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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
Chris Lattner946b2552004-04-18 05:20:17 +000015#include "llvm/Transforms/Scalar.h"
Chandler Carruth3b057b32015-02-13 03:57:40 +000016#include "llvm/ADT/SetVector.h"
Chandler Carruth66b31302015-01-04 12:03:27 +000017#include "llvm/Analysis/AssumptionCache.h"
Chris Lattner679572e2011-01-02 07:35:53 +000018#include "llvm/Analysis/CodeMetrics.h"
Benjamin Kramer799003b2015-03-23 19:32:43 +000019#include "llvm/Analysis/InstructionSimplify.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000020#include "llvm/Analysis/LoopPass.h"
Dan Gohman0141c132010-07-26 18:11:16 +000021#include "llvm/Analysis/ScalarEvolution.h"
Michael Zolotukhina9aadd22015-02-05 02:34:00 +000022#include "llvm/Analysis/ScalarEvolutionExpressions.h"
Chandler Carruthbb9caa92013-01-21 13:04:33 +000023#include "llvm/Analysis/TargetTransformInfo.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000024#include "llvm/IR/DataLayout.h"
Eli Benderskyff903242014-06-16 23:53:02 +000025#include "llvm/IR/DiagnosticInfo.h"
Chandler Carruth5ad5f152014-01-13 09:26:24 +000026#include "llvm/IR/Dominators.h"
Benjamin Kramer799003b2015-03-23 19:32:43 +000027#include "llvm/IR/InstVisitor.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000028#include "llvm/IR/IntrinsicInst.h"
Eli Benderskyff903242014-06-16 23:53:02 +000029#include "llvm/IR/Metadata.h"
Reid Spencer7c16caa2004-09-01 22:55:40 +000030#include "llvm/Support/CommandLine.h"
31#include "llvm/Support/Debug.h"
Daniel Dunbar0dd5e1e2009-07-25 00:23:56 +000032#include "llvm/Support/raw_ostream.h"
Dan Gohman3dc2d922008-05-14 00:24:14 +000033#include "llvm/Transforms/Utils/UnrollLoop.h"
Duncan Sands67933e62008-05-16 09:30:00 +000034#include <climits>
Chris Lattner946b2552004-04-18 05:20:17 +000035
Dan Gohman3dc2d922008-05-14 00:24:14 +000036using namespace llvm;
Chris Lattner946b2552004-04-18 05:20:17 +000037
Chandler Carruth964daaa2014-04-22 02:55:47 +000038#define DEBUG_TYPE "loop-unroll"
39
Dan Gohmand78c4002008-05-13 00:00:25 +000040static cl::opt<unsigned>
Owen Andersond85c9cc2010-09-10 17:57:00 +000041UnrollThreshold("unroll-threshold", cl::init(150), cl::Hidden,
Dan Gohmand78c4002008-05-13 00:00:25 +000042 cl::desc("The cut-off point for automatic loop unrolling"));
43
Michael Zolotukhina9aadd22015-02-05 02:34:00 +000044static cl::opt<unsigned> UnrollMaxIterationsCountToAnalyze(
Chandler Carruth1fbc3162015-02-13 05:31:46 +000045 "unroll-max-iteration-count-to-analyze", cl::init(0), cl::Hidden,
Michael Zolotukhina9aadd22015-02-05 02:34:00 +000046 cl::desc("Don't allow loop unrolling to simulate more than this number of"
47 "iterations when checking full unroll profitability"));
48
Michael Zolotukhin7af83c12015-02-06 20:20:40 +000049static cl::opt<unsigned> UnrollMinPercentOfOptimized(
50 "unroll-percent-of-optimized-for-complete-unroll", cl::init(20), cl::Hidden,
51 cl::desc("If complete unrolling could trigger further optimizations, and, "
52 "by that, remove the given percent of instructions, perform the "
53 "complete unroll even if it's beyond the threshold"));
54
55static cl::opt<unsigned> UnrollAbsoluteThreshold(
56 "unroll-absolute-threshold", cl::init(2000), cl::Hidden,
57 cl::desc("Don't unroll if the unrolled size is bigger than this threshold,"
58 " even if we can remove big portion of instructions later."));
59
Dan Gohmand78c4002008-05-13 00:00:25 +000060static cl::opt<unsigned>
61UnrollCount("unroll-count", cl::init(0), cl::Hidden,
Eli Benderskyff903242014-06-16 23:53:02 +000062 cl::desc("Use this unroll count for all loops including those with "
63 "unroll_count pragma values, for testing purposes"));
Dan Gohmand78c4002008-05-13 00:00:25 +000064
Matthijs Kooijman98b5c162008-07-29 13:21:23 +000065static cl::opt<bool>
66UnrollAllowPartial("unroll-allow-partial", cl::init(false), cl::Hidden,
67 cl::desc("Allows loops to be partially unrolled until "
68 "-unroll-threshold loop size is reached."));
69
Andrew Trickd04d15292011-12-09 06:19:40 +000070static cl::opt<bool>
71UnrollRuntime("unroll-runtime", cl::ZeroOrMore, cl::init(false), cl::Hidden,
72 cl::desc("Unroll loops with run-time trip counts"));
73
Eli Benderskyff903242014-06-16 23:53:02 +000074static cl::opt<unsigned>
75PragmaUnrollThreshold("pragma-unroll-threshold", cl::init(16 * 1024), cl::Hidden,
Mark Heffernane6b4ba12014-07-23 17:31:37 +000076 cl::desc("Unrolled size limit for loops with an unroll(full) or "
Eli Benderskyff903242014-06-16 23:53:02 +000077 "unroll_count pragma."));
78
Chris Lattner79a42ac2006-12-19 21:40:18 +000079namespace {
Chris Lattner2dd09db2009-09-02 06:11:42 +000080 class LoopUnroll : public LoopPass {
Chris Lattner946b2552004-04-18 05:20:17 +000081 public:
Devang Patel8c78a0b2007-05-03 01:11:54 +000082 static char ID; // Pass ID, replacement for typeid
Hal Finkel081eaef2013-11-05 00:08:03 +000083 LoopUnroll(int T = -1, int C = -1, int P = -1, int R = -1) : LoopPass(ID) {
Chris Lattner35a65b22011-04-14 02:27:25 +000084 CurrentThreshold = (T == -1) ? UnrollThreshold : unsigned(T);
Michael Zolotukhin7af83c12015-02-06 20:20:40 +000085 CurrentAbsoluteThreshold = UnrollAbsoluteThreshold;
86 CurrentMinPercentOfOptimized = UnrollMinPercentOfOptimized;
Chris Lattner35a65b22011-04-14 02:27:25 +000087 CurrentCount = (C == -1) ? UnrollCount : unsigned(C);
Junjie Gu7c3b4592011-04-13 16:15:29 +000088 CurrentAllowPartial = (P == -1) ? UnrollAllowPartial : (bool)P;
Hal Finkel081eaef2013-11-05 00:08:03 +000089 CurrentRuntime = (R == -1) ? UnrollRuntime : (bool)R;
Junjie Gu7c3b4592011-04-13 16:15:29 +000090
91 UserThreshold = (T != -1) || (UnrollThreshold.getNumOccurrences() > 0);
Michael Zolotukhin7af83c12015-02-06 20:20:40 +000092 UserAbsoluteThreshold = (UnrollAbsoluteThreshold.getNumOccurrences() > 0);
93 UserPercentOfOptimized =
94 (UnrollMinPercentOfOptimized.getNumOccurrences() > 0);
Hal Finkel8f2e7002013-09-11 19:25:43 +000095 UserAllowPartial = (P != -1) ||
96 (UnrollAllowPartial.getNumOccurrences() > 0);
Hal Finkel081eaef2013-11-05 00:08:03 +000097 UserRuntime = (R != -1) || (UnrollRuntime.getNumOccurrences() > 0);
Hal Finkel8f2e7002013-09-11 19:25:43 +000098 UserCount = (C != -1) || (UnrollCount.getNumOccurrences() > 0);
Andrew Trick279e7a62011-07-23 00:29:16 +000099
Owen Anderson6c18d1a2010-10-19 17:21:58 +0000100 initializeLoopUnrollPass(*PassRegistry::getPassRegistry());
101 }
Devang Patel09f162c2007-05-01 21:15:47 +0000102
Dan Gohman2980d9d2007-05-11 20:53:41 +0000103 /// A magic value for use with the Threshold parameter to indicate
104 /// that the loop unroll should be performed regardless of how much
105 /// code expansion would result.
