal lower_result overflow bit 296 val f1_pc_high = f1_ftq_req.startAddr(VAddrBits-1,f1_pc_adder_cut_point) 297 val f1_pc_high_plus1 = f1_pc_high + 1.U 298 299 val f1_pc_lower_result = VecInit((0 until PredictWidth).map(i => Cat(0.U(1.W), f1_ftq_req.startAddr(f1_pc_adder_cut_point-1, 0)) + (i * 2).U)) // cat with overflow bit 300 val f1_pc = VecInit(f1_pc_lower_result.map{ i => 301 Mux(i(f1_pc_adder_cut_point), Cat(f1_pc_high_plus1,i(f1_pc_adder_cut_point-1,0)), Cat(f1_pc_high,i(f1_pc_adder_cut_point-1,0)))}) 302 303 val f1_half_snpc_lower_result = VecInit((0 until PredictWidth).map(i => Cat(0.U(1.W), f1_ftq_req.startAddr(f1_pc_adder_cut_point-1, 0)) + ((i+2) * 2).U)) // cat with overflow bit 304 val f1_half_snpc = VecInit(f1_half_snpc_lower_result.map{i => 305 Mux(i(f1_pc_adder_cut_point), Cat(f1_pc_high_plus1,i(f1_pc_adder_cut_point-1,0)), Cat(f1_pc_high,i(f1_pc_adder_cut_point-1,0)))}) 306 307 if (env.FPGAPlatform){ 308 val f1_pc_diff = VecInit((0 until PredictWidth).map(i => f1_ftq_req.startAddr + (i * 2).U)) 309 val f1_half_snpc_diff = VecInit((0 until PredictWidth).map(i => f1_ftq_req.startAddr + ((i+2) * 2).U)) 310 311 XSError(f1_pc.zip(f1_pc_diff).map{ case (a,b) => a.asUInt =/= b.asUInt }.reduce(_||_), "f1_half_snpc adder cut fail") 312 XSError(f1_half_snpc.zip(f1_half_snpc_diff).map{ case (a,b) => a.asUInt =/= b.asUInt }.reduce(_||_), "f1_half_snpc adder cut fail") 313 } 314 315 val f1_cut_ptr = if(HasCExtension) VecInit((0 until PredictWidth + 1).map(i => Cat(0.U(2.W), f1_ftq_req.startAddr(blockOffBits-2, 1)) + i.U )) 316 else VecInit((0 until PredictWidth).map(i => Cat(0.U(2.W), f1_ftq_req.startAddr(blockOffBits-2, 2)) + i.U )) 317 318 /** 319 ****************************************************************************** 320 * IFU Stage 2 321 * - icache response data (latched for pipeline stop) 322 * - generate exceprion bits for every instruciton (page fault/access fault/mmio) 323 * - generate predicted instruction range (1 means this instruciton is in this fetch packet) 324 * - cut data from cachlines to packet instruction code 325 * - instruction predecode and RVC expand 326 ****************************************************************************** 327 */ 328 329 val icacheRespAllValid = WireInit(false.B) 330 331 val f2_valid = RegInit(false.B) 332 val f2_ftq_req = RegEnable(f1_ftq_req, f1_fire) 333 // val f2_situation = RegEnable(f1_situation, f1_fire) 334 val f2_doubleLine = RegEnable(f1_doubleLine, f1_fire) 335 val f2_vSetIdx = RegEnable(f1_vSetIdx, f1_fire) 336 val f2_fire = f2_valid && f3_ready && icacheRespAllValid 337 338 f2_ready := f2_fire || !f2_valid 339 //TODO: addr compare may be timing critical 340 val f2_icache_all_resp_wire = fromICache(0).valid && (fromICache(0).bits.vaddr === f2_ftq_req.startAddr) && ((fromICache(1).valid && (fromICache(1).bits.vaddr === f2_ftq_req.nextlineStart)) || !f2_doubleLine) 341 val f2_icache_all_resp_reg = RegInit(false.B) 342 343 icacheRespAllValid := f2_icache_all_resp_reg || f2_icache_all_resp_wire 344 345 icacheMissBubble := io.icacheInter.topdownIcacheMiss 346 itlbMissBubble := io.icacheInter.topdownItlbMiss 347 348 io.icacheStop := !f3_ready 349 350 when(f2_flush) {f2_icache_all_resp_reg := false.B} 351 .elsewhen(f2_valid && f2_icache_all_resp_wire && !f3_ready) {f2_icache_all_resp_reg := true.B} 352 .elsewhen(f2_fire && f2_icache_all_resp_reg) {f2_icache_all_resp_reg := false.B} 353 354 when(f2_flush) {f2_valid := false.B} 355 .elsewhen(f1_fire && !f1_flush) {f2_valid := true.B } 356 .elsewhen(f2_fire) {f2_valid := false.B} 357 358 val f2_except_pf = VecInit((0 until PortNumber).map(i => fromICache(i).bits.tlbExcp.pageFault)) 359 val f2_except_gpf = VecInit((0 until PortNumber).map(i => fromICache(i).bits.tlbExcp.guestPageFault)) 360 val f2_except_af = VecInit((0 until PortNumber).map(i => fromICache(i).bits.tlbExcp.accessFault)) 361 val f2_gpaddrs = VecInit((0 until PortNumber).map(i => fromICache(i).bits.gpaddr)) 362 val f2_mmio = fromICache(0).bits.tlbExcp.mmio && 363 !fromICache(0).bits.tlbExcp.accessFault && 364 !fromICache(0).bits.tlbExcp.pageFault && 365 !fromICache(0).bits.tlbExcp.guestPageFault 366 367 val f2_pc = RegEnable(f1_pc, f1_fire) 368 val f2_half_snpc = RegEnable(f1_half_snpc, f1_fire) 369 val f2_cut_ptr = RegEnable(f1_cut_ptr, f1_fire) 370 371 val f2_resend_vaddr = RegEnable(f1_ftq_req.startAddr + 2.U, f1_fire) 372 373 def isNextLine(pc: UInt, startAddr: UInt) = { 374 startAddr(blockOffBits) ^ pc(blockOffBits) 375 } 376 377 def isLastInLine(pc: UInt) = { 378 pc(blockOffBits - 1, 0) === "b111110".U 379 } 380 381 val f2_foldpc = VecInit(f2_pc.map(i => XORFold(i(VAddrBits-1,1), MemPredPCWidth))) 382 val f2_jump_range = Fill(PredictWidth, !f2_ftq_req.ftqOffset.valid) | Fill(PredictWidth, 1.U(1.W)) >> ~f2_ftq_req.ftqOffset.bits 383 val f2_ftr_range = Fill(PredictWidth, f2_ftq_req.ftqOffset.valid) | Fill(PredictWidth, 1.U(1.W)) >> ~getBasicBlockIdx(f2_ftq_req.nextStartAddr, f2_ftq_req.startAddr) 384 val f2_instr_range = f2_jump_range & f2_ftr_range 385 val f2_pf_vec = VecInit((0 until PredictWidth).map(i => (!isNextLine(f2_pc(i), f2_ftq_req.startAddr) && f2_except_pf(0) || isNextLine(f2_pc(i), f2_ftq_req.startAddr) && f2_doubleLine && f2_except_pf(1)))) 386 val f2_af_vec = VecInit((0 until PredictWidth).map(i => (!isNextLine(f2_pc(i), f2_ftq_req.startAddr) && f2_except_af(0) || isNextLine(f2_pc(i), f2_ftq_req.startAddr) && f2_doubleLine && f2_except_af(1)))) 387 val f2_gpf_vec = VecInit((0 until PredictWidth).map(i => (!isNextLine(f2_pc(i), f2_ftq_req.startAddr) && f2_except_gpf(0) || isNextLine(f2_pc(i), f2_ftq_req.startAddr) && f2_doubleLine && f2_except_gpf(1)))) 388 val f2_gpaddrs_vec = VecInit((0 until PredictWidth).map(i => Mux(!isNextLine(f2_pc(i), f2_ftq_req.startAddr), f2_gpaddrs(0), Mux(isNextLine(f2_pc(i), f2_ftq_req.startAddr) && f2_doubleLine, f2_gpaddrs(1), 0.U(GPAddrBits.W))))) val f2_paddrs = VecInit((0 until PortNumber).map(i => fromICache(i).bits.paddr)) 389 val f2_perf_info = io.icachePerfInfo 390 391 def cut(cacheline: UInt, cutPtr: Vec[UInt]) : Vec[UInt] ={ 392 require(HasCExtension) 393 // if(HasCExtension){ 394 val result = Wire(Vec(PredictWidth + 1, UInt(16.W))) 395 val dataVec = cacheline.asTypeOf(Vec(blockBytes/2, UInt(16.W))) //32 16-bit data vector 396 (0 until PredictWidth + 1).foreach( i => 397 result(i) := dataVec(cutPtr(i)) //the max ptr is 3*blockBytes/4-1 398 ) 399 result 400 // } else { 401 // val result = Wire(Vec(PredictWidth, UInt(32.W)) ) 402 // val dataVec = cacheline.asTypeOf(Vec(blockBytes * 2/ 4, UInt(32.W))) 403 // (0 until PredictWidth).foreach( i => 404 // result(i) := dataVec(cutPtr(i)) 405 // ) 406 // result 407 // } 408 } 409 410 val f2_cache_response_data = fromICache.map(_.bits.data) 411 val f2_data_2_cacheline = Cat(f2_cache_response_data(1), f2_cache_response_data(0)) 412 413 val f2_cut_data = cut(f2_data_2_cacheline, f2_cut_ptr) 414 415 /** predecode (include RVC expander) */ 416 // preDecoderRegIn.data := f2_reg_cut_data 417 // preDecoderRegInIn.frontendTrigger := io.frontendTrigger 418 // preDecoderRegInIn.csrTriggerEnable := io.csrTriggerEnable 419 // preDecoderRegIn.pc := f2_pc 420 421 val preDecoderIn = preDecoder.io.in 422 preDecoderIn.data := f2_cut_data 423 preDecoderIn.frontendTrigger := io.frontendTrigger 424 preDecoderIn.csrTriggerEnable := io.csrTriggerEnable 425 preDecoderIn.pc := f2_pc 426 val preDecoderOut = preDecoder.io.out 427 428 429 //val f2_expd_instr = preDecoderOut.expInstr 430 val f2_instr = preDecoderOut.instr 431 val f2_pd = preDecoderOut.pd 432 val f2_jump_offset = preDecoderOut.jumpOffset 433 val f2_hasHalfValid = preDecoderOut.hasHalfValid 434 val f2_crossPageFault = VecInit((0 until PredictWidth).map(i => isLastInLine(f2_pc(i)) && !f2_except_pf(0) && f2_doubleLine && f2_except_pf(1) && !f2_pd(i).isRVC )) 435 val f2_crossGuestPageFault = VecInit((0 until PredictWidth).map(i => isLastInLine(f2_pc(i)) && !f2_except_gpf(0) && f2_doubleLine && f2_except_gpf(1) && !f2_pd(i).isRVC )) 436 XSPerfAccumulate("fetch_bubble_icache_not_resp", f2_valid && !icacheRespAllValid ) 437 438 439 /** 440 ****************************************************************************** 441 * IFU Stage 3 442 * - handle MMIO instruciton 443 * -send request to Uncache fetch Unit 444 * -every packet include 1 MMIO instruction 445 * -MMIO instructions will