1 //===--- CGBlocks.cpp - Emit LLVM Code for declarations -------------------===//
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 contains code to emit blocks.
11 //
12 //===----------------------------------------------------------------------===//
13 
14 #include "CGDebugInfo.h"
15 #include "CodeGenFunction.h"
16 #include "CGObjCRuntime.h"
17 #include "CodeGenModule.h"
18 #include "CGBlocks.h"
19 #include "clang/AST/DeclObjC.h"
20 #include "llvm/Module.h"
21 #include "llvm/ADT/SmallSet.h"
22 #include "llvm/Target/TargetData.h"
23 #include <algorithm>
24 
25 using namespace clang;
26 using namespace CodeGen;
27 
28 CGBlockInfo::CGBlockInfo(const BlockExpr *blockExpr, const char *N)
29   : Name(N), CXXThisIndex(0), CanBeGlobal(false), NeedsCopyDispose(false),
30     HasCXXObject(false), UsesStret(false), StructureType(0), Block(blockExpr) {
31 
32   // Skip asm prefix, if any.
33   if (Name && Name[0] == '\01')
34     ++Name;
35 }
36 
37 // Anchor the vtable to this translation unit.
38 CodeGenModule::ByrefHelpers::~ByrefHelpers() {}
39 
40 /// Build the given block as a global block.
41 static llvm::Constant *buildGlobalBlock(CodeGenModule &CGM,
42                                         const CGBlockInfo &blockInfo,
43                                         llvm::Constant *blockFn);
44 
45 /// Build the helper function to copy a block.
46 static llvm::Constant *buildCopyHelper(CodeGenModule &CGM,
47                                        const CGBlockInfo &blockInfo) {
48   return CodeGenFunction(CGM).GenerateCopyHelperFunction(blockInfo);
49 }
50 
51 /// Build the helper function to dipose of a block.
52 static llvm::Constant *buildDisposeHelper(CodeGenModule &CGM,
53                                           const CGBlockInfo &blockInfo) {
54   return CodeGenFunction(CGM).GenerateDestroyHelperFunction(blockInfo);
55 }
56 
57 /// Build the block descriptor constant for a block.
58 static llvm::Constant *buildBlockDescriptor(CodeGenModule &CGM,
59                                             const CGBlockInfo &blockInfo) {
60   ASTContext &C = CGM.getContext();
61 
62   llvm::Type *ulong = CGM.getTypes().ConvertType(C.UnsignedLongTy);
63   llvm::Type *i8p = CGM.getTypes().ConvertType(C.VoidPtrTy);
64 
65   SmallVector<llvm::Constant*, 6> elements;
66 
67   // reserved
68   elements.push_back(llvm::ConstantInt::get(ulong, 0));
69 
70   // Size
71   // FIXME: What is the right way to say this doesn't fit?  We should give
72   // a user diagnostic in that case.  Better fix would be to change the
73   // API to size_t.
74   elements.push_back(llvm::ConstantInt::get(ulong,
75                                             blockInfo.BlockSize.getQuantity()));
76 
77   // Optional copy/dispose helpers.
78   if (blockInfo.NeedsCopyDispose) {
79     // copy_func_helper_decl
80     elements.push_back(buildCopyHelper(CGM, blockInfo));
81 
82     // destroy_func_decl
83     elements.push_back(buildDisposeHelper(CGM, blockInfo));
84   }
85 
86   // Signature.  Mandatory ObjC-style method descriptor @encode sequence.
87   std::string typeAtEncoding =
88     CGM.getContext().getObjCEncodingForBlock(blockInfo.getBlockExpr());
89   elements.push_back(llvm::ConstantExpr::getBitCast(
90                           CGM.GetAddrOfConstantCString(typeAtEncoding), i8p));
91 
92   // GC layout.
93   if (C.getLangOptions().ObjC1)
94     elements.push_back(CGM.getObjCRuntime().BuildGCBlockLayout(CGM, blockInfo));
95   else
96     elements.push_back(llvm::Constant::getNullValue(i8p));
97 
98   llvm::Constant *init = llvm::ConstantStruct::getAnon(elements);
99 
100   llvm::GlobalVariable *global =
101     new llvm::GlobalVariable(CGM.getModule(), init->getType(), true,
102                              llvm::GlobalValue::InternalLinkage,
103                              init, "__block_descriptor_tmp");
104 
105   return llvm::ConstantExpr::getBitCast(global, CGM.getBlockDescriptorType());
106 }
107 
108 /*
109   Purely notional variadic template describing the layout of a block.
110 
111   template <class _ResultType, class... _ParamTypes, class... _CaptureTypes>
112   struct Block_literal {
113     /// Initialized to one of:
114     ///   extern void *_NSConcreteStackBlock[];
115     ///   extern void *_NSConcreteGlobalBlock[];
116     ///
117     /// In theory, we could start one off malloc'ed by setting
118     /// BLOCK_NEEDS_FREE, giving it a refcount of 1, and using
119     /// this isa:
120     ///   extern void *_NSConcreteMallocBlock[];
121     struct objc_class *isa;
122 
123     /// These are the flags (with corresponding bit number) that the
124     /// compiler is actually supposed to know about.
125     ///  25. BLOCK_HAS_COPY_DISPOSE - indicates that the block
126     ///   descriptor provides copy and dispose helper functions
127     ///  26. BLOCK_HAS_CXX_OBJ - indicates that there's a captured
128     ///   object with a nontrivial destructor or copy constructor
129     ///  28. BLOCK_IS_GLOBAL - indicates that the block is allocated
130     ///   as global memory
131     ///  29. BLOCK_USE_STRET - indicates that the block function
132     ///   uses stret, which objc_msgSend needs to know about
133     ///  30. BLOCK_HAS_SIGNATURE - indicates that the block has an
134     ///   @encoded signature string
135     /// And we're not supposed to manipulate these:
136     ///  24. BLOCK_NEEDS_FREE - indicates that the block has been moved
137     ///   to malloc'ed memory
138     ///  27. BLOCK_IS_GC - indicates that the block has been moved to
139     ///   to GC-allocated memory
140     /// Additionally, the bottom 16 bits are a reference count which
141     /// should be zero on the stack.
142     int flags;
143 
144     /// Reserved;  should be zero-initialized.
145     int reserved;
146 
147     /// Function pointer generated from block literal.
148     _ResultType (*invoke)(Block_literal *, _ParamTypes...);
149 
150     /// Block description metadata generated from block literal.
151     struct Block_descriptor *block_descriptor;
152 
153     /// Captured values follow.
154     _CapturesTypes captures...;
155   };
156  */
157 
158 /// The number of fields in a block header.
159 const unsigned BlockHeaderSize = 5;
160 
161 namespace {
162   /// A chunk of data that we actually have to capture in the block.
163   struct BlockLayoutChunk {
164     CharUnits Alignment;
165     CharUnits Size;
166     const BlockDecl::Capture *Capture; // null for 'this'
167     llvm::Type *Type;
168 
169     BlockLayoutChunk(CharUnits align, CharUnits size,
170                      const BlockDecl::Capture *capture,
171                      llvm::Type *type)
172       : Alignment(align), Size(size), Capture(capture), Type(type) {}
173 
174     /// Tell the block info that this chunk has the given field index.
175     void setIndex(CGBlockInfo &info, unsigned index) {
176       if (!Capture)
177         info.CXXThisIndex = index;
178       else
179         info.Captures[Capture->getVariable()]
180           = CGBlockInfo::Capture::makeIndex(index);
181     }
182   };
183 
184   /// Order by descending alignment.
185   bool operator<(const BlockLayoutChunk &left, const BlockLayoutChunk &right) {
186     return left.Alignment > right.Alignment;
187   }
188 }
189 
190 /// Determines if the given type is safe for constant capture in C++.
191 static bool isSafeForCXXConstantCapture(QualType type) {
192   const RecordType *recordType =
193     type->getBaseElementTypeUnsafe()->getAs<RecordType>();
194 
195   // Only records can be unsafe.
196   if (!recordType) return true;
197 
198   const CXXRecordDecl *record = cast<CXXRecordDecl>(recordType->getDecl());
199 
200   // Maintain semantics for classes with non-trivial dtors or copy ctors.
201   if (!record->hasTrivialDestructor()) return false;
202   if (!record->hasTrivialCopyConstructor()) return false;
203 
204   // Otherwise, we just have to make sure there aren't any mutable
205   // fields that might have changed since initialization.
206   return !record->hasMutableFields();
207 }
208 
209 /// It is illegal to modify a const object after initialization.
210 /// Therefore, if a const object has a constant initializer, we don't
211 /// actually need to keep storage for it in the block; we'll just
212 /// rematerialize it at the start of the block function.  This is
213 /// acceptable because we make no promises about address stability of
214 /// captured variables.
215 static llvm::Constant *tryCaptureAsConstant(CodeGenModule &CGM,
216                                             const VarDecl *var) {
217   QualType type = var->getType();
218 
219   // We can only do this if the variable is const.
220   if (!type.isConstQualified()) return 0;
221 
222   // Furthermore, in C++ we have to worry about mutable fields:
223   // C++ [dcl.type.cv]p4:
224   //   Except that any class member declared mutable can be
225   //   modified, any attempt to modify a const object during its
226   //   lifetime results in undefined behavior.
227   if (CGM.getLangOptions().CPlusPlus && !isSafeForCXXConstantCapture(type))
228     return 0;
229 
230   // If the variable doesn't have any initializer (shouldn't this be
231   // invalid?), it's not clear what we should do.  Maybe capture as
232   // zero?
233   const Expr *init = var->getInit();
234   if (!init) return 0;
235 
236   return CGM.EmitConstantExpr(init, var->getType());
237 }
238 
239 /// Get the low bit of a nonzero character count.  This is the
240 /// alignment of the nth byte if the 0th byte is universally aligned.
241 static CharUnits getLowBit(CharUnits v) {
242   return CharUnits::fromQuantity(v.getQuantity() & (~v.getQuantity() + 1));
243 }
244 
245 static void initializeForBlockHeader(CodeGenModule &CGM, CGBlockInfo &info,
246                              SmallVectorImpl<llvm::Type*> &elementTypes) {
247   ASTContext &C = CGM.getContext();
248 
249   // The header is basically a 'struct { void *; int; int; void *; void *; }'.