106 static const unsigned NoThreshold = UINT_MAX;
Andrew Trick279e7a62011-07-23 00:29:16 +0000107
Owen Andersona4d9c782010-09-07 23:15:30 +0000108 // Threshold to use when optsize is specified (and there is no
109 // explicit -unroll-threshold).
110 static const unsigned OptSizeUnrollThreshold = 50;
Andrew Trick279e7a62011-07-23 00:29:16 +0000111
Andrew Trickd04d15292011-12-09 06:19:40 +0000112 // Default unroll count for loops with run-time trip count if
113 // -unroll-count is not set
114 static const unsigned UnrollRuntimeCount = 8;
115
Junjie Gu7c3b4592011-04-13 16:15:29 +0000116 unsigned CurrentCount;
Owen Andersona4d9c782010-09-07 23:15:30 +0000117 unsigned CurrentThreshold;
Michael Zolotukhin7af83c12015-02-06 20:20:40 +0000118 unsigned CurrentAbsoluteThreshold;
119 unsigned CurrentMinPercentOfOptimized;
Junjie Gu7c3b4592011-04-13 16:15:29 +0000120 bool CurrentAllowPartial;
Hal Finkel081eaef2013-11-05 00:08:03 +0000121 bool CurrentRuntime;
Hal Finkel8f2e7002013-09-11 19:25:43 +0000122 bool UserCount; // CurrentCount is user-specified.
Junjie Gu7c3b4592011-04-13 16:15:29 +0000123 bool UserThreshold; // CurrentThreshold is user-specified.
Michael Zolotukhin7af83c12015-02-06 20:20:40 +0000124 bool UserAbsoluteThreshold; // CurrentAbsoluteThreshold is
125 // user-specified.
126 bool UserPercentOfOptimized; // CurrentMinPercentOfOptimized is
127 // user-specified.
Hal Finkel8f2e7002013-09-11 19:25:43 +0000128 bool UserAllowPartial; // CurrentAllowPartial is user-specified.
Hal Finkel081eaef2013-11-05 00:08:03 +0000129 bool UserRuntime; // CurrentRuntime is user-specified.
Dan Gohman2980d9d2007-05-11 20:53:41 +0000130
Craig Topper3e4c6972014-03-05 09:10:37 +0000131 bool runOnLoop(Loop *L, LPPassManager &LPM) override;
Chris Lattner946b2552004-04-18 05:20:17 +0000132
133 /// This transformation requires natural loop information & requires that
134 /// loop preheaders be inserted into the CFG...
135 ///
Craig Topper3e4c6972014-03-05 09:10:37 +0000136 void getAnalysisUsage(AnalysisUsage &AU) const override {
Chandler Carruth66b31302015-01-04 12:03:27 +0000137 AU.addRequired<AssumptionCacheTracker>();
Chandler Carruth4f8f3072015-01-17 14:16:18 +0000138 AU.addRequired<LoopInfoWrapperPass>();
139 AU.addPreserved<LoopInfoWrapperPass>();
Dan Gohman0141c132010-07-26 18:11:16 +0000140 AU.addRequiredID(LoopSimplifyID);
141 AU.addPreservedID(LoopSimplifyID);
142 AU.addRequiredID(LCSSAID);
143 AU.addPreservedID(LCSSAID);
Andrew Trick4d0040b2011-08-10 04:29:49 +0000144 AU.addRequired<ScalarEvolution>();
Chris Lattnerd6f46b82010-08-29 17:21:35 +0000145 AU.addPreserved<ScalarEvolution>();
Chandler Carruth705b1852015-01-31 03:43:40 +0000146 AU.addRequired<TargetTransformInfoWrapperPass>();
Devang Patelf94b9822008-07-03 07:04:22 +0000147 // FIXME: Loop unroll requires LCSSA. And LCSSA requires dom info.
148 // If loop unroll does not preserve dom info then LCSSA pass on next
149 // loop will receive invalid dom info.
150 // For now, recreate dom info, if loop is unrolled.
Chandler Carruth73523022014-01-13 13:07:17 +0000151 AU.addPreserved<DominatorTreeWrapperPass>();
Chris Lattner946b2552004-04-18 05:20:17 +0000152 }
Eli Benderskyff903242014-06-16 23:53:02 +0000153
154 // Fill in the UnrollingPreferences parameter with values from the
155 // TargetTransformationInfo.
Chandler Carruth21fc1952015-02-01 14:37:03 +0000156 void getUnrollingPreferences(Loop *L, const TargetTransformInfo &TTI,
Eli Benderskyff903242014-06-16 23:53:02 +0000157 TargetTransformInfo::UnrollingPreferences &UP) {
158 UP.Threshold = CurrentThreshold;
Michael Zolotukhin7af83c12015-02-06 20:20:40 +0000159 UP.AbsoluteThreshold = CurrentAbsoluteThreshold;
160 UP.MinPercentOfOptimized = CurrentMinPercentOfOptimized;
Eli Benderskyff903242014-06-16 23:53:02 +0000161 UP.OptSizeThreshold = OptSizeUnrollThreshold;
162 UP.PartialThreshold = CurrentThreshold;
163 UP.PartialOptSizeThreshold = OptSizeUnrollThreshold;
164 UP.Count = CurrentCount;
165 UP.MaxCount = UINT_MAX;
166 UP.Partial = CurrentAllowPartial;
167 UP.Runtime = CurrentRuntime;
Sanjoy Dase178f462015-04-14 03:20:38 +0000168 UP.AllowExpensiveTripCount = false;
Chandler Carruth21fc1952015-02-01 14:37:03 +0000169 TTI.getUnrollingPreferences(L, UP);
Eli Benderskyff903242014-06-16 23:53:02 +0000170 }
171
172 // Select and return an unroll count based on parameters from
173 // user, unroll preferences, unroll pragmas, or a heuristic.
174 // SetExplicitly is set to true if the unroll count is is set by
175 // the user or a pragma rather than selected heuristically.
176 unsigned
Mark Heffernane6b4ba12014-07-23 17:31:37 +0000177 selectUnrollCount(const Loop *L, unsigned TripCount, bool PragmaFullUnroll,
Eli Benderskyff903242014-06-16 23:53:02 +0000178 unsigned PragmaCount,
179 const TargetTransformInfo::UnrollingPreferences &UP,
180 bool &SetExplicitly);
181
Eli Benderskyff903242014-06-16 23:53:02 +0000182 // Select threshold values used to limit unrolling based on a
183 // total unrolled size. Parameters Threshold and PartialThreshold
184 // are set to the maximum unrolled size for fully and partially
185 // unrolled loops respectively.
186 void selectThresholds(const Loop *L, bool HasPragma,
187 const TargetTransformInfo::UnrollingPreferences &UP,
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000188 unsigned &Threshold, unsigned &PartialThreshold,
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000189 unsigned &AbsoluteThreshold,
190 unsigned &PercentOfOptimizedForCompleteUnroll) {
Eli Benderskyff903242014-06-16 23:53:02 +0000191 // Determine the current unrolling threshold. While this is
192 // normally set from UnrollThreshold, it is overridden to a
193 // smaller value if the current function is marked as
194 // optimize-for-size, and the unroll threshold was not user
195 // specified.
