blob: cdab82eaab6c8665a2ecaa7c60f9a6aa1246e150 [file] [log] [blame]
Anders Carlsson5b955922009-11-24 05:51:11 +00001//===--- CGExprCXX.cpp - Emit LLVM Code for C++ expressions ---------------===//
Anders Carlsson16d81b82009-09-22 22:53:17 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This contains code dealing with code generation of C++ expressions
11//
12//===----------------------------------------------------------------------===//
13
Devang Patelc69e1cf2010-09-30 19:05:55 +000014#include "clang/Frontend/CodeGenOptions.h"
Anders Carlsson16d81b82009-09-22 22:53:17 +000015#include "CodeGenFunction.h"
John McCall4c40d982010-08-31 07:33:07 +000016#include "CGCXXABI.h"
Fariborz Jahanian842ddd02010-05-20 21:38:57 +000017#include "CGObjCRuntime.h"
Devang Patelc69e1cf2010-09-30 19:05:55 +000018#include "CGDebugInfo.h"
Chris Lattner6c552c12010-07-20 20:19:24 +000019#include "llvm/Intrinsics.h"
Anders Carlssonad3692bb2011-04-13 02:35:36 +000020#include "llvm/Support/CallSite.h"
21
Anders Carlsson16d81b82009-09-22 22:53:17 +000022using namespace clang;
23using namespace CodeGen;
24
Anders Carlsson3b5ad222010-01-01 20:29:01 +000025RValue CodeGenFunction::EmitCXXMemberCall(const CXXMethodDecl *MD,
26 llvm::Value *Callee,
27 ReturnValueSlot ReturnValue,
28 llvm::Value *This,
Anders Carlssonc997d422010-01-02 01:01:18 +000029 llvm::Value *VTT,
Anders Carlsson3b5ad222010-01-01 20:29:01 +000030 CallExpr::const_arg_iterator ArgBeg,
31 CallExpr::const_arg_iterator ArgEnd) {
32 assert(MD->isInstance() &&
33 "Trying to emit a member call expr on a static method!");
34
35 const FunctionProtoType *FPT = MD->getType()->getAs<FunctionProtoType>();
36
37 CallArgList Args;
38
39 // Push the this ptr.
Eli Friedman04c9a492011-05-02 17:57:46 +000040 Args.add(RValue::get(This), MD->getThisType(getContext()));
Anders Carlsson3b5ad222010-01-01 20:29:01 +000041
Anders Carlssonc997d422010-01-02 01:01:18 +000042 // If there is a VTT parameter, emit it.
43 if (VTT) {
44 QualType T = getContext().getPointerType(getContext().VoidPtrTy);
Eli Friedman04c9a492011-05-02 17:57:46 +000045 Args.add(RValue::get(VTT), T);
Anders Carlssonc997d422010-01-02 01:01:18 +000046 }
47
Anders Carlsson3b5ad222010-01-01 20:29:01 +000048 // And the rest of the call args
49 EmitCallArgs(Args, FPT, ArgBeg, ArgEnd);
50
John McCall04a67a62010-02-05 21:31:56 +000051 QualType ResultType = FPT->getResultType();
Tilmann Scheller9c6082f2011-03-02 21:36:49 +000052 return EmitCall(CGM.getTypes().getFunctionInfo(ResultType, Args,
53 FPT->getExtInfo()),
Rafael Espindola264ba482010-03-30 20:24:48 +000054 Callee, ReturnValue, Args, MD);
Anders Carlsson3b5ad222010-01-01 20:29:01 +000055}
56
Anders Carlsson1679f5a2011-01-29 03:52:01 +000057static const CXXRecordDecl *getMostDerivedClassDecl(const Expr *Base) {
Anders Carlsson268ab8c2011-01-29 05:04:11 +000058 const Expr *E = Base;
59
60 while (true) {
61 E = E->IgnoreParens();
62 if (const CastExpr *CE = dyn_cast<CastExpr>(E)) {
63 if (CE->getCastKind() == CK_DerivedToBase ||
64 CE->getCastKind() == CK_UncheckedDerivedToBase ||
65 CE->getCastKind() == CK_NoOp) {
66 E = CE->getSubExpr();
67 continue;
68 }
69 }
70
71 break;
72 }
73
74 QualType DerivedType = E->getType();
Anders Carlsson1679f5a2011-01-29 03:52:01 +000075 if (const PointerType *PTy = DerivedType->getAs<PointerType>())
76 DerivedType = PTy->getPointeeType();
77
78 return cast<CXXRecordDecl>(DerivedType->castAs<RecordType>()->getDecl());
79}
80
Anders Carlssoncd0b32e2011-04-10 18:20:53 +000081// FIXME: Ideally Expr::IgnoreParenNoopCasts should do this, but it doesn't do
82// quite what we want.
83static const Expr *skipNoOpCastsAndParens(const Expr *E) {
84 while (true) {
85 if (const ParenExpr *PE = dyn_cast<ParenExpr>(E)) {
86 E = PE->getSubExpr();
87 continue;
88 }
89
90 if (const CastExpr *CE = dyn_cast<CastExpr>(E)) {
91 if (CE->getCastKind() == CK_NoOp) {
92 E = CE->getSubExpr();
93 continue;
94 }
95 }
96 if (const UnaryOperator *UO = dyn_cast<UnaryOperator>(E)) {
97 if (UO->getOpcode() == UO_Extension) {
98 E = UO->getSubExpr();
99 continue;
100 }
101 }
102 return E;
103 }
104}
105
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000106/// canDevirtualizeMemberFunctionCalls - Checks whether virtual calls on given
107/// expr can be devirtualized.
Fariborz Jahanian7ac0ff22011-01-21 01:04:41 +0000108static bool canDevirtualizeMemberFunctionCalls(ASTContext &Context,
109 const Expr *Base,
Anders Carlssonbd2bfae2010-10-27 13:28:46 +0000110 const CXXMethodDecl *MD) {
111
Anders Carlsson1679f5a2011-01-29 03:52:01 +0000112 // When building with -fapple-kext, all calls must go through the vtable since
113 // the kernel linker can do runtime patching of vtables.
Fariborz Jahanian7ac0ff22011-01-21 01:04:41 +0000114 if (Context.getLangOptions().AppleKext)
115 return false;
116
Anders Carlsson1679f5a2011-01-29 03:52:01 +0000117 // If the most derived class is marked final, we know that no subclass can
118 // override this member function and so we can devirtualize it. For example:
119 //
120 // struct A { virtual void f(); }
121 // struct B final : A { };
122 //
123 // void f(B *b) {
124 // b->f();
125 // }
126 //
127 const CXXRecordDecl *MostDerivedClassDecl = getMostDerivedClassDecl(Base);
128 if (MostDerivedClassDecl->hasAttr<FinalAttr>())
129 return true;
130
Anders Carlssonf89e0422011-01-23 21:07:30 +0000131 // If the member function is marked 'final', we know that it can't be
Anders Carlssond66f4282010-10-27 13:34:43 +0000132 // overridden and can therefore devirtualize it.
Anders Carlssoncb88a1f2011-01-24 16:26:15 +0000133 if (MD->hasAttr<FinalAttr>())
Anders Carlssonbd2bfae2010-10-27 13:28:46 +0000134 return true;
Anders Carlssond66f4282010-10-27 13:34:43 +0000135
Anders Carlssonf89e0422011-01-23 21:07:30 +0000136 // Similarly, if the class itself is marked 'final' it can't be overridden
137 // and we can therefore devirtualize the member function call.
Anders Carlssoncb88a1f2011-01-24 16:26:15 +0000138 if (MD->getParent()->hasAttr<FinalAttr>())
Anders Carlssond66f4282010-10-27 13:34:43 +0000139 return true;
140
Anders Carlssoncd0b32e2011-04-10 18:20:53 +0000141 Base = skipNoOpCastsAndParens(Base);
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000142 if (const DeclRefExpr *DRE = dyn_cast<DeclRefExpr>(Base)) {
143 if (const VarDecl *VD = dyn_cast<VarDecl>(DRE->getDecl())) {
144 // This is a record decl. We know the type and can devirtualize it.
145 return VD->getType()->isRecordType();
146 }
147
148 return false;
149 }
150
151 // We can always devirtualize calls on temporary object expressions.
Eli Friedman6997aae2010-01-31 20:58:15 +0000152 if (isa<CXXConstructExpr>(Base))
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000153 return true;
154
155 // And calls on bound temporaries.
156 if (isa<CXXBindTemporaryExpr>(Base))
157 return true;
158
159 // Check if this is a call expr that returns a record type.
160 if (const CallExpr *CE = dyn_cast<CallExpr>(Base))
161 return CE->getCallReturnType()->isRecordType();
Anders Carlssonbd2bfae2010-10-27 13:28:46 +0000162
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000163 // We can't devirtualize the call.
164 return false;
165}
166
Francois Pichetdbee3412011-01-18 05:04:39 +0000167// Note: This function also emit constructor calls to support a MSVC
168// extensions allowing explicit constructor function call.
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000169RValue CodeGenFunction::EmitCXXMemberCallExpr(const CXXMemberCallExpr *CE,
170 ReturnValueSlot ReturnValue) {
John McCall379b5152011-04-11 07:02:50 +0000171 const Expr *callee = CE->getCallee()->IgnoreParens();
172
173 if (isa<BinaryOperator>(callee))
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000174 return EmitCXXMemberPointerCallExpr(CE, ReturnValue);
John McCall379b5152011-04-11 07:02:50 +0000175
176 const MemberExpr *ME = cast<MemberExpr>(callee);
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000177 const CXXMethodDecl *MD = cast<CXXMethodDecl>(ME->getMemberDecl());
178
Devang Patelc69e1cf2010-09-30 19:05:55 +0000179 CGDebugInfo *DI = getDebugInfo();
Devang Patel68020272010-10-22 18:56:27 +0000180 if (DI && CGM.getCodeGenOpts().LimitDebugInfo
181 && !isa<CallExpr>(ME->getBase())) {
Devang Patelc69e1cf2010-09-30 19:05:55 +0000182 QualType PQTy = ME->getBase()->IgnoreParenImpCasts()->getType();
183 if (const PointerType * PTy = dyn_cast<PointerType>(PQTy)) {
184 DI->getOrCreateRecordType(PTy->getPointeeType(),
185 MD->getParent()->getLocation());
186 }
187 }
188
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000189 if (MD->isStatic()) {
190 // The method is static, emit it as we would a regular call.
191 llvm::Value *Callee = CGM.GetAddrOfFunction(MD);
192 return EmitCall(getContext().getPointerType(MD->getType()), Callee,
193 ReturnValue, CE->arg_begin(), CE->arg_end());
194 }
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000195
John McCallfc400282010-09-03 01:26:39 +0000196 // Compute the object pointer.
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000197 llvm::Value *This;
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000198 if (ME->isArrow())
199 This = EmitScalarExpr(ME->getBase());
John McCall0e800c92010-12-04 08:14:53 +0000200 else
201 This = EmitLValue(ME->getBase()).getAddress();
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000202
John McCallfc400282010-09-03 01:26:39 +0000203 if (MD->isTrivial()) {
204 if (isa<CXXDestructorDecl>(MD)) return RValue::get(0);
Francois Pichetdbee3412011-01-18 05:04:39 +0000205 if (isa<CXXConstructorDecl>(MD) &&
206 cast<CXXConstructorDecl>(MD)->isDefaultConstructor())
207 return RValue::get(0);
John McCallfc400282010-09-03 01:26:39 +0000208
Francois Pichetdbee3412011-01-18 05:04:39 +0000209 if (MD->isCopyAssignmentOperator()) {
210 // We don't like to generate the trivial copy assignment operator when
211 // it isn't necessary; just produce the proper effect here.
212 llvm::Value *RHS = EmitLValue(*CE->arg_begin()).getAddress();
213 EmitAggregateCopy(This, RHS, CE->getType());
214 return RValue::get(This);
215 }
216
217 if (isa<CXXConstructorDecl>(MD) &&
218 cast<CXXConstructorDecl>(MD)->isCopyConstructor()) {
219 llvm::Value *RHS = EmitLValue(*CE->arg_begin()).getAddress();
220 EmitSynthesizedCXXCopyCtorCall(cast<CXXConstructorDecl>(MD), This, RHS,
221 CE->arg_begin(), CE->arg_end());
222 return RValue::get(This);
223 }
224 llvm_unreachable("unknown trivial member function");
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000225 }
226
John McCallfc400282010-09-03 01:26:39 +0000227 // Compute the function type we're calling.
Francois Pichetdbee3412011-01-18 05:04:39 +0000228 const CGFunctionInfo *FInfo = 0;
229 if (isa<CXXDestructorDecl>(MD))
230 FInfo = &CGM.getTypes().getFunctionInfo(cast<CXXDestructorDecl>(MD),
231 Dtor_Complete);
232 else if (isa<CXXConstructorDecl>(MD))
233 FInfo = &CGM.getTypes().getFunctionInfo(cast<CXXConstructorDecl>(MD),
234 Ctor_Complete);
235 else
236 FInfo = &CGM.getTypes().getFunctionInfo(MD);
John McCallfc400282010-09-03 01:26:39 +0000237
238 const FunctionProtoType *FPT = MD->getType()->getAs<FunctionProtoType>();
Chris Lattner2acc6e32011-07-18 04:24:23 +0000239 llvm::Type *Ty
Francois Pichetdbee3412011-01-18 05:04:39 +0000240 = CGM.getTypes().GetFunctionType(*FInfo, FPT->isVariadic());
John McCallfc400282010-09-03 01:26:39 +0000241
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000242 // C++ [class.virtual]p12:
243 // Explicit qualification with the scope operator (5.1) suppresses the
244 // virtual call mechanism.
