1 //===-- llvm/CodeGen/MachineModuleInfo.h ------------------------*- C++ -*-===// 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 // Collect meta information for a module. This information should be in a 11 // neutral form that can be used by different debugging and exception handling 12 // schemes. 13 // 14 // The organization of information is primarily clustered around the source 15 // compile units. The main exception is source line correspondence where 16 // inlining may interleave code from various compile units. 17 // 18 // The following information can be retrieved from the MachineModuleInfo. 19 // 20 // -- Source directories - Directories are uniqued based on their canonical 21 // string and assigned a sequential numeric ID (base 1.) 22 // -- Source files - Files are also uniqued based on their name and directory 23 // ID. A file ID is sequential number (base 1.) 24 // -- Source line correspondence - A vector of file ID, line#, column# triples. 25 // A DEBUG_LOCATION instruction is generated by the DAG Legalizer 26 // corresponding to each entry in the source line list. This allows a debug 27 // emitter to generate labels referenced by debug information tables. 28 // 29 //===----------------------------------------------------------------------===// 30 31 #ifndef LLVM_CODEGEN_MACHINEMODULEINFO_H 32 #define LLVM_CODEGEN_MACHINEMODULEINFO_H 33 34 #include "llvm/ADT/DenseMap.h" 35 #include "llvm/ADT/PointerIntPair.h" 36 #include "llvm/ADT/SmallPtrSet.h" 37 #include "llvm/ADT/SmallVector.h" 38 #include "llvm/Analysis/LibCallSemantics.h" 39 #include "llvm/IR/DebugLoc.h" 40 #include "llvm/IR/Metadata.h" 41 #include "llvm/IR/ValueHandle.h" 42 #include "llvm/MC/MCContext.h" 43 #include "llvm/MC/MachineLocation.h" 44 #include "llvm/Pass.h" 45 #include "llvm/Support/DataTypes.h" 46 #include "llvm/Support/Dwarf.h" 47 48 namespace llvm { 49 50 //===----------------------------------------------------------------------===// 51 // Forward declarations. 52 class Constant; 53 class GlobalVariable; 54 class BlockAddress; 55 class MDNode; 56 class MMIAddrLabelMap; 57 class MachineBasicBlock; 58 class MachineFunction; 59 class Module; 60 class PointerType; 61 class StructType; 62 struct WinEHFuncInfo; 63 64 struct SEHHandler { 65 // Filter or finally function. Null indicates a catch-all. 66 const Function *FilterOrFinally; 67 68 // Address of block to recover at. Null for a finally handler. 69 const BlockAddress *RecoverBA; 70 }; 71 72 //===----------------------------------------------------------------------===// 73 /// LandingPadInfo - This structure is used to retain landing pad info for 74 /// the current function. 75 /// 76 struct LandingPadInfo { 77 MachineBasicBlock *LandingPadBlock; // Landing pad block. 78 SmallVector<MCSymbol *, 1> BeginLabels; // Labels prior to invoke. 79 SmallVector<MCSymbol *, 1> EndLabels; // Labels after invoke. 80 SmallVector<SEHHandler, 1> SEHHandlers; // SEH handlers active at this lpad. 81 MCSymbol *LandingPadLabel; // Label at beginning of landing pad. 82 const Function *Personality; // Personality function. 83 std::vector<int> TypeIds; // List of type ids (filters negative). 84 int WinEHState; // WinEH specific state number. 85 LandingPadInfoLandingPadInfo86 explicit LandingPadInfo(MachineBasicBlock *MBB) 87 : LandingPadBlock(MBB), LandingPadLabel(nullptr), Personality(nullptr), 88 WinEHState(-1) {} 89 }; 90 91 //===----------------------------------------------------------------------===// 92 /// MachineModuleInfoImpl - This class can be derived from and used by targets 93 /// to hold private target-specific information for each Module. Objects of 94 /// type are accessed/created with MMI::getInfo and destroyed when the 95 /// MachineModuleInfo is destroyed. 