1 //===- ObjCARCContract.cpp - ObjC ARC Optimization ------------------------===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 /// \file 9 /// This file defines late ObjC ARC optimizations. ARC stands for Automatic 10 /// Reference Counting and is a system for managing reference counts for objects 11 /// in Objective C. 12 /// 13 /// This specific file mainly deals with ``contracting'' multiple lower level 14 /// operations into singular higher level operations through pattern matching. 15 /// 16 /// WARNING: This file knows about certain library functions. It recognizes them 17 /// by name, and hardwires knowledge of their semantics. 18 /// 19 /// WARNING: This file knows about how certain Objective-C library functions are 20 /// used. Naive LLVM IR transformations which would otherwise be 21 /// behavior-preserving may break these assumptions. 22 /// 23 //===----------------------------------------------------------------------===// 24 25 // TODO: ObjCARCContract could insert PHI nodes when uses aren't 26 // dominated by single calls. 27 28 #include "ARCRuntimeEntryPoints.h" 29 #include "DependencyAnalysis.h" 30 #include "ObjCARC.h" 31 #include "ProvenanceAnalysis.h" 32 #include "llvm/ADT/Statistic.h" 33 #include "llvm/Analysis/EHPersonalities.h" 34 #include "llvm/IR/Dominators.h" 35 #include "llvm/IR/InlineAsm.h" 36 #include "llvm/IR/Operator.h" 37 #include "llvm/InitializePasses.h" 38 #include "llvm/Support/CommandLine.h" 39 #include "llvm/Support/Debug.h" 40 #include "llvm/Support/raw_ostream.h" 41 42 using namespace llvm; 43 using namespace llvm::objcarc; 44 45 #define DEBUG_TYPE "objc-arc-contract" 46 47 STATISTIC(NumPeeps, "Number of calls peephole-optimized"); 48 STATISTIC(NumStoreStrongs, "Number objc_storeStrong calls formed"); 49 50 //===----------------------------------------------------------------------===// 51 // Declarations 52 //===----------------------------------------------------------------------===// 53 54 namespace { 55 /// Late ARC optimizations 56 /// 57 /// These change the IR in a way that makes it difficult to be analyzed by 58 /// ObjCARCOpt, so it's run late. 59 class ObjCARCContract : public FunctionPass { 60 bool Changed; 61 AliasAnalysis *AA; 62 DominatorTree *DT; 63 ProvenanceAnalysis PA; 64 ARCRuntimeEntryPoints EP; 65 66 /// A flag indicating whether this optimization pass should run. 67 bool Run; 68 69 /// The inline asm string to insert between calls and RetainRV calls to make 70 /// the optimization work on targets which need it. 71 const MDString *RVInstMarker; 72 73 /// The set of inserted objc_storeStrong calls. If at the end of walking the 74 /// function we have found no alloca instructions, these calls can be marked 75 /// "tail". 76 SmallPtrSet<CallInst *, 8> StoreStrongCalls; 77 78 /// Returns true if we eliminated Inst. 79 bool tryToPeepholeInstruction( 80 Function &F, Instruction *Inst, inst_iterator &Iter, 81 SmallPtrSetImpl<Instruction *> &DepInsts, 82 SmallPtrSetImpl<const BasicBlock *> &Visited, 83 bool &TailOkForStoreStrong, 84 const DenseMap<BasicBlock *, ColorVector> &BlockColors); 85 86 bool optimizeRetainCall(Function &F, Instruction *Retain); 87 88 bool 89 contractAutorelease(Function &F, Instruction *Autorelease, 90 ARCInstKind Class, 91 SmallPtrSetImpl<Instruction *> &DependingInstructions, 92 SmallPtrSetImpl<const BasicBlock *> &Visited); 93 94 void tryToContractReleaseIntoStoreStrong( 95 Instruction *Release, inst_iterator &Iter, 96 const DenseMap<BasicBlock *, ColorVector> &BlockColors); 97 98 void getAnalysisUsage(AnalysisUsage &AU) const override; 99 bool doInitialization(Module &M) override; 100 bool runOnFunction(Function &F) override; 101 102 public: 103 static char ID; 104 ObjCARCContract() : FunctionPass(ID) { 105 initializeObjCARCContractPass(*PassRegistry::getPassRegistry()); 106 } 107 }; 108 } 109 110 //===----------------------------------------------------------------------===// 111 // Implementation 112 //===----------------------------------------------------------------------===// 113 114 /// Turn objc_retain into objc_retainAutoreleasedReturnValue if the operand is a 115 /// return value. We do this late so we do not disrupt the dataflow analysis in 116 /// ObjCARCOpt. 117 bool ObjCARCContract::optimizeRetainCall(Function &F, Instruction *Retain) { 118 ImmutableCallSite CS(GetArgRCIdentityRoot(Retain)); 119 const Instruction *Call = CS.getInstruction(); 120 if (!Call) 121 return false; 122 if (Call->getParent() != Retain->getParent()) 123 return false; 124 125 // Check that the call is next to the retain. 126 BasicBlock::const_iterator I = ++Call->getIterator(); 127 while (IsNoopInstruction(&*I)) 128 ++I; 129 if (&*I != Retain) 130 return false; 131 132 // Turn it to an objc_retainAutoreleasedReturnValue. 133 Changed = true; 134 ++NumPeeps; 135 136 LLVM_DEBUG( 137 dbgs() << "Transforming objc_retain => " 138 "objc_retainAutoreleasedReturnValue since the operand is a " 139 "return value.\nOld: " 140 << *Retain << "\n"); 141 142 // We do not have to worry about tail calls/does not throw since 143 // retain/retainRV have the same properties. 144 Function *Decl = EP.get(ARCRuntimeEntryPointKind::RetainRV); 145 cast<CallInst>(Retain)->setCalledFunction(Decl); 146 147 LLVM_DEBUG(dbgs() << "New: " << *Retain << "\n"); 148 return true; 149 } 150 151 /// Merge an autorelease with a retain into a fused call. 152 bool ObjCARCContract::contractAutorelease( 153 Function &F, Instruction *Autorelease, ARCInstKind Class, 154 SmallPtrSetImpl<Instruction *> &DependingInstructions, 155 SmallPtrSetImpl<const BasicBlock *> &Visited) { 156 const Value *Arg = GetArgRCIdentityRoot(Autorelease); 157 158 // Check that there are no instructions between the retain and the autorelease 159 // (such as an autorelease_pop) which may change the count. 160 CallInst *Retain = nullptr; 161 if (Class == ARCInstKind::AutoreleaseRV) 162 FindDependencies(RetainAutoreleaseRVDep, Arg, 163 Autorelease->getParent(), Autorelease, 164 DependingInstructions, Visited, PA); 165 else 166 FindDependencies(RetainAutoreleaseDep, Arg, 167 Autorelease->getParent(), Autorelease, 168 DependingInstructions, Visited, PA); 169 170 Visited.clear(); 171 if (DependingInstructions.size() != 1) { 172 DependingInstructions.clear(); 173 return false; 174 } 175 176 Retain = dyn_cast_or_null<CallInst>(*DependingInstructions.begin()); 177 DependingInstructions.clear(); 178 179 if (!Retain || GetBasicARCInstKind(Retain) != ARCInstKind::Retain || 180 GetArgRCIdentityRoot(Retain) != Arg) 181 return false; 182 183 Changed = true; 184 ++NumPeeps; 185 186 LLVM_DEBUG(dbgs() << " Fusing retain/autorelease!