245 //
246 // We also don't emit a virtual call if the base expression has a record type
247 // because then we know what the type is.
Fariborz Jahanian27262672011-01-20 17:19:02 +0000248 bool UseVirtualCall;
Fariborz Jahanian7ac0ff22011-01-21 01:04:41 +0000249 UseVirtualCall = MD->isVirtual() && !ME->hasQualifier()
250 && !canDevirtualizeMemberFunctionCalls(getContext(),
251 ME->getBase(), MD);
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000252 llvm::Value *Callee;
John McCallfc400282010-09-03 01:26:39 +0000253 if (const CXXDestructorDecl *Dtor = dyn_cast<CXXDestructorDecl>(MD)) {
254 if (UseVirtualCall) {
255 Callee = BuildVirtualCall(Dtor, Dtor_Complete, This, Ty);
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000256 } else {
Fariborz Jahanianccd52592011-02-01 23:22:34 +0000257 if (getContext().getLangOptions().AppleKext &&
258 MD->isVirtual() &&
259 ME->hasQualifier())
Fariborz Jahanian771c6782011-02-03 19:27:17 +0000260 Callee = BuildAppleKextVirtualCall(MD, ME->getQualifier(), Ty);
Fariborz Jahanianccd52592011-02-01 23:22:34 +0000261 else
262 Callee = CGM.GetAddrOfFunction(GlobalDecl(Dtor, Dtor_Complete), Ty);
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000263 }
Francois Pichetdbee3412011-01-18 05:04:39 +0000264 } else if (const CXXConstructorDecl *Ctor =
265 dyn_cast<CXXConstructorDecl>(MD)) {
266 Callee = CGM.GetAddrOfFunction(GlobalDecl(Ctor, Ctor_Complete), Ty);
John McCallfc400282010-09-03 01:26:39 +0000267 } else if (UseVirtualCall) {
Fariborz Jahanian27262672011-01-20 17:19:02 +0000268 Callee = BuildVirtualCall(MD, This, Ty);
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000269 } else {
Fariborz Jahanian7ac0ff22011-01-21 01:04:41 +0000270 if (getContext().getLangOptions().AppleKext &&
Fariborz Jahaniana50e33e2011-01-28 23:42:29 +0000271 MD->isVirtual() &&
Fariborz Jahanian7ac0ff22011-01-21 01:04:41 +0000272 ME->hasQualifier())
Fariborz Jahanian771c6782011-02-03 19:27:17 +0000273 Callee = BuildAppleKextVirtualCall(MD, ME->getQualifier(), Ty);
Fariborz Jahanian7ac0ff22011-01-21 01:04:41 +0000274 else
275 Callee = CGM.GetAddrOfFunction(MD, Ty);
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000276 }
277
Anders Carlssonc997d422010-01-02 01:01:18 +0000278 return EmitCXXMemberCall(MD, Callee, ReturnValue, This, /*VTT=*/0,
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000279 CE->arg_begin(), CE->arg_end());
280}
281
282RValue
283CodeGenFunction::EmitCXXMemberPointerCallExpr(const CXXMemberCallExpr *E,
284 ReturnValueSlot ReturnValue) {
285 const BinaryOperator *BO =
286 cast<BinaryOperator>(E->getCallee()->IgnoreParens());
287 const Expr *BaseExpr = BO->getLHS();
288 const Expr *MemFnExpr = BO->getRHS();
289
290 const MemberPointerType *MPT =
John McCall864c0412011-04-26 20:42:42 +0000291 MemFnExpr->getType()->castAs<MemberPointerType>();
John McCall93d557b2010-08-22 00:05:51 +0000292
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000293 const FunctionProtoType *FPT =
John McCall864c0412011-04-26 20:42:42 +0000294 MPT->getPointeeType()->castAs<FunctionProtoType>();
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000295 const CXXRecordDecl *RD =
296 cast<CXXRecordDecl>(MPT->getClass()->getAs<RecordType>()->getDecl());
297
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000298 // Get the member function pointer.
John McCalld608cdb2010-08-22 10:59:02 +0000299 llvm::Value *MemFnPtr = EmitScalarExpr(MemFnExpr);
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000300
301 // Emit the 'this' pointer.
302 llvm::Value *This;
303
John McCall2de56d12010-08-25 11:45:40 +0000304 if (BO->getOpcode() == BO_PtrMemI)
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000305 This = EmitScalarExpr(BaseExpr);
306 else
307 This = EmitLValue(BaseExpr).getAddress();
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000308
John McCall93d557b2010-08-22 00:05:51 +0000309 // Ask the ABI to load the callee. Note that This is modified.
310 llvm::Value *Callee =
John McCalld16c2cf2011-02-08 08:22:06 +0000311 CGM.getCXXABI().EmitLoadOfMemberFunctionPointer(*this, This, MemFnPtr, MPT);
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000312
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000313 CallArgList Args;
314
315 QualType ThisType =
316 getContext().getPointerType(getContext().getTagDeclType(RD));
317
318 // Push the this ptr.
Eli Friedman04c9a492011-05-02 17:57:46 +0000319 Args.add(RValue::get(This), ThisType);
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000320
321 // And the rest of the call args
322 EmitCallArgs(Args, FPT, E->arg_begin(), E->arg_end());
John McCall864c0412011-04-26 20:42:42 +0000323 return EmitCall(CGM.getTypes().getFunctionInfo(Args, FPT), Callee,
Tilmann Scheller9c6082f2011-03-02 21:36:49 +0000324 ReturnValue, Args);
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000325}
326
327RValue
328CodeGenFunction::EmitCXXOperatorMemberCallExpr(const CXXOperatorCallExpr *E,
329 const CXXMethodDecl *MD,
330 ReturnValueSlot ReturnValue) {
331 assert(MD->isInstance() &&
332 "Trying to emit a member call expr on a static method!");
John McCall0e800c92010-12-04 08:14:53 +0000333 LValue LV = EmitLValue(E->getArg(0));
334 llvm::Value *This = LV.getAddress();
335
Douglas Gregor3e9438b2010-09-27 22:37:28 +0000336 if (MD->isCopyAssignmentOperator()) {
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000337 const CXXRecordDecl *ClassDecl = cast<CXXRecordDecl>(MD->getDeclContext());
338 if (ClassDecl->hasTrivialCopyAssignment()) {
339 assert(!ClassDecl->hasUserDeclaredCopyAssignment() &&
340 "EmitCXXOperatorMemberCallExpr - user declared copy assignment");
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000341 llvm::Value *Src = EmitLValue(E->getArg(1)).getAddress();
342 QualType Ty = E->getType();
Fariborz Jahanian55bcace2010-06-15 22:44:06 +0000343 EmitAggregateCopy(This, Src, Ty);
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000344 return RValue::get(This);
345 }
346 }
347
Anders Carlssona2447e02011-05-08 20:32:23 +0000348 llvm::Value *Callee = EmitCXXOperatorMemberCallee(E, MD, This);
Anders Carlssonc997d422010-01-02 01:01:18 +0000349 return EmitCXXMemberCall(MD, Callee, ReturnValue, This, /*VTT=*/0,
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000350 E->arg_begin() + 1, E->arg_end());
351}
352
353void
John McCall558d2ab2010-09-15 10:14:12 +0000354CodeGenFunction::EmitCXXConstructExpr(const CXXConstructExpr *E,
355 AggValueSlot Dest) {
356 assert(!Dest.isIgnored() && "Must have a destination!");
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000357 const CXXConstructorDecl *CD = E->getConstructor();
Douglas Gregor759e41b2010-08-22 16:15:35 +0000358
359 // If we require zero initialization before (or instead of) calling the
360 // constructor, as can be the case with a non-user-provided default
Argyrios Kyrtzidis657baf12011-04-28 22:57:55 +0000361 // constructor, emit the zero initialization now, unless destination is
362 // already zeroed.
363 if (E->requiresZeroInitialization() && !Dest.isZeroed())
John McCall558d2ab2010-09-15 10:14:12 +0000364 EmitNullInitialization(Dest.getAddr(), E->getType());
Douglas Gregor759e41b2010-08-22 16:15:35 +0000365
366 // If this is a call to a trivial default constructor, do nothing.
367 if (CD->isTrivial() && CD->isDefaultConstructor())
368 return;
369
John McCallfc1e6c72010-09-18 00:58:34 +0000370 // Elide the constructor if we're constructing from a temporary.
371 // The temporary check is required because Sema sets this on NRVO
372 // returns.
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000373 if (getContext().getLangOptions().ElideConstructors && E->isElidable()) {
John McCallfc1e6c72010-09-18 00:58:34 +0000374 assert(getContext().hasSameUnqualifiedType(E->getType(),
375 E->getArg(0)->getType()));
John McCall558d2ab2010-09-15 10:14:12 +0000376 if (E->getArg(0)->isTemporaryObject(getContext(), CD->getParent())) {
377 EmitAggExpr(E->getArg(0), Dest);
Douglas Gregor3c9034c2010-05-15 00:13:29 +0000378 return;
379 }
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000380 }
Douglas Gregor759e41b2010-08-22 16:15:35 +0000381
John McCallc3c07662011-07-13 06:10:41 +0000382 if (const ConstantArrayType *arrayType
383 = getContext().getAsConstantArrayType(E->getType())) {
384 EmitCXXAggrConstructorCall(CD, arrayType, Dest.getAddr(),
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000385 E->arg_begin(), E->arg_end());
John McCallc3c07662011-07-13 06:10:41 +0000386 } else {
Cameron Esfahani6bd2f6a2011-05-06 21:28:42 +0000387 CXXCtorType Type = Ctor_Complete;
Sean Huntd49bd552011-05-03 20:19:28 +0000388 bool ForVirtualBase = false;
389
390 switch (E->getConstructionKind()) {
391 case CXXConstructExpr::CK_Delegating:
Sean Hunt059ce0d2011-05-01 07:04:31 +0000392 // We should be emitting a constructor; GlobalDecl will assert this
393 Type = CurGD.getCtorType();
Sean Huntd49bd552011-05-03 20:19:28 +0000394 break;
Sean Hunt059ce0d2011-05-01 07:04:31 +0000395
Sean Huntd49bd552011-05-03 20:19:28 +0000396 case CXXConstructExpr::CK_Complete:
397 Type = Ctor_Complete;
398 break;
399
400 case CXXConstructExpr::CK_VirtualBase:
401 ForVirtualBase = true;
402 // fall-through
403
404 case CXXConstructExpr::CK_NonVirtualBase:
405 Type = Ctor_Base;
406 }
Anders Carlsson155ed4a2010-05-02 23:20:53 +0000407
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000408 // Call the constructor.
John McCall558d2ab2010-09-15 10:14:12 +0000409 EmitCXXConstructorCall(CD, Type, ForVirtualBase, Dest.getAddr(),
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000410 E->arg_begin(), E->arg_end());
Anders Carlsson155ed4a2010-05-02 23:20:53 +0000411 }
Anders Carlsson3b5ad222010-01-01 20:29:01 +0000412}
413
Fariborz Jahanian34999872010-11-13 21:53:34 +0000414void
415CodeGenFunction::EmitSynthesizedCXXCopyCtor(llvm::Value *Dest,
416 llvm::Value *Src,
Fariborz Jahanian830937b2010-12-02 17:02:11 +0000417 const Expr *Exp) {
John McCall4765fa02010-12-06 08:20:24 +0000418 if (const ExprWithCleanups *E = dyn_cast<ExprWithCleanups>(Exp))
Fariborz Jahanian34999872010-11-13 21:53:34 +0000419 Exp = E->getSubExpr();
420 assert(isa<CXXConstructExpr>(Exp) &&
421 "EmitSynthesizedCXXCopyCtor - unknown copy ctor expr");
422 const CXXConstructExpr* E = cast<CXXConstructExpr>(Exp);
423 const CXXConstructorDecl *CD = E->getConstructor();
424 RunCleanupsScope Scope(*this);
425
426 // If we require zero initialization before (or instead of) calling the
427 // constructor, as can be the case with a non-user-provided default
428 // constructor, emit the zero initialization now.
429 // FIXME. Do I still need this for a copy ctor synthesis?
430 if (E->requiresZeroInitialization())
431 EmitNullInitialization(Dest, E->getType());
432
Chandler Carruth858a5462010-11-15 13:54:43 +0000433 assert(!getContext().getAsConstantArrayType(E->getType())
434 && "EmitSynthesizedCXXCopyCtor - Copied-in Array");
Fariborz Jahanian34999872010-11-13 21:53:34 +0000435 EmitSynthesizedCXXCopyCtorCall(CD, Dest, Src,
436 E->arg_begin(), E->arg_end());
437}
438
John McCall1e7fe752010-09-02 09:58:18 +0000439static CharUnits CalculateCookiePadding(CodeGenFunction &CGF,
440 const CXXNewExpr *E) {
Anders Carlsson871d0782009-12-13 20:04:38 +0000441 if (!E->isArray())
Ken Dyckcaf647c2010-01-26 19:44:24 +0000442 return CharUnits::Zero();
Anders Carlsson871d0782009-12-13 20:04:38 +0000443
John McCallb1c98a32011-05-16 01:05:12 +0000444 // No cookie is required if the operator new[] being used is the
445 // reserved placement operator new[].
