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John McCall9fbd3182011-06-15 23:37:01 +00001//===- ObjCARC.cpp - ObjC ARC Optimization --------------------------------===//
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 file defines ObjC ARC optimizations. ARC stands for
11// Automatic Reference Counting and is a system for managing reference counts
12// for objects in Objective C.
13//
14// The optimizations performed include elimination of redundant, partially
15// redundant, and inconsequential reference count operations, elimination of
16// redundant weak pointer operations, pattern-matching and replacement of
17// low-level operations into higher-level operations, and numerous minor
18// simplifications.
19//
20// This file also defines a simple ARC-aware AliasAnalysis.
21//
22// WARNING: This file knows about certain library functions. It recognizes them
Chris Lattner55dc5c72012-05-27 19:37:05 +000023// by name, and hardwires knowledge of their semantics.
John McCall9fbd3182011-06-15 23:37:01 +000024//
25// WARNING: This file knows about how certain Objective-C library functions are
26// used. Naive LLVM IR transformations which would otherwise be
27// behavior-preserving may break these assumptions.
28//
29//===----------------------------------------------------------------------===//
30
31#define DEBUG_TYPE "objc-arc"
Dan Gohman0d1bc5f2012-09-12 20:45:17 +000032#include "llvm/Support/raw_ostream.h"
John McCall9fbd3182011-06-15 23:37:01 +000033#include "llvm/Support/CommandLine.h"
John McCall9fbd3182011-06-15 23:37:01 +000034#include "llvm/ADT/DenseMap.h"
John McCall9fbd3182011-06-15 23:37:01 +000035using namespace llvm;
36
37// A handy option to enable/disable all optimizations in this file.
38static cl::opt<bool> EnableARCOpts("enable-objc-arc-opts", cl::init(true));
39
40//===----------------------------------------------------------------------===//
41// Misc. Utilities
42//===----------------------------------------------------------------------===//
43
44namespace {
45 /// MapVector - An associative container with fast insertion-order
46 /// (deterministic) iteration over its elements. Plus the special
47 /// blot operation.
48 template<class KeyT, class ValueT>
49 class MapVector {
50 /// Map - Map keys to indices in Vector.
51 typedef DenseMap<KeyT, size_t> MapTy;
52 MapTy Map;
53
54 /// Vector - Keys and values.
55 typedef std::vector<std::pair<KeyT, ValueT> > VectorTy;
56 VectorTy Vector;
57
58 public:
59 typedef typename VectorTy::iterator iterator;
60 typedef typename VectorTy::const_iterator const_iterator;
61 iterator begin() { return Vector.begin(); }
62 iterator end() { return Vector.end(); }
63 const_iterator begin() const { return Vector.begin(); }
64 const_iterator end() const { return Vector.end(); }
65
66#ifdef XDEBUG
67 ~MapVector() {
68 assert(Vector.size() >= Map.size()); // May differ due to blotting.
69 for (typename MapTy::const_iterator I = Map.begin(), E = Map.end();
70 I != E; ++I) {
71 assert(I->second < Vector.size());
72 assert(Vector[I->second].first == I->first);
73 }
74 for (typename VectorTy::const_iterator I = Vector.begin(),
75 E = Vector.end(); I != E; ++I)
76 assert(!I->first ||
77 (Map.count(I->first) &&
78 Map[I->first] == size_t(I - Vector.begin())));
79 }
80#endif
81
Dan Gohman22cc4cc2012-03-02 01:13:53 +000082 ValueT &operator[](const KeyT &Arg) {
John McCall9fbd3182011-06-15 23:37:01 +000083 std::pair<typename MapTy::iterator, bool> Pair =
84 Map.insert(std::make_pair(Arg, size_t(0)));
85 if (Pair.second) {
Dan Gohman22cc4cc2012-03-02 01:13:53 +000086 size_t Num = Vector.size();
87 Pair.first->second = Num;
John McCall9fbd3182011-06-15 23:37:01 +000088 Vector.push_back(std::make_pair(Arg, ValueT()));
Dan Gohman22cc4cc2012-03-02 01:13:53 +000089 return Vector[Num].second;
John McCall9fbd3182011-06-15 23:37:01 +000090 }
91 return Vector[Pair.first->second].second;
92 }
93
94 std::pair<iterator, bool>
95 insert(const std::pair<KeyT, ValueT> &InsertPair) {
96 std::pair<typename MapTy::iterator, bool> Pair =
97 Map.insert(std::make_pair(InsertPair.first, size_t(0)));
98 if (Pair.second) {
Dan Gohman22cc4cc2012-03-02 01:13:53 +000099 size_t Num = Vector.size();
100 Pair.first->second = Num;
John McCall9fbd3182011-06-15 23:37:01 +0000101 Vector.push_back(InsertPair);
Dan Gohman22cc4cc2012-03-02 01:13:53 +0000102 return std::make_pair(Vector.begin() + Num, true);
John McCall9fbd3182011-06-15 23:37:01 +0000103 }
104 return std::make_pair(Vector.begin() + Pair.first->second, false);
105 }
106
Dan Gohman22cc4cc2012-03-02 01:13:53 +0000107 const_iterator find(const KeyT &Key) const {
John McCall9fbd3182011-06-15 23:37:01 +0000108 typename MapTy::const_iterator It = Map.find(Key);
109 if (It == Map.end()) return Vector.end();
110 return Vector.begin() + It->second;
111 }
112
113 /// blot - This is similar to erase, but instead of removing the element
114 /// from the vector, it just zeros out the key in the vector. This leaves
115 /// iterators intact, but clients must be prepared for zeroed-out keys when
116 /// iterating.
Dan Gohman22cc4cc2012-03-02 01:13:53 +0000117 void blot(const KeyT &Key) {
John McCall9fbd3182011-06-15 23:37:01 +0000118 typename MapTy::iterator It = Map.find(Key);
119 if (It == Map.end()) return;
120 Vector[It->second].first = KeyT();
121 Map.erase(It);
122 }
123
124 void clear() {
125 Map.clear();
126 Vector.clear();
127 }
128 };
129}
130
131//===----------------------------------------------------------------------===//
132// ARC Utilities.
133//===----------------------------------------------------------------------===//
134
Dan Gohman0daef3d2012-05-08 23:39:44 +0000135#include "llvm/Intrinsics.h"
136#include "llvm/Module.h"
137#include "llvm/Analysis/ValueTracking.h"
138#include "llvm/Transforms/Utils/Local.h"
139#include "llvm/Support/CallSite.h"
140#include "llvm/ADT/StringSwitch.h"
141
John McCall9fbd3182011-06-15 23:37:01 +0000142namespace {
143 /// InstructionClass - A simple classification for instructions.
144 enum InstructionClass {
145 IC_Retain, ///< objc_retain
146 IC_RetainRV, ///< objc_retainAutoreleasedReturnValue
147 IC_RetainBlock, ///< objc_retainBlock
148 IC_Release, ///< objc_release
149 IC_Autorelease, ///< objc_autorelease
150 IC_AutoreleaseRV, ///< objc_autoreleaseReturnValue
151 IC_AutoreleasepoolPush, ///< objc_autoreleasePoolPush
152 IC_AutoreleasepoolPop, ///< objc_autoreleasePoolPop
153 IC_NoopCast, ///< objc_retainedObject, etc.
154 IC_FusedRetainAutorelease, ///< objc_retainAutorelease
155 IC_FusedRetainAutoreleaseRV, ///< objc_retainAutoreleaseReturnValue
156 IC_LoadWeakRetained, ///< objc_loadWeakRetained (primitive)
157 IC_StoreWeak, ///< objc_storeWeak (primitive)
158 IC_InitWeak, ///< objc_initWeak (derived)
159 IC_LoadWeak, ///< objc_loadWeak (derived)
160 IC_MoveWeak, ///< objc_moveWeak (derived)
161 IC_CopyWeak, ///< objc_copyWeak (derived)
162 IC_DestroyWeak, ///< objc_destroyWeak (derived)
Dan Gohman44234772012-04-13 18:28:58 +0000163 IC_StoreStrong, ///< objc_storeStrong (derived)
John McCall9fbd3182011-06-15 23:37:01 +0000164 IC_CallOrUser, ///< could call objc_release and/or "use" pointers
165 IC_Call, ///< could call objc_release
166 IC_User, ///< could "use" a pointer
167 IC_None ///< anything else
168 };
169}
170
171/// IsPotentialUse - Test whether the given value is possible a
172/// reference-counted pointer.
173static bool IsPotentialUse(const Value *Op) {
174 // Pointers to static or stack storage are not reference-counted pointers.
175 if (isa<Constant>(Op) || isa<AllocaInst>(Op))
176 return false;
177 // Special arguments are not reference-counted.
178 if (const Argument *Arg = dyn_cast<Argument>(Op))
179 if (Arg->hasByValAttr() ||
180 Arg->hasNestAttr() ||
181 Arg->hasStructRetAttr())
182 return false;
Dan Gohmanf9096e42011-12-14 19:10:53 +0000183 // Only consider values with pointer types.
184 // It seemes intuitive to exclude function pointer types as well, since
185 // functions are never reference-counted, however clang occasionally
186 // bitcasts reference-counted pointers to function-pointer type
187 // temporarily.
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000188 PointerType *Ty = dyn_cast<PointerType>(Op->getType());
Dan Gohmanf9096e42011-12-14 19:10:53 +0000189 if (!Ty)
John McCall9fbd3182011-06-15 23:37:01 +0000190 return false;
191 // Conservatively assume anything else is a potential use.
192 return true;
193}
194
195/// GetCallSiteClass - Helper for GetInstructionClass. Determines what kind
196/// of construct CS is.
197static InstructionClass GetCallSiteClass(ImmutableCallSite CS) {
198 for (ImmutableCallSite::arg_iterator I = CS.arg_begin(), E = CS.arg_end();
199 I != E; ++I)
200 if (IsPotentialUse(*I))
201 return CS.onlyReadsMemory() ? IC_User : IC_CallOrUser;
202
203 return CS.onlyReadsMemory() ? IC_None : IC_Call;
204}
205
206/// GetFunctionClass - Determine if F is one of the special known Functions.
207/// If it isn't, return IC_CallOrUser.
208static InstructionClass GetFunctionClass(const Function *F) {
209 Function::const_arg_iterator AI = F->arg_begin(), AE = F->arg_end();
210
211 // No arguments.
212 if (AI == AE)
213 return StringSwitch<InstructionClass>(F->getName())
214 .Case("objc_autoreleasePoolPush", IC_AutoreleasepoolPush)
215 .Default(IC_CallOrUser);
216
217 // One argument.
218 const Argument *A0 = AI++;
219 if (AI == AE)
220 // Argument is a pointer.
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000221 if (PointerType *PTy = dyn_cast<PointerType>(A0->getType())) {
222 Type *ETy = PTy->getElementType();
John McCall9fbd3182011-06-15 23:37:01 +0000223 // Argument is i8*.
224 if (ETy->isIntegerTy(8))
225 return StringSwitch<InstructionClass>(F->getName())
226 .Case("objc_retain", IC_Retain)
227 .Case("objc_retainAutoreleasedReturnValue", IC_RetainRV)
228 .Case("objc_retainBlock", IC_RetainBlock)
229 .Case("objc_release", IC_Release)
230 .Case("objc_autorelease", IC_Autorelease)
231 .Case("objc_autoreleaseReturnValue", IC_AutoreleaseRV)
232 .Case("objc_autoreleasePoolPop", IC_AutoreleasepoolPop)
233 .Case("objc_retainedObject", IC_NoopCast)
234 .Case("objc_unretainedObject", IC_NoopCast)
235 .Case("objc_unretainedPointer", IC_NoopCast)
236 .Case("objc_retain_autorelease", IC_FusedRetainAutorelease)
237 .Case("objc_retainAutorelease", IC_FusedRetainAutorelease)
238 .Case("objc_retainAutoreleaseReturnValue",IC_FusedRetainAutoreleaseRV)
239 .Default(IC_CallOrUser);
240
241 // Argument is i8**
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000242 if (PointerType *Pte = dyn_cast<PointerType>(ETy))
John McCall9fbd3182011-06-15 23:37:01 +0000243 if (Pte->getElementType()->isIntegerTy(8))
244 return StringSwitch<InstructionClass>(F->getName())
245 .Case("objc_loadWeakRetained", IC_LoadWeakRetained)
246 .Case("objc_loadWeak", IC_LoadWeak)
247 .Case("objc_destroyWeak", IC_DestroyWeak)
248 .Default(IC_CallOrUser);
249 }
250
251 // Two arguments, first is i8**.
252 const Argument *A1 = AI++;
253 if (AI == AE)
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000254 if (PointerType *PTy = dyn_cast<PointerType>(A0->getType()))
255 if (PointerType *Pte = dyn_cast<PointerType>(PTy->getElementType()))
John McCall9fbd3182011-06-15 23:37:01 +0000256 if (Pte->getElementType()->isIntegerTy(8))
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000257 if (PointerType *PTy1 = dyn_cast<PointerType>(A1->getType())) {
258 Type *ETy1 = PTy1->getElementType();
John McCall9fbd3182011-06-15 23:37:01 +0000259 // Second argument is i8*
260 if (ETy1->isIntegerTy(8))
261 return StringSwitch<InstructionClass>(F->getName())
262 .Case("objc_storeWeak", IC_StoreWeak)
263 .Case("objc_initWeak", IC_InitWeak)
Dan Gohman44234772012-04-13 18:28:58 +0000264 .Case("objc_storeStrong", IC_StoreStrong)
John McCall9fbd3182011-06-15 23:37:01 +0000265 .Default(IC_CallOrUser);
266 // Second argument is i8**.
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000267 if (PointerType *Pte1 = dyn_cast<PointerType>(ETy1))
John McCall9fbd3182011-06-15 23:37:01 +0000268 if (Pte1->getElementType()->isIntegerTy(8))
269 return StringSwitch<InstructionClass>(F->getName())
270 .Case("objc_moveWeak", IC_MoveWeak)
271 .Case("objc_copyWeak", IC_CopyWeak)
272 .Default(IC_CallOrUser);
273 }
274
275 // Anything else.
276 return IC_CallOrUser;
277}
278
279/// GetInstructionClass - Determine what kind of construct V is.
280static InstructionClass GetInstructionClass(const Value *V) {
281 if (const Instruction *I = dyn_cast<Instruction>(V)) {
282 // Any instruction other than bitcast and gep with a pointer operand have a
283 // use of an objc pointer. Bitcasts, GEPs, Selects, PHIs transfer a pointer
284 // to a subsequent use, rather than using it themselves, in this sense.
285 // As a short cut, several other opcodes are known to have no pointer
286 // operands of interest. And ret is never followed by a release, so it's
287 // not interesting to examine.
288 switch (I->getOpcode()) {
289 case Instruction::Call: {
290 const CallInst *CI = cast<CallInst>(I);
291 // Check for calls to special functions.
292 if (const Function *F = CI->getCalledFunction()) {
293 InstructionClass Class = GetFunctionClass(F);
294 if (Class != IC_CallOrUser)
295 return Class;
296
297 // None of the intrinsic functions do objc_release. For intrinsics, the
298 // only question is whether or not they may be users.
299 switch (F->getIntrinsicID()) {
John McCall9fbd3182011-06-15 23:37:01 +0000300 case Intrinsic::returnaddress: case Intrinsic::frameaddress:
301 case Intrinsic::stacksave: case Intrinsic::stackrestore:
302 case Intrinsic::vastart: case Intrinsic::vacopy: case Intrinsic::vaend:
Dan Gohman0daef3d2012-05-08 23:39:44 +0000303 case Intrinsic::objectsize: case Intrinsic::prefetch:
304 case Intrinsic::stackprotector:
305 case Intrinsic::eh_return_i32: case Intrinsic::eh_return_i64:
306 case Intrinsic::eh_typeid_for: case Intrinsic::eh_dwarf_cfa:
307 case Intrinsic::eh_sjlj_lsda: case Intrinsic::eh_sjlj_functioncontext:
308 case Intrinsic::init_trampoline: case Intrinsic::adjust_trampoline:
309 case Intrinsic::lifetime_start: case Intrinsic::lifetime_end:
310 case Intrinsic::invariant_start: case Intrinsic::invariant_end:
John McCall9fbd3182011-06-15 23:37:01 +0000311 // Don't let dbg info affect our results.
312 case Intrinsic::dbg_declare: case Intrinsic::dbg_value:
313 // Short cut: Some intrinsics obviously don't use ObjC pointers.
314 return IC_None;
315 default:
Dan Gohman0daef3d2012-05-08 23:39:44 +0000316 break;
John McCall9fbd3182011-06-15 23:37:01 +0000317 }
318 }
319 return GetCallSiteClass(CI);
320 }
321 case Instruction::Invoke:
322 return GetCallSiteClass(cast<InvokeInst>(I));
323 case Instruction::BitCast:
324 case Instruction::GetElementPtr:
325 case Instruction::Select: case Instruction::PHI:
326 case Instruction::Ret: case Instruction::Br:
327 case Instruction::Switch: case Instruction::IndirectBr:
328 case Instruction::Alloca: case Instruction::VAArg:
329 case Instruction::Add: case Instruction::FAdd:
330 case Instruction::Sub: case Instruction::FSub:
331 case Instruction::Mul: case Instruction::FMul:
332 case Instruction::SDiv: case Instruction::UDiv: case Instruction::FDiv:
333 case Instruction::SRem: case Instruction::URem: case Instruction::FRem:
334 case Instruction::Shl: case Instruction::LShr: case Instruction::AShr:
335 case Instruction::And: case Instruction::Or: case Instruction::Xor:
336 case Instruction::SExt: case Instruction::ZExt: case Instruction::Trunc:
337 case Instruction::IntToPtr: case Instruction::FCmp:
338 case Instruction::FPTrunc: case Instruction::FPExt:
339 case Instruction::FPToUI: case Instruction::FPToSI:
340 case Instruction::UIToFP: case Instruction::SIToFP:
341 case Instruction::InsertElement: case Instruction::ExtractElement:
342 case Instruction::ShuffleVector:
343 case Instruction::ExtractValue:
344 break;
345 case Instruction::ICmp:
346 // Comparing a pointer with null, or any other constant, isn't an
347 // interesting use, because we don't care what the pointer points to, or
348 // about the values of any other dynamic reference-counted pointers.
349 if (IsPotentialUse(I->getOperand(1)))
350 return IC_User;
351 break;
352 default:
353 // For anything else, check all the operands.
Dan Gohmand4464602011-08-22 17:29:37 +0000354 // Note that this includes both operands of a Store: while the first
355 // operand isn't actually being dereferenced, it is being stored to
356 // memory where we can no longer track who might read it and dereference
357 // it, so we have to consider it potentially used.
John McCall9fbd3182011-06-15 23:37:01 +0000358 for (User::const_op_iterator OI = I->op_begin(), OE = I->op_end();
359 OI != OE; ++OI)
360 if (IsPotentialUse(*OI))
361 return IC_User;
362 }
363 }
364
365 // Otherwise, it's totally inert for ARC purposes.
366 return IC_None;
367}
368
369/// GetBasicInstructionClass - Determine what kind of construct V is. This is
370/// similar to GetInstructionClass except that it only detects objc runtine
371/// calls. This allows it to be faster.
372static InstructionClass GetBasicInstructionClass(const Value *V) {
373 if (const CallInst *CI = dyn_cast<CallInst>(V)) {
374 if (const Function *F = CI->getCalledFunction())
375 return GetFunctionClass(F);
376 // Otherwise, be conservative.
377 return IC_CallOrUser;
378 }
379
380 // Otherwise, be conservative.
Dan Gohman2f6263c2012-01-17 20:52:24 +0000381 return isa<InvokeInst>(V) ? IC_CallOrUser : IC_User;
John McCall9fbd3182011-06-15 23:37:01 +0000382}
383
Sylvestre Ledruc8e41c52012-07-23 08:51:15 +0000384/// IsRetain - Test if the given class is objc_retain or
John McCall9fbd3182011-06-15 23:37:01 +0000385/// equivalent.
386static bool IsRetain(InstructionClass Class) {
387 return Class == IC_Retain ||
388 Class == IC_RetainRV;
389}
390
Sylvestre Ledruc8e41c52012-07-23 08:51:15 +0000391/// IsAutorelease - Test if the given class is objc_autorelease or
John McCall9fbd3182011-06-15 23:37:01 +0000392/// equivalent.
393static bool IsAutorelease(InstructionClass Class) {
394 return Class == IC_Autorelease ||
395 Class == IC_AutoreleaseRV;
396}
397
398/// IsForwarding - Test if the given class represents instructions which return
399/// their argument verbatim.
400static bool IsForwarding(InstructionClass Class) {
401 // objc_retainBlock technically doesn't always return its argument
402 // verbatim, but it doesn't matter for our purposes here.
403 return Class == IC_Retain ||
404 Class == IC_RetainRV ||
405 Class == IC_Autorelease ||
406 Class == IC_AutoreleaseRV ||
407 Class == IC_RetainBlock ||
408 Class == IC_NoopCast;
409}
410
411/// IsNoopOnNull - Test if the given class represents instructions which do
412/// nothing if passed a null pointer.
413static bool IsNoopOnNull(InstructionClass Class) {
414 return Class == IC_Retain ||
415 Class == IC_RetainRV ||
416 Class == IC_Release ||
417 Class == IC_Autorelease ||
418 Class == IC_AutoreleaseRV ||
419 Class == IC_RetainBlock;
420}
421
422/// IsAlwaysTail - Test if the given class represents instructions which are
423/// always safe to mark with the "tail" keyword.
424static bool IsAlwaysTail(InstructionClass Class) {
425 // IC_RetainBlock may be given a stack argument.
426 return Class == IC_Retain ||
427 Class == IC_RetainRV ||
428 Class == IC_Autorelease ||
429 Class == IC_AutoreleaseRV;
430}
431
432/// IsNoThrow - Test if the given class represents instructions which are always
433/// safe to mark with the nounwind attribute..
434static bool IsNoThrow(InstructionClass Class) {
Dan Gohman1d2fd752011-09-14 18:33:34 +0000435 // objc_retainBlock is not nounwind because it calls user copy constructors
436 // which could theoretically throw.
John McCall9fbd3182011-06-15 23:37:01 +0000437 return Class == IC_Retain ||
438 Class == IC_RetainRV ||
John McCall9fbd3182011-06-15 23:37:01 +0000439 Class == IC_Release ||
440 Class == IC_Autorelease ||
441 Class == IC_AutoreleaseRV ||
442 Class == IC_AutoreleasepoolPush ||
443 Class == IC_AutoreleasepoolPop;
444}
445
Dan Gohman447989c2012-04-27 18:56:31 +0000446/// EraseInstruction - Erase the given instruction. Many ObjC calls return their
John McCall9fbd3182011-06-15 23:37:01 +0000447/// argument verbatim, so if it's such a call and the return value has users,
448/// replace them with the argument value.
449static void EraseInstruction(Instruction *CI) {
450 Value *OldArg = cast<CallInst>(CI)->getArgOperand(0);
451
452 bool Unused = CI->use_empty();
453
454 if (!Unused) {
455 // Replace the return value with the argument.
456 assert(IsForwarding(GetBasicInstructionClass(CI)) &&
457 "Can't delete non-forwarding instruction with users!");
458 CI->replaceAllUsesWith(OldArg);
459 }
460
461 CI->eraseFromParent();
462
463 if (Unused)
464 RecursivelyDeleteTriviallyDeadInstructions(OldArg);
465}
466
467/// GetUnderlyingObjCPtr - This is a wrapper around getUnderlyingObject which
468/// also knows how to look through objc_retain and objc_autorelease calls, which
469/// we know to return their argument verbatim.
470static const Value *GetUnderlyingObjCPtr(const Value *V) {
471 for (;;) {
472 V = GetUnderlyingObject(V);
473 if (!IsForwarding(GetBasicInstructionClass(V)))
474 break;
475 V = cast<CallInst>(V)->getArgOperand(0);
476 }
477
478 return V;
479}
480
481/// StripPointerCastsAndObjCCalls - This is a wrapper around
482/// Value::stripPointerCasts which also knows how to look through objc_retain
483/// and objc_autorelease calls, which we know to return their argument verbatim.
484static const Value *StripPointerCastsAndObjCCalls(const Value *V) {
485 for (;;) {
486 V = V->stripPointerCasts();
487 if (!IsForwarding(GetBasicInstructionClass(V)))
488 break;
489 V = cast<CallInst>(V)->getArgOperand(0);
490 }
491 return V;
492}
493
494/// StripPointerCastsAndObjCCalls - This is a wrapper around
495/// Value::stripPointerCasts which also knows how to look through objc_retain
496/// and objc_autorelease calls, which we know to return their argument verbatim.
497static Value *StripPointerCastsAndObjCCalls(Value *V) {
498 for (;;) {
499 V = V->stripPointerCasts();
500 if (!IsForwarding(GetBasicInstructionClass(V)))
501 break;
502 V = cast<CallInst>(V)->getArgOperand(0);
503 }
504 return V;
505}
506
507/// GetObjCArg - Assuming the given instruction is one of the special calls such
508/// as objc_retain or objc_release, return the argument value, stripped of no-op
509/// casts and forwarding calls.
510static Value *GetObjCArg(Value *Inst) {
511 return StripPointerCastsAndObjCCalls(cast<CallInst>(Inst)->getArgOperand(0));
512}
513
514/// IsObjCIdentifiedObject - This is similar to AliasAnalysis'
515/// isObjCIdentifiedObject, except that it uses special knowledge of
516/// ObjC conventions...
517static bool IsObjCIdentifiedObject(const Value *V) {
518 // Assume that call results and arguments have their own "provenance".
519 // Constants (including GlobalVariables) and Allocas are never
520 // reference-counted.
521 if (isa<CallInst>(V) || isa<InvokeInst>(V) ||
522 isa<Argument>(V) || isa<Constant>(V) ||
523 isa<AllocaInst>(V))
524 return true;
525
526 if (const LoadInst *LI = dyn_cast<LoadInst>(V)) {
527 const Value *Pointer =
528 StripPointerCastsAndObjCCalls(LI->getPointerOperand());
529 if (const GlobalVariable *GV = dyn_cast<GlobalVariable>(Pointer)) {
Dan Gohman1b31ea82011-08-22 17:29:11 +0000530 // A constant pointer can't be pointing to an object on the heap. It may
531 // be reference-counted, but it won't be deleted.
532 if (GV->isConstant())
533 return true;
John McCall9fbd3182011-06-15 23:37:01 +0000534 StringRef Name = GV->getName();
535 // These special variables are known to hold values which are not
536 // reference-counted pointers.
537 if (Name.startswith("\01L_OBJC_SELECTOR_REFERENCES_") ||
538 Name.startswith("\01L_OBJC_CLASSLIST_REFERENCES_") ||
539 Name.startswith("\01L_OBJC_CLASSLIST_SUP_REFS_$_") ||
540 Name.startswith("\01L_OBJC_METH_VAR_NAME_") ||
541 Name.startswith("\01l_objc_msgSend_fixup_"))
542 return true;
543 }
544 }
545
546 return false;
547}
548
549/// FindSingleUseIdentifiedObject - This is similar to
550/// StripPointerCastsAndObjCCalls but it stops as soon as it finds a value
551/// with multiple uses.