stop fetch pipeline until commiting from RoB 446 * -flush to snpc (send ifu_redirect to Ftq) 447 * - Ibuffer enqueue 448 * - check predict result in Frontend (jalFault/retFault/notCFIFault/invalidTakenFault/targetFault) 449 * - handle last half RVI instruction 450 ****************************************************************************** 451 */ 452 453 val f3_valid = RegInit(false.B) 454 val f3_ftq_req = RegEnable(f2_ftq_req, f2_fire) 455 // val f3_situation = RegEnable(f2_situation, f2_fire) 456 val f3_doubleLine = RegEnable(f2_doubleLine, f2_fire) 457 val f3_fire = io.toIbuffer.fire 458 459 f3_ready := f3_fire || !f3_valid 460 461 val f3_cut_data = RegEnable(f2_cut_data, f2_fire) 462 463 val f3_except_pf = RegEnable(f2_except_pf, f2_fire) 464 val f3_except_af = RegEnable(f2_except_af, f2_fire) 465 val f3_except_gpf = RegEnable(f2_except_gpf, f2_fire) 466 val f3_mmio = RegEnable(f2_mmio , f2_fire) 467 468 //val f3_expd_instr = RegEnable(f2_expd_instr, f2_fire) 469 val f3_instr = RegEnable(f2_instr, f2_fire) 470 val f3_expd_instr = VecInit((0 until PredictWidth).map{ i => 471 val expander = Module(new RVCExpander) 472 expander.io.in := f3_instr(i) 473 expander.io.out.bits 474 }) 475 476 val f3_pd_wire = RegEnable(f2_pd, f2_fire) 477 val f3_pd = WireInit(f3_pd_wire) 478 val f3_jump_offset = RegEnable(f2_jump_offset, f2_fire) 479 val f3_af_vec = RegEnable(f2_af_vec, f2_fire) 480 val f3_pf_vec = RegEnable(f2_pf_vec , f2_fire) 481 val f3_gpf_vec = RegEnable(next = f2_gpf_vec, enable = f2_fire) 482 val f3_gpaddrs = RegEnable(next = f2_gpaddrs_vec, enable = f2_fire) 483 val f3_pc = RegEnable(f2_pc, f2_fire) 484 val f3_half_snpc = RegEnable(f2_half_snpc, f2_fire) 485 val f3_instr_range = RegEnable(f2_instr_range, f2_fire) 486 val f3_foldpc = RegEnable(f2_foldpc, f2_fire) 487 val f3_crossPageFault = RegEnable(f2_crossPageFault, f2_fire) 488 val f3_crossGuestPageFault = RegEnable(next = f2_crossGuestPageFault, enable = f2_fire) 489 val f3_hasHalfValid = RegEnable(f2_hasHalfValid, f2_fire) 490 val f3_except = VecInit((0 until 2).map{i => f3_except_pf(i) || f3_except_af(i) || f3_except_gpf(i)}) 491 val f3_has_except = f3_valid && (f3_except_af.reduce(_||_) || f3_except_pf.reduce(_||_) || f3_except_gpf.reduce(_||_)) 492 val f3_pAddrs = RegEnable(f2_paddrs, f2_fire) 493 val f3_resend_vaddr = RegEnable(f2_resend_vaddr, f2_fire) 494 495 // Expand 1 bit to prevent overflow when assert 496 val f3_ftq_req_startAddr = Cat(0.U(1.W), f3_ftq_req.startAddr) 497 val f3_ftq_req_nextStartAddr = Cat(0.U(1.W), f3_ftq_req.nextStartAddr) 498 // brType, isCall and isRet generation is delayed to f3 stage 499 val f3Predecoder = Module(new F3Predecoder) 500 501 f3Predecoder.io.in.instr := f3_instr 502 503 f3_pd.zipWithIndex.map{ case (pd,i) => 504 pd.brType := f3Predecoder.io.out.pd(i).brType 505 pd.isCall := f3Predecoder.io.out.pd(i).isCall 506 pd.isRet := f3Predecoder.io.out.pd(i).isRet 507 } 508 509 val f3PdDiff = f3_pd_wire.zip(f3_pd).map{ case (a,b) => a.asUInt =/= b.asUInt }.reduce(_||_) 510 XSError(f3_valid && f3PdDiff, "f3 pd diff") 511 512 when(f3_valid && !f3_ftq_req.ftqOffset.valid){ 513 assert(f3_ftq_req_startAddr + (2*PredictWidth).U >= f3_ftq_req_nextStartAddr, s"More tha ${2*PredictWidth} Bytes fetch is not allowed!") 514 } 515 516 /*** MMIO State Machine***/ 517 val f3_mmio_data = Reg(Vec(2, UInt(16.W))) 518 val mmio_is_RVC = RegInit(false.B) 519 val mmio_resend_addr =RegInit(0.U(PAddrBits.W)) 520 val mmio_resend_af = RegInit(false.B) 521 val mmio_resend_pf = RegInit(false.B) 522 val mmio_resend_gpf = RegInit(false.B) 523 524 //last instuction finish 525 val is_first_instr = RegInit(true.B) 526 io.mmioCommitRead.mmioFtqPtr := RegNext(f3_ftq_req.ftqIdx + 1.U) 527 528 val m_idle :: m_waitLastCmt:: m_sendReq :: m_waitResp :: m_sendTLB :: m_tlbResp :: m_sendPMP :: m_resendReq :: m_waitResendResp :: m_waitCommit :: m_commited :: Nil = Enum(11) 529 val mmio_state = RegInit(m_idle) 530 531 val f3_req_is_mmio = f3_mmio && f3_valid 532 val mmio_commit = VecInit(io.rob_commits.map{commit => commit.valid && commit.bits.ftqIdx === f3_ftq_req.ftqIdx && commit.bits.ftqOffset === 0.U}).asUInt.orR 533 val f3_mmio_req_commit = f3_req_is_mmio && mmio_state === m_commited 534 535 val f3_mmio_to_commit = f3_req_is_mmio && mmio_state === m_waitCommit 536 val f3_mmio_to_commit_next = RegNext(f3_mmio_to_commit) 537 val f3_mmio_can_go = f3_mmio_to_commit && !f3_mmio_to_commit_next 538 539 val fromFtqRedirectReg = RegNext(fromFtq.redirect,init = 0.U.asTypeOf(fromFtq.redirect)) 540 val mmioF3Flush = RegNext(f3_flush,init = false.B) 541 val f3_ftq_flush_self = fromFtqRedirectReg.valid && RedirectLevel.flushItself(fromFtqRedirectReg.bits.level) 542 val f3_ftq_flush_by_older = fromFtqRedirectReg.valid && isBefore(fromFtqRedirectReg.bits.ftqIdx, f3_ftq_req.ftqIdx) 543 544 val f3_need_not_flush = f3_req_is_mmio && fromFtqRedirectReg.valid && !f3_ftq_flush_self && !f3_ftq_flush_by_older 545 546 when(is_first_instr && mmio_commit){ 547 is_first_instr := false.B 548 } 549 550 when(f3_flush && !f3_req_is_mmio) {f3_valid := false.B} 551 .elsewhen(mmioF3Flush && f3_req_is_mmio && !f3_need_not_flush) {f3_valid := false.B} 552 .elsewhen(f2_fire && !f2_flush ) {f3_valid := true.B } 553 .elsewhen(io.toIbuffer.fire && !f3_req_is_mmio) {f3_valid := false.B} 554 .elsewhen{f3_req_is_mmio && f3_mmio_req_commit} {f3_valid := false.B} 555 556 val f3_mmio_use_seq_pc = RegInit(false.B) 557 558 val (redirect_ftqIdx, redirect_ftqOffset) = (fromFtqRedirectReg.bits.ftqIdx,fromFtqRedirectReg.bits.ftqOffset) 559 val redirect_mmio_req = fromFtqRedirectReg.valid && redirect_ftqIdx === f3_ftq_req.ftqIdx && redirect_ftqOffset === 0.U 560 561 when(RegNext(f2_fire && !f2_flush) && f3_req_is_mmio) { f3_mmio_use_seq_pc := true.B } 562 .elsewhen(redirect_mmio_req) { f3_mmio_use_seq_pc := false.B } 563 564 f3_ready := Mux(f3_req_is_mmio, io.toIbuffer.ready && f3_mmio_req_commit || !f3_valid , io.toIbuffer.ready || !f3_valid) 565 566 // mmio state machine 567 switch(mmio_state){ 568 is(m_idle){ 569 when(f3_req_is_mmio){ 570 mmio_state := m_waitLastCmt 571 } 572 } 573 574 is(m_waitLastCmt){ 575 when(is_first_instr){ 576 mmio_state := m_sendReq 577 }.otherwise{ 578 mmio_state := Mux(io.mmioCommitRead.mmioLastCommit, m_sendReq, m_waitLastCmt) 579 } 580 } 581 582 is(m_sendReq){ 583 mmio_state := Mux(toUncache.fire, m_waitResp, m_sendReq ) 584 } 585 586 is(m_waitResp){ 587 when(fromUncache.fire){ 588 val isRVC = fromUncache.bits.data(1,0) =/= 3.U 589 val needResend = !isRVC && f3_pAddrs(0)(2,1) === 3.U 590 mmio_state := Mux(needResend, m_sendTLB , m_waitCommit) 591 592 mmio_is_RVC := isRVC 593 f3_mmio_data(0) := fromUncache.bits.data(15,0) 594 f3_mmio_data(1) := fromUncache.bits.data(31,16) 595 } 596 } 597 598 is(m_sendTLB){ 599 when( io.iTLBInter.req.valid && !io.iTLBInter.resp.bits.miss ){ 600 mmio_state := m_tlbResp 601 } 602 } 603 604 is(m_tlbResp){ 605 val tlbExept = io.iTLBInter.resp.bits.excp(0).pf.instr || 606 io.iTLBInter.resp.bits.excp(0).af.instr || 607 io.iTLBInter.resp.bits.excp(0).gpf.instr 608 mmio_state := Mux(tlbExept,m_waitCommit,m_sendPMP) 609 mmio_resend_addr := io.iTLBInter.resp.bits.paddr(0) 610 mmio_resend_af := mmio_resend_af || io.iTLBInter.resp.bits.excp(0).af.instr 611 mmio_resend_pf := mmio_resend_pf || io.iTLBInter.resp.bits.excp(0).pf.instr 612 mmio_resend_gpf := mmio_resend_gpf || io.iTLBInter.resp.bits.excp(0).gpf.instr 613 } 614 615 is(m_sendPMP){ 616 val pmpExcpAF = io.pmp.resp.instr || !io.pmp.resp.mmio 617 mmio_state := Mux(pmpExcpAF, m_waitCommit , m_resendReq) 618 mmio_resend_af := pmpExcpAF 619 } 620 621 is(m_resendReq){ 622 mmio_state := Mux(toUncache.fire, m_waitResendResp, m_resendReq ) 623 } 624 625 is(m_waitResendResp){ 626 when(fromUncache.fire){ 627 mmio_state := m_waitCommit 628 f3_mmio_data(1) := fromUncache.bits.data(15,0) 629 } 630 } 631 632 is(m_waitCommit){ 633 when(mmio_commit){ 634 mmio_state := m_commited 635 } 636 } 637 638 //normal mmio instruction 639 is(m_commited){ 640 mmio_state := m_idle 641 mmio_is_RVC := false.B 642 mmio_resend_addr := 0.U 643 } 644 } 645 646 // Exception or flush by older branch prediction 647 // Condition is from RegNext(fromFtq.redirect), 1 cycle after backend rediect 648 when(f3_ftq_flush_self || f3_ftq_flush_by_older) { 649 mmio_state := m_idle 650 mmio_is_RVC := false.B 651 mmio_resend_addr := 0.U 652 mmio_resend_af := false.B 653 f3_mmio_data.map(_ := 0.U) 654 } 655 656 toUncache.valid := ((mmio_state === m_sendReq) || (mmio_state === m_resendReq)) && f3_req_is_mmio 657 toUncache.bits.addr := Mux((mmio_state === m_resendReq), mmio_resend_addr, f3_pAddrs(0)) 658 fromUncache.ready := true.B 659 660 io.iTLBInter.req.valid := (mmio_state === m_sendTLB) && f3_req_is_mmio 661 io.iTLBInter.req.bits.size := 3.U 662 io.iTLBInter.req.bits.vaddr := f3_resend_vaddr 663 io.iTLBInter.req.bits.debug.pc := f3_resend_vaddr 664 io.iTLBInter.req.bits.hyperinst:= DontCare 665 io.iTLBInter.req.bits.hlvx := DontCare 666 667 io.iTLBInter.req.bits.kill := false.B // IFU use itlb for mmio, doesn't need sync, set it to false 668 io.iTLBInter.req.bits.cmd := TlbCmd.exec 669 io.iTLBInter.req.bits.memidx := DontCare 670 io.iTLBInter.req.bits.debug.robIdx := DontCare 671 io.iTLBInter.req.bits.no_translate := false.B 672 io.iTLBInter.req.bits.debug.isFirstIssue := DontCare 673 674 io.pmp.req.valid := (mmio_state === m_sendPMP) && f3_req_is_mmio 675 io.pmp.req.bits.addr := mmio_resend_addr 676 io.pmp.req.bits.size := 3.U 677 io.pmp.req.bits.cmd := TlbCmd.exec 678 679 val f3_lastHalf = RegInit(0.U.asTypeOf(new LastHalfInfo)) 680 681 val f3_predecode_range = VecInit(preDecoderOut.pd.map(inst => inst.valid)).asUInt 682 val f3_mmio_range = VecInit((0 until PredictWidth).map(i => if(i ==0) true.B else false.B)) 683 val f3_instr_valid = Wire(Vec(PredictWidth, Bool())) 684 685 /*** prediction result check ***/ 686 checkerIn.ftqOffset := f3_ftq_req.ftqOffset 687 checkerIn.jumpOffset := f3_jump_offset 688 checkerIn.target := f3_ftq_req.nextStartAddr 689 checkerIn.instrRange := f3_instr_range.asTypeOf(Vec(PredictWidth, Bool())) 690 checkerIn.instrValid := f3_instr_valid.asTypeOf(Vec(PredictWidth, Bool())) 691 checkerIn.pds := f3_pd 692 checkerIn.pc := f3_pc 693 694 /*** handle half RVI in the last 2 Bytes ***/ 695 696 def hasLastHalf(idx: UInt) = { 697 //!f3_pd(idx).isRVC && checkerOutStage1.fixedRange(idx) && f3_instr_valid(idx) && !checkerOutStage1.fixedTaken(idx) && !checkerOutStage2.fixedMissPred(idx) && ! f3_req_is_mmio 698 !f3_pd(idx).isRVC && checkerOutStage1.fixedRange(idx) && f3_instr_valid(idx) && !checkerOutStage1.fixedTaken(idx) && ! f3_req_is_mmio 699 } 700 701 val f3_last_validIdx = ParallelPosteriorityEncoder(checkerOutStage1.fixedRange) 702 703 val f3_hasLastHalf = hasLastHalf((PredictWidth - 1).U) 704 val f3_false_lastHalf = hasLastHalf(f3_last_validIdx) 705 val f3_false_snpc = f3_half_snpc(f3_last_validIdx) 706 707 val f3_lastHalf_mask = VecInit((0 until PredictWidth).map( i => if(i ==0) false.B else true.B )).asUInt 708 val f3_lastHalf_disable = RegInit(false.B) 709 710 when(f3_flush || (f3_fire && f3_lastHalf_disable)){ 711 f3_lastHalf_disable := false.B 712 } 713 714 when (f3_flush) { 715 f3_lastHalf.valid := false.B 716 }.elsewhen (f3_fire) { 717 f3_lastHalf.valid := f3_hasLastHalf && !f3_lastHalf_disable 718 f3_lastHalf.middlePC := f3_ftq_req.nextStartAddr 719 } 720 721 f3_instr_valid := Mux(f3_lastHalf.valid,f3_hasHalfValid ,VecInit(f3_pd.map(inst => inst.valid))) 722 723 /*** frontend Trigger ***/ 724 frontendTrigger.io.pds := f3_pd 725 frontendTrigger.io.pc := f3_pc 726 frontendTrigger.io.data := f3_cut_data 727 728 frontendTrigger.io.frontendTrigger := io.frontendTrigger 729 frontendTrigger.io.csrTriggerEnable := io.csrTriggerEnable 730 731 val f3_triggered = frontendTrigger.io.triggered 732 733 /*** send to Ibuffer ***/ 734 735 io.toIbuffer.valid := f3_valid && (!f3_req_is_mmio || f3_mmio_can_go) && !f3_flush 736 io.toIbuffer.bits.instrs := f3_expd_instr 737 io.toIbuffer.bits.valid := f3_instr_valid.asUInt 738 io.toIbuffer.bits.enqEnable := checkerOutStage1.fixedRange.asUInt & f3_instr_valid.asUInt 739 io.toIbuffer.bits.pd := f3_pd 740 io.toIbuffer.bits.ftqPtr := f3_ftq_req.ftqIdx 741 io.toIbuffer.bits.pc := f3_pc 742 io.toIbuffer.bits.gpaddr := f3_gpaddrs 743 io.toIbuffer.bits.ftqOffset.zipWithIndex.map{case(a, i) => a.bits := i.U; a.valid := checkerOutStage1.fixedTaken(i) && !f3_req_is_mmio} 744 io.toIbuffer.bits.foldpc := f3_foldpc 745 io.toIbuffer.bits.ipf := VecInit(f3_pf_vec.zip(f3_crossPageFault).map{case (pf, crossPF) => pf || crossPF}) 746 io.toIbuffer.bits.igpf := VecInit(f3_gpf_vec.zip(f3_crossGuestPageFault).map{case (gpf, crossGPF) => gpf || crossGPF}) 747 io.toIbuffer.bits.acf := f3_af_vec 748 io.toIbuffer.bits.crossPageIPFFix := (0 until PredictWidth).map(i => f3_crossPageFault(i) || f3_crossGuestPageFault(i)) 749 io.toIbuffer.bits.triggered := f3_triggered 750 751 when(f3_lastHalf.valid){ 752 io.toIbuffer.bits.enqEnable := checkerOutStage1.fixedRange.asUInt & f3_instr_valid.asUInt & f3_lastHalf_mask 753 io.toIbuffer.bits.valid := f3_lastHalf_mask & f3_instr_valid.asUInt 754 } 755 756 757 758 //Write back to Ftq 759 val f3_cache_fetch = f3_valid && !(f2_fire && !f2_flush) 760 val finishFetchMaskReg = RegNext(f3_cache_fetch) 761 762 val mmioFlushWb = Wire(Valid(new PredecodeWritebackBundle)) 763 val f3_mmio_missOffset = Wire(ValidUndirectioned(UInt(log2Ceil(PredictWidth).W))) 764 f3_mmio_missOffset.valid := f3_req_is_mmio 765 f3_mmio_missOffset.bits := 0.U 766 767 // Send mmioFlushWb back to FTQ 1 cycle after uncache fetch return 768 // When backend redirect, mmio_state reset after 1 cycle. 769 // In this case, mask .valid to avoid overriding backend redirect 770 mmioFlushWb.valid := (f3_req_is_mmio && mmio_state === m_waitCommit && RegNext(fromUncache.fire) && 771 f3_mmio_use_seq_pc && !f3_ftq_flush_self && !f3_ftq_flush_by_older) 772 mmioFlushWb.bits.pc := f3_pc 773 mmioFlushWb.bits.pd := f3_pd 774 mmioFlushWb.bits.pd.zipWithIndex.map{case(instr,i) => instr.valid := f3_mmio_range(i)} 775 mmioFlushWb.bits.ftqIdx := f3_ftq_req.ftqIdx 776 mmioFlushWb.bits.ftqOffset := f3_ftq_req.ftqOffset.bits 777 mmioFlushWb.bits.misOffset := f3_mmio_missOffset 778 mmioFlushWb.bits.cfiOffset := DontCare 779 mmioFlushWb.bits.target := Mux(mmio_is_RVC, f3_ftq_req.startAddr + 2.U , f3_ftq_req.startAddr + 4.U) 780 mmioFlushWb.bits.jalTarget := DontCare 781 mmioFlushWb.bits.instrRange := f3_mmio_range 782 783 /** external predecode for MMIO instruction */ 784 when(f3_req_is_mmio){ 785 val inst = Cat(f3_mmio_data(1), f3_mmio_data(0)) 786 val currentIsRVC = isRVC(inst) 787 788 val brType::isCall::isRet::Nil = brInfo(inst) 789 val jalOffset = jal_offset(inst, currentIsRVC) 790 val brOffset = br_offset(inst, currentIsRVC) 791 792 io.toIbuffer.bits.instrs(0) := new RVCDecoder(inst, XLEN, useAddiForMv = true).decode.bits 793 794 795 io.toIbuffer.bits.pd(0).valid := true.B 796 io.toIbuffer.bits.pd(0).isRVC := currentIsRVC 797 io.toIbuffer.bits.pd(0).brType := brType 798 io.toIbuffer.bits.pd(0).isCall := isCall 799 io.toIbuffer.bits.pd(0).isRet := isRet 800 801 io.toIbuffer.bits.acf(0) := mmio_resend_af 802 io.toIbuffer.bits.ipf(0) := mmio_resend_pf 803 io.toIbuffer.bits.crossPageIPFFix(0) := mmio_resend_pf 804 805 io.toIbuffer.bits.enqEnable := f3_mmio_range.asUInt 806 807 mmioFlushWb.bits.pd(0).valid := true.B 808 mmioFlushWb.bits.pd(0).isRVC := currentIsRVC 809 mmioFlushWb.bits.pd(0).brType := brType 810 mmioFlushWb.bits.pd(0).isCall := isCall 811 mmioFlushWb.bits.pd(0).isRet := isRet 812 } 813 814 mmio_redirect := (f3_req_is_mmio && mmio_state === m_waitCommit && RegNext(fromUncache.fire) && f3_mmio_use_seq_pc) 815 816 XSPerfAccumulate("fetch_bubble_ibuffer_not_ready", io.toIbuffer.valid && !io.toIbuffer.ready ) 817 818 819 /** 820 ****************************************************************************** 821 * IFU Write Back Stage 822 * - write back predecode information to Ftq to update 823 * - redirect if found fault prediction 824 * - redirect if has false hit last half (last PC is not start + 32 Bytes, but in the midle of an notCFI RVI instruction) 825 ****************************************************************************** 826 */ 827 828 val wb_valid = RegNext(RegNext(f2_fire && !f2_flush) && !f3_req_is_mmio && !f3_flush) 829 val wb_ftq_req = RegNext(f3_ftq_req) 830 831 val wb_check_result_stage1 = RegNext(checkerOutStage1) 832 val wb_check_result_stage2 = checkerOutStage2 833 val wb_instr_range = RegNext(io.toIbuffer.bits.enqEnable) 834 val wb_pc = RegNext(f3_pc) 835 val wb_pd = RegNext(f3_pd) 836 val wb_instr_valid = RegNext(f3_instr_valid) 837 838 /* false hit lastHalf */ 