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Chris Lattner946b2552004-04-18 05:20:17 +00001//===-- LoopUnroll.cpp - Loop unroller pass -------------------------------===//
Misha Brukmanb1c93172005-04-21 23:48:37 +00002//
Chris Lattner946b2552004-04-18 05:20:17 +00003// The LLVM Compiler Infrastructure
4//
Chris Lattnerf3ebc3f2007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Misha Brukmanb1c93172005-04-21 23:48:37 +00007//
Chris Lattner946b2552004-04-18 05:20:17 +00008//===----------------------------------------------------------------------===//
9//
10// This pass implements a simple loop unroller. It works best when loops have
11// been canonicalized by the -indvars pass, allowing it to determine the trip
12// counts of loops easily.
Chris Lattner946b2552004-04-18 05:20:17 +000013//===----------------------------------------------------------------------===//
14
Sean Silvae3c18a52016-07-19 23:54:23 +000015#include "llvm/Transforms/Scalar/LoopUnrollPass.h"
Chandler Carruth3b057b32015-02-13 03:57:40 +000016#include "llvm/ADT/SetVector.h"
Daniel Jasperaec2fa32016-12-19 08:22:17 +000017#include "llvm/Analysis/AssumptionCache.h"
Chris Lattner679572e2011-01-02 07:35:53 +000018#include "llvm/Analysis/CodeMetrics.h"
Dehao Chend55bc4c2016-05-05 00:54:54 +000019#include "llvm/Analysis/GlobalsModRef.h"
Benjamin Kramer799003b2015-03-23 19:32:43 +000020#include "llvm/Analysis/InstructionSimplify.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000021#include "llvm/Analysis/LoopPass.h"
Michael Zolotukhin1da4afd2016-02-08 23:03:59 +000022#include "llvm/Analysis/LoopUnrollAnalyzer.h"
Adam Nemet12937c32016-07-29 19:29:47 +000023#include "llvm/Analysis/OptimizationDiagnosticInfo.h"
Dan Gohman0141c132010-07-26 18:11:16 +000024#include "llvm/Analysis/ScalarEvolution.h"
Michael Zolotukhina9aadd22015-02-05 02:34:00 +000025#include "llvm/Analysis/ScalarEvolutionExpressions.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000026#include "llvm/IR/DataLayout.h"
Chandler Carruth5ad5f152014-01-13 09:26:24 +000027#include "llvm/IR/Dominators.h"
Benjamin Kramer799003b2015-03-23 19:32:43 +000028#include "llvm/IR/InstVisitor.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000029#include "llvm/IR/IntrinsicInst.h"
Eli Benderskyff903242014-06-16 23:53:02 +000030#include "llvm/IR/Metadata.h"
Reid Spencer7c16caa2004-09-01 22:55:40 +000031#include "llvm/Support/CommandLine.h"
32#include "llvm/Support/Debug.h"
Daniel Dunbar0dd5e1e2009-07-25 00:23:56 +000033#include "llvm/Support/raw_ostream.h"
Dehao Chend55bc4c2016-05-05 00:54:54 +000034#include "llvm/Transforms/Scalar.h"
Chandler Carruth3bab7e12017-01-11 09:43:56 +000035#include "llvm/Transforms/Scalar/LoopPassManager.h"
Chandler Carruth31088a92016-02-19 10:45:18 +000036#include "llvm/Transforms/Utils/LoopUtils.h"
Dan Gohman3dc2d922008-05-14 00:24:14 +000037#include "llvm/Transforms/Utils/UnrollLoop.h"
Duncan Sands67933e62008-05-16 09:30:00 +000038#include <climits>
Benjamin Kramer82de7d32016-05-27 14:27:24 +000039#include <utility>
Chris Lattner946b2552004-04-18 05:20:17 +000040
Dan Gohman3dc2d922008-05-14 00:24:14 +000041using namespace llvm;
Chris Lattner946b2552004-04-18 05:20:17 +000042
Chandler Carruth964daaa2014-04-22 02:55:47 +000043#define DEBUG_TYPE "loop-unroll"
44
Dan Gohmand78c4002008-05-13 00:00:25 +000045static cl::opt<unsigned>
Justin Bognera1dd4932016-01-12 00:55:26 +000046 UnrollThreshold("unroll-threshold", cl::Hidden,
Dehao Chenc3f87f02017-01-17 23:39:33 +000047 cl::desc("The cost threshold for loop unrolling"));
48
49static cl::opt<unsigned> UnrollPartialThreshold(
50 "unroll-partial-threshold", cl::Hidden,
51 cl::desc("The cost threshold for partial loop unrolling"));
Chandler Carruth9dabd142015-06-05 17:01:43 +000052
Dehao Chencc763442016-12-30 00:50:28 +000053static cl::opt<unsigned> UnrollMaxPercentThresholdBoost(
54 "unroll-max-percent-threshold-boost", cl::init(400), cl::Hidden,
55 cl::desc("The maximum 'boost' (represented as a percentage >= 100) applied "
56 "to the threshold when aggressively unrolling a loop due to the "
57 "dynamic cost savings. If completely unrolling a loop will reduce "
58 "the total runtime from X to Y, we boost the loop unroll "
59 "threshold to DefaultThreshold*std::min(MaxPercentThresholdBoost, "
60 "X/Y). This limit avoids excessive code bloat."));
Dan Gohmand78c4002008-05-13 00:00:25 +000061
Michael Zolotukhina9aadd22015-02-05 02:34:00 +000062static cl::opt<unsigned> UnrollMaxIterationsCountToAnalyze(
Michael Zolotukhin8f7a2422016-05-24 23:00:05 +000063 "unroll-max-iteration-count-to-analyze", cl::init(10), cl::Hidden,
Michael Zolotukhina9aadd22015-02-05 02:34:00 +000064 cl::desc("Don't allow loop unrolling to simulate more than this number of"
65 "iterations when checking full unroll profitability"));
66
Dehao Chend55bc4c2016-05-05 00:54:54 +000067static cl::opt<unsigned> UnrollCount(
68 "unroll-count", cl::Hidden,
69 cl::desc("Use this unroll count for all loops including those with "
70 "unroll_count pragma values, for testing purposes"));
Dan Gohmand78c4002008-05-13 00:00:25 +000071
Dehao Chend55bc4c2016-05-05 00:54:54 +000072static cl::opt<unsigned> UnrollMaxCount(
73 "unroll-max-count", cl::Hidden,
74 cl::desc("Set the max unroll count for partial and runtime unrolling, for"
75 "testing purposes"));
Fiona Glaser045afc42016-04-06 16:57:25 +000076
Dehao Chend55bc4c2016-05-05 00:54:54 +000077static cl::opt<unsigned> UnrollFullMaxCount(
78 "unroll-full-max-count", cl::Hidden,
79 cl::desc(
80 "Set the max unroll count for full unrolling, for testing purposes"));
Fiona Glaser045afc42016-04-06 16:57:25 +000081
Matthijs Kooijman98b5c162008-07-29 13:21:23 +000082static cl::opt<bool>
Dehao Chend55bc4c2016-05-05 00:54:54 +000083 UnrollAllowPartial("unroll-allow-partial", cl::Hidden,
84 cl::desc("Allows loops to be partially unrolled until "
85 "-unroll-threshold loop size is reached."));
Matthijs Kooijman98b5c162008-07-29 13:21:23 +000086
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +000087static cl::opt<bool> UnrollAllowRemainder(
88 "unroll-allow-remainder", cl::Hidden,
89 cl::desc("Allow generation of a loop remainder (extra iterations) "
90 "when unrolling a loop."));
91
Andrew Trickd04d15292011-12-09 06:19:40 +000092static cl::opt<bool>
Dehao Chend55bc4c2016-05-05 00:54:54 +000093 UnrollRuntime("unroll-runtime", cl::ZeroOrMore, cl::Hidden,
94 cl::desc("Unroll loops with run-time trip counts"));
Andrew Trickd04d15292011-12-09 06:19:40 +000095
Haicheng Wu1ef17e92016-10-12 21:29:38 +000096static cl::opt<unsigned> UnrollMaxUpperBound(
97 "unroll-max-upperbound", cl::init(8), cl::Hidden,
98 cl::desc(
99 "The max of trip count upper bound that is considered in unrolling"));
100
Dehao Chend55bc4c2016-05-05 00:54:54 +0000101static cl::opt<unsigned> PragmaUnrollThreshold(
102 "pragma-unroll-threshold", cl::init(16 * 1024), cl::Hidden,
103 cl::desc("Unrolled size limit for loops with an unroll(full) or "
104 "unroll_count pragma."));
Justin Bognera1dd4932016-01-12 00:55:26 +0000105
Dehao Chen41d72a82016-11-17 01:17:02 +0000106static cl::opt<unsigned> FlatLoopTripCountThreshold(
107 "flat-loop-tripcount-threshold", cl::init(5), cl::Hidden,
108 cl::desc("If the runtime tripcount for the loop is lower than the "
109 "threshold, the loop is considered as flat and will be less "
110 "aggressively unrolled."));
111
Michael Kupersteinb151a642016-11-30 21:13:57 +0000112static cl::opt<bool>
Michael Kupersteinc2af82b2017-02-22 00:27:34 +0000113 UnrollAllowPeeling("unroll-allow-peeling", cl::init(true), cl::Hidden,
Michael Kupersteinb151a642016-11-30 21:13:57 +0000114 cl::desc("Allows loops to be peeled when the dynamic "
115 "trip count is known to be low."));
116
Chandler Carruthce40fa12017-01-25 02:49:01 +0000117// This option isn't ever intended to be enabled, it serves to allow
118// experiments to check the assumptions about when this kind of revisit is
119// necessary.
120static cl::opt<bool> UnrollRevisitChildLoops(
121 "unroll-revisit-child-loops", cl::Hidden,
122 cl::desc("Enqueue and re-visit child loops in the loop PM after unrolling. "
123 "This shouldn't typically be needed as child loops (or their "
124 "clones) were already visited."));
125
Justin Bognera1dd4932016-01-12 00:55:26 +0000126/// A magic value for use with the Threshold parameter to indicate
127/// that the loop unroll should be performed regardless of how much
128/// code expansion would result.
129static const unsigned NoThreshold = UINT_MAX;
130
Justin Bognera1dd4932016-01-12 00:55:26 +0000131/// Gather the various unrolling parameters based on the defaults, compiler
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000132/// flags, TTI overrides and user specified parameters.
