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Chris Lattner0a8191e2010-01-05 07:50:36 +00001//===- InstCombineAndOrXor.cpp --------------------------------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file implements the visitAnd, visitOr, and visitXor functions.
11//
12//===----------------------------------------------------------------------===//
13
Chandler Carrutha9174582015-01-22 05:25:13 +000014#include "InstCombineInternal.h"
Craig Topper0aa3a192017-08-14 21:39:51 +000015#include "llvm/Analysis/CmpInstAnalysis.h"
Chris Lattner0a8191e2010-01-05 07:50:36 +000016#include "llvm/Analysis/InstructionSimplify.h"
David Blaikie2be39222018-03-21 22:34:23 +000017#include "llvm/Analysis/Utils/Local.h"
Chandler Carruth8cd041e2014-03-04 12:24:34 +000018#include "llvm/IR/ConstantRange.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000019#include "llvm/IR/Intrinsics.h"
Chandler Carruth820a9082014-03-04 11:08:18 +000020#include "llvm/IR/PatternMatch.h"
Chris Lattner0a8191e2010-01-05 07:50:36 +000021using namespace llvm;
22using namespace PatternMatch;
23
Chandler Carruth964daaa2014-04-22 02:55:47 +000024#define DEBUG_TYPE "instcombine"
25
Sanjay Patel18549272015-09-08 18:24:36 +000026/// Similar to getICmpCode but for FCmpInst. This encodes a fcmp predicate into
Tim Shenaec68b22016-06-29 20:10:17 +000027/// a four bit mask.
28static unsigned getFCmpCode(FCmpInst::Predicate CC) {
29 assert(FCmpInst::FCMP_FALSE <= CC && CC <= FCmpInst::FCMP_TRUE &&
30 "Unexpected FCmp predicate!");
31 // Take advantage of the bit pattern of FCmpInst::Predicate here.
32 // U L G E
33 static_assert(FCmpInst::FCMP_FALSE == 0, ""); // 0 0 0 0
34 static_assert(FCmpInst::FCMP_OEQ == 1, ""); // 0 0 0 1
35 static_assert(FCmpInst::FCMP_OGT == 2, ""); // 0 0 1 0
36 static_assert(FCmpInst::FCMP_OGE == 3, ""); // 0 0 1 1
37 static_assert(FCmpInst::FCMP_OLT == 4, ""); // 0 1 0 0
38 static_assert(FCmpInst::FCMP_OLE == 5, ""); // 0 1 0 1
39 static_assert(FCmpInst::FCMP_ONE == 6, ""); // 0 1 1 0
40 static_assert(FCmpInst::FCMP_ORD == 7, ""); // 0 1 1 1
41 static_assert(FCmpInst::FCMP_UNO == 8, ""); // 1 0 0 0
42 static_assert(FCmpInst::FCMP_UEQ == 9, ""); // 1 0 0 1
43 static_assert(FCmpInst::FCMP_UGT == 10, ""); // 1 0 1 0
44 static_assert(FCmpInst::FCMP_UGE == 11, ""); // 1 0 1 1
45 static_assert(FCmpInst::FCMP_ULT == 12, ""); // 1 1 0 0
46 static_assert(FCmpInst::FCMP_ULE == 13, ""); // 1 1 0 1
47 static_assert(FCmpInst::FCMP_UNE == 14, ""); // 1 1 1 0
48 static_assert(FCmpInst::FCMP_TRUE == 15, ""); // 1 1 1 1
49 return CC;
Chris Lattner0a8191e2010-01-05 07:50:36 +000050}
51
Sanjay Patel18549272015-09-08 18:24:36 +000052/// This is the complement of getICmpCode, which turns an opcode and two
53/// operands into either a constant true or false, or a brand new ICmp
54/// instruction. The sign is passed in to determine which kind of predicate to
55/// use in the new icmp instruction.
Benjamin Kramerbaba1aa2012-02-06 11:28:19 +000056static Value *getNewICmpValue(bool Sign, unsigned Code, Value *LHS, Value *RHS,
Craig Topperbb4069e2017-07-07 23:16:26 +000057 InstCombiner::BuilderTy &Builder) {
Pete Cooperebf98c12011-12-17 01:20:32 +000058 ICmpInst::Predicate NewPred;
59 if (Value *NewConstant = getICmpValue(Sign, Code, LHS, RHS, NewPred))
60 return NewConstant;
Craig Topperbb4069e2017-07-07 23:16:26 +000061 return Builder.CreateICmp(NewPred, LHS, RHS);
Chris Lattner0a8191e2010-01-05 07:50:36 +000062}
63
Sanjay Patel18549272015-09-08 18:24:36 +000064/// This is the complement of getFCmpCode, which turns an opcode and two
Tim Shenaec68b22016-06-29 20:10:17 +000065/// operands into either a FCmp instruction, or a true/false constant.
66static Value *getFCmpValue(unsigned Code, Value *LHS, Value *RHS,
Craig Topperbb4069e2017-07-07 23:16:26 +000067 InstCombiner::BuilderTy &Builder) {
Tim Shenaec68b22016-06-29 20:10:17 +000068 const auto Pred = static_cast<FCmpInst::Predicate>(Code);
69 assert(FCmpInst::FCMP_FALSE <= Pred && Pred <= FCmpInst::FCMP_TRUE &&
70 "Unexpected FCmp predicate!");
71 if (Pred == FCmpInst::FCMP_FALSE)
72 return ConstantInt::get(CmpInst::makeCmpResultType(LHS->getType()), 0);
73 if (Pred == FCmpInst::FCMP_TRUE)
74 return ConstantInt::get(CmpInst::makeCmpResultType(LHS->getType()), 1);
Craig Topperbb4069e2017-07-07 23:16:26 +000075 return Builder.CreateFCmp(Pred, LHS, RHS);
Chris Lattner0a8191e2010-01-05 07:50:36 +000076}
77
Adrian Prantl5f8f34e42018-05-01 15:54:18 +000078/// Transform BITWISE_OP(BSWAP(A),BSWAP(B)) or
Craig Topperfc42ace2017-07-06 16:24:22 +000079/// BITWISE_OP(BSWAP(A), Constant) to BSWAP(BITWISE_OP(A, B))
Simon Pilgrimbe24ab32014-12-04 09:44:01 +000080/// \param I Binary operator to transform.
81/// \return Pointer to node that must replace the original binary operator, or
82/// null pointer if no transformation was made.
Craig Topper95e41422017-07-06 16:24:23 +000083static Value *SimplifyBSwap(BinaryOperator &I,
Craig Topperbb4069e2017-07-07 23:16:26 +000084 InstCombiner::BuilderTy &Builder) {
Craig Topperc6948c22017-07-03 05:54:11 +000085 assert(I.isBitwiseLogicOp() && "Unexpected opcode for bswap simplifying");
86
Craig Topper22795de2017-07-06 16:24:21 +000087 Value *OldLHS = I.getOperand(0);
88 Value *OldRHS = I.getOperand(1);
Craig Topper80369702017-07-03 05:54:16 +000089
Craig Topper766ce6e2017-07-03 05:54:15 +000090 Value *NewLHS;
Craig Topper22795de2017-07-06 16:24:21 +000091 if (!match(OldLHS, m_BSwap(m_Value(NewLHS))))
Simon Pilgrimbe24ab32014-12-04 09:44:01 +000092 return nullptr;
93
Craig Topper766ce6e2017-07-03 05:54:15 +000094 Value *NewRHS;
95 const APInt *C;
96
Craig Topper22795de2017-07-06 16:24:21 +000097 if (match(OldRHS, m_BSwap(m_Value(NewRHS)))) {
Craig Topper766ce6e2017-07-03 05:54:15 +000098 // OP( BSWAP(x), BSWAP(y) ) -> BSWAP( OP(x, y) )
Craig Topper22795de2017-07-06 16:24:21 +000099 if (!OldLHS->hasOneUse() && !OldRHS->hasOneUse())
100 return nullptr;
Craig Topper766ce6e2017-07-03 05:54:15 +0000101 // NewRHS initialized by the matcher.
Craig Topper22795de2017-07-06 16:24:21 +0000102 } else if (match(OldRHS, m_APInt(C))) {
Craig Topper766ce6e2017-07-03 05:54:15 +0000103 // OP( BSWAP(x), CONSTANT ) -> BSWAP( OP(x, BSWAP(CONSTANT) ) )
Craig Topper22795de2017-07-06 16:24:21 +0000104 if (!OldLHS->hasOneUse())
105 return nullptr;
Craig Topper766ce6e2017-07-03 05:54:15 +0000106 NewRHS = ConstantInt::get(I.getType(), C->byteSwap());
107 } else
Simon Pilgrimbe24ab32014-12-04 09:44:01 +0000108 return nullptr;
109
Craig Topperbb4069e2017-07-07 23:16:26 +0000110 Value *BinOp = Builder.CreateBinOp(I.getOpcode(), NewLHS, NewRHS);
Craig Topper1e4643a2017-07-03 05:54:13 +0000111 Function *F = Intrinsic::getDeclaration(I.getModule(), Intrinsic::bswap,
112 I.getType());
Craig Topperbb4069e2017-07-07 23:16:26 +0000113 return Builder.CreateCall(F, BinOp);
Simon Pilgrimbe24ab32014-12-04 09:44:01 +0000114}
115
Sanjay Patel18549272015-09-08 18:24:36 +0000116/// This handles expressions of the form ((val OP C1) & C2). Where
Craig Topper70e4f432017-04-02 17:57:30 +0000117/// the Op parameter is 'OP', OpRHS is 'C1', and AndRHS is 'C2'.
118Instruction *InstCombiner::OptAndOp(BinaryOperator *Op,
Chris Lattner0a8191e2010-01-05 07:50:36 +0000119 ConstantInt *OpRHS,
120 ConstantInt *AndRHS,
121 BinaryOperator &TheAnd) {
122 Value *X = Op->getOperand(0);
Chris Lattner0a8191e2010-01-05 07:50:36 +0000123
124 switch (Op->getOpcode()) {
Craig Topper70e4f432017-04-02 17:57:30 +0000125 default: break;
Chris Lattner0a8191e2010-01-05 07:50:36 +0000126 case Instruction::Add:
127 if (Op->hasOneUse()) {
128 // Adding a one to a single bit bit-field should be turned into an XOR
129 // of the bit. First thing to check is to see if this AND is with a
130 // single bit constant.
Jakub Staszak9de494e2013-06-06 00:49:57 +0000131 const APInt &AndRHSV = AndRHS->getValue();
Chris Lattner0a8191e2010-01-05 07:50:36 +0000132
133 // If there is only one bit set.
134 if (AndRHSV.isPowerOf2()) {
135 // Ok, at this point, we know that we are masking the result of the
136 // ADD down to exactly one bit. If the constant we are adding has
137 // no bits set below this bit, then we can eliminate the ADD.
Jakub Staszak9de494e2013-06-06 00:49:57 +0000138 const APInt& AddRHS = OpRHS->getValue();
Chris Lattner0a8191e2010-01-05 07:50:36 +0000139
140 // Check to see if any bits below the one bit set in AndRHSV are set.
Craig Topper73ba1c82017-06-07 07:40:37 +0000141 if ((AddRHS & (AndRHSV - 1)).isNullValue()) {
Chris Lattner0a8191e2010-01-05 07:50:36 +0000142 // If not, the only thing that can effect the output of the AND is
143 // the bit specified by AndRHSV. If that bit is set, the effect of
144 // the XOR is to toggle the bit. If it is clear, then the ADD has
145 // no effect.
Craig Topper73ba1c82017-06-07 07:40:37 +0000146 if ((AddRHS & AndRHSV).isNullValue()) { // Bit is not set, noop
Chris Lattner0a8191e2010-01-05 07:50:36 +0000147 TheAnd.setOperand(0, X);
148 return &TheAnd;
149 } else {
150 // Pull the XOR out of the AND.
Craig Topperbb4069e2017-07-07 23:16:26 +0000151 Value *NewAnd = Builder.CreateAnd(X, AndRHS);
Chris Lattner0a8191e2010-01-05 07:50:36 +0000152 NewAnd->takeName(Op);
153 return BinaryOperator::CreateXor(NewAnd, AndRHS);
154 }
155 }
156 }
157 }
158 break;
Chris Lattner0a8191e2010-01-05 07:50:36 +0000159 }
Craig Topperf40110f2014-04-25 05:29:35 +0000160 return nullptr;
Chris Lattner0a8191e2010-01-05 07:50:36 +0000161}
162
Jim Grosbachbdbd7342013-04-05 21:20:12 +0000163/// Emit a computation of: (V >= Lo && V < Hi) if Inside is true, otherwise
Sanjay Patel7d9ebaf2016-08-31 00:19:35 +0000164/// (V < Lo || V >= Hi). This method expects that Lo <= Hi. IsSigned indicates
165/// whether to treat V, Lo, and Hi as signed or not.
Sanjay Patel85d79742016-08-31 19:49:56 +0000166Value *InstCombiner::insertRangeTest(Value *V, const APInt &Lo, const APInt &Hi,
Chris Lattner067459c2010-03-05 08:46:26 +0000167 bool isSigned, bool Inside) {
Sanjay Patel85d79742016-08-31 19:49:56 +0000168 assert((isSigned ? Lo.sle(Hi) : Lo.ule(Hi)) &&
Chris Lattner0a8191e2010-01-05 07:50:36 +0000169 "Lo is not <= Hi in range emission code!");
Craig Topper9d4171a2012-12-20 07:09:41 +0000170
Sanjay Patel85d79742016-08-31 19:49:56 +0000171 Type *Ty = V->getType();
Sanjay Patel7d9ebaf2016-08-31 00:19:35 +0000172 if (Lo == Hi)
Sanjay Patel85d79742016-08-31 19:49:56 +0000173 return Inside ? ConstantInt::getFalse(Ty) : ConstantInt::getTrue(Ty);
Chris Lattner0a8191e2010-01-05 07:50:36 +0000174
Sanjay Patel7d9ebaf2016-08-31 00:19:35 +0000175 // V >= Min && V < Hi --> V < Hi
176 // V < Min || V >= Hi --> V >= Hi
177 ICmpInst::Predicate Pred = Inside ? ICmpInst::ICMP_ULT : ICmpInst::ICMP_UGE;
Sanjay Patel85d79742016-08-31 19:49:56 +0000178 if (isSigned ? Lo.isMinSignedValue() : Lo.isMinValue()) {
Sanjay Patel7d9ebaf2016-08-31 00:19:35 +0000179 Pred = isSigned ? ICmpInst::getSignedPredicate(Pred) : Pred;
Craig Topperbb4069e2017-07-07 23:16:26 +0000180 return Builder.CreateICmp(Pred, V, ConstantInt::get(Ty, Hi));
Chris Lattner0a8191e2010-01-05 07:50:36 +0000181 }
182
Sanjay Patel7d9ebaf2016-08-31 00:19:35 +0000183 // V >= Lo && V < Hi --> V - Lo u< Hi - Lo
184 // V < Lo || V >= Hi --> V - Lo u>= Hi - Lo
Sanjay Patel85d79742016-08-31 19:49:56 +0000185 Value *VMinusLo =
Craig Topperbb4069e2017-07-07 23:16:26 +0000186 Builder.CreateSub(V, ConstantInt::get(Ty, Lo), V->getName() + ".off");
Sanjay Patel85d79742016-08-31 19:49:56 +0000187 Constant *HiMinusLo = ConstantInt::get(Ty, Hi - Lo);
Craig Topperbb4069e2017-07-07 23:16:26 +0000188 return Builder.CreateICmp(Pred, VMinusLo, HiMinusLo);
Chris Lattner0a8191e2010-01-05 07:50:36 +0000189}
190
Sanjay Patel77bf6222017-04-03 16:53:12 +0000191/// Classify (icmp eq (A & B), C) and (icmp ne (A & B), C) as matching patterns
192/// that can be simplified.
193/// One of A and B is considered the mask. The other is the value. This is
194/// described as the "AMask" or "BMask" part of the enum. If the enum contains
195/// only "Mask", then both A and B can be considered masks. If A is the mask,
196/// then it was proven that (A & C) == C. This is trivial if C == A or C == 0.
197/// If both A and C are constants, this proof is also easy.
198/// For the following explanations, we assume that A is the mask.
199///
200/// "AllOnes" declares that the comparison is true only if (A & B) == A or all
201/// bits of A are set in B.
202/// Example: (icmp eq (A & 3), 3) -> AMask_AllOnes
203///
204/// "AllZeros" declares that the comparison is true only if (A & B) == 0 or all
205/// bits of A are cleared in B.
206/// Example: (icmp eq (A & 3), 0) -> Mask_AllZeroes
207///
208/// "Mixed" declares that (A & B) == C and C might or might not contain any
209/// number of one bits and zero bits.
210/// Example: (icmp eq (A & 3), 1) -> AMask_Mixed
211///
212/// "Not" means that in above descriptions "==" should be replaced by "!=".
213/// Example: (icmp ne (A & 3), 3) -> AMask_NotAllOnes
214///
Owen Anderson3fe002d2010-09-08 22:16:17 +0000215/// If the mask A contains a single bit, then the following is equivalent:
216/// (icmp eq (A & B), A) equals (icmp ne (A & B), 0)
217/// (icmp ne (A & B), A) equals (icmp eq (A & B), 0)
218enum MaskedICmpType {
Sanjay Patel77bf6222017-04-03 16:53:12 +0000219 AMask_AllOnes = 1,
220 AMask_NotAllOnes = 2,
221 BMask_AllOnes = 4,
222 BMask_NotAllOnes = 8,
223 Mask_AllZeros = 16,
224 Mask_NotAllZeros = 32,
225 AMask_Mixed = 64,
226 AMask_NotMixed = 128,
227 BMask_Mixed = 256,
228 BMask_NotMixed = 512
Owen Anderson3fe002d2010-09-08 22:16:17 +0000229};
230
Sanjay Patel77bf6222017-04-03 16:53:12 +0000231/// Return the set of patterns (from MaskedICmpType) that (icmp SCC (A & B), C)
232/// satisfies.
233static unsigned getMaskedICmpType(Value *A, Value *B, Value *C,
234 ICmpInst::Predicate Pred) {
Owen Anderson3fe002d2010-09-08 22:16:17 +0000235 ConstantInt *ACst = dyn_cast<ConstantInt>(A);
236 ConstantInt *BCst = dyn_cast<ConstantInt>(B);
237 ConstantInt *CCst = dyn_cast<ConstantInt>(C);
Sanjay Patel77bf6222017-04-03 16:53:12 +0000238 bool IsEq = (Pred == ICmpInst::ICMP_EQ);
239 bool IsAPow2 = (ACst && !ACst->isZero() && ACst->getValue().isPowerOf2());
240 bool IsBPow2 = (BCst && !BCst->isZero() && BCst->getValue().isPowerOf2());
241 unsigned MaskVal = 0;
Craig Topperf40110f2014-04-25 05:29:35 +0000242 if (CCst && CCst->isZero()) {
Owen Anderson3fe002d2010-09-08 22:16:17 +0000243 // if C is zero, then both A and B qualify as mask
Sanjay Patel77bf6222017-04-03 16:53:12 +0000244 MaskVal |= (IsEq ? (Mask_AllZeros | AMask_Mixed | BMask_Mixed)
245 : (Mask_NotAllZeros | AMask_NotMixed | BMask_NotMixed));
246 if (IsAPow2)
247 MaskVal |= (IsEq ? (AMask_NotAllOnes | AMask_NotMixed)
248 : (AMask_AllOnes | AMask_Mixed));
249 if (IsBPow2)
250 MaskVal |= (IsEq ? (BMask_NotAllOnes | BMask_NotMixed)
251 : (BMask_AllOnes | BMask_Mixed));
252 return MaskVal;
Owen Anderson3fe002d2010-09-08 22:16:17 +0000253 }
Sanjay Patel77bf6222017-04-03 16:53:12 +0000254
Owen Anderson3fe002d2010-09-08 22:16:17 +0000255 if (A == C) {
Sanjay Patel77bf6222017-04-03 16:53:12 +0000256 MaskVal |= (IsEq ? (AMask_AllOnes | AMask_Mixed)
257 : (AMask_NotAllOnes | AMask_NotMixed));
258 if (IsAPow2)
259 MaskVal |= (IsEq ? (Mask_NotAllZeros | AMask_NotMixed)
260 : (Mask_AllZeros | AMask_Mixed));
261 } else if (ACst && CCst && ConstantExpr::getAnd(ACst, CCst) == CCst) {
262 MaskVal |= (IsEq ? AMask_Mixed : AMask_NotMixed);
Owen Anderson3fe002d2010-09-08 22:16:17 +0000263 }
Sanjay Patel77bf6222017-04-03 16:53:12 +0000264
Craig Topperae48cb22012-12-20 07:15:54 +0000265 if (B == C) {
Sanjay Patel77bf6222017-04-03 16:53:12 +0000266 MaskVal |= (IsEq ? (BMask_AllOnes | BMask_Mixed)
267 : (BMask_NotAllOnes | BMask_NotMixed));
268 if (IsBPow2)
269 MaskVal |= (IsEq ? (Mask_NotAllZeros | BMask_NotMixed)
270 : (Mask_AllZeros | BMask_Mixed));
271 } else if (BCst && CCst && ConstantExpr::getAnd(BCst, CCst) == CCst) {
272 MaskVal |= (IsEq ? BMask_Mixed : BMask_NotMixed);
Owen Anderson3fe002d2010-09-08 22:16:17 +0000273 }
Sanjay Patel77bf6222017-04-03 16:53:12 +0000274
275 return MaskVal;
Owen Anderson3fe002d2010-09-08 22:16:17 +0000276}
277
Tim Northoverc0756c42013-09-04 11:57:13 +0000278/// Convert an analysis of a masked ICmp into its equivalent if all boolean
279/// operations had the opposite sense. Since each "NotXXX" flag (recording !=)
280/// is adjacent to the corresponding normal flag (recording ==), this just
281/// involves swapping those bits over.
282static unsigned conjugateICmpMask(unsigned Mask) {
283 unsigned NewMask;
Sanjay Patel77bf6222017-04-03 16:53:12 +0000284 NewMask = (Mask & (AMask_AllOnes | BMask_AllOnes | Mask_AllZeros |
285 AMask_Mixed | BMask_Mixed))
Tim Northoverc0756c42013-09-04 11:57:13 +0000286 << 1;
287
Sanjay Patel77bf6222017-04-03 16:53:12 +0000288 NewMask |= (Mask & (AMask_NotAllOnes | BMask_NotAllOnes | Mask_NotAllZeros |
289 AMask_NotMixed | BMask_NotMixed))
290 >> 1;
Tim Northoverc0756c42013-09-04 11:57:13 +0000291
292 return NewMask;
293}
294
Craig Topper0aa3a192017-08-14 21:39:51 +0000295// Adapts the external decomposeBitTestICmp for local use.
296static bool decomposeBitTestICmp(Value *LHS, Value *RHS, CmpInst::Predicate &Pred,
297 Value *&X, Value *&Y, Value *&Z) {
298 APInt Mask;
299 if (!llvm::decomposeBitTestICmp(LHS, RHS, Pred, X, Mask))
300 return false;
301
Craig Topper085c1f42017-09-01 21:27:29 +0000302 Y = ConstantInt::get(X->getType(), Mask);
303 Z = ConstantInt::get(X->getType(), 0);
Craig Topper0aa3a192017-08-14 21:39:51 +0000304 return true;
305}
306
Sanjay Patel77bf6222017-04-03 16:53:12 +0000307/// Handle (icmp(A & B) ==/!= C) &/| (icmp(A & D) ==/!= E).
Hiroshi Yamauchie6a3dc72018-03-13 21:13:18 +0000308/// Return the pattern classes (from MaskedICmpType) for the left hand side and
309/// the right hand side as a pair.
310/// LHS and RHS are the left hand side and the right hand side ICmps and PredL
311/// and PredR are their predicates, respectively.
312static
313Optional<std::pair<unsigned, unsigned>>
314getMaskedTypeForICmpPair(Value *&A, Value *&B, Value *&C,
315 Value *&D, Value *&E, ICmpInst *LHS,
316 ICmpInst *RHS,
317 ICmpInst::Predicate &PredL,
318 ICmpInst::Predicate &PredR) {
Craig Topper775ffcc2017-08-21 21:00:45 +0000319 // vectors are not (yet?) supported. Don't support pointers either.
Craig Topperd3b46562017-09-01 21:27:31 +0000320 if (!LHS->getOperand(0)->getType()->isIntegerTy() ||
321 !RHS->getOperand(0)->getType()->isIntegerTy())
Hiroshi Yamauchie6a3dc72018-03-13 21:13:18 +0000322 return None;
Owen Anderson3fe002d2010-09-08 22:16:17 +0000323
324 // Here comes the tricky part:
Craig Topper9d4171a2012-12-20 07:09:41 +0000325 // LHS might be of the form L11 & L12 == X, X == L21 & L22,
Owen Anderson3fe002d2010-09-08 22:16:17 +0000326 // and L11 & L12 == L21 & L22. The same goes for RHS.
327 // Now we must find those components L** and R**, that are equal, so
Craig Topper9d4171a2012-12-20 07:09:41 +0000328 // that we can extract the parameters A, B, C, D, and E for the canonical
Owen Anderson3fe002d2010-09-08 22:16:17 +0000329 // above.
330 Value *L1 = LHS->getOperand(0);
331 Value *L2 = LHS->getOperand(1);
Sanjay Patel77bf6222017-04-03 16:53:12 +0000332 Value *L11, *L12, *L21, *L22;
Benjamin Kramerf9d0cc02012-01-09 17:23:27 +0000333 // Check whether the icmp can be decomposed into a bit test.
Craig Topper0aa3a192017-08-14 21:39:51 +0000334 if (decomposeBitTestICmp(L1, L2, PredL, L11, L12, L2)) {
Craig Topperf40110f2014-04-25 05:29:35 +0000335 L21 = L22 = L1 = nullptr;
Benjamin Kramerf9d0cc02012-01-09 17:23:27 +0000336 } else {
337 // Look for ANDs in the LHS icmp.
Craig Topper775ffcc2017-08-21 21:00:45 +0000338 if (!match(L1, m_And(m_Value(L11), m_Value(L12)))) {
Tim Northoverdc647a22013-09-04 11:57:17 +0000339 // Any icmp can be viewed as being trivially masked; if it allows us to
340 // remove one, it's worth it.
341 L11 = L1;
342 L12 = Constant::getAllOnesValue(L1->getType());
343 }
344
Craig Topper775ffcc2017-08-21 21:00:45 +0000345 if (!match(L2, m_And(m_Value(L21), m_Value(L22)))) {
Tim Northoverdc647a22013-09-04 11:57:17 +0000346 L21 = L2;
347 L22 = Constant::getAllOnesValue(L2->getType());
Benjamin Kramerf9d0cc02012-01-09 17:23:27 +0000348 }
Owen Anderson3fe002d2010-09-08 22:16:17 +0000349 }
Benjamin Kramerf9d0cc02012-01-09 17:23:27 +0000350
351 // Bail if LHS was a icmp that can't be decomposed into an equality.