250   CharUnits ptrSize, ptrAlign, intSize, intAlign;
251   llvm::tie(ptrSize, ptrAlign) = C.getTypeInfoInChars(C.VoidPtrTy);
252   llvm::tie(intSize, intAlign) = C.getTypeInfoInChars(C.IntTy);
253 
254   // Are there crazy embedded platforms where this isn't true?
255   assert(intSize <= ptrSize && "layout assumptions horribly violated");
256 
257   CharUnits headerSize = ptrSize;
258   if (2 * intSize < ptrAlign) headerSize += ptrSize;
259   else headerSize += 2 * intSize;
260   headerSize += 2 * ptrSize;
261 
262   info.BlockAlign = ptrAlign;
263   info.BlockSize = headerSize;
264 
265   assert(elementTypes.empty());
266   llvm::Type *i8p = CGM.getTypes().ConvertType(C.VoidPtrTy);
267   llvm::Type *intTy = CGM.getTypes().ConvertType(C.IntTy);
268   elementTypes.push_back(i8p);
269   elementTypes.push_back(intTy);
270   elementTypes.push_back(intTy);
271   elementTypes.push_back(i8p);
272   elementTypes.push_back(CGM.getBlockDescriptorType());
273 
274   assert(elementTypes.size() == BlockHeaderSize);
275 }
276 
277 /// Compute the layout of the given block.  Attempts to lay the block
278 /// out with minimal space requirements.
279 static void computeBlockInfo(CodeGenModule &CGM, CGBlockInfo &info) {
280   ASTContext &C = CGM.getContext();
281   const BlockDecl *block = info.getBlockDecl();
282 
283   SmallVector<llvm::Type*, 8> elementTypes;
284   initializeForBlockHeader(CGM, info, elementTypes);
285 
286   if (!block->hasCaptures()) {
287     info.StructureType =
288       llvm::StructType::get(CGM.getLLVMContext(), elementTypes, true);
289     info.CanBeGlobal = true;
290     return;
291   }
292 
293   // Collect the layout chunks.
294   SmallVector<BlockLayoutChunk, 16> layout;
295   layout.reserve(block->capturesCXXThis() +
296                  (block->capture_end() - block->capture_begin()));
297 
298   CharUnits maxFieldAlign;
299 
300   // First, 'this'.
301   if (block->capturesCXXThis()) {
302     const DeclContext *DC = block->getDeclContext();
303     for (; isa<BlockDecl>(DC); DC = cast<BlockDecl>(DC)->getDeclContext())
304       ;
305     QualType thisType;
306     if (const CXXRecordDecl *RD = dyn_cast<CXXRecordDecl>(DC))
307       thisType = C.getPointerType(C.getRecordType(RD));
308     else
309       thisType = cast<CXXMethodDecl>(DC)->getThisType(C);
310 
311     llvm::Type *llvmType = CGM.getTypes().ConvertType(thisType);
312     std::pair<CharUnits,CharUnits> tinfo
313       = CGM.getContext().getTypeInfoInChars(thisType);
314     maxFieldAlign = std::max(maxFieldAlign, tinfo.second);
315 
316     layout.push_back(BlockLayoutChunk(tinfo.second, tinfo.first, 0, llvmType));
317   }
318 
319   // Next, all the block captures.
320   for (BlockDecl::capture_const_iterator ci = block->capture_begin(),
321          ce = block->capture_end(); ci != ce; ++ci) {
322     const VarDecl *variable = ci->getVariable();
323 
324     if (ci->isByRef()) {
325       // We have to copy/dispose of the __block reference.
326       info.NeedsCopyDispose = true;
327 
328       // Just use void* instead of a pointer to the byref type.
329       QualType byRefPtrTy = C.VoidPtrTy;
330 
331       llvm::Type *llvmType = CGM.getTypes().ConvertType(byRefPtrTy);
332       std::pair<CharUnits,CharUnits> tinfo
333         = CGM.getContext().getTypeInfoInChars(byRefPtrTy);
334       maxFieldAlign = std::max(maxFieldAlign, tinfo.second);
335 
336       layout.push_back(BlockLayoutChunk(tinfo.second, tinfo.first,
337                                         &*ci, llvmType));
338       continue;
339     }
340 
341     // Otherwise, build a layout chunk with the size and alignment of
342     // the declaration.
343     if (llvm::Constant *constant = tryCaptureAsConstant(CGM, variable)) {
344       info.Captures[variable] = CGBlockInfo::Capture::makeConstant(constant);
345       continue;
346     }
347 
348     // If we have a lifetime qualifier, honor it for capture purposes.
349     // That includes *not* copying it if it's __unsafe_unretained.
350     if (Qualifiers::ObjCLifetime lifetime
351           = variable->getType().getObjCLifetime()) {
352       switch (lifetime) {
353       case Qualifiers::OCL_None: llvm_unreachable("impossible");
354       case Qualifiers::OCL_ExplicitNone:
355       case Qualifiers::OCL_Autoreleasing:
356         break;
357 
358       case Qualifiers::OCL_Strong:
359       case Qualifiers::OCL_Weak:
360         info.NeedsCopyDispose = true;
361       }
362 
363     // Block pointers require copy/dispose.  So do Objective-C pointers.
364     } else if (variable->getType()->isObjCRetainableType()) {
365       info.NeedsCopyDispose = true;
366 
367     // So do types that require non-trivial copy construction.
368     } else if (ci->hasCopyExpr()) {
369       info.NeedsCopyDispose = true;
370       info.HasCXXObject = true;
371 
372     // And so do types with destructors.
373     } else if (CGM.getLangOptions().CPlusPlus) {
374       if (const CXXRecordDecl *record =
375             variable->getType()->getAsCXXRecordDecl()) {
376         if (!record->hasTrivialDestructor()) {
377           info.HasCXXObject = true;
378           info.NeedsCopyDispose = true;
379         }
380       }
381     }
382 
383     QualType VT = variable->getType();
384     CharUnits size = C.getTypeSizeInChars(VT);
385     CharUnits align = C.getDeclAlign(variable);
386 
387     maxFieldAlign = std::max(maxFieldAlign, align);
388 
389     llvm::Type *llvmType =
390       CGM.getTypes().ConvertTypeForMem(VT);
391 
392     layout.push_back(BlockLayoutChunk(align, size, &*ci, llvmType));
393   }
394 
395   // If that was everything, we're done here.
396   if (layout.empty()) {
397     info.StructureType =
398       llvm::StructType::get(CGM.getLLVMContext(), elementTypes, true);
399     info.CanBeGlobal = true;
400     return;
401   }
402 
403   // Sort the layout by alignment.  We have to use a stable sort here
404   // to get reproducible results.  There should probably be an
405   // llvm::array_pod_stable_sort.
406   std::stable_sort(layout.begin(), layout.end());
407 
408   CharUnits &blockSize = info.BlockSize;
409   info.BlockAlign = std::max(maxFieldAlign, info.BlockAlign);
410 
411   // Assuming that the first byte in the header is maximally aligned,
412   // get the alignment of the first byte following the header.
413   CharUnits endAlign = getLowBit(blockSize);
414 
415   // If the end of the header isn't satisfactorily aligned for the
416   // maximum thing, look for things that are okay with the header-end
417   // alignment, and keep appending them until we get something that's
418   // aligned right.  This algorithm is only guaranteed optimal if
419   // that condition is satisfied at some point; otherwise we can get
420   // things like:
421   //   header                 // next byte has alignment 4
422   //   something_with_size_5; // next byte has alignment 1
423   //   something_with_alignment_8;
424   // which has 7 bytes of padding, as opposed to the naive solution
425   // which might have less (?).
426   if (endAlign < maxFieldAlign) {
427     SmallVectorImpl<BlockLayoutChunk>::iterator
428       li = layout.begin() + 1, le = layout.end();
429 
430     // Look for something that the header end is already
431     // satisfactorily aligned for.
432     for (; li != le && endAlign < li->Alignment; ++li)
433       ;
434 
435     // If we found something that's naturally aligned for the end of
436     // the header, keep adding things...
437     if (li != le) {
438       SmallVectorImpl<BlockLayoutChunk>::iterator first = li;
439       for (; li != le; ++li) {
440         assert(endAlign >= li->Alignment);
441 
442         li->setIndex(info, elementTypes.size());
443         elementTypes.push_back(li->Type);
444         blockSize += li->Size;
445         endAlign = getLowBit(blockSize);
446 
447         // ...until we get to the alignment of the maximum field.
448         if (endAlign >= maxFieldAlign)
449           break;
450       }
451 
452       // Don't re-append everything we just appended.
453       layout.erase(first, li);
454     }
455   }
456 
457   // At this point, we just have to add padding if the end align still
458   // isn't aligned right.
459   if (endAlign < maxFieldAlign) {
460     CharUnits padding = maxFieldAlign - endAlign;
461 
462     elementTypes.push_back(llvm::ArrayType::get(CGM.Int8Ty,
463                                                 padding.getQuantity()));
464     blockSize += padding;
465 
466     endAlign = getLowBit(blockSize);
467     assert(endAlign >= maxFieldAlign);
468   }
469 
470   // Slam everything else on now.  This works because they have
471   // strictly decreasing alignment and we expect that size is always a
472   // multiple of alignment.
473   for (SmallVectorImpl<BlockLayoutChunk>::iterator
474          li = layout.begin(), le = layout.end(); li != le; ++li) {
475     assert(endAlign >= li->Alignment);
476     li->setIndex(info, elementTypes.size());
477     elementTypes.push_back(li->Type);
478     blockSize += li->Size;
479     endAlign = getLowBit(blockSize);
480   }
481 
482   info.StructureType =
483     llvm::StructType::get(CGM.getLLVMContext(), elementTypes, true);
484 }
485 
486 /// Emit a block literal expression in the current function.
487 llvm::Value *CodeGenFunction::EmitBlockLiteral(const BlockExpr *blockExpr) {
488   std::string Name = CurFn->getName();
489   CGBlockInfo blockInfo(blockExpr, Name.c_str());
490 
491   // Compute information about the layout, etc., of this block.
492   computeBlockInfo(CGM, blockInfo);
493 
494   // Using that metadata, generate the actual block function.