Justin Bognera1dd4932016-01-12 00:55:26 +0000133static TargetTransformInfo::UnrollingPreferences gatherUnrollingPreferences(
Geoff Berry66d9bdb2017-06-28 15:53:17 +0000134 Loop *L, ScalarEvolution &SE, const TargetTransformInfo &TTI, int OptLevel,
Dehao Chen7d230322017-02-18 03:46:51 +0000135 Optional<unsigned> UserThreshold, Optional<unsigned> UserCount,
136 Optional<bool> UserAllowPartial, Optional<bool> UserRuntime,
137 Optional<bool> UserUpperBound) {
Justin Bognera1dd4932016-01-12 00:55:26 +0000138 TargetTransformInfo::UnrollingPreferences UP;
139
140 // Set up the defaults
Dehao Chen7d230322017-02-18 03:46:51 +0000141 UP.Threshold = OptLevel > 2 ? 300 : 150;
Dehao Chencc763442016-12-30 00:50:28 +0000142 UP.MaxPercentThresholdBoost = 400;
Hans Wennborg719b26b2016-05-10 21:45:55 +0000143 UP.OptSizeThreshold = 0;
Dehao Chenc3f87f02017-01-17 23:39:33 +0000144 UP.PartialThreshold = 150;
Hans Wennborg719b26b2016-05-10 21:45:55 +0000145 UP.PartialOptSizeThreshold = 0;
Justin Bognera1dd4932016-01-12 00:55:26 +0000146 UP.Count = 0;
Michael Kupersteinb151a642016-11-30 21:13:57 +0000147 UP.PeelCount = 0;
Jonas Paulsson58c5a7f2016-09-28 09:41:38 +0000148 UP.DefaultUnrollRuntimeCount = 8;
Justin Bognera1dd4932016-01-12 00:55:26 +0000149 UP.MaxCount = UINT_MAX;
Fiona Glaser045afc42016-04-06 16:57:25 +0000150 UP.FullUnrollMaxCount = UINT_MAX;
Evgeny Stupachenkoc2698cd2016-11-09 19:56:39 +0000151 UP.BEInsns = 2;
Justin Bognera1dd4932016-01-12 00:55:26 +0000152 UP.Partial = false;
153 UP.Runtime = false;
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000154 UP.AllowRemainder = true;
Justin Bognera1dd4932016-01-12 00:55:26 +0000155 UP.AllowExpensiveTripCount = false;
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000156 UP.Force = false;
Haicheng Wu1ef17e92016-10-12 21:29:38 +0000157 UP.UpperBound = false;
Michael Kupersteinc2af82b2017-02-22 00:27:34 +0000158 UP.AllowPeeling = true;
Justin Bognera1dd4932016-01-12 00:55:26 +0000159
160 // Override with any target specific settings
Geoff Berry66d9bdb2017-06-28 15:53:17 +0000161 TTI.getUnrollingPreferences(L, SE, UP);
Justin Bognera1dd4932016-01-12 00:55:26 +0000162
163 // Apply size attributes
164 if (L->getHeader()->getParent()->optForSize()) {
165 UP.Threshold = UP.OptSizeThreshold;
166 UP.PartialThreshold = UP.PartialOptSizeThreshold;
167 }
168
Justin Bognera1dd4932016-01-12 00:55:26 +0000169 // Apply any user values specified by cl::opt
Dehao Chenc3f87f02017-01-17 23:39:33 +0000170 if (UnrollThreshold.getNumOccurrences() > 0)
Justin Bognera1dd4932016-01-12 00:55:26 +0000171 UP.Threshold = UnrollThreshold;
Dehao Chenc3f87f02017-01-17 23:39:33 +0000172 if (UnrollPartialThreshold.getNumOccurrences() > 0)
173 UP.PartialThreshold = UnrollPartialThreshold;
Dehao Chencc763442016-12-30 00:50:28 +0000174 if (UnrollMaxPercentThresholdBoost.getNumOccurrences() > 0)
175 UP.MaxPercentThresholdBoost = UnrollMaxPercentThresholdBoost;
Fiona Glaser045afc42016-04-06 16:57:25 +0000176 if (UnrollMaxCount.getNumOccurrences() > 0)
177 UP.MaxCount = UnrollMaxCount;
178 if (UnrollFullMaxCount.getNumOccurrences() > 0)
179 UP.FullUnrollMaxCount = UnrollFullMaxCount;
Justin Bognera1dd4932016-01-12 00:55:26 +0000180 if (UnrollAllowPartial.getNumOccurrences() > 0)
181 UP.Partial = UnrollAllowPartial;
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000182 if (UnrollAllowRemainder.getNumOccurrences() > 0)
183 UP.AllowRemainder = UnrollAllowRemainder;
Justin Bognera1dd4932016-01-12 00:55:26 +0000184 if (UnrollRuntime.getNumOccurrences() > 0)
185 UP.Runtime = UnrollRuntime;
Haicheng Wu1ef17e92016-10-12 21:29:38 +0000186 if (UnrollMaxUpperBound == 0)
187 UP.UpperBound = false;
Michael Kupersteinb151a642016-11-30 21:13:57 +0000188 if (UnrollAllowPeeling.getNumOccurrences() > 0)
189 UP.AllowPeeling = UnrollAllowPeeling;
Justin Bognera1dd4932016-01-12 00:55:26 +0000190
191 // Apply user values provided by argument
192 if (UserThreshold.hasValue()) {
193 UP.Threshold = *UserThreshold;
194 UP.PartialThreshold = *UserThreshold;
195 }
196 if (UserCount.hasValue())
197 UP.Count = *UserCount;
198 if (UserAllowPartial.hasValue())
199 UP.Partial = *UserAllowPartial;
200 if (UserRuntime.hasValue())
201 UP.Runtime = *UserRuntime;
Haicheng Wu1ef17e92016-10-12 21:29:38 +0000202 if (UserUpperBound.hasValue())
203 UP.UpperBound = *UserUpperBound;
Justin Bognera1dd4932016-01-12 00:55:26 +0000204
Justin Bognera1dd4932016-01-12 00:55:26 +0000205 return UP;
206}
207
Chris Lattner79a42ac2006-12-19 21:40:18 +0000208namespace {
Michael Zolotukhin963a6d92016-05-13 21:23:25 +0000209/// A struct to densely store the state of an instruction after unrolling at
210/// each iteration.
211///
212/// This is designed to work like a tuple of <Instruction *, int> for the
213/// purposes of hashing and lookup, but to be able to associate two boolean
214/// states with each key.
215struct UnrolledInstState {
216 Instruction *I;
217 int Iteration : 30;
218 unsigned IsFree : 1;
219 unsigned IsCounted : 1;
220};
221
222/// Hashing and equality testing for a set of the instruction states.
223struct UnrolledInstStateKeyInfo {
224 typedef DenseMapInfo<Instruction *> PtrInfo;
225 typedef DenseMapInfo<std::pair<Instruction *, int>> PairInfo;
226 static inline UnrolledInstState getEmptyKey() {
227 return {PtrInfo::getEmptyKey(), 0, 0, 0};
228 }
229 static inline UnrolledInstState getTombstoneKey() {
230 return {PtrInfo::getTombstoneKey(), 0, 0, 0};
231 }
232 static inline unsigned getHashValue(const UnrolledInstState &S) {
233 return PairInfo::getHashValue({S.I, S.Iteration});
234 }
235 static inline bool isEqual(const UnrolledInstState &LHS,
236 const UnrolledInstState &RHS) {
237 return PairInfo::isEqual({LHS.I, LHS.Iteration}, {RHS.I, RHS.Iteration});
238 }
239};
240}
241
242namespace {
Chandler Carruth02156082015-05-22 17:41:35 +0000243struct EstimatedUnrollCost {
Chandler Carruth9dabd142015-06-05 17:01:43 +0000244 /// \brief The estimated cost after unrolling.
Dehao Chenc3be2252016-12-02 03:17:07 +0000245 unsigned UnrolledCost;
Chandler Carruth302a1332015-02-13 02:10:56 +0000246
Chandler Carruth9dabd142015-06-05 17:01:43 +0000247 /// \brief The estimated dynamic cost of executing the instructions in the
248 /// rolled form.
Dehao Chenc3be2252016-12-02 03:17:07 +0000249 unsigned RolledDynamicCost;
Chandler Carruth02156082015-05-22 17:41:35 +0000250};
251}
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000252
Chandler Carruth02156082015-05-22 17:41:35 +0000253/// \brief Figure out if the loop is worth full unrolling.
254///
255/// Complete loop unrolling can make some loads constant, and we need to know
256/// if that would expose any further optimization opportunities. This routine
Michael Zolotukhinc4e4f332015-06-11 22:17:39 +0000257/// estimates this optimization. It computes cost of unrolled loop
258/// (UnrolledCost) and dynamic cost of the original loop (RolledDynamicCost). By
259/// dynamic cost we mean that we won't count costs of blocks that are known not
260/// to be executed (i.e. if we have a branch in the loop and we know that at the
261/// given iteration its condition would be resolved to true, we won't add up the
262/// cost of the 'false'-block).
263/// \returns Optional value, holding the RolledDynamicCost and UnrolledCost. If
264/// the analysis failed (no benefits expected from the unrolling, or the loop is
265/// too big to analyze), the returned value is None.
Benjamin Kramerfcdb1c12015-08-20 09:57:22 +0000266static Optional<EstimatedUnrollCost>
Chandler Carruth87adb7a2015-08-03 20:32:27 +0000267analyzeLoopUnrollCost(const Loop *L, unsigned TripCount, DominatorTree &DT,
268 ScalarEvolution &SE, const TargetTransformInfo &TTI,
Dehao Chenc3be2252016-12-02 03:17:07 +0000269 unsigned MaxUnrolledLoopSize) {
Chandler Carruth02156082015-05-22 17:41:35 +0000270 // We want to be able to scale offsets by the trip count and add more offsets
271 // to them without checking for overflows, and we already don't want to
272 // analyze *massive* trip counts, so we force the max to be reasonably small.
273 assert(UnrollMaxIterationsCountToAnalyze < (INT_MAX / 2) &&
274 "The unroll iterations max is too large!");
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000275
Michael Zolotukhin963a6d92016-05-13 21:23:25 +0000276 // Only analyze inner loops. We can't properly estimate cost of nested loops
277 // and we won't visit inner loops again anyway.
