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Dan Gohman0a40ad92009-04-16 03:18:22 +00001//===- LoopStrengthReduce.cpp - Strength Reduce IVs in Loops --------------===//
Misha Brukmanb1c93172005-04-21 23:48:37 +00002//
Nate Begemanb18121e2004-10-18 21:08:22 +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//
Nate Begemanb18121e2004-10-18 21:08:22 +00008//===----------------------------------------------------------------------===//
9//
Dan Gohman97f70ad2009-05-19 20:37:36 +000010// This transformation analyzes and transforms the induction variables (and
11// computations derived from them) into forms suitable for efficient execution
12// on the target.
13//
Nate Begemanb18121e2004-10-18 21:08:22 +000014// This pass performs a strength reduction on array references inside loops that
Dan Gohman97f70ad2009-05-19 20:37:36 +000015// have as one or more of their components the loop induction variable, it
16// rewrites expressions to take advantage of scaled-index addressing modes
17// available on the target, and it performs a variety of other optimizations
18// related to loop induction variables.
Nate Begemanb18121e2004-10-18 21:08:22 +000019//
Dan Gohman45774ce2010-02-12 10:34:29 +000020// Terminology note: this code has a lot of handling for "post-increment" or
21// "post-inc" users. This is not talking about post-increment addressing modes;
22// it is instead talking about code like this:
23//
24// %i = phi [ 0, %entry ], [ %i.next, %latch ]
25// ...
26// %i.next = add %i, 1
27// %c = icmp eq %i.next, %n
28//
29// The SCEV for %i is {0,+,1}<%L>. The SCEV for %i.next is {1,+,1}<%L>, however
30// it's useful to think about these as the same register, with some uses using
31// the value of the register before the add and some using // it after. In this
32// example, the icmp is a post-increment user, since it uses %i.next, which is
33// the value of the induction variable after the increment. The other common
34// case of post-increment users is users outside the loop.
35//
36// TODO: More sophistication in the way Formulae are generated and filtered.
37//
38// TODO: Handle multiple loops at a time.
39//
Chandler Carruth26c59fa2013-01-07 14:41:08 +000040// TODO: Should the addressing mode BaseGV be changed to a ConstantExpr instead
41// of a GlobalValue?
Dan Gohman45774ce2010-02-12 10:34:29 +000042//
43// TODO: When truncation is free, truncate ICmp users' operands to make it a
44// smaller encoding (on x86 at least).
45//
46// TODO: When a negated register is used by an add (such as in a list of
47// multiple base registers, or as the increment expression in an addrec),
48// we may not actually need both reg and (-1 * reg) in registers; the
49// negation can be implemented by using a sub instead of an add. The
50// lack of support for taking this into consideration when making
51// register pressure decisions is partly worked around by the "Special"
52// use kind.
53//
Nate Begemanb18121e2004-10-18 21:08:22 +000054//===----------------------------------------------------------------------===//
55
Chandler Carruthed0881b2012-12-03 16:50:05 +000056#include "llvm/Transforms/Scalar.h"
57#include "llvm/ADT/DenseSet.h"
Benjamin Kramer62fb0cf2014-03-15 17:17:48 +000058#include "llvm/ADT/Hashing.h"
Chandler Carruth8a8cd2b2014-01-07 11:48:04 +000059#include "llvm/ADT/STLExtras.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000060#include "llvm/ADT/SetVector.h"
61#include "llvm/ADT/SmallBitVector.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000062#include "llvm/Analysis/IVUsers.h"
Devang Patelb0743b52007-03-06 21:14:09 +000063#include "llvm/Analysis/LoopPass.h"
Nate Begemane68bcd12005-07-30 00:15:07 +000064#include "llvm/Analysis/ScalarEvolutionExpander.h"
Chandler Carruth26c59fa2013-01-07 14:41:08 +000065#include "llvm/Analysis/TargetTransformInfo.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000066#include "llvm/IR/Constants.h"
67#include "llvm/IR/DerivedTypes.h"
Chandler Carruth5ad5f152014-01-13 09:26:24 +000068#include "llvm/IR/Dominators.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000069#include "llvm/IR/Instructions.h"
70#include "llvm/IR/IntrinsicInst.h"
Chandler Carruth4220e9c2014-03-04 11:17:44 +000071#include "llvm/IR/ValueHandle.h"
Andrew Trick58124392011-09-27 00:44:14 +000072#include "llvm/Support/CommandLine.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000073#include "llvm/Support/Debug.h"
Daniel Dunbar6115b392009-07-26 09:48:23 +000074#include "llvm/Support/raw_ostream.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000075#include "llvm/Transforms/Utils/BasicBlockUtils.h"
76#include "llvm/Transforms/Utils/Local.h"
Jeff Cohenc5009912005-07-30 18:22:27 +000077#include <algorithm>
Nate Begemanb18121e2004-10-18 21:08:22 +000078using namespace llvm;
79
Chandler Carruth964daaa2014-04-22 02:55:47 +000080#define DEBUG_TYPE "loop-reduce"
81
Andrew Trick19f80c12012-04-18 04:00:10 +000082/// MaxIVUsers is an arbitrary threshold that provides an early opportunitiy for
83/// bail out. This threshold is far beyond the number of users that LSR can
84/// conceivably solve, so it should not affect generated code, but catches the
85/// worst cases before LSR burns too much compile time and stack space.
86static const unsigned MaxIVUsers = 200;
87
Andrew Trickecbe22b2011-10-11 02:30:45 +000088// Temporary flag to cleanup congruent phis after LSR phi expansion.
89// It's currently disabled until we can determine whether it's truly useful or
90// not. The flag should be removed after the v3.0 release.
Andrew Trick06f6c052012-01-07 07:08:17 +000091// This is now needed for ivchains.
Benjamin Kramer7ba71be2011-11-26 23:01:57 +000092static cl::opt<bool> EnablePhiElim(
Andrew Trick06f6c052012-01-07 07:08:17 +000093 "enable-lsr-phielim", cl::Hidden, cl::init(true),
94 cl::desc("Enable LSR phi elimination"));
Andrew Trick58124392011-09-27 00:44:14 +000095
Andrew Trick248d4102012-01-09 21:18:52 +000096#ifndef NDEBUG
97// Stress test IV chain generation.
98static cl::opt<bool> StressIVChain(
99 "stress-ivchain", cl::Hidden, cl::init(false),
100 cl::desc("Stress test LSR IV chains"));
101#else
102static bool StressIVChain = false;
103#endif
104
Dan Gohman45774ce2010-02-12 10:34:29 +0000105namespace {
Nate Begemanb18121e2004-10-18 21:08:22 +0000106
Dan Gohman45774ce2010-02-12 10:34:29 +0000107/// RegSortData - This class holds data which is used to order reuse candidates.
108class RegSortData {
109public:
110 /// UsedByIndices - This represents the set of LSRUse indices which reference
111 /// a particular register.
112 SmallBitVector UsedByIndices;
113
114 RegSortData() {}
115
116 void print(raw_ostream &OS) const;
117 void dump() const;
118};
119
120}
121
122void RegSortData::print(raw_ostream &OS) const {
123 OS << "[NumUses=" << UsedByIndices.count() << ']';
124}
125
Manman Ren49d684e2012-09-12 05:06:18 +0000126#if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
Dan Gohman45774ce2010-02-12 10:34:29 +0000127void RegSortData::dump() const {
128 print(errs()); errs() << '\n';
129}
Manman Renc3366cc2012-09-06 19:55:56 +0000130#endif
Dan Gohman2a12ae72009-02-20 04:17:46 +0000131
Chris Lattner79a42ac2006-12-19 21:40:18 +0000132namespace {
Dale Johannesene3a02be2007-03-20 00:47:50 +0000133
Dan Gohman45774ce2010-02-12 10:34:29 +0000134/// RegUseTracker - Map register candidates to information about how they are
135/// used.
136class RegUseTracker {
137 typedef DenseMap<const SCEV *, RegSortData> RegUsesTy;
Dale Johannesene3a02be2007-03-20 00:47:50 +0000138
Dan Gohman248c41d2010-05-18 22:33:00 +0000139 RegUsesTy RegUsesMap;
Dan Gohman45774ce2010-02-12 10:34:29 +0000140 SmallVector<const SCEV *, 16> RegSequence;
Evan Cheng3df447d2006-03-16 21:53:05 +0000141
Dan Gohman45774ce2010-02-12 10:34:29 +0000142public:
143 void CountRegister(const SCEV *Reg, size_t LUIdx);
Dan Gohman4cf99b52010-05-18 23:42:37 +0000144 void DropRegister(const SCEV *Reg, size_t LUIdx);
Dan Gohmana7b68d62010-10-07 23:33:43 +0000145 void SwapAndDropUse(size_t LUIdx, size_t LastLUIdx);
Dan Gohman51ad99d2010-01-21 02:09:26 +0000146
Dan Gohman45774ce2010-02-12 10:34:29 +0000147 bool isRegUsedByUsesOtherThan(const SCEV *Reg, size_t LUIdx) const;
Dan Gohman51ad99d2010-01-21 02:09:26 +0000148
Dan Gohman45774ce2010-02-12 10:34:29 +0000149 const SmallBitVector &getUsedByIndices(const SCEV *Reg) const;
Dan Gohman51ad99d2010-01-21 02:09:26 +0000150
Dan Gohman45774ce2010-02-12 10:34:29 +0000151 void clear();
Dan Gohman51ad99d2010-01-21 02:09:26 +0000152
Dan Gohman45774ce2010-02-12 10:34:29 +0000153 typedef SmallVectorImpl<const SCEV *>::iterator iterator;
154 typedef SmallVectorImpl<const SCEV *>::const_iterator const_iterator;
155 iterator begin() { return RegSequence.begin(); }
156 iterator end() { return RegSequence.end(); }
157 const_iterator begin() const { return RegSequence.begin(); }
158 const_iterator end() const { return RegSequence.end(); }
159};
Dan Gohman51ad99d2010-01-21 02:09:26 +0000160
Dan Gohman51ad99d2010-01-21 02:09:26 +0000161}
162
Dan Gohman45774ce2010-02-12 10:34:29 +0000163void
164RegUseTracker::CountRegister(const SCEV *Reg, size_t LUIdx) {
165 std::pair<RegUsesTy::iterator, bool> Pair =
Dan Gohman248c41d2010-05-18 22:33:00 +0000166 RegUsesMap.insert(std::make_pair(Reg, RegSortData()));
Dan Gohman45774ce2010-02-12 10:34:29 +0000167 RegSortData &RSD = Pair.first->second;
168 if (Pair.second)
169 RegSequence.push_back(Reg);
170 RSD.UsedByIndices.resize(std::max(RSD.UsedByIndices.size(), LUIdx + 1));
171 RSD.UsedByIndices.set(LUIdx);
Dan Gohman51ad99d2010-01-21 02:09:26 +0000172}
173
Dan Gohman4cf99b52010-05-18 23:42:37 +0000174void
175RegUseTracker::DropRegister(const SCEV *Reg, size_t LUIdx) {
176 RegUsesTy::iterator It = RegUsesMap.find(Reg);
177 assert(It != RegUsesMap.end());
178 RegSortData &RSD = It->second;
179 assert(RSD.UsedByIndices.size() > LUIdx);
180 RSD.UsedByIndices.reset(LUIdx);
181}
182
Dan Gohman20fab452010-05-19 23:43:12 +0000183void
Dan Gohmana7b68d62010-10-07 23:33:43 +0000184RegUseTracker::SwapAndDropUse(size_t LUIdx, size_t LastLUIdx) {
185 assert(LUIdx <= LastLUIdx);
186
187 // Update RegUses. The data structure is not optimized for this purpose;
188 // we must iterate through it and update each of the bit vectors.
Dan Gohman20fab452010-05-19 23:43:12 +0000189 for (RegUsesTy::iterator I = RegUsesMap.begin(), E = RegUsesMap.end();
Dan Gohmana7b68d62010-10-07 23:33:43 +0000190 I != E; ++I) {
191 SmallBitVector &UsedByIndices = I->second.UsedByIndices;
192 if (LUIdx < UsedByIndices.size())
193 UsedByIndices[LUIdx] =
194 LastLUIdx < UsedByIndices.size() ? UsedByIndices[LastLUIdx] : 0;
195 UsedByIndices.resize(std::min(UsedByIndices.size(), LastLUIdx));
196 }
Dan Gohman20fab452010-05-19 23:43:12 +0000197}
198
Dan Gohman45774ce2010-02-12 10:34:29 +0000199bool
200RegUseTracker::isRegUsedByUsesOtherThan(const SCEV *Reg, size_t LUIdx) const {
Dan Gohman4f13bbf2010-08-29 15:18:49 +0000201 RegUsesTy::const_iterator I = RegUsesMap.find(Reg);
202 if (I == RegUsesMap.end())
203 return false;
204 const SmallBitVector &UsedByIndices = I->second.UsedByIndices;
Dan Gohman45774ce2010-02-12 10:34:29 +0000205 int i = UsedByIndices.find_first();
206 if (i == -1) return false;
207 if ((size_t)i != LUIdx) return true;
208 return UsedByIndices.find_next(i) != -1;
209}
Dan Gohman51ad99d2010-01-21 02:09:26 +0000210
Dan Gohman45774ce2010-02-12 10:34:29 +0000211const SmallBitVector &RegUseTracker::getUsedByIndices(const SCEV *Reg) const {
Dan Gohman248c41d2010-05-18 22:33:00 +0000212 RegUsesTy::const_iterator I = RegUsesMap.find(Reg);
213 assert(I != RegUsesMap.end() && "Unknown register!");
Dan Gohman45774ce2010-02-12 10:34:29 +0000214 return I->second.UsedByIndices;
215}
Dan Gohman51ad99d2010-01-21 02:09:26 +0000216
Dan Gohman45774ce2010-02-12 10:34:29 +0000217void RegUseTracker::clear() {
Dan Gohman248c41d2010-05-18 22:33:00 +0000218 RegUsesMap.clear();
Dan Gohman45774ce2010-02-12 10:34:29 +0000219 RegSequence.clear();
220}
Dan Gohman51ad99d2010-01-21 02:09:26 +0000221
Dan Gohman45774ce2010-02-12 10:34:29 +0000222namespace {
223
224/// Formula - This class holds information that describes a formula for
225/// computing satisfying a use. It may include broken-out immediates and scaled
226/// registers.
227struct Formula {
Chandler Carruth6e479322013-01-07 15:04:40 +0000228 /// Global base address used for complex addressing.
229 GlobalValue *BaseGV;
230
231 /// Base offset for complex addressing.
232 int64_t BaseOffset;
233
234 /// Whether any complex addressing has a base register.
235 bool HasBaseReg;
236
237 /// The scale of any complex addressing.
238 int64_t Scale;
Dan Gohman45774ce2010-02-12 10:34:29 +0000239
240 /// BaseRegs - The list of "base" registers for this use. When this is
Quentin Colombetc88baa5c2014-05-20 19:25:04 +0000241 /// non-empty. The canonical representation of a formula is
242 /// 1. BaseRegs.size > 1 implies ScaledReg != NULL and
243 /// 2. ScaledReg != NULL implies Scale != 1 || !BaseRegs.empty().
244 /// #1 enforces that the scaled register is always used when at least two
245 /// registers are needed by the formula: e.g., reg1 + reg2 is reg1 + 1 * reg2.
246 /// #2 enforces that 1 * reg is reg.
247 /// This invariant can be temporarly broken while building a formula.
248 /// However, every formula inserted into the LSRInstance must be in canonical
249 /// form.
Preston Gurd25c3b6a2013-02-01 20:41:27 +0000250 SmallVector<const SCEV *, 4> BaseRegs;
Dan Gohman45774ce2010-02-12 10:34:29 +0000251
252 /// ScaledReg - The 'scaled' register for this use. This should be non-null
Chandler Carruth6e479322013-01-07 15:04:40 +0000253 /// when Scale is not zero.
Dan Gohman45774ce2010-02-12 10:34:29 +0000254 const SCEV *ScaledReg;
255
Dan Gohman6136e942011-05-03 00:46:49 +0000256 /// UnfoldedOffset - An additional constant offset which added near the
257 /// use. This requires a temporary register, but the offset itself can
258 /// live in an add immediate field rather than a register.
259 int64_t UnfoldedOffset;
260
Chandler Carruth6e479322013-01-07 15:04:40 +0000261 Formula()
Craig Topperf40110f2014-04-25 05:29:35 +0000262 : BaseGV(nullptr), BaseOffset(0), HasBaseReg(false), Scale(0),
263 ScaledReg(nullptr), UnfoldedOffset(0) {}
Dan Gohman45774ce2010-02-12 10:34:29 +0000264
Dan Gohman20d9ce22010-11-17 21:41:58 +0000265 void InitialMatch(const SCEV *S, Loop *L, ScalarEvolution &SE);
Dan Gohman45774ce2010-02-12 10:34:29 +0000266
Quentin Colombetc88baa5c2014-05-20 19:25:04 +0000267 bool isCanonical() const;
268
269 void Canonicalize();
270
271 bool Unscale();
272
Adam Nemetdeab6f92014-04-29 18:25:28 +0000273 size_t getNumRegs() const;
Chris Lattner229907c2011-07-18 04:54:35 +0000274 Type *getType() const;
Dan Gohman45774ce2010-02-12 10:34:29 +0000275
Dan Gohman80a96082010-05-20 15:17:54 +0000276 void DeleteBaseReg(const SCEV *&S);
277
Dan Gohman45774ce2010-02-12 10:34:29 +0000278 bool referencesReg(const SCEV *S) const;
279 bool hasRegsUsedByUsesOtherThan(size_t LUIdx,
280 const RegUseTracker &RegUses) const;
281
282 void print(raw_ostream &OS) const;
283 void dump() const;
284};
285
286}
287
Dan Gohman8b0a4192010-03-01 17:49:51 +0000288/// DoInitialMatch - Recursion helper for InitialMatch.
Dan Gohman45774ce2010-02-12 10:34:29 +0000289static void DoInitialMatch(const SCEV *S, Loop *L,
290 SmallVectorImpl<const SCEV *> &Good,
291 SmallVectorImpl<const SCEV *> &Bad,
Dan Gohman20d9ce22010-11-17 21:41:58 +0000292 ScalarEvolution &SE) {
Dan Gohman45774ce2010-02-12 10:34:29 +0000293 // Collect expressions which properly dominate the loop header.
Dan Gohman20d9ce22010-11-17 21:41:58 +0000294 if (SE.properlyDominates(S, L->getHeader())) {
Dan Gohman45774ce2010-02-12 10:34:29 +0000295 Good.push_back(S);
296 return;
Dan Gohman51ad99d2010-01-21 02:09:26 +0000297 }
Dan Gohman45774ce2010-02-12 10:34:29 +0000298
299 // Look at add operands.
300 if (const SCEVAddExpr *Add = dyn_cast<SCEVAddExpr>(S)) {
301 for (SCEVAddExpr::op_iterator I = Add->op_begin(), E = Add->op_end();
302 I != E; ++I)
Dan Gohman20d9ce22010-11-17 21:41:58 +0000303 DoInitialMatch(*I, L, Good, Bad, SE);
Dan Gohman45774ce2010-02-12 10:34:29 +0000304 return;
305 }
306
307 // Look at addrec operands.
308 if (const SCEVAddRecExpr *AR = dyn_cast<SCEVAddRecExpr>(S))
309 if (!AR->getStart()->isZero()) {
Dan Gohman20d9ce22010-11-17 21:41:58 +0000310 DoInitialMatch(AR->getStart(), L, Good, Bad, SE);
Dan Gohman1d2ded72010-05-03 22:09:21 +0000311 DoInitialMatch(SE.getAddRecExpr(SE.getConstant(AR->getType(), 0),
Dan Gohman45774ce2010-02-12 10:34:29 +0000312 AR->getStepRecurrence(SE),
Andrew Trick8b55b732011-03-14 16:50:06 +0000313 // FIXME: AR->getNoWrapFlags()
314 AR->getLoop(), SCEV::FlagAnyWrap),
Dan Gohman20d9ce22010-11-17 21:41:58 +0000315 L, Good, Bad, SE);
Dan Gohman45774ce2010-02-12 10:34:29 +0000316 return;
317 }
318
319 // Handle a multiplication by -1 (negation) if it didn't fold.
320 if (const SCEVMulExpr *Mul = dyn_cast<SCEVMulExpr>(S))
321 if (Mul->getOperand(0)->isAllOnesValue()) {
322 SmallVector<const SCEV *, 4> Ops(Mul->op_begin()+1, Mul->op_end());
323 const SCEV *NewMul = SE.getMulExpr(Ops);
324
325 SmallVector<const SCEV *, 4> MyGood;
326 SmallVector<const SCEV *, 4> MyBad;
Dan Gohman20d9ce22010-11-17 21:41:58 +0000327 DoInitialMatch(NewMul, L, MyGood, MyBad, SE);
Dan Gohman45774ce2010-02-12 10:34:29 +0000328 const SCEV *NegOne = SE.getSCEV(ConstantInt::getAllOnesValue(
329 SE.getEffectiveSCEVType(NewMul->getType())));
330 for (SmallVectorImpl<const SCEV *>::const_iterator I = MyGood.begin(),
331 E = MyGood.end(); I != E; ++I)
332 Good.push_back(SE.getMulExpr(NegOne, *I));
333 for (SmallVectorImpl<const SCEV *>::const_iterator I = MyBad.begin(),
334 E = MyBad.end(); I != E; ++I)
335 Bad.push_back(SE.getMulExpr(NegOne, *I));
336 return;
337 }
338
339 // Ok, we can't do anything interesting. Just stuff the whole thing into a
340 // register and hope for the best.
341 Bad.push_back(S);
342}
343
344/// InitialMatch - Incorporate loop-variant parts of S into this Formula,
345/// attempting to keep all loop-invariant and loop-computable values in a
346/// single base register.
Dan Gohman20d9ce22010-11-17 21:41:58 +0000347void Formula::InitialMatch(const SCEV *S, Loop *L, ScalarEvolution &SE) {
Dan Gohman45774ce2010-02-12 10:34:29 +0000348 SmallVector<const SCEV *, 4> Good;
349 SmallVector<const SCEV *, 4> Bad;
Dan Gohman20d9ce22010-11-17 21:41:58 +0000350 DoInitialMatch(S, L, Good, Bad, SE);
Dan Gohman45774ce2010-02-12 10:34:29 +0000351 if (!Good.empty()) {
Dan Gohman9b5d0bb72010-04-08 23:36:27 +0000352 const SCEV *Sum = SE.getAddExpr(Good);
353 if (!Sum->isZero())
354 BaseRegs.push_back(Sum);
Chandler Carruth6e479322013-01-07 15:04:40 +0000355 HasBaseReg = true;
Dan Gohman45774ce2010-02-12 10:34:29 +0000356 }
357 if (!Bad.empty()) {
Dan Gohman9b5d0bb72010-04-08 23:36:27 +0000358 const SCEV *Sum = SE.getAddExpr(Bad);
359 if (!Sum->isZero())
360 BaseRegs.push_back(Sum);
Chandler Carruth6e479322013-01-07 15:04:40 +0000361 HasBaseReg = true;
Dan Gohman45774ce2010-02-12 10:34:29 +0000362 }
Quentin Colombetc88baa5c2014-05-20 19:25:04 +0000363 Canonicalize();
364}
365
366/// \brief Check whether or not this formula statisfies the canonical
367/// representation.
368/// \see Formula::BaseRegs.
369bool Formula::isCanonical() const {
370 if (ScaledReg)
371 return Scale != 1 || !BaseRegs.empty();
372 return BaseRegs.size() <= 1;
373}
374
375/// \brief Helper method to morph a formula into its canonical representation.
376/// \see Formula::BaseRegs.
377/// Every formula having more than one base register, must use the ScaledReg
378/// field. Otherwise, we would have to do special cases everywhere in LSR
379/// to treat reg1 + reg2 + ... the same way as reg1 + 1*reg2 + ...
380/// On the other hand, 1*reg should be canonicalized into reg.
381void Formula::Canonicalize() {
382 if (isCanonical())
383 return;
384 // So far we did not need this case. This is easy to implement but it is
385 // useless to maintain dead code. Beside it could hurt compile time.
386 assert(!BaseRegs.empty() && "1*reg => reg, should not be needed.");
387 // Keep the invariant sum in BaseRegs and one of the variant sum in ScaledReg.
388 ScaledReg = BaseRegs.back();
389 BaseRegs.pop_back();
390 Scale = 1;
391 size_t BaseRegsSize = BaseRegs.size();
392 size_t Try = 0;
393 // If ScaledReg is an invariant, try to find a variant expression.
394 while (Try < BaseRegsSize && !isa<SCEVAddRecExpr>(ScaledReg))
395 std::swap(ScaledReg, BaseRegs[Try++]);
396}
397
398/// \brief Get rid of the scale in the formula.
399/// In other words, this method morphes reg1 + 1*reg2 into reg1 + reg2.
400/// \return true if it was possible to get rid of the scale, false otherwise.
401/// \note After this operation the formula may not be in the canonical form.
402bool Formula::Unscale() {
403 if (Scale != 1)
404 return false;
405 Scale = 0;
406 BaseRegs.push_back(ScaledReg);
407 ScaledReg = nullptr;
408 return true;
Dan Gohman45774ce2010-02-12 10:34:29 +0000409}
410
411/// getNumRegs - Return the total number of register operands used by this
412/// formula. This does not include register uses implied by non-constant
413/// addrec strides.
Adam Nemetdeab6f92014-04-29 18:25:28 +0000414size_t Formula::getNumRegs() const {
Dan Gohman45774ce2010-02-12 10:34:29 +0000415 return !!ScaledReg + BaseRegs.size();
416}
417
418/// getType - Return the type of this formula, if it has one, or null
419/// otherwise. This type is meaningless except for the bit size.
Chris Lattner229907c2011-07-18 04:54:35 +0000420Type *Formula::getType() const {
Dan Gohman45774ce2010-02-12 10:34:29 +0000421 return !BaseRegs.empty() ? BaseRegs.front()->getType() :
422 ScaledReg ? ScaledReg->getType() :
Chandler Carruth6e479322013-01-07 15:04:40 +0000423 BaseGV ? BaseGV->getType() :
Craig Topperf40110f2014-04-25 05:29:35 +0000424 nullptr;
Dan Gohman45774ce2010-02-12 10:34:29 +0000425}
426
Dan Gohman80a96082010-05-20 15:17:54 +0000427/// DeleteBaseReg - Delete the given base reg from the BaseRegs list.
428void Formula::DeleteBaseReg(const SCEV *&S) {
429 if (&S != &BaseRegs.back())
430 std::swap(S, BaseRegs.back());
431 BaseRegs.pop_back();
432}
433
Dan Gohman45774ce2010-02-12 10:34:29 +0000434/// referencesReg - Test if this formula references the given register.
435bool Formula::referencesReg(const SCEV *S) const {
436 return S == ScaledReg ||
437 std::find(BaseRegs.begin(), BaseRegs.end(), S) != BaseRegs.end();
438}
439
440/// hasRegsUsedByUsesOtherThan - Test whether this formula uses registers
441/// which are used by uses other than the use with the given index.
442bool Formula::hasRegsUsedByUsesOtherThan(size_t LUIdx,
443 const RegUseTracker &RegUses) const {
444 if (ScaledReg)
445 if (RegUses.isRegUsedByUsesOtherThan(ScaledReg, LUIdx))
446 return true;
447 for (SmallVectorImpl<const SCEV *>::const_iterator I = BaseRegs.begin(),
448 E = BaseRegs.end(); I != E; ++I)
449 if (RegUses.isRegUsedByUsesOtherThan(*I, LUIdx))
450 return true;
451 return false;
452}
453
454void Formula::print(raw_ostream &OS) const {
455 bool First = true;
Chandler Carruth6e479322013-01-07 15:04:40 +0000456 if (BaseGV) {
Dan Gohman45774ce2010-02-12 10:34:29 +0000457 if (!First) OS << " + "; else First = false;
Chandler Carruthd48cdbf2014-01-09 02:29:41 +0000458 BaseGV->printAsOperand(OS, /*PrintType=*/false);
Dan Gohman45774ce2010-02-12 10:34:29 +0000459 }
Chandler Carruth6e479322013-01-07 15:04:40 +0000460 if (BaseOffset != 0) {
Dan Gohman45774ce2010-02-12 10:34:29 +0000461 if (!First) OS << " + "; else First = false;
Chandler Carruth6e479322013-01-07 15:04:40 +0000462 OS << BaseOffset;
Dan Gohman45774ce2010-02-12 10:34:29 +0000463 }
464 for (SmallVectorImpl<const SCEV *>::const_iterator I = BaseRegs.begin(),
465 E = BaseRegs.end(); I != E; ++I) {
466 if (!First) OS << " + "; else First = false;
467 OS << "reg(" << **I << ')';
468 }
Chandler Carruth6e479322013-01-07 15:04:40 +0000469 if (HasBaseReg && BaseRegs.empty()) {
Dan Gohman06ab08f2010-05-18 22:35:55 +0000470 if (!First) OS << " + "; else First = false;
471 OS << "**error: HasBaseReg**";
Chandler Carruth6e479322013-01-07 15:04:40 +0000472 } else if (!HasBaseReg && !BaseRegs.empty()) {
Dan Gohman06ab08f2010-05-18 22:35:55 +0000473 if (!First) OS << " + "; else First = false;
474 OS << "**error: !HasBaseReg**";
475 }
Chandler Carruth6e479322013-01-07 15:04:40 +0000476 if (Scale != 0) {
Dan Gohman45774ce2010-02-12 10:34:29 +0000477 if (!First) OS << " + "; else First = false;
Chandler Carruth6e479322013-01-07 15:04:40 +0000478 OS << Scale << "*reg(";
Dan Gohman45774ce2010-02-12 10:34:29 +0000479 if (ScaledReg)
480 OS << *ScaledReg;
481 else
482 OS << "<unknown>";
483 OS << ')';
484 }
Dan Gohman6136e942011-05-03 00:46:49 +0000485 if (UnfoldedOffset != 0) {
Arnaud A. de Grandmaison75c9e6d2014-03-15 22:13:15 +0000486 if (!First) OS << " + ";
Dan Gohman6136e942011-05-03 00:46:49 +0000487 OS << "imm(" << UnfoldedOffset << ')';
488 }
Dan Gohman45774ce2010-02-12 10:34:29 +0000489}
490
Manman Ren49d684e2012-09-12 05:06:18 +0000491#if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
Dan Gohman45774ce2010-02-12 10:34:29 +0000492void Formula::dump() const {
493 print(errs()); errs() << '\n';
494}
Manman Renc3366cc2012-09-06 19:55:56 +0000495#endif
Dan Gohman45774ce2010-02-12 10:34:29 +0000496
Dan Gohman85af2562010-02-19 19:32:49 +0000497/// isAddRecSExtable - Return true if the given addrec can be sign-extended
498/// without changing its value.
499static bool isAddRecSExtable(const SCEVAddRecExpr *AR, ScalarEvolution &SE) {
Chris Lattner229907c2011-07-18 04:54:35 +0000500 Type *WideTy =
Dan Gohmanab5fb7f2010-05-20 19:44:23 +0000501 IntegerType::get(SE.getContext(), SE.getTypeSizeInBits(AR->getType()) + 1);
Dan Gohman85af2562010-02-19 19:32:49 +0000502 return isa<SCEVAddRecExpr>(SE.getSignExtendExpr(AR, WideTy));
503}
504
505/// isAddSExtable - Return true if the given add can be sign-extended
506/// without changing its value.
507static bool isAddSExtable(const SCEVAddExpr *A, ScalarEvolution &SE) {
Chris Lattner229907c2011-07-18 04:54:35 +0000508 Type *WideTy =
Dan Gohmanab5fb7f2010-05-20 19:44:23 +0000509 IntegerType::get(SE.getContext(), SE.getTypeSizeInBits(A->getType()) + 1);
Dan Gohman85af2562010-02-19 19:32:49 +0000510 return isa<SCEVAddExpr>(SE.getSignExtendExpr(A, WideTy));
511}
512
Dan Gohmanab542222010-06-24 16:45:11 +0000513/// isMulSExtable - Return true if the given mul can be sign-extended
Dan Gohman85af2562010-02-19 19:32:49 +0000514/// without changing its value.
Dan Gohmanab542222010-06-24 16:45:11 +0000515static bool isMulSExtable(const SCEVMulExpr *M, ScalarEvolution &SE) {
Chris Lattner229907c2011-07-18 04:54:35 +0000516 Type *WideTy =
Dan Gohmanab542222010-06-24 16:45:11 +0000517 IntegerType::get(SE.getContext(),
518 SE.getTypeSizeInBits(M->getType()) * M->getNumOperands());
519 return isa<SCEVMulExpr>(SE.getSignExtendExpr(M, WideTy));
Dan Gohman85af2562010-02-19 19:32:49 +0000520}
521
Dan Gohman4eebb942010-02-19 19:35:48 +0000522/// getExactSDiv - Return an expression for LHS /s RHS, if it can be determined
523/// and if the remainder is known to be zero, or null otherwise. If
524/// IgnoreSignificantBits is true, expressions like (X * Y) /s Y are simplified
525/// to Y, ignoring that the multiplication may overflow, which is useful when
526/// the result will be used in a context where the most significant bits are
527/// ignored.
528static const SCEV *getExactSDiv(const SCEV *LHS, const SCEV *RHS,
529 ScalarEvolution &SE,
530 bool IgnoreSignificantBits = false) {
Dan Gohman45774ce2010-02-12 10:34:29 +0000531 // Handle the trivial case, which works for any SCEV type.
532 if (LHS == RHS)
Dan Gohman1d2ded72010-05-03 22:09:21 +0000533 return SE.getConstant(LHS->getType(), 1);
Dan Gohman45774ce2010-02-12 10:34:29 +0000534
Dan Gohman47ddf762010-06-24 16:51:25 +0000535 // Handle a few RHS special cases.
536 const SCEVConstant *RC = dyn_cast<SCEVConstant>(RHS);
537 if (RC) {
538 const APInt &RA = RC->getValue()->getValue();
539 // Handle x /s -1 as x * -1, to give ScalarEvolution a chance to do
540 // some folding.
541 if (RA.isAllOnesValue())
542 return SE.getMulExpr(LHS, RC);
543 // Handle x /s 1 as x.
544 if (RA == 1)
545 return LHS;
546 }
Dan Gohman45774ce2010-02-12 10:34:29 +0000547
548 // Check for a division of a constant by a constant.
549 if (const SCEVConstant *C = dyn_cast<SCEVConstant>(LHS)) {
Dan Gohman45774ce2010-02-12 10:34:29 +0000550 if (!RC)
Craig Topperf40110f2014-04-25 05:29:35 +0000551 return nullptr;
Dan Gohman47ddf762010-06-24 16:51:25 +0000552 const APInt &LA = C->getValue()->getValue();
553 const APInt &RA = RC->getValue()->getValue();
554 if (LA.srem(RA) != 0)
Craig Topperf40110f2014-04-25 05:29:35 +0000555 return nullptr;
Dan Gohman47ddf762010-06-24 16:51:25 +0000556 return SE.getConstant(LA.sdiv(RA));
Dan Gohman45774ce2010-02-12 10:34:29 +0000557 }
558
Dan Gohman85af2562010-02-19 19:32:49 +0000559 // Distribute the sdiv over addrec operands, if the addrec doesn't overflow.
Dan Gohman45774ce2010-02-12 10:34:29 +0000560 if (const SCEVAddRecExpr *AR = dyn_cast<SCEVAddRecExpr>(LHS)) {
Dan Gohman85af2562010-02-19 19:32:49 +0000561 if (IgnoreSignificantBits || isAddRecSExtable(AR, SE)) {
Dan Gohman4eebb942010-02-19 19:35:48 +0000562 const SCEV *Step = getExactSDiv(AR->getStepRecurrence(SE), RHS, SE,
563 IgnoreSignificantBits);
Craig Topperf40110f2014-04-25 05:29:35 +0000564 if (!Step) return nullptr;
Dan Gohman129a8162010-08-19 01:02:31 +0000565 const SCEV *Start = getExactSDiv(AR->getStart(), RHS, SE,
566 IgnoreSignificantBits);
Craig Topperf40110f2014-04-25 05:29:35 +0000567 if (!Start) return nullptr;
Andrew Trick8b55b732011-03-14 16:50:06 +0000568 // FlagNW is independent of the start value, step direction, and is
569 // preserved with smaller magnitude steps.
570 // FIXME: AR->getNoWrapFlags(SCEV::FlagNW)
571 return SE.getAddRecExpr(Start, Step, AR->getLoop(), SCEV::FlagAnyWrap);
Dan Gohman85af2562010-02-19 19:32:49 +0000572 }
Craig Topperf40110f2014-04-25 05:29:35 +0000573 return nullptr;
Dan Gohman45774ce2010-02-12 10:34:29 +0000574 }
575
Dan Gohman85af2562010-02-19 19:32:49 +0000576 // Distribute the sdiv over add operands, if the add doesn't overflow.
Dan Gohman45774ce2010-02-12 10:34:29 +0000577 if (const SCEVAddExpr *Add = dyn_cast<SCEVAddExpr>(LHS)) {
Dan Gohman85af2562010-02-19 19:32:49 +0000578 if (IgnoreSignificantBits || isAddSExtable(Add, SE)) {
579 SmallVector<const SCEV *, 8> Ops;
580 for (SCEVAddExpr::op_iterator I = Add->op_begin(), E = Add->op_end();
581 I != E; ++I) {
Dan Gohman4eebb942010-02-19 19:35:48 +0000582 const SCEV *Op = getExactSDiv(*I, RHS, SE,
583 IgnoreSignificantBits);
Craig Topperf40110f2014-04-25 05:29:35 +0000584 if (!Op) return nullptr;
Dan Gohman85af2562010-02-19 19:32:49 +0000585 Ops.push_back(Op);
586 }
587 return SE.getAddExpr(Ops);
Dan Gohman45774ce2010-02-12 10:34:29 +0000588 }
Craig Topperf40110f2014-04-25 05:29:35 +0000589 return nullptr;
Dan Gohman45774ce2010-02-12 10:34:29 +0000590 }
591
592 // Check for a multiply operand that we can pull RHS out of.
Dan Gohman963b1c12010-06-24 16:57:52 +0000593 if (const SCEVMulExpr *Mul = dyn_cast<SCEVMulExpr>(LHS)) {
Dan Gohman85af2562010-02-19 19:32:49 +0000594 if (IgnoreSignificantBits || isMulSExtable(Mul, SE)) {
Dan Gohman45774ce2010-02-12 10:34:29 +0000595 SmallVector<const SCEV *, 4> Ops;
596 bool Found = false;
597 for (SCEVMulExpr::op_iterator I = Mul->op_begin(), E = Mul->op_end();
598 I != E; ++I) {
Dan Gohman6b733fc2010-05-20 16:23:28 +0000599 const SCEV *S = *I;
Dan Gohman45774ce2010-02-12 10:34:29 +0000600 if (!Found)
Dan Gohman6b733fc2010-05-20 16:23:28 +0000601 if (const SCEV *Q = getExactSDiv(S, RHS, SE,
Dan Gohman4eebb942010-02-19 19:35:48 +0000602 IgnoreSignificantBits)) {
Dan Gohman6b733fc2010-05-20 16:23:28 +0000603 S = Q;
Dan Gohman45774ce2010-02-12 10:34:29 +0000604 Found = true;
Dan Gohman45774ce2010-02-12 10:34:29 +0000605 }
Dan Gohman6b733fc2010-05-20 16:23:28 +0000606 Ops.push_back(S);
Dan Gohman45774ce2010-02-12 10:34:29 +0000607 }
Craig Topperf40110f2014-04-25 05:29:35 +0000608 return Found ? SE.getMulExpr(Ops) : nullptr;
Dan Gohman45774ce2010-02-12 10:34:29 +0000609 }
Craig Topperf40110f2014-04-25 05:29:35 +0000610 return nullptr;
Dan Gohman963b1c12010-06-24 16:57:52 +0000611 }
Dan Gohman45774ce2010-02-12 10:34:29 +0000612
613 // Otherwise we don't know.
Craig Topperf40110f2014-04-25 05:29:35 +0000614 return nullptr;
Dan Gohman45774ce2010-02-12 10:34:29 +0000615}
616
617/// ExtractImmediate - If S involves the addition of a constant integer value,
618/// return that integer value, and mutate S to point to a new SCEV with that
619/// value excluded.
620static int64_t ExtractImmediate(const SCEV *&S, ScalarEvolution &SE) {
621 if (const SCEVConstant *C = dyn_cast<SCEVConstant>(S)) {
622 if (C->getValue()->getValue().getMinSignedBits() <= 64) {
Dan Gohman1d2ded72010-05-03 22:09:21 +0000623 S = SE.getConstant(C->getType(), 0);
Dan Gohman45774ce2010-02-12 10:34:29 +0000624 return C->getValue()->getSExtValue();
625 }
626 } else if (const SCEVAddExpr *Add = dyn_cast<SCEVAddExpr>(S)) {
627 SmallVector<const SCEV *, 8> NewOps(Add->op_begin(), Add->op_end());
628 int64_t Result = ExtractImmediate(NewOps.front(), SE);
Dan Gohman081ffcd2010-08-13 21:17:19 +0000629 if (Result != 0)
630 S = SE.getAddExpr(NewOps);
Dan Gohman45774ce2010-02-12 10:34:29 +0000631 return Result;
632 } else if (const SCEVAddRecExpr *AR = dyn_cast<SCEVAddRecExpr>(S)) {
633 SmallVector<const SCEV *, 8> NewOps(AR->op_begin(), AR->op_end());
634 int64_t Result = ExtractImmediate(NewOps.front(), SE);
Dan Gohman081ffcd2010-08-13 21:17:19 +0000635 if (Result != 0)
Andrew Trick8b55b732011-03-14 16:50:06 +0000636 S = SE.getAddRecExpr(NewOps, AR->getLoop(),
637 // FIXME: AR->getNoWrapFlags(SCEV::FlagNW)
638 SCEV::FlagAnyWrap);
Dan Gohman45774ce2010-02-12 10:34:29 +0000639 return Result;
640 }
641 return 0;
642}
643
644/// ExtractSymbol - If S involves the addition of a GlobalValue address,
645/// return that symbol, and mutate S to point to a new SCEV with that
646/// value excluded.
