blob: 79d9ddde569fab55c48addf9224e0e4fb0c255c7 [file] [log] [blame]
Eugene Zelenkoffec81c2015-11-04 22:32:32 +00001//===- InstCombineAddSub.cpp ------------------------------------*- C++ -*-===//
Chris Lattner82aa8882010-01-05 07:18:46 +00002//
Chandler Carruth2946cd72019-01-19 08:50:56 +00003// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4// See https://llvm.org/LICENSE.txt for license information.
5// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
Chris Lattner82aa8882010-01-05 07:18:46 +00006//
7//===----------------------------------------------------------------------===//
8//
9// This file implements the visit functions for add, fadd, sub, and fsub.
10//
11//===----------------------------------------------------------------------===//
12
Chandler Carrutha9174582015-01-22 05:25:13 +000013#include "InstCombineInternal.h"
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +000014#include "llvm/ADT/APFloat.h"
15#include "llvm/ADT/APInt.h"
Craig Topper58713212013-07-15 04:27:47 +000016#include "llvm/ADT/STLExtras.h"
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +000017#include "llvm/ADT/SmallVector.h"
Chris Lattner82aa8882010-01-05 07:18:46 +000018#include "llvm/Analysis/InstructionSimplify.h"
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +000019#include "llvm/Analysis/ValueTracking.h"
20#include "llvm/IR/Constant.h"
21#include "llvm/IR/Constants.h"
22#include "llvm/IR/InstrTypes.h"
23#include "llvm/IR/Instruction.h"
24#include "llvm/IR/Instructions.h"
25#include "llvm/IR/Operator.h"
Chandler Carruth820a9082014-03-04 11:08:18 +000026#include "llvm/IR/PatternMatch.h"
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +000027#include "llvm/IR/Type.h"
28#include "llvm/IR/Value.h"
29#include "llvm/Support/AlignOf.h"
30#include "llvm/Support/Casting.h"
Craig Topperb45eabc2017-04-26 16:39:58 +000031#include "llvm/Support/KnownBits.h"
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +000032#include <cassert>
33#include <utility>
Eugene Zelenkoffec81c2015-11-04 22:32:32 +000034
Chris Lattner82aa8882010-01-05 07:18:46 +000035using namespace llvm;
36using namespace PatternMatch;
37
Chandler Carruth964daaa2014-04-22 02:55:47 +000038#define DEBUG_TYPE "instcombine"
39
Shuxin Yang37a1efe2012-12-18 23:10:12 +000040namespace {
41
42 /// Class representing coefficient of floating-point addend.
43 /// This class needs to be highly efficient, which is especially true for
44 /// the constructor. As of I write this comment, the cost of the default
Jim Grosbachbdbd7342013-04-05 21:20:12 +000045 /// constructor is merely 4-byte-store-zero (Assuming compiler is able to
Shuxin Yang37a1efe2012-12-18 23:10:12 +000046 /// perform write-merging).
Jim Grosbachbdbd7342013-04-05 21:20:12 +000047 ///
Shuxin Yang37a1efe2012-12-18 23:10:12 +000048 class FAddendCoef {
49 public:
Suyog Sardade409fd2014-07-17 06:09:34 +000050 // The constructor has to initialize a APFloat, which is unnecessary for
Shuxin Yang37a1efe2012-12-18 23:10:12 +000051 // most addends which have coefficient either 1 or -1. So, the constructor
52 // is expensive. In order to avoid the cost of the constructor, we should
53 // reuse some instances whenever possible. The pre-created instances
54 // FAddCombine::Add[0-5] embodies this idea.
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +000055 FAddendCoef() = default;
Shuxin Yang37a1efe2012-12-18 23:10:12 +000056 ~FAddendCoef();
Jim Grosbachbdbd7342013-04-05 21:20:12 +000057
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +000058 // If possible, don't define operator+/operator- etc because these
59 // operators inevitably call FAddendCoef's constructor which is not cheap.
60 void operator=(const FAddendCoef &A);
61 void operator+=(const FAddendCoef &A);
62 void operator*=(const FAddendCoef &S);
63
Shuxin Yang37a1efe2012-12-18 23:10:12 +000064 void set(short C) {
65 assert(!insaneIntVal(C) && "Insane coefficient");
66 IsFp = false; IntVal = C;
67 }
Jim Grosbachbdbd7342013-04-05 21:20:12 +000068
Shuxin Yang37a1efe2012-12-18 23:10:12 +000069 void set(const APFloat& C);
Shuxin Yang389ed4b2013-03-25 20:43:41 +000070
Shuxin Yang37a1efe2012-12-18 23:10:12 +000071 void negate();
Jim Grosbachbdbd7342013-04-05 21:20:12 +000072
Shuxin Yang37a1efe2012-12-18 23:10:12 +000073 bool isZero() const { return isInt() ? !IntVal : getFpVal().isZero(); }
74 Value *getValue(Type *) const;
Jim Grosbachbdbd7342013-04-05 21:20:12 +000075
Shuxin Yang37a1efe2012-12-18 23:10:12 +000076 bool isOne() const { return isInt() && IntVal == 1; }
77 bool isTwo() const { return isInt() && IntVal == 2; }
78 bool isMinusOne() const { return isInt() && IntVal == -1; }
79 bool isMinusTwo() const { return isInt() && IntVal == -2; }
Jim Grosbachbdbd7342013-04-05 21:20:12 +000080
Shuxin Yang37a1efe2012-12-18 23:10:12 +000081 private:
82 bool insaneIntVal(int V) { return V > 4 || V < -4; }
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +000083
Eugene Zelenkoffec81c2015-11-04 22:32:32 +000084 APFloat *getFpValPtr()
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +000085 { return reinterpret_cast<APFloat *>(&FpValBuf.buffer[0]); }
86
Eugene Zelenkoffec81c2015-11-04 22:32:32 +000087 const APFloat *getFpValPtr() const
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +000088 { return reinterpret_cast<const APFloat *>(&FpValBuf.buffer[0]); }
Shuxin Yang37a1efe2012-12-18 23:10:12 +000089
Eugene Zelenkoffec81c2015-11-04 22:32:32 +000090 const APFloat &getFpVal() const {
Shuxin Yang37a1efe2012-12-18 23:10:12 +000091 assert(IsFp && BufHasFpVal && "Incorret state");
David Greene530430b2013-01-14 21:04:40 +000092 return *getFpValPtr();
Shuxin Yang37a1efe2012-12-18 23:10:12 +000093 }
94
Eugene Zelenkoffec81c2015-11-04 22:32:32 +000095 APFloat &getFpVal() {
Jim Grosbachbdbd7342013-04-05 21:20:12 +000096 assert(IsFp && BufHasFpVal && "Incorret state");
97 return *getFpValPtr();
98 }
99
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000100 bool isInt() const { return !IsFp; }
101
Shuxin Yang389ed4b2013-03-25 20:43:41 +0000102 // If the coefficient is represented by an integer, promote it to a
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000103 // floating point.
Shuxin Yang389ed4b2013-03-25 20:43:41 +0000104 void convertToFpType(const fltSemantics &Sem);
105
106 // Construct an APFloat from a signed integer.
107 // TODO: We should get rid of this function when APFloat can be constructed
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000108 // from an *SIGNED* integer.
Shuxin Yang389ed4b2013-03-25 20:43:41 +0000109 APFloat createAPFloatFromInt(const fltSemantics &Sem, int Val);
Shuxin Yang5b841c42012-12-19 01:10:17 +0000110
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +0000111 bool IsFp = false;
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000112
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000113 // True iff FpValBuf contains an instance of APFloat.
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +0000114 bool BufHasFpVal = false;
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000115
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000116 // The integer coefficient of an individual addend is either 1 or -1,
117 // and we try to simplify at most 4 addends from neighboring at most
118 // two instructions. So the range of <IntVal> falls in [-4, 4]. APInt
119 // is overkill of this end.
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +0000120 short IntVal = 0;
Shuxin Yang5b841c42012-12-19 01:10:17 +0000121
122 AlignedCharArrayUnion<APFloat> FpValBuf;
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000123 };
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000124
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000125 /// FAddend is used to represent floating-point addend. An addend is
126 /// represented as <C, V>, where the V is a symbolic value, and C is a
127 /// constant coefficient. A constant addend is represented as <C, 0>.
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000128 class FAddend {
129 public:
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +0000130 FAddend() = default;
131
132 void operator+=(const FAddend &T) {
133 assert((Val == T.Val) && "Symbolic-values disagree");
134 Coeff += T.Coeff;
135 }
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000136
Eugene Zelenkoffec81c2015-11-04 22:32:32 +0000137 Value *getSymVal() const { return Val; }
138 const FAddendCoef &getCoef() const { return Coeff; }
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000139
Craig Topperf40110f2014-04-25 05:29:35 +0000140 bool isConstant() const { return Val == nullptr; }
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000141 bool isZero() const { return Coeff.isZero(); }
142
Richard Trieu7a083812016-02-18 22:09:30 +0000143 void set(short Coefficient, Value *V) {
144 Coeff.set(Coefficient);
145 Val = V;
146 }
147 void set(const APFloat &Coefficient, Value *V) {
148 Coeff.set(Coefficient);
149 Val = V;
150 }
151 void set(const ConstantFP *Coefficient, Value *V) {
152 Coeff.set(Coefficient->getValueAPF());
153 Val = V;
154 }
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000155
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000156 void negate() { Coeff.negate(); }
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000157
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000158 /// Drill down the U-D chain one step to find the definition of V, and
159 /// try to break the definition into one or two addends.
160 static unsigned drillValueDownOneStep(Value* V, FAddend &A0, FAddend &A1);
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000161
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000162 /// Similar to FAddend::drillDownOneStep() except that the value being
163 /// splitted is the addend itself.
164 unsigned drillAddendDownOneStep(FAddend &Addend0, FAddend &Addend1) const;
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000165
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000166 private:
167 void Scale(const FAddendCoef& ScaleAmt) { Coeff *= ScaleAmt; }
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000168
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000169 // This addend has the value of "Coeff * Val".
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +0000170 Value *Val = nullptr;
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000171 FAddendCoef Coeff;
172 };
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000173
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000174 /// FAddCombine is the class for optimizing an unsafe fadd/fsub along
175 /// with its neighboring at most two instructions.
176 ///
177 class FAddCombine {
178 public:
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +0000179 FAddCombine(InstCombiner::BuilderTy &B) : Builder(B) {}
180
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000181 Value *simplify(Instruction *FAdd);
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000182
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000183 private:
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +0000184 using AddendVect = SmallVector<const FAddend *, 4>;
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000185
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000186 Value *simplifyFAdd(AddendVect& V, unsigned InstrQuota);
Shuxin Yang2eca6022013-03-14 18:08:26 +0000187
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000188 /// Convert given addend to a Value
189 Value *createAddendVal(const FAddend &A, bool& NeedNeg);
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000190
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000191 /// Return the number of instructions needed to emit the N-ary addition.
192 unsigned calcInstrNumber(const AddendVect& Vect);
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +0000193
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000194 Value *createFSub(Value *Opnd0, Value *Opnd1);
195 Value *createFAdd(Value *Opnd0, Value *Opnd1);
196 Value *createFMul(Value *Opnd0, Value *Opnd1);
197 Value *createFNeg(Value *V);
198 Value *createNaryFAdd(const AddendVect& Opnds, unsigned InstrQuota);
Owen Anderson1664dc82014-01-20 07:44:53 +0000199 void createInstPostProc(Instruction *NewInst, bool NoNumber = false);
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000200
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000201 // Debugging stuff are clustered here.
202 #ifndef NDEBUG
203 unsigned CreateInstrNum;
204 void initCreateInstNum() { CreateInstrNum = 0; }
205 void incCreateInstNum() { CreateInstrNum++; }
206 #else
207 void initCreateInstNum() {}
208 void incCreateInstNum() {}
209 #endif
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +0000210
211 InstCombiner::BuilderTy &Builder;
212 Instruction *Instr = nullptr;
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000213 };
Eugene Zelenkoffec81c2015-11-04 22:32:32 +0000214
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +0000215} // end anonymous namespace
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000216
217//===----------------------------------------------------------------------===//
218//
219// Implementation of
220// {FAddendCoef, FAddend, FAddition, FAddCombine}.
221//
222//===----------------------------------------------------------------------===//
223FAddendCoef::~FAddendCoef() {
224 if (BufHasFpVal)
225 getFpValPtr()->~APFloat();
226}
227
228void FAddendCoef::set(const APFloat& C) {
229 APFloat *P = getFpValPtr();
230
231 if (isInt()) {
232 // As the buffer is meanless byte stream, we cannot call
233 // APFloat::operator=().
234 new(P) APFloat(C);
235 } else
236 *P = C;
237
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000238 IsFp = BufHasFpVal = true;
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000239}
240
Shuxin Yang389ed4b2013-03-25 20:43:41 +0000241void FAddendCoef::convertToFpType(const fltSemantics &Sem) {
242 if (!isInt())
243 return;
244
245 APFloat *P = getFpValPtr();
246 if (IntVal > 0)
247 new(P) APFloat(Sem, IntVal);
248 else {
249 new(P) APFloat(Sem, 0 - IntVal);
250 P->changeSign();
251 }
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000252 IsFp = BufHasFpVal = true;
Shuxin Yang389ed4b2013-03-25 20:43:41 +0000253}
254
255APFloat FAddendCoef::createAPFloatFromInt(const fltSemantics &Sem, int Val) {
256 if (Val >= 0)
257 return APFloat(Sem, Val);
258
259 APFloat T(Sem, 0 - Val);
260 T.changeSign();
261
262 return T;
263}
264
265void FAddendCoef::operator=(const FAddendCoef &That) {
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000266 if (That.isInt())
267 set(That.IntVal);
268 else
269 set(That.getFpVal());
270}
271
272void FAddendCoef::operator+=(const FAddendCoef &That) {
273 enum APFloat::roundingMode RndMode = APFloat::rmNearestTiesToEven;
274 if (isInt() == That.isInt()) {
275 if (isInt())
276 IntVal += That.IntVal;
277 else
278 getFpVal().add(That.getFpVal(), RndMode);
279 return;
280 }
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000281
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000282 if (isInt()) {
283 const APFloat &T = That.getFpVal();
Shuxin Yang389ed4b2013-03-25 20:43:41 +0000284 convertToFpType(T.getSemantics());
285 getFpVal().add(T, RndMode);
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000286 return;
287 }
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000288
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000289 APFloat &T = getFpVal();
Shuxin Yang389ed4b2013-03-25 20:43:41 +0000290 T.add(createAPFloatFromInt(T.getSemantics(), That.IntVal), RndMode);
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000291}
292
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000293void FAddendCoef::operator*=(const FAddendCoef &That) {
294 if (That.isOne())
295 return;
296
297 if (That.isMinusOne()) {
298 negate();
299 return;
300 }
301
302 if (isInt() && That.isInt()) {
303 int Res = IntVal * (int)That.IntVal;
304 assert(!insaneIntVal(Res) && "Insane int value");
305 IntVal = Res;
306 return;
307 }
308
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000309 const fltSemantics &Semantic =
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000310 isInt() ? That.getFpVal().getSemantics() : getFpVal().getSemantics();
311
312 if (isInt())
Shuxin Yang389ed4b2013-03-25 20:43:41 +0000313 convertToFpType(Semantic);
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000314 APFloat &F0 = getFpVal();
315
316 if (That.isInt())
Shuxin Yang389ed4b2013-03-25 20:43:41 +0000317 F0.multiply(createAPFloatFromInt(Semantic, That.IntVal),
318 APFloat::rmNearestTiesToEven);
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000319 else
320 F0.multiply(That.getFpVal(), APFloat::rmNearestTiesToEven);
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000321}
322
323void FAddendCoef::negate() {
324 if (isInt())
325 IntVal = 0 - IntVal;
326 else
327 getFpVal().changeSign();
328}
329
330Value *FAddendCoef::getValue(Type *Ty) const {
331 return isInt() ?