278 if (!L->empty())
279 return None;
280
Chandler Carruth02156082015-05-22 17:41:35 +0000281 // Don't simulate loops with a big or unknown tripcount
282 if (!UnrollMaxIterationsCountToAnalyze || !TripCount ||
283 TripCount > UnrollMaxIterationsCountToAnalyze)
284 return None;
Chandler Carrutha6ae8772015-05-12 23:32:56 +0000285
Chandler Carruth02156082015-05-22 17:41:35 +0000286 SmallSetVector<BasicBlock *, 16> BBWorklist;
Michael Zolotukhin963a6d92016-05-13 21:23:25 +0000287 SmallSetVector<std::pair<BasicBlock *, BasicBlock *>, 4> ExitWorklist;
Chandler Carruth02156082015-05-22 17:41:35 +0000288 DenseMap<Value *, Constant *> SimplifiedValues;
Chandler Carruth87adb7a2015-08-03 20:32:27 +0000289 SmallVector<std::pair<Value *, Constant *>, 4> SimplifiedInputValues;
Chandler Carruth3b057b32015-02-13 03:57:40 +0000290
Chandler Carruth9dabd142015-06-05 17:01:43 +0000291 // The estimated cost of the unrolled form of the loop. We try to estimate
292 // this by simplifying as much as we can while computing the estimate.
Dehao Chenc3be2252016-12-02 03:17:07 +0000293 unsigned UnrolledCost = 0;
Michael Zolotukhin963a6d92016-05-13 21:23:25 +0000294
Chandler Carruth9dabd142015-06-05 17:01:43 +0000295 // We also track the estimated dynamic (that is, actually executed) cost in
296 // the rolled form. This helps identify cases when the savings from unrolling
297 // aren't just exposing dead control flows, but actual reduced dynamic
298 // instructions due to the simplifications which we expect to occur after
299 // unrolling.
Dehao Chenc3be2252016-12-02 03:17:07 +0000300 unsigned RolledDynamicCost = 0;
Chandler Carruth8c863752015-02-13 03:48:38 +0000301
Michael Zolotukhin963a6d92016-05-13 21:23:25 +0000302 // We track the simplification of each instruction in each iteration. We use
303 // this to recursively merge costs into the unrolled cost on-demand so that
304 // we don't count the cost of any dead code. This is essentially a map from
305 // <instruction, int> to <bool, bool>, but stored as a densely packed struct.
306 DenseSet<UnrolledInstState, UnrolledInstStateKeyInfo> InstCostMap;
307
308 // A small worklist used to accumulate cost of instructions from each
309 // observable and reached root in the loop.
310 SmallVector<Instruction *, 16> CostWorklist;
311
312 // PHI-used worklist used between iterations while accumulating cost.
313 SmallVector<Instruction *, 4> PHIUsedList;
314
315 // Helper function to accumulate cost for instructions in the loop.
316 auto AddCostRecursively = [&](Instruction &RootI, int Iteration) {
317 assert(Iteration >= 0 && "Cannot have a negative iteration!");
318 assert(CostWorklist.empty() && "Must start with an empty cost list");
319 assert(PHIUsedList.empty() && "Must start with an empty phi used list");
320 CostWorklist.push_back(&RootI);
321 for (;; --Iteration) {
322 do {
323 Instruction *I = CostWorklist.pop_back_val();
324
325 // InstCostMap only uses I and Iteration as a key, the other two values
326 // don't matter here.
327 auto CostIter = InstCostMap.find({I, Iteration, 0, 0});
328 if (CostIter == InstCostMap.end())
329 // If an input to a PHI node comes from a dead path through the loop
330 // we may have no cost data for it here. What that actually means is
331 // that it is free.
332 continue;
333 auto &Cost = *CostIter;
334 if (Cost.IsCounted)
335 // Already counted this instruction.
336 continue;
337
338 // Mark that we are counting the cost of this instruction now.
339 Cost.IsCounted = true;
340
341 // If this is a PHI node in the loop header, just add it to the PHI set.
342 if (auto *PhiI = dyn_cast<PHINode>(I))
343 if (PhiI->getParent() == L->getHeader()) {
344 assert(Cost.IsFree && "Loop PHIs shouldn't be evaluated as they "
345 "inherently simplify during unrolling.");
346 if (Iteration == 0)
347 continue;
348
349 // Push the incoming value from the backedge into the PHI used list
350 // if it is an in-loop instruction. We'll use this to populate the
351 // cost worklist for the next iteration (as we count backwards).
352 if (auto *OpI = dyn_cast<Instruction>(
353 PhiI->getIncomingValueForBlock(L->getLoopLatch())))
354 if (L->contains(OpI))
355 PHIUsedList.push_back(OpI);
356 continue;
357 }
358
359 // First accumulate the cost of this instruction.
360 if (!Cost.IsFree) {
361 UnrolledCost += TTI.getUserCost(I);
362 DEBUG(dbgs() << "Adding cost of instruction (iteration " << Iteration
363 << "): ");
364 DEBUG(I->dump());
365 }
366
367 // We must count the cost of every operand which is not free,
368 // recursively. If we reach a loop PHI node, simply add it to the set
369 // to be considered on the next iteration (backwards!).
370 for (Value *Op : I->operands()) {
371 // Check whether this operand is free due to being a constant or
372 // outside the loop.
373 auto *OpI = dyn_cast<Instruction>(Op);
374 if (!OpI || !L->contains(OpI))
375 continue;
376
377 // Otherwise accumulate its cost.
378 CostWorklist.push_back(OpI);
379 }
380 } while (!CostWorklist.empty());
381
382 if (PHIUsedList.empty())
383 // We've exhausted the search.
384 break;
385
386 assert(Iteration > 0 &&
387 "Cannot track PHI-used values past the first iteration!");
388 CostWorklist.append(PHIUsedList.begin(), PHIUsedList.end());
389 PHIUsedList.clear();
390 }
391 };
392
Chandler Carruth87adb7a2015-08-03 20:32:27 +0000393 // Ensure that we don't violate the loop structure invariants relied on by
394 // this analysis.
395 assert(L->isLoopSimplifyForm() && "Must put loop into normal form first.");
396 assert(L->isLCSSAForm(DT) &&
397 "Must have loops in LCSSA form to track live-out values.");
398
Michael Zolotukhin80d13ba2015-07-28 20:07:29 +0000399 DEBUG(dbgs() << "Starting LoopUnroll profitability analysis...\n");
400
Chandler Carruth02156082015-05-22 17:41:35 +0000401 // Simulate execution of each iteration of the loop counting instructions,
402 // which would be simplified.
403 // Since the same load will take different values on different iterations,
404 // we literally have to go through all loop's iterations.
405 for (unsigned Iteration = 0; Iteration < TripCount; ++Iteration) {
Michael Zolotukhin80d13ba2015-07-28 20:07:29 +0000406 DEBUG(dbgs() << " Analyzing iteration " << Iteration << "\n");
Chandler Carruth87adb7a2015-08-03 20:32:27 +0000407
408 // Prepare for the iteration by collecting any simplified entry or backedge
409 // inputs.
410 for (Instruction &I : *L->getHeader()) {
411 auto *PHI = dyn_cast<PHINode>(&I);
412 if (!PHI)
413 break;
414
415 // The loop header PHI nodes must have exactly two input: one from the
416 // loop preheader and one from the loop latch.
417 assert(
418 PHI->getNumIncomingValues() == 2 &&
419 "Must have an incoming value only for the preheader and the latch.");
420
421 Value *V = PHI->getIncomingValueForBlock(
422 Iteration == 0 ? L->getLoopPreheader() : L->getLoopLatch());
423 Constant *C = dyn_cast<Constant>(V);
424 if (Iteration != 0 && !C)
425 C = SimplifiedValues.lookup(V);
426 if (C)
427 SimplifiedInputValues.push_back({PHI, C});
428 }
429
430 // Now clear and re-populate the map for the next iteration.
Chandler Carruth02156082015-05-22 17:41:35 +0000431 SimplifiedValues.clear();
Chandler Carruth87adb7a2015-08-03 20:32:27 +0000432 while (!SimplifiedInputValues.empty())
433 SimplifiedValues.insert(SimplifiedInputValues.pop_back_val());
434
Michael Zolotukhin9f520eb2016-02-26 02:57:05 +0000435 UnrolledInstAnalyzer Analyzer(Iteration, SimplifiedValues, SE, L);
Chandler Carruthf174a152015-05-22 02:47:29 +0000436
Chandler Carruth02156082015-05-22 17:41:35 +0000437 BBWorklist.clear();
438 BBWorklist.insert(L->getHeader());
439 // Note that we *must not* cache the size, this loop grows the worklist.
440 for (unsigned Idx = 0; Idx != BBWorklist.size(); ++Idx) {
441 BasicBlock *BB = BBWorklist[Idx];
Chandler Carruthf174a152015-05-22 02:47:29 +0000442
Chandler Carruth02156082015-05-22 17:41:35 +0000443 // Visit all instructions in the given basic block and try to simplify
444 // it. We don't change the actual IR, just count optimization
445 // opportunities.
446 for (Instruction &I : *BB) {
Dehao Chen977853b2016-09-30 18:30:04 +0000447 if (isa<DbgInfoIntrinsic>(I))
448 continue;
449
Michael Zolotukhin963a6d92016-05-13 21:23:25 +0000450 // Track this instruction's expected baseline cost when executing the
451 // rolled loop form.
452 RolledDynamicCost += TTI.getUserCost(&I);
Chandler Carruth17a04962015-02-13 03:49:41 +0000453
Chandler Carruth02156082015-05-22 17:41:35 +0000454 // Visit the instruction to analyze its loop cost after unrolling,
Michael Zolotukhin963a6d92016-05-13 21:23:25 +0000455 // and if the visitor returns true, mark the instruction as free after
456 // unrolling and continue.
457 bool IsFree = Analyzer.visit(I);
458 bool Inserted = InstCostMap.insert({&I, (int)Iteration,
459 (unsigned)IsFree,
460 /*IsCounted*/ false}).second;
461 (void)Inserted;
462 assert(Inserted && "Cannot have a state for an unvisited instruction!");
Chandler Carruth9dabd142015-06-05 17:01:43 +0000463
Michael Zolotukhin963a6d92016-05-13 21:23:25 +0000464 if (IsFree)
465 continue;
466
Michael Zolotukhin963a6d92016-05-13 21:23:25 +0000467 // Can't properly model a cost of a call.
