1 //===-- StructurizeCFG.cpp ------------------------------------------------===// 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 #include "llvm/Transforms/Scalar.h" 11 #include "llvm/ADT/MapVector.h" 12 #include "llvm/ADT/PostOrderIterator.h" 13 #include "llvm/ADT/SCCIterator.h" 14 #include "llvm/Analysis/DivergenceAnalysis.h" 15 #include "llvm/Analysis/LoopInfo.h" 16 #include "llvm/Analysis/RegionInfo.h" 17 #include "llvm/Analysis/RegionIterator.h" 18 #include "llvm/Analysis/RegionPass.h" 19 #include "llvm/IR/Module.h" 20 #include "llvm/IR/PatternMatch.h" 21 #include "llvm/Support/Debug.h" 22 #include "llvm/Support/raw_ostream.h" 23 #include "llvm/Transforms/Utils/SSAUpdater.h" 24 25 using namespace llvm; 26 using namespace llvm::PatternMatch; 27 28 #define DEBUG_TYPE "structurizecfg" 29 30 namespace { 31 32 // Definition of the complex types used in this pass. 33 34 typedef std::pair<BasicBlock *, Value *> BBValuePair; 35 36 typedef SmallVector<RegionNode*, 8> RNVector; 37 typedef SmallVector<BasicBlock*, 8> BBVector; 38 typedef SmallVector<BranchInst*, 8> BranchVector; 39 typedef SmallVector<BBValuePair, 2> BBValueVector; 40 41 typedef SmallPtrSet<BasicBlock *, 8> BBSet; 42 43 typedef MapVector<PHINode *, BBValueVector> PhiMap; 44 typedef MapVector<BasicBlock *, BBVector> BB2BBVecMap; 45 46 typedef DenseMap<DomTreeNode *, unsigned> DTN2UnsignedMap; 47 typedef DenseMap<BasicBlock *, PhiMap> BBPhiMap; 48 typedef DenseMap<BasicBlock *, Value *> BBPredicates; 49 typedef DenseMap<BasicBlock *, BBPredicates> PredMap; 50 typedef DenseMap<BasicBlock *, BasicBlock*> BB2BBMap; 51 52 // The name for newly created blocks. 53 54 static const char *const FlowBlockName = "Flow"; 55 56 /// @brief Find the nearest common dominator for multiple BasicBlocks 57 /// 58 /// Helper class for StructurizeCFG 59 /// TODO: Maybe move into common code 60 class NearestCommonDominator { 61 DominatorTree *DT; 62 63 DTN2UnsignedMap IndexMap; 64 65 BasicBlock *Result; 66 unsigned ResultIndex; 67 bool ExplicitMentioned; 68 69 public: 70 /// \brief Start a new query 71 NearestCommonDominator(DominatorTree *DomTree) { 72 DT = DomTree; 73 Result = nullptr; 74 } 75 76 /// \brief Add BB to the resulting dominator 77 void addBlock(BasicBlock *BB, bool Remember = true) { 78 DomTreeNode *Node = DT->getNode(BB); 79 80 if (!Result) { 81 unsigned Numbering = 0; 82 for (;Node;Node = Node->getIDom()) 83 IndexMap[Node] = ++Numbering; 84 Result = BB; 85 ResultIndex = 1; 86 ExplicitMentioned = Remember; 87 return; 88 } 89 90 for (;Node;Node = Node->getIDom()) 91 if (IndexMap.count(Node)) 92 break; 93 else 94 IndexMap[Node] = 0; 95 96 assert(Node && "Dominator tree invalid!"); 97 98 unsigned Numbering = IndexMap[Node]; 99 if (Numbering > ResultIndex) { 100 Result = Node->getBlock(); 101 ResultIndex = Numbering; 102 ExplicitMentioned = Remember && (Result == BB); 103 } else if (Numbering == ResultIndex) { 104 ExplicitMentioned |= Remember; 105 } 106 } 107 108 /// \brief Is "Result" one of the BBs added with "Remember" = True? 109 bool wasResultExplicitMentioned() { 110 return ExplicitMentioned; 111 } 112 113 /// \brief Get the query result 114 BasicBlock *getResult() { 115 return Result; 116 } 117 }; 118 119 /// @brief Transforms the control flow graph on one single entry/exit region 120 /// at a time. 121 /// 122 /// After the transform all "If"/"Then"/"Else" style control flow looks like 123 /// this: 124 /// 125 /// \verbatim 126 /// 1 127 /// || 128 /// | | 129 /// 2 | 130 /// | / 131 /// |/ 132 /// 3 133 /// || Where: 134 /// | | 1 = "If" block, calculates the condition 135 /// 4 | 2 = "Then" subregion, runs if the condition is true 136 /// | / 3 = "Flow" blocks, newly inserted flow blocks, rejoins the flow 137 /// |/ 4 = "Else" optional subregion, runs if the condition is false 138 /// 5 5 = "End" block, also rejoins the control flow 139 /// \endverbatim 140 /// 141 /// Control flow is expressed as a branch where the true exit goes into the 142 /// "Then"/"Else" region, while the false exit skips the region 143 /// The condition for the optional "Else" region is expressed as a PHI node. 144 /// The incomming values of the PHI node are true for the "If" edge and false 145 /// for the "Then" edge. 146 /// 147 /// Additionally to that even complicated loops look like this: 148 /// 149 /// \verbatim 150 /// 1 151 /// || 152 /// | | 153 /// 2 ^ Where: 154 /// | / 1 = "Entry" block 155 /// |/ 2 = "Loop" optional subregion, with all exits at "Flow" block 156 /// 3 3 = "Flow" block, with back edge to entry block 157 /// | 158 /// \endverbatim 159 /// 160 /// The back edge of the "Flow" block is always on the false side of the branch 161 /// while the true side continues the general flow. So the loop condition 162 /// consist of a network of PHI nodes where the true incoming values expresses 163 /// breaks and the false values expresses continue states. 164 class StructurizeCFG : public RegionPass { 165 bool SkipUniformRegions; 166 DivergenceAnalysis *DA; 167 168 Type *Boolean; 169 ConstantInt *BoolTrue; 170 ConstantInt *BoolFalse; 171 UndefValue *BoolUndef; 172 173 Function *Func; 174 Region *ParentRegion; 175 176 DominatorTree *DT; 177 LoopInfo *LI; 178 179 RNVector Order; 180 BBSet Visited; 181 182 BBPhiMap DeletedPhis; 183 BB2BBVecMap AddedPhis; 184 185 PredMap Predicates; 186 BranchVector Conditions; 187 188 BB2BBMap Loops; 189 PredMap LoopPreds; 190 BranchVector LoopConds; 191 192 RegionNode *PrevNode; 193 194 void orderNodes(); 195 196 void analyzeLoops(RegionNode *N); 197 198 Value *invert(Value *Condition); 199 200 Value *buildCondition(BranchInst *Term, unsigned Idx, bool Invert); 201 202 void gatherPredicates(RegionNode *N); 203 204 void collectInfos(); 205 206 void insertConditions(bool Loops); 207 208 void delPhiValues(BasicBlock *From, BasicBlock *To); 209 210 void addPhiValues(BasicBlock *From, BasicBlock *To); 211 212 void setPhiValues(); 213 214 void killTerminator(BasicBlock *BB); 215 216 void changeExit(RegionNode *Node, BasicBlock *NewExit, 217 bool IncludeDominator); 218 219 BasicBlock *getNextFlow(BasicBlock *Dominator); 220 221 BasicBlock *needPrefix(bool NeedEmpty); 222 223 BasicBlock *needPostfix(BasicBlock *Flow, bool ExitUseAllowed); 224 225 void setPrevNode(BasicBlock *BB); 226 227 bool dominatesPredicates(BasicBlock *BB, RegionNode *Node); 228 229 bool isPredictableTrue(RegionNode *Node); 230 231 void wireFlow(bool ExitUseAllowed, BasicBlock *LoopEnd); 232 233 void handleLoops(bool ExitUseAllowed, BasicBlock *LoopEnd); 234 235 void createFlow(); 236 237 void rebuildSSA(); 238 239 bool hasOnlyUniformBranches(const Region *R); 240 241 public: 242 static char ID; 243 244 StructurizeCFG() : 245 RegionPass(ID), SkipUniformRegions(false) { 246 initializeStructurizeCFGPass(*PassRegistry::getPassRegistry()); 247 } 248 249 StructurizeCFG(bool SkipUniformRegions) : 250 RegionPass(ID), SkipUniformRegions(SkipUniformRegions) { 251 initializeStructurizeCFGPass(*PassRegistry::getPassRegistry()); 252 } 253 254 using Pass::doInitialization; 255 bool doInitialization(Region *R, RGPassManager &RGM) override; 256 257 bool runOnRegion(Region *R, RGPassManager &RGM) override; 258 259 const char *getPassName() const override { 260 return "Structurize control flow"; 261 } 262 263 void getAnalysisUsage(AnalysisUsage &AU) const override { 264 