332 ConstantFP::get(Ty, float(IntVal)) :
333 ConstantFP::get(Ty->getContext(), getFpVal());
334}
335
336// The definition of <Val> Addends
337// =========================================
338// A + B <1, A>, <1,B>
339// A - B <1, A>, <1,B>
340// 0 - B <-1, B>
341// C * A, <C, A>
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000342// A + C <1, A> <C, NULL>
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000343// 0 +/- 0 <0, NULL> (corner case)
344//
345// Legend: A and B are not constant, C is constant
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000346unsigned FAddend::drillValueDownOneStep
347 (Value *Val, FAddend &Addend0, FAddend &Addend1) {
Craig Topperf40110f2014-04-25 05:29:35 +0000348 Instruction *I = nullptr;
349 if (!Val || !(I = dyn_cast<Instruction>(Val)))
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000350 return 0;
351
352 unsigned Opcode = I->getOpcode();
353
354 if (Opcode == Instruction::FAdd || Opcode == Instruction::FSub) {
355 ConstantFP *C0, *C1;
356 Value *Opnd0 = I->getOperand(0);
357 Value *Opnd1 = I->getOperand(1);
358 if ((C0 = dyn_cast<ConstantFP>(Opnd0)) && C0->isZero())
Craig Topperf40110f2014-04-25 05:29:35 +0000359 Opnd0 = nullptr;
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000360
361 if ((C1 = dyn_cast<ConstantFP>(Opnd1)) && C1->isZero())
Craig Topperf40110f2014-04-25 05:29:35 +0000362 Opnd1 = nullptr;
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000363
364 if (Opnd0) {
365 if (!C0)
366 Addend0.set(1, Opnd0);
367 else
Craig Topperf40110f2014-04-25 05:29:35 +0000368 Addend0.set(C0, nullptr);
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000369 }
370
371 if (Opnd1) {
372 FAddend &Addend = Opnd0 ? Addend1 : Addend0;
373 if (!C1)
374 Addend.set(1, Opnd1);
375 else
Craig Topperf40110f2014-04-25 05:29:35 +0000376 Addend.set(C1, nullptr);
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000377 if (Opcode == Instruction::FSub)
378 Addend.negate();
379 }
380
381 if (Opnd0 || Opnd1)
382 return Opnd0 && Opnd1 ? 2 : 1;
383
384 // Both operands are zero. Weird!
Craig Topperf40110f2014-04-25 05:29:35 +0000385 Addend0.set(APFloat(C0->getValueAPF().getSemantics()), nullptr);
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000386 return 1;
387 }
388
389 if (I->getOpcode() == Instruction::FMul) {
390 Value *V0 = I->getOperand(0);
391 Value *V1 = I->getOperand(1);
392 if (ConstantFP *C = dyn_cast<ConstantFP>(V0)) {
393 Addend0.set(C, V1);
394 return 1;
395 }
396
397 if (ConstantFP *C = dyn_cast<ConstantFP>(V1)) {
398 Addend0.set(C, V0);
399 return 1;
400 }
401 }
402
403 return 0;
404}
405
406// Try to break *this* addend into two addends. e.g. Suppose this addend is
407// <2.3, V>, and V = X + Y, by calling this function, we obtain two addends,
408// i.e. <2.3, X> and <2.3, Y>.
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000409unsigned FAddend::drillAddendDownOneStep
410 (FAddend &Addend0, FAddend &Addend1) const {
411 if (isConstant())
412 return 0;
413
414 unsigned BreakNum = FAddend::drillValueDownOneStep(Val, Addend0, Addend1);
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000415 if (!BreakNum || Coeff.isOne())
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000416 return BreakNum;
417
418 Addend0.Scale(Coeff);
419
420 if (BreakNum == 2)
421 Addend1.Scale(Coeff);
422
423 return BreakNum;
424}
425
426Value *FAddCombine::simplify(Instruction *I) {
Warren Ristow8b2f27c2018-04-14 19:18:28 +0000427 assert(I->hasAllowReassoc() && I->hasNoSignedZeros() &&
428 "Expected 'reassoc'+'nsz' instruction");
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000429
430 // Currently we are not able to handle vector type.
431 if (I->getType()->isVectorTy())
Craig Topperf40110f2014-04-25 05:29:35 +0000432 return nullptr;
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000433
434 assert((I->getOpcode() == Instruction::FAdd ||
435 I->getOpcode() == Instruction::FSub) && "Expect add/sub");
436
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000437 // Save the instruction before calling other member-functions.
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000438 Instr = I;
439
440 FAddend Opnd0, Opnd1, Opnd0_0, Opnd0_1, Opnd1_0, Opnd1_1;
441
442 unsigned OpndNum = FAddend::drillValueDownOneStep(I, Opnd0, Opnd1);
443
444 // Step 1: Expand the 1st addend into Opnd0_0 and Opnd0_1.
445 unsigned Opnd0_ExpNum = 0;
446 unsigned Opnd1_ExpNum = 0;
447
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000448 if (!Opnd0.isConstant())
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000449 Opnd0_ExpNum = Opnd0.drillAddendDownOneStep(Opnd0_0, Opnd0_1);
450
451 // Step 2: Expand the 2nd addend into Opnd1_0 and Opnd1_1.
452 if (OpndNum == 2 && !Opnd1.isConstant())
453 Opnd1_ExpNum = Opnd1.drillAddendDownOneStep(Opnd1_0, Opnd1_1);
454
455 // Step 3: Try to optimize Opnd0_0 + Opnd0_1 + Opnd1_0 + Opnd1_1
456 if (Opnd0_ExpNum && Opnd1_ExpNum) {
457 AddendVect AllOpnds;
458 AllOpnds.push_back(&Opnd0_0);
459 AllOpnds.push_back(&Opnd1_0);
460 if (Opnd0_ExpNum == 2)
461 AllOpnds.push_back(&Opnd0_1);
462 if (Opnd1_ExpNum == 2)
463 AllOpnds.push_back(&Opnd1_1);
464
465 // Compute instruction quota. We should save at least one instruction.
466 unsigned InstQuota = 0;
467
468 Value *V0 = I->getOperand(0);
469 Value *V1 = I->getOperand(1);
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000470 InstQuota = ((!isa<Constant>(V0) && V0->hasOneUse()) &&
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000471 (!isa<Constant>(V1) && V1->hasOneUse())) ? 2 : 1;
472
473 if (Value *R = simplifyFAdd(AllOpnds, InstQuota))
474 return R;
475 }
476
477 if (OpndNum != 2) {
478 // The input instruction is : "I=0.0 +/- V". If the "V" were able to be
479 // splitted into two addends, say "V = X - Y", the instruction would have
480 // been optimized into "I = Y - X" in the previous steps.
481 //
482 const FAddendCoef &CE = Opnd0.getCoef();
Craig Topperf40110f2014-04-25 05:29:35 +0000483 return CE.isOne() ? Opnd0.getSymVal() : nullptr;
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000484 }
485
486 // step 4: Try to optimize Opnd0 + Opnd1_0 [+ Opnd1_1]
487 if (Opnd1_ExpNum) {
488 AddendVect AllOpnds;
489 AllOpnds.push_back(&Opnd0);
490 AllOpnds.push_back(&Opnd1_0);
491 if (Opnd1_ExpNum == 2)
492 AllOpnds.push_back(&Opnd1_1);
493
494 if (Value *R = simplifyFAdd(AllOpnds, 1))
495 return R;
496 }
497
498 // step 5: Try to optimize Opnd1 + Opnd0_0 [+ Opnd0_1]
499 if (Opnd0_ExpNum) {
500 AddendVect AllOpnds;
501 AllOpnds.push_back(&Opnd1);
502 AllOpnds.push_back(&Opnd0_0);
503 if (Opnd0_ExpNum == 2)
504 AllOpnds.push_back(&Opnd0_1);
505
506 if (Value *R = simplifyFAdd(AllOpnds, 1))
507 return R;
508 }
509
Sanjay Pateldc185ee2018-08-12 15:48:26 +0000510 return nullptr;
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000511}
512
513Value *FAddCombine::simplifyFAdd(AddendVect& Addends, unsigned InstrQuota) {
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000514 unsigned AddendNum = Addends.size();
515 assert(AddendNum <= 4 && "Too many addends");
516
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000517 // For saving intermediate results;
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000518 unsigned NextTmpIdx = 0;
519 FAddend TmpResult[3];
520
521 // Points to the constant addend of the resulting simplified expression.
522 // If the resulting expr has constant-addend, this constant-addend is
523 // desirable to reside at the top of the resulting expression tree. Placing
524 // constant close to supper-expr(s) will potentially reveal some optimization
525 // opportunities in super-expr(s).
Craig Topperf40110f2014-04-25 05:29:35 +0000526 const FAddend *ConstAdd = nullptr;
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000527
528 // Simplified addends are placed <SimpVect>.
529 AddendVect SimpVect;
530
531 // The outer loop works on one symbolic-value at a time. Suppose the input
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000532 // addends are : <a1, x>, <b1, y>, <a2, x>, <c1, z>, <b2, y>, ...
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000533 // The symbolic-values will be processed in this order: x, y, z.
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000534 for (unsigned SymIdx = 0; SymIdx < AddendNum; SymIdx++) {
535
536 const FAddend *ThisAddend = Addends[SymIdx];
537 if (!ThisAddend) {
538 // This addend was processed before.
539 continue;
540 }
541
542 Value *Val = ThisAddend->getSymVal();
543 unsigned StartIdx = SimpVect.size();
544 SimpVect.push_back(ThisAddend);
545
546 // The inner loop collects addends sharing same symbolic-value, and these
547 // addends will be later on folded into a single addend. Following above
548 // example, if the symbolic value "y" is being processed, the inner loop
549 // will collect two addends "<b1,y>" and "<b2,Y>". These two addends will
550 // be later on folded into "<b1+b2, y>".
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000551 for (unsigned SameSymIdx = SymIdx + 1;
552 SameSymIdx < AddendNum; SameSymIdx++) {
553 const FAddend *T = Addends[SameSymIdx];
554 if (T && T->getSymVal() == Val) {
555 // Set null such that next iteration of the outer loop will not process
556 // this addend again.
Craig Topperf40110f2014-04-25 05:29:35 +0000557 Addends[SameSymIdx] = nullptr;
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000558 SimpVect.push_back(T);
559 }
560 }
561
562 // If multiple addends share same symbolic value, fold them together.
563 if (StartIdx + 1 != SimpVect.size()) {
564 FAddend &R = TmpResult[NextTmpIdx ++];
565 R = *SimpVect[StartIdx];
566 for (unsigned Idx = StartIdx + 1; Idx < SimpVect.size(); Idx++)
567 R += *SimpVect[Idx];
568
569 // Pop all addends being folded and push the resulting folded addend.
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000570 SimpVect.resize(StartIdx);
Craig Topperf40110f2014-04-25 05:29:35 +0000571 if (Val) {
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000572 if (!R.isZero()) {
573 SimpVect.push_back(&R);
574 }
575 } else {
576 // Don't push constant addend at this time. It will be the last element
577 // of <SimpVect>.
578 ConstAdd = &R;
579 }
580 }
581 }
582
Craig Topper58713212013-07-15 04:27:47 +0000583 assert((NextTmpIdx <= array_lengthof(TmpResult) + 1) &&
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000584 "out-of-bound access");
585
586 if (ConstAdd)
587 SimpVect.push_back(ConstAdd);
588
589 Value *Result;
590 if (!SimpVect.empty())
591 Result = createNaryFAdd(SimpVect, InstrQuota);
592 else {
593 // The addition is folded to 0.0.
594 Result = ConstantFP::get(Instr->getType(), 0.0);
595 }
596
597 return Result;
598}
599
600Value *FAddCombine::createNaryFAdd
601 (const AddendVect &Opnds, unsigned InstrQuota) {
602 assert(!Opnds.empty() && "Expect at least one addend");
603
604 // Step 1: Check if the # of instructions needed exceeds the quota.
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +0000605
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000606 unsigned InstrNeeded = calcInstrNumber(Opnds);
607 if (InstrNeeded > InstrQuota)
Craig Topperf40110f2014-04-25 05:29:35 +0000608 return nullptr;
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000609
610 initCreateInstNum();
611
612 // step 2: Emit the N-ary addition.
613 // Note that at most three instructions are involved in Fadd-InstCombine: the
614 // addition in question, and at most two neighboring instructions.
615 // The resulting optimized addition should have at least one less instruction
616 // than the original addition expression tree. This implies that the resulting
617 // N-ary addition has at most two instructions, and we don't need to worry
618 // about tree-height when constructing the N-ary addition.
619
Craig Topperf40110f2014-04-25 05:29:35 +0000620 Value *LastVal = nullptr;
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000621 bool LastValNeedNeg = false;
622
623 // Iterate the addends, creating fadd/fsub using adjacent two addends.
Benjamin Kramer135f7352016-06-26 12:28:59 +0000624 for (const FAddend *Opnd : Opnds) {
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000625 bool NeedNeg;
Benjamin Kramer135f7352016-06-26 12:28:59 +0000626 Value *V = createAddendVal(*Opnd, NeedNeg);
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000627 if (!LastVal) {
628 LastVal = V;
629 LastValNeedNeg = NeedNeg;
630 continue;
631 }
632
633 if (LastValNeedNeg == NeedNeg) {
634 LastVal = createFAdd(LastVal, V);
635 continue;
636 }
637
638 if (LastValNeedNeg)
639 LastVal = createFSub(V, LastVal);
640 else
641 LastVal = createFSub(LastVal, V);
642
643 LastValNeedNeg = false;
644 }
645
646 if (LastValNeedNeg) {
647 LastVal = createFNeg(LastVal);
648 }
649
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +0000650#ifndef NDEBUG
651 assert(CreateInstrNum == InstrNeeded &&
652 "Inconsistent in instruction numbers");
653#endif
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000654
655 return LastVal;
656}
657
Sanjay Patelc242dbb2014-12-18 21:11:09 +0000658Value *FAddCombine::createFSub(Value *Opnd0, Value *Opnd1) {
Craig Topperbb4069e2017-07-07 23:16:26 +0000659 Value *V = Builder.CreateFSub(Opnd0, Opnd1);
Shuxin Yang2eca6022013-03-14 18:08:26 +0000660 if (Instruction *I = dyn_cast<Instruction>(V))
661 createInstPostProc(I);
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000662 return V;
663}
664
665Value *FAddCombine::createFNeg(Value *V) {
Sanjay Patelea3c8022014-12-19 16:44:08 +0000666 Value *Zero = cast<Value>(ConstantFP::getZeroValueForNegation(V->getType()));
Owen Anderson1664dc82014-01-20 07:44:53 +0000667 Value *NewV = createFSub(Zero, V);
668 if (Instruction *I = dyn_cast<Instruction>(NewV))
669 createInstPostProc(I, true); // fneg's don't receive instruction numbers.
670 return NewV;
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000671}
672
Sanjay Patelc242dbb2014-12-18 21:11:09 +0000673Value *FAddCombine::createFAdd(Value *Opnd0, Value *Opnd1) {
Craig Topperbb4069e2017-07-07 23:16:26 +0000674 Value *V = Builder.CreateFAdd(Opnd0, Opnd1);
Shuxin Yang2eca6022013-03-14 18:08:26 +0000675 if (Instruction *I = dyn_cast<Instruction>(V))
676 createInstPostProc(I);
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000677 return V;
678}
679
680Value *FAddCombine::createFMul(Value *Opnd0, Value *Opnd1) {
Craig Topperbb4069e2017-07-07 23:16:26 +0000681 Value *V = Builder.CreateFMul(Opnd0, Opnd1);
Shuxin Yang2eca6022013-03-14 18:08:26 +0000682 if (Instruction *I = dyn_cast<Instruction>(V))
683 createInstPostProc(I);
684 return V;
685}
686
Sanjay Patelc242dbb2014-12-18 21:11:09 +0000687void FAddCombine::createInstPostProc(Instruction *NewInstr, bool NoNumber) {
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000688 NewInstr->setDebugLoc(Instr->getDebugLoc());
689
690 // Keep track of the number of instruction created.
