1 //===- LoopPassManager.cpp - Loop pass management -------------------------===//
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 #include "llvm/Transforms/Scalar/LoopPassManager.h"
10 #include "llvm/Analysis/AssumptionCache.h"
11 #include "llvm/Analysis/BasicAliasAnalysis.h"
12 #include "llvm/Analysis/BlockFrequencyInfo.h"
13 #include "llvm/Analysis/GlobalsModRef.h"
14 #include "llvm/Analysis/MemorySSA.h"
15 #include "llvm/Analysis/ScalarEvolutionAliasAnalysis.h"
16 #include "llvm/Analysis/TargetLibraryInfo.h"
17 #include "llvm/Support/TimeProfiler.h"
18 
19 using namespace llvm;
20 
21 namespace llvm {
22 
23 /// Explicitly specialize the pass manager's run method to handle loop nest
24 /// structure updates.
25 PreservedAnalyses
26 PassManager<Loop, LoopAnalysisManager, LoopStandardAnalysisResults &,
27             LPMUpdater &>::run(Loop &L, LoopAnalysisManager &AM,
28                                LoopStandardAnalysisResults &AR, LPMUpdater &U) {
29 
30   if (DebugLogging)
31     dbgs() << "Starting Loop pass manager run.\n";
32 
33   // Runs loop-nest passes only when the current loop is a top-level one.
34   PreservedAnalyses PA = (L.isOutermost() && !LoopNestPasses.empty())
35                              ? runWithLoopNestPasses(L, AM, AR, U)
36                              : runWithoutLoopNestPasses(L, AM, AR, U);
37 
38   // Invalidation for the current loop should be handled above, and other loop
39   // analysis results shouldn't be impacted by runs over this loop. Therefore,
40   // the remaining analysis results in the AnalysisManager are preserved. We
41   // mark this with a set so that we don't need to inspect each one
42   // individually.
43   // FIXME: This isn't correct! This loop and all nested loops' analyses should
44   // be preserved, but unrolling should invalidate the parent loop's analyses.
45   PA.preserveSet<AllAnalysesOn<Loop>>();
46 
47   if (DebugLogging)
48     dbgs() << "Finished Loop pass manager run.\n";
49 
50   return PA;
51 }
52 
53 // Run both loop passes and loop-nest passes on top-level loop \p L.
54 PreservedAnalyses
55 LoopPassManager::runWithLoopNestPasses(Loop &L, LoopAnalysisManager &AM,
56                                        LoopStandardAnalysisResults &AR,
57                                        LPMUpdater &U) {
58   assert(L.isOutermost() &&
59          "Loop-nest passes should only run on top-level loops.");
60   PreservedAnalyses PA = PreservedAnalyses::all();
61 
62   // Request PassInstrumentation from analysis manager, will use it to run
63   // instrumenting callbacks for the passes later.
64   PassInstrumentation PI = AM.getResult<PassInstrumentationAnalysis>(L, AR);
65 
66   unsigned LoopPassIndex = 0, LoopNestPassIndex = 0;
67 
68   // `LoopNestPtr` points to the `LoopNest` object for the current top-level
69   // loop and `IsLoopNestPtrValid` indicates whether the pointer is still valid.
70   // The `LoopNest` object will have to be re-constructed if the pointer is
71   // invalid when encountering a loop-nest pass.
72   std::unique_ptr<LoopNest> LoopNestPtr;
73   bool IsLoopNestPtrValid = false;
74 
75   for (size_t I = 0, E = IsLoopNestPass.size(); I != E; ++I) {
76     Optional<PreservedAnalyses> PassPA;
77     if (!IsLoopNestPass[I]) {
78       // The `I`-th pass is a loop pass.
79       auto &Pass = LoopPasses[LoopPassIndex++];
80       PassPA = runSinglePass(L, Pass, AM, AR, U, PI);
81     } else {
82       // The `I`-th pass is a loop-nest pass.