647static GlobalValue *ExtractSymbol(const SCEV *&S, ScalarEvolution &SE) {
648 if (const SCEVUnknown *U = dyn_cast<SCEVUnknown>(S)) {
649 if (GlobalValue *GV = dyn_cast<GlobalValue>(U->getValue())) {
Dan Gohman1d2ded72010-05-03 22:09:21 +0000650 S = SE.getConstant(GV->getType(), 0);
Dan Gohman45774ce2010-02-12 10:34:29 +0000651 return GV;
652 }
653 } else if (const SCEVAddExpr *Add = dyn_cast<SCEVAddExpr>(S)) {
654 SmallVector<const SCEV *, 8> NewOps(Add->op_begin(), Add->op_end());
655 GlobalValue *Result = ExtractSymbol(NewOps.back(), SE);
Dan Gohman081ffcd2010-08-13 21:17:19 +0000656 if (Result)
657 S = SE.getAddExpr(NewOps);
Dan Gohman45774ce2010-02-12 10:34:29 +0000658 return Result;
659 } else if (const SCEVAddRecExpr *AR = dyn_cast<SCEVAddRecExpr>(S)) {
660 SmallVector<const SCEV *, 8> NewOps(AR->op_begin(), AR->op_end());
661 GlobalValue *Result = ExtractSymbol(NewOps.front(), SE);
Dan Gohman081ffcd2010-08-13 21:17:19 +0000662 if (Result)
Andrew Trick8b55b732011-03-14 16:50:06 +0000663 S = SE.getAddRecExpr(NewOps, AR->getLoop(),
664 // FIXME: AR->getNoWrapFlags(SCEV::FlagNW)
665 SCEV::FlagAnyWrap);
Dan Gohman45774ce2010-02-12 10:34:29 +0000666 return Result;
667 }
Craig Topperf40110f2014-04-25 05:29:35 +0000668 return nullptr;
Nate Begemanb18121e2004-10-18 21:08:22 +0000669}
670
Dan Gohmand0b1fbd2009-02-18 00:08:39 +0000671/// isAddressUse - Returns true if the specified instruction is using the
Dale Johannesen9efd2ce2008-12-05 21:47:27 +0000672/// specified value as an address.
673static bool isAddressUse(Instruction *Inst, Value *OperandVal) {
674 bool isAddress = isa<LoadInst>(Inst);
675 if (StoreInst *SI = dyn_cast<StoreInst>(Inst)) {
676 if (SI->getOperand(1) == OperandVal)
677 isAddress = true;
678 } else if (IntrinsicInst *II = dyn_cast<IntrinsicInst>(Inst)) {
679 // Addressing modes can also be folded into prefetches and a variety
680 // of intrinsics.
681 switch (II->getIntrinsicID()) {
682 default: break;
683 case Intrinsic::prefetch:
Dale Johannesen9efd2ce2008-12-05 21:47:27 +0000684 case Intrinsic::x86_sse_storeu_ps:
685 case Intrinsic::x86_sse2_storeu_pd:
686 case Intrinsic::x86_sse2_storeu_dq:
687 case Intrinsic::x86_sse2_storel_dq:
Gabor Greif8ae30952010-06-30 09:15:28 +0000688 if (II->getArgOperand(0) == OperandVal)
Dale Johannesen9efd2ce2008-12-05 21:47:27 +0000689 isAddress = true;
690 break;
691 }
692 }
693 return isAddress;
694}
Chris Lattnere4ed42a2005-10-03 01:04:44 +0000695
Dan Gohman917ffe42009-03-09 21:01:17 +0000696/// getAccessType - Return the type of the memory being accessed.
Chris Lattner229907c2011-07-18 04:54:35 +0000697static Type *getAccessType(const Instruction *Inst) {
698 Type *AccessTy = Inst->getType();
Dan Gohman917ffe42009-03-09 21:01:17 +0000699 if (const StoreInst *SI = dyn_cast<StoreInst>(Inst))
Dan Gohman14d13392009-05-18 16:45:28 +0000700 AccessTy = SI->getOperand(0)->getType();
Dan Gohman917ffe42009-03-09 21:01:17 +0000701 else if (const IntrinsicInst *II = dyn_cast<IntrinsicInst>(Inst)) {
702 // Addressing modes can also be folded into prefetches and a variety
703 // of intrinsics.
704 switch (II->getIntrinsicID()) {
705 default: break;
706 case Intrinsic::x86_sse_storeu_ps:
707 case Intrinsic::x86_sse2_storeu_pd:
708 case Intrinsic::x86_sse2_storeu_dq:
709 case Intrinsic::x86_sse2_storel_dq:
Gabor Greif8ae30952010-06-30 09:15:28 +0000710 AccessTy = II->getArgOperand(0)->getType();
Dan Gohman917ffe42009-03-09 21:01:17 +0000711 break;
712 }
713 }
Dan Gohman45774ce2010-02-12 10:34:29 +0000714
715 // All pointers have the same requirements, so canonicalize them to an
716 // arbitrary pointer type to minimize variation.
Chris Lattner229907c2011-07-18 04:54:35 +0000717 if (PointerType *PTy = dyn_cast<PointerType>(AccessTy))
Dan Gohman45774ce2010-02-12 10:34:29 +0000718 AccessTy = PointerType::get(IntegerType::get(PTy->getContext(), 1),
719 PTy->getAddressSpace());
720
Dan Gohman14d13392009-05-18 16:45:28 +0000721 return AccessTy;
Dan Gohman917ffe42009-03-09 21:01:17 +0000722}
723
Andrew Trick5df90962011-12-06 03:13:31 +0000724/// isExistingPhi - Return true if this AddRec is already a phi in its loop.
725static bool isExistingPhi(const SCEVAddRecExpr *AR, ScalarEvolution &SE) {
726 for (BasicBlock::iterator I = AR->getLoop()->getHeader()->begin();
727 PHINode *PN = dyn_cast<PHINode>(I); ++I) {
728 if (SE.isSCEVable(PN->getType()) &&
729 (SE.getEffectiveSCEVType(PN->getType()) ==
730 SE.getEffectiveSCEVType(AR->getType())) &&
731 SE.getSCEV(PN) == AR)
732 return true;
733 }
734 return false;
735}
736
Andrew Trickd5d2db92012-01-10 01:45:08 +0000737/// Check if expanding this expression is likely to incur significant cost. This
738/// is tricky because SCEV doesn't track which expressions are actually computed
739/// by the current IR.
740///
741/// We currently allow expansion of IV increments that involve adds,
742/// multiplication by constants, and AddRecs from existing phis.
743///
744/// TODO: Allow UDivExpr if we can find an existing IV increment that is an
745/// obvious multiple of the UDivExpr.
746static bool isHighCostExpansion(const SCEV *S,
Craig Topper71b7b682014-08-21 05:55:13 +0000747 SmallPtrSetImpl<const SCEV*> &Processed,
Andrew Trickd5d2db92012-01-10 01:45:08 +0000748 ScalarEvolution &SE) {
749 // Zero/One operand expressions
750 switch (S->getSCEVType()) {
751 case scUnknown:
752 case scConstant:
753 return false;
754 case scTruncate:
755 return isHighCostExpansion(cast<SCEVTruncateExpr>(S)->getOperand(),
756 Processed, SE);
757 case scZeroExtend:
758 return isHighCostExpansion(cast<SCEVZeroExtendExpr>(S)->getOperand(),
759 Processed, SE);
760 case scSignExtend:
761 return isHighCostExpansion(cast<SCEVSignExtendExpr>(S)->getOperand(),
762 Processed, SE);
763 }
764
765 if (!Processed.insert(S))
766 return false;
767
768 if (const SCEVAddExpr *Add = dyn_cast<SCEVAddExpr>(S)) {
769 for (SCEVAddExpr::op_iterator I = Add->op_begin(), E = Add->op_end();
770 I != E; ++I) {
771 if (isHighCostExpansion(*I, Processed, SE))
772 return true;
773 }
774 return false;
775 }
776
777 if (const SCEVMulExpr *Mul = dyn_cast<SCEVMulExpr>(S)) {
778 if (Mul->getNumOperands() == 2) {
779 // Multiplication by a constant is ok
780 if (isa<SCEVConstant>(Mul->getOperand(0)))
781 return isHighCostExpansion(Mul->getOperand(1), Processed, SE);
782
783 // If we have the value of one operand, check if an existing
784 // multiplication already generates this expression.
785 if (const SCEVUnknown *U = dyn_cast<SCEVUnknown>(Mul->getOperand(1))) {
786 Value *UVal = U->getValue();
Chandler Carruthcdf47882014-03-09 03:16:01 +0000787 for (User *UR : UVal->users()) {
Andrew Trick14779cc2012-03-26 20:28:37 +0000788 // If U is a constant, it may be used by a ConstantExpr.
Chandler Carruthcdf47882014-03-09 03:16:01 +0000789 Instruction *UI = dyn_cast<Instruction>(UR);
790 if (UI && UI->getOpcode() == Instruction::Mul &&
791 SE.isSCEVable(UI->getType())) {
792 return SE.getSCEV(UI) == Mul;
Andrew Trickd5d2db92012-01-10 01:45:08 +0000793 }
794 }
795 }
796 }
797 }
798
799 if (const SCEVAddRecExpr *AR = dyn_cast<SCEVAddRecExpr>(S)) {
800 if (isExistingPhi(AR, SE))
801 return false;
802 }
803
804 // Fow now, consider any other type of expression (div/mul/min/max) high cost.
805 return true;
806}
807
Dan Gohman45774ce2010-02-12 10:34:29 +0000808/// DeleteTriviallyDeadInstructions - If any of the instructions is the
809/// specified set are trivially dead, delete them and see if this makes any of
810/// their operands subsequently dead.
811static bool
812DeleteTriviallyDeadInstructions(SmallVectorImpl<WeakVH> &DeadInsts) {
813 bool Changed = false;
814
815 while (!DeadInsts.empty()) {
Richard Smithad9c8e82012-08-21 20:35:14 +0000816 Value *V = DeadInsts.pop_back_val();
817 Instruction *I = dyn_cast_or_null<Instruction>(V);
Dan Gohman45774ce2010-02-12 10:34:29 +0000818
Craig Topperf40110f2014-04-25 05:29:35 +0000819 if (!I || !isInstructionTriviallyDead(I))
Dan Gohman45774ce2010-02-12 10:34:29 +0000820 continue;
821
822 for (User::op_iterator OI = I->op_begin(), E = I->op_end(); OI != E; ++OI)
823 if (Instruction *U = dyn_cast<Instruction>(*OI)) {
Craig Topperf40110f2014-04-25 05:29:35 +0000824 *OI = nullptr;
Dan Gohman45774ce2010-02-12 10:34:29 +0000825 if (U->use_empty())
826 DeadInsts.push_back(U);
827 }
828
829 I->eraseFromParent();
830 Changed = true;
831 }
832
833 return Changed;
834}
835
Dan Gohman045f8192010-01-22 00:46:49 +0000836namespace {
Quentin Colombet8aa7abe2013-05-31 17:20:29 +0000837class LSRUse;
838}
Quentin Colombetc88baa5c2014-05-20 19:25:04 +0000839
840/// \brief Check if the addressing mode defined by \p F is completely
841/// folded in \p LU at isel time.
842/// This includes address-mode folding and special icmp tricks.
843/// This function returns true if \p LU can accommodate what \p F
844/// defines and up to 1 base + 1 scaled + offset.
845/// In other words, if \p F has several base registers, this function may
846/// still return true. Therefore, users still need to account for
847/// additional base registers and/or unfolded offsets to derive an
848/// accurate cost model.
849static bool isAMCompletelyFolded(const TargetTransformInfo &TTI,
850 const LSRUse &LU, const Formula &F);
Quentin Colombetbf490d42013-05-31 21:29:03 +0000851// Get the cost of the scaling factor used in F for LU.
852static unsigned getScalingFactorCost(const TargetTransformInfo &TTI,
853 const LSRUse &LU, const Formula &F);
Quentin Colombet8aa7abe2013-05-31 17:20:29 +0000854
855namespace {
Jim Grosbach60f48542009-11-17 17:53:56 +0000856
Dan Gohman45774ce2010-02-12 10:34:29 +0000857/// Cost - This class is used to measure and compare candidate formulae.
858class Cost {
859 /// TODO: Some of these could be merged. Also, a lexical ordering
860 /// isn't always optimal.
861 unsigned NumRegs;
862 unsigned AddRecCost;
863 unsigned NumIVMuls;
864 unsigned NumBaseAdds;
865 unsigned ImmCost;
866 unsigned SetupCost;
Quentin Colombetbf490d42013-05-31 21:29:03 +0000867 unsigned ScaleCost;
Nate Begemane68bcd12005-07-30 00:15:07 +0000868
Dan Gohman45774ce2010-02-12 10:34:29 +0000869public:
870 Cost()
871 : NumRegs(0), AddRecCost(0), NumIVMuls(0), NumBaseAdds(0), ImmCost(0),
Quentin Colombetbf490d42013-05-31 21:29:03 +0000872 SetupCost(0), ScaleCost(0) {}
Jim Grosbach60f48542009-11-17 17:53:56 +0000873
Dan Gohman45774ce2010-02-12 10:34:29 +0000874 bool operator<(const Cost &Other) const;
Dan Gohman045f8192010-01-22 00:46:49 +0000875
Tim Northoverbc6659c2014-01-22 13:27:00 +0000876 void Lose();
Dan Gohman045f8192010-01-22 00:46:49 +0000877
Andrew Trick784729d2011-09-26 23:11:04 +0000878#ifndef NDEBUG
879 // Once any of the metrics loses, they must all remain losers.
880 bool isValid() {
881 return ((NumRegs | AddRecCost | NumIVMuls | NumBaseAdds
Quentin Colombetbf490d42013-05-31 21:29:03 +0000882 | ImmCost | SetupCost | ScaleCost) != ~0u)
Andrew Trick784729d2011-09-26 23:11:04 +0000883 || ((NumRegs & AddRecCost & NumIVMuls & NumBaseAdds
Quentin Colombetbf490d42013-05-31 21:29:03 +0000884 & ImmCost & SetupCost & ScaleCost) == ~0u);
Andrew Trick784729d2011-09-26 23:11:04 +0000885 }
886#endif
887
888 bool isLoser() {
889 assert(isValid() && "invalid cost");
890 return NumRegs == ~0u;
891 }
892
Quentin Colombet8aa7abe2013-05-31 17:20:29 +0000893 void RateFormula(const TargetTransformInfo &TTI,
894 const Formula &F,
Craig Topper71b7b682014-08-21 05:55:13 +0000895 SmallPtrSetImpl<const SCEV *> &Regs,
Dan Gohman45774ce2010-02-12 10:34:29 +0000896 const DenseSet<const SCEV *> &VisitedRegs,
897 const Loop *L,
898 const SmallVectorImpl<int64_t> &Offsets,
Andrew Trick5df90962011-12-06 03:13:31 +0000899 ScalarEvolution &SE, DominatorTree &DT,
Quentin Colombet8aa7abe2013-05-31 17:20:29 +0000900 const LSRUse &LU,
Craig Topper71b7b682014-08-21 05:55:13 +0000901 SmallPtrSetImpl<const SCEV *> *LoserRegs = nullptr);
Dan Gohman045f8192010-01-22 00:46:49 +0000902
Dan Gohman45774ce2010-02-12 10:34:29 +0000903 void print(raw_ostream &OS) const;
904 void dump() const;
Dan Gohman045f8192010-01-22 00:46:49 +0000905
Dan Gohman45774ce2010-02-12 10:34:29 +0000906private:
907 void RateRegister(const SCEV *Reg,
Craig Topper71b7b682014-08-21 05:55:13 +0000908 SmallPtrSetImpl<const SCEV *> &Regs,
Dan Gohman45774ce2010-02-12 10:34:29 +0000909 const Loop *L,
910 ScalarEvolution &SE, DominatorTree &DT);
Dan Gohman5b18f032010-02-13 02:06:02 +0000911 void RatePrimaryRegister(const SCEV *Reg,
Craig Topper71b7b682014-08-21 05:55:13 +0000912 SmallPtrSetImpl<const SCEV *> &Regs,
Dan Gohman5b18f032010-02-13 02:06:02 +0000913 const Loop *L,
Andrew Trick5df90962011-12-06 03:13:31 +0000914 ScalarEvolution &SE, DominatorTree &DT,
Craig Topper71b7b682014-08-21 05:55:13 +0000915 SmallPtrSetImpl<const SCEV *> *LoserRegs);
Dan Gohman45774ce2010-02-12 10:34:29 +0000916};
917
918}
919
920/// RateRegister - Tally up interesting quantities from the given register.
921void Cost::RateRegister(const SCEV *Reg,
Craig Topper71b7b682014-08-21 05:55:13 +0000922 SmallPtrSetImpl<const SCEV *> &Regs,
Dan Gohman45774ce2010-02-12 10:34:29 +0000923 const Loop *L,
924 ScalarEvolution &SE, DominatorTree &DT) {
Dan Gohman5b18f032010-02-13 02:06:02 +0000925 if (const SCEVAddRecExpr *AR = dyn_cast<SCEVAddRecExpr>(Reg)) {
Andrew Trickbc6de902011-09-29 01:33:38 +0000926 // If this is an addrec for another loop, don't second-guess its addrec phi
927 // nodes. LSR isn't currently smart enough to reason about more than one
Andrew Trickd97b83e2012-03-22 22:42:45 +0000928 // loop at a time. LSR has already run on inner loops, will not run on outer
929 // loops, and cannot be expected to change sibling loops.
930 if (AR->getLoop() != L) {
931 // If the AddRec exists, consider it's register free and leave it alone.
Andrew Trick5df90962011-12-06 03:13:31 +0000932 if (isExistingPhi(AR, SE))
933 return;
934
Andrew Trickd97b83e2012-03-22 22:42:45 +0000935 // Otherwise, do not consider this formula at all.
Tim Northoverbc6659c2014-01-22 13:27:00 +0000936 Lose();
Andrew Trickd97b83e2012-03-22 22:42:45 +0000937 return;
Dan Gohman45774ce2010-02-12 10:34:29 +0000938 }
Andrew Trickd97b83e2012-03-22 22:42:45 +0000939 AddRecCost += 1; /// TODO: This should be a function of the stride.
Dan Gohman45774ce2010-02-12 10:34:29 +0000940
Dan Gohman5b18f032010-02-13 02:06:02 +0000941 // Add the step value register, if it needs one.
942 // TODO: The non-affine case isn't precisely modeled here.
Andrew Trick8868fae2011-09-26 23:35:25 +0000943 if (!AR->isAffine() || !isa<SCEVConstant>(AR->getOperand(1))) {
944 if (!Regs.count(AR->getOperand(1))) {
Dan Gohman5b18f032010-02-13 02:06:02 +0000945 RateRegister(AR->getOperand(1), Regs, L, SE, DT);
Andrew Trick8868fae2011-09-26 23:35:25 +0000946 if (isLoser())
947 return;
948 }
949 }
Dan Gohman45774ce2010-02-12 10:34:29 +0000950 }
Dan Gohman5b18f032010-02-13 02:06:02 +0000951 ++NumRegs;
952
953 // Rough heuristic; favor registers which don't require extra setup
954 // instructions in the preheader.
955 if (!isa<SCEVUnknown>(Reg) &&
956 !isa<SCEVConstant>(Reg) &&
957 !(isa<SCEVAddRecExpr>(Reg) &&
958 (isa<SCEVUnknown>(cast<SCEVAddRecExpr>(Reg)->getStart()) ||
959 isa<SCEVConstant>(cast<SCEVAddRecExpr>(Reg)->getStart()))))
960 ++SetupCost;
Dan Gohman34f37e02010-10-07 23:41:58 +0000961
962 NumIVMuls += isa<SCEVMulExpr>(Reg) &&
Dan Gohmanafd6db92010-11-17 21:23:15 +0000963 SE.hasComputableLoopEvolution(Reg, L);
Dan Gohman5b18f032010-02-13 02:06:02 +0000964}
965
966/// RatePrimaryRegister - Record this register in the set. If we haven't seen it
Andrew Trick5df90962011-12-06 03:13:31 +0000967/// before, rate it. Optional LoserRegs provides a way to declare any formula
968/// that refers to one of those regs an instant loser.
Dan Gohman5b18f032010-02-13 02:06:02 +0000969void Cost::RatePrimaryRegister(const SCEV *Reg,
Craig Topper71b7b682014-08-21 05:55:13 +0000970 SmallPtrSetImpl<const SCEV *> &Regs,
Dan Gohman0849ed52010-02-16 19:42:34 +0000971 const Loop *L,
Andrew Trick5df90962011-12-06 03:13:31 +0000972 ScalarEvolution &SE, DominatorTree &DT,
Craig Topper71b7b682014-08-21 05:55:13 +0000973 SmallPtrSetImpl<const SCEV *> *LoserRegs) {
Andrew Trick5df90962011-12-06 03:13:31 +0000974 if (LoserRegs && LoserRegs->count(Reg)) {
Tim Northoverbc6659c2014-01-22 13:27:00 +0000975 Lose();
Andrew Trick5df90962011-12-06 03:13:31 +0000976 return;
977 }
978 if (Regs.insert(Reg)) {
Dan Gohman5b18f032010-02-13 02:06:02 +0000979 RateRegister(Reg, Regs, L, SE, DT);
Andrew Tricka1c01ba2013-03-19 04:14:57 +0000980 if (LoserRegs && isLoser())
Andrew Trick5df90962011-12-06 03:13:31 +0000981 LoserRegs->insert(Reg);
982 }
Dan Gohman45774ce2010-02-12 10:34:29 +0000983}
984
Quentin Colombet8aa7abe2013-05-31 17:20:29 +0000985void Cost::RateFormula(const TargetTransformInfo &TTI,
986 const Formula &F,
Craig Topper71b7b682014-08-21 05:55:13 +0000987 SmallPtrSetImpl<const SCEV *> &Regs,
Dan Gohman45774ce2010-02-12 10:34:29 +0000988 const DenseSet<const SCEV *> &VisitedRegs,
989 const Loop *L,
990 const SmallVectorImpl<int64_t> &Offsets,
Andrew Trick5df90962011-12-06 03:13:31 +0000991 ScalarEvolution &SE, DominatorTree &DT,
Quentin Colombet8aa7abe2013-05-31 17:20:29 +0000992 const LSRUse &LU,
Craig Topper71b7b682014-08-21 05:55:13 +0000993 SmallPtrSetImpl<const SCEV *> *LoserRegs) {
Quentin Colombetc88baa5c2014-05-20 19:25:04 +0000994 assert(F.isCanonical() && "Cost is accurate only for canonical formula");
Dan Gohman45774ce2010-02-12 10:34:29 +0000995 // Tally up the registers.
996 if (const SCEV *ScaledReg = F.ScaledReg) {
997 if (VisitedRegs.count(ScaledReg)) {
Tim Northoverbc6659c2014-01-22 13:27:00 +0000998 Lose();
Dan Gohman45774ce2010-02-12 10:34:29 +0000999 return;
1000 }
Andrew Trick5df90962011-12-06 03:13:31 +00001001 RatePrimaryRegister(ScaledReg, Regs, L, SE, DT, LoserRegs);
Andrew Trick784729d2011-09-26 23:11:04 +00001002 if (isLoser())
1003 return;
Dan Gohman45774ce2010-02-12 10:34:29 +00001004 }
1005 for (SmallVectorImpl<const SCEV *>::const_iterator I = F.BaseRegs.begin(),
1006 E = F.BaseRegs.end(); I != E; ++I) {
1007 const SCEV *BaseReg = *I;
1008 if (VisitedRegs.count(BaseReg)) {
Tim Northoverbc6659c2014-01-22 13:27:00 +00001009 Lose();
Dan Gohman45774ce2010-02-12 10:34:29 +00001010 return;
1011 }
Andrew Trick5df90962011-12-06 03:13:31 +00001012 RatePrimaryRegister(BaseReg, Regs, L, SE, DT, LoserRegs);
Andrew Trick784729d2011-09-26 23:11:04 +00001013 if (isLoser())
1014 return;
Dan Gohman45774ce2010-02-12 10:34:29 +00001015 }
1016
Dan Gohman6136e942011-05-03 00:46:49 +00001017 // Determine how many (unfolded) adds we'll need inside the loop.
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00001018 size_t NumBaseParts = F.getNumRegs();
Dan Gohman6136e942011-05-03 00:46:49 +00001019 if (NumBaseParts > 1)
Quentin Colombet8aa7abe2013-05-31 17:20:29 +00001020 // Do not count the base and a possible second register if the target
1021 // allows to fold 2 registers.
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00001022 NumBaseAdds +=
1023 NumBaseParts - (1 + (F.Scale && isAMCompletelyFolded(TTI, LU, F)));
1024 NumBaseAdds += (F.UnfoldedOffset != 0);
Dan Gohman45774ce2010-02-12 10:34:29 +00001025
Quentin Colombetbf490d42013-05-31 21:29:03 +00001026 // Accumulate non-free scaling amounts.
1027 ScaleCost += getScalingFactorCost(TTI, LU, F);
1028
Dan Gohman45774ce2010-02-12 10:34:29 +00001029 // Tally up the non-zero immediates.
1030 for (SmallVectorImpl<int64_t>::const_iterator I = Offsets.begin(),
1031 E = Offsets.end(); I != E; ++I) {
Chandler Carruth6e479322013-01-07 15:04:40 +00001032 int64_t Offset = (uint64_t)*I + F.BaseOffset;
1033 if (F.BaseGV)
Dan Gohman45774ce2010-02-12 10:34:29 +00001034 ImmCost += 64; // Handle symbolic values conservatively.
1035 // TODO: This should probably be the pointer size.
1036 else if (Offset != 0)
1037 ImmCost += APInt(64, Offset, true).getMinSignedBits();
1038 }
Andrew Trick784729d2011-09-26 23:11:04 +00001039 assert(isValid() && "invalid cost");
Dan Gohman45774ce2010-02-12 10:34:29 +00001040}
1041
Tim Northoverbc6659c2014-01-22 13:27:00 +00001042/// Lose - Set this cost to a losing value.
1043void Cost::Lose() {
Dan Gohman45774ce2010-02-12 10:34:29 +00001044 NumRegs = ~0u;
1045 AddRecCost = ~0u;
1046 NumIVMuls = ~0u;
1047 NumBaseAdds = ~0u;
1048 ImmCost = ~0u;
1049 SetupCost = ~0u;
Quentin Colombetbf490d42013-05-31 21:29:03 +00001050 ScaleCost = ~0u;
Dan Gohman45774ce2010-02-12 10:34:29 +00001051}
1052
1053/// operator< - Choose the lower cost.
1054bool Cost::operator<(const Cost &Other) const {
Benjamin Kramerb2f034b2014-03-03 19:58:30 +00001055 return std::tie(NumRegs, AddRecCost, NumIVMuls, NumBaseAdds, ScaleCost,
1056 ImmCost, SetupCost) <
1057 std::tie(Other.NumRegs, Other.AddRecCost, Other.NumIVMuls,
1058 Other.NumBaseAdds, Other.ScaleCost, Other.ImmCost,
1059 Other.SetupCost);
Dan Gohman45774ce2010-02-12 10:34:29 +00001060}
1061
1062void Cost::print(raw_ostream &OS) const {
1063 OS << NumRegs << " reg" << (NumRegs == 1 ? "" : "s");
1064 if (AddRecCost != 0)
1065 OS << ", with addrec cost " << AddRecCost;
1066 if (NumIVMuls != 0)
1067 OS << ", plus " << NumIVMuls << " IV mul" << (NumIVMuls == 1 ? "" : "s");
1068 if (NumBaseAdds != 0)
1069 OS << ", plus " << NumBaseAdds << " base add"
1070 << (NumBaseAdds == 1 ? "" : "s");
Quentin Colombetbf490d42013-05-31 21:29:03 +00001071 if (ScaleCost != 0)
1072 OS << ", plus " << ScaleCost << " scale cost";
Dan Gohman45774ce2010-02-12 10:34:29 +00001073 if (ImmCost != 0)
1074 OS << ", plus " << ImmCost << " imm cost";
1075 if (SetupCost != 0)
1076 OS << ", plus " << SetupCost << " setup cost";
1077}
1078
Manman Ren49d684e2012-09-12 05:06:18 +00001079#if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
Dan Gohman45774ce2010-02-12 10:34:29 +00001080void Cost::dump() const {
1081 print(errs()); errs() << '\n';
1082}
Manman Renc3366cc2012-09-06 19:55:56 +00001083#endif
Dan Gohman45774ce2010-02-12 10:34:29 +00001084
1085namespace {
1086
1087/// LSRFixup - An operand value in an instruction which is to be replaced
1088/// with some equivalent, possibly strength-reduced, replacement.
1089struct LSRFixup {
1090 /// UserInst - The instruction which will be updated.
1091 Instruction *UserInst;
1092
1093 /// OperandValToReplace - The operand of the instruction which will
1094 /// be replaced. The operand may be used more than once; every instance
1095 /// will be replaced.
1096 Value *OperandValToReplace;
1097
Dan Gohmand006ab92010-04-07 22:27:08 +00001098 /// PostIncLoops - If this user is to use the post-incremented value of an
Dan Gohman45774ce2010-02-12 10:34:29 +00001099 /// induction variable, this variable is non-null and holds the loop
1100 /// associated with the induction variable.
Dan Gohmand006ab92010-04-07 22:27:08 +00001101 PostIncLoopSet PostIncLoops;
Dan Gohman45774ce2010-02-12 10:34:29 +00001102
1103 /// LUIdx - The index of the LSRUse describing the expression which
1104 /// this fixup needs, minus an offset (below).
1105 size_t LUIdx;
1106
1107 /// Offset - A constant offset to be added to the LSRUse expression.
1108 /// This allows multiple fixups to share the same LSRUse with different
1109 /// offsets, for example in an unrolled loop.
1110 int64_t Offset;
1111
Dan Gohmand006ab92010-04-07 22:27:08 +00001112 bool isUseFullyOutsideLoop(const Loop *L) const;
1113
Dan Gohman45774ce2010-02-12 10:34:29 +00001114 LSRFixup();
1115
1116 void print(raw_ostream &OS) const;
1117 void dump() const;
1118};
1119
1120}
1121
1122LSRFixup::LSRFixup()
Craig Topperf40110f2014-04-25 05:29:35 +00001123 : UserInst(nullptr), OperandValToReplace(nullptr), LUIdx(~size_t(0)),
1124 Offset(0) {}
Dan Gohman45774ce2010-02-12 10:34:29 +00001125
Dan Gohmand006ab92010-04-07 22:27:08 +00001126/// isUseFullyOutsideLoop - Test whether this fixup always uses its
1127/// value outside of the given loop.
1128bool LSRFixup::isUseFullyOutsideLoop(const Loop *L) const {
1129 // PHI nodes use their value in their incoming blocks.
1130 if (const PHINode *PN = dyn_cast<PHINode>(UserInst)) {
1131 for (unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i)
1132 if (PN->getIncomingValue(i) == OperandValToReplace &&
1133 L->contains(PN->getIncomingBlock(i)))
1134 return false;
1135 return true;
1136 }
1137
1138 return !L->contains(UserInst);
1139}
1140
Dan Gohman45774ce2010-02-12 10:34:29 +00001141void LSRFixup::print(raw_ostream &OS) const {
1142 OS << "UserInst=";
1143 // Store is common and interesting enough to be worth special-casing.
1144 if (StoreInst *Store = dyn_cast<StoreInst>(UserInst)) {
1145 OS << "store ";
Chandler Carruthd48cdbf2014-01-09 02:29:41 +00001146 Store->getOperand(0)->printAsOperand(OS, /*PrintType=*/false);
Dan Gohman45774ce2010-02-12 10:34:29 +00001147 } else if (UserInst->getType()->isVoidTy())
1148 OS << UserInst->getOpcodeName();
1149 else
Chandler Carruthd48cdbf2014-01-09 02:29:41 +00001150 UserInst->printAsOperand(OS, /*PrintType=*/false);
Dan Gohman45774ce2010-02-12 10:34:29 +00001151
1152 OS << ", OperandValToReplace=";
Chandler Carruthd48cdbf2014-01-09 02:29:41 +00001153 OperandValToReplace->printAsOperand(OS, /*PrintType=*/false);
Dan Gohman45774ce2010-02-12 10:34:29 +00001154
Dan Gohmand006ab92010-04-07 22:27:08 +00001155 for (PostIncLoopSet::const_iterator I = PostIncLoops.begin(),
1156 E = PostIncLoops.end(); I != E; ++I) {
Dan Gohman45774ce2010-02-12 10:34:29 +00001157 OS << ", PostIncLoop=";
Chandler Carruthd48cdbf2014-01-09 02:29:41 +00001158 (*I)->getHeader()->printAsOperand(OS, /*PrintType=*/false);
Dan Gohman45774ce2010-02-12 10:34:29 +00001159 }
1160
1161 if (LUIdx != ~size_t(0))
1162 OS << ", LUIdx=" << LUIdx;
1163
1164 if (Offset != 0)
1165 OS << ", Offset=" << Offset;
1166}
1167
Manman Ren49d684e2012-09-12 05:06:18 +00001168#if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
Dan Gohman45774ce2010-02-12 10:34:29 +00001169void LSRFixup::dump() const {
1170 print(errs()); errs() << '\n';
1171}
Manman Renc3366cc2012-09-06 19:55:56 +00001172#endif
Dan Gohman45774ce2010-02-12 10:34:29 +00001173
1174namespace {
1175
1176/// UniquifierDenseMapInfo - A DenseMapInfo implementation for holding
1177/// DenseMaps and DenseSets of sorted SmallVectors of const SCEV*.
1178struct UniquifierDenseMapInfo {
Preston Gurd25c3b6a2013-02-01 20:41:27 +00001179 static SmallVector<const SCEV *, 4> getEmptyKey() {
1180 SmallVector<const SCEV *, 4> V;
Dan Gohman45774ce2010-02-12 10:34:29 +00001181 V.push_back(reinterpret_cast<const SCEV *>(-1));
1182 return V;
1183 }
1184
Preston Gurd25c3b6a2013-02-01 20:41:27 +00001185 static SmallVector<const SCEV *, 4> getTombstoneKey() {
1186 SmallVector<const SCEV *, 4> V;
Dan Gohman45774ce2010-02-12 10:34:29 +00001187 V.push_back(reinterpret_cast<const SCEV *>(-2));
1188 return V;
1189 }
1190
Preston Gurd25c3b6a2013-02-01 20:41:27 +00001191 static unsigned getHashValue(const SmallVector<const SCEV *, 4> &V) {
Benjamin Kramer62fb0cf2014-03-15 17:17:48 +00001192 return static_cast<unsigned>(hash_combine_range(V.begin(), V.end()));
Dan Gohman45774ce2010-02-12 10:34:29 +00001193 }
1194
Preston Gurd25c3b6a2013-02-01 20:41:27 +00001195 static bool isEqual(const SmallVector<const SCEV *, 4> &LHS,
1196 const SmallVector<const SCEV *, 4> &RHS) {
Dan Gohman45774ce2010-02-12 10:34:29 +00001197 return LHS == RHS;
1198 }
1199};
1200
1201/// LSRUse - This class holds the state that LSR keeps for each use in
1202/// IVUsers, as well as uses invented by LSR itself. It includes information
1203/// about what kinds of things can be folded into the user, information about
1204/// the user itself, and information about how the use may be satisfied.
1205/// TODO: Represent multiple users of the same expression in common?
1206class LSRUse {
Preston Gurd25c3b6a2013-02-01 20:41:27 +00001207 DenseSet<SmallVector<const SCEV *, 4>, UniquifierDenseMapInfo> Uniquifier;
Dan Gohman45774ce2010-02-12 10:34:29 +00001208
1209public:
1210 /// KindType - An enum for a kind of use, indicating what types of
1211 /// scaled and immediate operands it might support.
1212 enum KindType {
1213 Basic, ///< A normal use, with no folding.
1214 Special, ///< A special case of basic, allowing -1 scales.
Nadav Rotem4dc976f2012-10-19 21:28:43 +00001215 Address, ///< An address use; folding according to TargetLowering
Dan Gohman45774ce2010-02-12 10:34:29 +00001216 ICmpZero ///< An equality icmp with both operands folded into one.
1217 // TODO: Add a generic icmp too?
Dan Gohman045f8192010-01-22 00:46:49 +00001218 };
Dan Gohman45774ce2010-02-12 10:34:29 +00001219
Benjamin Kramer62fb0cf2014-03-15 17:17:48 +00001220 typedef PointerIntPair<const SCEV *, 2, KindType> SCEVUseKindPair;
1221
Dan Gohman45774ce2010-02-12 10:34:29 +00001222 KindType Kind;
Chris Lattner229907c2011-07-18 04:54:35 +00001223 Type *AccessTy;
Dan Gohman45774ce2010-02-12 10:34:29 +00001224
1225 SmallVector<int64_t, 8> Offsets;
1226 int64_t MinOffset;
1227 int64_t MaxOffset;
1228
1229 /// AllFixupsOutsideLoop - This records whether all of the fixups using this
1230 /// LSRUse are outside of the loop, in which case some special-case heuristics
1231 /// may be used.
1232 bool AllFixupsOutsideLoop;
1233
Andrew Trick57243da2013-10-25 21:35:56 +00001234 /// RigidFormula is set to true to guarantee that this use will be associated
1235 /// with a single formula--the one that initially matched. Some SCEV
1236 /// expressions cannot be expanded. This allows LSR to consider the registers
1237 /// used by those expressions without the need to expand them later after
1238 /// changing the formula.
1239 bool RigidFormula;
1240
Dan Gohman14152082010-07-15 20:24:58 +00001241 /// WidestFixupType - This records the widest use type for any fixup using
1242 /// this LSRUse. FindUseWithSimilarFormula can't consider uses with different
1243 /// max fixup widths to be equivalent, because the narrower one may be relying
1244 /// on the implicit truncation to truncate away bogus bits.
Chris Lattner229907c2011-07-18 04:54:35 +00001245 Type *WidestFixupType;
Dan Gohman14152082010-07-15 20:24:58 +00001246
Dan Gohman45774ce2010-02-12 10:34:29 +00001247 /// Formulae - A list of ways to build a value that can satisfy this user.
1248 /// After the list is populated, one of these is selected heuristically and
1249 /// used to formulate a replacement for OperandValToReplace in UserInst.
1250 SmallVector<Formula, 12> Formulae;
1251
1252 /// Regs - The set of register candidates used by all formulae in this LSRUse.
1253 SmallPtrSet<const SCEV *, 4> Regs;
1254
Chris Lattner229907c2011-07-18 04:54:35 +00001255 LSRUse(KindType K, Type *T) : Kind(K), AccessTy(T),
Dan Gohman45774ce2010-02-12 10:34:29 +00001256 MinOffset(INT64_MAX),
1257 MaxOffset(INT64_MIN),
Dan Gohman14152082010-07-15 20:24:58 +00001258 AllFixupsOutsideLoop(true),
Andrew Trick57243da2013-10-25 21:35:56 +00001259 RigidFormula(false),
Craig Topperf40110f2014-04-25 05:29:35 +00001260 WidestFixupType(nullptr) {}
Dan Gohman45774ce2010-02-12 10:34:29 +00001261
Dan Gohman20fab452010-05-19 23:43:12 +00001262 bool HasFormulaWithSameRegs(const Formula &F) const;
Dan Gohman8c16b382010-02-22 04:11:59 +00001263 bool InsertFormula(const Formula &F);
Dan Gohmanf1c7b1b2010-05-18 22:39:15 +00001264 void DeleteFormula(Formula &F);
Dan Gohman4cf99b52010-05-18 23:42:37 +00001265 void RecomputeRegs(size_t LUIdx, RegUseTracker &Reguses);
Dan Gohman45774ce2010-02-12 10:34:29 +00001266
Dan Gohman45774ce2010-02-12 10:34:29 +00001267 void print(raw_ostream &OS) const;
1268 void dump() const;
1269};
1270
Dan Gohman297fb8b2010-06-19 21:21:39 +00001271}
1272
Dan Gohman20fab452010-05-19 23:43:12 +00001273/// HasFormula - Test whether this use as a formula which has the same
1274/// registers as the given formula.
1275bool LSRUse::HasFormulaWithSameRegs(const Formula &F) const {
Preston Gurd25c3b6a2013-02-01 20:41:27 +00001276 SmallVector<const SCEV *, 4> Key = F.BaseRegs;
Dan Gohman20fab452010-05-19 23:43:12 +00001277 if (F.ScaledReg) Key.push_back(F.ScaledReg);
1278 // Unstable sort by host order ok, because this is only used for uniquifying.
1279 std::sort(Key.begin(), Key.end());
1280 return Uniquifier.count(Key);
1281}
1282
Dan Gohman45774ce2010-02-12 10:34:29 +00001283/// InsertFormula - If the given formula has not yet been inserted, add it to
1284/// the list, and return true. Return false otherwise.
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00001285/// The formula must be in canonical form.