\n" 187 " Autorelease:" 188 << *Autorelease 189 << "\n" 190 " Retain: " 191 << *Retain << "\n"); 192 193 Function *Decl = EP.get(Class == ARCInstKind::AutoreleaseRV 194 ? ARCRuntimeEntryPointKind::RetainAutoreleaseRV 195 : ARCRuntimeEntryPointKind::RetainAutorelease); 196 Retain->setCalledFunction(Decl); 197 198 LLVM_DEBUG(dbgs() << " New RetainAutorelease: " << *Retain << "\n"); 199 200 EraseInstruction(Autorelease); 201 return true; 202 } 203 204 static StoreInst *findSafeStoreForStoreStrongContraction(LoadInst *Load, 205 Instruction *Release, 206 ProvenanceAnalysis &PA, 207 AliasAnalysis *AA) { 208 StoreInst *Store = nullptr; 209 bool SawRelease = false; 210 211 // Get the location associated with Load. 212 MemoryLocation Loc = MemoryLocation::get(Load); 213 auto *LocPtr = Loc.Ptr->stripPointerCasts(); 214 215 // Walk down to find the store and the release, which may be in either order. 216 for (auto I = std::next(BasicBlock::iterator(Load)), 217 E = Load->getParent()->end(); 218 I != E; ++I) { 219 // If we found the store we were looking for and saw the release, 220 // break. There is no more work to be done. 221 if (Store && SawRelease) 222 break; 223 224 // Now we know that we have not seen either the store or the release. If I 225 // is the release, mark that we saw the release and continue. 226 Instruction *Inst = &*I; 227 if (Inst == Release) { 228 SawRelease = true; 229 continue; 230 } 231 232 // Otherwise, we check if Inst is a "good" store. Grab the instruction class 233 // of Inst. 234 ARCInstKind Class = GetBasicARCInstKind(Inst); 235 236 // If Inst is an unrelated retain, we don't care about it. 237 // 238 // TODO: This is one area where the optimization could be made more 239 // aggressive. 240 if (IsRetain(Class)) 241 continue; 242 243 // If we have seen the store, but not the release... 244 if (Store) { 245 // We need to make sure that it is safe to move the release from its 246 // current position to the store. This implies proving that any 247 // instruction in between Store and the Release conservatively can not use 248 // the RCIdentityRoot of Release. If we can prove we can ignore Inst, so 249 // continue... 250 if (!CanUse(Inst, Load, PA, Class)) { 251 continue; 252 } 253 254 // Otherwise, be conservative and return nullptr. 255 return nullptr; 256 } 257 258 // Ok, now we know we have not seen a store yet. See if Inst can write to 259 // our load location, if it can not, just ignore the instruction. 260 if (!isModSet(AA->getModRefInfo(Inst, Loc))) 261 continue; 262 263 Store = dyn_cast<StoreInst>(Inst); 264 265 // If Inst can, then check if Inst is a simple store. If Inst is not a 266 // store or a store that is not simple, then we have some we do not 267 // understand writing to this memory implying we can not move the load 268 // over the write to any subsequent store that we may find. 269 if (!Store || !Store->isSimple()) 270 return nullptr; 271 272 // Then make sure that the pointer we are storing to is Ptr. If so, we 273 // found our Store! 274 if (Store->getPointerOperand()->stripPointerCasts() == LocPtr) 275 continue; 276 277 // Otherwise, we have an unknown store to some other ptr that clobbers 278 // Loc.Ptr. Bail! 279 return nullptr; 280 } 281 282 // If we did not find the store or did not see the release, fail. 283 if (!Store || !SawRelease) 284 return nullptr; 285 286 // We succeeded! 287 return Store; 288 } 289 290 static Instruction * 291 findRetainForStoreStrongContraction(Value *New, StoreInst *Store, 292 Instruction *Release, 293 ProvenanceAnalysis &PA) { 294 // Walk up from the Store to find the retain. 