1 //===- CodeGenInstruction.cpp - CodeGen Instruction Class Wrapper ---------===// 2 // 3 // The LLVM Compiler Infrastructure 4 // 5 // This file is distributed under the University of Illinois Open Source 6 // License. See LICENSE.TXT for details. 7 // 8 //===----------------------------------------------------------------------===// 9 // 10 // This file implements the CodeGenInstruction class. 11 // 12 //===----------------------------------------------------------------------===// 13 14 #include "CodeGenInstruction.h" 15 #include "CodeGenTarget.h" 16 #include "llvm/ADT/STLExtras.h" 17 #include "llvm/ADT/StringExtras.h" 18 #include "llvm/ADT/StringMap.h" 19 #include "llvm/TableGen/Error.h" 20 #include "llvm/TableGen/Record.h" 21 #include <set> 22 using namespace llvm; 23 24 //===----------------------------------------------------------------------===// 25 // CGIOperandList Implementation 26 //===----------------------------------------------------------------------===// 27 28 CGIOperandList::CGIOperandList(Record *R) : TheDef(R) { 29 isPredicable = false; 30 hasOptionalDef = false; 31 isVariadic = false; 32 33 DagInit *OutDI = R->getValueAsDag("OutOperandList"); 34 35 if (DefInit *Init = dyn_cast<DefInit>(OutDI->getOperator())) { 36 if (Init->getDef()->getName() != "outs") 37 PrintFatalError(R->getName() + ": invalid def name for output list: use 'outs'"); 38 } else 39 PrintFatalError(R->getName() + ": invalid output list: use 'outs'"); 40 41 NumDefs = OutDI->getNumArgs(); 42 43 DagInit *InDI = R->getValueAsDag("InOperandList"); 44 if (DefInit *Init = dyn_cast<DefInit>(InDI->getOperator())) { 45 if (Init->getDef()->getName() != "ins") 46 PrintFatalError(R->getName() + ": invalid def name for input list: use 'ins'"); 47 } else 48 PrintFatalError(R->getName() + ": invalid input list: use 'ins'"); 49 50 unsigned MIOperandNo = 0; 51 std::set<std::string> OperandNames; 52 unsigned e = InDI->getNumArgs() + OutDI->getNumArgs(); 53 OperandList.reserve(e); 54 for (unsigned i = 0; i != e; ++i){ 55 Init *ArgInit; 56 StringRef ArgName; 57 if (i < NumDefs) { 58 ArgInit = OutDI->getArg(i); 59 ArgName = OutDI->getArgNameStr(i); 60 } else { 61 ArgInit = InDI->getArg(i-NumDefs); 62 ArgName = InDI->getArgNameStr(i-NumDefs); 63 } 64 65 DefInit *Arg = dyn_cast<DefInit>(ArgInit); 66 if (!Arg) 67 PrintFatalError("Illegal operand for the '" + R->getName() + "' instruction!"); 68 69 Record *Rec = Arg->getDef(); 70 std::string PrintMethod = "printOperand"; 71 std::string EncoderMethod; 72 std::string OperandType = "OPERAND_UNKNOWN"; 73 std::string OperandNamespace = "MCOI"; 74 unsigned NumOps = 1; 75 DagInit *MIOpInfo = nullptr; 76 if (Rec->isSubClassOf("RegisterOperand")) { 77 PrintMethod = Rec->getValueAsString("PrintMethod"); 78 OperandType = Rec->getValueAsString("OperandType"); 79 OperandNamespace = Rec->getValueAsString("OperandNamespace"); 80 EncoderMethod = Rec->getValueAsString("EncoderMethod"); 81 } else if (Rec->isSubClassOf("Operand")) { 82 PrintMethod = Rec->getValueAsString("PrintMethod"); 83 OperandType = Rec->getValueAsString("OperandType"); 84 OperandNamespace = Rec->getValueAsString("OperandNamespace"); 85 // If there is an explicit encoder method, use it. 86 EncoderMethod = Rec->getValueAsString("EncoderMethod"); 87 MIOpInfo = Rec->getValueAsDag("MIOperandInfo"); 88 89 // Verify that MIOpInfo has an 'ops' root value. 