468 // FIXME: With a proper cost model we should be able to do it.
469 if(isa<CallInst>(&I))
470 return None;
Chandler Carruth02156082015-05-22 17:41:35 +0000471
Haicheng Wue7877632016-08-17 22:42:58 +0000472 // If the instruction might have a side-effect recursively account for
473 // the cost of it and all the instructions leading up to it.
474 if (I.mayHaveSideEffects())
475 AddCostRecursively(I, Iteration);
476
Chandler Carruth02156082015-05-22 17:41:35 +0000477 // If unrolled body turns out to be too big, bail out.
Michael Zolotukhin80d13ba2015-07-28 20:07:29 +0000478 if (UnrolledCost > MaxUnrolledLoopSize) {
479 DEBUG(dbgs() << " Exceeded threshold.. exiting.\n"
480 << " UnrolledCost: " << UnrolledCost
481 << ", MaxUnrolledLoopSize: " << MaxUnrolledLoopSize
482 << "\n");
Chandler Carruth02156082015-05-22 17:41:35 +0000483 return None;
Michael Zolotukhin80d13ba2015-07-28 20:07:29 +0000484 }
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000485 }
Chandler Carruth415f4122015-02-13 02:17:39 +0000486
Michael Zolotukhin57776b82015-07-24 01:53:04 +0000487 TerminatorInst *TI = BB->getTerminator();
488
489 // Add in the live successors by first checking whether we have terminator
490 // that may be simplified based on the values simplified by this call.
Michael Zolotukhin1ecdeda2016-05-26 21:42:51 +0000491 BasicBlock *KnownSucc = nullptr;
Michael Zolotukhin57776b82015-07-24 01:53:04 +0000492 if (BranchInst *BI = dyn_cast<BranchInst>(TI)) {
493 if (BI->isConditional()) {
494 if (Constant *SimpleCond =
495 SimplifiedValues.lookup(BI->getCondition())) {
Michael Zolotukhin3a7d55b2015-07-29 18:10:29 +0000496 // Just take the first successor if condition is undef
497 if (isa<UndefValue>(SimpleCond))
Michael Zolotukhin1ecdeda2016-05-26 21:42:51 +0000498 KnownSucc = BI->getSuccessor(0);
499 else if (ConstantInt *SimpleCondVal =
500 dyn_cast<ConstantInt>(SimpleCond))
501 KnownSucc = BI->getSuccessor(SimpleCondVal->isZero() ? 1 : 0);
Michael Zolotukhin57776b82015-07-24 01:53:04 +0000502 }
503 }
504 } else if (SwitchInst *SI = dyn_cast<SwitchInst>(TI)) {
505 if (Constant *SimpleCond =
506 SimplifiedValues.lookup(SI->getCondition())) {
Michael Zolotukhin3a7d55b2015-07-29 18:10:29 +0000507 // Just take the first successor if condition is undef
508 if (isa<UndefValue>(SimpleCond))
Michael Zolotukhin1ecdeda2016-05-26 21:42:51 +0000509 KnownSucc = SI->getSuccessor(0);
510 else if (ConstantInt *SimpleCondVal =
511 dyn_cast<ConstantInt>(SimpleCond))
Chandler Carruth927d8e62017-04-12 07:27:28 +0000512 KnownSucc = SI->findCaseValue(SimpleCondVal)->getCaseSuccessor();
Michael Zolotukhin57776b82015-07-24 01:53:04 +0000513 }
514 }
Michael Zolotukhin1ecdeda2016-05-26 21:42:51 +0000515 if (KnownSucc) {
516 if (L->contains(KnownSucc))
517 BBWorklist.insert(KnownSucc);
518 else
519 ExitWorklist.insert({BB, KnownSucc});
520 continue;
521 }
Michael Zolotukhin57776b82015-07-24 01:53:04 +0000522
Chandler Carruth02156082015-05-22 17:41:35 +0000523 // Add BB's successors to the worklist.
524 for (BasicBlock *Succ : successors(BB))
525 if (L->contains(Succ))
526 BBWorklist.insert(Succ);
Michael Zolotukhin963a6d92016-05-13 21:23:25 +0000527 else
528 ExitWorklist.insert({BB, Succ});
Michael Zolotukhind2268a72016-05-18 21:20:12 +0000529 AddCostRecursively(*TI, Iteration);
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000530 }
Chandler Carruth02156082015-05-22 17:41:35 +0000531
532 // If we found no optimization opportunities on the first iteration, we
533 // won't find them on later ones too.
Michael Zolotukhin80d13ba2015-07-28 20:07:29 +0000534 if (UnrolledCost == RolledDynamicCost) {
535 DEBUG(dbgs() << " No opportunities found.. exiting.\n"
536 << " UnrolledCost: " << UnrolledCost << "\n");
Chandler Carruth02156082015-05-22 17:41:35 +0000537 return None;
Michael Zolotukhin80d13ba2015-07-28 20:07:29 +0000538 }
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000539 }
Michael Zolotukhin963a6d92016-05-13 21:23:25 +0000540
541 while (!ExitWorklist.empty()) {
542 BasicBlock *ExitingBB, *ExitBB;
543 std::tie(ExitingBB, ExitBB) = ExitWorklist.pop_back_val();
544
545 for (Instruction &I : *ExitBB) {
546 auto *PN = dyn_cast<PHINode>(&I);
547 if (!PN)
548 break;
549
550 Value *Op = PN->getIncomingValueForBlock(ExitingBB);
551 if (auto *OpI = dyn_cast<Instruction>(Op))
552 if (L->contains(OpI))
553 AddCostRecursively(*OpI, TripCount - 1);
554 }
555 }
556
Michael Zolotukhin80d13ba2015-07-28 20:07:29 +0000557 DEBUG(dbgs() << "Analysis finished:\n"
558 << "UnrolledCost: " << UnrolledCost << ", "
559 << "RolledDynamicCost: " << RolledDynamicCost << "\n");
Chandler Carruth9dabd142015-06-05 17:01:43 +0000560 return {{UnrolledCost, RolledDynamicCost}};
Chandler Carruth02156082015-05-22 17:41:35 +0000561}
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000562
Dan Gohman49d08a52007-05-08 15:14:19 +0000563/// ApproximateLoopSize - Approximate the size of the loop.
Andrew Trickf7656012011-10-01 01:39:05 +0000564static unsigned ApproximateLoopSize(const Loop *L, unsigned &NumCalls,
Justin Lebar6827de12016-03-14 23:15:34 +0000565 bool &NotDuplicatable, bool &Convergent,
Hal Finkel57f03dd2014-09-07 13:49:57 +0000566 const TargetTransformInfo &TTI,
Daniel Jasperaec2fa32016-12-19 08:22:17 +0000567 AssumptionCache *AC, unsigned BEInsns) {
Hal Finkel57f03dd2014-09-07 13:49:57 +0000568 SmallPtrSet<const Value *, 32> EphValues;
Daniel Jasperaec2fa32016-12-19 08:22:17 +0000569 CodeMetrics::collectEphemeralValues(L, AC, EphValues);
Hal Finkel57f03dd2014-09-07 13:49:57 +0000570
Dan Gohman969e83a2009-10-31 14:54:17 +0000571 CodeMetrics Metrics;
Sanjay Patel5c967232016-03-08 19:06:12 +0000572 for (BasicBlock *BB : L->blocks())
573 Metrics.analyzeBasicBlock(BB, TTI, EphValues);
Owen Anderson04cf3fd2010-09-09 20:32:23 +0000574 NumCalls = Metrics.NumInlineCandidates;
James Molloy4f6fb952012-12-20 16:04:27 +0000575 NotDuplicatable = Metrics.notDuplicatable;
Justin Lebar6827de12016-03-14 23:15:34 +0000576 Convergent = Metrics.convergent;
Andrew Trick279e7a62011-07-23 00:29:16 +0000577
Owen Anderson62ea1b72010-09-09 19:07:31 +0000578 unsigned LoopSize = Metrics.NumInsts;
Andrew Trick279e7a62011-07-23 00:29:16 +0000579
Owen Anderson62ea1b72010-09-09 19:07:31 +0000580 // Don't allow an estimate of size zero. This would allows unrolling of loops
581 // with huge iteration counts, which is a compile time problem even if it's
Hal Finkel38dd5902015-01-10 00:30:55 +0000582 // not a problem for code quality. Also, the code using this size may assume
583 // that each loop has at least three instructions (likely a conditional
584 // branch, a comparison feeding that branch, and some kind of loop increment
585 // feeding that comparison instruction).
Evgeny Stupachenkoc2698cd2016-11-09 19:56:39 +0000586 LoopSize = std::max(LoopSize, BEInsns + 1);
Andrew Trick279e7a62011-07-23 00:29:16 +0000587
Owen Anderson62ea1b72010-09-09 19:07:31 +0000588 return LoopSize;
Chris Lattner946b2552004-04-18 05:20:17 +0000589}
590
Mark Heffernane6b4ba12014-07-23 17:31:37 +0000591// Returns the loop hint metadata node with the given name (for example,
592// "llvm.loop.unroll.count"). If no such metadata node exists, then nullptr is
593// returned.
Jingyue Wu49a766e2015-02-02 20:41:11 +0000594static MDNode *GetUnrollMetadataForLoop(const Loop *L, StringRef Name) {
595 if (MDNode *LoopID = L->getLoopID())
596 return GetUnrollMetadata(LoopID, Name);
597 return nullptr;
Eli Benderskyff903242014-06-16 23:53:02 +0000598}
599
Mark Heffernane6b4ba12014-07-23 17:31:37 +0000600// Returns true if the loop has an unroll(full) pragma.
601static bool HasUnrollFullPragma(const Loop *L) {
Jingyue Wu0220df02015-02-01 02:27:45 +0000602 return GetUnrollMetadataForLoop(L, "llvm.loop.unroll.full");
Eli Benderskyff903242014-06-16 23:53:02 +0000603}
604
Mark Heffernan89391542015-08-10 17:28:08 +0000605// Returns true if the loop has an unroll(enable) pragma. This metadata is used
606// for both "#pragma unroll" and "#pragma clang loop unroll(enable)" directives.
