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Nate Begeman36f891b2005-07-30 00:12:19 +00001//===- ScalarEvolutionExpander.cpp - Scalar Evolution Analysis --*- C++ -*-===//
2//
3// 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.
Nate Begeman36f891b2005-07-30 00:12:19 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This file contains the implementation of the scalar evolution expander,
11// which is used to generate the code corresponding to a given scalar evolution
12// expression.
13//
14//===----------------------------------------------------------------------===//
15
Nate Begeman36f891b2005-07-30 00:12:19 +000016#include "llvm/Analysis/ScalarEvolutionExpander.h"
Bill Wendlinge8156192006-12-07 01:30:32 +000017#include "llvm/Analysis/LoopInfo.h"
Dale Johannesen8d50ea72010-03-05 21:12:40 +000018#include "llvm/IntrinsicInst.h"
Owen Anderson76f600b2009-07-06 22:37:39 +000019#include "llvm/LLVMContext.h"
Andrew Trickc5701912011-10-07 23:46:21 +000020#include "llvm/Support/Debug.h"
Dan Gohman5be18e82009-05-19 02:15:55 +000021#include "llvm/Target/TargetData.h"
Andrew Trickee98aa82012-01-07 01:12:09 +000022#include "llvm/Target/TargetLowering.h"
Dan Gohman4d8414f2009-06-13 16:25:49 +000023#include "llvm/ADT/STLExtras.h"
Andrew Trickd152d032011-07-16 00:59:39 +000024
Nate Begeman36f891b2005-07-30 00:12:19 +000025using namespace llvm;
26
Gabor Greif19e5ada2010-07-09 16:42:04 +000027/// ReuseOrCreateCast - Arrange for there to be a cast of V to Ty at IP,
Dan Gohman485c43f2010-06-19 13:25:23 +000028/// reusing an existing cast if a suitable one exists, moving an existing
29/// cast if a suitable one exists but isn't in the right place, or
Gabor Greif19e5ada2010-07-09 16:42:04 +000030/// creating a new one.
Chris Lattnerdb125cf2011-07-18 04:54:35 +000031Value *SCEVExpander::ReuseOrCreateCast(Value *V, Type *Ty,
Dan Gohman485c43f2010-06-19 13:25:23 +000032 Instruction::CastOps Op,
33 BasicBlock::iterator IP) {
Rafael Espindola919a5032012-02-22 03:21:39 +000034 // This function must be called with the builder having a valid insertion
35 // point. It doesn't need to be the actual IP where the uses of the returned
36 // cast will be added, but it must dominate such IP.
37 // We use this precondition to assert that we can produce a cast that will
38 // dominate all its uses. In particular, this is crussial for the case
39 // where the builder's insertion point *is* the point where we were asked
40 // to put the cast.
41 // Since we don't know the the builder's insertion point is actually
42 // where the uses will be added (only that it dominates it), we are
43 // not allowed to move it.
44 BasicBlock::iterator BIP = Builder.GetInsertPoint();
45
46 // FIXME: enable once our implementation of dominates is fixed.
47 // assert(BIP == IP || SE.DT->dominates(IP, BIP));
Rafael Espindolaef4c80e2012-02-18 17:22:58 +000048
Dan Gohman485c43f2010-06-19 13:25:23 +000049 // Check to see if there is already a cast!
50 for (Value::use_iterator UI = V->use_begin(), E = V->use_end();
Gabor Greiff64f9cf2010-07-09 16:39:02 +000051 UI != E; ++UI) {
52 User *U = *UI;
53 if (U->getType() == Ty)
Gabor Greif19e5ada2010-07-09 16:42:04 +000054 if (CastInst *CI = dyn_cast<CastInst>(U))
Dan Gohman485c43f2010-06-19 13:25:23 +000055 if (CI->getOpcode() == Op) {
Rafael Espindola919a5032012-02-22 03:21:39 +000056 // If the cast isn't where we want it or if it doesn't dominate
57 // a use in BIP, fix it.
58 if (BasicBlock::iterator(CI) != IP || BIP == IP) {
Dan Gohman485c43f2010-06-19 13:25:23 +000059 // Create a new cast, and leave the old cast in place in case
60 // it is being used as an insert point. Clear its operand
61 // so that it doesn't hold anything live.
62 Instruction *NewCI = CastInst::Create(Op, V, Ty, "", IP);
63 NewCI->takeName(CI);
64 CI->replaceAllUsesWith(NewCI);
65 CI->setOperand(0, UndefValue::get(V->getType()));
66 rememberInstruction(NewCI);
67 return NewCI;
68 }
Dan Gohman6f5fed22010-06-19 22:50:35 +000069 rememberInstruction(CI);
Dan Gohman485c43f2010-06-19 13:25:23 +000070 return CI;
71 }
Gabor Greiff64f9cf2010-07-09 16:39:02 +000072 }
Dan Gohman485c43f2010-06-19 13:25:23 +000073
74 // Create a new cast.
75 Instruction *I = CastInst::Create(Op, V, Ty, V->getName(), IP);
76 rememberInstruction(I);
77 return I;
78}
79
Dan Gohman267a3852009-06-27 21:18:18 +000080/// InsertNoopCastOfTo - Insert a cast of V to the specified type,
81/// which must be possible with a noop cast, doing what we can to share
82/// the casts.
Chris Lattnerdb125cf2011-07-18 04:54:35 +000083Value *SCEVExpander::InsertNoopCastOfTo(Value *V, Type *Ty) {
Dan Gohman267a3852009-06-27 21:18:18 +000084 Instruction::CastOps Op = CastInst::getCastOpcode(V, false, Ty, false);
85 assert((Op == Instruction::BitCast ||
86 Op == Instruction::PtrToInt ||
87 Op == Instruction::IntToPtr) &&
88 "InsertNoopCastOfTo cannot perform non-noop casts!");
89 assert(SE.getTypeSizeInBits(V->getType()) == SE.getTypeSizeInBits(Ty) &&
90 "InsertNoopCastOfTo cannot change sizes!");
91
Dan Gohman2d1be872009-04-16 03:18:22 +000092 // Short-circuit unnecessary bitcasts.
Andrew Trick19154f42011-12-14 22:07:19 +000093 if (Op == Instruction::BitCast) {
94 if (V->getType() == Ty)
95 return V;
96 if (CastInst *CI = dyn_cast<CastInst>(V)) {
97 if (CI->getOperand(0)->getType() == Ty)
98 return CI->getOperand(0);
99 }
100 }
Dan Gohmanf04fa482009-04-16 15:52:57 +0000101 // Short-circuit unnecessary inttoptr<->ptrtoint casts.
Dan Gohman267a3852009-06-27 21:18:18 +0000102 if ((Op == Instruction::PtrToInt || Op == Instruction::IntToPtr) &&
Dan Gohman80dcdee2009-05-01 17:00:00 +0000103 SE.getTypeSizeInBits(Ty) == SE.getTypeSizeInBits(V->getType())) {
Dan Gohmanaf79fb52009-04-21 01:07:12 +0000104 if (CastInst *CI = dyn_cast<CastInst>(V))
105 if ((CI->getOpcode() == Instruction::PtrToInt ||
106 CI->getOpcode() == Instruction::IntToPtr) &&
107 SE.getTypeSizeInBits(CI->getType()) ==
108 SE.getTypeSizeInBits(CI->getOperand(0)->getType()))
109 return CI->getOperand(0);
Dan Gohman80dcdee2009-05-01 17:00:00 +0000110 if (ConstantExpr *CE = dyn_cast<ConstantExpr>(V))
111 if ((CE->getOpcode() == Instruction::PtrToInt ||
112 CE->getOpcode() == Instruction::IntToPtr) &&
113 SE.getTypeSizeInBits(CE->getType()) ==
114 SE.getTypeSizeInBits(CE->getOperand(0)->getType()))
115 return CE->getOperand(0);
116 }
Dan Gohmanf04fa482009-04-16 15:52:57 +0000117
Dan Gohman485c43f2010-06-19 13:25:23 +0000118 // Fold a cast of a constant.
Chris Lattnerca1a4be2006-02-04 09:51:53 +0000119 if (Constant *C = dyn_cast<Constant>(V))
Owen Andersonbaf3c402009-07-29 18:55:55 +0000120 return ConstantExpr::getCast(Op, C, Ty);
Dan Gohman4c0d5d52009-08-20 16:42:55 +0000121
Dan Gohman485c43f2010-06-19 13:25:23 +0000122 // Cast the argument at the beginning of the entry block, after
123 // any bitcasts of other arguments.
Chris Lattnerca1a4be2006-02-04 09:51:53 +0000124 if (Argument *A = dyn_cast<Argument>(V)) {
Dan Gohman485c43f2010-06-19 13:25:23 +0000125 BasicBlock::iterator IP = A->getParent()->getEntryBlock().begin();
126 while ((isa<BitCastInst>(IP) &&
127 isa<Argument>(cast<BitCastInst>(IP)->getOperand(0)) &&
128 cast<BitCastInst>(IP)->getOperand(0) != A) ||
Bill Wendlinga4c86ab2011-08-24 21:06:46 +0000129 isa<DbgInfoIntrinsic>(IP) ||
130 isa<LandingPadInst>(IP))
Dan Gohman485c43f2010-06-19 13:25:23 +0000131 ++IP;
132 return ReuseOrCreateCast(A, Ty, Op, IP);
Chris Lattnerca1a4be2006-02-04 09:51:53 +0000133 }
Wojciech Matyjewicz39131872008-02-09 18:30:13 +0000134
Dan Gohman485c43f2010-06-19 13:25:23 +0000135 // Cast the instruction immediately after the instruction.
Chris Lattnerca1a4be2006-02-04 09:51:53 +0000136 Instruction *I = cast<Instruction>(V);
Chris Lattnerca1a4be2006-02-04 09:51:53 +0000137 BasicBlock::iterator IP = I; ++IP;
138 if (InvokeInst *II = dyn_cast<InvokeInst>(I))
139 IP = II->getNormalDest()->begin();
Rafael Espindolaef4c80e2012-02-18 17:22:58 +0000140 while (isa<PHINode>(IP) || isa<LandingPadInst>(IP))
Bill Wendlinga4c86ab2011-08-24 21:06:46 +0000141 ++IP;
Dan Gohman485c43f2010-06-19 13:25:23 +0000142 return ReuseOrCreateCast(I, Ty, Op, IP);
Chris Lattnerca1a4be2006-02-04 09:51:53 +0000143}
144
Chris Lattner7fec90e2007-04-13 05:04:18 +0000145/// InsertBinop - Insert the specified binary operator, doing a small amount
146/// of work to avoid inserting an obviously redundant operation.
Dan Gohman267a3852009-06-27 21:18:18 +0000147Value *SCEVExpander::InsertBinop(Instruction::BinaryOps Opcode,
148 Value *LHS, Value *RHS) {
Dan Gohman0f0eb182007-06-15 19:21:55 +0000149 // Fold a binop with constant operands.
150 if (Constant *CLHS = dyn_cast<Constant>(LHS))
151 if (Constant *CRHS = dyn_cast<Constant>(RHS))
Owen Andersonbaf3c402009-07-29 18:55:55 +0000152 return ConstantExpr::get(Opcode, CLHS, CRHS);
Dan Gohman0f0eb182007-06-15 19:21:55 +0000153
Chris Lattner7fec90e2007-04-13 05:04:18 +0000154 // Do a quick scan to see if we have this binop nearby. If so, reuse it.
155 unsigned ScanLimit = 6;
Dan Gohman267a3852009-06-27 21:18:18 +0000156 BasicBlock::iterator BlockBegin = Builder.GetInsertBlock()->begin();
157 // Scanning starts from the last instruction before the insertion point.
158 BasicBlock::iterator IP = Builder.GetInsertPoint();
159 if (IP != BlockBegin) {
Wojciech Matyjewicz8a087692008-06-15 19:07:39 +0000160 --IP;
161 for (; ScanLimit; --IP, --ScanLimit) {
Dale Johannesen8d50ea72010-03-05 21:12:40 +0000162 // Don't count dbg.value against the ScanLimit, to avoid perturbing the
163 // generated code.
164 if (isa<DbgInfoIntrinsic>(IP))
165 ScanLimit++;
Dan Gohman5be18e82009-05-19 02:15:55 +0000166 if (IP->getOpcode() == (unsigned)Opcode && IP->getOperand(0) == LHS &&
167 IP->getOperand(1) == RHS)
168 return IP;
Wojciech Matyjewicz8a087692008-06-15 19:07:39 +0000169 if (IP == BlockBegin) break;
170 }
Chris Lattner7fec90e2007-04-13 05:04:18 +0000171 }
Dan Gohman267a3852009-06-27 21:18:18 +0000172
Dan Gohman087bd1e2010-03-03 05:29:13 +0000173 // Save the original insertion point so we can restore it when we're done.
174 BasicBlock *SaveInsertBB = Builder.GetInsertBlock();
175 BasicBlock::iterator SaveInsertPt = Builder.GetInsertPoint();
176
177 // Move the insertion point out of as many loops as we can.
178 while (const Loop *L = SE.LI->getLoopFor(Builder.GetInsertBlock())) {
179 if (!L->isLoopInvariant(LHS) || !L->isLoopInvariant(RHS)) break;
180 BasicBlock *Preheader = L->getLoopPreheader();
181 if (!Preheader) break;
182
183 // Ok, move up a level.
184 Builder.SetInsertPoint(Preheader, Preheader->getTerminator());
185 }
186
Wojciech Matyjewicz8a087692008-06-15 19:07:39 +0000187 // If we haven't found this binop, insert it.
Benjamin Kramera9390a42011-09-27 20:39:19 +0000188 Instruction *BO = cast<Instruction>(Builder.CreateBinOp(Opcode, LHS, RHS));
Devang Pateldf3ad662011-06-22 20:56:56 +0000189 BO->setDebugLoc(SaveInsertPt->getDebugLoc());
Dan Gohmana10756e2010-01-21 02:09:26 +0000190 rememberInstruction(BO);
Dan Gohman087bd1e2010-03-03 05:29:13 +0000191
192 // Restore the original insert point.
193 if (SaveInsertBB)
194 restoreInsertPoint(SaveInsertBB, SaveInsertPt);
195
Dan Gohmancf5ab822009-05-01 17:13:31 +0000196 return BO;
Chris Lattner7fec90e2007-04-13 05:04:18 +0000197}
198
Dan Gohman4a4f7672009-05-27 02:00:53 +0000199/// FactorOutConstant - Test if S is divisible by Factor, using signed
Dan Gohman453aa4f2009-05-24 18:06:31 +0000200/// division. If so, update S with Factor divided out and return true.
