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Nate Begemaneaa13852004-10-18 21:08:22 +00001//===- LoopStrengthReduce.cpp - Strength Reduce GEPs in Loops -------------===//
Misha Brukmanfd939082005-04-21 23:48:37 +00002//
Nate Begemaneaa13852004-10-18 21:08:22 +00003// The LLVM Compiler Infrastructure
4//
Chris Lattner4ee451d2007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Misha Brukmanfd939082005-04-21 23:48:37 +00007//
Nate Begemaneaa13852004-10-18 21:08:22 +00008//===----------------------------------------------------------------------===//
9//
10// This pass performs a strength reduction on array references inside loops that
11// have as one or more of their components the loop induction variable. This is
12// accomplished by creating a new Value to hold the initial value of the array
13// access for the first iteration, and then creating a new GEP instruction in
14// the loop to increment the value by the appropriate amount.
15//
Nate Begemaneaa13852004-10-18 21:08:22 +000016//===----------------------------------------------------------------------===//
17
Chris Lattnerbe3e5212005-08-03 23:30:08 +000018#define DEBUG_TYPE "loop-reduce"
Nate Begemaneaa13852004-10-18 21:08:22 +000019#include "llvm/Transforms/Scalar.h"
20#include "llvm/Constants.h"
21#include "llvm/Instructions.h"
Dan Gohmane5b01be2007-05-04 14:59:09 +000022#include "llvm/IntrinsicInst.h"
Nate Begemaneaa13852004-10-18 21:08:22 +000023#include "llvm/Type.h"
Jeff Cohen2f3c9b72005-03-04 04:04:26 +000024#include "llvm/DerivedTypes.h"
Nate Begemaneaa13852004-10-18 21:08:22 +000025#include "llvm/Analysis/Dominators.h"
26#include "llvm/Analysis/LoopInfo.h"
Devang Patel0f54dcb2007-03-06 21:14:09 +000027#include "llvm/Analysis/LoopPass.h"
Nate Begeman16997482005-07-30 00:15:07 +000028#include "llvm/Analysis/ScalarEvolutionExpander.h"
Evan Chengd9fb7122009-02-21 02:06:47 +000029#include "llvm/Transforms/Utils/AddrModeMatcher.h"
Chris Lattnere0391be2005-08-12 22:06:11 +000030#include "llvm/Transforms/Utils/BasicBlockUtils.h"
Nate Begemaneaa13852004-10-18 21:08:22 +000031#include "llvm/Transforms/Utils/Local.h"
Jeff Cohen2f3c9b72005-03-04 04:04:26 +000032#include "llvm/Target/TargetData.h"
Evan Cheng168a66b2007-10-26 23:08:19 +000033#include "llvm/ADT/SmallPtrSet.h"
Nate Begemaneaa13852004-10-18 21:08:22 +000034#include "llvm/ADT/Statistic.h"
Evan Chengd9fb7122009-02-21 02:06:47 +000035#include "llvm/Support/CFG.h"
Nate Begeman16997482005-07-30 00:15:07 +000036#include "llvm/Support/Debug.h"
Chris Lattnera4f0b3a2006-08-27 12:54:02 +000037#include "llvm/Support/Compiler.h"
Dan Gohmanc17e0cf2009-02-20 04:17:46 +000038#include "llvm/Support/CommandLine.h"
Evan Chengd9fb7122009-02-21 02:06:47 +000039#include "llvm/Support/GetElementPtrTypeIterator.h"
Evan Chengd277f2c2006-03-13 23:14:23 +000040#include "llvm/Target/TargetLowering.h"
Jeff Cohencfb1d422005-07-30 18:22:27 +000041#include <algorithm>
Nate Begemaneaa13852004-10-18 21:08:22 +000042using namespace llvm;
43
Evan Chengcdf43b12007-10-25 09:11:16 +000044STATISTIC(NumReduced , "Number of GEPs strength reduced");
45STATISTIC(NumInserted, "Number of PHIs inserted");
46STATISTIC(NumVariable, "Number of PHIs with variable strides");
Devang Patel54153272008-08-27 17:50:18 +000047STATISTIC(NumEliminated, "Number of strides eliminated");
48STATISTIC(NumShadow, "Number of Shadow IVs optimized");
Evan Chengd9fb7122009-02-21 02:06:47 +000049STATISTIC(NumImmSunk, "Number of common expr immediates sunk into uses");
Nate Begemaneaa13852004-10-18 21:08:22 +000050
Dan Gohmanc17e0cf2009-02-20 04:17:46 +000051static cl::opt<bool> EnableFullLSRMode("enable-full-lsr",
52 cl::init(false),
53 cl::Hidden);
54
Chris Lattner0e5f4992006-12-19 21:40:18 +000055namespace {
Dale Johannesendc42f482007-03-20 00:47:50 +000056
Jeff Cohenc01a5302007-03-20 20:43:18 +000057 struct BasedUser;
Dale Johannesendc42f482007-03-20 00:47:50 +000058
Chris Lattnerec3fb632005-08-03 22:21:05 +000059 /// IVStrideUse - Keep track of one use of a strided induction variable, where
60 /// the stride is stored externally. The Offset member keeps track of the
Dan Gohman9330c3a2007-10-29 19:32:39 +000061 /// offset from the IV, User is the actual user of the operand, and
62 /// 'OperandValToReplace' is the operand of the User that is the use.
Reid Spencer9133fe22007-02-05 23:32:05 +000063 struct VISIBILITY_HIDDEN IVStrideUse {
Chris Lattnerec3fb632005-08-03 22:21:05 +000064 SCEVHandle Offset;
65 Instruction *User;
66 Value *OperandValToReplace;
Chris Lattner010de252005-08-08 05:28:22 +000067
68 // isUseOfPostIncrementedValue - True if this should use the
69 // post-incremented version of this IV, not the preincremented version.
70 // This can only be set in special cases, such as the terminating setcc
Chris Lattnerc6bae652005-09-12 06:04:47 +000071 // instruction for a loop or uses dominated by the loop.
Chris Lattner010de252005-08-08 05:28:22 +000072 bool isUseOfPostIncrementedValue;
Chris Lattnerec3fb632005-08-03 22:21:05 +000073
74 IVStrideUse(const SCEVHandle &Offs, Instruction *U, Value *O)
Chris Lattner010de252005-08-08 05:28:22 +000075 : Offset(Offs), User(U), OperandValToReplace(O),
76 isUseOfPostIncrementedValue(false) {}
Chris Lattnerec3fb632005-08-03 22:21:05 +000077 };
78
79 /// IVUsersOfOneStride - This structure keeps track of all instructions that
80 /// have an operand that is based on the trip count multiplied by some stride.
81 /// The stride for all of these users is common and kept external to this
82 /// structure.
Reid Spencer9133fe22007-02-05 23:32:05 +000083 struct VISIBILITY_HIDDEN IVUsersOfOneStride {
Nate Begeman16997482005-07-30 00:15:07 +000084 /// Users - Keep track of all of the users of this stride as well as the
Chris Lattnerec3fb632005-08-03 22:21:05 +000085 /// initial value and the operand that uses the IV.
86 std::vector<IVStrideUse> Users;
87
88 void addUser(const SCEVHandle &Offset,Instruction *User, Value *Operand) {
89 Users.push_back(IVStrideUse(Offset, User, Operand));
Nate Begeman16997482005-07-30 00:15:07 +000090 }
91 };
92
Evan Chengd1d6b5c2006-03-16 21:53:05 +000093 /// IVInfo - This structure keeps track of one IV expression inserted during
Evan Cheng21495772006-03-18 08:03:12 +000094 /// StrengthReduceStridedIVUsers. It contains the stride, the common base, as
95 /// well as the PHI node and increment value created for rewrite.
Reid Spencer9133fe22007-02-05 23:32:05 +000096 struct VISIBILITY_HIDDEN IVExpr {
Evan Cheng21495772006-03-18 08:03:12 +000097 SCEVHandle Stride;
Evan Chengd1d6b5c2006-03-16 21:53:05 +000098 SCEVHandle Base;
99 PHINode *PHI;
100 Value *IncV;
101
Evan Cheng21495772006-03-18 08:03:12 +0000102 IVExpr(const SCEVHandle &stride, const SCEVHandle &base, PHINode *phi,
103 Value *incv)
104 : Stride(stride), Base(base), PHI(phi), IncV(incv) {}
Evan Chengd1d6b5c2006-03-16 21:53:05 +0000105 };
106
107 /// IVsOfOneStride - This structure keeps track of all IV expression inserted
108 /// during StrengthReduceStridedIVUsers for a particular stride of the IV.
Reid Spencer9133fe22007-02-05 23:32:05 +0000109 struct VISIBILITY_HIDDEN IVsOfOneStride {
Evan Chengd1d6b5c2006-03-16 21:53:05 +0000110 std::vector<IVExpr> IVs;
111
Evan Cheng21495772006-03-18 08:03:12 +0000112 void addIV(const SCEVHandle &Stride, const SCEVHandle &Base, PHINode *PHI,
113 Value *IncV) {
114 IVs.push_back(IVExpr(Stride, Base, PHI, IncV));
Evan Chengd1d6b5c2006-03-16 21:53:05 +0000115 }
116 };
Nate Begeman16997482005-07-30 00:15:07 +0000117
Devang Patel0f54dcb2007-03-06 21:14:09 +0000118 class VISIBILITY_HIDDEN LoopStrengthReduce : public LoopPass {
Nate Begemaneaa13852004-10-18 21:08:22 +0000119 LoopInfo *LI;
Devang Patelb7d9dfc2007-06-07 21:42:15 +0000120 DominatorTree *DT;
Nate Begeman16997482005-07-30 00:15:07 +0000121 ScalarEvolution *SE;
122 const TargetData *TD;
123 const Type *UIntPtrTy;
Nate Begemaneaa13852004-10-18 21:08:22 +0000124 bool Changed;
Chris Lattner7e608bb2005-08-02 02:52:02 +0000125
Nate Begeman16997482005-07-30 00:15:07 +0000126 /// IVUsesByStride - Keep track of all uses of induction variables that we
127 /// are interested in. The key of the map is the stride of the access.
Chris Lattner50fad702005-08-10 00:45:21 +0000128 std::map<SCEVHandle, IVUsersOfOneStride> IVUsesByStride;
Nate Begeman16997482005-07-30 00:15:07 +0000129
Evan Chengd1d6b5c2006-03-16 21:53:05 +0000130 /// IVsByStride - Keep track of all IVs that have been inserted for a
131 /// particular stride.
132 std::map<SCEVHandle, IVsOfOneStride> IVsByStride;
133
Chris Lattner7305ae22005-10-09 06:20:55 +0000134 /// StrideOrder - An ordering of the keys in IVUsesByStride that is stable:
135 /// We use this to iterate over the IVUsesByStride collection without being
136 /// dependent on random ordering of pointers in the process.
Evan Cheng83927722007-10-30 22:27:26 +0000137 SmallVector<SCEVHandle, 16> StrideOrder;
Chris Lattner7305ae22005-10-09 06:20:55 +0000138
Dale Johannesen2f46bb82009-01-14 02:35:31 +0000139 /// GEPlist - A list of the GEP's that have been remembered in the SCEV
140 /// data structures. SCEV does not know to update these when the operands
141 /// of the GEP are changed, which means we cannot leave them live across
142 /// loops.
143 SmallVector<GetElementPtrInst *, 16> GEPlist;
144
Chris Lattner49f72e62005-08-04 01:19:13 +0000145 /// CastedValues - As we need to cast values to uintptr_t, this keeps track
146 /// of the casted version of each value. This is accessed by
147 /// getCastedVersionOf.
Evan Cheng83927722007-10-30 22:27:26 +0000148 DenseMap<Value*, Value*> CastedPointers;
Nate Begeman16997482005-07-30 00:15:07 +0000149
150 /// DeadInsts - Keep track of instructions we may have made dead, so that
151 /// we can remove them after we are done working.
Chris Lattner09fb7da2008-12-01 06:27:41 +0000152 SmallVector<Instruction*, 16> DeadInsts;
Evan Chengd277f2c2006-03-13 23:14:23 +0000153
154 /// TLI - Keep a pointer of a TargetLowering to consult for determining
155 /// transformation profitability.
156 const TargetLowering *TLI;
157
Nate Begemaneaa13852004-10-18 21:08:22 +0000158 public:
Devang Patel19974732007-05-03 01:11:54 +0000159 static char ID; // Pass ID, replacement for typeid
Dan Gohmanc2bbfc12007-08-01 15:32:29 +0000160 explicit LoopStrengthReduce(const TargetLowering *tli = NULL) :
Dan Gohmanae73dc12008-09-04 17:05:41 +0000161 LoopPass(&ID), TLI(tli) {
Jeff Cohen2f3c9b72005-03-04 04:04:26 +0000162 }
163
Devang Patel0f54dcb2007-03-06 21:14:09 +0000164 bool runOnLoop(Loop *L, LPPassManager &LPM);
Nate Begemaneaa13852004-10-18 21:08:22 +0000165
166 virtual void getAnalysisUsage(AnalysisUsage &AU) const {
Chris Lattneraa96ae72005-08-17 06:35:16 +0000167 // We split critical edges, so we change the CFG. However, we do update
168 // many analyses if they are around.
169 AU.addPreservedID(LoopSimplifyID);
170 AU.addPreserved<LoopInfo>();
Chris Lattneraa96ae72005-08-17 06:35:16 +0000171 AU.addPreserved<DominanceFrontier>();
172 AU.addPreserved<DominatorTree>();
173
Jeff Cohenf465db62005-02-27 19:37:07 +0000174 AU.addRequiredID(LoopSimplifyID);
Nate Begemaneaa13852004-10-18 21:08:22 +0000175 AU.addRequired<LoopInfo>();
Devang Patelb7d9dfc2007-06-07 21:42:15 +0000176 AU.addRequired<DominatorTree>();
Jeff Cohen2f3c9b72005-03-04 04:04:26 +0000177 AU.addRequired<TargetData>();
Nate Begeman16997482005-07-30 00:15:07 +0000178 AU.addRequired<ScalarEvolution>();
Devang Patela0b39092008-08-26 17:57:54 +0000179 AU.addPreserved<ScalarEvolution>();
Nate Begemaneaa13852004-10-18 21:08:22 +0000180 }
Chris Lattner49f72e62005-08-04 01:19:13 +0000181
182 /// getCastedVersionOf - Return the specified value casted to uintptr_t.
183 ///
Reid Spencer3ba68b92006-12-13 08:06:42 +0000184 Value *getCastedVersionOf(Instruction::CastOps opcode, Value *V);
Chris Lattner49f72e62005-08-04 01:19:13 +0000185private:
Chris Lattner3416e5f2005-08-04 17:40:30 +0000186 bool AddUsersIfInteresting(Instruction *I, Loop *L,
Evan Cheng168a66b2007-10-26 23:08:19 +0000187 SmallPtrSet<Instruction*,16> &Processed);
Dan Gohman8480bc52007-10-29 19:31:25 +0000188 SCEVHandle GetExpressionSCEV(Instruction *E);
Evan Chengcdf43b12007-10-25 09:11:16 +0000189 ICmpInst *ChangeCompareStride(Loop *L, ICmpInst *Cond,
190 IVStrideUse* &CondUse,
191 const SCEVHandle* &CondStride);
Chris Lattner010de252005-08-08 05:28:22 +0000192 void OptimizeIndvars(Loop *L);
Devang Patela0b39092008-08-26 17:57:54 +0000193
194 /// OptimizeShadowIV - If IV is used in a int-to-float cast
195 /// inside the loop then try to eliminate the cast opeation.
196 void OptimizeShadowIV(Loop *L);
197
Dan Gohmanad7321f2008-09-15 21:22:06 +0000198 /// OptimizeSMax - Rewrite the loop's terminating condition
199 /// if it uses an smax computation.
200 ICmpInst *OptimizeSMax(Loop *L, ICmpInst *Cond,
201 IVStrideUse* &CondUse);
202
Devang Patelc677de22008-08-13 20:31:11 +0000203 bool FindIVUserForCond(ICmpInst *Cond, IVStrideUse *&CondUse,
Devang Patela0b39092008-08-26 17:57:54 +0000204 const SCEVHandle *&CondStride);
Evan Cheng5f8ebaa2007-10-25 22:45:20 +0000205 bool RequiresTypeConversion(const Type *Ty, const Type *NewTy);
Dale Johannesen2f46bb82009-01-14 02:35:31 +0000206 SCEVHandle CheckForIVReuse(bool, bool, bool, const SCEVHandle&,
Dan Gohman02e4fa72007-10-22 20:40:42 +0000207 IVExpr&, const Type*,
Dale Johannesendc42f482007-03-20 00:47:50 +0000208 const std::vector<BasedUser>& UsersToProcess);
Dan Gohman02e4fa72007-10-22 20:40:42 +0000209 bool ValidStride(bool, int64_t,
210 const std::vector<BasedUser>& UsersToProcess);
Evan Cheng5f8ebaa2007-10-25 22:45:20 +0000211 SCEVHandle CollectIVUsers(const SCEVHandle &Stride,
212 IVUsersOfOneStride &Uses,
213 Loop *L,
214 bool &AllUsesAreAddresses,
Dale Johannesenb0390622008-12-16 22:16:28 +0000215 bool &AllUsesAreOutsideLoop,
Evan Cheng5f8ebaa2007-10-25 22:45:20 +0000216 std::vector<BasedUser> &UsersToProcess);
Dan Gohmanc17e0cf2009-02-20 04:17:46 +0000217 bool ShouldUseFullStrengthReductionMode(
218 const std::vector<BasedUser> &UsersToProcess,
219 const Loop *L,
220 bool AllUsesAreAddresses,
221 SCEVHandle Stride);
222 void PrepareToStrengthReduceFully(
223 std::vector<BasedUser> &UsersToProcess,
224 SCEVHandle Stride,
225 SCEVHandle CommonExprs,
226 const Loop *L,
227 SCEVExpander &PreheaderRewriter);
228 void PrepareToStrengthReduceFromSmallerStride(
229 std::vector<BasedUser> &UsersToProcess,
230 Value *CommonBaseV,
231 const IVExpr &ReuseIV,
232 Instruction *PreInsertPt);
233 void PrepareToStrengthReduceWithNewPhi(
234 std::vector<BasedUser> &UsersToProcess,
235 SCEVHandle Stride,
236 SCEVHandle CommonExprs,
237 Value *CommonBaseV,
238 const Loop *L,
239 SCEVExpander &PreheaderRewriter);
Chris Lattner50fad702005-08-10 00:45:21 +0000240 void StrengthReduceStridedIVUsers(const SCEVHandle &Stride,
241 IVUsersOfOneStride &Uses,
Dan Gohman9f4ac312009-03-09 20:41:15 +0000242 Loop *L);
Chris Lattnera68d4ca2008-12-01 06:14:28 +0000243 void DeleteTriviallyDeadInstructions();
Nate Begemaneaa13852004-10-18 21:08:22 +0000244 };
Nate Begemaneaa13852004-10-18 21:08:22 +0000245}
246
Dan Gohman844731a2008-05-13 00:00:25 +0000247char LoopStrengthReduce::ID = 0;
248static RegisterPass<LoopStrengthReduce>
249X("loop-reduce", "Loop Strength Reduction");
250
Daniel Dunbar394f0442008-10-22 23:32:42 +0000251Pass *llvm::createLoopStrengthReducePass(const TargetLowering *TLI) {
Evan Chengd1d6b5c2006-03-16 21:53:05 +0000252 return new LoopStrengthReduce(TLI);
Nate Begemaneaa13852004-10-18 21:08:22 +0000253}
254
Reid Spencer4da49122006-12-12 05:05:00 +0000255/// getCastedVersionOf - Return the specified value casted to uintptr_t. This
256/// assumes that the Value* V is of integer or pointer type only.
Chris Lattner49f72e62005-08-04 01:19:13 +0000257///
Reid Spencer3ba68b92006-12-13 08:06:42 +0000258Value *LoopStrengthReduce::getCastedVersionOf(Instruction::CastOps opcode,
259 Value *V) {
Chris Lattner49f72e62005-08-04 01:19:13 +0000260 if (V->getType() == UIntPtrTy) return V;
261 if (Constant *CB = dyn_cast<Constant>(V))
Reid Spencer3ba68b92006-12-13 08:06:42 +0000262 return ConstantExpr::getCast(opcode, CB, UIntPtrTy);
Chris Lattner49f72e62005-08-04 01:19:13 +0000263
264 Value *&New = CastedPointers[V];
265 if (New) return New;
266
Reid Spencer3ba68b92006-12-13 08:06:42 +0000267 New = SCEVExpander::InsertCastOfTo(opcode, V, UIntPtrTy);
Chris Lattner09fb7da2008-12-01 06:27:41 +0000268 DeadInsts.push_back(cast<Instruction>(New));
Chris Lattner7db543f2005-08-04 19:08:16 +0000269 return New;
Chris Lattner49f72e62005-08-04 01:19:13 +0000270}
271
272
Nate Begemaneaa13852004-10-18 21:08:22 +0000273/// DeleteTriviallyDeadInstructions - If any of the instructions is the
274/// specified set are trivially dead, delete them and see if this makes any of
275/// their operands subsequently dead.
Chris Lattnera68d4ca2008-12-01 06:14:28 +0000276void LoopStrengthReduce::DeleteTriviallyDeadInstructions() {
Chris Lattner09fb7da2008-12-01 06:27:41 +0000277 if (DeadInsts.empty()) return;
278
279 // Sort the deadinsts list so that we can trivially eliminate duplicates as we
280 // go. The code below never adds a non-dead instruction to the worklist, but
281 // callers may not be so careful.
Chris Lattner99d00152008-12-01 06:49:59 +0000282 array_pod_sort(DeadInsts.begin(), DeadInsts.end());
Chris Lattner09fb7da2008-12-01 06:27:41 +0000283
284 // Drop duplicate instructions and those with uses.
285 for (unsigned i = 0, e = DeadInsts.size()-1; i < e; ++i) {
286 Instruction *I = DeadInsts[i];
287 if (!I->use_empty()) DeadInsts[i] = 0;
Chris Lattner46a879e2008-12-09 04:47:21 +0000288 while (i != e && DeadInsts[i+1] == I)
Chris Lattner09fb7da2008-12-01 06:27:41 +0000289 DeadInsts[++i] = 0;
290 }
291
Chris Lattnera68d4ca2008-12-01 06:14:28 +0000292 while (!DeadInsts.empty()) {
293 Instruction *I = DeadInsts.back();
294 DeadInsts.pop_back();
Chris Lattner09fb7da2008-12-01 06:27:41 +0000295
296 if (I == 0 || !isInstructionTriviallyDead(I))
Chris Lattnerbfcee362008-12-01 06:11:32 +0000297 continue;
298
299 SE->deleteValueFromRecords(I);
300
Chris Lattner09fb7da2008-12-01 06:27:41 +0000301 for (User::op_iterator OI = I->op_begin(), E = I->op_end(); OI != E; ++OI) {
302 if (Instruction *U = dyn_cast<Instruction>(*OI)) {
303 *OI = 0;
Chris Lattnerbfcee362008-12-01 06:11:32 +0000304 if (U->use_empty())
Chris Lattner09fb7da2008-12-01 06:27:41 +0000305 DeadInsts.push_back(U);
Bill Wendling411052b2008-11-29 03:43:04 +0000306 }
307 }
Chris Lattnerbfcee362008-12-01 06:11:32 +0000308
309 I->eraseFromParent();
310 Changed = true;
Nate Begemaneaa13852004-10-18 21:08:22 +0000311 }
312}
313
Jeff Cohenf465db62005-02-27 19:37:07 +0000314
Chris Lattner3416e5f2005-08-04 17:40:30 +0000315/// GetExpressionSCEV - Compute and return the SCEV for the specified
316/// instruction.