495   llvm::Constant *blockFn
496     = CodeGenFunction(CGM).GenerateBlockFunction(CurGD, blockInfo,
497                                                  CurFuncDecl, LocalDeclMap);
498   blockFn = llvm::ConstantExpr::getBitCast(blockFn, VoidPtrTy);
499 
500   // If there is nothing to capture, we can emit this as a global block.
501   if (blockInfo.CanBeGlobal)
502     return buildGlobalBlock(CGM, blockInfo, blockFn);
503 
504   // Otherwise, we have to emit this as a local block.
505 
506   llvm::Constant *isa = CGM.getNSConcreteStackBlock();
507   isa = llvm::ConstantExpr::getBitCast(isa, VoidPtrTy);
508 
509   // Build the block descriptor.
510   llvm::Constant *descriptor = buildBlockDescriptor(CGM, blockInfo);
511 
512   llvm::Type *intTy = ConvertType(getContext().IntTy);
513 
514   llvm::AllocaInst *blockAddr =
515     CreateTempAlloca(blockInfo.StructureType, "block");
516   blockAddr->setAlignment(blockInfo.BlockAlign.getQuantity());
517 
518   // Compute the initial on-stack block flags.
519   BlockFlags flags = BLOCK_HAS_SIGNATURE;
520   if (blockInfo.NeedsCopyDispose) flags |= BLOCK_HAS_COPY_DISPOSE;
521   if (blockInfo.HasCXXObject) flags |= BLOCK_HAS_CXX_OBJ;
522   if (blockInfo.UsesStret) flags |= BLOCK_USE_STRET;
523 
524   // Initialize the block literal.
525   Builder.CreateStore(isa, Builder.CreateStructGEP(blockAddr, 0, "block.isa"));
526   Builder.CreateStore(llvm::ConstantInt::get(intTy, flags.getBitMask()),
527                       Builder.CreateStructGEP(blockAddr, 1, "block.flags"));
528   Builder.CreateStore(llvm::ConstantInt::get(intTy, 0),
529                       Builder.CreateStructGEP(blockAddr, 2, "block.reserved"));
530   Builder.CreateStore(blockFn, Builder.CreateStructGEP(blockAddr, 3,
531                                                        "block.invoke"));
532   Builder.CreateStore(descriptor, Builder.CreateStructGEP(blockAddr, 4,
533                                                           "block.descriptor"));
534 
535   // Finally, capture all the values into the block.
536   const BlockDecl *blockDecl = blockInfo.getBlockDecl();
537 
538   // First, 'this'.
539   if (blockDecl->capturesCXXThis()) {
540     llvm::Value *addr = Builder.CreateStructGEP(blockAddr,
541                                                 blockInfo.CXXThisIndex,
542                                                 "block.captured-this.addr");
543     Builder.CreateStore(LoadCXXThis(), addr);
544   }
545 
546   // Next, captured variables.
547   for (BlockDecl::capture_const_iterator ci = blockDecl->capture_begin(),
548          ce = blockDecl->capture_end(); ci != ce; ++ci) {
549     const VarDecl *variable = ci->getVariable();
550     const CGBlockInfo::Capture &capture = blockInfo.getCapture(variable);
551 
552     // Ignore constant captures.
553     if (capture.isConstant()) continue;
554 
555     QualType type = variable->getType();
556 
557     // This will be a [[type]]*, except that a byref entry will just be
558     // an i8**.
559     llvm::Value *blockField =
560       Builder.CreateStructGEP(blockAddr, capture.getIndex(),
561                               "block.captured");
562 
563     // Compute the address of the thing we're going to move into the
564     // block literal.
565     llvm::Value *src;
566     if (ci->isNested()) {
567       // We need to use the capture from the enclosing block.
568       const CGBlockInfo::Capture &enclosingCapture =
569         BlockInfo->getCapture(variable);
570 
571       // This is a [[type]]*, except that a byref entry wil just be an i8**.
572       src = Builder.CreateStructGEP(LoadBlockStruct(),
573                                     enclosingCapture.getIndex(),
574                                     "block.capture.addr");
575     } else {
576       // This is a [[type]]*.
577       src = LocalDeclMap[variable];
578     }
579 
580     // For byrefs, we just write the pointer to the byref struct into
581     // the block field.  There's no need to chase the forwarding
582     // pointer at this point, since we're building something that will
583     // live a shorter life than the stack byref anyway.
584     if (ci->isByRef()) {
585       // Get a void* that points to the byref struct.
586       if (ci->isNested())
587         src = Builder.CreateLoad(src, "byref.capture");
588       else
589         src = Builder.CreateBitCast(src, VoidPtrTy);
590 
591       // Write that void* into the capture field.
592       Builder.CreateStore(src, blockField);
593 
594     // If we have a copy constructor, evaluate that into the block field.
595     } else if (const Expr *copyExpr = ci->getCopyExpr()) {
596       EmitSynthesizedCXXCopyCtor(blockField, src, copyExpr);
597 
598     // If it's a reference variable, copy the reference into the block field.
599     } else if (type->isReferenceType()) {
600       Builder.CreateStore(Builder.CreateLoad(src, "ref.val"), blockField);
601 
602     // Otherwise, fake up a POD copy into the block field.
603     } else {
604       // Fake up a new variable so that EmitScalarInit doesn't think
605       // we're referring to the variable in its own initializer.
606       ImplicitParamDecl blockFieldPseudoVar(/*DC*/ 0, SourceLocation(),
607                                             /*name*/ 0, type);
608 
609       // We use one of these or the other depending on whether the
610       // reference is nested.
611       DeclRefExpr notNested(const_cast<VarDecl*>(variable), type, VK_LValue,
612                             SourceLocation());
613       BlockDeclRefExpr nested(const_cast<VarDecl*>(variable), type,
614                               VK_LValue, SourceLocation(), /*byref*/ false);
615 
616       Expr *declRef =
617         (ci->isNested() ? static_cast<Expr*>(&nested) : &notNested);
618 
619       ImplicitCastExpr l2r(ImplicitCastExpr::OnStack, type, CK_LValueToRValue,
620                            declRef, VK_RValue);
621       EmitExprAsInit(&l2r, &blockFieldPseudoVar,
622                      MakeAddrLValue(blockField, type,
623                                     getContext().getDeclAlign(variable)
624                                                 .getQuantity()),
625                      /*captured by init*/ false);
626     }
627 
628     // Push a destructor if necessary.  The semantics for when this
629     // actually gets run are really obscure.
630     if (!ci->isByRef()) {
631       switch (QualType::DestructionKind dtorKind = type.isDestructedType()) {
632       case QualType::DK_none:
633         break;
634 
635       // Block captures count as local values and have imprecise semantics.
636       // They also can't be arrays, so need to worry about that.
637       case QualType::DK_objc_strong_lifetime: {
638         // This local is a GCC and MSVC compiler workaround.
639         Destroyer *destroyer = &destroyARCStrongImprecise;
640         pushDestroy(getCleanupKind(dtorKind), blockField, type,
641                     *destroyer, /*useEHCleanupForArray*/ false);
642         break;
643       }
644 
645       case QualType::DK_objc_weak_lifetime:
646       case QualType::DK_cxx_destructor:
647         pushDestroy(dtorKind, blockField, type);
648         break;
649       }
650     }
651   }
652 
653   // Cast to the converted block-pointer type, which happens (somewhat
654   // unfortunately) to be a pointer to function type.
655   llvm::Value *result =
656     Builder.CreateBitCast(blockAddr,
657                           ConvertType(blockInfo.getBlockExpr()->getType()));
658 
659   return result;
660 }
661 
662 
663 llvm::Type *CodeGenModule::getBlockDescriptorType() {
664   if (BlockDescriptorType)
665     return BlockDescriptorType;
666 
667   llvm::Type *UnsignedLongTy =
668     getTypes().ConvertType(getContext().UnsignedLongTy);
669 
670   // struct __block_descriptor {
671   //   unsigned long reserved;
672   //   unsigned long block_size;
673   //
674   //   // later, the following will be added
675   //
676   //   struct {
677   //     void (*copyHelper)();
678   //     void (*copyHelper)();
679   //   } helpers;                // !!! optional
680   //
681   //   const char *signature;   // the block signature
682   //   const char *layout;      // reserved
683   // };
684   BlockDescriptorType =
685     llvm::StructType::create("struct.__block_descriptor",
686                              UnsignedLongTy, UnsignedLongTy, NULL);
687 
688   // Now form a pointer to that.
689   BlockDescriptorType = llvm::PointerType::getUnqual(BlockDescriptorType);
690   return BlockDescriptorType;
691 }
692 
693 llvm::Type *CodeGenModule::getGenericBlockLiteralType() {
694   if (GenericBlockLiteralType)
695     return GenericBlockLiteralType;
696 
697   llvm::Type *BlockDescPtrTy = getBlockDescriptorType();
698 
699   // struct __block_literal_generic {
700   //   void *__isa;
701   //   int __flags;
702   //   int __reserved;
703   //   void (*__invoke)(void *);
704   //   struct __block_descriptor *__descriptor;
705   // };
706   GenericBlockLiteralType =
707     llvm::StructType::create("struct.__block_literal_generic",
708                              VoidPtrTy, IntTy, IntTy, VoidPtrTy,
709                              BlockDescPtrTy, NULL);
710 
711   return GenericBlockLiteralType;
712 }
713 
714 
715 RValue CodeGenFunction::EmitBlockCallExpr(const CallExpr* E,
716                                           ReturnValueSlot ReturnValue) {
717   const BlockPointerType *BPT =
718     E->getCallee()->getType()->getAs<BlockPointerType>();
719 
720   llvm::Value *Callee = EmitScalarExpr(E->getCallee());
721 
722   // Get a pointer to the generic block literal.
723   llvm::Type *BlockLiteralTy =
724     llvm::PointerType::getUnqual(CGM.getGenericBlockLiteralType());
725 
726   // Bitcast the callee to a block literal.
727   llvm::Value *BlockLiteral =
728     Builder.CreateBitCast(Callee, BlockLiteralTy, "block.literal");
729 
730   // Get the function pointer from the literal.
731   llvm::Value *FuncPtr = Builder.CreateStructGEP(BlockLiteral, 3);
732 
733   BlockLiteral = Builder.CreateBitCast(BlockLiteral, VoidPtrTy);
734 
735   // Add the block literal.