196 Threshold = UserThreshold ? CurrentThreshold : UP.Threshold;
197 PartialThreshold = UserThreshold ? CurrentThreshold : UP.PartialThreshold;
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000198 AbsoluteThreshold = UserAbsoluteThreshold ? CurrentAbsoluteThreshold
199 : UP.AbsoluteThreshold;
200 PercentOfOptimizedForCompleteUnroll = UserPercentOfOptimized
201 ? CurrentMinPercentOfOptimized
202 : UP.MinPercentOfOptimized;
203
Eli Benderskyff903242014-06-16 23:53:02 +0000204 if (!UserThreshold &&
Duncan P. N. Exon Smith2c79ad92015-02-14 01:11:29 +0000205 L->getHeader()->getParent()->hasFnAttribute(
206 Attribute::OptimizeForSize)) {
Eli Benderskyff903242014-06-16 23:53:02 +0000207 Threshold = UP.OptSizeThreshold;
208 PartialThreshold = UP.PartialOptSizeThreshold;
209 }
210 if (HasPragma) {
211 // If the loop has an unrolling pragma, we want to be more
212 // aggressive with unrolling limits. Set thresholds to at
213 // least the PragmaTheshold value which is larger than the
214 // default limits.
215 if (Threshold != NoThreshold)
216 Threshold = std::max<unsigned>(Threshold, PragmaUnrollThreshold);
217 if (PartialThreshold != NoThreshold)
218 PartialThreshold =
219 std::max<unsigned>(PartialThreshold, PragmaUnrollThreshold);
220 }
221 }
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000222 bool canUnrollCompletely(Loop *L, unsigned Threshold,
223 unsigned AbsoluteThreshold, uint64_t UnrolledSize,
224 unsigned NumberOfOptimizedInstructions,
225 unsigned PercentOfOptimizedForCompleteUnroll);
Chris Lattner946b2552004-04-18 05:20:17 +0000226 };
Chris Lattner946b2552004-04-18 05:20:17 +0000227}
228
Dan Gohmand78c4002008-05-13 00:00:25 +0000229char LoopUnroll::ID = 0;
Owen Anderson8ac477f2010-10-12 19:48:12 +0000230INITIALIZE_PASS_BEGIN(LoopUnroll, "loop-unroll", "Unroll loops", false, false)
Chandler Carruth705b1852015-01-31 03:43:40 +0000231INITIALIZE_PASS_DEPENDENCY(TargetTransformInfoWrapperPass)
Chandler Carruth66b31302015-01-04 12:03:27 +0000232INITIALIZE_PASS_DEPENDENCY(AssumptionCacheTracker)
Chandler Carruth4f8f3072015-01-17 14:16:18 +0000233INITIALIZE_PASS_DEPENDENCY(LoopInfoWrapperPass)
Owen Anderson8ac477f2010-10-12 19:48:12 +0000234INITIALIZE_PASS_DEPENDENCY(LoopSimplify)
235INITIALIZE_PASS_DEPENDENCY(LCSSA)
Devang Patel88b4fa22011-10-19 23:56:07 +0000236INITIALIZE_PASS_DEPENDENCY(ScalarEvolution)
Owen Anderson8ac477f2010-10-12 19:48:12 +0000237INITIALIZE_PASS_END(LoopUnroll, "loop-unroll", "Unroll loops", false, false)
Dan Gohmand78c4002008-05-13 00:00:25 +0000238
Hal Finkel081eaef2013-11-05 00:08:03 +0000239Pass *llvm::createLoopUnrollPass(int Threshold, int Count, int AllowPartial,
240 int Runtime) {
241 return new LoopUnroll(Threshold, Count, AllowPartial, Runtime);
Junjie Gu7c3b4592011-04-13 16:15:29 +0000242}
Chris Lattner946b2552004-04-18 05:20:17 +0000243
Hal Finkel86b30642014-03-31 23:23:51 +0000244Pass *llvm::createSimpleLoopUnrollPass() {
245 return llvm::createLoopUnrollPass(-1, -1, 0, 0);
246}
247
Benjamin Kramer51f6096c2015-03-23 12:30:58 +0000248namespace {
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000249/// \brief SCEV expressions visitor used for finding expressions that would
250/// become constants if the loop L is unrolled.
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000251struct FindConstantPointers {
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000252 /// \brief Shows whether the expression is ConstAddress+Constant or not.
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000253 bool IndexIsConstant;
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000254
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000255 /// \brief Used for filtering out SCEV expressions with two or more AddRec
256 /// subexpressions.
257 ///
258 /// Used to filter out complicated SCEV expressions, having several AddRec
259 /// sub-expressions. We don't handle them, because unrolling one loop
260 /// would help to replace only one of these inductions with a constant, and
261 /// consequently, the expression would remain non-constant.
262 bool HaveSeenAR;
263
264 /// \brief If the SCEV expression becomes ConstAddress+Constant, this value
265 /// holds ConstAddress. Otherwise, it's nullptr.
266 Value *BaseAddress;
267
268 /// \brief The loop, which we try to completely unroll.
269 const Loop *L;
270
271 ScalarEvolution &SE;
272
273 FindConstantPointers(const Loop *L, ScalarEvolution &SE)
274 : IndexIsConstant(true), HaveSeenAR(false), BaseAddress(nullptr),
275 L(L), SE(SE) {}
276
277 /// Examine the given expression S and figure out, if it can be a part of an
278 /// expression, that could become a constant after the loop is unrolled.
279 /// The routine sets IndexIsConstant and HaveSeenAR according to the analysis
280 /// results.
281 /// \returns true if we need to examine subexpressions, and false otherwise.
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000282 bool follow(const SCEV *S) {
283 if (const SCEVUnknown *SC = dyn_cast<SCEVUnknown>(S)) {
284 // We've reached the leaf node of SCEV, it's most probably just a
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000285 // variable.
286 // If it's the only one SCEV-subexpression, then it might be a base
287 // address of an index expression.
288 // If we've already recorded base address, then just give up on this SCEV
289 // - it's too complicated.
290 if (BaseAddress) {
291 IndexIsConstant = false;
292 return false;
293 }
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000294 BaseAddress = SC->getValue();
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000295 return false;
296 }
297 if (isa<SCEVConstant>(S))
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000298 return false;
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000299 if (const SCEVAddRecExpr *AR = dyn_cast<SCEVAddRecExpr>(S)) {
300 // If the current SCEV expression is AddRec, and its loop isn't the loop
301 // we are about to unroll, then we won't get a constant address after
302 // unrolling, and thus, won't be able to eliminate the load.
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000303 if (AR->getLoop() != L) {
304 IndexIsConstant = false;
305 return false;
306 }
307 // We don't handle multiple AddRecs here, so give up in this case.
308 if (HaveSeenAR) {
309 IndexIsConstant = false;
310 return false;
311 }
312 HaveSeenAR = true;
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000313 }
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000314
315 // Continue traversal.
316 return true;
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000317 }
318 bool isDone() const { return !IndexIsConstant; }
319};
Chandler Carruthe1a04622015-05-22 03:02:22 +0000320} // End anonymous namespace.
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000321
Chandler Carruthe1a04622015-05-22 03:02:22 +0000322namespace {
323/// \brief Struct to represent a GEP whose start and step are known fixed
324/// offsets from a base address due to SCEV's analysis.
325struct SCEVGEPDescriptor {
326 Value *BaseAddr;
327 unsigned Start;
328 unsigned Step;
329};
330} // End anonymous namespace.
331
332/// \brief Build a cache of all the GEP instructions which SCEV can describe.