446 if (E->getOperatorNew()->isReservedGlobalPlacementOperator())
John McCall5172ed92010-08-23 01:17:59 +0000447 return CharUnits::Zero();
448
John McCall6ec278d2011-01-27 09:37:56 +0000449 return CGF.CGM.getCXXABI().GetArrayCookieSize(E);
Anders Carlssona4d4c012009-09-23 16:07:23 +0000450}
451
John McCall7d166272011-05-15 07:14:44 +0000452static llvm::Value *EmitCXXNewAllocSize(CodeGenFunction &CGF,
453 const CXXNewExpr *e,
454 llvm::Value *&numElements,
455 llvm::Value *&sizeWithoutCookie) {
456 QualType type = e->getAllocatedType();
John McCall1e7fe752010-09-02 09:58:18 +0000457
John McCall7d166272011-05-15 07:14:44 +0000458 if (!e->isArray()) {
459 CharUnits typeSize = CGF.getContext().getTypeSizeInChars(type);
460 sizeWithoutCookie
461 = llvm::ConstantInt::get(CGF.SizeTy, typeSize.getQuantity());
462 return sizeWithoutCookie;
Douglas Gregor59174c02010-07-21 01:10:17 +0000463 }
Anders Carlssona4d4c012009-09-23 16:07:23 +0000464
John McCall7d166272011-05-15 07:14:44 +0000465 // The width of size_t.
466 unsigned sizeWidth = CGF.SizeTy->getBitWidth();
467
John McCall1e7fe752010-09-02 09:58:18 +0000468 // Figure out the cookie size.
John McCall7d166272011-05-15 07:14:44 +0000469 llvm::APInt cookieSize(sizeWidth,
470 CalculateCookiePadding(CGF, e).getQuantity());
John McCall1e7fe752010-09-02 09:58:18 +0000471
Anders Carlssona4d4c012009-09-23 16:07:23 +0000472 // Emit the array size expression.
Argyrios Kyrtzidise7ab92e2010-08-26 15:23:38 +0000473 // We multiply the size of all dimensions for NumElements.
474 // e.g for 'int[2][3]', ElemType is 'int' and NumElements is 6.
John McCall7d166272011-05-15 07:14:44 +0000475 numElements = CGF.EmitScalarExpr(e->getArraySize());
476 assert(isa<llvm::IntegerType>(numElements->getType()));
John McCall1e7fe752010-09-02 09:58:18 +0000477
John McCall7d166272011-05-15 07:14:44 +0000478 // The number of elements can be have an arbitrary integer type;
479 // essentially, we need to multiply it by a constant factor, add a
480 // cookie size, and verify that the result is representable as a
481 // size_t. That's just a gloss, though, and it's wrong in one
482 // important way: if the count is negative, it's an error even if
483 // the cookie size would bring the total size >= 0.
Douglas Gregor575a1c92011-05-20 16:38:50 +0000484 bool isSigned
485 = e->getArraySize()->getType()->isSignedIntegerOrEnumerationType();
Chris Lattner2acc6e32011-07-18 04:24:23 +0000486 llvm::IntegerType *numElementsType
John McCall7d166272011-05-15 07:14:44 +0000487 = cast<llvm::IntegerType>(numElements->getType());
488 unsigned numElementsWidth = numElementsType->getBitWidth();
489
490 // Compute the constant factor.
491 llvm::APInt arraySizeMultiplier(sizeWidth, 1);
Argyrios Kyrtzidise7ab92e2010-08-26 15:23:38 +0000492 while (const ConstantArrayType *CAT
John McCall7d166272011-05-15 07:14:44 +0000493 = CGF.getContext().getAsConstantArrayType(type)) {
494 type = CAT->getElementType();
495 arraySizeMultiplier *= CAT->getSize();
Argyrios Kyrtzidise7ab92e2010-08-26 15:23:38 +0000496 }
497
John McCall7d166272011-05-15 07:14:44 +0000498 CharUnits typeSize = CGF.getContext().getTypeSizeInChars(type);
499 llvm::APInt typeSizeMultiplier(sizeWidth, typeSize.getQuantity());
500 typeSizeMultiplier *= arraySizeMultiplier;
501
502 // This will be a size_t.
503 llvm::Value *size;
Chris Lattner83252dc2010-07-20 21:07:09 +0000504
Chris Lattner806941e2010-07-20 21:55:52 +0000505 // If someone is doing 'new int[42]' there is no need to do a dynamic check.
506 // Don't bloat the -O0 code.
John McCall7d166272011-05-15 07:14:44 +0000507 if (llvm::ConstantInt *numElementsC =
508 dyn_cast<llvm::ConstantInt>(numElements)) {
509 const llvm::APInt &count = numElementsC->getValue();
John McCall1e7fe752010-09-02 09:58:18 +0000510
John McCall7d166272011-05-15 07:14:44 +0000511 bool hasAnyOverflow = false;
John McCall1e7fe752010-09-02 09:58:18 +0000512
John McCall7d166272011-05-15 07:14:44 +0000513 // If 'count' was a negative number, it's an overflow.
514 if (isSigned && count.isNegative())
515 hasAnyOverflow = true;
John McCall1e7fe752010-09-02 09:58:18 +0000516
John McCall7d166272011-05-15 07:14:44 +0000517 // We want to do all this arithmetic in size_t. If numElements is
518 // wider than that, check whether it's already too big, and if so,
519 // overflow.
520 else if (numElementsWidth > sizeWidth &&
521 numElementsWidth - sizeWidth > count.countLeadingZeros())
522 hasAnyOverflow = true;
523
524 // Okay, compute a count at the right width.
525 llvm::APInt adjustedCount = count.zextOrTrunc(sizeWidth);
526
527 // Scale numElements by that. This might overflow, but we don't
528 // care because it only overflows if allocationSize does, too, and
529 // if that overflows then we shouldn't use this.
530 numElements = llvm::ConstantInt::get(CGF.SizeTy,
531 adjustedCount * arraySizeMultiplier);
532
533 // Compute the size before cookie, and track whether it overflowed.
534 bool overflow;
535 llvm::APInt allocationSize
536 = adjustedCount.umul_ov(typeSizeMultiplier, overflow);
537 hasAnyOverflow |= overflow;
538
539 // Add in the cookie, and check whether it's overflowed.
540 if (cookieSize != 0) {
541 // Save the current size without a cookie. This shouldn't be
542 // used if there was overflow.
543 sizeWithoutCookie = llvm::ConstantInt::get(CGF.SizeTy, allocationSize);
544
545 allocationSize = allocationSize.uadd_ov(cookieSize, overflow);
546 hasAnyOverflow |= overflow;
547 }
548
549 // On overflow, produce a -1 so operator new will fail.
550 if (hasAnyOverflow) {
551 size = llvm::Constant::getAllOnesValue(CGF.SizeTy);
552 } else {
553 size = llvm::ConstantInt::get(CGF.SizeTy, allocationSize);
554 }
555
556 // Otherwise, we might need to use the overflow intrinsics.
557 } else {
558 // There are up to four conditions we need to test for:
559 // 1) if isSigned, we need to check whether numElements is negative;
560 // 2) if numElementsWidth > sizeWidth, we need to check whether
561 // numElements is larger than something representable in size_t;
562 // 3) we need to compute
563 // sizeWithoutCookie := numElements * typeSizeMultiplier
564 // and check whether it overflows; and
565 // 4) if we need a cookie, we need to compute
566 // size := sizeWithoutCookie + cookieSize
567 // and check whether it overflows.
568
569 llvm::Value *hasOverflow = 0;
570
571 // If numElementsWidth > sizeWidth, then one way or another, we're
572 // going to have to do a comparison for (2), and this happens to
573 // take care of (1), too.
574 if (numElementsWidth > sizeWidth) {
575 llvm::APInt threshold(numElementsWidth, 1);
576 threshold <<= sizeWidth;
577
578 llvm::Value *thresholdV
579 = llvm::ConstantInt::get(numElementsType, threshold);
580
581 hasOverflow = CGF.Builder.CreateICmpUGE(numElements, thresholdV);
582 numElements = CGF.Builder.CreateTrunc(numElements, CGF.SizeTy);
583
584 // Otherwise, if we're signed, we want to sext up to size_t.
585 } else if (isSigned) {
586 if (numElementsWidth < sizeWidth)
587 numElements = CGF.Builder.CreateSExt(numElements, CGF.SizeTy);
588
589 // If there's a non-1 type size multiplier, then we can do the
590 // signedness check at the same time as we do the multiply
591 // because a negative number times anything will cause an
592 // unsigned overflow. Otherwise, we have to do it here.
593 if (typeSizeMultiplier == 1)
594 hasOverflow = CGF.Builder.CreateICmpSLT(numElements,
595 llvm::ConstantInt::get(CGF.SizeTy, 0));
596
597 // Otherwise, zext up to size_t if necessary.
598 } else if (numElementsWidth < sizeWidth) {
599 numElements = CGF.Builder.CreateZExt(numElements, CGF.SizeTy);
600 }
601
602 assert(numElements->getType() == CGF.SizeTy);
603
604 size = numElements;
605
606 // Multiply by the type size if necessary. This multiplier
607 // includes all the factors for nested arrays.
608 //
609 // This step also causes numElements to be scaled up by the
610 // nested-array factor if necessary. Overflow on this computation
611 // can be ignored because the result shouldn't be used if
612 // allocation fails.
613 if (typeSizeMultiplier != 1) {
John McCall7d166272011-05-15 07:14:44 +0000614 llvm::Value *umul_with_overflow
Benjamin Kramer8dd55a32011-07-14 17:45:50 +0000615 = CGF.CGM.getIntrinsic(llvm::Intrinsic::umul_with_overflow, CGF.SizeTy);
John McCall7d166272011-05-15 07:14:44 +0000616
617 llvm::Value *tsmV =
618 llvm::ConstantInt::get(CGF.SizeTy, typeSizeMultiplier);
619 llvm::Value *result =
620 CGF.Builder.CreateCall2(umul_with_overflow, size, tsmV);
621
622 llvm::Value *overflowed = CGF.Builder.CreateExtractValue(result, 1);
623 if (hasOverflow)
624 hasOverflow = CGF.Builder.CreateOr(hasOverflow, overflowed);
625 else
626 hasOverflow = overflowed;
627
628 size = CGF.Builder.CreateExtractValue(result, 0);
629
630 // Also scale up numElements by the array size multiplier.
631 if (arraySizeMultiplier != 1) {
632 // If the base element type size is 1, then we can re-use the
633 // multiply we just did.
634 if (typeSize.isOne()) {
635 assert(arraySizeMultiplier == typeSizeMultiplier);
636 numElements = size;
637
638 // Otherwise we need a separate multiply.
639 } else {
640 llvm::Value *asmV =
641 llvm::ConstantInt::get(CGF.SizeTy, arraySizeMultiplier);
642 numElements = CGF.Builder.CreateMul(numElements, asmV);
643 }
644 }
645 } else {
646 // numElements doesn't need to be scaled.
647 assert(arraySizeMultiplier == 1);
Chris Lattner806941e2010-07-20 21:55:52 +0000648 }
649
John McCall7d166272011-05-15 07:14:44 +0000650 // Add in the cookie size if necessary.
651 if (cookieSize != 0) {
652 sizeWithoutCookie = size;
653
John McCall7d166272011-05-15 07:14:44 +0000654 llvm::Value *uadd_with_overflow
Benjamin Kramer8dd55a32011-07-14 17:45:50 +0000655 = CGF.CGM.getIntrinsic(llvm::Intrinsic::uadd_with_overflow, CGF.SizeTy);
John McCall7d166272011-05-15 07:14:44 +0000656
657 llvm::Value *cookieSizeV = llvm::ConstantInt::get(CGF.SizeTy, cookieSize);
658 llvm::Value *result =
659 CGF.Builder.CreateCall2(uadd_with_overflow, size, cookieSizeV);
660
661 llvm::Value *overflowed = CGF.Builder.CreateExtractValue(result, 1);
662 if (hasOverflow)
663 hasOverflow = CGF.Builder.CreateOr(hasOverflow, overflowed);
664 else
665 hasOverflow = overflowed;
666
667 size = CGF.Builder.CreateExtractValue(result, 0);
John McCall1e7fe752010-09-02 09:58:18 +0000668 }
Anders Carlssona4d4c012009-09-23 16:07:23 +0000669
John McCall7d166272011-05-15 07:14:44 +0000670 // If we had any possibility of dynamic overflow, make a select to
671 // overwrite 'size' with an all-ones value, which should cause
672 // operator new to throw.
