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 using namespace llvm; 18 19 //===----------------------------------------------------------------------===// 20 // LPPassManager 21 // 22 23 char LPPassManager::ID = 0; 24 /// LPPassManager manages FPPassManagers and CalLGraphSCCPasses. 25 26 LPPassManager::LPPassManager(int Depth) 27 : FunctionPass(&ID), PMDataManager(Depth) { 28 skipThisLoop = false; 29 redoThisLoop = false; 30 LI = NULL; 31 CurrentLoop = NULL; 32 } 33 34 /// Delete loop from the loop queue and loop hierarchy (LoopInfo). 35 void LPPassManager::deleteLoopFromQueue(Loop *L) { 36 37 if (Loop *ParentLoop = L->getParentLoop()) { // Not a top-level loop. 38 // Reparent all of the blocks in this loop. Since BBLoop had a parent, 39 // they are now all in it. 40 for (Loop::block_iterator I = L->block_begin(), E = L->block_end(); 41 I != E; ++I) 42 if (LI->getLoopFor(*I) == L) // Don't change blocks in subloops. 43 LI->changeLoopFor(*I, ParentLoop); 44 45 // Remove the loop from its parent loop. 46 for (Loop::iterator I = ParentLoop->begin(), E = ParentLoop->end();; 47 ++I) { 48 assert(I != E && "Couldn't find loop"); 49 if (*I == L) { 50 ParentLoop->removeChildLoop(I); 51 break; 52 } 53 } 54 55 // Move all subloops into the parent loop. 56 while (!L->empty()) 57 ParentLoop->addChildLoop(L->removeChildLoop(L->end()-1)); 58 } else { 59 // Reparent all of the blocks in this loop. Since BBLoop had no parent, 60 // they no longer in a loop at all. 61 62 for (unsigned i = 0; i != L->getBlocks().size(); ++i) { 63 // Don't change blocks in subloops. 64 if (LI->getLoopFor(L->getBlocks()[i]) == L) { 65 LI->removeBlock(L->getBlocks()[i]); 66 --i; 67 } 68 } 69 70 // Remove the loop from the top-level LoopInfo object. 71 for (LoopInfo::iterator I = LI->begin(), E = LI->end();; ++I) { 72 assert(I != E && "Couldn't find loop"); 73 if (*I == L) { 74 LI->removeLoop(I); 75 break; 76 } 77 } 78 79 // Move all of the subloops to the top-level. 80 while (!L->empty()) 81 LI->addTopLevelLoop(L->removeChildLoop(L->end()-1)); 82 } 83 84 delete L; 85 86 // If L is current loop then skip rest of the passes and let 87 // runOnFunction remove L from LQ. Otherwise, remove L from LQ now 88 // and continue applying other passes on CurrentLoop. 89 if (CurrentLoop == L) { 90 skipThisLoop = true; 91 return; 92 } 93 94 for (std::deque<Loop *>::iterator I = LQ.begin(), 95 E = LQ.end(); I != E; ++I) { 96 if (*I == L) { 97 LQ.erase(I); 98 break; 99 } 100 } 101 } 102 103 // Inset loop into loop nest (LoopInfo) and loop queue (LQ). 104 void LPPassManager::insertLoop(Loop *L, Loop *ParentLoop) { 105 106 assert (CurrentLoop != L && "Cannot insert CurrentLoop"); 107 108 // Insert into loop nest 109 if (ParentLoop) 110 ParentLoop->addChildLoop(L); 111 else 112 LI->addTopLevelLoop(L); 113 114 // Insert L into loop queue 115 if (L == CurrentLoop) 116 redoLoop(L); 117 else if (!ParentLoop) 118 // This is top level loop. 119 LQ.push_front(L); 120 else { 121 // Insert L after ParentLoop 122 for (std::deque<Loop *>::iterator I = LQ.begin(), 123 E = LQ.end(); I != E; ++I) { 124 if (*I == ParentLoop) { 125 // deque does not support insert after. 126 ++I; 127 LQ.insert(I, 1, L); 128 break; 129 } 130 } 131 } 132 } 133 134 // Reoptimize this loop. LPPassManager will re-insert this loop into the 135 // queue. This allows LoopPass to change loop nest for the loop. This 136 // utility may send LPPassManager into infinite loops so use caution. 