Dan Gohman8480bc52007-10-29 19:31:25 +0000317SCEVHandle LoopStrengthReduce::GetExpressionSCEV(Instruction *Exp) {
Dale Johannesenda91f492007-03-26 03:01:27 +0000318 // Pointer to pointer bitcast instructions return the same value as their
319 // operand.
320 if (BitCastInst *BCI = dyn_cast<BitCastInst>(Exp)) {
321 if (SE->hasSCEV(BCI) || !isa<Instruction>(BCI->getOperand(0)))
322 return SE->getSCEV(BCI);
Dan Gohman8480bc52007-10-29 19:31:25 +0000323 SCEVHandle R = GetExpressionSCEV(cast<Instruction>(BCI->getOperand(0)));
Dale Johannesenda91f492007-03-26 03:01:27 +0000324 SE->setSCEV(BCI, R);
325 return R;
326 }
327
Chris Lattner87265ab2005-08-09 23:39:36 +0000328 // Scalar Evolutions doesn't know how to compute SCEV's for GEP instructions.
329 // If this is a GEP that SE doesn't know about, compute it now and insert it.
330 // If this is not a GEP, or if we have already done this computation, just let
331 // SE figure it out.
Chris Lattner3416e5f2005-08-04 17:40:30 +0000332 GetElementPtrInst *GEP = dyn_cast<GetElementPtrInst>(Exp);
Chris Lattner87265ab2005-08-09 23:39:36 +0000333 if (!GEP || SE->hasSCEV(GEP))
Chris Lattner3416e5f2005-08-04 17:40:30 +0000334 return SE->getSCEV(Exp);
335
Nate Begeman16997482005-07-30 00:15:07 +0000336 // Analyze all of the subscripts of this getelementptr instruction, looking
Dan Gohman8480bc52007-10-29 19:31:25 +0000337 // for uses that are determined by the trip count of the loop. First, skip
338 // all operands the are not dependent on the IV.
Nate Begeman16997482005-07-30 00:15:07 +0000339
340 // Build up the base expression. Insert an LLVM cast of the pointer to
341 // uintptr_t first.
Dan Gohman246b2562007-10-22 18:31:58 +0000342 SCEVHandle GEPVal = SE->getUnknown(
Reid Spencer3ba68b92006-12-13 08:06:42 +0000343 getCastedVersionOf(Instruction::PtrToInt, GEP->getOperand(0)));
Nate Begeman16997482005-07-30 00:15:07 +0000344
345 gep_type_iterator GTI = gep_type_begin(GEP);
Chris Lattner3416e5f2005-08-04 17:40:30 +0000346
Gabor Greif6725cb52008-06-11 21:38:51 +0000347 for (User::op_iterator i = GEP->op_begin() + 1, e = GEP->op_end();
348 i != e; ++i, ++GTI) {
Nate Begeman16997482005-07-30 00:15:07 +0000349 // If this is a use of a recurrence that we can analyze, and it comes before
350 // Op does in the GEP operand list, we will handle this when we process this
351 // operand.
352 if (const StructType *STy = dyn_cast<StructType>(*GTI)) {
353 const StructLayout *SL = TD->getStructLayout(STy);
Gabor Greif6725cb52008-06-11 21:38:51 +0000354 unsigned Idx = cast<ConstantInt>(*i)->getZExtValue();
Chris Lattnerb1919e22007-02-10 19:55:17 +0000355 uint64_t Offset = SL->getElementOffset(Idx);
Dan Gohman246b2562007-10-22 18:31:58 +0000356 GEPVal = SE->getAddExpr(GEPVal,
357 SE->getIntegerSCEV(Offset, UIntPtrTy));
Nate Begeman16997482005-07-30 00:15:07 +0000358 } else {
Reid Spencer3ba68b92006-12-13 08:06:42 +0000359 unsigned GEPOpiBits =
Gabor Greif6725cb52008-06-11 21:38:51 +0000360 (*i)->getType()->getPrimitiveSizeInBits();
Reid Spencer3ba68b92006-12-13 08:06:42 +0000361 unsigned IntPtrBits = UIntPtrTy->getPrimitiveSizeInBits();
362 Instruction::CastOps opcode = (GEPOpiBits < IntPtrBits ?
363 Instruction::SExt : (GEPOpiBits > IntPtrBits ? Instruction::Trunc :
364 Instruction::BitCast));
Gabor Greif6725cb52008-06-11 21:38:51 +0000365 Value *OpVal = getCastedVersionOf(opcode, *i);
Chris Lattner7db543f2005-08-04 19:08:16 +0000366 SCEVHandle Idx = SE->getSCEV(OpVal);
367
Duncan Sandsceb4d1a2009-01-12 20:38:59 +0000368 uint64_t TypeSize = TD->getTypePaddedSize(GTI.getIndexedType());
Chris Lattner3416e5f2005-08-04 17:40:30 +0000369 if (TypeSize != 1)
Dan Gohman246b2562007-10-22 18:31:58 +0000370 Idx = SE->getMulExpr(Idx,
371 SE->getConstant(ConstantInt::get(UIntPtrTy,
372 TypeSize)));
373 GEPVal = SE->getAddExpr(GEPVal, Idx);
Nate Begeman16997482005-07-30 00:15:07 +0000374 }
375 }
376
Chris Lattner87265ab2005-08-09 23:39:36 +0000377 SE->setSCEV(GEP, GEPVal);
Dale Johannesen2f46bb82009-01-14 02:35:31 +0000378 GEPlist.push_back(GEP);
Chris Lattner3416e5f2005-08-04 17:40:30 +0000379 return GEPVal;
Nate Begeman16997482005-07-30 00:15:07 +0000380}
381
Dale Johannesen2f46bb82009-01-14 02:35:31 +0000382/// containsAddRecFromDifferentLoop - Determine whether expression S involves a
383/// subexpression that is an AddRec from a loop other than L. An outer loop
384/// of L is OK, but not an inner loop nor a disjoint loop.
385static bool containsAddRecFromDifferentLoop(SCEVHandle S, Loop *L) {
386 // This is very common, put it first.
387 if (isa<SCEVConstant>(S))
388 return false;
389 if (SCEVCommutativeExpr *AE = dyn_cast<SCEVCommutativeExpr>(S)) {
390 for (unsigned int i=0; i< AE->getNumOperands(); i++)
391 if (containsAddRecFromDifferentLoop(AE->getOperand(i), L))
392 return true;
393 return false;
394 }
395 if (SCEVAddRecExpr *AE = dyn_cast<SCEVAddRecExpr>(S)) {
396 if (const Loop *newLoop = AE->getLoop()) {
397 if (newLoop == L)
398 return false;
399 // if newLoop is an outer loop of L, this is OK.
400 if (!LoopInfoBase<BasicBlock>::isNotAlreadyContainedIn(L, newLoop))
401 return false;
402 }
403 return true;
404 }
405 if (SCEVUDivExpr *DE = dyn_cast<SCEVUDivExpr>(S))
406 return containsAddRecFromDifferentLoop(DE->getLHS(), L) ||
407 containsAddRecFromDifferentLoop(DE->getRHS(), L);
408#if 0
409 // SCEVSDivExpr has been backed out temporarily, but will be back; we'll
410 // need this when it is.
411 if (SCEVSDivExpr *DE = dyn_cast<SCEVSDivExpr>(S))
412 return containsAddRecFromDifferentLoop(DE->getLHS(), L) ||
413 containsAddRecFromDifferentLoop(DE->getRHS(), L);
414#endif
415 if (SCEVTruncateExpr *TE = dyn_cast<SCEVTruncateExpr>(S))
416 return containsAddRecFromDifferentLoop(TE->getOperand(), L);
417 if (SCEVZeroExtendExpr *ZE = dyn_cast<SCEVZeroExtendExpr>(S))
418 return containsAddRecFromDifferentLoop(ZE->getOperand(), L);
419 if (SCEVSignExtendExpr *SE = dyn_cast<SCEVSignExtendExpr>(S))
420 return containsAddRecFromDifferentLoop(SE->getOperand(), L);
421 return false;
422}
423
Chris Lattner7db543f2005-08-04 19:08:16 +0000424/// getSCEVStartAndStride - Compute the start and stride of this expression,
425/// returning false if the expression is not a start/stride pair, or true if it
426/// is. The stride must be a loop invariant expression, but the start may be
Dale Johannesen2f46bb82009-01-14 02:35:31 +0000427/// a mix of loop invariant and loop variant expressions. The start cannot,
428/// however, contain an AddRec from a different loop, unless that loop is an
429/// outer loop of the current loop.
Chris Lattner7db543f2005-08-04 19:08:16 +0000430static bool getSCEVStartAndStride(const SCEVHandle &SH, Loop *L,
Dan Gohman246b2562007-10-22 18:31:58 +0000431 SCEVHandle &Start, SCEVHandle &Stride,
Evan Cheng8f40afe2009-02-15 06:06:15 +0000432 ScalarEvolution *SE, DominatorTree *DT) {
Chris Lattner7db543f2005-08-04 19:08:16 +0000433 SCEVHandle TheAddRec = Start; // Initialize to zero.
434
435 // If the outer level is an AddExpr, the operands are all start values except
436 // for a nested AddRecExpr.
437 if (SCEVAddExpr *AE = dyn_cast<SCEVAddExpr>(SH)) {
438 for (unsigned i = 0, e = AE->getNumOperands(); i != e; ++i)
439 if (SCEVAddRecExpr *AddRec =
440 dyn_cast<SCEVAddRecExpr>(AE->getOperand(i))) {
441 if (AddRec->getLoop() == L)
Dan Gohman246b2562007-10-22 18:31:58 +0000442 TheAddRec = SE->getAddExpr(AddRec, TheAddRec);
Chris Lattner7db543f2005-08-04 19:08:16 +0000443 else
444 return false; // Nested IV of some sort?
445 } else {
Dan Gohman246b2562007-10-22 18:31:58 +0000446 Start = SE->getAddExpr(Start, AE->getOperand(i));
Chris Lattner7db543f2005-08-04 19:08:16 +0000447 }
448
Reid Spencer3ed469c2006-11-02 20:25:50 +0000449 } else if (isa<SCEVAddRecExpr>(SH)) {
Chris Lattner7db543f2005-08-04 19:08:16 +0000450 TheAddRec = SH;
451 } else {
452 return false; // not analyzable.
453 }
454
455 SCEVAddRecExpr *AddRec = dyn_cast<SCEVAddRecExpr>(TheAddRec);
456 if (!AddRec || AddRec->getLoop() != L) return false;
457
458 // FIXME: Generalize to non-affine IV's.
459 if (!AddRec->isAffine()) return false;
460
Dale Johannesen2f46bb82009-01-14 02:35:31 +0000461 // If Start contains an SCEVAddRecExpr from a different loop, other than an
Dale Johannesen1de17d52009-02-09 22:14:15 +0000462 // outer loop of the current loop, reject it. SCEV has no concept of
Dan Gohmanfd033992009-03-04 20:50:23 +0000463 // operating on more than one loop at a time so don't confuse it with such
464 // expressions.
Dan Gohman9194e8b2009-02-13 03:58:31 +0000465 if (containsAddRecFromDifferentLoop(AddRec->getOperand(0), L))
Dale Johannesen2f46bb82009-01-14 02:35:31 +0000466 return false;
467
Dan Gohman246b2562007-10-22 18:31:58 +0000468 Start = SE->getAddExpr(Start, AddRec->getOperand(0));
Chris Lattner7db543f2005-08-04 19:08:16 +0000469
Evan Cheng8f40afe2009-02-15 06:06:15 +0000470 if (!isa<SCEVConstant>(AddRec->getOperand(1))) {
Evan Cheng5a6c1a82009-02-17 00:13:06 +0000471 // If stride is an instruction, make sure it dominates the loop preheader.
Evan Cheng8f40afe2009-02-15 06:06:15 +0000472 // Otherwise we could end up with a use before def situation.
Evan Cheng5a6c1a82009-02-17 00:13:06 +0000473 BasicBlock *Preheader = L->getLoopPreheader();
474 if (!AddRec->getOperand(1)->dominates(Preheader, DT))
475 return false;
Evan Cheng8f40afe2009-02-15 06:06:15 +0000476
Bill Wendlingb7427032006-11-26 09:46:52 +0000477 DOUT << "[" << L->getHeader()->getName()
478 << "] Variable stride: " << *AddRec << "\n";
Evan Cheng8f40afe2009-02-15 06:06:15 +0000479 }
Chris Lattner7db543f2005-08-04 19:08:16 +0000480
Chris Lattner50fad702005-08-10 00:45:21 +0000481 Stride = AddRec->getOperand(1);
Chris Lattner7db543f2005-08-04 19:08:16 +0000482 return true;
483}
484
Chris Lattner0ae33eb2005-10-03 01:04:44 +0000485/// IVUseShouldUsePostIncValue - We have discovered a "User" of an IV expression
486/// and now we need to decide whether the user should use the preinc or post-inc
487/// value. If this user should use the post-inc version of the IV, return true.
488///
489/// Choosing wrong here can break dominance properties (if we choose to use the
490/// post-inc value when we cannot) or it can end up adding extra live-ranges to
491/// the loop, resulting in reg-reg copies (if we use the pre-inc value when we
492/// should use the post-inc value).
493static bool IVUseShouldUsePostIncValue(Instruction *User, Instruction *IV,
Evan Cheng0e0014d2007-10-30 23:45:15 +0000494 Loop *L, DominatorTree *DT, Pass *P,
Chris Lattner09fb7da2008-12-01 06:27:41 +0000495 SmallVectorImpl<Instruction*> &DeadInsts){
Chris Lattner0ae33eb2005-10-03 01:04:44 +0000496 // If the user is in the loop, use the preinc value.
497 if (L->contains(User->getParent())) return false;
498
Chris Lattner5e8ca662005-10-03 02:50:05 +0000499 BasicBlock *LatchBlock = L->getLoopLatch();
500
501 // Ok, the user is outside of the loop. If it is dominated by the latch
502 // block, use the post-inc value.
Devang Patelb7d9dfc2007-06-07 21:42:15 +0000503 if (DT->dominates(LatchBlock, User->getParent()))
Chris Lattner5e8ca662005-10-03 02:50:05 +0000504 return true;
505
506 // There is one case we have to be careful of: PHI nodes. These little guys
507 // can live in blocks that do not dominate the latch block, but (since their
508 // uses occur in the predecessor block, not the block the PHI lives in) should
509 // still use the post-inc value. Check for this case now.
510 PHINode *PN = dyn_cast<PHINode>(User);
511 if (!PN) return false; // not a phi, not dominated by latch block.
512
513 // Look at all of the uses of IV by the PHI node. If any use corresponds to
514 // a block that is not dominated by the latch block, give up and use the
515 // preincremented value.
516 unsigned NumUses = 0;
517 for (unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i)
518 if (PN->getIncomingValue(i) == IV) {
519 ++NumUses;
Devang Patelb7d9dfc2007-06-07 21:42:15 +0000520 if (!DT->dominates(LatchBlock, PN->getIncomingBlock(i)))
Chris Lattner5e8ca662005-10-03 02:50:05 +0000521 return false;
522 }
523
524 // Okay, all uses of IV by PN are in predecessor blocks that really are
525 // dominated by the latch block. Split the critical edges and use the
526 // post-incremented value.
527 for (unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i)
528 if (PN->getIncomingValue(i) == IV) {
Evan Cheng83927722007-10-30 22:27:26 +0000529 SplitCriticalEdge(PN->getIncomingBlock(i), PN->getParent(), P, false);
Chris Lattner1b9c8e72006-10-28 00:59:20 +0000530 // Splitting the critical edge can reduce the number of entries in this
531 // PHI.
532 e = PN->getNumIncomingValues();
Chris Lattner5e8ca662005-10-03 02:50:05 +0000533 if (--NumUses == 0) break;
534 }
Evan Cheng0e0014d2007-10-30 23:45:15 +0000535
536 // PHI node might have become a constant value after SplitCriticalEdge.
Chris Lattner09fb7da2008-12-01 06:27:41 +0000537 DeadInsts.push_back(User);
Chris Lattner5e8ca662005-10-03 02:50:05 +0000538
539 return true;
Chris Lattner0ae33eb2005-10-03 01:04:44 +0000540}
541
Dan Gohmanf284ce22009-02-18 00:08:39 +0000542/// isAddressUse - Returns true if the specified instruction is using the
Dale Johannesen203af582008-12-05 21:47:27 +0000543/// specified value as an address.
544static bool isAddressUse(Instruction *Inst, Value *OperandVal) {
545 bool isAddress = isa<LoadInst>(Inst);
546 if (StoreInst *SI = dyn_cast<StoreInst>(Inst)) {
547 if (SI->getOperand(1) == OperandVal)
548 isAddress = true;
549 } else if (IntrinsicInst *II = dyn_cast<IntrinsicInst>(Inst)) {
550 // Addressing modes can also be folded into prefetches and a variety
551 // of intrinsics.
552 switch (II->getIntrinsicID()) {
553 default: break;
554 case Intrinsic::prefetch:
555 case Intrinsic::x86_sse2_loadu_dq:
556 case Intrinsic::x86_sse2_loadu_pd:
557 case Intrinsic::x86_sse_loadu_ps:
558 case Intrinsic::x86_sse_storeu_ps:
559 case Intrinsic::x86_sse2_storeu_pd:
560 case Intrinsic::x86_sse2_storeu_dq:
561 case Intrinsic::x86_sse2_storel_dq:
562 if (II->getOperand(1) == OperandVal)
563 isAddress = true;
564 break;
565 }
566 }
567 return isAddress;
568}
Chris Lattner0ae33eb2005-10-03 01:04:44 +0000569
Nate Begeman16997482005-07-30 00:15:07 +0000570/// AddUsersIfInteresting - Inspect the specified instruction. If it is a
571/// reducible SCEV, recursively add its users to the IVUsesByStride set and
572/// return true. Otherwise, return false.
Chris Lattner3416e5f2005-08-04 17:40:30 +0000573bool LoopStrengthReduce::AddUsersIfInteresting(Instruction *I, Loop *L,
Evan Cheng168a66b2007-10-26 23:08:19 +0000574 SmallPtrSet<Instruction*,16> &Processed) {
Chris Lattner42a75512007-01-15 02:27:26 +0000575 if (!I->getType()->isInteger() && !isa<PointerType>(I->getType()))
Dan Gohman4a9a3e52008-04-14 18:26:16 +0000576 return false; // Void and FP expressions cannot be reduced.
Evan Cheng168a66b2007-10-26 23:08:19 +0000577 if (!Processed.insert(I))
Chris Lattner3416e5f2005-08-04 17:40:30 +0000578 return true; // Instruction already handled.
579
Chris Lattner7db543f2005-08-04 19:08:16 +0000580 // Get the symbolic expression for this instruction.
Dan Gohman8480bc52007-10-29 19:31:25 +0000581 SCEVHandle ISE = GetExpressionSCEV(I);
Chris Lattner7db543f2005-08-04 19:08:16 +0000582 if (isa<SCEVCouldNotCompute>(ISE)) return false;
Chris Lattner3416e5f2005-08-04 17:40:30 +0000583
Chris Lattner7db543f2005-08-04 19:08:16 +0000584 // Get the start and stride for this expression.
Dan Gohman246b2562007-10-22 18:31:58 +0000585 SCEVHandle Start = SE->getIntegerSCEV(0, ISE->getType());
Chris Lattner50fad702005-08-10 00:45:21 +0000586 SCEVHandle Stride = Start;
Evan Cheng8f40afe2009-02-15 06:06:15 +0000587 if (!getSCEVStartAndStride(ISE, L, Start, Stride, SE, DT))
Chris Lattner7db543f2005-08-04 19:08:16 +0000588 return false; // Non-reducible symbolic expression, bail out.
Devang Patel4fe26582007-03-09 21:19:53 +0000589
Devang Patel2a5fa182007-04-23 22:42:03 +0000590 std::vector<Instruction *> IUsers;
591 // Collect all I uses now because IVUseShouldUsePostIncValue may
592 // invalidate use_iterator.
593 for (Value::use_iterator UI = I->use_begin(), E = I->use_end(); UI != E; ++UI)
594 IUsers.push_back(cast<Instruction>(*UI));
Nate Begeman16997482005-07-30 00:15:07 +0000595
Devang Patel2a5fa182007-04-23 22:42:03 +0000596 for (unsigned iused_index = 0, iused_size = IUsers.size();
597 iused_index != iused_size; ++iused_index) {
598
599 Instruction *User = IUsers[iused_index];
Devang Patel4fe26582007-03-09 21:19:53 +0000600
Nate Begeman16997482005-07-30 00:15:07 +0000601 // Do not infinitely recurse on PHI nodes.
Chris Lattner396b2ba2005-09-13 02:09:55 +0000602 if (isa<PHINode>(User) && Processed.count(User))
Nate Begeman16997482005-07-30 00:15:07 +0000603 continue;
604
Dale Johannesen2f46bb82009-01-14 02:35:31 +0000605 // Descend recursively, but not into PHI nodes outside the current loop.
606 // It's important to see the entire expression outside the loop to get
607 // choices that depend on addressing mode use right, although we won't
608 // consider references ouside the loop in all cases.
609 // If User is already in Processed, we don't want to recurse into it again,
610 // but do want to record a second reference in the same instruction.
Chris Lattner7db543f2005-08-04 19:08:16 +0000611 bool AddUserToIVUsers = false;
Chris Lattnerf9186592005-08-04 00:14:11 +0000612 if (LI->getLoopFor(User->getParent()) != L) {
Dale Johannesen2f46bb82009-01-14 02:35:31 +0000613 if (isa<PHINode>(User) || Processed.count(User) ||
614 !AddUsersIfInteresting(User, L, Processed)) {
615 DOUT << "FOUND USER in other loop: " << *User
616 << " OF SCEV: " << *ISE << "\n";
617 AddUserToIVUsers = true;
618 }
619 } else if (Processed.count(User) ||
620 !AddUsersIfInteresting(User, L, Processed)) {
Bill Wendlingb7427032006-11-26 09:46:52 +0000621 DOUT << "FOUND USER: " << *User
622 << " OF SCEV: " << *ISE << "\n";
Chris Lattner7db543f2005-08-04 19:08:16 +0000623 AddUserToIVUsers = true;
624 }
Nate Begeman16997482005-07-30 00:15:07 +0000625
Chris Lattner7db543f2005-08-04 19:08:16 +0000626 if (AddUserToIVUsers) {
Chris Lattner7305ae22005-10-09 06:20:55 +0000627 IVUsersOfOneStride &StrideUses = IVUsesByStride[Stride];
Dale Johannesenb0390622008-12-16 22:16:28 +0000628 if (StrideUses.Users.empty()) // First occurrence of this stride?
Chris Lattner7305ae22005-10-09 06:20:55 +0000629 StrideOrder.push_back(Stride);
630
Chris Lattnera4479ad2005-08-04 00:40:47 +0000631 // Okay, we found a user that we cannot reduce. Analyze the instruction
Chris Lattnerc6bae652005-09-12 06:04:47 +0000632 // and decide what to do with it. If we are a use inside of the loop, use
633 // the value before incrementation, otherwise use it after incrementation.
Evan Cheng0e0014d2007-10-30 23:45:15 +0000634 if (IVUseShouldUsePostIncValue(User, I, L, DT, this, DeadInsts)) {
Chris Lattnerc6bae652005-09-12 06:04:47 +0000635 // The value used will be incremented by the stride more than we are
636 // expecting, so subtract this off.
