1 //===- LoopPass.cpp - Loop Pass and Loop Pass Manager ---------------------===// 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 implements LoopPass and LPPassManager. All loop optimization 11 // and transformation passes are derived from LoopPass. LPPassManager is 12 // responsible for managing LoopPasses. 13 // 14 //===----------------------------------------------------------------------===// 15 16 #include "llvm/Analysis/LoopPass.h" 17 #include "llvm/IR/IRPrintingPasses.h" 18 #include "llvm/IR/LLVMContext.h" 19 #include "llvm/IR/PassManager.h" 20 #include "llvm/Support/Debug.h" 21 #include "llvm/Support/Timer.h" 22 #include "llvm/Support/raw_ostream.h" 23 using namespace llvm; 24 25 #define DEBUG_TYPE "loop-pass-manager" 26 27 namespace { 28 29 /// PrintLoopPass - Print a Function corresponding to a Loop. 30 /// 31 class PrintLoopPassWrapper : public LoopPass { 32 PrintLoopPass P; 33 34 public: 35 static char ID; 36 PrintLoopPassWrapper() : LoopPass(ID) {} 37 PrintLoopPassWrapper(raw_ostream &OS, const std::string &Banner) 38 : LoopPass(ID), P(OS, Banner) {} 39 40 void getAnalysisUsage(AnalysisUsage &AU) const override { 41 AU.setPreservesAll(); 42 } 43 44 bool runOnLoop(Loop *L, LPPassManager &) override { 45 P.run(*L); 46 return false; 47 } 48 }; 49 50 char PrintLoopPassWrapper::ID = 0; 51 } 52 53 //===----------------------------------------------------------------------===// 54 // LPPassManager 55 // 56 57 char LPPassManager::ID = 0; 58 59 LPPassManager::LPPassManager() 60 : FunctionPass(ID), PMDataManager() { 61 skipThisLoop = false; 62 LI = nullptr; 63 CurrentLoop = nullptr; 64 } 65 66 /// Delete loop from the loop queue and loop hierarchy (LoopInfo). 67 void LPPassManager::deleteLoopFromQueue(Loop *L) { 68 69 LI->updateUnloop(L); 70 71 // Notify passes that the loop is being deleted. 72 deleteSimpleAnalysisLoop(L); 73 74 // If L is current loop then skip rest of the passes and let 75 // runOnFunction remove L from LQ. Otherwise, remove L from LQ now 76 // and continue applying other passes on CurrentLoop. 77 if (CurrentLoop == L) 78 skipThisLoop = true; 79 80 delete L; 81 82 if (skipThisLoop) 83 return; 84 85 for (std::deque<Loop *>::iterator I = LQ.begin(), 86 E = LQ.end(); I != E; ++I) { 87 if (*I == L) { 88 LQ.erase(I); 89 break; 90 } 91 } 92 } 93 94 // Inset loop into loop nest (LoopInfo) and loop queue (LQ). 95 Loop &LPPassManager::addLoop(Loop *ParentLoop) { 96 // Create a new loop. LI will take ownership. 97 Loop *L = new Loop(); 98 99 // Insert into the loop nest and the loop queue. 100 if (!ParentLoop) { 101 // This is the top level loop. 102 LI->addTopLevelLoop(L); 103 LQ.push_front(L); 104 return *L; 105 } 106 107 ParentLoop->addChildLoop(L); 108 // Insert L into the loop queue after the parent loop. 109 for (auto I = LQ.begin(), E = LQ.end(); I != E; ++I) { 110 if (*I == L->getParentLoop()) { 111 // deque does not support insert after. 112 ++I; 113 LQ.insert(I, 1, L); 114 break; 115 } 116 } 117 return *L; 118 } 119 120 /// cloneBasicBlockSimpleAnalysis - Invoke cloneBasicBlockAnalysis hook for 121 /// all loop passes. 122 void LPPassManager::cloneBasicBlockSimpleAnalysis(BasicBlock *From, 123 BasicBlock *To, Loop *L) { 124 for (unsigned Index = 0; Index < getNumContainedPasses(); ++Index) { 125 LoopPass *LP = getContainedPass(Index); 126 LP->cloneBasicBlockAnalysis(From, To, L); 127 } 128 } 129 130 /// deleteSimpleAnalysisValue - Invoke deleteAnalysisValue hook for all passes. 131 void LPPassManager::deleteSimpleAnalysisValue(Value *V, Loop *L) { 132 if (BasicBlock *BB = dyn_cast<BasicBlock>(V)) { 133 for (BasicBlock::iterator BI = BB->begin(), BE = BB->end(); BI != BE; 134 ++BI) { 135 Instruction &I = *BI; 136 deleteSimpleAnalysisValue(&I, L); 137 } 138 } 139 for (unsigned Index = 0; Index < getNumContainedPasses(); ++Index) { 140 LoopPass *LP = getContainedPass(Index); 141 LP->deleteAnalysisValue(V, L); 142 } 143 } 144 145 /// Invoke deleteAnalysisLoop hook for all passes. 