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