607static bool HasUnrollEnablePragma(const Loop *L) {
608 return GetUnrollMetadataForLoop(L, "llvm.loop.unroll.enable");
609}
610
Eli Benderskyff903242014-06-16 23:53:02 +0000611// Returns true if the loop has an unroll(disable) pragma.
612static bool HasUnrollDisablePragma(const Loop *L) {
Jingyue Wu0220df02015-02-01 02:27:45 +0000613 return GetUnrollMetadataForLoop(L, "llvm.loop.unroll.disable");
Eli Benderskyff903242014-06-16 23:53:02 +0000614}
615
Kevin Qin715b01e2015-03-09 06:14:18 +0000616// Returns true if the loop has an runtime unroll(disable) pragma.
617static bool HasRuntimeUnrollDisablePragma(const Loop *L) {
618 return GetUnrollMetadataForLoop(L, "llvm.loop.unroll.runtime.disable");
619}
620
Eli Benderskyff903242014-06-16 23:53:02 +0000621// If loop has an unroll_count pragma return the (necessarily
622// positive) value from the pragma. Otherwise return 0.
623static unsigned UnrollCountPragmaValue(const Loop *L) {
Jingyue Wu49a766e2015-02-02 20:41:11 +0000624 MDNode *MD = GetUnrollMetadataForLoop(L, "llvm.loop.unroll.count");
Mark Heffernane6b4ba12014-07-23 17:31:37 +0000625 if (MD) {
626 assert(MD->getNumOperands() == 2 &&
627 "Unroll count hint metadata should have two operands.");
Duncan P. N. Exon Smith5bf8fef2014-12-09 18:38:53 +0000628 unsigned Count =
629 mdconst::extract<ConstantInt>(MD->getOperand(1))->getZExtValue();
Eli Benderskyff903242014-06-16 23:53:02 +0000630 assert(Count >= 1 && "Unroll count must be positive.");
631 return Count;
632 }
633 return 0;
634}
635
Mark Heffernan053a6862014-07-18 21:04:33 +0000636// Remove existing unroll metadata and add unroll disable metadata to
637// indicate the loop has already been unrolled. This prevents a loop
638// from being unrolled more than is directed by a pragma if the loop
639// unrolling pass is run more than once (which it generally is).
640static void SetLoopAlreadyUnrolled(Loop *L) {
641 MDNode *LoopID = L->getLoopID();
Mark Heffernan053a6862014-07-18 21:04:33 +0000642 // First remove any existing loop unrolling metadata.
Duncan P. N. Exon Smith5bf8fef2014-12-09 18:38:53 +0000643 SmallVector<Metadata *, 4> MDs;
Mark Heffernan053a6862014-07-18 21:04:33 +0000644 // Reserve first location for self reference to the LoopID metadata node.
Duncan P. N. Exon Smith5bf8fef2014-12-09 18:38:53 +0000645 MDs.push_back(nullptr);
Evgeny Stupachenko3e2f3892016-06-08 20:21:24 +0000646
647 if (LoopID) {
648 for (unsigned i = 1, ie = LoopID->getNumOperands(); i < ie; ++i) {
649 bool IsUnrollMetadata = false;
650 MDNode *MD = dyn_cast<MDNode>(LoopID->getOperand(i));
651 if (MD) {
652 const MDString *S = dyn_cast<MDString>(MD->getOperand(0));
653 IsUnrollMetadata = S && S->getString().startswith("llvm.loop.unroll.");
654 }
655 if (!IsUnrollMetadata)
656 MDs.push_back(LoopID->getOperand(i));
Mark Heffernan053a6862014-07-18 21:04:33 +0000657 }
Mark Heffernan053a6862014-07-18 21:04:33 +0000658 }
659
660 // Add unroll(disable) metadata to disable future unrolling.
661 LLVMContext &Context = L->getHeader()->getContext();
Duncan P. N. Exon Smith5bf8fef2014-12-09 18:38:53 +0000662 SmallVector<Metadata *, 1> DisableOperands;
Mark Heffernane6b4ba12014-07-23 17:31:37 +0000663 DisableOperands.push_back(MDString::get(Context, "llvm.loop.unroll.disable"));
Mark Heffernanf3764da2014-07-18 21:29:41 +0000664 MDNode *DisableNode = MDNode::get(Context, DisableOperands);
Duncan P. N. Exon Smith5bf8fef2014-12-09 18:38:53 +0000665 MDs.push_back(DisableNode);
Mark Heffernan053a6862014-07-18 21:04:33 +0000666
Duncan P. N. Exon Smith5bf8fef2014-12-09 18:38:53 +0000667 MDNode *NewLoopID = MDNode::get(Context, MDs);
Mark Heffernan053a6862014-07-18 21:04:33 +0000668 // Set operand 0 to refer to the loop id itself.
669 NewLoopID->replaceOperandWith(0, NewLoopID);
670 L->setLoopID(NewLoopID);
Mark Heffernan053a6862014-07-18 21:04:33 +0000671}
672
Dehao Chencc763442016-12-30 00:50:28 +0000673// Computes the boosting factor for complete unrolling.
674// If fully unrolling the loop would save a lot of RolledDynamicCost, it would
675// be beneficial to fully unroll the loop even if unrolledcost is large. We
676// use (RolledDynamicCost / UnrolledCost) to model the unroll benefits to adjust
677// the unroll threshold.
678static unsigned getFullUnrollBoostingFactor(const EstimatedUnrollCost &Cost,
679 unsigned MaxPercentThresholdBoost) {
680 if (Cost.RolledDynamicCost >= UINT_MAX / 100)
681 return 100;
682 else if (Cost.UnrolledCost != 0)
683 // The boosting factor is RolledDynamicCost / UnrolledCost
684 return std::min(100 * Cost.RolledDynamicCost / Cost.UnrolledCost,
685 MaxPercentThresholdBoost);
686 else
687 return MaxPercentThresholdBoost;
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000688}
689
Evgeny Stupachenkoc2698cd2016-11-09 19:56:39 +0000690// Returns loop size estimation for unrolled loop.
691static uint64_t getUnrolledLoopSize(
692 unsigned LoopSize,
693 TargetTransformInfo::UnrollingPreferences &UP) {
694 assert(LoopSize >= UP.BEInsns && "LoopSize should not be less than BEInsns!");
695 return (uint64_t)(LoopSize - UP.BEInsns) * UP.Count + UP.BEInsns;
696}
697
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000698// Returns true if unroll count was set explicitly.
699// Calculates unroll count and writes it to UP.Count.
Haicheng Wu1ef17e92016-10-12 21:29:38 +0000700static bool computeUnrollCount(
701 Loop *L, const TargetTransformInfo &TTI, DominatorTree &DT, LoopInfo *LI,
Geoff Berry66d9bdb2017-06-28 15:53:17 +0000702 ScalarEvolution &SE, OptimizationRemarkEmitter *ORE, unsigned &TripCount,
Haicheng Wu1ef17e92016-10-12 21:29:38 +0000703 unsigned MaxTripCount, unsigned &TripMultiple, unsigned LoopSize,
704 TargetTransformInfo::UnrollingPreferences &UP, bool &UseUpperBound) {
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000705 // Check for explicit Count.
706 // 1st priority is unroll count set by "unroll-count" option.
707 bool UserUnrollCount = UnrollCount.getNumOccurrences() > 0;
708 if (UserUnrollCount) {
709 UP.Count = UnrollCount;
710 UP.AllowExpensiveTripCount = true;
711 UP.Force = true;
Evgeny Stupachenkoc2698cd2016-11-09 19:56:39 +0000712 if (UP.AllowRemainder && getUnrolledLoopSize(LoopSize, UP) < UP.Threshold)
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000713 return true;
714 }
715
716 // 2nd priority is unroll count set by pragma.
717 unsigned PragmaCount = UnrollCountPragmaValue(L);
718 if (PragmaCount > 0) {
719 UP.Count = PragmaCount;
720 UP.Runtime = true;
721 UP.AllowExpensiveTripCount = true;
722 UP.Force = true;
723 if (UP.AllowRemainder &&
Evgeny Stupachenkoc2698cd2016-11-09 19:56:39 +0000724 getUnrolledLoopSize(LoopSize, UP) < PragmaUnrollThreshold)
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000725 return true;
726 }
727 bool PragmaFullUnroll = HasUnrollFullPragma(L);
728 if (PragmaFullUnroll && TripCount != 0) {
729 UP.Count = TripCount;
Evgeny Stupachenkoc2698cd2016-11-09 19:56:39 +0000730 if (getUnrolledLoopSize(LoopSize, UP) < PragmaUnrollThreshold)
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000731 return false;
732 }
733
734 bool PragmaEnableUnroll = HasUnrollEnablePragma(L);
735 bool ExplicitUnroll = PragmaCount > 0 || PragmaFullUnroll ||
736 PragmaEnableUnroll || UserUnrollCount;
737
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000738 if (ExplicitUnroll && TripCount != 0) {
739 // If the loop has an unrolling pragma, we want to be more aggressive with
740 // unrolling limits. Set thresholds to at least the PragmaThreshold value
741 // which is larger than the default limits.
742 UP.Threshold = std::max<unsigned>(UP.Threshold, PragmaUnrollThreshold);
743 UP.PartialThreshold =
744 std::max<unsigned>(UP.PartialThreshold, PragmaUnrollThreshold);
745 }
746
747 // 3rd priority is full unroll count.
Haicheng Wu1ef17e92016-10-12 21:29:38 +0000748 // Full unroll makes sense only when TripCount or its upper bound could be
749 // statically calculated.
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000750 // Also we need to check if we exceed FullUnrollMaxCount.
Haicheng Wu1ef17e92016-10-12 21:29:38 +0000751 // If using the upper bound to unroll, TripMultiple should be set to 1 because
752 // we do not know when loop may exit.
753 // MaxTripCount and ExactTripCount cannot both be non zero since we only
754 // compute the former when the latter is zero.
755 unsigned ExactTripCount = TripCount;
756 assert((ExactTripCount == 0 || MaxTripCount == 0) &&
757 "ExtractTripCound and MaxTripCount cannot both be non zero.");
758 unsigned FullUnrollTripCount = ExactTripCount ? ExactTripCount : MaxTripCount;
Evgeny Stupachenkoc2698cd2016-11-09 19:56:39 +0000759 UP.Count = FullUnrollTripCount;
Haicheng Wu1ef17e92016-10-12 21:29:38 +0000760 if (FullUnrollTripCount && FullUnrollTripCount <= UP.FullUnrollMaxCount) {
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000761 // When computing the unrolled size, note that BEInsns are not replicated
762 // like the rest of the loop body.
