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Charles Davis4e786dd2010-05-25 19:52:27 +00001//===------- ItaniumCXXABI.cpp - Emit LLVM Code from ASTs for a Module ----===//
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//
Chris Lattner57540c52011-04-15 05:22:18 +000010// This provides C++ code generation targeting the Itanium C++ ABI. The class
Charles Davis4e786dd2010-05-25 19:52:27 +000011// in this file generates structures that follow the Itanium C++ ABI, which is
12// documented at:
13// http://www.codesourcery.com/public/cxx-abi/abi.html
14// http://www.codesourcery.com/public/cxx-abi/abi-eh.html
John McCall86353412010-08-21 22:46:04 +000015//
16// It also supports the closely-related ARM ABI, documented at:
17// http://infocenter.arm.com/help/topic/com.arm.doc.ihi0041c/IHI0041C_cppabi.pdf
18//
Charles Davis4e786dd2010-05-25 19:52:27 +000019//===----------------------------------------------------------------------===//
20
21#include "CGCXXABI.h"
John McCall7a9aac22010-08-23 01:21:21 +000022#include "CGRecordLayout.h"
Charles Davisa325a6e2012-06-23 23:44:00 +000023#include "CGVTables.h"
John McCall475999d2010-08-22 00:05:51 +000024#include "CodeGenFunction.h"
Charles Davis4e786dd2010-05-25 19:52:27 +000025#include "CodeGenModule.h"
Craig Topperc9ee1d02012-09-15 18:47:51 +000026#include "clang/AST/Mangle.h"
27#include "clang/AST/Type.h"
David Majnemer1162d252014-06-22 19:05:33 +000028#include "llvm/IR/CallSite.h"
Chandler Carruthffd55512013-01-02 11:45:17 +000029#include "llvm/IR/DataLayout.h"
30#include "llvm/IR/Intrinsics.h"
31#include "llvm/IR/Value.h"
Charles Davis4e786dd2010-05-25 19:52:27 +000032
33using namespace clang;
John McCall475999d2010-08-22 00:05:51 +000034using namespace CodeGen;
Charles Davis4e786dd2010-05-25 19:52:27 +000035
36namespace {
Charles Davis53c59df2010-08-16 03:33:14 +000037class ItaniumCXXABI : public CodeGen::CGCXXABI {
Timur Iskhodzhanov8b5987e2013-09-27 14:48:01 +000038 /// VTables - All the vtables which have been defined.
39 llvm::DenseMap<const CXXRecordDecl *, llvm::GlobalVariable *> VTables;
40
John McCall475999d2010-08-22 00:05:51 +000041protected:
Mark Seabornedf0d382013-07-24 16:25:13 +000042 bool UseARMMethodPtrABI;
43 bool UseARMGuardVarABI;
John McCall7a9aac22010-08-23 01:21:21 +000044
Timur Iskhodzhanov67455222013-10-03 06:26:13 +000045 ItaniumMangleContext &getMangleContext() {
46 return cast<ItaniumMangleContext>(CodeGen::CGCXXABI::getMangleContext());
47 }
48
Charles Davis4e786dd2010-05-25 19:52:27 +000049public:
Mark Seabornedf0d382013-07-24 16:25:13 +000050 ItaniumCXXABI(CodeGen::CodeGenModule &CGM,
51 bool UseARMMethodPtrABI = false,
52 bool UseARMGuardVarABI = false) :
53 CGCXXABI(CGM), UseARMMethodPtrABI(UseARMMethodPtrABI),
54 UseARMGuardVarABI(UseARMGuardVarABI) { }
John McCall475999d2010-08-22 00:05:51 +000055
Reid Kleckner40ca9132014-05-13 22:05:45 +000056 bool classifyReturnType(CGFunctionInfo &FI) const override;
Timur Iskhodzhanov8fe501d2013-04-17 12:54:10 +000057
Craig Topper4f12f102014-03-12 06:41:41 +000058 RecordArgABI getRecordArgABI(const CXXRecordDecl *RD) const override {
Reid Klecknerd355ca72014-05-15 01:26:32 +000059 // Structures with either a non-trivial destructor or a non-trivial
60 // copy constructor are always indirect.
61 // FIXME: Use canCopyArgument() when it is fixed to handle lazily declared
62 // special members.
63 if (RD->hasNonTrivialDestructor() || RD->hasNonTrivialCopyConstructor())
Timur Iskhodzhanov8fe501d2013-04-17 12:54:10 +000064 return RAA_Indirect;
65 return RAA_Default;
66 }
67
Craig Topper4f12f102014-03-12 06:41:41 +000068 bool isZeroInitializable(const MemberPointerType *MPT) override;
John McCall84fa5102010-08-22 04:16:24 +000069
Craig Topper4f12f102014-03-12 06:41:41 +000070 llvm::Type *ConvertMemberPointerType(const MemberPointerType *MPT) override;
John McCall7a9aac22010-08-23 01:21:21 +000071
Craig Topper4f12f102014-03-12 06:41:41 +000072 llvm::Value *
73 EmitLoadOfMemberFunctionPointer(CodeGenFunction &CGF,
74 const Expr *E,
75 llvm::Value *&This,
76 llvm::Value *MemFnPtr,
77 const MemberPointerType *MPT) override;
John McCalla8bbb822010-08-22 03:04:22 +000078
Craig Topper4f12f102014-03-12 06:41:41 +000079 llvm::Value *
80 EmitMemberDataPointerAddress(CodeGenFunction &CGF, const Expr *E,
81 llvm::Value *Base,
82 llvm::Value *MemPtr,
83 const MemberPointerType *MPT) override;
John McCallc134eb52010-08-31 21:07:20 +000084
John McCall7a9aac22010-08-23 01:21:21 +000085 llvm::Value *EmitMemberPointerConversion(CodeGenFunction &CGF,
86 const CastExpr *E,
Craig Topper4f12f102014-03-12 06:41:41 +000087 llvm::Value *Src) override;
John McCallc62bb392012-02-15 01:22:51 +000088 llvm::Constant *EmitMemberPointerConversion(const CastExpr *E,
Craig Topper4f12f102014-03-12 06:41:41 +000089 llvm::Constant *Src) override;
John McCall84fa5102010-08-22 04:16:24 +000090
Craig Topper4f12f102014-03-12 06:41:41 +000091 llvm::Constant *EmitNullMemberPointer(const MemberPointerType *MPT) override;
John McCall84fa5102010-08-22 04:16:24 +000092
Craig Topper4f12f102014-03-12 06:41:41 +000093 llvm::Constant *EmitMemberPointer(const CXXMethodDecl *MD) override;
John McCallf3a88602011-02-03 08:15:49 +000094 llvm::Constant *EmitMemberDataPointer(const MemberPointerType *MPT,
Craig Topper4f12f102014-03-12 06:41:41 +000095 CharUnits offset) override;
96 llvm::Constant *EmitMemberPointer(const APValue &MP, QualType MPT) override;
Richard Smithdafff942012-01-14 04:30:29 +000097 llvm::Constant *BuildMemberPointer(const CXXMethodDecl *MD,
98 CharUnits ThisAdjustment);
John McCall1c456c82010-08-22 06:43:33 +000099
John McCall7a9aac22010-08-23 01:21:21 +0000100 llvm::Value *EmitMemberPointerComparison(CodeGenFunction &CGF,
Craig Topper4f12f102014-03-12 06:41:41 +0000101 llvm::Value *L, llvm::Value *R,
John McCall7a9aac22010-08-23 01:21:21 +0000102 const MemberPointerType *MPT,
Craig Topper4f12f102014-03-12 06:41:41 +0000103 bool Inequality) override;
John McCall131d97d2010-08-22 08:30:07 +0000104
John McCall7a9aac22010-08-23 01:21:21 +0000105 llvm::Value *EmitMemberPointerIsNotNull(CodeGenFunction &CGF,
Craig Topper4f12f102014-03-12 06:41:41 +0000106 llvm::Value *Addr,
107 const MemberPointerType *MPT) override;
John McCall5d865c322010-08-31 07:33:07 +0000108
David Majnemer08681372014-11-01 07:37:17 +0000109 void emitVirtualObjectDelete(CodeGenFunction &CGF, const CXXDeleteExpr *DE,
David Majnemer0c0b6d92014-10-31 20:09:12 +0000110 llvm::Value *Ptr, QualType ElementType,
David Majnemer0c0b6d92014-10-31 20:09:12 +0000111 const CXXDestructorDecl *Dtor) override;
John McCall82fb8922012-09-25 10:10:39 +0000112
David Majnemer442d0a22014-11-25 07:20:20 +0000113 void emitRethrow(CodeGenFunction &CGF, bool isNoReturn) override;
114
David Majnemere2cb8d12014-07-07 06:20:47 +0000115 void EmitFundamentalRTTIDescriptor(QualType Type);
116 void EmitFundamentalRTTIDescriptors();
117 llvm::Constant *getAddrOfRTTIDescriptor(QualType Ty) override;
118
David Majnemer1162d252014-06-22 19:05:33 +0000119 bool shouldTypeidBeNullChecked(bool IsDeref, QualType SrcRecordTy) override;
120 void EmitBadTypeidCall(CodeGenFunction &CGF) override;
121 llvm::Value *EmitTypeid(CodeGenFunction &CGF, QualType SrcRecordTy,
122 llvm::Value *ThisPtr,
123 llvm::Type *StdTypeInfoPtrTy) override;
124
125 bool shouldDynamicCastCallBeNullChecked(bool SrcIsPtr,
126 QualType SrcRecordTy) override;
127
128 llvm::Value *EmitDynamicCastCall(CodeGenFunction &CGF, llvm::Value *Value,
129 QualType SrcRecordTy, QualType DestTy,
130 QualType DestRecordTy,
131 llvm::BasicBlock *CastEnd) override;
132
133 llvm::Value *EmitDynamicCastToVoid(CodeGenFunction &CGF, llvm::Value *Value,
134 QualType SrcRecordTy,
135 QualType DestTy) override;
136
137 bool EmitBadCastCall(CodeGenFunction &CGF) override;
138
Craig Topper4f12f102014-03-12 06:41:41 +0000139 llvm::Value *
140 GetVirtualBaseClassOffset(CodeGenFunction &CGF, llvm::Value *This,
141 const CXXRecordDecl *ClassDecl,
142 const CXXRecordDecl *BaseClassDecl) override;
Reid Klecknerd8cbeec2013-05-29 18:02:47 +0000143
Craig Topper4f12f102014-03-12 06:41:41 +0000144 void EmitCXXConstructors(const CXXConstructorDecl *D) override;
Timur Iskhodzhanov40f2fa92013-08-04 17:30:04 +0000145
Rafael Espindola8d2a19b2014-09-08 16:01:27 +0000146 void buildStructorSignature(const CXXMethodDecl *MD, StructorType T,
147 SmallVectorImpl<CanQualType> &ArgTys) override;
John McCall5d865c322010-08-31 07:33:07 +0000148
Reid Klecknere7de47e2013-07-22 13:51:44 +0000149 bool useThunkForDtorVariant(const CXXDestructorDecl *Dtor,
Craig Topper4f12f102014-03-12 06:41:41 +0000150 CXXDtorType DT) const override {
Reid Klecknere7de47e2013-07-22 13:51:44 +0000151 // Itanium does not emit any destructor variant as an inline thunk.
152 // Delegating may occur as an optimization, but all variants are either
153 // emitted with external linkage or as linkonce if they are inline and used.
154 return false;
155 }
156
Craig Topper4f12f102014-03-12 06:41:41 +0000157 void EmitCXXDestructors(const CXXDestructorDecl *D) override;
Reid Klecknere7de47e2013-07-22 13:51:44 +0000158
Reid Kleckner89077a12013-12-17 19:46:40 +0000159 void addImplicitStructorParams(CodeGenFunction &CGF, QualType &ResTy,
Craig Topper4f12f102014-03-12 06:41:41 +0000160 FunctionArgList &Params) override;
John McCall5d865c322010-08-31 07:33:07 +0000161
Craig Topper4f12f102014-03-12 06:41:41 +0000162 void EmitInstanceFunctionProlog(CodeGenFunction &CGF) override;
John McCall8ed55a52010-09-02 09:58:18 +0000163
Reid Kleckner89077a12013-12-17 19:46:40 +0000164 unsigned addImplicitConstructorArgs(CodeGenFunction &CGF,
165 const CXXConstructorDecl *D,
166 CXXCtorType Type, bool ForVirtualBase,
Craig Topper4f12f102014-03-12 06:41:41 +0000167 bool Delegating,
168 CallArgList &Args) override;
Timur Iskhodzhanov57cbe5c2013-02-27 13:46:31 +0000169
Reid Kleckner6fe771a2013-12-13 00:53:54 +0000170 void EmitDestructorCall(CodeGenFunction &CGF, const CXXDestructorDecl *DD,
171 CXXDtorType Type, bool ForVirtualBase,
Craig Topper4f12f102014-03-12 06:41:41 +0000172 bool Delegating, llvm::Value *This) override;
Reid Kleckner6fe771a2013-12-13 00:53:54 +0000173
Craig Topper4f12f102014-03-12 06:41:41 +0000174 void emitVTableDefinitions(CodeGenVTables &CGVT,
175 const CXXRecordDecl *RD) override;
Timur Iskhodzhanov8b5987e2013-09-27 14:48:01 +0000176
177 llvm::Value *getVTableAddressPointInStructor(
178 CodeGenFunction &CGF, const CXXRecordDecl *VTableClass,
179 BaseSubobject Base, const CXXRecordDecl *NearestVBase,
Craig Topper4f12f102014-03-12 06:41:41 +0000180 bool &NeedsVirtualOffset) override;
Timur Iskhodzhanov8b5987e2013-09-27 14:48:01 +0000181
182 llvm::Constant *
183 getVTableAddressPointForConstExpr(BaseSubobject Base,
Craig Topper4f12f102014-03-12 06:41:41 +0000184 const CXXRecordDecl *VTableClass) override;
Timur Iskhodzhanov8b5987e2013-09-27 14:48:01 +0000185
186 llvm::GlobalVariable *getAddrOfVTable(const CXXRecordDecl *RD,
Craig Topper4f12f102014-03-12 06:41:41 +0000187 CharUnits VPtrOffset) override;
Timur Iskhodzhanov8b5987e2013-09-27 14:48:01 +0000188
Timur Iskhodzhanov88fd4392013-08-21 06:25:03 +0000189 llvm::Value *getVirtualFunctionPointer(CodeGenFunction &CGF, GlobalDecl GD,
Craig Topper4f12f102014-03-12 06:41:41 +0000190 llvm::Value *This,
191 llvm::Type *Ty) override;
Timur Iskhodzhanov88fd4392013-08-21 06:25:03 +0000192
David Majnemer0c0b6d92014-10-31 20:09:12 +0000193 llvm::Value *EmitVirtualDestructorCall(CodeGenFunction &CGF,
194 const CXXDestructorDecl *Dtor,
195 CXXDtorType DtorType,
196 llvm::Value *This,
197 const CXXMemberCallExpr *CE) override;
Timur Iskhodzhanovd6197112013-02-15 14:45:22 +0000198
Craig Topper4f12f102014-03-12 06:41:41 +0000199 void emitVirtualInheritanceTables(const CXXRecordDecl *RD) override;
Reid Kleckner7810af02013-06-19 15:20:38 +0000200
Hans Wennborgc94391d2014-06-06 20:04:01 +0000201 void setThunkLinkage(llvm::Function *Thunk, bool ForVTable, GlobalDecl GD,
202 bool ReturnAdjustment) override {
Timur Iskhodzhanovad9d3b82013-10-09 09:23:58 +0000203 // Allow inlining of thunks by emitting them with available_externally
204 // linkage together with vtables when needed.
205 if (ForVTable)
206 Thunk->setLinkage(llvm::GlobalValue::AvailableExternallyLinkage);
207 }
208
Timur Iskhodzhanov02014322013-10-30 11:55:43 +0000209 llvm::Value *performThisAdjustment(CodeGenFunction &CGF, llvm::Value *This,
Craig Topper4f12f102014-03-12 06:41:41 +0000210 const ThisAdjustment &TA) override;
Timur Iskhodzhanov02014322013-10-30 11:55:43 +0000211
212 llvm::Value *performReturnAdjustment(CodeGenFunction &CGF, llvm::Value *Ret,
Craig Topper4f12f102014-03-12 06:41:41 +0000213 const ReturnAdjustment &RA) override;
Timur Iskhodzhanov02014322013-10-30 11:55:43 +0000214
David Majnemer196ac332014-09-11 23:05:02 +0000215 size_t getSrcArgforCopyCtor(const CXXConstructorDecl *,
216 FunctionArgList &Args) const override {
217 assert(!Args.empty() && "expected the arglist to not be empty!");
218 return Args.size() - 1;
219 }
220
Craig Topper4f12f102014-03-12 06:41:41 +0000221 StringRef GetPureVirtualCallName() override { return "__cxa_pure_virtual"; }
222 StringRef GetDeletedVirtualCallName() override
223 { return "__cxa_deleted_virtual"; }
Joao Matos2ce88ef2012-07-17 17:10:11 +0000224
Craig Topper4f12f102014-03-12 06:41:41 +0000225 CharUnits getArrayCookieSizeImpl(QualType elementType) override;
John McCall8ed55a52010-09-02 09:58:18 +0000226 llvm::Value *InitializeArrayCookie(CodeGenFunction &CGF,
227 llvm::Value *NewPtr,
228 llvm::Value *NumElements,
John McCall284c48f2011-01-27 09:37:56 +0000229 const CXXNewExpr *expr,
Craig Topper4f12f102014-03-12 06:41:41 +0000230 QualType ElementType) override;
John McCallb91cd662012-05-01 05:23:51 +0000231 llvm::Value *readArrayCookieImpl(CodeGenFunction &CGF,
232 llvm::Value *allocPtr,
Craig Topper4f12f102014-03-12 06:41:41 +0000233 CharUnits cookieSize) override;
John McCall68ff0372010-09-08 01:44:27 +0000234
John McCallcdf7ef52010-11-06 09:44:32 +0000235 void EmitGuardedInit(CodeGenFunction &CGF, const VarDecl &D,
Craig Topper4f12f102014-03-12 06:41:41 +0000236 llvm::GlobalVariable *DeclPtr,
237 bool PerformInit) override;
Richard Smithdbf74ba2013-04-14 23:01:42 +0000238 void registerGlobalDtor(CodeGenFunction &CGF, const VarDecl &D,
Craig Topper4f12f102014-03-12 06:41:41 +0000239 llvm::Constant *dtor, llvm::Constant *addr) override;
Richard Smith2fd1d7a2013-04-19 16:42:07 +0000240
241 llvm::Function *getOrCreateThreadLocalWrapper(const VarDecl *VD,
Alexander Musmanf94c3182014-09-26 06:28:25 +0000242 llvm::Value *Val);
Richard Smith2fd1d7a2013-04-19 16:42:07 +0000243 void EmitThreadLocalInitFuncs(
David Majnemerb3341ea2014-10-05 05:05:40 +0000244 CodeGenModule &CGM,
245 ArrayRef<std::pair<const VarDecl *, llvm::GlobalVariable *>>
246 CXXThreadLocals,
247 ArrayRef<llvm::Function *> CXXThreadLocalInits,
248 ArrayRef<llvm::GlobalVariable *> CXXThreadLocalInitVars) override;
249
250 bool usesThreadWrapperFunction() const override { return true; }
Richard Smith0f383742014-03-26 22:48:22 +0000251 LValue EmitThreadLocalVarDeclLValue(CodeGenFunction &CGF, const VarDecl *VD,
252 QualType LValType) override;
Peter Collingbourne66f82e62013-06-28 20:45:28 +0000253
Craig Topper4f12f102014-03-12 06:41:41 +0000254 bool NeedsVTTParameter(GlobalDecl GD) override;
David Majnemere2cb8d12014-07-07 06:20:47 +0000255
256 /**************************** RTTI Uniqueness ******************************/
257
258protected:
259 /// Returns true if the ABI requires RTTI type_info objects to be unique
260 /// across a program.
261 virtual bool shouldRTTIBeUnique() const { return true; }
262
263public:
264 /// What sort of unique-RTTI behavior should we use?
265 enum RTTIUniquenessKind {
266 /// We are guaranteeing, or need to guarantee, that the RTTI string
267 /// is unique.
268 RUK_Unique,
269
270 /// We are not guaranteeing uniqueness for the RTTI string, so we
271 /// can demote to hidden visibility but must use string comparisons.
272 RUK_NonUniqueHidden,
273
274 /// We are not guaranteeing uniqueness for the RTTI string, so we
275 /// have to use string comparisons, but we also have to emit it with
276 /// non-hidden visibility.
277 RUK_NonUniqueVisible
278 };
279
280 /// Return the required visibility status for the given type and linkage in
281 /// the current ABI.
282 RTTIUniquenessKind
283 classifyRTTIUniqueness(QualType CanTy,
284 llvm::GlobalValue::LinkageTypes Linkage) const;
285 friend class ItaniumRTTIBuilder;
Rafael Espindola91f68b42014-09-15 19:20:10 +0000286
287 void emitCXXStructor(const CXXMethodDecl *MD, StructorType Type) override;
Charles Davis4e786dd2010-05-25 19:52:27 +0000288};
John McCall86353412010-08-21 22:46:04 +0000289
290class ARMCXXABI : public ItaniumCXXABI {
291public:
Mark Seabornedf0d382013-07-24 16:25:13 +0000292 ARMCXXABI(CodeGen::CodeGenModule &CGM) :
293 ItaniumCXXABI(CGM, /* UseARMMethodPtrABI = */ true,
294 /* UseARMGuardVarABI = */ true) {}
John McCall5d865c322010-08-31 07:33:07 +0000295
Craig Topper4f12f102014-03-12 06:41:41 +0000296 bool HasThisReturn(GlobalDecl GD) const override {
Stephen Lin9dc6eef2013-06-30 20:40:16 +0000297 return (isa<CXXConstructorDecl>(GD.getDecl()) || (
298 isa<CXXDestructorDecl>(GD.getDecl()) &&
299 GD.getDtorType() != Dtor_Deleting));
300 }
John McCall5d865c322010-08-31 07:33:07 +0000301
Craig Topper4f12f102014-03-12 06:41:41 +0000302 void EmitReturnFromThunk(CodeGenFunction &CGF, RValue RV,
303 QualType ResTy) override;
John McCall5d865c322010-08-31 07:33:07 +0000304
Craig Topper4f12f102014-03-12 06:41:41 +0000305 CharUnits getArrayCookieSizeImpl(QualType elementType) override;
John McCall8ed55a52010-09-02 09:58:18 +0000306 llvm::Value *InitializeArrayCookie(CodeGenFunction &CGF,
307 llvm::Value *NewPtr,
308 llvm::Value *NumElements,
John McCall284c48f2011-01-27 09:37:56 +0000309 const CXXNewExpr *expr,
Craig Topper4f12f102014-03-12 06:41:41 +0000310 QualType ElementType) override;
John McCallb91cd662012-05-01 05:23:51 +0000311 llvm::Value *readArrayCookieImpl(CodeGenFunction &CGF, llvm::Value *allocPtr,
Craig Topper4f12f102014-03-12 06:41:41 +0000312 CharUnits cookieSize) override;
John McCall86353412010-08-21 22:46:04 +0000313};
Tim Northovera2ee4332014-03-29 15:09:45 +0000314
315class iOS64CXXABI : public ARMCXXABI {
316public:
317 iOS64CXXABI(CodeGen::CodeGenModule &CGM) : ARMCXXABI(CGM) {}
Tim Northover65f582f2014-03-30 17:32:48 +0000318
319 // ARM64 libraries are prepared for non-unique RTTI.
David Majnemere2cb8d12014-07-07 06:20:47 +0000320 bool shouldRTTIBeUnique() const override { return false; }
Tim Northovera2ee4332014-03-29 15:09:45 +0000321};
Charles Davis4e786dd2010-05-25 19:52:27 +0000322}
323
Charles Davis53c59df2010-08-16 03:33:14 +0000324CodeGen::CGCXXABI *CodeGen::CreateItaniumCXXABI(CodeGenModule &CGM) {
John McCallc8e01702013-04-16 22:48:15 +0000325 switch (CGM.getTarget().getCXXABI().getKind()) {
John McCall57625922013-01-25 23:36:14 +0000326 // For IR-generation purposes, there's no significant difference
327 // between the ARM and iOS ABIs.
