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Sanjoy Das083f3892016-05-18 22:55:34 +00001//===- GuardWidening.cpp - ---- Guard widening ----------------------------===//
2//
Chandler Carruth2946cd72019-01-19 08:50:56 +00003// 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
Sanjoy Das083f3892016-05-18 22:55:34 +00006//
7//===----------------------------------------------------------------------===//
8//
9// This file implements the guard widening pass. The semantics of the
10// @llvm.experimental.guard intrinsic lets LLVM transform it so that it fails
11// more often that it did before the transform. This optimization is called
12// "widening" and can be used hoist and common runtime checks in situations like
13// these:
14//
15// %cmp0 = 7 u< Length
16// call @llvm.experimental.guard(i1 %cmp0) [ "deopt"(...) ]
17// call @unknown_side_effects()
18// %cmp1 = 9 u< Length
19// call @llvm.experimental.guard(i1 %cmp1) [ "deopt"(...) ]
20// ...
21//
22// =>
23//
24// %cmp0 = 9 u< Length
25// call @llvm.experimental.guard(i1 %cmp0) [ "deopt"(...) ]
26// call @unknown_side_effects()
27// ...
28//
29// If %cmp0 is false, @llvm.experimental.guard will "deoptimize" back to a
30// generic implementation of the same function, which will have the correct
31// semantics from that point onward. It is always _legal_ to deoptimize (so
32// replacing %cmp0 with false is "correct"), though it may not always be
33// profitable to do so.
34//
35// NB! This pass is a work in progress. It hasn't been tuned to be "production
36// ready" yet. It is known to have quadriatic running time and will not scale
37// to large numbers of guards
38//
39//===----------------------------------------------------------------------===//
40
41#include "llvm/Transforms/Scalar/GuardWidening.h"
Philip Reames9258e9d2018-04-27 17:29:10 +000042#include <functional>
Sanjoy Das083f3892016-05-18 22:55:34 +000043#include "llvm/ADT/DenseMap.h"
44#include "llvm/ADT/DepthFirstIterator.h"
Max Kazantseveb8e9c02018-07-31 04:37:11 +000045#include "llvm/ADT/Statistic.h"
Max Kazantseveded4ab2018-08-06 05:49:19 +000046#include "llvm/Analysis/BranchProbabilityInfo.h"
Max Kazantsev3c284bd2018-08-30 03:39:16 +000047#include "llvm/Analysis/GuardUtils.h"
Sanjoy Das083f3892016-05-18 22:55:34 +000048#include "llvm/Analysis/LoopInfo.h"
Philip Reames9258e9d2018-04-27 17:29:10 +000049#include "llvm/Analysis/LoopPass.h"
Sanjoy Das083f3892016-05-18 22:55:34 +000050#include "llvm/Analysis/PostDominators.h"
51#include "llvm/Analysis/ValueTracking.h"
Peter Collingbourneecdd58f2016-10-21 19:59:26 +000052#include "llvm/IR/ConstantRange.h"
Sanjoy Das083f3892016-05-18 22:55:34 +000053#include "llvm/IR/Dominators.h"
54#include "llvm/IR/IntrinsicInst.h"
55#include "llvm/IR/PatternMatch.h"
Chandler Carruth6bda14b2017-06-06 11:49:48 +000056#include "llvm/Pass.h"
Sanjoy Das083f3892016-05-18 22:55:34 +000057#include "llvm/Support/Debug.h"
Craig Topperb45eabc2017-04-26 16:39:58 +000058#include "llvm/Support/KnownBits.h"
Sanjoy Das083f3892016-05-18 22:55:34 +000059#include "llvm/Transforms/Scalar.h"
Philip Reames9258e9d2018-04-27 17:29:10 +000060#include "llvm/Transforms/Utils/LoopUtils.h"
Sanjoy Das083f3892016-05-18 22:55:34 +000061
62using namespace llvm;
63
64#define DEBUG_TYPE "guard-widening"
65
Max Kazantseveb8e9c02018-07-31 04:37:11 +000066STATISTIC(GuardsEliminated, "Number of eliminated guards");
Max Kazantseveded4ab2018-08-06 05:49:19 +000067STATISTIC(CondBranchEliminated, "Number of eliminated conditional branches");
68
69static cl::opt<bool> WidenFrequentBranches(
70 "guard-widening-widen-frequent-branches", cl::Hidden,
71 cl::desc("Widen conditions of explicit branches into dominating guards in "
72 "case if their taken frequency exceeds threshold set by "
73 "guard-widening-frequent-branch-threshold option"),
74 cl::init(false));
75
76static cl::opt<unsigned> FrequentBranchThreshold(
77 "guard-widening-frequent-branch-threshold", cl::Hidden,
78 cl::desc("When WidenFrequentBranches is set to true, this option is used "
79 "to determine which branches are frequently taken. The criteria "
80 "that a branch is taken more often than "
81 "((FrequentBranchThreshold - 1) / FrequentBranchThreshold), then "
82 "it is considered frequently taken"),
83 cl::init(1000));
84
Max Kazantseveb8e9c02018-07-31 04:37:11 +000085
Sanjoy Das083f3892016-05-18 22:55:34 +000086namespace {
87
Max Kazantseveded4ab2018-08-06 05:49:19 +000088// Get the condition of \p I. It can either be a guard or a conditional branch.
89static Value *getCondition(Instruction *I) {
90 if (IntrinsicInst *GI = dyn_cast<IntrinsicInst>(I)) {
91 assert(GI->getIntrinsicID() == Intrinsic::experimental_guard &&
92 "Bad guard intrinsic?");
93 return GI->getArgOperand(0);
94 }
95 return cast<BranchInst>(I)->getCondition();
Max Kazantsev65cd4832018-08-03 10:16:40 +000096}
97
Max Kazantseveded4ab2018-08-06 05:49:19 +000098// Set the condition for \p I to \p NewCond. \p I can either be a guard or a
99// conditional branch.
100static void setCondition(Instruction *I, Value *NewCond) {
101 if (IntrinsicInst *GI = dyn_cast<IntrinsicInst>(I)) {
102 assert(GI->getIntrinsicID() == Intrinsic::experimental_guard &&
103 "Bad guard intrinsic?");
104 GI->setArgOperand(0, NewCond);
105 return;
106 }
107 cast<BranchInst>(I)->setCondition(NewCond);
Max Kazantsev65cd4832018-08-03 10:16:40 +0000108}
109
Max Kazantsev65cd4832018-08-03 10:16:40 +0000110// Eliminates the guard instruction properly.