Dan Gohman246b2562007-10-22 18:31:58 +0000637 SCEVHandle NewStart = SE->getMinusSCEV(Start, Stride);
Chris Lattner7305ae22005-10-09 06:20:55 +0000638 StrideUses.addUser(NewStart, User, I);
639 StrideUses.Users.back().isUseOfPostIncrementedValue = true;
Bill Wendlingb7427032006-11-26 09:46:52 +0000640 DOUT << " USING POSTINC SCEV, START=" << *NewStart<< "\n";
Chris Lattner0ae33eb2005-10-03 01:04:44 +0000641 } else {
Chris Lattner7305ae22005-10-09 06:20:55 +0000642 StrideUses.addUser(Start, User, I);
Chris Lattnerc6bae652005-09-12 06:04:47 +0000643 }
Nate Begeman16997482005-07-30 00:15:07 +0000644 }
645 }
646 return true;
647}
648
649namespace {
650 /// BasedUser - For a particular base value, keep information about how we've
651 /// partitioned the expression so far.
652 struct BasedUser {
Dan Gohman246b2562007-10-22 18:31:58 +0000653 /// SE - The current ScalarEvolution object.
654 ScalarEvolution *SE;
655
Chris Lattnera553b0c2005-08-08 22:56:21 +0000656 /// Base - The Base value for the PHI node that needs to be inserted for
657 /// this use. As the use is processed, information gets moved from this
658 /// field to the Imm field (below). BasedUser values are sorted by this
659 /// field.
660 SCEVHandle Base;
661
Nate Begeman16997482005-07-30 00:15:07 +0000662 /// Inst - The instruction using the induction variable.
663 Instruction *Inst;
664
Chris Lattnerec3fb632005-08-03 22:21:05 +0000665 /// OperandValToReplace - The operand value of Inst to replace with the
666 /// EmittedBase.
667 Value *OperandValToReplace;
Nate Begeman16997482005-07-30 00:15:07 +0000668
669 /// Imm - The immediate value that should be added to the base immediately
670 /// before Inst, because it will be folded into the imm field of the
Dan Gohman33e3a362009-02-20 20:29:04 +0000671 /// instruction. This is also sometimes used for loop-variant values that
672 /// must be added inside the loop.
Nate Begeman16997482005-07-30 00:15:07 +0000673 SCEVHandle Imm;
674
Dan Gohmanc17e0cf2009-02-20 04:17:46 +0000675 /// Phi - The induction variable that performs the striding that
676 /// should be used for this user.
677 Value *Phi;
678
679 /// IncV - The post-incremented value of Phi.
680 Value *IncV;
681
Chris Lattner010de252005-08-08 05:28:22 +0000682 // isUseOfPostIncrementedValue - True if this should use the
683 // post-incremented version of this IV, not the preincremented version.
684 // This can only be set in special cases, such as the terminating setcc
Chris Lattnerc6bae652005-09-12 06:04:47 +0000685 // instruction for a loop and uses outside the loop that are dominated by
686 // the loop.
Chris Lattner010de252005-08-08 05:28:22 +0000687 bool isUseOfPostIncrementedValue;
Chris Lattnera553b0c2005-08-08 22:56:21 +0000688
Dan Gohman246b2562007-10-22 18:31:58 +0000689 BasedUser(IVStrideUse &IVSU, ScalarEvolution *se)
690 : SE(se), Base(IVSU.Offset), Inst(IVSU.User),
Chris Lattnera553b0c2005-08-08 22:56:21 +0000691 OperandValToReplace(IVSU.OperandValToReplace),
Dale Johannesen308f24d2008-12-03 22:43:56 +0000692 Imm(SE->getIntegerSCEV(0, Base->getType())),
Chris Lattnera553b0c2005-08-08 22:56:21 +0000693 isUseOfPostIncrementedValue(IVSU.isUseOfPostIncrementedValue) {}
Nate Begeman16997482005-07-30 00:15:07 +0000694
Chris Lattner2114b272005-08-04 20:03:32 +0000695 // Once we rewrite the code to insert the new IVs we want, update the
696 // operands of Inst to use the new expression 'NewBase', with 'Imm' added
697 // to it.
Chris Lattner1bbae0c2005-08-09 00:18:09 +0000698 void RewriteInstructionToUseNewBase(const SCEVHandle &NewBase,
Dan Gohmanf20d70d2008-05-15 23:26:57 +0000699 Instruction *InsertPt,
Evan Cheng0e0014d2007-10-30 23:45:15 +0000700 SCEVExpander &Rewriter, Loop *L, Pass *P,
Chris Lattner09fb7da2008-12-01 06:27:41 +0000701 SmallVectorImpl<Instruction*> &DeadInsts);
Chris Lattner221fc3c2006-02-04 07:36:50 +0000702
703 Value *InsertCodeForBaseAtPosition(const SCEVHandle &NewBase,
704 SCEVExpander &Rewriter,
705 Instruction *IP, Loop *L);
Nate Begeman16997482005-07-30 00:15:07 +0000706 void dump() const;
707 };
708}
709
710void BasedUser::dump() const {
Bill Wendlinge8156192006-12-07 01:30:32 +0000711 cerr << " Base=" << *Base;
712 cerr << " Imm=" << *Imm;
Bill Wendlinge8156192006-12-07 01:30:32 +0000713 cerr << " Inst: " << *Inst;
Nate Begeman16997482005-07-30 00:15:07 +0000714}
715
Chris Lattner221fc3c2006-02-04 07:36:50 +0000716Value *BasedUser::InsertCodeForBaseAtPosition(const SCEVHandle &NewBase,
717 SCEVExpander &Rewriter,
718 Instruction *IP, Loop *L) {
719 // Figure out where we *really* want to insert this code. In particular, if
720 // the user is inside of a loop that is nested inside of L, we really don't
721 // want to insert this expression before the user, we'd rather pull it out as
722 // many loops as possible.
723 LoopInfo &LI = Rewriter.getLoopInfo();
724 Instruction *BaseInsertPt = IP;
725
726 // Figure out the most-nested loop that IP is in.
727 Loop *InsertLoop = LI.getLoopFor(IP->getParent());
728
729 // If InsertLoop is not L, and InsertLoop is nested inside of L, figure out
730 // the preheader of the outer-most loop where NewBase is not loop invariant.
Dale Johanneseneccdd082008-12-02 18:40:09 +0000731 if (L->contains(IP->getParent()))
732 while (InsertLoop && NewBase->isLoopInvariant(InsertLoop)) {
733 BaseInsertPt = InsertLoop->getLoopPreheader()->getTerminator();
734 InsertLoop = InsertLoop->getParentLoop();
735 }
Chris Lattner221fc3c2006-02-04 07:36:50 +0000736
Dan Gohman2f09f512009-02-19 19:23:27 +0000737 Value *Base = Rewriter.expandCodeFor(NewBase, BaseInsertPt);
738
Chris Lattner221fc3c2006-02-04 07:36:50 +0000739 // If there is no immediate value, skip the next part.
Dan Gohmancfeb6a42008-06-18 16:23:07 +0000740 if (Imm->isZero())
Dan Gohman2f09f512009-02-19 19:23:27 +0000741 return Base;
Chris Lattnerb47f6122007-06-06 01:23:55 +0000742
743 // If we are inserting the base and imm values in the same block, make sure to
744 // adjust the IP position if insertion reused a result.
745 if (IP == BaseInsertPt)
746 IP = Rewriter.getInsertionPoint();
Chris Lattner221fc3c2006-02-04 07:36:50 +0000747
748 // Always emit the immediate (if non-zero) into the same block as the user.
Dan Gohman246b2562007-10-22 18:31:58 +0000749 SCEVHandle NewValSCEV = SE->getAddExpr(SE->getUnknown(Base), Imm);
Dan Gohmand19534a2007-06-15 14:38:12 +0000750 return Rewriter.expandCodeFor(NewValSCEV, IP);
Chris Lattnerb47f6122007-06-06 01:23:55 +0000751
Chris Lattner221fc3c2006-02-04 07:36:50 +0000752}
753
754
Chris Lattner2114b272005-08-04 20:03:32 +0000755// Once we rewrite the code to insert the new IVs we want, update the
756// operands of Inst to use the new expression 'NewBase', with 'Imm' added
Dan Gohmanf20d70d2008-05-15 23:26:57 +0000757// to it. NewBasePt is the last instruction which contributes to the
758// value of NewBase in the case that it's a diffferent instruction from
759// the PHI that NewBase is computed from, or null otherwise.
760//
Chris Lattner1bbae0c2005-08-09 00:18:09 +0000761void BasedUser::RewriteInstructionToUseNewBase(const SCEVHandle &NewBase,
Dan Gohmanf20d70d2008-05-15 23:26:57 +0000762 Instruction *NewBasePt,
Evan Cheng0e0014d2007-10-30 23:45:15 +0000763 SCEVExpander &Rewriter, Loop *L, Pass *P,
Chris Lattner09fb7da2008-12-01 06:27:41 +0000764 SmallVectorImpl<Instruction*> &DeadInsts){
Chris Lattner2114b272005-08-04 20:03:32 +0000765 if (!isa<PHINode>(Inst)) {
Chris Lattnerc5494af2007-04-13 20:42:26 +0000766 // By default, insert code at the user instruction.
767 BasicBlock::iterator InsertPt = Inst;
768
769 // However, if the Operand is itself an instruction, the (potentially
770 // complex) inserted code may be shared by many users. Because of this, we
771 // want to emit code for the computation of the operand right before its old
772 // computation. This is usually safe, because we obviously used to use the
773 // computation when it was computed in its current block. However, in some
774 // cases (e.g. use of a post-incremented induction variable) the NewBase
775 // value will be pinned to live somewhere after the original computation.
776 // In this case, we have to back off.
Chris Lattnerf8828eb2008-12-02 04:52:26 +0000777 //
778 // If this is a use outside the loop (which means after, since it is based
779 // on a loop indvar) we use the post-incremented value, so that we don't
780 // artificially make the preinc value live out the bottom of the loop.
Dale Johannesen589bf082008-12-01 22:00:01 +0000781 if (!isUseOfPostIncrementedValue && L->contains(Inst->getParent())) {
Dan Gohmanca756ae2008-05-20 03:01:48 +0000782 if (NewBasePt && isa<PHINode>(OperandValToReplace)) {
Dan Gohmanf20d70d2008-05-15 23:26:57 +0000783 InsertPt = NewBasePt;
784 ++InsertPt;
Gabor Greif6725cb52008-06-11 21:38:51 +0000785 } else if (Instruction *OpInst
786 = dyn_cast<Instruction>(OperandValToReplace)) {
Chris Lattnerc5494af2007-04-13 20:42:26 +0000787 InsertPt = OpInst;
788 while (isa<PHINode>(InsertPt)) ++InsertPt;
789 }
790 }
Chris Lattnerc5494af2007-04-13 20:42:26 +0000791 Value *NewVal = InsertCodeForBaseAtPosition(NewBase, Rewriter, InsertPt, L);
Dan Gohmana9cfed72007-07-31 17:22:27 +0000792 // Adjust the type back to match the Inst. Note that we can't use InsertPt
793 // here because the SCEVExpander may have inserted the instructions after
794 // that point, in its efforts to avoid inserting redundant expressions.
Dan Gohmand19534a2007-06-15 14:38:12 +0000795 if (isa<PointerType>(OperandValToReplace->getType())) {
Dan Gohmana9cfed72007-07-31 17:22:27 +0000796 NewVal = SCEVExpander::InsertCastOfTo(Instruction::IntToPtr,
797 NewVal,
798 OperandValToReplace->getType());
Dan Gohmand19534a2007-06-15 14:38:12 +0000799 }
Chris Lattner2114b272005-08-04 20:03:32 +0000800 // Replace the use of the operand Value with the new Phi we just created.
801 Inst->replaceUsesOfWith(OperandValToReplace, NewVal);
Dan Gohman2f09f512009-02-19 19:23:27 +0000802
Dan Gohman2f09f512009-02-19 19:23:27 +0000803 DOUT << " Replacing with ";
Dan Gohman4a359ea2009-02-19 19:32:06 +0000804 DEBUG(WriteAsOperand(*DOUT, NewVal, /*PrintType=*/false));
Dan Gohman2f09f512009-02-19 19:23:27 +0000805 DOUT << ", which has value " << *NewBase << " plus IMM " << *Imm << "\n";
Chris Lattner2114b272005-08-04 20:03:32 +0000806 return;
807 }
Dan Gohman2f09f512009-02-19 19:23:27 +0000808
Chris Lattner2114b272005-08-04 20:03:32 +0000809 // PHI nodes are more complex. We have to insert one copy of the NewBase+Imm
Chris Lattnerc41e3452005-08-10 00:35:32 +0000810 // expression into each operand block that uses it. Note that PHI nodes can
811 // have multiple entries for the same predecessor. We use a map to make sure
812 // that a PHI node only has a single Value* for each predecessor (which also
813 // prevents us from inserting duplicate code in some blocks).
Evan Cheng83927722007-10-30 22:27:26 +0000814 DenseMap<BasicBlock*, Value*> InsertedCode;
Chris Lattner2114b272005-08-04 20:03:32 +0000815 PHINode *PN = cast<PHINode>(Inst);
816 for (unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i) {
817 if (PN->getIncomingValue(i) == OperandValToReplace) {
Dale Johannesen2f46bb82009-01-14 02:35:31 +0000818 // If the original expression is outside the loop, put the replacement
819 // code in the same place as the original expression,
820 // which need not be an immediate predecessor of this PHI. This way we
821 // need only one copy of it even if it is referenced multiple times in
822 // the PHI. We don't do this when the original expression is inside the
Dale Johannesen1de17d52009-02-09 22:14:15 +0000823 // loop because multiple copies sometimes do useful sinking of code in
824 // that case(?).
Dale Johannesen2f46bb82009-01-14 02:35:31 +0000825 Instruction *OldLoc = dyn_cast<Instruction>(OperandValToReplace);
826 if (L->contains(OldLoc->getParent())) {
Dale Johannesen1de17d52009-02-09 22:14:15 +0000827 // If this is a critical edge, split the edge so that we do not insert
828 // the code on all predecessor/successor paths. We do this unless this
829 // is the canonical backedge for this loop, as this can make some
830 // inserted code be in an illegal position.
Dale Johannesen2f46bb82009-01-14 02:35:31 +0000831 BasicBlock *PHIPred = PN->getIncomingBlock(i);
832 if (e != 1 && PHIPred->getTerminator()->getNumSuccessors() > 1 &&
833 (PN->getParent() != L->getHeader() || !L->contains(PHIPred))) {
Dale Johannesenf6727b02008-12-23 23:21:35 +0000834
Dale Johannesen2f46bb82009-01-14 02:35:31 +0000835 // First step, split the critical edge.
836 SplitCriticalEdge(PHIPred, PN->getParent(), P, false);
837
838 // Next step: move the basic block. In particular, if the PHI node
839 // is outside of the loop, and PredTI is in the loop, we want to
840 // move the block to be immediately before the PHI block, not
841 // immediately after PredTI.
842 if (L->contains(PHIPred) && !L->contains(PN->getParent())) {
843 BasicBlock *NewBB = PN->getIncomingBlock(i);
844 NewBB->moveBefore(PN->getParent());
845 }
846
847 // Splitting the edge can reduce the number of PHI entries we have.
848 e = PN->getNumIncomingValues();
849 }
850 }
Chris Lattnerc41e3452005-08-10 00:35:32 +0000851 Value *&Code = InsertedCode[PN->getIncomingBlock(i)];
852 if (!Code) {
853 // Insert the code into the end of the predecessor block.
Dale Johannesen2f46bb82009-01-14 02:35:31 +0000854 Instruction *InsertPt = (L->contains(OldLoc->getParent())) ?
855 PN->getIncomingBlock(i)->getTerminator() :
856 OldLoc->getParent()->getTerminator();
Chris Lattner221fc3c2006-02-04 07:36:50 +0000857 Code = InsertCodeForBaseAtPosition(NewBase, Rewriter, InsertPt, L);
Dan Gohmand19534a2007-06-15 14:38:12 +0000858
Chris Lattner684b22d2007-08-02 16:53:43 +0000859 // Adjust the type back to match the PHI. Note that we can't use
860 // InsertPt here because the SCEVExpander may have inserted its
861 // instructions after that point, in its efforts to avoid inserting
862 // redundant expressions.
Dan Gohmand19534a2007-06-15 14:38:12 +0000863 if (isa<PointerType>(PN->getType())) {
Dan Gohmana9cfed72007-07-31 17:22:27 +0000864 Code = SCEVExpander::InsertCastOfTo(Instruction::IntToPtr,
865 Code,
866 PN->getType());
Dan Gohmand19534a2007-06-15 14:38:12 +0000867 }
Dan Gohman2f09f512009-02-19 19:23:27 +0000868
Dan Gohman2f09f512009-02-19 19:23:27 +0000869 DOUT << " Changing PHI use to ";
Dan Gohman4a359ea2009-02-19 19:32:06 +0000870 DEBUG(WriteAsOperand(*DOUT, Code, /*PrintType=*/false));
Dan Gohman2f09f512009-02-19 19:23:27 +0000871 DOUT << ", which has value " << *NewBase << " plus IMM " << *Imm << "\n";
Chris Lattnerc41e3452005-08-10 00:35:32 +0000872 }
Dan Gohman2f09f512009-02-19 19:23:27 +0000873
Chris Lattner2114b272005-08-04 20:03:32 +0000874 // Replace the use of the operand Value with the new Phi we just created.
Chris Lattnerc41e3452005-08-10 00:35:32 +0000875 PN->setIncomingValue(i, Code);
Chris Lattner2114b272005-08-04 20:03:32 +0000876 Rewriter.clear();
877 }
878 }
Evan Cheng0e0014d2007-10-30 23:45:15 +0000879
880 // PHI node might have become a constant value after SplitCriticalEdge.
Chris Lattner09fb7da2008-12-01 06:27:41 +0000881 DeadInsts.push_back(Inst);
Chris Lattner2114b272005-08-04 20:03:32 +0000882}
883
884
Dale Johannesen203af582008-12-05 21:47:27 +0000885/// fitsInAddressMode - Return true if V can be subsumed within an addressing
886/// mode, and does not need to be put in a register first.
887static bool fitsInAddressMode(const SCEVHandle &V, const Type *UseTy,
888 const TargetLowering *TLI, bool HasBaseReg) {
Chris Lattner3821e472005-08-08 06:25:50 +0000889 if (SCEVConstant *SC = dyn_cast<SCEVConstant>(V)) {
Evan Cheng5eef2d22007-03-12 23:27:37 +0000890 int64_t VC = SC->getValue()->getSExtValue();
Chris Lattner579633c2007-04-09 22:20:14 +0000891 if (TLI) {
892 TargetLowering::AddrMode AM;
893 AM.BaseOffs = VC;
Dale Johannesen203af582008-12-05 21:47:27 +0000894 AM.HasBaseReg = HasBaseReg;
Chris Lattner579633c2007-04-09 22:20:14 +0000895 return TLI->isLegalAddressingMode(AM, UseTy);
896 } else {
Evan Chengd277f2c2006-03-13 23:14:23 +0000897 // Defaults to PPC. PPC allows a sign-extended 16-bit immediate field.
Evan Cheng5eef2d22007-03-12 23:27:37 +0000898 return (VC > -(1 << 16) && VC < (1 << 16)-1);
Chris Lattner579633c2007-04-09 22:20:14 +0000899 }
Chris Lattner3821e472005-08-08 06:25:50 +0000900 }
Jeff Cohend29b6aa2005-07-30 18:33:25 +0000901
Nate Begeman16997482005-07-30 00:15:07 +0000902 if (SCEVUnknown *SU = dyn_cast<SCEVUnknown>(V))
903 if (ConstantExpr *CE = dyn_cast<ConstantExpr>(SU->getValue()))
Chris Lattner579633c2007-04-09 22:20:14 +0000904 if (TLI && CE->getOpcode() == Instruction::PtrToInt) {
Evan Chengd277f2c2006-03-13 23:14:23 +0000905 Constant *Op0 = CE->getOperand(0);
Chris Lattner579633c2007-04-09 22:20:14 +0000906 if (GlobalValue *GV = dyn_cast<GlobalValue>(Op0)) {
907 TargetLowering::AddrMode AM;
908 AM.BaseGV = GV;
Dale Johannesen203af582008-12-05 21:47:27 +0000909 AM.HasBaseReg = HasBaseReg;
Chris Lattner579633c2007-04-09 22:20:14 +0000910 return TLI->isLegalAddressingMode(AM, UseTy);
911 }
Evan Chengd277f2c2006-03-13 23:14:23 +0000912 }
Nate Begeman16997482005-07-30 00:15:07 +0000913 return false;
914}
915
Dale Johannesen544e0d02008-12-03 20:56:12 +0000916/// MoveLoopVariantsToImmediateField - Move any subexpressions from Val that are
Chris Lattner44b807e2005-08-08 22:32:34 +0000917/// loop varying to the Imm operand.
Dale Johannesen544e0d02008-12-03 20:56:12 +0000918static void MoveLoopVariantsToImmediateField(SCEVHandle &Val, SCEVHandle &Imm,
Dan Gohman246b2562007-10-22 18:31:58 +0000919 Loop *L, ScalarEvolution *SE) {
Chris Lattner44b807e2005-08-08 22:32:34 +0000920 if (Val->isLoopInvariant(L)) return; // Nothing to do.
921
922 if (SCEVAddExpr *SAE = dyn_cast<SCEVAddExpr>(Val)) {
923 std::vector<SCEVHandle> NewOps;
924 NewOps.reserve(SAE->getNumOperands());
925
926 for (unsigned i = 0; i != SAE->getNumOperands(); ++i)
927 if (!SAE->getOperand(i)->isLoopInvariant(L)) {
928 // If this is a loop-variant expression, it must stay in the immediate
929 // field of the expression.
Dan Gohman246b2562007-10-22 18:31:58 +0000930 Imm = SE->getAddExpr(Imm, SAE->getOperand(i));
Chris Lattner44b807e2005-08-08 22:32:34 +0000931 } else {
932 NewOps.push_back(SAE->getOperand(i));
933 }
934
935 if (NewOps.empty())
Dan Gohman246b2562007-10-22 18:31:58 +0000936 Val = SE->getIntegerSCEV(0, Val->getType());
Chris Lattner44b807e2005-08-08 22:32:34 +0000937 else
Dan Gohman246b2562007-10-22 18:31:58 +0000938 Val = SE->getAddExpr(NewOps);
Chris Lattner44b807e2005-08-08 22:32:34 +0000939 } else if (SCEVAddRecExpr *SARE = dyn_cast<SCEVAddRecExpr>(Val)) {
940 // Try to pull immediates out of the start value of nested addrec's.
941 SCEVHandle Start = SARE->getStart();
Dale Johannesen544e0d02008-12-03 20:56:12 +0000942 MoveLoopVariantsToImmediateField(Start, Imm, L, SE);
Chris Lattner44b807e2005-08-08 22:32:34 +0000943
944 std::vector<SCEVHandle> Ops(SARE->op_begin(), SARE->op_end());
945 Ops[0] = Start;
Dan Gohman246b2562007-10-22 18:31:58 +0000946 Val = SE->getAddRecExpr(Ops, SARE->getLoop());
Chris Lattner44b807e2005-08-08 22:32:34 +0000947 } else {
948 // Otherwise, all of Val is variant, move the whole thing over.
Dan Gohman246b2562007-10-22 18:31:58 +0000949 Imm = SE->getAddExpr(Imm, Val);
950 Val = SE->getIntegerSCEV(0, Val->getType());
Chris Lattner44b807e2005-08-08 22:32:34 +0000951 }
952}
953
954
Chris Lattner26d91f12005-08-04 22:34:05 +0000955/// MoveImmediateValues - Look at Val, and pull out any additions of constants
Nate Begeman16997482005-07-30 00:15:07 +0000956/// that can fit into the immediate field of instructions in the target.
