1/*************************************************************************************** 2* Copyright (c) 2024 Beijing Institute of Open Source Chip (BOSC) 3* Copyright (c) 2020-2024 Institute of Computing Technology, Chinese Academy of Sciences 4* Copyright (c) 2020-2021 Peng Cheng Laboratory 5* 6* XiangShan is licensed under Mulan PSL v2. 7* You can use this software according to the terms and conditions of the Mulan PSL v2. 8* You may obtain a copy of Mulan PSL v2 at: 9* http://license.coscl.org.cn/MulanPSL2 10* 11* THIS SOFTWARE IS PROVIDED ON AN "AS IS" BASIS, WITHOUT WARRANTIES OF ANY KIND, 12* EITHER EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO NON-INFRINGEMENT, 13* MERCHANTABILITY OR FIT FOR A PARTICULAR PURPOSE. 14* 15* See the Mulan PSL v2 for more details. 16***************************************************************************************/ 17 18package xiangshan.cache.mmu 19 20import org.chipsalliance.cde.config.Parameters 21import chisel3._ 22import chisel3.util._ 23import xiangshan._ 24import utils._ 25import utility._ 26import xiangshan.backend.rob.RobPtr 27import xiangshan.backend.fu.util.HasCSRConst 28import freechips.rocketchip.diplomacy.{LazyModule, LazyModuleImp} 29import freechips.rocketchip.tilelink._ 30import xiangshan.backend.fu.{PMPReqBundle, PMPConfig} 31import xiangshan.backend.fu.PMPBundle 32 33 34abstract class TlbBundle(implicit p: Parameters) extends XSBundle with HasTlbConst 35abstract class TlbModule(implicit p: Parameters) extends XSModule with HasTlbConst 36 37 38class PtePermBundle(implicit p: Parameters) extends TlbBundle { 39 val d = Bool() 40 val a = Bool() 41 val g = Bool() 42 val u = Bool() 43 val x = Bool() 44 val w = Bool() 45 val r = Bool() 46 47 override def toPrintable: Printable = { 48 p"d:${d} a:${a} g:${g} u:${u} x:${x} w:${w} r:${r}"// + 49 //(if(hasV) (p"v:${v}") else p"") 50 } 51} 52 53class TlbPMBundle(implicit p: Parameters) extends TlbBundle { 54 val r = Bool() 55 val w = Bool() 56 val x = Bool() 57 val c = Bool() 58 val atomic = Bool() 59 60 def assign_ap(pm: PMPConfig) = { 61 r := pm.r 62 w := pm.w 63 x := pm.x 64 c := pm.c 65 atomic := pm.atomic 66 } 67} 68 69class TlbPermBundle(implicit p: Parameters) extends TlbBundle { 70 val pf = Bool() // NOTE: if this is true, just raise pf 71 val af = Bool() // NOTE: if this is true, just raise af 72 // pagetable perm (software defined) 73 val d = Bool() 74 val a = Bool() 75 val g = Bool() 76 val u = Bool() 77 val x = Bool() 78 val w = Bool() 79 val r = Bool() 80 81 def apply(item: PtwSectorResp) = { 82 val ptePerm = item.entry.perm.get.asTypeOf(new PtePermBundle().cloneType) 83 this.pf := item.pf 84 this.af := item.af 85 this.d := ptePerm.d 86 this.a := ptePerm.a 87 this.g := ptePerm.g 88 this.u := ptePerm.u 89 this.x := ptePerm.x 90 this.w := ptePerm.w 91 this.r := ptePerm.r 92 93 this 94 } 95 96 def applyS2(item: HptwResp) = { 97 val ptePerm = item.entry.perm.get.asTypeOf(new PtePermBundle().cloneType) 98 this.pf := item.gpf 99 this.af := item.gaf 100 this.d := ptePerm.d 101 this.a := ptePerm.a 102 this.g := ptePerm.g 103 this.u := ptePerm.u 104 this.x := ptePerm.x 105 this.w := ptePerm.w 106 this.r := ptePerm.r 107 108 this 109 } 110 111 override def toPrintable: Printable = { 112 p"pf:${pf} af:${af} d:${d} a:${a} g:${g} u:${u} x:${x} w:${w} r:${r} " 113 } 114} 115 116class TlbSectorPermBundle(implicit p: Parameters) extends TlbBundle { 117 val pf = Bool() // NOTE: if this is true, just raise pf 118 val af = Bool() // NOTE: if this is true, just raise af 119 // pagetable perm (software defined) 120 val d = Bool() 121 val a = Bool() 122 val g = Bool() 123 val u = Bool() 124 val x = Bool() 125 val w = Bool() 126 val r = Bool() 127 128 def apply(item: PtwSectorResp) = { 129 val ptePerm = item.entry.perm.get.asTypeOf(new PtePermBundle().cloneType) 130 this.pf := item.pf 131 this.af := item.af 132 this.d := ptePerm.d 133 this.a := ptePerm.a 134 this.g := ptePerm.g 135 this.u := ptePerm.u 136 this.x := ptePerm.x 137 this.w := ptePerm.w 138 this.r := ptePerm.r 139 140 this 141 } 142 override def toPrintable: Printable = { 143 p"pf:${pf} af:${af} d:${d} a:${a} g:${g} u:${u} x:${x} w:${w} r:${r} " 144 } 145} 146 147// multi-read && single-write 148// input is data, output is hot-code(not one-hot) 149class CAMTemplate[T <: Data](val gen: T, val set: Int, val readWidth: Int)(implicit p: Parameters) extends TlbModule { 150 val io = IO(new Bundle { 151 val r = new Bundle { 152 val req = Input(Vec(readWidth, gen)) 153 val resp = Output(Vec(readWidth, Vec(set, Bool()))) 154 } 155 val w = Input(new Bundle { 156 val valid = Bool() 157 val bits = new Bundle { 158 val index = UInt(log2Up(set).W) 159 val data = gen 160 } 161 }) 162 }) 163 164 val wordType = UInt(gen.getWidth.W) 165 val array = Reg(Vec(set, wordType)) 166 167 io.r.resp.zipWithIndex.map{ case (a,i) => 168 a := array.map(io.r.req(i).asUInt === _) 169 } 170 171 when (io.w.valid) { 172 array(io.w.bits.index) := io.w.bits.data.asUInt 173 } 174} 175 176class TlbSectorEntry(pageNormal: Boolean, pageSuper: Boolean)(implicit p: Parameters) extends TlbBundle { 177 require(pageNormal && pageSuper) 178 179 val tag = UInt(sectorvpnLen.W) 180 val asid = UInt(asidLen.W) 181 /* level, 11: 512GB size page(only for sv48) 182 10: 1GB size page 183 01: 2MB size page 184 00: 4KB size page 185 future sv57 extension should change level width 186 */ 187 val level = Some(UInt(2.W)) 188 val ppn = UInt(sectorppnLen.W) 189 val pbmt = UInt(ptePbmtLen.W) 190 val g_pbmt = UInt(ptePbmtLen.W) 191 val perm = new TlbSectorPermBundle 192 val valididx = Vec(tlbcontiguous, Bool()) 193 val pteidx = Vec(tlbcontiguous, Bool()) 194 val ppn_low = Vec(tlbcontiguous, UInt(sectortlbwidth.W)) 195 196 val g_perm = new TlbPermBundle 197 val vmid = UInt(vmidLen.W) 198 val s2xlate = UInt(2.W) 199 200 201 /** level usage: 202 * !PageSuper: page is only normal, level is None, match all the tag 203 * !PageNormal: page is only super, level is a Bool(), match high 9*2 parts 204 * bits0 0: need mid 9bits 205 * 1: no need mid 9bits 206 * PageSuper && PageNormal: page hold all the three type, 207 * bits0 0: need low 9bits 208 * bits1 0: need mid 9bits 209 */ 210 211 def hit(vpn: UInt, asid: UInt, nSets: Int = 1, ignoreAsid: Boolean = false, vmid: UInt, hasS2xlate: Bool, onlyS2: Bool = false.B, onlyS1: Bool = false.B): Bool = { 212 val asid_hit = Mux(hasS2xlate && onlyS2, true.B, if (ignoreAsid) true.B else (this.asid === asid)) 213 val addr_low_hit = valididx(vpn(2, 0)) 214 val vmid_hit = Mux(hasS2xlate, this.vmid === vmid, true.B) 215 val isPageSuper = !