Sanjay Patel77bf6222017-04-03 16:53:12 +0000352 if (!ICmpInst::isEquality(PredL))
Hiroshi Yamauchie6a3dc72018-03-13 21:13:18 +0000353 return None;
Owen Anderson3fe002d2010-09-08 22:16:17 +0000354
355 Value *R1 = RHS->getOperand(0);
356 Value *R2 = RHS->getOperand(1);
Sanjay Patel77bf6222017-04-03 16:53:12 +0000357 Value *R11, *R12;
358 bool Ok = false;
Craig Topper0aa3a192017-08-14 21:39:51 +0000359 if (decomposeBitTestICmp(R1, R2, PredR, R11, R12, R2)) {
Benjamin Kramerf9d0cc02012-01-09 17:23:27 +0000360 if (R11 == L11 || R11 == L12 || R11 == L21 || R11 == L22) {
Sanjay Patel77bf6222017-04-03 16:53:12 +0000361 A = R11;
362 D = R12;
Benjamin Kramerf9d0cc02012-01-09 17:23:27 +0000363 } else if (R12 == L11 || R12 == L12 || R12 == L21 || R12 == L22) {
Sanjay Patel77bf6222017-04-03 16:53:12 +0000364 A = R12;
365 D = R11;
Benjamin Kramerf9d0cc02012-01-09 17:23:27 +0000366 } else {
Hiroshi Yamauchie6a3dc72018-03-13 21:13:18 +0000367 return None;
Owen Anderson3fe002d2010-09-08 22:16:17 +0000368 }
Sanjay Patel77bf6222017-04-03 16:53:12 +0000369 E = R2;
370 R1 = nullptr;
371 Ok = true;
Craig Topper775ffcc2017-08-21 21:00:45 +0000372 } else {
Tim Northoverdc647a22013-09-04 11:57:17 +0000373 if (!match(R1, m_And(m_Value(R11), m_Value(R12)))) {
374 // As before, model no mask as a trivial mask if it'll let us do an
Mayur Pandey75b76c62014-08-19 06:41:55 +0000375 // optimization.
Tim Northoverdc647a22013-09-04 11:57:17 +0000376 R11 = R1;
377 R12 = Constant::getAllOnesValue(R1->getType());
378 }
379
Benjamin Kramerf9d0cc02012-01-09 17:23:27 +0000380 if (R11 == L11 || R11 == L12 || R11 == L21 || R11 == L22) {
Sanjay Patel77bf6222017-04-03 16:53:12 +0000381 A = R11;
382 D = R12;
383 E = R2;
384 Ok = true;
Benjamin Kramerf9d0cc02012-01-09 17:23:27 +0000385 } else if (R12 == L11 || R12 == L12 || R12 == L21 || R12 == L22) {
Sanjay Patel77bf6222017-04-03 16:53:12 +0000386 A = R12;
387 D = R11;
388 E = R2;
389 Ok = true;
Owen Anderson3fe002d2010-09-08 22:16:17 +0000390 }
391 }
Benjamin Kramerf9d0cc02012-01-09 17:23:27 +0000392
393 // Bail if RHS was a icmp that can't be decomposed into an equality.
Sanjay Patel77bf6222017-04-03 16:53:12 +0000394 if (!ICmpInst::isEquality(PredR))
Hiroshi Yamauchie6a3dc72018-03-13 21:13:18 +0000395 return None;
Benjamin Kramerf9d0cc02012-01-09 17:23:27 +0000396
Chad Rosier58919cc2016-05-09 21:37:43 +0000397 // Look for ANDs on the right side of the RHS icmp.
Craig Topper775ffcc2017-08-21 21:00:45 +0000398 if (!Ok) {
Tim Northoverdc647a22013-09-04 11:57:17 +0000399 if (!match(R2, m_And(m_Value(R11), m_Value(R12)))) {
400 R11 = R2;
401 R12 = Constant::getAllOnesValue(R2->getType());
402 }
403
Benjamin Kramerf9d0cc02012-01-09 17:23:27 +0000404 if (R11 == L11 || R11 == L12 || R11 == L21 || R11 == L22) {
Sanjay Patel77bf6222017-04-03 16:53:12 +0000405 A = R11;
406 D = R12;
407 E = R1;
408 Ok = true;
Benjamin Kramerf9d0cc02012-01-09 17:23:27 +0000409 } else if (R12 == L11 || R12 == L12 || R12 == L21 || R12 == L22) {
Sanjay Patel77bf6222017-04-03 16:53:12 +0000410 A = R12;
411 D = R11;
412 E = R1;
413 Ok = true;
Benjamin Kramerf9d0cc02012-01-09 17:23:27 +0000414 } else {
Hiroshi Yamauchie6a3dc72018-03-13 21:13:18 +0000415 return None;
Benjamin Kramerf9d0cc02012-01-09 17:23:27 +0000416 }
Owen Anderson3fe002d2010-09-08 22:16:17 +0000417 }
Sanjay Patel77bf6222017-04-03 16:53:12 +0000418 if (!Ok)
Hiroshi Yamauchie6a3dc72018-03-13 21:13:18 +0000419 return None;
Owen Anderson3fe002d2010-09-08 22:16:17 +0000420
421 if (L11 == A) {
Sanjay Patel77bf6222017-04-03 16:53:12 +0000422 B = L12;
423 C = L2;
Craig Topperae48cb22012-12-20 07:15:54 +0000424 } else if (L12 == A) {
Sanjay Patel77bf6222017-04-03 16:53:12 +0000425 B = L11;
426 C = L2;
Craig Topperae48cb22012-12-20 07:15:54 +0000427 } else if (L21 == A) {
Sanjay Patel77bf6222017-04-03 16:53:12 +0000428 B = L22;
429 C = L1;
Craig Topperae48cb22012-12-20 07:15:54 +0000430 } else if (L22 == A) {
Sanjay Patel77bf6222017-04-03 16:53:12 +0000431 B = L21;
432 C = L1;
Owen Anderson3fe002d2010-09-08 22:16:17 +0000433 }
434
Sanjay Patel77bf6222017-04-03 16:53:12 +0000435 unsigned LeftType = getMaskedICmpType(A, B, C, PredL);
436 unsigned RightType = getMaskedICmpType(A, D, E, PredR);
Hiroshi Yamauchie6a3dc72018-03-13 21:13:18 +0000437 return Optional<std::pair<unsigned, unsigned>>(std::make_pair(LeftType, RightType));
438}
439
440/// Try to fold (icmp(A & B) ==/!= C) &/| (icmp(A & D) ==/!= E) into a single
441/// (icmp(A & X) ==/!= Y), where the left-hand side is of type Mask_NotAllZeros
442/// and the right hand side is of type BMask_Mixed. For example,
443/// (icmp (A & 12) != 0) & (icmp (A & 15) == 8) -> (icmp (A & 15) == 8).
444static Value * foldLogOpOfMaskedICmps_NotAllZeros_BMask_Mixed(
445 ICmpInst *LHS, ICmpInst *RHS, bool IsAnd,
446 Value *A, Value *B, Value *C, Value *D, Value *E,
447 ICmpInst::Predicate PredL, ICmpInst::Predicate PredR,
448 llvm::InstCombiner::BuilderTy &Builder) {
449 // We are given the canonical form:
450 // (icmp ne (A & B), 0) & (icmp eq (A & D), E).
451 // where D & E == E.
452 //
453 // If IsAnd is false, we get it in negated form:
454 // (icmp eq (A & B), 0) | (icmp ne (A & D), E) ->
455 // !((icmp ne (A & B), 0) & (icmp eq (A & D), E)).
456 //
457 // We currently handle the case of B, C, D, E are constant.
458 //
459 ConstantInt *BCst = dyn_cast<ConstantInt>(B);
460 if (!BCst)
461 return nullptr;
462 ConstantInt *CCst = dyn_cast<ConstantInt>(C);
463 if (!CCst)
464 return nullptr;
465 ConstantInt *DCst = dyn_cast<ConstantInt>(D);
466 if (!DCst)
467 return nullptr;
468 ConstantInt *ECst = dyn_cast<ConstantInt>(E);
469 if (!ECst)
470 return nullptr;
471
472 ICmpInst::Predicate NewCC = IsAnd ? ICmpInst::ICMP_EQ : ICmpInst::ICMP_NE;
473
474 // Update E to the canonical form when D is a power of two and RHS is
475 // canonicalized as,
476 // (icmp ne (A & D), 0) -> (icmp eq (A & D), D) or
477 // (icmp ne (A & D), D) -> (icmp eq (A & D), 0).
478 if (PredR != NewCC)
479 ECst = cast<ConstantInt>(ConstantExpr::getXor(DCst, ECst));
480
481 // If B or D is zero, skip because if LHS or RHS can be trivially folded by
482 // other folding rules and this pattern won't apply any more.
483 if (BCst->getValue() == 0 || DCst->getValue() == 0)
484 return nullptr;
485
486 // If B and D don't intersect, ie. (B & D) == 0, no folding because we can't
487 // deduce anything from it.
488 // For example,
489 // (icmp ne (A & 12), 0) & (icmp eq (A & 3), 1) -> no folding.
490 if ((BCst->getValue() & DCst->getValue()) == 0)
491 return nullptr;
492
493 // If the following two conditions are met:
494 //
495 // 1. mask B covers only a single bit that's not covered by mask D, that is,
496 // (B & (B ^ D)) is a power of 2 (in other words, B minus the intersection of
497 // B and D has only one bit set) and,
498 //
499 // 2. RHS (and E) indicates that the rest of B's bits are zero (in other
500 // words, the intersection of B and D is zero), that is, ((B & D) & E) == 0
501 //
502 // then that single bit in B must be one and thus the whole expression can be
503 // folded to
504 // (A & (B | D)) == (B & (B ^ D)) | E.
505 //
506 // For example,
507 // (icmp ne (A & 12), 0) & (icmp eq (A & 7), 1) -> (icmp eq (A & 15), 9)
508 // (icmp ne (A & 15), 0) & (icmp eq (A & 7), 0) -> (icmp eq (A & 15), 8)
509 if ((((BCst->getValue() & DCst->getValue()) & ECst->getValue()) == 0) &&
510 (BCst->getValue() & (BCst->getValue() ^ DCst->getValue())).isPowerOf2()) {
511 APInt BorD = BCst->getValue() | DCst->getValue();
512 APInt BandBxorDorE = (BCst->getValue() & (BCst->getValue() ^ DCst->getValue())) |
513 ECst->getValue();
514 Value *NewMask = ConstantInt::get(BCst->getType(), BorD);
515 Value *NewMaskedValue = ConstantInt::get(BCst->getType(), BandBxorDorE);
516 Value *NewAnd = Builder.CreateAnd(A, NewMask);
517 return Builder.CreateICmp(NewCC, NewAnd, NewMaskedValue);
518 }
519
520 auto IsSubSetOrEqual = [](ConstantInt *C1, ConstantInt *C2) {
521 return (C1->getValue() & C2->getValue()) == C1->getValue();
522 };
523 auto IsSuperSetOrEqual = [](ConstantInt *C1, ConstantInt *C2) {
524 return (C1->getValue() & C2->getValue()) == C2->getValue();
525 };
526
527 // In the following, we consider only the cases where B is a superset of D, B
528 // is a subset of D, or B == D because otherwise there's at least one bit
529 // covered by B but not D, in which case we can't deduce much from it, so
530 // no folding (aside from the single must-be-one bit case right above.)
531 // For example,
532 // (icmp ne (A & 14), 0) & (icmp eq (A & 3), 1) -> no folding.
533 if (!IsSubSetOrEqual(BCst, DCst) && !IsSuperSetOrEqual(BCst, DCst))
534 return nullptr;
535
536 // At this point, either B is a superset of D, B is a subset of D or B == D.
537
538 // If E is zero, if B is a subset of (or equal to) D, LHS and RHS contradict
539 // and the whole expression becomes false (or true if negated), otherwise, no
540 // folding.
541 // For example,
542 // (icmp ne (A & 3), 0) & (icmp eq (A & 7), 0) -> false.
543 // (icmp ne (A & 15), 0) & (icmp eq (A & 3), 0) -> no folding.
544 if (ECst->isZero()) {
545 if (IsSubSetOrEqual(BCst, DCst))
546 return ConstantInt::get(LHS->getType(), !IsAnd);
547 return nullptr;
548 }
549
550 // At this point, B, D, E aren't zero and (B & D) == B, (B & D) == D or B ==
551 // D. If B is a superset of (or equal to) D, since E is not zero, LHS is
552 // subsumed by RHS (RHS implies LHS.) So the whole expression becomes
553 // RHS. For example,
554 // (icmp ne (A & 255), 0) & (icmp eq (A & 15), 8) -> (icmp eq (A & 15), 8).
555 // (icmp ne (A & 15), 0) & (icmp eq (A & 15), 8) -> (icmp eq (A & 15), 8).
556 if (IsSuperSetOrEqual(BCst, DCst))
557 return RHS;
558 // Otherwise, B is a subset of D. If B and E have a common bit set,
559 // ie. (B & E) != 0, then LHS is subsumed by RHS. For example.
560 // (icmp ne (A & 12), 0) & (icmp eq (A & 15), 8) -> (icmp eq (A & 15), 8).
561 assert(IsSubSetOrEqual(BCst, DCst) && "Precondition due to above code");
562 if ((BCst->getValue() & ECst->getValue()) != 0)
563 return RHS;
564 // Otherwise, LHS and RHS contradict and the whole expression becomes false
565 // (or true if negated.) For example,
566 // (icmp ne (A & 7), 0) & (icmp eq (A & 15), 8) -> false.
567 // (icmp ne (A & 6), 0) & (icmp eq (A & 15), 8) -> false.
568 return ConstantInt::get(LHS->getType(), !IsAnd);
569}
570
571/// Try to fold (icmp(A & B) ==/!= 0) &/| (icmp(A & D) ==/!= E) into a single
572/// (icmp(A & X) ==/!= Y), where the left-hand side and the right hand side
573/// aren't of the common mask pattern type.
574static Value *foldLogOpOfMaskedICmpsAsymmetric(
575 ICmpInst *LHS, ICmpInst *RHS, bool IsAnd,
576 Value *A, Value *B, Value *C, Value *D, Value *E,
577 ICmpInst::Predicate PredL, ICmpInst::Predicate PredR,
578 unsigned LHSMask, unsigned RHSMask,
579 llvm::InstCombiner::BuilderTy &Builder) {
580 assert(ICmpInst::isEquality(PredL) && ICmpInst::isEquality(PredR) &&
581 "Expected equality predicates for masked type of icmps.");
582 // Handle Mask_NotAllZeros-BMask_Mixed cases.
583 // (icmp ne/eq (A & B), C) &/| (icmp eq/ne (A & D), E), or
584 // (icmp eq/ne (A & B), C) &/| (icmp ne/eq (A & D), E)
585 // which gets swapped to
586 // (icmp ne/eq (A & D), E) &/| (icmp eq/ne (A & B), C).
587 if (!IsAnd) {
588 LHSMask = conjugateICmpMask(LHSMask);
589 RHSMask = conjugateICmpMask(RHSMask);
590 }
591 if ((LHSMask & Mask_NotAllZeros) && (RHSMask & BMask_Mixed)) {
592 if (Value *V = foldLogOpOfMaskedICmps_NotAllZeros_BMask_Mixed(
593 LHS, RHS, IsAnd, A, B, C, D, E,
594 PredL, PredR, Builder)) {
595 return V;
596 }
597 } else if ((LHSMask & BMask_Mixed) && (RHSMask & Mask_NotAllZeros)) {
598 if (Value *V = foldLogOpOfMaskedICmps_NotAllZeros_BMask_Mixed(
599 RHS, LHS, IsAnd, A, D, E, B, C,
600 PredR, PredL, Builder)) {
601 return V;
602 }
603 }
604 return nullptr;
Owen Anderson3fe002d2010-09-08 22:16:17 +0000605}
Sanjay Patel18549272015-09-08 18:24:36 +0000606
607/// Try to fold (icmp(A & B) ==/!= C) &/| (icmp(A & D) ==/!= E)
608/// into a single (icmp(A & X) ==/!= Y).
David Majnemer1a3327b2014-11-18 09:31:36 +0000609static Value *foldLogOpOfMaskedICmps(ICmpInst *LHS, ICmpInst *RHS, bool IsAnd,
Craig Topperbb4069e2017-07-07 23:16:26 +0000610 llvm::InstCombiner::BuilderTy &Builder) {
Craig Topperf40110f2014-04-25 05:29:35 +0000611 Value *A = nullptr, *B = nullptr, *C = nullptr, *D = nullptr, *E = nullptr;
Sanjay Patel77bf6222017-04-03 16:53:12 +0000612 ICmpInst::Predicate PredL = LHS->getPredicate(), PredR = RHS->getPredicate();
Hiroshi Yamauchie6a3dc72018-03-13 21:13:18 +0000613 Optional<std::pair<unsigned, unsigned>> MaskPair =
Sanjay Patel77bf6222017-04-03 16:53:12 +0000614 getMaskedTypeForICmpPair(A, B, C, D, E, LHS, RHS, PredL, PredR);
Hiroshi Yamauchie6a3dc72018-03-13 21:13:18 +0000615 if (!MaskPair)
Sanjay Patel77bf6222017-04-03 16:53:12 +0000616 return nullptr;
Sanjay Patel77bf6222017-04-03 16:53:12 +0000617 assert(ICmpInst::isEquality(PredL) && ICmpInst::isEquality(PredR) &&
618 "Expected equality predicates for masked type of icmps.");
Hiroshi Yamauchie6a3dc72018-03-13 21:13:18 +0000619 unsigned LHSMask = MaskPair->first;
620 unsigned RHSMask = MaskPair->second;
621 unsigned Mask = LHSMask & RHSMask;
622 if (Mask == 0) {
623 // Even if the two sides don't share a common pattern, check if folding can
624 // still happen.
625 if (Value *V = foldLogOpOfMaskedICmpsAsymmetric(
626 LHS, RHS, IsAnd, A, B, C, D, E, PredL, PredR, LHSMask, RHSMask,
627 Builder))
628 return V;
629 return nullptr;
630 }
Owen Anderson3fe002d2010-09-08 22:16:17 +0000631
Tim Northoverc0756c42013-09-04 11:57:13 +0000632 // In full generality:
633 // (icmp (A & B) Op C) | (icmp (A & D) Op E)
634 // == ![ (icmp (A & B) !Op C) & (icmp (A & D) !Op E) ]
635 //
636 // If the latter can be converted into (icmp (A & X) Op Y) then the former is
637 // equivalent to (icmp (A & X) !Op Y).
638 //
639 // Therefore, we can pretend for the rest of this function that we're dealing
640 // with the conjunction, provided we flip the sense of any comparisons (both
641 // input and output).
642
643 // In most cases we're going to produce an EQ for the "&&" case.
Sanjay Patel3b8dcc72016-01-18 18:28:09 +0000644 ICmpInst::Predicate NewCC = IsAnd ? ICmpInst::ICMP_EQ : ICmpInst::ICMP_NE;
Tim Northoverc0756c42013-09-04 11:57:13 +0000645 if (!IsAnd) {
646 // Convert the masking analysis into its equivalent with negated
647 // comparisons.
Sanjay Patel3b8dcc72016-01-18 18:28:09 +0000648 Mask = conjugateICmpMask(Mask);
Tim Northoverc0756c42013-09-04 11:57:13 +0000649 }
Owen Anderson3fe002d2010-09-08 22:16:17 +0000650
Sanjay Patel77bf6222017-04-03 16:53:12 +0000651 if (Mask & Mask_AllZeros) {
Craig Topper9d4171a2012-12-20 07:09:41 +0000652 // (icmp eq (A & B), 0) & (icmp eq (A & D), 0)
Owen Anderson3fe002d2010-09-08 22:16:17 +0000653 // -> (icmp eq (A & (B|D)), 0)
Craig Topperbb4069e2017-07-07 23:16:26 +0000654 Value *NewOr = Builder.CreateOr(B, D);
655 Value *NewAnd = Builder.CreateAnd(A, NewOr);
Sanjay Patel3b8dcc72016-01-18 18:28:09 +0000656 // We can't use C as zero because we might actually handle
Craig Topper9d4171a2012-12-20 07:09:41 +0000657 // (icmp ne (A & B), B) & (icmp ne (A & D), D)
Sanjay Patel3b8dcc72016-01-18 18:28:09 +0000658 // with B and D, having a single bit set.
659 Value *Zero = Constant::getNullValue(A->getType());
Craig Topperbb4069e2017-07-07 23:16:26 +0000660 return Builder.CreateICmp(NewCC, NewAnd, Zero);
Owen Anderson3fe002d2010-09-08 22:16:17 +0000661 }
Sanjay Patel77bf6222017-04-03 16:53:12 +0000662 if (Mask & BMask_AllOnes) {
Craig Topper9d4171a2012-12-20 07:09:41 +0000663 // (icmp eq (A & B), B) & (icmp eq (A & D), D)
Owen Anderson3fe002d2010-09-08 22:16:17 +0000664 // -> (icmp eq (A & (B|D)), (B|D))
Craig Topperbb4069e2017-07-07 23:16:26 +0000665 Value *NewOr = Builder.CreateOr(B, D);
666 Value *NewAnd = Builder.CreateAnd(A, NewOr);
667 return Builder.CreateICmp(NewCC, NewAnd, NewOr);
Craig Topper9d4171a2012-12-20 07:09:41 +0000668 }
Sanjay Patel77bf6222017-04-03 16:53:12 +0000669 if (Mask & AMask_AllOnes) {
Craig Topper9d4171a2012-12-20 07:09:41 +0000670 // (icmp eq (A & B), A) & (icmp eq (A & D), A)
Owen Anderson3fe002d2010-09-08 22:16:17 +0000671 // -> (icmp eq (A & (B&D)), A)
Craig Topperbb4069e2017-07-07 23:16:26 +0000672 Value *NewAnd1 = Builder.CreateAnd(B, D);
673 Value *NewAnd2 = Builder.CreateAnd(A, NewAnd1);
674 return Builder.CreateICmp(NewCC, NewAnd2, A);
Owen Anderson3fe002d2010-09-08 22:16:17 +0000675 }
Tim Northoverc0756c42013-09-04 11:57:13 +0000676
677 // Remaining cases assume at least that B and D are constant, and depend on
Sanjay Patel3b8dcc72016-01-18 18:28:09 +0000678 // their actual values. This isn't strictly necessary, just a "handle the
Tim Northoverc0756c42013-09-04 11:57:13 +0000679 // easy cases for now" decision.
680 ConstantInt *BCst = dyn_cast<ConstantInt>(B);
Sanjay Patel77bf6222017-04-03 16:53:12 +0000681 if (!BCst)
682 return nullptr;
Tim Northoverc0756c42013-09-04 11:57:13 +0000683 ConstantInt *DCst = dyn_cast<ConstantInt>(D);
Sanjay Patel77bf6222017-04-03 16:53:12 +0000684 if (!DCst)
685 return nullptr;
Tim Northoverc0756c42013-09-04 11:57:13 +0000686
Sanjay Patel77bf6222017-04-03 16:53:12 +0000687 if (Mask & (Mask_NotAllZeros | BMask_NotAllOnes)) {
Tim Northoverc0756c42013-09-04 11:57:13 +0000688 // (icmp ne (A & B), 0) & (icmp ne (A & D), 0) and
689 // (icmp ne (A & B), B) & (icmp ne (A & D), D)
690 // -> (icmp ne (A & B), 0) or (icmp ne (A & D), 0)
691 // Only valid if one of the masks is a superset of the other (check "B&D" is
692 // the same as either B or D).
693 APInt NewMask = BCst->getValue() & DCst->getValue();
694
695 if (NewMask == BCst->getValue())
696 return LHS;
697 else if (NewMask == DCst->getValue())
698 return RHS;
699 }
Sanjay Patel77bf6222017-04-03 16:53:12 +0000700
701 if (Mask & AMask_NotAllOnes) {
Tim Northoverc0756c42013-09-04 11:57:13 +0000702 // (icmp ne (A & B), B) & (icmp ne (A & D), D)
703 // -> (icmp ne (A & B), A) or (icmp ne (A & D), A)
704 // Only valid if one of the masks is a superset of the other (check "B|D" is
705 // the same as either B or D).
706 APInt NewMask = BCst->getValue() | DCst->getValue();
707
708 if (NewMask == BCst->getValue())
709 return LHS;
710 else if (NewMask == DCst->getValue())
711 return RHS;
712 }
Sanjay Patel77bf6222017-04-03 16:53:12 +0000713
714 if (Mask & BMask_Mixed) {
Craig Topper9d4171a2012-12-20 07:09:41 +0000715 // (icmp eq (A & B), C) & (icmp eq (A & D), E)
Owen Anderson3fe002d2010-09-08 22:16:17 +0000716 // We already know that B & C == C && D & E == E.
717 // If we can prove that (B & D) & (C ^ E) == 0, that is, the bits of
718 // C and E, which are shared by both the mask B and the mask D, don't
719 // contradict, then we can transform to
720 // -> (icmp eq (A & (B|D)), (C|E))
721 // Currently, we only handle the case of B, C, D, and E being constant.
Sanjay Patel3b8dcc72016-01-18 18:28:09 +0000722 // We can't simply use C and E because we might actually handle
Craig Topper9d4171a2012-12-20 07:09:41 +0000723 // (icmp ne (A & B), B) & (icmp eq (A & D), D)
Sanjay Patel3b8dcc72016-01-18 18:28:09 +0000724 // with B and D, having a single bit set.
Owen Anderson3fe002d2010-09-08 22:16:17 +0000725 ConstantInt *CCst = dyn_cast<ConstantInt>(C);
Sanjay Patel77bf6222017-04-03 16:53:12 +0000726 if (!CCst)
727 return nullptr;
Owen Anderson3fe002d2010-09-08 22:16:17 +0000728 ConstantInt *ECst = dyn_cast<ConstantInt>(E);
Sanjay Patel77bf6222017-04-03 16:53:12 +0000729 if (!ECst)
730 return nullptr;
731 if (PredL != NewCC)
David Majnemer1a3327b2014-11-18 09:31:36 +0000732 CCst = cast<ConstantInt>(ConstantExpr::getXor(BCst, CCst));
Sanjay Patel77bf6222017-04-03 16:53:12 +0000733 if (PredR != NewCC)
David Majnemer1a3327b2014-11-18 09:31:36 +0000734 ECst = cast<ConstantInt>(ConstantExpr::getXor(DCst, ECst));
Sanjay Patel77bf6222017-04-03 16:53:12 +0000735
Sanjay Patel3b8dcc72016-01-18 18:28:09 +0000736 // If there is a conflict, we should actually return a false for the
737 // whole construct.
David Majnemer1a3327b2014-11-18 09:31:36 +0000738 if (((BCst->getValue() & DCst->getValue()) &
Craig Topper73ba1c82017-06-07 07:40:37 +0000739 (CCst->getValue() ^ ECst->getValue())).getBoolValue())
David Majnemer6fdb6b82014-11-18 09:31:41 +0000740 return ConstantInt::get(LHS->getType(), !IsAnd);
Sanjay Patel77bf6222017-04-03 16:53:12 +0000741
Craig Topperbb4069e2017-07-07 23:16:26 +0000742 Value *NewOr1 = Builder.CreateOr(B, D);
Sanjay Patel3b8dcc72016-01-18 18:28:09 +0000743 Value *NewOr2 = ConstantExpr::getOr(CCst, ECst);
Craig Topperbb4069e2017-07-07 23:16:26 +0000744 Value *NewAnd = Builder.CreateAnd(A, NewOr1);
745 return Builder.CreateICmp(NewCC, NewAnd, NewOr2);
Owen Anderson3fe002d2010-09-08 22:16:17 +0000746 }
Sanjay Patel77bf6222017-04-03 16:53:12 +0000747
Craig Topperf40110f2014-04-25 05:29:35 +0000748 return nullptr;
Owen Anderson3fe002d2010-09-08 22:16:17 +0000749}
750
Erik Ecksteind1817522014-12-03 10:39:15 +0000751/// Try to fold a signed range checked with lower bound 0 to an unsigned icmp.