673 if (hasOverflow)
674 size = CGF.Builder.CreateSelect(hasOverflow,
675 llvm::Constant::getAllOnesValue(CGF.SizeTy),
676 size);
Chris Lattner806941e2010-07-20 21:55:52 +0000677 }
John McCall1e7fe752010-09-02 09:58:18 +0000678
John McCall7d166272011-05-15 07:14:44 +0000679 if (cookieSize == 0)
680 sizeWithoutCookie = size;
John McCall1e7fe752010-09-02 09:58:18 +0000681 else
John McCall7d166272011-05-15 07:14:44 +0000682 assert(sizeWithoutCookie && "didn't set sizeWithoutCookie?");
John McCall1e7fe752010-09-02 09:58:18 +0000683
John McCall7d166272011-05-15 07:14:44 +0000684 return size;
Anders Carlssona4d4c012009-09-23 16:07:23 +0000685}
686
Fariborz Jahanianef668722010-06-25 18:26:07 +0000687static void StoreAnyExprIntoOneUnit(CodeGenFunction &CGF, const CXXNewExpr *E,
688 llvm::Value *NewPtr) {
Fariborz Jahanianef668722010-06-25 18:26:07 +0000689
690 assert(E->getNumConstructorArgs() == 1 &&
691 "Can only have one argument to initializer of POD type.");
692
693 const Expr *Init = E->getConstructorArg(0);
694 QualType AllocType = E->getAllocatedType();
Daniel Dunbar91a16fa2010-08-21 02:24:36 +0000695
696 unsigned Alignment =
697 CGF.getContext().getTypeAlignInChars(AllocType).getQuantity();
John McCalla07398e2011-06-16 04:16:24 +0000698 if (!CGF.hasAggregateLLVMType(AllocType))
699 CGF.EmitScalarInit(Init, 0, CGF.MakeAddrLValue(NewPtr, AllocType, Alignment),
700 false);
Fariborz Jahanianef668722010-06-25 18:26:07 +0000701 else if (AllocType->isAnyComplexType())
702 CGF.EmitComplexExprIntoAddr(Init, NewPtr,
703 AllocType.isVolatileQualified());
John McCall558d2ab2010-09-15 10:14:12 +0000704 else {
705 AggValueSlot Slot
John McCall7c2349b2011-08-25 20:40:09 +0000706 = AggValueSlot::forAddr(NewPtr, AllocType.getQualifiers(),
707 AggValueSlot::IsDestructed,
708 AggValueSlot::DoesNotNeedGCBarriers);
John McCall558d2ab2010-09-15 10:14:12 +0000709 CGF.EmitAggExpr(Init, Slot);
710 }
Fariborz Jahanianef668722010-06-25 18:26:07 +0000711}
712
713void
714CodeGenFunction::EmitNewArrayInitializer(const CXXNewExpr *E,
715 llvm::Value *NewPtr,
716 llvm::Value *NumElements) {
Fariborz Jahanian5304c952010-06-25 20:01:13 +0000717 // We have a POD type.
718 if (E->getNumConstructorArgs() == 0)
719 return;
720
Chris Lattner2acc6e32011-07-18 04:24:23 +0000721 llvm::Type *SizeTy = ConvertType(getContext().getSizeType());
Fariborz Jahanianef668722010-06-25 18:26:07 +0000722
723 // Create a temporary for the loop index and initialize it with 0.
724 llvm::Value *IndexPtr = CreateTempAlloca(SizeTy, "loop.index");
725 llvm::Value *Zero = llvm::Constant::getNullValue(SizeTy);
726 Builder.CreateStore(Zero, IndexPtr);
727
728 // Start the loop with a block that tests the condition.
729 llvm::BasicBlock *CondBlock = createBasicBlock("for.cond");
730 llvm::BasicBlock *AfterFor = createBasicBlock("for.end");
731
732 EmitBlock(CondBlock);
733
734 llvm::BasicBlock *ForBody = createBasicBlock("for.body");
735
736 // Generate: if (loop-index < number-of-elements fall to the loop body,
737 // otherwise, go to the block after the for-loop.
738 llvm::Value *Counter = Builder.CreateLoad(IndexPtr);
739 llvm::Value *IsLess = Builder.CreateICmpULT(Counter, NumElements, "isless");
740 // If the condition is true, execute the body.
741 Builder.CreateCondBr(IsLess, ForBody, AfterFor);
742
743 EmitBlock(ForBody);
744
745 llvm::BasicBlock *ContinueBlock = createBasicBlock("for.inc");
746 // Inside the loop body, emit the constructor call on the array element.
747 Counter = Builder.CreateLoad(IndexPtr);
748 llvm::Value *Address = Builder.CreateInBoundsGEP(NewPtr, Counter,
749 "arrayidx");
750 StoreAnyExprIntoOneUnit(*this, E, Address);
751
752 EmitBlock(ContinueBlock);
753
754 // Emit the increment of the loop counter.
755 llvm::Value *NextVal = llvm::ConstantInt::get(SizeTy, 1);
756 Counter = Builder.CreateLoad(IndexPtr);
757 NextVal = Builder.CreateAdd(Counter, NextVal, "inc");
758 Builder.CreateStore(NextVal, IndexPtr);
759
760 // Finally, branch back up to the condition for the next iteration.
761 EmitBranch(CondBlock);
762
763 // Emit the fall-through block.
764 EmitBlock(AfterFor, true);
765}
766
Douglas Gregor59174c02010-07-21 01:10:17 +0000767static void EmitZeroMemSet(CodeGenFunction &CGF, QualType T,
768 llvm::Value *NewPtr, llvm::Value *Size) {
John McCalld16c2cf2011-02-08 08:22:06 +0000769 CGF.EmitCastToVoidPtr(NewPtr);
Ken Dyckfe710082011-01-19 01:58:38 +0000770 CharUnits Alignment = CGF.getContext().getTypeAlignInChars(T);
Benjamin Kramer9f0c7cc2010-12-30 00:13:21 +0000771 CGF.Builder.CreateMemSet(NewPtr, CGF.Builder.getInt8(0), Size,
Ken Dyckfe710082011-01-19 01:58:38 +0000772 Alignment.getQuantity(), false);
Douglas Gregor59174c02010-07-21 01:10:17 +0000773}
774
Anders Carlssona4d4c012009-09-23 16:07:23 +0000775static void EmitNewInitializer(CodeGenFunction &CGF, const CXXNewExpr *E,
776 llvm::Value *NewPtr,
Douglas Gregor59174c02010-07-21 01:10:17 +0000777 llvm::Value *NumElements,
778 llvm::Value *AllocSizeWithoutCookie) {
Anders Carlsson5d4d9462009-11-24 18:43:52 +0000779 if (E->isArray()) {
Anders Carlssone99bdb62010-05-03 15:09:17 +0000780 if (CXXConstructorDecl *Ctor = E->getConstructor()) {
Douglas Gregor59174c02010-07-21 01:10:17 +0000781 bool RequiresZeroInitialization = false;
Sean Hunt023df372011-05-09 18:22:59 +0000782 if (Ctor->getParent()->hasTrivialDefaultConstructor()) {
Douglas Gregor59174c02010-07-21 01:10:17 +0000783 // If new expression did not specify value-initialization, then there
784 // is no initialization.
785 if (!E->hasInitializer() || Ctor->getParent()->isEmpty())
786 return;
787
John McCallf16aa102010-08-22 21:01:12 +0000788 if (CGF.CGM.getTypes().isZeroInitializable(E->getAllocatedType())) {
Douglas Gregor59174c02010-07-21 01:10:17 +0000789 // Optimization: since zero initialization will just set the memory
790 // to all zeroes, generate a single memset to do it in one shot.
791 EmitZeroMemSet(CGF, E->getAllocatedType(), NewPtr,
792 AllocSizeWithoutCookie);
793 return;
794 }
795
796 RequiresZeroInitialization = true;
797 }
John McCallc3c07662011-07-13 06:10:41 +0000798
Douglas Gregor59174c02010-07-21 01:10:17 +0000799 CGF.EmitCXXAggrConstructorCall(Ctor, NumElements, NewPtr,
800 E->constructor_arg_begin(),
801 E->constructor_arg_end(),
802 RequiresZeroInitialization);
Anders Carlssone99bdb62010-05-03 15:09:17 +0000803 return;
Douglas Gregor59174c02010-07-21 01:10:17 +0000804 } else if (E->getNumConstructorArgs() == 1 &&
805 isa<ImplicitValueInitExpr>(E->getConstructorArg(0))) {
806 // Optimization: since zero initialization will just set the memory
807 // to all zeroes, generate a single memset to do it in one shot.
808 EmitZeroMemSet(CGF, E->getAllocatedType(), NewPtr,
809 AllocSizeWithoutCookie);
810 return;
811 } else {
Fariborz Jahanianef668722010-06-25 18:26:07 +0000812 CGF.EmitNewArrayInitializer(E, NewPtr, NumElements);
813 return;
814 }
Anders Carlssona4d4c012009-09-23 16:07:23 +0000815 }
Anders Carlsson5d4d9462009-11-24 18:43:52 +0000816
817 if (CXXConstructorDecl *Ctor = E->getConstructor()) {
Douglas Gregored8abf12010-07-08 06:14:04 +0000818 // Per C++ [expr.new]p15, if we have an initializer, then we're performing
819 // direct initialization. C++ [dcl.init]p5 requires that we
820 // zero-initialize storage if there are no user-declared constructors.
821 if (E->hasInitializer() &&
822 !Ctor->getParent()->hasUserDeclaredConstructor() &&
823 !Ctor->getParent()->isEmpty())
824 CGF.EmitNullInitialization(NewPtr, E->getAllocatedType());
825
Douglas Gregor84745672010-07-07 23:37:33 +0000826 CGF.EmitCXXConstructorCall(Ctor, Ctor_Complete, /*ForVirtualBase=*/false,
827 NewPtr, E->constructor_arg_begin(),
828 E->constructor_arg_end());
Anders Carlsson5d4d9462009-11-24 18:43:52 +0000829
830 return;
831 }
Fariborz Jahanian5304c952010-06-25 20:01:13 +0000832 // We have a POD type.
833 if (E->getNumConstructorArgs() == 0)
834 return;
835
Fariborz Jahanianef668722010-06-25 18:26:07 +0000836 StoreAnyExprIntoOneUnit(CGF, E, NewPtr);
Anders Carlssona4d4c012009-09-23 16:07:23 +0000837}
838
John McCall7d8647f2010-09-14 07:57:04 +0000839namespace {
840 /// A cleanup to call the given 'operator delete' function upon
841 /// abnormal exit from a new expression.
842 class CallDeleteDuringNew : public EHScopeStack::Cleanup {
843 size_t NumPlacementArgs;
844 const FunctionDecl *OperatorDelete;
845 llvm::Value *Ptr;
846 llvm::Value *AllocSize;
847
848 RValue *getPlacementArgs() { return reinterpret_cast<RValue*>(this+1); }
849
850 public:
851 static size_t getExtraSize(size_t NumPlacementArgs) {
852 return NumPlacementArgs * sizeof(RValue);
853 }
854
855 CallDeleteDuringNew(size_t NumPlacementArgs,
856 const FunctionDecl *OperatorDelete,
857 llvm::Value *Ptr,
858 llvm::Value *AllocSize)
859 : NumPlacementArgs(NumPlacementArgs), OperatorDelete(OperatorDelete),
860 Ptr(Ptr), AllocSize(AllocSize) {}
861
862 void setPlacementArg(unsigned I, RValue Arg) {
863 assert(I < NumPlacementArgs && "index out of range");
864 getPlacementArgs()[I] = Arg;
865 }
866
John McCallad346f42011-07-12 20:27:29 +0000867 void Emit(CodeGenFunction &CGF, Flags flags) {
John McCall7d8647f2010-09-14 07:57:04 +0000868 const FunctionProtoType *FPT
869 = OperatorDelete->getType()->getAs<FunctionProtoType>();
870 assert(FPT->getNumArgs() == NumPlacementArgs + 1 ||
John McCallc3846362010-09-14 21:45:42 +0000871 (FPT->getNumArgs() == 2 && NumPlacementArgs == 0));
John McCall7d8647f2010-09-14 07:57:04 +0000872
873 CallArgList DeleteArgs;
874
875 // The first argument is always a void*.
876 FunctionProtoType::arg_type_iterator AI = FPT->arg_type_begin();
Eli Friedman04c9a492011-05-02 17:57:46 +0000877 DeleteArgs.add(RValue::get(Ptr), *AI++);
John McCall7d8647f2010-09-14 07:57:04 +0000878
879 // A member 'operator delete' can take an extra 'size_t' argument.
880 if (FPT->getNumArgs() == NumPlacementArgs + 2)
Eli Friedman04c9a492011-05-02 17:57:46 +0000881 DeleteArgs.add(RValue::get(AllocSize), *AI++);
John McCall7d8647f2010-09-14 07:57:04 +0000882
883 // Pass the rest of the arguments, which must match exactly.
884 for (unsigned I = 0; I != NumPlacementArgs; ++I)
Eli Friedman04c9a492011-05-02 17:57:46 +0000885 DeleteArgs.add(getPlacementArgs()[I], *AI++);
John McCall7d8647f2010-09-14 07:57:04 +0000886
887 // Call 'operator delete'.
Tilmann Scheller9c6082f2011-03-02 21:36:49 +0000888 CGF.EmitCall(CGF.CGM.getTypes().getFunctionInfo(DeleteArgs, FPT),
John McCall7d8647f2010-09-14 07:57:04 +0000889 CGF.CGM.GetAddrOfFunction(OperatorDelete),
890 ReturnValueSlot(), DeleteArgs, OperatorDelete);
891 }
892 };
John McCall3019c442010-09-17 00:50:28 +0000893
894 /// A cleanup to call the given 'operator delete' function upon
895 /// abnormal exit from a new expression when the new expression is
896 /// conditional.
