1def addrimm12 : ComplexPattern<iPTR, 2, "selectIntAddrMM", [frameindex]>; 2def addrimm4lsl2 : ComplexPattern<iPTR, 2, "selectIntAddrLSL2MM", [frameindex]>; 3 4def simm9_addiusp : Operand<i32> { 5 let EncoderMethod = "getSImm9AddiuspValue"; 6 let DecoderMethod = "DecodeSimm9SP"; 7} 8 9def uimm3_shift : Operand<i32> { 10 let EncoderMethod = "getUImm3Mod8Encoding"; 11 let DecoderMethod = "DecodePOOL16BEncodedField"; 12} 13 14def simm3_lsa2 : Operand<i32> { 15 let EncoderMethod = "getSImm3Lsa2Value"; 16 let DecoderMethod = "DecodeAddiur2Simm7"; 17} 18 19def uimm4_andi : Operand<i32> { 20 let EncoderMethod = "getUImm4AndValue"; 21 let DecoderMethod = "DecodeANDI16Imm"; 22} 23 24def immSExtAddiur2 : ImmLeaf<i32, [{return Imm == 1 || Imm == -1 || 25 ((Imm % 4 == 0) && 26 Imm < 28 && Imm > 0);}]>; 27 28def immSExtAddius5 : ImmLeaf<i32, [{return Imm >= -8 && Imm <= 7;}]>; 29 30def immZExtAndi16 : ImmLeaf<i32, 31 [{return (Imm == 128 || (Imm >= 1 && Imm <= 4) || Imm == 7 || Imm == 8 || 32 Imm == 15 || Imm == 16 || Imm == 31 || Imm == 32 || Imm == 63 || 33 Imm == 64 || Imm == 255 || Imm == 32768 || Imm == 65535 );}]>; 34 35def immZExt2Shift : ImmLeaf<i32, [{return Imm >= 1 && Imm <= 8;}]>; 36 37def immLi16 : ImmLeaf<i32, [{return Imm >= -1 && Imm <= 126;}]>; 38 39def MicroMipsMemGPRMM16AsmOperand : AsmOperandClass { 40 let Name = "MicroMipsMem"; 41 let RenderMethod = "addMicroMipsMemOperands"; 42 let ParserMethod = "parseMemOperand"; 43 let PredicateMethod = "isMemWithGRPMM16Base"; 44} 45 46// Define the classes of pointers used by microMIPS. 47// The numbers must match those in MipsRegisterInfo::MipsPtrClass. 48def ptr_gpr16mm_rc : PointerLikeRegClass<1>; 49def ptr_sp_rc : PointerLikeRegClass<2>; 50def ptr_gp_rc : PointerLikeRegClass<3>; 51 52class mem_mm_4_generic : Operand<i32> { 53 let PrintMethod = "printMemOperand"; 54 let MIOperandInfo = (ops ptr_gpr16mm_rc, simm4); 55 let OperandType = "OPERAND_MEMORY"; 56 let ParserMatchClass = MicroMipsMemGPRMM16AsmOperand; 57} 58 59def mem_mm_4 : mem_mm_4_generic { 60 let EncoderMethod = "getMemEncodingMMImm4"; 61} 62 63def mem_mm_4_lsl1 : mem_mm_4_generic { 64 let EncoderMethod = "getMemEncodingMMImm4Lsl1"; 65} 66 67def mem_mm_4_lsl2 : mem_mm_4_generic { 68 let EncoderMethod = "getMemEncodingMMImm4Lsl2"; 69} 70 71def MicroMipsMemSPAsmOperand : AsmOperandClass { 72 let Name = "MicroMipsMemSP"; 73 let RenderMethod = "addMemOperands"; 74 let ParserMethod = "parseMemOperand"; 75 let PredicateMethod = "isMemWithUimmWordAlignedOffsetSP<7>"; 76} 77 78def MicroMipsMemGPAsmOperand : AsmOperandClass { 79 let Name = "MicroMipsMemGP"; 80 let RenderMethod = "addMemOperands"; 81 let ParserMethod = "parseMemOperand"; 82 let PredicateMethod = "isMemWithSimmWordAlignedOffsetGP<9>"; 83} 84 85def mem_mm_sp_imm5_lsl2 : Operand<i32> { 86 let PrintMethod = "printMemOperand"; 87 let MIOperandInfo = (ops ptr_sp_rc:$base, simm5:$offset); 88 let OperandType = "OPERAND_MEMORY"; 89 let ParserMatchClass = MicroMipsMemSPAsmOperand; 90 let EncoderMethod = "getMemEncodingMMSPImm5Lsl2"; 91} 92 93def mem_mm_gp_simm7_lsl2 : Operand<i32> { 94 let PrintMethod = "printMemOperand"; 95 let MIOperandInfo = (ops ptr_gp_rc:$base, simm7_lsl2:$offset); 96 let OperandType = "OPERAND_MEMORY"; 97 let ParserMatchClass = MicroMipsMemGPAsmOperand; 98 let EncoderMethod = "getMemEncodingMMGPImm7Lsl2"; 99} 100 101def mem_mm_9 : Operand<i32> { 102 let PrintMethod = "printMemOperand"; 103 let MIOperandInfo = (ops ptr_rc, simm9); 104 let EncoderMethod = "getMemEncodingMMImm9"; 105 let ParserMatchClass = MipsMemSimm9AsmOperand; 106 let OperandType = "OPERAND_MEMORY"; 107} 108 109def mem_mm_12 : Operand<i32> { 110 let PrintMethod = "printMemOperand"; 111 let MIOperandInfo = (ops ptr_rc, simm12); 112 let EncoderMethod = "getMemEncodingMMImm12"; 113 let ParserMatchClass = MipsMemAsmOperand; 114 let OperandType = "OPERAND_MEMORY"; 115} 116 117def mem_mm_16 : Operand<i32> { 118 let PrintMethod = "printMemOperand"; 119 let MIOperandInfo = (ops ptr_rc, simm16); 120 let EncoderMethod = "getMemEncodingMMImm16"; 121 let ParserMatchClass = MipsMemAsmOperand; 122 let OperandType = "OPERAND_MEMORY"; 123} 124 125def MipsMemUimm4AsmOperand : AsmOperandClass { 126 let Name = "MemOffsetUimm4"; 127 let SuperClasses = [MipsMemAsmOperand]; 128 let RenderMethod = "addMemOperands"; 129 let ParserMethod = "parseMemOperand"; 130 let PredicateMethod = "isMemWithUimmOffsetSP<6>"; 131} 132 133def mem_mm_4sp : Operand<i32> { 134 let PrintMethod = "printMemOperand"; 135 let MIOperandInfo = (ops ptr_sp_rc, uimm8); 136 let EncoderMethod = "getMemEncodingMMImm4sp"; 137 let ParserMatchClass = MipsMemUimm4AsmOperand; 138 let OperandType = "OPERAND_MEMORY"; 139} 140 141def jmptarget_mm : Operand<OtherVT> { 142 let EncoderMethod = "getJumpTargetOpValueMM"; 143} 144 145def calltarget_mm : Operand<iPTR> { 146 let EncoderMethod = "getJumpTargetOpValueMM"; 147} 148 149def brtarget7_mm : Operand<OtherVT> { 150 let EncoderMethod = "getBranchTarget7OpValueMM"; 151 let OperandType = "OPERAND_PCREL"; 152 let DecoderMethod = "DecodeBranchTarget7MM"; 153 let ParserMatchClass = MipsJumpTargetAsmOperand; 154} 155 156def brtarget10_mm : Operand<OtherVT> { 157 let EncoderMethod = "getBranchTargetOpValueMMPC10"; 158 let OperandType = "OPERAND_PCREL"; 159 let DecoderMethod = "DecodeBranchTarget10MM"; 160 let ParserMatchClass = MipsJumpTargetAsmOperand; 161} 162 163def brtarget_mm : Operand<OtherVT> { 164 let EncoderMethod = "getBranchTargetOpValueMM"; 165 let OperandType = "OPERAND_PCREL"; 166 let DecoderMethod = "DecodeBranchTargetMM"; 