Owen Anderson1664dc82014-01-20 07:44:53 +0000691 if (!NoNumber)
692 incCreateInstNum();
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000693
694 // Propagate fast-math flags
695 NewInstr->setFastMathFlags(Instr->getFastMathFlags());
696}
697
698// Return the number of instruction needed to emit the N-ary addition.
699// NOTE: Keep this function in sync with createAddendVal().
700unsigned FAddCombine::calcInstrNumber(const AddendVect &Opnds) {
701 unsigned OpndNum = Opnds.size();
702 unsigned InstrNeeded = OpndNum - 1;
703
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000704 // The number of addends in the form of "(-1)*x".
705 unsigned NegOpndNum = 0;
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000706
707 // Adjust the number of instructions needed to emit the N-ary add.
Benjamin Kramer135f7352016-06-26 12:28:59 +0000708 for (const FAddend *Opnd : Opnds) {
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000709 if (Opnd->isConstant())
710 continue;
711
Matt Arsenault02907f32017-04-24 17:24:37 +0000712 // The constant check above is really for a few special constant
713 // coefficients.
714 if (isa<UndefValue>(Opnd->getSymVal()))
715 continue;
716
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000717 const FAddendCoef &CE = Opnd->getCoef();
718 if (CE.isMinusOne() || CE.isMinusTwo())
719 NegOpndNum++;
720
721 // Let the addend be "c * x". If "c == +/-1", the value of the addend
722 // is immediately available; otherwise, it needs exactly one instruction
723 // to evaluate the value.
724 if (!CE.isMinusOne() && !CE.isOne())
725 InstrNeeded++;
726 }
727 if (NegOpndNum == OpndNum)
728 InstrNeeded++;
729 return InstrNeeded;
730}
731
732// Input Addend Value NeedNeg(output)
733// ================================================================
734// Constant C C false
735// <+/-1, V> V coefficient is -1
736// <2/-2, V> "fadd V, V" coefficient is -2
737// <C, V> "fmul V, C" false
738//
739// NOTE: Keep this function in sync with FAddCombine::calcInstrNumber.
Sanjay Patelc242dbb2014-12-18 21:11:09 +0000740Value *FAddCombine::createAddendVal(const FAddend &Opnd, bool &NeedNeg) {
Shuxin Yang37a1efe2012-12-18 23:10:12 +0000741 const FAddendCoef &Coeff = Opnd.getCoef();
742
743 if (Opnd.isConstant()) {
744 NeedNeg = false;
745 return Coeff.getValue(Instr->getType());
746 }
747
748 Value *OpndVal = Opnd.getSymVal();
749
750 if (Coeff.isMinusOne() || Coeff.isOne()) {
751 NeedNeg = Coeff.isMinusOne();
752 return OpndVal;
753 }
754
755 if (Coeff.isTwo() || Coeff.isMinusTwo()) {
756 NeedNeg = Coeff.isMinusTwo();
757 return createFAdd(OpndVal, OpndVal);
758 }
759
760 NeedNeg = false;
761 return createFMul(OpndVal, Coeff.getValue(Instr->getType()));
762}
763
Dinesh Dwivedi562fd752014-06-19 10:36:52 +0000764// Checks if any operand is negative and we can convert add to sub.
Dinesh Dwivediadc07732014-06-27 07:47:35 +0000765// This function checks for following negative patterns
766// ADD(XOR(OR(Z, NOT(C)), C)), 1) == NEG(AND(Z, C))
767// ADD(XOR(AND(Z, C), C), 1) == NEG(OR(Z, ~C))
768// XOR(AND(Z, C), (C + 1)) == NEG(OR(Z, ~C)) if C is even
Benjamin Kramer6cbe6702014-07-07 14:47:51 +0000769static Value *checkForNegativeOperand(BinaryOperator &I,
Craig Topperbb4069e2017-07-07 23:16:26 +0000770 InstCombiner::BuilderTy &Builder) {
Dinesh Dwivediadc07732014-06-27 07:47:35 +0000771 Value *LHS = I.getOperand(0), *RHS = I.getOperand(1);
Dinesh Dwivedi562fd752014-06-19 10:36:52 +0000772
Dinesh Dwivediadc07732014-06-27 07:47:35 +0000773 // This function creates 2 instructions to replace ADD, we need at least one
774 // of LHS or RHS to have one use to ensure benefit in transform.
775 if (!LHS->hasOneUse() && !RHS->hasOneUse())
776 return nullptr;
Dinesh Dwivedi562fd752014-06-19 10:36:52 +0000777
Dinesh Dwivediadc07732014-06-27 07:47:35 +0000778 Value *X = nullptr, *Y = nullptr, *Z = nullptr;
779 const APInt *C1 = nullptr, *C2 = nullptr;
Dinesh Dwivedi562fd752014-06-19 10:36:52 +0000780
Dinesh Dwivediadc07732014-06-27 07:47:35 +0000781 // if ONE is on other side, swap
782 if (match(RHS, m_Add(m_Value(X), m_One())))
783 std::swap(LHS, RHS);
Dinesh Dwivedi562fd752014-06-19 10:36:52 +0000784
Dinesh Dwivediadc07732014-06-27 07:47:35 +0000785 if (match(LHS, m_Add(m_Value(X), m_One()))) {
786 // if XOR on other side, swap
787 if (match(RHS, m_Xor(m_Value(Y), m_APInt(C1))))
788 std::swap(X, RHS);
Dinesh Dwivedi562fd752014-06-19 10:36:52 +0000789
Dinesh Dwivediadc07732014-06-27 07:47:35 +0000790 if (match(X, m_Xor(m_Value(Y), m_APInt(C1)))) {
791 // X = XOR(Y, C1), Y = OR(Z, C2), C2 = NOT(C1) ==> X == NOT(AND(Z, C1))
792 // ADD(ADD(X, 1), RHS) == ADD(X, ADD(RHS, 1)) == SUB(RHS, AND(Z, C1))
793 if (match(Y, m_Or(m_Value(Z), m_APInt(C2))) && (*C2 == ~(*C1))) {
Craig Topperbb4069e2017-07-07 23:16:26 +0000794 Value *NewAnd = Builder.CreateAnd(Z, *C1);
795 return Builder.CreateSub(RHS, NewAnd, "sub");
Dinesh Dwivediadc07732014-06-27 07:47:35 +0000796 } else if (match(Y, m_And(m_Value(Z), m_APInt(C2))) && (*C1 == *C2)) {
797 // X = XOR(Y, C1), Y = AND(Z, C2), C2 == C1 ==> X == NOT(OR(Z, ~C1))
798 // ADD(ADD(X, 1), RHS) == ADD(X, ADD(RHS, 1)) == SUB(RHS, OR(Z, ~C1))
Craig Topperbb4069e2017-07-07 23:16:26 +0000799 Value *NewOr = Builder.CreateOr(Z, ~(*C1));
800 return Builder.CreateSub(RHS, NewOr, "sub");
Dinesh Dwivediadc07732014-06-27 07:47:35 +0000801 }
802 }
803 }
Dinesh Dwivedi562fd752014-06-19 10:36:52 +0000804
Dinesh Dwivediadc07732014-06-27 07:47:35 +0000805 // Restore LHS and RHS
806 LHS = I.getOperand(0);
807 RHS = I.getOperand(1);
Dinesh Dwivedi562fd752014-06-19 10:36:52 +0000808
Dinesh Dwivediadc07732014-06-27 07:47:35 +0000809 // if XOR is on other side, swap
810 if (match(RHS, m_Xor(m_Value(Y), m_APInt(C1))))
811 std::swap(LHS, RHS);
812
813 // C2 is ODD
814 // LHS = XOR(Y, C1), Y = AND(Z, C2), C1 == (C2 + 1) => LHS == NEG(OR(Z, ~C2))
815 // ADD(LHS, RHS) == SUB(RHS, OR(Z, ~C2))
816 if (match(LHS, m_Xor(m_Value(Y), m_APInt(C1))))
817 if (C1->countTrailingZeros() == 0)
818 if (match(Y, m_And(m_Value(Z), m_APInt(C2))) && *C1 == (*C2 + 1)) {
Craig Topperbb4069e2017-07-07 23:16:26 +0000819 Value *NewOr = Builder.CreateOr(Z, ~(*C2));
820 return Builder.CreateSub(RHS, NewOr, "sub");
Dinesh Dwivediadc07732014-06-27 07:47:35 +0000821 }
822 return nullptr;
823}
824
Sanjay Patel4a47f5f2019-02-28 19:05:26 +0000825/// Wrapping flags may allow combining constants separated by an extend.
826static Instruction *foldNoWrapAdd(BinaryOperator &Add,
827 InstCombiner::BuilderTy &Builder) {
828 Value *Op0 = Add.getOperand(0), *Op1 = Add.getOperand(1);
829 Type *Ty = Add.getType();
830 Constant *Op1C;
831 if (!match(Op1, m_Constant(Op1C)))
832 return nullptr;
833
834 // Try this match first because it results in an add in the narrow type.
835 // (zext (X +nuw C2)) + C1 --> zext (X + (C2 + trunc(C1)))
836 Value *X;
837 const APInt *C1, *C2;
838 if (match(Op1, m_APInt(C1)) &&
839 match(Op0, m_OneUse(m_ZExt(m_NUWAdd(m_Value(X), m_APInt(C2))))) &&
840 C1->isNegative() && C1->sge(-C2->sext(C1->getBitWidth()))) {
841 Constant *NewC =
842 ConstantInt::get(X->getType(), *C2 + C1->trunc(C2->getBitWidth()));
843 return new ZExtInst(Builder.CreateNUWAdd(X, NewC), Ty);
844 }
845
846 // More general combining of constants in the wide type.
847 // (sext (X +nsw NarrowC)) + C --> (sext X) + (sext(NarrowC) + C)
848 Constant *NarrowC;
849 if (match(Op0, m_OneUse(m_SExt(m_NSWAdd(m_Value(X), m_Constant(NarrowC)))))) {
850 Constant *WideC = ConstantExpr::getSExt(NarrowC, Ty);
851 Constant *NewC = ConstantExpr::getAdd(WideC, Op1C);
852 Value *WideX = Builder.CreateSExt(X, Ty);
853 return BinaryOperator::CreateAdd(WideX, NewC);
854 }
855 // (zext (X +nuw NarrowC)) + C --> (zext X) + (zext(NarrowC) + C)
856 if (match(Op0, m_OneUse(m_ZExt(m_NUWAdd(m_Value(X), m_Constant(NarrowC)))))) {
857 Constant *WideC = ConstantExpr::getZExt(NarrowC, Ty);
858 Constant *NewC = ConstantExpr::getAdd(WideC, Op1C);
859 Value *WideX = Builder.CreateZExt(X, Ty);
860 return BinaryOperator::CreateAdd(WideX, NewC);
861 }
862
863 return nullptr;
864}
865
Sanjay Patel8d810fe2017-10-13 16:43:58 +0000866Instruction *InstCombiner::foldAddWithConstant(BinaryOperator &Add) {
Sanjay Patel4133d4a2017-05-10 00:07:16 +0000867 Value *Op0 = Add.getOperand(0), *Op1 = Add.getOperand(1);
Sanjay Patel21506512017-10-13 16:29:38 +0000868 Constant *Op1C;
869 if (!match(Op1, m_Constant(Op1C)))
870 return nullptr;
871
Sanjay Patel8fdd87f2018-02-28 16:36:24 +0000872 if (Instruction *NV = foldBinOpIntoSelectOrPhi(Add))
Sanjay Patel8d810fe2017-10-13 16:43:58 +0000873 return NV;
874
Roman Lebedev886c4ef2019-05-31 09:47:04 +0000875 Value *X;
876 Constant *Op00C;
877
878 // add (sub C1, X), C2 --> sub (add C1, C2), X
879 if (match(Op0, m_Sub(m_Constant(Op00C), m_Value(X))))
880 return BinaryOperator::CreateSub(ConstantExpr::getAdd(Op00C, Op1C), X);
881
882 Value *Y;
Sanjay Patel818b2532018-07-28 16:48:44 +0000883
884 // add (sub X, Y), -1 --> add (not Y), X
885 if (match(Op0, m_OneUse(m_Sub(m_Value(X), m_Value(Y)))) &&
886 match(Op1, m_AllOnes()))
887 return BinaryOperator::CreateAdd(Builder.CreateNot(Y), X);
888
Sanjay Patelf0242de2017-10-13 20:29:11 +0000889 // zext(bool) + C -> bool ? C + 1 : C
890 if (match(Op0, m_ZExt(m_Value(X))) &&
891 X->getType()->getScalarSizeInBits() == 1)
Sanjay Patel76ed9ea2017-10-13 17:00:47 +0000892 return SelectInst::Create(X, AddOne(Op1C), Op1);
Sanjay Patel21506512017-10-13 16:29:38 +0000893
Sanjay Patelf0242de2017-10-13 20:29:11 +0000894 // ~X + C --> (C-1) - X
895 if (match(Op0, m_Not(m_Value(X))))
896 return BinaryOperator::CreateSub(SubOne(Op1C), X);
897
Sanjay Patel4133d4a2017-05-10 00:07:16 +0000898 const APInt *C;
899 if (!match(Op1, m_APInt(C)))
900 return nullptr;
901
Robert Lougher8681ef82019-05-07 19:36:41 +0000902 // (X | C2) + C --> (X | C2) ^ C2 iff (C2 == -C)
903 const APInt *C2;
904 if (match(Op0, m_Or(m_Value(), m_APInt(C2))) && *C2 == -*C)
905 return BinaryOperator::CreateXor(Op0, ConstantInt::get(Add.getType(), *C2));
906
Sanjay Patel4133d4a2017-05-10 00:07:16 +0000907 if (C->isSignMask()) {
908 // If wrapping is not allowed, then the addition must set the sign bit:
909 // X + (signmask) --> X | signmask
910 if (Add.hasNoSignedWrap() || Add.hasNoUnsignedWrap())
911 return BinaryOperator::CreateOr(Op0, Op1);
912
913 // If wrapping is allowed, then the addition flips the sign bit of LHS:
914 // X + (signmask) --> X ^ signmask
915 return BinaryOperator::CreateXor(Op0, Op1);
916 }
917
Sanjay Patel4133d4a2017-05-10 00:07:16 +0000918 // Is this add the last step in a convoluted sext?
919 // add(zext(xor i16 X, -32768), -32768) --> sext X
Sanjay Patel76ed9ea2017-10-13 17:00:47 +0000920 Type *Ty = Add.getType();
Sanjay Patel4133d4a2017-05-10 00:07:16 +0000921 if (match(Op0, m_ZExt(m_Xor(m_Value(X), m_APInt(C2)))) &&
922 C2->isMinSignedValue() && C2->sext(Ty->getScalarSizeInBits()) == *C)
923 return CastInst::Create(Instruction::SExt, X, Ty);
924
Sanjay Patel2f3ead72017-06-25 14:15:28 +0000925 if (C->isOneValue() && Op0->hasOneUse()) {
926 // add (sext i1 X), 1 --> zext (not X)
927 // TODO: The smallest IR representation is (select X, 0, 1), and that would
928 // not require the one-use check. But we need to remove a transform in
929 // visitSelect and make sure that IR value tracking for select is equal or
930 // better than for these ops.