96 /// 97 class MachineModuleInfoImpl { 98 public: 99 typedef PointerIntPair<MCSymbol*, 1, bool> StubValueTy; 100 virtual ~MachineModuleInfoImpl(); 101 typedef std::vector<std::pair<MCSymbol*, StubValueTy> > SymbolListTy; 102 protected: 103 104 /// Return the entries from a DenseMap in a deterministic sorted orer. 105 /// Clears the map. 106 static SymbolListTy getSortedStubs(DenseMap<MCSymbol*, StubValueTy>&); 107 }; 108 109 //===----------------------------------------------------------------------===// 110 /// MachineModuleInfo - This class contains meta information specific to a 111 /// module. Queries can be made by different debugging and exception handling 112 /// schemes and reformated for specific use. 113 /// 114 class MachineModuleInfo : public ImmutablePass { 115 /// Context - This is the MCContext used for the entire code generator. 116 MCContext Context; 117 118 /// TheModule - This is the LLVM Module being worked on. 119 const Module *TheModule; 120 121 /// ObjFileMMI - This is the object-file-format-specific implementation of 122 /// MachineModuleInfoImpl, which lets targets accumulate whatever info they 123 /// want. 124 MachineModuleInfoImpl *ObjFileMMI; 125 126 /// List of moves done by a function's prolog. Used to construct frame maps 127 /// by debug and exception handling consumers. 128 std::vector<MCCFIInstruction> FrameInstructions; 129 130 /// LandingPads - List of LandingPadInfo describing the landing pad 131 /// information in the current function. 132 std::vector<LandingPadInfo> LandingPads; 133 134 /// LPadToCallSiteMap - Map a landing pad's EH symbol to the call site 135 /// indexes. 136 DenseMap<MCSymbol*, SmallVector<unsigned, 4> > LPadToCallSiteMap; 137 138 /// CallSiteMap - Map of invoke call site index values to associated begin 139 /// EH_LABEL for the current function. 140 DenseMap<MCSymbol*, unsigned> CallSiteMap; 141 142 /// CurCallSite - The current call site index being processed, if any. 0 if 143 /// none. 144 unsigned CurCallSite; 145 146 /// TypeInfos - List of C++ TypeInfo used in the current function. 147 std::vector<const GlobalValue *> TypeInfos; 148 149 /// FilterIds - List of typeids encoding filters used in the current function. 150 std::vector<unsigned> FilterIds; 151 152 /// FilterEnds - List of the indices in FilterIds corresponding to filter 153 /// terminators. 154 std::vector<unsigned> FilterEnds; 155 156 /// Personalities - Vector of all personality functions ever seen. Used to 157 /// emit common EH frames. 158 std::vector<const Function *> Personalities; 159 160 /// AddrLabelSymbols - This map keeps track of which symbol is being used for 161 /// the specified basic block's address of label. 162 MMIAddrLabelMap *AddrLabelSymbols; 163 164 bool CallsEHReturn; 165 bool CallsUnwindInit; 166 167 /// DbgInfoAvailable - True if debugging information is available 168 /// in this module. 169 bool DbgInfoAvailable; 170 171 /// UsesVAFloatArgument - True if this module calls VarArg function with 172 /// floating-point arguments. This is used to emit an undefined reference 173 /// to _fltused on Windows targets. 174 bool UsesVAFloatArgument; 175 176 /// UsesMorestackAddr - True if the module calls the __morestack function 177 /// indirectly, as is required under the large code model on x86. This is used 178 /// to emit a definition of a symbol, __morestack_addr, containing the 179 /// address. See comments in lib/Target/X86/X86FrameLowering.cpp for more 180 /// details. 