1 //===----- CGCXXABI.h - Interface to C++ ABIs -------------------*- 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 // This provides an abstract class for C++ code generation. Concrete subclasses 11 // of this implement code generation for specific C++ ABIs. 12 // 13 //===----------------------------------------------------------------------===// 14 15 #ifndef LLVM_CLANG_LIB_CODEGEN_CGCXXABI_H 16 #define LLVM_CLANG_LIB_CODEGEN_CGCXXABI_H 17 18 #include "CodeGenFunction.h" 19 #include "clang/Basic/LLVM.h" 20 21 namespace llvm { 22 class Constant; 23 class Type; 24 class Value; 25 class CallInst; 26 } 27 28 namespace clang { 29 class CastExpr; 30 class CXXConstructorDecl; 31 class CXXDestructorDecl; 32 class CXXMethodDecl; 33 class CXXRecordDecl; 34 class FieldDecl; 35 class MangleContext; 36 37 namespace CodeGen { 38 class CGCallee; 39 class CodeGenFunction; 40 class CodeGenModule; 41 struct CatchTypeInfo; 42 43 /// Implements C++ ABI-specific code generation functions. 44 class CGCXXABI { 45 protected: 46 CodeGenModule &CGM; 47 std::unique_ptr<MangleContext> MangleCtx; 48 CGCXXABI(CodeGenModule & CGM)49 CGCXXABI(CodeGenModule &CGM) 50 : CGM(CGM), MangleCtx(CGM.getContext().createMangleContext()) {} 51 52 protected: getThisDecl(CodeGenFunction & CGF)53 ImplicitParamDecl *getThisDecl(CodeGenFunction &CGF) { 54 return CGF.CXXABIThisDecl; 55 } getThisValue(CodeGenFunction & CGF)56 llvm::Value *getThisValue(CodeGenFunction &CGF) { 57 return CGF.CXXABIThisValue; 58 } getThisAddress(CodeGenFunction & CGF)59 Address getThisAddress(CodeGenFunction &CGF) { 60 return Address(CGF.CXXABIThisValue, CGF.CXXABIThisAlignment); 61 } 62 63 /// Issue a diagnostic about unsupported features in the ABI. 64 void ErrorUnsupportedABI(CodeGenFunction &CGF, StringRef S); 65 66 /// Get a null value for unsupported member pointers. 67 llvm::Constant *GetBogusMemberPointer(QualType T); 68 getStructorImplicitParamDecl(CodeGenFunction & CGF)69 ImplicitParamDecl *&getStructorImplicitParamDecl(CodeGenFunction &CGF) { 70 return CGF.CXXStructorImplicitParamDecl; 71 } getStructorImplicitParamValue(CodeGenFunction & CGF)72 llvm::Value *&getStructorImplicitParamValue(CodeGenFunction &CGF) { 73 return CGF.CXXStructorImplicitParamValue; 74 } 75 76 /// Loads the incoming C++ this pointer as it was passed by the caller. 77 llvm::Value *loadIncomingCXXThis(CodeGenFunction &CGF); 78 79 void setCXXABIThisValue(CodeGenFunction &CGF, llvm::Value *ThisPtr); 80 getContext()81 ASTContext &getContext() const { return CGM.getContext(); } 82 83 virtual bool requiresArrayCookie(const CXXDeleteExpr *E, QualType eltType); 84 virtual bool requiresArrayCookie(const CXXNewExpr *E); 85 86 /// Determine whether there's something special about the rules of 87 /// the ABI tell us that 'this' is a complete object within the 88 /// given function. Obvious common logic like being defined on a 89 /// final class will have been taken care of by the caller. 90 virtual bool isThisCompleteObject(GlobalDecl GD) const = 0; 91 92 public: 93 94 virtual ~CGCXXABI(); 95 96 /// Gets the mangle context. getMangleContext()97 MangleContext &getMangleContext() { 98 return *MangleCtx; 99 } 100 101 /// Returns true if the given constructor or destructor is one of the 102 /// kinds that the ABI says returns 'this' (only applies when called 103 /// non-virtually for destructors). 104 /// 105 /// There currently is no way to indicate if a destructor returns 'this' 106 /// when called virtually, and code generation does not support the case. HasThisReturn(GlobalDecl GD)107 virtual bool HasThisReturn(GlobalDecl GD) const { return false; } 108 hasMostDerivedReturn(GlobalDecl GD)109 virtual bool hasMostDerivedReturn(GlobalDecl GD) const { return false; } 110 111 /// Returns true if the target allows calling a function through a pointer 112 /// with a different signature than the actual function (or equivalently, 113 /// bitcasting a function or function pointer to a different function type). 