1 //===- MIRParser.cpp - MIR serialization format parser implementation -----===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 // 9 // This file implements the class that parses the optional LLVM IR and machine 10 // functions that are stored in MIR files. 11 // 12 //===----------------------------------------------------------------------===// 13 14 #include "llvm/CodeGen/MIRParser/MIRParser.h" 15 #include "llvm/ADT/DenseMap.h" 16 #include "llvm/ADT/STLExtras.h" 17 #include "llvm/ADT/StringMap.h" 18 #include "llvm/ADT/StringRef.h" 19 #include "llvm/AsmParser/Parser.h" 20 #include "llvm/AsmParser/SlotMapping.h" 21 #include "llvm/CodeGen/GlobalISel/RegisterBank.h" 22 #include "llvm/CodeGen/GlobalISel/RegisterBankInfo.h" 23 #include "llvm/CodeGen/MIRParser/MIParser.h" 24 #include "llvm/CodeGen/MIRYamlMapping.h" 25 #include "llvm/CodeGen/MachineConstantPool.h" 26 #include "llvm/CodeGen/MachineFrameInfo.h" 27 #include "llvm/CodeGen/MachineFunction.h" 28 #include "llvm/CodeGen/MachineModuleInfo.h" 29 #include "llvm/CodeGen/MachineRegisterInfo.h" 30 #include "llvm/CodeGen/TargetFrameLowering.h" 31 #include "llvm/IR/BasicBlock.h" 32 #include "llvm/IR/DebugInfo.h" 33 #include "llvm/IR/DiagnosticInfo.h" 34 #include "llvm/IR/Instructions.h" 35 #include "llvm/IR/LLVMContext.h" 36 #include "llvm/IR/Module.h" 37 #include "llvm/IR/ValueSymbolTable.h" 38 #include "llvm/Support/LineIterator.h" 39 #include "llvm/Support/MemoryBuffer.h" 40 #include "llvm/Support/SMLoc.h" 41 #include "llvm/Support/SourceMgr.h" 42 #include "llvm/Support/YAMLTraits.h" 43 #include "llvm/Target/TargetMachine.h" 44 #include <memory> 45 46 using namespace llvm; 47 48 namespace llvm { 49 50 /// This class implements the parsing of LLVM IR that's embedded inside a MIR 51 /// file. 52 class MIRParserImpl { 53 SourceMgr SM; 54 yaml::Input In; 55 StringRef Filename; 56 LLVMContext &Context; 57 SlotMapping IRSlots; 58 std::unique_ptr<PerTargetMIParsingState> Target; 59 60 /// True when the MIR file doesn't have LLVM IR. Dummy IR functions are 61 /// created and inserted into the given module when this is true. 62 bool NoLLVMIR = false; 63 /// True when a well formed MIR file does not contain any MIR/machine function 64 /// parts. 65 bool NoMIRDocuments = false; 66 67 std::function<void(Function &)> ProcessIRFunction; 68 69 public: 70 MIRParserImpl(std::unique_ptr<MemoryBuffer> Contents, StringRef Filename, 71 LLVMContext &Context, 72 std::function<void(Function &)> ProcessIRFunction); 73 74 void reportDiagnostic(const SMDiagnostic &Diag); 75 76 /// Report an error with the given message at unknown location. 77 /// 78 /// Always returns true. 79 bool error(const Twine &Message); 80 81 /// Report an error with the given message at the given location. 82 /// 83 /// Always returns true. 84 bool error(SMLoc Loc, const Twine &Message); 85 86 /// Report a given error with the location translated from the location in an 87 /// embedded string literal to a location in the MIR file. 88 /// 89 /// Always returns true. 90 bool error(const SMDiagnostic &Error, SMRange SourceRange); 91 92 /// Try to parse the optional LLVM module and the machine functions in the MIR 93 /// file. 94 /// 95 /// Return null if an error occurred. 96 std::unique_ptr<Module> parseIRModule(); 97 98 /// Create an empty function with the given name. 99 Function *createDummyFunction(StringRef Name, Module &M); 100 101 bool parseMachineFunctions(Module &M, MachineModuleInfo &MMI); 102 103 /// Parse the machine function in the current YAML document. 104 /// 105 /// 106 /// Return true if an error occurred. 107 bool parseMachineFunction(Module &M, MachineModuleInfo &MMI); 108 109 /// Initialize the machine function to the state that's described in the MIR 110 /// file. 111 /// 112 /// Return true if error occurred. 