736   CallArgList Args;
737   Args.add(RValue::get(BlockLiteral), getContext().VoidPtrTy);
738 
739   QualType FnType = BPT->getPointeeType();
740 
741   // And the rest of the arguments.
742   EmitCallArgs(Args, FnType->getAs<FunctionProtoType>(),
743                E->arg_begin(), E->arg_end());
744 
745   // Load the function.
746   llvm::Value *Func = Builder.CreateLoad(FuncPtr);
747 
748   const FunctionType *FuncTy = FnType->castAs<FunctionType>();
749   const CGFunctionInfo &FnInfo = CGM.getTypes().getFunctionInfo(Args, FuncTy);
750 
751   // Cast the function pointer to the right type.
752   llvm::Type *BlockFTy =
753     CGM.getTypes().GetFunctionType(FnInfo, false);
754 
755   llvm::Type *BlockFTyPtr = llvm::PointerType::getUnqual(BlockFTy);
756   Func = Builder.CreateBitCast(Func, BlockFTyPtr);
757 
758   // And call the block.
759   return EmitCall(FnInfo, Func, ReturnValue, Args);
760 }
761 
762 llvm::Value *CodeGenFunction::GetAddrOfBlockDecl(const VarDecl *variable,
763                                                  bool isByRef) {
764   assert(BlockInfo && "evaluating block ref without block information?");
765   const CGBlockInfo::Capture &capture = BlockInfo->getCapture(variable);
766 
767   // Handle constant captures.
768   if (capture.isConstant()) return LocalDeclMap[variable];
769 
770   llvm::Value *addr =
771     Builder.CreateStructGEP(LoadBlockStruct(), capture.getIndex(),
772                             "block.capture.addr");
773 
774   if (isByRef) {
775     // addr should be a void** right now.  Load, then cast the result
776     // to byref*.
777 
778     addr = Builder.CreateLoad(addr);
779     llvm::PointerType *byrefPointerType
780       = llvm::PointerType::get(BuildByRefType(variable), 0);
781     addr = Builder.CreateBitCast(addr, byrefPointerType,
782                                  "byref.addr");
783 
784     // Follow the forwarding pointer.
785     addr = Builder.CreateStructGEP(addr, 1, "byref.forwarding");
786     addr = Builder.CreateLoad(addr, "byref.addr.forwarded");
787 
788     // Cast back to byref* and GEP over to the actual object.
789     addr = Builder.CreateBitCast(addr, byrefPointerType);
790     addr = Builder.CreateStructGEP(addr, getByRefValueLLVMField(variable),
791                                    variable->getNameAsString());
792   }
793 
794   if (variable->getType()->isReferenceType())
795     addr = Builder.CreateLoad(addr, "ref.tmp");
796 
797   return addr;
798 }
799 
800 llvm::Constant *
801 CodeGenModule::GetAddrOfGlobalBlock(const BlockExpr *blockExpr,
802                                     const char *name) {
803   CGBlockInfo blockInfo(blockExpr, name);
804 
805   // Compute information about the layout, etc., of this block.
806   computeBlockInfo(*this, blockInfo);
807 
808   // Using that metadata, generate the actual block function.
809   llvm::Constant *blockFn;
810   {
811     llvm::DenseMap<const Decl*, llvm::Value*> LocalDeclMap;
812     blockFn = CodeGenFunction(*this).GenerateBlockFunction(GlobalDecl(),
813                                                            blockInfo,
814                                                            0, LocalDeclMap);
815   }
816   blockFn = llvm::ConstantExpr::getBitCast(blockFn, VoidPtrTy);
817 
818   return buildGlobalBlock(*this, blockInfo, blockFn);
819 }
820 
821 static llvm::Constant *buildGlobalBlock(CodeGenModule &CGM,
822                                         const CGBlockInfo &blockInfo,
823                                         llvm::Constant *blockFn) {
824   assert(blockInfo.CanBeGlobal);
825 
826   // Generate the constants for the block literal initializer.
827   llvm::Constant *fields[BlockHeaderSize];
828 
829   // isa
830   fields[0] = CGM.getNSConcreteGlobalBlock();
831 
832   // __flags
833   BlockFlags flags = BLOCK_IS_GLOBAL | BLOCK_HAS_SIGNATURE;
834   if (blockInfo.UsesStret) flags |= BLOCK_USE_STRET;
835 
836   fields[1] = llvm::ConstantInt::get(CGM.IntTy, flags.getBitMask());
837 
838   // Reserved
839   fields[2] = llvm::Constant::getNullValue(CGM.IntTy);
840 
841   // Function
842   fields[3] = blockFn;
843 
844   // Descriptor
845   fields[4] = buildBlockDescriptor(CGM, blockInfo);
846 
847   llvm::Constant *init = llvm::ConstantStruct::getAnon(fields);
848 
849   llvm::GlobalVariable *literal =
850     new llvm::GlobalVariable(CGM.getModule(),
851                              init->getType(),
852                              /*constant*/ true,
853                              llvm::GlobalVariable::InternalLinkage,
854                              init,
855                              "__block_literal_global");
856   literal->setAlignment(blockInfo.BlockAlign.getQuantity());
857 
858   // Return a constant of the appropriately-casted type.
859   llvm::Type *requiredType =
860     CGM.getTypes().ConvertType(blockInfo.getBlockExpr()->getType());
861   return llvm::ConstantExpr::getBitCast(literal, requiredType);
862 }
863 
864 llvm::Function *
865 CodeGenFunction::GenerateBlockFunction(GlobalDecl GD,
866                                        const CGBlockInfo &blockInfo,
867                                        const Decl *outerFnDecl,
868                                        const DeclMapTy &ldm) {
869   const BlockDecl *blockDecl = blockInfo.getBlockDecl();
870 
871   // Check if we should generate debug info for this block function.
872   if (CGM.getModuleDebugInfo())
873     DebugInfo = CGM.getModuleDebugInfo();
874 
875   BlockInfo = &blockInfo;
876 
877   // Arrange for local static and local extern declarations to appear
878   // to be local to this function as well, in case they're directly
879   // referenced in a block.
880   for (DeclMapTy::const_iterator i = ldm.begin(), e = ldm.end(); i != e; ++i) {
881     const VarDecl *var = dyn_cast<VarDecl>(i->first);
882     if (var && !var->hasLocalStorage())
883       LocalDeclMap[var] = i->second;
884   }
885 
886   // Begin building the function declaration.
887 
888   // Build the argument list.
889   FunctionArgList args;
890 
891   // The first argument is the block pointer.  Just take it as a void*
892   // and cast it later.
893   QualType selfTy = getContext().VoidPtrTy;
894   IdentifierInfo *II = &CGM.getContext().Idents.get(".block_descriptor");
895 
896   ImplicitParamDecl selfDecl(const_cast<BlockDecl*>(blockDecl),
897                              SourceLocation(), II, selfTy);
898   args.push_back(&selfDecl);
899 
900   // Now add the rest of the parameters.
901   for (BlockDecl::param_const_iterator i = blockDecl->param_begin(),
902        e = blockDecl->param_end(); i != e; ++i)
903     args.push_back(*i);
904 
905   // Create the function declaration.
906   const FunctionProtoType *fnType =
907     cast<FunctionProtoType>(blockInfo.getBlockExpr()->getFunctionType());
908   const CGFunctionInfo &fnInfo =
909     CGM.getTypes().getFunctionInfo(fnType->getResultType(), args,
910                                    fnType->getExtInfo());
911   if (CGM.ReturnTypeUsesSRet(fnInfo))
912     blockInfo.UsesStret = true;
913 
914   llvm::FunctionType *fnLLVMType =
915     CGM.getTypes().GetFunctionType(fnInfo, fnType->isVariadic());
916 
917   MangleBuffer name;
918   CGM.getBlockMangledName(GD, name, blockDecl);
919   llvm::Function *fn =
920     llvm::Function::Create(fnLLVMType, llvm::GlobalValue::InternalLinkage,
921                            name.getString(), &CGM.getModule());
922   CGM.SetInternalFunctionAttributes(blockDecl, fn, fnInfo);
923 
924   // Begin generating the function.
925   StartFunction(blockDecl, fnType->getResultType(), fn, fnInfo, args,
926                 blockInfo.getBlockExpr()->getBody()->getLocStart());
927   CurFuncDecl = outerFnDecl; // StartFunction sets this to blockDecl
928 
929   // Okay.  Undo some of what StartFunction did.
930 
931   // Pull the 'self' reference out of the local decl map.
932   llvm::Value *blockAddr = LocalDeclMap[&selfDecl];
933   LocalDeclMap.erase(&selfDecl);
934   BlockPointer = Builder.CreateBitCast(blockAddr,
935                                        blockInfo.StructureType->getPointerTo(),
936                                        "block");
937 
938   // If we have a C++ 'this' reference, go ahead and force it into
939   // existence now.
940   if (blockDecl->capturesCXXThis()) {
941     llvm::Value *addr = Builder.CreateStructGEP(BlockPointer,
942                                                 blockInfo.CXXThisIndex,
943                                                 "block.captured-this");
944     CXXThisValue = Builder.CreateLoad(addr, "this");
945   }
946 
947   // LoadObjCSelf() expects there to be an entry for 'self' in LocalDeclMap;
948   // appease it.
949   if (const ObjCMethodDecl *method
950         = dyn_cast_or_null<ObjCMethodDecl>(CurFuncDecl)) {
951     const VarDecl *self = method->getSelfDecl();
952 
953     // There might not be a capture for 'self', but if there is...
954     if (blockInfo.Captures.count(self)) {
955       const CGBlockInfo::Capture &capture = blockInfo.getCapture(self);
956       llvm::Value *selfAddr = Builder.CreateStructGEP(BlockPointer,
957                                                       capture.getIndex(),
958                                                       "block.captured-self");
959       LocalDeclMap[self] = selfAddr;
960     }
961   }
962 
963   // Also force all the constant captures.