111static void eliminateGuard(Instruction *GuardInst) {
112 GuardInst->eraseFromParent();
113 ++GuardsEliminated;
114}
115
Sanjoy Das083f3892016-05-18 22:55:34 +0000116class GuardWideningImpl {
117 DominatorTree &DT;
Philip Reames502d44812018-04-27 23:15:56 +0000118 PostDominatorTree *PDT;
Sanjoy Das083f3892016-05-18 22:55:34 +0000119 LoopInfo &LI;
Max Kazantseveded4ab2018-08-06 05:49:19 +0000120 BranchProbabilityInfo *BPI;
Sanjoy Das083f3892016-05-18 22:55:34 +0000121
Philip Reames9258e9d2018-04-27 17:29:10 +0000122 /// Together, these describe the region of interest. This might be all of
123 /// the blocks within a function, or only a given loop's blocks and preheader.
124 DomTreeNode *Root;
125 std::function<bool(BasicBlock*)> BlockFilter;
126
Max Kazantseveded4ab2018-08-06 05:49:19 +0000127 /// The set of guards and conditional branches whose conditions have been
128 /// widened into dominating guards.
129 SmallVector<Instruction *, 16> EliminatedGuardsAndBranches;
Sanjoy Das083f3892016-05-18 22:55:34 +0000130
131 /// The set of guards which have been widened to include conditions to other
132 /// guards.
Max Kazantsev3327bca2018-07-30 07:07:32 +0000133 DenseSet<Instruction *> WidenedGuards;
Sanjoy Das083f3892016-05-18 22:55:34 +0000134
135 /// Try to eliminate guard \p Guard by widening it into an earlier dominating
136 /// guard. \p DFSI is the DFS iterator on the dominator tree that is
137 /// currently visiting the block containing \p Guard, and \p GuardsPerBlock
138 /// maps BasicBlocks to the set of guards seen in that block.
139 bool eliminateGuardViaWidening(
Max Kazantsev3327bca2018-07-30 07:07:32 +0000140 Instruction *Guard, const df_iterator<DomTreeNode *> &DFSI,
141 const DenseMap<BasicBlock *, SmallVector<Instruction *, 8>> &
Max Kazantsev5c490b42018-08-13 07:58:19 +0000142 GuardsPerBlock, bool InvertCondition = false);
Sanjoy Das083f3892016-05-18 22:55:34 +0000143
144 /// Used to keep track of which widening potential is more effective.
145 enum WideningScore {
146 /// Don't widen.
147 WS_IllegalOrNegative,
148
149 /// Widening is performance neutral as far as the cycles spent in check
150 /// conditions goes (but can still help, e.g., code layout, having less
151 /// deopt state).
152 WS_Neutral,
153
154 /// Widening is profitable.
155 WS_Positive,
156
157 /// Widening is very profitable. Not significantly different from \c
158 /// WS_Positive, except by the order.
159 WS_VeryPositive
160 };
161
162 static StringRef scoreTypeToString(WideningScore WS);
163
164 /// Compute the score for widening the condition in \p DominatedGuard
Max Kazantsev13ab5cb2019-02-04 10:20:51 +0000165 /// into \p DominatingGuard. If \p InvertCond is set, then we widen the
Max Kazantsev5c490b42018-08-13 07:58:19 +0000166 /// inverted condition of the dominating guard.
Max Kazantsev3327bca2018-07-30 07:07:32 +0000167 WideningScore computeWideningScore(Instruction *DominatedGuard,
Max Kazantsev3327bca2018-07-30 07:07:32 +0000168 Instruction *DominatingGuard,
Max Kazantsev5c490b42018-08-13 07:58:19 +0000169 bool InvertCond);
Sanjoy Das083f3892016-05-18 22:55:34 +0000170
171 /// Helper to check if \p V can be hoisted to \p InsertPos.
172 bool isAvailableAt(Value *V, Instruction *InsertPos) {
173 SmallPtrSet<Instruction *, 8> Visited;
174 return isAvailableAt(V, InsertPos, Visited);
175 }
176
177 bool isAvailableAt(Value *V, Instruction *InsertPos,
178 SmallPtrSetImpl<Instruction *> &Visited);
179
180 /// Helper to hoist \p V to \p InsertPos. Guaranteed to succeed if \c
181 /// isAvailableAt returned true.
182 void makeAvailableAt(Value *V, Instruction *InsertPos);
183
184 /// Common helper used by \c widenGuard and \c isWideningCondProfitable. Try
Max Kazantsev5c490b42018-08-13 07:58:19 +0000185 /// to generate an expression computing the logical AND of \p Cond0 and (\p
186 /// Cond1 XOR \p InvertCondition).
187 /// Return true if the expression computing the AND is only as
Sanjoy Das083f3892016-05-18 22:55:34 +0000188 /// expensive as computing one of the two. If \p InsertPt is true then
189 /// actually generate the resulting expression, make it available at \p
190 /// InsertPt and return it in \p Result (else no change to the IR is made).
191 bool widenCondCommon(Value *Cond0, Value *Cond1, Instruction *InsertPt,
Max Kazantsev5c490b42018-08-13 07:58:19 +0000192 Value *&Result, bool InvertCondition);
Sanjoy Das083f3892016-05-18 22:55:34 +0000193
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000194 /// Represents a range check of the form \c Base + \c Offset u< \c Length,
195 /// with the constraint that \c Length is not negative. \c CheckInst is the
196 /// pre-existing instruction in the IR that computes the result of this range
197 /// check.
Sanjoy Dasbe991532016-05-24 20:54:45 +0000198 class RangeCheck {
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000199 Value *Base;
200 ConstantInt *Offset;
201 Value *Length;
202 ICmpInst *CheckInst;
203
Sanjoy Dasbe991532016-05-24 20:54:45 +0000204 public:
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000205 explicit RangeCheck(Value *Base, ConstantInt *Offset, Value *Length,
206 ICmpInst *CheckInst)
207 : Base(Base), Offset(Offset), Length(Length), CheckInst(CheckInst) {}
208
Sanjoy Dasbe991532016-05-24 20:54:45 +0000209 void setBase(Value *NewBase) { Base = NewBase; }
210 void setOffset(ConstantInt *NewOffset) { Offset = NewOffset; }
211
212 Value *getBase() const { return Base; }
213 ConstantInt *getOffset() const { return Offset; }
214 const APInt &getOffsetValue() const { return getOffset()->getValue(); }
215 Value *getLength() const { return Length; };
216 ICmpInst *getCheckInst() const { return CheckInst; }
217
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000218 void print(raw_ostream &OS, bool PrintTypes = false) {
219 OS << "Base: ";
220 Base->printAsOperand(OS, PrintTypes);
221 OS << " Offset: ";
222 Offset->printAsOperand(OS, PrintTypes);
223 OS << " Length: ";
224 Length->printAsOperand(OS, PrintTypes);
225 }
226
227 LLVM_DUMP_METHOD void dump() {
228 print(dbgs());
229 dbgs() << "\n";
230 }
231 };
232
233 /// Parse \p CheckCond into a conjunction (logical-and) of range checks; and
234 /// append them to \p Checks. Returns true on success, may clobber \c Checks
235 /// on failure.