(level.getOrElse(0.U) === 0.U) 216 val pteidx_hit = Mux(hasS2xlate && !isPageSuper && !onlyS1, pteidx(vpn(2, 0)), true.B) 217 218 val tmp_level = level.get 219 val tag_matchs = Wire(Vec(Level + 1, Bool())) 220 tag_matchs(0) := tag(vpnnLen - sectortlbwidth - 1, 0) === vpn(vpnnLen - 1, sectortlbwidth) 221 for (i <- 1 until Level + 1) { 222 tag_matchs(i) := tag(vpnnLen * (i + 1) - sectortlbwidth - 1, vpnnLen * i - sectortlbwidth) === vpn(vpnnLen * (i + 1) - 1, vpnnLen * i) 223 } 224 225 val level_matchs = Wire(Vec(Level + 1, Bool())) 226 for (i <- 0 until Level) { 227 level_matchs(i) := tag_matchs(i) || tmp_level >= (i + 1).U 228 } 229 level_matchs(Level) := tag_matchs(Level) 230 231 asid_hit && level_matchs.asUInt.andR && addr_low_hit && vmid_hit && pteidx_hit 232 } 233 234 def wbhit(data: PtwRespS2, asid: UInt, nSets: Int = 1, ignoreAsid: Boolean = false, s2xlate: UInt): Bool = { 235 val s1vpn = data.s1.entry.tag 236 val s2vpn = data.s2.entry.tag(vpnLen - 1, sectortlbwidth) 237 val wb_vpn = Mux(s2xlate === onlyStage2, s2vpn, s1vpn) 238 val vpn = Cat(wb_vpn, 0.U(sectortlbwidth.W)) 239 val asid_hit = if (ignoreAsid) true.B else (this.asid === asid) 240 val vpn_hit = Wire(Bool()) 241 val index_hit = Wire(Vec(tlbcontiguous, Bool())) 242 val wb_valididx = Wire(Vec(tlbcontiguous, Bool())) 243 val hasS2xlate = this.s2xlate =/= noS2xlate 244 val onlyS1 = this.s2xlate === onlyStage1 245 val onlyS2 = this.s2xlate === onlyStage2 246 val pteidx_hit = MuxCase(true.B, Seq( 247 onlyS2 -> (VecInit(UIntToOH(data.s2.entry.tag(sectortlbwidth - 1, 0))).asUInt === pteidx.asUInt), 248 hasS2xlate -> (pteidx.asUInt === data.s1.pteidx.asUInt) 249 )) 250 wb_valididx := Mux(s2xlate === onlyStage2, VecInit(UIntToOH(data.s2.entry.tag(sectortlbwidth - 1, 0)).asBools), data.s1.valididx) 251 val s2xlate_hit = s2xlate === this.s2xlate 252 253 val tmp_level = level.get 254 val tag_matchs = Wire(Vec(Level + 1, Bool())) 255 tag_matchs(0) := tag(vpnnLen - sectortlbwidth - 1, 0) === vpn(vpnnLen - 1, sectortlbwidth) 256 for (i <- 1 until Level + 1) { 257 tag_matchs(i) := tag(vpnnLen * (i + 1) - sectortlbwidth - 1, vpnnLen * i - sectortlbwidth) === vpn(vpnnLen * (i + 1) - 1, vpnnLen * i) 258 } 259 260 val level_matchs = Wire(Vec(Level + 1, Bool())) 261 for (i <- 0 until Level) { 262 level_matchs(i) := tag_matchs(i) || tmp_level >= (i + 1).U 263 } 264 level_matchs(Level) := tag_matchs(Level) 265 vpn_hit := asid_hit && level_matchs.asUInt.andR 266 267 for (i <- 0 until tlbcontiguous) { 268 index_hit(i) := wb_valididx(i) && valididx(i) 269 } 270 271 // For example, tlb req to page cache with vpn 0x10 272 // At this time, 0x13 has not been paged, so page cache only resp 0x10 273 // When 0x13 refill to page cache, previous item will be flushed 274 // Now 0x10 and 0x13 are both valid in page cache 275 // However, when 0x13 refill to tlb, will trigger multi hit 276 // So will only trigger multi-hit when PopCount(data.valididx) = 1 277 vpn_hit && index_hit.reduce(_ || _) && PopCount(wb_valididx) === 1.U && s2xlate_hit && pteidx_hit 278 } 279 280 def apply(item: PtwRespS2): TlbSectorEntry = { 281 this.asid := item.s1.entry.asid 282 val inner_level = MuxLookup(item.s2xlate, 2.U)(Seq( 283 onlyStage1 -> item.s1.entry.level.getOrElse(0.U), 284 onlyStage2 -> item.s2.entry.level.getOrElse(0.U), 285 allStage -> (item.s1.entry.level.getOrElse(0.U) min item.s2.entry.level.getOrElse(0.U)), 286 noS2xlate -> item.s1.entry.level.getOrElse(0.U) 287 )) 288 this.level.map(_ := inner_level) 289 this.perm.apply(item.s1) 290 this.pbmt := item.s1.entry.pbmt 291 292 val s1tag = item.s1.entry.tag 293 val s2tag = item.s2.entry.tag(gvpnLen - 1, sectortlbwidth) 294 // if stage1 page is larger than stage2 page, need to merge s1tag and s2tag. 295 val s1tagFix = MuxCase(s1tag, Seq( 296 (item.s1.entry.level.getOrElse(0.U) === 3.U && item.s2.entry.level.getOrElse(0.U) === 2.U) -> Cat(item.s1.entry.tag(sectorvpnLen - 1, vpnnLen * 3 - sectortlbwidth), item.s2.entry.tag(vpnnLen * 3 - 1, vpnnLen * 2), 0.U((vpnnLen * 2 - sectortlbwidth).W)), 297 (item.s1.entry.level.getOrElse(0.U) === 3.U && item.s2.entry.level.getOrElse(0.U) === 1.U) -> Cat(item.s1.entry.tag(sectorvpnLen - 1, vpnnLen * 3 - sectortlbwidth), item.s2.entry.tag(vpnnLen * 3 - 1, vpnnLen), 0.U((vpnnLen - sectortlbwidth).W)), 298 (item.s1.entry.level.getOrElse(0.U) === 3.U && item.s2.entry.level.getOrElse(0.U) === 0.U) -> Cat(item.s1.entry.tag(sectorvpnLen - 1, vpnnLen * 3 - sectortlbwidth), item.s2.entry.tag(vpnnLen * 3 - 1, sectortlbwidth)), 299 (item.s1.entry.level.getOrElse(0.U) === 2.U && item.s2.entry.level.getOrElse(0.U) === 1.U) -> Cat(item.s1.entry.tag(sectorvpnLen - 1, vpnnLen * 2 - sectortlbwidth), item.s2.entry.tag(vpnnLen * 2 - 1, vpnnLen), 0.U((vpnnLen - sectortlbwidth).W)), 300 (item.s1.entry.level.getOrElse(0.U) === 2.U && item.s2.entry.level.getOrElse(0.U) === 0.U) -> Cat(item.s1.entry.tag(sectorvpnLen - 1, vpnnLen * 2 - sectortlbwidth), item.s2.entry.tag(vpnnLen * 2 - 1, sectortlbwidth)), 301 (item.s1.entry.level.getOrElse(0.U) === 1.U && item.s2.entry.level.getOrElse(0.U) === 0.U) -> Cat(item.s1.entry.tag(sectorvpnLen - 1, vpnnLen - sectortlbwidth), item.s2.entry.tag(vpnnLen - 1, sectortlbwidth)) 302 )) 303 this.tag := Mux(item.s2xlate === onlyStage2, s2tag, Mux(item.s2xlate === allStage, s1tagFix, s1tag)) 304 val s2page_pageSuper = item.s2.entry.level.getOrElse(0.U) =/= 0.U 305 this.pteidx := Mux(item.s2xlate === onlyStage2, VecInit(UIntToOH(item.s2.entry.tag(sectortlbwidth - 1, 0)).asBools), item.s1.pteidx) 306 val s2_valid = Mux(s2page_pageSuper, VecInit(Seq.fill(tlbcontiguous)(true.B)), VecInit(UIntToOH(item.s2.entry.tag(sectortlbwidth - 1, 0)).asBools)) 307 this.valididx := Mux(item.s2xlate === onlyStage2, s2_valid, item.s1.valididx) 308 // if stage2 page is larger than stage1 page, need to merge s2tag and s2ppn to get a new s2ppn. 309 val s1ppn = item.s1.entry.ppn 310 val s1ppn_low = item.s1.ppn_low 311 val s2ppn = MuxLookup(item.s2.entry.level.getOrElse(0.U), item.s2.entry.ppn(ppnLen - 1, sectortlbwidth))(Seq( 312 3.U -> Cat(item.s2.entry.ppn(ppnLen - 1, vpnnLen * 3), item.s2.entry.tag(vpnnLen * 3 - 1, sectortlbwidth)), 313 2.U -> Cat(item.s2.entry.ppn(ppnLen - 1, vpnnLen * 2), item.s2.entry.tag(vpnnLen * 2 - 1, sectortlbwidth)), 314 1.U -> Cat(item.s2.entry.ppn(ppnLen - 1, vpnnLen), item.s2.entry.tag(vpnnLen - 1, sectortlbwidth)) 315 )) 316 val s2ppn_tmp = MuxLookup(item.s2.entry.level.getOrElse(0.U), item.s2.entry.ppn(ppnLen - 1, 0))(Seq( 317 