552static const Value *FindSingleUseIdentifiedObject(const Value *Arg) {
553 if (Arg->hasOneUse()) {
554 if (const BitCastInst *BC = dyn_cast<BitCastInst>(Arg))
555 return FindSingleUseIdentifiedObject(BC->getOperand(0));
556 if (const GetElementPtrInst *GEP = dyn_cast<GetElementPtrInst>(Arg))
557 if (GEP->hasAllZeroIndices())
558 return FindSingleUseIdentifiedObject(GEP->getPointerOperand());
559 if (IsForwarding(GetBasicInstructionClass(Arg)))
560 return FindSingleUseIdentifiedObject(
561 cast<CallInst>(Arg)->getArgOperand(0));
562 if (!IsObjCIdentifiedObject(Arg))
563 return 0;
564 return Arg;
565 }
566
Dan Gohman0daef3d2012-05-08 23:39:44 +0000567 // If we found an identifiable object but it has multiple uses, but they are
568 // trivial uses, we can still consider this to be a single-use value.
John McCall9fbd3182011-06-15 23:37:01 +0000569 if (IsObjCIdentifiedObject(Arg)) {
570 for (Value::const_use_iterator UI = Arg->use_begin(), UE = Arg->use_end();
571 UI != UE; ++UI) {
572 const User *U = *UI;
573 if (!U->use_empty() || StripPointerCastsAndObjCCalls(U) != Arg)
574 return 0;
575 }
576
577 return Arg;
578 }
579
580 return 0;
581}
582
Dan Gohmanc4bcd4d2011-06-20 23:20:43 +0000583/// ModuleHasARC - Test if the given module looks interesting to run ARC
584/// optimization on.
585static bool ModuleHasARC(const Module &M) {
586 return
587 M.getNamedValue("objc_retain") ||
588 M.getNamedValue("objc_release") ||
589 M.getNamedValue("objc_autorelease") ||
590 M.getNamedValue("objc_retainAutoreleasedReturnValue") ||
591 M.getNamedValue("objc_retainBlock") ||
592 M.getNamedValue("objc_autoreleaseReturnValue") ||
593 M.getNamedValue("objc_autoreleasePoolPush") ||
594 M.getNamedValue("objc_loadWeakRetained") ||
595 M.getNamedValue("objc_loadWeak") ||
596 M.getNamedValue("objc_destroyWeak") ||
597 M.getNamedValue("objc_storeWeak") ||
598 M.getNamedValue("objc_initWeak") ||
599 M.getNamedValue("objc_moveWeak") ||
600 M.getNamedValue("objc_copyWeak") ||
601 M.getNamedValue("objc_retainedObject") ||
602 M.getNamedValue("objc_unretainedObject") ||
603 M.getNamedValue("objc_unretainedPointer");
604}
605
Dan Gohman79522dc2012-01-13 00:39:07 +0000606/// DoesObjCBlockEscape - Test whether the given pointer, which is an
607/// Objective C block pointer, does not "escape". This differs from regular
608/// escape analysis in that a use as an argument to a call is not considered
609/// an escape.
610static bool DoesObjCBlockEscape(const Value *BlockPtr) {
611 // Walk the def-use chains.
612 SmallVector<const Value *, 4> Worklist;
613 Worklist.push_back(BlockPtr);
614 do {
615 const Value *V = Worklist.pop_back_val();
616 for (Value::const_use_iterator UI = V->use_begin(), UE = V->use_end();
617 UI != UE; ++UI) {
618 const User *UUser = *UI;
619 // Special - Use by a call (callee or argument) is not considered
620 // to be an escape.
Dan Gohman44234772012-04-13 18:28:58 +0000621 switch (GetBasicInstructionClass(UUser)) {
622 case IC_StoreWeak:
623 case IC_InitWeak:
624 case IC_StoreStrong:
625 case IC_Autorelease:
626 case IC_AutoreleaseRV:
627 // These special functions make copies of their pointer arguments.
628 return true;
629 case IC_User:
630 case IC_None:
631 // Use by an instruction which copies the value is an escape if the
632 // result is an escape.
633 if (isa<BitCastInst>(UUser) || isa<GetElementPtrInst>(UUser) ||
634 isa<PHINode>(UUser) || isa<SelectInst>(UUser)) {
635 Worklist.push_back(UUser);
636 continue;
637 }
638 // Use by a load is not an escape.
639 if (isa<LoadInst>(UUser))
640 continue;
641 // Use by a store is not an escape if the use is the address.
642 if (const StoreInst *SI = dyn_cast<StoreInst>(UUser))
643 if (V != SI->getValueOperand())
644 continue;
645 break;
646 default:
647 // Regular calls and other stuff are not considered escapes.
Dan Gohman79522dc2012-01-13 00:39:07 +0000648 continue;
649 }
Dan Gohmana3b08d62012-02-13 22:57:02 +0000650 // Otherwise, conservatively assume an escape.
Dan Gohman79522dc2012-01-13 00:39:07 +0000651 return true;
652 }
653 } while (!Worklist.empty());
654
655 // No escapes found.
656 return false;
657}
658
John McCall9fbd3182011-06-15 23:37:01 +0000659//===----------------------------------------------------------------------===//
660// ARC AliasAnalysis.
661//===----------------------------------------------------------------------===//
662
663#include "llvm/Pass.h"
664#include "llvm/Analysis/AliasAnalysis.h"
665#include "llvm/Analysis/Passes.h"
666
667namespace {
668 /// ObjCARCAliasAnalysis - This is a simple alias analysis
669 /// implementation that uses knowledge of ARC constructs to answer queries.
670 ///
671 /// TODO: This class could be generalized to know about other ObjC-specific
672 /// tricks. Such as knowing that ivars in the non-fragile ABI are non-aliasing
673 /// even though their offsets are dynamic.
674 class ObjCARCAliasAnalysis : public ImmutablePass,
675 public AliasAnalysis {
676 public:
677 static char ID; // Class identification, replacement for typeinfo
678 ObjCARCAliasAnalysis() : ImmutablePass(ID) {
679 initializeObjCARCAliasAnalysisPass(*PassRegistry::getPassRegistry());
680 }
681
682 private:
683 virtual void initializePass() {
684 InitializeAliasAnalysis(this);
685 }
686
687 /// getAdjustedAnalysisPointer - This method is used when a pass implements
688 /// an analysis interface through multiple inheritance. If needed, it
689 /// should override this to adjust the this pointer as needed for the
690 /// specified pass info.
691 virtual void *getAdjustedAnalysisPointer(const void *PI) {
692 if (PI == &AliasAnalysis::ID)
Dan Gohman447989c2012-04-27 18:56:31 +0000693 return static_cast<AliasAnalysis *>(this);
John McCall9fbd3182011-06-15 23:37:01 +0000694 return this;
695 }
696
697 virtual void getAnalysisUsage(AnalysisUsage &AU) const;
698 virtual AliasResult alias(const Location &LocA, const Location &LocB);
699 virtual bool pointsToConstantMemory(const Location &Loc, bool OrLocal);
700 virtual ModRefBehavior getModRefBehavior(ImmutableCallSite CS);
701 virtual ModRefBehavior getModRefBehavior(const Function *F);
702 virtual ModRefResult getModRefInfo(ImmutableCallSite CS,
703 const Location &Loc);
704 virtual ModRefResult getModRefInfo(ImmutableCallSite CS1,
705 ImmutableCallSite CS2);
706 };
707} // End of anonymous namespace
708
709// Register this pass...
710char ObjCARCAliasAnalysis::ID = 0;
711INITIALIZE_AG_PASS(ObjCARCAliasAnalysis, AliasAnalysis, "objc-arc-aa",
712 "ObjC-ARC-Based Alias Analysis", false, true, false)
713
714ImmutablePass *llvm::createObjCARCAliasAnalysisPass() {
715 return new ObjCARCAliasAnalysis();
716}
717
718void
719ObjCARCAliasAnalysis::getAnalysisUsage(AnalysisUsage &AU) const {
720 AU.setPreservesAll();
721 AliasAnalysis::getAnalysisUsage(AU);
722}
723
724AliasAnalysis::AliasResult
725ObjCARCAliasAnalysis::alias(const Location &LocA, const Location &LocB) {
726 if (!EnableARCOpts)
727 return AliasAnalysis::alias(LocA, LocB);
728
729 // First, strip off no-ops, including ObjC-specific no-ops, and try making a
730 // precise alias query.
731 const Value *SA = StripPointerCastsAndObjCCalls(LocA.Ptr);
732 const Value *SB = StripPointerCastsAndObjCCalls(LocB.Ptr);
733 AliasResult Result =
734 AliasAnalysis::alias(Location(SA, LocA.Size, LocA.TBAATag),
735 Location(SB, LocB.Size, LocB.TBAATag));
736 if (Result != MayAlias)
737 return Result;
738
739 // If that failed, climb to the underlying object, including climbing through
740 // ObjC-specific no-ops, and try making an imprecise alias query.
741 const Value *UA = GetUnderlyingObjCPtr(SA);
742 const Value *UB = GetUnderlyingObjCPtr(SB);
743 if (UA != SA || UB != SB) {
744 Result = AliasAnalysis::alias(Location(UA), Location(UB));
745 // We can't use MustAlias or PartialAlias results here because
746 // GetUnderlyingObjCPtr may return an offsetted pointer value.
747 if (Result == NoAlias)
748 return NoAlias;
749 }
750
751 // If that failed, fail. We don't need to chain here, since that's covered
752 // by the earlier precise query.
753 return MayAlias;
754}
755
756bool
757ObjCARCAliasAnalysis::pointsToConstantMemory(const Location &Loc,
758 bool OrLocal) {
759 if (!EnableARCOpts)
760 return AliasAnalysis::pointsToConstantMemory(Loc, OrLocal);
761
762 // First, strip off no-ops, including ObjC-specific no-ops, and try making
763 // a precise alias query.
764 const Value *S = StripPointerCastsAndObjCCalls(Loc.Ptr);
765 if (AliasAnalysis::pointsToConstantMemory(Location(S, Loc.Size, Loc.TBAATag),
766 OrLocal))
767 return true;
768
769 // If that failed, climb to the underlying object, including climbing through
770 // ObjC-specific no-ops, and try making an imprecise alias query.
771 const Value *U = GetUnderlyingObjCPtr(S);
772 if (U != S)
773 return AliasAnalysis::pointsToConstantMemory(Location(U), OrLocal);
774
775 // If that failed, fail. We don't need to chain here, since that's covered
776 // by the earlier precise query.
777 return false;
778}
779
780AliasAnalysis::ModRefBehavior
781ObjCARCAliasAnalysis::getModRefBehavior(ImmutableCallSite CS) {
782 // We have nothing to do. Just chain to the next AliasAnalysis.
783 return AliasAnalysis::getModRefBehavior(CS);
784}
785
786AliasAnalysis::ModRefBehavior
787ObjCARCAliasAnalysis::getModRefBehavior(const Function *F) {
788 if (!EnableARCOpts)
789 return AliasAnalysis::getModRefBehavior(F);
790
791 switch (GetFunctionClass(F)) {
792 case IC_NoopCast:
793 return DoesNotAccessMemory;
794 default:
795 break;
796 }
797
798 return AliasAnalysis::getModRefBehavior(F);
799}
800
801AliasAnalysis::ModRefResult
802ObjCARCAliasAnalysis::getModRefInfo(ImmutableCallSite CS, const Location &Loc) {
803 if (!EnableARCOpts)
804 return AliasAnalysis::getModRefInfo(CS, Loc);
805
806 switch (GetBasicInstructionClass(CS.getInstruction())) {
807 case IC_Retain:
808 case IC_RetainRV:
John McCall9fbd3182011-06-15 23:37:01 +0000809 case IC_Autorelease:
810 case IC_AutoreleaseRV:
811 case IC_NoopCast:
812 case IC_AutoreleasepoolPush:
813 case IC_FusedRetainAutorelease:
814 case IC_FusedRetainAutoreleaseRV:
815 // These functions don't access any memory visible to the compiler.
Benjamin Kramerd9b0b022012-06-02 10:20:22 +0000816 // Note that this doesn't include objc_retainBlock, because it updates
Dan Gohman21104822011-09-14 18:13:00 +0000817 // pointers when it copies block data.
John McCall9fbd3182011-06-15 23:37:01 +0000818 return NoModRef;
819 default:
820 break;
821 }
822
823 return AliasAnalysis::getModRefInfo(CS, Loc);
824}
825
826AliasAnalysis::ModRefResult
827ObjCARCAliasAnalysis::getModRefInfo(ImmutableCallSite CS1,
828 ImmutableCallSite CS2) {
829 // TODO: Theoretically we could check for dependencies between objc_* calls
830 // and OnlyAccessesArgumentPointees calls or other well-behaved calls.
831 return AliasAnalysis::getModRefInfo(CS1, CS2);
832}
833
834//===----------------------------------------------------------------------===//
835// ARC expansion.
836//===----------------------------------------------------------------------===//
837
838#include "llvm/Support/InstIterator.h"
839#include "llvm/Transforms/Scalar.h"
840
841namespace {
842 /// ObjCARCExpand - Early ARC transformations.
843 class ObjCARCExpand : public FunctionPass {
844 virtual void getAnalysisUsage(AnalysisUsage &AU) const;
Dan Gohmanc4bcd4d2011-06-20 23:20:43 +0000845 virtual bool doInitialization(Module &M);
John McCall9fbd3182011-06-15 23:37:01 +0000846 virtual bool runOnFunction(Function &F);
847
Dan Gohmanc4bcd4d2011-06-20 23:20:43 +0000848 /// Run - A flag indicating whether this optimization pass should run.
849 bool Run;
850
John McCall9fbd3182011-06-15 23:37:01 +0000851 public:
852 static char ID;
853 ObjCARCExpand() : FunctionPass(ID) {
854 initializeObjCARCExpandPass(*PassRegistry::getPassRegistry());
855 }
856 };
857}
858
859char ObjCARCExpand::ID = 0;
860INITIALIZE_PASS(ObjCARCExpand,
861 "objc-arc-expand", "ObjC ARC expansion", false, false)
862
863Pass *llvm::createObjCARCExpandPass() {
864 return new ObjCARCExpand();
865}
866
867void ObjCARCExpand::getAnalysisUsage(AnalysisUsage &AU) const {
868 AU.setPreservesCFG();
869}
870
Dan Gohmanc4bcd4d2011-06-20 23:20:43 +0000871bool ObjCARCExpand::doInitialization(Module &M) {
872 Run = ModuleHasARC(M);
873 return false;
874}
875
John McCall9fbd3182011-06-15 23:37:01 +0000876bool ObjCARCExpand::runOnFunction(Function &F) {
877 if (!EnableARCOpts)
878 return false;
879
Dan Gohmanc4bcd4d2011-06-20 23:20:43 +0000880 // If nothing in the Module uses ARC, don't do anything.
881 if (!Run)
882 return false;
883
John McCall9fbd3182011-06-15 23:37:01 +0000884 bool Changed = false;
885
886 for (inst_iterator I = inst_begin(&F), E = inst_end(&F); I != E; ++I) {
887 Instruction *Inst = &*I;
888
889 switch (GetBasicInstructionClass(Inst)) {
890 case IC_Retain:
891 case IC_RetainRV:
892 case IC_Autorelease:
893 case IC_AutoreleaseRV:
894 case IC_FusedRetainAutorelease:
895 case IC_FusedRetainAutoreleaseRV:
896 // These calls return their argument verbatim, as a low-level
897 // optimization. However, this makes high-level optimizations
898 // harder. Undo any uses of this optimization that the front-end
Dan Gohmand6bf2012012-04-13 18:57:48 +0000899 // emitted here. We'll redo them in the contract pass.
John McCall9fbd3182011-06-15 23:37:01 +0000900 Changed = true;
901 Inst->replaceAllUsesWith(cast<CallInst>(Inst)->getArgOperand(0));
902 break;
903 default:
904 break;
905 }
906 }
907
908 return Changed;
909}
910
911//===----------------------------------------------------------------------===//
Dan Gohman2f6263c2012-01-17 20:52:24 +0000912// ARC autorelease pool elimination.
913//===----------------------------------------------------------------------===//
914
Dan Gohman1dae3e92012-01-18 21:19:38 +0000915#include "llvm/Constants.h"
Dan Gohman0daef3d2012-05-08 23:39:44 +0000916#include "llvm/ADT/STLExtras.h"
Dan Gohman1dae3e92012-01-18 21:19:38 +0000917
Dan Gohman2f6263c2012-01-17 20:52:24 +0000918namespace {
919 /// ObjCARCAPElim - Autorelease pool elimination.
920 class ObjCARCAPElim : public ModulePass {
921 virtual void getAnalysisUsage(AnalysisUsage &AU) const;
922 virtual bool runOnModule(Module &M);
923
Dan Gohman447989c2012-04-27 18:56:31 +0000924 static bool MayAutorelease(ImmutableCallSite CS, unsigned Depth = 0);
925 static bool OptimizeBB(BasicBlock *BB);
Dan Gohman2f6263c2012-01-17 20:52:24 +0000926
927 public:
928 static char ID;
929 ObjCARCAPElim() : ModulePass(ID) {
930 initializeObjCARCAPElimPass(*PassRegistry::getPassRegistry());
931 }
932 };
933}
934
935char ObjCARCAPElim::ID = 0;
936INITIALIZE_PASS(ObjCARCAPElim,
937 "objc-arc-apelim",
938 "ObjC ARC autorelease pool elimination",
939 false, false)
940
941Pass *llvm::createObjCARCAPElimPass() {
942 return new ObjCARCAPElim();
943}
944
945void ObjCARCAPElim::getAnalysisUsage(AnalysisUsage &AU) const {
946 AU.setPreservesCFG();
947}
948
949/// MayAutorelease - Interprocedurally determine if calls made by the
950/// given call site can possibly produce autoreleases.
Dan Gohman447989c2012-04-27 18:56:31 +0000951bool ObjCARCAPElim::MayAutorelease(ImmutableCallSite CS, unsigned Depth) {
952 if (const Function *Callee = CS.getCalledFunction()) {
Dan Gohman2f6263c2012-01-17 20:52:24 +0000953 if (Callee->isDeclaration() || Callee->mayBeOverridden())
954 return true;
Dan Gohman447989c2012-04-27 18:56:31 +0000955 for (Function::const_iterator I = Callee->begin(), E = Callee->end();
Dan Gohman2f6263c2012-01-17 20:52:24 +0000956 I != E; ++I) {
Dan Gohman447989c2012-04-27 18:56:31 +0000957 const BasicBlock *BB = I;
958 for (BasicBlock::const_iterator J = BB->begin(), F = BB->end();
959 J != F; ++J)
960 if (ImmutableCallSite JCS = ImmutableCallSite(J))
Dan Gohman2f77bbd2012-01-18 21:24:45 +0000961 // This recursion depth limit is arbitrary. It's just great
962 // enough to cover known interesting testcases.
963 if (Depth < 3 &&
964 !JCS.onlyReadsMemory() &&
965 MayAutorelease(JCS, Depth + 1))
Dan Gohman2f6263c2012-01-17 20:52:24 +0000966 return true;
967 }
968 return false;
969 }
970
971 return true;
972}
973
974bool ObjCARCAPElim::OptimizeBB(BasicBlock *BB) {
975 bool Changed = false;
976
977 Instruction *Push = 0;
978 for (BasicBlock::iterator I = BB->begin(), E = BB->end(); I != E; ) {
979 Instruction *Inst = I++;
980 switch (GetBasicInstructionClass(Inst)) {
981 case IC_AutoreleasepoolPush:
982 Push = Inst;
983 break;
984 case IC_AutoreleasepoolPop:
985 // If this pop matches a push and nothing in between can autorelease,
986 // zap the pair.
987 if (Push && cast<CallInst>(Inst)->getArgOperand(0) == Push) {
988 Changed = true;
989 Inst->eraseFromParent();
990 Push->eraseFromParent();
991 }
992 Push = 0;
993 break;
994 case IC_CallOrUser:
Dan Gohman447989c2012-04-27 18:56:31 +0000995 if (MayAutorelease(ImmutableCallSite(Inst)))
Dan Gohman2f6263c2012-01-17 20:52:24 +0000996 Push = 0;
997 break;
998 default:
999 break;
1000 }
1001 }
1002
1003 return Changed;
1004}
1005
1006bool ObjCARCAPElim::runOnModule(Module &M) {
1007 if (!EnableARCOpts)
1008 return false;
1009
1010 // If nothing in the Module uses ARC, don't do anything.
1011 if (!ModuleHasARC(M))
1012 return false;
1013
Dan Gohman1dae3e92012-01-18 21:19:38 +00001014 // Find the llvm.global_ctors variable, as the first step in
Dan Gohmand6bf2012012-04-13 18:57:48 +00001015 // identifying the global constructors. In theory, unnecessary autorelease
1016 // pools could occur anywhere, but in practice it's pretty rare. Global
1017 // ctors are a place where autorelease pools get inserted automatically,
1018 // so it's pretty common for them to be unnecessary, and it's pretty
1019 // profitable to eliminate them.
Dan Gohman1dae3e92012-01-18 21:19:38 +00001020 GlobalVariable *GV = M.getGlobalVariable("llvm.global_ctors");
1021 if (!GV)
1022 return false;
1023
1024 assert(GV->hasDefinitiveInitializer() &&
1025 "llvm.global_ctors is uncooperative!");
1026
Dan Gohman2f6263c2012-01-17 20:52:24 +00001027 bool Changed = false;
1028
Dan Gohman1dae3e92012-01-18 21:19:38 +00001029 // Dig the constructor functions out of GV's initializer.
1030 ConstantArray *Init = cast<ConstantArray>(GV->getInitializer());
1031 for (User::op_iterator OI = Init->op_begin(), OE = Init->op_end();
1032 OI != OE; ++OI) {
1033 Value *Op = *OI;
1034 // llvm.global_ctors is an array of pairs where the second members
1035 // are constructor functions.
Dan Gohman3b5b2a22012-04-18 22:24:33 +00001036 Function *F = dyn_cast<Function>(cast<ConstantStruct>(Op)->getOperand(1));
1037 // If the user used a constructor function with the wrong signature and
1038 // it got bitcasted or whatever, look the other way.
1039 if (!F)
1040 continue;
Dan Gohman2f6263c2012-01-17 20:52:24 +00001041 // Only look at function definitions.
1042 if (F->isDeclaration())
1043 continue;
Dan Gohman2f6263c2012-01-17 20:52:24 +00001044 // Only look at functions with one basic block.
1045 if (llvm::next(F->begin()) != F->end())
1046 continue;
1047 // Ok, a single-block constructor function definition. Try to optimize it.
1048 Changed |= OptimizeBB(F->begin());
1049 }
1050
1051 return Changed;
1052}
1053
1054//===----------------------------------------------------------------------===//
John McCall9fbd3182011-06-15 23:37:01 +00001055// ARC optimization.
1056//===----------------------------------------------------------------------===//
1057
1058// TODO: On code like this:
1059//
1060// objc_retain(%x)
1061// stuff_that_cannot_release()
1062// objc_autorelease(%x)
1063// stuff_that_cannot_release()
1064// objc_retain(%x)
1065// stuff_that_cannot_release()
1066// objc_autorelease(%x)
1067//
1068// The second retain and autorelease can be deleted.
1069
1070// TODO: It should be possible to delete
1071// objc_autoreleasePoolPush and objc_autoreleasePoolPop
1072// pairs if nothing is actually autoreleased between them. Also, autorelease
1073// calls followed by objc_autoreleasePoolPop calls (perhaps in ObjC++ code
1074// after inlining) can be turned into plain release calls.
1075
1076// TODO: Critical-edge splitting. If the optimial insertion point is
1077// a critical edge, the current algorithm has to fail, because it doesn't
1078// know how to split edges. It should be possible to make the optimizer
1079// think in terms of edges, rather than blocks, and then split critical
1080// edges on demand.
1081
1082// TODO: OptimizeSequences could generalized to be Interprocedural.
1083
1084// TODO: Recognize that a bunch of other objc runtime calls have
1085// non-escaping arguments and non-releasing arguments, and may be
1086// non-autoreleasing.
1087
1088// TODO: Sink autorelease calls as far as possible. Unfortunately we
1089// usually can't sink them past other calls, which would be the main
1090// case where it would be useful.
1091
Dan Gohmane6d5e882011-08-19 00:26:36 +00001092// TODO: The pointer returned from objc_loadWeakRetained is retained.
1093
1094// TODO: Delete release+retain pairs (rare).
Dan Gohmanc4bcd4d2011-06-20 23:20:43 +00001095
John McCall9fbd3182011-06-15 23:37:01 +00001096#include "llvm/LLVMContext.h"
John McCall9fbd3182011-06-15 23:37:01 +00001097#include "llvm/Support/CFG.h"
John McCall9fbd3182011-06-15 23:37:01 +00001098#include "llvm/ADT/Statistic.h"
Dan Gohman59a1c932011-12-12 19:42:25 +00001099#include "llvm/ADT/SmallPtrSet.h"
John McCall9fbd3182011-06-15 23:37:01 +00001100
1101STATISTIC(NumNoops, "Number of no-op objc calls eliminated");
1102STATISTIC(NumPartialNoops, "Number of partially no-op objc calls eliminated");
1103STATISTIC(NumAutoreleases,"Number of autoreleases converted to releases");
1104STATISTIC(NumRets, "Number of return value forwarding "
1105 "retain+autoreleaes eliminated");
1106STATISTIC(NumRRs, "Number of retain+release paths eliminated");
1107STATISTIC(NumPeeps, "Number of calls peephole-optimized");
1108
1109namespace {
1110 /// ProvenanceAnalysis - This is similar to BasicAliasAnalysis, and it
1111 /// uses many of the same techniques, except it uses special ObjC-specific
1112 /// reasoning about pointer relationships.
1113 class ProvenanceAnalysis {
1114 AliasAnalysis *AA;
1115
1116 typedef std::pair<const Value *, const Value *> ValuePairTy;
1117 typedef DenseMap<ValuePairTy, bool> CachedResultsTy;
1118 CachedResultsTy CachedResults;
1119
1120 bool relatedCheck(const Value *A, const Value *B);
1121 bool relatedSelect(const SelectInst *A, const Value *B);
1122 bool relatedPHI(const PHINode *A, const Value *B);
1123
Craig Topperc2945e42012-09-18 02:01:41 +00001124 void operator=(const ProvenanceAnalysis &) LLVM_DELETED_FUNCTION;
1125 ProvenanceAnalysis(const ProvenanceAnalysis &) LLVM_DELETED_FUNCTION;
John McCall9fbd3182011-06-15 23:37:01 +00001126
1127 public:
1128 ProvenanceAnalysis() {}
1129
1130 void setAA(AliasAnalysis *aa) { AA = aa; }
1131
1132 AliasAnalysis *getAA() const { return AA; }
1133
1134 bool related(const Value *A, const Value *B);
1135
1136 void clear() {
1137 CachedResults.clear();
1138 }
1139 };
1140}
1141
1142bool ProvenanceAnalysis::relatedSelect(const SelectInst *A, const Value *B) {
1143 // If the values are Selects with the same condition, we can do a more precise
1144 // check: just check for relations between the values on corresponding arms.