114 /// In principle in the most general case this could depend on the target, the 115 /// calling convention, and the actual types of the arguments and return 116 /// value. Here it just means whether the signature mismatch could *ever* be 117 /// allowed; in other words, does the target do strict checking of signatures 118 /// for all calls. canCallMismatchedFunctionType()119 virtual bool canCallMismatchedFunctionType() const { return true; } 120 121 /// If the C++ ABI requires the given type be returned in a particular way, 122 /// this method sets RetAI and returns true. 123 virtual bool classifyReturnType(CGFunctionInfo &FI) const = 0; 124 125 /// Specify how one should pass an argument of a record type. 126 enum RecordArgABI { 127 /// Pass it using the normal C aggregate rules for the ABI, potentially 128 /// introducing extra copies and passing some or all of it in registers. 129 RAA_Default = 0, 130 131 /// Pass it on the stack using its defined layout. The argument must be 132 /// evaluated directly into the correct stack position in the arguments area, 133 /// and the call machinery must not move it or introduce extra copies. 134 RAA_DirectInMemory, 135 136 /// Pass it as a pointer to temporary memory. 137 RAA_Indirect 138 }; 139 140 /// Returns true if C++ allows us to copy the memory of an object of type RD 141 /// when it is passed as an argument. 142 bool canCopyArgument(const CXXRecordDecl *RD) const; 143 144 /// Returns how an argument of the given record type should be passed. 145 virtual RecordArgABI getRecordArgABI(const CXXRecordDecl *RD) const = 0; 146 147 /// Returns true if the implicit 'sret' parameter comes after the implicit 148 /// 'this' parameter of C++ instance methods. isSRetParameterAfterThis()149 virtual bool isSRetParameterAfterThis() const { return false; } 150 151 /// Find the LLVM type used to represent the given member pointer 152 /// type. 153 virtual llvm::Type * 154 ConvertMemberPointerType(const MemberPointerType *MPT); 155 156 /// Load a member function from an object and a member function 157 /// pointer. Apply the this-adjustment and set 'This' to the 158 /// adjusted value. 159 virtual CGCallee EmitLoadOfMemberFunctionPointer( 160 CodeGenFunction &CGF, const Expr *E, Address This, 161 llvm::Value *&ThisPtrForCall, llvm::Value *MemPtr, 162 const MemberPointerType *MPT); 163 164 /// Calculate an l-value from an object and a data member pointer. 165 virtual llvm::Value * 166 EmitMemberDataPointerAddress(CodeGenFunction &CGF, const Expr *E, 167 Address Base, llvm::Value *MemPtr, 168 const MemberPointerType *MPT); 169 170 /// Perform a derived-to-base, base-to-derived, or bitcast member 171 /// pointer conversion. 172 virtual llvm::Value *EmitMemberPointerConversion(CodeGenFunction &CGF, 173 const CastExpr *E, 174 llvm::Value *Src); 175 176 /// Perform a derived-to-base, base-to-derived, or bitcast member 177 /// pointer conversion on a constant value. 178 virtual llvm::Constant *EmitMemberPointerConversion(const CastExpr *E, 179 llvm::Constant *Src); 180 181 /// Return true if the given member pointer can be zero-initialized 182 /// (in the C++ sense) with an LLVM zeroinitializer. 183 virtual bool isZeroInitializable(const MemberPointerType *MPT); 184 185 /// Return whether or not a member pointers type is convertible to an IR type. isMemberPointerConvertible(const MemberPointerType * MPT)186 virtual bool isMemberPointerConvertible(const MemberPointerType *MPT) const { 187 return true; 188 } 189 190 /// Create a null member pointer of the given type. 191 virtual llvm::Constant *EmitNullMemberPointer(const MemberPointerType *MPT); 192 193 /// Create a member pointer for the given method. 