931 if (match(Op0, m_SExt(m_Value(X))) &&
932 X->getType()->getScalarSizeInBits() == 1)
933 return new ZExtInst(Builder.CreateNot(X), Ty);
934
935 // Shifts and add used to flip and mask off the low bit:
936 // add (ashr (shl i32 X, 31), 31), 1 --> and (not X), 1
937 const APInt *C3;
938 if (match(Op0, m_AShr(m_Shl(m_Value(X), m_APInt(C2)), m_APInt(C3))) &&
939 C2 == C3 && *C2 == Ty->getScalarSizeInBits() - 1) {
940 Value *NotX = Builder.CreateNot(X);
941 return BinaryOperator::CreateAnd(NotX, ConstantInt::get(Ty, 1));
942 }
Sanjay Patel2e069f22017-05-10 13:56:52 +0000943 }
944
Sanjay Patel4133d4a2017-05-10 00:07:16 +0000945 return nullptr;
946}
947
Sanjoy Das6f1937b2018-04-26 20:52:28 +0000948// Matches multiplication expression Op * C where C is a constant. Returns the
949// constant value in C and the other operand in Op. Returns true if such a
950// match is found.
951static bool MatchMul(Value *E, Value *&Op, APInt &C) {
952 const APInt *AI;
953 if (match(E, m_Mul(m_Value(Op), m_APInt(AI)))) {
954 C = *AI;
955 return true;
956 }
957 if (match(E, m_Shl(m_Value(Op), m_APInt(AI)))) {
958 C = APInt(AI->getBitWidth(), 1);
959 C <<= *AI;
960 return true;
961 }
962 return false;
963}
964
965// Matches remainder expression Op % C where C is a constant. Returns the
966// constant value in C and the other operand in Op. Returns the signedness of
967// the remainder operation in IsSigned. Returns true if such a match is
968// found.
969static bool MatchRem(Value *E, Value *&Op, APInt &C, bool &IsSigned) {
970 const APInt *AI;
971 IsSigned = false;
972 if (match(E, m_SRem(m_Value(Op), m_APInt(AI)))) {
973 IsSigned = true;
974 C = *AI;
975 return true;
976 }
977 if (match(E, m_URem(m_Value(Op), m_APInt(AI)))) {
978 C = *AI;
979 return true;
980 }
981 if (match(E, m_And(m_Value(Op), m_APInt(AI))) && (*AI + 1).isPowerOf2()) {
982 C = *AI + 1;
983 return true;
984 }
985 return false;
986}
987
988// Matches division expression Op / C with the given signedness as indicated
989// by IsSigned, where C is a constant. Returns the constant value in C and the
990// other operand in Op. Returns true if such a match is found.
991static bool MatchDiv(Value *E, Value *&Op, APInt &C, bool IsSigned) {
992 const APInt *AI;
993 if (IsSigned && match(E, m_SDiv(m_Value(Op), m_APInt(AI)))) {
994 C = *AI;
995 return true;
996 }
997 if (!IsSigned) {
998 if (match(E, m_UDiv(m_Value(Op), m_APInt(AI)))) {
999 C = *AI;
1000 return true;
1001 }
1002 if (match(E, m_LShr(m_Value(Op), m_APInt(AI)))) {
1003 C = APInt(AI->getBitWidth(), 1);
1004 C <<= *AI;
1005 return true;
1006 }
1007 }
1008 return false;
1009}
1010
1011// Returns whether C0 * C1 with the given signedness overflows.
1012static bool MulWillOverflow(APInt &C0, APInt &C1, bool IsSigned) {
1013 bool overflow;
1014 if (IsSigned)
1015 (void)C0.smul_ov(C1, overflow);
1016 else
1017 (void)C0.umul_ov(C1, overflow);
1018 return overflow;
1019}
1020
1021// Simplifies X % C0 + (( X / C0 ) % C1) * C0 to X % (C0 * C1), where (C0 * C1)
1022// does not overflow.
1023Value *InstCombiner::SimplifyAddWithRemainder(BinaryOperator &I) {
1024 Value *LHS = I.getOperand(0), *RHS = I.getOperand(1);
1025 Value *X, *MulOpV;
1026 APInt C0, MulOpC;
1027 bool IsSigned;
1028 // Match I = X % C0 + MulOpV * C0
1029 if (((MatchRem(LHS, X, C0, IsSigned) && MatchMul(RHS, MulOpV, MulOpC)) ||
1030 (MatchRem(RHS, X, C0, IsSigned) && MatchMul(LHS, MulOpV, MulOpC))) &&
1031 C0 == MulOpC) {
1032 Value *RemOpV;
1033 APInt C1;
1034 bool Rem2IsSigned;
1035 // Match MulOpC = RemOpV % C1
1036 if (MatchRem(MulOpV, RemOpV, C1, Rem2IsSigned) &&
1037 IsSigned == Rem2IsSigned) {
1038 Value *DivOpV;
1039 APInt DivOpC;
1040 // Match RemOpV = X / C0
1041 if (MatchDiv(RemOpV, DivOpV, DivOpC, IsSigned) && X == DivOpV &&
1042 C0 == DivOpC && !MulWillOverflow(C0, C1, IsSigned)) {
1043 Value *NewDivisor =
1044 ConstantInt::get(X->getType()->getContext(), C0 * C1);
1045 return IsSigned ? Builder.CreateSRem(X, NewDivisor, "srem")
1046 : Builder.CreateURem(X, NewDivisor, "urem");
1047 }
1048 }
1049 }
1050
1051 return nullptr;
1052}
1053
Roman Lebedevcbf84462018-06-06 19:38:27 +00001054/// Fold
1055/// (1 << NBits) - 1
1056/// Into:
1057/// ~(-(1 << NBits))
1058/// Because a 'not' is better for bit-tracking analysis and other transforms
1059/// than an 'add'. The new shl is always nsw, and is nuw if old `and` was.
1060static Instruction *canonicalizeLowbitMask(BinaryOperator &I,
1061 InstCombiner::BuilderTy &Builder) {
1062 Value *NBits;
1063 if (!match(&I, m_Add(m_OneUse(m_Shl(m_One(), m_Value(NBits))), m_AllOnes())))
1064 return nullptr;
1065
1066 Constant *MinusOne = Constant::getAllOnesValue(NBits->getType());
1067 Value *NotMask = Builder.CreateShl(MinusOne, NBits, "notmask");
1068 // Be wary of constant folding.
1069 if (auto *BOp = dyn_cast<BinaryOperator>(NotMask)) {
1070 // Always NSW. But NUW propagates from `add`.
1071 BOp->setHasNoSignedWrap();
1072 BOp->setHasNoUnsignedWrap(I.hasNoUnsignedWrap());
1073 }
1074
1075 return BinaryOperator::CreateNot(NotMask, I.getName());
1076}
1077
Sanjay Patel81e8d762019-03-26 17:50:08 +00001078static Instruction *foldToUnsignedSaturatedAdd(BinaryOperator &I) {
1079 assert(I.getOpcode() == Instruction::Add && "Expecting add instruction");
1080 Type *Ty = I.getType();
1081 auto getUAddSat = [&]() {
1082 return Intrinsic::getDeclaration(I.getModule(), Intrinsic::uadd_sat, Ty);
1083 };
1084
1085 // add (umin X, ~Y), Y --> uaddsat X, Y
1086 Value *X, *Y;
1087 if (match(&I, m_c_Add(m_c_UMin(m_Value(X), m_Not(m_Value(Y))),
1088 m_Deferred(Y))))
1089 return CallInst::Create(getUAddSat(), { X, Y });
1090
1091 // add (umin X, ~C), C --> uaddsat X, C
1092 const APInt *C, *NotC;
1093 if (match(&I, m_Add(m_UMin(m_Value(X), m_APInt(NotC)), m_APInt(C))) &&
1094 *C == ~*NotC)
1095 return CallInst::Create(getUAddSat(), { X, ConstantInt::get(Ty, *C) });
1096
1097 return nullptr;
1098}
1099
Dinesh Dwivediadc07732014-06-27 07:47:35 +00001100Instruction *InstCombiner::visitAdd(BinaryOperator &I) {
Sanjay Patel7b0fc752018-06-21 17:06:36 +00001101 if (Value *V = SimplifyAddInst(I.getOperand(0), I.getOperand(1),
1102 I.hasNoSignedWrap(), I.hasNoUnsignedWrap(),
1103 SQ.getWithInstruction(&I)))
Sanjay Patel4b198802016-02-01 22:23:39 +00001104 return replaceInstUsesWith(I, V);
Serge Pavlov9ef66a82014-05-11 08:46:12 +00001105
Sanjay Patel70043b72018-07-13 01:18:07 +00001106 if (SimplifyAssociativeOrCommutative(I))
1107 return &I;
1108
Sanjay Patel79dceb22018-10-03 15:20:58 +00001109 if (Instruction *X = foldVectorBinop(I))
Sanjay Patelbbc6d602018-06-02 16:27:44 +00001110 return X;
1111
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +00001112 // (A*B)+(A*C) -> A*(B+C) etc
Duncan Sandsfbb9ac32010-12-22 13:36:08 +00001113 if (Value *V = SimplifyUsingDistributiveLaws(I))
Sanjay Patel4b198802016-02-01 22:23:39 +00001114 return replaceInstUsesWith(I, V);
Duncan Sandsfbb9ac32010-12-22 13:36:08 +00001115
Sanjay Patel8d810fe2017-10-13 16:43:58 +00001116 if (Instruction *X = foldAddWithConstant(I))
Sanjay Patel4133d4a2017-05-10 00:07:16 +00001117 return X;
Sanjay Patel53c5c3d2017-02-18 22:20:09 +00001118
Sanjay Patel4a47f5f2019-02-28 19:05:26 +00001119 if (Instruction *X = foldNoWrapAdd(I, Builder))
1120 return X;
1121
Sanjay Patel4133d4a2017-05-10 00:07:16 +00001122 // FIXME: This should be moved into the above helper function to allow these
Sanjay Patel21506512017-10-13 16:29:38 +00001123 // transforms for general constant or constant splat vectors.
Sanjay Patel7b0fc752018-06-21 17:06:36 +00001124 Value *LHS = I.getOperand(0), *RHS = I.getOperand(1);
Sanjay Patel21189522017-10-13 18:32:53 +00001125 Type *Ty = I.getType();
Sanjay Patel79acd2a2016-07-16 18:29:26 +00001126 if (ConstantInt *CI = dyn_cast<ConstantInt>(RHS)) {
Craig Topperf40110f2014-04-25 05:29:35 +00001127 Value *XorLHS = nullptr; ConstantInt *XorRHS = nullptr;
Chris Lattner7d0e43f2011-02-10 05:14:58 +00001128 if (match(LHS, m_Xor(m_Value(XorLHS), m_ConstantInt(XorRHS)))) {
Sanjay Patel21189522017-10-13 18:32:53 +00001129 unsigned TySizeBits = Ty->getScalarSizeInBits();
Chris Lattner7d0e43f2011-02-10 05:14:58 +00001130 const APInt &RHSVal = CI->getValue();
Eli Friedmana2cc2872010-01-31 04:29:12 +00001131 unsigned ExtendAmt = 0;
1132 // If we have ADD(XOR(AND(X, 0xFF), 0x80), 0xF..F80), it's a sext.
1133 // If we have ADD(XOR(AND(X, 0xFF), 0xF..F80), 0x80), it's a sext.
1134 if (XorRHS->getValue() == -RHSVal) {
1135 if (RHSVal.isPowerOf2())
1136 ExtendAmt = TySizeBits - RHSVal.logBase2() - 1;
1137 else if (XorRHS->getValue().isPowerOf2())
1138 ExtendAmt = TySizeBits - XorRHS->getValue().logBase2() - 1;
Chris Lattner82aa8882010-01-05 07:18:46 +00001139 }
Michael Ilseman9fc0f252012-12-12 20:57:53 +00001140
Eli Friedmana2cc2872010-01-31 04:29:12 +00001141 if (ExtendAmt) {
1142 APInt Mask = APInt::getHighBitsSet(TySizeBits, ExtendAmt);
Hal Finkel60db0582014-09-07 18:57:58 +00001143 if (!MaskedValueIsZero(XorLHS, Mask, 0, &I))
Eli Friedmana2cc2872010-01-31 04:29:12 +00001144 ExtendAmt = 0;
1145 }
Michael Ilseman9fc0f252012-12-12 20:57:53 +00001146
Eli Friedmana2cc2872010-01-31 04:29:12 +00001147 if (ExtendAmt) {
Sanjay Patel21189522017-10-13 18:32:53 +00001148 Constant *ShAmt = ConstantInt::get(Ty, ExtendAmt);
Craig Topperbb4069e2017-07-07 23:16:26 +00001149 Value *NewShl = Builder.CreateShl(XorLHS, ShAmt, "sext");
Eli Friedmana2cc2872010-01-31 04:29:12 +00001150 return BinaryOperator::CreateAShr(NewShl, ShAmt);
Chris Lattner82aa8882010-01-05 07:18:46 +00001151 }
Benjamin Kramerb16bd772011-12-24 17:31:53 +00001152
1153 // If this is a xor that was canonicalized from a sub, turn it back into
1154 // a sub and fuse this add with it.
1155 if (LHS->hasOneUse() && (XorRHS->getValue()+1).isPowerOf2()) {
Craig Topper8205a1a2017-05-24 16:53:07 +00001156 KnownBits LHSKnown = computeKnownBits(XorLHS, 0, &I);
Craig Topperb45eabc2017-04-26 16:39:58 +00001157 if ((XorRHS->getValue() | LHSKnown.Zero).isAllOnesValue())
Benjamin Kramerb16bd772011-12-24 17:31:53 +00001158 return BinaryOperator::CreateSub(ConstantExpr::getAdd(XorRHS, CI),
1159 XorLHS);
1160 }
Craig Topperbcfd2d12017-04-20 16:56:25 +00001161 // (X + signmask) + C could have gotten canonicalized to (X^signmask) + C,
1162 // transform them into (X + (signmask ^ C))
1163 if (XorRHS->getValue().isSignMask())
Craig Toppereafbd572015-12-21 01:02:28 +00001164 return BinaryOperator::CreateAdd(XorLHS,
1165 ConstantExpr::getXor(XorRHS, CI));
Chris Lattner82aa8882010-01-05 07:18:46 +00001166 }
1167 }
1168
Sanjay Patel21189522017-10-13 18:32:53 +00001169 if (Ty->isIntOrIntVectorTy(1))
Chris Lattner82aa8882010-01-05 07:18:46 +00001170 return BinaryOperator::CreateXor(LHS, RHS);
1171
Chris Lattner7d0e43f2011-02-10 05:14:58 +00001172 // X + X --> X << 1
Chris Lattnerd4067642011-02-17 20:55:29 +00001173 if (LHS == RHS) {
Sanjay Patel21189522017-10-13 18:32:53 +00001174 auto *Shl = BinaryOperator::CreateShl(LHS, ConstantInt::get(Ty, 1));
1175 Shl->setHasNoSignedWrap(I.hasNoSignedWrap());
1176 Shl->setHasNoUnsignedWrap(I.hasNoUnsignedWrap());
1177 return Shl;
Chris Lattner55920712011-02-17 02:23:02 +00001178 }
Chris Lattner82aa8882010-01-05 07:18:46 +00001179
Sanjay Patelb869f762017-10-13 21:28:50 +00001180 Value *A, *B;
1181 if (match(LHS, m_Neg(m_Value(A)))) {
1182 // -A + -B --> -(A + B)
1183 if (match(RHS, m_Neg(m_Value(B))))
1184 return BinaryOperator::CreateNeg(Builder.CreateAdd(A, B));
Michael Ilseman9fc0f252012-12-12 20:57:53 +00001185
Sanjay Patelb869f762017-10-13 21:28:50 +00001186 // -A + B --> B - A
1187 return BinaryOperator::CreateSub(RHS, A);
Chris Lattner82aa8882010-01-05 07:18:46 +00001188 }
1189
Sanjay Patel9907d3c2019-02-24 16:57:45 +00001190 // Canonicalize sext to zext for better value tracking potential.