897 class CallDeleteDuringConditionalNew : public EHScopeStack::Cleanup {
898 size_t NumPlacementArgs;
899 const FunctionDecl *OperatorDelete;
John McCall804b8072011-01-28 10:53:53 +0000900 DominatingValue<RValue>::saved_type Ptr;
901 DominatingValue<RValue>::saved_type AllocSize;
John McCall3019c442010-09-17 00:50:28 +0000902
John McCall804b8072011-01-28 10:53:53 +0000903 DominatingValue<RValue>::saved_type *getPlacementArgs() {
904 return reinterpret_cast<DominatingValue<RValue>::saved_type*>(this+1);
John McCall3019c442010-09-17 00:50:28 +0000905 }
906
907 public:
908 static size_t getExtraSize(size_t NumPlacementArgs) {
John McCall804b8072011-01-28 10:53:53 +0000909 return NumPlacementArgs * sizeof(DominatingValue<RValue>::saved_type);
John McCall3019c442010-09-17 00:50:28 +0000910 }
911
912 CallDeleteDuringConditionalNew(size_t NumPlacementArgs,
913 const FunctionDecl *OperatorDelete,
John McCall804b8072011-01-28 10:53:53 +0000914 DominatingValue<RValue>::saved_type Ptr,
915 DominatingValue<RValue>::saved_type AllocSize)
John McCall3019c442010-09-17 00:50:28 +0000916 : NumPlacementArgs(NumPlacementArgs), OperatorDelete(OperatorDelete),
917 Ptr(Ptr), AllocSize(AllocSize) {}
918
John McCall804b8072011-01-28 10:53:53 +0000919 void setPlacementArg(unsigned I, DominatingValue<RValue>::saved_type Arg) {
John McCall3019c442010-09-17 00:50:28 +0000920 assert(I < NumPlacementArgs && "index out of range");
921 getPlacementArgs()[I] = Arg;
922 }
923
John McCallad346f42011-07-12 20:27:29 +0000924 void Emit(CodeGenFunction &CGF, Flags flags) {
John McCall3019c442010-09-17 00:50:28 +0000925 const FunctionProtoType *FPT
926 = OperatorDelete->getType()->getAs<FunctionProtoType>();
927 assert(FPT->getNumArgs() == NumPlacementArgs + 1 ||
928 (FPT->getNumArgs() == 2 && NumPlacementArgs == 0));
929
930 CallArgList DeleteArgs;
931
932 // The first argument is always a void*.
933 FunctionProtoType::arg_type_iterator AI = FPT->arg_type_begin();
Eli Friedman04c9a492011-05-02 17:57:46 +0000934 DeleteArgs.add(Ptr.restore(CGF), *AI++);
John McCall3019c442010-09-17 00:50:28 +0000935
936 // A member 'operator delete' can take an extra 'size_t' argument.
937 if (FPT->getNumArgs() == NumPlacementArgs + 2) {
John McCall804b8072011-01-28 10:53:53 +0000938 RValue RV = AllocSize.restore(CGF);
Eli Friedman04c9a492011-05-02 17:57:46 +0000939 DeleteArgs.add(RV, *AI++);
John McCall3019c442010-09-17 00:50:28 +0000940 }
941
942 // Pass the rest of the arguments, which must match exactly.
943 for (unsigned I = 0; I != NumPlacementArgs; ++I) {
John McCall804b8072011-01-28 10:53:53 +0000944 RValue RV = getPlacementArgs()[I].restore(CGF);
Eli Friedman04c9a492011-05-02 17:57:46 +0000945 DeleteArgs.add(RV, *AI++);
John McCall3019c442010-09-17 00:50:28 +0000946 }
947
948 // Call 'operator delete'.
Tilmann Scheller9c6082f2011-03-02 21:36:49 +0000949 CGF.EmitCall(CGF.CGM.getTypes().getFunctionInfo(DeleteArgs, FPT),
John McCall3019c442010-09-17 00:50:28 +0000950 CGF.CGM.GetAddrOfFunction(OperatorDelete),
951 ReturnValueSlot(), DeleteArgs, OperatorDelete);
952 }
953 };
954}
955
956/// Enter a cleanup to call 'operator delete' if the initializer in a
957/// new-expression throws.
958static void EnterNewDeleteCleanup(CodeGenFunction &CGF,
959 const CXXNewExpr *E,
960 llvm::Value *NewPtr,
961 llvm::Value *AllocSize,
962 const CallArgList &NewArgs) {
963 // If we're not inside a conditional branch, then the cleanup will
964 // dominate and we can do the easier (and more efficient) thing.
965 if (!CGF.isInConditionalBranch()) {
966 CallDeleteDuringNew *Cleanup = CGF.EHStack
967 .pushCleanupWithExtra<CallDeleteDuringNew>(EHCleanup,
968 E->getNumPlacementArgs(),
969 E->getOperatorDelete(),
970 NewPtr, AllocSize);
971 for (unsigned I = 0, N = E->getNumPlacementArgs(); I != N; ++I)
Eli Friedmanc6d07822011-05-02 18:05:27 +0000972 Cleanup->setPlacementArg(I, NewArgs[I+1].RV);
John McCall3019c442010-09-17 00:50:28 +0000973
974 return;
975 }
976
977 // Otherwise, we need to save all this stuff.
John McCall804b8072011-01-28 10:53:53 +0000978 DominatingValue<RValue>::saved_type SavedNewPtr =
979 DominatingValue<RValue>::save(CGF, RValue::get(NewPtr));
980 DominatingValue<RValue>::saved_type SavedAllocSize =
981 DominatingValue<RValue>::save(CGF, RValue::get(AllocSize));
John McCall3019c442010-09-17 00:50:28 +0000982
983 CallDeleteDuringConditionalNew *Cleanup = CGF.EHStack
984 .pushCleanupWithExtra<CallDeleteDuringConditionalNew>(InactiveEHCleanup,
985 E->getNumPlacementArgs(),
986 E->getOperatorDelete(),
987 SavedNewPtr,
988 SavedAllocSize);
989 for (unsigned I = 0, N = E->getNumPlacementArgs(); I != N; ++I)
John McCall804b8072011-01-28 10:53:53 +0000990 Cleanup->setPlacementArg(I,
Eli Friedmanc6d07822011-05-02 18:05:27 +0000991 DominatingValue<RValue>::save(CGF, NewArgs[I+1].RV));
John McCall3019c442010-09-17 00:50:28 +0000992
993 CGF.ActivateCleanupBlock(CGF.EHStack.stable_begin());
John McCall7d8647f2010-09-14 07:57:04 +0000994}
995
Anders Carlsson16d81b82009-09-22 22:53:17 +0000996llvm::Value *CodeGenFunction::EmitCXXNewExpr(const CXXNewExpr *E) {
John McCallc2f3e7f2011-03-07 03:12:35 +0000997 // The element type being allocated.
998 QualType allocType = getContext().getBaseElementType(E->getAllocatedType());
John McCall1e7fe752010-09-02 09:58:18 +0000999
John McCallc2f3e7f2011-03-07 03:12:35 +00001000 // 1. Build a call to the allocation function.
1001 FunctionDecl *allocator = E->getOperatorNew();
1002 const FunctionProtoType *allocatorType =
1003 allocator->getType()->castAs<FunctionProtoType>();
Anders Carlsson16d81b82009-09-22 22:53:17 +00001004
John McCallc2f3e7f2011-03-07 03:12:35 +00001005 CallArgList allocatorArgs;
Anders Carlsson16d81b82009-09-22 22:53:17 +00001006
1007 // The allocation size is the first argument.
John McCallc2f3e7f2011-03-07 03:12:35 +00001008 QualType sizeType = getContext().getSizeType();
Anders Carlsson16d81b82009-09-22 22:53:17 +00001009
John McCallc2f3e7f2011-03-07 03:12:35 +00001010 llvm::Value *numElements = 0;
1011 llvm::Value *allocSizeWithoutCookie = 0;
1012 llvm::Value *allocSize =
John McCall7d166272011-05-15 07:14:44 +00001013 EmitCXXNewAllocSize(*this, E, numElements, allocSizeWithoutCookie);
Anders Carlssona4d4c012009-09-23 16:07:23 +00001014
Eli Friedman04c9a492011-05-02 17:57:46 +00001015 allocatorArgs.add(RValue::get(allocSize), sizeType);
Anders Carlsson16d81b82009-09-22 22:53:17 +00001016
1017 // Emit the rest of the arguments.
1018 // FIXME: Ideally, this should just use EmitCallArgs.
John McCallc2f3e7f2011-03-07 03:12:35 +00001019 CXXNewExpr::const_arg_iterator placementArg = E->placement_arg_begin();
Anders Carlsson16d81b82009-09-22 22:53:17 +00001020
1021 // First, use the types from the function type.
1022 // We start at 1 here because the first argument (the allocation size)
1023 // has already been emitted.
John McCallc2f3e7f2011-03-07 03:12:35 +00001024 for (unsigned i = 1, e = allocatorType->getNumArgs(); i != e;
1025 ++i, ++placementArg) {
1026 QualType argType = allocatorType->getArgType(i);
Anders Carlsson16d81b82009-09-22 22:53:17 +00001027
John McCallc2f3e7f2011-03-07 03:12:35 +00001028 assert(getContext().hasSameUnqualifiedType(argType.getNonReferenceType(),
1029 placementArg->getType()) &&
Anders Carlsson16d81b82009-09-22 22:53:17 +00001030 "type mismatch in call argument!");
1031
John McCall413ebdb2011-03-11 20:59:21 +00001032 EmitCallArg(allocatorArgs, *placementArg, argType);
Anders Carlsson16d81b82009-09-22 22:53:17 +00001033 }
1034
1035 // Either we've emitted all the call args, or we have a call to a
1036 // variadic function.
John McCallc2f3e7f2011-03-07 03:12:35 +00001037 assert((placementArg == E->placement_arg_end() ||
1038 allocatorType->isVariadic()) &&
1039 "Extra arguments to non-variadic function!");
Anders Carlsson16d81b82009-09-22 22:53:17 +00001040
1041 // If we still have any arguments, emit them using the type of the argument.
John McCallc2f3e7f2011-03-07 03:12:35 +00001042 for (CXXNewExpr::const_arg_iterator placementArgsEnd = E->placement_arg_end();
1043 placementArg != placementArgsEnd; ++placementArg) {
John McCall413ebdb2011-03-11 20:59:21 +00001044 EmitCallArg(allocatorArgs, *placementArg, placementArg->getType());
Anders Carlsson16d81b82009-09-22 22:53:17 +00001045 }
1046
John McCallb1c98a32011-05-16 01:05:12 +00001047 // Emit the allocation call. If the allocator is a global placement
1048 // operator, just "inline" it directly.
1049 RValue RV;
1050 if (allocator->isReservedGlobalPlacementOperator()) {
1051 assert(allocatorArgs.size() == 2);
1052 RV = allocatorArgs[1].RV;
1053 // TODO: kill any unnecessary computations done for the size
1054 // argument.
1055 } else {
1056 RV = EmitCall(CGM.getTypes().getFunctionInfo(allocatorArgs, allocatorType),
1057 CGM.GetAddrOfFunction(allocator), ReturnValueSlot(),
1058 allocatorArgs, allocator);
1059 }
Anders Carlsson16d81b82009-09-22 22:53:17 +00001060
John McCallc2f3e7f2011-03-07 03:12:35 +00001061 // Emit a null check on the allocation result if the allocation
1062 // function is allowed to return null (because it has a non-throwing
1063 // exception spec; for this part, we inline
1064 // CXXNewExpr::shouldNullCheckAllocation()) and we have an
1065 // interesting initializer.
Sebastian Redl8026f6d2011-03-13 17:09:40 +00001066 bool nullCheck = allocatorType->isNothrow(getContext()) &&
John McCallf85e1932011-06-15 23:02:42 +00001067 !(allocType.isPODType(getContext()) && !E->hasInitializer());
Anders Carlsson16d81b82009-09-22 22:53:17 +00001068
John McCallc2f3e7f2011-03-07 03:12:35 +00001069 llvm::BasicBlock *nullCheckBB = 0;
1070 llvm::BasicBlock *contBB = 0;
Anders Carlsson16d81b82009-09-22 22:53:17 +00001071
John McCallc2f3e7f2011-03-07 03:12:35 +00001072 llvm::Value *allocation = RV.getScalarVal();
1073 unsigned AS =
1074 cast<llvm::PointerType>(allocation->getType())->getAddressSpace();
Anders Carlsson16d81b82009-09-22 22:53:17 +00001075
John McCalla7f633f2011-03-07 01:52:56 +00001076 // The null-check means that the initializer is conditionally
1077 // evaluated.