194 virtual llvm::Constant *EmitMemberFunctionPointer(const CXXMethodDecl *MD); 195 196 /// Create a member pointer for the given field. 197 virtual llvm::Constant *EmitMemberDataPointer(const MemberPointerType *MPT, 198 CharUnits offset); 199 200 /// Create a member pointer for the given member pointer constant. 201 virtual llvm::Constant *EmitMemberPointer(const APValue &MP, QualType MPT); 202 203 /// Emit a comparison between two member pointers. Returns an i1. 204 virtual llvm::Value * 205 EmitMemberPointerComparison(CodeGenFunction &CGF, 206 llvm::Value *L, 207 llvm::Value *R, 208 const MemberPointerType *MPT, 209 bool Inequality); 210 211 /// Determine if a member pointer is non-null. Returns an i1. 212 virtual llvm::Value * 213 EmitMemberPointerIsNotNull(CodeGenFunction &CGF, 214 llvm::Value *MemPtr, 215 const MemberPointerType *MPT); 216 217 protected: 218 /// A utility method for computing the offset required for the given 219 /// base-to-derived or derived-to-base member-pointer conversion. 220 /// Does not handle virtual conversions (in case we ever fully 221 /// support an ABI that allows this). Returns null if no adjustment 222 /// is required. 223 llvm::Constant *getMemberPointerAdjustment(const CastExpr *E); 224 225 /// Computes the non-virtual adjustment needed for a member pointer 226 /// conversion along an inheritance path stored in an APValue. Unlike 227 /// getMemberPointerAdjustment(), the adjustment can be negative if the path 228 /// is from a derived type to a base type. 229 CharUnits getMemberPointerPathAdjustment(const APValue &MP); 230 231 public: 232 virtual void emitVirtualObjectDelete(CodeGenFunction &CGF, 233 const CXXDeleteExpr *DE, 234 Address Ptr, QualType ElementType, 235 const CXXDestructorDecl *Dtor) = 0; 236 virtual void emitRethrow(CodeGenFunction &CGF, bool isNoReturn) = 0; 237 virtual void emitThrow(CodeGenFunction &CGF, const CXXThrowExpr *E) = 0; getThrowInfo(QualType T)238 virtual llvm::GlobalVariable *getThrowInfo(QualType T) { return nullptr; } 239 240 /// Determine whether it's possible to emit a vtable for \p RD, even 241 /// though we do not know that the vtable has been marked as used by semantic 242 /// analysis. 243 virtual bool canSpeculativelyEmitVTable(const CXXRecordDecl *RD) const = 0; 244 245 virtual void emitBeginCatch(CodeGenFunction &CGF, const CXXCatchStmt *C) = 0; 246 247 virtual llvm::CallInst * 248 emitTerminateForUnexpectedException(CodeGenFunction &CGF, 249 llvm::Value *Exn); 250 251 virtual llvm::Constant *getAddrOfRTTIDescriptor(QualType Ty) = 0; 252 virtual CatchTypeInfo 253 getAddrOfCXXCatchHandlerType(QualType Ty, QualType CatchHandlerType) = 0; 254 virtual CatchTypeInfo getCatchAllTypeInfo(); 255 256 virtual bool shouldTypeidBeNullChecked(bool IsDeref, 257 QualType SrcRecordTy) = 0; 258 virtual void EmitBadTypeidCall(CodeGenFunction &CGF) = 0; 259 virtual llvm::Value *EmitTypeid(CodeGenFunction &CGF, QualType SrcRecordTy, 260 Address ThisPtr, 261 llvm::Type *StdTypeInfoPtrTy) = 0; 262 263 virtual bool shouldDynamicCastCallBeNullChecked(bool SrcIsPtr, 264 QualType SrcRecordTy) = 0; 265 266 virtual llvm::Value * 267 EmitDynamicCastCall(CodeGenFunction &CGF, Address Value, 268 QualType SrcRecordTy, QualType DestTy, 269 QualType DestRecordTy, llvm::BasicBlock *CastEnd) = 0; 270 271 virtual llvm::Value *EmitDynamicCastToVoid(CodeGenFunction &CGF, 272 Address Value, 273 QualType SrcRecordTy, 274 QualType DestTy) = 0; 275 276 virtual bool EmitBadCastCall(CodeGenFunction &CGF) = 0; 277 278 virtual llvm::Value *GetVirtualBaseClassOffset(CodeGenFunction &CGF, 279 Address This, 280 const CXXRecordDecl *ClassDecl, 281 const CXXRecordDecl *BaseClassDecl) = 0; 282 283 virtual llvm::BasicBlock *EmitCtorCompleteObjectHandler(CodeGenFunction &CGF, 284 const CXXRecordDecl *RD); 285 286 /// Emit the code to initialize hidden members required 287 /// to handle virtual inheritance, if needed by the ABI. 288 virtual void initializeHiddenVirtualInheritanceMembers(CodeGenFunction & CGF,const CXXRecordDecl * RD)289 initializeHiddenVirtualInheritanceMembers(CodeGenFunction &CGF, 290 const CXXRecordDecl *RD) {} 291 292 /// Emit constructor variants required by this ABI. 293 virtual void EmitCXXConstructors(const CXXConstructorDecl *D) = 0; 294 295 /// Notes how many arguments were added to the beginning (Prefix) and ending 296 /// (Suffix) of an arg list. 297 /// 298 /// Note that Prefix actually refers to the number of args *after* the first 299 /// one: `this` arguments always come first. 300 struct AddedStructorArgs { 301 unsigned Prefix = 0; 302 unsigned Suffix = 0; 303 AddedStructorArgs() = default; AddedStructorArgsAddedStructorArgs304 AddedStructorArgs(unsigned P, unsigned S) : Prefix(P), Suffix(S) {} prefixAddedStructorArgs305 static AddedStructorArgs prefix(unsigned N) { return {N, 0}; } suffixAddedStructorArgs306 static AddedStructorArgs suffix(unsigned N) { return {0, N}; } 307 }; 308 309 /// Build the signature of the given constructor or destructor variant by 310 /// adding any required parameters. For convenience, ArgTys has been 311 /// initialized with the type of 'this'. 312 virtual AddedStructorArgs 313 buildStructorSignature(const CXXMethodDecl *MD, StructorType T, 314 SmallVectorImpl<CanQualType> &ArgTys) = 0; 315 316 /// Returns true if the given destructor type should be emitted as a linkonce 317 /// delegating thunk, regardless of whether the dtor is defined in this TU or 318 /// not. 319 virtual bool useThunkForDtorVariant(const CXXDestructorDecl *Dtor, 320 CXXDtorType DT) const = 0; 321 322 virtual void setCXXDestructorDLLStorage(llvm::GlobalValue *GV, 323 const CXXDestructorDecl *Dtor, 324 CXXDtorType DT) const; 325 326 virtual llvm::GlobalValue::LinkageTypes 327 getCXXDestructorLinkage(GVALinkage Linkage, const CXXDestructorDecl *Dtor, 328 CXXDtorType DT) const; 329 330 /// Emit destructor variants required by this ABI. 331 virtual void EmitCXXDestructors(const CXXDestructorDecl *D) = 0; 332 333 /// Get the type of the implicit "this" parameter used by a method. May return 334 /// zero if no specific type is applicable, e.g. if the ABI expects the "this" 335 /// parameter to point to some artificial offset in a complete object due to 336 /// vbases being reordered. 337 virtual const CXXRecordDecl * getThisArgumentTypeForMethod(const CXXMethodDecl * MD)338 getThisArgumentTypeForMethod(const CXXMethodDecl *MD) { 339 return MD->getParent(); 340 } 341 342 /// Perform ABI-specific "this" argument adjustment required prior to 343 /// a call of a virtual function. 344 /// The "VirtualCall" argument is true iff the call itself is virtual. 345 virtual Address adjustThisArgumentForVirtualFunctionCall(CodeGenFunction & CGF,GlobalDecl GD,Address This,bool VirtualCall)346 adjustThisArgumentForVirtualFunctionCall(CodeGenFunction &CGF, GlobalDecl GD, 347 Address This, bool VirtualCall) { 348 return This; 349 } 350 351 /// Build a parameter variable suitable for 'this'. 352 void buildThisParam(CodeGenFunction &CGF, FunctionArgList &Params); 353 354 /// Insert any ABI-specific implicit parameters into the parameter list for a 355 /// function. This generally involves extra data for constructors and 356 /// destructors. 357 /// 358 /// ABIs may also choose to override the return type, which has been 359 /// initialized with the type of 'this' if HasThisReturn(CGF.CurGD) is true or 360 /// the formal return type of the function otherwise. 