xref: /llvm-project/llvm/lib/Analysis/LoopPass.cpp (revision 85bd3978ae4e1c16fa8fa4bc27d0393d1d2265ea)
1 //===- LoopPass.cpp - Loop Pass and Loop Pass Manager ---------------------===//
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 //
9 // This file implements LoopPass and LPPassManager. All loop optimization
10 // and transformation passes are derived from LoopPass. LPPassManager is
11 // responsible for managing LoopPasses.
12 //
13 //===----------------------------------------------------------------------===//
14 
15 #include "llvm/Analysis/LoopPass.h"
16 #include "llvm/Analysis/LoopAnalysisManager.h"
17 #include "llvm/IR/Dominators.h"
18 #include "llvm/IR/IRPrintingPasses.h"
19 #include "llvm/IR/LLVMContext.h"
20 #include "llvm/IR/OptBisect.h"
21 #include "llvm/IR/PassManager.h"
22 #include "llvm/IR/PassTimingInfo.h"
23 #include "llvm/Support/Debug.h"
24 #include "llvm/Support/Timer.h"
25 #include "llvm/Support/raw_ostream.h"
26 using namespace llvm;
27 
28 #define DEBUG_TYPE "loop-pass-manager"
29 
30 namespace {
31 
32 /// PrintLoopPass - Print a Function corresponding to a Loop.
33 ///
34 class PrintLoopPassWrapper : public LoopPass {
35   raw_ostream &OS;
36   std::string Banner;
37 
38 public:
39   static char ID;
40   PrintLoopPassWrapper() : LoopPass(ID), OS(dbgs()) {}
41   PrintLoopPassWrapper(raw_ostream &OS, const std::string &Banner)
42       : LoopPass(ID), OS(OS), Banner(Banner) {}
43 
44   void getAnalysisUsage(AnalysisUsage &AU) const override {
45     AU.setPreservesAll();
46   }
47 
48   bool runOnLoop(Loop *L, LPPassManager &) override {
49     auto BBI = llvm::find_if(L->blocks(), [](BasicBlock *BB) { return BB; });
50     if (BBI != L->blocks().end() &&
51         isFunctionInPrintList((*BBI)->getParent()->getName())) {
52       printLoop(*L, OS, Banner);
53     }
54     return false;
55   }
56 
57   StringRef getPassName() const override { return "Print Loop IR"; }
58 };
59 
60 char PrintLoopPassWrapper::ID = 0;
61 }
62 
63 //===----------------------------------------------------------------------===//
64 // LPPassManager
65 //
66 
67 char LPPassManager::ID = 0;
68 
69 LPPassManager::LPPassManager()
70   : FunctionPass(ID), PMDataManager() {
71   LI = nullptr;
72   CurrentLoop = nullptr;
73 }
74 
75 // Insert loop into loop nest (LoopInfo) and loop queue (LQ).
76 void LPPassManager::addLoop(Loop &L) {
77   if (!L.getParentLoop()) {
78     // This is the top level loop.
79     LQ.push_front(&L);
80     return;
81   }
82 
83   // Insert L into the loop queue after the parent loop.
84   for (auto I = LQ.begin(), E = LQ.end(); I != E; ++I) {
85     if (*I == L.getParentLoop()) {
86       // deque does not support insert after.
87       ++I;
88       LQ.insert(I, 1, &L);
89       return;
90     }
91   }
92 }
93 
94 /// cloneBasicBlockSimpleAnalysis - Invoke cloneBasicBlockAnalysis hook for
95 /// all loop passes.
96 void LPPassManager::cloneBasicBlockSimpleAnalysis(BasicBlock *From,
97                                                   BasicBlock *To, Loop *L) {
98   for (unsigned Index = 0; Index < getNumContainedPasses(); ++Index) {
99     LoopPass *LP = getContainedPass(Index);
100     LP->cloneBasicBlockAnalysis(From, To, L);
101   }
102 }
103 
104 /// deleteSimpleAnalysisValue - Invoke deleteAnalysisValue hook for all passes.