Dan Gohman8c16b382010-02-22 04:11:59 +00001286bool LSRUse::InsertFormula(const Formula &F) {
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00001287 assert(F.isCanonical() && "Invalid canonical representation");
1288
Andrew Trick57243da2013-10-25 21:35:56 +00001289 if (!Formulae.empty() && RigidFormula)
1290 return false;
1291
Preston Gurd25c3b6a2013-02-01 20:41:27 +00001292 SmallVector<const SCEV *, 4> Key = F.BaseRegs;
Dan Gohman45774ce2010-02-12 10:34:29 +00001293 if (F.ScaledReg) Key.push_back(F.ScaledReg);
1294 // Unstable sort by host order ok, because this is only used for uniquifying.
1295 std::sort(Key.begin(), Key.end());
1296
1297 if (!Uniquifier.insert(Key).second)
1298 return false;
1299
1300 // Using a register to hold the value of 0 is not profitable.
1301 assert((!F.ScaledReg || !F.ScaledReg->isZero()) &&
1302 "Zero allocated in a scaled register!");
1303#ifndef NDEBUG
1304 for (SmallVectorImpl<const SCEV *>::const_iterator I =
1305 F.BaseRegs.begin(), E = F.BaseRegs.end(); I != E; ++I)
1306 assert(!(*I)->isZero() && "Zero allocated in a base register!");
1307#endif
1308
1309 // Add the formula to the list.
1310 Formulae.push_back(F);
1311
1312 // Record registers now being used by this use.
Dan Gohman45774ce2010-02-12 10:34:29 +00001313 Regs.insert(F.BaseRegs.begin(), F.BaseRegs.end());
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00001314 if (F.ScaledReg)
1315 Regs.insert(F.ScaledReg);
Dan Gohman45774ce2010-02-12 10:34:29 +00001316
1317 return true;
Dan Gohman045f8192010-01-22 00:46:49 +00001318}
1319
Dan Gohmanf1c7b1b2010-05-18 22:39:15 +00001320/// DeleteFormula - Remove the given formula from this use's list.
1321void LSRUse::DeleteFormula(Formula &F) {
Dan Gohman80a96082010-05-20 15:17:54 +00001322 if (&F != &Formulae.back())
1323 std::swap(F, Formulae.back());
Dan Gohmanf1c7b1b2010-05-18 22:39:15 +00001324 Formulae.pop_back();
1325}
1326
Dan Gohman4cf99b52010-05-18 23:42:37 +00001327/// RecomputeRegs - Recompute the Regs field, and update RegUses.
1328void LSRUse::RecomputeRegs(size_t LUIdx, RegUseTracker &RegUses) {
1329 // Now that we've filtered out some formulae, recompute the Regs set.
1330 SmallPtrSet<const SCEV *, 4> OldRegs = Regs;
1331 Regs.clear();
Dan Gohman927bcaa2010-05-20 20:33:18 +00001332 for (SmallVectorImpl<Formula>::const_iterator I = Formulae.begin(),
1333 E = Formulae.end(); I != E; ++I) {
1334 const Formula &F = *I;
Dan Gohman4cf99b52010-05-18 23:42:37 +00001335 if (F.ScaledReg) Regs.insert(F.ScaledReg);
1336 Regs.insert(F.BaseRegs.begin(), F.BaseRegs.end());
1337 }
1338
1339 // Update the RegTracker.
Craig Topper46276792014-08-24 23:23:06 +00001340 for (const SCEV *S : OldRegs)
1341 if (!Regs.count(S))
1342 RegUses.DropRegister(S, LUIdx);
Dan Gohman4cf99b52010-05-18 23:42:37 +00001343}
1344
Dan Gohman45774ce2010-02-12 10:34:29 +00001345void LSRUse::print(raw_ostream &OS) const {
1346 OS << "LSR Use: Kind=";
1347 switch (Kind) {
1348 case Basic: OS << "Basic"; break;
1349 case Special: OS << "Special"; break;
1350 case ICmpZero: OS << "ICmpZero"; break;
1351 case Address:
1352 OS << "Address of ";
Duncan Sands19d0b472010-02-16 11:11:14 +00001353 if (AccessTy->isPointerTy())
Dan Gohman45774ce2010-02-12 10:34:29 +00001354 OS << "pointer"; // the full pointer type could be really verbose
1355 else
1356 OS << *AccessTy;
Evan Cheng133694d2007-10-25 09:11:16 +00001357 }
1358
Dan Gohman45774ce2010-02-12 10:34:29 +00001359 OS << ", Offsets={";
1360 for (SmallVectorImpl<int64_t>::const_iterator I = Offsets.begin(),
1361 E = Offsets.end(); I != E; ++I) {
1362 OS << *I;
Benjamin Kramerb6d0bd42014-03-02 12:27:27 +00001363 if (std::next(I) != E)
Dan Gohman45774ce2010-02-12 10:34:29 +00001364 OS << ',';
Dan Gohman045f8192010-01-22 00:46:49 +00001365 }
Dan Gohman45774ce2010-02-12 10:34:29 +00001366 OS << '}';
Dan Gohman045f8192010-01-22 00:46:49 +00001367
Dan Gohman45774ce2010-02-12 10:34:29 +00001368 if (AllFixupsOutsideLoop)
1369 OS << ", all-fixups-outside-loop";
Dan Gohman14152082010-07-15 20:24:58 +00001370
1371 if (WidestFixupType)
1372 OS << ", widest fixup type: " << *WidestFixupType;
Dan Gohman045f8192010-01-22 00:46:49 +00001373}
1374
Manman Ren49d684e2012-09-12 05:06:18 +00001375#if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
Dan Gohman45774ce2010-02-12 10:34:29 +00001376void LSRUse::dump() const {
1377 print(errs()); errs() << '\n';
1378}
Manman Renc3366cc2012-09-06 19:55:56 +00001379#endif
Dan Gohman045f8192010-01-22 00:46:49 +00001380
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00001381static bool isAMCompletelyFolded(const TargetTransformInfo &TTI,
1382 LSRUse::KindType Kind, Type *AccessTy,
1383 GlobalValue *BaseGV, int64_t BaseOffset,
1384 bool HasBaseReg, int64_t Scale) {
Dan Gohman45774ce2010-02-12 10:34:29 +00001385 switch (Kind) {
1386 case LSRUse::Address:
Chandler Carruth26c59fa2013-01-07 14:41:08 +00001387 return TTI.isLegalAddressingMode(AccessTy, BaseGV, BaseOffset, HasBaseReg, Scale);
Dan Gohman45774ce2010-02-12 10:34:29 +00001388
1389 // Otherwise, just guess that reg+reg addressing is legal.
Chandler Carruth26c59fa2013-01-07 14:41:08 +00001390 //return ;
Dan Gohman45774ce2010-02-12 10:34:29 +00001391
1392 case LSRUse::ICmpZero:
1393 // There's not even a target hook for querying whether it would be legal to
1394 // fold a GV into an ICmp.
Chandler Carruth26c59fa2013-01-07 14:41:08 +00001395 if (BaseGV)
Dan Gohman45774ce2010-02-12 10:34:29 +00001396 return false;
1397
1398 // ICmp only has two operands; don't allow more than two non-trivial parts.
Chandler Carruth26c59fa2013-01-07 14:41:08 +00001399 if (Scale != 0 && HasBaseReg && BaseOffset != 0)
Dan Gohman45774ce2010-02-12 10:34:29 +00001400 return false;
1401
1402 // ICmp only supports no scale or a -1 scale, as we can "fold" a -1 scale by
1403 // putting the scaled register in the other operand of the icmp.
Chandler Carruth26c59fa2013-01-07 14:41:08 +00001404 if (Scale != 0 && Scale != -1)
Dan Gohman45774ce2010-02-12 10:34:29 +00001405 return false;
1406
1407 // If we have low-level target information, ask the target if it can fold an
1408 // integer immediate on an icmp.
Chandler Carruth26c59fa2013-01-07 14:41:08 +00001409 if (BaseOffset != 0) {
Jakob Stoklund Olesenf2390e82012-04-05 03:10:56 +00001410 // We have one of:
Chandler Carruth26c59fa2013-01-07 14:41:08 +00001411 // ICmpZero BaseReg + BaseOffset => ICmp BaseReg, -BaseOffset
1412 // ICmpZero -1*ScaleReg + BaseOffset => ICmp ScaleReg, BaseOffset
Jakob Stoklund Olesenf2390e82012-04-05 03:10:56 +00001413 // Offs is the ICmp immediate.
Chandler Carruth26c59fa2013-01-07 14:41:08 +00001414 if (Scale == 0)
1415 // The cast does the right thing with INT64_MIN.
1416 BaseOffset = -(uint64_t)BaseOffset;
1417 return TTI.isLegalICmpImmediate(BaseOffset);
Dan Gohman045f8192010-01-22 00:46:49 +00001418 }
Dan Gohman45774ce2010-02-12 10:34:29 +00001419
Jakob Stoklund Olesenf2390e82012-04-05 03:10:56 +00001420 // ICmpZero BaseReg + -1*ScaleReg => ICmp BaseReg, ScaleReg
Dan Gohman45774ce2010-02-12 10:34:29 +00001421 return true;
1422
1423 case LSRUse::Basic:
1424 // Only handle single-register values.
Chandler Carruth26c59fa2013-01-07 14:41:08 +00001425 return !BaseGV && Scale == 0 && BaseOffset == 0;
Dan Gohman45774ce2010-02-12 10:34:29 +00001426
1427 case LSRUse::Special:
Andrew Trickaca8fb32012-06-15 20:07:26 +00001428 // Special case Basic to handle -1 scales.
Chandler Carruth26c59fa2013-01-07 14:41:08 +00001429 return !BaseGV && (Scale == 0 || Scale == -1) && BaseOffset == 0;
Dan Gohman045f8192010-01-22 00:46:49 +00001430 }
1431
David Blaikie46a9f012012-01-20 21:51:11 +00001432 llvm_unreachable("Invalid LSRUse Kind!");
Dan Gohman045f8192010-01-22 00:46:49 +00001433}
1434
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00001435static bool isAMCompletelyFolded(const TargetTransformInfo &TTI,
1436 int64_t MinOffset, int64_t MaxOffset,
1437 LSRUse::KindType Kind, Type *AccessTy,
1438 GlobalValue *BaseGV, int64_t BaseOffset,
1439 bool HasBaseReg, int64_t Scale) {
Dan Gohman45774ce2010-02-12 10:34:29 +00001440 // Check for overflow.
Chandler Carruth26c59fa2013-01-07 14:41:08 +00001441 if (((int64_t)((uint64_t)BaseOffset + MinOffset) > BaseOffset) !=
Dan Gohman45774ce2010-02-12 10:34:29 +00001442 (MinOffset > 0))
1443 return false;
Chandler Carruth26c59fa2013-01-07 14:41:08 +00001444 MinOffset = (uint64_t)BaseOffset + MinOffset;
1445 if (((int64_t)((uint64_t)BaseOffset + MaxOffset) > BaseOffset) !=
1446 (MaxOffset > 0))
1447 return false;
1448 MaxOffset = (uint64_t)BaseOffset + MaxOffset;
1449
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00001450 return isAMCompletelyFolded(TTI, Kind, AccessTy, BaseGV, MinOffset,
1451 HasBaseReg, Scale) &&
1452 isAMCompletelyFolded(TTI, Kind, AccessTy, BaseGV, MaxOffset,
1453 HasBaseReg, Scale);
1454}
1455
1456static bool isAMCompletelyFolded(const TargetTransformInfo &TTI,
1457 int64_t MinOffset, int64_t MaxOffset,
1458 LSRUse::KindType Kind, Type *AccessTy,
1459 const Formula &F) {
1460 // For the purpose of isAMCompletelyFolded either having a canonical formula
1461 // or a scale not equal to zero is correct.
1462 // Problems may arise from non canonical formulae having a scale == 0.
1463 // Strictly speaking it would best to just rely on canonical formulae.
1464 // However, when we generate the scaled formulae, we first check that the
1465 // scaling factor is profitable before computing the actual ScaledReg for
1466 // compile time sake.
1467 assert((F.isCanonical() || F.Scale != 0));
1468 return isAMCompletelyFolded(TTI, MinOffset, MaxOffset, Kind, AccessTy,
1469 F.BaseGV, F.BaseOffset, F.HasBaseReg, F.Scale);
1470}
1471
1472/// isLegalUse - Test whether we know how to expand the current formula.
1473static bool isLegalUse(const TargetTransformInfo &TTI, int64_t MinOffset,
1474 int64_t MaxOffset, LSRUse::KindType Kind, Type *AccessTy,
1475 GlobalValue *BaseGV, int64_t BaseOffset, bool HasBaseReg,
1476 int64_t Scale) {
1477 // We know how to expand completely foldable formulae.
1478 return isAMCompletelyFolded(TTI, MinOffset, MaxOffset, Kind, AccessTy, BaseGV,
1479 BaseOffset, HasBaseReg, Scale) ||
1480 // Or formulae that use a base register produced by a sum of base
1481 // registers.
1482 (Scale == 1 &&
1483 isAMCompletelyFolded(TTI, MinOffset, MaxOffset, Kind, AccessTy,
1484 BaseGV, BaseOffset, true, 0));
Dan Gohman045f8192010-01-22 00:46:49 +00001485}
1486
Chandler Carruth26c59fa2013-01-07 14:41:08 +00001487static bool isLegalUse(const TargetTransformInfo &TTI, int64_t MinOffset,
1488 int64_t MaxOffset, LSRUse::KindType Kind, Type *AccessTy,
1489 const Formula &F) {
Chandler Carruth6e479322013-01-07 15:04:40 +00001490 return isLegalUse(TTI, MinOffset, MaxOffset, Kind, AccessTy, F.BaseGV,
1491 F.BaseOffset, F.HasBaseReg, F.Scale);
Chandler Carruth26c59fa2013-01-07 14:41:08 +00001492}
1493
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00001494static bool isAMCompletelyFolded(const TargetTransformInfo &TTI,
1495 const LSRUse &LU, const Formula &F) {
1496 return isAMCompletelyFolded(TTI, LU.MinOffset, LU.MaxOffset, LU.Kind,
1497 LU.AccessTy, F.BaseGV, F.BaseOffset, F.HasBaseReg,
1498 F.Scale);
1499}
Quentin Colombet8aa7abe2013-05-31 17:20:29 +00001500
Quentin Colombetbf490d42013-05-31 21:29:03 +00001501static unsigned getScalingFactorCost(const TargetTransformInfo &TTI,
1502 const LSRUse &LU, const Formula &F) {
1503 if (!F.Scale)
1504 return 0;
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00001505
1506 // If the use is not completely folded in that instruction, we will have to
1507 // pay an extra cost only for scale != 1.
1508 if (!isAMCompletelyFolded(TTI, LU.MinOffset, LU.MaxOffset, LU.Kind,
1509 LU.AccessTy, F))
1510 return F.Scale != 1;
Quentin Colombetbf490d42013-05-31 21:29:03 +00001511
1512 switch (LU.Kind) {
1513 case LSRUse::Address: {
Quentin Colombet145eb972013-06-19 19:59:41 +00001514 // Check the scaling factor cost with both the min and max offsets.
1515 int ScaleCostMinOffset =
1516 TTI.getScalingFactorCost(LU.AccessTy, F.BaseGV,
1517 F.BaseOffset + LU.MinOffset,
1518 F.HasBaseReg, F.Scale);
1519 int ScaleCostMaxOffset =
1520 TTI.getScalingFactorCost(LU.AccessTy, F.BaseGV,
1521 F.BaseOffset + LU.MaxOffset,
1522 F.HasBaseReg, F.Scale);
1523
1524 assert(ScaleCostMinOffset >= 0 && ScaleCostMaxOffset >= 0 &&
1525 "Legal addressing mode has an illegal cost!");
1526 return std::max(ScaleCostMinOffset, ScaleCostMaxOffset);
Quentin Colombetbf490d42013-05-31 21:29:03 +00001527 }
1528 case LSRUse::ICmpZero:
Quentin Colombetbf490d42013-05-31 21:29:03 +00001529 case LSRUse::Basic:
1530 case LSRUse::Special:
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00001531 // The use is completely folded, i.e., everything is folded into the
1532 // instruction.
Quentin Colombetbf490d42013-05-31 21:29:03 +00001533 return 0;
1534 }
1535
1536 llvm_unreachable("Invalid LSRUse Kind!");
1537}
1538
Chandler Carruth26c59fa2013-01-07 14:41:08 +00001539static bool isAlwaysFoldable(const TargetTransformInfo &TTI,
Chris Lattner229907c2011-07-18 04:54:35 +00001540 LSRUse::KindType Kind, Type *AccessTy,
Chandler Carruth26c59fa2013-01-07 14:41:08 +00001541 GlobalValue *BaseGV, int64_t BaseOffset,
1542 bool HasBaseReg) {
Dan Gohman45774ce2010-02-12 10:34:29 +00001543 // Fast-path: zero is always foldable.
Chandler Carruth26c59fa2013-01-07 14:41:08 +00001544 if (BaseOffset == 0 && !BaseGV) return true;
Dan Gohman045f8192010-01-22 00:46:49 +00001545
Dan Gohman45774ce2010-02-12 10:34:29 +00001546 // Conservatively, create an address with an immediate and a
1547 // base and a scale.
Chandler Carruth26c59fa2013-01-07 14:41:08 +00001548 int64_t Scale = Kind == LSRUse::ICmpZero ? -1 : 1;
Dan Gohman045f8192010-01-22 00:46:49 +00001549
Dan Gohman20fab452010-05-19 23:43:12 +00001550 // Canonicalize a scale of 1 to a base register if the formula doesn't
1551 // already have a base register.
Chandler Carruth26c59fa2013-01-07 14:41:08 +00001552 if (!HasBaseReg && Scale == 1) {
1553 Scale = 0;
1554 HasBaseReg = true;
Dan Gohman20fab452010-05-19 23:43:12 +00001555 }
1556
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00001557 return isAMCompletelyFolded(TTI, Kind, AccessTy, BaseGV, BaseOffset,
1558 HasBaseReg, Scale);
Dan Gohman045f8192010-01-22 00:46:49 +00001559}
1560
Chandler Carruth26c59fa2013-01-07 14:41:08 +00001561static bool isAlwaysFoldable(const TargetTransformInfo &TTI,
1562 ScalarEvolution &SE, int64_t MinOffset,
1563 int64_t MaxOffset, LSRUse::KindType Kind,
1564 Type *AccessTy, const SCEV *S, bool HasBaseReg) {
Dan Gohman45774ce2010-02-12 10:34:29 +00001565 // Fast-path: zero is always foldable.
1566 if (S->isZero()) return true;
1567
1568 // Conservatively, create an address with an immediate and a
1569 // base and a scale.
Chandler Carruth26c59fa2013-01-07 14:41:08 +00001570 int64_t BaseOffset = ExtractImmediate(S, SE);
Dan Gohman45774ce2010-02-12 10:34:29 +00001571 GlobalValue *BaseGV = ExtractSymbol(S, SE);
1572
1573 // If there's anything else involved, it's not foldable.
1574 if (!S->isZero()) return false;
1575
1576 // Fast-path: zero is always foldable.
Chandler Carruth26c59fa2013-01-07 14:41:08 +00001577 if (BaseOffset == 0 && !BaseGV) return true;
Dan Gohman45774ce2010-02-12 10:34:29 +00001578
1579 // Conservatively, create an address with an immediate and a
1580 // base and a scale.
Chandler Carruth26c59fa2013-01-07 14:41:08 +00001581 int64_t Scale = Kind == LSRUse::ICmpZero ? -1 : 1;
Dan Gohman45774ce2010-02-12 10:34:29 +00001582
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00001583 return isAMCompletelyFolded(TTI, MinOffset, MaxOffset, Kind, AccessTy, BaseGV,
1584 BaseOffset, HasBaseReg, Scale);
Dan Gohman045f8192010-01-22 00:46:49 +00001585}
1586
Dan Gohman297fb8b2010-06-19 21:21:39 +00001587namespace {
1588
Andrew Trick29fe5f02012-01-09 19:50:34 +00001589/// IVInc - An individual increment in a Chain of IV increments.
1590/// Relate an IV user to an expression that computes the IV it uses from the IV
1591/// used by the previous link in the Chain.
1592///
1593/// For the head of a chain, IncExpr holds the absolute SCEV expression for the
1594/// original IVOperand. The head of the chain's IVOperand is only valid during
1595/// chain collection, before LSR replaces IV users. During chain generation,
1596/// IncExpr can be used to find the new IVOperand that computes the same
1597/// expression.
1598struct IVInc {
1599 Instruction *UserInst;
1600 Value* IVOperand;
1601 const SCEV *IncExpr;
1602
1603 IVInc(Instruction *U, Value *O, const SCEV *E):
1604 UserInst(U), IVOperand(O), IncExpr(E) {}
1605};
1606
1607// IVChain - The list of IV increments in program order.
1608// We typically add the head of a chain without finding subsequent links.
Jakob Stoklund Olesena0337d72012-04-26 23:33:09 +00001609struct IVChain {
1610 SmallVector<IVInc,1> Incs;
Jakob Stoklund Olesenc90abc82012-04-26 23:33:11 +00001611 const SCEV *ExprBase;
1612
Craig Topperf40110f2014-04-25 05:29:35 +00001613 IVChain() : ExprBase(nullptr) {}
Jakob Stoklund Olesenc90abc82012-04-26 23:33:11 +00001614
1615 IVChain(const IVInc &Head, const SCEV *Base)
1616 : Incs(1, Head), ExprBase(Base) {}
Jakob Stoklund Olesena0337d72012-04-26 23:33:09 +00001617
1618 typedef SmallVectorImpl<IVInc>::const_iterator const_iterator;
1619
1620 // begin - return the first increment in the chain.
1621 const_iterator begin() const {
1622 assert(!Incs.empty());
Benjamin Kramerb6d0bd42014-03-02 12:27:27 +00001623 return std::next(Incs.begin());
Jakob Stoklund Olesena0337d72012-04-26 23:33:09 +00001624 }
1625 const_iterator end() const {
1626 return Incs.end();
1627 }
1628
1629 // hasIncs - Returns true if this chain contains any increments.
1630 bool hasIncs() const { return Incs.size() >= 2; }
1631
1632 // add - Add an IVInc to the end of this chain.
1633 void add(const IVInc &X) { Incs.push_back(X); }
1634
1635 // tailUserInst - Returns the last UserInst in the chain.
1636 Instruction *tailUserInst() const { return Incs.back().UserInst; }
Jakob Stoklund Olesenc90abc82012-04-26 23:33:11 +00001637
1638 // isProfitableIncrement - Returns true if IncExpr can be profitably added to
1639 // this chain.
1640 bool isProfitableIncrement(const SCEV *OperExpr,
1641 const SCEV *IncExpr,
1642 ScalarEvolution&);
Jakob Stoklund Olesena0337d72012-04-26 23:33:09 +00001643};
Andrew Trick29fe5f02012-01-09 19:50:34 +00001644
1645/// ChainUsers - Helper for CollectChains to track multiple IV increment uses.
1646/// Distinguish between FarUsers that definitely cross IV increments and
1647/// NearUsers that may be used between IV increments.
1648struct ChainUsers {
1649 SmallPtrSet<Instruction*, 4> FarUsers;
1650 SmallPtrSet<Instruction*, 4> NearUsers;
1651};
1652
Dan Gohman45774ce2010-02-12 10:34:29 +00001653/// LSRInstance - This class holds state for the main loop strength reduction
1654/// logic.
1655class LSRInstance {
1656 IVUsers &IU;
1657 ScalarEvolution &SE;
1658 DominatorTree &DT;
Dan Gohman607e02b2010-04-09 22:07:05 +00001659 LoopInfo &LI;
Chandler Carruth26c59fa2013-01-07 14:41:08 +00001660 const TargetTransformInfo &TTI;
Dan Gohman45774ce2010-02-12 10:34:29 +00001661 Loop *const L;
1662 bool Changed;
1663
1664 /// IVIncInsertPos - This is the insert position that the current loop's
1665 /// induction variable increment should be placed. In simple loops, this is
1666 /// the latch block's terminator. But in more complicated cases, this is a
1667 /// position which will dominate all the in-loop post-increment users.
1668 Instruction *IVIncInsertPos;
1669
1670 /// Factors - Interesting factors between use strides.
1671 SmallSetVector<int64_t, 8> Factors;
1672
1673 /// Types - Interesting use types, to facilitate truncation reuse.
Chris Lattner229907c2011-07-18 04:54:35 +00001674 SmallSetVector<Type *, 4> Types;
Dan Gohman45774ce2010-02-12 10:34:29 +00001675
1676 /// Fixups - The list of operands which are to be replaced.
1677 SmallVector<LSRFixup, 16> Fixups;
1678
1679 /// Uses - The list of interesting uses.
1680 SmallVector<LSRUse, 16> Uses;
1681
1682 /// RegUses - Track which uses use which register candidates.
1683 RegUseTracker RegUses;
1684
Andrew Trick29fe5f02012-01-09 19:50:34 +00001685 // Limit the number of chains to avoid quadratic behavior. We don't expect to
1686 // have more than a few IV increment chains in a loop. Missing a Chain falls
1687 // back to normal LSR behavior for those uses.
1688 static const unsigned MaxChains = 8;
1689
1690 /// IVChainVec - IV users can form a chain of IV increments.
1691 SmallVector<IVChain, MaxChains> IVChainVec;
1692
Andrew Trick248d4102012-01-09 21:18:52 +00001693 /// IVIncSet - IV users that belong to profitable IVChains.
1694 SmallPtrSet<Use*, MaxChains> IVIncSet;
1695
Dan Gohman45774ce2010-02-12 10:34:29 +00001696 void OptimizeShadowIV();
1697 bool FindIVUserForCond(ICmpInst *Cond, IVStrideUse *&CondUse);
1698 ICmpInst *OptimizeMax(ICmpInst *Cond, IVStrideUse* &CondUse);
Dan Gohman4c4043c2010-05-20 20:05:31 +00001699 void OptimizeLoopTermCond();
Dan Gohman45774ce2010-02-12 10:34:29 +00001700
Andrew Trick29fe5f02012-01-09 19:50:34 +00001701 void ChainInstruction(Instruction *UserInst, Instruction *IVOper,
1702 SmallVectorImpl<ChainUsers> &ChainUsersVec);
Andrew Trick248d4102012-01-09 21:18:52 +00001703 void FinalizeChain(IVChain &Chain);
Andrew Trick29fe5f02012-01-09 19:50:34 +00001704 void CollectChains();
Andrew Trick248d4102012-01-09 21:18:52 +00001705 void GenerateIVChain(const IVChain &Chain, SCEVExpander &Rewriter,
1706 SmallVectorImpl<WeakVH> &DeadInsts);
Andrew Trick29fe5f02012-01-09 19:50:34 +00001707
Dan Gohman45774ce2010-02-12 10:34:29 +00001708 void CollectInterestingTypesAndFactors();
1709 void CollectFixupsAndInitialFormulae();
1710
1711 LSRFixup &getNewFixup() {
1712 Fixups.push_back(LSRFixup());
1713 return Fixups.back();
1714 }
1715
1716 // Support for sharing of LSRUses between LSRFixups.
Benjamin Kramer62fb0cf2014-03-15 17:17:48 +00001717 typedef DenseMap<LSRUse::SCEVUseKindPair, size_t> UseMapTy;
Dan Gohman45774ce2010-02-12 10:34:29 +00001718 UseMapTy UseMap;
1719
Dan Gohman110ed642010-09-01 01:45:53 +00001720 bool reconcileNewOffset(LSRUse &LU, int64_t NewOffset, bool HasBaseReg,
Chris Lattner229907c2011-07-18 04:54:35 +00001721 LSRUse::KindType Kind, Type *AccessTy);
Dan Gohman45774ce2010-02-12 10:34:29 +00001722
1723 std::pair<size_t, int64_t> getUse(const SCEV *&Expr,
1724 LSRUse::KindType Kind,
Chris Lattner229907c2011-07-18 04:54:35 +00001725 Type *AccessTy);
Dan Gohman45774ce2010-02-12 10:34:29 +00001726
Dan Gohmana7b68d62010-10-07 23:33:43 +00001727 void DeleteUse(LSRUse &LU, size_t LUIdx);
Dan Gohman80a96082010-05-20 15:17:54 +00001728
Dan Gohman110ed642010-09-01 01:45:53 +00001729 LSRUse *FindUseWithSimilarFormula(const Formula &F, const LSRUse &OrigLU);
Dan Gohman20fab452010-05-19 23:43:12 +00001730
Dan Gohman8c16b382010-02-22 04:11:59 +00001731 void InsertInitialFormula(const SCEV *S, LSRUse &LU, size_t LUIdx);
Dan Gohman45774ce2010-02-12 10:34:29 +00001732 void InsertSupplementalFormula(const SCEV *S, LSRUse &LU, size_t LUIdx);
1733 void CountRegisters(const Formula &F, size_t LUIdx);
1734 bool InsertFormula(LSRUse &LU, unsigned LUIdx, const Formula &F);
1735
1736 void CollectLoopInvariantFixupsAndFormulae();
1737
1738 void GenerateReassociations(LSRUse &LU, unsigned LUIdx, Formula Base,
1739 unsigned Depth = 0);
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00001740
1741 void GenerateReassociationsImpl(LSRUse &LU, unsigned LUIdx,
1742 const Formula &Base, unsigned Depth,
1743 size_t Idx, bool IsScaledReg = false);
Dan Gohman45774ce2010-02-12 10:34:29 +00001744 void GenerateCombinations(LSRUse &LU, unsigned LUIdx, Formula Base);
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00001745 void GenerateSymbolicOffsetsImpl(LSRUse &LU, unsigned LUIdx,
1746 const Formula &Base, size_t Idx,
1747 bool IsScaledReg = false);
Dan Gohman45774ce2010-02-12 10:34:29 +00001748 void GenerateSymbolicOffsets(LSRUse &LU, unsigned LUIdx, Formula Base);
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00001749 void GenerateConstantOffsetsImpl(LSRUse &LU, unsigned LUIdx,
1750 const Formula &Base,
1751 const SmallVectorImpl<int64_t> &Worklist,
1752 size_t Idx, bool IsScaledReg = false);
Dan Gohman45774ce2010-02-12 10:34:29 +00001753 void GenerateConstantOffsets(LSRUse &LU, unsigned LUIdx, Formula Base);
1754 void GenerateICmpZeroScales(LSRUse &LU, unsigned LUIdx, Formula Base);
1755 void GenerateScales(LSRUse &LU, unsigned LUIdx, Formula Base);
1756 void GenerateTruncates(LSRUse &LU, unsigned LUIdx, Formula Base);
1757 void GenerateCrossUseConstantOffsets();
1758 void GenerateAllReuseFormulae();
1759
1760 void FilterOutUndesirableDedicatedRegisters();
Dan Gohmana4eca052010-05-18 22:51:59 +00001761
1762 size_t EstimateSearchSpaceComplexity() const;
Dan Gohmane9e08732010-08-29 16:09:42 +00001763 void NarrowSearchSpaceByDetectingSupersets();
1764 void NarrowSearchSpaceByCollapsingUnrolledCode();
Dan Gohman002ff892010-08-29 16:39:22 +00001765 void NarrowSearchSpaceByRefilteringUndesirableDedicatedRegisters();
Dan Gohmane9e08732010-08-29 16:09:42 +00001766 void NarrowSearchSpaceByPickingWinnerRegs();
Dan Gohman45774ce2010-02-12 10:34:29 +00001767 void NarrowSearchSpaceUsingHeuristics();
1768
1769 void SolveRecurse(SmallVectorImpl<const Formula *> &Solution,
1770 Cost &SolutionCost,
1771 SmallVectorImpl<const Formula *> &Workspace,
1772 const Cost &CurCost,
1773 const SmallPtrSet<const SCEV *, 16> &CurRegs,
1774 DenseSet<const SCEV *> &VisitedRegs) const;
1775 void Solve(SmallVectorImpl<const Formula *> &Solution) const;
1776
Dan Gohman607e02b2010-04-09 22:07:05 +00001777 BasicBlock::iterator
1778 HoistInsertPosition(BasicBlock::iterator IP,
1779 const SmallVectorImpl<Instruction *> &Inputs) const;
Andrew Trickc908b432012-01-20 07:41:13 +00001780 BasicBlock::iterator
1781 AdjustInsertPositionForExpand(BasicBlock::iterator IP,
1782 const LSRFixup &LF,
1783 const LSRUse &LU,
1784 SCEVExpander &Rewriter) const;
Dan Gohmand2df6432010-04-09 02:00:38 +00001785
Dan Gohman45774ce2010-02-12 10:34:29 +00001786 Value *Expand(const LSRFixup &LF,
1787 const Formula &F,
Dan Gohman8c16b382010-02-22 04:11:59 +00001788 BasicBlock::iterator IP,
Dan Gohman45774ce2010-02-12 10:34:29 +00001789 SCEVExpander &Rewriter,
Dan Gohman8c16b382010-02-22 04:11:59 +00001790 SmallVectorImpl<WeakVH> &DeadInsts) const;
Dan Gohman6deab962010-02-16 20:25:07 +00001791 void RewriteForPHI(PHINode *PN, const LSRFixup &LF,
1792 const Formula &F,
Dan Gohman6deab962010-02-16 20:25:07 +00001793 SCEVExpander &Rewriter,
1794 SmallVectorImpl<WeakVH> &DeadInsts,
Dan Gohman6deab962010-02-16 20:25:07 +00001795 Pass *P) const;
Dan Gohman45774ce2010-02-12 10:34:29 +00001796 void Rewrite(const LSRFixup &LF,
1797 const Formula &F,
Dan Gohman45774ce2010-02-12 10:34:29 +00001798 SCEVExpander &Rewriter,
1799 SmallVectorImpl<WeakVH> &DeadInsts,
Dan Gohman45774ce2010-02-12 10:34:29 +00001800 Pass *P) const;
1801 void ImplementSolution(const SmallVectorImpl<const Formula *> &Solution,
1802 Pass *P);
1803
Andrew Trickdc18e382011-12-13 00:55:33 +00001804public:
Chandler Carruth26c59fa2013-01-07 14:41:08 +00001805 LSRInstance(Loop *L, Pass *P);
Dan Gohman45774ce2010-02-12 10:34:29 +00001806
1807 bool getChanged() const { return Changed; }
1808
1809 void print_factors_and_types(raw_ostream &OS) const;
1810 void print_fixups(raw_ostream &OS) const;
1811 void print_uses(raw_ostream &OS) const;
1812 void print(raw_ostream &OS) const;
1813 void dump() const;
1814};
1815
1816}
1817
1818/// OptimizeShadowIV - If IV is used in a int-to-float cast
Dan Gohman8b0a4192010-03-01 17:49:51 +00001819/// inside the loop then try to eliminate the cast operation.
Dan Gohman45774ce2010-02-12 10:34:29 +00001820void LSRInstance::OptimizeShadowIV() {
1821 const SCEV *BackedgeTakenCount = SE.getBackedgeTakenCount(L);
1822 if (isa<SCEVCouldNotCompute>(BackedgeTakenCount))
1823 return;
1824
1825 for (IVUsers::const_iterator UI = IU.begin(), E = IU.end();
1826 UI != E; /* empty */) {
1827 IVUsers::const_iterator CandidateUI = UI;
1828 ++UI;
1829 Instruction *ShadowUse = CandidateUI->getUser();
Craig Topperf40110f2014-04-25 05:29:35 +00001830 Type *DestTy = nullptr;
Andrew Trick858e9f02011-07-21 01:05:01 +00001831 bool IsSigned = false;
Dan Gohman45774ce2010-02-12 10:34:29 +00001832
1833 /* If shadow use is a int->float cast then insert a second IV
1834 to eliminate this cast.
1835
1836 for (unsigned i = 0; i < n; ++i)
1837 foo((double)i);
1838
1839 is transformed into
1840
1841 double d = 0.0;
1842 for (unsigned i = 0; i < n; ++i, ++d)
1843 foo(d);
1844 */
Andrew Trick858e9f02011-07-21 01:05:01 +00001845 if (UIToFPInst *UCast = dyn_cast<UIToFPInst>(CandidateUI->getUser())) {
1846 IsSigned = false;
Dan Gohman45774ce2010-02-12 10:34:29 +00001847 DestTy = UCast->getDestTy();
Andrew Trick858e9f02011-07-21 01:05:01 +00001848 }
1849 else if (SIToFPInst *SCast = dyn_cast<SIToFPInst>(CandidateUI->getUser())) {
1850 IsSigned = true;
Dan Gohman45774ce2010-02-12 10:34:29 +00001851 DestTy = SCast->getDestTy();
Andrew Trick858e9f02011-07-21 01:05:01 +00001852 }
Dan Gohman45774ce2010-02-12 10:34:29 +00001853 if (!DestTy) continue;
1854
Chandler Carruth26c59fa2013-01-07 14:41:08 +00001855 // If target does not support DestTy natively then do not apply
1856 // this transformation.
1857 if (!TTI.isTypeLegal(DestTy)) continue;
Dan Gohman45774ce2010-02-12 10:34:29 +00001858
1859 PHINode *PH = dyn_cast<PHINode>(ShadowUse->getOperand(0));
1860 if (!PH) continue;
1861 if (PH->getNumIncomingValues() != 2) continue;
1862
Chris Lattner229907c2011-07-18 04:54:35 +00001863 Type *SrcTy = PH->getType();
Dan Gohman45774ce2010-02-12 10:34:29 +00001864 int Mantissa = DestTy->getFPMantissaWidth();
1865 if (Mantissa == -1) continue;
1866 if ((int)SE.getTypeSizeInBits(SrcTy) > Mantissa)
1867 continue;
1868
1869 unsigned Entry, Latch;
1870 if (PH->getIncomingBlock(0) == L->getLoopPreheader()) {
1871 Entry = 0;
1872 Latch = 1;
Dan Gohman045f8192010-01-22 00:46:49 +00001873 } else {
Dan Gohman45774ce2010-02-12 10:34:29 +00001874 Entry = 1;
1875 Latch = 0;
Dan Gohman045f8192010-01-22 00:46:49 +00001876 }
Dan Gohman045f8192010-01-22 00:46:49 +00001877
Dan Gohman45774ce2010-02-12 10:34:29 +00001878 ConstantInt *Init = dyn_cast<ConstantInt>(PH->getIncomingValue(Entry));
1879 if (!Init) continue;
Andrew Trick858e9f02011-07-21 01:05:01 +00001880 Constant *NewInit = ConstantFP::get(DestTy, IsSigned ?
Andrew Trickbd243d02011-07-21 01:45:54 +00001881 (double)Init->getSExtValue() :
1882 (double)Init->getZExtValue());
Dan Gohman045f8192010-01-22 00:46:49 +00001883
Dan Gohman45774ce2010-02-12 10:34:29 +00001884 BinaryOperator *Incr =
1885 dyn_cast<BinaryOperator>(PH->getIncomingValue(Latch));
1886 if (!Incr) continue;
1887 if (Incr->getOpcode() != Instruction::Add
1888 && Incr->getOpcode() != Instruction::Sub)
Dan Gohman045f8192010-01-22 00:46:49 +00001889 continue;
Dan Gohman045f8192010-01-22 00:46:49 +00001890
Dan Gohman45774ce2010-02-12 10:34:29 +00001891 /* Initialize new IV, double d = 0.0 in above example. */
Craig Topperf40110f2014-04-25 05:29:35 +00001892 ConstantInt *C = nullptr;
Dan Gohman45774ce2010-02-12 10:34:29 +00001893 if (Incr->getOperand(0) == PH)
1894 C = dyn_cast<ConstantInt>(Incr->getOperand(1));
1895 else if (Incr->getOperand(1) == PH)
1896 C = dyn_cast<ConstantInt>(Incr->getOperand(0));
Dan Gohman045f8192010-01-22 00:46:49 +00001897 else
Dan Gohman045f8192010-01-22 00:46:49 +00001898 continue;
1899
Dan Gohman45774ce2010-02-12 10:34:29 +00001900 if (!C) continue;
Dan Gohman045f8192010-01-22 00:46:49 +00001901
Dan Gohman45774ce2010-02-12 10:34:29 +00001902 // Ignore negative constants, as the code below doesn't handle them
1903 // correctly. TODO: Remove this restriction.
1904 if (!C->getValue().isStrictlyPositive()) continue;
Dan Gohman045f8192010-01-22 00:46:49 +00001905
Dan Gohman45774ce2010-02-12 10:34:29 +00001906 /* Add new PHINode. */
Jay Foad52131342011-03-30 11:28:46 +00001907 PHINode *NewPH = PHINode::Create(DestTy, 2, "IV.S.", PH);
Dan Gohman045f8192010-01-22 00:46:49 +00001908
Dan Gohman45774ce2010-02-12 10:34:29 +00001909 /* create new increment. '++d' in above example. */
1910 Constant *CFP = ConstantFP::get(DestTy, C->getZExtValue());
1911 BinaryOperator *NewIncr =
1912 BinaryOperator::Create(Incr->getOpcode() == Instruction::Add ?
1913 Instruction::FAdd : Instruction::FSub,
1914 NewPH, CFP, "IV.S.next.", Incr);
Dan Gohman045f8192010-01-22 00:46:49 +00001915
Dan Gohman45774ce2010-02-12 10:34:29 +00001916 NewPH->addIncoming(NewInit, PH->getIncomingBlock(Entry));
1917 NewPH->addIncoming(NewIncr, PH->getIncomingBlock(Latch));
Dan Gohman045f8192010-01-22 00:46:49 +00001918
Dan Gohman45774ce2010-02-12 10:34:29 +00001919 /* Remove cast operation */
1920 ShadowUse->replaceAllUsesWith(NewPH);
1921 ShadowUse->eraseFromParent();
Dan Gohman4c4043c2010-05-20 20:05:31 +00001922 Changed = true;
Dan Gohman45774ce2010-02-12 10:34:29 +00001923 break;
Dan Gohman045f8192010-01-22 00:46:49 +00001924 }
1925}
1926
1927/// FindIVUserForCond - If Cond has an operand that is an expression of an IV,
1928/// set the IV user and stride information and return true, otherwise return
1929/// false.