Dehao Chencc763442016-12-30 00:50:28 +0000763 if (getUnrolledLoopSize(LoopSize, UP) < UP.Threshold) {
Haicheng Wu1ef17e92016-10-12 21:29:38 +0000764 UseUpperBound = (MaxTripCount == FullUnrollTripCount);
765 TripCount = FullUnrollTripCount;
766 TripMultiple = UP.UpperBound ? 1 : TripMultiple;
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000767 return ExplicitUnroll;
768 } else {
769 // The loop isn't that small, but we still can fully unroll it if that
770 // helps to remove a significant number of instructions.
771 // To check that, run additional analysis on the loop.
772 if (Optional<EstimatedUnrollCost> Cost = analyzeLoopUnrollCost(
Geoff Berry66d9bdb2017-06-28 15:53:17 +0000773 L, FullUnrollTripCount, DT, SE, TTI,
Dehao Chencc763442016-12-30 00:50:28 +0000774 UP.Threshold * UP.MaxPercentThresholdBoost / 100)) {
775 unsigned Boost =
776 getFullUnrollBoostingFactor(*Cost, UP.MaxPercentThresholdBoost);
777 if (Cost->UnrolledCost < UP.Threshold * Boost / 100) {
Haicheng Wu1ef17e92016-10-12 21:29:38 +0000778 UseUpperBound = (MaxTripCount == FullUnrollTripCount);
779 TripCount = FullUnrollTripCount;
780 TripMultiple = UP.UpperBound ? 1 : TripMultiple;
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000781 return ExplicitUnroll;
782 }
Dehao Chencc763442016-12-30 00:50:28 +0000783 }
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000784 }
785 }
786
Sanjoy Daseed71b92017-03-03 18:19:10 +0000787 // 4th priority is loop peeling
788 computePeelCount(L, LoopSize, UP, TripCount);
789 if (UP.PeelCount) {
790 UP.Runtime = false;
791 UP.Count = 1;
792 return ExplicitUnroll;
793 }
794
795 // 5th priority is partial unrolling.
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000796 // Try partial unroll only when TripCount could be staticaly calculated.
797 if (TripCount) {
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000798 UP.Partial |= ExplicitUnroll;
799 if (!UP.Partial) {
800 DEBUG(dbgs() << " will not try to unroll partially because "
801 << "-unroll-allow-partial not given\n");
802 UP.Count = 0;
803 return false;
804 }
Haicheng Wu430b3e42016-10-27 18:40:02 +0000805 if (UP.Count == 0)
806 UP.Count = TripCount;
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000807 if (UP.PartialThreshold != NoThreshold) {
808 // Reduce unroll count to be modulo of TripCount for partial unrolling.
Evgeny Stupachenkoc2698cd2016-11-09 19:56:39 +0000809 if (getUnrolledLoopSize(LoopSize, UP) > UP.PartialThreshold)
810 UP.Count =
811 (std::max(UP.PartialThreshold, UP.BEInsns + 1) - UP.BEInsns) /
812 (LoopSize - UP.BEInsns);
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000813 if (UP.Count > UP.MaxCount)
814 UP.Count = UP.MaxCount;
815 while (UP.Count != 0 && TripCount % UP.Count != 0)
816 UP.Count--;
817 if (UP.AllowRemainder && UP.Count <= 1) {
818 // If there is no Count that is modulo of TripCount, set Count to
819 // largest power-of-two factor that satisfies the threshold limit.
820 // As we'll create fixup loop, do the type of unrolling only if
821 // remainder loop is allowed.
Jonas Paulsson58c5a7f2016-09-28 09:41:38 +0000822 UP.Count = UP.DefaultUnrollRuntimeCount;
Evgeny Stupachenkoc2698cd2016-11-09 19:56:39 +0000823 while (UP.Count != 0 &&
824 getUnrolledLoopSize(LoopSize, UP) > UP.PartialThreshold)
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000825 UP.Count >>= 1;
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000826 }
827 if (UP.Count < 2) {
828 if (PragmaEnableUnroll)
Adam Nemetf57cc622016-09-30 03:44:16 +0000829 ORE->emit(
830 OptimizationRemarkMissed(DEBUG_TYPE, "UnrollAsDirectedTooLarge",
831 L->getStartLoc(), L->getHeader())
832 << "Unable to unroll loop as directed by unroll(enable) pragma "
833 "because unrolled size is too large.");
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000834 UP.Count = 0;
835 }
836 } else {
837 UP.Count = TripCount;
838 }
Geoff Berryb0573542017-06-28 17:01:15 +0000839 if (UP.Count > UP.MaxCount)
840 UP.Count = UP.MaxCount;
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000841 if ((PragmaFullUnroll || PragmaEnableUnroll) && TripCount &&
842 UP.Count != TripCount)
Adam Nemetf57cc622016-09-30 03:44:16 +0000843 ORE->emit(
844 OptimizationRemarkMissed(DEBUG_TYPE, "FullUnrollAsDirectedTooLarge",
845 L->getStartLoc(), L->getHeader())
846 << "Unable to fully unroll loop as directed by unroll pragma because "
847 "unrolled size is too large.");
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000848 return ExplicitUnroll;
849 }
850 assert(TripCount == 0 &&
851 "All cases when TripCount is constant should be covered here.");
852 if (PragmaFullUnroll)
Adam Nemetf57cc622016-09-30 03:44:16 +0000853 ORE->emit(
854 OptimizationRemarkMissed(DEBUG_TYPE,
855 "CantFullUnrollAsDirectedRuntimeTripCount",
856 L->getStartLoc(), L->getHeader())
857 << "Unable to fully unroll loop as directed by unroll(full) pragma "
858 "because loop has a runtime trip count.");
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000859
Michael Kupersteinb151a642016-11-30 21:13:57 +0000860 // 6th priority is runtime unrolling.
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000861 // Don't unroll a runtime trip count loop when it is disabled.
862 if (HasRuntimeUnrollDisablePragma(L)) {
863 UP.Count = 0;
864 return false;
865 }
Michael Kupersteinb151a642016-11-30 21:13:57 +0000866
867 // Check if the runtime trip count is too small when profile is available.
868 if (L->getHeader()->getParent()->getEntryCount()) {
869 if (auto ProfileTripCount = getLoopEstimatedTripCount(L)) {
870 if (*ProfileTripCount < FlatLoopTripCountThreshold)
871 return false;
872 else
873 UP.AllowExpensiveTripCount = true;
874 }
875 }
876
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000877 // Reduce count based on the type of unrolling and the threshold values.
878 UP.Runtime |= PragmaEnableUnroll || PragmaCount > 0 || UserUnrollCount;
879 if (!UP.Runtime) {
880 DEBUG(dbgs() << " will not try to unroll loop with runtime trip count "
881 << "-unroll-runtime not given\n");
882 UP.Count = 0;
883 return false;
884 }
885 if (UP.Count == 0)
Jonas Paulsson58c5a7f2016-09-28 09:41:38 +0000886 UP.Count = UP.DefaultUnrollRuntimeCount;
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000887
888 // Reduce unroll count to be the largest power-of-two factor of
889 // the original count which satisfies the threshold limit.
Evgeny Stupachenkoc2698cd2016-11-09 19:56:39 +0000890 while (UP.Count != 0 &&
891 getUnrolledLoopSize(LoopSize, UP) > UP.PartialThreshold)
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000892 UP.Count >>= 1;
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000893
Evgeny Stupachenkob7875222016-05-28 00:14:58 +0000894#ifndef NDEBUG
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000895 unsigned OrigCount = UP.Count;
Evgeny Stupachenkob7875222016-05-28 00:14:58 +0000896#endif
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000897
898 if (!UP.AllowRemainder && UP.Count != 0 && (TripMultiple % UP.Count) != 0) {
899 while (UP.Count != 0 && TripMultiple % UP.Count != 0)
900 UP.Count >>= 1;
901 DEBUG(dbgs() << "Remainder loop is restricted (that could architecture "
902 "specific or because the loop contains a convergent "
903 "instruction), so unroll count must divide the trip "
904 "multiple, "
905 << TripMultiple << ". Reducing unroll count from "
906 << OrigCount << " to " << UP.Count << ".\n");
Adam Nemetf57cc622016-09-30 03:44:16 +0000907 using namespace ore;
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000908 if (PragmaCount > 0 && !UP.AllowRemainder)
Adam Nemetf57cc622016-09-30 03:44:16 +0000909 ORE->emit(
910 OptimizationRemarkMissed(DEBUG_TYPE,
911 "DifferentUnrollCountFromDirected",
912 L->getStartLoc(), L->getHeader())
913 << "Unable to unroll loop the number of times directed by "
914 "unroll_count pragma because remainder loop is restricted "
915 "(that could architecture specific or because the loop "
916 "contains a convergent instruction) and so must have an unroll "
917 "count that divides the loop trip multiple of "
918 << NV("TripMultiple", TripMultiple) << ". Unrolling instead "
919 << NV("UnrollCount", UP.Count) << " time(s).");
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000920 }
921
922 if (UP.Count > UP.MaxCount)
923 UP.Count = UP.MaxCount;
924 DEBUG(dbgs() << " partially unrolling with count: " << UP.Count << "\n");
925 if (UP.Count < 2)
926 UP.Count = 0;
927 return ExplicitUnroll;
928}
929
Justin Bognerb8d82ab2016-01-12 05:21:37 +0000930static bool tryToUnrollLoop(Loop *L, DominatorTree &DT, LoopInfo *LI,
Geoff Berry66d9bdb2017-06-28 15:53:17 +0000931 ScalarEvolution &SE, const TargetTransformInfo &TTI,
Daniel Jasperaec2fa32016-12-19 08:22:17 +0000932 AssumptionCache &AC, OptimizationRemarkEmitter &ORE,
Dehao Chen7d230322017-02-18 03:46:51 +0000933 bool PreserveLCSSA, int OptLevel,
Justin Bognerb8d82ab2016-01-12 05:21:37 +0000934 Optional<unsigned> ProvidedCount,
935 Optional<unsigned> ProvidedThreshold,
936 Optional<bool> ProvidedAllowPartial,
Haicheng Wu1ef17e92016-10-12 21:29:38 +0000937 Optional<bool> ProvidedRuntime,
938 Optional<bool> ProvidedUpperBound) {
Evgeny Stupachenkob7875222016-05-28 00:14:58 +0000939 DEBUG(dbgs() << "Loop Unroll: F[" << L->getHeader()->getParent()->getName()
940 << "] Loop %" << L->getHeader()->getName() << "\n");
Haicheng Wu731b04c2016-11-23 19:39:26 +0000941 if (HasUnrollDisablePragma(L))
942 return false;
943 if (!L->isLoopSimplifyForm()) {
944 DEBUG(
945 dbgs() << " Not unrolling loop which is not in loop-simplify form.\n");
Eli Benderskyff903242014-06-16 23:53:02 +0000946 return false;
947 }
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000948
949 unsigned NumInlineCandidates;
950 bool NotDuplicatable;
951 bool Convergent;
Evgeny Stupachenkoc2698cd2016-11-09 19:56:39 +0000952 TargetTransformInfo::UnrollingPreferences UP = gatherUnrollingPreferences(
Geoff Berry66d9bdb2017-06-28 15:53:17 +0000953 L, SE, TTI, OptLevel, ProvidedThreshold, ProvidedCount,
954 ProvidedAllowPartial, ProvidedRuntime, ProvidedUpperBound);
Haicheng Wu731b04c2016-11-23 19:39:26 +0000955 // Exit early if unrolling is disabled.