105 void LPPassManager::deleteSimpleAnalysisValue(Value *V, Loop *L) {
106   if (BasicBlock *BB = dyn_cast<BasicBlock>(V)) {
107     for (Instruction &I : *BB) {
108       deleteSimpleAnalysisValue(&I, L);
109     }
110   }
111   for (unsigned Index = 0; Index < getNumContainedPasses(); ++Index) {
112     LoopPass *LP = getContainedPass(Index);
113     LP->deleteAnalysisValue(V, L);
114   }
115 }
116 
117 /// Invoke deleteAnalysisLoop hook for all passes.
118 void LPPassManager::deleteSimpleAnalysisLoop(Loop *L) {
119   for (unsigned Index = 0; Index < getNumContainedPasses(); ++Index) {
120     LoopPass *LP = getContainedPass(Index);
121     LP->deleteAnalysisLoop(L);
122   }
123 }
124 
125 
126 // Recurse through all subloops and all loops  into LQ.
127 static void addLoopIntoQueue(Loop *L, std::deque<Loop *> &LQ) {
128   LQ.push_back(L);
129   for (Loop *I : reverse(*L))
130     addLoopIntoQueue(I, LQ);
131 }
132 
133 /// Pass Manager itself does not invalidate any analysis info.
134 void LPPassManager::getAnalysisUsage(AnalysisUsage &Info) const {
135   // LPPassManager needs LoopInfo. In the long term LoopInfo class will
136   // become part of LPPassManager.
137   Info.addRequired<LoopInfoWrapperPass>();
138   Info.addRequired<DominatorTreeWrapperPass>();
139   Info.setPreservesAll();
140 }
141 
142 void LPPassManager::markLoopAsDeleted(Loop &L) {
143   assert((&L == CurrentLoop || CurrentLoop->contains(&L)) &&
144          "Must not delete loop outside the current loop tree!");
145   // If this loop appears elsewhere within the queue, we also need to remove it
146   // there. However, we have to be careful to not remove the back of the queue
147   // as that is assumed to match the current loop.
148   assert(LQ.back() == CurrentLoop && "Loop queue back isn't the current loop!");
149   LQ.erase(std::remove(LQ.begin(), LQ.end(), &L), LQ.end());
150 
151   if (&L == CurrentLoop) {
152     CurrentLoopDeleted = true;
153     // Add this loop back onto the back of the queue to preserve our invariants.
154     LQ.push_back(&L);
155   }
156 }
157 
158 /// run - Execute all of the passes scheduled for execution.  Keep track of
159 /// whether any of the passes modifies the function, and if so, return true.
160 bool LPPassManager::runOnFunction(Function &F) {
161   auto &LIWP = getAnalysis<LoopInfoWrapperPass>();
162   LI = &LIWP.getLoopInfo();
163   Module &M = *F.getParent();
164 #if 0
165   DominatorTree *DT = &getAnalysis<DominatorTreeWrapperPass>().getDomTree();
166 #endif
167   bool Changed = false;
168 
169   // Collect inherited analysis from Module level pass manager.
170   populateInheritedAnalysis(TPM->activeStack);
171 
172   // Populate the loop queue in reverse program order. There is no clear need to
173   // process sibling loops in either forward or reverse order. There may be some
174   // advantage in deleting uses in a later loop before optimizing the
175   // definitions in an earlier loop. If we find a clear reason to process in
176   // forward order, then a forward variant of LoopPassManager should be created.
177   //
178   // Note that LoopInfo::iterator visits loops in reverse program
179   // order. Here, reverse_iterator gives us a forward order, and the LoopQueue
180   // reverses the order a third time by popping from the back.
181   for (Loop *L : reverse(*LI))
182     addLoopIntoQueue(L, LQ);
183 
184   if (LQ.empty()) // No loops, skip calling finalizers
185     return false;
186 
187   // Initialization
188   for (Loop *L : LQ) {
189     for (unsigned Index = 0; Index < getNumContainedPasses(); ++Index) {
190       LoopPass *P = getContainedPass(Index);
191       Changed |= P->doInitialization(L, *this);
192     }
193   }
194 
195   // Walk Loops
196   unsigned InstrCount, FunctionSize = 0;
197   StringMap<std::pair<unsigned, unsigned>> FunctionToInstrCount;
198   bool EmitICRemark = M.shouldEmitInstrCountChangedRemark();
199   // Collect the initial size of the module and the function we're looking at.