333///
334/// Visit all GEPs in the loop and find those which after complete loop
335/// unrolling would become a constant, or BaseAddress+Constant. For those where
336/// we can identify small constant starts and steps from a base address, return
337/// a map from the GEP to the base, start, and step relevant for that GEP. This
338/// is essentially a simplified and fast to query form of the SCEV analysis
339/// which we can afford to look into repeatedly for different iterations of the
340/// loop.
341static SmallDenseMap<Value *, SCEVGEPDescriptor>
342buildSCEVGEPCache(const Loop &L, ScalarEvolution &SE) {
343 SmallDenseMap<Value *, SCEVGEPDescriptor> Cache;
344
345 for (auto BB : L.getBlocks()) {
346 for (Instruction &I : *BB) {
347 if (GetElementPtrInst *GEP = dyn_cast<GetElementPtrInst>(&I)) {
348 Value *V = cast<Value>(GEP);
349 if (!SE.isSCEVable(V->getType()))
350 continue;
351 const SCEV *S = SE.getSCEV(V);
352 // FIXME: Hoist the initialization out of the loop.
353 FindConstantPointers Visitor(&L, SE);
354 SCEVTraversal<FindConstantPointers> T(Visitor);
355 // Try to find (BaseAddress+Step+Offset) tuple.
356 // If succeeded, save it to the cache - it might help in folding
357 // loads.
358 T.visitAll(S);
359 if (!Visitor.IndexIsConstant || !Visitor.BaseAddress)
360 continue;
361
362 const SCEV *BaseAddrSE = SE.getSCEV(Visitor.BaseAddress);
363 if (BaseAddrSE->getType() != S->getType())
364 continue;
365 const SCEV *OffSE = SE.getMinusSCEV(S, BaseAddrSE);
366 const SCEVAddRecExpr *AR = dyn_cast<SCEVAddRecExpr>(OffSE);
367
368 if (!AR)
369 continue;
370
371 const SCEVConstant *StepSE =
372 dyn_cast<SCEVConstant>(AR->getStepRecurrence(SE));
373 const SCEVConstant *StartSE = dyn_cast<SCEVConstant>(AR->getStart());
374 if (!StepSE || !StartSE)
375 continue;
376
377 // Check and skip caching if doing so would require lots of bits to
378 // avoid overflow.
379 APInt Start = StartSE->getValue()->getValue();
380 APInt Step = StepSE->getValue()->getValue();
381 if (Start.getActiveBits() > 32 || Step.getActiveBits() > 32)
382 continue;
383
384 // We found a cacheable SCEV model for the GEP.
385 Cache[V] = {Visitor.BaseAddress,
386 (unsigned)Start.getLimitedValue(),
387 (unsigned)Step.getLimitedValue()};
388 }
389 }
390 }
391
392 return Cache;
393}
394
395namespace {
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000396// This class is used to get an estimate of the optimization effects that we
397// could get from complete loop unrolling. It comes from the fact that some
398// loads might be replaced with concrete constant values and that could trigger
399// a chain of instruction simplifications.
400//
401// E.g. we might have:
402// int a[] = {0, 1, 0};
403// v = 0;
404// for (i = 0; i < 3; i ++)
405// v += b[i]*a[i];
406// If we completely unroll the loop, we would get:
407// v = b[0]*a[0] + b[1]*a[1] + b[2]*a[2]
408// Which then will be simplified to:
409// v = b[0]* 0 + b[1]* 1 + b[2]* 0
410// And finally:
411// v = b[1]
412class UnrollAnalyzer : public InstVisitor<UnrollAnalyzer, bool> {
413 typedef InstVisitor<UnrollAnalyzer, bool> Base;
414 friend class InstVisitor<UnrollAnalyzer, bool>;
415
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000416 /// \brief The loop we're going to analyze.
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000417 const Loop *L;
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000418
419 /// \brief TripCount of the given loop.
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000420 unsigned TripCount;
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000421
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000422 ScalarEvolution &SE;
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000423
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000424 const TargetTransformInfo &TTI;
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000425
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000426 // While we walk the loop instructions, we we build up and maintain a mapping
427 // of simplified values specific to this iteration. The idea is to propagate
428 // any special information we have about loads that can be replaced with
429 // constants after complete unrolling, and account for likely simplifications
430 // post-unrolling.
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000431 DenseMap<Value *, Constant *> SimplifiedValues;
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000432
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000433 // To avoid requesting SCEV info on every iteration, request it once, and
434 // for each value that would become ConstAddress+Constant after loop
435 // unrolling, save the corresponding data.
Chandler Carruthe1a04622015-05-22 03:02:22 +0000436 SmallDenseMap<Value *, SCEVGEPDescriptor> SCEVGEPCache;
Chandler Carruth302a1332015-02-13 02:10:56 +0000437
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000438 /// \brief Number of currently simulated iteration.
439 ///
440 /// If an expression is ConstAddress+Constant, then the Constant is
441 /// Start + Iteration*Step, where Start and Step could be obtained from
Chandler Carruthe1a04622015-05-22 03:02:22 +0000442 /// SCEVGEPCache.
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000443 unsigned Iteration;
444
445 /// \brief Upper threshold for complete unrolling.
446 unsigned MaxUnrolledLoopSize;
447
448 /// Base case for the instruction visitor.
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000449 bool visitInstruction(Instruction &I) { return false; };
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000450
451 /// TODO: Add visitors for other instruction types, e.g. ZExt, SExt.
452
453 /// Try to simplify binary operator I.
454 ///
455 /// TODO: Probaly it's worth to hoist the code for estimating the
456 /// simplifications effects to a separate class, since we have a very similar
457 /// code in InlineCost already.
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000458 bool visitBinaryOperator(BinaryOperator &I) {
459 Value *LHS = I.getOperand(0), *RHS = I.getOperand(1);
460 if (!isa<Constant>(LHS))
461 if (Constant *SimpleLHS = SimplifiedValues.lookup(LHS))
462 LHS = SimpleLHS;
463 if (!isa<Constant>(RHS))
464 if (Constant *SimpleRHS = SimplifiedValues.lookup(RHS))
465 RHS = SimpleRHS;
Michael Zolotukhin4e8598e2015-02-06 20:02:51 +0000466 Value *SimpleV = nullptr;
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000467 const DataLayout &DL = I.getModule()->getDataLayout();
Michael Zolotukhin4e8598e2015-02-06 20:02:51 +0000468 if (auto FI = dyn_cast<FPMathOperator>(&I))
469 SimpleV =
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000470 SimplifyFPBinOp(I.getOpcode(), LHS, RHS, FI->getFastMathFlags(), DL);
Michael Zolotukhin4e8598e2015-02-06 20:02:51 +0000471 else
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000472 SimpleV = SimplifyBinOp(I.getOpcode(), LHS, RHS, DL);
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000473
Chandler Carruthf174a152015-05-22 02:47:29 +0000474 if (Constant *C = dyn_cast_or_null<Constant>(SimpleV))
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000475 SimplifiedValues[&I] = C;
Chandler Carruthf174a152015-05-22 02:47:29 +0000476
477 return SimpleV;
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000478 }
479
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000480 /// Try to fold load I.
481 bool visitLoad(LoadInst &I) {
482 Value *AddrOp = I.getPointerOperand();
483 if (!isa<Constant>(AddrOp))
484 if (Constant *SimplifiedAddrOp = SimplifiedValues.lookup(AddrOp))
485 AddrOp = SimplifiedAddrOp;
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000486
Chandler Carruthe1a04622015-05-22 03:02:22 +0000487 auto It = SCEVGEPCache.find(AddrOp);
488 if (It == SCEVGEPCache.end())
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000489 return false;
490 SCEVGEPDescriptor GEPDesc = It->second;
491
492 auto GV = dyn_cast<GlobalVariable>(GEPDesc.BaseAddr);
493 // We're only interested in loads that can be completely folded to a
494 // constant.