if (SkipUniformRegions) 265 AU.addRequired<DivergenceAnalysis>(); 266 AU.addRequiredID(LowerSwitchID); 267 AU.addRequired<DominatorTreeWrapperPass>(); 268 AU.addRequired<LoopInfoWrapperPass>(); 269 AU.addPreserved<DominatorTreeWrapperPass>(); 270 RegionPass::getAnalysisUsage(AU); 271 } 272 }; 273 274 } // end anonymous namespace 275 276 char StructurizeCFG::ID = 0; 277 278 INITIALIZE_PASS_BEGIN(StructurizeCFG, "structurizecfg", "Structurize the CFG", 279 false, false) 280 INITIALIZE_PASS_DEPENDENCY(DivergenceAnalysis) 281 INITIALIZE_PASS_DEPENDENCY(LowerSwitch) 282 INITIALIZE_PASS_DEPENDENCY(DominatorTreeWrapperPass) 283 INITIALIZE_PASS_DEPENDENCY(RegionInfoPass) 284 INITIALIZE_PASS_END(StructurizeCFG, "structurizecfg", "Structurize the CFG", 285 false, false) 286 287 /// \brief Initialize the types and constants used in the pass 288 bool StructurizeCFG::doInitialization(Region *R, RGPassManager &RGM) { 289 LLVMContext &Context = R->getEntry()->getContext(); 290 291 Boolean = Type::getInt1Ty(Context); 292 BoolTrue = ConstantInt::getTrue(Context); 293 BoolFalse = ConstantInt::getFalse(Context); 294 BoolUndef = UndefValue::get(Boolean); 295 296 return false; 297 } 298 299 /// \brief Build up the general order of nodes 300 void StructurizeCFG::orderNodes() { 301 RNVector TempOrder; 302 ReversePostOrderTraversal<Region*> RPOT(ParentRegion); 303 TempOrder.append(RPOT.begin(), RPOT.end()); 304 305 std::map<Loop*, unsigned> LoopBlocks; 306 307 308 // The reverse post-order traversal of the list gives us an ordering close 309 // to what we want. The only problem with it is that sometimes backedges 310 // for outer loops will be visited before backedges for inner loops. 311 for (RegionNode *RN : TempOrder) { 312 BasicBlock *BB = RN->getEntry(); 313 Loop *Loop = LI->getLoopFor(BB); 314 ++LoopBlocks[Loop]; 315 } 316 317 unsigned CurrentLoopDepth = 0; 318 Loop *CurrentLoop = nullptr; 319 BBSet TempVisited; 320 for (RNVector::iterator I = TempOrder.begin(), E = TempOrder.end(); I != E; ++I) { 321 BasicBlock *BB = (*I)->getEntry(); 322 unsigned LoopDepth = LI->getLoopDepth(BB); 323 324 if (std::find(Order.begin(), Order.end(), *I) != Order.end()) 325 continue; 326 327 if (LoopDepth < CurrentLoopDepth) { 328 // Make sure we have visited all blocks in this loop before moving back to 329 // the outer loop. 330 331 RNVector::iterator LoopI = I; 332 while (unsigned &BlockCount = LoopBlocks[CurrentLoop]) { 333 LoopI++; 334 BasicBlock *LoopBB = (*LoopI)->getEntry(); 335 if (LI->getLoopFor(LoopBB) == CurrentLoop) { 336 --BlockCount; 337 Order.push_back(*LoopI); 338 } 339 } 340 } 341 342 CurrentLoop = LI->getLoopFor(BB); 343 if (CurrentLoop) { 344 LoopBlocks[CurrentLoop]--; 345 } 346 347 CurrentLoopDepth = LoopDepth; 348 Order.push_back(*I); 349 } 350 351 // This pass originally used a post-order traversal and then operated on 352 // the list in reverse. Now that we are using a reverse post-order traversal 353 // rather than re-working the whole pass to operate on the list in order, 354 // we just reverse the list and continue to operate on it in reverse. 355 std::reverse(Order.begin(), Order.end()); 356 } 357 358 /// \brief Determine the end of the loops 359 void StructurizeCFG::analyzeLoops(RegionNode *N) { 360 if (N->isSubRegion()) { 361 // Test for exit as back edge 362 BasicBlock *Exit = N->getNodeAs<Region>()->getExit(); 363 if (Visited.count(Exit)) 364 Loops[Exit] = N->getEntry(); 365 366 } else { 367 // Test for sucessors as back edge 368 BasicBlock *BB = N->getNodeAs<BasicBlock>(); 369 BranchInst *Term = cast<BranchInst>(BB->getTerminator()); 370 371 for (BasicBlock *Succ : Term->successors()) 372 if (Visited.count(Succ)) 