752/// Example: (icmp sge x, 0) & (icmp slt x, n) --> icmp ult x, n
753/// If \p Inverted is true then the check is for the inverted range, e.g.
754/// (icmp slt x, 0) | (icmp sgt x, n) --> icmp ugt x, n
755Value *InstCombiner::simplifyRangeCheck(ICmpInst *Cmp0, ICmpInst *Cmp1,
756 bool Inverted) {
757 // Check the lower range comparison, e.g. x >= 0
758 // InstCombine already ensured that if there is a constant it's on the RHS.
759 ConstantInt *RangeStart = dyn_cast<ConstantInt>(Cmp0->getOperand(1));
760 if (!RangeStart)
761 return nullptr;
762
763 ICmpInst::Predicate Pred0 = (Inverted ? Cmp0->getInversePredicate() :
764 Cmp0->getPredicate());
765
766 // Accept x > -1 or x >= 0 (after potentially inverting the predicate).
767 if (!((Pred0 == ICmpInst::ICMP_SGT && RangeStart->isMinusOne()) ||
768 (Pred0 == ICmpInst::ICMP_SGE && RangeStart->isZero())))
769 return nullptr;
770
771 ICmpInst::Predicate Pred1 = (Inverted ? Cmp1->getInversePredicate() :
772 Cmp1->getPredicate());
773
774 Value *Input = Cmp0->getOperand(0);
775 Value *RangeEnd;
776 if (Cmp1->getOperand(0) == Input) {
777 // For the upper range compare we have: icmp x, n
778 RangeEnd = Cmp1->getOperand(1);
779 } else if (Cmp1->getOperand(1) == Input) {
780 // For the upper range compare we have: icmp n, x
781 RangeEnd = Cmp1->getOperand(0);
782 Pred1 = ICmpInst::getSwappedPredicate(Pred1);
783 } else {
784 return nullptr;
785 }
786
787 // Check the upper range comparison, e.g. x < n
788 ICmpInst::Predicate NewPred;
789 switch (Pred1) {
790 case ICmpInst::ICMP_SLT: NewPred = ICmpInst::ICMP_ULT; break;
791 case ICmpInst::ICMP_SLE: NewPred = ICmpInst::ICMP_ULE; break;
792 default: return nullptr;
793 }
794
795 // This simplification is only valid if the upper range is not negative.
Craig Topper1a36b7d2017-05-15 06:39:41 +0000796 KnownBits Known = computeKnownBits(RangeEnd, /*Depth=*/0, Cmp1);
797 if (!Known.isNonNegative())
Erik Ecksteind1817522014-12-03 10:39:15 +0000798 return nullptr;
799
800 if (Inverted)
801 NewPred = ICmpInst::getInversePredicate(NewPred);
802
Craig Topperbb4069e2017-07-07 23:16:26 +0000803 return Builder.CreateICmp(NewPred, Input, RangeEnd);
Erik Ecksteind1817522014-12-03 10:39:15 +0000804}
805
Sanjay Patel7cfe4162017-04-14 19:23:50 +0000806static Value *
807foldAndOrOfEqualityCmpsWithConstants(ICmpInst *LHS, ICmpInst *RHS,
808 bool JoinedByAnd,
Craig Topperbb4069e2017-07-07 23:16:26 +0000809 InstCombiner::BuilderTy &Builder) {
Sanjay Patelef9f5862017-04-15 17:55:06 +0000810 Value *X = LHS->getOperand(0);
811 if (X != RHS->getOperand(0))
Sanjay Patel7cfe4162017-04-14 19:23:50 +0000812 return nullptr;
813
Sanjay Patelef9f5862017-04-15 17:55:06 +0000814 const APInt *C1, *C2;
815 if (!match(LHS->getOperand(1), m_APInt(C1)) ||
816 !match(RHS->getOperand(1), m_APInt(C2)))
Sanjay Patel7cfe4162017-04-14 19:23:50 +0000817 return nullptr;
818
819 // We only handle (X != C1 && X != C2) and (X == C1 || X == C2).
820 ICmpInst::Predicate Pred = LHS->getPredicate();
821 if (Pred != RHS->getPredicate())
822 return nullptr;
823 if (JoinedByAnd && Pred != ICmpInst::ICMP_NE)
824 return nullptr;
825 if (!JoinedByAnd && Pred != ICmpInst::ICMP_EQ)
826 return nullptr;
827
828 // The larger unsigned constant goes on the right.
Sanjay Patelef9f5862017-04-15 17:55:06 +0000829 if (C1->ugt(*C2))
830 std::swap(C1, C2);
Sanjay Patel7cfe4162017-04-14 19:23:50 +0000831
Sanjay Patelef9f5862017-04-15 17:55:06 +0000832 APInt Xor = *C1 ^ *C2;
Sanjay Patel7cfe4162017-04-14 19:23:50 +0000833 if (Xor.isPowerOf2()) {
834 // If LHSC and RHSC differ by only one bit, then set that bit in X and
835 // compare against the larger constant:
836 // (X == C1 || X == C2) --> (X | (C1 ^ C2)) == C2
837 // (X != C1 && X != C2) --> (X | (C1 ^ C2)) != C2
838 // We choose an 'or' with a Pow2 constant rather than the inverse mask with
839 // 'and' because that may lead to smaller codegen from a smaller constant.
Craig Topperbb4069e2017-07-07 23:16:26 +0000840 Value *Or = Builder.CreateOr(X, ConstantInt::get(X->getType(), Xor));
841 return Builder.CreateICmp(Pred, Or, ConstantInt::get(X->getType(), *C2));
Sanjay Patel7cfe4162017-04-14 19:23:50 +0000842 }
843
844 // Special case: get the ordering right when the values wrap around zero.
845 // Ie, we assumed the constants were unsigned when swapping earlier.
Craig Topper73ba1c82017-06-07 07:40:37 +0000846 if (C1->isNullValue() && C2->isAllOnesValue())
Sanjay Patelef9f5862017-04-15 17:55:06 +0000847 std::swap(C1, C2);
Sanjay Patel7cfe4162017-04-14 19:23:50 +0000848
Sanjay Patelef9f5862017-04-15 17:55:06 +0000849 if (*C1 == *C2 - 1) {
Sanjay Patel7cfe4162017-04-14 19:23:50 +0000850 // (X == 13 || X == 14) --> X - 13 <=u 1
851 // (X != 13 && X != 14) --> X - 13 >u 1
852 // An 'add' is the canonical IR form, so favor that over a 'sub'.
Craig Topperbb4069e2017-07-07 23:16:26 +0000853 Value *Add = Builder.CreateAdd(X, ConstantInt::get(X->getType(), -(*C1)));
Sanjay Patel7cfe4162017-04-14 19:23:50 +0000854 auto NewPred = JoinedByAnd ? ICmpInst::ICMP_UGT : ICmpInst::ICMP_ULE;
Craig Topperbb4069e2017-07-07 23:16:26 +0000855 return Builder.CreateICmp(NewPred, Add, ConstantInt::get(X->getType(), 1));
Sanjay Patel7cfe4162017-04-14 19:23:50 +0000856 }
857
858 return nullptr;
859}
860
Craig Topperda6ea0d2017-06-16 05:10:37 +0000861// Fold (iszero(A & K1) | iszero(A & K2)) -> (A & (K1 | K2)) != (K1 | K2)
862// Fold (!iszero(A & K1) & !iszero(A & K2)) -> (A & (K1 | K2)) == (K1 | K2)
863Value *InstCombiner::foldAndOrOfICmpsOfAndWithPow2(ICmpInst *LHS, ICmpInst *RHS,
864 bool JoinedByAnd,
865 Instruction &CxtI) {
866 ICmpInst::Predicate Pred = LHS->getPredicate();
867 if (Pred != RHS->getPredicate())
868 return nullptr;
869 if (JoinedByAnd && Pred != ICmpInst::ICMP_NE)
870 return nullptr;
871 if (!JoinedByAnd && Pred != ICmpInst::ICMP_EQ)
872 return nullptr;
873
874 // TODO support vector splats
875 ConstantInt *LHSC = dyn_cast<ConstantInt>(LHS->getOperand(1));
876 ConstantInt *RHSC = dyn_cast<ConstantInt>(RHS->getOperand(1));
877 if (!LHSC || !RHSC || !LHSC->isZero() || !RHSC->isZero())
878 return nullptr;
879
880 Value *A, *B, *C, *D;
881 if (match(LHS->getOperand(0), m_And(m_Value(A), m_Value(B))) &&
882 match(RHS->getOperand(0), m_And(m_Value(C), m_Value(D)))) {
883 if (A == D || B == D)
884 std::swap(C, D);
885 if (B == C)
886 std::swap(A, B);
887
888 if (A == C &&
889 isKnownToBeAPowerOfTwo(B, false, 0, &CxtI) &&
890 isKnownToBeAPowerOfTwo(D, false, 0, &CxtI)) {
Craig Topperbb4069e2017-07-07 23:16:26 +0000891 Value *Mask = Builder.CreateOr(B, D);
892 Value *Masked = Builder.CreateAnd(A, Mask);
Craig Topperda6ea0d2017-06-16 05:10:37 +0000893 auto NewPred = JoinedByAnd ? ICmpInst::ICMP_EQ : ICmpInst::ICMP_NE;
Craig Topperbb4069e2017-07-07 23:16:26 +0000894 return Builder.CreateICmp(NewPred, Masked, Mask);
Craig Topperda6ea0d2017-06-16 05:10:37 +0000895 }
896 }
897
898 return nullptr;
899}
900
Sanjay Patel18549272015-09-08 18:24:36 +0000901/// Fold (icmp)&(icmp) if possible.
Craig Topperda6ea0d2017-06-16 05:10:37 +0000902Value *InstCombiner::foldAndOfICmps(ICmpInst *LHS, ICmpInst *RHS,
903 Instruction &CxtI) {
904 // Fold (!iszero(A & K1) & !iszero(A & K2)) -> (A & (K1 | K2)) == (K1 | K2)
905 // if K1 and K2 are a one-bit mask.
906 if (Value *V = foldAndOrOfICmpsOfAndWithPow2(LHS, RHS, true, CxtI))
907 return V;
908
Sanjay Patel519a87a2017-04-05 17:38:34 +0000909 ICmpInst::Predicate PredL = LHS->getPredicate(), PredR = RHS->getPredicate();
Chris Lattner0a8191e2010-01-05 07:50:36 +0000910
911 // (icmp1 A, B) & (icmp2 A, B) --> (icmp3 A, B)
Sanjay Patel519a87a2017-04-05 17:38:34 +0000912 if (PredicatesFoldable(PredL, PredR)) {
Chris Lattner0a8191e2010-01-05 07:50:36 +0000913 if (LHS->getOperand(0) == RHS->getOperand(1) &&
914 LHS->getOperand(1) == RHS->getOperand(0))
915 LHS->swapOperands();
916 if (LHS->getOperand(0) == RHS->getOperand(0) &&
917 LHS->getOperand(1) == RHS->getOperand(1)) {
918 Value *Op0 = LHS->getOperand(0), *Op1 = LHS->getOperand(1);
919 unsigned Code = getICmpCode(LHS) & getICmpCode(RHS);
920 bool isSigned = LHS->isSigned() || RHS->isSigned();
Pete Cooperebf98c12011-12-17 01:20:32 +0000921 return getNewICmpValue(isSigned, Code, Op0, Op1, Builder);
Chris Lattner0a8191e2010-01-05 07:50:36 +0000922 }
923 }
Owen Anderson3fe002d2010-09-08 22:16:17 +0000924
Chris Lattnerdcef03f2011-02-10 05:17:27 +0000925 // handle (roughly): (icmp eq (A & B), C) & (icmp eq (A & D), E)
Tim Northoverc0756c42013-09-04 11:57:13 +0000926 if (Value *V = foldLogOpOfMaskedICmps(LHS, RHS, true, Builder))
Chris Lattnerdcef03f2011-02-10 05:17:27 +0000927 return V;
Craig Topper9d4171a2012-12-20 07:09:41 +0000928
Erik Ecksteind1817522014-12-03 10:39:15 +0000929 // E.g. (icmp sge x, 0) & (icmp slt x, n) --> icmp ult x, n
930 if (Value *V = simplifyRangeCheck(LHS, RHS, /*Inverted=*/false))
931 return V;
932
933 // E.g. (icmp slt x, n) & (icmp sge x, 0) --> icmp ult x, n
934 if (Value *V = simplifyRangeCheck(RHS, LHS, /*Inverted=*/false))
935 return V;
936
Sanjay Patelef9f5862017-04-15 17:55:06 +0000937 if (Value *V = foldAndOrOfEqualityCmpsWithConstants(LHS, RHS, true, Builder))
938 return V;
939
Chris Lattner0a8191e2010-01-05 07:50:36 +0000940 // This only handles icmp of constants: (icmp1 A, C1) & (icmp2 B, C2).
Sanjay Patele4159d22017-04-10 19:38:36 +0000941 Value *LHS0 = LHS->getOperand(0), *RHS0 = RHS->getOperand(0);
Sanjay Patel519a87a2017-04-05 17:38:34 +0000942 ConstantInt *LHSC = dyn_cast<ConstantInt>(LHS->getOperand(1));
943 ConstantInt *RHSC = dyn_cast<ConstantInt>(RHS->getOperand(1));
944 if (!LHSC || !RHSC)
945 return nullptr;
Craig Topper9d4171a2012-12-20 07:09:41 +0000946
Sanjay Patel519a87a2017-04-05 17:38:34 +0000947 if (LHSC == RHSC && PredL == PredR) {
Chris Lattner0a8191e2010-01-05 07:50:36 +0000948 // (icmp ult A, C) & (icmp ult B, C) --> (icmp ult (A|B), C)
Sanjay Patelc2ceb8b2016-01-18 19:17:58 +0000949 // where C is a power of 2 or
Chris Lattner0a8191e2010-01-05 07:50:36 +0000950 // (icmp eq A, 0) & (icmp eq B, 0) --> (icmp eq (A|B), 0)
Sanjay Patel519a87a2017-04-05 17:38:34 +0000951 if ((PredL == ICmpInst::ICMP_ULT && LHSC->getValue().isPowerOf2()) ||
952 (PredL == ICmpInst::ICMP_EQ && LHSC->isZero())) {
Craig Topperbb4069e2017-07-07 23:16:26 +0000953 Value *NewOr = Builder.CreateOr(LHS0, RHS0);
954 return Builder.CreateICmp(PredL, NewOr, LHSC);
Chris Lattner0a8191e2010-01-05 07:50:36 +0000955 }
956 }
Benjamin Kramer4145c0d2011-04-28 16:58:40 +0000957
Benjamin Kramer101720f2011-04-28 20:09:57 +0000958 // (trunc x) == C1 & (and x, CA) == C2 -> (and x, CA|CMAX) == C1|C2
Benjamin Kramer4145c0d2011-04-28 16:58:40 +0000959 // where CMAX is the all ones value for the truncated type,
Sylvestre Ledru91ce36c2012-09-27 10:14:43 +0000960 // iff the lower bits of C2 and CA are zero.
Sanjay Patel519a87a2017-04-05 17:38:34 +0000961 if (PredL == ICmpInst::ICMP_EQ && PredL == PredR && LHS->hasOneUse() &&
962 RHS->hasOneUse()) {
Benjamin Kramer4145c0d2011-04-28 16:58:40 +0000963 Value *V;
Sanjay Patel519a87a2017-04-05 17:38:34 +0000964 ConstantInt *AndC, *SmallC = nullptr, *BigC = nullptr;
Benjamin Kramer4145c0d2011-04-28 16:58:40 +0000965
966 // (trunc x) == C1 & (and x, CA) == C2
Craig Topperae48cb22012-12-20 07:15:54 +0000967 // (and x, CA) == C2 & (trunc x) == C1
Sanjay Patele4159d22017-04-10 19:38:36 +0000968 if (match(RHS0, m_Trunc(m_Value(V))) &&
969 match(LHS0, m_And(m_Specific(V), m_ConstantInt(AndC)))) {
Sanjay Patel519a87a2017-04-05 17:38:34 +0000970 SmallC = RHSC;
971 BigC = LHSC;
Sanjay Patele4159d22017-04-10 19:38:36 +0000972 } else if (match(LHS0, m_Trunc(m_Value(V))) &&
973 match(RHS0, m_And(m_Specific(V), m_ConstantInt(AndC)))) {
Sanjay Patel519a87a2017-04-05 17:38:34 +0000974 SmallC = LHSC;
975 BigC = RHSC;
Benjamin Kramer4145c0d2011-04-28 16:58:40 +0000976 }
977
Sanjay Patel519a87a2017-04-05 17:38:34 +0000978 if (SmallC && BigC) {
979 unsigned BigBitSize = BigC->getType()->getBitWidth();
980 unsigned SmallBitSize = SmallC->getType()->getBitWidth();
Benjamin Kramer4145c0d2011-04-28 16:58:40 +0000981
982 // Check that the low bits are zero.
983 APInt Low = APInt::getLowBitsSet(BigBitSize, SmallBitSize);
Craig Topper73ba1c82017-06-07 07:40:37 +0000984 if ((Low & AndC->getValue()).isNullValue() &&
985 (Low & BigC->getValue()).isNullValue()) {
Craig Topperbb4069e2017-07-07 23:16:26 +0000986 Value *NewAnd = Builder.CreateAnd(V, Low | AndC->getValue());
Sanjay Patel519a87a2017-04-05 17:38:34 +0000987 APInt N = SmallC->getValue().zext(BigBitSize) | BigC->getValue();
988 Value *NewVal = ConstantInt::get(AndC->getType()->getContext(), N);
Craig Topperbb4069e2017-07-07 23:16:26 +0000989 return Builder.CreateICmp(PredL, NewAnd, NewVal);
Benjamin Kramer4145c0d2011-04-28 16:58:40 +0000990 }
991 }
992 }
Benjamin Kramerda37e152012-01-08 18:32:24 +0000993
Chris Lattner0a8191e2010-01-05 07:50:36 +0000994 // From here on, we only handle:
995 // (icmp1 A, C1) & (icmp2 A, C2) --> something simpler.
Sanjay Patele4159d22017-04-10 19:38:36 +0000996 if (LHS0 != RHS0)
Sanjay Patel519a87a2017-04-05 17:38:34 +0000997 return nullptr;
Craig Topper9d4171a2012-12-20 07:09:41 +0000998
Sanjay Patel519a87a2017-04-05 17:38:34 +0000999 // ICMP_[US][GL]E X, C is folded to ICMP_[US][GL]T elsewhere.
1000 if (PredL == ICmpInst::ICMP_UGE || PredL == ICmpInst::ICMP_ULE ||
1001 PredR == ICmpInst::ICMP_UGE || PredR == ICmpInst::ICMP_ULE ||
1002 PredL == ICmpInst::ICMP_SGE || PredL == ICmpInst::ICMP_SLE ||
1003 PredR == ICmpInst::ICMP_SGE || PredR == ICmpInst::ICMP_SLE)
Craig Topperf40110f2014-04-25 05:29:35 +00001004 return nullptr;
Anders Carlssonda80afe2011-03-01 15:05:01 +00001005
Chris Lattner0a8191e2010-01-05 07:50:36 +00001006 // We can't fold (ugt x, C) & (sgt x, C2).
Sanjay Patel519a87a2017-04-05 17:38:34 +00001007 if (!PredicatesFoldable(PredL, PredR))
Craig Topperf40110f2014-04-25 05:29:35 +00001008 return nullptr;
Craig Topper9d4171a2012-12-20 07:09:41 +00001009
Chris Lattner0a8191e2010-01-05 07:50:36 +00001010 // Ensure that the larger constant is on the RHS.
1011 bool ShouldSwap;
Sanjay Patel28611ac2017-04-11 15:57:32 +00001012 if (CmpInst::isSigned(PredL) ||
1013 (ICmpInst::isEquality(PredL) && CmpInst::isSigned(PredR)))
Sanjay Patel570e35c2017-04-10 16:55:57 +00001014 ShouldSwap = LHSC->getValue().sgt(RHSC->getValue());
Sanjay Patel28611ac2017-04-11 15:57:32 +00001015 else
1016 ShouldSwap = LHSC->getValue().ugt(RHSC->getValue());
Craig Topper9d4171a2012-12-20 07:09:41 +00001017
Chris Lattner0a8191e2010-01-05 07:50:36 +00001018 if (ShouldSwap) {
1019 std::swap(LHS, RHS);
Sanjay Patel519a87a2017-04-05 17:38:34 +00001020 std::swap(LHSC, RHSC);
1021 std::swap(PredL, PredR);
Chris Lattner0a8191e2010-01-05 07:50:36 +00001022 }
1023
Dan Gohman4a618822010-02-10 16:03:48 +00001024 // At this point, we know we have two icmp instructions
Chris Lattner0a8191e2010-01-05 07:50:36 +00001025 // comparing a value against two constants and and'ing the result
1026 // together. Because of the above check, we know that we only have
Craig Topper9d4171a2012-12-20 07:09:41 +00001027 // icmp eq, icmp ne, icmp [su]lt, and icmp [SU]gt here. We also know
1028 // (from the icmp folding check above), that the two constants
Chris Lattner0a8191e2010-01-05 07:50:36 +00001029 // are not equal and that the larger constant is on the RHS
Sanjay Patel519a87a2017-04-05 17:38:34 +00001030 assert(LHSC != RHSC && "Compares not folded above?");
Chris Lattner0a8191e2010-01-05 07:50:36 +00001031
Sanjay Patel519a87a2017-04-05 17:38:34 +00001032 switch (PredL) {
1033 default:
1034 llvm_unreachable("Unknown integer condition code!");
Chris Lattner0a8191e2010-01-05 07:50:36 +00001035 case ICmpInst::ICMP_NE:
Sanjay Patel519a87a2017-04-05 17:38:34 +00001036 switch (PredR) {
1037 default:
1038 llvm_unreachable("Unknown integer condition code!");
Chris Lattner0a8191e2010-01-05 07:50:36 +00001039 case ICmpInst::ICMP_ULT:
Sanjay Patel519a87a2017-04-05 17:38:34 +00001040 if (LHSC == SubOne(RHSC)) // (X != 13 & X u< 14) -> X < 13
Craig Topperbb4069e2017-07-07 23:16:26 +00001041 return Builder.CreateICmpULT(LHS0, LHSC);
Craig Topper79ab6432017-07-06 18:39:47 +00001042 if (LHSC->isZero()) // (X != 0 & X u< 14) -> X-1 u< 13
Sanjay Patele4159d22017-04-10 19:38:36 +00001043 return insertRangeTest(LHS0, LHSC->getValue() + 1, RHSC->getValue(),
Sanjay Patel85d79742016-08-31 19:49:56 +00001044 false, true);
Sanjay Patel519a87a2017-04-05 17:38:34 +00001045 break; // (X != 13 & X u< 15) -> no change
Chris Lattner0a8191e2010-01-05 07:50:36 +00001046 case ICmpInst::ICMP_SLT:
Sanjay Patel519a87a2017-04-05 17:38:34 +00001047 if (LHSC == SubOne(RHSC)) // (X != 13 & X s< 14) -> X < 13
Craig Topperbb4069e2017-07-07 23:16:26 +00001048 return Builder.CreateICmpSLT(LHS0, LHSC);
Sanjay Patel519a87a2017-04-05 17:38:34 +00001049 break; // (X != 13 & X s< 15) -> no change
Chris Lattner0a8191e2010-01-05 07:50:36 +00001050 case ICmpInst::ICMP_NE:
Sanjay Patel7cfe4162017-04-14 19:23:50 +00001051 // Potential folds for this case should already be handled.
1052 break;
Chris Lattner0a8191e2010-01-05 07:50:36 +00001053 }
1054 break;
Chris Lattner0a8191e2010-01-05 07:50:36 +00001055 case ICmpInst::ICMP_UGT:
Sanjay Patel519a87a2017-04-05 17:38:34 +00001056 switch (PredR) {
1057 default:
1058 llvm_unreachable("Unknown integer condition code!");
Chris Lattner0a8191e2010-01-05 07:50:36 +00001059 case ICmpInst::ICMP_NE:
Sanjay Patel519a87a2017-04-05 17:38:34 +00001060 if (RHSC == AddOne(LHSC)) // (X u> 13 & X != 14) -> X u> 14
Craig Topperbb4069e2017-07-07 23:16:26 +00001061 return Builder.CreateICmp(PredL, LHS0, RHSC);
Sanjay Patel519a87a2017-04-05 17:38:34 +00001062 break; // (X u> 13 & X != 15) -> no change
1063 case ICmpInst::ICMP_ULT: // (X u> 13 & X u< 15) -> (X-14) <u 1
Sanjay Patele4159d22017-04-10 19:38:36 +00001064 return insertRangeTest(LHS0, LHSC->getValue() + 1, RHSC->getValue(),
1065 false, true);
Chris Lattner0a8191e2010-01-05 07:50:36 +00001066 }
1067 break;
1068 case ICmpInst::ICMP_SGT:
Sanjay Patel519a87a2017-04-05 17:38:34 +00001069 switch (PredR) {
1070 default:
1071 llvm_unreachable("Unknown integer condition code!");
Chris Lattner0a8191e2010-01-05 07:50:36 +00001072 case ICmpInst::ICMP_NE:
Sanjay Patel519a87a2017-04-05 17:38:34 +00001073 if (RHSC == AddOne(LHSC)) // (X s> 13 & X != 14) -> X s> 14
Craig Topperbb4069e2017-07-07 23:16:26 +00001074 return Builder.CreateICmp(PredL, LHS0, RHSC);
Sanjay Patel519a87a2017-04-05 17:38:34 +00001075 break; // (X s> 13 & X != 15) -> no change
1076 case ICmpInst::ICMP_SLT: // (X s> 13 & X s< 15) -> (X-14) s< 1
Sanjay Patele4159d22017-04-10 19:38:36 +00001077 return insertRangeTest(LHS0, LHSC->getValue() + 1, RHSC->getValue(), true,
Sanjay Patel519a87a2017-04-05 17:38:34 +00001078 true);
Chris Lattner0a8191e2010-01-05 07:50:36 +00001079 }
1080 break;
1081 }
Craig Topper9d4171a2012-12-20 07:09:41 +00001082
Craig Topperf40110f2014-04-25 05:29:35 +00001083 return nullptr;
Chris Lattner0a8191e2010-01-05 07:50:36 +00001084}
1085
Sanjay Patel64fc5da2017-09-02 17:53:33 +00001086Value *InstCombiner::foldLogicOfFCmps(FCmpInst *LHS, FCmpInst *RHS, bool IsAnd) {
Sanjay Patel275bb5a2017-09-02 17:17:17 +00001087 Value *LHS0 = LHS->getOperand(0), *LHS1 = LHS->getOperand(1);
1088 Value *RHS0 = RHS->getOperand(0), *RHS1 = RHS->getOperand(1);
1089 FCmpInst::Predicate PredL = LHS->getPredicate(), PredR = RHS->getPredicate();
Tim Shenaec68b22016-06-29 20:10:17 +00001090
Sanjay Patel275bb5a2017-09-02 17:17:17 +00001091 if (LHS0 == RHS1 && RHS0 == LHS1) {
Tim Shenaec68b22016-06-29 20:10:17 +00001092 // Swap RHS operands to match LHS.