Dan Gohman3f46a3a2010-03-01 17:49:51 +0000201/// S need not be evenly divisible if a reasonable remainder can be
Dan Gohman4a4f7672009-05-27 02:00:53 +0000202/// computed.
Dan Gohman453aa4f2009-05-24 18:06:31 +0000203/// TODO: When ScalarEvolution gets a SCEVSDivExpr, this can be made
204/// unnecessary; in its place, just signed-divide Ops[i] by the scale and
205/// check to see if the divide was folded.
Dan Gohman0bba49c2009-07-07 17:06:11 +0000206static bool FactorOutConstant(const SCEV *&S,
207 const SCEV *&Remainder,
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000208 const SCEV *Factor,
209 ScalarEvolution &SE,
210 const TargetData *TD) {
Dan Gohman453aa4f2009-05-24 18:06:31 +0000211 // Everything is divisible by one.
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000212 if (Factor->isOne())
Dan Gohman453aa4f2009-05-24 18:06:31 +0000213 return true;
214
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000215 // x/x == 1.
216 if (S == Factor) {
Dan Gohmandeff6212010-05-03 22:09:21 +0000217 S = SE.getConstant(S->getType(), 1);
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000218 return true;
219 }
220
Dan Gohman453aa4f2009-05-24 18:06:31 +0000221 // For a Constant, check for a multiple of the given factor.
Dan Gohman4a4f7672009-05-27 02:00:53 +0000222 if (const SCEVConstant *C = dyn_cast<SCEVConstant>(S)) {
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000223 // 0/x == 0.
224 if (C->isZero())
Dan Gohman453aa4f2009-05-24 18:06:31 +0000225 return true;
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000226 // Check for divisibility.
227 if (const SCEVConstant *FC = dyn_cast<SCEVConstant>(Factor)) {
228 ConstantInt *CI =
229 ConstantInt::get(SE.getContext(),
230 C->getValue()->getValue().sdiv(
231 FC->getValue()->getValue()));
232 // If the quotient is zero and the remainder is non-zero, reject
233 // the value at this scale. It will be considered for subsequent
234 // smaller scales.
235 if (!CI->isZero()) {
236 const SCEV *Div = SE.getConstant(CI);
237 S = Div;
238 Remainder =
239 SE.getAddExpr(Remainder,
240 SE.getConstant(C->getValue()->getValue().srem(
241 FC->getValue()->getValue())));
242 return true;
243 }
Dan Gohman453aa4f2009-05-24 18:06:31 +0000244 }
Dan Gohman4a4f7672009-05-27 02:00:53 +0000245 }
Dan Gohman453aa4f2009-05-24 18:06:31 +0000246
247 // In a Mul, check if there is a constant operand which is a multiple
248 // of the given factor.
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000249 if (const SCEVMulExpr *M = dyn_cast<SCEVMulExpr>(S)) {
250 if (TD) {
251 // With TargetData, the size is known. Check if there is a constant
252 // operand which is a multiple of the given factor. If so, we can
253 // factor it.
254 const SCEVConstant *FC = cast<SCEVConstant>(Factor);
255 if (const SCEVConstant *C = dyn_cast<SCEVConstant>(M->getOperand(0)))
256 if (!C->getValue()->getValue().srem(FC->getValue()->getValue())) {
Dan Gohmanf9e64722010-03-18 01:17:13 +0000257 SmallVector<const SCEV *, 4> NewMulOps(M->op_begin(), M->op_end());
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000258 NewMulOps[0] =
259 SE.getConstant(C->getValue()->getValue().sdiv(
260 FC->getValue()->getValue()));
261 S = SE.getMulExpr(NewMulOps);
262 return true;
263 }
264 } else {
265 // Without TargetData, check if Factor can be factored out of any of the
266 // Mul's operands. If so, we can just remove it.
267 for (unsigned i = 0, e = M->getNumOperands(); i != e; ++i) {
268 const SCEV *SOp = M->getOperand(i);
Dan Gohmandeff6212010-05-03 22:09:21 +0000269 const SCEV *Remainder = SE.getConstant(SOp->getType(), 0);
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000270 if (FactorOutConstant(SOp, Remainder, Factor, SE, TD) &&
271 Remainder->isZero()) {
Dan Gohmanf9e64722010-03-18 01:17:13 +0000272 SmallVector<const SCEV *, 4> NewMulOps(M->op_begin(), M->op_end());
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000273 NewMulOps[i] = SOp;
274 S = SE.getMulExpr(NewMulOps);
275 return true;
276 }
Dan Gohman453aa4f2009-05-24 18:06:31 +0000277 }
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000278 }
279 }
Dan Gohman453aa4f2009-05-24 18:06:31 +0000280
281 // In an AddRec, check if both start and step are divisible.
282 if (const SCEVAddRecExpr *A = dyn_cast<SCEVAddRecExpr>(S)) {
Dan Gohman0bba49c2009-07-07 17:06:11 +0000283 const SCEV *Step = A->getStepRecurrence(SE);
Dan Gohmandeff6212010-05-03 22:09:21 +0000284 const SCEV *StepRem = SE.getConstant(Step->getType(), 0);
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000285 if (!FactorOutConstant(Step, StepRem, Factor, SE, TD))
Dan Gohman4a4f7672009-05-27 02:00:53 +0000286 return false;
287 if (!StepRem->isZero())
288 return false;
Dan Gohman0bba49c2009-07-07 17:06:11 +0000289 const SCEV *Start = A->getStart();
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000290 if (!FactorOutConstant(Start, Remainder, Factor, SE, TD))
Dan Gohman453aa4f2009-05-24 18:06:31 +0000291 return false;
Andrew Trick3228cc22011-03-14 16:50:06 +0000292 // FIXME: can use A->getNoWrapFlags(FlagNW)
293 S = SE.getAddRecExpr(Start, Step, A->getLoop(), SCEV::FlagAnyWrap);
Dan Gohman453aa4f2009-05-24 18:06:31 +0000294 return true;
295 }
296
297 return false;
298}
299
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000300/// SimplifyAddOperands - Sort and simplify a list of add operands. NumAddRecs
301/// is the number of SCEVAddRecExprs present, which are kept at the end of
302/// the list.
303///
304static void SimplifyAddOperands(SmallVectorImpl<const SCEV *> &Ops,
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000305 Type *Ty,
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000306 ScalarEvolution &SE) {
307 unsigned NumAddRecs = 0;
308 for (unsigned i = Ops.size(); i > 0 && isa<SCEVAddRecExpr>(Ops[i-1]); --i)
309 ++NumAddRecs;
310 // Group Ops into non-addrecs and addrecs.
311 SmallVector<const SCEV *, 8> NoAddRecs(Ops.begin(), Ops.end() - NumAddRecs);
312 SmallVector<const SCEV *, 8> AddRecs(Ops.end() - NumAddRecs, Ops.end());
313 // Let ScalarEvolution sort and simplify the non-addrecs list.
314 const SCEV *Sum = NoAddRecs.empty() ?
Dan Gohmandeff6212010-05-03 22:09:21 +0000315 SE.getConstant(Ty, 0) :
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000316 SE.getAddExpr(NoAddRecs);
317 // If it returned an add, use the operands. Otherwise it simplified
318 // the sum into a single value, so just use that.
Dan Gohmanf9e64722010-03-18 01:17:13 +0000319 Ops.clear();
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000320 if (const SCEVAddExpr *Add = dyn_cast<SCEVAddExpr>(Sum))
Dan Gohman403a8cd2010-06-21 19:47:52 +0000321 Ops.append(Add->op_begin(), Add->op_end());
Dan Gohmanf9e64722010-03-18 01:17:13 +0000322 else if (!Sum->isZero())
323 Ops.push_back(Sum);
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000324 // Then append the addrecs.
Dan Gohman403a8cd2010-06-21 19:47:52 +0000325 Ops.append(AddRecs.begin(), AddRecs.end());
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000326}
327
328/// SplitAddRecs - Flatten a list of add operands, moving addrec start values
329/// out to the top level. For example, convert {a + b,+,c} to a, b, {0,+,d}.
330/// This helps expose more opportunities for folding parts of the expressions
331/// into GEP indices.
332///
333static void SplitAddRecs(SmallVectorImpl<const SCEV *> &Ops,
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000334 Type *Ty,
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000335 ScalarEvolution &SE) {
336 // Find the addrecs.
337 SmallVector<const SCEV *, 8> AddRecs;
338 for (unsigned i = 0, e = Ops.size(); i != e; ++i)
339 while (const SCEVAddRecExpr *A = dyn_cast<SCEVAddRecExpr>(Ops[i])) {
340 const SCEV *Start = A->getStart();
341 if (Start->isZero()) break;
Dan Gohmandeff6212010-05-03 22:09:21 +0000342 const SCEV *Zero = SE.getConstant(Ty, 0);
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000343 AddRecs.push_back(SE.getAddRecExpr(Zero,
344 A->getStepRecurrence(SE),
Andrew Trick3228cc22011-03-14 16:50:06 +0000345 A->getLoop(),
346 // FIXME: A->getNoWrapFlags(FlagNW)
347 SCEV::FlagAnyWrap));
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000348 if (const SCEVAddExpr *Add = dyn_cast<SCEVAddExpr>(Start)) {
349 Ops[i] = Zero;
Dan Gohman403a8cd2010-06-21 19:47:52 +0000350 Ops.append(Add->op_begin(), Add->op_end());
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000351 e += Add->getNumOperands();
352 } else {
353 Ops[i] = Start;
354 }
355 }
356 if (!AddRecs.empty()) {
357 // Add the addrecs onto the end of the list.
Dan Gohman403a8cd2010-06-21 19:47:52 +0000358 Ops.append(AddRecs.begin(), AddRecs.end());
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000359 // Resort the operand list, moving any constants to the front.
360 SimplifyAddOperands(Ops, Ty, SE);
361 }
362}
363
Dan Gohman4c0d5d52009-08-20 16:42:55 +0000364/// expandAddToGEP - Expand an addition expression with a pointer type into
365/// a GEP instead of using ptrtoint+arithmetic+inttoptr. This helps
366/// BasicAliasAnalysis and other passes analyze the result. See the rules
367/// for getelementptr vs. inttoptr in
368/// http://llvm.org/docs/LangRef.html#pointeraliasing
369/// for details.
Dan Gohman13c5e352009-07-20 17:44:17 +0000370///
Dan Gohman3abf9052010-01-19 22:26:02 +0000371/// Design note: The correctness of using getelementptr here depends on
Dan Gohman4c0d5d52009-08-20 16:42:55 +0000372/// ScalarEvolution not recognizing inttoptr and ptrtoint operators, as
373/// they may introduce pointer arithmetic which may not be safely converted
374/// into getelementptr.
Dan Gohman453aa4f2009-05-24 18:06:31 +0000375///
376/// Design note: It might seem desirable for this function to be more
377/// loop-aware. If some of the indices are loop-invariant while others
378/// aren't, it might seem desirable to emit multiple GEPs, keeping the
379/// loop-invariant portions of the overall computation outside the loop.
380/// However, there are a few reasons this is not done here. Hoisting simple
381/// arithmetic is a low-level optimization that often isn't very
382/// important until late in the optimization process. In fact, passes
383/// like InstructionCombining will combine GEPs, even if it means
384/// pushing loop-invariant computation down into loops, so even if the
385/// GEPs were split here, the work would quickly be undone. The
386/// LoopStrengthReduction pass, which is usually run quite late (and
387/// after the last InstructionCombining pass), takes care of hoisting
388/// loop-invariant portions of expressions, after considering what
389/// can be folded using target addressing modes.
390///
Dan Gohman0bba49c2009-07-07 17:06:11 +0000391Value *SCEVExpander::expandAddToGEP(const SCEV *const *op_begin,
392 const SCEV *const *op_end,
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000393 PointerType *PTy,
394 Type *Ty,
Dan Gohman5be18e82009-05-19 02:15:55 +0000395 Value *V) {
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000396 Type *ElTy = PTy->getElementType();
Dan Gohman5be18e82009-05-19 02:15:55 +0000397 SmallVector<Value *, 4> GepIndices;
Dan Gohman0bba49c2009-07-07 17:06:11 +0000398 SmallVector<const SCEV *, 8> Ops(op_begin, op_end);
Dan Gohman5be18e82009-05-19 02:15:55 +0000399 bool AnyNonZeroIndices = false;
Dan Gohman5be18e82009-05-19 02:15:55 +0000400
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000401 // Split AddRecs up into parts as either of the parts may be usable
402 // without the other.
403 SplitAddRecs(Ops, Ty, SE);
404
Bob Wilsoneb356992009-12-04 01:33:04 +0000405 // Descend down the pointer's type and attempt to convert the other
Dan Gohman5be18e82009-05-19 02:15:55 +0000406 // operands into GEP indices, at each level. The first index in a GEP
407 // indexes into the array implied by the pointer operand; the rest of
408 // the indices index into the element or field type selected by the
409 // preceding index.
410 for (;;) {
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000411 // If the scale size is not 0, attempt to factor out a scale for
412 // array indexing.
Dan Gohman0bba49c2009-07-07 17:06:11 +0000413 SmallVector<const SCEV *, 8> ScaledOps;
Dan Gohman150dfa82010-01-28 06:32:46 +0000414 if (ElTy->isSized()) {
Dan Gohman4f8eea82010-02-01 18:27:38 +0000415 const SCEV *ElSize = SE.getSizeOfExpr(ElTy);
Dan Gohman150dfa82010-01-28 06:32:46 +0000416 if (!ElSize->isZero()) {
417 SmallVector<const SCEV *, 8> NewOps;
418 for (unsigned i = 0, e = Ops.size(); i != e; ++i) {
419 const SCEV *Op = Ops[i];
Dan Gohmandeff6212010-05-03 22:09:21 +0000420 const SCEV *Remainder = SE.getConstant(Ty, 0);
Dan Gohman150dfa82010-01-28 06:32:46 +0000421 if (FactorOutConstant(Op, Remainder, ElSize, SE, SE.TD)) {
422 // Op now has ElSize factored out.
423 ScaledOps.push_back(Op);
424 if (!Remainder->isZero())
425 NewOps.push_back(Remainder);
426 AnyNonZeroIndices = true;
427 } else {
428 // The operand was not divisible, so add it to the list of operands
429 // we'll scan next iteration.
430 NewOps.push_back(Ops[i]);
431 }
Dan Gohman5be18e82009-05-19 02:15:55 +0000432 }
Dan Gohman150dfa82010-01-28 06:32:46 +0000433 // If we made any changes, update Ops.
