CodeGenFunction.h revision 202379
1//===-- CodeGenFunction.h - Per-Function state for LLVM CodeGen -*- C++ -*-===//
2//
3//                     The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This is the internal per-function state used for llvm translation.
11//
12//===----------------------------------------------------------------------===//
13
14#ifndef CLANG_CODEGEN_CODEGENFUNCTION_H
15#define CLANG_CODEGEN_CODEGENFUNCTION_H
16
17#include "clang/AST/Type.h"
18#include "clang/AST/ExprCXX.h"
19#include "clang/AST/ExprObjC.h"
20#include "clang/AST/CharUnits.h"
21#include "clang/Basic/TargetInfo.h"
22#include "llvm/ADT/DenseMap.h"
23#include "llvm/ADT/SmallVector.h"
24#include "llvm/Support/ValueHandle.h"
25#include <map>
26#include "CodeGenModule.h"
27#include "CGBlocks.h"
28#include "CGBuilder.h"
29#include "CGCall.h"
30#include "CGCXX.h"
31#include "CGValue.h"
32
33namespace llvm {
34  class BasicBlock;
35  class LLVMContext;
36  class Module;
37  class SwitchInst;
38  class Twine;
39  class Value;
40}
41
42namespace clang {
43  class ASTContext;
44  class CXXDestructorDecl;
45  class CXXTryStmt;
46  class Decl;
47  class EnumConstantDecl;
48  class FunctionDecl;
49  class FunctionProtoType;
50  class LabelStmt;
51  class ObjCContainerDecl;
52  class ObjCInterfaceDecl;
53  class ObjCIvarDecl;
54  class ObjCMethodDecl;
55  class ObjCImplementationDecl;
56  class ObjCPropertyImplDecl;
57  class TargetInfo;
58  class VarDecl;
59  class ObjCForCollectionStmt;
60  class ObjCAtTryStmt;
61  class ObjCAtThrowStmt;
62  class ObjCAtSynchronizedStmt;
63
64namespace CodeGen {
65  class CodeGenModule;
66  class CodeGenTypes;
67  class CGDebugInfo;
68  class CGFunctionInfo;
69  class CGRecordLayout;
70
71/// CodeGenFunction - This class organizes the per-function state that is used
72/// while generating LLVM code.
73class CodeGenFunction : public BlockFunction {
74  CodeGenFunction(const CodeGenFunction&); // DO NOT IMPLEMENT
75  void operator=(const CodeGenFunction&);  // DO NOT IMPLEMENT
76public:
77  CodeGenModule &CGM;  // Per-module state.
78  const TargetInfo &Target;
79
80  typedef std::pair<llvm::Value *, llvm::Value *> ComplexPairTy;
81  CGBuilderTy Builder;
82
83  /// CurFuncDecl - Holds the Decl for the current function or ObjC method.
84  /// This excludes BlockDecls.
85  const Decl *CurFuncDecl;
86  /// CurCodeDecl - This is the inner-most code context, which includes blocks.
87  const Decl *CurCodeDecl;
88  const CGFunctionInfo *CurFnInfo;
89  QualType FnRetTy;
90  llvm::Function *CurFn;
91
92  /// CurGD - The GlobalDecl for the current function being compiled.
93  GlobalDecl CurGD;
94  /// OuterTryBlock - This is the address of the outter most try block, 0
95  /// otherwise.
96  const Stmt *OuterTryBlock;
97
98  /// ReturnBlock - Unified return block.
99  llvm::BasicBlock *ReturnBlock;
100  /// ReturnValue - The temporary alloca to hold the return value. This is null
101  /// iff the function has no return value.
102  llvm::Value *ReturnValue;
103
104  /// AllocaInsertPoint - This is an instruction in the entry block before which
105  /// we prefer to insert allocas.
106  llvm::AssertingVH<llvm::Instruction> AllocaInsertPt;
107
108  const llvm::Type *LLVMIntTy;
109  uint32_t LLVMPointerWidth;
110
111  bool Exceptions;
112  bool CatchUndefined;
113public:
114  /// ObjCEHValueStack - Stack of Objective-C exception values, used for
115  /// rethrows.
116  llvm::SmallVector<llvm::Value*, 8> ObjCEHValueStack;
117
118  /// PushCleanupBlock - Push a new cleanup entry on the stack and set the
119  /// passed in block as the cleanup block.
120  void PushCleanupBlock(llvm::BasicBlock *CleanupEntryBlock,
121                        llvm::BasicBlock *CleanupExitBlock,
122                        llvm::BasicBlock *PreviousInvokeDest,
123                        bool EHOnly = false);
124  void PushCleanupBlock(llvm::BasicBlock *CleanupEntryBlock) {
125    PushCleanupBlock(CleanupEntryBlock, 0, getInvokeDest(), false);
126  }
127
128  /// CleanupBlockInfo - A struct representing a popped cleanup block.
129  struct CleanupBlockInfo {
130    /// CleanupEntryBlock - the cleanup entry block
131    llvm::BasicBlock *CleanupBlock;
132
133    /// SwitchBlock - the block (if any) containing the switch instruction used
134    /// for jumping to the final destination.
135    llvm::BasicBlock *SwitchBlock;
136
137    /// EndBlock - the default destination for the switch instruction.
138    llvm::BasicBlock *EndBlock;
139
140    /// EHOnly - True iff this cleanup should only be performed on the
141    /// exceptional edge.
142    bool EHOnly;
143
144    CleanupBlockInfo(llvm::BasicBlock *cb, llvm::BasicBlock *sb,
145                     llvm::BasicBlock *eb, bool ehonly = false)
146      : CleanupBlock(cb), SwitchBlock(sb), EndBlock(eb), EHOnly(ehonly) {}
147  };
148
149  /// EHCleanupBlock - RAII object that will create a cleanup block for the
150  /// exceptional edge and set the insert point to that block.  When destroyed,
151  /// it creates the cleanup edge and sets the insert point to the previous
152  /// block.
153  class EHCleanupBlock {
154    CodeGenFunction& CGF;
155    llvm::BasicBlock *Cont;
156    llvm::BasicBlock *CleanupHandler;
157    llvm::BasicBlock *CleanupEntryBB;
158    llvm::BasicBlock *PreviousInvokeDest;
159  public:
160    EHCleanupBlock(CodeGenFunction &cgf)
161      : CGF(cgf), Cont(CGF.createBasicBlock("cont")),
162        CleanupHandler(CGF.createBasicBlock("ehcleanup")),
163        CleanupEntryBB(CGF.createBasicBlock("ehcleanup.rest")),
164        PreviousInvokeDest(CGF.getInvokeDest()) {
165      CGF.EmitBranch(Cont);
166      llvm::BasicBlock *TerminateHandler = CGF.getTerminateHandler();
167      CGF.Builder.SetInsertPoint(CleanupEntryBB);
168      CGF.setInvokeDest(TerminateHandler);
169    }
170    ~EHCleanupBlock();
171  };
172
173  /// PopCleanupBlock - Will pop the cleanup entry on the stack, process all
174  /// branch fixups and return a block info struct with the switch block and end
175  /// block.  This will also reset the invoke handler to the previous value
176  /// from when the cleanup block was created.
177  CleanupBlockInfo PopCleanupBlock();
178
179  /// DelayedCleanupBlock - RAII object that will create a cleanup block and set
180  /// the insert point to that block. When destructed, it sets the insert point
181  /// to the previous block and pushes a new cleanup entry on the stack.
