1 //===--- CodeGenFunction.cpp - Emit LLVM Code from ASTs for a Function ----===//
2 //
3 //                     The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 //
10 // This coordinates the per-function state used while generating code.
11 //
12 //===----------------------------------------------------------------------===//
13 
14 #include "CodeGenFunction.h"
15 #include "CodeGenModule.h"
16 #include "CGCXXABI.h"
17 #include "CGDebugInfo.h"
18 #include "CGException.h"
19 #include "clang/Basic/TargetInfo.h"
20 #include "clang/AST/APValue.h"
21 #include "clang/AST/ASTContext.h"
22 #include "clang/AST/Decl.h"
23 #include "clang/AST/DeclCXX.h"
24 #include "clang/AST/StmtCXX.h"
25 #include "clang/Frontend/CodeGenOptions.h"
26 #include "llvm/Target/TargetData.h"
27 #include "llvm/Intrinsics.h"
28 using namespace clang;
29 using namespace CodeGen;
30 
31 CodeGenFunction::CodeGenFunction(CodeGenModule &cgm)
32   : CGM(cgm), Target(CGM.getContext().Target),
33     Builder(cgm.getModule().getContext()),
34     BlockInfo(0), BlockPointer(0),
35     NormalCleanupDest(0), EHCleanupDest(0), NextCleanupDestIndex(1),
36     ExceptionSlot(0), DebugInfo(0), IndirectBranch(0),
37     SwitchInsn(0), CaseRangeBlock(0),
38     DidCallStackSave(false), UnreachableBlock(0),
39     CXXThisDecl(0), CXXThisValue(0), CXXVTTDecl(0), CXXVTTValue(0),
40     OutermostConditional(0), TerminateLandingPad(0), TerminateHandler(0),
41     TrapBB(0) {
42 
43   // Get some frequently used types.
44   LLVMPointerWidth = Target.getPointerWidth(0);
45   llvm::LLVMContext &LLVMContext = CGM.getLLVMContext();
46   IntPtrTy = llvm::IntegerType::get(LLVMContext, LLVMPointerWidth);
47   Int32Ty  = llvm::Type::getInt32Ty(LLVMContext);
48   Int64Ty  = llvm::Type::getInt64Ty(LLVMContext);
49   Int8PtrTy = cgm.Int8PtrTy;
50 
51   Exceptions = getContext().getLangOptions().Exceptions;
52   CatchUndefined = getContext().getLangOptions().CatchUndefined;
53   CGM.getCXXABI().getMangleContext().startNewFunction();
54 }
55 
56 ASTContext &CodeGenFunction::getContext() const {
57   return CGM.getContext();
58 }
59 
60 
61 const llvm::Type *CodeGenFunction::ConvertTypeForMem(QualType T) {
62   return CGM.getTypes().ConvertTypeForMem(T);
63 }
64 
65 const llvm::Type *CodeGenFunction::ConvertType(QualType T) {
66   return CGM.getTypes().ConvertType(T);
67 }
68 
69 bool CodeGenFunction::hasAggregateLLVMType(QualType T) {
70   return T->isRecordType() || T->isArrayType() || T->isAnyComplexType() ||
71     T->isObjCObjectType();
72 }
73 
74 void CodeGenFunction::EmitReturnBlock() {
75   // For cleanliness, we try to avoid emitting the return block for
76   // simple cases.
77   llvm::BasicBlock *CurBB = Builder.GetInsertBlock();
78 
79   if (CurBB) {
80     assert(!CurBB->getTerminator() && "Unexpected terminated block.");
81 
82     // We have a valid insert point, reuse it if it is empty or there are no
83     // explicit jumps to the return block.
84     if (CurBB->empty() || ReturnBlock.getBlock()->use_empty()) {
85       ReturnBlock.getBlock()->replaceAllUsesWith(CurBB);
86       delete ReturnBlock.getBlock();
87     } else
88       EmitBlock(ReturnBlock.getBlock());
89     return;
90   }
91 
92   // Otherwise, if the return block is the target of a single direct
93   // branch then we can just put the code in that block instead. This
94   // cleans up functions which started with a unified return block.
95   if (ReturnBlock.getBlock()->hasOneUse()) {
96     llvm::BranchInst *BI =
97       dyn_cast<llvm::BranchInst>(*ReturnBlock.getBlock()->use_begin());
98     if (BI && BI->isUnconditional() &&
99         BI->getSuccessor(0) == ReturnBlock.getBlock()) {
100       // Reset insertion point and delete the branch.