167 let ParserMatchClass = MipsJumpTargetAsmOperand; 168} 169 170def simm23_lsl2 : Operand<i32> { 171 let EncoderMethod = "getSimm23Lsl2Encoding"; 172 let DecoderMethod = "DecodeSimm23Lsl2"; 173} 174 175class CompactBranchMM<string opstr, DAGOperand opnd, PatFrag cond_op, 176 RegisterOperand RO> : 177 InstSE<(outs), (ins RO:$rs, opnd:$offset), 178 !strconcat(opstr, "\t$rs, $offset"), [], II_BCCZC, FrmI> { 179 let isBranch = 1; 180 let isTerminator = 1; 181 let hasDelaySlot = 0; 182 let Defs = [AT]; 183} 184 185let canFoldAsLoad = 1 in 186class LoadLeftRightMM<string opstr, SDNode OpNode, RegisterOperand RO, 187 Operand MemOpnd> : 188 InstSE<(outs RO:$rt), (ins MemOpnd:$addr, RO:$src), 189 !strconcat(opstr, "\t$rt, $addr"), 190 [(set RO:$rt, (OpNode addrimm12:$addr, RO:$src))], 191 NoItinerary, FrmI> { 192 let DecoderMethod = "DecodeMemMMImm12"; 193 string Constraints = "$src = $rt"; 194} 195 196class StoreLeftRightMM<string opstr, SDNode OpNode, RegisterOperand RO, 197 Operand MemOpnd>: 198 InstSE<(outs), (ins RO:$rt, MemOpnd:$addr), 199 !strconcat(opstr, "\t$rt, $addr"), 200 [(OpNode RO:$rt, addrimm12:$addr)], NoItinerary, FrmI> { 201 let DecoderMethod = "DecodeMemMMImm12"; 202} 203 204/// A register pair used by movep instruction. 205def MovePRegPairAsmOperand : AsmOperandClass { 206 let Name = "MovePRegPair"; 207 let ParserMethod = "parseMovePRegPair"; 208 let PredicateMethod = "isMovePRegPair"; 209} 210 211def movep_regpair : Operand<i32> { 212 let EncoderMethod = "getMovePRegPairOpValue"; 213 let ParserMatchClass = MovePRegPairAsmOperand; 214 let PrintMethod = "printRegisterList"; 215 let DecoderMethod = "DecodeMovePRegPair"; 216 let MIOperandInfo = (ops ptr_rc, ptr_rc); 217} 218 219class MovePMM16<string opstr, RegisterOperand RO> : 220MicroMipsInst16<(outs movep_regpair:$dst_regs), (ins RO:$rs, RO:$rt), 221 !strconcat(opstr, "\t$dst_regs, $rs, $rt"), [], 222 NoItinerary, FrmR> { 223 let isReMaterializable = 1; 224} 225 226/// A register pair used by load/store pair instructions. 227def RegPairAsmOperand : AsmOperandClass { 228 let Name = "RegPair"; 229 let ParserMethod = "parseRegisterPair"; 230 let PredicateMethod = "isRegPair"; 231} 232 233def regpair : Operand<i32> { 234 let EncoderMethod = "getRegisterPairOpValue"; 235 let ParserMatchClass = RegPairAsmOperand; 236 let PrintMethod = "printRegisterPair"; 237 let DecoderMethod = "DecodeRegPairOperand"; 238 let MIOperandInfo = (ops ptr_rc, ptr_rc); 239} 240 241class StorePairMM<string opstr, InstrItinClass Itin = NoItinerary, 242 ComplexPattern Addr = addr> : 243 InstSE<(outs), (ins regpair:$rt, mem_simm12:$addr), 244 !strconcat(opstr, "\t$rt, $addr"), [], Itin, FrmI, opstr> { 245 let DecoderMethod = "DecodeMemMMImm12"; 246 let mayStore = 1; 247} 248 249class LoadPairMM<string opstr, InstrItinClass Itin = NoItinerary, 250 ComplexPattern Addr = addr> : 251 InstSE<(outs regpair:$rt), (ins mem_simm12:$addr), 252 !strconcat(opstr, "\t$rt, $addr"), [], Itin, FrmI, opstr> { 253 let DecoderMethod = "DecodeMemMMImm12"; 254 let mayLoad = 1; 255} 256 257class LLBaseMM<string opstr, RegisterOperand RO> : 258 InstSE<(outs RO:$rt), (ins mem_mm_12:$addr), 259 !strconcat(opstr, "\t$rt, $addr"), [], NoItinerary, FrmI> { 260 let DecoderMethod = "DecodeMemMMImm12"; 261 let mayLoad = 1; 262} 263 264class LLEBaseMM<string opstr, RegisterOperand RO> : 265 InstSE<(outs RO:$rt), (ins mem_simm9:$addr), 266 !strconcat(opstr, "\t$rt, $addr"), [], NoItinerary, FrmI> { 267 let DecoderMethod = "DecodeMemMMImm9"; 268 let mayLoad = 1; 269} 270 271class SCBaseMM<string opstr, RegisterOperand RO> : 272 InstSE<(outs RO:$dst), (ins RO:$rt, mem_mm_12:$addr), 273 !strconcat(opstr, "\t$rt, $addr"), [], NoItinerary, FrmI> { 274 let DecoderMethod = "DecodeMemMMImm12"; 275 let mayStore = 1; 276 let Constraints = "$rt = $dst"; 277} 278 279class SCEBaseMM<string opstr, RegisterOperand RO> : 280 InstSE<(outs RO:$dst), (ins RO:$rt, mem_simm9:$addr), 281 !strconcat(opstr, "\t$rt, $addr"), [], NoItinerary, FrmI> { 282 let DecoderMethod = "DecodeMemMMImm9"; 283 let mayStore = 1; 284 let Constraints = "$rt = $dst"; 285} 286 287class LoadMM<string opstr, DAGOperand RO, SDPatternOperator OpNode = null_frag, 288 InstrItinClass Itin = NoItinerary, DAGOperand MO = mem_mm_12> : 289 InstSE<(outs RO:$rt), (ins MO:$addr), 290 !strconcat(opstr, "\t$rt, $addr"), 291 [(set RO:$rt, (OpNode addrimm12:$addr))], Itin, FrmI, opstr> { 292 let DecoderMethod = "DecodeMemMMImm12"; 293 let canFoldAsLoad = 1; 294 let mayLoad = 1; 295} 296 297class ArithRMM16<string opstr, RegisterOperand RO, bit isComm = 0, 298 InstrItinClass Itin = NoItinerary, 299 SDPatternOperator OpNode = null_frag> : 300 MicroMipsInst16<(outs RO:$rd), (ins RO:$rs, RO:$rt), 301 !strconcat(opstr, "\t$rd, $rs, $rt"), 302 [(set RO:$rd, (OpNode RO:$rs, RO:$rt))], Itin, FrmR> { 303 let isCommutable = isComm; 304} 305 306class AndImmMM16<string opstr, RegisterOperand RO, 307 InstrItinClass Itin = NoItinerary> : 308 MicroMipsInst16<(outs RO:$rd), (ins RO:$rs, uimm4_andi:$imm), 309 !strconcat(opstr, "\t$rd, $rs, $imm"), [], Itin, FrmI>; 310 311class LogicRMM16<string opstr, RegisterOperand RO, 312 InstrItinClass Itin = NoItinerary, 313 SDPatternOperator OpNode = null_frag> : 314 MicroMipsInst16<(outs RO:$dst), (ins RO:$rs, RO:$rt), 315 !strconcat(opstr, "\t$rt, $rs"), 316 [(set RO:$dst, (OpNode RO:$rs, RO:$rt))], Itin, FrmR> { 317 let isCommutable = 1; 318 let Constraints = "$rt = $dst"; 319} 320 321class NotMM16<string opstr, RegisterOperand RO> : 322 MicroMipsInst16<(outs RO:$rt), (ins RO:$rs), 323 !strconcat(opstr, "\t$rt, $rs"), 324 [(set RO:$rt, (not RO:$rs))], NoItinerary, FrmR>; 325 326class ShiftIMM16<string opstr, Operand ImmOpnd, RegisterOperand RO, 327 InstrItinClass Itin = NoItinerary> : 328 MicroMipsInst16<(outs RO:$rd), (ins RO:$rt, ImmOpnd:$shamt), 329 !strconcat(opstr, "\t$rd, $rt, $shamt"), [], Itin, FrmR>; 330 331class LoadMM16<string opstr, DAGOperand RO, SDPatternOperator OpNode, 332 InstrItinClass Itin, Operand MemOpnd> : 333 MicroMipsInst16<(outs RO:$rt), (ins MemOpnd:$addr), 334 !strconcat(opstr, "\t$rt, $addr"), [], Itin, FrmI> { 335 let DecoderMethod = "DecodeMemMMImm4"; 336 let canFoldAsLoad = 1; 337 let mayLoad = 1; 338} 339 340class StoreMM16<string opstr, DAGOperand RTOpnd, DAGOperand RO, 341 SDPatternOperator OpNode, InstrItinClass Itin, 342 Operand MemOpnd> : 343 MicroMipsInst16<(outs), (ins RTOpnd:$rt, MemOpnd:$addr), 344 !strconcat(opstr, "\t$rt, $addr"), [], Itin, FrmI> { 345 let DecoderMethod = "DecodeMemMMImm4"; 346 let mayStore = 1; 347} 348 349class LoadSPMM16<string opstr, DAGOperand RO, InstrItinClass Itin, 350 Operand MemOpnd> : 351 MicroMipsInst16<(outs RO:$rt), (ins MemOpnd:$offset), 352 !strconcat(opstr, "\t$rt, $offset"), [], Itin, FrmI> { 353 let DecoderMethod = "DecodeMemMMSPImm5Lsl2"; 354 let canFoldAsLoad = 1; 355 let mayLoad = 1; 356} 357 358class StoreSPMM16<string opstr, DAGOperand RO, InstrItinClass Itin, 359 Operand MemOpnd> : 360 MicroMipsInst16<(outs), (ins RO:$rt, MemOpnd:$offset), 361 !strconcat(opstr, "\t$rt, $offset"), [], Itin, FrmI> { 362 let DecoderMethod = "DecodeMemMMSPImm5Lsl2"; 363 let mayStore = 1; 364} 365 366class LoadGPMM16<string opstr, DAGOperand RO, InstrItinClass Itin, 367 Operand MemOpnd> : 368 MicroMipsInst16<(outs RO:$rt), (ins MemOpnd:$offset), 369 !strconcat(opstr, "\t$rt, $offset"), [], Itin, FrmI> { 370 let DecoderMethod = "DecodeMemMMGPImm7Lsl2"; 371 let canFoldAsLoad = 1; 372 let mayLoad = 1; 373} 374 375class AddImmUR2<string opstr, RegisterOperand RO> : 376 MicroMipsInst16<(outs RO:$rd), (ins RO:$rs, simm3_lsa2:$imm), 377 !strconcat(opstr, "\t$rd, $rs, $imm"), 378 [], NoItinerary, FrmR> { 379 let isCommutable = 1; 380} 381 382class AddImmUS5<string opstr, RegisterOperand RO> : 383 MicroMipsInst16<(outs RO:$dst), (ins RO:$rd, simm4:$imm), 384 !strconcat(opstr, "\t$rd, $imm"), [], NoItinerary, FrmR> { 385 let Constraints = "$rd = $dst"; 386} 387 388class AddImmUR1SP<string opstr, RegisterOperand RO> : 389 MicroMipsInst16<(outs RO:$rd), (ins uimm6_lsl2:$imm), 390 !strconcat(opstr, "\t$rd, $imm"), [], NoItinerary, FrmR>; 391 392class AddImmUSP<string opstr> : 393 MicroMipsInst16<(outs), (ins simm9_addiusp:$imm), 394 !strconcat(opstr, "\t$imm"), [], NoItinerary, FrmI>; 395 396class MoveFromHILOMM<string opstr, RegisterOperand RO, Register UseReg> : 397 MicroMipsInst16<(outs RO:$rd), (ins), !strconcat(opstr, "\t$rd"), 398 [], II_MFHI_MFLO, FrmR> { 399 let Uses = [UseReg]; 400 let hasSideEffects = 0; 401} 402 403class MoveMM16<string opstr, RegisterOperand RO, bit isComm = 0, 404 InstrItinClass Itin = NoItinerary> : 405 MicroMipsInst16<(outs RO:$rd), (ins RO:$rs), 406 !strconcat(opstr, "\t$rd, $rs"), [], Itin, FrmR> { 407 let isCommutable = isComm; 408 let isReMaterializable = 1; 409} 410 411class LoadImmMM16<string opstr, Operand Od, RegisterOperand RO> : 412 MicroMipsInst16<(outs RO:$rd), (ins Od:$imm), 413 !strconcat(opstr, "\t$rd, $imm"), [], NoItinerary, FrmI> { 414 let isReMaterializable = 1; 415} 416 417// 16-bit Jump and Link (Call) 418class JumpLinkRegMM16<string opstr, RegisterOperand RO> : 419 MicroMipsInst16<(outs), (ins RO:$rs), !strconcat(opstr, "\t$rs"), 420 [(MipsJmpLink RO:$rs)], II_JALR, FrmR>, PredicateControl { 421 let isCall = 1; 422 let hasDelaySlot = 1; 423 let Defs = [RA]; 424} 425 426// 16-bit Jump Reg 427class JumpRegMM16<string opstr, RegisterOperand RO> : 428 MicroMipsInst16<(outs), (ins RO:$rs), !strconcat(opstr, "\t$rs"), 429 [], II_JR, FrmR> { 430 let hasDelaySlot = 1; 431 let isBranch = 1; 432 let isIndirectBranch = 1; 433} 434 435// Base class for JRADDIUSP instruction. 436class JumpRAddiuStackMM16 : 437 MicroMipsInst16<(outs), (ins uimm5_lsl2:$imm), "jraddiusp\t$imm", 438 [], II_JRADDIUSP, FrmR> { 439 let isTerminator = 1; 440 let isBarrier = 1; 441 let isBranch = 1; 442 let isIndirectBranch = 1; 443} 444 445// 16-bit Jump and Link (Call) - Short Delay Slot 446class JumpLinkRegSMM16<string opstr, RegisterOperand RO> : 447 MicroMipsInst16<(outs), (ins RO:$rs), !strconcat(opstr, "\t$rs"), 448 [], II_JALRS, FrmR> { 449 let isCall = 1; 450 let hasDelaySlot = 1; 451 let Defs = [RA]; 452} 453 454// 16-bit Jump Register Compact - No delay slot 455class JumpRegCMM16<string opstr, RegisterOperand RO> : 456 MicroMipsInst16<(outs), (ins RO:$rs), !strconcat(opstr, "\t$rs"), 457 [], II_JRC, FrmR> { 458 let isTerminator = 1; 459 let isBarrier = 1; 460 let isBranch = 1; 461 let isIndirectBranch = 1; 462} 463 464// Break16 and Sdbbp16 465class BrkSdbbp16MM<string opstr> : 466 MicroMipsInst16<(outs), (ins uimm4:$code_), 467 !strconcat(opstr, "\t$code_"), 468 [], NoItinerary, FrmOther>; 469 470class CBranchZeroMM<string opstr, DAGOperand opnd, RegisterOperand RO> : 471 MicroMipsInst16<(outs), (ins RO:$rs, opnd:$offset), 472 !strconcat(opstr, "\t$rs, $offset"), [], II_BCCZ, FrmI> { 473 let isBranch = 1; 474 let isTerminator = 1; 475 let hasDelaySlot = 1; 476 let Defs = [AT]; 477} 478 479// MicroMIPS Jump and Link (Call) - Short Delay Slot 480let isCall = 1, hasDelaySlot = 1, Defs = [RA] in { 481 class JumpLinkMM<string opstr, DAGOperand opnd> : 482 InstSE<(outs), (ins