182  class DelayedCleanupBlock {
183    CodeGenFunction& CGF;
184    llvm::BasicBlock *CurBB;
185    llvm::BasicBlock *CleanupEntryBB;
186    llvm::BasicBlock *CleanupExitBB;
187    llvm::BasicBlock *CurInvokeDest;
188    bool EHOnly;
189
190  public:
191    DelayedCleanupBlock(CodeGenFunction &cgf, bool ehonly = false)
192      : CGF(cgf), CurBB(CGF.Builder.GetInsertBlock()),
193        CleanupEntryBB(CGF.createBasicBlock("cleanup")), CleanupExitBB(0),
194        CurInvokeDest(CGF.getInvokeDest()),
195        EHOnly(ehonly) {
196      CGF.Builder.SetInsertPoint(CleanupEntryBB);
197    }
198
199    llvm::BasicBlock *getCleanupExitBlock() {
200      if (!CleanupExitBB)
201        CleanupExitBB = CGF.createBasicBlock("cleanup.exit");
202      return CleanupExitBB;
203    }
204
205    ~DelayedCleanupBlock() {
206      CGF.PushCleanupBlock(CleanupEntryBB, CleanupExitBB, CurInvokeDest,
207                           EHOnly);
208      // FIXME: This is silly, move this into the builder.
209      if (CurBB)
210        CGF.Builder.SetInsertPoint(CurBB);
211      else
212        CGF.Builder.ClearInsertionPoint();
213    }
214  };
215
216  /// \brief Enters a new scope for capturing cleanups, all of which will be
217  /// executed once the scope is exited.
218  class CleanupScope {
219    CodeGenFunction& CGF;
220    size_t CleanupStackDepth;
221    bool OldDidCallStackSave;
222    bool PerformCleanup;
223
224    CleanupScope(const CleanupScope &); // DO NOT IMPLEMENT
225    CleanupScope &operator=(const CleanupScope &); // DO NOT IMPLEMENT
226
227  public:
228    /// \brief Enter a new cleanup scope.
229    explicit CleanupScope(CodeGenFunction &CGF)
230      : CGF(CGF), PerformCleanup(true)
231    {
232      CleanupStackDepth = CGF.CleanupEntries.size();
233      OldDidCallStackSave = CGF.DidCallStackSave;
234    }
235
236    /// \brief Exit this cleanup scope, emitting any accumulated
237    /// cleanups.
238    ~CleanupScope() {
239      if (PerformCleanup) {
240        CGF.DidCallStackSave = OldDidCallStackSave;
241        CGF.EmitCleanupBlocks(CleanupStackDepth);
242      }
243    }
244
245    /// \brief Determine whether this scope requires any cleanups.
246    bool requiresCleanups() const {
247      return CGF.CleanupEntries.size() > CleanupStackDepth;
248    }
249
250    /// \brief Force the emission of cleanups now, instead of waiting
251    /// until this object is destroyed.
252    void ForceCleanup() {
253      assert(PerformCleanup && "Already forced cleanup");
254      CGF.DidCallStackSave = OldDidCallStackSave;
255      CGF.EmitCleanupBlocks(CleanupStackDepth);
256      PerformCleanup = false;
257    }
258  };
259
260  /// EmitCleanupBlocks - Takes the old cleanup stack size and emits the cleanup
261  /// blocks that have been added.
262  void EmitCleanupBlocks(size_t OldCleanupStackSize);
263
264  /// EmitBranchThroughCleanup - Emit a branch from the current insert block
265  /// through the cleanup handling code (if any) and then on to \arg Dest.
266  ///
267  /// FIXME: Maybe this should really be in EmitBranch? Don't we always want
268  /// this behavior for branches?
269  void EmitBranchThroughCleanup(llvm::BasicBlock *Dest);
270
271  /// StartConditionalBranch - Should be called before a conditional part of an
272  /// expression is emitted. For example, before the RHS of the expression below
273  /// is emitted:
274  ///
275  /// b && f(T());
276  ///
277  /// This is used to make sure that any temporaries created in the conditional
278  /// branch are only destroyed if the branch is taken.
279  void StartConditionalBranch() {
280    ++ConditionalBranchLevel;
281  }
282
283  /// FinishConditionalBranch - Should be called after a conditional part of an
284  /// expression has been emitted.
285  void FinishConditionalBranch() {
286    --ConditionalBranchLevel;
287  }
288
289private:
290  CGDebugInfo *DebugInfo;
291
292  /// IndirectBranch - The first time an indirect goto is seen we create a block
293  /// with an indirect branch.  Every time we see the address of a label taken,
294  /// we add the label to the indirect goto.  Every subsequent indirect goto is
295  /// codegen'd as a jump to the IndirectBranch's basic block.
296  llvm::IndirectBrInst *IndirectBranch;
297
298  /// LocalDeclMap - This keeps track of the LLVM allocas or globals for local C
299  /// decls.
300  llvm::DenseMap<const Decl*, llvm::Value*> LocalDeclMap;
301
302  /// LabelMap - This keeps track of the LLVM basic block for each C label.
303  llvm::DenseMap<const LabelStmt*, llvm::BasicBlock*> LabelMap;
304
305  // BreakContinueStack - This keeps track of where break and continue
306  // statements should jump to.
307  struct BreakContinue {
308    BreakContinue(llvm::BasicBlock *bb, llvm::BasicBlock *cb)
309      : BreakBlock(bb), ContinueBlock(cb) {}
310
311    llvm::BasicBlock *BreakBlock;
312    llvm::BasicBlock *ContinueBlock;
313  };
314  llvm::SmallVector<BreakContinue, 8> BreakContinueStack;
315
316  /// SwitchInsn - This is nearest current switch instruction. It is null if if
317  /// current context is not in a switch.
318  llvm::SwitchInst *SwitchInsn;
319
320  /// CaseRangeBlock - This block holds if condition check for last case
321  /// statement range in current switch instruction.
322  llvm::BasicBlock *CaseRangeBlock;
323
324  /// InvokeDest - This is the nearest exception target for calls
325  /// which can unwind, when exceptions are being used.
326  llvm::BasicBlock *InvokeDest;
327
328  // VLASizeMap - This keeps track of the associated size for each VLA type.
329  // We track this by the size expression rather than the type itself because
330  // in certain situations, like a const qualifier applied to an VLA typedef,
331  // multiple VLA types can share the same size expression.
332  // FIXME: Maybe this could be a stack of maps that is pushed/popped as we
333  // enter/leave scopes.
334  llvm::DenseMap<const Expr*, llvm::Value*> VLASizeMap;
335
336  /// DidCallStackSave - Whether llvm.stacksave has been called. Used to avoid
337  /// calling llvm.stacksave for multiple VLAs in the same scope.
338  bool DidCallStackSave;
339
340  struct CleanupEntry {
341    /// CleanupEntryBlock - The block of code that does the actual cleanup.
342    llvm::BasicBlock *CleanupEntryBlock;
343
344    /// CleanupExitBlock - The cleanup exit block.
345    llvm::BasicBlock *CleanupExitBlock;
346
347    /// Blocks - Basic blocks that were emitted in the current cleanup scope.
348    std::vector<llvm::BasicBlock *> Blocks;
349
350    /// BranchFixups - Branch instructions to basic blocks that haven't been
351    /// inserted into the current function yet.
352    std::vector<llvm::BranchInst *> BranchFixups;
353
354    /// PreviousInvokeDest - The invoke handler from the start of the cleanup
355    /// region.
356    llvm::BasicBlock *PreviousInvokeDest;
357
358    /// EHOnly - Perform this only on the exceptional edge, not the main edge.
359    bool EHOnly;
360
361    explicit CleanupEntry(llvm::BasicBlock *CleanupEntryBlock,
362                          llvm::BasicBlock *CleanupExitBlock,
363                          llvm::BasicBlock *PreviousInvokeDest,
364                          bool ehonly)
365      : CleanupEntryBlock(CleanupEntryBlock),
366        CleanupExitBlock(CleanupExitBlock),
367        PreviousInvokeDest(PreviousInvokeDest),
368        EHOnly(ehonly) {}
369  };
370
371  /// CleanupEntries - Stack of cleanup entries.