Sanjay Patel275bb5a2017-09-02 17:17:17 +00001093 PredR = FCmpInst::getSwappedPredicate(PredR);
1094 std::swap(RHS0, RHS1);
Tim Shenaec68b22016-06-29 20:10:17 +00001095 }
1096
1097 // Simplify (fcmp cc0 x, y) & (fcmp cc1 x, y).
1098 // Suppose the relation between x and y is R, where R is one of
1099 // U(1000), L(0100), G(0010) or E(0001), and CC0 and CC1 are the bitmasks for
1100 // testing the desired relations.
1101 //
1102 // Since (R & CC0) and (R & CC1) are either R or 0, we actually have this:
1103 // bool(R & CC0) && bool(R & CC1)
1104 // = bool((R & CC0) & (R & CC1))
1105 // = bool(R & (CC0 & CC1)) <= by re-association, commutation, and idempotency
Sanjay Patel4c52f762017-09-02 16:30:27 +00001106 //
1107 // Since (R & CC0) and (R & CC1) are either R or 0, we actually have this:
1108 // bool(R & CC0) || bool(R & CC1)
1109 // = bool((R & CC0) | (R & CC1))
1110 // = bool(R & (CC0 | CC1)) <= by reversed distribution (contribution? ;)
Sanjay Patel64fc5da2017-09-02 17:53:33 +00001111 if (LHS0 == RHS0 && LHS1 == RHS1) {
1112 unsigned FCmpCodeL = getFCmpCode(PredL);
1113 unsigned FCmpCodeR = getFCmpCode(PredR);
1114 unsigned NewPred = IsAnd ? FCmpCodeL & FCmpCodeR : FCmpCodeL | FCmpCodeR;
1115 return getFCmpValue(NewPred, LHS0, LHS1, Builder);
1116 }
Sanjay Patel4c52f762017-09-02 16:30:27 +00001117
Sanjay Patel64fc5da2017-09-02 17:53:33 +00001118 if ((PredL == FCmpInst::FCMP_ORD && PredR == FCmpInst::FCMP_ORD && IsAnd) ||
1119 (PredL == FCmpInst::FCMP_UNO && PredR == FCmpInst::FCMP_UNO && !IsAnd)) {
Sanjay Patel275bb5a2017-09-02 17:17:17 +00001120 if (LHS0->getType() != RHS0->getType())
1121 return nullptr;
1122
Sanjay Patel6840c5f2017-09-05 23:13:13 +00001123 // FCmp canonicalization ensures that (fcmp ord/uno X, X) and
Sanjay Patel93e64dd2018-03-25 21:16:33 +00001124 // (fcmp ord/uno X, C) will be transformed to (fcmp X, +0.0).
1125 if (match(LHS1, m_PosZeroFP()) && match(RHS1, m_PosZeroFP()))
Sanjay Patel6840c5f2017-09-05 23:13:13 +00001126 // Ignore the constants because they are obviously not NANs:
1127 // (fcmp ord x, 0.0) & (fcmp ord y, 0.0) -> (fcmp ord x, y)
1128 // (fcmp uno x, 0.0) | (fcmp uno y, 0.0) -> (fcmp uno x, y)
Sanjay Patel64fc5da2017-09-02 17:53:33 +00001129 return Builder.CreateFCmp(PredL, LHS0, RHS0);
Sanjay Patel4c52f762017-09-02 16:30:27 +00001130 }
1131
1132 return nullptr;
1133}
1134
Sanjay Patelb54e62f2015-09-08 20:14:13 +00001135/// Match De Morgan's Laws:
1136/// (~A & ~B) == (~(A | B))
1137/// (~A | ~B) == (~(A & B))
1138static Instruction *matchDeMorgansLaws(BinaryOperator &I,
Sanjay Patel7caaa792017-05-09 20:05:05 +00001139 InstCombiner::BuilderTy &Builder) {
Sanjay Patelb54e62f2015-09-08 20:14:13 +00001140 auto Opcode = I.getOpcode();
1141 assert((Opcode == Instruction::And || Opcode == Instruction::Or) &&
1142 "Trying to match De Morgan's Laws with something other than and/or");
1143
Sanjay Patel7caaa792017-05-09 20:05:05 +00001144 // Flip the logic operation.
1145 Opcode = (Opcode == Instruction::And) ? Instruction::Or : Instruction::And;
1146
1147 Value *A, *B;
1148 if (match(I.getOperand(0), m_OneUse(m_Not(m_Value(A)))) &&
1149 match(I.getOperand(1), m_OneUse(m_Not(m_Value(B)))) &&
1150 !IsFreeToInvert(A, A->hasOneUse()) &&
1151 !IsFreeToInvert(B, B->hasOneUse())) {
1152 Value *AndOr = Builder.CreateBinOp(Opcode, A, B, I.getName() + ".demorgan");
1153 return BinaryOperator::CreateNot(AndOr);
1154 }
Sanjay Patelb54e62f2015-09-08 20:14:13 +00001155
1156 return nullptr;
1157}
1158
Tobias Grosser8ef834c2016-07-19 09:06:08 +00001159bool InstCombiner::shouldOptimizeCast(CastInst *CI) {
1160 Value *CastSrc = CI->getOperand(0);
1161
1162 // Noop casts and casts of constants should be eliminated trivially.
1163 if (CI->getSrcTy() == CI->getDestTy() || isa<Constant>(CastSrc))
1164 return false;
1165
1166 // If this cast is paired with another cast that can be eliminated, we prefer
1167 // to have it eliminated.
1168 if (const auto *PrecedingCI = dyn_cast<CastInst>(CastSrc))
1169 if (isEliminableCastPair(PrecedingCI, CI))
1170 return false;
1171
Tobias Grosser8ef834c2016-07-19 09:06:08 +00001172 return true;
1173}
1174
Sanjay Patel60312bc42016-09-12 00:16:23 +00001175/// Fold {and,or,xor} (cast X), C.
1176static Instruction *foldLogicCastConstant(BinaryOperator &Logic, CastInst *Cast,
Craig Topperbb4069e2017-07-07 23:16:26 +00001177 InstCombiner::BuilderTy &Builder) {
Craig Topper5706c012017-08-09 06:17:48 +00001178 Constant *C = dyn_cast<Constant>(Logic.getOperand(1));
1179 if (!C)
Sanjay Patel60312bc42016-09-12 00:16:23 +00001180 return nullptr;
1181
1182 auto LogicOpc = Logic.getOpcode();
1183 Type *DestTy = Logic.getType();
1184 Type *SrcTy = Cast->getSrcTy();
1185
Craig Topperae9b87d2017-08-02 20:25:56 +00001186 // Move the logic operation ahead of a zext or sext if the constant is
1187 // unchanged in the smaller source type. Performing the logic in a smaller
1188 // type may provide more information to later folds, and the smaller logic
1189 // instruction may be cheaper (particularly in the case of vectors).
Sanjay Patel60312bc42016-09-12 00:16:23 +00001190 Value *X;
Sanjay Patel60312bc42016-09-12 00:16:23 +00001191 if (match(Cast, m_OneUse(m_ZExt(m_Value(X))))) {
1192 Constant *TruncC = ConstantExpr::getTrunc(C, SrcTy);
1193 Constant *ZextTruncC = ConstantExpr::getZExt(TruncC, DestTy);
1194 if (ZextTruncC == C) {
1195 // LogicOpc (zext X), C --> zext (LogicOpc X, C)
Craig Topperbb4069e2017-07-07 23:16:26 +00001196 Value *NewOp = Builder.CreateBinOp(LogicOpc, X, TruncC);
Sanjay Patel60312bc42016-09-12 00:16:23 +00001197 return new ZExtInst(NewOp, DestTy);
1198 }
1199 }
1200
Craig Topperae9b87d2017-08-02 20:25:56 +00001201 if (match(Cast, m_OneUse(m_SExt(m_Value(X))))) {
1202 Constant *TruncC = ConstantExpr::getTrunc(C, SrcTy);
1203 Constant *SextTruncC = ConstantExpr::getSExt(TruncC, DestTy);
1204 if (SextTruncC == C) {
1205 // LogicOpc (sext X), C --> sext (LogicOpc X, C)
1206 Value *NewOp = Builder.CreateBinOp(LogicOpc, X, TruncC);
1207 return new SExtInst(NewOp, DestTy);
1208 }
1209 }
1210
Sanjay Patel60312bc42016-09-12 00:16:23 +00001211 return nullptr;
1212}
1213
1214/// Fold {and,or,xor} (cast X), Y.
Sanjay Patel40e7ba02016-02-23 16:36:07 +00001215Instruction *InstCombiner::foldCastedBitwiseLogic(BinaryOperator &I) {
Sanjay Patel75b4ae22016-02-23 23:56:23 +00001216 auto LogicOpc = I.getOpcode();
Sanjay Patel1e6ca442016-11-22 22:54:36 +00001217 assert(I.isBitwiseLogicOp() && "Unexpected opcode for bitwise logic folding");
Sanjay Patel75b4ae22016-02-23 23:56:23 +00001218
Sanjay Patel40e7ba02016-02-23 16:36:07 +00001219 Value *Op0 = I.getOperand(0), *Op1 = I.getOperand(1);
Sanjay Patel713f25e2016-02-23 17:41:34 +00001220 CastInst *Cast0 = dyn_cast<CastInst>(Op0);
Sanjay Patel9bba7502016-03-03 19:19:04 +00001221 if (!Cast0)
Sanjay Patel7d0d8102016-02-23 16:59:21 +00001222 return nullptr;
Sanjay Patel40e7ba02016-02-23 16:36:07 +00001223
Sanjay Patel9bba7502016-03-03 19:19:04 +00001224 // This must be a cast from an integer or integer vector source type to allow
1225 // transformation of the logic operation to the source type.
1226 Type *DestTy = I.getType();
Sanjay Patel713f25e2016-02-23 17:41:34 +00001227 Type *SrcTy = Cast0->getSrcTy();
Sanjay Patel9bba7502016-03-03 19:19:04 +00001228 if (!SrcTy->isIntOrIntVectorTy())
1229 return nullptr;
1230
Sanjay Patel60312bc42016-09-12 00:16:23 +00001231 if (Instruction *Ret = foldLogicCastConstant(I, Cast0, Builder))
1232 return Ret;
Sanjay Patel0753c062016-07-21 00:24:18 +00001233
Sanjay Patel9bba7502016-03-03 19:19:04 +00001234 CastInst *Cast1 = dyn_cast<CastInst>(Op1);
1235 if (!Cast1)
1236 return nullptr;
1237
1238 // Both operands of the logic operation are casts. The casts must be of the
1239 // same type for reduction.
1240 auto CastOpcode = Cast0->getOpcode();
1241 if (CastOpcode != Cast1->getOpcode() || SrcTy != Cast1->getSrcTy())
Sanjay Patel713f25e2016-02-23 17:41:34 +00001242 return nullptr;
1243
1244 Value *Cast0Src = Cast0->getOperand(0);
1245 Value *Cast1Src = Cast1->getOperand(0);
Sanjay Patel713f25e2016-02-23 17:41:34 +00001246
Tobias Grosser8ef834c2016-07-19 09:06:08 +00001247 // fold logic(cast(A), cast(B)) -> cast(logic(A, B))
Tobias Grosser8757e382016-08-03 19:30:35 +00001248 if (shouldOptimizeCast(Cast0) && shouldOptimizeCast(Cast1)) {
Craig Topperbb4069e2017-07-07 23:16:26 +00001249 Value *NewOp = Builder.CreateBinOp(LogicOpc, Cast0Src, Cast1Src,
Sanjay Patel75b4ae22016-02-23 23:56:23 +00001250 I.getName());
Sanjay Patel713f25e2016-02-23 17:41:34 +00001251 return CastInst::Create(CastOpcode, NewOp, DestTy);
Sanjay Patel40e7ba02016-02-23 16:36:07 +00001252 }
Sanjay Patel713f25e2016-02-23 17:41:34 +00001253
Sanjay Pateldbbaca02016-02-24 17:00:34 +00001254 // For now, only 'and'/'or' have optimizations after this.
1255 if (LogicOpc == Instruction::Xor)
1256 return nullptr;
1257
Sanjay Patel75b4ae22016-02-23 23:56:23 +00001258 // If this is logic(cast(icmp), cast(icmp)), try to fold this even if the
Sanjay Patel713f25e2016-02-23 17:41:34 +00001259 // cast is otherwise not optimizable. This happens for vector sexts.
Sanjay Patel75b4ae22016-02-23 23:56:23 +00001260 ICmpInst *ICmp0 = dyn_cast<ICmpInst>(Cast0Src);
1261 ICmpInst *ICmp1 = dyn_cast<ICmpInst>(Cast1Src);
1262 if (ICmp0 && ICmp1) {
Craig Topperda6ea0d2017-06-16 05:10:37 +00001263 Value *Res = LogicOpc == Instruction::And ? foldAndOfICmps(ICmp0, ICmp1, I)
Craig Topperf2d3e6d2017-06-15 19:09:51 +00001264 : foldOrOfICmps(ICmp0, ICmp1, I);
Sanjay Patel75b4ae22016-02-23 23:56:23 +00001265 if (Res)
1266 return CastInst::Create(CastOpcode, Res, DestTy);
1267 return nullptr;
1268 }
Sanjay Patel713f25e2016-02-23 17:41:34 +00001269
Sanjay Patel75b4ae22016-02-23 23:56:23 +00001270 // If this is logic(cast(fcmp), cast(fcmp)), try to fold this even if the
Sanjay Patel713f25e2016-02-23 17:41:34 +00001271 // cast is otherwise not optimizable. This happens for vector sexts.
Sanjay Patel75b4ae22016-02-23 23:56:23 +00001272 FCmpInst *FCmp0 = dyn_cast<FCmpInst>(Cast0Src);
1273 FCmpInst *FCmp1 = dyn_cast<FCmpInst>(Cast1Src);
Sanjay Patel64fc5da2017-09-02 17:53:33 +00001274 if (FCmp0 && FCmp1)
1275 if (Value *R = foldLogicOfFCmps(FCmp0, FCmp1, LogicOpc == Instruction::And))
1276 return CastInst::Create(CastOpcode, R, DestTy);
Sanjay Patel713f25e2016-02-23 17:41:34 +00001277
Sanjay Patel40e7ba02016-02-23 16:36:07 +00001278 return nullptr;
1279}
1280
Sanjay Patele0c26e02017-04-23 22:00:02 +00001281static Instruction *foldAndToXor(BinaryOperator &I,
1282 InstCombiner::BuilderTy &Builder) {
1283 assert(I.getOpcode() == Instruction::And);
1284 Value *Op0 = I.getOperand(0);
1285 Value *Op1 = I.getOperand(1);
1286 Value *A, *B;
1287
1288 // Operand complexity canonicalization guarantees that the 'or' is Op0.
1289 // (A | B) & ~(A & B) --> A ^ B
1290 // (A | B) & ~(B & A) --> A ^ B
Roman Lebedev6959b8e2018-04-27 21:23:20 +00001291 if (match(&I, m_BinOp(m_Or(m_Value(A), m_Value(B)),
1292 m_Not(m_c_And(m_Deferred(A), m_Deferred(B))))))
Sanjay Patele0c26e02017-04-23 22:00:02 +00001293 return BinaryOperator::CreateXor(A, B);
1294
1295 // (A | ~B) & (~A | B) --> ~(A ^ B)
1296 // (A | ~B) & (B | ~A) --> ~(A ^ B)
1297 // (~B | A) & (~A | B) --> ~(A ^ B)
1298 // (~B | A) & (B | ~A) --> ~(A ^ B)
Craig Topper0de5e6a2017-06-22 16:12:02 +00001299 if (Op0->hasOneUse() || Op1->hasOneUse())
Roman Lebedev6959b8e2018-04-27 21:23:20 +00001300 if (match(&I, m_BinOp(m_c_Or(m_Value(A), m_Not(m_Value(B))),
1301 m_c_Or(m_Not(m_Deferred(A)), m_Deferred(B)))))
Craig Topper0de5e6a2017-06-22 16:12:02 +00001302 return BinaryOperator::CreateNot(Builder.CreateXor(A, B));
Sanjay Patele0c26e02017-04-23 22:00:02 +00001303
1304 return nullptr;
1305}
1306
1307static Instruction *foldOrToXor(BinaryOperator &I,
1308 InstCombiner::BuilderTy &Builder) {
1309 assert(I.getOpcode() == Instruction::Or);
1310 Value *Op0 = I.getOperand(0);
1311 Value *Op1 = I.getOperand(1);
1312 Value *A, *B;
1313
1314 // Operand complexity canonicalization guarantees that the 'and' is Op0.
1315 // (A & B) | ~(A | B) --> ~(A ^ B)
1316 // (A & B) | ~(B | A) --> ~(A ^ B)
Craig Topper0de5e6a2017-06-22 16:12:02 +00001317 if (Op0->hasOneUse() || Op1->hasOneUse())
1318 if (match(Op0, m_And(m_Value(A), m_Value(B))) &&
1319 match(Op1, m_Not(m_c_Or(m_Specific(A), m_Specific(B)))))
1320 return BinaryOperator::CreateNot(Builder.CreateXor(A, B));
Sanjay Patele0c26e02017-04-23 22:00:02 +00001321
1322 // (A & ~B) | (~A & B) --> A ^ B
1323 // (A & ~B) | (B & ~A) --> A ^ B
1324 // (~B & A) | (~A & B) --> A ^ B
1325 // (~B & A) | (B & ~A) --> A ^ B
1326 if (match(Op0, m_c_And(m_Value(A), m_Not(m_Value(B)))) &&
1327 match(Op1, m_c_And(m_Not(m_Specific(A)), m_Specific(B))))
1328 return BinaryOperator::CreateXor(A, B);
1329
1330 return nullptr;
1331}
1332
Sanjay Patel1d681122018-01-25 16:34:36 +00001333/// Return true if a constant shift amount is always less than the specified
1334/// bit-width. If not, the shift could create poison in the narrower type.
1335static bool canNarrowShiftAmt(Constant *C, unsigned BitWidth) {
1336 if (auto *ScalarC = dyn_cast<ConstantInt>(C))
1337 return ScalarC->getZExtValue() < BitWidth;
1338
1339 if (C->getType()->isVectorTy()) {
1340 // Check each element of a constant vector.
1341 unsigned NumElts = C->getType()->getVectorNumElements();
1342 for (unsigned i = 0; i != NumElts; ++i) {
1343 Constant *Elt = C->getAggregateElement(i);
1344 if (!Elt)
1345 return false;
1346 if (isa<UndefValue>(Elt))
1347 continue;
1348 auto *CI = dyn_cast<ConstantInt>(Elt);
1349 if (!CI || CI->getZExtValue() >= BitWidth)
1350 return false;
1351 }
1352 return true;
1353 }
1354
1355 // The constant is a constant expression or unknown.
1356 return false;
1357}
1358
1359/// Try to use narrower ops (sink zext ops) for an 'and' with binop operand and
1360/// a common zext operand: and (binop (zext X), C), (zext X).
1361Instruction *InstCombiner::narrowMaskedBinOp(BinaryOperator &And) {
1362 // This transform could also apply to {or, and, xor}, but there are better
1363 // folds for those cases, so we don't expect those patterns here. AShr is not
1364 // handled because it should always be transformed to LShr in this sequence.
1365 // The subtract transform is different because it has a constant on the left.
1366 // Add/mul commute the constant to RHS; sub with constant RHS becomes add.
1367 Value *Op0 = And.getOperand(0), *Op1 = And.getOperand(1);
1368 Constant *C;
1369 if (!match(Op0, m_OneUse(m_Add(m_Specific(Op1), m_Constant(C)))) &&
1370 !match(Op0, m_OneUse(m_Mul(m_Specific(Op1), m_Constant(C)))) &&
1371 !match(Op0, m_OneUse(m_LShr(m_Specific(Op1), m_Constant(C)))) &&
1372 !match(Op0, m_OneUse(m_Shl(m_Specific(Op1), m_Constant(C)))) &&
1373 !match(Op0, m_OneUse(m_Sub(m_Constant(C), m_Specific(Op1)))))
1374 return nullptr;
1375
1376 Value *X;
Craig Topperee99aa42018-03-12 18:46:05 +00001377 if (!match(Op1, m_ZExt(m_Value(X))) || Op1->hasNUsesOrMore(3))
Sanjay Patel1d681122018-01-25 16:34:36 +00001378 return nullptr;
1379
1380 Type *Ty = And.getType();
1381 if (!isa<VectorType>(Ty) && !shouldChangeType(Ty, X->getType()))
1382 return nullptr;
1383
1384 // If we're narrowing a shift, the shift amount must be safe (less than the
1385 // width) in the narrower type. If the shift amount is greater, instsimplify
1386 // usually handles that case, but we can't guarantee/assert it.
1387 Instruction::BinaryOps Opc = cast<BinaryOperator>(Op0)->getOpcode();
1388 if (Opc == Instruction::LShr || Opc == Instruction::Shl)
1389 if (!canNarrowShiftAmt(C, X->getType()->getScalarSizeInBits()))
1390 return nullptr;
1391
1392 // and (sub C, (zext X)), (zext X) --> zext (and (sub C', X), X)
1393 // and (binop (zext X), C), (zext X) --> zext (and (binop X, C'), X)
1394 Value *NewC = ConstantExpr::getTrunc(C, X->getType());
1395 Value *NewBO = Opc == Instruction::Sub ? Builder.CreateBinOp(Opc, NewC, X)
1396 : Builder.CreateBinOp(Opc, X, NewC);
1397 return new ZExtInst(Builder.CreateAnd(NewBO, X), Ty);
1398}
1399
Sanjay Patel2b9d4b42016-12-18 18:49:48 +00001400// FIXME: We use commutative matchers (m_c_*) for some, but not all, matches
1401// here. We should standardize that construct where it is needed or choose some
1402// other way to ensure that commutated variants of patterns are not missed.
Chris Lattner0a8191e2010-01-05 07:50:36 +00001403Instruction *InstCombiner::visitAnd(BinaryOperator &I) {
Duncan Sands641baf12010-11-13 15:10:37 +00001404 bool Changed = SimplifyAssociativeOrCommutative(I);
Chris Lattner0a8191e2010-01-05 07:50:36 +00001405 Value *Op0 = I.getOperand(0), *Op1 = I.getOperand(1);
Craig Toppera4205622017-06-09 03:21:29 +00001406 if (Value *V = SimplifyAndInst(Op0, Op1, SQ.getWithInstruction(&I)))
Sanjay Patel4b198802016-02-01 22:23:39 +00001407 return replaceInstUsesWith(I, V);
Chris Lattner0a8191e2010-01-05 07:50:36 +00001408
Sanjay Patelbbc6d602018-06-02 16:27:44 +00001409 if (Instruction *X = foldShuffledBinop(I))
1410 return X;
1411
Craig Topper9d4171a2012-12-20 07:09:41 +00001412 // See if we can simplify any instructions used by the instruction whose sole
Chris Lattner0a8191e2010-01-05 07:50:36 +00001413 // purpose is to compute bits we don't care about.
1414 if (SimplifyDemandedInstructionBits(I))
Craig Topper9d4171a2012-12-20 07:09:41 +00001415 return &I;
Chris Lattner0a8191e2010-01-05 07:50:36 +00001416
Sanjay Patele0c26e02017-04-23 22:00:02 +00001417 // Do this before using distributive laws to catch simple and/or/not patterns.
Craig Topperbb4069e2017-07-07 23:16:26 +00001418 if (Instruction *Xor = foldAndToXor(I, Builder))
Sanjay Patele0c26e02017-04-23 22:00:02 +00001419 return Xor;
1420
1421 // (A|B)&(A|C) -> A|(B&C) etc
1422 if (Value *V = SimplifyUsingDistributiveLaws(I))
1423 return replaceInstUsesWith(I, V);
1424
Craig Topper95e41422017-07-06 16:24:23 +00001425 if (Value *V = SimplifyBSwap(I, Builder))
Sanjay Patel4b198802016-02-01 22:23:39 +00001426 return replaceInstUsesWith(I, V);
Simon Pilgrimbe24ab32014-12-04 09:44:01 +00001427
Sanjay Pateldac0ab22017-07-31 21:01:53 +00001428 const APInt *C;
1429 if (match(Op1, m_APInt(C))) {
1430 Value *X, *Y;
1431 if (match(Op0, m_OneUse(m_LogicalShift(m_One(), m_Value(X)))) &&
1432 C->isOneValue()) {
1433 // (1 << X) & 1 --> zext(X == 0)
1434 // (1 >> X) & 1 --> zext(X == 0)
Sanjay Patel3437ee22017-07-15 17:26:01 +00001435 Value *IsZero = Builder.CreateICmpEQ(X, ConstantInt::get(I.getType(), 0));
1436 return new ZExtInst(IsZero, I.getType());
1437 }
Sanjay Pateldac0ab22017-07-31 21:01:53 +00001438
Craig Toppera1693a22017-08-06 23:11:49 +00001439 const APInt *XorC;
1440 if (match(Op0, m_OneUse(m_Xor(m_Value(X), m_APInt(XorC))))) {
1441 // (X ^ C1) & C2 --> (X & C2) ^ (C1&C2)
1442 Constant *NewC = ConstantInt::get(I.getType(), *C & *XorC);
1443 Value *And = Builder.CreateAnd(X, Op1);
1444 And->takeName(Op0);
1445 return BinaryOperator::CreateXor(And, NewC);
1446 }
1447
Craig Topper7091a742017-08-07 18:10:39 +00001448 const APInt *OrC;
1449 if (match(Op0, m_OneUse(m_Or(m_Value(X), m_APInt(OrC))))) {
1450 // (X | C1) & C2 --> (X & C2^(C1&C2)) | (C1&C2)
1451 // NOTE: This reduces the number of bits set in the & mask, which
1452 // can expose opportunities for store narrowing for scalars.
1453 // NOTE: SimplifyDemandedBits should have already removed bits from C1
1454 // that aren't set in C2. Meaning we can replace (C1&C2) with C1 in
1455 // above, but this feels safer.
1456 APInt Together = *C & *OrC;
1457 Value *And = Builder.CreateAnd(X, ConstantInt::get(I.getType(),
1458 Together ^ *C));
1459 And->takeName(Op0);
1460 return BinaryOperator::CreateOr(And, ConstantInt::get(I.getType(),
1461 Together));
1462 }
1463
Sanjay Pateldac0ab22017-07-31 21:01:53 +00001464 // If the mask is only needed on one incoming arm, push the 'and' op up.
1465 if (match(Op0, m_OneUse(m_Xor(m_Value(X), m_Value(Y)))) ||
1466 match(Op0, m_OneUse(m_Or(m_Value(X), m_Value(Y))))) {
1467 APInt NotAndMask(~(*C));
1468 BinaryOperator::BinaryOps BinOp = cast<BinaryOperator>(Op0)->getOpcode();
1469 if (MaskedValueIsZero(X, NotAndMask, 0, &I)) {
1470 // Not masking anything out for the LHS, move mask to RHS.