90 if (!isa<DefInit>(MIOpInfo->getOperator()) || 91 cast<DefInit>(MIOpInfo->getOperator())->getDef()->getName() != "ops") 92 PrintFatalError("Bad value for MIOperandInfo in operand '" + Rec->getName() + 93 "'\n"); 94 95 // If we have MIOpInfo, then we have #operands equal to number of entries 96 // in MIOperandInfo. 97 if (unsigned NumArgs = MIOpInfo->getNumArgs()) 98 NumOps = NumArgs; 99 100 if (Rec->isSubClassOf("PredicateOp")) 101 isPredicable = true; 102 else if (Rec->isSubClassOf("OptionalDefOperand")) 103 hasOptionalDef = true; 104 } else if (Rec->getName() == "variable_ops") { 105 isVariadic = true; 106 continue; 107 } else if (Rec->isSubClassOf("RegisterClass")) { 108 OperandType = "OPERAND_REGISTER"; 109 } else if (!Rec->isSubClassOf("PointerLikeRegClass") && 110 !Rec->isSubClassOf("unknown_class")) 111 PrintFatalError("Unknown operand class '" + Rec->getName() + 112 "' in '" + R->getName() + "' instruction!"); 113 114 // Check that the operand has a name and that it's unique. 115 if (ArgName.empty()) 116 PrintFatalError("In instruction '" + R->getName() + "', operand #" + 117 Twine(i) + " has no name!"); 118 if (!OperandNames.insert(ArgName).second) 119 PrintFatalError("In instruction '" + R->getName() + "', operand #" + 120 Twine(i) + " has the same name as a previous operand!"); 121 122 OperandList.emplace_back(Rec, ArgName, PrintMethod, EncoderMethod, 123 OperandNamespace + "::" + OperandType, MIOperandNo, 124 NumOps, MIOpInfo); 125 MIOperandNo += NumOps; 126 } 127 128 129 // Make sure the constraints list for each operand is large enough to hold 130 // constraint info, even if none is present. 131 for (OperandInfo &OpInfo : OperandList) 132 OpInfo.Constraints.resize(OpInfo.MINumOperands); 133 } 134 135 136 /// getOperandNamed - Return the index of the operand with the specified 137 /// non-empty name. If the instruction does not have an operand with the 138 /// specified name, abort. 139 /// 140 unsigned CGIOperandList::getOperandNamed(StringRef Name) const { 141 unsigned OpIdx; 142 if (hasOperandNamed(Name, OpIdx)) return OpIdx; 143 PrintFatalError("'" + TheDef->getName() + 144 "' does not have an operand named '$" + Name + "'!"); 145 } 146 147 /// hasOperandNamed - Query whether the instruction has an operand of the 148 /// given name. If so, return true and set OpIdx to the index of the 149 /// operand. Otherwise, return false. 150 bool CGIOperandList::hasOperandNamed(StringRef Name, unsigned &OpIdx) const { 151 assert(!Name.empty() && "Cannot search for operand with no name!"); 152 for (unsigned i = 0, e = OperandList.size(); i != e; ++i) 153 if (OperandList[i].Name == Name) { 154 OpIdx = i; 155 return true; 156 } 157 return false; 158 } 159 160 std::pair<unsigned,unsigned> 161 CGIOperandList::ParseOperandName(const std::string &Op, bool AllowWholeOp) { 162 if (Op.empty() || Op[0] != '$') 163 PrintFatalError(TheDef->getName() + ": Illegal operand name: '" + Op + "'"); 164 165 std::string OpName = Op.substr(1); 166 std::string SubOpName; 167 168 // Check to see if this is $foo.bar. 169 std::string::size_type DotIdx = OpName.find_first_of('.'); 170 if (DotIdx != std::string::npos) { 171 SubOpName = OpName.substr(DotIdx+1); 172 if (SubOpName.empty()) 173 PrintFatalError(TheDef->getName() + ": illegal empty suboperand name in '" +Op +"'"); 174 OpName = OpName.substr(0, DotIdx); 175 } 176 177 unsigned OpIdx = getOperandNamed(OpName); 178 179 if (SubOpName.empty()) { // If no suboperand name was specified: 180 // If one was needed, throw. 