361 virtual void addImplicitStructorParams(CodeGenFunction &CGF, QualType &ResTy, 362 FunctionArgList &Params) = 0; 363 364 /// Get the ABI-specific "this" parameter adjustment to apply in the prologue 365 /// of a virtual function. getVirtualFunctionPrologueThisAdjustment(GlobalDecl GD)366 virtual CharUnits getVirtualFunctionPrologueThisAdjustment(GlobalDecl GD) { 367 return CharUnits::Zero(); 368 } 369 370 /// Emit the ABI-specific prolog for the function. 371 virtual void EmitInstanceFunctionProlog(CodeGenFunction &CGF) = 0; 372 373 /// Add any ABI-specific implicit arguments needed to call a constructor. 374 /// 375 /// \return The number of arguments added at the beginning and end of the 376 /// call, which is typically zero or one. 377 virtual AddedStructorArgs 378 addImplicitConstructorArgs(CodeGenFunction &CGF, const CXXConstructorDecl *D, 379 CXXCtorType Type, bool ForVirtualBase, 380 bool Delegating, CallArgList &Args) = 0; 381 382 /// Emit the destructor call. 383 virtual void EmitDestructorCall(CodeGenFunction &CGF, 384 const CXXDestructorDecl *DD, CXXDtorType Type, 385 bool ForVirtualBase, bool Delegating, 386 Address This) = 0; 387 388 /// Emits the VTable definitions required for the given record type. 389 virtual void emitVTableDefinitions(CodeGenVTables &CGVT, 390 const CXXRecordDecl *RD) = 0; 391 392 /// Checks if ABI requires extra virtual offset for vtable field. 393 virtual bool 394 isVirtualOffsetNeededForVTableField(CodeGenFunction &CGF, 395 CodeGenFunction::VPtr Vptr) = 0; 396 397 /// Checks if ABI requires to initialize vptrs for given dynamic class. 398 virtual bool doStructorsInitializeVPtrs(const CXXRecordDecl *VTableClass) = 0; 399 400 /// Get the address point of the vtable for the given base subobject. 401 virtual llvm::Constant * 402 getVTableAddressPoint(BaseSubobject Base, 403 const CXXRecordDecl *VTableClass) = 0; 404 405 /// Get the address point of the vtable for the given base subobject while 406 /// building a constructor or a destructor. 407 virtual llvm::Value * 408 getVTableAddressPointInStructor(CodeGenFunction &CGF, const CXXRecordDecl *RD, 409 BaseSubobject Base, 410 const CXXRecordDecl *NearestVBase) = 0; 411 412 /// Get the address point of the vtable for the given base subobject while 413 /// building a constexpr. 414 virtual llvm::Constant * 415 getVTableAddressPointForConstExpr(BaseSubobject Base, 416 const CXXRecordDecl *VTableClass) = 0; 417 418 /// Get the address of the vtable for the given record decl which should be 419 /// used for the vptr at the given offset in RD. 420 virtual llvm::GlobalVariable *getAddrOfVTable(const CXXRecordDecl *RD, 421 CharUnits VPtrOffset) = 0; 422 423 /// Build a virtual function pointer in the ABI-specific way. 424 virtual CGCallee getVirtualFunctionPointer(CodeGenFunction &CGF, 425 GlobalDecl GD, Address This, 426 llvm::Type *Ty, 427 SourceLocation Loc) = 0; 428 429 /// Emit the ABI-specific virtual destructor call. 430 virtual llvm::Value * 431 EmitVirtualDestructorCall(CodeGenFunction &CGF, const CXXDestructorDecl *Dtor, 432 CXXDtorType DtorType, Address This, 433 const CXXMemberCallExpr *CE) = 0; 434 adjustCallArgsForDestructorThunk(CodeGenFunction & CGF,GlobalDecl GD,CallArgList & CallArgs)435 virtual void adjustCallArgsForDestructorThunk(CodeGenFunction &CGF, 436 GlobalDecl GD, 437 CallArgList &CallArgs) {} 438 439 /// Emit any tables needed to implement virtual inheritance. For Itanium, 440 /// this emits virtual table tables. For the MSVC++ ABI, this emits virtual 441 /// base tables. 