101       Builder.SetInsertPoint(BI->getParent());
102       BI->eraseFromParent();
103       delete ReturnBlock.getBlock();
104       return;
105     }
106   }
107 
108   // FIXME: We are at an unreachable point, there is no reason to emit the block
109   // unless it has uses. However, we still need a place to put the debug
110   // region.end for now.
111 
112   EmitBlock(ReturnBlock.getBlock());
113 }
114 
115 static void EmitIfUsed(CodeGenFunction &CGF, llvm::BasicBlock *BB) {
116   if (!BB) return;
117   if (!BB->use_empty())
118     return CGF.CurFn->getBasicBlockList().push_back(BB);
119   delete BB;
120 }
121 
122 void CodeGenFunction::FinishFunction(SourceLocation EndLoc) {
123   assert(BreakContinueStack.empty() &&
124          "mismatched push/pop in break/continue stack!");
125 
126   // Emit function epilog (to return).
127   EmitReturnBlock();
128 
129   if (ShouldInstrumentFunction())
130     EmitFunctionInstrumentation("__cyg_profile_func_exit");
131 
132   // Emit debug descriptor for function end.
133   if (CGDebugInfo *DI = getDebugInfo()) {
134     DI->setLocation(EndLoc);
135     DI->EmitFunctionEnd(Builder);
136   }
137 
138   EmitFunctionEpilog(*CurFnInfo);
139   EmitEndEHSpec(CurCodeDecl);
140 
141   assert(EHStack.empty() &&
142          "did not remove all scopes from cleanup stack!");
143 
144   // If someone did an indirect goto, emit the indirect goto block at the end of
145   // the function.
146   if (IndirectBranch) {
147     EmitBlock(IndirectBranch->getParent());
148     Builder.ClearInsertionPoint();
149   }
150 
151   // Remove the AllocaInsertPt instruction, which is just a convenience for us.
152   llvm::Instruction *Ptr = AllocaInsertPt;
153   AllocaInsertPt = 0;
154   Ptr->eraseFromParent();
155 
156   // If someone took the address of a label but never did an indirect goto, we
157   // made a zero entry PHI node, which is illegal, zap it now.
158   if (IndirectBranch) {
159     llvm::PHINode *PN = cast<llvm::PHINode>(IndirectBranch->getAddress());
160     if (PN->getNumIncomingValues() == 0) {
161       PN->replaceAllUsesWith(llvm::UndefValue::get(PN->getType()));
162       PN->eraseFromParent();
163     }
164   }
165 
166   EmitIfUsed(*this, RethrowBlock.getBlock());
167   EmitIfUsed(*this, TerminateLandingPad);
168   EmitIfUsed(*this, TerminateHandler);
169   EmitIfUsed(*this, UnreachableBlock);
170 
171   if (CGM.getCodeGenOpts().EmitDeclMetadata)
172     EmitDeclMetadata();
173 }
174 
175 /// ShouldInstrumentFunction - Return true if the current function should be
176 /// instrumented with __cyg_profile_func_* calls
177 bool CodeGenFunction::ShouldInstrumentFunction() {
178   if (!CGM.getCodeGenOpts().InstrumentFunctions)
179     return false;
180   if (CurFuncDecl->hasAttr<NoInstrumentFunctionAttr>())
181     return false;
182   return true;
183 }
184 
185 /// EmitFunctionInstrumentation - Emit LLVM code to call the specified
186 /// instrumentation function with the current function and the call site, if
187 /// function instrumentation is enabled.