372  llvm::SmallVector<CleanupEntry, 8> CleanupEntries;
373
374  typedef llvm::DenseMap<llvm::BasicBlock*, size_t> BlockScopeMap;
375
376  /// BlockScopes - Map of which "cleanup scope" scope basic blocks have.
377  BlockScopeMap BlockScopes;
378
379  /// CXXThisDecl - When generating code for a C++ member function,
380  /// this will hold the implicit 'this' declaration.
381  ImplicitParamDecl *CXXThisDecl;
382
383  /// CXXVTTDecl - When generating code for a base object constructor or
384  /// base object destructor with virtual bases, this will hold the implicit
385  /// VTT parameter.
386  ImplicitParamDecl *CXXVTTDecl;
387
388  /// CXXLiveTemporaryInfo - Holds information about a live C++ temporary.
389  struct CXXLiveTemporaryInfo {
390    /// Temporary - The live temporary.
391    const CXXTemporary *Temporary;
392
393    /// ThisPtr - The pointer to the temporary.
394    llvm::Value *ThisPtr;
395
396    /// DtorBlock - The destructor block.
397    llvm::BasicBlock *DtorBlock;
398
399    /// CondPtr - If this is a conditional temporary, this is the pointer to the
400    /// condition variable that states whether the destructor should be called
401    /// or not.
402    llvm::Value *CondPtr;
403
404    CXXLiveTemporaryInfo(const CXXTemporary *temporary,
405                         llvm::Value *thisptr, llvm::BasicBlock *dtorblock,
406                         llvm::Value *condptr)
407      : Temporary(temporary), ThisPtr(thisptr), DtorBlock(dtorblock),
408      CondPtr(condptr) { }
409  };
410
411  llvm::SmallVector<CXXLiveTemporaryInfo, 4> LiveTemporaries;
412
413  /// ConditionalBranchLevel - Contains the nesting level of the current
414  /// conditional branch. This is used so that we know if a temporary should be
415  /// destroyed conditionally.
416  unsigned ConditionalBranchLevel;
417
418
419  /// ByrefValueInfoMap - For each __block variable, contains a pair of the LLVM
420  /// type as well as the field number that contains the actual data.
421  llvm::DenseMap<const ValueDecl *, std::pair<const llvm::Type *,
422                                              unsigned> > ByRefValueInfo;
423
424  /// getByrefValueFieldNumber - Given a declaration, returns the LLVM field
425  /// number that holds the value.
426  unsigned getByRefValueLLVMField(const ValueDecl *VD) const;
427
428  llvm::BasicBlock *TerminateHandler;
429  llvm::BasicBlock *TrapBB;
430
431  int UniqueAggrDestructorCount;
432public:
433  CodeGenFunction(CodeGenModule &cgm);
434
435  ASTContext &getContext() const;
436  CGDebugInfo *getDebugInfo() { return DebugInfo; }
437
438  llvm::BasicBlock *getInvokeDest() { return InvokeDest; }
439  void setInvokeDest(llvm::BasicBlock *B) { InvokeDest = B; }
440
441  llvm::LLVMContext &getLLVMContext() { return VMContext; }
442
443  //===--------------------------------------------------------------------===//
444  //                                  Objective-C
445  //===--------------------------------------------------------------------===//
446
447  void GenerateObjCMethod(const ObjCMethodDecl *OMD);
448
449  void StartObjCMethod(const ObjCMethodDecl *MD,
450                       const ObjCContainerDecl *CD);
451
452  /// GenerateObjCGetter - Synthesize an Objective-C property getter function.
453  void GenerateObjCGetter(ObjCImplementationDecl *IMP,
454                          const ObjCPropertyImplDecl *PID);
455
456  /// GenerateObjCSetter - Synthesize an Objective-C property setter function
457  /// for the given property.
458  void GenerateObjCSetter(ObjCImplementationDecl *IMP,
459                          const ObjCPropertyImplDecl *PID);
460
461  //===--------------------------------------------------------------------===//
462  //                                  Block Bits
463  //===--------------------------------------------------------------------===//
464
465  llvm::Value *BuildBlockLiteralTmp(const BlockExpr *);
466  llvm::Constant *BuildDescriptorBlockDecl(bool BlockHasCopyDispose,
467                                           CharUnits Size,
468                                           const llvm::StructType *,
469                                           std::vector<HelperInfo> *);
470
471  llvm::Function *GenerateBlockFunction(const BlockExpr *BExpr,
472                                        const BlockInfo& Info,
473                                        const Decl *OuterFuncDecl,
474                                  llvm::DenseMap<const Decl*, llvm::Value*> ldm,
475                                        CharUnits &Size, uint64_t &Align,
476                      llvm::SmallVector<const Expr *, 8> &subBlockDeclRefDecls,
477                                        bool &subBlockHasCopyDispose);
478
479  void BlockForwardSelf();
480  llvm::Value *LoadBlockStruct();
481
482  CharUnits AllocateBlockDecl(const BlockDeclRefExpr *E);
483  llvm::Value *GetAddrOfBlockDecl(const BlockDeclRefExpr *E);
484  const llvm::Type *BuildByRefType(const ValueDecl *D);
485
486  void GenerateCode(GlobalDecl GD, llvm::Function *Fn);
487  void StartFunction(GlobalDecl GD, QualType RetTy,
488                     llvm::Function *Fn,
489                     const FunctionArgList &Args,
490                     SourceLocation StartLoc);
491
492  /// EmitReturnBlock - Emit the unified return block, trying to avoid its
493  /// emission when possible.
494  void EmitReturnBlock();
495
496  /// FinishFunction - Complete IR generation of the current function. It is
497  /// legal to call this function even if there is no current insertion point.
498  void FinishFunction(SourceLocation EndLoc=SourceLocation());
499
500  /// DynamicTypeAdjust - Do the non-virtual and virtual adjustments on an
501  /// object pointer to alter the dynamic type of the pointer.  Used by
502  /// GenerateCovariantThunk for building thunks.
503  llvm::Value *DynamicTypeAdjust(llvm::Value *V,
504                                 const ThunkAdjustment &Adjustment);
505
506  /// GenerateThunk - Generate a thunk for the given method
507  llvm::Constant *GenerateThunk(llvm::Function *Fn, GlobalDecl GD,
508                                bool Extern,
509                                const ThunkAdjustment &ThisAdjustment);
510  llvm::Constant *
511  GenerateCovariantThunk(llvm::Function *Fn, GlobalDecl GD,
512                         bool Extern,
513                         const CovariantThunkAdjustment &Adjustment);
514
515  void EmitCtorPrologue(const CXXConstructorDecl *CD, CXXCtorType Type);
516
517  void InitializeVtablePtrs(const CXXRecordDecl *ClassDecl);
518
519  void InitializeVtablePtrsRecursive(const CXXRecordDecl *ClassDecl,
520                                     llvm::Constant *Vtable,
521                                     CGVtableInfo::AddrSubMap_t& AddressPoints,
522                                     llvm::Value *ThisPtr,
523                                     uint64_t Offset);
524
525  void SynthesizeCXXCopyConstructor(const CXXConstructorDecl *Ctor,
526                                    CXXCtorType Type,
527                                    llvm::Function *Fn,
528                                    const FunctionArgList &Args);
529
530  void SynthesizeCXXCopyAssignment(const CXXMethodDecl *CD,
531                                   llvm::Function *Fn,
532                                   const FunctionArgList &Args);
533
534  void SynthesizeDefaultConstructor(const CXXConstructorDecl *Ctor,
535                                    CXXCtorType Type,
536                                    llvm::Function *Fn,
537                                    const FunctionArgList &Args);
538
539  void SynthesizeDefaultDestructor(const CXXDestructorDecl *Dtor,
540                                   CXXDtorType Type,
541                                   llvm::Function *Fn,
542                                   const FunctionArgList &Args);
543
544  /// EmitDtorEpilogue - Emit all code that comes at the end of class's
545  /// destructor. This is to call destructors on members and base classes in
546  /// reverse order of their construction.