opnd:$target), !strconcat(opstr, "\t$target"), 483 [], II_JALS, FrmJ, opstr> { 484 let DecoderMethod = "DecodeJumpTargetMM"; 485 } 486 487 class JumpLinkRegMM<string opstr, RegisterOperand RO>: 488 InstSE<(outs RO:$rd), (ins RO:$rs), !strconcat(opstr, "\t$rd, $rs"), 489 [], II_JALRS, FrmR>; 490 491 class BranchCompareToZeroLinkMM<string opstr, DAGOperand opnd, 492 RegisterOperand RO> : 493 InstSE<(outs), (ins RO:$rs, opnd:$offset), 494 !strconcat(opstr, "\t$rs, $offset"), [], II_BCCZALS, FrmI, opstr>; 495} 496 497class LoadWordIndexedScaledMM<string opstr, RegisterOperand RO, 498 InstrItinClass Itin = NoItinerary, 499 SDPatternOperator OpNode = null_frag> : 500 InstSE<(outs RO:$rd), (ins PtrRC:$base, PtrRC:$index), 501 !strconcat(opstr, "\t$rd, ${index}(${base})"), [], Itin, FrmFI>; 502 503class PrefetchIndexed<string opstr> : 504 InstSE<(outs), (ins PtrRC:$base, PtrRC:$index, uimm5:$hint), 505 !strconcat(opstr, "\t$hint, ${index}(${base})"), [], NoItinerary, FrmOther>; 506 507class AddImmUPC<string opstr, RegisterOperand RO> : 508 InstSE<(outs RO:$rs), (ins simm23_lsl2:$imm), 509 !strconcat(opstr, "\t$rs, $imm"), [], NoItinerary, FrmR>; 510 511/// A list of registers used by load/store multiple instructions. 512def RegListAsmOperand : AsmOperandClass { 513 let Name = "RegList"; 514 let ParserMethod = "parseRegisterList"; 515} 516 517def reglist : Operand<i32> { 518 let EncoderMethod = "getRegisterListOpValue"; 519 let ParserMatchClass = RegListAsmOperand; 520 let PrintMethod = "printRegisterList"; 521 let DecoderMethod = "DecodeRegListOperand"; 522} 523 524def RegList16AsmOperand : AsmOperandClass { 525 let Name = "RegList16"; 526 let ParserMethod = "parseRegisterList"; 527 let PredicateMethod = "isRegList16"; 528 let RenderMethod = "addRegListOperands"; 529} 530 531def reglist16 : Operand<i32> { 532 let EncoderMethod = "getRegisterListOpValue16"; 533 let DecoderMethod = "DecodeRegListOperand16"; 534 let PrintMethod = "printRegisterList"; 535 let ParserMatchClass = RegList16AsmOperand; 536} 537 538class StoreMultMM<string opstr, 539 InstrItinClass Itin = NoItinerary, ComplexPattern Addr = addr> : 540 InstSE<(outs), (ins reglist:$rt, mem_mm_12:$addr), 541 !strconcat(opstr, "\t$rt, $addr"), [], Itin, FrmI, opstr> { 542 let DecoderMethod = "DecodeMemMMImm12"; 543 let mayStore = 1; 544} 545 546class LoadMultMM<string opstr, 547 InstrItinClass Itin = NoItinerary, ComplexPattern Addr = addr> : 548 InstSE<(outs reglist:$rt), (ins mem_mm_12:$addr), 549 !strconcat(opstr, "\t$rt, $addr"), [], Itin, FrmI, opstr> { 550 let DecoderMethod = "DecodeMemMMImm12"; 551 let mayLoad = 1; 552} 553 554class StoreMultMM16<string opstr, 555 InstrItinClass Itin = NoItinerary, 556 ComplexPattern Addr = addr> : 557 MicroMipsInst16<(outs), (ins reglist16:$rt, mem_mm_4sp:$addr), 558 !strconcat(opstr, "\t$rt, $addr"), [], Itin, FrmI> { 559 let DecoderMethod = "DecodeMemMMReglistImm4Lsl2"; 560 let mayStore = 1; 561} 562 563class LoadMultMM16<string opstr, 564 InstrItinClass Itin = NoItinerary, 565 ComplexPattern Addr = addr> : 566 MicroMipsInst16<(outs reglist16:$rt), (ins mem_mm_4sp:$addr), 567 !strconcat(opstr, "\t$rt, $addr"), [], Itin, FrmI> { 568 let DecoderMethod = "DecodeMemMMReglistImm4Lsl2"; 569 let mayLoad = 1; 570} 571 572class UncondBranchMM16<string opstr> : 573 MicroMipsInst16<(outs), (ins brtarget10_mm:$offset), 574 !strconcat(opstr, "\t$offset"), 575 [], II_B, FrmI> { 576 let isBranch = 1; 577 let isTerminator = 1; 578 let isBarrier = 1; 579 let hasDelaySlot = 1; 580 let Predicates = [RelocPIC, InMicroMips]; 581 let Defs = [AT]; 582} 583 584def ADDU16_MM : ArithRMM16<"addu16", GPRMM16Opnd, 1, II_ADDU, add>, 585 ARITH_FM_MM16<0>, ISA_MICROMIPS_NOT_32R6_64R6; 586def AND16_MM : LogicRMM16<"and16", GPRMM16Opnd, II_AND, and>, 587 LOGIC_FM_MM16<0x2>, ISA_MICROMIPS_NOT_32R6_64R6; 588def ANDI16_MM : AndImmMM16<"andi16", GPRMM16Opnd, II_AND>, ANDI_FM_MM16<0x0b>, 589 ISA_MICROMIPS_NOT_32R6_64R6; 590def NOT16_MM : NotMM16<"not16", GPRMM16Opnd>, LOGIC_FM_MM16<0x0>, 591 ISA_MICROMIPS_NOT_32R6_64R6; 592def OR16_MM : LogicRMM16<"or16", GPRMM16Opnd, II_OR, or>, LOGIC_FM_MM16<0x3>, 593 ISA_MICROMIPS_NOT_32R6_64R6; 594def SLL16_MM : ShiftIMM16<"sll16", uimm3_shift, GPRMM16Opnd, II_SLL>, 595 SHIFT_FM_MM16<0>, ISA_MICROMIPS_NOT_32R6_64R6; 596def SRL16_MM : ShiftIMM16<"srl16", uimm3_shift, GPRMM16Opnd, II_SRL>, 597 SHIFT_FM_MM16<1>, ISA_MICROMIPS_NOT_32R6_64R6; 598 599def SUBU16_MM : ArithRMM16<"subu16", GPRMM16Opnd, 0, II_SUBU, sub>, 600 ARITH_FM_MM16<1>, ISA_MICROMIPS_NOT_32R6_64R6; 601def XOR16_MM : LogicRMM16<"xor16", GPRMM16Opnd, II_XOR, xor>, 602 LOGIC_FM_MM16<0x1>, ISA_MICROMIPS_NOT_32R6_64R6; 603def LBU16_MM : LoadMM16<"lbu16", GPRMM16Opnd, zextloadi8, II_LBU, 604 mem_mm_4>, LOAD_STORE_FM_MM16<0x02>; 605def LHU16_MM : LoadMM16<"lhu16", GPRMM16Opnd, zextloadi16, II_LHU, 606 mem_mm_4_lsl1>, LOAD_STORE_FM_MM16<0x0a>; 607def LW16_MM : LoadMM16<"lw16", GPRMM16Opnd, load, II_LW, mem_mm_4_lsl2>, 608 LOAD_STORE_FM_MM16<0x1a>; 609def SB16_MM : StoreMM16<"sb16", GPRMM16OpndZero, GPRMM16Opnd, truncstorei8, 610 II_SB, mem_mm_4>, LOAD_STORE_FM_MM16<0x22>; 611def SH16_MM : StoreMM16<"sh16", GPRMM16OpndZero, GPRMM16Opnd, truncstorei16, 612 II_SH, mem_mm_4_lsl1>, 613 LOAD_STORE_FM_MM16<0x2a>; 614def SW16_MM : StoreMM16<"sw16", GPRMM16OpndZero, GPRMM16Opnd, store, II_SW, 615 mem_mm_4_lsl2>, LOAD_STORE_FM_MM16<0x3a>; 616def LWGP_MM : LoadGPMM16<"lw", GPRMM16Opnd, II_LW, mem_mm_gp_simm7_lsl2>, 617 LOAD_GP_FM_MM16<0x19>; 618def LWSP_MM : LoadSPMM16<"lw", GPR32Opnd, II_LW, mem_mm_sp_imm5_lsl2>, 