188 void CodeGenFunction::EmitFunctionInstrumentation(const char *Fn) {
189   const llvm::PointerType *PointerTy;
190   const llvm::FunctionType *FunctionTy;
191   std::vector<const llvm::Type*> ProfileFuncArgs;
192 
193   // void __cyg_profile_func_{enter,exit} (void *this_fn, void *call_site);
194   PointerTy = Int8PtrTy;
195   ProfileFuncArgs.push_back(PointerTy);
196   ProfileFuncArgs.push_back(PointerTy);
197   FunctionTy = llvm::FunctionType::get(llvm::Type::getVoidTy(getLLVMContext()),
198                                        ProfileFuncArgs, false);
199 
200   llvm::Constant *F = CGM.CreateRuntimeFunction(FunctionTy, Fn);
201   llvm::CallInst *CallSite = Builder.CreateCall(
202     CGM.getIntrinsic(llvm::Intrinsic::returnaddress, 0, 0),
203     llvm::ConstantInt::get(Int32Ty, 0),
204     "callsite");
205 
206   Builder.CreateCall2(F,
207                       llvm::ConstantExpr::getBitCast(CurFn, PointerTy),
208                       CallSite);
209 }
210 
211 void CodeGenFunction::EmitMCountInstrumentation() {
212   llvm::FunctionType *FTy =
213     llvm::FunctionType::get(llvm::Type::getVoidTy(getLLVMContext()), false);
214 
215   llvm::Constant *MCountFn = CGM.CreateRuntimeFunction(FTy,
216                                                        Target.getMCountName());
217   Builder.CreateCall(MCountFn);
218 }
219 
220 void CodeGenFunction::StartFunction(GlobalDecl GD, QualType RetTy,
221                                     llvm::Function *Fn,
222                                     const FunctionArgList &Args,
223                                     SourceLocation StartLoc) {
224   const Decl *D = GD.getDecl();
225 
226   DidCallStackSave = false;
227   CurCodeDecl = CurFuncDecl = D;
228   FnRetTy = RetTy;
229   CurFn = Fn;
230   assert(CurFn->isDeclaration() && "Function already has body?");
231 
232   // Pass inline keyword to optimizer if it appears explicitly on any
233   // declaration.
234   if (const FunctionDecl *FD = dyn_cast_or_null<FunctionDecl>(D))
235     for (FunctionDecl::redecl_iterator RI = FD->redecls_begin(),
236            RE = FD->redecls_end(); RI != RE; ++RI)
237       if (RI->isInlineSpecified()) {
238         Fn->addFnAttr(llvm::Attribute::InlineHint);
239         break;
240       }
241 
242   llvm::BasicBlock *EntryBB = createBasicBlock("entry", CurFn);
243 
244   // Create a marker to make it easy to insert allocas into the entryblock
245   // later.  Don't create this with the builder, because we don't want it
246   // folded.
247   llvm::Value *Undef = llvm::UndefValue::get(Int32Ty);
248   AllocaInsertPt = new llvm::BitCastInst(Undef, Int32Ty, "", EntryBB);
249   if (Builder.isNamePreserving())
250     AllocaInsertPt->setName("allocapt");
251 
252   ReturnBlock = getJumpDestInCurrentScope("return");
253 
254   Builder.SetInsertPoint(EntryBB);
255 
256   // Emit subprogram debug descriptor.
257   if (CGDebugInfo *DI = getDebugInfo()) {
258     // FIXME: what is going on here and why does it ignore all these
259     // interesting type properties?
260     QualType FnType =
261       getContext().getFunctionType(RetTy, 0, 0,
262                                    FunctionProtoType::ExtProtoInfo());
263 
264     DI->setLocation(StartLoc);
265     DI->EmitFunctionStart(GD, FnType, CurFn, Builder);
266   }
267 
268   if (ShouldInstrumentFunction())
269     EmitFunctionInstrumentation("__cyg_profile_func_enter");
270 
271   if (CGM.getCodeGenOpts().InstrumentForProfiling)
272     EmitMCountInstrumentation();
273 
274   // FIXME: Leaked.
275   // CC info is ignored, hopefully?
276   CurFnInfo = &CGM.getTypes().getFunctionInfo(FnRetTy, Args,
277                                               FunctionType::ExtInfo());
278 
279   if (RetTy->isVoidType()) {
280     // Void type; nothing to return.
281     ReturnValue = 0;
282   } else if (CurFnInfo->getReturnInfo().getKind() == ABIArgInfo::Indirect &&
283              hasAggregateLLVMType(CurFnInfo->getReturnType())) {
284     // Indirect aggregate return; emit returned value directly into sret slot.
285     // This reduces code size, and affects correctness in C++.
286     ReturnValue = CurFn->arg_begin();
287   } else {
288     ReturnValue = CreateIRTemp(RetTy, "retval");
289   }
290 
291   EmitStartEHSpec(CurCodeDecl);
292   EmitFunctionProlog(*CurFnInfo, CurFn, Args);
293 
294   if (D && isa<CXXMethodDecl>(D) && cast<CXXMethodDecl>(D)->isInstance())
295     CGM.getCXXABI().EmitInstanceFunctionProlog(*this);
296 
297   // If any of the arguments have a variably modified type, make sure to
298   // emit the type size.