1145 if (const SelectInst *SB = dyn_cast<SelectInst>(B))
Dan Gohman447989c2012-04-27 18:56:31 +00001146 if (A->getCondition() == SB->getCondition())
1147 return related(A->getTrueValue(), SB->getTrueValue()) ||
1148 related(A->getFalseValue(), SB->getFalseValue());
John McCall9fbd3182011-06-15 23:37:01 +00001149
1150 // Check both arms of the Select node individually.
Dan Gohman447989c2012-04-27 18:56:31 +00001151 return related(A->getTrueValue(), B) ||
1152 related(A->getFalseValue(), B);
John McCall9fbd3182011-06-15 23:37:01 +00001153}
1154
1155bool ProvenanceAnalysis::relatedPHI(const PHINode *A, const Value *B) {
1156 // If the values are PHIs in the same block, we can do a more precise as well
1157 // as efficient check: just check for relations between the values on
1158 // corresponding edges.
1159 if (const PHINode *PNB = dyn_cast<PHINode>(B))
1160 if (PNB->getParent() == A->getParent()) {
1161 for (unsigned i = 0, e = A->getNumIncomingValues(); i != e; ++i)
1162 if (related(A->getIncomingValue(i),
1163 PNB->getIncomingValueForBlock(A->getIncomingBlock(i))))
1164 return true;
1165 return false;
1166 }
1167
1168 // Check each unique source of the PHI node against B.
1169 SmallPtrSet<const Value *, 4> UniqueSrc;
1170 for (unsigned i = 0, e = A->getNumIncomingValues(); i != e; ++i) {
1171 const Value *PV1 = A->getIncomingValue(i);
1172 if (UniqueSrc.insert(PV1) && related(PV1, B))
1173 return true;
1174 }
1175
1176 // All of the arms checked out.
1177 return false;
1178}
1179
1180/// isStoredObjCPointer - Test if the value of P, or any value covered by its
1181/// provenance, is ever stored within the function (not counting callees).
1182static bool isStoredObjCPointer(const Value *P) {
1183 SmallPtrSet<const Value *, 8> Visited;
1184 SmallVector<const Value *, 8> Worklist;
1185 Worklist.push_back(P);
1186 Visited.insert(P);
1187 do {
1188 P = Worklist.pop_back_val();
1189 for (Value::const_use_iterator UI = P->use_begin(), UE = P->use_end();
1190 UI != UE; ++UI) {
1191 const User *Ur = *UI;
1192 if (isa<StoreInst>(Ur)) {
1193 if (UI.getOperandNo() == 0)
1194 // The pointer is stored.
1195 return true;
1196 // The pointed is stored through.
1197 continue;
1198 }
1199 if (isa<CallInst>(Ur))
1200 // The pointer is passed as an argument, ignore this.
1201 continue;
1202 if (isa<PtrToIntInst>(P))
1203 // Assume the worst.
1204 return true;
1205 if (Visited.insert(Ur))
1206 Worklist.push_back(Ur);
1207 }
1208 } while (!Worklist.empty());
1209
1210 // Everything checked out.
1211 return false;
1212}
1213
1214bool ProvenanceAnalysis::relatedCheck(const Value *A, const Value *B) {
1215 // Skip past provenance pass-throughs.
1216 A = GetUnderlyingObjCPtr(A);
1217 B = GetUnderlyingObjCPtr(B);
1218
1219 // Quick check.
1220 if (A == B)
1221 return true;
1222
1223 // Ask regular AliasAnalysis, for a first approximation.
1224 switch (AA->alias(A, B)) {
1225 case AliasAnalysis::NoAlias:
1226 return false;
1227 case AliasAnalysis::MustAlias:
1228 case AliasAnalysis::PartialAlias:
1229 return true;
1230 case AliasAnalysis::MayAlias:
1231 break;
1232 }
1233
1234 bool AIsIdentified = IsObjCIdentifiedObject(A);
1235 bool BIsIdentified = IsObjCIdentifiedObject(B);
1236
1237 // An ObjC-Identified object can't alias a load if it is never locally stored.
1238 if (AIsIdentified) {
Dan Gohman230768b2012-09-04 23:16:20 +00001239 // Check for an obvious escape.
1240 if (isa<LoadInst>(B))
1241 return isStoredObjCPointer(A);
John McCall9fbd3182011-06-15 23:37:01 +00001242 if (BIsIdentified) {
Dan Gohman230768b2012-09-04 23:16:20 +00001243 // Check for an obvious escape.
1244 if (isa<LoadInst>(A))
1245 return isStoredObjCPointer(B);
1246 // Both pointers are identified and escapes aren't an evident problem.
1247 return false;
John McCall9fbd3182011-06-15 23:37:01 +00001248 }
Dan Gohman230768b2012-09-04 23:16:20 +00001249 } else if (BIsIdentified) {
1250 // Check for an obvious escape.
1251 if (isa<LoadInst>(A))
John McCall9fbd3182011-06-15 23:37:01 +00001252 return isStoredObjCPointer(B);
1253 }
1254
1255 // Special handling for PHI and Select.
1256 if (const PHINode *PN = dyn_cast<PHINode>(A))
1257 return relatedPHI(PN, B);
1258 if (const PHINode *PN = dyn_cast<PHINode>(B))
1259 return relatedPHI(PN, A);
1260 if (const SelectInst *S = dyn_cast<SelectInst>(A))
1261 return relatedSelect(S, B);
1262 if (const SelectInst *S = dyn_cast<SelectInst>(B))
1263 return relatedSelect(S, A);
1264
1265 // Conservative.
1266 return true;
1267}
1268
1269bool ProvenanceAnalysis::related(const Value *A, const Value *B) {
1270 // Begin by inserting a conservative value into the map. If the insertion
1271 // fails, we have the answer already. If it succeeds, leave it there until we
1272 // compute the real answer to guard against recursive queries.
1273 if (A > B) std::swap(A, B);
1274 std::pair<CachedResultsTy::iterator, bool> Pair =
1275 CachedResults.insert(std::make_pair(ValuePairTy(A, B), true));
1276 if (!Pair.second)
1277 return Pair.first->second;
1278
1279 bool Result = relatedCheck(A, B);
1280 CachedResults[ValuePairTy(A, B)] = Result;
1281 return Result;
1282}
1283
1284namespace {
1285 // Sequence - A sequence of states that a pointer may go through in which an
1286 // objc_retain and objc_release are actually needed.
1287 enum Sequence {
1288 S_None,
1289 S_Retain, ///< objc_retain(x)
1290 S_CanRelease, ///< foo(x) -- x could possibly see a ref count decrement
1291 S_Use, ///< any use of x
1292 S_Stop, ///< like S_Release, but code motion is stopped
1293 S_Release, ///< objc_release(x)
1294 S_MovableRelease ///< objc_release(x), !clang.imprecise_release
1295 };
1296}
1297
1298static Sequence MergeSeqs(Sequence A, Sequence B, bool TopDown) {
1299 // The easy cases.
1300 if (A == B)
1301 return A;
1302 if (A == S_None || B == S_None)
1303 return S_None;
1304
John McCall9fbd3182011-06-15 23:37:01 +00001305 if (A > B) std::swap(A, B);
1306 if (TopDown) {
1307 // Choose the side which is further along in the sequence.
Dan Gohmana7f7db22011-08-12 00:26:31 +00001308 if ((A == S_Retain || A == S_CanRelease) &&
1309 (B == S_CanRelease || B == S_Use))
John McCall9fbd3182011-06-15 23:37:01 +00001310 return B;
1311 } else {
1312 // Choose the side which is further along in the sequence.
1313 if ((A == S_Use || A == S_CanRelease) &&
Dan Gohmana7f7db22011-08-12 00:26:31 +00001314 (B == S_Use || B == S_Release || B == S_Stop || B == S_MovableRelease))
John McCall9fbd3182011-06-15 23:37:01 +00001315 return A;
1316 // If both sides are releases, choose the more conservative one.
1317 if (A == S_Stop && (B == S_Release || B == S_MovableRelease))
1318 return A;
1319 if (A == S_Release && B == S_MovableRelease)
1320 return A;
1321 }
1322
1323 return S_None;
1324}
1325
1326namespace {
1327 /// RRInfo - Unidirectional information about either a
1328 /// retain-decrement-use-release sequence or release-use-decrement-retain
1329 /// reverese sequence.
1330 struct RRInfo {
Dan Gohmane6d5e882011-08-19 00:26:36 +00001331 /// KnownSafe - After an objc_retain, the reference count of the referenced
1332 /// object is known to be positive. Similarly, before an objc_release, the
1333 /// reference count of the referenced object is known to be positive. If
1334 /// there are retain-release pairs in code regions where the retain count
1335 /// is known to be positive, they can be eliminated, regardless of any side
1336 /// effects between them.
1337 ///
1338 /// Also, a retain+release pair nested within another retain+release
1339 /// pair all on the known same pointer value can be eliminated, regardless
1340 /// of any intervening side effects.
1341 ///
1342 /// KnownSafe is true when either of these conditions is satisfied.
1343 bool KnownSafe;
John McCall9fbd3182011-06-15 23:37:01 +00001344
1345 /// IsRetainBlock - True if the Calls are objc_retainBlock calls (as
1346 /// opposed to objc_retain calls).
1347 bool IsRetainBlock;
1348
1349 /// IsTailCallRelease - True of the objc_release calls are all marked
1350 /// with the "tail" keyword.
1351 bool IsTailCallRelease;
1352
1353 /// ReleaseMetadata - If the Calls are objc_release calls and they all have
1354 /// a clang.imprecise_release tag, this is the metadata tag.
1355 MDNode *ReleaseMetadata;
1356
1357 /// Calls - For a top-down sequence, the set of objc_retains or
1358 /// objc_retainBlocks. For bottom-up, the set of objc_releases.
1359 SmallPtrSet<Instruction *, 2> Calls;
1360
1361 /// ReverseInsertPts - The set of optimal insert positions for
1362 /// moving calls in the opposite sequence.
1363 SmallPtrSet<Instruction *, 2> ReverseInsertPts;
1364
1365 RRInfo() :
Dan Gohman79522dc2012-01-13 00:39:07 +00001366 KnownSafe(false), IsRetainBlock(false),
Dan Gohman50ade652012-04-25 00:50:46 +00001367 IsTailCallRelease(false),
John McCall9fbd3182011-06-15 23:37:01 +00001368 ReleaseMetadata(0) {}
1369
1370 void clear();
1371 };
1372}
1373
1374void RRInfo::clear() {
Dan Gohmane6d5e882011-08-19 00:26:36 +00001375 KnownSafe = false;
John McCall9fbd3182011-06-15 23:37:01 +00001376 IsRetainBlock = false;
1377 IsTailCallRelease = false;
1378 ReleaseMetadata = 0;
1379 Calls.clear();
1380 ReverseInsertPts.clear();
1381}
1382
1383namespace {
1384 /// PtrState - This class summarizes several per-pointer runtime properties
1385 /// which are propogated through the flow graph.
1386 class PtrState {
Dan Gohman50ade652012-04-25 00:50:46 +00001387 /// KnownPositiveRefCount - True if the reference count is known to
1388 /// be incremented.
1389 bool KnownPositiveRefCount;
1390
1391 /// Partial - True of we've seen an opportunity for partial RR elimination,
1392 /// such as pushing calls into a CFG triangle or into one side of a
1393 /// CFG diamond.
1394 bool Partial;
John McCall9fbd3182011-06-15 23:37:01 +00001395
1396 /// Seq - The current position in the sequence.
Dan Gohman0daef3d2012-05-08 23:39:44 +00001397 Sequence Seq : 8;
John McCall9fbd3182011-06-15 23:37:01 +00001398
1399 public:
1400 /// RRI - Unidirectional information about the current sequence.
1401 /// TODO: Encapsulate this better.
1402 RRInfo RRI;
1403
Dan Gohman230768b2012-09-04 23:16:20 +00001404 PtrState() : KnownPositiveRefCount(false), Partial(false),
Dan Gohman0daef3d2012-05-08 23:39:44 +00001405 Seq(S_None) {}
John McCall9fbd3182011-06-15 23:37:01 +00001406
Dan Gohman50ade652012-04-25 00:50:46 +00001407 void SetKnownPositiveRefCount() {
1408 KnownPositiveRefCount = true;
Dan Gohmana7f7db22011-08-12 00:26:31 +00001409 }
1410
Dan Gohman50ade652012-04-25 00:50:46 +00001411 void ClearRefCount() {
1412 KnownPositiveRefCount = false;
John McCall9fbd3182011-06-15 23:37:01 +00001413 }
1414
John McCall9fbd3182011-06-15 23:37:01 +00001415 bool IsKnownIncremented() const {
Dan Gohman50ade652012-04-25 00:50:46 +00001416 return KnownPositiveRefCount;
John McCall9fbd3182011-06-15 23:37:01 +00001417 }
1418
1419 void SetSeq(Sequence NewSeq) {
1420 Seq = NewSeq;
1421 }
1422
John McCall9fbd3182011-06-15 23:37:01 +00001423 Sequence GetSeq() const {
1424 return Seq;
1425 }
1426
1427 void ClearSequenceProgress() {
Dan Gohman50ade652012-04-25 00:50:46 +00001428 ResetSequenceProgress(S_None);
1429 }
1430
1431 void ResetSequenceProgress(Sequence NewSeq) {
1432 Seq = NewSeq;
1433 Partial = false;
John McCall9fbd3182011-06-15 23:37:01 +00001434 RRI.clear();
1435 }
1436
1437 void Merge(const PtrState &Other, bool TopDown);
1438 };
1439}
1440
1441void
1442PtrState::Merge(const PtrState &Other, bool TopDown) {
1443 Seq = MergeSeqs(Seq, Other.Seq, TopDown);
Dan Gohman50ade652012-04-25 00:50:46 +00001444 KnownPositiveRefCount = KnownPositiveRefCount && Other.KnownPositiveRefCount;
John McCall9fbd3182011-06-15 23:37:01 +00001445
1446 // We can't merge a plain objc_retain with an objc_retainBlock.
1447 if (RRI.IsRetainBlock != Other.RRI.IsRetainBlock)
1448 Seq = S_None;
1449
Dan Gohman90b8bcd2011-10-17 18:48:25 +00001450 // If we're not in a sequence (anymore), drop all associated state.
John McCall9fbd3182011-06-15 23:37:01 +00001451 if (Seq == S_None) {
Dan Gohman50ade652012-04-25 00:50:46 +00001452 Partial = false;
John McCall9fbd3182011-06-15 23:37:01 +00001453 RRI.clear();
Dan Gohman50ade652012-04-25 00:50:46 +00001454 } else if (Partial || Other.Partial) {
Dan Gohman90b8bcd2011-10-17 18:48:25 +00001455 // If we're doing a merge on a path that's previously seen a partial
1456 // merge, conservatively drop the sequence, to avoid doing partial
1457 // RR elimination. If the branch predicates for the two merge differ,
1458 // mixing them is unsafe.
Dan Gohman50ade652012-04-25 00:50:46 +00001459 ClearSequenceProgress();
John McCall9fbd3182011-06-15 23:37:01 +00001460 } else {
1461 // Conservatively merge the ReleaseMetadata information.
1462 if (RRI.ReleaseMetadata != Other.RRI.ReleaseMetadata)
1463 RRI.ReleaseMetadata = 0;
1464
Dan Gohmane6d5e882011-08-19 00:26:36 +00001465 RRI.KnownSafe = RRI.KnownSafe && Other.RRI.KnownSafe;
Dan Gohman0daef3d2012-05-08 23:39:44 +00001466 RRI.IsTailCallRelease = RRI.IsTailCallRelease &&
1467 Other.RRI.IsTailCallRelease;
John McCall9fbd3182011-06-15 23:37:01 +00001468 RRI.Calls.insert(Other.RRI.Calls.begin(), Other.RRI.Calls.end());
Dan Gohman90b8bcd2011-10-17 18:48:25 +00001469
1470 // Merge the insert point sets. If there are any differences,
1471 // that makes this a partial merge.
Dan Gohman0daef3d2012-05-08 23:39:44 +00001472 Partial = RRI.ReverseInsertPts.size() != Other.RRI.ReverseInsertPts.size();
Dan Gohman90b8bcd2011-10-17 18:48:25 +00001473 for (SmallPtrSet<Instruction *, 2>::const_iterator
1474 I = Other.RRI.ReverseInsertPts.begin(),
1475 E = Other.RRI.ReverseInsertPts.end(); I != E; ++I)
Dan Gohman50ade652012-04-25 00:50:46 +00001476 Partial |= RRI.ReverseInsertPts.insert(*I);
John McCall9fbd3182011-06-15 23:37:01 +00001477 }
1478}
1479
1480namespace {
1481 /// BBState - Per-BasicBlock state.
1482 class BBState {
1483 /// TopDownPathCount - The number of unique control paths from the entry
1484 /// which can reach this block.
1485 unsigned TopDownPathCount;
1486
1487 /// BottomUpPathCount - The number of unique control paths to exits
1488 /// from this block.
1489 unsigned BottomUpPathCount;
1490
1491 /// MapTy - A type for PerPtrTopDown and PerPtrBottomUp.
1492 typedef MapVector<const Value *, PtrState> MapTy;
1493
1494 /// PerPtrTopDown - The top-down traversal uses this to record information
1495 /// known about a pointer at the bottom of each block.
1496 MapTy PerPtrTopDown;
1497
1498 /// PerPtrBottomUp - The bottom-up traversal uses this to record information
1499 /// known about a pointer at the top of each block.
1500 MapTy PerPtrBottomUp;
1501
Dan Gohmaneeeb7752012-04-24 22:53:18 +00001502 /// Preds, Succs - Effective successors and predecessors of the current
1503 /// block (this ignores ignorable edges and ignored backedges).
1504 SmallVector<BasicBlock *, 2> Preds;
1505 SmallVector<BasicBlock *, 2> Succs;
1506
John McCall9fbd3182011-06-15 23:37:01 +00001507 public:
1508 BBState() : TopDownPathCount(0), BottomUpPathCount(0) {}
1509
1510 typedef MapTy::iterator ptr_iterator;
1511 typedef MapTy::const_iterator ptr_const_iterator;
1512
1513 ptr_iterator top_down_ptr_begin() { return PerPtrTopDown.begin(); }
1514 ptr_iterator top_down_ptr_end() { return PerPtrTopDown.end(); }
1515 ptr_const_iterator top_down_ptr_begin() const {
1516 return PerPtrTopDown.begin();
1517 }
1518 ptr_const_iterator top_down_ptr_end() const {
1519 return PerPtrTopDown.end();
1520 }
1521
1522 ptr_iterator bottom_up_ptr_begin() { return PerPtrBottomUp.begin(); }
1523 ptr_iterator bottom_up_ptr_end() { return PerPtrBottomUp.end(); }
1524 ptr_const_iterator bottom_up_ptr_begin() const {
1525 return PerPtrBottomUp.begin();
1526 }
1527 ptr_const_iterator bottom_up_ptr_end() const {
1528 return PerPtrBottomUp.end();
1529 }
1530
1531 /// SetAsEntry - Mark this block as being an entry block, which has one
1532 /// path from the entry by definition.
1533 void SetAsEntry() { TopDownPathCount = 1; }
1534
1535 /// SetAsExit - Mark this block as being an exit block, which has one
1536 /// path to an exit by definition.
1537 void SetAsExit() { BottomUpPathCount = 1; }
1538
1539 PtrState &getPtrTopDownState(const Value *Arg) {
1540 return PerPtrTopDown[Arg];
1541 }
1542
1543 PtrState &getPtrBottomUpState(const Value *Arg) {
1544 return PerPtrBottomUp[Arg];
1545 }
1546
1547 void clearBottomUpPointers() {
Evan Chenga81388f2011-08-04 18:40:26 +00001548 PerPtrBottomUp.clear();
John McCall9fbd3182011-06-15 23:37:01 +00001549 }
1550
1551 void clearTopDownPointers() {
1552 PerPtrTopDown.clear();
1553 }
1554
1555 void InitFromPred(const BBState &Other);
1556 void InitFromSucc(const BBState &Other);
1557 void MergePred(const BBState &Other);
1558 void MergeSucc(const BBState &Other);
1559
1560 /// GetAllPathCount - Return the number of possible unique paths from an
1561 /// entry to an exit which pass through this block. This is only valid
1562 /// after both the top-down and bottom-up traversals are complete.
1563 unsigned GetAllPathCount() const {
Dan Gohmaneeeb7752012-04-24 22:53:18 +00001564 assert(TopDownPathCount != 0);
1565 assert(BottomUpPathCount != 0);
John McCall9fbd3182011-06-15 23:37:01 +00001566 return TopDownPathCount * BottomUpPathCount;
1567 }
Dan Gohmana7f7db22011-08-12 00:26:31 +00001568
Dan Gohmaneeeb7752012-04-24 22:53:18 +00001569 // Specialized CFG utilities.
Dan Gohman447989c2012-04-27 18:56:31 +00001570 typedef SmallVectorImpl<BasicBlock *>::const_iterator edge_iterator;
Dan Gohmaneeeb7752012-04-24 22:53:18 +00001571 edge_iterator pred_begin() { return Preds.begin(); }
1572 edge_iterator pred_end() { return Preds.end(); }
1573 edge_iterator succ_begin() { return Succs.begin(); }
1574 edge_iterator succ_end() { return Succs.end(); }
1575
1576 void addSucc(BasicBlock *Succ) { Succs.push_back(Succ); }
1577 void addPred(BasicBlock *Pred) { Preds.push_back(Pred); }
1578
1579 bool isExit() const { return Succs.empty(); }
John McCall9fbd3182011-06-15 23:37:01 +00001580 };
1581}
1582
1583void BBState::InitFromPred(const BBState &Other) {
1584 PerPtrTopDown = Other.PerPtrTopDown;
1585 TopDownPathCount = Other.TopDownPathCount;
1586}
1587
1588void BBState::InitFromSucc(const BBState &Other) {
1589 PerPtrBottomUp = Other.PerPtrBottomUp;
1590 BottomUpPathCount = Other.BottomUpPathCount;
1591}
1592
1593/// MergePred - The top-down traversal uses this to merge information about
1594/// predecessors to form the initial state for a new block.
1595void BBState::MergePred(const BBState &Other) {
1596 // Other.TopDownPathCount can be 0, in which case it is either dead or a
1597 // loop backedge. Loop backedges are special.
1598 TopDownPathCount += Other.TopDownPathCount;
1599
Dan Gohman0d1bc5f2012-09-12 20:45:17 +00001600 // Check for overflow. If we have overflow, fall back to conservative behavior.
1601 if (TopDownPathCount < Other.TopDownPathCount) {
1602 clearTopDownPointers();
1603 return;
1604 }
1605
John McCall9fbd3182011-06-15 23:37:01 +00001606 // For each entry in the other set, if our set has an entry with the same key,
1607 // merge the entries. Otherwise, copy the entry and merge it with an empty
1608 // entry.
1609 for (ptr_const_iterator MI = Other.top_down_ptr_begin(),
1610 ME = Other.top_down_ptr_end(); MI != ME; ++MI) {
1611 std::pair<ptr_iterator, bool> Pair = PerPtrTopDown.insert(*MI);
1612 Pair.first->second.Merge(Pair.second ? PtrState() : MI->second,
1613 /*TopDown=*/true);
1614 }
1615
Dan Gohmanfa7eed12011-08-11 21:06:32 +00001616 // For each entry in our set, if the other set doesn't have an entry with the
John McCall9fbd3182011-06-15 23:37:01 +00001617 // same key, force it to merge with an empty entry.
1618 for (ptr_iterator MI = top_down_ptr_begin(),
1619 ME = top_down_ptr_end(); MI != ME; ++MI)
1620 if (Other.PerPtrTopDown.find(MI->first) == Other.PerPtrTopDown.end())
1621 MI->second.Merge(PtrState(), /*TopDown=*/true);
1622}
1623
1624/// MergeSucc - The bottom-up traversal uses this to merge information about
1625/// successors to form the initial state for a new block.
1626void BBState::MergeSucc(const BBState &Other) {
1627 // Other.BottomUpPathCount can be 0, in which case it is either dead or a
1628 // loop backedge. Loop backedges are special.
1629 BottomUpPathCount += Other.BottomUpPathCount;
1630
Dan Gohman0d1bc5f2012-09-12 20:45:17 +00001631 // Check for overflow. If we have overflow, fall back to conservative behavior.
1632 if (BottomUpPathCount < Other.BottomUpPathCount) {
1633 clearBottomUpPointers();
1634 return;
1635 }
1636
John McCall9fbd3182011-06-15 23:37:01 +00001637 // For each entry in the other set, if our set has an entry with the
1638 // same key, merge the entries. Otherwise, copy the entry and merge
1639 // it with an empty entry.
1640 for (ptr_const_iterator MI = Other.bottom_up_ptr_begin(),
1641 ME = Other.bottom_up_ptr_end(); MI != ME; ++MI) {
1642 std::pair<ptr_iterator, bool> Pair = PerPtrBottomUp.insert(*MI);
1643 Pair.first->second.Merge(Pair.second ? PtrState() : MI->second,
1644 /*TopDown=*/false);
1645 }
1646
Dan Gohmanfa7eed12011-08-11 21:06:32 +00001647 // For each entry in our set, if the other set doesn't have an entry
John McCall9fbd3182011-06-15 23:37:01 +00001648 // with the same key, force it to merge with an empty entry.
1649 for (ptr_iterator MI = bottom_up_ptr_begin(),
1650 ME = bottom_up_ptr_end(); MI != ME; ++MI)
1651 if (Other.PerPtrBottomUp.find(MI->first) == Other.PerPtrBottomUp.end())
1652 MI->second.Merge(PtrState(), /*TopDown=*/false);
1653}
1654
1655namespace {
1656 /// ObjCARCOpt - The main ARC optimization pass.
1657 class ObjCARCOpt : public FunctionPass {
1658 bool Changed;
1659 ProvenanceAnalysis PA;
1660
Dan Gohmanc4bcd4d2011-06-20 23:20:43 +00001661 /// Run - A flag indicating whether this optimization pass should run.
1662 bool Run;
1663
John McCall9fbd3182011-06-15 23:37:01 +00001664 /// RetainRVCallee, etc. - Declarations for ObjC runtime
1665 /// functions, for use in creating calls to them. These are initialized
1666 /// lazily to avoid cluttering up the Module with unused declarations.
1667 Constant *RetainRVCallee, *AutoreleaseRVCallee, *ReleaseCallee,
Dan Gohman44280692011-07-22 22:29:21 +00001668 *RetainCallee, *RetainBlockCallee, *AutoreleaseCallee;
John McCall9fbd3182011-06-15 23:37:01 +00001669
1670 /// UsedInThisFunciton - Flags which determine whether each of the
1671 /// interesting runtine functions is in fact used in the current function.