113 bool initializeMachineFunction(const yaml::MachineFunction &YamlMF, 114 MachineFunction &MF); 115 116 bool parseRegisterInfo(PerFunctionMIParsingState &PFS, 117 const yaml::MachineFunction &YamlMF); 118 119 bool setupRegisterInfo(const PerFunctionMIParsingState &PFS, 120 const yaml::MachineFunction &YamlMF); 121 122 bool initializeFrameInfo(PerFunctionMIParsingState &PFS, 123 const yaml::MachineFunction &YamlMF); 124 125 bool initializeCallSiteInfo(PerFunctionMIParsingState &PFS, 126 const yaml::MachineFunction &YamlMF); 127 128 bool parseCalleeSavedRegister(PerFunctionMIParsingState &PFS, 129 std::vector<CalleeSavedInfo> &CSIInfo, 130 const yaml::StringValue &RegisterSource, 131 bool IsRestored, int FrameIdx); 132 133 template <typename T> 134 bool parseStackObjectsDebugInfo(PerFunctionMIParsingState &PFS, 135 const T &Object, 136 int FrameIdx); 137 138 bool initializeConstantPool(PerFunctionMIParsingState &PFS, 139 MachineConstantPool &ConstantPool, 140 const yaml::MachineFunction &YamlMF); 141 142 bool initializeJumpTableInfo(PerFunctionMIParsingState &PFS, 143 const yaml::MachineJumpTable &YamlJTI); 144 145 private: 146 bool parseMDNode(PerFunctionMIParsingState &PFS, MDNode *&Node, 147 const yaml::StringValue &Source); 148 149 bool parseMBBReference(PerFunctionMIParsingState &PFS, 150 MachineBasicBlock *&MBB, 151 const yaml::StringValue &Source); 152 153 /// Return a MIR diagnostic converted from an MI string diagnostic. 154 SMDiagnostic diagFromMIStringDiag(const SMDiagnostic &Error, 155 SMRange SourceRange); 156 157 /// Return a MIR diagnostic converted from a diagnostic located in a YAML 158 /// block scalar string. 159 SMDiagnostic diagFromBlockStringDiag(const SMDiagnostic &Error, 160 SMRange SourceRange); 161 162 void computeFunctionProperties(MachineFunction &MF); 163 }; 164 165 } // end namespace llvm 166 167 static void handleYAMLDiag(const SMDiagnostic &Diag, void *Context) { 168 reinterpret_cast<MIRParserImpl *>(Context)->reportDiagnostic(Diag); 169 } 170 171 MIRParserImpl::MIRParserImpl(std::unique_ptr<MemoryBuffer> Contents, 172 StringRef Filename, LLVMContext &Context, 173 std::function<void(Function &)> Callback) 174 : SM(), 175 In(SM.getMemoryBuffer(SM.AddNewSourceBuffer(std::move(Contents), SMLoc())) 176 ->getBuffer(), 177 nullptr, handleYAMLDiag, this), 178 Filename(Filename), Context(Context), ProcessIRFunction(Callback) { 179 In.setContext(&In); 180 } 181 182 bool MIRParserImpl::error(const Twine &Message) { 183 Context.diagnose(DiagnosticInfoMIRParser( 184 DS_Error, SMDiagnostic(Filename, SourceMgr::DK_Error, Message.str()))); 185 return true; 186 } 187 188 bool MIRParserImpl::error(SMLoc Loc, const Twine &Message) { 189 Context.diagnose(DiagnosticInfoMIRParser( 190 DS_Error, SM.GetMessage(Loc, SourceMgr::DK_Error, Message))); 191 return true; 192 } 193 194 bool MIRParserImpl::error(const SMDiagnostic &Error, SMRange SourceRange) { 195 assert(Error.getKind() == SourceMgr::DK_Error && "Expected an error"); 196 reportDiagnostic(diagFromMIStringDiag(Error, SourceRange)); 197 return true; 198 } 199 200 void MIRParserImpl::reportDiagnostic(const SMDiagnostic &Diag) { 201 DiagnosticSeverity Kind; 202 switch (Diag.getKind()) { 203 case SourceMgr::DK_Error: 204 Kind = DS_Error; 205 break; 206 case SourceMgr::DK_Warning: 207 Kind = DS_Warning; 208 break; 209 case SourceMgr::DK_Note: 210 Kind = DS_Note; 211 break; 212 case SourceMgr::DK_Remark: 213 llvm_unreachable("remark unexpected"); 214 break; 215 } 216 Context.diagnose(DiagnosticInfoMIRParser(Kind, Diag)); 217 } 218 219 std::unique_ptr<Module> MIRParserImpl::parseIRModule() { 220 if (!In.setCurrentDocument()) { 221 if (In.error()) 222 return nullptr; 223 // Create an empty module when the MIR file is empty. 224 NoMIRDocuments = true; 225 return std::make_unique<Module>(Filename, Context); 226 } 227 228 std::unique_ptr<Module> M; 229 // Parse the block scalar manually so that we can return unique pointer 230 // without having to go trough YAML traits. 231 if (const auto *BSN = 232 dyn_cast_or_null<yaml::BlockScalarNode>(In.getCurrentNode())) { 233 SMDiagnostic Error; 234 M = parseAssembly(MemoryBufferRef(BSN->getValue(), Filename), Error, 235 Context, &IRSlots, /*UpgradeDebugInfo=*/false); 236 if (!M) { 237 reportDiagnostic(diagFromBlockStringDiag(Error, BSN->getSourceRange())); 238 return nullptr; 239 } 240 In.nextDocument(); 241 if (!In.setCurrentDocument()) 242 NoMIRDocuments = true; 243 } else { 244 // Create an new, empty module. 245 M = std::make_unique<Module>(Filename, Context); 246 NoLLVMIR = true; 247 } 248 return M; 249 } 250 251 bool MIRParserImpl::parseMachineFunctions(Module &M, MachineModuleInfo &MMI) { 252 if (NoMIRDocuments) 253 return false; 254 255 // Parse the machine functions. 