236 bool parseRangeChecks(Value *CheckCond, SmallVectorImpl<RangeCheck> &Checks) {
237 SmallPtrSet<Value *, 8> Visited;
238 return parseRangeChecks(CheckCond, Checks, Visited);
239 }
240
241 bool parseRangeChecks(Value *CheckCond, SmallVectorImpl<RangeCheck> &Checks,
242 SmallPtrSetImpl<Value *> &Visited);
243
244 /// Combine the checks in \p Checks into a smaller set of checks and append
245 /// them into \p CombinedChecks. Return true on success (i.e. all of checks
246 /// in \p Checks were combined into \p CombinedChecks). Clobbers \p Checks
247 /// and \p CombinedChecks on success and on failure.
248 bool combineRangeChecks(SmallVectorImpl<RangeCheck> &Checks,
249 SmallVectorImpl<RangeCheck> &CombinedChecks);
250
Sanjoy Das083f3892016-05-18 22:55:34 +0000251 /// Can we compute the logical AND of \p Cond0 and \p Cond1 for the price of
252 /// computing only one of the two expressions?
Max Kazantsev5c490b42018-08-13 07:58:19 +0000253 bool isWideningCondProfitable(Value *Cond0, Value *Cond1, bool InvertCond) {
Sanjoy Das083f3892016-05-18 22:55:34 +0000254 Value *ResultUnused;
Max Kazantsev5c490b42018-08-13 07:58:19 +0000255 return widenCondCommon(Cond0, Cond1, /*InsertPt=*/nullptr, ResultUnused,
256 InvertCond);
Sanjoy Das083f3892016-05-18 22:55:34 +0000257 }
258
Max Kazantsev5c490b42018-08-13 07:58:19 +0000259 /// If \p InvertCondition is false, Widen \p ToWiden to fail if
260 /// \p NewCondition is false, otherwise make it fail if \p NewCondition is
261 /// true (in addition to whatever it is already checking).
262 void widenGuard(Instruction *ToWiden, Value *NewCondition,
263 bool InvertCondition) {
Sanjoy Das083f3892016-05-18 22:55:34 +0000264 Value *Result;
Max Kazantsev5c490b42018-08-13 07:58:19 +0000265 widenCondCommon(ToWiden->getOperand(0), NewCondition, ToWiden, Result,
266 InvertCondition);
Max Kazantseveded4ab2018-08-06 05:49:19 +0000267 setCondition(ToWiden, Result);
Sanjoy Das083f3892016-05-18 22:55:34 +0000268 }
269
270public:
Philip Reames9258e9d2018-04-27 17:29:10 +0000271
Philip Reames502d44812018-04-27 23:15:56 +0000272 explicit GuardWideningImpl(DominatorTree &DT, PostDominatorTree *PDT,
Max Kazantseveded4ab2018-08-06 05:49:19 +0000273 LoopInfo &LI, BranchProbabilityInfo *BPI,
274 DomTreeNode *Root,
Philip Reames9258e9d2018-04-27 17:29:10 +0000275 std::function<bool(BasicBlock*)> BlockFilter)
Max Kazantseveded4ab2018-08-06 05:49:19 +0000276 : DT(DT), PDT(PDT), LI(LI), BPI(BPI), Root(Root), BlockFilter(BlockFilter)
277 {}
Sanjoy Das083f3892016-05-18 22:55:34 +0000278
279 /// The entry point for this pass.
280 bool run();
281};
Sanjoy Das083f3892016-05-18 22:55:34 +0000282}
283
284bool GuardWideningImpl::run() {
Max Kazantsev3327bca2018-07-30 07:07:32 +0000285 DenseMap<BasicBlock *, SmallVector<Instruction *, 8>> GuardsInBlock;
Sanjoy Das083f3892016-05-18 22:55:34 +0000286 bool Changed = false;
Max Kazantseveded4ab2018-08-06 05:49:19 +0000287 Optional<BranchProbability> LikelyTaken = None;
288 if (WidenFrequentBranches && BPI) {
289 unsigned Threshold = FrequentBranchThreshold;
290 assert(Threshold > 0 && "Zero threshold makes no sense!");
Max Kazantsev778f62b2018-08-06 06:35:21 +0000291 LikelyTaken = BranchProbability(Threshold - 1, Threshold);
Max Kazantseveded4ab2018-08-06 05:49:19 +0000292 }
Sanjoy Das083f3892016-05-18 22:55:34 +0000293
Philip Reames9258e9d2018-04-27 17:29:10 +0000294 for (auto DFI = df_begin(Root), DFE = df_end(Root);
Sanjoy Das083f3892016-05-18 22:55:34 +0000295 DFI != DFE; ++DFI) {
296 auto *BB = (*DFI)->getBlock();
Philip Reames9258e9d2018-04-27 17:29:10 +0000297 if (!BlockFilter(BB))
298 continue;
299
Sanjoy Das083f3892016-05-18 22:55:34 +0000300 auto &CurrentList = GuardsInBlock[BB];
301
302 for (auto &I : *BB)
Max Kazantsev3327bca2018-07-30 07:07:32 +0000303 if (isGuard(&I))
304 CurrentList.push_back(cast<Instruction>(&I));
Sanjoy Das083f3892016-05-18 22:55:34 +0000305
306 for (auto *II : CurrentList)
307 Changed |= eliminateGuardViaWidening(II, DFI, GuardsInBlock);
Max Kazantseveded4ab2018-08-06 05:49:19 +0000308 if (WidenFrequentBranches && BPI)
309 if (auto *BI = dyn_cast<BranchInst>(BB->getTerminator()))
Max Kazantsev5c490b42018-08-13 07:58:19 +0000310 if (BI->isConditional()) {
311 // If one of branches of a conditional is likely taken, try to
312 // eliminate it.
313 if (BPI->getEdgeProbability(BB, 0U) >= *LikelyTaken)
314 Changed |= eliminateGuardViaWidening(BI, DFI, GuardsInBlock);
315 else if (BPI->getEdgeProbability(BB, 1U) >= *LikelyTaken)
316 Changed |= eliminateGuardViaWidening(BI, DFI, GuardsInBlock,
317 /*InvertCondition*/true);
318 }
Sanjoy Das083f3892016-05-18 22:55:34 +0000319 }
320
Max Kazantseveded4ab2018-08-06 05:49:19 +0000321 assert(EliminatedGuardsAndBranches.empty() || Changed);
322 for (auto *I : EliminatedGuardsAndBranches)
323 if (!WidenedGuards.count(I)) {
324 assert(isa<ConstantInt>(getCondition(I)) && "Should be!");
325 if (isGuard(I))
326 eliminateGuard(I);
327 else {
328 assert(isa<BranchInst>(I) &&
329 "Eliminated something other than guard or branch?");
330 ++CondBranchEliminated;
331 }
332 }
Sanjoy Das083f3892016-05-18 22:55:34 +0000333
334 return Changed;
335}
336
337bool GuardWideningImpl::eliminateGuardViaWidening(
Max Kazantsev3327bca2018-07-30 07:07:32 +0000338 Instruction *GuardInst, const df_iterator<DomTreeNode *> &DFSI,
339 const DenseMap<BasicBlock *, SmallVector<Instruction *, 8>> &
Max Kazantsev5c490b42018-08-13 07:58:19 +0000340 GuardsInBlock, bool InvertCondition) {
Max Kazantsev611d6452018-08-22 02:40:49 +0000341 // Ignore trivial true or false conditions. These instructions will be
342 // trivially eliminated by any cleanup pass. Do not erase them because other
343 // guards can possibly be widened into them.