181 bool UsesMorestackAddr; 182 183 EHPersonality PersonalityTypeCache; 184 185 DenseMap<const Function *, std::unique_ptr<WinEHFuncInfo>> FuncInfoMap; 186 187 public: 188 static char ID; // Pass identification, replacement for typeid 189 190 struct VariableDbgInfo { 191 const DILocalVariable *Var; 192 const DIExpression *Expr; 193 unsigned Slot; 194 const DILocation *Loc; 195 VariableDbgInfoVariableDbgInfo196 VariableDbgInfo(const DILocalVariable *Var, const DIExpression *Expr, 197 unsigned Slot, const DILocation *Loc) 198 : Var(Var), Expr(Expr), Slot(Slot), Loc(Loc) {} 199 }; 200 typedef SmallVector<VariableDbgInfo, 4> VariableDbgInfoMapTy; 201 VariableDbgInfoMapTy VariableDbgInfos; 202 203 MachineModuleInfo(); // DUMMY CONSTRUCTOR, DO NOT CALL. 204 // Real constructor. 205 MachineModuleInfo(const MCAsmInfo &MAI, const MCRegisterInfo &MRI, 206 const MCObjectFileInfo *MOFI); 207 ~MachineModuleInfo() override; 208 209 // Initialization and Finalization 210 bool doInitialization(Module &) override; 211 bool doFinalization(Module &) override; 212 213 /// EndFunction - Discard function meta information. 214 /// 215 void EndFunction(); 216 getContext()217 const MCContext &getContext() const { return Context; } getContext()218 MCContext &getContext() { return Context; } 219 setModule(const Module * M)220 void setModule(const Module *M) { TheModule = M; } getModule()221 const Module *getModule() const { return TheModule; } 222 223 const Function *getWinEHParent(const Function *F) const; 224 WinEHFuncInfo &getWinEHFuncInfo(const Function *F); hasWinEHFuncInfo(const Function * F)225 bool hasWinEHFuncInfo(const Function *F) const { 226 return FuncInfoMap.count(getWinEHParent(F)) > 0; 227 } 228 229 /// getInfo - Keep track of various per-function pieces of information for 230 /// backends that would like to do so. 231 /// 232 template<typename Ty> getObjFileInfo()233 Ty &getObjFileInfo() { 234 if (ObjFileMMI == nullptr) 235 ObjFileMMI = new Ty(*this); 236 return *static_cast<Ty*>(ObjFileMMI); 237 } 238 239 template<typename Ty> getObjFileInfo()240 const Ty &getObjFileInfo() const { 241 return const_cast<MachineModuleInfo*>(this)->getObjFileInfo<Ty>(); 242 } 243 244 /// hasDebugInfo - Returns true if valid debug info is present. 245 /// hasDebugInfo()246 bool hasDebugInfo() const { return DbgInfoAvailable; } setDebugInfoAvailability(bool avail)247 void setDebugInfoAvailability(bool avail) { DbgInfoAvailable = avail; } 248 callsEHReturn()249 bool callsEHReturn() const { return CallsEHReturn; } setCallsEHReturn(bool b)250 void setCallsEHReturn(bool b) { CallsEHReturn = b; } 251 callsUnwindInit()252 bool callsUnwindInit() const { return CallsUnwindInit; } setCallsUnwindInit(bool b)253 void setCallsUnwindInit(bool b) { CallsUnwindInit = b; } 254 usesVAFloatArgument()255 bool usesVAFloatArgument() const { 256 return UsesVAFloatArgument; 257 } 258 setUsesVAFloatArgument(bool b)259 void setUsesVAFloatArgument(bool b) { 260 UsesVAFloatArgument = b; 261 } 262 usesMorestackAddr()263 bool usesMorestackAddr() const { 264 return UsesMorestackAddr; 265 } 266 setUsesMorestackAddr(bool b)267 void setUsesMorestackAddr(bool b) { 268 UsesMorestackAddr = b; 269 } 270 271 /// \brief Returns a reference to a list of cfi instructions in the current 272 /// function's prologue. Used to construct frame maps for debug and exception 273 /// handling comsumers. getFrameInstructions()274 const std::vector<MCCFIInstruction> &getFrameInstructions() const { 275 return FrameInstructions; 276 } 277 278 unsigned LLVM_ATTRIBUTE_UNUSED_RESULT addFrameInst(const MCCFIInstruction & Inst)279 addFrameInst(const MCCFIInstruction &Inst) { 280 FrameInstructions.push_back(Inst); 281 return FrameInstructions.size() - 1; 282 } 283 284 /// getAddrLabelSymbol - Return the symbol to be used for the specified basic 285 /// block when its address is taken. This cannot be its normal LBB label 286 /// because the block may be accessed outside its containing function. getAddrLabelSymbol(const BasicBlock * BB)287 MCSymbol *getAddrLabelSymbol(const BasicBlock *BB) { 288 return getAddrLabelSymbolToEmit(BB).front(); 289 } 290 291 /// getAddrLabelSymbolToEmit - Return the symbol to be used for the specified 292 /// basic block when its address is taken. If other blocks were RAUW'd to 293 /// this one, we may have to emit them as well, return the whole set. 294 ArrayRef<MCSymbol *> getAddrLabelSymbolToEmit(const BasicBlock *BB); 295 296 /// takeDeletedSymbolsForFunction - If the specified function has had any 297 /// references to address-taken blocks generated, but the block got deleted, 298 /// return the symbol now so we can emit it. This prevents emitting a 299 /// reference to a symbol that has no definition. 300 void takeDeletedSymbolsForFunction(const Function *F, 301 std::vector<MCSymbol*> &Result); 302 303 304 //===- EH ---------------------------------------------------------------===// 305 306 /// getOrCreateLandingPadInfo - Find or create an LandingPadInfo for the 307 /// specified MachineBasicBlock. 308 LandingPadInfo &getOrCreateLandingPadInfo(MachineBasicBlock *LandingPad); 309 310 /// addInvoke - Provide the begin and end labels of an invoke style call and 311 /// associate it with a try landing pad block. 312 void addInvoke(MachineBasicBlock *LandingPad, 313 MCSymbol *BeginLabel, MCSymbol *EndLabel); 314 315 /// addLandingPad - Add a new panding pad. Returns the label ID for the 316 /// landing pad entry. 317 MCSymbol *addLandingPad(MachineBasicBlock *LandingPad); 318 319 /// addPersonality - Provide the personality function for the exception 320 /// information. 321 void addPersonality(MachineBasicBlock *LandingPad, 322 const Function *Personality); 323 void addPersonality(const Function *Personality); 324 325 void addWinEHState(MachineBasicBlock *LandingPad, int State); 326 327 /// getPersonalityIndex - Get index of the current personality function inside 328 /// Personalitites array 329 unsigned getPersonalityIndex() const; 330 331 /// getPersonalities - Return array of personality functions ever seen. getPersonalities()332 const std::vector<const Function *>& getPersonalities() const { 333 return Personalities; 334 } 335 336 /// addCatchTypeInfo - Provide the catch typeinfo for a landing pad. 337 /// 338 void addCatchTypeInfo(MachineBasicBlock *LandingPad, 339 ArrayRef<const GlobalValue *> TyInfo); 340 341 /// addFilterTypeInfo - Provide the filter typeinfo for a landing pad. 342 /// 343 void addFilterTypeInfo(MachineBasicBlock *LandingPad, 344 ArrayRef<const GlobalValue *> TyInfo); 345 346 /// addCleanup - Add a cleanup action for a landing pad. 347 /// 348 void addCleanup(MachineBasicBlock *LandingPad); 349 350 void addSEHCatchHandler(MachineBasicBlock *LandingPad, const Function *Filter, 351 const BlockAddress *RecoverLabel); 352 353 void addSEHCleanupHandler(MachineBasicBlock *LandingPad, 354 const Function *Cleanup); 355 356 /// getTypeIDFor - Return the type id for the specified typeinfo. This is 357 /// function wide. 358 unsigned getTypeIDFor(const GlobalValue *TI); 359 360 /// getFilterIDFor - Return the id of the filter encoded by TyIds. This is 361 /// function wide. 362 int getFilterIDFor(std::vector<unsigned> &TyIds); 363 364 /// TidyLandingPads - Remap landing pad labels and remove any deleted landing 365 /// pads. 366 void TidyLandingPads(DenseMap<MCSymbol*, uintptr_t> *LPMap = nullptr); 367 368 /// getLandingPads - Return a reference to the landing pad info for the 369 /// current function. getLandingPads()370 const std::vector<LandingPadInfo> &getLandingPads() const { 371 return LandingPads; 372 } 373 374 /// setCallSiteLandingPad - Map the landing pad's EH symbol to the call 375 /// site indexes. 