146 void LPPassManager::deleteSimpleAnalysisLoop(Loop *L) { 147 for (unsigned Index = 0; Index < getNumContainedPasses(); ++Index) { 148 LoopPass *LP = getContainedPass(Index); 149 LP->deleteAnalysisLoop(L); 150 } 151 } 152 153 154 // Recurse through all subloops and all loops into LQ. 155 static void addLoopIntoQueue(Loop *L, std::deque<Loop *> &LQ) { 156 LQ.push_back(L); 157 for (Loop::reverse_iterator I = L->rbegin(), E = L->rend(); I != E; ++I) 158 addLoopIntoQueue(*I, LQ); 159 } 160 161 /// Pass Manager itself does not invalidate any analysis info. 162 void LPPassManager::getAnalysisUsage(AnalysisUsage &Info) const { 163 // LPPassManager needs LoopInfo. In the long term LoopInfo class will 164 // become part of LPPassManager. 165 Info.addRequired<LoopInfoWrapperPass>(); 166 Info.setPreservesAll(); 167 } 168 169 /// run - Execute all of the passes scheduled for execution. Keep track of 170 /// whether any of the passes modifies the function, and if so, return true. 171 bool LPPassManager::runOnFunction(Function &F) { 172 auto &LIWP = getAnalysis<LoopInfoWrapperPass>(); 173 LI = &LIWP.getLoopInfo(); 174 bool Changed = false; 175 176 // Collect inherited analysis from Module level pass manager. 177 populateInheritedAnalysis(TPM->activeStack); 178 179 // Populate the loop queue in reverse program order. There is no clear need to 180 // process sibling loops in either forward or reverse order. There may be some 181 // advantage in deleting uses in a later loop before optimizing the 182 // definitions in an earlier loop. If we find a clear reason to process in 183 // forward order, then a forward variant of LoopPassManager should be created. 184 // 185 // Note that LoopInfo::iterator visits loops in reverse program 186 // order. Here, reverse_iterator gives us a forward order, and the LoopQueue 187 // reverses the order a third time by popping from the back. 188 for (LoopInfo::reverse_iterator I = LI->rbegin(), E = LI->rend(); I != E; ++I) 189 addLoopIntoQueue(*I, LQ); 190 191 if (LQ.empty()) // No loops, skip calling finalizers 192 return false; 193 194 // Initialization 195 for (std::deque<Loop *>::const_iterator I = LQ.begin(), E = LQ.end(); 196 I != E; ++I) { 197 Loop *L = *I; 198 for (unsigned Index = 0; Index < getNumContainedPasses(); ++Index) { 199 LoopPass *P = getContainedPass(Index); 200 Changed |= P->doInitialization(L, *this); 201 } 202 } 203 204 // Walk Loops 205 while (!LQ.empty()) { 206 207 CurrentLoop = LQ.back(); 208 skipThisLoop = false; 209 210 // Run all passes on the current Loop. 211 for (unsigned Index = 0; Index < getNumContainedPasses(); ++Index) { 212 LoopPass *P = getContainedPass(Index); 213 214 dumpPassInfo(P, EXECUTION_MSG, ON_LOOP_MSG, 215 CurrentLoop->getHeader()->getName()); 216 dumpRequiredSet(P); 217 218 initializeAnalysisImpl(P); 219 220 { 221 PassManagerPrettyStackEntry X(P, *CurrentLoop->getHeader()); 222 TimeRegion PassTimer(getPassTimer(P)); 223 224 Changed |= P->runOnLoop(CurrentLoop, *this); 225 } 226 227 if (Changed) 228 dumpPassInfo(P, MODIFICATION_MSG, ON_LOOP_MSG, 229 skipThisLoop ? "<deleted>" : 230 CurrentLoop->getHeader()->getName()); 231 dumpPreservedSet(P); 232 233 if (!skipThisLoop) { 234 // Manually check that this loop is still healthy. This is done 235 // instead of relying on LoopInfo::verifyLoop since LoopInfo 236 // is a function pass and it's really expensive to verify every 237 // loop in the function every time. That level of checking can be 238 // enabled with the -verify-loop-info option. 239 { 240 TimeRegion PassTimer(getPassTimer(&LIWP)); 241 CurrentLoop->verifyLoop(); 242 } 243 244 // Then call the regular verifyAnalysis functions. 