964   for (BlockDecl::capture_const_iterator ci = blockDecl->capture_begin(),
965          ce = blockDecl->capture_end(); ci != ce; ++ci) {
966     const VarDecl *variable = ci->getVariable();
967     const CGBlockInfo::Capture &capture = blockInfo.getCapture(variable);
968     if (!capture.isConstant()) continue;
969 
970     unsigned align = getContext().getDeclAlign(variable).getQuantity();
971 
972     llvm::AllocaInst *alloca =
973       CreateMemTemp(variable->getType(), "block.captured-const");
974     alloca->setAlignment(align);
975 
976     Builder.CreateStore(capture.getConstant(), alloca, align);
977 
978     LocalDeclMap[variable] = alloca;
979   }
980 
981   // Save a spot to insert the debug information for all the BlockDeclRefDecls.
982   llvm::BasicBlock *entry = Builder.GetInsertBlock();
983   llvm::BasicBlock::iterator entry_ptr = Builder.GetInsertPoint();
984   --entry_ptr;
985 
986   EmitStmt(blockDecl->getBody());
987 
988   // Remember where we were...
989   llvm::BasicBlock *resume = Builder.GetInsertBlock();
990 
991   // Go back to the entry.
992   ++entry_ptr;
993   Builder.SetInsertPoint(entry, entry_ptr);
994 
995   // Emit debug information for all the BlockDeclRefDecls.
996   // FIXME: also for 'this'
997   if (CGDebugInfo *DI = getDebugInfo()) {
998     for (BlockDecl::capture_const_iterator ci = blockDecl->capture_begin(),
999            ce = blockDecl->capture_end(); ci != ce; ++ci) {
1000       const VarDecl *variable = ci->getVariable();
1001       DI->EmitLocation(Builder, variable->getLocation());
1002 
1003       const CGBlockInfo::Capture &capture = blockInfo.getCapture(variable);
1004       if (capture.isConstant()) {
1005         DI->EmitDeclareOfAutoVariable(variable, LocalDeclMap[variable],
1006                                       Builder);
1007         continue;
1008       }
1009 
1010       DI->EmitDeclareOfBlockDeclRefVariable(variable, BlockPointer,
1011                                             Builder, blockInfo);
1012     }
1013   }
1014 
1015   // And resume where we left off.
1016   if (resume == 0)
1017     Builder.ClearInsertionPoint();
1018   else
1019     Builder.SetInsertPoint(resume);
1020 
1021   FinishFunction(cast<CompoundStmt>(blockDecl->getBody())->getRBracLoc());
1022 
1023   return fn;
1024 }
1025 
1026 /*
1027     notes.push_back(HelperInfo());
1028     HelperInfo &note = notes.back();
1029     note.index = capture.getIndex();
1030     note.RequiresCopying = (ci->hasCopyExpr() || BlockRequiresCopying(type));
1031     note.cxxbar_import = ci->getCopyExpr();
1032 
1033     if (ci->isByRef()) {
1034       note.flag = BLOCK_FIELD_IS_BYREF;
1035       if (type.isObjCGCWeak())
1036         note.flag |= BLOCK_FIELD_IS_WEAK;
1037     } else if (type->isBlockPointerType()) {
1038       note.flag = BLOCK_FIELD_IS_BLOCK;
1039     } else {
1040       note.flag = BLOCK_FIELD_IS_OBJECT;
1041     }
1042  */
1043 
1044 
1045 
1046 llvm::Constant *
1047 CodeGenFunction::GenerateCopyHelperFunction(const CGBlockInfo &blockInfo) {
1048   ASTContext &C = getContext();
1049 
1050   FunctionArgList args;
1051   ImplicitParamDecl dstDecl(0, SourceLocation(), 0, C.VoidPtrTy);
1052   args.push_back(&dstDecl);
1053   ImplicitParamDecl srcDecl(0, SourceLocation(), 0, C.VoidPtrTy);
1054   args.push_back(&srcDecl);
1055 
1056   const CGFunctionInfo &FI =
1057       CGM.getTypes().getFunctionInfo(C.VoidTy, args, FunctionType::ExtInfo());
1058 
1059   // FIXME: it would be nice if these were mergeable with things with
1060   // identical semantics.
1061   llvm::FunctionType *LTy = CGM.getTypes().GetFunctionType(FI, false);
1062 
1063   llvm::Function *Fn =
1064     llvm::Function::Create(LTy, llvm::GlobalValue::InternalLinkage,
1065                            "__copy_helper_block_", &CGM.getModule());
1066 
1067   IdentifierInfo *II
1068     = &CGM.getContext().Idents.get("__copy_helper_block_");
1069 
1070   // Check if we should generate debug info for this block helper function.
1071   if (CGM.getModuleDebugInfo())
1072     DebugInfo = CGM.getModuleDebugInfo();
1073 
1074   FunctionDecl *FD = FunctionDecl::Create(C,
1075                                           C.getTranslationUnitDecl(),
1076                                           SourceLocation(),
1077                                           SourceLocation(), II, C.VoidTy, 0,
1078                                           SC_Static,
1079                                           SC_None,
1080                                           false,
1081                                           true);
1082   StartFunction(FD, C.VoidTy, Fn, FI, args, SourceLocation());
1083 
1084   llvm::Type *structPtrTy = blockInfo.StructureType->getPointerTo();
1085 
1086   llvm::Value *src = GetAddrOfLocalVar(&srcDecl);
1087   src = Builder.CreateLoad(src);
1088   src = Builder.CreateBitCast(src, structPtrTy, "block.source");
1089 
1090   llvm::Value *dst = GetAddrOfLocalVar(&dstDecl);
1091   dst = Builder.CreateLoad(dst);
1092   dst = Builder.CreateBitCast(dst, structPtrTy, "block.dest");
1093 
1094   const BlockDecl *blockDecl = blockInfo.getBlockDecl();
1095 
1096   for (BlockDecl::capture_const_iterator ci = blockDecl->capture_begin(),
1097          ce = blockDecl->capture_end(); ci != ce; ++ci) {
1098     const VarDecl *variable = ci->getVariable();
1099     QualType type = variable->getType();
1100 
1101     const CGBlockInfo::Capture &capture = blockInfo.getCapture(variable);
1102     if (capture.isConstant()) continue;
1103 
1104     const Expr *copyExpr = ci->getCopyExpr();
1105     BlockFieldFlags flags;
1106 
1107     bool isARCWeakCapture = false;
1108 
1109     if (copyExpr) {
1110       assert(!ci->isByRef());
1111       // don't bother computing flags
1112 
1113     } else if (ci->isByRef()) {
1114       flags = BLOCK_FIELD_IS_BYREF;
1115       if (type.isObjCGCWeak())
1116         flags |= BLOCK_FIELD_IS_WEAK;
1117 
1118     } else if (type->isObjCRetainableType()) {
1119       flags = BLOCK_FIELD_IS_OBJECT;
1120       if (type->isBlockPointerType())
1121         flags = BLOCK_FIELD_IS_BLOCK;
1122 
1123       // Special rules for ARC captures:
1124       if (getLangOptions().ObjCAutoRefCount) {
1125         Qualifiers qs = type.getQualifiers();
1126 
1127         // Don't generate special copy logic for a captured object
1128         // unless it's __strong or __weak.
1129         if (!qs.hasStrongOrWeakObjCLifetime())
1130           continue;
1131 
1132         // Support __weak direct captures.
1133         if (qs.getObjCLifetime() == Qualifiers::OCL_Weak)
1134           isARCWeakCapture = true;
1135       }
1136     } else {
1137       continue;
1138     }
1139 
1140     unsigned index = capture.getIndex();
1141     llvm::Value *srcField = Builder.CreateStructGEP(src, index);
1142     llvm::Value *dstField = Builder.CreateStructGEP(dst, index);
1143 
1144     // If there's an explicit copy expression, we do that.
1145     if (copyExpr) {
1146       EmitSynthesizedCXXCopyCtor(dstField, srcField, copyExpr);
1147     } else if (isARCWeakCapture) {
1148       EmitARCCopyWeak(dstField, srcField);
1149     } else {
1150       llvm::Value *srcValue = Builder.CreateLoad(srcField, "blockcopy.src");
1151       srcValue = Builder.CreateBitCast(srcValue, VoidPtrTy);
1152       llvm::Value *dstAddr = Builder.CreateBitCast(dstField, VoidPtrTy);
1153       Builder.CreateCall3(CGM.getBlockObjectAssign(), dstAddr, srcValue,
1154                           llvm::ConstantInt::get(Int32Ty, flags.getBitMask()));
1155     }
1156   }
1157 
1158   FinishFunction();
1159 
1160   return llvm::ConstantExpr::getBitCast(Fn, VoidPtrTy);
1161 }
1162 
1163 llvm::Constant *
1164 CodeGenFunction::GenerateDestroyHelperFunction(const CGBlockInfo &blockInfo) {
1165   ASTContext &C = getContext();
1166 
1167   FunctionArgList args;
1168   ImplicitParamDecl srcDecl(0, SourceLocation(), 0, C.VoidPtrTy);
1169   args.push_back(&srcDecl);
1170 
1171   const CGFunctionInfo &FI =
1172       CGM.getTypes().getFunctionInfo(C.VoidTy, args, FunctionType::ExtInfo());
1173 
1174   // FIXME: We'd like to put these into a mergable by content, with
1175   // internal linkage.
1176   llvm::FunctionType *LTy = CGM.getTypes().GetFunctionType(FI, false);
1177 
1178   llvm::Function *Fn =
1179     llvm::Function::Create(LTy, llvm::GlobalValue::InternalLinkage,
1180                            "__destroy_helper_block_", &CGM.getModule());
1181 
1182   // Check if we should generate debug info for this block destroy function.