328 case TargetCXXABI::GenericARM:
329 case TargetCXXABI::iOS:
330 return new ARMCXXABI(CGM);
Charles Davis4e786dd2010-05-25 19:52:27 +0000331
Tim Northovera2ee4332014-03-29 15:09:45 +0000332 case TargetCXXABI::iOS64:
333 return new iOS64CXXABI(CGM);
334
Tim Northover9bb857a2013-01-31 12:13:10 +0000335 // Note that AArch64 uses the generic ItaniumCXXABI class since it doesn't
336 // include the other 32-bit ARM oddities: constructor/destructor return values
337 // and array cookies.
338 case TargetCXXABI::GenericAArch64:
Mark Seabornedf0d382013-07-24 16:25:13 +0000339 return new ItaniumCXXABI(CGM, /* UseARMMethodPtrABI = */ true,
340 /* UseARMGuardVarABI = */ true);
Tim Northover9bb857a2013-01-31 12:13:10 +0000341
John McCall57625922013-01-25 23:36:14 +0000342 case TargetCXXABI::GenericItanium:
Mark Seabornedf0d382013-07-24 16:25:13 +0000343 if (CGM.getContext().getTargetInfo().getTriple().getArch()
344 == llvm::Triple::le32) {
345 // For PNaCl, use ARM-style method pointers so that PNaCl code
346 // does not assume anything about the alignment of function
347 // pointers.
348 return new ItaniumCXXABI(CGM, /* UseARMMethodPtrABI = */ true,
349 /* UseARMGuardVarABI = */ false);
350 }
John McCall57625922013-01-25 23:36:14 +0000351 return new ItaniumCXXABI(CGM);
352
353 case TargetCXXABI::Microsoft:
354 llvm_unreachable("Microsoft ABI is not Itanium-based");
355 }
356 llvm_unreachable("bad ABI kind");
John McCall86353412010-08-21 22:46:04 +0000357}
358
Chris Lattnera5f58b02011-07-09 17:41:47 +0000359llvm::Type *
John McCall7a9aac22010-08-23 01:21:21 +0000360ItaniumCXXABI::ConvertMemberPointerType(const MemberPointerType *MPT) {
361 if (MPT->isMemberDataPointer())
Reid Kleckner9cffbc12013-03-22 16:13:10 +0000362 return CGM.PtrDiffTy;
Reid Kleckneree7cf842014-12-01 22:02:27 +0000363 return llvm::StructType::get(CGM.PtrDiffTy, CGM.PtrDiffTy, nullptr);
John McCall1c456c82010-08-22 06:43:33 +0000364}
365
John McCalld9c6c0b2010-08-22 00:59:17 +0000366/// In the Itanium and ARM ABIs, method pointers have the form:
367/// struct { ptrdiff_t ptr; ptrdiff_t adj; } memptr;
368///
369/// In the Itanium ABI:
370/// - method pointers are virtual if (memptr.ptr & 1) is nonzero
371/// - the this-adjustment is (memptr.adj)
372/// - the virtual offset is (memptr.ptr - 1)
373///
374/// In the ARM ABI:
375/// - method pointers are virtual if (memptr.adj & 1) is nonzero
376/// - the this-adjustment is (memptr.adj >> 1)
377/// - the virtual offset is (memptr.ptr)
378/// ARM uses 'adj' for the virtual flag because Thumb functions
379/// may be only single-byte aligned.
380///
381/// If the member is virtual, the adjusted 'this' pointer points
382/// to a vtable pointer from which the virtual offset is applied.
383///
384/// If the member is non-virtual, memptr.ptr is the address of
385/// the function to call.
David Majnemer2b0d66d2014-02-20 23:22:07 +0000386llvm::Value *ItaniumCXXABI::EmitLoadOfMemberFunctionPointer(
387 CodeGenFunction &CGF, const Expr *E, llvm::Value *&This,
388 llvm::Value *MemFnPtr, const MemberPointerType *MPT) {
John McCall475999d2010-08-22 00:05:51 +0000389 CGBuilderTy &Builder = CGF.Builder;
390
391 const FunctionProtoType *FPT =
392 MPT->getPointeeType()->getAs<FunctionProtoType>();
393 const CXXRecordDecl *RD =
394 cast<CXXRecordDecl>(MPT->getClass()->getAs<RecordType>()->getDecl());
395
Chris Lattner2192fe52011-07-18 04:24:23 +0000396 llvm::FunctionType *FTy =
John McCalla729c622012-02-17 03:33:10 +0000397 CGM.getTypes().GetFunctionType(
398 CGM.getTypes().arrangeCXXMethodType(RD, FPT));
John McCall475999d2010-08-22 00:05:51 +0000399
Reid Kleckner9cffbc12013-03-22 16:13:10 +0000400 llvm::Constant *ptrdiff_1 = llvm::ConstantInt::get(CGM.PtrDiffTy, 1);
John McCall475999d2010-08-22 00:05:51 +0000401
John McCalld9c6c0b2010-08-22 00:59:17 +0000402 llvm::BasicBlock *FnVirtual = CGF.createBasicBlock("memptr.virtual");
403 llvm::BasicBlock *FnNonVirtual = CGF.createBasicBlock("memptr.nonvirtual");
404 llvm::BasicBlock *FnEnd = CGF.createBasicBlock("memptr.end");
405
John McCalla1dee5302010-08-22 10:59:02 +0000406 // Extract memptr.adj, which is in the second field.
407 llvm::Value *RawAdj = Builder.CreateExtractValue(MemFnPtr, 1, "memptr.adj");
John McCalld9c6c0b2010-08-22 00:59:17 +0000408
409 // Compute the true adjustment.
410 llvm::Value *Adj = RawAdj;
Mark Seabornedf0d382013-07-24 16:25:13 +0000411 if (UseARMMethodPtrABI)
John McCalld9c6c0b2010-08-22 00:59:17 +0000412 Adj = Builder.CreateAShr(Adj, ptrdiff_1, "memptr.adj.shifted");
John McCall475999d2010-08-22 00:05:51 +0000413
414 // Apply the adjustment and cast back to the original struct type
415 // for consistency.
John McCalld9c6c0b2010-08-22 00:59:17 +0000416 llvm::Value *Ptr = Builder.CreateBitCast(This, Builder.getInt8PtrTy());
417 Ptr = Builder.CreateInBoundsGEP(Ptr, Adj);
418 This = Builder.CreateBitCast(Ptr, This->getType(), "this.adjusted");
John McCall475999d2010-08-22 00:05:51 +0000419
420 // Load the function pointer.
John McCalla1dee5302010-08-22 10:59:02 +0000421 llvm::Value *FnAsInt = Builder.CreateExtractValue(MemFnPtr, 0, "memptr.ptr");
John McCall475999d2010-08-22 00:05:51 +0000422
423 // If the LSB in the function pointer is 1, the function pointer points to
424 // a virtual function.
John McCalld9c6c0b2010-08-22 00:59:17 +0000425 llvm::Value *IsVirtual;
Mark Seabornedf0d382013-07-24 16:25:13 +0000426 if (UseARMMethodPtrABI)
John McCalld9c6c0b2010-08-22 00:59:17 +0000427 IsVirtual = Builder.CreateAnd(RawAdj, ptrdiff_1);
428 else
429 IsVirtual = Builder.CreateAnd(FnAsInt, ptrdiff_1);
430 IsVirtual = Builder.CreateIsNotNull(IsVirtual, "memptr.isvirtual");
John McCall475999d2010-08-22 00:05:51 +0000431 Builder.CreateCondBr(IsVirtual, FnVirtual, FnNonVirtual);
432
433 // In the virtual path, the adjustment left 'This' pointing to the
434 // vtable of the correct base subobject. The "function pointer" is an
John McCalld9c6c0b2010-08-22 00:59:17 +0000435 // offset within the vtable (+1 for the virtual flag on non-ARM).
John McCall475999d2010-08-22 00:05:51 +0000436 CGF.EmitBlock(FnVirtual);
437
438 // Cast the adjusted this to a pointer to vtable pointer and load.
Chris Lattner2192fe52011-07-18 04:24:23 +0000439 llvm::Type *VTableTy = Builder.getInt8PtrTy();
Richard Smith0fc7bdc2014-03-12 18:26:14 +0000440 llvm::Value *VTable = CGF.GetVTablePtr(This, VTableTy);
John McCall475999d2010-08-22 00:05:51 +0000441
442 // Apply the offset.
John McCalld9c6c0b2010-08-22 00:59:17 +0000443 llvm::Value *VTableOffset = FnAsInt;
Mark Seabornedf0d382013-07-24 16:25:13 +0000444 if (!UseARMMethodPtrABI)
445 VTableOffset = Builder.CreateSub(VTableOffset, ptrdiff_1);
John McCalld9c6c0b2010-08-22 00:59:17 +0000446 VTable = Builder.CreateGEP(VTable, VTableOffset);
John McCall475999d2010-08-22 00:05:51 +0000447
448 // Load the virtual function to call.
449 VTable = Builder.CreateBitCast(VTable, FTy->getPointerTo()->getPointerTo());
John McCalld9c6c0b2010-08-22 00:59:17 +0000450 llvm::Value *VirtualFn = Builder.CreateLoad(VTable, "memptr.virtualfn");
John McCall475999d2010-08-22 00:05:51 +0000451 CGF.EmitBranch(FnEnd);
452
453 // In the non-virtual path, the function pointer is actually a
454 // function pointer.
455 CGF.EmitBlock(FnNonVirtual);
456 llvm::Value *NonVirtualFn =
John McCalld9c6c0b2010-08-22 00:59:17 +0000457 Builder.CreateIntToPtr(FnAsInt, FTy->getPointerTo(), "memptr.nonvirtualfn");
John McCall475999d2010-08-22 00:05:51 +0000458
459 // We're done.
460 CGF.EmitBlock(FnEnd);
Jay Foad20c0f022011-03-30 11:28:58 +0000461 llvm::PHINode *Callee = Builder.CreatePHI(FTy->getPointerTo(), 2);
John McCall475999d2010-08-22 00:05:51 +0000462 Callee->addIncoming(VirtualFn, FnVirtual);
463 Callee->addIncoming(NonVirtualFn, FnNonVirtual);
464 return Callee;
465}
John McCalla8bbb822010-08-22 03:04:22 +0000466
John McCallc134eb52010-08-31 21:07:20 +0000467/// Compute an l-value by applying the given pointer-to-member to a
468/// base object.
David Majnemer2b0d66d2014-02-20 23:22:07 +0000469llvm::Value *ItaniumCXXABI::EmitMemberDataPointerAddress(
470 CodeGenFunction &CGF, const Expr *E, llvm::Value *Base, llvm::Value *MemPtr,
471 const MemberPointerType *MPT) {
Reid Kleckner9cffbc12013-03-22 16:13:10 +0000472 assert(MemPtr->getType() == CGM.PtrDiffTy);
John McCallc134eb52010-08-31 21:07:20 +0000473
474 CGBuilderTy &Builder = CGF.Builder;
475
Micah Villmowea2fea22012-10-25 15:39:14 +0000476 unsigned AS = Base->getType()->getPointerAddressSpace();
John McCallc134eb52010-08-31 21:07:20 +0000477
478 // Cast to char*.
479 Base = Builder.CreateBitCast(Base, Builder.getInt8Ty()->getPointerTo(AS));
480
481 // Apply the offset, which we assume is non-null.
482 llvm::Value *Addr = Builder.CreateInBoundsGEP(Base, MemPtr, "memptr.offset");
483
484 // Cast the address to the appropriate pointer type, adopting the
485 // address space of the base pointer.
Chris Lattner2192fe52011-07-18 04:24:23 +0000486 llvm::Type *PType
Douglas Gregor04f36212010-09-02 17:38:50 +0000487 = CGF.ConvertTypeForMem(MPT->getPointeeType())->getPointerTo(AS);
John McCallc134eb52010-08-31 21:07:20 +0000488 return Builder.CreateBitCast(Addr, PType);
489}
490
John McCallc62bb392012-02-15 01:22:51 +0000491/// Perform a bitcast, derived-to-base, or base-to-derived member pointer
492/// conversion.
493///
494/// Bitcast conversions are always a no-op under Itanium.
John McCall7a9aac22010-08-23 01:21:21 +0000495///
496/// Obligatory offset/adjustment diagram:
497/// <-- offset --> <-- adjustment -->
498/// |--------------------------|----------------------|--------------------|
499/// ^Derived address point ^Base address point ^Member address point
500///
501/// So when converting a base member pointer to a derived member pointer,
502/// we add the offset to the adjustment because the address point has
503/// decreased; and conversely, when converting a derived MP to a base MP
504/// we subtract the offset from the adjustment because the address point
505/// has increased.
506///
507/// The standard forbids (at compile time) conversion to and from
508/// virtual bases, which is why we don't have to consider them here.
509///
510/// The standard forbids (at run time) casting a derived MP to a base
511/// MP when the derived MP does not point to a member of the base.
512/// This is why -1 is a reasonable choice for null data member
513/// pointers.
John McCalla1dee5302010-08-22 10:59:02 +0000514llvm::Value *
John McCall7a9aac22010-08-23 01:21:21 +0000515ItaniumCXXABI::EmitMemberPointerConversion(CodeGenFunction &CGF,
516 const CastExpr *E,
John McCallc62bb392012-02-15 01:22:51 +0000517 llvm::Value *src) {
John McCalle3027922010-08-25 11:45:40 +0000518 assert(E->getCastKind() == CK_DerivedToBaseMemberPointer ||
John McCallc62bb392012-02-15 01:22:51 +0000519 E->getCastKind() == CK_BaseToDerivedMemberPointer ||
520 E->getCastKind() == CK_ReinterpretMemberPointer);
521
522 // Under Itanium, reinterprets don't require any additional processing.
523 if (E->getCastKind() == CK_ReinterpretMemberPointer) return src;
524
525 // Use constant emission if we can.
526 if (isa<llvm::Constant>(src))
527 return EmitMemberPointerConversion(E, cast<llvm::Constant>(src));
528
529 llvm::Constant *adj = getMemberPointerAdjustment(E);
530 if (!adj) return src;
John McCalla8bbb822010-08-22 03:04:22 +0000531
532 CGBuilderTy &Builder = CGF.Builder;
John McCallc62bb392012-02-15 01:22:51 +0000533 bool isDerivedToBase = (E->getCastKind() == CK_DerivedToBaseMemberPointer);
John McCalla8bbb822010-08-22 03:04:22 +0000534
John McCallc62bb392012-02-15 01:22:51 +0000535 const MemberPointerType *destTy =
536 E->getType()->castAs<MemberPointerType>();
John McCall1c456c82010-08-22 06:43:33 +0000537
John McCall7a9aac22010-08-23 01:21:21 +0000538 // For member data pointers, this is just a matter of adding the
539 // offset if the source is non-null.
John McCallc62bb392012-02-15 01:22:51 +0000540 if (destTy->isMemberDataPointer()) {
541 llvm::Value *dst;
542 if (isDerivedToBase)
543 dst = Builder.CreateNSWSub(src, adj, "adj");
John McCall7a9aac22010-08-23 01:21:21 +0000544 else
John McCallc62bb392012-02-15 01:22:51 +0000545 dst = Builder.CreateNSWAdd(src, adj, "adj");
John McCall7a9aac22010-08-23 01:21:21 +0000546
547 // Null check.
John McCallc62bb392012-02-15 01:22:51 +0000548 llvm::Value *null = llvm::Constant::getAllOnesValue(src->getType());
549 llvm::Value *isNull = Builder.CreateICmpEQ(src, null, "memptr.isnull");
550 return Builder.CreateSelect(isNull, src, dst);
John McCall7a9aac22010-08-23 01:21:21 +0000551 }
552
John McCalla1dee5302010-08-22 10:59:02 +0000553 // The this-adjustment is left-shifted by 1 on ARM.
Mark Seabornedf0d382013-07-24 16:25:13 +0000554 if (UseARMMethodPtrABI) {
John McCallc62bb392012-02-15 01:22:51 +0000555 uint64_t offset = cast<llvm::ConstantInt>(adj)->getZExtValue();
556 offset <<= 1;
557 adj = llvm::ConstantInt::get(adj->getType(), offset);
John McCalla1dee5302010-08-22 10:59:02 +0000558 }
559
John McCallc62bb392012-02-15 01:22:51 +0000560 llvm::Value *srcAdj = Builder.CreateExtractValue(src, 1, "src.adj");
561 llvm::Value *dstAdj;
562 if (isDerivedToBase)
563 dstAdj = Builder.CreateNSWSub(srcAdj, adj, "adj");
John McCalla1dee5302010-08-22 10:59:02 +0000564 else
John McCallc62bb392012-02-15 01:22:51 +0000565 dstAdj = Builder.CreateNSWAdd(srcAdj, adj, "adj");
John McCalla1dee5302010-08-22 10:59:02 +0000566
John McCallc62bb392012-02-15 01:22:51 +0000567 return Builder.CreateInsertValue(src, dstAdj, 1);
568}
569
570llvm::Constant *
571ItaniumCXXABI::EmitMemberPointerConversion(const CastExpr *E,
572 llvm::Constant *src) {
573 assert(E->getCastKind() == CK_DerivedToBaseMemberPointer ||
574 E->getCastKind() == CK_BaseToDerivedMemberPointer ||
575 E->getCastKind() == CK_ReinterpretMemberPointer);
576
577 // Under Itanium, reinterprets don't require any additional processing.
578 if (E->getCastKind() == CK_ReinterpretMemberPointer) return src;
579
580 // If the adjustment is trivial, we don't need to do anything.
581 llvm::Constant *adj = getMemberPointerAdjustment(E);
582 if (!adj) return src;
583
584 bool isDerivedToBase = (E->getCastKind() == CK_DerivedToBaseMemberPointer);
585
586 const MemberPointerType *destTy =
587 E->getType()->castAs<MemberPointerType>();
588
589 // For member data pointers, this is just a matter of adding the
590 // offset if the source is non-null.
591 if (destTy->isMemberDataPointer()) {
592 // null maps to null.
593 if (src->isAllOnesValue()) return src;
594
595 if (isDerivedToBase)
596 return llvm::ConstantExpr::getNSWSub(src, adj);
597 else
598 return llvm::ConstantExpr::getNSWAdd(src, adj);
599 }
600
601 // The this-adjustment is left-shifted by 1 on ARM.
Mark Seabornedf0d382013-07-24 16:25:13 +0000602 if (UseARMMethodPtrABI) {
John McCallc62bb392012-02-15 01:22:51 +0000603 uint64_t offset = cast<llvm::ConstantInt>(adj)->getZExtValue();
604 offset <<= 1;
605 adj = llvm::ConstantInt::get(adj->getType(), offset);
606 }
607
608 llvm::Constant *srcAdj = llvm::ConstantExpr::getExtractValue(src, 1);
609 llvm::Constant *dstAdj;
610 if (isDerivedToBase)
611 dstAdj = llvm::ConstantExpr::getNSWSub(srcAdj, adj);
612 else
613 dstAdj = llvm::ConstantExpr::getNSWAdd(srcAdj, adj);
614
615 return llvm::ConstantExpr::getInsertValue(src, dstAdj, 1);
John McCalla8bbb822010-08-22 03:04:22 +0000616}
John McCall84fa5102010-08-22 04:16:24 +0000617
618llvm::Constant *
John McCall7a9aac22010-08-23 01:21:21 +0000619ItaniumCXXABI::EmitNullMemberPointer(const MemberPointerType *MPT) {
John McCall7a9aac22010-08-23 01:21:21 +0000620 // Itanium C++ ABI 2.3:
621 // A NULL pointer is represented as -1.
622 if (MPT->isMemberDataPointer())
Reid Kleckner9cffbc12013-03-22 16:13:10 +0000623 return llvm::ConstantInt::get(CGM.PtrDiffTy, -1ULL, /*isSigned=*/true);
John McCalla1dee5302010-08-22 10:59:02 +0000624
Reid Kleckner9cffbc12013-03-22 16:13:10 +0000625 llvm::Constant *Zero = llvm::ConstantInt::get(CGM.PtrDiffTy, 0);
John McCalla1dee5302010-08-22 10:59:02 +0000626 llvm::Constant *Values[2] = { Zero, Zero };
Chris Lattnere64d7ba2011-06-20 04:01:35 +0000627 return llvm::ConstantStruct::getAnon(Values);
John McCall84fa5102010-08-22 04:16:24 +0000628}
629
John McCallf3a88602011-02-03 08:15:49 +0000630llvm::Constant *
631ItaniumCXXABI::EmitMemberDataPointer(const MemberPointerType *MPT,
632 CharUnits offset) {
John McCall7a9aac22010-08-23 01:21:21 +0000633 // Itanium C++ ABI 2.3:
634 // A pointer to data member is an offset from the base address of
635 // the class object containing it, represented as a ptrdiff_t
Reid Kleckner9cffbc12013-03-22 16:13:10 +0000636 return llvm::ConstantInt::get(CGM.PtrDiffTy, offset.getQuantity());
John McCall7a9aac22010-08-23 01:21:21 +0000637}
638
John McCall2979fe02011-04-12 00:42:48 +0000639llvm::Constant *ItaniumCXXABI::EmitMemberPointer(const CXXMethodDecl *MD) {
Richard Smithdafff942012-01-14 04:30:29 +0000640 return BuildMemberPointer(MD, CharUnits::Zero());
641}
642
643llvm::Constant *ItaniumCXXABI::BuildMemberPointer(const CXXMethodDecl *MD,
644 CharUnits ThisAdjustment) {
John McCalla1dee5302010-08-22 10:59:02 +0000645 assert(MD->isInstance() && "Member function must not be static!");
646 MD = MD->getCanonicalDecl();
647
648 CodeGenTypes &Types = CGM.getTypes();
John McCalla1dee5302010-08-22 10:59:02 +0000649
650 // Get the function pointer (or index if this is a virtual function).
651 llvm::Constant *MemPtr[2];
652 if (MD->isVirtual()) {
Timur Iskhodzhanov58776632013-11-05 15:54:58 +0000653 uint64_t Index = CGM.getItaniumVTableContext().getMethodVTableIndex(MD);
John McCalla1dee5302010-08-22 10:59:02 +0000654
Ken Dyckdf016282011-04-09 01:30:02 +0000655 const ASTContext &Context = getContext();
656 CharUnits PointerWidth =
Douglas Gregore8bbc122011-09-02 00:18:52 +0000657 Context.toCharUnitsFromBits(Context.getTargetInfo().getPointerWidth(0));
Ken Dyckdf016282011-04-09 01:30:02 +0000658 uint64_t VTableOffset = (Index * PointerWidth.getQuantity());
John McCalla1dee5302010-08-22 10:59:02 +0000659
Mark Seabornedf0d382013-07-24 16:25:13 +0000660 if (UseARMMethodPtrABI) {
John McCalla1dee5302010-08-22 10:59:02 +0000661 // ARM C++ ABI 3.2.1:
662 // This ABI specifies that adj contains twice the this
663 // adjustment, plus 1 if the member function is virtual. The
664 // least significant bit of adj then makes exactly the same
665 // discrimination as the least significant bit of ptr does for
666 // Itanium.
Reid Kleckner9cffbc12013-03-22 16:13:10 +0000667 MemPtr[0] = llvm::ConstantInt::get(CGM.PtrDiffTy, VTableOffset);
668 MemPtr[1] = llvm::ConstantInt::get(CGM.PtrDiffTy,
Richard Smithdafff942012-01-14 04:30:29 +0000669 2 * ThisAdjustment.getQuantity() + 1);
John McCalla1dee5302010-08-22 10:59:02 +0000670 } else {
671 // Itanium C++ ABI 2.3:
672 // For a virtual function, [the pointer field] is 1 plus the
673 // virtual table offset (in bytes) of the function,
674 // represented as a ptrdiff_t.
Reid Kleckner9cffbc12013-03-22 16:13:10 +0000675 MemPtr[0] = llvm::ConstantInt::get(CGM.PtrDiffTy, VTableOffset + 1);
676 MemPtr[1] = llvm::ConstantInt::get(CGM.PtrDiffTy,
Richard Smithdafff942012-01-14 04:30:29 +0000677 ThisAdjustment.getQuantity());
John McCalla1dee5302010-08-22 10:59:02 +0000678 }
679 } else {
John McCall2979fe02011-04-12 00:42:48 +0000680 const FunctionProtoType *FPT = MD->getType()->castAs<FunctionProtoType>();
Chris Lattner2192fe52011-07-18 04:24:23 +0000681 llvm::Type *Ty;
John McCall2979fe02011-04-12 00:42:48 +0000682 // Check whether the function has a computable LLVM signature.