547  void EmitDtorEpilogue(const CXXDestructorDecl *Dtor,
548                        CXXDtorType Type);
549
550  /// EmitFunctionProlog - Emit the target specific LLVM code to load the
551  /// arguments for the given function. This is also responsible for naming the
552  /// LLVM function arguments.
553  void EmitFunctionProlog(const CGFunctionInfo &FI,
554                          llvm::Function *Fn,
555                          const FunctionArgList &Args);
556
557  /// EmitFunctionEpilog - Emit the target specific LLVM code to return the
558  /// given temporary.
559  void EmitFunctionEpilog(const CGFunctionInfo &FI, llvm::Value *ReturnValue);
560
561  /// EmitStartEHSpec - Emit the start of the exception spec.
562  void EmitStartEHSpec(const Decl *D);
563
564  /// EmitEndEHSpec - Emit the end of the exception spec.
565  void EmitEndEHSpec(const Decl *D);
566
567  /// getTerminateHandler - Return a handler that just calls terminate.
568  llvm::BasicBlock *getTerminateHandler();
569
570  const llvm::Type *ConvertTypeForMem(QualType T);
571  const llvm::Type *ConvertType(QualType T);
572
573  /// LoadObjCSelf - Load the value of self. This function is only valid while
574  /// generating code for an Objective-C method.
575  llvm::Value *LoadObjCSelf();
576
577  /// TypeOfSelfObject - Return type of object that this self represents.
578  QualType TypeOfSelfObject();
579
580  /// hasAggregateLLVMType - Return true if the specified AST type will map into
581  /// an aggregate LLVM type or is void.
582  static bool hasAggregateLLVMType(QualType T);
583
584  /// createBasicBlock - Create an LLVM basic block.
585  llvm::BasicBlock *createBasicBlock(const char *Name="",
586                                     llvm::Function *Parent=0,
587                                     llvm::BasicBlock *InsertBefore=0) {
588#ifdef NDEBUG
589    return llvm::BasicBlock::Create(VMContext, "", Parent, InsertBefore);
590#else
591    return llvm::BasicBlock::Create(VMContext, Name, Parent, InsertBefore);
592#endif
593  }
594
595  /// getBasicBlockForLabel - Return the LLVM basicblock that the specified
596  /// label maps to.
597  llvm::BasicBlock *getBasicBlockForLabel(const LabelStmt *S);
598
599  /// SimplifyForwardingBlocks - If the given basic block is only a branch to
600  /// another basic block, simplify it. This assumes that no other code could
601  /// potentially reference the basic block.
602  void SimplifyForwardingBlocks(llvm::BasicBlock *BB);
603
604  /// EmitBlock - Emit the given block \arg BB and set it as the insert point,
605  /// adding a fall-through branch from the current insert block if
606  /// necessary. It is legal to call this function even if there is no current
607  /// insertion point.
608  ///
609  /// IsFinished - If true, indicates that the caller has finished emitting
610  /// branches to the given block and does not expect to emit code into it. This
611  /// means the block can be ignored if it is unreachable.
612  void EmitBlock(llvm::BasicBlock *BB, bool IsFinished=false);
613
614  /// EmitBranch - Emit a branch to the specified basic block from the current
615  /// insert block, taking care to avoid creation of branches from dummy
616  /// blocks. It is legal to call this function even if there is no current
617  /// insertion point.
618  ///
619  /// This function clears the current insertion point. The caller should follow
620  /// calls to this function with calls to Emit*Block prior to generation new
621  /// code.
622  void EmitBranch(llvm::BasicBlock *Block);
623
624  /// HaveInsertPoint - True if an insertion point is defined. If not, this
625  /// indicates that the current code being emitted is unreachable.
626  bool HaveInsertPoint() const {
627    return Builder.GetInsertBlock() != 0;
628  }
629
630  /// EnsureInsertPoint - Ensure that an insertion point is defined so that
631  /// emitted IR has a place to go. Note that by definition, if this function
632  /// creates a block then that block is unreachable; callers may do better to
633  /// detect when no insertion point is defined and simply skip IR generation.
634  void EnsureInsertPoint() {
635    if (!HaveInsertPoint())
636      EmitBlock(createBasicBlock());
637  }
638
639  /// ErrorUnsupported - Print out an error that codegen doesn't support the
640  /// specified stmt yet.
641  void ErrorUnsupported(const Stmt *S, const char *Type,
642                        bool OmitOnError=false);
643
644  //===--------------------------------------------------------------------===//
645  //                                  Helpers
646  //===--------------------------------------------------------------------===//
647
648  Qualifiers MakeQualifiers(QualType T) {
649    Qualifiers Quals = getContext().getCanonicalType(T).getQualifiers();
650    Quals.setObjCGCAttr(getContext().getObjCGCAttrKind(T));
651    return Quals;
652  }
653
654  /// CreateTempAlloca - This creates a alloca and inserts it into the entry
655  /// block.
656  llvm::AllocaInst *CreateTempAlloca(const llvm::Type *Ty,
657                                     const llvm::Twine &Name = "tmp");
658
659  /// EvaluateExprAsBool - Perform the usual unary conversions on the specified
660  /// expression and compare the result against zero, returning an Int1Ty value.
661  llvm::Value *EvaluateExprAsBool(const Expr *E);
662
663  /// EmitAnyExpr - Emit code to compute the specified expression which can have
664  /// any type.  The result is returned as an RValue struct.  If this is an
665  /// aggregate expression, the aggloc/agglocvolatile arguments indicate where
666  /// the result should be returned.
667  ///
668  /// \param IgnoreResult - True if the resulting value isn't used.
669  RValue EmitAnyExpr(const Expr *E, llvm::Value *AggLoc = 0,
670                     bool IsAggLocVolatile = false, bool IgnoreResult = false,
671                     bool IsInitializer = false);
672
673  // EmitVAListRef - Emit a "reference" to a va_list; this is either the address
674  // or the value of the expression, depending on how va_list is defined.
675  llvm::Value *EmitVAListRef(const Expr *E);
676
677  /// EmitAnyExprToTemp - Similary to EmitAnyExpr(), however, the result will
678  /// always be accessible even if no aggregate location is provided.
679  RValue EmitAnyExprToTemp(const Expr *E, bool IsAggLocVolatile = false,
680                           bool IsInitializer = false);
681
682  /// EmitAggregateCopy - Emit an aggrate copy.
683  ///
684  /// \param isVolatile - True iff either the source or the destination is
685  /// volatile.
686  void EmitAggregateCopy(llvm::Value *DestPtr, llvm::Value *SrcPtr,
687                         QualType EltTy, bool isVolatile=false);
688
689  void EmitAggregateClear(llvm::Value *DestPtr, QualType Ty);
690
691  /// StartBlock - Start new block named N. If insert block is a dummy block
692  /// then reuse it.
693  void StartBlock(const char *N);
694
695  /// GetAddrOfStaticLocalVar - Return the address of a static local variable.
696  llvm::Constant *GetAddrOfStaticLocalVar(const VarDecl *BVD);
697
698  /// GetAddrOfLocalVar - Return the address of a local variable.
699  llvm::Value *GetAddrOfLocalVar(const VarDecl *VD);
700
701  /// getAccessedFieldNo - Given an encoded value and a result number, return
702  /// the input field number being accessed.
703  static unsigned getAccessedFieldNo(unsigned Idx, const llvm::Constant *Elts);
704
705  llvm::BlockAddress *GetAddrOfLabel(const LabelStmt *L);
706  llvm::BasicBlock *GetIndirectGotoBlock();
707
708  /// EmitMemSetToZero - Generate code to memset a value of the given type to 0.
709  void EmitMemSetToZero(llvm::Value *DestPtr, QualType Ty);
710
711  // EmitVAArg - Generate code to get an argument from the passed in pointer
712  // and update it accordingly. The return value is a pointer to the argument.