3.U -> Cat(item.s2.entry.ppn(ppnLen - 1, vpnnLen * 3), item.s2.entry.tag(vpnnLen * 3 - 1, 0)), 318 2.U -> Cat(item.s2.entry.ppn(ppnLen - 1, vpnnLen * 2), item.s2.entry.tag(vpnnLen * 2 - 1, 0)), 319 1.U -> Cat(item.s2.entry.ppn(ppnLen - 1, vpnnLen), item.s2.entry.tag(vpnnLen - 1, 0)) 320 )) 321 val s2ppn_low = VecInit(Seq.fill(tlbcontiguous)(s2ppn_tmp(sectortlbwidth - 1, 0))) 322 this.ppn := Mux(item.s2xlate === noS2xlate || item.s2xlate === onlyStage1, s1ppn, s2ppn) 323 this.ppn_low := Mux(item.s2xlate === noS2xlate || item.s2xlate === onlyStage1, s1ppn_low, s2ppn_low) 324 this.vmid := item.s1.entry.vmid.getOrElse(0.U) 325 this.g_pbmt := item.s2.entry.pbmt 326 this.g_perm.applyS2(item.s2) 327 this.s2xlate := item.s2xlate 328 this 329 } 330 331 // 4KB is normal entry, 2MB/1GB is considered as super entry 332 def is_normalentry(): Bool = { 333 if (!pageSuper) { true.B } 334 else if (!pageNormal) { false.B } 335 else { level.get === 0.U } 336 } 337 338 339 def genPPN(saveLevel: Boolean = false, valid: Bool = false.B)(vpn: UInt) : UInt = { 340 val inner_level = level.getOrElse(0.U) 341 val ppn_res = Cat(ppn(sectorppnLen - 1, vpnnLen * 3 - sectortlbwidth), 342 Mux(inner_level >= "b11".U , vpn(vpnnLen * 3 - 1, vpnnLen * 2), ppn(vpnnLen * 3 - sectortlbwidth - 1, vpnnLen * 2 - sectortlbwidth)), 343 Mux(inner_level >= "b10".U , vpn(vpnnLen * 2 - 1, vpnnLen), ppn(vpnnLen * 2 - sectortlbwidth - 1, vpnnLen - sectortlbwidth)), 344 Mux(inner_level >= "b01".U , vpn(vpnnLen - 1, 0), Cat(ppn(vpnnLen - sectortlbwidth - 1, 0), ppn_low(vpn(sectortlbwidth - 1, 0))))) 345 346 if (saveLevel) 347 RegEnable(ppn_res, valid) 348 else 349 ppn_res 350 } 351 352 def hasS2xlate(): Bool = { 353 this.s2xlate =/= noS2xlate 354 } 355 356 override def toPrintable: Printable = { 357 val inner_level = level.getOrElse(2.U) 358 p"asid: ${asid} level:${inner_level} vpn:${Hexadecimal(tag)} ppn:${Hexadecimal(ppn)} perm:${perm}" 359 } 360 361} 362 363object TlbCmd { 364 def read = "b00".U 365 def write = "b01".U 366 def exec = "b10".U 367 368 def atom_read = "b100".U // lr 369 def atom_write = "b101".U // sc / amo 370 371 def apply() = UInt(3.W) 372 def isRead(a: UInt) = a(1,0)===read 373 def isWrite(a: UInt) = a(1,0)===write 374 def isExec(a: UInt) = a(1,0)===exec 375 376 def isAtom(a: UInt) = a(2) 377 def isAmo(a: UInt) = a===atom_write // NOTE: sc mixed 378} 379 380// Svpbmt extension 381object Pbmt { 382 def pma: UInt = "b00".U // None 383 def nc: UInt = "b01".U // Non-cacheable, idempotent, weakly-ordered (RVWMO), main memory 384 def io: UInt = "b10".U // Non-cacheable, non-idempotent, strongly-ordered (I/O ordering), I/O 385 def rsvd: UInt = "b11".U // Reserved for future standard use 386 def width: Int = 2 387 388 def apply() = UInt(2.W) 389 def isUncache(a: UInt) = a===nc || a===io 390} 391 392class TlbStorageIO(nSets: Int, nWays: Int, ports: Int, nDups: Int = 1)(implicit p: Parameters) extends MMUIOBaseBundle { 393 val r = new Bundle { 394 val req = Vec(ports, Flipped(DecoupledIO(new Bundle { 395 val vpn = Output(UInt(vpnLen.W)) 396 val s2xlate = Output(UInt(2.W)) 397 }))) 398 val resp = Vec(ports, ValidIO(new Bundle{ 399 val hit = Output(Bool()) 400 val ppn = Vec(nDups, Output(UInt(ppnLen.W))) 401 val pbmt = Vec(nDups, Output(UInt(ptePbmtLen.W))) 402 val g_pbmt = Vec(nDups, Output(UInt(ptePbmtLen.W))) 403 val perm = Vec(nDups, Output(new TlbSectorPermBundle())) 404 val g_perm = Vec(nDups, Output(new TlbPermBundle())) 405 val s2xlate = Vec(nDups, Output(UInt(2.W))) 406 })) 407 } 408 val w = Flipped(ValidIO(new Bundle { 409 val wayIdx = Output(UInt(log2Up(nWays).W)) 410 val data = Output(new PtwRespS2) 411 })) 412 val access = Vec(ports, new ReplaceAccessBundle(nSets, nWays)) 413 414 def r_req_apply(valid: Bool, vpn: UInt, i: Int, s2xlate:UInt): Unit = { 415 this.r.req(i).valid := valid 416 this.r.req(i).bits.vpn := vpn 417 this.r.req(i).bits.s2xlate := s2xlate 418 419 } 420 421 def r_resp_apply(i: Int) = { 422 (this.r.resp(i).bits.hit, this.r.resp(i).bits.ppn, this.r.resp(i).bits.perm, this.r.resp(i).bits.g_perm, this.r.resp(i).bits.pbmt, this.r.resp(i).bits.g_pbmt) 423 } 424 425 def w_apply(valid: Bool, wayIdx: UInt, data: PtwRespS2): Unit = { 426 this.w.valid := valid 427 this.w.bits.wayIdx := wayIdx 428 this.w.bits.data := data 429 } 430 431} 432 433class TlbStorageWrapperIO(ports: Int, q: TLBParameters, nDups: Int = 1)(implicit p: Parameters) extends MMUIOBaseBundle { 434 val r = new Bundle { 435 val req = Vec(ports, Flipped(DecoupledIO(new Bundle { 436 val vpn = Output(UInt(vpnLen.W)) 437 val s2xlate = Output(UInt(2.W)) 438 }))) 439 val resp = Vec(ports, ValidIO(new Bundle{ 440 val hit = Output(Bool()) 441 val ppn = Vec(nDups, Output(UInt(ppnLen.W))) 442 val pbmt = Vec(nDups, Output(UInt(ptePbmtLen.W))) 443 val g_pbmt = Vec(nDups, Output(UInt(ptePbmtLen.W))) 444 val perm = Vec(nDups, Output(new TlbPermBundle())) 445 val g_perm = Vec(nDups, Output(new TlbPermBundle())) 446 val s2xlate = Vec(nDups, Output(UInt(2.W))) 447 })) 448 } 449 val w = Flipped(ValidIO(new Bundle { 450 val data = Output(new PtwRespS2) 451 })) 452 val replace = if (q.outReplace) Flipped(new TlbReplaceIO(ports, q)) else null 453 454 def r_req_apply(valid: Bool, vpn: UInt, i: Int, s2xlate: UInt): Unit = { 455 this.r.req(i).valid := valid 456 this.r.req(i).bits.vpn := vpn 457 this.r.req(i).bits.s2xlate := s2xlate 458 } 459 460 def r_resp_apply(i: Int) = { 461 (this.r.resp(i).bits.hit, this.r.resp(i).bits.ppn, this.r.resp(i).bits.perm, this.r.resp(i).bits.g_perm, this.r.resp(i).bits.s2xlate, this.r.resp(i).bits.pbmt, this.r.resp(i).bits.g_pbmt) 462 } 463 464 def w_apply(valid: Bool, data: PtwRespS2): Unit = { 465 this.w.valid := valid 466 this.w.bits.data := data 467 } 468} 469 470class ReplaceAccessBundle(nSets: Int, nWays: Int)(implicit p: Parameters) extends TlbBundle { 471 val sets = Output(UInt(log2Up(nSets).W)) 472 val touch_ways = ValidIO(Output(UInt(log2Up(nWays).W))) 473} 474 475class ReplaceIO(Width: Int, nSets: Int, nWays: Int)(implicit p: Parameters) extends TlbBundle { 476 val access = Vec(Width, Flipped(new ReplaceAccessBundle(nSets, nWays))) 477 478 val refillIdx = Output(UInt(log2Up(nWays).W)) 479 val chosen_set = Flipped(Output(UInt(log2Up(nSets).W))) 480 481 def apply_sep(in: Seq[ReplaceIO], vpn: UInt): Unit = { 482 for ((ac_rep, ac_tlb) <- access.zip(in.map(a => a.access.map(b => b)).flatten)) { 483 ac_rep := ac_tlb 484 } 485 this.chosen_set := get_set_idx(vpn, nSets) 486 in.map(a => a.refillIdx := this.refillIdx) 487 } 488} 489 490class TlbReplaceIO(Width: Int, q: TLBParameters)(implicit p: Parameters) extends 491 TlbBundle { 492 val page = new ReplaceIO(Width, q.NSets, q.NWays) 493 494 def apply_sep(in: Seq[TlbReplaceIO], vpn: UInt) = { 495 this.page.apply_sep(in.map(_.page), vpn) 496 } 497 498} 499 500class MemBlockidxBundle(implicit p: Parameters) extends TlbBundle { 501 val is_ld = Bool() 502 val is_st = Bool() 503 val idx = UInt(log2Ceil(VirtualLoadQueueMaxStoreQueueSize).W) 504} 505 506class TlbReq(implicit p: Parameters) extends TlbBundle { 507 val vaddr = Output(UInt(VAddrBits.W)) 508 val cmd = Output(TlbCmd()) 509 val hyperinst = Output(Bool()) 510 val hlvx = Output(Bool()) 511 val size = Output(UInt(log2Ceil(log2Ceil(VLEN/8)+1).W)) 512 val kill = Output(Bool()) // Use for blocked tlb that need sync with other module like icache 513 val memidx = Output(new MemBlockidxBundle) 514 // do not translate, but still do pmp/pma check 515 val no_translate = Output(Bool()) 516 val pmp_addr = Output(UInt(PAddrBits.W)) // load s1 send prefetch paddr 517 val debug = new Bundle { 518 val pc = Output(UInt(XLEN.W)) 519 val robIdx = Output(new RobPtr) 520 val isFirstIssue = Output(Bool()) 521 } 522 523 // Maybe Block req needs a kill: for itlb, itlb and icache may not sync, itlb should wait icache to go ahead 524 override def toPrintable: Printable = { 525 p"vaddr:0x${Hexadecimal(vaddr)} cmd:${cmd} kill:${kill} pc:0x${Hexadecimal(debug.pc)} robIdx:${debug.robIdx}" 526 } 527} 528 529class TlbExceptionBundle(implicit p: Parameters) extends TlbBundle { 530 val ld = Output(Bool()) 531 val st = Output(Bool()) 532 val instr = Output(Bool()) 533} 534 535class TlbResp(nDups: Int = 1)(implicit p: Parameters) extends TlbBundle { 536 val paddr = Vec(nDups, Output(UInt(PAddrBits.W))) 537 val gpaddr = Vec(nDups, Output(UInt(GPAddrBits.W))) 538 val pbmt = Vec(nDups, Output(UInt(ptePbmtLen.W))) 539 val miss = Output(Bool()) 540 val excp = Vec(nDups, new Bundle { 541 val gpf = new TlbExceptionBundle() 542 val pf = new TlbExceptionBundle() 543 val af = new TlbExceptionBundle() 544 }) 545 val ptwBack = Output(Bool()) // when ptw back, wake up replay rs's state 546 val memidx = Output(new MemBlockidxBundle) 547 548 val debug = new Bundle { 549 val robIdx = Output(new RobPtr) 550 val isFirstIssue = Output(Bool()) 551 } 552 override def toPrintable: Printable = { 553 p"paddr:0x${Hexadecimal(paddr(0))} miss:${miss} excp.pf: ld:${excp(0).pf.ld} st:${excp(0).pf.st} instr:${excp(0).pf.instr} ptwBack:${ptwBack}" 554 } 555} 556 557class TlbRequestIO(nRespDups: Int = 1)(implicit p: Parameters) extends TlbBundle { 558 val req = DecoupledIO(new TlbReq) 559 val req_kill = Output(Bool()) 560 val resp = Flipped(DecoupledIO(new TlbResp(nRespDups))) 561} 562 563class TlbPtwIO(Width: Int = 1)(implicit p: Parameters) extends TlbBundle { 564 val req = Vec(Width, DecoupledIO(new PtwReq)) 565 val resp = Flipped(DecoupledIO(new PtwRespS2)) 566 567 568 override def toPrintable: Printable = { 569 p"req(0):${req(0).valid} ${req(0).ready} ${req(0).bits} | resp:${resp.valid} ${resp.ready} ${resp.bits}" 570 } 571} 572 573class TlbPtwIOwithMemIdx(Width: Int = 1)(implicit p: Parameters) extends TlbBundle { 574 val req = Vec(Width, DecoupledIO(new PtwReqwithMemIdx)) 575 val resp = Flipped(DecoupledIO(new PtwRespS2withMemIdx())) 576 577 578 override def toPrintable: Printable = { 579 p"req(0):${req(0).valid} ${req(0).ready} ${req(0).bits} | resp:${resp.valid} ${resp.ready} ${resp.bits}" 580 } 581} 582 583class TlbHintReq(implicit p: Parameters) extends TlbBundle { 584 val id = Output(UInt(log2Up(loadfiltersize).W)) 585 val full = Output(Bool()) 586} 587 588class TLBHintResp(implicit p: Parameters) extends TlbBundle { 589 val id = Output(UInt(log2Up(loadfiltersize).W)) 590 // When there are multiple matching entries for PTW resp in filter 591 // e.g. vaddr 0, 0x80000000. vaddr 1, 0x80010000 592 // these two vaddrs are not in a same 4K Page, so will send to ptw twice 593 // However, when ptw resp, if they are in a 1G or 2M huge page 594 // The two entries will both hit, and both need to replay 595 val replay_all = Output(Bool()) 596} 597 598class TlbHintIO(implicit p: Parameters) extends TlbBundle { 599 val req = Vec(backendParams.LdExuCnt, new TlbHintReq) 600 val resp = ValidIO(new TLBHintResp) 601} 602 603class MMUIOBaseBundle(implicit p: Parameters) extends TlbBundle { 604 val sfence = Input(new SfenceBundle) 605 val csr = Input(new TlbCsrBundle) 606 607 def base_connect(sfence: SfenceBundle, csr: TlbCsrBundle): Unit = { 608 this.sfence <> sfence 609 this.csr <> csr 610 } 611 612 // overwrite satp. write satp will cause flushpipe but csr.priv won't 613 // satp will be dealyed several cycles from writing, but csr.priv won't 614 // so inside mmu, these two signals should be divided 615 def base_connect(sfence: SfenceBundle, csr: TlbCsrBundle, satp: TlbSatpBundle) = { 616 this.sfence <> sfence 617 this.csr <> csr 618 this.csr.satp := satp 619 } 620} 621 622class TlbRefilltoMemIO()(implicit p: Parameters) extends TlbBundle { 623 val valid = Bool() 624 val memidx = new MemBlockidxBundle 625} 626 627class TlbIO(Width: Int, nRespDups: Int = 1, q: TLBParameters)(implicit p: Parameters) extends 628 MMUIOBaseBundle { 629 val hartId = Input(UInt(hartIdLen.W)) 630 val requestor = Vec(Width, Flipped(new TlbRequestIO(nRespDups))) 631 val flushPipe = Vec(Width, Input(Bool())) 632 val redirect = Flipped(ValidIO(new Redirect)) // flush the signal need_gpa in tlb 633 val ptw = new TlbPtwIOwithMemIdx(Width) 634 val refill_to_mem = Output(new TlbRefilltoMemIO()) 635 val replace = if (q.outReplace) Flipped(new TlbReplaceIO(Width, q)) else null 636 val pmp = Vec(Width, ValidIO(new PMPReqBundle(q.lgMaxSize))) 637 val tlbreplay = Vec(Width, Output(Bool())) 638} 639 640class VectorTlbPtwIO(Width: Int)(implicit p: Parameters) extends TlbBundle { 641 val req = Vec(Width, DecoupledIO(new PtwReqwithMemIdx())) 642 val resp = Flipped(DecoupledIO(new Bundle { 643 val data = new PtwRespS2withMemIdx 644 val vector = Output(Vec(Width, Bool())) 645 val getGpa = Output(Vec(Width, Bool())) 646 })) 647 648 def connect(normal: TlbPtwIOwithMemIdx): Unit = { 649 req <> normal.req 650 resp.ready := normal.resp.ready 651 normal.resp.bits := resp.bits.data 652 normal.resp.valid := resp.valid 653 } 654} 655 656/**************************** L2TLB *************************************/ 657abstract class PtwBundle(implicit p: Parameters) extends XSBundle with HasPtwConst 658abstract class PtwModule(outer: L2TLB) extends LazyModuleImp(outer) 659 with HasXSParameter with HasPtwConst 660 661class PteBundle(implicit p: Parameters) extends PtwBundle{ 662 val n = UInt(pteNLen.W) 663 val pbmt = UInt(ptePbmtLen.W) 664 val reserved = UInt(pteResLen.W) 665 val ppn_high = UInt(ppnHignLen.W) 666 val ppn = UInt(ppnLen.W) 667 val rsw = UInt(pteRswLen.W) 668 val perm = new Bundle { 669 val d = Bool() 670 val a = Bool() 671 val g = Bool() 672 val u = Bool() 673 val x = Bool() 674 val w = Bool() 675 val r = Bool() 676 val v = Bool() 677 } 678 679 def unaligned(level: UInt) = { 680 isLeaf() && 681 !