1191 // add A, sext(B) --> sub A, zext(B)
1192 if (match(&I, m_c_Add(m_Value(A), m_OneUse(m_SExt(m_Value(B))))) &&
1193 B->getType()->isIntOrIntVectorTy(1))
1194 return BinaryOperator::CreateSub(A, Builder.CreateZExt(B, Ty));
1195
Chris Lattner82aa8882010-01-05 07:18:46 +00001196 // A + -B --> A - B
Sanjay Patelb869f762017-10-13 21:28:50 +00001197 if (match(RHS, m_Neg(m_Value(B))))
1198 return BinaryOperator::CreateSub(LHS, B);
Chris Lattner82aa8882010-01-05 07:18:46 +00001199
Dinesh Dwivedi562fd752014-06-19 10:36:52 +00001200 if (Value *V = checkForNegativeOperand(I, Builder))
Sanjay Patel4b198802016-02-01 22:23:39 +00001201 return replaceInstUsesWith(I, V);
Dinesh Dwivedi562fd752014-06-19 10:36:52 +00001202
Gil Rapaportda2e2ca2018-06-26 05:31:18 +00001203 // (A + 1) + ~B --> A - B
1204 // ~B + (A + 1) --> A - B
Roman Lebedev04d3d3b2019-07-01 15:55:24 +00001205 // (~B + A) + 1 --> A - B
1206 // (A + ~B) + 1 --> A - B
1207 if (match(&I, m_c_BinOp(m_Add(m_Value(A), m_One()), m_Not(m_Value(B)))) ||
1208 match(&I, m_BinOp(m_c_Add(m_Not(m_Value(B)), m_Value(A)), m_One())))
Gil Rapaportda2e2ca2018-06-26 05:31:18 +00001209 return BinaryOperator::CreateSub(A, B);
1210
Sanjoy Das6f1937b2018-04-26 20:52:28 +00001211 // X % C0 + (( X / C0 ) % C1) * C0 => X % (C0 * C1)
1212 if (Value *V = SimplifyAddWithRemainder(I)) return replaceInstUsesWith(I, V);
1213
Sylvestre Ledru91ce36c2012-09-27 10:14:43 +00001214 // A+B --> A|B iff A and B have no bits set in common.
Daniel Jasperaec2fa32016-12-19 08:22:17 +00001215 if (haveNoCommonBitsSet(LHS, RHS, DL, &AC, &I, &DT))
Jingyue Wuca321902015-05-14 23:53:19 +00001216 return BinaryOperator::CreateOr(LHS, RHS);
Chris Lattner82aa8882010-01-05 07:18:46 +00001217
Sanjay Patel79acd2a2016-07-16 18:29:26 +00001218 // FIXME: We already did a check for ConstantInt RHS above this.
1219 // FIXME: Is this pattern covered by another fold? No regression tests fail on
1220 // removal.
Benjamin Kramer72196f32014-01-19 15:24:22 +00001221 if (ConstantInt *CRHS = dyn_cast<ConstantInt>(RHS)) {
Chris Lattner82aa8882010-01-05 07:18:46 +00001222 // (X & FF00) + xx00 -> (X+xx00) & FF00
Benjamin Kramer72196f32014-01-19 15:24:22 +00001223 Value *X;
1224 ConstantInt *C2;
Chris Lattner82aa8882010-01-05 07:18:46 +00001225 if (LHS->hasOneUse() &&
Chris Lattner7d0e43f2011-02-10 05:14:58 +00001226 match(LHS, m_And(m_Value(X), m_ConstantInt(C2))) &&
1227 CRHS->getValue() == (CRHS->getValue() & C2->getValue())) {
1228 // See if all bits from the first bit set in the Add RHS up are included
1229 // in the mask. First, get the rightmost bit.
1230 const APInt &AddRHSV = CRHS->getValue();
Michael Ilseman9fc0f252012-12-12 20:57:53 +00001231
Chris Lattner7d0e43f2011-02-10 05:14:58 +00001232 // Form a mask of all bits from the lowest bit added through the top.
1233 APInt AddRHSHighBits(~((AddRHSV & -AddRHSV)-1));
Chris Lattner82aa8882010-01-05 07:18:46 +00001234
Chris Lattner7d0e43f2011-02-10 05:14:58 +00001235 // See if the and mask includes all of these bits.
1236 APInt AddRHSHighBitsAnd(AddRHSHighBits & C2->getValue());
Chris Lattner82aa8882010-01-05 07:18:46 +00001237
Chris Lattner7d0e43f2011-02-10 05:14:58 +00001238 if (AddRHSHighBits == AddRHSHighBitsAnd) {
1239 // Okay, the xform is safe. Insert the new add pronto.
Craig Topperbb4069e2017-07-07 23:16:26 +00001240 Value *NewAdd = Builder.CreateAdd(X, CRHS, LHS->getName());
Chris Lattner7d0e43f2011-02-10 05:14:58 +00001241 return BinaryOperator::CreateAnd(NewAdd, C2);
Chris Lattner82aa8882010-01-05 07:18:46 +00001242 }
1243 }
Chris Lattner82aa8882010-01-05 07:18:46 +00001244 }
1245
1246 // add (select X 0 (sub n A)) A --> select X A n
1247 {
1248 SelectInst *SI = dyn_cast<SelectInst>(LHS);
1249 Value *A = RHS;
1250 if (!SI) {
1251 SI = dyn_cast<SelectInst>(RHS);
1252 A = LHS;
1253 }
1254 if (SI && SI->hasOneUse()) {
1255 Value *TV = SI->getTrueValue();
1256 Value *FV = SI->getFalseValue();
1257 Value *N;
1258
1259 // Can we fold the add into the argument of the select?
1260 // We check both true and false select arguments for a matching subtract.
Chris Lattner7d0e43f2011-02-10 05:14:58 +00001261 if (match(FV, m_Zero()) && match(TV, m_Sub(m_Value(N), m_Specific(A))))
Chris Lattner82aa8882010-01-05 07:18:46 +00001262 // Fold the add into the true select value.
1263 return SelectInst::Create(SI->getCondition(), N, A);
Michael Ilseman9fc0f252012-12-12 20:57:53 +00001264
Chris Lattner7d0e43f2011-02-10 05:14:58 +00001265 if (match(TV, m_Zero()) && match(FV, m_Sub(m_Value(N), m_Specific(A))))
Chris Lattner82aa8882010-01-05 07:18:46 +00001266 // Fold the add into the false select value.
1267 return SelectInst::Create(SI->getCondition(), A, N);
1268 }
1269 }
1270
Sanjay Patel90a36342018-09-14 22:23:35 +00001271 if (Instruction *Ext = narrowMathIfNoOverflow(I))
Sanjay Patel2426eb42018-09-14 20:40:46 +00001272 return Ext;
David Majnemera1cfd7c2016-12-30 00:28:58 +00001273
David Majnemerab07f002014-08-11 22:32:02 +00001274 // (add (xor A, B) (and A, B)) --> (or A, B)
Sanjay Patel28b3aa32017-10-13 20:12:21 +00001275 // (add (and A, B) (xor A, B)) --> (or A, B)
Roman Lebedev6959b8e2018-04-27 21:23:20 +00001276 if (match(&I, m_c_BinOp(m_Xor(m_Value(A), m_Value(B)),
1277 m_c_And(m_Deferred(A), m_Deferred(B)))))
Sanjay Patel28b3aa32017-10-13 20:12:21 +00001278 return BinaryOperator::CreateOr(A, B);
Chad Rosier7813dce2012-04-26 23:29:14 +00001279
David Majnemerab07f002014-08-11 22:32:02 +00001280 // (add (or A, B) (and A, B)) --> (add A, B)
Sanjay Patel28b3aa32017-10-13 20:12:21 +00001281 // (add (and A, B) (or A, B)) --> (add A, B)
Roman Lebedev6959b8e2018-04-27 21:23:20 +00001282 if (match(&I, m_c_BinOp(m_Or(m_Value(A), m_Value(B)),
1283 m_c_And(m_Deferred(A), m_Deferred(B))))) {
Sanjay Patel28b3aa32017-10-13 20:12:21 +00001284 I.setOperand(0, A);
1285 I.setOperand(1, B);
1286 return &I;
David Majnemerab07f002014-08-11 22:32:02 +00001287 }
1288
Craig Topper2b1fc322017-05-22 06:25:31 +00001289 // TODO(jingyue): Consider willNotOverflowSignedAdd and
Craig Topperbb973722017-05-15 02:44:08 +00001290 // willNotOverflowUnsignedAdd to reduce the number of invocations of
Jingyue Wu33bd53d2014-06-17 00:42:07 +00001291 // computeKnownBits.
Sanjay Patel70043b72018-07-13 01:18:07 +00001292 bool Changed = false;
Craig Topper2b1fc322017-05-22 06:25:31 +00001293 if (!I.hasNoSignedWrap() && willNotOverflowSignedAdd(LHS, RHS, I)) {
Rafael Espindolad1a2c2d2014-06-02 22:01:04 +00001294 Changed = true;
1295 I.setHasNoSignedWrap(true);
1296 }
Craig Topperbb973722017-05-15 02:44:08 +00001297 if (!I.hasNoUnsignedWrap() && willNotOverflowUnsignedAdd(LHS, RHS, I)) {
Jingyue Wu33bd53d2014-06-17 00:42:07 +00001298 Changed = true;
1299 I.setHasNoUnsignedWrap(true);
1300 }
Rafael Espindolad1a2c2d2014-06-02 22:01:04 +00001301
Roman Lebedevcbf84462018-06-06 19:38:27 +00001302 if (Instruction *V = canonicalizeLowbitMask(I, Builder))
1303 return V;
1304
Sanjay Patel81e8d762019-03-26 17:50:08 +00001305 if (Instruction *SatAdd = foldToUnsignedSaturatedAdd(I))
1306 return SatAdd;
1307
Craig Topperf40110f2014-04-25 05:29:35 +00001308 return Changed ? &I : nullptr;
Chris Lattner82aa8882010-01-05 07:18:46 +00001309}
1310
Sanjay Patelc229cfe2019-07-26 11:19:18 +00001311/// Eliminate an op from a linear interpolation (lerp) pattern.
1312static Instruction *factorizeLerp(BinaryOperator &I,
1313 InstCombiner::BuilderTy &Builder) {
1314 Value *X, *Y, *Z;
1315 if (!match(&I, m_c_FAdd(m_OneUse(m_c_FMul(m_Value(Y),
1316 m_OneUse(m_FSub(m_FPOne(),
1317 m_Value(Z))))),
1318 m_OneUse(m_c_FMul(m_Value(X), m_Deferred(Z))))))
1319 return nullptr;
1320
1321 // (Y * (1.0 - Z)) + (X * Z) --> Y + Z * (X - Y) [8 commuted variants]
1322 Value *XY = Builder.CreateFSubFMF(X, Y, &I);
1323 Value *MulZ = Builder.CreateFMulFMF(Z, XY, &I);
1324 return BinaryOperator::CreateFAddFMF(Y, MulZ, &I);
1325}
1326
Sanjay Pateldc185ee2018-08-12 15:48:26 +00001327/// Factor a common operand out of fadd/fsub of fmul/fdiv.
1328static Instruction *factorizeFAddFSub(BinaryOperator &I,
1329 InstCombiner::BuilderTy &Builder) {
1330 assert((I.getOpcode() == Instruction::FAdd ||
1331 I.getOpcode() == Instruction::FSub) && "Expecting fadd/fsub");
1332 assert(I.hasAllowReassoc() && I.hasNoSignedZeros() &&
1333 "FP factorization requires FMF");
Sanjay Patelc229cfe2019-07-26 11:19:18 +00001334
1335 if (Instruction *Lerp = factorizeLerp(I, Builder))
1336 return Lerp;
1337
Sanjay Pateldc185ee2018-08-12 15:48:26 +00001338 Value *Op0 = I.getOperand(0), *Op1 = I.getOperand(1);
1339 Value *X, *Y, *Z;
1340 bool IsFMul;
1341 if ((match(Op0, m_OneUse(m_FMul(m_Value(X), m_Value(Z)))) &&
1342 match(Op1, m_OneUse(m_c_FMul(m_Value(Y), m_Specific(Z))))) ||
1343 (match(Op0, m_OneUse(m_FMul(m_Value(Z), m_Value(X)))) &&
1344 match(Op1, m_OneUse(m_c_FMul(m_Value(Y), m_Specific(Z))))))
1345 IsFMul = true;
1346 else if (match(Op0, m_OneUse(m_FDiv(m_Value(X), m_Value(Z)))) &&
1347 match(Op1, m_OneUse(m_FDiv(m_Value(Y), m_Specific(Z)))))
1348 IsFMul = false;
1349 else
1350 return nullptr;
1351
1352 // (X * Z) + (Y * Z) --> (X + Y) * Z
1353 // (X * Z) - (Y * Z) --> (X - Y) * Z
1354 // (X / Z) + (Y / Z) --> (X + Y) / Z
1355 // (X / Z) - (Y / Z) --> (X - Y) / Z
1356 bool IsFAdd = I.getOpcode() == Instruction::FAdd;
1357 Value *XY = IsFAdd ? Builder.CreateFAddFMF(X, Y, &I)
1358 : Builder.CreateFSubFMF(X, Y, &I);
1359
1360 // Bail out if we just created a denormal constant.
1361 // TODO: This is copied from a previous implementation. Is it necessary?
1362 const APFloat *C;
1363 if (match(XY, m_APFloat(C)) && !C->isNormal())
1364 return nullptr;
1365
1366 return IsFMul ? BinaryOperator::CreateFMulFMF(XY, Z, &I)
1367 : BinaryOperator::CreateFDivFMF(XY, Z, &I);
1368}
1369
Chris Lattner82aa8882010-01-05 07:18:46 +00001370Instruction *InstCombiner::visitFAdd(BinaryOperator &I) {
Sanjay Patel7b0fc752018-06-21 17:06:36 +00001371 if (Value *V = SimplifyFAddInst(I.getOperand(0), I.getOperand(1),
1372 I.getFastMathFlags(),
Craig Toppera4205622017-06-09 03:21:29 +00001373 SQ.getWithInstruction(&I)))
Sanjay Patel4b198802016-02-01 22:23:39 +00001374 return replaceInstUsesWith(I, V);
Chris Lattner82aa8882010-01-05 07:18:46 +00001375
Sanjay Patel70043b72018-07-13 01:18:07 +00001376 if (SimplifyAssociativeOrCommutative(I))
1377 return &I;
1378
Sanjay Patel79dceb22018-10-03 15:20:58 +00001379 if (Instruction *X = foldVectorBinop(I))
Sanjay Patelbbc6d602018-06-02 16:27:44 +00001380 return X;
1381
Sanjay Patel8fdd87f2018-02-28 16:36:24 +00001382 if (Instruction *FoldedFAdd = foldBinOpIntoSelectOrPhi(I))
1383 return FoldedFAdd;
Michael Ilsemane2754dc2012-12-14 22:08:26 +00001384
Sanjay Patel1170daa2018-04-16 14:13:57 +00001385 // (-X) + Y --> Y - X
Sanjay Patel5483f422019-07-29 13:20:46 +00001386 Value *X, *Y;
1387 if (match(&I, m_c_FAdd(m_FNeg(m_Value(X)), m_Value(Y))))
1388 return BinaryOperator::CreateFSubFMF(Y, X, &I);
Chris Lattner82aa8882010-01-05 07:18:46 +00001389
Dan Gohman6f34abd2010-03-02 01:11:08 +00001390 // Check for (fadd double (sitofp x), y), see if we can merge this into an
Chris Lattner82aa8882010-01-05 07:18:46 +00001391 // integer add followed by a promotion.
Sanjay Patel5483f422019-07-29 13:20:46 +00001392 Value *LHS = I.getOperand(0), *RHS = I.getOperand(1);
Chris Lattner82aa8882010-01-05 07:18:46 +00001393 if (SIToFPInst *LHSConv = dyn_cast<SIToFPInst>(LHS)) {
Artur Pilipenko4cc61302017-03-21 11:32:15 +00001394 Value *LHSIntVal = LHSConv->getOperand(0);
Artur Pilipenko134d94f2017-04-21 18:45:25 +00001395 Type *FPType = LHSConv->getType();
1396
1397 // TODO: This check is overly conservative. In many cases known bits
1398 // analysis can tell us that the result of the addition has less significant
1399 // bits than the integer type can hold.