434 if (!ScaledOps.empty()) {
435 Ops = NewOps;
436 SimplifyAddOperands(Ops, Ty, SE);
437 }
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000438 }
Dan Gohman5be18e82009-05-19 02:15:55 +0000439 }
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000440
441 // Record the scaled array index for this level of the type. If
442 // we didn't find any operands that could be factored, tentatively
443 // assume that element zero was selected (since the zero offset
444 // would obviously be folded away).
Dan Gohman5be18e82009-05-19 02:15:55 +0000445 Value *Scaled = ScaledOps.empty() ?
Owen Andersona7235ea2009-07-31 20:28:14 +0000446 Constant::getNullValue(Ty) :
Dan Gohman5be18e82009-05-19 02:15:55 +0000447 expandCodeFor(SE.getAddExpr(ScaledOps), Ty);
448 GepIndices.push_back(Scaled);
449
450 // Collect struct field index operands.
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000451 while (StructType *STy = dyn_cast<StructType>(ElTy)) {
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000452 bool FoundFieldNo = false;
453 // An empty struct has no fields.
454 if (STy->getNumElements() == 0) break;
455 if (SE.TD) {
456 // With TargetData, field offsets are known. See if a constant offset
457 // falls within any of the struct fields.
458 if (Ops.empty()) break;
Dan Gohman5be18e82009-05-19 02:15:55 +0000459 if (const SCEVConstant *C = dyn_cast<SCEVConstant>(Ops[0]))
460 if (SE.getTypeSizeInBits(C->getType()) <= 64) {
461 const StructLayout &SL = *SE.TD->getStructLayout(STy);
462 uint64_t FullOffset = C->getValue()->getZExtValue();
463 if (FullOffset < SL.getSizeInBytes()) {
464 unsigned ElIdx = SL.getElementContainingOffset(FullOffset);
Owen Anderson1d0be152009-08-13 21:58:54 +0000465 GepIndices.push_back(
466 ConstantInt::get(Type::getInt32Ty(Ty->getContext()), ElIdx));
Dan Gohman5be18e82009-05-19 02:15:55 +0000467 ElTy = STy->getTypeAtIndex(ElIdx);
468 Ops[0] =
Dan Gohman6de29f82009-06-15 22:12:54 +0000469 SE.getConstant(Ty, FullOffset - SL.getElementOffset(ElIdx));
Dan Gohman5be18e82009-05-19 02:15:55 +0000470 AnyNonZeroIndices = true;
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000471 FoundFieldNo = true;
Dan Gohman5be18e82009-05-19 02:15:55 +0000472 }
473 }
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000474 } else {
Dan Gohman0f5efe52010-01-28 02:15:55 +0000475 // Without TargetData, just check for an offsetof expression of the
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000476 // appropriate struct type.
477 for (unsigned i = 0, e = Ops.size(); i != e; ++i)
Dan Gohman0f5efe52010-01-28 02:15:55 +0000478 if (const SCEVUnknown *U = dyn_cast<SCEVUnknown>(Ops[i])) {
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000479 Type *CTy;
Dan Gohman0f5efe52010-01-28 02:15:55 +0000480 Constant *FieldNo;
Dan Gohman4f8eea82010-02-01 18:27:38 +0000481 if (U->isOffsetOf(CTy, FieldNo) && CTy == STy) {
Dan Gohman0f5efe52010-01-28 02:15:55 +0000482 GepIndices.push_back(FieldNo);
483 ElTy =
484 STy->getTypeAtIndex(cast<ConstantInt>(FieldNo)->getZExtValue());
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000485 Ops[i] = SE.getConstant(Ty, 0);
486 AnyNonZeroIndices = true;
487 FoundFieldNo = true;
488 break;
489 }
Dan Gohman0f5efe52010-01-28 02:15:55 +0000490 }
Dan Gohman5be18e82009-05-19 02:15:55 +0000491 }
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000492 // If no struct field offsets were found, tentatively assume that
493 // field zero was selected (since the zero offset would obviously
494 // be folded away).
495 if (!FoundFieldNo) {
496 ElTy = STy->getTypeAtIndex(0u);
497 GepIndices.push_back(
498 Constant::getNullValue(Type::getInt32Ty(Ty->getContext())));
499 }
Dan Gohman5be18e82009-05-19 02:15:55 +0000500 }
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000501
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000502 if (ArrayType *ATy = dyn_cast<ArrayType>(ElTy))
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000503 ElTy = ATy->getElementType();
504 else
505 break;
Dan Gohman5be18e82009-05-19 02:15:55 +0000506 }
507
Dan Gohman3f46a3a2010-03-01 17:49:51 +0000508 // If none of the operands were convertible to proper GEP indices, cast
Dan Gohman5be18e82009-05-19 02:15:55 +0000509 // the base to i8* and do an ugly getelementptr with that. It's still
510 // better than ptrtoint+arithmetic+inttoptr at least.
511 if (!AnyNonZeroIndices) {
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000512 // Cast the base to i8*.
Dan Gohman5be18e82009-05-19 02:15:55 +0000513 V = InsertNoopCastOfTo(V,
Duncan Sandsac53a0b2009-10-06 15:40:36 +0000514 Type::getInt8PtrTy(Ty->getContext(), PTy->getAddressSpace()));
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000515
Rafael Espindola705b48d2012-02-21 03:51:14 +0000516 assert(!isa<Instruction>(V) ||
517 SE.DT->properlyDominates(cast<Instruction>(V),
Rafael Espindola161fb5d2012-02-21 03:48:30 +0000518 Builder.GetInsertPoint()));
Rafael Espindola4b045782012-02-21 01:19:51 +0000519
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000520 // Expand the operands for a plain byte offset.
Dan Gohman92fcdca2009-06-09 17:18:38 +0000521 Value *Idx = expandCodeFor(SE.getAddExpr(Ops), Ty);
Dan Gohman5be18e82009-05-19 02:15:55 +0000522
523 // Fold a GEP with constant operands.
524 if (Constant *CLHS = dyn_cast<Constant>(V))
525 if (Constant *CRHS = dyn_cast<Constant>(Idx))
Jay Foaddab3d292011-07-21 14:31:17 +0000526 return ConstantExpr::getGetElementPtr(CLHS, CRHS);
Dan Gohman5be18e82009-05-19 02:15:55 +0000527
528 // Do a quick scan to see if we have this GEP nearby. If so, reuse it.
529 unsigned ScanLimit = 6;
Dan Gohman267a3852009-06-27 21:18:18 +0000530 BasicBlock::iterator BlockBegin = Builder.GetInsertBlock()->begin();
531 // Scanning starts from the last instruction before the insertion point.
532 BasicBlock::iterator IP = Builder.GetInsertPoint();
533 if (IP != BlockBegin) {
Dan Gohman5be18e82009-05-19 02:15:55 +0000534 --IP;
535 for (; ScanLimit; --IP, --ScanLimit) {
Dale Johannesen8d50ea72010-03-05 21:12:40 +0000536 // Don't count dbg.value against the ScanLimit, to avoid perturbing the
537 // generated code.
538 if (isa<DbgInfoIntrinsic>(IP))
539 ScanLimit++;
Dan Gohman5be18e82009-05-19 02:15:55 +0000540 if (IP->getOpcode() == Instruction::GetElementPtr &&
541 IP->getOperand(0) == V && IP->getOperand(1) == Idx)
542 return IP;
543 if (IP == BlockBegin) break;
544 }
545 }
546
Dan Gohman087bd1e2010-03-03 05:29:13 +0000547 // Save the original insertion point so we can restore it when we're done.
548 BasicBlock *SaveInsertBB = Builder.GetInsertBlock();
549 BasicBlock::iterator SaveInsertPt = Builder.GetInsertPoint();
550
551 // Move the insertion point out of as many loops as we can.
552 while (const Loop *L = SE.LI->getLoopFor(Builder.GetInsertBlock())) {
553 if (!L->isLoopInvariant(V) || !L->isLoopInvariant(Idx)) break;
554 BasicBlock *Preheader = L->getLoopPreheader();
555 if (!Preheader) break;
556
557 // Ok, move up a level.
558 Builder.SetInsertPoint(Preheader, Preheader->getTerminator());
559 }
560
Dan Gohmanc40f17b2009-08-18 16:46:41 +0000561 // Emit a GEP.
562 Value *GEP = Builder.CreateGEP(V, Idx, "uglygep");
Dan Gohmana10756e2010-01-21 02:09:26 +0000563 rememberInstruction(GEP);
Dan Gohman087bd1e2010-03-03 05:29:13 +0000564
565 // Restore the original insert point.
566 if (SaveInsertBB)
567 restoreInsertPoint(SaveInsertBB, SaveInsertPt);
568
Dan Gohman5be18e82009-05-19 02:15:55 +0000569 return GEP;
570 }
571
Dan Gohman087bd1e2010-03-03 05:29:13 +0000572 // Save the original insertion point so we can restore it when we're done.
573 BasicBlock *SaveInsertBB = Builder.GetInsertBlock();
574 BasicBlock::iterator SaveInsertPt = Builder.GetInsertPoint();
575
576 // Move the insertion point out of as many loops as we can.
577 while (const Loop *L = SE.LI->getLoopFor(Builder.GetInsertBlock())) {
578 if (!L->isLoopInvariant(V)) break;
579
580 bool AnyIndexNotLoopInvariant = false;
581 for (SmallVectorImpl<Value *>::const_iterator I = GepIndices.begin(),
582 E = GepIndices.end(); I != E; ++I)
583 if (!L->isLoopInvariant(*I)) {
584 AnyIndexNotLoopInvariant = true;
585 break;
586 }
587 if (AnyIndexNotLoopInvariant)
588 break;
589
590 BasicBlock *Preheader = L->getLoopPreheader();
591 if (!Preheader) break;
592
593 // Ok, move up a level.
594 Builder.SetInsertPoint(Preheader, Preheader->getTerminator());
595 }
596
Dan Gohmand6aa02d2009-07-28 01:40:03 +0000597 // Insert a pretty getelementptr. Note that this GEP is not marked inbounds,
598 // because ScalarEvolution may have changed the address arithmetic to
599 // compute a value which is beyond the end of the allocated object.
Dan Gohmana10756e2010-01-21 02:09:26 +0000600 Value *Casted = V;
601 if (V->getType() != PTy)
602 Casted = InsertNoopCastOfTo(Casted, PTy);
603 Value *GEP = Builder.CreateGEP(Casted,
Jay Foad0a2a60a2011-07-22 08:16:57 +0000604 GepIndices,
Dan Gohman267a3852009-06-27 21:18:18 +0000605 "scevgep");
Dan Gohman5be18e82009-05-19 02:15:55 +0000606 Ops.push_back(SE.getUnknown(GEP));
Dan Gohmana10756e2010-01-21 02:09:26 +0000607 rememberInstruction(GEP);
Dan Gohman087bd1e2010-03-03 05:29:13 +0000608
609 // Restore the original insert point.
610 if (SaveInsertBB)
611 restoreInsertPoint(SaveInsertBB, SaveInsertPt);
612
Dan Gohman5be18e82009-05-19 02:15:55 +0000613 return expand(SE.getAddExpr(Ops));
614}
615
Dan Gohman087bd1e2010-03-03 05:29:13 +0000616/// PickMostRelevantLoop - Given two loops pick the one that's most relevant for
617/// SCEV expansion. If they are nested, this is the most nested. If they are
618/// neighboring, pick the later.
619static const Loop *PickMostRelevantLoop(const Loop *A, const Loop *B,
620 DominatorTree &DT) {
621 if (!A) return B;
622 if (!B) return A;
623 if (A->contains(B)) return B;
624 if (B->contains(A)) return A;
625 if (DT.dominates(A->getHeader(), B->getHeader())) return B;
626 if (DT.dominates(B->getHeader(), A->getHeader())) return A;
627 return A; // Arbitrarily break the tie.
628}
629
Dan Gohman9c9fcfc2010-11-18 00:34:22 +0000630/// getRelevantLoop - Get the most relevant loop associated with the given
Dan Gohman087bd1e2010-03-03 05:29:13 +0000631/// expression, according to PickMostRelevantLoop.
Dan Gohman9c9fcfc2010-11-18 00:34:22 +0000632const Loop *SCEVExpander::getRelevantLoop(const SCEV *S) {
633 // Test whether we've already computed the most relevant loop for this SCEV.
634 std::pair<DenseMap<const SCEV *, const Loop *>::iterator, bool> Pair =
635 RelevantLoops.insert(std::make_pair(S, static_cast<const Loop *>(0)));
636 if (!Pair.second)
637 return Pair.first->second;
638
Dan Gohman087bd1e2010-03-03 05:29:13 +0000639 if (isa<SCEVConstant>(S))
Dan Gohman9c9fcfc2010-11-18 00:34:22 +0000640 // A constant has no relevant loops.
Dan Gohman087bd1e2010-03-03 05:29:13 +0000641 return 0;
642 if (const SCEVUnknown *U = dyn_cast<SCEVUnknown>(S)) {
643 if (const Instruction *I = dyn_cast<Instruction>(U->getValue()))
Dan Gohman9c9fcfc2010-11-18 00:34:22 +0000644 return Pair.first->second = SE.LI->getLoopFor(I->getParent());
645 // A non-instruction has no relevant loops.
Dan Gohman087bd1e2010-03-03 05:29:13 +0000646 return 0;
647 }
648 if (const SCEVNAryExpr *N = dyn_cast<SCEVNAryExpr>(S)) {
649 const Loop *L = 0;
650 if (const SCEVAddRecExpr *AR = dyn_cast<SCEVAddRecExpr>(S))
651 L = AR->getLoop();
652 for (SCEVNAryExpr::op_iterator I = N->op_begin(), E = N->op_end();
653 I != E; ++I)
Dan Gohman9c9fcfc2010-11-18 00:34:22 +0000654 L = PickMostRelevantLoop(L, getRelevantLoop(*I), *SE.DT);
655 return RelevantLoops[N] = L;
Dan Gohman087bd1e2010-03-03 05:29:13 +0000656 }
Dan Gohman9c9fcfc2010-11-18 00:34:22 +0000657 if (const SCEVCastExpr *C = dyn_cast<SCEVCastExpr>(S)) {
658 const Loop *Result = getRelevantLoop(C->getOperand());
659 return RelevantLoops[C] = Result;
660 }
661 if (const SCEVUDivExpr *D = dyn_cast<SCEVUDivExpr>(S)) {
662 const Loop *Result =
663 PickMostRelevantLoop(getRelevantLoop(D->getLHS()),
664 getRelevantLoop(D->getRHS()),
665 *SE.DT);
666 return RelevantLoops[D] = Result;
667 }
Dan Gohman087bd1e2010-03-03 05:29:13 +0000668 llvm_unreachable("Unexpected SCEV type!");
669}
670
Dan Gohmanb3579832010-04-15 17:08:50 +0000671namespace {
672
Dan Gohman087bd1e2010-03-03 05:29:13 +0000673/// LoopCompare - Compare loops by PickMostRelevantLoop.