299   for (FunctionArgList::const_iterator i = Args.begin(), e = Args.end();
300        i != e; ++i) {
301     QualType Ty = i->second;
302 
303     if (Ty->isVariablyModifiedType())
304       EmitVLASize(Ty);
305   }
306 }
307 
308 void CodeGenFunction::EmitFunctionBody(FunctionArgList &Args) {
309   const FunctionDecl *FD = cast<FunctionDecl>(CurGD.getDecl());
310   assert(FD->getBody());
311   EmitStmt(FD->getBody());
312 }
313 
314 /// Tries to mark the given function nounwind based on the
315 /// non-existence of any throwing calls within it.  We believe this is
316 /// lightweight enough to do at -O0.
317 static void TryMarkNoThrow(llvm::Function *F) {
318   // LLVM treats 'nounwind' on a function as part of the type, so we
319   // can't do this on functions that can be overwritten.
320   if (F->mayBeOverridden()) return;
321 
322   for (llvm::Function::iterator FI = F->begin(), FE = F->end(); FI != FE; ++FI)
323     for (llvm::BasicBlock::iterator
324            BI = FI->begin(), BE = FI->end(); BI != BE; ++BI)
325       if (llvm::CallInst *Call = dyn_cast<llvm::CallInst>(&*BI))
326         if (!Call->doesNotThrow())
327           return;
328   F->setDoesNotThrow(true);
329 }
330 
331 void CodeGenFunction::GenerateCode(GlobalDecl GD, llvm::Function *Fn) {
332   const FunctionDecl *FD = cast<FunctionDecl>(GD.getDecl());
333 
334   // Check if we should generate debug info for this function.
335   if (CGM.getDebugInfo() && !FD->hasAttr<NoDebugAttr>())
336     DebugInfo = CGM.getDebugInfo();
337 
338   FunctionArgList Args;
339   QualType ResTy = FD->getResultType();
340 
341   CurGD = GD;
342   if (isa<CXXMethodDecl>(FD) && cast<CXXMethodDecl>(FD)->isInstance())
343     CGM.getCXXABI().BuildInstanceFunctionParams(*this, ResTy, Args);
344 
345   if (FD->getNumParams()) {
346     const FunctionProtoType* FProto = FD->getType()->getAs<FunctionProtoType>();
347     assert(FProto && "Function def must have prototype!");
348 
349     for (unsigned i = 0, e = FD->getNumParams(); i != e; ++i)
350       Args.push_back(std::make_pair(FD->getParamDecl(i),
351                                     FProto->getArgType(i)));
352   }
353 
354   SourceRange BodyRange;
355   if (Stmt *Body = FD->getBody()) BodyRange = Body->getSourceRange();
356 
357   // Emit the standard function prologue.
358   StartFunction(GD, ResTy, Fn, Args, BodyRange.getBegin());
359 
360   // Generate the body of the function.
361   if (isa<CXXDestructorDecl>(FD))
362     EmitDestructorBody(Args);
363   else if (isa<CXXConstructorDecl>(FD))
364     EmitConstructorBody(Args);
365   else
366     EmitFunctionBody(Args);
367 
368   // Emit the standard function epilogue.
369   FinishFunction(BodyRange.getEnd());
370 
371   // If we haven't marked the function nothrow through other means, do
372   // a quick pass now to see if we can.
373   if (!CurFn->doesNotThrow())
374     TryMarkNoThrow(CurFn);
375 }
376 
377 /// ContainsLabel - Return true if the statement contains a label in it.  If
378 /// this statement is not executed normally, it not containing a label means
379 /// that we can just remove the code.
380 bool CodeGenFunction::ContainsLabel(const Stmt *S, bool IgnoreCaseStmts) {
381   // Null statement, not a label!
382   if (S == 0) return false;
383 
384   // If this is a label, we have to emit the code, consider something like:
385   // if (0) {  ...  foo:  bar(); }  goto foo;
386   if (isa<LabelStmt>(S))
387     return true;
388 
389   // If this is a case/default statement, and we haven't seen a switch, we have
390   // to emit the code.