295 BasicBlock::iterator I = Store->getIterator(); 296 BasicBlock::iterator Begin = Store->getParent()->begin(); 297 while (I != Begin && GetBasicARCInstKind(&*I) != ARCInstKind::Retain) { 298 Instruction *Inst = &*I; 299 300 // It is only safe to move the retain to the store if we can prove 301 // conservatively that nothing besides the release can decrement reference 302 // counts in between the retain and the store. 303 if (CanDecrementRefCount(Inst, New, PA) && Inst != Release) 304 return nullptr; 305 --I; 306 } 307 Instruction *Retain = &*I; 308 if (GetBasicARCInstKind(Retain) != ARCInstKind::Retain) 309 return nullptr; 310 if (GetArgRCIdentityRoot(Retain) != New) 311 return nullptr; 312 return Retain; 313 } 314 315 /// Create a call instruction with the correct funclet token. Should be used 316 /// instead of calling CallInst::Create directly. 317 static CallInst * 318 createCallInst(FunctionType *FTy, Value *Func, ArrayRef<Value *> Args, 319 const Twine &NameStr, Instruction *InsertBefore, 320 const DenseMap<BasicBlock *, ColorVector> &BlockColors) { 321 SmallVector<OperandBundleDef, 1> OpBundles; 322 if (!BlockColors.empty()) { 323 const ColorVector &CV = BlockColors.find(InsertBefore->getParent())->second; 324 assert(CV.size() == 1 && "non-unique color for block!"); 325 Instruction *EHPad = CV.front()->getFirstNonPHI(); 326 if (EHPad->isEHPad()) 327 OpBundles.emplace_back("funclet", EHPad); 328 } 329 330 return CallInst::Create(FTy, Func, Args, OpBundles, NameStr, InsertBefore); 331 } 332 333 static CallInst * 334 createCallInst(FunctionCallee Func, ArrayRef<Value *> Args, const Twine &NameStr, 335 Instruction *InsertBefore, 336 const DenseMap<BasicBlock *, ColorVector> &BlockColors) { 337 return createCallInst(Func.getFunctionType(), Func.getCallee(), Args, NameStr, 338 InsertBefore, BlockColors); 339 } 340 341 /// Attempt to merge an objc_release with a store, load, and objc_retain to form 342 /// an objc_storeStrong. An objc_storeStrong: 343 /// 344 /// objc_storeStrong(i8** %old_ptr, i8* new_value) 345 /// 346 /// is equivalent to the following IR sequence: 347 /// 348 /// ; Load old value. 349 /// %old_value = load i8** %old_ptr (1) 350 /// 351 /// ; Increment the new value and then release the old value. This must occur 352 /// ; in order in case old_value releases new_value in its destructor causing 353 /// ; us to potentially have a dangling ptr. 354 /// tail call i8* @objc_retain(i8* %new_value) (2) 355 /// tail call void @objc_release(i8* %old_value) (3) 356 /// 357 /// ; Store the new_value into old_ptr 358 /// store i8* %new_value, i8** %old_ptr (4) 359 /// 360 /// The safety of this optimization is based around the following 361 /// considerations: 362 /// 363 /// 1. We are forming the store strong at the store. Thus to perform this 364 /// optimization it must be safe to move the retain, load, and release to 365 /// (4). 366 /// 2. We need to make sure that any re-orderings of (1), (2), (3), (4) are 367 /// safe. 368 void ObjCARCContract::tryToContractReleaseIntoStoreStrong( 369 Instruction *Release, inst_iterator &Iter, 370 const DenseMap<BasicBlock *, ColorVector> &BlockColors) { 371 // See if we are releasing something that we just loaded. 372 auto *Load = dyn_cast<LoadInst>(GetArgRCIdentityRoot(Release)); 373 if (!Load || !Load->isSimple()) 374 return; 375 376 // For now, require everything to be in one basic block. 