674class LoopCompare {
675 DominatorTree &DT;
676public:
677 explicit LoopCompare(DominatorTree &dt) : DT(dt) {}
678
679 bool operator()(std::pair<const Loop *, const SCEV *> LHS,
680 std::pair<const Loop *, const SCEV *> RHS) const {
Dan Gohmanbb5d9272010-07-15 23:38:13 +0000681 // Keep pointer operands sorted at the end.
682 if (LHS.second->getType()->isPointerTy() !=
683 RHS.second->getType()->isPointerTy())
684 return LHS.second->getType()->isPointerTy();
685
Dan Gohman087bd1e2010-03-03 05:29:13 +0000686 // Compare loops with PickMostRelevantLoop.
687 if (LHS.first != RHS.first)
688 return PickMostRelevantLoop(LHS.first, RHS.first, DT) != LHS.first;
689
690 // If one operand is a non-constant negative and the other is not,
691 // put the non-constant negative on the right so that a sub can
692 // be used instead of a negate and add.
Andrew Trickf8fd8412012-01-07 00:27:31 +0000693 if (LHS.second->isNonConstantNegative()) {
694 if (!RHS.second->isNonConstantNegative())
Dan Gohman087bd1e2010-03-03 05:29:13 +0000695 return false;
Andrew Trickf8fd8412012-01-07 00:27:31 +0000696 } else if (RHS.second->isNonConstantNegative())
Dan Gohman087bd1e2010-03-03 05:29:13 +0000697 return true;
698
699 // Otherwise they are equivalent according to this comparison.
700 return false;
701 }
702};
703
Dan Gohmanb3579832010-04-15 17:08:50 +0000704}
705
Dan Gohman890f92b2009-04-18 17:56:28 +0000706Value *SCEVExpander::visitAddExpr(const SCEVAddExpr *S) {
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000707 Type *Ty = SE.getEffectiveSCEVType(S->getType());
Dan Gohmanc70c3772009-09-26 16:11:57 +0000708
Dan Gohman087bd1e2010-03-03 05:29:13 +0000709 // Collect all the add operands in a loop, along with their associated loops.
710 // Iterate in reverse so that constants are emitted last, all else equal, and
711 // so that pointer operands are inserted first, which the code below relies on
712 // to form more involved GEPs.
713 SmallVector<std::pair<const Loop *, const SCEV *>, 8> OpsAndLoops;
714 for (std::reverse_iterator<SCEVAddExpr::op_iterator> I(S->op_end()),
715 E(S->op_begin()); I != E; ++I)
Dan Gohman9c9fcfc2010-11-18 00:34:22 +0000716 OpsAndLoops.push_back(std::make_pair(getRelevantLoop(*I), *I));
Dan Gohmanc70c3772009-09-26 16:11:57 +0000717
Dan Gohman087bd1e2010-03-03 05:29:13 +0000718 // Sort by loop. Use a stable sort so that constants follow non-constants and
719 // pointer operands precede non-pointer operands.
720 std::stable_sort(OpsAndLoops.begin(), OpsAndLoops.end(), LoopCompare(*SE.DT));
Dan Gohman5be18e82009-05-19 02:15:55 +0000721
Dan Gohman087bd1e2010-03-03 05:29:13 +0000722 // Emit instructions to add all the operands. Hoist as much as possible
723 // out of loops, and form meaningful getelementptrs where possible.
724 Value *Sum = 0;
725 for (SmallVectorImpl<std::pair<const Loop *, const SCEV *> >::iterator
726 I = OpsAndLoops.begin(), E = OpsAndLoops.end(); I != E; ) {
727 const Loop *CurLoop = I->first;
728 const SCEV *Op = I->second;
729 if (!Sum) {
730 // This is the first operand. Just expand it.
731 Sum = expand(Op);
732 ++I;
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000733 } else if (PointerType *PTy = dyn_cast<PointerType>(Sum->getType())) {
Dan Gohman087bd1e2010-03-03 05:29:13 +0000734 // The running sum expression is a pointer. Try to form a getelementptr
735 // at this level with that as the base.
736 SmallVector<const SCEV *, 4> NewOps;
Dan Gohmanbb5d9272010-07-15 23:38:13 +0000737 for (; I != E && I->first == CurLoop; ++I) {
738 // If the operand is SCEVUnknown and not instructions, peek through
739 // it, to enable more of it to be folded into the GEP.
740 const SCEV *X = I->second;
741 if (const SCEVUnknown *U = dyn_cast<SCEVUnknown>(X))
742 if (!isa<Instruction>(U->getValue()))
743 X = SE.getSCEV(U->getValue());
744 NewOps.push_back(X);
745 }
Dan Gohman087bd1e2010-03-03 05:29:13 +0000746 Sum = expandAddToGEP(NewOps.begin(), NewOps.end(), PTy, Ty, Sum);
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000747 } else if (PointerType *PTy = dyn_cast<PointerType>(Op->getType())) {
Dan Gohman087bd1e2010-03-03 05:29:13 +0000748 // The running sum is an integer, and there's a pointer at this level.
Dan Gohmanf8d05782010-04-09 19:14:31 +0000749 // Try to form a getelementptr. If the running sum is instructions,
750 // use a SCEVUnknown to avoid re-analyzing them.
Dan Gohman087bd1e2010-03-03 05:29:13 +0000751 SmallVector<const SCEV *, 4> NewOps;
Dan Gohmanf8d05782010-04-09 19:14:31 +0000752 NewOps.push_back(isa<Instruction>(Sum) ? SE.getUnknown(Sum) :
753 SE.getSCEV(Sum));
Dan Gohman087bd1e2010-03-03 05:29:13 +0000754 for (++I; I != E && I->first == CurLoop; ++I)
755 NewOps.push_back(I->second);
756 Sum = expandAddToGEP(NewOps.begin(), NewOps.end(), PTy, Ty, expand(Op));
Andrew Trickf8fd8412012-01-07 00:27:31 +0000757 } else if (Op->isNonConstantNegative()) {
Dan Gohman087bd1e2010-03-03 05:29:13 +0000758 // Instead of doing a negate and add, just do a subtract.
Dan Gohmaned78dba2010-03-03 04:36:42 +0000759 Value *W = expandCodeFor(SE.getNegativeSCEV(Op), Ty);
Dan Gohman087bd1e2010-03-03 05:29:13 +0000760 Sum = InsertNoopCastOfTo(Sum, Ty);
761 Sum = InsertBinop(Instruction::Sub, Sum, W);
762 ++I;
Dan Gohmaned78dba2010-03-03 04:36:42 +0000763 } else {
Dan Gohman087bd1e2010-03-03 05:29:13 +0000764 // A simple add.
Dan Gohmaned78dba2010-03-03 04:36:42 +0000765 Value *W = expandCodeFor(Op, Ty);
Dan Gohman087bd1e2010-03-03 05:29:13 +0000766 Sum = InsertNoopCastOfTo(Sum, Ty);
767 // Canonicalize a constant to the RHS.
768 if (isa<Constant>(Sum)) std::swap(Sum, W);
769 Sum = InsertBinop(Instruction::Add, Sum, W);
770 ++I;
Dan Gohmaned78dba2010-03-03 04:36:42 +0000771 }
772 }
Dan Gohman087bd1e2010-03-03 05:29:13 +0000773
774 return Sum;
Dan Gohmane24fa642008-06-18 16:37:11 +0000775}
Dan Gohman5be18e82009-05-19 02:15:55 +0000776
Dan Gohman890f92b2009-04-18 17:56:28 +0000777Value *SCEVExpander::visitMulExpr(const SCEVMulExpr *S) {
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000778 Type *Ty = SE.getEffectiveSCEVType(S->getType());
Nate Begeman36f891b2005-07-30 00:12:19 +0000779
Dan Gohman087bd1e2010-03-03 05:29:13 +0000780 // Collect all the mul operands in a loop, along with their associated loops.
781 // Iterate in reverse so that constants are emitted last, all else equal.
782 SmallVector<std::pair<const Loop *, const SCEV *>, 8> OpsAndLoops;
783 for (std::reverse_iterator<SCEVMulExpr::op_iterator> I(S->op_end()),
784 E(S->op_begin()); I != E; ++I)
Dan Gohman9c9fcfc2010-11-18 00:34:22 +0000785 OpsAndLoops.push_back(std::make_pair(getRelevantLoop(*I), *I));
Nate Begeman36f891b2005-07-30 00:12:19 +0000786
Dan Gohman087bd1e2010-03-03 05:29:13 +0000787 // Sort by loop. Use a stable sort so that constants follow non-constants.
788 std::stable_sort(OpsAndLoops.begin(), OpsAndLoops.end(), LoopCompare(*SE.DT));
789
790 // Emit instructions to mul all the operands. Hoist as much as possible
791 // out of loops.
792 Value *Prod = 0;
793 for (SmallVectorImpl<std::pair<const Loop *, const SCEV *> >::iterator
794 I = OpsAndLoops.begin(), E = OpsAndLoops.end(); I != E; ) {
795 const SCEV *Op = I->second;
796 if (!Prod) {
797 // This is the first operand. Just expand it.
798 Prod = expand(Op);
799 ++I;
800 } else if (Op->isAllOnesValue()) {
801 // Instead of doing a multiply by negative one, just do a negate.
802 Prod = InsertNoopCastOfTo(Prod, Ty);
803 Prod = InsertBinop(Instruction::Sub, Constant::getNullValue(Ty), Prod);
804 ++I;
805 } else {
806 // A simple mul.
807 Value *W = expandCodeFor(Op, Ty);
808 Prod = InsertNoopCastOfTo(Prod, Ty);
809 // Canonicalize a constant to the RHS.
810 if (isa<Constant>(Prod)) std::swap(Prod, W);
811 Prod = InsertBinop(Instruction::Mul, Prod, W);
812 ++I;
813 }
Dan Gohman2d1be872009-04-16 03:18:22 +0000814 }
815
Dan Gohman087bd1e2010-03-03 05:29:13 +0000816 return Prod;
Nate Begeman36f891b2005-07-30 00:12:19 +0000817}
818
Dan Gohman890f92b2009-04-18 17:56:28 +0000819Value *SCEVExpander::visitUDivExpr(const SCEVUDivExpr *S) {
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000820 Type *Ty = SE.getEffectiveSCEVType(S->getType());
Dan Gohman2d1be872009-04-16 03:18:22 +0000821
Dan Gohman92fcdca2009-06-09 17:18:38 +0000822 Value *LHS = expandCodeFor(S->getLHS(), Ty);
Dan Gohman890f92b2009-04-18 17:56:28 +0000823 if (const SCEVConstant *SC = dyn_cast<SCEVConstant>(S->getRHS())) {
Nick Lewycky6177fd42008-07-08 05:05:37 +0000824 const APInt &RHS = SC->getValue()->getValue();
825 if (RHS.isPowerOf2())
826 return InsertBinop(Instruction::LShr, LHS,
Owen Andersoneed707b2009-07-24 23:12:02 +0000827 ConstantInt::get(Ty, RHS.logBase2()));
Nick Lewycky6177fd42008-07-08 05:05:37 +0000828 }
829
Dan Gohman92fcdca2009-06-09 17:18:38 +0000830 Value *RHS = expandCodeFor(S->getRHS(), Ty);
Dan Gohman267a3852009-06-27 21:18:18 +0000831 return InsertBinop(Instruction::UDiv, LHS, RHS);
Nick Lewycky6177fd42008-07-08 05:05:37 +0000832}
833
Dan Gohman453aa4f2009-05-24 18:06:31 +0000834/// Move parts of Base into Rest to leave Base with the minimal
835/// expression that provides a pointer operand suitable for a
836/// GEP expansion.
Dan Gohman0bba49c2009-07-07 17:06:11 +0000837static void ExposePointerBase(const SCEV *&Base, const SCEV *&Rest,
Dan Gohman453aa4f2009-05-24 18:06:31 +0000838 ScalarEvolution &SE) {
839 while (const SCEVAddRecExpr *A = dyn_cast<SCEVAddRecExpr>(Base)) {
840 Base = A->getStart();
841 Rest = SE.getAddExpr(Rest,
Dan Gohmandeff6212010-05-03 22:09:21 +0000842 SE.getAddRecExpr(SE.getConstant(A->getType(), 0),
Dan Gohman453aa4f2009-05-24 18:06:31 +0000843 A->getStepRecurrence(SE),
Andrew Trick3228cc22011-03-14 16:50:06 +0000844 A->getLoop(),
845 // FIXME: A->getNoWrapFlags(FlagNW)
846 SCEV::FlagAnyWrap));
Dan Gohman453aa4f2009-05-24 18:06:31 +0000847 }
848 if (const SCEVAddExpr *A = dyn_cast<SCEVAddExpr>(Base)) {
849 Base = A->getOperand(A->getNumOperands()-1);
Dan Gohman0bba49c2009-07-07 17:06:11 +0000850 SmallVector<const SCEV *, 8> NewAddOps(A->op_begin(), A->op_end());
Dan Gohman453aa4f2009-05-24 18:06:31 +0000851 NewAddOps.back() = Rest;
852 Rest = SE.getAddExpr(NewAddOps);
853 ExposePointerBase(Base, Rest, SE);
854 }
855}
856
Andrew Trickc5701912011-10-07 23:46:21 +0000857/// Determine if this is a well-behaved chain of instructions leading back to
858/// the PHI. If so, it may be reused by expanded expressions.
859bool SCEVExpander::isNormalAddRecExprPHI(PHINode *PN, Instruction *IncV,
860 const Loop *L) {
861 if (IncV->getNumOperands() == 0 || isa<PHINode>(IncV) ||
862 (isa<CastInst>(IncV) && !isa<BitCastInst>(IncV)))
863 return false;
864 // If any of the operands don't dominate the insert position, bail.
865 // Addrec operands are always loop-invariant, so this can only happen
866 // if there are instructions which haven't been hoisted.
867 if (L == IVIncInsertLoop) {
868 for (User::op_iterator OI = IncV->op_begin()+1,
869 OE = IncV->op_end(); OI != OE; ++OI)
870 if (Instruction *OInst = dyn_cast<Instruction>(OI))
871 if (!SE.DT->dominates(OInst, IVIncInsertPos))
872 return false;
873 }
874 // Advance to the next instruction.