1672 unsigned UsedInThisFunction;
1673
1674 /// ImpreciseReleaseMDKind - The Metadata Kind for clang.imprecise_release
1675 /// metadata.
1676 unsigned ImpreciseReleaseMDKind;
1677
Dan Gohman62e5b402011-12-12 18:20:00 +00001678 /// CopyOnEscapeMDKind - The Metadata Kind for clang.arc.copy_on_escape
Dan Gohmana974bea2011-10-17 22:53:25 +00001679 /// metadata.
1680 unsigned CopyOnEscapeMDKind;
1681
Dan Gohmandbe266b2012-02-17 18:59:53 +00001682 /// NoObjCARCExceptionsMDKind - The Metadata Kind for
1683 /// clang.arc.no_objc_arc_exceptions metadata.
1684 unsigned NoObjCARCExceptionsMDKind;
1685
John McCall9fbd3182011-06-15 23:37:01 +00001686 Constant *getRetainRVCallee(Module *M);
1687 Constant *getAutoreleaseRVCallee(Module *M);
1688 Constant *getReleaseCallee(Module *M);
1689 Constant *getRetainCallee(Module *M);
Dan Gohman44280692011-07-22 22:29:21 +00001690 Constant *getRetainBlockCallee(Module *M);
John McCall9fbd3182011-06-15 23:37:01 +00001691 Constant *getAutoreleaseCallee(Module *M);
1692
Dan Gohman79522dc2012-01-13 00:39:07 +00001693 bool IsRetainBlockOptimizable(const Instruction *Inst);
1694
John McCall9fbd3182011-06-15 23:37:01 +00001695 void OptimizeRetainCall(Function &F, Instruction *Retain);
1696 bool OptimizeRetainRVCall(Function &F, Instruction *RetainRV);
1697 void OptimizeAutoreleaseRVCall(Function &F, Instruction *AutoreleaseRV);
1698 void OptimizeIndividualCalls(Function &F);
1699
1700 void CheckForCFGHazards(const BasicBlock *BB,
1701 DenseMap<const BasicBlock *, BBState> &BBStates,
1702 BBState &MyStates) const;
Dan Gohmanc7f5c6e2012-03-22 18:24:56 +00001703 bool VisitInstructionBottomUp(Instruction *Inst,
Dan Gohmanfbab4a82012-03-23 17:47:54 +00001704 BasicBlock *BB,
Dan Gohmanc7f5c6e2012-03-22 18:24:56 +00001705 MapVector<Value *, RRInfo> &Retains,
1706 BBState &MyStates);
John McCall9fbd3182011-06-15 23:37:01 +00001707 bool VisitBottomUp(BasicBlock *BB,
1708 DenseMap<const BasicBlock *, BBState> &BBStates,
1709 MapVector<Value *, RRInfo> &Retains);
Dan Gohmanc7f5c6e2012-03-22 18:24:56 +00001710 bool VisitInstructionTopDown(Instruction *Inst,
1711 DenseMap<Value *, RRInfo> &Releases,
1712 BBState &MyStates);
John McCall9fbd3182011-06-15 23:37:01 +00001713 bool VisitTopDown(BasicBlock *BB,
1714 DenseMap<const BasicBlock *, BBState> &BBStates,
1715 DenseMap<Value *, RRInfo> &Releases);
1716 bool Visit(Function &F,
1717 DenseMap<const BasicBlock *, BBState> &BBStates,
1718 MapVector<Value *, RRInfo> &Retains,
1719 DenseMap<Value *, RRInfo> &Releases);
1720
1721 void MoveCalls(Value *Arg, RRInfo &RetainsToMove, RRInfo &ReleasesToMove,
1722 MapVector<Value *, RRInfo> &Retains,
1723 DenseMap<Value *, RRInfo> &Releases,
Dan Gohman44280692011-07-22 22:29:21 +00001724 SmallVectorImpl<Instruction *> &DeadInsts,
1725 Module *M);
John McCall9fbd3182011-06-15 23:37:01 +00001726
1727 bool PerformCodePlacement(DenseMap<const BasicBlock *, BBState> &BBStates,
1728 MapVector<Value *, RRInfo> &Retains,
Dan Gohman44280692011-07-22 22:29:21 +00001729 DenseMap<Value *, RRInfo> &Releases,
1730 Module *M);
John McCall9fbd3182011-06-15 23:37:01 +00001731
1732 void OptimizeWeakCalls(Function &F);
1733
1734 bool OptimizeSequences(Function &F);
1735
1736 void OptimizeReturns(Function &F);
1737
1738 virtual void getAnalysisUsage(AnalysisUsage &AU) const;
1739 virtual bool doInitialization(Module &M);
1740 virtual bool runOnFunction(Function &F);
1741 virtual void releaseMemory();
1742
1743 public:
1744 static char ID;
1745 ObjCARCOpt() : FunctionPass(ID) {
1746 initializeObjCARCOptPass(*PassRegistry::getPassRegistry());
1747 }
1748 };
1749}
1750
1751char ObjCARCOpt::ID = 0;
1752INITIALIZE_PASS_BEGIN(ObjCARCOpt,
1753 "objc-arc", "ObjC ARC optimization", false, false)
1754INITIALIZE_PASS_DEPENDENCY(ObjCARCAliasAnalysis)
1755INITIALIZE_PASS_END(ObjCARCOpt,
1756 "objc-arc", "ObjC ARC optimization", false, false)
1757
1758Pass *llvm::createObjCARCOptPass() {
1759 return new ObjCARCOpt();
1760}
1761
1762void ObjCARCOpt::getAnalysisUsage(AnalysisUsage &AU) const {
1763 AU.addRequired<ObjCARCAliasAnalysis>();
1764 AU.addRequired<AliasAnalysis>();
1765 // ARC optimization doesn't currently split critical edges.
1766 AU.setPreservesCFG();
1767}
1768
Dan Gohman79522dc2012-01-13 00:39:07 +00001769bool ObjCARCOpt::IsRetainBlockOptimizable(const Instruction *Inst) {
1770 // Without the magic metadata tag, we have to assume this might be an
1771 // objc_retainBlock call inserted to convert a block pointer to an id,
1772 // in which case it really is needed.
1773 if (!Inst->getMetadata(CopyOnEscapeMDKind))
1774 return false;
1775
1776 // If the pointer "escapes" (not including being used in a call),
1777 // the copy may be needed.
1778 if (DoesObjCBlockEscape(Inst))
1779 return false;
1780
1781 // Otherwise, it's not needed.
1782 return true;
1783}
1784
John McCall9fbd3182011-06-15 23:37:01 +00001785Constant *ObjCARCOpt::getRetainRVCallee(Module *M) {
1786 if (!RetainRVCallee) {
1787 LLVMContext &C = M->getContext();
Jay Foad5fdd6c82011-07-12 14:06:48 +00001788 Type *I8X = PointerType::getUnqual(Type::getInt8Ty(C));
Dan Gohman0daef3d2012-05-08 23:39:44 +00001789 Type *Params[] = { I8X };
1790 FunctionType *FTy = FunctionType::get(I8X, Params, /*isVarArg=*/false);
Bill Wendling07aae2e2012-10-15 07:29:08 +00001791 AttrListPtr Attributes =
1792 AttrListPtr().addAttr(M->getContext(), AttrListPtr::FunctionIndex,
Bill Wendling46d5dd92012-10-16 05:23:31 +00001793 Attributes::get(C, Attributes::NoUnwind));
John McCall9fbd3182011-06-15 23:37:01 +00001794 RetainRVCallee =
1795 M->getOrInsertFunction("objc_retainAutoreleasedReturnValue", FTy,
1796 Attributes);
1797 }
1798 return RetainRVCallee;
1799}
1800
1801Constant *ObjCARCOpt::getAutoreleaseRVCallee(Module *M) {
1802 if (!AutoreleaseRVCallee) {
1803 LLVMContext &C = M->getContext();
Jay Foad5fdd6c82011-07-12 14:06:48 +00001804 Type *I8X = PointerType::getUnqual(Type::getInt8Ty(C));
Dan Gohman0daef3d2012-05-08 23:39:44 +00001805 Type *Params[] = { I8X };
1806 FunctionType *FTy = FunctionType::get(I8X, Params, /*isVarArg=*/false);
Bill Wendling07aae2e2012-10-15 07:29:08 +00001807 AttrListPtr Attributes =
1808 AttrListPtr().addAttr(M->getContext(), AttrListPtr::FunctionIndex,
Bill Wendling46d5dd92012-10-16 05:23:31 +00001809 Attributes::get(C, Attributes::NoUnwind));
John McCall9fbd3182011-06-15 23:37:01 +00001810 AutoreleaseRVCallee =
1811 M->getOrInsertFunction("objc_autoreleaseReturnValue", FTy,
1812 Attributes);
1813 }
1814 return AutoreleaseRVCallee;
1815}
1816
1817Constant *ObjCARCOpt::getReleaseCallee(Module *M) {
1818 if (!ReleaseCallee) {
1819 LLVMContext &C = M->getContext();
Dan Gohman0daef3d2012-05-08 23:39:44 +00001820 Type *Params[] = { PointerType::getUnqual(Type::getInt8Ty(C)) };
Bill Wendling07aae2e2012-10-15 07:29:08 +00001821 AttrListPtr Attributes =
1822 AttrListPtr().addAttr(M->getContext(), AttrListPtr::FunctionIndex,
Bill Wendling46d5dd92012-10-16 05:23:31 +00001823 Attributes::get(C, Attributes::NoUnwind));
John McCall9fbd3182011-06-15 23:37:01 +00001824 ReleaseCallee =
1825 M->getOrInsertFunction(
1826 "objc_release",
1827 FunctionType::get(Type::getVoidTy(C), Params, /*isVarArg=*/false),
1828 Attributes);
1829 }
1830 return ReleaseCallee;
1831}
1832
1833Constant *ObjCARCOpt::getRetainCallee(Module *M) {
1834 if (!RetainCallee) {
1835 LLVMContext &C = M->getContext();
Dan Gohman0daef3d2012-05-08 23:39:44 +00001836 Type *Params[] = { PointerType::getUnqual(Type::getInt8Ty(C)) };
Bill Wendling07aae2e2012-10-15 07:29:08 +00001837 AttrListPtr Attributes =
1838 AttrListPtr().addAttr(M->getContext(), AttrListPtr::FunctionIndex,
Bill Wendling46d5dd92012-10-16 05:23:31 +00001839 Attributes::get(C, Attributes::NoUnwind));
John McCall9fbd3182011-06-15 23:37:01 +00001840 RetainCallee =
1841 M->getOrInsertFunction(
1842 "objc_retain",
1843 FunctionType::get(Params[0], Params, /*isVarArg=*/false),
1844 Attributes);
1845 }
1846 return RetainCallee;
1847}
1848
Dan Gohman44280692011-07-22 22:29:21 +00001849Constant *ObjCARCOpt::getRetainBlockCallee(Module *M) {
1850 if (!RetainBlockCallee) {
1851 LLVMContext &C = M->getContext();
Dan Gohman0daef3d2012-05-08 23:39:44 +00001852 Type *Params[] = { PointerType::getUnqual(Type::getInt8Ty(C)) };
Dan Gohman1d2fd752011-09-14 18:33:34 +00001853 // objc_retainBlock is not nounwind because it calls user copy constructors
1854 // which could theoretically throw.
Dan Gohman44280692011-07-22 22:29:21 +00001855 RetainBlockCallee =
1856 M->getOrInsertFunction(
1857 "objc_retainBlock",
1858 FunctionType::get(Params[0], Params, /*isVarArg=*/false),
Dan Gohman0daef3d2012-05-08 23:39:44 +00001859 AttrListPtr());
Dan Gohman44280692011-07-22 22:29:21 +00001860 }
1861 return RetainBlockCallee;
1862}
1863
John McCall9fbd3182011-06-15 23:37:01 +00001864Constant *ObjCARCOpt::getAutoreleaseCallee(Module *M) {
1865 if (!AutoreleaseCallee) {
1866 LLVMContext &C = M->getContext();
Dan Gohman0daef3d2012-05-08 23:39:44 +00001867 Type *Params[] = { PointerType::getUnqual(Type::getInt8Ty(C)) };
Bill Wendling07aae2e2012-10-15 07:29:08 +00001868 AttrListPtr Attributes =
1869 AttrListPtr().addAttr(M->getContext(), AttrListPtr::FunctionIndex,
Bill Wendling46d5dd92012-10-16 05:23:31 +00001870 Attributes::get(C, Attributes::NoUnwind));
John McCall9fbd3182011-06-15 23:37:01 +00001871 AutoreleaseCallee =
1872 M->getOrInsertFunction(
1873 "objc_autorelease",
1874 FunctionType::get(Params[0], Params, /*isVarArg=*/false),
1875 Attributes);
1876 }
1877 return AutoreleaseCallee;
1878}
1879
Dan Gohman230768b2012-09-04 23:16:20 +00001880/// IsPotentialUse - Test whether the given value is possible a
1881/// reference-counted pointer, including tests which utilize AliasAnalysis.
1882static bool IsPotentialUse(const Value *Op, AliasAnalysis &AA) {
1883 // First make the rudimentary check.
1884 if (!IsPotentialUse(Op))
1885 return false;
1886
1887 // Objects in constant memory are not reference-counted.
1888 if (AA.pointsToConstantMemory(Op))
1889 return false;
1890
1891 // Pointers in constant memory are not pointing to reference-counted objects.
1892 if (const LoadInst *LI = dyn_cast<LoadInst>(Op))
1893 if (AA.pointsToConstantMemory(LI->getPointerOperand()))
1894 return false;
1895
1896 // Otherwise assume the worst.
1897 return true;
1898}
1899
John McCall9fbd3182011-06-15 23:37:01 +00001900/// CanAlterRefCount - Test whether the given instruction can result in a
1901/// reference count modification (positive or negative) for the pointer's
1902/// object.
1903static bool
1904CanAlterRefCount(const Instruction *Inst, const Value *Ptr,
1905 ProvenanceAnalysis &PA, InstructionClass Class) {
1906 switch (Class) {
1907 case IC_Autorelease:
1908 case IC_AutoreleaseRV:
1909 case IC_User:
1910 // These operations never directly modify a reference count.
1911 return false;
1912 default: break;
1913 }
1914
1915 ImmutableCallSite CS = static_cast<const Value *>(Inst);
1916 assert(CS && "Only calls can alter reference counts!");
1917
1918 // See if AliasAnalysis can help us with the call.
1919 AliasAnalysis::ModRefBehavior MRB = PA.getAA()->getModRefBehavior(CS);
1920 if (AliasAnalysis::onlyReadsMemory(MRB))
1921 return false;
1922 if (AliasAnalysis::onlyAccessesArgPointees(MRB)) {
1923 for (ImmutableCallSite::arg_iterator I = CS.arg_begin(), E = CS.arg_end();
1924 I != E; ++I) {
1925 const Value *Op = *I;
Dan Gohman230768b2012-09-04 23:16:20 +00001926 if (IsPotentialUse(Op, *PA.getAA()) && PA.related(Ptr, Op))
John McCall9fbd3182011-06-15 23:37:01 +00001927 return true;
1928 }
1929 return false;
1930 }
1931
1932 // Assume the worst.
1933 return true;
1934}
1935
1936/// CanUse - Test whether the given instruction can "use" the given pointer's
1937/// object in a way that requires the reference count to be positive.
1938static bool
1939CanUse(const Instruction *Inst, const Value *Ptr, ProvenanceAnalysis &PA,
1940 InstructionClass Class) {
1941 // IC_Call operations (as opposed to IC_CallOrUser) never "use" objc pointers.
1942 if (Class == IC_Call)
1943 return false;
1944
1945 // Consider various instructions which may have pointer arguments which are
1946 // not "uses".
1947 if (const ICmpInst *ICI = dyn_cast<ICmpInst>(Inst)) {
1948 // Comparing a pointer with null, or any other constant, isn't really a use,
1949 // because we don't care what the pointer points to, or about the values
1950 // of any other dynamic reference-counted pointers.
Dan Gohman230768b2012-09-04 23:16:20 +00001951 if (!IsPotentialUse(ICI->getOperand(1), *PA.getAA()))
John McCall9fbd3182011-06-15 23:37:01 +00001952 return false;
1953 } else if (ImmutableCallSite CS = static_cast<const Value *>(Inst)) {
1954 // For calls, just check the arguments (and not the callee operand).
1955 for (ImmutableCallSite::arg_iterator OI = CS.arg_begin(),
1956 OE = CS.arg_end(); OI != OE; ++OI) {
1957 const Value *Op = *OI;
Dan Gohman230768b2012-09-04 23:16:20 +00001958 if (IsPotentialUse(Op, *PA.getAA()) && PA.related(Ptr, Op))
John McCall9fbd3182011-06-15 23:37:01 +00001959 return true;
1960 }
1961 return false;
1962 } else if (const StoreInst *SI = dyn_cast<StoreInst>(Inst)) {
1963 // Special-case stores, because we don't care about the stored value, just
1964 // the store address.
1965 const Value *Op = GetUnderlyingObjCPtr(SI->getPointerOperand());
1966 // If we can't tell what the underlying object was, assume there is a
1967 // dependence.
Dan Gohman230768b2012-09-04 23:16:20 +00001968 return IsPotentialUse(Op, *PA.getAA()) && PA.related(Op, Ptr);
John McCall9fbd3182011-06-15 23:37:01 +00001969 }
1970
1971 // Check each operand for a match.
1972 for (User::const_op_iterator OI = Inst->op_begin(), OE = Inst->op_end();
1973 OI != OE; ++OI) {
1974 const Value *Op = *OI;
Dan Gohman230768b2012-09-04 23:16:20 +00001975 if (IsPotentialUse(Op, *PA.getAA()) && PA.related(Ptr, Op))
John McCall9fbd3182011-06-15 23:37:01 +00001976 return true;
1977 }
1978 return false;
1979}
1980
1981/// CanInterruptRV - Test whether the given instruction can autorelease
1982/// any pointer or cause an autoreleasepool pop.
1983static bool
1984CanInterruptRV(InstructionClass Class) {
1985 switch (Class) {
1986 case IC_AutoreleasepoolPop:
1987 case IC_CallOrUser:
1988 case IC_Call:
1989 case IC_Autorelease:
1990 case IC_AutoreleaseRV:
1991 case IC_FusedRetainAutorelease:
1992 case IC_FusedRetainAutoreleaseRV:
1993 return true;
1994 default:
1995 return false;
1996 }
1997}
1998
1999namespace {
2000 /// DependenceKind - There are several kinds of dependence-like concepts in
2001 /// use here.
2002 enum DependenceKind {
2003 NeedsPositiveRetainCount,
Dan Gohman511568d2012-04-13 00:59:57 +00002004 AutoreleasePoolBoundary,
John McCall9fbd3182011-06-15 23:37:01 +00002005 CanChangeRetainCount,
2006 RetainAutoreleaseDep, ///< Blocks objc_retainAutorelease.
2007 RetainAutoreleaseRVDep, ///< Blocks objc_retainAutoreleaseReturnValue.
2008 RetainRVDep ///< Blocks objc_retainAutoreleasedReturnValue.
2009 };
2010}
2011
2012/// Depends - Test if there can be dependencies on Inst through Arg. This
2013/// function only tests dependencies relevant for removing pairs of calls.
2014static bool
2015Depends(DependenceKind Flavor, Instruction *Inst, const Value *Arg,
2016 ProvenanceAnalysis &PA) {
2017 // If we've reached the definition of Arg, stop.
2018 if (Inst == Arg)
2019 return true;
2020
2021 switch (Flavor) {
2022 case NeedsPositiveRetainCount: {
2023 InstructionClass Class = GetInstructionClass(Inst);
2024 switch (Class) {
2025 case IC_AutoreleasepoolPop:
2026 case IC_AutoreleasepoolPush:
2027 case IC_None:
2028 return false;
2029 default:
2030 return CanUse(Inst, Arg, PA, Class);
2031 }
2032 }
2033
Dan Gohman511568d2012-04-13 00:59:57 +00002034 case AutoreleasePoolBoundary: {
2035 InstructionClass Class = GetInstructionClass(Inst);
2036 switch (Class) {
2037 case IC_AutoreleasepoolPop:
2038 case IC_AutoreleasepoolPush:
2039 // These mark the end and begin of an autorelease pool scope.
2040 return true;
2041 default:
2042 // Nothing else does this.
2043 return false;
2044 }
2045 }
2046
John McCall9fbd3182011-06-15 23:37:01 +00002047 case CanChangeRetainCount: {
2048 InstructionClass Class = GetInstructionClass(Inst);
2049 switch (Class) {
2050 case IC_AutoreleasepoolPop:
2051 // Conservatively assume this can decrement any count.
2052 return true;
2053 case IC_AutoreleasepoolPush:
2054 case IC_None:
2055 return false;
2056 default:
2057 return CanAlterRefCount(Inst, Arg, PA, Class);
2058 }
2059 }
2060
2061 case RetainAutoreleaseDep:
2062 switch (GetBasicInstructionClass(Inst)) {
2063 case IC_AutoreleasepoolPop:
Dan Gohman511568d2012-04-13 00:59:57 +00002064 case IC_AutoreleasepoolPush:
John McCall9fbd3182011-06-15 23:37:01 +00002065 // Don't merge an objc_autorelease with an objc_retain inside a different
2066 // autoreleasepool scope.
2067 return true;
2068 case IC_Retain:
2069 case IC_RetainRV:
2070 // Check for a retain of the same pointer for merging.
2071 return GetObjCArg(Inst) == Arg;
2072 default:
2073 // Nothing else matters for objc_retainAutorelease formation.
2074 return false;
2075 }
John McCall9fbd3182011-06-15 23:37:01 +00002076
2077 case RetainAutoreleaseRVDep: {
2078 InstructionClass Class = GetBasicInstructionClass(Inst);
2079 switch (Class) {
2080 case IC_Retain:
2081 case IC_RetainRV:
2082 // Check for a retain of the same pointer for merging.
2083 return GetObjCArg(Inst) == Arg;
2084 default:
2085 // Anything that can autorelease interrupts
2086 // retainAutoreleaseReturnValue formation.
2087 return CanInterruptRV(Class);
2088 }
John McCall9fbd3182011-06-15 23:37:01 +00002089 }
2090
2091 case RetainRVDep:
2092 return CanInterruptRV(GetBasicInstructionClass(Inst));
2093 }
2094
2095 llvm_unreachable("Invalid dependence flavor");
John McCall9fbd3182011-06-15 23:37:01 +00002096}
2097
2098/// FindDependencies - Walk up the CFG from StartPos (which is in StartBB) and
2099/// find local and non-local dependencies on Arg.
2100/// TODO: Cache results?
2101static void
2102FindDependencies(DependenceKind Flavor,
2103 const Value *Arg,
2104 BasicBlock *StartBB, Instruction *StartInst,
2105 SmallPtrSet<Instruction *, 4> &DependingInstructions,
2106 SmallPtrSet<const BasicBlock *, 4> &Visited,
2107 ProvenanceAnalysis &PA) {
2108 BasicBlock::iterator StartPos = StartInst;
2109
2110 SmallVector<std::pair<BasicBlock *, BasicBlock::iterator>, 4> Worklist;
2111 Worklist.push_back(std::make_pair(StartBB, StartPos));
2112 do {
2113 std::pair<BasicBlock *, BasicBlock::iterator> Pair =
2114 Worklist.pop_back_val();
2115 BasicBlock *LocalStartBB = Pair.first;
2116 BasicBlock::iterator LocalStartPos = Pair.second;
2117 BasicBlock::iterator StartBBBegin = LocalStartBB->begin();
2118 for (;;) {
2119 if (LocalStartPos == StartBBBegin) {
2120 pred_iterator PI(LocalStartBB), PE(LocalStartBB, false);
2121 if (PI == PE)
2122 // If we've reached the function entry, produce a null dependence.
2123 DependingInstructions.insert(0);
2124 else
2125 // Add the predecessors to the worklist.
2126 do {
2127 BasicBlock *PredBB = *PI;
2128 if (Visited.insert(PredBB))
2129 Worklist.push_back(std::make_pair(PredBB, PredBB->end()));
2130 } while (++PI != PE);
2131 break;
2132 }
2133
2134 Instruction *Inst = --LocalStartPos;
2135 if (Depends(Flavor, Inst, Arg, PA)) {
2136 DependingInstructions.insert(Inst);
2137 break;
2138 }
2139 }
2140 } while (!Worklist.empty());
2141
2142 // Determine whether the original StartBB post-dominates all of the blocks we
2143 // visited. If not, insert a sentinal indicating that most optimizations are
2144 // not safe.
2145 for (SmallPtrSet<const BasicBlock *, 4>::const_iterator I = Visited.begin(),
2146 E = Visited.end(); I != E; ++I) {
2147 const BasicBlock *BB = *I;
2148 if (BB == StartBB)
2149 continue;
2150 const TerminatorInst *TI = cast<TerminatorInst>(&BB->back());
2151 for (succ_const_iterator SI(TI), SE(TI, false); SI != SE; ++SI) {
2152 const BasicBlock *Succ = *SI;
2153 if (Succ != StartBB && !Visited.count(Succ)) {
2154 DependingInstructions.insert(reinterpret_cast<Instruction *>(-1));
2155 return;
2156 }
2157 }
2158 }
2159}
2160
2161static bool isNullOrUndef(const Value *V) {
2162 return isa<ConstantPointerNull>(V) || isa<UndefValue>(V);
2163}
2164
2165static bool isNoopInstruction(const Instruction *I) {
2166 return isa<BitCastInst>(I) ||
2167 (isa<GetElementPtrInst>(I) &&
2168 cast<GetElementPtrInst>(I)->hasAllZeroIndices());
2169}
2170
2171/// OptimizeRetainCall - Turn objc_retain into
2172/// objc_retainAutoreleasedReturnValue if the operand is a return value.
2173void
2174ObjCARCOpt::OptimizeRetainCall(Function &F, Instruction *Retain) {
Dan Gohman447989c2012-04-27 18:56:31 +00002175 ImmutableCallSite CS(GetObjCArg(Retain));
2176 const Instruction *Call = CS.getInstruction();
John McCall9fbd3182011-06-15 23:37:01 +00002177 if (!Call) return;
2178 if (Call->getParent() != Retain->getParent()) return;
2179
2180 // Check that the call is next to the retain.
Dan Gohman447989c2012-04-27 18:56:31 +00002181 BasicBlock::const_iterator I = Call;
John McCall9fbd3182011-06-15 23:37:01 +00002182 ++I;
2183 while (isNoopInstruction(I)) ++I;
2184 if (&*I != Retain)
2185 return;
2186
2187 // Turn it to an objc_retainAutoreleasedReturnValue..
2188 Changed = true;
2189 ++NumPeeps;
2190 cast<CallInst>(Retain)->setCalledFunction(getRetainRVCallee(F.getParent()));
2191}
2192
2193/// OptimizeRetainRVCall - Turn objc_retainAutoreleasedReturnValue into
Dan Gohman447989c2012-04-27 18:56:31 +00002194/// objc_retain if the operand is not a return value. Or, if it can be paired
2195/// with an objc_autoreleaseReturnValue, delete the pair and return true.