181 if (OperandList[OpIdx].MINumOperands > 1 && !AllowWholeOp && 182 SubOpName.empty()) 183 PrintFatalError(TheDef->getName() + ": Illegal to refer to" 184 " whole operand part of complex operand '" + Op + "'"); 185 186 // Otherwise, return the operand. 187 return std::make_pair(OpIdx, 0U); 188 } 189 190 // Find the suboperand number involved. 191 DagInit *MIOpInfo = OperandList[OpIdx].MIOperandInfo; 192 if (!MIOpInfo) 193 PrintFatalError(TheDef->getName() + ": unknown suboperand name in '" + Op + "'"); 194 195 // Find the operand with the right name. 196 for (unsigned i = 0, e = MIOpInfo->getNumArgs(); i != e; ++i) 197 if (MIOpInfo->getArgNameStr(i) == SubOpName) 198 return std::make_pair(OpIdx, i); 199 200 // Otherwise, didn't find it! 201 PrintFatalError(TheDef->getName() + ": unknown suboperand name in '" + Op + "'"); 202 return std::make_pair(0U, 0U); 203 } 204 205 static void ParseConstraint(const std::string &CStr, CGIOperandList &Ops) { 206 // EARLY_CLOBBER: @early $reg 207 std::string::size_type wpos = CStr.find_first_of(" \t"); 208 std::string::size_type start = CStr.find_first_not_of(" \t"); 209 std::string Tok = CStr.substr(start, wpos - start); 210 if (Tok == "@earlyclobber") { 211 std::string Name = CStr.substr(wpos+1); 212 wpos = Name.find_first_not_of(" \t"); 213 if (wpos == std::string::npos) 214 PrintFatalError("Illegal format for @earlyclobber constraint: '" + CStr + "'"); 215 Name = Name.substr(wpos); 216 std::pair<unsigned,unsigned> Op = Ops.ParseOperandName(Name, false); 217 218 // Build the string for the operand 219 if (!Ops[Op.first].Constraints[Op.second].isNone()) 220 PrintFatalError("Operand '" + Name + "' cannot have multiple constraints!"); 221 Ops[Op.first].Constraints[Op.second] = 222 CGIOperandList::ConstraintInfo::getEarlyClobber(); 223 return; 224 } 225 226 // Only other constraint is "TIED_TO" for now. 227 std::string::size_type pos = CStr.find_first_of('='); 228 assert(pos != std::string::npos && "Unrecognized constraint"); 229 start = CStr.find_first_not_of(" \t"); 230 std::string Name = CStr.substr(start, pos - start); 231 232 // TIED_TO: $src1 = $dst 233 wpos = Name.find_first_of(" \t"); 234 if (wpos == std::string::npos) 235 PrintFatalError("Illegal format for tied-to constraint: '" + CStr + "'"); 236 std::string DestOpName = Name.substr(0, wpos); 237 std::pair<unsigned,unsigned> DestOp = Ops.ParseOperandName(DestOpName, false); 238 239 Name = CStr.substr(pos+1); 240 wpos = Name.find_first_not_of(" \t"); 241 if (wpos == std::string::npos) 242 PrintFatalError("Illegal format for tied-to constraint: '" + CStr + "'"); 243 244 std::string SrcOpName = Name.substr(wpos); 245 std::pair<unsigned,unsigned> SrcOp = Ops.ParseOperandName(SrcOpName, false); 246 if (SrcOp > DestOp) { 247 std::swap(SrcOp, DestOp); 248 std::swap(SrcOpName, DestOpName); 249 } 250 251 unsigned FlatOpNo = Ops.getFlattenedOperandNumber(SrcOp); 252 253 if (!Ops[DestOp.first].Constraints[DestOp.second].isNone()) 254 PrintFatalError("Operand '" + DestOpName + 255 "' cannot have multiple constraints!"); 256 Ops[DestOp.first].Constraints[DestOp.second] = 257 CGIOperandList::ConstraintInfo::getTied(FlatOpNo); 258 } 259 260 static void ParseConstraints(const std::string &CStr, CGIOperandList &Ops) { 261 if (CStr.empty()) return; 262 263 const std::string delims(","); 264 std::string::size_type bidx, eidx; 265 266 bidx = CStr.find_first_not_of(delims); 267 while (bidx != std::string::npos) { 268 eidx = CStr.find_first_of(delims, bidx); 269 if (eidx == std::string::npos) 270 