495 if (!GV || !GV->hasInitializer())
496 return false;
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000497
498 ConstantDataSequential *CDS =
499 dyn_cast<ConstantDataSequential>(GV->getInitializer());
500 if (!CDS)
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000501 return false;
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000502
Chandler Carrutha6ae8772015-05-12 23:32:56 +0000503 // This calculation should never overflow because we bound Iteration quite
504 // low and both the start and step are 32-bit integers. We use signed
505 // integers so that UBSan will catch if a bug sneaks into the code.
506 int ElemSize = CDS->getElementType()->getPrimitiveSizeInBits() / 8U;
507 int64_t Index = ((int64_t)GEPDesc.Start +
508 (int64_t)GEPDesc.Step * (int64_t)Iteration) /
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000509 ElemSize;
510 if (Index >= CDS->getNumElements()) {
511 // FIXME: For now we conservatively ignore out of bound accesses, but
512 // we're allowed to perform the optimization in this case.
513 return false;
514 }
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000515
516 Constant *CV = CDS->getElementAsConstant(Index);
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000517 assert(CV && "Constant expected.");
518 SimplifiedValues[&I] = CV;
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000519
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000520 return true;
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000521 }
522
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000523public:
524 UnrollAnalyzer(const Loop *L, unsigned TripCount, ScalarEvolution &SE,
525 const TargetTransformInfo &TTI, unsigned MaxUnrolledLoopSize)
526 : L(L), TripCount(TripCount), SE(SE), TTI(TTI),
527 MaxUnrolledLoopSize(MaxUnrolledLoopSize),
528 NumberOfOptimizedInstructions(0), UnrolledLoopSize(0) {}
Chandler Carruth6c03dff2015-02-13 04:39:05 +0000529
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000530 /// \brief Count the number of optimized instructions.
531 unsigned NumberOfOptimizedInstructions;
Chandler Carruth302a1332015-02-13 02:10:56 +0000532
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000533 /// \brief Count the total number of instructions.
534 unsigned UnrolledLoopSize;
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000535
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000536 /// \brief Figure out if the loop is worth full unrolling.
537 ///
538 /// Complete loop unrolling can make some loads constant, and we need to know
539 /// if that would expose any further optimization opportunities. This routine
540 /// estimates this optimization. It assigns computed number of instructions,
541 /// that potentially might be optimized away, to
542 /// NumberOfOptimizedInstructions, and total number of instructions to
543 /// UnrolledLoopSize (not counting blocks that won't be reached, if we were
544 /// able to compute the condition).
545 /// \returns false if we can't analyze the loop, or if we discovered that
546 /// unrolling won't give anything. Otherwise, returns true.
547 bool analyzeLoop() {
548 SmallSetVector<BasicBlock *, 16> BBWorklist;
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000549
Chandler Carrutha6ae8772015-05-12 23:32:56 +0000550 // We want to be able to scale offsets by the trip count and add more
551 // offsets to them without checking for overflows, and we already don't want
552 // to analyze *massive* trip counts, so we force the max to be reasonably
553 // small.
554 assert(UnrollMaxIterationsCountToAnalyze < (INT_MAX / 2) &&
555 "The unroll iterations max is too large!");
556
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000557 // Don't simulate loops with a big or unknown tripcount
558 if (!UnrollMaxIterationsCountToAnalyze || !TripCount ||
559 TripCount > UnrollMaxIterationsCountToAnalyze)
560 return false;
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000561
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000562 // To avoid compute SCEV-expressions on every iteration, compute them once
Chandler Carruthe1a04622015-05-22 03:02:22 +0000563 // and store interesting to us in SCEVGEPCache.
564 SCEVGEPCache = buildSCEVGEPCache(*L, SE);
Chandler Carruth3b057b32015-02-13 03:57:40 +0000565
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000566 // Simulate execution of each iteration of the loop counting instructions,
567 // which would be simplified.
568 // Since the same load will take different values on different iterations,
569 // we literally have to go through all loop's iterations.
570 for (Iteration = 0; Iteration < TripCount; ++Iteration) {
571 SimplifiedValues.clear();
572 BBWorklist.clear();
573 BBWorklist.insert(L->getHeader());
574 // Note that we *must not* cache the size, this loop grows the worklist.
575 for (unsigned Idx = 0; Idx != BBWorklist.size(); ++Idx) {
576 BasicBlock *BB = BBWorklist[Idx];
Chandler Carruth8c863752015-02-13 03:48:38 +0000577
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000578 // Visit all instructions in the given basic block and try to simplify
579 // it. We don't change the actual IR, just count optimization
580 // opportunities.
581 for (Instruction &I : *BB) {
582 UnrolledLoopSize += TTI.getUserCost(&I);
Chandler Carruthf174a152015-05-22 02:47:29 +0000583
584 // Visit the instruction to analyze its loop cost after unrolling,
585 // and if the visitor returns true, then we can optimize this
586 // instruction away.
587 if (Base::visit(I))
588 NumberOfOptimizedInstructions += TTI.getUserCost(&I);
589
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000590 // If unrolled body turns out to be too big, bail out.
591 if (UnrolledLoopSize - NumberOfOptimizedInstructions >
592 MaxUnrolledLoopSize)
593 return false;
594 }
Chandler Carruth17a04962015-02-13 03:49:41 +0000595
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000596 // Add BB's successors to the worklist.
597 for (BasicBlock *Succ : successors(BB))
598 if (L->contains(Succ))
599 BBWorklist.insert(Succ);
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000600 }
Chandler Carruth415f4122015-02-13 02:17:39 +0000601
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000602 // If we found no optimization opportunities on the first iteration, we
603 // won't find them on later ones too.
604 if (!NumberOfOptimizedInstructions)
605 return false;
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000606 }
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000607 return true;
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000608 }
609};
Benjamin Kramer51f6096c2015-03-23 12:30:58 +0000610} // namespace
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000611
Dan Gohman49d08a52007-05-08 15:14:19 +0000612/// ApproximateLoopSize - Approximate the size of the loop.
Andrew Trickf7656012011-10-01 01:39:05 +0000613static unsigned ApproximateLoopSize(const Loop *L, unsigned &NumCalls,
Chandler Carruthbb9caa92013-01-21 13:04:33 +0000614 bool &NotDuplicatable,
Hal Finkel57f03dd2014-09-07 13:49:57 +0000615 const TargetTransformInfo &TTI,
Chandler Carruth66b31302015-01-04 12:03:27 +0000616 AssumptionCache *AC) {
Hal Finkel57f03dd2014-09-07 13:49:57 +0000617 SmallPtrSet<const Value *, 32> EphValues;
Chandler Carruth66b31302015-01-04 12:03:27 +0000618 CodeMetrics::collectEphemeralValues(L, AC, EphValues);
Hal Finkel57f03dd2014-09-07 13:49:57 +0000619
Dan Gohman969e83a2009-10-31 14:54:17 +0000620 CodeMetrics Metrics;
Dan Gohman90071072008-06-22 20:18:58 +0000621 for (Loop::block_iterator I = L->block_begin(), E = L->block_end();
Dan Gohman969e83a2009-10-31 14:54:17 +0000622 I != E; ++I)
Hal Finkel57f03dd2014-09-07 13:49:57 +0000623 Metrics.analyzeBasicBlock(*I, TTI, EphValues);
Owen Anderson04cf3fd2010-09-09 20:32:23 +0000624 NumCalls = Metrics.NumInlineCandidates;
James Molloy4f6fb952012-12-20 16:04:27 +0000625 NotDuplicatable = Metrics.notDuplicatable;
Andrew Trick279e7a62011-07-23 00:29:16 +0000626
Owen Anderson62ea1b72010-09-09 19:07:31 +0000627 unsigned LoopSize = Metrics.NumInsts;
Andrew Trick279e7a62011-07-23 00:29:16 +0000628
Owen Anderson62ea1b72010-09-09 19:07:31 +0000629 // Don't allow an estimate of size zero. This would allows unrolling of loops
630 // with huge iteration counts, which is a compile time problem even if it's
Hal Finkel38dd5902015-01-10 00:30:55 +0000631 // not a problem for code quality. Also, the code using this size may assume
632 // that each loop has at least three instructions (likely a conditional
633 // branch, a comparison feeding that branch, and some kind of loop increment
634 // feeding that comparison instruction).