1471 // and ({x}or X, Y), C --> {x}or X, (and Y, C)
1472 Value *NewRHS = Builder.CreateAnd(Y, Op1, Y->getName() + ".masked");
1473 return BinaryOperator::Create(BinOp, X, NewRHS);
1474 }
1475 if (!isa<Constant>(Y) && MaskedValueIsZero(Y, NotAndMask, 0, &I)) {
1476 // Not masking anything out for the RHS, move mask to LHS.
1477 // and ({x}or X, Y), C --> {x}or (and X, C), Y
1478 Value *NewLHS = Builder.CreateAnd(X, Op1, X->getName() + ".masked");
1479 return BinaryOperator::Create(BinOp, NewLHS, Y);
1480 }
1481 }
Craig Toppera1693a22017-08-06 23:11:49 +00001482
Sanjay Patel3437ee22017-07-15 17:26:01 +00001483 }
Sanjay Patel55b9f882017-07-15 15:29:47 +00001484
Chris Lattner0a8191e2010-01-05 07:50:36 +00001485 if (ConstantInt *AndRHS = dyn_cast<ConstantInt>(Op1)) {
1486 const APInt &AndRHSMask = AndRHS->getValue();
Chris Lattner0a8191e2010-01-05 07:50:36 +00001487
1488 // Optimize a variety of ((val OP C1) & C2) combinations...
1489 if (BinaryOperator *Op0I = dyn_cast<BinaryOperator>(Op0)) {
David Majnemerde55c602017-01-17 18:08:06 +00001490 // ((C1 OP zext(X)) & C2) -> zext((C1-X) & C2) if C2 fits in the bitwidth
1491 // of X and OP behaves well when given trunc(C1) and X.
1492 switch (Op0I->getOpcode()) {
1493 default:
1494 break;
1495 case Instruction::Xor:
1496 case Instruction::Or:
1497 case Instruction::Mul:
1498 case Instruction::Add:
1499 case Instruction::Sub:
1500 Value *X;
1501 ConstantInt *C1;
Craig Topperb5194ee2017-04-12 05:49:28 +00001502 if (match(Op0I, m_c_BinOp(m_ZExt(m_Value(X)), m_ConstantInt(C1)))) {
David Majnemerde55c602017-01-17 18:08:06 +00001503 if (AndRHSMask.isIntN(X->getType()->getScalarSizeInBits())) {
1504 auto *TruncC1 = ConstantExpr::getTrunc(C1, X->getType());
1505 Value *BinOp;
Sanjay Pateldac0ab22017-07-31 21:01:53 +00001506 Value *Op0LHS = Op0I->getOperand(0);
David Majnemerde55c602017-01-17 18:08:06 +00001507 if (isa<ZExtInst>(Op0LHS))
Craig Topperbb4069e2017-07-07 23:16:26 +00001508 BinOp = Builder.CreateBinOp(Op0I->getOpcode(), X, TruncC1);
David Majnemerde55c602017-01-17 18:08:06 +00001509 else
Craig Topperbb4069e2017-07-07 23:16:26 +00001510 BinOp = Builder.CreateBinOp(Op0I->getOpcode(), TruncC1, X);
David Majnemerde55c602017-01-17 18:08:06 +00001511 auto *TruncC2 = ConstantExpr::getTrunc(AndRHS, X->getType());
Craig Topperbb4069e2017-07-07 23:16:26 +00001512 auto *And = Builder.CreateAnd(BinOp, TruncC2);
David Majnemerde55c602017-01-17 18:08:06 +00001513 return new ZExtInst(And, I.getType());
1514 }
1515 }
1516 }
1517
Chris Lattner0a8191e2010-01-05 07:50:36 +00001518 if (ConstantInt *Op0CI = dyn_cast<ConstantInt>(Op0I->getOperand(1)))
1519 if (Instruction *Res = OptAndOp(Op0I, Op0CI, AndRHS, I))
1520 return Res;
Chris Lattnerdcef03f2011-02-10 05:17:27 +00001521 }
Craig Topper9d4171a2012-12-20 07:09:41 +00001522
Chris Lattnerdcef03f2011-02-10 05:17:27 +00001523 // If this is an integer truncation, and if the source is an 'and' with
1524 // immediate, transform it. This frequently occurs for bitfield accesses.
1525 {
Craig Topperf40110f2014-04-25 05:29:35 +00001526 Value *X = nullptr; ConstantInt *YC = nullptr;
Chris Lattnerdcef03f2011-02-10 05:17:27 +00001527 if (match(Op0, m_Trunc(m_And(m_Value(X), m_ConstantInt(YC))))) {
1528 // Change: and (trunc (and X, YC) to T), C2
1529 // into : and (trunc X to T), trunc(YC) & C2
Craig Topper9d4171a2012-12-20 07:09:41 +00001530 // This will fold the two constants together, which may allow
Chris Lattnerdcef03f2011-02-10 05:17:27 +00001531 // other simplifications.
Craig Topperbb4069e2017-07-07 23:16:26 +00001532 Value *NewCast = Builder.CreateTrunc(X, I.getType(), "and.shrunk");
Chris Lattnerdcef03f2011-02-10 05:17:27 +00001533 Constant *C3 = ConstantExpr::getTrunc(YC, I.getType());
1534 C3 = ConstantExpr::getAnd(C3, AndRHS);
1535 return BinaryOperator::CreateAnd(NewCast, C3);
Chris Lattner0a8191e2010-01-05 07:50:36 +00001536 }
1537 }
Craig Topper86173602017-04-04 20:26:25 +00001538 }
Chris Lattner0a8191e2010-01-05 07:50:36 +00001539
Sanjay Patel1d681122018-01-25 16:34:36 +00001540 if (Instruction *Z = narrowMaskedBinOp(I))
1541 return Z;
1542
Sanjay Patel8fdd87f2018-02-28 16:36:24 +00001543 if (Instruction *FoldedLogic = foldBinOpIntoSelectOrPhi(I))
1544 return FoldedLogic;
Chris Lattner0a8191e2010-01-05 07:50:36 +00001545
Craig Topperbb4069e2017-07-07 23:16:26 +00001546 if (Instruction *DeMorgan = matchDeMorgansLaws(I, Builder))
Sanjay Patelb54e62f2015-09-08 20:14:13 +00001547 return DeMorgan;
Craig Topper9d4171a2012-12-20 07:09:41 +00001548
Chris Lattner0a8191e2010-01-05 07:50:36 +00001549 {
Sanjay Patele0c26e02017-04-23 22:00:02 +00001550 Value *A = nullptr, *B = nullptr, *C = nullptr;
Eli Friedman61d7c8a2011-09-19 21:58:15 +00001551 // A&(A^B) => A & ~B
1552 {
1553 Value *tmpOp0 = Op0;
1554 Value *tmpOp1 = Op1;
Sanjay Patel7b7eec12016-01-18 18:36:38 +00001555 if (match(Op0, m_OneUse(m_Xor(m_Value(A), m_Value(B))))) {
Eli Friedman61d7c8a2011-09-19 21:58:15 +00001556 if (A == Op1 || B == Op1 ) {
1557 tmpOp1 = Op0;
1558 tmpOp0 = Op1;
1559 // Simplify below
1560 }
Chris Lattner0a8191e2010-01-05 07:50:36 +00001561 }
Chris Lattner0a8191e2010-01-05 07:50:36 +00001562
Sanjay Patel7b7eec12016-01-18 18:36:38 +00001563 if (match(tmpOp1, m_OneUse(m_Xor(m_Value(A), m_Value(B))))) {
Eli Friedman61d7c8a2011-09-19 21:58:15 +00001564 if (B == tmpOp0) {
1565 std::swap(A, B);
1566 }
Sanjay Pateld09b44a2016-01-18 17:50:23 +00001567 // Notice that the pattern (A&(~B)) is actually (A&(-1^B)), so if
Eli Friedman61d7c8a2011-09-19 21:58:15 +00001568 // A is originally -1 (or a vector of -1 and undefs), then we enter
1569 // an endless loop. By checking that A is non-constant we ensure that
1570 // we will never get to the loop.
1571 if (A == tmpOp0 && !isa<Constant>(A)) // A&(A^B) -> A & ~B
Craig Topperbb4069e2017-07-07 23:16:26 +00001572 return BinaryOperator::CreateAnd(A, Builder.CreateNot(B));
Chris Lattner0a8191e2010-01-05 07:50:36 +00001573 }
Chris Lattner0a8191e2010-01-05 07:50:36 +00001574 }
1575
David Majnemer42af3602014-07-30 21:26:37 +00001576 // (A ^ B) & ((B ^ C) ^ A) -> (A ^ B) & ~C
1577 if (match(Op0, m_Xor(m_Value(A), m_Value(B))))
1578 if (match(Op1, m_Xor(m_Xor(m_Specific(B), m_Value(C)), m_Specific(A))))
Craig Toppera7529b62017-06-19 16:23:49 +00001579 if (Op1->hasOneUse() || IsFreeToInvert(C, C->hasOneUse()))
Craig Topperbb4069e2017-07-07 23:16:26 +00001580 return BinaryOperator::CreateAnd(Op0, Builder.CreateNot(C));
David Majnemer42af3602014-07-30 21:26:37 +00001581
1582 // ((A ^ C) ^ B) & (B ^ A) -> (B ^ A) & ~C
1583 if (match(Op0, m_Xor(m_Xor(m_Value(A), m_Value(C)), m_Value(B))))
1584 if (match(Op1, m_Xor(m_Specific(B), m_Specific(A))))
Craig Toppera7529b62017-06-19 16:23:49 +00001585 if (Op0->hasOneUse() || IsFreeToInvert(C, C->hasOneUse()))
Craig Topperbb4069e2017-07-07 23:16:26 +00001586 return BinaryOperator::CreateAnd(Op1, Builder.CreateNot(C));
Suyog Sarda1c6c2f62014-08-01 04:59:26 +00001587
1588 // (A | B) & ((~A) ^ B) -> (A & B)
Craig Topperba011432017-04-25 15:19:04 +00001589 // (A | B) & (B ^ (~A)) -> (A & B)
1590 // (B | A) & ((~A) ^ B) -> (A & B)
1591 // (B | A) & (B ^ (~A)) -> (A & B)
1592 if (match(Op1, m_c_Xor(m_Not(m_Value(A)), m_Value(B))) &&
1593 match(Op0, m_c_Or(m_Specific(A), m_Specific(B))))
Suyog Sarda1c6c2f62014-08-01 04:59:26 +00001594 return BinaryOperator::CreateAnd(A, B);
1595
1596 // ((~A) ^ B) & (A | B) -> (A & B)
Sanjay Patel2b9d4b42016-12-18 18:49:48 +00001597 // ((~A) ^ B) & (B | A) -> (A & B)
Craig Topperba011432017-04-25 15:19:04 +00001598 // (B ^ (~A)) & (A | B) -> (A & B)
1599 // (B ^ (~A)) & (B | A) -> (A & B)
1600 if (match(Op0, m_c_Xor(m_Not(m_Value(A)), m_Value(B))) &&
Sanjay Patel2b9d4b42016-12-18 18:49:48 +00001601 match(Op1, m_c_Or(m_Specific(A), m_Specific(B))))
Suyog Sarda1c6c2f62014-08-01 04:59:26 +00001602 return BinaryOperator::CreateAnd(A, B);
Chris Lattner0a8191e2010-01-05 07:50:36 +00001603 }
Craig Topper9d4171a2012-12-20 07:09:41 +00001604
David Majnemer5e96f1b2014-08-30 06:18:20 +00001605 {
1606 ICmpInst *LHS = dyn_cast<ICmpInst>(Op0);
1607 ICmpInst *RHS = dyn_cast<ICmpInst>(Op1);
1608 if (LHS && RHS)
Craig Topperda6ea0d2017-06-16 05:10:37 +00001609 if (Value *Res = foldAndOfICmps(LHS, RHS, I))
Sanjay Patel4b198802016-02-01 22:23:39 +00001610 return replaceInstUsesWith(I, Res);
Craig Topper9d4171a2012-12-20 07:09:41 +00001611
David Majnemer5e96f1b2014-08-30 06:18:20 +00001612 // TODO: Make this recursive; it's a little tricky because an arbitrary
1613 // number of 'and' instructions might have to be created.
1614 Value *X, *Y;
1615 if (LHS && match(Op1, m_OneUse(m_And(m_Value(X), m_Value(Y))))) {
1616 if (auto *Cmp = dyn_cast<ICmpInst>(X))
Craig Topperda6ea0d2017-06-16 05:10:37 +00001617 if (Value *Res = foldAndOfICmps(LHS, Cmp, I))
Craig Topperbb4069e2017-07-07 23:16:26 +00001618 return replaceInstUsesWith(I, Builder.CreateAnd(Res, Y));
David Majnemer5e96f1b2014-08-30 06:18:20 +00001619 if (auto *Cmp = dyn_cast<ICmpInst>(Y))
Craig Topperda6ea0d2017-06-16 05:10:37 +00001620 if (Value *Res = foldAndOfICmps(LHS, Cmp, I))
Craig Topperbb4069e2017-07-07 23:16:26 +00001621 return replaceInstUsesWith(I, Builder.CreateAnd(Res, X));
David Majnemer5e96f1b2014-08-30 06:18:20 +00001622 }
1623 if (RHS && match(Op0, m_OneUse(m_And(m_Value(X), m_Value(Y))))) {
1624 if (auto *Cmp = dyn_cast<ICmpInst>(X))
Craig Topperda6ea0d2017-06-16 05:10:37 +00001625 if (Value *Res = foldAndOfICmps(Cmp, RHS, I))
Craig Topperbb4069e2017-07-07 23:16:26 +00001626 return replaceInstUsesWith(I, Builder.CreateAnd(Res, Y));
David Majnemer5e96f1b2014-08-30 06:18:20 +00001627 if (auto *Cmp = dyn_cast<ICmpInst>(Y))
Craig Topperda6ea0d2017-06-16 05:10:37 +00001628 if (Value *Res = foldAndOfICmps(Cmp, RHS, I))
Craig Topperbb4069e2017-07-07 23:16:26 +00001629 return replaceInstUsesWith(I, Builder.CreateAnd(Res, X));
David Majnemer5e96f1b2014-08-30 06:18:20 +00001630 }
1631 }
1632
Chris Lattner4e8137d2010-02-11 06:26:33 +00001633 if (FCmpInst *LHS = dyn_cast<FCmpInst>(I.getOperand(0)))
1634 if (FCmpInst *RHS = dyn_cast<FCmpInst>(I.getOperand(1)))
Sanjay Patel64fc5da2017-09-02 17:53:33 +00001635 if (Value *Res = foldLogicOfFCmps(LHS, RHS, true))
Sanjay Patel4b198802016-02-01 22:23:39 +00001636 return replaceInstUsesWith(I, Res);
Craig Topper9d4171a2012-12-20 07:09:41 +00001637
Sanjay Patel40e7ba02016-02-23 16:36:07 +00001638 if (Instruction *CastedAnd = foldCastedBitwiseLogic(I))
1639 return CastedAnd;
Craig Topper9d4171a2012-12-20 07:09:41 +00001640
Craig Topper760ff6e2017-08-04 16:07:20 +00001641 // and(sext(A), B) / and(B, sext(A)) --> A ? B : 0, where A is i1 or <N x i1>.
1642 Value *A;
1643 if (match(Op0, m_OneUse(m_SExt(m_Value(A)))) &&
1644 A->getType()->isIntOrIntVectorTy(1))
1645 return SelectInst::Create(A, Op1, Constant::getNullValue(I.getType()));
1646 if (match(Op1, m_OneUse(m_SExt(m_Value(A)))) &&
1647 A->getType()->isIntOrIntVectorTy(1))
1648 return SelectInst::Create(A, Op0, Constant::getNullValue(I.getType()));
Nadav Rotem513bd8a2013-01-30 06:35:22 +00001649
Craig Topperf40110f2014-04-25 05:29:35 +00001650 return Changed ? &I : nullptr;
Chris Lattner0a8191e2010-01-05 07:50:36 +00001651}
1652
Chad Rosiera00df492016-05-25 16:22:14 +00001653/// Given an OR instruction, check to see if this is a bswap idiom. If so,
1654/// insert the new intrinsic and return it.
1655Instruction *InstCombiner::MatchBSwap(BinaryOperator &I) {
Chad Rosiere5819e22016-05-26 14:58:51 +00001656 Value *Op0 = I.getOperand(0), *Op1 = I.getOperand(1);
1657
1658 // Look through zero extends.
1659 if (Instruction *Ext = dyn_cast<ZExtInst>(Op0))
1660 Op0 = Ext->getOperand(0);
1661
1662 if (Instruction *Ext = dyn_cast<ZExtInst>(Op1))
1663 Op1 = Ext->getOperand(0);
1664
1665 // (A | B) | C and A | (B | C) -> bswap if possible.
1666 bool OrOfOrs = match(Op0, m_Or(m_Value(), m_Value())) ||
1667 match(Op1, m_Or(m_Value(), m_Value()));
1668
1669 // (A >> B) | (C << D) and (A << B) | (B >> C) -> bswap if possible.
1670 bool OrOfShifts = match(Op0, m_LogicalShift(m_Value(), m_Value())) &&
1671 match(Op1, m_LogicalShift(m_Value(), m_Value()));
1672
1673 // (A & B) | (C & D) -> bswap if possible.
1674 bool OrOfAnds = match(Op0, m_And(m_Value(), m_Value())) &&
1675 match(Op1, m_And(m_Value(), m_Value()));
1676
Omer Paparo Bivas82ef8e12018-05-01 12:25:46 +00001677 // (A << B) | (C & D) -> bswap if possible.
1678 // The bigger pattern here is ((A & C1) << C2) | ((B >> C2) & C1), which is a
1679 // part of the bswap idiom for specific values of C1, C2 (e.g. C1 = 16711935,
1680 // C2 = 8 for i32).
1681 // This pattern can occur when the operands of the 'or' are not canonicalized
1682 // for some reason (not having only one use, for example).
1683 bool OrOfAndAndSh = (match(Op0, m_LogicalShift(m_Value(), m_Value())) &&
1684 match(Op1, m_And(m_Value(), m_Value()))) ||
1685 (match(Op0, m_And(m_Value(), m_Value())) &&
1686 match(Op1, m_LogicalShift(m_Value(), m_Value())));
1687
1688 if (!OrOfOrs && !OrOfShifts && !OrOfAnds && !OrOfAndAndSh)
Chad Rosiere5819e22016-05-26 14:58:51 +00001689 return nullptr;
1690
James Molloyf01488e2016-01-15 09:20:19 +00001691 SmallVector<Instruction*, 4> Insts;
Chad Rosiera00df492016-05-25 16:22:14 +00001692 if (!recognizeBSwapOrBitReverseIdiom(&I, true, false, Insts))
Craig Topperf40110f2014-04-25 05:29:35 +00001693 return nullptr;
James Molloyf01488e2016-01-15 09:20:19 +00001694 Instruction *LastInst = Insts.pop_back_val();
1695 LastInst->removeFromParent();
Craig Topper9d4171a2012-12-20 07:09:41 +00001696
James Molloyf01488e2016-01-15 09:20:19 +00001697 for (auto *Inst : Insts)
1698 Worklist.Add(Inst);
1699 return LastInst;
Chris Lattner0a8191e2010-01-05 07:50:36 +00001700}
1701
Sanjay Patelc00e48a2016-07-13 18:07:02 +00001702/// If all elements of two constant vectors are 0/-1 and inverses, return true.
1703static bool areInverseVectorBitmasks(Constant *C1, Constant *C2) {
1704 unsigned NumElts = C1->getType()->getVectorNumElements();
1705 for (unsigned i = 0; i != NumElts; ++i) {
1706 Constant *EltC1 = C1->getAggregateElement(i);
1707 Constant *EltC2 = C2->getAggregateElement(i);
1708 if (!EltC1 || !EltC2)
1709 return false;
1710
1711 // One element must be all ones, and the other must be all zeros.
Sanjay Patelc00e48a2016-07-13 18:07:02 +00001712 if (!((match(EltC1, m_Zero()) && match(EltC2, m_AllOnes())) ||
1713 (match(EltC2, m_Zero()) && match(EltC1, m_AllOnes()))))
1714 return false;
1715 }
1716 return true;
1717}
1718
Sanjay Patel7ad98ba2016-06-30 14:18:18 +00001719/// We have an expression of the form (A & C) | (B & D). If A is a scalar or
1720/// vector composed of all-zeros or all-ones values and is the bitwise 'not' of
1721/// B, it can be used as the condition operand of a select instruction.
Sanjay Patelc00e48a2016-07-13 18:07:02 +00001722static Value *getSelectCondition(Value *A, Value *B,
1723 InstCombiner::BuilderTy &Builder) {
Sanjay Patel7ad98ba2016-06-30 14:18:18 +00001724 // If these are scalars or vectors of i1, A can be used directly.
1725 Type *Ty = A->getType();
Craig Topperfde47232017-07-09 07:04:03 +00001726 if (match(A, m_Not(m_Specific(B))) && Ty->isIntOrIntVectorTy(1))
Sanjay Patel7ad98ba2016-06-30 14:18:18 +00001727 return A;
1728
1729 // If A and B are sign-extended, look through the sexts to find the booleans.
1730 Value *Cond;
Sanjay Pateld1e81192017-06-22 15:46:54 +00001731 Value *NotB;
Sanjay Patel7ad98ba2016-06-30 14:18:18 +00001732 if (match(A, m_SExt(m_Value(Cond))) &&
Craig Topperfde47232017-07-09 07:04:03 +00001733 Cond->getType()->isIntOrIntVectorTy(1) &&
Sanjay Pateld1e81192017-06-22 15:46:54 +00001734 match(B, m_OneUse(m_Not(m_Value(NotB))))) {
1735 NotB = peekThroughBitcast(NotB, true);
1736 if (match(NotB, m_SExt(m_Specific(Cond))))
1737 return Cond;
1738 }
Sanjay Patel7ad98ba2016-06-30 14:18:18 +00001739
Sanjay Patelc00e48a2016-07-13 18:07:02 +00001740 // All scalar (and most vector) possibilities should be handled now.
1741 // Try more matches that only apply to non-splat constant vectors.
1742 if (!Ty->isVectorTy())
1743 return nullptr;
Sanjay Patel7ad98ba2016-06-30 14:18:18 +00001744
Sanjay Patelc00e48a2016-07-13 18:07:02 +00001745 // If both operands are constants, see if the constants are inverse bitmasks.
1746 Constant *AC, *BC;
1747 if (match(A, m_Constant(AC)) && match(B, m_Constant(BC)) &&
Craig Topper57b4d862017-08-10 17:48:14 +00001748 areInverseVectorBitmasks(AC, BC)) {
1749 return Builder.CreateZExtOrTrunc(AC, CmpInst::makeCmpResultType(Ty));
1750 }
Sanjay Patelc00e48a2016-07-13 18:07:02 +00001751
1752 // If both operands are xor'd with constants using the same sexted boolean
1753 // operand, see if the constants are inverse bitmasks.
1754 if (match(A, (m_Xor(m_SExt(m_Value(Cond)), m_Constant(AC)))) &&
1755 match(B, (m_Xor(m_SExt(m_Specific(Cond)), m_Constant(BC)))) &&
Craig Topperfde47232017-07-09 07:04:03 +00001756 Cond->getType()->isIntOrIntVectorTy(1) &&
Sanjay Patelc00e48a2016-07-13 18:07:02 +00001757 areInverseVectorBitmasks(AC, BC)) {
1758 AC = ConstantExpr::getTrunc(AC, CmpInst::makeCmpResultType(Ty));
1759 return Builder.CreateXor(Cond, AC);
1760 }
Sanjay Patel7ad98ba2016-06-30 14:18:18 +00001761 return nullptr;
1762}
1763
1764/// We have an expression of the form (A & C) | (B & D). Try to simplify this
1765/// to "A' ? C : D", where A' is a boolean or vector of booleans.
Sanjay Patel4e8ebce2016-06-24 18:55:27 +00001766static Value *matchSelectFromAndOr(Value *A, Value *C, Value *B, Value *D,
Sanjay Patel7ad98ba2016-06-30 14:18:18 +00001767 InstCombiner::BuilderTy &Builder) {
Sanjay Patel4e8ebce2016-06-24 18:55:27 +00001768 // The potential condition of the select may be bitcasted. In that case, look
1769 // through its bitcast and the corresponding bitcast of the 'not' condition.
1770 Type *OrigType = A->getType();
Sanjay Patele800df8e2017-06-22 15:28:01 +00001771 A = peekThroughBitcast(A, true);
1772 B = peekThroughBitcast(B, true);
Sanjay Patel6cf18af2016-06-03 14:42:07 +00001773
Sanjay Patelc00e48a2016-07-13 18:07:02 +00001774 if (Value *Cond = getSelectCondition(A, B, Builder)) {
Sanjay Patel6cf18af2016-06-03 14:42:07 +00001775 // ((bc Cond) & C) | ((bc ~Cond) & D) --> bc (select Cond, (bc C), (bc D))
Sanjay Patel4e8ebce2016-06-24 18:55:27 +00001776 // The bitcasts will either all exist or all not exist. The builder will
1777 // not create unnecessary casts if the types already match.
1778 Value *BitcastC = Builder.CreateBitCast(C, A->getType());
1779 Value *BitcastD = Builder.CreateBitCast(D, A->getType());
1780 Value *Select = Builder.CreateSelect(Cond, BitcastC, BitcastD);
1781 return Builder.CreateBitCast(Select, OrigType);
Sanjay Patel6cf18af2016-06-03 14:42:07 +00001782 }
Sanjay Patel5c0bc022016-06-02 18:03:05 +00001783
Craig Topperf40110f2014-04-25 05:29:35 +00001784 return nullptr;
Chris Lattner0a8191e2010-01-05 07:50:36 +00001785}
1786
Sanjay Patel18549272015-09-08 18:24:36 +00001787/// Fold (icmp)|(icmp) if possible.
Sanjay Patel5e456b92017-05-18 20:53:16 +00001788Value *InstCombiner::foldOrOfICmps(ICmpInst *LHS, ICmpInst *RHS,
Craig Topperf2d3e6d2017-06-15 19:09:51 +00001789 Instruction &CxtI) {
Nadav Rotem0ed2fdb2013-11-12 22:38:59 +00001790 // Fold (iszero(A & K1) | iszero(A & K2)) -> (A & (K1 | K2)) != (K1 | K2)
1791 // if K1 and K2 are a one-bit mask.
Craig Topperda6ea0d2017-06-16 05:10:37 +00001792 if (Value *V = foldAndOrOfICmpsOfAndWithPow2(LHS, RHS, false, CxtI))
1793 return V;
1794
1795 ICmpInst::Predicate PredL = LHS->getPredicate(), PredR = RHS->getPredicate();
1796
Sanjay Patel519a87a2017-04-05 17:38:34 +00001797 ConstantInt *LHSC = dyn_cast<ConstantInt>(LHS->getOperand(1));
1798 ConstantInt *RHSC = dyn_cast<ConstantInt>(RHS->getOperand(1));
Nadav Rotem0ed2fdb2013-11-12 22:38:59 +00001799
Yi Jiang1a4e73d2014-08-20 22:55:40 +00001800 // Fold (icmp ult/ule (A + C1), C3) | (icmp ult/ule (A + C2), C3)
1801 // --> (icmp ult/ule ((A & ~(C1 ^ C2)) + max(C1, C2)), C3)
1802 // The original condition actually refers to the following two ranges:
1803 // [MAX_UINT-C1+1, MAX_UINT-C1+1+C3] and [MAX_UINT-C2+1, MAX_UINT-C2+1+C3]
1804 // We can fold these two ranges if:
1805 // 1) C1 and C2 is unsigned greater than C3.