eidx = CStr.length(); 271 272 ParseConstraint(CStr.substr(bidx, eidx - bidx), Ops); 273 bidx = CStr.find_first_not_of(delims, eidx); 274 } 275 } 276 277 void CGIOperandList::ProcessDisableEncoding(std::string DisableEncoding) { 278 while (1) { 279 std::pair<StringRef, StringRef> P = getToken(DisableEncoding, " ,\t"); 280 std::string OpName = P.first; 281 DisableEncoding = P.second; 282 if (OpName.empty()) break; 283 284 // Figure out which operand this is. 285 std::pair<unsigned,unsigned> Op = ParseOperandName(OpName, false); 286 287 // Mark the operand as not-to-be encoded. 288 if (Op.second >= OperandList[Op.first].DoNotEncode.size()) 289 OperandList[Op.first].DoNotEncode.resize(Op.second+1); 290 OperandList[Op.first].DoNotEncode[Op.second] = true; 291 } 292 293 } 294 295 //===----------------------------------------------------------------------===// 296 // CodeGenInstruction Implementation 297 //===----------------------------------------------------------------------===// 298 299 CodeGenInstruction::CodeGenInstruction(Record *R) 300 : TheDef(R), Operands(R), InferredFrom(nullptr) { 301 Namespace = R->getValueAsString("Namespace"); 302 AsmString = R->getValueAsString("AsmString"); 303 304 isReturn = R->getValueAsBit("isReturn"); 305 isBranch = R->getValueAsBit("isBranch"); 306 isIndirectBranch = R->getValueAsBit("isIndirectBranch"); 307 isCompare = R->getValueAsBit("isCompare"); 308 isMoveImm = R->getValueAsBit("isMoveImm"); 309 isMoveReg = R->getValueAsBit("isMoveReg"); 310 isBitcast = R->getValueAsBit("isBitcast"); 311 isSelect = R->getValueAsBit("isSelect"); 312 isBarrier = R->getValueAsBit("isBarrier"); 313 isCall = R->getValueAsBit("isCall"); 314 isAdd = R->getValueAsBit("isAdd"); 315 isTrap = R->getValueAsBit("isTrap"); 316 canFoldAsLoad = R->getValueAsBit("canFoldAsLoad"); 317 isPredicable = Operands.isPredicable || R->getValueAsBit("isPredicable"); 318 isConvertibleToThreeAddress = R->getValueAsBit("isConvertibleToThreeAddress"); 319 isCommutable = R->getValueAsBit("isCommutable"); 320 isTerminator = R->getValueAsBit("isTerminator"); 321 isReMaterializable = R->getValueAsBit("isReMaterializable"); 322 hasDelaySlot = R->getValueAsBit("hasDelaySlot"); 323 usesCustomInserter = R->getValueAsBit("usesCustomInserter"); 324 hasPostISelHook = R->getValueAsBit("hasPostISelHook"); 325 hasCtrlDep = R->getValueAsBit("hasCtrlDep"); 326 isNotDuplicable = R->getValueAsBit("isNotDuplicable"); 327 isRegSequence = R->getValueAsBit("isRegSequence"); 328 isExtractSubreg = R->getValueAsBit("isExtractSubreg"); 329 isInsertSubreg = R->getValueAsBit("isInsertSubreg"); 330 isConvergent = R->getValueAsBit("isConvergent"); 331 hasNoSchedulingInfo = R->getValueAsBit("hasNoSchedulingInfo"); 332 FastISelShouldIgnore = R->getValueAsBit("FastISelShouldIgnore"); 333 334 bool Unset; 335 mayLoad = R->getValueAsBitOrUnset("mayLoad", Unset); 336 mayLoad_Unset = Unset; 337 mayStore = R->getValueAsBitOrUnset("mayStore", Unset); 338 mayStore_Unset = Unset; 339 hasSideEffects = R->getValueAsBitOrUnset("hasSideEffects", Unset); 340 hasSideEffects_Unset = Unset; 341 342 isAsCheapAsAMove = R->getValueAsBit("isAsCheapAsAMove"); 343 hasExtraSrcRegAllocReq = R->getValueAsBit("hasExtraSrcRegAllocReq"); 344 hasExtraDefRegAllocReq = R->getValueAsBit("hasExtraDefRegAllocReq"); 345 isCodeGenOnly = R->getValueAsBit("isCodeGenOnly"); 346 isPseudo = R->getValueAsBit("isPseudo"); 347 ImplicitDefs = R->getValueAsListOfDefs("Defs"); 348 ImplicitUses = R->getValueAsListOfDefs("Uses"); 349 350 // This flag is only inferred from the pattern. 