619 LOAD_STORE_SP_FM_MM16<0x12>; 620def SWSP_MM : StoreSPMM16<"sw", GPR32Opnd, II_SW, mem_mm_sp_imm5_lsl2>, 621 LOAD_STORE_SP_FM_MM16<0x32>; 622def ADDIUR1SP_MM : AddImmUR1SP<"addiur1sp", GPRMM16Opnd>, ADDIUR1SP_FM_MM16; 623def ADDIUR2_MM : AddImmUR2<"addiur2", GPRMM16Opnd>, ADDIUR2_FM_MM16; 624def ADDIUS5_MM : AddImmUS5<"addius5", GPR32Opnd>, ADDIUS5_FM_MM16; 625def ADDIUSP_MM : AddImmUSP<"addiusp">, ADDIUSP_FM_MM16; 626def MFHI16_MM : MoveFromHILOMM<"mfhi", GPR32Opnd, AC0>, MFHILO_FM_MM16<0x10>; 627def MFLO16_MM : MoveFromHILOMM<"mflo", GPR32Opnd, AC0>, MFHILO_FM_MM16<0x12>; 628def MOVE16_MM : MoveMM16<"move", GPR32Opnd>, MOVE_FM_MM16<0x03>; 629def MOVEP_MM : MovePMM16<"movep", GPRMM16OpndMoveP>, MOVEP_FM_MM16; 630def LI16_MM : LoadImmMM16<"li16", li16_imm, GPRMM16Opnd>, LI_FM_MM16, 631 IsAsCheapAsAMove; 632def JALR16_MM : JumpLinkRegMM16<"jalr", GPR32Opnd>, JALR_FM_MM16<0x0e>, 633 ISA_MICROMIPS32_NOT_MIPS32R6; 634def JALRS16_MM : JumpLinkRegSMM16<"jalrs16", GPR32Opnd>, JALR_FM_MM16<0x0f>; 635def JRC16_MM : JumpRegCMM16<"jrc", GPR32Opnd>, JALR_FM_MM16<0x0d>; 636def JRADDIUSP : JumpRAddiuStackMM16, JRADDIUSP_FM_MM16<0x18>; 637def JR16_MM : JumpRegMM16<"jr16", GPR32Opnd>, JALR_FM_MM16<0x0c>; 638def BEQZ16_MM : CBranchZeroMM<"beqz16", brtarget7_mm, GPRMM16Opnd>, 639 BEQNEZ_FM_MM16<0x23>; 640def BNEZ16_MM : CBranchZeroMM<"bnez16", brtarget7_mm, GPRMM16Opnd>, 641 BEQNEZ_FM_MM16<0x2b>; 642def B16_MM : UncondBranchMM16<"b16">, B16_FM; 643def BREAK16_MM : BrkSdbbp16MM<"break16">, BRKSDBBP16_FM_MM<0x28>, 644 ISA_MICROMIPS_NOT_32R6_64R6; 645def SDBBP16_MM : BrkSdbbp16MM<"sdbbp16">, BRKSDBBP16_FM_MM<0x2C>, 646 ISA_MICROMIPS_NOT_32R6_64R6; 647 648let DecoderNamespace = "MicroMips" in { 649 /// Load and Store Instructions - multiple 650 def SWM16_MM : StoreMultMM16<"swm16">, LWM_FM_MM16<0x5>, 651 ISA_MICROMIPS32_NOT_MIPS32R6; 652 def LWM16_MM : LoadMultMM16<"lwm16">, LWM_FM_MM16<0x4>, 653 ISA_MICROMIPS32_NOT_MIPS32R6; 654} 655 656class WaitMM<string opstr> : 657 InstSE<(outs), (ins uimm10:$code_), !strconcat(opstr, "\t$code_"), [], 658 NoItinerary, FrmOther, opstr>; 659 660let DecoderNamespace = "MicroMips", Predicates = [InMicroMips] in { 661 /// Compact Branch Instructions 662 def BEQZC_MM : CompactBranchMM<"beqzc", brtarget_mm, seteq, GPR32Opnd>, 663 COMPACT_BRANCH_FM_MM<0x7>; 664 def BNEZC_MM : CompactBranchMM<"bnezc", brtarget_mm, setne, GPR32Opnd>, 665 COMPACT_BRANCH_FM_MM<0x5>; 666 667 /// Arithmetic Instructions (ALU Immediate) 668 def ADDiu_MM : MMRel, ArithLogicI<"addiu", simm16, GPR32Opnd>, 669 ADDI_FM_MM<0xc>; 670 def ADDi_MM : MMRel, ArithLogicI<"addi", simm16, GPR32Opnd>, 671 ADDI_FM_MM<0x4>; 672 def SLTi_MM : MMRel, SetCC_I<"slti", setlt, simm16, immSExt16, GPR32Opnd>, 673 SLTI_FM_MM<0x24>; 674 def SLTiu_MM : MMRel, SetCC_I<"sltiu", setult, simm16, immSExt16, GPR32Opnd>, 675 SLTI_FM_MM<0x2c>; 676 def ANDi_MM : MMRel, ArithLogicI<"andi", uimm16, GPR32Opnd>, 677 ADDI_FM_MM<0x34>; 678 def ORi_MM : MMRel, ArithLogicI<"ori", uimm16, GPR32Opnd, II_ORI, immZExt16, 679 or>, ADDI_FM_MM<0x14>; 680 def XORi_MM : MMRel, ArithLogicI<"xori", uimm16, GPR32Opnd, II_XORI, 681 immZExt16, xor>, ADDI_FM_MM<0x1c>; 682 def LUi_MM : MMRel, LoadUpper<"lui", GPR32Opnd, uimm16_relaxed>, LUI_FM_MM; 683 684 def LEA_ADDiu_MM : MMRel, EffectiveAddress<"addiu", GPR32Opnd>, 685 LW_FM_MM<0xc>; 686 687 /// Arithmetic Instructions (3-Operand, R-Type) 688 def ADDu_MM : MMRel, ArithLogicR<"addu", GPR32Opnd, 1, II_ADDU, add>, 689 ADD_FM_MM<0, 0x150>; 690 def SUBu_MM : MMRel, ArithLogicR<"subu", GPR32Opnd, 0, II_SUBU, sub>, 691 ADD_FM_MM<0, 0x1d0>; 692 def MUL_MM : MMRel, ArithLogicR<"mul", GPR32Opnd>, ADD_FM_MM<0, 0x210>; 693 def ADD_MM : MMRel, ArithLogicR<"add", GPR32Opnd>, ADD_FM_MM<0, 0x110>; 694 def SUB_MM : MMRel, ArithLogicR<"sub", GPR32Opnd>, ADD_FM_MM<0, 0x190>; 695 def SLT_MM : MMRel, SetCC_R<"slt", setlt, GPR32Opnd>, ADD_FM_MM<0, 0x350>; 696 def SLTu_MM : MMRel, SetCC_R<"sltu", setult, GPR32Opnd>, 697 ADD_FM_MM<0, 0x390>; 698 def AND_MM : MMRel, ArithLogicR<"and", GPR32Opnd, 1, II_AND, and>, 699 ADD_FM_MM<0, 0x250>; 700 def OR_MM : MMRel, ArithLogicR<"or", GPR32Opnd, 1, II_OR, or>, 701 ADD_FM_MM<0, 0x290>; 702 def XOR_MM : MMRel, ArithLogicR<"xor", GPR32Opnd, 1, II_XOR, xor>, 703 ADD_FM_MM<0, 0x310>; 704 def NOR_MM : MMRel, LogicNOR<"nor", GPR32Opnd>, ADD_FM_MM<0, 0x2d0>; 705 def MULT_MM : MMRel, Mult<"mult", II_MULT, GPR32Opnd, [HI0, LO0]>, 706 MULT_FM_MM<0x22c>; 707 def MULTu_MM : MMRel, Mult<"multu", II_MULTU, GPR32Opnd, [HI0, LO0]>, 708 MULT_FM_MM<0x26c>; 709 def SDIV_MM : MMRel, Div<"div", II_DIV, GPR32Opnd, [HI0, LO0]>, 710 MULT_FM_MM<0x2ac>, ISA_MIPS1_NOT_32R6_64R6; 711 def UDIV_MM : MMRel, Div<"divu", II_DIVU, GPR32Opnd, [HI0, LO0]>, 712 MULT_FM_MM<0x2ec>, ISA_MIPS1_NOT_32R6_64R6; 713 714 /// Arithmetic Instructions with PC and Immediate 715 def ADDIUPC_MM : AddImmUPC<"addiupc", GPRMM16Opnd>, ADDIUPC_FM_MM; 716 717 /// Shift Instructions 718 def SLL_MM : MMRel, shift_rotate_imm<"sll", uimm5, GPR32Opnd, II_SLL>, 719 SRA_FM_MM<0, 0>; 720 def SRL_MM : MMRel, shift_rotate_imm<"srl", uimm5, GPR32Opnd, II_SRL>, 721 SRA_FM_MM<0x40, 0>; 722 def SRA_MM : MMRel, shift_rotate_imm<"sra", uimm5, GPR32Opnd, II_SRA>, 723 SRA_FM_MM<0x80, 0>; 724 def SLLV_MM : MMRel, shift_rotate_reg<"sllv", GPR32Opnd, II_SLLV>, 725 SRLV_FM_MM<0x10, 0>; 726 def SRLV_MM : MMRel, shift_rotate_reg<"srlv", GPR32Opnd, II_SRLV>, 727 SRLV_FM_MM<0x50, 0>; 728 def SRAV_MM : MMRel, shift_rotate_reg<"srav", GPR32Opnd, II_SRAV>, 729 SRLV_FM_MM<0x90, 0>; 730 def ROTR_MM : MMRel, shift_rotate_imm<"rotr", uimm5, GPR32Opnd, II_ROTR>, 