1806 // 2) The two ranges are separated.
1807 // 3) C1 ^ C2 is one-bit mask.
1808 // 4) LowRange1 ^ LowRange2 and HighRange1 ^ HighRange2 are one-bit mask.
1809 // This implies all values in the two ranges differ by exactly one bit.
1810
Sanjay Patel519a87a2017-04-05 17:38:34 +00001811 if ((PredL == ICmpInst::ICMP_ULT || PredL == ICmpInst::ICMP_ULE) &&
1812 PredL == PredR && LHSC && RHSC && LHS->hasOneUse() && RHS->hasOneUse() &&
1813 LHSC->getType() == RHSC->getType() &&
1814 LHSC->getValue() == (RHSC->getValue())) {
Yi Jiang1a4e73d2014-08-20 22:55:40 +00001815
1816 Value *LAdd = LHS->getOperand(0);
1817 Value *RAdd = RHS->getOperand(0);
1818
1819 Value *LAddOpnd, *RAddOpnd;
Sanjay Patel519a87a2017-04-05 17:38:34 +00001820 ConstantInt *LAddC, *RAddC;
1821 if (match(LAdd, m_Add(m_Value(LAddOpnd), m_ConstantInt(LAddC))) &&
1822 match(RAdd, m_Add(m_Value(RAddOpnd), m_ConstantInt(RAddC))) &&
1823 LAddC->getValue().ugt(LHSC->getValue()) &&
1824 RAddC->getValue().ugt(LHSC->getValue())) {
Yi Jiang1a4e73d2014-08-20 22:55:40 +00001825
Sanjay Patel519a87a2017-04-05 17:38:34 +00001826 APInt DiffC = LAddC->getValue() ^ RAddC->getValue();
1827 if (LAddOpnd == RAddOpnd && DiffC.isPowerOf2()) {
1828 ConstantInt *MaxAddC = nullptr;
1829 if (LAddC->getValue().ult(RAddC->getValue()))
1830 MaxAddC = RAddC;
Yi Jiang1a4e73d2014-08-20 22:55:40 +00001831 else
Sanjay Patel519a87a2017-04-05 17:38:34 +00001832 MaxAddC = LAddC;
Yi Jiang1a4e73d2014-08-20 22:55:40 +00001833
Sanjay Patel519a87a2017-04-05 17:38:34 +00001834 APInt RRangeLow = -RAddC->getValue();
1835 APInt RRangeHigh = RRangeLow + LHSC->getValue();
1836 APInt LRangeLow = -LAddC->getValue();
1837 APInt LRangeHigh = LRangeLow + LHSC->getValue();
Yi Jiang1a4e73d2014-08-20 22:55:40 +00001838 APInt LowRangeDiff = RRangeLow ^ LRangeLow;
1839 APInt HighRangeDiff = RRangeHigh ^ LRangeHigh;
1840 APInt RangeDiff = LRangeLow.sgt(RRangeLow) ? LRangeLow - RRangeLow
1841 : RRangeLow - LRangeLow;
1842
1843 if (LowRangeDiff.isPowerOf2() && LowRangeDiff == HighRangeDiff &&
Sanjay Patel519a87a2017-04-05 17:38:34 +00001844 RangeDiff.ugt(LHSC->getValue())) {
1845 Value *MaskC = ConstantInt::get(LAddC->getType(), ~DiffC);
Yi Jiang1a4e73d2014-08-20 22:55:40 +00001846
Craig Topperbb4069e2017-07-07 23:16:26 +00001847 Value *NewAnd = Builder.CreateAnd(LAddOpnd, MaskC);
1848 Value *NewAdd = Builder.CreateAdd(NewAnd, MaxAddC);
1849 return Builder.CreateICmp(LHS->getPredicate(), NewAdd, LHSC);
Yi Jiang1a4e73d2014-08-20 22:55:40 +00001850 }
1851 }
1852 }
1853 }
1854
Chris Lattner0a8191e2010-01-05 07:50:36 +00001855 // (icmp1 A, B) | (icmp2 A, B) --> (icmp3 A, B)
Sanjay Patel519a87a2017-04-05 17:38:34 +00001856 if (PredicatesFoldable(PredL, PredR)) {
Chris Lattner0a8191e2010-01-05 07:50:36 +00001857 if (LHS->getOperand(0) == RHS->getOperand(1) &&
1858 LHS->getOperand(1) == RHS->getOperand(0))
1859 LHS->swapOperands();
1860 if (LHS->getOperand(0) == RHS->getOperand(0) &&
1861 LHS->getOperand(1) == RHS->getOperand(1)) {
1862 Value *Op0 = LHS->getOperand(0), *Op1 = LHS->getOperand(1);
1863 unsigned Code = getICmpCode(LHS) | getICmpCode(RHS);
1864 bool isSigned = LHS->isSigned() || RHS->isSigned();
Pete Cooperebf98c12011-12-17 01:20:32 +00001865 return getNewICmpValue(isSigned, Code, Op0, Op1, Builder);
Chris Lattner0a8191e2010-01-05 07:50:36 +00001866 }
1867 }
Benjamin Kramer2bca3a62010-12-20 16:21:59 +00001868
1869 // handle (roughly):
1870 // (icmp ne (A & B), C) | (icmp ne (A & D), E)
Tim Northoverc0756c42013-09-04 11:57:13 +00001871 if (Value *V = foldLogOpOfMaskedICmps(LHS, RHS, false, Builder))
Benjamin Kramer2bca3a62010-12-20 16:21:59 +00001872 return V;
Owen Anderson3fe002d2010-09-08 22:16:17 +00001873
Sanjay Patele4159d22017-04-10 19:38:36 +00001874 Value *LHS0 = LHS->getOperand(0), *RHS0 = RHS->getOperand(0);
David Majnemerc2a990b2013-07-05 00:31:17 +00001875 if (LHS->hasOneUse() || RHS->hasOneUse()) {
1876 // (icmp eq B, 0) | (icmp ult A, B) -> (icmp ule A, B-1)
1877 // (icmp eq B, 0) | (icmp ugt B, A) -> (icmp ule A, B-1)
Craig Topperf40110f2014-04-25 05:29:35 +00001878 Value *A = nullptr, *B = nullptr;
Sanjay Patel519a87a2017-04-05 17:38:34 +00001879 if (PredL == ICmpInst::ICMP_EQ && LHSC && LHSC->isZero()) {
Sanjay Patele4159d22017-04-10 19:38:36 +00001880 B = LHS0;
1881 if (PredR == ICmpInst::ICMP_ULT && LHS0 == RHS->getOperand(1))
1882 A = RHS0;
1883 else if (PredR == ICmpInst::ICMP_UGT && LHS0 == RHS0)
David Majnemerc2a990b2013-07-05 00:31:17 +00001884 A = RHS->getOperand(1);
1885 }
1886 // (icmp ult A, B) | (icmp eq B, 0) -> (icmp ule A, B-1)
1887 // (icmp ugt B, A) | (icmp eq B, 0) -> (icmp ule A, B-1)
Sanjay Patel519a87a2017-04-05 17:38:34 +00001888 else if (PredR == ICmpInst::ICMP_EQ && RHSC && RHSC->isZero()) {
Sanjay Patele4159d22017-04-10 19:38:36 +00001889 B = RHS0;
1890 if (PredL == ICmpInst::ICMP_ULT && RHS0 == LHS->getOperand(1))
1891 A = LHS0;
1892 else if (PredL == ICmpInst::ICMP_UGT && LHS0 == RHS0)
David Majnemerc2a990b2013-07-05 00:31:17 +00001893 A = LHS->getOperand(1);
1894 }
1895 if (A && B)
Craig Topperbb4069e2017-07-07 23:16:26 +00001896 return Builder.CreateICmp(
David Majnemerc2a990b2013-07-05 00:31:17 +00001897 ICmpInst::ICMP_UGE,
Craig Topperbb4069e2017-07-07 23:16:26 +00001898 Builder.CreateAdd(B, ConstantInt::getSigned(B->getType(), -1)), A);
David Majnemerc2a990b2013-07-05 00:31:17 +00001899 }
1900
Erik Ecksteind1817522014-12-03 10:39:15 +00001901 // E.g. (icmp slt x, 0) | (icmp sgt x, n) --> icmp ugt x, n
1902 if (Value *V = simplifyRangeCheck(LHS, RHS, /*Inverted=*/true))
1903 return V;
1904
1905 // E.g. (icmp sgt x, n) | (icmp slt x, 0) --> icmp ugt x, n
1906 if (Value *V = simplifyRangeCheck(RHS, LHS, /*Inverted=*/true))
1907 return V;
Justin Bognerc7e4fbe2016-08-05 01:09:48 +00001908
Sanjay Patelef9f5862017-04-15 17:55:06 +00001909 if (Value *V = foldAndOrOfEqualityCmpsWithConstants(LHS, RHS, false, Builder))
1910 return V;
1911
David Majnemerc2a990b2013-07-05 00:31:17 +00001912 // This only handles icmp of constants: (icmp1 A, C1) | (icmp2 B, C2).
Sanjay Patel519a87a2017-04-05 17:38:34 +00001913 if (!LHSC || !RHSC)
1914 return nullptr;
Chris Lattner0a8191e2010-01-05 07:50:36 +00001915
Sanjay Patel519a87a2017-04-05 17:38:34 +00001916 if (LHSC == RHSC && PredL == PredR) {
Owen Anderson8f306a72010-08-02 09:32:13 +00001917 // (icmp ne A, 0) | (icmp ne B, 0) --> (icmp ne (A|B), 0)
Sanjay Patel519a87a2017-04-05 17:38:34 +00001918 if (PredL == ICmpInst::ICMP_NE && LHSC->isZero()) {
Craig Topperbb4069e2017-07-07 23:16:26 +00001919 Value *NewOr = Builder.CreateOr(LHS0, RHS0);
1920 return Builder.CreateICmp(PredL, NewOr, LHSC);
Owen Anderson8f306a72010-08-02 09:32:13 +00001921 }
Benjamin Kramerda37e152012-01-08 18:32:24 +00001922 }
1923
Benjamin Kramerf7957d02010-12-20 20:00:31 +00001924 // (icmp ult (X + CA), C1) | (icmp eq X, C2) -> (icmp ule (X + CA), C1)
Sylvestre Ledru91ce36c2012-09-27 10:14:43 +00001925 // iff C2 + CA == C1.
Sanjay Patel519a87a2017-04-05 17:38:34 +00001926 if (PredL == ICmpInst::ICMP_ULT && PredR == ICmpInst::ICMP_EQ) {
1927 ConstantInt *AddC;
Sanjay Patele4159d22017-04-10 19:38:36 +00001928 if (match(LHS0, m_Add(m_Specific(RHS0), m_ConstantInt(AddC))))
Sanjay Patel519a87a2017-04-05 17:38:34 +00001929 if (RHSC->getValue() + AddC->getValue() == LHSC->getValue())
Craig Topperbb4069e2017-07-07 23:16:26 +00001930 return Builder.CreateICmpULE(LHS0, LHSC);
Benjamin Kramer68531ba2010-12-20 16:18:51 +00001931 }
1932
Chris Lattner0a8191e2010-01-05 07:50:36 +00001933 // From here on, we only handle:
1934 // (icmp1 A, C1) | (icmp2 A, C2) --> something simpler.
Sanjay Patele4159d22017-04-10 19:38:36 +00001935 if (LHS0 != RHS0)
Sanjay Patel519a87a2017-04-05 17:38:34 +00001936 return nullptr;
Craig Topper9d4171a2012-12-20 07:09:41 +00001937
Sanjay Patel519a87a2017-04-05 17:38:34 +00001938 // ICMP_[US][GL]E X, C is folded to ICMP_[US][GL]T elsewhere.
1939 if (PredL == ICmpInst::ICMP_UGE || PredL == ICmpInst::ICMP_ULE ||
1940 PredR == ICmpInst::ICMP_UGE || PredR == ICmpInst::ICMP_ULE ||
1941 PredL == ICmpInst::ICMP_SGE || PredL == ICmpInst::ICMP_SLE ||
1942 PredR == ICmpInst::ICMP_SGE || PredR == ICmpInst::ICMP_SLE)
Craig Topperf40110f2014-04-25 05:29:35 +00001943 return nullptr;
Craig Topper9d4171a2012-12-20 07:09:41 +00001944
Chris Lattner0a8191e2010-01-05 07:50:36 +00001945 // We can't fold (ugt x, C) | (sgt x, C2).
Sanjay Patel519a87a2017-04-05 17:38:34 +00001946 if (!PredicatesFoldable(PredL, PredR))
Craig Topperf40110f2014-04-25 05:29:35 +00001947 return nullptr;
Craig Topper9d4171a2012-12-20 07:09:41 +00001948
Chris Lattner0a8191e2010-01-05 07:50:36 +00001949 // Ensure that the larger constant is on the RHS.
1950 bool ShouldSwap;
Sanjay Patel28611ac2017-04-11 15:57:32 +00001951 if (CmpInst::isSigned(PredL) ||
1952 (ICmpInst::isEquality(PredL) && CmpInst::isSigned(PredR)))
Sanjay Patel570e35c2017-04-10 16:55:57 +00001953 ShouldSwap = LHSC->getValue().sgt(RHSC->getValue());
Sanjay Patel28611ac2017-04-11 15:57:32 +00001954 else
1955 ShouldSwap = LHSC->getValue().ugt(RHSC->getValue());
Craig Topper9d4171a2012-12-20 07:09:41 +00001956
Chris Lattner0a8191e2010-01-05 07:50:36 +00001957 if (ShouldSwap) {
1958 std::swap(LHS, RHS);
Sanjay Patel519a87a2017-04-05 17:38:34 +00001959 std::swap(LHSC, RHSC);
1960 std::swap(PredL, PredR);
Chris Lattner0a8191e2010-01-05 07:50:36 +00001961 }
Craig Topper9d4171a2012-12-20 07:09:41 +00001962
Dan Gohman4a618822010-02-10 16:03:48 +00001963 // At this point, we know we have two icmp instructions
Chris Lattner0a8191e2010-01-05 07:50:36 +00001964 // comparing a value against two constants and or'ing the result
1965 // together. Because of the above check, we know that we only have
1966 // ICMP_EQ, ICMP_NE, ICMP_LT, and ICMP_GT here. We also know (from the
1967 // icmp folding check above), that the two constants are not
1968 // equal.
Sanjay Patel519a87a2017-04-05 17:38:34 +00001969 assert(LHSC != RHSC && "Compares not folded above?");
Chris Lattner0a8191e2010-01-05 07:50:36 +00001970
Sanjay Patel519a87a2017-04-05 17:38:34 +00001971 switch (PredL) {
1972 default:
1973 llvm_unreachable("Unknown integer condition code!");
Chris Lattner0a8191e2010-01-05 07:50:36 +00001974 case ICmpInst::ICMP_EQ:
Sanjay Patel519a87a2017-04-05 17:38:34 +00001975 switch (PredR) {
1976 default:
1977 llvm_unreachable("Unknown integer condition code!");
Chris Lattner0a8191e2010-01-05 07:50:36 +00001978 case ICmpInst::ICMP_EQ:
Sanjay Patel7cfe4162017-04-14 19:23:50 +00001979 // Potential folds for this case should already be handled.
1980 break;
Sanjay Patel519a87a2017-04-05 17:38:34 +00001981 case ICmpInst::ICMP_UGT: // (X == 13 | X u> 14) -> no change
1982 case ICmpInst::ICMP_SGT: // (X == 13 | X s> 14) -> no change
Chris Lattner0a8191e2010-01-05 07:50:36 +00001983 break;
Chris Lattner0a8191e2010-01-05 07:50:36 +00001984 }
1985 break;
Chris Lattner0a8191e2010-01-05 07:50:36 +00001986 case ICmpInst::ICMP_ULT:
Sanjay Patel519a87a2017-04-05 17:38:34 +00001987 switch (PredR) {
1988 default:
1989 llvm_unreachable("Unknown integer condition code!");
1990 case ICmpInst::ICMP_EQ: // (X u< 13 | X == 14) -> no change
Chris Lattner0a8191e2010-01-05 07:50:36 +00001991 break;
Sanjay Patel519a87a2017-04-05 17:38:34 +00001992 case ICmpInst::ICMP_UGT: // (X u< 13 | X u> 15) -> (X-13) u> 2
Sanjay Patel599e65b2017-05-07 15:11:40 +00001993 assert(!RHSC->isMaxValue(false) && "Missed icmp simplification");
Sanjay Patele4159d22017-04-10 19:38:36 +00001994 return insertRangeTest(LHS0, LHSC->getValue(), RHSC->getValue() + 1,
1995 false, false);
Chris Lattner0a8191e2010-01-05 07:50:36 +00001996 }
1997 break;
1998 case ICmpInst::ICMP_SLT:
Sanjay Patel519a87a2017-04-05 17:38:34 +00001999 switch (PredR) {
2000 default:
2001 llvm_unreachable("Unknown integer condition code!");
2002 case ICmpInst::ICMP_EQ: // (X s< 13 | X == 14) -> no change
Chris Lattner0a8191e2010-01-05 07:50:36 +00002003 break;
Sanjay Patel519a87a2017-04-05 17:38:34 +00002004 case ICmpInst::ICMP_SGT: // (X s< 13 | X s> 15) -> (X-13) s> 2
Sanjay Patel599e65b2017-05-07 15:11:40 +00002005 assert(!RHSC->isMaxValue(true) && "Missed icmp simplification");
Sanjay Patele4159d22017-04-10 19:38:36 +00002006 return insertRangeTest(LHS0, LHSC->getValue(), RHSC->getValue() + 1, true,
Sanjay Patel519a87a2017-04-05 17:38:34 +00002007 false);
Chris Lattner0a8191e2010-01-05 07:50:36 +00002008 }
2009 break;
2010 }
Craig Topperf40110f2014-04-25 05:29:35 +00002011 return nullptr;
Chris Lattner0a8191e2010-01-05 07:50:36 +00002012}
2013
Sanjay Patel2b9d4b42016-12-18 18:49:48 +00002014// FIXME: We use commutative matchers (m_c_*) for some, but not all, matches
2015// here. We should standardize that construct where it is needed or choose some
2016// other way to ensure that commutated variants of patterns are not missed.
Chris Lattner0a8191e2010-01-05 07:50:36 +00002017Instruction *InstCombiner::visitOr(BinaryOperator &I) {
Duncan Sands641baf12010-11-13 15:10:37 +00002018 bool Changed = SimplifyAssociativeOrCommutative(I);
Chris Lattner0a8191e2010-01-05 07:50:36 +00002019 Value *Op0 = I.getOperand(0), *Op1 = I.getOperand(1);
Craig Toppera4205622017-06-09 03:21:29 +00002020 if (Value *V = SimplifyOrInst(Op0, Op1, SQ.getWithInstruction(&I)))
Sanjay Patel4b198802016-02-01 22:23:39 +00002021 return replaceInstUsesWith(I, V);
Bill Wendlingaf13d822010-03-03 00:35:56 +00002022
Sanjay Patelbbc6d602018-06-02 16:27:44 +00002023 if (Instruction *X = foldShuffledBinop(I))
2024 return X;
2025
Craig Topper9d4171a2012-12-20 07:09:41 +00002026 // See if we can simplify any instructions used by the instruction whose sole
Chris Lattner0a8191e2010-01-05 07:50:36 +00002027 // purpose is to compute bits we don't care about.
2028 if (SimplifyDemandedInstructionBits(I))
2029 return &I;
2030
Sanjay Patele0c26e02017-04-23 22:00:02 +00002031 // Do this before using distributive laws to catch simple and/or/not patterns.
Craig Topperbb4069e2017-07-07 23:16:26 +00002032 if (Instruction *Xor = foldOrToXor(I, Builder))
Sanjay Patele0c26e02017-04-23 22:00:02 +00002033 return Xor;
2034
2035 // (A&B)|(A&C) -> A&(B|C) etc
2036 if (Value *V = SimplifyUsingDistributiveLaws(I))
2037 return replaceInstUsesWith(I, V);
2038
Craig Topper95e41422017-07-06 16:24:23 +00002039 if (Value *V = SimplifyBSwap(I, Builder))
Sanjay Patel4b198802016-02-01 22:23:39 +00002040 return replaceInstUsesWith(I, V);
Simon Pilgrimbe24ab32014-12-04 09:44:01 +00002041
Sanjay Patel8fdd87f2018-02-28 16:36:24 +00002042 if (Instruction *FoldedLogic = foldBinOpIntoSelectOrPhi(I))
2043 return FoldedLogic;
Chris Lattner0a8191e2010-01-05 07:50:36 +00002044
Chad Rosiere5819e22016-05-26 14:58:51 +00002045 // Given an OR instruction, check to see if this is a bswap.
2046 if (Instruction *BSwap = MatchBSwap(I))
2047 return BSwap;
2048
Craig Topperafa07c52017-04-09 06:12:41 +00002049 {
2050 Value *A;
2051 const APInt *C;
2052 // (X^C)|Y -> (X|Y)^C iff Y&C == 0
2053 if (match(Op0, m_OneUse(m_Xor(m_Value(A), m_APInt(C)))) &&
2054 MaskedValueIsZero(Op1, *C, 0, &I)) {
Craig Topperbb4069e2017-07-07 23:16:26 +00002055 Value *NOr = Builder.CreateOr(A, Op1);
Craig Topperafa07c52017-04-09 06:12:41 +00002056 NOr->takeName(Op0);
2057 return BinaryOperator::CreateXor(NOr,
Davide Italianocdc937d2017-04-17 20:49:50 +00002058 ConstantInt::get(NOr->getType(), *C));
Craig Topperafa07c52017-04-09 06:12:41 +00002059 }
Chris Lattner0a8191e2010-01-05 07:50:36 +00002060
Craig Topperafa07c52017-04-09 06:12:41 +00002061 // Y|(X^C) -> (X|Y)^C iff Y&C == 0
2062 if (match(Op1, m_OneUse(m_Xor(m_Value(A), m_APInt(C)))) &&
2063 MaskedValueIsZero(Op0, *C, 0, &I)) {
Craig Topperbb4069e2017-07-07 23:16:26 +00002064 Value *NOr = Builder.CreateOr(A, Op0);
Craig Topperafa07c52017-04-09 06:12:41 +00002065 NOr->takeName(Op0);
2066 return BinaryOperator::CreateXor(NOr,
Davide Italianocdc937d2017-04-17 20:49:50 +00002067 ConstantInt::get(NOr->getType(), *C));
Craig Topperafa07c52017-04-09 06:12:41 +00002068 }
Chris Lattner0a8191e2010-01-05 07:50:36 +00002069 }
2070
Craig Topperafa07c52017-04-09 06:12:41 +00002071 Value *A, *B;
Chris Lattner0a8191e2010-01-05 07:50:36 +00002072
2073 // (A & C)|(B & D)
Craig Topperf40110f2014-04-25 05:29:35 +00002074 Value *C = nullptr, *D = nullptr;
Chris Lattner0a8191e2010-01-05 07:50:36 +00002075 if (match(Op0, m_And(m_Value(A), m_Value(C))) &&
2076 match(Op1, m_And(m_Value(B), m_Value(D)))) {
Craig Topperafa07c52017-04-09 06:12:41 +00002077 ConstantInt *C1 = dyn_cast<ConstantInt>(C);
2078 ConstantInt *C2 = dyn_cast<ConstantInt>(D);
Chris Lattner0a8191e2010-01-05 07:50:36 +00002079 if (C1 && C2) { // (A & C1)|(B & C2)
Craig Topperf7200992017-08-14 00:04:21 +00002080 Value *V1 = nullptr, *V2 = nullptr;
Craig Topper73ba1c82017-06-07 07:40:37 +00002081 if ((C1->getValue() & C2->getValue()).isNullValue()) {
Chris Lattner95188692010-01-11 06:55:24 +00002082 // ((V | N) & C1) | (V & C2) --> (V|N) & (C1|C2)
Sylvestre Ledru91ce36c2012-09-27 10:14:43 +00002083 // iff (C1&C2) == 0 and (N&~C1) == 0
Chris Lattner0a8191e2010-01-05 07:50:36 +00002084 if (match(A, m_Or(m_Value(V1), m_Value(V2))) &&
Hal Finkel60db0582014-09-07 18:57:58 +00002085 ((V1 == B &&
2086 MaskedValueIsZero(V2, ~C1->getValue(), 0, &I)) || // (V|N)
2087 (V2 == B &&
2088 MaskedValueIsZero(V1, ~C1->getValue(), 0, &I)))) // (N|V)
Chris Lattner0a8191e2010-01-05 07:50:36 +00002089 return BinaryOperator::CreateAnd(A,
Craig Topperbb4069e2017-07-07 23:16:26 +00002090 Builder.getInt(C1->getValue()|C2->getValue()));
Chris Lattner0a8191e2010-01-05 07:50:36 +00002091 // Or commutes, try both ways.
2092 if (match(B, m_Or(m_Value(V1), m_Value(V2))) &&
Hal Finkel60db0582014-09-07 18:57:58 +00002093 ((V1 == A &&
2094 MaskedValueIsZero(V2, ~C2->getValue(), 0, &I)) || // (V|N)
2095 (V2 == A &&
2096 MaskedValueIsZero(V1, ~C2->getValue(), 0, &I)))) // (N|V)
Chris Lattner0a8191e2010-01-05 07:50:36 +00002097 return BinaryOperator::CreateAnd(B,
Craig Topperbb4069e2017-07-07 23:16:26 +00002098 Builder.getInt(C1->getValue()|C2->getValue()));
Craig Topper9d4171a2012-12-20 07:09:41 +00002099
Chris Lattner95188692010-01-11 06:55:24 +00002100 // ((V|C3)&C1) | ((V|C4)&C2) --> (V|C3|C4)&(C1|C2)
Sylvestre Ledru91ce36c2012-09-27 10:14:43 +00002101 // iff (C1&C2) == 0 and (C3&~C1) == 0 and (C4&~C2) == 0.