373 Loops[Succ] = BB; 374 } 375 } 376 377 /// \brief Invert the given condition 378 Value *StructurizeCFG::invert(Value *Condition) { 379 // First: Check if it's a constant 380 if (Constant *C = dyn_cast<Constant>(Condition)) 381 return ConstantExpr::getNot(C); 382 383 // Second: If the condition is already inverted, return the original value 384 if (match(Condition, m_Not(m_Value(Condition)))) 385 return Condition; 386 387 if (Instruction *Inst = dyn_cast<Instruction>(Condition)) { 388 // Third: Check all the users for an invert 389 BasicBlock *Parent = Inst->getParent(); 390 for (User *U : Condition->users()) 391 if (Instruction *I = dyn_cast<Instruction>(U)) 392 if (I->getParent() == Parent && match(I, m_Not(m_Specific(Condition)))) 393 return I; 394 395 // Last option: Create a new instruction 396 return BinaryOperator::CreateNot(Condition, "", Parent->getTerminator()); 397 } 398 399 if (Argument *Arg = dyn_cast<Argument>(Condition)) { 400 BasicBlock &EntryBlock = Arg->getParent()->getEntryBlock(); 401 return BinaryOperator::CreateNot(Condition, 402 Arg->getName() + ".inv", 403 EntryBlock.getTerminator()); 404 } 405 406 llvm_unreachable("Unhandled condition to invert"); 407 } 408 409 /// \brief Build the condition for one edge 410 Value *StructurizeCFG::buildCondition(BranchInst *Term, unsigned Idx, 411 bool Invert) { 412 Value *Cond = Invert ? BoolFalse : BoolTrue; 413 if (Term->isConditional()) { 414 Cond = Term->getCondition(); 415 416 if (Idx != (unsigned)Invert) 417 Cond = invert(Cond); 418 } 419 return Cond; 420 } 421 422 /// \brief Analyze the predecessors of each block and build up predicates 423 void StructurizeCFG::gatherPredicates(RegionNode *N) { 424 RegionInfo *RI = ParentRegion->getRegionInfo(); 425 BasicBlock *BB = N->getEntry(); 426 BBPredicates &Pred = Predicates[BB]; 427 BBPredicates &LPred = LoopPreds[BB]; 428 429 for (pred_iterator PI = pred_begin(BB), PE = pred_end(BB); 430 PI != PE; ++PI) { 431 432 // Ignore it if it's a branch from outside into our region entry 433 if (!ParentRegion->contains(*PI)) 434 continue; 435 436 Region *R = RI->getRegionFor(*PI); 437 if (R == ParentRegion) { 438 439 // It's a top level block in our region 440 BranchInst *Term = cast<BranchInst>((*PI)->getTerminator()); 441 for (unsigned i = 0, e = Term->getNumSuccessors(); i != e; ++i) { 442 BasicBlock *Succ = Term->getSuccessor(i); 443 if (Succ != BB) 444 continue; 445 446 if (Visited.count(*PI)) { 447 // Normal forward edge 448 if (Term->isConditional()) { 449 // Try to treat it like an ELSE block 450 BasicBlock *Other = Term->getSuccessor(!i); 451 if (Visited.count(Other) && !Loops.count(Other) && 452 !Pred.count(Other) && !Pred.count(*PI)) { 453 454 Pred[Other] = BoolFalse; 455 Pred[*PI] = BoolTrue; 456 continue; 457 } 458 } 459 Pred[*PI] = buildCondition(Term, i, false); 460 461 } else { 462 // Back edge 463 LPred[*PI] = buildCondition(Term, i, true); 464 } 465 } 466 467 } else { 468 469 // It's an exit from a sub region 470 while (R->getParent() != ParentRegion) 471 R = R->getParent(); 472 473 // Edge from inside a subregion to its entry, ignore it 474 if (*R == *N) 475 continue; 476 477 BasicBlock *Entry = R->getEntry(); 478 if (Visited.count(Entry)) 479 Pred[Entry] = BoolTrue; 480 else 481 LPred[Entry] = BoolFalse; 482 } 483 } 484 } 485 486 /// \brief Collect various loop and predicate infos 487 void StructurizeCFG::collectInfos() { 488 // Reset predicate 489 Predicates.clear(); 490 491 // and loop infos 492 Loops.clear(); 493 LoopPreds.clear(); 494 495 // Reset the visited nodes 496 Visited.clear(); 497 498 for (RegionNode *RN : reverse(Order)) { 499 500 DEBUG(dbgs() << "Visiting: " 501 << (RN->isSubRegion() ? "SubRegion with entry: " : "") 502 << RN->getEntry()->getName() << " Loop Depth: " 503 << LI->getLoopDepth(RN->getEntry()) << "\n"); 504 505 // Analyze all the conditions leading to a node 506 gatherPredicates(RN); 507 508 // Remember that we've seen this node 509 Visited.insert(RN->getEntry()); 510 511 // Find the last back edges 512 analyzeLoops(RN); 513 } 514 } 515 516 /// \brief Insert the missing branch conditions 517 void StructurizeCFG::insertConditions(bool Loops) { 518 BranchVector &Conds = Loops ? LoopConds : Conditions; 519 Value *Default = Loops ? BoolTrue : BoolFalse; 520 SSAUpdater PhiInserter; 521 522 for (BranchInst *Term : Conds) { 523 assert(Term->isConditional()); 524 525 BasicBlock *Parent = Term->getParent(); 526 BasicBlock *SuccTrue = Term->getSuccessor(0); 527 BasicBlock *SuccFalse = Term->getSuccessor(1); 528 529 PhiInserter.Initialize(Boolean, ""); 530 PhiInserter.AddAvailableValue(&Func->getEntryBlock(), Default); 531 PhiInserter.AddAvailableValue(Loops ? SuccFalse : Parent, Default); 532 533 BBPredicates &Preds = Loops ? LoopPreds[SuccFalse] : Predicates[SuccTrue]; 534 535 NearestCommonDominator Dominator(DT); 536 Dominator.addBlock(Parent, false); 537 538 Value *ParentValue = nullptr; 539 for (BBPredicates::iterator PI = Preds.begin(), PE = Preds.end(); 540 PI != PE; ++PI) { 541 542 if (PI->first == Parent) { 543 ParentValue = PI->second; 544 break; 545 } 546 PhiInserter.AddAvailableValue(PI->first, PI->second); 547 Dominator.addBlock(PI->first); 548 } 549 550 if (ParentValue) { 551 Term->setCondition(ParentValue); 552 } else { 553 if (!Dominator.wasResultExplicitMentioned()) 554 PhiInserter.AddAvailableValue(Dominator.getResult(), Default); 555 556 Term->setCondition(PhiInserter.GetValueInMiddleOfBlock(Parent)); 557 } 558 } 559 } 560 561 /// \brief Remove all PHI values coming from "From" into "To" and remember 562 /// them in DeletedPhis 563 void StructurizeCFG::delPhiValues(BasicBlock *From, BasicBlock *To) { 564 PhiMap &Map = DeletedPhis[To]; 565 for (BasicBlock::iterator I = To->begin(), E = To->end(); 566 I != E && isa<PHINode>(*I);) { 567 568 PHINode &Phi = cast<PHINode>(*I++); 569 while (Phi.getBasicBlockIndex(From) != -1) { 570 Value *Deleted = Phi.removeIncomingValue(From, false); 571 Map[&Phi].push_back(std::make_pair(From, Deleted)); 572 } 573 } 574 } 575 576 /// \brief Add a dummy PHI value as soon as we knew the new predecessor 577 void StructurizeCFG::addPhiValues(BasicBlock *From, BasicBlock *To) { 578 for (BasicBlock::iterator I = To->begin(), E = To->end(); 579 I != E && isa<PHINode>(*I);) { 580 581 PHINode &Phi = cast<PHINode>(*I++); 582 Value *Undef = UndefValue::get(Phi.getType()); 583 Phi.addIncoming(Undef, From); 584 } 585 AddedPhis[To].push_back(From); 586 } 587 588 /// \brief Add the real PHI value as soon as everything is set up 589 void StructurizeCFG::setPhiValues() { 590 SSAUpdater Updater; 591 for (const auto &AddedPhi : AddedPhis) { 592 593 BasicBlock *To = AddedPhi.first; 594 const BBVector &From = AddedPhi.second; 595 596 if (!DeletedPhis.count(To)) 597 continue; 598 599 PhiMap &Map = DeletedPhis[To]; 600 for (const auto &PI : Map) { 601 602 PHINode *Phi = PI.first; 603 Value *Undef = UndefValue::get(Phi->getType()); 604 Updater.Initialize(Phi->getType(), ""); 605 Updater.AddAvailableValue(&Func->getEntryBlock(), Undef); 606 Updater.AddAvailableValue(To, Undef); 607 608 NearestCommonDominator Dominator(DT); 609 Dominator.addBlock(To, false); 610 for (const auto &VI : PI.second) { 611 612 Updater.AddAvailableValue(VI.first, VI.second); 613 Dominator.addBlock(VI.first); 614 } 615 616 if (!Dominator.wasResultExplicitMentioned()) 617 Updater.AddAvailableValue(Dominator.getResult(), Undef); 618 619 for (BasicBlock *FI : From) { 620 621 int Idx = Phi->getBasicBlockIndex(FI); 622 assert(Idx != -1); 623 Phi->setIncomingValue(Idx, Updater.GetValueAtEndOfBlock(FI)); 624 } 625 } 626 627 DeletedPhis.erase(To); 628 } 629 assert(DeletedPhis.empty()); 630 } 631 632 /// \brief Remove phi values from all successors and then remove the terminator. 