377 BasicBlock *BB = Release->getParent(); 378 if (Load->getParent() != BB) 379 return; 380 381 // First scan down the BB from Load, looking for a store of the RCIdentityRoot 382 // of Load's 383 StoreInst *Store = 384 findSafeStoreForStoreStrongContraction(Load, Release, PA, AA); 385 // If we fail, bail. 386 if (!Store) 387 return; 388 389 // Then find what new_value's RCIdentity Root is. 390 Value *New = GetRCIdentityRoot(Store->getValueOperand()); 391 392 // Then walk up the BB and look for a retain on New without any intervening 393 // instructions which conservatively might decrement ref counts. 394 Instruction *Retain = 395 findRetainForStoreStrongContraction(New, Store, Release, PA); 396 397 // If we fail, bail. 398 if (!Retain) 399 return; 400 401 Changed = true; 402 ++NumStoreStrongs; 403 404 LLVM_DEBUG( 405 llvm::dbgs() << " Contracting retain, release into objc_storeStrong.\n" 406 << " Old:\n" 407 << " Store: " << *Store << "\n" 408 << " Release: " << *Release << "\n" 409 << " Retain: " << *Retain << "\n" 410 << " Load: " << *Load << "\n"); 411 412 LLVMContext &C = Release->getContext(); 413 Type *I8X = PointerType::getUnqual(Type::getInt8Ty(C)); 414 Type *I8XX = PointerType::getUnqual(I8X); 415 416 Value *Args[] = { Load->getPointerOperand(), New }; 417 if (Args[0]->getType() != I8XX) 418 Args[0] = new BitCastInst(Args[0], I8XX, "", Store); 419 if (Args[1]->getType() != I8X) 420 Args[1] = new BitCastInst(Args[1], I8X, "", Store); 421 Function *Decl = EP.get(ARCRuntimeEntryPointKind::StoreStrong); 422 CallInst *StoreStrong = createCallInst(Decl, Args, "", Store, BlockColors); 423 StoreStrong->setDoesNotThrow(); 424 StoreStrong->setDebugLoc(Store->getDebugLoc()); 425 426 // We can't set the tail flag yet, because we haven't yet determined 427 // whether there are any escaping allocas. Remember this call, so that 428 // we can set the tail flag once we know it's safe. 429 StoreStrongCalls.insert(StoreStrong); 430 431 LLVM_DEBUG(llvm::dbgs() << " New Store Strong: " << *StoreStrong 432 << "\n"); 433 434 if (&*Iter == Retain) ++Iter; 435 if (&*Iter == Store) ++Iter; 436 Store->eraseFromParent(); 437 Release->eraseFromParent(); 438 EraseInstruction(Retain); 439 if (Load->use_empty()) 440 Load->eraseFromParent(); 441 } 442 443 bool ObjCARCContract::tryToPeepholeInstruction( 444 Function &F, Instruction *Inst, inst_iterator &Iter, 445 SmallPtrSetImpl<Instruction *> &DependingInsts, 446 SmallPtrSetImpl<const BasicBlock *> &Visited, bool &TailOkForStoreStrongs, 447 const DenseMap<BasicBlock *, ColorVector> &BlockColors) { 448 // Only these library routines return their argument. In particular, 449 // objc_retainBlock does not necessarily return its argument. 450 ARCInstKind Class = GetBasicARCInstKind(Inst); 451 switch (Class) { 452 case ARCInstKind::FusedRetainAutorelease: 453 case ARCInstKind::FusedRetainAutoreleaseRV: 454 return false; 455 case ARCInstKind::Autorelease: 456 case ARCInstKind::AutoreleaseRV: 457 return contractAutorelease(F, Inst, Class, DependingInsts, Visited); 458 case ARCInstKind::Retain: 459 // Attempt to convert retains to retainrvs if they are next to function 460 // calls. 461 if (!optimizeRetainCall(F, Inst)) 462 return false; 463 // If we succeed in our optimization, fall through. 