John McCall9fbd3182011-06-15 23:37:01 +00002196bool
2197ObjCARCOpt::OptimizeRetainRVCall(Function &F, Instruction *RetainRV) {
Dan Gohman6fedb3c2012-03-23 18:09:00 +00002198 // Check for the argument being from an immediately preceding call or invoke.
Dan Gohman447989c2012-04-27 18:56:31 +00002199 const Value *Arg = GetObjCArg(RetainRV);
2200 ImmutableCallSite CS(Arg);
2201 if (const Instruction *Call = CS.getInstruction()) {
John McCall9fbd3182011-06-15 23:37:01 +00002202 if (Call->getParent() == RetainRV->getParent()) {
Dan Gohman447989c2012-04-27 18:56:31 +00002203 BasicBlock::const_iterator I = Call;
John McCall9fbd3182011-06-15 23:37:01 +00002204 ++I;
2205 while (isNoopInstruction(I)) ++I;
2206 if (&*I == RetainRV)
2207 return false;
Dan Gohman447989c2012-04-27 18:56:31 +00002208 } else if (const InvokeInst *II = dyn_cast<InvokeInst>(Call)) {
Dan Gohman6fedb3c2012-03-23 18:09:00 +00002209 BasicBlock *RetainRVParent = RetainRV->getParent();
2210 if (II->getNormalDest() == RetainRVParent) {
Dan Gohman447989c2012-04-27 18:56:31 +00002211 BasicBlock::const_iterator I = RetainRVParent->begin();
Dan Gohman6fedb3c2012-03-23 18:09:00 +00002212 while (isNoopInstruction(I)) ++I;
2213 if (&*I == RetainRV)
2214 return false;
2215 }
John McCall9fbd3182011-06-15 23:37:01 +00002216 }
Dan Gohman6fedb3c2012-03-23 18:09:00 +00002217 }
John McCall9fbd3182011-06-15 23:37:01 +00002218
2219 // Check for being preceded by an objc_autoreleaseReturnValue on the same
2220 // pointer. In this case, we can delete the pair.
2221 BasicBlock::iterator I = RetainRV, Begin = RetainRV->getParent()->begin();
2222 if (I != Begin) {
2223 do --I; while (I != Begin && isNoopInstruction(I));
2224 if (GetBasicInstructionClass(I) == IC_AutoreleaseRV &&
2225 GetObjCArg(I) == Arg) {
2226 Changed = true;
2227 ++NumPeeps;
2228 EraseInstruction(I);
2229 EraseInstruction(RetainRV);
2230 return true;
2231 }
2232 }
2233
2234 // Turn it to a plain objc_retain.
2235 Changed = true;
2236 ++NumPeeps;
2237 cast<CallInst>(RetainRV)->setCalledFunction(getRetainCallee(F.getParent()));
2238 return false;
2239}
2240
2241/// OptimizeAutoreleaseRVCall - Turn objc_autoreleaseReturnValue into
2242/// objc_autorelease if the result is not used as a return value.
2243void
2244ObjCARCOpt::OptimizeAutoreleaseRVCall(Function &F, Instruction *AutoreleaseRV) {
2245 // Check for a return of the pointer value.
2246 const Value *Ptr = GetObjCArg(AutoreleaseRV);
Dan Gohman126a54f2011-08-12 00:36:31 +00002247 SmallVector<const Value *, 2> Users;
2248 Users.push_back(Ptr);
2249 do {
2250 Ptr = Users.pop_back_val();
2251 for (Value::const_use_iterator UI = Ptr->use_begin(), UE = Ptr->use_end();
2252 UI != UE; ++UI) {
2253 const User *I = *UI;
2254 if (isa<ReturnInst>(I) || GetBasicInstructionClass(I) == IC_RetainRV)
2255 return;
2256 if (isa<BitCastInst>(I))
2257 Users.push_back(I);
2258 }
2259 } while (!Users.empty());
John McCall9fbd3182011-06-15 23:37:01 +00002260
2261 Changed = true;
2262 ++NumPeeps;
2263 cast<CallInst>(AutoreleaseRV)->
2264 setCalledFunction(getAutoreleaseCallee(F.getParent()));
2265}
2266
2267/// OptimizeIndividualCalls - Visit each call, one at a time, and make
2268/// simplifications without doing any additional analysis.
2269void ObjCARCOpt::OptimizeIndividualCalls(Function &F) {
2270 // Reset all the flags in preparation for recomputing them.
2271 UsedInThisFunction = 0;
2272
2273 // Visit all objc_* calls in F.
2274 for (inst_iterator I = inst_begin(&F), E = inst_end(&F); I != E; ) {
2275 Instruction *Inst = &*I++;
2276 InstructionClass Class = GetBasicInstructionClass(Inst);
2277
2278 switch (Class) {
2279 default: break;
2280
2281 // Delete no-op casts. These function calls have special semantics, but
2282 // the semantics are entirely implemented via lowering in the front-end,
2283 // so by the time they reach the optimizer, they are just no-op calls
2284 // which return their argument.
2285 //
2286 // There are gray areas here, as the ability to cast reference-counted
2287 // pointers to raw void* and back allows code to break ARC assumptions,
2288 // however these are currently considered to be unimportant.
2289 case IC_NoopCast:
2290 Changed = true;
2291 ++NumNoops;
2292 EraseInstruction(Inst);
2293 continue;
2294
2295 // If the pointer-to-weak-pointer is null, it's undefined behavior.
2296 case IC_StoreWeak:
2297 case IC_LoadWeak:
2298 case IC_LoadWeakRetained:
2299 case IC_InitWeak:
2300 case IC_DestroyWeak: {
2301 CallInst *CI = cast<CallInst>(Inst);
2302 if (isNullOrUndef(CI->getArgOperand(0))) {
Dan Gohmand6bf2012012-04-13 18:57:48 +00002303 Changed = true;
Chris Lattnerdb125cf2011-07-18 04:54:35 +00002304 Type *Ty = CI->getArgOperand(0)->getType();
John McCall9fbd3182011-06-15 23:37:01 +00002305 new StoreInst(UndefValue::get(cast<PointerType>(Ty)->getElementType()),
2306 Constant::getNullValue(Ty),
2307 CI);
2308 CI->replaceAllUsesWith(UndefValue::get(CI->getType()));
2309 CI->eraseFromParent();
2310 continue;
2311 }
2312 break;
2313 }
2314 case IC_CopyWeak:
2315 case IC_MoveWeak: {
2316 CallInst *CI = cast<CallInst>(Inst);
2317 if (isNullOrUndef(CI->getArgOperand(0)) ||
2318 isNullOrUndef(CI->getArgOperand(1))) {
Dan Gohmand6bf2012012-04-13 18:57:48 +00002319 Changed = true;
Chris Lattnerdb125cf2011-07-18 04:54:35 +00002320 Type *Ty = CI->getArgOperand(0)->getType();
John McCall9fbd3182011-06-15 23:37:01 +00002321 new StoreInst(UndefValue::get(cast<PointerType>(Ty)->getElementType()),
2322 Constant::getNullValue(Ty),
2323 CI);
2324 CI->replaceAllUsesWith(UndefValue::get(CI->getType()));
2325 CI->eraseFromParent();
2326 continue;
2327 }
2328 break;
2329 }
2330 case IC_Retain:
2331 OptimizeRetainCall(F, Inst);
2332 break;
2333 case IC_RetainRV:
2334 if (OptimizeRetainRVCall(F, Inst))
2335 continue;
2336 break;
2337 case IC_AutoreleaseRV:
2338 OptimizeAutoreleaseRVCall(F, Inst);
2339 break;
2340 }
2341
2342 // objc_autorelease(x) -> objc_release(x) if x is otherwise unused.
2343 if (IsAutorelease(Class) && Inst->use_empty()) {
2344 CallInst *Call = cast<CallInst>(Inst);
2345 const Value *Arg = Call->getArgOperand(0);
2346 Arg = FindSingleUseIdentifiedObject(Arg);
2347 if (Arg) {
2348 Changed = true;
2349 ++NumAutoreleases;
2350
2351 // Create the declaration lazily.
2352 LLVMContext &C = Inst->getContext();
2353 CallInst *NewCall =
2354 CallInst::Create(getReleaseCallee(F.getParent()),
2355 Call->getArgOperand(0), "", Call);
2356 NewCall->setMetadata(ImpreciseReleaseMDKind,
2357 MDNode::get(C, ArrayRef<Value *>()));
2358 EraseInstruction(Call);
2359 Inst = NewCall;
2360 Class = IC_Release;
2361 }
2362 }
2363
2364 // For functions which can never be passed stack arguments, add
2365 // a tail keyword.
2366 if (IsAlwaysTail(Class)) {
2367 Changed = true;
2368 cast<CallInst>(Inst)->setTailCall();
2369 }
2370
2371 // Set nounwind as needed.
2372 if (IsNoThrow(Class)) {
2373 Changed = true;
2374 cast<CallInst>(Inst)->setDoesNotThrow();
2375 }
2376
2377 if (!IsNoopOnNull(Class)) {
2378 UsedInThisFunction |= 1 << Class;
2379 continue;
2380 }
2381
2382 const Value *Arg = GetObjCArg(Inst);
2383
2384 // ARC calls with null are no-ops. Delete them.
2385 if (isNullOrUndef(Arg)) {
2386 Changed = true;
2387 ++NumNoops;
2388 EraseInstruction(Inst);
2389 continue;
2390 }
2391
2392 // Keep track of which of retain, release, autorelease, and retain_block
2393 // are actually present in this function.
2394 UsedInThisFunction |= 1 << Class;
2395
2396 // If Arg is a PHI, and one or more incoming values to the
2397 // PHI are null, and the call is control-equivalent to the PHI, and there
2398 // are no relevant side effects between the PHI and the call, the call
2399 // could be pushed up to just those paths with non-null incoming values.
2400 // For now, don't bother splitting critical edges for this.
2401 SmallVector<std::pair<Instruction *, const Value *>, 4> Worklist;
2402 Worklist.push_back(std::make_pair(Inst, Arg));
2403 do {
2404 std::pair<Instruction *, const Value *> Pair = Worklist.pop_back_val();
2405 Inst = Pair.first;
2406 Arg = Pair.second;
2407
2408 const PHINode *PN = dyn_cast<PHINode>(Arg);
2409 if (!PN) continue;
2410
2411 // Determine if the PHI has any null operands, or any incoming
2412 // critical edges.
2413 bool HasNull = false;
2414 bool HasCriticalEdges = false;
2415 for (unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i) {
2416 Value *Incoming =
2417 StripPointerCastsAndObjCCalls(PN->getIncomingValue(i));
2418 if (isNullOrUndef(Incoming))
2419 HasNull = true;
2420 else if (cast<TerminatorInst>(PN->getIncomingBlock(i)->back())
2421 .getNumSuccessors() != 1) {
2422 HasCriticalEdges = true;
2423 break;
2424 }
2425 }
2426 // If we have null operands and no critical edges, optimize.
2427 if (!HasCriticalEdges && HasNull) {
2428 SmallPtrSet<Instruction *, 4> DependingInstructions;
2429 SmallPtrSet<const BasicBlock *, 4> Visited;
2430
2431 // Check that there is nothing that cares about the reference
2432 // count between the call and the phi.
Dan Gohman511568d2012-04-13 00:59:57 +00002433 switch (Class) {
2434 case IC_Retain:
2435 case IC_RetainBlock:
2436 // These can always be moved up.
2437 break;
2438 case IC_Release:
Dan Gohman0daef3d2012-05-08 23:39:44 +00002439 // These can't be moved across things that care about the retain
2440 // count.
Dan Gohman511568d2012-04-13 00:59:57 +00002441 FindDependencies(NeedsPositiveRetainCount, Arg,
2442 Inst->getParent(), Inst,
2443 DependingInstructions, Visited, PA);
2444 break;
2445 case IC_Autorelease:
2446 // These can't be moved across autorelease pool scope boundaries.
2447 FindDependencies(AutoreleasePoolBoundary, Arg,
2448 Inst->getParent(), Inst,
2449 DependingInstructions, Visited, PA);
2450 break;
2451 case IC_RetainRV:
2452 case IC_AutoreleaseRV:
2453 // Don't move these; the RV optimization depends on the autoreleaseRV
2454 // being tail called, and the retainRV being immediately after a call
2455 // (which might still happen if we get lucky with codegen layout, but
2456 // it's not worth taking the chance).
2457 continue;
2458 default:
2459 llvm_unreachable("Invalid dependence flavor");
2460 }
2461
John McCall9fbd3182011-06-15 23:37:01 +00002462 if (DependingInstructions.size() == 1 &&
2463 *DependingInstructions.begin() == PN) {
2464 Changed = true;
2465 ++NumPartialNoops;
2466 // Clone the call into each predecessor that has a non-null value.
2467 CallInst *CInst = cast<CallInst>(Inst);
Chris Lattnerdb125cf2011-07-18 04:54:35 +00002468 Type *ParamTy = CInst->getArgOperand(0)->getType();
John McCall9fbd3182011-06-15 23:37:01 +00002469 for (unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i) {
2470 Value *Incoming =
2471 StripPointerCastsAndObjCCalls(PN->getIncomingValue(i));
2472 if (!isNullOrUndef(Incoming)) {
2473 CallInst *Clone = cast<CallInst>(CInst->clone());
2474 Value *Op = PN->getIncomingValue(i);
2475 Instruction *InsertPos = &PN->getIncomingBlock(i)->back();
2476 if (Op->getType() != ParamTy)
2477 Op = new BitCastInst(Op, ParamTy, "", InsertPos);
2478 Clone->setArgOperand(0, Op);
2479 Clone->insertBefore(InsertPos);
2480 Worklist.push_back(std::make_pair(Clone, Incoming));
2481 }
2482 }
2483 // Erase the original call.
2484 EraseInstruction(CInst);
2485 continue;
2486 }
2487 }
2488 } while (!Worklist.empty());
2489 }
2490}
2491
2492/// CheckForCFGHazards - Check for critical edges, loop boundaries, irreducible
2493/// control flow, or other CFG structures where moving code across the edge
2494/// would result in it being executed more.
2495void
2496ObjCARCOpt::CheckForCFGHazards(const BasicBlock *BB,
2497 DenseMap<const BasicBlock *, BBState> &BBStates,
2498 BBState &MyStates) const {
2499 // If any top-down local-use or possible-dec has a succ which is earlier in
2500 // the sequence, forget it.
Dan Gohman22cc4cc2012-03-02 01:13:53 +00002501 for (BBState::ptr_iterator I = MyStates.top_down_ptr_begin(),
John McCall9fbd3182011-06-15 23:37:01 +00002502 E = MyStates.top_down_ptr_end(); I != E; ++I)
2503 switch (I->second.GetSeq()) {
2504 default: break;
2505 case S_Use: {
2506 const Value *Arg = I->first;
2507 const TerminatorInst *TI = cast<TerminatorInst>(&BB->back());
2508 bool SomeSuccHasSame = false;
2509 bool AllSuccsHaveSame = true;
Dan Gohman22cc4cc2012-03-02 01:13:53 +00002510 PtrState &S = I->second;
Dan Gohmandbe266b2012-02-17 18:59:53 +00002511 succ_const_iterator SI(TI), SE(TI, false);
2512
2513 // If the terminator is an invoke marked with the
2514 // clang.arc.no_objc_arc_exceptions metadata, the unwind edge can be
2515 // ignored, for ARC purposes.
2516 if (isa<InvokeInst>(TI) && TI->getMetadata(NoObjCARCExceptionsMDKind))
2517 --SE;
2518
2519 for (; SI != SE; ++SI) {
Dan Gohman70e29682012-03-02 01:26:46 +00002520 Sequence SuccSSeq = S_None;
2521 bool SuccSRRIKnownSafe = false;
Dan Gohman0daef3d2012-05-08 23:39:44 +00002522 // If VisitBottomUp has pointer information for this successor, take
2523 // what we know about it.
Dan Gohman447989c2012-04-27 18:56:31 +00002524 DenseMap<const BasicBlock *, BBState>::iterator BBI =
2525 BBStates.find(*SI);
2526 assert(BBI != BBStates.end());
2527 const PtrState &SuccS = BBI->second.getPtrBottomUpState(Arg);
2528 SuccSSeq = SuccS.GetSeq();
2529 SuccSRRIKnownSafe = SuccS.RRI.KnownSafe;
Dan Gohman70e29682012-03-02 01:26:46 +00002530 switch (SuccSSeq) {
John McCall9fbd3182011-06-15 23:37:01 +00002531 case S_None:
Dan Gohmana7f7db22011-08-12 00:26:31 +00002532 case S_CanRelease: {
Dan Gohman70e29682012-03-02 01:26:46 +00002533 if (!S.RRI.KnownSafe && !SuccSRRIKnownSafe) {
Dan Gohmana7f7db22011-08-12 00:26:31 +00002534 S.ClearSequenceProgress();
Dan Gohman70e29682012-03-02 01:26:46 +00002535 break;
2536 }
Dan Gohmana7f7db22011-08-12 00:26:31 +00002537 continue;
2538 }
John McCall9fbd3182011-06-15 23:37:01 +00002539 case S_Use:
2540 SomeSuccHasSame = true;
2541 break;
2542 case S_Stop:
2543 case S_Release:
2544 case S_MovableRelease:
Dan Gohman70e29682012-03-02 01:26:46 +00002545 if (!S.RRI.KnownSafe && !SuccSRRIKnownSafe)
Dan Gohmana7f7db22011-08-12 00:26:31 +00002546 AllSuccsHaveSame = false;
John McCall9fbd3182011-06-15 23:37:01 +00002547 break;
2548 case S_Retain:
2549 llvm_unreachable("bottom-up pointer in retain state!");
2550 }
Dan Gohmana7f7db22011-08-12 00:26:31 +00002551 }
John McCall9fbd3182011-06-15 23:37:01 +00002552 // If the state at the other end of any of the successor edges
2553 // matches the current state, require all edges to match. This
2554 // guards against loops in the middle of a sequence.
2555 if (SomeSuccHasSame && !AllSuccsHaveSame)
Dan Gohmana7f7db22011-08-12 00:26:31 +00002556 S.ClearSequenceProgress();
Dan Gohman2e68beb2011-12-12 18:13:53 +00002557 break;
John McCall9fbd3182011-06-15 23:37:01 +00002558 }
2559 case S_CanRelease: {
2560 const Value *Arg = I->first;
2561 const TerminatorInst *TI = cast<TerminatorInst>(&BB->back());
2562 bool SomeSuccHasSame = false;
2563 bool AllSuccsHaveSame = true;
Dan Gohman22cc4cc2012-03-02 01:13:53 +00002564 PtrState &S = I->second;
Dan Gohmandbe266b2012-02-17 18:59:53 +00002565 succ_const_iterator SI(TI), SE(TI, false);
2566
2567 // If the terminator is an invoke marked with the
2568 // clang.arc.no_objc_arc_exceptions metadata, the unwind edge can be
2569 // ignored, for ARC purposes.
2570 if (isa<InvokeInst>(TI) && TI->getMetadata(NoObjCARCExceptionsMDKind))
2571 --SE;
2572
2573 for (; SI != SE; ++SI) {
Dan Gohman70e29682012-03-02 01:26:46 +00002574 Sequence SuccSSeq = S_None;
2575 bool SuccSRRIKnownSafe = false;
Dan Gohman0daef3d2012-05-08 23:39:44 +00002576 // If VisitBottomUp has pointer information for this successor, take
2577 // what we know about it.
Dan Gohman447989c2012-04-27 18:56:31 +00002578 DenseMap<const BasicBlock *, BBState>::iterator BBI =
2579 BBStates.find(*SI);
2580 assert(BBI != BBStates.end());
2581 const PtrState &SuccS = BBI->second.getPtrBottomUpState(Arg);
2582 SuccSSeq = SuccS.GetSeq();
2583 SuccSRRIKnownSafe = SuccS.RRI.KnownSafe;
Dan Gohman70e29682012-03-02 01:26:46 +00002584 switch (SuccSSeq) {
Dan Gohmana7f7db22011-08-12 00:26:31 +00002585 case S_None: {
Dan Gohman70e29682012-03-02 01:26:46 +00002586 if (!S.RRI.KnownSafe && !SuccSRRIKnownSafe) {
Dan Gohmana7f7db22011-08-12 00:26:31 +00002587 S.ClearSequenceProgress();
Dan Gohman70e29682012-03-02 01:26:46 +00002588 break;
2589 }
Dan Gohmana7f7db22011-08-12 00:26:31 +00002590 continue;
2591 }
John McCall9fbd3182011-06-15 23:37:01 +00002592 case S_CanRelease:
2593 SomeSuccHasSame = true;
2594 break;
2595 case S_Stop:
2596 case S_Release:
2597 case S_MovableRelease:
2598 case S_Use:
Dan Gohman70e29682012-03-02 01:26:46 +00002599 if (!S.RRI.KnownSafe && !SuccSRRIKnownSafe)
Dan Gohmana7f7db22011-08-12 00:26:31 +00002600 AllSuccsHaveSame = false;
John McCall9fbd3182011-06-15 23:37:01 +00002601 break;
2602 case S_Retain:
2603 llvm_unreachable("bottom-up pointer in retain state!");
2604 }
Dan Gohmana7f7db22011-08-12 00:26:31 +00002605 }
John McCall9fbd3182011-06-15 23:37:01 +00002606 // If the state at the other end of any of the successor edges
2607 // matches the current state, require all edges to match. This
2608 // guards against loops in the middle of a sequence.
2609 if (SomeSuccHasSame && !AllSuccsHaveSame)
Dan Gohmana7f7db22011-08-12 00:26:31 +00002610 S.ClearSequenceProgress();
Dan Gohman2e68beb2011-12-12 18:13:53 +00002611 break;
John McCall9fbd3182011-06-15 23:37:01 +00002612 }
2613 }
2614}
2615
2616bool
Dan Gohmanc7f5c6e2012-03-22 18:24:56 +00002617ObjCARCOpt::VisitInstructionBottomUp(Instruction *Inst,
Dan Gohmanfbab4a82012-03-23 17:47:54 +00002618 BasicBlock *BB,
Dan Gohmanc7f5c6e2012-03-22 18:24:56 +00002619 MapVector<Value *, RRInfo> &Retains,
2620 BBState &MyStates) {
2621 bool NestingDetected = false;
2622 InstructionClass Class = GetInstructionClass(Inst);
2623 const Value *Arg = 0;
2624
2625 switch (Class) {
2626 case IC_Release: {
2627 Arg = GetObjCArg(Inst);
2628
2629 PtrState &S = MyStates.getPtrBottomUpState(Arg);
2630
2631 // If we see two releases in a row on the same pointer. If so, make
2632 // a note, and we'll cicle back to revisit it after we've
2633 // hopefully eliminated the second release, which may allow us to
2634 // eliminate the first release too.
2635 // Theoretically we could implement removal of nested retain+release
2636 // pairs by making PtrState hold a stack of states, but this is
2637 // simple and avoids adding overhead for the non-nested case.
2638 if (S.GetSeq() == S_Release || S.GetSeq() == S_MovableRelease)
2639 NestingDetected = true;
2640
Dan Gohmanc7f5c6e2012-03-22 18:24:56 +00002641 MDNode *ReleaseMetadata = Inst->getMetadata(ImpreciseReleaseMDKind);
Dan Gohman50ade652012-04-25 00:50:46 +00002642 S.ResetSequenceProgress(ReleaseMetadata ? S_MovableRelease : S_Release);
Dan Gohmanc7f5c6e2012-03-22 18:24:56 +00002643 S.RRI.ReleaseMetadata = ReleaseMetadata;
Dan Gohman230768b2012-09-04 23:16:20 +00002644 S.RRI.KnownSafe = S.IsKnownIncremented();
Dan Gohmanc7f5c6e2012-03-22 18:24:56 +00002645 S.RRI.IsTailCallRelease = cast<CallInst>(Inst)->isTailCall();
2646 S.RRI.Calls.insert(Inst);
2647
Dan Gohman230768b2012-09-04 23:16:20 +00002648 S.SetKnownPositiveRefCount();
Dan Gohmanc7f5c6e2012-03-22 18:24:56 +00002649 break;
2650 }
2651 case IC_RetainBlock:
2652 // An objc_retainBlock call with just a use may need to be kept,
2653 // because it may be copying a block from the stack to the heap.
2654 if (!IsRetainBlockOptimizable(Inst))
2655 break;
2656 // FALLTHROUGH
2657 case IC_Retain:
2658 case IC_RetainRV: {
2659 Arg = GetObjCArg(Inst);
2660
2661 PtrState &S = MyStates.getPtrBottomUpState(Arg);
Dan Gohman50ade652012-04-25 00:50:46 +00002662 S.SetKnownPositiveRefCount();
Dan Gohmanc7f5c6e2012-03-22 18:24:56 +00002663
2664 switch (S.GetSeq()) {
2665 case S_Stop:
2666 case S_Release:
2667 case S_MovableRelease:
2668 case S_Use:
2669 S.RRI.ReverseInsertPts.clear();
2670 // FALL THROUGH
2671 case S_CanRelease:
2672 // Don't do retain+release tracking for IC_RetainRV, because it's
2673 // better to let it remain as the first instruction after a call.
2674 if (Class != IC_RetainRV) {
2675 S.RRI.IsRetainBlock = Class == IC_RetainBlock;
2676 Retains[Inst] = S.RRI;
2677 }
2678 S.ClearSequenceProgress();
2679 break;
2680 case S_None:
2681 break;
2682 case S_Retain:
2683 llvm_unreachable("bottom-up pointer in retain state!");
2684 }
2685 return NestingDetected;
2686 }
2687 case IC_AutoreleasepoolPop:
2688 // Conservatively, clear MyStates for all known pointers.
2689 MyStates.clearBottomUpPointers();
2690 return NestingDetected;
2691 case IC_AutoreleasepoolPush:
2692 case IC_None:
2693 // These are irrelevant.
2694 return NestingDetected;
2695 default:
2696 break;
2697 }
2698
2699 // Consider any other possible effects of this instruction on each
2700 // pointer being tracked.
2701 for (BBState::ptr_iterator MI = MyStates.bottom_up_ptr_begin(),
2702 ME = MyStates.bottom_up_ptr_end(); MI != ME; ++MI) {
2703 const Value *Ptr = MI->first;
2704 if (Ptr == Arg)
2705 continue; // Handled above.
2706 PtrState &S = MI->second;
2707 Sequence Seq = S.GetSeq();
2708
2709 // Check for possible releases.
2710 if (CanAlterRefCount(Inst, Ptr, PA, Class)) {
Dan Gohman50ade652012-04-25 00:50:46 +00002711 S.ClearRefCount();
Dan Gohmanc7f5c6e2012-03-22 18:24:56 +00002712 switch (Seq) {
2713 case S_Use:
2714 S.SetSeq(S_CanRelease);
2715 continue;
2716 case S_CanRelease:
2717 case S_Release:
2718 case S_MovableRelease:
2719 case S_Stop:
2720 case S_None:
2721 break;
2722 case S_Retain:
2723 llvm_unreachable("bottom-up pointer in retain state!");
2724 }
2725 }
2726
2727 // Check for possible direct uses.