Chris Lattner8806e322011-07-10 00:18:59 +0000683 if (Types.isFuncTypeConvertible(FPT)) {
John McCall2979fe02011-04-12 00:42:48 +0000684 // The function has a computable LLVM signature; use the correct type.
John McCalla729c622012-02-17 03:33:10 +0000685 Ty = Types.GetFunctionType(Types.arrangeCXXMethodDeclaration(MD));
John McCalla1dee5302010-08-22 10:59:02 +0000686 } else {
John McCall2979fe02011-04-12 00:42:48 +0000687 // Use an arbitrary non-function type to tell GetAddrOfFunction that the
688 // function type is incomplete.
Reid Kleckner9cffbc12013-03-22 16:13:10 +0000689 Ty = CGM.PtrDiffTy;
John McCalla1dee5302010-08-22 10:59:02 +0000690 }
John McCall2979fe02011-04-12 00:42:48 +0000691 llvm::Constant *addr = CGM.GetAddrOfFunction(MD, Ty);
John McCalla1dee5302010-08-22 10:59:02 +0000692
Reid Kleckner9cffbc12013-03-22 16:13:10 +0000693 MemPtr[0] = llvm::ConstantExpr::getPtrToInt(addr, CGM.PtrDiffTy);
Mark Seabornedf0d382013-07-24 16:25:13 +0000694 MemPtr[1] = llvm::ConstantInt::get(CGM.PtrDiffTy,
695 (UseARMMethodPtrABI ? 2 : 1) *
Richard Smithdafff942012-01-14 04:30:29 +0000696 ThisAdjustment.getQuantity());
John McCalla1dee5302010-08-22 10:59:02 +0000697 }
John McCall1c456c82010-08-22 06:43:33 +0000698
Chris Lattnere64d7ba2011-06-20 04:01:35 +0000699 return llvm::ConstantStruct::getAnon(MemPtr);
John McCall1c456c82010-08-22 06:43:33 +0000700}
701
Richard Smithdafff942012-01-14 04:30:29 +0000702llvm::Constant *ItaniumCXXABI::EmitMemberPointer(const APValue &MP,
703 QualType MPType) {
704 const MemberPointerType *MPT = MPType->castAs<MemberPointerType>();
705 const ValueDecl *MPD = MP.getMemberPointerDecl();
706 if (!MPD)
707 return EmitNullMemberPointer(MPT);
708
Reid Kleckner452abac2013-05-09 21:01:17 +0000709 CharUnits ThisAdjustment = getMemberPointerPathAdjustment(MP);
Richard Smithdafff942012-01-14 04:30:29 +0000710
711 if (const CXXMethodDecl *MD = dyn_cast<CXXMethodDecl>(MPD))
712 return BuildMemberPointer(MD, ThisAdjustment);
713
714 CharUnits FieldOffset =
715 getContext().toCharUnitsFromBits(getContext().getFieldOffset(MPD));
716 return EmitMemberDataPointer(MPT, ThisAdjustment + FieldOffset);
717}
718
John McCall131d97d2010-08-22 08:30:07 +0000719/// The comparison algorithm is pretty easy: the member pointers are
720/// the same if they're either bitwise identical *or* both null.
721///
722/// ARM is different here only because null-ness is more complicated.
723llvm::Value *
John McCall7a9aac22010-08-23 01:21:21 +0000724ItaniumCXXABI::EmitMemberPointerComparison(CodeGenFunction &CGF,
725 llvm::Value *L,
726 llvm::Value *R,
727 const MemberPointerType *MPT,
728 bool Inequality) {
John McCall131d97d2010-08-22 08:30:07 +0000729 CGBuilderTy &Builder = CGF.Builder;
730
John McCall131d97d2010-08-22 08:30:07 +0000731 llvm::ICmpInst::Predicate Eq;
732 llvm::Instruction::BinaryOps And, Or;
733 if (Inequality) {
734 Eq = llvm::ICmpInst::ICMP_NE;
735 And = llvm::Instruction::Or;
736 Or = llvm::Instruction::And;
737 } else {
738 Eq = llvm::ICmpInst::ICMP_EQ;
739 And = llvm::Instruction::And;
740 Or = llvm::Instruction::Or;
741 }
742
John McCall7a9aac22010-08-23 01:21:21 +0000743 // Member data pointers are easy because there's a unique null
744 // value, so it just comes down to bitwise equality.
745 if (MPT->isMemberDataPointer())
746 return Builder.CreateICmp(Eq, L, R);
747
748 // For member function pointers, the tautologies are more complex.
749 // The Itanium tautology is:
John McCall61a14882010-08-23 06:56:36 +0000750 // (L == R) <==> (L.ptr == R.ptr && (L.ptr == 0 || L.adj == R.adj))
John McCall7a9aac22010-08-23 01:21:21 +0000751 // The ARM tautology is:
John McCall61a14882010-08-23 06:56:36 +0000752 // (L == R) <==> (L.ptr == R.ptr &&
753 // (L.adj == R.adj ||
754 // (L.ptr == 0 && ((L.adj|R.adj) & 1) == 0)))
John McCall7a9aac22010-08-23 01:21:21 +0000755 // The inequality tautologies have exactly the same structure, except
756 // applying De Morgan's laws.
757
758 llvm::Value *LPtr = Builder.CreateExtractValue(L, 0, "lhs.memptr.ptr");
759 llvm::Value *RPtr = Builder.CreateExtractValue(R, 0, "rhs.memptr.ptr");
760
John McCall131d97d2010-08-22 08:30:07 +0000761 // This condition tests whether L.ptr == R.ptr. This must always be
762 // true for equality to hold.
763 llvm::Value *PtrEq = Builder.CreateICmp(Eq, LPtr, RPtr, "cmp.ptr");
764
765 // This condition, together with the assumption that L.ptr == R.ptr,
766 // tests whether the pointers are both null. ARM imposes an extra
767 // condition.
768 llvm::Value *Zero = llvm::Constant::getNullValue(LPtr->getType());
769 llvm::Value *EqZero = Builder.CreateICmp(Eq, LPtr, Zero, "cmp.ptr.null");
770
771 // This condition tests whether L.adj == R.adj. If this isn't
772 // true, the pointers are unequal unless they're both null.
John McCalla1dee5302010-08-22 10:59:02 +0000773 llvm::Value *LAdj = Builder.CreateExtractValue(L, 1, "lhs.memptr.adj");
774 llvm::Value *RAdj = Builder.CreateExtractValue(R, 1, "rhs.memptr.adj");
John McCall131d97d2010-08-22 08:30:07 +0000775 llvm::Value *AdjEq = Builder.CreateICmp(Eq, LAdj, RAdj, "cmp.adj");
776
777 // Null member function pointers on ARM clear the low bit of Adj,
778 // so the zero condition has to check that neither low bit is set.
Mark Seabornedf0d382013-07-24 16:25:13 +0000779 if (UseARMMethodPtrABI) {
John McCall131d97d2010-08-22 08:30:07 +0000780 llvm::Value *One = llvm::ConstantInt::get(LPtr->getType(), 1);
781
782 // Compute (l.adj | r.adj) & 1 and test it against zero.
783 llvm::Value *OrAdj = Builder.CreateOr(LAdj, RAdj, "or.adj");
784 llvm::Value *OrAdjAnd1 = Builder.CreateAnd(OrAdj, One);
785 llvm::Value *OrAdjAnd1EqZero = Builder.CreateICmp(Eq, OrAdjAnd1, Zero,
786 "cmp.or.adj");
787 EqZero = Builder.CreateBinOp(And, EqZero, OrAdjAnd1EqZero);
788 }
789
790 // Tie together all our conditions.
791 llvm::Value *Result = Builder.CreateBinOp(Or, EqZero, AdjEq);
792 Result = Builder.CreateBinOp(And, PtrEq, Result,
793 Inequality ? "memptr.ne" : "memptr.eq");
794 return Result;
795}
796
797llvm::Value *
John McCall7a9aac22010-08-23 01:21:21 +0000798ItaniumCXXABI::EmitMemberPointerIsNotNull(CodeGenFunction &CGF,
799 llvm::Value *MemPtr,
800 const MemberPointerType *MPT) {
John McCall131d97d2010-08-22 08:30:07 +0000801 CGBuilderTy &Builder = CGF.Builder;
John McCall7a9aac22010-08-23 01:21:21 +0000802
803 /// For member data pointers, this is just a check against -1.
804 if (MPT->isMemberDataPointer()) {
Reid Kleckner9cffbc12013-03-22 16:13:10 +0000805 assert(MemPtr->getType() == CGM.PtrDiffTy);
John McCall7a9aac22010-08-23 01:21:21 +0000806 llvm::Value *NegativeOne =
807 llvm::Constant::getAllOnesValue(MemPtr->getType());
808 return Builder.CreateICmpNE(MemPtr, NegativeOne, "memptr.tobool");
809 }
John McCall131d97d2010-08-22 08:30:07 +0000810
Daniel Dunbar914bc412011-04-19 23:10:47 +0000811 // In Itanium, a member function pointer is not null if 'ptr' is not null.
John McCalla1dee5302010-08-22 10:59:02 +0000812 llvm::Value *Ptr = Builder.CreateExtractValue(MemPtr, 0, "memptr.ptr");
John McCall131d97d2010-08-22 08:30:07 +0000813
814 llvm::Constant *Zero = llvm::ConstantInt::get(Ptr->getType(), 0);
815 llvm::Value *Result = Builder.CreateICmpNE(Ptr, Zero, "memptr.tobool");
816
Daniel Dunbar914bc412011-04-19 23:10:47 +0000817 // On ARM, a member function pointer is also non-null if the low bit of 'adj'
818 // (the virtual bit) is set.
Mark Seabornedf0d382013-07-24 16:25:13 +0000819 if (UseARMMethodPtrABI) {
John McCall131d97d2010-08-22 08:30:07 +0000820 llvm::Constant *One = llvm::ConstantInt::get(Ptr->getType(), 1);
John McCalla1dee5302010-08-22 10:59:02 +0000821 llvm::Value *Adj = Builder.CreateExtractValue(MemPtr, 1, "memptr.adj");
John McCall131d97d2010-08-22 08:30:07 +0000822 llvm::Value *VirtualBit = Builder.CreateAnd(Adj, One, "memptr.virtualbit");
Daniel Dunbar914bc412011-04-19 23:10:47 +0000823 llvm::Value *IsVirtual = Builder.CreateICmpNE(VirtualBit, Zero,
824 "memptr.isvirtual");
825 Result = Builder.CreateOr(Result, IsVirtual);
John McCall131d97d2010-08-22 08:30:07 +0000826 }
827
828 return Result;
829}
John McCall1c456c82010-08-22 06:43:33 +0000830
Reid Kleckner40ca9132014-05-13 22:05:45 +0000831bool ItaniumCXXABI::classifyReturnType(CGFunctionInfo &FI) const {
832 const CXXRecordDecl *RD = FI.getReturnType()->getAsCXXRecordDecl();
833 if (!RD)
834 return false;
835
Reid Klecknerd355ca72014-05-15 01:26:32 +0000836 // Return indirectly if we have a non-trivial copy ctor or non-trivial dtor.
837 // FIXME: Use canCopyArgument() when it is fixed to handle lazily declared
838 // special members.
839 if (RD->hasNonTrivialDestructor() || RD->hasNonTrivialCopyConstructor()) {
Reid Kleckner40ca9132014-05-13 22:05:45 +0000840 FI.getReturnInfo() = ABIArgInfo::getIndirect(0, /*ByVal=*/false);
841 return true;
842 }
Reid Kleckner40ca9132014-05-13 22:05:45 +0000843 return false;
844}
845
John McCall614dbdc2010-08-22 21:01:12 +0000846/// The Itanium ABI requires non-zero initialization only for data
847/// member pointers, for which '0' is a valid offset.
848bool ItaniumCXXABI::isZeroInitializable(const MemberPointerType *MPT) {
849 return MPT->getPointeeType()->isFunctionType();
John McCall84fa5102010-08-22 04:16:24 +0000850}
John McCall5d865c322010-08-31 07:33:07 +0000851
John McCall82fb8922012-09-25 10:10:39 +0000852/// The Itanium ABI always places an offset to the complete object
853/// at entry -2 in the vtable.
David Majnemer08681372014-11-01 07:37:17 +0000854void ItaniumCXXABI::emitVirtualObjectDelete(CodeGenFunction &CGF,
855 const CXXDeleteExpr *DE,
856 llvm::Value *Ptr,
857 QualType ElementType,
858 const CXXDestructorDecl *Dtor) {
859 bool UseGlobalDelete = DE->isGlobalDelete();
David Majnemer0c0b6d92014-10-31 20:09:12 +0000860 if (UseGlobalDelete) {
861 // Derive the complete-object pointer, which is what we need
862 // to pass to the deallocation function.
John McCall82fb8922012-09-25 10:10:39 +0000863
David Majnemer0c0b6d92014-10-31 20:09:12 +0000864 // Grab the vtable pointer as an intptr_t*.
865 llvm::Value *VTable = CGF.GetVTablePtr(Ptr, CGF.IntPtrTy->getPointerTo());
John McCall82fb8922012-09-25 10:10:39 +0000866
David Majnemer0c0b6d92014-10-31 20:09:12 +0000867 // Track back to entry -2 and pull out the offset there.
868 llvm::Value *OffsetPtr = CGF.Builder.CreateConstInBoundsGEP1_64(
869 VTable, -2, "complete-offset.ptr");
870 llvm::LoadInst *Offset = CGF.Builder.CreateLoad(OffsetPtr);
871 Offset->setAlignment(CGF.PointerAlignInBytes);
872
873 // Apply the offset.
874 llvm::Value *CompletePtr = CGF.Builder.CreateBitCast(Ptr, CGF.Int8PtrTy);
875 CompletePtr = CGF.Builder.CreateInBoundsGEP(CompletePtr, Offset);
876
877 // If we're supposed to call the global delete, make sure we do so
878 // even if the destructor throws.
David Majnemer08681372014-11-01 07:37:17 +0000879 CGF.pushCallObjectDeleteCleanup(DE->getOperatorDelete(), CompletePtr,
880 ElementType);
David Majnemer0c0b6d92014-10-31 20:09:12 +0000881 }
882
883 // FIXME: Provide a source location here even though there's no
884 // CXXMemberCallExpr for dtor call.
885 CXXDtorType DtorType = UseGlobalDelete ? Dtor_Complete : Dtor_Deleting;
886 EmitVirtualDestructorCall(CGF, Dtor, DtorType, Ptr, /*CE=*/nullptr);
887
888 if (UseGlobalDelete)
889 CGF.PopCleanupBlock();
John McCall82fb8922012-09-25 10:10:39 +0000890}
891
David Majnemer442d0a22014-11-25 07:20:20 +0000892void ItaniumCXXABI::emitRethrow(CodeGenFunction &CGF, bool isNoReturn) {
893 // void __cxa_rethrow();
894
895 llvm::FunctionType *FTy =
896 llvm::FunctionType::get(CGM.VoidTy, /*IsVarArgs=*/false);
897
898 llvm::Constant *Fn = CGM.CreateRuntimeFunction(FTy, "__cxa_rethrow");
899
900 if (isNoReturn)
901 CGF.EmitNoreturnRuntimeCallOrInvoke(Fn, None);
902 else
903 CGF.EmitRuntimeCallOrInvoke(Fn);
904}
905
David Majnemer1162d252014-06-22 19:05:33 +0000906static llvm::Constant *getItaniumDynamicCastFn(CodeGenFunction &CGF) {
907 // void *__dynamic_cast(const void *sub,
908 // const abi::__class_type_info *src,
909 // const abi::__class_type_info *dst,
910 // std::ptrdiff_t src2dst_offset);
911
912 llvm::Type *Int8PtrTy = CGF.Int8PtrTy;
913 llvm::Type *PtrDiffTy =
914 CGF.ConvertType(CGF.getContext().getPointerDiffType());
915
916 llvm::Type *Args[4] = { Int8PtrTy, Int8PtrTy, Int8PtrTy, PtrDiffTy };
917
918 llvm::FunctionType *FTy = llvm::FunctionType::get(Int8PtrTy, Args, false);
919
920 // Mark the function as nounwind readonly.
921 llvm::Attribute::AttrKind FuncAttrs[] = { llvm::Attribute::NoUnwind,
922 llvm::Attribute::ReadOnly };
923 llvm::AttributeSet Attrs = llvm::AttributeSet::get(
924 CGF.getLLVMContext(), llvm::AttributeSet::FunctionIndex, FuncAttrs);
925
926 return CGF.CGM.CreateRuntimeFunction(FTy, "__dynamic_cast", Attrs);
927}
928
929static llvm::Constant *getBadCastFn(CodeGenFunction &CGF) {
930 // void __cxa_bad_cast();
931 llvm::FunctionType *FTy = llvm::FunctionType::get(CGF.VoidTy, false);
932 return CGF.CGM.CreateRuntimeFunction(FTy, "__cxa_bad_cast");
933}
934
935/// \brief Compute the src2dst_offset hint as described in the
936/// Itanium C++ ABI [2.9.7]
937static CharUnits computeOffsetHint(ASTContext &Context,
938 const CXXRecordDecl *Src,
939 const CXXRecordDecl *Dst) {
940 CXXBasePaths Paths(/*FindAmbiguities=*/true, /*RecordPaths=*/true,
941 /*DetectVirtual=*/false);
942
943 // If Dst is not derived from Src we can skip the whole computation below and
944 // return that Src is not a public base of Dst. Record all inheritance paths.
945 if (!Dst->isDerivedFrom(Src, Paths))
946 return CharUnits::fromQuantity(-2ULL);
947
948 unsigned NumPublicPaths = 0;
949 CharUnits Offset;
950
951 // Now walk all possible inheritance paths.
952 for (CXXBasePaths::paths_iterator I = Paths.begin(), E = Paths.end(); I != E;
953 ++I) {
954 if (I->Access != AS_public) // Ignore non-public inheritance.
955 continue;
956
957 ++NumPublicPaths;
958
959 for (CXXBasePath::iterator J = I->begin(), JE = I->end(); J != JE; ++J) {
960 // If the path contains a virtual base class we can't give any hint.
961 // -1: no hint.
962 if (J->Base->isVirtual())
963 return CharUnits::fromQuantity(-1ULL);
964
965 if (NumPublicPaths > 1) // Won't use offsets, skip computation.
966 continue;
967
968 // Accumulate the base class offsets.
969 const ASTRecordLayout &L = Context.getASTRecordLayout(J->Class);
970 Offset += L.getBaseClassOffset(J->Base->getType()->getAsCXXRecordDecl());
971 }
972 }
973
974 // -2: Src is not a public base of Dst.
975 if (NumPublicPaths == 0)
976 return CharUnits::fromQuantity(-2ULL);
977
978 // -3: Src is a multiple public base type but never a virtual base type.
979 if (NumPublicPaths > 1)
980 return CharUnits::fromQuantity(-3ULL);
981
982 // Otherwise, the Src type is a unique public nonvirtual base type of Dst.
983 // Return the offset of Src from the origin of Dst.
984 return Offset;
985}
986
987static llvm::Constant *getBadTypeidFn(CodeGenFunction &CGF) {
988 // void __cxa_bad_typeid();
989 llvm::FunctionType *FTy = llvm::FunctionType::get(CGF.VoidTy, false);
990
991 return CGF.CGM.CreateRuntimeFunction(FTy, "__cxa_bad_typeid");
992}
993
994bool ItaniumCXXABI::shouldTypeidBeNullChecked(bool IsDeref,
995 QualType SrcRecordTy) {
996 return IsDeref;
997}
998
999void ItaniumCXXABI::EmitBadTypeidCall(CodeGenFunction &CGF) {
1000 llvm::Value *Fn = getBadTypeidFn(CGF);
1001 CGF.EmitRuntimeCallOrInvoke(Fn).setDoesNotReturn();
1002 CGF.Builder.CreateUnreachable();
1003}
1004
1005llvm::Value *ItaniumCXXABI::EmitTypeid(CodeGenFunction &CGF,
1006 QualType SrcRecordTy,
1007 llvm::Value *ThisPtr,
1008 llvm::Type *StdTypeInfoPtrTy) {
1009 llvm::Value *Value =
1010 CGF.GetVTablePtr(ThisPtr, StdTypeInfoPtrTy->getPointerTo());
1011
1012 // Load the type info.
1013 Value = CGF.Builder.CreateConstInBoundsGEP1_64(Value, -1ULL);
1014 return CGF.Builder.CreateLoad(Value);
1015}
1016
1017bool ItaniumCXXABI::shouldDynamicCastCallBeNullChecked(bool SrcIsPtr,
1018 QualType SrcRecordTy) {
1019 return SrcIsPtr;
1020}
1021
1022llvm::Value *ItaniumCXXABI::EmitDynamicCastCall(
1023 CodeGenFunction &CGF, llvm::Value *Value, QualType SrcRecordTy,
1024 QualType DestTy, QualType DestRecordTy, llvm::BasicBlock *CastEnd) {
1025 llvm::Type *PtrDiffLTy =
1026 CGF.ConvertType(CGF.getContext().getPointerDiffType());
1027 llvm::Type *DestLTy = CGF.ConvertType(DestTy);
1028
1029 llvm::Value *SrcRTTI =
1030 CGF.CGM.GetAddrOfRTTIDescriptor(SrcRecordTy.getUnqualifiedType());
1031 llvm::Value *DestRTTI =
1032 CGF.CGM.GetAddrOfRTTIDescriptor(DestRecordTy.getUnqualifiedType());
1033
1034 // Compute the offset hint.
1035 const CXXRecordDecl *SrcDecl = SrcRecordTy->getAsCXXRecordDecl();
1036 const CXXRecordDecl *DestDecl = DestRecordTy->getAsCXXRecordDecl();
1037 llvm::Value *OffsetHint = llvm::ConstantInt::get(
1038 PtrDiffLTy,
1039 computeOffsetHint(CGF.getContext(), SrcDecl, DestDecl).getQuantity());
1040
1041 // Emit the call to __dynamic_cast.
1042 Value = CGF.EmitCastToVoidPtr(Value);
1043
1044 llvm::Value *args[] = {Value, SrcRTTI, DestRTTI, OffsetHint};
1045 Value = CGF.EmitNounwindRuntimeCall(getItaniumDynamicCastFn(CGF), args);
1046 Value = CGF.Builder.CreateBitCast(Value, DestLTy);
1047
1048 /// C++ [expr.dynamic.cast]p9:
1049 /// A failed cast to reference type throws std::bad_cast
1050 if (DestTy->isReferenceType()) {
1051 llvm::BasicBlock *BadCastBlock =
1052 CGF.createBasicBlock("dynamic_cast.bad_cast");
1053
1054 llvm::Value *IsNull = CGF.Builder.CreateIsNull(Value);
1055 CGF.Builder.CreateCondBr(IsNull, BadCastBlock, CastEnd);
1056
1057 CGF.EmitBlock(BadCastBlock);
1058 EmitBadCastCall(CGF);
1059 }
1060
1061 return Value;
1062}
1063
1064llvm::Value *ItaniumCXXABI::EmitDynamicCastToVoid(CodeGenFunction &CGF,
1065 llvm::Value *Value,
1066 QualType SrcRecordTy,
1067 QualType DestTy) {
1068 llvm::Type *PtrDiffLTy =
1069 CGF.ConvertType(CGF.getContext().getPointerDiffType());
1070 llvm::Type *DestLTy = CGF.ConvertType(DestTy);
1071
1072 // Get the vtable pointer.
1073 llvm::Value *VTable = CGF.GetVTablePtr(Value, PtrDiffLTy->getPointerTo());
1074
1075 // Get the offset-to-top from the vtable.
1076 llvm::Value *OffsetToTop =
1077 CGF.Builder.CreateConstInBoundsGEP1_64(VTable, -2ULL);
1078 OffsetToTop = CGF.Builder.CreateLoad(OffsetToTop, "offset.to.top");
1079
1080 // Finally, add the offset to the pointer.