344 if (isa<ConstantInt>(getCondition(GuardInst)))
345 return false;
346
Max Kazantsev3327bca2018-07-30 07:07:32 +0000347 Instruction *BestSoFar = nullptr;
Sanjoy Das083f3892016-05-18 22:55:34 +0000348 auto BestScoreSoFar = WS_IllegalOrNegative;
Sanjoy Das083f3892016-05-18 22:55:34 +0000349
350 // In the set of dominating guards, find the one we can merge GuardInst with
351 // for the most profit.
352 for (unsigned i = 0, e = DFSI.getPathLength(); i != e; ++i) {
353 auto *CurBB = DFSI.getPath(i)->getBlock();
Philip Reames9258e9d2018-04-27 17:29:10 +0000354 if (!BlockFilter(CurBB))
355 break;
Sanjoy Das083f3892016-05-18 22:55:34 +0000356 assert(GuardsInBlock.count(CurBB) && "Must have been populated by now!");
357 const auto &GuardsInCurBB = GuardsInBlock.find(CurBB)->second;
358
359 auto I = GuardsInCurBB.begin();
360 auto E = GuardsInCurBB.end();
361
362#ifndef NDEBUG
363 {
364 unsigned Index = 0;
365 for (auto &I : *CurBB) {
366 if (Index == GuardsInCurBB.size())
367 break;
368 if (GuardsInCurBB[Index] == &I)
369 Index++;
370 }
371 assert(Index == GuardsInCurBB.size() &&
372 "Guards expected to be in order!");
373 }
374#endif
375
376 assert((i == (e - 1)) == (GuardInst->getParent() == CurBB) && "Bad DFS?");
377
Max Kazantsev65970aa2019-02-04 09:55:18 +0000378 if (GuardInst->getParent() == CurBB &&
379 CurBB->getTerminator() != GuardInst) {
Sanjoy Das083f3892016-05-18 22:55:34 +0000380 // Corner case: make sure we're only looking at guards strictly dominating
381 // GuardInst when visiting GuardInst->getParent().
382 auto NewEnd = std::find(I, E, GuardInst);
383 assert(NewEnd != E && "GuardInst not in its own block?");
384 E = NewEnd;
385 }
386
387 for (auto *Candidate : make_range(I, E)) {
Max Kazantsev13ab5cb2019-02-04 10:20:51 +0000388 auto Score = computeWideningScore(GuardInst, Candidate, InvertCondition);
Max Kazantseveded4ab2018-08-06 05:49:19 +0000389 LLVM_DEBUG(dbgs() << "Score between " << *getCondition(GuardInst)
390 << " and " << *getCondition(Candidate) << " is "
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000391 << scoreTypeToString(Score) << "\n");
Sanjoy Das083f3892016-05-18 22:55:34 +0000392 if (Score > BestScoreSoFar) {
393 BestScoreSoFar = Score;
394 BestSoFar = Candidate;
395 }
396 }
397 }
398
399 if (BestScoreSoFar == WS_IllegalOrNegative) {
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000400 LLVM_DEBUG(dbgs() << "Did not eliminate guard " << *GuardInst << "\n");
Sanjoy Das083f3892016-05-18 22:55:34 +0000401 return false;
402 }
403
404 assert(BestSoFar != GuardInst && "Should have never visited same guard!");
405 assert(DT.dominates(BestSoFar, GuardInst) && "Should be!");
406
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000407 LLVM_DEBUG(dbgs() << "Widening " << *GuardInst << " into " << *BestSoFar
408 << " with score " << scoreTypeToString(BestScoreSoFar)
409 << "\n");
Max Kazantsev5c490b42018-08-13 07:58:19 +0000410 widenGuard(BestSoFar, getCondition(GuardInst), InvertCondition);
411 auto NewGuardCondition = InvertCondition
412 ? ConstantInt::getFalse(GuardInst->getContext())
413 : ConstantInt::getTrue(GuardInst->getContext());
414 setCondition(GuardInst, NewGuardCondition);
Max Kazantseveded4ab2018-08-06 05:49:19 +0000415 EliminatedGuardsAndBranches.push_back(GuardInst);
Sanjoy Das083f3892016-05-18 22:55:34 +0000416 WidenedGuards.insert(BestSoFar);
417 return true;
418}
419
Max Kazantsev13ab5cb2019-02-04 10:20:51 +0000420GuardWideningImpl::WideningScore
421GuardWideningImpl::computeWideningScore(Instruction *DominatedGuard,
422 Instruction *DominatingGuard,
423 bool InvertCond) {
424 Loop *DominatedGuardLoop = LI.getLoopFor(DominatedGuard->getParent());
425 Loop *DominatingGuardLoop = LI.getLoopFor(DominatingGuard->getParent());
Sanjoy Das083f3892016-05-18 22:55:34 +0000426 bool HoistingOutOfLoop = false;
427
428 if (DominatingGuardLoop != DominatedGuardLoop) {
Philip Reamesde5a1da2018-04-27 17:41:37 +0000429 // Be conservative and don't widen into a sibling loop. TODO: If the
430 // sibling is colder, we should consider allowing this.
Sanjoy Das083f3892016-05-18 22:55:34 +0000431 if (DominatingGuardLoop &&
432 !DominatingGuardLoop->contains(DominatedGuardLoop))
433 return WS_IllegalOrNegative;
434
435 HoistingOutOfLoop = true;
436 }
437
Max Kazantseveded4ab2018-08-06 05:49:19 +0000438 if (!isAvailableAt(getCondition(DominatedGuard), DominatingGuard))
Sanjoy Das083f3892016-05-18 22:55:34 +0000439 return WS_IllegalOrNegative;
440
Philip Reamesde5a1da2018-04-27 17:41:37 +0000441 // If the guard was conditional executed, it may never be reached
442 // dynamically. There are two potential downsides to hoisting it out of the
443 // conditionally executed region: 1) we may spuriously deopt without need and
444 // 2) we have the extra cost of computing the guard condition in the common
445 // case. At the moment, we really only consider the second in our heuristic
446 // here. TODO: evaluate cost model for spurious deopt
Philip Reames502d44812018-04-27 23:15:56 +0000447 // NOTE: As written, this also lets us hoist right over another guard which
Fangrui Songf78650a2018-07-30 19:41:25 +0000448 // is essentially just another spelling for control flow.