256 do { 257 if (parseMachineFunction(M, MMI)) 258 return true; 259 In.nextDocument(); 260 } while (In.setCurrentDocument()); 261 262 return false; 263 } 264 265 Function *MIRParserImpl::createDummyFunction(StringRef Name, Module &M) { 266 auto &Context = M.getContext(); 267 Function *F = 268 Function::Create(FunctionType::get(Type::getVoidTy(Context), false), 269 Function::ExternalLinkage, Name, M); 270 BasicBlock *BB = BasicBlock::Create(Context, "entry", F); 271 new UnreachableInst(Context, BB); 272 273 if (ProcessIRFunction) 274 ProcessIRFunction(*F); 275 276 return F; 277 } 278 279 bool MIRParserImpl::parseMachineFunction(Module &M, MachineModuleInfo &MMI) { 280 // Parse the yaml. 281 yaml::MachineFunction YamlMF; 282 yaml::EmptyContext Ctx; 283 284 const LLVMTargetMachine &TM = MMI.getTarget(); 285 YamlMF.MachineFuncInfo = std::unique_ptr<yaml::MachineFunctionInfo>( 286 TM.createDefaultFuncInfoYAML()); 287 288 yaml::yamlize(In, YamlMF, false, Ctx); 289 if (In.error()) 290 return true; 291 292 // Search for the corresponding IR function. 293 StringRef FunctionName = YamlMF.Name; 294 Function *F = M.getFunction(FunctionName); 295 if (!F) { 296 if (NoLLVMIR) { 297 F = createDummyFunction(FunctionName, M); 298 } else { 299 return error(Twine("function '") + FunctionName + 300 "' isn't defined in the provided LLVM IR"); 301 } 302 } 303 if (MMI.getMachineFunction(*F) != nullptr) 304 return error(Twine("redefinition of machine function '") + FunctionName + 305 "'"); 306 307 // Create the MachineFunction. 308 MachineFunction &MF = MMI.getOrCreateMachineFunction(*F); 309 if (initializeMachineFunction(YamlMF, MF)) 310 return true; 311 312 return false; 313 } 314 315 static bool isSSA(const MachineFunction &MF) { 316 const MachineRegisterInfo &MRI = MF.getRegInfo(); 317 for (unsigned I = 0, E = MRI.getNumVirtRegs(); I != E; ++I) { 318 unsigned Reg = Register::index2VirtReg(I); 319 if (!MRI.hasOneDef(Reg) && !MRI.def_empty(Reg)) 320 return false; 321 } 322 return true; 323 } 324 325 void MIRParserImpl::computeFunctionProperties(MachineFunction &MF) { 326 MachineFunctionProperties &Properties = MF.getProperties(); 327 328 bool HasPHI = false; 329 bool HasInlineAsm = false; 330 for (const MachineBasicBlock &MBB : MF) { 331 for (const MachineInstr &MI : MBB) { 332 if (MI.isPHI()) 333 HasPHI = true; 334 if (MI.isInlineAsm()) 335 HasInlineAsm = true; 336 } 337 } 338 if (!HasPHI) 339 Properties.set(MachineFunctionProperties::Property::NoPHIs); 340 MF.setHasInlineAsm(HasInlineAsm); 341 342 if (isSSA(MF)) 343 Properties.set(MachineFunctionProperties::Property::IsSSA); 344 else 345 Properties.reset(MachineFunctionProperties::Property::IsSSA); 346 347 const MachineRegisterInfo &MRI = MF.getRegInfo(); 348 if (MRI.getNumVirtRegs() == 0) 349 Properties.set(MachineFunctionProperties::Property::NoVRegs); 350 } 351 352 bool MIRParserImpl::initializeCallSiteInfo( 353 PerFunctionMIParsingState &PFS, const yaml::MachineFunction &YamlMF) { 354 MachineFunction &MF = PFS.MF; 355 SMDiagnostic Error; 356 const LLVMTargetMachine &TM = MF.getTarget(); 357 for (auto YamlCSInfo : YamlMF.CallSitesInfo) { 358 yaml::CallSiteInfo::MachineInstrLoc MILoc = YamlCSInfo.CallLocation; 359 if (MILoc.BlockNum >= MF.size()) 360 return error(Twine(MF.getName()) + 361 Twine(" call instruction block out of range.") + 362 " Unable to reference bb:" + Twine(MILoc.BlockNum)); 363 auto CallB = std::next(MF.begin(), MILoc.BlockNum); 364 if (MILoc.Offset >= CallB->size()) 365 return error(Twine(MF.getName()) + 366 Twine(" call instruction offset out of range.") + 367 " Unable to reference instruction at bb: " + 368 Twine(MILoc.BlockNum) + " at offset:" + Twine(MILoc.Offset)); 369 auto CallI = std::next(CallB->instr_begin(), MILoc.Offset); 370 if (!CallI->isCall(MachineInstr::IgnoreBundle)) 371 return error(Twine(MF.getName()) + 372 Twine(" call site info should reference call " 373 "instruction. Instruction at bb:") + 374 Twine(MILoc.BlockNum) + " at offset:" + Twine(MILoc.Offset) + 375 " is not a call instruction"); 376 MachineFunction::CallSiteInfo CSInfo; 377 for (auto ArgRegPair : YamlCSInfo.ArgForwardingRegs) { 378 unsigned Reg = 0; 379 if (parseNamedRegisterReference(PFS, Reg, ArgRegPair.Reg.Value, Error)) 380 return error(Error, ArgRegPair.Reg.SourceRange); 381 CSInfo.emplace_back(Reg, ArgRegPair.ArgNo); 382 } 383 384 if (TM.Options.EnableDebugEntryValues) 385 MF.addCallArgsForwardingRegs(&*CallI, std::move(CSInfo)); 386 } 387 388 if (YamlMF.CallSitesInfo.size() && !TM.Options.EnableDebugEntryValues) 389 return error(Twine("Call site info provided but not used")); 390 return false; 391 } 392 393 bool 394 MIRParserImpl::initializeMachineFunction(const yaml::MachineFunction &YamlMF, 395 MachineFunction &MF) { 396 // TODO: Recreate the machine function. 