442 virtual void emitVirtualInheritanceTables(const CXXRecordDecl *RD) = 0; 443 444 virtual bool exportThunk() = 0; 445 virtual void setThunkLinkage(llvm::Function *Thunk, bool ForVTable, 446 GlobalDecl GD, bool ReturnAdjustment) = 0; 447 448 virtual llvm::Value *performThisAdjustment(CodeGenFunction &CGF, 449 Address This, 450 const ThisAdjustment &TA) = 0; 451 452 virtual llvm::Value *performReturnAdjustment(CodeGenFunction &CGF, 453 Address Ret, 454 const ReturnAdjustment &RA) = 0; 455 456 virtual void EmitReturnFromThunk(CodeGenFunction &CGF, 457 RValue RV, QualType ResultType); 458 459 virtual size_t getSrcArgforCopyCtor(const CXXConstructorDecl *, 460 FunctionArgList &Args) const = 0; 461 462 /// Gets the offsets of all the virtual base pointers in a given class. 463 virtual std::vector<CharUnits> getVBPtrOffsets(const CXXRecordDecl *RD); 464 465 /// Gets the pure virtual member call function. 466 virtual StringRef GetPureVirtualCallName() = 0; 467 468 /// Gets the deleted virtual member call name. 469 virtual StringRef GetDeletedVirtualCallName() = 0; 470 471 /**************************** Array cookies ******************************/ 472 473 /// Returns the extra size required in order to store the array 474 /// cookie for the given new-expression. May return 0 to indicate that no 475 /// array cookie is required. 476 /// 477 /// Several cases are filtered out before this method is called: 478 /// - non-array allocations never need a cookie 479 /// - calls to \::operator new(size_t, void*) never need a cookie 480 /// 481 /// \param expr - the new-expression being allocated. 482 virtual CharUnits GetArrayCookieSize(const CXXNewExpr *expr); 483 484 /// Initialize the array cookie for the given allocation. 485 /// 486 /// \param NewPtr - a char* which is the presumed-non-null 487 /// return value of the allocation function 488 /// \param NumElements - the computed number of elements, 489 /// potentially collapsed from the multidimensional array case; 490 /// always a size_t 491 /// \param ElementType - the base element allocated type, 492 /// i.e. the allocated type after stripping all array types 493 virtual Address InitializeArrayCookie(CodeGenFunction &CGF, 494 Address NewPtr, 495 llvm::Value *NumElements, 496 const CXXNewExpr *expr, 497 QualType ElementType); 498 499 /// Reads the array cookie associated with the given pointer, 500 /// if it has one. 501 /// 502 /// \param Ptr - a pointer to the first element in the array 503 /// \param ElementType - the base element type of elements of the array 504 /// \param NumElements - an out parameter which will be initialized 505 /// with the number of elements allocated, or zero if there is no 506 /// cookie 507 /// \param AllocPtr - an out parameter which will be initialized 508 /// with a char* pointing to the address returned by the allocation 509 /// function 510 /// \param CookieSize - an out parameter which will be initialized 511 /// with the size of the cookie, or zero if there is no cookie 512 virtual void ReadArrayCookie(CodeGenFunction &CGF, Address Ptr, 513 const CXXDeleteExpr *expr, 514 QualType ElementType, llvm::Value *&NumElements, 515 llvm::Value *&AllocPtr, CharUnits &CookieSize); 516 517 /// Return whether the given global decl needs a VTT parameter. 518 virtual bool NeedsVTTParameter(GlobalDecl GD); 519 520 protected: 521 /// Returns the extra size required in order to store the array 522 /// cookie for the given type. Assumes that an array cookie is 523 /// required. 524 virtual CharUnits getArrayCookieSizeImpl(QualType elementType); 525 526 /// Reads the array cookie for an allocation which is known to have one. 527 /// This is called by the standard implementation of ReadArrayCookie. 528 /// 529 /// \param ptr - a pointer to the allocation made for an array, as a char* 530 /// \param cookieSize - the computed cookie size of an array 531 /// 532 /// Other parameters are as above. 