351 hasChain = false; 352 hasChain_Inferred = false; 353 354 // Parse Constraints. 355 ParseConstraints(R->getValueAsString("Constraints"), Operands); 356 357 // Parse the DisableEncoding field. 358 Operands.ProcessDisableEncoding(R->getValueAsString("DisableEncoding")); 359 360 // First check for a ComplexDeprecationPredicate. 361 if (R->getValue("ComplexDeprecationPredicate")) { 362 HasComplexDeprecationPredicate = true; 363 DeprecatedReason = R->getValueAsString("ComplexDeprecationPredicate"); 364 } else if (RecordVal *Dep = R->getValue("DeprecatedFeatureMask")) { 365 // Check if we have a Subtarget feature mask. 366 HasComplexDeprecationPredicate = false; 367 DeprecatedReason = Dep->getValue()->getAsString(); 368 } else { 369 // This instruction isn't deprecated. 370 HasComplexDeprecationPredicate = false; 371 DeprecatedReason = ""; 372 } 373 } 374 375 /// HasOneImplicitDefWithKnownVT - If the instruction has at least one 376 /// implicit def and it has a known VT, return the VT, otherwise return 377 /// MVT::Other. 378 MVT::SimpleValueType CodeGenInstruction:: 379 HasOneImplicitDefWithKnownVT(const CodeGenTarget &TargetInfo) const { 380 if (ImplicitDefs.empty()) return MVT::Other; 381 382 // Check to see if the first implicit def has a resolvable type. 383 Record *FirstImplicitDef = ImplicitDefs[0]; 384 assert(FirstImplicitDef->isSubClassOf("Register")); 385 const std::vector<ValueTypeByHwMode> &RegVTs = 386 TargetInfo.getRegisterVTs(FirstImplicitDef); 387 if (RegVTs.size() == 1 && RegVTs[0].isSimple()) 388 return RegVTs[0].getSimple().SimpleTy; 389 return MVT::Other; 390 } 391 392 393 /// FlattenAsmStringVariants - Flatten the specified AsmString to only 394 /// include text from the specified variant, returning the new string. 395 std::string CodeGenInstruction:: 396 FlattenAsmStringVariants(StringRef Cur, unsigned Variant) { 397 std::string Res = ""; 398 399 for (;;) { 400 // Find the start of the next variant string. 401 size_t VariantsStart = 0; 402 for (size_t e = Cur.size(); VariantsStart != e; ++VariantsStart) 403 if (Cur[VariantsStart] == '{' && 404 (VariantsStart == 0 || (Cur[VariantsStart-1] != '$' && 405 Cur[VariantsStart-1] != '\\'))) 406 break; 407 408 // Add the prefix to the result. 409 Res += Cur.slice(0, VariantsStart); 410 if (VariantsStart == Cur.size()) 411 break; 412 413 ++VariantsStart; // Skip the '{'. 414 415 // Scan to the end of the variants string. 416 size_t VariantsEnd = VariantsStart; 417 unsigned NestedBraces = 1; 418 for (size_t e = Cur.size(); VariantsEnd != e; ++VariantsEnd) { 419 if (Cur[VariantsEnd] == '}' && Cur[VariantsEnd-1] != '\\') { 420 if (--NestedBraces == 0) 421 break; 422 } else if (Cur[VariantsEnd] == '{') 423 ++NestedBraces; 424 } 425 426 // Select the Nth variant (or empty). 427 StringRef Selection = Cur.slice(VariantsStart, VariantsEnd); 428 for (unsigned i = 0; i != Variant; ++i) 429 Selection = Selection.split('|').second; 430 Res += Selection.split('|').first; 431 432 assert(VariantsEnd != Cur.size() && 433 "Unterminated variants in assembly string!"); 434 Cur = Cur.substr(VariantsEnd + 1); 435 } 436 437 return Res; 438 } 439 440 bool CodeGenInstruction::isOperandAPointer(unsigned i) const { 441 if (DagInit *ConstraintList = TheDef->getValueAsDag("InOperandList")) { 442 if (i < ConstraintList->getNumArgs()) { 443 if (DefInit *Constraint = dyn_cast<DefInit>(ConstraintList->getArg(i))) { 