875 IncV = dyn_cast<Instruction>(IncV->getOperand(0));
876 if (!IncV)
877 return false;
878
879 if (IncV->mayHaveSideEffects())
880 return false;
881
882 if (IncV != PN)
883 return true;
884
885 return isNormalAddRecExprPHI(PN, IncV, L);
886}
887
Andrew Trickb5c26ef2012-01-20 07:41:13 +0000888/// getIVIncOperand returns an induction variable increment's induction
889/// variable operand.
890///
891/// If allowScale is set, any type of GEP is allowed as long as the nonIV
892/// operands dominate InsertPos.
893///
894/// If allowScale is not set, ensure that a GEP increment conforms to one of the
895/// simple patterns generated by getAddRecExprPHILiterally and
896/// expandAddtoGEP. If the pattern isn't recognized, return NULL.
897Instruction *SCEVExpander::getIVIncOperand(Instruction *IncV,
898 Instruction *InsertPos,
899 bool allowScale) {
900 if (IncV == InsertPos)
901 return NULL;
902
903 switch (IncV->getOpcode()) {
904 default:
905 return NULL;
906 // Check for a simple Add/Sub or GEP of a loop invariant step.
907 case Instruction::Add:
908 case Instruction::Sub: {
909 Instruction *OInst = dyn_cast<Instruction>(IncV->getOperand(1));
910 if (!OInst || SE.DT->properlyDominates(OInst, InsertPos))
911 return dyn_cast<Instruction>(IncV->getOperand(0));
912 return NULL;
913 }
914 case Instruction::BitCast:
915 return dyn_cast<Instruction>(IncV->getOperand(0));
916 case Instruction::GetElementPtr:
917 for (Instruction::op_iterator I = IncV->op_begin()+1, E = IncV->op_end();
918 I != E; ++I) {
919 if (isa<Constant>(*I))
920 continue;
921 if (Instruction *OInst = dyn_cast<Instruction>(*I)) {
922 if (!SE.DT->properlyDominates(OInst, InsertPos))
923 return NULL;
924 }
925 if (allowScale) {
926 // allow any kind of GEP as long as it can be hoisted.
927 continue;
928 }
929 // This must be a pointer addition of constants (pretty), which is already
930 // handled, or some number of address-size elements (ugly). Ugly geps
931 // have 2 operands. i1* is used by the expander to represent an
932 // address-size element.
933 if (IncV->getNumOperands() != 2)
934 return NULL;
935 unsigned AS = cast<PointerType>(IncV->getType())->getAddressSpace();
936 if (IncV->getType() != Type::getInt1PtrTy(SE.getContext(), AS)
937 && IncV->getType() != Type::getInt8PtrTy(SE.getContext(), AS))
938 return NULL;
939 break;
940 }
941 return dyn_cast<Instruction>(IncV->getOperand(0));
942 }
943}
944
945/// hoistStep - Attempt to hoist a simple IV increment above InsertPos to make
946/// it available to other uses in this loop. Recursively hoist any operands,
947/// until we reach a value that dominates InsertPos.
948bool SCEVExpander::hoistIVInc(Instruction *IncV, Instruction *InsertPos) {
949 if (SE.DT->properlyDominates(IncV, InsertPos))
950 return true;
951
952 // InsertPos must itself dominate IncV so that IncV's new position satisfies
953 // its existing users.
954 if (!SE.DT->dominates(InsertPos->getParent(), IncV->getParent()))
955 return false;
956
957 // Check that the chain of IV operands leading back to Phi can be hoisted.
958 SmallVector<Instruction*, 4> IVIncs;
959 for(;;) {
960 Instruction *Oper = getIVIncOperand(IncV, InsertPos, /*allowScale*/true);
961 if (!Oper)
962 return false;
963 // IncV is safe to hoist.
964 IVIncs.push_back(IncV);
965 IncV = Oper;
966 if (SE.DT->properlyDominates(IncV, InsertPos))
967 break;
968 }
969 for (SmallVectorImpl<Instruction*>::reverse_iterator I = IVIncs.rbegin(),
970 E = IVIncs.rend(); I != E; ++I) {
971 (*I)->moveBefore(InsertPos);
972 }
973 return true;
974}
975
Andrew Trickc5701912011-10-07 23:46:21 +0000976/// Determine if this cyclic phi is in a form that would have been generated by
977/// LSR. We don't care if the phi was actually expanded in this pass, as long
978/// as it is in a low-cost form, for example, no implied multiplication. This
979/// should match any patterns generated by getAddRecExprPHILiterally and
980/// expandAddtoGEP.
981bool SCEVExpander::isExpandedAddRecExprPHI(PHINode *PN, Instruction *IncV,
Andrew Trick365c9f12011-10-15 06:19:55 +0000982 const Loop *L) {
Andrew Trickb5c26ef2012-01-20 07:41:13 +0000983 for(Instruction *IVOper = IncV;
984 (IVOper = getIVIncOperand(IVOper, L->getLoopPreheader()->getTerminator(),
985 /*allowScale=*/false));) {
986 if (IVOper == PN)
987 return true;
Andrew Trickc5701912011-10-07 23:46:21 +0000988 }
Andrew Trickb5c26ef2012-01-20 07:41:13 +0000989 return false;
Andrew Trickc5701912011-10-07 23:46:21 +0000990}
991
Andrew Trick553fe052011-11-30 06:07:54 +0000992/// expandIVInc - Expand an IV increment at Builder's current InsertPos.
993/// Typically this is the LatchBlock terminator or IVIncInsertPos, but we may
994/// need to materialize IV increments elsewhere to handle difficult situations.
995Value *SCEVExpander::expandIVInc(PHINode *PN, Value *StepV, const Loop *L,
996 Type *ExpandTy, Type *IntTy,
997 bool useSubtract) {
998 Value *IncV;
999 // If the PHI is a pointer, use a GEP, otherwise use an add or sub.
1000 if (ExpandTy->isPointerTy()) {
1001 PointerType *GEPPtrTy = cast<PointerType>(ExpandTy);
1002 // If the step isn't constant, don't use an implicitly scaled GEP, because
1003 // that would require a multiply inside the loop.
1004 if (!isa<ConstantInt>(StepV))
1005 GEPPtrTy = PointerType::get(Type::getInt1Ty(SE.getContext()),
1006 GEPPtrTy->getAddressSpace());
1007 const SCEV *const StepArray[1] = { SE.getSCEV(StepV) };
1008 IncV = expandAddToGEP(StepArray, StepArray+1, GEPPtrTy, IntTy, PN);
1009 if (IncV->getType() != PN->getType()) {
1010 IncV = Builder.CreateBitCast(IncV, PN->getType());
1011 rememberInstruction(IncV);
1012 }
1013 } else {
1014 IncV = useSubtract ?
1015 Builder.CreateSub(PN, StepV, Twine(IVName) + ".iv.next") :
1016 Builder.CreateAdd(PN, StepV, Twine(IVName) + ".iv.next");
1017 rememberInstruction(IncV);
1018 }
1019 return IncV;
1020}
1021
Dan Gohmana10756e2010-01-21 02:09:26 +00001022/// getAddRecExprPHILiterally - Helper for expandAddRecExprLiterally. Expand
1023/// the base addrec, which is the addrec without any non-loop-dominating
1024/// values, and return the PHI.
1025PHINode *
1026SCEVExpander::getAddRecExprPHILiterally(const SCEVAddRecExpr *Normalized,
1027 const Loop *L,
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001028 Type *ExpandTy,
1029 Type *IntTy) {
Benjamin Kramer93a896e2011-07-16 22:26:27 +00001030 assert((!IVIncInsertLoop||IVIncInsertPos) && "Uninitialized insert position");
Andrew Trickd152d032011-07-16 00:59:39 +00001031
Dan Gohmana10756e2010-01-21 02:09:26 +00001032 // Reuse a previously-inserted PHI, if present.
Andrew Trickc5701912011-10-07 23:46:21 +00001033 BasicBlock *LatchBlock = L->getLoopLatch();
1034 if (LatchBlock) {
1035 for (BasicBlock::iterator I = L->getHeader()->begin();
1036 PHINode *PN = dyn_cast<PHINode>(I); ++I) {
1037 if (!SE.isSCEVable(PN->getType()) ||
1038 (SE.getEffectiveSCEVType(PN->getType()) !=
1039 SE.getEffectiveSCEVType(Normalized->getType())) ||
1040 SE.getSCEV(PN) != Normalized)
1041 continue;
Dan Gohman22e62192010-02-16 00:20:08 +00001042
Andrew Trickc5701912011-10-07 23:46:21 +00001043 Instruction *IncV =
1044 cast<Instruction>(PN->getIncomingValueForBlock(LatchBlock));
Dan Gohman22e62192010-02-16 00:20:08 +00001045
Andrew Trickc5701912011-10-07 23:46:21 +00001046 if (LSRMode) {
Andrew Trick365c9f12011-10-15 06:19:55 +00001047 if (!isExpandedAddRecExprPHI(PN, IncV, L))
Andrew Trickc5701912011-10-07 23:46:21 +00001048 continue;
Andrew Trickb5c26ef2012-01-20 07:41:13 +00001049 if (L == IVIncInsertLoop && !hoistIVInc(IncV, IVIncInsertPos))
1050 continue;
Dan Gohman572645c2010-02-12 10:34:29 +00001051 }
Andrew Trickc5701912011-10-07 23:46:21 +00001052 else {
1053 if (!isNormalAddRecExprPHI(PN, IncV, L))
1054 continue;
Andrew Trickb5c26ef2012-01-20 07:41:13 +00001055 if (L == IVIncInsertLoop)
1056 do {
1057 if (SE.DT->dominates(IncV, IVIncInsertPos))
1058 break;
1059 // Make sure the increment is where we want it. But don't move it
1060 // down past a potential existing post-inc user.
1061 IncV->moveBefore(IVIncInsertPos);
1062 IVIncInsertPos = IncV;
1063 IncV = cast<Instruction>(IncV->getOperand(0));
1064 } while (IncV != PN);
Andrew Trickc5701912011-10-07 23:46:21 +00001065 }
1066 // Ok, the add recurrence looks usable.
1067 // Remember this PHI, even in post-inc mode.
1068 InsertedValues.insert(PN);
1069 // Remember the increment.
1070 rememberInstruction(IncV);
Andrew Trickc5701912011-10-07 23:46:21 +00001071 return PN;
1072 }
1073 }
Dan Gohmana10756e2010-01-21 02:09:26 +00001074
1075 // Save the original insertion point so we can restore it when we're done.
1076 BasicBlock *SaveInsertBB = Builder.GetInsertBlock();
1077 BasicBlock::iterator SaveInsertPt = Builder.GetInsertPoint();
1078
Andrew Trickba3c0bc2011-12-20 01:42:24 +00001079 // Another AddRec may need to be recursively expanded below. For example, if
1080 // this AddRec is quadratic, the StepV may itself be an AddRec in this
1081 // loop. Remove this loop from the PostIncLoops set before expanding such
1082 // AddRecs. Otherwise, we cannot find a valid position for the step
1083 // (i.e. StepV can never dominate its loop header). Ideally, we could do
1084 // SavedIncLoops.swap(PostIncLoops), but we generally have a single element,
1085 // so it's not worth implementing SmallPtrSet::swap.
1086 PostIncLoopSet SavedPostIncLoops = PostIncLoops;
1087 PostIncLoops.clear();
1088
Dan Gohmana10756e2010-01-21 02:09:26 +00001089 // Expand code for the start value.
1090 Value *StartV = expandCodeFor(Normalized->getStart(), ExpandTy,
1091 L->getHeader()->begin());
1092
Andrew Trickd152d032011-07-16 00:59:39 +00001093 // StartV must be hoisted into L's preheader to dominate the new phi.
Benjamin Kramer93a896e2011-07-16 22:26:27 +00001094 assert(!isa<Instruction>(StartV) ||
1095 SE.DT->properlyDominates(cast<Instruction>(StartV)->getParent(),
1096 L->getHeader()));
Andrew Trickd152d032011-07-16 00:59:39 +00001097
Andrew Trick553fe052011-11-30 06:07:54 +00001098 // Expand code for the step value. Do this before creating the PHI so that PHI
1099 // reuse code doesn't see an incomplete PHI.
Dan Gohmana10756e2010-01-21 02:09:26 +00001100 const SCEV *Step = Normalized->getStepRecurrence(SE);
Andrew Trick553fe052011-11-30 06:07:54 +00001101 // If the stride is negative, insert a sub instead of an add for the increment
1102 // (unless it's a constant, because subtracts of constants are canonicalized
1103 // to adds).
Andrew Trickf8fd8412012-01-07 00:27:31 +00001104 bool useSubtract = !ExpandTy->isPointerTy() && Step->isNonConstantNegative();
Andrew Trick553fe052011-11-30 06:07:54 +00001105 if (useSubtract)
Dan Gohmana10756e2010-01-21 02:09:26 +00001106 Step = SE.getNegativeSCEV(Step);
Andrew Trick553fe052011-11-30 06:07:54 +00001107 // Expand the step somewhere that dominates the loop header.
Dan Gohmana10756e2010-01-21 02:09:26 +00001108 Value *StepV = expandCodeFor(Step, IntTy, L->getHeader()->begin());
1109
1110 // Create the PHI.
Jay Foadd8b4fb42011-03-30 11:19:20 +00001111 BasicBlock *Header = L->getHeader();
1112 Builder.SetInsertPoint(Header, Header->begin());
1113 pred_iterator HPB = pred_begin(Header), HPE = pred_end(Header);
Andrew Trick5e7645b2011-06-28 05:07:32 +00001114 PHINode *PN = Builder.CreatePHI(ExpandTy, std::distance(HPB, HPE),
Andrew Trickdc8e5462011-06-28 05:41:52 +00001115 Twine(IVName) + ".iv");
Dan Gohmana10756e2010-01-21 02:09:26 +00001116 rememberInstruction(PN);
1117
1118 // Create the step instructions and populate the PHI.
Jay Foadd8b4fb42011-03-30 11:19:20 +00001119 for (pred_iterator HPI = HPB; HPI != HPE; ++HPI) {
Dan Gohmana10756e2010-01-21 02:09:26 +00001120 BasicBlock *Pred = *HPI;
1121
1122 // Add a start value.
1123 if (!L->contains(Pred)) {
1124 PN->addIncoming(StartV, Pred);
1125 continue;
1126 }
1127
Andrew Trick553fe052011-11-30 06:07:54 +00001128 // Create a step value and add it to the PHI.
1129 // If IVIncInsertLoop is non-null and equal to the addrec's loop, insert the
1130 // instructions at IVIncInsertPos.
Dan Gohmana10756e2010-01-21 02:09:26 +00001131 Instruction *InsertPos = L == IVIncInsertLoop ?