Chris Lattner26d91f12005-08-04 22:34:05 +0000957/// Accumulate these immediate values into the Imm value.
Evan Chengd277f2c2006-03-13 23:14:23 +0000958static void MoveImmediateValues(const TargetLowering *TLI,
Evan Chengd9fb7122009-02-21 02:06:47 +0000959 const Type *UseTy,
Evan Chengd277f2c2006-03-13 23:14:23 +0000960 SCEVHandle &Val, SCEVHandle &Imm,
Dan Gohman246b2562007-10-22 18:31:58 +0000961 bool isAddress, Loop *L,
962 ScalarEvolution *SE) {
Chris Lattner7a658392005-08-03 23:44:42 +0000963 if (SCEVAddExpr *SAE = dyn_cast<SCEVAddExpr>(Val)) {
Chris Lattner26d91f12005-08-04 22:34:05 +0000964 std::vector<SCEVHandle> NewOps;
965 NewOps.reserve(SAE->getNumOperands());
966
Chris Lattner221fc3c2006-02-04 07:36:50 +0000967 for (unsigned i = 0; i != SAE->getNumOperands(); ++i) {
968 SCEVHandle NewOp = SAE->getOperand(i);
Evan Chengd9fb7122009-02-21 02:06:47 +0000969 MoveImmediateValues(TLI, UseTy, NewOp, Imm, isAddress, L, SE);
Chris Lattner221fc3c2006-02-04 07:36:50 +0000970
971 if (!NewOp->isLoopInvariant(L)) {
Chris Lattner7db543f2005-08-04 19:08:16 +0000972 // If this is a loop-variant expression, it must stay in the immediate
973 // field of the expression.
Dan Gohman246b2562007-10-22 18:31:58 +0000974 Imm = SE->getAddExpr(Imm, NewOp);
Chris Lattner26d91f12005-08-04 22:34:05 +0000975 } else {
Chris Lattner221fc3c2006-02-04 07:36:50 +0000976 NewOps.push_back(NewOp);
Nate Begeman16997482005-07-30 00:15:07 +0000977 }
Chris Lattner221fc3c2006-02-04 07:36:50 +0000978 }
Chris Lattner26d91f12005-08-04 22:34:05 +0000979
980 if (NewOps.empty())
Dan Gohman246b2562007-10-22 18:31:58 +0000981 Val = SE->getIntegerSCEV(0, Val->getType());
Chris Lattner26d91f12005-08-04 22:34:05 +0000982 else
Dan Gohman246b2562007-10-22 18:31:58 +0000983 Val = SE->getAddExpr(NewOps);
Chris Lattner26d91f12005-08-04 22:34:05 +0000984 return;
Chris Lattner7a658392005-08-03 23:44:42 +0000985 } else if (SCEVAddRecExpr *SARE = dyn_cast<SCEVAddRecExpr>(Val)) {
986 // Try to pull immediates out of the start value of nested addrec's.
Chris Lattner26d91f12005-08-04 22:34:05 +0000987 SCEVHandle Start = SARE->getStart();
Evan Chengd9fb7122009-02-21 02:06:47 +0000988 MoveImmediateValues(TLI, UseTy, Start, Imm, isAddress, L, SE);
Chris Lattner26d91f12005-08-04 22:34:05 +0000989
990 if (Start != SARE->getStart()) {
991 std::vector<SCEVHandle> Ops(SARE->op_begin(), SARE->op_end());
992 Ops[0] = Start;
Dan Gohman246b2562007-10-22 18:31:58 +0000993 Val = SE->getAddRecExpr(Ops, SARE->getLoop());
Chris Lattner26d91f12005-08-04 22:34:05 +0000994 }
995 return;
Chris Lattner221fc3c2006-02-04 07:36:50 +0000996 } else if (SCEVMulExpr *SME = dyn_cast<SCEVMulExpr>(Val)) {
997 // Transform "8 * (4 + v)" -> "32 + 8*V" if "32" fits in the immed field.
Dale Johannesen203af582008-12-05 21:47:27 +0000998 if (isAddress && fitsInAddressMode(SME->getOperand(0), UseTy, TLI, false) &&
Chris Lattner221fc3c2006-02-04 07:36:50 +0000999 SME->getNumOperands() == 2 && SME->isLoopInvariant(L)) {
1000
Dan Gohman246b2562007-10-22 18:31:58 +00001001 SCEVHandle SubImm = SE->getIntegerSCEV(0, Val->getType());
Chris Lattner221fc3c2006-02-04 07:36:50 +00001002 SCEVHandle NewOp = SME->getOperand(1);
Evan Chengd9fb7122009-02-21 02:06:47 +00001003 MoveImmediateValues(TLI, UseTy, NewOp, SubImm, isAddress, L, SE);
Chris Lattner221fc3c2006-02-04 07:36:50 +00001004
1005 // If we extracted something out of the subexpressions, see if we can
1006 // simplify this!
1007 if (NewOp != SME->getOperand(1)) {
1008 // Scale SubImm up by "8". If the result is a target constant, we are
1009 // good.
Dan Gohman246b2562007-10-22 18:31:58 +00001010 SubImm = SE->getMulExpr(SubImm, SME->getOperand(0));
Dale Johannesen203af582008-12-05 21:47:27 +00001011 if (fitsInAddressMode(SubImm, UseTy, TLI, false)) {
Chris Lattner221fc3c2006-02-04 07:36:50 +00001012 // Accumulate the immediate.
Dan Gohman246b2562007-10-22 18:31:58 +00001013 Imm = SE->getAddExpr(Imm, SubImm);
Chris Lattner221fc3c2006-02-04 07:36:50 +00001014
1015 // Update what is left of 'Val'.
Dan Gohman246b2562007-10-22 18:31:58 +00001016 Val = SE->getMulExpr(SME->getOperand(0), NewOp);
Chris Lattner221fc3c2006-02-04 07:36:50 +00001017 return;
1018 }
1019 }
1020 }
Nate Begeman16997482005-07-30 00:15:07 +00001021 }
1022
Chris Lattner26d91f12005-08-04 22:34:05 +00001023 // Loop-variant expressions must stay in the immediate field of the
1024 // expression.
Dale Johannesen203af582008-12-05 21:47:27 +00001025 if ((isAddress && fitsInAddressMode(Val, UseTy, TLI, false)) ||
Chris Lattner26d91f12005-08-04 22:34:05 +00001026 !Val->isLoopInvariant(L)) {
Dan Gohman246b2562007-10-22 18:31:58 +00001027 Imm = SE->getAddExpr(Imm, Val);
1028 Val = SE->getIntegerSCEV(0, Val->getType());
Chris Lattner26d91f12005-08-04 22:34:05 +00001029 return;
Chris Lattner7a2ca562005-08-04 19:26:19 +00001030 }
Chris Lattner26d91f12005-08-04 22:34:05 +00001031
1032 // Otherwise, no immediates to move.
Nate Begeman16997482005-07-30 00:15:07 +00001033}
1034
Evan Chengd9fb7122009-02-21 02:06:47 +00001035static void MoveImmediateValues(const TargetLowering *TLI,
1036 Instruction *User,
1037 SCEVHandle &Val, SCEVHandle &Imm,
1038 bool isAddress, Loop *L,
1039 ScalarEvolution *SE) {
1040 const Type *UseTy = User->getType();
1041 if (StoreInst *SI = dyn_cast<StoreInst>(User))
1042 UseTy = SI->getOperand(0)->getType();
1043 MoveImmediateValues(TLI, UseTy, Val, Imm, isAddress, L, SE);
1044}
Chris Lattner934520a2005-08-13 07:27:18 +00001045
Chris Lattner7e79b382006-08-03 06:34:50 +00001046/// SeparateSubExprs - Decompose Expr into all of the subexpressions that are
1047/// added together. This is used to reassociate common addition subexprs
1048/// together for maximal sharing when rewriting bases.
Chris Lattner934520a2005-08-13 07:27:18 +00001049static void SeparateSubExprs(std::vector<SCEVHandle> &SubExprs,
Dan Gohman246b2562007-10-22 18:31:58 +00001050 SCEVHandle Expr,
1051 ScalarEvolution *SE) {
Chris Lattner934520a2005-08-13 07:27:18 +00001052 if (SCEVAddExpr *AE = dyn_cast<SCEVAddExpr>(Expr)) {
1053 for (unsigned j = 0, e = AE->getNumOperands(); j != e; ++j)
Dan Gohman246b2562007-10-22 18:31:58 +00001054 SeparateSubExprs(SubExprs, AE->getOperand(j), SE);
Chris Lattner934520a2005-08-13 07:27:18 +00001055 } else if (SCEVAddRecExpr *SARE = dyn_cast<SCEVAddRecExpr>(Expr)) {
Dan Gohman246b2562007-10-22 18:31:58 +00001056 SCEVHandle Zero = SE->getIntegerSCEV(0, Expr->getType());
Chris Lattner934520a2005-08-13 07:27:18 +00001057 if (SARE->getOperand(0) == Zero) {
1058 SubExprs.push_back(Expr);
1059 } else {
1060 // Compute the addrec with zero as its base.
1061 std::vector<SCEVHandle> Ops(SARE->op_begin(), SARE->op_end());
1062 Ops[0] = Zero; // Start with zero base.
Dan Gohman246b2562007-10-22 18:31:58 +00001063 SubExprs.push_back(SE->getAddRecExpr(Ops, SARE->getLoop()));
Chris Lattner934520a2005-08-13 07:27:18 +00001064
1065
Dan Gohman246b2562007-10-22 18:31:58 +00001066 SeparateSubExprs(SubExprs, SARE->getOperand(0), SE);
Chris Lattner934520a2005-08-13 07:27:18 +00001067 }
Dan Gohmancfeb6a42008-06-18 16:23:07 +00001068 } else if (!Expr->isZero()) {
Chris Lattner934520a2005-08-13 07:27:18 +00001069 // Do not add zero.
1070 SubExprs.push_back(Expr);
1071 }
1072}
1073
Dale Johannesen203af582008-12-05 21:47:27 +00001074// This is logically local to the following function, but C++ says we have
1075// to make it file scope.
1076struct SubExprUseData { unsigned Count; bool notAllUsesAreFree; };
Chris Lattner934520a2005-08-13 07:27:18 +00001077
Dale Johannesen203af582008-12-05 21:47:27 +00001078/// RemoveCommonExpressionsFromUseBases - Look through all of the Bases of all
1079/// the Uses, removing any common subexpressions, except that if all such
1080/// subexpressions can be folded into an addressing mode for all uses inside
1081/// the loop (this case is referred to as "free" in comments herein) we do
1082/// not remove anything. This looks for things like (a+b+c) and
Chris Lattnerf8828eb2008-12-02 04:52:26 +00001083/// (a+c+d) and computes the common (a+c) subexpression. The common expression
1084/// is *removed* from the Bases and returned.
Chris Lattner1bbae0c2005-08-09 00:18:09 +00001085static SCEVHandle
Dan Gohman246b2562007-10-22 18:31:58 +00001086RemoveCommonExpressionsFromUseBases(std::vector<BasedUser> &Uses,
Dale Johannesen203af582008-12-05 21:47:27 +00001087 ScalarEvolution *SE, Loop *L,
1088 const TargetLowering *TLI) {
Chris Lattner1bbae0c2005-08-09 00:18:09 +00001089 unsigned NumUses = Uses.size();
1090
Chris Lattnerf8828eb2008-12-02 04:52:26 +00001091 // Only one use? This is a very common case, so we handle it specially and
1092 // cheaply.
Dan Gohman246b2562007-10-22 18:31:58 +00001093 SCEVHandle Zero = SE->getIntegerSCEV(0, Uses[0].Base->getType());
Chris Lattner1bbae0c2005-08-09 00:18:09 +00001094 SCEVHandle Result = Zero;
Dale Johannesen203af582008-12-05 21:47:27 +00001095 SCEVHandle FreeResult = Zero;
Chris Lattner1bbae0c2005-08-09 00:18:09 +00001096 if (NumUses == 1) {
Chris Lattnerf8828eb2008-12-02 04:52:26 +00001097 // If the use is inside the loop, use its base, regardless of what it is:
1098 // it is clearly shared across all the IV's. If the use is outside the loop
1099 // (which means after it) we don't want to factor anything *into* the loop,
1100 // so just use 0 as the base.
Dale Johannesen589bf082008-12-01 22:00:01 +00001101 if (L->contains(Uses[0].Inst->getParent()))
1102 std::swap(Result, Uses[0].Base);
Chris Lattner1bbae0c2005-08-09 00:18:09 +00001103 return Result;
1104 }
1105
1106 // To find common subexpressions, count how many of Uses use each expression.
1107 // If any subexpressions are used Uses.size() times, they are common.
Dale Johannesen203af582008-12-05 21:47:27 +00001108 // Also track whether all uses of each expression can be moved into an
1109 // an addressing mode "for free"; such expressions are left within the loop.
1110 // struct SubExprUseData { unsigned Count; bool notAllUsesAreFree; };
1111 std::map<SCEVHandle, SubExprUseData> SubExpressionUseData;
Chris Lattner1bbae0c2005-08-09 00:18:09 +00001112
Chris Lattnerd6155e92005-10-11 18:41:04 +00001113 // UniqueSubExprs - Keep track of all of the subexpressions we see in the
1114 // order we see them.
1115 std::vector<SCEVHandle> UniqueSubExprs;
1116
Chris Lattner934520a2005-08-13 07:27:18 +00001117 std::vector<SCEVHandle> SubExprs;
Chris Lattnerf8828eb2008-12-02 04:52:26 +00001118 unsigned NumUsesInsideLoop = 0;
Chris Lattner934520a2005-08-13 07:27:18 +00001119 for (unsigned i = 0; i != NumUses; ++i) {
Chris Lattnerf8828eb2008-12-02 04:52:26 +00001120 // If the user is outside the loop, just ignore it for base computation.
1121 // Since the user is outside the loop, it must be *after* the loop (if it
1122 // were before, it could not be based on the loop IV). We don't want users
1123 // after the loop to affect base computation of values *inside* the loop,
1124 // because we can always add their offsets to the result IV after the loop
1125 // is done, ensuring we get good code inside the loop.
Dale Johannesen589bf082008-12-01 22:00:01 +00001126 if (!L->contains(Uses[i].Inst->getParent()))
1127 continue;
1128 NumUsesInsideLoop++;
1129
Chris Lattner934520a2005-08-13 07:27:18 +00001130 // If the base is zero (which is common), return zero now, there are no
1131 // CSEs we can find.
1132 if (Uses[i].Base == Zero) return Zero;
1133
Dale Johannesen203af582008-12-05 21:47:27 +00001134 // If this use is as an address we may be able to put CSEs in the addressing
1135 // mode rather than hoisting them.
1136 bool isAddrUse = isAddressUse(Uses[i].Inst, Uses[i].OperandValToReplace);
1137 // We may need the UseTy below, but only when isAddrUse, so compute it
1138 // only in that case.
1139 const Type *UseTy = 0;
1140 if (isAddrUse) {
1141 UseTy = Uses[i].Inst->getType();
1142 if (StoreInst *SI = dyn_cast<StoreInst>(Uses[i].Inst))
1143 UseTy = SI->getOperand(0)->getType();
1144 }
1145
Chris Lattner934520a2005-08-13 07:27:18 +00001146 // Split the expression into subexprs.
Dan Gohman246b2562007-10-22 18:31:58 +00001147 SeparateSubExprs(SubExprs, Uses[i].Base, SE);
Dale Johannesen203af582008-12-05 21:47:27 +00001148 // Add one to SubExpressionUseData.Count for each subexpr present, and
1149 // if the subexpr is not a valid immediate within an addressing mode use,
1150 // set SubExpressionUseData.notAllUsesAreFree. We definitely want to
1151 // hoist these out of the loop (if they are common to all uses).
1152 for (unsigned j = 0, e = SubExprs.size(); j != e; ++j) {
1153 if (++SubExpressionUseData[SubExprs[j]].Count == 1)
Chris Lattnerd6155e92005-10-11 18:41:04 +00001154 UniqueSubExprs.push_back(SubExprs[j]);
Dale Johannesen203af582008-12-05 21:47:27 +00001155 if (!isAddrUse || !fitsInAddressMode(SubExprs[j], UseTy, TLI, false))
1156 SubExpressionUseData[SubExprs[j]].notAllUsesAreFree = true;
1157 }
Chris Lattner934520a2005-08-13 07:27:18 +00001158 SubExprs.clear();
1159 }
1160
Chris Lattnerd6155e92005-10-11 18:41:04 +00001161 // Now that we know how many times each is used, build Result. Iterate over
1162 // UniqueSubexprs so that we have a stable ordering.
1163 for (unsigned i = 0, e = UniqueSubExprs.size(); i != e; ++i) {
Dale Johannesen203af582008-12-05 21:47:27 +00001164 std::map<SCEVHandle, SubExprUseData>::iterator I =
1165 SubExpressionUseData.find(UniqueSubExprs[i]);
1166 assert(I != SubExpressionUseData.end() && "Entry not found?");
1167 if (I->second.Count == NumUsesInsideLoop) { // Found CSE!
1168 if (I->second.notAllUsesAreFree)
1169 Result = SE->getAddExpr(Result, I->first);
1170 else
1171 FreeResult = SE->getAddExpr(FreeResult, I->first);
1172 } else
1173 // Remove non-cse's from SubExpressionUseData.
1174 SubExpressionUseData.erase(I);
Chris Lattnerd6155e92005-10-11 18:41:04 +00001175 }
Dale Johannesen203af582008-12-05 21:47:27 +00001176
1177 if (FreeResult != Zero) {
1178 // We have some subexpressions that can be subsumed into addressing
1179 // modes in every use inside the loop. However, it's possible that
1180 // there are so many of them that the combined FreeResult cannot
1181 // be subsumed, or that the target cannot handle both a FreeResult
1182 // and a Result in the same instruction (for example because it would
1183 // require too many registers). Check this.
1184 for (unsigned i=0; i<NumUses; ++i) {
1185 if (!L->contains(Uses[i].Inst->getParent()))
1186 continue;
1187 // We know this is an addressing mode use; if there are any uses that
1188 // are not, FreeResult would be Zero.
1189 const Type *UseTy = Uses[i].Inst->getType();
1190 if (StoreInst *SI = dyn_cast<StoreInst>(Uses[i].Inst))
1191 UseTy = SI->getOperand(0)->getType();
1192 if (!fitsInAddressMode(FreeResult, UseTy, TLI, Result!=Zero)) {
1193 // FIXME: could split up FreeResult into pieces here, some hoisted
Dale Johannesenb0390622008-12-16 22:16:28 +00001194 // and some not. There is no obvious advantage to this.
Dale Johannesen203af582008-12-05 21:47:27 +00001195 Result = SE->getAddExpr(Result, FreeResult);
1196 FreeResult = Zero;
1197 break;
1198 }
1199 }
1200 }
1201
Chris Lattner1bbae0c2005-08-09 00:18:09 +00001202 // If we found no CSE's, return now.
1203 if (Result == Zero) return Result;
1204
Dale Johannesen203af582008-12-05 21:47:27 +00001205 // If we still have a FreeResult, remove its subexpressions from
1206 // SubExpressionUseData. This means they will remain in the use Bases.
1207 if (FreeResult != Zero) {
1208 SeparateSubExprs(SubExprs, FreeResult, SE);
1209 for (unsigned j = 0, e = SubExprs.size(); j != e; ++j) {
1210 std::map<SCEVHandle, SubExprUseData>::iterator I =
1211 SubExpressionUseData.find(SubExprs[j]);
1212 SubExpressionUseData.erase(I);
1213 }
1214 SubExprs.clear();
1215 }
1216
Chris Lattner1bbae0c2005-08-09 00:18:09 +00001217 // Otherwise, remove all of the CSE's we found from each of the base values.
Chris Lattner934520a2005-08-13 07:27:18 +00001218 for (unsigned i = 0; i != NumUses; ++i) {
Dale Johannesenfb10cd42008-12-02 21:17:11 +00001219 // Uses outside the loop don't necessarily include the common base, but
1220 // the final IV value coming into those uses does. Instead of trying to
1221 // remove the pieces of the common base, which might not be there,
1222 // subtract off the base to compensate for this.
1223 if (!L->contains(Uses[i].Inst->getParent())) {
1224 Uses[i].Base = SE->getMinusSCEV(Uses[i].Base, Result);
Dale Johannesen589bf082008-12-01 22:00:01 +00001225 continue;
Dale Johannesenfb10cd42008-12-02 21:17:11 +00001226 }
Dale Johannesen589bf082008-12-01 22:00:01 +00001227
Chris Lattner934520a2005-08-13 07:27:18 +00001228 // Split the expression into subexprs.
Dan Gohman246b2562007-10-22 18:31:58 +00001229 SeparateSubExprs(SubExprs, Uses[i].Base, SE);
Chris Lattner934520a2005-08-13 07:27:18 +00001230
1231 // Remove any common subexpressions.
1232 for (unsigned j = 0, e = SubExprs.size(); j != e; ++j)
Dale Johannesen203af582008-12-05 21:47:27 +00001233 if (SubExpressionUseData.count(SubExprs[j])) {
Chris Lattner934520a2005-08-13 07:27:18 +00001234 SubExprs.erase(SubExprs.begin()+j);
1235 --j; --e;
1236 }
1237
Chris Lattnerf8828eb2008-12-02 04:52:26 +00001238 // Finally, add the non-shared expressions together.
Chris Lattner934520a2005-08-13 07:27:18 +00001239 if (SubExprs.empty())
Chris Lattner1bbae0c2005-08-09 00:18:09 +00001240 Uses[i].Base = Zero;
Chris Lattner934520a2005-08-13 07:27:18 +00001241 else
Dan Gohman246b2562007-10-22 18:31:58 +00001242 Uses[i].Base = SE->getAddExpr(SubExprs);
Chris Lattner27e51422005-08-13 07:42:01 +00001243 SubExprs.clear();
Chris Lattner934520a2005-08-13 07:27:18 +00001244 }
Chris Lattner1bbae0c2005-08-09 00:18:09 +00001245
1246 return Result;
1247}
1248
Dale Johannesendc42f482007-03-20 00:47:50 +00001249/// ValidStride - Check whether the given Scale is valid for all loads and
Chris Lattner579633c2007-04-09 22:20:14 +00001250/// stores in UsersToProcess.
Dale Johannesendc42f482007-03-20 00:47:50 +00001251///
Dan Gohman02e4fa72007-10-22 20:40:42 +00001252bool LoopStrengthReduce::ValidStride(bool HasBaseReg,
1253 int64_t Scale,
Dale Johannesendc42f482007-03-20 00:47:50 +00001254 const std::vector<BasedUser>& UsersToProcess) {
Evan Chengd6b62a52007-12-19 23:33:23 +00001255 if (!TLI)
1256 return true;
1257
Dale Johannesen8e59e162007-03-20 21:54:54 +00001258 for (unsigned i=0, e = UsersToProcess.size(); i!=e; ++i) {
Chris Lattner1ebd89e2007-04-02 06:34:44 +00001259 // If this is a load or other access, pass the type of the access in.
1260 const Type *AccessTy = Type::VoidTy;
1261 if (StoreInst *SI = dyn_cast<StoreInst>(UsersToProcess[i].Inst))
1262 AccessTy = SI->getOperand(0)->getType();
1263 else if (LoadInst *LI = dyn_cast<LoadInst>(UsersToProcess[i].Inst))
1264 AccessTy = LI->getType();
Evan Cheng55e641b2008-03-19 22:02:26 +00001265 else if (isa<PHINode>(UsersToProcess[i].Inst))
1266 continue;
Chris Lattner1ebd89e2007-04-02 06:34:44 +00001267
Chris Lattner579633c2007-04-09 22:20:14 +00001268 TargetLowering::AddrMode AM;
1269 if (SCEVConstant *SC = dyn_cast<SCEVConstant>(UsersToProcess[i].Imm))
1270 AM.BaseOffs = SC->getValue()->getSExtValue();
Dan Gohmancfeb6a42008-06-18 16:23:07 +00001271 AM.HasBaseReg = HasBaseReg || !UsersToProcess[i].Base->isZero();
Chris Lattner579633c2007-04-09 22:20:14 +00001272 AM.Scale = Scale;
1273
1274 // If load[imm+r*scale] is illegal, bail out.