444 return Constraint->getDef()->isSubClassOf("TypedOperand") && 445 Constraint->getDef()->getValueAsBit("IsPointer"); 446 } 447 } 448 } 449 return false; 450 } 451 452 //===----------------------------------------------------------------------===// 453 /// CodeGenInstAlias Implementation 454 //===----------------------------------------------------------------------===// 455 456 /// tryAliasOpMatch - This is a helper function for the CodeGenInstAlias 457 /// constructor. It checks if an argument in an InstAlias pattern matches 458 /// the corresponding operand of the instruction. It returns true on a 459 /// successful match, with ResOp set to the result operand to be used. 460 bool CodeGenInstAlias::tryAliasOpMatch(DagInit *Result, unsigned AliasOpNo, 461 Record *InstOpRec, bool hasSubOps, 462 ArrayRef<SMLoc> Loc, CodeGenTarget &T, 463 ResultOperand &ResOp) { 464 Init *Arg = Result->getArg(AliasOpNo); 465 DefInit *ADI = dyn_cast<DefInit>(Arg); 466 Record *ResultRecord = ADI ? ADI->getDef() : nullptr; 467 468 if (ADI && ADI->getDef() == InstOpRec) { 469 // If the operand is a record, it must have a name, and the record type 470 // must match up with the instruction's argument type. 471 if (!Result->getArgName(AliasOpNo)) 472 PrintFatalError(Loc, "result argument #" + Twine(AliasOpNo) + 473 " must have a name!"); 474 ResOp = ResultOperand(Result->getArgNameStr(AliasOpNo), ResultRecord); 475 return true; 476 } 477 478 // For register operands, the source register class can be a subclass 479 // of the instruction register class, not just an exact match. 480 if (InstOpRec->isSubClassOf("RegisterOperand")) 481 InstOpRec = InstOpRec->getValueAsDef("RegClass"); 482 483 if (ADI && ADI->getDef()->isSubClassOf("RegisterOperand")) 484 ADI = ADI->getDef()->getValueAsDef("RegClass")->getDefInit(); 485 486 if (ADI && ADI->getDef()->isSubClassOf("RegisterClass")) { 487 if (!InstOpRec->isSubClassOf("RegisterClass")) 488 return false; 489 if (!T.getRegisterClass(InstOpRec) 490 .hasSubClass(&T.getRegisterClass(ADI->getDef()))) 491 return false; 492 ResOp = ResultOperand(Result->getArgNameStr(AliasOpNo), ResultRecord); 493 return true; 494 } 495 496 // Handle explicit registers. 497 if (ADI && ADI->getDef()->isSubClassOf("Register")) { 498 if (InstOpRec->isSubClassOf("OptionalDefOperand")) { 499 DagInit *DI = InstOpRec->getValueAsDag("MIOperandInfo"); 500 // The operand info should only have a single (register) entry. We 501 // want the register class of it. 502 InstOpRec = cast<DefInit>(DI->getArg(0))->getDef(); 503 } 504 505 if (!InstOpRec->isSubClassOf("RegisterClass")) 506 return false; 507 508 if (!T.getRegisterClass(InstOpRec) 509 .contains(T.getRegBank().getReg(ADI->getDef()))) 510 PrintFatalError(Loc, "fixed register " + ADI->getDef()->getName() + 511 " is not a member of the " + InstOpRec->getName() + 512 " register class!"); 513 514 if (Result->getArgName(AliasOpNo)) 515 PrintFatalError(Loc, "result fixed register argument must " 516 "not have a name!"); 517 518 ResOp = ResultOperand(ResultRecord); 519 return true; 520 } 521 522 // Handle "zero_reg" for optional def operands. 523 if (ADI && ADI->getDef()->getName() == "zero_reg") { 524 525 // Check if this is an optional def. 526 // Tied operands where the source is a sub-operand of a complex operand 527 // need to represent both operands in the alias destination instruction. 