391   if (isa<SwitchCase>(S) && !IgnoreCaseStmts)
392     return true;
393 
394   // If this is a switch statement, we want to ignore cases below it.
395   if (isa<SwitchStmt>(S))
396     IgnoreCaseStmts = true;
397 
398   // Scan subexpressions for verboten labels.
399   for (Stmt::const_child_range I = S->children(); I; ++I)
400     if (ContainsLabel(*I, IgnoreCaseStmts))
401       return true;
402 
403   return false;
404 }
405 
406 
407 /// ConstantFoldsToSimpleInteger - If the sepcified expression does not fold to
408 /// a constant, or if it does but contains a label, return 0.  If it constant
409 /// folds to 'true' and does not contain a label, return 1, if it constant folds
410 /// to 'false' and does not contain a label, return -1.
411 int CodeGenFunction::ConstantFoldsToSimpleInteger(const Expr *Cond) {
412   // FIXME: Rename and handle conversion of other evaluatable things
413   // to bool.
414   Expr::EvalResult Result;
415   if (!Cond->Evaluate(Result, getContext()) || !Result.Val.isInt() ||
416       Result.HasSideEffects)
417     return 0;  // Not foldable, not integer or not fully evaluatable.
418 
419   if (CodeGenFunction::ContainsLabel(Cond))
420     return 0;  // Contains a label.
421 
422   return Result.Val.getInt().getBoolValue() ? 1 : -1;
423 }
424 
425 
426 /// EmitBranchOnBoolExpr - Emit a branch on a boolean condition (e.g. for an if
427 /// statement) to the specified blocks.  Based on the condition, this might try
428 /// to simplify the codegen of the conditional based on the branch.
429 ///
430 void CodeGenFunction::EmitBranchOnBoolExpr(const Expr *Cond,
431                                            llvm::BasicBlock *TrueBlock,
432                                            llvm::BasicBlock *FalseBlock) {
433   if (const ParenExpr *PE = dyn_cast<ParenExpr>(Cond))
434     return EmitBranchOnBoolExpr(PE->getSubExpr(), TrueBlock, FalseBlock);
435 
436   if (const BinaryOperator *CondBOp = dyn_cast<BinaryOperator>(Cond)) {
437     // Handle X && Y in a condition.
438     if (CondBOp->getOpcode() == BO_LAnd) {
439       // If we have "1 && X", simplify the code.  "0 && X" would have constant
440       // folded if the case was simple enough.
441       if (ConstantFoldsToSimpleInteger(CondBOp->getLHS()) == 1) {
442         // br(1 && X) -> br(X).
443         return EmitBranchOnBoolExpr(CondBOp->getRHS(), TrueBlock, FalseBlock);
444       }
445 
446       // If we have "X && 1", simplify the code to use an uncond branch.
447       // "X && 0" would have been constant folded to 0.
448       if (ConstantFoldsToSimpleInteger(CondBOp->getRHS()) == 1) {
449         // br(X && 1) -> br(X).
450         return EmitBranchOnBoolExpr(CondBOp->getLHS(), TrueBlock, FalseBlock);
451       }
452 
453       // Emit the LHS as a conditional.  If the LHS conditional is false, we
454       // want to jump to the FalseBlock.
455       llvm::BasicBlock *LHSTrue = createBasicBlock("land.lhs.true");
456 
457       ConditionalEvaluation eval(*this);
458       EmitBranchOnBoolExpr(CondBOp->getLHS(), LHSTrue, FalseBlock);
459       EmitBlock(LHSTrue);
460 
461       // Any temporaries created here are conditional.
462       eval.begin(*this);
463       EmitBranchOnBoolExpr(CondBOp->getRHS(), TrueBlock, FalseBlock);
464       eval.end(*this);
465 
466       return;
467     } else if (CondBOp->getOpcode() == BO_LOr) {
468       // If we have "0 || X", simplify the code.  "1 || X" would have constant
469       // folded if the case was simple enough.
470       if (ConstantFoldsToSimpleInteger(CondBOp->getLHS()) == -1) {
471         // br(0 || X) -> br(X).
472         return EmitBranchOnBoolExpr(CondBOp->getRHS(), TrueBlock, FalseBlock);
473       }
474 
475       // If we have "X || 0", simplify the code to use an uncond branch.
476       // "X || 1" would have been constant folded to 1.
477       if (ConstantFoldsToSimpleInteger(CondBOp->getRHS()) == -1) {
478         // br(X || 0) -> br(X).