713  // FIXME: We should be able to get rid of this method and use the va_arg
714  // instruction in LLVM instead once it works well enough.
715  llvm::Value *EmitVAArg(llvm::Value *VAListAddr, QualType Ty);
716
717  /// EmitVLASize - Generate code for any VLA size expressions that might occur
718  /// in a variably modified type. If Ty is a VLA, will return the value that
719  /// corresponds to the size in bytes of the VLA type. Will return 0 otherwise.
720  ///
721  /// This function can be called with a null (unreachable) insert point.
722  llvm::Value *EmitVLASize(QualType Ty);
723
724  // GetVLASize - Returns an LLVM value that corresponds to the size in bytes
725  // of a variable length array type.
726  llvm::Value *GetVLASize(const VariableArrayType *);
727
728  /// LoadCXXThis - Load the value of 'this'. This function is only valid while
729  /// generating code for an C++ member function.
730  llvm::Value *LoadCXXThis();
731
732  /// LoadCXXVTT - Load the VTT parameter to base constructors/destructors have
733  /// virtual bases.
734  llvm::Value *LoadCXXVTT();
735
736  /// GetAddressOfBaseClass - This function will add the necessary delta to the
737  /// load of 'this' and returns address of the base class.
738  // FIXME. This currently only does a derived to non-virtual base conversion.
739  // Other kinds of conversions will come later.
740  llvm::Value *GetAddressOfBaseClass(llvm::Value *Value,
741                                     const CXXRecordDecl *ClassDecl,
742                                     const CXXRecordDecl *BaseClassDecl,
743                                     bool NullCheckValue);
744
745  llvm::Value *GetAddressOfDerivedClass(llvm::Value *Value,
746                                        const CXXRecordDecl *ClassDecl,
747                                        const CXXRecordDecl *DerivedClassDecl,
748                                        bool NullCheckValue);
749
750  llvm::Value *
751  GetVirtualCXXBaseClassOffset(llvm::Value *This,
752                               const CXXRecordDecl *ClassDecl,
753                               const CXXRecordDecl *BaseClassDecl);
754
755  void EmitClassAggrMemberwiseCopy(llvm::Value *DestValue,
756                                   llvm::Value *SrcValue,
757                                   const ArrayType *Array,
758                                   const CXXRecordDecl *BaseClassDecl,
759                                   QualType Ty);
760
761  void EmitClassAggrCopyAssignment(llvm::Value *DestValue,
762                                   llvm::Value *SrcValue,
763                                   const ArrayType *Array,
764                                   const CXXRecordDecl *BaseClassDecl,
765                                   QualType Ty);
766
767  void EmitClassMemberwiseCopy(llvm::Value *DestValue, llvm::Value *SrcValue,
768                               const CXXRecordDecl *ClassDecl,
769                               const CXXRecordDecl *BaseClassDecl,
770                               QualType Ty);
771
772  void EmitClassCopyAssignment(llvm::Value *DestValue, llvm::Value *SrcValue,
773                               const CXXRecordDecl *ClassDecl,
774                               const CXXRecordDecl *BaseClassDecl,
775                               QualType Ty);
776
777  void EmitCXXConstructorCall(const CXXConstructorDecl *D, CXXCtorType Type,
778                              llvm::Value *This,
779                              CallExpr::const_arg_iterator ArgBeg,
780                              CallExpr::const_arg_iterator ArgEnd);
781
782  void EmitCXXAggrConstructorCall(const CXXConstructorDecl *D,
783                                  const ConstantArrayType *ArrayTy,
784                                  llvm::Value *ArrayPtr,
785                                  CallExpr::const_arg_iterator ArgBeg,
786                                  CallExpr::const_arg_iterator ArgEnd);
787
788  void EmitCXXAggrConstructorCall(const CXXConstructorDecl *D,
789                                  llvm::Value *NumElements,
790                                  llvm::Value *ArrayPtr,
791                                  CallExpr::const_arg_iterator ArgBeg,
792                                  CallExpr::const_arg_iterator ArgEnd);
793
794  void EmitCXXAggrDestructorCall(const CXXDestructorDecl *D,
795                                 const ArrayType *Array,
796                                 llvm::Value *This);
797
798  void EmitCXXAggrDestructorCall(const CXXDestructorDecl *D,
799                                 llvm::Value *NumElements,
800                                 llvm::Value *This);
801
802  llvm::Constant *GenerateCXXAggrDestructorHelper(const CXXDestructorDecl *D,
803                                                const ArrayType *Array,
804                                                llvm::Value *This);
805
806  void EmitCXXDestructorCall(const CXXDestructorDecl *D, CXXDtorType Type,
807                             llvm::Value *This);
808
809  void PushCXXTemporary(const CXXTemporary *Temporary, llvm::Value *Ptr);
810  void PopCXXTemporary();
811
812  llvm::Value *EmitCXXNewExpr(const CXXNewExpr *E);
813  void EmitCXXDeleteExpr(const CXXDeleteExpr *E);
814
815  void EmitDeleteCall(const FunctionDecl *DeleteFD, llvm::Value *Ptr,
816                      QualType DeleteTy);
817
818  llvm::Value* EmitCXXTypeidExpr(const CXXTypeidExpr *E);
819  llvm::Value *EmitDynamicCast(llvm::Value *V, const CXXDynamicCastExpr *DCE);
820
821  void EmitCheck(llvm::Value *, unsigned Size);
822
823  llvm::Value *EmitScalarPrePostIncDec(const UnaryOperator *E, LValue LV,
824                                       bool isInc, bool isPre);
825  ComplexPairTy EmitComplexPrePostIncDec(const UnaryOperator *E, LValue LV,
826                                         bool isInc, bool isPre);
827  //===--------------------------------------------------------------------===//
828  //                            Declaration Emission
829  //===--------------------------------------------------------------------===//
830
831  /// EmitDecl - Emit a declaration.
832  ///
833  /// This function can be called with a null (unreachable) insert point.
834  void EmitDecl(const Decl &D);
835
836  /// EmitBlockVarDecl - Emit a block variable declaration.
837  ///
838  /// This function can be called with a null (unreachable) insert point.
839  void EmitBlockVarDecl(const VarDecl &D);
840
841  /// EmitLocalBlockVarDecl - Emit a local block variable declaration.
842  ///
843  /// This function can be called with a null (unreachable) insert point.
844  void EmitLocalBlockVarDecl(const VarDecl &D);
845
846  void EmitStaticBlockVarDecl(const VarDecl &D);
847
848  /// EmitParmDecl - Emit a ParmVarDecl or an ImplicitParamDecl.
849  void EmitParmDecl(const VarDecl &D, llvm::Value *Arg);
850
851  //===--------------------------------------------------------------------===//
852  //                             Statement Emission
853  //===--------------------------------------------------------------------===//
854
855  /// EmitStopPoint - Emit a debug stoppoint if we are emitting debug info.
856  void EmitStopPoint(const Stmt *S);
857
858  /// EmitStmt - Emit the code for the statement \arg S. It is legal to call
859  /// this function even if there is no current insertion point.
860  ///
861  /// This function may clear the current insertion point; callers should use
862  /// EnsureInsertPoint if they wish to subsequently generate code without first
863  /// calling EmitBlock, EmitBranch, or EmitStmt.
864  void EmitStmt(const Stmt *S);
865
866  /// EmitSimpleStmt - Try to emit a "simple" statement which does not
867  /// necessarily require an insertion point or debug information; typically
868  /// because the statement amounts to a jump or a container of other
869  /// statements.
870  ///
871  /// \return True if the statement was handled.
872  bool EmitSimpleStmt(const Stmt *S);
873
874  RValue EmitCompoundStmt(const CompoundStmt &S, bool GetLast = false,
875                          llvm::Value *AggLoc = 0, bool isAggVol = false);
876
877  /// EmitLabel - Emit the block for the given label. It is legal to call this
878  /// function even if there is no current insertion point.