528 // Allow zero_reg for the tied portion. This can and should go away once 529 // the MC representation of things doesn't use tied operands at all. 530 //if (!InstOpRec->isSubClassOf("OptionalDefOperand")) 531 // throw TGError(Loc, "reg0 used for result that is not an " 532 // "OptionalDefOperand!"); 533 534 ResOp = ResultOperand(static_cast<Record*>(nullptr)); 535 return true; 536 } 537 538 // Literal integers. 539 if (IntInit *II = dyn_cast<IntInit>(Arg)) { 540 if (hasSubOps || !InstOpRec->isSubClassOf("Operand")) 541 return false; 542 // Integer arguments can't have names. 543 if (Result->getArgName(AliasOpNo)) 544 PrintFatalError(Loc, "result argument #" + Twine(AliasOpNo) + 545 " must not have a name!"); 546 ResOp = ResultOperand(II->getValue()); 547 return true; 548 } 549 550 // Bits<n> (also used for 0bxx literals) 551 if (BitsInit *BI = dyn_cast<BitsInit>(Arg)) { 552 if (hasSubOps || !InstOpRec->isSubClassOf("Operand")) 553 return false; 554 if (!BI->isComplete()) 555 return false; 556 // Convert the bits init to an integer and use that for the result. 557 IntInit *II = 558 dyn_cast_or_null<IntInit>(BI->convertInitializerTo(IntRecTy::get())); 559 if (!II) 560 return false; 561 ResOp = ResultOperand(II->getValue()); 562 return true; 563 } 564 565 // If both are Operands with the same MVT, allow the conversion. It's 566 // up to the user to make sure the values are appropriate, just like 567 // for isel Pat's. 568 if (InstOpRec->isSubClassOf("Operand") && ADI && 569 ADI->getDef()->isSubClassOf("Operand")) { 570 // FIXME: What other attributes should we check here? Identical 571 // MIOperandInfo perhaps? 572 if (InstOpRec->getValueInit("Type") != ADI->getDef()->getValueInit("Type")) 573 return false; 574 ResOp = ResultOperand(Result->getArgNameStr(AliasOpNo), ADI->getDef()); 575 return true; 576 } 577 578 return false; 579 } 580 581 unsigned CodeGenInstAlias::ResultOperand::getMINumOperands() const { 582 if (!isRecord()) 583 return 1; 584 585 Record *Rec = getRecord(); 586 if (!Rec->isSubClassOf("Operand")) 587 return 1; 588 589 DagInit *MIOpInfo = Rec->getValueAsDag("MIOperandInfo"); 590 if (MIOpInfo->getNumArgs() == 0) { 591 // Unspecified, so it defaults to 1 592 return 1; 593 } 594 595 return MIOpInfo->getNumArgs(); 596 } 597 598 CodeGenInstAlias::CodeGenInstAlias(Record *R, CodeGenTarget &T) 599 : TheDef(R) { 600 Result = R->getValueAsDag("ResultInst"); 601 AsmString = R->getValueAsString("AsmString"); 602 603 604 // Verify that the root of the result is an instruction. 605 DefInit *DI = dyn_cast<DefInit>(Result->getOperator()); 606 if (!DI || !DI->getDef()->isSubClassOf("Instruction")) 607 PrintFatalError(R->getLoc(), 608 "result of inst alias should be an instruction"); 609 610 ResultInst = &T.getInstruction(DI->getDef()); 611 612 // NameClass - If argument names are repeated, we need to verify they have 613 // the same class. 614 StringMap<Record*> NameClass; 615 for (unsigned i = 0, e = Result->getNumArgs(); i != e; ++i) { 616 DefInit *ADI = dyn_cast<DefInit>(Result->getArg(i)); 617 if (!ADI || !Result->getArgName(i)) 618 continue; 619 // Verify we don't have something like: (someinst GR16:$foo, GR32:$foo) 620 // $foo can exist multiple times in the result list, but it must have the 621 // same type. 622 Record *&Entry = NameClass[Result->getArgNameStr(i)]; 623 if (Entry && Entry != ADI->getDef()) 624 PrintFatalError(R->getLoc(), "result value $" + Result->getArgNameStr(i) + 625 " is both " + Entry->getName() + " and " + 626 ADI->getDef()->getName() + "!"); 627 Entry = ADI->getDef(); 628 } 629 630 // Decode and validate the arguments of the result. 