(level === 0.U || 682 level === 1.U && ppn(vpnnLen-1, 0) === 0.U || 683 level === 2.U && ppn(vpnnLen*2-1, 0) === 0.U || 684 level === 3.U && ppn(vpnnLen*3-1, 0) === 0.U) 685 } 686 687 def isLeaf() = { 688 (perm.r || perm.x || perm.w) && perm.v 689 } 690 691 def isNext() = { 692 !(perm.r || perm.x || perm.w) && perm.v 693 } 694 695 def isPf(level: UInt) = { 696 val pf = WireInit(false.B) 697 when (isNext()) { 698 pf := (perm.u || perm.a || perm.d ) 699 }.elsewhen (!perm.v || (!perm.r && perm.w)) { 700 pf := true.B 701 }.otherwise{ 702 unaligned(level) 703 } 704 pf 705 } 706 707 def isGpf(level: UInt) = { 708 val gpf = WireInit(false.B) 709 when (isNext()) { 710 gpf := (perm.u || perm.a || perm.d ) 711 }.elsewhen (!perm.v || (!perm.r && perm.w)) { 712 gpf := true.B 713 }.elsewhen (!perm.u) { 714 gpf := true.B 715 }.otherwise{ 716 unaligned(level) 717 } 718 gpf 719 } 720 721 // ppn of Xiangshan is 48 - 12 bits but ppn of sv48 is 44 bits 722 // access fault will be raised when ppn >> ppnLen is not zero 723 def isAf(): Bool = { 724 !(ppn_high === 0.U) 725 } 726 727 def isStage1Gpf() = { 728 !((Cat(ppn_high, ppn) >> gvpnLen) === 0.U) 729 } 730 731 def getPerm() = { 732 val pm = Wire(new PtePermBundle) 733 pm.d := perm.d 734 pm.a := perm.a 735 pm.g := perm.g 736 pm.u := perm.u 737 pm.x := perm.x 738 pm.w := perm.w 739 pm.r := perm.r 740 pm 741 } 742 def getPPN() = { 743 Cat(ppn_high, ppn) 744 } 745 override def toPrintable: Printable = { 746 p"ppn:0x${Hexadecimal(ppn)} perm:b${Binary(perm.asUInt)}" 747 } 748} 749 750class PtwEntry(tagLen: Int, hasPerm: Boolean = false, hasLevel: Boolean = false)(implicit p: Parameters) extends PtwBundle { 751 val tag = UInt(tagLen.W) 752 val asid = UInt(asidLen.W) 753 val vmid = if (HasHExtension) Some(UInt(vmidLen.W)) else None 754 val pbmt = UInt(ptePbmtLen.W) 755 val ppn = UInt(gvpnLen.W) 756 val perm = if (hasPerm) Some(new PtePermBundle) else None 757 val level = if (hasLevel) Some(UInt(log2Up(Level + 1).W)) else None 758 val prefetch = Bool() 759 val v = Bool() 760 761 def is_normalentry(): Bool = { 762 if (!hasLevel) true.B 763 else level.get === 2.U 764 } 765 766 def genPPN(vpn: UInt): UInt = { 767 if (!hasLevel) { 768 ppn 769 } else { 770 MuxLookup(level.get, 0.U)(Seq( 771 3.U -> Cat(ppn(ppn.getWidth-1, vpnnLen*3), vpn(vpnnLen*3-1, 0)), 772 2.U -> Cat(ppn(ppn.getWidth-1, vpnnLen*2), vpn(vpnnLen*2-1, 0)), 773 1.U -> Cat(ppn(ppn.getWidth-1, vpnnLen), vpn(vpnnLen-1, 0)), 774 0.U -> ppn) 775 ) 776 } 777 } 778 779 //s2xlate control whether compare vmid or not 780 def hit(vpn: UInt, asid: UInt, vasid: UInt, vmid: UInt, allType: Boolean = false, ignoreAsid: Boolean = false, s2xlate: Bool) = { 781 require(vpn.getWidth == vpnLen) 782// require(this.asid.getWidth <= asid.getWidth) 783 val asid_value = Mux(s2xlate, vasid, asid) 784 val asid_hit = if (ignoreAsid) true.B else (this.asid === asid_value) 785 val vmid_hit = Mux(s2xlate, (this.vmid.getOrElse(0.U) === vmid), true.B) 786 if (allType) { 787 require(hasLevel) 788 val tag_match = Wire(Vec(4, Bool())) // 512GB, 1GB, 2MB or 4KB, not parameterized here 789 for (i <- 0 until 3) { 790 tag_match(i) := tag(vpnnLen * (i + 1) - 1, vpnnLen * i) === vpn(vpnnLen * (i + 1) - 1, vpnnLen * i) 791 } 792 tag_match(3) := tag(tagLen - 1, vpnnLen * 3) === vpn(tagLen - 1, vpnnLen * 3) 793 794 val level_match = MuxLookup(level.getOrElse(0.U), false.B)(Seq( 795 3.U -> tag_match(3), 796 2.U -> (tag_match(3) && tag_match(2)), 797 1.U -> (tag_match(3) && tag_match(2) && tag_match(1)), 798 0.U -> (tag_match(3) && tag_match(2) && tag_match(1) && tag_match(0))) 799 ) 800 801 asid_hit && vmid_hit && level_match 802 } else if (hasLevel) { 803 val tag_match = Wire(Vec(3, Bool())) // SuperPage, 512GB, 1GB or 2MB 804 tag_match(0) := tag(tagLen - 1, tagLen - vpnnLen - extendVpnnBits) === vpn(vpnLen - 1, vpnLen - vpnnLen - extendVpnnBits) 805 for (i <- 1 until 3) { 806 tag_match(i) := tag(tagLen - vpnnLen * i - extendVpnnBits - 1, tagLen - vpnnLen * (i + 1) - extendVpnnBits) === vpn(vpnLen - vpnnLen * i - extendVpnnBits - 1, vpnLen - vpnnLen * (i + 1) - extendVpnnBits) 807 } 808 809 val level_match = MuxLookup(level.getOrElse(0.U), false.B)(Seq( 810 3.U -> tag_match(0), 811 2.U -> (tag_match(0) && tag_match(1)), 812 1.U -> (tag_match(0) && tag_match(1) && tag_match(2))) 813 ) 814 815 asid_hit && vmid_hit && level_match 816 } else { 817 asid_hit && vmid_hit && tag === vpn(vpnLen - 1, vpnLen - tagLen) 818 } 819 } 820 821 def refill(vpn: UInt, asid: UInt, vmid: UInt, pte: UInt, level: UInt = 0.U, prefetch: Bool, valid: Bool = false.B): Unit = { 822 require(this.asid.getWidth <= asid.getWidth) // maybe equal is better, but ugly outside 823 824 tag := vpn(vpnLen - 1, vpnLen - tagLen) 825 pbmt := pte.asTypeOf(new PteBundle().cloneType).pbmt 826 ppn := pte.asTypeOf(new PteBundle().cloneType).ppn 827 perm.map(_ := pte.asTypeOf(new PteBundle().cloneType).perm) 828 this.asid := asid 829 this.vmid.map(_ := vmid) 830 this.prefetch := prefetch 831 this.v := valid 832 this.level.map(_ := level) 833 } 834 835 def genPtwEntry(vpn: UInt, asid: UInt, pte: UInt, level: UInt = 0.U, prefetch: Bool, valid: Bool = false.B) = { 836 val e = Wire(new PtwEntry(tagLen, hasPerm, hasLevel)) 837 e.refill(vpn, asid, pte, level, prefetch, valid) 838 e 839 } 840 841 842 843 override def toPrintable: Printable = { 844 // p"tag:0x${Hexadecimal(tag)} ppn:0x${Hexadecimal(ppn)} perm:${perm}" 845 p"tag:0x${Hexadecimal(tag)} pbmt: ${pbmt} ppn:0x${Hexadecimal(ppn)} " + 846 (if (hasPerm) p"perm:${perm.getOrElse(0.U.asTypeOf(new PtePermBundle))} " else p"") + 847 (if (hasLevel) p"level:${level.getOrElse(0.U)}" else p"") + 848 p"prefetch:${prefetch}" 849 } 850} 851 852class PtwSectorEntry(tagLen: Int, hasPerm: Boolean = false, hasLevel: Boolean = false)(implicit p: Parameters) extends PtwEntry(tagLen, hasPerm, hasLevel) { 853 override val ppn = UInt(sectorptePPNLen.W) 854} 855 856class PtwMergeEntry(tagLen: Int, hasPerm: Boolean = false, hasLevel: Boolean = false)(implicit p: Parameters) extends PtwSectorEntry(tagLen, hasPerm, hasLevel) { 857 val ppn_low = UInt(sectortlbwidth.W) 858 val af = Bool() 859 val pf = Bool() 860} 861 862class PtwEntries(num: Int, tagLen: Int, level: Int, hasPerm: Boolean, hasReservedBitforMbist: Boolean)(implicit p: Parameters) extends PtwBundle { 863 require(log2Up(num)==log2Down(num)) 864 // NOTE: hasPerm means that is leaf or not. 865 866 val tag = UInt(tagLen.W) 867 val asid = UInt(asidLen.W) 868 val vmid = Some(UInt(vmidLen.W)) 869 val pbmts = Vec(num, UInt(ptePbmtLen.W)) 870 val ppns = Vec(num, UInt(gvpnLen.W)) 871 val vs = Vec(num, Bool()) 872 val af = Vec(num, Bool()) 873 val perms = if (hasPerm) Some(Vec(num, new PtePermBundle)) else None 874 val prefetch = Bool() 875 val reservedbit = if(hasReservedBitforMbist) Some(Bool()) else None 876 // println(s"PtwEntries: tag:1*${tagLen} ppns:${num}*${ppnLen} vs:${num}*1") 877 // NOTE: vs is used for different usage: 878 // for l3, which store the leaf(leaves), vs is page fault or not. 879 // for l2, which shoule not store leaf, vs is valid or not, that will anticipate in hit check 880 // Because, l2 should not store leaf(no perm), it doesn't store perm. 881 // If l2 hit a leaf, the perm is still unavailble. Should still page walk. Complex but nothing helpful. 882 // TODO: divide vs into validVec and pfVec 883 // for l2: may valid but pf, so no need for page walk, return random pte with pf. 884 885 def tagClip(vpn: UInt) = { 886 require(vpn.getWidth == vpnLen) 887 vpn(vpnLen - 1, vpnLen - tagLen) 888 } 889 890 def sectorIdxClip(vpn: UInt, level: Int) = { 891 getVpnClip(vpn, level)(log2Up(num) - 1, 0) 892 } 893 894 def hit(vpn: UInt, asid: UInt, vasid: UInt, vmid:UInt, ignoreAsid: Boolean = false, s2xlate: Bool) = { 895 val asid_value = Mux(s2xlate, vasid, asid) 896 val asid_hit = if (ignoreAsid) true.B else (this.asid === asid_value) 897 val vmid_hit = Mux(s2xlate, this.vmid.getOrElse(0.U) === vmid, true.B) 898 asid_hit && vmid_hit && tag === tagClip(vpn) && (if (hasPerm) true.B else vs(sectorIdxClip(vpn, level))) 899 } 900 901 def genEntries(vpn: UInt, asid: UInt, vmid: UInt, data: UInt, levelUInt: UInt, prefetch: Bool, s2xlate: UInt) = { 902 require((data.getWidth / XLEN) == num, 903 s"input data length must be multiple of pte length: data.length:${data.getWidth} num:${num}") 904 905 val ps = Wire(new PtwEntries(num, tagLen, level, hasPerm, hasReservedBitforMbist)) 906 ps.tag := tagClip(vpn) 907 ps.asid := asid 908 ps.vmid.map(_ := vmid) 909 ps.prefetch := prefetch 910 for (i <- 0 until num) { 911 val pte = data((i+1)*XLEN-1, i*XLEN).asTypeOf(new PteBundle) 912 ps.pbmts(i) := pte.pbmt 913 ps.ppns(i) := pte.ppn 914 ps.vs(i) := !pte.isPf(levelUInt) && (if (hasPerm) pte.isLeaf() else !pte.isLeaf()) 915 ps.af(i) := Mux(s2xlate === allStage, false.B, pte.isAf()) // if allstage, this refill is from ptw or llptw, so the af is invalid 916 ps.perms.map(_(i) := pte.perm) 917 } 918 ps.reservedbit.map(_ := true.B) 919 ps 920 } 921 922 override def toPrintable: Printable = { 923 // require(num == 4, "if num is not 4, please comment this toPrintable") 924 // NOTE: if num is not 4, please comment this toPrintable 925 val permsInner = perms.getOrElse(0.U.asTypeOf(Vec(num, new PtePermBundle))) 926 p"asid: ${Hexadecimal(asid)} tag:0x${Hexadecimal(tag)} pbmt:${printVec(pbmts)} ppns:${printVec(ppns)} vs:${Binary(vs.asUInt)} " + 927 (if (hasPerm) p"perms:${printVec(permsInner)}" else p"") 928 } 929} 930 931class PTWEntriesWithEcc(eccCode: Code, num: Int, tagLen: Int, level: Int, hasPerm: Boolean, hasReservedBitforMbist: Boolean = false)(implicit p: Parameters) extends PtwBundle { 932 val entries = new PtwEntries(num, tagLen, level, hasPerm, hasReservedBitforMbist) 933 934 val ecc_block = XLEN 935 val ecc_info = get_ecc_info() 936 val ecc = if (l2tlbParams.enablePTWECC) Some(UInt(ecc_info._1.W)) else None 937 938 def get_ecc_info(): (Int, Int, Int, Int) = { 939 val eccBits_per = eccCode.width(ecc_block) - ecc_block 940 941 val data_length = entries.getWidth 942 val data_align_num = data_length / ecc_block 943 val data_not_align = (data_length % ecc_block) != 0 // ugly code 944 val data_unalign_length = data_length - data_align_num * ecc_block 945 val eccBits_unalign = eccCode.width(data_unalign_length) - data_unalign_length 946 947 val eccBits = eccBits_per * data_align_num + eccBits_unalign 948 (eccBits, eccBits_per, data_align_num, data_unalign_length) 949 } 950 951 def encode() = { 952 val data = entries.asUInt 953 val ecc_slices = Wire(Vec(ecc_info._3, UInt(ecc_info._2.W))) 954 for (i <- 0 until ecc_info._3) { 955 ecc_slices(i) := eccCode.encode(data((i+1)*ecc_block-1, i*ecc_block)) >> ecc_block 956 } 957 if (ecc_info._4 != 0) { 958 val ecc_unaligned = eccCode.encode(data(data.getWidth-1, ecc_info._3*ecc_block)) >> ecc_info._4 959 ecc.map(_ := Cat(ecc_unaligned, ecc_slices.asUInt)) 960 } else { ecc.map(_ := ecc_slices.asUInt)} 961 } 962 963 def decode(): Bool = { 964 val data = entries.asUInt 965 val res = Wire(Vec(ecc_info._3 + 1, Bool())) 966 for (i <- 0 until ecc_info._3) { 967 res(i) := {if (ecc_info._2 != 0) eccCode.decode(Cat(ecc.get((i+1)*ecc_info._2-1, i*ecc_info._2), data((i+1)*ecc_block-1, i*ecc_block))).error else false.B} 968 } 969 if (ecc_info._2 != 0 && ecc_info._4 != 0) { 970 res(ecc_info._3) := eccCode.decode( 971 Cat(ecc.get(ecc_info._1-1, ecc_info._2*ecc_info._3), data(data.getWidth-1, ecc_info._3*ecc_block))).error 972 } else { res(ecc_info._3) := false.B } 973 974 Cat(res).orR 975 } 976 977 def gen(vpn: UInt, asid: UInt, vmid: UInt, data: UInt, levelUInt: UInt, prefetch: Bool, s2xlate: UInt) = { 978 this.entries := entries.genEntries(vpn, asid, vmid, data, levelUInt, prefetch, s2xlate) 979 this.encode() 980 } 981} 982 983class PtwReq(implicit p: Parameters) extends PtwBundle { 984 val vpn = UInt(vpnLen.W) //vpn or gvpn 985 val s2xlate = UInt(2.W) 986 def hasS2xlate(): Bool = { 987 this.s2xlate =/= noS2xlate 988 } 989 def isOnlyStage2: Bool = { 990 this.s2xlate === onlyStage2 991 } 992 override def toPrintable: Printable = { 993 p"vpn:0x${Hexadecimal(vpn)}" 994 } 995} 996 997class PtwReqwithMemIdx(implicit p: Parameters) extends PtwReq { 998 val memidx = new MemBlockidxBundle 999 val getGpa = Bool() // this req is to get gpa when having guest page fault 1000} 1001 1002class PtwResp(implicit p: Parameters) extends PtwBundle { 1003 val entry = new PtwEntry(tagLen = vpnLen, hasPerm = true, hasLevel = true) 1004 val pf = Bool() 1005 val af = Bool() 1006 1007 def apply(pf: Bool, af: Bool, level: UInt, pte: PteBundle, vpn: UInt, asid: UInt) = { 1008 this.entry.level.map(_ := level) 1009 this.entry.tag := vpn 1010 this.entry.perm.map(_ := pte.getPerm()) 1011 this.entry.ppn := pte.ppn 1012 this.entry.pbmt := pte.pbmt 1013 this.entry.prefetch := DontCare 1014 this.entry.asid := asid 1015 this.entry.v := !pf 1016 this.pf := pf 1017 this.af := af 1018 } 1019 1020 override def toPrintable: Printable = { 1021 p"entry:${entry} pf:${pf} af:${af}" 1022 } 1023} 1024 1025class HptwResp(implicit p: Parameters) extends PtwBundle { 1026 val entry = new PtwEntry(tagLen = gvpnLen, hasPerm = true, hasLevel = true) 1027 val gpf = Bool() 1028 val gaf = Bool() 1029 1030 def apply(gpf: Bool, gaf: Bool, level: UInt, pte: PteBundle, vpn: UInt, vmid: UInt) = { 1031 val resp_pte = Mux(gaf, 0.U.asTypeOf(pte), pte) 1032 this.entry.level.map(_ := level) 1033 this.entry.tag := vpn 1034 this.entry.perm.map(_ := resp_pte.getPerm()) 1035 this.entry.ppn := resp_pte.ppn 1036 this.entry.pbmt := resp_pte.pbmt 1037 this.entry.prefetch := DontCare 1038 this.entry.asid := DontCare 1039 this.entry.vmid.map(_ := vmid) 1040 this.entry.v := !gpf 1041 this.gpf := gpf 1042 this.gaf := gaf 1043 } 1044 1045 def genPPNS2(vpn: UInt): UInt = { 1046 MuxLookup(entry.level.get, 0.U)(Seq( 1047 3.U -> Cat(entry.ppn(entry.ppn.getWidth - 1, vpnnLen * 3), vpn(vpnnLen * 3 - 1, 0)), 1048 2.U -> Cat(entry.ppn(entry.ppn.getWidth - 1, vpnnLen * 2), vpn(vpnnLen * 2 - 1, 0)), 1049 1.U -> Cat(entry.ppn(entry.ppn.getWidth - 1, vpnnLen), vpn(vpnnLen - 1, 0)), 1050 0.U -> Cat(entry.ppn(entry.ppn.getWidth - 1, 0)) 1051 )) 1052 } 1053 1054 def hit(gvpn: UInt, vmid: UInt): Bool = { 1055 val vmid_hit = this.entry.vmid.getOrElse(0.U) === vmid 1056 val tag_match = Wire(Vec(4, Bool())) // 512GB, 1GB, 2MB or 4KB, not parameterized here 1057 for (i <- 0 until 3) { 1058 tag_match(i) := entry.tag(vpnnLen * (i + 1) - 1, vpnnLen * i) === gvpn(vpnnLen * (i + 1) - 1, vpnnLen * i) 1059 } 1060 tag_match(3) := entry.tag(gvpnLen - 1, vpnnLen * 3) === gvpn(gvpnLen - 1, vpnnLen * 3) 1061 1062 val level_match = MuxLookup(entry.level.getOrElse(0.U), false.B)(Seq( 1063 3.U -> tag_match(3), 1064 2.U -> (tag_match(3) && tag_match(2)), 1065 1.U -> (tag_match(3) && tag_match(2) && tag_match(1)), 1066 0.U -> (tag_match(3) && tag_match(2) && tag_match(1) && tag_match(0))) 1067 ) 1068 1069 vmid_hit && level_match 1070 } 1071} 1072 1073class PtwSectorResp(implicit p: Parameters) extends PtwBundle { 1074 val entry = new PtwSectorEntry(tagLen = sectorvpnLen, hasPerm = true, hasLevel = true) 1075 val addr_low = UInt(sectortlbwidth.W) 1076 val ppn_low = Vec(tlbcontiguous, UInt(sectortlbwidth.W)) 1077 val valididx = Vec(tlbcontiguous, Bool()) 1078 val pteidx = Vec(tlbcontiguous, Bool()) 1079 val pf = Bool() 1080 val af = Bool() 1081 1082 1083 def genPPN(vpn: UInt): UInt = { 1084 MuxLookup(entry.level.get, 0.U)(Seq( 1085 3.U -> Cat(entry.ppn(entry.ppn.getWidth - 1, vpnnLen * 3 - sectortlbwidth), vpn(vpnnLen * 3 - 1, 0)), 1086 2.U -> Cat(entry.ppn(entry.ppn.getWidth - 1, vpnnLen * 2 - sectortlbwidth), vpn(vpnnLen * 2 - 1, 0)), 1087 1.U -> Cat(entry.ppn(entry.ppn.getWidth - 1, vpnnLen - sectortlbwidth), vpn(vpnnLen - 1, 0)), 1088 0.U -> Cat(entry.ppn(entry.ppn.getWidth - 1, 0), ppn_low(vpn(sectortlbwidth - 1, 0)))) 1089 ) 1090 } 1091 1092 def hit(vpn: UInt, asid: UInt, vmid: UInt, allType: Boolean = false, ignoreAsid: Boolean = false, s2xlate: Bool): Bool = { 1093 require(vpn.getWidth == vpnLen) 1094 // require(this.asid.getWidth <= asid.getWidth) 1095 val asid_hit = if (ignoreAsid) true.B else (this.entry.asid === asid) 1096 val vmid_hit = Mux(s2xlate, this.entry.vmid.getOrElse(0.U) === vmid, true.B) 1097 if (allType) { 1098 val addr_low_hit = valididx(vpn(sectortlbwidth - 1, 0)) 1099 val tag_match = Wire(Vec(4, Bool())) // 512GB, 1GB, 2MB or 4KB, not parameterized here 1100 tag_match(0) := entry.tag(vpnnLen - sectortlbwidth - 1, 0) === vpn(vpnnLen - 1, sectortlbwidth) 1101 for (i <- 1 until 3) { 1102 tag_match(i) := entry.tag(vpnnLen * (i + 1) - sectortlbwidth - 1, vpnnLen * i - sectortlbwidth) === vpn(vpnnLen * (i + 1) - 1, vpnnLen * i) 1103 } 1104 tag_match(3) := entry.tag(sectorvpnLen - 1, vpnnLen * 3 - sectortlbwidth) === vpn(vpnLen - 1, vpnnLen * 3) 1105 1106 val level_match = MuxLookup(entry.level.getOrElse(0.U), false.B)(Seq( 1107 3.U -> tag_match(3), 1108 2.U -> (tag_match(3) && tag_match(2)), 1109 1.U -> (tag_match(3) && tag_match(2) && tag_match(1)), 1110 0.U -> (tag_match(3) && tag_match(2) && tag_match(1) && tag_match(0))) 1111 ) 1112 1113 asid_hit && vmid_hit && level_match && addr_low_hit 1114 } else { 1115 val addr_low_hit = valididx(vpn(sectortlbwidth - 1, 0)) 1116 val tag_match = Wire(Vec(3, Bool())) // SuperPage, 512GB, 1GB or 2MB 1117 for (i <- 0 until 3) { 1118 tag_match(i) := entry.tag(sectorvpnLen - vpnnLen * i - 1, sectorvpnLen - vpnnLen * (i + 1)) === vpn(vpnLen - vpnnLen * i - 1, vpnLen - vpnnLen * (i + 1)) 1119 } 1120 1121 val level_match = MuxLookup(entry.level.getOrElse(0.U), false.B)(Seq( 1122 3.U -> tag_match(0), 1123 2.U -> (tag_match(0) && tag_match(1)), 1124 1.U -> (tag_match(0) && tag_match(1) && tag_match(2))) 1125 ) 1126 1127 asid_hit && vmid_hit && level_match && addr_low_hit 1128 } 1129 } 1130} 1131 1132class PtwMergeResp(implicit p: Parameters) extends PtwBundle { 1133 val entry = Vec(tlbcontiguous, new PtwMergeEntry(tagLen = sectorvpnLen, hasPerm = true, hasLevel = true)) 1134 val pteidx = Vec(tlbcontiguous, Bool()) 1135 val not_super = Bool() 1136 1137 def apply(pf: Bool, af: Bool, level: UInt, pte: PteBundle, vpn: UInt, asid: UInt, vmid:UInt, addr_low : UInt, not_super : Boolean = true) = { 1138 assert(tlbcontiguous == 8, "Only support tlbcontiguous = 8!") 