879  void EmitLabel(const LabelStmt &S); // helper for EmitLabelStmt.
880
881  void EmitLabelStmt(const LabelStmt &S);
882  void EmitGotoStmt(const GotoStmt &S);
883  void EmitIndirectGotoStmt(const IndirectGotoStmt &S);
884  void EmitIfStmt(const IfStmt &S);
885  void EmitWhileStmt(const WhileStmt &S);
886  void EmitDoStmt(const DoStmt &S);
887  void EmitForStmt(const ForStmt &S);
888  void EmitReturnStmt(const ReturnStmt &S);
889  void EmitDeclStmt(const DeclStmt &S);
890  void EmitBreakStmt(const BreakStmt &S);
891  void EmitContinueStmt(const ContinueStmt &S);
892  void EmitSwitchStmt(const SwitchStmt &S);
893  void EmitDefaultStmt(const DefaultStmt &S);
894  void EmitCaseStmt(const CaseStmt &S);
895  void EmitCaseStmtRange(const CaseStmt &S);
896  void EmitAsmStmt(const AsmStmt &S);
897
898  void EmitObjCForCollectionStmt(const ObjCForCollectionStmt &S);
899  void EmitObjCAtTryStmt(const ObjCAtTryStmt &S);
900  void EmitObjCAtThrowStmt(const ObjCAtThrowStmt &S);
901  void EmitObjCAtSynchronizedStmt(const ObjCAtSynchronizedStmt &S);
902
903  void EmitCXXTryStmt(const CXXTryStmt &S);
904
905  //===--------------------------------------------------------------------===//
906  //                         LValue Expression Emission
907  //===--------------------------------------------------------------------===//
908
909  /// GetUndefRValue - Get an appropriate 'undef' rvalue for the given type.
910  RValue GetUndefRValue(QualType Ty);
911
912  /// EmitUnsupportedRValue - Emit a dummy r-value using the type of E
913  /// and issue an ErrorUnsupported style diagnostic (using the
914  /// provided Name).
915  RValue EmitUnsupportedRValue(const Expr *E,
916                               const char *Name);
917
918  /// EmitUnsupportedLValue - Emit a dummy l-value using the type of E and issue
919  /// an ErrorUnsupported style diagnostic (using the provided Name).
920  LValue EmitUnsupportedLValue(const Expr *E,
921                               const char *Name);
922
923  /// EmitLValue - Emit code to compute a designator that specifies the location
924  /// of the expression.
925  ///
926  /// This can return one of two things: a simple address or a bitfield
927  /// reference.  In either case, the LLVM Value* in the LValue structure is
928  /// guaranteed to be an LLVM pointer type.
929  ///
930  /// If this returns a bitfield reference, nothing about the pointee type of
931  /// the LLVM value is known: For example, it may not be a pointer to an
932  /// integer.
933  ///
934  /// If this returns a normal address, and if the lvalue's C type is fixed
935  /// size, this method guarantees that the returned pointer type will point to
936  /// an LLVM type of the same size of the lvalue's type.  If the lvalue has a
937  /// variable length type, this is not possible.
938  ///
939  LValue EmitLValue(const Expr *E);
940
941  /// EmitCheckedLValue - Same as EmitLValue but additionally we generate
942  /// checking code to guard against undefined behavior.  This is only
943  /// suitable when we know that the address will be used to access the
944  /// object.
945  LValue EmitCheckedLValue(const Expr *E);
946
947  /// EmitLoadOfScalar - Load a scalar value from an address, taking
948  /// care to appropriately convert from the memory representation to
949  /// the LLVM value representation.
950  llvm::Value *EmitLoadOfScalar(llvm::Value *Addr, bool Volatile,
951                                QualType Ty);
952
953  /// EmitStoreOfScalar - Store a scalar value to an address, taking
954  /// care to appropriately convert from the memory representation to
955  /// the LLVM value representation.
956  void EmitStoreOfScalar(llvm::Value *Value, llvm::Value *Addr,
957                         bool Volatile, QualType Ty);
958
959  /// EmitLoadOfLValue - Given an expression that represents a value lvalue,
960  /// this method emits the address of the lvalue, then loads the result as an
961  /// rvalue, returning the rvalue.
962  RValue EmitLoadOfLValue(LValue V, QualType LVType);
963  RValue EmitLoadOfExtVectorElementLValue(LValue V, QualType LVType);
964  RValue EmitLoadOfBitfieldLValue(LValue LV, QualType ExprType);
965  RValue EmitLoadOfPropertyRefLValue(LValue LV, QualType ExprType);
966  RValue EmitLoadOfKVCRefLValue(LValue LV, QualType ExprType);
967
968
969  /// EmitStoreThroughLValue - Store the specified rvalue into the specified
970  /// lvalue, where both are guaranteed to the have the same type, and that type
971  /// is 'Ty'.
972  void EmitStoreThroughLValue(RValue Src, LValue Dst, QualType Ty);
973  void EmitStoreThroughExtVectorComponentLValue(RValue Src, LValue Dst,
974                                                QualType Ty);
975  void EmitStoreThroughPropertyRefLValue(RValue Src, LValue Dst, QualType Ty);
976  void EmitStoreThroughKVCRefLValue(RValue Src, LValue Dst, QualType Ty);
977
978  /// EmitStoreThroughLValue - Store Src into Dst with same constraints as
979  /// EmitStoreThroughLValue.
980  ///
981  /// \param Result [out] - If non-null, this will be set to a Value* for the
982  /// bit-field contents after the store, appropriate for use as the result of
983  /// an assignment to the bit-field.
984  void EmitStoreThroughBitfieldLValue(RValue Src, LValue Dst, QualType Ty,
985                                      llvm::Value **Result=0);
986
987  // Note: only availabe for agg return types
988  LValue EmitBinaryOperatorLValue(const BinaryOperator *E);
989  // Note: only available for agg return types
990  LValue EmitCallExprLValue(const CallExpr *E);
991  // Note: only available for agg return types
992  LValue EmitVAArgExprLValue(const VAArgExpr *E);
993  LValue EmitDeclRefLValue(const DeclRefExpr *E);
994  LValue EmitStringLiteralLValue(const StringLiteral *E);
995  LValue EmitObjCEncodeExprLValue(const ObjCEncodeExpr *E);
996  LValue EmitPredefinedFunctionName(unsigned Type);
997  LValue EmitPredefinedLValue(const PredefinedExpr *E);
998  LValue EmitUnaryOpLValue(const UnaryOperator *E);
999  LValue EmitArraySubscriptExpr(const ArraySubscriptExpr *E);
1000  LValue EmitExtVectorElementExpr(const ExtVectorElementExpr *E);
1001  LValue EmitMemberExpr(const MemberExpr *E);
1002  LValue EmitObjCIsaExpr(const ObjCIsaExpr *E);
1003  LValue EmitCompoundLiteralLValue(const CompoundLiteralExpr *E);
1004  LValue EmitConditionalOperatorLValue(const ConditionalOperator *E);
1005  LValue EmitCastLValue(const CastExpr *E);
1006  LValue EmitNullInitializationLValue(const CXXZeroInitValueExpr *E);
1007
1008  LValue EmitPointerToDataMemberLValue(const FieldDecl *Field);
1009
1010  llvm::Value *EmitIvarOffset(const ObjCInterfaceDecl *Interface,
1011                              const ObjCIvarDecl *Ivar);
1012  LValue EmitLValueForField(llvm::Value* Base, const FieldDecl* Field,
1013                            bool isUnion, unsigned CVRQualifiers);
1014  LValue EmitLValueForIvar(QualType ObjectTy,
1015                           llvm::Value* Base, const ObjCIvarDecl *Ivar,
1016                           unsigned CVRQualifiers);
1017
1018  LValue EmitLValueForBitfield(llvm::Value* Base, const FieldDecl* Field,
1019                                unsigned CVRQualifiers);
1020
1021  LValue EmitBlockDeclRefLValue(const BlockDeclRefExpr *E);
1022
1023  LValue EmitCXXConstructLValue(const CXXConstructExpr *E);
1024  LValue EmitCXXBindTemporaryLValue(const CXXBindTemporaryExpr *E);
1025  LValue EmitCXXExprWithTemporariesLValue(const CXXExprWithTemporaries *E);
1026  LValue EmitCXXTypeidLValue(const CXXTypeidExpr *E);
1027
1028  LValue EmitObjCMessageExprLValue(const ObjCMessageExpr *E);
1029  LValue EmitObjCIvarRefLValue(const ObjCIvarRefExpr *E);
1030  LValue EmitObjCPropertyRefLValue(const ObjCPropertyRefExpr *E);
1031  LValue EmitObjCKVCRefLValue(const ObjCImplicitSetterGetterRefExpr *E);
1032  LValue EmitObjCSuperExprLValue(const ObjCSuperExpr *E);
1033  LValue EmitStmtExprLValue(const StmtExpr *E);
1034  LValue EmitPointerToDataMemberBinaryExpr(const BinaryOperator *E);
1035
1036  //===--------------------------------------------------------------------===//
1037  //                         Scalar Expression Emission
1038  //===--------------------------------------------------------------------===//
1039
1040  /// EmitCall - Generate a call of the given function, expecting the given
1041  /// result type, and using the given argument list which specifies both the
1042  /// LLVM arguments and the types they were derived from.