Dan Gohmanab5fb7f2010-05-20 19:44:23 +00001930bool LSRInstance::FindIVUserForCond(ICmpInst *Cond, IVStrideUse *&CondUse) {
Dan Gohman45774ce2010-02-12 10:34:29 +00001931 for (IVUsers::iterator UI = IU.begin(), E = IU.end(); UI != E; ++UI)
1932 if (UI->getUser() == Cond) {
1933 // NOTE: we could handle setcc instructions with multiple uses here, but
1934 // InstCombine does it as well for simple uses, it's not clear that it
1935 // occurs enough in real life to handle.
1936 CondUse = UI;
1937 return true;
1938 }
Dan Gohman045f8192010-01-22 00:46:49 +00001939 return false;
Evan Cheng133694d2007-10-25 09:11:16 +00001940}
1941
Dan Gohman045f8192010-01-22 00:46:49 +00001942/// OptimizeMax - Rewrite the loop's terminating condition if it uses
1943/// a max computation.
1944///
1945/// This is a narrow solution to a specific, but acute, problem. For loops
1946/// like this:
1947///
1948/// i = 0;
1949/// do {
1950/// p[i] = 0.0;
1951/// } while (++i < n);
1952///
1953/// the trip count isn't just 'n', because 'n' might not be positive. And
1954/// unfortunately this can come up even for loops where the user didn't use
1955/// a C do-while loop. For example, seemingly well-behaved top-test loops
1956/// will commonly be lowered like this:
1957//
1958/// if (n > 0) {
1959/// i = 0;
1960/// do {
1961/// p[i] = 0.0;
1962/// } while (++i < n);
1963/// }
1964///
1965/// and then it's possible for subsequent optimization to obscure the if
1966/// test in such a way that indvars can't find it.
1967///
1968/// When indvars can't find the if test in loops like this, it creates a
1969/// max expression, which allows it to give the loop a canonical
1970/// induction variable:
1971///
1972/// i = 0;
1973/// max = n < 1 ? 1 : n;
1974/// do {
1975/// p[i] = 0.0;
1976/// } while (++i != max);
1977///
1978/// Canonical induction variables are necessary because the loop passes
1979/// are designed around them. The most obvious example of this is the
1980/// LoopInfo analysis, which doesn't remember trip count values. It
1981/// expects to be able to rediscover the trip count each time it is
Dan Gohman45774ce2010-02-12 10:34:29 +00001982/// needed, and it does this using a simple analysis that only succeeds if
Dan Gohman045f8192010-01-22 00:46:49 +00001983/// the loop has a canonical induction variable.
1984///
1985/// However, when it comes time to generate code, the maximum operation
1986/// can be quite costly, especially if it's inside of an outer loop.
1987///
1988/// This function solves this problem by detecting this type of loop and
1989/// rewriting their conditions from ICMP_NE back to ICMP_SLT, and deleting
1990/// the instructions for the maximum computation.
1991///
Dan Gohman45774ce2010-02-12 10:34:29 +00001992ICmpInst *LSRInstance::OptimizeMax(ICmpInst *Cond, IVStrideUse* &CondUse) {
Dan Gohman045f8192010-01-22 00:46:49 +00001993 // Check that the loop matches the pattern we're looking for.
1994 if (Cond->getPredicate() != CmpInst::ICMP_EQ &&
1995 Cond->getPredicate() != CmpInst::ICMP_NE)
1996 return Cond;
Dan Gohman51ad99d2010-01-21 02:09:26 +00001997
Dan Gohman045f8192010-01-22 00:46:49 +00001998 SelectInst *Sel = dyn_cast<SelectInst>(Cond->getOperand(1));
1999 if (!Sel || !Sel->hasOneUse()) return Cond;
Dan Gohman51ad99d2010-01-21 02:09:26 +00002000
Dan Gohman45774ce2010-02-12 10:34:29 +00002001 const SCEV *BackedgeTakenCount = SE.getBackedgeTakenCount(L);
Dan Gohman045f8192010-01-22 00:46:49 +00002002 if (isa<SCEVCouldNotCompute>(BackedgeTakenCount))
2003 return Cond;
Dan Gohman1d2ded72010-05-03 22:09:21 +00002004 const SCEV *One = SE.getConstant(BackedgeTakenCount->getType(), 1);
Dan Gohman51ad99d2010-01-21 02:09:26 +00002005
Dan Gohman045f8192010-01-22 00:46:49 +00002006 // Add one to the backedge-taken count to get the trip count.
Dan Gohman9b7632d2010-08-16 15:39:27 +00002007 const SCEV *IterationCount = SE.getAddExpr(One, BackedgeTakenCount);
Dan Gohman534ba372010-04-24 03:13:44 +00002008 if (IterationCount != SE.getSCEV(Sel)) return Cond;
Dan Gohman045f8192010-01-22 00:46:49 +00002009
Dan Gohman534ba372010-04-24 03:13:44 +00002010 // Check for a max calculation that matches the pattern. There's no check
2011 // for ICMP_ULE here because the comparison would be with zero, which
2012 // isn't interesting.
2013 CmpInst::Predicate Pred = ICmpInst::BAD_ICMP_PREDICATE;
Craig Topperf40110f2014-04-25 05:29:35 +00002014 const SCEVNAryExpr *Max = nullptr;
Dan Gohman534ba372010-04-24 03:13:44 +00002015 if (const SCEVSMaxExpr *S = dyn_cast<SCEVSMaxExpr>(BackedgeTakenCount)) {
2016 Pred = ICmpInst::ICMP_SLE;
2017 Max = S;
2018 } else if (const SCEVSMaxExpr *S = dyn_cast<SCEVSMaxExpr>(IterationCount)) {
2019 Pred = ICmpInst::ICMP_SLT;
2020 Max = S;
2021 } else if (const SCEVUMaxExpr *U = dyn_cast<SCEVUMaxExpr>(IterationCount)) {
2022 Pred = ICmpInst::ICMP_ULT;
2023 Max = U;
2024 } else {
2025 // No match; bail.
Dan Gohman045f8192010-01-22 00:46:49 +00002026 return Cond;
Dan Gohman534ba372010-04-24 03:13:44 +00002027 }
Dan Gohman045f8192010-01-22 00:46:49 +00002028
2029 // To handle a max with more than two operands, this optimization would
2030 // require additional checking and setup.
2031 if (Max->getNumOperands() != 2)
2032 return Cond;
2033
2034 const SCEV *MaxLHS = Max->getOperand(0);
2035 const SCEV *MaxRHS = Max->getOperand(1);
Dan Gohman534ba372010-04-24 03:13:44 +00002036
2037 // ScalarEvolution canonicalizes constants to the left. For < and >, look
2038 // for a comparison with 1. For <= and >=, a comparison with zero.
2039 if (!MaxLHS ||
2040 (ICmpInst::isTrueWhenEqual(Pred) ? !MaxLHS->isZero() : (MaxLHS != One)))
2041 return Cond;
2042
Dan Gohman045f8192010-01-22 00:46:49 +00002043 // Check the relevant induction variable for conformance to
2044 // the pattern.
Dan Gohman45774ce2010-02-12 10:34:29 +00002045 const SCEV *IV = SE.getSCEV(Cond->getOperand(0));
Dan Gohman045f8192010-01-22 00:46:49 +00002046 const SCEVAddRecExpr *AR = dyn_cast<SCEVAddRecExpr>(IV);
2047 if (!AR || !AR->isAffine() ||
2048 AR->getStart() != One ||
Dan Gohman45774ce2010-02-12 10:34:29 +00002049 AR->getStepRecurrence(SE) != One)
Dan Gohman045f8192010-01-22 00:46:49 +00002050 return Cond;
2051
2052 assert(AR->getLoop() == L &&
2053 "Loop condition operand is an addrec in a different loop!");
2054
2055 // Check the right operand of the select, and remember it, as it will
2056 // be used in the new comparison instruction.
Craig Topperf40110f2014-04-25 05:29:35 +00002057 Value *NewRHS = nullptr;
Dan Gohman534ba372010-04-24 03:13:44 +00002058 if (ICmpInst::isTrueWhenEqual(Pred)) {
2059 // Look for n+1, and grab n.
2060 if (AddOperator *BO = dyn_cast<AddOperator>(Sel->getOperand(1)))
Jakub Staszakf6df1e32013-03-24 09:25:47 +00002061 if (ConstantInt *BO1 = dyn_cast<ConstantInt>(BO->getOperand(1)))
2062 if (BO1->isOne() && SE.getSCEV(BO->getOperand(0)) == MaxRHS)
2063 NewRHS = BO->getOperand(0);
Dan Gohman534ba372010-04-24 03:13:44 +00002064 if (AddOperator *BO = dyn_cast<AddOperator>(Sel->getOperand(2)))
Jakub Staszakf6df1e32013-03-24 09:25:47 +00002065 if (ConstantInt *BO1 = dyn_cast<ConstantInt>(BO->getOperand(1)))
2066 if (BO1->isOne() && SE.getSCEV(BO->getOperand(0)) == MaxRHS)
2067 NewRHS = BO->getOperand(0);
Dan Gohman534ba372010-04-24 03:13:44 +00002068 if (!NewRHS)
2069 return Cond;
2070 } else if (SE.getSCEV(Sel->getOperand(1)) == MaxRHS)
Dan Gohman045f8192010-01-22 00:46:49 +00002071 NewRHS = Sel->getOperand(1);
Dan Gohman45774ce2010-02-12 10:34:29 +00002072 else if (SE.getSCEV(Sel->getOperand(2)) == MaxRHS)
Dan Gohman045f8192010-01-22 00:46:49 +00002073 NewRHS = Sel->getOperand(2);
Dan Gohman1081f1a2010-06-22 23:07:13 +00002074 else if (const SCEVUnknown *SU = dyn_cast<SCEVUnknown>(MaxRHS))
2075 NewRHS = SU->getValue();
Dan Gohman534ba372010-04-24 03:13:44 +00002076 else
Dan Gohman1081f1a2010-06-22 23:07:13 +00002077 // Max doesn't match expected pattern.
2078 return Cond;
Dan Gohman045f8192010-01-22 00:46:49 +00002079
2080 // Determine the new comparison opcode. It may be signed or unsigned,
2081 // and the original comparison may be either equality or inequality.
Dan Gohman045f8192010-01-22 00:46:49 +00002082 if (Cond->getPredicate() == CmpInst::ICMP_EQ)
2083 Pred = CmpInst::getInversePredicate(Pred);
2084
2085 // Ok, everything looks ok to change the condition into an SLT or SGE and
2086 // delete the max calculation.
2087 ICmpInst *NewCond =
2088 new ICmpInst(Cond, Pred, Cond->getOperand(0), NewRHS, "scmp");
2089
2090 // Delete the max calculation instructions.
2091 Cond->replaceAllUsesWith(NewCond);
2092 CondUse->setUser(NewCond);
2093 Instruction *Cmp = cast<Instruction>(Sel->getOperand(0));
2094 Cond->eraseFromParent();
2095 Sel->eraseFromParent();
2096 if (Cmp->use_empty())
2097 Cmp->eraseFromParent();
2098 return NewCond;
Dan Gohman68e77352008-09-15 21:22:06 +00002099}
2100
Jim Grosbach60f48542009-11-17 17:53:56 +00002101/// OptimizeLoopTermCond - Change loop terminating condition to use the
Evan Cheng85a9f432009-11-12 07:35:05 +00002102/// postinc iv when possible.
Dan Gohman4c4043c2010-05-20 20:05:31 +00002103void
Dan Gohman45774ce2010-02-12 10:34:29 +00002104LSRInstance::OptimizeLoopTermCond() {
2105 SmallPtrSet<Instruction *, 4> PostIncs;
2106
Evan Cheng85a9f432009-11-12 07:35:05 +00002107 BasicBlock *LatchBlock = L->getLoopLatch();
Evan Chengba4e5da72009-11-17 18:10:11 +00002108 SmallVector<BasicBlock*, 8> ExitingBlocks;
2109 L->getExitingBlocks(ExitingBlocks);
Jim Grosbach60f48542009-11-17 17:53:56 +00002110
Evan Chengba4e5da72009-11-17 18:10:11 +00002111 for (unsigned i = 0, e = ExitingBlocks.size(); i != e; ++i) {
2112 BasicBlock *ExitingBlock = ExitingBlocks[i];
Evan Cheng85a9f432009-11-12 07:35:05 +00002113
Dan Gohman45774ce2010-02-12 10:34:29 +00002114 // Get the terminating condition for the loop if possible. If we
Evan Chengba4e5da72009-11-17 18:10:11 +00002115 // can, we want to change it to use a post-incremented version of its
2116 // induction variable, to allow coalescing the live ranges for the IV into
2117 // one register value.
Evan Cheng85a9f432009-11-12 07:35:05 +00002118
Evan Chengba4e5da72009-11-17 18:10:11 +00002119 BranchInst *TermBr = dyn_cast<BranchInst>(ExitingBlock->getTerminator());
2120 if (!TermBr)
2121 continue;
2122 // FIXME: Overly conservative, termination condition could be an 'or' etc..
2123 if (TermBr->isUnconditional() || !isa<ICmpInst>(TermBr->getCondition()))
2124 continue;
Evan Cheng85a9f432009-11-12 07:35:05 +00002125
Evan Chengba4e5da72009-11-17 18:10:11 +00002126 // Search IVUsesByStride to find Cond's IVUse if there is one.
Craig Topperf40110f2014-04-25 05:29:35 +00002127 IVStrideUse *CondUse = nullptr;
Evan Chengba4e5da72009-11-17 18:10:11 +00002128 ICmpInst *Cond = cast<ICmpInst>(TermBr->getCondition());
Dan Gohman45774ce2010-02-12 10:34:29 +00002129 if (!FindIVUserForCond(Cond, CondUse))
Evan Chengba4e5da72009-11-17 18:10:11 +00002130 continue;
2131
Evan Chengba4e5da72009-11-17 18:10:11 +00002132 // If the trip count is computed in terms of a max (due to ScalarEvolution
2133 // being unable to find a sufficient guard, for example), change the loop
2134 // comparison to use SLT or ULT instead of NE.
Dan Gohman45774ce2010-02-12 10:34:29 +00002135 // One consequence of doing this now is that it disrupts the count-down
2136 // optimization. That's not always a bad thing though, because in such
2137 // cases it may still be worthwhile to avoid a max.
2138 Cond = OptimizeMax(Cond, CondUse);
Evan Chengba4e5da72009-11-17 18:10:11 +00002139
Dan Gohman45774ce2010-02-12 10:34:29 +00002140 // If this exiting block dominates the latch block, it may also use
2141 // the post-inc value if it won't be shared with other uses.
2142 // Check for dominance.
2143 if (!DT.dominates(ExitingBlock, LatchBlock))
Dan Gohman045f8192010-01-22 00:46:49 +00002144 continue;
Evan Chengba4e5da72009-11-17 18:10:11 +00002145
Dan Gohman45774ce2010-02-12 10:34:29 +00002146 // Conservatively avoid trying to use the post-inc value in non-latch
2147 // exits if there may be pre-inc users in intervening blocks.
Dan Gohman2d0f96d2010-02-14 03:21:49 +00002148 if (LatchBlock != ExitingBlock)
Dan Gohman45774ce2010-02-12 10:34:29 +00002149 for (IVUsers::const_iterator UI = IU.begin(), E = IU.end(); UI != E; ++UI)
2150 // Test if the use is reachable from the exiting block. This dominator
2151 // query is a conservative approximation of reachability.
2152 if (&*UI != CondUse &&
2153 !DT.properlyDominates(UI->getUser()->getParent(), ExitingBlock)) {
2154 // Conservatively assume there may be reuse if the quotient of their
2155 // strides could be a legal scale.
Dan Gohmane637ff52010-04-19 21:48:58 +00002156 const SCEV *A = IU.getStride(*CondUse, L);
2157 const SCEV *B = IU.getStride(*UI, L);
Dan Gohmand006ab92010-04-07 22:27:08 +00002158 if (!A || !B) continue;
Dan Gohman45774ce2010-02-12 10:34:29 +00002159 if (SE.getTypeSizeInBits(A->getType()) !=
2160 SE.getTypeSizeInBits(B->getType())) {
2161 if (SE.getTypeSizeInBits(A->getType()) >
2162 SE.getTypeSizeInBits(B->getType()))
2163 B = SE.getSignExtendExpr(B, A->getType());
2164 else
2165 A = SE.getSignExtendExpr(A, B->getType());
2166 }
2167 if (const SCEVConstant *D =
Dan Gohman4eebb942010-02-19 19:35:48 +00002168 dyn_cast_or_null<SCEVConstant>(getExactSDiv(B, A, SE))) {
Dan Gohman86110fa2010-05-20 22:25:20 +00002169 const ConstantInt *C = D->getValue();
Dan Gohman45774ce2010-02-12 10:34:29 +00002170 // Stride of one or negative one can have reuse with non-addresses.
Dan Gohman86110fa2010-05-20 22:25:20 +00002171 if (C->isOne() || C->isAllOnesValue())
Dan Gohman45774ce2010-02-12 10:34:29 +00002172 goto decline_post_inc;
2173 // Avoid weird situations.
Dan Gohman86110fa2010-05-20 22:25:20 +00002174 if (C->getValue().getMinSignedBits() >= 64 ||
2175 C->getValue().isMinSignedValue())
Dan Gohman45774ce2010-02-12 10:34:29 +00002176 goto decline_post_inc;
2177 // Check for possible scaled-address reuse.
Chris Lattner229907c2011-07-18 04:54:35 +00002178 Type *AccessTy = getAccessType(UI->getUser());
Chandler Carruth26c59fa2013-01-07 14:41:08 +00002179 int64_t Scale = C->getSExtValue();
Craig Topperf40110f2014-04-25 05:29:35 +00002180 if (TTI.isLegalAddressingMode(AccessTy, /*BaseGV=*/ nullptr,
Chandler Carruth26c59fa2013-01-07 14:41:08 +00002181 /*BaseOffset=*/ 0,
2182 /*HasBaseReg=*/ false, Scale))
Dan Gohman45774ce2010-02-12 10:34:29 +00002183 goto decline_post_inc;
Chandler Carruth26c59fa2013-01-07 14:41:08 +00002184 Scale = -Scale;
Craig Topperf40110f2014-04-25 05:29:35 +00002185 if (TTI.isLegalAddressingMode(AccessTy, /*BaseGV=*/ nullptr,
Chandler Carruth26c59fa2013-01-07 14:41:08 +00002186 /*BaseOffset=*/ 0,
2187 /*HasBaseReg=*/ false, Scale))
Dan Gohman45774ce2010-02-12 10:34:29 +00002188 goto decline_post_inc;
2189 }
2190 }
2191
David Greene2330f782009-12-23 22:58:38 +00002192 DEBUG(dbgs() << " Change loop exiting icmp to use postinc iv: "
Dan Gohman45774ce2010-02-12 10:34:29 +00002193 << *Cond << '\n');
Evan Chengba4e5da72009-11-17 18:10:11 +00002194
2195 // It's possible for the setcc instruction to be anywhere in the loop, and
2196 // possible for it to have multiple users. If it is not immediately before
2197 // the exiting block branch, move it.
Dan Gohman45774ce2010-02-12 10:34:29 +00002198 if (&*++BasicBlock::iterator(Cond) != TermBr) {
2199 if (Cond->hasOneUse()) {
Evan Chengba4e5da72009-11-17 18:10:11 +00002200 Cond->moveBefore(TermBr);
2201 } else {
Dan Gohman45774ce2010-02-12 10:34:29 +00002202 // Clone the terminating condition and insert into the loopend.
2203 ICmpInst *OldCond = Cond;
Evan Chengba4e5da72009-11-17 18:10:11 +00002204 Cond = cast<ICmpInst>(Cond->clone());
2205 Cond->setName(L->getHeader()->getName() + ".termcond");
2206 ExitingBlock->getInstList().insert(TermBr, Cond);
2207
2208 // Clone the IVUse, as the old use still exists!
Andrew Trickfc4ccb22011-06-21 15:43:52 +00002209 CondUse = &IU.AddUser(Cond, CondUse->getOperandValToReplace());
Dan Gohman45774ce2010-02-12 10:34:29 +00002210 TermBr->replaceUsesOfWith(OldCond, Cond);
Evan Chengba4e5da72009-11-17 18:10:11 +00002211 }
Evan Cheng85a9f432009-11-12 07:35:05 +00002212 }
2213
Evan Chengba4e5da72009-11-17 18:10:11 +00002214 // If we get to here, we know that we can transform the setcc instruction to
2215 // use the post-incremented version of the IV, allowing us to coalesce the
2216 // live ranges for the IV correctly.
Dan Gohmand006ab92010-04-07 22:27:08 +00002217 CondUse->transformToPostInc(L);
Evan Chengba4e5da72009-11-17 18:10:11 +00002218 Changed = true;
2219
Dan Gohman45774ce2010-02-12 10:34:29 +00002220 PostIncs.insert(Cond);
2221 decline_post_inc:;
Dan Gohman51ad99d2010-01-21 02:09:26 +00002222 }
Dan Gohman45774ce2010-02-12 10:34:29 +00002223
2224 // Determine an insertion point for the loop induction variable increment. It
2225 // must dominate all the post-inc comparisons we just set up, and it must
2226 // dominate the loop latch edge.
2227 IVIncInsertPos = L->getLoopLatch()->getTerminator();
Craig Topper46276792014-08-24 23:23:06 +00002228 for (Instruction *Inst : PostIncs) {
Dan Gohman45774ce2010-02-12 10:34:29 +00002229 BasicBlock *BB =
2230 DT.findNearestCommonDominator(IVIncInsertPos->getParent(),
Craig Topper46276792014-08-24 23:23:06 +00002231 Inst->getParent());
2232 if (BB == Inst->getParent())
2233 IVIncInsertPos = Inst;
Dan Gohman45774ce2010-02-12 10:34:29 +00002234 else if (BB != IVIncInsertPos->getParent())
2235 IVIncInsertPos = BB->getTerminator();
2236 }
Dan Gohman51ad99d2010-01-21 02:09:26 +00002237}
2238
Chris Lattner0ab5e2c2011-04-15 05:18:47 +00002239/// reconcileNewOffset - Determine if the given use can accommodate a fixup
Dan Gohmana4ca28a2010-05-20 20:52:00 +00002240/// at the given offset and other details. If so, update the use and
2241/// return true.
Dan Gohman45774ce2010-02-12 10:34:29 +00002242bool
Dan Gohman110ed642010-09-01 01:45:53 +00002243LSRInstance::reconcileNewOffset(LSRUse &LU, int64_t NewOffset, bool HasBaseReg,
Chris Lattner229907c2011-07-18 04:54:35 +00002244 LSRUse::KindType Kind, Type *AccessTy) {
Dan Gohman110ed642010-09-01 01:45:53 +00002245 int64_t NewMinOffset = LU.MinOffset;
2246 int64_t NewMaxOffset = LU.MaxOffset;
Chris Lattner229907c2011-07-18 04:54:35 +00002247 Type *NewAccessTy = AccessTy;
Dan Gohman045f8192010-01-22 00:46:49 +00002248
Dan Gohman45774ce2010-02-12 10:34:29 +00002249 // Check for a mismatched kind. It's tempting to collapse mismatched kinds to
2250 // something conservative, however this can pessimize in the case that one of
2251 // the uses will have all its uses outside the loop, for example.
2252 if (LU.Kind != Kind)
Dan Gohman045f8192010-01-22 00:46:49 +00002253 return false;
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00002254
Dan Gohman45774ce2010-02-12 10:34:29 +00002255 // Check for a mismatched access type, and fall back conservatively as needed.
Dan Gohman32655902010-06-19 21:30:18 +00002256 // TODO: Be less conservative when the type is similar and can use the same
2257 // addressing modes.
Dan Gohman45774ce2010-02-12 10:34:29 +00002258 if (Kind == LSRUse::Address && AccessTy != LU.AccessTy)
Dan Gohman110ed642010-09-01 01:45:53 +00002259 NewAccessTy = Type::getVoidTy(AccessTy->getContext());
Dan Gohman51ad99d2010-01-21 02:09:26 +00002260
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00002261 // Conservatively assume HasBaseReg is true for now.
2262 if (NewOffset < LU.MinOffset) {
2263 if (!isAlwaysFoldable(TTI, Kind, NewAccessTy, /*BaseGV=*/nullptr,
2264 LU.MaxOffset - NewOffset, HasBaseReg))
2265 return false;
2266 NewMinOffset = NewOffset;
2267 } else if (NewOffset > LU.MaxOffset) {
2268 if (!isAlwaysFoldable(TTI, Kind, NewAccessTy, /*BaseGV=*/nullptr,
2269 NewOffset - LU.MinOffset, HasBaseReg))
2270 return false;
2271 NewMaxOffset = NewOffset;
2272 }
2273
Dan Gohman45774ce2010-02-12 10:34:29 +00002274 // Update the use.
Dan Gohman110ed642010-09-01 01:45:53 +00002275 LU.MinOffset = NewMinOffset;
2276 LU.MaxOffset = NewMaxOffset;
2277 LU.AccessTy = NewAccessTy;
2278 if (NewOffset != LU.Offsets.back())
2279 LU.Offsets.push_back(NewOffset);
Dan Gohman29916e02010-01-21 22:42:49 +00002280 return true;
2281}
2282
Dan Gohman45774ce2010-02-12 10:34:29 +00002283/// getUse - Return an LSRUse index and an offset value for a fixup which
2284/// needs the given expression, with the given kind and optional access type.
Dan Gohman8b0a4192010-03-01 17:49:51 +00002285/// Either reuse an existing use or create a new one, as needed.
Dan Gohman45774ce2010-02-12 10:34:29 +00002286std::pair<size_t, int64_t>
2287LSRInstance::getUse(const SCEV *&Expr,
Chris Lattner229907c2011-07-18 04:54:35 +00002288 LSRUse::KindType Kind, Type *AccessTy) {
Dan Gohman45774ce2010-02-12 10:34:29 +00002289 const SCEV *Copy = Expr;
2290 int64_t Offset = ExtractImmediate(Expr, SE);
Evan Cheng85a9f432009-11-12 07:35:05 +00002291
Dan Gohman45774ce2010-02-12 10:34:29 +00002292 // Basic uses can't accept any offset, for example.
Craig Topperf40110f2014-04-25 05:29:35 +00002293 if (!isAlwaysFoldable(TTI, Kind, AccessTy, /*BaseGV=*/ nullptr,
Chandler Carruth26c59fa2013-01-07 14:41:08 +00002294 Offset, /*HasBaseReg=*/ true)) {
Dan Gohman45774ce2010-02-12 10:34:29 +00002295 Expr = Copy;
2296 Offset = 0;
2297 }
2298
2299 std::pair<UseMapTy::iterator, bool> P =
Benjamin Kramer62fb0cf2014-03-15 17:17:48 +00002300 UseMap.insert(std::make_pair(LSRUse::SCEVUseKindPair(Expr, Kind), 0));
Dan Gohman45774ce2010-02-12 10:34:29 +00002301 if (!P.second) {
2302 // A use already existed with this base.
2303 size_t LUIdx = P.first->second;
2304 LSRUse &LU = Uses[LUIdx];
Dan Gohman110ed642010-09-01 01:45:53 +00002305 if (reconcileNewOffset(LU, Offset, /*HasBaseReg=*/true, Kind, AccessTy))
Dan Gohman45774ce2010-02-12 10:34:29 +00002306 // Reuse this use.
2307 return std::make_pair(LUIdx, Offset);
2308 }
2309
2310 // Create a new use.
2311 size_t LUIdx = Uses.size();
2312 P.first->second = LUIdx;
2313 Uses.push_back(LSRUse(Kind, AccessTy));
2314 LSRUse &LU = Uses[LUIdx];
2315
Dan Gohman110ed642010-09-01 01:45:53 +00002316 // We don't need to track redundant offsets, but we don't need to go out
2317 // of our way here to avoid them.
2318 if (LU.Offsets.empty() || Offset != LU.Offsets.back())
2319 LU.Offsets.push_back(Offset);
2320
Dan Gohman45774ce2010-02-12 10:34:29 +00002321 LU.MinOffset = Offset;
2322 LU.MaxOffset = Offset;
2323 return std::make_pair(LUIdx, Offset);
2324}
2325
Dan Gohman80a96082010-05-20 15:17:54 +00002326/// DeleteUse - Delete the given use from the Uses list.
Dan Gohmana7b68d62010-10-07 23:33:43 +00002327void LSRInstance::DeleteUse(LSRUse &LU, size_t LUIdx) {
Dan Gohman110ed642010-09-01 01:45:53 +00002328 if (&LU != &Uses.back())
Dan Gohman80a96082010-05-20 15:17:54 +00002329 std::swap(LU, Uses.back());
2330 Uses.pop_back();
Dan Gohmana7b68d62010-10-07 23:33:43 +00002331
2332 // Update RegUses.
2333 RegUses.SwapAndDropUse(LUIdx, Uses.size());
Dan Gohman80a96082010-05-20 15:17:54 +00002334}
2335
Dan Gohman20fab452010-05-19 23:43:12 +00002336/// FindUseWithFormula - Look for a use distinct from OrigLU which is has
2337/// a formula that has the same registers as the given formula.
2338LSRUse *
2339LSRInstance::FindUseWithSimilarFormula(const Formula &OrigF,
Dan Gohman110ed642010-09-01 01:45:53 +00002340 const LSRUse &OrigLU) {
2341 // Search all uses for the formula. This could be more clever.
Dan Gohman20fab452010-05-19 23:43:12 +00002342 for (size_t LUIdx = 0, NumUses = Uses.size(); LUIdx != NumUses; ++LUIdx) {
2343 LSRUse &LU = Uses[LUIdx];
Dan Gohmanb6a520d2010-08-29 15:27:08 +00002344 // Check whether this use is close enough to OrigLU, to see whether it's
2345 // worthwhile looking through its formulae.
2346 // Ignore ICmpZero uses because they may contain formulae generated by
2347 // GenerateICmpZeroScales, in which case adding fixup offsets may
2348 // be invalid.
Dan Gohman20fab452010-05-19 23:43:12 +00002349 if (&LU != &OrigLU &&
2350 LU.Kind != LSRUse::ICmpZero &&
2351 LU.Kind == OrigLU.Kind && OrigLU.AccessTy == LU.AccessTy &&
Dan Gohman14152082010-07-15 20:24:58 +00002352 LU.WidestFixupType == OrigLU.WidestFixupType &&
Dan Gohman20fab452010-05-19 23:43:12 +00002353 LU.HasFormulaWithSameRegs(OrigF)) {
Dan Gohmanb6a520d2010-08-29 15:27:08 +00002354 // Scan through this use's formulae.
Dan Gohman927bcaa2010-05-20 20:33:18 +00002355 for (SmallVectorImpl<Formula>::const_iterator I = LU.Formulae.begin(),
2356 E = LU.Formulae.end(); I != E; ++I) {
2357 const Formula &F = *I;
Dan Gohmanb6a520d2010-08-29 15:27:08 +00002358 // Check to see if this formula has the same registers and symbols
2359 // as OrigF.
Dan Gohman20fab452010-05-19 23:43:12 +00002360 if (F.BaseRegs == OrigF.BaseRegs &&
2361 F.ScaledReg == OrigF.ScaledReg &&
Chandler Carruth6e479322013-01-07 15:04:40 +00002362 F.BaseGV == OrigF.BaseGV &&
2363 F.Scale == OrigF.Scale &&
Dan Gohman6136e942011-05-03 00:46:49 +00002364 F.UnfoldedOffset == OrigF.UnfoldedOffset) {
Chandler Carruth6e479322013-01-07 15:04:40 +00002365 if (F.BaseOffset == 0)
Dan Gohman20fab452010-05-19 23:43:12 +00002366 return &LU;
Dan Gohmanb6a520d2010-08-29 15:27:08 +00002367 // This is the formula where all the registers and symbols matched;
2368 // there aren't going to be any others. Since we declined it, we
Benjamin Kramerbde91762012-06-02 10:20:22 +00002369 // can skip the rest of the formulae and proceed to the next LSRUse.
Dan Gohman20fab452010-05-19 23:43:12 +00002370 break;
2371 }
2372 }
2373 }
2374 }
2375
Dan Gohmanb6a520d2010-08-29 15:27:08 +00002376 // Nothing looked good.
Craig Topperf40110f2014-04-25 05:29:35 +00002377 return nullptr;
Dan Gohman20fab452010-05-19 23:43:12 +00002378}
2379
Dan Gohman45774ce2010-02-12 10:34:29 +00002380void LSRInstance::CollectInterestingTypesAndFactors() {
2381 SmallSetVector<const SCEV *, 4> Strides;
2382
Dan Gohman2446f572010-02-19 00:05:23 +00002383 // Collect interesting types and strides.
Dan Gohmand006ab92010-04-07 22:27:08 +00002384 SmallVector<const SCEV *, 4> Worklist;
Dan Gohman45774ce2010-02-12 10:34:29 +00002385 for (IVUsers::const_iterator UI = IU.begin(), E = IU.end(); UI != E; ++UI) {
Dan Gohmane637ff52010-04-19 21:48:58 +00002386 const SCEV *Expr = IU.getExpr(*UI);
Dan Gohman45774ce2010-02-12 10:34:29 +00002387
2388 // Collect interesting types.
Dan Gohmand006ab92010-04-07 22:27:08 +00002389 Types.insert(SE.getEffectiveSCEVType(Expr->getType()));
Dan Gohman45774ce2010-02-12 10:34:29 +00002390
Dan Gohmand006ab92010-04-07 22:27:08 +00002391 // Add strides for mentioned loops.
2392 Worklist.push_back(Expr);
2393 do {
2394 const SCEV *S = Worklist.pop_back_val();
2395 if (const SCEVAddRecExpr *AR = dyn_cast<SCEVAddRecExpr>(S)) {
Andrew Trickd97b83e2012-03-22 22:42:45 +00002396 if (AR->getLoop() == L)
Andrew Tricke8b4f402011-12-10 00:25:00 +00002397 Strides.insert(AR->getStepRecurrence(SE));
Dan Gohmand006ab92010-04-07 22:27:08 +00002398 Worklist.push_back(AR->getStart());
2399 } else if (const SCEVAddExpr *Add = dyn_cast<SCEVAddExpr>(S)) {
Dan Gohmandd41bba2010-06-21 19:47:52 +00002400 Worklist.append(Add->op_begin(), Add->op_end());
Dan Gohmand006ab92010-04-07 22:27:08 +00002401 }
2402 } while (!Worklist.empty());
Dan Gohman2446f572010-02-19 00:05:23 +00002403 }
2404
2405 // Compute interesting factors from the set of interesting strides.
2406 for (SmallSetVector<const SCEV *, 4>::const_iterator
2407 I = Strides.begin(), E = Strides.end(); I != E; ++I)
Dan Gohman45774ce2010-02-12 10:34:29 +00002408 for (SmallSetVector<const SCEV *, 4>::const_iterator NewStrideIter =
Benjamin Kramerb6d0bd42014-03-02 12:27:27 +00002409 std::next(I); NewStrideIter != E; ++NewStrideIter) {
Dan Gohman2446f572010-02-19 00:05:23 +00002410 const SCEV *OldStride = *I;
Dan Gohman45774ce2010-02-12 10:34:29 +00002411 const SCEV *NewStride = *NewStrideIter;
Dan Gohman45774ce2010-02-12 10:34:29 +00002412
2413 if (SE.getTypeSizeInBits(OldStride->getType()) !=
2414 SE.getTypeSizeInBits(NewStride->getType())) {
2415 if (SE.getTypeSizeInBits(OldStride->getType()) >
2416 SE.getTypeSizeInBits(NewStride->getType()))
2417 NewStride = SE.getSignExtendExpr(NewStride, OldStride->getType());
2418 else
2419 OldStride = SE.getSignExtendExpr(OldStride, NewStride->getType());
2420 }
2421 if (const SCEVConstant *Factor =
Dan Gohman4eebb942010-02-19 19:35:48 +00002422 dyn_cast_or_null<SCEVConstant>(getExactSDiv(NewStride, OldStride,
2423 SE, true))) {
Dan Gohman45774ce2010-02-12 10:34:29 +00002424 if (Factor->getValue()->getValue().getMinSignedBits() <= 64)
2425 Factors.insert(Factor->getValue()->getValue().getSExtValue());
2426 } else if (const SCEVConstant *Factor =
Dan Gohman8c16b382010-02-22 04:11:59 +00002427 dyn_cast_or_null<SCEVConstant>(getExactSDiv(OldStride,
2428 NewStride,
Dan Gohman4eebb942010-02-19 19:35:48 +00002429 SE, true))) {
Dan Gohman45774ce2010-02-12 10:34:29 +00002430 if (Factor->getValue()->getValue().getMinSignedBits() <= 64)
2431 Factors.insert(Factor->getValue()->getValue().getSExtValue());
2432 }
2433 }
Dan Gohman45774ce2010-02-12 10:34:29 +00002434
2435 // If all uses use the same type, don't bother looking for truncation-based
2436 // reuse.
2437 if (Types.size() == 1)
2438 Types.clear();
2439
2440 DEBUG(print_factors_and_types(dbgs()));
2441}
2442
Andrew Trick29fe5f02012-01-09 19:50:34 +00002443/// findIVOperand - Helper for CollectChains that finds an IV operand (computed
2444/// by an AddRec in this loop) within [OI,OE) or returns OE. If IVUsers mapped
2445/// Instructions to IVStrideUses, we could partially skip this.
2446static User::op_iterator
2447findIVOperand(User::op_iterator OI, User::op_iterator OE,
2448 Loop *L, ScalarEvolution &SE) {
2449 for(; OI != OE; ++OI) {
2450 if (Instruction *Oper = dyn_cast<Instruction>(*OI)) {
2451 if (!SE.isSCEVable(Oper->getType()))
2452 continue;
2453
2454 if (const SCEVAddRecExpr *AR =
2455 dyn_cast<SCEVAddRecExpr>(SE.getSCEV(Oper))) {
2456 if (AR->getLoop() == L)
2457 break;
2458 }
2459 }
2460 }
2461 return OI;
2462}
2463
2464/// getWideOperand - IVChain logic must consistenctly peek base TruncInst
2465/// operands, so wrap it in a convenient helper.
2466static Value *getWideOperand(Value *Oper) {
2467 if (TruncInst *Trunc = dyn_cast<TruncInst>(Oper))
2468 return Trunc->getOperand(0);
2469 return Oper;
2470}
2471
2472/// isCompatibleIVType - Return true if we allow an IV chain to include both
2473/// types.
2474static bool isCompatibleIVType(Value *LVal, Value *RVal) {
2475 Type *LType = LVal->getType();
2476 Type *RType = RVal->getType();
2477 return (LType == RType) || (LType->isPointerTy() && RType->isPointerTy());
2478}
2479
Andrew Trickd5d2db92012-01-10 01:45:08 +00002480/// getExprBase - Return an approximation of this SCEV expression's "base", or
2481/// NULL for any constant. Returning the expression itself is
2482/// conservative. Returning a deeper subexpression is more precise and valid as
2483/// long as it isn't less complex than another subexpression. For expressions
2484/// involving multiple unscaled values, we need to return the pointer-type
2485/// SCEVUnknown. This avoids forming chains across objects, such as:
2486/// PrevOper==a[i], IVOper==b[i], IVInc==b-a.
2487///
2488/// Since SCEVUnknown is the rightmost type, and pointers are the rightmost
2489/// SCEVUnknown, we simply return the rightmost SCEV operand.
2490static const SCEV *getExprBase(const SCEV *S) {
2491 switch (S->getSCEVType()) {
2492 default: // uncluding scUnknown.
2493 return S;
2494 case scConstant:
Craig Topperf40110f2014-04-25 05:29:35 +00002495 return nullptr;
Andrew Trickd5d2db92012-01-10 01:45:08 +00002496 case scTruncate:
2497 return getExprBase(cast<SCEVTruncateExpr>(S)->getOperand());
2498 case scZeroExtend:
2499 return getExprBase(cast<SCEVZeroExtendExpr>(S)->getOperand());
2500 case scSignExtend:
2501 return getExprBase(cast<SCEVSignExtendExpr>(S)->getOperand());
2502 case scAddExpr: {
2503 // Skip over scaled operands (scMulExpr) to follow add operands as long as
2504 // there's nothing more complex.
2505 // FIXME: not sure if we want to recognize negation.
2506 const SCEVAddExpr *Add = cast<SCEVAddExpr>(S);
2507 for (std::reverse_iterator<SCEVAddExpr::op_iterator> I(Add->op_end()),
2508 E(Add->op_begin()); I != E; ++I) {
2509 const SCEV *SubExpr = *I;
2510 if (SubExpr->getSCEVType() == scAddExpr)
2511 return getExprBase(SubExpr);
2512
2513 if (SubExpr->getSCEVType() != scMulExpr)
2514 return SubExpr;
2515 }
2516 return S; // all operands are scaled, be conservative.
2517 }
2518 case scAddRecExpr:
2519 return getExprBase(cast<SCEVAddRecExpr>(S)->getStart());
2520 }
2521}
2522
Andrew Trick248d4102012-01-09 21:18:52 +00002523/// Return true if the chain increment is profitable to expand into a loop
2524/// invariant value, which may require its own register. A profitable chain
2525/// increment will be an offset relative to the same base. We allow such offsets
2526/// to potentially be used as chain increment as long as it's not obviously
2527/// expensive to expand using real instructions.