1081 Value = CGF.EmitCastToVoidPtr(Value);
1082 Value = CGF.Builder.CreateInBoundsGEP(Value, OffsetToTop);
1083
1084 return CGF.Builder.CreateBitCast(Value, DestLTy);
1085}
1086
1087bool ItaniumCXXABI::EmitBadCastCall(CodeGenFunction &CGF) {
1088 llvm::Value *Fn = getBadCastFn(CGF);
1089 CGF.EmitRuntimeCallOrInvoke(Fn).setDoesNotReturn();
1090 CGF.Builder.CreateUnreachable();
1091 return true;
1092}
1093
Reid Klecknerd8cbeec2013-05-29 18:02:47 +00001094llvm::Value *
1095ItaniumCXXABI::GetVirtualBaseClassOffset(CodeGenFunction &CGF,
1096 llvm::Value *This,
1097 const CXXRecordDecl *ClassDecl,
1098 const CXXRecordDecl *BaseClassDecl) {
1099 llvm::Value *VTablePtr = CGF.GetVTablePtr(This, CGM.Int8PtrTy);
1100 CharUnits VBaseOffsetOffset =
Timur Iskhodzhanov58776632013-11-05 15:54:58 +00001101 CGM.getItaniumVTableContext().getVirtualBaseOffsetOffset(ClassDecl,
1102 BaseClassDecl);
Reid Klecknerd8cbeec2013-05-29 18:02:47 +00001103
1104 llvm::Value *VBaseOffsetPtr =
1105 CGF.Builder.CreateConstGEP1_64(VTablePtr, VBaseOffsetOffset.getQuantity(),
1106 "vbase.offset.ptr");
1107 VBaseOffsetPtr = CGF.Builder.CreateBitCast(VBaseOffsetPtr,
1108 CGM.PtrDiffTy->getPointerTo());
1109
1110 llvm::Value *VBaseOffset =
1111 CGF.Builder.CreateLoad(VBaseOffsetPtr, "vbase.offset");
1112
1113 return VBaseOffset;
1114}
1115
Timur Iskhodzhanov40f2fa92013-08-04 17:30:04 +00001116void ItaniumCXXABI::EmitCXXConstructors(const CXXConstructorDecl *D) {
1117 // Just make sure we're in sync with TargetCXXABI.
1118 assert(CGM.getTarget().getCXXABI().hasConstructorVariants());
1119
Rafael Espindolac3cde362013-12-09 14:51:17 +00001120 // The constructor used for constructing this as a base class;
1121 // ignores virtual bases.
1122 CGM.EmitGlobal(GlobalDecl(D, Ctor_Base));
1123
Timur Iskhodzhanov40f2fa92013-08-04 17:30:04 +00001124 // The constructor used for constructing this as a complete class;
Nico Weber4c2ffb22015-01-07 05:25:05 +00001125 // constructs the virtual bases, then calls the base constructor.
Timur Iskhodzhanov40f2fa92013-08-04 17:30:04 +00001126 if (!D->getParent()->isAbstract()) {
1127 // We don't need to emit the complete ctor if the class is abstract.
1128 CGM.EmitGlobal(GlobalDecl(D, Ctor_Complete));
1129 }
Timur Iskhodzhanov40f2fa92013-08-04 17:30:04 +00001130}
1131
Rafael Espindola8d2a19b2014-09-08 16:01:27 +00001132void
1133ItaniumCXXABI::buildStructorSignature(const CXXMethodDecl *MD, StructorType T,
1134 SmallVectorImpl<CanQualType> &ArgTys) {
John McCall9bca9232010-09-02 10:25:57 +00001135 ASTContext &Context = getContext();
John McCall5d865c322010-08-31 07:33:07 +00001136
Rafael Espindola8d2a19b2014-09-08 16:01:27 +00001137 // All parameters are already in place except VTT, which goes after 'this'.
1138 // These are Clang types, so we don't need to worry about sret yet.
John McCall5d865c322010-08-31 07:33:07 +00001139
1140 // Check if we need to add a VTT parameter (which has type void **).
Rafael Espindola8d2a19b2014-09-08 16:01:27 +00001141 if (T == StructorType::Base && MD->getParent()->getNumVBases() != 0)
1142 ArgTys.insert(ArgTys.begin() + 1,
1143 Context.getPointerType(Context.VoidPtrTy));
John McCall5d865c322010-08-31 07:33:07 +00001144}
1145
Reid Klecknere7de47e2013-07-22 13:51:44 +00001146void ItaniumCXXABI::EmitCXXDestructors(const CXXDestructorDecl *D) {
Rafael Espindolac3cde362013-12-09 14:51:17 +00001147 // The destructor used for destructing this as a base class; ignores
1148 // virtual bases.
1149 CGM.EmitGlobal(GlobalDecl(D, Dtor_Base));
Reid Klecknere7de47e2013-07-22 13:51:44 +00001150
1151 // The destructor used for destructing this as a most-derived class;
1152 // call the base destructor and then destructs any virtual bases.
1153 CGM.EmitGlobal(GlobalDecl(D, Dtor_Complete));
1154
Rafael Espindolac3cde362013-12-09 14:51:17 +00001155 // The destructor in a virtual table is always a 'deleting'
1156 // destructor, which calls the complete destructor and then uses the
1157 // appropriate operator delete.
1158 if (D->isVirtual())
1159 CGM.EmitGlobal(GlobalDecl(D, Dtor_Deleting));
Reid Klecknere7de47e2013-07-22 13:51:44 +00001160}
1161
Reid Kleckner89077a12013-12-17 19:46:40 +00001162void ItaniumCXXABI::addImplicitStructorParams(CodeGenFunction &CGF,
1163 QualType &ResTy,
1164 FunctionArgList &Params) {
John McCall5d865c322010-08-31 07:33:07 +00001165 const CXXMethodDecl *MD = cast<CXXMethodDecl>(CGF.CurGD.getDecl());
Reid Kleckner89077a12013-12-17 19:46:40 +00001166 assert(isa<CXXConstructorDecl>(MD) || isa<CXXDestructorDecl>(MD));
John McCall5d865c322010-08-31 07:33:07 +00001167
1168 // Check if we need a VTT parameter as well.
Peter Collingbourne66f82e62013-06-28 20:45:28 +00001169 if (NeedsVTTParameter(CGF.CurGD)) {
John McCall9bca9232010-09-02 10:25:57 +00001170 ASTContext &Context = getContext();
John McCall5d865c322010-08-31 07:33:07 +00001171
1172 // FIXME: avoid the fake decl
1173 QualType T = Context.getPointerType(Context.VoidPtrTy);
1174 ImplicitParamDecl *VTTDecl
Craig Topper8a13c412014-05-21 05:09:00 +00001175 = ImplicitParamDecl::Create(Context, nullptr, MD->getLocation(),
John McCall5d865c322010-08-31 07:33:07 +00001176 &Context.Idents.get("vtt"), T);
Reid Kleckner89077a12013-12-17 19:46:40 +00001177 Params.insert(Params.begin() + 1, VTTDecl);
Reid Kleckner2af6d732013-12-13 00:09:59 +00001178 getStructorImplicitParamDecl(CGF) = VTTDecl;
John McCall5d865c322010-08-31 07:33:07 +00001179 }
1180}
1181
John McCall5d865c322010-08-31 07:33:07 +00001182void ItaniumCXXABI::EmitInstanceFunctionProlog(CodeGenFunction &CGF) {
1183 /// Initialize the 'this' slot.
1184 EmitThisParam(CGF);
1185
1186 /// Initialize the 'vtt' slot if needed.
Reid Kleckner2af6d732013-12-13 00:09:59 +00001187 if (getStructorImplicitParamDecl(CGF)) {
1188 getStructorImplicitParamValue(CGF) = CGF.Builder.CreateLoad(
1189 CGF.GetAddrOfLocalVar(getStructorImplicitParamDecl(CGF)), "vtt");
John McCall5d865c322010-08-31 07:33:07 +00001190 }
John McCall5d865c322010-08-31 07:33:07 +00001191
Stephen Lin9dc6eef2013-06-30 20:40:16 +00001192 /// If this is a function that the ABI specifies returns 'this', initialize
1193 /// the return slot to 'this' at the start of the function.
1194 ///
1195 /// Unlike the setting of return types, this is done within the ABI
1196 /// implementation instead of by clients of CGCXXABI because:
1197 /// 1) getThisValue is currently protected
1198 /// 2) in theory, an ABI could implement 'this' returns some other way;
1199 /// HasThisReturn only specifies a contract, not the implementation
John McCall5d865c322010-08-31 07:33:07 +00001200 if (HasThisReturn(CGF.CurGD))
Eli Friedman9fbeba02012-02-11 02:57:39 +00001201 CGF.Builder.CreateStore(getThisValue(CGF), CGF.ReturnValue);
John McCall5d865c322010-08-31 07:33:07 +00001202}
1203
Reid Kleckner89077a12013-12-17 19:46:40 +00001204unsigned ItaniumCXXABI::addImplicitConstructorArgs(
1205 CodeGenFunction &CGF, const CXXConstructorDecl *D, CXXCtorType Type,
1206 bool ForVirtualBase, bool Delegating, CallArgList &Args) {
1207 if (!NeedsVTTParameter(GlobalDecl(D, Type)))
1208 return 0;
Timur Iskhodzhanov57cbe5c2013-02-27 13:46:31 +00001209
Reid Kleckner89077a12013-12-17 19:46:40 +00001210 // Insert the implicit 'vtt' argument as the second argument.
1211 llvm::Value *VTT =
1212 CGF.GetVTTParameter(GlobalDecl(D, Type), ForVirtualBase, Delegating);
1213 QualType VTTTy = getContext().getPointerType(getContext().VoidPtrTy);
1214 Args.insert(Args.begin() + 1,
1215 CallArg(RValue::get(VTT), VTTTy, /*needscopy=*/false));
1216 return 1; // Added one arg.
Reid Kleckner6fe771a2013-12-13 00:53:54 +00001217}
1218
1219void ItaniumCXXABI::EmitDestructorCall(CodeGenFunction &CGF,
1220 const CXXDestructorDecl *DD,
1221 CXXDtorType Type, bool ForVirtualBase,
1222 bool Delegating, llvm::Value *This) {
1223 GlobalDecl GD(DD, Type);
1224 llvm::Value *VTT = CGF.GetVTTParameter(GD, ForVirtualBase, Delegating);
1225 QualType VTTTy = getContext().getPointerType(getContext().VoidPtrTy);
1226
Craig Topper8a13c412014-05-21 05:09:00 +00001227 llvm::Value *Callee = nullptr;
Reid Kleckner6fe771a2013-12-13 00:53:54 +00001228 if (getContext().getLangOpts().AppleKext)
1229 Callee = CGF.BuildAppleKextVirtualDestructorCall(DD, Type, DD->getParent());
1230
1231 if (!Callee)
Rafael Espindola1ac0ec82014-09-11 15:42:06 +00001232 Callee = CGM.getAddrOfCXXStructor(DD, getFromDtorType(Type));
Reid Kleckner6fe771a2013-12-13 00:53:54 +00001233
Alexey Samsonova5bf76b2014-08-25 20:17:35 +00001234 CGF.EmitCXXMemberOrOperatorCall(DD, Callee, ReturnValueSlot(), This, VTT,
1235 VTTTy, nullptr);
Timur Iskhodzhanov57cbe5c2013-02-27 13:46:31 +00001236}
1237
Timur Iskhodzhanov8b5987e2013-09-27 14:48:01 +00001238void ItaniumCXXABI::emitVTableDefinitions(CodeGenVTables &CGVT,
1239 const CXXRecordDecl *RD) {
1240 llvm::GlobalVariable *VTable = getAddrOfVTable(RD, CharUnits());
1241 if (VTable->hasInitializer())
1242 return;
1243
Timur Iskhodzhanov58776632013-11-05 15:54:58 +00001244 ItaniumVTableContext &VTContext = CGM.getItaniumVTableContext();
Timur Iskhodzhanov8b5987e2013-09-27 14:48:01 +00001245 const VTableLayout &VTLayout = VTContext.getVTableLayout(RD);
1246 llvm::GlobalVariable::LinkageTypes Linkage = CGM.getVTableLinkage(RD);
David Majnemerd905da42014-07-01 20:30:31 +00001247 llvm::Constant *RTTI =
1248 CGM.GetAddrOfRTTIDescriptor(CGM.getContext().getTagDeclType(RD));
Timur Iskhodzhanov8b5987e2013-09-27 14:48:01 +00001249
1250 // Create and set the initializer.
1251 llvm::Constant *Init = CGVT.CreateVTableInitializer(
1252 RD, VTLayout.vtable_component_begin(), VTLayout.getNumVTableComponents(),
David Majnemerd905da42014-07-01 20:30:31 +00001253 VTLayout.vtable_thunk_begin(), VTLayout.getNumVTableThunks(), RTTI);
Timur Iskhodzhanov8b5987e2013-09-27 14:48:01 +00001254 VTable->setInitializer(Init);
1255
1256 // Set the correct linkage.
1257 VTable->setLinkage(Linkage);
1258
1259 // Set the right visibility.
John McCall8f80a612014-02-08 00:41:16 +00001260 CGM.setGlobalVisibility(VTable, RD);
Timur Iskhodzhanov8b5987e2013-09-27 14:48:01 +00001261
Benjamin Kramer5d34a2b2014-09-10 12:50:59 +00001262 // Use pointer alignment for the vtable. Otherwise we would align them based
1263 // on the size of the initializer which doesn't make sense as only single
1264 // values are read.
1265 unsigned PAlign = CGM.getTarget().getPointerAlign(0);
1266 VTable->setAlignment(getContext().toCharUnitsFromBits(PAlign).getQuantity());
1267
Timur Iskhodzhanov8b5987e2013-09-27 14:48:01 +00001268 // If this is the magic class __cxxabiv1::__fundamental_type_info,
1269 // we will emit the typeinfo for the fundamental types. This is the
1270 // same behaviour as GCC.
1271 const DeclContext *DC = RD->getDeclContext();
1272 if (RD->getIdentifier() &&
1273 RD->getIdentifier()->isStr("__fundamental_type_info") &&
1274 isa<NamespaceDecl>(DC) && cast<NamespaceDecl>(DC)->getIdentifier() &&
1275 cast<NamespaceDecl>(DC)->getIdentifier()->isStr("__cxxabiv1") &&
1276 DC->getParent()->isTranslationUnit())
David Majnemere2cb8d12014-07-07 06:20:47 +00001277 EmitFundamentalRTTIDescriptors();
Timur Iskhodzhanov8b5987e2013-09-27 14:48:01 +00001278}
1279
1280llvm::Value *ItaniumCXXABI::getVTableAddressPointInStructor(
1281 CodeGenFunction &CGF, const CXXRecordDecl *VTableClass, BaseSubobject Base,
1282 const CXXRecordDecl *NearestVBase, bool &NeedsVirtualOffset) {
1283 bool NeedsVTTParam = CGM.getCXXABI().NeedsVTTParameter(CGF.CurGD);
1284 NeedsVirtualOffset = (NeedsVTTParam && NearestVBase);
1285
1286 llvm::Value *VTableAddressPoint;
1287 if (NeedsVTTParam && (Base.getBase()->getNumVBases() || NearestVBase)) {
1288 // Get the secondary vpointer index.
1289 uint64_t VirtualPointerIndex =
1290 CGM.getVTables().getSecondaryVirtualPointerIndex(VTableClass, Base);
1291
1292 /// Load the VTT.
1293 llvm::Value *VTT = CGF.LoadCXXVTT();
1294 if (VirtualPointerIndex)
1295 VTT = CGF.Builder.CreateConstInBoundsGEP1_64(VTT, VirtualPointerIndex);
1296
1297 // And load the address point from the VTT.
1298 VTableAddressPoint = CGF.Builder.CreateLoad(VTT);
1299 } else {
1300 llvm::Constant *VTable =
1301 CGM.getCXXABI().getAddrOfVTable(VTableClass, CharUnits());
Timur Iskhodzhanov58776632013-11-05 15:54:58 +00001302 uint64_t AddressPoint = CGM.getItaniumVTableContext()
1303 .getVTableLayout(VTableClass)
1304 .getAddressPoint(Base);
Timur Iskhodzhanov8b5987e2013-09-27 14:48:01 +00001305 VTableAddressPoint =
1306 CGF.Builder.CreateConstInBoundsGEP2_64(VTable, 0, AddressPoint);
1307 }
1308
1309 return VTableAddressPoint;
1310}
1311
1312llvm::Constant *ItaniumCXXABI::getVTableAddressPointForConstExpr(
1313 BaseSubobject Base, const CXXRecordDecl *VTableClass) {
1314 llvm::Constant *VTable = getAddrOfVTable(VTableClass, CharUnits());
1315
1316 // Find the appropriate vtable within the vtable group.
Timur Iskhodzhanov58776632013-11-05 15:54:58 +00001317 uint64_t AddressPoint = CGM.getItaniumVTableContext()
1318 .getVTableLayout(VTableClass)
1319 .getAddressPoint(Base);
Timur Iskhodzhanov8b5987e2013-09-27 14:48:01 +00001320 llvm::Value *Indices[] = {
1321 llvm::ConstantInt::get(CGM.Int64Ty, 0),
1322 llvm::ConstantInt::get(CGM.Int64Ty, AddressPoint)
1323 };
1324
1325 return llvm::ConstantExpr::getInBoundsGetElementPtr(VTable, Indices);
1326}
1327
1328llvm::GlobalVariable *ItaniumCXXABI::getAddrOfVTable(const CXXRecordDecl *RD,
1329 CharUnits VPtrOffset) {
1330 assert(VPtrOffset.isZero() && "Itanium ABI only supports zero vptr offsets");
1331
1332 llvm::GlobalVariable *&VTable = VTables[RD];
1333 if (VTable)
1334 return VTable;
1335
1336 // Queue up this v-table for possible deferred emission.
1337 CGM.addDeferredVTable(RD);
1338
1339 SmallString<256> OutName;
1340 llvm::raw_svector_ostream Out(OutName);
Timur Iskhodzhanov67455222013-10-03 06:26:13 +00001341 getMangleContext().mangleCXXVTable(RD, Out);
Timur Iskhodzhanov8b5987e2013-09-27 14:48:01 +00001342 Out.flush();
1343 StringRef Name = OutName.str();
1344
Timur Iskhodzhanov58776632013-11-05 15:54:58 +00001345 ItaniumVTableContext &VTContext = CGM.getItaniumVTableContext();
Timur Iskhodzhanov8b5987e2013-09-27 14:48:01 +00001346 llvm::ArrayType *ArrayType = llvm::ArrayType::get(
1347 CGM.Int8PtrTy, VTContext.getVTableLayout(RD).getNumVTableComponents());
1348
1349 VTable = CGM.CreateOrReplaceCXXRuntimeVariable(
1350 Name, ArrayType, llvm::GlobalValue::ExternalLinkage);
1351 VTable->setUnnamedAddr(true);
Hans Wennborgda24e9c2014-06-02 23:13:03 +00001352
1353 if (RD->hasAttr<DLLImportAttr>())
1354 VTable->setDLLStorageClass(llvm::GlobalValue::DLLImportStorageClass);
1355 else if (RD->hasAttr<DLLExportAttr>())
1356 VTable->setDLLStorageClass(llvm::GlobalValue::DLLExportStorageClass);
1357
Timur Iskhodzhanov8b5987e2013-09-27 14:48:01 +00001358 return VTable;
1359}
1360
Timur Iskhodzhanov88fd4392013-08-21 06:25:03 +00001361llvm::Value *ItaniumCXXABI::getVirtualFunctionPointer(CodeGenFunction &CGF,
1362 GlobalDecl GD,
1363 llvm::Value *This,
1364 llvm::Type *Ty) {
1365 GD = GD.getCanonicalDecl();
1366 Ty = Ty->getPointerTo()->getPointerTo();
1367 llvm::Value *VTable = CGF.GetVTablePtr(This, Ty);
1368
Timur Iskhodzhanov58776632013-11-05 15:54:58 +00001369 uint64_t VTableIndex = CGM.getItaniumVTableContext().getMethodVTableIndex(GD);
Timur Iskhodzhanov88fd4392013-08-21 06:25:03 +00001370 llvm::Value *VFuncPtr =
1371 CGF.Builder.CreateConstInBoundsGEP1_64(VTable, VTableIndex, "vfn");
1372 return CGF.Builder.CreateLoad(VFuncPtr);
1373}
1374
David Majnemer0c0b6d92014-10-31 20:09:12 +00001375llvm::Value *ItaniumCXXABI::EmitVirtualDestructorCall(
1376 CodeGenFunction &CGF, const CXXDestructorDecl *Dtor, CXXDtorType DtorType,
1377 llvm::Value *This, const CXXMemberCallExpr *CE) {
Alexey Samsonova5bf76b2014-08-25 20:17:35 +00001378 assert(CE == nullptr || CE->arg_begin() == CE->arg_end());
Timur Iskhodzhanovd6197112013-02-15 14:45:22 +00001379 assert(DtorType == Dtor_Deleting || DtorType == Dtor_Complete);
1380
Rafael Espindola8d2a19b2014-09-08 16:01:27 +00001381 const CGFunctionInfo *FInfo = &CGM.getTypes().arrangeCXXStructorDeclaration(
1382 Dtor, getFromDtorType(DtorType));
Timur Iskhodzhanovd6197112013-02-15 14:45:22 +00001383 llvm::Type *Ty = CGF.CGM.getTypes().GetFunctionType(*FInfo);
Timur Iskhodzhanov88fd4392013-08-21 06:25:03 +00001384 llvm::Value *Callee =
1385 getVirtualFunctionPointer(CGF, GlobalDecl(Dtor, DtorType), This, Ty);
Timur Iskhodzhanovd6197112013-02-15 14:45:22 +00001386
Alexey Samsonova5bf76b2014-08-25 20:17:35 +00001387 CGF.EmitCXXMemberOrOperatorCall(Dtor, Callee, ReturnValueSlot(), This,
1388 /*ImplicitParam=*/nullptr, QualType(), CE);
David Majnemer0c0b6d92014-10-31 20:09:12 +00001389 return nullptr;
Timur Iskhodzhanovd6197112013-02-15 14:45:22 +00001390}
1391
Timur Iskhodzhanov8b5987e2013-09-27 14:48:01 +00001392void ItaniumCXXABI::emitVirtualInheritanceTables(const CXXRecordDecl *RD) {
Reid Kleckner7810af02013-06-19 15:20:38 +00001393 CodeGenVTables &VTables = CGM.getVTables();
1394 llvm::GlobalVariable *VTT = VTables.GetAddrOfVTT(RD);
Timur Iskhodzhanov8b5987e2013-09-27 14:48:01 +00001395 VTables.EmitVTTDefinition(VTT, CGM.getVTableLinkage(RD), RD);
Reid Kleckner7810af02013-06-19 15:20:38 +00001396}
1397
Timur Iskhodzhanov02014322013-10-30 11:55:43 +00001398static llvm::Value *performTypeAdjustment(CodeGenFunction &CGF,
1399 llvm::Value *Ptr,
1400 int64_t NonVirtualAdjustment,
1401 int64_t VirtualAdjustment,
1402 bool IsReturnAdjustment) {
1403 if (!NonVirtualAdjustment && !VirtualAdjustment)
1404 return Ptr;
1405
1406 llvm::Type *Int8PtrTy = CGF.Int8PtrTy;
1407 llvm::Value *V = CGF.Builder.CreateBitCast(Ptr, Int8PtrTy);
1408
1409 if (NonVirtualAdjustment && !IsReturnAdjustment) {
1410 // Perform the non-virtual adjustment for a base-to-derived cast.
1411 V = CGF.Builder.CreateConstInBoundsGEP1_64(V, NonVirtualAdjustment);
1412 }
1413
1414 if (VirtualAdjustment) {
1415 llvm::Type *PtrDiffTy =
1416 CGF.ConvertType(CGF.getContext().getPointerDiffType());
1417
1418 // Perform the virtual adjustment.
1419 llvm::Value *VTablePtrPtr =
1420 CGF.Builder.CreateBitCast(V, Int8PtrTy->getPointerTo());
1421
1422 llvm::Value *VTablePtr = CGF.Builder.CreateLoad(VTablePtrPtr);
1423
1424 llvm::Value *OffsetPtr =
1425 CGF.Builder.CreateConstInBoundsGEP1_64(VTablePtr, VirtualAdjustment);
1426
1427 OffsetPtr = CGF.Builder.CreateBitCast(OffsetPtr, PtrDiffTy->getPointerTo());
1428
1429 // Load the adjustment offset from the vtable.
1430 llvm::Value *Offset = CGF.Builder.CreateLoad(OffsetPtr);
1431
1432 // Adjust our pointer.
1433 V = CGF.Builder.CreateInBoundsGEP(V, Offset);
1434 }
1435
1436 if (NonVirtualAdjustment && IsReturnAdjustment) {
1437 // Perform the non-virtual adjustment for a derived-to-base cast.