83       auto &Pass = LoopNestPasses[LoopNestPassIndex++];
84 
85       // If the loop-nest object calculated before is no longer valid,
86       // re-calculate it here before running the loop-nest pass.
87       if (!IsLoopNestPtrValid) {
88         LoopNestPtr = LoopNest::getLoopNest(L, AR.SE);
89         IsLoopNestPtrValid = true;
90       }
91       PassPA = runSinglePass(*LoopNestPtr, Pass, AM, AR, U, PI);
92     }
93 
94     // `PassPA` is `None` means that the before-pass callbacks in
95     // `PassInstrumentation` return false. The pass does not run in this case,
96     // so we can skip the following procedure.
97     if (!PassPA)
98       continue;
99 
100     // If the loop was deleted, abort the run and return to the outer walk.
101     if (U.skipCurrentLoop()) {
102       PA.intersect(std::move(*PassPA));
103       break;
104     }
105 
106     // Update the analysis manager as each pass runs and potentially
107     // invalidates analyses.
108     AM.invalidate(L, *PassPA);
109 
110     // Finally, we intersect the final preserved analyses to compute the
111     // aggregate preserved set for this pass manager.
112     PA.intersect(std::move(*PassPA));
113 
114     // Check if the current pass preserved the loop-nest object or not.
115     IsLoopNestPtrValid &= PassPA->getChecker<LoopNestAnalysis>().preserved();
116 
117     // After running the loop pass, the parent loop might change and we need to
118     // notify the updater, otherwise U.ParentL might gets outdated and triggers
119     // assertion failures in addSiblingLoops and addChildLoops.
120     U.setParentLoop(L.getParentLoop());
121 
122     // FIXME: Historically, the pass managers all called the LLVM context's
123     // yield function here. We don't have a generic way to acquire the
124     // context and it isn't yet clear what the right pattern is for yielding
125     // in the new pass manager so it is currently omitted.
126     // ...getContext().yield();
127   }
128   return PA;
129 }
130 
131 // Run all loop passes on loop \p L. Loop-nest passes don't run either because
132 // \p L is not a top-level one or simply because there are no loop-nest passes
133 // in the pass manager at all.
134 PreservedAnalyses
135 LoopPassManager::runWithoutLoopNestPasses(Loop &L, LoopAnalysisManager &AM,
136                                           LoopStandardAnalysisResults &AR,
137                                           LPMUpdater &U) {
138   PreservedAnalyses PA = PreservedAnalyses::all();
139 
140   // Request PassInstrumentation from analysis manager, will use it to run
141   // instrumenting callbacks for the passes later.
142   PassInstrumentation PI = AM.getResult<PassInstrumentationAnalysis>(L, AR);
143   for (auto &Pass : LoopPasses) {
144     Optional<PreservedAnalyses> PassPA = runSinglePass(L, Pass, AM, AR, U, PI);
145 
146     // `PassPA` is `None` means that the before-pass callbacks in
147     // `PassInstrumentation` return false. The pass does not run in this case,
148     // so we can skip the following procedure.
149     if (!PassPA)
150       continue;
151 
152     // If the loop was deleted, abort the run and return to the outer walk.
153     if (U.skipCurrentLoop()) {
154       PA.intersect(std::move(*PassPA));
155       break;
156     }
157 
158     // Update the analysis manager as each pass runs and potentially
159     // invalidates analyses.
160     AM.invalidate(L, *PassPA);
161 
162     // Finally, we intersect the final preserved analyses to compute the
163     // aggregate preserved set for this pass manager.
164     PA.intersect(std::move(*PassPA));
165 
166     // After running the loop pass, the parent loop might change and we need to
167     // notify the updater, otherwise U.ParentL might gets outdated and triggers
168     // assertion failures in addSiblingLoops and addChildLoops.
169     U.setParentLoop(L.getParentLoop());
170 
171     // FIXME: Historically, the pass managers all called the LLVM context's
172     // yield function here. We don't have a generic way to acquire the
173     // context and it isn't yet clear what the right pattern is for yielding
174     // in the new pass manager so it is currently omitted.