631 unsigned AliasOpNo = 0; 632 for (unsigned i = 0, e = ResultInst->Operands.size(); i != e; ++i) { 633 634 // Tied registers don't have an entry in the result dag unless they're part 635 // of a complex operand, in which case we include them anyways, as we 636 // don't have any other way to specify the whole operand. 637 if (ResultInst->Operands[i].MINumOperands == 1 && 638 ResultInst->Operands[i].getTiedRegister() != -1) { 639 // Tied operands of different RegisterClass should be explicit within an 640 // instruction's syntax and so cannot be skipped. 641 int TiedOpNum = ResultInst->Operands[i].getTiedRegister(); 642 if (ResultInst->Operands[i].Rec->getName() == 643 ResultInst->Operands[TiedOpNum].Rec->getName()) 644 continue; 645 } 646 647 if (AliasOpNo >= Result->getNumArgs()) 648 PrintFatalError(R->getLoc(), "not enough arguments for instruction!"); 649 650 Record *InstOpRec = ResultInst->Operands[i].Rec; 651 unsigned NumSubOps = ResultInst->Operands[i].MINumOperands; 652 ResultOperand ResOp(static_cast<int64_t>(0)); 653 if (tryAliasOpMatch(Result, AliasOpNo, InstOpRec, (NumSubOps > 1), 654 R->getLoc(), T, ResOp)) { 655 // If this is a simple operand, or a complex operand with a custom match 656 // class, then we can match is verbatim. 657 if (NumSubOps == 1 || 658 (InstOpRec->getValue("ParserMatchClass") && 659 InstOpRec->getValueAsDef("ParserMatchClass") 660 ->getValueAsString("Name") != "Imm")) { 661 ResultOperands.push_back(ResOp); 662 ResultInstOperandIndex.push_back(std::make_pair(i, -1)); 663 ++AliasOpNo; 664 665 // Otherwise, we need to match each of the suboperands individually. 666 } else { 667 DagInit *MIOI = ResultInst->Operands[i].MIOperandInfo; 668 for (unsigned SubOp = 0; SubOp != NumSubOps; ++SubOp) { 669 Record *SubRec = cast<DefInit>(MIOI->getArg(SubOp))->getDef(); 670 671 // Take care to instantiate each of the suboperands with the correct 672 // nomenclature: $foo.bar 673 ResultOperands.emplace_back( 674 Result->getArgName(AliasOpNo)->getAsUnquotedString() + "." + 675 MIOI->getArgName(SubOp)->getAsUnquotedString(), SubRec); 676 ResultInstOperandIndex.push_back(std::make_pair(i, SubOp)); 677 } 678 ++AliasOpNo; 679 } 680 continue; 681 } 682 683 // If the argument did not match the instruction operand, and the operand 684 // is composed of multiple suboperands, try matching the suboperands. 685 if (NumSubOps > 1) { 686 DagInit *MIOI = ResultInst->Operands[i].MIOperandInfo; 687 for (unsigned SubOp = 0; SubOp != NumSubOps; ++SubOp) { 688 if (AliasOpNo >= Result->getNumArgs()) 689 PrintFatalError(R->getLoc(), "not enough arguments for instruction!"); 690 Record *SubRec = cast<DefInit>(MIOI->getArg(SubOp))->getDef(); 691 if (tryAliasOpMatch(Result, AliasOpNo, SubRec, false, 692 R->getLoc(), T, ResOp)) { 693 ResultOperands.push_back(ResOp); 694 ResultInstOperandIndex.push_back(std::make_pair(i, SubOp)); 695 ++AliasOpNo; 696 } else { 697 PrintFatalError(R->getLoc(), "result argument #" + Twine(AliasOpNo) + 698 " does not match instruction operand class " + 699 (SubOp == 0 ? InstOpRec->getName() :SubRec->getName())); 700 } 701 } 702 continue; 703 } 704 PrintFatalError(R->getLoc(), "result argument #" + Twine(AliasOpNo) + 705 " does not match instruction operand class " + 706 InstOpRec->getName()); 707 } 708 709 if (AliasOpNo != Result->getNumArgs()) 710 PrintFatalError(R->getLoc(), "too many operands for instruction!"); 711 } 712