Jakob Stoklund Olesenc90abc82012-04-26 23:33:11 +00002528bool IVChain::isProfitableIncrement(const SCEV *OperExpr,
2529 const SCEV *IncExpr,
2530 ScalarEvolution &SE) {
2531 // Aggressively form chains when -stress-ivchain.
Andrew Trick248d4102012-01-09 21:18:52 +00002532 if (StressIVChain)
Jakob Stoklund Olesenc90abc82012-04-26 23:33:11 +00002533 return true;
Andrew Trick248d4102012-01-09 21:18:52 +00002534
Andrew Trickd5d2db92012-01-10 01:45:08 +00002535 // Do not replace a constant offset from IV head with a nonconstant IV
2536 // increment.
2537 if (!isa<SCEVConstant>(IncExpr)) {
Jakob Stoklund Olesenc90abc82012-04-26 23:33:11 +00002538 const SCEV *HeadExpr = SE.getSCEV(getWideOperand(Incs[0].IVOperand));
Andrew Trickd5d2db92012-01-10 01:45:08 +00002539 if (isa<SCEVConstant>(SE.getMinusSCEV(OperExpr, HeadExpr)))
2540 return 0;
2541 }
2542
2543 SmallPtrSet<const SCEV*, 8> Processed;
Jakob Stoklund Olesenc90abc82012-04-26 23:33:11 +00002544 return !isHighCostExpansion(IncExpr, Processed, SE);
Andrew Trick248d4102012-01-09 21:18:52 +00002545}
2546
2547/// Return true if the number of registers needed for the chain is estimated to
2548/// be less than the number required for the individual IV users. First prohibit
2549/// any IV users that keep the IV live across increments (the Users set should
2550/// be empty). Next count the number and type of increments in the chain.
2551///
2552/// Chaining IVs can lead to considerable code bloat if ISEL doesn't
2553/// effectively use postinc addressing modes. Only consider it profitable it the
2554/// increments can be computed in fewer registers when chained.
2555///
2556/// TODO: Consider IVInc free if it's already used in another chains.
2557static bool
Craig Topper71b7b682014-08-21 05:55:13 +00002558isProfitableChain(IVChain &Chain, SmallPtrSetImpl<Instruction*> &Users,
Chandler Carruth26c59fa2013-01-07 14:41:08 +00002559 ScalarEvolution &SE, const TargetTransformInfo &TTI) {
Andrew Trick248d4102012-01-09 21:18:52 +00002560 if (StressIVChain)
2561 return true;
2562
Jakob Stoklund Olesena0337d72012-04-26 23:33:09 +00002563 if (!Chain.hasIncs())
Andrew Trickd5d2db92012-01-10 01:45:08 +00002564 return false;
2565
2566 if (!Users.empty()) {
Jakob Stoklund Olesena0337d72012-04-26 23:33:09 +00002567 DEBUG(dbgs() << "Chain: " << *Chain.Incs[0].UserInst << " users:\n";
Craig Topper46276792014-08-24 23:23:06 +00002568 for (Instruction *Inst : Users) {
2569 dbgs() << " " << *Inst << "\n";
Andrew Trickd5d2db92012-01-10 01:45:08 +00002570 });
2571 return false;
2572 }
Jakob Stoklund Olesena0337d72012-04-26 23:33:09 +00002573 assert(!Chain.Incs.empty() && "empty IV chains are not allowed");
Andrew Trickd5d2db92012-01-10 01:45:08 +00002574
2575 // The chain itself may require a register, so intialize cost to 1.
2576 int cost = 1;
2577
2578 // A complete chain likely eliminates the need for keeping the original IV in
2579 // a register. LSR does not currently know how to form a complete chain unless
2580 // the header phi already exists.
Jakob Stoklund Olesena0337d72012-04-26 23:33:09 +00002581 if (isa<PHINode>(Chain.tailUserInst())
2582 && SE.getSCEV(Chain.tailUserInst()) == Chain.Incs[0].IncExpr) {
Andrew Trickd5d2db92012-01-10 01:45:08 +00002583 --cost;
2584 }
Craig Topperf40110f2014-04-25 05:29:35 +00002585 const SCEV *LastIncExpr = nullptr;
Andrew Trickd5d2db92012-01-10 01:45:08 +00002586 unsigned NumConstIncrements = 0;
2587 unsigned NumVarIncrements = 0;
2588 unsigned NumReusedIncrements = 0;
Jakob Stoklund Olesena0337d72012-04-26 23:33:09 +00002589 for (IVChain::const_iterator I = Chain.begin(), E = Chain.end();
Andrew Trickd5d2db92012-01-10 01:45:08 +00002590 I != E; ++I) {
2591
2592 if (I->IncExpr->isZero())
2593 continue;
2594
2595 // Incrementing by zero or some constant is neutral. We assume constants can
2596 // be folded into an addressing mode or an add's immediate operand.
2597 if (isa<SCEVConstant>(I->IncExpr)) {
2598 ++NumConstIncrements;
2599 continue;
2600 }
2601
2602 if (I->IncExpr == LastIncExpr)
2603 ++NumReusedIncrements;
2604 else
2605 ++NumVarIncrements;
2606
2607 LastIncExpr = I->IncExpr;
2608 }
2609 // An IV chain with a single increment is handled by LSR's postinc
2610 // uses. However, a chain with multiple increments requires keeping the IV's
2611 // value live longer than it needs to be if chained.
2612 if (NumConstIncrements > 1)
2613 --cost;
2614
2615 // Materializing increment expressions in the preheader that didn't exist in
2616 // the original code may cost a register. For example, sign-extended array
2617 // indices can produce ridiculous increments like this:
2618 // IV + ((sext i32 (2 * %s) to i64) + (-1 * (sext i32 %s to i64)))
2619 cost += NumVarIncrements;
2620
2621 // Reusing variable increments likely saves a register to hold the multiple of
2622 // the stride.
2623 cost -= NumReusedIncrements;
2624
Jakob Stoklund Olesena0337d72012-04-26 23:33:09 +00002625 DEBUG(dbgs() << "Chain: " << *Chain.Incs[0].UserInst << " Cost: " << cost
2626 << "\n");
Andrew Trickd5d2db92012-01-10 01:45:08 +00002627
2628 return cost < 0;
Andrew Trick248d4102012-01-09 21:18:52 +00002629}
2630
Andrew Trick29fe5f02012-01-09 19:50:34 +00002631/// ChainInstruction - Add this IV user to an existing chain or make it the head
2632/// of a new chain.
2633void LSRInstance::ChainInstruction(Instruction *UserInst, Instruction *IVOper,
2634 SmallVectorImpl<ChainUsers> &ChainUsersVec) {
2635 // When IVs are used as types of varying widths, they are generally converted
2636 // to a wider type with some uses remaining narrow under a (free) trunc.
Jakob Stoklund Olesenc90abc82012-04-26 23:33:11 +00002637 Value *const NextIV = getWideOperand(IVOper);
2638 const SCEV *const OperExpr = SE.getSCEV(NextIV);
2639 const SCEV *const OperExprBase = getExprBase(OperExpr);
Andrew Trick29fe5f02012-01-09 19:50:34 +00002640
2641 // Visit all existing chains. Check if its IVOper can be computed as a
2642 // profitable loop invariant increment from the last link in the Chain.
2643 unsigned ChainIdx = 0, NChains = IVChainVec.size();
Craig Topperf40110f2014-04-25 05:29:35 +00002644 const SCEV *LastIncExpr = nullptr;
Andrew Trick29fe5f02012-01-09 19:50:34 +00002645 for (; ChainIdx < NChains; ++ChainIdx) {
Jakob Stoklund Olesenc90abc82012-04-26 23:33:11 +00002646 IVChain &Chain = IVChainVec[ChainIdx];
2647
2648 // Prune the solution space aggressively by checking that both IV operands
2649 // are expressions that operate on the same unscaled SCEVUnknown. This
2650 // "base" will be canceled by the subsequent getMinusSCEV call. Checking
2651 // first avoids creating extra SCEV expressions.
2652 if (!StressIVChain && Chain.ExprBase != OperExprBase)
2653 continue;
2654
2655 Value *PrevIV = getWideOperand(Chain.Incs.back().IVOperand);
Andrew Trick29fe5f02012-01-09 19:50:34 +00002656 if (!isCompatibleIVType(PrevIV, NextIV))
2657 continue;
2658
Andrew Trick356a8962012-03-26 20:28:35 +00002659 // A phi node terminates a chain.
Jakob Stoklund Olesenc90abc82012-04-26 23:33:11 +00002660 if (isa<PHINode>(UserInst) && isa<PHINode>(Chain.tailUserInst()))
Andrew Trick29fe5f02012-01-09 19:50:34 +00002661 continue;
2662
Jakob Stoklund Olesenc90abc82012-04-26 23:33:11 +00002663 // The increment must be loop-invariant so it can be kept in a register.
2664 const SCEV *PrevExpr = SE.getSCEV(PrevIV);
2665 const SCEV *IncExpr = SE.getMinusSCEV(OperExpr, PrevExpr);
2666 if (!SE.isLoopInvariant(IncExpr, L))
2667 continue;
2668
2669 if (Chain.isProfitableIncrement(OperExpr, IncExpr, SE)) {
Andrew Trick29fe5f02012-01-09 19:50:34 +00002670 LastIncExpr = IncExpr;
2671 break;
2672 }
2673 }
2674 // If we haven't found a chain, create a new one, unless we hit the max. Don't
2675 // bother for phi nodes, because they must be last in the chain.
2676 if (ChainIdx == NChains) {
2677 if (isa<PHINode>(UserInst))
2678 return;
Andrew Trick248d4102012-01-09 21:18:52 +00002679 if (NChains >= MaxChains && !StressIVChain) {
Andrew Trick29fe5f02012-01-09 19:50:34 +00002680 DEBUG(dbgs() << "IV Chain Limit\n");
2681 return;
2682 }
Jakob Stoklund Olesenc90abc82012-04-26 23:33:11 +00002683 LastIncExpr = OperExpr;
Andrew Trickb9c822a2012-01-20 21:23:40 +00002684 // IVUsers may have skipped over sign/zero extensions. We don't currently
2685 // attempt to form chains involving extensions unless they can be hoisted
2686 // into this loop's AddRec.
2687 if (!isa<SCEVAddRecExpr>(LastIncExpr))
2688 return;
Andrew Trick29fe5f02012-01-09 19:50:34 +00002689 ++NChains;
Jakob Stoklund Olesenc90abc82012-04-26 23:33:11 +00002690 IVChainVec.push_back(IVChain(IVInc(UserInst, IVOper, LastIncExpr),
2691 OperExprBase));
Andrew Trick29fe5f02012-01-09 19:50:34 +00002692 ChainUsersVec.resize(NChains);
Jakob Stoklund Olesen293673d2012-04-25 18:01:32 +00002693 DEBUG(dbgs() << "IV Chain#" << ChainIdx << " Head: (" << *UserInst
2694 << ") IV=" << *LastIncExpr << "\n");
Jakob Stoklund Olesenc90abc82012-04-26 23:33:11 +00002695 } else {
Jakob Stoklund Olesen293673d2012-04-25 18:01:32 +00002696 DEBUG(dbgs() << "IV Chain#" << ChainIdx << " Inc: (" << *UserInst
2697 << ") IV+" << *LastIncExpr << "\n");
Jakob Stoklund Olesenc90abc82012-04-26 23:33:11 +00002698 // Add this IV user to the end of the chain.
2699 IVChainVec[ChainIdx].add(IVInc(UserInst, IVOper, LastIncExpr));
2700 }
Andrew Trickbc705902013-02-09 01:11:01 +00002701 IVChain &Chain = IVChainVec[ChainIdx];
Andrew Trick29fe5f02012-01-09 19:50:34 +00002702
2703 SmallPtrSet<Instruction*,4> &NearUsers = ChainUsersVec[ChainIdx].NearUsers;
2704 // This chain's NearUsers become FarUsers.
2705 if (!LastIncExpr->isZero()) {
2706 ChainUsersVec[ChainIdx].FarUsers.insert(NearUsers.begin(),
2707 NearUsers.end());
2708 NearUsers.clear();
2709 }
2710
2711 // All other uses of IVOperand become near uses of the chain.
2712 // We currently ignore intermediate values within SCEV expressions, assuming
2713 // they will eventually be used be the current chain, or can be computed
2714 // from one of the chain increments. To be more precise we could
2715 // transitively follow its user and only add leaf IV users to the set.
Chandler Carruthcdf47882014-03-09 03:16:01 +00002716 for (User *U : IVOper->users()) {
2717 Instruction *OtherUse = dyn_cast<Instruction>(U);
Andrew Trickbc705902013-02-09 01:11:01 +00002718 if (!OtherUse)
Andrew Tricke51feea2012-03-26 18:03:16 +00002719 continue;
Andrew Trickbc705902013-02-09 01:11:01 +00002720 // Uses in the chain will no longer be uses if the chain is formed.
2721 // Include the head of the chain in this iteration (not Chain.begin()).
2722 IVChain::const_iterator IncIter = Chain.Incs.begin();
2723 IVChain::const_iterator IncEnd = Chain.Incs.end();
2724 for( ; IncIter != IncEnd; ++IncIter) {
2725 if (IncIter->UserInst == OtherUse)
2726 break;
2727 }
2728 if (IncIter != IncEnd)
2729 continue;
2730
Andrew Trick29fe5f02012-01-09 19:50:34 +00002731 if (SE.isSCEVable(OtherUse->getType())
2732 && !isa<SCEVUnknown>(SE.getSCEV(OtherUse))
2733 && IU.isIVUserOrOperand(OtherUse)) {
2734 continue;
2735 }
Andrew Tricke51feea2012-03-26 18:03:16 +00002736 NearUsers.insert(OtherUse);
Andrew Trick29fe5f02012-01-09 19:50:34 +00002737 }
2738
2739 // Since this user is part of the chain, it's no longer considered a use
2740 // of the chain.
2741 ChainUsersVec[ChainIdx].FarUsers.erase(UserInst);
2742}
2743
2744/// CollectChains - Populate the vector of Chains.
2745///
2746/// This decreases ILP at the architecture level. Targets with ample registers,
2747/// multiple memory ports, and no register renaming probably don't want
2748/// this. However, such targets should probably disable LSR altogether.
2749///
2750/// The job of LSR is to make a reasonable choice of induction variables across
2751/// the loop. Subsequent passes can easily "unchain" computation exposing more
2752/// ILP *within the loop* if the target wants it.
2753///
2754/// Finding the best IV chain is potentially a scheduling problem. Since LSR
2755/// will not reorder memory operations, it will recognize this as a chain, but
2756/// will generate redundant IV increments. Ideally this would be corrected later
2757/// by a smart scheduler:
2758/// = A[i]
2759/// = A[i+x]
2760/// A[i] =
2761/// A[i+x] =
2762///
2763/// TODO: Walk the entire domtree within this loop, not just the path to the
2764/// loop latch. This will discover chains on side paths, but requires
2765/// maintaining multiple copies of the Chains state.
2766void LSRInstance::CollectChains() {
Jakob Stoklund Olesen293673d2012-04-25 18:01:32 +00002767 DEBUG(dbgs() << "Collecting IV Chains.\n");
Andrew Trick29fe5f02012-01-09 19:50:34 +00002768 SmallVector<ChainUsers, 8> ChainUsersVec;
2769
2770 SmallVector<BasicBlock *,8> LatchPath;
2771 BasicBlock *LoopHeader = L->getHeader();
2772 for (DomTreeNode *Rung = DT.getNode(L->getLoopLatch());
2773 Rung->getBlock() != LoopHeader; Rung = Rung->getIDom()) {
2774 LatchPath.push_back(Rung->getBlock());
2775 }
2776 LatchPath.push_back(LoopHeader);
2777
2778 // Walk the instruction stream from the loop header to the loop latch.
2779 for (SmallVectorImpl<BasicBlock *>::reverse_iterator
2780 BBIter = LatchPath.rbegin(), BBEnd = LatchPath.rend();
2781 BBIter != BBEnd; ++BBIter) {
2782 for (BasicBlock::iterator I = (*BBIter)->begin(), E = (*BBIter)->end();
2783 I != E; ++I) {
2784 // Skip instructions that weren't seen by IVUsers analysis.
2785 if (isa<PHINode>(I) || !IU.isIVUserOrOperand(I))
2786 continue;
2787
2788 // Ignore users that are part of a SCEV expression. This way we only
2789 // consider leaf IV Users. This effectively rediscovers a portion of
2790 // IVUsers analysis but in program order this time.
2791 if (SE.isSCEVable(I->getType()) && !isa<SCEVUnknown>(SE.getSCEV(I)))
2792 continue;
2793
2794 // Remove this instruction from any NearUsers set it may be in.
2795 for (unsigned ChainIdx = 0, NChains = IVChainVec.size();
2796 ChainIdx < NChains; ++ChainIdx) {
2797 ChainUsersVec[ChainIdx].NearUsers.erase(I);
2798 }
2799 // Search for operands that can be chained.
2800 SmallPtrSet<Instruction*, 4> UniqueOperands;
2801 User::op_iterator IVOpEnd = I->op_end();
2802 User::op_iterator IVOpIter = findIVOperand(I->op_begin(), IVOpEnd, L, SE);
2803 while (IVOpIter != IVOpEnd) {
2804 Instruction *IVOpInst = cast<Instruction>(*IVOpIter);
2805 if (UniqueOperands.insert(IVOpInst))
2806 ChainInstruction(I, IVOpInst, ChainUsersVec);
Benjamin Kramerb6d0bd42014-03-02 12:27:27 +00002807 IVOpIter = findIVOperand(std::next(IVOpIter), IVOpEnd, L, SE);
Andrew Trick29fe5f02012-01-09 19:50:34 +00002808 }
2809 } // Continue walking down the instructions.
2810 } // Continue walking down the domtree.
2811 // Visit phi backedges to determine if the chain can generate the IV postinc.
2812 for (BasicBlock::iterator I = L->getHeader()->begin();
2813 PHINode *PN = dyn_cast<PHINode>(I); ++I) {
2814 if (!SE.isSCEVable(PN->getType()))
2815 continue;
2816
2817 Instruction *IncV =
2818 dyn_cast<Instruction>(PN->getIncomingValueForBlock(L->getLoopLatch()));
2819 if (IncV)
2820 ChainInstruction(PN, IncV, ChainUsersVec);
2821 }
Andrew Trick248d4102012-01-09 21:18:52 +00002822 // Remove any unprofitable chains.
2823 unsigned ChainIdx = 0;
2824 for (unsigned UsersIdx = 0, NChains = IVChainVec.size();
2825 UsersIdx < NChains; ++UsersIdx) {
2826 if (!isProfitableChain(IVChainVec[UsersIdx],
Chandler Carruth26c59fa2013-01-07 14:41:08 +00002827 ChainUsersVec[UsersIdx].FarUsers, SE, TTI))
Andrew Trick248d4102012-01-09 21:18:52 +00002828 continue;
2829 // Preserve the chain at UsesIdx.
2830 if (ChainIdx != UsersIdx)
2831 IVChainVec[ChainIdx] = IVChainVec[UsersIdx];
2832 FinalizeChain(IVChainVec[ChainIdx]);
2833 ++ChainIdx;
2834 }
2835 IVChainVec.resize(ChainIdx);
2836}
2837
2838void LSRInstance::FinalizeChain(IVChain &Chain) {
Jakob Stoklund Olesena0337d72012-04-26 23:33:09 +00002839 assert(!Chain.Incs.empty() && "empty IV chains are not allowed");
2840 DEBUG(dbgs() << "Final Chain: " << *Chain.Incs[0].UserInst << "\n");
Andrew Trick248d4102012-01-09 21:18:52 +00002841
Jakob Stoklund Olesena0337d72012-04-26 23:33:09 +00002842 for (IVChain::const_iterator I = Chain.begin(), E = Chain.end();
Andrew Trick248d4102012-01-09 21:18:52 +00002843 I != E; ++I) {
2844 DEBUG(dbgs() << " Inc: " << *I->UserInst << "\n");
2845 User::op_iterator UseI =
2846 std::find(I->UserInst->op_begin(), I->UserInst->op_end(), I->IVOperand);
2847 assert(UseI != I->UserInst->op_end() && "cannot find IV operand");
2848 IVIncSet.insert(UseI);
2849 }
2850}
2851
2852/// Return true if the IVInc can be folded into an addressing mode.
2853static bool canFoldIVIncExpr(const SCEV *IncExpr, Instruction *UserInst,
Chandler Carruth26c59fa2013-01-07 14:41:08 +00002854 Value *Operand, const TargetTransformInfo &TTI) {
Andrew Trick248d4102012-01-09 21:18:52 +00002855 const SCEVConstant *IncConst = dyn_cast<SCEVConstant>(IncExpr);
2856 if (!IncConst || !isAddressUse(UserInst, Operand))
2857 return false;
2858
2859 if (IncConst->getValue()->getValue().getMinSignedBits() > 64)
2860 return false;
2861
2862 int64_t IncOffset = IncConst->getValue()->getSExtValue();
Chandler Carruth26c59fa2013-01-07 14:41:08 +00002863 if (!isAlwaysFoldable(TTI, LSRUse::Address,
Craig Topperf40110f2014-04-25 05:29:35 +00002864 getAccessType(UserInst), /*BaseGV=*/ nullptr,
Chandler Carruth26c59fa2013-01-07 14:41:08 +00002865 IncOffset, /*HaseBaseReg=*/ false))
Andrew Trick248d4102012-01-09 21:18:52 +00002866 return false;
2867
2868 return true;
2869}
2870
2871/// GenerateIVChains - Generate an add or subtract for each IVInc in a chain to
2872/// materialize the IV user's operand from the previous IV user's operand.
2873void LSRInstance::GenerateIVChain(const IVChain &Chain, SCEVExpander &Rewriter,
2874 SmallVectorImpl<WeakVH> &DeadInsts) {
2875 // Find the new IVOperand for the head of the chain. It may have been replaced
2876 // by LSR.
Jakob Stoklund Olesena0337d72012-04-26 23:33:09 +00002877 const IVInc &Head = Chain.Incs[0];
Andrew Trick248d4102012-01-09 21:18:52 +00002878 User::op_iterator IVOpEnd = Head.UserInst->op_end();
Andrew Trickf3a25442013-03-19 05:10:27 +00002879 // findIVOperand returns IVOpEnd if it can no longer find a valid IV user.
Andrew Trick248d4102012-01-09 21:18:52 +00002880 User::op_iterator IVOpIter = findIVOperand(Head.UserInst->op_begin(),
2881 IVOpEnd, L, SE);
Craig Topperf40110f2014-04-25 05:29:35 +00002882 Value *IVSrc = nullptr;
Andrew Trickf3a25442013-03-19 05:10:27 +00002883 while (IVOpIter != IVOpEnd) {
Andrew Trick248d4102012-01-09 21:18:52 +00002884 IVSrc = getWideOperand(*IVOpIter);
2885
2886 // If this operand computes the expression that the chain needs, we may use
2887 // it. (Check this after setting IVSrc which is used below.)
2888 //
2889 // Note that if Head.IncExpr is wider than IVSrc, then this phi is too
2890 // narrow for the chain, so we can no longer use it. We do allow using a
2891 // wider phi, assuming the LSR checked for free truncation. In that case we
2892 // should already have a truncate on this operand such that
2893 // getSCEV(IVSrc) == IncExpr.
2894 if (SE.getSCEV(*IVOpIter) == Head.IncExpr
2895 || SE.getSCEV(IVSrc) == Head.IncExpr) {
2896 break;
2897 }
Benjamin Kramerb6d0bd42014-03-02 12:27:27 +00002898 IVOpIter = findIVOperand(std::next(IVOpIter), IVOpEnd, L, SE);
Andrew Trickf3a25442013-03-19 05:10:27 +00002899 }
Andrew Trick248d4102012-01-09 21:18:52 +00002900 if (IVOpIter == IVOpEnd) {
2901 // Gracefully give up on this chain.
2902 DEBUG(dbgs() << "Concealed chain head: " << *Head.UserInst << "\n");
2903 return;
2904 }
2905
2906 DEBUG(dbgs() << "Generate chain at: " << *IVSrc << "\n");
2907 Type *IVTy = IVSrc->getType();
2908 Type *IntTy = SE.getEffectiveSCEVType(IVTy);
Craig Topperf40110f2014-04-25 05:29:35 +00002909 const SCEV *LeftOverExpr = nullptr;
Jakob Stoklund Olesena0337d72012-04-26 23:33:09 +00002910 for (IVChain::const_iterator IncI = Chain.begin(),
Andrew Trick248d4102012-01-09 21:18:52 +00002911 IncE = Chain.end(); IncI != IncE; ++IncI) {
2912
2913 Instruction *InsertPt = IncI->UserInst;
2914 if (isa<PHINode>(InsertPt))
2915 InsertPt = L->getLoopLatch()->getTerminator();
2916
2917 // IVOper will replace the current IV User's operand. IVSrc is the IV
2918 // value currently held in a register.
2919 Value *IVOper = IVSrc;
2920 if (!IncI->IncExpr->isZero()) {
2921 // IncExpr was the result of subtraction of two narrow values, so must
2922 // be signed.
2923 const SCEV *IncExpr = SE.getNoopOrSignExtend(IncI->IncExpr, IntTy);
2924 LeftOverExpr = LeftOverExpr ?
2925 SE.getAddExpr(LeftOverExpr, IncExpr) : IncExpr;
2926 }
2927 if (LeftOverExpr && !LeftOverExpr->isZero()) {
2928 // Expand the IV increment.
2929 Rewriter.clearPostInc();
2930 Value *IncV = Rewriter.expandCodeFor(LeftOverExpr, IntTy, InsertPt);
2931 const SCEV *IVOperExpr = SE.getAddExpr(SE.getUnknown(IVSrc),
2932 SE.getUnknown(IncV));
2933 IVOper = Rewriter.expandCodeFor(IVOperExpr, IVTy, InsertPt);
2934
2935 // If an IV increment can't be folded, use it as the next IV value.
2936 if (!canFoldIVIncExpr(LeftOverExpr, IncI->UserInst, IncI->IVOperand,
Chandler Carruth26c59fa2013-01-07 14:41:08 +00002937 TTI)) {
Andrew Trick248d4102012-01-09 21:18:52 +00002938 assert(IVTy == IVOper->getType() && "inconsistent IV increment type");
2939 IVSrc = IVOper;
Craig Topperf40110f2014-04-25 05:29:35 +00002940 LeftOverExpr = nullptr;
Andrew Trick248d4102012-01-09 21:18:52 +00002941 }
2942 }
2943 Type *OperTy = IncI->IVOperand->getType();
2944 if (IVTy != OperTy) {
2945 assert(SE.getTypeSizeInBits(IVTy) >= SE.getTypeSizeInBits(OperTy) &&
2946 "cannot extend a chained IV");
2947 IRBuilder<> Builder(InsertPt);
2948 IVOper = Builder.CreateTruncOrBitCast(IVOper, OperTy, "lsr.chain");
2949 }
2950 IncI->UserInst->replaceUsesOfWith(IncI->IVOperand, IVOper);
2951 DeadInsts.push_back(IncI->IVOperand);
2952 }
2953 // If LSR created a new, wider phi, we may also replace its postinc. We only
2954 // do this if we also found a wide value for the head of the chain.
Jakob Stoklund Olesena0337d72012-04-26 23:33:09 +00002955 if (isa<PHINode>(Chain.tailUserInst())) {
Andrew Trick248d4102012-01-09 21:18:52 +00002956 for (BasicBlock::iterator I = L->getHeader()->begin();
2957 PHINode *Phi = dyn_cast<PHINode>(I); ++I) {
2958 if (!isCompatibleIVType(Phi, IVSrc))
2959 continue;
2960 Instruction *PostIncV = dyn_cast<Instruction>(
2961 Phi->getIncomingValueForBlock(L->getLoopLatch()));
2962 if (!PostIncV || (SE.getSCEV(PostIncV) != SE.getSCEV(IVSrc)))
2963 continue;
2964 Value *IVOper = IVSrc;
2965 Type *PostIncTy = PostIncV->getType();
2966 if (IVTy != PostIncTy) {
2967 assert(PostIncTy->isPointerTy() && "mixing int/ptr IV types");
2968 IRBuilder<> Builder(L->getLoopLatch()->getTerminator());
2969 Builder.SetCurrentDebugLocation(PostIncV->getDebugLoc());
2970 IVOper = Builder.CreatePointerCast(IVSrc, PostIncTy, "lsr.chain");
2971 }
2972 Phi->replaceUsesOfWith(PostIncV, IVOper);
2973 DeadInsts.push_back(PostIncV);
2974 }
2975 }
Andrew Trick29fe5f02012-01-09 19:50:34 +00002976}
2977
Dan Gohman45774ce2010-02-12 10:34:29 +00002978void LSRInstance::CollectFixupsAndInitialFormulae() {
2979 for (IVUsers::const_iterator UI = IU.begin(), E = IU.end(); UI != E; ++UI) {
Andrew Trick248d4102012-01-09 21:18:52 +00002980 Instruction *UserInst = UI->getUser();
2981 // Skip IV users that are part of profitable IV Chains.
2982 User::op_iterator UseI = std::find(UserInst->op_begin(), UserInst->op_end(),
2983 UI->getOperandValToReplace());
2984 assert(UseI != UserInst->op_end() && "cannot find IV operand");
2985 if (IVIncSet.count(UseI))
2986 continue;
2987
Dan Gohman45774ce2010-02-12 10:34:29 +00002988 // Record the uses.
2989 LSRFixup &LF = getNewFixup();
Andrew Trick248d4102012-01-09 21:18:52 +00002990 LF.UserInst = UserInst;
Dan Gohman45774ce2010-02-12 10:34:29 +00002991 LF.OperandValToReplace = UI->getOperandValToReplace();
Dan Gohmand006ab92010-04-07 22:27:08 +00002992 LF.PostIncLoops = UI->getPostIncLoops();
Dan Gohman45774ce2010-02-12 10:34:29 +00002993
2994 LSRUse::KindType Kind = LSRUse::Basic;
Craig Topperf40110f2014-04-25 05:29:35 +00002995 Type *AccessTy = nullptr;
Dan Gohman45774ce2010-02-12 10:34:29 +00002996 if (isAddressUse(LF.UserInst, LF.OperandValToReplace)) {
2997 Kind = LSRUse::Address;
2998 AccessTy = getAccessType(LF.UserInst);
2999 }
3000
Dan Gohmane637ff52010-04-19 21:48:58 +00003001 const SCEV *S = IU.getExpr(*UI);
Dan Gohman45774ce2010-02-12 10:34:29 +00003002
3003 // Equality (== and !=) ICmps are special. We can rewrite (i == N) as
3004 // (N - i == 0), and this allows (N - i) to be the expression that we work
3005 // with rather than just N or i, so we can consider the register
3006 // requirements for both N and i at the same time. Limiting this code to
3007 // equality icmps is not a problem because all interesting loops use
3008 // equality icmps, thanks to IndVarSimplify.
3009 if (ICmpInst *CI = dyn_cast<ICmpInst>(LF.UserInst))
3010 if (CI->isEquality()) {
3011 // Swap the operands if needed to put the OperandValToReplace on the
3012 // left, for consistency.
3013 Value *NV = CI->getOperand(1);
3014 if (NV == LF.OperandValToReplace) {
3015 CI->setOperand(1, CI->getOperand(0));
3016 CI->setOperand(0, NV);
Dan Gohmanee2fea32010-05-20 19:26:52 +00003017 NV = CI->getOperand(1);
Dan Gohmanfdf98742010-05-20 19:16:03 +00003018 Changed = true;
Dan Gohman45774ce2010-02-12 10:34:29 +00003019 }
3020
3021 // x == y --> x - y == 0
3022 const SCEV *N = SE.getSCEV(NV);
Andrew Trick57243da2013-10-25 21:35:56 +00003023 if (SE.isLoopInvariant(N, L) && isSafeToExpand(N, SE)) {
Dan Gohman3268e4d2011-05-18 21:02:18 +00003024 // S is normalized, so normalize N before folding it into S
3025 // to keep the result normalized.
Craig Topperf40110f2014-04-25 05:29:35 +00003026 N = TransformForPostIncUse(Normalize, N, CI, nullptr,
Dan Gohman3268e4d2011-05-18 21:02:18 +00003027 LF.PostIncLoops, SE, DT);
Dan Gohman45774ce2010-02-12 10:34:29 +00003028 Kind = LSRUse::ICmpZero;
3029 S = SE.getMinusSCEV(N, S);
3030 }
3031
3032 // -1 and the negations of all interesting strides (except the negation
3033 // of -1) are now also interesting.
3034 for (size_t i = 0, e = Factors.size(); i != e; ++i)
3035 if (Factors[i] != -1)
3036 Factors.insert(-(uint64_t)Factors[i]);
3037 Factors.insert(-1);
3038 }
3039
3040 // Set up the initial formula for this use.
3041 std::pair<size_t, int64_t> P = getUse(S, Kind, AccessTy);
3042 LF.LUIdx = P.first;
3043 LF.Offset = P.second;
3044 LSRUse &LU = Uses[LF.LUIdx];
Dan Gohmand006ab92010-04-07 22:27:08 +00003045 LU.AllFixupsOutsideLoop &= LF.isUseFullyOutsideLoop(L);
Dan Gohman14152082010-07-15 20:24:58 +00003046 if (!LU.WidestFixupType ||
3047 SE.getTypeSizeInBits(LU.WidestFixupType) <
3048 SE.getTypeSizeInBits(LF.OperandValToReplace->getType()))
3049 LU.WidestFixupType = LF.OperandValToReplace->getType();
Dan Gohman45774ce2010-02-12 10:34:29 +00003050
3051 // If this is the first use of this LSRUse, give it a formula.
3052 if (LU.Formulae.empty()) {
Dan Gohman8c16b382010-02-22 04:11:59 +00003053 InsertInitialFormula(S, LU, LF.LUIdx);
Dan Gohman45774ce2010-02-12 10:34:29 +00003054 CountRegisters(LU.Formulae.back(), LF.LUIdx);
3055 }
3056 }
3057
3058 DEBUG(print_fixups(dbgs()));
3059}
3060
Dan Gohmana4ca28a2010-05-20 20:52:00 +00003061/// InsertInitialFormula - Insert a formula for the given expression into
3062/// the given use, separating out loop-variant portions from loop-invariant
3063/// and loop-computable portions.
Dan Gohman45774ce2010-02-12 10:34:29 +00003064void
Dan Gohman8c16b382010-02-22 04:11:59 +00003065LSRInstance::InsertInitialFormula(const SCEV *S, LSRUse &LU, size_t LUIdx) {
Andrew Trick57243da2013-10-25 21:35:56 +00003066 // Mark uses whose expressions cannot be expanded.
3067 if (!isSafeToExpand(S, SE))
3068 LU.RigidFormula = true;
3069
Dan Gohman45774ce2010-02-12 10:34:29 +00003070 Formula F;
Dan Gohman20d9ce22010-11-17 21:41:58 +00003071 F.InitialMatch(S, L, SE);
Dan Gohman45774ce2010-02-12 10:34:29 +00003072 bool Inserted = InsertFormula(LU, LUIdx, F);
3073 assert(Inserted && "Initial formula already exists!"); (void)Inserted;
3074}
3075
Dan Gohmana4ca28a2010-05-20 20:52:00 +00003076/// InsertSupplementalFormula - Insert a simple single-register formula for
3077/// the given expression into the given use.
Dan Gohman45774ce2010-02-12 10:34:29 +00003078void
3079LSRInstance::InsertSupplementalFormula(const SCEV *S,
3080 LSRUse &LU, size_t LUIdx) {
3081 Formula F;
3082 F.BaseRegs.push_back(S);
Chandler Carruth7e31c8f2013-01-12 23:46:04 +00003083 F.HasBaseReg = true;
Dan Gohman45774ce2010-02-12 10:34:29 +00003084 bool Inserted = InsertFormula(LU, LUIdx, F);
3085 assert(Inserted && "Supplemental formula already exists!"); (void)Inserted;
3086}
3087
3088/// CountRegisters - Note which registers are used by the given formula,
3089/// updating RegUses.
3090void LSRInstance::CountRegisters(const Formula &F, size_t LUIdx) {
3091 if (F.ScaledReg)
3092 RegUses.CountRegister(F.ScaledReg, LUIdx);
3093 for (SmallVectorImpl<const SCEV *>::const_iterator I = F.BaseRegs.begin(),
3094 E = F.BaseRegs.end(); I != E; ++I)
3095 RegUses.CountRegister(*I, LUIdx);
3096}
3097
3098/// InsertFormula - If the given formula has not yet been inserted, add it to
3099/// the list, and return true. Return false otherwise.
3100bool LSRInstance::InsertFormula(LSRUse &LU, unsigned LUIdx, const Formula &F) {
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00003101 // Do not insert formula that we will not be able to expand.
3102 assert(isLegalUse(TTI, LU.MinOffset, LU.MaxOffset, LU.Kind, LU.AccessTy, F) &&
3103 "Formula is illegal");
Dan Gohman8c16b382010-02-22 04:11:59 +00003104 if (!LU.InsertFormula(F))
Dan Gohman45774ce2010-02-12 10:34:29 +00003105 return false;
3106
3107 CountRegisters(F, LUIdx);
3108 return true;
3109}
3110
3111/// CollectLoopInvariantFixupsAndFormulae - Check for other uses of
3112/// loop-invariant values which we're tracking. These other uses will pin these
3113/// values in registers, making them less profitable for elimination.
3114/// TODO: This currently misses non-constant addrec step registers.
3115/// TODO: Should this give more weight to users inside the loop?
3116void
3117LSRInstance::CollectLoopInvariantFixupsAndFormulae() {
3118 SmallVector<const SCEV *, 8> Worklist(RegUses.begin(), RegUses.end());
3119 SmallPtrSet<const SCEV *, 8> Inserted;
3120
3121 while (!Worklist.empty()) {
3122 const SCEV *S = Worklist.pop_back_val();
3123
3124 if (const SCEVNAryExpr *N = dyn_cast<SCEVNAryExpr>(S))
Dan Gohmandd41bba2010-06-21 19:47:52 +00003125 Worklist.append(N->op_begin(), N->op_end());
Dan Gohman45774ce2010-02-12 10:34:29 +00003126 else if (const SCEVCastExpr *C = dyn_cast<SCEVCastExpr>(S))
3127 Worklist.push_back(C->getOperand());
3128 else if (const SCEVUDivExpr *D = dyn_cast<SCEVUDivExpr>(S)) {
3129 Worklist.push_back(D->getLHS());
3130 Worklist.push_back(D->getRHS());
Chandler Carruthcdf47882014-03-09 03:16:01 +00003131 } else if (const SCEVUnknown *US = dyn_cast<SCEVUnknown>(S)) {
3132 if (!Inserted.insert(US)) continue;
3133 const Value *V = US->getValue();
Dan Gohman67b44032010-06-04 23:16:05 +00003134 if (const Instruction *Inst = dyn_cast<Instruction>(V)) {
3135 // Look for instructions defined outside the loop.
Dan Gohman45774ce2010-02-12 10:34:29 +00003136 if (L->contains(Inst)) continue;
Dan Gohman67b44032010-06-04 23:16:05 +00003137 } else if (isa<UndefValue>(V))
3138 // Undef doesn't have a live range, so it doesn't matter.
3139 continue;
Chandler Carruthcdf47882014-03-09 03:16:01 +00003140 for (const Use &U : V->uses()) {
3141 const Instruction *UserInst = dyn_cast<Instruction>(U.getUser());
Dan Gohman45774ce2010-02-12 10:34:29 +00003142 // Ignore non-instructions.
3143 if (!UserInst)
Dan Gohman045f8192010-01-22 00:46:49 +00003144 continue;
Dan Gohman45774ce2010-02-12 10:34:29 +00003145 // Ignore instructions in other functions (as can happen with
3146 // Constants).
3147 if (UserInst->getParent()->getParent() != L->getHeader()->getParent())
Dan Gohman045f8192010-01-22 00:46:49 +00003148 continue;
Dan Gohman45774ce2010-02-12 10:34:29 +00003149 // Ignore instructions not dominated by the loop.
3150 const BasicBlock *UseBB = !isa<PHINode>(UserInst) ?
3151 UserInst->getParent() :
3152 cast<PHINode>(UserInst)->getIncomingBlock(
Chandler Carruthcdf47882014-03-09 03:16:01 +00003153 PHINode::getIncomingValueNumForOperand(U.getOperandNo()));
Dan Gohman45774ce2010-02-12 10:34:29 +00003154 if (!DT.dominates(L->getHeader(), UseBB))
3155 continue;
3156 // Ignore uses which are part of other SCEV expressions, to avoid
3157 // analyzing them multiple times.
Dan Gohman42ec4eb2010-04-09 19:12:34 +00003158 if (SE.isSCEVable(UserInst->getType())) {
3159 const SCEV *UserS = SE.getSCEV(const_cast<Instruction *>(UserInst));
3160 // If the user is a no-op, look through to its uses.
3161 if (!isa<SCEVUnknown>(UserS))
3162 continue;
Chandler Carruthcdf47882014-03-09 03:16:01 +00003163 if (UserS == US) {
Dan Gohman42ec4eb2010-04-09 19:12:34 +00003164 Worklist.push_back(
3165 SE.getUnknown(const_cast<Instruction *>(UserInst)));
3166 continue;
3167 }
3168 }
Dan Gohman45774ce2010-02-12 10:34:29 +00003169 // Ignore icmp instructions which are already being analyzed.