839 val wb_lastIdx = RegNext(f3_last_validIdx) 840 val wb_false_lastHalf = RegNext(f3_false_lastHalf) && wb_lastIdx =/= (PredictWidth - 1).U 841 val wb_false_target = RegNext(f3_false_snpc) 842 843 val wb_half_flush = wb_false_lastHalf 844 val wb_half_target = wb_false_target 845 846 /* false oversize */ 847 val lastIsRVC = wb_instr_range.asTypeOf(Vec(PredictWidth,Bool())).last && wb_pd.last.isRVC 848 val lastIsRVI = wb_instr_range.asTypeOf(Vec(PredictWidth,Bool()))(PredictWidth - 2) && !wb_pd(PredictWidth - 2).isRVC 849 val lastTaken = wb_check_result_stage1.fixedTaken.last 850 851 f3_wb_not_flush := wb_ftq_req.ftqIdx === f3_ftq_req.ftqIdx && f3_valid && wb_valid 852 853 /** if a req with a last half but miss predicted enters in wb stage, and this cycle f3 stalls, 854 * we set a flag to notify f3 that the last half flag need not to be set. 855 */ 856 //f3_fire is after wb_valid 857 when(wb_valid && RegNext(f3_hasLastHalf,init = false.B) 858 && wb_check_result_stage2.fixedMissPred(PredictWidth - 1) && !f3_fire && !RegNext(f3_fire,init = false.B) && !f3_flush 859 ){ 860 f3_lastHalf_disable := true.B 861 } 862 863 //wb_valid and f3_fire are in same cycle 864 when(wb_valid && RegNext(f3_hasLastHalf,init = false.B) 865 && wb_check_result_stage2.fixedMissPred(PredictWidth - 1) && f3_fire 866 ){ 867 f3_lastHalf.valid := false.B 868 } 869 870 val checkFlushWb = Wire(Valid(new PredecodeWritebackBundle)) 871 val checkFlushWbjalTargetIdx = ParallelPriorityEncoder(VecInit(wb_pd.zip(wb_instr_valid).map{case (pd, v) => v && pd.isJal })) 872 val checkFlushWbTargetIdx = ParallelPriorityEncoder(wb_check_result_stage2.fixedMissPred) 873 checkFlushWb.valid := wb_valid 874 checkFlushWb.bits.pc := wb_pc 875 checkFlushWb.bits.pd := wb_pd 876 checkFlushWb.bits.pd.zipWithIndex.map{case(instr,i) => instr.valid := wb_instr_valid(i)} 877 checkFlushWb.bits.ftqIdx := wb_ftq_req.ftqIdx 878 checkFlushWb.bits.ftqOffset := wb_ftq_req.ftqOffset.bits 879 checkFlushWb.bits.misOffset.valid := ParallelOR(wb_check_result_stage2.fixedMissPred) || wb_half_flush 880 checkFlushWb.bits.misOffset.bits := Mux(wb_half_flush, wb_lastIdx, ParallelPriorityEncoder(wb_check_result_stage2.fixedMissPred)) 881 checkFlushWb.bits.cfiOffset.valid := ParallelOR(wb_check_result_stage1.fixedTaken) 882 checkFlushWb.bits.cfiOffset.bits := ParallelPriorityEncoder(wb_check_result_stage1.fixedTaken) 883 checkFlushWb.bits.target := Mux(wb_half_flush, wb_half_target, wb_check_result_stage2.fixedTarget(checkFlushWbTargetIdx)) 884 checkFlushWb.bits.jalTarget := wb_check_result_stage2.jalTarget(checkFlushWbjalTargetIdx) 885 checkFlushWb.bits.instrRange := wb_instr_range.asTypeOf(Vec(PredictWidth, Bool())) 886 887 toFtq.pdWb := Mux(wb_valid, checkFlushWb, mmioFlushWb) 888 889 wb_redirect := checkFlushWb.bits.misOffset.valid && wb_valid 890 891 /*write back flush type*/ 892 val checkFaultType = wb_check_result_stage2.faultType 893 val checkJalFault = wb_valid && checkFaultType.map(_.isjalFault).reduce(_||_) 894 val checkRetFault = wb_valid && checkFaultType.map(_.isRetFault).reduce(_||_) 895 val checkTargetFault = wb_valid && checkFaultType.map(_.istargetFault).reduce(_||_) 896 val checkNotCFIFault = wb_valid && checkFaultType.map(_.notCFIFault).reduce(_||_) 897 val checkInvalidTaken = wb_valid && checkFaultType.map(_.invalidTakenFault).reduce(_||_) 898 899 900 XSPerfAccumulate("predecode_flush_jalFault", checkJalFault ) 901 XSPerfAccumulate("predecode_flush_retFault", checkRetFault ) 902 XSPerfAccumulate("predecode_flush_targetFault", checkTargetFault ) 903 XSPerfAccumulate("predecode_flush_notCFIFault", checkNotCFIFault ) 904 XSPerfAccumulate("predecode_flush_incalidTakenFault", checkInvalidTaken ) 905 906 when(checkRetFault){ 907 XSDebug("startAddr:%x nextstartAddr:%x taken:%d takenIdx:%d\n", 908 wb_ftq_req.startAddr, wb_ftq_req.nextStartAddr, wb_ftq_req.ftqOffset.valid, wb_ftq_req.ftqOffset.bits) 909 } 910 911 912 /** performance counter */ 913 val f3_perf_info = RegEnable(f2_perf_info, f2_fire) 914 val f3_req_0 = io.toIbuffer.fire 915 val f3_req_1 = io.toIbuffer.fire && f3_doubleLine 916 val f3_hit_0 = io.toIbuffer.fire && f3_perf_info.bank_hit(0) 917 val f3_hit_1 = io.toIbuffer.fire && f3_doubleLine & f3_perf_info.bank_hit(1) 918 val f3_hit = f3_perf_info.hit 919 val perfEvents = Seq( 920 ("frontendFlush ", wb_redirect ), 921 ("ifu_req ", io.toIbuffer.fire ), 922 ("ifu_miss ", io.toIbuffer.fire && !f3_perf_info.hit ), 923 ("ifu_req_cacheline_0 ", f3_req_0 ), 924 ("ifu_req_cacheline_1 ", f3_req_1 ), 925 ("ifu_req_cacheline_0_hit ", f3_hit_1 ), 926 ("ifu_req_cacheline_1_hit ", f3_hit_1 ), 927 ("only_0_hit ", f3_perf_info.only_0_hit && io.toIbuffer.fire ), 928 ("only_0_miss ", f3_perf_info.only_0_miss && io.toIbuffer.fire ), 929 ("hit_0_hit_1 ", f3_perf_info.hit_0_hit_1 && io.toIbuffer.fire ), 930 ("hit_0_miss_1 ", f3_perf_info.hit_0_miss_1 && io.toIbuffer.fire ), 931 ("miss_0_hit_1 ", f3_perf_info.miss_0_hit_1 && io.toIbuffer.fire ), 932 ("miss_0_miss_1 ", f3_perf_info.miss_0_miss_1 && io.toIbuffer.fire ), 933 ) 934 generatePerfEvent() 935 936 XSPerfAccumulate("ifu_req", io.toIbuffer.fire ) 937 XSPerfAccumulate("ifu_miss", io.toIbuffer.fire && !f3_hit ) 938 XSPerfAccumulate("ifu_req_cacheline_0", f3_req_0 ) 939 XSPerfAccumulate("ifu_req_cacheline_1", f3_req_1 ) 940 XSPerfAccumulate("ifu_req_cacheline_0_hit", f3_hit_0 ) 941 XSPerfAccumulate("ifu_req_cacheline_1_hit", f3_hit_1 ) 942 XSPerfAccumulate("frontendFlush", wb_redirect ) 943 XSPerfAccumulate("only_0_hit", f3_perf_info.only_0_hit && io.toIbuffer.fire ) 944 XSPerfAccumulate("only_0_miss", f3_perf_info.only_0_miss && io.toIbuffer.fire ) 945 XSPerfAccumulate("hit_0_hit_1", f3_perf_info.hit_0_hit_1 && io.toIbuffer.fire ) 946 XSPerfAccumulate("hit_0_miss_1", f3_perf_info.hit_0_miss_1 && io.toIbuffer.fire ) 947 XSPerfAccumulate("miss_0_hit_1", f3_perf_info.miss_0_hit_1 && io.toIbuffer.fire ) 948 XSPerfAccumulate("miss_0_miss_1", f3_perf_info.miss_0_miss_1 && io.toIbuffer.fire ) 949 XSPerfAccumulate("hit_0_except_1", f3_perf_info.hit_0_except_1 && io.toIbuffer.fire ) 950 XSPerfAccumulate("miss_0_except_1", f3_perf_info.miss_0_except_1 && io.toIbuffer.fire ) 951 XSPerfAccumulate("except_0", f3_perf_info.except_0 && io.toIbuffer.fire ) 952 XSPerfHistogram("ifu2ibuffer_validCnt", PopCount(io.toIbuffer.bits.valid & io.toIbuffer.bits.enqEnable), io.toIbuffer.fire, 0, PredictWidth + 1, 1) 953 954 val isWriteFetchToIBufferTable = WireInit(Constantin.createRecord("isWriteFetchToIBufferTable" + p(XSCoreParamsKey).HartId.toString)) 955 val isWriteIfuWbToFtqTable = WireInit(Constantin.createRecord("isWriteIfuWbToFtqTable" + p(XSCoreParamsKey).HartId.toString)) 956 val fetchToIBufferTable = ChiselDB.createTable("FetchToIBuffer" + p(XSCoreParamsKey).HartId.toString, new FetchToIBufferDB) 957 val ifuWbToFtqTable = ChiselDB.createTable("IfuWbToFtq" + p(XSCoreParamsKey).HartId.toString, new IfuWbToFtqDB) 958 959 val fetchIBufferDumpData = Wire(new FetchToIBufferDB) 960 fetchIBufferDumpData.start_addr := f3_ftq_req.startAddr 961 fetchIBufferDumpData.instr_count := PopCount(io.toIbuffer.bits.enqEnable) 962 fetchIBufferDumpData.exception := (f3_perf_info.except_0 && io.toIbuffer.fire) || (f3_perf_info.hit_0_except_1 && io.toIbuffer.fire) || (f3_perf_info.miss_0_except_1 && io.toIbuffer.fire) 963 fetchIBufferDumpData.is_cache_hit := f3_hit 964 965 val ifuWbToFtqDumpData = Wire(new IfuWbToFtqDB) 966 ifuWbToFtqDumpData.start_addr := wb_ftq_req.startAddr 967 ifuWbToFtqDumpData.is_miss_pred := checkFlushWb.bits.misOffset.valid 968 ifuWbToFtqDumpData.miss_pred_offset := checkFlushWb.bits.misOffset.bits 969 ifuWbToFtqDumpData.checkJalFault := checkJalFault 970 ifuWbToFtqDumpData.checkRetFault := checkRetFault 971 ifuWbToFtqDumpData.checkTargetFault := checkTargetFault 972 ifuWbToFtqDumpData.checkNotCFIFault := checkNotCFIFault 973 ifuWbToFtqDumpData.checkInvalidTaken := checkInvalidTaken 974 975 fetchToIBufferTable.log( 976 data = fetchIBufferDumpData, 977 en = isWriteFetchToIBufferTable.orR && io.toIbuffer.fire, 978 site = "IFU" + p(XSCoreParamsKey).HartId.toString, 979 clock = clock, 980 reset = reset 981 ) 982 ifuWbToFtqTable.log( 983 data = ifuWbToFtqDumpData, 984 en = isWriteIfuWbToFtqTable.orR && checkFlushWb.valid, 985 site = "IFU" + p(XSCoreParamsKey).HartId.toString, 986 clock = clock, 987 reset = reset 988 ) 989 990} 991