376 void setCallSiteLandingPad(MCSymbol *Sym, ArrayRef<unsigned> Sites); 377 378 /// getCallSiteLandingPad - Get the call site indexes for a landing pad EH 379 /// symbol. getCallSiteLandingPad(MCSymbol * Sym)380 SmallVectorImpl<unsigned> &getCallSiteLandingPad(MCSymbol *Sym) { 381 assert(hasCallSiteLandingPad(Sym) && 382 "missing call site number for landing pad!"); 383 return LPadToCallSiteMap[Sym]; 384 } 385 386 /// hasCallSiteLandingPad - Return true if the landing pad Eh symbol has an 387 /// associated call site. hasCallSiteLandingPad(MCSymbol * Sym)388 bool hasCallSiteLandingPad(MCSymbol *Sym) { 389 return !LPadToCallSiteMap[Sym].empty(); 390 } 391 392 /// setCallSiteBeginLabel - Map the begin label for a call site. setCallSiteBeginLabel(MCSymbol * BeginLabel,unsigned Site)393 void setCallSiteBeginLabel(MCSymbol *BeginLabel, unsigned Site) { 394 CallSiteMap[BeginLabel] = Site; 395 } 396 397 /// getCallSiteBeginLabel - Get the call site number for a begin label. getCallSiteBeginLabel(MCSymbol * BeginLabel)398 unsigned getCallSiteBeginLabel(MCSymbol *BeginLabel) { 399 assert(hasCallSiteBeginLabel(BeginLabel) && 400 "Missing call site number for EH_LABEL!"); 401 return CallSiteMap[BeginLabel]; 402 } 403 404 /// hasCallSiteBeginLabel - Return true if the begin label has a call site 405 /// number associated with it. hasCallSiteBeginLabel(MCSymbol * BeginLabel)406 bool hasCallSiteBeginLabel(MCSymbol *BeginLabel) { 407 return CallSiteMap[BeginLabel] != 0; 408 } 409 410 /// setCurrentCallSite - Set the call site currently being processed. setCurrentCallSite(unsigned Site)411 void setCurrentCallSite(unsigned Site) { CurCallSite = Site; } 412 413 /// getCurrentCallSite - Get the call site currently being processed, if any. 414 /// return zero if none. getCurrentCallSite()415 unsigned getCurrentCallSite() { return CurCallSite; } 416 417 /// getTypeInfos - Return a reference to the C++ typeinfo for the current 418 /// function. getTypeInfos()419 const std::vector<const GlobalValue *> &getTypeInfos() const { 420 return TypeInfos; 421 } 422 423 /// getFilterIds - Return a reference to the typeids encoding filters used in 424 /// the current function. getFilterIds()425 const std::vector<unsigned> &getFilterIds() const { 426 return FilterIds; 427 } 428 429 /// getPersonality - Return a personality function if available. The presence 430 /// of one is required to emit exception handling info. 431 const Function *getPersonality() const; 432 433 /// Classify the personality function amongst known EH styles. 434 EHPersonality getPersonalityType(); 435 436 /// setVariableDbgInfo - Collect information used to emit debugging 437 /// information of a variable. setVariableDbgInfo(const DILocalVariable * Var,const DIExpression * Expr,unsigned Slot,const DILocation * Loc)438 void setVariableDbgInfo(const DILocalVariable *Var, const DIExpression *Expr, 439 unsigned Slot, const DILocation *Loc) { 440 VariableDbgInfos.emplace_back(Var, Expr, Slot, Loc); 441 } 442 getVariableDbgInfo()443 VariableDbgInfoMapTy &getVariableDbgInfo() { return VariableDbgInfos; } 444 445 }; // End class MachineModuleInfo 446 447 } // End llvm namespace 448 449 #endif 450