1400 auto IsValidPromotion = [](Type *FTy, Type *ITy) {
Artur Pilipenko0632bdc2017-04-22 07:24:52 +00001401 Type *FScalarTy = FTy->getScalarType();
1402 Type *IScalarTy = ITy->getScalarType();
1403
Artur Pilipenko134d94f2017-04-21 18:45:25 +00001404 // Do we have enough bits in the significand to represent the result of
1405 // the integer addition?
1406 unsigned MaxRepresentableBits =
Artur Pilipenko0632bdc2017-04-22 07:24:52 +00001407 APFloat::semanticsPrecision(FScalarTy->getFltSemantics());
1408 return IScalarTy->getIntegerBitWidth() <= MaxRepresentableBits;
Artur Pilipenko134d94f2017-04-21 18:45:25 +00001409 };
Artur Pilipenko4cc61302017-03-21 11:32:15 +00001410
Dan Gohman6f34abd2010-03-02 01:11:08 +00001411 // (fadd double (sitofp x), fpcst) --> (sitofp (add int x, intcst))
Chris Lattner82aa8882010-01-05 07:18:46 +00001412 // ... if the constant fits in the integer value. This is useful for things
1413 // like (double)(x & 1234) + 4.0 -> (double)((X & 1234)+4) which no longer
1414 // requires a constant pool load, and generally allows the add to be better
1415 // instcombined.
Artur Pilipenko134d94f2017-04-21 18:45:25 +00001416 if (ConstantFP *CFP = dyn_cast<ConstantFP>(RHS))
1417 if (IsValidPromotion(FPType, LHSIntVal->getType())) {
1418 Constant *CI =
1419 ConstantExpr::getFPToSI(CFP, LHSIntVal->getType());
1420 if (LHSConv->hasOneUse() &&
1421 ConstantExpr::getSIToFP(CI, I.getType()) == CFP &&
Craig Topper2b1fc322017-05-22 06:25:31 +00001422 willNotOverflowSignedAdd(LHSIntVal, CI, I)) {
Artur Pilipenko134d94f2017-04-21 18:45:25 +00001423 // Insert the new integer add.
Craig Topperbb4069e2017-07-07 23:16:26 +00001424 Value *NewAdd = Builder.CreateNSWAdd(LHSIntVal, CI, "addconv");
Artur Pilipenko134d94f2017-04-21 18:45:25 +00001425 return new SIToFPInst(NewAdd, I.getType());
1426 }
Chris Lattner82aa8882010-01-05 07:18:46 +00001427 }
Michael Ilseman9fc0f252012-12-12 20:57:53 +00001428
Dan Gohman6f34abd2010-03-02 01:11:08 +00001429 // (fadd double (sitofp x), (sitofp y)) --> (sitofp (add int x, y))
Chris Lattner82aa8882010-01-05 07:18:46 +00001430 if (SIToFPInst *RHSConv = dyn_cast<SIToFPInst>(RHS)) {
Artur Pilipenko4cc61302017-03-21 11:32:15 +00001431 Value *RHSIntVal = RHSConv->getOperand(0);
Artur Pilipenko134d94f2017-04-21 18:45:25 +00001432 // It's enough to check LHS types only because we require int types to
1433 // be the same for this transform.
1434 if (IsValidPromotion(FPType, LHSIntVal->getType())) {
1435 // Only do this if x/y have the same type, if at least one of them has a
1436 // single use (so we don't increase the number of int->fp conversions),
1437 // and if the integer add will not overflow.
1438 if (LHSIntVal->getType() == RHSIntVal->getType() &&
1439 (LHSConv->hasOneUse() || RHSConv->hasOneUse()) &&
Craig Topper2b1fc322017-05-22 06:25:31 +00001440 willNotOverflowSignedAdd(LHSIntVal, RHSIntVal, I)) {
Artur Pilipenko134d94f2017-04-21 18:45:25 +00001441 // Insert the new integer add.
Craig Topperbb4069e2017-07-07 23:16:26 +00001442 Value *NewAdd = Builder.CreateNSWAdd(LHSIntVal, RHSIntVal, "addconv");
Artur Pilipenko134d94f2017-04-21 18:45:25 +00001443 return new SIToFPInst(NewAdd, I.getType());
1444 }
Chris Lattner82aa8882010-01-05 07:18:46 +00001445 }
1446 }
1447 }
Michael Ilseman9fc0f252012-12-12 20:57:53 +00001448
Quentin Colombetaa103b32017-09-20 17:32:16 +00001449 // Handle specials cases for FAdd with selects feeding the operation
1450 if (Value *V = SimplifySelectsFeedingBinaryOp(I, LHS, RHS))
1451 return replaceInstUsesWith(I, V);
Jean-Luc Duprat3e4fc3e2013-05-06 16:55:50 +00001452
Warren Ristow8b2f27c2018-04-14 19:18:28 +00001453 if (I.hasAllowReassoc() && I.hasNoSignedZeros()) {
Sanjay Pateldc185ee2018-08-12 15:48:26 +00001454 if (Instruction *F = factorizeFAddFSub(I, Builder))
1455 return F;
Shuxin Yang37a1efe2012-12-18 23:10:12 +00001456 if (Value *V = FAddCombine(Builder).simplify(&I))
Sanjay Patel4b198802016-02-01 22:23:39 +00001457 return replaceInstUsesWith(I, V);
Shuxin Yang37a1efe2012-12-18 23:10:12 +00001458 }
1459
Sanjay Patel70043b72018-07-13 01:18:07 +00001460 return nullptr;
Chris Lattner82aa8882010-01-05 07:18:46 +00001461}
1462
Chris Lattner82aa8882010-01-05 07:18:46 +00001463/// Optimize pointer differences into the same array into a size. Consider:
1464/// &A[10] - &A[0]: we should compile this to "10". LHS/RHS are the pointer
1465/// operands to the ptrtoint instructions for the LHS/RHS of the subtract.
Chris Lattner82aa8882010-01-05 07:18:46 +00001466Value *InstCombiner::OptimizePointerDifference(Value *LHS, Value *RHS,
Chris Lattner229907c2011-07-18 04:54:35 +00001467 Type *Ty) {
Chris Lattner82aa8882010-01-05 07:18:46 +00001468 // If LHS is a gep based on RHS or RHS is a gep based on LHS, we can optimize
1469 // this.
1470 bool Swapped = false;
Craig Topperf40110f2014-04-25 05:29:35 +00001471 GEPOperator *GEP1 = nullptr, *GEP2 = nullptr;
Benjamin Kramer7746eb62012-02-20 14:34:57 +00001472
Chris Lattner82aa8882010-01-05 07:18:46 +00001473 // For now we require one side to be the base pointer "A" or a constant
Benjamin Kramer7746eb62012-02-20 14:34:57 +00001474 // GEP derived from it.
1475 if (GEPOperator *LHSGEP = dyn_cast<GEPOperator>(LHS)) {
Chris Lattner82aa8882010-01-05 07:18:46 +00001476 // (gep X, ...) - X
1477 if (LHSGEP->getOperand(0) == RHS) {
Benjamin Kramer7746eb62012-02-20 14:34:57 +00001478 GEP1 = LHSGEP;
Chris Lattner82aa8882010-01-05 07:18:46 +00001479 Swapped = false;
Benjamin Kramer7746eb62012-02-20 14:34:57 +00001480 } else if (GEPOperator *RHSGEP = dyn_cast<GEPOperator>(RHS)) {
1481 // (gep X, ...) - (gep X, ...)
1482 if (LHSGEP->getOperand(0)->stripPointerCasts() ==
1483 RHSGEP->getOperand(0)->stripPointerCasts()) {
1484 GEP2 = RHSGEP;
1485 GEP1 = LHSGEP;
Chris Lattner82aa8882010-01-05 07:18:46 +00001486 Swapped = false;
1487 }
1488 }
1489 }
Michael Ilseman9fc0f252012-12-12 20:57:53 +00001490
Benjamin Kramer7746eb62012-02-20 14:34:57 +00001491 if (GEPOperator *RHSGEP = dyn_cast<GEPOperator>(RHS)) {
Chris Lattner82aa8882010-01-05 07:18:46 +00001492 // X - (gep X, ...)
1493 if (RHSGEP->getOperand(0) == LHS) {
Benjamin Kramer7746eb62012-02-20 14:34:57 +00001494 GEP1 = RHSGEP;
Chris Lattner82aa8882010-01-05 07:18:46 +00001495 Swapped = true;
Benjamin Kramer7746eb62012-02-20 14:34:57 +00001496 } else if (GEPOperator *LHSGEP = dyn_cast<GEPOperator>(LHS)) {
1497 // (gep X, ...) - (gep X, ...)
1498 if (RHSGEP->getOperand(0)->stripPointerCasts() ==
1499 LHSGEP->getOperand(0)->stripPointerCasts()) {
1500 GEP2 = LHSGEP;
1501 GEP1 = RHSGEP;
Chris Lattner82aa8882010-01-05 07:18:46 +00001502 Swapped = true;
1503 }
1504 }
1505 }
Michael Ilseman9fc0f252012-12-12 20:57:53 +00001506
Hiroshi Yamauchi60855212017-07-27 18:27:11 +00001507 if (!GEP1)
1508 // No GEP found.
Craig Topperf40110f2014-04-25 05:29:35 +00001509 return nullptr;
Michael Ilseman9fc0f252012-12-12 20:57:53 +00001510
Hiroshi Yamauchi60855212017-07-27 18:27:11 +00001511 if (GEP2) {
1512 // (gep X, ...) - (gep X, ...)
1513 //
1514 // Avoid duplicating the arithmetic if there are more than one non-constant
1515 // indices between the two GEPs and either GEP has a non-constant index and
1516 // multiple users. If zero non-constant index, the result is a constant and
1517 // there is no duplication. If one non-constant index, the result is an add
1518 // or sub with a constant, which is no larger than the original code, and
1519 // there's no duplicated arithmetic, even if either GEP has multiple
1520 // users. If more than one non-constant indices combined, as long as the GEP
1521 // with at least one non-constant index doesn't have multiple users, there
1522 // is no duplication.
1523 unsigned NumNonConstantIndices1 = GEP1->countNonConstantIndices();
1524 unsigned NumNonConstantIndices2 = GEP2->countNonConstantIndices();
1525 if (NumNonConstantIndices1 + NumNonConstantIndices2 > 1 &&
1526 ((NumNonConstantIndices1 > 0 && !GEP1->hasOneUse()) ||
1527 (NumNonConstantIndices2 > 0 && !GEP2->hasOneUse()))) {
1528 return nullptr;
1529 }
1530 }
1531
Chris Lattner82aa8882010-01-05 07:18:46 +00001532 // Emit the offset of the GEP and an intptr_t.
Benjamin Kramer7746eb62012-02-20 14:34:57 +00001533 Value *Result = EmitGEPOffset(GEP1);
Michael Ilseman9fc0f252012-12-12 20:57:53 +00001534
Chris Lattner82aa8882010-01-05 07:18:46 +00001535 // If we had a constant expression GEP on the other side offsetting the
1536 // pointer, subtract it from the offset we have.
Benjamin Kramer7746eb62012-02-20 14:34:57 +00001537 if (GEP2) {
1538 Value *Offset = EmitGEPOffset(GEP2);
Craig Topperbb4069e2017-07-07 23:16:26 +00001539 Result = Builder.CreateSub(Result, Offset);
Chris Lattner82aa8882010-01-05 07:18:46 +00001540 }
Chris Lattner82aa8882010-01-05 07:18:46 +00001541
1542 // If we have p - gep(p, ...) then we have to negate the result.
1543 if (Swapped)
Craig Topperbb4069e2017-07-07 23:16:26 +00001544 Result = Builder.CreateNeg(Result, "diff.neg");
Chris Lattner82aa8882010-01-05 07:18:46 +00001545
Craig Topperbb4069e2017-07-07 23:16:26 +00001546 return Builder.CreateIntCast(Result, Ty, true);
Chris Lattner82aa8882010-01-05 07:18:46 +00001547}
1548
Chris Lattner82aa8882010-01-05 07:18:46 +00001549Instruction *InstCombiner::visitSub(BinaryOperator &I) {
Sanjay Patel7b0fc752018-06-21 17:06:36 +00001550 if (Value *V = SimplifySubInst(I.getOperand(0), I.getOperand(1),
1551 I.hasNoSignedWrap(), I.hasNoUnsignedWrap(),
1552 SQ.getWithInstruction(&I)))
Sanjay Patel4b198802016-02-01 22:23:39 +00001553 return replaceInstUsesWith(I, V);
Chris Lattner82aa8882010-01-05 07:18:46 +00001554
Sanjay Patel79dceb22018-10-03 15:20:58 +00001555 if (Instruction *X = foldVectorBinop(I))
Sanjay Patelbbc6d602018-06-02 16:27:44 +00001556 return X;
1557
Duncan Sandsfbb9ac32010-12-22 13:36:08 +00001558 // (A*B)-(A*C) -> A*(B-C) etc
1559 if (Value *V = SimplifyUsingDistributiveLaws(I))
Sanjay Patel4b198802016-02-01 22:23:39 +00001560 return replaceInstUsesWith(I, V);
Duncan Sandsfbb9ac32010-12-22 13:36:08 +00001561
David Majnemera92687d2014-07-31 04:49:29 +00001562 // If this is a 'B = x-(-A)', change to B = x+A.
Sanjay Patel7b0fc752018-06-21 17:06:36 +00001563 Value *Op0 = I.getOperand(0), *Op1 = I.getOperand(1);
Chris Lattner82aa8882010-01-05 07:18:46 +00001564 if (Value *V = dyn_castNegVal(Op1)) {
1565 BinaryOperator *Res = BinaryOperator::CreateAdd(Op0, V);
David Majnemera92687d2014-07-31 04:49:29 +00001566
1567 if (const auto *BO = dyn_cast<BinaryOperator>(Op1)) {
1568 assert(BO->getOpcode() == Instruction::Sub &&
1569 "Expected a subtraction operator!");
1570 if (BO->hasNoSignedWrap() && I.hasNoSignedWrap())
1571 Res->setHasNoSignedWrap(true);
David Majnemer0e6c9862014-08-22 16:41:23 +00001572 } else {
1573 if (cast<Constant>(Op1)->isNotMinSignedValue() && I.hasNoSignedWrap())
1574 Res->setHasNoSignedWrap(true);
David Majnemera92687d2014-07-31 04:49:29 +00001575 }
1576
Chris Lattner82aa8882010-01-05 07:18:46 +00001577 return Res;
1578 }
1579
Craig Topperfde47232017-07-09 07:04:03 +00001580 if (I.getType()->isIntOrIntVectorTy(1))
Chris Lattner82aa8882010-01-05 07:18:46 +00001581 return BinaryOperator::CreateXor(Op0, Op1);
Chris Lattner7d0e43f2011-02-10 05:14:58 +00001582
1583 // Replace (-1 - A) with (~A).