Evan Chengd6b62a52007-12-19 23:33:23 +00001275 if (!TLI->isLegalAddressingMode(AM, AccessTy))
Dale Johannesendc42f482007-03-20 00:47:50 +00001276 return false;
Dale Johannesen8e59e162007-03-20 21:54:54 +00001277 }
Dale Johannesendc42f482007-03-20 00:47:50 +00001278 return true;
1279}
Chris Lattner1bbae0c2005-08-09 00:18:09 +00001280
Dale Johannesen1de17d52009-02-09 22:14:15 +00001281/// RequiresTypeConversion - Returns true if converting Ty1 to Ty2 is not
Evan Cheng5f8ebaa2007-10-25 22:45:20 +00001282/// a nop.
Evan Cheng2bd122c2007-10-26 01:56:11 +00001283bool LoopStrengthReduce::RequiresTypeConversion(const Type *Ty1,
1284 const Type *Ty2) {
1285 if (Ty1 == Ty2)
Evan Cheng5f8ebaa2007-10-25 22:45:20 +00001286 return false;
Dale Johannesen1de17d52009-02-09 22:14:15 +00001287 if (Ty1->canLosslesslyBitCastTo(Ty2))
1288 return false;
Evan Cheng2bd122c2007-10-26 01:56:11 +00001289 if (TLI && TLI->isTruncateFree(Ty1, Ty2))
1290 return false;
Dale Johannesen1de17d52009-02-09 22:14:15 +00001291 if (isa<PointerType>(Ty2) && Ty1->canLosslesslyBitCastTo(UIntPtrTy))
1292 return false;
1293 if (isa<PointerType>(Ty1) && Ty2->canLosslesslyBitCastTo(UIntPtrTy))
1294 return false;
1295 return true;
Evan Cheng5f8ebaa2007-10-25 22:45:20 +00001296}
1297
Evan Chengeb8f9e22006-03-17 19:52:23 +00001298/// CheckForIVReuse - Returns the multiple if the stride is the multiple
1299/// of a previous stride and it is a legal value for the target addressing
Dan Gohman02e4fa72007-10-22 20:40:42 +00001300/// mode scale component and optional base reg. This allows the users of
1301/// this stride to be rewritten as prev iv * factor. It returns 0 if no
Dale Johannesenb0390622008-12-16 22:16:28 +00001302/// reuse is possible. Factors can be negative on same targets, e.g. ARM.
Dale Johannesen2f46bb82009-01-14 02:35:31 +00001303///
1304/// If all uses are outside the loop, we don't require that all multiplies
1305/// be folded into the addressing mode, nor even that the factor be constant;
1306/// a multiply (executed once) outside the loop is better than another IV
1307/// within. Well, usually.
1308SCEVHandle LoopStrengthReduce::CheckForIVReuse(bool HasBaseReg,
Evan Cheng2bd122c2007-10-26 01:56:11 +00001309 bool AllUsesAreAddresses,
Dale Johannesenb0390622008-12-16 22:16:28 +00001310 bool AllUsesAreOutsideLoop,
Dan Gohman02e4fa72007-10-22 20:40:42 +00001311 const SCEVHandle &Stride,
Dale Johannesendc42f482007-03-20 00:47:50 +00001312 IVExpr &IV, const Type *Ty,
1313 const std::vector<BasedUser>& UsersToProcess) {
Evan Chengeb8f9e22006-03-17 19:52:23 +00001314 if (SCEVConstant *SC = dyn_cast<SCEVConstant>(Stride)) {
Reid Spencer502db932007-03-02 23:37:53 +00001315 int64_t SInt = SC->getValue()->getSExtValue();
Dale Johannesenb51b4b52007-11-17 02:48:01 +00001316 for (unsigned NewStride = 0, e = StrideOrder.size(); NewStride != e;
1317 ++NewStride) {
1318 std::map<SCEVHandle, IVsOfOneStride>::iterator SI =
1319 IVsByStride.find(StrideOrder[NewStride]);
Dale Johannesen2f46bb82009-01-14 02:35:31 +00001320 if (SI == IVsByStride.end() || !isa<SCEVConstant>(SI->first))
Dale Johannesenb51b4b52007-11-17 02:48:01 +00001321 continue;
Evan Cheng5eef2d22007-03-12 23:27:37 +00001322 int64_t SSInt = cast<SCEVConstant>(SI->first)->getValue()->getSExtValue();
Evan Cheng2bd122c2007-10-26 01:56:11 +00001323 if (SI->first != Stride &&
Chris Lattner1d312902007-04-02 22:51:58 +00001324 (unsigned(abs(SInt)) < SSInt || (SInt % SSInt) != 0))
Evan Chengeb8f9e22006-03-17 19:52:23 +00001325 continue;
Evan Cheng5eef2d22007-03-12 23:27:37 +00001326 int64_t Scale = SInt / SSInt;
Dale Johannesendc42f482007-03-20 00:47:50 +00001327 // Check that this stride is valid for all the types used for loads and
1328 // stores; if it can be used for some and not others, we might as well use
1329 // the original stride everywhere, since we have to create the IV for it
Dan Gohmanaa343312007-10-29 19:23:53 +00001330 // anyway. If the scale is 1, then we don't need to worry about folding
1331 // multiplications.
1332 if (Scale == 1 ||
1333 (AllUsesAreAddresses &&
1334 ValidStride(HasBaseReg, Scale, UsersToProcess)))
Evan Cheng5eef2d22007-03-12 23:27:37 +00001335 for (std::vector<IVExpr>::iterator II = SI->second.IVs.begin(),
1336 IE = SI->second.IVs.end(); II != IE; ++II)
1337 // FIXME: Only handle base == 0 for now.
1338 // Only reuse previous IV if it would not require a type conversion.
Dan Gohmancfeb6a42008-06-18 16:23:07 +00001339 if (II->Base->isZero() &&
Evan Cheng2bd122c2007-10-26 01:56:11 +00001340 !RequiresTypeConversion(II->Base->getType(), Ty)) {
Evan Cheng5eef2d22007-03-12 23:27:37 +00001341 IV = *II;
Dale Johannesen2f46bb82009-01-14 02:35:31 +00001342 return SE->getIntegerSCEV(Scale, Stride->getType());
Evan Cheng5eef2d22007-03-12 23:27:37 +00001343 }
Evan Chengeb8f9e22006-03-17 19:52:23 +00001344 }
Dale Johannesen2f46bb82009-01-14 02:35:31 +00001345 } else if (AllUsesAreOutsideLoop) {
1346 // Accept nonconstant strides here; it is really really right to substitute
1347 // an existing IV if we can.
1348 for (unsigned NewStride = 0, e = StrideOrder.size(); NewStride != e;
1349 ++NewStride) {
1350 std::map<SCEVHandle, IVsOfOneStride>::iterator SI =
1351 IVsByStride.find(StrideOrder[NewStride]);
1352 if (SI == IVsByStride.end() || !isa<SCEVConstant>(SI->first))
1353 continue;
1354 int64_t SSInt = cast<SCEVConstant>(SI->first)->getValue()->getSExtValue();
1355 if (SI->first != Stride && SSInt != 1)
1356 continue;
1357 for (std::vector<IVExpr>::iterator II = SI->second.IVs.begin(),
1358 IE = SI->second.IVs.end(); II != IE; ++II)
1359 // Accept nonzero base here.
1360 // Only reuse previous IV if it would not require a type conversion.
1361 if (!RequiresTypeConversion(II->Base->getType(), Ty)) {
1362 IV = *II;
1363 return Stride;
1364 }
1365 }
1366 // Special case, old IV is -1*x and this one is x. Can treat this one as
1367 // -1*old.
1368 for (unsigned NewStride = 0, e = StrideOrder.size(); NewStride != e;
1369 ++NewStride) {
1370 std::map<SCEVHandle, IVsOfOneStride>::iterator SI =
1371 IVsByStride.find(StrideOrder[NewStride]);
1372 if (SI == IVsByStride.end())
1373 continue;
1374 if (SCEVMulExpr *ME = dyn_cast<SCEVMulExpr>(SI->first))
1375 if (SCEVConstant *SC = dyn_cast<SCEVConstant>(ME->getOperand(0)))
1376 if (Stride == ME->getOperand(1) &&
1377 SC->getValue()->getSExtValue() == -1LL)
1378 for (std::vector<IVExpr>::iterator II = SI->second.IVs.begin(),
1379 IE = SI->second.IVs.end(); II != IE; ++II)
1380 // Accept nonzero base here.
1381 // Only reuse previous IV if it would not require type conversion.
1382 if (!RequiresTypeConversion(II->Base->getType(), Ty)) {
1383 IV = *II;
1384 return SE->getIntegerSCEV(-1LL, Stride->getType());
1385 }
1386 }
Evan Chengeb8f9e22006-03-17 19:52:23 +00001387 }
Dale Johannesen2f46bb82009-01-14 02:35:31 +00001388 return SE->getIntegerSCEV(0, Stride->getType());
Evan Chengeb8f9e22006-03-17 19:52:23 +00001389}
1390
Chris Lattner7e79b382006-08-03 06:34:50 +00001391/// PartitionByIsUseOfPostIncrementedValue - Simple boolean predicate that
1392/// returns true if Val's isUseOfPostIncrementedValue is true.
1393static bool PartitionByIsUseOfPostIncrementedValue(const BasedUser &Val) {
1394 return Val.isUseOfPostIncrementedValue;
1395}
Evan Chengeb8f9e22006-03-17 19:52:23 +00001396
Dan Gohman4a9a3e52008-04-14 18:26:16 +00001397/// isNonConstantNegative - Return true if the specified scev is negated, but
Chris Lattnerfb3e1192007-05-19 01:22:21 +00001398/// not a constant.
1399static bool isNonConstantNegative(const SCEVHandle &Expr) {
1400 SCEVMulExpr *Mul = dyn_cast<SCEVMulExpr>(Expr);
1401 if (!Mul) return false;
1402
1403 // If there is a constant factor, it will be first.
1404 SCEVConstant *SC = dyn_cast<SCEVConstant>(Mul->getOperand(0));
1405 if (!SC) return false;
1406
1407 // Return true if the value is negative, this matches things like (-42 * V).
1408 return SC->getValue()->getValue().isNegative();
1409}
1410
Evan Cheng5f8ebaa2007-10-25 22:45:20 +00001411// CollectIVUsers - Transform our list of users and offsets to a bit more
Dan Gohman73b43b92008-06-23 22:11:52 +00001412// complex table. In this new vector, each 'BasedUser' contains 'Base', the base
1413// of the strided accesses, as well as the old information from Uses. We
Evan Cheng5f8ebaa2007-10-25 22:45:20 +00001414// progressively move information from the Base field to the Imm field, until
1415// we eventually have the full access expression to rewrite the use.
1416SCEVHandle LoopStrengthReduce::CollectIVUsers(const SCEVHandle &Stride,
1417 IVUsersOfOneStride &Uses,
1418 Loop *L,
1419 bool &AllUsesAreAddresses,
Dale Johannesenb0390622008-12-16 22:16:28 +00001420 bool &AllUsesAreOutsideLoop,
Evan Cheng5f8ebaa2007-10-25 22:45:20 +00001421 std::vector<BasedUser> &UsersToProcess) {
Nate Begeman16997482005-07-30 00:15:07 +00001422 UsersToProcess.reserve(Uses.Users.size());
Chris Lattnera553b0c2005-08-08 22:56:21 +00001423 for (unsigned i = 0, e = Uses.Users.size(); i != e; ++i) {
Dan Gohman246b2562007-10-22 18:31:58 +00001424 UsersToProcess.push_back(BasedUser(Uses.Users[i], SE));
Chris Lattnera553b0c2005-08-08 22:56:21 +00001425
Dale Johannesen67c79892008-12-03 19:25:46 +00001426 // Move any loop variant operands from the offset field to the immediate
Chris Lattnera553b0c2005-08-08 22:56:21 +00001427 // field of the use, so that we don't try to use something before it is
1428 // computed.
Dale Johannesen544e0d02008-12-03 20:56:12 +00001429 MoveLoopVariantsToImmediateField(UsersToProcess.back().Base,
Dan Gohman246b2562007-10-22 18:31:58 +00001430 UsersToProcess.back().Imm, L, SE);
Chris Lattnera553b0c2005-08-08 22:56:21 +00001431 assert(UsersToProcess.back().Base->isLoopInvariant(L) &&
Chris Lattner26d91f12005-08-04 22:34:05 +00001432 "Base value is not loop invariant!");
Nate Begeman16997482005-07-30 00:15:07 +00001433 }
Evan Chengeb8f9e22006-03-17 19:52:23 +00001434
Chris Lattner1bbae0c2005-08-09 00:18:09 +00001435 // We now have a whole bunch of uses of like-strided induction variables, but
1436 // they might all have different bases. We want to emit one PHI node for this
1437 // stride which we fold as many common expressions (between the IVs) into as
1438 // possible. Start by identifying the common expressions in the base values
1439 // for the strides (e.g. if we have "A+C+B" and "A+B+D" as our bases, find
1440 // "A+B"), emit it to the preheader, then remove the expression from the
1441 // UsersToProcess base values.
Evan Chengd1d6b5c2006-03-16 21:53:05 +00001442 SCEVHandle CommonExprs =
Dale Johannesen203af582008-12-05 21:47:27 +00001443 RemoveCommonExpressionsFromUseBases(UsersToProcess, SE, L, TLI);
Dan Gohman02e4fa72007-10-22 20:40:42 +00001444
Chris Lattner44b807e2005-08-08 22:32:34 +00001445 // Next, figure out what we can represent in the immediate fields of
1446 // instructions. If we can represent anything there, move it to the imm
Chris Lattner1bbae0c2005-08-09 00:18:09 +00001447 // fields of the BasedUsers. We do this so that it increases the commonality
1448 // of the remaining uses.
Evan Cheng32e4c7c2007-12-20 02:20:53 +00001449 unsigned NumPHI = 0;
Evan Chengd33cec12009-02-20 22:16:49 +00001450 bool HasAddress = false;
Chris Lattner44b807e2005-08-08 22:32:34 +00001451 for (unsigned i = 0, e = UsersToProcess.size(); i != e; ++i) {
Chris Lattner80b32b32005-08-16 00:38:11 +00001452 // If the user is not in the current loop, this means it is using the exit
1453 // value of the IV. Do not put anything in the base, make sure it's all in
1454 // the immediate field to allow as much factoring as possible.
1455 if (!L->contains(UsersToProcess[i].Inst->getParent())) {
Dan Gohman246b2562007-10-22 18:31:58 +00001456 UsersToProcess[i].Imm = SE->getAddExpr(UsersToProcess[i].Imm,
1457 UsersToProcess[i].Base);
Chris Lattner8385e512005-08-17 21:22:41 +00001458 UsersToProcess[i].Base =
Dan Gohman246b2562007-10-22 18:31:58 +00001459 SE->getIntegerSCEV(0, UsersToProcess[i].Base->getType());
Chris Lattner80b32b32005-08-16 00:38:11 +00001460 } else {
Evan Chengd9fb7122009-02-21 02:06:47 +00001461 // Not all uses are outside the loop.
1462 AllUsesAreOutsideLoop = false;
1463
Chris Lattner80b32b32005-08-16 00:38:11 +00001464 // Addressing modes can be folded into loads and stores. Be careful that
1465 // the store is through the expression, not of the expression though.
Evan Cheng32e4c7c2007-12-20 02:20:53 +00001466 bool isPHI = false;
Evan Chengd6b62a52007-12-19 23:33:23 +00001467 bool isAddress = isAddressUse(UsersToProcess[i].Inst,
1468 UsersToProcess[i].OperandValToReplace);
1469 if (isa<PHINode>(UsersToProcess[i].Inst)) {
Evan Cheng32e4c7c2007-12-20 02:20:53 +00001470 isPHI = true;
1471 ++NumPHI;
Dan Gohman2acc7602007-05-03 23:20:33 +00001472 }
Dan Gohman02e4fa72007-10-22 20:40:42 +00001473
Evan Chengd33cec12009-02-20 22:16:49 +00001474 if (isAddress)
1475 HasAddress = true;
Dale Johannesenb0390622008-12-16 22:16:28 +00001476
Dan Gohman02e4fa72007-10-22 20:40:42 +00001477 // If this use isn't an address, then not all uses are addresses.
Evan Cheng55e641b2008-03-19 22:02:26 +00001478 if (!isAddress && !isPHI)
Dan Gohman02e4fa72007-10-22 20:40:42 +00001479 AllUsesAreAddresses = false;
Chris Lattner80b32b32005-08-16 00:38:11 +00001480
Evan Cheng1d958162007-03-13 20:34:37 +00001481 MoveImmediateValues(TLI, UsersToProcess[i].Inst, UsersToProcess[i].Base,
Dan Gohman246b2562007-10-22 18:31:58 +00001482 UsersToProcess[i].Imm, isAddress, L, SE);
Chris Lattner80b32b32005-08-16 00:38:11 +00001483 }
Chris Lattner44b807e2005-08-08 22:32:34 +00001484 }
Evan Chengd1d6b5c2006-03-16 21:53:05 +00001485
Evan Chengd9fb7122009-02-21 02:06:47 +00001486 // If one of the use is a PHI node and all other uses are addresses, still
Evan Cheng32e4c7c2007-12-20 02:20:53 +00001487 // allow iv reuse. Essentially we are trading one constant multiplication
1488 // for one fewer iv.
1489 if (NumPHI > 1)
1490 AllUsesAreAddresses = false;
Evan Chengd9fb7122009-02-21 02:06:47 +00001491
Evan Chengd33cec12009-02-20 22:16:49 +00001492 // There are no in-loop address uses.
1493 if (AllUsesAreAddresses && (!HasAddress && !AllUsesAreOutsideLoop))
1494 AllUsesAreAddresses = false;
1495
Evan Cheng5f8ebaa2007-10-25 22:45:20 +00001496 return CommonExprs;
1497}
1498
Dan Gohmanc17e0cf2009-02-20 04:17:46 +00001499/// ShouldUseFullStrengthReductionMode - Test whether full strength-reduction
1500/// is valid and profitable for the given set of users of a stride. In
1501/// full strength-reduction mode, all addresses at the current stride are
1502/// strength-reduced all the way down to pointer arithmetic.
1503///
1504bool LoopStrengthReduce::ShouldUseFullStrengthReductionMode(
1505 const std::vector<BasedUser> &UsersToProcess,
1506 const Loop *L,
1507 bool AllUsesAreAddresses,
1508 SCEVHandle Stride) {
1509 if (!EnableFullLSRMode)
1510 return false;
1511
1512 // The heuristics below aim to avoid increasing register pressure, but
1513 // fully strength-reducing all the addresses increases the number of
1514 // add instructions, so don't do this when optimizing for size.
1515 // TODO: If the loop is large, the savings due to simpler addresses
1516 // may oughtweight the costs of the extra increment instructions.
1517 if (L->getHeader()->getParent()->hasFnAttr(Attribute::OptimizeForSize))
1518 return false;
1519
1520 // TODO: For now, don't do full strength reduction if there could
1521 // potentially be greater-stride multiples of the current stride
1522 // which could reuse the current stride IV.
1523 if (StrideOrder.back() != Stride)
1524 return false;
1525
1526 // Iterate through the uses to find conditions that automatically rule out
1527 // full-lsr mode.
1528 for (unsigned i = 0, e = UsersToProcess.size(); i != e; ) {
1529 SCEV *Base = UsersToProcess[i].Base;
1530 SCEV *Imm = UsersToProcess[i].Imm;
1531 // If any users have a loop-variant component, they can't be fully
1532 // strength-reduced.
1533 if (Imm && !Imm->isLoopInvariant(L))
1534 return false;
1535 // If there are to users with the same base and the difference between
1536 // the two Imm values can't be folded into the address, full
1537 // strength reduction would increase register pressure.
1538 do {
1539 SCEV *CurImm = UsersToProcess[i].Imm;
Dan Gohmana04af432009-02-22 16:40:52 +00001540 if ((CurImm || Imm) && CurImm != Imm) {
Dan Gohmanc17e0cf2009-02-20 04:17:46 +00001541 if (!CurImm) CurImm = SE->getIntegerSCEV(0, Stride->getType());
1542 if (!Imm) Imm = SE->getIntegerSCEV(0, Stride->getType());
1543 const Instruction *Inst = UsersToProcess[i].Inst;
1544 const Type *UseTy = Inst->getType();
1545 if (const StoreInst *SI = dyn_cast<StoreInst>(Inst))
1546 UseTy = SI->getOperand(0)->getType();
1547 SCEVHandle Diff = SE->getMinusSCEV(UsersToProcess[i].Imm, Imm);
1548 if (!Diff->isZero() &&
1549 (!AllUsesAreAddresses ||
1550 !fitsInAddressMode(Diff, UseTy, TLI, /*HasBaseReg=*/true)))
1551 return false;
1552 }
1553 } while (++i != e && Base == UsersToProcess[i].Base);
1554 }
1555
1556 // If there's exactly one user in this stride, fully strength-reducing it
1557 // won't increase register pressure. If it's starting from a non-zero base,
1558 // it'll be simpler this way.
1559 if (UsersToProcess.size() == 1 && !UsersToProcess[0].Base->isZero())
1560 return true;
1561
1562 // Otherwise, if there are any users in this stride that don't require
1563 // a register for their base, full strength-reduction will increase
1564 // register pressure.
1565 for (unsigned i = 0, e = UsersToProcess.size(); i != e; ++i)
Dan Gohmanf0baa6e2009-02-20 21:05:23 +00001566 if (UsersToProcess[i].Base->isZero())
Dan Gohmanc17e0cf2009-02-20 04:17:46 +00001567 return false;
1568
1569 // Otherwise, go for it.
1570 return true;
1571}
1572
1573/// InsertAffinePhi Create and insert a PHI node for an induction variable
1574/// with the specified start and step values in the specified loop.
1575///
1576/// If NegateStride is true, the stride should be negated by using a
1577/// subtract instead of an add.
1578///
1579/// Return the created phi node, and return the step instruction by
1580/// reference in IncV.
1581///
1582static PHINode *InsertAffinePhi(SCEVHandle Start, SCEVHandle Step,
1583 const Loop *L,
1584 SCEVExpander &Rewriter,
1585 Value *&IncV) {
1586 assert(Start->isLoopInvariant(L) && "New PHI start is not loop invariant!");
1587 assert(Step->isLoopInvariant(L) && "New PHI stride is not loop invariant!");
1588
1589 BasicBlock *Header = L->getHeader();
1590 BasicBlock *Preheader = L->getLoopPreheader();
1591
1592 PHINode *PN = PHINode::Create(Start->getType(), "lsr.iv", Header->begin());
1593 PN->addIncoming(Rewriter.expandCodeFor(Start, Preheader->getTerminator()),
1594 Preheader);
1595
1596 pred_iterator HPI = pred_begin(Header);
1597 assert(HPI != pred_end(Header) && "Loop with zero preds???");
1598 if (!L->contains(*HPI)) ++HPI;
1599 assert(HPI != pred_end(Header) && L->contains(*HPI) &&
1600 "No backedge in loop?");
1601
1602 // If the stride is negative, insert a sub instead of an add for the
1603 // increment.