464 LLVM_FALLTHROUGH; 465 case ARCInstKind::RetainRV: 466 case ARCInstKind::ClaimRV: { 467 // If we're compiling for a target which needs a special inline-asm 468 // marker to do the return value optimization, insert it now. 469 if (!RVInstMarker) 470 return false; 471 BasicBlock::iterator BBI = Inst->getIterator(); 472 BasicBlock *InstParent = Inst->getParent(); 473 474 // Step up to see if the call immediately precedes the RV call. 475 // If it's an invoke, we have to cross a block boundary. And we have 476 // to carefully dodge no-op instructions. 477 do { 478 if (BBI == InstParent->begin()) { 479 BasicBlock *Pred = InstParent->getSinglePredecessor(); 480 if (!Pred) 481 goto decline_rv_optimization; 482 BBI = Pred->getTerminator()->getIterator(); 483 break; 484 } 485 --BBI; 486 } while (IsNoopInstruction(&*BBI)); 487 488 if (&*BBI == GetArgRCIdentityRoot(Inst)) { 489 LLVM_DEBUG(dbgs() << "Adding inline asm marker for the return value " 490 "optimization.\n"); 491 Changed = true; 492 InlineAsm *IA = 493 InlineAsm::get(FunctionType::get(Type::getVoidTy(Inst->getContext()), 494 /*isVarArg=*/false), 495 RVInstMarker->getString(), 496 /*Constraints=*/"", /*hasSideEffects=*/true); 497 498 createCallInst(IA, None, "", Inst, BlockColors); 499 } 500 decline_rv_optimization: 501 return false; 502 } 503 case ARCInstKind::InitWeak: { 504 // objc_initWeak(p, null) => *p = null 505 CallInst *CI = cast<CallInst>(Inst); 506 if (IsNullOrUndef(CI->getArgOperand(1))) { 507 Value *Null = ConstantPointerNull::get(cast<PointerType>(CI->getType())); 508 Changed = true; 509 new StoreInst(Null, CI->getArgOperand(0), CI); 510 511 LLVM_DEBUG(dbgs() << "OBJCARCContract: Old = " << *CI << "\n" 512 << " New = " << *Null << "\n"); 513 514 CI->replaceAllUsesWith(Null); 515 CI->eraseFromParent(); 516 } 517 return true; 518 } 519 case ARCInstKind::Release: 520 // Try to form an objc store strong from our release. If we fail, there is 521 // nothing further to do below, so continue. 522 tryToContractReleaseIntoStoreStrong(Inst, Iter, BlockColors); 523 return true; 524 case ARCInstKind::User: 525 // Be conservative if the function has any alloca instructions. 526 // Technically we only care about escaping alloca instructions, 527 // but this is sufficient to handle some interesting cases. 528 if (isa<AllocaInst>(Inst)) 529 TailOkForStoreStrongs = false; 530 return true; 531 case ARCInstKind::IntrinsicUser: 532 // Remove calls to @llvm.objc.clang.arc.use(...). 533 Inst->eraseFromParent(); 534 return true; 535 default: 536 return true; 537 } 538 } 539 540 //===----------------------------------------------------------------------===// 541 // Top Level Driver 542 //===----------------------------------------------------------------------===// 543 544 bool ObjCARCContract::runOnFunction(Function &F) { 545 if (!EnableARCOpts) 546 return false; 547 548 // If nothing in the Module uses ARC, don't do anything. 549 if (!Run) 550 return false; 551 552 Changed = false; 553 AA = &getAnalysis<AAResultsWrapperPass>().getAAResults(); 554 DT = &getAnalysis<DominatorTreeWrapperPass>().getDomTree(); 555 556 PA.setAA(&getAnalysis<AAResultsWrapperPass>().getAAResults()); 557 558 DenseMap<BasicBlock *, ColorVector> BlockColors; 559 if (F.hasPersonalityFn() && 560 isScopedEHPersonality(classifyEHPersonality(F.getPersonalityFn()))) 561 BlockColors = colorEHFunclets(F); 562 563 LLVM_DEBUG(llvm::dbgs() << "**** ObjCARC Contract ****\n"); 564 565 // Track whether it's ok to mark objc_storeStrong calls with the "tail" 566 // keyword. Be conservative if the function has variadic arguments. 