Max Kazantseveded4ab2018-08-06 05:49:19 +0000449 if (isWideningCondProfitable(getCondition(DominatedGuard),
Max Kazantsev5c490b42018-08-13 07:58:19 +0000450 getCondition(DominatingGuard), InvertCond))
Sanjoy Das083f3892016-05-18 22:55:34 +0000451 return HoistingOutOfLoop ? WS_VeryPositive : WS_Positive;
452
453 if (HoistingOutOfLoop)
454 return WS_Positive;
455
Philip Reames502d44812018-04-27 23:15:56 +0000456 // Returns true if we might be hoisting above explicit control flow. Note
457 // that this completely ignores implicit control flow (guards, calls which
458 // throw, etc...). That choice appears arbitrary.
459 auto MaybeHoistingOutOfIf = [&]() {
460 auto *DominatingBlock = DominatingGuard->getParent();
461 auto *DominatedBlock = DominatedGuard->getParent();
Fangrui Songf78650a2018-07-30 19:41:25 +0000462
Philip Reames502d44812018-04-27 23:15:56 +0000463 // Same Block?
464 if (DominatedBlock == DominatingBlock)
465 return false;
466 // Obvious successor (common loop header/preheader case)
467 if (DominatedBlock == DominatingBlock->getUniqueSuccessor())
468 return false;
469 // TODO: diamond, triangle cases
470 if (!PDT) return true;
Max Kazantsev9b25bf32018-12-25 07:20:06 +0000471 return !PDT->dominates(DominatedBlock, DominatingBlock);
Philip Reames502d44812018-04-27 23:15:56 +0000472 };
473
474 return MaybeHoistingOutOfIf() ? WS_IllegalOrNegative : WS_Neutral;
Sanjoy Das083f3892016-05-18 22:55:34 +0000475}
476
477bool GuardWideningImpl::isAvailableAt(Value *V, Instruction *Loc,
478 SmallPtrSetImpl<Instruction *> &Visited) {
479 auto *Inst = dyn_cast<Instruction>(V);
480 if (!Inst || DT.dominates(Inst, Loc) || Visited.count(Inst))
481 return true;
482
483 if (!isSafeToSpeculativelyExecute(Inst, Loc, &DT) ||
484 Inst->mayReadFromMemory())
485 return false;
486
487 Visited.insert(Inst);
488
489 // We only want to go _up_ the dominance chain when recursing.
490 assert(!isa<PHINode>(Loc) &&
491 "PHIs should return false for isSafeToSpeculativelyExecute");
492 assert(DT.isReachableFromEntry(Inst->getParent()) &&
493 "We did a DFS from the block entry!");
494 return all_of(Inst->operands(),
495 [&](Value *Op) { return isAvailableAt(Op, Loc, Visited); });
496}
497
498void GuardWideningImpl::makeAvailableAt(Value *V, Instruction *Loc) {
499 auto *Inst = dyn_cast<Instruction>(V);
500 if (!Inst || DT.dominates(Inst, Loc))
501 return;
502
503 assert(isSafeToSpeculativelyExecute(Inst, Loc, &DT) &&
504 !Inst->mayReadFromMemory() && "Should've checked with isAvailableAt!");
505
506 for (Value *Op : Inst->operands())
507 makeAvailableAt(Op, Loc);
508
509 Inst->moveBefore(Loc);
510}
511
512bool GuardWideningImpl::widenCondCommon(Value *Cond0, Value *Cond1,
Max Kazantsev5c490b42018-08-13 07:58:19 +0000513 Instruction *InsertPt, Value *&Result,
514 bool InvertCondition) {
Sanjoy Das083f3892016-05-18 22:55:34 +0000515 using namespace llvm::PatternMatch;
516
517 {
518 // L >u C0 && L >u C1 -> L >u max(C0, C1)
519 ConstantInt *RHS0, *RHS1;
520 Value *LHS;
521 ICmpInst::Predicate Pred0, Pred1;
522 if (match(Cond0, m_ICmp(Pred0, m_Value(LHS), m_ConstantInt(RHS0))) &&
523 match(Cond1, m_ICmp(Pred1, m_Specific(LHS), m_ConstantInt(RHS1)))) {
Max Kazantsev5c490b42018-08-13 07:58:19 +0000524 if (InvertCondition)
525 Pred1 = ICmpInst::getInversePredicate(Pred1);
Sanjoy Das083f3892016-05-18 22:55:34 +0000526
Sanjoy Dasb784ed32016-05-19 03:53:17 +0000527 ConstantRange CR0 =
528 ConstantRange::makeExactICmpRegion(Pred0, RHS0->getValue());
529 ConstantRange CR1 =
530 ConstantRange::makeExactICmpRegion(Pred1, RHS1->getValue());
Sanjoy Das083f3892016-05-18 22:55:34 +0000531
Sanjoy Dasb784ed32016-05-19 03:53:17 +0000532 // SubsetIntersect is a subset of the actual mathematical intersection of
Sanjay Patelf8ee0e02016-06-19 17:20:27 +0000533 // CR0 and CR1, while SupersetIntersect is a superset of the actual
Sanjoy Dasb784ed32016-05-19 03:53:17 +0000534 // mathematical intersection. If these two ConstantRanges are equal, then
535 // we know we were able to represent the actual mathematical intersection
536 // of CR0 and CR1, and can use the same to generate an icmp instruction.
537 //
538 // Given what we're doing here and the semantics of guards, it would
539 // actually be correct to just use SubsetIntersect, but that may be too
540 // aggressive in cases we care about.
541 auto SubsetIntersect = CR0.inverse().unionWith(CR1.inverse()).inverse();
542 auto SupersetIntersect = CR0.intersectWith(CR1);
543
544 APInt NewRHSAP;
545 CmpInst::Predicate Pred;
546 if (SubsetIntersect == SupersetIntersect &&
547 SubsetIntersect.getEquivalentICmp(Pred, NewRHSAP)) {
Sanjoy Das083f3892016-05-18 22:55:34 +0000548 if (InsertPt) {
Sanjoy Dasb784ed32016-05-19 03:53:17 +0000549 ConstantInt *NewRHS = ConstantInt::get(Cond0->getContext(), NewRHSAP);
550 Result = new ICmpInst(InsertPt, Pred, LHS, NewRHS, "wide.chk");
Sanjoy Das083f3892016-05-18 22:55:34 +0000551 }
Sanjoy Das083f3892016-05-18 22:55:34 +0000552 return true;
553 }
554 }
555 }
556
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000557 {
558 SmallVector<GuardWideningImpl::RangeCheck, 4> Checks, CombinedChecks;
Max Kazantsev5c490b42018-08-13 07:58:19 +0000559 // TODO: Support InvertCondition case?