1132 IVIncInsertPos : Pred->getTerminator();
Devang Patelc5ecbdc2011-07-05 21:48:22 +00001133 Builder.SetInsertPoint(InsertPos);
Andrew Trick553fe052011-11-30 06:07:54 +00001134 Value *IncV = expandIVInc(PN, StepV, L, ExpandTy, IntTy, useSubtract);
1135
Dan Gohmana10756e2010-01-21 02:09:26 +00001136 PN->addIncoming(IncV, Pred);
1137 }
1138
1139 // Restore the original insert point.
1140 if (SaveInsertBB)
Dan Gohman45598552010-02-15 00:21:43 +00001141 restoreInsertPoint(SaveInsertBB, SaveInsertPt);
Dan Gohmana10756e2010-01-21 02:09:26 +00001142
Andrew Trickba3c0bc2011-12-20 01:42:24 +00001143 // After expanding subexpressions, restore the PostIncLoops set so the caller
1144 // can ensure that IVIncrement dominates the current uses.
1145 PostIncLoops = SavedPostIncLoops;
1146
Dan Gohmana10756e2010-01-21 02:09:26 +00001147 // Remember this PHI, even in post-inc mode.
1148 InsertedValues.insert(PN);
1149
1150 return PN;
1151}
1152
1153Value *SCEVExpander::expandAddRecExprLiterally(const SCEVAddRecExpr *S) {
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001154 Type *STy = S->getType();
1155 Type *IntTy = SE.getEffectiveSCEVType(STy);
Dan Gohmana10756e2010-01-21 02:09:26 +00001156 const Loop *L = S->getLoop();
1157
1158 // Determine a normalized form of this expression, which is the expression
1159 // before any post-inc adjustment is made.
1160 const SCEVAddRecExpr *Normalized = S;
Dan Gohman448db1c2010-04-07 22:27:08 +00001161 if (PostIncLoops.count(L)) {
1162 PostIncLoopSet Loops;
1163 Loops.insert(L);
1164 Normalized =
1165 cast<SCEVAddRecExpr>(TransformForPostIncUse(Normalize, S, 0, 0,
1166 Loops, SE, *SE.DT));
Dan Gohmana10756e2010-01-21 02:09:26 +00001167 }
1168
1169 // Strip off any non-loop-dominating component from the addrec start.
1170 const SCEV *Start = Normalized->getStart();
1171 const SCEV *PostLoopOffset = 0;
Dan Gohmandc0e8fb2010-11-17 21:41:58 +00001172 if (!SE.properlyDominates(Start, L->getHeader())) {
Dan Gohmana10756e2010-01-21 02:09:26 +00001173 PostLoopOffset = Start;
Dan Gohmandeff6212010-05-03 22:09:21 +00001174 Start = SE.getConstant(Normalized->getType(), 0);
Andrew Trick3228cc22011-03-14 16:50:06 +00001175 Normalized = cast<SCEVAddRecExpr>(
1176 SE.getAddRecExpr(Start, Normalized->getStepRecurrence(SE),
1177 Normalized->getLoop(),
1178 // FIXME: Normalized->getNoWrapFlags(FlagNW)
1179 SCEV::FlagAnyWrap));
Dan Gohmana10756e2010-01-21 02:09:26 +00001180 }
1181
1182 // Strip off any non-loop-dominating component from the addrec step.
1183 const SCEV *Step = Normalized->getStepRecurrence(SE);
1184 const SCEV *PostLoopScale = 0;
Dan Gohmandc0e8fb2010-11-17 21:41:58 +00001185 if (!SE.dominates(Step, L->getHeader())) {
Dan Gohmana10756e2010-01-21 02:09:26 +00001186 PostLoopScale = Step;
Dan Gohmandeff6212010-05-03 22:09:21 +00001187 Step = SE.getConstant(Normalized->getType(), 1);
Dan Gohmana10756e2010-01-21 02:09:26 +00001188 Normalized =
1189 cast<SCEVAddRecExpr>(SE.getAddRecExpr(Start, Step,
Andrew Trick3228cc22011-03-14 16:50:06 +00001190 Normalized->getLoop(),
1191 // FIXME: Normalized
1192 // ->getNoWrapFlags(FlagNW)
1193 SCEV::FlagAnyWrap));
Dan Gohmana10756e2010-01-21 02:09:26 +00001194 }
1195
1196 // Expand the core addrec. If we need post-loop scaling, force it to
1197 // expand to an integer type to avoid the need for additional casting.
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001198 Type *ExpandTy = PostLoopScale ? IntTy : STy;
Dan Gohmana10756e2010-01-21 02:09:26 +00001199 PHINode *PN = getAddRecExprPHILiterally(Normalized, L, ExpandTy, IntTy);
1200
Dan Gohman3f46a3a2010-03-01 17:49:51 +00001201 // Accommodate post-inc mode, if necessary.
Dan Gohmana10756e2010-01-21 02:09:26 +00001202 Value *Result;
Dan Gohman448db1c2010-04-07 22:27:08 +00001203 if (!PostIncLoops.count(L))
Dan Gohmana10756e2010-01-21 02:09:26 +00001204 Result = PN;
1205 else {
1206 // In PostInc mode, use the post-incremented value.
1207 BasicBlock *LatchBlock = L->getLoopLatch();
1208 assert(LatchBlock && "PostInc mode requires a unique loop latch!");
1209 Result = PN->getIncomingValueForBlock(LatchBlock);
Andrew Trick48ba0e42011-10-13 21:55:29 +00001210
1211 // For an expansion to use the postinc form, the client must call
1212 // expandCodeFor with an InsertPoint that is either outside the PostIncLoop
1213 // or dominated by IVIncInsertPos.
Andrew Trick553fe052011-11-30 06:07:54 +00001214 if (isa<Instruction>(Result)
1215 && !SE.DT->dominates(cast<Instruction>(Result),
1216 Builder.GetInsertPoint())) {
1217 // The induction variable's postinc expansion does not dominate this use.
1218 // IVUsers tries to prevent this case, so it is rare. However, it can
1219 // happen when an IVUser outside the loop is not dominated by the latch
1220 // block. Adjusting IVIncInsertPos before expansion begins cannot handle
1221 // all cases. Consider a phi outide whose operand is replaced during
1222 // expansion with the value of the postinc user. Without fundamentally
1223 // changing the way postinc users are tracked, the only remedy is
1224 // inserting an extra IV increment. StepV might fold into PostLoopOffset,
1225 // but hopefully expandCodeFor handles that.
1226 bool useSubtract =
Andrew Trickf8fd8412012-01-07 00:27:31 +00001227 !ExpandTy->isPointerTy() && Step->isNonConstantNegative();
Andrew Trick553fe052011-11-30 06:07:54 +00001228 if (useSubtract)
1229 Step = SE.getNegativeSCEV(Step);
1230 // Expand the step somewhere that dominates the loop header.
1231 BasicBlock *SaveInsertBB = Builder.GetInsertBlock();
1232 BasicBlock::iterator SaveInsertPt = Builder.GetInsertPoint();
1233 Value *StepV = expandCodeFor(Step, IntTy, L->getHeader()->begin());
1234 // Restore the insertion point to the place where the caller has
1235 // determined dominates all uses.
1236 restoreInsertPoint(SaveInsertBB, SaveInsertPt);
1237 Result = expandIVInc(PN, StepV, L, ExpandTy, IntTy, useSubtract);
1238 }
Dan Gohmana10756e2010-01-21 02:09:26 +00001239 }
1240
1241 // Re-apply any non-loop-dominating scale.
1242 if (PostLoopScale) {
Dan Gohman0a799ab2010-02-12 20:39:25 +00001243 Result = InsertNoopCastOfTo(Result, IntTy);
Dan Gohmana10756e2010-01-21 02:09:26 +00001244 Result = Builder.CreateMul(Result,
1245 expandCodeFor(PostLoopScale, IntTy));
1246 rememberInstruction(Result);
1247 }
1248
1249 // Re-apply any non-loop-dominating offset.
1250 if (PostLoopOffset) {
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001251 if (PointerType *PTy = dyn_cast<PointerType>(ExpandTy)) {
Dan Gohmana10756e2010-01-21 02:09:26 +00001252 const SCEV *const OffsetArray[1] = { PostLoopOffset };
1253 Result = expandAddToGEP(OffsetArray, OffsetArray+1, PTy, IntTy, Result);
1254 } else {
Dan Gohman0a799ab2010-02-12 20:39:25 +00001255 Result = InsertNoopCastOfTo(Result, IntTy);
Dan Gohmana10756e2010-01-21 02:09:26 +00001256 Result = Builder.CreateAdd(Result,
1257 expandCodeFor(PostLoopOffset, IntTy));
1258 rememberInstruction(Result);
1259 }
1260 }
1261
1262 return Result;
1263}
1264
Dan Gohman890f92b2009-04-18 17:56:28 +00001265Value *SCEVExpander::visitAddRecExpr(const SCEVAddRecExpr *S) {
Dan Gohmana10756e2010-01-21 02:09:26 +00001266 if (!CanonicalMode) return expandAddRecExprLiterally(S);
1267
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001268 Type *Ty = SE.getEffectiveSCEVType(S->getType());
Nate Begeman36f891b2005-07-30 00:12:19 +00001269 const Loop *L = S->getLoop();
Nate Begeman36f891b2005-07-30 00:12:19 +00001270
Dan Gohman4d8414f2009-06-13 16:25:49 +00001271 // First check for an existing canonical IV in a suitable type.
1272 PHINode *CanonicalIV = 0;
1273 if (PHINode *PN = L->getCanonicalInductionVariable())
Dan Gohman133e2952010-07-20 16:46:58 +00001274 if (SE.getTypeSizeInBits(PN->getType()) >= SE.getTypeSizeInBits(Ty))
Dan Gohman4d8414f2009-06-13 16:25:49 +00001275 CanonicalIV = PN;
1276
1277 // Rewrite an AddRec in terms of the canonical induction variable, if
1278 // its type is more narrow.
1279 if (CanonicalIV &&
1280 SE.getTypeSizeInBits(CanonicalIV->getType()) >
1281 SE.getTypeSizeInBits(Ty)) {
Dan Gohmanf9e64722010-03-18 01:17:13 +00001282 SmallVector<const SCEV *, 4> NewOps(S->getNumOperands());
1283 for (unsigned i = 0, e = S->getNumOperands(); i != e; ++i)
1284 NewOps[i] = SE.getAnyExtendExpr(S->op_begin()[i], CanonicalIV->getType());
Andrew Trick3228cc22011-03-14 16:50:06 +00001285 Value *V = expand(SE.getAddRecExpr(NewOps, S->getLoop(),
1286 // FIXME: S->getNoWrapFlags(FlagNW)
1287 SCEV::FlagAnyWrap));
Dan Gohman267a3852009-06-27 21:18:18 +00001288 BasicBlock *SaveInsertBB = Builder.GetInsertBlock();
1289 BasicBlock::iterator SaveInsertPt = Builder.GetInsertPoint();
Dan Gohman4d8414f2009-06-13 16:25:49 +00001290 BasicBlock::iterator NewInsertPt =
Chris Lattner7896c9f2009-12-03 00:50:42 +00001291 llvm::next(BasicBlock::iterator(cast<Instruction>(V)));
Bill Wendlinga4c86ab2011-08-24 21:06:46 +00001292 while (isa<PHINode>(NewInsertPt) || isa<DbgInfoIntrinsic>(NewInsertPt) ||
1293 isa<LandingPadInst>(NewInsertPt))
Jim Grosbach08f55d02010-06-16 21:13:38 +00001294 ++NewInsertPt;
Dan Gohman4d8414f2009-06-13 16:25:49 +00001295 V = expandCodeFor(SE.getTruncateExpr(SE.getUnknown(V), Ty), 0,
1296 NewInsertPt);
Dan Gohman45598552010-02-15 00:21:43 +00001297 restoreInsertPoint(SaveInsertBB, SaveInsertPt);
Dan Gohman4d8414f2009-06-13 16:25:49 +00001298 return V;
1299 }
1300
Nate Begeman36f891b2005-07-30 00:12:19 +00001301 // {X,+,F} --> X + {0,+,F}
Dan Gohmancfeb6a42008-06-18 16:23:07 +00001302 if (!S->getStart()->isZero()) {
Dan Gohmanf9e64722010-03-18 01:17:13 +00001303 SmallVector<const SCEV *, 4> NewOps(S->op_begin(), S->op_end());
Dan Gohmandeff6212010-05-03 22:09:21 +00001304 NewOps[0] = SE.getConstant(Ty, 0);
Andrew Trick3228cc22011-03-14 16:50:06 +00001305 // FIXME: can use S->getNoWrapFlags()
1306 const SCEV *Rest = SE.getAddRecExpr(NewOps, L, SCEV::FlagAnyWrap);
Dan Gohman453aa4f2009-05-24 18:06:31 +00001307
1308 // Turn things like ptrtoint+arithmetic+inttoptr into GEP. See the
1309 // comments on expandAddToGEP for details.
Dan Gohmanc40f17b2009-08-18 16:46:41 +00001310 const SCEV *Base = S->getStart();
1311 const SCEV *RestArray[1] = { Rest };
1312 // Dig into the expression to find the pointer base for a GEP.
1313 ExposePointerBase(Base, RestArray[0], SE);
1314 // If we found a pointer, expand the AddRec with a GEP.
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001315 if (PointerType *PTy = dyn_cast<PointerType>(Base->getType())) {
Dan Gohmanc40f17b2009-08-18 16:46:41 +00001316 // Make sure the Base isn't something exotic, such as a multiplied
1317 // or divided pointer value. In those cases, the result type isn't
1318 // actually a pointer type.
1319 if (!isa<SCEVMulExpr>(Base) && !isa<SCEVUDivExpr>(Base)) {
1320 Value *StartV = expand(Base);
1321 assert(StartV->getType() == PTy && "Pointer type mismatch for GEP!");
1322 return expandAddToGEP(RestArray, RestArray+1, PTy, Ty, StartV);
Dan Gohman453aa4f2009-05-24 18:06:31 +00001323 }
1324 }
1325
Dan Gohman40a5a1b2009-06-24 01:18:18 +00001326 // Just do a normal add. Pre-expand the operands to suppress folding.
1327 return expand(SE.getAddExpr(SE.getUnknown(expand(S->getStart())),
1328 SE.getUnknown(expand(Rest))));
Nate Begeman36f891b2005-07-30 00:12:19 +00001329 }
1330
Dan Gohman6ebfd722010-07-26 18:28:14 +00001331 // If we don't yet have a canonical IV, create one.
1332 if (!CanonicalIV) {
Nate Begeman36f891b2005-07-30 00:12:19 +00001333 // Create and insert the PHI node for the induction variable in the
1334 // specified loop.