1584 if (match(Op0, m_AllOnes()))
1585 return BinaryOperator::CreateNot(Op1);
Michael Ilseman9fc0f252012-12-12 20:57:53 +00001586
Sanjay Patel1a8d5c32018-03-03 17:53:25 +00001587 // (~X) - (~Y) --> Y - X
1588 Value *X, *Y;
1589 if (match(Op0, m_Not(m_Value(X))) && match(Op1, m_Not(m_Value(Y))))
1590 return BinaryOperator::CreateSub(Y, X);
1591
Sanjay Patel577c7052018-07-29 18:13:16 +00001592 // (X + -1) - Y --> ~Y + X
1593 if (match(Op0, m_OneUse(m_Add(m_Value(X), m_AllOnes()))))
1594 return BinaryOperator::CreateAdd(Builder.CreateNot(Op1), X);
1595
1596 // Y - (X + 1) --> ~X + Y
1597 if (match(Op1, m_OneUse(m_Add(m_Value(X), m_One()))))
1598 return BinaryOperator::CreateAdd(Builder.CreateNot(X), Op0);
1599
Roman Lebedev9f0c8392019-07-03 09:41:50 +00001600 // Y - ~X --> (X + 1) + Y
1601 if (match(Op1, m_OneUse(m_Not(m_Value(X))))) {
1602 return BinaryOperator::CreateAdd(
1603 Builder.CreateAdd(Op0, ConstantInt::get(I.getType(), 1)), X);
1604 }
1605
Benjamin Kramer72196f32014-01-19 15:24:22 +00001606 if (Constant *C = dyn_cast<Constant>(Op0)) {
Sanjay Patel3bd957b2018-06-03 16:35:26 +00001607 bool IsNegate = match(C, m_ZeroInt());
Sanjay Patelb6404a82017-12-06 21:22:57 +00001608 Value *X;
Sanjay Patel3bd957b2018-06-03 16:35:26 +00001609 if (match(Op1, m_ZExt(m_Value(X))) && X->getType()->isIntOrIntVectorTy(1)) {
1610 // 0 - (zext bool) --> sext bool
1611 // C - (zext bool) --> bool ? C - 1 : C
1612 if (IsNegate)
1613 return CastInst::CreateSExtOrBitCast(X, I.getType());
Sanjay Patelb6404a82017-12-06 21:22:57 +00001614 return SelectInst::Create(X, SubOne(C), C);
Sanjay Patel3bd957b2018-06-03 16:35:26 +00001615 }
1616 if (match(Op1, m_SExt(m_Value(X))) && X->getType()->isIntOrIntVectorTy(1)) {
1617 // 0 - (sext bool) --> zext bool
1618 // C - (sext bool) --> bool ? C + 1 : C
1619 if (IsNegate)
1620 return CastInst::CreateZExtOrBitCast(X, I.getType());
1621 return SelectInst::Create(X, AddOne(C), C);
1622 }
Sanjay Patelb6404a82017-12-06 21:22:57 +00001623
Chris Lattner82aa8882010-01-05 07:18:46 +00001624 // C - ~X == X + (1+C)
Chris Lattner82aa8882010-01-05 07:18:46 +00001625 if (match(Op1, m_Not(m_Value(X))))
1626 return BinaryOperator::CreateAdd(X, AddOne(C));
1627
Benjamin Kramer72196f32014-01-19 15:24:22 +00001628 // Try to fold constant sub into select arguments.
1629 if (SelectInst *SI = dyn_cast<SelectInst>(Op1))
1630 if (Instruction *R = FoldOpIntoSelect(I, SI))
1631 return R;
1632
Craig Topperfb71b7d2017-04-14 19:20:12 +00001633 // Try to fold constant sub into PHI values.
1634 if (PHINode *PN = dyn_cast<PHINode>(Op1))
1635 if (Instruction *R = foldOpIntoPhi(I, PN))
1636 return R;
1637
Benjamin Kramer72196f32014-01-19 15:24:22 +00001638 Constant *C2;
Roman Lebedev39390d82019-05-31 09:47:16 +00001639
1640 // C-(C2-X) --> X+(C-C2)
1641 if (match(Op1, m_Sub(m_Constant(C2), m_Value(X))))
1642 return BinaryOperator::CreateAdd(X, ConstantExpr::getSub(C, C2));
1643
1644 // C-(X+C2) --> (C-C2)-X
Benjamin Kramer72196f32014-01-19 15:24:22 +00001645 if (match(Op1, m_Add(m_Value(X), m_Constant(C2))))
1646 return BinaryOperator::CreateSub(ConstantExpr::getSub(C, C2), X);
Benjamin Kramer72196f32014-01-19 15:24:22 +00001647 }
1648
Sanjay Patel6d6eca52016-10-14 16:31:54 +00001649 const APInt *Op0C;
1650 if (match(Op0, m_APInt(Op0C))) {
1651 unsigned BitWidth = I.getType()->getScalarSizeInBits();
1652
Chris Lattner82aa8882010-01-05 07:18:46 +00001653 // -(X >>u 31) -> (X >>s 31)
1654 // -(X >>s 31) -> (X >>u 31)
Craig Topper73ba1c82017-06-07 07:40:37 +00001655 if (Op0C->isNullValue()) {
David Majnemer72a643d2014-11-03 05:53:55 +00001656 Value *X;
Sanjay Patel6d6eca52016-10-14 16:31:54 +00001657 const APInt *ShAmt;
1658 if (match(Op1, m_LShr(m_Value(X), m_APInt(ShAmt))) &&
1659 *ShAmt == BitWidth - 1) {
1660 Value *ShAmtOp = cast<Instruction>(Op1)->getOperand(1);
1661 return BinaryOperator::CreateAShr(X, ShAmtOp);
1662 }
1663 if (match(Op1, m_AShr(m_Value(X), m_APInt(ShAmt))) &&
1664 *ShAmt == BitWidth - 1) {
1665 Value *ShAmtOp = cast<Instruction>(Op1)->getOperand(1);
1666 return BinaryOperator::CreateLShr(X, ShAmtOp);
1667 }
Craig Topper3b768e862018-05-23 17:29:03 +00001668
1669 if (Op1->hasOneUse()) {
1670 Value *LHS, *RHS;
1671 SelectPatternFlavor SPF = matchSelectPattern(Op1, LHS, RHS).Flavor;
1672 if (SPF == SPF_ABS || SPF == SPF_NABS) {
1673 // This is a negate of an ABS/NABS pattern. Just swap the operands
1674 // of the select.
1675 SelectInst *SI = cast<SelectInst>(Op1);
1676 Value *TrueVal = SI->getTrueValue();
1677 Value *FalseVal = SI->getFalseValue();
1678 SI->setTrueValue(FalseVal);
1679 SI->setFalseValue(TrueVal);
1680 // Don't swap prof metadata, we didn't change the branch behavior.
1681 return replaceInstUsesWith(I, SI);
1682 }
1683 }
Chris Lattner82aa8882010-01-05 07:18:46 +00001684 }
Matthias Braunec683342015-04-30 22:04:26 +00001685
1686 // Turn this into a xor if LHS is 2^n-1 and the remaining bits are known
1687 // zero.
Craig Topperb4da6842017-04-06 21:06:03 +00001688 if (Op0C->isMask()) {
Craig Topper8205a1a2017-05-24 16:53:07 +00001689 KnownBits RHSKnown = computeKnownBits(Op1, 0, &I);
Craig Topperb45eabc2017-04-26 16:39:58 +00001690 if ((*Op0C | RHSKnown.Zero).isAllOnesValue())
Sanjay Patel6d6eca52016-10-14 16:31:54 +00001691 return BinaryOperator::CreateXor(Op1, Op0);
Matthias Braunec683342015-04-30 22:04:26 +00001692 }
Chris Lattner82aa8882010-01-05 07:18:46 +00001693 }
1694
David Majnemer72a643d2014-11-03 05:53:55 +00001695 {
Suyog Sardacba4b1d2014-10-08 08:37:49 +00001696 Value *Y;
Chris Lattner7d0e43f2011-02-10 05:14:58 +00001697 // X-(X+Y) == -Y X-(Y+X) == -Y
Craig Topper98851ad2017-04-10 16:59:40 +00001698 if (match(Op1, m_c_Add(m_Specific(Op0), m_Value(Y))))
Chris Lattner7d0e43f2011-02-10 05:14:58 +00001699 return BinaryOperator::CreateNeg(Y);
Michael Ilseman9fc0f252012-12-12 20:57:53 +00001700
Chris Lattner7d0e43f2011-02-10 05:14:58 +00001701 // (X-Y)-X == -Y
1702 if (match(Op0, m_Sub(m_Specific(Op1), m_Value(Y))))
1703 return BinaryOperator::CreateNeg(Y);
1704 }
Michael Ilseman9fc0f252012-12-12 20:57:53 +00001705
Hiroshi Yamauchi0445e312017-07-26 21:54:43 +00001706 // (sub (or A, B), (xor A, B)) --> (and A, B)
David Majnemer312c3e52014-10-19 08:32:32 +00001707 {
Craig Topper0d830ff2017-04-10 18:09:25 +00001708 Value *A, *B;
David Majnemer312c3e52014-10-19 08:32:32 +00001709 if (match(Op1, m_Xor(m_Value(A), m_Value(B))) &&
Craig Topper0d830ff2017-04-10 18:09:25 +00001710 match(Op0, m_c_Or(m_Specific(A), m_Specific(B))))
David Majnemer312c3e52014-10-19 08:32:32 +00001711 return BinaryOperator::CreateAnd(A, B);
1712 }
1713
Craig Topper0d830ff2017-04-10 18:09:25 +00001714 {
1715 Value *Y;
David Majnemer72a643d2014-11-03 05:53:55 +00001716 // ((X | Y) - X) --> (~X & Y)
Craig Topper0d830ff2017-04-10 18:09:25 +00001717 if (match(Op0, m_OneUse(m_c_Or(m_Value(Y), m_Specific(Op1)))))
David Majnemer72a643d2014-11-03 05:53:55 +00001718 return BinaryOperator::CreateAnd(
Craig Topperbb4069e2017-07-07 23:16:26 +00001719 Y, Builder.CreateNot(Op1, Op1->getName() + ".not"));
David Majnemer72a643d2014-11-03 05:53:55 +00001720 }
1721
Chris Lattner7d0e43f2011-02-10 05:14:58 +00001722 if (Op1->hasOneUse()) {
Craig Topperf40110f2014-04-25 05:29:35 +00001723 Value *X = nullptr, *Y = nullptr, *Z = nullptr;
1724 Constant *C = nullptr;
Chris Lattner7d0e43f2011-02-10 05:14:58 +00001725
1726 // (X - (Y - Z)) --> (X + (Z - Y)).
1727 if (match(Op1, m_Sub(m_Value(Y), m_Value(Z))))
1728 return BinaryOperator::CreateAdd(Op0,
Craig Topperbb4069e2017-07-07 23:16:26 +00001729 Builder.CreateSub(Z, Y, Op1->getName()));
Chris Lattner7d0e43f2011-02-10 05:14:58 +00001730
1731 // (X - (X & Y)) --> (X & ~Y)
Craig Topper0d830ff2017-04-10 18:09:25 +00001732 if (match(Op1, m_c_And(m_Value(Y), m_Specific(Op0))))
Chris Lattner7d0e43f2011-02-10 05:14:58 +00001733 return BinaryOperator::CreateAnd(Op0,
Craig Topperbb4069e2017-07-07 23:16:26 +00001734 Builder.CreateNot(Y, Y->getName() + ".not"));
Michael Ilseman9fc0f252012-12-12 20:57:53 +00001735
David Majnemerbdeef602014-07-02 06:07:09 +00001736 // 0 - (X sdiv C) -> (X sdiv -C) provided the negation doesn't overflow.
Sanjay Patelf62dcea2019-04-09 14:09:06 +00001737 // TODO: This could be extended to match arbitrary vector constants.
1738 const APInt *DivC;
1739 if (match(Op0, m_Zero()) && match(Op1, m_SDiv(m_Value(X), m_APInt(DivC))) &&
1740 !DivC->isMinSignedValue() && *DivC != 1) {
1741 Constant *NegDivC = ConstantInt::get(I.getType(), -(*DivC));
1742 Instruction *BO = BinaryOperator::CreateSDiv(X, NegDivC);
Chen Zheng923c7c92019-04-08 12:08:03 +00001743 BO->setIsExact(cast<BinaryOperator>(Op1)->isExact());
1744 return BO;
1745 }
Chris Lattner7d0e43f2011-02-10 05:14:58 +00001746
1747 // 0 - (X << Y) -> (-X << Y) when X is freely negatable.
1748 if (match(Op1, m_Shl(m_Value(X), m_Value(Y))) && match(Op0, m_Zero()))
1749 if (Value *XNeg = dyn_castNegVal(X))
1750 return BinaryOperator::CreateShl(XNeg, Y);
1751
Sanjay Patelc6c59652016-10-14 15:24:31 +00001752 // Subtracting -1/0 is the same as adding 1/0:
1753 // sub [nsw] Op0, sext(bool Y) -> add [nsw] Op0, zext(bool Y)
1754 // 'nuw' is dropped in favor of the canonical form.
1755 if (match(Op1, m_SExt(m_Value(Y))) &&
1756 Y->getType()->getScalarSizeInBits() == 1) {
Craig Topperbb4069e2017-07-07 23:16:26 +00001757 Value *Zext = Builder.CreateZExt(Y, I.getType());
Sanjay Patelc6c59652016-10-14 15:24:31 +00001758 BinaryOperator *Add = BinaryOperator::CreateAdd(Op0, Zext);
1759 Add->setHasNoSignedWrap(I.hasNoSignedWrap());
1760 return Add;
1761 }
1762
Chris Lattner7d0e43f2011-02-10 05:14:58 +00001763 // X - A*-B -> X + A*B
1764 // X - -A*B -> X + A*B
1765 Value *A, *B;
Craig Topper0d830ff2017-04-10 18:09:25 +00001766 if (match(Op1, m_c_Mul(m_Value(A), m_Neg(m_Value(B)))))
Craig Topperbb4069e2017-07-07 23:16:26 +00001767 return BinaryOperator::CreateAdd(Op0, Builder.CreateMul(A, B));
Michael Ilseman9fc0f252012-12-12 20:57:53 +00001768
Florian Hahn4094f342019-01-15 11:18:21 +00001769 // X - A*C -> X + A*-C
Craig Topper0d830ff2017-04-10 18:09:25 +00001770 // No need to handle commuted multiply because multiply handling will
1771 // ensure constant will be move to the right hand side.
Florian Hahn4094f342019-01-15 11:18:21 +00001772 if (match(Op1, m_Mul(m_Value(A), m_Constant(C))) && !isa<ConstantExpr>(C)) {
1773 Value *NewMul = Builder.CreateMul(A, ConstantExpr::getNeg(C));
Chris Lattner7d0e43f2011-02-10 05:14:58 +00001774 return BinaryOperator::CreateAdd(Op0, NewMul);
Chris Lattner82aa8882010-01-05 07:18:46 +00001775 }
1776 }
1777
David Green1e44c3b2018-10-02 09:48:34 +00001778 {
1779 // ~A - Min/Max(~A, O) -> Max/Min(A, ~O) - A
1780 // ~A - Min/Max(O, ~A) -> Max/Min(A, ~O) - A
1781 // Min/Max(~A, O) - ~A -> A - Max/Min(A, ~O)
1782 // Min/Max(O, ~A) - ~A -> A - Max/Min(A, ~O)
1783 // So long as O here is freely invertible, this will be neutral or a win.
1784 Value *LHS, *RHS, *A;
1785 Value *NotA = Op0, *MinMax = Op1;
1786 SelectPatternFlavor SPF = matchSelectPattern(MinMax, LHS, RHS).Flavor;
1787 if (!SelectPatternResult::isMinOrMax(SPF)) {
1788 NotA = Op1;
1789 MinMax = Op0;
1790 SPF = matchSelectPattern(MinMax, LHS, RHS).Flavor;
1791 }
1792 if (SelectPatternResult::isMinOrMax(SPF) &&
1793 match(NotA, m_Not(m_Value(A))) && (NotA == LHS || NotA == RHS)) {
1794 if (NotA == LHS)
1795 std::swap(LHS, RHS);
1796 // LHS is now O above and expected to have at least 2 uses (the min/max)
1797 // NotA is epected to have 2 uses from the min/max and 1 from the sub.
1798 if (IsFreeToInvert(LHS, !LHS->hasNUsesOrMore(3)) &&
1799 !NotA->hasNUsesOrMore(4)) {
1800 // Note: We don't generate the inverse max/min, just create the not of
1801 // it and let other folds do the rest.
1802 Value *Not = Builder.CreateNot(MinMax);
1803 if (NotA == Op0)
1804 return BinaryOperator::CreateSub(Not, A);
1805 else
1806 return BinaryOperator::CreateSub(A, Not);
1807 }
1808 }
1809 }
1810
Chris Lattner82aa8882010-01-05 07:18:46 +00001811 // Optimize pointer differences into the same array into a size. Consider:
1812 // &A[10] - &A[0]: we should compile this to "10".