560 if (!InvertCondition &&
561 parseRangeChecks(Cond0, Checks) && parseRangeChecks(Cond1, Checks) &&
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000562 combineRangeChecks(Checks, CombinedChecks)) {
563 if (InsertPt) {
564 Result = nullptr;
565 for (auto &RC : CombinedChecks) {
Sanjoy Dasbe991532016-05-24 20:54:45 +0000566 makeAvailableAt(RC.getCheckInst(), InsertPt);
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000567 if (Result)
Sanjoy Dasbe991532016-05-24 20:54:45 +0000568 Result = BinaryOperator::CreateAnd(RC.getCheckInst(), Result, "",
569 InsertPt);
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000570 else
Sanjoy Dasbe991532016-05-24 20:54:45 +0000571 Result = RC.getCheckInst();
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000572 }
573
574 Result->setName("wide.chk");
575 }
576 return true;
577 }
578 }
579
Sanjoy Das083f3892016-05-18 22:55:34 +0000580 // Base case -- just logical-and the two conditions together.
581
582 if (InsertPt) {
583 makeAvailableAt(Cond0, InsertPt);
584 makeAvailableAt(Cond1, InsertPt);
Max Kazantsev5c490b42018-08-13 07:58:19 +0000585 if (InvertCondition)
586 Cond1 = BinaryOperator::CreateNot(Cond1, "inverted", InsertPt);
Sanjoy Das083f3892016-05-18 22:55:34 +0000587 Result = BinaryOperator::CreateAnd(Cond0, Cond1, "wide.chk", InsertPt);
588 }
589
590 // We were not able to compute Cond0 AND Cond1 for the price of one.
591 return false;
592}
593
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000594bool GuardWideningImpl::parseRangeChecks(
595 Value *CheckCond, SmallVectorImpl<GuardWideningImpl::RangeCheck> &Checks,
596 SmallPtrSetImpl<Value *> &Visited) {
597 if (!Visited.insert(CheckCond).second)
598 return true;
599
600 using namespace llvm::PatternMatch;
601
602 {
603 Value *AndLHS, *AndRHS;
604 if (match(CheckCond, m_And(m_Value(AndLHS), m_Value(AndRHS))))
605 return parseRangeChecks(AndLHS, Checks) &&
606 parseRangeChecks(AndRHS, Checks);
607 }
608
609 auto *IC = dyn_cast<ICmpInst>(CheckCond);
610 if (!IC || !IC->getOperand(0)->getType()->isIntegerTy() ||
611 (IC->getPredicate() != ICmpInst::ICMP_ULT &&
612 IC->getPredicate() != ICmpInst::ICMP_UGT))
613 return false;
614
615 Value *CmpLHS = IC->getOperand(0), *CmpRHS = IC->getOperand(1);
616 if (IC->getPredicate() == ICmpInst::ICMP_UGT)
617 std::swap(CmpLHS, CmpRHS);
618
619 auto &DL = IC->getModule()->getDataLayout();
620
Sanjoy Dasbe991532016-05-24 20:54:45 +0000621 GuardWideningImpl::RangeCheck Check(
622 CmpLHS, cast<ConstantInt>(ConstantInt::getNullValue(CmpRHS->getType())),
623 CmpRHS, IC);
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000624
Sanjoy Dasbe991532016-05-24 20:54:45 +0000625 if (!isKnownNonNegative(Check.getLength(), DL))
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000626 return false;
627
628 // What we have in \c Check now is a correct interpretation of \p CheckCond.
629 // Try to see if we can move some constant offsets into the \c Offset field.
630
631 bool Changed;
Sanjoy Dasbe991532016-05-24 20:54:45 +0000632 auto &Ctx = CheckCond->getContext();
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000633
634 do {
635 Value *OpLHS;
636 ConstantInt *OpRHS;
637 Changed = false;
638
639#ifndef NDEBUG
Sanjoy Dasbe991532016-05-24 20:54:45 +0000640 auto *BaseInst = dyn_cast<Instruction>(Check.getBase());
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000641 assert((!BaseInst || DT.isReachableFromEntry(BaseInst->getParent())) &&
642 "Unreachable instruction?");
643#endif
644
Sanjoy Dasbe991532016-05-24 20:54:45 +0000645 if (match(Check.getBase(), m_Add(m_Value(OpLHS), m_ConstantInt(OpRHS)))) {
646 Check.setBase(OpLHS);
647 APInt NewOffset = Check.getOffsetValue() + OpRHS->getValue();
648 Check.setOffset(ConstantInt::get(Ctx, NewOffset));
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000649 Changed = true;
Sanjoy Dasbe991532016-05-24 20:54:45 +0000650 } else if (match(Check.getBase(),
651 m_Or(m_Value(OpLHS), m_ConstantInt(OpRHS)))) {
Craig Topper8205a1a2017-05-24 16:53:07 +0000652 KnownBits Known = computeKnownBits(OpLHS, DL);
Craig Topperb45eabc2017-04-26 16:39:58 +0000653 if ((OpRHS->getValue() & Known.Zero) == OpRHS->getValue()) {
Sanjoy Dasbe991532016-05-24 20:54:45 +0000654 Check.setBase(OpLHS);
655 APInt NewOffset = Check.getOffsetValue() + OpRHS->getValue();
656 Check.setOffset(ConstantInt::get(Ctx, NewOffset));
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000657 Changed = true;
658 }
659 }
660 } while (Changed);
661
662 Checks.push_back(Check);
663 return true;
664}
665
666bool GuardWideningImpl::combineRangeChecks(
667 SmallVectorImpl<GuardWideningImpl::RangeCheck> &Checks,
668 SmallVectorImpl<GuardWideningImpl::RangeCheck> &RangeChecksOut) {
669 unsigned OldCount = Checks.size();
670 while (!Checks.empty()) {
Sanjoy Dasbe6c7a12016-05-21 02:24:44 +0000671 // Pick all of the range checks with a specific base and length, and try to
672 // merge them.
Sanjoy Dasbe991532016-05-24 20:54:45 +0000673 Value *CurrentBase = Checks.front().getBase();
674 Value *CurrentLength = Checks.front().getLength();
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000675
Sanjoy Dasbe6c7a12016-05-21 02:24:44 +0000676 SmallVector<GuardWideningImpl::RangeCheck, 3> CurrentChecks;
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000677
Sanjoy Dasbe6c7a12016-05-21 02:24:44 +0000678 auto IsCurrentCheck = [&](GuardWideningImpl::RangeCheck &RC) {
Sanjoy Dasbe991532016-05-24 20:54:45 +0000679 return RC.getBase() == CurrentBase && RC.getLength() == CurrentLength;
Sanjoy Dasbe6c7a12016-05-21 02:24:44 +0000680 };
681
Sanjoy Das90208722017-02-21 00:38:44 +0000682 copy_if(Checks, std::back_inserter(CurrentChecks), IsCurrentCheck);
Sanjoy Dasbe6c7a12016-05-21 02:24:44 +0000683 Checks.erase(remove_if(Checks, IsCurrentCheck), Checks.end());
684
685 assert(CurrentChecks.size() != 0 && "We know we have at least one!");
686
687 if (CurrentChecks.size() < 3) {
688 RangeChecksOut.insert(RangeChecksOut.end(), CurrentChecks.begin(),
689 CurrentChecks.end());
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000690 continue;
691 }
692
Sanjoy Dasbe6c7a12016-05-21 02:24:44 +0000693 // CurrentChecks.size() will typically be 3 here, but so far there has been
694 // no need to hard-code that fact.