1183   if (CGM.getModuleDebugInfo())
1184     DebugInfo = CGM.getModuleDebugInfo();
1185 
1186   IdentifierInfo *II
1187     = &CGM.getContext().Idents.get("__destroy_helper_block_");
1188 
1189   FunctionDecl *FD = FunctionDecl::Create(C, C.getTranslationUnitDecl(),
1190                                           SourceLocation(),
1191                                           SourceLocation(), II, C.VoidTy, 0,
1192                                           SC_Static,
1193                                           SC_None,
1194                                           false, true);
1195   StartFunction(FD, C.VoidTy, Fn, FI, args, SourceLocation());
1196 
1197   llvm::Type *structPtrTy = blockInfo.StructureType->getPointerTo();
1198 
1199   llvm::Value *src = GetAddrOfLocalVar(&srcDecl);
1200   src = Builder.CreateLoad(src);
1201   src = Builder.CreateBitCast(src, structPtrTy, "block");
1202 
1203   const BlockDecl *blockDecl = blockInfo.getBlockDecl();
1204 
1205   CodeGenFunction::RunCleanupsScope cleanups(*this);
1206 
1207   for (BlockDecl::capture_const_iterator ci = blockDecl->capture_begin(),
1208          ce = blockDecl->capture_end(); ci != ce; ++ci) {
1209     const VarDecl *variable = ci->getVariable();
1210     QualType type = variable->getType();
1211 
1212     const CGBlockInfo::Capture &capture = blockInfo.getCapture(variable);
1213     if (capture.isConstant()) continue;
1214 
1215     BlockFieldFlags flags;
1216     const CXXDestructorDecl *dtor = 0;
1217 
1218     bool isARCWeakCapture = false;
1219 
1220     if (ci->isByRef()) {
1221       flags = BLOCK_FIELD_IS_BYREF;
1222       if (type.isObjCGCWeak())
1223         flags |= BLOCK_FIELD_IS_WEAK;
1224     } else if (const CXXRecordDecl *record = type->getAsCXXRecordDecl()) {
1225       if (record->hasTrivialDestructor())
1226         continue;
1227       dtor = record->getDestructor();
1228     } else if (type->isObjCRetainableType()) {
1229       flags = BLOCK_FIELD_IS_OBJECT;
1230       if (type->isBlockPointerType())
1231         flags = BLOCK_FIELD_IS_BLOCK;
1232 
1233       // Special rules for ARC captures.
1234       if (getLangOptions().ObjCAutoRefCount) {
1235         Qualifiers qs = type.getQualifiers();
1236 
1237         // Don't generate special dispose logic for a captured object
1238         // unless it's __strong or __weak.
1239         if (!qs.hasStrongOrWeakObjCLifetime())
1240           continue;
1241 
1242         // Support __weak direct captures.
1243         if (qs.getObjCLifetime() == Qualifiers::OCL_Weak)
1244           isARCWeakCapture = true;
1245       }
1246     } else {
1247       continue;
1248     }
1249 
1250     unsigned index = capture.getIndex();
1251     llvm::Value *srcField = Builder.CreateStructGEP(src, index);
1252 
1253     // If there's an explicit copy expression, we do that.
1254     if (dtor) {
1255       PushDestructorCleanup(dtor, srcField);
1256 
1257     // If this is a __weak capture, emit the release directly.
1258     } else if (isARCWeakCapture) {
1259       EmitARCDestroyWeak(srcField);
1260 
1261     // Otherwise we call _Block_object_dispose.  It wouldn't be too
1262     // hard to just emit this as a cleanup if we wanted to make sure
1263     // that things were done in reverse.
1264     } else {
1265       llvm::Value *value = Builder.CreateLoad(srcField);
1266       value = Builder.CreateBitCast(value, VoidPtrTy);
1267       BuildBlockRelease(value, flags);
1268     }
1269   }
1270 
1271   cleanups.ForceCleanup();
1272 
1273   FinishFunction();
1274 
1275   return llvm::ConstantExpr::getBitCast(Fn, VoidPtrTy);
1276 }
1277 
1278 namespace {
1279 
1280 /// Emits the copy/dispose helper functions for a __block object of id type.
1281 class ObjectByrefHelpers : public CodeGenModule::ByrefHelpers {
1282   BlockFieldFlags Flags;
1283 
1284 public:
1285   ObjectByrefHelpers(CharUnits alignment, BlockFieldFlags flags)
1286     : ByrefHelpers(alignment), Flags(flags) {}
1287 
1288   void emitCopy(CodeGenFunction &CGF, llvm::Value *destField,
1289                 llvm::Value *srcField) {
1290     destField = CGF.Builder.CreateBitCast(destField, CGF.VoidPtrTy);
1291 
1292     srcField = CGF.Builder.CreateBitCast(srcField, CGF.VoidPtrPtrTy);
1293     llvm::Value *srcValue = CGF.Builder.CreateLoad(srcField);
1294 
1295     unsigned flags = (Flags | BLOCK_BYREF_CALLER).getBitMask();
1296 
1297     llvm::Value *flagsVal = llvm::ConstantInt::get(CGF.Int32Ty, flags);
1298     llvm::Value *fn = CGF.CGM.getBlockObjectAssign();
1299     CGF.Builder.CreateCall3(fn, destField, srcValue, flagsVal);
1300   }
1301 
1302   void emitDispose(CodeGenFunction &CGF, llvm::Value *field) {
1303     field = CGF.Builder.CreateBitCast(field, CGF.Int8PtrTy->getPointerTo(0));
1304     llvm::Value *value = CGF.Builder.CreateLoad(field);
1305 
1306     CGF.BuildBlockRelease(value, Flags | BLOCK_BYREF_CALLER);
1307   }
1308 
1309   void profileImpl(llvm::FoldingSetNodeID &id) const {
1310     id.AddInteger(Flags.getBitMask());
1311   }
1312 };
1313 
1314 /// Emits the copy/dispose helpers for an ARC __block __weak variable.
1315 class ARCWeakByrefHelpers : public CodeGenModule::ByrefHelpers {
1316 public:
1317   ARCWeakByrefHelpers(CharUnits alignment) : ByrefHelpers(alignment) {}
1318 
1319   void emitCopy(CodeGenFunction &CGF, llvm::Value *destField,
1320                 llvm::Value *srcField) {
1321     CGF.EmitARCMoveWeak(destField, srcField);
1322   }
1323 
1324   void emitDispose(CodeGenFunction &CGF, llvm::Value *field) {
1325     CGF.EmitARCDestroyWeak(field);
1326   }
1327 
1328   void profileImpl(llvm::FoldingSetNodeID &id) const {
1329     // 0 is distinguishable from all pointers and byref flags
1330     id.AddInteger(0);
1331   }
1332 };
1333 
1334 /// Emits the copy/dispose helpers for an ARC __block __strong variable
1335 /// that's not of block-pointer type.
1336 class ARCStrongByrefHelpers : public CodeGenModule::ByrefHelpers {
1337 public:
1338   ARCStrongByrefHelpers(CharUnits alignment) : ByrefHelpers(alignment) {}
1339 
1340   void emitCopy(CodeGenFunction &CGF, llvm::Value *destField,
1341                 llvm::Value *srcField) {
1342     // Do a "move" by copying the value and then zeroing out the old
1343     // variable.
1344 
1345     llvm::Value *value = CGF.Builder.CreateLoad(srcField);
1346     llvm::Value *null =
1347       llvm::ConstantPointerNull::get(cast<llvm::PointerType>(value->getType()));
1348     CGF.Builder.CreateStore(value, destField);
1349     CGF.Builder.CreateStore(null, srcField);
1350   }
1351 
1352   void emitDispose(CodeGenFunction &CGF, llvm::Value *field) {
1353     llvm::Value *value = CGF.Builder.CreateLoad(field);
1354     CGF.EmitARCRelease(value, /*precise*/ false);
1355   }
1356 
1357   void profileImpl(llvm::FoldingSetNodeID &id) const {
1358     // 1 is distinguishable from all pointers and byref flags
1359     id.AddInteger(1);
1360   }
1361 };
1362 
1363 /// Emits the copy/dispose helpers for a __block variable with a
1364 /// nontrivial copy constructor or destructor.
1365 class CXXByrefHelpers : public CodeGenModule::ByrefHelpers {
1366   QualType VarType;
1367   const Expr *CopyExpr;
1368 
1369 public:
1370   CXXByrefHelpers(CharUnits alignment, QualType type,
1371                   const Expr *copyExpr)
1372     : ByrefHelpers(alignment), VarType(type), CopyExpr(copyExpr) {}
1373 
1374   bool needsCopy() const { return CopyExpr != 0; }
1375   void emitCopy(CodeGenFunction &CGF, llvm::Value *destField,
1376                 llvm::Value *srcField) {
1377     if (!CopyExpr) return;
1378     CGF.EmitSynthesizedCXXCopyCtor(destField, srcField, CopyExpr);
1379   }
1380 
1381   void emitDispose(CodeGenFunction &CGF, llvm::Value *field) {
1382     EHScopeStack::stable_iterator cleanupDepth = CGF.EHStack.stable_begin();
1383     CGF.PushDestructorCleanup(VarType, field);
1384     CGF.PopCleanupBlocks(cleanupDepth);
1385   }
1386 
1387   void profileImpl(llvm::FoldingSetNodeID &id) const {
1388     id.AddPointer(VarType.getCanonicalType().getAsOpaquePtr());
1389   }
1390 };
1391 } // end anonymous namespace
1392 
1393 static llvm::Constant *
1394 generateByrefCopyHelper(CodeGenFunction &CGF,
1395                         llvm::StructType &byrefType,
1396                         CodeGenModule::ByrefHelpers &byrefInfo) {
1397   ASTContext &Context = CGF.getContext();
1398 
1399   QualType R = Context.VoidTy;
1400 
1401   FunctionArgList args;
1402   ImplicitParamDecl dst(0, SourceLocation(), 0, Context.VoidPtrTy);
1403   args.push_back(&dst);
1404 
1405   ImplicitParamDecl src(0, SourceLocation(), 0, Context.VoidPtrTy);
1406   args.push_back(&src);
1407 
1408   const CGFunctionInfo &FI =
1409     CGF.CGM.getTypes().getFunctionInfo(R, args, FunctionType::ExtInfo());
1410 
1411   CodeGenTypes &Types = CGF.CGM.getTypes();
1412   llvm::FunctionType *LTy = Types.GetFunctionType(FI, false);
1413 
1414   // FIXME: We'd like to put these into a mergable by content, with
1415   // internal linkage.