Craig Topperf40110f2014-04-25 05:29:35 +00002102 ConstantInt *C3 = nullptr, *C4 = nullptr;
Chris Lattner95188692010-01-11 06:55:24 +00002103 if (match(A, m_Or(m_Value(V1), m_ConstantInt(C3))) &&
Craig Topper73ba1c82017-06-07 07:40:37 +00002104 (C3->getValue() & ~C1->getValue()).isNullValue() &&
Chris Lattner95188692010-01-11 06:55:24 +00002105 match(B, m_Or(m_Specific(V1), m_ConstantInt(C4))) &&
Craig Topper73ba1c82017-06-07 07:40:37 +00002106 (C4->getValue() & ~C2->getValue()).isNullValue()) {
Craig Topperbb4069e2017-07-07 23:16:26 +00002107 V2 = Builder.CreateOr(V1, ConstantExpr::getOr(C3, C4), "bitfield");
Chris Lattner95188692010-01-11 06:55:24 +00002108 return BinaryOperator::CreateAnd(V2,
Craig Topperbb4069e2017-07-07 23:16:26 +00002109 Builder.getInt(C1->getValue()|C2->getValue()));
Chris Lattner95188692010-01-11 06:55:24 +00002110 }
Chris Lattner0a8191e2010-01-05 07:50:36 +00002111 }
Craig Topperf7200992017-08-14 00:04:21 +00002112
2113 if (C1->getValue() == ~C2->getValue()) {
2114 Value *X;
2115
2116 // ((X|B)&C1)|(B&C2) -> (X&C1) | B iff C1 == ~C2
2117 if (match(A, m_c_Or(m_Value(X), m_Specific(B))))
2118 return BinaryOperator::CreateOr(Builder.CreateAnd(X, C1), B);
2119 // (A&C2)|((X|A)&C1) -> (X&C2) | A iff C1 == ~C2
2120 if (match(B, m_c_Or(m_Specific(A), m_Value(X))))
2121 return BinaryOperator::CreateOr(Builder.CreateAnd(X, C2), A);
2122
2123 // ((X^B)&C1)|(B&C2) -> (X&C1) ^ B iff C1 == ~C2
2124 if (match(A, m_c_Xor(m_Value(X), m_Specific(B))))
2125 return BinaryOperator::CreateXor(Builder.CreateAnd(X, C1), B);
2126 // (A&C2)|((X^A)&C1) -> (X&C2) ^ A iff C1 == ~C2
2127 if (match(B, m_c_Xor(m_Specific(A), m_Value(X))))
2128 return BinaryOperator::CreateXor(Builder.CreateAnd(X, C2), A);
2129 }
Chris Lattner0a8191e2010-01-05 07:50:36 +00002130 }
Chris Lattner0a8191e2010-01-05 07:50:36 +00002131
Sanjay Patelf4a08ed2016-07-08 20:53:29 +00002132 // Don't try to form a select if it's unlikely that we'll get rid of at
2133 // least one of the operands. A select is generally more expensive than the
2134 // 'or' that it is replacing.
2135 if (Op0->hasOneUse() || Op1->hasOneUse()) {
2136 // (Cond & C) | (~Cond & D) -> Cond ? C : D, and commuted variants.
Craig Topperbb4069e2017-07-07 23:16:26 +00002137 if (Value *V = matchSelectFromAndOr(A, C, B, D, Builder))
Sanjay Patelf4a08ed2016-07-08 20:53:29 +00002138 return replaceInstUsesWith(I, V);
Craig Topperbb4069e2017-07-07 23:16:26 +00002139 if (Value *V = matchSelectFromAndOr(A, C, D, B, Builder))
Sanjay Patelf4a08ed2016-07-08 20:53:29 +00002140 return replaceInstUsesWith(I, V);
Craig Topperbb4069e2017-07-07 23:16:26 +00002141 if (Value *V = matchSelectFromAndOr(C, A, B, D, Builder))
Sanjay Patelf4a08ed2016-07-08 20:53:29 +00002142 return replaceInstUsesWith(I, V);
Craig Topperbb4069e2017-07-07 23:16:26 +00002143 if (Value *V = matchSelectFromAndOr(C, A, D, B, Builder))
Sanjay Patelf4a08ed2016-07-08 20:53:29 +00002144 return replaceInstUsesWith(I, V);
Craig Topperbb4069e2017-07-07 23:16:26 +00002145 if (Value *V = matchSelectFromAndOr(B, D, A, C, Builder))
Sanjay Patelf4a08ed2016-07-08 20:53:29 +00002146 return replaceInstUsesWith(I, V);
Craig Topperbb4069e2017-07-07 23:16:26 +00002147 if (Value *V = matchSelectFromAndOr(B, D, C, A, Builder))
Sanjay Patelf4a08ed2016-07-08 20:53:29 +00002148 return replaceInstUsesWith(I, V);
Craig Topperbb4069e2017-07-07 23:16:26 +00002149 if (Value *V = matchSelectFromAndOr(D, B, A, C, Builder))
Sanjay Patelf4a08ed2016-07-08 20:53:29 +00002150 return replaceInstUsesWith(I, V);
Craig Topperbb4069e2017-07-07 23:16:26 +00002151 if (Value *V = matchSelectFromAndOr(D, B, C, A, Builder))
Sanjay Patelf4a08ed2016-07-08 20:53:29 +00002152 return replaceInstUsesWith(I, V);
2153 }
Chris Lattner0a8191e2010-01-05 07:50:36 +00002154 }
Craig Topper9d4171a2012-12-20 07:09:41 +00002155
David Majnemer42af3602014-07-30 21:26:37 +00002156 // (A ^ B) | ((B ^ C) ^ A) -> (A ^ B) | C
2157 if (match(Op0, m_Xor(m_Value(A), m_Value(B))))
2158 if (match(Op1, m_Xor(m_Xor(m_Specific(B), m_Value(C)), m_Specific(A))))
Craig Toppera7529b62017-06-19 16:23:49 +00002159 return BinaryOperator::CreateOr(Op0, C);
David Majnemer42af3602014-07-30 21:26:37 +00002160
2161 // ((A ^ C) ^ B) | (B ^ A) -> (B ^ A) | C
2162 if (match(Op0, m_Xor(m_Xor(m_Value(A), m_Value(C)), m_Value(B))))
2163 if (match(Op1, m_Xor(m_Specific(B), m_Specific(A))))
Craig Toppera7529b62017-06-19 16:23:49 +00002164 return BinaryOperator::CreateOr(Op1, C);
David Majnemer42af3602014-07-30 21:26:37 +00002165
David Majnemerf1eda232014-08-14 06:41:38 +00002166 // ((B | C) & A) | B -> B | (A & C)
2167 if (match(Op0, m_And(m_Or(m_Specific(Op1), m_Value(C)), m_Value(A))))
Craig Topperbb4069e2017-07-07 23:16:26 +00002168 return BinaryOperator::CreateOr(Op1, Builder.CreateAnd(A, C));
David Majnemerf1eda232014-08-14 06:41:38 +00002169
Craig Topperbb4069e2017-07-07 23:16:26 +00002170 if (Instruction *DeMorgan = matchDeMorgansLaws(I, Builder))
Sanjay Patelb54e62f2015-09-08 20:14:13 +00002171 return DeMorgan;
Chris Lattner0a8191e2010-01-05 07:50:36 +00002172
Benjamin Kramerd5d7f372011-02-20 13:23:43 +00002173 // Canonicalize xor to the RHS.
Eli Friedmane06535b2012-03-16 00:52:42 +00002174 bool SwappedForXor = false;
2175 if (match(Op0, m_Xor(m_Value(), m_Value()))) {
Benjamin Kramerd5d7f372011-02-20 13:23:43 +00002176 std::swap(Op0, Op1);
Eli Friedmane06535b2012-03-16 00:52:42 +00002177 SwappedForXor = true;
2178 }
Benjamin Kramerd5d7f372011-02-20 13:23:43 +00002179
2180 // A | ( A ^ B) -> A | B
2181 // A | (~A ^ B) -> A | ~B
Chad Rosier7813dce2012-04-26 23:29:14 +00002182 // (A & B) | (A ^ B)
Benjamin Kramerd5d7f372011-02-20 13:23:43 +00002183 if (match(Op1, m_Xor(m_Value(A), m_Value(B)))) {
2184 if (Op0 == A || Op0 == B)
2185 return BinaryOperator::CreateOr(A, B);
2186
Chad Rosier7813dce2012-04-26 23:29:14 +00002187 if (match(Op0, m_And(m_Specific(A), m_Specific(B))) ||
2188 match(Op0, m_And(m_Specific(B), m_Specific(A))))
2189 return BinaryOperator::CreateOr(A, B);
2190
Benjamin Kramerd5d7f372011-02-20 13:23:43 +00002191 if (Op1->hasOneUse() && match(A, m_Not(m_Specific(Op0)))) {
Craig Topperbb4069e2017-07-07 23:16:26 +00002192 Value *Not = Builder.CreateNot(B, B->getName() + ".not");
Benjamin Kramerd5d7f372011-02-20 13:23:43 +00002193 return BinaryOperator::CreateOr(Not, Op0);
2194 }
2195 if (Op1->hasOneUse() && match(B, m_Not(m_Specific(Op0)))) {
Craig Topperbb4069e2017-07-07 23:16:26 +00002196 Value *Not = Builder.CreateNot(A, A->getName() + ".not");
Benjamin Kramerd5d7f372011-02-20 13:23:43 +00002197 return BinaryOperator::CreateOr(Not, Op0);
2198 }
2199 }
2200
2201 // A | ~(A | B) -> A | ~B
2202 // A | ~(A ^ B) -> A | ~B
Benjamin Kramerd5d7f372011-02-20 13:23:43 +00002203 if (match(Op1, m_Not(m_Value(A))))
2204 if (BinaryOperator *B = dyn_cast<BinaryOperator>(A))
Benjamin Kramer5b7a4e02011-02-20 15:20:01 +00002205 if ((Op0 == B->getOperand(0) || Op0 == B->getOperand(1)) &&
2206 Op1->hasOneUse() && (B->getOpcode() == Instruction::Or ||
2207 B->getOpcode() == Instruction::Xor)) {
2208 Value *NotOp = Op0 == B->getOperand(0) ? B->getOperand(1) :
2209 B->getOperand(0);
Craig Topperbb4069e2017-07-07 23:16:26 +00002210 Value *Not = Builder.CreateNot(NotOp, NotOp->getName() + ".not");
Benjamin Kramer5b7a4e02011-02-20 15:20:01 +00002211 return BinaryOperator::CreateOr(Not, Op0);
2212 }
Benjamin Kramerd5d7f372011-02-20 13:23:43 +00002213
Eli Friedmane06535b2012-03-16 00:52:42 +00002214 if (SwappedForXor)
2215 std::swap(Op0, Op1);
2216
David Majnemer3d6f80b2014-11-28 19:58:29 +00002217 {
2218 ICmpInst *LHS = dyn_cast<ICmpInst>(Op0);
2219 ICmpInst *RHS = dyn_cast<ICmpInst>(Op1);
2220 if (LHS && RHS)
Craig Topperf2d3e6d2017-06-15 19:09:51 +00002221 if (Value *Res = foldOrOfICmps(LHS, RHS, I))
Sanjay Patel4b198802016-02-01 22:23:39 +00002222 return replaceInstUsesWith(I, Res);
Craig Topper9d4171a2012-12-20 07:09:41 +00002223
David Majnemer3d6f80b2014-11-28 19:58:29 +00002224 // TODO: Make this recursive; it's a little tricky because an arbitrary
2225 // number of 'or' instructions might have to be created.
2226 Value *X, *Y;
2227 if (LHS && match(Op1, m_OneUse(m_Or(m_Value(X), m_Value(Y))))) {
2228 if (auto *Cmp = dyn_cast<ICmpInst>(X))
Craig Topperf2d3e6d2017-06-15 19:09:51 +00002229 if (Value *Res = foldOrOfICmps(LHS, Cmp, I))
Craig Topperbb4069e2017-07-07 23:16:26 +00002230 return replaceInstUsesWith(I, Builder.CreateOr(Res, Y));
David Majnemer3d6f80b2014-11-28 19:58:29 +00002231 if (auto *Cmp = dyn_cast<ICmpInst>(Y))
Craig Topperf2d3e6d2017-06-15 19:09:51 +00002232 if (Value *Res = foldOrOfICmps(LHS, Cmp, I))
Craig Topperbb4069e2017-07-07 23:16:26 +00002233 return replaceInstUsesWith(I, Builder.CreateOr(Res, X));
David Majnemer3d6f80b2014-11-28 19:58:29 +00002234 }
2235 if (RHS && match(Op0, m_OneUse(m_Or(m_Value(X), m_Value(Y))))) {
2236 if (auto *Cmp = dyn_cast<ICmpInst>(X))
Craig Topperf2d3e6d2017-06-15 19:09:51 +00002237 if (Value *Res = foldOrOfICmps(Cmp, RHS, I))
Craig Topperbb4069e2017-07-07 23:16:26 +00002238 return replaceInstUsesWith(I, Builder.CreateOr(Res, Y));
David Majnemer3d6f80b2014-11-28 19:58:29 +00002239 if (auto *Cmp = dyn_cast<ICmpInst>(Y))
Craig Topperf2d3e6d2017-06-15 19:09:51 +00002240 if (Value *Res = foldOrOfICmps(Cmp, RHS, I))
Craig Topperbb4069e2017-07-07 23:16:26 +00002241 return replaceInstUsesWith(I, Builder.CreateOr(Res, X));
David Majnemer3d6f80b2014-11-28 19:58:29 +00002242 }
2243 }
2244
Chris Lattner4e8137d2010-02-11 06:26:33 +00002245 if (FCmpInst *LHS = dyn_cast<FCmpInst>(I.getOperand(0)))
2246 if (FCmpInst *RHS = dyn_cast<FCmpInst>(I.getOperand(1)))
Sanjay Patel64fc5da2017-09-02 17:53:33 +00002247 if (Value *Res = foldLogicOfFCmps(LHS, RHS, false))
Sanjay Patel4b198802016-02-01 22:23:39 +00002248 return replaceInstUsesWith(I, Res);
Craig Topper9d4171a2012-12-20 07:09:41 +00002249
Sanjay Patel75b4ae22016-02-23 23:56:23 +00002250 if (Instruction *CastedOr = foldCastedBitwiseLogic(I))
2251 return CastedOr;
Eli Friedman23956262011-04-14 22:41:27 +00002252
Sanjay Patelcbfca9e2016-07-08 17:01:15 +00002253 // or(sext(A), B) / or(B, sext(A)) --> A ? -1 : B, where A is i1 or <N x i1>.
Sanjay Patel1b6b8242016-07-08 17:26:47 +00002254 if (match(Op0, m_OneUse(m_SExt(m_Value(A)))) &&
Craig Topperfde47232017-07-09 07:04:03 +00002255 A->getType()->isIntOrIntVectorTy(1))
Eli Friedman23956262011-04-14 22:41:27 +00002256 return SelectInst::Create(A, ConstantInt::getSigned(I.getType(), -1), Op1);
Sanjay Patel1b6b8242016-07-08 17:26:47 +00002257 if (match(Op1, m_OneUse(m_SExt(m_Value(A)))) &&
Craig Topperfde47232017-07-09 07:04:03 +00002258 A->getType()->isIntOrIntVectorTy(1))
Eli Friedman23956262011-04-14 22:41:27 +00002259 return SelectInst::Create(A, ConstantInt::getSigned(I.getType(), -1), Op0);
2260
Owen Andersonc237a842010-09-13 17:59:27 +00002261 // Note: If we've gotten to the point of visiting the outer OR, then the
2262 // inner one couldn't be simplified. If it was a constant, then it won't
2263 // be simplified by a later pass either, so we try swapping the inner/outer
2264 // ORs in the hopes that we'll be able to simplify it this way.
2265 // (X|C) | V --> (X|V) | C
Craig Topperafa07c52017-04-09 06:12:41 +00002266 ConstantInt *C1;
Owen Andersonc237a842010-09-13 17:59:27 +00002267 if (Op0->hasOneUse() && !isa<ConstantInt>(Op1) &&
2268 match(Op0, m_Or(m_Value(A), m_ConstantInt(C1)))) {
Craig Topperbb4069e2017-07-07 23:16:26 +00002269 Value *Inner = Builder.CreateOr(A, Op1);
Owen Andersonc237a842010-09-13 17:59:27 +00002270 Inner->takeName(Op0);
2271 return BinaryOperator::CreateOr(Inner, C1);
2272 }
Craig Topper9d4171a2012-12-20 07:09:41 +00002273
Bill Wendling23242092013-02-16 23:41:36 +00002274 // Change (or (bool?A:B),(bool?C:D)) --> (bool?(or A,C):(or B,D))
2275 // Since this OR statement hasn't been optimized further yet, we hope
2276 // that this transformation will allow the new ORs to be optimized.
2277 {
Craig Topperf40110f2014-04-25 05:29:35 +00002278 Value *X = nullptr, *Y = nullptr;
Bill Wendling23242092013-02-16 23:41:36 +00002279 if (Op0->hasOneUse() && Op1->hasOneUse() &&
2280 match(Op0, m_Select(m_Value(X), m_Value(A), m_Value(B))) &&
2281 match(Op1, m_Select(m_Value(Y), m_Value(C), m_Value(D))) && X == Y) {
Craig Topperbb4069e2017-07-07 23:16:26 +00002282 Value *orTrue = Builder.CreateOr(A, C);
2283 Value *orFalse = Builder.CreateOr(B, D);
Bill Wendling23242092013-02-16 23:41:36 +00002284 return SelectInst::Create(X, orTrue, orFalse);
2285 }
2286 }
2287
Craig Topperf40110f2014-04-25 05:29:35 +00002288 return Changed ? &I : nullptr;
Chris Lattner0a8191e2010-01-05 07:50:36 +00002289}
2290
Sanjay Pateld13b0bf2017-04-23 16:03:00 +00002291/// A ^ B can be specified using other logic ops in a variety of patterns. We
2292/// can fold these early and efficiently by morphing an existing instruction.
Craig Topperf60ab472017-07-02 01:15:51 +00002293static Instruction *foldXorToXor(BinaryOperator &I,
2294 InstCombiner::BuilderTy &Builder) {
Sanjay Pateld13b0bf2017-04-23 16:03:00 +00002295 assert(I.getOpcode() == Instruction::Xor);
2296 Value *Op0 = I.getOperand(0);
2297 Value *Op1 = I.getOperand(1);
2298 Value *A, *B;
2299
2300 // There are 4 commuted variants for each of the basic patterns.
2301
2302 // (A & B) ^ (A | B) -> A ^ B
2303 // (A & B) ^ (B | A) -> A ^ B
2304 // (A | B) ^ (A & B) -> A ^ B
2305 // (A | B) ^ (B & A) -> A ^ B
Roman Lebedev6959b8e2018-04-27 21:23:20 +00002306 if (match(&I, m_c_Xor(m_And(m_Value(A), m_Value(B)),
2307 m_c_Or(m_Deferred(A), m_Deferred(B))))) {
Sanjay Pateld13b0bf2017-04-23 16:03:00 +00002308 I.setOperand(0, A);
2309 I.setOperand(1, B);
2310 return &I;
2311 }
2312
2313 // (A | ~B) ^ (~A | B) -> A ^ B
2314 // (~B | A) ^ (~A | B) -> A ^ B
2315 // (~A | B) ^ (A | ~B) -> A ^ B
2316 // (B | ~A) ^ (A | ~B) -> A ^ B
Roman Lebedev6959b8e2018-04-27 21:23:20 +00002317 if (match(&I, m_Xor(m_c_Or(m_Value(A), m_Not(m_Value(B))),
2318 m_c_Or(m_Not(m_Deferred(A)), m_Deferred(B))))) {
Sanjay Pateld13b0bf2017-04-23 16:03:00 +00002319 I.setOperand(0, A);
2320 I.setOperand(1, B);
2321 return &I;
2322 }
2323
2324 // (A & ~B) ^ (~A & B) -> A ^ B
2325 // (~B & A) ^ (~A & B) -> A ^ B
2326 // (~A & B) ^ (A & ~B) -> A ^ B
2327 // (B & ~A) ^ (A & ~B) -> A ^ B
Roman Lebedev6959b8e2018-04-27 21:23:20 +00002328 if (match(&I, m_Xor(m_c_And(m_Value(A), m_Not(m_Value(B))),
2329 m_c_And(m_Not(m_Deferred(A)), m_Deferred(B))))) {
Sanjay Pateld13b0bf2017-04-23 16:03:00 +00002330 I.setOperand(0, A);
2331 I.setOperand(1, B);
2332 return &I;
2333 }
2334
Craig Topperf60ab472017-07-02 01:15:51 +00002335 // For the remaining cases we need to get rid of one of the operands.
2336 if (!Op0->hasOneUse() && !Op1->hasOneUse())
2337 return nullptr;
2338
2339 // (A | B) ^ ~(A & B) -> ~(A ^ B)
2340 // (A | B) ^ ~(B & A) -> ~(A ^ B)
2341 // (A & B) ^ ~(A | B) -> ~(A ^ B)
2342 // (A & B) ^ ~(B | A) -> ~(A ^ B)
2343 // Complexity sorting ensures the not will be on the right side.
2344 if ((match(Op0, m_Or(m_Value(A), m_Value(B))) &&
2345 match(Op1, m_Not(m_c_And(m_Specific(A), m_Specific(B))))) ||
2346 (match(Op0, m_And(m_Value(A), m_Value(B))) &&
2347 match(Op1, m_Not(m_c_Or(m_Specific(A), m_Specific(B))))))
2348 return BinaryOperator::CreateNot(Builder.CreateXor(A, B));
2349
Sanjay Pateld13b0bf2017-04-23 16:03:00 +00002350 return nullptr;
2351}
2352
Sanjay Patel5e456b92017-05-18 20:53:16 +00002353Value *InstCombiner::foldXorOfICmps(ICmpInst *LHS, ICmpInst *RHS) {
2354 if (PredicatesFoldable(LHS->getPredicate(), RHS->getPredicate())) {
2355 if (LHS->getOperand(0) == RHS->getOperand(1) &&
2356 LHS->getOperand(1) == RHS->getOperand(0))
2357 LHS->swapOperands();
2358 if (LHS->getOperand(0) == RHS->getOperand(0) &&
2359 LHS->getOperand(1) == RHS->getOperand(1)) {
2360 // (icmp1 A, B) ^ (icmp2 A, B) --> (icmp3 A, B)
2361 Value *Op0 = LHS->getOperand(0), *Op1 = LHS->getOperand(1);
2362 unsigned Code = getICmpCode(LHS) ^ getICmpCode(RHS);
2363 bool isSigned = LHS->isSigned() || RHS->isSigned();
2364 return getNewICmpValue(isSigned, Code, Op0, Op1, Builder);
2365 }
2366 }
2367
Sanjay Patel94c91b72018-03-22 14:08:16 +00002368 // TODO: This can be generalized to compares of non-signbits using
2369 // decomposeBitTestICmp(). It could be enhanced more by using (something like)
2370 // foldLogOpOfMaskedICmps().
2371 ICmpInst::Predicate PredL = LHS->getPredicate(), PredR = RHS->getPredicate();
2372 Value *LHS0 = LHS->getOperand(0), *LHS1 = LHS->getOperand(1);
2373 Value *RHS0 = RHS->getOperand(0), *RHS1 = RHS->getOperand(1);
2374 if ((LHS->hasOneUse() || RHS->hasOneUse()) &&
2375 LHS0->getType() == RHS0->getType()) {
2376 // (X > -1) ^ (Y > -1) --> (X ^ Y) < 0
2377 // (X < 0) ^ (Y < 0) --> (X ^ Y) < 0
2378 if ((PredL == CmpInst::ICMP_SGT && match(LHS1, m_AllOnes()) &&
2379 PredR == CmpInst::ICMP_SGT && match(RHS1, m_AllOnes())) ||
2380 (PredL == CmpInst::ICMP_SLT && match(LHS1, m_Zero()) &&
2381 PredR == CmpInst::ICMP_SLT && match(RHS1, m_Zero()))) {
2382 Value *Zero = ConstantInt::getNullValue(LHS0->getType());
2383 return Builder.CreateICmpSLT(Builder.CreateXor(LHS0, RHS0), Zero);
2384 }
2385 // (X > -1) ^ (Y < 0) --> (X ^ Y) > -1
2386 // (X < 0) ^ (Y > -1) --> (X ^ Y) > -1
2387 if ((PredL == CmpInst::ICMP_SGT && match(LHS1, m_AllOnes()) &&
2388 PredR == CmpInst::ICMP_SLT && match(RHS1, m_Zero())) ||
2389 (PredL == CmpInst::ICMP_SLT && match(LHS1, m_Zero()) &&
2390 PredR == CmpInst::ICMP_SGT && match(RHS1, m_AllOnes()))) {
2391 Value *MinusOne = ConstantInt::getAllOnesValue(LHS0->getType());
2392 return Builder.CreateICmpSGT(Builder.CreateXor(LHS0, RHS0), MinusOne);
2393 }
2394 }
2395
Sanjay Pateladca8252017-06-20 12:40:55 +00002396 // Instead of trying to imitate the folds for and/or, decompose this 'xor'
2397 // into those logic ops. That is, try to turn this into an and-of-icmps
2398 // because we have many folds for that pattern.
2399 //
2400 // This is based on a truth table definition of xor:
2401 // X ^ Y --> (X | Y) & !(X & Y)
2402 if (Value *OrICmp = SimplifyBinOp(Instruction::Or, LHS, RHS, SQ)) {
2403 // TODO: If OrICmp is true, then the definition of xor simplifies to !(X&Y).
2404 // TODO: If OrICmp is false, the whole thing is false (InstSimplify?).
2405 if (Value *AndICmp = SimplifyBinOp(Instruction::And, LHS, RHS, SQ)) {
2406 // TODO: Independently handle cases where the 'and' side is a constant.
2407 if (OrICmp == LHS && AndICmp == RHS && RHS->hasOneUse()) {
2408 // (LHS | RHS) & !(LHS & RHS) --> LHS & !RHS
2409 RHS->setPredicate(RHS->getInversePredicate());
Craig Topperbb4069e2017-07-07 23:16:26 +00002410 return Builder.CreateAnd(LHS, RHS);
Sanjay Pateladca8252017-06-20 12:40:55 +00002411 }
2412 if (OrICmp == RHS && AndICmp == LHS && LHS->hasOneUse()) {
Sanjay Patel4ccbd582017-06-20 12:45:46 +00002413 // !(LHS & RHS) & (LHS | RHS) --> !LHS & RHS
Sanjay Pateladca8252017-06-20 12:40:55 +00002414 LHS->setPredicate(LHS->getInversePredicate());
Craig Topperbb4069e2017-07-07 23:16:26 +00002415 return Builder.CreateAnd(LHS, RHS);
Sanjay Pateladca8252017-06-20 12:40:55 +00002416 }
2417 }
2418 }
2419
Sanjay Patel5e456b92017-05-18 20:53:16 +00002420 return nullptr;
2421}
2422
Roman Lebedev13686792018-04-28 15:45:07 +00002423/// If we have a masked merge, in the canonical form of:
Roman Lebedevaa4faec2018-04-30 17:59:33 +00002424/// (assuming that A only has one use.)
Roman Lebedev13686792018-04-28 15:45:07 +00002425/// | A | |B|
2426/// ((x ^ y) & M) ^ y
2427/// | D |
2428/// * If M is inverted:
2429/// | D |
2430/// ((x ^ y) & ~M) ^ y
Roman Lebedevaa4faec2018-04-30 17:59:33 +00002431/// We can canonicalize by swapping the final xor operand
2432/// to eliminate the 'not' of the mask.
Roman Lebedev13686792018-04-28 15:45:07 +00002433/// ((x ^ y) & M) ^ x
Roman Lebedevaa4faec2018-04-30 17:59:33 +00002434/// * If M is a constant, and D has one use, we transform to 'and' / 'or' ops
2435/// because that shortens the dependency chain and improves analysis:
2436/// (x & M) | (y & ~M)
Roman Lebedev13686792018-04-28 15:45:07 +00002437static Instruction *visitMaskedMerge(BinaryOperator &I,
2438 InstCombiner::BuilderTy &Builder) {
2439 Value *B, *X, *D;
2440 Value *M;
2441 if (!match(&I, m_c_Xor(m_Value(B),
2442 m_OneUse(m_c_And(
2443 m_CombineAnd(m_c_Xor(m_Deferred(B), m_Value(X)),
2444 m_Value(D)),
2445 m_Value(M))))))
2446 return nullptr;
2447
2448 Value *NotM;
2449 if (match(M, m_Not(m_Value(NotM)))) {
2450 // De-invert the mask and swap the value in B part.