1043  ///
1044  /// \param TargetDecl - If given, the decl of the function in a direct call;
1045  /// used to set attributes on the call (noreturn, etc.).
1046  RValue EmitCall(const CGFunctionInfo &FnInfo,
1047                  llvm::Value *Callee,
1048                  ReturnValueSlot ReturnValue,
1049                  const CallArgList &Args,
1050                  const Decl *TargetDecl = 0);
1051
1052  RValue EmitCall(QualType FnType, llvm::Value *Callee,
1053                  ReturnValueSlot ReturnValue,
1054                  CallExpr::const_arg_iterator ArgBeg,
1055                  CallExpr::const_arg_iterator ArgEnd,
1056                  const Decl *TargetDecl = 0);
1057  RValue EmitCallExpr(const CallExpr *E,
1058                      ReturnValueSlot ReturnValue = ReturnValueSlot());
1059
1060  llvm::Value *BuildVirtualCall(const CXXMethodDecl *MD, llvm::Value *This,
1061                                const llvm::Type *Ty);
1062  llvm::Value *BuildVirtualCall(const CXXDestructorDecl *DD, CXXDtorType Type,
1063                                llvm::Value *&This, const llvm::Type *Ty);
1064
1065  RValue EmitCXXMemberCall(const CXXMethodDecl *MD,
1066                           llvm::Value *Callee,
1067                           ReturnValueSlot ReturnValue,
1068                           llvm::Value *This,
1069                           llvm::Value *VTT,
1070                           CallExpr::const_arg_iterator ArgBeg,
1071                           CallExpr::const_arg_iterator ArgEnd);
1072  RValue EmitCXXMemberCallExpr(const CXXMemberCallExpr *E,
1073                               ReturnValueSlot ReturnValue);
1074  RValue EmitCXXMemberPointerCallExpr(const CXXMemberCallExpr *E,
1075                                      ReturnValueSlot ReturnValue);
1076
1077  RValue EmitCXXOperatorMemberCallExpr(const CXXOperatorCallExpr *E,
1078                                       const CXXMethodDecl *MD,
1079                                       ReturnValueSlot ReturnValue);
1080
1081
1082  RValue EmitBuiltinExpr(const FunctionDecl *FD,
1083                         unsigned BuiltinID, const CallExpr *E);
1084
1085  RValue EmitBlockCallExpr(const CallExpr *E, ReturnValueSlot ReturnValue);
1086
1087  /// EmitTargetBuiltinExpr - Emit the given builtin call. Returns 0 if the call
1088  /// is unhandled by the current target.
1089  llvm::Value *EmitTargetBuiltinExpr(unsigned BuiltinID, const CallExpr *E);
1090
1091  llvm::Value *EmitX86BuiltinExpr(unsigned BuiltinID, const CallExpr *E);
1092  llvm::Value *EmitPPCBuiltinExpr(unsigned BuiltinID, const CallExpr *E);
1093
1094  llvm::Value *EmitObjCProtocolExpr(const ObjCProtocolExpr *E);
1095  llvm::Value *EmitObjCStringLiteral(const ObjCStringLiteral *E);
1096  llvm::Value *EmitObjCSelectorExpr(const ObjCSelectorExpr *E);
1097  RValue EmitObjCMessageExpr(const ObjCMessageExpr *E);
1098  RValue EmitObjCPropertyGet(const Expr *E);
1099  RValue EmitObjCSuperPropertyGet(const Expr *Exp, const Selector &S);
1100  void EmitObjCPropertySet(const Expr *E, RValue Src);
1101  void EmitObjCSuperPropertySet(const Expr *E, const Selector &S, RValue Src);
1102
1103
1104  /// EmitReferenceBindingToExpr - Emits a reference binding to the passed in
1105  /// expression. Will emit a temporary variable if E is not an LValue.
1106  RValue EmitReferenceBindingToExpr(const Expr* E, QualType DestType,
1107                                    bool IsInitializer = false);
1108
1109  //===--------------------------------------------------------------------===//
1110  //                           Expression Emission
1111  //===--------------------------------------------------------------------===//
1112
1113  // Expressions are broken into three classes: scalar, complex, aggregate.
1114
1115  /// EmitScalarExpr - Emit the computation of the specified expression of LLVM
1116  /// scalar type, returning the result.
1117  llvm::Value *EmitScalarExpr(const Expr *E , bool IgnoreResultAssign = false);
1118
1119  /// EmitScalarConversion - Emit a conversion from the specified type to the
1120  /// specified destination type, both of which are LLVM scalar types.
1121  llvm::Value *EmitScalarConversion(llvm::Value *Src, QualType SrcTy,
1122                                    QualType DstTy);
1123
1124  /// EmitComplexToScalarConversion - Emit a conversion from the specified
1125  /// complex type to the specified destination type, where the destination type
1126  /// is an LLVM scalar type.
1127  llvm::Value *EmitComplexToScalarConversion(ComplexPairTy Src, QualType SrcTy,
1128                                             QualType DstTy);
1129
1130
1131  /// EmitAggExpr - Emit the computation of the specified expression of
1132  /// aggregate type.  The result is computed into DestPtr.  Note that if
1133  /// DestPtr is null, the value of the aggregate expression is not needed.
1134  void EmitAggExpr(const Expr *E, llvm::Value *DestPtr, bool VolatileDest,
1135                   bool IgnoreResult = false, bool IsInitializer = false,
1136                   bool RequiresGCollection = false);
1137
1138  /// EmitGCMemmoveCollectable - Emit special API for structs with object
1139  /// pointers.
1140  void EmitGCMemmoveCollectable(llvm::Value *DestPtr, llvm::Value *SrcPtr,
1141                                QualType Ty);
1142
1143  /// EmitComplexExpr - Emit the computation of the specified expression of
1144  /// complex type, returning the result.
1145  ComplexPairTy EmitComplexExpr(const Expr *E, bool IgnoreReal = false,
1146                                bool IgnoreImag = false,
1147                                bool IgnoreRealAssign = false,
1148                                bool IgnoreImagAssign = false);
1149
1150  /// EmitComplexExprIntoAddr - Emit the computation of the specified expression
1151  /// of complex type, storing into the specified Value*.
1152  void EmitComplexExprIntoAddr(const Expr *E, llvm::Value *DestAddr,
1153                               bool DestIsVolatile);
1154
1155  /// StoreComplexToAddr - Store a complex number into the specified address.