633 void StructurizeCFG::killTerminator(BasicBlock *BB) { 634 TerminatorInst *Term = BB->getTerminator(); 635 if (!Term) 636 return; 637 638 for (succ_iterator SI = succ_begin(BB), SE = succ_end(BB); 639 SI != SE; ++SI) { 640 641 delPhiValues(BB, *SI); 642 } 643 644 Term->eraseFromParent(); 645 } 646 647 /// \brief Let node exit(s) point to NewExit 648 void StructurizeCFG::changeExit(RegionNode *Node, BasicBlock *NewExit, 649 bool IncludeDominator) { 650 if (Node->isSubRegion()) { 651 Region *SubRegion = Node->getNodeAs<Region>(); 652 BasicBlock *OldExit = SubRegion->getExit(); 653 BasicBlock *Dominator = nullptr; 654 655 // Find all the edges from the sub region to the exit 656 for (pred_iterator I = pred_begin(OldExit), E = pred_end(OldExit); 657 I != E;) { 658 659 BasicBlock *BB = *I++; 660 if (!SubRegion->contains(BB)) 661 continue; 662 663 // Modify the edges to point to the new exit 664 delPhiValues(BB, OldExit); 665 BB->getTerminator()->replaceUsesOfWith(OldExit, NewExit); 666 addPhiValues(BB, NewExit); 667 668 // Find the new dominator (if requested) 669 if (IncludeDominator) { 670 if (!Dominator) 671 Dominator = BB; 672 else 673 Dominator = DT->findNearestCommonDominator(Dominator, BB); 674 } 675 } 676 677 // Change the dominator (if requested) 678 if (Dominator) 679 DT->changeImmediateDominator(NewExit, Dominator); 680 681 // Update the region info 682 SubRegion->replaceExit(NewExit); 683 684 } else { 685 BasicBlock *BB = Node->getNodeAs<BasicBlock>(); 686 killTerminator(BB); 687 BranchInst::Create(NewExit, BB); 688 addPhiValues(BB, NewExit); 689 if (IncludeDominator) 690 DT->changeImmediateDominator(NewExit, BB); 691 } 692 } 693 694 /// \brief Create a new flow node and update dominator tree and region info 695 BasicBlock *StructurizeCFG::getNextFlow(BasicBlock *Dominator) { 696 LLVMContext &Context = Func->getContext(); 697 BasicBlock *Insert = Order.empty() ? ParentRegion->getExit() : 698 Order.back()->getEntry(); 699 BasicBlock *Flow = BasicBlock::Create(Context, FlowBlockName, 700 Func, Insert); 701 DT->addNewBlock(Flow, Dominator); 702 ParentRegion->getRegionInfo()->setRegionFor(Flow, ParentRegion); 703 return Flow; 704 } 705 706 /// \brief Create a new or reuse the previous node as flow node 707 BasicBlock *StructurizeCFG::needPrefix(bool NeedEmpty) { 708 BasicBlock *Entry = PrevNode->getEntry(); 709 710 if (!PrevNode->isSubRegion()) { 711 killTerminator(Entry); 712 if (!NeedEmpty || Entry->getFirstInsertionPt() == Entry->end()) 713 return Entry; 714 715 } 716 717 // create a new flow node 718 BasicBlock *Flow = getNextFlow(Entry); 719 720 // and wire it up 721 changeExit(PrevNode, Flow, true); 722 PrevNode = ParentRegion->getBBNode(Flow); 723 return Flow; 724 } 725 726 /// \brief Returns the region exit if possible, otherwise just a new flow node 727 BasicBlock *StructurizeCFG::needPostfix(BasicBlock *Flow, 728 bool ExitUseAllowed) { 729 if (Order.empty() && ExitUseAllowed) { 730 BasicBlock *Exit = ParentRegion->getExit(); 731 DT->changeImmediateDominator(Exit, Flow); 732 addPhiValues(Flow, Exit); 733 return Exit; 734 } 735 return getNextFlow(Flow); 736 } 737 738 /// \brief Set the previous node 739 void StructurizeCFG::setPrevNode(BasicBlock *BB) { 740 PrevNode = ParentRegion->contains(BB) ? ParentRegion->getBBNode(BB) 741 : nullptr; 742 } 743 744 /// \brief Does BB dominate all the predicates of Node ? 