175     // ...getContext().yield();
176   }
177   return PA;
178 }
179 } // namespace llvm
180 
181 PreservedAnalyses FunctionToLoopPassAdaptor::run(Function &F,
182                                                  FunctionAnalysisManager &AM) {
183   // Before we even compute any loop analyses, first run a miniature function
184   // pass pipeline to put loops into their canonical form. Note that we can
185   // directly build up function analyses after this as the function pass
186   // manager handles all the invalidation at that layer.
187   PassInstrumentation PI = AM.getResult<PassInstrumentationAnalysis>(F);
188 
189   PreservedAnalyses PA = PreservedAnalyses::all();
190   // Check the PassInstrumentation's BeforePass callbacks before running the
191   // canonicalization pipeline.
192   if (PI.runBeforePass<Function>(LoopCanonicalizationFPM, F)) {
193     PA = LoopCanonicalizationFPM.run(F, AM);
194     PI.runAfterPass<Function>(LoopCanonicalizationFPM, F, PA);
195   }
196 
197   // Get the loop structure for this function
198   LoopInfo &LI = AM.getResult<LoopAnalysis>(F);
199 
200   // If there are no loops, there is nothing to do here.
201   if (LI.empty())
202     return PA;
203 
204   // Get the analysis results needed by loop passes.
205   MemorySSA *MSSA =
206       UseMemorySSA ? (&AM.getResult<MemorySSAAnalysis>(F).getMSSA()) : nullptr;
207   BlockFrequencyInfo *BFI = UseBlockFrequencyInfo && F.hasProfileData()
208                                 ? (&AM.getResult<BlockFrequencyAnalysis>(F))
209                                 : nullptr;
210   LoopStandardAnalysisResults LAR = {AM.getResult<AAManager>(F),
211                                      AM.getResult<AssumptionAnalysis>(F),
212                                      AM.getResult<DominatorTreeAnalysis>(F),
213                                      AM.getResult<LoopAnalysis>(F),
214                                      AM.getResult<ScalarEvolutionAnalysis>(F),
215                                      AM.getResult<TargetLibraryAnalysis>(F),
216                                      AM.getResult<TargetIRAnalysis>(F),
217                                      BFI,
218                                      MSSA};
219 
220   // Setup the loop analysis manager from its proxy. It is important that
221   // this is only done when there are loops to process and we have built the
222   // LoopStandardAnalysisResults object. The loop analyses cached in this
223   // manager have access to those analysis results and so it must invalidate
224   // itself when they go away.
225   auto &LAMFP = AM.getResult<LoopAnalysisManagerFunctionProxy>(F);
226   if (UseMemorySSA)
227     LAMFP.markMSSAUsed();
228   LoopAnalysisManager &LAM = LAMFP.getManager();
229 
230   // A postorder worklist of loops to process.
231   SmallPriorityWorklist<Loop *, 4> Worklist;
232 
233   // Register the worklist and loop analysis manager so that loop passes can
234   // update them when they mutate the loop nest structure.
235   LPMUpdater Updater(Worklist, LAM, LoopNestMode);
236 
237   // Add the loop nests in the reverse order of LoopInfo. See method
238   // declaration.
239   if (!LoopNestMode) {
240     appendLoopsToWorklist(LI, Worklist);
241   } else {
242     for (Loop *L : LI)
243       Worklist.insert(L);
244   }
245 
246 #ifndef NDEBUG
247   PI.pushBeforeNonSkippedPassCallback([&LAR, &LI](StringRef PassID, Any IR) {
248     if (isSpecialPass(PassID, {"PassManager"}))
249       return;
250     assert(any_isa<const Loop *>(IR) || any_isa<const LoopNest *>(IR));
251     const Loop *L = any_isa<const Loop *>(IR)
252                         ? any_cast<const Loop *>(IR)
253                         : &any_cast<const LoopNest *>(IR)->getOutermostLoop();
254     assert(L && "Loop should be valid for printing");
255 
256     // Verify the loop structure and LCSSA form before visiting the loop.