137 void LPPassManager::redoLoop(Loop *L) { 138 assert (CurrentLoop == L && "Can redo only CurrentLoop"); 139 redoThisLoop = true; 140 } 141 142 /// cloneBasicBlockSimpleAnalysis - Invoke cloneBasicBlockAnalysis hook for 143 /// all loop passes. 144 void LPPassManager::cloneBasicBlockSimpleAnalysis(BasicBlock *From, 145 BasicBlock *To, Loop *L) { 146 for (unsigned Index = 0; Index < getNumContainedPasses(); ++Index) { 147 Pass *P = getContainedPass(Index); 148 LoopPass *LP = dynamic_cast<LoopPass *>(P); 149 LP->cloneBasicBlockAnalysis(From, To, L); 150 } 151 } 152 153 /// deleteSimpleAnalysisValue - Invoke deleteAnalysisValue hook for all passes. 154 void LPPassManager::deleteSimpleAnalysisValue(Value *V, Loop *L) { 155 if (BasicBlock *BB = dyn_cast<BasicBlock>(V)) { 156 for (BasicBlock::iterator BI = BB->begin(), BE = BB->end(); BI != BE; 157 ++BI) { 158 Instruction &I = *BI; 159 deleteSimpleAnalysisValue(&I, L); 160 } 161 } 162 for (unsigned Index = 0; Index < getNumContainedPasses(); ++Index) { 163 Pass *P = getContainedPass(Index); 164 LoopPass *LP = dynamic_cast<LoopPass *>(P); 165 LP->deleteAnalysisValue(V, L); 166 } 167 } 168 169 170 // Recurse through all subloops and all loops into LQ. 171 static void addLoopIntoQueue(Loop *L, std::deque<Loop *> &LQ) { 172 LQ.push_back(L); 173 for (Loop::iterator I = L->begin(), E = L->end(); I != E; ++I) 174 addLoopIntoQueue(*I, LQ); 175 } 176 177 /// Pass Manager itself does not invalidate any analysis info. 178 void LPPassManager::getAnalysisUsage(AnalysisUsage &Info) const { 179 // LPPassManager needs LoopInfo. In the long term LoopInfo class will 180 // become part of LPPassManager. 181 Info.addRequired<LoopInfo>(); 182 Info.setPreservesAll(); 183 } 184 185 /// run - Execute all of the passes scheduled for execution. Keep track of 186 /// whether any of the passes modifies the function, and if so, return true. 187 bool LPPassManager::runOnFunction(Function &F) { 188 LI = &getAnalysis<LoopInfo>(); 189 bool Changed = false; 190 191 // Collect inherited analysis from Module level pass manager. 192 populateInheritedAnalysis(TPM->activeStack); 193 194 // Populate Loop Queue 195 for (LoopInfo::iterator I = LI->begin(), E = LI->end(); I != E; ++I) 196 addLoopIntoQueue(*I, LQ); 197 198 if (LQ.empty()) // No loops, skip calling finalizers 199 return false; 200 201 // Initialization 202 for (std::deque<Loop *>::const_iterator I = LQ.begin(), E = LQ.end(); 203 I != E; ++I) { 204 Loop *L = *I; 205 for (unsigned Index = 0; Index < getNumContainedPasses(); ++Index) { 206 Pass *P = getContainedPass(Index); 207 LoopPass *LP = dynamic_cast<LoopPass *>(P); 208 if (LP) 209 Changed |= LP->doInitialization(L, *this); 210 } 211 } 212 213 // Walk Loops 214 while (!LQ.empty()) { 215 216 CurrentLoop = LQ.back(); 217 skipThisLoop = false; 218 redoThisLoop = false; 219 220 // Run all passes on current SCC 221 for (unsigned Index = 0; Index < getNumContainedPasses(); ++Index) { 222 Pass *P = getContainedPass(Index); 223 224 dumpPassInfo(P, EXECUTION_MSG, ON_LOOP_MSG, ""); 225 dumpRequiredSet(P); 226 227 initializeAnalysisImpl(P); 228 229 LoopPass *LP = dynamic_cast<LoopPass *>(P); 230 { 231 PassManagerPrettyStackEntry X(LP, *CurrentLoop->getHeader()); 232 StartPassTimer(P); 233 assert(LP && "Invalid LPPassManager member"); 234 Changed |= LP->runOnLoop(CurrentLoop, *this); 235 StopPassTimer(P); 236 } 237 238 if (Changed) 239 dumpPassInfo(P, MODIFICATION_MSG, ON_LOOP_MSG, ""); 240 dumpPreservedSet(P); 241 242 if (!skipThisLoop) 243 verifyPreservedAnalysis(LP); 244 245 removeNotPreservedAnalysis(P); 246 recordAvailableAnalysis(P); 247 removeDeadPasses(P, "", ON_LOOP_MSG); 248 249 // If dominator information is available then verify the info if requested. 