635 LoopSize = std::max(LoopSize, 3u);
Andrew Trick279e7a62011-07-23 00:29:16 +0000636
Owen Anderson62ea1b72010-09-09 19:07:31 +0000637 return LoopSize;
Chris Lattner946b2552004-04-18 05:20:17 +0000638}
639
Mark Heffernane6b4ba12014-07-23 17:31:37 +0000640// Returns the loop hint metadata node with the given name (for example,
641// "llvm.loop.unroll.count"). If no such metadata node exists, then nullptr is
642// returned.
Jingyue Wu49a766e2015-02-02 20:41:11 +0000643static MDNode *GetUnrollMetadataForLoop(const Loop *L, StringRef Name) {
644 if (MDNode *LoopID = L->getLoopID())
645 return GetUnrollMetadata(LoopID, Name);
646 return nullptr;
Eli Benderskyff903242014-06-16 23:53:02 +0000647}
648
Mark Heffernane6b4ba12014-07-23 17:31:37 +0000649// Returns true if the loop has an unroll(full) pragma.
650static bool HasUnrollFullPragma(const Loop *L) {
Jingyue Wu0220df02015-02-01 02:27:45 +0000651 return GetUnrollMetadataForLoop(L, "llvm.loop.unroll.full");
Eli Benderskyff903242014-06-16 23:53:02 +0000652}
653
654// Returns true if the loop has an unroll(disable) pragma.
655static bool HasUnrollDisablePragma(const Loop *L) {
Jingyue Wu0220df02015-02-01 02:27:45 +0000656 return GetUnrollMetadataForLoop(L, "llvm.loop.unroll.disable");
Eli Benderskyff903242014-06-16 23:53:02 +0000657}
658
Kevin Qin715b01e2015-03-09 06:14:18 +0000659// Returns true if the loop has an runtime unroll(disable) pragma.
660static bool HasRuntimeUnrollDisablePragma(const Loop *L) {
661 return GetUnrollMetadataForLoop(L, "llvm.loop.unroll.runtime.disable");
662}
663
Eli Benderskyff903242014-06-16 23:53:02 +0000664// If loop has an unroll_count pragma return the (necessarily
665// positive) value from the pragma. Otherwise return 0.
666static unsigned UnrollCountPragmaValue(const Loop *L) {
Jingyue Wu49a766e2015-02-02 20:41:11 +0000667 MDNode *MD = GetUnrollMetadataForLoop(L, "llvm.loop.unroll.count");
Mark Heffernane6b4ba12014-07-23 17:31:37 +0000668 if (MD) {
669 assert(MD->getNumOperands() == 2 &&
670 "Unroll count hint metadata should have two operands.");
Duncan P. N. Exon Smith5bf8fef2014-12-09 18:38:53 +0000671 unsigned Count =
672 mdconst::extract<ConstantInt>(MD->getOperand(1))->getZExtValue();
Eli Benderskyff903242014-06-16 23:53:02 +0000673 assert(Count >= 1 && "Unroll count must be positive.");
674 return Count;
675 }
676 return 0;
677}
678
Mark Heffernan053a6862014-07-18 21:04:33 +0000679// Remove existing unroll metadata and add unroll disable metadata to
680// indicate the loop has already been unrolled. This prevents a loop
681// from being unrolled more than is directed by a pragma if the loop
682// unrolling pass is run more than once (which it generally is).
683static void SetLoopAlreadyUnrolled(Loop *L) {
684 MDNode *LoopID = L->getLoopID();
685 if (!LoopID) return;
686
687 // First remove any existing loop unrolling metadata.
Duncan P. N. Exon Smith5bf8fef2014-12-09 18:38:53 +0000688 SmallVector<Metadata *, 4> MDs;
Mark Heffernan053a6862014-07-18 21:04:33 +0000689 // Reserve first location for self reference to the LoopID metadata node.
Duncan P. N. Exon Smith5bf8fef2014-12-09 18:38:53 +0000690 MDs.push_back(nullptr);
Mark Heffernan053a6862014-07-18 21:04:33 +0000691 for (unsigned i = 1, ie = LoopID->getNumOperands(); i < ie; ++i) {
692 bool IsUnrollMetadata = false;
693 MDNode *MD = dyn_cast<MDNode>(LoopID->getOperand(i));
694 if (MD) {
695 const MDString *S = dyn_cast<MDString>(MD->getOperand(0));
696 IsUnrollMetadata = S && S->getString().startswith("llvm.loop.unroll.");
697 }
Duncan P. N. Exon Smith5bf8fef2014-12-09 18:38:53 +0000698 if (!IsUnrollMetadata)
699 MDs.push_back(LoopID->getOperand(i));
Mark Heffernan053a6862014-07-18 21:04:33 +0000700 }
701
702 // Add unroll(disable) metadata to disable future unrolling.
703 LLVMContext &Context = L->getHeader()->getContext();
Duncan P. N. Exon Smith5bf8fef2014-12-09 18:38:53 +0000704 SmallVector<Metadata *, 1> DisableOperands;
Mark Heffernane6b4ba12014-07-23 17:31:37 +0000705 DisableOperands.push_back(MDString::get(Context, "llvm.loop.unroll.disable"));
Mark Heffernanf3764da2014-07-18 21:29:41 +0000706 MDNode *DisableNode = MDNode::get(Context, DisableOperands);
Duncan P. N. Exon Smith5bf8fef2014-12-09 18:38:53 +0000707 MDs.push_back(DisableNode);
Mark Heffernan053a6862014-07-18 21:04:33 +0000708
Duncan P. N. Exon Smith5bf8fef2014-12-09 18:38:53 +0000709 MDNode *NewLoopID = MDNode::get(Context, MDs);
Mark Heffernan053a6862014-07-18 21:04:33 +0000710 // Set operand 0 to refer to the loop id itself.