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000695
Fangrui Song0cac7262018-09-27 02:13:45 +0000696 llvm::sort(CurrentChecks, [&](const GuardWideningImpl::RangeCheck &LHS,
697 const GuardWideningImpl::RangeCheck &RHS) {
Sanjoy Dasbe991532016-05-24 20:54:45 +0000698 return LHS.getOffsetValue().slt(RHS.getOffsetValue());
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000699 });
700
701 // Note: std::sort should not invalidate the ChecksStart iterator.
702
Sanjoy Dasbe991532016-05-24 20:54:45 +0000703 ConstantInt *MinOffset = CurrentChecks.front().getOffset(),
704 *MaxOffset = CurrentChecks.back().getOffset();
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000705
706 unsigned BitWidth = MaxOffset->getValue().getBitWidth();
707 if ((MaxOffset->getValue() - MinOffset->getValue())
708 .ugt(APInt::getSignedMinValue(BitWidth)))
709 return false;
710
711 APInt MaxDiff = MaxOffset->getValue() - MinOffset->getValue();
Benjamin Kramer46e38f32016-06-08 10:01:20 +0000712 const APInt &HighOffset = MaxOffset->getValue();
Sanjoy Das23519752016-05-19 23:15:59 +0000713 auto OffsetOK = [&](const GuardWideningImpl::RangeCheck &RC) {
Sanjoy Dasbe991532016-05-24 20:54:45 +0000714 return (HighOffset - RC.getOffsetValue()).ult(MaxDiff);
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000715 };
716
717 if (MaxDiff.isMinValue() ||
Sanjoy Dasbe6c7a12016-05-21 02:24:44 +0000718 !std::all_of(std::next(CurrentChecks.begin()), CurrentChecks.end(),
719 OffsetOK))
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000720 return false;
721
722 // We have a series of f+1 checks as:
723 //
724 // I+k_0 u< L ... Chk_0
Sanjoy Das23f314d2017-05-03 18:29:34 +0000725 // I+k_1 u< L ... Chk_1
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000726 // ...
Sanjoy Das23f314d2017-05-03 18:29:34 +0000727 // I+k_f u< L ... Chk_f
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000728 //
Sanjoy Das23f314d2017-05-03 18:29:34 +0000729 // with forall i in [0,f]: k_f-k_i u< k_f-k_0 ... Precond_0
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000730 // k_f-k_0 u< INT_MIN+k_f ... Precond_1
731 // k_f != k_0 ... Precond_2
732 //
733 // Claim:
Sanjoy Das23f314d2017-05-03 18:29:34 +0000734 // Chk_0 AND Chk_f implies all the other checks
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000735 //
736 // Informal proof sketch:
737 //
738 // We will show that the integer range [I+k_0,I+k_f] does not unsigned-wrap
739 // (i.e. going from I+k_0 to I+k_f does not cross the -1,0 boundary) and
740 // thus I+k_f is the greatest unsigned value in that range.
741 //
742 // This combined with Ckh_(f+1) shows that everything in that range is u< L.
743 // Via Precond_0 we know that all of the indices in Chk_0 through Chk_(f+1)
744 // lie in [I+k_0,I+k_f], this proving our claim.
745 //
746 // To see that [I+k_0,I+k_f] is not a wrapping range, note that there are
747 // two possibilities: I+k_0 u< I+k_f or I+k_0 >u I+k_f (they can't be equal
748 // since k_0 != k_f). In the former case, [I+k_0,I+k_f] is not a wrapping
749 // range by definition, and the latter case is impossible:
750 //
751 // 0-----I+k_f---I+k_0----L---INT_MAX,INT_MIN------------------(-1)
752 // xxxxxx xxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx
753 //
754 // For Chk_0 to succeed, we'd have to have k_f-k_0 (the range highlighted
755 // with 'x' above) to be at least >u INT_MIN.
756
Sanjoy Dasbe6c7a12016-05-21 02:24:44 +0000757 RangeChecksOut.emplace_back(CurrentChecks.front());
758 RangeChecksOut.emplace_back(CurrentChecks.back());
Sanjoy Dasf5f03312016-05-19 22:55:46 +0000759 }
760
761 assert(RangeChecksOut.size() <= OldCount && "We pessimized!");
762 return RangeChecksOut.size() != OldCount;
763}
764
Florian Hahn6b3216a2017-07-31 10:07:49 +0000765#ifndef NDEBUG
Sanjoy Das083f3892016-05-18 22:55:34 +0000766StringRef GuardWideningImpl::scoreTypeToString(WideningScore WS) {
767 switch (WS) {
768 case WS_IllegalOrNegative:
769 return "IllegalOrNegative";
770 case WS_Neutral:
771 return "Neutral";
772 case WS_Positive:
773 return "Positive";
774 case WS_VeryPositive:
775 return "VeryPositive";
776 }
777
778 llvm_unreachable("Fully covered switch above!");
779}
Florian Hahn6b3216a2017-07-31 10:07:49 +0000780#endif
Sanjoy Das083f3892016-05-18 22:55:34 +0000781
Philip Reames6a1f3442018-03-23 23:41:47 +0000782PreservedAnalyses GuardWideningPass::run(Function &F,
783 FunctionAnalysisManager &AM) {
784 auto &DT = AM.getResult<DominatorTreeAnalysis>(F);
785 auto &LI = AM.getResult<LoopAnalysis>(F);
786 auto &PDT = AM.getResult<PostDominatorTreeAnalysis>(F);
Max Kazantseveded4ab2018-08-06 05:49:19 +0000787 BranchProbabilityInfo *BPI = nullptr;
788 if (WidenFrequentBranches)
789 BPI = AM.getCachedResult<BranchProbabilityAnalysis>(F);
790 if (!GuardWideningImpl(DT, &PDT, LI, BPI, DT.getRootNode(),
Philip Reames9258e9d2018-04-27 17:29:10 +0000791 [](BasicBlock*) { return true; } ).run())
Philip Reames6a1f3442018-03-23 23:41:47 +0000792 return PreservedAnalyses::all();
793
794 PreservedAnalyses PA;
795 PA.preserveSet<CFGAnalyses>();
796 return PA;