2728 switch (Seq) {
2729 case S_Release:
2730 case S_MovableRelease:
2731 if (CanUse(Inst, Ptr, PA, Class)) {
2732 assert(S.RRI.ReverseInsertPts.empty());
Dan Gohmanfbab4a82012-03-23 17:47:54 +00002733 // If this is an invoke instruction, we're scanning it as part of
2734 // one of its successor blocks, since we can't insert code after it
2735 // in its own block, and we don't want to split critical edges.
2736 if (isa<InvokeInst>(Inst))
2737 S.RRI.ReverseInsertPts.insert(BB->getFirstInsertionPt());
2738 else
Francois Pichetb54a5ed2012-03-24 01:36:37 +00002739 S.RRI.ReverseInsertPts.insert(llvm::next(BasicBlock::iterator(Inst)));
Dan Gohmanc7f5c6e2012-03-22 18:24:56 +00002740 S.SetSeq(S_Use);
2741 } else if (Seq == S_Release &&
2742 (Class == IC_User || Class == IC_CallOrUser)) {
2743 // Non-movable releases depend on any possible objc pointer use.
2744 S.SetSeq(S_Stop);
2745 assert(S.RRI.ReverseInsertPts.empty());
Dan Gohmanfbab4a82012-03-23 17:47:54 +00002746 // As above; handle invoke specially.
2747 if (isa<InvokeInst>(Inst))
2748 S.RRI.ReverseInsertPts.insert(BB->getFirstInsertionPt());
2749 else
Francois Pichetb54a5ed2012-03-24 01:36:37 +00002750 S.RRI.ReverseInsertPts.insert(llvm::next(BasicBlock::iterator(Inst)));
Dan Gohmanc7f5c6e2012-03-22 18:24:56 +00002751 }
2752 break;
2753 case S_Stop:
2754 if (CanUse(Inst, Ptr, PA, Class))
2755 S.SetSeq(S_Use);
2756 break;
2757 case S_CanRelease:
2758 case S_Use:
2759 case S_None:
2760 break;
2761 case S_Retain:
2762 llvm_unreachable("bottom-up pointer in retain state!");
2763 }
2764 }
2765
2766 return NestingDetected;
2767}
2768
2769bool
John McCall9fbd3182011-06-15 23:37:01 +00002770ObjCARCOpt::VisitBottomUp(BasicBlock *BB,
2771 DenseMap<const BasicBlock *, BBState> &BBStates,
2772 MapVector<Value *, RRInfo> &Retains) {
2773 bool NestingDetected = false;
2774 BBState &MyStates = BBStates[BB];
2775
2776 // Merge the states from each successor to compute the initial state
2777 // for the current block.
Dan Gohman40e46602012-08-27 18:31:36 +00002778 BBState::edge_iterator SI(MyStates.succ_begin()),
2779 SE(MyStates.succ_end());
2780 if (SI != SE) {
Dan Gohmaneeeb7752012-04-24 22:53:18 +00002781 const BasicBlock *Succ = *SI;
2782 DenseMap<const BasicBlock *, BBState>::iterator I = BBStates.find(Succ);
2783 assert(I != BBStates.end());
2784 MyStates.InitFromSucc(I->second);
2785 ++SI;
2786 for (; SI != SE; ++SI) {
2787 Succ = *SI;
2788 I = BBStates.find(Succ);
2789 assert(I != BBStates.end());
2790 MyStates.MergeSucc(I->second);
2791 }
Dan Gohmandbe266b2012-02-17 18:59:53 +00002792 }
John McCall9fbd3182011-06-15 23:37:01 +00002793
2794 // Visit all the instructions, bottom-up.
2795 for (BasicBlock::iterator I = BB->end(), E = BB->begin(); I != E; --I) {
2796 Instruction *Inst = llvm::prior(I);
Dan Gohmanfbab4a82012-03-23 17:47:54 +00002797
2798 // Invoke instructions are visited as part of their successors (below).
2799 if (isa<InvokeInst>(Inst))
2800 continue;
2801
2802 NestingDetected |= VisitInstructionBottomUp(Inst, BB, Retains, MyStates);
2803 }
2804
Dan Gohman447989c2012-04-27 18:56:31 +00002805 // If there's a predecessor with an invoke, visit the invoke as if it were
2806 // part of this block, since we can't insert code after an invoke in its own
2807 // block, and we don't want to split critical edges.
Dan Gohmaneeeb7752012-04-24 22:53:18 +00002808 for (BBState::edge_iterator PI(MyStates.pred_begin()),
2809 PE(MyStates.pred_end()); PI != PE; ++PI) {
Dan Gohmanfbab4a82012-03-23 17:47:54 +00002810 BasicBlock *Pred = *PI;
Dan Gohman447989c2012-04-27 18:56:31 +00002811 if (InvokeInst *II = dyn_cast<InvokeInst>(&Pred->back()))
2812 NestingDetected |= VisitInstructionBottomUp(II, BB, Retains, MyStates);
Dan Gohmanc7f5c6e2012-03-22 18:24:56 +00002813 }
John McCall9fbd3182011-06-15 23:37:01 +00002814
Dan Gohmanc7f5c6e2012-03-22 18:24:56 +00002815 return NestingDetected;
2816}
John McCall9fbd3182011-06-15 23:37:01 +00002817
Dan Gohmanc7f5c6e2012-03-22 18:24:56 +00002818bool
2819ObjCARCOpt::VisitInstructionTopDown(Instruction *Inst,
2820 DenseMap<Value *, RRInfo> &Releases,
2821 BBState &MyStates) {
2822 bool NestingDetected = false;
2823 InstructionClass Class = GetInstructionClass(Inst);
2824 const Value *Arg = 0;
John McCall9fbd3182011-06-15 23:37:01 +00002825
Dan Gohmanc7f5c6e2012-03-22 18:24:56 +00002826 switch (Class) {
2827 case IC_RetainBlock:
2828 // An objc_retainBlock call with just a use may need to be kept,
2829 // because it may be copying a block from the stack to the heap.
2830 if (!IsRetainBlockOptimizable(Inst))
2831 break;
2832 // FALLTHROUGH
2833 case IC_Retain:
2834 case IC_RetainRV: {
2835 Arg = GetObjCArg(Inst);
2836
2837 PtrState &S = MyStates.getPtrTopDownState(Arg);
2838
2839 // Don't do retain+release tracking for IC_RetainRV, because it's
2840 // better to let it remain as the first instruction after a call.
2841 if (Class != IC_RetainRV) {
2842 // If we see two retains in a row on the same pointer. If so, make
John McCall9fbd3182011-06-15 23:37:01 +00002843 // a note, and we'll cicle back to revisit it after we've
Dan Gohmanc7f5c6e2012-03-22 18:24:56 +00002844 // hopefully eliminated the second retain, which may allow us to
2845 // eliminate the first retain too.
John McCall9fbd3182011-06-15 23:37:01 +00002846 // Theoretically we could implement removal of nested retain+release
2847 // pairs by making PtrState hold a stack of states, but this is
2848 // simple and avoids adding overhead for the non-nested case.
Dan Gohmanc7f5c6e2012-03-22 18:24:56 +00002849 if (S.GetSeq() == S_Retain)
John McCall9fbd3182011-06-15 23:37:01 +00002850 NestingDetected = true;
2851
Dan Gohman50ade652012-04-25 00:50:46 +00002852 S.ResetSequenceProgress(S_Retain);
Dan Gohmanc7f5c6e2012-03-22 18:24:56 +00002853 S.RRI.IsRetainBlock = Class == IC_RetainBlock;
Dan Gohman230768b2012-09-04 23:16:20 +00002854 S.RRI.KnownSafe = S.IsKnownIncremented();
John McCall9fbd3182011-06-15 23:37:01 +00002855 S.RRI.Calls.insert(Inst);
John McCall9fbd3182011-06-15 23:37:01 +00002856 }
John McCall9fbd3182011-06-15 23:37:01 +00002857
Dan Gohman230768b2012-09-04 23:16:20 +00002858 S.SetKnownPositiveRefCount();
Dan Gohmanc72d3be2012-07-23 19:27:31 +00002859
2860 // A retain can be a potential use; procede to the generic checking
2861 // code below.
2862 break;
Dan Gohmanc7f5c6e2012-03-22 18:24:56 +00002863 }
2864 case IC_Release: {
2865 Arg = GetObjCArg(Inst);
2866
2867 PtrState &S = MyStates.getPtrTopDownState(Arg);
Dan Gohman230768b2012-09-04 23:16:20 +00002868 S.ClearRefCount();
Dan Gohmanc7f5c6e2012-03-22 18:24:56 +00002869
2870 switch (S.GetSeq()) {
2871 case S_Retain:
2872 case S_CanRelease:
2873 S.RRI.ReverseInsertPts.clear();
2874 // FALL THROUGH
2875 case S_Use:
2876 S.RRI.ReleaseMetadata = Inst->getMetadata(ImpreciseReleaseMDKind);
2877 S.RRI.IsTailCallRelease = cast<CallInst>(Inst)->isTailCall();
2878 Releases[Inst] = S.RRI;
2879 S.ClearSequenceProgress();
2880 break;
2881 case S_None:
2882 break;
2883 case S_Stop:
2884 case S_Release:
2885 case S_MovableRelease:
2886 llvm_unreachable("top-down pointer in release state!");
2887 }
2888 break;
2889 }
2890 case IC_AutoreleasepoolPop:
2891 // Conservatively, clear MyStates for all known pointers.
2892 MyStates.clearTopDownPointers();
2893 return NestingDetected;
2894 case IC_AutoreleasepoolPush:
2895 case IC_None:
2896 // These are irrelevant.
2897 return NestingDetected;
2898 default:
2899 break;
2900 }
2901
2902 // Consider any other possible effects of this instruction on each
2903 // pointer being tracked.
2904 for (BBState::ptr_iterator MI = MyStates.top_down_ptr_begin(),
2905 ME = MyStates.top_down_ptr_end(); MI != ME; ++MI) {
2906 const Value *Ptr = MI->first;
2907 if (Ptr == Arg)
2908 continue; // Handled above.
2909 PtrState &S = MI->second;
2910 Sequence Seq = S.GetSeq();
2911
2912 // Check for possible releases.
2913 if (CanAlterRefCount(Inst, Ptr, PA, Class)) {
Dan Gohman50ade652012-04-25 00:50:46 +00002914 S.ClearRefCount();
John McCall9fbd3182011-06-15 23:37:01 +00002915 switch (Seq) {
Dan Gohmanc7f5c6e2012-03-22 18:24:56 +00002916 case S_Retain:
2917 S.SetSeq(S_CanRelease);
2918 assert(S.RRI.ReverseInsertPts.empty());
2919 S.RRI.ReverseInsertPts.insert(Inst);
2920
2921 // One call can't cause a transition from S_Retain to S_CanRelease
2922 // and S_CanRelease to S_Use. If we've made the first transition,
2923 // we're done.
2924 continue;
John McCall9fbd3182011-06-15 23:37:01 +00002925 case S_Use:
Dan Gohmanc7f5c6e2012-03-22 18:24:56 +00002926 case S_CanRelease:
John McCall9fbd3182011-06-15 23:37:01 +00002927 case S_None:
2928 break;
Dan Gohmanc7f5c6e2012-03-22 18:24:56 +00002929 case S_Stop:
2930 case S_Release:
2931 case S_MovableRelease:
2932 llvm_unreachable("top-down pointer in release state!");
John McCall9fbd3182011-06-15 23:37:01 +00002933 }
2934 }
Dan Gohmanc7f5c6e2012-03-22 18:24:56 +00002935
2936 // Check for possible direct uses.
2937 switch (Seq) {
2938 case S_CanRelease:
2939 if (CanUse(Inst, Ptr, PA, Class))
2940 S.SetSeq(S_Use);
2941 break;
2942 case S_Retain:
2943 case S_Use:
2944 case S_None:
2945 break;
2946 case S_Stop:
2947 case S_Release:
2948 case S_MovableRelease:
2949 llvm_unreachable("top-down pointer in release state!");
2950 }
John McCall9fbd3182011-06-15 23:37:01 +00002951 }
2952
2953 return NestingDetected;
2954}
2955
2956bool
2957ObjCARCOpt::VisitTopDown(BasicBlock *BB,
2958 DenseMap<const BasicBlock *, BBState> &BBStates,
2959 DenseMap<Value *, RRInfo> &Releases) {
2960 bool NestingDetected = false;
2961 BBState &MyStates = BBStates[BB];
2962
2963 // Merge the states from each predecessor to compute the initial state
2964 // for the current block.
Dan Gohman40e46602012-08-27 18:31:36 +00002965 BBState::edge_iterator PI(MyStates.pred_begin()),
2966 PE(MyStates.pred_end());
2967 if (PI != PE) {
Dan Gohmaneeeb7752012-04-24 22:53:18 +00002968 const BasicBlock *Pred = *PI;
2969 DenseMap<const BasicBlock *, BBState>::iterator I = BBStates.find(Pred);
2970 assert(I != BBStates.end());
2971 MyStates.InitFromPred(I->second);
2972 ++PI;
2973 for (; PI != PE; ++PI) {
2974 Pred = *PI;
2975 I = BBStates.find(Pred);
2976 assert(I != BBStates.end());
2977 MyStates.MergePred(I->second);
2978 }
Dan Gohmaneeeb7752012-04-24 22:53:18 +00002979 }
John McCall9fbd3182011-06-15 23:37:01 +00002980
2981 // Visit all the instructions, top-down.
2982 for (BasicBlock::iterator I = BB->begin(), E = BB->end(); I != E; ++I) {
2983 Instruction *Inst = I;
Dan Gohmanc7f5c6e2012-03-22 18:24:56 +00002984 NestingDetected |= VisitInstructionTopDown(Inst, Releases, MyStates);
John McCall9fbd3182011-06-15 23:37:01 +00002985 }
2986
2987 CheckForCFGHazards(BB, BBStates, MyStates);
2988 return NestingDetected;
2989}
2990
Dan Gohman59a1c932011-12-12 19:42:25 +00002991static void
2992ComputePostOrders(Function &F,
2993 SmallVectorImpl<BasicBlock *> &PostOrder,
Dan Gohmaneeeb7752012-04-24 22:53:18 +00002994 SmallVectorImpl<BasicBlock *> &ReverseCFGPostOrder,
2995 unsigned NoObjCARCExceptionsMDKind,
2996 DenseMap<const BasicBlock *, BBState> &BBStates) {
Dan Gohman59a1c932011-12-12 19:42:25 +00002997 /// Visited - The visited set, for doing DFS walks.
2998 SmallPtrSet<BasicBlock *, 16> Visited;
2999
3000 // Do DFS, computing the PostOrder.
3001 SmallPtrSet<BasicBlock *, 16> OnStack;
3002 SmallVector<std::pair<BasicBlock *, succ_iterator>, 16> SuccStack;
Dan Gohmaneeeb7752012-04-24 22:53:18 +00003003
3004 // Functions always have exactly one entry block, and we don't have
3005 // any other block that we treat like an entry block.
Dan Gohman59a1c932011-12-12 19:42:25 +00003006 BasicBlock *EntryBB = &F.getEntryBlock();
Dan Gohman0daef3d2012-05-08 23:39:44 +00003007 BBState &MyStates = BBStates[EntryBB];
3008 MyStates.SetAsEntry();
3009 TerminatorInst *EntryTI = cast<TerminatorInst>(&EntryBB->back());
3010 SuccStack.push_back(std::make_pair(EntryBB, succ_iterator(EntryTI)));
Dan Gohman59a1c932011-12-12 19:42:25 +00003011 Visited.insert(EntryBB);
3012 OnStack.insert(EntryBB);
3013 do {
3014 dfs_next_succ:
Dan Gohmaneeeb7752012-04-24 22:53:18 +00003015 BasicBlock *CurrBB = SuccStack.back().first;
3016 TerminatorInst *TI = cast<TerminatorInst>(&CurrBB->back());
3017 succ_iterator SE(TI, false);
Dan Gohman0daef3d2012-05-08 23:39:44 +00003018
Dan Gohmaneeeb7752012-04-24 22:53:18 +00003019 // If the terminator is an invoke marked with the
3020 // clang.arc.no_objc_arc_exceptions metadata, the unwind edge can be
3021 // ignored, for ARC purposes.
3022 if (isa<InvokeInst>(TI) && TI->getMetadata(NoObjCARCExceptionsMDKind))
3023 --SE;
3024
3025 while (SuccStack.back().second != SE) {
3026 BasicBlock *SuccBB = *SuccStack.back().second++;
3027 if (Visited.insert(SuccBB)) {
Dan Gohman0daef3d2012-05-08 23:39:44 +00003028 TerminatorInst *TI = cast<TerminatorInst>(&SuccBB->back());
3029 SuccStack.push_back(std::make_pair(SuccBB, succ_iterator(TI)));
Dan Gohmaneeeb7752012-04-24 22:53:18 +00003030 BBStates[CurrBB].addSucc(SuccBB);
Dan Gohman0daef3d2012-05-08 23:39:44 +00003031 BBState &SuccStates = BBStates[SuccBB];
3032 SuccStates.addPred(CurrBB);
Dan Gohmaneeeb7752012-04-24 22:53:18 +00003033 OnStack.insert(SuccBB);
Dan Gohman59a1c932011-12-12 19:42:25 +00003034 goto dfs_next_succ;
3035 }
Dan Gohmaneeeb7752012-04-24 22:53:18 +00003036
3037 if (!OnStack.count(SuccBB)) {
3038 BBStates[CurrBB].addSucc(SuccBB);
3039 BBStates[SuccBB].addPred(CurrBB);
3040 }
Dan Gohman59a1c932011-12-12 19:42:25 +00003041 }
Dan Gohmaneeeb7752012-04-24 22:53:18 +00003042 OnStack.erase(CurrBB);
3043 PostOrder.push_back(CurrBB);
3044 SuccStack.pop_back();
Dan Gohman59a1c932011-12-12 19:42:25 +00003045 } while (!SuccStack.empty());
3046
3047 Visited.clear();
3048
Dan Gohman59a1c932011-12-12 19:42:25 +00003049 // Do reverse-CFG DFS, computing the reverse-CFG PostOrder.
Dan Gohmaneeeb7752012-04-24 22:53:18 +00003050 // Functions may have many exits, and there also blocks which we treat
3051 // as exits due to ignored edges.
3052 SmallVector<std::pair<BasicBlock *, BBState::edge_iterator>, 16> PredStack;
3053 for (Function::iterator I = F.begin(), E = F.end(); I != E; ++I) {
3054 BasicBlock *ExitBB = I;
3055 BBState &MyStates = BBStates[ExitBB];
3056 if (!MyStates.isExit())
3057 continue;
3058
Dan Gohman447989c2012-04-27 18:56:31 +00003059 MyStates.SetAsExit();
Dan Gohmaneeeb7752012-04-24 22:53:18 +00003060
3061 PredStack.push_back(std::make_pair(ExitBB, MyStates.pred_begin()));
Dan Gohman59a1c932011-12-12 19:42:25 +00003062 Visited.insert(ExitBB);
3063 while (!PredStack.empty()) {
3064 reverse_dfs_next_succ:
Dan Gohmaneeeb7752012-04-24 22:53:18 +00003065 BBState::edge_iterator PE = BBStates[PredStack.back().first].pred_end();
3066 while (PredStack.back().second != PE) {
Dan Gohman59a1c932011-12-12 19:42:25 +00003067 BasicBlock *BB = *PredStack.back().second++;
Dan Gohman59a1c932011-12-12 19:42:25 +00003068 if (Visited.insert(BB)) {
Dan Gohmaneeeb7752012-04-24 22:53:18 +00003069 PredStack.push_back(std::make_pair(BB, BBStates[BB].pred_begin()));
Dan Gohman59a1c932011-12-12 19:42:25 +00003070 goto reverse_dfs_next_succ;
3071 }
3072 }
3073 ReverseCFGPostOrder.push_back(PredStack.pop_back_val().first);
3074 }
3075 }
3076}
3077
John McCall9fbd3182011-06-15 23:37:01 +00003078// Visit - Visit the function both top-down and bottom-up.
3079bool
3080ObjCARCOpt::Visit(Function &F,
3081 DenseMap<const BasicBlock *, BBState> &BBStates,
3082 MapVector<Value *, RRInfo> &Retains,
3083 DenseMap<Value *, RRInfo> &Releases) {
Dan Gohman59a1c932011-12-12 19:42:25 +00003084
3085 // Use reverse-postorder traversals, because we magically know that loops
3086 // will be well behaved, i.e. they won't repeatedly call retain on a single
3087 // pointer without doing a release. We can't use the ReversePostOrderTraversal
3088 // class here because we want the reverse-CFG postorder to consider each
3089 // function exit point, and we want to ignore selected cycle edges.
3090 SmallVector<BasicBlock *, 16> PostOrder;
3091 SmallVector<BasicBlock *, 16> ReverseCFGPostOrder;
Dan Gohmaneeeb7752012-04-24 22:53:18 +00003092 ComputePostOrders(F, PostOrder, ReverseCFGPostOrder,
3093 NoObjCARCExceptionsMDKind,
3094 BBStates);
Dan Gohman59a1c932011-12-12 19:42:25 +00003095
3096 // Use reverse-postorder on the reverse CFG for bottom-up.
John McCall9fbd3182011-06-15 23:37:01 +00003097 bool BottomUpNestingDetected = false;
Dan Gohmanb48ef3a2011-08-18 21:27:42 +00003098 for (SmallVectorImpl<BasicBlock *>::const_reverse_iterator I =
Dan Gohman59a1c932011-12-12 19:42:25 +00003099 ReverseCFGPostOrder.rbegin(), E = ReverseCFGPostOrder.rend();
3100 I != E; ++I)
3101 BottomUpNestingDetected |= VisitBottomUp(*I, BBStates, Retains);
John McCall9fbd3182011-06-15 23:37:01 +00003102
Dan Gohman59a1c932011-12-12 19:42:25 +00003103 // Use reverse-postorder for top-down.
John McCall9fbd3182011-06-15 23:37:01 +00003104 bool TopDownNestingDetected = false;
Dan Gohman59a1c932011-12-12 19:42:25 +00003105 for (SmallVectorImpl<BasicBlock *>::const_reverse_iterator I =
3106 PostOrder.rbegin(), E = PostOrder.rend();
3107 I != E; ++I)
3108 TopDownNestingDetected |= VisitTopDown(*I, BBStates, Releases);
John McCall9fbd3182011-06-15 23:37:01 +00003109
3110 return TopDownNestingDetected && BottomUpNestingDetected;
3111}
3112
3113/// MoveCalls - Move the calls in RetainsToMove and ReleasesToMove.
3114void ObjCARCOpt::MoveCalls(Value *Arg,
3115 RRInfo &RetainsToMove,
3116 RRInfo &ReleasesToMove,
3117 MapVector<Value *, RRInfo> &Retains,
3118 DenseMap<Value *, RRInfo> &Releases,
Dan Gohman44280692011-07-22 22:29:21 +00003119 SmallVectorImpl<Instruction *> &DeadInsts,
3120 Module *M) {
Chris Lattnerdb125cf2011-07-18 04:54:35 +00003121 Type *ArgTy = Arg->getType();
Dan Gohman44280692011-07-22 22:29:21 +00003122 Type *ParamTy = PointerType::getUnqual(Type::getInt8Ty(ArgTy->getContext()));
John McCall9fbd3182011-06-15 23:37:01 +00003123
3124 // Insert the new retain and release calls.
3125 for (SmallPtrSet<Instruction *, 2>::const_iterator
3126 PI = ReleasesToMove.ReverseInsertPts.begin(),
3127 PE = ReleasesToMove.ReverseInsertPts.end(); PI != PE; ++PI) {
3128 Instruction *InsertPt = *PI;
3129 Value *MyArg = ArgTy == ParamTy ? Arg :
3130 new BitCastInst(Arg, ParamTy, "", InsertPt);
3131 CallInst *Call =
3132 CallInst::Create(RetainsToMove.IsRetainBlock ?
Dan Gohman44280692011-07-22 22:29:21 +00003133 getRetainBlockCallee(M) : getRetainCallee(M),
John McCall9fbd3182011-06-15 23:37:01 +00003134 MyArg, "", InsertPt);
3135 Call->setDoesNotThrow();
Dan Gohman79522dc2012-01-13 00:39:07 +00003136 if (RetainsToMove.IsRetainBlock)
Dan Gohmana974bea2011-10-17 22:53:25 +00003137 Call->setMetadata(CopyOnEscapeMDKind,
3138 MDNode::get(M->getContext(), ArrayRef<Value *>()));
Dan Gohman79522dc2012-01-13 00:39:07 +00003139 else
John McCall9fbd3182011-06-15 23:37:01 +00003140 Call->setTailCall();
3141 }
3142 for (SmallPtrSet<Instruction *, 2>::const_iterator
3143 PI = RetainsToMove.ReverseInsertPts.begin(),
3144 PE = RetainsToMove.ReverseInsertPts.end(); PI != PE; ++PI) {
Dan Gohmanfbab4a82012-03-23 17:47:54 +00003145 Instruction *InsertPt = *PI;
3146 Value *MyArg = ArgTy == ParamTy ? Arg :
3147 new BitCastInst(Arg, ParamTy, "", InsertPt);
3148 CallInst *Call = CallInst::Create(getReleaseCallee(M), MyArg,
3149 "", InsertPt);
3150 // Attach a clang.imprecise_release metadata tag, if appropriate.
3151 if (MDNode *M = ReleasesToMove.ReleaseMetadata)
3152 Call->setMetadata(ImpreciseReleaseMDKind, M);
3153 Call->setDoesNotThrow();
3154 if (ReleasesToMove.IsTailCallRelease)
3155 Call->setTailCall();
John McCall9fbd3182011-06-15 23:37:01 +00003156 }
3157
3158 // Delete the original retain and release calls.
3159 for (SmallPtrSet<Instruction *, 2>::const_iterator
3160 AI = RetainsToMove.Calls.begin(),
3161 AE = RetainsToMove.Calls.end(); AI != AE; ++AI) {
3162 Instruction *OrigRetain = *AI;
3163 Retains.blot(OrigRetain);
3164 DeadInsts.push_back(OrigRetain);
3165 }
3166 for (SmallPtrSet<Instruction *, 2>::const_iterator
3167 AI = ReleasesToMove.Calls.begin(),
3168 AE = ReleasesToMove.Calls.end(); AI != AE; ++AI) {
3169 Instruction *OrigRelease = *AI;
3170 Releases.erase(OrigRelease);
3171 DeadInsts.push_back(OrigRelease);
3172 }
3173}
3174
Dan Gohmand6bf2012012-04-13 18:57:48 +00003175/// PerformCodePlacement - Identify pairings between the retains and releases,
3176/// and delete and/or move them.