1604 bool isNegative = isNonConstantNegative(Step);
1605 SCEVHandle IncAmount = Step;
1606 if (isNegative)
1607 IncAmount = Rewriter.SE.getNegativeSCEV(Step);
1608
1609 // Insert an add instruction right before the terminator corresponding
1610 // to the back-edge.
1611 Value *StepV = Rewriter.expandCodeFor(IncAmount, Preheader->getTerminator());
1612 if (isNegative) {
1613 IncV = BinaryOperator::CreateSub(PN, StepV, "lsr.iv.next",
1614 (*HPI)->getTerminator());
1615 } else {
1616 IncV = BinaryOperator::CreateAdd(PN, StepV, "lsr.iv.next",
1617 (*HPI)->getTerminator());
1618 }
1619 if (!isa<ConstantInt>(StepV)) ++NumVariable;
1620
1621 pred_iterator PI = pred_begin(Header);
1622 if (*PI == L->getLoopPreheader())
1623 ++PI;
1624 PN->addIncoming(IncV, *PI);
1625
1626 ++NumInserted;
1627 return PN;
1628}
1629
1630static void SortUsersToProcess(std::vector<BasedUser> &UsersToProcess) {
1631 // We want to emit code for users inside the loop first. To do this, we
1632 // rearrange BasedUser so that the entries at the end have
1633 // isUseOfPostIncrementedValue = false, because we pop off the end of the
1634 // vector (so we handle them first).
1635 std::partition(UsersToProcess.begin(), UsersToProcess.end(),
1636 PartitionByIsUseOfPostIncrementedValue);
1637
1638 // Sort this by base, so that things with the same base are handled
1639 // together. By partitioning first and stable-sorting later, we are
1640 // guaranteed that within each base we will pop off users from within the
1641 // loop before users outside of the loop with a particular base.
1642 //
1643 // We would like to use stable_sort here, but we can't. The problem is that
1644 // SCEVHandle's don't have a deterministic ordering w.r.t to each other, so
1645 // we don't have anything to do a '<' comparison on. Because we think the
1646 // number of uses is small, do a horrible bubble sort which just relies on
1647 // ==.
1648 for (unsigned i = 0, e = UsersToProcess.size(); i != e; ++i) {
1649 // Get a base value.
1650 SCEVHandle Base = UsersToProcess[i].Base;
1651
1652 // Compact everything with this base to be consecutive with this one.
1653 for (unsigned j = i+1; j != e; ++j) {
1654 if (UsersToProcess[j].Base == Base) {
1655 std::swap(UsersToProcess[i+1], UsersToProcess[j]);
1656 ++i;
1657 }
1658 }
1659 }
1660}
1661
Dan Gohman6b38e292009-02-20 21:06:57 +00001662/// PrepareToStrengthReduceFully - Prepare to fully strength-reduce
1663/// UsersToProcess, meaning lowering addresses all the way down to direct
1664/// pointer arithmetic.
Dan Gohmanc17e0cf2009-02-20 04:17:46 +00001665///
1666void
1667LoopStrengthReduce::PrepareToStrengthReduceFully(
1668 std::vector<BasedUser> &UsersToProcess,
1669 SCEVHandle Stride,
1670 SCEVHandle CommonExprs,
1671 const Loop *L,
1672 SCEVExpander &PreheaderRewriter) {
1673 DOUT << " Fully reducing all users\n";
1674
1675 // Rewrite the UsersToProcess records, creating a separate PHI for each
1676 // unique Base value.
1677 for (unsigned i = 0, e = UsersToProcess.size(); i != e; ) {
1678 // TODO: The uses are grouped by base, but not sorted. We arbitrarily
1679 // pick the first Imm value here to start with, and adjust it for the
1680 // other uses.
1681 SCEVHandle Imm = UsersToProcess[i].Imm;
1682 SCEVHandle Base = UsersToProcess[i].Base;
1683 SCEVHandle Start = SE->getAddExpr(CommonExprs, Base, Imm);
1684 Value *IncV;
1685 PHINode *Phi = InsertAffinePhi(Start, Stride, L,
1686 PreheaderRewriter,
1687 IncV);
1688 // Loop over all the users with the same base.
1689 do {
1690 UsersToProcess[i].Base = SE->getIntegerSCEV(0, Stride->getType());
1691 UsersToProcess[i].Imm = SE->getMinusSCEV(UsersToProcess[i].Imm, Imm);
1692 UsersToProcess[i].Phi = Phi;
1693 UsersToProcess[i].IncV = IncV;
1694 assert(UsersToProcess[i].Imm->isLoopInvariant(L) &&
1695 "ShouldUseFullStrengthReductionMode should reject this!");
1696 } while (++i != e && Base == UsersToProcess[i].Base);
1697 }
1698}
1699
1700/// PrepareToStrengthReduceWithNewPhi - Insert a new induction variable for the
1701/// given users to share.
1702///
1703void
1704LoopStrengthReduce::PrepareToStrengthReduceWithNewPhi(
1705 std::vector<BasedUser> &UsersToProcess,
1706 SCEVHandle Stride,
1707 SCEVHandle CommonExprs,
1708 Value *CommonBaseV,
1709 const Loop *L,
1710 SCEVExpander &PreheaderRewriter) {
1711 DOUT << " Inserting new PHI:\n";
1712
1713 Value *IncV;
1714 PHINode *Phi = InsertAffinePhi(SE->getUnknown(CommonBaseV),
1715 Stride, L,
1716 PreheaderRewriter,
1717 IncV);
1718
1719 // Remember this in case a later stride is multiple of this.
1720 IVsByStride[Stride].addIV(Stride, CommonExprs, Phi, IncV);
1721
1722 // All the users will share this new IV.
1723 for (unsigned i = 0, e = UsersToProcess.size(); i != e; ++i) {
1724 UsersToProcess[i].Phi = Phi;
1725 UsersToProcess[i].IncV = IncV;
1726 }
1727
1728 DOUT << " IV=";
1729 DEBUG(WriteAsOperand(*DOUT, Phi, /*PrintType=*/false));
1730 DOUT << ", INC=";
1731 DEBUG(WriteAsOperand(*DOUT, IncV, /*PrintType=*/false));
1732 DOUT << "\n";
1733}
1734
1735/// PrepareToStrengthReduceWithNewPhi - Prepare for the given users to reuse
1736/// an induction variable with a stride that is a factor of the current
1737/// induction variable.
1738///
1739void
1740LoopStrengthReduce::PrepareToStrengthReduceFromSmallerStride(
1741 std::vector<BasedUser> &UsersToProcess,
1742 Value *CommonBaseV,
1743 const IVExpr &ReuseIV,
1744 Instruction *PreInsertPt) {
1745 DOUT << " Rewriting in terms of existing IV of STRIDE " << *ReuseIV.Stride
1746 << " and BASE " << *ReuseIV.Base << "\n";
1747
1748 // All the users will share the reused IV.
1749 for (unsigned i = 0, e = UsersToProcess.size(); i != e; ++i) {
1750 UsersToProcess[i].Phi = ReuseIV.PHI;
1751 UsersToProcess[i].IncV = ReuseIV.IncV;
1752 }
1753
1754 Constant *C = dyn_cast<Constant>(CommonBaseV);
1755 if (C &&
1756 (!C->isNullValue() &&
1757 !fitsInAddressMode(SE->getUnknown(CommonBaseV), CommonBaseV->getType(),
1758 TLI, false)))
1759 // We want the common base emitted into the preheader! This is just
1760 // using cast as a copy so BitCast (no-op cast) is appropriate
1761 CommonBaseV = new BitCastInst(CommonBaseV, CommonBaseV->getType(),
1762 "commonbase", PreInsertPt);
1763}
1764
Evan Chengd9fb7122009-02-21 02:06:47 +00001765static bool IsImmFoldedIntoAddrMode(GlobalValue *GV, int64_t Offset,
1766 const Type *ReplacedTy,
1767 std::vector<BasedUser> &UsersToProcess,
1768 const TargetLowering *TLI) {
1769 SmallVector<Instruction*, 16> AddrModeInsts;
1770 for (unsigned i = 0, e = UsersToProcess.size(); i != e; ++i) {
1771 if (UsersToProcess[i].isUseOfPostIncrementedValue)
1772 continue;
1773 ExtAddrMode AddrMode =
1774 AddressingModeMatcher::Match(UsersToProcess[i].OperandValToReplace,
1775 ReplacedTy, UsersToProcess[i].Inst,
1776 AddrModeInsts, *TLI);
1777 if (GV && GV != AddrMode.BaseGV)
1778 return false;
1779 if (Offset && !AddrMode.BaseOffs)
1780 // FIXME: How to accurate check it's immediate offset is folded.
1781 return false;
1782 AddrModeInsts.clear();
1783 }
1784 return true;
1785}
1786
Evan Cheng5f8ebaa2007-10-25 22:45:20 +00001787/// StrengthReduceStridedIVUsers - Strength reduce all of the users of a single
1788/// stride of IV. All of the users may have different starting values, and this
Dan Gohman9f4ac312009-03-09 20:41:15 +00001789/// may not be the only stride.
Evan Cheng5f8ebaa2007-10-25 22:45:20 +00001790void LoopStrengthReduce::StrengthReduceStridedIVUsers(const SCEVHandle &Stride,
1791 IVUsersOfOneStride &Uses,
Dan Gohman9f4ac312009-03-09 20:41:15 +00001792 Loop *L) {
Evan Cheng5f8ebaa2007-10-25 22:45:20 +00001793 // If all the users are moved to another stride, then there is nothing to do.
Dan Gohman30359592008-01-29 13:02:09 +00001794 if (Uses.Users.empty())
Evan Cheng5f8ebaa2007-10-25 22:45:20 +00001795 return;
1796
1797 // Keep track if every use in UsersToProcess is an address. If they all are,
1798 // we may be able to rewrite the entire collection of them in terms of a
1799 // smaller-stride IV.
1800 bool AllUsesAreAddresses = true;
1801
Dale Johannesenb0390622008-12-16 22:16:28 +00001802 // Keep track if every use of a single stride is outside the loop. If so,
1803 // we want to be more aggressive about reusing a smaller-stride IV; a
1804 // multiply outside the loop is better than another IV inside. Well, usually.
1805 bool AllUsesAreOutsideLoop = true;
1806
Evan Cheng5f8ebaa2007-10-25 22:45:20 +00001807 // Transform our list of users and offsets to a bit more complex table. In
1808 // this new vector, each 'BasedUser' contains 'Base' the base of the
1809 // strided accessas well as the old information from Uses. We progressively
1810 // move information from the Base field to the Imm field, until we eventually
1811 // have the full access expression to rewrite the use.
1812 std::vector<BasedUser> UsersToProcess;
1813 SCEVHandle CommonExprs = CollectIVUsers(Stride, Uses, L, AllUsesAreAddresses,
Dale Johannesenb0390622008-12-16 22:16:28 +00001814 AllUsesAreOutsideLoop,
Evan Cheng5f8ebaa2007-10-25 22:45:20 +00001815 UsersToProcess);
1816
Dan Gohmanc17e0cf2009-02-20 04:17:46 +00001817 // Sort the UsersToProcess array so that users with common bases are
1818 // next to each other.
1819 SortUsersToProcess(UsersToProcess);
1820
Evan Cheng5f8ebaa2007-10-25 22:45:20 +00001821 // If we managed to find some expressions in common, we'll need to carry
1822 // their value in a register and add it in for each use. This will take up
1823 // a register operand, which potentially restricts what stride values are
1824 // valid.
Dan Gohmancfeb6a42008-06-18 16:23:07 +00001825 bool HaveCommonExprs = !CommonExprs->isZero();
Dan Gohmanc17e0cf2009-02-20 04:17:46 +00001826
Chris Lattnerfe355552007-04-01 22:21:39 +00001827 const Type *ReplacedTy = CommonExprs->getType();
Dan Gohmanc17e0cf2009-02-20 04:17:46 +00001828
Evan Chengd9fb7122009-02-21 02:06:47 +00001829 // If all uses are addresses, consider sinking the immediate part of the
1830 // common expression back into uses if they can fit in the immediate fields.
Evan Cheng3cd389d2009-02-22 07:31:19 +00001831 if (TLI && HaveCommonExprs && AllUsesAreAddresses) {
Evan Chengd9fb7122009-02-21 02:06:47 +00001832 SCEVHandle NewCommon = CommonExprs;
1833 SCEVHandle Imm = SE->getIntegerSCEV(0, ReplacedTy);
1834 MoveImmediateValues(TLI, ReplacedTy, NewCommon, Imm, true, L, SE);
1835 if (!Imm->isZero()) {
1836 bool DoSink = true;
1837
1838 // If the immediate part of the common expression is a GV, check if it's
1839 // possible to fold it into the target addressing mode.
1840 GlobalValue *GV = 0;
1841 if (SCEVUnknown *SU = dyn_cast<SCEVUnknown>(Imm)) {
1842 if (ConstantExpr *CE = dyn_cast<ConstantExpr>(SU->getValue()))
1843 if (CE->getOpcode() == Instruction::PtrToInt)
1844 GV = dyn_cast<GlobalValue>(CE->getOperand(0));
1845 }
1846 int64_t Offset = 0;
1847 if (SCEVConstant *SC = dyn_cast<SCEVConstant>(Imm))
1848 Offset = SC->getValue()->getSExtValue();
1849 if (GV || Offset)
1850 DoSink = IsImmFoldedIntoAddrMode(GV, Offset, ReplacedTy,
1851 UsersToProcess, TLI);
1852
1853 if (DoSink) {
1854 DOUT << " Sinking " << *Imm << " back down into uses\n";
1855 for (unsigned i = 0, e = UsersToProcess.size(); i != e; ++i)
1856 UsersToProcess[i].Imm = SE->getAddExpr(UsersToProcess[i].Imm, Imm);
1857 CommonExprs = NewCommon;
1858 HaveCommonExprs = !CommonExprs->isZero();
1859 ++NumImmSunk;
1860 }
1861 }
1862 }
1863
Chris Lattner1bbae0c2005-08-09 00:18:09 +00001864 // Now that we know what we need to do, insert the PHI node itself.
1865 //
Dan Gohman2f09f512009-02-19 19:23:27 +00001866 DOUT << "LSR: Examining IVs of TYPE " << *ReplacedTy << " of STRIDE "
1867 << *Stride << ":\n"
1868 << " Common base: " << *CommonExprs << "\n";
Evan Chengd1d6b5c2006-03-16 21:53:05 +00001869
Chris Lattner1bbae0c2005-08-09 00:18:09 +00001870 SCEVExpander Rewriter(*SE, *LI);
1871 SCEVExpander PreheaderRewriter(*SE, *LI);
Dan Gohmanc17e0cf2009-02-20 04:17:46 +00001872
Chris Lattner1bbae0c2005-08-09 00:18:09 +00001873 BasicBlock *Preheader = L->getLoopPreheader();
1874 Instruction *PreInsertPt = Preheader->getTerminator();
Chris Lattner12b50412005-09-12 17:11:27 +00001875 BasicBlock *LatchBlock = L->getLoopLatch();
Evan Chengd1d6b5c2006-03-16 21:53:05 +00001876
Dan Gohmanc17e0cf2009-02-20 04:17:46 +00001877 Value *CommonBaseV = ConstantInt::get(ReplacedTy, 0);
Evan Chengeb8f9e22006-03-17 19:52:23 +00001878
Dan Gohmanc17e0cf2009-02-20 04:17:46 +00001879 SCEVHandle RewriteFactor = SE->getIntegerSCEV(0, ReplacedTy);
1880 IVExpr ReuseIV(SE->getIntegerSCEV(0, Type::Int32Ty),
1881 SE->getIntegerSCEV(0, Type::Int32Ty),
1882 0, 0);
Evan Chengeb8f9e22006-03-17 19:52:23 +00001883
Dan Gohmanc17e0cf2009-02-20 04:17:46 +00001884 /// Choose a strength-reduction strategy and prepare for it by creating
1885 /// the necessary PHIs and adjusting the bookkeeping.
1886 if (ShouldUseFullStrengthReductionMode(UsersToProcess, L,
1887 AllUsesAreAddresses, Stride)) {
1888 PrepareToStrengthReduceFully(UsersToProcess, Stride, CommonExprs, L,
1889 PreheaderRewriter);
Evan Chengeb8f9e22006-03-17 19:52:23 +00001890 } else {
Dan Gohmanc17e0cf2009-02-20 04:17:46 +00001891 // Emit the initial base value into the loop preheader.
1892 CommonBaseV = PreheaderRewriter.expandCodeFor(CommonExprs, PreInsertPt);
Dan Gohman2f09f512009-02-19 19:23:27 +00001893
Dan Gohmanc17e0cf2009-02-20 04:17:46 +00001894 // If all uses are addresses, check if it is possible to reuse an IV with a
1895 // stride that is a factor of this stride. And that the multiple is a number
1896 // that can be encoded in the scale field of the target addressing mode. And
Dan Gohman6b38e292009-02-20 21:06:57 +00001897 // that we will have a valid instruction after this substition, including
1898 // the immediate field, if any.
Dan Gohmanc17e0cf2009-02-20 04:17:46 +00001899 RewriteFactor = CheckForIVReuse(HaveCommonExprs, AllUsesAreAddresses,
1900 AllUsesAreOutsideLoop,
1901 Stride, ReuseIV, CommonExprs->getType(),
1902 UsersToProcess);
1903 if (isa<SCEVConstant>(RewriteFactor) &&
1904 cast<SCEVConstant>(RewriteFactor)->isZero())
1905 PrepareToStrengthReduceWithNewPhi(UsersToProcess, Stride, CommonExprs,
1906 CommonBaseV, L, PreheaderRewriter);
1907 else
1908 PrepareToStrengthReduceFromSmallerStride(UsersToProcess, CommonBaseV,
1909 ReuseIV, PreInsertPt);
Evan Chengd1d6b5c2006-03-16 21:53:05 +00001910 }
Chris Lattner1bbae0c2005-08-09 00:18:09 +00001911
Dan Gohmanc17e0cf2009-02-20 04:17:46 +00001912 // Process all the users now, replacing their strided uses with
1913 // strength-reduced forms. This outer loop handles all bases, the inner
Chris Lattner7e79b382006-08-03 06:34:50 +00001914 // loop handles all users of a particular base.
Nate Begeman16997482005-07-30 00:15:07 +00001915 while (!UsersToProcess.empty()) {
Chris Lattner7b445c52005-10-11 18:30:57 +00001916 SCEVHandle Base = UsersToProcess.back().Base;
Dan Gohman2f09f512009-02-19 19:23:27 +00001917 Instruction *Inst = UsersToProcess.back().Inst;
Chris Lattnerbe3e5212005-08-03 23:30:08 +00001918
Chris Lattner1bbae0c2005-08-09 00:18:09 +00001919 // Emit the code for Base into the preheader.
Dan Gohmand19534a2007-06-15 14:38:12 +00001920 Value *BaseV = PreheaderRewriter.expandCodeFor(Base, PreInsertPt);
Chris Lattner7d8ed8a2007-05-11 22:40:34 +00001921
Dan Gohman2f09f512009-02-19 19:23:27 +00001922 DOUT << " Examining uses with BASE ";
Dan Gohman4a359ea2009-02-19 19:32:06 +00001923 DEBUG(WriteAsOperand(*DOUT, BaseV, /*PrintType=*/false));
Dan Gohman2f09f512009-02-19 19:23:27 +00001924 DOUT << ":\n";
Chris Lattner7d8ed8a2007-05-11 22:40:34 +00001925
Chris Lattner1bbae0c2005-08-09 00:18:09 +00001926 // If BaseV is a constant other than 0, make sure that it gets inserted into
1927 // the preheader, instead of being forward substituted into the uses. We do
Reid Spencer3da59db2006-11-27 01:05:10 +00001928 // this by forcing a BitCast (noop cast) to be inserted into the preheader
1929 // in this case.
Chris Lattner7e79b382006-08-03 06:34:50 +00001930 if (Constant *C = dyn_cast<Constant>(BaseV)) {
Dale Johannesen203af582008-12-05 21:47:27 +00001931 if (!C->isNullValue() && !fitsInAddressMode(Base, ReplacedTy,
1932 TLI, false)) {
Reid Spencer3da59db2006-11-27 01:05:10 +00001933 // We want this constant emitted into the preheader! This is just
1934 // using cast as a copy so BitCast (no-op cast) is appropriate
1935 BaseV = new BitCastInst(BaseV, BaseV->getType(), "preheaderinsert",
Dan Gohman4a9a3e52008-04-14 18:26:16 +00001936 PreInsertPt);
Chris Lattner1bbae0c2005-08-09 00:18:09 +00001937 }
Chris Lattner7e79b382006-08-03 06:34:50 +00001938 }
1939
Nate Begeman16997482005-07-30 00:15:07 +00001940 // Emit the code to add the immediate offset to the Phi value, just before
Chris Lattner2351aba2005-08-03 22:51:21 +00001941 // the instructions that we identified as using this stride and base.
Chris Lattner7b445c52005-10-11 18:30:57 +00001942 do {
Chris Lattner7e79b382006-08-03 06:34:50 +00001943 // FIXME: Use emitted users to emit other users.
Chris Lattner7b445c52005-10-11 18:30:57 +00001944 BasedUser &User = UsersToProcess.back();
Jeff Cohend29b6aa2005-07-30 18:33:25 +00001945
Dan Gohman2f09f512009-02-19 19:23:27 +00001946 DOUT << " Examining use ";
Dan Gohman4a359ea2009-02-19 19:32:06 +00001947 DEBUG(WriteAsOperand(*DOUT, UsersToProcess.back().OperandValToReplace,
1948 /*PrintType=*/false));
Dan Gohman2f09f512009-02-19 19:23:27 +00001949 DOUT << " in Inst: " << *Inst;
Dan Gohman2f09f512009-02-19 19:23:27 +00001950
Chris Lattner1bbae0c2005-08-09 00:18:09 +00001951 // If this instruction wants to use the post-incremented value, move it
1952 // after the post-inc and use its value instead of the PHI.
Dan Gohmanc17e0cf2009-02-20 04:17:46 +00001953 Value *RewriteOp = User.Phi;
Chris Lattner1bbae0c2005-08-09 00:18:09 +00001954 if (User.isUseOfPostIncrementedValue) {
Dan Gohmanc17e0cf2009-02-20 04:17:46 +00001955 RewriteOp = User.IncV;
Chris Lattnerc6bae652005-09-12 06:04:47 +00001956
1957 // If this user is in the loop, make sure it is the last thing in the
1958 // loop to ensure it is dominated by the increment.
1959 if (L->contains(User.Inst->getParent()))
1960 User.Inst->moveBefore(LatchBlock->getTerminator());
Chris Lattner1bbae0c2005-08-09 00:18:09 +00001961 }
Reid Spencer3ba68b92006-12-13 08:06:42 +00001962 if (RewriteOp->getType() != ReplacedTy) {
1963 Instruction::CastOps opcode = Instruction::Trunc;
1964 if (ReplacedTy->getPrimitiveSizeInBits() ==
1965 RewriteOp->getType()->getPrimitiveSizeInBits())
1966 opcode = Instruction::BitCast;
1967 RewriteOp = SCEVExpander::InsertCastOfTo(opcode, RewriteOp, ReplacedTy);
1968 }
Evan Cheng86c75d32006-06-09 00:12:42 +00001969
Dan Gohman246b2562007-10-22 18:31:58 +00001970 SCEVHandle RewriteExpr = SE->getUnknown(RewriteOp);
Chris Lattner1bbae0c2005-08-09 00:18:09 +00001971
Dale Johannesenb0390622008-12-16 22:16:28 +00001972 // If we had to insert new instructions for RewriteOp, we have to
Dan Gohmanf20d70d2008-05-15 23:26:57 +00001973 // consider that they may not have been able to end up immediately
1974 // next to RewriteOp, because non-PHI instructions may never precede
1975 // PHI instructions in a block. In this case, remember where the last
Dan Gohmanca756ae2008-05-20 03:01:48 +00001976 // instruction was inserted so that if we're replacing a different
1977 // PHI node, we can use the later point to expand the final
1978 // RewriteExpr.