797}
798
799namespace {
800struct GuardWideningLegacyPass : public FunctionPass {
801 static char ID;
Philip Reames6a1f3442018-03-23 23:41:47 +0000802
803 GuardWideningLegacyPass() : FunctionPass(ID) {
804 initializeGuardWideningLegacyPassPass(*PassRegistry::getPassRegistry());
805 }
806
807 bool runOnFunction(Function &F) override {
808 if (skipFunction(F))
809 return false;
Philip Reames9258e9d2018-04-27 17:29:10 +0000810 auto &DT = getAnalysis<DominatorTreeWrapperPass>().getDomTree();
811 auto &LI = getAnalysis<LoopInfoWrapperPass>().getLoopInfo();
812 auto &PDT = getAnalysis<PostDominatorTreeWrapperPass>().getPostDomTree();
Max Kazantseveded4ab2018-08-06 05:49:19 +0000813 BranchProbabilityInfo *BPI = nullptr;
814 if (WidenFrequentBranches)
815 BPI = &getAnalysis<BranchProbabilityInfoWrapperPass>().getBPI();
816 return GuardWideningImpl(DT, &PDT, LI, BPI, DT.getRootNode(),
Philip Reames9258e9d2018-04-27 17:29:10 +0000817 [](BasicBlock*) { return true; } ).run();
Philip Reames6a1f3442018-03-23 23:41:47 +0000818 }
819
820 void getAnalysisUsage(AnalysisUsage &AU) const override {
821 AU.setPreservesCFG();
822 AU.addRequired<DominatorTreeWrapperPass>();
823 AU.addRequired<PostDominatorTreeWrapperPass>();
824 AU.addRequired<LoopInfoWrapperPass>();
Max Kazantseveded4ab2018-08-06 05:49:19 +0000825 if (WidenFrequentBranches)
826 AU.addRequired<BranchProbabilityInfoWrapperPass>();
Philip Reames6a1f3442018-03-23 23:41:47 +0000827 }
828};
Philip Reames9258e9d2018-04-27 17:29:10 +0000829
830/// Same as above, but restricted to a single loop at a time. Can be
831/// scheduled with other loop passes w/o breaking out of LPM
832struct LoopGuardWideningLegacyPass : public LoopPass {
833 static char ID;
834
835 LoopGuardWideningLegacyPass() : LoopPass(ID) {
836 initializeLoopGuardWideningLegacyPassPass(*PassRegistry::getPassRegistry());
837 }
838
839 bool runOnLoop(Loop *L, LPPassManager &LPM) override {
840 if (skipLoop(L))
841 return false;
842 auto &DT = getAnalysis<DominatorTreeWrapperPass>().getDomTree();
843 auto &LI = getAnalysis<LoopInfoWrapperPass>().getLoopInfo();
Philip Reames502d44812018-04-27 23:15:56 +0000844 auto *PDTWP = getAnalysisIfAvailable<PostDominatorTreeWrapperPass>();
845 auto *PDT = PDTWP ? &PDTWP->getPostDomTree() : nullptr;
Philip Reames9258e9d2018-04-27 17:29:10 +0000846 BasicBlock *RootBB = L->getLoopPredecessor();
847 if (!RootBB)
848 RootBB = L->getHeader();
849 auto BlockFilter = [&](BasicBlock *BB) {
850 return BB == RootBB || L->contains(BB);
851 };
Max Kazantseveded4ab2018-08-06 05:49:19 +0000852 BranchProbabilityInfo *BPI = nullptr;
853 if (WidenFrequentBranches)
854 BPI = &getAnalysis<BranchProbabilityInfoWrapperPass>().getBPI();
855 return GuardWideningImpl(DT, PDT, LI, BPI,
Philip Reames9258e9d2018-04-27 17:29:10 +0000856 DT.getNode(RootBB), BlockFilter).run();
857 }
858
859 void getAnalysisUsage(AnalysisUsage &AU) const override {
Max Kazantseveded4ab2018-08-06 05:49:19 +0000860 if (WidenFrequentBranches)
861 AU.addRequired<BranchProbabilityInfoWrapperPass>();
Philip Reames9258e9d2018-04-27 17:29:10 +0000862 AU.setPreservesCFG();
863 getLoopAnalysisUsage(AU);
Philip Reames9258e9d2018-04-27 17:29:10 +0000864 AU.addPreserved<PostDominatorTreeWrapperPass>();
865 }
866};
Philip Reames6a1f3442018-03-23 23:41:47 +0000867}
868
Sanjoy Das083f3892016-05-18 22:55:34 +0000869char GuardWideningLegacyPass::ID = 0;
Philip Reames9258e9d2018-04-27 17:29:10 +0000870char LoopGuardWideningLegacyPass::ID = 0;
Sanjoy Das083f3892016-05-18 22:55:34 +0000871
872INITIALIZE_PASS_BEGIN(GuardWideningLegacyPass, "guard-widening", "Widen guards",
873 false, false)
874INITIALIZE_PASS_DEPENDENCY(DominatorTreeWrapperPass)
875INITIALIZE_PASS_DEPENDENCY(PostDominatorTreeWrapperPass)
876INITIALIZE_PASS_DEPENDENCY(LoopInfoWrapperPass)
Max Kazantseveded4ab2018-08-06 05:49:19 +0000877if (WidenFrequentBranches)
878 INITIALIZE_PASS_DEPENDENCY(BranchProbabilityInfoWrapperPass)
Sanjoy Das083f3892016-05-18 22:55:34 +0000879INITIALIZE_PASS_END(GuardWideningLegacyPass, "guard-widening", "Widen guards",
880 false, false)
881
Philip Reames9258e9d2018-04-27 17:29:10 +0000882INITIALIZE_PASS_BEGIN(LoopGuardWideningLegacyPass, "loop-guard-widening",
883 "Widen guards (within a single loop, as a loop pass)",
884 false, false)
885INITIALIZE_PASS_DEPENDENCY(DominatorTreeWrapperPass)
886INITIALIZE_PASS_DEPENDENCY(PostDominatorTreeWrapperPass)
887INITIALIZE_PASS_DEPENDENCY(LoopInfoWrapperPass)
Max Kazantseveded4ab2018-08-06 05:49:19 +0000888if (WidenFrequentBranches)
889 INITIALIZE_PASS_DEPENDENCY(BranchProbabilityInfoWrapperPass)
Philip Reames9258e9d2018-04-27 17:29:10 +0000890INITIALIZE_PASS_END(LoopGuardWideningLegacyPass, "loop-guard-widening",
891 "Widen guards (within a single loop, as a loop pass)",
892 false, false)
893
Sanjoy Das083f3892016-05-18 22:55:34 +0000894FunctionPass *llvm::createGuardWideningPass() {
895 return new GuardWideningLegacyPass();
896}
Philip Reames9258e9d2018-04-27 17:29:10 +0000897
898Pass *llvm::createLoopGuardWideningPass() {
899 return new LoopGuardWideningLegacyPass();
900}