397 if (Target) { 398 // Avoid clearing state if we're using the same subtarget again. 399 Target->setTarget(MF.getSubtarget()); 400 } else { 401 Target.reset(new PerTargetMIParsingState(MF.getSubtarget())); 402 } 403 404 if (YamlMF.Alignment) 405 MF.setAlignment(Align(YamlMF.Alignment)); 406 MF.setExposesReturnsTwice(YamlMF.ExposesReturnsTwice); 407 MF.setHasWinCFI(YamlMF.HasWinCFI); 408 409 if (YamlMF.Legalized) 410 MF.getProperties().set(MachineFunctionProperties::Property::Legalized); 411 if (YamlMF.RegBankSelected) 412 MF.getProperties().set( 413 MachineFunctionProperties::Property::RegBankSelected); 414 if (YamlMF.Selected) 415 MF.getProperties().set(MachineFunctionProperties::Property::Selected); 416 if (YamlMF.FailedISel) 417 MF.getProperties().set(MachineFunctionProperties::Property::FailedISel); 418 419 PerFunctionMIParsingState PFS(MF, SM, IRSlots, *Target); 420 if (parseRegisterInfo(PFS, YamlMF)) 421 return true; 422 if (!YamlMF.Constants.empty()) { 423 auto *ConstantPool = MF.getConstantPool(); 424 assert(ConstantPool && "Constant pool must be created"); 425 if (initializeConstantPool(PFS, *ConstantPool, YamlMF)) 426 return true; 427 } 428 429 StringRef BlockStr = YamlMF.Body.Value.Value; 430 SMDiagnostic Error; 431 SourceMgr BlockSM; 432 BlockSM.AddNewSourceBuffer( 433 MemoryBuffer::getMemBuffer(BlockStr, "",/*RequiresNullTerminator=*/false), 434 SMLoc()); 435 PFS.SM = &BlockSM; 436 if (parseMachineBasicBlockDefinitions(PFS, BlockStr, Error)) { 437 reportDiagnostic( 438 diagFromBlockStringDiag(Error, YamlMF.Body.Value.SourceRange)); 439 return true; 440 } 441 PFS.SM = &SM; 442 443 // Initialize the frame information after creating all the MBBs so that the 444 // MBB references in the frame information can be resolved. 445 if (initializeFrameInfo(PFS, YamlMF)) 446 return true; 447 // Initialize the jump table after creating all the MBBs so that the MBB 448 // references can be resolved. 449 if (!YamlMF.JumpTableInfo.Entries.empty() && 450 initializeJumpTableInfo(PFS, YamlMF.JumpTableInfo)) 451 return true; 452 // Parse the machine instructions after creating all of the MBBs so that the 453 // parser can resolve the MBB references. 454 StringRef InsnStr = YamlMF.Body.Value.Value; 455 SourceMgr InsnSM; 456 InsnSM.AddNewSourceBuffer( 457 MemoryBuffer::getMemBuffer(InsnStr, "", /*RequiresNullTerminator=*/false), 458 SMLoc()); 459 PFS.SM = &InsnSM; 460 if (parseMachineInstructions(PFS, InsnStr, Error)) { 461 reportDiagnostic( 462 diagFromBlockStringDiag(Error, YamlMF.Body.Value.SourceRange)); 463 return true; 464 } 465 PFS.SM = &SM; 466 467 if (setupRegisterInfo(PFS, YamlMF)) 468 return true; 469 470 if (YamlMF.MachineFuncInfo) { 471 const LLVMTargetMachine &TM = MF.getTarget(); 472 // Note this is called after the initial constructor of the 473 // MachineFunctionInfo based on the MachineFunction, which may depend on the 474 // IR. 475 476 SMRange SrcRange; 477 if (TM.parseMachineFunctionInfo(*YamlMF.MachineFuncInfo, PFS, Error, 478 SrcRange)) { 479 return error(Error, SrcRange); 480 } 481 } 482 483 // Set the reserved registers after parsing MachineFuncInfo. The target may 484 // have been recording information used to select the reserved registers 485 // there. 486 // FIXME: This is a temporary workaround until the reserved registers can be 487 // serialized. 488 MachineRegisterInfo &MRI = MF.getRegInfo(); 489 MRI.freezeReservedRegs(MF); 490 491 computeFunctionProperties(MF); 492 493 if (initializeCallSiteInfo(PFS, YamlMF)) 494 return false; 495 496 MF.getSubtarget().mirFileLoaded(MF); 497 498 MF.verify(); 499 return false; 500 } 501 502 bool MIRParserImpl::parseRegisterInfo(PerFunctionMIParsingState &PFS, 503 const yaml::MachineFunction &YamlMF) { 504 MachineFunction &MF = PFS.MF; 505 MachineRegisterInfo &RegInfo = MF.getRegInfo(); 506 assert(RegInfo.tracksLiveness()); 507 if (!YamlMF.TracksRegLiveness) 508 RegInfo.invalidateLiveness(); 509 510 SMDiagnostic Error; 511 // Parse the virtual register information. 