956 if (UP.Threshold == 0 && (!UP.Partial || UP.PartialThreshold == 0))
957 return false;
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000958 unsigned LoopSize = ApproximateLoopSize(
Daniel Jasperaec2fa32016-12-19 08:22:17 +0000959 L, NumInlineCandidates, NotDuplicatable, Convergent, TTI, &AC, UP.BEInsns);
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000960 DEBUG(dbgs() << " Loop Size = " << LoopSize << "\n");
961 if (NotDuplicatable) {
962 DEBUG(dbgs() << " Not unrolling loop which contains non-duplicatable"
963 << " instructions.\n");
964 return false;
965 }
966 if (NumInlineCandidates != 0) {
967 DEBUG(dbgs() << " Not unrolling loop with inlinable calls.\n");
968 return false;
969 }
Andrew Trick279e7a62011-07-23 00:29:16 +0000970
Andrew Trick2b6860f2011-08-11 23:36:16 +0000971 // Find trip count and trip multiple if count is not available
972 unsigned TripCount = 0;
Haicheng Wu1ef17e92016-10-12 21:29:38 +0000973 unsigned MaxTripCount = 0;
Andrew Trick1cabe542011-07-23 00:33:05 +0000974 unsigned TripMultiple = 1;
Chandler Carruth6666c272014-10-11 00:12:11 +0000975 // If there are multiple exiting blocks but one of them is the latch, use the
976 // latch for the trip count estimation. Otherwise insist on a single exiting
977 // block for the trip count estimation.
978 BasicBlock *ExitingBlock = L->getLoopLatch();
979 if (!ExitingBlock || !L->isLoopExiting(ExitingBlock))
980 ExitingBlock = L->getExitingBlock();
981 if (ExitingBlock) {
Geoff Berry66d9bdb2017-06-28 15:53:17 +0000982 TripCount = SE.getSmallConstantTripCount(L, ExitingBlock);
983 TripMultiple = SE.getSmallConstantTripMultiple(L, ExitingBlock);
Andrew Trick2b6860f2011-08-11 23:36:16 +0000984 }
Hal Finkel8f2e7002013-09-11 19:25:43 +0000985
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000986 // If the loop contains a convergent operation, the prelude we'd add
987 // to do the first few instructions before we hit the unrolled loop
988 // is unsafe -- it adds a control-flow dependency to the convergent
989 // operation. Therefore restrict remainder loop (try unrollig without).
990 //
991 // TODO: This is quite conservative. In practice, convergent_op()
992 // is likely to be called unconditionally in the loop. In this
993 // case, the program would be ill-formed (on most architectures)
994 // unless n were the same on all threads in a thread group.
995 // Assuming n is the same on all threads, any kind of unrolling is
996 // safe. But currently llvm's notion of convergence isn't powerful
997 // enough to express this.
998 if (Convergent)
999 UP.AllowRemainder = false;
Eli Benderskydc6de2c2014-06-12 18:05:39 +00001000
John Brawn84b21832016-10-21 11:08:48 +00001001 // Try to find the trip count upper bound if we cannot find the exact trip
1002 // count.
1003 bool MaxOrZero = false;
1004 if (!TripCount) {
Geoff Berry66d9bdb2017-06-28 15:53:17 +00001005 MaxTripCount = SE.getSmallConstantMaxTripCount(L);
1006 MaxOrZero = SE.isBackedgeTakenCountMaxOrZero(L);
John Brawn84b21832016-10-21 11:08:48 +00001007 // We can unroll by the upper bound amount if it's generally allowed or if
1008 // we know that the loop is executed either the upper bound or zero times.
1009 // (MaxOrZero unrolling keeps only the first loop test, so the number of
1010 // loop tests remains the same compared to the non-unrolled version, whereas
1011 // the generic upper bound unrolling keeps all but the last loop test so the
1012 // number of loop tests goes up which may end up being worse on targets with
1013 // constriained branch predictor resources so is controlled by an option.)
1014 // In addition we only unroll small upper bounds.
1015 if (!(UP.UpperBound || MaxOrZero) || MaxTripCount > UnrollMaxUpperBound) {
1016 MaxTripCount = 0;
Haicheng Wu1ef17e92016-10-12 21:29:38 +00001017 }
1018 }
1019
1020 // computeUnrollCount() decides whether it is beneficial to use upper bound to
1021 // fully unroll the loop.
1022 bool UseUpperBound = false;
1023 bool IsCountSetExplicitly =
1024 computeUnrollCount(L, TTI, DT, LI, SE, &ORE, TripCount, MaxTripCount,
1025 TripMultiple, LoopSize, UP, UseUpperBound);
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +00001026 if (!UP.Count)
Eli Benderskyff903242014-06-16 23:53:02 +00001027 return false;
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +00001028 // Unroll factor (Count) must be less or equal to TripCount.
1029 if (TripCount && UP.Count > TripCount)
1030 UP.Count = TripCount;
Dan Gohman2980d9d2007-05-11 20:53:41 +00001031
Dan Gohman3dc2d922008-05-14 00:24:14 +00001032 // Unroll the loop.
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +00001033 if (!UnrollLoop(L, UP.Count, TripCount, UP.Force, UP.Runtime,
John Brawn84b21832016-10-21 11:08:48 +00001034 UP.AllowExpensiveTripCount, UseUpperBound, MaxOrZero,
Geoff Berry66d9bdb2017-06-28 15:53:17 +00001035 TripMultiple, UP.PeelCount, LI, &SE, &DT, &AC, &ORE,
Michael Kupersteinb151a642016-11-30 21:13:57 +00001036 PreserveLCSSA))
Dan Gohman3dc2d922008-05-14 00:24:14 +00001037 return false;
Dan Gohman2980d9d2007-05-11 20:53:41 +00001038
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +00001039 // If loop has an unroll count pragma or unrolled by explicitly set count
1040 // mark loop as unrolled to prevent unrolling beyond that requested.
Michael Kupersteinb151a642016-11-30 21:13:57 +00001041 // If the loop was peeled, we already "used up" the profile information
1042 // we had, so we don't want to unroll or peel again.
1043 if (IsCountSetExplicitly || UP.PeelCount)
David L Kreitzer8d441eb2016-03-25 14:24:52 +00001044 SetLoopAlreadyUnrolled(L);
Michael Kupersteinb151a642016-11-30 21:13:57 +00001045
Chris Lattner946b2552004-04-18 05:20:17 +00001046 return true;
1047}
Justin Bognerb8d82ab2016-01-12 05:21:37 +00001048
1049namespace {
1050class LoopUnroll : public LoopPass {
1051public:
1052 static char ID; // Pass ID, replacement for typeid
Dehao Chen7d230322017-02-18 03:46:51 +00001053 LoopUnroll(int OptLevel = 2, Optional<unsigned> Threshold = None,
Justin Bognerb8d82ab2016-01-12 05:21:37 +00001054 Optional<unsigned> Count = None,
Haicheng Wu1ef17e92016-10-12 21:29:38 +00001055 Optional<bool> AllowPartial = None, Optional<bool> Runtime = None,
1056 Optional<bool> UpperBound = None)
Dehao Chen7d230322017-02-18 03:46:51 +00001057 : LoopPass(ID), OptLevel(OptLevel), ProvidedCount(std::move(Count)),
Benjamin Kramer82de7d32016-05-27 14:27:24 +00001058 ProvidedThreshold(Threshold), ProvidedAllowPartial(AllowPartial),
Haicheng Wu1ef17e92016-10-12 21:29:38 +00001059 ProvidedRuntime(Runtime), ProvidedUpperBound(UpperBound) {
Justin Bognerb8d82ab2016-01-12 05:21:37 +00001060 initializeLoopUnrollPass(*PassRegistry::getPassRegistry());
1061 }
1062
Dehao Chen7d230322017-02-18 03:46:51 +00001063 int OptLevel;
Justin Bognerb8d82ab2016-01-12 05:21:37 +00001064 Optional<unsigned> ProvidedCount;
1065 Optional<unsigned> ProvidedThreshold;
1066 Optional<bool> ProvidedAllowPartial;
1067 Optional<bool> ProvidedRuntime;
Haicheng Wu1ef17e92016-10-12 21:29:38 +00001068 Optional<bool> ProvidedUpperBound;
Justin Bognerb8d82ab2016-01-12 05:21:37 +00001069
1070 bool runOnLoop(Loop *L, LPPassManager &) override {
Andrew Kayloraa641a52016-04-22 22:06:11 +00001071 if (skipLoop(L))
Justin Bognerb8d82ab2016-01-12 05:21:37 +00001072 return false;
1073
1074 Function &F = *L->getHeader()->getParent();
1075
1076 auto &DT = getAnalysis<DominatorTreeWrapperPass>().getDomTree();
1077 LoopInfo *LI = &getAnalysis<LoopInfoWrapperPass>().getLoopInfo();
Geoff Berry66d9bdb2017-06-28 15:53:17 +00001078 ScalarEvolution &SE = getAnalysis<ScalarEvolutionWrapperPass>().getSE();
Justin Bognerb8d82ab2016-01-12 05:21:37 +00001079 const TargetTransformInfo &TTI =
1080 getAnalysis<TargetTransformInfoWrapperPass>().getTTI(F);
Daniel Jasperaec2fa32016-12-19 08:22:17 +00001081 auto &AC = getAnalysis<AssumptionCacheTracker>().getAssumptionCache(F);
Adam Nemet4f155b62016-08-26 15:58:34 +00001082 // For the old PM, we can't use OptimizationRemarkEmitter as an analysis
1083 // pass. Function analyses need to be preserved across loop transformations
1084 // but ORE cannot be preserved (see comment before the pass definition).