479         return EmitBranchOnBoolExpr(CondBOp->getLHS(), TrueBlock, FalseBlock);
480       }
481 
482       // Emit the LHS as a conditional.  If the LHS conditional is true, we
483       // want to jump to the TrueBlock.
484       llvm::BasicBlock *LHSFalse = createBasicBlock("lor.lhs.false");
485 
486       ConditionalEvaluation eval(*this);
487       EmitBranchOnBoolExpr(CondBOp->getLHS(), TrueBlock, LHSFalse);
488       EmitBlock(LHSFalse);
489 
490       // Any temporaries created here are conditional.
491       eval.begin(*this);
492       EmitBranchOnBoolExpr(CondBOp->getRHS(), TrueBlock, FalseBlock);
493       eval.end(*this);
494 
495       return;
496     }
497   }
498 
499   if (const UnaryOperator *CondUOp = dyn_cast<UnaryOperator>(Cond)) {
500     // br(!x, t, f) -> br(x, f, t)
501     if (CondUOp->getOpcode() == UO_LNot)
502       return EmitBranchOnBoolExpr(CondUOp->getSubExpr(), FalseBlock, TrueBlock);
503   }
504 
505   if (const ConditionalOperator *CondOp = dyn_cast<ConditionalOperator>(Cond)) {
506     // Handle ?: operator.
507 
508     // Just ignore GNU ?: extension.
509     if (CondOp->getLHS()) {
510       // br(c ? x : y, t, f) -> br(c, br(x, t, f), br(y, t, f))
511       llvm::BasicBlock *LHSBlock = createBasicBlock("cond.true");
512       llvm::BasicBlock *RHSBlock = createBasicBlock("cond.false");
513 
514       ConditionalEvaluation cond(*this);
515       EmitBranchOnBoolExpr(CondOp->getCond(), LHSBlock, RHSBlock);
516 
517       cond.begin(*this);
518       EmitBlock(LHSBlock);
519       EmitBranchOnBoolExpr(CondOp->getLHS(), TrueBlock, FalseBlock);
520       cond.end(*this);
521 
522       cond.begin(*this);
523       EmitBlock(RHSBlock);
524       EmitBranchOnBoolExpr(CondOp->getRHS(), TrueBlock, FalseBlock);
525       cond.end(*this);
526 
527       return;
528     }
529   }
530 
531   // Emit the code with the fully general case.
532   llvm::Value *CondV = EvaluateExprAsBool(Cond);
533   Builder.CreateCondBr(CondV, TrueBlock, FalseBlock);
534 }
535 
536 /// ErrorUnsupported - Print out an error that codegen doesn't support the
537 /// specified stmt yet.
538 void CodeGenFunction::ErrorUnsupported(const Stmt *S, const char *Type,
539                                        bool OmitOnError) {
540   CGM.ErrorUnsupported(S, Type, OmitOnError);
541 }
542 
543 /// emitNonZeroVLAInit - Emit the "zero" initialization of a
544 /// variable-length array whose elements have a non-zero bit-pattern.
545 ///
546 /// \param src - a char* pointing to the bit-pattern for a single
547 /// base element of the array
548 /// \param sizeInChars - the total size of the VLA, in chars
549 /// \param align - the total alignment of the VLA
550 static void emitNonZeroVLAInit(CodeGenFunction &CGF, QualType baseType,
551                                llvm::Value *dest, llvm::Value *src,
552                                llvm::Value *sizeInChars) {
553   std::pair<CharUnits,CharUnits> baseSizeAndAlign
554     = CGF.getContext().getTypeInfoInChars(baseType);
555 
556   CGBuilderTy &Builder = CGF.Builder;
557 
558   llvm::Value *baseSizeInChars
559     = llvm::ConstantInt::get(CGF.IntPtrTy, baseSizeAndAlign.first.getQuantity());
560 
561   const llvm::Type *i8p = Builder.getInt8PtrTy();
562 
563   llvm::Value *begin = Builder.CreateBitCast(dest, i8p, "vla.begin");
564   llvm::Value *end = Builder.CreateInBoundsGEP(dest, sizeInChars, "vla.end");
565 
566   llvm::BasicBlock *originBB = CGF.Builder.GetInsertBlock();
567   llvm::BasicBlock *loopBB = CGF.createBasicBlock("vla-init.loop");
568   llvm::BasicBlock *contBB = CGF.createBasicBlock("vla-init.cont");
569 
570   // Make a loop over the VLA.  C99 guarantees that the VLA element
571   // count must be nonzero.