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001813 Value *LHSOp, *RHSOp;
1814 if (match(Op0, m_PtrToInt(m_Value(LHSOp))) &&
1815 match(Op1, m_PtrToInt(m_Value(RHSOp))))
1816 if (Value *Res = OptimizePointerDifference(LHSOp, RHSOp, I.getType()))
Sanjay Patel4b198802016-02-01 22:23:39 +00001817 return replaceInstUsesWith(I, Res);
Michael Ilseman9fc0f252012-12-12 20:57:53 +00001818
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001819 // trunc(p)-trunc(q) -> trunc(p-q)
1820 if (match(Op0, m_Trunc(m_PtrToInt(m_Value(LHSOp)))) &&
1821 match(Op1, m_Trunc(m_PtrToInt(m_Value(RHSOp)))))
1822 if (Value *Res = OptimizePointerDifference(LHSOp, RHSOp, I.getType()))
Sanjay Patel4b198802016-02-01 22:23:39 +00001823 return replaceInstUsesWith(I, Res);
Michael Ilseman9fc0f252012-12-12 20:57:53 +00001824
Sanjay Patel3cd1aa82018-06-06 21:58:12 +00001825 // Canonicalize a shifty way to code absolute value to the common pattern.
1826 // There are 2 potential commuted variants.
1827 // We're relying on the fact that we only do this transform when the shift has
1828 // exactly 2 uses and the xor has exactly 1 use (otherwise, we might increase
1829 // instructions).
1830 Value *A;
1831 const APInt *ShAmt;
1832 Type *Ty = I.getType();
1833 if (match(Op1, m_AShr(m_Value(A), m_APInt(ShAmt))) &&
1834 Op1->hasNUses(2) && *ShAmt == Ty->getScalarSizeInBits() - 1 &&
1835 match(Op0, m_OneUse(m_c_Xor(m_Specific(A), m_Specific(Op1))))) {
1836 // B = ashr i32 A, 31 ; smear the sign bit
1837 // sub (xor A, B), B ; flip bits if negative and subtract -1 (add 1)
1838 // --> (A < 0) ? -A : A
1839 Value *Cmp = Builder.CreateICmpSLT(A, ConstantInt::getNullValue(Ty));
1840 // Copy the nuw/nsw flags from the sub to the negate.
1841 Value *Neg = Builder.CreateNeg(A, "", I.hasNoUnsignedWrap(),
1842 I.hasNoSignedWrap());
1843 return SelectInst::Create(Cmp, Neg, A);
1844 }
1845
Craig Topper2da73812018-09-15 18:54:10 +00001846 if (Instruction *Ext = narrowMathIfNoOverflow(I))
1847 return Ext;
1848
David Majnemer57d5bc82014-08-19 23:36:30 +00001849 bool Changed = false;
Craig Topper2b1fc322017-05-22 06:25:31 +00001850 if (!I.hasNoSignedWrap() && willNotOverflowSignedSub(Op0, Op1, I)) {
David Majnemer57d5bc82014-08-19 23:36:30 +00001851 Changed = true;
1852 I.setHasNoSignedWrap(true);
1853 }
Craig Topper2b1fc322017-05-22 06:25:31 +00001854 if (!I.hasNoUnsignedWrap() && willNotOverflowUnsignedSub(Op0, Op1, I)) {
David Majnemer42158f32014-08-20 07:17:31 +00001855 Changed = true;
1856 I.setHasNoUnsignedWrap(true);
1857 }
David Majnemer57d5bc82014-08-19 23:36:30 +00001858
1859 return Changed ? &I : nullptr;
Chris Lattner82aa8882010-01-05 07:18:46 +00001860}
1861
Cameron McInally2557ca22019-05-20 19:10:30 +00001862/// This eliminates floating-point negation in either 'fneg(X)' or
1863/// 'fsub(-0.0, X)' form by combining into a constant operand.
1864static Instruction *foldFNegIntoConstant(Instruction &I) {
1865 Value *X;
1866 Constant *C;
1867
1868 // Fold negation into constant operand. This is limited with one-use because
1869 // fneg is assumed better for analysis and cheaper in codegen than fmul/fdiv.
1870 // -(X * C) --> X * (-C)
Cameron McInally8bec58d2019-05-20 21:00:42 +00001871 // FIXME: It's arguable whether these should be m_OneUse or not. The current
1872 // belief is that the FNeg allows for better reassociation opportunities.
Cameron McInally2557ca22019-05-20 19:10:30 +00001873 if (match(&I, m_FNeg(m_OneUse(m_FMul(m_Value(X), m_Constant(C))))))
1874 return BinaryOperator::CreateFMulFMF(X, ConstantExpr::getFNeg(C), &I);
1875 // -(X / C) --> X / (-C)
1876 if (match(&I, m_FNeg(m_OneUse(m_FDiv(m_Value(X), m_Constant(C))))))
1877 return BinaryOperator::CreateFDivFMF(X, ConstantExpr::getFNeg(C), &I);
1878 // -(C / X) --> (-C) / X
1879 if (match(&I, m_FNeg(m_OneUse(m_FDiv(m_Constant(C), m_Value(X))))))
1880 return BinaryOperator::CreateFDivFMF(ConstantExpr::getFNeg(C), X, &I);
1881
1882 return nullptr;
1883}
1884
Cameron McInallye75412a2019-05-10 20:01:04 +00001885Instruction *InstCombiner::visitFNeg(UnaryOperator &I) {
Cameron McInally08200d62019-06-11 16:21:21 +00001886 Value *Op = I.getOperand(0);
1887
1888 if (Value *V = SimplifyFNegInst(Op, I.getFastMathFlags(),
Cameron McInallye75412a2019-05-10 20:01:04 +00001889 SQ.getWithInstruction(&I)))
1890 return replaceInstUsesWith(I, V);
1891
Cameron McInally2557ca22019-05-20 19:10:30 +00001892 if (Instruction *X = foldFNegIntoConstant(I))
1893 return X;
1894
Cameron McInally08200d62019-06-11 16:21:21 +00001895 Value *X, *Y;
1896
1897 // If we can ignore the sign of zeros: -(X - Y) --> (Y - X)
1898 if (I.hasNoSignedZeros() &&
1899 match(Op, m_OneUse(m_FSub(m_Value(X), m_Value(Y)))))
1900 return BinaryOperator::CreateFSubFMF(Y, X, &I);
1901
Cameron McInallye75412a2019-05-10 20:01:04 +00001902 return nullptr;
1903}
1904
Chris Lattner82aa8882010-01-05 07:18:46 +00001905Instruction *InstCombiner::visitFSub(BinaryOperator &I) {
Sanjay Patel7b0fc752018-06-21 17:06:36 +00001906 if (Value *V = SimplifyFSubInst(I.getOperand(0), I.getOperand(1),
1907 I.getFastMathFlags(),
Craig Toppera4205622017-06-09 03:21:29 +00001908 SQ.getWithInstruction(&I)))
Sanjay Patel4b198802016-02-01 22:23:39 +00001909 return replaceInstUsesWith(I, V);
Michael Ilsemand5787be2012-12-12 00:28:32 +00001910
Sanjay Patel79dceb22018-10-03 15:20:58 +00001911 if (Instruction *X = foldVectorBinop(I))
Sanjay Patelbbc6d602018-06-02 16:27:44 +00001912 return X;
1913
Sanjay Patela9ca7092018-04-06 17:24:08 +00001914 // Subtraction from -0.0 is the canonical form of fneg.
1915 // fsub nsz 0, X ==> fsub nsz -0.0, X
Sanjay Patel7b0fc752018-06-21 17:06:36 +00001916 Value *Op0 = I.getOperand(0), *Op1 = I.getOperand(1);
Sanjay Patela9ca7092018-04-06 17:24:08 +00001917 if (I.hasNoSignedZeros() && match(Op0, m_PosZeroFP()))
1918 return BinaryOperator::CreateFNegFMF(Op1, &I);
Sanjay Patel03e25262018-04-05 21:37:17 +00001919
Cameron McInally2557ca22019-05-20 19:10:30 +00001920 if (Instruction *X = foldFNegIntoConstant(I))
1921 return X;
1922
Sanjay Patela194b2d2018-08-08 14:29:08 +00001923 Value *X, *Y;
1924 Constant *C;
1925
Sanjay Patela9ca7092018-04-06 17:24:08 +00001926 // If Op0 is not -0.0 or we can ignore -0.0: Z - (X - Y) --> Z + (Y - X)
Sanjay Patel04683de2018-04-05 23:21:15 +00001927 // Canonicalize to fadd to make analysis easier.
1928 // This can also help codegen because fadd is commutative.
Sanjay Patela9ca7092018-04-06 17:24:08 +00001929 // Note that if this fsub was really an fneg, the fadd with -0.0 will get
1930 // killed later. We still limit that particular transform with 'hasOneUse'
1931 // because an fneg is assumed better/cheaper than a generic fsub.
Sanjay Patel04683de2018-04-05 23:21:15 +00001932 if (I.hasNoSignedZeros() || CannotBeNegativeZero(Op0, SQ.TLI)) {
1933 if (match(Op1, m_OneUse(m_FSub(m_Value(X), m_Value(Y))))) {
1934 Value *NewSub = Builder.CreateFSubFMF(Y, X, &I);
1935 return BinaryOperator::CreateFAddFMF(Op0, NewSub, &I);
1936 }
1937 }
1938
Stephen Lina9b57f62013-07-20 07:13:13 +00001939 if (isa<Constant>(Op0))
1940 if (SelectInst *SI = dyn_cast<SelectInst>(Op1))
1941 if (Instruction *NV = FoldOpIntoSelect(I, SI))
1942 return NV;
1943
Sanjay Pateldeaf4f32018-04-05 17:06:45 +00001944 // X - C --> X + (-C)
Sanjay Patelceb595b2018-05-30 23:55:12 +00001945 // But don't transform constant expressions because there's an inverse fold
1946 // for X + (-Y) --> X - Y.
Sanjay Patelceb595b2018-05-30 23:55:12 +00001947 if (match(Op1, m_Constant(C)) && !isa<ConstantExpr>(Op1))
Sanjay Pateldeaf4f32018-04-05 17:06:45 +00001948 return BinaryOperator::CreateFAddFMF(Op0, ConstantExpr::getFNeg(C), &I);
Fangrui Songf78650a2018-07-30 19:41:25 +00001949
Sanjay Pateldeaf4f32018-04-05 17:06:45 +00001950 // X - (-Y) --> X + Y
Sanjay Pateldeaf4f32018-04-05 17:06:45 +00001951 if (match(Op1, m_FNeg(m_Value(Y))))
1952 return BinaryOperator::CreateFAddFMF(Op0, Y, &I);
Sanjay Patel4a9116e2018-02-23 17:07:29 +00001953
Sanjay Patelff986822018-04-11 15:57:18 +00001954 // Similar to above, but look through a cast of the negated value:
1955 // X - (fptrunc(-Y)) --> X + fptrunc(Y)
Sanjay Patelebec4202018-08-09 15:07:13 +00001956 Type *Ty = I.getType();
1957 if (match(Op1, m_OneUse(m_FPTrunc(m_FNeg(m_Value(Y))))))
1958 return BinaryOperator::CreateFAddFMF(Op0, Builder.CreateFPTrunc(Y, Ty), &I);
Chris Lattner82aa8882010-01-05 07:18:46 +00001959
Sanjay Patelebec4202018-08-09 15:07:13 +00001960 // X - (fpext(-Y)) --> X + fpext(Y)
1961 if (match(Op1, m_OneUse(m_FPExt(m_FNeg(m_Value(Y))))))
1962 return BinaryOperator::CreateFAddFMF(Op0, Builder.CreateFPExt(Y, Ty), &I);
1963
Sanjay Patel99c57c62019-07-28 17:10:06 +00001964 // Similar to above, but look through fmul/fdiv of the negated value:
1965 // Op0 - (-X * Y) --> Op0 + (X * Y)
1966 // Op0 - (Y * -X) --> Op0 + (X * Y)
1967 if (match(Op1, m_OneUse(m_c_FMul(m_FNeg(m_Value(X)), m_Value(Y))))) {
1968 Value *FMul = Builder.CreateFMulFMF(X, Y, &I);
1969 return BinaryOperator::CreateFAddFMF(Op0, FMul, &I);
1970 }
1971 // Op0 - (-X / Y) --> Op0 + (X / Y)
1972 // Op0 - (X / -Y) --> Op0 + (X / Y)
1973 if (match(Op1, m_OneUse(m_FDiv(m_FNeg(m_Value(X)), m_Value(Y)))) ||
1974 match(Op1, m_OneUse(m_FDiv(m_Value(X), m_FNeg(m_Value(Y)))))) {
1975 Value *FDiv = Builder.CreateFDivFMF(X, Y, &I);
1976 return BinaryOperator::CreateFAddFMF(Op0, FDiv, &I);
1977 }
1978
Sanjay Patelebec4202018-08-09 15:07:13 +00001979 // Handle special cases for FSub with selects feeding the operation
Quentin Colombetaa103b32017-09-20 17:32:16 +00001980 if (Value *V = SimplifySelectsFeedingBinaryOp(I, Op0, Op1))
1981 return replaceInstUsesWith(I, V);
1982
Warren Ristow8b2f27c2018-04-14 19:18:28 +00001983 if (I.hasAllowReassoc() && I.hasNoSignedZeros()) {
Sanjay Patel2054dd72018-08-08 16:04:48 +00001984 // (Y - X) - Y --> -X
1985 if (match(Op0, m_FSub(m_Specific(Op1), m_Value(X))))
1986 return BinaryOperator::CreateFNegFMF(X, &I);
1987
Sanjay Patelfe839692018-08-08 16:19:22 +00001988 // Y - (X + Y) --> -X
1989 // Y - (Y + X) --> -X
1990 if (match(Op1, m_c_FAdd(m_Specific(Op0), m_Value(X))))
1991 return BinaryOperator::CreateFNegFMF(X, &I);
1992
Sanjay Patel55accd72018-08-09 18:42:12 +00001993 // (X * C) - X --> X * (C - 1.0)
1994 if (match(Op0, m_FMul(m_Specific(Op1), m_Constant(C)))) {
1995 Constant *CSubOne = ConstantExpr::getFSub(C, ConstantFP::get(Ty, 1.0));
1996 return BinaryOperator::CreateFMulFMF(Op1, CSubOne, &I);
1997 }
1998 // X - (X * C) --> X * (1.0 - C)
1999 if (match(Op1, m_FMul(m_Specific(Op0), m_Constant(C)))) {
2000 Constant *OneSubC = ConstantExpr::getFSub(ConstantFP::get(Ty, 1.0), C);
2001 return BinaryOperator::CreateFMulFMF(Op0, OneSubC, &I);
2002 }
2003
Sanjay Pateldc185ee2018-08-12 15:48:26 +00002004 if (Instruction *F = factorizeFAddFSub(I, Builder))
2005 return F;
2006
Sanjay Patel2054dd72018-08-08 16:04:48 +00002007 // TODO: This performs reassociative folds for FP ops. Some fraction of the
2008 // functionality has been subsumed by simple pattern matching here and in
2009 // InstSimplify. We should let a dedicated reassociation pass handle more
2010 // complex pattern matching and remove this from InstCombine.
Shuxin Yang37a1efe2012-12-18 23:10:12 +00002011 if (Value *V = FAddCombine(Builder).simplify(&I))
Sanjay Patel4b198802016-02-01 22:23:39 +00002012 return replaceInstUsesWith(I, V);
Shuxin Yang37a1efe2012-12-18 23:10:12 +00002013 }
2014
Craig Topperf40110f2014-04-25 05:29:35 +00002015 return nullptr;
Chris Lattner82aa8882010-01-05 07:18:46 +00002016}