1438 V = CGF.Builder.CreateConstInBoundsGEP1_64(V, NonVirtualAdjustment);
1439 }
1440
1441 // Cast back to the original type.
1442 return CGF.Builder.CreateBitCast(V, Ptr->getType());
1443}
1444
1445llvm::Value *ItaniumCXXABI::performThisAdjustment(CodeGenFunction &CGF,
1446 llvm::Value *This,
1447 const ThisAdjustment &TA) {
Timur Iskhodzhanov053142a2013-11-06 06:24:31 +00001448 return performTypeAdjustment(CGF, This, TA.NonVirtual,
1449 TA.Virtual.Itanium.VCallOffsetOffset,
Timur Iskhodzhanov02014322013-10-30 11:55:43 +00001450 /*IsReturnAdjustment=*/false);
1451}
1452
1453llvm::Value *
1454ItaniumCXXABI::performReturnAdjustment(CodeGenFunction &CGF, llvm::Value *Ret,
1455 const ReturnAdjustment &RA) {
1456 return performTypeAdjustment(CGF, Ret, RA.NonVirtual,
1457 RA.Virtual.Itanium.VBaseOffsetOffset,
1458 /*IsReturnAdjustment=*/true);
1459}
1460
John McCall5d865c322010-08-31 07:33:07 +00001461void ARMCXXABI::EmitReturnFromThunk(CodeGenFunction &CGF,
1462 RValue RV, QualType ResultType) {
1463 if (!isa<CXXDestructorDecl>(CGF.CurGD.getDecl()))
1464 return ItaniumCXXABI::EmitReturnFromThunk(CGF, RV, ResultType);
1465
1466 // Destructor thunks in the ARM ABI have indeterminate results.
Chris Lattner2192fe52011-07-18 04:24:23 +00001467 llvm::Type *T =
John McCall5d865c322010-08-31 07:33:07 +00001468 cast<llvm::PointerType>(CGF.ReturnValue->getType())->getElementType();
1469 RValue Undef = RValue::get(llvm::UndefValue::get(T));
1470 return ItaniumCXXABI::EmitReturnFromThunk(CGF, Undef, ResultType);
1471}
John McCall8ed55a52010-09-02 09:58:18 +00001472
1473/************************** Array allocation cookies **************************/
1474
John McCallb91cd662012-05-01 05:23:51 +00001475CharUnits ItaniumCXXABI::getArrayCookieSizeImpl(QualType elementType) {
1476 // The array cookie is a size_t; pad that up to the element alignment.
1477 // The cookie is actually right-justified in that space.
1478 return std::max(CharUnits::fromQuantity(CGM.SizeSizeInBytes),
1479 CGM.getContext().getTypeAlignInChars(elementType));
John McCall8ed55a52010-09-02 09:58:18 +00001480}
1481
1482llvm::Value *ItaniumCXXABI::InitializeArrayCookie(CodeGenFunction &CGF,
1483 llvm::Value *NewPtr,
1484 llvm::Value *NumElements,
John McCall284c48f2011-01-27 09:37:56 +00001485 const CXXNewExpr *expr,
John McCall8ed55a52010-09-02 09:58:18 +00001486 QualType ElementType) {
John McCallb91cd662012-05-01 05:23:51 +00001487 assert(requiresArrayCookie(expr));
John McCall8ed55a52010-09-02 09:58:18 +00001488
Micah Villmowea2fea22012-10-25 15:39:14 +00001489 unsigned AS = NewPtr->getType()->getPointerAddressSpace();
John McCall8ed55a52010-09-02 09:58:18 +00001490
John McCall9bca9232010-09-02 10:25:57 +00001491 ASTContext &Ctx = getContext();
John McCall8ed55a52010-09-02 09:58:18 +00001492 QualType SizeTy = Ctx.getSizeType();
1493 CharUnits SizeSize = Ctx.getTypeSizeInChars(SizeTy);
1494
1495 // The size of the cookie.
1496 CharUnits CookieSize =
1497 std::max(SizeSize, Ctx.getTypeAlignInChars(ElementType));
John McCallb91cd662012-05-01 05:23:51 +00001498 assert(CookieSize == getArrayCookieSizeImpl(ElementType));
John McCall8ed55a52010-09-02 09:58:18 +00001499
1500 // Compute an offset to the cookie.
1501 llvm::Value *CookiePtr = NewPtr;
1502 CharUnits CookieOffset = CookieSize - SizeSize;
1503 if (!CookieOffset.isZero())
1504 CookiePtr = CGF.Builder.CreateConstInBoundsGEP1_64(CookiePtr,
1505 CookieOffset.getQuantity());
1506
1507 // Write the number of elements into the appropriate slot.
Kostya Serebryany4ee69042014-08-26 02:29:59 +00001508 llvm::Type *NumElementsTy = CGF.ConvertType(SizeTy)->getPointerTo(AS);
1509 llvm::Value *NumElementsPtr =
1510 CGF.Builder.CreateBitCast(CookiePtr, NumElementsTy);
1511 llvm::Instruction *SI = CGF.Builder.CreateStore(NumElements, NumElementsPtr);
Alexey Samsonovedf99a92014-11-07 22:29:38 +00001512 if (CGM.getLangOpts().Sanitize.has(SanitizerKind::Address) && AS == 0 &&
Kostya Serebryany4ee69042014-08-26 02:29:59 +00001513 expr->getOperatorNew()->isReplaceableGlobalAllocationFunction()) {
Kostya Serebryany4a9187a2014-08-29 01:01:32 +00001514 // The store to the CookiePtr does not need to be instrumented.
Kostya Serebryany4ee69042014-08-26 02:29:59 +00001515 CGM.getSanitizerMetadata()->disableSanitizerForInstruction(SI);
1516 llvm::FunctionType *FTy =
1517 llvm::FunctionType::get(CGM.VoidTy, NumElementsTy, false);
1518 llvm::Constant *F =
1519 CGM.CreateRuntimeFunction(FTy, "__asan_poison_cxx_array_cookie");
1520 CGF.Builder.CreateCall(F, NumElementsPtr);
1521 }
John McCall8ed55a52010-09-02 09:58:18 +00001522
1523 // Finally, compute a pointer to the actual data buffer by skipping
1524 // over the cookie completely.
1525 return CGF.Builder.CreateConstInBoundsGEP1_64(NewPtr,
1526 CookieSize.getQuantity());
1527}
1528
John McCallb91cd662012-05-01 05:23:51 +00001529llvm::Value *ItaniumCXXABI::readArrayCookieImpl(CodeGenFunction &CGF,
1530 llvm::Value *allocPtr,
1531 CharUnits cookieSize) {
1532 // The element size is right-justified in the cookie.
1533 llvm::Value *numElementsPtr = allocPtr;
1534 CharUnits numElementsOffset =
1535 cookieSize - CharUnits::fromQuantity(CGF.SizeSizeInBytes);
1536 if (!numElementsOffset.isZero())
1537 numElementsPtr =
1538 CGF.Builder.CreateConstInBoundsGEP1_64(numElementsPtr,
1539 numElementsOffset.getQuantity());
John McCall8ed55a52010-09-02 09:58:18 +00001540
Micah Villmowea2fea22012-10-25 15:39:14 +00001541 unsigned AS = allocPtr->getType()->getPointerAddressSpace();
John McCallb91cd662012-05-01 05:23:51 +00001542 numElementsPtr =
1543 CGF.Builder.CreateBitCast(numElementsPtr, CGF.SizeTy->getPointerTo(AS));
Alexey Samsonovedf99a92014-11-07 22:29:38 +00001544 if (!CGM.getLangOpts().Sanitize.has(SanitizerKind::Address) || AS != 0)
Kostya Serebryany4a9187a2014-08-29 01:01:32 +00001545 return CGF.Builder.CreateLoad(numElementsPtr);
1546 // In asan mode emit a function call instead of a regular load and let the
1547 // run-time deal with it: if the shadow is properly poisoned return the
1548 // cookie, otherwise return 0 to avoid an infinite loop calling DTORs.
1549 // We can't simply ignore this load using nosanitize metadata because
1550 // the metadata may be lost.
1551 llvm::FunctionType *FTy =
1552 llvm::FunctionType::get(CGF.SizeTy, CGF.SizeTy->getPointerTo(0), false);
1553 llvm::Constant *F =
1554 CGM.CreateRuntimeFunction(FTy, "__asan_load_cxx_array_cookie");
1555 return CGF.Builder.CreateCall(F, numElementsPtr);
John McCall8ed55a52010-09-02 09:58:18 +00001556}
1557
John McCallb91cd662012-05-01 05:23:51 +00001558CharUnits ARMCXXABI::getArrayCookieSizeImpl(QualType elementType) {
John McCallc19c7062013-01-25 23:36:19 +00001559 // ARM says that the cookie is always:
John McCall8ed55a52010-09-02 09:58:18 +00001560 // struct array_cookie {
1561 // std::size_t element_size; // element_size != 0
1562 // std::size_t element_count;
1563 // };
John McCallc19c7062013-01-25 23:36:19 +00001564 // But the base ABI doesn't give anything an alignment greater than
1565 // 8, so we can dismiss this as typical ABI-author blindness to
1566 // actual language complexity and round up to the element alignment.
1567 return std::max(CharUnits::fromQuantity(2 * CGM.SizeSizeInBytes),
1568 CGM.getContext().getTypeAlignInChars(elementType));
John McCall8ed55a52010-09-02 09:58:18 +00001569}
1570
1571llvm::Value *ARMCXXABI::InitializeArrayCookie(CodeGenFunction &CGF,
John McCallc19c7062013-01-25 23:36:19 +00001572 llvm::Value *newPtr,
1573 llvm::Value *numElements,
John McCall284c48f2011-01-27 09:37:56 +00001574 const CXXNewExpr *expr,
John McCallc19c7062013-01-25 23:36:19 +00001575 QualType elementType) {
John McCallb91cd662012-05-01 05:23:51 +00001576 assert(requiresArrayCookie(expr));
John McCall8ed55a52010-09-02 09:58:18 +00001577
John McCallc19c7062013-01-25 23:36:19 +00001578 // NewPtr is a char*, but we generalize to arbitrary addrspaces.
1579 unsigned AS = newPtr->getType()->getPointerAddressSpace();
John McCall8ed55a52010-09-02 09:58:18 +00001580
1581 // The cookie is always at the start of the buffer.
John McCallc19c7062013-01-25 23:36:19 +00001582 llvm::Value *cookie = newPtr;
John McCall8ed55a52010-09-02 09:58:18 +00001583
1584 // The first element is the element size.
John McCallc19c7062013-01-25 23:36:19 +00001585 cookie = CGF.Builder.CreateBitCast(cookie, CGF.SizeTy->getPointerTo(AS));
1586 llvm::Value *elementSize = llvm::ConstantInt::get(CGF.SizeTy,
1587 getContext().getTypeSizeInChars(elementType).getQuantity());
1588 CGF.Builder.CreateStore(elementSize, cookie);
John McCall8ed55a52010-09-02 09:58:18 +00001589
1590 // The second element is the element count.
John McCallc19c7062013-01-25 23:36:19 +00001591 cookie = CGF.Builder.CreateConstInBoundsGEP1_32(cookie, 1);
1592 CGF.Builder.CreateStore(numElements, cookie);
John McCall8ed55a52010-09-02 09:58:18 +00001593
1594 // Finally, compute a pointer to the actual data buffer by skipping
1595 // over the cookie completely.
John McCallc19c7062013-01-25 23:36:19 +00001596 CharUnits cookieSize = ARMCXXABI::getArrayCookieSizeImpl(elementType);
1597 return CGF.Builder.CreateConstInBoundsGEP1_64(newPtr,
1598 cookieSize.getQuantity());
John McCall8ed55a52010-09-02 09:58:18 +00001599}
1600
John McCallb91cd662012-05-01 05:23:51 +00001601llvm::Value *ARMCXXABI::readArrayCookieImpl(CodeGenFunction &CGF,
1602 llvm::Value *allocPtr,
1603 CharUnits cookieSize) {
1604 // The number of elements is at offset sizeof(size_t) relative to
1605 // the allocated pointer.
1606 llvm::Value *numElementsPtr
1607 = CGF.Builder.CreateConstInBoundsGEP1_64(allocPtr, CGF.SizeSizeInBytes);
John McCall8ed55a52010-09-02 09:58:18 +00001608
Micah Villmowea2fea22012-10-25 15:39:14 +00001609 unsigned AS = allocPtr->getType()->getPointerAddressSpace();
John McCallb91cd662012-05-01 05:23:51 +00001610 numElementsPtr =
1611 CGF.Builder.CreateBitCast(numElementsPtr, CGF.SizeTy->getPointerTo(AS));
1612 return CGF.Builder.CreateLoad(numElementsPtr);
John McCall8ed55a52010-09-02 09:58:18 +00001613}
1614
John McCall68ff0372010-09-08 01:44:27 +00001615/*********************** Static local initialization **************************/
1616
1617static llvm::Constant *getGuardAcquireFn(CodeGenModule &CGM,
Chris Lattnera5f58b02011-07-09 17:41:47 +00001618 llvm::PointerType *GuardPtrTy) {
John McCall68ff0372010-09-08 01:44:27 +00001619 // int __cxa_guard_acquire(__guard *guard_object);
Chris Lattner2192fe52011-07-18 04:24:23 +00001620 llvm::FunctionType *FTy =
John McCall68ff0372010-09-08 01:44:27 +00001621 llvm::FunctionType::get(CGM.getTypes().ConvertType(CGM.getContext().IntTy),
Jay Foad5709f7c2011-07-29 13:56:53 +00001622 GuardPtrTy, /*isVarArg=*/false);
Nick Lewyckyadcec492012-02-13 23:45:02 +00001623 return CGM.CreateRuntimeFunction(FTy, "__cxa_guard_acquire",
Bill Wendling8594fcb2013-01-31 00:30:05 +00001624 llvm::AttributeSet::get(CGM.getLLVMContext(),
1625 llvm::AttributeSet::FunctionIndex,
Bill Wendling207f0532012-12-20 19:27:06 +00001626 llvm::Attribute::NoUnwind));
John McCall68ff0372010-09-08 01:44:27 +00001627}
1628
1629static llvm::Constant *getGuardReleaseFn(CodeGenModule &CGM,
Chris Lattnera5f58b02011-07-09 17:41:47 +00001630 llvm::PointerType *GuardPtrTy) {
John McCall68ff0372010-09-08 01:44:27 +00001631 // void __cxa_guard_release(__guard *guard_object);
Chris Lattner2192fe52011-07-18 04:24:23 +00001632 llvm::FunctionType *FTy =
Chris Lattnerece04092012-02-07 00:39:47 +00001633 llvm::FunctionType::get(CGM.VoidTy, GuardPtrTy, /*isVarArg=*/false);
Nick Lewyckyadcec492012-02-13 23:45:02 +00001634 return CGM.CreateRuntimeFunction(FTy, "__cxa_guard_release",
Bill Wendling8594fcb2013-01-31 00:30:05 +00001635 llvm::AttributeSet::get(CGM.getLLVMContext(),
1636 llvm::AttributeSet::FunctionIndex,
Bill Wendling207f0532012-12-20 19:27:06 +00001637 llvm::Attribute::NoUnwind));
John McCall68ff0372010-09-08 01:44:27 +00001638}
1639
1640static llvm::Constant *getGuardAbortFn(CodeGenModule &CGM,
Chris Lattnera5f58b02011-07-09 17:41:47 +00001641 llvm::PointerType *GuardPtrTy) {
John McCall68ff0372010-09-08 01:44:27 +00001642 // void __cxa_guard_abort(__guard *guard_object);
Chris Lattner2192fe52011-07-18 04:24:23 +00001643 llvm::FunctionType *FTy =
Chris Lattnerece04092012-02-07 00:39:47 +00001644 llvm::FunctionType::get(CGM.VoidTy, GuardPtrTy, /*isVarArg=*/false);
Nick Lewyckyadcec492012-02-13 23:45:02 +00001645 return CGM.CreateRuntimeFunction(FTy, "__cxa_guard_abort",
Bill Wendling8594fcb2013-01-31 00:30:05 +00001646 llvm::AttributeSet::get(CGM.getLLVMContext(),
1647 llvm::AttributeSet::FunctionIndex,
Bill Wendling207f0532012-12-20 19:27:06 +00001648 llvm::Attribute::NoUnwind));
John McCall68ff0372010-09-08 01:44:27 +00001649}
1650
1651namespace {
1652 struct CallGuardAbort : EHScopeStack::Cleanup {
1653 llvm::GlobalVariable *Guard;
Chandler Carruth84537952012-03-30 19:44:53 +00001654 CallGuardAbort(llvm::GlobalVariable *Guard) : Guard(Guard) {}
John McCall68ff0372010-09-08 01:44:27 +00001655
Craig Topper4f12f102014-03-12 06:41:41 +00001656 void Emit(CodeGenFunction &CGF, Flags flags) override {
John McCall882987f2013-02-28 19:01:20 +00001657 CGF.EmitNounwindRuntimeCall(getGuardAbortFn(CGF.CGM, Guard->getType()),
1658 Guard);
John McCall68ff0372010-09-08 01:44:27 +00001659 }
1660 };
1661}
1662
1663/// The ARM code here follows the Itanium code closely enough that we
1664/// just special-case it at particular places.
John McCallcdf7ef52010-11-06 09:44:32 +00001665void ItaniumCXXABI::EmitGuardedInit(CodeGenFunction &CGF,
1666 const VarDecl &D,
John McCallb88a5662012-03-30 21:00:39 +00001667 llvm::GlobalVariable *var,
1668 bool shouldPerformInit) {
John McCall68ff0372010-09-08 01:44:27 +00001669 CGBuilderTy &Builder = CGF.Builder;
John McCallcdf7ef52010-11-06 09:44:32 +00001670
Richard Smithdbf74ba2013-04-14 23:01:42 +00001671 // We only need to use thread-safe statics for local non-TLS variables;
John McCallcdf7ef52010-11-06 09:44:32 +00001672 // global initialization is always single-threaded.
Richard Smithdbf74ba2013-04-14 23:01:42 +00001673 bool threadsafe = getContext().getLangOpts().ThreadsafeStatics &&
1674 D.isLocalVarDecl() && !D.getTLSKind();
Anders Carlssonc5d3ba12011-04-27 04:37:08 +00001675
Anders Carlssonc5d3ba12011-04-27 04:37:08 +00001676 // If we have a global variable with internal linkage and thread-safe statics
1677 // are disabled, we can just let the guard variable be of type i8.
John McCallb88a5662012-03-30 21:00:39 +00001678 bool useInt8GuardVariable = !threadsafe && var->hasInternalLinkage();
1679
1680 llvm::IntegerType *guardTy;
John McCall5aa52592011-06-17 07:33:57 +00001681 if (useInt8GuardVariable) {
John McCallb88a5662012-03-30 21:00:39 +00001682 guardTy = CGF.Int8Ty;
John McCall5aa52592011-06-17 07:33:57 +00001683 } else {
Tim Northover9bb857a2013-01-31 12:13:10 +00001684 // Guard variables are 64 bits in the generic ABI and size width on ARM
1685 // (i.e. 32-bit on AArch32, 64-bit on AArch64).
Mark Seabornedf0d382013-07-24 16:25:13 +00001686 guardTy = (UseARMGuardVarABI ? CGF.SizeTy : CGF.Int64Ty);
Anders Carlssonc5d3ba12011-04-27 04:37:08 +00001687 }
John McCallb88a5662012-03-30 21:00:39 +00001688 llvm::PointerType *guardPtrTy = guardTy->getPointerTo();
John McCall68ff0372010-09-08 01:44:27 +00001689
John McCallb88a5662012-03-30 21:00:39 +00001690 // Create the guard variable if we don't already have it (as we
1691 // might if we're double-emitting this function body).
1692 llvm::GlobalVariable *guard = CGM.getStaticLocalDeclGuardAddress(&D);
1693 if (!guard) {
1694 // Mangle the name for the guard.
1695 SmallString<256> guardName;
1696 {
1697 llvm::raw_svector_ostream out(guardName);
Reid Klecknerd8110b62013-09-10 20:14:30 +00001698 getMangleContext().mangleStaticGuardVariable(&D, out);
John McCallb88a5662012-03-30 21:00:39 +00001699 out.flush();
1700 }
John McCall8e7cb6d2010-11-02 21:04:24 +00001701
John McCallb88a5662012-03-30 21:00:39 +00001702 // Create the guard variable with a zero-initializer.
1703 // Just absorb linkage and visibility from the guarded variable.
1704 guard = new llvm::GlobalVariable(CGM.getModule(), guardTy,
1705 false, var->getLinkage(),
1706 llvm::ConstantInt::get(guardTy, 0),
1707 guardName.str());
1708 guard->setVisibility(var->getVisibility());
Richard Smithdbf74ba2013-04-14 23:01:42 +00001709 // If the variable is thread-local, so is its guard variable.
1710 guard->setThreadLocalMode(var->getThreadLocalMode());
John McCallb88a5662012-03-30 21:00:39 +00001711
Rafael Espindola2ae4b632014-09-19 19:43:18 +00001712 // The ABI says: It is suggested that it be emitted in the same COMDAT group
1713 // as the associated data object
Rafael Espindola0d4fb982015-01-12 22:13:53 +00001714 llvm::Comdat *C = var->getComdat();
1715 if (!D.isLocalVarDecl() && C) {
Rafael Espindola2ae4b632014-09-19 19:43:18 +00001716 guard->setComdat(C);
Rafael Espindola2ae4b632014-09-19 19:43:18 +00001717 CGF.CurFn->setComdat(C);
Rafael Espindola0d4fb982015-01-12 22:13:53 +00001718 } else if (CGM.supportsCOMDAT() && guard->isWeakForLinker()) {
1719 guard->setComdat(CGM.getModule().getOrInsertComdat(guard->getName()));
Rafael Espindola2ae4b632014-09-19 19:43:18 +00001720 }
1721
John McCallb88a5662012-03-30 21:00:39 +00001722 CGM.setStaticLocalDeclGuardAddress(&D, guard);
1723 }
John McCall87590e62012-03-30 07:09:50 +00001724
John McCall68ff0372010-09-08 01:44:27 +00001725 // Test whether the variable has completed initialization.
Justin Bogner0cbb6d82014-04-23 01:50:10 +00001726 //
John McCall68ff0372010-09-08 01:44:27 +00001727 // Itanium C++ ABI 3.3.2:
1728 // The following is pseudo-code showing how these functions can be used:
1729 // if (obj_guard.first_byte == 0) {
1730 // if ( __cxa_guard_acquire (&obj_guard) ) {
1731 // try {
1732 // ... initialize the object ...;
1733 // } catch (...) {
1734 // __cxa_guard_abort (&obj_guard);
1735 // throw;
1736 // }
1737 // ... queue object destructor with __cxa_atexit() ...;
1738 // __cxa_guard_release (&obj_guard);
1739 // }
1740 // }
Tim Northovera2ee4332014-03-29 15:09:45 +00001741
Justin Bogner0cbb6d82014-04-23 01:50:10 +00001742 // Load the first byte of the guard variable.
1743 llvm::LoadInst *LI =
John McCallb88a5662012-03-30 21:00:39 +00001744 Builder.CreateLoad(Builder.CreateBitCast(guard, CGM.Int8PtrTy));
Justin Bogner0cbb6d82014-04-23 01:50:10 +00001745 LI->setAlignment(1);
John McCall68ff0372010-09-08 01:44:27 +00001746
Justin Bogner0cbb6d82014-04-23 01:50:10 +00001747 // Itanium ABI:
1748 // An implementation supporting thread-safety on multiprocessor
1749 // systems must also guarantee that references to the initialized
1750 // object do not occur before the load of the initialization flag.
1751 //
1752 // In LLVM, we do this by marking the load Acquire.
1753 if (threadsafe)
1754 LI->setAtomic(llvm::Acquire);
Eli Friedman84d28122011-09-13 22:21:56 +00001755
Justin Bogner0cbb6d82014-04-23 01:50:10 +00001756 // For ARM, we should only check the first bit, rather than the entire byte:
1757 //
1758 // ARM C++ ABI 3.2.3.1:
1759 // To support the potential use of initialization guard variables
1760 // as semaphores that are the target of ARM SWP and LDREX/STREX
1761 // synchronizing instructions we define a static initialization
1762 // guard variable to be a 4-byte aligned, 4-byte word with the
1763 // following inline access protocol.