731 SRA_FM_MM<0xc0, 0> { 732 list<dag> Pattern = [(set GPR32Opnd:$rd, 733 (rotr GPR32Opnd:$rt, immZExt5:$shamt))]; 734 } 735 def ROTRV_MM : MMRel, shift_rotate_reg<"rotrv", GPR32Opnd, II_ROTRV>, 736 SRLV_FM_MM<0xd0, 0> { 737 list<dag> Pattern = [(set GPR32Opnd:$rd, 738 (rotr GPR32Opnd:$rt, GPR32Opnd:$rs))]; 739 } 740 741 /// Load and Store Instructions - aligned 742 let DecoderMethod = "DecodeMemMMImm16" in { 743 def LB_MM : Load<"lb", GPR32Opnd>, MMRel, LW_FM_MM<0x7>; 744 def LBu_MM : Load<"lbu", GPR32Opnd>, MMRel, LW_FM_MM<0x5>; 745 def LH_MM : LoadMemory<"lh", GPR32Opnd, mem_simm16, sextloadi16, II_LH, 746 addrDefault>, MMRel, LW_FM_MM<0xf>; 747 def LHu_MM : LoadMemory<"lhu", GPR32Opnd, mem_simm16, zextloadi16, II_LHU>, 748 MMRel, LW_FM_MM<0xd>; 749 def LW_MM : Load<"lw", GPR32Opnd>, MMRel, LW_FM_MM<0x3f>; 750 def SB_MM : Store<"sb", GPR32Opnd>, MMRel, LW_FM_MM<0x6>; 751 def SH_MM : Store<"sh", GPR32Opnd>, MMRel, LW_FM_MM<0xe>; 752 def SW_MM : Store<"sw", GPR32Opnd>, MMRel, LW_FM_MM<0x3e>; 753 } 754 755 let DecoderMethod = "DecodeMemMMImm9" in { 756 def LBE_MM : Load<"lbe", GPR32Opnd>, POOL32C_LHUE_FM_MM<0x18, 0x6, 0x4>; 757 def LBuE_MM : Load<"lbue", GPR32Opnd>, POOL32C_LHUE_FM_MM<0x18, 0x6, 0x0>; 758 def LHE_MM : LoadMemory<"lhe", GPR32Opnd, mem_simm9>, 759 POOL32C_LHUE_FM_MM<0x18, 0x6, 0x5>; 760 def LHuE_MM : LoadMemory<"lhue", GPR32Opnd, mem_simm9>, 761 POOL32C_LHUE_FM_MM<0x18, 0x6, 0x1>; 762 def LWE_MM : LoadMemory<"lwe", GPR32Opnd, mem_simm9>, 763 POOL32C_LHUE_FM_MM<0x18, 0x6, 0x7>; 764 def SBE_MM : StoreMemory<"sbe", GPR32Opnd, mem_simm9>, 765 POOL32C_LHUE_FM_MM<0x18, 0xa, 0x4>; 766 def SHE_MM : StoreMemory<"she", GPR32Opnd, mem_simm9>, 767 POOL32C_LHUE_FM_MM<0x18, 0xa, 0x5>; 768 def SWE_MM : StoreMemory<"swe", GPR32Opnd, mem_simm9>, 769 POOL32C_LHUE_FM_MM<0x18, 0xa, 0x7>; 770 } 771 772 def LWXS_MM : LoadWordIndexedScaledMM<"lwxs", GPR32Opnd>, LWXS_FM_MM<0x118>; 773 774 /// Load and Store Instructions - unaligned 775 def LWL_MM : LoadLeftRightMM<"lwl", MipsLWL, GPR32Opnd, mem_mm_12>, 776 LWL_FM_MM<0x0>; 777 def LWR_MM : LoadLeftRightMM<"lwr", MipsLWR, GPR32Opnd, mem_mm_12>, 778 LWL_FM_MM<0x1>; 779 def SWL_MM : StoreLeftRightMM<"swl", MipsSWL, GPR32Opnd, mem_mm_12>, 780 LWL_FM_MM<0x8>; 781 def SWR_MM : StoreLeftRightMM<"swr", MipsSWR, GPR32Opnd, mem_mm_12>, 782 LWL_FM_MM<0x9>; 783 let DecoderMethod = "DecodeMemMMImm9" in { 784 def LWLE_MM : LoadLeftRightMM<"lwle", MipsLWL, GPR32Opnd, mem_mm_9>, 785 POOL32C_STEVA_LDEVA_FM_MM<0x6, 0x2>; 786 def LWRE_MM : LoadLeftRightMM<"lwre", MipsLWR, GPR32Opnd, mem_mm_9>, 787 POOL32C_STEVA_LDEVA_FM_MM<0x6, 0x3>; 788 def SWLE_MM : StoreLeftRightMM<"swle", MipsSWL, GPR32Opnd, mem_mm_9>, 789 POOL32C_STEVA_LDEVA_FM_MM<0xa, 0x0>; 790 def SWRE_MM : StoreLeftRightMM<"swre", MipsSWR, GPR32Opnd, mem_mm_9>, 791 POOL32C_STEVA_LDEVA_FM_MM<0xa, 0x1>, ISA_MIPS1_NOT_32R6_64R6; 792 } 793 794 /// Load and Store Instructions - multiple 795 def SWM32_MM : StoreMultMM<"swm32">, LWM_FM_MM<0xd>; 796 def LWM32_MM : LoadMultMM<"lwm32">, LWM_FM_MM<0x5>; 797 798 /// Load and Store Pair Instructions 799 def SWP_MM : StorePairMM<"swp">, LWM_FM_MM<0x9>; 800 def LWP_MM : LoadPairMM<"lwp">, LWM_FM_MM<0x1>; 801 802 /// Load and Store multiple pseudo Instructions 803 class LoadWordMultMM<string instr_asm > : 804 MipsAsmPseudoInst<(outs reglist:$rt), (ins mem_mm_12:$addr), 805 !strconcat(instr_asm, "\t$rt, $addr")> ; 806 807 class StoreWordMultMM<string instr_asm > : 808 MipsAsmPseudoInst<(outs), (ins reglist:$rt, mem_mm_12:$addr), 809 !strconcat(instr_asm, "\t$rt, $addr")> ; 810 811 812 def SWM_MM : StoreWordMultMM<"swm">; 813 def LWM_MM : LoadWordMultMM<"lwm">; 814 815 /// Move Conditional 816 def MOVZ_I_MM : MMRel, CMov_I_I_FT<"movz", GPR32Opnd, GPR32Opnd, 817 NoItinerary>, ADD_FM_MM<0, 0x58>; 818 def MOVN_I_MM : MMRel, CMov_I_I_FT<"movn", GPR32Opnd, GPR32Opnd, 819 NoItinerary>, ADD_FM_MM<0, 0x18>; 820 def MOVT_I_MM : MMRel, CMov_F_I_FT<"movt", GPR32Opnd, II_MOVT>, 821 CMov_F_I_FM_MM<0x25>; 822 def MOVF_I_MM : MMRel, CMov_F_I_FT<"movf", GPR32Opnd, II_MOVF>, 823 CMov_F_I_FM_MM<0x5>; 824 825 /// Move to/from HI/LO 826 def MTHI_MM : MMRel, MoveToLOHI<"mthi", GPR32Opnd, [HI0]>, 827 MTLO_FM_MM<0x0b5>; 828 def MTLO_MM : MMRel, MoveToLOHI<"mtlo", GPR32Opnd, [LO0]>, 829 MTLO_FM_MM<0x0f5>; 830 def MFHI_MM : MMRel, MoveFromLOHI<"mfhi", GPR32Opnd, AC0>, 831 MFLO_FM_MM<0x035>; 832 def MFLO_MM : MMRel, MoveFromLOHI<"mflo", GPR32Opnd, AC0>, 833 MFLO_FM_MM<0x075>; 834 835 /// Multiply Add/Sub Instructions 836 def MADD_MM : MMRel, MArithR<"madd", II_MADD, 1>, MULT_FM_MM<0x32c>; 837 def MADDU_MM : MMRel, MArithR<"maddu", II_MADDU, 1>, MULT_FM_MM<0x36c>; 838 def MSUB_MM : MMRel, MArithR<"msub", II_MSUB>, MULT_FM_MM<0x3ac>; 839 def MSUBU_MM : MMRel, MArithR<"msubu", II_MSUBU>, MULT_FM_MM<0x3ec>; 840 841 /// Count Leading 842 def CLZ_MM : MMRel, CountLeading0<"clz", GPR32Opnd>, CLO_FM_MM<0x16c>, 843 ISA_MIPS32; 844 def CLO_MM : MMRel, CountLeading1<"clo", GPR32Opnd>, CLO_FM_MM<0x12c>, 845 ISA_MIPS32; 846 847 /// Sign Ext In Register Instructions. 