257     L->verifyLoop();
258     assert(L->isRecursivelyLCSSAForm(LAR.DT, LI) &&
259            "Loops must remain in LCSSA form!");
260   });
261 #endif
262 
263   do {
264     Loop *L = Worklist.pop_back_val();
265     assert(!(LoopNestMode && L->getParentLoop()) &&
266            "L should be a top-level loop in loop-nest mode.");
267 
268     // Reset the update structure for this loop.
269     Updater.CurrentL = L;
270     Updater.SkipCurrentLoop = false;
271 
272 #ifndef NDEBUG
273     // Save a parent loop pointer for asserts.
274     Updater.ParentL = L->getParentLoop();
275 #endif
276     // Check the PassInstrumentation's BeforePass callbacks before running the
277     // pass, skip its execution completely if asked to (callback returns
278     // false).
279     if (!PI.runBeforePass<Loop>(*Pass, *L))
280       continue;
281 
282     PreservedAnalyses PassPA;
283     {
284       TimeTraceScope TimeScope(Pass->name());
285       PassPA = Pass->run(*L, LAM, LAR, Updater);
286     }
287 
288     // Do not pass deleted Loop into the instrumentation.
289     if (Updater.skipCurrentLoop())
290       PI.runAfterPassInvalidated<Loop>(*Pass, PassPA);
291     else
292       PI.runAfterPass<Loop>(*Pass, *L, PassPA);
293 
294     // FIXME: We should verify the set of analyses relevant to Loop passes
295     // are preserved.
296 
297     // If the loop hasn't been deleted, we need to handle invalidation here.
298     if (!Updater.skipCurrentLoop())
299       // We know that the loop pass couldn't have invalidated any other
300       // loop's analyses (that's the contract of a loop pass), so directly
301       // handle the loop analysis manager's invalidation here.
302       LAM.invalidate(*L, PassPA);
303 
304     // Then intersect the preserved set so that invalidation of module
305     // analyses will eventually occur when the module pass completes.
306     PA.intersect(std::move(PassPA));
307   } while (!Worklist.empty());
308 
309 #ifndef NDEBUG
310   PI.popBeforeNonSkippedPassCallback();
311 #endif
312 
313   // By definition we preserve the proxy. We also preserve all analyses on
314   // Loops. This precludes *any* invalidation of loop analyses by the proxy,
315   // but that's OK because we've taken care to invalidate analyses in the
316   // loop analysis manager incrementally above.
317   PA.preserveSet<AllAnalysesOn<Loop>>();
318   PA.preserve<LoopAnalysisManagerFunctionProxy>();
319   // We also preserve the set of standard analyses.
320   PA.preserve<DominatorTreeAnalysis>();
321   PA.preserve<LoopAnalysis>();
322   PA.preserve<ScalarEvolutionAnalysis>();
323   if (UseBlockFrequencyInfo && F.hasProfileData())
324     PA.preserve<BlockFrequencyAnalysis>();
325   if (UseMemorySSA)
326     PA.preserve<MemorySSAAnalysis>();
327   // FIXME: What we really want to do here is preserve an AA category, but
328   // that concept doesn't exist yet.
329   PA.preserve<AAManager>();
330   PA.preserve<BasicAA>();
331   PA.preserve<GlobalsAA>();
332   PA.preserve<SCEVAA>();
333   return PA;
334 }
335 
336 PrintLoopPass::PrintLoopPass() : OS(dbgs()) {}
337 PrintLoopPass::PrintLoopPass(raw_ostream &OS, const std::string &Banner)
338     : OS(OS), Banner(Banner) {}
339 
340 PreservedAnalyses PrintLoopPass::run(Loop &L, LoopAnalysisManager &,
341                                      LoopStandardAnalysisResults &,
342                                      LPMUpdater &) {
343   printLoop(L, OS, Banner);
344   return PreservedAnalyses::all();
345 }
346