711 NewLoopID->replaceOperandWith(0, NewLoopID);
712 L->setLoopID(NewLoopID);
Mark Heffernan053a6862014-07-18 21:04:33 +0000713}
714
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000715bool LoopUnroll::canUnrollCompletely(
716 Loop *L, unsigned Threshold, unsigned AbsoluteThreshold,
717 uint64_t UnrolledSize, unsigned NumberOfOptimizedInstructions,
718 unsigned PercentOfOptimizedForCompleteUnroll) {
719
720 if (Threshold == NoThreshold) {
721 DEBUG(dbgs() << " Can fully unroll, because no threshold is set.\n");
722 return true;
723 }
724
725 if (UnrolledSize <= Threshold) {
726 DEBUG(dbgs() << " Can fully unroll, because unrolled size: "
727 << UnrolledSize << "<" << Threshold << "\n");
728 return true;
729 }
730
731 assert(UnrolledSize && "UnrolledSize can't be 0 at this point.");
732 unsigned PercentOfOptimizedInstructions =
733 (uint64_t)NumberOfOptimizedInstructions * 100ull / UnrolledSize;
734
735 if (UnrolledSize <= AbsoluteThreshold &&
736 PercentOfOptimizedInstructions >= PercentOfOptimizedForCompleteUnroll) {
737 DEBUG(dbgs() << " Can fully unroll, because unrolling will help removing "
738 << PercentOfOptimizedInstructions
739 << "% instructions (threshold: "
740 << PercentOfOptimizedForCompleteUnroll << "%)\n");
741 DEBUG(dbgs() << " Unrolled size (" << UnrolledSize
742 << ") is less than the threshold (" << AbsoluteThreshold
743 << ").\n");
744 return true;
745 }
746
747 DEBUG(dbgs() << " Too large to fully unroll:\n");
748 DEBUG(dbgs() << " Unrolled size: " << UnrolledSize << "\n");
749 DEBUG(dbgs() << " Estimated number of optimized instructions: "
750 << NumberOfOptimizedInstructions << "\n");
751 DEBUG(dbgs() << " Absolute threshold: " << AbsoluteThreshold << "\n");
752 DEBUG(dbgs() << " Minimum percent of removed instructions: "
753 << PercentOfOptimizedForCompleteUnroll << "\n");
754 DEBUG(dbgs() << " Threshold for small loops: " << Threshold << "\n");
755 return false;
756}
757
Eli Benderskyff903242014-06-16 23:53:02 +0000758unsigned LoopUnroll::selectUnrollCount(
Mark Heffernane6b4ba12014-07-23 17:31:37 +0000759 const Loop *L, unsigned TripCount, bool PragmaFullUnroll,
Eli Benderskyff903242014-06-16 23:53:02 +0000760 unsigned PragmaCount, const TargetTransformInfo::UnrollingPreferences &UP,
761 bool &SetExplicitly) {
762 SetExplicitly = true;
763
764 // User-specified count (either as a command-line option or
765 // constructor parameter) has highest precedence.
766 unsigned Count = UserCount ? CurrentCount : 0;
767
768 // If there is no user-specified count, unroll pragmas have the next
769 // highest precendence.
770 if (Count == 0) {
771 if (PragmaCount) {
772 Count = PragmaCount;
Mark Heffernane6b4ba12014-07-23 17:31:37 +0000773 } else if (PragmaFullUnroll) {
Eli Benderskyff903242014-06-16 23:53:02 +0000774 Count = TripCount;
775 }
776 }
777
778 if (Count == 0)
779 Count = UP.Count;
780
781 if (Count == 0) {
782 SetExplicitly = false;
783 if (TripCount == 0)
784 // Runtime trip count.
785 Count = UnrollRuntimeCount;
786 else
787 // Conservative heuristic: if we know the trip count, see if we can
788 // completely unroll (subject to the threshold, checked below); otherwise
789 // try to find greatest modulo of the trip count which is still under
790 // threshold value.
791 Count = TripCount;
792 }
793 if (TripCount && Count > TripCount)
794 return TripCount;
795 return Count;
796}
797
Devang Patel9779e562007-03-07 01:38:05 +0000798bool LoopUnroll::runOnLoop(Loop *L, LPPassManager &LPM) {
Paul Robinsonaf4e64d2014-02-06 00:07:05 +0000799 if (skipOptnoneFunction(L))
800 return false;
801
Chandler Carruthfdb9c572015-02-01 12:01:35 +0000802 Function &F = *L->getHeader()->getParent();
803
Chandler Carruth4f8f3072015-01-17 14:16:18 +0000804 LoopInfo *LI = &getAnalysis<LoopInfoWrapperPass>().getLoopInfo();
Andrew Trick2b6860f2011-08-11 23:36:16 +0000805 ScalarEvolution *SE = &getAnalysis<ScalarEvolution>();
Chandler Carruth705b1852015-01-31 03:43:40 +0000806 const TargetTransformInfo &TTI =
Chandler Carruthfdb9c572015-02-01 12:01:35 +0000807 getAnalysis<TargetTransformInfoWrapperPass>().getTTI(F);
Chandler Carruthfdb9c572015-02-01 12:01:35 +0000808 auto &AC = getAnalysis<AssumptionCacheTracker>().getAssumptionCache(F);
Dan Gohman2980d9d2007-05-11 20:53:41 +0000809
Dan Gohman2e1f8042007-05-08 15:19:19 +0000810 BasicBlock *Header = L->getHeader();
David Greenee0b97892010-01-05 01:27:44 +0000811 DEBUG(dbgs() << "Loop Unroll: F[" << Header->getParent()->getName()
Daniel Dunbar0dd5e1e2009-07-25 00:23:56 +0000812 << "] Loop %" << Header->getName() << "\n");
Eli Benderskyff903242014-06-16 23:53:02 +0000813
814 if (HasUnrollDisablePragma(L)) {
815 return false;
816 }
Mark Heffernane6b4ba12014-07-23 17:31:37 +0000817 bool PragmaFullUnroll = HasUnrollFullPragma(L);
Eli Benderskyff903242014-06-16 23:53:02 +0000818 unsigned PragmaCount = UnrollCountPragmaValue(L);
Mark Heffernane6b4ba12014-07-23 17:31:37 +0000819 bool HasPragma = PragmaFullUnroll || PragmaCount > 0;
Andrew Trick279e7a62011-07-23 00:29:16 +0000820
Hal Finkel8f2e7002013-09-11 19:25:43 +0000821 TargetTransformInfo::UnrollingPreferences UP;
Chandler Carruth21fc1952015-02-01 14:37:03 +0000822 getUnrollingPreferences(L, TTI, UP);
Dan Gohman2980d9d2007-05-11 20:53:41 +0000823
Andrew Trick2b6860f2011-08-11 23:36:16 +0000824 // Find trip count and trip multiple if count is not available
825 unsigned TripCount = 0;
Andrew Trick1cabe542011-07-23 00:33:05 +0000826 unsigned TripMultiple = 1;
Chandler Carruth6666c272014-10-11 00:12:11 +0000827 // If there are multiple exiting blocks but one of them is the latch, use the
828 // latch for the trip count estimation. Otherwise insist on a single exiting
829 // block for the trip count estimation.
830 BasicBlock *ExitingBlock = L->getLoopLatch();
831 if (!ExitingBlock || !L->isLoopExiting(ExitingBlock))
832 ExitingBlock = L->getExitingBlock();
833 if (ExitingBlock) {
834 TripCount = SE->getSmallConstantTripCount(L, ExitingBlock);
835 TripMultiple = SE->getSmallConstantTripMultiple(L, ExitingBlock);
Andrew Trick2b6860f2011-08-11 23:36:16 +0000836 }
Hal Finkel8f2e7002013-09-11 19:25:43 +0000837
Eli Benderskyff903242014-06-16 23:53:02 +0000838 // Select an initial unroll count. This may be reduced later based
839 // on size thresholds.
840 bool CountSetExplicitly;
Mark Heffernane6b4ba12014-07-23 17:31:37 +0000841 unsigned Count = selectUnrollCount(L, TripCount, PragmaFullUnroll,
842 PragmaCount, UP, CountSetExplicitly);
Eli Benderskydc6de2c2014-06-12 18:05:39 +0000843
Eli Benderskyff903242014-06-16 23:53:02 +0000844 unsigned NumInlineCandidates;
845 bool notDuplicatable;
846 unsigned LoopSize =
Chandler Carruth66b31302015-01-04 12:03:27 +0000847 ApproximateLoopSize(L, NumInlineCandidates, notDuplicatable, TTI, &AC);
Eli Benderskyff903242014-06-16 23:53:02 +0000848 DEBUG(dbgs() << " Loop Size = " << LoopSize << "\n");
Hal Finkel38dd5902015-01-10 00:30:55 +0000849
850 // When computing the unrolled size, note that the conditional branch on the
851 // backedge and the comparison feeding it are not replicated like the rest of
852 // the loop body (which is why 2 is subtracted).