1078 ConditionalEvaluation conditional(*this);
1079
John McCallc2f3e7f2011-03-07 03:12:35 +00001080 if (nullCheck) {
John McCalla7f633f2011-03-07 01:52:56 +00001081 conditional.begin(*this);
John McCallc2f3e7f2011-03-07 03:12:35 +00001082
1083 nullCheckBB = Builder.GetInsertBlock();
1084 llvm::BasicBlock *notNullBB = createBasicBlock("new.notnull");
1085 contBB = createBasicBlock("new.cont");
1086
1087 llvm::Value *isNull = Builder.CreateIsNull(allocation, "new.isnull");
1088 Builder.CreateCondBr(isNull, contBB, notNullBB);
1089 EmitBlock(notNullBB);
Anders Carlsson16d81b82009-09-22 22:53:17 +00001090 }
Ken Dyckcaf647c2010-01-26 19:44:24 +00001091
John McCallc2f3e7f2011-03-07 03:12:35 +00001092 assert((allocSize == allocSizeWithoutCookie) ==
John McCall1e7fe752010-09-02 09:58:18 +00001093 CalculateCookiePadding(*this, E).isZero());
John McCallc2f3e7f2011-03-07 03:12:35 +00001094 if (allocSize != allocSizeWithoutCookie) {
John McCall1e7fe752010-09-02 09:58:18 +00001095 assert(E->isArray());
John McCallc2f3e7f2011-03-07 03:12:35 +00001096 allocation = CGM.getCXXABI().InitializeArrayCookie(*this, allocation,
1097 numElements,
1098 E, allocType);
John McCall1e7fe752010-09-02 09:58:18 +00001099 }
Anders Carlsson6ac5fc42009-09-23 18:59:48 +00001100
John McCall7d8647f2010-09-14 07:57:04 +00001101 // If there's an operator delete, enter a cleanup to call it if an
1102 // exception is thrown.
John McCallc2f3e7f2011-03-07 03:12:35 +00001103 EHScopeStack::stable_iterator operatorDeleteCleanup;
John McCallb1c98a32011-05-16 01:05:12 +00001104 if (E->getOperatorDelete() &&
1105 !E->getOperatorDelete()->isReservedGlobalPlacementOperator()) {
John McCallc2f3e7f2011-03-07 03:12:35 +00001106 EnterNewDeleteCleanup(*this, E, allocation, allocSize, allocatorArgs);
1107 operatorDeleteCleanup = EHStack.stable_begin();
John McCall7d8647f2010-09-14 07:57:04 +00001108 }
1109
Chris Lattner2acc6e32011-07-18 04:24:23 +00001110 llvm::Type *elementPtrTy
John McCallc2f3e7f2011-03-07 03:12:35 +00001111 = ConvertTypeForMem(allocType)->getPointerTo(AS);
1112 llvm::Value *result = Builder.CreateBitCast(allocation, elementPtrTy);
John McCall7d8647f2010-09-14 07:57:04 +00001113
John McCall1e7fe752010-09-02 09:58:18 +00001114 if (E->isArray()) {
John McCallc2f3e7f2011-03-07 03:12:35 +00001115 EmitNewInitializer(*this, E, result, numElements, allocSizeWithoutCookie);
John McCall1e7fe752010-09-02 09:58:18 +00001116
1117 // NewPtr is a pointer to the base element type. If we're
1118 // allocating an array of arrays, we'll need to cast back to the
1119 // array pointer type.
Chris Lattner2acc6e32011-07-18 04:24:23 +00001120 llvm::Type *resultType = ConvertTypeForMem(E->getType());
John McCallc2f3e7f2011-03-07 03:12:35 +00001121 if (result->getType() != resultType)
1122 result = Builder.CreateBitCast(result, resultType);
John McCall1e7fe752010-09-02 09:58:18 +00001123 } else {
John McCallc2f3e7f2011-03-07 03:12:35 +00001124 EmitNewInitializer(*this, E, result, numElements, allocSizeWithoutCookie);
Fariborz Jahanianceb43b62010-03-24 16:57:01 +00001125 }
John McCall7d8647f2010-09-14 07:57:04 +00001126
1127 // Deactivate the 'operator delete' cleanup if we finished
1128 // initialization.
John McCallc2f3e7f2011-03-07 03:12:35 +00001129 if (operatorDeleteCleanup.isValid())
1130 DeactivateCleanupBlock(operatorDeleteCleanup);
Fariborz Jahanianceb43b62010-03-24 16:57:01 +00001131
John McCallc2f3e7f2011-03-07 03:12:35 +00001132 if (nullCheck) {
John McCalla7f633f2011-03-07 01:52:56 +00001133 conditional.end(*this);
1134
John McCallc2f3e7f2011-03-07 03:12:35 +00001135 llvm::BasicBlock *notNullBB = Builder.GetInsertBlock();
1136 EmitBlock(contBB);
Anders Carlsson16d81b82009-09-22 22:53:17 +00001137
Jay Foadbbf3bac2011-03-30 11:28:58 +00001138 llvm::PHINode *PHI = Builder.CreatePHI(result->getType(), 2);
John McCallc2f3e7f2011-03-07 03:12:35 +00001139 PHI->addIncoming(result, notNullBB);
1140 PHI->addIncoming(llvm::Constant::getNullValue(result->getType()),
1141 nullCheckBB);
Anders Carlsson16d81b82009-09-22 22:53:17 +00001142
John McCallc2f3e7f2011-03-07 03:12:35 +00001143 result = PHI;
Anders Carlsson16d81b82009-09-22 22:53:17 +00001144 }
John McCall1e7fe752010-09-02 09:58:18 +00001145
John McCallc2f3e7f2011-03-07 03:12:35 +00001146 return result;
Anders Carlsson16d81b82009-09-22 22:53:17 +00001147}
1148
Eli Friedman5fe05982009-11-18 00:50:08 +00001149void CodeGenFunction::EmitDeleteCall(const FunctionDecl *DeleteFD,
1150 llvm::Value *Ptr,
1151 QualType DeleteTy) {
John McCall1e7fe752010-09-02 09:58:18 +00001152 assert(DeleteFD->getOverloadedOperator() == OO_Delete);
1153
Eli Friedman5fe05982009-11-18 00:50:08 +00001154 const FunctionProtoType *DeleteFTy =
1155 DeleteFD->getType()->getAs<FunctionProtoType>();
1156
1157 CallArgList DeleteArgs;
1158
Anders Carlsson871d0782009-12-13 20:04:38 +00001159 // Check if we need to pass the size to the delete operator.
1160 llvm::Value *Size = 0;
1161 QualType SizeTy;
1162 if (DeleteFTy->getNumArgs() == 2) {
1163 SizeTy = DeleteFTy->getArgType(1);
Ken Dyck4f122ef2010-01-26 19:59:28 +00001164 CharUnits DeleteTypeSize = getContext().getTypeSizeInChars(DeleteTy);
1165 Size = llvm::ConstantInt::get(ConvertType(SizeTy),
1166 DeleteTypeSize.getQuantity());
Anders Carlsson871d0782009-12-13 20:04:38 +00001167 }
1168
Eli Friedman5fe05982009-11-18 00:50:08 +00001169 QualType ArgTy = DeleteFTy->getArgType(0);
1170 llvm::Value *DeletePtr = Builder.CreateBitCast(Ptr, ConvertType(ArgTy));
Eli Friedman04c9a492011-05-02 17:57:46 +00001171 DeleteArgs.add(RValue::get(DeletePtr), ArgTy);
Eli Friedman5fe05982009-11-18 00:50:08 +00001172
Anders Carlsson871d0782009-12-13 20:04:38 +00001173 if (Size)
Eli Friedman04c9a492011-05-02 17:57:46 +00001174 DeleteArgs.add(RValue::get(Size), SizeTy);
Eli Friedman5fe05982009-11-18 00:50:08 +00001175
1176 // Emit the call to delete.
Tilmann Scheller9c6082f2011-03-02 21:36:49 +00001177 EmitCall(CGM.getTypes().getFunctionInfo(DeleteArgs, DeleteFTy),
Anders Carlssonf3c47c92009-12-24 19:25:24 +00001178 CGM.GetAddrOfFunction(DeleteFD), ReturnValueSlot(),
Eli Friedman5fe05982009-11-18 00:50:08 +00001179 DeleteArgs, DeleteFD);
1180}
1181
John McCall1e7fe752010-09-02 09:58:18 +00001182namespace {
1183 /// Calls the given 'operator delete' on a single object.
1184 struct CallObjectDelete : EHScopeStack::Cleanup {
1185 llvm::Value *Ptr;
1186 const FunctionDecl *OperatorDelete;
1187 QualType ElementType;
1188
1189 CallObjectDelete(llvm::Value *Ptr,
1190 const FunctionDecl *OperatorDelete,
1191 QualType ElementType)
1192 : Ptr(Ptr), OperatorDelete(OperatorDelete), ElementType(ElementType) {}
1193
John McCallad346f42011-07-12 20:27:29 +00001194 void Emit(CodeGenFunction &CGF, Flags flags) {
John McCall1e7fe752010-09-02 09:58:18 +00001195 CGF.EmitDeleteCall(OperatorDelete, Ptr, ElementType);
1196 }
1197 };
1198}
1199
1200/// Emit the code for deleting a single object.
1201static void EmitObjectDelete(CodeGenFunction &CGF,
1202 const FunctionDecl *OperatorDelete,
1203 llvm::Value *Ptr,
Douglas Gregora8b20f72011-07-13 00:54:47 +00001204 QualType ElementType,
1205 bool UseGlobalDelete) {
John McCall1e7fe752010-09-02 09:58:18 +00001206 // Find the destructor for the type, if applicable. If the
1207 // destructor is virtual, we'll just emit the vcall and return.
1208 const CXXDestructorDecl *Dtor = 0;
1209 if (const RecordType *RT = ElementType->getAs<RecordType>()) {
1210 CXXRecordDecl *RD = cast<CXXRecordDecl>(RT->getDecl());
Eli Friedmanaebab722011-08-02 18:05:30 +00001211 if (RD->hasDefinition() && !RD->hasTrivialDestructor()) {
John McCall1e7fe752010-09-02 09:58:18 +00001212 Dtor = RD->getDestructor();
1213
1214 if (Dtor->isVirtual()) {
Douglas Gregora8b20f72011-07-13 00:54:47 +00001215 if (UseGlobalDelete) {
1216 // If we're supposed to call the global delete, make sure we do so
1217 // even if the destructor throws.
1218 CGF.EHStack.pushCleanup<CallObjectDelete>(NormalAndEHCleanup,
1219 Ptr, OperatorDelete,
1220 ElementType);
1221 }
1222
Chris Lattner2acc6e32011-07-18 04:24:23 +00001223 llvm::Type *Ty =
John McCallfc400282010-09-03 01:26:39 +00001224 CGF.getTypes().GetFunctionType(CGF.getTypes().getFunctionInfo(Dtor,
1225 Dtor_Complete),
John McCall1e7fe752010-09-02 09:58:18 +00001226 /*isVariadic=*/false);
1227
1228 llvm::Value *Callee
Douglas Gregora8b20f72011-07-13 00:54:47 +00001229 = CGF.BuildVirtualCall(Dtor,
1230 UseGlobalDelete? Dtor_Complete : Dtor_Deleting,
1231 Ptr, Ty);
John McCall1e7fe752010-09-02 09:58:18 +00001232 CGF.EmitCXXMemberCall(Dtor, Callee, ReturnValueSlot(), Ptr, /*VTT=*/0,
1233 0, 0);
1234
Douglas Gregora8b20f72011-07-13 00:54:47 +00001235 if (UseGlobalDelete) {
1236 CGF.PopCleanupBlock();
1237 }
1238
John McCall1e7fe752010-09-02 09:58:18 +00001239 return;
1240 }
1241 }
1242 }
1243
1244 // Make sure that we call delete even if the dtor throws.
John McCall3ad32c82011-01-28 08:37:24 +00001245 // This doesn't have to a conditional cleanup because we're going
1246 // to pop it off in a second.
John McCall1e7fe752010-09-02 09:58:18 +00001247 CGF.EHStack.pushCleanup<CallObjectDelete>(NormalAndEHCleanup,
1248 Ptr, OperatorDelete, ElementType);
1249
1250 if (Dtor)
1251 CGF.EmitCXXDestructorCall(Dtor, Dtor_Complete,
1252 /*ForVirtualBase=*/false, Ptr);
John McCallf85e1932011-06-15 23:02:42 +00001253 else if (CGF.getLangOptions().ObjCAutoRefCount &&
1254 ElementType->isObjCLifetimeType()) {
1255 switch (ElementType.getObjCLifetime()) {
1256 case Qualifiers::OCL_None:
1257 case Qualifiers::OCL_ExplicitNone:
1258 case Qualifiers::OCL_Autoreleasing:
1259 break;
John McCall1e7fe752010-09-02 09:58:18 +00001260
John McCallf85e1932011-06-15 23:02:42 +00001261 case Qualifiers::OCL_Strong: {
1262 // Load the pointer value.
1263 llvm::Value *PtrValue = CGF.Builder.CreateLoad(Ptr,
1264 ElementType.isVolatileQualified());
1265
1266 CGF.EmitARCRelease(PtrValue, /*precise*/ true);
1267 break;
1268 }
1269
1270 case Qualifiers::OCL_Weak:
1271 CGF.EmitARCDestroyWeak(Ptr);
1272 break;
1273 }
1274 }
1275
John McCall1e7fe752010-09-02 09:58:18 +00001276 CGF.PopCleanupBlock();
1277}
1278
1279namespace {
1280 /// Calls the given 'operator delete' on an array of objects.