John McCall9fbd3182011-06-15 23:37:01 +00003177bool
3178ObjCARCOpt::PerformCodePlacement(DenseMap<const BasicBlock *, BBState>
3179 &BBStates,
3180 MapVector<Value *, RRInfo> &Retains,
Dan Gohman44280692011-07-22 22:29:21 +00003181 DenseMap<Value *, RRInfo> &Releases,
3182 Module *M) {
John McCall9fbd3182011-06-15 23:37:01 +00003183 bool AnyPairsCompletelyEliminated = false;
3184 RRInfo RetainsToMove;
3185 RRInfo ReleasesToMove;
3186 SmallVector<Instruction *, 4> NewRetains;
3187 SmallVector<Instruction *, 4> NewReleases;
3188 SmallVector<Instruction *, 8> DeadInsts;
3189
Dan Gohmand6bf2012012-04-13 18:57:48 +00003190 // Visit each retain.
John McCall9fbd3182011-06-15 23:37:01 +00003191 for (MapVector<Value *, RRInfo>::const_iterator I = Retains.begin(),
Dan Gohman597fece2011-09-29 22:25:23 +00003192 E = Retains.end(); I != E; ++I) {
3193 Value *V = I->first;
John McCall9fbd3182011-06-15 23:37:01 +00003194 if (!V) continue; // blotted
3195
3196 Instruction *Retain = cast<Instruction>(V);
3197 Value *Arg = GetObjCArg(Retain);
3198
Dan Gohman79522dc2012-01-13 00:39:07 +00003199 // If the object being released is in static or stack storage, we know it's
John McCall9fbd3182011-06-15 23:37:01 +00003200 // not being managed by ObjC reference counting, so we can delete pairs
3201 // regardless of what possible decrements or uses lie between them.
Dan Gohman79522dc2012-01-13 00:39:07 +00003202 bool KnownSafe = isa<Constant>(Arg) || isa<AllocaInst>(Arg);
Dan Gohman0daef3d2012-05-08 23:39:44 +00003203
Dan Gohman1b31ea82011-08-22 17:29:11 +00003204 // A constant pointer can't be pointing to an object on the heap. It may
3205 // be reference-counted, but it won't be deleted.
3206 if (const LoadInst *LI = dyn_cast<LoadInst>(Arg))
3207 if (const GlobalVariable *GV =
3208 dyn_cast<GlobalVariable>(
3209 StripPointerCastsAndObjCCalls(LI->getPointerOperand())))
3210 if (GV->isConstant())
3211 KnownSafe = true;
3212
John McCall9fbd3182011-06-15 23:37:01 +00003213 // If a pair happens in a region where it is known that the reference count
3214 // is already incremented, we can similarly ignore possible decrements.
Dan Gohmane6d5e882011-08-19 00:26:36 +00003215 bool KnownSafeTD = true, KnownSafeBU = true;
John McCall9fbd3182011-06-15 23:37:01 +00003216
3217 // Connect the dots between the top-down-collected RetainsToMove and
3218 // bottom-up-collected ReleasesToMove to form sets of related calls.
3219 // This is an iterative process so that we connect multiple releases
3220 // to multiple retains if needed.
3221 unsigned OldDelta = 0;
3222 unsigned NewDelta = 0;
3223 unsigned OldCount = 0;
3224 unsigned NewCount = 0;
3225 bool FirstRelease = true;
3226 bool FirstRetain = true;
3227 NewRetains.push_back(Retain);
3228 for (;;) {
3229 for (SmallVectorImpl<Instruction *>::const_iterator
3230 NI = NewRetains.begin(), NE = NewRetains.end(); NI != NE; ++NI) {
3231 Instruction *NewRetain = *NI;
3232 MapVector<Value *, RRInfo>::const_iterator It = Retains.find(NewRetain);
3233 assert(It != Retains.end());
3234 const RRInfo &NewRetainRRI = It->second;
Dan Gohmane6d5e882011-08-19 00:26:36 +00003235 KnownSafeTD &= NewRetainRRI.KnownSafe;
John McCall9fbd3182011-06-15 23:37:01 +00003236 for (SmallPtrSet<Instruction *, 2>::const_iterator
3237 LI = NewRetainRRI.Calls.begin(),
3238 LE = NewRetainRRI.Calls.end(); LI != LE; ++LI) {
3239 Instruction *NewRetainRelease = *LI;
3240 DenseMap<Value *, RRInfo>::const_iterator Jt =
3241 Releases.find(NewRetainRelease);
3242 if (Jt == Releases.end())
3243 goto next_retain;
3244 const RRInfo &NewRetainReleaseRRI = Jt->second;
3245 assert(NewRetainReleaseRRI.Calls.count(NewRetain));
3246 if (ReleasesToMove.Calls.insert(NewRetainRelease)) {
3247 OldDelta -=
3248 BBStates[NewRetainRelease->getParent()].GetAllPathCount();
3249
3250 // Merge the ReleaseMetadata and IsTailCallRelease values.
3251 if (FirstRelease) {
3252 ReleasesToMove.ReleaseMetadata =
3253 NewRetainReleaseRRI.ReleaseMetadata;
3254 ReleasesToMove.IsTailCallRelease =
3255 NewRetainReleaseRRI.IsTailCallRelease;
3256 FirstRelease = false;
3257 } else {
3258 if (ReleasesToMove.ReleaseMetadata !=
3259 NewRetainReleaseRRI.ReleaseMetadata)
3260 ReleasesToMove.ReleaseMetadata = 0;
3261 if (ReleasesToMove.IsTailCallRelease !=
3262 NewRetainReleaseRRI.IsTailCallRelease)
3263 ReleasesToMove.IsTailCallRelease = false;
3264 }
3265
3266 // Collect the optimal insertion points.
3267 if (!KnownSafe)
3268 for (SmallPtrSet<Instruction *, 2>::const_iterator
3269 RI = NewRetainReleaseRRI.ReverseInsertPts.begin(),
3270 RE = NewRetainReleaseRRI.ReverseInsertPts.end();
3271 RI != RE; ++RI) {
3272 Instruction *RIP = *RI;
3273 if (ReleasesToMove.ReverseInsertPts.insert(RIP))
3274 NewDelta -= BBStates[RIP->getParent()].GetAllPathCount();
3275 }
3276 NewReleases.push_back(NewRetainRelease);
3277 }
3278 }
3279 }
3280 NewRetains.clear();
3281 if (NewReleases.empty()) break;
3282
3283 // Back the other way.
3284 for (SmallVectorImpl<Instruction *>::const_iterator
3285 NI = NewReleases.begin(), NE = NewReleases.end(); NI != NE; ++NI) {
3286 Instruction *NewRelease = *NI;
3287 DenseMap<Value *, RRInfo>::const_iterator It =
3288 Releases.find(NewRelease);
3289 assert(It != Releases.end());
3290 const RRInfo &NewReleaseRRI = It->second;
Dan Gohmane6d5e882011-08-19 00:26:36 +00003291 KnownSafeBU &= NewReleaseRRI.KnownSafe;
John McCall9fbd3182011-06-15 23:37:01 +00003292 for (SmallPtrSet<Instruction *, 2>::const_iterator
3293 LI = NewReleaseRRI.Calls.begin(),
3294 LE = NewReleaseRRI.Calls.end(); LI != LE; ++LI) {
3295 Instruction *NewReleaseRetain = *LI;
3296 MapVector<Value *, RRInfo>::const_iterator Jt =
3297 Retains.find(NewReleaseRetain);
3298 if (Jt == Retains.end())
3299 goto next_retain;
3300 const RRInfo &NewReleaseRetainRRI = Jt->second;
3301 assert(NewReleaseRetainRRI.Calls.count(NewRelease));
3302 if (RetainsToMove.Calls.insert(NewReleaseRetain)) {
3303 unsigned PathCount =
3304 BBStates[NewReleaseRetain->getParent()].GetAllPathCount();
3305 OldDelta += PathCount;
3306 OldCount += PathCount;
3307
3308 // Merge the IsRetainBlock values.
3309 if (FirstRetain) {
3310 RetainsToMove.IsRetainBlock = NewReleaseRetainRRI.IsRetainBlock;
3311 FirstRetain = false;
3312 } else if (ReleasesToMove.IsRetainBlock !=
3313 NewReleaseRetainRRI.IsRetainBlock)
3314 // It's not possible to merge the sequences if one uses
3315 // objc_retain and the other uses objc_retainBlock.
3316 goto next_retain;
3317
3318 // Collect the optimal insertion points.
3319 if (!KnownSafe)
3320 for (SmallPtrSet<Instruction *, 2>::const_iterator
3321 RI = NewReleaseRetainRRI.ReverseInsertPts.begin(),
3322 RE = NewReleaseRetainRRI.ReverseInsertPts.end();
3323 RI != RE; ++RI) {
3324 Instruction *RIP = *RI;
3325 if (RetainsToMove.ReverseInsertPts.insert(RIP)) {
3326 PathCount = BBStates[RIP->getParent()].GetAllPathCount();
3327 NewDelta += PathCount;
3328 NewCount += PathCount;
3329 }
3330 }
3331 NewRetains.push_back(NewReleaseRetain);
3332 }
3333 }
3334 }
3335 NewReleases.clear();
3336 if (NewRetains.empty()) break;
3337 }
3338
Dan Gohmane6d5e882011-08-19 00:26:36 +00003339 // If the pointer is known incremented or nested, we can safely delete the
3340 // pair regardless of what's between them.
3341 if (KnownSafeTD || KnownSafeBU) {
John McCall9fbd3182011-06-15 23:37:01 +00003342 RetainsToMove.ReverseInsertPts.clear();
3343 ReleasesToMove.ReverseInsertPts.clear();
3344 NewCount = 0;
Dan Gohmana7f7db22011-08-12 00:26:31 +00003345 } else {
3346 // Determine whether the new insertion points we computed preserve the
3347 // balance of retain and release calls through the program.
3348 // TODO: If the fully aggressive solution isn't valid, try to find a
3349 // less aggressive solution which is.
3350 if (NewDelta != 0)
3351 goto next_retain;
John McCall9fbd3182011-06-15 23:37:01 +00003352 }
3353
3354 // Determine whether the original call points are balanced in the retain and
3355 // release calls through the program. If not, conservatively don't touch
3356 // them.
3357 // TODO: It's theoretically possible to do code motion in this case, as
3358 // long as the existing imbalances are maintained.
3359 if (OldDelta != 0)
3360 goto next_retain;
3361
John McCall9fbd3182011-06-15 23:37:01 +00003362 // Ok, everything checks out and we're all set. Let's move some code!
3363 Changed = true;
Dan Gohmaneeeb7752012-04-24 22:53:18 +00003364 assert(OldCount != 0 && "Unreachable code?");
3365 AnyPairsCompletelyEliminated = NewCount == 0;
John McCall9fbd3182011-06-15 23:37:01 +00003366 NumRRs += OldCount - NewCount;
Dan Gohman44280692011-07-22 22:29:21 +00003367 MoveCalls(Arg, RetainsToMove, ReleasesToMove,
3368 Retains, Releases, DeadInsts, M);
John McCall9fbd3182011-06-15 23:37:01 +00003369
3370 next_retain:
3371 NewReleases.clear();
3372 NewRetains.clear();
3373 RetainsToMove.clear();
3374 ReleasesToMove.clear();
3375 }
3376
3377 // Now that we're done moving everything, we can delete the newly dead
3378 // instructions, as we no longer need them as insert points.
3379 while (!DeadInsts.empty())
3380 EraseInstruction(DeadInsts.pop_back_val());
3381
3382 return AnyPairsCompletelyEliminated;
3383}
3384
3385/// OptimizeWeakCalls - Weak pointer optimizations.
3386void ObjCARCOpt::OptimizeWeakCalls(Function &F) {
3387 // First, do memdep-style RLE and S2L optimizations. We can't use memdep
3388 // itself because it uses AliasAnalysis and we need to do provenance
3389 // queries instead.
3390 for (inst_iterator I = inst_begin(&F), E = inst_end(&F); I != E; ) {
3391 Instruction *Inst = &*I++;
3392 InstructionClass Class = GetBasicInstructionClass(Inst);
3393 if (Class != IC_LoadWeak && Class != IC_LoadWeakRetained)
3394 continue;
3395
3396 // Delete objc_loadWeak calls with no users.
3397 if (Class == IC_LoadWeak && Inst->use_empty()) {
3398 Inst->eraseFromParent();
3399 continue;
3400 }
3401
3402 // TODO: For now, just look for an earlier available version of this value
3403 // within the same block. Theoretically, we could do memdep-style non-local
3404 // analysis too, but that would want caching. A better approach would be to
3405 // use the technique that EarlyCSE uses.
3406 inst_iterator Current = llvm::prior(I);
3407 BasicBlock *CurrentBB = Current.getBasicBlockIterator();
3408 for (BasicBlock::iterator B = CurrentBB->begin(),
3409 J = Current.getInstructionIterator();
3410 J != B; --J) {
3411 Instruction *EarlierInst = &*llvm::prior(J);
3412 InstructionClass EarlierClass = GetInstructionClass(EarlierInst);
3413 switch (EarlierClass) {
3414 case IC_LoadWeak:
3415 case IC_LoadWeakRetained: {
3416 // If this is loading from the same pointer, replace this load's value
3417 // with that one.
3418 CallInst *Call = cast<CallInst>(Inst);
3419 CallInst *EarlierCall = cast<CallInst>(EarlierInst);
3420 Value *Arg = Call->getArgOperand(0);
3421 Value *EarlierArg = EarlierCall->getArgOperand(0);
3422 switch (PA.getAA()->alias(Arg, EarlierArg)) {
3423 case AliasAnalysis::MustAlias:
3424 Changed = true;
3425 // If the load has a builtin retain, insert a plain retain for it.
3426 if (Class == IC_LoadWeakRetained) {
3427 CallInst *CI =
3428 CallInst::Create(getRetainCallee(F.getParent()), EarlierCall,
3429 "", Call);
3430 CI->setTailCall();
3431 }
3432 // Zap the fully redundant load.
3433 Call->replaceAllUsesWith(EarlierCall);
3434 Call->eraseFromParent();
3435 goto clobbered;
3436 case AliasAnalysis::MayAlias:
3437 case AliasAnalysis::PartialAlias:
3438 goto clobbered;
3439 case AliasAnalysis::NoAlias:
3440 break;
3441 }
3442 break;
3443 }
3444 case IC_StoreWeak:
3445 case IC_InitWeak: {
3446 // If this is storing to the same pointer and has the same size etc.
3447 // replace this load's value with the stored value.
3448 CallInst *Call = cast<CallInst>(Inst);
3449 CallInst *EarlierCall = cast<CallInst>(EarlierInst);
3450 Value *Arg = Call->getArgOperand(0);
3451 Value *EarlierArg = EarlierCall->getArgOperand(0);
3452 switch (PA.getAA()->alias(Arg, EarlierArg)) {
3453 case AliasAnalysis::MustAlias:
3454 Changed = true;
3455 // If the load has a builtin retain, insert a plain retain for it.
3456 if (Class == IC_LoadWeakRetained) {
3457 CallInst *CI =
3458 CallInst::Create(getRetainCallee(F.getParent()), EarlierCall,
3459 "", Call);
3460 CI->setTailCall();
3461 }
3462 // Zap the fully redundant load.
3463 Call->replaceAllUsesWith(EarlierCall->getArgOperand(1));
3464 Call->eraseFromParent();
3465 goto clobbered;
3466 case AliasAnalysis::MayAlias:
3467 case AliasAnalysis::PartialAlias:
3468 goto clobbered;
3469 case AliasAnalysis::NoAlias:
3470 break;
3471 }
3472 break;
3473 }
3474 case IC_MoveWeak:
3475 case IC_CopyWeak:
3476 // TOOD: Grab the copied value.
3477 goto clobbered;
3478 case IC_AutoreleasepoolPush:
3479 case IC_None:
3480 case IC_User:
3481 // Weak pointers are only modified through the weak entry points
3482 // (and arbitrary calls, which could call the weak entry points).
3483 break;
3484 default:
3485 // Anything else could modify the weak pointer.
3486 goto clobbered;
3487 }
3488 }
3489 clobbered:;
3490 }
3491
3492 // Then, for each destroyWeak with an alloca operand, check to see if
3493 // the alloca and all its users can be zapped.
3494 for (inst_iterator I = inst_begin(&F), E = inst_end(&F); I != E; ) {
3495 Instruction *Inst = &*I++;
3496 InstructionClass Class = GetBasicInstructionClass(Inst);
3497 if (Class != IC_DestroyWeak)
3498 continue;
3499
3500 CallInst *Call = cast<CallInst>(Inst);
3501 Value *Arg = Call->getArgOperand(0);
3502 if (AllocaInst *Alloca = dyn_cast<AllocaInst>(Arg)) {
3503 for (Value::use_iterator UI = Alloca->use_begin(),
3504 UE = Alloca->use_end(); UI != UE; ++UI) {
Dan Gohman447989c2012-04-27 18:56:31 +00003505 const Instruction *UserInst = cast<Instruction>(*UI);
John McCall9fbd3182011-06-15 23:37:01 +00003506 switch (GetBasicInstructionClass(UserInst)) {
3507 case IC_InitWeak:
3508 case IC_StoreWeak:
3509 case IC_DestroyWeak:
3510 continue;
3511 default:
3512 goto done;
3513 }
3514 }
3515 Changed = true;
3516 for (Value::use_iterator UI = Alloca->use_begin(),
3517 UE = Alloca->use_end(); UI != UE; ) {
3518 CallInst *UserInst = cast<CallInst>(*UI++);
Dan Gohmance5d8b02012-05-18 22:17:29 +00003519 switch (GetBasicInstructionClass(UserInst)) {
3520 case IC_InitWeak:
3521 case IC_StoreWeak:
3522 // These functions return their second argument.
3523 UserInst->replaceAllUsesWith(UserInst->getArgOperand(1));
3524 break;
3525 case IC_DestroyWeak:
3526 // No return value.
3527 break;
3528 default:
Dan Gohman4c8f9092012-05-21 17:41:28 +00003529 llvm_unreachable("alloca really is used!");
Dan Gohmance5d8b02012-05-18 22:17:29 +00003530 }
John McCall9fbd3182011-06-15 23:37:01 +00003531 UserInst->eraseFromParent();
3532 }
3533 Alloca->eraseFromParent();
3534 done:;
3535 }
3536 }
3537}
3538
3539/// OptimizeSequences - Identify program paths which execute sequences of
3540/// retains and releases which can be eliminated.
3541bool ObjCARCOpt::OptimizeSequences(Function &F) {
3542 /// Releases, Retains - These are used to store the results of the main flow
3543 /// analysis. These use Value* as the key instead of Instruction* so that the
3544 /// map stays valid when we get around to rewriting code and calls get
3545 /// replaced by arguments.
3546 DenseMap<Value *, RRInfo> Releases;
3547 MapVector<Value *, RRInfo> Retains;
3548
3549 /// BBStates, This is used during the traversal of the function to track the
3550 /// states for each identified object at each block.
3551 DenseMap<const BasicBlock *, BBState> BBStates;
3552
3553 // Analyze the CFG of the function, and all instructions.
3554 bool NestingDetected = Visit(F, BBStates, Retains, Releases);
3555
3556 // Transform.
Dan Gohman44280692011-07-22 22:29:21 +00003557 return PerformCodePlacement(BBStates, Retains, Releases, F.getParent()) &&
3558 NestingDetected;
John McCall9fbd3182011-06-15 23:37:01 +00003559}
3560
3561/// OptimizeReturns - Look for this pattern:
Dmitri Gribenkoc5252da2012-09-14 14:57:36 +00003562/// \code
John McCall9fbd3182011-06-15 23:37:01 +00003563/// %call = call i8* @something(...)
3564/// %2 = call i8* @objc_retain(i8* %call)
3565/// %3 = call i8* @objc_autorelease(i8* %2)
3566/// ret i8* %3
Dmitri Gribenkoc5252da2012-09-14 14:57:36 +00003567/// \endcode
John McCall9fbd3182011-06-15 23:37:01 +00003568/// And delete the retain and autorelease.
3569///
3570/// Otherwise if it's just this:
Dmitri Gribenkoc5252da2012-09-14 14:57:36 +00003571/// \code
John McCall9fbd3182011-06-15 23:37:01 +00003572/// %3 = call i8* @objc_autorelease(i8* %2)
3573/// ret i8* %3
Dmitri Gribenkoc5252da2012-09-14 14:57:36 +00003574/// \endcode
John McCall9fbd3182011-06-15 23:37:01 +00003575/// convert the autorelease to autoreleaseRV.
3576void ObjCARCOpt::OptimizeReturns(Function &F) {
3577 if (!F.getReturnType()->isPointerTy())
3578 return;
3579
3580 SmallPtrSet<Instruction *, 4> DependingInstructions;
3581 SmallPtrSet<const BasicBlock *, 4> Visited;
3582 for (Function::iterator FI = F.begin(), FE = F.end(); FI != FE; ++FI) {
3583 BasicBlock *BB = FI;
3584 ReturnInst *Ret = dyn_cast<ReturnInst>(&BB->back());
3585 if (!Ret) continue;
3586
3587 const Value *Arg = StripPointerCastsAndObjCCalls(Ret->getOperand(0));
3588 FindDependencies(NeedsPositiveRetainCount, Arg,
3589 BB, Ret, DependingInstructions, Visited, PA);
3590 if (DependingInstructions.size() != 1)
3591 goto next_block;
3592
3593 {
3594 CallInst *Autorelease =
3595 dyn_cast_or_null<CallInst>(*DependingInstructions.begin());
3596 if (!Autorelease)
3597 goto next_block;
Dan Gohman0daef3d2012-05-08 23:39:44 +00003598 InstructionClass AutoreleaseClass = GetBasicInstructionClass(Autorelease);
John McCall9fbd3182011-06-15 23:37:01 +00003599 if (!IsAutorelease(AutoreleaseClass))
3600 goto next_block;
3601 if (GetObjCArg(Autorelease) != Arg)
3602 goto next_block;
3603
3604 DependingInstructions.clear();
3605 Visited.clear();
3606
3607 // Check that there is nothing that can affect the reference
3608 // count between the autorelease and the retain.
3609 FindDependencies(CanChangeRetainCount, Arg,
3610 BB, Autorelease, DependingInstructions, Visited, PA);
3611 if (DependingInstructions.size() != 1)
3612 goto next_block;
3613
3614 {
3615 CallInst *Retain =
3616 dyn_cast_or_null<CallInst>(*DependingInstructions.begin());
3617
3618 // Check that we found a retain with the same argument.
3619 if (!Retain ||
3620 !IsRetain(GetBasicInstructionClass(Retain)) ||
3621 GetObjCArg(Retain) != Arg)
3622 goto next_block;
3623
3624 DependingInstructions.clear();
3625 Visited.clear();
3626
3627 // Convert the autorelease to an autoreleaseRV, since it's
3628 // returning the value.
3629 if (AutoreleaseClass == IC_Autorelease) {
3630 Autorelease->setCalledFunction(getAutoreleaseRVCallee(F.getParent()));
3631 AutoreleaseClass = IC_AutoreleaseRV;
3632 }
3633
3634 // Check that there is nothing that can affect the reference
3635 // count between the retain and the call.
Dan Gohman27e06662011-09-29 22:27:34 +00003636 // Note that Retain need not be in BB.
3637 FindDependencies(CanChangeRetainCount, Arg, Retain->getParent(), Retain,
John McCall9fbd3182011-06-15 23:37:01 +00003638 DependingInstructions, Visited, PA);
3639 if (DependingInstructions.size() != 1)
3640 goto next_block;
3641
3642 {
3643 CallInst *Call =
3644 dyn_cast_or_null<CallInst>(*DependingInstructions.begin());
3645
3646 // Check that the pointer is the return value of the call.
3647 if (!Call || Arg != Call)
3648 goto next_block;
3649
3650 // Check that the call is a regular call.
3651 InstructionClass Class = GetBasicInstructionClass(Call);
3652 if (Class != IC_CallOrUser && Class != IC_Call)
3653 goto next_block;
3654
3655 // If so, we can zap the retain and autorelease.
3656 Changed = true;
3657 ++NumRets;
3658 EraseInstruction(Retain);
3659 EraseInstruction(Autorelease);
3660 }
3661 }
3662 }
3663
3664 next_block:
3665 DependingInstructions.clear();
3666 Visited.clear();
3667 }
3668}
3669
3670bool ObjCARCOpt::doInitialization(Module &M) {
3671 if (!EnableARCOpts)
3672 return false;
3673
Dan Gohmand6bf2012012-04-13 18:57:48 +00003674 // If nothing in the Module uses ARC, don't do anything.
Dan Gohmanc4bcd4d2011-06-20 23:20:43 +00003675 Run = ModuleHasARC(M);
3676 if (!Run)
3677 return false;
3678
John McCall9fbd3182011-06-15 23:37:01 +00003679 // Identify the imprecise release metadata kind.
3680 ImpreciseReleaseMDKind =
3681 M.getContext().getMDKindID("clang.imprecise_release");
Dan Gohmana974bea2011-10-17 22:53:25 +00003682 CopyOnEscapeMDKind =
3683 M.getContext().getMDKindID("clang.arc.copy_on_escape");
Dan Gohmandbe266b2012-02-17 18:59:53 +00003684 NoObjCARCExceptionsMDKind =
3685 M.getContext().getMDKindID("clang.arc.no_objc_arc_exceptions");
John McCall9fbd3182011-06-15 23:37:01 +00003686
John McCall9fbd3182011-06-15 23:37:01 +00003687 // Intuitively, objc_retain and others are nocapture, however in practice
3688 // they are not, because they return their argument value. And objc_release
Dan Gohman447989c2012-04-27 18:56:31 +00003689 // calls finalizers which can have arbitrary side effects.
John McCall9fbd3182011-06-15 23:37:01 +00003690
3691 // These are initialized lazily.
3692 RetainRVCallee = 0;
3693 AutoreleaseRVCallee = 0;
3694 ReleaseCallee = 0;
3695 RetainCallee = 0;
Dan Gohman44280692011-07-22 22:29:21 +00003696 RetainBlockCallee = 0;
John McCall9fbd3182011-06-15 23:37:01 +00003697 AutoreleaseCallee = 0;
3698
3699 return false;
3700}
3701
3702bool ObjCARCOpt::runOnFunction(Function &F) {
3703 if (!EnableARCOpts)
3704 return false;
3705
Dan Gohmanc4bcd4d2011-06-20 23:20:43 +00003706 // If nothing in the Module uses ARC, don't do anything.
3707 if (!Run)
3708 return false;
3709
John McCall9fbd3182011-06-15 23:37:01 +00003710 Changed = false;
3711
3712 PA.setAA(&getAnalysis<AliasAnalysis>());
3713
3714 // This pass performs several distinct transformations. As a compile-time aid
3715 // when compiling code that isn't ObjC, skip these if the relevant ObjC
3716 // library functions aren't declared.
3717
3718 // Preliminary optimizations. This also computs UsedInThisFunction.
3719 OptimizeIndividualCalls(F);
3720
3721 // Optimizations for weak pointers.