1156  void StoreComplexToAddr(ComplexPairTy V, llvm::Value *DestAddr,
1157                          bool DestIsVolatile);
1158  /// LoadComplexFromAddr - Load a complex number from the specified address.
1159  ComplexPairTy LoadComplexFromAddr(llvm::Value *SrcAddr, bool SrcIsVolatile);
1160
1161  /// CreateStaticBlockVarDecl - Create a zero-initialized LLVM global for a
1162  /// static block var decl.
1163  llvm::GlobalVariable *CreateStaticBlockVarDecl(const VarDecl &D,
1164                                                 const char *Separator,
1165                                       llvm::GlobalValue::LinkageTypes Linkage);
1166
1167  /// AddInitializerToGlobalBlockVarDecl - Add the initializer for 'D' to the
1168  /// global variable that has already been created for it.  If the initializer
1169  /// has a different type than GV does, this may free GV and return a different
1170  /// one.  Otherwise it just returns GV.
1171  llvm::GlobalVariable *
1172  AddInitializerToGlobalBlockVarDecl(const VarDecl &D,
1173                                     llvm::GlobalVariable *GV);
1174
1175
1176  /// EmitStaticCXXBlockVarDeclInit - Create the initializer for a C++ runtime
1177  /// initialized static block var decl.
1178  void EmitStaticCXXBlockVarDeclInit(const VarDecl &D,
1179                                     llvm::GlobalVariable *GV);
1180
1181  /// EmitCXXGlobalVarDeclInit - Create the initializer for a C++
1182  /// variable with global storage.
1183  void EmitCXXGlobalVarDeclInit(const VarDecl &D, llvm::Constant *DeclPtr);
1184
1185  /// EmitCXXGlobalDtorRegistration - Emits a call to register the global ptr
1186  /// with the C++ runtime so that its destructor will be called at exit.
1187  void EmitCXXGlobalDtorRegistration(llvm::Constant *DtorFn,
1188                                     llvm::Constant *DeclPtr);
1189
1190  /// GenerateCXXGlobalInitFunc - Generates code for initializing global
1191  /// variables.
1192  void GenerateCXXGlobalInitFunc(llvm::Function *Fn,
1193                                 llvm::Constant **Decls,
1194                                 unsigned NumDecls);
1195
1196  void GenerateCXXGlobalVarDeclInitFunc(llvm::Function *Fn, const VarDecl *D);
1197
1198  void EmitCXXConstructExpr(llvm::Value *Dest, const CXXConstructExpr *E);
1199
1200  RValue EmitCXXExprWithTemporaries(const CXXExprWithTemporaries *E,
1201                                    llvm::Value *AggLoc = 0,
1202                                    bool IsAggLocVolatile = false,
1203                                    bool IsInitializer = false);
1204
1205  void EmitCXXThrowExpr(const CXXThrowExpr *E);
1206
1207  //===--------------------------------------------------------------------===//
1208  //                             Internal Helpers
1209  //===--------------------------------------------------------------------===//
1210
1211  /// ContainsLabel - Return true if the statement contains a label in it.  If
1212  /// this statement is not executed normally, it not containing a label means
1213  /// that we can just remove the code.
1214  static bool ContainsLabel(const Stmt *S, bool IgnoreCaseStmts = false);
1215
1216  /// ConstantFoldsToSimpleInteger - If the specified expression does not fold
1217  /// to a constant, or if it does but contains a label, return 0.  If it
1218  /// constant folds to 'true' and does not contain a label, return 1, if it
1219  /// constant folds to 'false' and does not contain a label, return -1.
1220  int ConstantFoldsToSimpleInteger(const Expr *Cond);
1221
1222  /// EmitBranchOnBoolExpr - Emit a branch on a boolean condition (e.g. for an
1223  /// if statement) to the specified blocks.  Based on the condition, this might
1224  /// try to simplify the codegen of the conditional based on the branch.
1225  void EmitBranchOnBoolExpr(const Expr *Cond, llvm::BasicBlock *TrueBlock,
1226                            llvm::BasicBlock *FalseBlock);
1227
1228  /// getTrapBB - Create a basic block that will call the trap intrinsic.  We'll
1229  /// generate a branch around the created basic block as necessary.
1230  llvm::BasicBlock* getTrapBB();
1231private:
1232
1233  void EmitReturnOfRValue(RValue RV, QualType Ty);
1234
1235  /// ExpandTypeFromArgs - Reconstruct a structure of type \arg Ty
1236  /// from function arguments into \arg Dst. See ABIArgInfo::Expand.
1237  ///
1238  /// \param AI - The first function argument of the expansion.
1239  /// \return The argument following the last expanded function
1240  /// argument.
1241  llvm::Function::arg_iterator
1242  ExpandTypeFromArgs(QualType Ty, LValue Dst,
1243                     llvm::Function::arg_iterator AI);
1244
1245  /// ExpandTypeToArgs - Expand an RValue \arg Src, with the LLVM type for \arg
1246  /// Ty, into individual arguments on the provided vector \arg Args. See
1247  /// ABIArgInfo::Expand.
1248  void ExpandTypeToArgs(QualType Ty, RValue Src,
1249                        llvm::SmallVector<llvm::Value*, 16> &Args);
1250
1251  llvm::Value* EmitAsmInput(const AsmStmt &S,
1252                            const TargetInfo::ConstraintInfo &Info,
1253                            const Expr *InputExpr, std::string &ConstraintStr);
1254
1255  /// EmitCleanupBlock - emits a single cleanup block.
1256  void EmitCleanupBlock();
1257
1258  /// AddBranchFixup - adds a branch instruction to the list of fixups for the
1259  /// current cleanup scope.
1260  void AddBranchFixup(llvm::BranchInst *BI);
1261
1262  /// EmitCallArg - Emit a single call argument.
1263  RValue EmitCallArg(const Expr *E, QualType ArgType);
1264
1265  /// EmitCallArgs - Emit call arguments for a function.
1266  /// The CallArgTypeInfo parameter is used for iterating over the known
1267  /// argument types of the function being called.
1268  template<typename T>
1269  void EmitCallArgs(CallArgList& Args, const T* CallArgTypeInfo,
1270                    CallExpr::const_arg_iterator ArgBeg,
1271                    CallExpr::const_arg_iterator ArgEnd) {
1272      CallExpr::const_arg_iterator Arg = ArgBeg;
1273
1274    // First, use the argument types that the type info knows about
1275    if (CallArgTypeInfo) {
1276      for (typename T::arg_type_iterator I = CallArgTypeInfo->arg_type_begin(),
1277           E = CallArgTypeInfo->arg_type_end(); I != E; ++I, ++Arg) {
1278        assert(Arg != ArgEnd && "Running over edge of argument list!");
1279        QualType ArgType = *I;
1280
1281        assert(getContext().getCanonicalType(ArgType.getNonReferenceType()).
1282               getTypePtr() ==
1283               getContext().getCanonicalType(Arg->getType()).getTypePtr() &&
1284               "type mismatch in call argument!");
1285
1286        Args.push_back(std::make_pair(EmitCallArg(*Arg, ArgType),
1287                                      ArgType));
1288      }
1289
1290      // Either we've emitted all the call args, or we have a call to a
1291      // variadic function.
1292      assert((Arg == ArgEnd || CallArgTypeInfo->isVariadic()) &&
1293             "Extra arguments in non-variadic function!");
1294
1295    }
1296
1297    // If we still have any arguments, emit them using the type of the argument.
1298    for (; Arg != ArgEnd; ++Arg) {
1299      QualType ArgType = Arg->getType();
1300      Args.push_back(std::make_pair(EmitCallArg(*Arg, ArgType),
1301                                    ArgType));
1302    }
1303  }
1304};
1305
1306
1307}  // end namespace CodeGen
1308}  // end namespace clang
1309
1310#endif
1311