1764 // #define INITIALIZED 1
1765 // if ((obj_guard & INITIALIZED) != INITIALIZED) {
1766 // if (__cxa_guard_acquire(&obj_guard))
1767 // ...
1768 // }
1769 //
1770 // and similarly for ARM64:
1771 //
1772 // ARM64 C++ ABI 3.2.2:
1773 // This ABI instead only specifies the value bit 0 of the static guard
1774 // variable; all other bits are platform defined. Bit 0 shall be 0 when the
1775 // variable is not initialized and 1 when it is.
1776 llvm::Value *V =
1777 (UseARMGuardVarABI && !useInt8GuardVariable)
1778 ? Builder.CreateAnd(LI, llvm::ConstantInt::get(CGM.Int8Ty, 1))
1779 : LI;
1780 llvm::Value *isInitialized = Builder.CreateIsNull(V, "guard.uninitialized");
John McCall68ff0372010-09-08 01:44:27 +00001781
1782 llvm::BasicBlock *InitCheckBlock = CGF.createBasicBlock("init.check");
1783 llvm::BasicBlock *EndBlock = CGF.createBasicBlock("init.end");
1784
1785 // Check if the first byte of the guard variable is zero.
John McCallb88a5662012-03-30 21:00:39 +00001786 Builder.CreateCondBr(isInitialized, InitCheckBlock, EndBlock);
John McCall68ff0372010-09-08 01:44:27 +00001787
1788 CGF.EmitBlock(InitCheckBlock);
1789
1790 // Variables used when coping with thread-safe statics and exceptions.
John McCall5aa52592011-06-17 07:33:57 +00001791 if (threadsafe) {
John McCall68ff0372010-09-08 01:44:27 +00001792 // Call __cxa_guard_acquire.
1793 llvm::Value *V
John McCall882987f2013-02-28 19:01:20 +00001794 = CGF.EmitNounwindRuntimeCall(getGuardAcquireFn(CGM, guardPtrTy), guard);
John McCall68ff0372010-09-08 01:44:27 +00001795
1796 llvm::BasicBlock *InitBlock = CGF.createBasicBlock("init");
1797
1798 Builder.CreateCondBr(Builder.CreateIsNotNull(V, "tobool"),
1799 InitBlock, EndBlock);
1800
1801 // Call __cxa_guard_abort along the exceptional edge.
John McCallb88a5662012-03-30 21:00:39 +00001802 CGF.EHStack.pushCleanup<CallGuardAbort>(EHCleanup, guard);
John McCall68ff0372010-09-08 01:44:27 +00001803
1804 CGF.EmitBlock(InitBlock);
1805 }
1806
1807 // Emit the initializer and add a global destructor if appropriate.
John McCallb88a5662012-03-30 21:00:39 +00001808 CGF.EmitCXXGlobalVarDeclInit(D, var, shouldPerformInit);
John McCall68ff0372010-09-08 01:44:27 +00001809
John McCall5aa52592011-06-17 07:33:57 +00001810 if (threadsafe) {
John McCall68ff0372010-09-08 01:44:27 +00001811 // Pop the guard-abort cleanup if we pushed one.
1812 CGF.PopCleanupBlock();
1813
1814 // Call __cxa_guard_release. This cannot throw.
John McCall882987f2013-02-28 19:01:20 +00001815 CGF.EmitNounwindRuntimeCall(getGuardReleaseFn(CGM, guardPtrTy), guard);
John McCall68ff0372010-09-08 01:44:27 +00001816 } else {
John McCallb88a5662012-03-30 21:00:39 +00001817 Builder.CreateStore(llvm::ConstantInt::get(guardTy, 1), guard);
John McCall68ff0372010-09-08 01:44:27 +00001818 }
1819
1820 CGF.EmitBlock(EndBlock);
1821}
John McCallc84ed6a2012-05-01 06:13:13 +00001822
1823/// Register a global destructor using __cxa_atexit.
1824static void emitGlobalDtorWithCXAAtExit(CodeGenFunction &CGF,
1825 llvm::Constant *dtor,
Richard Smithdbf74ba2013-04-14 23:01:42 +00001826 llvm::Constant *addr,
1827 bool TLS) {
Bill Wendling95cae882013-05-02 19:18:03 +00001828 const char *Name = "__cxa_atexit";
1829 if (TLS) {
1830 const llvm::Triple &T = CGF.getTarget().getTriple();
1831 Name = T.isMacOSX() ? "_tlv_atexit" : "__cxa_thread_atexit";
1832 }
Richard Smithdbf74ba2013-04-14 23:01:42 +00001833
John McCallc84ed6a2012-05-01 06:13:13 +00001834 // We're assuming that the destructor function is something we can
1835 // reasonably call with the default CC. Go ahead and cast it to the
1836 // right prototype.
1837 llvm::Type *dtorTy =
1838 llvm::FunctionType::get(CGF.VoidTy, CGF.Int8PtrTy, false)->getPointerTo();
1839
1840 // extern "C" int __cxa_atexit(void (*f)(void *), void *p, void *d);
1841 llvm::Type *paramTys[] = { dtorTy, CGF.Int8PtrTy, CGF.Int8PtrTy };
1842 llvm::FunctionType *atexitTy =
1843 llvm::FunctionType::get(CGF.IntTy, paramTys, false);
1844
1845 // Fetch the actual function.
Richard Smithdbf74ba2013-04-14 23:01:42 +00001846 llvm::Constant *atexit = CGF.CGM.CreateRuntimeFunction(atexitTy, Name);
John McCallc84ed6a2012-05-01 06:13:13 +00001847 if (llvm::Function *fn = dyn_cast<llvm::Function>(atexit))
1848 fn->setDoesNotThrow();
1849
1850 // Create a variable that binds the atexit to this shared object.
1851 llvm::Constant *handle =
1852 CGF.CGM.CreateRuntimeVariable(CGF.Int8Ty, "__dso_handle");
1853
1854 llvm::Value *args[] = {
1855 llvm::ConstantExpr::getBitCast(dtor, dtorTy),
1856 llvm::ConstantExpr::getBitCast(addr, CGF.Int8PtrTy),
1857 handle
1858 };
John McCall882987f2013-02-28 19:01:20 +00001859 CGF.EmitNounwindRuntimeCall(atexit, args);
John McCallc84ed6a2012-05-01 06:13:13 +00001860}
1861
1862/// Register a global destructor as best as we know how.
1863void ItaniumCXXABI::registerGlobalDtor(CodeGenFunction &CGF,
Richard Smithdbf74ba2013-04-14 23:01:42 +00001864 const VarDecl &D,
John McCallc84ed6a2012-05-01 06:13:13 +00001865 llvm::Constant *dtor,
1866 llvm::Constant *addr) {
1867 // Use __cxa_atexit if available.
Richard Smithdbf74ba2013-04-14 23:01:42 +00001868 if (CGM.getCodeGenOpts().CXAAtExit)
1869 return emitGlobalDtorWithCXAAtExit(CGF, dtor, addr, D.getTLSKind());
1870
1871 if (D.getTLSKind())
1872 CGM.ErrorUnsupported(&D, "non-trivial TLS destruction");
John McCallc84ed6a2012-05-01 06:13:13 +00001873
1874 // In Apple kexts, we want to add a global destructor entry.
1875 // FIXME: shouldn't this be guarded by some variable?
Richard Smith9c6890a2012-11-01 22:30:59 +00001876 if (CGM.getLangOpts().AppleKext) {
John McCallc84ed6a2012-05-01 06:13:13 +00001877 // Generate a global destructor entry.
1878 return CGM.AddCXXDtorEntry(dtor, addr);
1879 }
1880
David Blaikieebe87e12013-08-27 23:57:18 +00001881 CGF.registerGlobalDtorWithAtExit(D, dtor, addr);
John McCallc84ed6a2012-05-01 06:13:13 +00001882}
Richard Smith2fd1d7a2013-04-19 16:42:07 +00001883
David Majnemer9b21c332014-07-11 20:28:10 +00001884static bool isThreadWrapperReplaceable(const VarDecl *VD,
1885 CodeGen::CodeGenModule &CGM) {
1886 assert(!VD->isStaticLocal() && "static local VarDecls don't need wrappers!");
1887 // OS X prefers to have references to thread local variables to go through
1888 // the thread wrapper instead of directly referencing the backing variable.
1889 return VD->getTLSKind() == VarDecl::TLS_Dynamic &&
1890 CGM.getTarget().getTriple().isMacOSX();
1891}
1892
Richard Smith2fd1d7a2013-04-19 16:42:07 +00001893/// Get the appropriate linkage for the wrapper function. This is essentially
David Majnemer4632e1e2014-06-27 16:56:27 +00001894/// the weak form of the variable's linkage; every translation unit which needs
Richard Smith2fd1d7a2013-04-19 16:42:07 +00001895/// the wrapper emits a copy, and we want the linker to merge them.
David Majnemer35ab3282014-06-11 04:08:55 +00001896static llvm::GlobalValue::LinkageTypes
1897getThreadLocalWrapperLinkage(const VarDecl *VD, CodeGen::CodeGenModule &CGM) {
1898 llvm::GlobalValue::LinkageTypes VarLinkage =
1899 CGM.getLLVMLinkageVarDefinition(VD, /*isConstant=*/false);
1900
Richard Smith2fd1d7a2013-04-19 16:42:07 +00001901 // For internal linkage variables, we don't need an external or weak wrapper.
1902 if (llvm::GlobalValue::isLocalLinkage(VarLinkage))
1903 return VarLinkage;
David Majnemer35ab3282014-06-11 04:08:55 +00001904
David Majnemer9b21c332014-07-11 20:28:10 +00001905 // If the thread wrapper is replaceable, give it appropriate linkage.
1906 if (isThreadWrapperReplaceable(VD, CGM)) {
1907 if (llvm::GlobalVariable::isLinkOnceLinkage(VarLinkage) ||
1908 llvm::GlobalVariable::isWeakODRLinkage(VarLinkage))
1909 return llvm::GlobalVariable::WeakAnyLinkage;
1910 return VarLinkage;
1911 }
Richard Smith2fd1d7a2013-04-19 16:42:07 +00001912 return llvm::GlobalValue::WeakODRLinkage;
1913}
1914
1915llvm::Function *
1916ItaniumCXXABI::getOrCreateThreadLocalWrapper(const VarDecl *VD,
Alexander Musmanf94c3182014-09-26 06:28:25 +00001917 llvm::Value *Val) {
Richard Smith2fd1d7a2013-04-19 16:42:07 +00001918 // Mangle the name for the thread_local wrapper function.
1919 SmallString<256> WrapperName;
1920 {
1921 llvm::raw_svector_ostream Out(WrapperName);
1922 getMangleContext().mangleItaniumThreadLocalWrapper(VD, Out);
1923 Out.flush();
1924 }
1925
Alexander Musmanf94c3182014-09-26 06:28:25 +00001926 if (llvm::Value *V = CGM.getModule().getNamedValue(WrapperName))
Richard Smith2fd1d7a2013-04-19 16:42:07 +00001927 return cast<llvm::Function>(V);
1928
Alexander Musmanf94c3182014-09-26 06:28:25 +00001929 llvm::Type *RetTy = Val->getType();
Richard Smith2fd1d7a2013-04-19 16:42:07 +00001930 if (VD->getType()->isReferenceType())
1931 RetTy = RetTy->getPointerElementType();
1932
1933 llvm::FunctionType *FnTy = llvm::FunctionType::get(RetTy, false);
David Majnemer35ab3282014-06-11 04:08:55 +00001934 llvm::Function *Wrapper =
1935 llvm::Function::Create(FnTy, getThreadLocalWrapperLinkage(VD, CGM),
1936 WrapperName.str(), &CGM.getModule());
Richard Smith2fd1d7a2013-04-19 16:42:07 +00001937 // Always resolve references to the wrapper at link time.
David Majnemer9b21c332014-07-11 20:28:10 +00001938 if (!Wrapper->hasLocalLinkage() && !isThreadWrapperReplaceable(VD, CGM))
Duncan P. N. Exon Smith4434d362014-05-07 22:36:11 +00001939 Wrapper->setVisibility(llvm::GlobalValue::HiddenVisibility);
Richard Smith2fd1d7a2013-04-19 16:42:07 +00001940 return Wrapper;
1941}
1942
1943void ItaniumCXXABI::EmitThreadLocalInitFuncs(
David Majnemerb3341ea2014-10-05 05:05:40 +00001944 CodeGenModule &CGM,
1945 ArrayRef<std::pair<const VarDecl *, llvm::GlobalVariable *>>
1946 CXXThreadLocals, ArrayRef<llvm::Function *> CXXThreadLocalInits,
1947 ArrayRef<llvm::GlobalVariable *> CXXThreadLocalInitVars) {
1948 llvm::Function *InitFunc = nullptr;
1949 if (!CXXThreadLocalInits.empty()) {
1950 // Generate a guarded initialization function.
1951 llvm::FunctionType *FTy =
1952 llvm::FunctionType::get(CGM.VoidTy, /*isVarArg=*/false);
1953 InitFunc = CGM.CreateGlobalInitOrDestructFunction(FTy, "__tls_init",
Alexey Samsonov1444bb92014-10-17 00:20:19 +00001954 SourceLocation(),
David Majnemerb3341ea2014-10-05 05:05:40 +00001955 /*TLS=*/true);
1956 llvm::GlobalVariable *Guard = new llvm::GlobalVariable(
1957 CGM.getModule(), CGM.Int8Ty, /*isConstant=*/false,
1958 llvm::GlobalVariable::InternalLinkage,
1959 llvm::ConstantInt::get(CGM.Int8Ty, 0), "__tls_guard");
1960 Guard->setThreadLocal(true);
1961 CodeGenFunction(CGM)
1962 .GenerateCXXGlobalInitFunc(InitFunc, CXXThreadLocalInits, Guard);
1963 }
1964 for (unsigned I = 0, N = CXXThreadLocals.size(); I != N; ++I) {
1965 const VarDecl *VD = CXXThreadLocals[I].first;
1966 llvm::GlobalVariable *Var = CXXThreadLocals[I].second;
Richard Smith2fd1d7a2013-04-19 16:42:07 +00001967
David Majnemer9b21c332014-07-11 20:28:10 +00001968 // Some targets require that all access to thread local variables go through
1969 // the thread wrapper. This means that we cannot attempt to create a thread
1970 // wrapper or a thread helper.
1971 if (isThreadWrapperReplaceable(VD, CGM) && !VD->hasDefinition())
1972 continue;
1973
Richard Smith2fd1d7a2013-04-19 16:42:07 +00001974 // Mangle the name for the thread_local initialization function.
1975 SmallString<256> InitFnName;
1976 {
1977 llvm::raw_svector_ostream Out(InitFnName);
1978 getMangleContext().mangleItaniumThreadLocalInit(VD, Out);
1979 Out.flush();
1980 }
1981
1982 // If we have a definition for the variable, emit the initialization
1983 // function as an alias to the global Init function (if any). Otherwise,
1984 // produce a declaration of the initialization function.
Craig Topper8a13c412014-05-21 05:09:00 +00001985 llvm::GlobalValue *Init = nullptr;
Richard Smith2fd1d7a2013-04-19 16:42:07 +00001986 bool InitIsInitFunc = false;
1987 if (VD->hasDefinition()) {
1988 InitIsInitFunc = true;
1989 if (InitFunc)
Rafael Espindola234405b2014-05-17 21:30:14 +00001990 Init = llvm::GlobalAlias::create(Var->getLinkage(), InitFnName.str(),
1991 InitFunc);
Richard Smith2fd1d7a2013-04-19 16:42:07 +00001992 } else {
1993 // Emit a weak global function referring to the initialization function.
1994 // This function will not exist if the TU defining the thread_local
1995 // variable in question does not need any dynamic initialization for
1996 // its thread_local variables.
1997 llvm::FunctionType *FnTy = llvm::FunctionType::get(CGM.VoidTy, false);
1998 Init = llvm::Function::Create(
1999 FnTy, llvm::GlobalVariable::ExternalWeakLinkage, InitFnName.str(),
2000 &CGM.getModule());
2001 }
2002
2003 if (Init)
2004 Init->setVisibility(Var->getVisibility());
2005
2006 llvm::Function *Wrapper = getOrCreateThreadLocalWrapper(VD, Var);
2007 llvm::LLVMContext &Context = CGM.getModule().getContext();
2008 llvm::BasicBlock *Entry = llvm::BasicBlock::Create(Context, "", Wrapper);
2009 CGBuilderTy Builder(Entry);
2010 if (InitIsInitFunc) {
2011 if (Init)
2012 Builder.CreateCall(Init);
2013 } else {
2014 // Don't know whether we have an init function. Call it if it exists.
2015 llvm::Value *Have = Builder.CreateIsNotNull(Init);
2016 llvm::BasicBlock *InitBB = llvm::BasicBlock::Create(Context, "", Wrapper);
2017 llvm::BasicBlock *ExitBB = llvm::BasicBlock::Create(Context, "", Wrapper);
2018 Builder.CreateCondBr(Have, InitBB, ExitBB);
2019
2020 Builder.SetInsertPoint(InitBB);
2021 Builder.CreateCall(Init);
2022 Builder.CreateBr(ExitBB);
2023
2024 Builder.SetInsertPoint(ExitBB);
2025 }
2026
2027 // For a reference, the result of the wrapper function is a pointer to
2028 // the referenced object.
2029 llvm::Value *Val = Var;
2030 if (VD->getType()->isReferenceType()) {
2031 llvm::LoadInst *LI = Builder.CreateLoad(Val);
2032 LI->setAlignment(CGM.getContext().getDeclAlign(VD).getQuantity());
2033 Val = LI;
2034 }
Alexander Musmanf94c3182014-09-26 06:28:25 +00002035 if (Val->getType() != Wrapper->getReturnType())
2036 Val = Builder.CreatePointerBitCastOrAddrSpaceCast(
2037 Val, Wrapper->getReturnType(), "");
Richard Smith2fd1d7a2013-04-19 16:42:07 +00002038 Builder.CreateRet(Val);
2039 }
2040}
2041
Richard Smith0f383742014-03-26 22:48:22 +00002042LValue ItaniumCXXABI::EmitThreadLocalVarDeclLValue(CodeGenFunction &CGF,
2043 const VarDecl *VD,
2044 QualType LValType) {
Richard Smith2fd1d7a2013-04-19 16:42:07 +00002045 QualType T = VD->getType();
2046 llvm::Type *Ty = CGF.getTypes().ConvertTypeForMem(T);
2047 llvm::Value *Val = CGF.CGM.GetAddrOfGlobalVar(VD, Ty);
Alexander Musmanf94c3182014-09-26 06:28:25 +00002048 llvm::Function *Wrapper = getOrCreateThreadLocalWrapper(VD, Val);
Richard Smith2fd1d7a2013-04-19 16:42:07 +00002049
2050 Val = CGF.Builder.CreateCall(Wrapper);
2051
2052 LValue LV;
2053 if (VD->getType()->isReferenceType())
Richard Smith0f383742014-03-26 22:48:22 +00002054 LV = CGF.MakeNaturalAlignAddrLValue(Val, LValType);
Richard Smith2fd1d7a2013-04-19 16:42:07 +00002055 else
Richard Smith0f383742014-03-26 22:48:22 +00002056 LV = CGF.MakeAddrLValue(Val, LValType, CGF.getContext().getDeclAlign(VD));
Richard Smith2fd1d7a2013-04-19 16:42:07 +00002057 // FIXME: need setObjCGCLValueClass?
2058 return LV;
2059}
Peter Collingbourne66f82e62013-06-28 20:45:28 +00002060
2061/// Return whether the given global decl needs a VTT parameter, which it does
2062/// if it's a base constructor or destructor with virtual bases.
2063bool ItaniumCXXABI::NeedsVTTParameter(GlobalDecl GD) {
2064 const CXXMethodDecl *MD = cast<CXXMethodDecl>(GD.getDecl());
2065
2066 // We don't have any virtual bases, just return early.
2067 if (!MD->getParent()->getNumVBases())
2068 return false;
2069
2070 // Check if we have a base constructor.
2071 if (isa<CXXConstructorDecl>(MD) && GD.getCtorType() == Ctor_Base)
2072 return true;
2073
2074 // Check if we have a base destructor.
2075 if (isa<CXXDestructorDecl>(MD) && GD.getDtorType() == Dtor_Base)
2076 return true;
2077
2078 return false;
2079}
David Majnemere2cb8d12014-07-07 06:20:47 +00002080
2081namespace {
2082class ItaniumRTTIBuilder {
2083 CodeGenModule &CGM; // Per-module state.
2084 llvm::LLVMContext &VMContext;
2085 const ItaniumCXXABI &CXXABI; // Per-module state.
2086
2087 /// Fields - The fields of the RTTI descriptor currently being built.
2088 SmallVector<llvm::Constant *, 16> Fields;
2089
2090 /// GetAddrOfTypeName - Returns the mangled type name of the given type.
2091 llvm::GlobalVariable *
2092 GetAddrOfTypeName(QualType Ty, llvm::GlobalVariable::LinkageTypes Linkage);
2093
2094 /// GetAddrOfExternalRTTIDescriptor - Returns the constant for the RTTI
2095 /// descriptor of the given type.
2096 llvm::Constant *GetAddrOfExternalRTTIDescriptor(QualType Ty);
2097
2098 /// BuildVTablePointer - Build the vtable pointer for the given type.
2099 void BuildVTablePointer(const Type *Ty);
2100
2101 /// BuildSIClassTypeInfo - Build an abi::__si_class_type_info, used for single
2102 /// inheritance, according to the Itanium C++ ABI, 2.9.5p6b.
2103 void BuildSIClassTypeInfo(const CXXRecordDecl *RD);
2104
2105 /// BuildVMIClassTypeInfo - Build an abi::__vmi_class_type_info, used for
2106 /// classes with bases that do not satisfy the abi::__si_class_type_info
2107 /// constraints, according ti the Itanium C++ ABI, 2.9.5p5c.
2108 void BuildVMIClassTypeInfo(const CXXRecordDecl *RD);
2109
2110 /// BuildPointerTypeInfo - Build an abi::__pointer_type_info struct, used
2111 /// for pointer types.
2112 void BuildPointerTypeInfo(QualType PointeeTy);
2113
2114 /// BuildObjCObjectTypeInfo - Build the appropriate kind of
2115 /// type_info for an object type.
2116 void BuildObjCObjectTypeInfo(const ObjCObjectType *Ty);
2117
2118 /// BuildPointerToMemberTypeInfo - Build an abi::__pointer_to_member_type_info
2119 /// struct, used for member pointer types.
2120 void BuildPointerToMemberTypeInfo(const MemberPointerType *Ty);
2121
2122public:
2123 ItaniumRTTIBuilder(const ItaniumCXXABI &ABI)
2124 : CGM(ABI.CGM), VMContext(CGM.getModule().getContext()), CXXABI(ABI) {}
2125
2126 // Pointer type info flags.
2127 enum {
2128 /// PTI_Const - Type has const qualifier.
2129 PTI_Const = 0x1,
2130
2131 /// PTI_Volatile - Type has volatile qualifier.
2132 PTI_Volatile = 0x2,
2133
2134 /// PTI_Restrict - Type has restrict qualifier.
2135 PTI_Restrict = 0x4,
2136
2137 /// PTI_Incomplete - Type is incomplete.
2138 PTI_Incomplete = 0x8,
2139
2140 /// PTI_ContainingClassIncomplete - Containing class is incomplete.
2141 /// (in pointer to member).
2142 PTI_ContainingClassIncomplete = 0x10
2143 };
2144
2145 // VMI type info flags.
2146 enum {
2147 /// VMI_NonDiamondRepeat - Class has non-diamond repeated inheritance.
2148 VMI_NonDiamondRepeat = 0x1,
2149
2150 /// VMI_DiamondShaped - Class is diamond shaped.
2151 VMI_DiamondShaped = 0x2
2152 };
2153
2154 // Base class type info flags.
2155 enum {
2156 /// BCTI_Virtual - Base class is virtual.
2157 BCTI_Virtual = 0x1,
2158
2159 /// BCTI_Public - Base class is public.
2160 BCTI_Public = 0x2
2161 };
2162
2163 /// BuildTypeInfo - Build the RTTI type info struct for the given type.