Dan Gohmanf20d70d2008-05-15 23:26:57 +00001979 Instruction *NewBasePt = dyn_cast<Instruction>(RewriteOp);
Dan Gohmanc17e0cf2009-02-20 04:17:46 +00001980 if (RewriteOp == User.Phi) NewBasePt = 0;
Dan Gohmanf20d70d2008-05-15 23:26:57 +00001981
Chris Lattner2351aba2005-08-03 22:51:21 +00001982 // Clear the SCEVExpander's expression map so that we are guaranteed
1983 // to have the code emitted where we expect it.
1984 Rewriter.clear();
Evan Chengd1d6b5c2006-03-16 21:53:05 +00001985
1986 // If we are reusing the iv, then it must be multiplied by a constant
Dale Johannesen1de17d52009-02-09 22:14:15 +00001987 // factor to take advantage of the addressing mode scale component.
Dale Johannesen2f46bb82009-01-14 02:35:31 +00001988 if (!isa<SCEVConstant>(RewriteFactor) ||
1989 !cast<SCEVConstant>(RewriteFactor)->isZero()) {
1990 // If we're reusing an IV with a nonzero base (currently this happens
1991 // only when all reuses are outside the loop) subtract that base here.
1992 // The base has been used to initialize the PHI node but we don't want
1993 // it here.
Dale Johannesen1de17d52009-02-09 22:14:15 +00001994 if (!ReuseIV.Base->isZero()) {
1995 SCEVHandle typedBase = ReuseIV.Base;
1996 if (RewriteExpr->getType()->getPrimitiveSizeInBits() !=
1997 ReuseIV.Base->getType()->getPrimitiveSizeInBits()) {
1998 // It's possible the original IV is a larger type than the new IV,
1999 // in which case we have to truncate the Base. We checked in
2000 // RequiresTypeConversion that this is valid.
2001 assert (RewriteExpr->getType()->getPrimitiveSizeInBits() <
2002 ReuseIV.Base->getType()->getPrimitiveSizeInBits() &&
2003 "Unexpected lengthening conversion!");
2004 typedBase = SE->getTruncateExpr(ReuseIV.Base,
2005 RewriteExpr->getType());
2006 }
2007 RewriteExpr = SE->getMinusSCEV(RewriteExpr, typedBase);
2008 }
Dale Johannesen2f46bb82009-01-14 02:35:31 +00002009
2010 // Multiply old variable, with base removed, by new scale factor.
2011 RewriteExpr = SE->getMulExpr(RewriteFactor,
Evan Cheng83927722007-10-30 22:27:26 +00002012 RewriteExpr);
Evan Chengeb8f9e22006-03-17 19:52:23 +00002013
2014 // The common base is emitted in the loop preheader. But since we
2015 // are reusing an IV, it has not been used to initialize the PHI node.
2016 // Add it to the expression used to rewrite the uses.
Dale Johannesen2f46bb82009-01-14 02:35:31 +00002017 // When this use is outside the loop, we earlier subtracted the
2018 // common base, and are adding it back here. Use the same expression
2019 // as before, rather than CommonBaseV, so DAGCombiner will zap it.
Evan Chengeb8f9e22006-03-17 19:52:23 +00002020 if (!isa<ConstantInt>(CommonBaseV) ||
Dale Johannesen2f46bb82009-01-14 02:35:31 +00002021 !cast<ConstantInt>(CommonBaseV)->isZero()) {
2022 if (L->contains(User.Inst->getParent()))
2023 RewriteExpr = SE->getAddExpr(RewriteExpr,
Dale Johannesenb0390622008-12-16 22:16:28 +00002024 SE->getUnknown(CommonBaseV));
Dale Johannesen2f46bb82009-01-14 02:35:31 +00002025 else
2026 RewriteExpr = SE->getAddExpr(RewriteExpr, CommonExprs);
2027 }
Evan Chengeb8f9e22006-03-17 19:52:23 +00002028 }
Evan Chengd1d6b5c2006-03-16 21:53:05 +00002029
Chris Lattner2114b272005-08-04 20:03:32 +00002030 // Now that we know what we need to do, insert code before User for the
2031 // immediate and any loop-variant expressions.
Reid Spencerbee0f662007-03-02 23:51:25 +00002032 if (!isa<ConstantInt>(BaseV) || !cast<ConstantInt>(BaseV)->isZero())
Chris Lattner1bbae0c2005-08-09 00:18:09 +00002033 // Add BaseV to the PHI value if needed.
Dan Gohman246b2562007-10-22 18:31:58 +00002034 RewriteExpr = SE->getAddExpr(RewriteExpr, SE->getUnknown(BaseV));
Evan Chengd1d6b5c2006-03-16 21:53:05 +00002035
Dan Gohmanf20d70d2008-05-15 23:26:57 +00002036 User.RewriteInstructionToUseNewBase(RewriteExpr, NewBasePt,
2037 Rewriter, L, this,
Evan Cheng0e0014d2007-10-30 23:45:15 +00002038 DeadInsts);
Jeff Cohend29b6aa2005-07-30 18:33:25 +00002039
Chris Lattnera68d4ca2008-12-01 06:14:28 +00002040 // Mark old value we replaced as possibly dead, so that it is eliminated
Chris Lattner2351aba2005-08-03 22:51:21 +00002041 // if we just replaced the last use of that value.
Chris Lattner09fb7da2008-12-01 06:27:41 +00002042 DeadInsts.push_back(cast<Instruction>(User.OperandValToReplace));
Nate Begeman16997482005-07-30 00:15:07 +00002043
Chris Lattner7b445c52005-10-11 18:30:57 +00002044 UsersToProcess.pop_back();
Chris Lattner2351aba2005-08-03 22:51:21 +00002045 ++NumReduced;
Chris Lattner7b445c52005-10-11 18:30:57 +00002046
Chris Lattner7e79b382006-08-03 06:34:50 +00002047 // If there are any more users to process with the same base, process them
2048 // now. We sorted by base above, so we just have to check the last elt.
Chris Lattner7b445c52005-10-11 18:30:57 +00002049 } while (!UsersToProcess.empty() && UsersToProcess.back().Base == Base);
Nate Begeman16997482005-07-30 00:15:07 +00002050 // TODO: Next, find out which base index is the most common, pull it out.
2051 }
2052
2053 // IMPORTANT TODO: Figure out how to partition the IV's with this stride, but
2054 // different starting values, into different PHIs.
Nate Begeman16997482005-07-30 00:15:07 +00002055}
2056
Devang Patelc677de22008-08-13 20:31:11 +00002057/// FindIVUserForCond - If Cond has an operand that is an expression of an IV,
Chris Lattneraed01d12007-04-03 05:11:24 +00002058/// set the IV user and stride information and return true, otherwise return
2059/// false.
Devang Patelc677de22008-08-13 20:31:11 +00002060bool LoopStrengthReduce::FindIVUserForCond(ICmpInst *Cond, IVStrideUse *&CondUse,
Chris Lattneraed01d12007-04-03 05:11:24 +00002061 const SCEVHandle *&CondStride) {
2062 for (unsigned Stride = 0, e = StrideOrder.size(); Stride != e && !CondUse;
2063 ++Stride) {
2064 std::map<SCEVHandle, IVUsersOfOneStride>::iterator SI =
2065 IVUsesByStride.find(StrideOrder[Stride]);
2066 assert(SI != IVUsesByStride.end() && "Stride doesn't exist!");
2067
2068 for (std::vector<IVStrideUse>::iterator UI = SI->second.Users.begin(),
2069 E = SI->second.Users.end(); UI != E; ++UI)
2070 if (UI->User == Cond) {
2071 // NOTE: we could handle setcc instructions with multiple uses here, but
2072 // InstCombine does it as well for simple uses, it's not clear that it
2073 // occurs enough in real life to handle.
2074 CondUse = &*UI;
2075 CondStride = &SI->first;
2076 return true;
2077 }
2078 }
2079 return false;
2080}
2081
Evan Chengcdf43b12007-10-25 09:11:16 +00002082namespace {
2083 // Constant strides come first which in turns are sorted by their absolute
2084 // values. If absolute values are the same, then positive strides comes first.
2085 // e.g.
2086 // 4, -1, X, 1, 2 ==> 1, -1, 2, 4, X
2087 struct StrideCompare {
2088 bool operator()(const SCEVHandle &LHS, const SCEVHandle &RHS) {
2089 SCEVConstant *LHSC = dyn_cast<SCEVConstant>(LHS);
2090 SCEVConstant *RHSC = dyn_cast<SCEVConstant>(RHS);
2091 if (LHSC && RHSC) {
2092 int64_t LV = LHSC->getValue()->getSExtValue();
2093 int64_t RV = RHSC->getValue()->getSExtValue();
2094 uint64_t ALV = (LV < 0) ? -LV : LV;
2095 uint64_t ARV = (RV < 0) ? -RV : RV;
Dan Gohmanbc511722009-02-13 00:26:43 +00002096 if (ALV == ARV) {
2097 if (LV != RV)
2098 return LV > RV;
2099 } else {
Evan Chengcdf43b12007-10-25 09:11:16 +00002100 return ALV < ARV;
Dan Gohmanbc511722009-02-13 00:26:43 +00002101 }
2102
2103 // If it's the same value but different type, sort by bit width so
2104 // that we emit larger induction variables before smaller
2105 // ones, letting the smaller be re-written in terms of larger ones.
2106 return RHS->getBitWidth() < LHS->getBitWidth();
Evan Chengcdf43b12007-10-25 09:11:16 +00002107 }
Dan Gohmanbc511722009-02-13 00:26:43 +00002108 return LHSC && !RHSC;
Evan Chengcdf43b12007-10-25 09:11:16 +00002109 }
2110 };
2111}
2112
2113/// ChangeCompareStride - If a loop termination compare instruction is the
2114/// only use of its stride, and the compaison is against a constant value,
2115/// try eliminate the stride by moving the compare instruction to another
2116/// stride and change its constant operand accordingly. e.g.
2117///
2118/// loop:
2119/// ...
2120/// v1 = v1 + 3
2121/// v2 = v2 + 1
2122/// if (v2 < 10) goto loop
2123/// =>
2124/// loop:
2125/// ...
2126/// v1 = v1 + 3
2127/// if (v1 < 30) goto loop
2128ICmpInst *LoopStrengthReduce::ChangeCompareStride(Loop *L, ICmpInst *Cond,
Evan Cheng0e0014d2007-10-30 23:45:15 +00002129 IVStrideUse* &CondUse,
Evan Chengcdf43b12007-10-25 09:11:16 +00002130 const SCEVHandle* &CondStride) {
2131 if (StrideOrder.size() < 2 ||
2132 IVUsesByStride[*CondStride].Users.size() != 1)
2133 return Cond;
Evan Chengcdf43b12007-10-25 09:11:16 +00002134 const SCEVConstant *SC = dyn_cast<SCEVConstant>(*CondStride);
2135 if (!SC) return Cond;
Evan Chengcdf43b12007-10-25 09:11:16 +00002136
2137 ICmpInst::Predicate Predicate = Cond->getPredicate();
Evan Chengcdf43b12007-10-25 09:11:16 +00002138 int64_t CmpSSInt = SC->getValue()->getSExtValue();
Dan Gohmanc34fea32009-02-24 01:58:00 +00002139 unsigned BitWidth = (*CondStride)->getBitWidth();
Evan Cheng168a66b2007-10-26 23:08:19 +00002140 uint64_t SignBit = 1ULL << (BitWidth-1);
Dan Gohmanc34fea32009-02-24 01:58:00 +00002141 const Type *CmpTy = Cond->getOperand(0)->getType();
Evan Cheng168a66b2007-10-26 23:08:19 +00002142 const Type *NewCmpTy = NULL;
Evan Chengaf62c092007-10-29 22:07:18 +00002143 unsigned TyBits = CmpTy->getPrimitiveSizeInBits();
2144 unsigned NewTyBits = 0;
Evan Chengcdf43b12007-10-25 09:11:16 +00002145 SCEVHandle *NewStride = NULL;
Dan Gohmanff518c82009-02-20 21:27:23 +00002146 Value *NewCmpLHS = NULL;
2147 Value *NewCmpRHS = NULL;
Evan Chengcdf43b12007-10-25 09:11:16 +00002148 int64_t Scale = 1;
Dan Gohmanc34fea32009-02-24 01:58:00 +00002149 SCEVHandle NewOffset = SE->getIntegerSCEV(0, UIntPtrTy);
Evan Chengcdf43b12007-10-25 09:11:16 +00002150
Dan Gohmanc34fea32009-02-24 01:58:00 +00002151 if (ConstantInt *C = dyn_cast<ConstantInt>(Cond->getOperand(1))) {
2152 int64_t CmpVal = C->getValue().getSExtValue();
Evan Cheng168a66b2007-10-26 23:08:19 +00002153
Dan Gohmanc34fea32009-02-24 01:58:00 +00002154 // Check stride constant and the comparision constant signs to detect
2155 // overflow.
2156 if ((CmpVal & SignBit) != (CmpSSInt & SignBit))
2157 return Cond;
Evan Cheng168a66b2007-10-26 23:08:19 +00002158
Dan Gohmanc34fea32009-02-24 01:58:00 +00002159 // Look for a suitable stride / iv as replacement.
2160 for (unsigned i = 0, e = StrideOrder.size(); i != e; ++i) {
2161 std::map<SCEVHandle, IVUsersOfOneStride>::iterator SI =
2162 IVUsesByStride.find(StrideOrder[i]);
2163 if (!isa<SCEVConstant>(SI->first))
Dan Gohmanff518c82009-02-20 21:27:23 +00002164 continue;
Dan Gohmanc34fea32009-02-24 01:58:00 +00002165 int64_t SSInt = cast<SCEVConstant>(SI->first)->getValue()->getSExtValue();
2166 if (abs(SSInt) <= abs(CmpSSInt) || (SSInt % CmpSSInt) != 0)
2167 continue;
2168
2169 Scale = SSInt / CmpSSInt;
2170 int64_t NewCmpVal = CmpVal * Scale;
2171 APInt Mul = APInt(BitWidth, NewCmpVal);
2172 // Check for overflow.
2173 if (Mul.getSExtValue() != NewCmpVal)
2174 continue;
2175
2176 // Watch out for overflow.
2177 if (ICmpInst::isSignedPredicate(Predicate) &&
2178 (CmpVal & SignBit) != (NewCmpVal & SignBit))
2179 continue;
2180
2181 if (NewCmpVal == CmpVal)
2182 continue;
2183 // Pick the best iv to use trying to avoid a cast.
2184 NewCmpLHS = NULL;
2185 for (std::vector<IVStrideUse>::iterator UI = SI->second.Users.begin(),
2186 E = SI->second.Users.end(); UI != E; ++UI) {
2187 NewCmpLHS = UI->OperandValToReplace;
2188 if (NewCmpLHS->getType() == CmpTy)
2189 break;
2190 }
2191 if (!NewCmpLHS)
2192 continue;
2193
2194 NewCmpTy = NewCmpLHS->getType();
2195 NewTyBits = isa<PointerType>(NewCmpTy)
2196 ? UIntPtrTy->getPrimitiveSizeInBits()
2197 : NewCmpTy->getPrimitiveSizeInBits();
2198 if (RequiresTypeConversion(NewCmpTy, CmpTy)) {
2199 // Check if it is possible to rewrite it using
2200 // an iv / stride of a smaller integer type.
2201 bool TruncOk = false;
2202 if (NewCmpTy->isInteger()) {
2203 unsigned Bits = NewTyBits;
2204 if (ICmpInst::isSignedPredicate(Predicate))
2205 --Bits;
2206 uint64_t Mask = (1ULL << Bits) - 1;
2207 if (((uint64_t)NewCmpVal & Mask) == (uint64_t)NewCmpVal)
2208 TruncOk = true;
2209 }
2210 if (!TruncOk)
2211 continue;
2212 }
2213
2214 // Don't rewrite if use offset is non-constant and the new type is
2215 // of a different type.
2216 // FIXME: too conservative?
2217 if (NewTyBits != TyBits && !isa<SCEVConstant>(CondUse->Offset))
2218 continue;
2219
2220 bool AllUsesAreAddresses = true;
2221 bool AllUsesAreOutsideLoop = true;
2222 std::vector<BasedUser> UsersToProcess;
2223 SCEVHandle CommonExprs = CollectIVUsers(SI->first, SI->second, L,
2224 AllUsesAreAddresses,
2225 AllUsesAreOutsideLoop,
2226 UsersToProcess);
2227 // Avoid rewriting the compare instruction with an iv of new stride
2228 // if it's likely the new stride uses will be rewritten using the
2229 // stride of the compare instruction.
2230 if (AllUsesAreAddresses &&
2231 ValidStride(!CommonExprs->isZero(), Scale, UsersToProcess))
2232 continue;
2233
2234 // If scale is negative, use swapped predicate unless it's testing
2235 // for equality.
2236 if (Scale < 0 && !Cond->isEquality())
2237 Predicate = ICmpInst::getSwappedPredicate(Predicate);
2238
2239 NewStride = &StrideOrder[i];
2240 if (!isa<PointerType>(NewCmpTy))
2241 NewCmpRHS = ConstantInt::get(NewCmpTy, NewCmpVal);
2242 else {
2243 NewCmpRHS = ConstantInt::get(UIntPtrTy, NewCmpVal);
2244 NewCmpRHS = SCEVExpander::InsertCastOfTo(Instruction::IntToPtr,
2245 NewCmpRHS, NewCmpTy);
2246 }
2247 NewOffset = TyBits == NewTyBits
2248 ? SE->getMulExpr(CondUse->Offset,
2249 SE->getConstant(ConstantInt::get(CmpTy, Scale)))
2250 : SE->getConstant(ConstantInt::get(NewCmpTy,
2251 cast<SCEVConstant>(CondUse->Offset)->getValue()->getSExtValue()*Scale));
2252 break;
Dan Gohmanff518c82009-02-20 21:27:23 +00002253 }
Evan Chengcdf43b12007-10-25 09:11:16 +00002254 }
2255
Dan Gohman9b93dd12008-06-16 22:34:15 +00002256 // Forgo this transformation if it the increment happens to be
2257 // unfortunately positioned after the condition, and the condition
2258 // has multiple uses which prevent it from being moved immediately
2259 // before the branch. See
2260 // test/Transforms/LoopStrengthReduce/change-compare-stride-trickiness-*.ll
2261 // for an example of this situation.
Devang Pateld16aba22008-08-13 02:05:14 +00002262 if (!Cond->hasOneUse()) {
Dan Gohman9b93dd12008-06-16 22:34:15 +00002263 for (BasicBlock::iterator I = Cond, E = Cond->getParent()->end();
2264 I != E; ++I)
Dan Gohmanff518c82009-02-20 21:27:23 +00002265 if (I == NewCmpLHS)
Dan Gohman9b93dd12008-06-16 22:34:15 +00002266 return Cond;
Devang Pateld16aba22008-08-13 02:05:14 +00002267 }
Dan Gohman9b93dd12008-06-16 22:34:15 +00002268
Dan Gohmanff518c82009-02-20 21:27:23 +00002269 if (NewCmpRHS) {
Evan Chengcdf43b12007-10-25 09:11:16 +00002270 // Create a new compare instruction using new stride / iv.
2271 ICmpInst *OldCond = Cond;
Evan Cheng168a66b2007-10-26 23:08:19 +00002272 // Insert new compare instruction.
Dan Gohmanff518c82009-02-20 21:27:23 +00002273 Cond = new ICmpInst(Predicate, NewCmpLHS, NewCmpRHS,
Dan Gohmane562b172008-06-13 21:43:41 +00002274 L->getHeader()->getName() + ".termcond",
2275 OldCond);
Evan Cheng168a66b2007-10-26 23:08:19 +00002276
2277 // Remove the old compare instruction. The old indvar is probably dead too.
Chris Lattner09fb7da2008-12-01 06:27:41 +00002278 DeadInsts.push_back(cast<Instruction>(CondUse->OperandValToReplace));
Evan Cheng168a66b2007-10-26 23:08:19 +00002279 SE->deleteValueFromRecords(OldCond);
Dan Gohman010ee2d2008-05-21 00:54:12 +00002280 OldCond->replaceAllUsesWith(Cond);
Evan Chengcdf43b12007-10-25 09:11:16 +00002281 OldCond->eraseFromParent();
Evan Cheng168a66b2007-10-26 23:08:19 +00002282
Evan Chengcdf43b12007-10-25 09:11:16 +00002283 IVUsesByStride[*CondStride].Users.pop_back();
Dan Gohmanff518c82009-02-20 21:27:23 +00002284 IVUsesByStride[*NewStride].addUser(NewOffset, Cond, NewCmpLHS);
Evan Chengcdf43b12007-10-25 09:11:16 +00002285 CondUse = &IVUsesByStride[*NewStride].Users.back();
2286 CondStride = NewStride;
2287 ++NumEliminated;
2288 }
2289
2290 return Cond;
2291}
2292
Dan Gohmanad7321f2008-09-15 21:22:06 +00002293/// OptimizeSMax - Rewrite the loop's terminating condition if it uses
2294/// an smax computation.
2295///
2296/// This is a narrow solution to a specific, but acute, problem. For loops
2297/// like this:
2298///
2299/// i = 0;
2300/// do {
2301/// p[i] = 0.0;
2302/// } while (++i < n);
2303///
2304/// where the comparison is signed, the trip count isn't just 'n', because
2305/// 'n' could be negative. And unfortunately this can come up even for loops
2306/// where the user didn't use a C do-while loop. For example, seemingly
2307/// well-behaved top-test loops will commonly be lowered like this:
2308//
2309/// if (n > 0) {
2310/// i = 0;
2311/// do {
2312/// p[i] = 0.0;
2313/// } while (++i < n);
2314/// }
2315///
2316/// and then it's possible for subsequent optimization to obscure the if
2317/// test in such a way that indvars can't find it.
2318///
2319/// When indvars can't find the if test in loops like this, it creates a
2320/// signed-max expression, which allows it to give the loop a canonical
2321/// induction variable:
2322///
2323/// i = 0;
2324/// smax = n < 1 ? 1 : n;
2325/// do {
2326/// p[i] = 0.0;
2327/// } while (++i != smax);
2328///
2329/// Canonical induction variables are necessary because the loop passes
2330/// are designed around them. The most obvious example of this is the
2331/// LoopInfo analysis, which doesn't remember trip count values. It
2332/// expects to be able to rediscover the trip count each time it is
2333/// needed, and it does this using a simple analyis that only succeeds if
2334/// the loop has a canonical induction variable.
2335///
2336/// However, when it comes time to generate code, the maximum operation
2337/// can be quite costly, especially if it's inside of an outer loop.
2338///
2339/// This function solves this problem by detecting this type of loop and
2340/// rewriting their conditions from ICMP_NE back to ICMP_SLT, and deleting
2341/// the instructions for the maximum computation.
2342///
2343ICmpInst *LoopStrengthReduce::OptimizeSMax(Loop *L, ICmpInst *Cond,
2344 IVStrideUse* &CondUse) {
2345 // Check that the loop matches the pattern we're looking for.