512 for (const auto &VReg : YamlMF.VirtualRegisters) { 513 VRegInfo &Info = PFS.getVRegInfo(VReg.ID.Value); 514 if (Info.Explicit) 515 return error(VReg.ID.SourceRange.Start, 516 Twine("redefinition of virtual register '%") + 517 Twine(VReg.ID.Value) + "'"); 518 Info.Explicit = true; 519 520 if (StringRef(VReg.Class.Value).equals("_")) { 521 Info.Kind = VRegInfo::GENERIC; 522 Info.D.RegBank = nullptr; 523 } else { 524 const auto *RC = Target->getRegClass(VReg.Class.Value); 525 if (RC) { 526 Info.Kind = VRegInfo::NORMAL; 527 Info.D.RC = RC; 528 } else { 529 const RegisterBank *RegBank = Target->getRegBank(VReg.Class.Value); 530 if (!RegBank) 531 return error( 532 VReg.Class.SourceRange.Start, 533 Twine("use of undefined register class or register bank '") + 534 VReg.Class.Value + "'"); 535 Info.Kind = VRegInfo::REGBANK; 536 Info.D.RegBank = RegBank; 537 } 538 } 539 540 if (!VReg.PreferredRegister.Value.empty()) { 541 if (Info.Kind != VRegInfo::NORMAL) 542 return error(VReg.Class.SourceRange.Start, 543 Twine("preferred register can only be set for normal vregs")); 544 545 if (parseRegisterReference(PFS, Info.PreferredReg, 546 VReg.PreferredRegister.Value, Error)) 547 return error(Error, VReg.PreferredRegister.SourceRange); 548 } 549 } 550 551 // Parse the liveins. 552 for (const auto &LiveIn : YamlMF.LiveIns) { 553 unsigned Reg = 0; 554 if (parseNamedRegisterReference(PFS, Reg, LiveIn.Register.Value, Error)) 555 return error(Error, LiveIn.Register.SourceRange); 556 unsigned VReg = 0; 557 if (!LiveIn.VirtualRegister.Value.empty()) { 558 VRegInfo *Info; 559 if (parseVirtualRegisterReference(PFS, Info, LiveIn.VirtualRegister.Value, 560 Error)) 561 return error(Error, LiveIn.VirtualRegister.SourceRange); 562 VReg = Info->VReg; 563 } 564 RegInfo.addLiveIn(Reg, VReg); 565 } 566 567 // Parse the callee saved registers (Registers that will 568 // be saved for the caller). 569 if (YamlMF.CalleeSavedRegisters) { 570 SmallVector<MCPhysReg, 16> CalleeSavedRegisters; 571 for (const auto &RegSource : YamlMF.CalleeSavedRegisters.getValue()) { 572 unsigned Reg = 0; 573 if (parseNamedRegisterReference(PFS, Reg, RegSource.Value, Error)) 574 return error(Error, RegSource.SourceRange); 575 CalleeSavedRegisters.push_back(Reg); 576 } 577 RegInfo.setCalleeSavedRegs(CalleeSavedRegisters); 578 } 579 580 return false; 581 } 582 583 bool MIRParserImpl::setupRegisterInfo(const PerFunctionMIParsingState &PFS, 584 const yaml::MachineFunction &YamlMF) { 585 MachineFunction &MF = PFS.MF; 586 MachineRegisterInfo &MRI = MF.getRegInfo(); 587 bool Error = false; 588 // Create VRegs 589 auto populateVRegInfo = [&] (const VRegInfo &Info, Twine Name) { 590 unsigned Reg = Info.VReg; 591 switch (Info.Kind) { 592 case VRegInfo::UNKNOWN: 593 error(Twine("Cannot determine class/bank of virtual register ") + 594 Name + " in function '" + MF.getName() + "'"); 595 Error = true; 596 break; 597 case VRegInfo::NORMAL: 598 MRI.setRegClass(Reg, Info.D.RC); 599 if (Info.PreferredReg != 0) 600 MRI.setSimpleHint(Reg, Info.PreferredReg); 601 break; 602 case VRegInfo::GENERIC: 603 break; 604 case VRegInfo::REGBANK: 605 MRI.setRegBank(Reg, *Info.D.RegBank); 606 break; 607 } 608 }; 609 610 for (auto I = PFS.VRegInfosNamed.begin(), E = PFS.VRegInfosNamed.end(); 611 I != E; I++) { 612 const VRegInfo &Info = *I->second; 613 populateVRegInfo(Info, Twine(I->first())); 614 } 615 616 for (auto P : PFS.VRegInfos) { 617 const VRegInfo &Info = *P.second; 618 populateVRegInfo(Info, Twine(P.first)); 619 } 620 621 // Compute MachineRegisterInfo::UsedPhysRegMask 622 for (const MachineBasicBlock &MBB : MF) { 623 for (const MachineInstr &MI : MBB) { 624 for (const MachineOperand &MO : MI.operands()) { 625 if (!MO.isRegMask()) 626 continue; 627 MRI.addPhysRegsUsedFromRegMask(MO.getRegMask()); 628 } 629 } 630 } 631 632 return Error; 633 } 634 635 bool MIRParserImpl::initializeFrameInfo(PerFunctionMIParsingState &PFS, 636 const yaml::MachineFunction &YamlMF) { 637 MachineFunction &MF = PFS.MF; 638 MachineFrameInfo &MFI = MF.getFrameInfo(); 639 const TargetFrameLowering *TFI = MF.getSubtarget().getFrameLowering(); 640 const Function &F = MF.getFunction(); 641 const yaml::MachineFrameInfo &YamlMFI = YamlMF.FrameInfo; 642 MFI.setFrameAddressIsTaken(YamlMFI.IsFrameAddressTaken); 643 MFI.setReturnAddressIsTaken(YamlMFI.IsReturnAddressTaken); 644 MFI.setHasStackMap(YamlMFI.HasStackMap); 645 MFI.setHasPatchPoint(YamlMFI.HasPatchPoint); 646 MFI.setStackSize(YamlMFI.StackSize); 647 MFI.setOffsetAdjustment(YamlMFI.OffsetAdjustment); 648 if (YamlMFI.MaxAlignment) 649 MFI.ensureMaxAlignment(YamlMFI.MaxAlignment); 650 MFI.setAdjustsStack(YamlMFI.AdjustsStack); 651 MFI.setHasCalls(YamlMFI.HasCalls); 652 if (YamlMFI.MaxCallFrameSize != ~0u) 653 MFI.setMaxCallFrameSize(YamlMFI.MaxCallFrameSize); 654 MFI.setCVBytesOfCalleeSavedRegisters(YamlMFI.CVBytesOfCalleeSavedRegisters); 655 MFI.setHasOpaqueSPAdjustment(YamlMFI.HasOpaqueSPAdjustment); 656 MFI.setHasVAStart(YamlMFI.HasVAStart); 657 MFI.setHasMustTailInVarArgFunc(YamlMFI.HasMustTailInVarArgFunc); 658 MFI.setLocalFrameSize(YamlMFI.LocalFrameSize); 659 if (!YamlMFI.SavePoint.Value.empty()) { 660 MachineBasicBlock *MBB = nullptr; 661 if (parseMBBReference(PFS, MBB, YamlMFI.SavePoint)) 662 return true; 663 MFI.setSavePoint(MBB); 664 } 665 if (!YamlMFI.RestorePoint.Value.empty()) { 666 MachineBasicBlock *MBB = nullptr; 667 if (parseMBBReference(PFS, MBB, YamlMFI.RestorePoint)) 668 return true; 669 MFI.setRestorePoint(MBB); 670 } 671 672 std::vector<CalleeSavedInfo> CSIInfo; 673 // Initialize the fixed frame objects. 674 for (const auto &Object : YamlMF.FixedStackObjects) { 675 int ObjectIdx; 676 if (Object.Type != yaml::FixedMachineStackObject::SpillSlot) 677 ObjectIdx = MFI.CreateFixedObject(Object.Size, Object.Offset, 678 Object.IsImmutable, Object.IsAliased); 679 else 680 ObjectIdx = MFI.CreateFixedSpillStackObject(Object.Size, Object.Offset); 681 682 if (!TFI->isSupportedStackID(Object.StackID)) 683 return error(Object.ID.SourceRange.Start, 684 Twine("StackID is not supported by target")); 685 MFI.setStackID(ObjectIdx, Object.StackID); 686 MFI.setObjectAlignment(ObjectIdx, Object.Alignment); 687 if (!PFS.FixedStackObjectSlots.insert(std::make_pair(Object.ID.Value, 688 ObjectIdx)) 689 .second) 690 return error(Object.ID.SourceRange.Start, 691 Twine("redefinition of fixed stack object '%fixed-stack.") + 692 Twine(Object.ID.Value) + "'"); 693 if (parseCalleeSavedRegister(PFS, CSIInfo, Object.CalleeSavedRegister, 694 Object.CalleeSavedRestored, ObjectIdx)) 695 return true; 696 if (parseStackObjectsDebugInfo(PFS, Object, ObjectIdx)) 697 return true; 698 } 699 700 // Initialize the ordinary frame objects. 701 for (const auto &Object : YamlMF.StackObjects) { 702 int ObjectIdx; 703 const AllocaInst *Alloca = nullptr; 704 const yaml::StringValue &Name = Object.Name; 705 if (!Name.Value.empty()) { 706 Alloca = dyn_cast_or_null<AllocaInst>( 707 F.getValueSymbolTable()->lookup(Name.Value)); 708 if (!Alloca) 709 return error(Name.SourceRange.Start, 710 "alloca instruction named '" + Name.Value + 711 "' isn't defined in the function '" + F.getName() + 712 "'"); 713 } 714 if (!TFI->isSupportedStackID(Object.StackID)) 715 return error(Object.ID.SourceRange.Start, 716 Twine("StackID is not supported by target")); 717 if (Object.Type == yaml::MachineStackObject::VariableSized) 718 ObjectIdx = MFI.CreateVariableSizedObject(Object.Alignment, Alloca); 719 else 720 ObjectIdx = MFI.CreateStackObject( 721 Object.Size, Object.Alignment, 722 Object.Type == yaml::MachineStackObject::SpillSlot, Alloca, 723 Object.StackID); 724 MFI.setObjectOffset(ObjectIdx, Object.Offset); 725 726 if (!PFS.StackObjectSlots.insert(std::make_pair(Object.ID.Value, ObjectIdx)) 727 .second) 728 return error(Object.ID.SourceRange.Start, 729 Twine("redefinition of stack object '%stack.") + 730 Twine(Object.ID.Value) + "'"); 731 if (parseCalleeSavedRegister(PFS, CSIInfo, Object.CalleeSavedRegister, 732 Object.CalleeSavedRestored, ObjectIdx)) 733 return true; 734 if (Object.LocalOffset) 735 MFI.mapLocalFrameObject(ObjectIdx, Object.LocalOffset.getValue()); 736 if (parseStackObjectsDebugInfo(PFS, Object, ObjectIdx)) 737 return true; 738 } 739 MFI.setCalleeSavedInfo(CSIInfo); 740 if (!CSIInfo.empty()) 741 MFI.setCalleeSavedInfoValid(true); 742 743 // Initialize the various stack object references after initializing the 744 // stack objects. 