2451 Value *NewA = Builder.CreateAnd(D, NotM);
2452 return BinaryOperator::CreateXor(NewA, X);
2453 }
2454
Roman Lebedevaa4faec2018-04-30 17:59:33 +00002455 Constant *C;
2456 if (D->hasOneUse() && match(M, m_Constant(C))) {
2457 // Unfold.
2458 Value *LHS = Builder.CreateAnd(X, C);
2459 Value *NotC = Builder.CreateNot(C);
2460 Value *RHS = Builder.CreateAnd(B, NotC);
2461 return BinaryOperator::CreateOr(LHS, RHS);
2462 }
2463
Roman Lebedev13686792018-04-28 15:45:07 +00002464 return nullptr;
2465}
2466
Sanjay Patel2b9d4b42016-12-18 18:49:48 +00002467// FIXME: We use commutative matchers (m_c_*) for some, but not all, matches
2468// here. We should standardize that construct where it is needed or choose some
2469// other way to ensure that commutated variants of patterns are not missed.
Chris Lattner0a8191e2010-01-05 07:50:36 +00002470Instruction *InstCombiner::visitXor(BinaryOperator &I) {
Duncan Sands641baf12010-11-13 15:10:37 +00002471 bool Changed = SimplifyAssociativeOrCommutative(I);
Chris Lattner0a8191e2010-01-05 07:50:36 +00002472 Value *Op0 = I.getOperand(0), *Op1 = I.getOperand(1);
Craig Toppera4205622017-06-09 03:21:29 +00002473 if (Value *V = SimplifyXorInst(Op0, Op1, SQ.getWithInstruction(&I)))
Sanjay Patel4b198802016-02-01 22:23:39 +00002474 return replaceInstUsesWith(I, V);
Chris Lattner0a8191e2010-01-05 07:50:36 +00002475
Sanjay Patelbbc6d602018-06-02 16:27:44 +00002476 if (Instruction *X = foldShuffledBinop(I))
2477 return X;
2478
Craig Topperbb4069e2017-07-07 23:16:26 +00002479 if (Instruction *NewXor = foldXorToXor(I, Builder))
Sanjay Pateld13b0bf2017-04-23 16:03:00 +00002480 return NewXor;
2481
Duncan Sandsfbb9ac32010-12-22 13:36:08 +00002482 // (A&B)^(A&C) -> A&(B^C) etc
2483 if (Value *V = SimplifyUsingDistributiveLaws(I))
Sanjay Patel4b198802016-02-01 22:23:39 +00002484 return replaceInstUsesWith(I, V);
Duncan Sandsadc7771f2010-11-23 14:23:47 +00002485
Craig Topper9d4171a2012-12-20 07:09:41 +00002486 // See if we can simplify any instructions used by the instruction whose sole
Chris Lattner0a8191e2010-01-05 07:50:36 +00002487 // purpose is to compute bits we don't care about.
2488 if (SimplifyDemandedInstructionBits(I))
2489 return &I;
Chris Lattner0a8191e2010-01-05 07:50:36 +00002490
Craig Topper95e41422017-07-06 16:24:23 +00002491 if (Value *V = SimplifyBSwap(I, Builder))
Sanjay Patel4b198802016-02-01 22:23:39 +00002492 return replaceInstUsesWith(I, V);
Simon Pilgrimbe24ab32014-12-04 09:44:01 +00002493
Roman Lebedevf84bfb22018-04-15 18:59:44 +00002494 // A^B --> A|B iff A and B have no bits set in common.
2495 if (haveNoCommonBitsSet(Op0, Op1, DL, &AC, &I, &DT))
2496 return BinaryOperator::CreateOr(Op0, Op1);
2497
Sanjay Patel6381db12017-05-02 15:31:40 +00002498 // Apply DeMorgan's Law for 'nand' / 'nor' logic with an inverted operand.
2499 Value *X, *Y;
2500
2501 // We must eliminate the and/or (one-use) for these transforms to not increase
2502 // the instruction count.
2503 // ~(~X & Y) --> (X | ~Y)
2504 // ~(Y & ~X) --> (X | ~Y)
2505 if (match(&I, m_Not(m_OneUse(m_c_And(m_Not(m_Value(X)), m_Value(Y)))))) {
Craig Topperbb4069e2017-07-07 23:16:26 +00002506 Value *NotY = Builder.CreateNot(Y, Y->getName() + ".not");
Sanjay Patel6381db12017-05-02 15:31:40 +00002507 return BinaryOperator::CreateOr(X, NotY);
2508 }
2509 // ~(~X | Y) --> (X & ~Y)
2510 // ~(Y | ~X) --> (X & ~Y)
2511 if (match(&I, m_Not(m_OneUse(m_c_Or(m_Not(m_Value(X)), m_Value(Y)))))) {
Craig Topperbb4069e2017-07-07 23:16:26 +00002512 Value *NotY = Builder.CreateNot(Y, Y->getName() + ".not");
Sanjay Patel6381db12017-05-02 15:31:40 +00002513 return BinaryOperator::CreateAnd(X, NotY);
2514 }
2515
Roman Lebedev13686792018-04-28 15:45:07 +00002516 if (Instruction *Xor = visitMaskedMerge(I, Builder))
2517 return Xor;
2518
Sanjay Patel3b863f82017-04-22 18:05:35 +00002519 // Is this a 'not' (~) fed by a binary operator?
Sanjay Patela1c88142017-05-08 20:49:59 +00002520 BinaryOperator *NotVal;
2521 if (match(&I, m_Not(m_BinOp(NotVal)))) {
2522 if (NotVal->getOpcode() == Instruction::And ||
2523 NotVal->getOpcode() == Instruction::Or) {
Sanjay Patel6381db12017-05-02 15:31:40 +00002524 // Apply DeMorgan's Law when inverts are free:
2525 // ~(X & Y) --> (~X | ~Y)
2526 // ~(X | Y) --> (~X & ~Y)
Sanjay Patela1c88142017-05-08 20:49:59 +00002527 if (IsFreeToInvert(NotVal->getOperand(0),
2528 NotVal->getOperand(0)->hasOneUse()) &&
2529 IsFreeToInvert(NotVal->getOperand(1),
2530 NotVal->getOperand(1)->hasOneUse())) {
Craig Topperbb4069e2017-07-07 23:16:26 +00002531 Value *NotX = Builder.CreateNot(NotVal->getOperand(0), "notlhs");
2532 Value *NotY = Builder.CreateNot(NotVal->getOperand(1), "notrhs");
Sanjay Patela1c88142017-05-08 20:49:59 +00002533 if (NotVal->getOpcode() == Instruction::And)
Sanjay Patel3b863f82017-04-22 18:05:35 +00002534 return BinaryOperator::CreateOr(NotX, NotY);
2535 return BinaryOperator::CreateAnd(NotX, NotY);
2536 }
Sanjay Patela1c88142017-05-08 20:49:59 +00002537 }
2538
2539 // ~(~X >>s Y) --> (X >>s Y)
2540 if (match(NotVal, m_AShr(m_Not(m_Value(X)), m_Value(Y))))
2541 return BinaryOperator::CreateAShr(X, Y);
2542
2543 // If we are inverting a right-shifted constant, we may be able to eliminate
2544 // the 'not' by inverting the constant and using the opposite shift type.
2545 // Canonicalization rules ensure that only a negative constant uses 'ashr',
2546 // but we must check that in case that transform has not fired yet.
Simon Pilgrim19495192018-02-10 21:46:09 +00002547 Constant *C;
2548 if (match(NotVal, m_AShr(m_Constant(C), m_Value(Y))) &&
2549 match(C, m_Negative())) {
Sanjay Patela1c88142017-05-08 20:49:59 +00002550 // ~(C >>s Y) --> ~C >>u Y (when inverting the replicated sign bits)
Simon Pilgrim19495192018-02-10 21:46:09 +00002551 Constant *NotC = ConstantExpr::getNot(C);
Sanjay Patela1c88142017-05-08 20:49:59 +00002552 return BinaryOperator::CreateLShr(NotC, Y);
2553 }
2554
Simon Pilgrim19495192018-02-10 21:46:09 +00002555 if (match(NotVal, m_LShr(m_Constant(C), m_Value(Y))) &&
2556 match(C, m_NonNegative())) {
Sanjay Patela1c88142017-05-08 20:49:59 +00002557 // ~(C >>u Y) --> ~C >>s Y (when inverting the replicated sign bits)
Simon Pilgrim19495192018-02-10 21:46:09 +00002558 Constant *NotC = ConstantExpr::getNot(C);
Sanjay Patela1c88142017-05-08 20:49:59 +00002559 return BinaryOperator::CreateAShr(NotC, Y);
Chris Lattner0a8191e2010-01-05 07:50:36 +00002560 }
2561 }
Craig Topper9d4171a2012-12-20 07:09:41 +00002562
Craig Topper798a19a2017-06-29 00:07:08 +00002563 // not (cmp A, B) = !cmp A, B
Craig Toppercc418b62017-07-05 20:31:00 +00002564 CmpInst::Predicate Pred;
Craig Topper798a19a2017-06-29 00:07:08 +00002565 if (match(&I, m_Not(m_OneUse(m_Cmp(Pred, m_Value(), m_Value()))))) {
Sanjay Patel33439f92017-04-12 15:11:33 +00002566 cast<CmpInst>(Op0)->setPredicate(CmpInst::getInversePredicate(Pred));
2567 return replaceInstUsesWith(I, Op0);
Benjamin Kramer443c7962015-02-12 20:26:46 +00002568 }
Chris Lattner0a8191e2010-01-05 07:50:36 +00002569
Craig Topperb5bf0162017-08-06 06:28:41 +00002570 {
2571 const APInt *RHSC;
2572 if (match(Op1, m_APInt(RHSC))) {
Craig Topper9a6110b2017-08-10 20:35:34 +00002573 Value *X;
Craig Topperb5bf0162017-08-06 06:28:41 +00002574 const APInt *C;
Craig Topper9a6110b2017-08-10 20:35:34 +00002575 if (match(Op0, m_Sub(m_APInt(C), m_Value(X)))) {
Craig Topperb5bf0162017-08-06 06:28:41 +00002576 // ~(c-X) == X-c-1 == X+(-c-1)
2577 if (RHSC->isAllOnesValue()) {
2578 Constant *NewC = ConstantInt::get(I.getType(), -(*C) - 1);
Craig Topper9a6110b2017-08-10 20:35:34 +00002579 return BinaryOperator::CreateAdd(X, NewC);
Craig Topperb5bf0162017-08-06 06:28:41 +00002580 }
Craig Topper9cbdbef2017-08-06 22:17:21 +00002581 if (RHSC->isSignMask()) {
2582 // (C - X) ^ signmask -> (C + signmask - X)
2583 Constant *NewC = ConstantInt::get(I.getType(), *C + *RHSC);
Craig Topper9a6110b2017-08-10 20:35:34 +00002584 return BinaryOperator::CreateSub(NewC, X);
Craig Topper9cbdbef2017-08-06 22:17:21 +00002585 }
Craig Topper9a6110b2017-08-10 20:35:34 +00002586 } else if (match(Op0, m_Add(m_Value(X), m_APInt(C)))) {
Craig Topperb5bf0162017-08-06 06:28:41 +00002587 // ~(X-c) --> (-c-1)-X
2588 if (RHSC->isAllOnesValue()) {
2589 Constant *NewC = ConstantInt::get(I.getType(), -(*C) - 1);
Craig Topper9a6110b2017-08-10 20:35:34 +00002590 return BinaryOperator::CreateSub(NewC, X);
Craig Topperb5bf0162017-08-06 06:28:41 +00002591 }
Craig Topper9cbdbef2017-08-06 22:17:21 +00002592 if (RHSC->isSignMask()) {
2593 // (X + C) ^ signmask -> (X + C + signmask)
2594 Constant *NewC = ConstantInt::get(I.getType(), *C + *RHSC);
Craig Topper9a6110b2017-08-10 20:35:34 +00002595 return BinaryOperator::CreateAdd(X, NewC);
Craig Topper9cbdbef2017-08-06 22:17:21 +00002596 }
Craig Topperb5bf0162017-08-06 06:28:41 +00002597 }
Craig Topper9a6110b2017-08-10 20:35:34 +00002598
2599 // (X|C1)^C2 -> X^(C1^C2) iff X&~C1 == 0
2600 if (match(Op0, m_Or(m_Value(X), m_APInt(C))) &&
2601 MaskedValueIsZero(X, *C, 0, &I)) {
2602 Constant *NewC = ConstantInt::get(I.getType(), *C ^ *RHSC);
2603 Worklist.Add(cast<Instruction>(Op0));
2604 I.setOperand(0, X);
2605 I.setOperand(1, NewC);
2606 return &I;
2607 }
Craig Topperb5bf0162017-08-06 06:28:41 +00002608 }
2609 }
2610
Craig Topper9d1821b2017-04-09 06:12:31 +00002611 if (ConstantInt *RHSC = dyn_cast<ConstantInt>(Op1)) {
Chris Lattner0a8191e2010-01-05 07:50:36 +00002612 if (BinaryOperator *Op0I = dyn_cast<BinaryOperator>(Op0)) {
Chris Lattner0a8191e2010-01-05 07:50:36 +00002613 if (ConstantInt *Op0CI = dyn_cast<ConstantInt>(Op0I->getOperand(1))) {
Craig Topper9a6110b2017-08-10 20:35:34 +00002614 if (Op0I->getOpcode() == Instruction::LShr) {
Shuxin Yang6ea79e82012-11-26 21:44:25 +00002615 // ((X^C1) >> C2) ^ C3 -> (X>>C2) ^ ((C1>>C2)^C3)
2616 // E1 = "X ^ C1"
Craig Topper9d4171a2012-12-20 07:09:41 +00002617 BinaryOperator *E1;
Shuxin Yang6ea79e82012-11-26 21:44:25 +00002618 ConstantInt *C1;
2619 if (Op0I->hasOneUse() &&
2620 (E1 = dyn_cast<BinaryOperator>(Op0I->getOperand(0))) &&
2621 E1->getOpcode() == Instruction::Xor &&
2622 (C1 = dyn_cast<ConstantInt>(E1->getOperand(1)))) {
2623 // fold (C1 >> C2) ^ C3
Craig Topper9d1821b2017-04-09 06:12:31 +00002624 ConstantInt *C2 = Op0CI, *C3 = RHSC;
Shuxin Yang6ea79e82012-11-26 21:44:25 +00002625 APInt FoldConst = C1->getValue().lshr(C2->getValue());
2626 FoldConst ^= C3->getValue();
2627 // Prepare the two operands.
Craig Topperbb4069e2017-07-07 23:16:26 +00002628 Value *Opnd0 = Builder.CreateLShr(E1->getOperand(0), C2);
Shuxin Yang6ea79e82012-11-26 21:44:25 +00002629 Opnd0->takeName(Op0I);
2630 cast<Instruction>(Opnd0)->setDebugLoc(I.getDebugLoc());
2631 Value *FoldVal = ConstantInt::get(Opnd0->getType(), FoldConst);
2632
2633 return BinaryOperator::CreateXor(Opnd0, FoldVal);
2634 }
Chris Lattner0a8191e2010-01-05 07:50:36 +00002635 }
2636 }
2637 }
Craig Topper86173602017-04-04 20:26:25 +00002638 }
Chris Lattner0a8191e2010-01-05 07:50:36 +00002639
Sanjay Patel8fdd87f2018-02-28 16:36:24 +00002640 if (Instruction *FoldedLogic = foldBinOpIntoSelectOrPhi(I))
2641 return FoldedLogic;
Chris Lattner0a8191e2010-01-05 07:50:36 +00002642
Craig Topper76394602017-04-10 06:53:23 +00002643 {
Chris Lattner0a8191e2010-01-05 07:50:36 +00002644 Value *A, *B;
Craig Topper76394602017-04-10 06:53:23 +00002645 if (match(Op1, m_OneUse(m_Or(m_Value(A), m_Value(B))))) {
Craig Topper47383212017-04-10 06:53:21 +00002646 if (A == Op0) { // A^(A|B) == A^(B|A)
Craig Topper76394602017-04-10 06:53:23 +00002647 cast<BinaryOperator>(Op1)->swapOperands();
Craig Topper47383212017-04-10 06:53:21 +00002648 std::swap(A, B);
2649 }
2650 if (B == Op0) { // A^(B|A) == (B|A)^A
Chris Lattner0a8191e2010-01-05 07:50:36 +00002651 I.swapOperands(); // Simplified below.
2652 std::swap(Op0, Op1);
2653 }
Craig Topper76394602017-04-10 06:53:23 +00002654 } else if (match(Op1, m_OneUse(m_And(m_Value(A), m_Value(B))))) {
Chris Lattner0a8191e2010-01-05 07:50:36 +00002655 if (A == Op0) { // A^(A&B) -> A^(B&A)
Craig Topper76394602017-04-10 06:53:23 +00002656 cast<BinaryOperator>(Op1)->swapOperands();
Chris Lattner0a8191e2010-01-05 07:50:36 +00002657 std::swap(A, B);
2658 }
2659 if (B == Op0) { // A^(B&A) -> (B&A)^A
2660 I.swapOperands(); // Simplified below.
2661 std::swap(Op0, Op1);
2662 }
2663 }
2664 }
Craig Topper9d4171a2012-12-20 07:09:41 +00002665
Craig Topper76394602017-04-10 06:53:23 +00002666 {
Chris Lattner0a8191e2010-01-05 07:50:36 +00002667 Value *A, *B;
Craig Topper76394602017-04-10 06:53:23 +00002668 if (match(Op0, m_OneUse(m_Or(m_Value(A), m_Value(B))))) {
Chris Lattner0a8191e2010-01-05 07:50:36 +00002669 if (A == Op1) // (B|A)^B == (A|B)^B
2670 std::swap(A, B);
2671 if (B == Op1) // (A|B)^B == A & ~B
Craig Topperbb4069e2017-07-07 23:16:26 +00002672 return BinaryOperator::CreateAnd(A, Builder.CreateNot(Op1));
Craig Topper76394602017-04-10 06:53:23 +00002673 } else if (match(Op0, m_OneUse(m_And(m_Value(A), m_Value(B))))) {
Chris Lattner0a8191e2010-01-05 07:50:36 +00002674 if (A == Op1) // (A&B)^A -> (B&A)^A
2675 std::swap(A, B);
Craig Toppere63c21b2017-04-09 06:12:39 +00002676 const APInt *C;
Chris Lattner0a8191e2010-01-05 07:50:36 +00002677 if (B == Op1 && // (B&A)^A == ~B & A
Craig Toppere63c21b2017-04-09 06:12:39 +00002678 !match(Op1, m_APInt(C))) { // Canonical form is (B&C)^C
Craig Topperbb4069e2017-07-07 23:16:26 +00002679 return BinaryOperator::CreateAnd(Builder.CreateNot(A), Op1);
Chris Lattner0a8191e2010-01-05 07:50:36 +00002680 }
2681 }
2682 }
Craig Topper9d4171a2012-12-20 07:09:41 +00002683
Craig Topper76394602017-04-10 06:53:23 +00002684 {
Chris Lattner0a8191e2010-01-05 07:50:36 +00002685 Value *A, *B, *C, *D;
David Majnemer6fe6ea72014-09-05 06:09:24 +00002686 // (A ^ C)^(A | B) -> ((~A) & B) ^ C
Craig Topper76394602017-04-10 06:53:23 +00002687 if (match(Op0, m_Xor(m_Value(D), m_Value(C))) &&
2688 match(Op1, m_Or(m_Value(A), m_Value(B)))) {
David Majnemer6fe6ea72014-09-05 06:09:24 +00002689 if (D == A)
2690 return BinaryOperator::CreateXor(
Craig Topperbb4069e2017-07-07 23:16:26 +00002691 Builder.CreateAnd(Builder.CreateNot(A), B), C);
David Majnemer6fe6ea72014-09-05 06:09:24 +00002692 if (D == B)
2693 return BinaryOperator::CreateXor(
Craig Topperbb4069e2017-07-07 23:16:26 +00002694 Builder.CreateAnd(Builder.CreateNot(B), A), C);
Karthik Bhata4a4db92014-08-13 05:13:14 +00002695 }
David Majnemer6fe6ea72014-09-05 06:09:24 +00002696 // (A | B)^(A ^ C) -> ((~A) & B) ^ C
Craig Topper76394602017-04-10 06:53:23 +00002697 if (match(Op0, m_Or(m_Value(A), m_Value(B))) &&
2698 match(Op1, m_Xor(m_Value(D), m_Value(C)))) {
David Majnemer6fe6ea72014-09-05 06:09:24 +00002699 if (D == A)
2700 return BinaryOperator::CreateXor(
Craig Topperbb4069e2017-07-07 23:16:26 +00002701 Builder.CreateAnd(Builder.CreateNot(A), B), C);
David Majnemer6fe6ea72014-09-05 06:09:24 +00002702 if (D == B)
2703 return BinaryOperator::CreateXor(
Craig Topperbb4069e2017-07-07 23:16:26 +00002704 Builder.CreateAnd(Builder.CreateNot(B), A), C);
Karthik Bhata4a4db92014-08-13 05:13:14 +00002705 }
Suyog Sardab60ec902014-07-22 18:30:54 +00002706 // (A & B) ^ (A ^ B) -> (A | B)
Craig Topper76394602017-04-10 06:53:23 +00002707 if (match(Op0, m_And(m_Value(A), m_Value(B))) &&
Craig Topperd8840d72017-04-10 06:53:28 +00002708 match(Op1, m_c_Xor(m_Specific(A), m_Specific(B))))
Suyog Sardab60ec902014-07-22 18:30:54 +00002709 return BinaryOperator::CreateOr(A, B);
2710 // (A ^ B) ^ (A & B) -> (A | B)
Craig Topper76394602017-04-10 06:53:23 +00002711 if (match(Op0, m_Xor(m_Value(A), m_Value(B))) &&
Craig Topperd8840d72017-04-10 06:53:28 +00002712 match(Op1, m_c_And(m_Specific(A), m_Specific(B))))
Suyog Sardab60ec902014-07-22 18:30:54 +00002713 return BinaryOperator::CreateOr(A, B);
Chris Lattner0a8191e2010-01-05 07:50:36 +00002714 }
Duncan Sandsadc7771f2010-11-23 14:23:47 +00002715
Sanjay Patel2b9d4b42016-12-18 18:49:48 +00002716 // (A & ~B) ^ ~A -> ~(A & B)
2717 // (~B & A) ^ ~A -> ~(A & B)
2718 Value *A, *B;
2719 if (match(Op0, m_c_And(m_Value(A), m_Not(m_Value(B)))) &&
Suyog Sarda56c9a872014-08-01 05:07:20 +00002720 match(Op1, m_Not(m_Specific(A))))
Craig Topperbb4069e2017-07-07 23:16:26 +00002721 return BinaryOperator::CreateNot(Builder.CreateAnd(A, B));
Suyog Sarda56c9a872014-08-01 05:07:20 +00002722
Sanjay Patel5e456b92017-05-18 20:53:16 +00002723 if (auto *LHS = dyn_cast<ICmpInst>(I.getOperand(0)))
2724 if (auto *RHS = dyn_cast<ICmpInst>(I.getOperand(1)))
2725 if (Value *V = foldXorOfICmps(LHS, RHS))
2726 return replaceInstUsesWith(I, V);
Chris Lattner0a8191e2010-01-05 07:50:36 +00002727
Sanjay Pateldbbaca02016-02-24 17:00:34 +00002728 if (Instruction *CastedXor = foldCastedBitwiseLogic(I))
2729 return CastedXor;
Chris Lattner0a8191e2010-01-05 07:50:36 +00002730
Sanjay Patel5a0cdac2017-12-16 16:41:17 +00002731 // Canonicalize the shifty way to code absolute value to the common pattern.
2732 // There are 4 potential commuted variants. Move the 'ashr' candidate to Op1.
2733 // We're relying on the fact that we only do this transform when the shift has
2734 // exactly 2 uses and the add has exactly 1 use (otherwise, we might increase
2735 // instructions).
Craig Topperee99aa42018-03-12 18:46:05 +00002736 if (Op0->hasNUses(2))
Sanjay Patel5a0cdac2017-12-16 16:41:17 +00002737 std::swap(Op0, Op1);
2738
2739 const APInt *ShAmt;
2740 Type *Ty = I.getType();
2741 if (match(Op1, m_AShr(m_Value(A), m_APInt(ShAmt))) &&
Craig Topperee99aa42018-03-12 18:46:05 +00002742 Op1->hasNUses(2) && *ShAmt == Ty->getScalarSizeInBits() - 1 &&
Sanjay Patel5a0cdac2017-12-16 16:41:17 +00002743 match(Op0, m_OneUse(m_c_Add(m_Specific(A), m_Specific(Op1))))) {
2744 // B = ashr i32 A, 31 ; smear the sign bit
2745 // xor (add A, B), B ; add -1 and flip bits if negative
2746 // --> (A < 0) ? -A : A
2747 Value *Cmp = Builder.CreateICmpSLT(A, ConstantInt::getNullValue(Ty));
Craig Topperbd332582018-05-17 16:29:52 +00002748 // Copy the nuw/nsw flags from the add to the negate.
2749 auto *Add = cast<BinaryOperator>(Op0);
2750 Value *Neg = Builder.CreateNeg(A, "", Add->hasNoUnsignedWrap(),
2751 Add->hasNoSignedWrap());
2752 return SelectInst::Create(Cmp, Neg, A);
Sanjay Patel5a0cdac2017-12-16 16:41:17 +00002753 }
2754
Artur Gainullind9282012018-04-11 10:29:37 +00002755 // Eliminate a bitwise 'not' op of 'not' min/max by inverting the min/max:
2756 //
2757 // %notx = xor i32 %x, -1
2758 // %cmp1 = icmp sgt i32 %notx, %y
2759 // %smax = select i1 %cmp1, i32 %notx, i32 %y
2760 // %res = xor i32 %smax, -1
2761 // =>
2762 // %noty = xor i32 %y, -1
2763 // %cmp2 = icmp slt %x, %noty
2764 // %res = select i1 %cmp2, i32 %x, i32 %noty
2765 //
2766 // Same is applicable for smin/umax/umin.
2767 {
2768 Value *LHS, *RHS;
2769 SelectPatternFlavor SPF = matchSelectPattern(Op0, LHS, RHS).Flavor;
2770 if (Op0->hasOneUse() && SelectPatternResult::isMinOrMax(SPF) &&
2771 match(Op1, m_AllOnes())) {
2772
2773 Value *X;
2774 if (match(RHS, m_Not(m_Value(X))))
2775 std::swap(RHS, LHS);
2776
2777 if (match(LHS, m_Not(m_Value(X)))) {
2778 Value *NotY = Builder.CreateNot(RHS);
2779 return SelectInst::Create(
2780 Builder.CreateICmp(getInverseMinMaxPred(SPF), X, NotY), X, NotY);
2781 }
2782 }
2783 }
2784
Craig Topperf40110f2014-04-25 05:29:35 +00002785 return Changed ? &I : nullptr;
Chris Lattner0a8191e2010-01-05 07:50:36 +00002786}