1281 struct CallArrayDelete : EHScopeStack::Cleanup {
1282 llvm::Value *Ptr;
1283 const FunctionDecl *OperatorDelete;
1284 llvm::Value *NumElements;
1285 QualType ElementType;
1286 CharUnits CookieSize;
1287
1288 CallArrayDelete(llvm::Value *Ptr,
1289 const FunctionDecl *OperatorDelete,
1290 llvm::Value *NumElements,
1291 QualType ElementType,
1292 CharUnits CookieSize)
1293 : Ptr(Ptr), OperatorDelete(OperatorDelete), NumElements(NumElements),
1294 ElementType(ElementType), CookieSize(CookieSize) {}
1295
John McCallad346f42011-07-12 20:27:29 +00001296 void Emit(CodeGenFunction &CGF, Flags flags) {
John McCall1e7fe752010-09-02 09:58:18 +00001297 const FunctionProtoType *DeleteFTy =
1298 OperatorDelete->getType()->getAs<FunctionProtoType>();
1299 assert(DeleteFTy->getNumArgs() == 1 || DeleteFTy->getNumArgs() == 2);
1300
1301 CallArgList Args;
1302
1303 // Pass the pointer as the first argument.
1304 QualType VoidPtrTy = DeleteFTy->getArgType(0);
1305 llvm::Value *DeletePtr
1306 = CGF.Builder.CreateBitCast(Ptr, CGF.ConvertType(VoidPtrTy));
Eli Friedman04c9a492011-05-02 17:57:46 +00001307 Args.add(RValue::get(DeletePtr), VoidPtrTy);
John McCall1e7fe752010-09-02 09:58:18 +00001308
1309 // Pass the original requested size as the second argument.
1310 if (DeleteFTy->getNumArgs() == 2) {
1311 QualType size_t = DeleteFTy->getArgType(1);
Chris Lattner2acc6e32011-07-18 04:24:23 +00001312 llvm::IntegerType *SizeTy
John McCall1e7fe752010-09-02 09:58:18 +00001313 = cast<llvm::IntegerType>(CGF.ConvertType(size_t));
1314
1315 CharUnits ElementTypeSize =
1316 CGF.CGM.getContext().getTypeSizeInChars(ElementType);
1317
1318 // The size of an element, multiplied by the number of elements.
1319 llvm::Value *Size
1320 = llvm::ConstantInt::get(SizeTy, ElementTypeSize.getQuantity());
1321 Size = CGF.Builder.CreateMul(Size, NumElements);
1322
1323 // Plus the size of the cookie if applicable.
1324 if (!CookieSize.isZero()) {
1325 llvm::Value *CookieSizeV
1326 = llvm::ConstantInt::get(SizeTy, CookieSize.getQuantity());
1327 Size = CGF.Builder.CreateAdd(Size, CookieSizeV);
1328 }
1329
Eli Friedman04c9a492011-05-02 17:57:46 +00001330 Args.add(RValue::get(Size), size_t);
John McCall1e7fe752010-09-02 09:58:18 +00001331 }
1332
1333 // Emit the call to delete.
Tilmann Scheller9c6082f2011-03-02 21:36:49 +00001334 CGF.EmitCall(CGF.getTypes().getFunctionInfo(Args, DeleteFTy),
John McCall1e7fe752010-09-02 09:58:18 +00001335 CGF.CGM.GetAddrOfFunction(OperatorDelete),
1336 ReturnValueSlot(), Args, OperatorDelete);
1337 }
1338 };
1339}
1340
1341/// Emit the code for deleting an array of objects.
1342static void EmitArrayDelete(CodeGenFunction &CGF,
John McCall6ec278d2011-01-27 09:37:56 +00001343 const CXXDeleteExpr *E,
John McCall7cfd76c2011-07-13 01:41:37 +00001344 llvm::Value *deletedPtr,
1345 QualType elementType) {
1346 llvm::Value *numElements = 0;
1347 llvm::Value *allocatedPtr = 0;
1348 CharUnits cookieSize;
1349 CGF.CGM.getCXXABI().ReadArrayCookie(CGF, deletedPtr, E, elementType,
1350 numElements, allocatedPtr, cookieSize);
John McCall1e7fe752010-09-02 09:58:18 +00001351
John McCall7cfd76c2011-07-13 01:41:37 +00001352 assert(allocatedPtr && "ReadArrayCookie didn't set allocated pointer");
John McCall1e7fe752010-09-02 09:58:18 +00001353
1354 // Make sure that we call delete even if one of the dtors throws.
John McCall7cfd76c2011-07-13 01:41:37 +00001355 const FunctionDecl *operatorDelete = E->getOperatorDelete();
John McCall1e7fe752010-09-02 09:58:18 +00001356 CGF.EHStack.pushCleanup<CallArrayDelete>(NormalAndEHCleanup,
John McCall7cfd76c2011-07-13 01:41:37 +00001357 allocatedPtr, operatorDelete,
1358 numElements, elementType,
1359 cookieSize);
John McCall1e7fe752010-09-02 09:58:18 +00001360
John McCall7cfd76c2011-07-13 01:41:37 +00001361 // Destroy the elements.
1362 if (QualType::DestructionKind dtorKind = elementType.isDestructedType()) {
1363 assert(numElements && "no element count for a type with a destructor!");
1364
John McCall7cfd76c2011-07-13 01:41:37 +00001365 llvm::Value *arrayEnd =
1366 CGF.Builder.CreateInBoundsGEP(deletedPtr, numElements, "delete.end");
John McCallfbf780a2011-07-13 08:09:46 +00001367
1368 // Note that it is legal to allocate a zero-length array, and we
1369 // can never fold the check away because the length should always
1370 // come from a cookie.
John McCall7cfd76c2011-07-13 01:41:37 +00001371 CGF.emitArrayDestroy(deletedPtr, arrayEnd, elementType,
1372 CGF.getDestroyer(dtorKind),
John McCallfbf780a2011-07-13 08:09:46 +00001373 /*checkZeroLength*/ true,
John McCall7cfd76c2011-07-13 01:41:37 +00001374 CGF.needsEHCleanup(dtorKind));
John McCall1e7fe752010-09-02 09:58:18 +00001375 }
1376
John McCall7cfd76c2011-07-13 01:41:37 +00001377 // Pop the cleanup block.
John McCall1e7fe752010-09-02 09:58:18 +00001378 CGF.PopCleanupBlock();
1379}
1380
Anders Carlsson16d81b82009-09-22 22:53:17 +00001381void CodeGenFunction::EmitCXXDeleteExpr(const CXXDeleteExpr *E) {
Fariborz Jahanian72c21532009-11-13 19:27:47 +00001382
Douglas Gregor90916562009-09-29 18:16:17 +00001383 // Get at the argument before we performed the implicit conversion
1384 // to void*.
1385 const Expr *Arg = E->getArgument();
1386 while (const ImplicitCastExpr *ICE = dyn_cast<ImplicitCastExpr>(Arg)) {
John McCall2de56d12010-08-25 11:45:40 +00001387 if (ICE->getCastKind() != CK_UserDefinedConversion &&
Douglas Gregor90916562009-09-29 18:16:17 +00001388 ICE->getType()->isVoidPointerType())
1389 Arg = ICE->getSubExpr();
Douglas Gregord69dd782009-10-01 05:49:51 +00001390 else
1391 break;
Douglas Gregor90916562009-09-29 18:16:17 +00001392 }
Anders Carlsson16d81b82009-09-22 22:53:17 +00001393
Douglas Gregor90916562009-09-29 18:16:17 +00001394 llvm::Value *Ptr = EmitScalarExpr(Arg);
Anders Carlsson16d81b82009-09-22 22:53:17 +00001395
1396 // Null check the pointer.
1397 llvm::BasicBlock *DeleteNotNull = createBasicBlock("delete.notnull");
1398 llvm::BasicBlock *DeleteEnd = createBasicBlock("delete.end");
1399
Anders Carlssonb9241242011-04-11 00:30:07 +00001400 llvm::Value *IsNull = Builder.CreateIsNull(Ptr, "isnull");
Anders Carlsson16d81b82009-09-22 22:53:17 +00001401
1402 Builder.CreateCondBr(IsNull, DeleteEnd, DeleteNotNull);
1403 EmitBlock(DeleteNotNull);
Anders Carlsson566abee2009-11-13 04:45:41 +00001404
John McCall1e7fe752010-09-02 09:58:18 +00001405 // We might be deleting a pointer to array. If so, GEP down to the
1406 // first non-array element.
1407 // (this assumes that A(*)[3][7] is converted to [3 x [7 x %A]]*)
1408 QualType DeleteTy = Arg->getType()->getAs<PointerType>()->getPointeeType();
1409 if (DeleteTy->isConstantArrayType()) {
1410 llvm::Value *Zero = Builder.getInt32(0);
Chris Lattner5f9e2722011-07-23 10:55:15 +00001411 SmallVector<llvm::Value*,8> GEP;
John McCall1e7fe752010-09-02 09:58:18 +00001412
1413 GEP.push_back(Zero); // point at the outermost array
1414
1415 // For each layer of array type we're pointing at:
1416 while (const ConstantArrayType *Arr
1417 = getContext().getAsConstantArrayType(DeleteTy)) {
1418 // 1. Unpeel the array type.
1419 DeleteTy = Arr->getElementType();
1420
1421 // 2. GEP to the first element of the array.
1422 GEP.push_back(Zero);
Anders Carlsson16d81b82009-09-22 22:53:17 +00001423 }
John McCall1e7fe752010-09-02 09:58:18 +00001424
Jay Foad0f6ac7c2011-07-22 08:16:57 +00001425 Ptr = Builder.CreateInBoundsGEP(Ptr, GEP, "del.first");
Anders Carlsson16d81b82009-09-22 22:53:17 +00001426 }
1427
Douglas Gregoreede61a2010-09-02 17:38:50 +00001428 assert(ConvertTypeForMem(DeleteTy) ==
1429 cast<llvm::PointerType>(Ptr->getType())->getElementType());
John McCall1e7fe752010-09-02 09:58:18 +00001430
1431 if (E->isArrayForm()) {
John McCall6ec278d2011-01-27 09:37:56 +00001432 EmitArrayDelete(*this, E, Ptr, DeleteTy);
John McCall1e7fe752010-09-02 09:58:18 +00001433 } else {
Douglas Gregora8b20f72011-07-13 00:54:47 +00001434 EmitObjectDelete(*this, E->getOperatorDelete(), Ptr, DeleteTy,
1435 E->isGlobalDelete());
John McCall1e7fe752010-09-02 09:58:18 +00001436 }
Anders Carlsson16d81b82009-09-22 22:53:17 +00001437
Anders Carlsson16d81b82009-09-22 22:53:17 +00001438 EmitBlock(DeleteEnd);
1439}
Mike Stumpc2e84ae2009-11-15 08:09:41 +00001440
Anders Carlsson4bdbc0c2011-04-11 14:13:40 +00001441static llvm::Constant *getBadTypeidFn(CodeGenFunction &CGF) {
1442 // void __cxa_bad_typeid();
1443
Chris Lattner2acc6e32011-07-18 04:24:23 +00001444 llvm::Type *VoidTy = llvm::Type::getVoidTy(CGF.getLLVMContext());
1445 llvm::FunctionType *FTy =
Anders Carlsson4bdbc0c2011-04-11 14:13:40 +00001446 llvm::FunctionType::get(VoidTy, false);
1447
1448 return CGF.CGM.CreateRuntimeFunction(FTy, "__cxa_bad_typeid");
1449}
1450
1451static void EmitBadTypeidCall(CodeGenFunction &CGF) {
Anders Carlssonad3692bb2011-04-13 02:35:36 +00001452 llvm::Value *Fn = getBadTypeidFn(CGF);
Jay Foad4c7d9f12011-07-15 08:37:34 +00001453 CGF.EmitCallOrInvoke(Fn).setDoesNotReturn();
Anders Carlsson4bdbc0c2011-04-11 14:13:40 +00001454 CGF.Builder.CreateUnreachable();
1455}
1456
Anders Carlsson3f6c5e12011-04-18 00:57:03 +00001457static llvm::Value *EmitTypeidFromVTable(CodeGenFunction &CGF,
1458 const Expr *E,
Chris Lattner2acc6e32011-07-18 04:24:23 +00001459 llvm::Type *StdTypeInfoPtrTy) {
Anders Carlsson3f6c5e12011-04-18 00:57:03 +00001460 // Get the vtable pointer.
1461 llvm::Value *ThisPtr = CGF.EmitLValue(E).getAddress();
1462
1463 // C++ [expr.typeid]p2:
1464 // If the glvalue expression is obtained by applying the unary * operator to
1465 // a pointer and the pointer is a null pointer value, the typeid expression
1466 // throws the std::bad_typeid exception.
1467 if (const UnaryOperator *UO = dyn_cast<UnaryOperator>(E->IgnoreParens())) {
1468 if (UO->getOpcode() == UO_Deref) {
1469 llvm::BasicBlock *BadTypeidBlock =
1470 CGF.createBasicBlock("typeid.bad_typeid");
1471 llvm::BasicBlock *EndBlock =
1472 CGF.createBasicBlock("typeid.end");
1473
1474 llvm::Value *IsNull = CGF.Builder.CreateIsNull(ThisPtr);
1475 CGF.Builder.CreateCondBr(IsNull, BadTypeidBlock, EndBlock);
1476
1477 CGF.EmitBlock(BadTypeidBlock);
1478 EmitBadTypeidCall(CGF);
1479 CGF.EmitBlock(EndBlock);
1480 }
1481 }
1482
1483 llvm::Value *Value = CGF.GetVTablePtr(ThisPtr,
1484 StdTypeInfoPtrTy->getPointerTo());
1485
1486 // Load the type info.