1335 BasicBlock *Header = L->getHeader();
Jay Foadd8b4fb42011-03-30 11:19:20 +00001336 pred_iterator HPB = pred_begin(Header), HPE = pred_end(Header);
Jay Foad3ecfc862011-03-30 11:28:46 +00001337 CanonicalIV = PHINode::Create(Ty, std::distance(HPB, HPE), "indvar",
1338 Header->begin());
Dan Gohman6ebfd722010-07-26 18:28:14 +00001339 rememberInstruction(CanonicalIV);
Nate Begeman36f891b2005-07-30 00:12:19 +00001340
Owen Andersoneed707b2009-07-24 23:12:02 +00001341 Constant *One = ConstantInt::get(Ty, 1);
Jay Foadd8b4fb42011-03-30 11:19:20 +00001342 for (pred_iterator HPI = HPB; HPI != HPE; ++HPI) {
Gabor Greif76560182010-07-09 15:40:10 +00001343 BasicBlock *HP = *HPI;
1344 if (L->contains(HP)) {
Dan Gohman3abf9052010-01-19 22:26:02 +00001345 // Insert a unit add instruction right before the terminator
1346 // corresponding to the back-edge.
Dan Gohman6ebfd722010-07-26 18:28:14 +00001347 Instruction *Add = BinaryOperator::CreateAdd(CanonicalIV, One,
1348 "indvar.next",
1349 HP->getTerminator());
Devang Pateldf3ad662011-06-22 20:56:56 +00001350 Add->setDebugLoc(HP->getTerminator()->getDebugLoc());
Dan Gohmana10756e2010-01-21 02:09:26 +00001351 rememberInstruction(Add);
Dan Gohman6ebfd722010-07-26 18:28:14 +00001352 CanonicalIV->addIncoming(Add, HP);
Dan Gohman83d57742009-09-27 17:46:40 +00001353 } else {
Dan Gohman6ebfd722010-07-26 18:28:14 +00001354 CanonicalIV->addIncoming(Constant::getNullValue(Ty), HP);
Dan Gohman83d57742009-09-27 17:46:40 +00001355 }
Gabor Greif76560182010-07-09 15:40:10 +00001356 }
Nate Begeman36f891b2005-07-30 00:12:19 +00001357 }
1358
Dan Gohman6ebfd722010-07-26 18:28:14 +00001359 // {0,+,1} --> Insert a canonical induction variable into the loop!
1360 if (S->isAffine() && S->getOperand(1)->isOne()) {
1361 assert(Ty == SE.getEffectiveSCEVType(CanonicalIV->getType()) &&
1362 "IVs with types different from the canonical IV should "
1363 "already have been handled!");
1364 return CanonicalIV;
1365 }
1366
Dan Gohman4d8414f2009-06-13 16:25:49 +00001367 // {0,+,F} --> {0,+,1} * F
Nate Begeman36f891b2005-07-30 00:12:19 +00001368
Chris Lattnerdf14a042005-10-30 06:24:33 +00001369 // If this is a simple linear addrec, emit it now as a special case.
Dan Gohman40a5a1b2009-06-24 01:18:18 +00001370 if (S->isAffine()) // {0,+,F} --> i*F
1371 return
1372 expand(SE.getTruncateOrNoop(
Dan Gohman6ebfd722010-07-26 18:28:14 +00001373 SE.getMulExpr(SE.getUnknown(CanonicalIV),
Dan Gohman40a5a1b2009-06-24 01:18:18 +00001374 SE.getNoopOrAnyExtend(S->getOperand(1),
Dan Gohman6ebfd722010-07-26 18:28:14 +00001375 CanonicalIV->getType())),
Dan Gohman40a5a1b2009-06-24 01:18:18 +00001376 Ty));
Nate Begeman36f891b2005-07-30 00:12:19 +00001377
1378 // If this is a chain of recurrences, turn it into a closed form, using the
1379 // folders, then expandCodeFor the closed form. This allows the folders to
1380 // simplify the expression without having to build a bunch of special code
1381 // into this folder.
Dan Gohman6ebfd722010-07-26 18:28:14 +00001382 const SCEV *IH = SE.getUnknown(CanonicalIV); // Get I as a "symbolic" SCEV.
Nate Begeman36f891b2005-07-30 00:12:19 +00001383
Dan Gohman4d8414f2009-06-13 16:25:49 +00001384 // Promote S up to the canonical IV type, if the cast is foldable.
Dan Gohman0bba49c2009-07-07 17:06:11 +00001385 const SCEV *NewS = S;
Dan Gohman6ebfd722010-07-26 18:28:14 +00001386 const SCEV *Ext = SE.getNoopOrAnyExtend(S, CanonicalIV->getType());
Dan Gohman4d8414f2009-06-13 16:25:49 +00001387 if (isa<SCEVAddRecExpr>(Ext))
1388 NewS = Ext;
1389
Dan Gohman0bba49c2009-07-07 17:06:11 +00001390 const SCEV *V = cast<SCEVAddRecExpr>(NewS)->evaluateAtIteration(IH, SE);
Bill Wendlinge8156192006-12-07 01:30:32 +00001391 //cerr << "Evaluated: " << *this << "\n to: " << *V << "\n";
Nate Begeman36f891b2005-07-30 00:12:19 +00001392
Dan Gohman4d8414f2009-06-13 16:25:49 +00001393 // Truncate the result down to the original type, if needed.
Dan Gohman0bba49c2009-07-07 17:06:11 +00001394 const SCEV *T = SE.getTruncateOrNoop(V, Ty);
Dan Gohman469f3cd2009-06-22 22:08:45 +00001395 return expand(T);
Nate Begeman36f891b2005-07-30 00:12:19 +00001396}
Anton Korobeynikov96fea332007-08-20 21:17:26 +00001397
Dan Gohman890f92b2009-04-18 17:56:28 +00001398Value *SCEVExpander::visitTruncateExpr(const SCEVTruncateExpr *S) {
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001399 Type *Ty = SE.getEffectiveSCEVType(S->getType());
Dan Gohman92fcdca2009-06-09 17:18:38 +00001400 Value *V = expandCodeFor(S->getOperand(),
1401 SE.getEffectiveSCEVType(S->getOperand()->getType()));
Benjamin Kramera9390a42011-09-27 20:39:19 +00001402 Value *I = Builder.CreateTrunc(V, Ty);
Dan Gohmana10756e2010-01-21 02:09:26 +00001403 rememberInstruction(I);
Dan Gohmancf5ab822009-05-01 17:13:31 +00001404 return I;
Dan Gohman11f6d3b2008-06-22 19:09:18 +00001405}
1406
Dan Gohman890f92b2009-04-18 17:56:28 +00001407Value *SCEVExpander::visitZeroExtendExpr(const SCEVZeroExtendExpr *S) {
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001408 Type *Ty = SE.getEffectiveSCEVType(S->getType());
Dan Gohman92fcdca2009-06-09 17:18:38 +00001409 Value *V = expandCodeFor(S->getOperand(),
1410 SE.getEffectiveSCEVType(S->getOperand()->getType()));
Benjamin Kramera9390a42011-09-27 20:39:19 +00001411 Value *I = Builder.CreateZExt(V, Ty);
Dan Gohmana10756e2010-01-21 02:09:26 +00001412 rememberInstruction(I);
Dan Gohmancf5ab822009-05-01 17:13:31 +00001413 return I;
Dan Gohman11f6d3b2008-06-22 19:09:18 +00001414}
1415
Dan Gohman890f92b2009-04-18 17:56:28 +00001416Value *SCEVExpander::visitSignExtendExpr(const SCEVSignExtendExpr *S) {
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001417 Type *Ty = SE.getEffectiveSCEVType(S->getType());
Dan Gohman92fcdca2009-06-09 17:18:38 +00001418 Value *V = expandCodeFor(S->getOperand(),
1419 SE.getEffectiveSCEVType(S->getOperand()->getType()));
Benjamin Kramera9390a42011-09-27 20:39:19 +00001420 Value *I = Builder.CreateSExt(V, Ty);
Dan Gohmana10756e2010-01-21 02:09:26 +00001421 rememberInstruction(I);
Dan Gohmancf5ab822009-05-01 17:13:31 +00001422 return I;
Dan Gohman11f6d3b2008-06-22 19:09:18 +00001423}
1424
Dan Gohman890f92b2009-04-18 17:56:28 +00001425Value *SCEVExpander::visitSMaxExpr(const SCEVSMaxExpr *S) {
Dan Gohman0196dc52009-07-14 20:57:04 +00001426 Value *LHS = expand(S->getOperand(S->getNumOperands()-1));
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001427 Type *Ty = LHS->getType();
Dan Gohman0196dc52009-07-14 20:57:04 +00001428 for (int i = S->getNumOperands()-2; i >= 0; --i) {
1429 // In the case of mixed integer and pointer types, do the
1430 // rest of the comparisons as integer.
1431 if (S->getOperand(i)->getType() != Ty) {
1432 Ty = SE.getEffectiveSCEVType(Ty);
1433 LHS = InsertNoopCastOfTo(LHS, Ty);
1434 }
Dan Gohman92fcdca2009-06-09 17:18:38 +00001435 Value *RHS = expandCodeFor(S->getOperand(i), Ty);
Benjamin Kramera9390a42011-09-27 20:39:19 +00001436 Value *ICmp = Builder.CreateICmpSGT(LHS, RHS);
Dan Gohmana10756e2010-01-21 02:09:26 +00001437 rememberInstruction(ICmp);
Dan Gohman267a3852009-06-27 21:18:18 +00001438 Value *Sel = Builder.CreateSelect(ICmp, LHS, RHS, "smax");
Dan Gohmana10756e2010-01-21 02:09:26 +00001439 rememberInstruction(Sel);
Dan Gohmancf5ab822009-05-01 17:13:31 +00001440 LHS = Sel;
Nick Lewyckyc54c5612007-11-25 22:41:31 +00001441 }
Dan Gohman0196dc52009-07-14 20:57:04 +00001442 // In the case of mixed integer and pointer types, cast the
1443 // final result back to the pointer type.
1444 if (LHS->getType() != S->getType())
1445 LHS = InsertNoopCastOfTo(LHS, S->getType());
Nick Lewyckyc54c5612007-11-25 22:41:31 +00001446 return LHS;
1447}
1448
Dan Gohman890f92b2009-04-18 17:56:28 +00001449Value *SCEVExpander::visitUMaxExpr(const SCEVUMaxExpr *S) {
Dan Gohman0196dc52009-07-14 20:57:04 +00001450 Value *LHS = expand(S->getOperand(S->getNumOperands()-1));
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001451 Type *Ty = LHS->getType();
Dan Gohman0196dc52009-07-14 20:57:04 +00001452 for (int i = S->getNumOperands()-2; i >= 0; --i) {
1453 // In the case of mixed integer and pointer types, do the
1454 // rest of the comparisons as integer.
1455 if (S->getOperand(i)->getType() != Ty) {
1456 Ty = SE.getEffectiveSCEVType(Ty);
1457 LHS = InsertNoopCastOfTo(LHS, Ty);
1458 }
Dan Gohman92fcdca2009-06-09 17:18:38 +00001459 Value *RHS = expandCodeFor(S->getOperand(i), Ty);
Benjamin Kramera9390a42011-09-27 20:39:19 +00001460 Value *ICmp = Builder.CreateICmpUGT(LHS, RHS);
Dan Gohmana10756e2010-01-21 02:09:26 +00001461 rememberInstruction(ICmp);
Dan Gohman267a3852009-06-27 21:18:18 +00001462 Value *Sel = Builder.CreateSelect(ICmp, LHS, RHS, "umax");
Dan Gohmana10756e2010-01-21 02:09:26 +00001463 rememberInstruction(Sel);
Dan Gohmancf5ab822009-05-01 17:13:31 +00001464 LHS = Sel;
Nick Lewycky3e630762008-02-20 06:48:22 +00001465 }
Dan Gohman0196dc52009-07-14 20:57:04 +00001466 // In the case of mixed integer and pointer types, cast the
1467 // final result back to the pointer type.
1468 if (LHS->getType() != S->getType())
1469 LHS = InsertNoopCastOfTo(LHS, S->getType());
Nick Lewycky3e630762008-02-20 06:48:22 +00001470 return LHS;
1471}
1472
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001473Value *SCEVExpander::expandCodeFor(const SCEV *SH, Type *Ty,
Andrew Trickb5c26ef2012-01-20 07:41:13 +00001474 Instruction *IP) {
Dan Gohman6c7ed6b2010-03-19 21:51:03 +00001475 Builder.SetInsertPoint(IP->getParent(), IP);
1476 return expandCodeFor(SH, Ty);
1477}
1478
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001479Value *SCEVExpander::expandCodeFor(const SCEV *SH, Type *Ty) {
Dan Gohman11f6d3b2008-06-22 19:09:18 +00001480 // Expand the code for this SCEV.
Dan Gohman2d1be872009-04-16 03:18:22 +00001481 Value *V = expand(SH);
Dan Gohman5be18e82009-05-19 02:15:55 +00001482 if (Ty) {
1483 assert(SE.getTypeSizeInBits(Ty) == SE.getTypeSizeInBits(SH->getType()) &&
1484 "non-trivial casts should be done with the SCEVs directly!");
1485 V = InsertNoopCastOfTo(V, Ty);
1486 }
1487 return V;
Dan Gohman11f6d3b2008-06-22 19:09:18 +00001488}
1489
Dan Gohman890f92b2009-04-18 17:56:28 +00001490Value *SCEVExpander::expand(const SCEV *S) {
Dan Gohman40a5a1b2009-06-24 01:18:18 +00001491 // Compute an insertion point for this SCEV object. Hoist the instructions
1492 // as far out in the loop nest as possible.
Dan Gohman267a3852009-06-27 21:18:18 +00001493 Instruction *InsertPt = Builder.GetInsertPoint();
1494 for (Loop *L = SE.LI->getLoopFor(Builder.GetInsertBlock()); ;
Dan Gohman40a5a1b2009-06-24 01:18:18 +00001495 L = L->getParentLoop())
Dan Gohman17ead4f2010-11-17 21:23:15 +00001496 if (SE.isLoopInvariant(S, L)) {
Dan Gohman40a5a1b2009-06-24 01:18:18 +00001497 if (!L) break;
Dan Gohmane059ee82010-03-23 21:53:22 +00001498 if (BasicBlock *Preheader = L->getLoopPreheader())
Dan Gohman40a5a1b2009-06-24 01:18:18 +00001499 InsertPt = Preheader->getTerminator();
Andrew Trick0f8cd562012-01-02 21:25:10 +00001500 else {
1501 // LSR sets the insertion point for AddRec start/step values to the
1502 // block start to simplify value reuse, even though it's an invalid
1503 // position. SCEVExpander must correct for this in all cases.