848 def SEB_MM : MMRel, SignExtInReg<"seb", i8, GPR32Opnd, II_SEB>, 849 SEB_FM_MM<0x0ac>, ISA_MIPS32R2; 850 def SEH_MM : MMRel, SignExtInReg<"seh", i16, GPR32Opnd, II_SEH>, 851 SEB_FM_MM<0x0ec>, ISA_MIPS32R2; 852 853 /// Word Swap Bytes Within Halfwords 854 def WSBH_MM : MMRel, SubwordSwap<"wsbh", GPR32Opnd, II_WSBH>, 855 SEB_FM_MM<0x1ec>, ISA_MIPS32R2; 856 // TODO: Add '0 < pos+size <= 32' constraint check to ext instruction 857 def EXT_MM : MMRel, ExtBase<"ext", GPR32Opnd, uimm5, uimm5_plus1, immZExt5, 858 immZExt5Plus1, MipsExt>, EXT_FM_MM<0x2c>; 859 def INS_MM : MMRel, InsBase<"ins", GPR32Opnd, uimm5, uimm5_inssize_plus1, 860 MipsIns>, EXT_FM_MM<0x0c>; 861 862 /// Jump Instructions 863 let DecoderMethod = "DecodeJumpTargetMM" in { 864 def J_MM : MMRel, JumpFJ<jmptarget_mm, "j", br, bb, "j">, 865 J_FM_MM<0x35>; 866 def JAL_MM : MMRel, JumpLink<"jal", calltarget_mm>, J_FM_MM<0x3d>; 867 def JALX_MM : MMRel, JumpLink<"jalx", calltarget>, J_FM_MM<0x3c>; 868 } 869 def JR_MM : MMRel, IndirectBranch<"jr", GPR32Opnd>, JR_FM_MM<0x3c>, 870 ISA_MICROMIPS32_NOT_MIPS32R6; 871 def JALR_MM : JumpLinkReg<"jalr", GPR32Opnd>, JALR_FM_MM<0x03c>; 872 873 /// Jump Instructions - Short Delay Slot 874 def JALS_MM : JumpLinkMM<"jals", calltarget_mm>, J_FM_MM<0x1d>; 875 def JALRS_MM : JumpLinkRegMM<"jalrs", GPR32Opnd>, JALR_FM_MM<0x13c>; 876 877 /// Branch Instructions 878 def BEQ_MM : MMRel, CBranch<"beq", brtarget_mm, seteq, GPR32Opnd>, 879 BEQ_FM_MM<0x25>; 880 def BNE_MM : MMRel, CBranch<"bne", brtarget_mm, setne, GPR32Opnd>, 881 BEQ_FM_MM<0x2d>; 882 def BGEZ_MM : MMRel, CBranchZero<"bgez", brtarget_mm, setge, GPR32Opnd>, 883 BGEZ_FM_MM<0x2>; 884 def BGTZ_MM : MMRel, CBranchZero<"bgtz", brtarget_mm, setgt, GPR32Opnd>, 885 BGEZ_FM_MM<0x6>; 886 def BLEZ_MM : MMRel, CBranchZero<"blez", brtarget_mm, setle, GPR32Opnd>, 887 BGEZ_FM_MM<0x4>; 888 def BLTZ_MM : MMRel, CBranchZero<"bltz", brtarget_mm, setlt, GPR32Opnd>, 889 BGEZ_FM_MM<0x0>; 890 def BGEZAL_MM : MMRel, BGEZAL_FT<"bgezal", brtarget_mm, GPR32Opnd>, 891 BGEZAL_FM_MM<0x03>; 892 def BLTZAL_MM : MMRel, BGEZAL_FT<"bltzal", brtarget_mm, GPR32Opnd>, 893 BGEZAL_FM_MM<0x01>; 894 895 /// Branch Instructions - Short Delay Slot 896 def BGEZALS_MM : BranchCompareToZeroLinkMM<"bgezals", brtarget_mm, 897 GPR32Opnd>, BGEZAL_FM_MM<0x13>; 898 def BLTZALS_MM : BranchCompareToZeroLinkMM<"bltzals", brtarget_mm, 899 GPR32Opnd>, BGEZAL_FM_MM<0x11>; 900 901 /// Control Instructions 902 def SYNC_MM : MMRel, SYNC_FT<"sync">, SYNC_FM_MM; 903 def BREAK_MM : MMRel, BRK_FT<"break">, BRK_FM_MM; 904 def SYSCALL_MM : MMRel, SYS_FT<"syscall", uimm10>, SYS_FM_MM; 905 def WAIT_MM : WaitMM<"wait">, WAIT_FM_MM; 906 def ERET_MM : MMRel, ER_FT<"eret">, ER_FM_MM<0x3cd>; 907 def DERET_MM : MMRel, ER_FT<"deret">, ER_FM_MM<0x38d>; 908 def EI_MM : MMRel, DEI_FT<"ei", GPR32Opnd>, EI_FM_MM<0x15d>, 909 ISA_MIPS32R2; 910 def DI_MM : MMRel, DEI_FT<"di", GPR32Opnd>, EI_FM_MM<0x11d>, 911 ISA_MIPS32R2; 912 913 /// Trap Instructions 914 def TEQ_MM : MMRel, TEQ_FT<"teq", GPR32Opnd, uimm4>, TEQ_FM_MM<0x0>; 915 def TGE_MM : MMRel, TEQ_FT<"tge", GPR32Opnd, uimm4>, TEQ_FM_MM<0x08>; 916 def TGEU_MM : MMRel, TEQ_FT<"tgeu", GPR32Opnd, uimm4>, TEQ_FM_MM<0x10>; 917 def TLT_MM : MMRel, TEQ_FT<"tlt", GPR32Opnd, uimm4>, TEQ_FM_MM<0x20>; 918 def TLTU_MM : MMRel, TEQ_FT<"tltu", GPR32Opnd, uimm4>, TEQ_FM_MM<0x28>; 919 def TNE_MM : MMRel, TEQ_FT<"tne", GPR32Opnd, uimm4>, TEQ_FM_MM<0x30>; 920 921 def TEQI_MM : MMRel, TEQI_FT<"teqi", GPR32Opnd>, TEQI_FM_MM<0x0e>; 922 def TGEI_MM : MMRel, TEQI_FT<"tgei", GPR32Opnd>, TEQI_FM_MM<0x09>; 923 def TGEIU_MM : MMRel, TEQI_FT<"tgeiu", GPR32Opnd>, TEQI_FM_MM<0x0b>; 924 def TLTI_MM : MMRel, TEQI_FT<"tlti", GPR32Opnd>, TEQI_FM_MM<0x08>; 925 def TLTIU_MM : MMRel, TEQI_FT<"tltiu", GPR32Opnd>, TEQI_FM_MM<0x0a>; 926 def TNEI_MM : MMRel, TEQI_FT<"tnei", GPR32Opnd>, TEQI_FM_MM<0x0c>; 927 928 /// Load-linked, Store-conditional 929 def LL_MM : LLBaseMM<"ll", GPR32Opnd>, LL_FM_MM<0x3>; 930 def SC_MM : SCBaseMM<"sc", GPR32Opnd>, LL_FM_MM<0xb>; 931 932 def LLE_MM : LLEBaseMM<"lle", GPR32Opnd>, LLE_FM_MM<0x6>; 933 def SCE_MM : SCEBaseMM<"sce", GPR32Opnd>, LLE_FM_MM<0xA>; 934 935 let DecoderMethod = "DecodeCacheOpMM" in { 936 def CACHE_MM : MMRel, CacheOp<"cache", mem_mm_12>, 937 CACHE_PREF_FM_MM<0x08, 0x6>; 938 def PREF_MM : MMRel, CacheOp<"pref", mem_mm_12>, 939 CACHE_PREF_FM_MM<0x18, 0x2>; 940 } 941 942 let DecoderMethod = "DecodePrefeOpMM" in { 943 def PREFE_MM : MMRel, CacheOp<"prefe", mem_mm_9>, 944 CACHE_PREFE_FM_MM<0x18, 0x2>; 945 def CACHEE_MM : MMRel, CacheOp<"cachee", mem_mm_9>, 946 CACHE_PREFE_FM_MM<0x18, 0x3>; 947 } 948 def SSNOP_MM : MMRel, Barrier<"ssnop">, BARRIER_FM_MM<0x1>; 949 def EHB_MM : MMRel, Barrier<"ehb">, BARRIER_FM_MM<0x3>; 950 def PAUSE_MM : MMRel, Barrier<"pause">, BARRIER_FM_MM<0x5>; 951 952 def TLBP_MM : MMRel, TLB<"tlbp">, COP0_TLB_FM_MM<0x0d>; 953 def TLBR_MM : MMRel, TLB<"tlbr">, COP0_TLB_FM_MM<0x4d>; 954 def TLBWI_MM : MMRel, TLB<"tlbwi">, COP0_TLB_FM_MM<0x8d>; 955 def TLBWR_MM : MMRel, TLB<"tlbwr">, COP0_TLB_FM_MM<0xcd>; 956 957 def SDBBP_MM : MMRel, SYS_FT<"sdbbp", uimm10>, SDBBP_FM_MM; 958 959 def PREFX_MM : PrefetchIndexed<"prefx">, POOL32F_PREFX_FM_MM<0x15, 0x1A0>; 960} 961 962let DecoderNamespace = "MicroMips" in { 963 def RDHWR_MM : MMRel, R6MMR6Rel, ReadHardware<GPR32Opnd, HWRegsOpnd>, 964 RDHWR_FM_MM, ISA_MICROMIPS32_NOT_MIPS32R6; 965 def LWU_MM : MMRel, LoadMM<"lwu", GPR32Opnd, zextloadi32, II_LWU, 966 mem_simm12>, LL_FM_MM<0xe>, 967 ISA_MICROMIPS32_NOT_MIPS32R6; 968} 969 970//===----------------------------------------------------------------------===// 971// MicroMips arbitrary patterns that map to one or more instructions 972//===----------------------------------------------------------------------===// 973 974let Predicates = [InMicroMips] in { 975 def : MipsPat<(i32 immLi16:$imm), 976 (LI16_MM immLi16:$imm)>; 977 def : MipsPat<(i32 immSExt16:$imm), 978 (ADDiu_MM ZERO, immSExt16:$imm)>; 979 def : MipsPat<(i32 immZExt16:$imm), 980 (ORi_MM ZERO, immZExt16:$imm)>; 981 982 def : MipsPat<(not GPRMM16:$in), 983 (NOT16_MM