1487 Value = CGF.Builder.CreateConstInBoundsGEP1_64(Value, -1ULL);
1488 return CGF.Builder.CreateLoad(Value);
1489}
1490
John McCall3ad32c82011-01-28 08:37:24 +00001491llvm::Value *CodeGenFunction::EmitCXXTypeidExpr(const CXXTypeidExpr *E) {
Chris Lattner2acc6e32011-07-18 04:24:23 +00001492 llvm::Type *StdTypeInfoPtrTy =
Anders Carlsson3f6c5e12011-04-18 00:57:03 +00001493 ConvertType(E->getType())->getPointerTo();
Anders Carlsson31b7f522009-12-11 02:46:30 +00001494
Anders Carlsson1d7088d2009-12-17 07:09:17 +00001495 if (E->isTypeOperand()) {
1496 llvm::Constant *TypeInfo =
1497 CGM.GetAddrOfRTTIDescriptor(E->getTypeOperand());
Anders Carlsson3f6c5e12011-04-18 00:57:03 +00001498 return Builder.CreateBitCast(TypeInfo, StdTypeInfoPtrTy);
Anders Carlsson1d7088d2009-12-17 07:09:17 +00001499 }
Anders Carlsson4bdbc0c2011-04-11 14:13:40 +00001500
Anders Carlsson3f6c5e12011-04-18 00:57:03 +00001501 // C++ [expr.typeid]p2:
1502 // When typeid is applied to a glvalue expression whose type is a
1503 // polymorphic class type, the result refers to a std::type_info object
1504 // representing the type of the most derived object (that is, the dynamic
1505 // type) to which the glvalue refers.
1506 if (E->getExprOperand()->isGLValue()) {
1507 if (const RecordType *RT =
1508 E->getExprOperand()->getType()->getAs<RecordType>()) {
1509 const CXXRecordDecl *RD = cast<CXXRecordDecl>(RT->getDecl());
1510 if (RD->isPolymorphic())
1511 return EmitTypeidFromVTable(*this, E->getExprOperand(),
1512 StdTypeInfoPtrTy);
Anders Carlsson1d7088d2009-12-17 07:09:17 +00001513 }
Mike Stumpc2e84ae2009-11-15 08:09:41 +00001514 }
Anders Carlsson3f6c5e12011-04-18 00:57:03 +00001515
1516 QualType OperandTy = E->getExprOperand()->getType();
1517 return Builder.CreateBitCast(CGM.GetAddrOfRTTIDescriptor(OperandTy),
1518 StdTypeInfoPtrTy);
Mike Stumpc2e84ae2009-11-15 08:09:41 +00001519}
Mike Stumpc849c052009-11-16 06:50:58 +00001520
Anders Carlssonf0cb4a62011-04-11 00:46:40 +00001521static llvm::Constant *getDynamicCastFn(CodeGenFunction &CGF) {
1522 // void *__dynamic_cast(const void *sub,
1523 // const abi::__class_type_info *src,
1524 // const abi::__class_type_info *dst,
1525 // std::ptrdiff_t src2dst_offset);
1526
Chris Lattner9cbe4f02011-07-09 17:41:47 +00001527 llvm::Type *Int8PtrTy = llvm::Type::getInt8PtrTy(CGF.getLLVMContext());
1528 llvm::Type *PtrDiffTy =
Anders Carlssonf0cb4a62011-04-11 00:46:40 +00001529 CGF.ConvertType(CGF.getContext().getPointerDiffType());
1530
Chris Lattner9cbe4f02011-07-09 17:41:47 +00001531 llvm::Type *Args[4] = { Int8PtrTy, Int8PtrTy, Int8PtrTy, PtrDiffTy };
Anders Carlssonf0cb4a62011-04-11 00:46:40 +00001532
Chris Lattner2acc6e32011-07-18 04:24:23 +00001533 llvm::FunctionType *FTy =
Anders Carlssonf0cb4a62011-04-11 00:46:40 +00001534 llvm::FunctionType::get(Int8PtrTy, Args, false);
1535
1536 return CGF.CGM.CreateRuntimeFunction(FTy, "__dynamic_cast");
1537}
1538
1539static llvm::Constant *getBadCastFn(CodeGenFunction &CGF) {
1540 // void __cxa_bad_cast();
1541
Chris Lattner2acc6e32011-07-18 04:24:23 +00001542 llvm::Type *VoidTy = llvm::Type::getVoidTy(CGF.getLLVMContext());
1543 llvm::FunctionType *FTy =
Anders Carlssonf0cb4a62011-04-11 00:46:40 +00001544 llvm::FunctionType::get(VoidTy, false);
1545
1546 return CGF.CGM.CreateRuntimeFunction(FTy, "__cxa_bad_cast");
1547}
1548
Anders Carlsson3ddcdd52011-04-11 01:45:29 +00001549static void EmitBadCastCall(CodeGenFunction &CGF) {
Anders Carlssonad3692bb2011-04-13 02:35:36 +00001550 llvm::Value *Fn = getBadCastFn(CGF);
Jay Foad4c7d9f12011-07-15 08:37:34 +00001551 CGF.EmitCallOrInvoke(Fn).setDoesNotReturn();
Anders Carlsson3ddcdd52011-04-11 01:45:29 +00001552 CGF.Builder.CreateUnreachable();
1553}
1554
Anders Carlssonf0cb4a62011-04-11 00:46:40 +00001555static llvm::Value *
1556EmitDynamicCastCall(CodeGenFunction &CGF, llvm::Value *Value,
1557 QualType SrcTy, QualType DestTy,
1558 llvm::BasicBlock *CastEnd) {
Chris Lattner2acc6e32011-07-18 04:24:23 +00001559 llvm::Type *PtrDiffLTy =
Anders Carlssonf0cb4a62011-04-11 00:46:40 +00001560 CGF.ConvertType(CGF.getContext().getPointerDiffType());
Chris Lattner2acc6e32011-07-18 04:24:23 +00001561 llvm::Type *DestLTy = CGF.ConvertType(DestTy);
Anders Carlssonf0cb4a62011-04-11 00:46:40 +00001562
1563 if (const PointerType *PTy = DestTy->getAs<PointerType>()) {
1564 if (PTy->getPointeeType()->isVoidType()) {
1565 // C++ [expr.dynamic.cast]p7:
1566 // If T is "pointer to cv void," then the result is a pointer to the
1567 // most derived object pointed to by v.
1568
1569 // Get the vtable pointer.
1570 llvm::Value *VTable = CGF.GetVTablePtr(Value, PtrDiffLTy->getPointerTo());
1571
1572 // Get the offset-to-top from the vtable.
1573 llvm::Value *OffsetToTop =
1574 CGF.Builder.CreateConstInBoundsGEP1_64(VTable, -2ULL);
1575 OffsetToTop = CGF.Builder.CreateLoad(OffsetToTop, "offset.to.top");
1576
1577 // Finally, add the offset to the pointer.
1578 Value = CGF.EmitCastToVoidPtr(Value);
1579 Value = CGF.Builder.CreateInBoundsGEP(Value, OffsetToTop);
1580
1581 return CGF.Builder.CreateBitCast(Value, DestLTy);
1582 }
1583 }
1584
1585 QualType SrcRecordTy;
1586 QualType DestRecordTy;
1587
1588 if (const PointerType *DestPTy = DestTy->getAs<PointerType>()) {
1589 SrcRecordTy = SrcTy->castAs<PointerType>()->getPointeeType();
1590 DestRecordTy = DestPTy->getPointeeType();
1591 } else {
1592 SrcRecordTy = SrcTy;
1593 DestRecordTy = DestTy->castAs<ReferenceType>()->getPointeeType();
1594 }
1595
1596 assert(SrcRecordTy->isRecordType() && "source type must be a record type!");
1597 assert(DestRecordTy->isRecordType() && "dest type must be a record type!");
1598
1599 llvm::Value *SrcRTTI =
1600 CGF.CGM.GetAddrOfRTTIDescriptor(SrcRecordTy.getUnqualifiedType());
1601 llvm::Value *DestRTTI =
1602 CGF.CGM.GetAddrOfRTTIDescriptor(DestRecordTy.getUnqualifiedType());
1603
1604 // FIXME: Actually compute a hint here.
1605 llvm::Value *OffsetHint = llvm::ConstantInt::get(PtrDiffLTy, -1ULL);
1606
1607 // Emit the call to __dynamic_cast.
1608 Value = CGF.EmitCastToVoidPtr(Value);
1609 Value = CGF.Builder.CreateCall4(getDynamicCastFn(CGF), Value,
1610 SrcRTTI, DestRTTI, OffsetHint);
1611 Value = CGF.Builder.CreateBitCast(Value, DestLTy);
1612
1613 /// C++ [expr.dynamic.cast]p9:
1614 /// A failed cast to reference type throws std::bad_cast
1615 if (DestTy->isReferenceType()) {
1616 llvm::BasicBlock *BadCastBlock =
1617 CGF.createBasicBlock("dynamic_cast.bad_cast");
1618
1619 llvm::Value *IsNull = CGF.Builder.CreateIsNull(Value);
1620 CGF.Builder.CreateCondBr(IsNull, BadCastBlock, CastEnd);
1621
1622 CGF.EmitBlock(BadCastBlock);
Anders Carlsson3ddcdd52011-04-11 01:45:29 +00001623 EmitBadCastCall(CGF);
Anders Carlssonf0cb4a62011-04-11 00:46:40 +00001624 }
1625
1626 return Value;
1627}
1628
Anders Carlsson3ddcdd52011-04-11 01:45:29 +00001629static llvm::Value *EmitDynamicCastToNull(CodeGenFunction &CGF,
1630 QualType DestTy) {
Chris Lattner2acc6e32011-07-18 04:24:23 +00001631 llvm::Type *DestLTy = CGF.ConvertType(DestTy);
Anders Carlsson3ddcdd52011-04-11 01:45:29 +00001632 if (DestTy->isPointerType())
1633 return llvm::Constant::getNullValue(DestLTy);
1634
1635 /// C++ [expr.dynamic.cast]p9:
1636 /// A failed cast to reference type throws std::bad_cast
1637 EmitBadCastCall(CGF);
1638
1639 CGF.EmitBlock(CGF.createBasicBlock("dynamic_cast.end"));
1640 return llvm::UndefValue::get(DestLTy);
1641}
1642
Anders Carlssonf0cb4a62011-04-11 00:46:40 +00001643llvm::Value *CodeGenFunction::EmitDynamicCast(llvm::Value *Value,
Mike Stumpc849c052009-11-16 06:50:58 +00001644 const CXXDynamicCastExpr *DCE) {
Anders Carlsson1d7088d2009-12-17 07:09:17 +00001645 QualType DestTy = DCE->getTypeAsWritten();
Anders Carlssonf0cb4a62011-04-11 00:46:40 +00001646
Anders Carlsson3ddcdd52011-04-11 01:45:29 +00001647 if (DCE->isAlwaysNull())
1648 return EmitDynamicCastToNull(*this, DestTy);
1649
1650 QualType SrcTy = DCE->getSubExpr()->getType();
1651
Anders Carlssonf0cb4a62011-04-11 00:46:40 +00001652 // C++ [expr.dynamic.cast]p4:
1653 // If the value of v is a null pointer value in the pointer case, the result
1654 // is the null pointer value of type T.
1655 bool ShouldNullCheckSrcValue = SrcTy->isPointerType();
Anders Carlsson1d7088d2009-12-17 07:09:17 +00001656
Anders Carlssonf0cb4a62011-04-11 00:46:40 +00001657 llvm::BasicBlock *CastNull = 0;
1658 llvm::BasicBlock *CastNotNull = 0;
1659 llvm::BasicBlock *CastEnd = createBasicBlock("dynamic_cast.end");
Mike Stumpc849c052009-11-16 06:50:58 +00001660
Anders Carlssonf0cb4a62011-04-11 00:46:40 +00001661 if (ShouldNullCheckSrcValue) {
1662 CastNull = createBasicBlock("dynamic_cast.null");
1663 CastNotNull = createBasicBlock("dynamic_cast.notnull");
1664
1665 llvm::Value *IsNull = Builder.CreateIsNull(Value);
1666 Builder.CreateCondBr(IsNull, CastNull, CastNotNull);
1667 EmitBlock(CastNotNull);
Mike Stumpc849c052009-11-16 06:50:58 +00001668 }
1669
Anders Carlssonf0cb4a62011-04-11 00:46:40 +00001670 Value = EmitDynamicCastCall(*this, Value, SrcTy, DestTy, CastEnd);
1671
1672 if (ShouldNullCheckSrcValue) {
1673 EmitBranch(CastEnd);
1674
1675 EmitBlock(CastNull);
1676 EmitBranch(CastEnd);
1677 }
1678
1679 EmitBlock(CastEnd);
1680
1681 if (ShouldNullCheckSrcValue) {
1682 llvm::PHINode *PHI = Builder.CreatePHI(Value->getType(), 2);
1683 PHI->addIncoming(Value, CastNotNull);
1684 PHI->addIncoming(llvm::Constant::getNullValue(Value->getType()), CastNull);
1685
1686 Value = PHI;
1687 }
1688
1689 return Value;
Mike Stumpc849c052009-11-16 06:50:58 +00001690}