1504 InsertPt = L->getHeader()->getFirstInsertionPt();
1505 }
Dan Gohman40a5a1b2009-06-24 01:18:18 +00001506 } else {
1507 // If the SCEV is computable at this level, insert it into the header
1508 // after the PHIs (and after any other instructions that we've inserted
1509 // there) so that it is guaranteed to dominate any user inside the loop.
Bill Wendling5b6f42f2011-08-16 20:45:24 +00001510 if (L && SE.hasComputableLoopEvolution(S, L) && !PostIncLoops.count(L))
1511 InsertPt = L->getHeader()->getFirstInsertionPt();
Andrew Trickb5c26ef2012-01-20 07:41:13 +00001512 while (InsertPt != Builder.GetInsertPoint()
1513 && (isInsertedInstruction(InsertPt)
1514 || isa<DbgInfoIntrinsic>(InsertPt))) {
Chris Lattner7896c9f2009-12-03 00:50:42 +00001515 InsertPt = llvm::next(BasicBlock::iterator(InsertPt));
Andrew Trickb5c26ef2012-01-20 07:41:13 +00001516 }
Dan Gohman40a5a1b2009-06-24 01:18:18 +00001517 break;
1518 }
Dan Gohman40a5a1b2009-06-24 01:18:18 +00001519
Dan Gohman667d7872009-06-26 22:53:46 +00001520 // Check to see if we already expanded this here.
1521 std::map<std::pair<const SCEV *, Instruction *>,
1522 AssertingVH<Value> >::iterator I =
1523 InsertedExpressions.find(std::make_pair(S, InsertPt));
Dan Gohman267a3852009-06-27 21:18:18 +00001524 if (I != InsertedExpressions.end())
Dan Gohman667d7872009-06-26 22:53:46 +00001525 return I->second;
Dan Gohman267a3852009-06-27 21:18:18 +00001526
1527 BasicBlock *SaveInsertBB = Builder.GetInsertBlock();
1528 BasicBlock::iterator SaveInsertPt = Builder.GetInsertPoint();
1529 Builder.SetInsertPoint(InsertPt->getParent(), InsertPt);
Dan Gohman667d7872009-06-26 22:53:46 +00001530
1531 // Expand the expression into instructions.
Anton Korobeynikov96fea332007-08-20 21:17:26 +00001532 Value *V = visit(S);
Dan Gohman40a5a1b2009-06-24 01:18:18 +00001533
Dan Gohman667d7872009-06-26 22:53:46 +00001534 // Remember the expanded value for this SCEV at this location.
Andrew Trick48ba0e42011-10-13 21:55:29 +00001535 //
1536 // This is independent of PostIncLoops. The mapped value simply materializes
1537 // the expression at this insertion point. If the mapped value happened to be
1538 // a postinc expansion, it could be reused by a non postinc user, but only if
1539 // its insertion point was already at the head of the loop.
1540 InsertedExpressions[std::make_pair(S, InsertPt)] = V;
Dan Gohman667d7872009-06-26 22:53:46 +00001541
Dan Gohman45598552010-02-15 00:21:43 +00001542 restoreInsertPoint(SaveInsertBB, SaveInsertPt);
Anton Korobeynikov96fea332007-08-20 21:17:26 +00001543 return V;
1544}
Dan Gohman1d09de32009-06-05 16:35:53 +00001545
Dan Gohman1d826a72010-02-14 03:12:47 +00001546void SCEVExpander::rememberInstruction(Value *I) {
Dan Gohman25fcaff2010-06-05 00:33:07 +00001547 if (!PostIncLoops.empty())
1548 InsertedPostIncValues.insert(I);
1549 else
Dan Gohman1d826a72010-02-14 03:12:47 +00001550 InsertedValues.insert(I);
Dan Gohman1d826a72010-02-14 03:12:47 +00001551}
1552
Dan Gohman45598552010-02-15 00:21:43 +00001553void SCEVExpander::restoreInsertPoint(BasicBlock *BB, BasicBlock::iterator I) {
Dan Gohman45598552010-02-15 00:21:43 +00001554 Builder.SetInsertPoint(BB, I);
1555}
1556
Dan Gohman1d09de32009-06-05 16:35:53 +00001557/// getOrInsertCanonicalInductionVariable - This method returns the
1558/// canonical induction variable of the specified type for the specified
1559/// loop (inserting one if there is none). A canonical induction variable
1560/// starts at zero and steps by one on each iteration.
Dan Gohman7c58dbd2010-07-20 16:44:52 +00001561PHINode *
Dan Gohman1d09de32009-06-05 16:35:53 +00001562SCEVExpander::getOrInsertCanonicalInductionVariable(const Loop *L,
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001563 Type *Ty) {
Duncan Sandsb0bc6c32010-02-15 16:12:20 +00001564 assert(Ty->isIntegerTy() && "Can only insert integer induction variables!");
Dan Gohman133e2952010-07-20 16:46:58 +00001565
1566 // Build a SCEV for {0,+,1}<L>.
Andrew Trick3228cc22011-03-14 16:50:06 +00001567 // Conservatively use FlagAnyWrap for now.
Dan Gohmandeff6212010-05-03 22:09:21 +00001568 const SCEV *H = SE.getAddRecExpr(SE.getConstant(Ty, 0),
Andrew Trick3228cc22011-03-14 16:50:06 +00001569 SE.getConstant(Ty, 1), L, SCEV::FlagAnyWrap);
Dan Gohman133e2952010-07-20 16:46:58 +00001570
1571 // Emit code for it.
Dan Gohman267a3852009-06-27 21:18:18 +00001572 BasicBlock *SaveInsertBB = Builder.GetInsertBlock();
1573 BasicBlock::iterator SaveInsertPt = Builder.GetInsertPoint();
Dan Gohman7c58dbd2010-07-20 16:44:52 +00001574 PHINode *V = cast<PHINode>(expandCodeFor(H, 0, L->getHeader()->begin()));
Dan Gohman267a3852009-06-27 21:18:18 +00001575 if (SaveInsertBB)
Dan Gohman45598552010-02-15 00:21:43 +00001576 restoreInsertPoint(SaveInsertBB, SaveInsertPt);
Dan Gohman133e2952010-07-20 16:46:58 +00001577
Dan Gohman40a5a1b2009-06-24 01:18:18 +00001578 return V;
Dan Gohman1d09de32009-06-05 16:35:53 +00001579}
Andrew Trick20449412011-10-11 02:28:51 +00001580
Andrew Trick139f3332012-01-07 01:29:21 +00001581/// Sort values by integer width for replaceCongruentIVs.
1582static bool width_descending(Value *lhs, Value *rhs) {
Andrew Trickee98aa82012-01-07 01:12:09 +00001583 // Put pointers at the back and make sure pointer < pointer = false.
1584 if (!lhs->getType()->isIntegerTy() || !rhs->getType()->isIntegerTy())
1585 return rhs->getType()->isIntegerTy() && !lhs->getType()->isIntegerTy();
1586 return rhs->getType()->getPrimitiveSizeInBits()
1587 < lhs->getType()->getPrimitiveSizeInBits();
1588}
1589
Andrew Trick20449412011-10-11 02:28:51 +00001590/// replaceCongruentIVs - Check for congruent phis in this loop header and
1591/// replace them with their most canonical representative. Return the number of
1592/// phis eliminated.
1593///
1594/// This does not depend on any SCEVExpander state but should be used in
1595/// the same context that SCEVExpander is used.
1596unsigned SCEVExpander::replaceCongruentIVs(Loop *L, const DominatorTree *DT,
Andrew Trickee98aa82012-01-07 01:12:09 +00001597 SmallVectorImpl<WeakVH> &DeadInsts,
1598 const TargetLowering *TLI) {
1599 // Find integer phis in order of increasing width.
1600 SmallVector<PHINode*, 8> Phis;
1601 for (BasicBlock::iterator I = L->getHeader()->begin();
1602 PHINode *Phi = dyn_cast<PHINode>(I); ++I) {
1603 Phis.push_back(Phi);
1604 }
1605 if (TLI)
1606 std::sort(Phis.begin(), Phis.end(), width_descending);
1607
Andrew Trick20449412011-10-11 02:28:51 +00001608 unsigned NumElim = 0;
1609 DenseMap<const SCEV *, PHINode *> ExprToIVMap;
Andrew Trickee98aa82012-01-07 01:12:09 +00001610 // Process phis from wide to narrow. Mapping wide phis to the their truncation
1611 // so narrow phis can reuse them.
1612 for (SmallVectorImpl<PHINode*>::const_iterator PIter = Phis.begin(),
1613 PEnd = Phis.end(); PIter != PEnd; ++PIter) {
1614 PHINode *Phi = *PIter;
1615
Andrew Trick20449412011-10-11 02:28:51 +00001616 if (!SE.isSCEVable(Phi->getType()))
1617 continue;
1618
1619 PHINode *&OrigPhiRef = ExprToIVMap[SE.getSCEV(Phi)];
1620 if (!OrigPhiRef) {
1621 OrigPhiRef = Phi;
Andrew Trickee98aa82012-01-07 01:12:09 +00001622 if (Phi->getType()->isIntegerTy() && TLI
1623 && TLI->isTruncateFree(Phi->getType(), Phis.back()->getType())) {
1624 // This phi can be freely truncated to the narrowest phi type. Map the
1625 // truncated expression to it so it will be reused for narrow types.
1626 const SCEV *TruncExpr =
1627 SE.getTruncateExpr(SE.getSCEV(Phi), Phis.back()->getType());
1628 ExprToIVMap[TruncExpr] = Phi;
1629 }
Andrew Trick20449412011-10-11 02:28:51 +00001630 continue;
1631 }
1632
Andrew Trickee98aa82012-01-07 01:12:09 +00001633 // Replacing a pointer phi with an integer phi or vice-versa doesn't make
1634 // sense.
1635 if (OrigPhiRef->getType()->isPointerTy() != Phi->getType()->isPointerTy())
Andrew Trick20449412011-10-11 02:28:51 +00001636 continue;
1637
1638 if (BasicBlock *LatchBlock = L->getLoopLatch()) {
1639 Instruction *OrigInc =
1640 cast<Instruction>(OrigPhiRef->getIncomingValueForBlock(LatchBlock));
1641 Instruction *IsomorphicInc =
1642 cast<Instruction>(Phi->getIncomingValueForBlock(LatchBlock));
1643
Andrew Trickee98aa82012-01-07 01:12:09 +00001644 // If this phi has the same width but is more canonical, replace the
Andrew Trickb5c26ef2012-01-20 07:41:13 +00001645 // original with it. As part of the "more canonical" determination,
1646 // respect a prior decision to use an IV chain.
Andrew Trickee98aa82012-01-07 01:12:09 +00001647 if (OrigPhiRef->getType() == Phi->getType()
Andrew Trickb5c26ef2012-01-20 07:41:13 +00001648 && !(ChainedPhis.count(Phi)
1649 || isExpandedAddRecExprPHI(OrigPhiRef, OrigInc, L))
1650 && (ChainedPhis.count(Phi)
1651 || isExpandedAddRecExprPHI(Phi, IsomorphicInc, L))) {
Andrew Trick20449412011-10-11 02:28:51 +00001652 std::swap(OrigPhiRef, Phi);
1653 std::swap(OrigInc, IsomorphicInc);
1654 }
1655 // Replacing the congruent phi is sufficient because acyclic redundancy
1656 // elimination, CSE/GVN, should handle the rest. However, once SCEV proves
1657 // that a phi is congruent, it's often the head of an IV user cycle that
Andrew Trick139f3332012-01-07 01:29:21 +00001658 // is isomorphic with the original phi. It's worth eagerly cleaning up the
1659 // common case of a single IV increment so that DeleteDeadPHIs can remove
1660 // cycles that had postinc uses.
Andrew Trickee98aa82012-01-07 01:12:09 +00001661 const SCEV *TruncExpr = SE.getTruncateOrNoop(SE.getSCEV(OrigInc),
1662 IsomorphicInc->getType());
1663 if (OrigInc != IsomorphicInc
Andrew Trick64925c52012-01-10 01:45:08 +00001664 && TruncExpr == SE.getSCEV(IsomorphicInc)
Andrew Trickb5c26ef2012-01-20 07:41:13 +00001665 && ((isa<PHINode>(OrigInc) && isa<PHINode>(IsomorphicInc))
1666 || hoistIVInc(OrigInc, IsomorphicInc))) {
Andrew Trick20449412011-10-11 02:28:51 +00001667 DEBUG_WITH_TYPE(DebugType, dbgs()
1668 << "INDVARS: Eliminated congruent iv.inc: "
1669 << *IsomorphicInc << '\n');
Andrew Trickee98aa82012-01-07 01:12:09 +00001670 Value *NewInc = OrigInc;
1671 if (OrigInc->getType() != IsomorphicInc->getType()) {
Andrew Trickdd1f22f2012-01-14 03:17:23 +00001672 Instruction *IP = isa<PHINode>(OrigInc)
1673 ? (Instruction*)L->getHeader()->getFirstInsertionPt()
1674 : OrigInc->getNextNode();
1675 IRBuilder<> Builder(IP);
Andrew Trickee98aa82012-01-07 01:12:09 +00001676 Builder.SetCurrentDebugLocation(IsomorphicInc->getDebugLoc());
1677 NewInc = Builder.
1678 CreateTruncOrBitCast(OrigInc, IsomorphicInc->getType(), IVName);
1679 }
1680 IsomorphicInc->replaceAllUsesWith(NewInc);
Andrew Trick20449412011-10-11 02:28:51 +00001681 DeadInsts.push_back(IsomorphicInc);
1682 }
1683 }
1684 DEBUG_WITH_TYPE(DebugType, dbgs()
1685 << "INDVARS: Eliminated congruent iv: " << *Phi << '\n');
1686 ++NumElim;
Andrew Trickee98aa82012-01-07 01:12:09 +00001687 Value *NewIV = OrigPhiRef;
1688 if (OrigPhiRef->getType() != Phi->getType()) {
1689 IRBuilder<> Builder(L->getHeader()->getFirstInsertionPt());
1690 Builder.SetCurrentDebugLocation(Phi->getDebugLoc());
1691 NewIV = Builder.CreateTruncOrBitCast(OrigPhiRef, Phi->getType(), IVName);
1692 }
1693 Phi->replaceAllUsesWith(NewIV);
Andrew Trick20449412011-10-11 02:28:51 +00001694 DeadInsts.push_back(Phi);
1695 }
1696 return NumElim;
1697}