2346 if (Cond->getPredicate() != CmpInst::ICMP_EQ &&
2347 Cond->getPredicate() != CmpInst::ICMP_NE)
2348 return Cond;
2349
2350 SelectInst *Sel = dyn_cast<SelectInst>(Cond->getOperand(1));
2351 if (!Sel || !Sel->hasOneUse()) return Cond;
2352
Dan Gohman46bdfb02009-02-24 18:55:53 +00002353 SCEVHandle BackedgeTakenCount = SE->getBackedgeTakenCount(L);
2354 if (isa<SCEVCouldNotCompute>(BackedgeTakenCount))
Dan Gohmanad7321f2008-09-15 21:22:06 +00002355 return Cond;
Dan Gohman46bdfb02009-02-24 18:55:53 +00002356 SCEVHandle One = SE->getIntegerSCEV(1, BackedgeTakenCount->getType());
Dan Gohmanad7321f2008-09-15 21:22:06 +00002357
Dan Gohman46bdfb02009-02-24 18:55:53 +00002358 // Add one to the backedge-taken count to get the trip count.
2359 SCEVHandle IterationCount = SE->getAddExpr(BackedgeTakenCount, One);
Dan Gohmanad7321f2008-09-15 21:22:06 +00002360
2361 // Check for a max calculation that matches the pattern.
2362 SCEVSMaxExpr *SMax = dyn_cast<SCEVSMaxExpr>(IterationCount);
2363 if (!SMax || SMax != SE->getSCEV(Sel)) return Cond;
2364
2365 SCEVHandle SMaxLHS = SMax->getOperand(0);
2366 SCEVHandle SMaxRHS = SMax->getOperand(1);
2367 if (!SMaxLHS || SMaxLHS != One) return Cond;
2368
2369 // Check the relevant induction variable for conformance to
2370 // the pattern.
2371 SCEVHandle IV = SE->getSCEV(Cond->getOperand(0));
2372 SCEVAddRecExpr *AR = dyn_cast<SCEVAddRecExpr>(IV);
2373 if (!AR || !AR->isAffine() ||
2374 AR->getStart() != One ||
2375 AR->getStepRecurrence(*SE) != One)
2376 return Cond;
2377
Dan Gohmanbc10b8c2009-03-04 20:49:01 +00002378 assert(AR->getLoop() == L &&
2379 "Loop condition operand is an addrec in a different loop!");
2380
Dan Gohmanad7321f2008-09-15 21:22:06 +00002381 // Check the right operand of the select, and remember it, as it will
2382 // be used in the new comparison instruction.
2383 Value *NewRHS = 0;
2384 if (SE->getSCEV(Sel->getOperand(1)) == SMaxRHS)
2385 NewRHS = Sel->getOperand(1);
2386 else if (SE->getSCEV(Sel->getOperand(2)) == SMaxRHS)
2387 NewRHS = Sel->getOperand(2);
2388 if (!NewRHS) return Cond;
2389
2390 // Ok, everything looks ok to change the condition into an SLT or SGE and
2391 // delete the max calculation.
2392 ICmpInst *NewCond =
2393 new ICmpInst(Cond->getPredicate() == CmpInst::ICMP_NE ?
2394 CmpInst::ICMP_SLT :
2395 CmpInst::ICMP_SGE,
2396 Cond->getOperand(0), NewRHS, "scmp", Cond);
2397
2398 // Delete the max calculation instructions.
Dan Gohman586b7b72008-10-01 02:02:03 +00002399 SE->deleteValueFromRecords(Cond);
Dan Gohmanad7321f2008-09-15 21:22:06 +00002400 Cond->replaceAllUsesWith(NewCond);
2401 Cond->eraseFromParent();
Dan Gohmanad7321f2008-09-15 21:22:06 +00002402 Instruction *Cmp = cast<Instruction>(Sel->getOperand(0));
Dan Gohmanad7321f2008-09-15 21:22:06 +00002403 SE->deleteValueFromRecords(Sel);
Dan Gohman586b7b72008-10-01 02:02:03 +00002404 Sel->eraseFromParent();
Dan Gohmanad7321f2008-09-15 21:22:06 +00002405 if (Cmp->use_empty()) {
Dan Gohmanad7321f2008-09-15 21:22:06 +00002406 SE->deleteValueFromRecords(Cmp);
Dan Gohman586b7b72008-10-01 02:02:03 +00002407 Cmp->eraseFromParent();
Dan Gohmanad7321f2008-09-15 21:22:06 +00002408 }
2409 CondUse->User = NewCond;
2410 return NewCond;
2411}
2412
Devang Patela0b39092008-08-26 17:57:54 +00002413/// OptimizeShadowIV - If IV is used in a int-to-float cast
2414/// inside the loop then try to eliminate the cast opeation.
2415void LoopStrengthReduce::OptimizeShadowIV(Loop *L) {
2416
Dan Gohman46bdfb02009-02-24 18:55:53 +00002417 SCEVHandle BackedgeTakenCount = SE->getBackedgeTakenCount(L);
2418 if (isa<SCEVCouldNotCompute>(BackedgeTakenCount))
Devang Patela0b39092008-08-26 17:57:54 +00002419 return;
2420
2421 for (unsigned Stride = 0, e = StrideOrder.size(); Stride != e;
2422 ++Stride) {
2423 std::map<SCEVHandle, IVUsersOfOneStride>::iterator SI =
2424 IVUsesByStride.find(StrideOrder[Stride]);
2425 assert(SI != IVUsesByStride.end() && "Stride doesn't exist!");
2426 if (!isa<SCEVConstant>(SI->first))
2427 continue;
2428
2429 for (std::vector<IVStrideUse>::iterator UI = SI->second.Users.begin(),
2430 E = SI->second.Users.end(); UI != E; /* empty */) {
2431 std::vector<IVStrideUse>::iterator CandidateUI = UI;
Devang Patel54153272008-08-27 17:50:18 +00002432 ++UI;
Devang Patela0b39092008-08-26 17:57:54 +00002433 Instruction *ShadowUse = CandidateUI->User;
2434 const Type *DestTy = NULL;
2435
2436 /* If shadow use is a int->float cast then insert a second IV
Devang Patel54153272008-08-27 17:50:18 +00002437 to eliminate this cast.
Devang Patela0b39092008-08-26 17:57:54 +00002438
2439 for (unsigned i = 0; i < n; ++i)
2440 foo((double)i);
2441
Devang Patel54153272008-08-27 17:50:18 +00002442 is transformed into
Devang Patela0b39092008-08-26 17:57:54 +00002443
2444 double d = 0.0;
2445 for (unsigned i = 0; i < n; ++i, ++d)
2446 foo(d);
2447 */
Devang Patel54153272008-08-27 17:50:18 +00002448 if (UIToFPInst *UCast = dyn_cast<UIToFPInst>(CandidateUI->User))
Devang Patela0b39092008-08-26 17:57:54 +00002449 DestTy = UCast->getDestTy();
Devang Patel54153272008-08-27 17:50:18 +00002450 else if (SIToFPInst *SCast = dyn_cast<SIToFPInst>(CandidateUI->User))
Devang Patela0b39092008-08-26 17:57:54 +00002451 DestTy = SCast->getDestTy();
Devang Patel18bb2782008-08-27 20:55:23 +00002452 if (!DestTy) continue;
2453
2454 if (TLI) {
2455 /* If target does not support DestTy natively then do not apply
2456 this transformation. */
2457 MVT DVT = TLI->getValueType(DestTy);
2458 if (!TLI->isTypeLegal(DVT)) continue;
2459 }
2460
Devang Patela0b39092008-08-26 17:57:54 +00002461 PHINode *PH = dyn_cast<PHINode>(ShadowUse->getOperand(0));
2462 if (!PH) continue;
2463 if (PH->getNumIncomingValues() != 2) continue;
2464
2465 const Type *SrcTy = PH->getType();
2466 int Mantissa = DestTy->getFPMantissaWidth();
2467 if (Mantissa == -1) continue;
2468 if ((int)TD->getTypeSizeInBits(SrcTy) > Mantissa)
2469 continue;
2470
2471 unsigned Entry, Latch;
2472 if (PH->getIncomingBlock(0) == L->getLoopPreheader()) {
2473 Entry = 0;
2474 Latch = 1;
2475 } else {
2476 Entry = 1;
2477 Latch = 0;
2478 }
2479
2480 ConstantInt *Init = dyn_cast<ConstantInt>(PH->getIncomingValue(Entry));
2481 if (!Init) continue;
2482 ConstantFP *NewInit = ConstantFP::get(DestTy, Init->getZExtValue());
2483
2484 BinaryOperator *Incr =
2485 dyn_cast<BinaryOperator>(PH->getIncomingValue(Latch));
2486 if (!Incr) continue;
2487 if (Incr->getOpcode() != Instruction::Add
2488 && Incr->getOpcode() != Instruction::Sub)
2489 continue;
2490
2491 /* Initialize new IV, double d = 0.0 in above example. */
2492 ConstantInt *C = NULL;
2493 if (Incr->getOperand(0) == PH)
2494 C = dyn_cast<ConstantInt>(Incr->getOperand(1));
2495 else if (Incr->getOperand(1) == PH)
2496 C = dyn_cast<ConstantInt>(Incr->getOperand(0));
2497 else
2498 continue;
2499
2500 if (!C) continue;
2501
2502 /* Add new PHINode. */
2503 PHINode *NewPH = PHINode::Create(DestTy, "IV.S.", PH);
2504
Devang Patel54153272008-08-27 17:50:18 +00002505 /* create new increment. '++d' in above example. */
Devang Patela0b39092008-08-26 17:57:54 +00002506 ConstantFP *CFP = ConstantFP::get(DestTy, C->getZExtValue());
2507 BinaryOperator *NewIncr =
2508 BinaryOperator::Create(Incr->getOpcode(),
2509 NewPH, CFP, "IV.S.next.", Incr);
2510
2511 NewPH->addIncoming(NewInit, PH->getIncomingBlock(Entry));
2512 NewPH->addIncoming(NewIncr, PH->getIncomingBlock(Latch));
2513
2514 /* Remove cast operation */
2515 SE->deleteValueFromRecords(ShadowUse);
2516 ShadowUse->replaceAllUsesWith(NewPH);
2517 ShadowUse->eraseFromParent();
2518 SI->second.Users.erase(CandidateUI);
2519 NumShadow++;
2520 break;
2521 }
2522 }
2523}
2524
Chris Lattner010de252005-08-08 05:28:22 +00002525// OptimizeIndvars - Now that IVUsesByStride is set up with all of the indvar
2526// uses in the loop, look to see if we can eliminate some, in favor of using
2527// common indvars for the different uses.
2528void LoopStrengthReduce::OptimizeIndvars(Loop *L) {
2529 // TODO: implement optzns here.
2530
Devang Patela0b39092008-08-26 17:57:54 +00002531 OptimizeShadowIV(L);
2532
Chris Lattner010de252005-08-08 05:28:22 +00002533 // Finally, get the terminating condition for the loop if possible. If we
2534 // can, we want to change it to use a post-incremented version of its
Chris Lattner98d98112006-03-24 07:14:34 +00002535 // induction variable, to allow coalescing the live ranges for the IV into
Chris Lattner010de252005-08-08 05:28:22 +00002536 // one register value.
2537 PHINode *SomePHI = cast<PHINode>(L->getHeader()->begin());
2538 BasicBlock *Preheader = L->getLoopPreheader();
2539 BasicBlock *LatchBlock =
2540 SomePHI->getIncomingBlock(SomePHI->getIncomingBlock(0) == Preheader);
2541 BranchInst *TermBr = dyn_cast<BranchInst>(LatchBlock->getTerminator());
Reid Spencere4d87aa2006-12-23 06:05:41 +00002542 if (!TermBr || TermBr->isUnconditional() ||
2543 !isa<ICmpInst>(TermBr->getCondition()))
Chris Lattner010de252005-08-08 05:28:22 +00002544 return;
Reid Spencere4d87aa2006-12-23 06:05:41 +00002545 ICmpInst *Cond = cast<ICmpInst>(TermBr->getCondition());
Chris Lattner010de252005-08-08 05:28:22 +00002546
2547 // Search IVUsesByStride to find Cond's IVUse if there is one.
2548 IVStrideUse *CondUse = 0;
Chris Lattner50fad702005-08-10 00:45:21 +00002549 const SCEVHandle *CondStride = 0;
Chris Lattner010de252005-08-08 05:28:22 +00002550
Devang Patelc677de22008-08-13 20:31:11 +00002551 if (!FindIVUserForCond(Cond, CondUse, CondStride))
Chris Lattneraed01d12007-04-03 05:11:24 +00002552 return; // setcc doesn't use the IV.
Evan Chengcdf43b12007-10-25 09:11:16 +00002553
Dan Gohmanad7321f2008-09-15 21:22:06 +00002554 // If the trip count is computed in terms of an smax (due to ScalarEvolution
2555 // being unable to find a sufficient guard, for example), change the loop
2556 // comparison to use SLT instead of NE.
2557 Cond = OptimizeSMax(L, Cond, CondUse);
2558
Evan Chengcdf43b12007-10-25 09:11:16 +00002559 // If possible, change stride and operands of the compare instruction to
2560 // eliminate one stride.
2561 Cond = ChangeCompareStride(L, Cond, CondUse, CondStride);
Chris Lattner010de252005-08-08 05:28:22 +00002562
Chris Lattner010de252005-08-08 05:28:22 +00002563 // It's possible for the setcc instruction to be anywhere in the loop, and
2564 // possible for it to have multiple users. If it is not immediately before
2565 // the latch block branch, move it.
2566 if (&*++BasicBlock::iterator(Cond) != (Instruction*)TermBr) {
2567 if (Cond->hasOneUse()) { // Condition has a single use, just move it.
2568 Cond->moveBefore(TermBr);
2569 } else {
2570 // Otherwise, clone the terminating condition and insert into the loopend.
Reid Spencere4d87aa2006-12-23 06:05:41 +00002571 Cond = cast<ICmpInst>(Cond->clone());
Chris Lattner010de252005-08-08 05:28:22 +00002572 Cond->setName(L->getHeader()->getName() + ".termcond");
2573 LatchBlock->getInstList().insert(TermBr, Cond);
2574
2575 // Clone the IVUse, as the old use still exists!
Chris Lattner50fad702005-08-10 00:45:21 +00002576 IVUsesByStride[*CondStride].addUser(CondUse->Offset, Cond,
Chris Lattner010de252005-08-08 05:28:22 +00002577 CondUse->OperandValToReplace);
Chris Lattner50fad702005-08-10 00:45:21 +00002578 CondUse = &IVUsesByStride[*CondStride].Users.back();
Chris Lattner010de252005-08-08 05:28:22 +00002579 }
2580 }
2581
2582 // If we get to here, we know that we can transform the setcc instruction to
Chris Lattner98d98112006-03-24 07:14:34 +00002583 // use the post-incremented version of the IV, allowing us to coalesce the
Chris Lattner010de252005-08-08 05:28:22 +00002584 // live ranges for the IV correctly.
Dan Gohman246b2562007-10-22 18:31:58 +00002585 CondUse->Offset = SE->getMinusSCEV(CondUse->Offset, *CondStride);
Chris Lattner010de252005-08-08 05:28:22 +00002586 CondUse->isUseOfPostIncrementedValue = true;
Evan Cheng1ce75dc2008-07-07 19:51:32 +00002587 Changed = true;
Chris Lattner010de252005-08-08 05:28:22 +00002588}
Nate Begeman16997482005-07-30 00:15:07 +00002589
Devang Patel0f54dcb2007-03-06 21:14:09 +00002590bool LoopStrengthReduce::runOnLoop(Loop *L, LPPassManager &LPM) {
Nate Begemaneaa13852004-10-18 21:08:22 +00002591
Devang Patel0f54dcb2007-03-06 21:14:09 +00002592 LI = &getAnalysis<LoopInfo>();
Devang Patelb7d9dfc2007-06-07 21:42:15 +00002593 DT = &getAnalysis<DominatorTree>();
Devang Patel0f54dcb2007-03-06 21:14:09 +00002594 SE = &getAnalysis<ScalarEvolution>();
2595 TD = &getAnalysis<TargetData>();
2596 UIntPtrTy = TD->getIntPtrType();
Dan Gohman3fea6432008-07-14 17:55:01 +00002597 Changed = false;
Devang Patel0f54dcb2007-03-06 21:14:09 +00002598
Dale Johannesenb0390622008-12-16 22:16:28 +00002599 // Find all uses of induction variables in this loop, and categorize
Nate Begeman16997482005-07-30 00:15:07 +00002600 // them by stride. Start by finding all of the PHI nodes in the header for
2601 // this loop. If they are induction variables, inspect their uses.
Evan Cheng168a66b2007-10-26 23:08:19 +00002602 SmallPtrSet<Instruction*,16> Processed; // Don't reprocess instructions.
Nate Begeman16997482005-07-30 00:15:07 +00002603 for (BasicBlock::iterator I = L->getHeader()->begin(); isa<PHINode>(I); ++I)
Chris Lattner3416e5f2005-08-04 17:40:30 +00002604 AddUsersIfInteresting(I, L, Processed);
Nate Begemaneaa13852004-10-18 21:08:22 +00002605
Evan Cheng1ce75dc2008-07-07 19:51:32 +00002606 if (!IVUsesByStride.empty()) {
Dan Gohman80b0f8c2009-03-09 20:34:59 +00002607#ifndef NDEBUG
2608 DOUT << "\nLSR on \"" << L->getHeader()->getParent()->getNameStart()
2609 << "\" ";
2610 DEBUG(L->dump());
2611#endif
2612
Dan Gohmanf7912df2009-03-09 20:46:50 +00002613 // Sort the StrideOrder so we process larger strides first.
2614 std::stable_sort(StrideOrder.begin(), StrideOrder.end(), StrideCompare());
2615
Evan Cheng1ce75dc2008-07-07 19:51:32 +00002616 // Optimize induction variables. Some indvar uses can be transformed to use
2617 // strides that will be needed for other purposes. A common example of this
2618 // is the exit test for the loop, which can often be rewritten to use the
2619 // computation of some other indvar to decide when to terminate the loop.
2620 OptimizeIndvars(L);
Chris Lattner010de252005-08-08 05:28:22 +00002621
Evan Cheng1ce75dc2008-07-07 19:51:32 +00002622 // FIXME: We can widen subreg IV's here for RISC targets. e.g. instead of
2623 // doing computation in byte values, promote to 32-bit values if safe.
Chris Lattner010de252005-08-08 05:28:22 +00002624
Evan Cheng1ce75dc2008-07-07 19:51:32 +00002625 // FIXME: Attempt to reuse values across multiple IV's. In particular, we
2626 // could have something like "for(i) { foo(i*8); bar(i*16) }", which should
2627 // be codegened as "for (j = 0;; j+=8) { foo(j); bar(j+j); }" on X86/PPC.
2628 // Need to be careful that IV's are all the same type. Only works for
2629 // intptr_t indvars.
Misha Brukmanfd939082005-04-21 23:48:37 +00002630
Evan Cheng1ce75dc2008-07-07 19:51:32 +00002631 // IVsByStride keeps IVs for one particular loop.
2632 assert(IVsByStride.empty() && "Stale entries in IVsByStride?");
Evan Chengd1d6b5c2006-03-16 21:53:05 +00002633
Evan Cheng1ce75dc2008-07-07 19:51:32 +00002634 // Note: this processes each stride/type pair individually. All users
2635 // passed into StrengthReduceStridedIVUsers have the same type AND stride.
2636 // Also, note that we iterate over IVUsesByStride indirectly by using
2637 // StrideOrder. This extra layer of indirection makes the ordering of
2638 // strides deterministic - not dependent on map order.
2639 for (unsigned Stride = 0, e = StrideOrder.size(); Stride != e; ++Stride) {
2640 std::map<SCEVHandle, IVUsersOfOneStride>::iterator SI =
2641 IVUsesByStride.find(StrideOrder[Stride]);
2642 assert(SI != IVUsesByStride.end() && "Stride doesn't exist!");
Dan Gohman9f4ac312009-03-09 20:41:15 +00002643 StrengthReduceStridedIVUsers(SI->first, SI->second, L);
Evan Cheng1ce75dc2008-07-07 19:51:32 +00002644 }
Chris Lattner7305ae22005-10-09 06:20:55 +00002645 }
Nate Begemaneaa13852004-10-18 21:08:22 +00002646
Dan Gohman010ee2d2008-05-21 00:54:12 +00002647 // We're done analyzing this loop; release all the state we built up for it.
2648 CastedPointers.clear();
2649 IVUsesByStride.clear();
2650 IVsByStride.clear();
2651 StrideOrder.clear();
Dale Johannesen2f46bb82009-01-14 02:35:31 +00002652 for (unsigned i=0; i<GEPlist.size(); i++)
2653 SE->deleteValueFromRecords(GEPlist[i]);
2654 GEPlist.clear();
Dan Gohman010ee2d2008-05-21 00:54:12 +00002655
Nate Begemaneaa13852004-10-18 21:08:22 +00002656 // Clean up after ourselves
2657 if (!DeadInsts.empty()) {
Chris Lattnera68d4ca2008-12-01 06:14:28 +00002658 DeleteTriviallyDeadInstructions();
Nate Begemaneaa13852004-10-18 21:08:22 +00002659
Nate Begeman16997482005-07-30 00:15:07 +00002660 BasicBlock::iterator I = L->getHeader()->begin();
Dan Gohmancbfe5bb2008-06-22 20:44:02 +00002661 while (PHINode *PN = dyn_cast<PHINode>(I++)) {
2662 // At this point, we know that we have killed one or more IV users.
Chris Lattnerbfcee362008-12-01 06:11:32 +00002663 // It is worth checking to see if the cannonical indvar is also
Dan Gohmancbfe5bb2008-06-22 20:44:02 +00002664 // dead, so that we can remove it as well.
2665 //
2666 // We can remove a PHI if it is on a cycle in the def-use graph
2667 // where each node in the cycle has degree one, i.e. only one use,
2668 // and is an instruction with no side effects.
2669 //
Nate Begeman16997482005-07-30 00:15:07 +00002670 // FIXME: this needs to eliminate an induction variable even if it's being
2671 // compared against some value to decide loop termination.
Chris Lattnera0d44862008-11-27 23:00:20 +00002672 if (!PN->hasOneUse())
2673 continue;
2674
2675 SmallPtrSet<PHINode *, 4> PHIs;
2676 for (Instruction *J = dyn_cast<Instruction>(*PN->use_begin());
2677 J && J->hasOneUse() && !J->mayWriteToMemory();
2678 J = dyn_cast<Instruction>(*J->use_begin())) {
2679 // If we find the original PHI, we've discovered a cycle.
2680 if (J == PN) {
2681 // Break the cycle and mark the PHI for deletion.
2682 SE->deleteValueFromRecords(PN);
2683 PN->replaceAllUsesWith(UndefValue::get(PN->getType()));
Chris Lattner09fb7da2008-12-01 06:27:41 +00002684 DeadInsts.push_back(PN);
Chris Lattnera0d44862008-11-27 23:00:20 +00002685 Changed = true;
2686 break;
Chris Lattner7e608bb2005-08-02 02:52:02 +00002687 }
Chris Lattnera0d44862008-11-27 23:00:20 +00002688 // If we find a PHI more than once, we're on a cycle that
2689 // won't prove fruitful.
2690 if (isa<PHINode>(J) && !PHIs.insert(cast<PHINode>(J)))
2691 break;
Nate Begeman16997482005-07-30 00:15:07 +00002692 }
Nate Begemaneaa13852004-10-18 21:08:22 +00002693 }
Chris Lattnera68d4ca2008-12-01 06:14:28 +00002694 DeleteTriviallyDeadInstructions();
Nate Begemaneaa13852004-10-18 21:08:22 +00002695 }
Evan Cheng1ce75dc2008-07-07 19:51:32 +00002696 return Changed;
Nate Begemaneaa13852004-10-18 21:08:22 +00002697}