533 /// 534 /// \return a size_t 535 virtual llvm::Value *readArrayCookieImpl(CodeGenFunction &IGF, Address ptr, 536 CharUnits cookieSize); 537 538 public: 539 540 /*************************** Static local guards ****************************/ 541 542 /// Emits the guarded initializer and destructor setup for the given 543 /// variable, given that it couldn't be emitted as a constant. 544 /// If \p PerformInit is false, the initialization has been folded to a 545 /// constant and should not be performed. 546 /// 547 /// The variable may be: 548 /// - a static local variable 549 /// - a static data member of a class template instantiation 550 virtual void EmitGuardedInit(CodeGenFunction &CGF, const VarDecl &D, 551 llvm::GlobalVariable *DeclPtr, 552 bool PerformInit) = 0; 553 554 /// Emit code to force the execution of a destructor during global 555 /// teardown. The default implementation of this uses atexit. 556 /// 557 /// \param Dtor - a function taking a single pointer argument 558 /// \param Addr - a pointer to pass to the destructor function. 559 virtual void registerGlobalDtor(CodeGenFunction &CGF, const VarDecl &D, 560 llvm::Constant *Dtor, 561 llvm::Constant *Addr) = 0; 562 563 /*************************** thread_local initialization ********************/ 564 565 /// Emits ABI-required functions necessary to initialize thread_local 566 /// variables in this translation unit. 567 /// 568 /// \param CXXThreadLocals - The thread_local declarations in this translation 569 /// unit. 570 /// \param CXXThreadLocalInits - If this translation unit contains any 571 /// non-constant initialization or non-trivial destruction for 572 /// thread_local variables, a list of functions to perform the 573 /// initialization. 574 virtual void EmitThreadLocalInitFuncs( 575 CodeGenModule &CGM, ArrayRef<const VarDecl *> CXXThreadLocals, 576 ArrayRef<llvm::Function *> CXXThreadLocalInits, 577 ArrayRef<const VarDecl *> CXXThreadLocalInitVars) = 0; 578 579 // Determine if references to thread_local global variables can be made 580 // directly or require access through a thread wrapper function. 581 virtual bool usesThreadWrapperFunction() const = 0; 582 583 /// Emit a reference to a non-local thread_local variable (including 584 /// triggering the initialization of all thread_local variables in its 585 /// translation unit). 586 virtual LValue EmitThreadLocalVarDeclLValue(CodeGenFunction &CGF, 587 const VarDecl *VD, 588 QualType LValType) = 0; 589 590 /// Emit a single constructor/destructor with the given type from a C++ 591 /// constructor Decl. 592 virtual void emitCXXStructor(const CXXMethodDecl *MD, StructorType Type) = 0; 593 594 /// Load a vtable from This, an object of polymorphic type RD, or from one of 595 /// its virtual bases if it does not have its own vtable. Returns the vtable 596 /// and the class from which the vtable was loaded. 597 virtual std::pair<llvm::Value *, const CXXRecordDecl *> 598 LoadVTablePtr(CodeGenFunction &CGF, Address This, 599 const CXXRecordDecl *RD) = 0; 600 }; 601 602 // Create an instance of a C++ ABI class: 603 604 /// Creates an Itanium-family ABI. 605 CGCXXABI *CreateItaniumCXXABI(CodeGenModule &CGM); 606 607 /// Creates a Microsoft-family ABI. 608 CGCXXABI *CreateMicrosoftCXXABI(CodeGenModule &CGM); 609 610 struct CatchRetScope final : EHScopeStack::Cleanup { 611 llvm::CatchPadInst *CPI; 612 CatchRetScopefinal613 CatchRetScope(llvm::CatchPadInst *CPI) : CPI(CPI) {} 614 Emitfinal615 void Emit(CodeGenFunction &CGF, Flags flags) override { 616 llvm::BasicBlock *BB = CGF.createBasicBlock("catchret.dest"); 617 CGF.Builder.CreateCatchRet(CPI, BB); 618 CGF.EmitBlock(BB); 619 } 620 }; 621 } 622 } 623 624 #endif 625