250 verifyDomInfo(*LP, F); 251 252 if (skipThisLoop) 253 // Do not run other passes on this loop. 254 break; 255 } 256 257 // Pop the loop from queue after running all passes. 258 LQ.pop_back(); 259 260 if (redoThisLoop) 261 LQ.push_back(CurrentLoop); 262 } 263 264 // Finalization 265 for (unsigned Index = 0; Index < getNumContainedPasses(); ++Index) { 266 Pass *P = getContainedPass(Index); 267 LoopPass *LP = dynamic_cast <LoopPass *>(P); 268 if (LP) 269 Changed |= LP->doFinalization(); 270 } 271 272 return Changed; 273 } 274 275 /// Print passes managed by this manager 276 void LPPassManager::dumpPassStructure(unsigned Offset) { 277 errs().indent(Offset*2) << "Loop Pass Manager\n"; 278 for (unsigned Index = 0; Index < getNumContainedPasses(); ++Index) { 279 Pass *P = getContainedPass(Index); 280 P->dumpPassStructure(Offset + 1); 281 dumpLastUses(P, Offset+1); 282 } 283 } 284 285 286 //===----------------------------------------------------------------------===// 287 // LoopPass 288 289 // Check if this pass is suitable for the current LPPassManager, if 290 // available. This pass P is not suitable for a LPPassManager if P 291 // is not preserving higher level analysis info used by other 292 // LPPassManager passes. In such case, pop LPPassManager from the 293 // stack. This will force assignPassManager() to create new 294 // LPPassManger as expected. 295 void LoopPass::preparePassManager(PMStack &PMS) { 296 297 // Find LPPassManager 298 while (!PMS.empty() && 299 PMS.top()->getPassManagerType() > PMT_LoopPassManager) 300 PMS.pop(); 301 302 LPPassManager *LPPM = dynamic_cast<LPPassManager *>(PMS.top()); 303 304 // If this pass is destroying high level information that is used 305 // by other passes that are managed by LPM then do not insert 306 // this pass in current LPM. Use new LPPassManager. 307 if (LPPM && !LPPM->preserveHigherLevelAnalysis(this)) 308 PMS.pop(); 309 } 310 311 /// Assign pass manager to manage this pass. 312 void LoopPass::assignPassManager(PMStack &PMS, 313 PassManagerType PreferredType) { 314 // Find LPPassManager 315 while (!PMS.empty() && 316 PMS.top()->getPassManagerType() > PMT_LoopPassManager) 317 PMS.pop(); 318 319 LPPassManager *LPPM = dynamic_cast<LPPassManager *>(PMS.top()); 320 321 // Create new Loop Pass Manager if it does not exist. 322 if (!LPPM) { 323 324 assert (!PMS.empty() && "Unable to create Loop Pass Manager"); 325 PMDataManager *PMD = PMS.top(); 326 327 // [1] Create new Call Graph Pass Manager 328 LPPM = new LPPassManager(PMD->getDepth() + 1); 329 LPPM->populateInheritedAnalysis(PMS); 330 331 // [2] Set up new manager's top level manager 332 PMTopLevelManager *TPM = PMD->getTopLevelManager(); 333 TPM->addIndirectPassManager(LPPM); 334 335 // [3] Assign manager to manage this new manager. This may create 336 // and push new managers into PMS 337 Pass *P = dynamic_cast<Pass *>(LPPM); 338 TPM->schedulePass(P); 339 340 // [4] Push new manager into PMS 341 PMS.push(LPPM); 342 } 343 344 LPPM->add(this); 345 } 346