745 if (!YamlMFI.StackProtector.Value.empty()) { 746 SMDiagnostic Error; 747 int FI; 748 if (parseStackObjectReference(PFS, FI, YamlMFI.StackProtector.Value, Error)) 749 return error(Error, YamlMFI.StackProtector.SourceRange); 750 MFI.setStackProtectorIndex(FI); 751 } 752 return false; 753 } 754 755 bool MIRParserImpl::parseCalleeSavedRegister(PerFunctionMIParsingState &PFS, 756 std::vector<CalleeSavedInfo> &CSIInfo, 757 const yaml::StringValue &RegisterSource, bool IsRestored, int FrameIdx) { 758 if (RegisterSource.Value.empty()) 759 return false; 760 unsigned Reg = 0; 761 SMDiagnostic Error; 762 if (parseNamedRegisterReference(PFS, Reg, RegisterSource.Value, Error)) 763 return error(Error, RegisterSource.SourceRange); 764 CalleeSavedInfo CSI(Reg, FrameIdx); 765 CSI.setRestored(IsRestored); 766 CSIInfo.push_back(CSI); 767 return false; 768 } 769 770 /// Verify that given node is of a certain type. Return true on error. 771 template <typename T> 772 static bool typecheckMDNode(T *&Result, MDNode *Node, 773 const yaml::StringValue &Source, 774 StringRef TypeString, MIRParserImpl &Parser) { 775 if (!Node) 776 return false; 777 Result = dyn_cast<T>(Node); 778 if (!Result) 779 return Parser.error(Source.SourceRange.Start, 780 "expected a reference to a '" + TypeString + 781 "' metadata node"); 782 return false; 783 } 784 785 template <typename T> 786 bool MIRParserImpl::parseStackObjectsDebugInfo(PerFunctionMIParsingState &PFS, 787 const T &Object, int FrameIdx) { 788 // Debug information can only be attached to stack objects; Fixed stack 789 // objects aren't supported. 790 MDNode *Var = nullptr, *Expr = nullptr, *Loc = nullptr; 791 if (parseMDNode(PFS, Var, Object.DebugVar) || 792 parseMDNode(PFS, Expr, Object.DebugExpr) || 793 parseMDNode(PFS, Loc, Object.DebugLoc)) 794 return true; 795 if (!Var && !Expr && !Loc) 796 return false; 797 DILocalVariable *DIVar = nullptr; 798 DIExpression *DIExpr = nullptr; 799 DILocation *DILoc = nullptr; 800 if (typecheckMDNode(DIVar, Var, Object.DebugVar, "DILocalVariable", *this) || 801 typecheckMDNode(DIExpr, Expr, Object.DebugExpr, "DIExpression", *this) || 802 typecheckMDNode(DILoc, Loc, Object.DebugLoc, "DILocation", *this)) 803 return true; 804 PFS.MF.setVariableDbgInfo(DIVar, DIExpr, FrameIdx, DILoc); 805 return false; 806 } 807 808 bool MIRParserImpl::parseMDNode(PerFunctionMIParsingState &PFS, 809 MDNode *&Node, const yaml::StringValue &Source) { 810 if (Source.Value.empty()) 811 return false; 812 SMDiagnostic Error; 813 if (llvm::parseMDNode(PFS, Node, Source.Value, Error)) 814 return error(Error, Source.SourceRange); 815 return false; 816 } 817 818 bool MIRParserImpl::initializeConstantPool(PerFunctionMIParsingState &PFS, 819 MachineConstantPool &ConstantPool, const yaml::MachineFunction &YamlMF) { 820 DenseMap<unsigned, unsigned> &ConstantPoolSlots = PFS.ConstantPoolSlots; 821 const MachineFunction &MF = PFS.MF; 822 const auto &M = *MF.getFunction().getParent(); 823 SMDiagnostic Error; 824 for (const auto &YamlConstant : YamlMF.Constants) { 825 if (YamlConstant.IsTargetSpecific) 826 // FIXME: Support target-specific constant pools 827 return error(YamlConstant.Value.SourceRange.Start, 828 "Can't parse target-specific constant pool entries yet"); 829 const Constant *Value = dyn_cast_or_null<Constant>( 830 parseConstantValue(YamlConstant.Value.Value, Error, M)); 831 if (!Value) 832 return error(Error, YamlConstant.Value.SourceRange); 833 unsigned Alignment = 834 YamlConstant.Alignment 835 ? YamlConstant.Alignment 836 : M.getDataLayout().getPrefTypeAlignment(Value->getType()); 837 unsigned Index = ConstantPool.getConstantPoolIndex(Value, Alignment); 838 if (!ConstantPoolSlots.insert(std::make_pair(YamlConstant.ID.Value, Index)) 839 .second) 840 return error(YamlConstant.ID.SourceRange.Start, 841 Twine("redefinition of constant pool item '%const.") + 842 Twine(YamlConstant.ID.Value) + "'"); 843 } 844 return false; 845 } 846 847 bool MIRParserImpl::initializeJumpTableInfo(PerFunctionMIParsingState &PFS, 848 const yaml::MachineJumpTable &YamlJTI) { 849 MachineJumpTableInfo *JTI = PFS.MF.getOrCreateJumpTableInfo(YamlJTI.Kind); 850 for (const