567 // It seems that functions which "return twice" are also unsafe for the 568 // "tail" argument, because they are setjmp, which could need to 569 // return to an earlier stack state. 570 bool TailOkForStoreStrongs = 571 !F.isVarArg() && !F.callsFunctionThatReturnsTwice(); 572 573 // For ObjC library calls which return their argument, replace uses of the 574 // argument with uses of the call return value, if it dominates the use. This 575 // reduces register pressure. 576 SmallPtrSet<Instruction *, 4> DependingInstructions; 577 SmallPtrSet<const BasicBlock *, 4> Visited; 578 579 for (inst_iterator I = inst_begin(&F), E = inst_end(&F); I != E;) { 580 Instruction *Inst = &*I++; 581 582 LLVM_DEBUG(dbgs() << "Visiting: " << *Inst << "\n"); 583 584 // First try to peephole Inst. If there is nothing further we can do in 585 // terms of undoing objc-arc-expand, process the next inst. 586 if (tryToPeepholeInstruction(F, Inst, I, DependingInstructions, Visited, 587 TailOkForStoreStrongs, BlockColors)) 588 continue; 589 590 // Otherwise, try to undo objc-arc-expand. 591 592 // Don't use GetArgRCIdentityRoot because we don't want to look through bitcasts 593 // and such; to do the replacement, the argument must have type i8*. 594 595 // Function for replacing uses of Arg dominated by Inst. 596 auto ReplaceArgUses = [Inst, this](Value *Arg) { 597 // If we're compiling bugpointed code, don't get in trouble. 598 if (!isa<Instruction>(Arg) && !isa<Argument>(Arg)) 599 return; 600 601 // Look through the uses of the pointer. 602 for (Value::use_iterator UI = Arg->use_begin(), UE = Arg->use_end(); 603 UI != UE; ) { 604 // Increment UI now, because we may unlink its element. 605 Use &U = *UI++; 606 unsigned OperandNo = U.getOperandNo(); 607 608 // If the call's return value dominates a use of the call's argument 609 // value, rewrite the use to use the return value. We check for 610 // reachability here because an unreachable call is considered to 611 // trivially dominate itself, which would lead us to rewriting its 612 // argument in terms of its return value, which would lead to 613 // infinite loops in GetArgRCIdentityRoot. 614 if (!DT->isReachableFromEntry(U) || !DT->dominates(Inst, U)) 615 continue; 616 617 Changed = true; 618 Instruction *Replacement = Inst; 619 Type *UseTy = U.get()->getType(); 620 if (PHINode *PHI = dyn_cast<PHINode>(U.getUser())) { 621 // For PHI nodes, insert the bitcast in the predecessor block. 622 unsigned ValNo = PHINode::getIncomingValueNumForOperand(OperandNo); 623 BasicBlock *IncomingBB = PHI->getIncomingBlock(ValNo); 624 if (Replacement->getType() != UseTy) { 625 // A catchswitch is both a pad and a terminator, meaning a basic 626 // block with a catchswitch has no insertion point. Keep going up 627 // the dominator tree until we find a non-catchswitch. 628 BasicBlock *InsertBB = IncomingBB; 629 while (isa<CatchSwitchInst>(InsertBB->getFirstNonPHI())) { 630 InsertBB = DT->getNode(InsertBB)->getIDom()->getBlock(); 631 } 632 633 assert(DT->dominates(Inst, &InsertBB->back()) && 634 "Invalid insertion point for bitcast"); 635 Replacement = 636 new BitCastInst(Replacement, UseTy, "", &InsertBB->back()); 637 } 638 639 // While we're here, rewrite all edges for this PHI, rather 640 // than just one use at a time, to minimize the number of 641 // bitcasts we emit. 642 for (unsigned i = 0, e = PHI->getNumIncomingValues(); i != e; ++i) 643 if (PHI->getIncomingBlock(i) == IncomingBB) { 644 // Keep the UI iterator valid. 