GPRMM16:$in)>; 984 def : MipsPat<(not GPR32:$in), 985 (NOR_MM GPR32Opnd:$in, ZERO)>; 986 987 def : MipsPat<(add GPRMM16:$src, immSExtAddiur2:$imm), 988 (ADDIUR2_MM GPRMM16:$src, immSExtAddiur2:$imm)>; 989 def : MipsPat<(add GPR32:$src, immSExtAddius5:$imm), 990 (ADDIUS5_MM GPR32:$src, immSExtAddius5:$imm)>; 991 def : MipsPat<(add GPR32:$src, immSExt16:$imm), 992 (ADDiu_MM GPR32:$src, immSExt16:$imm)>; 993 994 def : MipsPat<(and GPRMM16:$src, immZExtAndi16:$imm), 995 (ANDI16_MM GPRMM16:$src, immZExtAndi16:$imm)>; 996 def : MipsPat<(and GPR32:$src, immZExt16:$imm), 997 (ANDi_MM GPR32:$src, immZExt16:$imm)>; 998 999 def : MipsPat<(shl GPRMM16:$src, immZExt2Shift:$imm), 1000 (SLL16_MM GPRMM16:$src, immZExt2Shift:$imm)>; 1001 def : MipsPat<(shl GPR32:$src, immZExt5:$imm), 1002 (SLL_MM GPR32:$src, immZExt5:$imm)>; 1003 def : MipsPat<(shl GPR32:$lhs, GPR32:$rhs), 1004 (SLLV_MM GPR32:$lhs, GPR32:$rhs)>; 1005 1006 def : MipsPat<(srl GPRMM16:$src, immZExt2Shift:$imm), 1007 (SRL16_MM GPRMM16:$src, immZExt2Shift:$imm)>; 1008 def : MipsPat<(srl GPR32:$src, immZExt5:$imm), 1009 (SRL_MM GPR32:$src, immZExt5:$imm)>; 1010 def : MipsPat<(srl GPR32:$lhs, GPR32:$rhs), 1011 (SRLV_MM GPR32:$lhs, GPR32:$rhs)>; 1012 1013 def : MipsPat<(sra GPR32:$src, immZExt5:$imm), 1014 (SRA_MM GPR32:$src, immZExt5:$imm)>; 1015 def : MipsPat<(sra GPR32:$lhs, GPR32:$rhs), 1016 (SRAV_MM GPR32:$lhs, GPR32:$rhs)>; 1017 1018 def : MipsPat<(store GPRMM16:$src, addrimm4lsl2:$addr), 1019 (SW16_MM GPRMM16:$src, addrimm4lsl2:$addr)>; 1020 def : MipsPat<(store GPR32:$src, addr:$addr), 1021 (SW_MM GPR32:$src, addr:$addr)>; 1022 1023 def : MipsPat<(load addrimm4lsl2:$addr), 1024 (LW16_MM addrimm4lsl2:$addr)>; 1025 def : MipsPat<(load addr:$addr), 1026 (LW_MM addr:$addr)>; 1027 def : MipsPat<(subc GPR32:$lhs, GPR32:$rhs), 1028 (SUBu_MM GPR32:$lhs, GPR32:$rhs)>; 1029} 1030 1031let AddedComplexity = 40 in { 1032 def : MipsPat<(i32 (sextloadi16 addrRegImm:$a)), 1033 (LH_MM addrRegImm:$a)>; 1034} 1035def : MipsPat<(atomic_load_16 addr:$a), 1036 (LH_MM addr:$a)>; 1037def : MipsPat<(i32 (extloadi16 addr:$src)), 1038 (LHu_MM addr:$src)>; 1039 1040//===----------------------------------------------------------------------===// 1041// MicroMips instruction aliases 1042//===----------------------------------------------------------------------===// 1043 1044class UncondBranchMMPseudo<string opstr> : 1045 MipsAsmPseudoInst<(outs), (ins brtarget_mm:$offset), 1046 !strconcat(opstr, "\t$offset")>; 1047 1048def B_MM_Pseudo : UncondBranchMMPseudo<"b">, ISA_MICROMIPS; 1049 1050let Predicates = [InMicroMips] in { 1051 def SDIV_MM_Pseudo : MultDivPseudo<SDIV_MM, ACC64, GPR32Opnd, MipsDivRem, 1052 II_DIV, 0, 1, 1>, ISA_MIPS1_NOT_32R6_64R6; 1053 def UDIV_MM_Pseudo : MultDivPseudo<UDIV_MM, ACC64, GPR32Opnd, MipsDivRemU, 1054 II_DIVU, 0, 1, 1>, ISA_MIPS1_NOT_32R6_64R6; 1055 1056 def : MipsInstAlias<"wait", (WAIT_MM 0x0), 1>; 1057 def : MipsInstAlias<"nop", (SLL_MM ZERO, ZERO, 0), 1>; 1058 def : MipsInstAlias<"nop", (MOVE16_MM ZERO, ZERO), 1>; 1059 def : MipsInstAlias<"ei", (EI_MM ZERO), 1>, ISA_MIPS32R2; 1060 def : MipsInstAlias<"di", (DI_MM ZERO), 1>, ISA_MIPS32R2; 1061 def : MipsInstAlias<"teq $rs, $rt", 1062 (TEQ_MM GPR32Opnd:$rs, GPR32Opnd:$rt, 0), 1>; 1063 def : MipsInstAlias<"tge $rs, $rt", 1064 (TGE_MM GPR32Opnd:$rs, GPR32Opnd:$rt, 0), 1>; 1065 def : MipsInstAlias<"tgeu $rs, $rt", 1066 (TGEU_MM GPR32Opnd:$rs, GPR32Opnd:$rt, 0), 1>; 1067 def : MipsInstAlias<"tlt $rs, $rt", 1068 (TLT_MM GPR32Opnd:$rs, GPR32Opnd:$rt, 0), 1>; 1069 def : MipsInstAlias<"tltu $rs, $rt", 1070 (TLTU_MM GPR32Opnd:$rs, GPR32Opnd:$rt, 0), 1>; 1071 def : MipsInstAlias<"tne $rs, $rt", 1072 (TNE_MM GPR32Opnd:$rs, GPR32Opnd:$rt, 0), 1>; 1073 def : MipsInstAlias<"sll $rd, $rt, $rs", 1074 (SLLV_MM GPR32Opnd:$rd, GPR32Opnd:$rt, GPR32Opnd:$rs), 0>; 1075 def : MipsInstAlias<"sra $rd, $rt, $rs", 1076 (SRAV_MM GPR32Opnd:$rd, GPR32Opnd:$rt, GPR32Opnd:$rs), 0>; 1077 def : MipsInstAlias<"srl $rd, $rt, $rs", 1078 (SRLV_MM GPR32Opnd:$rd, GPR32Opnd:$rt, GPR32Opnd:$rs), 0>; 1079 def : MipsInstAlias<"sll $rd, $rt", 1080 (SLLV_MM GPR32Opnd:$rd, GPR32Opnd:$rd, GPR32Opnd:$rt), 0>; 1081 def : MipsInstAlias<"sra $rd, $rt", 1082 (SRAV_MM GPR32Opnd:$rd, GPR32Opnd:$rd, GPR32Opnd:$rt), 0>; 1083 def : MipsInstAlias<"srl $rd, $rt", 1084 (SRLV_MM GPR32Opnd:$rd, GPR32Opnd:$rd, GPR32Opnd:$rt), 0>; 1085 def : MipsInstAlias<"sll $rd, $shamt", 1086 (SLL_MM GPR32Opnd:$rd, GPR32Opnd:$rd, uimm5:$shamt), 0>; 1087 def : MipsInstAlias<"sra $rd, $shamt", 1088 (SRA_MM GPR32Opnd:$rd, GPR32Opnd:$rd, uimm5:$shamt), 0>; 1089 def : MipsInstAlias<"srl $rd, $shamt", 1090 (SRL_MM GPR32Opnd:$rd, GPR32Opnd:$rd, uimm5:$shamt), 0>; 1091 def : MipsInstAlias<"rotr $rt, $imm", 1092 (ROTR_MM GPR32Opnd:$rt, GPR32Opnd:$rt, uimm5:$imm), 0>; 1093 def : MipsInstAlias<"syscall", (SYSCALL_MM 0), 1>; 1094 def : MipsInstAlias<"and $rs, $rt, $imm", 1095 (ANDi_MM GPR32Opnd:$rs, GPR32Opnd:$rt, simm16:$imm), 0>; 1096 def : MipsInstAlias<"and $rs, $imm", 1097 (ANDi_MM GPR32Opnd:$rs, GPR32Opnd:$rs, simm16:$imm), 0>; 1098 def : MipsInstAlias<"or $rs, $rt, $imm", 1099 (ORi_MM GPR32Opnd:$rs, GPR32Opnd:$rt, uimm16:$imm), 0>; 1100 def : MipsInstAlias<"or $rs, $imm", 1101 (ORi_MM GPR32Opnd:$rs, GPR32Opnd:$rs, uimm16:$imm), 0>; 1102 def : MipsInstAlias<"xor $rs, $rt, $imm", 1103 (XORi_MM GPR32Opnd:$rs, GPR32Opnd:$rt, uimm16:$imm), 0>; 1104 def : MipsInstAlias<"xor $rs, $imm", 1105 (XORi_MM GPR32Opnd:$rs, GPR32Opnd:$rs, uimm16:$imm), 0>; 1106 def : MipsInstAlias<"not $rt, $rs", 1107 (NOR_MM GPR32Opnd:$rt, GPR32Opnd:$rs, ZERO), 0>; 1108} 1109