200   if (EmitICRemark) {
201     InstrCount = initSizeRemarkInfo(M, FunctionToInstrCount);
202     FunctionSize = F.getInstructionCount();
203   }
204   while (!LQ.empty()) {
205     CurrentLoopDeleted = false;
206     CurrentLoop = LQ.back();
207 
208     // Run all passes on the current Loop.
209     for (unsigned Index = 0; Index < getNumContainedPasses(); ++Index) {
210       LoopPass *P = getContainedPass(Index);
211 
212       dumpPassInfo(P, EXECUTION_MSG, ON_LOOP_MSG,
213                    CurrentLoop->getHeader()->getName());
214       dumpRequiredSet(P);
215 
216       initializeAnalysisImpl(P);
217 
218       bool LocalChanged = false;
219       {
220         PassManagerPrettyStackEntry X(P, *CurrentLoop->getHeader());
221         TimeRegion PassTimer(getPassTimer(P));
222         LocalChanged = P->runOnLoop(CurrentLoop, *this);
223         Changed |= LocalChanged;
224         if (EmitICRemark) {
225           unsigned NewSize = F.getInstructionCount();
226           // Update the size of the function, emit a remark, and update the
227           // size of the module.
228           if (NewSize != FunctionSize) {
229             int64_t Delta = static_cast<int64_t>(NewSize) -
230                             static_cast<int64_t>(FunctionSize);
231             emitInstrCountChangedRemark(P, M, Delta, InstrCount,
232                                         FunctionToInstrCount, &F);
233             InstrCount = static_cast<int64_t>(InstrCount) + Delta;
234             FunctionSize = NewSize;
235           }
236         }
237       }
238 
239       if (LocalChanged)
240         dumpPassInfo(P, MODIFICATION_MSG, ON_LOOP_MSG,
241                      CurrentLoopDeleted ? "<deleted loop>"
242                                         : CurrentLoop->getName());
243       dumpPreservedSet(P);
244 
245       if (CurrentLoopDeleted) {
246         // Notify passes that the loop is being deleted.
247         deleteSimpleAnalysisLoop(CurrentLoop);
248       } else {
249         // Manually check that this loop is still healthy. This is done
250         // instead of relying on LoopInfo::verifyLoop since LoopInfo
251         // is a function pass and it's really expensive to verify every
252         // loop in the function every time. That level of checking can be
253         // enabled with the -verify-loop-info option.
254         {
255           TimeRegion PassTimer(getPassTimer(&LIWP));
256           CurrentLoop->verifyLoop();
257         }
258         // Here we apply same reasoning as in the above case. Only difference
259         // is that LPPassManager might run passes which do not require LCSSA
260         // form (LoopPassPrinter for example). We should skip verification for
261         // such passes.
262         // FIXME: Loop-sink currently break LCSSA. Fix it and reenable the
263         // verification!
264 #if 0
265         if (mustPreserveAnalysisID(LCSSAVerificationPass::ID))
266           assert(CurrentLoop->isRecursivelyLCSSAForm(*DT, *LI));
267 #endif
268 
269         // Then call the regular verifyAnalysis functions.
270         verifyPreservedAnalysis(P);
271 
272         F.getContext().yield();
273       }
274 
275       removeNotPreservedAnalysis(P);
276       recordAvailableAnalysis(P);
277       removeDeadPasses(P,
278                        CurrentLoopDeleted ? "<deleted>"
279                                           : CurrentLoop->getHeader()->getName(),
280                        ON_LOOP_MSG);
281 
282       if (CurrentLoopDeleted)
283         // Do not run other passes on this loop.
284         break;
285     }
286 
287     // If the loop was deleted, release all the loop passes. This frees up
288     // some memory, and avoids trouble with the pass manager trying to call
289     // verifyAnalysis on them.
290     if (CurrentLoopDeleted) {
291       for (unsigned Index = 0; Index < getNumContainedPasses(); ++Index) {
292         Pass *P = getContainedPass(Index);
293         freePass(P, "<deleted>", ON_LOOP_MSG);
294       }
295     }
296 
297     // Pop the loop from queue after running all passes.