auto &Entry : YamlJTI.Entries) { 851 std::vector<MachineBasicBlock *> Blocks; 852 for (const auto &MBBSource : Entry.Blocks) { 853 MachineBasicBlock *MBB = nullptr; 854 if (parseMBBReference(PFS, MBB, MBBSource.Value)) 855 return true; 856 Blocks.push_back(MBB); 857 } 858 unsigned Index = JTI->createJumpTableIndex(Blocks); 859 if (!PFS.JumpTableSlots.insert(std::make_pair(Entry.ID.Value, Index)) 860 .second) 861 return error(Entry.ID.SourceRange.Start, 862 Twine("redefinition of jump table entry '%jump-table.") + 863 Twine(Entry.ID.Value) + "'"); 864 } 865 return false; 866 } 867 868 bool MIRParserImpl::parseMBBReference(PerFunctionMIParsingState &PFS, 869 MachineBasicBlock *&MBB, 870 const yaml::StringValue &Source) { 871 SMDiagnostic Error; 872 if (llvm::parseMBBReference(PFS, MBB, Source.Value, Error)) 873 return error(Error, Source.SourceRange); 874 return false; 875 } 876 877 SMDiagnostic MIRParserImpl::diagFromMIStringDiag(const SMDiagnostic &Error, 878 SMRange SourceRange) { 879 assert(SourceRange.isValid() && "Invalid source range"); 880 SMLoc Loc = SourceRange.Start; 881 bool HasQuote = Loc.getPointer() < SourceRange.End.getPointer() && 882 *Loc.getPointer() == '\''; 883 // Translate the location of the error from the location in the MI string to 884 // the corresponding location in the MIR file. 885 Loc = Loc.getFromPointer(Loc.getPointer() + Error.getColumnNo() + 886 (HasQuote ? 1 : 0)); 887 888 // TODO: Translate any source ranges as well. 889 return SM.GetMessage(Loc, Error.getKind(), Error.getMessage(), None, 890 Error.getFixIts()); 891 } 892 893 SMDiagnostic MIRParserImpl::diagFromBlockStringDiag(const SMDiagnostic &Error, 894 SMRange SourceRange) { 895 assert(SourceRange.isValid()); 896 897 // Translate the location of the error from the location in the llvm IR string 898 // to the corresponding location in the MIR file. 899 auto LineAndColumn = SM.getLineAndColumn(SourceRange.Start); 900 unsigned Line = LineAndColumn.first + Error.getLineNo() - 1; 901 unsigned Column = Error.getColumnNo(); 902 StringRef LineStr = Error.getLineContents(); 903 SMLoc Loc = Error.getLoc(); 904 905 // Get the full line and adjust the column number by taking the indentation of 906 // LLVM IR into account. 907 for (line_iterator L(*SM.getMemoryBuffer(SM.getMainFileID()), false), E; 908 L != E; ++L) { 909 if (L.line_number() == Line) { 910 LineStr = *L; 911 Loc = SMLoc::getFromPointer(LineStr.data()); 912 auto Indent = LineStr.find(Error.getLineContents()); 913 if (Indent != StringRef::npos) 914 Column += Indent; 915 break; 916 } 917 } 918 919 return SMDiagnostic(SM, Loc, Filename, Line, Column, Error.getKind(), 920 Error.getMessage(), LineStr, Error.getRanges(), 921 Error.getFixIts()); 922 } 923 924 MIRParser::MIRParser(std::unique_ptr<MIRParserImpl> Impl) 925 : Impl(std::move(Impl)) {} 926 927 MIRParser::~MIRParser() {} 928 929 std::unique_ptr<Module> MIRParser::parseIRModule() { 930 return Impl->parseIRModule(); 931 } 932 933 bool MIRParser::parseMachineFunctions(Module &M, MachineModuleInfo &MMI) { 934 return Impl->parseMachineFunctions(M, MMI); 935 } 936 937 std::unique_ptr<MIRParser> llvm::createMIRParserFromFile( 938 StringRef Filename, SMDiagnostic &Error, LLVMContext &Context, 939 std::function<void(Function &)> ProcessIRFunction) { 940 auto FileOrErr = MemoryBuffer::getFileOrSTDIN(Filename); 941 if (std::error_code EC = FileOrErr.getError()) { 942 Error = SMDiagnostic(Filename, SourceMgr::DK_Error, 943 "Could not open input file: " + EC.message()); 944 return nullptr; 945 } 946 return createMIRParser(std::move(FileOrErr.get()), Context, 947 ProcessIRFunction); 948 } 949 950 std::unique_ptr<MIRParser> 951 llvm::createMIRParser(std::unique_ptr<MemoryBuffer> Contents, 952 LLVMContext &Context, 953 std::function<void(Function &)> ProcessIRFunction) { 954 auto Filename = Contents->getBufferIdentifier(); 955 if (Context.shouldDiscardValueNames()) { 956 Context.diagnose(DiagnosticInfoMIRParser( 957 DS_Error, 958 SMDiagnostic( 959 Filename, SourceMgr::DK_Error, 960 "Can't read MIR with a Context that discards named Values"))); 961 return nullptr; 962 } 963 return std::make_unique<MIRParser>(std::make_unique<MIRParserImpl>( 964 std::move(Contents), Filename, Context, ProcessIRFunction)); 965 } 966