3170 if (const ICmpInst *ICI = dyn_cast<ICmpInst>(UserInst)) {
Chandler Carruthcdf47882014-03-09 03:16:01 +00003171 unsigned OtherIdx = !U.getOperandNo();
Dan Gohman45774ce2010-02-12 10:34:29 +00003172 Value *OtherOp = const_cast<Value *>(ICI->getOperand(OtherIdx));
Dan Gohmanafd6db92010-11-17 21:23:15 +00003173 if (SE.hasComputableLoopEvolution(SE.getSCEV(OtherOp), L))
Dan Gohman45774ce2010-02-12 10:34:29 +00003174 continue;
3175 }
3176
3177 LSRFixup &LF = getNewFixup();
3178 LF.UserInst = const_cast<Instruction *>(UserInst);
Chandler Carruthcdf47882014-03-09 03:16:01 +00003179 LF.OperandValToReplace = U;
Craig Topperf40110f2014-04-25 05:29:35 +00003180 std::pair<size_t, int64_t> P = getUse(S, LSRUse::Basic, nullptr);
Dan Gohman45774ce2010-02-12 10:34:29 +00003181 LF.LUIdx = P.first;
3182 LF.Offset = P.second;
3183 LSRUse &LU = Uses[LF.LUIdx];
Dan Gohmand006ab92010-04-07 22:27:08 +00003184 LU.AllFixupsOutsideLoop &= LF.isUseFullyOutsideLoop(L);
Dan Gohman14152082010-07-15 20:24:58 +00003185 if (!LU.WidestFixupType ||
3186 SE.getTypeSizeInBits(LU.WidestFixupType) <
3187 SE.getTypeSizeInBits(LF.OperandValToReplace->getType()))
3188 LU.WidestFixupType = LF.OperandValToReplace->getType();
Chandler Carruthcdf47882014-03-09 03:16:01 +00003189 InsertSupplementalFormula(US, LU, LF.LUIdx);
Dan Gohman45774ce2010-02-12 10:34:29 +00003190 CountRegisters(LU.Formulae.back(), Uses.size() - 1);
3191 break;
3192 }
3193 }
3194 }
3195}
3196
3197/// CollectSubexprs - Split S into subexpressions which can be pulled out into
3198/// separate registers. If C is non-null, multiply each subexpression by C.
Andrew Trickc8037062012-07-17 05:30:37 +00003199///
3200/// Return remainder expression after factoring the subexpressions captured by
3201/// Ops. If Ops is complete, return NULL.
3202static const SCEV *CollectSubexprs(const SCEV *S, const SCEVConstant *C,
3203 SmallVectorImpl<const SCEV *> &Ops,
3204 const Loop *L,
3205 ScalarEvolution &SE,
3206 unsigned Depth = 0) {
3207 // Arbitrarily cap recursion to protect compile time.
3208 if (Depth >= 3)
3209 return S;
3210
Dan Gohman45774ce2010-02-12 10:34:29 +00003211 if (const SCEVAddExpr *Add = dyn_cast<SCEVAddExpr>(S)) {
3212 // Break out add operands.
3213 for (SCEVAddExpr::op_iterator I = Add->op_begin(), E = Add->op_end();
Andrew Trickc8037062012-07-17 05:30:37 +00003214 I != E; ++I) {
3215 const SCEV *Remainder = CollectSubexprs(*I, C, Ops, L, SE, Depth+1);
3216 if (Remainder)
3217 Ops.push_back(C ? SE.getMulExpr(C, Remainder) : Remainder);
3218 }
Craig Topperf40110f2014-04-25 05:29:35 +00003219 return nullptr;
Dan Gohman45774ce2010-02-12 10:34:29 +00003220 } else if (const SCEVAddRecExpr *AR = dyn_cast<SCEVAddRecExpr>(S)) {
3221 // Split a non-zero base out of an addrec.
Andrew Trickc8037062012-07-17 05:30:37 +00003222 if (AR->getStart()->isZero())
3223 return S;
3224
3225 const SCEV *Remainder = CollectSubexprs(AR->getStart(),
3226 C, Ops, L, SE, Depth+1);
3227 // Split the non-zero AddRec unless it is part of a nested recurrence that
3228 // does not pertain to this loop.
3229 if (Remainder && (AR->getLoop() == L || !isa<SCEVAddRecExpr>(Remainder))) {
3230 Ops.push_back(C ? SE.getMulExpr(C, Remainder) : Remainder);
Craig Topperf40110f2014-04-25 05:29:35 +00003231 Remainder = nullptr;
Andrew Trickc8037062012-07-17 05:30:37 +00003232 }
3233 if (Remainder != AR->getStart()) {
3234 if (!Remainder)
3235 Remainder = SE.getConstant(AR->getType(), 0);
3236 return SE.getAddRecExpr(Remainder,
3237 AR->getStepRecurrence(SE),
3238 AR->getLoop(),
3239 //FIXME: AR->getNoWrapFlags(SCEV::FlagNW)
3240 SCEV::FlagAnyWrap);
Dan Gohman45774ce2010-02-12 10:34:29 +00003241 }
3242 } else if (const SCEVMulExpr *Mul = dyn_cast<SCEVMulExpr>(S)) {
3243 // Break (C * (a + b + c)) into C*a + C*b + C*c.
Andrew Trickc8037062012-07-17 05:30:37 +00003244 if (Mul->getNumOperands() != 2)
3245 return S;
3246 if (const SCEVConstant *Op0 =
3247 dyn_cast<SCEVConstant>(Mul->getOperand(0))) {
3248 C = C ? cast<SCEVConstant>(SE.getMulExpr(C, Op0)) : Op0;
3249 const SCEV *Remainder =
3250 CollectSubexprs(Mul->getOperand(1), C, Ops, L, SE, Depth+1);
3251 if (Remainder)
3252 Ops.push_back(SE.getMulExpr(C, Remainder));
Craig Topperf40110f2014-04-25 05:29:35 +00003253 return nullptr;
Andrew Trickc8037062012-07-17 05:30:37 +00003254 }
Dan Gohman45774ce2010-02-12 10:34:29 +00003255 }
Andrew Trickc8037062012-07-17 05:30:37 +00003256 return S;
Dan Gohman45774ce2010-02-12 10:34:29 +00003257}
3258
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00003259/// \brief Helper function for LSRInstance::GenerateReassociations.
3260void LSRInstance::GenerateReassociationsImpl(LSRUse &LU, unsigned LUIdx,
3261 const Formula &Base,
3262 unsigned Depth, size_t Idx,
3263 bool IsScaledReg) {
3264 const SCEV *BaseReg = IsScaledReg ? Base.ScaledReg : Base.BaseRegs[Idx];
3265 SmallVector<const SCEV *, 8> AddOps;
3266 const SCEV *Remainder = CollectSubexprs(BaseReg, nullptr, AddOps, L, SE);
3267 if (Remainder)
3268 AddOps.push_back(Remainder);
3269
3270 if (AddOps.size() == 1)
3271 return;
3272
3273 for (SmallVectorImpl<const SCEV *>::const_iterator J = AddOps.begin(),
3274 JE = AddOps.end();
3275 J != JE; ++J) {
3276
3277 // Loop-variant "unknown" values are uninteresting; we won't be able to
3278 // do anything meaningful with them.
3279 if (isa<SCEVUnknown>(*J) && !SE.isLoopInvariant(*J, L))
3280 continue;
3281
3282 // Don't pull a constant into a register if the constant could be folded
3283 // into an immediate field.
3284 if (isAlwaysFoldable(TTI, SE, LU.MinOffset, LU.MaxOffset, LU.Kind,
3285 LU.AccessTy, *J, Base.getNumRegs() > 1))
3286 continue;
3287
3288 // Collect all operands except *J.
3289 SmallVector<const SCEV *, 8> InnerAddOps(
3290 ((const SmallVector<const SCEV *, 8> &)AddOps).begin(), J);
3291 InnerAddOps.append(std::next(J),
3292 ((const SmallVector<const SCEV *, 8> &)AddOps).end());
3293
3294 // Don't leave just a constant behind in a register if the constant could
3295 // be folded into an immediate field.
3296 if (InnerAddOps.size() == 1 &&
3297 isAlwaysFoldable(TTI, SE, LU.MinOffset, LU.MaxOffset, LU.Kind,
3298 LU.AccessTy, InnerAddOps[0], Base.getNumRegs() > 1))
3299 continue;
3300
3301 const SCEV *InnerSum = SE.getAddExpr(InnerAddOps);
3302 if (InnerSum->isZero())
3303 continue;
3304 Formula F = Base;
3305
3306 // Add the remaining pieces of the add back into the new formula.
3307 const SCEVConstant *InnerSumSC = dyn_cast<SCEVConstant>(InnerSum);
3308 if (InnerSumSC && SE.getTypeSizeInBits(InnerSumSC->getType()) <= 64 &&
3309 TTI.isLegalAddImmediate((uint64_t)F.UnfoldedOffset +
3310 InnerSumSC->getValue()->getZExtValue())) {
3311 F.UnfoldedOffset =
3312 (uint64_t)F.UnfoldedOffset + InnerSumSC->getValue()->getZExtValue();
3313 if (IsScaledReg)
3314 F.ScaledReg = nullptr;
3315 else
3316 F.BaseRegs.erase(F.BaseRegs.begin() + Idx);
3317 } else if (IsScaledReg)
3318 F.ScaledReg = InnerSum;
3319 else
3320 F.BaseRegs[Idx] = InnerSum;
3321
3322 // Add J as its own register, or an unfolded immediate.
3323 const SCEVConstant *SC = dyn_cast<SCEVConstant>(*J);
3324 if (SC && SE.getTypeSizeInBits(SC->getType()) <= 64 &&
3325 TTI.isLegalAddImmediate((uint64_t)F.UnfoldedOffset +
3326 SC->getValue()->getZExtValue()))
3327 F.UnfoldedOffset =
3328 (uint64_t)F.UnfoldedOffset + SC->getValue()->getZExtValue();
3329 else
3330 F.BaseRegs.push_back(*J);
3331 // We may have changed the number of register in base regs, adjust the
3332 // formula accordingly.
3333 F.Canonicalize();
3334
3335 if (InsertFormula(LU, LUIdx, F))
3336 // If that formula hadn't been seen before, recurse to find more like
3337 // it.
3338 GenerateReassociations(LU, LUIdx, LU.Formulae.back(), Depth + 1);
3339 }
3340}
3341
Dan Gohman45774ce2010-02-12 10:34:29 +00003342/// GenerateReassociations - Split out subexpressions from adds and the bases of
3343/// addrecs.
3344void LSRInstance::GenerateReassociations(LSRUse &LU, unsigned LUIdx,
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00003345 Formula Base, unsigned Depth) {
3346 assert(Base.isCanonical() && "Input must be in the canonical form");
Dan Gohman45774ce2010-02-12 10:34:29 +00003347 // Arbitrarily cap recursion to protect compile time.
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00003348 if (Depth >= 3)
3349 return;
Dan Gohman45774ce2010-02-12 10:34:29 +00003350
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00003351 for (size_t i = 0, e = Base.BaseRegs.size(); i != e; ++i)
3352 GenerateReassociationsImpl(LU, LUIdx, Base, Depth, i);
Dan Gohman45774ce2010-02-12 10:34:29 +00003353
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00003354 if (Base.Scale == 1)
3355 GenerateReassociationsImpl(LU, LUIdx, Base, Depth,
3356 /* Idx */ -1, /* IsScaledReg */ true);
Dan Gohman45774ce2010-02-12 10:34:29 +00003357}
3358
3359/// GenerateCombinations - Generate a formula consisting of all of the
3360/// loop-dominating registers added into a single register.
3361void LSRInstance::GenerateCombinations(LSRUse &LU, unsigned LUIdx,
Dan Gohmane4e51a62010-02-14 18:51:39 +00003362 Formula Base) {
Dan Gohman8b0a4192010-03-01 17:49:51 +00003363 // This method is only interesting on a plurality of registers.
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00003364 if (Base.BaseRegs.size() + (Base.Scale == 1) <= 1)
3365 return;
Dan Gohman45774ce2010-02-12 10:34:29 +00003366
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00003367 // Flatten the representation, i.e., reg1 + 1*reg2 => reg1 + reg2, before
3368 // processing the formula.
3369 Base.Unscale();
Dan Gohman45774ce2010-02-12 10:34:29 +00003370 Formula F = Base;
3371 F.BaseRegs.clear();
3372 SmallVector<const SCEV *, 4> Ops;
3373 for (SmallVectorImpl<const SCEV *>::const_iterator
3374 I = Base.BaseRegs.begin(), E = Base.BaseRegs.end(); I != E; ++I) {
3375 const SCEV *BaseReg = *I;
Dan Gohman20d9ce22010-11-17 21:41:58 +00003376 if (SE.properlyDominates(BaseReg, L->getHeader()) &&
Dan Gohmanafd6db92010-11-17 21:23:15 +00003377 !SE.hasComputableLoopEvolution(BaseReg, L))
Dan Gohman45774ce2010-02-12 10:34:29 +00003378 Ops.push_back(BaseReg);
3379 else
3380 F.BaseRegs.push_back(BaseReg);
3381 }
3382 if (Ops.size() > 1) {
Dan Gohmanbb7d5222010-02-14 18:50:49 +00003383 const SCEV *Sum = SE.getAddExpr(Ops);
3384 // TODO: If Sum is zero, it probably means ScalarEvolution missed an
3385 // opportunity to fold something. For now, just ignore such cases
Dan Gohman8b0a4192010-03-01 17:49:51 +00003386 // rather than proceed with zero in a register.
Dan Gohmanbb7d5222010-02-14 18:50:49 +00003387 if (!Sum->isZero()) {
3388 F.BaseRegs.push_back(Sum);
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00003389 F.Canonicalize();
Dan Gohmanbb7d5222010-02-14 18:50:49 +00003390 (void)InsertFormula(LU, LUIdx, F);
3391 }
Dan Gohman45774ce2010-02-12 10:34:29 +00003392 }
3393}
3394
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00003395/// \brief Helper function for LSRInstance::GenerateSymbolicOffsets.
3396void LSRInstance::GenerateSymbolicOffsetsImpl(LSRUse &LU, unsigned LUIdx,
3397 const Formula &Base, size_t Idx,
3398 bool IsScaledReg) {
3399 const SCEV *G = IsScaledReg ? Base.ScaledReg : Base.BaseRegs[Idx];
3400 GlobalValue *GV = ExtractSymbol(G, SE);
3401 if (G->isZero() || !GV)
3402 return;
3403 Formula F = Base;
3404 F.BaseGV = GV;
3405 if (!isLegalUse(TTI, LU.MinOffset, LU.MaxOffset, LU.Kind, LU.AccessTy, F))
3406 return;
3407 if (IsScaledReg)
3408 F.ScaledReg = G;
3409 else
3410 F.BaseRegs[Idx] = G;
3411 (void)InsertFormula(LU, LUIdx, F);
3412}
3413
Dan Gohman45774ce2010-02-12 10:34:29 +00003414/// GenerateSymbolicOffsets - Generate reuse formulae using symbolic offsets.
3415void LSRInstance::GenerateSymbolicOffsets(LSRUse &LU, unsigned LUIdx,
3416 Formula Base) {
3417 // We can't add a symbolic offset if the address already contains one.
Chandler Carruth6e479322013-01-07 15:04:40 +00003418 if (Base.BaseGV) return;
Dan Gohman45774ce2010-02-12 10:34:29 +00003419
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00003420 for (size_t i = 0, e = Base.BaseRegs.size(); i != e; ++i)
3421 GenerateSymbolicOffsetsImpl(LU, LUIdx, Base, i);
3422 if (Base.Scale == 1)
3423 GenerateSymbolicOffsetsImpl(LU, LUIdx, Base, /* Idx */ -1,
3424 /* IsScaledReg */ true);
3425}
3426
3427/// \brief Helper function for LSRInstance::GenerateConstantOffsets.
3428void LSRInstance::GenerateConstantOffsetsImpl(
3429 LSRUse &LU, unsigned LUIdx, const Formula &Base,
3430 const SmallVectorImpl<int64_t> &Worklist, size_t Idx, bool IsScaledReg) {
3431 const SCEV *G = IsScaledReg ? Base.ScaledReg : Base.BaseRegs[Idx];
3432 for (SmallVectorImpl<int64_t>::const_iterator I = Worklist.begin(),
3433 E = Worklist.end();
3434 I != E; ++I) {
Dan Gohman45774ce2010-02-12 10:34:29 +00003435 Formula F = Base;
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00003436 F.BaseOffset = (uint64_t)Base.BaseOffset - *I;
3437 if (isLegalUse(TTI, LU.MinOffset - *I, LU.MaxOffset - *I, LU.Kind,
3438 LU.AccessTy, F)) {
3439 // Add the offset to the base register.
3440 const SCEV *NewG = SE.getAddExpr(SE.getConstant(G->getType(), *I), G);
3441 // If it cancelled out, drop the base register, otherwise update it.
3442 if (NewG->isZero()) {
3443 if (IsScaledReg) {
3444 F.Scale = 0;
3445 F.ScaledReg = nullptr;
3446 } else
3447 F.DeleteBaseReg(F.BaseRegs[Idx]);
3448 F.Canonicalize();
3449 } else if (IsScaledReg)
3450 F.ScaledReg = NewG;
3451 else
3452 F.BaseRegs[Idx] = NewG;
3453
3454 (void)InsertFormula(LU, LUIdx, F);
3455 }
Dan Gohman45774ce2010-02-12 10:34:29 +00003456 }
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00003457
3458 int64_t Imm = ExtractImmediate(G, SE);
3459 if (G->isZero() || Imm == 0)
3460 return;
3461 Formula F = Base;
3462 F.BaseOffset = (uint64_t)F.BaseOffset + Imm;
3463 if (!isLegalUse(TTI, LU.MinOffset, LU.MaxOffset, LU.Kind, LU.AccessTy, F))
3464 return;
3465 if (IsScaledReg)
3466 F.ScaledReg = G;
3467 else
3468 F.BaseRegs[Idx] = G;
3469 (void)InsertFormula(LU, LUIdx, F);
Dan Gohman45774ce2010-02-12 10:34:29 +00003470}
3471
3472/// GenerateConstantOffsets - Generate reuse formulae using symbolic offsets.
3473void LSRInstance::GenerateConstantOffsets(LSRUse &LU, unsigned LUIdx,
3474 Formula Base) {
3475 // TODO: For now, just add the min and max offset, because it usually isn't
3476 // worthwhile looking at everything inbetween.
Dan Gohman4afd4122010-07-15 15:14:45 +00003477 SmallVector<int64_t, 2> Worklist;
Dan Gohman45774ce2010-02-12 10:34:29 +00003478 Worklist.push_back(LU.MinOffset);
3479 if (LU.MaxOffset != LU.MinOffset)
3480 Worklist.push_back(LU.MaxOffset);
3481
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00003482 for (size_t i = 0, e = Base.BaseRegs.size(); i != e; ++i)
3483 GenerateConstantOffsetsImpl(LU, LUIdx, Base, Worklist, i);
3484 if (Base.Scale == 1)
3485 GenerateConstantOffsetsImpl(LU, LUIdx, Base, Worklist, /* Idx */ -1,
3486 /* IsScaledReg */ true);
Dan Gohman45774ce2010-02-12 10:34:29 +00003487}
3488
3489/// GenerateICmpZeroScales - For ICmpZero, check to see if we can scale up
3490/// the comparison. For example, x == y -> x*c == y*c.
3491void LSRInstance::GenerateICmpZeroScales(LSRUse &LU, unsigned LUIdx,
3492 Formula Base) {
3493 if (LU.Kind != LSRUse::ICmpZero) return;
3494
3495 // Determine the integer type for the base formula.
Chris Lattner229907c2011-07-18 04:54:35 +00003496 Type *IntTy = Base.getType();
Dan Gohman45774ce2010-02-12 10:34:29 +00003497 if (!IntTy) return;
3498 if (SE.getTypeSizeInBits(IntTy) > 64) return;
3499
3500 // Don't do this if there is more than one offset.
3501 if (LU.MinOffset != LU.MaxOffset) return;
3502
Chandler Carruth6e479322013-01-07 15:04:40 +00003503 assert(!Base.BaseGV && "ICmpZero use is not legal!");
Dan Gohman45774ce2010-02-12 10:34:29 +00003504
3505 // Check each interesting stride.
3506 for (SmallSetVector<int64_t, 8>::const_iterator
3507 I = Factors.begin(), E = Factors.end(); I != E; ++I) {
3508 int64_t Factor = *I;
Dan Gohman45774ce2010-02-12 10:34:29 +00003509
3510 // Check that the multiplication doesn't overflow.
Chandler Carruth6e479322013-01-07 15:04:40 +00003511 if (Base.BaseOffset == INT64_MIN && Factor == -1)
Dan Gohman5f10d6c2010-02-17 00:41:53 +00003512 continue;
Chandler Carruth6e479322013-01-07 15:04:40 +00003513 int64_t NewBaseOffset = (uint64_t)Base.BaseOffset * Factor;
3514 if (NewBaseOffset / Factor != Base.BaseOffset)
Dan Gohman45774ce2010-02-12 10:34:29 +00003515 continue;
Andrew Trick429e9ed2014-02-26 16:31:56 +00003516 // If the offset will be truncated at this use, check that it is in bounds.
3517 if (!IntTy->isPointerTy() &&
3518 !ConstantInt::isValueValidForType(IntTy, NewBaseOffset))
3519 continue;
Dan Gohman45774ce2010-02-12 10:34:29 +00003520
3521 // Check that multiplying with the use offset doesn't overflow.
3522 int64_t Offset = LU.MinOffset;
Dan Gohman5f10d6c2010-02-17 00:41:53 +00003523 if (Offset == INT64_MIN && Factor == -1)
3524 continue;
Dan Gohman45774ce2010-02-12 10:34:29 +00003525 Offset = (uint64_t)Offset * Factor;
Dan Gohman13ac3b22010-02-17 00:42:19 +00003526 if (Offset / Factor != LU.MinOffset)
Dan Gohman45774ce2010-02-12 10:34:29 +00003527 continue;
Andrew Trick429e9ed2014-02-26 16:31:56 +00003528 // If the offset will be truncated at this use, check that it is in bounds.
3529 if (!IntTy->isPointerTy() &&
3530 !ConstantInt::isValueValidForType(IntTy, Offset))
3531 continue;
Dan Gohman45774ce2010-02-12 10:34:29 +00003532
Dan Gohman963b1c12010-06-24 16:57:52 +00003533 Formula F = Base;
Chandler Carruth6e479322013-01-07 15:04:40 +00003534 F.BaseOffset = NewBaseOffset;
Dan Gohman963b1c12010-06-24 16:57:52 +00003535
Dan Gohman45774ce2010-02-12 10:34:29 +00003536 // Check that this scale is legal.
Chandler Carruth26c59fa2013-01-07 14:41:08 +00003537 if (!isLegalUse(TTI, Offset, Offset, LU.Kind, LU.AccessTy, F))
Dan Gohman45774ce2010-02-12 10:34:29 +00003538 continue;
3539
3540 // Compensate for the use having MinOffset built into it.
Chandler Carruth6e479322013-01-07 15:04:40 +00003541 F.BaseOffset = (uint64_t)F.BaseOffset + Offset - LU.MinOffset;
Dan Gohman45774ce2010-02-12 10:34:29 +00003542
Dan Gohman1d2ded72010-05-03 22:09:21 +00003543 const SCEV *FactorS = SE.getConstant(IntTy, Factor);
Dan Gohman45774ce2010-02-12 10:34:29 +00003544
3545 // Check that multiplying with each base register doesn't overflow.
3546 for (size_t i = 0, e = F.BaseRegs.size(); i != e; ++i) {
3547 F.BaseRegs[i] = SE.getMulExpr(F.BaseRegs[i], FactorS);
Dan Gohman4eebb942010-02-19 19:35:48 +00003548 if (getExactSDiv(F.BaseRegs[i], FactorS, SE) != Base.BaseRegs[i])
Dan Gohman45774ce2010-02-12 10:34:29 +00003549 goto next;
3550 }
3551
3552 // Check that multiplying with the scaled register doesn't overflow.
3553 if (F.ScaledReg) {
3554 F.ScaledReg = SE.getMulExpr(F.ScaledReg, FactorS);
Dan Gohman4eebb942010-02-19 19:35:48 +00003555 if (getExactSDiv(F.ScaledReg, FactorS, SE) != Base.ScaledReg)
Dan Gohman45774ce2010-02-12 10:34:29 +00003556 continue;
3557 }
3558
Dan Gohman6136e942011-05-03 00:46:49 +00003559 // Check that multiplying with the unfolded offset doesn't overflow.
3560 if (F.UnfoldedOffset != 0) {
Dan Gohman6c4a3192011-05-23 21:07:39 +00003561 if (F.UnfoldedOffset == INT64_MIN && Factor == -1)
3562 continue;
Dan Gohman6136e942011-05-03 00:46:49 +00003563 F.UnfoldedOffset = (uint64_t)F.UnfoldedOffset * Factor;
3564 if (F.UnfoldedOffset / Factor != Base.UnfoldedOffset)
3565 continue;
Andrew Trick429e9ed2014-02-26 16:31:56 +00003566 // If the offset will be truncated, check that it is in bounds.
3567 if (!IntTy->isPointerTy() &&
3568 !ConstantInt::isValueValidForType(IntTy, F.UnfoldedOffset))
3569 continue;
Dan Gohman6136e942011-05-03 00:46:49 +00003570 }
3571
Dan Gohman45774ce2010-02-12 10:34:29 +00003572 // If we make it here and it's legal, add it.
3573 (void)InsertFormula(LU, LUIdx, F);
3574 next:;
3575 }
3576}
3577
3578/// GenerateScales - Generate stride factor reuse formulae by making use of
3579/// scaled-offset address modes, for example.
Dan Gohmanab5fb7f2010-05-20 19:44:23 +00003580void LSRInstance::GenerateScales(LSRUse &LU, unsigned LUIdx, Formula Base) {
Dan Gohman45774ce2010-02-12 10:34:29 +00003581 // Determine the integer type for the base formula.
Chris Lattner229907c2011-07-18 04:54:35 +00003582 Type *IntTy = Base.getType();
Dan Gohman45774ce2010-02-12 10:34:29 +00003583 if (!IntTy) return;
3584
3585 // If this Formula already has a scaled register, we can't add another one.
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00003586 // Try to unscale the formula to generate a better scale.
3587 if (Base.Scale != 0 && !Base.Unscale())
3588 return;
3589
3590 assert(Base.Scale == 0 && "Unscale did not did its job!");
Dan Gohman45774ce2010-02-12 10:34:29 +00003591
3592 // Check each interesting stride.
3593 for (SmallSetVector<int64_t, 8>::const_iterator
3594 I = Factors.begin(), E = Factors.end(); I != E; ++I) {
3595 int64_t Factor = *I;
3596
Chandler Carruth6e479322013-01-07 15:04:40 +00003597 Base.Scale = Factor;
3598 Base.HasBaseReg = Base.BaseRegs.size() > 1;
Dan Gohman45774ce2010-02-12 10:34:29 +00003599 // Check whether this scale is going to be legal.
Chandler Carruth26c59fa2013-01-07 14:41:08 +00003600 if (!isLegalUse(TTI, LU.MinOffset, LU.MaxOffset, LU.Kind, LU.AccessTy,
3601 Base)) {
Dan Gohman45774ce2010-02-12 10:34:29 +00003602 // As a special-case, handle special out-of-loop Basic users specially.
3603 // TODO: Reconsider this special case.
3604 if (LU.Kind == LSRUse::Basic &&
Chandler Carruth26c59fa2013-01-07 14:41:08 +00003605 isLegalUse(TTI, LU.MinOffset, LU.MaxOffset, LSRUse::Special,
3606 LU.AccessTy, Base) &&
Dan Gohman45774ce2010-02-12 10:34:29 +00003607 LU.AllFixupsOutsideLoop)
3608 LU.Kind = LSRUse::Special;
3609 else
3610 continue;
3611 }
3612 // For an ICmpZero, negating a solitary base register won't lead to
3613 // new solutions.
3614 if (LU.Kind == LSRUse::ICmpZero &&
Chandler Carruth6e479322013-01-07 15:04:40 +00003615 !Base.HasBaseReg && Base.BaseOffset == 0 && !Base.BaseGV)
Dan Gohman45774ce2010-02-12 10:34:29 +00003616 continue;
3617 // For each addrec base reg, apply the scale, if possible.
3618 for (size_t i = 0, e = Base.BaseRegs.size(); i != e; ++i)
3619 if (const SCEVAddRecExpr *AR =
3620 dyn_cast<SCEVAddRecExpr>(Base.BaseRegs[i])) {
Dan Gohman1d2ded72010-05-03 22:09:21 +00003621 const SCEV *FactorS = SE.getConstant(IntTy, Factor);
Dan Gohman45774ce2010-02-12 10:34:29 +00003622 if (FactorS->isZero())
3623 continue;
3624 // Divide out the factor, ignoring high bits, since we'll be
3625 // scaling the value back up in the end.
Dan Gohman4eebb942010-02-19 19:35:48 +00003626 if (const SCEV *Quotient = getExactSDiv(AR, FactorS, SE, true)) {
Dan Gohman45774ce2010-02-12 10:34:29 +00003627 // TODO: This could be optimized to avoid all the copying.
3628 Formula F = Base;
3629 F.ScaledReg = Quotient;
Dan Gohman80a96082010-05-20 15:17:54 +00003630 F.DeleteBaseReg(F.BaseRegs[i]);
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00003631 // The canonical representation of 1*reg is reg, which is already in
3632 // Base. In that case, do not try to insert the formula, it will be
3633 // rejected anyway.
3634 if (F.Scale == 1 && F.BaseRegs.empty())
3635 continue;
Dan Gohman45774ce2010-02-12 10:34:29 +00003636 (void)InsertFormula(LU, LUIdx, F);
3637 }
3638 }
3639 }
3640}
3641
3642/// GenerateTruncates - Generate reuse formulae from different IV types.
Dan Gohmanab5fb7f2010-05-20 19:44:23 +00003643void LSRInstance::GenerateTruncates(LSRUse &LU, unsigned LUIdx, Formula Base) {
Dan Gohman45774ce2010-02-12 10:34:29 +00003644 // Don't bother truncating symbolic values.
Chandler Carruth6e479322013-01-07 15:04:40 +00003645 if (Base.BaseGV) return;
Dan Gohman45774ce2010-02-12 10:34:29 +00003646
3647 // Determine the integer type for the base formula.
Chris Lattner229907c2011-07-18 04:54:35 +00003648 Type *DstTy = Base.getType();
Dan Gohman45774ce2010-02-12 10:34:29 +00003649 if (!DstTy) return;
3650 DstTy = SE.getEffectiveSCEVType(DstTy);
3651
Chris Lattner229907c2011-07-18 04:54:35 +00003652 for (SmallSetVector<Type *, 4>::const_iterator
Dan Gohman45774ce2010-02-12 10:34:29 +00003653 I = Types.begin(), E = Types.end(); I != E; ++I) {
Chris Lattner229907c2011-07-18 04:54:35 +00003654 Type *SrcTy = *I;
Chandler Carruth26c59fa2013-01-07 14:41:08 +00003655 if (SrcTy != DstTy && TTI.isTruncateFree(SrcTy, DstTy)) {
Dan Gohman45774ce2010-02-12 10:34:29 +00003656 Formula F = Base;
3657
3658 if (F.ScaledReg) F.ScaledReg = SE.getAnyExtendExpr(F.ScaledReg, *I);
3659 for (SmallVectorImpl<const SCEV *>::iterator J = F.BaseRegs.begin(),
3660 JE = F.BaseRegs.end(); J != JE; ++J)
3661 *J = SE.getAnyExtendExpr(*J, SrcTy);
3662
3663 // TODO: This assumes we've done basic processing on all uses and
3664 // have an idea what the register usage is.
3665 if (!F.hasRegsUsedByUsesOtherThan(LUIdx, RegUses))
3666 continue;
3667
3668 (void)InsertFormula(LU, LUIdx, F);
3669 }
3670 }
3671}
3672
3673namespace {
3674
Dan Gohmane7f74bb2010-02-14 18:51:20 +00003675/// WorkItem - Helper class for GenerateCrossUseConstantOffsets. It's used to
Dan Gohman45774ce2010-02-12 10:34:29 +00003676/// defer modifications so that the search phase doesn't have to worry about
3677/// the data structures moving underneath it.
3678struct WorkItem {
3679 size_t LUIdx;
3680 int64_t Imm;
3681 const SCEV *OrigReg;
3682
3683 WorkItem(size_t LI, int64_t I, const SCEV *R)
3684 : LUIdx(LI), Imm(I), OrigReg(R) {}
3685
3686 void print(raw_ostream &OS) const;
3687 void dump() const;
3688};
3689
3690}
3691
3692void WorkItem::print(raw_ostream &OS) const {
3693 OS << "in formulae referencing " << *OrigReg << " in use " << LUIdx
3694 << " , add offset " << Imm;
3695}
3696
Manman Ren49d684e2012-09-12 05:06:18 +00003697#if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
Dan Gohman45774ce2010-02-12 10:34:29 +00003698void WorkItem::dump() const {
3699 print(errs()); errs() << '\n';
3700}
Manman Renc3366cc2012-09-06 19:55:56 +00003701#endif
Dan Gohman45774ce2010-02-12 10:34:29 +00003702
3703/// GenerateCrossUseConstantOffsets - Look for registers which are a constant
3704/// distance apart and try to form reuse opportunities between them.
3705void LSRInstance::GenerateCrossUseConstantOffsets() {
3706 // Group the registers by their value without any added constant offset.
3707 typedef std::map<int64_t, const SCEV *> ImmMapTy;
3708 typedef DenseMap<const SCEV *, ImmMapTy> RegMapTy;
3709 RegMapTy Map;
3710 DenseMap<const SCEV *, SmallBitVector> UsedByIndicesMap;
3711 SmallVector<const SCEV *, 8> Sequence;
3712 for (RegUseTracker::const_iterator I = RegUses.begin(), E = RegUses.end();
3713 I != E; ++I) {
3714 const SCEV *Reg = *I;
3715 int64_t Imm = ExtractImmediate(Reg, SE);
3716 std::pair<RegMapTy::iterator, bool> Pair =
3717 Map.insert(std::make_pair(Reg, ImmMapTy()));
3718 if (Pair.second)
3719 Sequence.push_back(Reg);
3720 Pair.first->second.insert(std::make_pair(Imm, *I));
3721 UsedByIndicesMap[Reg] |= RegUses.getUsedByIndices(*I);
3722 }
3723
3724 // Now examine each set of registers with the same base value. Build up
3725 // a list of work to do and do the work in a separate step so that we're
3726 // not adding formulae and register counts while we're searching.
Dan Gohman110ed642010-09-01 01:45:53 +00003727 SmallVector<WorkItem, 32> WorkItems;
3728 SmallSet<std::pair<size_t, int64_t>, 32> UniqueItems;
Dan Gohman45774ce2010-02-12 10:34:29 +00003729 for (SmallVectorImpl<const SCEV *>::const_iterator I = Sequence.begin(),
3730 E = Sequence.end(); I != E; ++I) {
3731 const SCEV *Reg = *I;
3732 const ImmMapTy &Imms = Map.find(Reg)->second;
3733
Dan Gohman363f8472010-02-12 19:20:37 +00003734 // It's not worthwhile looking for reuse if there's only one offset.
3735 if (Imms.size() == 1)
3736 continue;
3737
Dan Gohman45774ce2010-02-12 10:34:29 +00003738 DEBUG(dbgs() << "Generating cross-use offsets for " << *Reg << ':';
3739 for (ImmMapTy::const_iterator J = Imms.begin(), JE = Imms.end();
3740 J != JE; ++J)
3741 dbgs() << ' ' << J->first;
3742 dbgs() << '\n');
3743
3744 // Examine each offset.
3745 for (ImmMapTy::const_iterator J = Imms.begin(), JE = Imms.end();
3746 J != JE; ++J) {
3747 const SCEV *OrigReg = J->second;
3748
3749 int64_t JImm = J->first;
3750 const SmallBitVector &UsedByIndices = RegUses.getUsedByIndices(OrigReg);
3751
3752 if (!isa<SCEVConstant>(OrigReg) &&
3753 UsedByIndicesMap[Reg].count() == 1) {
3754 DEBUG(dbgs() << "Skipping cross-use reuse for " << *OrigReg << '\n');
3755 continue;
3756 }
3757
3758 // Conservatively examine offsets between this orig reg a few selected
3759 // other orig regs.
3760 ImmMapTy::const_iterator OtherImms[] = {
Benjamin Kramerb6d0bd42014-03-02 12:27:27 +00003761 Imms.begin(), std::prev(Imms.end()),
3762 Imms.lower_bound((Imms.begin()->first + std::prev(Imms.end())->first) /
3763 2)
Dan Gohman45774ce2010-02-12 10:34:29 +00003764 };
3765 for (size_t i = 0, e = array_lengthof(OtherImms); i != e; ++i) {
3766 ImmMapTy::const_iterator M = OtherImms[i];
Dan Gohman363f8472010-02-12 19:20:37 +00003767 if (M == J || M == JE) continue;
Dan Gohman45774ce2010-02-12 10:34:29 +00003768
3769 // Compute the difference between the two.
3770 int64_t Imm = (uint64_t)JImm - M->first;
3771 for (int LUIdx = UsedByIndices.find_first(); LUIdx != -1;
Dan Gohman110ed642010-09-01 01:45:53 +00003772 LUIdx = UsedByIndices.find_next(LUIdx))
Dan Gohman45774ce2010-02-12 10:34:29 +00003773 // Make a memo of this use, offset, and register tuple.
Dan Gohman110ed642010-09-01 01:45:53 +00003774 if (UniqueItems.insert(std::make_pair(LUIdx, Imm)))
3775 WorkItems.push_back(WorkItem(LUIdx, Imm, OrigReg));
Evan Cheng85a9f432009-11-12 07:35:05 +00003776 }
3777 }
3778 }
3779
Dan Gohman45774ce2010-02-12 10:34:29 +00003780 Map.clear();
3781 Sequence.clear();
3782 UsedByIndicesMap.clear();
Dan Gohman110ed642010-09-01 01:45:53 +00003783 UniqueItems.clear();
Dan Gohman45774ce2010-02-12 10:34:29 +00003784
3785 // Now iterate through the worklist and add new formulae.
3786 for (SmallVectorImpl<WorkItem>::const_iterator I = WorkItems.begin(),
3787 E = WorkItems.end(); I != E; ++I) {
3788 const WorkItem &WI = *I;
3789 size_t LUIdx = WI.LUIdx;
3790 LSRUse &LU = Uses[LUIdx];
3791 int64_t Imm = WI.Imm;
3792 const SCEV *OrigReg = WI.OrigReg;
3793
Chris Lattner229907c2011-07-18 04:54:35 +00003794 Type *IntTy = SE.getEffectiveSCEVType(OrigReg->getType());
Dan Gohman45774ce2010-02-12 10:34:29 +00003795 const SCEV *NegImmS = SE.getSCEV(ConstantInt::get(IntTy, -(uint64_t)Imm));
3796 unsigned BitWidth = SE.getTypeSizeInBits(IntTy);
3797
Dan Gohman8b0a4192010-03-01 17:49:51 +00003798 // TODO: Use a more targeted data structure.
Dan Gohman45774ce2010-02-12 10:34:29 +00003799 for (size_t L = 0, LE = LU.Formulae.size(); L != LE; ++L) {
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00003800 Formula F = LU.Formulae[L];
3801 // FIXME: The code for the scaled and unscaled registers looks
3802 // very similar but slightly different. Investigate if they
3803 // could be merged. That way, we would not have to unscale the
3804 // Formula.
3805 F.Unscale();
Dan Gohman45774ce2010-02-12 10:34:29 +00003806 // Use the immediate in the scaled register.
3807 if (F.ScaledReg == OrigReg) {
Chandler Carruth6e479322013-01-07 15:04:40 +00003808 int64_t Offset = (uint64_t)F.BaseOffset + Imm * (uint64_t)F.Scale;
Dan Gohman45774ce2010-02-12 10:34:29 +00003809 // Don't create 50 + reg(-50).
3810 if (F.referencesReg(SE.getSCEV(
Chandler Carruth6e479322013-01-07 15:04:40 +00003811 ConstantInt::get(IntTy, -(uint64_t)Offset))))
Dan Gohman45774ce2010-02-12 10:34:29 +00003812 continue;
3813 Formula NewF = F;
Chandler Carruth6e479322013-01-07 15:04:40 +00003814 NewF.BaseOffset = Offset;
Chandler Carruth26c59fa2013-01-07 14:41:08 +00003815 if (!isLegalUse(TTI, LU.MinOffset, LU.MaxOffset, LU.Kind, LU.AccessTy,
3816 NewF))
Dan Gohman45774ce2010-02-12 10:34:29 +00003817 continue;
3818 NewF.ScaledReg = SE.getAddExpr(NegImmS, NewF.ScaledReg);
3819
3820 // If the new scale is a constant in a register, and adding the constant
3821 // value to the immediate would produce a value closer to zero than the
3822 // immediate itself, then the formula isn't worthwhile.
3823 if (const SCEVConstant *C = dyn_cast<SCEVConstant>(NewF.ScaledReg))
Chris Lattnerb1a15122011-07-15 06:08:15 +00003824 if (C->getValue()->isNegative() !=
Chandler Carruth6e479322013-01-07 15:04:40 +00003825 (NewF.BaseOffset < 0) &&
3826 (C->getValue()->getValue().abs() * APInt(BitWidth, F.Scale))
3827 .ule(abs64(NewF.BaseOffset)))
Dan Gohman45774ce2010-02-12 10:34:29 +00003828 continue;
3829
3830 // OK, looks good.