745 bool StructurizeCFG::dominatesPredicates(BasicBlock *BB, RegionNode *Node) { 746 BBPredicates &Preds = Predicates[Node->getEntry()]; 747 for (BBPredicates::iterator PI = Preds.begin(), PE = Preds.end(); 748 PI != PE; ++PI) { 749 750 if (!DT->dominates(BB, PI->first)) 751 return false; 752 } 753 return true; 754 } 755 756 /// \brief Can we predict that this node will always be called? 757 bool StructurizeCFG::isPredictableTrue(RegionNode *Node) { 758 BBPredicates &Preds = Predicates[Node->getEntry()]; 759 bool Dominated = false; 760 761 // Regionentry is always true 762 if (!PrevNode) 763 return true; 764 765 for (BBPredicates::iterator I = Preds.begin(), E = Preds.end(); 766 I != E; ++I) { 767 768 if (I->second != BoolTrue) 769 return false; 770 771 if (!Dominated && DT->dominates(I->first, PrevNode->getEntry())) 772 Dominated = true; 773 } 774 775 // TODO: The dominator check is too strict 776 return Dominated; 777 } 778 779 /// Take one node from the order vector and wire it up 780 void StructurizeCFG::wireFlow(bool ExitUseAllowed, 781 BasicBlock *LoopEnd) { 782 RegionNode *Node = Order.pop_back_val(); 783 Visited.insert(Node->getEntry()); 784 785 if (isPredictableTrue(Node)) { 786 // Just a linear flow 787 if (PrevNode) { 788 changeExit(PrevNode, Node->getEntry(), true); 789 } 790 PrevNode = Node; 791 792 } else { 793 // Insert extra prefix node (or reuse last one) 794 BasicBlock *Flow = needPrefix(false); 795 796 // Insert extra postfix node (or use exit instead) 797 BasicBlock *Entry = Node->getEntry(); 798 BasicBlock *Next = needPostfix(Flow, ExitUseAllowed); 799 800 // let it point to entry and next block 801 Conditions.push_back(BranchInst::Create(Entry, Next, BoolUndef, Flow)); 802 addPhiValues(Flow, Entry); 803 DT->changeImmediateDominator(Entry, Flow); 804 805 PrevNode = Node; 806 while (!Order.empty() && !Visited.count(LoopEnd) && 807 dominatesPredicates(Entry, Order.back())) { 808 handleLoops(false, LoopEnd); 809 } 810 811 changeExit(PrevNode, Next, false); 812 setPrevNode(Next); 813 } 814 } 815 816 void StructurizeCFG::handleLoops(bool ExitUseAllowed, 817 BasicBlock *LoopEnd) { 818 RegionNode *Node = Order.back(); 819 BasicBlock *LoopStart = Node->getEntry(); 820 821 if (!Loops.count(LoopStart)) { 822 wireFlow(ExitUseAllowed, LoopEnd); 823 return; 824 } 825 826 if (!isPredictableTrue(Node)) 827 LoopStart = needPrefix(true); 828 829 LoopEnd = Loops[Node->getEntry()]; 830 wireFlow(false, LoopEnd); 831 while (!Visited.count(LoopEnd)) { 832 handleLoops(false, LoopEnd); 833 } 834 835 // If the start of the loop is the entry block, we can't branch to it so 836 // insert a new dummy entry block. 837 Function *LoopFunc = LoopStart->getParent(); 838 if (LoopStart == &LoopFunc->getEntryBlock()) { 839 LoopStart->setName("entry.orig"); 840 841 BasicBlock *NewEntry = 842 BasicBlock::Create(LoopStart->getContext(), 843 "entry", 844 LoopFunc, 845 LoopStart); 846 BranchInst::Create(LoopStart, NewEntry); 847 } 848 849 // Create an extra loop end node 850 LoopEnd = needPrefix(false); 851 BasicBlock *Next = needPostfix(LoopEnd, ExitUseAllowed); 852 LoopConds.push_back(BranchInst::Create(Next, LoopStart, 853 BoolUndef, LoopEnd)); 854 addPhiValues(LoopEnd, LoopStart); 855 setPrevNode(Next); 856 } 857 858 /// After this function control flow looks like it should be, but 859 /// branches and PHI nodes only have undefined conditions. 