245 verifyPreservedAnalysis(P); 246 247 F.getContext().yield(); 248 } 249 250 removeNotPreservedAnalysis(P); 251 recordAvailableAnalysis(P); 252 removeDeadPasses(P, 253 skipThisLoop ? "<deleted>" : 254 CurrentLoop->getHeader()->getName(), 255 ON_LOOP_MSG); 256 257 if (skipThisLoop) 258 // Do not run other passes on this loop. 259 break; 260 } 261 262 // If the loop was deleted, release all the loop passes. This frees up 263 // some memory, and avoids trouble with the pass manager trying to call 264 // verifyAnalysis on them. 265 if (skipThisLoop) 266 for (unsigned Index = 0; Index < getNumContainedPasses(); ++Index) { 267 Pass *P = getContainedPass(Index); 268 freePass(P, "<deleted>", ON_LOOP_MSG); 269 } 270 271 // Pop the loop from queue after running all passes. 272 LQ.pop_back(); 273 } 274 275 // Finalization 276 for (unsigned Index = 0; Index < getNumContainedPasses(); ++Index) { 277 LoopPass *P = getContainedPass(Index); 278 Changed |= P->doFinalization(); 279 } 280 281 return Changed; 282 } 283 284 /// Print passes managed by this manager 285 void LPPassManager::dumpPassStructure(unsigned Offset) { 286 errs().indent(Offset*2) << "Loop Pass Manager\n"; 287 for (unsigned Index = 0; Index < getNumContainedPasses(); ++Index) { 288 Pass *P = getContainedPass(Index); 289 P->dumpPassStructure(Offset + 1); 290 dumpLastUses(P, Offset+1); 291 } 292 } 293 294 295 //===----------------------------------------------------------------------===// 296 // LoopPass 297 298 Pass *LoopPass::createPrinterPass(raw_ostream &O, 299 const std::string &Banner) const { 300 return new PrintLoopPassWrapper(O, Banner); 301 } 302 303 // Check if this pass is suitable for the current LPPassManager, if 304 // available. This pass P is not suitable for a LPPassManager if P 305 // is not preserving higher level analysis info used by other 306 // LPPassManager passes. In such case, pop LPPassManager from the 307 // stack. This will force assignPassManager() to create new 308 // LPPassManger as expected. 309 void LoopPass::preparePassManager(PMStack &PMS) { 310 311 // Find LPPassManager 312 while (!PMS.empty() && 313 PMS.top()->getPassManagerType() > PMT_LoopPassManager) 314 PMS.pop(); 315 316 // If this pass is destroying high level information that is used 317 // by other passes that are managed by LPM then do not insert 318 // this pass in current LPM. Use new LPPassManager. 319 if (PMS.top()->getPassManagerType() == PMT_LoopPassManager && 320 !PMS.top()->preserveHigherLevelAnalysis(this)) 321 PMS.pop(); 322 } 323 324 /// Assign pass manager to manage this pass. 325 void LoopPass::assignPassManager(PMStack &PMS, 326 PassManagerType PreferredType) { 327 // Find LPPassManager 328 while (!PMS.empty() && 329 PMS.top()->getPassManagerType() > PMT_LoopPassManager) 330 PMS.pop(); 331 332 LPPassManager *LPPM; 333 if (PMS.top()->getPassManagerType() == PMT_LoopPassManager) 334 LPPM = (LPPassManager*)PMS.top(); 335 else { 336 // Create new Loop Pass Manager if it does not exist. 337 assert (!PMS.empty() && "Unable to create Loop Pass Manager"); 338 PMDataManager *PMD = PMS.top(); 339 340 // [1] Create new Loop Pass Manager 341 LPPM = new LPPassManager(); 342 LPPM->populateInheritedAnalysis(PMS); 343 344 // [2] Set up new manager's top level manager 345 PMTopLevelManager *TPM = PMD->getTopLevelManager(); 346 TPM->addIndirectPassManager(LPPM); 347 348 // [3] Assign manager to manage this new manager. This may create 349 // and push new managers into PMS 350 Pass *P = LPPM->getAsPass(); 351 TPM->schedulePass(P); 352 353 // [4] Push new manager into PMS 354 PMS.push(LPPM); 355 } 356 357 LPPM->add(this); 358 } 359 360 // Containing function has Attribute::OptimizeNone and transformation 361 // passes should skip it. 362 bool LoopPass::skipOptnoneFunction(const Loop *L) const { 363 const Function *F = L->getHeader()->getParent(); 364 if (F && F->hasFnAttribute(Attribute::OptimizeNone)) { 365 // FIXME: Report this to dbgs() only once per function. 366 DEBUG(dbgs() << "Skipping pass '" << getPassName() 367 << "' in function " << F->getName() << "\n"); 368 // FIXME: Delete loop from pass manager's queue? 369 return true; 370 } 371 return false; 372 } 373