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00003831 NewF.Canonicalize();
Dan Gohman45774ce2010-02-12 10:34:29 +00003832 (void)InsertFormula(LU, LUIdx, NewF);
3833 } else {
3834 // Use the immediate in a base register.
3835 for (size_t N = 0, NE = F.BaseRegs.size(); N != NE; ++N) {
3836 const SCEV *BaseReg = F.BaseRegs[N];
3837 if (BaseReg != OrigReg)
3838 continue;
3839 Formula NewF = F;
Chandler Carruth6e479322013-01-07 15:04:40 +00003840 NewF.BaseOffset = (uint64_t)NewF.BaseOffset + Imm;
Chandler Carruth26c59fa2013-01-07 14:41:08 +00003841 if (!isLegalUse(TTI, LU.MinOffset, LU.MaxOffset,
3842 LU.Kind, LU.AccessTy, NewF)) {
3843 if (!TTI.isLegalAddImmediate((uint64_t)NewF.UnfoldedOffset + Imm))
Dan Gohman6136e942011-05-03 00:46:49 +00003844 continue;
3845 NewF = F;
3846 NewF.UnfoldedOffset = (uint64_t)NewF.UnfoldedOffset + Imm;
3847 }
Dan Gohman45774ce2010-02-12 10:34:29 +00003848 NewF.BaseRegs[N] = SE.getAddExpr(NegImmS, BaseReg);
3849
3850 // If the new formula has a constant in a register, and adding the
3851 // constant value to the immediate would produce a value closer to
3852 // zero than the immediate itself, then the formula isn't worthwhile.
3853 for (SmallVectorImpl<const SCEV *>::const_iterator
3854 J = NewF.BaseRegs.begin(), JE = NewF.BaseRegs.end();
3855 J != JE; ++J)
3856 if (const SCEVConstant *C = dyn_cast<SCEVConstant>(*J))
Chandler Carruth6e479322013-01-07 15:04:40 +00003857 if ((C->getValue()->getValue() + NewF.BaseOffset).abs().slt(
3858 abs64(NewF.BaseOffset)) &&
Dan Gohman50f8f2c2010-05-18 23:48:08 +00003859 (C->getValue()->getValue() +
Chandler Carruth6e479322013-01-07 15:04:40 +00003860 NewF.BaseOffset).countTrailingZeros() >=
Michael J. Spencerdf1ecbd72013-05-24 22:23:49 +00003861 countTrailingZeros<uint64_t>(NewF.BaseOffset))
Dan Gohman45774ce2010-02-12 10:34:29 +00003862 goto skip_formula;
3863
3864 // Ok, looks good.
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00003865 NewF.Canonicalize();
Dan Gohman45774ce2010-02-12 10:34:29 +00003866 (void)InsertFormula(LU, LUIdx, NewF);
3867 break;
3868 skip_formula:;
3869 }
3870 }
3871 }
3872 }
Dale Johannesen02cb2bf2009-05-11 17:15:42 +00003873}
3874
Dan Gohman45774ce2010-02-12 10:34:29 +00003875/// GenerateAllReuseFormulae - Generate formulae for each use.
3876void
3877LSRInstance::GenerateAllReuseFormulae() {
Dan Gohman521efe62010-02-16 01:42:53 +00003878 // This is split into multiple loops so that hasRegsUsedByUsesOtherThan
Dan Gohman45774ce2010-02-12 10:34:29 +00003879 // queries are more precise.
3880 for (size_t LUIdx = 0, NumUses = Uses.size(); LUIdx != NumUses; ++LUIdx) {
3881 LSRUse &LU = Uses[LUIdx];
3882 for (size_t i = 0, f = LU.Formulae.size(); i != f; ++i)
3883 GenerateReassociations(LU, LUIdx, LU.Formulae[i]);
3884 for (size_t i = 0, f = LU.Formulae.size(); i != f; ++i)
3885 GenerateCombinations(LU, LUIdx, LU.Formulae[i]);
3886 }
3887 for (size_t LUIdx = 0, NumUses = Uses.size(); LUIdx != NumUses; ++LUIdx) {
3888 LSRUse &LU = Uses[LUIdx];
3889 for (size_t i = 0, f = LU.Formulae.size(); i != f; ++i)
3890 GenerateSymbolicOffsets(LU, LUIdx, LU.Formulae[i]);
3891 for (size_t i = 0, f = LU.Formulae.size(); i != f; ++i)
3892 GenerateConstantOffsets(LU, LUIdx, LU.Formulae[i]);
3893 for (size_t i = 0, f = LU.Formulae.size(); i != f; ++i)
3894 GenerateICmpZeroScales(LU, LUIdx, LU.Formulae[i]);
3895 for (size_t i = 0, f = LU.Formulae.size(); i != f; ++i)
3896 GenerateScales(LU, LUIdx, LU.Formulae[i]);
Dan Gohman521efe62010-02-16 01:42:53 +00003897 }
3898 for (size_t LUIdx = 0, NumUses = Uses.size(); LUIdx != NumUses; ++LUIdx) {
3899 LSRUse &LU = Uses[LUIdx];
Dan Gohman45774ce2010-02-12 10:34:29 +00003900 for (size_t i = 0, f = LU.Formulae.size(); i != f; ++i)
3901 GenerateTruncates(LU, LUIdx, LU.Formulae[i]);
3902 }
3903
3904 GenerateCrossUseConstantOffsets();
Dan Gohmanbf673e02010-08-29 15:21:38 +00003905
3906 DEBUG(dbgs() << "\n"
3907 "After generating reuse formulae:\n";
3908 print_uses(dbgs()));
Dan Gohman45774ce2010-02-12 10:34:29 +00003909}
3910
Dan Gohman1b61fd92010-10-07 23:43:09 +00003911/// If there are multiple formulae with the same set of registers used
Dan Gohman45774ce2010-02-12 10:34:29 +00003912/// by other uses, pick the best one and delete the others.
3913void LSRInstance::FilterOutUndesirableDedicatedRegisters() {
Dan Gohman5947e162010-10-07 23:52:18 +00003914 DenseSet<const SCEV *> VisitedRegs;
3915 SmallPtrSet<const SCEV *, 16> Regs;
Andrew Trick5df90962011-12-06 03:13:31 +00003916 SmallPtrSet<const SCEV *, 16> LoserRegs;
Dan Gohman45774ce2010-02-12 10:34:29 +00003917#ifndef NDEBUG
Dan Gohman4c4043c2010-05-20 20:05:31 +00003918 bool ChangedFormulae = false;
Dan Gohman45774ce2010-02-12 10:34:29 +00003919#endif
3920
3921 // Collect the best formula for each unique set of shared registers. This
3922 // is reset for each use.
Preston Gurd25c3b6a2013-02-01 20:41:27 +00003923 typedef DenseMap<SmallVector<const SCEV *, 4>, size_t, UniquifierDenseMapInfo>
Dan Gohman45774ce2010-02-12 10:34:29 +00003924 BestFormulaeTy;
3925 BestFormulaeTy BestFormulae;
3926
3927 for (size_t LUIdx = 0, NumUses = Uses.size(); LUIdx != NumUses; ++LUIdx) {
3928 LSRUse &LU = Uses[LUIdx];
Dan Gohmanab5fb7f2010-05-20 19:44:23 +00003929 DEBUG(dbgs() << "Filtering for use "; LU.print(dbgs()); dbgs() << '\n');
Dan Gohman45774ce2010-02-12 10:34:29 +00003930
Dan Gohman4cf99b52010-05-18 23:42:37 +00003931 bool Any = false;
Dan Gohman45774ce2010-02-12 10:34:29 +00003932 for (size_t FIdx = 0, NumForms = LU.Formulae.size();
3933 FIdx != NumForms; ++FIdx) {
3934 Formula &F = LU.Formulae[FIdx];
3935
Andrew Trick5df90962011-12-06 03:13:31 +00003936 // Some formulas are instant losers. For example, they may depend on
3937 // nonexistent AddRecs from other loops. These need to be filtered
3938 // immediately, otherwise heuristics could choose them over others leading
3939 // to an unsatisfactory solution. Passing LoserRegs into RateFormula here
3940 // avoids the need to recompute this information across formulae using the
3941 // same bad AddRec. Passing LoserRegs is also essential unless we remove
3942 // the corresponding bad register from the Regs set.
3943 Cost CostF;
3944 Regs.clear();
Quentin Colombet8aa7abe2013-05-31 17:20:29 +00003945 CostF.RateFormula(TTI, F, Regs, VisitedRegs, L, LU.Offsets, SE, DT, LU,
Andrew Trick5df90962011-12-06 03:13:31 +00003946 &LoserRegs);
3947 if (CostF.isLoser()) {
3948 // During initial formula generation, undesirable formulae are generated
3949 // by uses within other loops that have some non-trivial address mode or
3950 // use the postinc form of the IV. LSR needs to provide these formulae
3951 // as the basis of rediscovering the desired formula that uses an AddRec
3952 // corresponding to the existing phi. Once all formulae have been
3953 // generated, these initial losers may be pruned.
3954 DEBUG(dbgs() << " Filtering loser "; F.print(dbgs());
3955 dbgs() << "\n");
Dan Gohman45774ce2010-02-12 10:34:29 +00003956 }
Andrew Trick5df90962011-12-06 03:13:31 +00003957 else {
Preston Gurd25c3b6a2013-02-01 20:41:27 +00003958 SmallVector<const SCEV *, 4> Key;
Andrew Trick5df90962011-12-06 03:13:31 +00003959 for (SmallVectorImpl<const SCEV *>::const_iterator J = F.BaseRegs.begin(),
3960 JE = F.BaseRegs.end(); J != JE; ++J) {
3961 const SCEV *Reg = *J;
3962 if (RegUses.isRegUsedByUsesOtherThan(Reg, LUIdx))
3963 Key.push_back(Reg);
3964 }
3965 if (F.ScaledReg &&
3966 RegUses.isRegUsedByUsesOtherThan(F.ScaledReg, LUIdx))
3967 Key.push_back(F.ScaledReg);
3968 // Unstable sort by host order ok, because this is only used for
3969 // uniquifying.
3970 std::sort(Key.begin(), Key.end());
Dan Gohman45774ce2010-02-12 10:34:29 +00003971
Andrew Trick5df90962011-12-06 03:13:31 +00003972 std::pair<BestFormulaeTy::const_iterator, bool> P =
3973 BestFormulae.insert(std::make_pair(Key, FIdx));
3974 if (P.second)
3975 continue;
3976
Dan Gohman45774ce2010-02-12 10:34:29 +00003977 Formula &Best = LU.Formulae[P.first->second];
Dan Gohman5947e162010-10-07 23:52:18 +00003978
Dan Gohman5947e162010-10-07 23:52:18 +00003979 Cost CostBest;
Dan Gohman5947e162010-10-07 23:52:18 +00003980 Regs.clear();
Quentin Colombet8aa7abe2013-05-31 17:20:29 +00003981 CostBest.RateFormula(TTI, Best, Regs, VisitedRegs, L, LU.Offsets, SE,
3982 DT, LU);
Dan Gohman5947e162010-10-07 23:52:18 +00003983 if (CostF < CostBest)
Dan Gohman45774ce2010-02-12 10:34:29 +00003984 std::swap(F, Best);
Dan Gohman8aca7ef2010-05-18 22:37:37 +00003985 DEBUG(dbgs() << " Filtering out formula "; F.print(dbgs());
Dan Gohman45774ce2010-02-12 10:34:29 +00003986 dbgs() << "\n"
Dan Gohman8aca7ef2010-05-18 22:37:37 +00003987 " in favor of formula "; Best.print(dbgs());
Dan Gohman45774ce2010-02-12 10:34:29 +00003988 dbgs() << '\n');
Dan Gohman45774ce2010-02-12 10:34:29 +00003989 }
Andrew Trick5df90962011-12-06 03:13:31 +00003990#ifndef NDEBUG
3991 ChangedFormulae = true;
3992#endif
3993 LU.DeleteFormula(F);
3994 --FIdx;
3995 --NumForms;
3996 Any = true;
Dan Gohmand0800242010-05-07 23:36:59 +00003997 }
3998
Dan Gohmanbeebef42010-05-18 23:55:57 +00003999 // Now that we've filtered out some formulae, recompute the Regs set.
Dan Gohman4cf99b52010-05-18 23:42:37 +00004000 if (Any)
4001 LU.RecomputeRegs(LUIdx, RegUses);
Dan Gohmand0800242010-05-07 23:36:59 +00004002
4003 // Reset this to prepare for the next use.
Dan Gohman45774ce2010-02-12 10:34:29 +00004004 BestFormulae.clear();
4005 }
4006
Dan Gohman4c4043c2010-05-20 20:05:31 +00004007 DEBUG(if (ChangedFormulae) {
Dan Gohman5b18f032010-02-13 02:06:02 +00004008 dbgs() << "\n"
4009 "After filtering out undesirable candidates:\n";
Dan Gohman45774ce2010-02-12 10:34:29 +00004010 print_uses(dbgs());
4011 });
4012}
4013
Dan Gohmana4eca052010-05-18 22:51:59 +00004014// This is a rough guess that seems to work fairly well.
4015static const size_t ComplexityLimit = UINT16_MAX;
4016
4017/// EstimateSearchSpaceComplexity - Estimate the worst-case number of
4018/// solutions the solver might have to consider. It almost never considers
4019/// this many solutions because it prune the search space, but the pruning
4020/// isn't always sufficient.
4021size_t LSRInstance::EstimateSearchSpaceComplexity() const {
Dan Gohman49d638b2010-10-07 23:37:58 +00004022 size_t Power = 1;
Dan Gohmana4eca052010-05-18 22:51:59 +00004023 for (SmallVectorImpl<LSRUse>::const_iterator I = Uses.begin(),
4024 E = Uses.end(); I != E; ++I) {
4025 size_t FSize = I->Formulae.size();
4026 if (FSize >= ComplexityLimit) {
4027 Power = ComplexityLimit;
4028 break;
4029 }
4030 Power *= FSize;
4031 if (Power >= ComplexityLimit)
4032 break;
4033 }
4034 return Power;
4035}
4036
Dan Gohmane9e08732010-08-29 16:09:42 +00004037/// NarrowSearchSpaceByDetectingSupersets - When one formula uses a superset
4038/// of the registers of another formula, it won't help reduce register
4039/// pressure (though it may not necessarily hurt register pressure); remove
4040/// it to simplify the system.
4041void LSRInstance::NarrowSearchSpaceByDetectingSupersets() {
Dan Gohman20fab452010-05-19 23:43:12 +00004042 if (EstimateSearchSpaceComplexity() >= ComplexityLimit) {
4043 DEBUG(dbgs() << "The search space is too complex.\n");
4044
4045 DEBUG(dbgs() << "Narrowing the search space by eliminating formulae "
4046 "which use a superset of registers used by other "
4047 "formulae.\n");
4048
4049 for (size_t LUIdx = 0, NumUses = Uses.size(); LUIdx != NumUses; ++LUIdx) {
4050 LSRUse &LU = Uses[LUIdx];
4051 bool Any = false;
4052 for (size_t i = 0, e = LU.Formulae.size(); i != e; ++i) {
4053 Formula &F = LU.Formulae[i];
Dan Gohman8ec018c2010-05-20 20:00:41 +00004054 // Look for a formula with a constant or GV in a register. If the use
4055 // also has a formula with that same value in an immediate field,
4056 // delete the one that uses a register.
Dan Gohman20fab452010-05-19 23:43:12 +00004057 for (SmallVectorImpl<const SCEV *>::const_iterator
4058 I = F.BaseRegs.begin(), E = F.BaseRegs.end(); I != E; ++I) {
4059 if (const SCEVConstant *C = dyn_cast<SCEVConstant>(*I)) {
4060 Formula NewF = F;
Chandler Carruth6e479322013-01-07 15:04:40 +00004061 NewF.BaseOffset += C->getValue()->getSExtValue();
Dan Gohman20fab452010-05-19 23:43:12 +00004062 NewF.BaseRegs.erase(NewF.BaseRegs.begin() +
4063 (I - F.BaseRegs.begin()));
4064 if (LU.HasFormulaWithSameRegs(NewF)) {
4065 DEBUG(dbgs() << " Deleting "; F.print(dbgs()); dbgs() << '\n');
4066 LU.DeleteFormula(F);
4067 --i;
4068 --e;
4069 Any = true;
4070 break;
4071 }
4072 } else if (const SCEVUnknown *U = dyn_cast<SCEVUnknown>(*I)) {
4073 if (GlobalValue *GV = dyn_cast<GlobalValue>(U->getValue()))
Chandler Carruth6e479322013-01-07 15:04:40 +00004074 if (!F.BaseGV) {
Dan Gohman20fab452010-05-19 23:43:12 +00004075 Formula NewF = F;
Chandler Carruth6e479322013-01-07 15:04:40 +00004076 NewF.BaseGV = GV;
Dan Gohman20fab452010-05-19 23:43:12 +00004077 NewF.BaseRegs.erase(NewF.BaseRegs.begin() +
4078 (I - F.BaseRegs.begin()));
4079 if (LU.HasFormulaWithSameRegs(NewF)) {
4080 DEBUG(dbgs() << " Deleting "; F.print(dbgs());
4081 dbgs() << '\n');
4082 LU.DeleteFormula(F);
4083 --i;
4084 --e;
4085 Any = true;
4086 break;
4087 }
4088 }
4089 }
4090 }
4091 }
4092 if (Any)
4093 LU.RecomputeRegs(LUIdx, RegUses);
4094 }
4095
4096 DEBUG(dbgs() << "After pre-selection:\n";
4097 print_uses(dbgs()));
4098 }
Dan Gohmane9e08732010-08-29 16:09:42 +00004099}
Dan Gohman20fab452010-05-19 23:43:12 +00004100
Dan Gohmane9e08732010-08-29 16:09:42 +00004101/// NarrowSearchSpaceByCollapsingUnrolledCode - When there are many registers
4102/// for expressions like A, A+1, A+2, etc., allocate a single register for
4103/// them.
4104void LSRInstance::NarrowSearchSpaceByCollapsingUnrolledCode() {
Jakub Staszak11bd8352013-02-16 16:08:15 +00004105 if (EstimateSearchSpaceComplexity() < ComplexityLimit)
4106 return;
Dan Gohman20fab452010-05-19 23:43:12 +00004107
Jakub Staszak11bd8352013-02-16 16:08:15 +00004108 DEBUG(dbgs() << "The search space is too complex.\n"
4109 "Narrowing the search space by assuming that uses separated "
4110 "by a constant offset will use the same registers.\n");
Dan Gohman20fab452010-05-19 23:43:12 +00004111
Jakub Staszak11bd8352013-02-16 16:08:15 +00004112 // This is especially useful for unrolled loops.
Dan Gohman8ec018c2010-05-20 20:00:41 +00004113
Jakub Staszak11bd8352013-02-16 16:08:15 +00004114 for (size_t LUIdx = 0, NumUses = Uses.size(); LUIdx != NumUses; ++LUIdx) {
4115 LSRUse &LU = Uses[LUIdx];
4116 for (SmallVectorImpl<Formula>::const_iterator I = LU.Formulae.begin(),
4117 E = LU.Formulae.end(); I != E; ++I) {
4118 const Formula &F = *I;
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00004119 if (F.BaseOffset == 0 || (F.Scale != 0 && F.Scale != 1))
Jakub Staszak11bd8352013-02-16 16:08:15 +00004120 continue;
Dan Gohman20fab452010-05-19 23:43:12 +00004121
Jakub Staszak11bd8352013-02-16 16:08:15 +00004122 LSRUse *LUThatHas = FindUseWithSimilarFormula(F, LU);
4123 if (!LUThatHas)
4124 continue;
Dan Gohman20fab452010-05-19 23:43:12 +00004125
Jakub Staszak11bd8352013-02-16 16:08:15 +00004126 if (!reconcileNewOffset(*LUThatHas, F.BaseOffset, /*HasBaseReg=*/ false,
4127 LU.Kind, LU.AccessTy))
4128 continue;
Dan Gohman110ed642010-09-01 01:45:53 +00004129
Jakub Staszak11bd8352013-02-16 16:08:15 +00004130 DEBUG(dbgs() << " Deleting use "; LU.print(dbgs()); dbgs() << '\n');
Dan Gohman2fd85d72010-10-08 19:33:26 +00004131
Jakub Staszak11bd8352013-02-16 16:08:15 +00004132 LUThatHas->AllFixupsOutsideLoop &= LU.AllFixupsOutsideLoop;
4133
4134 // Update the relocs to reference the new use.
4135 for (SmallVectorImpl<LSRFixup>::iterator I = Fixups.begin(),
4136 E = Fixups.end(); I != E; ++I) {
4137 LSRFixup &Fixup = *I;
4138 if (Fixup.LUIdx == LUIdx) {
4139 Fixup.LUIdx = LUThatHas - &Uses.front();
4140 Fixup.Offset += F.BaseOffset;
4141 // Add the new offset to LUThatHas' offset list.
4142 if (LUThatHas->Offsets.back() != Fixup.Offset) {
4143 LUThatHas->Offsets.push_back(Fixup.Offset);
4144 if (Fixup.Offset > LUThatHas->MaxOffset)
4145 LUThatHas->MaxOffset = Fixup.Offset;
4146 if (Fixup.Offset < LUThatHas->MinOffset)
4147 LUThatHas->MinOffset = Fixup.Offset;
Dan Gohman20fab452010-05-19 23:43:12 +00004148 }
Jakub Staszak11bd8352013-02-16 16:08:15 +00004149 DEBUG(dbgs() << "New fixup has offset " << Fixup.Offset << '\n');
4150 }
4151 if (Fixup.LUIdx == NumUses-1)
4152 Fixup.LUIdx = LUIdx;
4153 }
4154
4155 // Delete formulae from the new use which are no longer legal.
4156 bool Any = false;
4157 for (size_t i = 0, e = LUThatHas->Formulae.size(); i != e; ++i) {
4158 Formula &F = LUThatHas->Formulae[i];
4159 if (!isLegalUse(TTI, LUThatHas->MinOffset, LUThatHas->MaxOffset,
4160 LUThatHas->Kind, LUThatHas->AccessTy, F)) {
4161 DEBUG(dbgs() << " Deleting "; F.print(dbgs());
4162 dbgs() << '\n');
4163 LUThatHas->DeleteFormula(F);
4164 --i;
4165 --e;
4166 Any = true;
Dan Gohman20fab452010-05-19 23:43:12 +00004167 }
4168 }
Dan Gohman20fab452010-05-19 23:43:12 +00004169
Jakub Staszak11bd8352013-02-16 16:08:15 +00004170 if (Any)
4171 LUThatHas->RecomputeRegs(LUThatHas - &Uses.front(), RegUses);
4172
4173 // Delete the old use.
4174 DeleteUse(LU, LUIdx);
4175 --LUIdx;
4176 --NumUses;
4177 break;
4178 }
Dan Gohman20fab452010-05-19 23:43:12 +00004179 }
Jakub Staszak11bd8352013-02-16 16:08:15 +00004180
4181 DEBUG(dbgs() << "After pre-selection:\n"; print_uses(dbgs()));
Dan Gohmane9e08732010-08-29 16:09:42 +00004182}
Dan Gohman20fab452010-05-19 23:43:12 +00004183
Andrew Trick8b55b732011-03-14 16:50:06 +00004184/// NarrowSearchSpaceByRefilteringUndesirableDedicatedRegisters - Call
Dan Gohman002ff892010-08-29 16:39:22 +00004185/// FilterOutUndesirableDedicatedRegisters again, if necessary, now that
4186/// we've done more filtering, as it may be able to find more formulae to
4187/// eliminate.
4188void LSRInstance::NarrowSearchSpaceByRefilteringUndesirableDedicatedRegisters(){
4189 if (EstimateSearchSpaceComplexity() >= ComplexityLimit) {
4190 DEBUG(dbgs() << "The search space is too complex.\n");
4191
4192 DEBUG(dbgs() << "Narrowing the search space by re-filtering out "
4193 "undesirable dedicated registers.\n");
4194
4195 FilterOutUndesirableDedicatedRegisters();
4196
4197 DEBUG(dbgs() << "After pre-selection:\n";
4198 print_uses(dbgs()));
4199 }
4200}
4201
Dan Gohmane9e08732010-08-29 16:09:42 +00004202/// NarrowSearchSpaceByPickingWinnerRegs - Pick a register which seems likely
4203/// to be profitable, and then in any use which has any reference to that
4204/// register, delete all formulae which do not reference that register.
4205void LSRInstance::NarrowSearchSpaceByPickingWinnerRegs() {
Dan Gohmana4ca28a2010-05-20 20:52:00 +00004206 // With all other options exhausted, loop until the system is simple
4207 // enough to handle.
Dan Gohman45774ce2010-02-12 10:34:29 +00004208 SmallPtrSet<const SCEV *, 4> Taken;
Dan Gohmana4eca052010-05-18 22:51:59 +00004209 while (EstimateSearchSpaceComplexity() >= ComplexityLimit) {
Dan Gohman45774ce2010-02-12 10:34:29 +00004210 // Ok, we have too many of formulae on our hands to conveniently handle.
4211 // Use a rough heuristic to thin out the list.
Dan Gohman63e90152010-05-18 22:41:32 +00004212 DEBUG(dbgs() << "The search space is too complex.\n");
Dan Gohman45774ce2010-02-12 10:34:29 +00004213
4214 // Pick the register which is used by the most LSRUses, which is likely
4215 // to be a good reuse register candidate.
Craig Topperf40110f2014-04-25 05:29:35 +00004216 const SCEV *Best = nullptr;
Dan Gohman45774ce2010-02-12 10:34:29 +00004217 unsigned BestNum = 0;
4218 for (RegUseTracker::const_iterator I = RegUses.begin(), E = RegUses.end();
4219 I != E; ++I) {
4220 const SCEV *Reg = *I;
4221 if (Taken.count(Reg))
4222 continue;
4223 if (!Best)
4224 Best = Reg;
4225 else {
4226 unsigned Count = RegUses.getUsedByIndices(Reg).count();
4227 if (Count > BestNum) {
4228 Best = Reg;
4229 BestNum = Count;
4230 }
4231 }
4232 }
4233
4234 DEBUG(dbgs() << "Narrowing the search space by assuming " << *Best
Dan Gohman8b0a4192010-03-01 17:49:51 +00004235 << " will yield profitable reuse.\n");
Dan Gohman45774ce2010-02-12 10:34:29 +00004236 Taken.insert(Best);
4237
4238 // In any use with formulae which references this register, delete formulae
4239 // which don't reference it.
Dan Gohman4cf99b52010-05-18 23:42:37 +00004240 for (size_t LUIdx = 0, NumUses = Uses.size(); LUIdx != NumUses; ++LUIdx) {
4241 LSRUse &LU = Uses[LUIdx];
Dan Gohman45774ce2010-02-12 10:34:29 +00004242 if (!LU.Regs.count(Best)) continue;
4243
Dan Gohman4cf99b52010-05-18 23:42:37 +00004244 bool Any = false;
Dan Gohman45774ce2010-02-12 10:34:29 +00004245 for (size_t i = 0, e = LU.Formulae.size(); i != e; ++i) {
4246 Formula &F = LU.Formulae[i];
4247 if (!F.referencesReg(Best)) {
4248 DEBUG(dbgs() << " Deleting "; F.print(dbgs()); dbgs() << '\n');
Dan Gohmanf1c7b1b2010-05-18 22:39:15 +00004249 LU.DeleteFormula(F);
Dan Gohman45774ce2010-02-12 10:34:29 +00004250 --e;
4251 --i;
Dan Gohman4cf99b52010-05-18 23:42:37 +00004252 Any = true;
Dan Gohmand0800242010-05-07 23:36:59 +00004253 assert(e != 0 && "Use has no formulae left! Is Regs inconsistent?");
Dan Gohman45774ce2010-02-12 10:34:29 +00004254 continue;
4255 }
Dan Gohman45774ce2010-02-12 10:34:29 +00004256 }
Dan Gohman4cf99b52010-05-18 23:42:37 +00004257
4258 if (Any)
4259 LU.RecomputeRegs(LUIdx, RegUses);
Dan Gohman45774ce2010-02-12 10:34:29 +00004260 }
4261
4262 DEBUG(dbgs() << "After pre-selection:\n";
4263 print_uses(dbgs()));
4264 }
4265}
4266
Dan Gohmane9e08732010-08-29 16:09:42 +00004267/// NarrowSearchSpaceUsingHeuristics - If there are an extraordinary number of
4268/// formulae to choose from, use some rough heuristics to prune down the number
4269/// of formulae. This keeps the main solver from taking an extraordinary amount
4270/// of time in some worst-case scenarios.
4271void LSRInstance::NarrowSearchSpaceUsingHeuristics() {
4272 NarrowSearchSpaceByDetectingSupersets();
4273 NarrowSearchSpaceByCollapsingUnrolledCode();
Dan Gohman002ff892010-08-29 16:39:22 +00004274 NarrowSearchSpaceByRefilteringUndesirableDedicatedRegisters();
Dan Gohmane9e08732010-08-29 16:09:42 +00004275 NarrowSearchSpaceByPickingWinnerRegs();
4276}
4277
Dan Gohman45774ce2010-02-12 10:34:29 +00004278/// SolveRecurse - This is the recursive solver.
4279void LSRInstance::SolveRecurse(SmallVectorImpl<const Formula *> &Solution,
4280 Cost &SolutionCost,
4281 SmallVectorImpl<const Formula *> &Workspace,
4282 const Cost &CurCost,
4283 const SmallPtrSet<const SCEV *, 16> &CurRegs,
4284 DenseSet<const SCEV *> &VisitedRegs) const {
4285 // Some ideas:
4286 // - prune more:
4287 // - use more aggressive filtering
4288 // - sort the formula so that the most profitable solutions are found first
4289 // - sort the uses too
4290 // - search faster:
Dan Gohman8b0a4192010-03-01 17:49:51 +00004291 // - don't compute a cost, and then compare. compare while computing a cost
Dan Gohman45774ce2010-02-12 10:34:29 +00004292 // and bail early.
4293 // - track register sets with SmallBitVector
4294
4295 const LSRUse &LU = Uses[Workspace.size()];
4296
4297 // If this use references any register that's already a part of the
4298 // in-progress solution, consider it a requirement that a formula must
4299 // reference that register in order to be considered. This prunes out
4300 // unprofitable searching.
4301 SmallSetVector<const SCEV *, 4> ReqRegs;
Craig Topper46276792014-08-24 23:23:06 +00004302 for (const SCEV *S : CurRegs)
4303 if (LU.Regs.count(S))
4304 ReqRegs.insert(S);
Dan Gohman45774ce2010-02-12 10:34:29 +00004305
4306 SmallPtrSet<const SCEV *, 16> NewRegs;
4307 Cost NewCost;
4308 for (SmallVectorImpl<Formula>::const_iterator I = LU.Formulae.begin(),
4309 E = LU.Formulae.end(); I != E; ++I) {
4310 const Formula &F = *I;
4311
Adam Nemetdeab6f92014-04-29 18:25:28 +00004312 // Ignore formulae which may not be ideal in terms of register reuse of
4313 // ReqRegs. The formula should use all required registers before
4314 // introducing new ones.
4315 int NumReqRegsToFind = std::min(F.getNumRegs(), ReqRegs.size());
Dan Gohman45774ce2010-02-12 10:34:29 +00004316 for (SmallSetVector<const SCEV *, 4>::const_iterator J = ReqRegs.begin(),
4317 JE = ReqRegs.end(); J != JE; ++J) {
4318 const SCEV *Reg = *J;
Adam Nemetdeab6f92014-04-29 18:25:28 +00004319 if ((F.ScaledReg && F.ScaledReg == Reg) ||
4320 std::find(F.BaseRegs.begin(), F.BaseRegs.end(), Reg) !=
Andrew Tricke3502cb2012-03-22 22:42:51 +00004321 F.BaseRegs.end()) {
Adam Nemetdeab6f92014-04-29 18:25:28 +00004322 --NumReqRegsToFind;
4323 if (NumReqRegsToFind == 0)
4324 break;
Andrew Tricke3502cb2012-03-22 22:42:51 +00004325 }
Dan Gohman45774ce2010-02-12 10:34:29 +00004326 }
Adam Nemetdeab6f92014-04-29 18:25:28 +00004327 if (NumReqRegsToFind != 0) {
Andrew Tricke3502cb2012-03-22 22:42:51 +00004328 // If none of the formulae satisfied the required registers, then we could
4329 // clear ReqRegs and try again. Currently, we simply give up in this case.
4330 continue;
4331 }
Dan Gohman45774ce2010-02-12 10:34:29 +00004332
4333 // Evaluate the cost of the current formula. If it's already worse than
4334 // the current best, prune the search at that point.
4335 NewCost = CurCost;
4336 NewRegs = CurRegs;
Quentin Colombet8aa7abe2013-05-31 17:20:29 +00004337 NewCost.RateFormula(TTI, F, NewRegs, VisitedRegs, L, LU.Offsets, SE, DT,
4338 LU);
Dan Gohman45774ce2010-02-12 10:34:29 +00004339 if (NewCost < SolutionCost) {
4340 Workspace.push_back(&F);
4341 if (Workspace.size() != Uses.size()) {
4342 SolveRecurse(Solution, SolutionCost, Workspace, NewCost,
4343 NewRegs, VisitedRegs);
4344 if (F.getNumRegs() == 1 && Workspace.size() == 1)
4345 VisitedRegs.insert(F.ScaledReg ? F.ScaledReg : F.BaseRegs[0]);
4346 } else {
4347 DEBUG(dbgs() << "New best at "; NewCost.print(dbgs());
Andrew Trick4dc3eff2012-01-09 18:58:16 +00004348 dbgs() << ".\n Regs:";
Craig Topper46276792014-08-24 23:23:06 +00004349 for (const SCEV *S : NewRegs)
4350 dbgs() << ' ' << *S;
Dan Gohman45774ce2010-02-12 10:34:29 +00004351 dbgs() << '\n');
4352
4353 SolutionCost = NewCost;
4354 Solution = Workspace;
4355 }
4356 Workspace.pop_back();
4357 }
Dan Gohman5b18f032010-02-13 02:06:02 +00004358 }
Dan Gohman45774ce2010-02-12 10:34:29 +00004359}
4360
Dan Gohmana4ca28a2010-05-20 20:52:00 +00004361/// Solve - Choose one formula from each use. Return the results in the given
4362/// Solution vector.
Dan Gohman45774ce2010-02-12 10:34:29 +00004363void LSRInstance::Solve(SmallVectorImpl<const Formula *> &Solution) const {
4364 SmallVector<const Formula *, 8> Workspace;
4365 Cost SolutionCost;
Tim Northoverbc6659c2014-01-22 13:27:00 +00004366 SolutionCost.Lose();
Dan Gohman45774ce2010-02-12 10:34:29 +00004367 Cost CurCost;
4368 SmallPtrSet<const SCEV *, 16> CurRegs;
4369 DenseSet<const SCEV *> VisitedRegs;
4370 Workspace.reserve(Uses.size());
4371
Dan Gohman8ec018c2010-05-20 20:00:41 +00004372 // SolveRecurse does all the work.
Dan Gohman45774ce2010-02-12 10:34:29 +00004373 SolveRecurse(Solution, SolutionCost, Workspace, CurCost,
4374 CurRegs, VisitedRegs);
Andrew Trick58124392011-09-27 00:44:14 +00004375 if (Solution.empty()) {
4376 DEBUG(dbgs() << "\nNo Satisfactory Solution\n");
4377 return;
4378 }
Dan Gohman45774ce2010-02-12 10:34:29 +00004379
4380 // Ok, we've now made all our decisions.
4381 DEBUG(dbgs() << "\n"
4382 "The chosen solution requires "; SolutionCost.print(dbgs());
4383 dbgs() << ":\n";
4384 for (size_t i = 0, e = Uses.size(); i != e; ++i) {
4385 dbgs() << " ";
4386 Uses[i].print(dbgs());
4387 dbgs() << "\n"
4388 " ";
4389 Solution[i]->print(dbgs());
4390 dbgs() << '\n';
4391 });
Dan Gohman6295f2e2010-05-20 20:59:23 +00004392
4393 assert(Solution.size() == Uses.size() && "Malformed solution!");
Dan Gohman45774ce2010-02-12 10:34:29 +00004394}
4395
Dan Gohman607e02b2010-04-09 22:07:05 +00004396/// HoistInsertPosition - Helper for AdjustInsertPositionForExpand. Climb up
4397/// the dominator tree far as we can go while still being dominated by the
4398/// input positions. This helps canonicalize the insert position, which
4399/// encourages sharing.
4400BasicBlock::iterator
4401LSRInstance::HoistInsertPosition(BasicBlock::iterator IP,
4402 const SmallVectorImpl<Instruction *> &Inputs)
4403 const {
4404 for (;;) {
4405 const Loop *IPLoop = LI.getLoopFor(IP->getParent());
4406 unsigned IPLoopDepth = IPLoop ? IPLoop->getLoopDepth() : 0;
4407
4408 BasicBlock *IDom;
Dan Gohman8ce95cc2010-05-20 20:00:25 +00004409 for (DomTreeNode *Rung = DT.getNode(IP->getParent()); ; ) {
Dan Gohman9b48b852010-05-20 22:46:54 +00004410 if (!Rung) return IP;
Dan Gohman8ce95cc2010-05-20 20:00:25 +00004411 Rung = Rung->getIDom();
4412 if (!Rung) return IP;
4413 IDom = Rung->getBlock();
Dan Gohman607e02b2010-04-09 22:07:05 +00004414
4415 // Don't climb into a loop though.
4416 const Loop *IDomLoop = LI.getLoopFor(IDom);
4417 unsigned IDomDepth = IDomLoop ? IDomLoop->getLoopDepth() : 0;
4418 if (IDomDepth <= IPLoopDepth &&
4419 (IDomDepth != IPLoopDepth || IDomLoop == IPLoop))
4420 break;
4421 }
4422
4423 bool AllDominate = true;
Craig Topperf40110f2014-04-25 05:29:35 +00004424 Instruction *BetterPos = nullptr;
Dan Gohman607e02b2010-04-09 22:07:05 +00004425 Instruction *Tentative = IDom->getTerminator();
4426 for (SmallVectorImpl<Instruction *>::const_iterator I = Inputs.begin(),
4427 E = Inputs.end(); I != E; ++I) {
4428 Instruction *Inst = *I;
4429 if (Inst == Tentative || !DT.dominates(Inst, Tentative)) {
4430 AllDominate = false;
4431 break;
4432 }
4433 // Attempt to find an insert position in the middle of the block,
4434 // instead of at the end, so that it can be used for other expansions.
4435 if (IDom == Inst->getParent() &&
Rafael Espindoladd489312012-04-30 03:53:06 +00004436 (!BetterPos || !DT.dominates(Inst, BetterPos)))
Benjamin Kramerb6d0bd42014-03-02 12:27:27 +00004437 BetterPos = std::next(BasicBlock::iterator(Inst));
Dan Gohman607e02b2010-04-09 22:07:05 +00004438 }
4439 if (!AllDominate)
4440 break;
4441 if (BetterPos)
4442 IP = BetterPos;
4443 else
4444 IP = Tentative;
4445 }
4446
4447 return IP;
4448}
4449
4450/// AdjustInsertPositionForExpand - Determine an input position which will be
Dan Gohmand2df6432010-04-09 02:00:38 +00004451/// dominated by the operands and which will dominate the result.
4452BasicBlock::iterator
Andrew Trickc908b432012-01-20 07:41:13 +00004453LSRInstance::AdjustInsertPositionForExpand(BasicBlock::iterator LowestIP,
Dan Gohman607e02b2010-04-09 22:07:05 +00004454 const LSRFixup &LF,
Andrew Trickc908b432012-01-20 07:41:13 +00004455 const LSRUse &LU,
4456 SCEVExpander &Rewriter) const {
Dan Gohmand2df6432010-04-09 02:00:38 +00004457 // Collect some instructions which must be dominated by the
Dan Gohmand006ab92010-04-07 22:27:08 +00004458 // expanding replacement. These must be dominated by any operands that
Dan Gohman45774ce2010-02-12 10:34:29 +00004459 // will be required in the expansion.
4460 SmallVector<Instruction *, 4> Inputs;
4461 if (Instruction *I = dyn_cast<Instruction>(LF.OperandValToReplace))
4462 Inputs.push_back(I);
4463 if (LU.Kind == LSRUse::ICmpZero)
4464 if (Instruction *I =
4465 dyn_cast<Instruction>(cast<ICmpInst>(LF.UserInst)->getOperand(1)))
4466 Inputs.push_back(I);
Dan Gohmand006ab92010-04-07 22:27:08 +00004467 if (LF.PostIncLoops.count(L)) {
4468 if (LF.isUseFullyOutsideLoop(L))
Dan Gohman52f55632010-03-02 01:59:21 +00004469 Inputs.push_back(L->getLoopLatch()->getTerminator());
4470 else
4471 Inputs.push_back(IVIncInsertPos);
4472 }
Dan Gohman45065392010-04-08 05:57:57 +00004473 // The expansion must also be dominated by the increment positions of any
4474 // loops it for which it is using post-inc mode.
4475 for (PostIncLoopSet::const_iterator I = LF.PostIncLoops.begin(),
4476 E = LF.PostIncLoops.end(); I != E; ++I) {
4477 const Loop *PIL = *I;
4478 if (PIL == L) continue;
4479
Dan Gohman607e02b2010-04-09 22:07:05 +00004480 // Be dominated by the loop exit.