1416   llvm::Function *Fn =
1417     llvm::Function::Create(LTy, llvm::GlobalValue::InternalLinkage,
1418                            "__Block_byref_object_copy_", &CGF.CGM.getModule());
1419 
1420   IdentifierInfo *II
1421     = &Context.Idents.get("__Block_byref_object_copy_");
1422 
1423   FunctionDecl *FD = FunctionDecl::Create(Context,
1424                                           Context.getTranslationUnitDecl(),
1425                                           SourceLocation(),
1426                                           SourceLocation(), II, R, 0,
1427                                           SC_Static,
1428                                           SC_None,
1429                                           false, true);
1430 
1431   CGF.StartFunction(FD, R, Fn, FI, args, SourceLocation());
1432 
1433   if (byrefInfo.needsCopy()) {
1434     llvm::Type *byrefPtrType = byrefType.getPointerTo(0);
1435 
1436     // dst->x
1437     llvm::Value *destField = CGF.GetAddrOfLocalVar(&dst);
1438     destField = CGF.Builder.CreateLoad(destField);
1439     destField = CGF.Builder.CreateBitCast(destField, byrefPtrType);
1440     destField = CGF.Builder.CreateStructGEP(destField, 6, "x");
1441 
1442     // src->x
1443     llvm::Value *srcField = CGF.GetAddrOfLocalVar(&src);
1444     srcField = CGF.Builder.CreateLoad(srcField);
1445     srcField = CGF.Builder.CreateBitCast(srcField, byrefPtrType);
1446     srcField = CGF.Builder.CreateStructGEP(srcField, 6, "x");
1447 
1448     byrefInfo.emitCopy(CGF, destField, srcField);
1449   }
1450 
1451   CGF.FinishFunction();
1452 
1453   return llvm::ConstantExpr::getBitCast(Fn, CGF.Int8PtrTy);
1454 }
1455 
1456 /// Build the copy helper for a __block variable.
1457 static llvm::Constant *buildByrefCopyHelper(CodeGenModule &CGM,
1458                                             llvm::StructType &byrefType,
1459                                             CodeGenModule::ByrefHelpers &info) {
1460   CodeGenFunction CGF(CGM);
1461   return generateByrefCopyHelper(CGF, byrefType, info);
1462 }
1463 
1464 /// Generate code for a __block variable's dispose helper.
1465 static llvm::Constant *
1466 generateByrefDisposeHelper(CodeGenFunction &CGF,
1467                            llvm::StructType &byrefType,
1468                            CodeGenModule::ByrefHelpers &byrefInfo) {
1469   ASTContext &Context = CGF.getContext();
1470   QualType R = Context.VoidTy;
1471 
1472   FunctionArgList args;
1473   ImplicitParamDecl src(0, SourceLocation(), 0, Context.VoidPtrTy);
1474   args.push_back(&src);
1475 
1476   const CGFunctionInfo &FI =
1477     CGF.CGM.getTypes().getFunctionInfo(R, args, FunctionType::ExtInfo());
1478 
1479   CodeGenTypes &Types = CGF.CGM.getTypes();
1480   llvm::FunctionType *LTy = Types.GetFunctionType(FI, false);
1481 
1482   // FIXME: We'd like to put these into a mergable by content, with
1483   // internal linkage.
1484   llvm::Function *Fn =
1485     llvm::Function::Create(LTy, llvm::GlobalValue::InternalLinkage,
1486                            "__Block_byref_object_dispose_",
1487                            &CGF.CGM.getModule());
1488 
1489   IdentifierInfo *II
1490     = &Context.Idents.get("__Block_byref_object_dispose_");
1491 
1492   FunctionDecl *FD = FunctionDecl::Create(Context,
1493                                           Context.getTranslationUnitDecl(),
1494                                           SourceLocation(),
1495                                           SourceLocation(), II, R, 0,
1496                                           SC_Static,
1497                                           SC_None,
1498                                           false, true);
1499   CGF.StartFunction(FD, R, Fn, FI, args, SourceLocation());
1500 
1501   if (byrefInfo.needsDispose()) {
1502     llvm::Value *V = CGF.GetAddrOfLocalVar(&src);
1503     V = CGF.Builder.CreateLoad(V);
1504     V = CGF.Builder.CreateBitCast(V, byrefType.getPointerTo(0));
1505     V = CGF.Builder.CreateStructGEP(V, 6, "x");
1506 
1507     byrefInfo.emitDispose(CGF, V);
1508   }
1509 
1510   CGF.FinishFunction();
1511 
1512   return llvm::ConstantExpr::getBitCast(Fn, CGF.Int8PtrTy);
1513 }
1514 
1515 /// Build the dispose helper for a __block variable.
1516 static llvm::Constant *buildByrefDisposeHelper(CodeGenModule &CGM,
1517                                               llvm::StructType &byrefType,
1518                                             CodeGenModule::ByrefHelpers &info) {
1519   CodeGenFunction CGF(CGM);
1520   return generateByrefDisposeHelper(CGF, byrefType, info);
1521 }
1522 
1523 ///
1524 template <class T> static T *buildByrefHelpers(CodeGenModule &CGM,
1525                                                llvm::StructType &byrefTy,
1526                                                T &byrefInfo) {
1527   // Increase the field's alignment to be at least pointer alignment,
1528   // since the layout of the byref struct will guarantee at least that.
1529   byrefInfo.Alignment = std::max(byrefInfo.Alignment,
1530                               CharUnits::fromQuantity(CGM.PointerAlignInBytes));
1531 
1532   llvm::FoldingSetNodeID id;
1533   byrefInfo.Profile(id);
1534 
1535   void *insertPos;
1536   CodeGenModule::ByrefHelpers *node
1537     = CGM.ByrefHelpersCache.FindNodeOrInsertPos(id, insertPos);
1538   if (node) return static_cast<T*>(node);
1539 
1540   byrefInfo.CopyHelper = buildByrefCopyHelper(CGM, byrefTy, byrefInfo);
1541   byrefInfo.DisposeHelper = buildByrefDisposeHelper(CGM, byrefTy, byrefInfo);
1542 
1543   T *copy = new (CGM.getContext()) T(byrefInfo);
1544   CGM.ByrefHelpersCache.InsertNode(copy, insertPos);
1545   return copy;
1546 }
1547 
1548 CodeGenModule::ByrefHelpers *
1549 CodeGenFunction::buildByrefHelpers(llvm::StructType &byrefType,
1550                                    const AutoVarEmission &emission) {
1551   const VarDecl &var = *emission.Variable;
1552   QualType type = var.getType();
1553 
1554   if (const CXXRecordDecl *record = type->getAsCXXRecordDecl()) {
1555     const Expr *copyExpr = CGM.getContext().getBlockVarCopyInits(&var);
1556     if (!copyExpr && record->hasTrivialDestructor()) return 0;
1557 
1558     CXXByrefHelpers byrefInfo(emission.Alignment, type, copyExpr);
1559     return ::buildByrefHelpers(CGM, byrefType, byrefInfo);
1560   }
1561 
1562   // Otherwise, if we don't have a retainable type, there's nothing to do.
1563   // that the runtime does extra copies.
1564   if (!type->isObjCRetainableType()) return 0;
1565 
1566   Qualifiers qs = type.getQualifiers();
1567 
1568   // If we have lifetime, that dominates.
1569   if (Qualifiers::ObjCLifetime lifetime = qs.getObjCLifetime()) {
1570     assert(getLangOptions().ObjCAutoRefCount);
1571 
1572     switch (lifetime) {
1573     case Qualifiers::OCL_None: llvm_unreachable("impossible");
1574 
1575     // These are just bits as far as the runtime is concerned.
1576     case Qualifiers::OCL_ExplicitNone:
1577     case Qualifiers::OCL_Autoreleasing:
1578       return 0;
1579 
1580     // Tell the runtime that this is ARC __weak, called by the
1581     // byref routines.
1582     case Qualifiers::OCL_Weak: {
1583       ARCWeakByrefHelpers byrefInfo(emission.Alignment);
1584       return ::buildByrefHelpers(CGM, byrefType, byrefInfo);
1585     }
1586 
1587     // ARC __strong __block variables need to be retained.
1588     case Qualifiers::OCL_Strong:
1589       // Block-pointers need to be _Block_copy'ed, so we let the
1590       // runtime be in charge.  But we can't use the code below
1591       // because we don't want to set BYREF_CALLER, which will
1592       // just make the runtime ignore us.
1593       if (type->isBlockPointerType()) {
1594         BlockFieldFlags flags = BLOCK_FIELD_IS_BLOCK;
1595         ObjectByrefHelpers byrefInfo(emission.Alignment, flags);
1596         return ::buildByrefHelpers(CGM, byrefType, byrefInfo);
1597 
1598       // Otherwise, we transfer ownership of the retain from the stack
1599       // to the heap.
1600       } else {
1601         ARCStrongByrefHelpers byrefInfo(emission.Alignment);
1602         return ::buildByrefHelpers(CGM, byrefType, byrefInfo);
1603       }
1604     }
1605     llvm_unreachable("fell out of lifetime switch!");
1606   }
1607 
1608   BlockFieldFlags flags;
1609   if (type->isBlockPointerType()) {
1610     flags |= BLOCK_FIELD_IS_BLOCK;
1611   } else if (CGM.getContext().isObjCNSObjectType(type) ||
1612              type->isObjCObjectPointerType()) {
1613     flags |= BLOCK_FIELD_IS_OBJECT;
1614   } else {
1615     return 0;
1616   }
1617 
1618   if (type.isObjCGCWeak())
1619     flags |= BLOCK_FIELD_IS_WEAK;
1620 
1621   ObjectByrefHelpers byrefInfo(emission.Alignment, flags);
1622   return ::buildByrefHelpers(CGM, byrefType, byrefInfo);
1623 }
1624 
1625 unsigned CodeGenFunction::getByRefValueLLVMField(const ValueDecl *VD) const {
1626   assert(ByRefValueInfo.count(VD) && "Did not find value!");
1627 
1628   return ByRefValueInfo.find(VD)->second.second;
1629 }
1630 
1631 llvm::Value *CodeGenFunction::BuildBlockByrefAddress(llvm::Value *BaseAddr,
1632                                                      const VarDecl *V) {
1633   llvm::Value *Loc = Builder.CreateStructGEP(BaseAddr, 1, "forwarding");
1634   Loc = Builder.CreateLoad(Loc);
1635   Loc = Builder.CreateStructGEP(Loc, getByRefValueLLVMField(V),
1636                                 V->getNameAsString());
1637   return Loc;
1638 }
1639 
1640 /// BuildByRefType - This routine changes a __block variable declared as T x
1641 ///   into:
1642 ///
1643 ///      struct {
1644 ///        void *__isa;
1645 ///        void *__forwarding;
1646 ///        int32_t __flags;
1647 ///        int32_t __size;
1648 ///        void *__copy_helper;       // only if needed
1649 ///        void *__destroy_helper;    // only if needed
1650 ///        char padding[X];           // only if needed
1651 ///        T x;
1652 ///      } x
1653 ///
1654 llvm::Type *CodeGenFunction::BuildByRefType(const VarDecl *D) {
1655   std::pair<llvm::Type *, unsigned> &Info = ByRefValueInfo[D];
1656   if (Info.first)
1657     return Info.first;
1658 
1659   QualType Ty = D->getType();
1660 
1661   SmallVector<llvm::Type *, 8> types;
1662 
1663   llvm::StructType *ByRefType =
1664     llvm::StructType::create(getLLVMContext(),
1665                              "struct.__block_byref_" + D->getNameAsString());
1666 
1667   // void *__isa;
1668   types.push_back(Int8PtrTy);
1669 
1670   // void *__forwarding;
1671   types.push_back(llvm::PointerType::getUnqual(ByRefType));
1672 
1673   // int32_t __flags;
1674   types.push_back(Int32Ty);
1675 
1676   // int32_t __size;
1677   types.push_back(Int32Ty);
1678 
1679   bool HasCopyAndDispose = getContext().BlockRequiresCopying(Ty);
1680   if (HasCopyAndDispose) {
1681     /// void *__copy_helper;
1682     types.push_back(Int8PtrTy);
1683 
1684     /// void *__destroy_helper;
1685     types.push_back(Int8PtrTy);
1686   }
1687 
1688   bool Packed = false;
1689   CharUnits Align = getContext().getDeclAlign(D);
1690   if (Align > getContext().toCharUnitsFromBits(Target.getPointerAlign(0))) {
1691     // We have to insert padding.