853 uint64_t UnrolledSize = (uint64_t)(LoopSize-2) * Count + 2;
Eli Benderskyff903242014-06-16 23:53:02 +0000854 if (notDuplicatable) {
855 DEBUG(dbgs() << " Not unrolling loop which contains non-duplicatable"
856 << " instructions.\n");
857 return false;
858 }
859 if (NumInlineCandidates != 0) {
860 DEBUG(dbgs() << " Not unrolling loop with inlinable calls.\n");
861 return false;
Dan Gohman2980d9d2007-05-11 20:53:41 +0000862 }
863
Eli Benderskyff903242014-06-16 23:53:02 +0000864 unsigned Threshold, PartialThreshold;
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000865 unsigned AbsoluteThreshold, PercentOfOptimizedForCompleteUnroll;
Michael Zolotukhina9aadd22015-02-05 02:34:00 +0000866 selectThresholds(L, HasPragma, UP, Threshold, PartialThreshold,
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000867 AbsoluteThreshold, PercentOfOptimizedForCompleteUnroll);
Benjamin Kramer9130cb82014-05-04 19:12:38 +0000868
Eli Benderskyff903242014-06-16 23:53:02 +0000869 // Given Count, TripCount and thresholds determine the type of
870 // unrolling which is to be performed.
871 enum { Full = 0, Partial = 1, Runtime = 2 };
872 int Unrolling;
873 if (TripCount && Count == TripCount) {
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000874 Unrolling = Partial;
875 // If the loop is really small, we don't need to run an expensive analysis.
876 if (canUnrollCompletely(
877 L, Threshold, AbsoluteThreshold,
878 UnrolledSize, 0, 100)) {
Eli Benderskyff903242014-06-16 23:53:02 +0000879 Unrolling = Full;
Michael Zolotukhin8c681712015-05-12 17:20:03 +0000880 } else {
881 // The loop isn't that small, but we still can fully unroll it if that
882 // helps to remove a significant number of instructions.
883 // To check that, run additional analysis on the loop.
884 UnrollAnalyzer UA(L, TripCount, *SE, TTI, AbsoluteThreshold);
885 if (UA.analyzeLoop() &&
886 canUnrollCompletely(L, Threshold, AbsoluteThreshold,
887 UA.UnrolledLoopSize,
888 UA.NumberOfOptimizedInstructions,
889 PercentOfOptimizedForCompleteUnroll)) {
890 Unrolling = Full;
891 }
Dan Gohman2980d9d2007-05-11 20:53:41 +0000892 }
Eli Benderskyff903242014-06-16 23:53:02 +0000893 } else if (TripCount && Count < TripCount) {
894 Unrolling = Partial;
895 } else {
896 Unrolling = Runtime;
897 }
898
899 // Reduce count based on the type of unrolling and the threshold values.
900 unsigned OriginalCount = Count;
901 bool AllowRuntime = UserRuntime ? CurrentRuntime : UP.Runtime;
Kevin Qin715b01e2015-03-09 06:14:18 +0000902 if (HasRuntimeUnrollDisablePragma(L)) {
903 AllowRuntime = false;
904 }
Eli Benderskyff903242014-06-16 23:53:02 +0000905 if (Unrolling == Partial) {
906 bool AllowPartial = UserAllowPartial ? CurrentAllowPartial : UP.Partial;
907 if (!AllowPartial && !CountSetExplicitly) {
908 DEBUG(dbgs() << " will not try to unroll partially because "
909 << "-unroll-allow-partial not given\n");
910 return false;
911 }
912 if (PartialThreshold != NoThreshold && UnrolledSize > PartialThreshold) {
913 // Reduce unroll count to be modulo of TripCount for partial unrolling.
Hal Finkel38dd5902015-01-10 00:30:55 +0000914 Count = (std::max(PartialThreshold, 3u)-2) / (LoopSize-2);
Eli Benderskyff903242014-06-16 23:53:02 +0000915 while (Count != 0 && TripCount % Count != 0)
916 Count--;
917 }
918 } else if (Unrolling == Runtime) {
919 if (!AllowRuntime && !CountSetExplicitly) {
920 DEBUG(dbgs() << " will not try to unroll loop with runtime trip count "
921 << "-unroll-runtime not given\n");
922 return false;
923 }
924 // Reduce unroll count to be the largest power-of-two factor of
925 // the original count which satisfies the threshold limit.
926 while (Count != 0 && UnrolledSize > PartialThreshold) {
927 Count >>= 1;
Hal Finkel38dd5902015-01-10 00:30:55 +0000928 UnrolledSize = (LoopSize-2) * Count + 2;
Eli Benderskyff903242014-06-16 23:53:02 +0000929 }
930 if (Count > UP.MaxCount)
931 Count = UP.MaxCount;
932 DEBUG(dbgs() << " partially unrolling with count: " << Count << "\n");
933 }
934
935 if (HasPragma) {
Mark Heffernan9e112442014-07-23 20:05:44 +0000936 if (PragmaCount != 0)
937 // If loop has an unroll count pragma mark loop as unrolled to prevent
938 // unrolling beyond that requested by the pragma.
939 SetLoopAlreadyUnrolled(L);
Mark Heffernan053a6862014-07-18 21:04:33 +0000940
Eli Benderskyff903242014-06-16 23:53:02 +0000941 // Emit optimization remarks if we are unable to unroll the loop
942 // as directed by a pragma.
943 DebugLoc LoopLoc = L->getStartLoc();
944 Function *F = Header->getParent();
945 LLVMContext &Ctx = F->getContext();
Mark Heffernane6b4ba12014-07-23 17:31:37 +0000946 if (PragmaFullUnroll && PragmaCount == 0) {
Eli Benderskyff903242014-06-16 23:53:02 +0000947 if (TripCount && Count != TripCount) {
948 emitOptimizationRemarkMissed(
949 Ctx, DEBUG_TYPE, *F, LoopLoc,
Mark Heffernane6b4ba12014-07-23 17:31:37 +0000950 "Unable to fully unroll loop as directed by unroll(full) pragma "
Eli Benderskyff903242014-06-16 23:53:02 +0000951 "because unrolled size is too large.");
952 } else if (!TripCount) {
953 emitOptimizationRemarkMissed(
954 Ctx, DEBUG_TYPE, *F, LoopLoc,
Mark Heffernane6b4ba12014-07-23 17:31:37 +0000955 "Unable to fully unroll loop as directed by unroll(full) pragma "
Eli Benderskyff903242014-06-16 23:53:02 +0000956 "because loop has a runtime trip count.");
957 }
958 } else if (PragmaCount > 0 && Count != OriginalCount) {
959 emitOptimizationRemarkMissed(
960 Ctx, DEBUG_TYPE, *F, LoopLoc,
961 "Unable to unroll loop the number of times directed by "
962 "unroll_count pragma because unrolled size is too large.");
963 }
964 }
965
966 if (Unrolling != Full && Count < 2) {
967 // Partial unrolling by 1 is a nop. For full unrolling, a factor
968 // of 1 makes sense because loop control can be eliminated.
969 return false;
Dan Gohman2980d9d2007-05-11 20:53:41 +0000970 }
971
Dan Gohman3dc2d922008-05-14 00:24:14 +0000972 // Unroll the loop.
Sanjoy Dase178f462015-04-14 03:20:38 +0000973 if (!UnrollLoop(L, Count, TripCount, AllowRuntime, UP.AllowExpensiveTripCount,
974 TripMultiple, LI, this, &LPM, &AC))
Dan Gohman3dc2d922008-05-14 00:24:14 +0000975 return false;
Dan Gohman2980d9d2007-05-11 20:53:41 +0000976
Chris Lattner946b2552004-04-18 05:20:17 +0000977 return true;
978}