Dan Gohman45065392010-04-08 05:57:57 +00004481 SmallVector<BasicBlock *, 4> ExitingBlocks;
4482 PIL->getExitingBlocks(ExitingBlocks);
4483 if (!ExitingBlocks.empty()) {
4484 BasicBlock *BB = ExitingBlocks[0];
4485 for (unsigned i = 1, e = ExitingBlocks.size(); i != e; ++i)
4486 BB = DT.findNearestCommonDominator(BB, ExitingBlocks[i]);
4487 Inputs.push_back(BB->getTerminator());
4488 }
4489 }
Dan Gohman45774ce2010-02-12 10:34:29 +00004490
Andrew Trickc908b432012-01-20 07:41:13 +00004491 assert(!isa<PHINode>(LowestIP) && !isa<LandingPadInst>(LowestIP)
4492 && !isa<DbgInfoIntrinsic>(LowestIP) &&
4493 "Insertion point must be a normal instruction");
4494
Dan Gohman45774ce2010-02-12 10:34:29 +00004495 // Then, climb up the immediate dominator tree as far as we can go while
4496 // still being dominated by the input positions.
Andrew Trickc908b432012-01-20 07:41:13 +00004497 BasicBlock::iterator IP = HoistInsertPosition(LowestIP, Inputs);
Dan Gohmand2df6432010-04-09 02:00:38 +00004498
4499 // Don't insert instructions before PHI nodes.
Dan Gohman45774ce2010-02-12 10:34:29 +00004500 while (isa<PHINode>(IP)) ++IP;
Dan Gohmand2df6432010-04-09 02:00:38 +00004501
Bill Wendling86c5cbe2011-08-24 21:06:46 +00004502 // Ignore landingpad instructions.
4503 while (isa<LandingPadInst>(IP)) ++IP;
4504
Dan Gohmand2df6432010-04-09 02:00:38 +00004505 // Ignore debug intrinsics.
Dan Gohmand42e09d2010-03-26 00:33:27 +00004506 while (isa<DbgInfoIntrinsic>(IP)) ++IP;
Dan Gohman45774ce2010-02-12 10:34:29 +00004507
Andrew Trickc908b432012-01-20 07:41:13 +00004508 // Set IP below instructions recently inserted by SCEVExpander. This keeps the
4509 // IP consistent across expansions and allows the previously inserted
4510 // instructions to be reused by subsequent expansion.
4511 while (Rewriter.isInsertedInstruction(IP) && IP != LowestIP) ++IP;
4512
Dan Gohmand2df6432010-04-09 02:00:38 +00004513 return IP;
4514}
4515
Dan Gohmana4ca28a2010-05-20 20:52:00 +00004516/// Expand - Emit instructions for the leading candidate expression for this
4517/// LSRUse (this is called "expanding").
Dan Gohmand2df6432010-04-09 02:00:38 +00004518Value *LSRInstance::Expand(const LSRFixup &LF,
4519 const Formula &F,
4520 BasicBlock::iterator IP,
4521 SCEVExpander &Rewriter,
4522 SmallVectorImpl<WeakVH> &DeadInsts) const {
4523 const LSRUse &LU = Uses[LF.LUIdx];
Andrew Trick57243da2013-10-25 21:35:56 +00004524 if (LU.RigidFormula)
4525 return LF.OperandValToReplace;
Dan Gohmand2df6432010-04-09 02:00:38 +00004526
4527 // Determine an input position which will be dominated by the operands and
4528 // which will dominate the result.
Andrew Trickc908b432012-01-20 07:41:13 +00004529 IP = AdjustInsertPositionForExpand(IP, LF, LU, Rewriter);
Dan Gohmand2df6432010-04-09 02:00:38 +00004530
Dan Gohman45774ce2010-02-12 10:34:29 +00004531 // Inform the Rewriter if we have a post-increment use, so that it can
4532 // perform an advantageous expansion.
Dan Gohmand006ab92010-04-07 22:27:08 +00004533 Rewriter.setPostInc(LF.PostIncLoops);
Dan Gohman45774ce2010-02-12 10:34:29 +00004534
4535 // This is the type that the user actually needs.
Chris Lattner229907c2011-07-18 04:54:35 +00004536 Type *OpTy = LF.OperandValToReplace->getType();
Dan Gohman45774ce2010-02-12 10:34:29 +00004537 // This will be the type that we'll initially expand to.
Chris Lattner229907c2011-07-18 04:54:35 +00004538 Type *Ty = F.getType();
Dan Gohman45774ce2010-02-12 10:34:29 +00004539 if (!Ty)
4540 // No type known; just expand directly to the ultimate type.
4541 Ty = OpTy;
4542 else if (SE.getEffectiveSCEVType(Ty) == SE.getEffectiveSCEVType(OpTy))
4543 // Expand directly to the ultimate type if it's the right size.
4544 Ty = OpTy;
4545 // This is the type to do integer arithmetic in.
Chris Lattner229907c2011-07-18 04:54:35 +00004546 Type *IntTy = SE.getEffectiveSCEVType(Ty);
Dan Gohman45774ce2010-02-12 10:34:29 +00004547
4548 // Build up a list of operands to add together to form the full base.
4549 SmallVector<const SCEV *, 8> Ops;
4550
4551 // Expand the BaseRegs portion.
4552 for (SmallVectorImpl<const SCEV *>::const_iterator I = F.BaseRegs.begin(),
4553 E = F.BaseRegs.end(); I != E; ++I) {
4554 const SCEV *Reg = *I;
4555 assert(!Reg->isZero() && "Zero allocated in a base register!");
4556
Dan Gohmand006ab92010-04-07 22:27:08 +00004557 // If we're expanding for a post-inc user, make the post-inc adjustment.
4558 PostIncLoopSet &Loops = const_cast<PostIncLoopSet &>(LF.PostIncLoops);
4559 Reg = TransformForPostIncUse(Denormalize, Reg,
4560 LF.UserInst, LF.OperandValToReplace,
4561 Loops, SE, DT);
Dan Gohman45774ce2010-02-12 10:34:29 +00004562
Craig Topperf40110f2014-04-25 05:29:35 +00004563 Ops.push_back(SE.getUnknown(Rewriter.expandCodeFor(Reg, nullptr, IP)));
Dan Gohman45774ce2010-02-12 10:34:29 +00004564 }
4565
4566 // Expand the ScaledReg portion.
Craig Topperf40110f2014-04-25 05:29:35 +00004567 Value *ICmpScaledV = nullptr;
Chandler Carruth6e479322013-01-07 15:04:40 +00004568 if (F.Scale != 0) {
Dan Gohman45774ce2010-02-12 10:34:29 +00004569 const SCEV *ScaledS = F.ScaledReg;
4570
Dan Gohmand006ab92010-04-07 22:27:08 +00004571 // If we're expanding for a post-inc user, make the post-inc adjustment.
4572 PostIncLoopSet &Loops = const_cast<PostIncLoopSet &>(LF.PostIncLoops);
4573 ScaledS = TransformForPostIncUse(Denormalize, ScaledS,
4574 LF.UserInst, LF.OperandValToReplace,
4575 Loops, SE, DT);
Dan Gohman45774ce2010-02-12 10:34:29 +00004576
4577 if (LU.Kind == LSRUse::ICmpZero) {
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00004578 // Expand ScaleReg as if it was part of the base regs.
4579 if (F.Scale == 1)
4580 Ops.push_back(
4581 SE.getUnknown(Rewriter.expandCodeFor(ScaledS, nullptr, IP)));
4582 else {
4583 // An interesting way of "folding" with an icmp is to use a negated
4584 // scale, which we'll implement by inserting it into the other operand
4585 // of the icmp.
4586 assert(F.Scale == -1 &&
4587 "The only scale supported by ICmpZero uses is -1!");
4588 ICmpScaledV = Rewriter.expandCodeFor(ScaledS, nullptr, IP);
4589 }
Dan Gohman45774ce2010-02-12 10:34:29 +00004590 } else {
4591 // Otherwise just expand the scaled register and an explicit scale,
4592 // which is expected to be matched as part of the address.
Andrew Trick8370c7c2012-06-15 20:07:29 +00004593
4594 // Flush the operand list to suppress SCEVExpander hoisting address modes.
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00004595 // Unless the addressing mode will not be folded.
4596 if (!Ops.empty() && LU.Kind == LSRUse::Address &&
4597 isAMCompletelyFolded(TTI, LU, F)) {
Andrew Trick8370c7c2012-06-15 20:07:29 +00004598 Value *FullV = Rewriter.expandCodeFor(SE.getAddExpr(Ops), Ty, IP);
4599 Ops.clear();
4600 Ops.push_back(SE.getUnknown(FullV));
4601 }
Craig Topperf40110f2014-04-25 05:29:35 +00004602 ScaledS = SE.getUnknown(Rewriter.expandCodeFor(ScaledS, nullptr, IP));
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00004603 if (F.Scale != 1)
4604 ScaledS =
4605 SE.getMulExpr(ScaledS, SE.getConstant(ScaledS->getType(), F.Scale));
Dan Gohman45774ce2010-02-12 10:34:29 +00004606 Ops.push_back(ScaledS);
4607 }
4608 }
4609
Dan Gohman29707de2010-03-03 05:29:13 +00004610 // Expand the GV portion.
Chandler Carruth6e479322013-01-07 15:04:40 +00004611 if (F.BaseGV) {
Dan Gohman29707de2010-03-03 05:29:13 +00004612 // Flush the operand list to suppress SCEVExpander hoisting.
Andrew Trick8370c7c2012-06-15 20:07:29 +00004613 if (!Ops.empty()) {
4614 Value *FullV = Rewriter.expandCodeFor(SE.getAddExpr(Ops), Ty, IP);
4615 Ops.clear();
4616 Ops.push_back(SE.getUnknown(FullV));
4617 }
Chandler Carruth6e479322013-01-07 15:04:40 +00004618 Ops.push_back(SE.getUnknown(F.BaseGV));
Andrew Trick8370c7c2012-06-15 20:07:29 +00004619 }
4620
4621 // Flush the operand list to suppress SCEVExpander hoisting of both folded and
4622 // unfolded offsets. LSR assumes they both live next to their uses.
4623 if (!Ops.empty()) {
Dan Gohman29707de2010-03-03 05:29:13 +00004624 Value *FullV = Rewriter.expandCodeFor(SE.getAddExpr(Ops), Ty, IP);
4625 Ops.clear();
4626 Ops.push_back(SE.getUnknown(FullV));
4627 }
4628
4629 // Expand the immediate portion.
Chandler Carruth6e479322013-01-07 15:04:40 +00004630 int64_t Offset = (uint64_t)F.BaseOffset + LF.Offset;
Dan Gohman45774ce2010-02-12 10:34:29 +00004631 if (Offset != 0) {
4632 if (LU.Kind == LSRUse::ICmpZero) {
4633 // The other interesting way of "folding" with an ICmpZero is to use a
4634 // negated immediate.
4635 if (!ICmpScaledV)
Eli Friedmanb46345d2011-10-13 23:48:33 +00004636 ICmpScaledV = ConstantInt::get(IntTy, -(uint64_t)Offset);
Dan Gohman45774ce2010-02-12 10:34:29 +00004637 else {
4638 Ops.push_back(SE.getUnknown(ICmpScaledV));
4639 ICmpScaledV = ConstantInt::get(IntTy, Offset);
4640 }
4641 } else {
4642 // Just add the immediate values. These again are expected to be matched
4643 // as part of the address.
Dan Gohman29707de2010-03-03 05:29:13 +00004644 Ops.push_back(SE.getUnknown(ConstantInt::getSigned(IntTy, Offset)));
Dan Gohman45774ce2010-02-12 10:34:29 +00004645 }
4646 }
4647
Dan Gohman6136e942011-05-03 00:46:49 +00004648 // Expand the unfolded offset portion.
4649 int64_t UnfoldedOffset = F.UnfoldedOffset;
4650 if (UnfoldedOffset != 0) {
4651 // Just add the immediate values.
4652 Ops.push_back(SE.getUnknown(ConstantInt::getSigned(IntTy,
4653 UnfoldedOffset)));
4654 }
4655
Dan Gohman45774ce2010-02-12 10:34:29 +00004656 // Emit instructions summing all the operands.
4657 const SCEV *FullS = Ops.empty() ?
Dan Gohman1d2ded72010-05-03 22:09:21 +00004658 SE.getConstant(IntTy, 0) :
Dan Gohman45774ce2010-02-12 10:34:29 +00004659 SE.getAddExpr(Ops);
4660 Value *FullV = Rewriter.expandCodeFor(FullS, Ty, IP);
4661
4662 // We're done expanding now, so reset the rewriter.
Dan Gohmand006ab92010-04-07 22:27:08 +00004663 Rewriter.clearPostInc();
Dan Gohman45774ce2010-02-12 10:34:29 +00004664
4665 // An ICmpZero Formula represents an ICmp which we're handling as a
4666 // comparison against zero. Now that we've expanded an expression for that
4667 // form, update the ICmp's other operand.
4668 if (LU.Kind == LSRUse::ICmpZero) {
4669 ICmpInst *CI = cast<ICmpInst>(LF.UserInst);
4670 DeadInsts.push_back(CI->getOperand(1));
Chandler Carruth6e479322013-01-07 15:04:40 +00004671 assert(!F.BaseGV && "ICmp does not support folding a global value and "
Dan Gohman45774ce2010-02-12 10:34:29 +00004672 "a scale at the same time!");
Chandler Carruth6e479322013-01-07 15:04:40 +00004673 if (F.Scale == -1) {
Dan Gohman45774ce2010-02-12 10:34:29 +00004674 if (ICmpScaledV->getType() != OpTy) {
4675 Instruction *Cast =
4676 CastInst::Create(CastInst::getCastOpcode(ICmpScaledV, false,
4677 OpTy, false),
4678 ICmpScaledV, OpTy, "tmp", CI);
4679 ICmpScaledV = Cast;
4680 }
4681 CI->setOperand(1, ICmpScaledV);
4682 } else {
Quentin Colombetc88baa5c2014-05-20 19:25:04 +00004683 // A scale of 1 means that the scale has been expanded as part of the
4684 // base regs.
4685 assert((F.Scale == 0 || F.Scale == 1) &&
Dan Gohman45774ce2010-02-12 10:34:29 +00004686 "ICmp does not support folding a global value and "
4687 "a scale at the same time!");
4688 Constant *C = ConstantInt::getSigned(SE.getEffectiveSCEVType(OpTy),
4689 -(uint64_t)Offset);
4690 if (C->getType() != OpTy)
4691 C = ConstantExpr::getCast(CastInst::getCastOpcode(C, false,
4692 OpTy, false),
4693 C, OpTy);
4694
4695 CI->setOperand(1, C);
4696 }
4697 }
4698
4699 return FullV;
4700}
4701
Dan Gohman6deab962010-02-16 20:25:07 +00004702/// RewriteForPHI - Helper for Rewrite. PHI nodes are special because the use
4703/// of their operands effectively happens in their predecessor blocks, so the
4704/// expression may need to be expanded in multiple places.
4705void LSRInstance::RewriteForPHI(PHINode *PN,
4706 const LSRFixup &LF,
4707 const Formula &F,
Dan Gohman6deab962010-02-16 20:25:07 +00004708 SCEVExpander &Rewriter,
4709 SmallVectorImpl<WeakVH> &DeadInsts,
Dan Gohman6deab962010-02-16 20:25:07 +00004710 Pass *P) const {
4711 DenseMap<BasicBlock *, Value *> Inserted;
4712 for (unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i)
4713 if (PN->getIncomingValue(i) == LF.OperandValToReplace) {
4714 BasicBlock *BB = PN->getIncomingBlock(i);
4715
4716 // If this is a critical edge, split the edge so that we do not insert
4717 // the code on all predecessor/successor paths. We do this unless this
4718 // is the canonical backedge for this loop, which complicates post-inc
4719 // users.
4720 if (e != 1 && BB->getTerminator()->getNumSuccessors() > 1 &&
Dan Gohmande7f6992011-02-08 00:55:13 +00004721 !isa<IndirectBrInst>(BB->getTerminator())) {
Bill Wendling07efd6f2011-08-25 01:08:34 +00004722 BasicBlock *Parent = PN->getParent();
4723 Loop *PNLoop = LI.getLoopFor(Parent);
4724 if (!PNLoop || Parent != PNLoop->getHeader()) {
Dan Gohmande7f6992011-02-08 00:55:13 +00004725 // Split the critical edge.
Craig Topperf40110f2014-04-25 05:29:35 +00004726 BasicBlock *NewBB = nullptr;
Bill Wendling3fb137f2011-08-25 05:55:40 +00004727 if (!Parent->isLandingPad()) {
Andrew Trick8de329a2011-10-04 03:50:44 +00004728 NewBB = SplitCriticalEdge(BB, Parent, P,
4729 /*MergeIdenticalEdges=*/true,
4730 /*DontDeleteUselessPhis=*/true);
Bill Wendling3fb137f2011-08-25 05:55:40 +00004731 } else {
4732 SmallVector<BasicBlock*, 2> NewBBs;
4733 SplitLandingPadPredecessors(Parent, BB, "", "", P, NewBBs);
4734 NewBB = NewBBs[0];
4735 }
Andrew Trick402edbb2012-09-18 17:51:33 +00004736 // If NewBB==NULL, then SplitCriticalEdge refused to split because all
4737 // phi predecessors are identical. The simple thing to do is skip
4738 // splitting in this case rather than complicate the API.
4739 if (NewBB) {
4740 // If PN is outside of the loop and BB is in the loop, we want to
4741 // move the block to be immediately before the PHI block, not
4742 // immediately after BB.
4743 if (L->contains(BB) && !L->contains(PN))
4744 NewBB->moveBefore(PN->getParent());
Dan Gohman6deab962010-02-16 20:25:07 +00004745
Andrew Trick402edbb2012-09-18 17:51:33 +00004746 // Splitting the edge can reduce the number of PHI entries we have.
4747 e = PN->getNumIncomingValues();
4748 BB = NewBB;
4749 i = PN->getBasicBlockIndex(BB);
4750 }
Dan Gohmande7f6992011-02-08 00:55:13 +00004751 }
Dan Gohman6deab962010-02-16 20:25:07 +00004752 }
4753
4754 std::pair<DenseMap<BasicBlock *, Value *>::iterator, bool> Pair =
Craig Topperf40110f2014-04-25 05:29:35 +00004755 Inserted.insert(std::make_pair(BB, static_cast<Value *>(nullptr)));
Dan Gohman6deab962010-02-16 20:25:07 +00004756 if (!Pair.second)
4757 PN->setIncomingValue(i, Pair.first->second);
4758 else {
Dan Gohman8c16b382010-02-22 04:11:59 +00004759 Value *FullV = Expand(LF, F, BB->getTerminator(), Rewriter, DeadInsts);
Dan Gohman6deab962010-02-16 20:25:07 +00004760
4761 // If this is reuse-by-noop-cast, insert the noop cast.
Chris Lattner229907c2011-07-18 04:54:35 +00004762 Type *OpTy = LF.OperandValToReplace->getType();
Dan Gohman6deab962010-02-16 20:25:07 +00004763 if (FullV->getType() != OpTy)
4764 FullV =
4765 CastInst::Create(CastInst::getCastOpcode(FullV, false,
4766 OpTy, false),
4767 FullV, LF.OperandValToReplace->getType(),
4768 "tmp", BB->getTerminator());
4769
4770 PN->setIncomingValue(i, FullV);
4771 Pair.first->second = FullV;
4772 }
4773 }
4774}
4775
Dan Gohman45774ce2010-02-12 10:34:29 +00004776/// Rewrite - Emit instructions for the leading candidate expression for this
4777/// LSRUse (this is called "expanding"), and update the UserInst to reference
4778/// the newly expanded value.
4779void LSRInstance::Rewrite(const LSRFixup &LF,
4780 const Formula &F,
Dan Gohman45774ce2010-02-12 10:34:29 +00004781 SCEVExpander &Rewriter,
4782 SmallVectorImpl<WeakVH> &DeadInsts,
Dan Gohman45774ce2010-02-12 10:34:29 +00004783 Pass *P) const {
Dan Gohman45774ce2010-02-12 10:34:29 +00004784 // First, find an insertion point that dominates UserInst. For PHI nodes,
4785 // find the nearest block which dominates all the relevant uses.
4786 if (PHINode *PN = dyn_cast<PHINode>(LF.UserInst)) {
Dan Gohman8c16b382010-02-22 04:11:59 +00004787 RewriteForPHI(PN, LF, F, Rewriter, DeadInsts, P);
Dan Gohman45774ce2010-02-12 10:34:29 +00004788 } else {
Dan Gohman8c16b382010-02-22 04:11:59 +00004789 Value *FullV = Expand(LF, F, LF.UserInst, Rewriter, DeadInsts);
Dan Gohman45774ce2010-02-12 10:34:29 +00004790
4791 // If this is reuse-by-noop-cast, insert the noop cast.
Chris Lattner229907c2011-07-18 04:54:35 +00004792 Type *OpTy = LF.OperandValToReplace->getType();
Dan Gohman45774ce2010-02-12 10:34:29 +00004793 if (FullV->getType() != OpTy) {
4794 Instruction *Cast =
4795 CastInst::Create(CastInst::getCastOpcode(FullV, false, OpTy, false),
4796 FullV, OpTy, "tmp", LF.UserInst);
4797 FullV = Cast;
4798 }
4799
4800 // Update the user. ICmpZero is handled specially here (for now) because
4801 // Expand may have updated one of the operands of the icmp already, and
4802 // its new value may happen to be equal to LF.OperandValToReplace, in
4803 // which case doing replaceUsesOfWith leads to replacing both operands
4804 // with the same value. TODO: Reorganize this.
4805 if (Uses[LF.LUIdx].Kind == LSRUse::ICmpZero)
4806 LF.UserInst->setOperand(0, FullV);
4807 else
4808 LF.UserInst->replaceUsesOfWith(LF.OperandValToReplace, FullV);
4809 }
4810
4811 DeadInsts.push_back(LF.OperandValToReplace);
4812}
4813
Dan Gohmana4ca28a2010-05-20 20:52:00 +00004814/// ImplementSolution - Rewrite all the fixup locations with new values,
4815/// following the chosen solution.
Dan Gohman45774ce2010-02-12 10:34:29 +00004816void
4817LSRInstance::ImplementSolution(const SmallVectorImpl<const Formula *> &Solution,
4818 Pass *P) {
4819 // Keep track of instructions we may have made dead, so that
4820 // we can remove them after we are done working.
4821 SmallVector<WeakVH, 16> DeadInsts;
4822
Andrew Trick411daa52011-06-28 05:07:32 +00004823 SCEVExpander Rewriter(SE, "lsr");
Andrew Trick4dc3eff2012-01-09 18:58:16 +00004824#ifndef NDEBUG
4825 Rewriter.setDebugType(DEBUG_TYPE);
4826#endif
Dan Gohman45774ce2010-02-12 10:34:29 +00004827 Rewriter.disableCanonicalMode();
Andrew Trick7fb669a2011-10-07 23:46:21 +00004828 Rewriter.enableLSRMode();
Dan Gohman45774ce2010-02-12 10:34:29 +00004829 Rewriter.setIVIncInsertPos(L, IVIncInsertPos);
4830
Andrew Trickd5d2db92012-01-10 01:45:08 +00004831 // Mark phi nodes that terminate chains so the expander tries to reuse them.
4832 for (SmallVectorImpl<IVChain>::const_iterator ChainI = IVChainVec.begin(),
4833 ChainE = IVChainVec.end(); ChainI != ChainE; ++ChainI) {
Jakob Stoklund Olesena0337d72012-04-26 23:33:09 +00004834 if (PHINode *PN = dyn_cast<PHINode>(ChainI->tailUserInst()))
Andrew Trickd5d2db92012-01-10 01:45:08 +00004835 Rewriter.setChainedPhi(PN);
4836 }
4837
Dan Gohman45774ce2010-02-12 10:34:29 +00004838 // Expand the new value definitions and update the users.
Dan Gohman927bcaa2010-05-20 20:33:18 +00004839 for (SmallVectorImpl<LSRFixup>::const_iterator I = Fixups.begin(),
4840 E = Fixups.end(); I != E; ++I) {
4841 const LSRFixup &Fixup = *I;
Dan Gohman45774ce2010-02-12 10:34:29 +00004842
Dan Gohman927bcaa2010-05-20 20:33:18 +00004843 Rewrite(Fixup, *Solution[Fixup.LUIdx], Rewriter, DeadInsts, P);
Dan Gohman45774ce2010-02-12 10:34:29 +00004844
4845 Changed = true;
4846 }
4847
Andrew Trick248d4102012-01-09 21:18:52 +00004848 for (SmallVectorImpl<IVChain>::const_iterator ChainI = IVChainVec.begin(),
4849 ChainE = IVChainVec.end(); ChainI != ChainE; ++ChainI) {
4850 GenerateIVChain(*ChainI, Rewriter, DeadInsts);
4851 Changed = true;
4852 }
Dan Gohman45774ce2010-02-12 10:34:29 +00004853 // Clean up after ourselves. This must be done before deleting any
4854 // instructions.
4855 Rewriter.clear();
4856
4857 Changed |= DeleteTriviallyDeadInstructions(DeadInsts);
4858}
4859
Chandler Carruth26c59fa2013-01-07 14:41:08 +00004860LSRInstance::LSRInstance(Loop *L, Pass *P)
4861 : IU(P->getAnalysis<IVUsers>()), SE(P->getAnalysis<ScalarEvolution>()),
Chandler Carruth73523022014-01-13 13:07:17 +00004862 DT(P->getAnalysis<DominatorTreeWrapperPass>().getDomTree()),
4863 LI(P->getAnalysis<LoopInfo>()),
Chandler Carruth26c59fa2013-01-07 14:41:08 +00004864 TTI(P->getAnalysis<TargetTransformInfo>()), L(L), Changed(false),
Craig Topperf40110f2014-04-25 05:29:35 +00004865 IVIncInsertPos(nullptr) {
Dan Gohmana83ac2d2009-11-05 21:11:53 +00004866 // If LoopSimplify form is not available, stay out of trouble.
Andrew Trick732ad802012-01-07 03:16:50 +00004867 if (!L->isLoopSimplifyForm())
4868 return;
Dan Gohmana83ac2d2009-11-05 21:11:53 +00004869
Andrew Trick070e5402012-03-16 03:16:56 +00004870 // If there's no interesting work to be done, bail early.
4871 if (IU.empty()) return;
4872
Andrew Trick19f80c12012-04-18 04:00:10 +00004873 // If there's too much analysis to be done, bail early. We won't be able to
4874 // model the problem anyway.
4875 unsigned NumUsers = 0;
4876 for (IVUsers::const_iterator UI = IU.begin(), E = IU.end(); UI != E; ++UI) {
4877 if (++NumUsers > MaxIVUsers) {
4878 DEBUG(dbgs() << "LSR skipping loop, too many IV Users in " << *L
4879 << "\n");
4880 return;
4881 }
4882 }
4883
Andrew Trick070e5402012-03-16 03:16:56 +00004884#ifndef NDEBUG
Andrew Trick12728f02012-01-17 06:45:52 +00004885 // All dominating loops must have preheaders, or SCEVExpander may not be able
4886 // to materialize an AddRecExpr whose Start is an outer AddRecExpr.
4887 //
Andrew Trick070e5402012-03-16 03:16:56 +00004888 // IVUsers analysis should only create users that are dominated by simple loop
4889 // headers. Since this loop should dominate all of its users, its user list
4890 // should be empty if this loop itself is not within a simple loop nest.
Andrew Trick12728f02012-01-17 06:45:52 +00004891 for (DomTreeNode *Rung = DT.getNode(L->getLoopPreheader());
4892 Rung; Rung = Rung->getIDom()) {
4893 BasicBlock *BB = Rung->getBlock();
4894 const Loop *DomLoop = LI.getLoopFor(BB);
4895 if (DomLoop && DomLoop->getHeader() == BB) {
Andrew Trick070e5402012-03-16 03:16:56 +00004896 assert(DomLoop->getLoopPreheader() && "LSR needs a simplified loop nest");
Andrew Trick12728f02012-01-17 06:45:52 +00004897 }
Andrew Trick732ad802012-01-07 03:16:50 +00004898 }
Andrew Trick070e5402012-03-16 03:16:56 +00004899#endif // DEBUG
Dan Gohman85875f72009-03-09 20:34:59 +00004900
Dan Gohman45774ce2010-02-12 10:34:29 +00004901 DEBUG(dbgs() << "\nLSR on loop ";
Chandler Carruthd48cdbf2014-01-09 02:29:41 +00004902 L->getHeader()->printAsOperand(dbgs(), /*PrintType=*/false);
Dan Gohman45774ce2010-02-12 10:34:29 +00004903 dbgs() << ":\n");
Dan Gohmane201f8f2009-03-09 20:46:50 +00004904
Dan Gohman927bcaa2010-05-20 20:33:18 +00004905 // First, perform some low-level loop optimizations.
Dan Gohman45774ce2010-02-12 10:34:29 +00004906 OptimizeShadowIV();
Dan Gohman4c4043c2010-05-20 20:05:31 +00004907 OptimizeLoopTermCond();
Evan Cheng78a4eb82009-05-11 22:33:01 +00004908
Andrew Trick8acb4342011-07-21 00:40:04 +00004909 // If loop preparation eliminates all interesting IV users, bail.
4910 if (IU.empty()) return;
4911
Andrew Trick168dfff2011-09-29 01:53:08 +00004912 // Skip nested loops until we can model them better with formulae.
Andrew Trickd97b83e2012-03-22 22:42:45 +00004913 if (!L->empty()) {
Andrew Trickbc6de902011-09-29 01:33:38 +00004914 DEBUG(dbgs() << "LSR skipping outer loop " << *L << "\n");
Andrew Trick168dfff2011-09-29 01:53:08 +00004915 return;
Andrew Trickbc6de902011-09-29 01:33:38 +00004916 }
4917
Dan Gohman927bcaa2010-05-20 20:33:18 +00004918 // Start collecting data and preparing for the solver.
Andrew Trick29fe5f02012-01-09 19:50:34 +00004919 CollectChains();
Dan Gohman45774ce2010-02-12 10:34:29 +00004920 CollectInterestingTypesAndFactors();
4921 CollectFixupsAndInitialFormulae();
4922 CollectLoopInvariantFixupsAndFormulae();
Chris Lattner9bfa6f82005-08-08 05:28:22 +00004923
Andrew Trick248d4102012-01-09 21:18:52 +00004924 assert(!Uses.empty() && "IVUsers reported at least one use");
Dan Gohman45774ce2010-02-12 10:34:29 +00004925 DEBUG(dbgs() << "LSR found " << Uses.size() << " uses:\n";
4926 print_uses(dbgs()));
Misha Brukmanb1c93172005-04-21 23:48:37 +00004927
Dan Gohman45774ce2010-02-12 10:34:29 +00004928 // Now use the reuse data to generate a bunch of interesting ways
4929 // to formulate the values needed for the uses.
4930 GenerateAllReuseFormulae();
Evan Cheng3df447d2006-03-16 21:53:05 +00004931
Dan Gohman45774ce2010-02-12 10:34:29 +00004932 FilterOutUndesirableDedicatedRegisters();
4933 NarrowSearchSpaceUsingHeuristics();
Dan Gohman92c36962009-12-18 00:06:20 +00004934
Dan Gohman45774ce2010-02-12 10:34:29 +00004935 SmallVector<const Formula *, 8> Solution;
4936 Solve(Solution);
Dan Gohman92c36962009-12-18 00:06:20 +00004937
Dan Gohman45774ce2010-02-12 10:34:29 +00004938 // Release memory that is no longer needed.
4939 Factors.clear();
4940 Types.clear();
4941 RegUses.clear();
4942
Andrew Trick58124392011-09-27 00:44:14 +00004943 if (Solution.empty())
4944 return;
4945
Dan Gohman45774ce2010-02-12 10:34:29 +00004946#ifndef NDEBUG
4947 // Formulae should be legal.
Chandler Carruth26c59fa2013-01-07 14:41:08 +00004948 for (SmallVectorImpl<LSRUse>::const_iterator I = Uses.begin(), E = Uses.end();
4949 I != E; ++I) {
4950 const LSRUse &LU = *I;
4951 for (SmallVectorImpl<Formula>::const_iterator J = LU.Formulae.begin(),
4952 JE = LU.Formulae.end();
4953 J != JE; ++J)
4954 assert(isLegalUse(TTI, LU.MinOffset, LU.MaxOffset, LU.Kind, LU.AccessTy,
4955 *J) && "Illegal formula generated!");
Dan Gohman45774ce2010-02-12 10:34:29 +00004956 };
4957#endif
4958
4959 // Now that we've decided what we want, make it so.
4960 ImplementSolution(Solution, P);
4961}
4962
4963void LSRInstance::print_factors_and_types(raw_ostream &OS) const {
4964 if (Factors.empty() && Types.empty()) return;
4965
4966 OS << "LSR has identified the following interesting factors and types: ";
4967 bool First = true;
4968
4969 for (SmallSetVector<int64_t, 8>::const_iterator
4970 I = Factors.begin(), E = Factors.end(); I != E; ++I) {
4971 if (!First) OS << ", ";
4972 First = false;
4973 OS << '*' << *I;
Evan Cheng87fe40b2009-11-10 21:14:05 +00004974 }
Dale Johannesen02cb2bf2009-05-11 17:15:42 +00004975
Chris Lattner229907c2011-07-18 04:54:35 +00004976 for (SmallSetVector<Type *, 4>::const_iterator
Dan Gohman45774ce2010-02-12 10:34:29 +00004977 I = Types.begin(), E = Types.end(); I != E; ++I) {
4978 if (!First) OS << ", ";
4979 First = false;
4980 OS << '(' << **I << ')';
4981 }
4982 OS << '\n';
4983}
4984
4985void LSRInstance::print_fixups(raw_ostream &OS) const {
4986 OS << "LSR is examining the following fixup sites:\n";
4987 for (SmallVectorImpl<LSRFixup>::const_iterator I = Fixups.begin(),
4988 E = Fixups.end(); I != E; ++I) {
Dan Gohman45774ce2010-02-12 10:34:29 +00004989 dbgs() << " ";
Dan Gohman86110fa2010-05-20 22:25:20 +00004990 I->print(OS);
Dan Gohman45774ce2010-02-12 10:34:29 +00004991 OS << '\n';
4992 }
4993}
4994
4995void LSRInstance::print_uses(raw_ostream &OS) const {
4996 OS << "LSR is examining the following uses:\n";
4997 for (SmallVectorImpl<LSRUse>::const_iterator I = Uses.begin(),
4998 E = Uses.end(); I != E; ++I) {
4999 const LSRUse &LU = *I;
5000 dbgs() << " ";
5001 LU.print(OS);
5002 OS << '\n';
5003 for (SmallVectorImpl<Formula>::const_iterator J = LU.Formulae.begin(),
5004 JE = LU.Formulae.end(); J != JE; ++J) {
5005 OS << " ";
5006 J->print(OS);
5007 OS << '\n';
5008 }
5009 }
5010}
5011
5012void LSRInstance::print(raw_ostream &OS) const {
5013 print_factors_and_types(OS);
5014 print_fixups(OS);
5015 print_uses(OS);
5016}
5017
Manman Ren49d684e2012-09-12 05:06:18 +00005018#if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
Dan Gohman45774ce2010-02-12 10:34:29 +00005019void LSRInstance::dump() const {
5020 print(errs()); errs() << '\n';
5021}
Manman Renc3366cc2012-09-06 19:55:56 +00005022#endif
Dan Gohman45774ce2010-02-12 10:34:29 +00005023
5024namespace {
5025
5026class LoopStrengthReduce : public LoopPass {
Dan Gohman45774ce2010-02-12 10:34:29 +00005027public:
5028 static char ID; // Pass ID, replacement for typeid
Chandler Carruth26c59fa2013-01-07 14:41:08 +00005029 LoopStrengthReduce();
Dan Gohman45774ce2010-02-12 10:34:29 +00005030
5031private:
Craig Topper3e4c6972014-03-05 09:10:37 +00005032 bool runOnLoop(Loop *L, LPPassManager &LPM) override;
5033 void getAnalysisUsage(AnalysisUsage &AU) const override;
Dan Gohman45774ce2010-02-12 10:34:29 +00005034};
5035
5036}
5037
5038char LoopStrengthReduce::ID = 0;
Owen Anderson8ac477f2010-10-12 19:48:12 +00005039INITIALIZE_PASS_BEGIN(LoopStrengthReduce, "loop-reduce",
Owen Andersondf7a4f22010-10-07 22:25:06 +00005040 "Loop Strength Reduction", false, false)
Chandler Carruth26c59fa2013-01-07 14:41:08 +00005041INITIALIZE_AG_DEPENDENCY(TargetTransformInfo)
Chandler Carruth73523022014-01-13 13:07:17 +00005042INITIALIZE_PASS_DEPENDENCY(DominatorTreeWrapperPass)
Owen Anderson8ac477f2010-10-12 19:48:12 +00005043INITIALIZE_PASS_DEPENDENCY(ScalarEvolution)
5044INITIALIZE_PASS_DEPENDENCY(IVUsers)
Owen Andersona4fefc12010-10-19 20:08:44 +00005045INITIALIZE_PASS_DEPENDENCY(LoopInfo)
5046INITIALIZE_PASS_DEPENDENCY(LoopSimplify)
Owen Anderson8ac477f2010-10-12 19:48:12 +00005047INITIALIZE_PASS_END(LoopStrengthReduce, "loop-reduce",
5048 "Loop Strength Reduction", false, false)
5049
Nadav Rotem4dc976f2012-10-19 21:28:43 +00005050
Chandler Carruth26c59fa2013-01-07 14:41:08 +00005051Pass *llvm::createLoopStrengthReducePass() {
5052 return new LoopStrengthReduce();
Dan Gohman45774ce2010-02-12 10:34:29 +00005053}
5054
Chandler Carruth26c59fa2013-01-07 14:41:08 +00005055LoopStrengthReduce::LoopStrengthReduce() : LoopPass(ID) {
5056 initializeLoopStrengthReducePass(*PassRegistry::getPassRegistry());
5057}
Dan Gohman45774ce2010-02-12 10:34:29 +00005058
5059void LoopStrengthReduce::getAnalysisUsage(AnalysisUsage &AU) const {
5060 // We split critical edges, so we change the CFG. However, we do update
5061 // many analyses if they are around.
Eric Christopherda6bd452011-02-10 01:48:24 +00005062 AU.addPreservedID(LoopSimplifyID);
Dan Gohman45774ce2010-02-12 10:34:29 +00005063
Eric Christopherda6bd452011-02-10 01:48:24 +00005064 AU.addRequired<LoopInfo>();
5065 AU.addPreserved<LoopInfo>();
5066 AU.addRequiredID(LoopSimplifyID);
Chandler Carruth73523022014-01-13 13:07:17 +00005067 AU.addRequired<DominatorTreeWrapperPass>();
5068 AU.addPreserved<DominatorTreeWrapperPass>();
Dan Gohman45774ce2010-02-12 10:34:29 +00005069 AU.addRequired<ScalarEvolution>();
5070 AU.addPreserved<ScalarEvolution>();
Cameron Zwarich97dae4d2011-02-10 23:53:14 +00005071 // Requiring LoopSimplify a second time here prevents IVUsers from running
5072 // twice, since LoopSimplify was invalidated by running ScalarEvolution.
5073 AU.addRequiredID(LoopSimplifyID);
Dan Gohman45774ce2010-02-12 10:34:29 +00005074 AU.addRequired<IVUsers>();
5075 AU.addPreserved<IVUsers>();
Chandler Carruth26c59fa2013-01-07 14:41:08 +00005076 AU.addRequired<TargetTransformInfo>();
Dan Gohman45774ce2010-02-12 10:34:29 +00005077}
5078
5079bool LoopStrengthReduce::runOnLoop(Loop *L, LPPassManager & /*LPM*/) {
Paul Robinsonaf4e64d2014-02-06 00:07:05 +00005080 if (skipOptnoneFunction(L))
5081 return false;
5082
Dan Gohman45774ce2010-02-12 10:34:29 +00005083 bool Changed = false;
5084
5085 // Run the main LSR transformation.
Chandler Carruth26c59fa2013-01-07 14:41:08 +00005086 Changed |= LSRInstance(L, this).getChanged();
Dan Gohman45774ce2010-02-12 10:34:29 +00005087
Andrew Trick2ec61a82012-01-07 01:36:44 +00005088 // Remove any extra phis created by processing inner loops.
Dan Gohmanb5358002010-01-05 16:31:45 +00005089 Changed |= DeleteDeadPHIs(L->getHeader());
Andrew Trickf950ce82013-01-06 05:59:39 +00005090 if (EnablePhiElim && L->isLoopSimplifyForm()) {
Andrew Trick2ec61a82012-01-07 01:36:44 +00005091 SmallVector<WeakVH, 16> DeadInsts;
5092 SCEVExpander Rewriter(getAnalysis<ScalarEvolution>(), "lsr");
5093#ifndef NDEBUG
5094 Rewriter.setDebugType(DEBUG_TYPE);
5095#endif
Chandler Carruth73523022014-01-13 13:07:17 +00005096 unsigned numFolded = Rewriter.replaceCongruentIVs(
5097 L, &getAnalysis<DominatorTreeWrapperPass>().getDomTree(), DeadInsts,
5098 &getAnalysis<TargetTransformInfo>());
Andrew Trick2ec61a82012-01-07 01:36:44 +00005099 if (numFolded) {
5100 Changed = true;
5101 DeleteTriviallyDeadInstructions(DeadInsts);
5102 DeleteDeadPHIs(L->getHeader());
5103 }
5104 }
Evan Cheng03001cb2008-07-07 19:51:32 +00005105 return Changed;
Nate Begemanb18121e2004-10-18 21:08:22 +00005106}