860 void StructurizeCFG::createFlow() { 861 BasicBlock *Exit = ParentRegion->getExit(); 862 bool EntryDominatesExit = DT->dominates(ParentRegion->getEntry(), Exit); 863 864 DeletedPhis.clear(); 865 AddedPhis.clear(); 866 Conditions.clear(); 867 LoopConds.clear(); 868 869 PrevNode = nullptr; 870 Visited.clear(); 871 872 while (!Order.empty()) { 873 handleLoops(EntryDominatesExit, nullptr); 874 } 875 876 if (PrevNode) 877 changeExit(PrevNode, Exit, EntryDominatesExit); 878 else 879 assert(EntryDominatesExit); 880 } 881 882 /// Handle a rare case where the disintegrated nodes instructions 883 /// no longer dominate all their uses. Not sure if this is really nessasary 884 void StructurizeCFG::rebuildSSA() { 885 SSAUpdater Updater; 886 for (auto *BB : ParentRegion->blocks()) 887 for (BasicBlock::iterator II = BB->begin(), IE = BB->end(); 888 II != IE; ++II) { 889 890 bool Initialized = false; 891 for (auto I = II->use_begin(), E = II->use_end(); I != E;) { 892 Use &U = *I++; 893 Instruction *User = cast<Instruction>(U.getUser()); 894 if (User->getParent() == BB) { 895 continue; 896 897 } else if (PHINode *UserPN = dyn_cast<PHINode>(User)) { 898 if (UserPN->getIncomingBlock(U) == BB) 899 continue; 900 } 901 902 if (DT->dominates(&*II, User)) 903 continue; 904 905 if (!Initialized) { 906 Value *Undef = UndefValue::get(II->getType()); 907 Updater.Initialize(II->getType(), ""); 908 Updater.AddAvailableValue(&Func->getEntryBlock(), Undef); 909 Updater.AddAvailableValue(BB, &*II); 910 Initialized = true; 911 } 912 Updater.RewriteUseAfterInsertions(U); 913 } 914 } 915 } 916 917 bool StructurizeCFG::hasOnlyUniformBranches(const Region *R) { 918 for (const BasicBlock *BB : R->blocks()) { 919 const BranchInst *Br = dyn_cast<BranchInst>(BB->getTerminator()); 920 if (!Br || !Br->isConditional()) 921 continue; 922 923 if (!DA->isUniform(Br->getCondition())) 924 return false; 925 DEBUG(dbgs() << "BB: " << BB->getName() << " has uniform terminator\n"); 926 } 927 return true; 928 } 929 930 /// \brief Run the transformation for each region found 931 bool StructurizeCFG::runOnRegion(Region *R, RGPassManager &RGM) { 932 if (R->isTopLevelRegion()) 933 return false; 934 935 if (SkipUniformRegions) { 936 DA = &getAnalysis<DivergenceAnalysis>(); 937 // TODO: We could probably be smarter here with how we handle sub-regions. 938 if (hasOnlyUniformBranches(R)) { 939 DEBUG(dbgs() << "Skipping region with uniform control flow: " << *R << '\n'); 940 941 // Mark all direct child block terminators as having been treated as 942 // uniform. To account for a possible future in which non-uniform 943 // sub-regions are treated more cleverly, indirect children are not 944 // marked as uniform. 945 MDNode *MD = MDNode::get(R->getEntry()->getParent()->getContext(), {}); 946 Region::element_iterator E = R->element_end(); 947 for (Region::element_iterator I = R->element_begin(); I != E; ++I) { 948 if (I->isSubRegion()) 949 continue; 950 951 if (Instruction *Term = I->getEntry()->getTerminator()) 952 Term->setMetadata("structurizecfg.uniform", MD); 953 } 954 955 return false; 956 } 957 } 958 959 Func = R->getEntry()->getParent(); 960 ParentRegion = R; 961 962 DT = &getAnalysis<DominatorTreeWrapperPass>().getDomTree(); 963 LI = &getAnalysis<LoopInfoWrapperPass>().getLoopInfo(); 964 965 orderNodes(); 966 collectInfos(); 967 createFlow(); 968 insertConditions(false); 969 insertConditions(true); 970 setPhiValues(); 971 rebuildSSA(); 972 973 // Cleanup 974 Order.clear(); 975 Visited.clear(); 976 DeletedPhis.clear(); 977 AddedPhis.clear(); 978 Predicates.clear(); 979 Conditions.clear(); 980 Loops.clear(); 981 LoopPreds.clear(); 982 LoopConds.clear(); 983 984 return true; 985 } 986 987 Pass *llvm::createStructurizeCFGPass(bool SkipUniformRegions) { 988 return new StructurizeCFG(SkipUniformRegions); 989 } 990