572   CGF.EmitBlock(loopBB);
573 
574   llvm::PHINode *cur = Builder.CreatePHI(i8p, "vla.cur");
575   cur->reserveOperandSpace(2);
576   cur->addIncoming(begin, originBB);
577 
578   // memcpy the individual element bit-pattern.
579   Builder.CreateMemCpy(cur, src, baseSizeInChars,
580                        baseSizeAndAlign.second.getQuantity(),
581                        /*volatile*/ false);
582 
583   // Go to the next element.
584   llvm::Value *next = Builder.CreateConstInBoundsGEP1_32(cur, 1, "vla.next");
585 
586   // Leave if that's the end of the VLA.
587   llvm::Value *done = Builder.CreateICmpEQ(next, end, "vla-init.isdone");
588   Builder.CreateCondBr(done, contBB, loopBB);
589   cur->addIncoming(next, loopBB);
590 
591   CGF.EmitBlock(contBB);
592 }
593 
594 void
595 CodeGenFunction::EmitNullInitialization(llvm::Value *DestPtr, QualType Ty) {
596   // Ignore empty classes in C++.
597   if (getContext().getLangOptions().CPlusPlus) {
598     if (const RecordType *RT = Ty->getAs<RecordType>()) {
599       if (cast<CXXRecordDecl>(RT->getDecl())->isEmpty())
600         return;
601     }
602   }
603 
604   // Cast the dest ptr to the appropriate i8 pointer type.
605   unsigned DestAS =
606     cast<llvm::PointerType>(DestPtr->getType())->getAddressSpace();
607   const llvm::Type *BP = Builder.getInt8PtrTy(DestAS);
608   if (DestPtr->getType() != BP)
609     DestPtr = Builder.CreateBitCast(DestPtr, BP, "tmp");
610 
611   // Get size and alignment info for this aggregate.
612   std::pair<uint64_t, unsigned> TypeInfo = getContext().getTypeInfo(Ty);
613   uint64_t Size = TypeInfo.first / 8;
614   unsigned Align = TypeInfo.second / 8;
615 
616   llvm::Value *SizeVal;
617   const VariableArrayType *vla;
618 
619   // Don't bother emitting a zero-byte memset.
620   if (Size == 0) {
621     // But note that getTypeInfo returns 0 for a VLA.
622     if (const VariableArrayType *vlaType =
623           dyn_cast_or_null<VariableArrayType>(
624                                           getContext().getAsArrayType(Ty))) {
625       SizeVal = GetVLASize(vlaType);
626       vla = vlaType;
627     } else {
628       return;
629     }
630   } else {
631     SizeVal = llvm::ConstantInt::get(IntPtrTy, Size);
632     vla = 0;
633   }
634 
635   // If the type contains a pointer to data member we can't memset it to zero.
636   // Instead, create a null constant and copy it to the destination.
637   // TODO: there are other patterns besides zero that we can usefully memset,
638   // like -1, which happens to be the pattern used by member-pointers.
639   if (!CGM.getTypes().isZeroInitializable(Ty)) {
640     // For a VLA, emit a single element, then splat that over the VLA.
641     if (vla) Ty = getContext().getBaseElementType(vla);
642 
643     llvm::Constant *NullConstant = CGM.EmitNullConstant(Ty);
644 
645     llvm::GlobalVariable *NullVariable =
646       new llvm::GlobalVariable(CGM.getModule(), NullConstant->getType(),
647                                /*isConstant=*/true,
648                                llvm::GlobalVariable::PrivateLinkage,
649                                NullConstant, llvm::Twine());
650     llvm::Value *SrcPtr =
651       Builder.CreateBitCast(NullVariable, Builder.getInt8PtrTy());
652 
653     if (vla) return emitNonZeroVLAInit(*this, Ty, DestPtr, SrcPtr, SizeVal);
654 
655     // Get and call the appropriate llvm.memcpy overload.
656     Builder.CreateMemCpy(DestPtr, SrcPtr, SizeVal, Align, false);
657     return;
658   }
659 
660   // Otherwise, just memset the whole thing to zero.  This is legal
661   // because in LLVM, all default initializers (other than the ones we just
662   // handled above) are guaranteed to have a bit pattern of all zeros.