645 if (UI != UE && 646 &PHI->getOperandUse( 647 PHINode::getOperandNumForIncomingValue(i)) == &*UI) 648 ++UI; 649 PHI->setIncomingValue(i, Replacement); 650 } 651 } else { 652 if (Replacement->getType() != UseTy) 653 Replacement = new BitCastInst(Replacement, UseTy, "", 654 cast<Instruction>(U.getUser())); 655 U.set(Replacement); 656 } 657 } 658 }; 659 660 Value *Arg = cast<CallInst>(Inst)->getArgOperand(0); 661 Value *OrigArg = Arg; 662 663 // TODO: Change this to a do-while. 664 for (;;) { 665 ReplaceArgUses(Arg); 666 667 // If Arg is a no-op casted pointer, strip one level of casts and iterate. 668 if (const BitCastInst *BI = dyn_cast<BitCastInst>(Arg)) 669 Arg = BI->getOperand(0); 670 else if (isa<GEPOperator>(Arg) && 671 cast<GEPOperator>(Arg)->hasAllZeroIndices()) 672 Arg = cast<GEPOperator>(Arg)->getPointerOperand(); 673 else if (isa<GlobalAlias>(Arg) && 674 !cast<GlobalAlias>(Arg)->isInterposable()) 675 Arg = cast<GlobalAlias>(Arg)->getAliasee(); 676 else { 677 // If Arg is a PHI node, get PHIs that are equivalent to it and replace 678 // their uses. 679 if (PHINode *PN = dyn_cast<PHINode>(Arg)) { 680 SmallVector<Value *, 1> PHIList; 681 getEquivalentPHIs(*PN, PHIList); 682 for (Value *PHI : PHIList) 683 ReplaceArgUses(PHI); 684 } 685 break; 686 } 687 } 688 689 // Replace bitcast users of Arg that are dominated by Inst. 690 SmallVector<BitCastInst *, 2> BitCastUsers; 691 692 // Add all bitcast users of the function argument first. 693 for (User *U : OrigArg->users()) 694 if (auto *BC = dyn_cast<BitCastInst>(U)) 695 BitCastUsers.push_back(BC); 696 697 // Replace the bitcasts with the call return. Iterate until list is empty. 698 while (!BitCastUsers.empty()) { 699 auto *BC = BitCastUsers.pop_back_val(); 700 for (User *U : BC->users()) 701 if (auto *B = dyn_cast<BitCastInst>(U)) 702 BitCastUsers.push_back(B); 703 704 ReplaceArgUses(BC); 705 } 706 } 707 708 // If this function has no escaping allocas or suspicious vararg usage, 709 // objc_storeStrong calls can be marked with the "tail" keyword. 710 if (TailOkForStoreStrongs) 711 for (CallInst *CI : StoreStrongCalls) 712 CI->setTailCall(); 713 StoreStrongCalls.clear(); 714 715 return Changed; 716 } 717 718 //===----------------------------------------------------------------------===// 719 // Misc Pass Manager 720 //===----------------------------------------------------------------------===// 721 722 char ObjCARCContract::ID = 0; 723 INITIALIZE_PASS_BEGIN(ObjCARCContract, "objc-arc-contract", 724 "ObjC ARC contraction", false, false) 725 INITIALIZE_PASS_DEPENDENCY(AAResultsWrapperPass) 726 INITIALIZE_PASS_DEPENDENCY(DominatorTreeWrapperPass) 727 INITIALIZE_PASS_END(ObjCARCContract, "objc-arc-contract", 728 "ObjC ARC contraction", false, false) 729 730 void ObjCARCContract::getAnalysisUsage(AnalysisUsage &AU) const { 731 AU.addRequired<AAResultsWrapperPass>(); 732 AU.addRequired<DominatorTreeWrapperPass>(); 733 AU.setPreservesCFG(); 734 } 735 736 Pass *llvm::createObjCARCContractPass() { return new ObjCARCContract(); } 737 738 bool ObjCARCContract::doInitialization(Module &M) { 739 // If nothing in the Module uses ARC, don't do anything. 740 Run = ModuleHasARC(M); 741 if (!Run) 742 return false; 743 744 EP.init(&M); 745 746 // Initialize RVInstMarker. 747 const char *MarkerKey = "clang.arc.retainAutoreleasedReturnValueMarker"; 748 RVInstMarker = dyn_cast_or_null<MDString>(M.getModuleFlag(MarkerKey)); 749 750 return false; 751 } 752