298     LQ.pop_back();
299   }
300 
301   // Finalization
302   for (unsigned Index = 0; Index < getNumContainedPasses(); ++Index) {
303     LoopPass *P = getContainedPass(Index);
304     Changed |= P->doFinalization();
305   }
306 
307   return Changed;
308 }
309 
310 /// Print passes managed by this manager
311 void LPPassManager::dumpPassStructure(unsigned Offset) {
312   errs().indent(Offset*2) << "Loop Pass Manager\n";
313   for (unsigned Index = 0; Index < getNumContainedPasses(); ++Index) {
314     Pass *P = getContainedPass(Index);
315     P->dumpPassStructure(Offset + 1);
316     dumpLastUses(P, Offset+1);
317   }
318 }
319 
320 
321 //===----------------------------------------------------------------------===//
322 // LoopPass
323 
324 Pass *LoopPass::createPrinterPass(raw_ostream &O,
325                                   const std::string &Banner) const {
326   return new PrintLoopPassWrapper(O, Banner);
327 }
328 
329 // Check if this pass is suitable for the current LPPassManager, if
330 // available. This pass P is not suitable for a LPPassManager if P
331 // is not preserving higher level analysis info used by other
332 // LPPassManager passes. In such case, pop LPPassManager from the
333 // stack. This will force assignPassManager() to create new
334 // LPPassManger as expected.
335 void LoopPass::preparePassManager(PMStack &PMS) {
336 
337   // Find LPPassManager
338   while (!PMS.empty() &&
339          PMS.top()->getPassManagerType() > PMT_LoopPassManager)
340     PMS.pop();
341 
342   // If this pass is destroying high level information that is used
343   // by other passes that are managed by LPM then do not insert
344   // this pass in current LPM. Use new LPPassManager.
345   if (PMS.top()->getPassManagerType() == PMT_LoopPassManager &&
346       !PMS.top()->preserveHigherLevelAnalysis(this))
347     PMS.pop();
348 }
349 
350 /// Assign pass manager to manage this pass.
351 void LoopPass::assignPassManager(PMStack &PMS,
352                                  PassManagerType PreferredType) {
353   // Find LPPassManager
354   while (!PMS.empty() &&
355          PMS.top()->getPassManagerType() > PMT_LoopPassManager)
356     PMS.pop();
357 
358   LPPassManager *LPPM;
359   if (PMS.top()->getPassManagerType() == PMT_LoopPassManager)
360     LPPM = (LPPassManager*)PMS.top();
361   else {
362     // Create new Loop Pass Manager if it does not exist.
363     assert (!PMS.empty() && "Unable to create Loop Pass Manager");
364     PMDataManager *PMD = PMS.top();
365 
366     // [1] Create new Loop Pass Manager
367     LPPM = new LPPassManager();
368     LPPM->populateInheritedAnalysis(PMS);
369 
370     // [2] Set up new manager's top level manager
371     PMTopLevelManager *TPM = PMD->getTopLevelManager();
372     TPM->addIndirectPassManager(LPPM);
373 
374     // [3] Assign manager to manage this new manager. This may create
375     // and push new managers into PMS
376     Pass *P = LPPM->getAsPass();
377     TPM->schedulePass(P);
378 
379     // [4] Push new manager into PMS
380     PMS.push(LPPM);
381   }
382 
383   LPPM->add(this);
384 }
385 
386 static std::string getDescription(const Loop &L) {
387   return "loop";
388 }
389 
390 bool LoopPass::skipLoop(const Loop *L) const {
391   const Function *F = L->getHeader()->getParent();
392   if (!F)
393     return false;
394   // Check the opt bisect limit.
395   OptPassGate &Gate = F->getContext().getOptPassGate();
396   if (Gate.isEnabled() && !Gate.shouldRunPass(this, getDescription(*L)))
397     return true;
398   // Check for the OptimizeNone attribute.
399   if (F->hasOptNone()) {
400     // FIXME: Report this to dbgs() only once per function.
401     LLVM_DEBUG(dbgs() << "Skipping pass '" << getPassName() << "' in function "
402                       << F->getName() << "\n");
403     // FIXME: Delete loop from pass manager's queue?
404     return true;
405   }
406   return false;
407 }
408 
409 char LCSSAVerificationPass::ID = 0;
410 INITIALIZE_PASS(LCSSAVerificationPass, "lcssa-verification", "LCSSA Verifier",
411                 false, false)
412