663   Builder.CreateMemSet(DestPtr, Builder.getInt8(0), SizeVal, Align, false);
664 }
665 
666 llvm::BlockAddress *CodeGenFunction::GetAddrOfLabel(const LabelStmt *L) {
667   // Make sure that there is a block for the indirect goto.
668   if (IndirectBranch == 0)
669     GetIndirectGotoBlock();
670 
671   llvm::BasicBlock *BB = getJumpDestForLabel(L).getBlock();
672 
673   // Make sure the indirect branch includes all of the address-taken blocks.
674   IndirectBranch->addDestination(BB);
675   return llvm::BlockAddress::get(CurFn, BB);
676 }
677 
678 llvm::BasicBlock *CodeGenFunction::GetIndirectGotoBlock() {
679   // If we already made the indirect branch for indirect goto, return its block.
680   if (IndirectBranch) return IndirectBranch->getParent();
681 
682   CGBuilderTy TmpBuilder(createBasicBlock("indirectgoto"));
683 
684   // Create the PHI node that indirect gotos will add entries to.
685   llvm::Value *DestVal = TmpBuilder.CreatePHI(Int8PtrTy, "indirect.goto.dest");
686 
687   // Create the indirect branch instruction.
688   IndirectBranch = TmpBuilder.CreateIndirectBr(DestVal);
689   return IndirectBranch->getParent();
690 }
691 
692 llvm::Value *CodeGenFunction::GetVLASize(const VariableArrayType *VAT) {
693   llvm::Value *&SizeEntry = VLASizeMap[VAT->getSizeExpr()];
694 
695   assert(SizeEntry && "Did not emit size for type");
696   return SizeEntry;
697 }
698 
699 llvm::Value *CodeGenFunction::EmitVLASize(QualType Ty) {
700   assert(Ty->isVariablyModifiedType() &&
701          "Must pass variably modified type to EmitVLASizes!");
702 
703   EnsureInsertPoint();
704 
705   if (const VariableArrayType *VAT = getContext().getAsVariableArrayType(Ty)) {
706     // unknown size indication requires no size computation.
707     if (!VAT->getSizeExpr())
708       return 0;
709     llvm::Value *&SizeEntry = VLASizeMap[VAT->getSizeExpr()];
710 
711     if (!SizeEntry) {
712       const llvm::Type *SizeTy = ConvertType(getContext().getSizeType());
713 
714       // Get the element size;
715       QualType ElemTy = VAT->getElementType();
716       llvm::Value *ElemSize;
717       if (ElemTy->isVariableArrayType())
718         ElemSize = EmitVLASize(ElemTy);
719       else
720         ElemSize = llvm::ConstantInt::get(SizeTy,
721             getContext().getTypeSizeInChars(ElemTy).getQuantity());
722 
723       llvm::Value *NumElements = EmitScalarExpr(VAT->getSizeExpr());
724       NumElements = Builder.CreateIntCast(NumElements, SizeTy, false, "tmp");
725 
726       SizeEntry = Builder.CreateMul(ElemSize, NumElements);
727     }
728 
729     return SizeEntry;
730   }
731 
732   if (const ArrayType *AT = dyn_cast<ArrayType>(Ty)) {
733     EmitVLASize(AT->getElementType());
734     return 0;
735   }
736 
737   if (const ParenType *PT = dyn_cast<ParenType>(Ty)) {
738     EmitVLASize(PT->getInnerType());
739     return 0;
740   }
741 
742   const PointerType *PT = Ty->getAs<PointerType>();
743   assert(PT && "unknown VM type!");
744   EmitVLASize(PT->getPointeeType());
745   return 0;
746 }
747 
748 llvm::Value* CodeGenFunction::EmitVAListRef(const Expr* E) {
749   if (getContext().getBuiltinVaListType()->isArrayType())
750     return EmitScalarExpr(E);
751   return EmitLValue(E).getAddress();
752 }
753 
754 void CodeGenFunction::EmitDeclRefExprDbgValue(const DeclRefExpr *E,
755                                               llvm::Constant *Init) {
756   assert (Init && "Invalid DeclRefExpr initializer!");
757   if (CGDebugInfo *Dbg = getDebugInfo())
758     Dbg->EmitGlobalVariable(E->getDecl(), Init);
759 }
760