3722 if (UsedInThisFunction & ((1 << IC_LoadWeak) |
3723 (1 << IC_LoadWeakRetained) |
3724 (1 << IC_StoreWeak) |
3725 (1 << IC_InitWeak) |
3726 (1 << IC_CopyWeak) |
3727 (1 << IC_MoveWeak) |
3728 (1 << IC_DestroyWeak)))
3729 OptimizeWeakCalls(F);
3730
3731 // Optimizations for retain+release pairs.
3732 if (UsedInThisFunction & ((1 << IC_Retain) |
3733 (1 << IC_RetainRV) |
3734 (1 << IC_RetainBlock)))
3735 if (UsedInThisFunction & (1 << IC_Release))
3736 // Run OptimizeSequences until it either stops making changes or
3737 // no retain+release pair nesting is detected.
3738 while (OptimizeSequences(F)) {}
3739
3740 // Optimizations if objc_autorelease is used.
Dan Gohman0daef3d2012-05-08 23:39:44 +00003741 if (UsedInThisFunction & ((1 << IC_Autorelease) |
3742 (1 << IC_AutoreleaseRV)))
John McCall9fbd3182011-06-15 23:37:01 +00003743 OptimizeReturns(F);
3744
3745 return Changed;
3746}
3747
3748void ObjCARCOpt::releaseMemory() {
3749 PA.clear();
3750}
3751
3752//===----------------------------------------------------------------------===//
3753// ARC contraction.
3754//===----------------------------------------------------------------------===//
3755
3756// TODO: ObjCARCContract could insert PHI nodes when uses aren't
3757// dominated by single calls.
3758
3759#include "llvm/Operator.h"
3760#include "llvm/InlineAsm.h"
3761#include "llvm/Analysis/Dominators.h"
3762
3763STATISTIC(NumStoreStrongs, "Number objc_storeStrong calls formed");
3764
3765namespace {
3766 /// ObjCARCContract - Late ARC optimizations. These change the IR in a way
3767 /// that makes it difficult to be analyzed by ObjCARCOpt, so it's run late.
3768 class ObjCARCContract : public FunctionPass {
3769 bool Changed;
3770 AliasAnalysis *AA;
3771 DominatorTree *DT;
3772 ProvenanceAnalysis PA;
3773
Dan Gohmanc4bcd4d2011-06-20 23:20:43 +00003774 /// Run - A flag indicating whether this optimization pass should run.
3775 bool Run;
3776
John McCall9fbd3182011-06-15 23:37:01 +00003777 /// StoreStrongCallee, etc. - Declarations for ObjC runtime
3778 /// functions, for use in creating calls to them. These are initialized
3779 /// lazily to avoid cluttering up the Module with unused declarations.
3780 Constant *StoreStrongCallee,
3781 *RetainAutoreleaseCallee, *RetainAutoreleaseRVCallee;
3782
3783 /// RetainRVMarker - The inline asm string to insert between calls and
3784 /// RetainRV calls to make the optimization work on targets which need it.
3785 const MDString *RetainRVMarker;
3786
Dan Gohman0cdece42012-01-19 19:14:36 +00003787 /// StoreStrongCalls - The set of inserted objc_storeStrong calls. If
3788 /// at the end of walking the function we have found no alloca
3789 /// instructions, these calls can be marked "tail".
Dan Gohman0daef3d2012-05-08 23:39:44 +00003790 SmallPtrSet<CallInst *, 8> StoreStrongCalls;
Dan Gohman0cdece42012-01-19 19:14:36 +00003791
John McCall9fbd3182011-06-15 23:37:01 +00003792 Constant *getStoreStrongCallee(Module *M);
3793 Constant *getRetainAutoreleaseCallee(Module *M);
3794 Constant *getRetainAutoreleaseRVCallee(Module *M);
3795
3796 bool ContractAutorelease(Function &F, Instruction *Autorelease,
3797 InstructionClass Class,
3798 SmallPtrSet<Instruction *, 4>
3799 &DependingInstructions,
3800 SmallPtrSet<const BasicBlock *, 4>
3801 &Visited);
3802
3803 void ContractRelease(Instruction *Release,
3804 inst_iterator &Iter);
3805
3806 virtual void getAnalysisUsage(AnalysisUsage &AU) const;
3807 virtual bool doInitialization(Module &M);
3808 virtual bool runOnFunction(Function &F);
3809
3810 public:
3811 static char ID;
3812 ObjCARCContract() : FunctionPass(ID) {
3813 initializeObjCARCContractPass(*PassRegistry::getPassRegistry());
3814 }
3815 };
3816}
3817
3818char ObjCARCContract::ID = 0;
3819INITIALIZE_PASS_BEGIN(ObjCARCContract,
3820 "objc-arc-contract", "ObjC ARC contraction", false, false)
3821INITIALIZE_AG_DEPENDENCY(AliasAnalysis)
3822INITIALIZE_PASS_DEPENDENCY(DominatorTree)
3823INITIALIZE_PASS_END(ObjCARCContract,
3824 "objc-arc-contract", "ObjC ARC contraction", false, false)
3825
3826Pass *llvm::createObjCARCContractPass() {
3827 return new ObjCARCContract();
3828}
3829
3830void ObjCARCContract::getAnalysisUsage(AnalysisUsage &AU) const {
3831 AU.addRequired<AliasAnalysis>();
3832 AU.addRequired<DominatorTree>();
3833 AU.setPreservesCFG();
3834}
3835
3836Constant *ObjCARCContract::getStoreStrongCallee(Module *M) {
3837 if (!StoreStrongCallee) {
3838 LLVMContext &C = M->getContext();
Jay Foad5fdd6c82011-07-12 14:06:48 +00003839 Type *I8X = PointerType::getUnqual(Type::getInt8Ty(C));
3840 Type *I8XX = PointerType::getUnqual(I8X);
Dan Gohman0daef3d2012-05-08 23:39:44 +00003841 Type *Params[] = { I8XX, I8X };
John McCall9fbd3182011-06-15 23:37:01 +00003842
Bill Wendling3fa57092012-10-09 00:51:40 +00003843 AttrListPtr Attributes = AttrListPtr()
Bill Wendling07aae2e2012-10-15 07:29:08 +00003844 .addAttr(M->getContext(), AttrListPtr::FunctionIndex,
Bill Wendling46d5dd92012-10-16 05:23:31 +00003845 Attributes::get(C, Attributes::NoUnwind))
3846 .addAttr(M->getContext(), 1, Attributes::get(C, Attributes::NoCapture));
John McCall9fbd3182011-06-15 23:37:01 +00003847
3848 StoreStrongCallee =
3849 M->getOrInsertFunction(
3850 "objc_storeStrong",
3851 FunctionType::get(Type::getVoidTy(C), Params, /*isVarArg=*/false),
3852 Attributes);
3853 }
3854 return StoreStrongCallee;
3855}
3856
3857Constant *ObjCARCContract::getRetainAutoreleaseCallee(Module *M) {
3858 if (!RetainAutoreleaseCallee) {
3859 LLVMContext &C = M->getContext();
Jay Foad5fdd6c82011-07-12 14:06:48 +00003860 Type *I8X = PointerType::getUnqual(Type::getInt8Ty(C));
Dan Gohman0daef3d2012-05-08 23:39:44 +00003861 Type *Params[] = { I8X };
3862 FunctionType *FTy = FunctionType::get(I8X, Params, /*isVarArg=*/false);
Bill Wendling07aae2e2012-10-15 07:29:08 +00003863 AttrListPtr Attributes =
3864 AttrListPtr().addAttr(M->getContext(), AttrListPtr::FunctionIndex,
Bill Wendling46d5dd92012-10-16 05:23:31 +00003865 Attributes::get(C, Attributes::NoUnwind));
John McCall9fbd3182011-06-15 23:37:01 +00003866 RetainAutoreleaseCallee =
3867 M->getOrInsertFunction("objc_retainAutorelease", FTy, Attributes);
3868 }
3869 return RetainAutoreleaseCallee;
3870}
3871
3872Constant *ObjCARCContract::getRetainAutoreleaseRVCallee(Module *M) {
3873 if (!RetainAutoreleaseRVCallee) {
3874 LLVMContext &C = M->getContext();
Jay Foad5fdd6c82011-07-12 14:06:48 +00003875 Type *I8X = PointerType::getUnqual(Type::getInt8Ty(C));
Dan Gohman0daef3d2012-05-08 23:39:44 +00003876 Type *Params[] = { I8X };
3877 FunctionType *FTy = FunctionType::get(I8X, Params, /*isVarArg=*/false);
Bill Wendling07aae2e2012-10-15 07:29:08 +00003878 AttrListPtr Attributes =
3879 AttrListPtr().addAttr(M->getContext(), AttrListPtr::FunctionIndex,
Bill Wendling46d5dd92012-10-16 05:23:31 +00003880 Attributes::get(C, Attributes::NoUnwind));
John McCall9fbd3182011-06-15 23:37:01 +00003881 RetainAutoreleaseRVCallee =
3882 M->getOrInsertFunction("objc_retainAutoreleaseReturnValue", FTy,
3883 Attributes);
3884 }
3885 return RetainAutoreleaseRVCallee;
3886}
3887
Dan Gohman447989c2012-04-27 18:56:31 +00003888/// ContractAutorelease - Merge an autorelease with a retain into a fused call.
John McCall9fbd3182011-06-15 23:37:01 +00003889bool
3890ObjCARCContract::ContractAutorelease(Function &F, Instruction *Autorelease,
3891 InstructionClass Class,
3892 SmallPtrSet<Instruction *, 4>
3893 &DependingInstructions,
3894 SmallPtrSet<const BasicBlock *, 4>
3895 &Visited) {
3896 const Value *Arg = GetObjCArg(Autorelease);
3897
3898 // Check that there are no instructions between the retain and the autorelease
3899 // (such as an autorelease_pop) which may change the count.
3900 CallInst *Retain = 0;
3901 if (Class == IC_AutoreleaseRV)
3902 FindDependencies(RetainAutoreleaseRVDep, Arg,
3903 Autorelease->getParent(), Autorelease,
3904 DependingInstructions, Visited, PA);
3905 else
3906 FindDependencies(RetainAutoreleaseDep, Arg,
3907 Autorelease->getParent(), Autorelease,
3908 DependingInstructions, Visited, PA);
3909
3910 Visited.clear();
3911 if (DependingInstructions.size() != 1) {
3912 DependingInstructions.clear();
3913 return false;
3914 }
3915
3916 Retain = dyn_cast_or_null<CallInst>(*DependingInstructions.begin());
3917 DependingInstructions.clear();
3918
3919 if (!Retain ||
3920 GetBasicInstructionClass(Retain) != IC_Retain ||
3921 GetObjCArg(Retain) != Arg)
3922 return false;
3923
3924 Changed = true;
3925 ++NumPeeps;
3926
3927 if (Class == IC_AutoreleaseRV)
3928 Retain->setCalledFunction(getRetainAutoreleaseRVCallee(F.getParent()));
3929 else
3930 Retain->setCalledFunction(getRetainAutoreleaseCallee(F.getParent()));
3931
3932 EraseInstruction(Autorelease);
3933 return true;
3934}
3935
3936/// ContractRelease - Attempt to merge an objc_release with a store, load, and
3937/// objc_retain to form an objc_storeStrong. This can be a little tricky because
3938/// the instructions don't always appear in order, and there may be unrelated
3939/// intervening instructions.
3940void ObjCARCContract::ContractRelease(Instruction *Release,
3941 inst_iterator &Iter) {
3942 LoadInst *Load = dyn_cast<LoadInst>(GetObjCArg(Release));
Eli Friedman2bc3d522011-09-12 20:23:13 +00003943 if (!Load || !Load->isSimple()) return;
John McCall9fbd3182011-06-15 23:37:01 +00003944
3945 // For now, require everything to be in one basic block.
3946 BasicBlock *BB = Release->getParent();
3947 if (Load->getParent() != BB) return;
3948
Dan Gohman4670dac2012-05-08 23:34:08 +00003949 // Walk down to find the store and the release, which may be in either order.
Dan Gohman95b8cf12012-05-09 23:08:33 +00003950 BasicBlock::iterator I = Load, End = BB->end();
John McCall9fbd3182011-06-15 23:37:01 +00003951 ++I;
3952 AliasAnalysis::Location Loc = AA->getLocation(Load);
Dan Gohman4670dac2012-05-08 23:34:08 +00003953 StoreInst *Store = 0;
3954 bool SawRelease = false;
3955 for (; !Store || !SawRelease; ++I) {
Dan Gohman95b8cf12012-05-09 23:08:33 +00003956 if (I == End)
3957 return;
3958
Dan Gohman4670dac2012-05-08 23:34:08 +00003959 Instruction *Inst = I;
3960 if (Inst == Release) {
3961 SawRelease = true;
3962 continue;
3963 }
3964
3965 InstructionClass Class = GetBasicInstructionClass(Inst);
3966
3967 // Unrelated retains are harmless.
3968 if (IsRetain(Class))
3969 continue;
3970
3971 if (Store) {
3972 // The store is the point where we're going to put the objc_storeStrong,
3973 // so make sure there are no uses after it.
3974 if (CanUse(Inst, Load, PA, Class))
3975 return;
3976 } else if (AA->getModRefInfo(Inst, Loc) & AliasAnalysis::Mod) {
3977 // We are moving the load down to the store, so check for anything
3978 // else which writes to the memory between the load and the store.
3979 Store = dyn_cast<StoreInst>(Inst);
3980 if (!Store || !Store->isSimple()) return;
3981 if (Store->getPointerOperand() != Loc.Ptr) return;
3982 }
3983 }
John McCall9fbd3182011-06-15 23:37:01 +00003984
3985 Value *New = StripPointerCastsAndObjCCalls(Store->getValueOperand());
3986
3987 // Walk up to find the retain.
3988 I = Store;
3989 BasicBlock::iterator Begin = BB->begin();
3990 while (I != Begin && GetBasicInstructionClass(I) != IC_Retain)
3991 --I;
3992 Instruction *Retain = I;
3993 if (GetBasicInstructionClass(Retain) != IC_Retain) return;
3994 if (GetObjCArg(Retain) != New) return;
3995
3996 Changed = true;
3997 ++NumStoreStrongs;
3998
3999 LLVMContext &C = Release->getContext();
Chris Lattnerdb125cf2011-07-18 04:54:35 +00004000 Type *I8X = PointerType::getUnqual(Type::getInt8Ty(C));
4001 Type *I8XX = PointerType::getUnqual(I8X);
John McCall9fbd3182011-06-15 23:37:01 +00004002
4003 Value *Args[] = { Load->getPointerOperand(), New };
4004 if (Args[0]->getType() != I8XX)
4005 Args[0] = new BitCastInst(Args[0], I8XX, "", Store);
4006 if (Args[1]->getType() != I8X)
4007 Args[1] = new BitCastInst(Args[1], I8X, "", Store);
4008 CallInst *StoreStrong =
4009 CallInst::Create(getStoreStrongCallee(BB->getParent()->getParent()),
Jay Foada3efbb12011-07-15 08:37:34 +00004010 Args, "", Store);
John McCall9fbd3182011-06-15 23:37:01 +00004011 StoreStrong->setDoesNotThrow();
4012 StoreStrong->setDebugLoc(Store->getDebugLoc());
4013
Dan Gohman0cdece42012-01-19 19:14:36 +00004014 // We can't set the tail flag yet, because we haven't yet determined
4015 // whether there are any escaping allocas. Remember this call, so that
4016 // we can set the tail flag once we know it's safe.
4017 StoreStrongCalls.insert(StoreStrong);
4018
John McCall9fbd3182011-06-15 23:37:01 +00004019 if (&*Iter == Store) ++Iter;
4020 Store->eraseFromParent();
4021 Release->eraseFromParent();
4022 EraseInstruction(Retain);
4023 if (Load->use_empty())
4024 Load->eraseFromParent();
4025}
4026
4027bool ObjCARCContract::doInitialization(Module &M) {
Dan Gohmand6bf2012012-04-13 18:57:48 +00004028 // If nothing in the Module uses ARC, don't do anything.
Dan Gohmanc4bcd4d2011-06-20 23:20:43 +00004029 Run = ModuleHasARC(M);
4030 if (!Run)
4031 return false;
4032
John McCall9fbd3182011-06-15 23:37:01 +00004033 // These are initialized lazily.
4034 StoreStrongCallee = 0;
4035 RetainAutoreleaseCallee = 0;
4036 RetainAutoreleaseRVCallee = 0;
4037
4038 // Initialize RetainRVMarker.
4039 RetainRVMarker = 0;
4040 if (NamedMDNode *NMD =
4041 M.getNamedMetadata("clang.arc.retainAutoreleasedReturnValueMarker"))
4042 if (NMD->getNumOperands() == 1) {
4043 const MDNode *N = NMD->getOperand(0);
4044 if (N->getNumOperands() == 1)
4045 if (const MDString *S = dyn_cast<MDString>(N->getOperand(0)))
4046 RetainRVMarker = S;
4047 }
4048
4049 return false;
4050}
4051
4052bool ObjCARCContract::runOnFunction(Function &F) {
4053 if (!EnableARCOpts)
4054 return false;
4055
Dan Gohmanc4bcd4d2011-06-20 23:20:43 +00004056 // If nothing in the Module uses ARC, don't do anything.
4057 if (!Run)
4058 return false;
4059
John McCall9fbd3182011-06-15 23:37:01 +00004060 Changed = false;
4061 AA = &getAnalysis<AliasAnalysis>();
4062 DT = &getAnalysis<DominatorTree>();
4063
4064 PA.setAA(&getAnalysis<AliasAnalysis>());
4065
Dan Gohman0cdece42012-01-19 19:14:36 +00004066 // Track whether it's ok to mark objc_storeStrong calls with the "tail"
4067 // keyword. Be conservative if the function has variadic arguments.
4068 // It seems that functions which "return twice" are also unsafe for the
4069 // "tail" argument, because they are setjmp, which could need to
4070 // return to an earlier stack state.
Dan Gohman0daef3d2012-05-08 23:39:44 +00004071 bool TailOkForStoreStrongs = !F.isVarArg() &&
4072 !F.callsFunctionThatReturnsTwice();
Dan Gohman0cdece42012-01-19 19:14:36 +00004073
John McCall9fbd3182011-06-15 23:37:01 +00004074 // For ObjC library calls which return their argument, replace uses of the
4075 // argument with uses of the call return value, if it dominates the use. This
4076 // reduces register pressure.
4077 SmallPtrSet<Instruction *, 4> DependingInstructions;
4078 SmallPtrSet<const BasicBlock *, 4> Visited;
4079 for (inst_iterator I = inst_begin(&F), E = inst_end(&F); I != E; ) {
4080 Instruction *Inst = &*I++;
4081
4082 // Only these library routines return their argument. In particular,
4083 // objc_retainBlock does not necessarily return its argument.
4084 InstructionClass Class = GetBasicInstructionClass(Inst);
4085 switch (Class) {
4086 case IC_Retain:
4087 case IC_FusedRetainAutorelease:
4088 case IC_FusedRetainAutoreleaseRV:
4089 break;
4090 case IC_Autorelease:
4091 case IC_AutoreleaseRV:
4092 if (ContractAutorelease(F, Inst, Class, DependingInstructions, Visited))
4093 continue;
4094 break;
4095 case IC_RetainRV: {
4096 // If we're compiling for a target which needs a special inline-asm
4097 // marker to do the retainAutoreleasedReturnValue optimization,
4098 // insert it now.
4099 if (!RetainRVMarker)
4100 break;
4101 BasicBlock::iterator BBI = Inst;
Dan Gohman58fb3402012-06-25 19:47:37 +00004102 BasicBlock *InstParent = Inst->getParent();
4103
4104 // Step up to see if the call immediately precedes the RetainRV call.
4105 // If it's an invoke, we have to cross a block boundary. And we have
4106 // to carefully dodge no-op instructions.
4107 do {
4108 if (&*BBI == InstParent->begin()) {
4109 BasicBlock *Pred = InstParent->getSinglePredecessor();
4110 if (!Pred)
4111 goto decline_rv_optimization;
4112 BBI = Pred->getTerminator();
4113 break;
4114 }
4115 --BBI;
4116 } while (isNoopInstruction(BBI));
4117
John McCall9fbd3182011-06-15 23:37:01 +00004118 if (&*BBI == GetObjCArg(Inst)) {
Dan Gohmand6bf2012012-04-13 18:57:48 +00004119 Changed = true;
John McCall9fbd3182011-06-15 23:37:01 +00004120 InlineAsm *IA =
4121 InlineAsm::get(FunctionType::get(Type::getVoidTy(Inst->getContext()),
4122 /*isVarArg=*/false),
4123 RetainRVMarker->getString(),
4124 /*Constraints=*/"", /*hasSideEffects=*/true);
4125 CallInst::Create(IA, "", Inst);
4126 }
Dan Gohman58fb3402012-06-25 19:47:37 +00004127 decline_rv_optimization:
John McCall9fbd3182011-06-15 23:37:01 +00004128 break;
4129 }
4130 case IC_InitWeak: {
4131 // objc_initWeak(p, null) => *p = null
4132 CallInst *CI = cast<CallInst>(Inst);
4133 if (isNullOrUndef(CI->getArgOperand(1))) {
4134 Value *Null =
4135 ConstantPointerNull::get(cast<PointerType>(CI->getType()));
4136 Changed = true;
4137 new StoreInst(Null, CI->getArgOperand(0), CI);
4138 CI->replaceAllUsesWith(Null);
4139 CI->eraseFromParent();
4140 }
4141 continue;
4142 }
4143 case IC_Release:
4144 ContractRelease(Inst, I);
4145 continue;
Dan Gohman0cdece42012-01-19 19:14:36 +00004146 case IC_User:
4147 // Be conservative if the function has any alloca instructions.
4148 // Technically we only care about escaping alloca instructions,
4149 // but this is sufficient to handle some interesting cases.
4150 if (isa<AllocaInst>(Inst))
4151 TailOkForStoreStrongs = false;
4152 continue;
John McCall9fbd3182011-06-15 23:37:01 +00004153 default:
4154 continue;
4155 }
4156
4157 // Don't use GetObjCArg because we don't want to look through bitcasts
4158 // and such; to do the replacement, the argument must have type i8*.
4159 const Value *Arg = cast<CallInst>(Inst)->getArgOperand(0);
4160 for (;;) {
4161 // If we're compiling bugpointed code, don't get in trouble.
4162 if (!isa<Instruction>(Arg) && !isa<Argument>(Arg))
4163 break;
4164 // Look through the uses of the pointer.
4165 for (Value::const_use_iterator UI = Arg->use_begin(), UE = Arg->use_end();
4166 UI != UE; ) {
4167 Use &U = UI.getUse();
4168 unsigned OperandNo = UI.getOperandNo();
4169 ++UI; // Increment UI now, because we may unlink its element.
Dan Gohmand6bf2012012-04-13 18:57:48 +00004170
4171 // If the call's return value dominates a use of the call's argument
4172 // value, rewrite the use to use the return value. We check for
4173 // reachability here because an unreachable call is considered to
4174 // trivially dominate itself, which would lead us to rewriting its
4175 // argument in terms of its return value, which would lead to
4176 // infinite loops in GetObjCArg.
Dan Gohman0daef3d2012-05-08 23:39:44 +00004177 if (DT->isReachableFromEntry(U) && DT->dominates(Inst, U)) {
Rafael Espindola2453dff2012-03-15 15:52:59 +00004178 Changed = true;
4179 Instruction *Replacement = Inst;
4180 Type *UseTy = U.get()->getType();
Dan Gohman6c189ec2012-04-13 01:08:28 +00004181 if (PHINode *PHI = dyn_cast<PHINode>(U.getUser())) {
Rafael Espindola2453dff2012-03-15 15:52:59 +00004182 // For PHI nodes, insert the bitcast in the predecessor block.
Dan Gohman0daef3d2012-05-08 23:39:44 +00004183 unsigned ValNo = PHINode::getIncomingValueNumForOperand(OperandNo);
4184 BasicBlock *BB = PHI->getIncomingBlock(ValNo);
Rafael Espindola2453dff2012-03-15 15:52:59 +00004185 if (Replacement->getType() != UseTy)
4186 Replacement = new BitCastInst(Replacement, UseTy, "",
4187 &BB->back());
Dan Gohmand6bf2012012-04-13 18:57:48 +00004188 // While we're here, rewrite all edges for this PHI, rather
4189 // than just one use at a time, to minimize the number of
4190 // bitcasts we emit.
Dan Gohman447989c2012-04-27 18:56:31 +00004191 for (unsigned i = 0, e = PHI->getNumIncomingValues(); i != e; ++i)
Rafael Espindola2453dff2012-03-15 15:52:59 +00004192 if (PHI->getIncomingBlock(i) == BB) {
4193 // Keep the UI iterator valid.
4194 if (&PHI->getOperandUse(
4195 PHINode::getOperandNumForIncomingValue(i)) ==
4196 &UI.getUse())
4197 ++UI;
4198 PHI->setIncomingValue(i, Replacement);
4199 }
4200 } else {
4201 if (Replacement->getType() != UseTy)
Dan Gohman6c189ec2012-04-13 01:08:28 +00004202 Replacement = new BitCastInst(Replacement, UseTy, "",
4203 cast<Instruction>(U.getUser()));
Rafael Espindola2453dff2012-03-15 15:52:59 +00004204 U.set(Replacement);
John McCall9fbd3182011-06-15 23:37:01 +00004205 }
Rafael Espindola2453dff2012-03-15 15:52:59 +00004206 }
John McCall9fbd3182011-06-15 23:37:01 +00004207 }
4208
Dan Gohman447989c2012-04-27 18:56:31 +00004209 // If Arg is a no-op casted pointer, strip one level of casts and iterate.
John McCall9fbd3182011-06-15 23:37:01 +00004210 if (const BitCastInst *BI = dyn_cast<BitCastInst>(Arg))
4211 Arg = BI->getOperand(0);
4212 else if (isa<GEPOperator>(Arg) &&
4213 cast<GEPOperator>(Arg)->hasAllZeroIndices())
4214 Arg = cast<GEPOperator>(Arg)->getPointerOperand();
4215 else if (isa<GlobalAlias>(Arg) &&
4216 !cast<GlobalAlias>(Arg)->mayBeOverridden())
4217 Arg = cast<GlobalAlias>(Arg)->getAliasee();
4218 else
4219 break;
4220 }
4221 }
4222
Dan Gohman0cdece42012-01-19 19:14:36 +00004223 // If this function has no escaping allocas or suspicious vararg usage,
4224 // objc_storeStrong calls can be marked with the "tail" keyword.
4225 if (TailOkForStoreStrongs)
Dan Gohman0daef3d2012-05-08 23:39:44 +00004226 for (SmallPtrSet<CallInst *, 8>::iterator I = StoreStrongCalls.begin(),
Dan Gohman0cdece42012-01-19 19:14:36 +00004227 E = StoreStrongCalls.end(); I != E; ++I)
4228 (*I)->setTailCall();
4229 StoreStrongCalls.clear();
4230
John McCall9fbd3182011-06-15 23:37:01 +00004231 return Changed;
4232}