1692 
1693     // The struct above has 2 32-bit integers.
1694     unsigned CurrentOffsetInBytes = 4 * 2;
1695 
1696     // And either 2 or 4 pointers.
1697     CurrentOffsetInBytes += (HasCopyAndDispose ? 4 : 2) *
1698       CGM.getTargetData().getTypeAllocSize(Int8PtrTy);
1699 
1700     // Align the offset.
1701     unsigned AlignedOffsetInBytes =
1702       llvm::RoundUpToAlignment(CurrentOffsetInBytes, Align.getQuantity());
1703 
1704     unsigned NumPaddingBytes = AlignedOffsetInBytes - CurrentOffsetInBytes;
1705     if (NumPaddingBytes > 0) {
1706       llvm::Type *Ty = llvm::Type::getInt8Ty(getLLVMContext());
1707       // FIXME: We need a sema error for alignment larger than the minimum of
1708       // the maximal stack alignment and the alignment of malloc on the system.
1709       if (NumPaddingBytes > 1)
1710         Ty = llvm::ArrayType::get(Ty, NumPaddingBytes);
1711 
1712       types.push_back(Ty);
1713 
1714       // We want a packed struct.
1715       Packed = true;
1716     }
1717   }
1718 
1719   // T x;
1720   types.push_back(ConvertTypeForMem(Ty));
1721 
1722   ByRefType->setBody(types, Packed);
1723 
1724   Info.first = ByRefType;
1725 
1726   Info.second = types.size() - 1;
1727 
1728   return Info.first;
1729 }
1730 
1731 /// Initialize the structural components of a __block variable, i.e.
1732 /// everything but the actual object.
1733 void CodeGenFunction::emitByrefStructureInit(const AutoVarEmission &emission) {
1734   // Find the address of the local.
1735   llvm::Value *addr = emission.Address;
1736 
1737   // That's an alloca of the byref structure type.
1738   llvm::StructType *byrefType = cast<llvm::StructType>(
1739                  cast<llvm::PointerType>(addr->getType())->getElementType());
1740 
1741   // Build the byref helpers if necessary.  This is null if we don't need any.
1742   CodeGenModule::ByrefHelpers *helpers =
1743     buildByrefHelpers(*byrefType, emission);
1744 
1745   const VarDecl &D = *emission.Variable;
1746   QualType type = D.getType();
1747 
1748   llvm::Value *V;
1749 
1750   // Initialize the 'isa', which is just 0 or 1.
1751   int isa = 0;
1752   if (type.isObjCGCWeak())
1753     isa = 1;
1754   V = Builder.CreateIntToPtr(Builder.getInt32(isa), Int8PtrTy, "isa");
1755   Builder.CreateStore(V, Builder.CreateStructGEP(addr, 0, "byref.isa"));
1756 
1757   // Store the address of the variable into its own forwarding pointer.
1758   Builder.CreateStore(addr,
1759                       Builder.CreateStructGEP(addr, 1, "byref.forwarding"));
1760 
1761   // Blocks ABI:
1762   //   c) the flags field is set to either 0 if no helper functions are
1763   //      needed or BLOCK_HAS_COPY_DISPOSE if they are,
1764   BlockFlags flags;
1765   if (helpers) flags |= BLOCK_HAS_COPY_DISPOSE;
1766   Builder.CreateStore(llvm::ConstantInt::get(IntTy, flags.getBitMask()),
1767                       Builder.CreateStructGEP(addr, 2, "byref.flags"));
1768 
1769   CharUnits byrefSize = CGM.GetTargetTypeStoreSize(byrefType);
1770   V = llvm::ConstantInt::get(IntTy, byrefSize.getQuantity());
1771   Builder.CreateStore(V, Builder.CreateStructGEP(addr, 3, "byref.size"));
1772 
1773   if (helpers) {
1774     llvm::Value *copy_helper = Builder.CreateStructGEP(addr, 4);
1775     Builder.CreateStore(helpers->CopyHelper, copy_helper);
1776 
1777     llvm::Value *destroy_helper = Builder.CreateStructGEP(addr, 5);
1778     Builder.CreateStore(helpers->DisposeHelper, destroy_helper);
1779   }
1780 }
1781 
1782 void CodeGenFunction::BuildBlockRelease(llvm::Value *V, BlockFieldFlags flags) {
1783   llvm::Value *F = CGM.getBlockObjectDispose();
1784   llvm::Value *N;
1785   V = Builder.CreateBitCast(V, Int8PtrTy);
1786   N = llvm::ConstantInt::get(Int32Ty, flags.getBitMask());
1787   Builder.CreateCall2(F, V, N);
1788 }
1789 
1790 namespace {
1791   struct CallBlockRelease : EHScopeStack::Cleanup {
1792     llvm::Value *Addr;
1793     CallBlockRelease(llvm::Value *Addr) : Addr(Addr) {}
1794 
1795     void Emit(CodeGenFunction &CGF, Flags flags) {
1796       // Should we be passing FIELD_IS_WEAK here?
1797       CGF.BuildBlockRelease(Addr, BLOCK_FIELD_IS_BYREF);
1798     }
1799   };
1800 }
1801 
1802 /// Enter a cleanup to destroy a __block variable.  Note that this
1803 /// cleanup should be a no-op if the variable hasn't left the stack
1804 /// yet; if a cleanup is required for the variable itself, that needs
1805 /// to be done externally.
1806 void CodeGenFunction::enterByrefCleanup(const AutoVarEmission &emission) {
1807   // We don't enter this cleanup if we're in pure-GC mode.
1808   if (CGM.getLangOptions().getGC() == LangOptions::GCOnly)
1809     return;
1810 
1811   EHStack.pushCleanup<CallBlockRelease>(NormalAndEHCleanup, emission.Address);
1812 }
1813 
1814 /// Adjust the declaration of something from the blocks API.
1815 static void configureBlocksRuntimeObject(CodeGenModule &CGM,
1816                                          llvm::Constant *C) {
1817   if (!CGM.getLangOptions().BlocksRuntimeOptional) return;
1818 
1819   llvm::GlobalValue *GV = cast<llvm::GlobalValue>(C->stripPointerCasts());
1820   if (GV->isDeclaration() &&
1821       GV->getLinkage() == llvm::GlobalValue::ExternalLinkage)
1822     GV->setLinkage(llvm::GlobalValue::ExternalWeakLinkage);
1823 }
1824 
1825 llvm::Constant *CodeGenModule::getBlockObjectDispose() {
1826   if (BlockObjectDispose)
1827     return BlockObjectDispose;
1828 
1829   llvm::Type *args[] = { Int8PtrTy, Int32Ty };
1830   llvm::FunctionType *fty
1831     = llvm::FunctionType::get(VoidTy, args, false);
1832   BlockObjectDispose = CreateRuntimeFunction(fty, "_Block_object_dispose");
1833   configureBlocksRuntimeObject(*this, BlockObjectDispose);
1834   return BlockObjectDispose;
1835 }
1836 
1837 llvm::Constant *CodeGenModule::getBlockObjectAssign() {
1838   if (BlockObjectAssign)
1839     return BlockObjectAssign;
1840 
1841   llvm::Type *args[] = { Int8PtrTy, Int8PtrTy, Int32Ty };
1842   llvm::FunctionType *fty
1843     = llvm::FunctionType::get(VoidTy, args, false);
1844   BlockObjectAssign = CreateRuntimeFunction(fty, "_Block_object_assign");
1845   configureBlocksRuntimeObject(*this, BlockObjectAssign);
1846   return BlockObjectAssign;
1847 }
1848 
1849 llvm::Constant *CodeGenModule::getNSConcreteGlobalBlock() {
1850   if (NSConcreteGlobalBlock)
1851     return NSConcreteGlobalBlock;
1852 
1853   NSConcreteGlobalBlock = GetOrCreateLLVMGlobal("_NSConcreteGlobalBlock",
1854                                                 Int8PtrTy->getPointerTo(), 0);
1855   configureBlocksRuntimeObject(*this, NSConcreteGlobalBlock);
1856   return NSConcreteGlobalBlock;
1857 }
1858 
1859 llvm::Constant *CodeGenModule::getNSConcreteStackBlock() {
1860   if (NSConcreteStackBlock)
1861     return NSConcreteStackBlock;
1862 
1863   NSConcreteStackBlock = GetOrCreateLLVMGlobal("_NSConcreteStackBlock",
1864                                                Int8PtrTy->getPointerTo(), 0);
1865   configureBlocksRuntimeObject(*this, NSConcreteStackBlock);
1866   return NSConcreteStackBlock;
1867 }
1868