2164 ///
2165 /// \param Force - true to force the creation of this RTTI value
2166 llvm::Constant *BuildTypeInfo(QualType Ty, bool Force = false);
2167};
2168}
2169
2170llvm::GlobalVariable *ItaniumRTTIBuilder::GetAddrOfTypeName(
2171 QualType Ty, llvm::GlobalVariable::LinkageTypes Linkage) {
2172 SmallString<256> OutName;
2173 llvm::raw_svector_ostream Out(OutName);
2174 CGM.getCXXABI().getMangleContext().mangleCXXRTTIName(Ty, Out);
2175 Out.flush();
2176 StringRef Name = OutName.str();
2177
2178 // We know that the mangled name of the type starts at index 4 of the
2179 // mangled name of the typename, so we can just index into it in order to
2180 // get the mangled name of the type.
2181 llvm::Constant *Init = llvm::ConstantDataArray::getString(VMContext,
2182 Name.substr(4));
2183
2184 llvm::GlobalVariable *GV =
2185 CGM.CreateOrReplaceCXXRuntimeVariable(Name, Init->getType(), Linkage);
2186
2187 GV->setInitializer(Init);
2188
2189 return GV;
2190}
2191
2192llvm::Constant *
2193ItaniumRTTIBuilder::GetAddrOfExternalRTTIDescriptor(QualType Ty) {
2194 // Mangle the RTTI name.
2195 SmallString<256> OutName;
2196 llvm::raw_svector_ostream Out(OutName);
2197 CGM.getCXXABI().getMangleContext().mangleCXXRTTI(Ty, Out);
2198 Out.flush();
2199 StringRef Name = OutName.str();
2200
2201 // Look for an existing global.
2202 llvm::GlobalVariable *GV = CGM.getModule().getNamedGlobal(Name);
2203
2204 if (!GV) {
2205 // Create a new global variable.
2206 GV = new llvm::GlobalVariable(CGM.getModule(), CGM.Int8PtrTy,
2207 /*Constant=*/true,
2208 llvm::GlobalValue::ExternalLinkage, nullptr,
2209 Name);
David Majnemer1fb1a042014-11-07 07:26:38 +00002210 if (const RecordType *RecordTy = dyn_cast<RecordType>(Ty)) {
2211 const CXXRecordDecl *RD = cast<CXXRecordDecl>(RecordTy->getDecl());
2212 if (RD->hasAttr<DLLImportAttr>())
2213 GV->setDLLStorageClass(llvm::GlobalVariable::DLLImportStorageClass);
2214 }
David Majnemere2cb8d12014-07-07 06:20:47 +00002215 }
2216
2217 return llvm::ConstantExpr::getBitCast(GV, CGM.Int8PtrTy);
2218}
2219
2220/// TypeInfoIsInStandardLibrary - Given a builtin type, returns whether the type
2221/// info for that type is defined in the standard library.
2222static bool TypeInfoIsInStandardLibrary(const BuiltinType *Ty) {
2223 // Itanium C++ ABI 2.9.2:
2224 // Basic type information (e.g. for "int", "bool", etc.) will be kept in
2225 // the run-time support library. Specifically, the run-time support
2226 // library should contain type_info objects for the types X, X* and
2227 // X const*, for every X in: void, std::nullptr_t, bool, wchar_t, char,
2228 // unsigned char, signed char, short, unsigned short, int, unsigned int,
2229 // long, unsigned long, long long, unsigned long long, float, double,
2230 // long double, char16_t, char32_t, and the IEEE 754r decimal and
2231 // half-precision floating point types.
2232 switch (Ty->getKind()) {
2233 case BuiltinType::Void:
2234 case BuiltinType::NullPtr:
2235 case BuiltinType::Bool:
2236 case BuiltinType::WChar_S:
2237 case BuiltinType::WChar_U:
2238 case BuiltinType::Char_U:
2239 case BuiltinType::Char_S:
2240 case BuiltinType::UChar:
2241 case BuiltinType::SChar:
2242 case BuiltinType::Short:
2243 case BuiltinType::UShort:
2244 case BuiltinType::Int:
2245 case BuiltinType::UInt:
2246 case BuiltinType::Long:
2247 case BuiltinType::ULong:
2248 case BuiltinType::LongLong:
2249 case BuiltinType::ULongLong:
2250 case BuiltinType::Half:
2251 case BuiltinType::Float:
2252 case BuiltinType::Double:
2253 case BuiltinType::LongDouble:
2254 case BuiltinType::Char16:
2255 case BuiltinType::Char32:
2256 case BuiltinType::Int128:
2257 case BuiltinType::UInt128:
2258 case BuiltinType::OCLImage1d:
2259 case BuiltinType::OCLImage1dArray:
2260 case BuiltinType::OCLImage1dBuffer:
2261 case BuiltinType::OCLImage2d:
2262 case BuiltinType::OCLImage2dArray:
2263 case BuiltinType::OCLImage3d:
2264 case BuiltinType::OCLSampler:
2265 case BuiltinType::OCLEvent:
2266 return true;
2267
2268 case BuiltinType::Dependent:
2269#define BUILTIN_TYPE(Id, SingletonId)
2270#define PLACEHOLDER_TYPE(Id, SingletonId) \
2271 case BuiltinType::Id:
2272#include "clang/AST/BuiltinTypes.def"
2273 llvm_unreachable("asking for RRTI for a placeholder type!");
2274
2275 case BuiltinType::ObjCId:
2276 case BuiltinType::ObjCClass:
2277 case BuiltinType::ObjCSel:
2278 llvm_unreachable("FIXME: Objective-C types are unsupported!");
2279 }
2280
2281 llvm_unreachable("Invalid BuiltinType Kind!");
2282}
2283
2284static bool TypeInfoIsInStandardLibrary(const PointerType *PointerTy) {
2285 QualType PointeeTy = PointerTy->getPointeeType();
2286 const BuiltinType *BuiltinTy = dyn_cast<BuiltinType>(PointeeTy);
2287 if (!BuiltinTy)
2288 return false;
2289
2290 // Check the qualifiers.
2291 Qualifiers Quals = PointeeTy.getQualifiers();
2292 Quals.removeConst();
2293
2294 if (!Quals.empty())
2295 return false;
2296
2297 return TypeInfoIsInStandardLibrary(BuiltinTy);
2298}
2299
2300/// IsStandardLibraryRTTIDescriptor - Returns whether the type
2301/// information for the given type exists in the standard library.
2302static bool IsStandardLibraryRTTIDescriptor(QualType Ty) {
2303 // Type info for builtin types is defined in the standard library.
2304 if (const BuiltinType *BuiltinTy = dyn_cast<BuiltinType>(Ty))
2305 return TypeInfoIsInStandardLibrary(BuiltinTy);
2306
2307 // Type info for some pointer types to builtin types is defined in the
2308 // standard library.
2309 if (const PointerType *PointerTy = dyn_cast<PointerType>(Ty))
2310 return TypeInfoIsInStandardLibrary(PointerTy);
2311
2312 return false;
2313}
2314
2315/// ShouldUseExternalRTTIDescriptor - Returns whether the type information for
2316/// the given type exists somewhere else, and that we should not emit the type
2317/// information in this translation unit. Assumes that it is not a
2318/// standard-library type.
2319static bool ShouldUseExternalRTTIDescriptor(CodeGenModule &CGM,
2320 QualType Ty) {
2321 ASTContext &Context = CGM.getContext();
2322
2323 // If RTTI is disabled, assume it might be disabled in the
2324 // translation unit that defines any potential key function, too.
2325 if (!Context.getLangOpts().RTTI) return false;
2326
2327 if (const RecordType *RecordTy = dyn_cast<RecordType>(Ty)) {
2328 const CXXRecordDecl *RD = cast<CXXRecordDecl>(RecordTy->getDecl());
2329 if (!RD->hasDefinition())
2330 return false;
2331
2332 if (!RD->isDynamicClass())
2333 return false;
2334
2335 // FIXME: this may need to be reconsidered if the key function
2336 // changes.
David Majnemer1fb1a042014-11-07 07:26:38 +00002337 if (CGM.getVTables().isVTableExternal(RD))
2338 return true;
2339
2340 if (RD->hasAttr<DLLImportAttr>())
2341 return true;
David Majnemere2cb8d12014-07-07 06:20:47 +00002342 }
2343
2344 return false;
2345}
2346
2347/// IsIncompleteClassType - Returns whether the given record type is incomplete.
2348static bool IsIncompleteClassType(const RecordType *RecordTy) {
2349 return !RecordTy->getDecl()->isCompleteDefinition();
2350}
2351
2352/// ContainsIncompleteClassType - Returns whether the given type contains an
2353/// incomplete class type. This is true if
2354///
2355/// * The given type is an incomplete class type.
2356/// * The given type is a pointer type whose pointee type contains an
2357/// incomplete class type.
2358/// * The given type is a member pointer type whose class is an incomplete
2359/// class type.
2360/// * The given type is a member pointer type whoise pointee type contains an
2361/// incomplete class type.
2362/// is an indirect or direct pointer to an incomplete class type.
2363static bool ContainsIncompleteClassType(QualType Ty) {
2364 if (const RecordType *RecordTy = dyn_cast<RecordType>(Ty)) {
2365 if (IsIncompleteClassType(RecordTy))
2366 return true;
2367 }
2368
2369 if (const PointerType *PointerTy = dyn_cast<PointerType>(Ty))
2370 return ContainsIncompleteClassType(PointerTy->getPointeeType());
2371
2372 if (const MemberPointerType *MemberPointerTy =
2373 dyn_cast<MemberPointerType>(Ty)) {
2374 // Check if the class type is incomplete.
2375 const RecordType *ClassType = cast<RecordType>(MemberPointerTy->getClass());
2376 if (IsIncompleteClassType(ClassType))
2377 return true;
2378
2379 return ContainsIncompleteClassType(MemberPointerTy->getPointeeType());
2380 }
2381
2382 return false;
2383}
2384
2385// CanUseSingleInheritance - Return whether the given record decl has a "single,
2386// public, non-virtual base at offset zero (i.e. the derived class is dynamic
2387// iff the base is)", according to Itanium C++ ABI, 2.95p6b.
2388static bool CanUseSingleInheritance(const CXXRecordDecl *RD) {
2389 // Check the number of bases.
2390 if (RD->getNumBases() != 1)
2391 return false;
2392
2393 // Get the base.
2394 CXXRecordDecl::base_class_const_iterator Base = RD->bases_begin();
2395
2396 // Check that the base is not virtual.
2397 if (Base->isVirtual())
2398 return false;
2399
2400 // Check that the base is public.
2401 if (Base->getAccessSpecifier() != AS_public)
2402 return false;
2403
2404 // Check that the class is dynamic iff the base is.
2405 const CXXRecordDecl *BaseDecl =
2406 cast<CXXRecordDecl>(Base->getType()->getAs<RecordType>()->getDecl());
2407 if (!BaseDecl->isEmpty() &&
2408 BaseDecl->isDynamicClass() != RD->isDynamicClass())
2409 return false;
2410
2411 return true;
2412}
2413
2414void ItaniumRTTIBuilder::BuildVTablePointer(const Type *Ty) {
2415 // abi::__class_type_info.
2416 static const char * const ClassTypeInfo =
2417 "_ZTVN10__cxxabiv117__class_type_infoE";
2418 // abi::__si_class_type_info.
2419 static const char * const SIClassTypeInfo =
2420 "_ZTVN10__cxxabiv120__si_class_type_infoE";
2421 // abi::__vmi_class_type_info.
2422 static const char * const VMIClassTypeInfo =
2423 "_ZTVN10__cxxabiv121__vmi_class_type_infoE";
2424
2425 const char *VTableName = nullptr;
2426
2427 switch (Ty->getTypeClass()) {
2428#define TYPE(Class, Base)
2429#define ABSTRACT_TYPE(Class, Base)
2430#define NON_CANONICAL_UNLESS_DEPENDENT_TYPE(Class, Base) case Type::Class:
2431#define NON_CANONICAL_TYPE(Class, Base) case Type::Class:
2432#define DEPENDENT_TYPE(Class, Base) case Type::Class:
2433#include "clang/AST/TypeNodes.def"
2434 llvm_unreachable("Non-canonical and dependent types shouldn't get here");
2435
2436 case Type::LValueReference:
2437 case Type::RValueReference:
2438 llvm_unreachable("References shouldn't get here");
2439
2440 case Type::Auto:
2441 llvm_unreachable("Undeduced auto type shouldn't get here");
2442
2443 case Type::Builtin:
2444 // GCC treats vector and complex types as fundamental types.
2445 case Type::Vector:
2446 case Type::ExtVector:
2447 case Type::Complex:
2448 case Type::Atomic:
2449 // FIXME: GCC treats block pointers as fundamental types?!
2450 case Type::BlockPointer:
2451 // abi::__fundamental_type_info.
2452 VTableName = "_ZTVN10__cxxabiv123__fundamental_type_infoE";
2453 break;
2454
2455 case Type::ConstantArray:
2456 case Type::IncompleteArray:
2457 case Type::VariableArray:
2458 // abi::__array_type_info.
2459 VTableName = "_ZTVN10__cxxabiv117__array_type_infoE";
2460 break;
2461
2462 case Type::FunctionNoProto:
2463 case Type::FunctionProto:
2464 // abi::__function_type_info.
2465 VTableName = "_ZTVN10__cxxabiv120__function_type_infoE";
2466 break;
2467
2468 case Type::Enum:
2469 // abi::__enum_type_info.
2470 VTableName = "_ZTVN10__cxxabiv116__enum_type_infoE";
2471 break;
2472
2473 case Type::Record: {
2474 const CXXRecordDecl *RD =
2475 cast<CXXRecordDecl>(cast<RecordType>(Ty)->getDecl());
2476
2477 if (!RD->hasDefinition() || !RD->getNumBases()) {
2478 VTableName = ClassTypeInfo;
2479 } else if (CanUseSingleInheritance(RD)) {
2480 VTableName = SIClassTypeInfo;
2481 } else {
2482 VTableName = VMIClassTypeInfo;
2483 }
2484
2485 break;
2486 }
2487
2488 case Type::ObjCObject:
2489 // Ignore protocol qualifiers.
2490 Ty = cast<ObjCObjectType>(Ty)->getBaseType().getTypePtr();
2491
2492 // Handle id and Class.
2493 if (isa<BuiltinType>(Ty)) {
2494 VTableName = ClassTypeInfo;
2495 break;
2496 }
2497
2498 assert(isa<ObjCInterfaceType>(Ty));
2499 // Fall through.
2500
2501 case Type::ObjCInterface:
2502 if (cast<ObjCInterfaceType>(Ty)->getDecl()->getSuperClass()) {
2503 VTableName = SIClassTypeInfo;
2504 } else {
2505 VTableName = ClassTypeInfo;
2506 }
2507 break;
2508
2509 case Type::ObjCObjectPointer:
2510 case Type::Pointer:
2511 // abi::__pointer_type_info.
2512 VTableName = "_ZTVN10__cxxabiv119__pointer_type_infoE";
2513 break;
2514
2515 case Type::MemberPointer:
2516 // abi::__pointer_to_member_type_info.
2517 VTableName = "_ZTVN10__cxxabiv129__pointer_to_member_type_infoE";
2518 break;
2519 }
2520
2521 llvm::Constant *VTable =
2522 CGM.getModule().getOrInsertGlobal(VTableName, CGM.Int8PtrTy);
2523
2524 llvm::Type *PtrDiffTy =
2525 CGM.getTypes().ConvertType(CGM.getContext().getPointerDiffType());
2526
2527 // The vtable address point is 2.
2528 llvm::Constant *Two = llvm::ConstantInt::get(PtrDiffTy, 2);
2529 VTable = llvm::ConstantExpr::getInBoundsGetElementPtr(VTable, Two);
2530 VTable = llvm::ConstantExpr::getBitCast(VTable, CGM.Int8PtrTy);
2531
2532 Fields.push_back(VTable);
2533}
2534
2535/// \brief Return the linkage that the type info and type info name constants
2536/// should have for the given type.
2537static llvm::GlobalVariable::LinkageTypes getTypeInfoLinkage(CodeGenModule &CGM,
2538 QualType Ty) {
2539 // Itanium C++ ABI 2.9.5p7:
2540 // In addition, it and all of the intermediate abi::__pointer_type_info
2541 // structs in the chain down to the abi::__class_type_info for the
2542 // incomplete class type must be prevented from resolving to the
2543 // corresponding type_info structs for the complete class type, possibly
2544 // by making them local static objects. Finally, a dummy class RTTI is
2545 // generated for the incomplete type that will not resolve to the final
2546 // complete class RTTI (because the latter need not exist), possibly by
2547 // making it a local static object.
2548 if (ContainsIncompleteClassType(Ty))
2549 return llvm::GlobalValue::InternalLinkage;
2550
2551 switch (Ty->getLinkage()) {
2552 case NoLinkage:
2553 case InternalLinkage:
2554 case UniqueExternalLinkage:
2555 return llvm::GlobalValue::InternalLinkage;
2556
2557 case VisibleNoLinkage:
2558 case ExternalLinkage:
2559 if (!CGM.getLangOpts().RTTI) {
2560 // RTTI is not enabled, which means that this type info struct is going
2561 // to be used for exception handling. Give it linkonce_odr linkage.
2562 return llvm::GlobalValue::LinkOnceODRLinkage;
2563 }
2564
2565 if (const RecordType *Record = dyn_cast<RecordType>(Ty)) {
2566 const CXXRecordDecl *RD = cast<CXXRecordDecl>(Record->getDecl());
2567 if (RD->hasAttr<WeakAttr>())
2568 return llvm::GlobalValue::WeakODRLinkage;
2569 if (RD->isDynamicClass())
2570 return CGM.getVTableLinkage(RD);
2571 }
2572
2573 return llvm::GlobalValue::LinkOnceODRLinkage;
2574 }
2575
2576 llvm_unreachable("Invalid linkage!");
2577}
2578
2579llvm::Constant *ItaniumRTTIBuilder::BuildTypeInfo(QualType Ty, bool Force) {
2580 // We want to operate on the canonical type.
2581 Ty = CGM.getContext().getCanonicalType(Ty);
2582
2583 // Check if we've already emitted an RTTI descriptor for this type.
2584 SmallString<256> OutName;
2585 llvm::raw_svector_ostream Out(OutName);
2586 CGM.getCXXABI().getMangleContext().mangleCXXRTTI(Ty, Out);
2587 Out.flush();
2588 StringRef Name = OutName.str();
2589
2590 llvm::GlobalVariable *OldGV = CGM.getModule().getNamedGlobal(Name);
2591 if (OldGV && !OldGV->isDeclaration()) {
2592 assert(!OldGV->hasAvailableExternallyLinkage() &&
2593 "available_externally typeinfos not yet implemented");
2594
2595 return llvm::ConstantExpr::getBitCast(OldGV, CGM.Int8PtrTy);
2596 }
2597
2598 // Check if there is already an external RTTI descriptor for this type.
2599 bool IsStdLib = IsStandardLibraryRTTIDescriptor(Ty);
2600 if (!Force && (IsStdLib || ShouldUseExternalRTTIDescriptor(CGM, Ty)))
2601 return GetAddrOfExternalRTTIDescriptor(Ty);
2602
2603 // Emit the standard library with external linkage.
2604 llvm::GlobalVariable::LinkageTypes Linkage;
2605 if (IsStdLib)
2606 Linkage = llvm::GlobalValue::ExternalLinkage;
2607 else
2608 Linkage = getTypeInfoLinkage(CGM, Ty);
2609
2610 // Add the vtable pointer.
2611 BuildVTablePointer(cast<Type>(Ty));
2612
2613 // And the name.
2614 llvm::GlobalVariable *TypeName = GetAddrOfTypeName(Ty, Linkage);
2615 llvm::Constant *TypeNameField;
2616
2617 // If we're supposed to demote the visibility, be sure to set a flag
2618 // to use a string comparison for type_info comparisons.
2619 ItaniumCXXABI::RTTIUniquenessKind RTTIUniqueness =
2620 CXXABI.classifyRTTIUniqueness(Ty, Linkage);
2621 if (RTTIUniqueness != ItaniumCXXABI::RUK_Unique) {
2622 // The flag is the sign bit, which on ARM64 is defined to be clear
2623 // for global pointers. This is very ARM64-specific.
2624 TypeNameField = llvm::ConstantExpr::getPtrToInt(TypeName, CGM.Int64Ty);
2625 llvm::Constant *flag =
2626 llvm::ConstantInt::get(CGM.Int64Ty, ((uint64_t)1) << 63);
2627 TypeNameField = llvm::ConstantExpr::getAdd(TypeNameField, flag);
2628 TypeNameField =
2629 llvm::ConstantExpr::getIntToPtr(TypeNameField, CGM.Int8PtrTy);
2630 } else {
2631 TypeNameField = llvm::ConstantExpr::getBitCast(TypeName, CGM.Int8PtrTy);
2632 }
2633 Fields.push_back(TypeNameField);
2634
2635 switch (Ty->getTypeClass()) {
2636#define TYPE(Class, Base)
2637#define ABSTRACT_TYPE(Class, Base)
2638#define NON_CANONICAL_UNLESS_DEPENDENT_TYPE(Class, Base) case Type::Class:
2639#define NON_CANONICAL_TYPE(Class, Base) case Type::Class:
2640#define DEPENDENT_TYPE(Class, Base) case Type::Class:
2641#include "clang/AST/TypeNodes.def"
2642 llvm_unreachable("Non-canonical and dependent types shouldn't get here");
2643
2644 // GCC treats vector types as fundamental types.
2645 case Type::Builtin:
2646 case Type::Vector:
2647 case Type::ExtVector:
2648 case Type::Complex:
2649 case Type::BlockPointer:
2650 // Itanium C++ ABI 2.9.5p4:
2651 // abi::__fundamental_type_info adds no data members to std::type_info.
2652 break;
2653
2654 case Type::LValueReference:
2655 case Type::RValueReference:
2656 llvm_unreachable("References shouldn't get here");
2657
2658 case Type::Auto:
2659 llvm_unreachable("Undeduced auto type shouldn't get here");
2660
2661 case Type::ConstantArray:
2662 case Type::IncompleteArray:
2663 case Type::VariableArray:
2664 // Itanium C++ ABI 2.9.5p5:
2665 // abi::__array_type_info adds no data members to std::type_info.
2666 break;
2667
2668 case Type::FunctionNoProto:
2669 case Type::FunctionProto:
2670 // Itanium C++ ABI 2.9.5p5:
2671 // abi::__function_type_info adds no data members to std::type_info.
2672 break;
2673
2674 case Type::Enum:
2675 // Itanium C++ ABI 2.9.5p5:
2676 // abi::__enum_type_info adds no data members to std::type_info.
2677 break;
2678
2679 case Type::Record: {
2680 const CXXRecordDecl *RD =
2681 cast<CXXRecordDecl>(cast<RecordType>(Ty)->getDecl());
2682 if (!RD->hasDefinition() || !RD->getNumBases()) {
2683 // We don't need to emit any fields.
2684 break;
2685 }
2686
2687 if (CanUseSingleInheritance(RD))
2688 BuildSIClassTypeInfo(RD);
2689 else
2690 BuildVMIClassTypeInfo(RD);
2691
2692 break;
2693 }
2694
2695 case Type::ObjCObject:
2696 case Type::ObjCInterface:
2697 BuildObjCObjectTypeInfo(cast<ObjCObjectType>(Ty));
2698 break;
2699
2700 case Type::ObjCObjectPointer:
2701 BuildPointerTypeInfo(cast<ObjCObjectPointerType>(Ty)->getPointeeType());
2702 break;
2703
2704 case Type::Pointer:
2705 BuildPointerTypeInfo(cast<PointerType>(Ty)->getPointeeType());
2706 break;
2707
2708 case Type::MemberPointer:
2709 BuildPointerToMemberTypeInfo(cast<MemberPointerType>(Ty));
2710 break;
2711
2712 case Type::Atomic:
2713 // No fields, at least for the moment.
2714 break;
2715 }
2716
2717 llvm::Constant *Init = llvm::ConstantStruct::getAnon(Fields);
2718
2719 llvm::GlobalVariable *GV =
2720 new llvm::GlobalVariable(CGM.getModule(), Init->getType(),
2721 /*Constant=*/true, Linkage, Init, Name);
2722
2723 // If there's already an old global variable, replace it with the new one.