1085 OptimizationRemarkEmitter ORE(&F);
Justin Bognerb8d82ab2016-01-12 05:21:37 +00001086 bool PreserveLCSSA = mustPreserveAnalysisID(LCSSAID);
1087
Dehao Chen7d230322017-02-18 03:46:51 +00001088 return tryToUnrollLoop(L, DT, LI, SE, TTI, AC, ORE, PreserveLCSSA, OptLevel,
Adam Nemet12937c32016-07-29 19:29:47 +00001089 ProvidedCount, ProvidedThreshold,
Haicheng Wu1ef17e92016-10-12 21:29:38 +00001090 ProvidedAllowPartial, ProvidedRuntime,
1091 ProvidedUpperBound);
Justin Bognerb8d82ab2016-01-12 05:21:37 +00001092 }
1093
1094 /// This transformation requires natural loop information & requires that
1095 /// loop preheaders be inserted into the CFG...
1096 ///
1097 void getAnalysisUsage(AnalysisUsage &AU) const override {
Daniel Jasperaec2fa32016-12-19 08:22:17 +00001098 AU.addRequired<AssumptionCacheTracker>();
Justin Bognerb8d82ab2016-01-12 05:21:37 +00001099 AU.addRequired<TargetTransformInfoWrapperPass>();
Chandler Carruth31088a92016-02-19 10:45:18 +00001100 // FIXME: Loop passes are required to preserve domtree, and for now we just
1101 // recreate dom info if anything gets unrolled.
1102 getLoopAnalysisUsage(AU);
Justin Bognerb8d82ab2016-01-12 05:21:37 +00001103 }
1104};
1105}
1106
1107char LoopUnroll::ID = 0;
1108INITIALIZE_PASS_BEGIN(LoopUnroll, "loop-unroll", "Unroll loops", false, false)
Daniel Jasperaec2fa32016-12-19 08:22:17 +00001109INITIALIZE_PASS_DEPENDENCY(AssumptionCacheTracker)
Chandler Carruth31088a92016-02-19 10:45:18 +00001110INITIALIZE_PASS_DEPENDENCY(LoopPass)
1111INITIALIZE_PASS_DEPENDENCY(TargetTransformInfoWrapperPass)
Justin Bognerb8d82ab2016-01-12 05:21:37 +00001112INITIALIZE_PASS_END(LoopUnroll, "loop-unroll", "Unroll loops", false, false)
1113
Dehao Chen7d230322017-02-18 03:46:51 +00001114Pass *llvm::createLoopUnrollPass(int OptLevel, int Threshold, int Count,
1115 int AllowPartial, int Runtime,
1116 int UpperBound) {
Justin Bognerb8d82ab2016-01-12 05:21:37 +00001117 // TODO: It would make more sense for this function to take the optionals
1118 // directly, but that's dangerous since it would silently break out of tree
1119 // callers.
Dehao Chen7d230322017-02-18 03:46:51 +00001120 return new LoopUnroll(
1121 OptLevel, Threshold == -1 ? None : Optional<unsigned>(Threshold),
1122 Count == -1 ? None : Optional<unsigned>(Count),
1123 AllowPartial == -1 ? None : Optional<bool>(AllowPartial),
1124 Runtime == -1 ? None : Optional<bool>(Runtime),
1125 UpperBound == -1 ? None : Optional<bool>(UpperBound));
Justin Bognerb8d82ab2016-01-12 05:21:37 +00001126}
1127
Dehao Chen7d230322017-02-18 03:46:51 +00001128Pass *llvm::createSimpleLoopUnrollPass(int OptLevel) {
1129 return llvm::createLoopUnrollPass(OptLevel, -1, -1, 0, 0, 0);
Justin Bognerb8d82ab2016-01-12 05:21:37 +00001130}
Sean Silvae3c18a52016-07-19 23:54:23 +00001131
Chandler Carruth410eaeb2017-01-11 06:23:21 +00001132PreservedAnalyses LoopUnrollPass::run(Loop &L, LoopAnalysisManager &AM,
1133 LoopStandardAnalysisResults &AR,
Chandler Carruthce40fa12017-01-25 02:49:01 +00001134 LPMUpdater &Updater) {
Sean Silvae3c18a52016-07-19 23:54:23 +00001135 const auto &FAM =
Chandler Carruth410eaeb2017-01-11 06:23:21 +00001136 AM.getResult<FunctionAnalysisManagerLoopProxy>(L, AR).getManager();
Sean Silvae3c18a52016-07-19 23:54:23 +00001137 Function *F = L.getHeader()->getParent();
1138
Adam Nemet12937c32016-07-29 19:29:47 +00001139 auto *ORE = FAM.getCachedResult<OptimizationRemarkEmitterAnalysis>(*F);
Chandler Carruth410eaeb2017-01-11 06:23:21 +00001140 // FIXME: This should probably be optional rather than required.
Adam Nemet12937c32016-07-29 19:29:47 +00001141 if (!ORE)
1142 report_fatal_error("LoopUnrollPass: OptimizationRemarkEmitterAnalysis not "
1143 "cached at a higher level");
Sean Silvae3c18a52016-07-19 23:54:23 +00001144
Chandler Carruthce40fa12017-01-25 02:49:01 +00001145 // Keep track of the previous loop structure so we can identify new loops
1146 // created by unrolling.
1147 Loop *ParentL = L.getParentLoop();
1148 SmallPtrSet<Loop *, 4> OldLoops;
1149 if (ParentL)
1150 OldLoops.insert(ParentL->begin(), ParentL->end());
1151 else
1152 OldLoops.insert(AR.LI.begin(), AR.LI.end());
1153
Chandler Carrutheab3b902017-01-26 02:13:50 +00001154 // The API here is quite complex to call, but there are only two interesting
1155 // states we support: partial and full (or "simple") unrolling. However, to
1156 // enable these things we actually pass "None" in for the optional to avoid
1157 // providing an explicit choice.
1158 Optional<bool> AllowPartialParam, RuntimeParam, UpperBoundParam;
1159 if (!AllowPartialUnrolling)
1160 AllowPartialParam = RuntimeParam = UpperBoundParam = false;
Dehao Chen7d230322017-02-18 03:46:51 +00001161 bool Changed = tryToUnrollLoop(
Geoff Berry66d9bdb2017-06-28 15:53:17 +00001162 &L, AR.DT, &AR.LI, AR.SE, AR.TTI, AR.AC, *ORE,
Dehao Chen7d230322017-02-18 03:46:51 +00001163 /*PreserveLCSSA*/ true, OptLevel, /*Count*/ None,
1164 /*Threshold*/ None, AllowPartialParam, RuntimeParam, UpperBoundParam);
Sean Silvae3c18a52016-07-19 23:54:23 +00001165 if (!Changed)
1166 return PreservedAnalyses::all();
Chandler Carruthca68a3e2017-01-15 06:32:49 +00001167
Chandler Carruthce40fa12017-01-25 02:49:01 +00001168 // The parent must not be damaged by unrolling!
1169#ifndef NDEBUG
1170 if (ParentL)
1171 ParentL->verifyLoop();
1172#endif
1173
1174 // Unrolling can do several things to introduce new loops into a loop nest:
Michael Kuperstein5dd55e82017-01-26 01:04:11 +00001175 // - Partial unrolling clones child loops within the current loop. If it
1176 // uses a remainder, then it can also create any number of sibling loops.
Chandler Carruthce40fa12017-01-25 02:49:01 +00001177 // - Full unrolling clones child loops within the current loop but then
1178 // removes the current loop making all of the children appear to be new
1179 // sibling loops.
1180 // - Loop peeling can directly introduce new sibling loops by peeling one
1181 // iteration.
1182 //
1183 // When a new loop appears as a sibling loop, either from peeling an
1184 // iteration or fully unrolling, its nesting structure has fundamentally
1185 // changed and we want to revisit it to reflect that.
1186 //
1187 // When unrolling has removed the current loop, we need to tell the
1188 // infrastructure that it is gone.
1189 //
1190 // Finally, we support a debugging/testing mode where we revisit child loops
1191 // as well. These are not expected to require further optimizations as either
1192 // they or the loop they were cloned from have been directly visited already.
1193 // But the debugging mode allows us to check this assumption.
1194 bool IsCurrentLoopValid = false;
1195 SmallVector<Loop *, 4> SibLoops;
1196 if (ParentL)
1197 SibLoops.append(ParentL->begin(), ParentL->end());
1198 else
1199 SibLoops.append(AR.LI.begin(), AR.LI.end());
1200 erase_if(SibLoops, [&](Loop *SibLoop) {
1201 if (SibLoop == &L) {
1202 IsCurrentLoopValid = true;
1203 return true;
1204 }
1205
1206 // Otherwise erase the loop from the list if it was in the old loops.
1207 return OldLoops.count(SibLoop) != 0;
1208 });
1209 Updater.addSiblingLoops(SibLoops);
1210
1211 if (!IsCurrentLoopValid) {
1212 Updater.markLoopAsDeleted(L);
1213 } else {
1214 // We can only walk child loops if the current loop remained valid.
1215 if (UnrollRevisitChildLoops) {
1216 // Walk *all* of the child loops. This is a highly speculative mode
1217 // anyways so look for any simplifications that arose from partial
1218 // unrolling or peeling off of iterations.
1219 SmallVector<Loop *, 4> ChildLoops(L.begin(), L.end());
1220 Updater.addChildLoops(ChildLoops);
1221 }
1222 }
1223
Sean Silvae3c18a52016-07-19 23:54:23 +00001224 return getLoopPassPreservedAnalyses();
1225}