1139 val resp_pte = pte 1140 val ptw_resp = Wire(new PtwMergeEntry(tagLen = sectorvpnLen, hasPerm = true, hasLevel = true)) 1141 ptw_resp.ppn := resp_pte.getPPN()(ptePPNLen - 1, sectortlbwidth) 1142 ptw_resp.ppn_low := resp_pte.getPPN()(sectortlbwidth - 1, 0) 1143 ptw_resp.pbmt := resp_pte.pbmt 1144 ptw_resp.level.map(_ := level) 1145 ptw_resp.perm.map(_ := resp_pte.getPerm()) 1146 ptw_resp.tag := vpn(vpnLen - 1, sectortlbwidth) 1147 ptw_resp.pf := pf 1148 ptw_resp.af := af 1149 ptw_resp.v := !pf 1150 ptw_resp.prefetch := DontCare 1151 ptw_resp.asid := asid 1152 ptw_resp.vmid.map(_ := vmid) 1153 this.pteidx := UIntToOH(addr_low).asBools 1154 this.not_super := not_super.B 1155 1156 1157 for (i <- 0 until tlbcontiguous) { 1158 this.entry(i) := ptw_resp 1159 } 1160 } 1161 1162 def genPPN(): UInt = { 1163 val idx = OHToUInt(pteidx) 1164 val tag = Cat(entry(idx).tag, idx(sectortlbwidth - 1, 0)) 1165 MuxLookup(entry(idx).level.get, 0.U)(Seq( 1166 3.U -> Cat(entry(idx).ppn(entry(idx).ppn.getWidth - 1, vpnnLen * 3 - sectortlbwidth), tag(vpnnLen * 3 - 1, 0)), 1167 2.U -> Cat(entry(idx).ppn(entry(idx).ppn.getWidth - 1, vpnnLen * 2 - sectortlbwidth), tag(vpnnLen * 2 - 1, 0)), 1168 1.U -> Cat(entry(idx).ppn(entry(idx).ppn.getWidth - 1, vpnnLen - sectortlbwidth), tag(vpnnLen - 1, 0)), 1169 0.U -> Cat(entry(idx).ppn(entry(idx).ppn.getWidth - 1, 0), entry(idx).ppn_low)) 1170 ) 1171 } 1172} 1173 1174class PtwRespS2(implicit p: Parameters) extends PtwBundle { 1175 val s2xlate = UInt(2.W) 1176 val s1 = new PtwSectorResp() 1177 val s2 = new HptwResp() 1178 1179 def hasS2xlate: Bool = { 1180 this.s2xlate =/= noS2xlate 1181 } 1182 1183 def isOnlyStage2: Bool = { 1184 this.s2xlate === onlyStage2 1185 } 1186 1187 def getVpn(vpn: UInt): UInt = { 1188 val level = s1.entry.level.getOrElse(0.U) min s2.entry.level.getOrElse(0.U) 1189 val s1tag = Cat(s1.entry.tag, OHToUInt(s1.pteidx)) 1190 val s1tagFix = MuxCase(s1.entry.tag, Seq( 1191 (s1.entry.level.getOrElse(0.U) === 3.U && s2.entry.level.getOrElse(0.U) === 2.U) -> Cat(s1.entry.tag(sectorvpnLen - 1, vpnnLen * 3 - sectortlbwidth), s2.entry.tag(vpnnLen * 3 - 1, vpnnLen * 2), 0.U((vpnnLen * 2 - sectortlbwidth).W)), 1192 (s1.entry.level.getOrElse(0.U) === 3.U && s2.entry.level.getOrElse(0.U) === 1.U) -> Cat(s1.entry.tag(sectorvpnLen - 1, vpnnLen * 3 - sectortlbwidth), s2.entry.tag(vpnnLen * 3 - 1, vpnnLen), 0.U((vpnnLen - sectortlbwidth).W)), 1193 (s1.entry.level.getOrElse(0.U) === 3.U && s2.entry.level.getOrElse(0.U) === 0.U) -> Cat(s1.entry.tag(sectorvpnLen - 1, vpnnLen * 3 - sectortlbwidth), s2.entry.tag(vpnnLen * 3 - 1, sectortlbwidth)), 1194 (s1.entry.level.getOrElse(0.U) === 2.U && s2.entry.level.getOrElse(0.U) === 1.U) -> Cat(s1.entry.tag(sectorvpnLen - 1, vpnnLen * 2 - sectortlbwidth), s2.entry.tag(vpnnLen * 2 - 1, vpnnLen), 0.U((vpnnLen - sectortlbwidth).W)), 1195 (s1.entry.level.getOrElse(0.U) === 2.U && s2.entry.level.getOrElse(0.U) === 0.U) -> Cat(s1.entry.tag(sectorvpnLen - 1, vpnnLen * 2 - sectortlbwidth), s2.entry.tag(vpnnLen * 2 - 1, sectortlbwidth)), 1196 (s1.entry.level.getOrElse(0.U) === 1.U && s2.entry.level.getOrElse(0.U) === 0.U) -> Cat(s1.entry.tag(sectorvpnLen - 1, vpnnLen - sectortlbwidth), s2.entry.tag(vpnnLen - 1, sectortlbwidth)) 1197 )) 1198 val s1_vpn = MuxLookup(level, s1tag)(Seq( 1199 3.U -> Cat(s1tagFix(sectorvpnLen - 1, vpnnLen * 3 - sectortlbwidth), vpn(vpnnLen * 3 - 1, 0)), 1200 2.U -> Cat(s1tagFix(sectorvpnLen - 1, vpnnLen * 2 - sectortlbwidth), vpn(vpnnLen * 2 - 1, 0)), 1201 1.U -> Cat(s1tagFix(sectorvpnLen - 1, vpnnLen - sectortlbwidth), vpn(vpnnLen - 1, 0))) 1202 ) 1203 val s2_vpn = s2.entry.tag 1204 Mux(s2xlate === onlyStage2, s2_vpn, Mux(s2xlate === allStage, s1_vpn, s1tag)) 1205 } 1206 1207 def hit(vpn: UInt, asid: UInt, vasid: UInt, vmid: UInt, allType: Boolean = false, ignoreAsid: Boolean = false): Bool = { 1208 val noS2_hit = s1.hit(vpn, Mux(this.hasS2xlate, vasid, asid), vmid, allType, ignoreAsid, this.hasS2xlate) 1209 val onlyS2_hit = s2.hit(vpn, vmid) 1210 // allstage and onlys1 hit 1211 val s1vpn = Cat(s1.entry.tag, s1.addr_low) 1212 val level = s1.entry.level.getOrElse(0.U) min s2.entry.level.getOrElse(0.U) 1213 1214 val tag_match = Wire(Vec(4, Bool())) // 512GB, 1GB, 2MB or 4KB, not parameterized here 1215 for (i <- 0 until 4) { 1216 tag_match(i) := vpn(vpnnLen * (i + 1) - 1, vpnnLen * i) === s1vpn(vpnnLen * (i + 1) - 1, vpnnLen * i) 1217 } 1218 1219 val level_match = MuxLookup(level, false.B)(Seq( 1220 3.U -> tag_match(3), 1221 2.U -> (tag_match(3) && tag_match(2)), 1222 1.U -> (tag_match(3) && tag_match(2) && tag_match(1)), 1223 0.U -> (tag_match(3) && tag_match(2) && tag_match(1) && tag_match(0))) 1224 ) 1225 1226 val vpn_hit = level_match 1227 val vmid_hit = Mux(this.s2xlate === allStage, s2.entry.vmid.getOrElse(0.U) === vmid, true.B) 1228 val vasid_hit = if (ignoreAsid) true.B else (s1.entry.asid === vasid) 1229 val all_onlyS1_hit = vpn_hit && vmid_hit && vasid_hit 1230 Mux(this.s2xlate === noS2xlate, noS2_hit, 1231 Mux(this.s2xlate === onlyStage2, onlyS2_hit, all_onlyS1_hit)) 1232 } 1233} 1234 1235class PtwRespS2withMemIdx(implicit p: Parameters) extends PtwRespS2 { 1236 val memidx = new MemBlockidxBundle() 1237 val getGpa = Bool() // this req is to get gpa when having guest page fault 1238} 1239 1240class L2TLBIO(implicit p: Parameters) extends PtwBundle { 1241 val hartId = Input(UInt(hartIdLen.W)) 1242 val tlb = Vec(PtwWidth, Flipped(new TlbPtwIO)) 1243 val sfence = Input(new SfenceBundle) 1244 val csr = new Bundle { 1245 val tlb = Input(new TlbCsrBundle) 1246 val distribute_csr = Flipped(new DistributedCSRIO) 1247 } 1248} 1249 1250class L2TlbMemReqBundle(implicit p: Parameters) extends PtwBundle { 1251 val addr = UInt(PAddrBits.W) 1252 val id = UInt(bMemID.W) 1253 val hptw_bypassed = Bool() 1254} 1255 1256class L2TlbInnerBundle(implicit p: Parameters) extends PtwReq { 1257 val source = UInt(bSourceWidth.W) 1258} 1259 1260class L2TlbWithHptwIdBundle(implicit p: Parameters) extends PtwBundle { 1261 val req_info = new L2TlbInnerBundle 1262 val isHptwReq = Bool() 1263 val isLLptw = Bool() 1264 val hptwId = UInt(log2Up(l2tlbParams.llptwsize).W) 1265} 1266 1267object ValidHoldBypass{ 1268 def apply(infire: Bool, outfire: Bool, flush: Bool = false.B) = { 1269 val valid = RegInit(false.B) 1270 when (infire) { valid := true.B } 1271 when (outfire) { valid := false.B } // ATTENTION: order different with ValidHold 1272 when (flush) { valid := false.B } // NOTE: the flush will flush in & out, is that ok? 1273 valid || infire 1274 } 1275} 1276 1277class L1TlbDB(implicit p: Parameters) extends TlbBundle { 1278 val vpn = UInt(vpnLen.W) 1279} 1280 1281class PageCacheDB(implicit p: Parameters) extends TlbBundle with HasPtwConst { 1282 val vpn = UInt(vpnLen.W) 1283 val source = UInt(bSourceWidth.W) 1284 val bypassed = Bool() 1285 val is_first = Bool() 1286 val prefetched = Bool() 1287 val prefetch = Bool() 1288 val l2Hit = Bool() 1289 val l1Hit = Bool() 1290 val hit = Bool() 1291} 1292 1293class PTWDB(implicit p: Parameters) extends TlbBundle with HasPtwConst { 1294 val vpn = UInt(vpnLen.W) 1295 val source = UInt(bSourceWidth.W) 1296} 1297 1298class L2TlbPrefetchDB(implicit p: Parameters) extends TlbBundle { 1299 val vpn = UInt(vpnLen.W) 1300} 1301 1302class L2TlbMissQueueDB(implicit p: Parameters) extends TlbBundle { 1303 val vpn = UInt(vpnLen.W) 1304} 1305