2724 if (OldGV) {
2725 GV->takeName(OldGV);
2726 llvm::Constant *NewPtr =
2727 llvm::ConstantExpr::getBitCast(GV, OldGV->getType());
2728 OldGV->replaceAllUsesWith(NewPtr);
2729 OldGV->eraseFromParent();
2730 }
2731
2732 // The Itanium ABI specifies that type_info objects must be globally
2733 // unique, with one exception: if the type is an incomplete class
2734 // type or a (possibly indirect) pointer to one. That exception
2735 // affects the general case of comparing type_info objects produced
2736 // by the typeid operator, which is why the comparison operators on
2737 // std::type_info generally use the type_info name pointers instead
2738 // of the object addresses. However, the language's built-in uses
2739 // of RTTI generally require class types to be complete, even when
2740 // manipulating pointers to those class types. This allows the
2741 // implementation of dynamic_cast to rely on address equality tests,
2742 // which is much faster.
2743
2744 // All of this is to say that it's important that both the type_info
2745 // object and the type_info name be uniqued when weakly emitted.
2746
2747 // Give the type_info object and name the formal visibility of the
2748 // type itself.
2749 llvm::GlobalValue::VisibilityTypes llvmVisibility;
2750 if (llvm::GlobalValue::isLocalLinkage(Linkage))
2751 // If the linkage is local, only default visibility makes sense.
2752 llvmVisibility = llvm::GlobalValue::DefaultVisibility;
2753 else if (RTTIUniqueness == ItaniumCXXABI::RUK_NonUniqueHidden)
2754 llvmVisibility = llvm::GlobalValue::HiddenVisibility;
2755 else
2756 llvmVisibility = CodeGenModule::GetLLVMVisibility(Ty->getVisibility());
2757 TypeName->setVisibility(llvmVisibility);
2758 GV->setVisibility(llvmVisibility);
2759
2760 return llvm::ConstantExpr::getBitCast(GV, CGM.Int8PtrTy);
2761}
2762
2763/// ComputeQualifierFlags - Compute the pointer type info flags from the
2764/// given qualifier.
2765static unsigned ComputeQualifierFlags(Qualifiers Quals) {
2766 unsigned Flags = 0;
2767
2768 if (Quals.hasConst())
2769 Flags |= ItaniumRTTIBuilder::PTI_Const;
2770 if (Quals.hasVolatile())
2771 Flags |= ItaniumRTTIBuilder::PTI_Volatile;
2772 if (Quals.hasRestrict())
2773 Flags |= ItaniumRTTIBuilder::PTI_Restrict;
2774
2775 return Flags;
2776}
2777
2778/// BuildObjCObjectTypeInfo - Build the appropriate kind of type_info
2779/// for the given Objective-C object type.
2780void ItaniumRTTIBuilder::BuildObjCObjectTypeInfo(const ObjCObjectType *OT) {
2781 // Drop qualifiers.
2782 const Type *T = OT->getBaseType().getTypePtr();
2783 assert(isa<BuiltinType>(T) || isa<ObjCInterfaceType>(T));
2784
2785 // The builtin types are abi::__class_type_infos and don't require
2786 // extra fields.
2787 if (isa<BuiltinType>(T)) return;
2788
2789 ObjCInterfaceDecl *Class = cast<ObjCInterfaceType>(T)->getDecl();
2790 ObjCInterfaceDecl *Super = Class->getSuperClass();
2791
2792 // Root classes are also __class_type_info.
2793 if (!Super) return;
2794
2795 QualType SuperTy = CGM.getContext().getObjCInterfaceType(Super);
2796
2797 // Everything else is single inheritance.
2798 llvm::Constant *BaseTypeInfo =
2799 ItaniumRTTIBuilder(CXXABI).BuildTypeInfo(SuperTy);
2800 Fields.push_back(BaseTypeInfo);
2801}
2802
2803/// BuildSIClassTypeInfo - Build an abi::__si_class_type_info, used for single
2804/// inheritance, according to the Itanium C++ ABI, 2.95p6b.
2805void ItaniumRTTIBuilder::BuildSIClassTypeInfo(const CXXRecordDecl *RD) {
2806 // Itanium C++ ABI 2.9.5p6b:
2807 // It adds to abi::__class_type_info a single member pointing to the
2808 // type_info structure for the base type,
2809 llvm::Constant *BaseTypeInfo =
2810 ItaniumRTTIBuilder(CXXABI).BuildTypeInfo(RD->bases_begin()->getType());
2811 Fields.push_back(BaseTypeInfo);
2812}
2813
2814namespace {
2815 /// SeenBases - Contains virtual and non-virtual bases seen when traversing
2816 /// a class hierarchy.
2817 struct SeenBases {
2818 llvm::SmallPtrSet<const CXXRecordDecl *, 16> NonVirtualBases;
2819 llvm::SmallPtrSet<const CXXRecordDecl *, 16> VirtualBases;
2820 };
2821}
2822
2823/// ComputeVMIClassTypeInfoFlags - Compute the value of the flags member in
2824/// abi::__vmi_class_type_info.
2825///
2826static unsigned ComputeVMIClassTypeInfoFlags(const CXXBaseSpecifier *Base,
2827 SeenBases &Bases) {
2828
2829 unsigned Flags = 0;
2830
2831 const CXXRecordDecl *BaseDecl =
2832 cast<CXXRecordDecl>(Base->getType()->getAs<RecordType>()->getDecl());
2833
2834 if (Base->isVirtual()) {
2835 // Mark the virtual base as seen.
David Blaikie82e95a32014-11-19 07:49:47 +00002836 if (!Bases.VirtualBases.insert(BaseDecl).second) {
David Majnemere2cb8d12014-07-07 06:20:47 +00002837 // If this virtual base has been seen before, then the class is diamond
2838 // shaped.
2839 Flags |= ItaniumRTTIBuilder::VMI_DiamondShaped;
2840 } else {
2841 if (Bases.NonVirtualBases.count(BaseDecl))
2842 Flags |= ItaniumRTTIBuilder::VMI_NonDiamondRepeat;
2843 }
2844 } else {
2845 // Mark the non-virtual base as seen.
David Blaikie82e95a32014-11-19 07:49:47 +00002846 if (!Bases.NonVirtualBases.insert(BaseDecl).second) {
David Majnemere2cb8d12014-07-07 06:20:47 +00002847 // If this non-virtual base has been seen before, then the class has non-
2848 // diamond shaped repeated inheritance.
2849 Flags |= ItaniumRTTIBuilder::VMI_NonDiamondRepeat;
2850 } else {
2851 if (Bases.VirtualBases.count(BaseDecl))
2852 Flags |= ItaniumRTTIBuilder::VMI_NonDiamondRepeat;
2853 }
2854 }
2855
2856 // Walk all bases.
2857 for (const auto &I : BaseDecl->bases())
2858 Flags |= ComputeVMIClassTypeInfoFlags(&I, Bases);
2859
2860 return Flags;
2861}
2862
2863static unsigned ComputeVMIClassTypeInfoFlags(const CXXRecordDecl *RD) {
2864 unsigned Flags = 0;
2865 SeenBases Bases;
2866
2867 // Walk all bases.
2868 for (const auto &I : RD->bases())
2869 Flags |= ComputeVMIClassTypeInfoFlags(&I, Bases);
2870
2871 return Flags;
2872}
2873
2874/// BuildVMIClassTypeInfo - Build an abi::__vmi_class_type_info, used for
2875/// classes with bases that do not satisfy the abi::__si_class_type_info
2876/// constraints, according ti the Itanium C++ ABI, 2.9.5p5c.
2877void ItaniumRTTIBuilder::BuildVMIClassTypeInfo(const CXXRecordDecl *RD) {
2878 llvm::Type *UnsignedIntLTy =
2879 CGM.getTypes().ConvertType(CGM.getContext().UnsignedIntTy);
2880
2881 // Itanium C++ ABI 2.9.5p6c:
2882 // __flags is a word with flags describing details about the class
2883 // structure, which may be referenced by using the __flags_masks
2884 // enumeration. These flags refer to both direct and indirect bases.
2885 unsigned Flags = ComputeVMIClassTypeInfoFlags(RD);
2886 Fields.push_back(llvm::ConstantInt::get(UnsignedIntLTy, Flags));
2887
2888 // Itanium C++ ABI 2.9.5p6c:
2889 // __base_count is a word with the number of direct proper base class
2890 // descriptions that follow.
2891 Fields.push_back(llvm::ConstantInt::get(UnsignedIntLTy, RD->getNumBases()));
2892
2893 if (!RD->getNumBases())
2894 return;
2895
2896 llvm::Type *LongLTy =
2897 CGM.getTypes().ConvertType(CGM.getContext().LongTy);
2898
2899 // Now add the base class descriptions.
2900
2901 // Itanium C++ ABI 2.9.5p6c:
2902 // __base_info[] is an array of base class descriptions -- one for every
2903 // direct proper base. Each description is of the type:
2904 //
2905 // struct abi::__base_class_type_info {
2906 // public:
2907 // const __class_type_info *__base_type;
2908 // long __offset_flags;
2909 //
2910 // enum __offset_flags_masks {
2911 // __virtual_mask = 0x1,
2912 // __public_mask = 0x2,
2913 // __offset_shift = 8
2914 // };
2915 // };
2916 for (const auto &Base : RD->bases()) {
2917 // The __base_type member points to the RTTI for the base type.
2918 Fields.push_back(ItaniumRTTIBuilder(CXXABI).BuildTypeInfo(Base.getType()));
2919
2920 const CXXRecordDecl *BaseDecl =
2921 cast<CXXRecordDecl>(Base.getType()->getAs<RecordType>()->getDecl());
2922
2923 int64_t OffsetFlags = 0;
2924
2925 // All but the lower 8 bits of __offset_flags are a signed offset.
2926 // For a non-virtual base, this is the offset in the object of the base
2927 // subobject. For a virtual base, this is the offset in the virtual table of
2928 // the virtual base offset for the virtual base referenced (negative).
2929 CharUnits Offset;
2930 if (Base.isVirtual())
2931 Offset =
2932 CGM.getItaniumVTableContext().getVirtualBaseOffsetOffset(RD, BaseDecl);
2933 else {
2934 const ASTRecordLayout &Layout = CGM.getContext().getASTRecordLayout(RD);
2935 Offset = Layout.getBaseClassOffset(BaseDecl);
2936 };
2937
2938 OffsetFlags = uint64_t(Offset.getQuantity()) << 8;
2939
2940 // The low-order byte of __offset_flags contains flags, as given by the
2941 // masks from the enumeration __offset_flags_masks.
2942 if (Base.isVirtual())
2943 OffsetFlags |= BCTI_Virtual;
2944 if (Base.getAccessSpecifier() == AS_public)
2945 OffsetFlags |= BCTI_Public;
2946
2947 Fields.push_back(llvm::ConstantInt::get(LongLTy, OffsetFlags));
2948 }
2949}
2950
2951/// BuildPointerTypeInfo - Build an abi::__pointer_type_info struct,
2952/// used for pointer types.
2953void ItaniumRTTIBuilder::BuildPointerTypeInfo(QualType PointeeTy) {
2954 Qualifiers Quals;
2955 QualType UnqualifiedPointeeTy =
2956 CGM.getContext().getUnqualifiedArrayType(PointeeTy, Quals);
2957
2958 // Itanium C++ ABI 2.9.5p7:
2959 // __flags is a flag word describing the cv-qualification and other
2960 // attributes of the type pointed to
2961 unsigned Flags = ComputeQualifierFlags(Quals);
2962
2963 // Itanium C++ ABI 2.9.5p7:
2964 // When the abi::__pbase_type_info is for a direct or indirect pointer to an
2965 // incomplete class type, the incomplete target type flag is set.
2966 if (ContainsIncompleteClassType(UnqualifiedPointeeTy))
2967 Flags |= PTI_Incomplete;
2968
2969 llvm::Type *UnsignedIntLTy =
2970 CGM.getTypes().ConvertType(CGM.getContext().UnsignedIntTy);
2971 Fields.push_back(llvm::ConstantInt::get(UnsignedIntLTy, Flags));
2972
2973 // Itanium C++ ABI 2.9.5p7:
2974 // __pointee is a pointer to the std::type_info derivation for the
2975 // unqualified type being pointed to.
2976 llvm::Constant *PointeeTypeInfo =
2977 ItaniumRTTIBuilder(CXXABI).BuildTypeInfo(UnqualifiedPointeeTy);
2978 Fields.push_back(PointeeTypeInfo);
2979}
2980
2981/// BuildPointerToMemberTypeInfo - Build an abi::__pointer_to_member_type_info
2982/// struct, used for member pointer types.
2983void
2984ItaniumRTTIBuilder::BuildPointerToMemberTypeInfo(const MemberPointerType *Ty) {
2985 QualType PointeeTy = Ty->getPointeeType();
2986
2987 Qualifiers Quals;
2988 QualType UnqualifiedPointeeTy =
2989 CGM.getContext().getUnqualifiedArrayType(PointeeTy, Quals);
2990
2991 // Itanium C++ ABI 2.9.5p7:
2992 // __flags is a flag word describing the cv-qualification and other
2993 // attributes of the type pointed to.
2994 unsigned Flags = ComputeQualifierFlags(Quals);
2995
2996 const RecordType *ClassType = cast<RecordType>(Ty->getClass());
2997
2998 // Itanium C++ ABI 2.9.5p7:
2999 // When the abi::__pbase_type_info is for a direct or indirect pointer to an
3000 // incomplete class type, the incomplete target type flag is set.
3001 if (ContainsIncompleteClassType(UnqualifiedPointeeTy))
3002 Flags |= PTI_Incomplete;
3003
3004 if (IsIncompleteClassType(ClassType))
3005 Flags |= PTI_ContainingClassIncomplete;
3006
3007 llvm::Type *UnsignedIntLTy =
3008 CGM.getTypes().ConvertType(CGM.getContext().UnsignedIntTy);
3009 Fields.push_back(llvm::ConstantInt::get(UnsignedIntLTy, Flags));
3010
3011 // Itanium C++ ABI 2.9.5p7:
3012 // __pointee is a pointer to the std::type_info derivation for the
3013 // unqualified type being pointed to.
3014 llvm::Constant *PointeeTypeInfo =
3015 ItaniumRTTIBuilder(CXXABI).BuildTypeInfo(UnqualifiedPointeeTy);
3016 Fields.push_back(PointeeTypeInfo);
3017
3018 // Itanium C++ ABI 2.9.5p9:
3019 // __context is a pointer to an abi::__class_type_info corresponding to the
3020 // class type containing the member pointed to
3021 // (e.g., the "A" in "int A::*").
3022 Fields.push_back(
3023 ItaniumRTTIBuilder(CXXABI).BuildTypeInfo(QualType(ClassType, 0)));
3024}
3025
3026llvm::Constant *ItaniumCXXABI::getAddrOfRTTIDescriptor(QualType Ty) {
3027 return ItaniumRTTIBuilder(*this).BuildTypeInfo(Ty);
3028}
3029
3030void ItaniumCXXABI::EmitFundamentalRTTIDescriptor(QualType Type) {
3031 QualType PointerType = getContext().getPointerType(Type);
3032 QualType PointerTypeConst = getContext().getPointerType(Type.withConst());
3033 ItaniumRTTIBuilder(*this).BuildTypeInfo(Type, true);
3034 ItaniumRTTIBuilder(*this).BuildTypeInfo(PointerType, true);
3035 ItaniumRTTIBuilder(*this).BuildTypeInfo(PointerTypeConst, true);
3036}
3037
3038void ItaniumCXXABI::EmitFundamentalRTTIDescriptors() {
3039 QualType FundamentalTypes[] = {
3040 getContext().VoidTy, getContext().NullPtrTy,
3041 getContext().BoolTy, getContext().WCharTy,
3042 getContext().CharTy, getContext().UnsignedCharTy,
3043 getContext().SignedCharTy, getContext().ShortTy,
3044 getContext().UnsignedShortTy, getContext().IntTy,
3045 getContext().UnsignedIntTy, getContext().LongTy,
3046 getContext().UnsignedLongTy, getContext().LongLongTy,
3047 getContext().UnsignedLongLongTy, getContext().HalfTy,
3048 getContext().FloatTy, getContext().DoubleTy,
3049 getContext().LongDoubleTy, getContext().Char16Ty,
3050 getContext().Char32Ty,
3051 };
3052 for (const QualType &FundamentalType : FundamentalTypes)
3053 EmitFundamentalRTTIDescriptor(FundamentalType);
3054}
3055
3056/// What sort of uniqueness rules should we use for the RTTI for the
3057/// given type?
3058ItaniumCXXABI::RTTIUniquenessKind ItaniumCXXABI::classifyRTTIUniqueness(
3059 QualType CanTy, llvm::GlobalValue::LinkageTypes Linkage) const {
3060 if (shouldRTTIBeUnique())
3061 return RUK_Unique;
3062
3063 // It's only necessary for linkonce_odr or weak_odr linkage.
3064 if (Linkage != llvm::GlobalValue::LinkOnceODRLinkage &&
3065 Linkage != llvm::GlobalValue::WeakODRLinkage)
3066 return RUK_Unique;
3067
3068 // It's only necessary with default visibility.
3069 if (CanTy->getVisibility() != DefaultVisibility)
3070 return RUK_Unique;
3071
3072 // If we're not required to publish this symbol, hide it.
3073 if (Linkage == llvm::GlobalValue::LinkOnceODRLinkage)
3074 return RUK_NonUniqueHidden;
3075
3076 // If we're required to publish this symbol, as we might be under an
3077 // explicit instantiation, leave it with default visibility but
3078 // enable string-comparisons.
3079 assert(Linkage == llvm::GlobalValue::WeakODRLinkage);
3080 return RUK_NonUniqueVisible;
3081}
Rafael Espindola91f68b42014-09-15 19:20:10 +00003082
Rafael Espindola1e4df922014-09-16 15:18:21 +00003083// Find out how to codegen the complete destructor and constructor
3084namespace {
3085enum class StructorCodegen { Emit, RAUW, Alias, COMDAT };
3086}
3087static StructorCodegen getCodegenToUse(CodeGenModule &CGM,
3088 const CXXMethodDecl *MD) {
3089 if (!CGM.getCodeGenOpts().CXXCtorDtorAliases)
3090 return StructorCodegen::Emit;
Rafael Espindola91f68b42014-09-15 19:20:10 +00003091
Rafael Espindola1e4df922014-09-16 15:18:21 +00003092 // The complete and base structors are not equivalent if there are any virtual
3093 // bases, so emit separate functions.
3094 if (MD->getParent()->getNumVBases())
3095 return StructorCodegen::Emit;
3096
3097 GlobalDecl AliasDecl;
3098 if (const auto *DD = dyn_cast<CXXDestructorDecl>(MD)) {
3099 AliasDecl = GlobalDecl(DD, Dtor_Complete);
3100 } else {
3101 const auto *CD = cast<CXXConstructorDecl>(MD);
3102 AliasDecl = GlobalDecl(CD, Ctor_Complete);
3103 }
3104 llvm::GlobalValue::LinkageTypes Linkage = CGM.getFunctionLinkage(AliasDecl);
3105
3106 if (llvm::GlobalValue::isDiscardableIfUnused(Linkage))
3107 return StructorCodegen::RAUW;
3108
3109 // FIXME: Should we allow available_externally aliases?
3110 if (!llvm::GlobalAlias::isValidLinkage(Linkage))
3111 return StructorCodegen::RAUW;
3112
Rafael Espindola0806f982014-09-16 20:19:43 +00003113 if (llvm::GlobalValue::isWeakForLinker(Linkage)) {
3114 // Only ELF supports COMDATs with arbitrary names (C5/D5).
3115 if (CGM.getTarget().getTriple().isOSBinFormatELF())
3116 return StructorCodegen::COMDAT;
3117 return StructorCodegen::Emit;
3118 }
Rafael Espindola1e4df922014-09-16 15:18:21 +00003119
3120 return StructorCodegen::Alias;
Rafael Espindola91f68b42014-09-15 19:20:10 +00003121}
3122
Rafael Espindola1e4df922014-09-16 15:18:21 +00003123static void emitConstructorDestructorAlias(CodeGenModule &CGM,
3124 GlobalDecl AliasDecl,
3125 GlobalDecl TargetDecl) {
3126 llvm::GlobalValue::LinkageTypes Linkage = CGM.getFunctionLinkage(AliasDecl);
3127
3128 StringRef MangledName = CGM.getMangledName(AliasDecl);
3129 llvm::GlobalValue *Entry = CGM.GetGlobalValue(MangledName);
3130 if (Entry && !Entry->isDeclaration())
3131 return;
3132
3133 auto *Aliasee = cast<llvm::GlobalValue>(CGM.GetAddrOfGlobal(TargetDecl));
3134 llvm::PointerType *AliasType = Aliasee->getType();
3135
3136 // Create the alias with no name.
3137 auto *Alias = llvm::GlobalAlias::create(
3138 AliasType->getElementType(), 0, Linkage, "", Aliasee, &CGM.getModule());
3139
3140 // Switch any previous uses to the alias.
3141 if (Entry) {
3142 assert(Entry->getType() == AliasType &&
3143 "declaration exists with different type");
3144 Alias->takeName(Entry);
3145 Entry->replaceAllUsesWith(Alias);
3146 Entry->eraseFromParent();
3147 } else {
3148 Alias->setName(MangledName);
3149 }
3150
3151 // Finally, set up the alias with its proper name and attributes.
Dario Domiziolic4fb8ca72014-09-19 22:06:24 +00003152 CGM.setAliasAttributes(cast<NamedDecl>(AliasDecl.getDecl()), Alias);
Rafael Espindola1e4df922014-09-16 15:18:21 +00003153}
3154
3155void ItaniumCXXABI::emitCXXStructor(const CXXMethodDecl *MD,
3156 StructorType Type) {
3157 auto *CD = dyn_cast<CXXConstructorDecl>(MD);
3158 const CXXDestructorDecl *DD = CD ? nullptr : cast<CXXDestructorDecl>(MD);
3159
3160 StructorCodegen CGType = getCodegenToUse(CGM, MD);
3161
3162 if (Type == StructorType::Complete) {
3163 GlobalDecl CompleteDecl;
3164 GlobalDecl BaseDecl;
3165 if (CD) {
3166 CompleteDecl = GlobalDecl(CD, Ctor_Complete);
3167 BaseDecl = GlobalDecl(CD, Ctor_Base);
3168 } else {
3169 CompleteDecl = GlobalDecl(DD, Dtor_Complete);
3170 BaseDecl = GlobalDecl(DD, Dtor_Base);
3171 }
3172
3173 if (CGType == StructorCodegen::Alias || CGType == StructorCodegen::COMDAT) {
3174 emitConstructorDestructorAlias(CGM, CompleteDecl, BaseDecl);
3175 return;
3176 }
3177
3178 if (CGType == StructorCodegen::RAUW) {
3179 StringRef MangledName = CGM.getMangledName(CompleteDecl);
3180 auto *Aliasee = cast<llvm::GlobalValue>(CGM.GetAddrOfGlobal(BaseDecl));
3181 CGM.addReplacement(MangledName, Aliasee);
3182 return;
Rafael Espindola91f68b42014-09-15 19:20:10 +00003183 }
3184 }
3185
3186 // The base destructor is equivalent to the base destructor of its
3187 // base class if there is exactly one non-virtual base class with a
3188 // non-trivial destructor, there are no fields with a non-trivial
3189 // destructor, and the body of the destructor is trivial.
Rafael Espindola1e4df922014-09-16 15:18:21 +00003190 if (DD && Type == StructorType::Base && CGType != StructorCodegen::COMDAT &&
3191 !CGM.TryEmitBaseDestructorAsAlias(DD))
Rafael Espindola91f68b42014-09-15 19:20:10 +00003192 return;
3193
Rafael Espindola1e4df922014-09-16 15:18:21 +00003194 llvm::Function *Fn = CGM.codegenCXXStructor(MD, Type);
Rafael Espindola91f68b42014-09-15 19:20:10 +00003195
Rafael Espindola1e4df922014-09-16 15:18:21 +00003196 if (CGType == StructorCodegen::COMDAT) {
3197 SmallString<256> Buffer;
3198 llvm::raw_svector_ostream Out(Buffer);
3199 if (DD)
3200 getMangleContext().mangleCXXDtorComdat(DD, Out);
3201 else
3202 getMangleContext().mangleCXXCtorComdat(CD, Out);
3203 llvm::Comdat *C = CGM.getModule().getOrInsertComdat(Out.str());
3204 Fn->setComdat(C);
Rafael Espindoladbee8a72015-01-15 21:36:08 +00003205 } else {
3206 CGM.maybeSetTrivialComdat(*MD, *Fn);
Rafael Espindola91f68b42014-09-15 19:20:10 +00003207 }
Rafael Espindola91f68b42014-09-15 19:20:10 +00003208}